Merge branch 'next' of git://git.kernel.org/pub/scm/linux/kernel/git/benh/powerpc
[cascardo/linux.git] / drivers / net / ethernet / broadcom / tg3.c
1 /*
2  * tg3.c: Broadcom Tigon3 ethernet driver.
3  *
4  * Copyright (C) 2001, 2002, 2003, 2004 David S. Miller (davem@redhat.com)
5  * Copyright (C) 2001, 2002, 2003 Jeff Garzik (jgarzik@pobox.com)
6  * Copyright (C) 2004 Sun Microsystems Inc.
7  * Copyright (C) 2005-2014 Broadcom Corporation.
8  *
9  * Firmware is:
10  *      Derived from proprietary unpublished source code,
11  *      Copyright (C) 2000-2003 Broadcom Corporation.
12  *
13  *      Permission is hereby granted for the distribution of this firmware
14  *      data in hexadecimal or equivalent format, provided this copyright
15  *      notice is accompanying it.
16  */
17
18
19 #include <linux/module.h>
20 #include <linux/moduleparam.h>
21 #include <linux/stringify.h>
22 #include <linux/kernel.h>
23 #include <linux/types.h>
24 #include <linux/compiler.h>
25 #include <linux/slab.h>
26 #include <linux/delay.h>
27 #include <linux/in.h>
28 #include <linux/interrupt.h>
29 #include <linux/ioport.h>
30 #include <linux/pci.h>
31 #include <linux/netdevice.h>
32 #include <linux/etherdevice.h>
33 #include <linux/skbuff.h>
34 #include <linux/ethtool.h>
35 #include <linux/mdio.h>
36 #include <linux/mii.h>
37 #include <linux/phy.h>
38 #include <linux/brcmphy.h>
39 #include <linux/if.h>
40 #include <linux/if_vlan.h>
41 #include <linux/ip.h>
42 #include <linux/tcp.h>
43 #include <linux/workqueue.h>
44 #include <linux/prefetch.h>
45 #include <linux/dma-mapping.h>
46 #include <linux/firmware.h>
47 #include <linux/ssb/ssb_driver_gige.h>
48 #include <linux/hwmon.h>
49 #include <linux/hwmon-sysfs.h>
50
51 #include <net/checksum.h>
52 #include <net/ip.h>
53
54 #include <linux/io.h>
55 #include <asm/byteorder.h>
56 #include <linux/uaccess.h>
57
58 #include <uapi/linux/net_tstamp.h>
59 #include <linux/ptp_clock_kernel.h>
60
61 #ifdef CONFIG_SPARC
62 #include <asm/idprom.h>
63 #include <asm/prom.h>
64 #endif
65
66 #define BAR_0   0
67 #define BAR_2   2
68
69 #include "tg3.h"
70
71 /* Functions & macros to verify TG3_FLAGS types */
72
73 static inline int _tg3_flag(enum TG3_FLAGS flag, unsigned long *bits)
74 {
75         return test_bit(flag, bits);
76 }
77
78 static inline void _tg3_flag_set(enum TG3_FLAGS flag, unsigned long *bits)
79 {
80         set_bit(flag, bits);
81 }
82
83 static inline void _tg3_flag_clear(enum TG3_FLAGS flag, unsigned long *bits)
84 {
85         clear_bit(flag, bits);
86 }
87
88 #define tg3_flag(tp, flag)                              \
89         _tg3_flag(TG3_FLAG_##flag, (tp)->tg3_flags)
90 #define tg3_flag_set(tp, flag)                          \
91         _tg3_flag_set(TG3_FLAG_##flag, (tp)->tg3_flags)
92 #define tg3_flag_clear(tp, flag)                        \
93         _tg3_flag_clear(TG3_FLAG_##flag, (tp)->tg3_flags)
94
95 #define DRV_MODULE_NAME         "tg3"
96 #define TG3_MAJ_NUM                     3
97 #define TG3_MIN_NUM                     137
98 #define DRV_MODULE_VERSION      \
99         __stringify(TG3_MAJ_NUM) "." __stringify(TG3_MIN_NUM)
100 #define DRV_MODULE_RELDATE      "May 11, 2014"
101
102 #define RESET_KIND_SHUTDOWN     0
103 #define RESET_KIND_INIT         1
104 #define RESET_KIND_SUSPEND      2
105
106 #define TG3_DEF_RX_MODE         0
107 #define TG3_DEF_TX_MODE         0
108 #define TG3_DEF_MSG_ENABLE        \
109         (NETIF_MSG_DRV          | \
110          NETIF_MSG_PROBE        | \
111          NETIF_MSG_LINK         | \
112          NETIF_MSG_TIMER        | \
113          NETIF_MSG_IFDOWN       | \
114          NETIF_MSG_IFUP         | \
115          NETIF_MSG_RX_ERR       | \
116          NETIF_MSG_TX_ERR)
117
118 #define TG3_GRC_LCLCTL_PWRSW_DELAY      100
119
120 /* length of time before we decide the hardware is borked,
121  * and dev->tx_timeout() should be called to fix the problem
122  */
123
124 #define TG3_TX_TIMEOUT                  (5 * HZ)
125
126 /* hardware minimum and maximum for a single frame's data payload */
127 #define TG3_MIN_MTU                     60
128 #define TG3_MAX_MTU(tp) \
129         (tg3_flag(tp, JUMBO_CAPABLE) ? 9000 : 1500)
130
131 /* These numbers seem to be hard coded in the NIC firmware somehow.
132  * You can't change the ring sizes, but you can change where you place
133  * them in the NIC onboard memory.
134  */
135 #define TG3_RX_STD_RING_SIZE(tp) \
136         (tg3_flag(tp, LRG_PROD_RING_CAP) ? \
137          TG3_RX_STD_MAX_SIZE_5717 : TG3_RX_STD_MAX_SIZE_5700)
138 #define TG3_DEF_RX_RING_PENDING         200
139 #define TG3_RX_JMB_RING_SIZE(tp) \
140         (tg3_flag(tp, LRG_PROD_RING_CAP) ? \
141          TG3_RX_JMB_MAX_SIZE_5717 : TG3_RX_JMB_MAX_SIZE_5700)
142 #define TG3_DEF_RX_JUMBO_RING_PENDING   100
143
144 /* Do not place this n-ring entries value into the tp struct itself,
145  * we really want to expose these constants to GCC so that modulo et
146  * al.  operations are done with shifts and masks instead of with
147  * hw multiply/modulo instructions.  Another solution would be to
148  * replace things like '% foo' with '& (foo - 1)'.
149  */
150
151 #define TG3_TX_RING_SIZE                512
152 #define TG3_DEF_TX_RING_PENDING         (TG3_TX_RING_SIZE - 1)
153
154 #define TG3_RX_STD_RING_BYTES(tp) \
155         (sizeof(struct tg3_rx_buffer_desc) * TG3_RX_STD_RING_SIZE(tp))
156 #define TG3_RX_JMB_RING_BYTES(tp) \
157         (sizeof(struct tg3_ext_rx_buffer_desc) * TG3_RX_JMB_RING_SIZE(tp))
158 #define TG3_RX_RCB_RING_BYTES(tp) \
159         (sizeof(struct tg3_rx_buffer_desc) * (tp->rx_ret_ring_mask + 1))
160 #define TG3_TX_RING_BYTES       (sizeof(struct tg3_tx_buffer_desc) * \
161                                  TG3_TX_RING_SIZE)
162 #define NEXT_TX(N)              (((N) + 1) & (TG3_TX_RING_SIZE - 1))
163
164 #define TG3_DMA_BYTE_ENAB               64
165
166 #define TG3_RX_STD_DMA_SZ               1536
167 #define TG3_RX_JMB_DMA_SZ               9046
168
169 #define TG3_RX_DMA_TO_MAP_SZ(x)         ((x) + TG3_DMA_BYTE_ENAB)
170
171 #define TG3_RX_STD_MAP_SZ               TG3_RX_DMA_TO_MAP_SZ(TG3_RX_STD_DMA_SZ)
172 #define TG3_RX_JMB_MAP_SZ               TG3_RX_DMA_TO_MAP_SZ(TG3_RX_JMB_DMA_SZ)
173
174 #define TG3_RX_STD_BUFF_RING_SIZE(tp) \
175         (sizeof(struct ring_info) * TG3_RX_STD_RING_SIZE(tp))
176
177 #define TG3_RX_JMB_BUFF_RING_SIZE(tp) \
178         (sizeof(struct ring_info) * TG3_RX_JMB_RING_SIZE(tp))
179
180 /* Due to a hardware bug, the 5701 can only DMA to memory addresses
181  * that are at least dword aligned when used in PCIX mode.  The driver
182  * works around this bug by double copying the packet.  This workaround
183  * is built into the normal double copy length check for efficiency.
184  *
185  * However, the double copy is only necessary on those architectures
186  * where unaligned memory accesses are inefficient.  For those architectures
187  * where unaligned memory accesses incur little penalty, we can reintegrate
188  * the 5701 in the normal rx path.  Doing so saves a device structure
189  * dereference by hardcoding the double copy threshold in place.
190  */
191 #define TG3_RX_COPY_THRESHOLD           256
192 #if NET_IP_ALIGN == 0 || defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS)
193         #define TG3_RX_COPY_THRESH(tp)  TG3_RX_COPY_THRESHOLD
194 #else
195         #define TG3_RX_COPY_THRESH(tp)  ((tp)->rx_copy_thresh)
196 #endif
197
198 #if (NET_IP_ALIGN != 0)
199 #define TG3_RX_OFFSET(tp)       ((tp)->rx_offset)
200 #else
201 #define TG3_RX_OFFSET(tp)       (NET_SKB_PAD)
202 #endif
203
204 /* minimum number of free TX descriptors required to wake up TX process */
205 #define TG3_TX_WAKEUP_THRESH(tnapi)             ((tnapi)->tx_pending / 4)
206 #define TG3_TX_BD_DMA_MAX_2K            2048
207 #define TG3_TX_BD_DMA_MAX_4K            4096
208
209 #define TG3_RAW_IP_ALIGN 2
210
211 #define TG3_MAX_UCAST_ADDR(tp) (tg3_flag((tp), ENABLE_ASF) ? 2 : 3)
212 #define TG3_UCAST_ADDR_IDX(tp) (tg3_flag((tp), ENABLE_ASF) ? 2 : 1)
213
214 #define TG3_FW_UPDATE_TIMEOUT_SEC       5
215 #define TG3_FW_UPDATE_FREQ_SEC          (TG3_FW_UPDATE_TIMEOUT_SEC / 2)
216
217 #define FIRMWARE_TG3            "tigon/tg3.bin"
218 #define FIRMWARE_TG357766       "tigon/tg357766.bin"
219 #define FIRMWARE_TG3TSO         "tigon/tg3_tso.bin"
220 #define FIRMWARE_TG3TSO5        "tigon/tg3_tso5.bin"
221
222 static char version[] =
223         DRV_MODULE_NAME ".c:v" DRV_MODULE_VERSION " (" DRV_MODULE_RELDATE ")";
224
225 MODULE_AUTHOR("David S. Miller (davem@redhat.com) and Jeff Garzik (jgarzik@pobox.com)");
226 MODULE_DESCRIPTION("Broadcom Tigon3 ethernet driver");
227 MODULE_LICENSE("GPL");
228 MODULE_VERSION(DRV_MODULE_VERSION);
229 MODULE_FIRMWARE(FIRMWARE_TG3);
230 MODULE_FIRMWARE(FIRMWARE_TG3TSO);
231 MODULE_FIRMWARE(FIRMWARE_TG3TSO5);
232
233 static int tg3_debug = -1;      /* -1 == use TG3_DEF_MSG_ENABLE as value */
234 module_param(tg3_debug, int, 0);
235 MODULE_PARM_DESC(tg3_debug, "Tigon3 bitmapped debugging message enable value");
236
237 #define TG3_DRV_DATA_FLAG_10_100_ONLY   0x0001
238 #define TG3_DRV_DATA_FLAG_5705_10_100   0x0002
239
240 static DEFINE_PCI_DEVICE_TABLE(tg3_pci_tbl) = {
241         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5700)},
242         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5701)},
243         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702)},
244         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703)},
245         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704)},
246         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702FE)},
247         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705)},
248         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705_2)},
249         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705M)},
250         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705M_2)},
251         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702X)},
252         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703X)},
253         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704S)},
254         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702A3)},
255         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703A3)},
256         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5782)},
257         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5788)},
258         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5789)},
259         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5901),
260          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY |
261                         TG3_DRV_DATA_FLAG_5705_10_100},
262         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5901_2),
263          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY |
264                         TG3_DRV_DATA_FLAG_5705_10_100},
265         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704S_2)},
266         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705F),
267          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY |
268                         TG3_DRV_DATA_FLAG_5705_10_100},
269         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5721)},
270         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5722)},
271         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5750)},
272         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751)},
273         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751M)},
274         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751F),
275          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
276         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5752)},
277         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5752M)},
278         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753)},
279         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753M)},
280         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753F),
281          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
282         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5754)},
283         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5754M)},
284         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5755)},
285         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5755M)},
286         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5756)},
287         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5786)},
288         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787)},
289         {PCI_DEVICE_SUB(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5787M,
290                         PCI_VENDOR_ID_LENOVO,
291                         TG3PCI_SUBDEVICE_ID_LENOVO_5787M),
292          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
293         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787M)},
294         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787F),
295          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
296         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5714)},
297         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5714S)},
298         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5715)},
299         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5715S)},
300         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5780)},
301         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5780S)},
302         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5781)},
303         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5906)},
304         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5906M)},
305         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5784)},
306         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5764)},
307         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5723)},
308         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5761)},
309         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5761E)},
310         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5761S)},
311         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5761SE)},
312         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5785_G)},
313         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5785_F)},
314         {PCI_DEVICE_SUB(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57780,
315                         PCI_VENDOR_ID_AI, TG3PCI_SUBDEVICE_ID_ACER_57780_A),
316          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
317         {PCI_DEVICE_SUB(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57780,
318                         PCI_VENDOR_ID_AI, TG3PCI_SUBDEVICE_ID_ACER_57780_B),
319          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
320         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57780)},
321         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57760)},
322         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57790),
323          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
324         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57788)},
325         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5717)},
326         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5717_C)},
327         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5718)},
328         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57781)},
329         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57785)},
330         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57761)},
331         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57765)},
332         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57791),
333          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
334         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57795),
335          .driver_data = TG3_DRV_DATA_FLAG_10_100_ONLY},
336         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5719)},
337         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5720)},
338         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57762)},
339         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57766)},
340         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5762)},
341         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5725)},
342         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5727)},
343         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57764)},
344         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57767)},
345         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57787)},
346         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57782)},
347         {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57786)},
348         {PCI_DEVICE(PCI_VENDOR_ID_SYSKONNECT, PCI_DEVICE_ID_SYSKONNECT_9DXX)},
349         {PCI_DEVICE(PCI_VENDOR_ID_SYSKONNECT, PCI_DEVICE_ID_SYSKONNECT_9MXX)},
350         {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1000)},
351         {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1001)},
352         {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1003)},
353         {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC9100)},
354         {PCI_DEVICE(PCI_VENDOR_ID_APPLE, PCI_DEVICE_ID_APPLE_TIGON3)},
355         {PCI_DEVICE(0x10cf, 0x11a2)}, /* Fujitsu 1000base-SX with BCM5703SKHB */
356         {}
357 };
358
359 MODULE_DEVICE_TABLE(pci, tg3_pci_tbl);
360
361 static const struct {
362         const char string[ETH_GSTRING_LEN];
363 } ethtool_stats_keys[] = {
364         { "rx_octets" },
365         { "rx_fragments" },
366         { "rx_ucast_packets" },
367         { "rx_mcast_packets" },
368         { "rx_bcast_packets" },
369         { "rx_fcs_errors" },
370         { "rx_align_errors" },
371         { "rx_xon_pause_rcvd" },
372         { "rx_xoff_pause_rcvd" },
373         { "rx_mac_ctrl_rcvd" },
374         { "rx_xoff_entered" },
375         { "rx_frame_too_long_errors" },
376         { "rx_jabbers" },
377         { "rx_undersize_packets" },
378         { "rx_in_length_errors" },
379         { "rx_out_length_errors" },
380         { "rx_64_or_less_octet_packets" },
381         { "rx_65_to_127_octet_packets" },
382         { "rx_128_to_255_octet_packets" },
383         { "rx_256_to_511_octet_packets" },
384         { "rx_512_to_1023_octet_packets" },
385         { "rx_1024_to_1522_octet_packets" },
386         { "rx_1523_to_2047_octet_packets" },
387         { "rx_2048_to_4095_octet_packets" },
388         { "rx_4096_to_8191_octet_packets" },
389         { "rx_8192_to_9022_octet_packets" },
390
391         { "tx_octets" },
392         { "tx_collisions" },
393
394         { "tx_xon_sent" },
395         { "tx_xoff_sent" },
396         { "tx_flow_control" },
397         { "tx_mac_errors" },
398         { "tx_single_collisions" },
399         { "tx_mult_collisions" },
400         { "tx_deferred" },
401         { "tx_excessive_collisions" },
402         { "tx_late_collisions" },
403         { "tx_collide_2times" },
404         { "tx_collide_3times" },
405         { "tx_collide_4times" },
406         { "tx_collide_5times" },
407         { "tx_collide_6times" },
408         { "tx_collide_7times" },
409         { "tx_collide_8times" },
410         { "tx_collide_9times" },
411         { "tx_collide_10times" },
412         { "tx_collide_11times" },
413         { "tx_collide_12times" },
414         { "tx_collide_13times" },
415         { "tx_collide_14times" },
416         { "tx_collide_15times" },
417         { "tx_ucast_packets" },
418         { "tx_mcast_packets" },
419         { "tx_bcast_packets" },
420         { "tx_carrier_sense_errors" },
421         { "tx_discards" },
422         { "tx_errors" },
423
424         { "dma_writeq_full" },
425         { "dma_write_prioq_full" },
426         { "rxbds_empty" },
427         { "rx_discards" },
428         { "rx_errors" },
429         { "rx_threshold_hit" },
430
431         { "dma_readq_full" },
432         { "dma_read_prioq_full" },
433         { "tx_comp_queue_full" },
434
435         { "ring_set_send_prod_index" },
436         { "ring_status_update" },
437         { "nic_irqs" },
438         { "nic_avoided_irqs" },
439         { "nic_tx_threshold_hit" },
440
441         { "mbuf_lwm_thresh_hit" },
442 };
443
444 #define TG3_NUM_STATS   ARRAY_SIZE(ethtool_stats_keys)
445 #define TG3_NVRAM_TEST          0
446 #define TG3_LINK_TEST           1
447 #define TG3_REGISTER_TEST       2
448 #define TG3_MEMORY_TEST         3
449 #define TG3_MAC_LOOPB_TEST      4
450 #define TG3_PHY_LOOPB_TEST      5
451 #define TG3_EXT_LOOPB_TEST      6
452 #define TG3_INTERRUPT_TEST      7
453
454
455 static const struct {
456         const char string[ETH_GSTRING_LEN];
457 } ethtool_test_keys[] = {
458         [TG3_NVRAM_TEST]        = { "nvram test        (online) " },
459         [TG3_LINK_TEST]         = { "link test         (online) " },
460         [TG3_REGISTER_TEST]     = { "register test     (offline)" },
461         [TG3_MEMORY_TEST]       = { "memory test       (offline)" },
462         [TG3_MAC_LOOPB_TEST]    = { "mac loopback test (offline)" },
463         [TG3_PHY_LOOPB_TEST]    = { "phy loopback test (offline)" },
464         [TG3_EXT_LOOPB_TEST]    = { "ext loopback test (offline)" },
465         [TG3_INTERRUPT_TEST]    = { "interrupt test    (offline)" },
466 };
467
468 #define TG3_NUM_TEST    ARRAY_SIZE(ethtool_test_keys)
469
470
471 static void tg3_write32(struct tg3 *tp, u32 off, u32 val)
472 {
473         writel(val, tp->regs + off);
474 }
475
476 static u32 tg3_read32(struct tg3 *tp, u32 off)
477 {
478         return readl(tp->regs + off);
479 }
480
481 static void tg3_ape_write32(struct tg3 *tp, u32 off, u32 val)
482 {
483         writel(val, tp->aperegs + off);
484 }
485
486 static u32 tg3_ape_read32(struct tg3 *tp, u32 off)
487 {
488         return readl(tp->aperegs + off);
489 }
490
491 static void tg3_write_indirect_reg32(struct tg3 *tp, u32 off, u32 val)
492 {
493         unsigned long flags;
494
495         spin_lock_irqsave(&tp->indirect_lock, flags);
496         pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off);
497         pci_write_config_dword(tp->pdev, TG3PCI_REG_DATA, val);
498         spin_unlock_irqrestore(&tp->indirect_lock, flags);
499 }
500
501 static void tg3_write_flush_reg32(struct tg3 *tp, u32 off, u32 val)
502 {
503         writel(val, tp->regs + off);
504         readl(tp->regs + off);
505 }
506
507 static u32 tg3_read_indirect_reg32(struct tg3 *tp, u32 off)
508 {
509         unsigned long flags;
510         u32 val;
511
512         spin_lock_irqsave(&tp->indirect_lock, flags);
513         pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off);
514         pci_read_config_dword(tp->pdev, TG3PCI_REG_DATA, &val);
515         spin_unlock_irqrestore(&tp->indirect_lock, flags);
516         return val;
517 }
518
519 static void tg3_write_indirect_mbox(struct tg3 *tp, u32 off, u32 val)
520 {
521         unsigned long flags;
522
523         if (off == (MAILBOX_RCVRET_CON_IDX_0 + TG3_64BIT_REG_LOW)) {
524                 pci_write_config_dword(tp->pdev, TG3PCI_RCV_RET_RING_CON_IDX +
525                                        TG3_64BIT_REG_LOW, val);
526                 return;
527         }
528         if (off == TG3_RX_STD_PROD_IDX_REG) {
529                 pci_write_config_dword(tp->pdev, TG3PCI_STD_RING_PROD_IDX +
530                                        TG3_64BIT_REG_LOW, val);
531                 return;
532         }
533
534         spin_lock_irqsave(&tp->indirect_lock, flags);
535         pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off + 0x5600);
536         pci_write_config_dword(tp->pdev, TG3PCI_REG_DATA, val);
537         spin_unlock_irqrestore(&tp->indirect_lock, flags);
538
539         /* In indirect mode when disabling interrupts, we also need
540          * to clear the interrupt bit in the GRC local ctrl register.
541          */
542         if ((off == (MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW)) &&
543             (val == 0x1)) {
544                 pci_write_config_dword(tp->pdev, TG3PCI_MISC_LOCAL_CTRL,
545                                        tp->grc_local_ctrl|GRC_LCLCTRL_CLEARINT);
546         }
547 }
548
549 static u32 tg3_read_indirect_mbox(struct tg3 *tp, u32 off)
550 {
551         unsigned long flags;
552         u32 val;
553
554         spin_lock_irqsave(&tp->indirect_lock, flags);
555         pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off + 0x5600);
556         pci_read_config_dword(tp->pdev, TG3PCI_REG_DATA, &val);
557         spin_unlock_irqrestore(&tp->indirect_lock, flags);
558         return val;
559 }
560
561 /* usec_wait specifies the wait time in usec when writing to certain registers
562  * where it is unsafe to read back the register without some delay.
563  * GRC_LOCAL_CTRL is one example if the GPIOs are toggled to switch power.
564  * TG3PCI_CLOCK_CTRL is another example if the clock frequencies are changed.
565  */
566 static void _tw32_flush(struct tg3 *tp, u32 off, u32 val, u32 usec_wait)
567 {
568         if (tg3_flag(tp, PCIX_TARGET_HWBUG) || tg3_flag(tp, ICH_WORKAROUND))
569                 /* Non-posted methods */
570                 tp->write32(tp, off, val);
571         else {
572                 /* Posted method */
573                 tg3_write32(tp, off, val);
574                 if (usec_wait)
575                         udelay(usec_wait);
576                 tp->read32(tp, off);
577         }
578         /* Wait again after the read for the posted method to guarantee that
579          * the wait time is met.
580          */
581         if (usec_wait)
582                 udelay(usec_wait);
583 }
584
585 static inline void tw32_mailbox_flush(struct tg3 *tp, u32 off, u32 val)
586 {
587         tp->write32_mbox(tp, off, val);
588         if (tg3_flag(tp, FLUSH_POSTED_WRITES) ||
589             (!tg3_flag(tp, MBOX_WRITE_REORDER) &&
590              !tg3_flag(tp, ICH_WORKAROUND)))
591                 tp->read32_mbox(tp, off);
592 }
593
594 static void tg3_write32_tx_mbox(struct tg3 *tp, u32 off, u32 val)
595 {
596         void __iomem *mbox = tp->regs + off;
597         writel(val, mbox);
598         if (tg3_flag(tp, TXD_MBOX_HWBUG))
599                 writel(val, mbox);
600         if (tg3_flag(tp, MBOX_WRITE_REORDER) ||
601             tg3_flag(tp, FLUSH_POSTED_WRITES))
602                 readl(mbox);
603 }
604
605 static u32 tg3_read32_mbox_5906(struct tg3 *tp, u32 off)
606 {
607         return readl(tp->regs + off + GRCMBOX_BASE);
608 }
609
610 static void tg3_write32_mbox_5906(struct tg3 *tp, u32 off, u32 val)
611 {
612         writel(val, tp->regs + off + GRCMBOX_BASE);
613 }
614
615 #define tw32_mailbox(reg, val)          tp->write32_mbox(tp, reg, val)
616 #define tw32_mailbox_f(reg, val)        tw32_mailbox_flush(tp, (reg), (val))
617 #define tw32_rx_mbox(reg, val)          tp->write32_rx_mbox(tp, reg, val)
618 #define tw32_tx_mbox(reg, val)          tp->write32_tx_mbox(tp, reg, val)
619 #define tr32_mailbox(reg)               tp->read32_mbox(tp, reg)
620
621 #define tw32(reg, val)                  tp->write32(tp, reg, val)
622 #define tw32_f(reg, val)                _tw32_flush(tp, (reg), (val), 0)
623 #define tw32_wait_f(reg, val, us)       _tw32_flush(tp, (reg), (val), (us))
624 #define tr32(reg)                       tp->read32(tp, reg)
625
626 static void tg3_write_mem(struct tg3 *tp, u32 off, u32 val)
627 {
628         unsigned long flags;
629
630         if (tg3_asic_rev(tp) == ASIC_REV_5906 &&
631             (off >= NIC_SRAM_STATS_BLK) && (off < NIC_SRAM_TX_BUFFER_DESC))
632                 return;
633
634         spin_lock_irqsave(&tp->indirect_lock, flags);
635         if (tg3_flag(tp, SRAM_USE_CONFIG)) {
636                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, off);
637                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
638
639                 /* Always leave this as zero. */
640                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
641         } else {
642                 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, off);
643                 tw32_f(TG3PCI_MEM_WIN_DATA, val);
644
645                 /* Always leave this as zero. */
646                 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, 0);
647         }
648         spin_unlock_irqrestore(&tp->indirect_lock, flags);
649 }
650
651 static void tg3_read_mem(struct tg3 *tp, u32 off, u32 *val)
652 {
653         unsigned long flags;
654
655         if (tg3_asic_rev(tp) == ASIC_REV_5906 &&
656             (off >= NIC_SRAM_STATS_BLK) && (off < NIC_SRAM_TX_BUFFER_DESC)) {
657                 *val = 0;
658                 return;
659         }
660
661         spin_lock_irqsave(&tp->indirect_lock, flags);
662         if (tg3_flag(tp, SRAM_USE_CONFIG)) {
663                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, off);
664                 pci_read_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
665
666                 /* Always leave this as zero. */
667                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
668         } else {
669                 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, off);
670                 *val = tr32(TG3PCI_MEM_WIN_DATA);
671
672                 /* Always leave this as zero. */
673                 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, 0);
674         }
675         spin_unlock_irqrestore(&tp->indirect_lock, flags);
676 }
677
678 static void tg3_ape_lock_init(struct tg3 *tp)
679 {
680         int i;
681         u32 regbase, bit;
682
683         if (tg3_asic_rev(tp) == ASIC_REV_5761)
684                 regbase = TG3_APE_LOCK_GRANT;
685         else
686                 regbase = TG3_APE_PER_LOCK_GRANT;
687
688         /* Make sure the driver hasn't any stale locks. */
689         for (i = TG3_APE_LOCK_PHY0; i <= TG3_APE_LOCK_GPIO; i++) {
690                 switch (i) {
691                 case TG3_APE_LOCK_PHY0:
692                 case TG3_APE_LOCK_PHY1:
693                 case TG3_APE_LOCK_PHY2:
694                 case TG3_APE_LOCK_PHY3:
695                         bit = APE_LOCK_GRANT_DRIVER;
696                         break;
697                 default:
698                         if (!tp->pci_fn)
699                                 bit = APE_LOCK_GRANT_DRIVER;
700                         else
701                                 bit = 1 << tp->pci_fn;
702                 }
703                 tg3_ape_write32(tp, regbase + 4 * i, bit);
704         }
705
706 }
707
708 static int tg3_ape_lock(struct tg3 *tp, int locknum)
709 {
710         int i, off;
711         int ret = 0;
712         u32 status, req, gnt, bit;
713
714         if (!tg3_flag(tp, ENABLE_APE))
715                 return 0;
716
717         switch (locknum) {
718         case TG3_APE_LOCK_GPIO:
719                 if (tg3_asic_rev(tp) == ASIC_REV_5761)
720                         return 0;
721         case TG3_APE_LOCK_GRC:
722         case TG3_APE_LOCK_MEM:
723                 if (!tp->pci_fn)
724                         bit = APE_LOCK_REQ_DRIVER;
725                 else
726                         bit = 1 << tp->pci_fn;
727                 break;
728         case TG3_APE_LOCK_PHY0:
729         case TG3_APE_LOCK_PHY1:
730         case TG3_APE_LOCK_PHY2:
731         case TG3_APE_LOCK_PHY3:
732                 bit = APE_LOCK_REQ_DRIVER;
733                 break;
734         default:
735                 return -EINVAL;
736         }
737
738         if (tg3_asic_rev(tp) == ASIC_REV_5761) {
739                 req = TG3_APE_LOCK_REQ;
740                 gnt = TG3_APE_LOCK_GRANT;
741         } else {
742                 req = TG3_APE_PER_LOCK_REQ;
743                 gnt = TG3_APE_PER_LOCK_GRANT;
744         }
745
746         off = 4 * locknum;
747
748         tg3_ape_write32(tp, req + off, bit);
749
750         /* Wait for up to 1 millisecond to acquire lock. */
751         for (i = 0; i < 100; i++) {
752                 status = tg3_ape_read32(tp, gnt + off);
753                 if (status == bit)
754                         break;
755                 if (pci_channel_offline(tp->pdev))
756                         break;
757
758                 udelay(10);
759         }
760
761         if (status != bit) {
762                 /* Revoke the lock request. */
763                 tg3_ape_write32(tp, gnt + off, bit);
764                 ret = -EBUSY;
765         }
766
767         return ret;
768 }
769
770 static void tg3_ape_unlock(struct tg3 *tp, int locknum)
771 {
772         u32 gnt, bit;
773
774         if (!tg3_flag(tp, ENABLE_APE))
775                 return;
776
777         switch (locknum) {
778         case TG3_APE_LOCK_GPIO:
779                 if (tg3_asic_rev(tp) == ASIC_REV_5761)
780                         return;
781         case TG3_APE_LOCK_GRC:
782         case TG3_APE_LOCK_MEM:
783                 if (!tp->pci_fn)
784                         bit = APE_LOCK_GRANT_DRIVER;
785                 else
786                         bit = 1 << tp->pci_fn;
787                 break;
788         case TG3_APE_LOCK_PHY0:
789         case TG3_APE_LOCK_PHY1:
790         case TG3_APE_LOCK_PHY2:
791         case TG3_APE_LOCK_PHY3:
792                 bit = APE_LOCK_GRANT_DRIVER;
793                 break;
794         default:
795                 return;
796         }
797
798         if (tg3_asic_rev(tp) == ASIC_REV_5761)
799                 gnt = TG3_APE_LOCK_GRANT;
800         else
801                 gnt = TG3_APE_PER_LOCK_GRANT;
802
803         tg3_ape_write32(tp, gnt + 4 * locknum, bit);
804 }
805
806 static int tg3_ape_event_lock(struct tg3 *tp, u32 timeout_us)
807 {
808         u32 apedata;
809
810         while (timeout_us) {
811                 if (tg3_ape_lock(tp, TG3_APE_LOCK_MEM))
812                         return -EBUSY;
813
814                 apedata = tg3_ape_read32(tp, TG3_APE_EVENT_STATUS);
815                 if (!(apedata & APE_EVENT_STATUS_EVENT_PENDING))
816                         break;
817
818                 tg3_ape_unlock(tp, TG3_APE_LOCK_MEM);
819
820                 udelay(10);
821                 timeout_us -= (timeout_us > 10) ? 10 : timeout_us;
822         }
823
824         return timeout_us ? 0 : -EBUSY;
825 }
826
827 static int tg3_ape_wait_for_event(struct tg3 *tp, u32 timeout_us)
828 {
829         u32 i, apedata;
830
831         for (i = 0; i < timeout_us / 10; i++) {
832                 apedata = tg3_ape_read32(tp, TG3_APE_EVENT_STATUS);
833
834                 if (!(apedata & APE_EVENT_STATUS_EVENT_PENDING))
835                         break;
836
837                 udelay(10);
838         }
839
840         return i == timeout_us / 10;
841 }
842
843 static int tg3_ape_scratchpad_read(struct tg3 *tp, u32 *data, u32 base_off,
844                                    u32 len)
845 {
846         int err;
847         u32 i, bufoff, msgoff, maxlen, apedata;
848
849         if (!tg3_flag(tp, APE_HAS_NCSI))
850                 return 0;
851
852         apedata = tg3_ape_read32(tp, TG3_APE_SEG_SIG);
853         if (apedata != APE_SEG_SIG_MAGIC)
854                 return -ENODEV;
855
856         apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
857         if (!(apedata & APE_FW_STATUS_READY))
858                 return -EAGAIN;
859
860         bufoff = tg3_ape_read32(tp, TG3_APE_SEG_MSG_BUF_OFF) +
861                  TG3_APE_SHMEM_BASE;
862         msgoff = bufoff + 2 * sizeof(u32);
863         maxlen = tg3_ape_read32(tp, TG3_APE_SEG_MSG_BUF_LEN);
864
865         while (len) {
866                 u32 length;
867
868                 /* Cap xfer sizes to scratchpad limits. */
869                 length = (len > maxlen) ? maxlen : len;
870                 len -= length;
871
872                 apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
873                 if (!(apedata & APE_FW_STATUS_READY))
874                         return -EAGAIN;
875
876                 /* Wait for up to 1 msec for APE to service previous event. */
877                 err = tg3_ape_event_lock(tp, 1000);
878                 if (err)
879                         return err;
880
881                 apedata = APE_EVENT_STATUS_DRIVER_EVNT |
882                           APE_EVENT_STATUS_SCRTCHPD_READ |
883                           APE_EVENT_STATUS_EVENT_PENDING;
884                 tg3_ape_write32(tp, TG3_APE_EVENT_STATUS, apedata);
885
886                 tg3_ape_write32(tp, bufoff, base_off);
887                 tg3_ape_write32(tp, bufoff + sizeof(u32), length);
888
889                 tg3_ape_unlock(tp, TG3_APE_LOCK_MEM);
890                 tg3_ape_write32(tp, TG3_APE_EVENT, APE_EVENT_1);
891
892                 base_off += length;
893
894                 if (tg3_ape_wait_for_event(tp, 30000))
895                         return -EAGAIN;
896
897                 for (i = 0; length; i += 4, length -= 4) {
898                         u32 val = tg3_ape_read32(tp, msgoff + i);
899                         memcpy(data, &val, sizeof(u32));
900                         data++;
901                 }
902         }
903
904         return 0;
905 }
906
907 static int tg3_ape_send_event(struct tg3 *tp, u32 event)
908 {
909         int err;
910         u32 apedata;
911
912         apedata = tg3_ape_read32(tp, TG3_APE_SEG_SIG);
913         if (apedata != APE_SEG_SIG_MAGIC)
914                 return -EAGAIN;
915
916         apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
917         if (!(apedata & APE_FW_STATUS_READY))
918                 return -EAGAIN;
919
920         /* Wait for up to 1 millisecond for APE to service previous event. */
921         err = tg3_ape_event_lock(tp, 1000);
922         if (err)
923                 return err;
924
925         tg3_ape_write32(tp, TG3_APE_EVENT_STATUS,
926                         event | APE_EVENT_STATUS_EVENT_PENDING);
927
928         tg3_ape_unlock(tp, TG3_APE_LOCK_MEM);
929         tg3_ape_write32(tp, TG3_APE_EVENT, APE_EVENT_1);
930
931         return 0;
932 }
933
934 static void tg3_ape_driver_state_change(struct tg3 *tp, int kind)
935 {
936         u32 event;
937         u32 apedata;
938
939         if (!tg3_flag(tp, ENABLE_APE))
940                 return;
941
942         switch (kind) {
943         case RESET_KIND_INIT:
944                 tg3_ape_write32(tp, TG3_APE_HOST_SEG_SIG,
945                                 APE_HOST_SEG_SIG_MAGIC);
946                 tg3_ape_write32(tp, TG3_APE_HOST_SEG_LEN,
947                                 APE_HOST_SEG_LEN_MAGIC);
948                 apedata = tg3_ape_read32(tp, TG3_APE_HOST_INIT_COUNT);
949                 tg3_ape_write32(tp, TG3_APE_HOST_INIT_COUNT, ++apedata);
950                 tg3_ape_write32(tp, TG3_APE_HOST_DRIVER_ID,
951                         APE_HOST_DRIVER_ID_MAGIC(TG3_MAJ_NUM, TG3_MIN_NUM));
952                 tg3_ape_write32(tp, TG3_APE_HOST_BEHAVIOR,
953                                 APE_HOST_BEHAV_NO_PHYLOCK);
954                 tg3_ape_write32(tp, TG3_APE_HOST_DRVR_STATE,
955                                     TG3_APE_HOST_DRVR_STATE_START);
956
957                 event = APE_EVENT_STATUS_STATE_START;
958                 break;
959         case RESET_KIND_SHUTDOWN:
960                 /* With the interface we are currently using,
961                  * APE does not track driver state.  Wiping
962                  * out the HOST SEGMENT SIGNATURE forces
963                  * the APE to assume OS absent status.
964                  */
965                 tg3_ape_write32(tp, TG3_APE_HOST_SEG_SIG, 0x0);
966
967                 if (device_may_wakeup(&tp->pdev->dev) &&
968                     tg3_flag(tp, WOL_ENABLE)) {
969                         tg3_ape_write32(tp, TG3_APE_HOST_WOL_SPEED,
970                                             TG3_APE_HOST_WOL_SPEED_AUTO);
971                         apedata = TG3_APE_HOST_DRVR_STATE_WOL;
972                 } else
973                         apedata = TG3_APE_HOST_DRVR_STATE_UNLOAD;
974
975                 tg3_ape_write32(tp, TG3_APE_HOST_DRVR_STATE, apedata);
976
977                 event = APE_EVENT_STATUS_STATE_UNLOAD;
978                 break;
979         default:
980                 return;
981         }
982
983         event |= APE_EVENT_STATUS_DRIVER_EVNT | APE_EVENT_STATUS_STATE_CHNGE;
984
985         tg3_ape_send_event(tp, event);
986 }
987
988 static void tg3_disable_ints(struct tg3 *tp)
989 {
990         int i;
991
992         tw32(TG3PCI_MISC_HOST_CTRL,
993              (tp->misc_host_ctrl | MISC_HOST_CTRL_MASK_PCI_INT));
994         for (i = 0; i < tp->irq_max; i++)
995                 tw32_mailbox_f(tp->napi[i].int_mbox, 0x00000001);
996 }
997
998 static void tg3_enable_ints(struct tg3 *tp)
999 {
1000         int i;
1001
1002         tp->irq_sync = 0;
1003         wmb();
1004
1005         tw32(TG3PCI_MISC_HOST_CTRL,
1006              (tp->misc_host_ctrl & ~MISC_HOST_CTRL_MASK_PCI_INT));
1007
1008         tp->coal_now = tp->coalesce_mode | HOSTCC_MODE_ENABLE;
1009         for (i = 0; i < tp->irq_cnt; i++) {
1010                 struct tg3_napi *tnapi = &tp->napi[i];
1011
1012                 tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
1013                 if (tg3_flag(tp, 1SHOT_MSI))
1014                         tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
1015
1016                 tp->coal_now |= tnapi->coal_now;
1017         }
1018
1019         /* Force an initial interrupt */
1020         if (!tg3_flag(tp, TAGGED_STATUS) &&
1021             (tp->napi[0].hw_status->status & SD_STATUS_UPDATED))
1022                 tw32(GRC_LOCAL_CTRL, tp->grc_local_ctrl | GRC_LCLCTRL_SETINT);
1023         else
1024                 tw32(HOSTCC_MODE, tp->coal_now);
1025
1026         tp->coal_now &= ~(tp->napi[0].coal_now | tp->napi[1].coal_now);
1027 }
1028
1029 static inline unsigned int tg3_has_work(struct tg3_napi *tnapi)
1030 {
1031         struct tg3 *tp = tnapi->tp;
1032         struct tg3_hw_status *sblk = tnapi->hw_status;
1033         unsigned int work_exists = 0;
1034
1035         /* check for phy events */
1036         if (!(tg3_flag(tp, USE_LINKCHG_REG) || tg3_flag(tp, POLL_SERDES))) {
1037                 if (sblk->status & SD_STATUS_LINK_CHG)
1038                         work_exists = 1;
1039         }
1040
1041         /* check for TX work to do */
1042         if (sblk->idx[0].tx_consumer != tnapi->tx_cons)
1043                 work_exists = 1;
1044
1045         /* check for RX work to do */
1046         if (tnapi->rx_rcb_prod_idx &&
1047             *(tnapi->rx_rcb_prod_idx) != tnapi->rx_rcb_ptr)
1048                 work_exists = 1;
1049
1050         return work_exists;
1051 }
1052
1053 /* tg3_int_reenable
1054  *  similar to tg3_enable_ints, but it accurately determines whether there
1055  *  is new work pending and can return without flushing the PIO write
1056  *  which reenables interrupts
1057  */
1058 static void tg3_int_reenable(struct tg3_napi *tnapi)
1059 {
1060         struct tg3 *tp = tnapi->tp;
1061
1062         tw32_mailbox(tnapi->int_mbox, tnapi->last_tag << 24);
1063         mmiowb();
1064
1065         /* When doing tagged status, this work check is unnecessary.
1066          * The last_tag we write above tells the chip which piece of
1067          * work we've completed.
1068          */
1069         if (!tg3_flag(tp, TAGGED_STATUS) && tg3_has_work(tnapi))
1070                 tw32(HOSTCC_MODE, tp->coalesce_mode |
1071                      HOSTCC_MODE_ENABLE | tnapi->coal_now);
1072 }
1073
1074 static void tg3_switch_clocks(struct tg3 *tp)
1075 {
1076         u32 clock_ctrl;
1077         u32 orig_clock_ctrl;
1078
1079         if (tg3_flag(tp, CPMU_PRESENT) || tg3_flag(tp, 5780_CLASS))
1080                 return;
1081
1082         clock_ctrl = tr32(TG3PCI_CLOCK_CTRL);
1083
1084         orig_clock_ctrl = clock_ctrl;
1085         clock_ctrl &= (CLOCK_CTRL_FORCE_CLKRUN |
1086                        CLOCK_CTRL_CLKRUN_OENABLE |
1087                        0x1f);
1088         tp->pci_clock_ctrl = clock_ctrl;
1089
1090         if (tg3_flag(tp, 5705_PLUS)) {
1091                 if (orig_clock_ctrl & CLOCK_CTRL_625_CORE) {
1092                         tw32_wait_f(TG3PCI_CLOCK_CTRL,
1093                                     clock_ctrl | CLOCK_CTRL_625_CORE, 40);
1094                 }
1095         } else if ((orig_clock_ctrl & CLOCK_CTRL_44MHZ_CORE) != 0) {
1096                 tw32_wait_f(TG3PCI_CLOCK_CTRL,
1097                             clock_ctrl |
1098                             (CLOCK_CTRL_44MHZ_CORE | CLOCK_CTRL_ALTCLK),
1099                             40);
1100                 tw32_wait_f(TG3PCI_CLOCK_CTRL,
1101                             clock_ctrl | (CLOCK_CTRL_ALTCLK),
1102                             40);
1103         }
1104         tw32_wait_f(TG3PCI_CLOCK_CTRL, clock_ctrl, 40);
1105 }
1106
1107 #define PHY_BUSY_LOOPS  5000
1108
1109 static int __tg3_readphy(struct tg3 *tp, unsigned int phy_addr, int reg,
1110                          u32 *val)
1111 {
1112         u32 frame_val;
1113         unsigned int loops;
1114         int ret;
1115
1116         if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1117                 tw32_f(MAC_MI_MODE,
1118                      (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
1119                 udelay(80);
1120         }
1121
1122         tg3_ape_lock(tp, tp->phy_ape_lock);
1123
1124         *val = 0x0;
1125
1126         frame_val  = ((phy_addr << MI_COM_PHY_ADDR_SHIFT) &
1127                       MI_COM_PHY_ADDR_MASK);
1128         frame_val |= ((reg << MI_COM_REG_ADDR_SHIFT) &
1129                       MI_COM_REG_ADDR_MASK);
1130         frame_val |= (MI_COM_CMD_READ | MI_COM_START);
1131
1132         tw32_f(MAC_MI_COM, frame_val);
1133
1134         loops = PHY_BUSY_LOOPS;
1135         while (loops != 0) {
1136                 udelay(10);
1137                 frame_val = tr32(MAC_MI_COM);
1138
1139                 if ((frame_val & MI_COM_BUSY) == 0) {
1140                         udelay(5);
1141                         frame_val = tr32(MAC_MI_COM);
1142                         break;
1143                 }
1144                 loops -= 1;
1145         }
1146
1147         ret = -EBUSY;
1148         if (loops != 0) {
1149                 *val = frame_val & MI_COM_DATA_MASK;
1150                 ret = 0;
1151         }
1152
1153         if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1154                 tw32_f(MAC_MI_MODE, tp->mi_mode);
1155                 udelay(80);
1156         }
1157
1158         tg3_ape_unlock(tp, tp->phy_ape_lock);
1159
1160         return ret;
1161 }
1162
1163 static int tg3_readphy(struct tg3 *tp, int reg, u32 *val)
1164 {
1165         return __tg3_readphy(tp, tp->phy_addr, reg, val);
1166 }
1167
1168 static int __tg3_writephy(struct tg3 *tp, unsigned int phy_addr, int reg,
1169                           u32 val)
1170 {
1171         u32 frame_val;
1172         unsigned int loops;
1173         int ret;
1174
1175         if ((tp->phy_flags & TG3_PHYFLG_IS_FET) &&
1176             (reg == MII_CTRL1000 || reg == MII_TG3_AUX_CTRL))
1177                 return 0;
1178
1179         if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1180                 tw32_f(MAC_MI_MODE,
1181                      (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
1182                 udelay(80);
1183         }
1184
1185         tg3_ape_lock(tp, tp->phy_ape_lock);
1186
1187         frame_val  = ((phy_addr << MI_COM_PHY_ADDR_SHIFT) &
1188                       MI_COM_PHY_ADDR_MASK);
1189         frame_val |= ((reg << MI_COM_REG_ADDR_SHIFT) &
1190                       MI_COM_REG_ADDR_MASK);
1191         frame_val |= (val & MI_COM_DATA_MASK);
1192         frame_val |= (MI_COM_CMD_WRITE | MI_COM_START);
1193
1194         tw32_f(MAC_MI_COM, frame_val);
1195
1196         loops = PHY_BUSY_LOOPS;
1197         while (loops != 0) {
1198                 udelay(10);
1199                 frame_val = tr32(MAC_MI_COM);
1200                 if ((frame_val & MI_COM_BUSY) == 0) {
1201                         udelay(5);
1202                         frame_val = tr32(MAC_MI_COM);
1203                         break;
1204                 }
1205                 loops -= 1;
1206         }
1207
1208         ret = -EBUSY;
1209         if (loops != 0)
1210                 ret = 0;
1211
1212         if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1213                 tw32_f(MAC_MI_MODE, tp->mi_mode);
1214                 udelay(80);
1215         }
1216
1217         tg3_ape_unlock(tp, tp->phy_ape_lock);
1218
1219         return ret;
1220 }
1221
1222 static int tg3_writephy(struct tg3 *tp, int reg, u32 val)
1223 {
1224         return __tg3_writephy(tp, tp->phy_addr, reg, val);
1225 }
1226
1227 static int tg3_phy_cl45_write(struct tg3 *tp, u32 devad, u32 addr, u32 val)
1228 {
1229         int err;
1230
1231         err = tg3_writephy(tp, MII_TG3_MMD_CTRL, devad);
1232         if (err)
1233                 goto done;
1234
1235         err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, addr);
1236         if (err)
1237                 goto done;
1238
1239         err = tg3_writephy(tp, MII_TG3_MMD_CTRL,
1240                            MII_TG3_MMD_CTRL_DATA_NOINC | devad);
1241         if (err)
1242                 goto done;
1243
1244         err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, val);
1245
1246 done:
1247         return err;
1248 }
1249
1250 static int tg3_phy_cl45_read(struct tg3 *tp, u32 devad, u32 addr, u32 *val)
1251 {
1252         int err;
1253
1254         err = tg3_writephy(tp, MII_TG3_MMD_CTRL, devad);
1255         if (err)
1256                 goto done;
1257
1258         err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, addr);
1259         if (err)
1260                 goto done;
1261
1262         err = tg3_writephy(tp, MII_TG3_MMD_CTRL,
1263                            MII_TG3_MMD_CTRL_DATA_NOINC | devad);
1264         if (err)
1265                 goto done;
1266
1267         err = tg3_readphy(tp, MII_TG3_MMD_ADDRESS, val);
1268
1269 done:
1270         return err;
1271 }
1272
1273 static int tg3_phydsp_read(struct tg3 *tp, u32 reg, u32 *val)
1274 {
1275         int err;
1276
1277         err = tg3_writephy(tp, MII_TG3_DSP_ADDRESS, reg);
1278         if (!err)
1279                 err = tg3_readphy(tp, MII_TG3_DSP_RW_PORT, val);
1280
1281         return err;
1282 }
1283
1284 static int tg3_phydsp_write(struct tg3 *tp, u32 reg, u32 val)
1285 {
1286         int err;
1287
1288         err = tg3_writephy(tp, MII_TG3_DSP_ADDRESS, reg);
1289         if (!err)
1290                 err = tg3_writephy(tp, MII_TG3_DSP_RW_PORT, val);
1291
1292         return err;
1293 }
1294
1295 static int tg3_phy_auxctl_read(struct tg3 *tp, int reg, u32 *val)
1296 {
1297         int err;
1298
1299         err = tg3_writephy(tp, MII_TG3_AUX_CTRL,
1300                            (reg << MII_TG3_AUXCTL_MISC_RDSEL_SHIFT) |
1301                            MII_TG3_AUXCTL_SHDWSEL_MISC);
1302         if (!err)
1303                 err = tg3_readphy(tp, MII_TG3_AUX_CTRL, val);
1304
1305         return err;
1306 }
1307
1308 static int tg3_phy_auxctl_write(struct tg3 *tp, int reg, u32 set)
1309 {
1310         if (reg == MII_TG3_AUXCTL_SHDWSEL_MISC)
1311                 set |= MII_TG3_AUXCTL_MISC_WREN;
1312
1313         return tg3_writephy(tp, MII_TG3_AUX_CTRL, set | reg);
1314 }
1315
1316 static int tg3_phy_toggle_auxctl_smdsp(struct tg3 *tp, bool enable)
1317 {
1318         u32 val;
1319         int err;
1320
1321         err = tg3_phy_auxctl_read(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL, &val);
1322
1323         if (err)
1324                 return err;
1325
1326         if (enable)
1327                 val |= MII_TG3_AUXCTL_ACTL_SMDSP_ENA;
1328         else
1329                 val &= ~MII_TG3_AUXCTL_ACTL_SMDSP_ENA;
1330
1331         err = tg3_phy_auxctl_write((tp), MII_TG3_AUXCTL_SHDWSEL_AUXCTL,
1332                                    val | MII_TG3_AUXCTL_ACTL_TX_6DB);
1333
1334         return err;
1335 }
1336
1337 static int tg3_phy_shdw_write(struct tg3 *tp, int reg, u32 val)
1338 {
1339         return tg3_writephy(tp, MII_TG3_MISC_SHDW,
1340                             reg | val | MII_TG3_MISC_SHDW_WREN);
1341 }
1342
1343 static int tg3_bmcr_reset(struct tg3 *tp)
1344 {
1345         u32 phy_control;
1346         int limit, err;
1347
1348         /* OK, reset it, and poll the BMCR_RESET bit until it
1349          * clears or we time out.
1350          */
1351         phy_control = BMCR_RESET;
1352         err = tg3_writephy(tp, MII_BMCR, phy_control);
1353         if (err != 0)
1354                 return -EBUSY;
1355
1356         limit = 5000;
1357         while (limit--) {
1358                 err = tg3_readphy(tp, MII_BMCR, &phy_control);
1359                 if (err != 0)
1360                         return -EBUSY;
1361
1362                 if ((phy_control & BMCR_RESET) == 0) {
1363                         udelay(40);
1364                         break;
1365                 }
1366                 udelay(10);
1367         }
1368         if (limit < 0)
1369                 return -EBUSY;
1370
1371         return 0;
1372 }
1373
1374 static int tg3_mdio_read(struct mii_bus *bp, int mii_id, int reg)
1375 {
1376         struct tg3 *tp = bp->priv;
1377         u32 val;
1378
1379         spin_lock_bh(&tp->lock);
1380
1381         if (__tg3_readphy(tp, mii_id, reg, &val))
1382                 val = -EIO;
1383
1384         spin_unlock_bh(&tp->lock);
1385
1386         return val;
1387 }
1388
1389 static int tg3_mdio_write(struct mii_bus *bp, int mii_id, int reg, u16 val)
1390 {
1391         struct tg3 *tp = bp->priv;
1392         u32 ret = 0;
1393
1394         spin_lock_bh(&tp->lock);
1395
1396         if (__tg3_writephy(tp, mii_id, reg, val))
1397                 ret = -EIO;
1398
1399         spin_unlock_bh(&tp->lock);
1400
1401         return ret;
1402 }
1403
1404 static void tg3_mdio_config_5785(struct tg3 *tp)
1405 {
1406         u32 val;
1407         struct phy_device *phydev;
1408
1409         phydev = tp->mdio_bus->phy_map[tp->phy_addr];
1410         switch (phydev->drv->phy_id & phydev->drv->phy_id_mask) {
1411         case PHY_ID_BCM50610:
1412         case PHY_ID_BCM50610M:
1413                 val = MAC_PHYCFG2_50610_LED_MODES;
1414                 break;
1415         case PHY_ID_BCMAC131:
1416                 val = MAC_PHYCFG2_AC131_LED_MODES;
1417                 break;
1418         case PHY_ID_RTL8211C:
1419                 val = MAC_PHYCFG2_RTL8211C_LED_MODES;
1420                 break;
1421         case PHY_ID_RTL8201E:
1422                 val = MAC_PHYCFG2_RTL8201E_LED_MODES;
1423                 break;
1424         default:
1425                 return;
1426         }
1427
1428         if (phydev->interface != PHY_INTERFACE_MODE_RGMII) {
1429                 tw32(MAC_PHYCFG2, val);
1430
1431                 val = tr32(MAC_PHYCFG1);
1432                 val &= ~(MAC_PHYCFG1_RGMII_INT |
1433                          MAC_PHYCFG1_RXCLK_TO_MASK | MAC_PHYCFG1_TXCLK_TO_MASK);
1434                 val |= MAC_PHYCFG1_RXCLK_TIMEOUT | MAC_PHYCFG1_TXCLK_TIMEOUT;
1435                 tw32(MAC_PHYCFG1, val);
1436
1437                 return;
1438         }
1439
1440         if (!tg3_flag(tp, RGMII_INBAND_DISABLE))
1441                 val |= MAC_PHYCFG2_EMODE_MASK_MASK |
1442                        MAC_PHYCFG2_FMODE_MASK_MASK |
1443                        MAC_PHYCFG2_GMODE_MASK_MASK |
1444                        MAC_PHYCFG2_ACT_MASK_MASK   |
1445                        MAC_PHYCFG2_QUAL_MASK_MASK |
1446                        MAC_PHYCFG2_INBAND_ENABLE;
1447
1448         tw32(MAC_PHYCFG2, val);
1449
1450         val = tr32(MAC_PHYCFG1);
1451         val &= ~(MAC_PHYCFG1_RXCLK_TO_MASK | MAC_PHYCFG1_TXCLK_TO_MASK |
1452                  MAC_PHYCFG1_RGMII_EXT_RX_DEC | MAC_PHYCFG1_RGMII_SND_STAT_EN);
1453         if (!tg3_flag(tp, RGMII_INBAND_DISABLE)) {
1454                 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
1455                         val |= MAC_PHYCFG1_RGMII_EXT_RX_DEC;
1456                 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
1457                         val |= MAC_PHYCFG1_RGMII_SND_STAT_EN;
1458         }
1459         val |= MAC_PHYCFG1_RXCLK_TIMEOUT | MAC_PHYCFG1_TXCLK_TIMEOUT |
1460                MAC_PHYCFG1_RGMII_INT | MAC_PHYCFG1_TXC_DRV;
1461         tw32(MAC_PHYCFG1, val);
1462
1463         val = tr32(MAC_EXT_RGMII_MODE);
1464         val &= ~(MAC_RGMII_MODE_RX_INT_B |
1465                  MAC_RGMII_MODE_RX_QUALITY |
1466                  MAC_RGMII_MODE_RX_ACTIVITY |
1467                  MAC_RGMII_MODE_RX_ENG_DET |
1468                  MAC_RGMII_MODE_TX_ENABLE |
1469                  MAC_RGMII_MODE_TX_LOWPWR |
1470                  MAC_RGMII_MODE_TX_RESET);
1471         if (!tg3_flag(tp, RGMII_INBAND_DISABLE)) {
1472                 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
1473                         val |= MAC_RGMII_MODE_RX_INT_B |
1474                                MAC_RGMII_MODE_RX_QUALITY |
1475                                MAC_RGMII_MODE_RX_ACTIVITY |
1476                                MAC_RGMII_MODE_RX_ENG_DET;
1477                 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
1478                         val |= MAC_RGMII_MODE_TX_ENABLE |
1479                                MAC_RGMII_MODE_TX_LOWPWR |
1480                                MAC_RGMII_MODE_TX_RESET;
1481         }
1482         tw32(MAC_EXT_RGMII_MODE, val);
1483 }
1484
1485 static void tg3_mdio_start(struct tg3 *tp)
1486 {
1487         tp->mi_mode &= ~MAC_MI_MODE_AUTO_POLL;
1488         tw32_f(MAC_MI_MODE, tp->mi_mode);
1489         udelay(80);
1490
1491         if (tg3_flag(tp, MDIOBUS_INITED) &&
1492             tg3_asic_rev(tp) == ASIC_REV_5785)
1493                 tg3_mdio_config_5785(tp);
1494 }
1495
1496 static int tg3_mdio_init(struct tg3 *tp)
1497 {
1498         int i;
1499         u32 reg;
1500         struct phy_device *phydev;
1501
1502         if (tg3_flag(tp, 5717_PLUS)) {
1503                 u32 is_serdes;
1504
1505                 tp->phy_addr = tp->pci_fn + 1;
1506
1507                 if (tg3_chip_rev_id(tp) != CHIPREV_ID_5717_A0)
1508                         is_serdes = tr32(SG_DIG_STATUS) & SG_DIG_IS_SERDES;
1509                 else
1510                         is_serdes = tr32(TG3_CPMU_PHY_STRAP) &
1511                                     TG3_CPMU_PHY_STRAP_IS_SERDES;
1512                 if (is_serdes)
1513                         tp->phy_addr += 7;
1514         } else if (tg3_flag(tp, IS_SSB_CORE) && tg3_flag(tp, ROBOSWITCH)) {
1515                 int addr;
1516
1517                 addr = ssb_gige_get_phyaddr(tp->pdev);
1518                 if (addr < 0)
1519                         return addr;
1520                 tp->phy_addr = addr;
1521         } else
1522                 tp->phy_addr = TG3_PHY_MII_ADDR;
1523
1524         tg3_mdio_start(tp);
1525
1526         if (!tg3_flag(tp, USE_PHYLIB) || tg3_flag(tp, MDIOBUS_INITED))
1527                 return 0;
1528
1529         tp->mdio_bus = mdiobus_alloc();
1530         if (tp->mdio_bus == NULL)
1531                 return -ENOMEM;
1532
1533         tp->mdio_bus->name     = "tg3 mdio bus";
1534         snprintf(tp->mdio_bus->id, MII_BUS_ID_SIZE, "%x",
1535                  (tp->pdev->bus->number << 8) | tp->pdev->devfn);
1536         tp->mdio_bus->priv     = tp;
1537         tp->mdio_bus->parent   = &tp->pdev->dev;
1538         tp->mdio_bus->read     = &tg3_mdio_read;
1539         tp->mdio_bus->write    = &tg3_mdio_write;
1540         tp->mdio_bus->phy_mask = ~(1 << tp->phy_addr);
1541         tp->mdio_bus->irq      = &tp->mdio_irq[0];
1542
1543         for (i = 0; i < PHY_MAX_ADDR; i++)
1544                 tp->mdio_bus->irq[i] = PHY_POLL;
1545
1546         /* The bus registration will look for all the PHYs on the mdio bus.
1547          * Unfortunately, it does not ensure the PHY is powered up before
1548          * accessing the PHY ID registers.  A chip reset is the
1549          * quickest way to bring the device back to an operational state..
1550          */
1551         if (tg3_readphy(tp, MII_BMCR, &reg) || (reg & BMCR_PDOWN))
1552                 tg3_bmcr_reset(tp);
1553
1554         i = mdiobus_register(tp->mdio_bus);
1555         if (i) {
1556                 dev_warn(&tp->pdev->dev, "mdiobus_reg failed (0x%x)\n", i);
1557                 mdiobus_free(tp->mdio_bus);
1558                 return i;
1559         }
1560
1561         phydev = tp->mdio_bus->phy_map[tp->phy_addr];
1562
1563         if (!phydev || !phydev->drv) {
1564                 dev_warn(&tp->pdev->dev, "No PHY devices\n");
1565                 mdiobus_unregister(tp->mdio_bus);
1566                 mdiobus_free(tp->mdio_bus);
1567                 return -ENODEV;
1568         }
1569
1570         switch (phydev->drv->phy_id & phydev->drv->phy_id_mask) {
1571         case PHY_ID_BCM57780:
1572                 phydev->interface = PHY_INTERFACE_MODE_GMII;
1573                 phydev->dev_flags |= PHY_BRCM_AUTO_PWRDWN_ENABLE;
1574                 break;
1575         case PHY_ID_BCM50610:
1576         case PHY_ID_BCM50610M:
1577                 phydev->dev_flags |= PHY_BRCM_CLEAR_RGMII_MODE |
1578                                      PHY_BRCM_RX_REFCLK_UNUSED |
1579                                      PHY_BRCM_DIS_TXCRXC_NOENRGY |
1580                                      PHY_BRCM_AUTO_PWRDWN_ENABLE;
1581                 if (tg3_flag(tp, RGMII_INBAND_DISABLE))
1582                         phydev->dev_flags |= PHY_BRCM_STD_IBND_DISABLE;
1583                 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
1584                         phydev->dev_flags |= PHY_BRCM_EXT_IBND_RX_ENABLE;
1585                 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
1586                         phydev->dev_flags |= PHY_BRCM_EXT_IBND_TX_ENABLE;
1587                 /* fallthru */
1588         case PHY_ID_RTL8211C:
1589                 phydev->interface = PHY_INTERFACE_MODE_RGMII;
1590                 break;
1591         case PHY_ID_RTL8201E:
1592         case PHY_ID_BCMAC131:
1593                 phydev->interface = PHY_INTERFACE_MODE_MII;
1594                 phydev->dev_flags |= PHY_BRCM_AUTO_PWRDWN_ENABLE;
1595                 tp->phy_flags |= TG3_PHYFLG_IS_FET;
1596                 break;
1597         }
1598
1599         tg3_flag_set(tp, MDIOBUS_INITED);
1600
1601         if (tg3_asic_rev(tp) == ASIC_REV_5785)
1602                 tg3_mdio_config_5785(tp);
1603
1604         return 0;
1605 }
1606
1607 static void tg3_mdio_fini(struct tg3 *tp)
1608 {
1609         if (tg3_flag(tp, MDIOBUS_INITED)) {
1610                 tg3_flag_clear(tp, MDIOBUS_INITED);
1611                 mdiobus_unregister(tp->mdio_bus);
1612                 mdiobus_free(tp->mdio_bus);
1613         }
1614 }
1615
1616 /* tp->lock is held. */
1617 static inline void tg3_generate_fw_event(struct tg3 *tp)
1618 {
1619         u32 val;
1620
1621         val = tr32(GRC_RX_CPU_EVENT);
1622         val |= GRC_RX_CPU_DRIVER_EVENT;
1623         tw32_f(GRC_RX_CPU_EVENT, val);
1624
1625         tp->last_event_jiffies = jiffies;
1626 }
1627
1628 #define TG3_FW_EVENT_TIMEOUT_USEC 2500
1629
1630 /* tp->lock is held. */
1631 static void tg3_wait_for_event_ack(struct tg3 *tp)
1632 {
1633         int i;
1634         unsigned int delay_cnt;
1635         long time_remain;
1636
1637         /* If enough time has passed, no wait is necessary. */
1638         time_remain = (long)(tp->last_event_jiffies + 1 +
1639                       usecs_to_jiffies(TG3_FW_EVENT_TIMEOUT_USEC)) -
1640                       (long)jiffies;
1641         if (time_remain < 0)
1642                 return;
1643
1644         /* Check if we can shorten the wait time. */
1645         delay_cnt = jiffies_to_usecs(time_remain);
1646         if (delay_cnt > TG3_FW_EVENT_TIMEOUT_USEC)
1647                 delay_cnt = TG3_FW_EVENT_TIMEOUT_USEC;
1648         delay_cnt = (delay_cnt >> 3) + 1;
1649
1650         for (i = 0; i < delay_cnt; i++) {
1651                 if (!(tr32(GRC_RX_CPU_EVENT) & GRC_RX_CPU_DRIVER_EVENT))
1652                         break;
1653                 if (pci_channel_offline(tp->pdev))
1654                         break;
1655
1656                 udelay(8);
1657         }
1658 }
1659
1660 /* tp->lock is held. */
1661 static void tg3_phy_gather_ump_data(struct tg3 *tp, u32 *data)
1662 {
1663         u32 reg, val;
1664
1665         val = 0;
1666         if (!tg3_readphy(tp, MII_BMCR, &reg))
1667                 val = reg << 16;
1668         if (!tg3_readphy(tp, MII_BMSR, &reg))
1669                 val |= (reg & 0xffff);
1670         *data++ = val;
1671
1672         val = 0;
1673         if (!tg3_readphy(tp, MII_ADVERTISE, &reg))
1674                 val = reg << 16;
1675         if (!tg3_readphy(tp, MII_LPA, &reg))
1676                 val |= (reg & 0xffff);
1677         *data++ = val;
1678
1679         val = 0;
1680         if (!(tp->phy_flags & TG3_PHYFLG_MII_SERDES)) {
1681                 if (!tg3_readphy(tp, MII_CTRL1000, &reg))
1682                         val = reg << 16;
1683                 if (!tg3_readphy(tp, MII_STAT1000, &reg))
1684                         val |= (reg & 0xffff);
1685         }
1686         *data++ = val;
1687
1688         if (!tg3_readphy(tp, MII_PHYADDR, &reg))
1689                 val = reg << 16;
1690         else
1691                 val = 0;
1692         *data++ = val;
1693 }
1694
1695 /* tp->lock is held. */
1696 static void tg3_ump_link_report(struct tg3 *tp)
1697 {
1698         u32 data[4];
1699
1700         if (!tg3_flag(tp, 5780_CLASS) || !tg3_flag(tp, ENABLE_ASF))
1701                 return;
1702
1703         tg3_phy_gather_ump_data(tp, data);
1704
1705         tg3_wait_for_event_ack(tp);
1706
1707         tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX, FWCMD_NICDRV_LINK_UPDATE);
1708         tg3_write_mem(tp, NIC_SRAM_FW_CMD_LEN_MBOX, 14);
1709         tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x0, data[0]);
1710         tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x4, data[1]);
1711         tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x8, data[2]);
1712         tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0xc, data[3]);
1713
1714         tg3_generate_fw_event(tp);
1715 }
1716
1717 /* tp->lock is held. */
1718 static void tg3_stop_fw(struct tg3 *tp)
1719 {
1720         if (tg3_flag(tp, ENABLE_ASF) && !tg3_flag(tp, ENABLE_APE)) {
1721                 /* Wait for RX cpu to ACK the previous event. */
1722                 tg3_wait_for_event_ack(tp);
1723
1724                 tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX, FWCMD_NICDRV_PAUSE_FW);
1725
1726                 tg3_generate_fw_event(tp);
1727
1728                 /* Wait for RX cpu to ACK this event. */
1729                 tg3_wait_for_event_ack(tp);
1730         }
1731 }
1732
1733 /* tp->lock is held. */
1734 static void tg3_write_sig_pre_reset(struct tg3 *tp, int kind)
1735 {
1736         tg3_write_mem(tp, NIC_SRAM_FIRMWARE_MBOX,
1737                       NIC_SRAM_FIRMWARE_MBOX_MAGIC1);
1738
1739         if (tg3_flag(tp, ASF_NEW_HANDSHAKE)) {
1740                 switch (kind) {
1741                 case RESET_KIND_INIT:
1742                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1743                                       DRV_STATE_START);
1744                         break;
1745
1746                 case RESET_KIND_SHUTDOWN:
1747                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1748                                       DRV_STATE_UNLOAD);
1749                         break;
1750
1751                 case RESET_KIND_SUSPEND:
1752                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1753                                       DRV_STATE_SUSPEND);
1754                         break;
1755
1756                 default:
1757                         break;
1758                 }
1759         }
1760 }
1761
1762 /* tp->lock is held. */
1763 static void tg3_write_sig_post_reset(struct tg3 *tp, int kind)
1764 {
1765         if (tg3_flag(tp, ASF_NEW_HANDSHAKE)) {
1766                 switch (kind) {
1767                 case RESET_KIND_INIT:
1768                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1769                                       DRV_STATE_START_DONE);
1770                         break;
1771
1772                 case RESET_KIND_SHUTDOWN:
1773                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1774                                       DRV_STATE_UNLOAD_DONE);
1775                         break;
1776
1777                 default:
1778                         break;
1779                 }
1780         }
1781 }
1782
1783 /* tp->lock is held. */
1784 static void tg3_write_sig_legacy(struct tg3 *tp, int kind)
1785 {
1786         if (tg3_flag(tp, ENABLE_ASF)) {
1787                 switch (kind) {
1788                 case RESET_KIND_INIT:
1789                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1790                                       DRV_STATE_START);
1791                         break;
1792
1793                 case RESET_KIND_SHUTDOWN:
1794                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1795                                       DRV_STATE_UNLOAD);
1796                         break;
1797
1798                 case RESET_KIND_SUSPEND:
1799                         tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1800                                       DRV_STATE_SUSPEND);
1801                         break;
1802
1803                 default:
1804                         break;
1805                 }
1806         }
1807 }
1808
1809 static int tg3_poll_fw(struct tg3 *tp)
1810 {
1811         int i;
1812         u32 val;
1813
1814         if (tg3_flag(tp, NO_FWARE_REPORTED))
1815                 return 0;
1816
1817         if (tg3_flag(tp, IS_SSB_CORE)) {
1818                 /* We don't use firmware. */
1819                 return 0;
1820         }
1821
1822         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
1823                 /* Wait up to 20ms for init done. */
1824                 for (i = 0; i < 200; i++) {
1825                         if (tr32(VCPU_STATUS) & VCPU_STATUS_INIT_DONE)
1826                                 return 0;
1827                         if (pci_channel_offline(tp->pdev))
1828                                 return -ENODEV;
1829
1830                         udelay(100);
1831                 }
1832                 return -ENODEV;
1833         }
1834
1835         /* Wait for firmware initialization to complete. */
1836         for (i = 0; i < 100000; i++) {
1837                 tg3_read_mem(tp, NIC_SRAM_FIRMWARE_MBOX, &val);
1838                 if (val == ~NIC_SRAM_FIRMWARE_MBOX_MAGIC1)
1839                         break;
1840                 if (pci_channel_offline(tp->pdev)) {
1841                         if (!tg3_flag(tp, NO_FWARE_REPORTED)) {
1842                                 tg3_flag_set(tp, NO_FWARE_REPORTED);
1843                                 netdev_info(tp->dev, "No firmware running\n");
1844                         }
1845
1846                         break;
1847                 }
1848
1849                 udelay(10);
1850         }
1851
1852         /* Chip might not be fitted with firmware.  Some Sun onboard
1853          * parts are configured like that.  So don't signal the timeout
1854          * of the above loop as an error, but do report the lack of
1855          * running firmware once.
1856          */
1857         if (i >= 100000 && !tg3_flag(tp, NO_FWARE_REPORTED)) {
1858                 tg3_flag_set(tp, NO_FWARE_REPORTED);
1859
1860                 netdev_info(tp->dev, "No firmware running\n");
1861         }
1862
1863         if (tg3_chip_rev_id(tp) == CHIPREV_ID_57765_A0) {
1864                 /* The 57765 A0 needs a little more
1865                  * time to do some important work.
1866                  */
1867                 mdelay(10);
1868         }
1869
1870         return 0;
1871 }
1872
1873 static void tg3_link_report(struct tg3 *tp)
1874 {
1875         if (!netif_carrier_ok(tp->dev)) {
1876                 netif_info(tp, link, tp->dev, "Link is down\n");
1877                 tg3_ump_link_report(tp);
1878         } else if (netif_msg_link(tp)) {
1879                 netdev_info(tp->dev, "Link is up at %d Mbps, %s duplex\n",
1880                             (tp->link_config.active_speed == SPEED_1000 ?
1881                              1000 :
1882                              (tp->link_config.active_speed == SPEED_100 ?
1883                               100 : 10)),
1884                             (tp->link_config.active_duplex == DUPLEX_FULL ?
1885                              "full" : "half"));
1886
1887                 netdev_info(tp->dev, "Flow control is %s for TX and %s for RX\n",
1888                             (tp->link_config.active_flowctrl & FLOW_CTRL_TX) ?
1889                             "on" : "off",
1890                             (tp->link_config.active_flowctrl & FLOW_CTRL_RX) ?
1891                             "on" : "off");
1892
1893                 if (tp->phy_flags & TG3_PHYFLG_EEE_CAP)
1894                         netdev_info(tp->dev, "EEE is %s\n",
1895                                     tp->setlpicnt ? "enabled" : "disabled");
1896
1897                 tg3_ump_link_report(tp);
1898         }
1899
1900         tp->link_up = netif_carrier_ok(tp->dev);
1901 }
1902
1903 static u32 tg3_decode_flowctrl_1000T(u32 adv)
1904 {
1905         u32 flowctrl = 0;
1906
1907         if (adv & ADVERTISE_PAUSE_CAP) {
1908                 flowctrl |= FLOW_CTRL_RX;
1909                 if (!(adv & ADVERTISE_PAUSE_ASYM))
1910                         flowctrl |= FLOW_CTRL_TX;
1911         } else if (adv & ADVERTISE_PAUSE_ASYM)
1912                 flowctrl |= FLOW_CTRL_TX;
1913
1914         return flowctrl;
1915 }
1916
1917 static u16 tg3_advert_flowctrl_1000X(u8 flow_ctrl)
1918 {
1919         u16 miireg;
1920
1921         if ((flow_ctrl & FLOW_CTRL_TX) && (flow_ctrl & FLOW_CTRL_RX))
1922                 miireg = ADVERTISE_1000XPAUSE;
1923         else if (flow_ctrl & FLOW_CTRL_TX)
1924                 miireg = ADVERTISE_1000XPSE_ASYM;
1925         else if (flow_ctrl & FLOW_CTRL_RX)
1926                 miireg = ADVERTISE_1000XPAUSE | ADVERTISE_1000XPSE_ASYM;
1927         else
1928                 miireg = 0;
1929
1930         return miireg;
1931 }
1932
1933 static u32 tg3_decode_flowctrl_1000X(u32 adv)
1934 {
1935         u32 flowctrl = 0;
1936
1937         if (adv & ADVERTISE_1000XPAUSE) {
1938                 flowctrl |= FLOW_CTRL_RX;
1939                 if (!(adv & ADVERTISE_1000XPSE_ASYM))
1940                         flowctrl |= FLOW_CTRL_TX;
1941         } else if (adv & ADVERTISE_1000XPSE_ASYM)
1942                 flowctrl |= FLOW_CTRL_TX;
1943
1944         return flowctrl;
1945 }
1946
1947 static u8 tg3_resolve_flowctrl_1000X(u16 lcladv, u16 rmtadv)
1948 {
1949         u8 cap = 0;
1950
1951         if (lcladv & rmtadv & ADVERTISE_1000XPAUSE) {
1952                 cap = FLOW_CTRL_TX | FLOW_CTRL_RX;
1953         } else if (lcladv & rmtadv & ADVERTISE_1000XPSE_ASYM) {
1954                 if (lcladv & ADVERTISE_1000XPAUSE)
1955                         cap = FLOW_CTRL_RX;
1956                 if (rmtadv & ADVERTISE_1000XPAUSE)
1957                         cap = FLOW_CTRL_TX;
1958         }
1959
1960         return cap;
1961 }
1962
1963 static void tg3_setup_flow_control(struct tg3 *tp, u32 lcladv, u32 rmtadv)
1964 {
1965         u8 autoneg;
1966         u8 flowctrl = 0;
1967         u32 old_rx_mode = tp->rx_mode;
1968         u32 old_tx_mode = tp->tx_mode;
1969
1970         if (tg3_flag(tp, USE_PHYLIB))
1971                 autoneg = tp->mdio_bus->phy_map[tp->phy_addr]->autoneg;
1972         else
1973                 autoneg = tp->link_config.autoneg;
1974
1975         if (autoneg == AUTONEG_ENABLE && tg3_flag(tp, PAUSE_AUTONEG)) {
1976                 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
1977                         flowctrl = tg3_resolve_flowctrl_1000X(lcladv, rmtadv);
1978                 else
1979                         flowctrl = mii_resolve_flowctrl_fdx(lcladv, rmtadv);
1980         } else
1981                 flowctrl = tp->link_config.flowctrl;
1982
1983         tp->link_config.active_flowctrl = flowctrl;
1984
1985         if (flowctrl & FLOW_CTRL_RX)
1986                 tp->rx_mode |= RX_MODE_FLOW_CTRL_ENABLE;
1987         else
1988                 tp->rx_mode &= ~RX_MODE_FLOW_CTRL_ENABLE;
1989
1990         if (old_rx_mode != tp->rx_mode)
1991                 tw32_f(MAC_RX_MODE, tp->rx_mode);
1992
1993         if (flowctrl & FLOW_CTRL_TX)
1994                 tp->tx_mode |= TX_MODE_FLOW_CTRL_ENABLE;
1995         else
1996                 tp->tx_mode &= ~TX_MODE_FLOW_CTRL_ENABLE;
1997
1998         if (old_tx_mode != tp->tx_mode)
1999                 tw32_f(MAC_TX_MODE, tp->tx_mode);
2000 }
2001
2002 static void tg3_adjust_link(struct net_device *dev)
2003 {
2004         u8 oldflowctrl, linkmesg = 0;
2005         u32 mac_mode, lcl_adv, rmt_adv;
2006         struct tg3 *tp = netdev_priv(dev);
2007         struct phy_device *phydev = tp->mdio_bus->phy_map[tp->phy_addr];
2008
2009         spin_lock_bh(&tp->lock);
2010
2011         mac_mode = tp->mac_mode & ~(MAC_MODE_PORT_MODE_MASK |
2012                                     MAC_MODE_HALF_DUPLEX);
2013
2014         oldflowctrl = tp->link_config.active_flowctrl;
2015
2016         if (phydev->link) {
2017                 lcl_adv = 0;
2018                 rmt_adv = 0;
2019
2020                 if (phydev->speed == SPEED_100 || phydev->speed == SPEED_10)
2021                         mac_mode |= MAC_MODE_PORT_MODE_MII;
2022                 else if (phydev->speed == SPEED_1000 ||
2023                          tg3_asic_rev(tp) != ASIC_REV_5785)
2024                         mac_mode |= MAC_MODE_PORT_MODE_GMII;
2025                 else
2026                         mac_mode |= MAC_MODE_PORT_MODE_MII;
2027
2028                 if (phydev->duplex == DUPLEX_HALF)
2029                         mac_mode |= MAC_MODE_HALF_DUPLEX;
2030                 else {
2031                         lcl_adv = mii_advertise_flowctrl(
2032                                   tp->link_config.flowctrl);
2033
2034                         if (phydev->pause)
2035                                 rmt_adv = LPA_PAUSE_CAP;
2036                         if (phydev->asym_pause)
2037                                 rmt_adv |= LPA_PAUSE_ASYM;
2038                 }
2039
2040                 tg3_setup_flow_control(tp, lcl_adv, rmt_adv);
2041         } else
2042                 mac_mode |= MAC_MODE_PORT_MODE_GMII;
2043
2044         if (mac_mode != tp->mac_mode) {
2045                 tp->mac_mode = mac_mode;
2046                 tw32_f(MAC_MODE, tp->mac_mode);
2047                 udelay(40);
2048         }
2049
2050         if (tg3_asic_rev(tp) == ASIC_REV_5785) {
2051                 if (phydev->speed == SPEED_10)
2052                         tw32(MAC_MI_STAT,
2053                              MAC_MI_STAT_10MBPS_MODE |
2054                              MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
2055                 else
2056                         tw32(MAC_MI_STAT, MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
2057         }
2058
2059         if (phydev->speed == SPEED_1000 && phydev->duplex == DUPLEX_HALF)
2060                 tw32(MAC_TX_LENGTHS,
2061                      ((2 << TX_LENGTHS_IPG_CRS_SHIFT) |
2062                       (6 << TX_LENGTHS_IPG_SHIFT) |
2063                       (0xff << TX_LENGTHS_SLOT_TIME_SHIFT)));
2064         else
2065                 tw32(MAC_TX_LENGTHS,
2066                      ((2 << TX_LENGTHS_IPG_CRS_SHIFT) |
2067                       (6 << TX_LENGTHS_IPG_SHIFT) |
2068                       (32 << TX_LENGTHS_SLOT_TIME_SHIFT)));
2069
2070         if (phydev->link != tp->old_link ||
2071             phydev->speed != tp->link_config.active_speed ||
2072             phydev->duplex != tp->link_config.active_duplex ||
2073             oldflowctrl != tp->link_config.active_flowctrl)
2074                 linkmesg = 1;
2075
2076         tp->old_link = phydev->link;
2077         tp->link_config.active_speed = phydev->speed;
2078         tp->link_config.active_duplex = phydev->duplex;
2079
2080         spin_unlock_bh(&tp->lock);
2081
2082         if (linkmesg)
2083                 tg3_link_report(tp);
2084 }
2085
2086 static int tg3_phy_init(struct tg3 *tp)
2087 {
2088         struct phy_device *phydev;
2089
2090         if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED)
2091                 return 0;
2092
2093         /* Bring the PHY back to a known state. */
2094         tg3_bmcr_reset(tp);
2095
2096         phydev = tp->mdio_bus->phy_map[tp->phy_addr];
2097
2098         /* Attach the MAC to the PHY. */
2099         phydev = phy_connect(tp->dev, dev_name(&phydev->dev),
2100                              tg3_adjust_link, phydev->interface);
2101         if (IS_ERR(phydev)) {
2102                 dev_err(&tp->pdev->dev, "Could not attach to PHY\n");
2103                 return PTR_ERR(phydev);
2104         }
2105
2106         /* Mask with MAC supported features. */
2107         switch (phydev->interface) {
2108         case PHY_INTERFACE_MODE_GMII:
2109         case PHY_INTERFACE_MODE_RGMII:
2110                 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
2111                         phydev->supported &= (PHY_GBIT_FEATURES |
2112                                               SUPPORTED_Pause |
2113                                               SUPPORTED_Asym_Pause);
2114                         break;
2115                 }
2116                 /* fallthru */
2117         case PHY_INTERFACE_MODE_MII:
2118                 phydev->supported &= (PHY_BASIC_FEATURES |
2119                                       SUPPORTED_Pause |
2120                                       SUPPORTED_Asym_Pause);
2121                 break;
2122         default:
2123                 phy_disconnect(tp->mdio_bus->phy_map[tp->phy_addr]);
2124                 return -EINVAL;
2125         }
2126
2127         tp->phy_flags |= TG3_PHYFLG_IS_CONNECTED;
2128
2129         phydev->advertising = phydev->supported;
2130
2131         return 0;
2132 }
2133
2134 static void tg3_phy_start(struct tg3 *tp)
2135 {
2136         struct phy_device *phydev;
2137
2138         if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
2139                 return;
2140
2141         phydev = tp->mdio_bus->phy_map[tp->phy_addr];
2142
2143         if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) {
2144                 tp->phy_flags &= ~TG3_PHYFLG_IS_LOW_POWER;
2145                 phydev->speed = tp->link_config.speed;
2146                 phydev->duplex = tp->link_config.duplex;
2147                 phydev->autoneg = tp->link_config.autoneg;
2148                 phydev->advertising = tp->link_config.advertising;
2149         }
2150
2151         phy_start(phydev);
2152
2153         phy_start_aneg(phydev);
2154 }
2155
2156 static void tg3_phy_stop(struct tg3 *tp)
2157 {
2158         if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
2159                 return;
2160
2161         phy_stop(tp->mdio_bus->phy_map[tp->phy_addr]);
2162 }
2163
2164 static void tg3_phy_fini(struct tg3 *tp)
2165 {
2166         if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
2167                 phy_disconnect(tp->mdio_bus->phy_map[tp->phy_addr]);
2168                 tp->phy_flags &= ~TG3_PHYFLG_IS_CONNECTED;
2169         }
2170 }
2171
2172 static int tg3_phy_set_extloopbk(struct tg3 *tp)
2173 {
2174         int err;
2175         u32 val;
2176
2177         if (tp->phy_flags & TG3_PHYFLG_IS_FET)
2178                 return 0;
2179
2180         if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
2181                 /* Cannot do read-modify-write on 5401 */
2182                 err = tg3_phy_auxctl_write(tp,
2183                                            MII_TG3_AUXCTL_SHDWSEL_AUXCTL,
2184                                            MII_TG3_AUXCTL_ACTL_EXTLOOPBK |
2185                                            0x4c20);
2186                 goto done;
2187         }
2188
2189         err = tg3_phy_auxctl_read(tp,
2190                                   MII_TG3_AUXCTL_SHDWSEL_AUXCTL, &val);
2191         if (err)
2192                 return err;
2193
2194         val |= MII_TG3_AUXCTL_ACTL_EXTLOOPBK;
2195         err = tg3_phy_auxctl_write(tp,
2196                                    MII_TG3_AUXCTL_SHDWSEL_AUXCTL, val);
2197
2198 done:
2199         return err;
2200 }
2201
2202 static void tg3_phy_fet_toggle_apd(struct tg3 *tp, bool enable)
2203 {
2204         u32 phytest;
2205
2206         if (!tg3_readphy(tp, MII_TG3_FET_TEST, &phytest)) {
2207                 u32 phy;
2208
2209                 tg3_writephy(tp, MII_TG3_FET_TEST,
2210                              phytest | MII_TG3_FET_SHADOW_EN);
2211                 if (!tg3_readphy(tp, MII_TG3_FET_SHDW_AUXSTAT2, &phy)) {
2212                         if (enable)
2213                                 phy |= MII_TG3_FET_SHDW_AUXSTAT2_APD;
2214                         else
2215                                 phy &= ~MII_TG3_FET_SHDW_AUXSTAT2_APD;
2216                         tg3_writephy(tp, MII_TG3_FET_SHDW_AUXSTAT2, phy);
2217                 }
2218                 tg3_writephy(tp, MII_TG3_FET_TEST, phytest);
2219         }
2220 }
2221
2222 static void tg3_phy_toggle_apd(struct tg3 *tp, bool enable)
2223 {
2224         u32 reg;
2225
2226         if (!tg3_flag(tp, 5705_PLUS) ||
2227             (tg3_flag(tp, 5717_PLUS) &&
2228              (tp->phy_flags & TG3_PHYFLG_MII_SERDES)))
2229                 return;
2230
2231         if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
2232                 tg3_phy_fet_toggle_apd(tp, enable);
2233                 return;
2234         }
2235
2236         reg = MII_TG3_MISC_SHDW_SCR5_LPED |
2237               MII_TG3_MISC_SHDW_SCR5_DLPTLM |
2238               MII_TG3_MISC_SHDW_SCR5_SDTL |
2239               MII_TG3_MISC_SHDW_SCR5_C125OE;
2240         if (tg3_asic_rev(tp) != ASIC_REV_5784 || !enable)
2241                 reg |= MII_TG3_MISC_SHDW_SCR5_DLLAPD;
2242
2243         tg3_phy_shdw_write(tp, MII_TG3_MISC_SHDW_SCR5_SEL, reg);
2244
2245
2246         reg = MII_TG3_MISC_SHDW_APD_WKTM_84MS;
2247         if (enable)
2248                 reg |= MII_TG3_MISC_SHDW_APD_ENABLE;
2249
2250         tg3_phy_shdw_write(tp, MII_TG3_MISC_SHDW_APD_SEL, reg);
2251 }
2252
2253 static void tg3_phy_toggle_automdix(struct tg3 *tp, bool enable)
2254 {
2255         u32 phy;
2256
2257         if (!tg3_flag(tp, 5705_PLUS) ||
2258             (tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
2259                 return;
2260
2261         if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
2262                 u32 ephy;
2263
2264                 if (!tg3_readphy(tp, MII_TG3_FET_TEST, &ephy)) {
2265                         u32 reg = MII_TG3_FET_SHDW_MISCCTRL;
2266
2267                         tg3_writephy(tp, MII_TG3_FET_TEST,
2268                                      ephy | MII_TG3_FET_SHADOW_EN);
2269                         if (!tg3_readphy(tp, reg, &phy)) {
2270                                 if (enable)
2271                                         phy |= MII_TG3_FET_SHDW_MISCCTRL_MDIX;
2272                                 else
2273                                         phy &= ~MII_TG3_FET_SHDW_MISCCTRL_MDIX;
2274                                 tg3_writephy(tp, reg, phy);
2275                         }
2276                         tg3_writephy(tp, MII_TG3_FET_TEST, ephy);
2277                 }
2278         } else {
2279                 int ret;
2280
2281                 ret = tg3_phy_auxctl_read(tp,
2282                                           MII_TG3_AUXCTL_SHDWSEL_MISC, &phy);
2283                 if (!ret) {
2284                         if (enable)
2285                                 phy |= MII_TG3_AUXCTL_MISC_FORCE_AMDIX;
2286                         else
2287                                 phy &= ~MII_TG3_AUXCTL_MISC_FORCE_AMDIX;
2288                         tg3_phy_auxctl_write(tp,
2289                                              MII_TG3_AUXCTL_SHDWSEL_MISC, phy);
2290                 }
2291         }
2292 }
2293
2294 static void tg3_phy_set_wirespeed(struct tg3 *tp)
2295 {
2296         int ret;
2297         u32 val;
2298
2299         if (tp->phy_flags & TG3_PHYFLG_NO_ETH_WIRE_SPEED)
2300                 return;
2301
2302         ret = tg3_phy_auxctl_read(tp, MII_TG3_AUXCTL_SHDWSEL_MISC, &val);
2303         if (!ret)
2304                 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_MISC,
2305                                      val | MII_TG3_AUXCTL_MISC_WIRESPD_EN);
2306 }
2307
2308 static void tg3_phy_apply_otp(struct tg3 *tp)
2309 {
2310         u32 otp, phy;
2311
2312         if (!tp->phy_otp)
2313                 return;
2314
2315         otp = tp->phy_otp;
2316
2317         if (tg3_phy_toggle_auxctl_smdsp(tp, true))
2318                 return;
2319
2320         phy = ((otp & TG3_OTP_AGCTGT_MASK) >> TG3_OTP_AGCTGT_SHIFT);
2321         phy |= MII_TG3_DSP_TAP1_AGCTGT_DFLT;
2322         tg3_phydsp_write(tp, MII_TG3_DSP_TAP1, phy);
2323
2324         phy = ((otp & TG3_OTP_HPFFLTR_MASK) >> TG3_OTP_HPFFLTR_SHIFT) |
2325               ((otp & TG3_OTP_HPFOVER_MASK) >> TG3_OTP_HPFOVER_SHIFT);
2326         tg3_phydsp_write(tp, MII_TG3_DSP_AADJ1CH0, phy);
2327
2328         phy = ((otp & TG3_OTP_LPFDIS_MASK) >> TG3_OTP_LPFDIS_SHIFT);
2329         phy |= MII_TG3_DSP_AADJ1CH3_ADCCKADJ;
2330         tg3_phydsp_write(tp, MII_TG3_DSP_AADJ1CH3, phy);
2331
2332         phy = ((otp & TG3_OTP_VDAC_MASK) >> TG3_OTP_VDAC_SHIFT);
2333         tg3_phydsp_write(tp, MII_TG3_DSP_EXP75, phy);
2334
2335         phy = ((otp & TG3_OTP_10BTAMP_MASK) >> TG3_OTP_10BTAMP_SHIFT);
2336         tg3_phydsp_write(tp, MII_TG3_DSP_EXP96, phy);
2337
2338         phy = ((otp & TG3_OTP_ROFF_MASK) >> TG3_OTP_ROFF_SHIFT) |
2339               ((otp & TG3_OTP_RCOFF_MASK) >> TG3_OTP_RCOFF_SHIFT);
2340         tg3_phydsp_write(tp, MII_TG3_DSP_EXP97, phy);
2341
2342         tg3_phy_toggle_auxctl_smdsp(tp, false);
2343 }
2344
2345 static void tg3_eee_pull_config(struct tg3 *tp, struct ethtool_eee *eee)
2346 {
2347         u32 val;
2348         struct ethtool_eee *dest = &tp->eee;
2349
2350         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
2351                 return;
2352
2353         if (eee)
2354                 dest = eee;
2355
2356         if (tg3_phy_cl45_read(tp, MDIO_MMD_AN, TG3_CL45_D7_EEERES_STAT, &val))
2357                 return;
2358
2359         /* Pull eee_active */
2360         if (val == TG3_CL45_D7_EEERES_STAT_LP_1000T ||
2361             val == TG3_CL45_D7_EEERES_STAT_LP_100TX) {
2362                 dest->eee_active = 1;
2363         } else
2364                 dest->eee_active = 0;
2365
2366         /* Pull lp advertised settings */
2367         if (tg3_phy_cl45_read(tp, MDIO_MMD_AN, MDIO_AN_EEE_LPABLE, &val))
2368                 return;
2369         dest->lp_advertised = mmd_eee_adv_to_ethtool_adv_t(val);
2370
2371         /* Pull advertised and eee_enabled settings */
2372         if (tg3_phy_cl45_read(tp, MDIO_MMD_AN, MDIO_AN_EEE_ADV, &val))
2373                 return;
2374         dest->eee_enabled = !!val;
2375         dest->advertised = mmd_eee_adv_to_ethtool_adv_t(val);
2376
2377         /* Pull tx_lpi_enabled */
2378         val = tr32(TG3_CPMU_EEE_MODE);
2379         dest->tx_lpi_enabled = !!(val & TG3_CPMU_EEEMD_LPI_IN_TX);
2380
2381         /* Pull lpi timer value */
2382         dest->tx_lpi_timer = tr32(TG3_CPMU_EEE_DBTMR1) & 0xffff;
2383 }
2384
2385 static void tg3_phy_eee_adjust(struct tg3 *tp, bool current_link_up)
2386 {
2387         u32 val;
2388
2389         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
2390                 return;
2391
2392         tp->setlpicnt = 0;
2393
2394         if (tp->link_config.autoneg == AUTONEG_ENABLE &&
2395             current_link_up &&
2396             tp->link_config.active_duplex == DUPLEX_FULL &&
2397             (tp->link_config.active_speed == SPEED_100 ||
2398              tp->link_config.active_speed == SPEED_1000)) {
2399                 u32 eeectl;
2400
2401                 if (tp->link_config.active_speed == SPEED_1000)
2402                         eeectl = TG3_CPMU_EEE_CTRL_EXIT_16_5_US;
2403                 else
2404                         eeectl = TG3_CPMU_EEE_CTRL_EXIT_36_US;
2405
2406                 tw32(TG3_CPMU_EEE_CTRL, eeectl);
2407
2408                 tg3_eee_pull_config(tp, NULL);
2409                 if (tp->eee.eee_active)
2410                         tp->setlpicnt = 2;
2411         }
2412
2413         if (!tp->setlpicnt) {
2414                 if (current_link_up &&
2415                    !tg3_phy_toggle_auxctl_smdsp(tp, true)) {
2416                         tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, 0x0000);
2417                         tg3_phy_toggle_auxctl_smdsp(tp, false);
2418                 }
2419
2420                 val = tr32(TG3_CPMU_EEE_MODE);
2421                 tw32(TG3_CPMU_EEE_MODE, val & ~TG3_CPMU_EEEMD_LPI_ENABLE);
2422         }
2423 }
2424
2425 static void tg3_phy_eee_enable(struct tg3 *tp)
2426 {
2427         u32 val;
2428
2429         if (tp->link_config.active_speed == SPEED_1000 &&
2430             (tg3_asic_rev(tp) == ASIC_REV_5717 ||
2431              tg3_asic_rev(tp) == ASIC_REV_5719 ||
2432              tg3_flag(tp, 57765_CLASS)) &&
2433             !tg3_phy_toggle_auxctl_smdsp(tp, true)) {
2434                 val = MII_TG3_DSP_TAP26_ALNOKO |
2435                       MII_TG3_DSP_TAP26_RMRXSTO;
2436                 tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, val);
2437                 tg3_phy_toggle_auxctl_smdsp(tp, false);
2438         }
2439
2440         val = tr32(TG3_CPMU_EEE_MODE);
2441         tw32(TG3_CPMU_EEE_MODE, val | TG3_CPMU_EEEMD_LPI_ENABLE);
2442 }
2443
2444 static int tg3_wait_macro_done(struct tg3 *tp)
2445 {
2446         int limit = 100;
2447
2448         while (limit--) {
2449                 u32 tmp32;
2450
2451                 if (!tg3_readphy(tp, MII_TG3_DSP_CONTROL, &tmp32)) {
2452                         if ((tmp32 & 0x1000) == 0)
2453                                 break;
2454                 }
2455         }
2456         if (limit < 0)
2457                 return -EBUSY;
2458
2459         return 0;
2460 }
2461
2462 static int tg3_phy_write_and_check_testpat(struct tg3 *tp, int *resetp)
2463 {
2464         static const u32 test_pat[4][6] = {
2465         { 0x00005555, 0x00000005, 0x00002aaa, 0x0000000a, 0x00003456, 0x00000003 },
2466         { 0x00002aaa, 0x0000000a, 0x00003333, 0x00000003, 0x0000789a, 0x00000005 },
2467         { 0x00005a5a, 0x00000005, 0x00002a6a, 0x0000000a, 0x00001bcd, 0x00000003 },
2468         { 0x00002a5a, 0x0000000a, 0x000033c3, 0x00000003, 0x00002ef1, 0x00000005 }
2469         };
2470         int chan;
2471
2472         for (chan = 0; chan < 4; chan++) {
2473                 int i;
2474
2475                 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2476                              (chan * 0x2000) | 0x0200);
2477                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0002);
2478
2479                 for (i = 0; i < 6; i++)
2480                         tg3_writephy(tp, MII_TG3_DSP_RW_PORT,
2481                                      test_pat[chan][i]);
2482
2483                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0202);
2484                 if (tg3_wait_macro_done(tp)) {
2485                         *resetp = 1;
2486                         return -EBUSY;
2487                 }
2488
2489                 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2490                              (chan * 0x2000) | 0x0200);
2491                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0082);
2492                 if (tg3_wait_macro_done(tp)) {
2493                         *resetp = 1;
2494                         return -EBUSY;
2495                 }
2496
2497                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0802);
2498                 if (tg3_wait_macro_done(tp)) {
2499                         *resetp = 1;
2500                         return -EBUSY;
2501                 }
2502
2503                 for (i = 0; i < 6; i += 2) {
2504                         u32 low, high;
2505
2506                         if (tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &low) ||
2507                             tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &high) ||
2508                             tg3_wait_macro_done(tp)) {
2509                                 *resetp = 1;
2510                                 return -EBUSY;
2511                         }
2512                         low &= 0x7fff;
2513                         high &= 0x000f;
2514                         if (low != test_pat[chan][i] ||
2515                             high != test_pat[chan][i+1]) {
2516                                 tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x000b);
2517                                 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x4001);
2518                                 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x4005);
2519
2520                                 return -EBUSY;
2521                         }
2522                 }
2523         }
2524
2525         return 0;
2526 }
2527
2528 static int tg3_phy_reset_chanpat(struct tg3 *tp)
2529 {
2530         int chan;
2531
2532         for (chan = 0; chan < 4; chan++) {
2533                 int i;
2534
2535                 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2536                              (chan * 0x2000) | 0x0200);
2537                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0002);
2538                 for (i = 0; i < 6; i++)
2539                         tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x000);
2540                 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0202);
2541                 if (tg3_wait_macro_done(tp))
2542                         return -EBUSY;
2543         }
2544
2545         return 0;
2546 }
2547
2548 static int tg3_phy_reset_5703_4_5(struct tg3 *tp)
2549 {
2550         u32 reg32, phy9_orig;
2551         int retries, do_phy_reset, err;
2552
2553         retries = 10;
2554         do_phy_reset = 1;
2555         do {
2556                 if (do_phy_reset) {
2557                         err = tg3_bmcr_reset(tp);
2558                         if (err)
2559                                 return err;
2560                         do_phy_reset = 0;
2561                 }
2562
2563                 /* Disable transmitter and interrupt.  */
2564                 if (tg3_readphy(tp, MII_TG3_EXT_CTRL, &reg32))
2565                         continue;
2566
2567                 reg32 |= 0x3000;
2568                 tg3_writephy(tp, MII_TG3_EXT_CTRL, reg32);
2569
2570                 /* Set full-duplex, 1000 mbps.  */
2571                 tg3_writephy(tp, MII_BMCR,
2572                              BMCR_FULLDPLX | BMCR_SPEED1000);
2573
2574                 /* Set to master mode.  */
2575                 if (tg3_readphy(tp, MII_CTRL1000, &phy9_orig))
2576                         continue;
2577
2578                 tg3_writephy(tp, MII_CTRL1000,
2579                              CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER);
2580
2581                 err = tg3_phy_toggle_auxctl_smdsp(tp, true);
2582                 if (err)
2583                         return err;
2584
2585                 /* Block the PHY control access.  */
2586                 tg3_phydsp_write(tp, 0x8005, 0x0800);
2587
2588                 err = tg3_phy_write_and_check_testpat(tp, &do_phy_reset);
2589                 if (!err)
2590                         break;
2591         } while (--retries);
2592
2593         err = tg3_phy_reset_chanpat(tp);
2594         if (err)
2595                 return err;
2596
2597         tg3_phydsp_write(tp, 0x8005, 0x0000);
2598
2599         tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x8200);
2600         tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0000);
2601
2602         tg3_phy_toggle_auxctl_smdsp(tp, false);
2603
2604         tg3_writephy(tp, MII_CTRL1000, phy9_orig);
2605
2606         err = tg3_readphy(tp, MII_TG3_EXT_CTRL, &reg32);
2607         if (err)
2608                 return err;
2609
2610         reg32 &= ~0x3000;
2611         tg3_writephy(tp, MII_TG3_EXT_CTRL, reg32);
2612
2613         return 0;
2614 }
2615
2616 static void tg3_carrier_off(struct tg3 *tp)
2617 {
2618         netif_carrier_off(tp->dev);
2619         tp->link_up = false;
2620 }
2621
2622 static void tg3_warn_mgmt_link_flap(struct tg3 *tp)
2623 {
2624         if (tg3_flag(tp, ENABLE_ASF))
2625                 netdev_warn(tp->dev,
2626                             "Management side-band traffic will be interrupted during phy settings change\n");
2627 }
2628
2629 /* This will reset the tigon3 PHY if there is no valid
2630  * link unless the FORCE argument is non-zero.
