Merge git://git.kernel.org/pub/scm/linux/kernel/git/davem/net
[cascardo/linux.git] / drivers / nfc / pn544 / pn544.c
1 /*
2  * HCI based Driver for NXP PN544 NFC Chip
3  *
4  * Copyright (C) 2012  Intel Corporation. All rights reserved.
5  *
6  * This program is free software; you can redistribute it and/or modify it
7  * under the terms and conditions of the GNU General Public License,
8  * version 2, as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13  * GNU General Public License for more details.
14  *
15  * You should have received a copy of the GNU General Public License
16  * along with this program; if not, write to the
17  * Free Software Foundation, Inc.,
18  * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19  */
20
21 #include <linux/delay.h>
22 #include <linux/slab.h>
23 #include <linux/module.h>
24
25 #include <linux/nfc.h>
26 #include <net/nfc/hci.h>
27 #include <net/nfc/llc.h>
28
29 #include "pn544.h"
30
31 /* Timing restrictions (ms) */
32 #define PN544_HCI_RESETVEN_TIME         30
33
34 #define HCI_MODE 0
35 #define FW_MODE 1
36
37 enum pn544_state {
38         PN544_ST_COLD,
39         PN544_ST_FW_READY,
40         PN544_ST_READY,
41 };
42
43 #define FULL_VERSION_LEN 11
44
45 /* Proprietary commands */
46 #define PN544_WRITE             0x3f
47
48 /* Proprietary gates, events, commands and registers */
49
50 /* NFC_HCI_RF_READER_A_GATE additional registers and commands */
51 #define PN544_RF_READER_A_AUTO_ACTIVATION                       0x10
52 #define PN544_RF_READER_A_CMD_CONTINUE_ACTIVATION               0x12
53 #define PN544_MIFARE_CMD                                        0x21
54
55 /* Commands that apply to all RF readers */
56 #define PN544_RF_READER_CMD_PRESENCE_CHECK      0x30
57 #define PN544_RF_READER_CMD_ACTIVATE_NEXT       0x32
58
59 /* NFC_HCI_ID_MGMT_GATE additional registers */
60 #define PN544_ID_MGMT_FULL_VERSION_SW           0x10
61
62 #define PN544_RF_READER_ISO15693_GATE           0x12
63
64 #define PN544_RF_READER_F_GATE                  0x14
65 #define PN544_FELICA_ID                         0x04
66 #define PN544_FELICA_RAW                        0x20
67
68 #define PN544_RF_READER_JEWEL_GATE              0x15
69 #define PN544_JEWEL_RAW_CMD                     0x23
70
71 #define PN544_RF_READER_NFCIP1_INITIATOR_GATE   0x30
72 #define PN544_RF_READER_NFCIP1_TARGET_GATE      0x31
73
74 #define PN544_SYS_MGMT_GATE                     0x90
75 #define PN544_SYS_MGMT_INFO_NOTIFICATION        0x02
76
77 #define PN544_POLLING_LOOP_MGMT_GATE            0x94
78 #define PN544_DEP_MODE                          0x01
79 #define PN544_DEP_ATR_REQ                       0x02
80 #define PN544_DEP_ATR_RES                       0x03
81 #define PN544_DEP_MERGE                         0x0D
82 #define PN544_PL_RDPHASES                       0x06
83 #define PN544_PL_EMULATION                      0x07
84 #define PN544_PL_NFCT_DEACTIVATED               0x09
85
86 #define PN544_SWP_MGMT_GATE                     0xA0
87
88 #define PN544_NFC_WI_MGMT_GATE                  0xA1
89
90 #define PN544_HCI_EVT_SND_DATA                  0x01
91 #define PN544_HCI_EVT_ACTIVATED                 0x02
92 #define PN544_HCI_EVT_DEACTIVATED               0x03
93 #define PN544_HCI_EVT_RCV_DATA                  0x04
94 #define PN544_HCI_EVT_CONTINUE_MI               0x05
95
96 #define PN544_HCI_CMD_ATTREQUEST                0x12
97 #define PN544_HCI_CMD_CONTINUE_ACTIVATION       0x13
98
99 static struct nfc_hci_gate pn544_gates[] = {
100         {NFC_HCI_ADMIN_GATE, NFC_HCI_INVALID_PIPE},
101         {NFC_HCI_LOOPBACK_GATE, NFC_HCI_INVALID_PIPE},
102         {NFC_HCI_ID_MGMT_GATE, NFC_HCI_INVALID_PIPE},
103         {NFC_HCI_LINK_MGMT_GATE, NFC_HCI_INVALID_PIPE},
104         {NFC_HCI_RF_READER_B_GATE, NFC_HCI_INVALID_PIPE},
105         {NFC_HCI_RF_READER_A_GATE, NFC_HCI_INVALID_PIPE},
106         {PN544_SYS_MGMT_GATE, NFC_HCI_INVALID_PIPE},
107         {PN544_SWP_MGMT_GATE, NFC_HCI_INVALID_PIPE},
108         {PN544_POLLING_LOOP_MGMT_GATE, NFC_HCI_INVALID_PIPE},
109         {PN544_NFC_WI_MGMT_GATE, NFC_HCI_INVALID_PIPE},
110         {PN544_RF_READER_F_GATE, NFC_HCI_INVALID_PIPE},
111         {PN544_RF_READER_JEWEL_GATE, NFC_HCI_INVALID_PIPE},
