Merge tag 'mac80211-for-davem-2017-07-07' of git://git.kernel.org/pub/scm/linux/kerne...
[sfrench/cifs-2.6.git] / drivers / nvme / target / admin-cmd.c
1 /*
2  * NVMe admin command implementation.
3  * Copyright (c) 2015-2016 HGST, a Western Digital Company.
4  *
5  * This program is free software; you can redistribute it and/or modify it
6  * under the terms and conditions of the GNU General Public License,
7  * version 2, as published by the Free Software Foundation.
8  *
9  * This program is distributed in the hope it will be useful, but WITHOUT
10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
12  * more details.
13  */
14 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
15 #include <linux/module.h>
16 #include <linux/rculist.h>
17
18 #include <generated/utsrelease.h>
19 #include <asm/unaligned.h>
20 #include "nvmet.h"
21
22 u32 nvmet_get_log_page_len(struct nvme_command *cmd)
23 {
24         u32 len = le16_to_cpu(cmd->get_log_page.numdu);
25
26         len <<= 16;
27         len += le16_to_cpu(cmd->get_log_page.numdl);
28         /* NUMD is a 0's based value */
29         len += 1;
30         len *= sizeof(u32);
31
32         return len;
33 }
34
35 static u16 nvmet_get_smart_log_nsid(struct nvmet_req *req,
36                 struct nvme_smart_log *slog)
37 {
38         u16 status;
39         struct nvmet_ns *ns;
40         u64 host_reads, host_writes, data_units_read, data_units_written;
41
42         status = NVME_SC_SUCCESS;
43         ns = nvmet_find_namespace(req->sq->ctrl, req->cmd->get_log_page.nsid);
44         if (!ns) {
45                 status = NVME_SC_INVALID_NS;
46                 pr_err("nvmet : Could not find namespace id : %d\n",
47                                 le32_to_cpu(req->cmd->get_log_page.nsid));
48                 goto out;
49         }
50
51         host_reads = part_stat_read(ns->bdev->bd_part, ios[READ]);
52         data_units_read = part_stat_read(ns->bdev->bd_part, sectors[READ]);
53         host_writes = part_stat_read(ns->bdev->bd_part, ios[WRITE]);
54         data_units_written = part_stat_read(ns->bdev->bd_part, sectors[WRITE]);
55
56         put_unaligned_le64(host_reads, &slog->host_reads[0]);
57         put_unaligned_le64(data_units_read, &slog->data_units_read[0]);
58         put_unaligned_le64(host_writes, &slog->host_writes[0]);
59         put_unaligned_le64(data_units_written, &slog->data_units_written[0]);
60         nvmet_put_namespace(ns);
61 out:
62         return status;
63 }
64
65 static u16 nvmet_get_smart_log_all(struct nvmet_req *req,
66                 struct nvme_smart_log *slog)
67 {
68         u16 status;
69         u64 host_reads = 0, host_writes = 0;
70         u64 data_units_read = 0, data_units_written = 0;
71         struct nvmet_ns *ns;
72         struct nvmet_ctrl *ctrl;
73
74         status = NVME_SC_SUCCESS;
75         ctrl = req->sq->ctrl;
76
77         rcu_read_lock();
78         list_for_each_entry_rcu(ns, &ctrl->subsys->namespaces, dev_link) {
79                 host_reads += part_stat_read(ns->bdev->bd_part, ios[READ]);
80                 data_units_read +=
81                         part_stat_read(ns->bdev->bd_part, sectors[READ]);
82                 host_writes += part_stat_read(ns->bdev->bd_part, ios[WRITE]);
83                 data_units_written +=
84                         part_stat_read(ns->bdev->bd_part, sectors[WRITE]);
85
86         }
87         rcu_read_unlock();
88
89         put_unaligned_le64(host_reads, &slog->host_reads[0]);
90         put_unaligned_le64(data_units_read, &slog->data_units_read[0]);
91         put_unaligned_le64(host_writes, &slog->host_writes[0]);
92         put_unaligned_le64(data_units_written, &slog->data_units_written[0]);
93
94         return status;
95 }
96
97 static u16 nvmet_get_smart_log(struct nvmet_req *req,
98                 struct nvme_smart_log *slog)
99 {
100         u16 status;
101
102         WARN_ON(req == NULL || slog == NULL);
103         if (req->cmd->get_log_page.nsid == cpu_to_le32(0xFFFFFFFF))
104                 status = nvmet_get_smart_log_all(req, slog);
105         else
106                 status = nvmet_get_smart_log_nsid(req, slog);
107         return status;
108 }
109
110 static void nvmet_execute_get_log_page(struct nvmet_req *req)
111 {
112         struct nvme_smart_log *smart_log;
113         size_t data_len = nvmet_get_log_page_len(req->cmd);
114         void *buf;
115         u16 status = 0;
116
117         buf = kzalloc(data_len, GFP_KERNEL);
118         if (!buf) {
119                 status = NVME_SC_INTERNAL;
120                 goto out;
121         }
122
123         switch (req->cmd->get_log_page.lid) {
124         case NVME_LOG_ERROR:
125                 /*
126                  * We currently never set the More bit in the status field,
127                  * so all error log entries are invalid and can be zeroed out.