2631  */
2632 static int tg3_phy_reset(struct tg3 *tp)
2633 {
2634         u32 val, cpmuctrl;
2635         int err;
2636
2637         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
2638                 val = tr32(GRC_MISC_CFG);
2639                 tw32_f(GRC_MISC_CFG, val & ~GRC_MISC_CFG_EPHY_IDDQ);
2640                 udelay(40);
2641         }
2642         err  = tg3_readphy(tp, MII_BMSR, &val);
2643         err |= tg3_readphy(tp, MII_BMSR, &val);
2644         if (err != 0)
2645                 return -EBUSY;
2646
2647         if (netif_running(tp->dev) && tp->link_up) {
2648                 netif_carrier_off(tp->dev);
2649                 tg3_link_report(tp);
2650         }
2651
2652         if (tg3_asic_rev(tp) == ASIC_REV_5703 ||
2653             tg3_asic_rev(tp) == ASIC_REV_5704 ||
2654             tg3_asic_rev(tp) == ASIC_REV_5705) {
2655                 err = tg3_phy_reset_5703_4_5(tp);
2656                 if (err)
2657                         return err;
2658                 goto out;
2659         }
2660
2661         cpmuctrl = 0;
2662         if (tg3_asic_rev(tp) == ASIC_REV_5784 &&
2663             tg3_chip_rev(tp) != CHIPREV_5784_AX) {
2664                 cpmuctrl = tr32(TG3_CPMU_CTRL);
2665                 if (cpmuctrl & CPMU_CTRL_GPHY_10MB_RXONLY)
2666                         tw32(TG3_CPMU_CTRL,
2667                              cpmuctrl & ~CPMU_CTRL_GPHY_10MB_RXONLY);
2668         }
2669
2670         err = tg3_bmcr_reset(tp);
2671         if (err)
2672                 return err;
2673
2674         if (cpmuctrl & CPMU_CTRL_GPHY_10MB_RXONLY) {
2675                 val = MII_TG3_DSP_EXP8_AEDW | MII_TG3_DSP_EXP8_REJ2MHz;
2676                 tg3_phydsp_write(tp, MII_TG3_DSP_EXP8, val);
2677
2678                 tw32(TG3_CPMU_CTRL, cpmuctrl);
2679         }
2680
2681         if (tg3_chip_rev(tp) == CHIPREV_5784_AX ||
2682             tg3_chip_rev(tp) == CHIPREV_5761_AX) {
2683                 val = tr32(TG3_CPMU_LSPD_1000MB_CLK);
2684                 if ((val & CPMU_LSPD_1000MB_MACCLK_MASK) ==
2685                     CPMU_LSPD_1000MB_MACCLK_12_5) {
2686                         val &= ~CPMU_LSPD_1000MB_MACCLK_MASK;
2687                         udelay(40);
2688                         tw32_f(TG3_CPMU_LSPD_1000MB_CLK, val);
2689                 }
2690         }
2691
2692         if (tg3_flag(tp, 5717_PLUS) &&
2693             (tp->phy_flags & TG3_PHYFLG_MII_SERDES))
2694                 return 0;
2695
2696         tg3_phy_apply_otp(tp);
2697
2698         if (tp->phy_flags & TG3_PHYFLG_ENABLE_APD)
2699                 tg3_phy_toggle_apd(tp, true);
2700         else
2701                 tg3_phy_toggle_apd(tp, false);
2702
2703 out:
2704         if ((tp->phy_flags & TG3_PHYFLG_ADC_BUG) &&
2705             !tg3_phy_toggle_auxctl_smdsp(tp, true)) {
2706                 tg3_phydsp_write(tp, 0x201f, 0x2aaa);
2707                 tg3_phydsp_write(tp, 0x000a, 0x0323);
2708                 tg3_phy_toggle_auxctl_smdsp(tp, false);
2709         }
2710
2711         if (tp->phy_flags & TG3_PHYFLG_5704_A0_BUG) {
2712                 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
2713                 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
2714         }
2715
2716         if (tp->phy_flags & TG3_PHYFLG_BER_BUG) {
2717                 if (!tg3_phy_toggle_auxctl_smdsp(tp, true)) {
2718                         tg3_phydsp_write(tp, 0x000a, 0x310b);
2719                         tg3_phydsp_write(tp, 0x201f, 0x9506);
2720                         tg3_phydsp_write(tp, 0x401f, 0x14e2);
2721                         tg3_phy_toggle_auxctl_smdsp(tp, false);
2722                 }
2723         } else if (tp->phy_flags & TG3_PHYFLG_JITTER_BUG) {
2724                 if (!tg3_phy_toggle_auxctl_smdsp(tp, true)) {
2725                         tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x000a);
2726                         if (tp->phy_flags & TG3_PHYFLG_ADJUST_TRIM) {
2727                                 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x110b);
2728                                 tg3_writephy(tp, MII_TG3_TEST1,
2729                                              MII_TG3_TEST1_TRIM_EN | 0x4);
2730                         } else
2731                                 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x010b);
2732
2733                         tg3_phy_toggle_auxctl_smdsp(tp, false);
2734                 }
2735         }
2736
2737         /* Set Extended packet length bit (bit 14) on all chips that */
2738         /* support jumbo frames */
2739         if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
2740                 /* Cannot do read-modify-write on 5401 */
2741                 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL, 0x4c20);
2742         } else if (tg3_flag(tp, JUMBO_CAPABLE)) {
2743                 /* Set bit 14 with read-modify-write to preserve other bits */
2744                 err = tg3_phy_auxctl_read(tp,
2745                                           MII_TG3_AUXCTL_SHDWSEL_AUXCTL, &val);
2746                 if (!err)
2747                         tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL,
2748                                            val | MII_TG3_AUXCTL_ACTL_EXTPKTLEN);
2749         }
2750
2751         /* Set phy register 0x10 bit 0 to high fifo elasticity to support
2752          * jumbo frames transmission.
2753          */
2754         if (tg3_flag(tp, JUMBO_CAPABLE)) {
2755                 if (!tg3_readphy(tp, MII_TG3_EXT_CTRL, &val))
2756                         tg3_writephy(tp, MII_TG3_EXT_CTRL,
2757                                      val | MII_TG3_EXT_CTRL_FIFO_ELASTIC);
2758         }
2759
2760         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
2761                 /* adjust output voltage */
2762                 tg3_writephy(tp, MII_TG3_FET_PTEST, 0x12);
2763         }
2764
2765         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5762_A0)
2766                 tg3_phydsp_write(tp, 0xffb, 0x4000);
2767
2768         tg3_phy_toggle_automdix(tp, true);
2769         tg3_phy_set_wirespeed(tp);
2770         return 0;
2771 }
2772
2773 #define TG3_GPIO_MSG_DRVR_PRES           0x00000001
2774 #define TG3_GPIO_MSG_NEED_VAUX           0x00000002
2775 #define TG3_GPIO_MSG_MASK                (TG3_GPIO_MSG_DRVR_PRES | \
2776                                           TG3_GPIO_MSG_NEED_VAUX)
2777 #define TG3_GPIO_MSG_ALL_DRVR_PRES_MASK \
2778         ((TG3_GPIO_MSG_DRVR_PRES << 0) | \
2779          (TG3_GPIO_MSG_DRVR_PRES << 4) | \
2780          (TG3_GPIO_MSG_DRVR_PRES << 8) | \
2781          (TG3_GPIO_MSG_DRVR_PRES << 12))
2782
2783 #define TG3_GPIO_MSG_ALL_NEED_VAUX_MASK \
2784         ((TG3_GPIO_MSG_NEED_VAUX << 0) | \
2785          (TG3_GPIO_MSG_NEED_VAUX << 4) | \
2786          (TG3_GPIO_MSG_NEED_VAUX << 8) | \
2787          (TG3_GPIO_MSG_NEED_VAUX << 12))
2788
2789 static inline u32 tg3_set_function_status(struct tg3 *tp, u32 newstat)
2790 {
2791         u32 status, shift;
2792
2793         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
2794             tg3_asic_rev(tp) == ASIC_REV_5719)
2795                 status = tg3_ape_read32(tp, TG3_APE_GPIO_MSG);
2796         else
2797                 status = tr32(TG3_CPMU_DRV_STATUS);
2798
2799         shift = TG3_APE_GPIO_MSG_SHIFT + 4 * tp->pci_fn;
2800         status &= ~(TG3_GPIO_MSG_MASK << shift);
2801         status |= (newstat << shift);
2802
2803         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
2804             tg3_asic_rev(tp) == ASIC_REV_5719)
2805                 tg3_ape_write32(tp, TG3_APE_GPIO_MSG, status);
2806         else
2807                 tw32(TG3_CPMU_DRV_STATUS, status);
2808
2809         return status >> TG3_APE_GPIO_MSG_SHIFT;
2810 }
2811
2812 static inline int tg3_pwrsrc_switch_to_vmain(struct tg3 *tp)
2813 {
2814         if (!tg3_flag(tp, IS_NIC))
2815                 return 0;
2816
2817         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
2818             tg3_asic_rev(tp) == ASIC_REV_5719 ||
2819             tg3_asic_rev(tp) == ASIC_REV_5720) {
2820                 if (tg3_ape_lock(tp, TG3_APE_LOCK_GPIO))
2821                         return -EIO;
2822
2823                 tg3_set_function_status(tp, TG3_GPIO_MSG_DRVR_PRES);
2824
2825                 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl,
2826                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2827
2828                 tg3_ape_unlock(tp, TG3_APE_LOCK_GPIO);
2829         } else {
2830                 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl,
2831                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2832         }
2833
2834         return 0;
2835 }
2836
2837 static void tg3_pwrsrc_die_with_vmain(struct tg3 *tp)
2838 {
2839         u32 grc_local_ctrl;
2840
2841         if (!tg3_flag(tp, IS_NIC) ||
2842             tg3_asic_rev(tp) == ASIC_REV_5700 ||
2843             tg3_asic_rev(tp) == ASIC_REV_5701)
2844                 return;
2845
2846         grc_local_ctrl = tp->grc_local_ctrl | GRC_LCLCTRL_GPIO_OE1;
2847
2848         tw32_wait_f(GRC_LOCAL_CTRL,
2849                     grc_local_ctrl | GRC_LCLCTRL_GPIO_OUTPUT1,
2850                     TG3_GRC_LCLCTL_PWRSW_DELAY);
2851
2852         tw32_wait_f(GRC_LOCAL_CTRL,
2853                     grc_local_ctrl,
2854                     TG3_GRC_LCLCTL_PWRSW_DELAY);
2855
2856         tw32_wait_f(GRC_LOCAL_CTRL,
2857                     grc_local_ctrl | GRC_LCLCTRL_GPIO_OUTPUT1,
2858                     TG3_GRC_LCLCTL_PWRSW_DELAY);
2859 }
2860
2861 static void tg3_pwrsrc_switch_to_vaux(struct tg3 *tp)
2862 {
2863         if (!tg3_flag(tp, IS_NIC))
2864                 return;
2865
2866         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
2867             tg3_asic_rev(tp) == ASIC_REV_5701) {
2868                 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl |
2869                             (GRC_LCLCTRL_GPIO_OE0 |
2870                              GRC_LCLCTRL_GPIO_OE1 |
2871                              GRC_LCLCTRL_GPIO_OE2 |
2872                              GRC_LCLCTRL_GPIO_OUTPUT0 |
2873                              GRC_LCLCTRL_GPIO_OUTPUT1),
2874                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2875         } else if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
2876                    tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S) {
2877                 /* The 5761 non-e device swaps GPIO 0 and GPIO 2. */
2878                 u32 grc_local_ctrl = GRC_LCLCTRL_GPIO_OE0 |
2879                                      GRC_LCLCTRL_GPIO_OE1 |
2880                                      GRC_LCLCTRL_GPIO_OE2 |
2881                                      GRC_LCLCTRL_GPIO_OUTPUT0 |
2882                                      GRC_LCLCTRL_GPIO_OUTPUT1 |
2883                                      tp->grc_local_ctrl;
2884                 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2885                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2886
2887                 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OUTPUT2;
2888                 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2889                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2890
2891                 grc_local_ctrl &= ~GRC_LCLCTRL_GPIO_OUTPUT0;
2892                 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2893                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2894         } else {
2895                 u32 no_gpio2;
2896                 u32 grc_local_ctrl = 0;
2897
2898                 /* Workaround to prevent overdrawing Amps. */
2899                 if (tg3_asic_rev(tp) == ASIC_REV_5714) {
2900                         grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE3;
2901                         tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl |
2902                                     grc_local_ctrl,
2903                                     TG3_GRC_LCLCTL_PWRSW_DELAY);
2904                 }
2905
2906                 /* On 5753 and variants, GPIO2 cannot be used. */
2907                 no_gpio2 = tp->nic_sram_data_cfg &
2908                            NIC_SRAM_DATA_CFG_NO_GPIO2;
2909
2910                 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE0 |
2911                                   GRC_LCLCTRL_GPIO_OE1 |
2912                                   GRC_LCLCTRL_GPIO_OE2 |
2913                                   GRC_LCLCTRL_GPIO_OUTPUT1 |
2914                                   GRC_LCLCTRL_GPIO_OUTPUT2;
2915                 if (no_gpio2) {
2916                         grc_local_ctrl &= ~(GRC_LCLCTRL_GPIO_OE2 |
2917                                             GRC_LCLCTRL_GPIO_OUTPUT2);
2918                 }
2919                 tw32_wait_f(GRC_LOCAL_CTRL,
2920                             tp->grc_local_ctrl | grc_local_ctrl,
2921                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2922
2923                 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OUTPUT0;
2924
2925                 tw32_wait_f(GRC_LOCAL_CTRL,
2926                             tp->grc_local_ctrl | grc_local_ctrl,
2927                             TG3_GRC_LCLCTL_PWRSW_DELAY);
2928
2929                 if (!no_gpio2) {
2930                         grc_local_ctrl &= ~GRC_LCLCTRL_GPIO_OUTPUT2;
2931                         tw32_wait_f(GRC_LOCAL_CTRL,
2932                                     tp->grc_local_ctrl | grc_local_ctrl,
2933                                     TG3_GRC_LCLCTL_PWRSW_DELAY);
2934                 }
2935         }
2936 }
2937
2938 static void tg3_frob_aux_power_5717(struct tg3 *tp, bool wol_enable)
2939 {
2940         u32 msg = 0;
2941
2942         /* Serialize power state transitions */
2943         if (tg3_ape_lock(tp, TG3_APE_LOCK_GPIO))
2944                 return;
2945
2946         if (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE) || wol_enable)
2947                 msg = TG3_GPIO_MSG_NEED_VAUX;
2948
2949         msg = tg3_set_function_status(tp, msg);
2950
2951         if (msg & TG3_GPIO_MSG_ALL_DRVR_PRES_MASK)
2952                 goto done;
2953
2954         if (msg & TG3_GPIO_MSG_ALL_NEED_VAUX_MASK)
2955                 tg3_pwrsrc_switch_to_vaux(tp);
2956         else
2957                 tg3_pwrsrc_die_with_vmain(tp);
2958
2959 done:
2960         tg3_ape_unlock(tp, TG3_APE_LOCK_GPIO);
2961 }
2962
2963 static void tg3_frob_aux_power(struct tg3 *tp, bool include_wol)
2964 {
2965         bool need_vaux = false;
2966
2967         /* The GPIOs do something completely different on 57765. */
2968         if (!tg3_flag(tp, IS_NIC) || tg3_flag(tp, 57765_CLASS))
2969                 return;
2970
2971         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
2972             tg3_asic_rev(tp) == ASIC_REV_5719 ||
2973             tg3_asic_rev(tp) == ASIC_REV_5720) {
2974                 tg3_frob_aux_power_5717(tp, include_wol ?
2975                                         tg3_flag(tp, WOL_ENABLE) != 0 : 0);
2976                 return;
2977         }
2978
2979         if (tp->pdev_peer && tp->pdev_peer != tp->pdev) {
2980                 struct net_device *dev_peer;
2981
2982                 dev_peer = pci_get_drvdata(tp->pdev_peer);
2983
2984                 /* remove_one() may have been run on the peer. */
2985                 if (dev_peer) {
2986                         struct tg3 *tp_peer = netdev_priv(dev_peer);
2987
2988                         if (tg3_flag(tp_peer, INIT_COMPLETE))
2989                                 return;
2990
2991                         if ((include_wol && tg3_flag(tp_peer, WOL_ENABLE)) ||
2992                             tg3_flag(tp_peer, ENABLE_ASF))
2993                                 need_vaux = true;
2994                 }
2995         }
2996
2997         if ((include_wol && tg3_flag(tp, WOL_ENABLE)) ||
2998             tg3_flag(tp, ENABLE_ASF))
2999                 need_vaux = true;
3000
3001         if (need_vaux)
3002                 tg3_pwrsrc_switch_to_vaux(tp);
3003         else
3004                 tg3_pwrsrc_die_with_vmain(tp);
3005 }
3006
3007 static int tg3_5700_link_polarity(struct tg3 *tp, u32 speed)
3008 {
3009         if (tp->led_ctrl == LED_CTRL_MODE_PHY_2)
3010                 return 1;
3011         else if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5411) {
3012                 if (speed != SPEED_10)
3013                         return 1;
3014         } else if (speed == SPEED_10)
3015                 return 1;
3016
3017         return 0;
3018 }
3019
3020 static bool tg3_phy_power_bug(struct tg3 *tp)
3021 {
3022         switch (tg3_asic_rev(tp)) {
3023         case ASIC_REV_5700:
3024         case ASIC_REV_5704:
3025                 return true;
3026         case ASIC_REV_5780:
3027                 if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
3028                         return true;
3029                 return false;
3030         case ASIC_REV_5717:
3031                 if (!tp->pci_fn)
3032                         return true;
3033                 return false;
3034         case ASIC_REV_5719:
3035         case ASIC_REV_5720:
3036                 if ((tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
3037                     !tp->pci_fn)
3038                         return true;
3039                 return false;
3040         }
3041
3042         return false;
3043 }
3044
3045 static bool tg3_phy_led_bug(struct tg3 *tp)
3046 {
3047         switch (tg3_asic_rev(tp)) {
3048         case ASIC_REV_5719:
3049         case ASIC_REV_5720:
3050                 if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
3051                     !tp->pci_fn)
3052                         return true;
3053                 return false;
3054         }
3055
3056         return false;
3057 }
3058
3059 static void tg3_power_down_phy(struct tg3 *tp, bool do_low_power)
3060 {
3061         u32 val;
3062
3063         if (tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN)
3064                 return;
3065
3066         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
3067                 if (tg3_asic_rev(tp) == ASIC_REV_5704) {
3068                         u32 sg_dig_ctrl = tr32(SG_DIG_CTRL);
3069                         u32 serdes_cfg = tr32(MAC_SERDES_CFG);
3070
3071                         sg_dig_ctrl |=
3072                                 SG_DIG_USING_HW_AUTONEG | SG_DIG_SOFT_RESET;
3073                         tw32(SG_DIG_CTRL, sg_dig_ctrl);
3074                         tw32(MAC_SERDES_CFG, serdes_cfg | (1 << 15));
3075                 }
3076                 return;
3077         }
3078
3079         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
3080                 tg3_bmcr_reset(tp);
3081                 val = tr32(GRC_MISC_CFG);
3082                 tw32_f(GRC_MISC_CFG, val | GRC_MISC_CFG_EPHY_IDDQ);
3083                 udelay(40);
3084                 return;
3085         } else if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
3086                 u32 phytest;
3087                 if (!tg3_readphy(tp, MII_TG3_FET_TEST, &phytest)) {
3088                         u32 phy;
3089
3090                         tg3_writephy(tp, MII_ADVERTISE, 0);
3091                         tg3_writephy(tp, MII_BMCR,
3092                                      BMCR_ANENABLE | BMCR_ANRESTART);
3093
3094                         tg3_writephy(tp, MII_TG3_FET_TEST,
3095                                      phytest | MII_TG3_FET_SHADOW_EN);
3096                         if (!tg3_readphy(tp, MII_TG3_FET_SHDW_AUXMODE4, &phy)) {
3097                                 phy |= MII_TG3_FET_SHDW_AUXMODE4_SBPD;
3098                                 tg3_writephy(tp,
3099                                              MII_TG3_FET_SHDW_AUXMODE4,
3100                                              phy);
3101                         }
3102                         tg3_writephy(tp, MII_TG3_FET_TEST, phytest);
3103                 }
3104                 return;
3105         } else if (do_low_power) {
3106                 if (!tg3_phy_led_bug(tp))
3107                         tg3_writephy(tp, MII_TG3_EXT_CTRL,
3108                                      MII_TG3_EXT_CTRL_FORCE_LED_OFF);
3109
3110                 val = MII_TG3_AUXCTL_PCTL_100TX_LPWR |
3111                       MII_TG3_AUXCTL_PCTL_SPR_ISOLATE |
3112                       MII_TG3_AUXCTL_PCTL_VREG_11V;
3113                 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_PWRCTL, val);
3114         }
3115
3116         /* The PHY should not be powered down on some chips because
3117          * of bugs.
3118          */
3119         if (tg3_phy_power_bug(tp))
3120                 return;
3121
3122         if (tg3_chip_rev(tp) == CHIPREV_5784_AX ||
3123             tg3_chip_rev(tp) == CHIPREV_5761_AX) {
3124                 val = tr32(TG3_CPMU_LSPD_1000MB_CLK);
3125                 val &= ~CPMU_LSPD_1000MB_MACCLK_MASK;
3126                 val |= CPMU_LSPD_1000MB_MACCLK_12_5;
3127                 tw32_f(TG3_CPMU_LSPD_1000MB_CLK, val);
3128         }
3129
3130         tg3_writephy(tp, MII_BMCR, BMCR_PDOWN);
3131 }
3132
3133 /* tp->lock is held. */
3134 static int tg3_nvram_lock(struct tg3 *tp)
3135 {
3136         if (tg3_flag(tp, NVRAM)) {
3137                 int i;
3138
3139                 if (tp->nvram_lock_cnt == 0) {
3140                         tw32(NVRAM_SWARB, SWARB_REQ_SET1);
3141                         for (i = 0; i < 8000; i++) {
3142                                 if (tr32(NVRAM_SWARB) & SWARB_GNT1)
3143                                         break;
3144                                 udelay(20);
3145                         }
3146                         if (i == 8000) {
3147                                 tw32(NVRAM_SWARB, SWARB_REQ_CLR1);
3148                                 return -ENODEV;
3149                         }
3150                 }
3151                 tp->nvram_lock_cnt++;
3152         }
3153         return 0;
3154 }
3155
3156 /* tp->lock is held. */
3157 static void tg3_nvram_unlock(struct tg3 *tp)
3158 {
3159         if (tg3_flag(tp, NVRAM)) {
3160                 if (tp->nvram_lock_cnt > 0)
3161                         tp->nvram_lock_cnt--;
3162                 if (tp->nvram_lock_cnt == 0)
3163                         tw32_f(NVRAM_SWARB, SWARB_REQ_CLR1);
3164         }
3165 }
3166
3167 /* tp->lock is held. */
3168 static void tg3_enable_nvram_access(struct tg3 *tp)
3169 {
3170         if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM)) {
3171                 u32 nvaccess = tr32(NVRAM_ACCESS);
3172
3173                 tw32(NVRAM_ACCESS, nvaccess | ACCESS_ENABLE);
3174         }
3175 }
3176
3177 /* tp->lock is held. */
3178 static void tg3_disable_nvram_access(struct tg3 *tp)
3179 {
3180         if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM)) {
3181                 u32 nvaccess = tr32(NVRAM_ACCESS);
3182
3183                 tw32(NVRAM_ACCESS, nvaccess & ~ACCESS_ENABLE);
3184         }
3185 }
3186
3187 static int tg3_nvram_read_using_eeprom(struct tg3 *tp,
3188                                         u32 offset, u32 *val)
3189 {
3190         u32 tmp;
3191         int i;
3192
3193         if (offset > EEPROM_ADDR_ADDR_MASK || (offset % 4) != 0)
3194                 return -EINVAL;
3195
3196         tmp = tr32(GRC_EEPROM_ADDR) & ~(EEPROM_ADDR_ADDR_MASK |
3197                                         EEPROM_ADDR_DEVID_MASK |
3198                                         EEPROM_ADDR_READ);
3199         tw32(GRC_EEPROM_ADDR,
3200              tmp |
3201              (0 << EEPROM_ADDR_DEVID_SHIFT) |
3202              ((offset << EEPROM_ADDR_ADDR_SHIFT) &
3203               EEPROM_ADDR_ADDR_MASK) |
3204              EEPROM_ADDR_READ | EEPROM_ADDR_START);
3205
3206         for (i = 0; i < 1000; i++) {
3207                 tmp = tr32(GRC_EEPROM_ADDR);
3208
3209                 if (tmp & EEPROM_ADDR_COMPLETE)
3210                         break;
3211                 msleep(1);
3212         }
3213         if (!(tmp & EEPROM_ADDR_COMPLETE))
3214                 return -EBUSY;
3215
3216         tmp = tr32(GRC_EEPROM_DATA);
3217
3218         /*
3219          * The data will always be opposite the native endian
3220          * format.  Perform a blind byteswap to compensate.
3221          */
3222         *val = swab32(tmp);
3223
3224         return 0;
3225 }
3226
3227 #define NVRAM_CMD_TIMEOUT 5000
3228
3229 static int tg3_nvram_exec_cmd(struct tg3 *tp, u32 nvram_cmd)
3230 {
3231         int i;
3232
3233         tw32(NVRAM_CMD, nvram_cmd);
3234         for (i = 0; i < NVRAM_CMD_TIMEOUT; i++) {
3235                 usleep_range(10, 40);
3236                 if (tr32(NVRAM_CMD) & NVRAM_CMD_DONE) {
3237                         udelay(10);
3238                         break;
3239                 }
3240         }
3241
3242         if (i == NVRAM_CMD_TIMEOUT)
3243                 return -EBUSY;
3244
3245         return 0;
3246 }
3247
3248 static u32 tg3_nvram_phys_addr(struct tg3 *tp, u32 addr)
3249 {
3250         if (tg3_flag(tp, NVRAM) &&
3251             tg3_flag(tp, NVRAM_BUFFERED) &&
3252             tg3_flag(tp, FLASH) &&
3253             !tg3_flag(tp, NO_NVRAM_ADDR_TRANS) &&
3254             (tp->nvram_jedecnum == JEDEC_ATMEL))
3255
3256                 addr = ((addr / tp->nvram_pagesize) <<
3257                         ATMEL_AT45DB0X1B_PAGE_POS) +
3258                        (addr % tp->nvram_pagesize);
3259
3260         return addr;
3261 }
3262
3263 static u32 tg3_nvram_logical_addr(struct tg3 *tp, u32 addr)
3264 {
3265         if (tg3_flag(tp, NVRAM) &&
3266             tg3_flag(tp, NVRAM_BUFFERED) &&
3267             tg3_flag(tp, FLASH) &&
3268             !tg3_flag(tp, NO_NVRAM_ADDR_TRANS) &&
3269             (tp->nvram_jedecnum == JEDEC_ATMEL))
3270
3271                 addr = ((addr >> ATMEL_AT45DB0X1B_PAGE_POS) *
3272                         tp->nvram_pagesize) +
3273                        (addr & ((1 << ATMEL_AT45DB0X1B_PAGE_POS) - 1));
3274
3275         return addr;
3276 }
3277
3278 /* NOTE: Data read in from NVRAM is byteswapped according to
3279  * the byteswapping settings for all other register accesses.
3280  * tg3 devices are BE devices, so on a BE machine, the data
3281  * returned will be exactly as it is seen in NVRAM.  On a LE
3282  * machine, the 32-bit value will be byteswapped.
3283  */
3284 static int tg3_nvram_read(struct tg3 *tp, u32 offset, u32 *val)
3285 {
3286         int ret;
3287
3288         if (!tg3_flag(tp, NVRAM))
3289                 return tg3_nvram_read_using_eeprom(tp, offset, val);
3290
3291         offset = tg3_nvram_phys_addr(tp, offset);
3292
3293         if (offset > NVRAM_ADDR_MSK)
3294                 return -EINVAL;
3295
3296         ret = tg3_nvram_lock(tp);
3297         if (ret)
3298                 return ret;
3299
3300         tg3_enable_nvram_access(tp);
3301
3302         tw32(NVRAM_ADDR, offset);
3303         ret = tg3_nvram_exec_cmd(tp, NVRAM_CMD_RD | NVRAM_CMD_GO |
3304                 NVRAM_CMD_FIRST | NVRAM_CMD_LAST | NVRAM_CMD_DONE);
3305
3306         if (ret == 0)
3307                 *val = tr32(NVRAM_RDDATA);
3308
3309         tg3_disable_nvram_access(tp);
3310
3311         tg3_nvram_unlock(tp);
3312
3313         return ret;
3314 }
3315
3316 /* Ensures NVRAM data is in bytestream format. */
3317 static int tg3_nvram_read_be32(struct tg3 *tp, u32 offset, __be32 *val)
3318 {
3319         u32 v;
3320         int res = tg3_nvram_read(tp, offset, &v);
3321         if (!res)
3322                 *val = cpu_to_be32(v);
3323         return res;
3324 }
3325
3326 static int tg3_nvram_write_block_using_eeprom(struct tg3 *tp,
3327                                     u32 offset, u32 len, u8 *buf)
3328 {
3329         int i, j, rc = 0;
3330         u32 val;
3331
3332         for (i = 0; i < len; i += 4) {
3333                 u32 addr;
3334                 __be32 data;
3335
3336                 addr = offset + i;
3337
3338                 memcpy(&data, buf + i, 4);
3339
3340                 /*
3341                  * The SEEPROM interface expects the data to always be opposite
3342                  * the native endian format.  We accomplish this by reversing
3343                  * all the operations that would have been performed on the
3344                  * data from a call to tg3_nvram_read_be32().
3345                  */
3346                 tw32(GRC_EEPROM_DATA, swab32(be32_to_cpu(data)));
3347
3348                 val = tr32(GRC_EEPROM_ADDR);
3349                 tw32(GRC_EEPROM_ADDR, val | EEPROM_ADDR_COMPLETE);
3350
3351                 val &= ~(EEPROM_ADDR_ADDR_MASK | EEPROM_ADDR_DEVID_MASK |
3352                         EEPROM_ADDR_READ);
3353                 tw32(GRC_EEPROM_ADDR, val |
3354                         (0 << EEPROM_ADDR_DEVID_SHIFT) |
3355                         (addr & EEPROM_ADDR_ADDR_MASK) |
3356                         EEPROM_ADDR_START |
3357                         EEPROM_ADDR_WRITE);
3358
3359                 for (j = 0; j < 1000; j++) {
3360                         val = tr32(GRC_EEPROM_ADDR);
3361
3362                         if (val & EEPROM_ADDR_COMPLETE)
3363                                 break;
3364                         msleep(1);
3365                 }
3366                 if (!(val & EEPROM_ADDR_COMPLETE)) {
3367                         rc = -EBUSY;
3368                         break;
3369                 }
3370         }
3371
3372         return rc;
3373 }
3374
3375 /* offset and length are dword aligned */
3376 static int tg3_nvram_write_block_unbuffered(struct tg3 *tp, u32 offset, u32 len,
3377                 u8 *buf)
3378 {
3379         int ret = 0;
3380         u32 pagesize = tp->nvram_pagesize;
3381         u32 pagemask = pagesize - 1;
3382         u32 nvram_cmd;
3383         u8 *tmp;
3384
3385         tmp = kmalloc(pagesize, GFP_KERNEL);
3386         if (tmp == NULL)
3387                 return -ENOMEM;
3388
3389         while (len) {
3390                 int j;
3391                 u32 phy_addr, page_off, size;
3392
3393                 phy_addr = offset & ~pagemask;
3394
3395                 for (j = 0; j < pagesize; j += 4) {
3396                         ret = tg3_nvram_read_be32(tp, phy_addr + j,
3397                                                   (__be32 *) (tmp + j));
3398                         if (ret)
3399                                 break;
3400                 }
3401                 if (ret)
3402                         break;
3403
3404                 page_off = offset & pagemask;
3405                 size = pagesize;
3406                 if (len < size)
3407                         size = len;
3408
3409                 len -= size;
3410
3411                 memcpy(tmp + page_off, buf, size);
3412
3413                 offset = offset + (pagesize - page_off);
3414
3415                 tg3_enable_nvram_access(tp);
3416
3417                 /*
3418                  * Before we can erase the flash page, we need
3419                  * to issue a special "write enable" command.
3420                  */
3421                 nvram_cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3422
3423                 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3424                         break;
3425
3426                 /* Erase the target page */
3427                 tw32(NVRAM_ADDR, phy_addr);
3428
3429                 nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE | NVRAM_CMD_WR |
3430                         NVRAM_CMD_FIRST | NVRAM_CMD_LAST | NVRAM_CMD_ERASE;
3431
3432                 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3433                         break;
3434
3435                 /* Issue another write enable to start the write. */
3436                 nvram_cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3437
3438                 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3439                         break;
3440
3441                 for (j = 0; j < pagesize; j += 4) {
3442                         __be32 data;
3443
3444                         data = *((__be32 *) (tmp + j));
3445
3446                         tw32(NVRAM_WRDATA, be32_to_cpu(data));
3447
3448                         tw32(NVRAM_ADDR, phy_addr + j);
3449
3450                         nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE |
3451                                 NVRAM_CMD_WR;
3452
3453                         if (j == 0)
3454                                 nvram_cmd |= NVRAM_CMD_FIRST;
3455                         else if (j == (pagesize - 4))
3456                                 nvram_cmd |= NVRAM_CMD_LAST;
3457
3458                         ret = tg3_nvram_exec_cmd(tp, nvram_cmd);
3459                         if (ret)
3460                                 break;
3461                 }
3462                 if (ret)
3463                         break;
3464         }
3465
3466         nvram_cmd = NVRAM_CMD_WRDI | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3467         tg3_nvram_exec_cmd(tp, nvram_cmd);
3468
3469         kfree(tmp);
3470
3471         return ret;
3472 }
3473
3474 /* offset and length are dword aligned */
3475 static int tg3_nvram_write_block_buffered(struct tg3 *tp, u32 offset, u32 len,
3476                 u8 *buf)
3477 {
3478         int i, ret = 0;
3479
3480         for (i = 0; i < len; i += 4, offset += 4) {
3481                 u32 page_off, phy_addr, nvram_cmd;
3482                 __be32 data;
3483
3484                 memcpy(&data, buf + i, 4);
3485                 tw32(NVRAM_WRDATA, be32_to_cpu(data));
3486
3487                 page_off = offset % tp->nvram_pagesize;
3488
3489                 phy_addr = tg3_nvram_phys_addr(tp, offset);
3490
3491                 nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE | NVRAM_CMD_WR;
3492
3493                 if (page_off == 0 || i == 0)
3494                         nvram_cmd |= NVRAM_CMD_FIRST;
3495                 if (page_off == (tp->nvram_pagesize - 4))
3496                         nvram_cmd |= NVRAM_CMD_LAST;
3497
3498                 if (i == (len - 4))
3499                         nvram_cmd |= NVRAM_CMD_LAST;
3500
3501                 if ((nvram_cmd & NVRAM_CMD_FIRST) ||
3502                     !tg3_flag(tp, FLASH) ||
3503                     !tg3_flag(tp, 57765_PLUS))
3504                         tw32(NVRAM_ADDR, phy_addr);
3505
3506                 if (tg3_asic_rev(tp) != ASIC_REV_5752 &&
3507                     !tg3_flag(tp, 5755_PLUS) &&
3508                     (tp->nvram_jedecnum == JEDEC_ST) &&
3509                     (nvram_cmd & NVRAM_CMD_FIRST)) {
3510                         u32 cmd;
3511
3512                         cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3513                         ret = tg3_nvram_exec_cmd(tp, cmd);
3514                         if (ret)
3515                                 break;
3516                 }
3517                 if (!tg3_flag(tp, FLASH)) {
3518                         /* We always do complete word writes to eeprom. */
3519                         nvram_cmd |= (NVRAM_CMD_FIRST | NVRAM_CMD_LAST);
3520                 }
3521
3522                 ret = tg3_nvram_exec_cmd(tp, nvram_cmd);
3523                 if (ret)
3524                         break;
3525         }
3526         return ret;
3527 }
3528
3529 /* offset and length are dword aligned */
3530 static int tg3_nvram_write_block(struct tg3 *tp, u32 offset, u32 len, u8 *buf)
3531 {
3532         int ret;
3533
3534         if (tg3_flag(tp, EEPROM_WRITE_PROT)) {
3535                 tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl &
3536                        ~GRC_LCLCTRL_GPIO_OUTPUT1);
3537                 udelay(40);
3538         }
3539
3540         if (!tg3_flag(tp, NVRAM)) {
3541                 ret = tg3_nvram_write_block_using_eeprom(tp, offset, len, buf);
3542         } else {
3543                 u32 grc_mode;
3544
3545                 ret = tg3_nvram_lock(tp);
3546                 if (ret)
3547                         return ret;
3548
3549                 tg3_enable_nvram_access(tp);
3550                 if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM))
3551                         tw32(NVRAM_WRITE1, 0x406);
3552
3553                 grc_mode = tr32(GRC_MODE);
3554                 tw32(GRC_MODE, grc_mode | GRC_MODE_NVRAM_WR_ENABLE);
3555
3556                 if (tg3_flag(tp, NVRAM_BUFFERED) || !tg3_flag(tp, FLASH)) {
3557                         ret = tg3_nvram_write_block_buffered(tp, offset, len,
3558                                 buf);
3559                 } else {
3560                         ret = tg3_nvram_write_block_unbuffered(tp, offset, len,
3561                                 buf);
3562                 }
3563
3564                 grc_mode = tr32(GRC_MODE);
3565                 tw32(GRC_MODE, grc_mode & ~GRC_MODE_NVRAM_WR_ENABLE);
3566
3567                 tg3_disable_nvram_access(tp);
3568                 tg3_nvram_unlock(tp);
3569         }
3570
3571         if (tg3_flag(tp, EEPROM_WRITE_PROT)) {
3572                 tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
3573                 udelay(40);
3574         }
3575
3576         return ret;
3577 }
3578
3579 #define RX_CPU_SCRATCH_BASE     0x30000
3580 #define RX_CPU_SCRATCH_SIZE     0x04000
3581 #define TX_CPU_SCRATCH_BASE     0x34000
3582 #define TX_CPU_SCRATCH_SIZE     0x04000
3583
3584 /* tp->lock is held. */
3585 static int tg3_pause_cpu(struct tg3 *tp, u32 cpu_base)
3586 {
3587         int i;
3588         const int iters = 10000;
3589
3590         for (i = 0; i < iters; i++) {
3591                 tw32(cpu_base + CPU_STATE, 0xffffffff);
3592                 tw32(cpu_base + CPU_MODE,  CPU_MODE_HALT);
3593                 if (tr32(cpu_base + CPU_MODE) & CPU_MODE_HALT)
3594                         break;
3595                 if (pci_channel_offline(tp->pdev))
3596                         return -EBUSY;
3597         }
3598
3599         return (i == iters) ? -EBUSY : 0;
3600 }
3601
3602 /* tp->lock is held. */
3603 static int tg3_rxcpu_pause(struct tg3 *tp)
3604 {
3605         int rc = tg3_pause_cpu(tp, RX_CPU_BASE);
3606
3607         tw32(RX_CPU_BASE + CPU_STATE, 0xffffffff);
3608         tw32_f(RX_CPU_BASE + CPU_MODE,  CPU_MODE_HALT);
3609         udelay(10);
3610
3611         return rc;
3612 }
3613
3614 /* tp->lock is held. */
3615 static int tg3_txcpu_pause(struct tg3 *tp)
3616 {
3617         return tg3_pause_cpu(tp, TX_CPU_BASE);
3618 }
3619
3620 /* tp->lock is held. */
3621 static void tg3_resume_cpu(struct tg3 *tp, u32 cpu_base)
3622 {
3623         tw32(cpu_base + CPU_STATE, 0xffffffff);
3624         tw32_f(cpu_base + CPU_MODE,  0x00000000);
3625 }
3626
3627 /* tp->lock is held. */
3628 static void tg3_rxcpu_resume(struct tg3 *tp)
3629 {
3630         tg3_resume_cpu(tp, RX_CPU_BASE);
3631 }
3632
3633 /* tp->lock is held. */
3634 static int tg3_halt_cpu(struct tg3 *tp, u32 cpu_base)
3635 {
3636         int rc;
3637
3638         BUG_ON(cpu_base == TX_CPU_BASE && tg3_flag(tp, 5705_PLUS));
3639
3640         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
3641                 u32 val = tr32(GRC_VCPU_EXT_CTRL);
3642
3643                 tw32(GRC_VCPU_EXT_CTRL, val | GRC_VCPU_EXT_CTRL_HALT_CPU);
3644                 return 0;
3645         }
3646         if (cpu_base == RX_CPU_BASE) {
3647                 rc = tg3_rxcpu_pause(tp);
3648         } else {
3649                 /*
3650                  * There is only an Rx CPU for the 5750 derivative in the
3651                  * BCM4785.
3652                  */
3653                 if (tg3_flag(tp, IS_SSB_CORE))
3654                         return 0;
3655
3656                 rc = tg3_txcpu_pause(tp);
3657         }
3658
3659         if (rc) {
3660                 netdev_err(tp->dev, "%s timed out, %s CPU\n",
3661                            __func__, cpu_base == RX_CPU_BASE ? "RX" : "TX");
3662                 return -ENODEV;
3663         }
3664
3665         /* Clear firmware's nvram arbitration. */
3666         if (tg3_flag(tp, NVRAM))
3667                 tw32(NVRAM_SWARB, SWARB_REQ_CLR0);
3668         return 0;
3669 }
3670
3671 static int tg3_fw_data_len(struct tg3 *tp,
3672                            const struct tg3_firmware_hdr *fw_hdr)
3673 {
3674         int fw_len;
3675
3676         /* Non fragmented firmware have one firmware header followed by a
3677          * contiguous chunk of data to be written. The length field in that
3678          * header is not the length of data to be written but the complete
3679          * length of the bss. The data length is determined based on
3680          * tp->fw->size minus headers.
3681          *
3682          * Fragmented firmware have a main header followed by multiple
3683          * fragments. Each fragment is identical to non fragmented firmware
3684          * with a firmware header followed by a contiguous chunk of data. In
3685          * the main header, the length field is unused and set to 0xffffffff.
3686          * In each fragment header the length is the entire size of that
3687          * fragment i.e. fragment data + header length. Data length is
3688          * therefore length field in the header minus TG3_FW_HDR_LEN.
3689          */
3690         if (tp->fw_len == 0xffffffff)
3691                 fw_len = be32_to_cpu(fw_hdr->len);
3692         else
3693                 fw_len = tp->fw->size;
3694
3695         return (fw_len - TG3_FW_HDR_LEN) / sizeof(u32);
3696 }
3697
3698 /* tp->lock is held. */
3699 static int tg3_load_firmware_cpu(struct tg3 *tp, u32 cpu_base,
3700                                  u32 cpu_scratch_base, int cpu_scratch_size,
3701                                  const struct tg3_firmware_hdr *fw_hdr)
3702 {
3703         int err, i;
3704         void (*write_op)(struct tg3 *, u32, u32);
3705         int total_len = tp->fw->size;
3706
3707         if (cpu_base == TX_CPU_BASE && tg3_flag(tp, 5705_PLUS)) {
3708                 netdev_err(tp->dev,
3709                            "%s: Trying to load TX cpu firmware which is 5705\n",
3710                            __func__);
3711                 return -EINVAL;
3712         }
3713
3714         if (tg3_flag(tp, 5705_PLUS) && tg3_asic_rev(tp) != ASIC_REV_57766)
3715                 write_op = tg3_write_mem;
3716         else
3717                 write_op = tg3_write_indirect_reg32;
3718
3719         if (tg3_asic_rev(tp) != ASIC_REV_57766) {
3720                 /* It is possible that bootcode is still loading at this point.
3721                  * Get the nvram lock first before halting the cpu.
3722                  */
3723                 int lock_err = tg3_nvram_lock(tp);
3724                 err = tg3_halt_cpu(tp, cpu_base);
3725                 if (!lock_err)
3726                         tg3_nvram_unlock(tp);
3727                 if (err)
3728                         goto out;
3729
3730                 for (i = 0; i < cpu_scratch_size; i += sizeof(u32))
3731                         write_op(tp, cpu_scratch_base + i, 0);
3732                 tw32(cpu_base + CPU_STATE, 0xffffffff);
3733                 tw32(cpu_base + CPU_MODE,
3734                      tr32(cpu_base + CPU_MODE) | CPU_MODE_HALT);
3735         } else {
3736                 /* Subtract additional main header for fragmented firmware and
3737                  * advance to the first fragment
3738                  */
3739                 total_len -= TG3_FW_HDR_LEN;
3740                 fw_hdr++;
3741         }
3742
3743         do {
3744                 u32 *fw_data = (u32 *)(fw_hdr + 1);
3745                 for (i = 0; i < tg3_fw_data_len(tp, fw_hdr); i++)
3746                         write_op(tp, cpu_scratch_base +
3747                                      (be32_to_cpu(fw_hdr->base_addr) & 0xffff) +
3748                                      (i * sizeof(u32)),
3749                                  be32_to_cpu(fw_data[i]));
3750
3751                 total_len -= be32_to_cpu(fw_hdr->len);
3752
3753                 /* Advance to next fragment */
3754                 fw_hdr = (struct tg3_firmware_hdr *)
3755                          ((void *)fw_hdr + be32_to_cpu(fw_hdr->len));
3756         } while (total_len > 0);
3757
3758         err = 0;
3759
3760 out:
3761         return err;
3762 }
3763
3764 /* tp->lock is held. */
3765 static int tg3_pause_cpu_and_set_pc(struct tg3 *tp, u32 cpu_base, u32 pc)
3766 {
3767         int i;
3768         const int iters = 5;
3769
3770         tw32(cpu_base + CPU_STATE, 0xffffffff);
3771         tw32_f(cpu_base + CPU_PC, pc);
3772
3773         for (i = 0; i < iters; i++) {
3774                 if (tr32(cpu_base + CPU_PC) == pc)
3775                         break;
3776                 tw32(cpu_base + CPU_STATE, 0xffffffff);
3777                 tw32(cpu_base + CPU_MODE,  CPU_MODE_HALT);
3778                 tw32_f(cpu_base + CPU_PC, pc);
3779                 udelay(1000);
3780         }
3781
3782         return (i == iters) ? -EBUSY : 0;
3783 }
3784
3785 /* tp->lock is held. */
3786 static int tg3_load_5701_a0_firmware_fix(struct tg3 *tp)
3787 {
3788         const struct tg3_firmware_hdr *fw_hdr;
3789         int err;
3790
3791         fw_hdr = (struct tg3_firmware_hdr *)tp->fw->data;
3792
3793         /* Firmware blob starts with version numbers, followed by
3794            start address and length. We are setting complete length.
3795            length = end_address_of_bss - start_address_of_text.
3796            Remainder is the blob to be loaded contiguously
3797            from start address. */
3798
3799         err = tg3_load_firmware_cpu(tp, RX_CPU_BASE,
3800                                     RX_CPU_SCRATCH_BASE, RX_CPU_SCRATCH_SIZE,
3801                                     fw_hdr);
3802         if (err)
3803                 return err;
3804
3805         err = tg3_load_firmware_cpu(tp, TX_CPU_BASE,
3806                                     TX_CPU_SCRATCH_BASE, TX_CPU_SCRATCH_SIZE,
3807                                     fw_hdr);
3808         if (err)
3809                 return err;
3810
3811         /* Now startup only the RX cpu. */
3812         err = tg3_pause_cpu_and_set_pc(tp, RX_CPU_BASE,
3813                                        be32_to_cpu(fw_hdr->base_addr));
3814         if (err) {
3815                 netdev_err(tp->dev, "%s fails to set RX CPU PC, is %08x "
3816                            "should be %08x\n", __func__,
3817                            tr32(RX_CPU_BASE + CPU_PC),
3818                                 be32_to_cpu(fw_hdr->base_addr));
3819                 return -ENODEV;
3820         }
3821
3822         tg3_rxcpu_resume(tp);
3823
3824         return 0;
3825 }
3826
3827 static int tg3_validate_rxcpu_state(struct tg3 *tp)
3828 {
3829         const int iters = 1000;
3830         int i;
3831         u32 val;
3832
3833         /* Wait for boot code to complete initialization and enter service
3834          * loop. It is then safe to download service patches
3835          */
3836         for (i = 0; i < iters; i++) {
3837                 if (tr32(RX_CPU_HWBKPT) == TG3_SBROM_IN_SERVICE_LOOP)
3838                         break;
3839
3840                 udelay(10);
3841         }
3842
3843         if (i == iters) {
3844                 netdev_err(tp->dev, "Boot code not ready for service patches\n");
3845                 return -EBUSY;
3846         }
3847
3848         val = tg3_read_indirect_reg32(tp, TG3_57766_FW_HANDSHAKE);
3849         if (val & 0xff) {
3850                 netdev_warn(tp->dev,
3851                             "Other patches exist. Not downloading EEE patch\n");
3852                 return -EEXIST;
3853         }
3854
3855         return 0;
3856 }
3857
3858 /* tp->lock is held. */
3859 static void tg3_load_57766_firmware(struct tg3 *tp)
3860 {
3861         struct tg3_firmware_hdr *fw_hdr;
3862
3863         if (!tg3_flag(tp, NO_NVRAM))
3864                 return;
3865
3866         if (tg3_validate_rxcpu_state(tp))
3867                 return;
3868
3869         if (!tp->fw)
3870                 return;
3871
3872         /* This firmware blob has a different format than older firmware
3873          * releases as given below. The main difference is we have fragmented
3874          * data to be written to non-contiguous locations.
3875          *
3876          * In the beginning we have a firmware header identical to other
3877          * firmware which consists of version, base addr and length. The length
3878          * here is unused and set to 0xffffffff.
3879          *
3880          * This is followed by a series of firmware fragments which are
3881          * individually identical to previous firmware. i.e. they have the
3882          * firmware header and followed by data for that fragment. The version
3883          * field of the individual fragment header is unused.
3884          */
3885
3886         fw_hdr = (struct tg3_firmware_hdr *)tp->fw->data;
3887         if (be32_to_cpu(fw_hdr->base_addr) != TG3_57766_FW_BASE_ADDR)
3888                 return;
3889
3890         if (tg3_rxcpu_pause(tp))
3891                 return;
3892
3893         /* tg3_load_firmware_cpu() will always succeed for the 57766 */
3894         tg3_load_firmware_cpu(tp, 0, TG3_57766_FW_BASE_ADDR, 0, fw_hdr);
3895
3896         tg3_rxcpu_resume(tp);
3897 }
3898
3899 /* tp->lock is held. */
3900 static int tg3_load_tso_firmware(struct tg3 *tp)
3901 {
3902         const struct tg3_firmware_hdr *fw_hdr;
3903         unsigned long cpu_base, cpu_scratch_base, cpu_scratch_size;
3904         int err;
3905
3906         if (!tg3_flag(tp, FW_TSO))
3907                 return 0;
3908
3909         fw_hdr = (struct tg3_firmware_hdr *)tp->fw->data;
3910
3911         /* Firmware blob starts with version numbers, followed by
3912            start address and length. We are setting complete length.
3913            length = end_address_of_bss - start_address_of_text.
3914            Remainder is the blob to be loaded contiguously
3915            from start address. */
3916
3917         cpu_scratch_size = tp->fw_len;
3918
3919         if (tg3_asic_rev(tp) == ASIC_REV_5705) {
3920                 cpu_base = RX_CPU_BASE;
3921                 cpu_scratch_base = NIC_SRAM_MBUF_POOL_BASE5705;
3922         } else {
3923                 cpu_base = TX_CPU_BASE;
3924                 cpu_scratch_base = TX_CPU_SCRATCH_BASE;
3925                 cpu_scratch_size = TX_CPU_SCRATCH_SIZE;
3926         }
3927
3928         err = tg3_load_firmware_cpu(tp, cpu_base,
3929                                     cpu_scratch_base, cpu_scratch_size,
3930                                     fw_hdr);
3931         if (err)
3932                 return err;
3933
3934         /* Now startup the cpu. */
3935         err = tg3_pause_cpu_and_set_pc(tp, cpu_base,
3936                                        be32_to_cpu(fw_hdr->base_addr));
3937         if (err) {
3938                 netdev_err(tp->dev,
3939                            "%s fails to set CPU PC, is %08x should be %08x\n",
3940                            __func__, tr32(cpu_base + CPU_PC),
3941                            be32_to_cpu(fw_hdr->base_addr));
3942                 return -ENODEV;
3943         }
3944
3945         tg3_resume_cpu(tp, cpu_base);
3946         return 0;
3947 }
3948
3949 /* tp->lock is held. */
3950 static void __tg3_set_one_mac_addr(struct tg3 *tp, u8 *mac_addr, int index)
3951 {
3952         u32 addr_high, addr_low;
3953
3954         addr_high = ((mac_addr[0] << 8) | mac_addr[1]);
3955         addr_low = ((mac_addr[2] << 24) | (mac_addr[3] << 16) |
3956                     (mac_addr[4] <<  8) | mac_addr[5]);
3957
3958         if (index < 4) {
3959                 tw32(MAC_ADDR_0_HIGH + (index * 8), addr_high);
3960                 tw32(MAC_ADDR_0_LOW + (index * 8), addr_low);
3961         } else {
3962                 index -= 4;
3963                 tw32(MAC_EXTADDR_0_HIGH + (index * 8), addr_high);
3964                 tw32(MAC_EXTADDR_0_LOW + (index * 8), addr_low);
3965         }
3966 }
3967
3968 /* tp->lock is held. */
3969 static void __tg3_set_mac_addr(struct tg3 *tp, bool skip_mac_1)
3970 {
3971         u32 addr_high;
3972         int i;
3973
3974         for (i = 0; i < 4; i++) {
3975                 if (i == 1 && skip_mac_1)
3976                         continue;
3977                 __tg3_set_one_mac_addr(tp, tp->dev->dev_addr, i);
3978         }
3979
3980         if (tg3_asic_rev(tp) == ASIC_REV_5703 ||
3981             tg3_asic_rev(tp) == ASIC_REV_5704) {
3982                 for (i = 4; i < 16; i++)
3983                         __tg3_set_one_mac_addr(tp, tp->dev->dev_addr, i);
3984         }
3985
3986         addr_high = (tp->dev->dev_addr[0] +
3987                      tp->dev->dev_addr[1] +
3988                      tp->dev->dev_addr[2] +
3989                      tp->dev->dev_addr[3] +
3990                      tp->dev->dev_addr[4] +
3991                      tp->dev->dev_addr[5]) &
3992                 TX_BACKOFF_SEED_MASK;
3993         tw32(MAC_TX_BACKOFF_SEED, addr_high);
3994 }
3995
3996 static void tg3_enable_register_access(struct tg3 *tp)
3997 {
3998         /*
3999          * Make sure register accesses (indirect or otherwise) will function
4000          * correctly.
4001          */
4002         pci_write_config_dword(tp->pdev,
4003                                TG3PCI_MISC_HOST_CTRL, tp->misc_host_ctrl);
4004 }
4005
4006 static int tg3_power_up(struct tg3 *tp)
4007 {
4008         int err;
4009
4010         tg3_enable_register_access(tp);
4011
4012         err = pci_set_power_state(tp->pdev, PCI_D0);
4013         if (!err) {
4014                 /* Switch out of Vaux if it is a NIC */
4015                 tg3_pwrsrc_switch_to_vmain(tp);
4016         } else {
4017                 netdev_err(tp->dev, "Transition to D0 failed\n");
4018         }
4019
4020         return err;
4021 }
4022
4023 static int tg3_setup_phy(struct tg3 *, bool);
4024
4025 static int tg3_power_down_prepare(struct tg3 *tp)
4026 {
4027         u32 misc_host_ctrl;
4028         bool device_should_wake, do_low_power;
4029
4030         tg3_enable_register_access(tp);
4031
4032         /* Restore the CLKREQ setting. */
4033         if (tg3_flag(tp, CLKREQ_BUG))
4034                 pcie_capability_set_word(tp->pdev, PCI_EXP_LNKCTL,
4035                                          PCI_EXP_LNKCTL_CLKREQ_EN);
4036
4037         misc_host_ctrl = tr32(TG3PCI_MISC_HOST_CTRL);
4038         tw32(TG3PCI_MISC_HOST_CTRL,
4039              misc_host_ctrl | MISC_HOST_CTRL_MASK_PCI_INT);
4040
4041         device_should_wake = device_may_wakeup(&tp->pdev->dev) &&
4042                              tg3_flag(tp, WOL_ENABLE);
4043
4044         if (tg3_flag(tp, USE_PHYLIB)) {
4045                 do_low_power = false;
4046                 if ((tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) &&
4047                     !(tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
4048                         struct phy_device *phydev;
4049                         u32 phyid, advertising;
4050
4051                         phydev = tp->mdio_bus->phy_map[tp->phy_addr];
4052
4053                         tp->phy_flags |= TG3_PHYFLG_IS_LOW_POWER;
4054
4055                         tp->link_config.speed = phydev->speed;
4056                         tp->link_config.duplex = phydev->duplex;
4057                         tp->link_config.autoneg = phydev->autoneg;
4058                         tp->link_config.advertising = phydev->advertising;
4059
4060                         advertising = ADVERTISED_TP |
4061                                       ADVERTISED_Pause |
4062                                       ADVERTISED_Autoneg |
4063                                       ADVERTISED_10baseT_Half;
4064
4065                         if (tg3_flag(tp, ENABLE_ASF) || device_should_wake) {
4066                                 if (tg3_flag(tp, WOL_SPEED_100MB))
4067                                         advertising |=
4068                                                 ADVERTISED_100baseT_Half |
4069                                                 ADVERTISED_100baseT_Full |
4070                                                 ADVERTISED_10baseT_Full;
4071                                 else
4072                                         advertising |= ADVERTISED_10baseT_Full;
4073                         }
4074
4075                         phydev->advertising = advertising;
4076
4077                         phy_start_aneg(phydev);
4078
4079                         phyid = phydev->drv->phy_id & phydev->drv->phy_id_mask;
4080                         if (phyid != PHY_ID_BCMAC131) {
4081                                 phyid &= PHY_BCM_OUI_MASK;
4082                                 if (phyid == PHY_BCM_OUI_1 ||
4083                                     phyid == PHY_BCM_OUI_2 ||
4084                                     phyid == PHY_BCM_OUI_3)
4085                                         do_low_power = true;
4086                         }
4087                 }
4088         } else {
4089                 do_low_power = true;
4090
4091                 if (!(tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER))
4092                         tp->phy_flags |= TG3_PHYFLG_IS_LOW_POWER;
4093
4094                 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
4095                         tg3_setup_phy(tp, false);
4096         }
4097
4098         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
4099                 u32 val;
4100
4101                 val = tr32(GRC_VCPU_EXT_CTRL);
4102                 tw32(GRC_VCPU_EXT_CTRL, val | GRC_VCPU_EXT_CTRL_DISABLE_WOL);
4103         } else if (!tg3_flag(tp, ENABLE_ASF)) {
4104                 int i;
4105                 u32 val;
4106
4107                 for (i = 0; i < 200; i++) {
4108                         tg3_read_mem(tp, NIC_SRAM_FW_ASF_STATUS_MBOX, &val);
4109                         if (val == ~NIC_SRAM_FIRMWARE_MBOX_MAGIC1)
4110                                 break;
4111                         msleep(1);
4112                 }
4113         }
4114         if (tg3_flag(tp, WOL_CAP))
4115                 tg3_write_mem(tp, NIC_SRAM_WOL_MBOX, WOL_SIGNATURE |
4116                                                      WOL_DRV_STATE_SHUTDOWN |
4117                                                      WOL_DRV_WOL |
4118                                                      WOL_SET_MAGIC_PKT);
4119
4120         if (device_should_wake) {
4121                 u32 mac_mode;
4122
4123                 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
4124                         if (do_low_power &&
4125                             !(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
4126                                 tg3_phy_auxctl_write(tp,
4127                                                MII_TG3_AUXCTL_SHDWSEL_PWRCTL,
4128                                                MII_TG3_AUXCTL_PCTL_WOL_EN |
4129                                                MII_TG3_AUXCTL_PCTL_100TX_LPWR |
4130                                                MII_TG3_AUXCTL_PCTL_CL_AB_TXDAC);
4131                                 udelay(40);
4132                         }
4133
4134                         if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
4135                                 mac_mode = MAC_MODE_PORT_MODE_GMII;
4136                         else if (tp->phy_flags &
4137                                  TG3_PHYFLG_KEEP_LINK_ON_PWRDN) {
4138                                 if (tp->link_config.active_speed == SPEED_1000)
4139                                         mac_mode = MAC_MODE_PORT_MODE_GMII;
4140                                 else
4141                                         mac_mode = MAC_MODE_PORT_MODE_MII;
4142                         } else
4143                                 mac_mode = MAC_MODE_PORT_MODE_MII;
4144
4145                         mac_mode |= tp->mac_mode & MAC_MODE_LINK_POLARITY;
4146                         if (tg3_asic_rev(tp) == ASIC_REV_5700) {
4147                                 u32 speed = tg3_flag(tp, WOL_SPEED_100MB) ?
4148                                              SPEED_100 : SPEED_10;
4149                                 if (tg3_5700_link_polarity(tp, speed))
4150                                         mac_mode |= MAC_MODE_LINK_POLARITY;
4151                                 else
4152                                         mac_mode &= ~MAC_MODE_LINK_POLARITY;
4153                         }
4154                 } else {
4155                         mac_mode = MAC_MODE_PORT_MODE_TBI;
4156                 }
4157
4158                 if (!tg3_flag(tp, 5750_PLUS))
4159                         tw32(MAC_LED_CTRL, tp->led_ctrl);
4160
4161                 mac_mode |= MAC_MODE_MAGIC_PKT_ENABLE;
4162                 if ((tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, 5780_CLASS)) &&
4163                     (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE)))
4164                         mac_mode |= MAC_MODE_KEEP_FRAME_IN_WOL;
4165
4166                 if (tg3_flag(tp, ENABLE_APE))
4167                         mac_mode |= MAC_MODE_APE_TX_EN |
4168                                     MAC_MODE_APE_RX_EN |
4169                                     MAC_MODE_TDE_ENABLE;
4170
4171                 tw32_f(MAC_MODE, mac_mode);
4172                 udelay(100);
4173
4174                 tw32_f(MAC_RX_MODE, RX_MODE_ENABLE);
4175                 udelay(10);
4176         }
4177
4178         if (!tg3_flag(tp, WOL_SPEED_100MB) &&
4179             (tg3_asic_rev(tp) == ASIC_REV_5700 ||
4180              tg3_asic_rev(tp) == ASIC_REV_5701)) {
4181                 u32 base_val;
4182
4183                 base_val = tp->pci_clock_ctrl;
4184                 base_val |= (CLOCK_CTRL_RXCLK_DISABLE |
4185                              CLOCK_CTRL_TXCLK_DISABLE);
4186
4187                 tw32_wait_f(TG3PCI_CLOCK_CTRL, base_val | CLOCK_CTRL_ALTCLK |
4188                             CLOCK_CTRL_PWRDOWN_PLL133, 40);
4189         } else if (tg3_flag(tp, 5780_CLASS) ||
4190                    tg3_flag(tp, CPMU_PRESENT) ||
4191                    tg3_asic_rev(tp) == ASIC_REV_5906) {
4192                 /* do nothing */
4193         } else if (!(tg3_flag(tp, 5750_PLUS) && tg3_flag(tp, ENABLE_ASF))) {
4194                 u32 newbits1, newbits2;
4195
4196                 if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
4197                     tg3_asic_rev(tp) == ASIC_REV_5701) {
4198                         newbits1 = (CLOCK_CTRL_RXCLK_DISABLE |
4199                                     CLOCK_CTRL_TXCLK_DISABLE |
4200                                     CLOCK_CTRL_ALTCLK);
4201                         newbits2 = newbits1 | CLOCK_CTRL_44MHZ_CORE;
4202                 } else if (tg3_flag(tp, 5705_PLUS)) {
4203                         newbits1 = CLOCK_CTRL_625_CORE;
4204                         newbits2 = newbits1 | CLOCK_CTRL_ALTCLK;
4205                 } else {
4206                         newbits1 = CLOCK_CTRL_ALTCLK;
4207                         newbits2 = newbits1 | CLOCK_CTRL_44MHZ_CORE;
4208                 }
4209
4210                 tw32_wait_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl | newbits1,
4211                             40);
4212
4213                 tw32_wait_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl | newbits2,
4214                             40);
4215
4216                 if (!tg3_flag(tp, 5705_PLUS)) {
4217                         u32 newbits3;
4218
4219                         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
4220                             tg3_asic_rev(tp) == ASIC_REV_5701) {
4221                                 newbits3 = (CLOCK_CTRL_RXCLK_DISABLE |
4222                                             CLOCK_CTRL_TXCLK_DISABLE |
4223                                             CLOCK_CTRL_44MHZ_CORE);
4224                         } else {
4225                                 newbits3 = CLOCK_CTRL_44MHZ_CORE;
4226                         }
4227
4228                         tw32_wait_f(TG3PCI_CLOCK_CTRL,
4229                                     tp->pci_clock_ctrl | newbits3, 40);
4230                 }
4231         }
4232
4233         if (!(device_should_wake) && !tg3_flag(tp, ENABLE_ASF))
4234                 tg3_power_down_phy(tp, do_low_power);
4235
4236         tg3_frob_aux_power(tp, true);
4237
4238         /* Workaround for unstable PLL clock */
4239         if ((!tg3_flag(tp, IS_SSB_CORE)) &&
4240             ((tg3_chip_rev(tp) == CHIPREV_5750_AX) ||
4241              (tg3_chip_rev(tp) == CHIPREV_5750_BX))) {
4242                 u32 val = tr32(0x7d00);
4243
4244                 val &= ~((1 << 16) | (1 << 4) | (1 << 2) | (1 << 1) | 1);
4245                 tw32(0x7d00, val);
4246                 if (!tg3_flag(tp, ENABLE_ASF)) {
4247                         int err;
4248
4249                         err = tg3_nvram_lock(tp);
4250                         tg3_halt_cpu(tp, RX_CPU_BASE);
4251                         if (!err)
4252                                 tg3_nvram_unlock(tp);
4253                 }
4254         }
4255
4256         tg3_write_sig_post_reset(tp, RESET_KIND_SHUTDOWN);
4257
4258         tg3_ape_driver_state_change(tp, RESET_KIND_SHUTDOWN);
4259
4260         return 0;
4261 }
4262
4263 static void tg3_power_down(struct tg3 *tp)
4264 {
4265         pci_wake_from_d3(tp->pdev, tg3_flag(tp, WOL_ENABLE));
4266         pci_set_power_state(tp->pdev, PCI_D3hot);
4267 }
4268
4269 static void tg3_aux_stat_to_speed_duplex(struct tg3 *tp, u32 val, u16 *speed, u8 *duplex)
4270 {
4271         switch (val & MII_TG3_AUX_STAT_SPDMASK) {
4272         case MII_TG3_AUX_STAT_10HALF:
4273                 *speed = SPEED_10;
4274                 *duplex = DUPLEX_HALF;
4275                 break;
4276
4277         case MII_TG3_AUX_STAT_10FULL:
4278                 *speed = SPEED_10;
4279                 *duplex = DUPLEX_FULL;
4280                 break;
4281
4282         case MII_TG3_AUX_STAT_100HALF:
4283                 *speed = SPEED_100;
4284                 *duplex = DUPLEX_HALF;
4285                 break;
4286
4287         case MII_TG3_AUX_STAT_100FULL:
4288                 *speed = SPEED_100;
4289                 *duplex = DUPLEX_FULL;
4290                 break;
4291
4292         case MII_TG3_AUX_STAT_1000HALF:
4293                 *speed = SPEED_1000;
4294                 *duplex = DUPLEX_HALF;
4295                 break;
4296
4297         case MII_TG3_AUX_STAT_1000FULL:
4298                 *speed = SPEED_1000;
4299                 *duplex = DUPLEX_FULL;
4300                 break;
4301
4302         default:
4303                 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
4304                         *speed = (val & MII_TG3_AUX_STAT_100) ? SPEED_100 :
4305                                  SPEED_10;
4306                         *duplex = (val & MII_TG3_AUX_STAT_FULL) ? DUPLEX_FULL :
4307                                   DUPLEX_HALF;
4308                         break;
4309                 }
4310                 *speed = SPEED_UNKNOWN;
4311                 *duplex = DUPLEX_UNKNOWN;
4312                 break;
4313         }
4314 }
4315
4316 static int tg3_phy_autoneg_cfg(struct tg3 *tp, u32 advertise, u32 flowctrl)
4317 {
4318         int err = 0;
4319         u32 val, new_adv;
4320
4321         new_adv = ADVERTISE_CSMA;
4322         new_adv |= ethtool_adv_to_mii_adv_t(advertise) & ADVERTISE_ALL;
4323         new_adv |= mii_advertise_flowctrl(flowctrl);
4324
4325         err = tg3_writephy(tp, MII_ADVERTISE, new_adv);
4326         if (err)
4327                 goto done;
4328
4329         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4330                 new_adv = ethtool_adv_to_mii_ctrl1000_t(advertise);
4331
4332                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0 ||
4333                     tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B0)
4334                         new_adv |= CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER;
4335
4336                 err = tg3_writephy(tp, MII_CTRL1000, new_adv);
4337                 if (err)
4338                         goto done;
4339         }
4340
4341         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
4342                 goto done;
4343
4344         tw32(TG3_CPMU_EEE_MODE,
4345              tr32(TG3_CPMU_EEE_MODE) & ~TG3_CPMU_EEEMD_LPI_ENABLE);
4346
4347         err = tg3_phy_toggle_auxctl_smdsp(tp, true);
4348         if (!err) {
4349                 u32 err2;
4350
4351                 val = 0;
4352                 /* Advertise 100-BaseTX EEE ability */
4353                 if (advertise & ADVERTISED_100baseT_Full)
4354                         val |= MDIO_AN_EEE_ADV_100TX;
4355                 /* Advertise 1000-BaseT EEE ability */
4356                 if (advertise & ADVERTISED_1000baseT_Full)
4357                         val |= MDIO_AN_EEE_ADV_1000T;
4358
4359                 if (!tp->eee.eee_enabled) {
4360                         val = 0;
4361                         tp->eee.advertised = 0;
4362                 } else {
4363                         tp->eee.advertised = advertise &
4364                                              (ADVERTISED_100baseT_Full |
4365                                               ADVERTISED_1000baseT_Full);
4366                 }
4367
4368                 err = tg3_phy_cl45_write(tp, MDIO_MMD_AN, MDIO_AN_EEE_ADV, val);
4369                 if (err)
4370                         val = 0;
4371
4372                 switch (tg3_asic_rev(tp)) {
4373                 case ASIC_REV_5717:
4374                 case ASIC_REV_57765:
4375                 case ASIC_REV_57766:
4376                 case ASIC_REV_5719:
4377                         /* If we advertised any eee advertisements above... */
4378                         if (val)
4379                                 val = MII_TG3_DSP_TAP26_ALNOKO |
4380                                       MII_TG3_DSP_TAP26_RMRXSTO |
4381                                       MII_TG3_DSP_TAP26_OPCSINPT;
4382                         tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, val);
4383                         /* Fall through */
4384                 case ASIC_REV_5720:
4385                 case ASIC_REV_5762:
4386                         if (!tg3_phydsp_read(tp, MII_TG3_DSP_CH34TP2, &val))
4387                                 tg3_phydsp_write(tp, MII_TG3_DSP_CH34TP2, val |
4388                                                  MII_TG3_DSP_CH34TP2_HIBW01);
4389                 }
4390
4391                 err2 = tg3_phy_toggle_auxctl_smdsp(tp, false);
4392                 if (!err)
4393                         err = err2;
4394         }
4395
4396 done:
4397         return err;
4398 }
4399
4400 static void tg3_phy_copper_begin(struct tg3 *tp)
4401 {
4402         if (tp->link_config.autoneg == AUTONEG_ENABLE ||
4403             (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
4404                 u32 adv, fc;
4405
4406                 if ((tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) &&
4407                     !(tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN)) {
4408                         adv = ADVERTISED_10baseT_Half |
4409                               ADVERTISED_10baseT_Full;
4410                         if (tg3_flag(tp, WOL_SPEED_100MB))
4411                                 adv |= ADVERTISED_100baseT_Half |
4412                                        ADVERTISED_100baseT_Full;
4413                         if (tp->phy_flags & TG3_PHYFLG_1G_ON_VAUX_OK) {
4414                                 if (!(tp->phy_flags &
4415                                       TG3_PHYFLG_DISABLE_1G_HD_ADV))
4416                                         adv |= ADVERTISED_1000baseT_Half;
4417                                 adv |= ADVERTISED_1000baseT_Full;
4418                         }
4419
4420                         fc = FLOW_CTRL_TX | FLOW_CTRL_RX;
4421                 } else {
4422                         adv = tp->link_config.advertising;
4423                         if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
4424                                 adv &= ~(ADVERTISED_1000baseT_Half |
4425                                          ADVERTISED_1000baseT_Full);
4426
4427                         fc = tp->link_config.flowctrl;
4428                 }
4429
4430                 tg3_phy_autoneg_cfg(tp, adv, fc);
4431
4432                 if ((tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) &&
4433                     (tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN)) {
4434                         /* Normally during power down we want to autonegotiate
4435                          * the lowest possible speed for WOL. However, to avoid
4436                          * link flap, we leave it untouched.
4437                          */
4438                         return;
4439                 }
4440
4441                 tg3_writephy(tp, MII_BMCR,
4442                              BMCR_ANENABLE | BMCR_ANRESTART);
4443         } else {
4444                 int i;
4445                 u32 bmcr, orig_bmcr;
4446
4447                 tp->link_config.active_speed = tp->link_config.speed;
4448                 tp->link_config.active_duplex = tp->link_config.duplex;
4449
4450                 if (tg3_asic_rev(tp) == ASIC_REV_5714) {
4451                         /* With autoneg disabled, 5715 only links up when the
4452                          * advertisement register has the configured speed
4453                          * enabled.
4454                          */
4455                         tg3_writephy(tp, MII_ADVERTISE, ADVERTISE_ALL);
4456                 }
4457
4458                 bmcr = 0;
4459                 switch (tp->link_config.speed) {
4460                 default:
4461                 case SPEED_10:
4462                         break;
4463
4464                 case SPEED_100:
4465                         bmcr |= BMCR_SPEED100;
4466                         break;
4467
4468                 case SPEED_1000:
4469                         bmcr |= BMCR_SPEED1000;
4470                         break;
4471                 }
4472
4473                 if (tp->link_config.duplex == DUPLEX_FULL)
4474                         bmcr |= BMCR_FULLDPLX;
4475
4476                 if (!tg3_readphy(tp, MII_BMCR, &orig_bmcr) &&
4477                     (bmcr != orig_bmcr)) {
4478                         tg3_writephy(tp, MII_BMCR, BMCR_LOOPBACK);
4479                         for (i = 0; i < 1500; i++) {
4480                                 u32 tmp;
4481
4482                                 udelay(10);
4483                                 if (tg3_readphy(tp, MII_BMSR, &tmp) ||
4484                                     tg3_readphy(tp, MII_BMSR, &tmp))
4485                                         continue;
4486                                 if (!(tmp & BMSR_LSTATUS)) {
4487                                         udelay(40);
4488                                         break;
4489                                 }
4490                         }
4491                         tg3_writephy(tp, MII_BMCR, bmcr);
4492                         udelay(40);
4493                 }
4494         }
4495 }
4496
4497 static int tg3_phy_pull_config(struct tg3 *tp)
4498 {
4499         int err;
4500         u32 val;
4501
4502         err = tg3_readphy(tp, MII_BMCR, &val);
4503         if (err)
4504                 goto done;
4505
4506         if (!(val & BMCR_ANENABLE)) {
4507                 tp->link_config.autoneg = AUTONEG_DISABLE;
4508                 tp->link_config.advertising = 0;
4509                 tg3_flag_clear(tp, PAUSE_AUTONEG);
4510
4511                 err = -EIO;
4512
4513                 switch (val & (BMCR_SPEED1000 | BMCR_SPEED100)) {
4514                 case 0:
4515                         if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
4516                                 goto done;
4517
4518                         tp->link_config.speed = SPEED_10;
4519                         break;
4520                 case BMCR_SPEED100:
4521                         if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
4522                                 goto done;
4523
4524                         tp->link_config.speed = SPEED_100;
4525                         break;
4526                 case BMCR_SPEED1000:
4527                         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4528                                 tp->link_config.speed = SPEED_1000;
4529                                 break;
4530                         }
4531                         /* Fall through */
4532                 default:
4533                         goto done;
4534                 }
4535
4536                 if (val & BMCR_FULLDPLX)
4537                         tp->link_config.duplex = DUPLEX_FULL;
4538                 else
4539                         tp->link_config.duplex = DUPLEX_HALF;
4540
4541                 tp->link_config.flowctrl = FLOW_CTRL_RX | FLOW_CTRL_TX;
4542
4543                 err = 0;
4544                 goto done;
4545         }
4546
4547         tp->link_config.autoneg = AUTONEG_ENABLE;
4548         tp->link_config.advertising = ADVERTISED_Autoneg;
4549         tg3_flag_set(tp, PAUSE_AUTONEG);
4550
4551         if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
4552                 u32 adv;
4553
4554                 err = tg3_readphy(tp, MII_ADVERTISE, &val);
4555                 if (err)
4556                         goto done;
4557
4558                 adv = mii_adv_to_ethtool_adv_t(val & ADVERTISE_ALL);
4559                 tp->link_config.advertising |= adv | ADVERTISED_TP;
4560
4561                 tp->link_config.flowctrl = tg3_decode_flowctrl_1000T(val);
4562         } else {
4563                 tp->link_config.advertising |= ADVERTISED_FIBRE;
4564         }
4565
4566         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4567                 u32 adv;
4568
4569                 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
4570                         err = tg3_readphy(tp, MII_CTRL1000, &val);
4571                         if (err)
4572                                 goto done;
4573
4574                         adv = mii_ctrl1000_to_ethtool_adv_t(val);
4575                 } else {
4576                         err = tg3_readphy(tp, MII_ADVERTISE, &val);
4577                         if (err)
4578                                 goto done;
4579
4580                         adv = tg3_decode_flowctrl_1000X(val);
4581                         tp->link_config.flowctrl = adv;
4582
4583                         val &= (ADVERTISE_1000XHALF | ADVERTISE_1000XFULL);
4584                         adv = mii_adv_to_ethtool_adv_x(val);
4585                 }
4586
4587                 tp->link_config.advertising |= adv;
4588         }
4589
4590 done:
4591         return err;
4592 }
4593
4594 static int tg3_init_5401phy_dsp(struct tg3 *tp)
4595 {
4596         int err;
4597
4598         /* Turn off tap power management. */
4599         /* Set Extended packet length bit */
4600         err = tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL, 0x4c20);
4601
4602         err |= tg3_phydsp_write(tp, 0x0012, 0x1804);
4603         err |= tg3_phydsp_write(tp, 0x0013, 0x1204);
4604         err |= tg3_phydsp_write(tp, 0x8006, 0x0132);
4605         err |= tg3_phydsp_write(tp, 0x8006, 0x0232);
4606         err |= tg3_phydsp_write(tp, 0x201f, 0x0a20);
4607
4608         udelay(40);
4609
4610         return err;
4611 }
4612
4613 static bool tg3_phy_eee_config_ok(struct tg3 *tp)
4614 {
4615         struct ethtool_eee eee;
4616
4617         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
4618                 return true;
4619
4620         tg3_eee_pull_config(tp, &eee);
4621
4622         if (tp->eee.eee_enabled) {
4623                 if (tp->eee.advertised != eee.advertised ||
4624                     tp->eee.tx_lpi_timer != eee.tx_lpi_timer ||
4625                     tp->eee.tx_lpi_enabled != eee.tx_lpi_enabled)
4626                         return false;
4627         } else {
4628                 /* EEE is disabled but we're advertising */
4629                 if (eee.advertised)
4630                         return false;
4631         }
4632
4633         return true;
4634 }
4635
4636 static bool tg3_phy_copper_an_config_ok(struct tg3 *tp, u32 *lcladv)
4637 {
4638         u32 advmsk, tgtadv, advertising;
4639
4640         advertising = tp->link_config.advertising;
4641         tgtadv = ethtool_adv_to_mii_adv_t(advertising) & ADVERTISE_ALL;
4642
4643         advmsk = ADVERTISE_ALL;
4644         if (tp->link_config.active_duplex == DUPLEX_FULL) {
4645                 tgtadv |= mii_advertise_flowctrl(tp->link_config.flowctrl);
4646                 advmsk |= ADVERTISE_PAUSE_CAP | ADVERTISE_PAUSE_ASYM;
4647         }
4648
4649         if (tg3_readphy(tp, MII_ADVERTISE, lcladv))
4650                 return false;
4651
4652         if ((*lcladv & advmsk) != tgtadv)
4653                 return false;
4654
4655         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4656                 u32 tg3_ctrl;
4657
4658                 tgtadv = ethtool_adv_to_mii_ctrl1000_t(advertising);
4659
4660                 if (tg3_readphy(tp, MII_CTRL1000, &tg3_ctrl))
4661                         return false;
4662
4663                 if (tgtadv &&
4664                     (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0 ||
4665                      tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B0)) {
4666                         tgtadv |= CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER;
4667                         tg3_ctrl &= (ADVERTISE_1000HALF | ADVERTISE_1000FULL |
4668                                      CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER);
4669                 } else {
4670                         tg3_ctrl &= (ADVERTISE_1000HALF | ADVERTISE_1000FULL);
4671                 }
4672
4673                 if (tg3_ctrl != tgtadv)
4674                         return false;
4675         }
4676
4677         return true;
4678 }
4679
4680 static bool tg3_phy_copper_fetch_rmtadv(struct tg3 *tp, u32 *rmtadv)
4681 {
4682         u32 lpeth = 0;
4683
4684         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4685                 u32 val;
4686
4687                 if (tg3_readphy(tp, MII_STAT1000, &val))
4688                         return false;
4689
4690                 lpeth = mii_stat1000_to_ethtool_lpa_t(val);
4691         }
4692
4693         if (tg3_readphy(tp, MII_LPA, rmtadv))
4694                 return false;
4695
4696         lpeth |= mii_lpa_to_ethtool_lpa_t(*rmtadv);
4697         tp->link_config.rmt_adv = lpeth;
4698
4699         return true;
4700 }
4701
4702 static bool tg3_test_and_report_link_chg(struct tg3 *tp, bool curr_link_up)
4703 {
4704         if (curr_link_up != tp->link_up) {
4705                 if (curr_link_up) {
4706                         netif_carrier_on(tp->dev);
4707                 } else {
4708                         netif_carrier_off(tp->dev);
4709                         if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
4710                                 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
4711                 }
4712
4713                 tg3_link_report(tp);
4714                 return true;
4715         }
4716
4717         return false;
4718 }
4719
4720 static void tg3_clear_mac_status(struct tg3 *tp)
4721 {
4722         tw32(MAC_EVENT, 0);
4723
4724         tw32_f(MAC_STATUS,
4725                MAC_STATUS_SYNC_CHANGED |
4726                MAC_STATUS_CFG_CHANGED |
4727                MAC_STATUS_MI_COMPLETION |
4728                MAC_STATUS_LNKSTATE_CHANGED);
4729         udelay(40);
4730 }
4731
4732 static void tg3_setup_eee(struct tg3 *tp)
4733 {
4734         u32 val;
4735
4736         val = TG3_CPMU_EEE_LNKIDL_PCIE_NL0 |
4737               TG3_CPMU_EEE_LNKIDL_UART_IDL;
4738         if (tg3_chip_rev_id(tp) == CHIPREV_ID_57765_A0)
4739                 val |= TG3_CPMU_EEE_LNKIDL_APE_TX_MT;
4740
4741         tw32_f(TG3_CPMU_EEE_LNKIDL_CTRL, val);
4742
4743         tw32_f(TG3_CPMU_EEE_CTRL,
4744                TG3_CPMU_EEE_CTRL_EXIT_20_1_US);
4745
4746         val = TG3_CPMU_EEEMD_ERLY_L1_XIT_DET |
4747               (tp->eee.tx_lpi_enabled ? TG3_CPMU_EEEMD_LPI_IN_TX : 0) |
4748               TG3_CPMU_EEEMD_LPI_IN_RX |
4749               TG3_CPMU_EEEMD_EEE_ENABLE;
4750
4751         if (tg3_asic_rev(tp) != ASIC_REV_5717)
4752                 val |= TG3_CPMU_EEEMD_SND_IDX_DET_EN;
4753
4754         if (tg3_flag(tp, ENABLE_APE))
4755                 val |= TG3_CPMU_EEEMD_APE_TX_DET_EN;
4756
4757         tw32_f(TG3_CPMU_EEE_MODE, tp->eee.eee_enabled ? val : 0);
4758
4759         tw32_f(TG3_CPMU_EEE_DBTMR1,
4760                TG3_CPMU_DBTMR1_PCIEXIT_2047US |
4761                (tp->eee.tx_lpi_timer & 0xffff));
4762
4763         tw32_f(TG3_CPMU_EEE_DBTMR2,
4764                TG3_CPMU_DBTMR2_APE_TX_2047US |
4765                TG3_CPMU_DBTMR2_TXIDXEQ_2047US);
4766 }
4767
4768 static int tg3_setup_copper_phy(struct tg3 *tp, bool force_reset)
4769 {
4770         bool current_link_up;
4771         u32 bmsr, val;
4772         u32 lcl_adv, rmt_adv;
4773         u16 current_speed;
4774         u8 current_duplex;
4775         int i, err;
4776
4777         tg3_clear_mac_status(tp);
4778
4779         if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
4780                 tw32_f(MAC_MI_MODE,
4781                      (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
4782                 udelay(80);
4783         }
4784
4785         tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_PWRCTL, 0);
4786
4787         /* Some third-party PHYs need to be reset on link going
4788          * down.
4789          */
4790         if ((tg3_asic_rev(tp) == ASIC_REV_5703 ||
4791              tg3_asic_rev(tp) == ASIC_REV_5704 ||
4792              tg3_asic_rev(tp) == ASIC_REV_5705) &&
4793             tp->link_up) {
4794                 tg3_readphy(tp, MII_BMSR, &bmsr);
4795                 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4796                     !(bmsr & BMSR_LSTATUS))
4797                         force_reset = true;
4798         }
4799         if (force_reset)
4800                 tg3_phy_reset(tp);
4801
4802         if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
4803                 tg3_readphy(tp, MII_BMSR, &bmsr);
4804                 if (tg3_readphy(tp, MII_BMSR, &bmsr) ||
4805                     !tg3_flag(tp, INIT_COMPLETE))
4806                         bmsr = 0;
4807
4808                 if (!(bmsr & BMSR_LSTATUS)) {
4809                         err = tg3_init_5401phy_dsp(tp);
4810                         if (err)
4811                                 return err;
4812
4813                         tg3_readphy(tp, MII_BMSR, &bmsr);
4814                         for (i = 0; i < 1000; i++) {
4815                                 udelay(10);
4816                                 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4817                                     (bmsr & BMSR_LSTATUS)) {
4818                                         udelay(40);
4819                                         break;
4820                                 }
4821                         }
4822
4823                         if ((tp->phy_id & TG3_PHY_ID_REV_MASK) ==
4824                             TG3_PHY_REV_BCM5401_B0 &&
4825                             !(bmsr & BMSR_LSTATUS) &&
4826                             tp->link_config.active_speed == SPEED_1000) {
4827                                 err = tg3_phy_reset(tp);
4828                                 if (!err)
4829                                         err = tg3_init_5401phy_dsp(tp);
4830                                 if (err)
4831                                         return err;
4832                         }
4833                 }
4834         } else if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0 ||
4835                    tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B0) {
4836                 /* 5701 {A0,B0} CRC bug workaround */
4837                 tg3_writephy(tp, 0x15, 0x0a75);
4838                 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8c68);
4839                 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
4840                 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8c68);
4841         }
4842
4843         /* Clear pending interrupts... */
4844         tg3_readphy(tp, MII_TG3_ISTAT, &val);
4845         tg3_readphy(tp, MII_TG3_ISTAT, &val);
4846
4847         if (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT)
4848                 tg3_writephy(tp, MII_TG3_IMASK, ~MII_TG3_INT_LINKCHG);
4849         else if (!(tp->phy_flags & TG3_PHYFLG_IS_FET))
4850                 tg3_writephy(tp, MII_TG3_IMASK, ~0);
4851
4852         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
4853             tg3_asic_rev(tp) == ASIC_REV_5701) {
4854                 if (tp->led_ctrl == LED_CTRL_MODE_PHY_1)
4855                         tg3_writephy(tp, MII_TG3_EXT_CTRL,
4856                                      MII_TG3_EXT_CTRL_LNK3_LED_MODE);
4857                 else
4858                         tg3_writephy(tp, MII_TG3_EXT_CTRL, 0);
4859         }
4860
4861         current_link_up = false;
4862         current_speed = SPEED_UNKNOWN;
4863         current_duplex = DUPLEX_UNKNOWN;
4864         tp->phy_flags &= ~TG3_PHYFLG_MDIX_STATE;
4865         tp->link_config.rmt_adv = 0;
4866
4867         if (tp->phy_flags & TG3_PHYFLG_CAPACITIVE_COUPLING) {
4868                 err = tg3_phy_auxctl_read(tp,
4869                                           MII_TG3_AUXCTL_SHDWSEL_MISCTEST,
4870                                           &val);
4871                 if (!err && !(val & (1 << 10))) {
4872                         tg3_phy_auxctl_write(tp,
4873                                              MII_TG3_AUXCTL_SHDWSEL_MISCTEST,
4874                                              val | (1 << 10));
4875                         goto relink;
4876                 }
4877         }
4878
4879         bmsr = 0;
4880         for (i = 0; i < 100; i++) {
4881                 tg3_readphy(tp, MII_BMSR, &bmsr);
4882                 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4883                     (bmsr & BMSR_LSTATUS))
4884                         break;
4885                 udelay(40);
4886         }
4887
4888         if (bmsr & BMSR_LSTATUS) {
4889                 u32 aux_stat, bmcr;
4890
4891                 tg3_readphy(tp, MII_TG3_AUX_STAT, &aux_stat);
4892                 for (i = 0; i < 2000; i++) {
4893                         udelay(10);
4894                         if (!tg3_readphy(tp, MII_TG3_AUX_STAT, &aux_stat) &&
4895                             aux_stat)
4896                                 break;
4897                 }
4898
4899                 tg3_aux_stat_to_speed_duplex(tp, aux_stat,
4900                                              &current_speed,
4901                                              &current_duplex);
4902
4903                 bmcr = 0;
4904                 for (i = 0; i < 200; i++) {
4905                         tg3_readphy(tp, MII_BMCR, &bmcr);
4906                         if (tg3_readphy(tp, MII_BMCR, &bmcr))
4907                                 continue;
4908                         if (bmcr && bmcr != 0x7fff)
4909                                 break;
4910                         udelay(10);
4911                 }
4912
4913                 lcl_adv = 0;
4914                 rmt_adv = 0;
4915
4916                 tp->link_config.active_speed = current_speed;
4917                 tp->link_config.active_duplex = current_duplex;
4918
4919                 if (tp->link_config.autoneg == AUTONEG_ENABLE) {
4920                         bool eee_config_ok = tg3_phy_eee_config_ok(tp);
4921
4922                         if ((bmcr & BMCR_ANENABLE) &&
4923                             eee_config_ok &&
4924                             tg3_phy_copper_an_config_ok(tp, &lcl_adv) &&
4925                             tg3_phy_copper_fetch_rmtadv(tp, &rmt_adv))
4926                                 current_link_up = true;
4927
4928                         /* EEE settings changes take effect only after a phy
4929                          * reset.  If we have skipped a reset due to Link Flap
4930                          * Avoidance being enabled, do it now.
