cxlflash: Virtual LUN support
[deliverable/linux.git] / drivers / scsi / cxlflash / superpipe.c
CommitLineData
65be2c79
MO
1/*
2 * CXL Flash Device Driver
3 *
4 * Written by: Manoj N. Kumar <manoj@linux.vnet.ibm.com>, IBM Corporation
5 * Matthew R. Ochs <mrochs@linux.vnet.ibm.com>, IBM Corporation
6 *
7 * Copyright (C) 2015 IBM Corporation
8 *
9 * This program is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU General Public License
11 * as published by the Free Software Foundation; either version
12 * 2 of the License, or (at your option) any later version.
13 */
14
15#include <linux/delay.h>
16#include <linux/file.h>
17#include <linux/syscalls.h>
18#include <misc/cxl.h>
19#include <asm/unaligned.h>
20
21#include <scsi/scsi.h>
22#include <scsi/scsi_host.h>
23#include <scsi/scsi_cmnd.h>
24#include <scsi/scsi_eh.h>
25#include <uapi/scsi/cxlflash_ioctl.h>
26
27#include "sislite.h"
28#include "common.h"
2cb79266 29#include "vlun.h"
65be2c79
MO
30#include "superpipe.h"
31
32struct cxlflash_global global;
33
2cb79266
MO
34/**
35 * marshal_rele_to_resize() - translate release to resize structure
36 * @rele: Source structure from which to translate/copy.
37 * @resize: Destination structure for the translate/copy.
38 */
39static void marshal_rele_to_resize(struct dk_cxlflash_release *release,
40 struct dk_cxlflash_resize *resize)
41{
42 resize->hdr = release->hdr;
43 resize->context_id = release->context_id;
44 resize->rsrc_handle = release->rsrc_handle;
45}
46
65be2c79
MO
47/**
48 * marshal_det_to_rele() - translate detach to release structure
49 * @detach: Destination structure for the translate/copy.
50 * @rele: Source structure from which to translate/copy.
51 */
52static void marshal_det_to_rele(struct dk_cxlflash_detach *detach,
53 struct dk_cxlflash_release *release)
54{
55 release->hdr = detach->hdr;
56 release->context_id = detach->context_id;
57}
58
59/**
60 * cxlflash_free_errpage() - frees resources associated with global error page
61 */
62void cxlflash_free_errpage(void)
63{
64
65 mutex_lock(&global.mutex);
66 if (global.err_page) {
67 __free_page(global.err_page);
68 global.err_page = NULL;
69 }
70 mutex_unlock(&global.mutex);
71}
72
73/**
74 * cxlflash_stop_term_user_contexts() - stops/terminates known user contexts
75 * @cfg: Internal structure associated with the host.
76 *
77 * When the host needs to go down, all users must be quiesced and their
78 * memory freed. This is accomplished by putting the contexts in error
79 * state which will notify the user and let them 'drive' the tear-down.
80 * Meanwhile, this routine camps until all user contexts have been removed.
81 */
82void cxlflash_stop_term_user_contexts(struct cxlflash_cfg *cfg)
83{
84 struct device *dev = &cfg->dev->dev;
85 int i, found;
86
87 cxlflash_mark_contexts_error(cfg);
88
89 while (true) {
90 found = false;
91
92 for (i = 0; i < MAX_CONTEXT; i++)
93 if (cfg->ctx_tbl[i]) {
94 found = true;
95 break;
96 }
97
98 if (!found && list_empty(&cfg->ctx_err_recovery))
99 return;
100
101 dev_dbg(dev, "%s: Wait for user contexts to quiesce...\n",
102 __func__);
103 wake_up_all(&cfg->limbo_waitq);
104 ssleep(1);
105 }
106}
107
108/**
109 * find_error_context() - locates a context by cookie on the error recovery list
110 * @cfg: Internal structure associated with the host.
111 * @rctxid: Desired context by id.
112 * @file: Desired context by file.