112         {PN544_RF_READER_ISO15693_GATE, NFC_HCI_INVALID_PIPE},
113         {PN544_RF_READER_NFCIP1_INITIATOR_GATE, NFC_HCI_INVALID_PIPE},
114         {PN544_RF_READER_NFCIP1_TARGET_GATE, NFC_HCI_INVALID_PIPE}
115 };
116
117 /* Largest headroom needed for outgoing custom commands */
118 #define PN544_CMDS_HEADROOM     2
119
120 struct pn544_hci_info {
121         struct nfc_phy_ops *phy_ops;
122         void *phy_id;
123
124         struct nfc_hci_dev *hdev;
125
126         enum pn544_state state;
127
128         struct mutex info_lock;
129
130         int async_cb_type;
131         data_exchange_cb_t async_cb;
132         void *async_cb_context;
133 };
134
135 static int pn544_hci_open(struct nfc_hci_dev *hdev)
136 {
137         struct pn544_hci_info *info = nfc_hci_get_clientdata(hdev);
138         int r = 0;
139
140         mutex_lock(&info->info_lock);
141
142         if (info->state != PN544_ST_COLD) {
143                 r = -EBUSY;
144                 goto out;
145         }
146
147         r = info->phy_ops->enable(info->phy_id);
148
149         if (r == 0)
150                 info->state = PN544_ST_READY;
151
152 out:
153         mutex_unlock(&info->info_lock);
154         return r;
155 }
156
157 static void pn544_hci_close(struct nfc_hci_dev *hdev)
158 {
159         struct pn544_hci_info *info = nfc_hci_get_clientdata(hdev);
160
161         mutex_lock(&info->info_lock);
162
163         if (info->state == PN544_ST_COLD)
164                 goto out;
165
166         info->phy_ops->disable(info->phy_id);
167
168         info->state = PN544_ST_COLD;
169
170 out:
171         mutex_unlock(&info->info_lock);
172 }
173
174 static int pn544_hci_ready(struct nfc_hci_dev *hdev)
175 {
176         struct sk_buff *skb;
177         static struct hw_config {
178                 u8 adr[2];
179                 u8 value;
180         } hw_config[] = {
181                 {{0x9f, 0x9a}, 0x00},
182
183                 {{0x98, 0x10}, 0xbc},
184
185                 {{0x9e, 0x71}, 0x00},
186
187                 {{0x98, 0x09}, 0x00},
188
189                 {{0x9e, 0xb4}, 0x00},
190
191                 {{0x9e, 0xd9}, 0xff},
192                 {{0x9e, 0xda}, 0xff},
193                 {{0x9e, 0xdb}, 0x23},
194                 {{0x9e, 0xdc}, 0x21},
195                 {{0x9e, 0xdd}, 0x22},
196                 {{0x9e, 0xde}, 0x24},
197
198                 {{0x9c, 0x01}, 0x08},
199
200                 {{0x9e, 0xaa}, 0x01},
201
202                 {{0x9b, 0xd1}, 0x0d},
203                 {{0x9b, 0xd2}, 0x24},
204                 {{0x9b, 0xd3}, 0x0a},
205                 {{0x9b, 0xd4}, 0x22},
206                 {{0x9b, 0xd5}, 0x08},
207                 {{0x9b, 0xd6}, 0x1e},
208                 {{0x9b, 0xdd}, 0x1c},
209
210                 {{0x9b, 0x84}, 0x13},
211                 {{0x99, 0x81}, 0x7f},
212                 {{0x99, 0x31}, 0x70},
213
214                 {{0x98, 0x00}, 0x3f},
215
216                 {{0x9f, 0x09}, 0x00},
217
218                 {{0x9f, 0x0a}, 0x05},
219
220                 {{0x9e, 0xd1}, 0xa1},
221                 {{0x99, 0x23}, 0x00},
222
223                 {{0x9e, 0x74}, 0x80},
224
225                 {{0x9f, 0x28}, 0x10},
226
227                 {{0x9f, 0x35}, 0x14},
228
229                 {{0x9f, 0x36}, 0x60},
230
231                 {{0x9c, 0x31}, 0x00},
232
233                 {{0x9c, 0x32}, 0xc8},
234
235                 {{0x9c, 0x19}, 0x40},
236
237                 {{0x9c, 0x1a}, 0x40},
238
239                 {{0x9c, 0x0c}, 0x00},
240
241                 {{0x9c, 0x0d}, 0x00},
242
243                 {{0x9c, 0x12}, 0x00},
244
245                 {{0x9c, 0x13}, 0x00},
246
247                 {{0x98, 0xa2}, 0x0e},
248
249                 {{0x98, 0x93}, 0x40},
250
251                 {{0x98, 0x7d}, 0x02},
252                 {{0x98, 0x7e}, 0x00},
253                 {{0x9f, 0xc8}, 0x01},
254         };
255         struct hw_config *p = hw_config;
256         int count = ARRAY_SIZE(hw_config);
257         struct sk_buff *res_skb;
258         u8 param[4];
259         int r;
260
261         param[0] = 0;
262         while (count--) {
263                 param[1] = p->adr[0];
