KVM: arm/arm64: vgic-new: Synchronize changes to active state
[cascardo/linux.git] / arch / s390 / pci / pci_clp.c
1 /*
2  * Copyright IBM Corp. 2012
3  *
4  * Author(s):
5  *   Jan Glauber <jang@linux.vnet.ibm.com>
6  */
7
8 #define KMSG_COMPONENT "zpci"
9 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
10
11 #include <linux/compat.h>
12 #include <linux/kernel.h>
13 #include <linux/miscdevice.h>
14 #include <linux/slab.h>
15 #include <linux/err.h>
16 #include <linux/delay.h>
17 #include <linux/pci.h>
18 #include <linux/uaccess.h>
19 #include <asm/pci_debug.h>
20 #include <asm/pci_clp.h>
21 #include <asm/compat.h>
22 #include <asm/clp.h>
23 #include <uapi/asm/clp.h>
24
25 static inline void zpci_err_clp(unsigned int rsp, int rc)
26 {
27         struct {
28                 unsigned int rsp;
29                 int rc;
30         } __packed data = {rsp, rc};
31
32         zpci_err_hex(&data, sizeof(data));
33 }
34
35 /*
36  * Call Logical Processor with c=1, lps=0 and command 1
37  * to get the bit mask of installed logical processors
38  */
39 static inline int clp_get_ilp(unsigned long *ilp)
40 {
41         unsigned long mask;
42         int cc = 3;
43
44         asm volatile (
45                 "       .insn   rrf,0xb9a00000,%[mask],%[cmd],8,0\n"
46                 "0:     ipm     %[cc]\n"
47                 "       srl     %[cc],28\n"
48                 "1:\n"
49                 EX_TABLE(0b, 1b)
50                 : [cc] "+d" (cc), [mask] "=d" (mask) : [cmd] "a" (1)
51                 : "cc");
52         *ilp = mask;
53         return cc;
54 }
55
56 /*
57  * Call Logical Processor with c=0, the give constant lps and an lpcb request.
58  */
59 static inline int clp_req(void *data, unsigned int lps)
60 {
61         struct { u8 _[CLP_BLK_SIZE]; } *req = data;
62         u64 ignored;
63         int cc = 3;
64
65         asm volatile (
66                 "       .insn   rrf,0xb9a00000,%[ign],%[req],0,%[lps]\n"
67                 "0:     ipm     %[cc]\n"
68                 "       srl     %[cc],28\n"
69                 "1:\n"
70                 EX_TABLE(0b, 1b)
71                 : [cc] "+d" (cc), [ign] "=d" (ignored), "+m" (*req)
72                 : [req] "a" (req), [lps] "i" (lps)
73                 : "cc");
74         return cc;
75 }
76
77 static void *clp_alloc_block(gfp_t gfp_mask)
78 {
79         return (void *) __get_free_pages(gfp_mask, get_order(CLP_BLK_SIZE));
80 }
81
82 static void clp_free_block(void *ptr)
83 {
84         free_pages((unsigned long) ptr, get_order(CLP_BLK_SIZE));
85 }
86
87 static void clp_store_query_pci_fngrp(struct zpci_dev *zdev,
88                                       struct clp_rsp_query_pci_grp *response)
89 {
90         zdev->tlb_refresh = response->refresh;
91         zdev->dma_mask = response->dasm;
92         zdev->msi_addr = response->msia;
93         zdev->max_msi = response->noi;
94         zdev->fmb_update = response->mui;
95
96         switch (response->version) {
97         case 1:
98                 zdev->max_bus_speed = PCIE_SPEED_5_0GT;
99                 break;
100         default:
101                 zdev->max_bus_speed = PCI_SPEED_UNKNOWN;
102                 break;
103         }
104 }
105
106 static int clp_query_pci_fngrp(struct zpci_dev *zdev, u8 pfgid)
107 {
108         struct clp_req_rsp_query_pci_grp *rrb;
109         int rc;
110
111         rrb = clp_alloc_block(GFP_KERNEL);
112         if (!rrb)
113                 return -ENOMEM;
114
115         memset(rrb, 0, sizeof(*rrb));
116         rrb->request.hdr.len = sizeof(rrb->request);