4931                          */
4932                         if (!eee_config_ok &&
4933                             (tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN) &&
4934                             !force_reset) {
4935                                 tg3_setup_eee(tp);
4936                                 tg3_phy_reset(tp);
4937                         }
4938                 } else {
4939                         if (!(bmcr & BMCR_ANENABLE) &&
4940                             tp->link_config.speed == current_speed &&
4941                             tp->link_config.duplex == current_duplex) {
4942                                 current_link_up = true;
4943                         }
4944                 }
4945
4946                 if (current_link_up &&
4947                     tp->link_config.active_duplex == DUPLEX_FULL) {
4948                         u32 reg, bit;
4949
4950                         if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
4951                                 reg = MII_TG3_FET_GEN_STAT;
4952                                 bit = MII_TG3_FET_GEN_STAT_MDIXSTAT;
4953                         } else {
4954                                 reg = MII_TG3_EXT_STAT;
4955                                 bit = MII_TG3_EXT_STAT_MDIX;
4956                         }
4957
4958                         if (!tg3_readphy(tp, reg, &val) && (val & bit))
4959                                 tp->phy_flags |= TG3_PHYFLG_MDIX_STATE;
4960
4961                         tg3_setup_flow_control(tp, lcl_adv, rmt_adv);
4962                 }
4963         }
4964
4965 relink:
4966         if (!current_link_up || (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
4967                 tg3_phy_copper_begin(tp);
4968
4969                 if (tg3_flag(tp, ROBOSWITCH)) {
4970                         current_link_up = true;
4971                         /* FIXME: when BCM5325 switch is used use 100 MBit/s */
4972                         current_speed = SPEED_1000;
4973                         current_duplex = DUPLEX_FULL;
4974                         tp->link_config.active_speed = current_speed;
4975                         tp->link_config.active_duplex = current_duplex;
4976                 }
4977
4978                 tg3_readphy(tp, MII_BMSR, &bmsr);
4979                 if ((!tg3_readphy(tp, MII_BMSR, &bmsr) && (bmsr & BMSR_LSTATUS)) ||
4980                     (tp->mac_mode & MAC_MODE_PORT_INT_LPBACK))
4981                         current_link_up = true;
4982         }
4983
4984         tp->mac_mode &= ~MAC_MODE_PORT_MODE_MASK;
4985         if (current_link_up) {
4986                 if (tp->link_config.active_speed == SPEED_100 ||
4987                     tp->link_config.active_speed == SPEED_10)
4988                         tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
4989                 else
4990                         tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
4991         } else if (tp->phy_flags & TG3_PHYFLG_IS_FET)
4992                 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
4993         else
4994                 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
4995
4996         /* In order for the 5750 core in BCM4785 chip to work properly
4997          * in RGMII mode, the Led Control Register must be set up.
4998          */
4999         if (tg3_flag(tp, RGMII_MODE)) {
5000                 u32 led_ctrl = tr32(MAC_LED_CTRL);
5001                 led_ctrl &= ~(LED_CTRL_1000MBPS_ON | LED_CTRL_100MBPS_ON);
5002
5003                 if (tp->link_config.active_speed == SPEED_10)
5004                         led_ctrl |= LED_CTRL_LNKLED_OVERRIDE;
5005                 else if (tp->link_config.active_speed == SPEED_100)
5006                         led_ctrl |= (LED_CTRL_LNKLED_OVERRIDE |
5007                                      LED_CTRL_100MBPS_ON);
5008                 else if (tp->link_config.active_speed == SPEED_1000)
5009                         led_ctrl |= (LED_CTRL_LNKLED_OVERRIDE |
5010                                      LED_CTRL_1000MBPS_ON);
5011
5012                 tw32(MAC_LED_CTRL, led_ctrl);
5013                 udelay(40);
5014         }
5015
5016         tp->mac_mode &= ~MAC_MODE_HALF_DUPLEX;
5017         if (tp->link_config.active_duplex == DUPLEX_HALF)
5018                 tp->mac_mode |= MAC_MODE_HALF_DUPLEX;
5019
5020         if (tg3_asic_rev(tp) == ASIC_REV_5700) {
5021                 if (current_link_up &&
5022                     tg3_5700_link_polarity(tp, tp->link_config.active_speed))
5023                         tp->mac_mode |= MAC_MODE_LINK_POLARITY;
5024                 else
5025                         tp->mac_mode &= ~MAC_MODE_LINK_POLARITY;
5026         }
5027
5028         /* ??? Without this setting Netgear GA302T PHY does not
5029          * ??? send/receive packets...
5030          */
5031         if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5411 &&
5032             tg3_chip_rev_id(tp) == CHIPREV_ID_5700_ALTIMA) {
5033                 tp->mi_mode |= MAC_MI_MODE_AUTO_POLL;
5034                 tw32_f(MAC_MI_MODE, tp->mi_mode);
5035                 udelay(80);
5036         }
5037
5038         tw32_f(MAC_MODE, tp->mac_mode);
5039         udelay(40);
5040
5041         tg3_phy_eee_adjust(tp, current_link_up);
5042
5043         if (tg3_flag(tp, USE_LINKCHG_REG)) {
5044                 /* Polled via timer. */
5045                 tw32_f(MAC_EVENT, 0);
5046         } else {
5047                 tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5048         }
5049         udelay(40);
5050
5051         if (tg3_asic_rev(tp) == ASIC_REV_5700 &&
5052             current_link_up &&
5053             tp->link_config.active_speed == SPEED_1000 &&
5054             (tg3_flag(tp, PCIX_MODE) || tg3_flag(tp, PCI_HIGH_SPEED))) {
5055                 udelay(120);
5056                 tw32_f(MAC_STATUS,
5057                      (MAC_STATUS_SYNC_CHANGED |
5058                       MAC_STATUS_CFG_CHANGED));
5059                 udelay(40);
5060                 tg3_write_mem(tp,
5061                               NIC_SRAM_FIRMWARE_MBOX,
5062                               NIC_SRAM_FIRMWARE_MBOX_MAGIC2);
5063         }
5064
5065         /* Prevent send BD corruption. */
5066         if (tg3_flag(tp, CLKREQ_BUG)) {
5067                 if (tp->link_config.active_speed == SPEED_100 ||
5068                     tp->link_config.active_speed == SPEED_10)
5069                         pcie_capability_clear_word(tp->pdev, PCI_EXP_LNKCTL,
5070                                                    PCI_EXP_LNKCTL_CLKREQ_EN);
5071                 else
5072                         pcie_capability_set_word(tp->pdev, PCI_EXP_LNKCTL,
5073                                                  PCI_EXP_LNKCTL_CLKREQ_EN);
5074         }
5075
5076         tg3_test_and_report_link_chg(tp, current_link_up);
5077
5078         return 0;
5079 }
5080
5081 struct tg3_fiber_aneginfo {
5082         int state;
5083 #define ANEG_STATE_UNKNOWN              0
5084 #define ANEG_STATE_AN_ENABLE            1
5085 #define ANEG_STATE_RESTART_INIT         2
5086 #define ANEG_STATE_RESTART              3
5087 #define ANEG_STATE_DISABLE_LINK_OK      4
5088 #define ANEG_STATE_ABILITY_DETECT_INIT  5
5089 #define ANEG_STATE_ABILITY_DETECT       6
5090 #define ANEG_STATE_ACK_DETECT_INIT      7
5091 #define ANEG_STATE_ACK_DETECT           8
5092 #define ANEG_STATE_COMPLETE_ACK_INIT    9
5093 #define ANEG_STATE_COMPLETE_ACK         10
5094 #define ANEG_STATE_IDLE_DETECT_INIT     11
5095 #define ANEG_STATE_IDLE_DETECT          12
5096 #define ANEG_STATE_LINK_OK              13
5097 #define ANEG_STATE_NEXT_PAGE_WAIT_INIT  14
5098 #define ANEG_STATE_NEXT_PAGE_WAIT       15
5099
5100         u32 flags;
5101 #define MR_AN_ENABLE            0x00000001
5102 #define MR_RESTART_AN           0x00000002
5103 #define MR_AN_COMPLETE          0x00000004
5104 #define MR_PAGE_RX              0x00000008
5105 #define MR_NP_LOADED            0x00000010
5106 #define MR_TOGGLE_TX            0x00000020
5107 #define MR_LP_ADV_FULL_DUPLEX   0x00000040
5108 #define MR_LP_ADV_HALF_DUPLEX   0x00000080
5109 #define MR_LP_ADV_SYM_PAUSE     0x00000100
5110 #define MR_LP_ADV_ASYM_PAUSE    0x00000200
5111 #define MR_LP_ADV_REMOTE_FAULT1 0x00000400
5112 #define MR_LP_ADV_REMOTE_FAULT2 0x00000800
5113 #define MR_LP_ADV_NEXT_PAGE     0x00001000
5114 #define MR_TOGGLE_RX            0x00002000
5115 #define MR_NP_RX                0x00004000
5116
5117 #define MR_LINK_OK              0x80000000
5118
5119         unsigned long link_time, cur_time;
5120
5121         u32 ability_match_cfg;
5122         int ability_match_count;
5123
5124         char ability_match, idle_match, ack_match;
5125
5126         u32 txconfig, rxconfig;
5127 #define ANEG_CFG_NP             0x00000080
5128 #define ANEG_CFG_ACK            0x00000040
5129 #define ANEG_CFG_RF2            0x00000020
5130 #define ANEG_CFG_RF1            0x00000010
5131 #define ANEG_CFG_PS2            0x00000001
5132 #define ANEG_CFG_PS1            0x00008000
5133 #define ANEG_CFG_HD             0x00004000
5134 #define ANEG_CFG_FD             0x00002000
5135 #define ANEG_CFG_INVAL          0x00001f06
5136
5137 };
5138 #define ANEG_OK         0
5139 #define ANEG_DONE       1
5140 #define ANEG_TIMER_ENAB 2
5141 #define ANEG_FAILED     -1
5142
5143 #define ANEG_STATE_SETTLE_TIME  10000
5144
5145 static int tg3_fiber_aneg_smachine(struct tg3 *tp,
5146                                    struct tg3_fiber_aneginfo *ap)
5147 {
5148         u16 flowctrl;
5149         unsigned long delta;
5150         u32 rx_cfg_reg;
5151         int ret;
5152
5153         if (ap->state == ANEG_STATE_UNKNOWN) {
5154                 ap->rxconfig = 0;
5155                 ap->link_time = 0;
5156                 ap->cur_time = 0;
5157                 ap->ability_match_cfg = 0;
5158                 ap->ability_match_count = 0;
5159                 ap->ability_match = 0;
5160                 ap->idle_match = 0;
5161                 ap->ack_match = 0;
5162         }
5163         ap->cur_time++;
5164
5165         if (tr32(MAC_STATUS) & MAC_STATUS_RCVD_CFG) {
5166                 rx_cfg_reg = tr32(MAC_RX_AUTO_NEG);
5167
5168                 if (rx_cfg_reg != ap->ability_match_cfg) {
5169                         ap->ability_match_cfg = rx_cfg_reg;
5170                         ap->ability_match = 0;
5171                         ap->ability_match_count = 0;
5172                 } else {
5173                         if (++ap->ability_match_count > 1) {
5174                                 ap->ability_match = 1;
5175                                 ap->ability_match_cfg = rx_cfg_reg;
5176                         }
5177                 }
5178                 if (rx_cfg_reg & ANEG_CFG_ACK)
5179                         ap->ack_match = 1;
5180                 else
5181                         ap->ack_match = 0;
5182
5183                 ap->idle_match = 0;
5184         } else {
5185                 ap->idle_match = 1;
5186                 ap->ability_match_cfg = 0;
5187                 ap->ability_match_count = 0;
5188                 ap->ability_match = 0;
5189                 ap->ack_match = 0;
5190
5191                 rx_cfg_reg = 0;
5192         }
5193
5194         ap->rxconfig = rx_cfg_reg;
5195         ret = ANEG_OK;
5196
5197         switch (ap->state) {
5198         case ANEG_STATE_UNKNOWN:
5199                 if (ap->flags & (MR_AN_ENABLE | MR_RESTART_AN))
5200                         ap->state = ANEG_STATE_AN_ENABLE;
5201
5202                 /* fallthru */
5203         case ANEG_STATE_AN_ENABLE:
5204                 ap->flags &= ~(MR_AN_COMPLETE | MR_PAGE_RX);
5205                 if (ap->flags & MR_AN_ENABLE) {
5206                         ap->link_time = 0;
5207                         ap->cur_time = 0;
5208                         ap->ability_match_cfg = 0;
5209                         ap->ability_match_count = 0;
5210                         ap->ability_match = 0;
5211                         ap->idle_match = 0;
5212                         ap->ack_match = 0;
5213
5214                         ap->state = ANEG_STATE_RESTART_INIT;
5215                 } else {
5216                         ap->state = ANEG_STATE_DISABLE_LINK_OK;
5217                 }
5218                 break;
5219
5220         case ANEG_STATE_RESTART_INIT:
5221                 ap->link_time = ap->cur_time;
5222                 ap->flags &= ~(MR_NP_LOADED);
5223                 ap->txconfig = 0;
5224                 tw32(MAC_TX_AUTO_NEG, 0);
5225                 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
5226                 tw32_f(MAC_MODE, tp->mac_mode);
5227                 udelay(40);
5228
5229                 ret = ANEG_TIMER_ENAB;
5230                 ap->state = ANEG_STATE_RESTART;
5231
5232                 /* fallthru */
5233         case ANEG_STATE_RESTART:
5234                 delta = ap->cur_time - ap->link_time;
5235                 if (delta > ANEG_STATE_SETTLE_TIME)
5236                         ap->state = ANEG_STATE_ABILITY_DETECT_INIT;
5237                 else
5238                         ret = ANEG_TIMER_ENAB;
5239                 break;
5240
5241         case ANEG_STATE_DISABLE_LINK_OK:
5242                 ret = ANEG_DONE;
5243                 break;
5244
5245         case ANEG_STATE_ABILITY_DETECT_INIT:
5246                 ap->flags &= ~(MR_TOGGLE_TX);
5247                 ap->txconfig = ANEG_CFG_FD;
5248                 flowctrl = tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
5249                 if (flowctrl & ADVERTISE_1000XPAUSE)
5250                         ap->txconfig |= ANEG_CFG_PS1;
5251                 if (flowctrl & ADVERTISE_1000XPSE_ASYM)
5252                         ap->txconfig |= ANEG_CFG_PS2;
5253                 tw32(MAC_TX_AUTO_NEG, ap->txconfig);
5254                 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
5255                 tw32_f(MAC_MODE, tp->mac_mode);
5256                 udelay(40);
5257
5258                 ap->state = ANEG_STATE_ABILITY_DETECT;
5259                 break;
5260
5261         case ANEG_STATE_ABILITY_DETECT:
5262                 if (ap->ability_match != 0 && ap->rxconfig != 0)
5263                         ap->state = ANEG_STATE_ACK_DETECT_INIT;
5264                 break;
5265
5266         case ANEG_STATE_ACK_DETECT_INIT:
5267                 ap->txconfig |= ANEG_CFG_ACK;
5268                 tw32(MAC_TX_AUTO_NEG, ap->txconfig);
5269                 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
5270                 tw32_f(MAC_MODE, tp->mac_mode);
5271                 udelay(40);
5272
5273                 ap->state = ANEG_STATE_ACK_DETECT;
5274
5275                 /* fallthru */
5276         case ANEG_STATE_ACK_DETECT:
5277                 if (ap->ack_match != 0) {
5278                         if ((ap->rxconfig & ~ANEG_CFG_ACK) ==
5279                             (ap->ability_match_cfg & ~ANEG_CFG_ACK)) {
5280                                 ap->state = ANEG_STATE_COMPLETE_ACK_INIT;
5281                         } else {
5282                                 ap->state = ANEG_STATE_AN_ENABLE;
5283                         }
5284                 } else if (ap->ability_match != 0 &&
5285                            ap->rxconfig == 0) {
5286                         ap->state = ANEG_STATE_AN_ENABLE;
5287                 }
5288                 break;
5289
5290         case ANEG_STATE_COMPLETE_ACK_INIT:
5291                 if (ap->rxconfig & ANEG_CFG_INVAL) {
5292                         ret = ANEG_FAILED;
5293                         break;
5294                 }
5295                 ap->flags &= ~(MR_LP_ADV_FULL_DUPLEX |
5296                                MR_LP_ADV_HALF_DUPLEX |
5297                                MR_LP_ADV_SYM_PAUSE |
5298                                MR_LP_ADV_ASYM_PAUSE |
5299                                MR_LP_ADV_REMOTE_FAULT1 |
5300                                MR_LP_ADV_REMOTE_FAULT2 |
5301                                MR_LP_ADV_NEXT_PAGE |
5302                                MR_TOGGLE_RX |
5303                                MR_NP_RX);
5304                 if (ap->rxconfig & ANEG_CFG_FD)
5305                         ap->flags |= MR_LP_ADV_FULL_DUPLEX;
5306                 if (ap->rxconfig & ANEG_CFG_HD)
5307                         ap->flags |= MR_LP_ADV_HALF_DUPLEX;
5308                 if (ap->rxconfig & ANEG_CFG_PS1)
5309                         ap->flags |= MR_LP_ADV_SYM_PAUSE;
5310                 if (ap->rxconfig & ANEG_CFG_PS2)
5311                         ap->flags |= MR_LP_ADV_ASYM_PAUSE;
5312                 if (ap->rxconfig & ANEG_CFG_RF1)
5313                         ap->flags |= MR_LP_ADV_REMOTE_FAULT1;
5314                 if (ap->rxconfig & ANEG_CFG_RF2)
5315                         ap->flags |= MR_LP_ADV_REMOTE_FAULT2;
5316                 if (ap->rxconfig & ANEG_CFG_NP)
5317                         ap->flags |= MR_LP_ADV_NEXT_PAGE;
5318
5319                 ap->link_time = ap->cur_time;
5320
5321                 ap->flags ^= (MR_TOGGLE_TX);
5322                 if (ap->rxconfig & 0x0008)
5323                         ap->flags |= MR_TOGGLE_RX;
5324                 if (ap->rxconfig & ANEG_CFG_NP)
5325                         ap->flags |= MR_NP_RX;
5326                 ap->flags |= MR_PAGE_RX;
5327
5328                 ap->state = ANEG_STATE_COMPLETE_ACK;
5329                 ret = ANEG_TIMER_ENAB;
5330                 break;
5331
5332         case ANEG_STATE_COMPLETE_ACK:
5333                 if (ap->ability_match != 0 &&
5334                     ap->rxconfig == 0) {
5335                         ap->state = ANEG_STATE_AN_ENABLE;
5336                         break;
5337                 }
5338                 delta = ap->cur_time - ap->link_time;
5339                 if (delta > ANEG_STATE_SETTLE_TIME) {
5340                         if (!(ap->flags & (MR_LP_ADV_NEXT_PAGE))) {
5341                                 ap->state = ANEG_STATE_IDLE_DETECT_INIT;
5342                         } else {
5343                                 if ((ap->txconfig & ANEG_CFG_NP) == 0 &&
5344                                     !(ap->flags & MR_NP_RX)) {
5345                                         ap->state = ANEG_STATE_IDLE_DETECT_INIT;
5346                                 } else {
5347                                         ret = ANEG_FAILED;
5348                                 }
5349                         }
5350                 }
5351                 break;
5352
5353         case ANEG_STATE_IDLE_DETECT_INIT:
5354                 ap->link_time = ap->cur_time;
5355                 tp->mac_mode &= ~MAC_MODE_SEND_CONFIGS;
5356                 tw32_f(MAC_MODE, tp->mac_mode);
5357                 udelay(40);
5358
5359                 ap->state = ANEG_STATE_IDLE_DETECT;
5360                 ret = ANEG_TIMER_ENAB;
5361                 break;
5362
5363         case ANEG_STATE_IDLE_DETECT:
5364                 if (ap->ability_match != 0 &&
5365                     ap->rxconfig == 0) {
5366                         ap->state = ANEG_STATE_AN_ENABLE;
5367                         break;
5368                 }
5369                 delta = ap->cur_time - ap->link_time;
5370                 if (delta > ANEG_STATE_SETTLE_TIME) {
5371                         /* XXX another gem from the Broadcom driver :( */
5372                         ap->state = ANEG_STATE_LINK_OK;
5373                 }
5374                 break;
5375
5376         case ANEG_STATE_LINK_OK:
5377                 ap->flags |= (MR_AN_COMPLETE | MR_LINK_OK);
5378                 ret = ANEG_DONE;
5379                 break;
5380
5381         case ANEG_STATE_NEXT_PAGE_WAIT_INIT:
5382                 /* ??? unimplemented */
5383                 break;
5384
5385         case ANEG_STATE_NEXT_PAGE_WAIT:
5386                 /* ??? unimplemented */
5387                 break;
5388
5389         default:
5390                 ret = ANEG_FAILED;
5391                 break;
5392         }
5393
5394         return ret;
5395 }
5396
5397 static int fiber_autoneg(struct tg3 *tp, u32 *txflags, u32 *rxflags)
5398 {
5399         int res = 0;
5400         struct tg3_fiber_aneginfo aninfo;
5401         int status = ANEG_FAILED;
5402         unsigned int tick;
5403         u32 tmp;
5404
5405         tw32_f(MAC_TX_AUTO_NEG, 0);
5406
5407         tmp = tp->mac_mode & ~MAC_MODE_PORT_MODE_MASK;
5408         tw32_f(MAC_MODE, tmp | MAC_MODE_PORT_MODE_GMII);
5409         udelay(40);
5410
5411         tw32_f(MAC_MODE, tp->mac_mode | MAC_MODE_SEND_CONFIGS);
5412         udelay(40);
5413
5414         memset(&aninfo, 0, sizeof(aninfo));
5415         aninfo.flags |= MR_AN_ENABLE;
5416         aninfo.state = ANEG_STATE_UNKNOWN;
5417         aninfo.cur_time = 0;
5418         tick = 0;
5419         while (++tick < 195000) {
5420                 status = tg3_fiber_aneg_smachine(tp, &aninfo);
5421                 if (status == ANEG_DONE || status == ANEG_FAILED)
5422                         break;
5423
5424                 udelay(1);
5425         }
5426
5427         tp->mac_mode &= ~MAC_MODE_SEND_CONFIGS;
5428         tw32_f(MAC_MODE, tp->mac_mode);
5429         udelay(40);
5430
5431         *txflags = aninfo.txconfig;
5432         *rxflags = aninfo.flags;
5433
5434         if (status == ANEG_DONE &&
5435             (aninfo.flags & (MR_AN_COMPLETE | MR_LINK_OK |
5436                              MR_LP_ADV_FULL_DUPLEX)))
5437                 res = 1;
5438
5439         return res;
5440 }
5441
5442 static void tg3_init_bcm8002(struct tg3 *tp)
5443 {
5444         u32 mac_status = tr32(MAC_STATUS);
5445         int i;
5446
5447         /* Reset when initting first time or we have a link. */
5448         if (tg3_flag(tp, INIT_COMPLETE) &&
5449             !(mac_status & MAC_STATUS_PCS_SYNCED))
5450                 return;
5451
5452         /* Set PLL lock range. */
5453         tg3_writephy(tp, 0x16, 0x8007);
5454
5455         /* SW reset */
5456         tg3_writephy(tp, MII_BMCR, BMCR_RESET);
5457
5458         /* Wait for reset to complete. */
5459         /* XXX schedule_timeout() ... */
5460         for (i = 0; i < 500; i++)
5461                 udelay(10);
5462
5463         /* Config mode; select PMA/Ch 1 regs. */
5464         tg3_writephy(tp, 0x10, 0x8411);
5465
5466         /* Enable auto-lock and comdet, select txclk for tx. */
5467         tg3_writephy(tp, 0x11, 0x0a10);
5468
5469         tg3_writephy(tp, 0x18, 0x00a0);
5470         tg3_writephy(tp, 0x16, 0x41ff);
5471
5472         /* Assert and deassert POR. */
5473         tg3_writephy(tp, 0x13, 0x0400);
5474         udelay(40);
5475         tg3_writephy(tp, 0x13, 0x0000);
5476
5477         tg3_writephy(tp, 0x11, 0x0a50);
5478         udelay(40);
5479         tg3_writephy(tp, 0x11, 0x0a10);
5480
5481         /* Wait for signal to stabilize */
5482         /* XXX schedule_timeout() ... */
5483         for (i = 0; i < 15000; i++)
5484                 udelay(10);
5485
5486         /* Deselect the channel register so we can read the PHYID
5487          * later.
5488          */
5489         tg3_writephy(tp, 0x10, 0x8011);
5490 }
5491
5492 static bool tg3_setup_fiber_hw_autoneg(struct tg3 *tp, u32 mac_status)
5493 {
5494         u16 flowctrl;
5495         bool current_link_up;
5496         u32 sg_dig_ctrl, sg_dig_status;
5497         u32 serdes_cfg, expected_sg_dig_ctrl;
5498         int workaround, port_a;
5499
5500         serdes_cfg = 0;
5501         expected_sg_dig_ctrl = 0;
5502         workaround = 0;
5503         port_a = 1;
5504         current_link_up = false;
5505
5506         if (tg3_chip_rev_id(tp) != CHIPREV_ID_5704_A0 &&
5507             tg3_chip_rev_id(tp) != CHIPREV_ID_5704_A1) {
5508                 workaround = 1;
5509                 if (tr32(TG3PCI_DUAL_MAC_CTRL) & DUAL_MAC_CTRL_ID)
5510                         port_a = 0;
5511
5512                 /* preserve bits 0-11,13,14 for signal pre-emphasis */
5513                 /* preserve bits 20-23 for voltage regulator */
5514                 serdes_cfg = tr32(MAC_SERDES_CFG) & 0x00f06fff;
5515         }
5516
5517         sg_dig_ctrl = tr32(SG_DIG_CTRL);
5518
5519         if (tp->link_config.autoneg != AUTONEG_ENABLE) {
5520                 if (sg_dig_ctrl & SG_DIG_USING_HW_AUTONEG) {
5521                         if (workaround) {
5522                                 u32 val = serdes_cfg;
5523
5524                                 if (port_a)
5525                                         val |= 0xc010000;
5526                                 else
5527                                         val |= 0x4010000;
5528                                 tw32_f(MAC_SERDES_CFG, val);
5529                         }
5530
5531                         tw32_f(SG_DIG_CTRL, SG_DIG_COMMON_SETUP);
5532                 }
5533                 if (mac_status & MAC_STATUS_PCS_SYNCED) {
5534                         tg3_setup_flow_control(tp, 0, 0);
5535                         current_link_up = true;
5536                 }
5537                 goto out;
5538         }
5539
5540         /* Want auto-negotiation.  */
5541         expected_sg_dig_ctrl = SG_DIG_USING_HW_AUTONEG | SG_DIG_COMMON_SETUP;
5542
5543         flowctrl = tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
5544         if (flowctrl & ADVERTISE_1000XPAUSE)
5545                 expected_sg_dig_ctrl |= SG_DIG_PAUSE_CAP;
5546         if (flowctrl & ADVERTISE_1000XPSE_ASYM)
5547                 expected_sg_dig_ctrl |= SG_DIG_ASYM_PAUSE;
5548
5549         if (sg_dig_ctrl != expected_sg_dig_ctrl) {
5550                 if ((tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT) &&
5551                     tp->serdes_counter &&
5552                     ((mac_status & (MAC_STATUS_PCS_SYNCED |
5553                                     MAC_STATUS_RCVD_CFG)) ==
5554                      MAC_STATUS_PCS_SYNCED)) {
5555                         tp->serdes_counter--;
5556                         current_link_up = true;
5557                         goto out;
5558                 }
5559 restart_autoneg:
5560                 if (workaround)
5561                         tw32_f(MAC_SERDES_CFG, serdes_cfg | 0xc011000);
5562                 tw32_f(SG_DIG_CTRL, expected_sg_dig_ctrl | SG_DIG_SOFT_RESET);
5563                 udelay(5);
5564                 tw32_f(SG_DIG_CTRL, expected_sg_dig_ctrl);
5565
5566                 tp->serdes_counter = SERDES_AN_TIMEOUT_5704S;
5567                 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
5568         } else if (mac_status & (MAC_STATUS_PCS_SYNCED |
5569                                  MAC_STATUS_SIGNAL_DET)) {
5570                 sg_dig_status = tr32(SG_DIG_STATUS);
5571                 mac_status = tr32(MAC_STATUS);
5572
5573                 if ((sg_dig_status & SG_DIG_AUTONEG_COMPLETE) &&
5574                     (mac_status & MAC_STATUS_PCS_SYNCED)) {
5575                         u32 local_adv = 0, remote_adv = 0;
5576
5577                         if (sg_dig_ctrl & SG_DIG_PAUSE_CAP)
5578                                 local_adv |= ADVERTISE_1000XPAUSE;
5579                         if (sg_dig_ctrl & SG_DIG_ASYM_PAUSE)
5580                                 local_adv |= ADVERTISE_1000XPSE_ASYM;
5581
5582                         if (sg_dig_status & SG_DIG_PARTNER_PAUSE_CAPABLE)
5583                                 remote_adv |= LPA_1000XPAUSE;
5584                         if (sg_dig_status & SG_DIG_PARTNER_ASYM_PAUSE)
5585                                 remote_adv |= LPA_1000XPAUSE_ASYM;
5586
5587                         tp->link_config.rmt_adv =
5588                                            mii_adv_to_ethtool_adv_x(remote_adv);
5589
5590                         tg3_setup_flow_control(tp, local_adv, remote_adv);
5591                         current_link_up = true;
5592                         tp->serdes_counter = 0;
5593                         tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
5594                 } else if (!(sg_dig_status & SG_DIG_AUTONEG_COMPLETE)) {
5595                         if (tp->serdes_counter)
5596                                 tp->serdes_counter--;
5597                         else {
5598                                 if (workaround) {
5599                                         u32 val = serdes_cfg;
5600
5601                                         if (port_a)
5602                                                 val |= 0xc010000;
5603                                         else
5604                                                 val |= 0x4010000;
5605
5606                                         tw32_f(MAC_SERDES_CFG, val);
5607                                 }
5608
5609                                 tw32_f(SG_DIG_CTRL, SG_DIG_COMMON_SETUP);
5610                                 udelay(40);
5611
5612                                 /* Link parallel detection - link is up */
5613                                 /* only if we have PCS_SYNC and not */
5614                                 /* receiving config code words */
5615                                 mac_status = tr32(MAC_STATUS);
5616                                 if ((mac_status & MAC_STATUS_PCS_SYNCED) &&
5617                                     !(mac_status & MAC_STATUS_RCVD_CFG)) {
5618                                         tg3_setup_flow_control(tp, 0, 0);
5619                                         current_link_up = true;
5620                                         tp->phy_flags |=
5621                                                 TG3_PHYFLG_PARALLEL_DETECT;
5622                                         tp->serdes_counter =
5623                                                 SERDES_PARALLEL_DET_TIMEOUT;
5624                                 } else
5625                                         goto restart_autoneg;
5626                         }
5627                 }
5628         } else {
5629                 tp->serdes_counter = SERDES_AN_TIMEOUT_5704S;
5630                 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
5631         }
5632
5633 out:
5634         return current_link_up;
5635 }
5636
5637 static bool tg3_setup_fiber_by_hand(struct tg3 *tp, u32 mac_status)
5638 {
5639         bool current_link_up = false;
5640
5641         if (!(mac_status & MAC_STATUS_PCS_SYNCED))
5642                 goto out;
5643
5644         if (tp->link_config.autoneg == AUTONEG_ENABLE) {
5645                 u32 txflags, rxflags;
5646                 int i;
5647
5648                 if (fiber_autoneg(tp, &txflags, &rxflags)) {
5649                         u32 local_adv = 0, remote_adv = 0;
5650
5651                         if (txflags & ANEG_CFG_PS1)
5652                                 local_adv |= ADVERTISE_1000XPAUSE;
5653                         if (txflags & ANEG_CFG_PS2)
5654                                 local_adv |= ADVERTISE_1000XPSE_ASYM;
5655
5656                         if (rxflags & MR_LP_ADV_SYM_PAUSE)
5657                                 remote_adv |= LPA_1000XPAUSE;
5658                         if (rxflags & MR_LP_ADV_ASYM_PAUSE)
5659                                 remote_adv |= LPA_1000XPAUSE_ASYM;
5660
5661                         tp->link_config.rmt_adv =
5662                                            mii_adv_to_ethtool_adv_x(remote_adv);
5663
5664                         tg3_setup_flow_control(tp, local_adv, remote_adv);
5665
5666                         current_link_up = true;
5667                 }
5668                 for (i = 0; i < 30; i++) {
5669                         udelay(20);
5670                         tw32_f(MAC_STATUS,
5671                                (MAC_STATUS_SYNC_CHANGED |
5672                                 MAC_STATUS_CFG_CHANGED));
5673                         udelay(40);
5674                         if ((tr32(MAC_STATUS) &
5675                              (MAC_STATUS_SYNC_CHANGED |
5676                               MAC_STATUS_CFG_CHANGED)) == 0)
5677                                 break;
5678                 }
5679
5680                 mac_status = tr32(MAC_STATUS);
5681                 if (!current_link_up &&
5682                     (mac_status & MAC_STATUS_PCS_SYNCED) &&
5683                     !(mac_status & MAC_STATUS_RCVD_CFG))
5684                         current_link_up = true;
5685         } else {
5686                 tg3_setup_flow_control(tp, 0, 0);
5687
5688                 /* Forcing 1000FD link up. */
5689                 current_link_up = true;
5690
5691                 tw32_f(MAC_MODE, (tp->mac_mode | MAC_MODE_SEND_CONFIGS));
5692                 udelay(40);
5693
5694                 tw32_f(MAC_MODE, tp->mac_mode);
5695                 udelay(40);
5696         }
5697
5698 out:
5699         return current_link_up;
5700 }
5701
5702 static int tg3_setup_fiber_phy(struct tg3 *tp, bool force_reset)
5703 {
5704         u32 orig_pause_cfg;
5705         u16 orig_active_speed;
5706         u8 orig_active_duplex;
5707         u32 mac_status;
5708         bool current_link_up;
5709         int i;
5710
5711         orig_pause_cfg = tp->link_config.active_flowctrl;
5712         orig_active_speed = tp->link_config.active_speed;
5713         orig_active_duplex = tp->link_config.active_duplex;
5714
5715         if (!tg3_flag(tp, HW_AUTONEG) &&
5716             tp->link_up &&
5717             tg3_flag(tp, INIT_COMPLETE)) {
5718                 mac_status = tr32(MAC_STATUS);
5719                 mac_status &= (MAC_STATUS_PCS_SYNCED |
5720                                MAC_STATUS_SIGNAL_DET |
5721                                MAC_STATUS_CFG_CHANGED |
5722                                MAC_STATUS_RCVD_CFG);
5723                 if (mac_status == (MAC_STATUS_PCS_SYNCED |
5724                                    MAC_STATUS_SIGNAL_DET)) {
5725                         tw32_f(MAC_STATUS, (MAC_STATUS_SYNC_CHANGED |
5726                                             MAC_STATUS_CFG_CHANGED));
5727                         return 0;
5728                 }
5729         }
5730
5731         tw32_f(MAC_TX_AUTO_NEG, 0);
5732
5733         tp->mac_mode &= ~(MAC_MODE_PORT_MODE_MASK | MAC_MODE_HALF_DUPLEX);
5734         tp->mac_mode |= MAC_MODE_PORT_MODE_TBI;
5735         tw32_f(MAC_MODE, tp->mac_mode);
5736         udelay(40);
5737
5738         if (tp->phy_id == TG3_PHY_ID_BCM8002)
5739                 tg3_init_bcm8002(tp);
5740
5741         /* Enable link change event even when serdes polling.  */
5742         tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5743         udelay(40);
5744
5745         current_link_up = false;
5746         tp->link_config.rmt_adv = 0;
5747         mac_status = tr32(MAC_STATUS);
5748
5749         if (tg3_flag(tp, HW_AUTONEG))
5750                 current_link_up = tg3_setup_fiber_hw_autoneg(tp, mac_status);
5751         else
5752                 current_link_up = tg3_setup_fiber_by_hand(tp, mac_status);
5753
5754         tp->napi[0].hw_status->status =
5755                 (SD_STATUS_UPDATED |
5756                  (tp->napi[0].hw_status->status & ~SD_STATUS_LINK_CHG));
5757
5758         for (i = 0; i < 100; i++) {
5759                 tw32_f(MAC_STATUS, (MAC_STATUS_SYNC_CHANGED |
5760                                     MAC_STATUS_CFG_CHANGED));
5761                 udelay(5);
5762                 if ((tr32(MAC_STATUS) & (MAC_STATUS_SYNC_CHANGED |
5763                                          MAC_STATUS_CFG_CHANGED |
5764                                          MAC_STATUS_LNKSTATE_CHANGED)) == 0)
5765                         break;
5766         }
5767
5768         mac_status = tr32(MAC_STATUS);
5769         if ((mac_status & MAC_STATUS_PCS_SYNCED) == 0) {
5770                 current_link_up = false;
5771                 if (tp->link_config.autoneg == AUTONEG_ENABLE &&
5772                     tp->serdes_counter == 0) {
5773                         tw32_f(MAC_MODE, (tp->mac_mode |
5774                                           MAC_MODE_SEND_CONFIGS));
5775                         udelay(1);
5776                         tw32_f(MAC_MODE, tp->mac_mode);
5777                 }
5778         }
5779
5780         if (current_link_up) {
5781                 tp->link_config.active_speed = SPEED_1000;
5782                 tp->link_config.active_duplex = DUPLEX_FULL;
5783                 tw32(MAC_LED_CTRL, (tp->led_ctrl |
5784                                     LED_CTRL_LNKLED_OVERRIDE |
5785                                     LED_CTRL_1000MBPS_ON));
5786         } else {
5787                 tp->link_config.active_speed = SPEED_UNKNOWN;
5788                 tp->link_config.active_duplex = DUPLEX_UNKNOWN;
5789                 tw32(MAC_LED_CTRL, (tp->led_ctrl |
5790                                     LED_CTRL_LNKLED_OVERRIDE |
5791                                     LED_CTRL_TRAFFIC_OVERRIDE));
5792         }
5793
5794         if (!tg3_test_and_report_link_chg(tp, current_link_up)) {
5795                 u32 now_pause_cfg = tp->link_config.active_flowctrl;
5796                 if (orig_pause_cfg != now_pause_cfg ||
5797                     orig_active_speed != tp->link_config.active_speed ||
5798                     orig_active_duplex != tp->link_config.active_duplex)
5799                         tg3_link_report(tp);
5800         }
5801
5802         return 0;
5803 }
5804
5805 static int tg3_setup_fiber_mii_phy(struct tg3 *tp, bool force_reset)
5806 {
5807         int err = 0;
5808         u32 bmsr, bmcr;
5809         u16 current_speed = SPEED_UNKNOWN;
5810         u8 current_duplex = DUPLEX_UNKNOWN;
5811         bool current_link_up = false;
5812         u32 local_adv, remote_adv, sgsr;
5813
5814         if ((tg3_asic_rev(tp) == ASIC_REV_5719 ||
5815              tg3_asic_rev(tp) == ASIC_REV_5720) &&
5816              !tg3_readphy(tp, SERDES_TG3_1000X_STATUS, &sgsr) &&
5817              (sgsr & SERDES_TG3_SGMII_MODE)) {
5818
5819                 if (force_reset)
5820                         tg3_phy_reset(tp);
5821
5822                 tp->mac_mode &= ~MAC_MODE_PORT_MODE_MASK;
5823
5824                 if (!(sgsr & SERDES_TG3_LINK_UP)) {
5825                         tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
5826                 } else {
5827                         current_link_up = true;
5828                         if (sgsr & SERDES_TG3_SPEED_1000) {
5829                                 current_speed = SPEED_1000;
5830                                 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
5831                         } else if (sgsr & SERDES_TG3_SPEED_100) {
5832                                 current_speed = SPEED_100;
5833                                 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
5834                         } else {
5835                                 current_speed = SPEED_10;
5836                                 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
5837                         }
5838
5839                         if (sgsr & SERDES_TG3_FULL_DUPLEX)
5840                                 current_duplex = DUPLEX_FULL;
5841                         else
5842                                 current_duplex = DUPLEX_HALF;
5843                 }
5844
5845                 tw32_f(MAC_MODE, tp->mac_mode);
5846                 udelay(40);
5847
5848                 tg3_clear_mac_status(tp);
5849
5850                 goto fiber_setup_done;
5851         }
5852
5853         tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
5854         tw32_f(MAC_MODE, tp->mac_mode);
5855         udelay(40);
5856
5857         tg3_clear_mac_status(tp);
5858
5859         if (force_reset)
5860                 tg3_phy_reset(tp);
5861
5862         tp->link_config.rmt_adv = 0;
5863
5864         err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5865         err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5866         if (tg3_asic_rev(tp) == ASIC_REV_5714) {
5867                 if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
5868                         bmsr |= BMSR_LSTATUS;
5869                 else
5870                         bmsr &= ~BMSR_LSTATUS;
5871         }
5872
5873         err |= tg3_readphy(tp, MII_BMCR, &bmcr);
5874
5875         if ((tp->link_config.autoneg == AUTONEG_ENABLE) && !force_reset &&
5876             (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT)) {
5877                 /* do nothing, just check for link up at the end */
5878         } else if (tp->link_config.autoneg == AUTONEG_ENABLE) {
5879                 u32 adv, newadv;
5880
5881                 err |= tg3_readphy(tp, MII_ADVERTISE, &adv);
5882                 newadv = adv & ~(ADVERTISE_1000XFULL | ADVERTISE_1000XHALF |
5883                                  ADVERTISE_1000XPAUSE |
5884                                  ADVERTISE_1000XPSE_ASYM |
5885                                  ADVERTISE_SLCT);
5886
5887                 newadv |= tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
5888                 newadv |= ethtool_adv_to_mii_adv_x(tp->link_config.advertising);
5889
5890                 if ((newadv != adv) || !(bmcr & BMCR_ANENABLE)) {
5891                         tg3_writephy(tp, MII_ADVERTISE, newadv);
5892                         bmcr |= BMCR_ANENABLE | BMCR_ANRESTART;
5893                         tg3_writephy(tp, MII_BMCR, bmcr);
5894
5895                         tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5896                         tp->serdes_counter = SERDES_AN_TIMEOUT_5714S;
5897                         tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
5898
5899                         return err;
5900                 }
5901         } else {
5902                 u32 new_bmcr;
5903
5904                 bmcr &= ~BMCR_SPEED1000;
5905                 new_bmcr = bmcr & ~(BMCR_ANENABLE | BMCR_FULLDPLX);
5906
5907                 if (tp->link_config.duplex == DUPLEX_FULL)
5908                         new_bmcr |= BMCR_FULLDPLX;
5909
5910                 if (new_bmcr != bmcr) {
5911                         /* BMCR_SPEED1000 is a reserved bit that needs
5912                          * to be set on write.
5913                          */
5914                         new_bmcr |= BMCR_SPEED1000;
5915
5916                         /* Force a linkdown */
5917                         if (tp->link_up) {
5918                                 u32 adv;
5919
5920                                 err |= tg3_readphy(tp, MII_ADVERTISE, &adv);
5921                                 adv &= ~(ADVERTISE_1000XFULL |
5922                                          ADVERTISE_1000XHALF |
5923                                          ADVERTISE_SLCT);
5924                                 tg3_writephy(tp, MII_ADVERTISE, adv);
5925                                 tg3_writephy(tp, MII_BMCR, bmcr |
5926                                                            BMCR_ANRESTART |
5927                                                            BMCR_ANENABLE);
5928                                 udelay(10);
5929                                 tg3_carrier_off(tp);
5930                         }
5931                         tg3_writephy(tp, MII_BMCR, new_bmcr);
5932                         bmcr = new_bmcr;
5933                         err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5934                         err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5935                         if (tg3_asic_rev(tp) == ASIC_REV_5714) {
5936                                 if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
5937                                         bmsr |= BMSR_LSTATUS;
5938                                 else
5939                                         bmsr &= ~BMSR_LSTATUS;
5940                         }
5941                         tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
5942                 }
5943         }
5944
5945         if (bmsr & BMSR_LSTATUS) {
5946                 current_speed = SPEED_1000;
5947                 current_link_up = true;
5948                 if (bmcr & BMCR_FULLDPLX)
5949                         current_duplex = DUPLEX_FULL;
5950                 else
5951                         current_duplex = DUPLEX_HALF;
5952
5953                 local_adv = 0;
5954                 remote_adv = 0;
5955
5956                 if (bmcr & BMCR_ANENABLE) {
5957                         u32 common;
5958
5959                         err |= tg3_readphy(tp, MII_ADVERTISE, &local_adv);
5960                         err |= tg3_readphy(tp, MII_LPA, &remote_adv);
5961                         common = local_adv & remote_adv;
5962                         if (common & (ADVERTISE_1000XHALF |
5963                                       ADVERTISE_1000XFULL)) {
5964                                 if (common & ADVERTISE_1000XFULL)
5965                                         current_duplex = DUPLEX_FULL;
5966                                 else
5967                                         current_duplex = DUPLEX_HALF;
5968
5969                                 tp->link_config.rmt_adv =
5970                                            mii_adv_to_ethtool_adv_x(remote_adv);
5971                         } else if (!tg3_flag(tp, 5780_CLASS)) {
5972                                 /* Link is up via parallel detect */
5973                         } else {
5974                                 current_link_up = false;
5975                         }
5976                 }
5977         }
5978
5979 fiber_setup_done:
5980         if (current_link_up && current_duplex == DUPLEX_FULL)
5981                 tg3_setup_flow_control(tp, local_adv, remote_adv);
5982
5983         tp->mac_mode &= ~MAC_MODE_HALF_DUPLEX;
5984         if (tp->link_config.active_duplex == DUPLEX_HALF)
5985                 tp->mac_mode |= MAC_MODE_HALF_DUPLEX;
5986
5987         tw32_f(MAC_MODE, tp->mac_mode);
5988         udelay(40);
5989
5990         tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5991
5992         tp->link_config.active_speed = current_speed;
5993         tp->link_config.active_duplex = current_duplex;
5994
5995         tg3_test_and_report_link_chg(tp, current_link_up);
5996         return err;
5997 }
5998
5999 static void tg3_serdes_parallel_detect(struct tg3 *tp)
6000 {
6001         if (tp->serdes_counter) {
6002                 /* Give autoneg time to complete. */
6003                 tp->serdes_counter--;
6004                 return;
6005         }
6006
6007         if (!tp->link_up &&
6008             (tp->link_config.autoneg == AUTONEG_ENABLE)) {
6009                 u32 bmcr;
6010
6011                 tg3_readphy(tp, MII_BMCR, &bmcr);
6012                 if (bmcr & BMCR_ANENABLE) {
6013                         u32 phy1, phy2;
6014
6015                         /* Select shadow register 0x1f */
6016                         tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x7c00);
6017                         tg3_readphy(tp, MII_TG3_MISC_SHDW, &phy1);
6018
6019                         /* Select expansion interrupt status register */
6020                         tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
6021                                          MII_TG3_DSP_EXP1_INT_STAT);
6022                         tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
6023                         tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
6024
6025                         if ((phy1 & 0x10) && !(phy2 & 0x20)) {
6026                                 /* We have signal detect and not receiving
6027                                  * config code words, link is up by parallel
6028                                  * detection.
6029                                  */
6030
6031                                 bmcr &= ~BMCR_ANENABLE;
6032                                 bmcr |= BMCR_SPEED1000 | BMCR_FULLDPLX;
6033                                 tg3_writephy(tp, MII_BMCR, bmcr);
6034                                 tp->phy_flags |= TG3_PHYFLG_PARALLEL_DETECT;
6035                         }
6036                 }
6037         } else if (tp->link_up &&
6038                    (tp->link_config.autoneg == AUTONEG_ENABLE) &&
6039                    (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT)) {
6040                 u32 phy2;
6041
6042                 /* Select expansion interrupt status register */
6043                 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
6044                                  MII_TG3_DSP_EXP1_INT_STAT);
6045                 tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
6046                 if (phy2 & 0x20) {
6047                         u32 bmcr;
6048
6049                         /* Config code words received, turn on autoneg. */
6050                         tg3_readphy(tp, MII_BMCR, &bmcr);
6051                         tg3_writephy(tp, MII_BMCR, bmcr | BMCR_ANENABLE);
6052
6053                         tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
6054
6055                 }
6056         }
6057 }
6058
6059 static int tg3_setup_phy(struct tg3 *tp, bool force_reset)
6060 {
6061         u32 val;
6062         int err;
6063
6064         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
6065                 err = tg3_setup_fiber_phy(tp, force_reset);
6066         else if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
6067                 err = tg3_setup_fiber_mii_phy(tp, force_reset);
6068         else
6069                 err = tg3_setup_copper_phy(tp, force_reset);
6070
6071         if (tg3_chip_rev(tp) == CHIPREV_5784_AX) {
6072                 u32 scale;
6073
6074                 val = tr32(TG3_CPMU_CLCK_STAT) & CPMU_CLCK_STAT_MAC_CLCK_MASK;
6075                 if (val == CPMU_CLCK_STAT_MAC_CLCK_62_5)
6076                         scale = 65;
6077                 else if (val == CPMU_CLCK_STAT_MAC_CLCK_6_25)
6078                         scale = 6;
6079                 else
6080                         scale = 12;
6081
6082                 val = tr32(GRC_MISC_CFG) & ~GRC_MISC_CFG_PRESCALAR_MASK;
6083                 val |= (scale << GRC_MISC_CFG_PRESCALAR_SHIFT);
6084                 tw32(GRC_MISC_CFG, val);
6085         }
6086
6087         val = (2 << TX_LENGTHS_IPG_CRS_SHIFT) |
6088               (6 << TX_LENGTHS_IPG_SHIFT);
6089         if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
6090             tg3_asic_rev(tp) == ASIC_REV_5762)
6091                 val |= tr32(MAC_TX_LENGTHS) &
6092                        (TX_LENGTHS_JMB_FRM_LEN_MSK |
6093                         TX_LENGTHS_CNT_DWN_VAL_MSK);
6094
6095         if (tp->link_config.active_speed == SPEED_1000 &&
6096             tp->link_config.active_duplex == DUPLEX_HALF)
6097                 tw32(MAC_TX_LENGTHS, val |
6098                      (0xff << TX_LENGTHS_SLOT_TIME_SHIFT));
6099         else
6100                 tw32(MAC_TX_LENGTHS, val |
6101                      (32 << TX_LENGTHS_SLOT_TIME_SHIFT));
6102
6103         if (!tg3_flag(tp, 5705_PLUS)) {
6104                 if (tp->link_up) {
6105                         tw32(HOSTCC_STAT_COAL_TICKS,
6106                              tp->coal.stats_block_coalesce_usecs);
6107                 } else {
6108                         tw32(HOSTCC_STAT_COAL_TICKS, 0);
6109                 }
6110         }
6111
6112         if (tg3_flag(tp, ASPM_WORKAROUND)) {
6113                 val = tr32(PCIE_PWR_MGMT_THRESH);
6114                 if (!tp->link_up)
6115                         val = (val & ~PCIE_PWR_MGMT_L1_THRESH_MSK) |
6116                               tp->pwrmgmt_thresh;
6117                 else
6118                         val |= PCIE_PWR_MGMT_L1_THRESH_MSK;
6119                 tw32(PCIE_PWR_MGMT_THRESH, val);
6120         }
6121
6122         return err;
6123 }
6124
6125 /* tp->lock must be held */
6126 static u64 tg3_refclk_read(struct tg3 *tp)
6127 {
6128         u64 stamp = tr32(TG3_EAV_REF_CLCK_LSB);
6129         return stamp | (u64)tr32(TG3_EAV_REF_CLCK_MSB) << 32;
6130 }
6131
6132 /* tp->lock must be held */
6133 static void tg3_refclk_write(struct tg3 *tp, u64 newval)
6134 {
6135         u32 clock_ctl = tr32(TG3_EAV_REF_CLCK_CTL);
6136
6137         tw32(TG3_EAV_REF_CLCK_CTL, clock_ctl | TG3_EAV_REF_CLCK_CTL_STOP);
6138         tw32(TG3_EAV_REF_CLCK_LSB, newval & 0xffffffff);
6139         tw32(TG3_EAV_REF_CLCK_MSB, newval >> 32);
6140         tw32_f(TG3_EAV_REF_CLCK_CTL, clock_ctl | TG3_EAV_REF_CLCK_CTL_RESUME);
6141 }
6142
6143 static inline void tg3_full_lock(struct tg3 *tp, int irq_sync);
6144 static inline void tg3_full_unlock(struct tg3 *tp);
6145 static int tg3_get_ts_info(struct net_device *dev, struct ethtool_ts_info *info)
6146 {
6147         struct tg3 *tp = netdev_priv(dev);
6148
6149         info->so_timestamping = SOF_TIMESTAMPING_TX_SOFTWARE |
6150                                 SOF_TIMESTAMPING_RX_SOFTWARE |
6151                                 SOF_TIMESTAMPING_SOFTWARE;
6152
6153         if (tg3_flag(tp, PTP_CAPABLE)) {
6154                 info->so_timestamping |= SOF_TIMESTAMPING_TX_HARDWARE |
6155                                         SOF_TIMESTAMPING_RX_HARDWARE |
6156                                         SOF_TIMESTAMPING_RAW_HARDWARE;
6157         }
6158
6159         if (tp->ptp_clock)
6160                 info->phc_index = ptp_clock_index(tp->ptp_clock);
6161         else
6162                 info->phc_index = -1;
6163
6164         info->tx_types = (1 << HWTSTAMP_TX_OFF) | (1 << HWTSTAMP_TX_ON);
6165
6166         info->rx_filters = (1 << HWTSTAMP_FILTER_NONE) |
6167                            (1 << HWTSTAMP_FILTER_PTP_V1_L4_EVENT) |
6168                            (1 << HWTSTAMP_FILTER_PTP_V2_L2_EVENT) |
6169                            (1 << HWTSTAMP_FILTER_PTP_V2_L4_EVENT);
6170         return 0;
6171 }
6172
6173 static int tg3_ptp_adjfreq(struct ptp_clock_info *ptp, s32 ppb)
6174 {
6175         struct tg3 *tp = container_of(ptp, struct tg3, ptp_info);
6176         bool neg_adj = false;
6177         u32 correction = 0;
6178
6179         if (ppb < 0) {
6180                 neg_adj = true;
6181                 ppb = -ppb;
6182         }
6183
6184         /* Frequency adjustment is performed using hardware with a 24 bit
6185          * accumulator and a programmable correction value. On each clk, the
6186          * correction value gets added to the accumulator and when it
6187          * overflows, the time counter is incremented/decremented.
6188          *
6189          * So conversion from ppb to correction value is
6190          *              ppb * (1 << 24) / 1000000000
6191          */
6192         correction = div_u64((u64)ppb * (1 << 24), 1000000000ULL) &
6193                      TG3_EAV_REF_CLK_CORRECT_MASK;
6194
6195         tg3_full_lock(tp, 0);
6196
6197         if (correction)
6198                 tw32(TG3_EAV_REF_CLK_CORRECT_CTL,
6199                      TG3_EAV_REF_CLK_CORRECT_EN |
6200                      (neg_adj ? TG3_EAV_REF_CLK_CORRECT_NEG : 0) | correction);
6201         else
6202                 tw32(TG3_EAV_REF_CLK_CORRECT_CTL, 0);
6203
6204         tg3_full_unlock(tp);
6205
6206         return 0;
6207 }
6208
6209 static int tg3_ptp_adjtime(struct ptp_clock_info *ptp, s64 delta)
6210 {
6211         struct tg3 *tp = container_of(ptp, struct tg3, ptp_info);
6212
6213         tg3_full_lock(tp, 0);
6214         tp->ptp_adjust += delta;
6215         tg3_full_unlock(tp);
6216
6217         return 0;
6218 }
6219
6220 static int tg3_ptp_gettime(struct ptp_clock_info *ptp, struct timespec *ts)
6221 {
6222         u64 ns;
6223         u32 remainder;
6224         struct tg3 *tp = container_of(ptp, struct tg3, ptp_info);
6225
6226         tg3_full_lock(tp, 0);
6227         ns = tg3_refclk_read(tp);
6228         ns += tp->ptp_adjust;
6229         tg3_full_unlock(tp);
6230
6231         ts->tv_sec = div_u64_rem(ns, 1000000000, &remainder);
6232         ts->tv_nsec = remainder;
6233
6234         return 0;
6235 }
6236
6237 static int tg3_ptp_settime(struct ptp_clock_info *ptp,
6238                            const struct timespec *ts)
6239 {
6240         u64 ns;
6241         struct tg3 *tp = container_of(ptp, struct tg3, ptp_info);
6242
6243         ns = timespec_to_ns(ts);
6244
6245         tg3_full_lock(tp, 0);
6246         tg3_refclk_write(tp, ns);
6247         tp->ptp_adjust = 0;
6248         tg3_full_unlock(tp);
6249
6250         return 0;
6251 }
6252
6253 static int tg3_ptp_enable(struct ptp_clock_info *ptp,
6254                           struct ptp_clock_request *rq, int on)
6255 {
6256         struct tg3 *tp = container_of(ptp, struct tg3, ptp_info);
6257         u32 clock_ctl;
6258         int rval = 0;
6259
6260         switch (rq->type) {
6261         case PTP_CLK_REQ_PEROUT:
6262                 if (rq->perout.index != 0)
6263                         return -EINVAL;
6264
6265                 tg3_full_lock(tp, 0);
6266                 clock_ctl = tr32(TG3_EAV_REF_CLCK_CTL);
6267                 clock_ctl &= ~TG3_EAV_CTL_TSYNC_GPIO_MASK;
6268
6269                 if (on) {
6270                         u64 nsec;
6271
6272                         nsec = rq->perout.start.sec * 1000000000ULL +
6273                                rq->perout.start.nsec;
6274
6275                         if (rq->perout.period.sec || rq->perout.period.nsec) {
6276                                 netdev_warn(tp->dev,
6277                                             "Device supports only a one-shot timesync output, period must be 0\n");
6278                                 rval = -EINVAL;
6279                                 goto err_out;
6280                         }
6281
6282                         if (nsec & (1ULL << 63)) {
6283                                 netdev_warn(tp->dev,
6284                                             "Start value (nsec) is over limit. Maximum size of start is only 63 bits\n");
6285                                 rval = -EINVAL;
6286                                 goto err_out;
6287                         }
6288
6289                         tw32(TG3_EAV_WATCHDOG0_LSB, (nsec & 0xffffffff));
6290                         tw32(TG3_EAV_WATCHDOG0_MSB,
6291                              TG3_EAV_WATCHDOG0_EN |
6292                              ((nsec >> 32) & TG3_EAV_WATCHDOG_MSB_MASK));
6293
6294                         tw32(TG3_EAV_REF_CLCK_CTL,
6295                              clock_ctl | TG3_EAV_CTL_TSYNC_WDOG0);
6296                 } else {
6297                         tw32(TG3_EAV_WATCHDOG0_MSB, 0);
6298                         tw32(TG3_EAV_REF_CLCK_CTL, clock_ctl);
6299                 }
6300
6301 err_out:
6302                 tg3_full_unlock(tp);
6303                 return rval;
6304
6305         default:
6306                 break;
6307         }
6308
6309         return -EOPNOTSUPP;
6310 }
6311
6312 static const struct ptp_clock_info tg3_ptp_caps = {
6313         .owner          = THIS_MODULE,
6314         .name           = "tg3 clock",
6315         .max_adj        = 250000000,
6316         .n_alarm        = 0,
6317         .n_ext_ts       = 0,
6318         .n_per_out      = 1,
6319         .n_pins         = 0,
6320         .pps            = 0,
6321         .adjfreq        = tg3_ptp_adjfreq,
6322         .adjtime        = tg3_ptp_adjtime,
6323         .gettime        = tg3_ptp_gettime,
6324         .settime        = tg3_ptp_settime,
6325         .enable         = tg3_ptp_enable,
6326 };
6327
6328 static void tg3_hwclock_to_timestamp(struct tg3 *tp, u64 hwclock,
6329                                      struct skb_shared_hwtstamps *timestamp)
6330 {
6331         memset(timestamp, 0, sizeof(struct skb_shared_hwtstamps));
6332         timestamp->hwtstamp  = ns_to_ktime((hwclock & TG3_TSTAMP_MASK) +
6333                                            tp->ptp_adjust);
6334 }
6335
6336 /* tp->lock must be held */
6337 static void tg3_ptp_init(struct tg3 *tp)
6338 {
6339         if (!tg3_flag(tp, PTP_CAPABLE))
6340                 return;
6341
6342         /* Initialize the hardware clock to the system time. */
6343         tg3_refclk_write(tp, ktime_to_ns(ktime_get_real()));
6344         tp->ptp_adjust = 0;
6345         tp->ptp_info = tg3_ptp_caps;
6346 }
6347
6348 /* tp->lock must be held */
6349 static void tg3_ptp_resume(struct tg3 *tp)
6350 {
6351         if (!tg3_flag(tp, PTP_CAPABLE))
6352                 return;
6353
6354         tg3_refclk_write(tp, ktime_to_ns(ktime_get_real()) + tp->ptp_adjust);
6355         tp->ptp_adjust = 0;
6356 }
6357
6358 static void tg3_ptp_fini(struct tg3 *tp)
6359 {
6360         if (!tg3_flag(tp, PTP_CAPABLE) || !tp->ptp_clock)
6361                 return;
6362
6363         ptp_clock_unregister(tp->ptp_clock);
6364         tp->ptp_clock = NULL;
6365         tp->ptp_adjust = 0;
6366 }
6367
6368 static inline int tg3_irq_sync(struct tg3 *tp)
6369 {
6370         return tp->irq_sync;
6371 }
6372
6373 static inline void tg3_rd32_loop(struct tg3 *tp, u32 *dst, u32 off, u32 len)
6374 {
6375         int i;
6376
6377         dst = (u32 *)((u8 *)dst + off);
6378         for (i = 0; i < len; i += sizeof(u32))
6379                 *dst++ = tr32(off + i);
6380 }
6381
6382 static void tg3_dump_legacy_regs(struct tg3 *tp, u32 *regs)
6383 {
6384         tg3_rd32_loop(tp, regs, TG3PCI_VENDOR, 0xb0);
6385         tg3_rd32_loop(tp, regs, MAILBOX_INTERRUPT_0, 0x200);
6386         tg3_rd32_loop(tp, regs, MAC_MODE, 0x4f0);
6387         tg3_rd32_loop(tp, regs, SNDDATAI_MODE, 0xe0);
6388         tg3_rd32_loop(tp, regs, SNDDATAC_MODE, 0x04);
6389         tg3_rd32_loop(tp, regs, SNDBDS_MODE, 0x80);
6390         tg3_rd32_loop(tp, regs, SNDBDI_MODE, 0x48);
6391         tg3_rd32_loop(tp, regs, SNDBDC_MODE, 0x04);
6392         tg3_rd32_loop(tp, regs, RCVLPC_MODE, 0x20);
6393         tg3_rd32_loop(tp, regs, RCVLPC_SELLST_BASE, 0x15c);
6394         tg3_rd32_loop(tp, regs, RCVDBDI_MODE, 0x0c);
6395         tg3_rd32_loop(tp, regs, RCVDBDI_JUMBO_BD, 0x3c);
6396         tg3_rd32_loop(tp, regs, RCVDBDI_BD_PROD_IDX_0, 0x44);
6397         tg3_rd32_loop(tp, regs, RCVDCC_MODE, 0x04);
6398         tg3_rd32_loop(tp, regs, RCVBDI_MODE, 0x20);
6399         tg3_rd32_loop(tp, regs, RCVCC_MODE, 0x14);
6400         tg3_rd32_loop(tp, regs, RCVLSC_MODE, 0x08);
6401         tg3_rd32_loop(tp, regs, MBFREE_MODE, 0x08);
6402         tg3_rd32_loop(tp, regs, HOSTCC_MODE, 0x100);
6403
6404         if (tg3_flag(tp, SUPPORT_MSIX))
6405                 tg3_rd32_loop(tp, regs, HOSTCC_RXCOL_TICKS_VEC1, 0x180);
6406
6407         tg3_rd32_loop(tp, regs, MEMARB_MODE, 0x10);
6408         tg3_rd32_loop(tp, regs, BUFMGR_MODE, 0x58);
6409         tg3_rd32_loop(tp, regs, RDMAC_MODE, 0x08);
6410         tg3_rd32_loop(tp, regs, WDMAC_MODE, 0x08);
6411         tg3_rd32_loop(tp, regs, RX_CPU_MODE, 0x04);
6412         tg3_rd32_loop(tp, regs, RX_CPU_STATE, 0x04);
6413         tg3_rd32_loop(tp, regs, RX_CPU_PGMCTR, 0x04);
6414         tg3_rd32_loop(tp, regs, RX_CPU_HWBKPT, 0x04);
6415
6416         if (!tg3_flag(tp, 5705_PLUS)) {
6417                 tg3_rd32_loop(tp, regs, TX_CPU_MODE, 0x04);
6418                 tg3_rd32_loop(tp, regs, TX_CPU_STATE, 0x04);
6419                 tg3_rd32_loop(tp, regs, TX_CPU_PGMCTR, 0x04);
6420         }
6421
6422         tg3_rd32_loop(tp, regs, GRCMBOX_INTERRUPT_0, 0x110);
6423         tg3_rd32_loop(tp, regs, FTQ_RESET, 0x120);
6424         tg3_rd32_loop(tp, regs, MSGINT_MODE, 0x0c);
6425         tg3_rd32_loop(tp, regs, DMAC_MODE, 0x04);
6426         tg3_rd32_loop(tp, regs, GRC_MODE, 0x4c);
6427
6428         if (tg3_flag(tp, NVRAM))
6429                 tg3_rd32_loop(tp, regs, NVRAM_CMD, 0x24);
6430 }
6431
6432 static void tg3_dump_state(struct tg3 *tp)
6433 {
6434         int i;
6435         u32 *regs;
6436
6437         regs = kzalloc(TG3_REG_BLK_SIZE, GFP_ATOMIC);
6438         if (!regs)
6439                 return;
6440
6441         if (tg3_flag(tp, PCI_EXPRESS)) {
6442                 /* Read up to but not including private PCI registers */
6443                 for (i = 0; i < TG3_PCIE_TLDLPL_PORT; i += sizeof(u32))
6444                         regs[i / sizeof(u32)] = tr32(i);
6445         } else
6446                 tg3_dump_legacy_regs(tp, regs);
6447
6448         for (i = 0; i < TG3_REG_BLK_SIZE / sizeof(u32); i += 4) {
6449                 if (!regs[i + 0] && !regs[i + 1] &&
6450                     !regs[i + 2] && !regs[i + 3])
6451                         continue;
6452
6453                 netdev_err(tp->dev, "0x%08x: 0x%08x, 0x%08x, 0x%08x, 0x%08x\n",
6454                            i * 4,
6455                            regs[i + 0], regs[i + 1], regs[i + 2], regs[i + 3]);
6456         }
6457
6458         kfree(regs);
6459
6460         for (i = 0; i < tp->irq_cnt; i++) {
6461                 struct tg3_napi *tnapi = &tp->napi[i];
6462
6463                 /* SW status block */
6464                 netdev_err(tp->dev,
6465                          "%d: Host status block [%08x:%08x:(%04x:%04x:%04x):(%04x:%04x)]\n",
6466                            i,
6467                            tnapi->hw_status->status,
6468                            tnapi->hw_status->status_tag,
6469                            tnapi->hw_status->rx_jumbo_consumer,
6470                            tnapi->hw_status->rx_consumer,
6471                            tnapi->hw_status->rx_mini_consumer,
6472                            tnapi->hw_status->idx[0].rx_producer,
6473                            tnapi->hw_status->idx[0].tx_consumer);
6474
6475                 netdev_err(tp->dev,
6476                 "%d: NAPI info [%08x:%08x:(%04x:%04x:%04x):%04x:(%04x:%04x:%04x:%04x)]\n",
6477                            i,
6478                            tnapi->last_tag, tnapi->last_irq_tag,
6479                            tnapi->tx_prod, tnapi->tx_cons, tnapi->tx_pending,
6480                            tnapi->rx_rcb_ptr,
6481                            tnapi->prodring.rx_std_prod_idx,
6482                            tnapi->prodring.rx_std_cons_idx,
6483                            tnapi->prodring.rx_jmb_prod_idx,
6484                            tnapi->prodring.rx_jmb_cons_idx);
6485         }
6486 }
6487
6488 /* This is called whenever we suspect that the system chipset is re-
6489  * ordering the sequence of MMIO to the tx send mailbox. The symptom
6490  * is bogus tx completions. We try to recover by setting the
6491  * TG3_FLAG_MBOX_WRITE_REORDER flag and resetting the chip later
6492  * in the workqueue.
6493  */
6494 static void tg3_tx_recover(struct tg3 *tp)
6495 {
6496         BUG_ON(tg3_flag(tp, MBOX_WRITE_REORDER) ||
6497                tp->write32_tx_mbox == tg3_write_indirect_mbox);
6498
6499         netdev_warn(tp->dev,
6500                     "The system may be re-ordering memory-mapped I/O "
6501                     "cycles to the network device, attempting to recover. "
6502                     "Please report the problem to the driver maintainer "
6503                     "and include system chipset information.\n");
6504
6505         tg3_flag_set(tp, TX_RECOVERY_PENDING);
6506 }
6507
6508 static inline u32 tg3_tx_avail(struct tg3_napi *tnapi)
6509 {
6510         /* Tell compiler to fetch tx indices from memory. */
6511         barrier();
6512         return tnapi->tx_pending -
6513                ((tnapi->tx_prod - tnapi->tx_cons) & (TG3_TX_RING_SIZE - 1));
6514 }
6515
6516 /* Tigon3 never reports partial packet sends.  So we do not
6517  * need special logic to handle SKBs that have not had all
6518  * of their frags sent yet, like SunGEM does.
6519  */
6520 static void tg3_tx(struct tg3_napi *tnapi)
6521 {
6522         struct tg3 *tp = tnapi->tp;
6523         u32 hw_idx = tnapi->hw_status->idx[0].tx_consumer;
6524         u32 sw_idx = tnapi->tx_cons;
6525         struct netdev_queue *txq;
6526         int index = tnapi - tp->napi;
6527         unsigned int pkts_compl = 0, bytes_compl = 0;
6528
6529         if (tg3_flag(tp, ENABLE_TSS))
6530                 index--;
6531
6532         txq = netdev_get_tx_queue(tp->dev, index);
6533
6534         while (sw_idx != hw_idx) {
6535                 struct tg3_tx_ring_info *ri = &tnapi->tx_buffers[sw_idx];
6536                 struct sk_buff *skb = ri->skb;
6537                 int i, tx_bug = 0;
6538
6539                 if (unlikely(skb == NULL)) {
6540                         tg3_tx_recover(tp);
6541                         return;
6542                 }
6543
6544                 if (tnapi->tx_ring[sw_idx].len_flags & TXD_FLAG_HWTSTAMP) {
6545                         struct skb_shared_hwtstamps timestamp;
6546                         u64 hwclock = tr32(TG3_TX_TSTAMP_LSB);
6547                         hwclock |= (u64)tr32(TG3_TX_TSTAMP_MSB) << 32;
6548
6549                         tg3_hwclock_to_timestamp(tp, hwclock, &timestamp);
6550
6551                         skb_tstamp_tx(skb, &timestamp);
6552                 }
6553
6554                 pci_unmap_single(tp->pdev,
6555                                  dma_unmap_addr(ri, mapping),
6556                                  skb_headlen(skb),
6557                                  PCI_DMA_TODEVICE);
6558
6559                 ri->skb = NULL;
6560
6561                 while (ri->fragmented) {
6562                         ri->fragmented = false;
6563                         sw_idx = NEXT_TX(sw_idx);
6564                         ri = &tnapi->tx_buffers[sw_idx];
6565                 }
6566
6567                 sw_idx = NEXT_TX(sw_idx);
6568
6569                 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
6570                         ri = &tnapi->tx_buffers[sw_idx];
6571                         if (unlikely(ri->skb != NULL || sw_idx == hw_idx))
6572                                 tx_bug = 1;
6573
6574                         pci_unmap_page(tp->pdev,
6575                                        dma_unmap_addr(ri, mapping),
6576                                        skb_frag_size(&skb_shinfo(skb)->frags[i]),
6577                                        PCI_DMA_TODEVICE);
6578
6579                         while (ri->fragmented) {
6580                                 ri->fragmented = false;
6581                                 sw_idx = NEXT_TX(sw_idx);
6582                                 ri = &tnapi->tx_buffers[sw_idx];
6583                         }
6584
6585                         sw_idx = NEXT_TX(sw_idx);
6586                 }
6587
6588                 pkts_compl++;
6589                 bytes_compl += skb->len;
6590
6591                 dev_kfree_skb_any(skb);
6592
6593                 if (unlikely(tx_bug)) {
6594                         tg3_tx_recover(tp);
6595                         return;
6596                 }
6597         }
6598
6599         netdev_tx_completed_queue(txq, pkts_compl, bytes_compl);
6600
6601         tnapi->tx_cons = sw_idx;
6602
6603         /* Need to make the tx_cons update visible to tg3_start_xmit()
6604          * before checking for netif_queue_stopped().  Without the
6605          * memory barrier, there is a small possibility that tg3_start_xmit()
6606          * will miss it and cause the queue to be stopped forever.
6607          */
6608         smp_mb();
6609
6610         if (unlikely(netif_tx_queue_stopped(txq) &&
6611                      (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi)))) {
6612                 __netif_tx_lock(txq, smp_processor_id());
6613                 if (netif_tx_queue_stopped(txq) &&
6614                     (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi)))
6615                         netif_tx_wake_queue(txq);
6616                 __netif_tx_unlock(txq);
6617         }
6618 }
6619
6620 static void tg3_frag_free(bool is_frag, void *data)
6621 {
6622         if (is_frag)
6623                 put_page(virt_to_head_page(data));
6624         else
6625                 kfree(data);
6626 }
6627
6628 static void tg3_rx_data_free(struct tg3 *tp, struct ring_info *ri, u32 map_sz)
6629 {
6630         unsigned int skb_size = SKB_DATA_ALIGN(map_sz + TG3_RX_OFFSET(tp)) +
6631                    SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
6632
6633         if (!ri->data)
6634                 return;
6635
6636         pci_unmap_single(tp->pdev, dma_unmap_addr(ri, mapping),
6637                          map_sz, PCI_DMA_FROMDEVICE);
6638         tg3_frag_free(skb_size <= PAGE_SIZE, ri->data);
6639         ri->data = NULL;
6640 }
6641
6642
6643 /* Returns size of skb allocated or < 0 on error.
6644  *
6645  * We only need to fill in the address because the other members
6646  * of the RX descriptor are invariant, see tg3_init_rings.
6647  *
6648  * Note the purposeful assymetry of cpu vs. chip accesses.  For
6649  * posting buffers we only dirty the first cache line of the RX
6650  * descriptor (containing the address).  Whereas for the RX status
6651  * buffers the cpu only reads the last cacheline of the RX descriptor
6652  * (to fetch the error flags, vlan tag, checksum, and opaque cookie).
6653  */
6654 static int tg3_alloc_rx_data(struct tg3 *tp, struct tg3_rx_prodring_set *tpr,
6655                              u32 opaque_key, u32 dest_idx_unmasked,
6656                              unsigned int *frag_size)
6657 {
6658         struct tg3_rx_buffer_desc *desc;
6659         struct ring_info *map;
6660         u8 *data;
6661         dma_addr_t mapping;
6662         int skb_size, data_size, dest_idx;
6663
6664         switch (opaque_key) {
6665         case RXD_OPAQUE_RING_STD:
6666                 dest_idx = dest_idx_unmasked & tp->rx_std_ring_mask;
6667                 desc = &tpr->rx_std[dest_idx];
6668                 map = &tpr->rx_std_buffers[dest_idx];
6669                 data_size = tp->rx_pkt_map_sz;
6670                 break;
6671
6672         case RXD_OPAQUE_RING_JUMBO:
6673                 dest_idx = dest_idx_unmasked & tp->rx_jmb_ring_mask;
6674                 desc = &tpr->rx_jmb[dest_idx].std;
6675                 map = &tpr->rx_jmb_buffers[dest_idx];
6676                 data_size = TG3_RX_JMB_MAP_SZ;
6677                 break;
6678
6679         default:
6680                 return -EINVAL;
6681         }
6682
6683         /* Do not overwrite any of the map or rp information
6684          * until we are sure we can commit to a new buffer.
6685          *
6686          * Callers depend upon this behavior and assume that
6687          * we leave everything unchanged if we fail.
6688          */
6689         skb_size = SKB_DATA_ALIGN(data_size + TG3_RX_OFFSET(tp)) +
6690                    SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
6691         if (skb_size <= PAGE_SIZE) {
6692                 data = netdev_alloc_frag(skb_size);
6693                 *frag_size = skb_size;
6694         } else {
6695                 data = kmalloc(skb_size, GFP_ATOMIC);
6696                 *frag_size = 0;
6697         }
6698         if (!data)
6699                 return -ENOMEM;
6700
6701         mapping = pci_map_single(tp->pdev,
6702                                  data + TG3_RX_OFFSET(tp),
6703                                  data_size,
6704                                  PCI_DMA_FROMDEVICE);
6705         if (unlikely(pci_dma_mapping_error(tp->pdev, mapping))) {
6706                 tg3_frag_free(skb_size <= PAGE_SIZE, data);
6707                 return -EIO;
6708         }
6709
6710         map->data = data;
6711         dma_unmap_addr_set(map, mapping, mapping);
6712
6713         desc->addr_hi = ((u64)mapping >> 32);
6714         desc->addr_lo = ((u64)mapping & 0xffffffff);
6715
6716         return data_size;
6717 }
6718
6719 /* We only need to move over in the address because the other
6720  * members of the RX descriptor are invariant.  See notes above
6721  * tg3_alloc_rx_data for full details.
6722  */
6723 static void tg3_recycle_rx(struct tg3_napi *tnapi,
6724                            struct tg3_rx_prodring_set *dpr,
6725                            u32 opaque_key, int src_idx,
6726                            u32 dest_idx_unmasked)
6727 {
6728         struct tg3 *tp = tnapi->tp;
6729         struct tg3_rx_buffer_desc *src_desc, *dest_desc;
6730         struct ring_info *src_map, *dest_map;
6731         struct tg3_rx_prodring_set *spr = &tp->napi[0].prodring;
6732         int dest_idx;
6733
6734         switch (opaque_key) {
6735         case RXD_OPAQUE_RING_STD:
6736                 dest_idx = dest_idx_unmasked & tp->rx_std_ring_mask;
6737                 dest_desc = &dpr->rx_std[dest_idx];
6738                 dest_map = &dpr->rx_std_buffers[dest_idx];
6739                 src_desc = &spr->rx_std[src_idx];
6740                 src_map = &spr->rx_std_buffers[src_idx];
6741                 break;
6742
6743         case RXD_OPAQUE_RING_JUMBO:
6744                 dest_idx = dest_idx_unmasked & tp->rx_jmb_ring_mask;
6745                 dest_desc = &dpr->rx_jmb[dest_idx].std;
6746                 dest_map = &dpr->rx_jmb_buffers[dest_idx];
6747                 src_desc = &spr->rx_jmb[src_idx].std;
6748                 src_map = &spr->rx_jmb_buffers[src_idx];
6749                 break;
6750
6751         default:
6752                 return;
6753         }
6754
6755         dest_map->data = src_map->data;
6756         dma_unmap_addr_set(dest_map, mapping,
6757                            dma_unmap_addr(src_map, mapping));
6758         dest_desc->addr_hi = src_desc->addr_hi;
6759         dest_desc->addr_lo = src_desc->addr_lo;
6760
6761         /* Ensure that the update to the skb happens after the physical
6762          * addresses have been transferred to the new BD location.
6763          */
6764         smp_wmb();
6765
6766         src_map->data = NULL;
6767 }
6768
6769 /* The RX ring scheme is composed of multiple rings which post fresh
6770  * buffers to the chip, and one special ring the chip uses to report
6771  * status back to the host.
6772  *
6773  * The special ring reports the status of received packets to the
6774  * host.  The chip does not write into the original descriptor the
6775  * RX buffer was obtained from.  The chip simply takes the original
6776  * descriptor as provided by the host, updates the status and length
6777  * field, then writes this into the next status ring entry.
6778  *
6779  * Each ring the host uses to post buffers to the chip is described
6780  * by a TG3_BDINFO entry in the chips SRAM area.  When a packet arrives,
6781  * it is first placed into the on-chip ram.  When the packet's length
6782  * is known, it walks down the TG3_BDINFO entries to select the ring.
6783  * Each TG3_BDINFO specifies a MAXLEN field and the first TG3_BDINFO
6784  * which is within the range of the new packet's length is chosen.
6785  *
6786  * The "separate ring for rx status" scheme may sound queer, but it makes
6787  * sense from a cache coherency perspective.  If only the host writes
6788  * to the buffer post rings, and only the chip writes to the rx status
6789  * rings, then cache lines never move beyond shared-modified state.
6790  * If both the host and chip were to write into the same ring, cache line
6791  * eviction could occur since both entities want it in an exclusive state.
6792  */
6793 static int tg3_rx(struct tg3_napi *tnapi, int budget)
6794 {
6795         struct tg3 *tp = tnapi->tp;
6796         u32 work_mask, rx_std_posted = 0;
6797         u32 std_prod_idx, jmb_prod_idx;
6798         u32 sw_idx = tnapi->rx_rcb_ptr;
6799         u16 hw_idx;
6800         int received;
6801         struct tg3_rx_prodring_set *tpr = &tnapi->prodring;
6802
6803         hw_idx = *(tnapi->rx_rcb_prod_idx);
6804         /*
6805          * We need to order the read of hw_idx and the read of
6806          * the opaque cookie.
6807          */
6808         rmb();
6809         work_mask = 0;
6810         received = 0;
6811         std_prod_idx = tpr->rx_std_prod_idx;
6812         jmb_prod_idx = tpr->rx_jmb_prod_idx;
6813         while (sw_idx != hw_idx && budget > 0) {
6814                 struct ring_info *ri;
6815                 struct tg3_rx_buffer_desc *desc = &tnapi->rx_rcb[sw_idx];
6816                 unsigned int len;
6817                 struct sk_buff *skb;
6818                 dma_addr_t dma_addr;
6819                 u32 opaque_key, desc_idx, *post_ptr;
6820                 u8 *data;
6821                 u64 tstamp = 0;
6822
6823                 desc_idx = desc->opaque & RXD_OPAQUE_INDEX_MASK;
6824                 opaque_key = desc->opaque & RXD_OPAQUE_RING_MASK;
6825                 if (opaque_key == RXD_OPAQUE_RING_STD) {
6826                         ri = &tp->napi[0].prodring.rx_std_buffers[desc_idx];
6827                         dma_addr = dma_unmap_addr(ri, mapping);
6828                         data = ri->data;
6829                         post_ptr = &std_prod_idx;
6830                         rx_std_posted++;
6831                 } else if (opaque_key == RXD_OPAQUE_RING_JUMBO) {
6832                         ri = &tp->napi[0].prodring.rx_jmb_buffers[desc_idx];
6833                         dma_addr = dma_unmap_addr(ri, mapping);
6834                         data = ri->data;
6835                         post_ptr = &jmb_prod_idx;
6836                 } else
6837                         goto next_pkt_nopost;
6838
6839                 work_mask |= opaque_key;
6840
6841                 if (desc->err_vlan & RXD_ERR_MASK) {
6842                 drop_it:
6843                         tg3_recycle_rx(tnapi, tpr, opaque_key,
6844                                        desc_idx, *post_ptr);
6845                 drop_it_no_recycle:
6846                         /* Other statistics kept track of by card. */
6847                         tp->rx_dropped++;
6848                         goto next_pkt;
6849                 }
6850
6851                 prefetch(data + TG3_RX_OFFSET(tp));
6852                 len = ((desc->idx_len & RXD_LEN_MASK) >> RXD_LEN_SHIFT) -
6853                       ETH_FCS_LEN;
6854
6855                 if ((desc->type_flags & RXD_FLAG_PTPSTAT_MASK) ==
6856                      RXD_FLAG_PTPSTAT_PTPV1 ||
6857                     (desc->type_flags & RXD_FLAG_PTPSTAT_MASK) ==
6858                      RXD_FLAG_PTPSTAT_PTPV2) {
6859                         tstamp = tr32(TG3_RX_TSTAMP_LSB);
6860                         tstamp |= (u64)tr32(TG3_RX_TSTAMP_MSB) << 32;
6861                 }
6862
6863                 if (len > TG3_RX_COPY_THRESH(tp)) {
6864                         int skb_size;
6865                         unsigned int frag_size;
6866
6867                         skb_size = tg3_alloc_rx_data(tp, tpr, opaque_key,
6868                                                     *post_ptr, &frag_size);
6869                         if (skb_size < 0)
6870                                 goto drop_it;
6871
6872                         pci_unmap_single(tp->pdev, dma_addr, skb_size,
6873                                          PCI_DMA_FROMDEVICE);
6874
6875                         /* Ensure that the update to the data happens
6876                          * after the usage of the old DMA mapping.
6877                          */
6878                         smp_wmb();
6879
6880                         ri->data = NULL;
6881
6882                         skb = build_skb(data, frag_size);
6883                         if (!skb) {
6884                                 tg3_frag_free(frag_size != 0, data);
6885                                 goto drop_it_no_recycle;
6886                         }
6887                         skb_reserve(skb, TG3_RX_OFFSET(tp));
6888                 } else {
6889                         tg3_recycle_rx(tnapi, tpr, opaque_key,
6890                                        desc_idx, *post_ptr);
6891
6892                         skb = netdev_alloc_skb(tp->dev,
6893                                                len + TG3_RAW_IP_ALIGN);
6894                         if (skb == NULL)
6895                                 goto drop_it_no_recycle;
6896
6897                         skb_reserve(skb, TG3_RAW_IP_ALIGN);
6898                         pci_dma_sync_single_for_cpu(tp->pdev, dma_addr, len, PCI_DMA_FROMDEVICE);
6899                         memcpy(skb->data,
6900                                data + TG3_RX_OFFSET(tp),
6901                                len);
6902                         pci_dma_sync_single_for_device(tp->pdev, dma_addr, len, PCI_DMA_FROMDEVICE);
6903                 }
6904
6905                 skb_put(skb, len);
6906                 if (tstamp)
6907                         tg3_hwclock_to_timestamp(tp, tstamp,
6908                                                  skb_hwtstamps(skb));
6909
6910                 if ((tp->dev->features & NETIF_F_RXCSUM) &&
6911                     (desc->type_flags & RXD_FLAG_TCPUDP_CSUM) &&
6912                     (((desc->ip_tcp_csum & RXD_TCPCSUM_MASK)
6913                       >> RXD_TCPCSUM_SHIFT) == 0xffff))
6914                         skb->ip_summed = CHECKSUM_UNNECESSARY;
6915                 else
6916                         skb_checksum_none_assert(skb);
6917
6918                 skb->protocol = eth_type_trans(skb, tp->dev);
6919
6920                 if (len > (tp->dev->mtu + ETH_HLEN) &&
6921                     skb->protocol != htons(ETH_P_8021Q)) {
6922                         dev_kfree_skb_any(skb);
6923                         goto drop_it_no_recycle;
6924                 }
6925
6926                 if (desc->type_flags & RXD_FLAG_VLAN &&
6927                     !(tp->rx_mode & RX_MODE_KEEP_VLAN_TAG))
6928                         __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q),
6929                                                desc->err_vlan & RXD_VLAN_MASK);
6930
6931                 napi_gro_receive(&tnapi->napi, skb);
6932
6933                 received++;
6934                 budget--;
6935
6936 next_pkt:
6937                 (*post_ptr)++;
6938
6939                 if (unlikely(rx_std_posted >= tp->rx_std_max_post)) {
6940                         tpr->rx_std_prod_idx = std_prod_idx &
6941                                                tp->rx_std_ring_mask;
6942                         tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
6943                                      tpr->rx_std_prod_idx);
6944                         work_mask &= ~RXD_OPAQUE_RING_STD;
6945                         rx_std_posted = 0;
6946                 }
6947 next_pkt_nopost:
6948                 sw_idx++;
6949                 sw_idx &= tp->rx_ret_ring_mask;
6950
6951                 /* Refresh hw_idx to see if there is new work */
6952                 if (sw_idx == hw_idx) {
6953                         hw_idx = *(tnapi->rx_rcb_prod_idx);
6954                         rmb();
6955                 }
6956         }
6957
6958         /* ACK the status ring. */
6959         tnapi->rx_rcb_ptr = sw_idx;
6960         tw32_rx_mbox(tnapi->consmbox, sw_idx);
6961
6962         /* Refill RX ring(s). */
6963         if (!tg3_flag(tp, ENABLE_RSS)) {
6964                 /* Sync BD data before updating mailbox */
6965                 wmb();
6966
6967                 if (work_mask & RXD_OPAQUE_RING_STD) {
6968                         tpr->rx_std_prod_idx = std_prod_idx &
6969                                                tp->rx_std_ring_mask;
6970                         tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
6971                                      tpr->rx_std_prod_idx);
6972                 }
6973                 if (work_mask & RXD_OPAQUE_RING_JUMBO) {
6974                         tpr->rx_jmb_prod_idx = jmb_prod_idx &
6975                                                tp->rx_jmb_ring_mask;
6976                         tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG,
6977                                      tpr->rx_jmb_prod_idx);
6978                 }
6979                 mmiowb();
6980         } else if (work_mask) {
6981                 /* rx_std_buffers[] and rx_jmb_buffers[] entries must be
6982                  * updated before the producer indices can be updated.
6983                  */
6984                 smp_wmb();
6985
6986                 tpr->rx_std_prod_idx = std_prod_idx & tp->rx_std_ring_mask;
6987                 tpr->rx_jmb_prod_idx = jmb_prod_idx & tp->rx_jmb_ring_mask;
6988
6989                 if (tnapi != &tp->napi[1]) {
6990                         tp->rx_refill = true;
6991                         napi_schedule(&tp->napi[1].napi);
6992                 }
6993         }
6994
6995         return received;
6996 }
6997
6998 static void tg3_poll_link(struct tg3 *tp)
6999 {
7000         /* handle link change and other phy events */
7001         if (!(tg3_flag(tp, USE_LINKCHG_REG) || tg3_flag(tp, POLL_SERDES))) {
7002                 struct tg3_hw_status *sblk = tp->napi[0].hw_status;
7003
7004                 if (sblk->status & SD_STATUS_LINK_CHG) {
7005                         sblk->status = SD_STATUS_UPDATED |
7006                                        (sblk->status & ~SD_STATUS_LINK_CHG);
7007                         spin_lock(&tp->lock);
7008                         if (tg3_flag(tp, USE_PHYLIB)) {
7009                                 tw32_f(MAC_STATUS,
7010                                      (MAC_STATUS_SYNC_CHANGED |
7011                                       MAC_STATUS_CFG_CHANGED |
7012                                       MAC_STATUS_MI_COMPLETION |
7013                                       MAC_STATUS_LNKSTATE_CHANGED));
7014                                 udelay(40);
7015                         } else
7016                                 tg3_setup_phy(tp, false);
7017                         spin_unlock(&tp->lock);
7018                 }
7019         }
7020 }
7021
7022 static int tg3_rx_prodring_xfer(struct tg3 *tp,
7023                                 struct tg3_rx_prodring_set *dpr,
7024                                 struct tg3_rx_prodring_set *spr)
7025 {
7026         u32 si, di, cpycnt, src_prod_idx;
7027         int i, err = 0;
7028
7029         while (1) {
7030                 src_prod_idx = spr->rx_std_prod_idx;
7031
7032                 /* Make sure updates to the rx_std_buffers[] entries and the
7033                  * standard producer index are seen in the correct order.
7034                  */
7035                 smp_rmb();
7036
7037                 if (spr->rx_std_cons_idx == src_prod_idx)
7038                         break;
7039
7040                 if (spr->rx_std_cons_idx < src_prod_idx)
7041                         cpycnt = src_prod_idx - spr->rx_std_cons_idx;
7042                 else
7043                         cpycnt = tp->rx_std_ring_mask + 1 -
7044                                  spr->rx_std_cons_idx;
7045
7046                 cpycnt = min(cpycnt,
7047                              tp->rx_std_ring_mask + 1 - dpr->rx_std_prod_idx);
7048
7049                 si = spr->rx_std_cons_idx;
7050                 di = dpr->rx_std_prod_idx;
7051
7052                 for (i = di; i < di + cpycnt; i++) {
7053                         if (dpr->rx_std_buffers[i].data) {
7054                                 cpycnt = i - di;
7055                                 err = -ENOSPC;
7056                                 break;
7057                         }
7058                 }
7059
7060                 if (!cpycnt)
7061                         break;
7062
7063                 /* Ensure that updates to the rx_std_buffers ring and the
7064                  * shadowed hardware producer ring from tg3_recycle_skb() are
7065                  * ordered correctly WRT the skb check above.
7066                  */
7067                 smp_rmb();
7068
7069                 memcpy(&dpr->rx_std_buffers[di],
7070                        &spr->rx_std_buffers[si],
7071                        cpycnt * sizeof(struct ring_info));
7072
7073                 for (i = 0; i < cpycnt; i++, di++, si++) {
7074                         struct tg3_rx_buffer_desc *sbd, *dbd;
7075                         sbd = &spr->rx_std[si];
7076                         dbd = &dpr->rx_std[di];
7077                         dbd->addr_hi = sbd->addr_hi;
7078                         dbd->addr_lo = sbd->addr_lo;
7079                 }
7080
7081                 spr->rx_std_cons_idx = (spr->rx_std_cons_idx + cpycnt) &
7082                                        tp->rx_std_ring_mask;
7083                 dpr->rx_std_prod_idx = (dpr->rx_std_prod_idx + cpycnt) &
7084                                        tp->rx_std_ring_mask;
7085         }
7086
7087         while (1) {
7088                 src_prod_idx = spr->rx_jmb_prod_idx;
7089
7090                 /* Make sure updates to the rx_jmb_buffers[] entries and
7091                  * the jumbo producer index are seen in the correct order.