264                 param[2] = p->adr[1];
265                 param[3] = p->value;
266
267                 r = nfc_hci_send_cmd(hdev, PN544_SYS_MGMT_GATE, PN544_WRITE,
268                                      param, 4, &res_skb);
269                 if (r < 0)
270                         return r;
271
272                 if (res_skb->len != 1) {
273                         kfree_skb(res_skb);
274                         return -EPROTO;
275                 }
276
277                 if (res_skb->data[0] != p->value) {
278                         kfree_skb(res_skb);
279                         return -EIO;
280                 }
281
282                 kfree_skb(res_skb);
283
284                 p++;
285         }
286
287         param[0] = NFC_HCI_UICC_HOST_ID;
288         r = nfc_hci_set_param(hdev, NFC_HCI_ADMIN_GATE,
289                               NFC_HCI_ADMIN_WHITELIST, param, 1);
290         if (r < 0)
291                 return r;
292
293         param[0] = 0x3d;
294         r = nfc_hci_set_param(hdev, PN544_SYS_MGMT_GATE,
295                               PN544_SYS_MGMT_INFO_NOTIFICATION, param, 1);
296         if (r < 0)
297                 return r;
298
299         param[0] = 0x0;
300         r = nfc_hci_set_param(hdev, NFC_HCI_RF_READER_A_GATE,
301                               PN544_RF_READER_A_AUTO_ACTIVATION, param, 1);
302         if (r < 0)
303                 return r;
304
305         r = nfc_hci_send_event(hdev, NFC_HCI_RF_READER_A_GATE,
306                                NFC_HCI_EVT_END_OPERATION, NULL, 0);
307         if (r < 0)
308                 return r;
309
310         param[0] = 0x1;
311         r = nfc_hci_set_param(hdev, PN544_POLLING_LOOP_MGMT_GATE,
312                               PN544_PL_NFCT_DEACTIVATED, param, 1);
313         if (r < 0)
314                 return r;
315
316         param[0] = 0x0;
317         r = nfc_hci_set_param(hdev, PN544_POLLING_LOOP_MGMT_GATE,
318                               PN544_PL_RDPHASES, param, 1);
319         if (r < 0)
320                 return r;
321
322         r = nfc_hci_get_param(hdev, NFC_HCI_ID_MGMT_GATE,
323                               PN544_ID_MGMT_FULL_VERSION_SW, &skb);
324         if (r < 0)
325                 return r;
326
327         if (skb->len != FULL_VERSION_LEN) {
328                 kfree_skb(skb);
329                 return -EINVAL;
330         }
331
332         print_hex_dump(KERN_DEBUG, "FULL VERSION SOFTWARE INFO: ",
333                        DUMP_PREFIX_NONE, 16, 1,
334                        skb->data, FULL_VERSION_LEN, false);
335
336         kfree_skb(skb);
337
338         return 0;
339 }
340
341 static int pn544_hci_xmit(struct nfc_hci_dev *hdev, struct sk_buff *skb)
342 {
343         struct pn544_hci_info *info = nfc_hci_get_clientdata(hdev);
344
345         return info->phy_ops->write(info->phy_id, skb);
346 }
347
348 static int pn544_hci_start_poll(struct nfc_hci_dev *hdev,
349                                 u32 im_protocols, u32 tm_protocols)
350 {
351         u8 phases = 0;
352         int r;
353         u8 duration[2];
354         u8 activated;
355         u8 i_mode = 0x3f; /* Enable all supported modes */
356         u8 t_mode = 0x0f;
357         u8 t_merge = 0x01; /* Enable merge by default */
358
359         pr_info(DRIVER_DESC ": %s protocols 0x%x 0x%x\n",
360                 __func__, im_protocols, tm_protocols);
361
362         r = nfc_hci_send_event(hdev, NFC_HCI_RF_READER_A_GATE,
363                                NFC_HCI_EVT_END_OPERATION, NULL, 0);
364         if (r < 0)
365                 return r;
366
367         duration[0] = 0x18;
368         duration[1] = 0x6a;
369         r = nfc_hci_set_param(hdev, PN544_POLLING_LOOP_MGMT_GATE,
370                               PN544_PL_EMULATION, duration, 2);
371         if (r < 0)
372                 return r;
373
374         activated = 0;
375         r = nfc_hci_set_param(hdev, PN544_POLLING_LOOP_MGMT_GATE,
376                               PN544_PL_NFCT_DEACTIVATED, &activated, 1);
377         if (r < 0)
378                 return r;
379
380         if (im_protocols & (NFC_PROTO_ISO14443_MASK | NFC_PROTO_MIFARE_MASK |
381                          NFC_PROTO_JEWEL_MASK))