117         rrb->request.hdr.cmd = CLP_QUERY_PCI_FNGRP;
118         rrb->response.hdr.len = sizeof(rrb->response);
119         rrb->request.pfgid = pfgid;
120
121         rc = clp_req(rrb, CLP_LPS_PCI);
122         if (!rc && rrb->response.hdr.rsp == CLP_RC_OK)
123                 clp_store_query_pci_fngrp(zdev, &rrb->response);
124         else {
125                 zpci_err("Q PCI FGRP:\n");
126                 zpci_err_clp(rrb->response.hdr.rsp, rc);
127                 rc = -EIO;
128         }
129         clp_free_block(rrb);
130         return rc;
131 }
132
133 static int clp_store_query_pci_fn(struct zpci_dev *zdev,
134                                   struct clp_rsp_query_pci *response)
135 {
136         int i;
137
138         for (i = 0; i < PCI_BAR_COUNT; i++) {
139                 zdev->bars[i].val = le32_to_cpu(response->bar[i]);
140                 zdev->bars[i].size = response->bar_size[i];
141         }
142         zdev->start_dma = response->sdma;
143         zdev->end_dma = response->edma;
144         zdev->pchid = response->pchid;
145         zdev->pfgid = response->pfgid;
146         zdev->pft = response->pft;
147         zdev->vfn = response->vfn;
148         zdev->uid = response->uid;
149
150         memcpy(zdev->pfip, response->pfip, sizeof(zdev->pfip));
151         if (response->util_str_avail) {
152                 memcpy(zdev->util_str, response->util_str,
153                        sizeof(zdev->util_str));
154         }
155
156         return 0;
157 }
158
159 static int clp_query_pci_fn(struct zpci_dev *zdev, u32 fh)
160 {
161         struct clp_req_rsp_query_pci *rrb;
162         int rc;
163
164         rrb = clp_alloc_block(GFP_KERNEL);
165         if (!rrb)
166                 return -ENOMEM;
167
168         memset(rrb, 0, sizeof(*rrb));
169         rrb->request.hdr.len = sizeof(rrb->request);
170         rrb->request.hdr.cmd = CLP_QUERY_PCI_FN;
171         rrb->response.hdr.len = sizeof(rrb->response);
172         rrb->request.fh = fh;
173
174         rc = clp_req(rrb, CLP_LPS_PCI);
175         if (!rc && rrb->response.hdr.rsp == CLP_RC_OK) {
176                 rc = clp_store_query_pci_fn(zdev, &rrb->response);
177                 if (rc)
178                         goto out;
179                 if (rrb->response.pfgid)
180                         rc = clp_query_pci_fngrp(zdev, rrb->response.pfgid);
181         } else {
182                 zpci_err("Q PCI FN:\n");
183                 zpci_err_clp(rrb->response.hdr.rsp, rc);
184                 rc = -EIO;
185         }
186 out:
187         clp_free_block(rrb);
188         return rc;
189 }
190
191 int clp_add_pci_device(u32 fid, u32 fh, int configured)
192 {
193         struct zpci_dev *zdev;
194         int rc;
195
196         zpci_dbg(3, "add fid:%x, fh:%x, c:%d\n", fid, fh, configured);
197         zdev = kzalloc(sizeof(*zdev), GFP_KERNEL);
198         if (!zdev)
199                 return -ENOMEM;
200
201         zdev->fh = fh;
202         zdev->fid = fid;
203
204         /* Query function properties and update zdev */
205         rc = clp_query_pci_fn(zdev, fh);
206         if (rc)
207                 goto error;
208
209         if (configured)
210                 zdev->state = ZPCI_FN_STATE_CONFIGURED;
211         else
212                 zdev->state = ZPCI_FN_STATE_STANDBY;
213
214         rc = zpci_create_device(zdev);
215         if (rc)
216                 goto error;
217         return 0;
218
219 error:
220         kfree(zdev);
221         return rc;
222 }
223
224 /*
225  * Enable/Disable a given PCI function defined by its function handle.