7092                  */
7093                 smp_rmb();
7094
7095                 if (spr->rx_jmb_cons_idx == src_prod_idx)
7096                         break;
7097
7098                 if (spr->rx_jmb_cons_idx < src_prod_idx)
7099                         cpycnt = src_prod_idx - spr->rx_jmb_cons_idx;
7100                 else
7101                         cpycnt = tp->rx_jmb_ring_mask + 1 -
7102                                  spr->rx_jmb_cons_idx;
7103
7104                 cpycnt = min(cpycnt,
7105                              tp->rx_jmb_ring_mask + 1 - dpr->rx_jmb_prod_idx);
7106
7107                 si = spr->rx_jmb_cons_idx;
7108                 di = dpr->rx_jmb_prod_idx;
7109
7110                 for (i = di; i < di + cpycnt; i++) {
7111                         if (dpr->rx_jmb_buffers[i].data) {
7112                                 cpycnt = i - di;
7113                                 err = -ENOSPC;
7114                                 break;
7115                         }
7116                 }
7117
7118                 if (!cpycnt)
7119                         break;
7120
7121                 /* Ensure that updates to the rx_jmb_buffers ring and the
7122                  * shadowed hardware producer ring from tg3_recycle_skb() are
7123                  * ordered correctly WRT the skb check above.
7124                  */
7125                 smp_rmb();
7126
7127                 memcpy(&dpr->rx_jmb_buffers[di],
7128                        &spr->rx_jmb_buffers[si],
7129                        cpycnt * sizeof(struct ring_info));
7130
7131                 for (i = 0; i < cpycnt; i++, di++, si++) {
7132                         struct tg3_rx_buffer_desc *sbd, *dbd;
7133                         sbd = &spr->rx_jmb[si].std;
7134                         dbd = &dpr->rx_jmb[di].std;
7135                         dbd->addr_hi = sbd->addr_hi;
7136                         dbd->addr_lo = sbd->addr_lo;
7137                 }
7138
7139                 spr->rx_jmb_cons_idx = (spr->rx_jmb_cons_idx + cpycnt) &
7140                                        tp->rx_jmb_ring_mask;
7141                 dpr->rx_jmb_prod_idx = (dpr->rx_jmb_prod_idx + cpycnt) &
7142                                        tp->rx_jmb_ring_mask;
7143         }
7144
7145         return err;
7146 }
7147
7148 static int tg3_poll_work(struct tg3_napi *tnapi, int work_done, int budget)
7149 {
7150         struct tg3 *tp = tnapi->tp;
7151
7152         /* run TX completion thread */
7153         if (tnapi->hw_status->idx[0].tx_consumer != tnapi->tx_cons) {
7154                 tg3_tx(tnapi);
7155                 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
7156                         return work_done;
7157         }
7158
7159         if (!tnapi->rx_rcb_prod_idx)
7160                 return work_done;
7161
7162         /* run RX thread, within the bounds set by NAPI.
7163          * All RX "locking" is done by ensuring outside
7164          * code synchronizes with tg3->napi.poll()
7165          */
7166         if (*(tnapi->rx_rcb_prod_idx) != tnapi->rx_rcb_ptr)
7167                 work_done += tg3_rx(tnapi, budget - work_done);
7168
7169         if (tg3_flag(tp, ENABLE_RSS) && tnapi == &tp->napi[1]) {
7170                 struct tg3_rx_prodring_set *dpr = &tp->napi[0].prodring;
7171                 int i, err = 0;
7172                 u32 std_prod_idx = dpr->rx_std_prod_idx;
7173                 u32 jmb_prod_idx = dpr->rx_jmb_prod_idx;
7174
7175                 tp->rx_refill = false;
7176                 for (i = 1; i <= tp->rxq_cnt; i++)
7177                         err |= tg3_rx_prodring_xfer(tp, dpr,
7178                                                     &tp->napi[i].prodring);
7179
7180                 wmb();
7181
7182                 if (std_prod_idx != dpr->rx_std_prod_idx)
7183                         tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
7184                                      dpr->rx_std_prod_idx);
7185
7186                 if (jmb_prod_idx != dpr->rx_jmb_prod_idx)
7187                         tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG,
7188                                      dpr->rx_jmb_prod_idx);
7189
7190                 mmiowb();
7191
7192                 if (err)
7193                         tw32_f(HOSTCC_MODE, tp->coal_now);
7194         }
7195
7196         return work_done;
7197 }
7198
7199 static inline void tg3_reset_task_schedule(struct tg3 *tp)
7200 {
7201         if (!test_and_set_bit(TG3_FLAG_RESET_TASK_PENDING, tp->tg3_flags))
7202                 schedule_work(&tp->reset_task);
7203 }
7204
7205 static inline void tg3_reset_task_cancel(struct tg3 *tp)
7206 {
7207         cancel_work_sync(&tp->reset_task);
7208         tg3_flag_clear(tp, RESET_TASK_PENDING);
7209         tg3_flag_clear(tp, TX_RECOVERY_PENDING);
7210 }
7211
7212 static int tg3_poll_msix(struct napi_struct *napi, int budget)
7213 {
7214         struct tg3_napi *tnapi = container_of(napi, struct tg3_napi, napi);
7215         struct tg3 *tp = tnapi->tp;
7216         int work_done = 0;
7217         struct tg3_hw_status *sblk = tnapi->hw_status;
7218
7219         while (1) {
7220                 work_done = tg3_poll_work(tnapi, work_done, budget);
7221
7222                 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
7223                         goto tx_recovery;
7224
7225                 if (unlikely(work_done >= budget))
7226                         break;
7227
7228                 /* tp->last_tag is used in tg3_int_reenable() below
7229                  * to tell the hw how much work has been processed,
7230                  * so we must read it before checking for more work.
7231                  */
7232                 tnapi->last_tag = sblk->status_tag;
7233                 tnapi->last_irq_tag = tnapi->last_tag;
7234                 rmb();
7235
7236                 /* check for RX/TX work to do */
7237                 if (likely(sblk->idx[0].tx_consumer == tnapi->tx_cons &&
7238                            *(tnapi->rx_rcb_prod_idx) == tnapi->rx_rcb_ptr)) {
7239
7240                         /* This test here is not race free, but will reduce
7241                          * the number of interrupts by looping again.
7242                          */
7243                         if (tnapi == &tp->napi[1] && tp->rx_refill)
7244                                 continue;
7245
7246                         napi_complete(napi);
7247                         /* Reenable interrupts. */
7248                         tw32_mailbox(tnapi->int_mbox, tnapi->last_tag << 24);
7249
7250                         /* This test here is synchronized by napi_schedule()
7251                          * and napi_complete() to close the race condition.
7252                          */
7253                         if (unlikely(tnapi == &tp->napi[1] && tp->rx_refill)) {
7254                                 tw32(HOSTCC_MODE, tp->coalesce_mode |
7255                                                   HOSTCC_MODE_ENABLE |
7256                                                   tnapi->coal_now);
7257                         }
7258                         mmiowb();
7259                         break;
7260                 }
7261         }
7262
7263         return work_done;
7264
7265 tx_recovery:
7266         /* work_done is guaranteed to be less than budget. */
7267         napi_complete(napi);
7268         tg3_reset_task_schedule(tp);
7269         return work_done;
7270 }
7271
7272 static void tg3_process_error(struct tg3 *tp)
7273 {
7274         u32 val;
7275         bool real_error = false;
7276
7277         if (tg3_flag(tp, ERROR_PROCESSED))
7278                 return;
7279
7280         /* Check Flow Attention register */
7281         val = tr32(HOSTCC_FLOW_ATTN);
7282         if (val & ~HOSTCC_FLOW_ATTN_MBUF_LWM) {
7283                 netdev_err(tp->dev, "FLOW Attention error.  Resetting chip.\n");
7284                 real_error = true;
7285         }
7286
7287         if (tr32(MSGINT_STATUS) & ~MSGINT_STATUS_MSI_REQ) {
7288                 netdev_err(tp->dev, "MSI Status error.  Resetting chip.\n");
7289                 real_error = true;
7290         }
7291
7292         if (tr32(RDMAC_STATUS) || tr32(WDMAC_STATUS)) {
7293                 netdev_err(tp->dev, "DMA Status error.  Resetting chip.\n");
7294                 real_error = true;
7295         }
7296
7297         if (!real_error)
7298                 return;
7299
7300         tg3_dump_state(tp);
7301
7302         tg3_flag_set(tp, ERROR_PROCESSED);
7303         tg3_reset_task_schedule(tp);
7304 }
7305
7306 static int tg3_poll(struct napi_struct *napi, int budget)
7307 {
7308         struct tg3_napi *tnapi = container_of(napi, struct tg3_napi, napi);
7309         struct tg3 *tp = tnapi->tp;
7310         int work_done = 0;
7311         struct tg3_hw_status *sblk = tnapi->hw_status;
7312
7313         while (1) {
7314                 if (sblk->status & SD_STATUS_ERROR)
7315                         tg3_process_error(tp);
7316
7317                 tg3_poll_link(tp);
7318
7319                 work_done = tg3_poll_work(tnapi, work_done, budget);
7320
7321                 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
7322                         goto tx_recovery;
7323
7324                 if (unlikely(work_done >= budget))
7325                         break;
7326
7327                 if (tg3_flag(tp, TAGGED_STATUS)) {
7328                         /* tp->last_tag is used in tg3_int_reenable() below
7329                          * to tell the hw how much work has been processed,
7330                          * so we must read it before checking for more work.
7331                          */
7332                         tnapi->last_tag = sblk->status_tag;
7333                         tnapi->last_irq_tag = tnapi->last_tag;
7334                         rmb();
7335                 } else
7336                         sblk->status &= ~SD_STATUS_UPDATED;
7337
7338                 if (likely(!tg3_has_work(tnapi))) {
7339                         napi_complete(napi);
7340                         tg3_int_reenable(tnapi);
7341                         break;
7342                 }
7343         }
7344
7345         return work_done;
7346
7347 tx_recovery:
7348         /* work_done is guaranteed to be less than budget. */
7349         napi_complete(napi);
7350         tg3_reset_task_schedule(tp);
7351         return work_done;
7352 }
7353
7354 static void tg3_napi_disable(struct tg3 *tp)
7355 {
7356         int i;
7357
7358         for (i = tp->irq_cnt - 1; i >= 0; i--)
7359                 napi_disable(&tp->napi[i].napi);
7360 }
7361
7362 static void tg3_napi_enable(struct tg3 *tp)
7363 {
7364         int i;
7365
7366         for (i = 0; i < tp->irq_cnt; i++)
7367                 napi_enable(&tp->napi[i].napi);
7368 }
7369
7370 static void tg3_napi_init(struct tg3 *tp)
7371 {
7372         int i;
7373
7374         netif_napi_add(tp->dev, &tp->napi[0].napi, tg3_poll, 64);
7375         for (i = 1; i < tp->irq_cnt; i++)
7376                 netif_napi_add(tp->dev, &tp->napi[i].napi, tg3_poll_msix, 64);
7377 }
7378
7379 static void tg3_napi_fini(struct tg3 *tp)
7380 {
7381         int i;
7382
7383         for (i = 0; i < tp->irq_cnt; i++)
7384                 netif_napi_del(&tp->napi[i].napi);
7385 }
7386
7387 static inline void tg3_netif_stop(struct tg3 *tp)
7388 {
7389         tp->dev->trans_start = jiffies; /* prevent tx timeout */
7390         tg3_napi_disable(tp);
7391         netif_carrier_off(tp->dev);
7392         netif_tx_disable(tp->dev);
7393 }
7394
7395 /* tp->lock must be held */
7396 static inline void tg3_netif_start(struct tg3 *tp)
7397 {
7398         tg3_ptp_resume(tp);
7399
7400         /* NOTE: unconditional netif_tx_wake_all_queues is only
7401          * appropriate so long as all callers are assured to
7402          * have free tx slots (such as after tg3_init_hw)
7403          */
7404         netif_tx_wake_all_queues(tp->dev);
7405
7406         if (tp->link_up)
7407                 netif_carrier_on(tp->dev);
7408
7409         tg3_napi_enable(tp);
7410         tp->napi[0].hw_status->status |= SD_STATUS_UPDATED;
7411         tg3_enable_ints(tp);
7412 }
7413
7414 static void tg3_irq_quiesce(struct tg3 *tp)
7415 {
7416         int i;
7417
7418         BUG_ON(tp->irq_sync);
7419
7420         tp->irq_sync = 1;
7421         smp_mb();
7422
7423         for (i = 0; i < tp->irq_cnt; i++)
7424                 synchronize_irq(tp->napi[i].irq_vec);
7425 }
7426
7427 /* Fully shutdown all tg3 driver activity elsewhere in the system.
7428  * If irq_sync is non-zero, then the IRQ handler must be synchronized
7429  * with as well.  Most of the time, this is not necessary except when
7430  * shutting down the device.
7431  */
7432 static inline void tg3_full_lock(struct tg3 *tp, int irq_sync)
7433 {
7434         spin_lock_bh(&tp->lock);
7435         if (irq_sync)
7436                 tg3_irq_quiesce(tp);
7437 }
7438
7439 static inline void tg3_full_unlock(struct tg3 *tp)
7440 {
7441         spin_unlock_bh(&tp->lock);
7442 }
7443
7444 /* One-shot MSI handler - Chip automatically disables interrupt
7445  * after sending MSI so driver doesn't have to do it.
7446  */
7447 static irqreturn_t tg3_msi_1shot(int irq, void *dev_id)
7448 {
7449         struct tg3_napi *tnapi = dev_id;
7450         struct tg3 *tp = tnapi->tp;
7451
7452         prefetch(tnapi->hw_status);
7453         if (tnapi->rx_rcb)
7454                 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
7455
7456         if (likely(!tg3_irq_sync(tp)))
7457                 napi_schedule(&tnapi->napi);
7458
7459         return IRQ_HANDLED;
7460 }
7461
7462 /* MSI ISR - No need to check for interrupt sharing and no need to
7463  * flush status block and interrupt mailbox. PCI ordering rules
7464  * guarantee that MSI will arrive after the status block.
7465  */
7466 static irqreturn_t tg3_msi(int irq, void *dev_id)
7467 {
7468         struct tg3_napi *tnapi = dev_id;
7469         struct tg3 *tp = tnapi->tp;
7470
7471         prefetch(tnapi->hw_status);
7472         if (tnapi->rx_rcb)
7473                 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
7474         /*
7475          * Writing any value to intr-mbox-0 clears PCI INTA# and
7476          * chip-internal interrupt pending events.
7477          * Writing non-zero to intr-mbox-0 additional tells the
7478          * NIC to stop sending us irqs, engaging "in-intr-handler"
7479          * event coalescing.
7480          */
7481         tw32_mailbox(tnapi->int_mbox, 0x00000001);
7482         if (likely(!tg3_irq_sync(tp)))
7483                 napi_schedule(&tnapi->napi);
7484
7485         return IRQ_RETVAL(1);
7486 }
7487
7488 static irqreturn_t tg3_interrupt(int irq, void *dev_id)
7489 {
7490         struct tg3_napi *tnapi = dev_id;
7491         struct tg3 *tp = tnapi->tp;
7492         struct tg3_hw_status *sblk = tnapi->hw_status;
7493         unsigned int handled = 1;
7494
7495         /* In INTx mode, it is possible for the interrupt to arrive at
7496          * the CPU before the status block posted prior to the interrupt.
7497          * Reading the PCI State register will confirm whether the
7498          * interrupt is ours and will flush the status block.
7499          */
7500         if (unlikely(!(sblk->status & SD_STATUS_UPDATED))) {
7501                 if (tg3_flag(tp, CHIP_RESETTING) ||
7502                     (tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
7503                         handled = 0;
7504                         goto out;
7505                 }
7506         }
7507
7508         /*
7509          * Writing any value to intr-mbox-0 clears PCI INTA# and
7510          * chip-internal interrupt pending events.
7511          * Writing non-zero to intr-mbox-0 additional tells the
7512          * NIC to stop sending us irqs, engaging "in-intr-handler"
7513          * event coalescing.
7514          *
7515          * Flush the mailbox to de-assert the IRQ immediately to prevent
7516          * spurious interrupts.  The flush impacts performance but
7517          * excessive spurious interrupts can be worse in some cases.
7518          */
7519         tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW, 0x00000001);
7520         if (tg3_irq_sync(tp))
7521                 goto out;
7522         sblk->status &= ~SD_STATUS_UPDATED;
7523         if (likely(tg3_has_work(tnapi))) {
7524                 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
7525                 napi_schedule(&tnapi->napi);
7526         } else {
7527                 /* No work, shared interrupt perhaps?  re-enable
7528                  * interrupts, and flush that PCI write
7529                  */
7530                 tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW,
7531                                0x00000000);
7532         }
7533 out:
7534         return IRQ_RETVAL(handled);
7535 }
7536
7537 static irqreturn_t tg3_interrupt_tagged(int irq, void *dev_id)
7538 {
7539         struct tg3_napi *tnapi = dev_id;
7540         struct tg3 *tp = tnapi->tp;
7541         struct tg3_hw_status *sblk = tnapi->hw_status;
7542         unsigned int handled = 1;
7543
7544         /* In INTx mode, it is possible for the interrupt to arrive at
7545          * the CPU before the status block posted prior to the interrupt.
7546          * Reading the PCI State register will confirm whether the
7547          * interrupt is ours and will flush the status block.
7548          */
7549         if (unlikely(sblk->status_tag == tnapi->last_irq_tag)) {
7550                 if (tg3_flag(tp, CHIP_RESETTING) ||
7551                     (tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
7552                         handled = 0;
7553                         goto out;
7554                 }
7555         }
7556
7557         /*
7558          * writing any value to intr-mbox-0 clears PCI INTA# and
7559          * chip-internal interrupt pending events.
7560          * writing non-zero to intr-mbox-0 additional tells the
7561          * NIC to stop sending us irqs, engaging "in-intr-handler"
7562          * event coalescing.
7563          *
7564          * Flush the mailbox to de-assert the IRQ immediately to prevent
7565          * spurious interrupts.  The flush impacts performance but
7566          * excessive spurious interrupts can be worse in some cases.
7567          */
7568         tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW, 0x00000001);
7569
7570         /*
7571          * In a shared interrupt configuration, sometimes other devices'
7572          * interrupts will scream.  We record the current status tag here
7573          * so that the above check can report that the screaming interrupts
7574          * are unhandled.  Eventually they will be silenced.
7575          */
7576         tnapi->last_irq_tag = sblk->status_tag;
7577
7578         if (tg3_irq_sync(tp))
7579                 goto out;
7580
7581         prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
7582
7583         napi_schedule(&tnapi->napi);
7584
7585 out:
7586         return IRQ_RETVAL(handled);
7587 }
7588
7589 /* ISR for interrupt test */
7590 static irqreturn_t tg3_test_isr(int irq, void *dev_id)
7591 {
7592         struct tg3_napi *tnapi = dev_id;
7593         struct tg3 *tp = tnapi->tp;
7594         struct tg3_hw_status *sblk = tnapi->hw_status;
7595
7596         if ((sblk->status & SD_STATUS_UPDATED) ||
7597             !(tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
7598                 tg3_disable_ints(tp);
7599                 return IRQ_RETVAL(1);
7600         }
7601         return IRQ_RETVAL(0);
7602 }
7603
7604 #ifdef CONFIG_NET_POLL_CONTROLLER
7605 static void tg3_poll_controller(struct net_device *dev)
7606 {
7607         int i;
7608         struct tg3 *tp = netdev_priv(dev);
7609
7610         if (tg3_irq_sync(tp))
7611                 return;
7612
7613         for (i = 0; i < tp->irq_cnt; i++)
7614                 tg3_interrupt(tp->napi[i].irq_vec, &tp->napi[i]);
7615 }
7616 #endif
7617
7618 static void tg3_tx_timeout(struct net_device *dev)
7619 {
7620         struct tg3 *tp = netdev_priv(dev);
7621
7622         if (netif_msg_tx_err(tp)) {
7623                 netdev_err(dev, "transmit timed out, resetting\n");
7624                 tg3_dump_state(tp);
7625         }
7626
7627         tg3_reset_task_schedule(tp);
7628 }
7629
7630 /* Test for DMA buffers crossing any 4GB boundaries: 4G, 8G, etc */
7631 static inline int tg3_4g_overflow_test(dma_addr_t mapping, int len)
7632 {
7633         u32 base = (u32) mapping & 0xffffffff;
7634
7635         return base + len + 8 < base;
7636 }
7637
7638 /* Test for TSO DMA buffers that cross into regions which are within MSS bytes
7639  * of any 4GB boundaries: 4G, 8G, etc
7640  */
7641 static inline int tg3_4g_tso_overflow_test(struct tg3 *tp, dma_addr_t mapping,
7642                                            u32 len, u32 mss)
7643 {
7644         if (tg3_asic_rev(tp) == ASIC_REV_5762 && mss) {
7645                 u32 base = (u32) mapping & 0xffffffff;
7646
7647                 return ((base + len + (mss & 0x3fff)) < base);
7648         }
7649         return 0;
7650 }
7651
7652 /* Test for DMA addresses > 40-bit */
7653 static inline int tg3_40bit_overflow_test(struct tg3 *tp, dma_addr_t mapping,
7654                                           int len)
7655 {
7656 #if defined(CONFIG_HIGHMEM) && (BITS_PER_LONG == 64)
7657         if (tg3_flag(tp, 40BIT_DMA_BUG))
7658                 return ((u64) mapping + len) > DMA_BIT_MASK(40);
7659         return 0;
7660 #else
7661         return 0;
7662 #endif
7663 }
7664
7665 static inline void tg3_tx_set_bd(struct tg3_tx_buffer_desc *txbd,
7666                                  dma_addr_t mapping, u32 len, u32 flags,
7667                                  u32 mss, u32 vlan)
7668 {
7669         txbd->addr_hi = ((u64) mapping >> 32);
7670         txbd->addr_lo = ((u64) mapping & 0xffffffff);
7671         txbd->len_flags = (len << TXD_LEN_SHIFT) | (flags & 0x0000ffff);
7672         txbd->vlan_tag = (mss << TXD_MSS_SHIFT) | (vlan << TXD_VLAN_TAG_SHIFT);
7673 }
7674
7675 static bool tg3_tx_frag_set(struct tg3_napi *tnapi, u32 *entry, u32 *budget,
7676                             dma_addr_t map, u32 len, u32 flags,
7677                             u32 mss, u32 vlan)
7678 {
7679         struct tg3 *tp = tnapi->tp;
7680         bool hwbug = false;
7681
7682         if (tg3_flag(tp, SHORT_DMA_BUG) && len <= 8)
7683                 hwbug = true;
7684
7685         if (tg3_4g_overflow_test(map, len))
7686                 hwbug = true;
7687
7688         if (tg3_4g_tso_overflow_test(tp, map, len, mss))
7689                 hwbug = true;
7690
7691         if (tg3_40bit_overflow_test(tp, map, len))
7692                 hwbug = true;
7693
7694         if (tp->dma_limit) {
7695                 u32 prvidx = *entry;
7696                 u32 tmp_flag = flags & ~TXD_FLAG_END;
7697                 while (len > tp->dma_limit && *budget) {
7698                         u32 frag_len = tp->dma_limit;
7699                         len -= tp->dma_limit;
7700
7701                         /* Avoid the 8byte DMA problem */
7702                         if (len <= 8) {
7703                                 len += tp->dma_limit / 2;
7704                                 frag_len = tp->dma_limit / 2;
7705                         }
7706
7707                         tnapi->tx_buffers[*entry].fragmented = true;
7708
7709                         tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
7710                                       frag_len, tmp_flag, mss, vlan);
7711                         *budget -= 1;
7712                         prvidx = *entry;
7713                         *entry = NEXT_TX(*entry);
7714
7715                         map += frag_len;
7716                 }
7717
7718                 if (len) {
7719                         if (*budget) {
7720                                 tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
7721                                               len, flags, mss, vlan);
7722                                 *budget -= 1;
7723                                 *entry = NEXT_TX(*entry);
7724                         } else {
7725                                 hwbug = true;
7726                                 tnapi->tx_buffers[prvidx].fragmented = false;
7727                         }
7728                 }
7729         } else {
7730                 tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
7731                               len, flags, mss, vlan);
7732                 *entry = NEXT_TX(*entry);
7733         }
7734
7735         return hwbug;
7736 }
7737
7738 static void tg3_tx_skb_unmap(struct tg3_napi *tnapi, u32 entry, int last)
7739 {
7740         int i;
7741         struct sk_buff *skb;
7742         struct tg3_tx_ring_info *txb = &tnapi->tx_buffers[entry];
7743
7744         skb = txb->skb;
7745         txb->skb = NULL;
7746
7747         pci_unmap_single(tnapi->tp->pdev,
7748                          dma_unmap_addr(txb, mapping),
7749                          skb_headlen(skb),
7750                          PCI_DMA_TODEVICE);
7751
7752         while (txb->fragmented) {
7753                 txb->fragmented = false;
7754                 entry = NEXT_TX(entry);
7755                 txb = &tnapi->tx_buffers[entry];
7756         }
7757
7758         for (i = 0; i <= last; i++) {
7759                 const skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
7760
7761                 entry = NEXT_TX(entry);
7762                 txb = &tnapi->tx_buffers[entry];
7763
7764                 pci_unmap_page(tnapi->tp->pdev,
7765                                dma_unmap_addr(txb, mapping),
7766                                skb_frag_size(frag), PCI_DMA_TODEVICE);
7767
7768                 while (txb->fragmented) {
7769                         txb->fragmented = false;
7770                         entry = NEXT_TX(entry);
7771                         txb = &tnapi->tx_buffers[entry];
7772                 }
7773         }
7774 }
7775
7776 /* Workaround 4GB and 40-bit hardware DMA bugs. */
7777 static int tigon3_dma_hwbug_workaround(struct tg3_napi *tnapi,
7778                                        struct sk_buff **pskb,
7779                                        u32 *entry, u32 *budget,
7780                                        u32 base_flags, u32 mss, u32 vlan)
7781 {
7782         struct tg3 *tp = tnapi->tp;
7783         struct sk_buff *new_skb, *skb = *pskb;
7784         dma_addr_t new_addr = 0;
7785         int ret = 0;
7786
7787         if (tg3_asic_rev(tp) != ASIC_REV_5701)
7788                 new_skb = skb_copy(skb, GFP_ATOMIC);
7789         else {
7790                 int more_headroom = 4 - ((unsigned long)skb->data & 3);
7791
7792                 new_skb = skb_copy_expand(skb,
7793                                           skb_headroom(skb) + more_headroom,
7794                                           skb_tailroom(skb), GFP_ATOMIC);
7795         }
7796
7797         if (!new_skb) {
7798                 ret = -1;
7799         } else {
7800                 /* New SKB is guaranteed to be linear. */
7801                 new_addr = pci_map_single(tp->pdev, new_skb->data, new_skb->len,
7802                                           PCI_DMA_TODEVICE);
7803                 /* Make sure the mapping succeeded */
7804                 if (pci_dma_mapping_error(tp->pdev, new_addr)) {
7805                         dev_kfree_skb_any(new_skb);
7806                         ret = -1;
7807                 } else {
7808                         u32 save_entry = *entry;
7809
7810                         base_flags |= TXD_FLAG_END;
7811
7812                         tnapi->tx_buffers[*entry].skb = new_skb;
7813                         dma_unmap_addr_set(&tnapi->tx_buffers[*entry],
7814                                            mapping, new_addr);
7815
7816                         if (tg3_tx_frag_set(tnapi, entry, budget, new_addr,
7817                                             new_skb->len, base_flags,
7818                                             mss, vlan)) {
7819                                 tg3_tx_skb_unmap(tnapi, save_entry, -1);
7820                                 dev_kfree_skb_any(new_skb);
7821                                 ret = -1;
7822                         }
7823                 }
7824         }
7825
7826         dev_kfree_skb_any(skb);
7827         *pskb = new_skb;
7828         return ret;
7829 }
7830
7831 static netdev_tx_t tg3_start_xmit(struct sk_buff *, struct net_device *);
7832
7833 /* Use GSO to workaround all TSO packets that meet HW bug conditions
7834  * indicated in tg3_tx_frag_set()
7835  */
7836 static int tg3_tso_bug(struct tg3 *tp, struct tg3_napi *tnapi,
7837                        struct netdev_queue *txq, struct sk_buff *skb)
7838 {
7839         struct sk_buff *segs, *nskb;
7840         u32 frag_cnt_est = skb_shinfo(skb)->gso_segs * 3;
7841
7842         /* Estimate the number of fragments in the worst case */
7843         if (unlikely(tg3_tx_avail(tnapi) <= frag_cnt_est)) {
7844                 netif_tx_stop_queue(txq);
7845
7846                 /* netif_tx_stop_queue() must be done before checking
7847                  * checking tx index in tg3_tx_avail() below, because in
7848                  * tg3_tx(), we update tx index before checking for
7849                  * netif_tx_queue_stopped().
7850                  */
7851                 smp_mb();
7852                 if (tg3_tx_avail(tnapi) <= frag_cnt_est)
7853                         return NETDEV_TX_BUSY;
7854
7855                 netif_tx_wake_queue(txq);
7856         }
7857
7858         segs = skb_gso_segment(skb, tp->dev->features &
7859                                     ~(NETIF_F_TSO | NETIF_F_TSO6));
7860         if (IS_ERR(segs) || !segs)
7861                 goto tg3_tso_bug_end;
7862
7863         do {
7864                 nskb = segs;
7865                 segs = segs->next;
7866                 nskb->next = NULL;
7867                 tg3_start_xmit(nskb, tp->dev);
7868         } while (segs);
7869
7870 tg3_tso_bug_end:
7871         dev_kfree_skb_any(skb);
7872
7873         return NETDEV_TX_OK;
7874 }
7875
7876 /* hard_start_xmit for all devices */
7877 static netdev_tx_t tg3_start_xmit(struct sk_buff *skb, struct net_device *dev)
7878 {
7879         struct tg3 *tp = netdev_priv(dev);
7880         u32 len, entry, base_flags, mss, vlan = 0;
7881         u32 budget;
7882         int i = -1, would_hit_hwbug;
7883         dma_addr_t mapping;
7884         struct tg3_napi *tnapi;
7885         struct netdev_queue *txq;
7886         unsigned int last;
7887         struct iphdr *iph = NULL;
7888         struct tcphdr *tcph = NULL;
7889         __sum16 tcp_csum = 0, ip_csum = 0;
7890         __be16 ip_tot_len = 0;
7891
7892         txq = netdev_get_tx_queue(dev, skb_get_queue_mapping(skb));
7893         tnapi = &tp->napi[skb_get_queue_mapping(skb)];
7894         if (tg3_flag(tp, ENABLE_TSS))
7895                 tnapi++;
7896
7897         budget = tg3_tx_avail(tnapi);
7898
7899         /* We are running in BH disabled context with netif_tx_lock
7900          * and TX reclaim runs via tp->napi.poll inside of a software
7901          * interrupt.  Furthermore, IRQ processing runs lockless so we have
7902          * no IRQ context deadlocks to worry about either.  Rejoice!
7903          */
7904         if (unlikely(budget <= (skb_shinfo(skb)->nr_frags + 1))) {
7905                 if (!netif_tx_queue_stopped(txq)) {
7906                         netif_tx_stop_queue(txq);
7907
7908                         /* This is a hard error, log it. */
7909                         netdev_err(dev,
7910                                    "BUG! Tx Ring full when queue awake!\n");
7911                 }
7912                 return NETDEV_TX_BUSY;
7913         }
7914
7915         entry = tnapi->tx_prod;
7916         base_flags = 0;
7917         if (skb->ip_summed == CHECKSUM_PARTIAL)
7918                 base_flags |= TXD_FLAG_TCPUDP_CSUM;
7919
7920         mss = skb_shinfo(skb)->gso_size;
7921         if (mss) {
7922                 u32 tcp_opt_len, hdr_len;
7923
7924                 if (skb_cow_head(skb, 0))
7925                         goto drop;
7926
7927                 iph = ip_hdr(skb);
7928                 tcp_opt_len = tcp_optlen(skb);
7929
7930                 hdr_len = skb_transport_offset(skb) + tcp_hdrlen(skb) - ETH_HLEN;
7931
7932                 if (!skb_is_gso_v6(skb)) {
7933                         if (unlikely((ETH_HLEN + hdr_len) > 80) &&
7934                             tg3_flag(tp, TSO_BUG))
7935                                 return tg3_tso_bug(tp, tnapi, txq, skb);
7936
7937                         ip_csum = iph->check;
7938                         ip_tot_len = iph->tot_len;
7939                         iph->check = 0;
7940                         iph->tot_len = htons(mss + hdr_len);
7941                 }
7942
7943                 base_flags |= (TXD_FLAG_CPU_PRE_DMA |
7944                                TXD_FLAG_CPU_POST_DMA);
7945
7946                 tcph = tcp_hdr(skb);
7947                 tcp_csum = tcph->check;
7948
7949                 if (tg3_flag(tp, HW_TSO_1) ||
7950                     tg3_flag(tp, HW_TSO_2) ||
7951                     tg3_flag(tp, HW_TSO_3)) {
7952                         tcph->check = 0;
7953                         base_flags &= ~TXD_FLAG_TCPUDP_CSUM;
7954                 } else {
7955                         tcph->check = ~csum_tcpudp_magic(iph->saddr, iph->daddr,
7956                                                          0, IPPROTO_TCP, 0);
7957                 }
7958
7959                 if (tg3_flag(tp, HW_TSO_3)) {
7960                         mss |= (hdr_len & 0xc) << 12;
7961                         if (hdr_len & 0x10)
7962                                 base_flags |= 0x00000010;
7963                         base_flags |= (hdr_len & 0x3e0) << 5;
7964                 } else if (tg3_flag(tp, HW_TSO_2))
7965                         mss |= hdr_len << 9;
7966                 else if (tg3_flag(tp, HW_TSO_1) ||
7967                          tg3_asic_rev(tp) == ASIC_REV_5705) {
7968                         if (tcp_opt_len || iph->ihl > 5) {
7969                                 int tsflags;
7970
7971                                 tsflags = (iph->ihl - 5) + (tcp_opt_len >> 2);
7972                                 mss |= (tsflags << 11);
7973                         }
7974                 } else {
7975                         if (tcp_opt_len || iph->ihl > 5) {
7976                                 int tsflags;
7977
7978                                 tsflags = (iph->ihl - 5) + (tcp_opt_len >> 2);
7979                                 base_flags |= tsflags << 12;
7980                         }
7981                 }
7982         }
7983
7984         if (tg3_flag(tp, USE_JUMBO_BDFLAG) &&
7985             !mss && skb->len > VLAN_ETH_FRAME_LEN)
7986                 base_flags |= TXD_FLAG_JMB_PKT;
7987
7988         if (vlan_tx_tag_present(skb)) {
7989                 base_flags |= TXD_FLAG_VLAN;
7990                 vlan = vlan_tx_tag_get(skb);
7991         }
7992
7993         if ((unlikely(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP)) &&
7994             tg3_flag(tp, TX_TSTAMP_EN)) {
7995                 skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
7996                 base_flags |= TXD_FLAG_HWTSTAMP;
7997         }
7998
7999         len = skb_headlen(skb);
8000
8001         mapping = pci_map_single(tp->pdev, skb->data, len, PCI_DMA_TODEVICE);
8002         if (pci_dma_mapping_error(tp->pdev, mapping))
8003                 goto drop;
8004
8005
8006         tnapi->tx_buffers[entry].skb = skb;
8007         dma_unmap_addr_set(&tnapi->tx_buffers[entry], mapping, mapping);
8008
8009         would_hit_hwbug = 0;
8010
8011         if (tg3_flag(tp, 5701_DMA_BUG))
8012                 would_hit_hwbug = 1;
8013
8014         if (tg3_tx_frag_set(tnapi, &entry, &budget, mapping, len, base_flags |
8015                           ((skb_shinfo(skb)->nr_frags == 0) ? TXD_FLAG_END : 0),
8016                             mss, vlan)) {
8017                 would_hit_hwbug = 1;
8018         } else if (skb_shinfo(skb)->nr_frags > 0) {
8019                 u32 tmp_mss = mss;
8020
8021                 if (!tg3_flag(tp, HW_TSO_1) &&
8022                     !tg3_flag(tp, HW_TSO_2) &&
8023                     !tg3_flag(tp, HW_TSO_3))
8024                         tmp_mss = 0;
8025
8026                 /* Now loop through additional data
8027                  * fragments, and queue them.
8028                  */
8029                 last = skb_shinfo(skb)->nr_frags - 1;
8030                 for (i = 0; i <= last; i++) {
8031                         skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
8032
8033                         len = skb_frag_size(frag);
8034                         mapping = skb_frag_dma_map(&tp->pdev->dev, frag, 0,
8035                                                    len, DMA_TO_DEVICE);
8036
8037                         tnapi->tx_buffers[entry].skb = NULL;
8038                         dma_unmap_addr_set(&tnapi->tx_buffers[entry], mapping,
8039                                            mapping);
8040                         if (dma_mapping_error(&tp->pdev->dev, mapping))
8041                                 goto dma_error;
8042
8043                         if (!budget ||
8044                             tg3_tx_frag_set(tnapi, &entry, &budget, mapping,
8045                                             len, base_flags |
8046                                             ((i == last) ? TXD_FLAG_END : 0),
8047                                             tmp_mss, vlan)) {
8048                                 would_hit_hwbug = 1;
8049                                 break;
8050                         }
8051                 }
8052         }
8053
8054         if (would_hit_hwbug) {
8055                 tg3_tx_skb_unmap(tnapi, tnapi->tx_prod, i);
8056
8057                 if (mss) {
8058                         /* If it's a TSO packet, do GSO instead of
8059                          * allocating and copying to a large linear SKB
8060                          */
8061                         if (ip_tot_len) {
8062                                 iph->check = ip_csum;
8063                                 iph->tot_len = ip_tot_len;
8064                         }
8065                         tcph->check = tcp_csum;
8066                         return tg3_tso_bug(tp, tnapi, txq, skb);
8067                 }
8068
8069                 /* If the workaround fails due to memory/mapping
8070                  * failure, silently drop this packet.
8071                  */
8072                 entry = tnapi->tx_prod;
8073                 budget = tg3_tx_avail(tnapi);
8074                 if (tigon3_dma_hwbug_workaround(tnapi, &skb, &entry, &budget,
8075                                                 base_flags, mss, vlan))
8076                         goto drop_nofree;
8077         }
8078
8079         skb_tx_timestamp(skb);
8080         netdev_tx_sent_queue(txq, skb->len);
8081
8082         /* Sync BD data before updating mailbox */
8083         wmb();
8084
8085         /* Packets are ready, update Tx producer idx local and on card. */
8086         tw32_tx_mbox(tnapi->prodmbox, entry);
8087
8088         tnapi->tx_prod = entry;
8089         if (unlikely(tg3_tx_avail(tnapi) <= (MAX_SKB_FRAGS + 1))) {
8090                 netif_tx_stop_queue(txq);
8091
8092                 /* netif_tx_stop_queue() must be done before checking
8093                  * checking tx index in tg3_tx_avail() below, because in
8094                  * tg3_tx(), we update tx index before checking for
8095                  * netif_tx_queue_stopped().
8096                  */
8097                 smp_mb();
8098                 if (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi))
8099                         netif_tx_wake_queue(txq);
8100         }
8101
8102         mmiowb();
8103         return NETDEV_TX_OK;
8104
8105 dma_error:
8106         tg3_tx_skb_unmap(tnapi, tnapi->tx_prod, --i);
8107         tnapi->tx_buffers[tnapi->tx_prod].skb = NULL;
8108 drop:
8109         dev_kfree_skb_any(skb);
8110 drop_nofree:
8111         tp->tx_dropped++;
8112         return NETDEV_TX_OK;
8113 }
8114
8115 static void tg3_mac_loopback(struct tg3 *tp, bool enable)
8116 {
8117         if (enable) {
8118                 tp->mac_mode &= ~(MAC_MODE_HALF_DUPLEX |
8119                                   MAC_MODE_PORT_MODE_MASK);
8120
8121                 tp->mac_mode |= MAC_MODE_PORT_INT_LPBACK;
8122
8123                 if (!tg3_flag(tp, 5705_PLUS))
8124                         tp->mac_mode |= MAC_MODE_LINK_POLARITY;
8125
8126                 if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
8127                         tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
8128                 else
8129                         tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
8130         } else {
8131                 tp->mac_mode &= ~MAC_MODE_PORT_INT_LPBACK;
8132
8133                 if (tg3_flag(tp, 5705_PLUS) ||
8134                     (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) ||
8135                     tg3_asic_rev(tp) == ASIC_REV_5700)
8136                         tp->mac_mode &= ~MAC_MODE_LINK_POLARITY;
8137         }
8138
8139         tw32(MAC_MODE, tp->mac_mode);
8140         udelay(40);
8141 }
8142
8143 static int tg3_phy_lpbk_set(struct tg3 *tp, u32 speed, bool extlpbk)
8144 {
8145         u32 val, bmcr, mac_mode, ptest = 0;
8146
8147         tg3_phy_toggle_apd(tp, false);
8148         tg3_phy_toggle_automdix(tp, false);
8149
8150         if (extlpbk && tg3_phy_set_extloopbk(tp))
8151                 return -EIO;
8152
8153         bmcr = BMCR_FULLDPLX;
8154         switch (speed) {
8155         case SPEED_10:
8156                 break;
8157         case SPEED_100:
8158                 bmcr |= BMCR_SPEED100;
8159                 break;
8160         case SPEED_1000:
8161         default:
8162                 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
8163                         speed = SPEED_100;
8164                         bmcr |= BMCR_SPEED100;
8165                 } else {
8166                         speed = SPEED_1000;
8167                         bmcr |= BMCR_SPEED1000;
8168                 }
8169         }
8170
8171         if (extlpbk) {
8172                 if (!(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
8173                         tg3_readphy(tp, MII_CTRL1000, &val);
8174                         val |= CTL1000_AS_MASTER |
8175                                CTL1000_ENABLE_MASTER;
8176                         tg3_writephy(tp, MII_CTRL1000, val);
8177                 } else {
8178                         ptest = MII_TG3_FET_PTEST_TRIM_SEL |
8179                                 MII_TG3_FET_PTEST_TRIM_2;
8180                         tg3_writephy(tp, MII_TG3_FET_PTEST, ptest);
8181                 }
8182         } else
8183                 bmcr |= BMCR_LOOPBACK;
8184
8185         tg3_writephy(tp, MII_BMCR, bmcr);
8186
8187         /* The write needs to be flushed for the FETs */
8188         if (tp->phy_flags & TG3_PHYFLG_IS_FET)
8189                 tg3_readphy(tp, MII_BMCR, &bmcr);
8190
8191         udelay(40);
8192
8193         if ((tp->phy_flags & TG3_PHYFLG_IS_FET) &&
8194             tg3_asic_rev(tp) == ASIC_REV_5785) {
8195                 tg3_writephy(tp, MII_TG3_FET_PTEST, ptest |
8196                              MII_TG3_FET_PTEST_FRC_TX_LINK |
8197                              MII_TG3_FET_PTEST_FRC_TX_LOCK);
8198
8199                 /* The write needs to be flushed for the AC131 */
8200                 tg3_readphy(tp, MII_TG3_FET_PTEST, &val);
8201         }
8202
8203         /* Reset to prevent losing 1st rx packet intermittently */
8204         if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
8205             tg3_flag(tp, 5780_CLASS)) {
8206                 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
8207                 udelay(10);
8208                 tw32_f(MAC_RX_MODE, tp->rx_mode);
8209         }
8210
8211         mac_mode = tp->mac_mode &
8212                    ~(MAC_MODE_PORT_MODE_MASK | MAC_MODE_HALF_DUPLEX);
8213         if (speed == SPEED_1000)
8214                 mac_mode |= MAC_MODE_PORT_MODE_GMII;
8215         else
8216                 mac_mode |= MAC_MODE_PORT_MODE_MII;
8217
8218         if (tg3_asic_rev(tp) == ASIC_REV_5700) {
8219                 u32 masked_phy_id = tp->phy_id & TG3_PHY_ID_MASK;
8220
8221                 if (masked_phy_id == TG3_PHY_ID_BCM5401)
8222                         mac_mode &= ~MAC_MODE_LINK_POLARITY;
8223                 else if (masked_phy_id == TG3_PHY_ID_BCM5411)
8224                         mac_mode |= MAC_MODE_LINK_POLARITY;
8225
8226                 tg3_writephy(tp, MII_TG3_EXT_CTRL,
8227                              MII_TG3_EXT_CTRL_LNK3_LED_MODE);
8228         }
8229
8230         tw32(MAC_MODE, mac_mode);
8231         udelay(40);
8232
8233         return 0;
8234 }
8235
8236 static void tg3_set_loopback(struct net_device *dev, netdev_features_t features)
8237 {
8238         struct tg3 *tp = netdev_priv(dev);
8239
8240         if (features & NETIF_F_LOOPBACK) {
8241                 if (tp->mac_mode & MAC_MODE_PORT_INT_LPBACK)
8242                         return;
8243
8244                 spin_lock_bh(&tp->lock);
8245                 tg3_mac_loopback(tp, true);
8246                 netif_carrier_on(tp->dev);
8247                 spin_unlock_bh(&tp->lock);
8248                 netdev_info(dev, "Internal MAC loopback mode enabled.\n");
8249         } else {
8250                 if (!(tp->mac_mode & MAC_MODE_PORT_INT_LPBACK))
8251                         return;
8252
8253                 spin_lock_bh(&tp->lock);
8254                 tg3_mac_loopback(tp, false);
8255                 /* Force link status check */
8256                 tg3_setup_phy(tp, true);
8257                 spin_unlock_bh(&tp->lock);
8258                 netdev_info(dev, "Internal MAC loopback mode disabled.\n");
8259         }
8260 }
8261
8262 static netdev_features_t tg3_fix_features(struct net_device *dev,
8263         netdev_features_t features)
8264 {
8265         struct tg3 *tp = netdev_priv(dev);
8266
8267         if (dev->mtu > ETH_DATA_LEN && tg3_flag(tp, 5780_CLASS))
8268                 features &= ~NETIF_F_ALL_TSO;
8269
8270         return features;
8271 }
8272
8273 static int tg3_set_features(struct net_device *dev, netdev_features_t features)
8274 {
8275         netdev_features_t changed = dev->features ^ features;
8276
8277         if ((changed & NETIF_F_LOOPBACK) && netif_running(dev))
8278                 tg3_set_loopback(dev, features);
8279
8280         return 0;
8281 }
8282
8283 static void tg3_rx_prodring_free(struct tg3 *tp,
8284                                  struct tg3_rx_prodring_set *tpr)
8285 {
8286         int i;
8287
8288         if (tpr != &tp->napi[0].prodring) {
8289                 for (i = tpr->rx_std_cons_idx; i != tpr->rx_std_prod_idx;
8290                      i = (i + 1) & tp->rx_std_ring_mask)
8291                         tg3_rx_data_free(tp, &tpr->rx_std_buffers[i],
8292                                         tp->rx_pkt_map_sz);
8293
8294                 if (tg3_flag(tp, JUMBO_CAPABLE)) {
8295                         for (i = tpr->rx_jmb_cons_idx;
8296                              i != tpr->rx_jmb_prod_idx;
8297                              i = (i + 1) & tp->rx_jmb_ring_mask) {
8298                                 tg3_rx_data_free(tp, &tpr->rx_jmb_buffers[i],
8299                                                 TG3_RX_JMB_MAP_SZ);
8300                         }
8301                 }
8302
8303                 return;
8304         }
8305
8306         for (i = 0; i <= tp->rx_std_ring_mask; i++)
8307                 tg3_rx_data_free(tp, &tpr->rx_std_buffers[i],
8308                                 tp->rx_pkt_map_sz);
8309
8310         if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS)) {
8311                 for (i = 0; i <= tp->rx_jmb_ring_mask; i++)
8312                         tg3_rx_data_free(tp, &tpr->rx_jmb_buffers[i],
8313                                         TG3_RX_JMB_MAP_SZ);
8314         }
8315 }
8316
8317 /* Initialize rx rings for packet processing.
8318  *
8319  * The chip has been shut down and the driver detached from
8320  * the networking, so no interrupts or new tx packets will
8321  * end up in the driver.  tp->{tx,}lock are held and thus
8322  * we may not sleep.
8323  */
8324 static int tg3_rx_prodring_alloc(struct tg3 *tp,
8325                                  struct tg3_rx_prodring_set *tpr)
8326 {
8327         u32 i, rx_pkt_dma_sz;
8328
8329         tpr->rx_std_cons_idx = 0;
8330         tpr->rx_std_prod_idx = 0;
8331         tpr->rx_jmb_cons_idx = 0;
8332         tpr->rx_jmb_prod_idx = 0;
8333
8334         if (tpr != &tp->napi[0].prodring) {
8335                 memset(&tpr->rx_std_buffers[0], 0,
8336                        TG3_RX_STD_BUFF_RING_SIZE(tp));
8337                 if (tpr->rx_jmb_buffers)
8338                         memset(&tpr->rx_jmb_buffers[0], 0,
8339                                TG3_RX_JMB_BUFF_RING_SIZE(tp));
8340                 goto done;
8341         }
8342
8343         /* Zero out all descriptors. */
8344         memset(tpr->rx_std, 0, TG3_RX_STD_RING_BYTES(tp));
8345
8346         rx_pkt_dma_sz = TG3_RX_STD_DMA_SZ;
8347         if (tg3_flag(tp, 5780_CLASS) &&
8348             tp->dev->mtu > ETH_DATA_LEN)
8349                 rx_pkt_dma_sz = TG3_RX_JMB_DMA_SZ;
8350         tp->rx_pkt_map_sz = TG3_RX_DMA_TO_MAP_SZ(rx_pkt_dma_sz);
8351
8352         /* Initialize invariants of the rings, we only set this
8353          * stuff once.  This works because the card does not
8354          * write into the rx buffer posting rings.
8355          */
8356         for (i = 0; i <= tp->rx_std_ring_mask; i++) {
8357                 struct tg3_rx_buffer_desc *rxd;
8358
8359                 rxd = &tpr->rx_std[i];
8360                 rxd->idx_len = rx_pkt_dma_sz << RXD_LEN_SHIFT;
8361                 rxd->type_flags = (RXD_FLAG_END << RXD_FLAGS_SHIFT);
8362                 rxd->opaque = (RXD_OPAQUE_RING_STD |
8363                                (i << RXD_OPAQUE_INDEX_SHIFT));
8364         }
8365
8366         /* Now allocate fresh SKBs for each rx ring. */
8367         for (i = 0; i < tp->rx_pending; i++) {
8368                 unsigned int frag_size;
8369
8370                 if (tg3_alloc_rx_data(tp, tpr, RXD_OPAQUE_RING_STD, i,
8371                                       &frag_size) < 0) {
8372                         netdev_warn(tp->dev,
8373                                     "Using a smaller RX standard ring. Only "
8374                                     "%d out of %d buffers were allocated "
8375                                     "successfully\n", i, tp->rx_pending);
8376                         if (i == 0)
8377                                 goto initfail;
8378                         tp->rx_pending = i;
8379                         break;
8380                 }
8381         }
8382
8383         if (!tg3_flag(tp, JUMBO_CAPABLE) || tg3_flag(tp, 5780_CLASS))
8384                 goto done;
8385
8386         memset(tpr->rx_jmb, 0, TG3_RX_JMB_RING_BYTES(tp));
8387
8388         if (!tg3_flag(tp, JUMBO_RING_ENABLE))
8389                 goto done;
8390
8391         for (i = 0; i <= tp->rx_jmb_ring_mask; i++) {
8392                 struct tg3_rx_buffer_desc *rxd;
8393
8394                 rxd = &tpr->rx_jmb[i].std;
8395                 rxd->idx_len = TG3_RX_JMB_DMA_SZ << RXD_LEN_SHIFT;
8396                 rxd->type_flags = (RXD_FLAG_END << RXD_FLAGS_SHIFT) |
8397                                   RXD_FLAG_JUMBO;
8398                 rxd->opaque = (RXD_OPAQUE_RING_JUMBO |
8399                        (i << RXD_OPAQUE_INDEX_SHIFT));
8400         }
8401
8402         for (i = 0; i < tp->rx_jumbo_pending; i++) {
8403                 unsigned int frag_size;
8404
8405                 if (tg3_alloc_rx_data(tp, tpr, RXD_OPAQUE_RING_JUMBO, i,
8406                                       &frag_size) < 0) {
8407                         netdev_warn(tp->dev,
8408                                     "Using a smaller RX jumbo ring. Only %d "
8409                                     "out of %d buffers were allocated "
8410                                     "successfully\n", i, tp->rx_jumbo_pending);
8411                         if (i == 0)
8412                                 goto initfail;
8413                         tp->rx_jumbo_pending = i;
8414                         break;
8415                 }
8416         }
8417
8418 done:
8419         return 0;
8420
8421 initfail:
8422         tg3_rx_prodring_free(tp, tpr);
8423         return -ENOMEM;
8424 }
8425
8426 static void tg3_rx_prodring_fini(struct tg3 *tp,
8427                                  struct tg3_rx_prodring_set *tpr)
8428 {
8429         kfree(tpr->rx_std_buffers);
8430         tpr->rx_std_buffers = NULL;
8431         kfree(tpr->rx_jmb_buffers);
8432         tpr->rx_jmb_buffers = NULL;
8433         if (tpr->rx_std) {
8434                 dma_free_coherent(&tp->pdev->dev, TG3_RX_STD_RING_BYTES(tp),
8435                                   tpr->rx_std, tpr->rx_std_mapping);
8436                 tpr->rx_std = NULL;
8437         }
8438         if (tpr->rx_jmb) {
8439                 dma_free_coherent(&tp->pdev->dev, TG3_RX_JMB_RING_BYTES(tp),
8440                                   tpr->rx_jmb, tpr->rx_jmb_mapping);
8441                 tpr->rx_jmb = NULL;
8442         }
8443 }
8444
8445 static int tg3_rx_prodring_init(struct tg3 *tp,
8446                                 struct tg3_rx_prodring_set *tpr)
8447 {
8448         tpr->rx_std_buffers = kzalloc(TG3_RX_STD_BUFF_RING_SIZE(tp),
8449                                       GFP_KERNEL);
8450         if (!tpr->rx_std_buffers)
8451                 return -ENOMEM;
8452
8453         tpr->rx_std = dma_alloc_coherent(&tp->pdev->dev,
8454                                          TG3_RX_STD_RING_BYTES(tp),
8455                                          &tpr->rx_std_mapping,
8456                                          GFP_KERNEL);
8457         if (!tpr->rx_std)
8458                 goto err_out;
8459
8460         if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS)) {
8461                 tpr->rx_jmb_buffers = kzalloc(TG3_RX_JMB_BUFF_RING_SIZE(tp),
8462                                               GFP_KERNEL);
8463                 if (!tpr->rx_jmb_buffers)
8464                         goto err_out;
8465
8466                 tpr->rx_jmb = dma_alloc_coherent(&tp->pdev->dev,
8467                                                  TG3_RX_JMB_RING_BYTES(tp),
8468                                                  &tpr->rx_jmb_mapping,
8469                                                  GFP_KERNEL);
8470                 if (!tpr->rx_jmb)
8471                         goto err_out;
8472         }
8473
8474         return 0;
8475
8476 err_out:
8477         tg3_rx_prodring_fini(tp, tpr);
8478         return -ENOMEM;
8479 }
8480
8481 /* Free up pending packets in all rx/tx rings.
8482  *
8483  * The chip has been shut down and the driver detached from
8484  * the networking, so no interrupts or new tx packets will
8485  * end up in the driver.  tp->{tx,}lock is not held and we are not
8486  * in an interrupt context and thus may sleep.
8487  */
8488 static void tg3_free_rings(struct tg3 *tp)
8489 {
8490         int i, j;
8491
8492         for (j = 0; j < tp->irq_cnt; j++) {
8493                 struct tg3_napi *tnapi = &tp->napi[j];
8494
8495                 tg3_rx_prodring_free(tp, &tnapi->prodring);
8496
8497                 if (!tnapi->tx_buffers)
8498                         continue;
8499
8500                 for (i = 0; i < TG3_TX_RING_SIZE; i++) {
8501                         struct sk_buff *skb = tnapi->tx_buffers[i].skb;
8502
8503                         if (!skb)
8504                                 continue;
8505
8506                         tg3_tx_skb_unmap(tnapi, i,
8507                                          skb_shinfo(skb)->nr_frags - 1);
8508
8509                         dev_kfree_skb_any(skb);
8510                 }
8511                 netdev_tx_reset_queue(netdev_get_tx_queue(tp->dev, j));
8512         }
8513 }
8514
8515 /* Initialize tx/rx rings for packet processing.
8516  *
8517  * The chip has been shut down and the driver detached from
8518  * the networking, so no interrupts or new tx packets will
8519  * end up in the driver.  tp->{tx,}lock are held and thus
8520  * we may not sleep.
8521  */
8522 static int tg3_init_rings(struct tg3 *tp)
8523 {
8524         int i;
8525
8526         /* Free up all the SKBs. */
8527         tg3_free_rings(tp);
8528
8529         for (i = 0; i < tp->irq_cnt; i++) {
8530                 struct tg3_napi *tnapi = &tp->napi[i];
8531
8532                 tnapi->last_tag = 0;
8533                 tnapi->last_irq_tag = 0;
8534                 tnapi->hw_status->status = 0;
8535                 tnapi->hw_status->status_tag = 0;
8536                 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
8537
8538                 tnapi->tx_prod = 0;
8539                 tnapi->tx_cons = 0;
8540                 if (tnapi->tx_ring)
8541                         memset(tnapi->tx_ring, 0, TG3_TX_RING_BYTES);
8542
8543                 tnapi->rx_rcb_ptr = 0;
8544                 if (tnapi->rx_rcb)
8545                         memset(tnapi->rx_rcb, 0, TG3_RX_RCB_RING_BYTES(tp));
8546
8547                 if (tg3_rx_prodring_alloc(tp, &tnapi->prodring)) {
8548                         tg3_free_rings(tp);
8549                         return -ENOMEM;
8550                 }
8551         }
8552
8553         return 0;
8554 }
8555
8556 static void tg3_mem_tx_release(struct tg3 *tp)
8557 {
8558         int i;
8559
8560         for (i = 0; i < tp->irq_max; i++) {
8561                 struct tg3_napi *tnapi = &tp->napi[i];
8562
8563                 if (tnapi->tx_ring) {
8564                         dma_free_coherent(&tp->pdev->dev, TG3_TX_RING_BYTES,
8565                                 tnapi->tx_ring, tnapi->tx_desc_mapping);
8566                         tnapi->tx_ring = NULL;
8567                 }
8568
8569                 kfree(tnapi->tx_buffers);
8570                 tnapi->tx_buffers = NULL;
8571         }
8572 }
8573
8574 static int tg3_mem_tx_acquire(struct tg3 *tp)
8575 {
8576         int i;
8577         struct tg3_napi *tnapi = &tp->napi[0];
8578
8579         /* If multivector TSS is enabled, vector 0 does not handle
8580          * tx interrupts.  Don't allocate any resources for it.
8581          */
8582         if (tg3_flag(tp, ENABLE_TSS))
8583                 tnapi++;
8584
8585         for (i = 0; i < tp->txq_cnt; i++, tnapi++) {
8586                 tnapi->tx_buffers = kzalloc(sizeof(struct tg3_tx_ring_info) *
8587                                             TG3_TX_RING_SIZE, GFP_KERNEL);
8588                 if (!tnapi->tx_buffers)
8589                         goto err_out;
8590
8591                 tnapi->tx_ring = dma_alloc_coherent(&tp->pdev->dev,
8592                                                     TG3_TX_RING_BYTES,
8593                                                     &tnapi->tx_desc_mapping,
8594                                                     GFP_KERNEL);
8595                 if (!tnapi->tx_ring)
8596                         goto err_out;
8597         }
8598
8599         return 0;
8600
8601 err_out:
8602         tg3_mem_tx_release(tp);
8603         return -ENOMEM;
8604 }
8605
8606 static void tg3_mem_rx_release(struct tg3 *tp)
8607 {
8608         int i;
8609
8610         for (i = 0; i < tp->irq_max; i++) {
8611                 struct tg3_napi *tnapi = &tp->napi[i];
8612
8613                 tg3_rx_prodring_fini(tp, &tnapi->prodring);
8614
8615                 if (!tnapi->rx_rcb)
8616                         continue;
8617
8618                 dma_free_coherent(&tp->pdev->dev,
8619                                   TG3_RX_RCB_RING_BYTES(tp),
8620                                   tnapi->rx_rcb,
8621                                   tnapi->rx_rcb_mapping);
8622                 tnapi->rx_rcb = NULL;
8623         }
8624 }
8625
8626 static int tg3_mem_rx_acquire(struct tg3 *tp)
8627 {
8628         unsigned int i, limit;
8629
8630         limit = tp->rxq_cnt;
8631
8632         /* If RSS is enabled, we need a (dummy) producer ring
8633          * set on vector zero.  This is the true hw prodring.
8634          */
8635         if (tg3_flag(tp, ENABLE_RSS))
8636                 limit++;
8637
8638         for (i = 0; i < limit; i++) {
8639                 struct tg3_napi *tnapi = &tp->napi[i];
8640
8641                 if (tg3_rx_prodring_init(tp, &tnapi->prodring))
8642                         goto err_out;
8643
8644                 /* If multivector RSS is enabled, vector 0
8645                  * does not handle rx or tx interrupts.
8646                  * Don't allocate any resources for it.
8647                  */
8648                 if (!i && tg3_flag(tp, ENABLE_RSS))
8649                         continue;
8650
8651                 tnapi->rx_rcb = dma_zalloc_coherent(&tp->pdev->dev,
8652                                                     TG3_RX_RCB_RING_BYTES(tp),
8653                                                     &tnapi->rx_rcb_mapping,
8654                                                     GFP_KERNEL);
8655                 if (!tnapi->rx_rcb)
8656                         goto err_out;
8657         }
8658
8659         return 0;
8660
8661 err_out:
8662         tg3_mem_rx_release(tp);
8663         return -ENOMEM;
8664 }
8665
8666 /*
8667  * Must not be invoked with interrupt sources disabled and
8668  * the hardware shutdown down.
8669  */
8670 static void tg3_free_consistent(struct tg3 *tp)
8671 {
8672         int i;
8673
8674         for (i = 0; i < tp->irq_cnt; i++) {
8675                 struct tg3_napi *tnapi = &tp->napi[i];
8676
8677                 if (tnapi->hw_status) {
8678                         dma_free_coherent(&tp->pdev->dev, TG3_HW_STATUS_SIZE,
8679                                           tnapi->hw_status,
8680                                           tnapi->status_mapping);
8681                         tnapi->hw_status = NULL;
8682                 }
8683         }
8684
8685         tg3_mem_rx_release(tp);
8686         tg3_mem_tx_release(tp);
8687
8688         if (tp->hw_stats) {
8689                 dma_free_coherent(&tp->pdev->dev, sizeof(struct tg3_hw_stats),
8690                                   tp->hw_stats, tp->stats_mapping);
8691                 tp->hw_stats = NULL;
8692         }
8693 }
8694
8695 /*
8696  * Must not be invoked with interrupt sources disabled and
8697  * the hardware shutdown down.  Can sleep.
8698  */
8699 static int tg3_alloc_consistent(struct tg3 *tp)
8700 {
8701         int i;
8702
8703         tp->hw_stats = dma_zalloc_coherent(&tp->pdev->dev,
8704                                            sizeof(struct tg3_hw_stats),
8705                                            &tp->stats_mapping, GFP_KERNEL);
8706         if (!tp->hw_stats)
8707                 goto err_out;
8708
8709         for (i = 0; i < tp->irq_cnt; i++) {
8710                 struct tg3_napi *tnapi = &tp->napi[i];
8711                 struct tg3_hw_status *sblk;
8712
8713                 tnapi->hw_status = dma_zalloc_coherent(&tp->pdev->dev,
8714                                                        TG3_HW_STATUS_SIZE,
8715                                                        &tnapi->status_mapping,
8716                                                        GFP_KERNEL);
8717                 if (!tnapi->hw_status)
8718                         goto err_out;
8719
8720                 sblk = tnapi->hw_status;
8721
8722                 if (tg3_flag(tp, ENABLE_RSS)) {
8723                         u16 *prodptr = NULL;
8724
8725                         /*
8726                          * When RSS is enabled, the status block format changes
8727                          * slightly.  The "rx_jumbo_consumer", "reserved",
8728                          * and "rx_mini_consumer" members get mapped to the
8729                          * other three rx return ring producer indexes.
8730                          */
8731                         switch (i) {
8732                         case 1:
8733                                 prodptr = &sblk->idx[0].rx_producer;
8734                                 break;
8735                         case 2:
8736                                 prodptr = &sblk->rx_jumbo_consumer;
8737                                 break;
8738                         case 3:
8739                                 prodptr = &sblk->reserved;
8740                                 break;
8741                         case 4:
8742                                 prodptr = &sblk->rx_mini_consumer;
8743                                 break;
8744                         }
8745                         tnapi->rx_rcb_prod_idx = prodptr;
8746                 } else {
8747                         tnapi->rx_rcb_prod_idx = &sblk->idx[0].rx_producer;
8748                 }
8749         }
8750
8751         if (tg3_mem_tx_acquire(tp) || tg3_mem_rx_acquire(tp))
8752                 goto err_out;
8753
8754         return 0;
8755
8756 err_out:
8757         tg3_free_consistent(tp);
8758         return -ENOMEM;
8759 }
8760
8761 #define MAX_WAIT_CNT 1000
8762
8763 /* To stop a block, clear the enable bit and poll till it
8764  * clears.  tp->lock is held.
8765  */
8766 static int tg3_stop_block(struct tg3 *tp, unsigned long ofs, u32 enable_bit, bool silent)
8767 {
8768         unsigned int i;
8769         u32 val;
8770
8771         if (tg3_flag(tp, 5705_PLUS)) {
8772                 switch (ofs) {
8773                 case RCVLSC_MODE:
8774                 case DMAC_MODE:
8775                 case MBFREE_MODE:
8776                 case BUFMGR_MODE:
8777                 case MEMARB_MODE:
8778                         /* We can't enable/disable these bits of the
8779                          * 5705/5750, just say success.
8780                          */
8781                         return 0;
8782
8783                 default:
8784                         break;
8785                 }
8786         }
8787
8788         val = tr32(ofs);
8789         val &= ~enable_bit;
8790         tw32_f(ofs, val);
8791
8792         for (i = 0; i < MAX_WAIT_CNT; i++) {
8793                 if (pci_channel_offline(tp->pdev)) {
8794                         dev_err(&tp->pdev->dev,
8795                                 "tg3_stop_block device offline, "
8796                                 "ofs=%lx enable_bit=%x\n",
8797                                 ofs, enable_bit);
8798                         return -ENODEV;
8799                 }
8800
8801                 udelay(100);
8802                 val = tr32(ofs);
8803                 if ((val & enable_bit) == 0)
8804                         break;
8805         }
8806
8807         if (i == MAX_WAIT_CNT && !silent) {
8808                 dev_err(&tp->pdev->dev,
8809                         "tg3_stop_block timed out, ofs=%lx enable_bit=%x\n",
8810                         ofs, enable_bit);
8811                 return -ENODEV;
8812         }
8813
8814         return 0;
8815 }
8816
8817 /* tp->lock is held. */
8818 static int tg3_abort_hw(struct tg3 *tp, bool silent)
8819 {
8820         int i, err;
8821
8822         tg3_disable_ints(tp);
8823
8824         if (pci_channel_offline(tp->pdev)) {
8825                 tp->rx_mode &= ~(RX_MODE_ENABLE | TX_MODE_ENABLE);
8826                 tp->mac_mode &= ~MAC_MODE_TDE_ENABLE;
8827                 err = -ENODEV;
8828                 goto err_no_dev;
8829         }
8830
8831         tp->rx_mode &= ~RX_MODE_ENABLE;
8832         tw32_f(MAC_RX_MODE, tp->rx_mode);
8833         udelay(10);
8834
8835         err  = tg3_stop_block(tp, RCVBDI_MODE, RCVBDI_MODE_ENABLE, silent);
8836         err |= tg3_stop_block(tp, RCVLPC_MODE, RCVLPC_MODE_ENABLE, silent);
8837         err |= tg3_stop_block(tp, RCVLSC_MODE, RCVLSC_MODE_ENABLE, silent);
8838         err |= tg3_stop_block(tp, RCVDBDI_MODE, RCVDBDI_MODE_ENABLE, silent);
8839         err |= tg3_stop_block(tp, RCVDCC_MODE, RCVDCC_MODE_ENABLE, silent);
8840         err |= tg3_stop_block(tp, RCVCC_MODE, RCVCC_MODE_ENABLE, silent);
8841
8842         err |= tg3_stop_block(tp, SNDBDS_MODE, SNDBDS_MODE_ENABLE, silent);
8843         err |= tg3_stop_block(tp, SNDBDI_MODE, SNDBDI_MODE_ENABLE, silent);
8844         err |= tg3_stop_block(tp, SNDDATAI_MODE, SNDDATAI_MODE_ENABLE, silent);
8845         err |= tg3_stop_block(tp, RDMAC_MODE, RDMAC_MODE_ENABLE, silent);
8846         err |= tg3_stop_block(tp, SNDDATAC_MODE, SNDDATAC_MODE_ENABLE, silent);
8847         err |= tg3_stop_block(tp, DMAC_MODE, DMAC_MODE_ENABLE, silent);
8848         err |= tg3_stop_block(tp, SNDBDC_MODE, SNDBDC_MODE_ENABLE, silent);
8849
8850         tp->mac_mode &= ~MAC_MODE_TDE_ENABLE;
8851         tw32_f(MAC_MODE, tp->mac_mode);
8852         udelay(40);
8853
8854         tp->tx_mode &= ~TX_MODE_ENABLE;
8855         tw32_f(MAC_TX_MODE, tp->tx_mode);
8856
8857         for (i = 0; i < MAX_WAIT_CNT; i++) {
8858                 udelay(100);
8859                 if (!(tr32(MAC_TX_MODE) & TX_MODE_ENABLE))
8860                         break;
8861         }
8862         if (i >= MAX_WAIT_CNT) {
8863                 dev_err(&tp->pdev->dev,
8864                         "%s timed out, TX_MODE_ENABLE will not clear "
8865                         "MAC_TX_MODE=%08x\n", __func__, tr32(MAC_TX_MODE));
8866                 err |= -ENODEV;
8867         }
8868
8869         err |= tg3_stop_block(tp, HOSTCC_MODE, HOSTCC_MODE_ENABLE, silent);
8870         err |= tg3_stop_block(tp, WDMAC_MODE, WDMAC_MODE_ENABLE, silent);
8871         err |= tg3_stop_block(tp, MBFREE_MODE, MBFREE_MODE_ENABLE, silent);
8872
8873         tw32(FTQ_RESET, 0xffffffff);
8874         tw32(FTQ_RESET, 0x00000000);
8875
8876         err |= tg3_stop_block(tp, BUFMGR_MODE, BUFMGR_MODE_ENABLE, silent);
8877         err |= tg3_stop_block(tp, MEMARB_MODE, MEMARB_MODE_ENABLE, silent);
8878
8879 err_no_dev:
8880         for (i = 0; i < tp->irq_cnt; i++) {
8881                 struct tg3_napi *tnapi = &tp->napi[i];
8882                 if (tnapi->hw_status)
8883                         memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
8884         }
8885
8886         return err;
8887 }
8888
8889 /* Save PCI command register before chip reset */
8890 static void tg3_save_pci_state(struct tg3 *tp)
8891 {
8892         pci_read_config_word(tp->pdev, PCI_COMMAND, &tp->pci_cmd);
8893 }
8894
8895 /* Restore PCI state after chip reset */
8896 static void tg3_restore_pci_state(struct tg3 *tp)
8897 {
8898         u32 val;
8899
8900         /* Re-enable indirect register accesses. */
8901         pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
8902                                tp->misc_host_ctrl);
8903
8904         /* Set MAX PCI retry to zero. */
8905         val = (PCISTATE_ROM_ENABLE | PCISTATE_ROM_RETRY_ENABLE);
8906         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5704_A0 &&
8907             tg3_flag(tp, PCIX_MODE))
8908                 val |= PCISTATE_RETRY_SAME_DMA;
8909         /* Allow reads and writes to the APE register and memory space. */
8910         if (tg3_flag(tp, ENABLE_APE))
8911                 val |= PCISTATE_ALLOW_APE_CTLSPC_WR |
8912                        PCISTATE_ALLOW_APE_SHMEM_WR |
8913                        PCISTATE_ALLOW_APE_PSPACE_WR;
8914         pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE, val);
8915
8916         pci_write_config_word(tp->pdev, PCI_COMMAND, tp->pci_cmd);
8917
8918         if (!tg3_flag(tp, PCI_EXPRESS)) {
8919                 pci_write_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE,
8920                                       tp->pci_cacheline_sz);
8921                 pci_write_config_byte(tp->pdev, PCI_LATENCY_TIMER,
8922                                       tp->pci_lat_timer);
8923         }
8924
8925         /* Make sure PCI-X relaxed ordering bit is clear. */
8926         if (tg3_flag(tp, PCIX_MODE)) {
8927                 u16 pcix_cmd;
8928
8929                 pci_read_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
8930                                      &pcix_cmd);
8931                 pcix_cmd &= ~PCI_X_CMD_ERO;
8932                 pci_write_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
8933                                       pcix_cmd);
8934         }
8935
8936         if (tg3_flag(tp, 5780_CLASS)) {
8937
8938                 /* Chip reset on 5780 will reset MSI enable bit,
8939                  * so need to restore it.
8940                  */
8941                 if (tg3_flag(tp, USING_MSI)) {
8942                         u16 ctrl;
8943
8944                         pci_read_config_word(tp->pdev,
8945                                              tp->msi_cap + PCI_MSI_FLAGS,
8946                                              &ctrl);
8947                         pci_write_config_word(tp->pdev,
8948                                               tp->msi_cap + PCI_MSI_FLAGS,
8949                                               ctrl | PCI_MSI_FLAGS_ENABLE);
8950                         val = tr32(MSGINT_MODE);
8951                         tw32(MSGINT_MODE, val | MSGINT_MODE_ENABLE);
8952                 }
8953         }
8954 }
8955
8956 static void tg3_override_clk(struct tg3 *tp)
8957 {
8958         u32 val;
8959
8960         switch (tg3_asic_rev(tp)) {
8961         case ASIC_REV_5717:
8962                 val = tr32(TG3_CPMU_CLCK_ORIDE_ENABLE);
8963                 tw32(TG3_CPMU_CLCK_ORIDE_ENABLE, val |
8964                      TG3_CPMU_MAC_ORIDE_ENABLE);
8965                 break;
8966
8967         case ASIC_REV_5719:
8968         case ASIC_REV_5720:
8969                 tw32(TG3_CPMU_CLCK_ORIDE, CPMU_CLCK_ORIDE_MAC_ORIDE_EN);
8970                 break;
8971
8972         default:
8973                 return;
8974         }
8975 }
8976
8977 static void tg3_restore_clk(struct tg3 *tp)
8978 {
8979         u32 val;
8980
8981         switch (tg3_asic_rev(tp)) {
8982         case ASIC_REV_5717:
8983                 val = tr32(TG3_CPMU_CLCK_ORIDE_ENABLE);
8984                 tw32(TG3_CPMU_CLCK_ORIDE_ENABLE,
8985                      val & ~TG3_CPMU_MAC_ORIDE_ENABLE);
8986                 break;
8987
8988         case ASIC_REV_5719:
8989         case ASIC_REV_5720:
8990                 val = tr32(TG3_CPMU_CLCK_ORIDE);
8991                 tw32(TG3_CPMU_CLCK_ORIDE, val & ~CPMU_CLCK_ORIDE_MAC_ORIDE_EN);
8992                 break;
8993
8994         default:
8995                 return;
8996         }
8997 }
8998
8999 /* tp->lock is held. */
9000 static int tg3_chip_reset(struct tg3 *tp)
9001 {
9002         u32 val;
9003         void (*write_op)(struct tg3 *, u32, u32);
9004         int i, err;
9005
9006         if (!pci_device_is_present(tp->pdev))
9007                 return -ENODEV;
9008
9009         tg3_nvram_lock(tp);
9010
9011         tg3_ape_lock(tp, TG3_APE_LOCK_GRC);
9012
9013         /* No matching tg3_nvram_unlock() after this because
9014          * chip reset below will undo the nvram lock.
9015          */
9016         tp->nvram_lock_cnt = 0;
9017
9018         /* GRC_MISC_CFG core clock reset will clear the memory
9019          * enable bit in PCI register 4 and the MSI enable bit
9020          * on some chips, so we save relevant registers here.
9021          */
9022         tg3_save_pci_state(tp);
9023
9024         if (tg3_asic_rev(tp) == ASIC_REV_5752 ||
9025             tg3_flag(tp, 5755_PLUS))
9026                 tw32(GRC_FASTBOOT_PC, 0);
9027
9028         /*
9029          * We must avoid the readl() that normally takes place.
9030          * It locks machines, causes machine checks, and other
9031          * fun things.  So, temporarily disable the 5701
9032          * hardware workaround, while we do the reset.
9033          */
9034         write_op = tp->write32;
9035         if (write_op == tg3_write_flush_reg32)
9036                 tp->write32 = tg3_write32;
9037
9038         /* Prevent the irq handler from reading or writing PCI registers
9039          * during chip reset when the memory enable bit in the PCI command
9040          * register may be cleared.  The chip does not generate interrupt
9041          * at this time, but the irq handler may still be called due to irq
9042          * sharing or irqpoll.
9043          */
9044         tg3_flag_set(tp, CHIP_RESETTING);
9045         for (i = 0; i < tp->irq_cnt; i++) {
9046                 struct tg3_napi *tnapi = &tp->napi[i];
9047                 if (tnapi->hw_status) {
9048                         tnapi->hw_status->status = 0;
9049                         tnapi->hw_status->status_tag = 0;
9050                 }
9051                 tnapi->last_tag = 0;
9052                 tnapi->last_irq_tag = 0;
9053         }
9054         smp_mb();
9055
9056         for (i = 0; i < tp->irq_cnt; i++)
9057                 synchronize_irq(tp->napi[i].irq_vec);
9058
9059         if (tg3_asic_rev(tp) == ASIC_REV_57780) {
9060                 val = tr32(TG3_PCIE_LNKCTL) & ~TG3_PCIE_LNKCTL_L1_PLL_PD_EN;
9061                 tw32(TG3_PCIE_LNKCTL, val | TG3_PCIE_LNKCTL_L1_PLL_PD_DIS);
9062         }
9063
9064         /* do the reset */
9065         val = GRC_MISC_CFG_CORECLK_RESET;
9066
9067         if (tg3_flag(tp, PCI_EXPRESS)) {
9068                 /* Force PCIe 1.0a mode */
9069                 if (tg3_asic_rev(tp) != ASIC_REV_5785 &&
9070                     !tg3_flag(tp, 57765_PLUS) &&
9071                     tr32(TG3_PCIE_PHY_TSTCTL) ==
9072                     (TG3_PCIE_PHY_TSTCTL_PCIE10 | TG3_PCIE_PHY_TSTCTL_PSCRAM))
9073                         tw32(TG3_PCIE_PHY_TSTCTL, TG3_PCIE_PHY_TSTCTL_PSCRAM);
9074
9075                 if (tg3_chip_rev_id(tp) != CHIPREV_ID_5750_A0) {
9076                         tw32(GRC_MISC_CFG, (1 << 29));
9077                         val |= (1 << 29);
9078                 }
9079         }
9080
9081         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
9082                 tw32(VCPU_STATUS, tr32(VCPU_STATUS) | VCPU_STATUS_DRV_RESET);
9083                 tw32(GRC_VCPU_EXT_CTRL,
9084                      tr32(GRC_VCPU_EXT_CTRL) & ~GRC_VCPU_EXT_CTRL_HALT_CPU);
9085         }
9086
9087         /* Set the clock to the highest frequency to avoid timeouts. With link
9088          * aware mode, the clock speed could be slow and bootcode does not
9089          * complete within the expected time. Override the clock to allow the
9090          * bootcode to finish sooner and then restore it.
9091          */
9092         tg3_override_clk(tp);
9093
9094         /* Manage gphy power for all CPMU absent PCIe devices. */
9095         if (tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, CPMU_PRESENT))
9096                 val |= GRC_MISC_CFG_KEEP_GPHY_POWER;
9097
9098         tw32(GRC_MISC_CFG, val);
9099
9100         /* restore 5701 hardware bug workaround write method */
9101         tp->write32 = write_op;
9102
9103         /* Unfortunately, we have to delay before the PCI read back.
9104          * Some 575X chips even will not respond to a PCI cfg access
9105          * when the reset command is given to the chip.
9106          *
9107          * How do these hardware designers expect things to work
9108          * properly if the PCI write is posted for a long period
9109          * of time?  It is always necessary to have some method by
9110          * which a register read back can occur to push the write
9111          * out which does the reset.
9112          *
9113          * For most tg3 variants the trick below was working.
9114          * Ho hum...
9115          */
9116         udelay(120);
9117
9118         /* Flush PCI posted writes.  The normal MMIO registers
9119          * are inaccessible at this time so this is the only
9120          * way to make this reliably (actually, this is no longer
9121          * the case, see above).  I tried to use indirect
9122          * register read/write but this upset some 5701 variants.
9123          */
9124         pci_read_config_dword(tp->pdev, PCI_COMMAND, &val);
9125
9126         udelay(120);
9127
9128         if (tg3_flag(tp, PCI_EXPRESS) && pci_is_pcie(tp->pdev)) {
9129                 u16 val16;
9130
9131                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5750_A0) {
9132                         int j;
9133                         u32 cfg_val;
9134
9135                         /* Wait for link training to complete.  */
9136                         for (j = 0; j < 5000; j++)
9137                                 udelay(100);
9138
9139                         pci_read_config_dword(tp->pdev, 0xc4, &cfg_val);
9140                         pci_write_config_dword(tp->pdev, 0xc4,
9141                                                cfg_val | (1 << 15));
9142                 }
9143
9144                 /* Clear the "no snoop" and "relaxed ordering" bits. */
9145                 val16 = PCI_EXP_DEVCTL_RELAX_EN | PCI_EXP_DEVCTL_NOSNOOP_EN;
9146                 /*
9147                  * Older PCIe devices only support the 128 byte
9148                  * MPS setting.  Enforce the restriction.
9149                  */
9150                 if (!tg3_flag(tp, CPMU_PRESENT))
9151                         val16 |= PCI_EXP_DEVCTL_PAYLOAD;
9152                 pcie_capability_clear_word(tp->pdev, PCI_EXP_DEVCTL, val16);
9153
9154                 /* Clear error status */
9155                 pcie_capability_write_word(tp->pdev, PCI_EXP_DEVSTA,
9156                                       PCI_EXP_DEVSTA_CED |
9157                                       PCI_EXP_DEVSTA_NFED |
9158                                       PCI_EXP_DEVSTA_FED |
9159                                       PCI_EXP_DEVSTA_URD);
9160         }
9161
9162         tg3_restore_pci_state(tp);
9163
9164         tg3_flag_clear(tp, CHIP_RESETTING);
9165         tg3_flag_clear(tp, ERROR_PROCESSED);
9166
9167         val = 0;
9168         if (tg3_flag(tp, 5780_CLASS))
9169                 val = tr32(MEMARB_MODE);
9170         tw32(MEMARB_MODE, val | MEMARB_MODE_ENABLE);
9171
9172         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5750_A3) {
9173                 tg3_stop_fw(tp);
9174                 tw32(0x5000, 0x400);
9175         }
9176
9177         if (tg3_flag(tp, IS_SSB_CORE)) {
9178                 /*
9179                  * BCM4785: In order to avoid repercussions from using
9180                  * potentially defective internal ROM, stop the Rx RISC CPU,
9181                  * which is not required.
9182                  */
9183                 tg3_stop_fw(tp);
9184                 tg3_halt_cpu(tp, RX_CPU_BASE);
9185         }
9186
9187         err = tg3_poll_fw(tp);
9188         if (err)
9189                 return err;
9190
9191         tw32(GRC_MODE, tp->grc_mode);
9192
9193         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5705_A0) {
9194                 val = tr32(0xc4);
9195
9196                 tw32(0xc4, val | (1 << 15));
9197         }
9198
9199         if ((tp->nic_sram_data_cfg & NIC_SRAM_DATA_CFG_MINI_PCI) != 0 &&
9200             tg3_asic_rev(tp) == ASIC_REV_5705) {
9201                 tp->pci_clock_ctrl |= CLOCK_CTRL_CLKRUN_OENABLE;
9202                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5705_A0)
9203                         tp->pci_clock_ctrl |= CLOCK_CTRL_FORCE_CLKRUN;
9204                 tw32(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl);
9205         }
9206
9207         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
9208                 tp->mac_mode = MAC_MODE_PORT_MODE_TBI;
9209                 val = tp->mac_mode;
9210         } else if (tp->phy_flags & TG3_PHYFLG_MII_SERDES) {
9211                 tp->mac_mode = MAC_MODE_PORT_MODE_GMII;
9212                 val = tp->mac_mode;
9213         } else
9214                 val = 0;
9215
9216         tw32_f(MAC_MODE, val);
9217         udelay(40);
9218
9219         tg3_ape_unlock(tp, TG3_APE_LOCK_GRC);
9220
9221         tg3_mdio_start(tp);
9222
9223         if (tg3_flag(tp, PCI_EXPRESS) &&
9224             tg3_chip_rev_id(tp) != CHIPREV_ID_5750_A0 &&
9225             tg3_asic_rev(tp) != ASIC_REV_5785 &&
9226             !tg3_flag(tp, 57765_PLUS)) {
9227                 val = tr32(0x7c00);
9228
9229                 tw32(0x7c00, val | (1 << 25));
9230         }
9231
9232         tg3_restore_clk(tp);
9233
9234         /* Reprobe ASF enable state.  */
9235         tg3_flag_clear(tp, ENABLE_ASF);
9236         tp->phy_flags &= ~(TG3_PHYFLG_1G_ON_VAUX_OK |
9237                            TG3_PHYFLG_KEEP_LINK_ON_PWRDN);
9238
9239         tg3_flag_clear(tp, ASF_NEW_HANDSHAKE);
9240         tg3_read_mem(tp, NIC_SRAM_DATA_SIG, &val);
9241         if (val == NIC_SRAM_DATA_SIG_MAGIC) {
9242                 u32 nic_cfg;
9243
9244                 tg3_read_mem(tp, NIC_SRAM_DATA_CFG, &nic_cfg);
9245                 if (nic_cfg & NIC_SRAM_DATA_CFG_ASF_ENABLE) {
9246                         tg3_flag_set(tp, ENABLE_ASF);
9247                         tp->last_event_jiffies = jiffies;
9248                         if (tg3_flag(tp, 5750_PLUS))
9249                                 tg3_flag_set(tp, ASF_NEW_HANDSHAKE);
9250
9251                         tg3_read_mem(tp, NIC_SRAM_DATA_CFG_3, &nic_cfg);
9252                         if (nic_cfg & NIC_SRAM_1G_ON_VAUX_OK)
9253                                 tp->phy_flags |= TG3_PHYFLG_1G_ON_VAUX_OK;
9254                         if (nic_cfg & NIC_SRAM_LNK_FLAP_AVOID)
9255                                 tp->phy_flags |= TG3_PHYFLG_KEEP_LINK_ON_PWRDN;
9256                 }
9257         }
9258
9259         return 0;
9260 }
9261
9262 static void tg3_get_nstats(struct tg3 *, struct rtnl_link_stats64 *);
9263 static void tg3_get_estats(struct tg3 *, struct tg3_ethtool_stats *);
9264 static void __tg3_set_rx_mode(struct net_device *);
9265
9266 /* tp->lock is held. */
9267 static int tg3_halt(struct tg3 *tp, int kind, bool silent)
9268 {
9269         int err;
9270
9271         tg3_stop_fw(tp);
9272
9273         tg3_write_sig_pre_reset(tp, kind);
9274
9275         tg3_abort_hw(tp, silent);
9276         err = tg3_chip_reset(tp);
9277
9278         __tg3_set_mac_addr(tp, false);
9279
9280         tg3_write_sig_legacy(tp, kind);
9281         tg3_write_sig_post_reset(tp, kind);
9282
9283         if (tp->hw_stats) {
9284                 /* Save the stats across chip resets... */
9285                 tg3_get_nstats(tp, &tp->net_stats_prev);
9286                 tg3_get_estats(tp, &tp->estats_prev);
9287
9288                 /* And make sure the next sample is new data */
9289                 memset(tp->hw_stats, 0, sizeof(struct tg3_hw_stats));
9290         }
9291
9292         return err;
9293 }
9294
9295 static int tg3_set_mac_addr(struct net_device *dev, void *p)
9296 {
9297         struct tg3 *tp = netdev_priv(dev);
9298         struct sockaddr *addr = p;
9299         int err = 0;
9300         bool skip_mac_1 = false;
9301
9302         if (!is_valid_ether_addr(addr->sa_data))
9303                 return -EADDRNOTAVAIL;
9304
9305         memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
9306
9307         if (!netif_running(dev))
9308                 return 0;
9309
9310         if (tg3_flag(tp, ENABLE_ASF)) {
9311                 u32 addr0_high, addr0_low, addr1_high, addr1_low;
9312
9313                 addr0_high = tr32(MAC_ADDR_0_HIGH);
9314                 addr0_low = tr32(MAC_ADDR_0_LOW);
9315                 addr1_high = tr32(MAC_ADDR_1_HIGH);
9316                 addr1_low = tr32(MAC_ADDR_1_LOW);
9317
9318                 /* Skip MAC addr 1 if ASF is using it. */
9319                 if ((addr0_high != addr1_high || addr0_low != addr1_low) &&
9320                     !(addr1_high == 0 && addr1_low == 0))
9321                         skip_mac_1 = true;
9322         }
9323         spin_lock_bh(&tp->lock);
9324         __tg3_set_mac_addr(tp, skip_mac_1);
9325         __tg3_set_rx_mode(dev);
9326         spin_unlock_bh(&tp->lock);
9327
9328         return err;
9329 }
9330
9331 /* tp->lock is held. */
9332 static void tg3_set_bdinfo(struct tg3 *tp, u32 bdinfo_addr,
9333                            dma_addr_t mapping, u32 maxlen_flags,
9334                            u32 nic_addr)
9335 {
9336         tg3_write_mem(tp,
9337                       (bdinfo_addr + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH),
9338                       ((u64) mapping >> 32));
9339         tg3_write_mem(tp,
9340                       (bdinfo_addr + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW),
9341                       ((u64) mapping & 0xffffffff));
9342         tg3_write_mem(tp,
9343                       (bdinfo_addr + TG3_BDINFO_MAXLEN_FLAGS),
9344                        maxlen_flags);
9345
9346         if (!tg3_flag(tp, 5705_PLUS))
9347                 tg3_write_mem(tp,
9348                               (bdinfo_addr + TG3_BDINFO_NIC_ADDR),
9349                               nic_addr);
9350 }
9351
9352
9353 static void tg3_coal_tx_init(struct tg3 *tp, struct ethtool_coalesce *ec)
9354 {
9355         int i = 0;
9356
9357         if (!tg3_flag(tp, ENABLE_TSS)) {
9358                 tw32(HOSTCC_TXCOL_TICKS, ec->tx_coalesce_usecs);
9359                 tw32(HOSTCC_TXMAX_FRAMES, ec->tx_max_coalesced_frames);
9360                 tw32(HOSTCC_TXCOAL_MAXF_INT, ec->tx_max_coalesced_frames_irq);
9361         } else {
9362                 tw32(HOSTCC_TXCOL_TICKS, 0);
9363                 tw32(HOSTCC_TXMAX_FRAMES, 0);
9364                 tw32(HOSTCC_TXCOAL_MAXF_INT, 0);
9365
9366                 for (; i < tp->txq_cnt; i++) {
9367                         u32 reg;
9368
9369                         reg = HOSTCC_TXCOL_TICKS_VEC1 + i * 0x18;
9370                         tw32(reg, ec->tx_coalesce_usecs);
9371                         reg = HOSTCC_TXMAX_FRAMES_VEC1 + i * 0x18;
9372                         tw32(reg, ec->tx_max_coalesced_frames);
9373                         reg = HOSTCC_TXCOAL_MAXF_INT_VEC1 + i * 0x18;
9374                         tw32(reg, ec->tx_max_coalesced_frames_irq);
9375                 }
9376         }
9377
9378         for (; i < tp->irq_max - 1; i++) {
9379                 tw32(HOSTCC_TXCOL_TICKS_VEC1 + i * 0x18, 0);
9380                 tw32(HOSTCC_TXMAX_FRAMES_VEC1 + i * 0x18, 0);
9381                 tw32(HOSTCC_TXCOAL_MAXF_INT_VEC1 + i * 0x18, 0);
9382         }
9383 }
9384
9385 static void tg3_coal_rx_init(struct tg3 *tp, struct ethtool_coalesce *ec)
9386 {
9387         int i = 0;
9388         u32 limit = tp->rxq_cnt;
9389
9390         if (!tg3_flag(tp, ENABLE_RSS)) {
9391                 tw32(HOSTCC_RXCOL_TICKS, ec->rx_coalesce_usecs);
9392                 tw32(HOSTCC_RXMAX_FRAMES, ec->rx_max_coalesced_frames);
9393                 tw32(HOSTCC_RXCOAL_MAXF_INT, ec->rx_max_coalesced_frames_irq);
9394                 limit--;
9395         } else {
9396                 tw32(HOSTCC_RXCOL_TICKS, 0);
9397                 tw32(HOSTCC_RXMAX_FRAMES, 0);
9398                 tw32(HOSTCC_RXCOAL_MAXF_INT, 0);
9399         }
9400
9401         for (; i < limit; i++) {
9402                 u32 reg;
9403
9404                 reg = HOSTCC_RXCOL_TICKS_VEC1 + i * 0x18;
9405                 tw32(reg, ec->rx_coalesce_usecs);
9406                 reg = HOSTCC_RXMAX_FRAMES_VEC1 + i * 0x18;
9407                 tw32(reg, ec->rx_max_coalesced_frames);
9408                 reg = HOSTCC_RXCOAL_MAXF_INT_VEC1 + i * 0x18;
9409                 tw32(reg, ec->rx_max_coalesced_frames_irq);
9410         }
9411
9412         for (; i < tp->irq_max - 1; i++) {
9413                 tw32(HOSTCC_RXCOL_TICKS_VEC1 + i * 0x18, 0);
9414                 tw32(HOSTCC_RXMAX_FRAMES_VEC1 + i * 0x18, 0);
9415                 tw32(HOSTCC_RXCOAL_MAXF_INT_VEC1 + i * 0x18, 0);
9416         }
9417 }
9418
9419 static void __tg3_set_coalesce(struct tg3 *tp, struct ethtool_coalesce *ec)
9420 {
9421         tg3_coal_tx_init(tp, ec);
9422         tg3_coal_rx_init(tp, ec);
9423
9424         if (!tg3_flag(tp, 5705_PLUS)) {
9425                 u32 val = ec->stats_block_coalesce_usecs;
9426
9427                 tw32(HOSTCC_RXCOAL_TICK_INT, ec->rx_coalesce_usecs_irq);
9428                 tw32(HOSTCC_TXCOAL_TICK_INT, ec->tx_coalesce_usecs_irq);
9429
9430                 if (!tp->link_up)
9431                         val = 0;
9432
9433                 tw32(HOSTCC_STAT_COAL_TICKS, val);
9434         }
9435 }
9436
9437 /* tp->lock is held. */
9438 static void tg3_tx_rcbs_disable(struct tg3 *tp)
9439 {
9440         u32 txrcb, limit;
9441
9442         /* Disable all transmit rings but the first. */
9443         if (!tg3_flag(tp, 5705_PLUS))
9444                 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 16;
9445         else if (tg3_flag(tp, 5717_PLUS))
9446                 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 4;
9447         else if (tg3_flag(tp, 57765_CLASS) ||
9448                  tg3_asic_rev(tp) == ASIC_REV_5762)
9449                 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 2;
9450         else
9451                 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE;
9452
9453         for (txrcb = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE;
9454              txrcb < limit; txrcb += TG3_BDINFO_SIZE)
9455                 tg3_write_mem(tp, txrcb + TG3_BDINFO_MAXLEN_FLAGS,
9456                               BDINFO_FLAGS_DISABLED);
9457 }
9458
9459 /* tp->lock is held. */
9460 static void tg3_tx_rcbs_init(struct tg3 *tp)
9461 {
9462         int i = 0;
9463         u32 txrcb = NIC_SRAM_SEND_RCB;
9464
9465         if (tg3_flag(tp, ENABLE_TSS))
9466                 i++;
9467
9468         for (; i < tp->irq_max; i++, txrcb += TG3_BDINFO_SIZE) {
9469                 struct tg3_napi *tnapi = &tp->napi[i];
9470
9471                 if (!tnapi->tx_ring)
9472                         continue;
9473
9474                 tg3_set_bdinfo(tp, txrcb, tnapi->tx_desc_mapping,
9475                                (TG3_TX_RING_SIZE << BDINFO_FLAGS_MAXLEN_SHIFT),
9476                                NIC_SRAM_TX_BUFFER_DESC);
9477         }
9478 }
9479
9480 /* tp->lock is held. */
9481 static void tg3_rx_ret_rcbs_disable(struct tg3 *tp)
9482 {
9483         u32 rxrcb, limit;
9484
9485         /* Disable all receive return rings but the first. */
9486         if (tg3_flag(tp, 5717_PLUS))
9487                 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 17;
9488         else if (!tg3_flag(tp, 5705_PLUS))
9489                 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 16;
9490         else if (tg3_asic_rev(tp) == ASIC_REV_5755 ||
9491                  tg3_asic_rev(tp) == ASIC_REV_5762 ||
9492                  tg3_flag(tp, 57765_CLASS))
9493                 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 4;
9494         else
9495                 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE;
9496
9497         for (rxrcb = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE;
9498              rxrcb < limit; rxrcb += TG3_BDINFO_SIZE)
9499                 tg3_write_mem(tp, rxrcb + TG3_BDINFO_MAXLEN_FLAGS,
9500                               BDINFO_FLAGS_DISABLED);
9501 }
9502
9503 /* tp->lock is held. */
9504 static void tg3_rx_ret_rcbs_init(struct tg3 *tp)
9505 {
9506         int i = 0;
9507         u32 rxrcb = NIC_SRAM_RCV_RET_RCB;
9508
9509         if (tg3_flag(tp, ENABLE_RSS))
9510                 i++;
9511
9512         for (; i < tp->irq_max; i++, rxrcb += TG3_BDINFO_SIZE) {
9513                 struct tg3_napi *tnapi = &tp->napi[i];
9514
9515                 if (!tnapi->rx_rcb)
9516                         continue;
9517
9518                 tg3_set_bdinfo(tp, rxrcb, tnapi->rx_rcb_mapping,
9519                                (tp->rx_ret_ring_mask + 1) <<
9520                                 BDINFO_FLAGS_MAXLEN_SHIFT, 0);
9521         }
9522 }
9523
9524 /* tp->lock is held. */
9525 static void tg3_rings_reset(struct tg3 *tp)
9526 {
9527         int i;
9528         u32 stblk;
9529         struct tg3_napi *tnapi = &tp->napi[0];
9530
9531         tg3_tx_rcbs_disable(tp);
9532
9533         tg3_rx_ret_rcbs_disable(tp);
9534
9535         /* Disable interrupts */
9536         tw32_mailbox_f(tp->napi[0].int_mbox, 1);
9537         tp->napi[0].chk_msi_cnt = 0;
9538         tp->napi[0].last_rx_cons = 0;
9539         tp->napi[0].last_tx_cons = 0;
9540
9541         /* Zero mailbox registers. */
9542         if (tg3_flag(tp, SUPPORT_MSIX)) {
9543                 for (i = 1; i < tp->irq_max; i++) {
9544                         tp->napi[i].tx_prod = 0;
9545                         tp->napi[i].tx_cons = 0;
9546                         if (tg3_flag(tp, ENABLE_TSS))
9547                                 tw32_mailbox(tp->napi[i].prodmbox, 0);
9548                         tw32_rx_mbox(tp->napi[i].consmbox, 0);
9549                         tw32_mailbox_f(tp->napi[i].int_mbox, 1);
9550                         tp->napi[i].chk_msi_cnt = 0;
9551                         tp->napi[i].last_rx_cons = 0;
9552                         tp->napi[i].last_tx_cons = 0;
9553                 }
9554                 if (!tg3_flag(tp, ENABLE_TSS))
9555                         tw32_mailbox(tp->napi[0].prodmbox, 0);
9556         } else {
9557                 tp->napi[0].tx_prod = 0;
9558                 tp->napi[0].tx_cons = 0;
9559                 tw32_mailbox(tp->napi[0].prodmbox, 0);
9560                 tw32_rx_mbox(tp->napi[0].consmbox, 0);
9561         }
9562
9563         /* Make sure the NIC-based send BD rings are disabled. */
9564         if (!tg3_flag(tp, 5705_PLUS)) {
9565                 u32 mbox = MAILBOX_SNDNIC_PROD_IDX_0 + TG3_64BIT_REG_LOW;
9566                 for (i = 0; i < 16; i++)
9567                         tw32_tx_mbox(mbox + i * 8, 0);
9568         }
9569
9570         /* Clear status block in ram. */
9571         memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
9572
9573         /* Set status block DMA address */
9574         tw32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH,
9575              ((u64) tnapi->status_mapping >> 32));
9576         tw32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW,
9577              ((u64) tnapi->status_mapping & 0xffffffff));
9578
9579         stblk = HOSTCC_STATBLCK_RING1;
9580
9581         for (i = 1, tnapi++; i < tp->irq_cnt; i++, tnapi++) {
9582                 u64 mapping = (u64)tnapi->status_mapping;
9583                 tw32(stblk + TG3_64BIT_REG_HIGH, mapping >> 32);
9584                 tw32(stblk + TG3_64BIT_REG_LOW, mapping & 0xffffffff);
9585                 stblk += 8;
9586
9587                 /* Clear status block in ram. */
9588                 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
9589         }
9590
9591         tg3_tx_rcbs_init(tp);
9592         tg3_rx_ret_rcbs_init(tp);
9593 }
9594
9595 static void tg3_setup_rxbd_thresholds(struct tg3 *tp)
9596 {
9597         u32 val, bdcache_maxcnt, host_rep_thresh, nic_rep_thresh;
9598
9599         if (!tg3_flag(tp, 5750_PLUS) ||
9600             tg3_flag(tp, 5780_CLASS) ||
9601             tg3_asic_rev(tp) == ASIC_REV_5750 ||
9602             tg3_asic_rev(tp) == ASIC_REV_5752 ||
9603             tg3_flag(tp, 57765_PLUS))
9604                 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5700;
9605         else if (tg3_asic_rev(tp) == ASIC_REV_5755 ||
9606                  tg3_asic_rev(tp) == ASIC_REV_5787)
9607                 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5755;
9608         else
9609                 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5906;
9610
9611         nic_rep_thresh = min(bdcache_maxcnt / 2, tp->rx_std_max_post);
9612         host_rep_thresh = max_t(u32, tp->rx_pending / 8, 1);
9613
9614         val = min(nic_rep_thresh, host_rep_thresh);
9615         tw32(RCVBDI_STD_THRESH, val);
9616
9617         if (tg3_flag(tp, 57765_PLUS))
9618                 tw32(STD_REPLENISH_LWM, bdcache_maxcnt);
9619
9620         if (!tg3_flag(tp, JUMBO_CAPABLE) || tg3_flag(tp, 5780_CLASS))
9621                 return;
9622
9623         bdcache_maxcnt = TG3_SRAM_RX_JMB_BDCACHE_SIZE_5700;
9624
9625         host_rep_thresh = max_t(u32, tp->rx_jumbo_pending / 8, 1);
9626
9627         val = min(bdcache_maxcnt / 2, host_rep_thresh);
9628         tw32(RCVBDI_JUMBO_THRESH, val);
9629
9630         if (tg3_flag(tp, 57765_PLUS))
9631                 tw32(JMB_REPLENISH_LWM, bdcache_maxcnt);
9632 }
9633
9634 static inline u32 calc_crc(unsigned char *buf, int len)
9635 {
9636         u32 reg;
9637         u32 tmp;
9638         int j, k;
9639
9640         reg = 0xffffffff;
9641
9642         for (j = 0; j < len; j++) {
9643                 reg ^= buf[j];
9644
9645                 for (k = 0; k < 8; k++) {
9646                         tmp = reg & 0x01;
9647
9648                         reg >>= 1;
9649
9650                         if (tmp)
9651                                 reg ^= 0xedb88320;
9652                 }
9653         }
9654
9655         return ~reg;
9656 }
9657
9658 static void tg3_set_multi(struct tg3 *tp, unsigned int accept_all)
9659 {
9660         /* accept or reject all multicast frames */
9661         tw32(MAC_HASH_REG_0, accept_all ? 0xffffffff : 0);
9662         tw32(MAC_HASH_REG_1, accept_all ? 0xffffffff : 0);
9663         tw32(MAC_HASH_REG_2, accept_all ? 0xffffffff : 0);
9664         tw32(MAC_HASH_REG_3, accept_all ? 0xffffffff : 0);
9665 }
9666
9667 static void __tg3_set_rx_mode(struct net_device *dev)
9668 {
9669         struct tg3 *tp = netdev_priv(dev);
9670         u32 rx_mode;
9671
9672         rx_mode = tp->rx_mode & ~(RX_MODE_PROMISC |
9673                                   RX_MODE_KEEP_VLAN_TAG);
9674
9675 #if !defined(CONFIG_VLAN_8021Q) && !defined(CONFIG_VLAN_8021Q_MODULE)
9676         /* When ASF is in use, we always keep the RX_MODE_KEEP_VLAN_TAG
9677          * flag clear.