382                 phases |= 1;            /* Type A */
383         if (im_protocols & NFC_PROTO_FELICA_MASK) {
384                 phases |= (1 << 2);     /* Type F 212 */
385                 phases |= (1 << 3);     /* Type F 424 */
386         }
387
388         phases |= (1 << 5);             /* NFC active */
389
390         r = nfc_hci_set_param(hdev, PN544_POLLING_LOOP_MGMT_GATE,
391                               PN544_PL_RDPHASES, &phases, 1);
392         if (r < 0)
393                 return r;
394
395         if ((im_protocols | tm_protocols) & NFC_PROTO_NFC_DEP_MASK) {
396                 hdev->gb = nfc_get_local_general_bytes(hdev->ndev,
397                                                         &hdev->gb_len);
398                 pr_debug("generate local bytes %p", hdev->gb);
399                 if (hdev->gb == NULL || hdev->gb_len == 0) {
400                         im_protocols &= ~NFC_PROTO_NFC_DEP_MASK;
401                         tm_protocols &= ~NFC_PROTO_NFC_DEP_MASK;
402                 }
403         }
404
405         if (im_protocols & NFC_PROTO_NFC_DEP_MASK) {
406                 r = nfc_hci_send_event(hdev,
407                                 PN544_RF_READER_NFCIP1_INITIATOR_GATE,
408                                 NFC_HCI_EVT_END_OPERATION, NULL, 0);
409                 if (r < 0)
410                         return r;
411
412                 r = nfc_hci_set_param(hdev,
413                                 PN544_RF_READER_NFCIP1_INITIATOR_GATE,
414                                 PN544_DEP_MODE, &i_mode, 1);
415                 if (r < 0)
416                         return r;
417
418                 r = nfc_hci_set_param(hdev,
419                                 PN544_RF_READER_NFCIP1_INITIATOR_GATE,
420                                 PN544_DEP_ATR_REQ, hdev->gb, hdev->gb_len);
421                 if (r < 0)
422                         return r;
423
424                 r = nfc_hci_send_event(hdev,
425                                 PN544_RF_READER_NFCIP1_INITIATOR_GATE,
426                                 NFC_HCI_EVT_READER_REQUESTED, NULL, 0);
427                 if (r < 0)
428                         nfc_hci_send_event(hdev,
429                                         PN544_RF_READER_NFCIP1_INITIATOR_GATE,
430                                         NFC_HCI_EVT_END_OPERATION, NULL, 0);
431         }
432
433         if (tm_protocols & NFC_PROTO_NFC_DEP_MASK) {
434                 r = nfc_hci_set_param(hdev, PN544_RF_READER_NFCIP1_TARGET_GATE,
435                                 PN544_DEP_MODE, &t_mode, 1);
436                 if (r < 0)
437                         return r;
438
439                 r = nfc_hci_set_param(hdev, PN544_RF_READER_NFCIP1_TARGET_GATE,
440                                 PN544_DEP_ATR_RES, hdev->gb, hdev->gb_len);
441                 if (r < 0)
442                         return r;
443
444                 r = nfc_hci_set_param(hdev, PN544_RF_READER_NFCIP1_TARGET_GATE,
445                                 PN544_DEP_MERGE, &t_merge, 1);
446                 if (r < 0)
447                         return r;
448         }
449
450         r = nfc_hci_send_event(hdev, NFC_HCI_RF_READER_A_GATE,
451                                NFC_HCI_EVT_READER_REQUESTED, NULL, 0);
452         if (r < 0)
453                 nfc_hci_send_event(hdev, NFC_HCI_RF_READER_A_GATE,
454                                    NFC_HCI_EVT_END_OPERATION, NULL, 0);
455
456         return r;
457 }
458
459 static int pn544_hci_dep_link_up(struct nfc_hci_dev *hdev,
460                                 struct nfc_target *target, u8 comm_mode,
461                                 u8 *gb, size_t gb_len)
462 {
463         struct sk_buff *rgb_skb = NULL;
464         int r;
465
466         r = nfc_hci_get_param(hdev, target->hci_reader_gate,
467                                 PN544_DEP_ATR_RES, &rgb_skb);
468         if (r < 0)
469                 return r;
470
471         if (rgb_skb->len == 0 || rgb_skb->len > NFC_GB_MAXSIZE) {
472                 r = -EPROTO;
473                 goto exit;
474         }
475         print_hex_dump(KERN_DEBUG, "remote gb: ", DUMP_PREFIX_OFFSET,
476                         16, 1, rgb_skb->data, rgb_skb->len, true);