113 *
114 * Return: Found context on success, NULL on failure
115 */
116static struct ctx_info *find_error_context(struct cxlflash_cfg *cfg, u64 rctxid,
117 struct file *file)
118{
119 struct ctx_info *ctxi;
120
121 list_for_each_entry(ctxi, &cfg->ctx_err_recovery, list)
122 if ((ctxi->ctxid == rctxid) || (ctxi->file == file))
123 return ctxi;
124
125 return NULL;
126}
127
128/**
129 * get_context() - obtains a validated and locked context reference
130 * @cfg: Internal structure associated with the host.
131 * @rctxid: Desired context (raw, un-decoded format).
132 * @arg: LUN information or file associated with request.
133 * @ctx_ctrl: Control information to 'steer' desired lookup.
134 *
135 * NOTE: despite the name pid, in linux, current->pid actually refers
136 * to the lightweight process id (tid) and can change if the process is
137 * multi threaded. The tgid remains constant for the process and only changes
138 * when the process of fork. For all intents and purposes, think of tgid
139 * as a pid in the traditional sense.
140 *
141 * Return: Validated context on success, NULL on failure
142 */
143struct ctx_info *get_context(struct cxlflash_cfg *cfg, u64 rctxid,
144 void *arg, enum ctx_ctrl ctx_ctrl)
145{
146 struct device *dev = &cfg->dev->dev;
147 struct ctx_info *ctxi = NULL;
148 struct lun_access *lun_access = NULL;
149 struct file *file = NULL;
150 struct llun_info *lli = arg;
151 u64 ctxid = DECODE_CTXID(rctxid);
152 int rc;
153 pid_t pid = current->tgid, ctxpid = 0;
154
155 if (ctx_ctrl & CTX_CTRL_FILE) {
156 lli = NULL;
157 file = (struct file *)arg;
158 }
159
160 if (ctx_ctrl & CTX_CTRL_CLONE)
161 pid = current->parent->tgid;
162
163 if (likely(ctxid < MAX_CONTEXT)) {
164 while (true) {
165 rc = mutex_lock_interruptible(&cfg->ctx_tbl_list_mutex);
166 if (rc)
167 goto out;
168
169 ctxi = cfg->ctx_tbl[ctxid];
170 if (ctxi)
171 if ((file && (ctxi->file != file)) ||
172 (!file && (ctxi->ctxid != rctxid)))
173 ctxi = NULL;
174
175 if ((ctx_ctrl & CTX_CTRL_ERR) ||
176 (!ctxi && (ctx_ctrl & CTX_CTRL_ERR_FALLBACK)))
177 ctxi = find_error_context(cfg, rctxid, file);
178 if (!ctxi) {
179 mutex_unlock(&cfg->ctx_tbl_list_mutex);
180 goto out;
181 }
182
183 /*
184 * Need to acquire ownership of the context while still
185 * under the table/list lock to serialize with a remove
186 * thread. Use the 'try' to avoid stalling the
187 * table/list lock for a single context.
188 *
189 * Note that the lock order is:
190 *
191 * cfg->ctx_tbl_list_mutex -> ctxi->mutex
192 *
193 * Therefore release ctx_tbl_list_mutex before retrying.
194 */
195 rc = mutex_trylock(&ctxi->mutex);
196 mutex_unlock(&cfg->ctx_tbl_list_mutex);
197 if (rc)
198 break; /* got the context's lock! */
199 }
200
201 if (ctxi->unavail)
202 goto denied;
203
204 ctxpid = ctxi->pid;
205 if (likely(!(ctx_ctrl & CTX_CTRL_NOPID)))
206 if (pid != ctxpid)
207 goto denied;
208
209 if (lli) {
210 list_for_each_entry(lun_access, &ctxi->luns, list)
211 if (lun_access->lli == lli)
212 goto out;
213 goto denied;
214 }
215 }
216
217out:
218 dev_dbg(dev, "%s: rctxid=%016llX ctxinfo=%p ctxpid=%u pid=%u "
219 "ctx_ctrl=%u\n", __func__, rctxid, ctxi, ctxpid, pid,
220 ctx_ctrl);
221
222 return ctxi;
223
224denied:
225 mutex_unlock(&ctxi->mutex);
226 ctxi = NULL;
227 goto out;
228}
229
230/**
231 * put_context() - release a context that was retrieved from get_context()
232 * @ctxi: Context to release.