9678          */
9679         if (!tg3_flag(tp, ENABLE_ASF))
9680                 rx_mode |= RX_MODE_KEEP_VLAN_TAG;
9681 #endif
9682
9683         if (dev->flags & IFF_PROMISC) {
9684                 /* Promiscuous mode. */
9685                 rx_mode |= RX_MODE_PROMISC;
9686         } else if (dev->flags & IFF_ALLMULTI) {
9687                 /* Accept all multicast. */
9688                 tg3_set_multi(tp, 1);
9689         } else if (netdev_mc_empty(dev)) {
9690                 /* Reject all multicast. */
9691                 tg3_set_multi(tp, 0);
9692         } else {
9693                 /* Accept one or more multicast(s). */
9694                 struct netdev_hw_addr *ha;
9695                 u32 mc_filter[4] = { 0, };
9696                 u32 regidx;
9697                 u32 bit;
9698                 u32 crc;
9699
9700                 netdev_for_each_mc_addr(ha, dev) {
9701                         crc = calc_crc(ha->addr, ETH_ALEN);
9702                         bit = ~crc & 0x7f;
9703                         regidx = (bit & 0x60) >> 5;
9704                         bit &= 0x1f;
9705                         mc_filter[regidx] |= (1 << bit);
9706                 }
9707
9708                 tw32(MAC_HASH_REG_0, mc_filter[0]);
9709                 tw32(MAC_HASH_REG_1, mc_filter[1]);
9710                 tw32(MAC_HASH_REG_2, mc_filter[2]);
9711                 tw32(MAC_HASH_REG_3, mc_filter[3]);
9712         }
9713
9714         if (netdev_uc_count(dev) > TG3_MAX_UCAST_ADDR(tp)) {
9715                 rx_mode |= RX_MODE_PROMISC;
9716         } else if (!(dev->flags & IFF_PROMISC)) {
9717                 /* Add all entries into to the mac addr filter list */
9718                 int i = 0;
9719                 struct netdev_hw_addr *ha;
9720
9721                 netdev_for_each_uc_addr(ha, dev) {
9722                         __tg3_set_one_mac_addr(tp, ha->addr,
9723                                                i + TG3_UCAST_ADDR_IDX(tp));
9724                         i++;
9725                 }
9726         }
9727
9728         if (rx_mode != tp->rx_mode) {
9729                 tp->rx_mode = rx_mode;
9730                 tw32_f(MAC_RX_MODE, rx_mode);
9731                 udelay(10);
9732         }
9733 }
9734
9735 static void tg3_rss_init_dflt_indir_tbl(struct tg3 *tp, u32 qcnt)
9736 {
9737         int i;
9738
9739         for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
9740                 tp->rss_ind_tbl[i] = ethtool_rxfh_indir_default(i, qcnt);
9741 }
9742
9743 static void tg3_rss_check_indir_tbl(struct tg3 *tp)
9744 {
9745         int i;
9746
9747         if (!tg3_flag(tp, SUPPORT_MSIX))
9748                 return;
9749
9750         if (tp->rxq_cnt == 1) {
9751                 memset(&tp->rss_ind_tbl[0], 0, sizeof(tp->rss_ind_tbl));
9752                 return;
9753         }
9754
9755         /* Validate table against current IRQ count */
9756         for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++) {
9757                 if (tp->rss_ind_tbl[i] >= tp->rxq_cnt)
9758                         break;
9759         }
9760
9761         if (i != TG3_RSS_INDIR_TBL_SIZE)
9762                 tg3_rss_init_dflt_indir_tbl(tp, tp->rxq_cnt);
9763 }
9764
9765 static void tg3_rss_write_indir_tbl(struct tg3 *tp)
9766 {
9767         int i = 0;
9768         u32 reg = MAC_RSS_INDIR_TBL_0;
9769
9770         while (i < TG3_RSS_INDIR_TBL_SIZE) {
9771                 u32 val = tp->rss_ind_tbl[i];
9772                 i++;
9773                 for (; i % 8; i++) {
9774                         val <<= 4;
9775                         val |= tp->rss_ind_tbl[i];
9776                 }
9777                 tw32(reg, val);
9778                 reg += 4;
9779         }
9780 }
9781
9782 static inline u32 tg3_lso_rd_dma_workaround_bit(struct tg3 *tp)
9783 {
9784         if (tg3_asic_rev(tp) == ASIC_REV_5719)
9785                 return TG3_LSO_RD_DMA_TX_LENGTH_WA_5719;
9786         else
9787                 return TG3_LSO_RD_DMA_TX_LENGTH_WA_5720;
9788 }
9789
9790 /* tp->lock is held. */
9791 static int tg3_reset_hw(struct tg3 *tp, bool reset_phy)
9792 {
9793         u32 val, rdmac_mode;
9794         int i, err, limit;
9795         struct tg3_rx_prodring_set *tpr = &tp->napi[0].prodring;
9796
9797         tg3_disable_ints(tp);
9798
9799         tg3_stop_fw(tp);
9800
9801         tg3_write_sig_pre_reset(tp, RESET_KIND_INIT);
9802
9803         if (tg3_flag(tp, INIT_COMPLETE))
9804                 tg3_abort_hw(tp, 1);
9805
9806         if ((tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN) &&
9807             !(tp->phy_flags & TG3_PHYFLG_USER_CONFIGURED)) {
9808                 tg3_phy_pull_config(tp);
9809                 tg3_eee_pull_config(tp, NULL);
9810                 tp->phy_flags |= TG3_PHYFLG_USER_CONFIGURED;
9811         }
9812
9813         /* Enable MAC control of LPI */
9814         if (tp->phy_flags & TG3_PHYFLG_EEE_CAP)
9815                 tg3_setup_eee(tp);
9816
9817         if (reset_phy)
9818                 tg3_phy_reset(tp);
9819
9820         err = tg3_chip_reset(tp);
9821         if (err)
9822                 return err;
9823
9824         tg3_write_sig_legacy(tp, RESET_KIND_INIT);
9825
9826         if (tg3_chip_rev(tp) == CHIPREV_5784_AX) {
9827                 val = tr32(TG3_CPMU_CTRL);
9828                 val &= ~(CPMU_CTRL_LINK_AWARE_MODE | CPMU_CTRL_LINK_IDLE_MODE);
9829                 tw32(TG3_CPMU_CTRL, val);
9830
9831                 val = tr32(TG3_CPMU_LSPD_10MB_CLK);
9832                 val &= ~CPMU_LSPD_10MB_MACCLK_MASK;
9833                 val |= CPMU_LSPD_10MB_MACCLK_6_25;
9834                 tw32(TG3_CPMU_LSPD_10MB_CLK, val);
9835
9836                 val = tr32(TG3_CPMU_LNK_AWARE_PWRMD);
9837                 val &= ~CPMU_LNK_AWARE_MACCLK_MASK;
9838                 val |= CPMU_LNK_AWARE_MACCLK_6_25;
9839                 tw32(TG3_CPMU_LNK_AWARE_PWRMD, val);
9840
9841                 val = tr32(TG3_CPMU_HST_ACC);
9842                 val &= ~CPMU_HST_ACC_MACCLK_MASK;
9843                 val |= CPMU_HST_ACC_MACCLK_6_25;
9844                 tw32(TG3_CPMU_HST_ACC, val);
9845         }
9846
9847         if (tg3_asic_rev(tp) == ASIC_REV_57780) {
9848                 val = tr32(PCIE_PWR_MGMT_THRESH) & ~PCIE_PWR_MGMT_L1_THRESH_MSK;
9849                 val |= PCIE_PWR_MGMT_EXT_ASPM_TMR_EN |
9850                        PCIE_PWR_MGMT_L1_THRESH_4MS;
9851                 tw32(PCIE_PWR_MGMT_THRESH, val);
9852
9853                 val = tr32(TG3_PCIE_EIDLE_DELAY) & ~TG3_PCIE_EIDLE_DELAY_MASK;
9854                 tw32(TG3_PCIE_EIDLE_DELAY, val | TG3_PCIE_EIDLE_DELAY_13_CLKS);
9855
9856                 tw32(TG3_CORR_ERR_STAT, TG3_CORR_ERR_STAT_CLEAR);
9857
9858                 val = tr32(TG3_PCIE_LNKCTL) & ~TG3_PCIE_LNKCTL_L1_PLL_PD_EN;
9859                 tw32(TG3_PCIE_LNKCTL, val | TG3_PCIE_LNKCTL_L1_PLL_PD_DIS);
9860         }
9861
9862         if (tg3_flag(tp, L1PLLPD_EN)) {
9863                 u32 grc_mode = tr32(GRC_MODE);
9864
9865                 /* Access the lower 1K of PL PCIE block registers. */
9866                 val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
9867                 tw32(GRC_MODE, val | GRC_MODE_PCIE_PL_SEL);
9868
9869                 val = tr32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL1);
9870                 tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL1,
9871                      val | TG3_PCIE_PL_LO_PHYCTL1_L1PLLPD_EN);
9872
9873                 tw32(GRC_MODE, grc_mode);
9874         }
9875
9876         if (tg3_flag(tp, 57765_CLASS)) {
9877                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_57765_A0) {
9878                         u32 grc_mode = tr32(GRC_MODE);
9879
9880                         /* Access the lower 1K of PL PCIE block registers. */
9881                         val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
9882                         tw32(GRC_MODE, val | GRC_MODE_PCIE_PL_SEL);
9883
9884                         val = tr32(TG3_PCIE_TLDLPL_PORT +
9885                                    TG3_PCIE_PL_LO_PHYCTL5);
9886                         tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL5,
9887                              val | TG3_PCIE_PL_LO_PHYCTL5_DIS_L2CLKREQ);
9888
9889                         tw32(GRC_MODE, grc_mode);
9890                 }
9891
9892                 if (tg3_chip_rev(tp) != CHIPREV_57765_AX) {
9893                         u32 grc_mode;
9894
9895                         /* Fix transmit hangs */
9896                         val = tr32(TG3_CPMU_PADRNG_CTL);
9897                         val |= TG3_CPMU_PADRNG_CTL_RDIV2;
9898                         tw32(TG3_CPMU_PADRNG_CTL, val);
9899
9900                         grc_mode = tr32(GRC_MODE);
9901
9902                         /* Access the lower 1K of DL PCIE block registers. */
9903                         val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
9904                         tw32(GRC_MODE, val | GRC_MODE_PCIE_DL_SEL);
9905
9906                         val = tr32(TG3_PCIE_TLDLPL_PORT +
9907                                    TG3_PCIE_DL_LO_FTSMAX);
9908                         val &= ~TG3_PCIE_DL_LO_FTSMAX_MSK;
9909                         tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_DL_LO_FTSMAX,
9910                              val | TG3_PCIE_DL_LO_FTSMAX_VAL);
9911
9912                         tw32(GRC_MODE, grc_mode);
9913                 }
9914
9915                 val = tr32(TG3_CPMU_LSPD_10MB_CLK);
9916                 val &= ~CPMU_LSPD_10MB_MACCLK_MASK;
9917                 val |= CPMU_LSPD_10MB_MACCLK_6_25;
9918                 tw32(TG3_CPMU_LSPD_10MB_CLK, val);
9919         }
9920
9921         /* This works around an issue with Athlon chipsets on
9922          * B3 tigon3 silicon.  This bit has no effect on any
9923          * other revision.  But do not set this on PCI Express
9924          * chips and don't even touch the clocks if the CPMU is present.
9925          */
9926         if (!tg3_flag(tp, CPMU_PRESENT)) {
9927                 if (!tg3_flag(tp, PCI_EXPRESS))
9928                         tp->pci_clock_ctrl |= CLOCK_CTRL_DELAY_PCI_GRANT;
9929                 tw32_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl);
9930         }
9931
9932         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5704_A0 &&
9933             tg3_flag(tp, PCIX_MODE)) {
9934                 val = tr32(TG3PCI_PCISTATE);
9935                 val |= PCISTATE_RETRY_SAME_DMA;
9936                 tw32(TG3PCI_PCISTATE, val);
9937         }
9938
9939         if (tg3_flag(tp, ENABLE_APE)) {
9940                 /* Allow reads and writes to the
9941                  * APE register and memory space.
9942                  */
9943                 val = tr32(TG3PCI_PCISTATE);
9944                 val |= PCISTATE_ALLOW_APE_CTLSPC_WR |
9945                        PCISTATE_ALLOW_APE_SHMEM_WR |
9946                        PCISTATE_ALLOW_APE_PSPACE_WR;
9947                 tw32(TG3PCI_PCISTATE, val);
9948         }
9949
9950         if (tg3_chip_rev(tp) == CHIPREV_5704_BX) {
9951                 /* Enable some hw fixes.  */
9952                 val = tr32(TG3PCI_MSI_DATA);
9953                 val |= (1 << 26) | (1 << 28) | (1 << 29);
9954                 tw32(TG3PCI_MSI_DATA, val);
9955         }
9956
9957         /* Descriptor ring init may make accesses to the
9958          * NIC SRAM area to setup the TX descriptors, so we
9959          * can only do this after the hardware has been
9960          * successfully reset.
9961          */
9962         err = tg3_init_rings(tp);
9963         if (err)
9964                 return err;
9965
9966         if (tg3_flag(tp, 57765_PLUS)) {
9967                 val = tr32(TG3PCI_DMA_RW_CTRL) &
9968                       ~DMA_RWCTRL_DIS_CACHE_ALIGNMENT;
9969                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_57765_A0)
9970                         val &= ~DMA_RWCTRL_CRDRDR_RDMA_MRRS_MSK;
9971                 if (!tg3_flag(tp, 57765_CLASS) &&
9972                     tg3_asic_rev(tp) != ASIC_REV_5717 &&
9973                     tg3_asic_rev(tp) != ASIC_REV_5762)
9974                         val |= DMA_RWCTRL_TAGGED_STAT_WA;
9975                 tw32(TG3PCI_DMA_RW_CTRL, val | tp->dma_rwctrl);
9976         } else if (tg3_asic_rev(tp) != ASIC_REV_5784 &&
9977                    tg3_asic_rev(tp) != ASIC_REV_5761) {
9978                 /* This value is determined during the probe time DMA
9979                  * engine test, tg3_test_dma.
9980                  */
9981                 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
9982         }
9983
9984         tp->grc_mode &= ~(GRC_MODE_HOST_SENDBDS |
9985                           GRC_MODE_4X_NIC_SEND_RINGS |
9986                           GRC_MODE_NO_TX_PHDR_CSUM |
9987                           GRC_MODE_NO_RX_PHDR_CSUM);
9988         tp->grc_mode |= GRC_MODE_HOST_SENDBDS;
9989
9990         /* Pseudo-header checksum is done by hardware logic and not
9991          * the offload processers, so make the chip do the pseudo-
9992          * header checksums on receive.  For transmit it is more
9993          * convenient to do the pseudo-header checksum in software
9994          * as Linux does that on transmit for us in all cases.
9995          */
9996         tp->grc_mode |= GRC_MODE_NO_TX_PHDR_CSUM;
9997
9998         val = GRC_MODE_IRQ_ON_MAC_ATTN | GRC_MODE_HOST_STACKUP;
9999         if (tp->rxptpctl)
10000                 tw32(TG3_RX_PTP_CTL,
10001                      tp->rxptpctl | TG3_RX_PTP_CTL_HWTS_INTERLOCK);
10002
10003         if (tg3_flag(tp, PTP_CAPABLE))
10004                 val |= GRC_MODE_TIME_SYNC_ENABLE;
10005
10006         tw32(GRC_MODE, tp->grc_mode | val);
10007
10008         /* Setup the timer prescalar register.  Clock is always 66Mhz. */
10009         val = tr32(GRC_MISC_CFG);
10010         val &= ~0xff;
10011         val |= (65 << GRC_MISC_CFG_PRESCALAR_SHIFT);
10012         tw32(GRC_MISC_CFG, val);
10013
10014         /* Initialize MBUF/DESC pool. */
10015         if (tg3_flag(tp, 5750_PLUS)) {
10016                 /* Do nothing.  */
10017         } else if (tg3_asic_rev(tp) != ASIC_REV_5705) {
10018                 tw32(BUFMGR_MB_POOL_ADDR, NIC_SRAM_MBUF_POOL_BASE);
10019                 if (tg3_asic_rev(tp) == ASIC_REV_5704)
10020                         tw32(BUFMGR_MB_POOL_SIZE, NIC_SRAM_MBUF_POOL_SIZE64);
10021                 else
10022                         tw32(BUFMGR_MB_POOL_SIZE, NIC_SRAM_MBUF_POOL_SIZE96);
10023                 tw32(BUFMGR_DMA_DESC_POOL_ADDR, NIC_SRAM_DMA_DESC_POOL_BASE);
10024                 tw32(BUFMGR_DMA_DESC_POOL_SIZE, NIC_SRAM_DMA_DESC_POOL_SIZE);
10025         } else if (tg3_flag(tp, TSO_CAPABLE)) {
10026                 int fw_len;
10027
10028                 fw_len = tp->fw_len;
10029                 fw_len = (fw_len + (0x80 - 1)) & ~(0x80 - 1);
10030                 tw32(BUFMGR_MB_POOL_ADDR,
10031                      NIC_SRAM_MBUF_POOL_BASE5705 + fw_len);
10032                 tw32(BUFMGR_MB_POOL_SIZE,
10033                      NIC_SRAM_MBUF_POOL_SIZE5705 - fw_len - 0xa00);
10034         }
10035
10036         if (tp->dev->mtu <= ETH_DATA_LEN) {
10037                 tw32(BUFMGR_MB_RDMA_LOW_WATER,
10038                      tp->bufmgr_config.mbuf_read_dma_low_water);
10039                 tw32(BUFMGR_MB_MACRX_LOW_WATER,
10040                      tp->bufmgr_config.mbuf_mac_rx_low_water);
10041                 tw32(BUFMGR_MB_HIGH_WATER,
10042                      tp->bufmgr_config.mbuf_high_water);
10043         } else {
10044                 tw32(BUFMGR_MB_RDMA_LOW_WATER,
10045                      tp->bufmgr_config.mbuf_read_dma_low_water_jumbo);
10046                 tw32(BUFMGR_MB_MACRX_LOW_WATER,
10047                      tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo);
10048                 tw32(BUFMGR_MB_HIGH_WATER,
10049                      tp->bufmgr_config.mbuf_high_water_jumbo);
10050         }
10051         tw32(BUFMGR_DMA_LOW_WATER,
10052              tp->bufmgr_config.dma_low_water);
10053         tw32(BUFMGR_DMA_HIGH_WATER,
10054              tp->bufmgr_config.dma_high_water);
10055
10056         val = BUFMGR_MODE_ENABLE | BUFMGR_MODE_ATTN_ENABLE;
10057         if (tg3_asic_rev(tp) == ASIC_REV_5719)
10058                 val |= BUFMGR_MODE_NO_TX_UNDERRUN;
10059         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
10060             tg3_asic_rev(tp) == ASIC_REV_5762 ||
10061             tg3_chip_rev_id(tp) == CHIPREV_ID_5719_A0 ||
10062             tg3_chip_rev_id(tp) == CHIPREV_ID_5720_A0)
10063                 val |= BUFMGR_MODE_MBLOW_ATTN_ENAB;
10064         tw32(BUFMGR_MODE, val);
10065         for (i = 0; i < 2000; i++) {
10066                 if (tr32(BUFMGR_MODE) & BUFMGR_MODE_ENABLE)
10067                         break;
10068                 udelay(10);
10069         }
10070         if (i >= 2000) {
10071                 netdev_err(tp->dev, "%s cannot enable BUFMGR\n", __func__);
10072                 return -ENODEV;
10073         }
10074
10075         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5906_A1)
10076                 tw32(ISO_PKT_TX, (tr32(ISO_PKT_TX) & ~0x3) | 0x2);
10077
10078         tg3_setup_rxbd_thresholds(tp);
10079
10080         /* Initialize TG3_BDINFO's at:
10081          *  RCVDBDI_STD_BD:     standard eth size rx ring
10082          *  RCVDBDI_JUMBO_BD:   jumbo frame rx ring
10083          *  RCVDBDI_MINI_BD:    small frame rx ring (??? does not work)
10084          *
10085          * like so:
10086          *  TG3_BDINFO_HOST_ADDR:       high/low parts of DMA address of ring
10087          *  TG3_BDINFO_MAXLEN_FLAGS:    (rx max buffer size << 16) |
10088          *                              ring attribute flags
10089          *  TG3_BDINFO_NIC_ADDR:        location of descriptors in nic SRAM
10090          *
10091          * Standard receive ring @ NIC_SRAM_RX_BUFFER_DESC, 512 entries.
10092          * Jumbo receive ring @ NIC_SRAM_RX_JUMBO_BUFFER_DESC, 256 entries.
10093          *
10094          * The size of each ring is fixed in the firmware, but the location is
10095          * configurable.
10096          */
10097         tw32(RCVDBDI_STD_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH,
10098              ((u64) tpr->rx_std_mapping >> 32));
10099         tw32(RCVDBDI_STD_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW,
10100              ((u64) tpr->rx_std_mapping & 0xffffffff));
10101         if (!tg3_flag(tp, 5717_PLUS))
10102                 tw32(RCVDBDI_STD_BD + TG3_BDINFO_NIC_ADDR,
10103                      NIC_SRAM_RX_BUFFER_DESC);
10104
10105         /* Disable the mini ring */
10106         if (!tg3_flag(tp, 5705_PLUS))
10107                 tw32(RCVDBDI_MINI_BD + TG3_BDINFO_MAXLEN_FLAGS,
10108                      BDINFO_FLAGS_DISABLED);
10109
10110         /* Program the jumbo buffer descriptor ring control
10111          * blocks on those devices that have them.
10112          */
10113         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5719_A0 ||
10114             (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS))) {
10115
10116                 if (tg3_flag(tp, JUMBO_RING_ENABLE)) {
10117                         tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH,
10118                              ((u64) tpr->rx_jmb_mapping >> 32));
10119                         tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW,
10120                              ((u64) tpr->rx_jmb_mapping & 0xffffffff));
10121                         val = TG3_RX_JMB_RING_SIZE(tp) <<
10122                               BDINFO_FLAGS_MAXLEN_SHIFT;
10123                         tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_MAXLEN_FLAGS,
10124                              val | BDINFO_FLAGS_USE_EXT_RECV);
10125                         if (!tg3_flag(tp, USE_JUMBO_BDFLAG) ||
10126                             tg3_flag(tp, 57765_CLASS) ||
10127                             tg3_asic_rev(tp) == ASIC_REV_5762)
10128                                 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_NIC_ADDR,
10129                                      NIC_SRAM_RX_JUMBO_BUFFER_DESC);
10130                 } else {
10131                         tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_MAXLEN_FLAGS,
10132                              BDINFO_FLAGS_DISABLED);
10133                 }
10134
10135                 if (tg3_flag(tp, 57765_PLUS)) {
10136                         val = TG3_RX_STD_RING_SIZE(tp);
10137                         val <<= BDINFO_FLAGS_MAXLEN_SHIFT;
10138                         val |= (TG3_RX_STD_DMA_SZ << 2);
10139                 } else
10140                         val = TG3_RX_STD_DMA_SZ << BDINFO_FLAGS_MAXLEN_SHIFT;
10141         } else
10142                 val = TG3_RX_STD_MAX_SIZE_5700 << BDINFO_FLAGS_MAXLEN_SHIFT;
10143
10144         tw32(RCVDBDI_STD_BD + TG3_BDINFO_MAXLEN_FLAGS, val);
10145
10146         tpr->rx_std_prod_idx = tp->rx_pending;
10147         tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG, tpr->rx_std_prod_idx);
10148
10149         tpr->rx_jmb_prod_idx =
10150                 tg3_flag(tp, JUMBO_RING_ENABLE) ? tp->rx_jumbo_pending : 0;
10151         tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG, tpr->rx_jmb_prod_idx);
10152
10153         tg3_rings_reset(tp);
10154
10155         /* Initialize MAC address and backoff seed. */
10156         __tg3_set_mac_addr(tp, false);
10157
10158         /* MTU + ethernet header + FCS + optional VLAN tag */
10159         tw32(MAC_RX_MTU_SIZE,
10160              tp->dev->mtu + ETH_HLEN + ETH_FCS_LEN + VLAN_HLEN);
10161
10162         /* The slot time is changed by tg3_setup_phy if we
10163          * run at gigabit with half duplex.
10164          */
10165         val = (2 << TX_LENGTHS_IPG_CRS_SHIFT) |
10166               (6 << TX_LENGTHS_IPG_SHIFT) |
10167               (32 << TX_LENGTHS_SLOT_TIME_SHIFT);
10168
10169         if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
10170             tg3_asic_rev(tp) == ASIC_REV_5762)
10171                 val |= tr32(MAC_TX_LENGTHS) &
10172                        (TX_LENGTHS_JMB_FRM_LEN_MSK |
10173                         TX_LENGTHS_CNT_DWN_VAL_MSK);
10174
10175         tw32(MAC_TX_LENGTHS, val);
10176
10177         /* Receive rules. */
10178         tw32(MAC_RCV_RULE_CFG, RCV_RULE_CFG_DEFAULT_CLASS);
10179         tw32(RCVLPC_CONFIG, 0x0181);
10180
10181         /* Calculate RDMAC_MODE setting early, we need it to determine
10182          * the RCVLPC_STATE_ENABLE mask.
10183          */
10184         rdmac_mode = (RDMAC_MODE_ENABLE | RDMAC_MODE_TGTABORT_ENAB |
10185                       RDMAC_MODE_MSTABORT_ENAB | RDMAC_MODE_PARITYERR_ENAB |
10186                       RDMAC_MODE_ADDROFLOW_ENAB | RDMAC_MODE_FIFOOFLOW_ENAB |
10187                       RDMAC_MODE_FIFOURUN_ENAB | RDMAC_MODE_FIFOOREAD_ENAB |
10188                       RDMAC_MODE_LNGREAD_ENAB);
10189
10190         if (tg3_asic_rev(tp) == ASIC_REV_5717)
10191                 rdmac_mode |= RDMAC_MODE_MULT_DMA_RD_DIS;
10192
10193         if (tg3_asic_rev(tp) == ASIC_REV_5784 ||
10194             tg3_asic_rev(tp) == ASIC_REV_5785 ||
10195             tg3_asic_rev(tp) == ASIC_REV_57780)
10196                 rdmac_mode |= RDMAC_MODE_BD_SBD_CRPT_ENAB |
10197                               RDMAC_MODE_MBUF_RBD_CRPT_ENAB |
10198                               RDMAC_MODE_MBUF_SBD_CRPT_ENAB;
10199
10200         if (tg3_asic_rev(tp) == ASIC_REV_5705 &&
10201             tg3_chip_rev_id(tp) != CHIPREV_ID_5705_A0) {
10202                 if (tg3_flag(tp, TSO_CAPABLE) &&
10203                     tg3_asic_rev(tp) == ASIC_REV_5705) {
10204                         rdmac_mode |= RDMAC_MODE_FIFO_SIZE_128;
10205                 } else if (!(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH) &&
10206                            !tg3_flag(tp, IS_5788)) {
10207                         rdmac_mode |= RDMAC_MODE_FIFO_LONG_BURST;
10208                 }
10209         }
10210
10211         if (tg3_flag(tp, PCI_EXPRESS))
10212                 rdmac_mode |= RDMAC_MODE_FIFO_LONG_BURST;
10213
10214         if (tg3_asic_rev(tp) == ASIC_REV_57766) {
10215                 tp->dma_limit = 0;
10216                 if (tp->dev->mtu <= ETH_DATA_LEN) {
10217                         rdmac_mode |= RDMAC_MODE_JMB_2K_MMRR;
10218                         tp->dma_limit = TG3_TX_BD_DMA_MAX_2K;
10219                 }
10220         }
10221
10222         if (tg3_flag(tp, HW_TSO_1) ||
10223             tg3_flag(tp, HW_TSO_2) ||
10224             tg3_flag(tp, HW_TSO_3))
10225                 rdmac_mode |= RDMAC_MODE_IPV4_LSO_EN;
10226
10227         if (tg3_flag(tp, 57765_PLUS) ||
10228             tg3_asic_rev(tp) == ASIC_REV_5785 ||
10229             tg3_asic_rev(tp) == ASIC_REV_57780)
10230                 rdmac_mode |= RDMAC_MODE_IPV6_LSO_EN;
10231
10232         if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
10233             tg3_asic_rev(tp) == ASIC_REV_5762)
10234                 rdmac_mode |= tr32(RDMAC_MODE) & RDMAC_MODE_H2BNC_VLAN_DET;
10235
10236         if (tg3_asic_rev(tp) == ASIC_REV_5761 ||
10237             tg3_asic_rev(tp) == ASIC_REV_5784 ||
10238             tg3_asic_rev(tp) == ASIC_REV_5785 ||
10239             tg3_asic_rev(tp) == ASIC_REV_57780 ||
10240             tg3_flag(tp, 57765_PLUS)) {
10241                 u32 tgtreg;
10242
10243                 if (tg3_asic_rev(tp) == ASIC_REV_5762)
10244                         tgtreg = TG3_RDMA_RSRVCTRL_REG2;
10245                 else
10246                         tgtreg = TG3_RDMA_RSRVCTRL_REG;
10247
10248                 val = tr32(tgtreg);
10249                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5719_A0 ||
10250                     tg3_asic_rev(tp) == ASIC_REV_5762) {
10251                         val &= ~(TG3_RDMA_RSRVCTRL_TXMRGN_MASK |
10252                                  TG3_RDMA_RSRVCTRL_FIFO_LWM_MASK |
10253                                  TG3_RDMA_RSRVCTRL_FIFO_HWM_MASK);
10254                         val |= TG3_RDMA_RSRVCTRL_TXMRGN_320B |
10255                                TG3_RDMA_RSRVCTRL_FIFO_LWM_1_5K |
10256                                TG3_RDMA_RSRVCTRL_FIFO_HWM_1_5K;
10257                 }
10258                 tw32(tgtreg, val | TG3_RDMA_RSRVCTRL_FIFO_OFLW_FIX);
10259         }
10260
10261         if (tg3_asic_rev(tp) == ASIC_REV_5719 ||
10262             tg3_asic_rev(tp) == ASIC_REV_5720 ||
10263             tg3_asic_rev(tp) == ASIC_REV_5762) {
10264                 u32 tgtreg;
10265
10266                 if (tg3_asic_rev(tp) == ASIC_REV_5762)
10267                         tgtreg = TG3_LSO_RD_DMA_CRPTEN_CTRL2;
10268                 else
10269                         tgtreg = TG3_LSO_RD_DMA_CRPTEN_CTRL;
10270
10271                 val = tr32(tgtreg);
10272                 tw32(tgtreg, val |
10273                      TG3_LSO_RD_DMA_CRPTEN_CTRL_BLEN_BD_4K |
10274                      TG3_LSO_RD_DMA_CRPTEN_CTRL_BLEN_LSO_4K);
10275         }
10276
10277         /* Receive/send statistics. */
10278         if (tg3_flag(tp, 5750_PLUS)) {
10279                 val = tr32(RCVLPC_STATS_ENABLE);
10280                 val &= ~RCVLPC_STATSENAB_DACK_FIX;
10281                 tw32(RCVLPC_STATS_ENABLE, val);
10282         } else if ((rdmac_mode & RDMAC_MODE_FIFO_SIZE_128) &&
10283                    tg3_flag(tp, TSO_CAPABLE)) {
10284                 val = tr32(RCVLPC_STATS_ENABLE);
10285                 val &= ~RCVLPC_STATSENAB_LNGBRST_RFIX;
10286                 tw32(RCVLPC_STATS_ENABLE, val);
10287         } else {
10288                 tw32(RCVLPC_STATS_ENABLE, 0xffffff);
10289         }
10290         tw32(RCVLPC_STATSCTRL, RCVLPC_STATSCTRL_ENABLE);
10291         tw32(SNDDATAI_STATSENAB, 0xffffff);
10292         tw32(SNDDATAI_STATSCTRL,
10293              (SNDDATAI_SCTRL_ENABLE |
10294               SNDDATAI_SCTRL_FASTUPD));
10295
10296         /* Setup host coalescing engine. */
10297         tw32(HOSTCC_MODE, 0);
10298         for (i = 0; i < 2000; i++) {
10299                 if (!(tr32(HOSTCC_MODE) & HOSTCC_MODE_ENABLE))
10300                         break;
10301                 udelay(10);
10302         }
10303
10304         __tg3_set_coalesce(tp, &tp->coal);
10305
10306         if (!tg3_flag(tp, 5705_PLUS)) {
10307                 /* Status/statistics block address.  See tg3_timer,
10308                  * the tg3_periodic_fetch_stats call there, and
10309                  * tg3_get_stats to see how this works for 5705/5750 chips.
10310                  */
10311                 tw32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH,
10312                      ((u64) tp->stats_mapping >> 32));
10313                 tw32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW,
10314                      ((u64) tp->stats_mapping & 0xffffffff));
10315                 tw32(HOSTCC_STATS_BLK_NIC_ADDR, NIC_SRAM_STATS_BLK);
10316
10317                 tw32(HOSTCC_STATUS_BLK_NIC_ADDR, NIC_SRAM_STATUS_BLK);
10318
10319                 /* Clear statistics and status block memory areas */
10320                 for (i = NIC_SRAM_STATS_BLK;
10321                      i < NIC_SRAM_STATUS_BLK + TG3_HW_STATUS_SIZE;
10322                      i += sizeof(u32)) {
10323                         tg3_write_mem(tp, i, 0);
10324                         udelay(40);
10325                 }
10326         }
10327
10328         tw32(HOSTCC_MODE, HOSTCC_MODE_ENABLE | tp->coalesce_mode);
10329
10330         tw32(RCVCC_MODE, RCVCC_MODE_ENABLE | RCVCC_MODE_ATTN_ENABLE);
10331         tw32(RCVLPC_MODE, RCVLPC_MODE_ENABLE);
10332         if (!tg3_flag(tp, 5705_PLUS))
10333                 tw32(RCVLSC_MODE, RCVLSC_MODE_ENABLE | RCVLSC_MODE_ATTN_ENABLE);
10334
10335         if (tp->phy_flags & TG3_PHYFLG_MII_SERDES) {
10336                 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
10337                 /* reset to prevent losing 1st rx packet intermittently */
10338                 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
10339                 udelay(10);
10340         }
10341
10342         tp->mac_mode |= MAC_MODE_TXSTAT_ENABLE | MAC_MODE_RXSTAT_ENABLE |
10343                         MAC_MODE_TDE_ENABLE | MAC_MODE_RDE_ENABLE |
10344                         MAC_MODE_FHDE_ENABLE;
10345         if (tg3_flag(tp, ENABLE_APE))
10346                 tp->mac_mode |= MAC_MODE_APE_TX_EN | MAC_MODE_APE_RX_EN;
10347         if (!tg3_flag(tp, 5705_PLUS) &&
10348             !(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
10349             tg3_asic_rev(tp) != ASIC_REV_5700)
10350                 tp->mac_mode |= MAC_MODE_LINK_POLARITY;
10351         tw32_f(MAC_MODE, tp->mac_mode | MAC_MODE_RXSTAT_CLEAR | MAC_MODE_TXSTAT_CLEAR);
10352         udelay(40);
10353
10354         /* tp->grc_local_ctrl is partially set up during tg3_get_invariants().
10355          * If TG3_FLAG_IS_NIC is zero, we should read the
10356          * register to preserve the GPIO settings for LOMs. The GPIOs,
10357          * whether used as inputs or outputs, are set by boot code after
10358          * reset.
10359          */
10360         if (!tg3_flag(tp, IS_NIC)) {
10361                 u32 gpio_mask;
10362
10363                 gpio_mask = GRC_LCLCTRL_GPIO_OE0 | GRC_LCLCTRL_GPIO_OE1 |
10364                             GRC_LCLCTRL_GPIO_OE2 | GRC_LCLCTRL_GPIO_OUTPUT0 |
10365                             GRC_LCLCTRL_GPIO_OUTPUT1 | GRC_LCLCTRL_GPIO_OUTPUT2;
10366
10367                 if (tg3_asic_rev(tp) == ASIC_REV_5752)
10368                         gpio_mask |= GRC_LCLCTRL_GPIO_OE3 |
10369                                      GRC_LCLCTRL_GPIO_OUTPUT3;
10370
10371                 if (tg3_asic_rev(tp) == ASIC_REV_5755)
10372                         gpio_mask |= GRC_LCLCTRL_GPIO_UART_SEL;
10373
10374                 tp->grc_local_ctrl &= ~gpio_mask;
10375                 tp->grc_local_ctrl |= tr32(GRC_LOCAL_CTRL) & gpio_mask;
10376
10377                 /* GPIO1 must be driven high for eeprom write protect */
10378                 if (tg3_flag(tp, EEPROM_WRITE_PROT))
10379                         tp->grc_local_ctrl |= (GRC_LCLCTRL_GPIO_OE1 |
10380                                                GRC_LCLCTRL_GPIO_OUTPUT1);
10381         }
10382         tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
10383         udelay(100);
10384
10385         if (tg3_flag(tp, USING_MSIX)) {
10386                 val = tr32(MSGINT_MODE);
10387                 val |= MSGINT_MODE_ENABLE;
10388                 if (tp->irq_cnt > 1)
10389                         val |= MSGINT_MODE_MULTIVEC_EN;
10390                 if (!tg3_flag(tp, 1SHOT_MSI))
10391                         val |= MSGINT_MODE_ONE_SHOT_DISABLE;
10392                 tw32(MSGINT_MODE, val);
10393         }
10394
10395         if (!tg3_flag(tp, 5705_PLUS)) {
10396                 tw32_f(DMAC_MODE, DMAC_MODE_ENABLE);
10397                 udelay(40);
10398         }
10399
10400         val = (WDMAC_MODE_ENABLE | WDMAC_MODE_TGTABORT_ENAB |
10401                WDMAC_MODE_MSTABORT_ENAB | WDMAC_MODE_PARITYERR_ENAB |
10402                WDMAC_MODE_ADDROFLOW_ENAB | WDMAC_MODE_FIFOOFLOW_ENAB |
10403                WDMAC_MODE_FIFOURUN_ENAB | WDMAC_MODE_FIFOOREAD_ENAB |
10404                WDMAC_MODE_LNGREAD_ENAB);
10405
10406         if (tg3_asic_rev(tp) == ASIC_REV_5705 &&
10407             tg3_chip_rev_id(tp) != CHIPREV_ID_5705_A0) {
10408                 if (tg3_flag(tp, TSO_CAPABLE) &&
10409                     (tg3_chip_rev_id(tp) == CHIPREV_ID_5705_A1 ||
10410                      tg3_chip_rev_id(tp) == CHIPREV_ID_5705_A2)) {
10411                         /* nothing */
10412                 } else if (!(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH) &&
10413                            !tg3_flag(tp, IS_5788)) {
10414                         val |= WDMAC_MODE_RX_ACCEL;
10415                 }
10416         }
10417
10418         /* Enable host coalescing bug fix */
10419         if (tg3_flag(tp, 5755_PLUS))
10420                 val |= WDMAC_MODE_STATUS_TAG_FIX;
10421
10422         if (tg3_asic_rev(tp) == ASIC_REV_5785)
10423                 val |= WDMAC_MODE_BURST_ALL_DATA;
10424
10425         tw32_f(WDMAC_MODE, val);
10426         udelay(40);
10427
10428         if (tg3_flag(tp, PCIX_MODE)) {
10429                 u16 pcix_cmd;
10430
10431                 pci_read_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
10432                                      &pcix_cmd);
10433                 if (tg3_asic_rev(tp) == ASIC_REV_5703) {
10434                         pcix_cmd &= ~PCI_X_CMD_MAX_READ;
10435                         pcix_cmd |= PCI_X_CMD_READ_2K;
10436                 } else if (tg3_asic_rev(tp) == ASIC_REV_5704) {
10437                         pcix_cmd &= ~(PCI_X_CMD_MAX_SPLIT | PCI_X_CMD_MAX_READ);
10438                         pcix_cmd |= PCI_X_CMD_READ_2K;
10439                 }
10440                 pci_write_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
10441                                       pcix_cmd);
10442         }
10443
10444         tw32_f(RDMAC_MODE, rdmac_mode);
10445         udelay(40);
10446
10447         if (tg3_asic_rev(tp) == ASIC_REV_5719 ||
10448             tg3_asic_rev(tp) == ASIC_REV_5720) {
10449                 for (i = 0; i < TG3_NUM_RDMA_CHANNELS; i++) {
10450                         if (tr32(TG3_RDMA_LENGTH + (i << 2)) > TG3_MAX_MTU(tp))
10451                                 break;
10452                 }
10453                 if (i < TG3_NUM_RDMA_CHANNELS) {
10454                         val = tr32(TG3_LSO_RD_DMA_CRPTEN_CTRL);
10455                         val |= tg3_lso_rd_dma_workaround_bit(tp);
10456                         tw32(TG3_LSO_RD_DMA_CRPTEN_CTRL, val);
10457                         tg3_flag_set(tp, 5719_5720_RDMA_BUG);
10458                 }
10459         }
10460
10461         tw32(RCVDCC_MODE, RCVDCC_MODE_ENABLE | RCVDCC_MODE_ATTN_ENABLE);
10462         if (!tg3_flag(tp, 5705_PLUS))
10463                 tw32(MBFREE_MODE, MBFREE_MODE_ENABLE);
10464
10465         if (tg3_asic_rev(tp) == ASIC_REV_5761)
10466                 tw32(SNDDATAC_MODE,
10467                      SNDDATAC_MODE_ENABLE | SNDDATAC_MODE_CDELAY);
10468         else
10469                 tw32(SNDDATAC_MODE, SNDDATAC_MODE_ENABLE);
10470
10471         tw32(SNDBDC_MODE, SNDBDC_MODE_ENABLE | SNDBDC_MODE_ATTN_ENABLE);
10472         tw32(RCVBDI_MODE, RCVBDI_MODE_ENABLE | RCVBDI_MODE_RCB_ATTN_ENAB);
10473         val = RCVDBDI_MODE_ENABLE | RCVDBDI_MODE_INV_RING_SZ;
10474         if (tg3_flag(tp, LRG_PROD_RING_CAP))
10475                 val |= RCVDBDI_MODE_LRG_RING_SZ;
10476         tw32(RCVDBDI_MODE, val);
10477         tw32(SNDDATAI_MODE, SNDDATAI_MODE_ENABLE);
10478         if (tg3_flag(tp, HW_TSO_1) ||
10479             tg3_flag(tp, HW_TSO_2) ||
10480             tg3_flag(tp, HW_TSO_3))
10481                 tw32(SNDDATAI_MODE, SNDDATAI_MODE_ENABLE | 0x8);
10482         val = SNDBDI_MODE_ENABLE | SNDBDI_MODE_ATTN_ENABLE;
10483         if (tg3_flag(tp, ENABLE_TSS))
10484                 val |= SNDBDI_MODE_MULTI_TXQ_EN;
10485         tw32(SNDBDI_MODE, val);
10486         tw32(SNDBDS_MODE, SNDBDS_MODE_ENABLE | SNDBDS_MODE_ATTN_ENABLE);
10487
10488         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0) {
10489                 err = tg3_load_5701_a0_firmware_fix(tp);
10490                 if (err)
10491                         return err;
10492         }
10493
10494         if (tg3_asic_rev(tp) == ASIC_REV_57766) {
10495                 /* Ignore any errors for the firmware download. If download
10496                  * fails, the device will operate with EEE disabled
10497                  */
10498                 tg3_load_57766_firmware(tp);
10499         }
10500
10501         if (tg3_flag(tp, TSO_CAPABLE)) {
10502                 err = tg3_load_tso_firmware(tp);
10503                 if (err)
10504                         return err;
10505         }
10506
10507         tp->tx_mode = TX_MODE_ENABLE;
10508
10509         if (tg3_flag(tp, 5755_PLUS) ||
10510             tg3_asic_rev(tp) == ASIC_REV_5906)
10511                 tp->tx_mode |= TX_MODE_MBUF_LOCKUP_FIX;
10512
10513         if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
10514             tg3_asic_rev(tp) == ASIC_REV_5762) {
10515                 val = TX_MODE_JMB_FRM_LEN | TX_MODE_CNT_DN_MODE;
10516                 tp->tx_mode &= ~val;
10517                 tp->tx_mode |= tr32(MAC_TX_MODE) & val;
10518         }
10519
10520         tw32_f(MAC_TX_MODE, tp->tx_mode);
10521         udelay(100);
10522
10523         if (tg3_flag(tp, ENABLE_RSS)) {
10524                 tg3_rss_write_indir_tbl(tp);
10525
10526                 /* Setup the "secret" hash key. */
10527                 tw32(MAC_RSS_HASH_KEY_0, 0x5f865437);
10528                 tw32(MAC_RSS_HASH_KEY_1, 0xe4ac62cc);
10529                 tw32(MAC_RSS_HASH_KEY_2, 0x50103a45);
10530                 tw32(MAC_RSS_HASH_KEY_3, 0x36621985);
10531                 tw32(MAC_RSS_HASH_KEY_4, 0xbf14c0e8);
10532                 tw32(MAC_RSS_HASH_KEY_5, 0x1bc27a1e);
10533                 tw32(MAC_RSS_HASH_KEY_6, 0x84f4b556);
10534                 tw32(MAC_RSS_HASH_KEY_7, 0x094ea6fe);
10535                 tw32(MAC_RSS_HASH_KEY_8, 0x7dda01e7);
10536                 tw32(MAC_RSS_HASH_KEY_9, 0xc04d7481);
10537         }
10538
10539         tp->rx_mode = RX_MODE_ENABLE;
10540         if (tg3_flag(tp, 5755_PLUS))
10541                 tp->rx_mode |= RX_MODE_IPV6_CSUM_ENABLE;
10542
10543         if (tg3_asic_rev(tp) == ASIC_REV_5762)
10544                 tp->rx_mode |= RX_MODE_IPV4_FRAG_FIX;
10545
10546         if (tg3_flag(tp, ENABLE_RSS))
10547                 tp->rx_mode |= RX_MODE_RSS_ENABLE |
10548                                RX_MODE_RSS_ITBL_HASH_BITS_7 |
10549                                RX_MODE_RSS_IPV6_HASH_EN |
10550                                RX_MODE_RSS_TCP_IPV6_HASH_EN |
10551                                RX_MODE_RSS_IPV4_HASH_EN |
10552                                RX_MODE_RSS_TCP_IPV4_HASH_EN;
10553
10554         tw32_f(MAC_RX_MODE, tp->rx_mode);
10555         udelay(10);
10556
10557         tw32(MAC_LED_CTRL, tp->led_ctrl);
10558
10559         tw32(MAC_MI_STAT, MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
10560         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
10561                 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
10562                 udelay(10);
10563         }
10564         tw32_f(MAC_RX_MODE, tp->rx_mode);
10565         udelay(10);
10566
10567         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
10568                 if ((tg3_asic_rev(tp) == ASIC_REV_5704) &&
10569                     !(tp->phy_flags & TG3_PHYFLG_SERDES_PREEMPHASIS)) {
10570                         /* Set drive transmission level to 1.2V  */
10571                         /* only if the signal pre-emphasis bit is not set  */
10572                         val = tr32(MAC_SERDES_CFG);
10573                         val &= 0xfffff000;
10574                         val |= 0x880;
10575                         tw32(MAC_SERDES_CFG, val);
10576                 }
10577                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5703_A1)
10578                         tw32(MAC_SERDES_CFG, 0x616000);
10579         }
10580
10581         /* Prevent chip from dropping frames when flow control
10582          * is enabled.
10583          */
10584         if (tg3_flag(tp, 57765_CLASS))
10585                 val = 1;
10586         else
10587                 val = 2;
10588         tw32_f(MAC_LOW_WMARK_MAX_RX_FRAME, val);
10589
10590         if (tg3_asic_rev(tp) == ASIC_REV_5704 &&
10591             (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
10592                 /* Use hardware link auto-negotiation */
10593                 tg3_flag_set(tp, HW_AUTONEG);
10594         }
10595
10596         if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
10597             tg3_asic_rev(tp) == ASIC_REV_5714) {
10598                 u32 tmp;
10599
10600                 tmp = tr32(SERDES_RX_CTRL);
10601                 tw32(SERDES_RX_CTRL, tmp | SERDES_RX_SIG_DETECT);
10602                 tp->grc_local_ctrl &= ~GRC_LCLCTRL_USE_EXT_SIG_DETECT;
10603                 tp->grc_local_ctrl |= GRC_LCLCTRL_USE_SIG_DETECT;
10604                 tw32(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
10605         }
10606
10607         if (!tg3_flag(tp, USE_PHYLIB)) {
10608                 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
10609                         tp->phy_flags &= ~TG3_PHYFLG_IS_LOW_POWER;
10610
10611                 err = tg3_setup_phy(tp, false);
10612                 if (err)
10613                         return err;
10614
10615                 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
10616                     !(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
10617                         u32 tmp;
10618
10619                         /* Clear CRC stats. */
10620                         if (!tg3_readphy(tp, MII_TG3_TEST1, &tmp)) {
10621                                 tg3_writephy(tp, MII_TG3_TEST1,
10622                                              tmp | MII_TG3_TEST1_CRC_EN);
10623                                 tg3_readphy(tp, MII_TG3_RXR_COUNTERS, &tmp);
10624                         }
10625                 }
10626         }
10627
10628         __tg3_set_rx_mode(tp->dev);
10629
10630         /* Initialize receive rules. */
10631         tw32(MAC_RCV_RULE_0,  0xc2000000 & RCV_RULE_DISABLE_MASK);
10632         tw32(MAC_RCV_VALUE_0, 0xffffffff & RCV_RULE_DISABLE_MASK);
10633         tw32(MAC_RCV_RULE_1,  0x86000004 & RCV_RULE_DISABLE_MASK);
10634         tw32(MAC_RCV_VALUE_1, 0xffffffff & RCV_RULE_DISABLE_MASK);
10635
10636         if (tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, 5780_CLASS))
10637                 limit = 8;
10638         else
10639                 limit = 16;
10640         if (tg3_flag(tp, ENABLE_ASF))
10641                 limit -= 4;
10642         switch (limit) {
10643         case 16:
10644                 tw32(MAC_RCV_RULE_15,  0); tw32(MAC_RCV_VALUE_15,  0);
10645         case 15:
10646                 tw32(MAC_RCV_RULE_14,  0); tw32(MAC_RCV_VALUE_14,  0);
10647         case 14:
10648                 tw32(MAC_RCV_RULE_13,  0); tw32(MAC_RCV_VALUE_13,  0);
10649         case 13:
10650                 tw32(MAC_RCV_RULE_12,  0); tw32(MAC_RCV_VALUE_12,  0);
10651         case 12:
10652                 tw32(MAC_RCV_RULE_11,  0); tw32(MAC_RCV_VALUE_11,  0);
10653         case 11:
10654                 tw32(MAC_RCV_RULE_10,  0); tw32(MAC_RCV_VALUE_10,  0);
10655         case 10:
10656                 tw32(MAC_RCV_RULE_9,  0); tw32(MAC_RCV_VALUE_9,  0);
10657         case 9:
10658                 tw32(MAC_RCV_RULE_8,  0); tw32(MAC_RCV_VALUE_8,  0);
10659         case 8:
10660                 tw32(MAC_RCV_RULE_7,  0); tw32(MAC_RCV_VALUE_7,  0);
10661         case 7:
10662                 tw32(MAC_RCV_RULE_6,  0); tw32(MAC_RCV_VALUE_6,  0);
10663         case 6:
10664                 tw32(MAC_RCV_RULE_5,  0); tw32(MAC_RCV_VALUE_5,  0);
10665         case 5:
10666                 tw32(MAC_RCV_RULE_4,  0); tw32(MAC_RCV_VALUE_4,  0);
10667         case 4:
10668                 /* tw32(MAC_RCV_RULE_3,  0); tw32(MAC_RCV_VALUE_3,  0); */
10669         case 3:
10670                 /* tw32(MAC_RCV_RULE_2,  0); tw32(MAC_RCV_VALUE_2,  0); */
10671         case 2:
10672         case 1:
10673
10674         default:
10675                 break;
10676         }
10677
10678         if (tg3_flag(tp, ENABLE_APE))
10679                 /* Write our heartbeat update interval to APE. */
10680                 tg3_ape_write32(tp, TG3_APE_HOST_HEARTBEAT_INT_MS,
10681                                 APE_HOST_HEARTBEAT_INT_DISABLE);
10682
10683         tg3_write_sig_post_reset(tp, RESET_KIND_INIT);
10684
10685         return 0;
10686 }
10687
10688 /* Called at device open time to get the chip ready for
10689  * packet processing.  Invoked with tp->lock held.
10690  */
10691 static int tg3_init_hw(struct tg3 *tp, bool reset_phy)
10692 {
10693         /* Chip may have been just powered on. If so, the boot code may still
10694          * be running initialization. Wait for it to finish to avoid races in
10695          * accessing the hardware.
10696          */
10697         tg3_enable_register_access(tp);
10698         tg3_poll_fw(tp);
10699
10700         tg3_switch_clocks(tp);
10701
10702         tw32(TG3PCI_MEM_WIN_BASE_ADDR, 0);
10703
10704         return tg3_reset_hw(tp, reset_phy);
10705 }
10706
10707 static void tg3_sd_scan_scratchpad(struct tg3 *tp, struct tg3_ocir *ocir)
10708 {
10709         int i;
10710
10711         for (i = 0; i < TG3_SD_NUM_RECS; i++, ocir++) {
10712                 u32 off = i * TG3_OCIR_LEN, len = TG3_OCIR_LEN;
10713
10714                 tg3_ape_scratchpad_read(tp, (u32 *) ocir, off, len);
10715                 off += len;
10716
10717                 if (ocir->signature != TG3_OCIR_SIG_MAGIC ||
10718                     !(ocir->version_flags & TG3_OCIR_FLAG_ACTIVE))
10719                         memset(ocir, 0, TG3_OCIR_LEN);
10720         }
10721 }
10722
10723 /* sysfs attributes for hwmon */
10724 static ssize_t tg3_show_temp(struct device *dev,
10725                              struct device_attribute *devattr, char *buf)
10726 {
10727         struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
10728         struct tg3 *tp = dev_get_drvdata(dev);
10729         u32 temperature;
10730
10731         spin_lock_bh(&tp->lock);
10732         tg3_ape_scratchpad_read(tp, &temperature, attr->index,
10733                                 sizeof(temperature));
10734         spin_unlock_bh(&tp->lock);
10735         return sprintf(buf, "%u\n", temperature);
10736 }
10737
10738
10739 static SENSOR_DEVICE_ATTR(temp1_input, S_IRUGO, tg3_show_temp, NULL,
10740                           TG3_TEMP_SENSOR_OFFSET);
10741 static SENSOR_DEVICE_ATTR(temp1_crit, S_IRUGO, tg3_show_temp, NULL,
10742                           TG3_TEMP_CAUTION_OFFSET);
10743 static SENSOR_DEVICE_ATTR(temp1_max, S_IRUGO, tg3_show_temp, NULL,
10744                           TG3_TEMP_MAX_OFFSET);
10745
10746 static struct attribute *tg3_attrs[] = {
10747         &sensor_dev_attr_temp1_input.dev_attr.attr,
10748         &sensor_dev_attr_temp1_crit.dev_attr.attr,
10749         &sensor_dev_attr_temp1_max.dev_attr.attr,
10750         NULL
10751 };
10752 ATTRIBUTE_GROUPS(tg3);
10753
10754 static void tg3_hwmon_close(struct tg3 *tp)
10755 {
10756         if (tp->hwmon_dev) {
10757                 hwmon_device_unregister(tp->hwmon_dev);
10758                 tp->hwmon_dev = NULL;
10759         }
10760 }
10761
10762 static void tg3_hwmon_open(struct tg3 *tp)
10763 {
10764         int i;
10765         u32 size = 0;
10766         struct pci_dev *pdev = tp->pdev;
10767         struct tg3_ocir ocirs[TG3_SD_NUM_RECS];
10768
10769         tg3_sd_scan_scratchpad(tp, ocirs);
10770
10771         for (i = 0; i < TG3_SD_NUM_RECS; i++) {
10772                 if (!ocirs[i].src_data_length)
10773                         continue;
10774
10775                 size += ocirs[i].src_hdr_length;
10776                 size += ocirs[i].src_data_length;
10777         }
10778
10779         if (!size)
10780                 return;
10781
10782         tp->hwmon_dev = hwmon_device_register_with_groups(&pdev->dev, "tg3",
10783                                                           tp, tg3_groups);
10784         if (IS_ERR(tp->hwmon_dev)) {
10785                 tp->hwmon_dev = NULL;
10786                 dev_err(&pdev->dev, "Cannot register hwmon device, aborting\n");
10787         }
10788 }
10789
10790
10791 #define TG3_STAT_ADD32(PSTAT, REG) \
10792 do {    u32 __val = tr32(REG); \
10793         (PSTAT)->low += __val; \
10794         if ((PSTAT)->low < __val) \
10795                 (PSTAT)->high += 1; \
10796 } while (0)
10797
10798 static void tg3_periodic_fetch_stats(struct tg3 *tp)
10799 {
10800         struct tg3_hw_stats *sp = tp->hw_stats;
10801
10802         if (!tp->link_up)
10803                 return;
10804
10805         TG3_STAT_ADD32(&sp->tx_octets, MAC_TX_STATS_OCTETS);
10806         TG3_STAT_ADD32(&sp->tx_collisions, MAC_TX_STATS_COLLISIONS);
10807         TG3_STAT_ADD32(&sp->tx_xon_sent, MAC_TX_STATS_XON_SENT);
10808         TG3_STAT_ADD32(&sp->tx_xoff_sent, MAC_TX_STATS_XOFF_SENT);
10809         TG3_STAT_ADD32(&sp->tx_mac_errors, MAC_TX_STATS_MAC_ERRORS);
10810         TG3_STAT_ADD32(&sp->tx_single_collisions, MAC_TX_STATS_SINGLE_COLLISIONS);
10811         TG3_STAT_ADD32(&sp->tx_mult_collisions, MAC_TX_STATS_MULT_COLLISIONS);
10812         TG3_STAT_ADD32(&sp->tx_deferred, MAC_TX_STATS_DEFERRED);
10813         TG3_STAT_ADD32(&sp->tx_excessive_collisions, MAC_TX_STATS_EXCESSIVE_COL);
10814         TG3_STAT_ADD32(&sp->tx_late_collisions, MAC_TX_STATS_LATE_COL);
10815         TG3_STAT_ADD32(&sp->tx_ucast_packets, MAC_TX_STATS_UCAST);
10816         TG3_STAT_ADD32(&sp->tx_mcast_packets, MAC_TX_STATS_MCAST);
10817         TG3_STAT_ADD32(&sp->tx_bcast_packets, MAC_TX_STATS_BCAST);
10818         if (unlikely(tg3_flag(tp, 5719_5720_RDMA_BUG) &&
10819                      (sp->tx_ucast_packets.low + sp->tx_mcast_packets.low +
10820                       sp->tx_bcast_packets.low) > TG3_NUM_RDMA_CHANNELS)) {
10821                 u32 val;
10822
10823                 val = tr32(TG3_LSO_RD_DMA_CRPTEN_CTRL);
10824                 val &= ~tg3_lso_rd_dma_workaround_bit(tp);
10825                 tw32(TG3_LSO_RD_DMA_CRPTEN_CTRL, val);
10826                 tg3_flag_clear(tp, 5719_5720_RDMA_BUG);
10827         }
10828
10829         TG3_STAT_ADD32(&sp->rx_octets, MAC_RX_STATS_OCTETS);
10830         TG3_STAT_ADD32(&sp->rx_fragments, MAC_RX_STATS_FRAGMENTS);
10831         TG3_STAT_ADD32(&sp->rx_ucast_packets, MAC_RX_STATS_UCAST);
10832         TG3_STAT_ADD32(&sp->rx_mcast_packets, MAC_RX_STATS_MCAST);
10833         TG3_STAT_ADD32(&sp->rx_bcast_packets, MAC_RX_STATS_BCAST);
10834         TG3_STAT_ADD32(&sp->rx_fcs_errors, MAC_RX_STATS_FCS_ERRORS);
10835         TG3_STAT_ADD32(&sp->rx_align_errors, MAC_RX_STATS_ALIGN_ERRORS);
10836         TG3_STAT_ADD32(&sp->rx_xon_pause_rcvd, MAC_RX_STATS_XON_PAUSE_RECVD);
10837         TG3_STAT_ADD32(&sp->rx_xoff_pause_rcvd, MAC_RX_STATS_XOFF_PAUSE_RECVD);
10838         TG3_STAT_ADD32(&sp->rx_mac_ctrl_rcvd, MAC_RX_STATS_MAC_CTRL_RECVD);
10839         TG3_STAT_ADD32(&sp->rx_xoff_entered, MAC_RX_STATS_XOFF_ENTERED);
10840         TG3_STAT_ADD32(&sp->rx_frame_too_long_errors, MAC_RX_STATS_FRAME_TOO_LONG);
10841         TG3_STAT_ADD32(&sp->rx_jabbers, MAC_RX_STATS_JABBERS);
10842         TG3_STAT_ADD32(&sp->rx_undersize_packets, MAC_RX_STATS_UNDERSIZE);
10843
10844         TG3_STAT_ADD32(&sp->rxbds_empty, RCVLPC_NO_RCV_BD_CNT);
10845         if (tg3_asic_rev(tp) != ASIC_REV_5717 &&
10846             tg3_asic_rev(tp) != ASIC_REV_5762 &&
10847             tg3_chip_rev_id(tp) != CHIPREV_ID_5719_A0 &&
10848             tg3_chip_rev_id(tp) != CHIPREV_ID_5720_A0) {
10849                 TG3_STAT_ADD32(&sp->rx_discards, RCVLPC_IN_DISCARDS_CNT);
10850         } else {
10851                 u32 val = tr32(HOSTCC_FLOW_ATTN);
10852                 val = (val & HOSTCC_FLOW_ATTN_MBUF_LWM) ? 1 : 0;
10853                 if (val) {
10854                         tw32(HOSTCC_FLOW_ATTN, HOSTCC_FLOW_ATTN_MBUF_LWM);
10855                         sp->rx_discards.low += val;
10856                         if (sp->rx_discards.low < val)
10857                                 sp->rx_discards.high += 1;
10858                 }
10859                 sp->mbuf_lwm_thresh_hit = sp->rx_discards;
10860         }
10861         TG3_STAT_ADD32(&sp->rx_errors, RCVLPC_IN_ERRORS_CNT);
10862 }
10863
10864 static void tg3_chk_missed_msi(struct tg3 *tp)
10865 {
10866         u32 i;
10867
10868         for (i = 0; i < tp->irq_cnt; i++) {
10869                 struct tg3_napi *tnapi = &tp->napi[i];
10870
10871                 if (tg3_has_work(tnapi)) {
10872                         if (tnapi->last_rx_cons == tnapi->rx_rcb_ptr &&
10873                             tnapi->last_tx_cons == tnapi->tx_cons) {
10874                                 if (tnapi->chk_msi_cnt < 1) {
10875                                         tnapi->chk_msi_cnt++;
10876                                         return;
10877                                 }
10878                                 tg3_msi(0, tnapi);
10879                         }
10880                 }
10881                 tnapi->chk_msi_cnt = 0;
10882                 tnapi->last_rx_cons = tnapi->rx_rcb_ptr;
10883                 tnapi->last_tx_cons = tnapi->tx_cons;
10884         }
10885 }
10886
10887 static void tg3_timer(unsigned long __opaque)
10888 {
10889         struct tg3 *tp = (struct tg3 *) __opaque;
10890
10891         if (tp->irq_sync || tg3_flag(tp, RESET_TASK_PENDING))
10892                 goto restart_timer;
10893
10894         spin_lock(&tp->lock);
10895
10896         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
10897             tg3_flag(tp, 57765_CLASS))
10898                 tg3_chk_missed_msi(tp);
10899
10900         if (tg3_flag(tp, FLUSH_POSTED_WRITES)) {
10901                 /* BCM4785: Flush posted writes from GbE to host memory. */
10902                 tr32(HOSTCC_MODE);
10903         }
10904
10905         if (!tg3_flag(tp, TAGGED_STATUS)) {
10906                 /* All of this garbage is because when using non-tagged
10907                  * IRQ status the mailbox/status_block protocol the chip
10908                  * uses with the cpu is race prone.
10909                  */
10910                 if (tp->napi[0].hw_status->status & SD_STATUS_UPDATED) {
10911                         tw32(GRC_LOCAL_CTRL,
10912                              tp->grc_local_ctrl | GRC_LCLCTRL_SETINT);
10913                 } else {
10914                         tw32(HOSTCC_MODE, tp->coalesce_mode |
10915                              HOSTCC_MODE_ENABLE | HOSTCC_MODE_NOW);
10916                 }
10917
10918                 if (!(tr32(WDMAC_MODE) & WDMAC_MODE_ENABLE)) {
10919                         spin_unlock(&tp->lock);
10920                         tg3_reset_task_schedule(tp);
10921                         goto restart_timer;
10922                 }
10923         }
10924
10925         /* This part only runs once per second. */
10926         if (!--tp->timer_counter) {
10927                 if (tg3_flag(tp, 5705_PLUS))
10928                         tg3_periodic_fetch_stats(tp);
10929
10930                 if (tp->setlpicnt && !--tp->setlpicnt)
10931                         tg3_phy_eee_enable(tp);
10932
10933                 if (tg3_flag(tp, USE_LINKCHG_REG)) {
10934                         u32 mac_stat;
10935                         int phy_event;
10936
10937                         mac_stat = tr32(MAC_STATUS);
10938
10939                         phy_event = 0;
10940                         if (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT) {
10941                                 if (mac_stat & MAC_STATUS_MI_INTERRUPT)
10942                                         phy_event = 1;
10943                         } else if (mac_stat & MAC_STATUS_LNKSTATE_CHANGED)
10944                                 phy_event = 1;
10945
10946                         if (phy_event)
10947                                 tg3_setup_phy(tp, false);
10948                 } else if (tg3_flag(tp, POLL_SERDES)) {
10949                         u32 mac_stat = tr32(MAC_STATUS);
10950                         int need_setup = 0;
10951
10952                         if (tp->link_up &&
10953                             (mac_stat & MAC_STATUS_LNKSTATE_CHANGED)) {
10954                                 need_setup = 1;
10955                         }
10956                         if (!tp->link_up &&
10957                             (mac_stat & (MAC_STATUS_PCS_SYNCED |
10958                                          MAC_STATUS_SIGNAL_DET))) {
10959                                 need_setup = 1;
10960                         }
10961                         if (need_setup) {
10962                                 if (!tp->serdes_counter) {
10963                                         tw32_f(MAC_MODE,
10964                                              (tp->mac_mode &
10965                                               ~MAC_MODE_PORT_MODE_MASK));
10966                                         udelay(40);
10967                                         tw32_f(MAC_MODE, tp->mac_mode);
10968                                         udelay(40);
10969                                 }
10970                                 tg3_setup_phy(tp, false);
10971                         }
10972                 } else if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
10973                            tg3_flag(tp, 5780_CLASS)) {
10974                         tg3_serdes_parallel_detect(tp);
10975                 } else if (tg3_flag(tp, POLL_CPMU_LINK)) {
10976                         u32 cpmu = tr32(TG3_CPMU_STATUS);
10977                         bool link_up = !((cpmu & TG3_CPMU_STATUS_LINK_MASK) ==
10978                                          TG3_CPMU_STATUS_LINK_MASK);
10979
10980                         if (link_up != tp->link_up)
10981                                 tg3_setup_phy(tp, false);
10982                 }
10983
10984                 tp->timer_counter = tp->timer_multiplier;
10985         }
10986
10987         /* Heartbeat is only sent once every 2 seconds.
10988          *
10989          * The heartbeat is to tell the ASF firmware that the host
10990          * driver is still alive.  In the event that the OS crashes,
10991          * ASF needs to reset the hardware to free up the FIFO space
10992          * that may be filled with rx packets destined for the host.
10993          * If the FIFO is full, ASF will no longer function properly.
10994          *
10995          * Unintended resets have been reported on real time kernels
10996          * where the timer doesn't run on time.  Netpoll will also have
10997          * same problem.
10998          *
10999          * The new FWCMD_NICDRV_ALIVE3 command tells the ASF firmware
11000          * to check the ring condition when the heartbeat is expiring
11001          * before doing the reset.  This will prevent most unintended
11002          * resets.
11003          */
11004         if (!--tp->asf_counter) {
11005                 if (tg3_flag(tp, ENABLE_ASF) && !tg3_flag(tp, ENABLE_APE)) {
11006                         tg3_wait_for_event_ack(tp);
11007
11008                         tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX,
11009                                       FWCMD_NICDRV_ALIVE3);
11010                         tg3_write_mem(tp, NIC_SRAM_FW_CMD_LEN_MBOX, 4);
11011                         tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX,
11012                                       TG3_FW_UPDATE_TIMEOUT_SEC);
11013
11014                         tg3_generate_fw_event(tp);
11015                 }
11016                 tp->asf_counter = tp->asf_multiplier;
11017         }
11018
11019         spin_unlock(&tp->lock);
11020
11021 restart_timer:
11022         tp->timer.expires = jiffies + tp->timer_offset;
11023         add_timer(&tp->timer);
11024 }
11025
11026 static void tg3_timer_init(struct tg3 *tp)
11027 {
11028         if (tg3_flag(tp, TAGGED_STATUS) &&
11029             tg3_asic_rev(tp) != ASIC_REV_5717 &&
11030             !tg3_flag(tp, 57765_CLASS))
11031                 tp->timer_offset = HZ;
11032         else
11033                 tp->timer_offset = HZ / 10;
11034
11035         BUG_ON(tp->timer_offset > HZ);
11036
11037         tp->timer_multiplier = (HZ / tp->timer_offset);
11038         tp->asf_multiplier = (HZ / tp->timer_offset) *
11039                              TG3_FW_UPDATE_FREQ_SEC;
11040
11041         init_timer(&tp->timer);
11042         tp->timer.data = (unsigned long) tp;
11043         tp->timer.function = tg3_timer;
11044 }
11045
11046 static void tg3_timer_start(struct tg3 *tp)
11047 {
11048         tp->asf_counter   = tp->asf_multiplier;
11049         tp->timer_counter = tp->timer_multiplier;
11050
11051         tp->timer.expires = jiffies + tp->timer_offset;
11052         add_timer(&tp->timer);
11053 }
11054
11055 static void tg3_timer_stop(struct tg3 *tp)
11056 {
11057         del_timer_sync(&tp->timer);
11058 }
11059
11060 /* Restart hardware after configuration changes, self-test, etc.
11061  * Invoked with tp->lock held.
11062  */
11063 static int tg3_restart_hw(struct tg3 *tp, bool reset_phy)
11064         __releases(tp->lock)
11065         __acquires(tp->lock)
11066 {
11067         int err;
11068
11069         err = tg3_init_hw(tp, reset_phy);
11070         if (err) {
11071                 netdev_err(tp->dev,
11072                            "Failed to re-initialize device, aborting\n");
11073                 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
11074                 tg3_full_unlock(tp);
11075                 tg3_timer_stop(tp);
11076                 tp->irq_sync = 0;
11077                 tg3_napi_enable(tp);
11078                 dev_close(tp->dev);
11079                 tg3_full_lock(tp, 0);
11080         }
11081         return err;
11082 }
11083
11084 static void tg3_reset_task(struct work_struct *work)
11085 {
11086         struct tg3 *tp = container_of(work, struct tg3, reset_task);
11087         int err;
11088
11089         tg3_full_lock(tp, 0);
11090
11091         if (!netif_running(tp->dev)) {
11092                 tg3_flag_clear(tp, RESET_TASK_PENDING);
11093                 tg3_full_unlock(tp);
11094                 return;
11095         }
11096
11097         tg3_full_unlock(tp);
11098
11099         tg3_phy_stop(tp);
11100
11101         tg3_netif_stop(tp);
11102
11103         tg3_full_lock(tp, 1);
11104
11105         if (tg3_flag(tp, TX_RECOVERY_PENDING)) {
11106                 tp->write32_tx_mbox = tg3_write32_tx_mbox;
11107                 tp->write32_rx_mbox = tg3_write_flush_reg32;
11108                 tg3_flag_set(tp, MBOX_WRITE_REORDER);
11109                 tg3_flag_clear(tp, TX_RECOVERY_PENDING);
11110         }
11111
11112         tg3_halt(tp, RESET_KIND_SHUTDOWN, 0);
11113         err = tg3_init_hw(tp, true);
11114         if (err)
11115                 goto out;
11116
11117         tg3_netif_start(tp);
11118
11119 out:
11120         tg3_full_unlock(tp);
11121
11122         if (!err)
11123                 tg3_phy_start(tp);
11124
11125         tg3_flag_clear(tp, RESET_TASK_PENDING);
11126 }
11127
11128 static int tg3_request_irq(struct tg3 *tp, int irq_num)
11129 {
11130         irq_handler_t fn;
11131         unsigned long flags;
11132         char *name;
11133         struct tg3_napi *tnapi = &tp->napi[irq_num];
11134
11135         if (tp->irq_cnt == 1)
11136                 name = tp->dev->name;
11137         else {
11138                 name = &tnapi->irq_lbl[0];
11139                 if (tnapi->tx_buffers && tnapi->rx_rcb)
11140                         snprintf(name, IFNAMSIZ,
11141                                  "%s-txrx-%d", tp->dev->name, irq_num);
11142                 else if (tnapi->tx_buffers)
11143                         snprintf(name, IFNAMSIZ,
11144                                  "%s-tx-%d", tp->dev->name, irq_num);
11145                 else if (tnapi->rx_rcb)
11146                         snprintf(name, IFNAMSIZ,
11147                                  "%s-rx-%d", tp->dev->name, irq_num);
11148                 else
11149                         snprintf(name, IFNAMSIZ,
11150                                  "%s-%d", tp->dev->name, irq_num);
11151                 name[IFNAMSIZ-1] = 0;
11152         }
11153
11154         if (tg3_flag(tp, USING_MSI) || tg3_flag(tp, USING_MSIX)) {
11155                 fn = tg3_msi;
11156                 if (tg3_flag(tp, 1SHOT_MSI))
11157                         fn = tg3_msi_1shot;
11158                 flags = 0;
11159         } else {
11160                 fn = tg3_interrupt;
11161                 if (tg3_flag(tp, TAGGED_STATUS))
11162                         fn = tg3_interrupt_tagged;
11163                 flags = IRQF_SHARED;
11164         }
11165
11166         return request_irq(tnapi->irq_vec, fn, flags, name, tnapi);
11167 }
11168
11169 static int tg3_test_interrupt(struct tg3 *tp)
11170 {
11171         struct tg3_napi *tnapi = &tp->napi[0];
11172         struct net_device *dev = tp->dev;
11173         int err, i, intr_ok = 0;
11174         u32 val;
11175
11176         if (!netif_running(dev))
11177                 return -ENODEV;
11178
11179         tg3_disable_ints(tp);
11180
11181         free_irq(tnapi->irq_vec, tnapi);
11182
11183         /*
11184          * Turn off MSI one shot mode.  Otherwise this test has no
11185          * observable way to know whether the interrupt was delivered.
11186          */
11187         if (tg3_flag(tp, 57765_PLUS)) {
11188                 val = tr32(MSGINT_MODE) | MSGINT_MODE_ONE_SHOT_DISABLE;
11189                 tw32(MSGINT_MODE, val);
11190         }
11191
11192         err = request_irq(tnapi->irq_vec, tg3_test_isr,
11193                           IRQF_SHARED, dev->name, tnapi);
11194         if (err)
11195                 return err;
11196
11197         tnapi->hw_status->status &= ~SD_STATUS_UPDATED;
11198         tg3_enable_ints(tp);
11199
11200         tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
11201                tnapi->coal_now);
11202
11203         for (i = 0; i < 5; i++) {
11204                 u32 int_mbox, misc_host_ctrl;
11205
11206                 int_mbox = tr32_mailbox(tnapi->int_mbox);
11207                 misc_host_ctrl = tr32(TG3PCI_MISC_HOST_CTRL);
11208
11209                 if ((int_mbox != 0) ||
11210                     (misc_host_ctrl & MISC_HOST_CTRL_MASK_PCI_INT)) {
11211                         intr_ok = 1;
11212                         break;
11213                 }
11214
11215                 if (tg3_flag(tp, 57765_PLUS) &&
11216                     tnapi->hw_status->status_tag != tnapi->last_tag)
11217                         tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
11218
11219                 msleep(10);
11220         }
11221
11222         tg3_disable_ints(tp);
11223
11224         free_irq(tnapi->irq_vec, tnapi);
11225
11226         err = tg3_request_irq(tp, 0);
11227
11228         if (err)
11229                 return err;
11230
11231         if (intr_ok) {
11232                 /* Reenable MSI one shot mode. */
11233                 if (tg3_flag(tp, 57765_PLUS) && tg3_flag(tp, 1SHOT_MSI)) {
11234                         val = tr32(MSGINT_MODE) & ~MSGINT_MODE_ONE_SHOT_DISABLE;
11235                         tw32(MSGINT_MODE, val);
11236                 }
11237                 return 0;
11238         }
11239
11240         return -EIO;
11241 }
11242
11243 /* Returns 0 if MSI test succeeds or MSI test fails and INTx mode is
11244  * successfully restored
11245  */
11246 static int tg3_test_msi(struct tg3 *tp)
11247 {
11248         int err;
11249         u16 pci_cmd;
11250
11251         if (!tg3_flag(tp, USING_MSI))
11252                 return 0;
11253
11254         /* Turn off SERR reporting in case MSI terminates with Master
11255          * Abort.
11256          */
11257         pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
11258         pci_write_config_word(tp->pdev, PCI_COMMAND,
11259                               pci_cmd & ~PCI_COMMAND_SERR);
11260
11261         err = tg3_test_interrupt(tp);
11262
11263         pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
11264
11265         if (!err)
11266                 return 0;
11267
11268         /* other failures */
11269         if (err != -EIO)
11270                 return err;
11271
11272         /* MSI test failed, go back to INTx mode */
11273         netdev_warn(tp->dev, "No interrupt was generated using MSI. Switching "
11274                     "to INTx mode. Please report this failure to the PCI "
11275                     "maintainer and include system chipset information\n");
11276
11277         free_irq(tp->napi[0].irq_vec, &tp->napi[0]);
11278
11279         pci_disable_msi(tp->pdev);
11280
11281         tg3_flag_clear(tp, USING_MSI);
11282         tp->napi[0].irq_vec = tp->pdev->irq;
11283
11284         err = tg3_request_irq(tp, 0);
11285         if (err)
11286                 return err;
11287
11288         /* Need to reset the chip because the MSI cycle may have terminated
11289          * with Master Abort.
11290          */
11291         tg3_full_lock(tp, 1);
11292
11293         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
11294         err = tg3_init_hw(tp, true);
11295
11296         tg3_full_unlock(tp);
11297
11298         if (err)
11299                 free_irq(tp->napi[0].irq_vec, &tp->napi[0]);
11300
11301         return err;
11302 }
11303
11304 static int tg3_request_firmware(struct tg3 *tp)
11305 {
11306         const struct tg3_firmware_hdr *fw_hdr;
11307
11308         if (request_firmware(&tp->fw, tp->fw_needed, &tp->pdev->dev)) {
11309                 netdev_err(tp->dev, "Failed to load firmware \"%s\"\n",
11310                            tp->fw_needed);
11311                 return -ENOENT;
11312         }
11313
11314         fw_hdr = (struct tg3_firmware_hdr *)tp->fw->data;
11315
11316         /* Firmware blob starts with version numbers, followed by
11317          * start address and _full_ length including BSS sections
11318          * (which must be longer than the actual data, of course
11319          */
11320
11321         tp->fw_len = be32_to_cpu(fw_hdr->len);  /* includes bss */
11322         if (tp->fw_len < (tp->fw->size - TG3_FW_HDR_LEN)) {
11323                 netdev_err(tp->dev, "bogus length %d in \"%s\"\n",
11324                            tp->fw_len, tp->fw_needed);
11325                 release_firmware(tp->fw);
11326                 tp->fw = NULL;
11327                 return -EINVAL;
11328         }
11329
11330         /* We no longer need firmware; we have it. */
11331         tp->fw_needed = NULL;
11332         return 0;
11333 }
11334
11335 static u32 tg3_irq_count(struct tg3 *tp)
11336 {
11337         u32 irq_cnt = max(tp->rxq_cnt, tp->txq_cnt);
11338
11339         if (irq_cnt > 1) {
11340                 /* We want as many rx rings enabled as there are cpus.
11341                  * In multiqueue MSI-X mode, the first MSI-X vector
11342                  * only deals with link interrupts, etc, so we add
11343                  * one to the number of vectors we are requesting.
11344                  */
11345                 irq_cnt = min_t(unsigned, irq_cnt + 1, tp->irq_max);
11346         }
11347
11348         return irq_cnt;
11349 }
11350
11351 static bool tg3_enable_msix(struct tg3 *tp)
11352 {
11353         int i, rc;
11354         struct msix_entry msix_ent[TG3_IRQ_MAX_VECS];
11355
11356         tp->txq_cnt = tp->txq_req;
11357         tp->rxq_cnt = tp->rxq_req;
11358         if (!tp->rxq_cnt)
11359                 tp->rxq_cnt = netif_get_num_default_rss_queues();
11360         if (tp->rxq_cnt > tp->rxq_max)
11361                 tp->rxq_cnt = tp->rxq_max;
11362
11363         /* Disable multiple TX rings by default.  Simple round-robin hardware
11364          * scheduling of the TX rings can cause starvation of rings with
11365          * small packets when other rings have TSO or jumbo packets.
11366          */
11367         if (!tp->txq_req)
11368                 tp->txq_cnt = 1;
11369
11370         tp->irq_cnt = tg3_irq_count(tp);
11371
11372         for (i = 0; i < tp->irq_max; i++) {
11373                 msix_ent[i].entry  = i;
11374                 msix_ent[i].vector = 0;
11375         }
11376
11377         rc = pci_enable_msix_range(tp->pdev, msix_ent, 1, tp->irq_cnt);
11378         if (rc < 0) {
11379                 return false;
11380         } else if (rc < tp->irq_cnt) {
11381                 netdev_notice(tp->dev, "Requested %d MSI-X vectors, received %d\n",
11382                               tp->irq_cnt, rc);
11383                 tp->irq_cnt = rc;
11384                 tp->rxq_cnt = max(rc - 1, 1);
11385                 if (tp->txq_cnt)
11386                         tp->txq_cnt = min(tp->rxq_cnt, tp->txq_max);
11387         }
11388
11389         for (i = 0; i < tp->irq_max; i++)
11390                 tp->napi[i].irq_vec = msix_ent[i].vector;
11391
11392         if (netif_set_real_num_rx_queues(tp->dev, tp->rxq_cnt)) {
11393                 pci_disable_msix(tp->pdev);
11394                 return false;
11395         }
11396
11397         if (tp->irq_cnt == 1)
11398                 return true;
11399
11400         tg3_flag_set(tp, ENABLE_RSS);
11401
11402         if (tp->txq_cnt > 1)
11403                 tg3_flag_set(tp, ENABLE_TSS);
11404
11405         netif_set_real_num_tx_queues(tp->dev, tp->txq_cnt);
11406
11407         return true;
11408 }
11409
11410 static void tg3_ints_init(struct tg3 *tp)
11411 {
11412         if ((tg3_flag(tp, SUPPORT_MSI) || tg3_flag(tp, SUPPORT_MSIX)) &&
11413             !tg3_flag(tp, TAGGED_STATUS)) {
11414                 /* All MSI supporting chips should support tagged
11415                  * status.  Assert that this is the case.
11416                  */
11417                 netdev_warn(tp->dev,
11418                             "MSI without TAGGED_STATUS? Not using MSI\n");
11419                 goto defcfg;
11420         }
11421
11422         if (tg3_flag(tp, SUPPORT_MSIX) && tg3_enable_msix(tp))
11423                 tg3_flag_set(tp, USING_MSIX);
11424         else if (tg3_flag(tp, SUPPORT_MSI) && pci_enable_msi(tp->pdev) == 0)
11425                 tg3_flag_set(tp, USING_MSI);
11426
11427         if (tg3_flag(tp, USING_MSI) || tg3_flag(tp, USING_MSIX)) {
11428                 u32 msi_mode = tr32(MSGINT_MODE);
11429                 if (tg3_flag(tp, USING_MSIX) && tp->irq_cnt > 1)
11430                         msi_mode |= MSGINT_MODE_MULTIVEC_EN;
11431                 if (!tg3_flag(tp, 1SHOT_MSI))
11432                         msi_mode |= MSGINT_MODE_ONE_SHOT_DISABLE;
11433                 tw32(MSGINT_MODE, msi_mode | MSGINT_MODE_ENABLE);
11434         }
11435 defcfg:
11436         if (!tg3_flag(tp, USING_MSIX)) {
11437                 tp->irq_cnt = 1;
11438                 tp->napi[0].irq_vec = tp->pdev->irq;
11439         }
11440
11441         if (tp->irq_cnt == 1) {
11442                 tp->txq_cnt = 1;
11443                 tp->rxq_cnt = 1;
11444                 netif_set_real_num_tx_queues(tp->dev, 1);
11445                 netif_set_real_num_rx_queues(tp->dev, 1);
11446         }
11447 }
11448
11449 static void tg3_ints_fini(struct tg3 *tp)
11450 {
11451         if (tg3_flag(tp, USING_MSIX))
11452                 pci_disable_msix(tp->pdev);
11453         else if (tg3_flag(tp, USING_MSI))
11454                 pci_disable_msi(tp->pdev);
11455         tg3_flag_clear(tp, USING_MSI);
11456         tg3_flag_clear(tp, USING_MSIX);
11457         tg3_flag_clear(tp, ENABLE_RSS);
11458         tg3_flag_clear(tp, ENABLE_TSS);
11459 }
11460
11461 static int tg3_start(struct tg3 *tp, bool reset_phy, bool test_irq,
11462                      bool init)
11463 {
11464         struct net_device *dev = tp->dev;
11465         int i, err;
11466
11467         /*
11468          * Setup interrupts first so we know how
11469          * many NAPI resources to allocate
11470          */
11471         tg3_ints_init(tp);
11472
11473         tg3_rss_check_indir_tbl(tp);
11474
11475         /* The placement of this call is tied
11476          * to the setup and use of Host TX descriptors.
11477          */
11478         err = tg3_alloc_consistent(tp);
11479         if (err)
11480                 goto out_ints_fini;
11481
11482         tg3_napi_init(tp);
11483
11484         tg3_napi_enable(tp);
11485
11486         for (i = 0; i < tp->irq_cnt; i++) {
11487                 struct tg3_napi *tnapi = &tp->napi[i];
11488                 err = tg3_request_irq(tp, i);
11489                 if (err) {
11490                         for (i--; i >= 0; i--) {
11491                                 tnapi = &tp->napi[i];
11492                                 free_irq(tnapi->irq_vec, tnapi);
11493                         }
11494                         goto out_napi_fini;
11495                 }
11496         }
11497
11498         tg3_full_lock(tp, 0);
11499
11500         if (init)
11501                 tg3_ape_driver_state_change(tp, RESET_KIND_INIT);
11502
11503         err = tg3_init_hw(tp, reset_phy);
11504         if (err) {
11505                 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
11506                 tg3_free_rings(tp);
11507         }
11508
11509         tg3_full_unlock(tp);
11510
11511         if (err)
11512                 goto out_free_irq;
11513
11514         if (test_irq && tg3_flag(tp, USING_MSI)) {
11515                 err = tg3_test_msi(tp);
11516
11517                 if (err) {
11518                         tg3_full_lock(tp, 0);
11519                         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
11520                         tg3_free_rings(tp);
11521                         tg3_full_unlock(tp);
11522
11523                         goto out_napi_fini;
11524                 }
11525
11526                 if (!tg3_flag(tp, 57765_PLUS) && tg3_flag(tp, USING_MSI)) {
11527                         u32 val = tr32(PCIE_TRANSACTION_CFG);
11528
11529                         tw32(PCIE_TRANSACTION_CFG,
11530                              val | PCIE_TRANS_CFG_1SHOT_MSI);
11531                 }
11532         }
11533
11534         tg3_phy_start(tp);
11535
11536         tg3_hwmon_open(tp);
11537
11538         tg3_full_lock(tp, 0);
11539
11540         tg3_timer_start(tp);
11541         tg3_flag_set(tp, INIT_COMPLETE);
11542         tg3_enable_ints(tp);
11543
11544         if (init)
11545                 tg3_ptp_init(tp);
11546         else
11547                 tg3_ptp_resume(tp);
11548
11549
11550         tg3_full_unlock(tp);
11551
11552         netif_tx_start_all_queues(dev);
11553
11554         /*
11555          * Reset loopback feature if it was turned on while the device was down
11556          * make sure that it's installed properly now.