477
478         r = nfc_set_remote_general_bytes(hdev->ndev, rgb_skb->data,
479                                                 rgb_skb->len);
480
481         if (r == 0)
482                 r = nfc_dep_link_is_up(hdev->ndev, target->idx, comm_mode,
483                                         NFC_RF_INITIATOR);
484 exit:
485         kfree_skb(rgb_skb);
486         return r;
487 }
488
489 static int pn544_hci_dep_link_down(struct nfc_hci_dev *hdev)
490 {
491
492         return nfc_hci_send_event(hdev, PN544_RF_READER_NFCIP1_INITIATOR_GATE,
493                                         NFC_HCI_EVT_END_OPERATION, NULL, 0);
494 }
495
496 static int pn544_hci_target_from_gate(struct nfc_hci_dev *hdev, u8 gate,
497                                       struct nfc_target *target)
498 {
499         switch (gate) {
500         case PN544_RF_READER_F_GATE:
501                 target->supported_protocols = NFC_PROTO_FELICA_MASK;
502                 break;
503         case PN544_RF_READER_JEWEL_GATE:
504                 target->supported_protocols = NFC_PROTO_JEWEL_MASK;
505                 target->sens_res = 0x0c00;
506                 break;
507         case PN544_RF_READER_NFCIP1_INITIATOR_GATE:
508                 target->supported_protocols = NFC_PROTO_NFC_DEP_MASK;
509                 break;
510         default:
511                 return -EPROTO;
512         }
513
514         return 0;
515 }
516
517 static int pn544_hci_complete_target_discovered(struct nfc_hci_dev *hdev,
518                                                 u8 gate,
519                                                 struct nfc_target *target)
520 {
521         struct sk_buff *uid_skb;
522         int r = 0;
523
524         if (gate == PN544_RF_READER_NFCIP1_INITIATOR_GATE)
525                 return r;
526
527         if (target->supported_protocols & NFC_PROTO_NFC_DEP_MASK) {
528                 r = nfc_hci_send_cmd(hdev,
529                         PN544_RF_READER_NFCIP1_INITIATOR_GATE,
530                         PN544_HCI_CMD_CONTINUE_ACTIVATION, NULL, 0, NULL);
531                 if (r < 0)
532                         return r;
533
534                 target->hci_reader_gate = PN544_RF_READER_NFCIP1_INITIATOR_GATE;
535         } else if (target->supported_protocols & NFC_PROTO_MIFARE_MASK) {
536                 if (target->nfcid1_len != 4 && target->nfcid1_len != 7 &&
537                     target->nfcid1_len != 10)
538                         return -EPROTO;
539
540                 r = nfc_hci_send_cmd(hdev, NFC_HCI_RF_READER_A_GATE,
541                                      PN544_RF_READER_CMD_ACTIVATE_NEXT,
542                                      target->nfcid1, target->nfcid1_len, NULL);
543         } else if (target->supported_protocols & NFC_PROTO_FELICA_MASK) {
544                 r = nfc_hci_get_param(hdev, PN544_RF_READER_F_GATE,
545                                       PN544_FELICA_ID, &uid_skb);
546                 if (r < 0)
547                         return r;
548
549                 if (uid_skb->len != 8) {
550                         kfree_skb(uid_skb);
551                         return -EPROTO;
552                 }
553
554                 r = nfc_hci_send_cmd(hdev, PN544_RF_READER_F_GATE,
555                                      PN544_RF_READER_CMD_ACTIVATE_NEXT,
556                                      uid_skb->data, uid_skb->len, NULL);
557                 kfree_skb(uid_skb);
558
559                 r = nfc_hci_send_cmd(hdev,
560                                         PN544_RF_READER_NFCIP1_INITIATOR_GATE,
561                                         PN544_HCI_CMD_CONTINUE_ACTIVATION,
562                                         NULL, 0, NULL);
563                 if (r < 0)
564                         return r;
565
566                 target->hci_reader_gate = PN544_RF_READER_NFCIP1_INITIATOR_GATE;
567                 target->supported_protocols = NFC_PROTO_NFC_DEP_MASK;
568         } else if (target->supported_protocols & NFC_PROTO_ISO14443_MASK) {
569                 /*
570                  * TODO: maybe other ISO 14443 require some kind of continue
571                  * activation, but for now we've seen only this one below.