128                  * This is called a minum viable implementation (TM) of this
129                  * mandatory log page.
130                  */
131                 break;
132         case NVME_LOG_SMART:
133                 /*
134                  * XXX: fill out actual smart log
135                  *
136                  * We might have a hard time coming up with useful values for
137                  * many of the fields, and even when we have useful data
138                  * available (e.g. units or commands read/written) those aren't
139                  * persistent over power loss.
140                  */
141                 if (data_len != sizeof(*smart_log)) {
142                         status = NVME_SC_INTERNAL;
143                         goto err;
144                 }
145                 smart_log = buf;
146                 status = nvmet_get_smart_log(req, smart_log);
147                 if (status) {
148                         memset(buf, '\0', data_len);
149                         goto err;
150                 }
151                 break;
152         case NVME_LOG_FW_SLOT:
153                 /*
154                  * We only support a single firmware slot which always is
155                  * active, so we can zero out the whole firmware slot log and
156                  * still claim to fully implement this mandatory log page.
157                  */
158                 break;
159         default:
160                 BUG();
161         }
162
163         status = nvmet_copy_to_sgl(req, 0, buf, data_len);
164
165 err:
166         kfree(buf);
167 out:
168         nvmet_req_complete(req, status);
169 }
170
171 static void nvmet_execute_identify_ctrl(struct nvmet_req *req)
172 {
173         struct nvmet_ctrl *ctrl = req->sq->ctrl;
174         struct nvme_id_ctrl *id;
175         u16 status = 0;
176
177         id = kzalloc(sizeof(*id), GFP_KERNEL);
178         if (!id) {
179                 status = NVME_SC_INTERNAL;
180                 goto out;
181         }
182
183         /* XXX: figure out how to assign real vendors IDs. */
184         id->vid = 0;
185         id->ssvid = 0;
186
187         memset(id->sn, ' ', sizeof(id->sn));
188         snprintf(id->sn, sizeof(id->sn), "%llx", ctrl->serial);
189
190         memset(id->mn, ' ', sizeof(id->mn));
191         strncpy((char *)id->mn, "Linux", sizeof(id->mn));
192
193         memset(id->fr, ' ', sizeof(id->fr));
194         strncpy((char *)id->fr, UTS_RELEASE, sizeof(id->fr));
195
196         id->rab = 6;
197
198         /*
199          * XXX: figure out how we can assign a IEEE OUI, but until then
200          * the safest is to leave it as zeroes.
201          */
202
203         /* we support multiple ports and multiples hosts: */
204         id->cmic = (1 << 0) | (1 << 1);
205
206         /* no limit on data transfer sizes for now */
207         id->mdts = 0;
208         id->cntlid = cpu_to_le16(ctrl->cntlid);
209         id->ver = cpu_to_le32(ctrl->subsys->ver);
210
211         /* XXX: figure out what to do about RTD3R/RTD3 */
212         id->oaes = cpu_to_le32(1 << 8);
213         id->ctratt = cpu_to_le32(1 << 0);
214
215         id->oacs = 0;
216
217         /*
218          * We don't really have a practical limit on the number of abort
219          * comands.  But we don't do anything useful for abort either, so
220          * no point in allowing more abort commands than the spec requires.
221          */
222         id->acl = 3;
223
224         id->aerl = NVMET_ASYNC_EVENTS - 1;
225
226         /* first slot is read-only, only one slot supported */
227         id->frmw = (1 << 0) | (1 << 1);
228         id->lpa = (1 << 0) | (1 << 2);
229         id->elpe = NVMET_ERROR_LOG_SLOTS - 1;
230         id->npss = 0;
231
232         /* We support keep-alive timeout in granularity of seconds */
233         id->kas = cpu_to_le16(NVMET_KAS);
234
235         id->sqes = (0x6 << 4) | 0x6;
236         id->cqes = (0x4 << 4) | 0x4;
237
238         /* no enforcement soft-limit for maxcmd - pick arbitrary high value */
239         id->maxcmd = cpu_to_le16(NVMET_MAX_CMD);
240
241         id->nn = cpu_to_le32(ctrl->subsys->max_nsid);
242         id->oncs = cpu_to_le16(NVME_CTRL_ONCS_DSM |
243                         NVME_CTRL_ONCS_WRITE_ZEROES);
244
245         /* XXX: don't report vwc if the underlying device is write through */
246         id->vwc = NVME_CTRL_VWC_PRESENT;
247
248         /*
249          * We can't support atomic writes bigger than a LBA without support
250          * from the backend device.