226  */
227 static int clp_set_pci_fn(u32 *fh, u8 nr_dma_as, u8 command)
228 {
229         struct clp_req_rsp_set_pci *rrb;
230         int rc, retries = 100;
231
232         rrb = clp_alloc_block(GFP_KERNEL);
233         if (!rrb)
234                 return -ENOMEM;
235
236         do {
237                 memset(rrb, 0, sizeof(*rrb));
238                 rrb->request.hdr.len = sizeof(rrb->request);
239                 rrb->request.hdr.cmd = CLP_SET_PCI_FN;
240                 rrb->response.hdr.len = sizeof(rrb->response);
241                 rrb->request.fh = *fh;
242                 rrb->request.oc = command;
243                 rrb->request.ndas = nr_dma_as;
244
245                 rc = clp_req(rrb, CLP_LPS_PCI);
246                 if (rrb->response.hdr.rsp == CLP_RC_SETPCIFN_BUSY) {
247                         retries--;
248                         if (retries < 0)
249                                 break;
250                         msleep(20);
251                 }
252         } while (rrb->response.hdr.rsp == CLP_RC_SETPCIFN_BUSY);
253
254         if (!rc && rrb->response.hdr.rsp == CLP_RC_OK)
255                 *fh = rrb->response.fh;
256         else {
257                 zpci_err("Set PCI FN:\n");
258                 zpci_err_clp(rrb->response.hdr.rsp, rc);
259                 rc = -EIO;
260         }
261         clp_free_block(rrb);
262         return rc;
263 }
264
265 int clp_enable_fh(struct zpci_dev *zdev, u8 nr_dma_as)
266 {
267         u32 fh = zdev->fh;
268         int rc;
269
270         rc = clp_set_pci_fn(&fh, nr_dma_as, CLP_SET_ENABLE_PCI_FN);
271         if (!rc)
272                 /* Success -> store enabled handle in zdev */
273                 zdev->fh = fh;
274
275         zpci_dbg(3, "ena fid:%x, fh:%x, rc:%d\n", zdev->fid, zdev->fh, rc);
276         return rc;
277 }
278
279 int clp_disable_fh(struct zpci_dev *zdev)
280 {
281         u32 fh = zdev->fh;
282         int rc;
283
284         if (!zdev_enabled(zdev))
285                 return 0;
286
287         rc = clp_set_pci_fn(&fh, 0, CLP_SET_DISABLE_PCI_FN);
288         if (!rc)
289                 /* Success -> store disabled handle in zdev */
290                 zdev->fh = fh;
291
292         zpci_dbg(3, "dis fid:%x, fh:%x, rc:%d\n", zdev->fid, zdev->fh, rc);
293         return rc;
294 }
295
296 static int clp_list_pci(struct clp_req_rsp_list_pci *rrb,
297                         void (*cb)(struct clp_fh_list_entry *entry))
298 {
299         u64 resume_token = 0;
300         int entries, i, rc;
301
302         do {
303                 memset(rrb, 0, sizeof(*rrb));
304                 rrb->request.hdr.len = sizeof(rrb->request);
305                 rrb->request.hdr.cmd = CLP_LIST_PCI;
306                 /* store as many entries as possible */
307                 rrb->response.hdr.len = CLP_BLK_SIZE - LIST_PCI_HDR_LEN;
308                 rrb->request.resume_token = resume_token;
309
310                 /* Get PCI function handle list */
311                 rc = clp_req(rrb, CLP_LPS_PCI);
312                 if (rc || rrb->response.hdr.rsp != CLP_RC_OK) {
313                         zpci_err("List PCI FN:\n");
314                         zpci_err_clp(rrb->response.hdr.rsp, rc);
315                         rc = -EIO;
316                         goto out;
317                 }
318
319                 WARN_ON_ONCE(rrb->response.entry_size !=
320                         sizeof(struct clp_fh_list_entry));
321
322                 entries = (rrb->response.hdr.len - LIST_PCI_HDR_LEN) /
323                         rrb->response.entry_size;
324
325                 resume_token = rrb->response.resume_token;
326                 for (i = 0; i < entries; i++)
327                         cb(&rrb->response.fh_list[i]);
328         } while (resume_token);
329 out:
330         return rc;
331 }
332
333 static void __clp_add(struct clp_fh_list_entry *entry)
334 {
335         if (!entry->vendor_id)
336                 return;
337
338         clp_add_pci_device(entry->fid, entry->fh, entry->config_state);
339 }
340
341 static void __clp_rescan(struct clp_fh_list_entry *entry)
342 {
343         struct zpci_dev *zdev;
344
345         if (!entry->vendor_id)
346                 return;
347
348         zdev = get_zdev_by_fid(entry->fid);
349         if (!zdev) {
350                 clp_add_pci_device(entry->fid, entry->fh, entry->config_state);
351                 return;
352         }
353
354         if (!entry->config_state) {
355                 /*
356                  * The handle is already disabled, that means no iota/irq freeing via
357                  * the firmware interfaces anymore. Need to free resources manually
358                  * (DMA memory, debug, sysfs)...