233 *
234 * For now, releasing the context equates to unlocking it's mutex.
235 */
236void put_context(struct ctx_info *ctxi)
237{
238 mutex_unlock(&ctxi->mutex);
239}
240
241/**
242 * afu_attach() - attach a context to the AFU
243 * @cfg: Internal structure associated with the host.
244 * @ctxi: Context to attach.
245 *
246 * Upon setting the context capabilities, they must be confirmed with
247 * a read back operation as the context might have been closed since
248 * the mailbox was unlocked. When this occurs, registration is failed.
249 *
250 * Return: 0 on success, -errno on failure
251 */
252static int afu_attach(struct cxlflash_cfg *cfg, struct ctx_info *ctxi)
253{
254 struct device *dev = &cfg->dev->dev;
255 struct afu *afu = cfg->afu;
256 struct sisl_ctrl_map *ctrl_map = ctxi->ctrl_map;
257 int rc = 0;
258 u64 val;
259
260 /* Unlock cap and restrict user to read/write cmds in translated mode */
261 readq_be(&ctrl_map->mbox_r);
262 val = (SISL_CTX_CAP_READ_CMD | SISL_CTX_CAP_WRITE_CMD);
263 writeq_be(val, &ctrl_map->ctx_cap);
264 val = readq_be(&ctrl_map->ctx_cap);
265 if (val != (SISL_CTX_CAP_READ_CMD | SISL_CTX_CAP_WRITE_CMD)) {
266 dev_err(dev, "%s: ctx may be closed val=%016llX\n",
267 __func__, val);
268 rc = -EAGAIN;
269 goto out;
270 }
271
272 /* Set up MMIO registers pointing to the RHT */
273 writeq_be((u64)ctxi->rht_start, &ctrl_map->rht_start);
274 val = SISL_RHT_CNT_ID((u64)MAX_RHT_PER_CONTEXT, (u64)(afu->ctx_hndl));
275 writeq_be(val, &ctrl_map->rht_cnt_id);
276out:
277 dev_dbg(dev, "%s: returning rc=%d\n", __func__, rc);
278 return rc;
279}
280
281/**
282 * read_cap16() - issues a SCSI READ_CAP16 command
283 * @sdev: SCSI device associated with LUN.
284 * @lli: LUN destined for capacity request.
285 *
286 * Return: 0 on success, -errno on failure
287 */
288static int read_cap16(struct scsi_device *sdev, struct llun_info *lli)
289{
290 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
291 struct device *dev = &cfg->dev->dev;
292 struct glun_info *gli = lli->parent;
293 u8 *cmd_buf = NULL;
294 u8 *scsi_cmd = NULL;
295 u8 *sense_buf = NULL;
296 int rc = 0;
297 int result = 0;
298 int retry_cnt = 0;
299 u32 tout = (MC_DISCOVERY_TIMEOUT * HZ);
300
301retry:
302 cmd_buf = kzalloc(CMD_BUFSIZE, GFP_KERNEL);
303 scsi_cmd = kzalloc(MAX_COMMAND_SIZE, GFP_KERNEL);
304 sense_buf = kzalloc(SCSI_SENSE_BUFFERSIZE, GFP_KERNEL);
305 if (unlikely(!cmd_buf || !scsi_cmd || !sense_buf)) {
306 rc = -ENOMEM;
307 goto out;
308 }
309
310 scsi_cmd[0] = SERVICE_ACTION_IN_16; /* read cap(16) */
311 scsi_cmd[1] = SAI_READ_CAPACITY_16; /* service action */
312 put_unaligned_be32(CMD_BUFSIZE, &scsi_cmd[10]);
313
314 dev_dbg(dev, "%s: %ssending cmd(0x%x)\n", __func__,
315 retry_cnt ? "re" : "", scsi_cmd[0]);
316
317 result = scsi_execute(sdev, scsi_cmd, DMA_FROM_DEVICE, cmd_buf,