251          */
252         id->awun = 0;
253         id->awupf = 0;
254
255         id->sgls = cpu_to_le32(1 << 0); /* we always support SGLs */
256         if (ctrl->ops->has_keyed_sgls)
257                 id->sgls |= cpu_to_le32(1 << 2);
258         if (ctrl->ops->sqe_inline_size)
259                 id->sgls |= cpu_to_le32(1 << 20);
260
261         strcpy(id->subnqn, ctrl->subsys->subsysnqn);
262
263         /* Max command capsule size is sqe + single page of in-capsule data */
264         id->ioccsz = cpu_to_le32((sizeof(struct nvme_command) +
265                                   ctrl->ops->sqe_inline_size) / 16);
266         /* Max response capsule size is cqe */
267         id->iorcsz = cpu_to_le32(sizeof(struct nvme_completion) / 16);
268
269         id->msdbd = ctrl->ops->msdbd;
270
271         /*
272          * Meh, we don't really support any power state.  Fake up the same
273          * values that qemu does.
274          */
275         id->psd[0].max_power = cpu_to_le16(0x9c4);
276         id->psd[0].entry_lat = cpu_to_le32(0x10);
277         id->psd[0].exit_lat = cpu_to_le32(0x4);
278
279         status = nvmet_copy_to_sgl(req, 0, id, sizeof(*id));
280
281         kfree(id);
282 out:
283         nvmet_req_complete(req, status);
284 }
285
286 static void nvmet_execute_identify_ns(struct nvmet_req *req)
287 {
288         struct nvmet_ns *ns;
289         struct nvme_id_ns *id;
290         u16 status = 0;
291
292         ns = nvmet_find_namespace(req->sq->ctrl, req->cmd->identify.nsid);
293         if (!ns) {
294                 status = NVME_SC_INVALID_NS | NVME_SC_DNR;
295                 goto out;
296         }
297
298         id = kzalloc(sizeof(*id), GFP_KERNEL);
299         if (!id) {
300                 status = NVME_SC_INTERNAL;
301                 goto out_put_ns;
302         }
303
304         /*
305          * nuse = ncap = nsze isn't aways true, but we have no way to find
306          * that out from the underlying device.
307          */
308         id->ncap = id->nuse = id->nsze =
309                 cpu_to_le64(ns->size >> ns->blksize_shift);
310
311         /*
312          * We just provide a single LBA format that matches what the
313          * underlying device reports.
314          */
315         id->nlbaf = 0;
316         id->flbas = 0;
317
318         /*
319          * Our namespace might always be shared.  Not just with other
320          * controllers, but also with any other user of the block device.
321          */
322         id->nmic = (1 << 0);
323
324         memcpy(&id->nguid, &ns->nguid, sizeof(uuid_le));
325
326         id->lbaf[0].ds = ns->blksize_shift;
327
328         status = nvmet_copy_to_sgl(req, 0, id, sizeof(*id));
329
330         kfree(id);
331 out_put_ns:
332         nvmet_put_namespace(ns);
333 out:
334         nvmet_req_complete(req, status);
335 }
336
337 static void nvmet_execute_identify_nslist(struct nvmet_req *req)
338 {
339         static const int buf_size = NVME_IDENTIFY_DATA_SIZE;
340         struct nvmet_ctrl *ctrl = req->sq->ctrl;
341         struct nvmet_ns *ns;
342         u32 min_nsid = le32_to_cpu(req->cmd->identify.nsid);
343         __le32 *list;
344         u16 status = 0;
345         int i = 0;
346
347         list = kzalloc(buf_size, GFP_KERNEL);
348         if (!list) {
349                 status = NVME_SC_INTERNAL;
350                 goto out;
351         }
352
353         rcu_read_lock();
354         list_for_each_entry_rcu(ns, &ctrl->subsys->namespaces, dev_link) {
355                 if (ns->nsid <= min_nsid)
356                         continue;
357                 list[i++] = cpu_to_le32(ns->nsid);
358                 if (i == buf_size / sizeof(__le32))
359                         break;
360         }
361         rcu_read_unlock();
362
363         status = nvmet_copy_to_sgl(req, 0, list, buf_size);
364
365         kfree(list);
366 out:
367         nvmet_req_complete(req, status);
368 }
369
370 static u16 nvmet_copy_ns_identifier(struct nvmet_req *req, u8 type, u8 len,