572                  */
573                 if (target->sens_res == 0x4403) /* Type 4 Mifare DESFire */
574                         r = nfc_hci_send_cmd(hdev, NFC_HCI_RF_READER_A_GATE,
575                               PN544_RF_READER_A_CMD_CONTINUE_ACTIVATION,
576                               NULL, 0, NULL);
577         }
578
579         return r;
580 }
581
582 #define PN544_CB_TYPE_READER_F 1
583
584 static void pn544_hci_data_exchange_cb(void *context, struct sk_buff *skb,
585                                        int err)
586 {
587         struct pn544_hci_info *info = context;
588
589         switch (info->async_cb_type) {
590         case PN544_CB_TYPE_READER_F:
591                 if (err == 0)
592                         skb_pull(skb, 1);
593                 info->async_cb(info->async_cb_context, skb, err);
594                 break;
595         default:
596                 if (err == 0)
597                         kfree_skb(skb);
598                 break;
599         }
600 }
601
602 #define MIFARE_CMD_AUTH_KEY_A   0x60
603 #define MIFARE_CMD_AUTH_KEY_B   0x61
604 #define MIFARE_CMD_HEADER       2
605 #define MIFARE_UID_LEN          4
606 #define MIFARE_KEY_LEN          6
607 #define MIFARE_CMD_LEN          12
608 /*
609  * Returns:
610  * <= 0: driver handled the data exchange
611  *    1: driver doesn't especially handle, please do standard processing
612  */
613 static int pn544_hci_im_transceive(struct nfc_hci_dev *hdev,
614                                    struct nfc_target *target,
615                                    struct sk_buff *skb, data_exchange_cb_t cb,
616                                    void *cb_context)
617 {
618         struct pn544_hci_info *info = nfc_hci_get_clientdata(hdev);
619
620         pr_info(DRIVER_DESC ": %s for gate=%d\n", __func__,
621                 target->hci_reader_gate);
622
623         switch (target->hci_reader_gate) {
624         case NFC_HCI_RF_READER_A_GATE:
625                 if (target->supported_protocols & NFC_PROTO_MIFARE_MASK) {
626                         /*
627                          * It seems that pn544 is inverting key and UID for
628                          * MIFARE authentication commands.