318 CMD_BUFSIZE, sense_buf, tout, 5, 0, NULL);
319
320 if (driver_byte(result) == DRIVER_SENSE) {
321 result &= ~(0xFF<<24); /* DRIVER_SENSE is not an error */
322 if (result & SAM_STAT_CHECK_CONDITION) {
323 struct scsi_sense_hdr sshdr;
324
325 scsi_normalize_sense(sense_buf, SCSI_SENSE_BUFFERSIZE,
326 &sshdr);
327 switch (sshdr.sense_key) {
328 case NO_SENSE:
329 case RECOVERED_ERROR:
330 /* fall through */
331 case NOT_READY:
332 result &= ~SAM_STAT_CHECK_CONDITION;
333 break;
334 case UNIT_ATTENTION:
335 switch (sshdr.asc) {
336 case 0x29: /* Power on Reset or Device Reset */
337 /* fall through */
338 case 0x2A: /* Device capacity changed */
339 case 0x3F: /* Report LUNs changed */
340 /* Retry the command once more */
341 if (retry_cnt++ < 1) {
342 kfree(cmd_buf);
343 kfree(scsi_cmd);
344 kfree(sense_buf);
345 goto retry;
346 }
347 }
348 break;
349 default:
350 break;
351 }
352 }
353 }
354
355 if (result) {
356 dev_err(dev, "%s: command failed, result=0x%x\n",
357 __func__, result);
358 rc = -EIO;
359 goto out;
360 }
361
362 /*
363 * Read cap was successful, grab values from the buffer;
364 * note that we don't need to worry about unaligned access
365 * as the buffer is allocated on an aligned boundary.
366 */
367 mutex_lock(&gli->mutex);
368 gli->max_lba = be64_to_cpu(*((u64 *)&cmd_buf[0]));
369 gli->blk_len = be32_to_cpu(*((u32 *)&cmd_buf[8]));
370 mutex_unlock(&gli->mutex);
371
372out:
373 kfree(cmd_buf);
374 kfree(scsi_cmd);
375 kfree(sense_buf);
376
377 dev_dbg(dev, "%s: maxlba=%lld blklen=%d rc=%d\n",
378 __func__, gli->max_lba, gli->blk_len, rc);
379 return rc;
380}
381
382/**
383 * get_rhte() - obtains validated resource handle table entry reference
384 * @ctxi: Context owning the resource handle.
385 * @rhndl: Resource handle associated with entry.
386 * @lli: LUN associated with request.
387 *
388 * Return: Validated RHTE on success, NULL on failure
389 */
390struct sisl_rht_entry *get_rhte(struct ctx_info *ctxi, res_hndl_t rhndl,
391 struct llun_info *lli)
392{
393 struct sisl_rht_entry *rhte = NULL;
394
395 if (unlikely(!ctxi->rht_start)) {
396 pr_debug("%s: Context does not have allocated RHT!\n",
397 __func__);
398 goto out;
399 }
400
401 if (unlikely(rhndl >= MAX_RHT_PER_CONTEXT)) {
402 pr_debug("%s: Bad resource handle! (%d)\n", __func__, rhndl);
403 goto out;
404 }
405
406 if (unlikely(ctxi->rht_lun[rhndl] != lli)) {
407 pr_debug("%s: Bad resource handle LUN! (%d)\n",
408 __func__, rhndl);
409 goto out;
410 }
411
412 rhte = &ctxi->rht_start[rhndl];
413 if (unlikely(rhte->nmask == 0)) {
414 pr_debug("%s: Unopened resource handle! (%d)\n",
415 __func__, rhndl);
416 rhte = NULL;
417 goto out;
418 }
419
420out:
421 return rhte;
422}
423
424/**
425 * rhte_checkout() - obtains free/empty resource handle table entry
426 * @ctxi: Context owning the resource handle.