371                                     void *id, off_t *off)
372 {
373         struct nvme_ns_id_desc desc = {
374                 .nidt = type,
375                 .nidl = len,
376         };
377         u16 status;
378
379         status = nvmet_copy_to_sgl(req, *off, &desc, sizeof(desc));
380         if (status)
381                 return status;
382         *off += sizeof(desc);
383
384         status = nvmet_copy_to_sgl(req, *off, id, len);
385         if (status)
386                 return status;
387         *off += len;
388
389         return 0;
390 }
391
392 static void nvmet_execute_identify_desclist(struct nvmet_req *req)
393 {
394         struct nvmet_ns *ns;
395         u16 status = 0;
396         off_t off = 0;
397
398         ns = nvmet_find_namespace(req->sq->ctrl, req->cmd->identify.nsid);
399         if (!ns) {
400                 status = NVME_SC_INVALID_NS | NVME_SC_DNR;
401                 goto out;
402         }
403
404         if (memchr_inv(&ns->uuid, 0, sizeof(ns->uuid))) {
405                 status = nvmet_copy_ns_identifier(req, NVME_NIDT_UUID,
406                                                   NVME_NIDT_UUID_LEN,
407                                                   &ns->uuid, &off);
408                 if (status)
409                         goto out_put_ns;
410         }
411         if (memchr_inv(ns->nguid, 0, sizeof(ns->nguid))) {
412                 status = nvmet_copy_ns_identifier(req, NVME_NIDT_NGUID,
413                                                   NVME_NIDT_NGUID_LEN,
414                                                   &ns->nguid, &off);
415                 if (status)
416                         goto out_put_ns;
417         }
418
419         if (sg_zero_buffer(req->sg, req->sg_cnt, NVME_IDENTIFY_DATA_SIZE - off,
420                         off) != NVME_IDENTIFY_DATA_SIZE - off)
421                 status = NVME_SC_INTERNAL | NVME_SC_DNR;
422 out_put_ns:
423         nvmet_put_namespace(ns);
424 out:
425         nvmet_req_complete(req, status);
426 }
427
428 /*
429  * A "mimimum viable" abort implementation: the command is mandatory in the
430  * spec, but we are not required to do any useful work.  We couldn't really
431  * do a useful abort, so don't bother even with waiting for the command
432  * to be exectuted and return immediately telling the command to abort
433  * wasn't found.
434  */
435 static void nvmet_execute_abort(struct nvmet_req *req)
436 {
437         nvmet_set_result(req, 1);
438         nvmet_req_complete(req, 0);
439 }
440
441 static void nvmet_execute_set_features(struct nvmet_req *req)
442 {
443         struct nvmet_subsys *subsys = req->sq->ctrl->subsys;
444         u32 cdw10 = le32_to_cpu(req->cmd->common.cdw10[0]);
445         u32 val32;
446         u16 status = 0;
447
448         switch (cdw10 & 0xf) {
449         case NVME_FEAT_NUM_QUEUES:
450                 nvmet_set_result(req,
451                         (subsys->max_qid - 1) | ((subsys->max_qid - 1) << 16));
452                 break;
453         case NVME_FEAT_KATO:
454                 val32 = le32_to_cpu(req->cmd->common.cdw10[1]);
455                 req->sq->ctrl->kato = DIV_ROUND_UP(val32, 1000);
456                 nvmet_set_result(req, req->sq->ctrl->kato);
457                 break;
458         default:
459                 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
460                 break;
461         }
462
463         nvmet_req_complete(req, status);
464 }
465
466 static void nvmet_execute_get_features(struct nvmet_req *req)
467 {
468         struct nvmet_subsys *subsys = req->sq->ctrl->subsys;
469         u32 cdw10 = le32_to_cpu(req->cmd->common.cdw10[0]);
470         u16 status = 0;
471
472         switch (cdw10 & 0xf) {
473         /*
474          * These features are mandatory in the spec, but we don't
475          * have a useful way to implement them.  We'll eventually
476          * need to come up with some fake values for these.