629                          */
630                         if (skb->len == MIFARE_CMD_LEN &&
631                             (skb->data[0] == MIFARE_CMD_AUTH_KEY_A ||
632                              skb->data[0] == MIFARE_CMD_AUTH_KEY_B)) {
633                                 u8 uid[MIFARE_UID_LEN];
634                                 u8 *data = skb->data + MIFARE_CMD_HEADER;
635
636                                 memcpy(uid, data + MIFARE_KEY_LEN,
637                                        MIFARE_UID_LEN);
638                                 memmove(data + MIFARE_UID_LEN, data,
639                                         MIFARE_KEY_LEN);
640                                 memcpy(data, uid, MIFARE_UID_LEN);
641                         }
642
643                         return nfc_hci_send_cmd_async(hdev,
644                                                       target->hci_reader_gate,
645                                                       PN544_MIFARE_CMD,
646                                                       skb->data, skb->len,
647                                                       cb, cb_context);
648                 } else
649                         return 1;
650         case PN544_RF_READER_F_GATE:
651                 *skb_push(skb, 1) = 0;
652                 *skb_push(skb, 1) = 0;
653
654                 info->async_cb_type = PN544_CB_TYPE_READER_F;
655                 info->async_cb = cb;
656                 info->async_cb_context = cb_context;
657
658                 return nfc_hci_send_cmd_async(hdev, target->hci_reader_gate,
659                                               PN544_FELICA_RAW, skb->data,
660                                               skb->len,
661                                               pn544_hci_data_exchange_cb, info);
662         case PN544_RF_READER_JEWEL_GATE:
663                 return nfc_hci_send_cmd_async(hdev, target->hci_reader_gate,
664                                               PN544_JEWEL_RAW_CMD, skb->data,
665                                               skb->len, cb, cb_context);
666         case PN544_RF_READER_NFCIP1_INITIATOR_GATE:
667                 *skb_push(skb, 1) = 0;
668
669                 return nfc_hci_send_event(hdev, target->hci_reader_gate,
670                                         PN544_HCI_EVT_SND_DATA, skb->data,
671                                         skb->len);
672         default:
673                 return 1;
674         }
675 }
676
677 static int pn544_hci_tm_send(struct nfc_hci_dev *hdev, struct sk_buff *skb)
678 {
679         int r;
680
681         /* Set default false for multiple information chaining */
682         *skb_push(skb, 1) = 0;
683
684         r = nfc_hci_send_event(hdev, PN544_RF_READER_NFCIP1_TARGET_GATE,
685                                PN544_HCI_EVT_SND_DATA, skb->data, skb->len);
686
687         kfree_skb(skb);
688
689         return r;
690 }
691
692 static int pn544_hci_check_presence(struct nfc_hci_dev *hdev,
693                                    struct nfc_target *target)
694 {
695         pr_debug("supported protocol %d", target->supported_protocols);
696         if (target->supported_protocols & (NFC_PROTO_ISO14443_MASK |
697                                         NFC_PROTO_ISO14443_B_MASK)) {
698                 return nfc_hci_send_cmd(hdev, target->hci_reader_gate,
699                                         PN544_RF_READER_CMD_PRESENCE_CHECK,
700                                         NULL, 0, NULL);
701         } else if (target->supported_protocols & NFC_PROTO_MIFARE_MASK) {
702                 if (target->nfcid1_len != 4 && target->nfcid1_len != 7 &&
703                     target->nfcid1_len != 10)
704                         return -EOPNOTSUPP;
705
706                  return nfc_hci_send_cmd(hdev, NFC_HCI_RF_READER_A_GATE,
707                                      PN544_RF_READER_CMD_ACTIVATE_NEXT,
708                                      target->nfcid1, target->nfcid1_len, NULL);
709         } else if (target->supported_protocols & NFC_PROTO_JEWEL_MASK) {
710                 return nfc_hci_send_cmd(hdev, target->hci_reader_gate,
711                                         PN544_JEWEL_RAW_CMD, NULL, 0, NULL);
712         } else if (target->supported_protocols & NFC_PROTO_FELICA_MASK) {
713                 return nfc_hci_send_cmd(hdev, PN544_RF_READER_F_GATE,
714                                         PN544_FELICA_RAW, NULL, 0, NULL);
715         } else if (target->supported_protocols & NFC_PROTO_NFC_DEP_MASK) {
716                 return nfc_hci_send_cmd(hdev, target->hci_reader_gate,
717                                         PN544_HCI_CMD_ATTREQUEST,
718                                         NULL, 0, NULL);
719         }
720
721         return 0;
722 }
723
724 /*
725  * Returns:
726  * <= 0: driver handled the event, skb consumed
727  *    1: driver does not handle the event, please do standard processing
728  */
729 static int pn544_hci_event_received(struct nfc_hci_dev *hdev, u8 gate, u8 event,
730                                     struct sk_buff *skb)
731 {
732         struct sk_buff *rgb_skb = NULL;
733         int r;
734
735         pr_debug("hci event %d", event);
736         switch (event) {