427 * @lli: LUN associated with request.
428 *
429 * Return: Free RHTE on success, NULL on failure
430 */
431struct sisl_rht_entry *rhte_checkout(struct ctx_info *ctxi,
432 struct llun_info *lli)
433{
434 struct sisl_rht_entry *rhte = NULL;
435 int i;
436
437 /* Find a free RHT entry */
438 for (i = 0; i < MAX_RHT_PER_CONTEXT; i++)
439 if (ctxi->rht_start[i].nmask == 0) {
440 rhte = &ctxi->rht_start[i];
441 ctxi->rht_out++;
442 break;
443 }
444
445 if (likely(rhte))
446 ctxi->rht_lun[i] = lli;
447
448 pr_debug("%s: returning rhte=%p (%d)\n", __func__, rhte, i);
449 return rhte;
450}
451
452/**
453 * rhte_checkin() - releases a resource handle table entry
454 * @ctxi: Context owning the resource handle.
455 * @rhte: RHTE to release.
456 */
457void rhte_checkin(struct ctx_info *ctxi,
458 struct sisl_rht_entry *rhte)
459{
460 u32 rsrc_handle = rhte - ctxi->rht_start;
461
462 rhte->nmask = 0;
463 rhte->fp = 0;
464 ctxi->rht_out--;
465 ctxi->rht_lun[rsrc_handle] = NULL;
2cb79266 466 ctxi->rht_needs_ws[rsrc_handle] = false;
65be2c79
MO
467}
468
469/**
470 * rhte_format1() - populates a RHTE for format 1
471 * @rhte: RHTE to populate.
472 * @lun_id: LUN ID of LUN associated with RHTE.
473 * @perm: Desired permissions for RHTE.
474 * @port_sel: Port selection mask
475 */
476static void rht_format1(struct sisl_rht_entry *rhte, u64 lun_id, u32 perm,
477 u32 port_sel)
478{
479 /*
480 * Populate the Format 1 RHT entry for direct access (physical
481 * LUN) using the synchronization sequence defined in the
482 * SISLite specification.
483 */
484 struct sisl_rht_entry_f1 dummy = { 0 };
485 struct sisl_rht_entry_f1 *rhte_f1 = (struct sisl_rht_entry_f1 *)rhte;
486
487 memset(rhte_f1, 0, sizeof(*rhte_f1));
488 rhte_f1->fp = SISL_RHT_FP(1U, 0);
489 dma_wmb(); /* Make setting of format bit visible */
490
491 rhte_f1->lun_id = lun_id;
492 dma_wmb(); /* Make setting of LUN id visible */
493
494 /*
495 * Use a dummy RHT Format 1 entry to build the second dword
496 * of the entry that must be populated in a single write when
497 * enabled (valid bit set to TRUE).
498 */
499 dummy.valid = 0x80;
500 dummy.fp = SISL_RHT_FP(1U, perm);
501 dummy.port_sel = port_sel;
502 rhte_f1->dw = dummy.dw;
503
504 dma_wmb(); /* Make remaining RHT entry fields visible */
505}
506
507/**
508 * cxlflash_lun_attach() - attaches a user to a LUN and manages the LUN's mode
509 * @gli: LUN to attach.
510 * @mode: Desired mode of the LUN.
511 * @locked: Mutex status on current thread.
512 *
513 * Return: 0 on success, -errno on failure
514 */
515int cxlflash_lun_attach(struct glun_info *gli, enum lun_mode mode, bool locked)
516{
517 int rc = 0;
518
519 if (!locked)
520 mutex_lock(&gli->mutex);
521
522 if (gli->mode == MODE_NONE)
523 gli->mode = mode;
524 else if (gli->mode != mode) {
525 pr_debug("%s: LUN operating in mode %d, requested mode %d\n",
526 __func__, gli->mode, mode);
527 rc = -EINVAL;
528 goto out;
529 }
530
531 gli->users++;
532 WARN_ON(gli->users <= 0);
533out:
534 pr_debug("%s: Returning rc=%d gli->mode=%u gli->users=%u\n",
535 __func__, rc, gli->mode, gli->users);
536 if (!locked)
537 mutex_unlock(&gli->mutex);
538 return rc;
539}
540
541/**
542 * cxlflash_lun_detach() - detaches a user from a LUN and resets the LUN's mode
543 * @gli: LUN to detach.