477          */
478 #if 0
479         case NVME_FEAT_ARBITRATION:
480                 break;
481         case NVME_FEAT_POWER_MGMT:
482                 break;
483         case NVME_FEAT_TEMP_THRESH:
484                 break;
485         case NVME_FEAT_ERR_RECOVERY:
486                 break;
487         case NVME_FEAT_IRQ_COALESCE:
488                 break;
489         case NVME_FEAT_IRQ_CONFIG:
490                 break;
491         case NVME_FEAT_WRITE_ATOMIC:
492                 break;
493         case NVME_FEAT_ASYNC_EVENT:
494                 break;
495 #endif
496         case NVME_FEAT_VOLATILE_WC:
497                 nvmet_set_result(req, 1);
498                 break;
499         case NVME_FEAT_NUM_QUEUES:
500                 nvmet_set_result(req,
501                         (subsys->max_qid-1) | ((subsys->max_qid-1) << 16));
502                 break;
503         case NVME_FEAT_KATO:
504                 nvmet_set_result(req, req->sq->ctrl->kato * 1000);
505                 break;
506         default:
507                 status = NVME_SC_INVALID_FIELD | NVME_SC_DNR;
508                 break;
509         }
510
511         nvmet_req_complete(req, status);
512 }
513
514 static void nvmet_execute_async_event(struct nvmet_req *req)
515 {
516         struct nvmet_ctrl *ctrl = req->sq->ctrl;
517
518         mutex_lock(&ctrl->lock);
519         if (ctrl->nr_async_event_cmds >= NVMET_ASYNC_EVENTS) {
520                 mutex_unlock(&ctrl->lock);
521                 nvmet_req_complete(req, NVME_SC_ASYNC_LIMIT | NVME_SC_DNR);
522                 return;
523         }
524         ctrl->async_event_cmds[ctrl->nr_async_event_cmds++] = req;
525         mutex_unlock(&ctrl->lock);
526
527         schedule_work(&ctrl->async_event_work);
528 }
529
530 static void nvmet_execute_keep_alive(struct nvmet_req *req)
531 {
532         struct nvmet_ctrl *ctrl = req->sq->ctrl;
533
534         pr_debug("ctrl %d update keep-alive timer for %d secs\n",
535                 ctrl->cntlid, ctrl->kato);
536
537         mod_delayed_work(system_wq, &ctrl->ka_work, ctrl->kato * HZ);
538         nvmet_req_complete(req, 0);
539 }
540
541 u16 nvmet_parse_admin_cmd(struct nvmet_req *req)
542 {
543         struct nvme_command *cmd = req->cmd;
544         u16 ret;
545
546         req->ns = NULL;
547
548         ret = nvmet_check_ctrl_status(req, cmd);
549         if (unlikely(ret))
550                 return ret;
551
552         switch (cmd->common.opcode) {
553         case nvme_admin_get_log_page:
554                 req->data_len = nvmet_get_log_page_len(cmd);
555
556                 switch (cmd->get_log_page.lid) {
557                 case NVME_LOG_ERROR:
558                 case NVME_LOG_SMART:
559                 case NVME_LOG_FW_SLOT:
560                         req->execute = nvmet_execute_get_log_page;
561                         return 0;
562                 }
563                 break;
564         case nvme_admin_identify:
565                 req->data_len = NVME_IDENTIFY_DATA_SIZE;
566                 switch (cmd->identify.cns) {
567                 case NVME_ID_CNS_NS:
568                         req->execute = nvmet_execute_identify_ns;
569                         return 0;
570                 case NVME_ID_CNS_CTRL:
571                         req->execute = nvmet_execute_identify_ctrl;
572                         return 0;
573                 case NVME_ID_CNS_NS_ACTIVE_LIST:
574                         req->execute = nvmet_execute_identify_nslist;
575                         return 0;
576                 case NVME_ID_CNS_NS_DESC_LIST:
577                         req->execute = nvmet_execute_identify_desclist;
578                         return 0;
579                 }
580                 break;
581         case nvme_admin_abort_cmd:
582                 req->execute = nvmet_execute_abort;
583                 req->data_len = 0;
584                 return 0;
585         case nvme_admin_set_features:
586                 req->execute = nvmet_execute_set_features;
587                 req->data_len = 0;
588                 return 0;
589         case nvme_admin_get_features:
590                 req->execute = nvmet_execute_get_features;
591                 req->data_len = 0;
592                 return 0;
593         case nvme_admin_async_event:
594                 req->execute = nvmet_execute_async_event;
595                 req->data_len = 0;
596                 return 0;
597         case nvme_admin_keep_alive:
598                 req->execute = nvmet_execute_keep_alive;
599                 req->data_len = 0;
600                 return 0;
601         }
602
603         pr_err("unhandled cmd %d on qid %d\n", cmd->common.opcode,
604                req->sq->qid);
605         return NVME_SC_INVALID_OPCODE | NVME_SC_DNR;
606 }