359                  */
360                 zpci_stop_device(zdev);
361         }
362 }
363
364 static void __clp_update(struct clp_fh_list_entry *entry)
365 {
366         struct zpci_dev *zdev;
367
368         if (!entry->vendor_id)
369                 return;
370
371         zdev = get_zdev_by_fid(entry->fid);
372         if (!zdev)
373                 return;
374
375         zdev->fh = entry->fh;
376 }
377
378 int clp_scan_pci_devices(void)
379 {
380         struct clp_req_rsp_list_pci *rrb;
381         int rc;
382
383         rrb = clp_alloc_block(GFP_KERNEL);
384         if (!rrb)
385                 return -ENOMEM;
386
387         rc = clp_list_pci(rrb, __clp_add);
388
389         clp_free_block(rrb);
390         return rc;
391 }
392
393 int clp_rescan_pci_devices(void)
394 {
395         struct clp_req_rsp_list_pci *rrb;
396         int rc;
397
398         rrb = clp_alloc_block(GFP_KERNEL);
399         if (!rrb)
400                 return -ENOMEM;
401
402         rc = clp_list_pci(rrb, __clp_rescan);
403
404         clp_free_block(rrb);
405         return rc;
406 }
407
408 int clp_rescan_pci_devices_simple(void)
409 {
410         struct clp_req_rsp_list_pci *rrb;
411         int rc;
412
413         rrb = clp_alloc_block(GFP_NOWAIT);
414         if (!rrb)
415                 return -ENOMEM;
416
417         rc = clp_list_pci(rrb, __clp_update);
418
419         clp_free_block(rrb);
420         return rc;
421 }
422
423 static int clp_base_slpc(struct clp_req *req, struct clp_req_rsp_slpc *lpcb)
424 {
425         unsigned long limit = PAGE_SIZE - sizeof(lpcb->request);
426
427         if (lpcb->request.hdr.len != sizeof(lpcb->request) ||
428             lpcb->response.hdr.len > limit)
429                 return -EINVAL;
430         return clp_req(lpcb, CLP_LPS_BASE) ? -EOPNOTSUPP : 0;
431 }
432
433 static int clp_base_command(struct clp_req *req, struct clp_req_hdr *lpcb)
434 {
435         switch (lpcb->cmd) {
436         case 0x0001: /* store logical-processor characteristics */
437                 return clp_base_slpc(req, (void *) lpcb);
438         default:
439                 return -EINVAL;
440         }
441 }
442
443 static int clp_pci_slpc(struct clp_req *req, struct clp_req_rsp_slpc *lpcb)
444 {
445         unsigned long limit = PAGE_SIZE - sizeof(lpcb->request);
446
447         if (lpcb->request.hdr.len != sizeof(lpcb->request) ||
448             lpcb->response.hdr.len > limit)
449                 return -EINVAL;
450         return clp_req(lpcb, CLP_LPS_PCI) ? -EOPNOTSUPP : 0;
451 }
452
453 static int clp_pci_list(struct clp_req *req, struct clp_req_rsp_list_pci *lpcb)
454 {
455         unsigned long limit = PAGE_SIZE - sizeof(lpcb->request);
456
457         if (lpcb->request.hdr.len != sizeof(lpcb->request) ||
458             lpcb->response.hdr.len > limit)
459                 return -EINVAL;
460         if (lpcb->request.reserved2 != 0)
461                 return -EINVAL;
462         return clp_req(lpcb, CLP_LPS_PCI) ? -EOPNOTSUPP : 0;
463 }
464
465 static int clp_pci_query(struct clp_req *req,
466                          struct clp_req_rsp_query_pci *lpcb)
467 {
468         unsigned long limit = PAGE_SIZE - sizeof(lpcb->request);
469
470         if (lpcb->request.hdr.len != sizeof(lpcb->request) ||
471             lpcb->response.hdr.len > limit)
472                 return -EINVAL;
473         if (lpcb->request.reserved2 != 0 || lpcb->request.reserved3 != 0)
474                 return -EINVAL;
475         return clp_req(lpcb, CLP_LPS_PCI) ? -EOPNOTSUPP : 0;
476 }
477
478 static int clp_pci_query_grp(struct clp_req *req,
479                              struct clp_req_rsp_query_pci_grp *lpcb)
480 {
481         unsigned long limit = PAGE_SIZE - sizeof(lpcb->request);
482
483         if (lpcb->request.hdr.len != sizeof(lpcb->request) ||
484             lpcb->response.hdr.len > limit)
485                 return -EINVAL;
486         if (lpcb->request.reserved2 != 0 || lpcb->request.reserved3 != 0 ||
487             lpcb->request.reserved4 != 0)
488                 return -EINVAL;