2cb79266
MO
544 *
545 * When resetting the mode, terminate block allocation resources as they
546 * are no longer required (service is safe to call even when block allocation
547 * resources were not present - such as when transitioning from physical mode).
548 * These resources will be reallocated when needed (subsequent transition to
549 * virtual mode).
65be2c79
MO
550 */
551void cxlflash_lun_detach(struct glun_info *gli)
552{
553 mutex_lock(&gli->mutex);
554 WARN_ON(gli->mode == MODE_NONE);
2cb79266 555 if (--gli->users == 0) {
65be2c79 556 gli->mode = MODE_NONE;
2cb79266
MO
557 cxlflash_ba_terminate(&gli->blka.ba_lun);
558 }
65be2c79
MO
559 pr_debug("%s: gli->users=%u\n", __func__, gli->users);
560 WARN_ON(gli->users < 0);
561 mutex_unlock(&gli->mutex);
562}
563
564/**
565 * _cxlflash_disk_release() - releases the specified resource entry
566 * @sdev: SCSI device associated with LUN.
567 * @ctxi: Context owning resources.
568 * @release: Release ioctl data structure.
569 *
2cb79266
MO
570 * For LUNs in virtual mode, the virtual LUN associated with the specified
571 * resource handle is resized to 0 prior to releasing the RHTE. Note that the
572 * AFU sync should _not_ be performed when the context is sitting on the error
573 * recovery list. A context on the error recovery list is not known to the AFU
574 * due to reset. When the context is recovered, it will be reattached and made
575 * known again to the AFU.
65be2c79
MO
576 *
577 * Return: 0 on success, -errno on failure
578 */
579int _cxlflash_disk_release(struct scsi_device *sdev,
580 struct ctx_info *ctxi,
581 struct dk_cxlflash_release *release)
582{
583 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
584 struct device *dev = &cfg->dev->dev;
585 struct llun_info *lli = sdev->hostdata;
586 struct glun_info *gli = lli->parent;
587 struct afu *afu = cfg->afu;
588 bool put_ctx = false;
589
2cb79266 590 struct dk_cxlflash_resize size;
65be2c79
MO
591 res_hndl_t rhndl = release->rsrc_handle;
592
593 int rc = 0;
594 u64 ctxid = DECODE_CTXID(release->context_id),
595 rctxid = release->context_id;
596
597 struct sisl_rht_entry *rhte;
598 struct sisl_rht_entry_f1 *rhte_f1;
599
600 dev_dbg(dev, "%s: ctxid=%llu rhndl=0x%llx gli->mode=%u gli->users=%u\n",
601 __func__, ctxid, release->rsrc_handle, gli->mode, gli->users);
602
603 if (!ctxi) {
604 ctxi = get_context(cfg, rctxid, lli, CTX_CTRL_ERR_FALLBACK);
605 if (unlikely(!ctxi)) {
606 dev_dbg(dev, "%s: Bad context! (%llu)\n",
607 __func__, ctxid);
608 rc = -EINVAL;
609 goto out;
610 }
611
612 put_ctx = true;
613 }
614
615 rhte = get_rhte(ctxi, rhndl, lli);
616 if (unlikely(!rhte)) {
617 dev_dbg(dev, "%s: Bad resource handle! (%d)\n",
618 __func__, rhndl);
619 rc = -EINVAL;
620 goto out;
621 }
622
2cb79266
MO
623 /*
624 * Resize to 0 for virtual LUNS by setting the size
625 * to 0. This will clear LXT_START and LXT_CNT fields
626 * in the RHT entry and properly sync with the AFU.