11557          */
11558         if (dev->features & NETIF_F_LOOPBACK)
11559                 tg3_set_loopback(dev, dev->features);
11560
11561         return 0;
11562
11563 out_free_irq:
11564         for (i = tp->irq_cnt - 1; i >= 0; i--) {
11565                 struct tg3_napi *tnapi = &tp->napi[i];
11566                 free_irq(tnapi->irq_vec, tnapi);
11567         }
11568
11569 out_napi_fini:
11570         tg3_napi_disable(tp);
11571         tg3_napi_fini(tp);
11572         tg3_free_consistent(tp);
11573
11574 out_ints_fini:
11575         tg3_ints_fini(tp);
11576
11577         return err;
11578 }
11579
11580 static void tg3_stop(struct tg3 *tp)
11581 {
11582         int i;
11583
11584         tg3_reset_task_cancel(tp);
11585         tg3_netif_stop(tp);
11586
11587         tg3_timer_stop(tp);
11588
11589         tg3_hwmon_close(tp);
11590
11591         tg3_phy_stop(tp);
11592
11593         tg3_full_lock(tp, 1);
11594
11595         tg3_disable_ints(tp);
11596
11597         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
11598         tg3_free_rings(tp);
11599         tg3_flag_clear(tp, INIT_COMPLETE);
11600
11601         tg3_full_unlock(tp);
11602
11603         for (i = tp->irq_cnt - 1; i >= 0; i--) {
11604                 struct tg3_napi *tnapi = &tp->napi[i];
11605                 free_irq(tnapi->irq_vec, tnapi);
11606         }
11607
11608         tg3_ints_fini(tp);
11609
11610         tg3_napi_fini(tp);
11611
11612         tg3_free_consistent(tp);
11613 }
11614
11615 static int tg3_open(struct net_device *dev)
11616 {
11617         struct tg3 *tp = netdev_priv(dev);
11618         int err;
11619
11620         if (tp->fw_needed) {
11621                 err = tg3_request_firmware(tp);
11622                 if (tg3_asic_rev(tp) == ASIC_REV_57766) {
11623                         if (err) {
11624                                 netdev_warn(tp->dev, "EEE capability disabled\n");
11625                                 tp->phy_flags &= ~TG3_PHYFLG_EEE_CAP;
11626                         } else if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP)) {
11627                                 netdev_warn(tp->dev, "EEE capability restored\n");
11628                                 tp->phy_flags |= TG3_PHYFLG_EEE_CAP;
11629                         }
11630                 } else if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0) {
11631                         if (err)
11632                                 return err;
11633                 } else if (err) {
11634                         netdev_warn(tp->dev, "TSO capability disabled\n");
11635                         tg3_flag_clear(tp, TSO_CAPABLE);
11636                 } else if (!tg3_flag(tp, TSO_CAPABLE)) {
11637                         netdev_notice(tp->dev, "TSO capability restored\n");
11638                         tg3_flag_set(tp, TSO_CAPABLE);
11639                 }
11640         }
11641
11642         tg3_carrier_off(tp);
11643
11644         err = tg3_power_up(tp);
11645         if (err)
11646                 return err;
11647
11648         tg3_full_lock(tp, 0);
11649
11650         tg3_disable_ints(tp);
11651         tg3_flag_clear(tp, INIT_COMPLETE);
11652
11653         tg3_full_unlock(tp);
11654
11655         err = tg3_start(tp,
11656                         !(tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN),
11657                         true, true);
11658         if (err) {
11659                 tg3_frob_aux_power(tp, false);
11660                 pci_set_power_state(tp->pdev, PCI_D3hot);
11661         }
11662
11663         if (tg3_flag(tp, PTP_CAPABLE)) {
11664                 tp->ptp_clock = ptp_clock_register(&tp->ptp_info,
11665                                                    &tp->pdev->dev);
11666                 if (IS_ERR(tp->ptp_clock))
11667                         tp->ptp_clock = NULL;
11668         }
11669
11670         return err;
11671 }
11672
11673 static int tg3_close(struct net_device *dev)
11674 {
11675         struct tg3 *tp = netdev_priv(dev);
11676
11677         tg3_ptp_fini(tp);
11678
11679         tg3_stop(tp);
11680
11681         /* Clear stats across close / open calls */
11682         memset(&tp->net_stats_prev, 0, sizeof(tp->net_stats_prev));
11683         memset(&tp->estats_prev, 0, sizeof(tp->estats_prev));
11684
11685         if (pci_device_is_present(tp->pdev)) {
11686                 tg3_power_down_prepare(tp);
11687
11688                 tg3_carrier_off(tp);
11689         }
11690         return 0;
11691 }
11692
11693 static inline u64 get_stat64(tg3_stat64_t *val)
11694 {
11695        return ((u64)val->high << 32) | ((u64)val->low);
11696 }
11697
11698 static u64 tg3_calc_crc_errors(struct tg3 *tp)
11699 {
11700         struct tg3_hw_stats *hw_stats = tp->hw_stats;
11701
11702         if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
11703             (tg3_asic_rev(tp) == ASIC_REV_5700 ||
11704              tg3_asic_rev(tp) == ASIC_REV_5701)) {
11705                 u32 val;
11706
11707                 if (!tg3_readphy(tp, MII_TG3_TEST1, &val)) {
11708                         tg3_writephy(tp, MII_TG3_TEST1,
11709                                      val | MII_TG3_TEST1_CRC_EN);
11710                         tg3_readphy(tp, MII_TG3_RXR_COUNTERS, &val);
11711                 } else
11712                         val = 0;
11713
11714                 tp->phy_crc_errors += val;
11715
11716                 return tp->phy_crc_errors;
11717         }
11718
11719         return get_stat64(&hw_stats->rx_fcs_errors);
11720 }
11721
11722 #define ESTAT_ADD(member) \
11723         estats->member =        old_estats->member + \
11724                                 get_stat64(&hw_stats->member)
11725
11726 static void tg3_get_estats(struct tg3 *tp, struct tg3_ethtool_stats *estats)
11727 {
11728         struct tg3_ethtool_stats *old_estats = &tp->estats_prev;
11729         struct tg3_hw_stats *hw_stats = tp->hw_stats;
11730
11731         ESTAT_ADD(rx_octets);
11732         ESTAT_ADD(rx_fragments);
11733         ESTAT_ADD(rx_ucast_packets);
11734         ESTAT_ADD(rx_mcast_packets);
11735         ESTAT_ADD(rx_bcast_packets);
11736         ESTAT_ADD(rx_fcs_errors);
11737         ESTAT_ADD(rx_align_errors);
11738         ESTAT_ADD(rx_xon_pause_rcvd);
11739         ESTAT_ADD(rx_xoff_pause_rcvd);
11740         ESTAT_ADD(rx_mac_ctrl_rcvd);
11741         ESTAT_ADD(rx_xoff_entered);
11742         ESTAT_ADD(rx_frame_too_long_errors);
11743         ESTAT_ADD(rx_jabbers);
11744         ESTAT_ADD(rx_undersize_packets);
11745         ESTAT_ADD(rx_in_length_errors);
11746         ESTAT_ADD(rx_out_length_errors);
11747         ESTAT_ADD(rx_64_or_less_octet_packets);
11748         ESTAT_ADD(rx_65_to_127_octet_packets);
11749         ESTAT_ADD(rx_128_to_255_octet_packets);
11750         ESTAT_ADD(rx_256_to_511_octet_packets);
11751         ESTAT_ADD(rx_512_to_1023_octet_packets);
11752         ESTAT_ADD(rx_1024_to_1522_octet_packets);
11753         ESTAT_ADD(rx_1523_to_2047_octet_packets);
11754         ESTAT_ADD(rx_2048_to_4095_octet_packets);
11755         ESTAT_ADD(rx_4096_to_8191_octet_packets);
11756         ESTAT_ADD(rx_8192_to_9022_octet_packets);
11757
11758         ESTAT_ADD(tx_octets);
11759         ESTAT_ADD(tx_collisions);
11760         ESTAT_ADD(tx_xon_sent);
11761         ESTAT_ADD(tx_xoff_sent);
11762         ESTAT_ADD(tx_flow_control);
11763         ESTAT_ADD(tx_mac_errors);
11764         ESTAT_ADD(tx_single_collisions);
11765         ESTAT_ADD(tx_mult_collisions);
11766         ESTAT_ADD(tx_deferred);
11767         ESTAT_ADD(tx_excessive_collisions);
11768         ESTAT_ADD(tx_late_collisions);
11769         ESTAT_ADD(tx_collide_2times);
11770         ESTAT_ADD(tx_collide_3times);
11771         ESTAT_ADD(tx_collide_4times);
11772         ESTAT_ADD(tx_collide_5times);
11773         ESTAT_ADD(tx_collide_6times);
11774         ESTAT_ADD(tx_collide_7times);
11775         ESTAT_ADD(tx_collide_8times);
11776         ESTAT_ADD(tx_collide_9times);
11777         ESTAT_ADD(tx_collide_10times);
11778         ESTAT_ADD(tx_collide_11times);
11779         ESTAT_ADD(tx_collide_12times);
11780         ESTAT_ADD(tx_collide_13times);
11781         ESTAT_ADD(tx_collide_14times);
11782         ESTAT_ADD(tx_collide_15times);
11783         ESTAT_ADD(tx_ucast_packets);
11784         ESTAT_ADD(tx_mcast_packets);
11785         ESTAT_ADD(tx_bcast_packets);
11786         ESTAT_ADD(tx_carrier_sense_errors);
11787         ESTAT_ADD(tx_discards);
11788         ESTAT_ADD(tx_errors);
11789
11790         ESTAT_ADD(dma_writeq_full);
11791         ESTAT_ADD(dma_write_prioq_full);
11792         ESTAT_ADD(rxbds_empty);
11793         ESTAT_ADD(rx_discards);
11794         ESTAT_ADD(rx_errors);
11795         ESTAT_ADD(rx_threshold_hit);
11796
11797         ESTAT_ADD(dma_readq_full);
11798         ESTAT_ADD(dma_read_prioq_full);
11799         ESTAT_ADD(tx_comp_queue_full);
11800
11801         ESTAT_ADD(ring_set_send_prod_index);
11802         ESTAT_ADD(ring_status_update);
11803         ESTAT_ADD(nic_irqs);
11804         ESTAT_ADD(nic_avoided_irqs);
11805         ESTAT_ADD(nic_tx_threshold_hit);
11806
11807         ESTAT_ADD(mbuf_lwm_thresh_hit);
11808 }
11809
11810 static void tg3_get_nstats(struct tg3 *tp, struct rtnl_link_stats64 *stats)
11811 {
11812         struct rtnl_link_stats64 *old_stats = &tp->net_stats_prev;
11813         struct tg3_hw_stats *hw_stats = tp->hw_stats;
11814
11815         stats->rx_packets = old_stats->rx_packets +
11816                 get_stat64(&hw_stats->rx_ucast_packets) +
11817                 get_stat64(&hw_stats->rx_mcast_packets) +
11818                 get_stat64(&hw_stats->rx_bcast_packets);
11819
11820         stats->tx_packets = old_stats->tx_packets +
11821                 get_stat64(&hw_stats->tx_ucast_packets) +
11822                 get_stat64(&hw_stats->tx_mcast_packets) +
11823                 get_stat64(&hw_stats->tx_bcast_packets);
11824
11825         stats->rx_bytes = old_stats->rx_bytes +
11826                 get_stat64(&hw_stats->rx_octets);
11827         stats->tx_bytes = old_stats->tx_bytes +
11828                 get_stat64(&hw_stats->tx_octets);
11829
11830         stats->rx_errors = old_stats->rx_errors +
11831                 get_stat64(&hw_stats->rx_errors);
11832         stats->tx_errors = old_stats->tx_errors +
11833                 get_stat64(&hw_stats->tx_errors) +
11834                 get_stat64(&hw_stats->tx_mac_errors) +
11835                 get_stat64(&hw_stats->tx_carrier_sense_errors) +
11836                 get_stat64(&hw_stats->tx_discards);
11837
11838         stats->multicast = old_stats->multicast +
11839                 get_stat64(&hw_stats->rx_mcast_packets);
11840         stats->collisions = old_stats->collisions +
11841                 get_stat64(&hw_stats->tx_collisions);
11842
11843         stats->rx_length_errors = old_stats->rx_length_errors +
11844                 get_stat64(&hw_stats->rx_frame_too_long_errors) +
11845                 get_stat64(&hw_stats->rx_undersize_packets);
11846
11847         stats->rx_frame_errors = old_stats->rx_frame_errors +
11848                 get_stat64(&hw_stats->rx_align_errors);
11849         stats->tx_aborted_errors = old_stats->tx_aborted_errors +
11850                 get_stat64(&hw_stats->tx_discards);
11851         stats->tx_carrier_errors = old_stats->tx_carrier_errors +
11852                 get_stat64(&hw_stats->tx_carrier_sense_errors);
11853
11854         stats->rx_crc_errors = old_stats->rx_crc_errors +
11855                 tg3_calc_crc_errors(tp);
11856
11857         stats->rx_missed_errors = old_stats->rx_missed_errors +
11858                 get_stat64(&hw_stats->rx_discards);
11859
11860         stats->rx_dropped = tp->rx_dropped;
11861         stats->tx_dropped = tp->tx_dropped;
11862 }
11863
11864 static int tg3_get_regs_len(struct net_device *dev)
11865 {
11866         return TG3_REG_BLK_SIZE;
11867 }
11868
11869 static void tg3_get_regs(struct net_device *dev,
11870                 struct ethtool_regs *regs, void *_p)
11871 {
11872         struct tg3 *tp = netdev_priv(dev);
11873
11874         regs->version = 0;
11875
11876         memset(_p, 0, TG3_REG_BLK_SIZE);
11877
11878         if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
11879                 return;
11880
11881         tg3_full_lock(tp, 0);
11882
11883         tg3_dump_legacy_regs(tp, (u32 *)_p);
11884
11885         tg3_full_unlock(tp);
11886 }
11887
11888 static int tg3_get_eeprom_len(struct net_device *dev)
11889 {
11890         struct tg3 *tp = netdev_priv(dev);
11891
11892         return tp->nvram_size;
11893 }
11894
11895 static int tg3_get_eeprom(struct net_device *dev, struct ethtool_eeprom *eeprom, u8 *data)
11896 {
11897         struct tg3 *tp = netdev_priv(dev);
11898         int ret, cpmu_restore = 0;
11899         u8  *pd;
11900         u32 i, offset, len, b_offset, b_count, cpmu_val = 0;
11901         __be32 val;
11902
11903         if (tg3_flag(tp, NO_NVRAM))
11904                 return -EINVAL;
11905
11906         offset = eeprom->offset;
11907         len = eeprom->len;
11908         eeprom->len = 0;
11909
11910         eeprom->magic = TG3_EEPROM_MAGIC;
11911
11912         /* Override clock, link aware and link idle modes */
11913         if (tg3_flag(tp, CPMU_PRESENT)) {
11914                 cpmu_val = tr32(TG3_CPMU_CTRL);
11915                 if (cpmu_val & (CPMU_CTRL_LINK_AWARE_MODE |
11916                                 CPMU_CTRL_LINK_IDLE_MODE)) {
11917                         tw32(TG3_CPMU_CTRL, cpmu_val &
11918                                             ~(CPMU_CTRL_LINK_AWARE_MODE |
11919                                              CPMU_CTRL_LINK_IDLE_MODE));
11920                         cpmu_restore = 1;
11921                 }
11922         }
11923         tg3_override_clk(tp);
11924
11925         if (offset & 3) {
11926                 /* adjustments to start on required 4 byte boundary */
11927                 b_offset = offset & 3;
11928                 b_count = 4 - b_offset;
11929                 if (b_count > len) {
11930                         /* i.e. offset=1 len=2 */
11931                         b_count = len;
11932                 }
11933                 ret = tg3_nvram_read_be32(tp, offset-b_offset, &val);
11934                 if (ret)
11935                         goto eeprom_done;
11936                 memcpy(data, ((char *)&val) + b_offset, b_count);
11937                 len -= b_count;
11938                 offset += b_count;
11939                 eeprom->len += b_count;
11940         }
11941
11942         /* read bytes up to the last 4 byte boundary */
11943         pd = &data[eeprom->len];
11944         for (i = 0; i < (len - (len & 3)); i += 4) {
11945                 ret = tg3_nvram_read_be32(tp, offset + i, &val);
11946                 if (ret) {
11947                         if (i)
11948                                 i -= 4;
11949                         eeprom->len += i;
11950                         goto eeprom_done;
11951                 }
11952                 memcpy(pd + i, &val, 4);
11953                 if (need_resched()) {
11954                         if (signal_pending(current)) {
11955                                 eeprom->len += i;
11956                                 ret = -EINTR;
11957                                 goto eeprom_done;
11958                         }
11959                         cond_resched();
11960                 }
11961         }
11962         eeprom->len += i;
11963
11964         if (len & 3) {
11965                 /* read last bytes not ending on 4 byte boundary */
11966                 pd = &data[eeprom->len];
11967                 b_count = len & 3;
11968                 b_offset = offset + len - b_count;
11969                 ret = tg3_nvram_read_be32(tp, b_offset, &val);
11970                 if (ret)
11971                         goto eeprom_done;
11972                 memcpy(pd, &val, b_count);
11973                 eeprom->len += b_count;
11974         }
11975         ret = 0;
11976
11977 eeprom_done:
11978         /* Restore clock, link aware and link idle modes */
11979         tg3_restore_clk(tp);
11980         if (cpmu_restore)
11981                 tw32(TG3_CPMU_CTRL, cpmu_val);
11982
11983         return ret;
11984 }
11985
11986 static int tg3_set_eeprom(struct net_device *dev, struct ethtool_eeprom *eeprom, u8 *data)
11987 {
11988         struct tg3 *tp = netdev_priv(dev);
11989         int ret;
11990         u32 offset, len, b_offset, odd_len;
11991         u8 *buf;
11992         __be32 start, end;
11993
11994         if (tg3_flag(tp, NO_NVRAM) ||
11995             eeprom->magic != TG3_EEPROM_MAGIC)
11996                 return -EINVAL;
11997
11998         offset = eeprom->offset;
11999         len = eeprom->len;
12000
12001         if ((b_offset = (offset & 3))) {
12002                 /* adjustments to start on required 4 byte boundary */
12003                 ret = tg3_nvram_read_be32(tp, offset-b_offset, &start);
12004                 if (ret)
12005                         return ret;
12006                 len += b_offset;
12007                 offset &= ~3;
12008                 if (len < 4)
12009                         len = 4;
12010         }
12011
12012         odd_len = 0;
12013         if (len & 3) {
12014                 /* adjustments to end on required 4 byte boundary */
12015                 odd_len = 1;
12016                 len = (len + 3) & ~3;
12017                 ret = tg3_nvram_read_be32(tp, offset+len-4, &end);
12018                 if (ret)
12019                         return ret;
12020         }
12021
12022         buf = data;
12023         if (b_offset || odd_len) {
12024                 buf = kmalloc(len, GFP_KERNEL);
12025                 if (!buf)
12026                         return -ENOMEM;
12027                 if (b_offset)
12028                         memcpy(buf, &start, 4);
12029                 if (odd_len)
12030                         memcpy(buf+len-4, &end, 4);
12031                 memcpy(buf + b_offset, data, eeprom->len);
12032         }
12033
12034         ret = tg3_nvram_write_block(tp, offset, len, buf);
12035
12036         if (buf != data)
12037                 kfree(buf);
12038
12039         return ret;
12040 }
12041
12042 static int tg3_get_settings(struct net_device *dev, struct ethtool_cmd *cmd)
12043 {
12044         struct tg3 *tp = netdev_priv(dev);
12045
12046         if (tg3_flag(tp, USE_PHYLIB)) {
12047                 struct phy_device *phydev;
12048                 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
12049                         return -EAGAIN;
12050                 phydev = tp->mdio_bus->phy_map[tp->phy_addr];
12051                 return phy_ethtool_gset(phydev, cmd);
12052         }
12053
12054         cmd->supported = (SUPPORTED_Autoneg);
12055
12056         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
12057                 cmd->supported |= (SUPPORTED_1000baseT_Half |
12058                                    SUPPORTED_1000baseT_Full);
12059
12060         if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
12061                 cmd->supported |= (SUPPORTED_100baseT_Half |
12062                                   SUPPORTED_100baseT_Full |
12063                                   SUPPORTED_10baseT_Half |
12064                                   SUPPORTED_10baseT_Full |
12065                                   SUPPORTED_TP);
12066                 cmd->port = PORT_TP;
12067         } else {
12068                 cmd->supported |= SUPPORTED_FIBRE;
12069                 cmd->port = PORT_FIBRE;
12070         }
12071
12072         cmd->advertising = tp->link_config.advertising;
12073         if (tg3_flag(tp, PAUSE_AUTONEG)) {
12074                 if (tp->link_config.flowctrl & FLOW_CTRL_RX) {
12075                         if (tp->link_config.flowctrl & FLOW_CTRL_TX) {
12076                                 cmd->advertising |= ADVERTISED_Pause;
12077                         } else {
12078                                 cmd->advertising |= ADVERTISED_Pause |
12079                                                     ADVERTISED_Asym_Pause;
12080                         }
12081                 } else if (tp->link_config.flowctrl & FLOW_CTRL_TX) {
12082                         cmd->advertising |= ADVERTISED_Asym_Pause;
12083                 }
12084         }
12085         if (netif_running(dev) && tp->link_up) {
12086                 ethtool_cmd_speed_set(cmd, tp->link_config.active_speed);
12087                 cmd->duplex = tp->link_config.active_duplex;
12088                 cmd->lp_advertising = tp->link_config.rmt_adv;
12089                 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
12090                         if (tp->phy_flags & TG3_PHYFLG_MDIX_STATE)
12091                                 cmd->eth_tp_mdix = ETH_TP_MDI_X;
12092                         else
12093                                 cmd->eth_tp_mdix = ETH_TP_MDI;
12094                 }
12095         } else {
12096                 ethtool_cmd_speed_set(cmd, SPEED_UNKNOWN);
12097                 cmd->duplex = DUPLEX_UNKNOWN;
12098                 cmd->eth_tp_mdix = ETH_TP_MDI_INVALID;
12099         }
12100         cmd->phy_address = tp->phy_addr;
12101         cmd->transceiver = XCVR_INTERNAL;
12102         cmd->autoneg = tp->link_config.autoneg;
12103         cmd->maxtxpkt = 0;
12104         cmd->maxrxpkt = 0;
12105         return 0;
12106 }
12107
12108 static int tg3_set_settings(struct net_device *dev, struct ethtool_cmd *cmd)
12109 {
12110         struct tg3 *tp = netdev_priv(dev);
12111         u32 speed = ethtool_cmd_speed(cmd);
12112
12113         if (tg3_flag(tp, USE_PHYLIB)) {
12114                 struct phy_device *phydev;
12115                 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
12116                         return -EAGAIN;
12117                 phydev = tp->mdio_bus->phy_map[tp->phy_addr];
12118                 return phy_ethtool_sset(phydev, cmd);
12119         }
12120
12121         if (cmd->autoneg != AUTONEG_ENABLE &&
12122             cmd->autoneg != AUTONEG_DISABLE)
12123                 return -EINVAL;
12124
12125         if (cmd->autoneg == AUTONEG_DISABLE &&
12126             cmd->duplex != DUPLEX_FULL &&
12127             cmd->duplex != DUPLEX_HALF)
12128                 return -EINVAL;
12129
12130         if (cmd->autoneg == AUTONEG_ENABLE) {
12131                 u32 mask = ADVERTISED_Autoneg |
12132                            ADVERTISED_Pause |
12133                            ADVERTISED_Asym_Pause;
12134
12135                 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
12136                         mask |= ADVERTISED_1000baseT_Half |
12137                                 ADVERTISED_1000baseT_Full;
12138
12139                 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
12140                         mask |= ADVERTISED_100baseT_Half |
12141                                 ADVERTISED_100baseT_Full |
12142                                 ADVERTISED_10baseT_Half |
12143                                 ADVERTISED_10baseT_Full |
12144                                 ADVERTISED_TP;
12145                 else
12146                         mask |= ADVERTISED_FIBRE;
12147
12148                 if (cmd->advertising & ~mask)
12149                         return -EINVAL;
12150
12151                 mask &= (ADVERTISED_1000baseT_Half |
12152                          ADVERTISED_1000baseT_Full |
12153                          ADVERTISED_100baseT_Half |
12154                          ADVERTISED_100baseT_Full |
12155                          ADVERTISED_10baseT_Half |
12156                          ADVERTISED_10baseT_Full);
12157
12158                 cmd->advertising &= mask;
12159         } else {
12160                 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES) {
12161                         if (speed != SPEED_1000)
12162                                 return -EINVAL;
12163
12164                         if (cmd->duplex != DUPLEX_FULL)
12165                                 return -EINVAL;
12166                 } else {
12167                         if (speed != SPEED_100 &&
12168                             speed != SPEED_10)
12169                                 return -EINVAL;
12170                 }
12171         }
12172
12173         tg3_full_lock(tp, 0);
12174
12175         tp->link_config.autoneg = cmd->autoneg;
12176         if (cmd->autoneg == AUTONEG_ENABLE) {
12177                 tp->link_config.advertising = (cmd->advertising |
12178                                               ADVERTISED_Autoneg);
12179                 tp->link_config.speed = SPEED_UNKNOWN;
12180                 tp->link_config.duplex = DUPLEX_UNKNOWN;
12181         } else {
12182                 tp->link_config.advertising = 0;
12183                 tp->link_config.speed = speed;
12184                 tp->link_config.duplex = cmd->duplex;
12185         }
12186
12187         tp->phy_flags |= TG3_PHYFLG_USER_CONFIGURED;
12188
12189         tg3_warn_mgmt_link_flap(tp);
12190
12191         if (netif_running(dev))
12192                 tg3_setup_phy(tp, true);
12193
12194         tg3_full_unlock(tp);
12195
12196         return 0;
12197 }
12198
12199 static void tg3_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info)
12200 {
12201         struct tg3 *tp = netdev_priv(dev);
12202
12203         strlcpy(info->driver, DRV_MODULE_NAME, sizeof(info->driver));
12204         strlcpy(info->version, DRV_MODULE_VERSION, sizeof(info->version));
12205         strlcpy(info->fw_version, tp->fw_ver, sizeof(info->fw_version));
12206         strlcpy(info->bus_info, pci_name(tp->pdev), sizeof(info->bus_info));
12207 }
12208
12209 static void tg3_get_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
12210 {
12211         struct tg3 *tp = netdev_priv(dev);
12212
12213         if (tg3_flag(tp, WOL_CAP) && device_can_wakeup(&tp->pdev->dev))
12214                 wol->supported = WAKE_MAGIC;
12215         else
12216                 wol->supported = 0;
12217         wol->wolopts = 0;
12218         if (tg3_flag(tp, WOL_ENABLE) && device_can_wakeup(&tp->pdev->dev))
12219                 wol->wolopts = WAKE_MAGIC;
12220         memset(&wol->sopass, 0, sizeof(wol->sopass));
12221 }
12222
12223 static int tg3_set_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
12224 {
12225         struct tg3 *tp = netdev_priv(dev);
12226         struct device *dp = &tp->pdev->dev;
12227
12228         if (wol->wolopts & ~WAKE_MAGIC)
12229                 return -EINVAL;
12230         if ((wol->wolopts & WAKE_MAGIC) &&
12231             !(tg3_flag(tp, WOL_CAP) && device_can_wakeup(dp)))
12232                 return -EINVAL;
12233
12234         device_set_wakeup_enable(dp, wol->wolopts & WAKE_MAGIC);
12235
12236         if (device_may_wakeup(dp))
12237                 tg3_flag_set(tp, WOL_ENABLE);
12238         else
12239                 tg3_flag_clear(tp, WOL_ENABLE);
12240
12241         return 0;
12242 }
12243
12244 static u32 tg3_get_msglevel(struct net_device *dev)
12245 {
12246         struct tg3 *tp = netdev_priv(dev);
12247         return tp->msg_enable;
12248 }
12249
12250 static void tg3_set_msglevel(struct net_device *dev, u32 value)
12251 {
12252         struct tg3 *tp = netdev_priv(dev);
12253         tp->msg_enable = value;
12254 }
12255
12256 static int tg3_nway_reset(struct net_device *dev)
12257 {
12258         struct tg3 *tp = netdev_priv(dev);
12259         int r;
12260
12261         if (!netif_running(dev))
12262                 return -EAGAIN;
12263
12264         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
12265                 return -EINVAL;
12266
12267         tg3_warn_mgmt_link_flap(tp);
12268
12269         if (tg3_flag(tp, USE_PHYLIB)) {
12270                 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
12271                         return -EAGAIN;
12272                 r = phy_start_aneg(tp->mdio_bus->phy_map[tp->phy_addr]);
12273         } else {
12274                 u32 bmcr;
12275
12276                 spin_lock_bh(&tp->lock);
12277                 r = -EINVAL;
12278                 tg3_readphy(tp, MII_BMCR, &bmcr);
12279                 if (!tg3_readphy(tp, MII_BMCR, &bmcr) &&
12280                     ((bmcr & BMCR_ANENABLE) ||
12281                      (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT))) {
12282                         tg3_writephy(tp, MII_BMCR, bmcr | BMCR_ANRESTART |
12283                                                    BMCR_ANENABLE);
12284                         r = 0;
12285                 }
12286                 spin_unlock_bh(&tp->lock);
12287         }
12288
12289         return r;
12290 }
12291
12292 static void tg3_get_ringparam(struct net_device *dev, struct ethtool_ringparam *ering)
12293 {
12294         struct tg3 *tp = netdev_priv(dev);
12295
12296         ering->rx_max_pending = tp->rx_std_ring_mask;
12297         if (tg3_flag(tp, JUMBO_RING_ENABLE))
12298                 ering->rx_jumbo_max_pending = tp->rx_jmb_ring_mask;
12299         else
12300                 ering->rx_jumbo_max_pending = 0;
12301
12302         ering->tx_max_pending = TG3_TX_RING_SIZE - 1;
12303
12304         ering->rx_pending = tp->rx_pending;
12305         if (tg3_flag(tp, JUMBO_RING_ENABLE))
12306                 ering->rx_jumbo_pending = tp->rx_jumbo_pending;
12307         else
12308                 ering->rx_jumbo_pending = 0;
12309
12310         ering->tx_pending = tp->napi[0].tx_pending;
12311 }
12312
12313 static int tg3_set_ringparam(struct net_device *dev, struct ethtool_ringparam *ering)
12314 {
12315         struct tg3 *tp = netdev_priv(dev);
12316         int i, irq_sync = 0, err = 0;
12317
12318         if ((ering->rx_pending > tp->rx_std_ring_mask) ||
12319             (ering->rx_jumbo_pending > tp->rx_jmb_ring_mask) ||
12320             (ering->tx_pending > TG3_TX_RING_SIZE - 1) ||
12321             (ering->tx_pending <= MAX_SKB_FRAGS) ||
12322             (tg3_flag(tp, TSO_BUG) &&
12323              (ering->tx_pending <= (MAX_SKB_FRAGS * 3))))
12324                 return -EINVAL;
12325
12326         if (netif_running(dev)) {
12327                 tg3_phy_stop(tp);
12328                 tg3_netif_stop(tp);
12329                 irq_sync = 1;
12330         }
12331
12332         tg3_full_lock(tp, irq_sync);
12333
12334         tp->rx_pending = ering->rx_pending;
12335
12336         if (tg3_flag(tp, MAX_RXPEND_64) &&
12337             tp->rx_pending > 63)
12338                 tp->rx_pending = 63;
12339
12340         if (tg3_flag(tp, JUMBO_RING_ENABLE))
12341                 tp->rx_jumbo_pending = ering->rx_jumbo_pending;
12342
12343         for (i = 0; i < tp->irq_max; i++)
12344                 tp->napi[i].tx_pending = ering->tx_pending;
12345
12346         if (netif_running(dev)) {
12347                 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
12348                 err = tg3_restart_hw(tp, false);
12349                 if (!err)
12350                         tg3_netif_start(tp);
12351         }
12352
12353         tg3_full_unlock(tp);
12354
12355         if (irq_sync && !err)
12356                 tg3_phy_start(tp);
12357
12358         return err;
12359 }
12360
12361 static void tg3_get_pauseparam(struct net_device *dev, struct ethtool_pauseparam *epause)
12362 {
12363         struct tg3 *tp = netdev_priv(dev);
12364
12365         epause->autoneg = !!tg3_flag(tp, PAUSE_AUTONEG);
12366
12367         if (tp->link_config.flowctrl & FLOW_CTRL_RX)
12368                 epause->rx_pause = 1;
12369         else
12370                 epause->rx_pause = 0;
12371
12372         if (tp->link_config.flowctrl & FLOW_CTRL_TX)
12373                 epause->tx_pause = 1;
12374         else
12375                 epause->tx_pause = 0;
12376 }
12377
12378 static int tg3_set_pauseparam(struct net_device *dev, struct ethtool_pauseparam *epause)
12379 {
12380         struct tg3 *tp = netdev_priv(dev);
12381         int err = 0;
12382
12383         if (tp->link_config.autoneg == AUTONEG_ENABLE)
12384                 tg3_warn_mgmt_link_flap(tp);
12385
12386         if (tg3_flag(tp, USE_PHYLIB)) {
12387                 u32 newadv;
12388                 struct phy_device *phydev;
12389
12390                 phydev = tp->mdio_bus->phy_map[tp->phy_addr];
12391
12392                 if (!(phydev->supported & SUPPORTED_Pause) ||
12393                     (!(phydev->supported & SUPPORTED_Asym_Pause) &&
12394                      (epause->rx_pause != epause->tx_pause)))
12395                         return -EINVAL;
12396
12397                 tp->link_config.flowctrl = 0;
12398                 if (epause->rx_pause) {
12399                         tp->link_config.flowctrl |= FLOW_CTRL_RX;
12400
12401                         if (epause->tx_pause) {
12402                                 tp->link_config.flowctrl |= FLOW_CTRL_TX;
12403                                 newadv = ADVERTISED_Pause;
12404                         } else
12405                                 newadv = ADVERTISED_Pause |
12406                                          ADVERTISED_Asym_Pause;
12407                 } else if (epause->tx_pause) {
12408                         tp->link_config.flowctrl |= FLOW_CTRL_TX;
12409                         newadv = ADVERTISED_Asym_Pause;
12410                 } else
12411                         newadv = 0;
12412
12413                 if (epause->autoneg)
12414                         tg3_flag_set(tp, PAUSE_AUTONEG);
12415                 else
12416                         tg3_flag_clear(tp, PAUSE_AUTONEG);
12417
12418                 if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
12419                         u32 oldadv = phydev->advertising &
12420                                      (ADVERTISED_Pause | ADVERTISED_Asym_Pause);
12421                         if (oldadv != newadv) {
12422                                 phydev->advertising &=
12423                                         ~(ADVERTISED_Pause |
12424                                           ADVERTISED_Asym_Pause);
12425                                 phydev->advertising |= newadv;
12426                                 if (phydev->autoneg) {
12427                                         /*
12428                                          * Always renegotiate the link to
12429                                          * inform our link partner of our
12430                                          * flow control settings, even if the
12431                                          * flow control is forced.  Let
12432                                          * tg3_adjust_link() do the final
12433                                          * flow control setup.
12434                                          */
12435                                         return phy_start_aneg(phydev);
12436                                 }
12437                         }
12438
12439                         if (!epause->autoneg)
12440                                 tg3_setup_flow_control(tp, 0, 0);
12441                 } else {
12442                         tp->link_config.advertising &=
12443                                         ~(ADVERTISED_Pause |
12444                                           ADVERTISED_Asym_Pause);
12445                         tp->link_config.advertising |= newadv;
12446                 }
12447         } else {
12448                 int irq_sync = 0;
12449
12450                 if (netif_running(dev)) {
12451                         tg3_netif_stop(tp);
12452                         irq_sync = 1;
12453                 }
12454
12455                 tg3_full_lock(tp, irq_sync);
12456
12457                 if (epause->autoneg)
12458                         tg3_flag_set(tp, PAUSE_AUTONEG);
12459                 else
12460                         tg3_flag_clear(tp, PAUSE_AUTONEG);
12461                 if (epause->rx_pause)
12462                         tp->link_config.flowctrl |= FLOW_CTRL_RX;
12463                 else
12464                         tp->link_config.flowctrl &= ~FLOW_CTRL_RX;
12465                 if (epause->tx_pause)
12466                         tp->link_config.flowctrl |= FLOW_CTRL_TX;
12467                 else
12468                         tp->link_config.flowctrl &= ~FLOW_CTRL_TX;
12469
12470                 if (netif_running(dev)) {
12471                         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
12472                         err = tg3_restart_hw(tp, false);
12473                         if (!err)
12474                                 tg3_netif_start(tp);
12475                 }
12476
12477                 tg3_full_unlock(tp);
12478         }
12479
12480         tp->phy_flags |= TG3_PHYFLG_USER_CONFIGURED;
12481
12482         return err;
12483 }
12484
12485 static int tg3_get_sset_count(struct net_device *dev, int sset)
12486 {
12487         switch (sset) {
12488         case ETH_SS_TEST:
12489                 return TG3_NUM_TEST;
12490         case ETH_SS_STATS:
12491                 return TG3_NUM_STATS;
12492         default:
12493                 return -EOPNOTSUPP;
12494         }
12495 }
12496
12497 static int tg3_get_rxnfc(struct net_device *dev, struct ethtool_rxnfc *info,
12498                          u32 *rules __always_unused)
12499 {
12500         struct tg3 *tp = netdev_priv(dev);
12501
12502         if (!tg3_flag(tp, SUPPORT_MSIX))
12503                 return -EOPNOTSUPP;
12504
12505         switch (info->cmd) {
12506         case ETHTOOL_GRXRINGS:
12507                 if (netif_running(tp->dev))
12508                         info->data = tp->rxq_cnt;
12509                 else {
12510                         info->data = num_online_cpus();
12511                         if (info->data > TG3_RSS_MAX_NUM_QS)
12512                                 info->data = TG3_RSS_MAX_NUM_QS;
12513                 }
12514
12515                 /* The first interrupt vector only
12516                  * handles link interrupts.
12517                  */
12518                 info->data -= 1;
12519                 return 0;
12520
12521         default:
12522                 return -EOPNOTSUPP;
12523         }
12524 }
12525
12526 static u32 tg3_get_rxfh_indir_size(struct net_device *dev)
12527 {
12528         u32 size = 0;
12529         struct tg3 *tp = netdev_priv(dev);
12530
12531         if (tg3_flag(tp, SUPPORT_MSIX))
12532                 size = TG3_RSS_INDIR_TBL_SIZE;
12533
12534         return size;
12535 }
12536
12537 static int tg3_get_rxfh(struct net_device *dev, u32 *indir, u8 *key)
12538 {
12539         struct tg3 *tp = netdev_priv(dev);
12540         int i;
12541
12542         for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
12543                 indir[i] = tp->rss_ind_tbl[i];
12544
12545         return 0;
12546 }
12547
12548 static int tg3_set_rxfh(struct net_device *dev, const u32 *indir, const u8 *key)
12549 {
12550         struct tg3 *tp = netdev_priv(dev);
12551         size_t i;
12552
12553         for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
12554                 tp->rss_ind_tbl[i] = indir[i];
12555
12556         if (!netif_running(dev) || !tg3_flag(tp, ENABLE_RSS))
12557                 return 0;
12558
12559         /* It is legal to write the indirection
12560          * table while the device is running.
12561          */
12562         tg3_full_lock(tp, 0);
12563         tg3_rss_write_indir_tbl(tp);
12564         tg3_full_unlock(tp);
12565
12566         return 0;
12567 }
12568
12569 static void tg3_get_channels(struct net_device *dev,
12570                              struct ethtool_channels *channel)
12571 {
12572         struct tg3 *tp = netdev_priv(dev);
12573         u32 deflt_qs = netif_get_num_default_rss_queues();
12574
12575         channel->max_rx = tp->rxq_max;
12576         channel->max_tx = tp->txq_max;
12577
12578         if (netif_running(dev)) {
12579                 channel->rx_count = tp->rxq_cnt;
12580                 channel->tx_count = tp->txq_cnt;
12581         } else {
12582                 if (tp->rxq_req)
12583                         channel->rx_count = tp->rxq_req;
12584                 else
12585                         channel->rx_count = min(deflt_qs, tp->rxq_max);
12586
12587                 if (tp->txq_req)
12588                         channel->tx_count = tp->txq_req;
12589                 else
12590                         channel->tx_count = min(deflt_qs, tp->txq_max);
12591         }
12592 }
12593
12594 static int tg3_set_channels(struct net_device *dev,
12595                             struct ethtool_channels *channel)
12596 {
12597         struct tg3 *tp = netdev_priv(dev);
12598
12599         if (!tg3_flag(tp, SUPPORT_MSIX))
12600                 return -EOPNOTSUPP;
12601
12602         if (channel->rx_count > tp->rxq_max ||
12603             channel->tx_count > tp->txq_max)
12604                 return -EINVAL;
12605
12606         tp->rxq_req = channel->rx_count;
12607         tp->txq_req = channel->tx_count;
12608
12609         if (!netif_running(dev))
12610                 return 0;
12611
12612         tg3_stop(tp);
12613
12614         tg3_carrier_off(tp);
12615
12616         tg3_start(tp, true, false, false);
12617
12618         return 0;
12619 }
12620
12621 static void tg3_get_strings(struct net_device *dev, u32 stringset, u8 *buf)
12622 {
12623         switch (stringset) {
12624         case ETH_SS_STATS:
12625                 memcpy(buf, &ethtool_stats_keys, sizeof(ethtool_stats_keys));
12626                 break;
12627         case ETH_SS_TEST:
12628                 memcpy(buf, &ethtool_test_keys, sizeof(ethtool_test_keys));
12629                 break;
12630         default:
12631                 WARN_ON(1);     /* we need a WARN() */
12632                 break;
12633         }
12634 }
12635
12636 static int tg3_set_phys_id(struct net_device *dev,
12637                             enum ethtool_phys_id_state state)
12638 {
12639         struct tg3 *tp = netdev_priv(dev);
12640
12641         if (!netif_running(tp->dev))
12642                 return -EAGAIN;
12643
12644         switch (state) {
12645         case ETHTOOL_ID_ACTIVE:
12646                 return 1;       /* cycle on/off once per second */
12647
12648         case ETHTOOL_ID_ON:
12649                 tw32(MAC_LED_CTRL, LED_CTRL_LNKLED_OVERRIDE |
12650                      LED_CTRL_1000MBPS_ON |
12651                      LED_CTRL_100MBPS_ON |
12652                      LED_CTRL_10MBPS_ON |
12653                      LED_CTRL_TRAFFIC_OVERRIDE |
12654                      LED_CTRL_TRAFFIC_BLINK |
12655                      LED_CTRL_TRAFFIC_LED);
12656                 break;
12657
12658         case ETHTOOL_ID_OFF:
12659                 tw32(MAC_LED_CTRL, LED_CTRL_LNKLED_OVERRIDE |
12660                      LED_CTRL_TRAFFIC_OVERRIDE);
12661                 break;
12662
12663         case ETHTOOL_ID_INACTIVE:
12664                 tw32(MAC_LED_CTRL, tp->led_ctrl);
12665                 break;
12666         }
12667
12668         return 0;
12669 }
12670
12671 static void tg3_get_ethtool_stats(struct net_device *dev,
12672                                    struct ethtool_stats *estats, u64 *tmp_stats)
12673 {
12674         struct tg3 *tp = netdev_priv(dev);
12675
12676         if (tp->hw_stats)
12677                 tg3_get_estats(tp, (struct tg3_ethtool_stats *)tmp_stats);
12678         else
12679                 memset(tmp_stats, 0, sizeof(struct tg3_ethtool_stats));
12680 }
12681
12682 static __be32 *tg3_vpd_readblock(struct tg3 *tp, u32 *vpdlen)
12683 {
12684         int i;
12685         __be32 *buf;
12686         u32 offset = 0, len = 0;
12687         u32 magic, val;
12688
12689         if (tg3_flag(tp, NO_NVRAM) || tg3_nvram_read(tp, 0, &magic))
12690                 return NULL;
12691
12692         if (magic == TG3_EEPROM_MAGIC) {
12693                 for (offset = TG3_NVM_DIR_START;
12694                      offset < TG3_NVM_DIR_END;
12695                      offset += TG3_NVM_DIRENT_SIZE) {
12696                         if (tg3_nvram_read(tp, offset, &val))
12697                                 return NULL;
12698
12699                         if ((val >> TG3_NVM_DIRTYPE_SHIFT) ==
12700                             TG3_NVM_DIRTYPE_EXTVPD)
12701                                 break;
12702                 }
12703
12704                 if (offset != TG3_NVM_DIR_END) {
12705                         len = (val & TG3_NVM_DIRTYPE_LENMSK) * 4;
12706                         if (tg3_nvram_read(tp, offset + 4, &offset))
12707                                 return NULL;
12708
12709                         offset = tg3_nvram_logical_addr(tp, offset);
12710                 }
12711         }
12712
12713         if (!offset || !len) {
12714                 offset = TG3_NVM_VPD_OFF;
12715                 len = TG3_NVM_VPD_LEN;
12716         }
12717
12718         buf = kmalloc(len, GFP_KERNEL);
12719         if (buf == NULL)
12720                 return NULL;
12721
12722         if (magic == TG3_EEPROM_MAGIC) {
12723                 for (i = 0; i < len; i += 4) {
12724                         /* The data is in little-endian format in NVRAM.
12725                          * Use the big-endian read routines to preserve
12726                          * the byte order as it exists in NVRAM.
12727                          */
12728                         if (tg3_nvram_read_be32(tp, offset + i, &buf[i/4]))
12729                                 goto error;
12730                 }
12731         } else {
12732                 u8 *ptr;
12733                 ssize_t cnt;
12734                 unsigned int pos = 0;
12735
12736                 ptr = (u8 *)&buf[0];
12737                 for (i = 0; pos < len && i < 3; i++, pos += cnt, ptr += cnt) {
12738                         cnt = pci_read_vpd(tp->pdev, pos,
12739                                            len - pos, ptr);
12740                         if (cnt == -ETIMEDOUT || cnt == -EINTR)
12741                                 cnt = 0;
12742                         else if (cnt < 0)
12743                                 goto error;
12744                 }
12745                 if (pos != len)
12746                         goto error;
12747         }
12748
12749         *vpdlen = len;
12750
12751         return buf;
12752
12753 error:
12754         kfree(buf);
12755         return NULL;
12756 }
12757
12758 #define NVRAM_TEST_SIZE 0x100
12759 #define NVRAM_SELFBOOT_FORMAT1_0_SIZE   0x14
12760 #define NVRAM_SELFBOOT_FORMAT1_2_SIZE   0x18
12761 #define NVRAM_SELFBOOT_FORMAT1_3_SIZE   0x1c
12762 #define NVRAM_SELFBOOT_FORMAT1_4_SIZE   0x20
12763 #define NVRAM_SELFBOOT_FORMAT1_5_SIZE   0x24
12764 #define NVRAM_SELFBOOT_FORMAT1_6_SIZE   0x50
12765 #define NVRAM_SELFBOOT_HW_SIZE 0x20
12766 #define NVRAM_SELFBOOT_DATA_SIZE 0x1c
12767
12768 static int tg3_test_nvram(struct tg3 *tp)
12769 {
12770         u32 csum, magic, len;
12771         __be32 *buf;
12772         int i, j, k, err = 0, size;
12773
12774         if (tg3_flag(tp, NO_NVRAM))
12775                 return 0;
12776
12777         if (tg3_nvram_read(tp, 0, &magic) != 0)
12778                 return -EIO;
12779
12780         if (magic == TG3_EEPROM_MAGIC)
12781                 size = NVRAM_TEST_SIZE;
12782         else if ((magic & TG3_EEPROM_MAGIC_FW_MSK) == TG3_EEPROM_MAGIC_FW) {
12783                 if ((magic & TG3_EEPROM_SB_FORMAT_MASK) ==
12784                     TG3_EEPROM_SB_FORMAT_1) {
12785                         switch (magic & TG3_EEPROM_SB_REVISION_MASK) {
12786                         case TG3_EEPROM_SB_REVISION_0:
12787                                 size = NVRAM_SELFBOOT_FORMAT1_0_SIZE;
12788                                 break;
12789                         case TG3_EEPROM_SB_REVISION_2:
12790                                 size = NVRAM_SELFBOOT_FORMAT1_2_SIZE;
12791                                 break;
12792                         case TG3_EEPROM_SB_REVISION_3:
12793                                 size = NVRAM_SELFBOOT_FORMAT1_3_SIZE;
12794                                 break;
12795                         case TG3_EEPROM_SB_REVISION_4:
12796                                 size = NVRAM_SELFBOOT_FORMAT1_4_SIZE;
12797                                 break;
12798                         case TG3_EEPROM_SB_REVISION_5:
12799                                 size = NVRAM_SELFBOOT_FORMAT1_5_SIZE;
12800                                 break;
12801                         case TG3_EEPROM_SB_REVISION_6:
12802                                 size = NVRAM_SELFBOOT_FORMAT1_6_SIZE;
12803                                 break;
12804                         default:
12805                                 return -EIO;
12806                         }
12807                 } else
12808                         return 0;
12809         } else if ((magic & TG3_EEPROM_MAGIC_HW_MSK) == TG3_EEPROM_MAGIC_HW)
12810                 size = NVRAM_SELFBOOT_HW_SIZE;
12811         else
12812                 return -EIO;
12813
12814         buf = kmalloc(size, GFP_KERNEL);
12815         if (buf == NULL)
12816                 return -ENOMEM;
12817
12818         err = -EIO;
12819         for (i = 0, j = 0; i < size; i += 4, j++) {
12820                 err = tg3_nvram_read_be32(tp, i, &buf[j]);
12821                 if (err)
12822                         break;
12823         }
12824         if (i < size)
12825                 goto out;
12826
12827         /* Selfboot format */
12828         magic = be32_to_cpu(buf[0]);
12829         if ((magic & TG3_EEPROM_MAGIC_FW_MSK) ==
12830             TG3_EEPROM_MAGIC_FW) {
12831                 u8 *buf8 = (u8 *) buf, csum8 = 0;
12832
12833                 if ((magic & TG3_EEPROM_SB_REVISION_MASK) ==
12834                     TG3_EEPROM_SB_REVISION_2) {
12835                         /* For rev 2, the csum doesn't include the MBA. */
12836                         for (i = 0; i < TG3_EEPROM_SB_F1R2_MBA_OFF; i++)
12837                                 csum8 += buf8[i];
12838                         for (i = TG3_EEPROM_SB_F1R2_MBA_OFF + 4; i < size; i++)
12839                                 csum8 += buf8[i];
12840                 } else {
12841                         for (i = 0; i < size; i++)
12842                                 csum8 += buf8[i];
12843                 }
12844
12845                 if (csum8 == 0) {
12846                         err = 0;
12847                         goto out;
12848                 }
12849
12850                 err = -EIO;
12851                 goto out;
12852         }
12853
12854         if ((magic & TG3_EEPROM_MAGIC_HW_MSK) ==
12855             TG3_EEPROM_MAGIC_HW) {
12856                 u8 data[NVRAM_SELFBOOT_DATA_SIZE];
12857                 u8 parity[NVRAM_SELFBOOT_DATA_SIZE];
12858                 u8 *buf8 = (u8 *) buf;
12859
12860                 /* Separate the parity bits and the data bytes.  */
12861                 for (i = 0, j = 0, k = 0; i < NVRAM_SELFBOOT_HW_SIZE; i++) {
12862                         if ((i == 0) || (i == 8)) {
12863                                 int l;
12864                                 u8 msk;
12865
12866                                 for (l = 0, msk = 0x80; l < 7; l++, msk >>= 1)
12867                                         parity[k++] = buf8[i] & msk;
12868                                 i++;
12869                         } else if (i == 16) {
12870                                 int l;
12871                                 u8 msk;
12872
12873                                 for (l = 0, msk = 0x20; l < 6; l++, msk >>= 1)
12874                                         parity[k++] = buf8[i] & msk;
12875                                 i++;
12876
12877                                 for (l = 0, msk = 0x80; l < 8; l++, msk >>= 1)
12878                                         parity[k++] = buf8[i] & msk;
12879                                 i++;
12880                         }
12881                         data[j++] = buf8[i];
12882                 }
12883
12884                 err = -EIO;
12885                 for (i = 0; i < NVRAM_SELFBOOT_DATA_SIZE; i++) {
12886                         u8 hw8 = hweight8(data[i]);
12887
12888                         if ((hw8 & 0x1) && parity[i])
12889                                 goto out;
12890                         else if (!(hw8 & 0x1) && !parity[i])
12891                                 goto out;
12892                 }
12893                 err = 0;
12894                 goto out;
12895         }
12896
12897         err = -EIO;
12898
12899         /* Bootstrap checksum at offset 0x10 */
12900         csum = calc_crc((unsigned char *) buf, 0x10);
12901         if (csum != le32_to_cpu(buf[0x10/4]))
12902                 goto out;
12903
12904         /* Manufacturing block starts at offset 0x74, checksum at 0xfc */
12905         csum = calc_crc((unsigned char *) &buf[0x74/4], 0x88);
12906         if (csum != le32_to_cpu(buf[0xfc/4]))
12907                 goto out;
12908
12909         kfree(buf);
12910
12911         buf = tg3_vpd_readblock(tp, &len);
12912         if (!buf)
12913                 return -ENOMEM;
12914
12915         i = pci_vpd_find_tag((u8 *)buf, 0, len, PCI_VPD_LRDT_RO_DATA);
12916         if (i > 0) {
12917                 j = pci_vpd_lrdt_size(&((u8 *)buf)[i]);
12918                 if (j < 0)
12919                         goto out;
12920
12921                 if (i + PCI_VPD_LRDT_TAG_SIZE + j > len)
12922                         goto out;
12923
12924                 i += PCI_VPD_LRDT_TAG_SIZE;
12925                 j = pci_vpd_find_info_keyword((u8 *)buf, i, j,
12926                                               PCI_VPD_RO_KEYWORD_CHKSUM);
12927                 if (j > 0) {
12928                         u8 csum8 = 0;
12929
12930                         j += PCI_VPD_INFO_FLD_HDR_SIZE;
12931
12932                         for (i = 0; i <= j; i++)
12933                                 csum8 += ((u8 *)buf)[i];
12934
12935                         if (csum8)
12936                                 goto out;
12937                 }
12938         }
12939
12940         err = 0;
12941
12942 out:
12943         kfree(buf);
12944         return err;
12945 }
12946
12947 #define TG3_SERDES_TIMEOUT_SEC  2
12948 #define TG3_COPPER_TIMEOUT_SEC  6
12949
12950 static int tg3_test_link(struct tg3 *tp)
12951 {
12952         int i, max;
12953
12954         if (!netif_running(tp->dev))
12955                 return -ENODEV;
12956
12957         if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
12958                 max = TG3_SERDES_TIMEOUT_SEC;
12959         else
12960                 max = TG3_COPPER_TIMEOUT_SEC;
12961
12962         for (i = 0; i < max; i++) {
12963                 if (tp->link_up)
12964                         return 0;
12965
12966                 if (msleep_interruptible(1000))
12967                         break;
12968         }
12969
12970         return -EIO;
12971 }
12972
12973 /* Only test the commonly used registers */
12974 static int tg3_test_registers(struct tg3 *tp)
12975 {
12976         int i, is_5705, is_5750;
12977         u32 offset, read_mask, write_mask, val, save_val, read_val;
12978         static struct {
12979                 u16 offset;
12980                 u16 flags;
12981 #define TG3_FL_5705     0x1
12982 #define TG3_FL_NOT_5705 0x2
12983 #define TG3_FL_NOT_5788 0x4
12984 #define TG3_FL_NOT_5750 0x8
12985                 u32 read_mask;
12986                 u32 write_mask;
12987         } reg_tbl[] = {
12988                 /* MAC Control Registers */
12989                 { MAC_MODE, TG3_FL_NOT_5705,
12990                         0x00000000, 0x00ef6f8c },
12991                 { MAC_MODE, TG3_FL_5705,
12992                         0x00000000, 0x01ef6b8c },
12993                 { MAC_STATUS, TG3_FL_NOT_5705,
12994                         0x03800107, 0x00000000 },
12995                 { MAC_STATUS, TG3_FL_5705,
12996                         0x03800100, 0x00000000 },
12997                 { MAC_ADDR_0_HIGH, 0x0000,
12998                         0x00000000, 0x0000ffff },
12999                 { MAC_ADDR_0_LOW, 0x0000,
13000                         0x00000000, 0xffffffff },
13001                 { MAC_RX_MTU_SIZE, 0x0000,
13002                         0x00000000, 0x0000ffff },
13003                 { MAC_TX_MODE, 0x0000,
13004                         0x00000000, 0x00000070 },
13005                 { MAC_TX_LENGTHS, 0x0000,
13006                         0x00000000, 0x00003fff },
13007                 { MAC_RX_MODE, TG3_FL_NOT_5705,
13008                         0x00000000, 0x000007fc },
13009                 { MAC_RX_MODE, TG3_FL_5705,
13010                         0x00000000, 0x000007dc },
13011                 { MAC_HASH_REG_0, 0x0000,
13012                         0x00000000, 0xffffffff },
13013                 { MAC_HASH_REG_1, 0x0000,
13014                         0x00000000, 0xffffffff },
13015                 { MAC_HASH_REG_2, 0x0000,
13016                         0x00000000, 0xffffffff },
13017                 { MAC_HASH_REG_3, 0x0000,
13018                         0x00000000, 0xffffffff },
13019
13020                 /* Receive Data and Receive BD Initiator Control Registers. */
13021                 { RCVDBDI_JUMBO_BD+0, TG3_FL_NOT_5705,
13022                         0x00000000, 0xffffffff },
13023                 { RCVDBDI_JUMBO_BD+4, TG3_FL_NOT_5705,
13024                         0x00000000, 0xffffffff },
13025                 { RCVDBDI_JUMBO_BD+8, TG3_FL_NOT_5705,
13026                         0x00000000, 0x00000003 },
13027                 { RCVDBDI_JUMBO_BD+0xc, TG3_FL_NOT_5705,
13028                         0x00000000, 0xffffffff },
13029                 { RCVDBDI_STD_BD+0, 0x0000,
13030                         0x00000000, 0xffffffff },
13031                 { RCVDBDI_STD_BD+4, 0x0000,
13032                         0x00000000, 0xffffffff },
13033                 { RCVDBDI_STD_BD+8, 0x0000,
13034                         0x00000000, 0xffff0002 },
13035                 { RCVDBDI_STD_BD+0xc, 0x0000,
13036                         0x00000000, 0xffffffff },
13037
13038                 /* Receive BD Initiator Control Registers. */
13039                 { RCVBDI_STD_THRESH, TG3_FL_NOT_5705,
13040                         0x00000000, 0xffffffff },
13041                 { RCVBDI_STD_THRESH, TG3_FL_5705,
13042                         0x00000000, 0x000003ff },
13043                 { RCVBDI_JUMBO_THRESH, TG3_FL_NOT_5705,
13044                         0x00000000, 0xffffffff },
13045
13046                 /* Host Coalescing Control Registers. */
13047                 { HOSTCC_MODE, TG3_FL_NOT_5705,
13048                         0x00000000, 0x00000004 },
13049                 { HOSTCC_MODE, TG3_FL_5705,
13050                         0x00000000, 0x000000f6 },
13051                 { HOSTCC_RXCOL_TICKS, TG3_FL_NOT_5705,
13052                         0x00000000, 0xffffffff },
13053                 { HOSTCC_RXCOL_TICKS, TG3_FL_5705,
13054                         0x00000000, 0x000003ff },
13055                 { HOSTCC_TXCOL_TICKS, TG3_FL_NOT_5705,
13056                         0x00000000, 0xffffffff },
13057                 { HOSTCC_TXCOL_TICKS, TG3_FL_5705,
13058                         0x00000000, 0x000003ff },
13059                 { HOSTCC_RXMAX_FRAMES, TG3_FL_NOT_5705,
13060                         0x00000000, 0xffffffff },
13061                 { HOSTCC_RXMAX_FRAMES, TG3_FL_5705 | TG3_FL_NOT_5788,
13062                         0x00000000, 0x000000ff },
13063                 { HOSTCC_TXMAX_FRAMES, TG3_FL_NOT_5705,
13064                         0x00000000, 0xffffffff },
13065                 { HOSTCC_TXMAX_FRAMES, TG3_FL_5705 | TG3_FL_NOT_5788,
13066                         0x00000000, 0x000000ff },
13067                 { HOSTCC_RXCOAL_TICK_INT, TG3_FL_NOT_5705,
13068                         0x00000000, 0xffffffff },
13069                 { HOSTCC_TXCOAL_TICK_INT, TG3_FL_NOT_5705,
13070                         0x00000000, 0xffffffff },
13071                 { HOSTCC_RXCOAL_MAXF_INT, TG3_FL_NOT_5705,
13072                         0x00000000, 0xffffffff },
13073                 { HOSTCC_RXCOAL_MAXF_INT, TG3_FL_5705 | TG3_FL_NOT_5788,
13074                         0x00000000, 0x000000ff },
13075                 { HOSTCC_TXCOAL_MAXF_INT, TG3_FL_NOT_5705,
13076                         0x00000000, 0xffffffff },
13077                 { HOSTCC_TXCOAL_MAXF_INT, TG3_FL_5705 | TG3_FL_NOT_5788,
13078                         0x00000000, 0x000000ff },
13079                 { HOSTCC_STAT_COAL_TICKS, TG3_FL_NOT_5705,
13080                         0x00000000, 0xffffffff },
13081                 { HOSTCC_STATS_BLK_HOST_ADDR, TG3_FL_NOT_5705,
13082                         0x00000000, 0xffffffff },
13083                 { HOSTCC_STATS_BLK_HOST_ADDR+4, TG3_FL_NOT_5705,
13084                         0x00000000, 0xffffffff },
13085                 { HOSTCC_STATUS_BLK_HOST_ADDR, 0x0000,
13086                         0x00000000, 0xffffffff },
13087                 { HOSTCC_STATUS_BLK_HOST_ADDR+4, 0x0000,
13088                         0x00000000, 0xffffffff },
13089                 { HOSTCC_STATS_BLK_NIC_ADDR, 0x0000,
13090                         0xffffffff, 0x00000000 },
13091                 { HOSTCC_STATUS_BLK_NIC_ADDR, 0x0000,
13092                         0xffffffff, 0x00000000 },
13093
13094                 /* Buffer Manager Control Registers. */
13095                 { BUFMGR_MB_POOL_ADDR, TG3_FL_NOT_5750,
13096                         0x00000000, 0x007fff80 },
13097                 { BUFMGR_MB_POOL_SIZE, TG3_FL_NOT_5750,
13098                         0x00000000, 0x007fffff },
13099                 { BUFMGR_MB_RDMA_LOW_WATER, 0x0000,
13100                         0x00000000, 0x0000003f },
13101                 { BUFMGR_MB_MACRX_LOW_WATER, 0x0000,
13102                         0x00000000, 0x000001ff },
13103                 { BUFMGR_MB_HIGH_WATER, 0x0000,
13104                         0x00000000, 0x000001ff },
13105                 { BUFMGR_DMA_DESC_POOL_ADDR, TG3_FL_NOT_5705,
13106                         0xffffffff, 0x00000000 },
13107                 { BUFMGR_DMA_DESC_POOL_SIZE, TG3_FL_NOT_5705,
13108                         0xffffffff, 0x00000000 },
13109
13110                 /* Mailbox Registers */
13111                 { GRCMBOX_RCVSTD_PROD_IDX+4, 0x0000,
13112                         0x00000000, 0x000001ff },
13113                 { GRCMBOX_RCVJUMBO_PROD_IDX+4, TG3_FL_NOT_5705,
13114                         0x00000000, 0x000001ff },
13115                 { GRCMBOX_RCVRET_CON_IDX_0+4, 0x0000,
13116                         0x00000000, 0x000007ff },
13117                 { GRCMBOX_SNDHOST_PROD_IDX_0+4, 0x0000,
13118                         0x00000000, 0x000001ff },
13119
13120                 { 0xffff, 0x0000, 0x00000000, 0x00000000 },
13121         };
13122
13123         is_5705 = is_5750 = 0;
13124         if (tg3_flag(tp, 5705_PLUS)) {
13125                 is_5705 = 1;
13126                 if (tg3_flag(tp, 5750_PLUS))
13127                         is_5750 = 1;
13128         }
13129
13130         for (i = 0; reg_tbl[i].offset != 0xffff; i++) {
13131                 if (is_5705 && (reg_tbl[i].flags & TG3_FL_NOT_5705))
13132                         continue;
13133
13134                 if (!is_5705 && (reg_tbl[i].flags & TG3_FL_5705))
13135                         continue;
13136
13137                 if (tg3_flag(tp, IS_5788) &&
13138                     (reg_tbl[i].flags & TG3_FL_NOT_5788))
13139                         continue;
13140
13141                 if (is_5750 && (reg_tbl[i].flags & TG3_FL_NOT_5750))
13142                         continue;
13143
13144                 offset = (u32) reg_tbl[i].offset;
13145                 read_mask = reg_tbl[i].read_mask;
13146                 write_mask = reg_tbl[i].write_mask;
13147
13148                 /* Save the original register content */
13149                 save_val = tr32(offset);
13150
13151                 /* Determine the read-only value. */
13152                 read_val = save_val & read_mask;
13153
13154                 /* Write zero to the register, then make sure the read-only bits
13155                  * are not changed and the read/write bits are all zeros.
13156                  */
13157                 tw32(offset, 0);
13158
13159                 val = tr32(offset);
13160
13161                 /* Test the read-only and read/write bits. */
13162                 if (((val & read_mask) != read_val) || (val & write_mask))
13163                         goto out;
13164
13165                 /* Write ones to all the bits defined by RdMask and WrMask, then
13166                  * make sure the read-only bits are not changed and the
13167                  * read/write bits are all ones.
13168                  */
13169                 tw32(offset, read_mask | write_mask);
13170
13171                 val = tr32(offset);
13172
13173                 /* Test the read-only bits. */
13174                 if ((val & read_mask) != read_val)
13175                         goto out;
13176
13177                 /* Test the read/write bits. */
13178                 if ((val & write_mask) != write_mask)
13179                         goto out;
13180
13181                 tw32(offset, save_val);
13182         }
13183
13184         return 0;
13185
13186 out:
13187         if (netif_msg_hw(tp))
13188                 netdev_err(tp->dev,
13189                            "Register test failed at offset %x\n", offset);
13190         tw32(offset, save_val);
13191         return -EIO;
13192 }
13193
13194 static int tg3_do_mem_test(struct tg3 *tp, u32 offset, u32 len)
13195 {
13196         static const u32 test_pattern[] = { 0x00000000, 0xffffffff, 0xaa55a55a };
13197         int i;
13198         u32 j;
13199
13200         for (i = 0; i < ARRAY_SIZE(test_pattern); i++) {
13201                 for (j = 0; j < len; j += 4) {
13202                         u32 val;
13203
13204                         tg3_write_mem(tp, offset + j, test_pattern[i]);
13205                         tg3_read_mem(tp, offset + j, &val);
13206                         if (val != test_pattern[i])
13207                                 return -EIO;
13208                 }
13209         }
13210         return 0;
13211 }
13212
13213 static int tg3_test_memory(struct tg3 *tp)
13214 {
13215         static struct mem_entry {
13216                 u32 offset;
13217                 u32 len;
13218         } mem_tbl_570x[] = {
13219                 { 0x00000000, 0x00b50},
13220                 { 0x00002000, 0x1c000},
13221                 { 0xffffffff, 0x00000}
13222         }, mem_tbl_5705[] = {
13223                 { 0x00000100, 0x0000c},
13224                 { 0x00000200, 0x00008},
13225                 { 0x00004000, 0x00800},
13226                 { 0x00006000, 0x01000},
13227                 { 0x00008000, 0x02000},
13228                 { 0x00010000, 0x0e000},
13229                 { 0xffffffff, 0x00000}
13230         }, mem_tbl_5755[] = {
13231                 { 0x00000200, 0x00008},
13232                 { 0x00004000, 0x00800},
13233                 { 0x00006000, 0x00800},
13234                 { 0x00008000, 0x02000},
13235                 { 0x00010000, 0x0c000},
13236                 { 0xffffffff, 0x00000}
13237         }, mem_tbl_5906[] = {
13238                 { 0x00000200, 0x00008},
13239                 { 0x00004000, 0x00400},
13240                 { 0x00006000, 0x00400},
13241                 { 0x00008000, 0x01000},
13242                 { 0x00010000, 0x01000},
13243                 { 0xffffffff, 0x00000}
13244         }, mem_tbl_5717[] = {
13245                 { 0x00000200, 0x00008},
13246                 { 0x00010000, 0x0a000},
13247                 { 0x00020000, 0x13c00},
13248                 { 0xffffffff, 0x00000}
13249         }, mem_tbl_57765[] = {
13250                 { 0x00000200, 0x00008},
13251                 { 0x00004000, 0x00800},
13252                 { 0x00006000, 0x09800},
13253                 { 0x00010000, 0x0a000},
13254                 { 0xffffffff, 0x00000}
13255         };
13256         struct mem_entry *mem_tbl;
13257         int err = 0;
13258         int i;
13259
13260         if (tg3_flag(tp, 5717_PLUS))
13261                 mem_tbl = mem_tbl_5717;
13262         else if (tg3_flag(tp, 57765_CLASS) ||
13263                  tg3_asic_rev(tp) == ASIC_REV_5762)
13264                 mem_tbl = mem_tbl_57765;
13265         else if (tg3_flag(tp, 5755_PLUS))
13266                 mem_tbl = mem_tbl_5755;
13267         else if (tg3_asic_rev(tp) == ASIC_REV_5906)
13268                 mem_tbl = mem_tbl_5906;
13269         else if (tg3_flag(tp, 5705_PLUS))
13270                 mem_tbl = mem_tbl_5705;
13271         else
13272                 mem_tbl = mem_tbl_570x;
13273
13274         for (i = 0; mem_tbl[i].offset != 0xffffffff; i++) {
13275                 err = tg3_do_mem_test(tp, mem_tbl[i].offset, mem_tbl[i].len);
13276                 if (err)
13277                         break;
13278         }
13279
13280         return err;
13281 }
13282
13283 #define TG3_TSO_MSS             500
13284
13285 #define TG3_TSO_IP_HDR_LEN      20
13286 #define TG3_TSO_TCP_HDR_LEN     20
13287 #define TG3_TSO_TCP_OPT_LEN     12
13288
13289 static const u8 tg3_tso_header[] = {
13290 0x08, 0x00,
13291 0x45, 0x00, 0x00, 0x00,
13292 0x00, 0x00, 0x40, 0x00,
13293 0x40, 0x06, 0x00, 0x00,
13294 0x0a, 0x00, 0x00, 0x01,
13295 0x0a, 0x00, 0x00, 0x02,
13296 0x0d, 0x00, 0xe0, 0x00,
13297 0x00, 0x00, 0x01, 0x00,
13298 0x00, 0x00, 0x02, 0x00,
13299 0x80, 0x10, 0x10, 0x00,
13300 0x14, 0x09, 0x00, 0x00,
13301 0x01, 0x01, 0x08, 0x0a,
13302 0x11, 0x11, 0x11, 0x11,
13303 0x11, 0x11, 0x11, 0x11,
13304 };
13305
13306 static int tg3_run_loopback(struct tg3 *tp, u32 pktsz, bool tso_loopback)
13307 {
13308         u32 rx_start_idx, rx_idx, tx_idx, opaque_key;
13309         u32 base_flags = 0, mss = 0, desc_idx, coal_now, data_off, val;
13310         u32 budget;
13311         struct sk_buff *skb;
13312         u8 *tx_data, *rx_data;
13313         dma_addr_t map;
13314         int num_pkts, tx_len, rx_len, i, err;
13315         struct tg3_rx_buffer_desc *desc;
13316         struct tg3_napi *tnapi, *rnapi;
13317         struct tg3_rx_prodring_set *tpr = &tp->napi[0].prodring;
13318
13319         tnapi = &tp->napi[0];
13320         rnapi = &tp->napi[0];
13321         if (tp->irq_cnt > 1) {
13322                 if (tg3_flag(tp, ENABLE_RSS))
13323                         rnapi = &tp->napi[1];
13324                 if (tg3_flag(tp, ENABLE_TSS))
13325                         tnapi = &tp->napi[1];
13326         }
13327         coal_now = tnapi->coal_now | rnapi->coal_now;
13328
13329         err = -EIO;
13330
13331         tx_len = pktsz;
13332         skb = netdev_alloc_skb(tp->dev, tx_len);
13333         if (!skb)
13334                 return -ENOMEM;
13335
13336         tx_data = skb_put(skb, tx_len);
13337         memcpy(tx_data, tp->dev->dev_addr, ETH_ALEN);
13338         memset(tx_data + ETH_ALEN, 0x0, 8);
13339
13340         tw32(MAC_RX_MTU_SIZE, tx_len + ETH_FCS_LEN);
13341
13342         if (tso_loopback) {
13343                 struct iphdr *iph = (struct iphdr *)&tx_data[ETH_HLEN];
13344
13345                 u32 hdr_len = TG3_TSO_IP_HDR_LEN + TG3_TSO_TCP_HDR_LEN +
13346                               TG3_TSO_TCP_OPT_LEN;
13347
13348                 memcpy(tx_data + ETH_ALEN * 2, tg3_tso_header,
13349                        sizeof(tg3_tso_header));
13350                 mss = TG3_TSO_MSS;
13351
13352                 val = tx_len - ETH_ALEN * 2 - sizeof(tg3_tso_header);
13353                 num_pkts = DIV_ROUND_UP(val, TG3_TSO_MSS);
13354
13355                 /* Set the total length field in the IP header */
13356                 iph->tot_len = htons((u16)(mss + hdr_len));
13357
13358                 base_flags = (TXD_FLAG_CPU_PRE_DMA |
13359                               TXD_FLAG_CPU_POST_DMA);
13360
13361                 if (tg3_flag(tp, HW_TSO_1) ||
13362                     tg3_flag(tp, HW_TSO_2) ||
13363                     tg3_flag(tp, HW_TSO_3)) {
13364                         struct tcphdr *th;
13365                         val = ETH_HLEN + TG3_TSO_IP_HDR_LEN;
13366                         th = (struct tcphdr *)&tx_data[val];
13367                         th->check = 0;
13368                 } else
13369                         base_flags |= TXD_FLAG_TCPUDP_CSUM;
13370
13371                 if (tg3_flag(tp, HW_TSO_3)) {
13372                         mss |= (hdr_len & 0xc) << 12;
13373                         if (hdr_len & 0x10)
13374                                 base_flags |= 0x00000010;
13375                         base_flags |= (hdr_len & 0x3e0) << 5;
13376                 } else if (tg3_flag(tp, HW_TSO_2))
13377                         mss |= hdr_len << 9;
13378                 else if (tg3_flag(tp, HW_TSO_1) ||
13379                          tg3_asic_rev(tp) == ASIC_REV_5705) {
13380                         mss |= (TG3_TSO_TCP_OPT_LEN << 9);
13381                 } else {
13382                         base_flags |= (TG3_TSO_TCP_OPT_LEN << 10);
13383                 }
13384
13385                 data_off = ETH_ALEN * 2 + sizeof(tg3_tso_header);
13386         } else {
13387                 num_pkts = 1;
13388                 data_off = ETH_HLEN;
13389
13390                 if (tg3_flag(tp, USE_JUMBO_BDFLAG) &&
13391                     tx_len > VLAN_ETH_FRAME_LEN)
13392                         base_flags |= TXD_FLAG_JMB_PKT;
13393         }
13394
13395         for (i = data_off; i < tx_len; i++)
13396                 tx_data[i] = (u8) (i & 0xff);
13397
13398         map = pci_map_single(tp->pdev, skb->data, tx_len, PCI_DMA_TODEVICE);
13399         if (pci_dma_mapping_error(tp->pdev, map)) {
13400                 dev_kfree_skb(skb);
13401                 return -EIO;
13402         }
13403
13404         val = tnapi->tx_prod;
13405         tnapi->tx_buffers[val].skb = skb;
13406         dma_unmap_addr_set(&tnapi->tx_buffers[val], mapping, map);
13407
13408         tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
13409                rnapi->coal_now);
13410
13411         udelay(10);
13412
13413         rx_start_idx = rnapi->hw_status->idx[0].rx_producer;
13414
13415         budget = tg3_tx_avail(tnapi);
13416         if (tg3_tx_frag_set(tnapi, &val, &budget, map, tx_len,
13417                             base_flags | TXD_FLAG_END, mss, 0)) {
13418                 tnapi->tx_buffers[val].skb = NULL;
13419                 dev_kfree_skb(skb);
13420                 return -EIO;
13421         }
13422
13423         tnapi->tx_prod++;
13424
13425         /* Sync BD data before updating mailbox */
13426         wmb();
13427
13428         tw32_tx_mbox(tnapi->prodmbox, tnapi->tx_prod);
13429         tr32_mailbox(tnapi->prodmbox);
13430
13431         udelay(10);
13432
13433         /* 350 usec to allow enough time on some 10/100 Mbps devices.  */
13434         for (i = 0; i < 35; i++) {
13435                 tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
13436                        coal_now);
13437
13438                 udelay(10);
13439
13440                 tx_idx = tnapi->hw_status->idx[0].tx_consumer;
13441                 rx_idx = rnapi->hw_status->idx[0].rx_producer;
13442                 if ((tx_idx == tnapi->tx_prod) &&
13443                     (rx_idx == (rx_start_idx + num_pkts)))
13444                         break;
13445         }
13446
13447         tg3_tx_skb_unmap(tnapi, tnapi->tx_prod - 1, -1);
13448         dev_kfree_skb(skb);
13449
13450         if (tx_idx != tnapi->tx_prod)
13451                 goto out;
13452
13453         if (rx_idx != rx_start_idx + num_pkts)
13454                 goto out;
13455
13456         val = data_off;
13457         while (rx_idx != rx_start_idx) {
13458                 desc = &rnapi->rx_rcb[rx_start_idx++];
13459                 desc_idx = desc->opaque & RXD_OPAQUE_INDEX_MASK;
13460                 opaque_key = desc->opaque & RXD_OPAQUE_RING_MASK;
13461
13462                 if ((desc->err_vlan & RXD_ERR_MASK) != 0 &&
13463                     (desc->err_vlan != RXD_ERR_ODD_NIBBLE_RCVD_MII))
13464                         goto out;
13465
13466                 rx_len = ((desc->idx_len & RXD_LEN_MASK) >> RXD_LEN_SHIFT)
13467                          - ETH_FCS_LEN;
13468
13469                 if (!tso_loopback) {
13470                         if (rx_len != tx_len)
13471                                 goto out;
13472
13473                         if (pktsz <= TG3_RX_STD_DMA_SZ - ETH_FCS_LEN) {
13474                                 if (opaque_key != RXD_OPAQUE_RING_STD)
13475                                         goto out;
13476                         } else {
13477                                 if (opaque_key != RXD_OPAQUE_RING_JUMBO)
13478                                         goto out;
13479                         }
13480                 } else if ((desc->type_flags & RXD_FLAG_TCPUDP_CSUM) &&
13481                            (desc->ip_tcp_csum & RXD_TCPCSUM_MASK)
13482                             >> RXD_TCPCSUM_SHIFT != 0xffff) {
13483                         goto out;
13484                 }
13485
13486                 if (opaque_key == RXD_OPAQUE_RING_STD) {
13487                         rx_data = tpr->rx_std_buffers[desc_idx].data;
13488                         map = dma_unmap_addr(&tpr->rx_std_buffers[desc_idx],
13489                                              mapping);
13490                 } else if (opaque_key == RXD_OPAQUE_RING_JUMBO) {
13491                         rx_data = tpr->rx_jmb_buffers[desc_idx].data;
13492                         map = dma_unmap_addr(&tpr->rx_jmb_buffers[desc_idx],
13493                                              mapping);
13494                 } else
13495                         goto out;
13496
13497                 pci_dma_sync_single_for_cpu(tp->pdev, map, rx_len,
13498                                             PCI_DMA_FROMDEVICE);
13499
13500                 rx_data += TG3_RX_OFFSET(tp);
13501                 for (i = data_off; i < rx_len; i++, val++) {
13502                         if (*(rx_data + i) != (u8) (val & 0xff))
13503                                 goto out;
13504                 }
13505         }
13506
13507         err = 0;
13508
13509         /* tg3_free_rings will unmap and free the rx_data */
13510 out:
13511         return err;
13512 }
13513
13514 #define TG3_STD_LOOPBACK_FAILED         1
13515 #define TG3_JMB_LOOPBACK_FAILED         2
13516 #define TG3_TSO_LOOPBACK_FAILED         4
13517 #define TG3_LOOPBACK_FAILED \
13518         (TG3_STD_LOOPBACK_FAILED | \
13519          TG3_JMB_LOOPBACK_FAILED | \
13520          TG3_TSO_LOOPBACK_FAILED)
13521
13522 static int tg3_test_loopback(struct tg3 *tp, u64 *data, bool do_extlpbk)
13523 {
13524         int err = -EIO;
13525         u32 eee_cap;
13526         u32 jmb_pkt_sz = 9000;
13527
13528         if (tp->dma_limit)
13529                 jmb_pkt_sz = tp->dma_limit - ETH_HLEN;
13530
13531         eee_cap = tp->phy_flags & TG3_PHYFLG_EEE_CAP;
13532         tp->phy_flags &= ~TG3_PHYFLG_EEE_CAP;
13533
13534         if (!netif_running(tp->dev)) {
13535                 data[TG3_MAC_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13536                 data[TG3_PHY_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13537                 if (do_extlpbk)
13538                         data[TG3_EXT_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13539                 goto done;
13540         }
13541
13542         err = tg3_reset_hw(tp, true);
13543         if (err) {
13544                 data[TG3_MAC_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13545                 data[TG3_PHY_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13546                 if (do_extlpbk)
13547                         data[TG3_EXT_LOOPB_TEST] = TG3_LOOPBACK_FAILED;
13548                 goto done;
13549         }
13550
13551         if (tg3_flag(tp, ENABLE_RSS)) {
13552                 int i;
13553
13554                 /* Reroute all rx packets to the 1st queue */
13555                 for (i = MAC_RSS_INDIR_TBL_0;
13556                      i < MAC_RSS_INDIR_TBL_0 + TG3_RSS_INDIR_TBL_SIZE; i += 4)
13557                         tw32(i, 0x0);
13558         }
13559
13560         /* HW errata - mac loopback fails in some cases on 5780.
13561          * Normal traffic and PHY loopback are not affected by
13562          * errata.  Also, the MAC loopback test is deprecated for
13563          * all newer ASIC revisions.
13564          */
13565         if (tg3_asic_rev(tp) != ASIC_REV_5780 &&
13566             !tg3_flag(tp, CPMU_PRESENT)) {
13567                 tg3_mac_loopback(tp, true);
13568
13569                 if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
13570                         data[TG3_MAC_LOOPB_TEST] |= TG3_STD_LOOPBACK_FAILED;
13571
13572                 if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
13573                     tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
13574                         data[TG3_MAC_LOOPB_TEST] |= TG3_JMB_LOOPBACK_FAILED;
13575
13576                 tg3_mac_loopback(tp, false);
13577         }
13578
13579         if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
13580             !tg3_flag(tp, USE_PHYLIB)) {
13581                 int i;
13582
13583                 tg3_phy_lpbk_set(tp, 0, false);
13584
13585                 /* Wait for link */
13586                 for (i = 0; i < 100; i++) {
13587                         if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
13588                                 break;
13589                         mdelay(1);
13590                 }
13591
13592                 if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
13593                         data[TG3_PHY_LOOPB_TEST] |= TG3_STD_LOOPBACK_FAILED;
13594                 if (tg3_flag(tp, TSO_CAPABLE) &&
13595                     tg3_run_loopback(tp, ETH_FRAME_LEN, true))
13596                         data[TG3_PHY_LOOPB_TEST] |= TG3_TSO_LOOPBACK_FAILED;
13597                 if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
13598                     tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
13599                         data[TG3_PHY_LOOPB_TEST] |= TG3_JMB_LOOPBACK_FAILED;
13600
13601                 if (do_extlpbk) {
13602                         tg3_phy_lpbk_set(tp, 0, true);
13603
13604                         /* All link indications report up, but the hardware
13605                          * isn't really ready for about 20 msec.  Double it
13606                          * to be sure.
13607                          */
13608                         mdelay(40);
13609
13610                         if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
13611                                 data[TG3_EXT_LOOPB_TEST] |=
13612                                                         TG3_STD_LOOPBACK_FAILED;
13613                         if (tg3_flag(tp, TSO_CAPABLE) &&
13614                             tg3_run_loopback(tp, ETH_FRAME_LEN, true))
13615                                 data[TG3_EXT_LOOPB_TEST] |=
13616                                                         TG3_TSO_LOOPBACK_FAILED;
13617                         if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
13618                             tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
13619                                 data[TG3_EXT_LOOPB_TEST] |=
13620                                                         TG3_JMB_LOOPBACK_FAILED;
13621                 }
13622
13623                 /* Re-enable gphy autopowerdown. */
13624                 if (tp->phy_flags & TG3_PHYFLG_ENABLE_APD)
13625                         tg3_phy_toggle_apd(tp, true);
13626         }
13627
13628         err = (data[TG3_MAC_LOOPB_TEST] | data[TG3_PHY_LOOPB_TEST] |
13629                data[TG3_EXT_LOOPB_TEST]) ? -EIO : 0;
13630
13631 done:
13632         tp->phy_flags |= eee_cap;
13633
13634         return err;
13635 }
13636
13637 static void tg3_self_test(struct net_device *dev, struct ethtool_test *etest,
13638                           u64 *data)
13639 {
13640         struct tg3 *tp = netdev_priv(dev);
13641         bool doextlpbk = etest->flags & ETH_TEST_FL_EXTERNAL_LB;
13642
13643         if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) {
13644                 if (tg3_power_up(tp)) {
13645                         etest->flags |= ETH_TEST_FL_FAILED;
13646                         memset(data, 1, sizeof(u64) * TG3_NUM_TEST);
13647                         return;
13648                 }
13649                 tg3_ape_driver_state_change(tp, RESET_KIND_INIT);
13650         }
13651
13652         memset(data, 0, sizeof(u64) * TG3_NUM_TEST);
13653
13654         if (tg3_test_nvram(tp) != 0) {
13655                 etest->flags |= ETH_TEST_FL_FAILED;
13656                 data[TG3_NVRAM_TEST] = 1;
13657         }
13658         if (!doextlpbk && tg3_test_link(tp)) {
13659                 etest->flags |= ETH_TEST_FL_FAILED;
13660                 data[TG3_LINK_TEST] = 1;
13661         }
13662         if (etest->flags & ETH_TEST_FL_OFFLINE) {
13663                 int err, err2 = 0, irq_sync = 0;
13664
13665                 if (netif_running(dev)) {
13666                         tg3_phy_stop(tp);
13667                         tg3_netif_stop(tp);
13668                         irq_sync = 1;
13669                 }
13670
13671                 tg3_full_lock(tp, irq_sync);
13672                 tg3_halt(tp, RESET_KIND_SUSPEND, 1);
13673                 err = tg3_nvram_lock(tp);
13674                 tg3_halt_cpu(tp, RX_CPU_BASE);
13675                 if (!tg3_flag(tp, 5705_PLUS))
13676                         tg3_halt_cpu(tp, TX_CPU_BASE);
13677                 if (!err)
13678                         tg3_nvram_unlock(tp);
13679
13680                 if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
13681                         tg3_phy_reset(tp);
13682
13683                 if (tg3_test_registers(tp) != 0) {
13684                         etest->flags |= ETH_TEST_FL_FAILED;
13685                         data[TG3_REGISTER_TEST] = 1;
13686                 }
13687
13688                 if (tg3_test_memory(tp) != 0) {
13689                         etest->flags |= ETH_TEST_FL_FAILED;
13690                         data[TG3_MEMORY_TEST] = 1;
13691                 }
13692
13693                 if (doextlpbk)
13694                         etest->flags |= ETH_TEST_FL_EXTERNAL_LB_DONE;
13695
13696                 if (tg3_test_loopback(tp, data, doextlpbk))
13697                         etest->flags |= ETH_TEST_FL_FAILED;
13698
13699                 tg3_full_unlock(tp);
13700
13701                 if (tg3_test_interrupt(tp) != 0) {
13702                         etest->flags |= ETH_TEST_FL_FAILED;
13703                         data[TG3_INTERRUPT_TEST] = 1;
13704                 }
13705
13706                 tg3_full_lock(tp, 0);
13707
13708                 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
13709                 if (netif_running(dev)) {
13710                         tg3_flag_set(tp, INIT_COMPLETE);
13711                         err2 = tg3_restart_hw(tp, true);
13712                         if (!err2)
13713                                 tg3_netif_start(tp);
13714                 }
13715
13716                 tg3_full_unlock(tp);
13717
13718                 if (irq_sync && !err2)
13719                         tg3_phy_start(tp);
13720         }
13721         if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
13722                 tg3_power_down_prepare(tp);
13723
13724 }
13725
13726 static int tg3_hwtstamp_set(struct net_device *dev, struct ifreq *ifr)
13727 {
13728         struct tg3 *tp = netdev_priv(dev);
13729         struct hwtstamp_config stmpconf;
13730
13731         if (!tg3_flag(tp, PTP_CAPABLE))
13732                 return -EOPNOTSUPP;
13733
13734         if (copy_from_user(&stmpconf, ifr->ifr_data, sizeof(stmpconf)))
13735                 return -EFAULT;
13736
13737         if (stmpconf.flags)
13738                 return -EINVAL;
13739
13740         if (stmpconf.tx_type != HWTSTAMP_TX_ON &&
13741             stmpconf.tx_type != HWTSTAMP_TX_OFF)
13742                 return -ERANGE;
13743
13744         switch (stmpconf.rx_filter) {
13745         case HWTSTAMP_FILTER_NONE:
13746                 tp->rxptpctl = 0;
13747                 break;
13748         case HWTSTAMP_FILTER_PTP_V1_L4_EVENT:
13749                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V1_EN |
13750                                TG3_RX_PTP_CTL_ALL_V1_EVENTS;
13751                 break;
13752         case HWTSTAMP_FILTER_PTP_V1_L4_SYNC:
13753                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V1_EN |
13754                                TG3_RX_PTP_CTL_SYNC_EVNT;
13755                 break;
13756         case HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ:
13757                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V1_EN |
13758                                TG3_RX_PTP_CTL_DELAY_REQ;
13759                 break;
13760         case HWTSTAMP_FILTER_PTP_V2_EVENT:
13761                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_EN |
13762                                TG3_RX_PTP_CTL_ALL_V2_EVENTS;
13763                 break;
13764         case HWTSTAMP_FILTER_PTP_V2_L2_EVENT:
13765                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN |
13766                                TG3_RX_PTP_CTL_ALL_V2_EVENTS;
13767                 break;
13768         case HWTSTAMP_FILTER_PTP_V2_L4_EVENT:
13769                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN |
13770                                TG3_RX_PTP_CTL_ALL_V2_EVENTS;
13771                 break;
13772         case HWTSTAMP_FILTER_PTP_V2_SYNC:
13773                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_EN |
13774                                TG3_RX_PTP_CTL_SYNC_EVNT;
13775                 break;
13776         case HWTSTAMP_FILTER_PTP_V2_L2_SYNC:
13777                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN |
13778                                TG3_RX_PTP_CTL_SYNC_EVNT;
13779                 break;
13780         case HWTSTAMP_FILTER_PTP_V2_L4_SYNC:
13781                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN |
13782                                TG3_RX_PTP_CTL_SYNC_EVNT;
13783                 break;
13784         case HWTSTAMP_FILTER_PTP_V2_DELAY_REQ:
13785                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_EN |
13786                                TG3_RX_PTP_CTL_DELAY_REQ;
13787                 break;
13788         case HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ:
13789                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN |
13790                                TG3_RX_PTP_CTL_DELAY_REQ;
13791                 break;
13792         case HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ:
13793                 tp->rxptpctl = TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN |
13794                                TG3_RX_PTP_CTL_DELAY_REQ;
13795                 break;
13796         default:
13797                 return -ERANGE;
13798         }
13799
13800         if (netif_running(dev) && tp->rxptpctl)
13801                 tw32(TG3_RX_PTP_CTL,
13802                      tp->rxptpctl | TG3_RX_PTP_CTL_HWTS_INTERLOCK);
13803
13804         if (stmpconf.tx_type == HWTSTAMP_TX_ON)
13805                 tg3_flag_set(tp, TX_TSTAMP_EN);
13806         else
13807                 tg3_flag_clear(tp, TX_TSTAMP_EN);
13808
13809         return copy_to_user(ifr->ifr_data, &stmpconf, sizeof(stmpconf)) ?
13810                 -EFAULT : 0;
13811 }
13812
13813 static int tg3_hwtstamp_get(struct net_device *dev, struct ifreq *ifr)
13814 {
13815         struct tg3 *tp = netdev_priv(dev);
13816         struct hwtstamp_config stmpconf;
13817
13818         if (!tg3_flag(tp, PTP_CAPABLE))
13819                 return -EOPNOTSUPP;
13820
13821         stmpconf.flags = 0;
13822         stmpconf.tx_type = (tg3_flag(tp, TX_TSTAMP_EN) ?
13823                             HWTSTAMP_TX_ON : HWTSTAMP_TX_OFF);
13824
13825         switch (tp->rxptpctl) {
13826         case 0:
13827                 stmpconf.rx_filter = HWTSTAMP_FILTER_NONE;
13828                 break;
13829         case TG3_RX_PTP_CTL_RX_PTP_V1_EN | TG3_RX_PTP_CTL_ALL_V1_EVENTS:
13830                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_EVENT;
13831                 break;
13832         case TG3_RX_PTP_CTL_RX_PTP_V1_EN | TG3_RX_PTP_CTL_SYNC_EVNT:
13833                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_SYNC;
13834                 break;
13835         case TG3_RX_PTP_CTL_RX_PTP_V1_EN | TG3_RX_PTP_CTL_DELAY_REQ:
13836                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ;
13837                 break;
13838         case TG3_RX_PTP_CTL_RX_PTP_V2_EN | TG3_RX_PTP_CTL_ALL_V2_EVENTS:
13839                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_EVENT;
13840                 break;
13841         case TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN | TG3_RX_PTP_CTL_ALL_V2_EVENTS:
13842                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L2_EVENT;
13843                 break;
13844         case TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN | TG3_RX_PTP_CTL_ALL_V2_EVENTS:
13845                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_EVENT;
13846                 break;
13847         case TG3_RX_PTP_CTL_RX_PTP_V2_EN | TG3_RX_PTP_CTL_SYNC_EVNT:
13848                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_SYNC;
13849                 break;
13850         case TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN | TG3_RX_PTP_CTL_SYNC_EVNT:
13851                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L2_SYNC;
13852                 break;
13853         case TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN | TG3_RX_PTP_CTL_SYNC_EVNT:
13854                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_SYNC;
13855                 break;
13856         case TG3_RX_PTP_CTL_RX_PTP_V2_EN | TG3_RX_PTP_CTL_DELAY_REQ:
13857                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_DELAY_REQ;
13858                 break;
13859         case TG3_RX_PTP_CTL_RX_PTP_V2_L2_EN | TG3_RX_PTP_CTL_DELAY_REQ:
13860                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ;
13861                 break;
13862         case TG3_RX_PTP_CTL_RX_PTP_V2_L4_EN | TG3_RX_PTP_CTL_DELAY_REQ:
13863                 stmpconf.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ;
13864                 break;
13865         default:
13866                 WARN_ON_ONCE(1);
13867                 return -ERANGE;
13868         }
13869
13870         return copy_to_user(ifr->ifr_data, &stmpconf, sizeof(stmpconf)) ?