489         return clp_req(lpcb, CLP_LPS_PCI) ? -EOPNOTSUPP : 0;
490 }
491
492 static int clp_pci_command(struct clp_req *req, struct clp_req_hdr *lpcb)
493 {
494         switch (lpcb->cmd) {
495         case 0x0001: /* store logical-processor characteristics */
496                 return clp_pci_slpc(req, (void *) lpcb);
497         case 0x0002: /* list PCI functions */
498                 return clp_pci_list(req, (void *) lpcb);
499         case 0x0003: /* query PCI function */
500                 return clp_pci_query(req, (void *) lpcb);
501         case 0x0004: /* query PCI function group */
502                 return clp_pci_query_grp(req, (void *) lpcb);
503         default:
504                 return -EINVAL;
505         }
506 }
507
508 static int clp_normal_command(struct clp_req *req)
509 {
510         struct clp_req_hdr *lpcb;
511         void __user *uptr;
512         int rc;
513
514         rc = -EINVAL;
515         if (req->lps != 0 && req->lps != 2)
516                 goto out;
517
518         rc = -ENOMEM;
519         lpcb = clp_alloc_block(GFP_KERNEL);
520         if (!lpcb)
521                 goto out;
522
523         rc = -EFAULT;
524         uptr = (void __force __user *)(unsigned long) req->data_p;
525         if (copy_from_user(lpcb, uptr, PAGE_SIZE) != 0)
526                 goto out_free;
527
528         rc = -EINVAL;
529         if (lpcb->fmt != 0 || lpcb->reserved1 != 0 || lpcb->reserved2 != 0)
530                 goto out_free;
531
532         switch (req->lps) {
533         case 0:
534                 rc = clp_base_command(req, lpcb);
535                 break;
536         case 2:
537                 rc = clp_pci_command(req, lpcb);
538                 break;
539         }
540         if (rc)
541                 goto out_free;
542
543         rc = -EFAULT;
544         if (copy_to_user(uptr, lpcb, PAGE_SIZE) != 0)
545                 goto out_free;
546
547         rc = 0;
548
549 out_free:
550         clp_free_block(lpcb);
551 out:
552         return rc;
553 }
554
555 static int clp_immediate_command(struct clp_req *req)
556 {
557         void __user *uptr;
558         unsigned long ilp;
559         int exists;
560
561         if (req->cmd > 1 || clp_get_ilp(&ilp) != 0)
562                 return -EINVAL;
563
564         uptr = (void __force __user *)(unsigned long) req->data_p;
565         if (req->cmd == 0) {
566                 /* Command code 0: test for a specific processor */
567                 exists = test_bit_inv(req->lps, &ilp);
568                 return put_user(exists, (int __user *) uptr);
569         }
570         /* Command code 1: return bit mask of installed processors */
571         return put_user(ilp, (unsigned long __user *) uptr);
572 }
573
574 static long clp_misc_ioctl(struct file *filp, unsigned int cmd,
575                            unsigned long arg)
576 {
577         struct clp_req req;
578         void __user *argp;
579
580         if (cmd != CLP_SYNC)
581                 return -EINVAL;
582
583         argp = is_compat_task() ? compat_ptr(arg) : (void __user *) arg;
584         if (copy_from_user(&req, argp, sizeof(req)))
585                 return -EFAULT;
586         if (req.r != 0)
587                 return -EINVAL;
588         return req.c ? clp_immediate_command(&req) : clp_normal_command(&req);
589 }
590
591 static int clp_misc_release(struct inode *inode, struct file *filp)
592 {
593         return 0;
594 }
595
596 static const struct file_operations clp_misc_fops = {
597         .owner = THIS_MODULE,
598         .open = nonseekable_open,
599         .release = clp_misc_release,
600         .unlocked_ioctl = clp_misc_ioctl,
601         .compat_ioctl = clp_misc_ioctl,
602         .llseek = no_llseek,
603 };
604
605 static struct miscdevice clp_misc_device = {
606         .minor = MISC_DYNAMIC_MINOR,
607         .name = "clp",
608         .fops = &clp_misc_fops,
609 };
610
611 static int __init clp_misc_init(void)
612 {
613         return misc_register(&clp_misc_device);
614 }
615
616 device_initcall(clp_misc_init);