737         case PN544_HCI_EVT_ACTIVATED:
738                 if (gate == PN544_RF_READER_NFCIP1_INITIATOR_GATE) {
739                         r = nfc_hci_target_discovered(hdev, gate);
740                 } else if (gate == PN544_RF_READER_NFCIP1_TARGET_GATE) {
741                         r = nfc_hci_get_param(hdev, gate, PN544_DEP_ATR_REQ,
742                                               &rgb_skb);
743                         if (r < 0)
744                                 goto exit;
745
746                         r = nfc_tm_activated(hdev->ndev, NFC_PROTO_NFC_DEP_MASK,
747                                              NFC_COMM_PASSIVE, rgb_skb->data,
748                                              rgb_skb->len);
749
750                         kfree_skb(rgb_skb);
751                 } else {
752                         r = -EINVAL;
753                 }
754                 break;
755         case PN544_HCI_EVT_DEACTIVATED:
756                 r = nfc_hci_send_event(hdev, gate, NFC_HCI_EVT_END_OPERATION,
757                                        NULL, 0);
758                 break;
759         case PN544_HCI_EVT_RCV_DATA:
760                 if (skb->len < 2) {
761                         r = -EPROTO;
762                         goto exit;
763                 }
764
765                 if (skb->data[0] != 0) {
766                         pr_debug("data0 %d", skb->data[0]);
767                         r = -EPROTO;
768                         goto exit;
769                 }
770
771                 skb_pull(skb, 2);
772                 return nfc_tm_data_received(hdev->ndev, skb);
773         default:
774                 return 1;
775         }
776
777 exit:
778         kfree_skb(skb);
779
780         return r;
781 }
782
783 static struct nfc_hci_ops pn544_hci_ops = {
784         .open = pn544_hci_open,
785         .close = pn544_hci_close,
786         .hci_ready = pn544_hci_ready,
787         .xmit = pn544_hci_xmit,
788         .start_poll = pn544_hci_start_poll,
789         .dep_link_up = pn544_hci_dep_link_up,
790         .dep_link_down = pn544_hci_dep_link_down,
791         .target_from_gate = pn544_hci_target_from_gate,
792         .complete_target_discovered = pn544_hci_complete_target_discovered,
793         .im_transceive = pn544_hci_im_transceive,
794         .tm_send = pn544_hci_tm_send,
795         .check_presence = pn544_hci_check_presence,
796         .event_received = pn544_hci_event_received,
797 };
798
799 int pn544_hci_probe(void *phy_id, struct nfc_phy_ops *phy_ops, char *llc_name,
800                     int phy_headroom, int phy_tailroom, int phy_payload,
801                     struct nfc_hci_dev **hdev)
802 {
803         struct pn544_hci_info *info;
804         u32 protocols, se;
805         struct nfc_hci_init_data init_data;
806         int r;
807
808         info = kzalloc(sizeof(struct pn544_hci_info), GFP_KERNEL);
809         if (!info) {
810                 pr_err("Cannot allocate memory for pn544_hci_info.\n");
811                 r = -ENOMEM;
812                 goto err_info_alloc;
813         }
814
815         info->phy_ops = phy_ops;
816         info->phy_id = phy_id;
817         info->state = PN544_ST_COLD;
818         mutex_init(&info->info_lock);
819
820         init_data.gate_count = ARRAY_SIZE(pn544_gates);
821
822         memcpy(init_data.gates, pn544_gates, sizeof(pn544_gates));
823
824         /*
825          * TODO: Session id must include the driver name + some bus addr
826          * persistent info to discriminate 2 identical chips
827          */
828         strcpy(init_data.session_id, "ID544HCI");
829
830         protocols = NFC_PROTO_JEWEL_MASK |
831                     NFC_PROTO_MIFARE_MASK |
832                     NFC_PROTO_FELICA_MASK |
833                     NFC_PROTO_ISO14443_MASK |
834                     NFC_PROTO_ISO14443_B_MASK |
835                     NFC_PROTO_NFC_DEP_MASK;
836
837         se = NFC_SE_UICC | NFC_SE_EMBEDDED;
838
839         info->hdev = nfc_hci_allocate_device(&pn544_hci_ops, &init_data, 0,
840                                              protocols, se, llc_name,
841                                              phy_headroom + PN544_CMDS_HEADROOM,
842                                              phy_tailroom, phy_payload);
843         if (!info->hdev) {
844                 pr_err("Cannot allocate nfc hdev.\n");
845                 r = -ENOMEM;
846                 goto err_alloc_hdev;
847         }
848
849         nfc_hci_set_clientdata(info->hdev, info);
850
851         r = nfc_hci_register_device(info->hdev);
852         if (r)
853                 goto err_regdev;
854
855         *hdev = info->hdev;
856
857         return 0;
858
859 err_regdev:
860         nfc_hci_free_device(info->hdev);
861
862 err_alloc_hdev:
863         kfree(info);
864
865 err_info_alloc:
866         return r;
867 }
868 EXPORT_SYMBOL(pn544_hci_probe);
869
870 void pn544_hci_remove(struct nfc_hci_dev *hdev)
871 {
872         struct pn544_hci_info *info = nfc_hci_get_clientdata(hdev);
873
874         nfc_hci_unregister_device(hdev);
875         nfc_hci_free_device(hdev);
876         kfree(info);
877 }
878 EXPORT_SYMBOL(pn544_hci_remove);
879
880 MODULE_LICENSE("GPL");
881 MODULE_DESCRIPTION(DRIVER_DESC);