13871                 -EFAULT : 0;
13872 }
13873
13874 static int tg3_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
13875 {
13876         struct mii_ioctl_data *data = if_mii(ifr);
13877         struct tg3 *tp = netdev_priv(dev);
13878         int err;
13879
13880         if (tg3_flag(tp, USE_PHYLIB)) {
13881                 struct phy_device *phydev;
13882                 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
13883                         return -EAGAIN;
13884                 phydev = tp->mdio_bus->phy_map[tp->phy_addr];
13885                 return phy_mii_ioctl(phydev, ifr, cmd);
13886         }
13887
13888         switch (cmd) {
13889         case SIOCGMIIPHY:
13890                 data->phy_id = tp->phy_addr;
13891
13892                 /* fallthru */
13893         case SIOCGMIIREG: {
13894                 u32 mii_regval;
13895
13896                 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
13897                         break;                  /* We have no PHY */
13898
13899                 if (!netif_running(dev))
13900                         return -EAGAIN;
13901
13902                 spin_lock_bh(&tp->lock);
13903                 err = __tg3_readphy(tp, data->phy_id & 0x1f,
13904                                     data->reg_num & 0x1f, &mii_regval);
13905                 spin_unlock_bh(&tp->lock);
13906
13907                 data->val_out = mii_regval;
13908
13909                 return err;
13910         }
13911
13912         case SIOCSMIIREG:
13913                 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
13914                         break;                  /* We have no PHY */
13915
13916                 if (!netif_running(dev))
13917                         return -EAGAIN;
13918
13919                 spin_lock_bh(&tp->lock);
13920                 err = __tg3_writephy(tp, data->phy_id & 0x1f,
13921                                      data->reg_num & 0x1f, data->val_in);
13922                 spin_unlock_bh(&tp->lock);
13923
13924                 return err;
13925
13926         case SIOCSHWTSTAMP:
13927                 return tg3_hwtstamp_set(dev, ifr);
13928
13929         case SIOCGHWTSTAMP:
13930                 return tg3_hwtstamp_get(dev, ifr);
13931
13932         default:
13933                 /* do nothing */
13934                 break;
13935         }
13936         return -EOPNOTSUPP;
13937 }
13938
13939 static int tg3_get_coalesce(struct net_device *dev, struct ethtool_coalesce *ec)
13940 {
13941         struct tg3 *tp = netdev_priv(dev);
13942
13943         memcpy(ec, &tp->coal, sizeof(*ec));
13944         return 0;
13945 }
13946
13947 static int tg3_set_coalesce(struct net_device *dev, struct ethtool_coalesce *ec)
13948 {
13949         struct tg3 *tp = netdev_priv(dev);
13950         u32 max_rxcoal_tick_int = 0, max_txcoal_tick_int = 0;
13951         u32 max_stat_coal_ticks = 0, min_stat_coal_ticks = 0;
13952
13953         if (!tg3_flag(tp, 5705_PLUS)) {
13954                 max_rxcoal_tick_int = MAX_RXCOAL_TICK_INT;
13955                 max_txcoal_tick_int = MAX_TXCOAL_TICK_INT;
13956                 max_stat_coal_ticks = MAX_STAT_COAL_TICKS;
13957                 min_stat_coal_ticks = MIN_STAT_COAL_TICKS;
13958         }
13959
13960         if ((ec->rx_coalesce_usecs > MAX_RXCOL_TICKS) ||
13961             (ec->tx_coalesce_usecs > MAX_TXCOL_TICKS) ||
13962             (ec->rx_max_coalesced_frames > MAX_RXMAX_FRAMES) ||
13963             (ec->tx_max_coalesced_frames > MAX_TXMAX_FRAMES) ||
13964             (ec->rx_coalesce_usecs_irq > max_rxcoal_tick_int) ||
13965             (ec->tx_coalesce_usecs_irq > max_txcoal_tick_int) ||
13966             (ec->rx_max_coalesced_frames_irq > MAX_RXCOAL_MAXF_INT) ||
13967             (ec->tx_max_coalesced_frames_irq > MAX_TXCOAL_MAXF_INT) ||
13968             (ec->stats_block_coalesce_usecs > max_stat_coal_ticks) ||
13969             (ec->stats_block_coalesce_usecs < min_stat_coal_ticks))
13970                 return -EINVAL;
13971
13972         /* No rx interrupts will be generated if both are zero */
13973         if ((ec->rx_coalesce_usecs == 0) &&
13974             (ec->rx_max_coalesced_frames == 0))
13975                 return -EINVAL;
13976
13977         /* No tx interrupts will be generated if both are zero */
13978         if ((ec->tx_coalesce_usecs == 0) &&
13979             (ec->tx_max_coalesced_frames == 0))
13980                 return -EINVAL;
13981
13982         /* Only copy relevant parameters, ignore all others. */
13983         tp->coal.rx_coalesce_usecs = ec->rx_coalesce_usecs;
13984         tp->coal.tx_coalesce_usecs = ec->tx_coalesce_usecs;
13985         tp->coal.rx_max_coalesced_frames = ec->rx_max_coalesced_frames;
13986         tp->coal.tx_max_coalesced_frames = ec->tx_max_coalesced_frames;
13987         tp->coal.rx_coalesce_usecs_irq = ec->rx_coalesce_usecs_irq;
13988         tp->coal.tx_coalesce_usecs_irq = ec->tx_coalesce_usecs_irq;
13989         tp->coal.rx_max_coalesced_frames_irq = ec->rx_max_coalesced_frames_irq;
13990         tp->coal.tx_max_coalesced_frames_irq = ec->tx_max_coalesced_frames_irq;
13991         tp->coal.stats_block_coalesce_usecs = ec->stats_block_coalesce_usecs;
13992
13993         if (netif_running(dev)) {
13994                 tg3_full_lock(tp, 0);
13995                 __tg3_set_coalesce(tp, &tp->coal);
13996                 tg3_full_unlock(tp);
13997         }
13998         return 0;
13999 }
14000
14001 static int tg3_set_eee(struct net_device *dev, struct ethtool_eee *edata)
14002 {
14003         struct tg3 *tp = netdev_priv(dev);
14004
14005         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP)) {
14006                 netdev_warn(tp->dev, "Board does not support EEE!\n");
14007                 return -EOPNOTSUPP;
14008         }
14009
14010         if (edata->advertised != tp->eee.advertised) {
14011                 netdev_warn(tp->dev,
14012                             "Direct manipulation of EEE advertisement is not supported\n");
14013                 return -EINVAL;
14014         }
14015
14016         if (edata->tx_lpi_timer > TG3_CPMU_DBTMR1_LNKIDLE_MAX) {
14017                 netdev_warn(tp->dev,
14018                             "Maximal Tx Lpi timer supported is %#x(u)\n",
14019                             TG3_CPMU_DBTMR1_LNKIDLE_MAX);
14020                 return -EINVAL;
14021         }
14022
14023         tp->eee = *edata;
14024
14025         tp->phy_flags |= TG3_PHYFLG_USER_CONFIGURED;
14026         tg3_warn_mgmt_link_flap(tp);
14027
14028         if (netif_running(tp->dev)) {
14029                 tg3_full_lock(tp, 0);
14030                 tg3_setup_eee(tp);
14031                 tg3_phy_reset(tp);
14032                 tg3_full_unlock(tp);
14033         }
14034
14035         return 0;
14036 }
14037
14038 static int tg3_get_eee(struct net_device *dev, struct ethtool_eee *edata)
14039 {
14040         struct tg3 *tp = netdev_priv(dev);
14041
14042         if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP)) {
14043                 netdev_warn(tp->dev,
14044                             "Board does not support EEE!\n");
14045                 return -EOPNOTSUPP;
14046         }
14047
14048         *edata = tp->eee;
14049         return 0;
14050 }
14051
14052 static const struct ethtool_ops tg3_ethtool_ops = {
14053         .get_settings           = tg3_get_settings,
14054         .set_settings           = tg3_set_settings,
14055         .get_drvinfo            = tg3_get_drvinfo,
14056         .get_regs_len           = tg3_get_regs_len,
14057         .get_regs               = tg3_get_regs,
14058         .get_wol                = tg3_get_wol,
14059         .set_wol                = tg3_set_wol,
14060         .get_msglevel           = tg3_get_msglevel,
14061         .set_msglevel           = tg3_set_msglevel,
14062         .nway_reset             = tg3_nway_reset,
14063         .get_link               = ethtool_op_get_link,
14064         .get_eeprom_len         = tg3_get_eeprom_len,
14065         .get_eeprom             = tg3_get_eeprom,
14066         .set_eeprom             = tg3_set_eeprom,
14067         .get_ringparam          = tg3_get_ringparam,
14068         .set_ringparam          = tg3_set_ringparam,
14069         .get_pauseparam         = tg3_get_pauseparam,
14070         .set_pauseparam         = tg3_set_pauseparam,
14071         .self_test              = tg3_self_test,
14072         .get_strings            = tg3_get_strings,
14073         .set_phys_id            = tg3_set_phys_id,
14074         .get_ethtool_stats      = tg3_get_ethtool_stats,
14075         .get_coalesce           = tg3_get_coalesce,
14076         .set_coalesce           = tg3_set_coalesce,
14077         .get_sset_count         = tg3_get_sset_count,
14078         .get_rxnfc              = tg3_get_rxnfc,
14079         .get_rxfh_indir_size    = tg3_get_rxfh_indir_size,
14080         .get_rxfh               = tg3_get_rxfh,
14081         .set_rxfh               = tg3_set_rxfh,
14082         .get_channels           = tg3_get_channels,
14083         .set_channels           = tg3_set_channels,
14084         .get_ts_info            = tg3_get_ts_info,
14085         .get_eee                = tg3_get_eee,
14086         .set_eee                = tg3_set_eee,
14087 };
14088
14089 static struct rtnl_link_stats64 *tg3_get_stats64(struct net_device *dev,
14090                                                 struct rtnl_link_stats64 *stats)
14091 {
14092         struct tg3 *tp = netdev_priv(dev);
14093
14094         spin_lock_bh(&tp->lock);
14095         if (!tp->hw_stats) {
14096                 spin_unlock_bh(&tp->lock);
14097                 return &tp->net_stats_prev;
14098         }
14099
14100         tg3_get_nstats(tp, stats);
14101         spin_unlock_bh(&tp->lock);
14102
14103         return stats;
14104 }
14105
14106 static void tg3_set_rx_mode(struct net_device *dev)
14107 {
14108         struct tg3 *tp = netdev_priv(dev);
14109
14110         if (!netif_running(dev))
14111                 return;
14112
14113         tg3_full_lock(tp, 0);
14114         __tg3_set_rx_mode(dev);
14115         tg3_full_unlock(tp);
14116 }
14117
14118 static inline void tg3_set_mtu(struct net_device *dev, struct tg3 *tp,
14119                                int new_mtu)
14120 {
14121         dev->mtu = new_mtu;
14122
14123         if (new_mtu > ETH_DATA_LEN) {
14124                 if (tg3_flag(tp, 5780_CLASS)) {
14125                         netdev_update_features(dev);
14126                         tg3_flag_clear(tp, TSO_CAPABLE);
14127                 } else {
14128                         tg3_flag_set(tp, JUMBO_RING_ENABLE);
14129                 }
14130         } else {
14131                 if (tg3_flag(tp, 5780_CLASS)) {
14132                         tg3_flag_set(tp, TSO_CAPABLE);
14133                         netdev_update_features(dev);
14134                 }
14135                 tg3_flag_clear(tp, JUMBO_RING_ENABLE);
14136         }
14137 }
14138
14139 static int tg3_change_mtu(struct net_device *dev, int new_mtu)
14140 {
14141         struct tg3 *tp = netdev_priv(dev);
14142         int err;
14143         bool reset_phy = false;
14144
14145         if (new_mtu < TG3_MIN_MTU || new_mtu > TG3_MAX_MTU(tp))
14146                 return -EINVAL;
14147
14148         if (!netif_running(dev)) {
14149                 /* We'll just catch it later when the
14150                  * device is up'd.
14151                  */
14152                 tg3_set_mtu(dev, tp, new_mtu);
14153                 return 0;
14154         }
14155
14156         tg3_phy_stop(tp);
14157
14158         tg3_netif_stop(tp);
14159
14160         tg3_set_mtu(dev, tp, new_mtu);
14161
14162         tg3_full_lock(tp, 1);
14163
14164         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
14165
14166         /* Reset PHY, otherwise the read DMA engine will be in a mode that
14167          * breaks all requests to 256 bytes.
14168          */
14169         if (tg3_asic_rev(tp) == ASIC_REV_57766)
14170                 reset_phy = true;
14171
14172         err = tg3_restart_hw(tp, reset_phy);
14173
14174         if (!err)
14175                 tg3_netif_start(tp);
14176
14177         tg3_full_unlock(tp);
14178
14179         if (!err)
14180                 tg3_phy_start(tp);
14181
14182         return err;
14183 }
14184
14185 static const struct net_device_ops tg3_netdev_ops = {
14186         .ndo_open               = tg3_open,
14187         .ndo_stop               = tg3_close,
14188         .ndo_start_xmit         = tg3_start_xmit,
14189         .ndo_get_stats64        = tg3_get_stats64,
14190         .ndo_validate_addr      = eth_validate_addr,
14191         .ndo_set_rx_mode        = tg3_set_rx_mode,
14192         .ndo_set_mac_address    = tg3_set_mac_addr,
14193         .ndo_do_ioctl           = tg3_ioctl,
14194         .ndo_tx_timeout         = tg3_tx_timeout,
14195         .ndo_change_mtu         = tg3_change_mtu,
14196         .ndo_fix_features       = tg3_fix_features,
14197         .ndo_set_features       = tg3_set_features,
14198 #ifdef CONFIG_NET_POLL_CONTROLLER
14199         .ndo_poll_controller    = tg3_poll_controller,
14200 #endif
14201 };
14202
14203 static void tg3_get_eeprom_size(struct tg3 *tp)
14204 {
14205         u32 cursize, val, magic;
14206
14207         tp->nvram_size = EEPROM_CHIP_SIZE;
14208
14209         if (tg3_nvram_read(tp, 0, &magic) != 0)
14210                 return;
14211
14212         if ((magic != TG3_EEPROM_MAGIC) &&
14213             ((magic & TG3_EEPROM_MAGIC_FW_MSK) != TG3_EEPROM_MAGIC_FW) &&
14214             ((magic & TG3_EEPROM_MAGIC_HW_MSK) != TG3_EEPROM_MAGIC_HW))
14215                 return;
14216
14217         /*
14218          * Size the chip by reading offsets at increasing powers of two.
14219          * When we encounter our validation signature, we know the addressing
14220          * has wrapped around, and thus have our chip size.
14221          */
14222         cursize = 0x10;
14223
14224         while (cursize < tp->nvram_size) {
14225                 if (tg3_nvram_read(tp, cursize, &val) != 0)
14226                         return;
14227
14228                 if (val == magic)
14229                         break;
14230
14231                 cursize <<= 1;
14232         }
14233
14234         tp->nvram_size = cursize;
14235 }
14236
14237 static void tg3_get_nvram_size(struct tg3 *tp)
14238 {
14239         u32 val;
14240
14241         if (tg3_flag(tp, NO_NVRAM) || tg3_nvram_read(tp, 0, &val) != 0)
14242                 return;
14243
14244         /* Selfboot format */
14245         if (val != TG3_EEPROM_MAGIC) {
14246                 tg3_get_eeprom_size(tp);
14247                 return;
14248         }
14249
14250         if (tg3_nvram_read(tp, 0xf0, &val) == 0) {
14251                 if (val != 0) {
14252                         /* This is confusing.  We want to operate on the
14253                          * 16-bit value at offset 0xf2.  The tg3_nvram_read()
14254                          * call will read from NVRAM and byteswap the data
14255                          * according to the byteswapping settings for all
14256                          * other register accesses.  This ensures the data we
14257                          * want will always reside in the lower 16-bits.
14258                          * However, the data in NVRAM is in LE format, which
14259                          * means the data from the NVRAM read will always be
14260                          * opposite the endianness of the CPU.  The 16-bit
14261                          * byteswap then brings the data to CPU endianness.
14262                          */
14263                         tp->nvram_size = swab16((u16)(val & 0x0000ffff)) * 1024;
14264                         return;
14265                 }
14266         }
14267         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14268 }
14269
14270 static void tg3_get_nvram_info(struct tg3 *tp)
14271 {
14272         u32 nvcfg1;
14273
14274         nvcfg1 = tr32(NVRAM_CFG1);
14275         if (nvcfg1 & NVRAM_CFG1_FLASHIF_ENAB) {
14276                 tg3_flag_set(tp, FLASH);
14277         } else {
14278                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14279                 tw32(NVRAM_CFG1, nvcfg1);
14280         }
14281
14282         if (tg3_asic_rev(tp) == ASIC_REV_5750 ||
14283             tg3_flag(tp, 5780_CLASS)) {
14284                 switch (nvcfg1 & NVRAM_CFG1_VENDOR_MASK) {
14285                 case FLASH_VENDOR_ATMEL_FLASH_BUFFERED:
14286                         tp->nvram_jedecnum = JEDEC_ATMEL;
14287                         tp->nvram_pagesize = ATMEL_AT45DB0X1B_PAGE_SIZE;
14288                         tg3_flag_set(tp, NVRAM_BUFFERED);
14289                         break;
14290                 case FLASH_VENDOR_ATMEL_FLASH_UNBUFFERED:
14291                         tp->nvram_jedecnum = JEDEC_ATMEL;
14292                         tp->nvram_pagesize = ATMEL_AT25F512_PAGE_SIZE;
14293                         break;
14294                 case FLASH_VENDOR_ATMEL_EEPROM:
14295                         tp->nvram_jedecnum = JEDEC_ATMEL;
14296                         tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14297                         tg3_flag_set(tp, NVRAM_BUFFERED);
14298                         break;
14299                 case FLASH_VENDOR_ST:
14300                         tp->nvram_jedecnum = JEDEC_ST;
14301                         tp->nvram_pagesize = ST_M45PEX0_PAGE_SIZE;
14302                         tg3_flag_set(tp, NVRAM_BUFFERED);
14303                         break;
14304                 case FLASH_VENDOR_SAIFUN:
14305                         tp->nvram_jedecnum = JEDEC_SAIFUN;
14306                         tp->nvram_pagesize = SAIFUN_SA25F0XX_PAGE_SIZE;
14307                         break;
14308                 case FLASH_VENDOR_SST_SMALL:
14309                 case FLASH_VENDOR_SST_LARGE:
14310                         tp->nvram_jedecnum = JEDEC_SST;
14311                         tp->nvram_pagesize = SST_25VF0X0_PAGE_SIZE;
14312                         break;
14313                 }
14314         } else {
14315                 tp->nvram_jedecnum = JEDEC_ATMEL;
14316                 tp->nvram_pagesize = ATMEL_AT45DB0X1B_PAGE_SIZE;
14317                 tg3_flag_set(tp, NVRAM_BUFFERED);
14318         }
14319 }
14320
14321 static void tg3_nvram_get_pagesize(struct tg3 *tp, u32 nvmcfg1)
14322 {
14323         switch (nvmcfg1 & NVRAM_CFG1_5752PAGE_SIZE_MASK) {
14324         case FLASH_5752PAGE_SIZE_256:
14325                 tp->nvram_pagesize = 256;
14326                 break;
14327         case FLASH_5752PAGE_SIZE_512:
14328                 tp->nvram_pagesize = 512;
14329                 break;
14330         case FLASH_5752PAGE_SIZE_1K:
14331                 tp->nvram_pagesize = 1024;
14332                 break;
14333         case FLASH_5752PAGE_SIZE_2K:
14334                 tp->nvram_pagesize = 2048;
14335                 break;
14336         case FLASH_5752PAGE_SIZE_4K:
14337                 tp->nvram_pagesize = 4096;
14338                 break;
14339         case FLASH_5752PAGE_SIZE_264:
14340                 tp->nvram_pagesize = 264;
14341                 break;
14342         case FLASH_5752PAGE_SIZE_528:
14343                 tp->nvram_pagesize = 528;
14344                 break;
14345         }
14346 }
14347
14348 static void tg3_get_5752_nvram_info(struct tg3 *tp)
14349 {
14350         u32 nvcfg1;
14351
14352         nvcfg1 = tr32(NVRAM_CFG1);
14353
14354         /* NVRAM protection for TPM */
14355         if (nvcfg1 & (1 << 27))
14356                 tg3_flag_set(tp, PROTECTED_NVRAM);
14357
14358         switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14359         case FLASH_5752VENDOR_ATMEL_EEPROM_64KHZ:
14360         case FLASH_5752VENDOR_ATMEL_EEPROM_376KHZ:
14361                 tp->nvram_jedecnum = JEDEC_ATMEL;
14362                 tg3_flag_set(tp, NVRAM_BUFFERED);
14363                 break;
14364         case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
14365                 tp->nvram_jedecnum = JEDEC_ATMEL;
14366                 tg3_flag_set(tp, NVRAM_BUFFERED);
14367                 tg3_flag_set(tp, FLASH);
14368                 break;
14369         case FLASH_5752VENDOR_ST_M45PE10:
14370         case FLASH_5752VENDOR_ST_M45PE20:
14371         case FLASH_5752VENDOR_ST_M45PE40:
14372                 tp->nvram_jedecnum = JEDEC_ST;
14373                 tg3_flag_set(tp, NVRAM_BUFFERED);
14374                 tg3_flag_set(tp, FLASH);
14375                 break;
14376         }
14377
14378         if (tg3_flag(tp, FLASH)) {
14379                 tg3_nvram_get_pagesize(tp, nvcfg1);
14380         } else {
14381                 /* For eeprom, set pagesize to maximum eeprom size */
14382                 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14383
14384                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14385                 tw32(NVRAM_CFG1, nvcfg1);
14386         }
14387 }
14388
14389 static void tg3_get_5755_nvram_info(struct tg3 *tp)
14390 {
14391         u32 nvcfg1, protect = 0;
14392
14393         nvcfg1 = tr32(NVRAM_CFG1);
14394
14395         /* NVRAM protection for TPM */
14396         if (nvcfg1 & (1 << 27)) {
14397                 tg3_flag_set(tp, PROTECTED_NVRAM);
14398                 protect = 1;
14399         }
14400
14401         nvcfg1 &= NVRAM_CFG1_5752VENDOR_MASK;
14402         switch (nvcfg1) {
14403         case FLASH_5755VENDOR_ATMEL_FLASH_1:
14404         case FLASH_5755VENDOR_ATMEL_FLASH_2:
14405         case FLASH_5755VENDOR_ATMEL_FLASH_3:
14406         case FLASH_5755VENDOR_ATMEL_FLASH_5:
14407                 tp->nvram_jedecnum = JEDEC_ATMEL;
14408                 tg3_flag_set(tp, NVRAM_BUFFERED);
14409                 tg3_flag_set(tp, FLASH);
14410                 tp->nvram_pagesize = 264;
14411                 if (nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_1 ||
14412                     nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_5)
14413                         tp->nvram_size = (protect ? 0x3e200 :
14414                                           TG3_NVRAM_SIZE_512KB);
14415                 else if (nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_2)
14416                         tp->nvram_size = (protect ? 0x1f200 :
14417                                           TG3_NVRAM_SIZE_256KB);
14418                 else
14419                         tp->nvram_size = (protect ? 0x1f200 :
14420                                           TG3_NVRAM_SIZE_128KB);
14421                 break;
14422         case FLASH_5752VENDOR_ST_M45PE10:
14423         case FLASH_5752VENDOR_ST_M45PE20:
14424         case FLASH_5752VENDOR_ST_M45PE40:
14425                 tp->nvram_jedecnum = JEDEC_ST;
14426                 tg3_flag_set(tp, NVRAM_BUFFERED);
14427                 tg3_flag_set(tp, FLASH);
14428                 tp->nvram_pagesize = 256;
14429                 if (nvcfg1 == FLASH_5752VENDOR_ST_M45PE10)
14430                         tp->nvram_size = (protect ?
14431                                           TG3_NVRAM_SIZE_64KB :
14432                                           TG3_NVRAM_SIZE_128KB);
14433                 else if (nvcfg1 == FLASH_5752VENDOR_ST_M45PE20)
14434                         tp->nvram_size = (protect ?
14435                                           TG3_NVRAM_SIZE_64KB :
14436                                           TG3_NVRAM_SIZE_256KB);
14437                 else
14438                         tp->nvram_size = (protect ?
14439                                           TG3_NVRAM_SIZE_128KB :
14440                                           TG3_NVRAM_SIZE_512KB);
14441                 break;
14442         }
14443 }
14444
14445 static void tg3_get_5787_nvram_info(struct tg3 *tp)
14446 {
14447         u32 nvcfg1;
14448
14449         nvcfg1 = tr32(NVRAM_CFG1);
14450
14451         switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14452         case FLASH_5787VENDOR_ATMEL_EEPROM_64KHZ:
14453         case FLASH_5787VENDOR_ATMEL_EEPROM_376KHZ:
14454         case FLASH_5787VENDOR_MICRO_EEPROM_64KHZ:
14455         case FLASH_5787VENDOR_MICRO_EEPROM_376KHZ:
14456                 tp->nvram_jedecnum = JEDEC_ATMEL;
14457                 tg3_flag_set(tp, NVRAM_BUFFERED);
14458                 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14459
14460                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14461                 tw32(NVRAM_CFG1, nvcfg1);
14462                 break;
14463         case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
14464         case FLASH_5755VENDOR_ATMEL_FLASH_1:
14465         case FLASH_5755VENDOR_ATMEL_FLASH_2:
14466         case FLASH_5755VENDOR_ATMEL_FLASH_3:
14467                 tp->nvram_jedecnum = JEDEC_ATMEL;
14468                 tg3_flag_set(tp, NVRAM_BUFFERED);
14469                 tg3_flag_set(tp, FLASH);
14470                 tp->nvram_pagesize = 264;
14471                 break;
14472         case FLASH_5752VENDOR_ST_M45PE10:
14473         case FLASH_5752VENDOR_ST_M45PE20:
14474         case FLASH_5752VENDOR_ST_M45PE40:
14475                 tp->nvram_jedecnum = JEDEC_ST;
14476                 tg3_flag_set(tp, NVRAM_BUFFERED);
14477                 tg3_flag_set(tp, FLASH);
14478                 tp->nvram_pagesize = 256;
14479                 break;
14480         }
14481 }
14482
14483 static void tg3_get_5761_nvram_info(struct tg3 *tp)
14484 {
14485         u32 nvcfg1, protect = 0;
14486
14487         nvcfg1 = tr32(NVRAM_CFG1);
14488
14489         /* NVRAM protection for TPM */
14490         if (nvcfg1 & (1 << 27)) {
14491                 tg3_flag_set(tp, PROTECTED_NVRAM);
14492                 protect = 1;
14493         }
14494
14495         nvcfg1 &= NVRAM_CFG1_5752VENDOR_MASK;
14496         switch (nvcfg1) {
14497         case FLASH_5761VENDOR_ATMEL_ADB021D:
14498         case FLASH_5761VENDOR_ATMEL_ADB041D:
14499         case FLASH_5761VENDOR_ATMEL_ADB081D:
14500         case FLASH_5761VENDOR_ATMEL_ADB161D:
14501         case FLASH_5761VENDOR_ATMEL_MDB021D:
14502         case FLASH_5761VENDOR_ATMEL_MDB041D:
14503         case FLASH_5761VENDOR_ATMEL_MDB081D:
14504         case FLASH_5761VENDOR_ATMEL_MDB161D:
14505                 tp->nvram_jedecnum = JEDEC_ATMEL;
14506                 tg3_flag_set(tp, NVRAM_BUFFERED);
14507                 tg3_flag_set(tp, FLASH);
14508                 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
14509                 tp->nvram_pagesize = 256;
14510                 break;
14511         case FLASH_5761VENDOR_ST_A_M45PE20:
14512         case FLASH_5761VENDOR_ST_A_M45PE40:
14513         case FLASH_5761VENDOR_ST_A_M45PE80:
14514         case FLASH_5761VENDOR_ST_A_M45PE16:
14515         case FLASH_5761VENDOR_ST_M_M45PE20:
14516         case FLASH_5761VENDOR_ST_M_M45PE40:
14517         case FLASH_5761VENDOR_ST_M_M45PE80:
14518         case FLASH_5761VENDOR_ST_M_M45PE16:
14519                 tp->nvram_jedecnum = JEDEC_ST;
14520                 tg3_flag_set(tp, NVRAM_BUFFERED);
14521                 tg3_flag_set(tp, FLASH);
14522                 tp->nvram_pagesize = 256;
14523                 break;
14524         }
14525
14526         if (protect) {
14527                 tp->nvram_size = tr32(NVRAM_ADDR_LOCKOUT);
14528         } else {
14529                 switch (nvcfg1) {
14530                 case FLASH_5761VENDOR_ATMEL_ADB161D:
14531                 case FLASH_5761VENDOR_ATMEL_MDB161D:
14532                 case FLASH_5761VENDOR_ST_A_M45PE16:
14533                 case FLASH_5761VENDOR_ST_M_M45PE16:
14534                         tp->nvram_size = TG3_NVRAM_SIZE_2MB;
14535                         break;
14536                 case FLASH_5761VENDOR_ATMEL_ADB081D:
14537                 case FLASH_5761VENDOR_ATMEL_MDB081D:
14538                 case FLASH_5761VENDOR_ST_A_M45PE80:
14539                 case FLASH_5761VENDOR_ST_M_M45PE80:
14540                         tp->nvram_size = TG3_NVRAM_SIZE_1MB;
14541                         break;
14542                 case FLASH_5761VENDOR_ATMEL_ADB041D:
14543                 case FLASH_5761VENDOR_ATMEL_MDB041D:
14544                 case FLASH_5761VENDOR_ST_A_M45PE40:
14545                 case FLASH_5761VENDOR_ST_M_M45PE40:
14546                         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14547                         break;
14548                 case FLASH_5761VENDOR_ATMEL_ADB021D:
14549                 case FLASH_5761VENDOR_ATMEL_MDB021D:
14550                 case FLASH_5761VENDOR_ST_A_M45PE20:
14551                 case FLASH_5761VENDOR_ST_M_M45PE20:
14552                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14553                         break;
14554                 }
14555         }
14556 }
14557
14558 static void tg3_get_5906_nvram_info(struct tg3 *tp)
14559 {
14560         tp->nvram_jedecnum = JEDEC_ATMEL;
14561         tg3_flag_set(tp, NVRAM_BUFFERED);
14562         tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14563 }
14564
14565 static void tg3_get_57780_nvram_info(struct tg3 *tp)
14566 {
14567         u32 nvcfg1;
14568
14569         nvcfg1 = tr32(NVRAM_CFG1);
14570
14571         switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14572         case FLASH_5787VENDOR_ATMEL_EEPROM_376KHZ:
14573         case FLASH_5787VENDOR_MICRO_EEPROM_376KHZ:
14574                 tp->nvram_jedecnum = JEDEC_ATMEL;
14575                 tg3_flag_set(tp, NVRAM_BUFFERED);
14576                 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14577
14578                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14579                 tw32(NVRAM_CFG1, nvcfg1);
14580                 return;
14581         case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
14582         case FLASH_57780VENDOR_ATMEL_AT45DB011D:
14583         case FLASH_57780VENDOR_ATMEL_AT45DB011B:
14584         case FLASH_57780VENDOR_ATMEL_AT45DB021D:
14585         case FLASH_57780VENDOR_ATMEL_AT45DB021B:
14586         case FLASH_57780VENDOR_ATMEL_AT45DB041D:
14587         case FLASH_57780VENDOR_ATMEL_AT45DB041B:
14588                 tp->nvram_jedecnum = JEDEC_ATMEL;
14589                 tg3_flag_set(tp, NVRAM_BUFFERED);
14590                 tg3_flag_set(tp, FLASH);
14591
14592                 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14593                 case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
14594                 case FLASH_57780VENDOR_ATMEL_AT45DB011D:
14595                 case FLASH_57780VENDOR_ATMEL_AT45DB011B:
14596                         tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14597                         break;
14598                 case FLASH_57780VENDOR_ATMEL_AT45DB021D:
14599                 case FLASH_57780VENDOR_ATMEL_AT45DB021B:
14600                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14601                         break;
14602                 case FLASH_57780VENDOR_ATMEL_AT45DB041D:
14603                 case FLASH_57780VENDOR_ATMEL_AT45DB041B:
14604                         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14605                         break;
14606                 }
14607                 break;
14608         case FLASH_5752VENDOR_ST_M45PE10:
14609         case FLASH_5752VENDOR_ST_M45PE20:
14610         case FLASH_5752VENDOR_ST_M45PE40:
14611                 tp->nvram_jedecnum = JEDEC_ST;
14612                 tg3_flag_set(tp, NVRAM_BUFFERED);
14613                 tg3_flag_set(tp, FLASH);
14614
14615                 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14616                 case FLASH_5752VENDOR_ST_M45PE10:
14617                         tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14618                         break;
14619                 case FLASH_5752VENDOR_ST_M45PE20:
14620                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14621                         break;
14622                 case FLASH_5752VENDOR_ST_M45PE40:
14623                         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14624                         break;
14625                 }
14626                 break;
14627         default:
14628                 tg3_flag_set(tp, NO_NVRAM);
14629                 return;
14630         }
14631
14632         tg3_nvram_get_pagesize(tp, nvcfg1);
14633         if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
14634                 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
14635 }
14636
14637
14638 static void tg3_get_5717_nvram_info(struct tg3 *tp)
14639 {
14640         u32 nvcfg1;
14641
14642         nvcfg1 = tr32(NVRAM_CFG1);
14643
14644         switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14645         case FLASH_5717VENDOR_ATMEL_EEPROM:
14646         case FLASH_5717VENDOR_MICRO_EEPROM:
14647                 tp->nvram_jedecnum = JEDEC_ATMEL;
14648                 tg3_flag_set(tp, NVRAM_BUFFERED);
14649                 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14650
14651                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14652                 tw32(NVRAM_CFG1, nvcfg1);
14653                 return;
14654         case FLASH_5717VENDOR_ATMEL_MDB011D:
14655         case FLASH_5717VENDOR_ATMEL_ADB011B:
14656         case FLASH_5717VENDOR_ATMEL_ADB011D:
14657         case FLASH_5717VENDOR_ATMEL_MDB021D:
14658         case FLASH_5717VENDOR_ATMEL_ADB021B:
14659         case FLASH_5717VENDOR_ATMEL_ADB021D:
14660         case FLASH_5717VENDOR_ATMEL_45USPT:
14661                 tp->nvram_jedecnum = JEDEC_ATMEL;
14662                 tg3_flag_set(tp, NVRAM_BUFFERED);
14663                 tg3_flag_set(tp, FLASH);
14664
14665                 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14666                 case FLASH_5717VENDOR_ATMEL_MDB021D:
14667                         /* Detect size with tg3_nvram_get_size() */
14668                         break;
14669                 case FLASH_5717VENDOR_ATMEL_ADB021B:
14670                 case FLASH_5717VENDOR_ATMEL_ADB021D:
14671                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14672                         break;
14673                 default:
14674                         tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14675                         break;
14676                 }
14677                 break;
14678         case FLASH_5717VENDOR_ST_M_M25PE10:
14679         case FLASH_5717VENDOR_ST_A_M25PE10:
14680         case FLASH_5717VENDOR_ST_M_M45PE10:
14681         case FLASH_5717VENDOR_ST_A_M45PE10:
14682         case FLASH_5717VENDOR_ST_M_M25PE20:
14683         case FLASH_5717VENDOR_ST_A_M25PE20:
14684         case FLASH_5717VENDOR_ST_M_M45PE20:
14685         case FLASH_5717VENDOR_ST_A_M45PE20:
14686         case FLASH_5717VENDOR_ST_25USPT:
14687         case FLASH_5717VENDOR_ST_45USPT:
14688                 tp->nvram_jedecnum = JEDEC_ST;
14689                 tg3_flag_set(tp, NVRAM_BUFFERED);
14690                 tg3_flag_set(tp, FLASH);
14691
14692                 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
14693                 case FLASH_5717VENDOR_ST_M_M25PE20:
14694                 case FLASH_5717VENDOR_ST_M_M45PE20:
14695                         /* Detect size with tg3_nvram_get_size() */
14696                         break;
14697                 case FLASH_5717VENDOR_ST_A_M25PE20:
14698                 case FLASH_5717VENDOR_ST_A_M45PE20:
14699                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14700                         break;
14701                 default:
14702                         tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14703                         break;
14704                 }
14705                 break;
14706         default:
14707                 tg3_flag_set(tp, NO_NVRAM);
14708                 return;
14709         }
14710
14711         tg3_nvram_get_pagesize(tp, nvcfg1);
14712         if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
14713                 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
14714 }
14715
14716 static void tg3_get_5720_nvram_info(struct tg3 *tp)
14717 {
14718         u32 nvcfg1, nvmpinstrp;
14719
14720         nvcfg1 = tr32(NVRAM_CFG1);
14721         nvmpinstrp = nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK;
14722
14723         if (tg3_asic_rev(tp) == ASIC_REV_5762) {
14724                 if (!(nvcfg1 & NVRAM_CFG1_5762VENDOR_MASK)) {
14725                         tg3_flag_set(tp, NO_NVRAM);
14726                         return;
14727                 }
14728
14729                 switch (nvmpinstrp) {
14730                 case FLASH_5762_EEPROM_HD:
14731                         nvmpinstrp = FLASH_5720_EEPROM_HD;
14732                         break;
14733                 case FLASH_5762_EEPROM_LD:
14734                         nvmpinstrp = FLASH_5720_EEPROM_LD;
14735                         break;
14736                 case FLASH_5720VENDOR_M_ST_M45PE20:
14737                         /* This pinstrap supports multiple sizes, so force it
14738                          * to read the actual size from location 0xf0.
14739                          */
14740                         nvmpinstrp = FLASH_5720VENDOR_ST_45USPT;
14741                         break;
14742                 }
14743         }
14744
14745         switch (nvmpinstrp) {
14746         case FLASH_5720_EEPROM_HD:
14747         case FLASH_5720_EEPROM_LD:
14748                 tp->nvram_jedecnum = JEDEC_ATMEL;
14749                 tg3_flag_set(tp, NVRAM_BUFFERED);
14750
14751                 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
14752                 tw32(NVRAM_CFG1, nvcfg1);
14753                 if (nvmpinstrp == FLASH_5720_EEPROM_HD)
14754                         tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
14755                 else
14756                         tp->nvram_pagesize = ATMEL_AT24C02_CHIP_SIZE;
14757                 return;
14758         case FLASH_5720VENDOR_M_ATMEL_DB011D:
14759         case FLASH_5720VENDOR_A_ATMEL_DB011B:
14760         case FLASH_5720VENDOR_A_ATMEL_DB011D:
14761         case FLASH_5720VENDOR_M_ATMEL_DB021D:
14762         case FLASH_5720VENDOR_A_ATMEL_DB021B:
14763         case FLASH_5720VENDOR_A_ATMEL_DB021D:
14764         case FLASH_5720VENDOR_M_ATMEL_DB041D:
14765         case FLASH_5720VENDOR_A_ATMEL_DB041B:
14766         case FLASH_5720VENDOR_A_ATMEL_DB041D:
14767         case FLASH_5720VENDOR_M_ATMEL_DB081D:
14768         case FLASH_5720VENDOR_A_ATMEL_DB081D:
14769         case FLASH_5720VENDOR_ATMEL_45USPT:
14770                 tp->nvram_jedecnum = JEDEC_ATMEL;
14771                 tg3_flag_set(tp, NVRAM_BUFFERED);
14772                 tg3_flag_set(tp, FLASH);
14773
14774                 switch (nvmpinstrp) {
14775                 case FLASH_5720VENDOR_M_ATMEL_DB021D:
14776                 case FLASH_5720VENDOR_A_ATMEL_DB021B:
14777                 case FLASH_5720VENDOR_A_ATMEL_DB021D:
14778                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14779                         break;
14780                 case FLASH_5720VENDOR_M_ATMEL_DB041D:
14781                 case FLASH_5720VENDOR_A_ATMEL_DB041B:
14782                 case FLASH_5720VENDOR_A_ATMEL_DB041D:
14783                         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14784                         break;
14785                 case FLASH_5720VENDOR_M_ATMEL_DB081D:
14786                 case FLASH_5720VENDOR_A_ATMEL_DB081D:
14787                         tp->nvram_size = TG3_NVRAM_SIZE_1MB;
14788                         break;
14789                 default:
14790                         if (tg3_asic_rev(tp) != ASIC_REV_5762)
14791                                 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14792                         break;
14793                 }
14794                 break;
14795         case FLASH_5720VENDOR_M_ST_M25PE10:
14796         case FLASH_5720VENDOR_M_ST_M45PE10:
14797         case FLASH_5720VENDOR_A_ST_M25PE10:
14798         case FLASH_5720VENDOR_A_ST_M45PE10:
14799         case FLASH_5720VENDOR_M_ST_M25PE20:
14800         case FLASH_5720VENDOR_M_ST_M45PE20:
14801         case FLASH_5720VENDOR_A_ST_M25PE20:
14802         case FLASH_5720VENDOR_A_ST_M45PE20:
14803         case FLASH_5720VENDOR_M_ST_M25PE40:
14804         case FLASH_5720VENDOR_M_ST_M45PE40:
14805         case FLASH_5720VENDOR_A_ST_M25PE40:
14806         case FLASH_5720VENDOR_A_ST_M45PE40:
14807         case FLASH_5720VENDOR_M_ST_M25PE80:
14808         case FLASH_5720VENDOR_M_ST_M45PE80:
14809         case FLASH_5720VENDOR_A_ST_M25PE80:
14810         case FLASH_5720VENDOR_A_ST_M45PE80:
14811         case FLASH_5720VENDOR_ST_25USPT:
14812         case FLASH_5720VENDOR_ST_45USPT:
14813                 tp->nvram_jedecnum = JEDEC_ST;
14814                 tg3_flag_set(tp, NVRAM_BUFFERED);
14815                 tg3_flag_set(tp, FLASH);
14816
14817                 switch (nvmpinstrp) {
14818                 case FLASH_5720VENDOR_M_ST_M25PE20:
14819                 case FLASH_5720VENDOR_M_ST_M45PE20:
14820                 case FLASH_5720VENDOR_A_ST_M25PE20:
14821                 case FLASH_5720VENDOR_A_ST_M45PE20:
14822                         tp->nvram_size = TG3_NVRAM_SIZE_256KB;
14823                         break;
14824                 case FLASH_5720VENDOR_M_ST_M25PE40:
14825                 case FLASH_5720VENDOR_M_ST_M45PE40:
14826                 case FLASH_5720VENDOR_A_ST_M25PE40:
14827                 case FLASH_5720VENDOR_A_ST_M45PE40:
14828                         tp->nvram_size = TG3_NVRAM_SIZE_512KB;
14829                         break;
14830                 case FLASH_5720VENDOR_M_ST_M25PE80:
14831                 case FLASH_5720VENDOR_M_ST_M45PE80:
14832                 case FLASH_5720VENDOR_A_ST_M25PE80:
14833                 case FLASH_5720VENDOR_A_ST_M45PE80:
14834                         tp->nvram_size = TG3_NVRAM_SIZE_1MB;
14835                         break;
14836                 default:
14837                         if (tg3_asic_rev(tp) != ASIC_REV_5762)
14838                                 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
14839                         break;
14840                 }
14841                 break;
14842         default:
14843                 tg3_flag_set(tp, NO_NVRAM);
14844                 return;
14845         }
14846
14847         tg3_nvram_get_pagesize(tp, nvcfg1);
14848         if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
14849                 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
14850
14851         if (tg3_asic_rev(tp) == ASIC_REV_5762) {
14852                 u32 val;
14853
14854                 if (tg3_nvram_read(tp, 0, &val))
14855                         return;
14856
14857                 if (val != TG3_EEPROM_MAGIC &&
14858                     (val & TG3_EEPROM_MAGIC_FW_MSK) != TG3_EEPROM_MAGIC_FW)
14859                         tg3_flag_set(tp, NO_NVRAM);
14860         }
14861 }
14862
14863 /* Chips other than 5700/5701 use the NVRAM for fetching info. */
14864 static void tg3_nvram_init(struct tg3 *tp)
14865 {
14866         if (tg3_flag(tp, IS_SSB_CORE)) {
14867                 /* No NVRAM and EEPROM on the SSB Broadcom GigE core. */
14868                 tg3_flag_clear(tp, NVRAM);
14869                 tg3_flag_clear(tp, NVRAM_BUFFERED);
14870                 tg3_flag_set(tp, NO_NVRAM);
14871                 return;
14872         }
14873
14874         tw32_f(GRC_EEPROM_ADDR,
14875              (EEPROM_ADDR_FSM_RESET |
14876               (EEPROM_DEFAULT_CLOCK_PERIOD <<
14877                EEPROM_ADDR_CLKPERD_SHIFT)));
14878
14879         msleep(1);
14880
14881         /* Enable seeprom accesses. */
14882         tw32_f(GRC_LOCAL_CTRL,
14883              tr32(GRC_LOCAL_CTRL) | GRC_LCLCTRL_AUTO_SEEPROM);
14884         udelay(100);
14885
14886         if (tg3_asic_rev(tp) != ASIC_REV_5700 &&
14887             tg3_asic_rev(tp) != ASIC_REV_5701) {
14888                 tg3_flag_set(tp, NVRAM);
14889
14890                 if (tg3_nvram_lock(tp)) {
14891                         netdev_warn(tp->dev,
14892                                     "Cannot get nvram lock, %s failed\n",
14893                                     __func__);
14894                         return;
14895                 }
14896                 tg3_enable_nvram_access(tp);
14897
14898                 tp->nvram_size = 0;
14899
14900                 if (tg3_asic_rev(tp) == ASIC_REV_5752)
14901                         tg3_get_5752_nvram_info(tp);
14902                 else if (tg3_asic_rev(tp) == ASIC_REV_5755)
14903                         tg3_get_5755_nvram_info(tp);
14904                 else if (tg3_asic_rev(tp) == ASIC_REV_5787 ||
14905                          tg3_asic_rev(tp) == ASIC_REV_5784 ||
14906                          tg3_asic_rev(tp) == ASIC_REV_5785)
14907                         tg3_get_5787_nvram_info(tp);
14908                 else if (tg3_asic_rev(tp) == ASIC_REV_5761)
14909                         tg3_get_5761_nvram_info(tp);
14910                 else if (tg3_asic_rev(tp) == ASIC_REV_5906)
14911                         tg3_get_5906_nvram_info(tp);
14912                 else if (tg3_asic_rev(tp) == ASIC_REV_57780 ||
14913                          tg3_flag(tp, 57765_CLASS))
14914                         tg3_get_57780_nvram_info(tp);
14915                 else if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
14916                          tg3_asic_rev(tp) == ASIC_REV_5719)
14917                         tg3_get_5717_nvram_info(tp);
14918                 else if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
14919                          tg3_asic_rev(tp) == ASIC_REV_5762)
14920                         tg3_get_5720_nvram_info(tp);
14921                 else
14922                         tg3_get_nvram_info(tp);
14923
14924                 if (tp->nvram_size == 0)
14925                         tg3_get_nvram_size(tp);
14926
14927                 tg3_disable_nvram_access(tp);
14928                 tg3_nvram_unlock(tp);
14929
14930         } else {
14931                 tg3_flag_clear(tp, NVRAM);
14932                 tg3_flag_clear(tp, NVRAM_BUFFERED);
14933
14934                 tg3_get_eeprom_size(tp);
14935         }
14936 }
14937
14938 struct subsys_tbl_ent {
14939         u16 subsys_vendor, subsys_devid;
14940         u32 phy_id;
14941 };
14942
14943 static struct subsys_tbl_ent subsys_id_to_phy_id[] = {
14944         /* Broadcom boards. */
14945         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14946           TG3PCI_SUBDEVICE_ID_BROADCOM_95700A6, TG3_PHY_ID_BCM5401 },
14947         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14948           TG3PCI_SUBDEVICE_ID_BROADCOM_95701A5, TG3_PHY_ID_BCM5701 },
14949         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14950           TG3PCI_SUBDEVICE_ID_BROADCOM_95700T6, TG3_PHY_ID_BCM8002 },
14951         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14952           TG3PCI_SUBDEVICE_ID_BROADCOM_95700A9, 0 },
14953         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14954           TG3PCI_SUBDEVICE_ID_BROADCOM_95701T1, TG3_PHY_ID_BCM5701 },
14955         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14956           TG3PCI_SUBDEVICE_ID_BROADCOM_95701T8, TG3_PHY_ID_BCM5701 },
14957         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14958           TG3PCI_SUBDEVICE_ID_BROADCOM_95701A7, 0 },
14959         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14960           TG3PCI_SUBDEVICE_ID_BROADCOM_95701A10, TG3_PHY_ID_BCM5701 },
14961         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14962           TG3PCI_SUBDEVICE_ID_BROADCOM_95701A12, TG3_PHY_ID_BCM5701 },
14963         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14964           TG3PCI_SUBDEVICE_ID_BROADCOM_95703AX1, TG3_PHY_ID_BCM5703 },
14965         { TG3PCI_SUBVENDOR_ID_BROADCOM,
14966           TG3PCI_SUBDEVICE_ID_BROADCOM_95703AX2, TG3_PHY_ID_BCM5703 },
14967
14968         /* 3com boards. */
14969         { TG3PCI_SUBVENDOR_ID_3COM,
14970           TG3PCI_SUBDEVICE_ID_3COM_3C996T, TG3_PHY_ID_BCM5401 },
14971         { TG3PCI_SUBVENDOR_ID_3COM,
14972           TG3PCI_SUBDEVICE_ID_3COM_3C996BT, TG3_PHY_ID_BCM5701 },
14973         { TG3PCI_SUBVENDOR_ID_3COM,
14974           TG3PCI_SUBDEVICE_ID_3COM_3C996SX, 0 },
14975         { TG3PCI_SUBVENDOR_ID_3COM,
14976           TG3PCI_SUBDEVICE_ID_3COM_3C1000T, TG3_PHY_ID_BCM5701 },
14977         { TG3PCI_SUBVENDOR_ID_3COM,
14978           TG3PCI_SUBDEVICE_ID_3COM_3C940BR01, TG3_PHY_ID_BCM5701 },
14979
14980         /* DELL boards. */
14981         { TG3PCI_SUBVENDOR_ID_DELL,
14982           TG3PCI_SUBDEVICE_ID_DELL_VIPER, TG3_PHY_ID_BCM5401 },
14983         { TG3PCI_SUBVENDOR_ID_DELL,
14984           TG3PCI_SUBDEVICE_ID_DELL_JAGUAR, TG3_PHY_ID_BCM5401 },
14985         { TG3PCI_SUBVENDOR_ID_DELL,
14986           TG3PCI_SUBDEVICE_ID_DELL_MERLOT, TG3_PHY_ID_BCM5411 },
14987         { TG3PCI_SUBVENDOR_ID_DELL,
14988           TG3PCI_SUBDEVICE_ID_DELL_SLIM_MERLOT, TG3_PHY_ID_BCM5411 },
14989
14990         /* Compaq boards. */
14991         { TG3PCI_SUBVENDOR_ID_COMPAQ,
14992           TG3PCI_SUBDEVICE_ID_COMPAQ_BANSHEE, TG3_PHY_ID_BCM5701 },
14993         { TG3PCI_SUBVENDOR_ID_COMPAQ,
14994           TG3PCI_SUBDEVICE_ID_COMPAQ_BANSHEE_2, TG3_PHY_ID_BCM5701 },
14995         { TG3PCI_SUBVENDOR_ID_COMPAQ,
14996           TG3PCI_SUBDEVICE_ID_COMPAQ_CHANGELING, 0 },
14997         { TG3PCI_SUBVENDOR_ID_COMPAQ,
14998           TG3PCI_SUBDEVICE_ID_COMPAQ_NC7780, TG3_PHY_ID_BCM5701 },
14999         { TG3PCI_SUBVENDOR_ID_COMPAQ,
15000           TG3PCI_SUBDEVICE_ID_COMPAQ_NC7780_2, TG3_PHY_ID_BCM5701 },
15001
15002         /* IBM boards. */
15003         { TG3PCI_SUBVENDOR_ID_IBM,
15004           TG3PCI_SUBDEVICE_ID_IBM_5703SAX2, 0 }
15005 };
15006
15007 static struct subsys_tbl_ent *tg3_lookup_by_subsys(struct tg3 *tp)
15008 {
15009         int i;
15010
15011         for (i = 0; i < ARRAY_SIZE(subsys_id_to_phy_id); i++) {
15012                 if ((subsys_id_to_phy_id[i].subsys_vendor ==
15013                      tp->pdev->subsystem_vendor) &&
15014                     (subsys_id_to_phy_id[i].subsys_devid ==
15015                      tp->pdev->subsystem_device))
15016                         return &subsys_id_to_phy_id[i];
15017         }
15018         return NULL;
15019 }
15020
15021 static void tg3_get_eeprom_hw_cfg(struct tg3 *tp)
15022 {
15023         u32 val;
15024
15025         tp->phy_id = TG3_PHY_ID_INVALID;
15026         tp->led_ctrl = LED_CTRL_MODE_PHY_1;
15027
15028         /* Assume an onboard device and WOL capable by default.  */
15029         tg3_flag_set(tp, EEPROM_WRITE_PROT);
15030         tg3_flag_set(tp, WOL_CAP);
15031
15032         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
15033                 if (!(tr32(PCIE_TRANSACTION_CFG) & PCIE_TRANS_CFG_LOM)) {
15034                         tg3_flag_clear(tp, EEPROM_WRITE_PROT);
15035                         tg3_flag_set(tp, IS_NIC);
15036                 }
15037                 val = tr32(VCPU_CFGSHDW);
15038                 if (val & VCPU_CFGSHDW_ASPM_DBNC)
15039                         tg3_flag_set(tp, ASPM_WORKAROUND);
15040                 if ((val & VCPU_CFGSHDW_WOL_ENABLE) &&
15041                     (val & VCPU_CFGSHDW_WOL_MAGPKT)) {
15042                         tg3_flag_set(tp, WOL_ENABLE);
15043                         device_set_wakeup_enable(&tp->pdev->dev, true);
15044                 }
15045                 goto done;
15046         }
15047
15048         tg3_read_mem(tp, NIC_SRAM_DATA_SIG, &val);
15049         if (val == NIC_SRAM_DATA_SIG_MAGIC) {
15050                 u32 nic_cfg, led_cfg;
15051                 u32 cfg2 = 0, cfg4 = 0, cfg5 = 0;
15052                 u32 nic_phy_id, ver, eeprom_phy_id;
15053                 int eeprom_phy_serdes = 0;
15054
15055                 tg3_read_mem(tp, NIC_SRAM_DATA_CFG, &nic_cfg);
15056                 tp->nic_sram_data_cfg = nic_cfg;
15057
15058                 tg3_read_mem(tp, NIC_SRAM_DATA_VER, &ver);
15059                 ver >>= NIC_SRAM_DATA_VER_SHIFT;
15060                 if (tg3_asic_rev(tp) != ASIC_REV_5700 &&
15061                     tg3_asic_rev(tp) != ASIC_REV_5701 &&
15062                     tg3_asic_rev(tp) != ASIC_REV_5703 &&
15063                     (ver > 0) && (ver < 0x100))
15064                         tg3_read_mem(tp, NIC_SRAM_DATA_CFG_2, &cfg2);
15065
15066                 if (tg3_asic_rev(tp) == ASIC_REV_5785)
15067                         tg3_read_mem(tp, NIC_SRAM_DATA_CFG_4, &cfg4);
15068
15069                 if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
15070                     tg3_asic_rev(tp) == ASIC_REV_5719 ||
15071                     tg3_asic_rev(tp) == ASIC_REV_5720)
15072                         tg3_read_mem(tp, NIC_SRAM_DATA_CFG_5, &cfg5);
15073
15074                 if ((nic_cfg & NIC_SRAM_DATA_CFG_PHY_TYPE_MASK) ==
15075                     NIC_SRAM_DATA_CFG_PHY_TYPE_FIBER)
15076                         eeprom_phy_serdes = 1;
15077
15078                 tg3_read_mem(tp, NIC_SRAM_DATA_PHY_ID, &nic_phy_id);
15079                 if (nic_phy_id != 0) {
15080                         u32 id1 = nic_phy_id & NIC_SRAM_DATA_PHY_ID1_MASK;
15081                         u32 id2 = nic_phy_id & NIC_SRAM_DATA_PHY_ID2_MASK;
15082
15083                         eeprom_phy_id  = (id1 >> 16) << 10;
15084                         eeprom_phy_id |= (id2 & 0xfc00) << 16;
15085                         eeprom_phy_id |= (id2 & 0x03ff) <<  0;
15086                 } else
15087                         eeprom_phy_id = 0;
15088
15089                 tp->phy_id = eeprom_phy_id;
15090                 if (eeprom_phy_serdes) {
15091                         if (!tg3_flag(tp, 5705_PLUS))
15092                                 tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
15093                         else
15094                                 tp->phy_flags |= TG3_PHYFLG_MII_SERDES;
15095                 }
15096
15097                 if (tg3_flag(tp, 5750_PLUS))
15098                         led_cfg = cfg2 & (NIC_SRAM_DATA_CFG_LED_MODE_MASK |
15099                                     SHASTA_EXT_LED_MODE_MASK);
15100                 else
15101                         led_cfg = nic_cfg & NIC_SRAM_DATA_CFG_LED_MODE_MASK;
15102
15103                 switch (led_cfg) {
15104                 default:
15105                 case NIC_SRAM_DATA_CFG_LED_MODE_PHY_1:
15106                         tp->led_ctrl = LED_CTRL_MODE_PHY_1;
15107                         break;
15108
15109                 case NIC_SRAM_DATA_CFG_LED_MODE_PHY_2:
15110                         tp->led_ctrl = LED_CTRL_MODE_PHY_2;
15111                         break;
15112
15113                 case NIC_SRAM_DATA_CFG_LED_MODE_MAC:
15114                         tp->led_ctrl = LED_CTRL_MODE_MAC;
15115
15116                         /* Default to PHY_1_MODE if 0 (MAC_MODE) is
15117                          * read on some older 5700/5701 bootcode.
15118                          */
15119                         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
15120                             tg3_asic_rev(tp) == ASIC_REV_5701)
15121                                 tp->led_ctrl = LED_CTRL_MODE_PHY_1;
15122
15123                         break;
15124
15125                 case SHASTA_EXT_LED_SHARED:
15126                         tp->led_ctrl = LED_CTRL_MODE_SHARED;
15127                         if (tg3_chip_rev_id(tp) != CHIPREV_ID_5750_A0 &&
15128                             tg3_chip_rev_id(tp) != CHIPREV_ID_5750_A1)
15129                                 tp->led_ctrl |= (LED_CTRL_MODE_PHY_1 |
15130                                                  LED_CTRL_MODE_PHY_2);
15131
15132                         if (tg3_flag(tp, 5717_PLUS) ||
15133                             tg3_asic_rev(tp) == ASIC_REV_5762)
15134                                 tp->led_ctrl |= LED_CTRL_BLINK_RATE_OVERRIDE |
15135                                                 LED_CTRL_BLINK_RATE_MASK;
15136
15137                         break;
15138
15139                 case SHASTA_EXT_LED_MAC:
15140                         tp->led_ctrl = LED_CTRL_MODE_SHASTA_MAC;
15141                         break;
15142
15143                 case SHASTA_EXT_LED_COMBO:
15144                         tp->led_ctrl = LED_CTRL_MODE_COMBO;
15145                         if (tg3_chip_rev_id(tp) != CHIPREV_ID_5750_A0)
15146                                 tp->led_ctrl |= (LED_CTRL_MODE_PHY_1 |
15147                                                  LED_CTRL_MODE_PHY_2);
15148                         break;
15149
15150                 }
15151
15152                 if ((tg3_asic_rev(tp) == ASIC_REV_5700 ||
15153                      tg3_asic_rev(tp) == ASIC_REV_5701) &&
15154                     tp->pdev->subsystem_vendor == PCI_VENDOR_ID_DELL)
15155                         tp->led_ctrl = LED_CTRL_MODE_PHY_2;
15156
15157                 if (tg3_chip_rev(tp) == CHIPREV_5784_AX)
15158                         tp->led_ctrl = LED_CTRL_MODE_PHY_1;
15159
15160                 if (nic_cfg & NIC_SRAM_DATA_CFG_EEPROM_WP) {
15161                         tg3_flag_set(tp, EEPROM_WRITE_PROT);
15162                         if ((tp->pdev->subsystem_vendor ==
15163                              PCI_VENDOR_ID_ARIMA) &&
15164                             (tp->pdev->subsystem_device == 0x205a ||
15165                              tp->pdev->subsystem_device == 0x2063))
15166                                 tg3_flag_clear(tp, EEPROM_WRITE_PROT);
15167                 } else {
15168                         tg3_flag_clear(tp, EEPROM_WRITE_PROT);
15169                         tg3_flag_set(tp, IS_NIC);
15170                 }
15171
15172                 if (nic_cfg & NIC_SRAM_DATA_CFG_ASF_ENABLE) {
15173                         tg3_flag_set(tp, ENABLE_ASF);
15174                         if (tg3_flag(tp, 5750_PLUS))
15175                                 tg3_flag_set(tp, ASF_NEW_HANDSHAKE);
15176                 }
15177
15178                 if ((nic_cfg & NIC_SRAM_DATA_CFG_APE_ENABLE) &&
15179                     tg3_flag(tp, 5750_PLUS))
15180                         tg3_flag_set(tp, ENABLE_APE);
15181
15182                 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES &&
15183                     !(nic_cfg & NIC_SRAM_DATA_CFG_FIBER_WOL))
15184                         tg3_flag_clear(tp, WOL_CAP);
15185
15186                 if (tg3_flag(tp, WOL_CAP) &&
15187                     (nic_cfg & NIC_SRAM_DATA_CFG_WOL_ENABLE)) {
15188                         tg3_flag_set(tp, WOL_ENABLE);
15189                         device_set_wakeup_enable(&tp->pdev->dev, true);
15190                 }
15191
15192                 if (cfg2 & (1 << 17))
15193                         tp->phy_flags |= TG3_PHYFLG_CAPACITIVE_COUPLING;
15194
15195                 /* serdes signal pre-emphasis in register 0x590 set by */
15196                 /* bootcode if bit 18 is set */
15197                 if (cfg2 & (1 << 18))
15198                         tp->phy_flags |= TG3_PHYFLG_SERDES_PREEMPHASIS;
15199
15200                 if ((tg3_flag(tp, 57765_PLUS) ||
15201                      (tg3_asic_rev(tp) == ASIC_REV_5784 &&
15202                       tg3_chip_rev(tp) != CHIPREV_5784_AX)) &&
15203                     (cfg2 & NIC_SRAM_DATA_CFG_2_APD_EN))
15204                         tp->phy_flags |= TG3_PHYFLG_ENABLE_APD;
15205
15206                 if (tg3_flag(tp, PCI_EXPRESS)) {
15207                         u32 cfg3;
15208
15209                         tg3_read_mem(tp, NIC_SRAM_DATA_CFG_3, &cfg3);
15210                         if (tg3_asic_rev(tp) != ASIC_REV_5785 &&
15211                             !tg3_flag(tp, 57765_PLUS) &&
15212                             (cfg3 & NIC_SRAM_ASPM_DEBOUNCE))
15213                                 tg3_flag_set(tp, ASPM_WORKAROUND);
15214                         if (cfg3 & NIC_SRAM_LNK_FLAP_AVOID)
15215                                 tp->phy_flags |= TG3_PHYFLG_KEEP_LINK_ON_PWRDN;
15216                         if (cfg3 & NIC_SRAM_1G_ON_VAUX_OK)
15217                                 tp->phy_flags |= TG3_PHYFLG_1G_ON_VAUX_OK;
15218                 }
15219
15220                 if (cfg4 & NIC_SRAM_RGMII_INBAND_DISABLE)
15221                         tg3_flag_set(tp, RGMII_INBAND_DISABLE);
15222                 if (cfg4 & NIC_SRAM_RGMII_EXT_IBND_RX_EN)
15223                         tg3_flag_set(tp, RGMII_EXT_IBND_RX_EN);
15224                 if (cfg4 & NIC_SRAM_RGMII_EXT_IBND_TX_EN)
15225                         tg3_flag_set(tp, RGMII_EXT_IBND_TX_EN);
15226
15227                 if (cfg5 & NIC_SRAM_DISABLE_1G_HALF_ADV)
15228                         tp->phy_flags |= TG3_PHYFLG_DISABLE_1G_HD_ADV;
15229         }
15230 done:
15231         if (tg3_flag(tp, WOL_CAP))
15232                 device_set_wakeup_enable(&tp->pdev->dev,
15233                                          tg3_flag(tp, WOL_ENABLE));
15234         else
15235                 device_set_wakeup_capable(&tp->pdev->dev, false);
15236 }
15237
15238 static int tg3_ape_otp_read(struct tg3 *tp, u32 offset, u32 *val)
15239 {
15240         int i, err;
15241         u32 val2, off = offset * 8;
15242
15243         err = tg3_nvram_lock(tp);
15244         if (err)
15245                 return err;
15246
15247         tg3_ape_write32(tp, TG3_APE_OTP_ADDR, off | APE_OTP_ADDR_CPU_ENABLE);
15248         tg3_ape_write32(tp, TG3_APE_OTP_CTRL, APE_OTP_CTRL_PROG_EN |
15249                         APE_OTP_CTRL_CMD_RD | APE_OTP_CTRL_START);
15250         tg3_ape_read32(tp, TG3_APE_OTP_CTRL);
15251         udelay(10);
15252
15253         for (i = 0; i < 100; i++) {
15254                 val2 = tg3_ape_read32(tp, TG3_APE_OTP_STATUS);
15255                 if (val2 & APE_OTP_STATUS_CMD_DONE) {
15256                         *val = tg3_ape_read32(tp, TG3_APE_OTP_RD_DATA);
15257                         break;
15258                 }
15259                 udelay(10);
15260         }
15261
15262         tg3_ape_write32(tp, TG3_APE_OTP_CTRL, 0);
15263
15264         tg3_nvram_unlock(tp);
15265         if (val2 & APE_OTP_STATUS_CMD_DONE)
15266                 return 0;
15267
15268         return -EBUSY;
15269 }
15270
15271 static int tg3_issue_otp_command(struct tg3 *tp, u32 cmd)
15272 {
15273         int i;
15274         u32 val;
15275
15276         tw32(OTP_CTRL, cmd | OTP_CTRL_OTP_CMD_START);
15277         tw32(OTP_CTRL, cmd);
15278
15279         /* Wait for up to 1 ms for command to execute. */
15280         for (i = 0; i < 100; i++) {
15281                 val = tr32(OTP_STATUS);
15282                 if (val & OTP_STATUS_CMD_DONE)
15283                         break;
15284                 udelay(10);
15285         }
15286
15287         return (val & OTP_STATUS_CMD_DONE) ? 0 : -EBUSY;
15288 }
15289
15290 /* Read the gphy configuration from the OTP region of the chip.  The gphy
15291  * configuration is a 32-bit value that straddles the alignment boundary.
15292  * We do two 32-bit reads and then shift and merge the results.
15293  */
15294 static u32 tg3_read_otp_phycfg(struct tg3 *tp)
15295 {
15296         u32 bhalf_otp, thalf_otp;
15297
15298         tw32(OTP_MODE, OTP_MODE_OTP_THRU_GRC);
15299
15300         if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_INIT))
15301                 return 0;
15302
15303         tw32(OTP_ADDRESS, OTP_ADDRESS_MAGIC1);
15304
15305         if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_READ))
15306                 return 0;
15307
15308         thalf_otp = tr32(OTP_READ_DATA);
15309
15310         tw32(OTP_ADDRESS, OTP_ADDRESS_MAGIC2);
15311
15312         if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_READ))
15313                 return 0;
15314
15315         bhalf_otp = tr32(OTP_READ_DATA);
15316
15317         return ((thalf_otp & 0x0000ffff) << 16) | (bhalf_otp >> 16);
15318 }
15319
15320 static void tg3_phy_init_link_config(struct tg3 *tp)
15321 {
15322         u32 adv = ADVERTISED_Autoneg;
15323
15324         if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
15325                 if (!(tp->phy_flags & TG3_PHYFLG_DISABLE_1G_HD_ADV))
15326                         adv |= ADVERTISED_1000baseT_Half;
15327                 adv |= ADVERTISED_1000baseT_Full;
15328         }
15329
15330         if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
15331                 adv |= ADVERTISED_100baseT_Half |
15332                        ADVERTISED_100baseT_Full |
15333                        ADVERTISED_10baseT_Half |
15334                        ADVERTISED_10baseT_Full |
15335                        ADVERTISED_TP;
15336         else
15337                 adv |= ADVERTISED_FIBRE;
15338
15339         tp->link_config.advertising = adv;
15340         tp->link_config.speed = SPEED_UNKNOWN;
15341         tp->link_config.duplex = DUPLEX_UNKNOWN;
15342         tp->link_config.autoneg = AUTONEG_ENABLE;
15343         tp->link_config.active_speed = SPEED_UNKNOWN;
15344         tp->link_config.active_duplex = DUPLEX_UNKNOWN;
15345
15346         tp->old_link = -1;
15347 }
15348
15349 static int tg3_phy_probe(struct tg3 *tp)
15350 {
15351         u32 hw_phy_id_1, hw_phy_id_2;
15352         u32 hw_phy_id, hw_phy_id_masked;
15353         int err;
15354
15355         /* flow control autonegotiation is default behavior */
15356         tg3_flag_set(tp, PAUSE_AUTONEG);
15357         tp->link_config.flowctrl = FLOW_CTRL_TX | FLOW_CTRL_RX;
15358
15359         if (tg3_flag(tp, ENABLE_APE)) {
15360                 switch (tp->pci_fn) {
15361                 case 0:
15362                         tp->phy_ape_lock = TG3_APE_LOCK_PHY0;
15363                         break;
15364                 case 1:
15365                         tp->phy_ape_lock = TG3_APE_LOCK_PHY1;
15366                         break;
15367                 case 2:
15368                         tp->phy_ape_lock = TG3_APE_LOCK_PHY2;
15369                         break;
15370                 case 3:
15371                         tp->phy_ape_lock = TG3_APE_LOCK_PHY3;
15372                         break;
15373                 }
15374         }
15375
15376         if (!tg3_flag(tp, ENABLE_ASF) &&
15377             !(tp->phy_flags & TG3_PHYFLG_ANY_SERDES) &&
15378             !(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
15379                 tp->phy_flags &= ~(TG3_PHYFLG_1G_ON_VAUX_OK |
15380                                    TG3_PHYFLG_KEEP_LINK_ON_PWRDN);
15381
15382         if (tg3_flag(tp, USE_PHYLIB))
15383                 return tg3_phy_init(tp);
15384
15385         /* Reading the PHY ID register can conflict with ASF
15386          * firmware access to the PHY hardware.
15387          */
15388         err = 0;
15389         if (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE)) {
15390                 hw_phy_id = hw_phy_id_masked = TG3_PHY_ID_INVALID;
15391         } else {
15392                 /* Now read the physical PHY_ID from the chip and verify
15393                  * that it is sane.  If it doesn't look good, we fall back
15394                  * to either the hard-coded table based PHY_ID and failing
15395                  * that the value found in the eeprom area.
15396                  */
15397                 err |= tg3_readphy(tp, MII_PHYSID1, &hw_phy_id_1);
15398                 err |= tg3_readphy(tp, MII_PHYSID2, &hw_phy_id_2);
15399
15400                 hw_phy_id  = (hw_phy_id_1 & 0xffff) << 10;
15401                 hw_phy_id |= (hw_phy_id_2 & 0xfc00) << 16;
15402                 hw_phy_id |= (hw_phy_id_2 & 0x03ff) <<  0;
15403
15404                 hw_phy_id_masked = hw_phy_id & TG3_PHY_ID_MASK;
15405         }
15406
15407         if (!err && TG3_KNOWN_PHY_ID(hw_phy_id_masked)) {
15408                 tp->phy_id = hw_phy_id;
15409                 if (hw_phy_id_masked == TG3_PHY_ID_BCM8002)
15410                         tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
15411                 else
15412                         tp->phy_flags &= ~TG3_PHYFLG_PHY_SERDES;
15413         } else {
15414                 if (tp->phy_id != TG3_PHY_ID_INVALID) {
15415                         /* Do nothing, phy ID already set up in
15416                          * tg3_get_eeprom_hw_cfg().
15417                          */
15418                 } else {
15419                         struct subsys_tbl_ent *p;
15420
15421                         /* No eeprom signature?  Try the hardcoded
15422                          * subsys device table.
15423                          */
15424                         p = tg3_lookup_by_subsys(tp);
15425                         if (p) {
15426                                 tp->phy_id = p->phy_id;
15427                         } else if (!tg3_flag(tp, IS_SSB_CORE)) {
15428                                 /* For now we saw the IDs 0xbc050cd0,
15429                                  * 0xbc050f80 and 0xbc050c30 on devices
15430                                  * connected to an BCM4785 and there are
15431                                  * probably more. Just assume that the phy is
15432                                  * supported when it is connected to a SSB core
15433                                  * for now.
15434                                  */
15435                                 return -ENODEV;
15436                         }
15437
15438                         if (!tp->phy_id ||
15439                             tp->phy_id == TG3_PHY_ID_BCM8002)
15440                                 tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
15441                 }
15442         }
15443
15444         if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES) &&
15445             (tg3_asic_rev(tp) == ASIC_REV_5719 ||
15446              tg3_asic_rev(tp) == ASIC_REV_5720 ||
15447              tg3_asic_rev(tp) == ASIC_REV_57766 ||
15448              tg3_asic_rev(tp) == ASIC_REV_5762 ||
15449              (tg3_asic_rev(tp) == ASIC_REV_5717 &&
15450               tg3_chip_rev_id(tp) != CHIPREV_ID_5717_A0) ||
15451              (tg3_asic_rev(tp) == ASIC_REV_57765 &&
15452               tg3_chip_rev_id(tp) != CHIPREV_ID_57765_A0))) {
15453                 tp->phy_flags |= TG3_PHYFLG_EEE_CAP;
15454
15455                 tp->eee.supported = SUPPORTED_100baseT_Full |
15456                                     SUPPORTED_1000baseT_Full;
15457                 tp->eee.advertised = ADVERTISED_100baseT_Full |
15458                                      ADVERTISED_1000baseT_Full;
15459                 tp->eee.eee_enabled = 1;
15460                 tp->eee.tx_lpi_enabled = 1;
15461                 tp->eee.tx_lpi_timer = TG3_CPMU_DBTMR1_LNKIDLE_2047US;
15462         }
15463
15464         tg3_phy_init_link_config(tp);
15465
15466         if (!(tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN) &&
15467             !(tp->phy_flags & TG3_PHYFLG_ANY_SERDES) &&
15468             !tg3_flag(tp, ENABLE_APE) &&
15469             !tg3_flag(tp, ENABLE_ASF)) {
15470                 u32 bmsr, dummy;
15471
15472                 tg3_readphy(tp, MII_BMSR, &bmsr);
15473                 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
15474                     (bmsr & BMSR_LSTATUS))
15475                         goto skip_phy_reset;
15476
15477                 err = tg3_phy_reset(tp);
15478                 if (err)
15479                         return err;
15480
15481                 tg3_phy_set_wirespeed(tp);
15482
15483                 if (!tg3_phy_copper_an_config_ok(tp, &dummy)) {
15484                         tg3_phy_autoneg_cfg(tp, tp->link_config.advertising,
15485                                             tp->link_config.flowctrl);
15486
15487                         tg3_writephy(tp, MII_BMCR,
15488                                      BMCR_ANENABLE | BMCR_ANRESTART);
15489                 }
15490         }
15491
15492 skip_phy_reset:
15493         if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
15494                 err = tg3_init_5401phy_dsp(tp);
15495                 if (err)
15496                         return err;
15497
15498                 err = tg3_init_5401phy_dsp(tp);
15499         }
15500
15501         return err;
15502 }
15503
15504 static void tg3_read_vpd(struct tg3 *tp)
15505 {
15506         u8 *vpd_data;
15507         unsigned int block_end, rosize, len;
15508         u32 vpdlen;
15509         int j, i = 0;
15510
15511         vpd_data = (u8 *)tg3_vpd_readblock(tp, &vpdlen);
15512         if (!vpd_data)
15513                 goto out_no_vpd;
15514
15515         i = pci_vpd_find_tag(vpd_data, 0, vpdlen, PCI_VPD_LRDT_RO_DATA);
15516         if (i < 0)
15517                 goto out_not_found;
15518
15519         rosize = pci_vpd_lrdt_size(&vpd_data[i]);
15520         block_end = i + PCI_VPD_LRDT_TAG_SIZE + rosize;
15521         i += PCI_VPD_LRDT_TAG_SIZE;
15522
15523         if (block_end > vpdlen)
15524                 goto out_not_found;
15525
15526         j = pci_vpd_find_info_keyword(vpd_data, i, rosize,
15527                                       PCI_VPD_RO_KEYWORD_MFR_ID);
15528         if (j > 0) {
15529                 len = pci_vpd_info_field_size(&vpd_data[j]);
15530
15531                 j += PCI_VPD_INFO_FLD_HDR_SIZE;
15532                 if (j + len > block_end || len != 4 ||
15533                     memcmp(&vpd_data[j], "1028", 4))
15534                         goto partno;
15535
15536                 j = pci_vpd_find_info_keyword(vpd_data, i, rosize,
15537                                               PCI_VPD_RO_KEYWORD_VENDOR0);
15538                 if (j < 0)
15539                         goto partno;
15540
15541                 len = pci_vpd_info_field_size(&vpd_data[j]);
15542
15543                 j += PCI_VPD_INFO_FLD_HDR_SIZE;
15544                 if (j + len > block_end)
15545                         goto partno;
15546
15547                 if (len >= sizeof(tp->fw_ver))
15548                         len = sizeof(tp->fw_ver) - 1;
15549                 memset(tp->fw_ver, 0, sizeof(tp->fw_ver));
15550                 snprintf(tp->fw_ver, sizeof(tp->fw_ver), "%.*s bc ", len,
15551                          &vpd_data[j]);
15552         }
15553
15554 partno:
15555         i = pci_vpd_find_info_keyword(vpd_data, i, rosize,
15556                                       PCI_VPD_RO_KEYWORD_PARTNO);
15557         if (i < 0)
15558                 goto out_not_found;
15559
15560         len = pci_vpd_info_field_size(&vpd_data[i]);
15561
15562         i += PCI_VPD_INFO_FLD_HDR_SIZE;
15563         if (len > TG3_BPN_SIZE ||
15564             (len + i) > vpdlen)
15565                 goto out_not_found;
15566
15567         memcpy(tp->board_part_number, &vpd_data[i], len);
15568
15569 out_not_found:
15570         kfree(vpd_data);
15571         if (tp->board_part_number[0])
15572                 return;
15573
15574 out_no_vpd:
15575         if (tg3_asic_rev(tp) == ASIC_REV_5717) {
15576                 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717 ||
15577                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717_C)
15578                         strcpy(tp->board_part_number, "BCM5717");
15579                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718)
15580                         strcpy(tp->board_part_number, "BCM5718");
15581                 else
15582                         goto nomatch;
15583         } else if (tg3_asic_rev(tp) == ASIC_REV_57780) {
15584                 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57780)
15585                         strcpy(tp->board_part_number, "BCM57780");
15586                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57760)
15587                         strcpy(tp->board_part_number, "BCM57760");
15588                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57790)
15589                         strcpy(tp->board_part_number, "BCM57790");
15590                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57788)
15591                         strcpy(tp->board_part_number, "BCM57788");
15592                 else
15593                         goto nomatch;
15594         } else if (tg3_asic_rev(tp) == ASIC_REV_57765) {
15595                 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57761)
15596                         strcpy(tp->board_part_number, "BCM57761");
15597                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57765)
15598                         strcpy(tp->board_part_number, "BCM57765");
15599                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57781)
15600                         strcpy(tp->board_part_number, "BCM57781");
15601                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57785)
15602                         strcpy(tp->board_part_number, "BCM57785");
15603                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57791)
15604                         strcpy(tp->board_part_number, "BCM57791");
15605                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57795)
15606                         strcpy(tp->board_part_number, "BCM57795");
15607                 else
15608                         goto nomatch;
15609         } else if (tg3_asic_rev(tp) == ASIC_REV_57766) {
15610                 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57762)
15611                         strcpy(tp->board_part_number, "BCM57762");
15612                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57766)
15613                         strcpy(tp->board_part_number, "BCM57766");
15614                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57782)
15615                         strcpy(tp->board_part_number, "BCM57782");
15616                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57786)
15617                         strcpy(tp->board_part_number, "BCM57786");
15618                 else
15619                         goto nomatch;
15620         } else if (tg3_asic_rev(tp) == ASIC_REV_5906) {
15621                 strcpy(tp->board_part_number, "BCM95906");
15622         } else {
15623 nomatch:
15624                 strcpy(tp->board_part_number, "none");
15625         }
15626 }
15627
15628 static int tg3_fw_img_is_valid(struct tg3 *tp, u32 offset)
15629 {
15630         u32 val;
15631
15632         if (tg3_nvram_read(tp, offset, &val) ||
15633             (val & 0xfc000000) != 0x0c000000 ||
15634             tg3_nvram_read(tp, offset + 4, &val) ||
15635             val != 0)
15636                 return 0;
15637
15638         return 1;
15639 }
15640
15641 static void tg3_read_bc_ver(struct tg3 *tp)
15642 {
15643         u32 val, offset, start, ver_offset;
15644         int i, dst_off;
15645         bool newver = false;
15646
15647         if (tg3_nvram_read(tp, 0xc, &offset) ||
15648             tg3_nvram_read(tp, 0x4, &start))
15649                 return;
15650
15651         offset = tg3_nvram_logical_addr(tp, offset);
15652
15653         if (tg3_nvram_read(tp, offset, &val))
15654                 return;
15655
15656         if ((val & 0xfc000000) == 0x0c000000) {
15657                 if (tg3_nvram_read(tp, offset + 4, &val))
15658                         return;
15659
15660                 if (val == 0)
15661                         newver = true;
15662         }
15663
15664         dst_off = strlen(tp->fw_ver);
15665
15666         if (newver) {
15667                 if (TG3_VER_SIZE - dst_off < 16 ||
15668                     tg3_nvram_read(tp, offset + 8, &ver_offset))
15669                         return;
15670
15671                 offset = offset + ver_offset - start;
15672                 for (i = 0; i < 16; i += 4) {
15673                         __be32 v;
15674                         if (tg3_nvram_read_be32(tp, offset + i, &v))
15675                                 return;
15676
15677                         memcpy(tp->fw_ver + dst_off + i, &v, sizeof(v));
15678                 }
15679         } else {
15680                 u32 major, minor;
15681
15682                 if (tg3_nvram_read(tp, TG3_NVM_PTREV_BCVER, &ver_offset))
15683                         return;
15684
15685                 major = (ver_offset & TG3_NVM_BCVER_MAJMSK) >>
15686                         TG3_NVM_BCVER_MAJSFT;
15687                 minor = ver_offset & TG3_NVM_BCVER_MINMSK;
15688                 snprintf(&tp->fw_ver[dst_off], TG3_VER_SIZE - dst_off,
15689                          "v%d.%02d", major, minor);
15690         }
15691 }
15692
15693 static void tg3_read_hwsb_ver(struct tg3 *tp)
15694 {
15695         u32 val, major, minor;
15696
15697         /* Use native endian representation */
15698         if (tg3_nvram_read(tp, TG3_NVM_HWSB_CFG1, &val))
15699                 return;
15700
15701         major = (val & TG3_NVM_HWSB_CFG1_MAJMSK) >>
15702                 TG3_NVM_HWSB_CFG1_MAJSFT;
15703         minor = (val & TG3_NVM_HWSB_CFG1_MINMSK) >>
15704                 TG3_NVM_HWSB_CFG1_MINSFT;
15705
15706         snprintf(&tp->fw_ver[0], 32, "sb v%d.%02d", major, minor);
15707 }
15708
15709 static void tg3_read_sb_ver(struct tg3 *tp, u32 val)
15710 {
15711         u32 offset, major, minor, build;
15712
15713         strncat(tp->fw_ver, "sb", TG3_VER_SIZE - strlen(tp->fw_ver) - 1);
15714
15715         if ((val & TG3_EEPROM_SB_FORMAT_MASK) != TG3_EEPROM_SB_FORMAT_1)
15716                 return;
15717
15718         switch (val & TG3_EEPROM_SB_REVISION_MASK) {
15719         case TG3_EEPROM_SB_REVISION_0:
15720                 offset = TG3_EEPROM_SB_F1R0_EDH_OFF;
15721                 break;
15722         case TG3_EEPROM_SB_REVISION_2:
15723                 offset = TG3_EEPROM_SB_F1R2_EDH_OFF;
15724                 break;
15725         case TG3_EEPROM_SB_REVISION_3:
15726                 offset = TG3_EEPROM_SB_F1R3_EDH_OFF;
15727                 break;
15728         case TG3_EEPROM_SB_REVISION_4:
15729                 offset = TG3_EEPROM_SB_F1R4_EDH_OFF;
15730                 break;
15731         case TG3_EEPROM_SB_REVISION_5:
15732                 offset = TG3_EEPROM_SB_F1R5_EDH_OFF;
15733                 break;
15734         case TG3_EEPROM_SB_REVISION_6:
15735                 offset = TG3_EEPROM_SB_F1R6_EDH_OFF;
15736                 break;
15737         default:
15738                 return;
15739         }
15740
15741         if (tg3_nvram_read(tp, offset, &val))
15742                 return;
15743
15744         build = (val & TG3_EEPROM_SB_EDH_BLD_MASK) >>
15745                 TG3_EEPROM_SB_EDH_BLD_SHFT;
15746         major = (val & TG3_EEPROM_SB_EDH_MAJ_MASK) >>
15747                 TG3_EEPROM_SB_EDH_MAJ_SHFT;
15748         minor =  val & TG3_EEPROM_SB_EDH_MIN_MASK;
15749
15750         if (minor > 99 || build > 26)
15751                 return;
15752
15753         offset = strlen(tp->fw_ver);
15754         snprintf(&tp->fw_ver[offset], TG3_VER_SIZE - offset,
15755                  " v%d.%02d", major, minor);
15756
15757         if (build > 0) {
15758                 offset = strlen(tp->fw_ver);
15759                 if (offset < TG3_VER_SIZE - 1)
15760                         tp->fw_ver[offset] = 'a' + build - 1;
15761         }
15762 }
15763
15764 static void tg3_read_mgmtfw_ver(struct tg3 *tp)
15765 {
15766         u32 val, offset, start;
15767         int i, vlen;
15768
15769         for (offset = TG3_NVM_DIR_START;
15770              offset < TG3_NVM_DIR_END;
15771              offset += TG3_NVM_DIRENT_SIZE) {
15772                 if (tg3_nvram_read(tp, offset, &val))
15773                         return;
15774
15775                 if ((val >> TG3_NVM_DIRTYPE_SHIFT) == TG3_NVM_DIRTYPE_ASFINI)
15776                         break;
15777         }
15778
15779         if (offset == TG3_NVM_DIR_END)
15780                 return;
15781
15782         if (!tg3_flag(tp, 5705_PLUS))
15783                 start = 0x08000000;
15784         else if (tg3_nvram_read(tp, offset - 4, &start))
15785                 return;
15786
15787         if (tg3_nvram_read(tp, offset + 4, &offset) ||
15788             !tg3_fw_img_is_valid(tp, offset) ||
15789             tg3_nvram_read(tp, offset + 8, &val))
15790                 return;
15791
15792         offset += val - start;
15793
15794         vlen = strlen(tp->fw_ver);
15795
15796         tp->fw_ver[vlen++] = ',';
15797         tp->fw_ver[vlen++] = ' ';
15798
15799         for (i = 0; i < 4; i++) {
15800                 __be32 v;
15801                 if (tg3_nvram_read_be32(tp, offset, &v))
15802                         return;
15803
15804                 offset += sizeof(v);
15805
15806                 if (vlen > TG3_VER_SIZE - sizeof(v)) {
15807                         memcpy(&tp->fw_ver[vlen], &v, TG3_VER_SIZE - vlen);
15808                         break;
15809                 }
15810
15811                 memcpy(&tp->fw_ver[vlen], &v, sizeof(v));
15812                 vlen += sizeof(v);
15813         }
15814 }
15815
15816 static void tg3_probe_ncsi(struct tg3 *tp)
15817 {
15818         u32 apedata;
15819
15820         apedata = tg3_ape_read32(tp, TG3_APE_SEG_SIG);
15821         if (apedata != APE_SEG_SIG_MAGIC)
15822                 return;
15823
15824         apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
15825         if (!(apedata & APE_FW_STATUS_READY))
15826                 return;
15827
15828         if (tg3_ape_read32(tp, TG3_APE_FW_FEATURES) & TG3_APE_FW_FEATURE_NCSI)
15829                 tg3_flag_set(tp, APE_HAS_NCSI);
15830 }
15831
15832 static void tg3_read_dash_ver(struct tg3 *tp)
15833 {
15834         int vlen;
15835         u32 apedata;
15836         char *fwtype;
15837
15838         apedata = tg3_ape_read32(tp, TG3_APE_FW_VERSION);
15839
15840         if (tg3_flag(tp, APE_HAS_NCSI))
15841                 fwtype = "NCSI";
15842         else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5725)
15843                 fwtype = "SMASH";
15844         else
15845                 fwtype = "DASH";
15846
15847         vlen = strlen(tp->fw_ver);
15848
15849         snprintf(&tp->fw_ver[vlen], TG3_VER_SIZE - vlen, " %s v%d.%d.%d.%d",
15850                  fwtype,
15851                  (apedata & APE_FW_VERSION_MAJMSK) >> APE_FW_VERSION_MAJSFT,
15852                  (apedata & APE_FW_VERSION_MINMSK) >> APE_FW_VERSION_MINSFT,
15853                  (apedata & APE_FW_VERSION_REVMSK) >> APE_FW_VERSION_REVSFT,
15854                  (apedata & APE_FW_VERSION_BLDMSK));
15855 }
15856
15857 static void tg3_read_otp_ver(struct tg3 *tp)
15858 {
15859         u32 val, val2;
15860
15861         if (tg3_asic_rev(tp) != ASIC_REV_5762)
15862                 return;
15863
15864         if (!tg3_ape_otp_read(tp, OTP_ADDRESS_MAGIC0, &val) &&
15865             !tg3_ape_otp_read(tp, OTP_ADDRESS_MAGIC0 + 4, &val2) &&
15866             TG3_OTP_MAGIC0_VALID(val)) {
15867                 u64 val64 = (u64) val << 32 | val2;
15868                 u32 ver = 0;
15869                 int i, vlen;
15870
15871                 for (i = 0; i < 7; i++) {
15872                         if ((val64 & 0xff) == 0)
15873                                 break;
15874                         ver = val64 & 0xff;
15875                         val64 >>= 8;
15876                 }
15877                 vlen = strlen(tp->fw_ver);
15878                 snprintf(&tp->fw_ver[vlen], TG3_VER_SIZE - vlen, " .%02d", ver);
15879         }
15880 }
15881
15882 static void tg3_read_fw_ver(struct tg3 *tp)
15883 {
15884         u32 val;
15885         bool vpd_vers = false;
15886
15887         if (tp->fw_ver[0] != 0)
15888                 vpd_vers = true;
15889
15890         if (tg3_flag(tp, NO_NVRAM)) {
15891                 strcat(tp->fw_ver, "sb");
15892                 tg3_read_otp_ver(tp);
15893                 return;
15894         }
15895
15896         if (tg3_nvram_read(tp, 0, &val))
15897                 return;
15898
15899         if (val == TG3_EEPROM_MAGIC)
15900                 tg3_read_bc_ver(tp);
15901         else if ((val & TG3_EEPROM_MAGIC_FW_MSK) == TG3_EEPROM_MAGIC_FW)
15902                 tg3_read_sb_ver(tp, val);
15903         else if ((val & TG3_EEPROM_MAGIC_HW_MSK) == TG3_EEPROM_MAGIC_HW)
15904                 tg3_read_hwsb_ver(tp);
15905
15906         if (tg3_flag(tp, ENABLE_ASF)) {
15907                 if (tg3_flag(tp, ENABLE_APE)) {
15908                         tg3_probe_ncsi(tp);
15909                         if (!vpd_vers)
15910                                 tg3_read_dash_ver(tp);
15911                 } else if (!vpd_vers) {
15912                         tg3_read_mgmtfw_ver(tp);
15913                 }
15914         }
15915
15916         tp->fw_ver[TG3_VER_SIZE - 1] = 0;
15917 }
15918
15919 static inline u32 tg3_rx_ret_ring_size(struct tg3 *tp)
15920 {
15921         if (tg3_flag(tp, LRG_PROD_RING_CAP))
15922                 return TG3_RX_RET_MAX_SIZE_5717;
15923         else if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS))
15924                 return TG3_RX_RET_MAX_SIZE_5700;
15925         else
15926                 return TG3_RX_RET_MAX_SIZE_5705;
15927 }
15928
15929 static DEFINE_PCI_DEVICE_TABLE(tg3_write_reorder_chipsets) = {
15930         { PCI_DEVICE(PCI_VENDOR_ID_AMD, PCI_DEVICE_ID_AMD_FE_GATE_700C) },
15931         { PCI_DEVICE(PCI_VENDOR_ID_AMD, PCI_DEVICE_ID_AMD_8131_BRIDGE) },
15932         { PCI_DEVICE(PCI_VENDOR_ID_VIA, PCI_DEVICE_ID_VIA_8385_0) },
15933         { },
15934 };
15935
15936 static struct pci_dev *tg3_find_peer(struct tg3 *tp)
15937 {
15938         struct pci_dev *peer;
15939         unsigned int func, devnr = tp->pdev->devfn & ~7;
15940
15941         for (func = 0; func < 8; func++) {
15942                 peer = pci_get_slot(tp->pdev->bus, devnr | func);
15943                 if (peer && peer != tp->pdev)
15944                         break;
15945                 pci_dev_put(peer);
15946         }
15947         /* 5704 can be configured in single-port mode, set peer to
15948          * tp->pdev in that case.
15949          */
15950         if (!peer) {
15951                 peer = tp->pdev;
15952                 return peer;
15953         }
15954
15955         /*
15956          * We don't need to keep the refcount elevated; there's no way
15957          * to remove one half of this device without removing the other
15958          */
15959         pci_dev_put(peer);
15960
15961         return peer;
15962 }
15963
15964 static void tg3_detect_asic_rev(struct tg3 *tp, u32 misc_ctrl_reg)
15965 {
15966         tp->pci_chip_rev_id = misc_ctrl_reg >> MISC_HOST_CTRL_CHIPREV_SHIFT;
15967         if (tg3_asic_rev(tp) == ASIC_REV_USE_PROD_ID_REG) {
15968                 u32 reg;
15969
15970                 /* All devices that use the alternate
15971                  * ASIC REV location have a CPMU.
15972                  */
15973                 tg3_flag_set(tp, CPMU_PRESENT);
15974
15975                 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717 ||
15976                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717_C ||
15977                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718 ||
15978                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5719 ||
15979                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5720 ||
15980                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_57767 ||
15981                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_57764 ||
15982                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5762 ||
15983                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5725 ||
15984                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_5727 ||
15985                     tp->pdev->device == TG3PCI_DEVICE_TIGON3_57787)
15986                         reg = TG3PCI_GEN2_PRODID_ASICREV;
15987                 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57781 ||
15988                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57785 ||
15989                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57761 ||
15990                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57765 ||
15991                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57791 ||
15992                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57795 ||
15993                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57762 ||
15994                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57766 ||
15995                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57782 ||
15996                          tp->pdev->device == TG3PCI_DEVICE_TIGON3_57786)
15997                         reg = TG3PCI_GEN15_PRODID_ASICREV;
15998                 else
15999                         reg = TG3PCI_PRODID_ASICREV;
16000
16001                 pci_read_config_dword(tp->pdev, reg, &tp->pci_chip_rev_id);
16002         }
16003
16004         /* Wrong chip ID in 5752 A0. This code can be removed later
16005          * as A0 is not in production.