627 *
628 * Afterwards we clear the remaining fields.
629 */
65be2c79 630 switch (gli->mode) {
2cb79266
MO
631 case MODE_VIRTUAL:
632 marshal_rele_to_resize(release, &size);
633 size.req_size = 0;
634 rc = _cxlflash_vlun_resize(sdev, ctxi, &size);
635 if (rc) {
636 dev_dbg(dev, "%s: resize failed rc %d\n", __func__, rc);
637 goto out;
638 }
639
640 break;
65be2c79
MO
641 case MODE_PHYSICAL:
642 /*
643 * Clear the Format 1 RHT entry for direct access
644 * (physical LUN) using the synchronization sequence
645 * defined in the SISLite specification.
646 */
647 rhte_f1 = (struct sisl_rht_entry_f1 *)rhte;
648
649 rhte_f1->valid = 0;
650 dma_wmb(); /* Make revocation of RHT entry visible */
651
652 rhte_f1->lun_id = 0;
653 dma_wmb(); /* Make clearing of LUN id visible */
654
655 rhte_f1->dw = 0;
656 dma_wmb(); /* Make RHT entry bottom-half clearing visible */
657
658 if (!ctxi->err_recovery_active)
659 cxlflash_afu_sync(afu, ctxid, rhndl, AFU_HW_SYNC);
660 break;
661 default:
662 WARN(1, "Unsupported LUN mode!");
663 goto out;
664 }
665
666 rhte_checkin(ctxi, rhte);
667 cxlflash_lun_detach(gli);
668
669out:
670 if (put_ctx)
671 put_context(ctxi);
672 dev_dbg(dev, "%s: returning rc=%d\n", __func__, rc);
673 return rc;
674}
675
676int cxlflash_disk_release(struct scsi_device *sdev,
677 struct dk_cxlflash_release *release)
678{
679 return _cxlflash_disk_release(sdev, NULL, release);
680}
681
682/**
683 * destroy_context() - releases a context
684 * @cfg: Internal structure associated with the host.
685 * @ctxi: Context to release.
686 *
687 * Note that the rht_lun member of the context was cut from a single
688 * allocation when the context was created and therefore does not need
689 * to be explicitly freed. Also note that we conditionally check for the
690 * existence of the context control map before clearing the RHT registers
691 * and context capabilities because it is possible to destroy a context
692 * while the context is in the error state (previous mapping was removed
693 * [so we don't have to worry about clearing] and context is waiting for
694 * a new mapping).
695 */
696static void destroy_context(struct cxlflash_cfg *cfg,
697 struct ctx_info *ctxi)
698{
699 struct afu *afu = cfg->afu;
700
701 WARN_ON(!list_empty(&ctxi->luns));
702
703 /* Clear RHT registers and drop all capabilities for this context */
704 if (afu->afu_map && ctxi->ctrl_map) {
705 writeq_be(0, &ctxi->ctrl_map->rht_start);
706 writeq_be(0, &ctxi->ctrl_map->rht_cnt_id);
707 writeq_be(0, &ctxi->ctrl_map->ctx_cap);
708 }
709
710 /* Free memory associated with context */
711 free_page((ulong)ctxi->rht_start);
2cb79266 712 kfree(ctxi->rht_needs_ws);
65be2c79
MO
713 kfree(ctxi->rht_lun);
714 kfree(ctxi);
715 atomic_dec_if_positive(&cfg->num_user_contexts);
716}
717
718/**
719 * create_context() - allocates and initializes a context
720 * @cfg: Internal structure associated with the host.
721 * @ctx: Previously obtained CXL context reference.
722 * @ctxid: Previously obtained process element associated with CXL context.
723 * @adap_fd: Previously obtained adapter fd associated with CXL context.
724 * @file: Previously obtained file associated with CXL context.
725 * @perms: User-specified permissions.
726 *
727 * The context's mutex is locked when an allocated context is returned.