16006          */
16007         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5752_A0_HW)
16008                 tp->pci_chip_rev_id = CHIPREV_ID_5752_A0;
16009
16010         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5717_C0)
16011                 tp->pci_chip_rev_id = CHIPREV_ID_5720_A0;
16012
16013         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
16014             tg3_asic_rev(tp) == ASIC_REV_5719 ||
16015             tg3_asic_rev(tp) == ASIC_REV_5720)
16016                 tg3_flag_set(tp, 5717_PLUS);
16017
16018         if (tg3_asic_rev(tp) == ASIC_REV_57765 ||
16019             tg3_asic_rev(tp) == ASIC_REV_57766)
16020                 tg3_flag_set(tp, 57765_CLASS);
16021
16022         if (tg3_flag(tp, 57765_CLASS) || tg3_flag(tp, 5717_PLUS) ||
16023              tg3_asic_rev(tp) == ASIC_REV_5762)
16024                 tg3_flag_set(tp, 57765_PLUS);
16025
16026         /* Intentionally exclude ASIC_REV_5906 */
16027         if (tg3_asic_rev(tp) == ASIC_REV_5755 ||
16028             tg3_asic_rev(tp) == ASIC_REV_5787 ||
16029             tg3_asic_rev(tp) == ASIC_REV_5784 ||
16030             tg3_asic_rev(tp) == ASIC_REV_5761 ||
16031             tg3_asic_rev(tp) == ASIC_REV_5785 ||
16032             tg3_asic_rev(tp) == ASIC_REV_57780 ||
16033             tg3_flag(tp, 57765_PLUS))
16034                 tg3_flag_set(tp, 5755_PLUS);
16035
16036         if (tg3_asic_rev(tp) == ASIC_REV_5780 ||
16037             tg3_asic_rev(tp) == ASIC_REV_5714)
16038                 tg3_flag_set(tp, 5780_CLASS);
16039
16040         if (tg3_asic_rev(tp) == ASIC_REV_5750 ||
16041             tg3_asic_rev(tp) == ASIC_REV_5752 ||
16042             tg3_asic_rev(tp) == ASIC_REV_5906 ||
16043             tg3_flag(tp, 5755_PLUS) ||
16044             tg3_flag(tp, 5780_CLASS))
16045                 tg3_flag_set(tp, 5750_PLUS);
16046
16047         if (tg3_asic_rev(tp) == ASIC_REV_5705 ||
16048             tg3_flag(tp, 5750_PLUS))
16049                 tg3_flag_set(tp, 5705_PLUS);
16050 }
16051
16052 static bool tg3_10_100_only_device(struct tg3 *tp,
16053                                    const struct pci_device_id *ent)
16054 {
16055         u32 grc_misc_cfg = tr32(GRC_MISC_CFG) & GRC_MISC_CFG_BOARD_ID_MASK;
16056
16057         if ((tg3_asic_rev(tp) == ASIC_REV_5703 &&
16058              (grc_misc_cfg == 0x8000 || grc_misc_cfg == 0x4000)) ||
16059             (tp->phy_flags & TG3_PHYFLG_IS_FET))
16060                 return true;
16061
16062         if (ent->driver_data & TG3_DRV_DATA_FLAG_10_100_ONLY) {
16063                 if (tg3_asic_rev(tp) == ASIC_REV_5705) {
16064                         if (ent->driver_data & TG3_DRV_DATA_FLAG_5705_10_100)
16065                                 return true;
16066                 } else {
16067                         return true;
16068                 }
16069         }
16070
16071         return false;
16072 }
16073
16074 static int tg3_get_invariants(struct tg3 *tp, const struct pci_device_id *ent)
16075 {
16076         u32 misc_ctrl_reg;
16077         u32 pci_state_reg, grc_misc_cfg;
16078         u32 val;
16079         u16 pci_cmd;
16080         int err;
16081
16082         /* Force memory write invalidate off.  If we leave it on,
16083          * then on 5700_BX chips we have to enable a workaround.
16084          * The workaround is to set the TG3PCI_DMA_RW_CTRL boundary
16085          * to match the cacheline size.  The Broadcom driver have this
16086          * workaround but turns MWI off all the times so never uses
16087          * it.  This seems to suggest that the workaround is insufficient.
16088          */
16089         pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
16090         pci_cmd &= ~PCI_COMMAND_INVALIDATE;
16091         pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
16092
16093         /* Important! -- Make sure register accesses are byteswapped
16094          * correctly.  Also, for those chips that require it, make
16095          * sure that indirect register accesses are enabled before
16096          * the first operation.
16097          */
16098         pci_read_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
16099                               &misc_ctrl_reg);
16100         tp->misc_host_ctrl |= (misc_ctrl_reg &
16101                                MISC_HOST_CTRL_CHIPREV);
16102         pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
16103                                tp->misc_host_ctrl);
16104
16105         tg3_detect_asic_rev(tp, misc_ctrl_reg);
16106
16107         /* If we have 5702/03 A1 or A2 on certain ICH chipsets,
16108          * we need to disable memory and use config. cycles
16109          * only to access all registers. The 5702/03 chips
16110          * can mistakenly decode the special cycles from the
16111          * ICH chipsets as memory write cycles, causing corruption
16112          * of register and memory space. Only certain ICH bridges
16113          * will drive special cycles with non-zero data during the
16114          * address phase which can fall within the 5703's address
16115          * range. This is not an ICH bug as the PCI spec allows
16116          * non-zero address during special cycles. However, only
16117          * these ICH bridges are known to drive non-zero addresses
16118          * during special cycles.
16119          *
16120          * Since special cycles do not cross PCI bridges, we only
16121          * enable this workaround if the 5703 is on the secondary
16122          * bus of these ICH bridges.
16123          */
16124         if ((tg3_chip_rev_id(tp) == CHIPREV_ID_5703_A1) ||
16125             (tg3_chip_rev_id(tp) == CHIPREV_ID_5703_A2)) {
16126                 static struct tg3_dev_id {
16127                         u32     vendor;
16128                         u32     device;
16129                         u32     rev;
16130                 } ich_chipsets[] = {
16131                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801AA_8,
16132                           PCI_ANY_ID },
16133                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801AB_8,
16134                           PCI_ANY_ID },
16135                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801BA_11,
16136                           0xa },
16137                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801BA_6,
16138                           PCI_ANY_ID },
16139                         { },
16140                 };
16141                 struct tg3_dev_id *pci_id = &ich_chipsets[0];
16142                 struct pci_dev *bridge = NULL;
16143
16144                 while (pci_id->vendor != 0) {
16145                         bridge = pci_get_device(pci_id->vendor, pci_id->device,
16146                                                 bridge);
16147                         if (!bridge) {
16148                                 pci_id++;
16149                                 continue;
16150                         }
16151                         if (pci_id->rev != PCI_ANY_ID) {
16152                                 if (bridge->revision > pci_id->rev)
16153                                         continue;
16154                         }
16155                         if (bridge->subordinate &&
16156                             (bridge->subordinate->number ==
16157                              tp->pdev->bus->number)) {
16158                                 tg3_flag_set(tp, ICH_WORKAROUND);
16159                                 pci_dev_put(bridge);
16160                                 break;
16161                         }
16162                 }
16163         }
16164
16165         if (tg3_asic_rev(tp) == ASIC_REV_5701) {
16166                 static struct tg3_dev_id {
16167                         u32     vendor;
16168                         u32     device;
16169                 } bridge_chipsets[] = {
16170                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_PXH_0 },
16171                         { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_PXH_1 },
16172                         { },
16173                 };
16174                 struct tg3_dev_id *pci_id = &bridge_chipsets[0];
16175                 struct pci_dev *bridge = NULL;
16176
16177                 while (pci_id->vendor != 0) {
16178                         bridge = pci_get_device(pci_id->vendor,
16179                                                 pci_id->device,
16180                                                 bridge);
16181                         if (!bridge) {
16182                                 pci_id++;
16183                                 continue;
16184                         }
16185                         if (bridge->subordinate &&
16186                             (bridge->subordinate->number <=
16187                              tp->pdev->bus->number) &&
16188                             (bridge->subordinate->busn_res.end >=
16189                              tp->pdev->bus->number)) {
16190                                 tg3_flag_set(tp, 5701_DMA_BUG);
16191                                 pci_dev_put(bridge);
16192                                 break;
16193                         }
16194                 }
16195         }
16196
16197         /* The EPB bridge inside 5714, 5715, and 5780 cannot support
16198          * DMA addresses > 40-bit. This bridge may have other additional
16199          * 57xx devices behind it in some 4-port NIC designs for example.
16200          * Any tg3 device found behind the bridge will also need the 40-bit
16201          * DMA workaround.
16202          */
16203         if (tg3_flag(tp, 5780_CLASS)) {
16204                 tg3_flag_set(tp, 40BIT_DMA_BUG);
16205                 tp->msi_cap = tp->pdev->msi_cap;
16206         } else {
16207                 struct pci_dev *bridge = NULL;
16208
16209                 do {
16210                         bridge = pci_get_device(PCI_VENDOR_ID_SERVERWORKS,
16211                                                 PCI_DEVICE_ID_SERVERWORKS_EPB,
16212                                                 bridge);
16213                         if (bridge && bridge->subordinate &&
16214                             (bridge->subordinate->number <=
16215                              tp->pdev->bus->number) &&
16216                             (bridge->subordinate->busn_res.end >=
16217                              tp->pdev->bus->number)) {
16218                                 tg3_flag_set(tp, 40BIT_DMA_BUG);
16219                                 pci_dev_put(bridge);
16220                                 break;
16221                         }
16222                 } while (bridge);
16223         }
16224
16225         if (tg3_asic_rev(tp) == ASIC_REV_5704 ||
16226             tg3_asic_rev(tp) == ASIC_REV_5714)
16227                 tp->pdev_peer = tg3_find_peer(tp);
16228
16229         /* Determine TSO capabilities */
16230         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5719_A0)
16231                 ; /* Do nothing. HW bug. */
16232         else if (tg3_flag(tp, 57765_PLUS))
16233                 tg3_flag_set(tp, HW_TSO_3);
16234         else if (tg3_flag(tp, 5755_PLUS) ||
16235                  tg3_asic_rev(tp) == ASIC_REV_5906)
16236                 tg3_flag_set(tp, HW_TSO_2);
16237         else if (tg3_flag(tp, 5750_PLUS)) {
16238                 tg3_flag_set(tp, HW_TSO_1);
16239                 tg3_flag_set(tp, TSO_BUG);
16240                 if (tg3_asic_rev(tp) == ASIC_REV_5750 &&
16241                     tg3_chip_rev_id(tp) >= CHIPREV_ID_5750_C2)
16242                         tg3_flag_clear(tp, TSO_BUG);
16243         } else if (tg3_asic_rev(tp) != ASIC_REV_5700 &&
16244                    tg3_asic_rev(tp) != ASIC_REV_5701 &&
16245                    tg3_chip_rev_id(tp) != CHIPREV_ID_5705_A0) {
16246                 tg3_flag_set(tp, FW_TSO);
16247                 tg3_flag_set(tp, TSO_BUG);
16248                 if (tg3_asic_rev(tp) == ASIC_REV_5705)
16249                         tp->fw_needed = FIRMWARE_TG3TSO5;
16250                 else
16251                         tp->fw_needed = FIRMWARE_TG3TSO;
16252         }
16253
16254         /* Selectively allow TSO based on operating conditions */
16255         if (tg3_flag(tp, HW_TSO_1) ||
16256             tg3_flag(tp, HW_TSO_2) ||
16257             tg3_flag(tp, HW_TSO_3) ||
16258             tg3_flag(tp, FW_TSO)) {
16259                 /* For firmware TSO, assume ASF is disabled.
16260                  * We'll disable TSO later if we discover ASF
16261                  * is enabled in tg3_get_eeprom_hw_cfg().
16262                  */
16263                 tg3_flag_set(tp, TSO_CAPABLE);
16264         } else {
16265                 tg3_flag_clear(tp, TSO_CAPABLE);
16266                 tg3_flag_clear(tp, TSO_BUG);
16267                 tp->fw_needed = NULL;
16268         }
16269
16270         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0)
16271                 tp->fw_needed = FIRMWARE_TG3;
16272
16273         if (tg3_asic_rev(tp) == ASIC_REV_57766)
16274                 tp->fw_needed = FIRMWARE_TG357766;
16275
16276         tp->irq_max = 1;
16277
16278         if (tg3_flag(tp, 5750_PLUS)) {
16279                 tg3_flag_set(tp, SUPPORT_MSI);
16280                 if (tg3_chip_rev(tp) == CHIPREV_5750_AX ||
16281                     tg3_chip_rev(tp) == CHIPREV_5750_BX ||
16282                     (tg3_asic_rev(tp) == ASIC_REV_5714 &&
16283                      tg3_chip_rev_id(tp) <= CHIPREV_ID_5714_A2 &&
16284                      tp->pdev_peer == tp->pdev))
16285                         tg3_flag_clear(tp, SUPPORT_MSI);
16286
16287                 if (tg3_flag(tp, 5755_PLUS) ||
16288                     tg3_asic_rev(tp) == ASIC_REV_5906) {
16289                         tg3_flag_set(tp, 1SHOT_MSI);
16290                 }
16291
16292                 if (tg3_flag(tp, 57765_PLUS)) {
16293                         tg3_flag_set(tp, SUPPORT_MSIX);
16294                         tp->irq_max = TG3_IRQ_MAX_VECS;
16295                 }
16296         }
16297
16298         tp->txq_max = 1;
16299         tp->rxq_max = 1;
16300         if (tp->irq_max > 1) {
16301                 tp->rxq_max = TG3_RSS_MAX_NUM_QS;
16302                 tg3_rss_init_dflt_indir_tbl(tp, TG3_RSS_MAX_NUM_QS);
16303
16304                 if (tg3_asic_rev(tp) == ASIC_REV_5719 ||
16305                     tg3_asic_rev(tp) == ASIC_REV_5720)
16306                         tp->txq_max = tp->irq_max - 1;
16307         }
16308
16309         if (tg3_flag(tp, 5755_PLUS) ||
16310             tg3_asic_rev(tp) == ASIC_REV_5906)
16311                 tg3_flag_set(tp, SHORT_DMA_BUG);
16312
16313         if (tg3_asic_rev(tp) == ASIC_REV_5719)
16314                 tp->dma_limit = TG3_TX_BD_DMA_MAX_4K;
16315
16316         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
16317             tg3_asic_rev(tp) == ASIC_REV_5719 ||
16318             tg3_asic_rev(tp) == ASIC_REV_5720 ||
16319             tg3_asic_rev(tp) == ASIC_REV_5762)
16320                 tg3_flag_set(tp, LRG_PROD_RING_CAP);
16321
16322         if (tg3_flag(tp, 57765_PLUS) &&
16323             tg3_chip_rev_id(tp) != CHIPREV_ID_5719_A0)
16324                 tg3_flag_set(tp, USE_JUMBO_BDFLAG);
16325
16326         if (!tg3_flag(tp, 5705_PLUS) ||
16327             tg3_flag(tp, 5780_CLASS) ||
16328             tg3_flag(tp, USE_JUMBO_BDFLAG))
16329                 tg3_flag_set(tp, JUMBO_CAPABLE);
16330
16331         pci_read_config_dword(tp->pdev, TG3PCI_PCISTATE,
16332                               &pci_state_reg);
16333
16334         if (pci_is_pcie(tp->pdev)) {
16335                 u16 lnkctl;
16336
16337                 tg3_flag_set(tp, PCI_EXPRESS);
16338
16339                 pcie_capability_read_word(tp->pdev, PCI_EXP_LNKCTL, &lnkctl);
16340                 if (lnkctl & PCI_EXP_LNKCTL_CLKREQ_EN) {
16341                         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
16342                                 tg3_flag_clear(tp, HW_TSO_2);
16343                                 tg3_flag_clear(tp, TSO_CAPABLE);
16344                         }
16345                         if (tg3_asic_rev(tp) == ASIC_REV_5784 ||
16346                             tg3_asic_rev(tp) == ASIC_REV_5761 ||
16347                             tg3_chip_rev_id(tp) == CHIPREV_ID_57780_A0 ||
16348                             tg3_chip_rev_id(tp) == CHIPREV_ID_57780_A1)
16349                                 tg3_flag_set(tp, CLKREQ_BUG);
16350                 } else if (tg3_chip_rev_id(tp) == CHIPREV_ID_5717_A0) {
16351                         tg3_flag_set(tp, L1PLLPD_EN);
16352                 }
16353         } else if (tg3_asic_rev(tp) == ASIC_REV_5785) {
16354                 /* BCM5785 devices are effectively PCIe devices, and should
16355                  * follow PCIe codepaths, but do not have a PCIe capabilities
16356                  * section.
16357                  */
16358                 tg3_flag_set(tp, PCI_EXPRESS);
16359         } else if (!tg3_flag(tp, 5705_PLUS) ||
16360                    tg3_flag(tp, 5780_CLASS)) {
16361                 tp->pcix_cap = pci_find_capability(tp->pdev, PCI_CAP_ID_PCIX);
16362                 if (!tp->pcix_cap) {
16363                         dev_err(&tp->pdev->dev,
16364                                 "Cannot find PCI-X capability, aborting\n");
16365                         return -EIO;
16366                 }
16367
16368                 if (!(pci_state_reg & PCISTATE_CONV_PCI_MODE))
16369                         tg3_flag_set(tp, PCIX_MODE);
16370         }
16371
16372         /* If we have an AMD 762 or VIA K8T800 chipset, write
16373          * reordering to the mailbox registers done by the host
16374          * controller can cause major troubles.  We read back from
16375          * every mailbox register write to force the writes to be
16376          * posted to the chip in order.
16377          */
16378         if (pci_dev_present(tg3_write_reorder_chipsets) &&
16379             !tg3_flag(tp, PCI_EXPRESS))
16380                 tg3_flag_set(tp, MBOX_WRITE_REORDER);
16381
16382         pci_read_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE,
16383                              &tp->pci_cacheline_sz);
16384         pci_read_config_byte(tp->pdev, PCI_LATENCY_TIMER,
16385                              &tp->pci_lat_timer);
16386         if (tg3_asic_rev(tp) == ASIC_REV_5703 &&
16387             tp->pci_lat_timer < 64) {
16388                 tp->pci_lat_timer = 64;
16389                 pci_write_config_byte(tp->pdev, PCI_LATENCY_TIMER,
16390                                       tp->pci_lat_timer);
16391         }
16392
16393         /* Important! -- It is critical that the PCI-X hw workaround
16394          * situation is decided before the first MMIO register access.
16395          */
16396         if (tg3_chip_rev(tp) == CHIPREV_5700_BX) {
16397                 /* 5700 BX chips need to have their TX producer index
16398                  * mailboxes written twice to workaround a bug.
16399                  */
16400                 tg3_flag_set(tp, TXD_MBOX_HWBUG);
16401
16402                 /* If we are in PCI-X mode, enable register write workaround.
16403                  *
16404                  * The workaround is to use indirect register accesses
16405                  * for all chip writes not to mailbox registers.
16406                  */
16407                 if (tg3_flag(tp, PCIX_MODE)) {
16408                         u32 pm_reg;
16409
16410                         tg3_flag_set(tp, PCIX_TARGET_HWBUG);
16411
16412                         /* The chip can have it's power management PCI config
16413                          * space registers clobbered due to this bug.
16414                          * So explicitly force the chip into D0 here.
16415                          */
16416                         pci_read_config_dword(tp->pdev,
16417                                               tp->pdev->pm_cap + PCI_PM_CTRL,
16418                                               &pm_reg);
16419                         pm_reg &= ~PCI_PM_CTRL_STATE_MASK;
16420                         pm_reg |= PCI_PM_CTRL_PME_ENABLE | 0 /* D0 */;
16421                         pci_write_config_dword(tp->pdev,
16422                                                tp->pdev->pm_cap + PCI_PM_CTRL,
16423                                                pm_reg);
16424
16425                         /* Also, force SERR#/PERR# in PCI command. */
16426                         pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
16427                         pci_cmd |= PCI_COMMAND_PARITY | PCI_COMMAND_SERR;
16428                         pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
16429                 }
16430         }
16431
16432         if ((pci_state_reg & PCISTATE_BUS_SPEED_HIGH) != 0)
16433                 tg3_flag_set(tp, PCI_HIGH_SPEED);
16434         if ((pci_state_reg & PCISTATE_BUS_32BIT) != 0)
16435                 tg3_flag_set(tp, PCI_32BIT);
16436
16437         /* Chip-specific fixup from Broadcom driver */
16438         if ((tg3_chip_rev_id(tp) == CHIPREV_ID_5704_A0) &&
16439             (!(pci_state_reg & PCISTATE_RETRY_SAME_DMA))) {
16440                 pci_state_reg |= PCISTATE_RETRY_SAME_DMA;
16441                 pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE, pci_state_reg);
16442         }
16443
16444         /* Default fast path register access methods */
16445         tp->read32 = tg3_read32;
16446         tp->write32 = tg3_write32;
16447         tp->read32_mbox = tg3_read32;
16448         tp->write32_mbox = tg3_write32;
16449         tp->write32_tx_mbox = tg3_write32;
16450         tp->write32_rx_mbox = tg3_write32;
16451
16452         /* Various workaround register access methods */
16453         if (tg3_flag(tp, PCIX_TARGET_HWBUG))
16454                 tp->write32 = tg3_write_indirect_reg32;
16455         else if (tg3_asic_rev(tp) == ASIC_REV_5701 ||
16456                  (tg3_flag(tp, PCI_EXPRESS) &&
16457                   tg3_chip_rev_id(tp) == CHIPREV_ID_5750_A0)) {
16458                 /*
16459                  * Back to back register writes can cause problems on these
16460                  * chips, the workaround is to read back all reg writes
16461                  * except those to mailbox regs.
16462                  *
16463                  * See tg3_write_indirect_reg32().
16464                  */
16465                 tp->write32 = tg3_write_flush_reg32;
16466         }
16467
16468         if (tg3_flag(tp, TXD_MBOX_HWBUG) || tg3_flag(tp, MBOX_WRITE_REORDER)) {
16469                 tp->write32_tx_mbox = tg3_write32_tx_mbox;
16470                 if (tg3_flag(tp, MBOX_WRITE_REORDER))
16471                         tp->write32_rx_mbox = tg3_write_flush_reg32;
16472         }
16473
16474         if (tg3_flag(tp, ICH_WORKAROUND)) {
16475                 tp->read32 = tg3_read_indirect_reg32;
16476                 tp->write32 = tg3_write_indirect_reg32;
16477                 tp->read32_mbox = tg3_read_indirect_mbox;
16478                 tp->write32_mbox = tg3_write_indirect_mbox;
16479                 tp->write32_tx_mbox = tg3_write_indirect_mbox;
16480                 tp->write32_rx_mbox = tg3_write_indirect_mbox;
16481
16482                 iounmap(tp->regs);
16483                 tp->regs = NULL;
16484
16485                 pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
16486                 pci_cmd &= ~PCI_COMMAND_MEMORY;
16487                 pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
16488         }
16489         if (tg3_asic_rev(tp) == ASIC_REV_5906) {
16490                 tp->read32_mbox = tg3_read32_mbox_5906;
16491                 tp->write32_mbox = tg3_write32_mbox_5906;
16492                 tp->write32_tx_mbox = tg3_write32_mbox_5906;
16493                 tp->write32_rx_mbox = tg3_write32_mbox_5906;
16494         }
16495
16496         if (tp->write32 == tg3_write_indirect_reg32 ||
16497             (tg3_flag(tp, PCIX_MODE) &&
16498              (tg3_asic_rev(tp) == ASIC_REV_5700 ||
16499               tg3_asic_rev(tp) == ASIC_REV_5701)))
16500                 tg3_flag_set(tp, SRAM_USE_CONFIG);
16501
16502         /* The memory arbiter has to be enabled in order for SRAM accesses
16503          * to succeed.  Normally on powerup the tg3 chip firmware will make
16504          * sure it is enabled, but other entities such as system netboot
16505          * code might disable it.
16506          */
16507         val = tr32(MEMARB_MODE);
16508         tw32(MEMARB_MODE, val | MEMARB_MODE_ENABLE);
16509
16510         tp->pci_fn = PCI_FUNC(tp->pdev->devfn) & 3;
16511         if (tg3_asic_rev(tp) == ASIC_REV_5704 ||
16512             tg3_flag(tp, 5780_CLASS)) {
16513                 if (tg3_flag(tp, PCIX_MODE)) {
16514                         pci_read_config_dword(tp->pdev,
16515                                               tp->pcix_cap + PCI_X_STATUS,
16516                                               &val);
16517                         tp->pci_fn = val & 0x7;
16518                 }
16519         } else if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
16520                    tg3_asic_rev(tp) == ASIC_REV_5719 ||
16521                    tg3_asic_rev(tp) == ASIC_REV_5720) {
16522                 tg3_read_mem(tp, NIC_SRAM_CPMU_STATUS, &val);
16523                 if ((val & NIC_SRAM_CPMUSTAT_SIG_MSK) != NIC_SRAM_CPMUSTAT_SIG)
16524                         val = tr32(TG3_CPMU_STATUS);
16525
16526                 if (tg3_asic_rev(tp) == ASIC_REV_5717)
16527                         tp->pci_fn = (val & TG3_CPMU_STATUS_FMSK_5717) ? 1 : 0;
16528                 else
16529                         tp->pci_fn = (val & TG3_CPMU_STATUS_FMSK_5719) >>
16530                                      TG3_CPMU_STATUS_FSHFT_5719;
16531         }
16532
16533         if (tg3_flag(tp, FLUSH_POSTED_WRITES)) {
16534                 tp->write32_tx_mbox = tg3_write_flush_reg32;
16535                 tp->write32_rx_mbox = tg3_write_flush_reg32;
16536         }
16537
16538         /* Get eeprom hw config before calling tg3_set_power_state().
16539          * In particular, the TG3_FLAG_IS_NIC flag must be
16540          * determined before calling tg3_set_power_state() so that
16541          * we know whether or not to switch out of Vaux power.
16542          * When the flag is set, it means that GPIO1 is used for eeprom
16543          * write protect and also implies that it is a LOM where GPIOs
16544          * are not used to switch power.
16545          */
16546         tg3_get_eeprom_hw_cfg(tp);
16547
16548         if (tg3_flag(tp, FW_TSO) && tg3_flag(tp, ENABLE_ASF)) {
16549                 tg3_flag_clear(tp, TSO_CAPABLE);
16550                 tg3_flag_clear(tp, TSO_BUG);
16551                 tp->fw_needed = NULL;
16552         }
16553
16554         if (tg3_flag(tp, ENABLE_APE)) {
16555                 /* Allow reads and writes to the
16556                  * APE register and memory space.
16557                  */
16558                 pci_state_reg |= PCISTATE_ALLOW_APE_CTLSPC_WR |
16559                                  PCISTATE_ALLOW_APE_SHMEM_WR |
16560                                  PCISTATE_ALLOW_APE_PSPACE_WR;
16561                 pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE,
16562                                        pci_state_reg);
16563
16564                 tg3_ape_lock_init(tp);
16565         }
16566
16567         /* Set up tp->grc_local_ctrl before calling
16568          * tg3_pwrsrc_switch_to_vmain().  GPIO1 driven high
16569          * will bring 5700's external PHY out of reset.
16570          * It is also used as eeprom write protect on LOMs.
16571          */
16572         tp->grc_local_ctrl = GRC_LCLCTRL_INT_ON_ATTN | GRC_LCLCTRL_AUTO_SEEPROM;
16573         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
16574             tg3_flag(tp, EEPROM_WRITE_PROT))
16575                 tp->grc_local_ctrl |= (GRC_LCLCTRL_GPIO_OE1 |
16576                                        GRC_LCLCTRL_GPIO_OUTPUT1);
16577         /* Unused GPIO3 must be driven as output on 5752 because there
16578          * are no pull-up resistors on unused GPIO pins.
16579          */
16580         else if (tg3_asic_rev(tp) == ASIC_REV_5752)
16581                 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE3;
16582
16583         if (tg3_asic_rev(tp) == ASIC_REV_5755 ||
16584             tg3_asic_rev(tp) == ASIC_REV_57780 ||
16585             tg3_flag(tp, 57765_CLASS))
16586                 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_UART_SEL;
16587
16588         if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
16589             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S) {
16590                 /* Turn off the debug UART. */
16591                 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_UART_SEL;
16592                 if (tg3_flag(tp, IS_NIC))
16593                         /* Keep VMain power. */
16594                         tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE0 |
16595                                               GRC_LCLCTRL_GPIO_OUTPUT0;
16596         }
16597
16598         if (tg3_asic_rev(tp) == ASIC_REV_5762)
16599                 tp->grc_local_ctrl |=
16600                         tr32(GRC_LOCAL_CTRL) & GRC_LCLCTRL_GPIO_UART_SEL;
16601
16602         /* Switch out of Vaux if it is a NIC */
16603         tg3_pwrsrc_switch_to_vmain(tp);
16604
16605         /* Derive initial jumbo mode from MTU assigned in
16606          * ether_setup() via the alloc_etherdev() call
16607          */
16608         if (tp->dev->mtu > ETH_DATA_LEN && !tg3_flag(tp, 5780_CLASS))
16609                 tg3_flag_set(tp, JUMBO_RING_ENABLE);
16610
16611         /* Determine WakeOnLan speed to use. */
16612         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
16613             tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0 ||
16614             tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B0 ||
16615             tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B2) {
16616                 tg3_flag_clear(tp, WOL_SPEED_100MB);
16617         } else {
16618                 tg3_flag_set(tp, WOL_SPEED_100MB);
16619         }
16620
16621         if (tg3_asic_rev(tp) == ASIC_REV_5906)
16622                 tp->phy_flags |= TG3_PHYFLG_IS_FET;
16623
16624         /* A few boards don't want Ethernet@WireSpeed phy feature */
16625         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
16626             (tg3_asic_rev(tp) == ASIC_REV_5705 &&
16627              (tg3_chip_rev_id(tp) != CHIPREV_ID_5705_A0) &&
16628              (tg3_chip_rev_id(tp) != CHIPREV_ID_5705_A1)) ||
16629             (tp->phy_flags & TG3_PHYFLG_IS_FET) ||
16630             (tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
16631                 tp->phy_flags |= TG3_PHYFLG_NO_ETH_WIRE_SPEED;
16632
16633         if (tg3_chip_rev(tp) == CHIPREV_5703_AX ||
16634             tg3_chip_rev(tp) == CHIPREV_5704_AX)
16635                 tp->phy_flags |= TG3_PHYFLG_ADC_BUG;
16636         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5704_A0)
16637                 tp->phy_flags |= TG3_PHYFLG_5704_A0_BUG;
16638
16639         if (tg3_flag(tp, 5705_PLUS) &&
16640             !(tp->phy_flags & TG3_PHYFLG_IS_FET) &&
16641             tg3_asic_rev(tp) != ASIC_REV_5785 &&
16642             tg3_asic_rev(tp) != ASIC_REV_57780 &&
16643             !tg3_flag(tp, 57765_PLUS)) {
16644                 if (tg3_asic_rev(tp) == ASIC_REV_5755 ||
16645                     tg3_asic_rev(tp) == ASIC_REV_5787 ||
16646                     tg3_asic_rev(tp) == ASIC_REV_5784 ||
16647                     tg3_asic_rev(tp) == ASIC_REV_5761) {
16648                         if (tp->pdev->device != PCI_DEVICE_ID_TIGON3_5756 &&
16649                             tp->pdev->device != PCI_DEVICE_ID_TIGON3_5722)
16650                                 tp->phy_flags |= TG3_PHYFLG_JITTER_BUG;
16651                         if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5755M)
16652                                 tp->phy_flags |= TG3_PHYFLG_ADJUST_TRIM;
16653                 } else
16654                         tp->phy_flags |= TG3_PHYFLG_BER_BUG;
16655         }
16656
16657         if (tg3_asic_rev(tp) == ASIC_REV_5784 &&
16658             tg3_chip_rev(tp) != CHIPREV_5784_AX) {
16659                 tp->phy_otp = tg3_read_otp_phycfg(tp);
16660                 if (tp->phy_otp == 0)
16661                         tp->phy_otp = TG3_OTP_DEFAULT;
16662         }
16663
16664         if (tg3_flag(tp, CPMU_PRESENT))
16665                 tp->mi_mode = MAC_MI_MODE_500KHZ_CONST;
16666         else
16667                 tp->mi_mode = MAC_MI_MODE_BASE;
16668
16669         tp->coalesce_mode = 0;
16670         if (tg3_chip_rev(tp) != CHIPREV_5700_AX &&
16671             tg3_chip_rev(tp) != CHIPREV_5700_BX)
16672                 tp->coalesce_mode |= HOSTCC_MODE_32BYTE;
16673
16674         /* Set these bits to enable statistics workaround. */
16675         if (tg3_asic_rev(tp) == ASIC_REV_5717 ||
16676             tg3_asic_rev(tp) == ASIC_REV_5762 ||
16677             tg3_chip_rev_id(tp) == CHIPREV_ID_5719_A0 ||
16678             tg3_chip_rev_id(tp) == CHIPREV_ID_5720_A0) {
16679                 tp->coalesce_mode |= HOSTCC_MODE_ATTN;
16680                 tp->grc_mode |= GRC_MODE_IRQ_ON_FLOW_ATTN;
16681         }
16682
16683         if (tg3_asic_rev(tp) == ASIC_REV_5785 ||
16684             tg3_asic_rev(tp) == ASIC_REV_57780)
16685                 tg3_flag_set(tp, USE_PHYLIB);
16686
16687         err = tg3_mdio_init(tp);
16688         if (err)
16689                 return err;
16690
16691         /* Initialize data/descriptor byte/word swapping. */
16692         val = tr32(GRC_MODE);
16693         if (tg3_asic_rev(tp) == ASIC_REV_5720 ||
16694             tg3_asic_rev(tp) == ASIC_REV_5762)
16695                 val &= (GRC_MODE_BYTE_SWAP_B2HRX_DATA |
16696                         GRC_MODE_WORD_SWAP_B2HRX_DATA |
16697                         GRC_MODE_B2HRX_ENABLE |
16698                         GRC_MODE_HTX2B_ENABLE |
16699                         GRC_MODE_HOST_STACKUP);
16700         else
16701                 val &= GRC_MODE_HOST_STACKUP;
16702
16703         tw32(GRC_MODE, val | tp->grc_mode);
16704
16705         tg3_switch_clocks(tp);
16706
16707         /* Clear this out for sanity. */
16708         tw32(TG3PCI_MEM_WIN_BASE_ADDR, 0);
16709
16710         /* Clear TG3PCI_REG_BASE_ADDR to prevent hangs. */
16711         tw32(TG3PCI_REG_BASE_ADDR, 0);
16712
16713         pci_read_config_dword(tp->pdev, TG3PCI_PCISTATE,
16714                               &pci_state_reg);
16715         if ((pci_state_reg & PCISTATE_CONV_PCI_MODE) == 0 &&
16716             !tg3_flag(tp, PCIX_TARGET_HWBUG)) {
16717                 if (tg3_chip_rev_id(tp) == CHIPREV_ID_5701_A0 ||
16718                     tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B0 ||
16719                     tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B2 ||
16720                     tg3_chip_rev_id(tp) == CHIPREV_ID_5701_B5) {
16721                         void __iomem *sram_base;
16722
16723                         /* Write some dummy words into the SRAM status block
16724                          * area, see if it reads back correctly.  If the return
16725                          * value is bad, force enable the PCIX workaround.
16726                          */
16727                         sram_base = tp->regs + NIC_SRAM_WIN_BASE + NIC_SRAM_STATS_BLK;
16728
16729                         writel(0x00000000, sram_base);
16730                         writel(0x00000000, sram_base + 4);
16731                         writel(0xffffffff, sram_base + 4);
16732                         if (readl(sram_base) != 0x00000000)
16733                                 tg3_flag_set(tp, PCIX_TARGET_HWBUG);
16734                 }
16735         }
16736
16737         udelay(50);
16738         tg3_nvram_init(tp);
16739
16740         /* If the device has an NVRAM, no need to load patch firmware */
16741         if (tg3_asic_rev(tp) == ASIC_REV_57766 &&
16742             !tg3_flag(tp, NO_NVRAM))
16743                 tp->fw_needed = NULL;
16744
16745         grc_misc_cfg = tr32(GRC_MISC_CFG);
16746         grc_misc_cfg &= GRC_MISC_CFG_BOARD_ID_MASK;
16747
16748         if (tg3_asic_rev(tp) == ASIC_REV_5705 &&
16749             (grc_misc_cfg == GRC_MISC_CFG_BOARD_ID_5788 ||
16750              grc_misc_cfg == GRC_MISC_CFG_BOARD_ID_5788M))
16751                 tg3_flag_set(tp, IS_5788);
16752
16753         if (!tg3_flag(tp, IS_5788) &&
16754             tg3_asic_rev(tp) != ASIC_REV_5700)
16755                 tg3_flag_set(tp, TAGGED_STATUS);
16756         if (tg3_flag(tp, TAGGED_STATUS)) {
16757                 tp->coalesce_mode |= (HOSTCC_MODE_CLRTICK_RXBD |
16758                                       HOSTCC_MODE_CLRTICK_TXBD);
16759
16760                 tp->misc_host_ctrl |= MISC_HOST_CTRL_TAGGED_STATUS;
16761                 pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
16762                                        tp->misc_host_ctrl);
16763         }
16764
16765         /* Preserve the APE MAC_MODE bits */
16766         if (tg3_flag(tp, ENABLE_APE))
16767                 tp->mac_mode = MAC_MODE_APE_TX_EN | MAC_MODE_APE_RX_EN;
16768         else
16769                 tp->mac_mode = 0;
16770
16771         if (tg3_10_100_only_device(tp, ent))
16772                 tp->phy_flags |= TG3_PHYFLG_10_100_ONLY;
16773
16774         err = tg3_phy_probe(tp);
16775         if (err) {
16776                 dev_err(&tp->pdev->dev, "phy probe failed, err %d\n", err);
16777                 /* ... but do not return immediately ... */
16778                 tg3_mdio_fini(tp);
16779         }
16780
16781         tg3_read_vpd(tp);
16782         tg3_read_fw_ver(tp);
16783
16784         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
16785                 tp->phy_flags &= ~TG3_PHYFLG_USE_MI_INTERRUPT;
16786         } else {
16787                 if (tg3_asic_rev(tp) == ASIC_REV_5700)
16788                         tp->phy_flags |= TG3_PHYFLG_USE_MI_INTERRUPT;
16789                 else
16790                         tp->phy_flags &= ~TG3_PHYFLG_USE_MI_INTERRUPT;
16791         }
16792
16793         /* 5700 {AX,BX} chips have a broken status block link
16794          * change bit implementation, so we must use the
16795          * status register in those cases.
16796          */
16797         if (tg3_asic_rev(tp) == ASIC_REV_5700)
16798                 tg3_flag_set(tp, USE_LINKCHG_REG);
16799         else
16800                 tg3_flag_clear(tp, USE_LINKCHG_REG);
16801
16802         /* The led_ctrl is set during tg3_phy_probe, here we might
16803          * have to force the link status polling mechanism based
16804          * upon subsystem IDs.
16805          */
16806         if (tp->pdev->subsystem_vendor == PCI_VENDOR_ID_DELL &&
16807             tg3_asic_rev(tp) == ASIC_REV_5701 &&
16808             !(tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
16809                 tp->phy_flags |= TG3_PHYFLG_USE_MI_INTERRUPT;
16810                 tg3_flag_set(tp, USE_LINKCHG_REG);
16811         }
16812
16813         /* For all SERDES we poll the MAC status register. */
16814         if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
16815                 tg3_flag_set(tp, POLL_SERDES);
16816         else
16817                 tg3_flag_clear(tp, POLL_SERDES);
16818
16819         if (tg3_flag(tp, ENABLE_APE) && tg3_flag(tp, ENABLE_ASF))
16820                 tg3_flag_set(tp, POLL_CPMU_LINK);
16821
16822         tp->rx_offset = NET_SKB_PAD + NET_IP_ALIGN;
16823         tp->rx_copy_thresh = TG3_RX_COPY_THRESHOLD;
16824         if (tg3_asic_rev(tp) == ASIC_REV_5701 &&
16825             tg3_flag(tp, PCIX_MODE)) {
16826                 tp->rx_offset = NET_SKB_PAD;
16827 #ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS
16828                 tp->rx_copy_thresh = ~(u16)0;
16829 #endif
16830         }
16831
16832         tp->rx_std_ring_mask = TG3_RX_STD_RING_SIZE(tp) - 1;
16833         tp->rx_jmb_ring_mask = TG3_RX_JMB_RING_SIZE(tp) - 1;
16834         tp->rx_ret_ring_mask = tg3_rx_ret_ring_size(tp) - 1;
16835
16836         tp->rx_std_max_post = tp->rx_std_ring_mask + 1;
16837
16838         /* Increment the rx prod index on the rx std ring by at most
16839          * 8 for these chips to workaround hw errata.
16840          */
16841         if (tg3_asic_rev(tp) == ASIC_REV_5750 ||
16842             tg3_asic_rev(tp) == ASIC_REV_5752 ||
16843             tg3_asic_rev(tp) == ASIC_REV_5755)
16844                 tp->rx_std_max_post = 8;
16845
16846         if (tg3_flag(tp, ASPM_WORKAROUND))
16847                 tp->pwrmgmt_thresh = tr32(PCIE_PWR_MGMT_THRESH) &
16848                                      PCIE_PWR_MGMT_L1_THRESH_MSK;
16849
16850         return err;
16851 }
16852
16853 #ifdef CONFIG_SPARC
16854 static int tg3_get_macaddr_sparc(struct tg3 *tp)
16855 {
16856         struct net_device *dev = tp->dev;
16857         struct pci_dev *pdev = tp->pdev;
16858         struct device_node *dp = pci_device_to_OF_node(pdev);
16859         const unsigned char *addr;
16860         int len;
16861
16862         addr = of_get_property(dp, "local-mac-address", &len);
16863         if (addr && len == ETH_ALEN) {
16864                 memcpy(dev->dev_addr, addr, ETH_ALEN);
16865                 return 0;
16866         }
16867         return -ENODEV;
16868 }
16869
16870 static int tg3_get_default_macaddr_sparc(struct tg3 *tp)
16871 {
16872         struct net_device *dev = tp->dev;
16873
16874         memcpy(dev->dev_addr, idprom->id_ethaddr, ETH_ALEN);
16875         return 0;
16876 }
16877 #endif
16878
16879 static int tg3_get_device_address(struct tg3 *tp)
16880 {
16881         struct net_device *dev = tp->dev;
16882         u32 hi, lo, mac_offset;
16883         int addr_ok = 0;
16884         int err;
16885
16886 #ifdef CONFIG_SPARC
16887         if (!tg3_get_macaddr_sparc(tp))
16888                 return 0;
16889 #endif
16890
16891         if (tg3_flag(tp, IS_SSB_CORE)) {
16892                 err = ssb_gige_get_macaddr(tp->pdev, &dev->dev_addr[0]);
16893                 if (!err && is_valid_ether_addr(&dev->dev_addr[0]))
16894                         return 0;
16895         }
16896
16897         mac_offset = 0x7c;
16898         if (tg3_asic_rev(tp) == ASIC_REV_5704 ||
16899             tg3_flag(tp, 5780_CLASS)) {
16900                 if (tr32(TG3PCI_DUAL_MAC_CTRL) & DUAL_MAC_CTRL_ID)
16901                         mac_offset = 0xcc;
16902                 if (tg3_nvram_lock(tp))
16903                         tw32_f(NVRAM_CMD, NVRAM_CMD_RESET);
16904                 else
16905                         tg3_nvram_unlock(tp);
16906         } else if (tg3_flag(tp, 5717_PLUS)) {
16907                 if (tp->pci_fn & 1)
16908                         mac_offset = 0xcc;
16909                 if (tp->pci_fn > 1)
16910                         mac_offset += 0x18c;
16911         } else if (tg3_asic_rev(tp) == ASIC_REV_5906)
16912                 mac_offset = 0x10;
16913
16914         /* First try to get it from MAC address mailbox. */
16915         tg3_read_mem(tp, NIC_SRAM_MAC_ADDR_HIGH_MBOX, &hi);
16916         if ((hi >> 16) == 0x484b) {
16917                 dev->dev_addr[0] = (hi >>  8) & 0xff;
16918                 dev->dev_addr[1] = (hi >>  0) & 0xff;
16919
16920                 tg3_read_mem(tp, NIC_SRAM_MAC_ADDR_LOW_MBOX, &lo);
16921                 dev->dev_addr[2] = (lo >> 24) & 0xff;
16922                 dev->dev_addr[3] = (lo >> 16) & 0xff;
16923                 dev->dev_addr[4] = (lo >>  8) & 0xff;
16924                 dev->dev_addr[5] = (lo >>  0) & 0xff;
16925
16926                 /* Some old bootcode may report a 0 MAC address in SRAM */
16927                 addr_ok = is_valid_ether_addr(&dev->dev_addr[0]);
16928         }
16929         if (!addr_ok) {
16930                 /* Next, try NVRAM. */
16931                 if (!tg3_flag(tp, NO_NVRAM) &&
16932                     !tg3_nvram_read_be32(tp, mac_offset + 0, &hi) &&
16933                     !tg3_nvram_read_be32(tp, mac_offset + 4, &lo)) {
16934                         memcpy(&dev->dev_addr[0], ((char *)&hi) + 2, 2);
16935                         memcpy(&dev->dev_addr[2], (char *)&lo, sizeof(lo));
16936                 }
16937                 /* Finally just fetch it out of the MAC control regs. */
16938                 else {
16939                         hi = tr32(MAC_ADDR_0_HIGH);
16940                         lo = tr32(MAC_ADDR_0_LOW);
16941
16942                         dev->dev_addr[5] = lo & 0xff;
16943                         dev->dev_addr[4] = (lo >> 8) & 0xff;
16944                         dev->dev_addr[3] = (lo >> 16) & 0xff;
16945                         dev->dev_addr[2] = (lo >> 24) & 0xff;
16946                         dev->dev_addr[1] = hi & 0xff;
16947                         dev->dev_addr[0] = (hi >> 8) & 0xff;
16948                 }
16949         }
16950
16951         if (!is_valid_ether_addr(&dev->dev_addr[0])) {
16952 #ifdef CONFIG_SPARC
16953                 if (!tg3_get_default_macaddr_sparc(tp))
16954                         return 0;
16955 #endif
16956                 return -EINVAL;
16957         }
16958         return 0;
16959 }
16960
16961 #define BOUNDARY_SINGLE_CACHELINE       1
16962 #define BOUNDARY_MULTI_CACHELINE        2
16963
16964 static u32 tg3_calc_dma_bndry(struct tg3 *tp, u32 val)
16965 {
16966         int cacheline_size;
16967         u8 byte;
16968         int goal;
16969
16970         pci_read_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE, &byte);
16971         if (byte == 0)
16972                 cacheline_size = 1024;
16973         else
16974                 cacheline_size = (int) byte * 4;
16975
16976         /* On 5703 and later chips, the boundary bits have no
16977          * effect.
16978          */
16979         if (tg3_asic_rev(tp) != ASIC_REV_5700 &&
16980             tg3_asic_rev(tp) != ASIC_REV_5701 &&
16981             !tg3_flag(tp, PCI_EXPRESS))
16982                 goto out;
16983
16984 #if defined(CONFIG_PPC64) || defined(CONFIG_IA64) || defined(CONFIG_PARISC)
16985         goal = BOUNDARY_MULTI_CACHELINE;
16986 #else
16987 #if defined(CONFIG_SPARC64) || defined(CONFIG_ALPHA)
16988         goal = BOUNDARY_SINGLE_CACHELINE;
16989 #else
16990         goal = 0;
16991 #endif
16992 #endif
16993
16994         if (tg3_flag(tp, 57765_PLUS)) {
16995                 val = goal ? 0 : DMA_RWCTRL_DIS_CACHE_ALIGNMENT;
16996                 goto out;
16997         }
16998
16999         if (!goal)
17000                 goto out;
17001
17002         /* PCI controllers on most RISC systems tend to disconnect
17003          * when a device tries to burst across a cache-line boundary.
17004          * Therefore, letting tg3 do so just wastes PCI bandwidth.
17005          *
17006          * Unfortunately, for PCI-E there are only limited
17007          * write-side controls for this, and thus for reads
17008          * we will still get the disconnects.  We'll also waste
17009          * these PCI cycles for both read and write for chips
17010          * other than 5700 and 5701 which do not implement the
17011          * boundary bits.
17012          */
17013         if (tg3_flag(tp, PCIX_MODE) && !tg3_flag(tp, PCI_EXPRESS)) {
17014                 switch (cacheline_size) {
17015                 case 16:
17016                 case 32:
17017                 case 64:
17018                 case 128:
17019                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17020                                 val |= (DMA_RWCTRL_READ_BNDRY_128_PCIX |
17021                                         DMA_RWCTRL_WRITE_BNDRY_128_PCIX);
17022                         } else {
17023                                 val |= (DMA_RWCTRL_READ_BNDRY_384_PCIX |
17024                                         DMA_RWCTRL_WRITE_BNDRY_384_PCIX);
17025                         }
17026                         break;
17027
17028                 case 256:
17029                         val |= (DMA_RWCTRL_READ_BNDRY_256_PCIX |
17030                                 DMA_RWCTRL_WRITE_BNDRY_256_PCIX);
17031                         break;
17032
17033                 default:
17034                         val |= (DMA_RWCTRL_READ_BNDRY_384_PCIX |
17035                                 DMA_RWCTRL_WRITE_BNDRY_384_PCIX);
17036                         break;
17037                 }
17038         } else if (tg3_flag(tp, PCI_EXPRESS)) {
17039                 switch (cacheline_size) {
17040                 case 16:
17041                 case 32:
17042                 case 64:
17043                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17044                                 val &= ~DMA_RWCTRL_WRITE_BNDRY_DISAB_PCIE;
17045                                 val |= DMA_RWCTRL_WRITE_BNDRY_64_PCIE;
17046                                 break;
17047                         }
17048                         /* fallthrough */
17049                 case 128:
17050                 default:
17051                         val &= ~DMA_RWCTRL_WRITE_BNDRY_DISAB_PCIE;
17052                         val |= DMA_RWCTRL_WRITE_BNDRY_128_PCIE;
17053                         break;
17054                 }
17055         } else {
17056                 switch (cacheline_size) {
17057                 case 16:
17058                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17059                                 val |= (DMA_RWCTRL_READ_BNDRY_16 |
17060                                         DMA_RWCTRL_WRITE_BNDRY_16);
17061                                 break;
17062                         }
17063                         /* fallthrough */
17064                 case 32:
17065                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17066                                 val |= (DMA_RWCTRL_READ_BNDRY_32 |
17067                                         DMA_RWCTRL_WRITE_BNDRY_32);
17068                                 break;
17069                         }
17070                         /* fallthrough */
17071                 case 64:
17072                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17073                                 val |= (DMA_RWCTRL_READ_BNDRY_64 |
17074                                         DMA_RWCTRL_WRITE_BNDRY_64);
17075                                 break;
17076                         }
17077                         /* fallthrough */
17078                 case 128:
17079                         if (goal == BOUNDARY_SINGLE_CACHELINE) {
17080                                 val |= (DMA_RWCTRL_READ_BNDRY_128 |
17081                                         DMA_RWCTRL_WRITE_BNDRY_128);
17082                                 break;
17083                         }
17084                         /* fallthrough */
17085                 case 256:
17086                         val |= (DMA_RWCTRL_READ_BNDRY_256 |
17087                                 DMA_RWCTRL_WRITE_BNDRY_256);
17088                         break;
17089                 case 512:
17090                         val |= (DMA_RWCTRL_READ_BNDRY_512 |
17091                                 DMA_RWCTRL_WRITE_BNDRY_512);
17092                         break;
17093                 case 1024:
17094                 default:
17095                         val |= (DMA_RWCTRL_READ_BNDRY_1024 |
17096                                 DMA_RWCTRL_WRITE_BNDRY_1024);
17097                         break;
17098                 }
17099         }
17100
17101 out:
17102         return val;
17103 }
17104
17105 static int tg3_do_test_dma(struct tg3 *tp, u32 *buf, dma_addr_t buf_dma,
17106                            int size, bool to_device)
17107 {
17108         struct tg3_internal_buffer_desc test_desc;
17109         u32 sram_dma_descs;
17110         int i, ret;
17111
17112         sram_dma_descs = NIC_SRAM_DMA_DESC_POOL_BASE;
17113
17114         tw32(FTQ_RCVBD_COMP_FIFO_ENQDEQ, 0);
17115         tw32(FTQ_RCVDATA_COMP_FIFO_ENQDEQ, 0);
17116         tw32(RDMAC_STATUS, 0);
17117         tw32(WDMAC_STATUS, 0);
17118
17119         tw32(BUFMGR_MODE, 0);
17120         tw32(FTQ_RESET, 0);
17121
17122         test_desc.addr_hi = ((u64) buf_dma) >> 32;
17123         test_desc.addr_lo = buf_dma & 0xffffffff;
17124         test_desc.nic_mbuf = 0x00002100;
17125         test_desc.len = size;
17126
17127         /*
17128          * HP ZX1 was seeing test failures for 5701 cards running at 33Mhz
17129          * the *second* time the tg3 driver was getting loaded after an
17130          * initial scan.
17131          *
17132          * Broadcom tells me:
17133          *   ...the DMA engine is connected to the GRC block and a DMA
17134          *   reset may affect the GRC block in some unpredictable way...
17135          *   The behavior of resets to individual blocks has not been tested.
17136          *
17137          * Broadcom noted the GRC reset will also reset all sub-components.
17138          */
17139         if (to_device) {
17140                 test_desc.cqid_sqid = (13 << 8) | 2;
17141
17142                 tw32_f(RDMAC_MODE, RDMAC_MODE_ENABLE);
17143                 udelay(40);
17144         } else {
17145                 test_desc.cqid_sqid = (16 << 8) | 7;
17146
17147                 tw32_f(WDMAC_MODE, WDMAC_MODE_ENABLE);
17148                 udelay(40);
17149         }
17150         test_desc.flags = 0x00000005;
17151
17152         for (i = 0; i < (sizeof(test_desc) / sizeof(u32)); i++) {
17153                 u32 val;
17154
17155                 val = *(((u32 *)&test_desc) + i);
17156                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR,
17157                                        sram_dma_descs + (i * sizeof(u32)));
17158                 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
17159         }
17160         pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
17161
17162         if (to_device)
17163                 tw32(FTQ_DMA_HIGH_READ_FIFO_ENQDEQ, sram_dma_descs);
17164         else
17165                 tw32(FTQ_DMA_HIGH_WRITE_FIFO_ENQDEQ, sram_dma_descs);
17166
17167         ret = -ENODEV;
17168         for (i = 0; i < 40; i++) {
17169                 u32 val;
17170
17171                 if (to_device)
17172                         val = tr32(FTQ_RCVBD_COMP_FIFO_ENQDEQ);
17173                 else
17174                         val = tr32(FTQ_RCVDATA_COMP_FIFO_ENQDEQ);
17175                 if ((val & 0xffff) == sram_dma_descs) {
17176                         ret = 0;
17177                         break;
17178                 }
17179
17180                 udelay(100);
17181         }
17182
17183         return ret;
17184 }
17185
17186 #define TEST_BUFFER_SIZE        0x2000
17187
17188 static DEFINE_PCI_DEVICE_TABLE(tg3_dma_wait_state_chipsets) = {
17189         { PCI_DEVICE(PCI_VENDOR_ID_APPLE, PCI_DEVICE_ID_APPLE_UNI_N_PCI15) },
17190         { },
17191 };
17192
17193 static int tg3_test_dma(struct tg3 *tp)
17194 {
17195         dma_addr_t buf_dma;
17196         u32 *buf, saved_dma_rwctrl;
17197         int ret = 0;
17198
17199         buf = dma_alloc_coherent(&tp->pdev->dev, TEST_BUFFER_SIZE,
17200                                  &buf_dma, GFP_KERNEL);
17201         if (!buf) {
17202                 ret = -ENOMEM;
17203                 goto out_nofree;
17204         }
17205
17206         tp->dma_rwctrl = ((0x7 << DMA_RWCTRL_PCI_WRITE_CMD_SHIFT) |
17207                           (0x6 << DMA_RWCTRL_PCI_READ_CMD_SHIFT));
17208
17209         tp->dma_rwctrl = tg3_calc_dma_bndry(tp, tp->dma_rwctrl);
17210
17211         if (tg3_flag(tp, 57765_PLUS))
17212                 goto out;
17213
17214         if (tg3_flag(tp, PCI_EXPRESS)) {
17215                 /* DMA read watermark not used on PCIE */
17216                 tp->dma_rwctrl |= 0x00180000;
17217         } else if (!tg3_flag(tp, PCIX_MODE)) {
17218                 if (tg3_asic_rev(tp) == ASIC_REV_5705 ||
17219                     tg3_asic_rev(tp) == ASIC_REV_5750)
17220                         tp->dma_rwctrl |= 0x003f0000;
17221                 else
17222                         tp->dma_rwctrl |= 0x003f000f;
17223         } else {
17224                 if (tg3_asic_rev(tp) == ASIC_REV_5703 ||
17225                     tg3_asic_rev(tp) == ASIC_REV_5704) {
17226                         u32 ccval = (tr32(TG3PCI_CLOCK_CTRL) & 0x1f);
17227                         u32 read_water = 0x7;
17228
17229                         /* If the 5704 is behind the EPB bridge, we can
17230                          * do the less restrictive ONE_DMA workaround for
17231                          * better performance.
17232                          */
17233                         if (tg3_flag(tp, 40BIT_DMA_BUG) &&
17234                             tg3_asic_rev(tp) == ASIC_REV_5704)
17235                                 tp->dma_rwctrl |= 0x8000;
17236                         else if (ccval == 0x6 || ccval == 0x7)
17237                                 tp->dma_rwctrl |= DMA_RWCTRL_ONE_DMA;
17238
17239                         if (tg3_asic_rev(tp) == ASIC_REV_5703)
17240                                 read_water = 4;
17241                         /* Set bit 23 to enable PCIX hw bug fix */
17242                         tp->dma_rwctrl |=
17243                                 (read_water << DMA_RWCTRL_READ_WATER_SHIFT) |
17244                                 (0x3 << DMA_RWCTRL_WRITE_WATER_SHIFT) |
17245                                 (1 << 23);
17246                 } else if (tg3_asic_rev(tp) == ASIC_REV_5780) {
17247                         /* 5780 always in PCIX mode */
17248                         tp->dma_rwctrl |= 0x00144000;
17249                 } else if (tg3_asic_rev(tp) == ASIC_REV_5714) {
17250                         /* 5714 always in PCIX mode */
17251                         tp->dma_rwctrl |= 0x00148000;
17252                 } else {
17253                         tp->dma_rwctrl |= 0x001b000f;
17254                 }
17255         }
17256         if (tg3_flag(tp, ONE_DMA_AT_ONCE))
17257                 tp->dma_rwctrl |= DMA_RWCTRL_ONE_DMA;
17258
17259         if (tg3_asic_rev(tp) == ASIC_REV_5703 ||
17260             tg3_asic_rev(tp) == ASIC_REV_5704)
17261                 tp->dma_rwctrl &= 0xfffffff0;
17262
17263         if (tg3_asic_rev(tp) == ASIC_REV_5700 ||
17264             tg3_asic_rev(tp) == ASIC_REV_5701) {
17265                 /* Remove this if it causes problems for some boards. */
17266                 tp->dma_rwctrl |= DMA_RWCTRL_USE_MEM_READ_MULT;
17267
17268                 /* On 5700/5701 chips, we need to set this bit.
17269                  * Otherwise the chip will issue cacheline transactions
17270                  * to streamable DMA memory with not all the byte
17271                  * enables turned on.  This is an error on several
17272                  * RISC PCI controllers, in particular sparc64.
17273                  *
17274                  * On 5703/5704 chips, this bit has been reassigned
17275                  * a different meaning.  In particular, it is used
17276                  * on those chips to enable a PCI-X workaround.
17277                  */
17278                 tp->dma_rwctrl |= DMA_RWCTRL_ASSERT_ALL_BE;
17279         }
17280
17281         tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
17282
17283
17284         if (tg3_asic_rev(tp) != ASIC_REV_5700 &&
17285             tg3_asic_rev(tp) != ASIC_REV_5701)
17286                 goto out;
17287
17288         /* It is best to perform DMA test with maximum write burst size
17289          * to expose the 5700/5701 write DMA bug.
17290          */
17291         saved_dma_rwctrl = tp->dma_rwctrl;
17292         tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
17293         tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
17294
17295         while (1) {
17296                 u32 *p = buf, i;
17297
17298                 for (i = 0; i < TEST_BUFFER_SIZE / sizeof(u32); i++)
17299                         p[i] = i;
17300
17301                 /* Send the buffer to the chip. */
17302                 ret = tg3_do_test_dma(tp, buf, buf_dma, TEST_BUFFER_SIZE, true);
17303                 if (ret) {
17304                         dev_err(&tp->pdev->dev,
17305                                 "%s: Buffer write failed. err = %d\n",
17306                                 __func__, ret);
17307                         break;
17308                 }
17309
17310                 /* Now read it back. */
17311                 ret = tg3_do_test_dma(tp, buf, buf_dma, TEST_BUFFER_SIZE, false);
17312                 if (ret) {
17313                         dev_err(&tp->pdev->dev, "%s: Buffer read failed. "
17314                                 "err = %d\n", __func__, ret);
17315                         break;
17316                 }
17317
17318                 /* Verify it. */
17319                 for (i = 0; i < TEST_BUFFER_SIZE / sizeof(u32); i++) {
17320                         if (p[i] == i)
17321                                 continue;
17322
17323                         if ((tp->dma_rwctrl & DMA_RWCTRL_WRITE_BNDRY_MASK) !=
17324                             DMA_RWCTRL_WRITE_BNDRY_16) {
17325                                 tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
17326                                 tp->dma_rwctrl |= DMA_RWCTRL_WRITE_BNDRY_16;
17327                                 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
17328                                 break;
17329                         } else {
17330                                 dev_err(&tp->pdev->dev,
17331                                         "%s: Buffer corrupted on read back! "
17332                                         "(%d != %d)\n", __func__, p[i], i);
17333                                 ret = -ENODEV;
17334                                 goto out;
17335                         }
17336                 }
17337
17338                 if (i == (TEST_BUFFER_SIZE / sizeof(u32))) {
17339                         /* Success. */
17340                         ret = 0;
17341                         break;
17342                 }
17343         }
17344         if ((tp->dma_rwctrl & DMA_RWCTRL_WRITE_BNDRY_MASK) !=
17345             DMA_RWCTRL_WRITE_BNDRY_16) {
17346                 /* DMA test passed without adjusting DMA boundary,
17347                  * now look for chipsets that are known to expose the
17348                  * DMA bug without failing the test.
17349                  */
17350                 if (pci_dev_present(tg3_dma_wait_state_chipsets)) {
17351                         tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
17352                         tp->dma_rwctrl |= DMA_RWCTRL_WRITE_BNDRY_16;
17353                 } else {
17354                         /* Safe to use the calculated DMA boundary. */
17355                         tp->dma_rwctrl = saved_dma_rwctrl;
17356                 }
17357
17358                 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
17359         }
17360
17361 out:
17362         dma_free_coherent(&tp->pdev->dev, TEST_BUFFER_SIZE, buf, buf_dma);
17363 out_nofree:
17364         return ret;
17365 }
17366
17367 static void tg3_init_bufmgr_config(struct tg3 *tp)
17368 {
17369         if (tg3_flag(tp, 57765_PLUS)) {
17370                 tp->bufmgr_config.mbuf_read_dma_low_water =
17371                         DEFAULT_MB_RDMA_LOW_WATER_5705;
17372                 tp->bufmgr_config.mbuf_mac_rx_low_water =
17373                         DEFAULT_MB_MACRX_LOW_WATER_57765;
17374                 tp->bufmgr_config.mbuf_high_water =
17375                         DEFAULT_MB_HIGH_WATER_57765;
17376
17377                 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
17378                         DEFAULT_MB_RDMA_LOW_WATER_5705;
17379                 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
17380                         DEFAULT_MB_MACRX_LOW_WATER_JUMBO_57765;
17381                 tp->bufmgr_config.mbuf_high_water_jumbo =
17382                         DEFAULT_MB_HIGH_WATER_JUMBO_57765;
17383         } else if (tg3_flag(tp, 5705_PLUS)) {
17384                 tp->bufmgr_config.mbuf_read_dma_low_water =
17385                         DEFAULT_MB_RDMA_LOW_WATER_5705;
17386                 tp->bufmgr_config.mbuf_mac_rx_low_water =
17387                         DEFAULT_MB_MACRX_LOW_WATER_5705;
17388                 tp->bufmgr_config.mbuf_high_water =
17389                         DEFAULT_MB_HIGH_WATER_5705;
17390                 if (tg3_asic_rev(tp) == ASIC_REV_5906) {
17391                         tp->bufmgr_config.mbuf_mac_rx_low_water =
17392                                 DEFAULT_MB_MACRX_LOW_WATER_5906;
17393                         tp->bufmgr_config.mbuf_high_water =
17394                                 DEFAULT_MB_HIGH_WATER_5906;
17395                 }
17396
17397                 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
17398                         DEFAULT_MB_RDMA_LOW_WATER_JUMBO_5780;
17399                 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
17400                         DEFAULT_MB_MACRX_LOW_WATER_JUMBO_5780;
17401                 tp->bufmgr_config.mbuf_high_water_jumbo =
17402                         DEFAULT_MB_HIGH_WATER_JUMBO_5780;
17403         } else {
17404                 tp->bufmgr_config.mbuf_read_dma_low_water =
17405                         DEFAULT_MB_RDMA_LOW_WATER;
17406                 tp->bufmgr_config.mbuf_mac_rx_low_water =
17407                         DEFAULT_MB_MACRX_LOW_WATER;
17408                 tp->bufmgr_config.mbuf_high_water =
17409                         DEFAULT_MB_HIGH_WATER;
17410
17411                 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
17412                         DEFAULT_MB_RDMA_LOW_WATER_JUMBO;
17413                 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
17414                         DEFAULT_MB_MACRX_LOW_WATER_JUMBO;
17415                 tp->bufmgr_config.mbuf_high_water_jumbo =
17416                         DEFAULT_MB_HIGH_WATER_JUMBO;
17417         }
17418
17419         tp->bufmgr_config.dma_low_water = DEFAULT_DMA_LOW_WATER;
17420         tp->bufmgr_config.dma_high_water = DEFAULT_DMA_HIGH_WATER;
17421 }
17422
17423 static char *tg3_phy_string(struct tg3 *tp)
17424 {
17425         switch (tp->phy_id & TG3_PHY_ID_MASK) {
17426         case TG3_PHY_ID_BCM5400:        return "5400";
17427         case TG3_PHY_ID_BCM5401:        return "5401";
17428         case TG3_PHY_ID_BCM5411:        return "5411";
17429         case TG3_PHY_ID_BCM5701:        return "5701";
17430         case TG3_PHY_ID_BCM5703:        return "5703";
17431         case TG3_PHY_ID_BCM5704:        return "5704";
17432         case TG3_PHY_ID_BCM5705:        return "5705";
17433         case TG3_PHY_ID_BCM5750:        return "5750";
17434         case TG3_PHY_ID_BCM5752:        return "5752";
17435         case TG3_PHY_ID_BCM5714:        return "5714";
17436         case TG3_PHY_ID_BCM5780:        return "5780";
17437         case TG3_PHY_ID_BCM5755:        return "5755";
17438         case TG3_PHY_ID_BCM5787:        return "5787";
17439         case TG3_PHY_ID_BCM5784:        return "5784";
17440         case TG3_PHY_ID_BCM5756:        return "5722/5756";
17441         case TG3_PHY_ID_BCM5906:        return "5906";
17442         case TG3_PHY_ID_BCM5761:        return "5761";
17443         case TG3_PHY_ID_BCM5718C:       return "5718C";
17444         case TG3_PHY_ID_BCM5718S:       return "5718S";
17445         case TG3_PHY_ID_BCM57765:       return "57765";
17446         case TG3_PHY_ID_BCM5719C:       return "5719C";
17447         case TG3_PHY_ID_BCM5720C:       return "5720C";
17448         case TG3_PHY_ID_BCM5762:        return "5762C";
17449         case TG3_PHY_ID_BCM8002:        return "8002/serdes";
17450         case 0:                 return "serdes";
17451         default:                return "unknown";
17452         }
17453 }
17454
17455 static char *tg3_bus_string(struct tg3 *tp, char *str)
17456 {
17457         if (tg3_flag(tp, PCI_EXPRESS)) {
17458                 strcpy(str, "PCI Express");
17459                 return str;
17460         } else if (tg3_flag(tp, PCIX_MODE)) {
17461                 u32 clock_ctrl = tr32(TG3PCI_CLOCK_CTRL) & 0x1f;
17462
17463                 strcpy(str, "PCIX:");
17464
17465                 if ((clock_ctrl == 7) ||
17466                     ((tr32(GRC_MISC_CFG) & GRC_MISC_CFG_BOARD_ID_MASK) ==
17467                      GRC_MISC_CFG_BOARD_ID_5704CIOBE))
17468                         strcat(str, "133MHz");
17469                 else if (clock_ctrl == 0)
17470                         strcat(str, "33MHz");
17471                 else if (clock_ctrl == 2)
17472                         strcat(str, "50MHz");
17473                 else if (clock_ctrl == 4)
17474                         strcat(str, "66MHz");
17475                 else if (clock_ctrl == 6)
17476                         strcat(str, "100MHz");
17477         } else {
17478                 strcpy(str, "PCI:");
17479                 if (tg3_flag(tp, PCI_HIGH_SPEED))
17480                         strcat(str, "66MHz");
17481                 else
17482                         strcat(str, "33MHz");
17483         }
17484         if (tg3_flag(tp, PCI_32BIT))
17485                 strcat(str, ":32-bit");
17486         else
17487                 strcat(str, ":64-bit");
17488         return str;
17489 }
17490
17491 static void tg3_init_coal(struct tg3 *tp)
17492 {
17493         struct ethtool_coalesce *ec = &tp->coal;
17494
17495         memset(ec, 0, sizeof(*ec));
17496         ec->cmd = ETHTOOL_GCOALESCE;
17497         ec->rx_coalesce_usecs = LOW_RXCOL_TICKS;
17498         ec->tx_coalesce_usecs = LOW_TXCOL_TICKS;
17499         ec->rx_max_coalesced_frames = LOW_RXMAX_FRAMES;
17500         ec->tx_max_coalesced_frames = LOW_TXMAX_FRAMES;
17501         ec->rx_coalesce_usecs_irq = DEFAULT_RXCOAL_TICK_INT;
17502         ec->tx_coalesce_usecs_irq = DEFAULT_TXCOAL_TICK_INT;
17503         ec->rx_max_coalesced_frames_irq = DEFAULT_RXCOAL_MAXF_INT;
17504         ec->tx_max_coalesced_frames_irq = DEFAULT_TXCOAL_MAXF_INT;
17505         ec->stats_block_coalesce_usecs = DEFAULT_STAT_COAL_TICKS;
17506
17507         if (tp->coalesce_mode & (HOSTCC_MODE_CLRTICK_RXBD |
17508                                  HOSTCC_MODE_CLRTICK_TXBD)) {
17509                 ec->rx_coalesce_usecs = LOW_RXCOL_TICKS_CLRTCKS;
17510                 ec->rx_coalesce_usecs_irq = DEFAULT_RXCOAL_TICK_INT_CLRTCKS;
17511                 ec->tx_coalesce_usecs = LOW_TXCOL_TICKS_CLRTCKS;
17512                 ec->tx_coalesce_usecs_irq = DEFAULT_TXCOAL_TICK_INT_CLRTCKS;
17513         }
17514
17515         if (tg3_flag(tp, 5705_PLUS)) {
17516                 ec->rx_coalesce_usecs_irq = 0;
17517                 ec->tx_coalesce_usecs_irq = 0;
17518                 ec->stats_block_coalesce_usecs = 0;
17519         }
17520 }
17521
17522 static int tg3_init_one(struct pci_dev *pdev,
17523                                   const struct pci_device_id *ent)
17524 {
17525         struct net_device *dev;
17526         struct tg3 *tp;
17527         int i, err;
17528         u32 sndmbx, rcvmbx, intmbx;
17529         char str[40];
17530         u64 dma_mask, persist_dma_mask;
17531         netdev_features_t features = 0;
17532
17533         printk_once(KERN_INFO "%s\n", version);
17534
17535         err = pci_enable_device(pdev);
17536         if (err) {
17537                 dev_err(&pdev->dev, "Cannot enable PCI device, aborting\n");
17538                 return err;
17539         }
17540
17541         err = pci_request_regions(pdev, DRV_MODULE_NAME);
17542         if (err) {
17543                 dev_err(&pdev->dev, "Cannot obtain PCI resources, aborting\n");
17544                 goto err_out_disable_pdev;
17545         }
17546
17547         pci_set_master(pdev);
17548
17549         dev = alloc_etherdev_mq(sizeof(*tp), TG3_IRQ_MAX_VECS);
17550         if (!dev) {
17551                 err = -ENOMEM;
17552                 goto err_out_free_res;
17553         }
17554
17555         SET_NETDEV_DEV(dev, &pdev->dev);
17556
17557         tp = netdev_priv(dev);
17558         tp->pdev = pdev;
17559         tp->dev = dev;
17560         tp->rx_mode = TG3_DEF_RX_MODE;
17561         tp->tx_mode = TG3_DEF_TX_MODE;
17562         tp->irq_sync = 1;
17563
17564         if (tg3_debug > 0)
17565                 tp->msg_enable = tg3_debug;
17566         else
17567                 tp->msg_enable = TG3_DEF_MSG_ENABLE;
17568
17569         if (pdev_is_ssb_gige_core(pdev)) {
17570                 tg3_flag_set(tp, IS_SSB_CORE);
17571                 if (ssb_gige_must_flush_posted_writes(pdev))
17572                         tg3_flag_set(tp, FLUSH_POSTED_WRITES);
17573                 if (ssb_gige_one_dma_at_once(pdev))
17574                         tg3_flag_set(tp, ONE_DMA_AT_ONCE);
17575                 if (ssb_gige_have_roboswitch(pdev)) {
17576                         tg3_flag_set(tp, USE_PHYLIB);
17577                         tg3_flag_set(tp, ROBOSWITCH);
17578                 }
17579                 if (ssb_gige_is_rgmii(pdev))
17580                         tg3_flag_set(tp, RGMII_MODE);
17581         }
17582
17583         /* The word/byte swap controls here control register access byte
17584          * swapping.  DMA data byte swapping is controlled in the GRC_MODE
17585          * setting below.
17586          */
17587         tp->misc_host_ctrl =
17588                 MISC_HOST_CTRL_MASK_PCI_INT |
17589                 MISC_HOST_CTRL_WORD_SWAP |
17590                 MISC_HOST_CTRL_INDIR_ACCESS |
17591                 MISC_HOST_CTRL_PCISTATE_RW;
17592
17593         /* The NONFRM (non-frame) byte/word swap controls take effect
17594          * on descriptor entries, anything which isn't packet data.
17595          *
17596          * The StrongARM chips on the board (one for tx, one for rx)
17597          * are running in big-endian mode.
17598          */
17599         tp->grc_mode = (GRC_MODE_WSWAP_DATA | GRC_MODE_BSWAP_DATA |
17600                         GRC_MODE_WSWAP_NONFRM_DATA);
17601 #ifdef __BIG_ENDIAN
17602         tp->grc_mode |= GRC_MODE_BSWAP_NONFRM_DATA;
17603 #endif
17604         spin_lock_init(&tp->lock);
17605         spin_lock_init(&tp->indirect_lock);
17606         INIT_WORK(&tp->reset_task, tg3_reset_task);
17607
17608         tp->regs = pci_ioremap_bar(pdev, BAR_0);
17609         if (!tp->regs) {
17610                 dev_err(&pdev->dev, "Cannot map device registers, aborting\n");
17611                 err = -ENOMEM;
17612                 goto err_out_free_dev;
17613         }
17614
17615         if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
17616             tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761E ||
17617             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S ||
17618             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761SE ||
17619             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717 ||
17620             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717_C ||
17621             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718 ||
17622             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5719 ||
17623             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5720 ||
17624             tp->pdev->device == TG3PCI_DEVICE_TIGON3_57767 ||
17625             tp->pdev->device == TG3PCI_DEVICE_TIGON3_57764 ||
17626             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5762 ||
17627             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5725 ||
17628             tp->pdev->device == TG3PCI_DEVICE_TIGON3_5727 ||
17629             tp->pdev->device == TG3PCI_DEVICE_TIGON3_57787) {
17630                 tg3_flag_set(tp, ENABLE_APE);
17631                 tp->aperegs = pci_ioremap_bar(pdev, BAR_2);
17632                 if (!tp->aperegs) {
17633                         dev_err(&pdev->dev,
17634                                 "Cannot map APE registers, aborting\n");
17635                         err = -ENOMEM;
17636                         goto err_out_iounmap;
17637                 }
17638         }
17639
17640         tp->rx_pending = TG3_DEF_RX_RING_PENDING;
17641         tp->rx_jumbo_pending = TG3_DEF_RX_JUMBO_RING_PENDING;
17642
17643         dev->ethtool_ops = &tg3_ethtool_ops;
17644         dev->watchdog_timeo = TG3_TX_TIMEOUT;
17645         dev->netdev_ops = &tg3_netdev_ops;
17646         dev->irq = pdev->irq;
17647
17648         err = tg3_get_invariants(tp, ent);
17649         if (err) {
17650                 dev_err(&pdev->dev,
17651                         "Problem fetching invariants of chip, aborting\n");
17652                 goto err_out_apeunmap;
17653         }
17654
17655         /* The EPB bridge inside 5714, 5715, and 5780 and any
17656          * device behind the EPB cannot support DMA addresses > 40-bit.
17657          * On 64-bit systems with IOMMU, use 40-bit dma_mask.
17658          * On 64-bit systems without IOMMU, use 64-bit dma_mask and
17659          * do DMA address check in tg3_start_xmit().
17660          */
17661         if (tg3_flag(tp, IS_5788))
17662                 persist_dma_mask = dma_mask = DMA_BIT_MASK(32);
17663         else if (tg3_flag(tp, 40BIT_DMA_BUG)) {
17664                 persist_dma_mask = dma_mask = DMA_BIT_MASK(40);
17665 #ifdef CONFIG_HIGHMEM
17666                 dma_mask = DMA_BIT_MASK(64);
17667 #endif
17668         } else
17669                 persist_dma_mask = dma_mask = DMA_BIT_MASK(64);
17670
17671         /* Configure DMA attributes. */
17672         if (dma_mask > DMA_BIT_MASK(32)) {
17673                 err = pci_set_dma_mask(pdev, dma_mask);
17674                 if (!err) {
17675                         features |= NETIF_F_HIGHDMA;
17676                         err = pci_set_consistent_dma_mask(pdev,
17677                                                           persist_dma_mask);
17678                         if (err < 0) {
17679                                 dev_err(&pdev->dev, "Unable to obtain 64 bit "
17680                                         "DMA for consistent allocations\n");
17681                                 goto err_out_apeunmap;
17682                         }
17683                 }
17684         }
17685         if (err || dma_mask == DMA_BIT_MASK(32)) {
17686                 err = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
17687                 if (err) {
17688                         dev_err(&pdev->dev,
17689                                 "No usable DMA configuration, aborting\n");
17690                         goto err_out_apeunmap;
17691                 }
17692         }
17693
17694         tg3_init_bufmgr_config(tp);
17695
17696         /* 5700 B0 chips do not support checksumming correctly due
17697          * to hardware bugs.
17698          */
17699         if (tg3_chip_rev_id(tp) != CHIPREV_ID_5700_B0) {
17700                 features |= NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_RXCSUM;
17701
17702                 if (tg3_flag(tp, 5755_PLUS))
17703                         features |= NETIF_F_IPV6_CSUM;
17704         }
17705
17706         /* TSO is on by default on chips that support hardware TSO.
17707          * Firmware TSO on older chips gives lower performance, so it
17708          * is off by default, but can be enabled using ethtool.
17709          */
17710         if ((tg3_flag(tp, HW_TSO_1) ||
17711              tg3_flag(tp, HW_TSO_2) ||
17712              tg3_flag(tp, HW_TSO_3)) &&
17713             (features & NETIF_F_IP_CSUM))
17714                 features |= NETIF_F_TSO;
17715         if (tg3_flag(tp, HW_TSO_2) || tg3_flag(tp, HW_TSO_3)) {
17716                 if (features & NETIF_F_IPV6_CSUM)
17717                         features |= NETIF_F_TSO6;
17718                 if (tg3_flag(tp, HW_TSO_3) ||
17719                     tg3_asic_rev(tp) == ASIC_REV_5761 ||
17720                     (tg3_asic_rev(tp) == ASIC_REV_5784 &&
17721                      tg3_chip_rev(tp) != CHIPREV_5784_AX) ||
17722                     tg3_asic_rev(tp) == ASIC_REV_5785 ||
17723                     tg3_asic_rev(tp) == ASIC_REV_57780)
17724                         features |= NETIF_F_TSO_ECN;
17725         }
17726
17727         dev->features |= features | NETIF_F_HW_VLAN_CTAG_TX |
17728                          NETIF_F_HW_VLAN_CTAG_RX;
17729         dev->vlan_features |= features;
17730
17731         /*
17732          * Add loopback capability only for a subset of devices that support
17733          * MAC-LOOPBACK. Eventually this need to be enhanced to allow INT-PHY
17734          * loopback for the remaining devices.
17735          */
17736         if (tg3_asic_rev(tp) != ASIC_REV_5780 &&
17737             !tg3_flag(tp, CPMU_PRESENT))
17738                 /* Add the loopback capability */
17739                 features |= NETIF_F_LOOPBACK;
17740
17741         dev->hw_features |= features;
17742         dev->priv_flags |= IFF_UNICAST_FLT;
17743
17744         if (tg3_chip_rev_id(tp) == CHIPREV_ID_5705_A1 &&
17745             !tg3_flag(tp, TSO_CAPABLE) &&
17746             !(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH)) {
17747                 tg3_flag_set(tp, MAX_RXPEND_64);
17748                 tp->rx_pending = 63;
17749         }
17750
17751         err = tg3_get_device_address(tp);
17752         if (err) {
17753                 dev_err(&pdev->dev,
17754                         "Could not obtain valid ethernet address, aborting\n");
17755                 goto err_out_apeunmap;
17756         }
17757
17758         /*
17759          * Reset chip in case UNDI or EFI driver did not shutdown
17760          * DMA self test will enable WDMAC and we'll see (spurious)
17761          * pending DMA on the PCI bus at that point.
17762          */
17763         if ((tr32(HOSTCC_MODE) & HOSTCC_MODE_ENABLE) ||
17764             (tr32(WDMAC_MODE) & WDMAC_MODE_ENABLE)) {
17765                 tw32(MEMARB_MODE, MEMARB_MODE_ENABLE);
17766                 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
17767         }
17768
17769         err = tg3_test_dma(tp);
17770         if (err) {
17771                 dev_err(&pdev->dev, "DMA engine test failed, aborting\n");
17772                 goto err_out_apeunmap;
17773         }
17774
17775         intmbx = MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW;
17776         rcvmbx = MAILBOX_RCVRET_CON_IDX_0 + TG3_64BIT_REG_LOW;
17777         sndmbx = MAILBOX_SNDHOST_PROD_IDX_0 + TG3_64BIT_REG_LOW;
17778         for (i = 0; i < tp->irq_max; i++) {
17779                 struct tg3_napi *tnapi = &tp->napi[i];
17780
17781                 tnapi->tp = tp;
17782                 tnapi->tx_pending = TG3_DEF_TX_RING_PENDING;
17783
17784                 tnapi->int_mbox = intmbx;
17785                 if (i <= 4)
17786                         intmbx += 0x8;
17787                 else
17788                         intmbx += 0x4;
17789
17790                 tnapi->consmbox = rcvmbx;
17791                 tnapi->prodmbox = sndmbx;
17792
17793                 if (i)
17794                         tnapi->coal_now = HOSTCC_MODE_COAL_VEC1_NOW << (i - 1);
17795                 else
17796                         tnapi->coal_now = HOSTCC_MODE_NOW;
17797
17798                 if (!tg3_flag(tp, SUPPORT_MSIX))
17799                         break;
17800
17801                 /*
17802                  * If we support MSIX, we'll be using RSS.  If we're using
17803                  * RSS, the first vector only handles link interrupts and the
17804                  * remaining vectors handle rx and tx interrupts.  Reuse the
17805                  * mailbox values for the next iteration.  The values we setup
17806                  * above are still useful for the single vectored mode.
17807                  */
17808                 if (!i)
17809                         continue;
17810
17811                 rcvmbx += 0x8;
17812
17813                 if (sndmbx & 0x4)
17814                         sndmbx -= 0x4;
17815                 else
17816                         sndmbx += 0xc;
17817         }
17818
17819         tg3_init_coal(tp);
17820
17821         pci_set_drvdata(pdev, dev);
17822
17823         if (tg3_asic_rev(tp) == ASIC_REV_5719 ||
17824             tg3_asic_rev(tp) == ASIC_REV_5720 ||
17825             tg3_asic_rev(tp) == ASIC_REV_5762)
17826                 tg3_flag_set(tp, PTP_CAPABLE);
17827
17828         tg3_timer_init(tp);
17829
17830         tg3_carrier_off(tp);
17831
17832         err = register_netdev(dev);
17833         if (err) {
17834                 dev_err(&pdev->dev, "Cannot register net device, aborting\n");
17835                 goto err_out_apeunmap;
17836         }
17837
17838         netdev_info(dev, "Tigon3 [partno(%s) rev %04x] (%s) MAC address %pM\n",
17839                     tp->board_part_number,
17840                     tg3_chip_rev_id(tp),
17841                     tg3_bus_string(tp, str),
17842                     dev->dev_addr);
17843
17844         if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
17845                 struct phy_device *phydev;
17846                 phydev = tp->mdio_bus->phy_map[tp->phy_addr];
17847                 netdev_info(dev,
17848                             "attached PHY driver [%s] (mii_bus:phy_addr=%s)\n",
17849                             phydev->drv->name, dev_name(&phydev->dev));
17850         } else {
17851                 char *ethtype;
17852
17853                 if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
17854                         ethtype = "10/100Base-TX";
17855                 else if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
17856                         ethtype = "1000Base-SX";
17857                 else
17858                         ethtype = "10/100/1000Base-T";
17859
17860                 netdev_info(dev, "attached PHY is %s (%s Ethernet) "
17861                             "(WireSpeed[%d], EEE[%d])\n",
17862                             tg3_phy_string(tp), ethtype,
17863                             (tp->phy_flags & TG3_PHYFLG_NO_ETH_WIRE_SPEED) == 0,
17864                             (tp->phy_flags & TG3_PHYFLG_EEE_CAP) != 0);
17865         }
17866
17867         netdev_info(dev, "RXcsums[%d] LinkChgREG[%d] MIirq[%d] ASF[%d] TSOcap[%d]\n",
17868                     (dev->features & NETIF_F_RXCSUM) != 0,
17869                     tg3_flag(tp, USE_LINKCHG_REG) != 0,
17870                     (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT) != 0,
17871                     tg3_flag(tp, ENABLE_ASF) != 0,
17872                     tg3_flag(tp, TSO_CAPABLE) != 0);
17873         netdev_info(dev, "dma_rwctrl[%08x] dma_mask[%d-bit]\n",
17874                     tp->dma_rwctrl,
17875                     pdev->dma_mask == DMA_BIT_MASK(32) ? 32 :
17876                     ((u64)pdev->dma_mask) == DMA_BIT_MASK(40) ? 40 : 64);
17877
17878         pci_save_state(pdev);
17879
17880         return 0;
17881
17882 err_out_apeunmap:
17883         if (tp->aperegs) {
17884                 iounmap(tp->aperegs);
17885                 tp->aperegs = NULL;
17886         }
17887
17888 err_out_iounmap:
17889         if (tp->regs) {
17890                 iounmap(tp->regs);
17891                 tp->regs = NULL;
17892         }
17893
17894 err_out_free_dev:
17895         free_netdev(dev);
17896
17897 err_out_free_res:
17898         pci_release_regions(pdev);
17899
17900 err_out_disable_pdev:
17901         if (pci_is_enabled(pdev))
17902                 pci_disable_device(pdev);
17903         return err;
17904 }
17905
17906 static void tg3_remove_one(struct pci_dev *pdev)
17907 {
17908         struct net_device *dev = pci_get_drvdata(pdev);
17909
17910         if (dev) {
17911                 struct tg3 *tp = netdev_priv(dev);
17912
17913                 release_firmware(tp->fw);
17914
17915                 tg3_reset_task_cancel(tp);
17916
17917                 if (tg3_flag(tp, USE_PHYLIB)) {
17918                         tg3_phy_fini(tp);
17919                         tg3_mdio_fini(tp);
17920                 }
17921
17922                 unregister_netdev(dev);
17923                 if (tp->aperegs) {
17924                         iounmap(tp->aperegs);
17925                         tp->aperegs = NULL;
17926                 }
17927                 if (tp->regs) {
17928                         iounmap(tp->regs);
17929                         tp->regs = NULL;
17930                 }
17931                 free_netdev(dev);
17932                 pci_release_regions(pdev);
17933                 pci_disable_device(pdev);
17934         }
17935 }
17936
17937 #ifdef CONFIG_PM_SLEEP
17938 static int tg3_suspend(struct device *device)
17939 {
17940         struct pci_dev *pdev = to_pci_dev(device);
17941         struct net_device *dev = pci_get_drvdata(pdev);
17942         struct tg3 *tp = netdev_priv(dev);
17943         int err = 0;
17944
17945         rtnl_lock();
17946
17947         if (!netif_running(dev))
17948                 goto unlock;
17949
17950         tg3_reset_task_cancel(tp);
17951         tg3_phy_stop(tp);
17952         tg3_netif_stop(tp);
17953
17954         tg3_timer_stop(tp);
17955
17956         tg3_full_lock(tp, 1);
17957         tg3_disable_ints(tp);
17958         tg3_full_unlock(tp);
17959
17960         netif_device_detach(dev);
17961
17962         tg3_full_lock(tp, 0);
17963         tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
17964         tg3_flag_clear(tp, INIT_COMPLETE);
17965         tg3_full_unlock(tp);
17966
17967         err = tg3_power_down_prepare(tp);
17968         if (err) {
17969                 int err2;
17970
17971                 tg3_full_lock(tp, 0);
17972
17973                 tg3_flag_set(tp, INIT_COMPLETE);
17974                 err2 = tg3_restart_hw(tp, true);
17975                 if (err2)
17976                         goto out;
17977
17978                 tg3_timer_start(tp);
17979
17980                 netif_device_attach(dev);
17981                 tg3_netif_start(tp);
17982
17983 out:
17984                 tg3_full_unlock(tp);
17985
17986                 if (!err2)
17987                         tg3_phy_start(tp);
17988         }
17989
17990 unlock:
17991         rtnl_unlock();
17992         return err;
17993 }
17994
17995 static int tg3_resume(struct device *device)
17996 {
17997         struct pci_dev *pdev = to_pci_dev(device);
17998         struct net_device *dev = pci_get_drvdata(pdev);
17999         struct tg3 *tp = netdev_priv(dev);
18000         int err = 0;
18001
18002         rtnl_lock();
18003
18004         if (!netif_running(dev))
18005                 goto unlock;
18006
18007         netif_device_attach(dev);
18008
18009         tg3_full_lock(tp, 0);
18010
18011         tg3_ape_driver_state_change(tp, RESET_KIND_INIT);
18012
18013         tg3_flag_set(tp, INIT_COMPLETE);
18014         err = tg3_restart_hw(tp,
18015                              !(tp->phy_flags & TG3_PHYFLG_KEEP_LINK_ON_PWRDN));
18016         if (err)
18017                 goto out;
18018
18019         tg3_timer_start(tp);
18020
18021         tg3_netif_start(tp);
18022
18023 out:
18024         tg3_full_unlock(tp);
18025
18026         if (!err)
18027                 tg3_phy_start(tp);
18028
18029 unlock:
18030         rtnl_unlock();
18031         return err;
18032 }
18033 #endif /* CONFIG_PM_SLEEP */
18034
18035 static SIMPLE_DEV_PM_OPS(tg3_pm_ops, tg3_suspend, tg3_resume);
18036
18037 static void tg3_shutdown(struct pci_dev *pdev)
18038 {
18039         struct net_device *dev = pci_get_drvdata(pdev);
18040         struct tg3 *tp = netdev_priv(dev);
18041
18042         rtnl_lock();
18043         netif_device_detach(dev);
18044
18045         if (netif_running(dev))
18046                 dev_close(dev);
18047
18048         if (system_state == SYSTEM_POWER_OFF)
18049                 tg3_power_down(tp);
18050
18051         rtnl_unlock();
18052 }
18053
18054 /**
18055  * tg3_io_error_detected - called when PCI error is detected
18056  * @pdev: Pointer to PCI device
18057  * @state: The current pci connection state
18058  *
18059  * This function is called after a PCI bus error affecting
18060  * this device has been detected.
18061  */
18062 static pci_ers_result_t tg3_io_error_detected(struct pci_dev *pdev,
18063                                               pci_channel_state_t state)
18064 {
18065         struct net_device *netdev = pci_get_drvdata(pdev);
18066         struct tg3 *tp = netdev_priv(netdev);
18067         pci_ers_result_t err = PCI_ERS_RESULT_NEED_RESET;
18068
18069         netdev_info(netdev, "PCI I/O error detected\n");
18070
18071         rtnl_lock();
18072
18073         /* We probably don't have netdev yet */
18074         if (!netdev || !netif_running(netdev))
18075                 goto done;
18076
18077         tg3_phy_stop(tp);
18078
18079         tg3_netif_stop(tp);
18080
18081         tg3_timer_stop(tp);
18082
18083         /* Want to make sure that the reset task doesn't run */
18084         tg3_reset_task_cancel(tp);
18085
18086         netif_device_detach(netdev);
18087
18088         /* Clean up software state, even if MMIO is blocked */
18089         tg3_full_lock(tp, 0);
18090         tg3_halt(tp, RESET_KIND_SHUTDOWN, 0);
18091         tg3_full_unlock(tp);
18092
18093 done:
18094         if (state == pci_channel_io_perm_failure) {
18095                 if (netdev) {
18096                         tg3_napi_enable(tp);
18097                         dev_close(netdev);
18098                 }
18099                 err = PCI_ERS_RESULT_DISCONNECT;
18100         } else {
18101                 pci_disable_device(pdev);
18102         }
18103
18104         rtnl_unlock();
18105
18106         return err;
18107 }
18108
18109 /**
18110  * tg3_io_slot_reset - called after the pci bus has been reset.
18111  * @pdev: Pointer to PCI device
18112  *
18113  * Restart the card from scratch, as if from a cold-boot.
18114  * At this point, the card has exprienced a hard reset,
18115  * followed by fixups by BIOS, and has its config space
18116  * set up identically to what it was at cold boot.
18117  */
18118 static pci_ers_result_t tg3_io_slot_reset(struct pci_dev *pdev)
18119 {
18120         struct net_device *netdev = pci_get_drvdata(pdev);
18121         struct tg3 *tp = netdev_priv(netdev);
18122         pci_ers_result_t rc = PCI_ERS_RESULT_DISCONNECT;
18123         int err;
18124
18125         rtnl_lock();
18126
18127         if (pci_enable_device(pdev)) {
18128                 dev_err(&pdev->dev,
18129                         "Cannot re-enable PCI device after reset.\n");
18130                 goto done;
18131         }
18132
18133         pci_set_master(pdev);
18134         pci_restore_state(pdev);
18135         pci_save_state(pdev);
18136
18137         if (!netdev || !netif_running(netdev)) {
18138                 rc = PCI_ERS_RESULT_RECOVERED;
18139                 goto done;
18140         }
18141
18142         err = tg3_power_up(tp);
18143         if (err)
18144                 goto done;
18145
18146         rc = PCI_ERS_RESULT_RECOVERED;
18147
18148 done:
18149         if (rc != PCI_ERS_RESULT_RECOVERED && netdev && netif_running(netdev)) {
18150                 tg3_napi_enable(tp);
18151                 dev_close(netdev);
18152         }
18153         rtnl_unlock();
18154
18155         return rc;
18156 }
18157
18158 /**
18159  * tg3_io_resume - called when traffic can start flowing again.
18160  * @pdev: Pointer to PCI device
18161  *
18162  * This callback is called when the error recovery driver tells
18163  * us that its OK to resume normal operation.
18164  */
18165 static void tg3_io_resume(struct pci_dev *pdev)
18166 {
18167         struct net_device *netdev = pci_get_drvdata(pdev);
18168         struct tg3 *tp = netdev_priv(netdev);
18169         int err;
18170
18171         rtnl_lock();
18172
18173         if (!netif_running(netdev))
18174                 goto done;
18175
18176         tg3_full_lock(tp, 0);
18177         tg3_ape_driver_state_change(tp, RESET_KIND_INIT);
18178         tg3_flag_set(tp, INIT_COMPLETE);
18179         err = tg3_restart_hw(tp, true);
18180         if (err) {
18181                 tg3_full_unlock(tp);
18182                 netdev_err(netdev, "Cannot restart hardware after reset.\n");
18183                 goto done;
18184         }
18185
18186         netif_device_attach(netdev);
18187
18188         tg3_timer_start(tp);
18189
18190         tg3_netif_start(tp);
18191
18192         tg3_full_unlock(tp);
18193
18194         tg3_phy_start(tp);
18195
18196 done:
18197         rtnl_unlock();
18198 }
18199
18200 static const struct pci_error_handlers tg3_err_handler = {
18201         .error_detected = tg3_io_error_detected,
18202         .slot_reset     = tg3_io_slot_reset,
18203         .resume         = tg3_io_resume
18204 };
18205
18206 static struct pci_driver tg3_driver = {
18207         .name           = DRV_MODULE_NAME,
18208         .id_table       = tg3_pci_tbl,
18209         .probe          = tg3_init_one,
18210         .remove         = tg3_remove_one,
18211         .err_handler    = &tg3_err_handler,
18212         .driver.pm      = &tg3_pm_ops,
18213         .shutdown       = tg3_shutdown,
18214 };
18215
18216 module_pci_driver(tg3_driver);