728 *
729 * Return: Allocated context on success, NULL on failure
730 */
731static struct ctx_info *create_context(struct cxlflash_cfg *cfg,
732 struct cxl_context *ctx, int ctxid,
733 int adap_fd, struct file *file,
734 u32 perms)
735{
736 struct device *dev = &cfg->dev->dev;
737 struct afu *afu = cfg->afu;
738 struct ctx_info *ctxi = NULL;
739 struct llun_info **lli = NULL;
2cb79266 740 bool *ws = NULL;
65be2c79
MO
741 struct sisl_rht_entry *rhte;
742
743 ctxi = kzalloc(sizeof(*ctxi), GFP_KERNEL);
744 lli = kzalloc((MAX_RHT_PER_CONTEXT * sizeof(*lli)), GFP_KERNEL);
2cb79266
MO
745 ws = kzalloc((MAX_RHT_PER_CONTEXT * sizeof(*ws)), GFP_KERNEL);
746 if (unlikely(!ctxi || !lli || !ws)) {
65be2c79
MO
747 dev_err(dev, "%s: Unable to allocate context!\n", __func__);
748 goto err;
749 }
750
751 rhte = (struct sisl_rht_entry *)get_zeroed_page(GFP_KERNEL);
752 if (unlikely(!rhte)) {
753 dev_err(dev, "%s: Unable to allocate RHT!\n", __func__);
754 goto err;
755 }
756
757 ctxi->rht_lun = lli;
2cb79266 758 ctxi->rht_needs_ws = ws;
65be2c79
MO
759 ctxi->rht_start = rhte;
760 ctxi->rht_perms = perms;
761
762 ctxi->ctrl_map = &afu->afu_map->ctrls[ctxid].ctrl;
763 ctxi->ctxid = ENCODE_CTXID(ctxi, ctxid);
764 ctxi->lfd = adap_fd;
765 ctxi->pid = current->tgid; /* tgid = pid */
766 ctxi->ctx = ctx;
767 ctxi->file = file;
768 mutex_init(&ctxi->mutex);
769 INIT_LIST_HEAD(&ctxi->luns);
770 INIT_LIST_HEAD(&ctxi->list); /* initialize for list_empty() */
771
772 atomic_inc(&cfg->num_user_contexts);
773 mutex_lock(&ctxi->mutex);
774out:
775 return ctxi;
776
777err:
2cb79266 778 kfree(ws);
65be2c79
MO
779 kfree(lli);
780 kfree(ctxi);
781 ctxi = NULL;
782 goto out;
783}
784
785/**
786 * _cxlflash_disk_detach() - detaches a LUN from a context
787 * @sdev: SCSI device associated with LUN.
788 * @ctxi: Context owning resources.
789 * @detach: Detach ioctl data structure.
790 *
791 * As part of the detach, all per-context resources associated with the LUN
792 * are cleaned up. When detaching the last LUN for a context, the context
793 * itself is cleaned up and released.
794 *
795 * Return: 0 on success, -errno on failure
796 */
797static int _cxlflash_disk_detach(struct scsi_device *sdev,
798 struct ctx_info *ctxi,
799 struct dk_cxlflash_detach *detach)
800{
801 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
802 struct device *dev = &cfg->dev->dev;
803 struct llun_info *lli = sdev->hostdata;
804 struct lun_access *lun_access, *t;
805 struct dk_cxlflash_release rel;
806 bool put_ctx = false;
807
808 int i;
809 int rc = 0;
810 int lfd;
811 u64 ctxid = DECODE_CTXID(detach->context_id),
812 rctxid = detach->context_id;
813
814 dev_dbg(dev, "%s: ctxid=%llu\n", __func__, ctxid);
815
816 if (!ctxi) {
817 ctxi = get_context(cfg, rctxid, lli, CTX_CTRL_ERR_FALLBACK);
818 if (unlikely(!ctxi)) {
819 dev_dbg(dev, "%s: Bad context! (%llu)\n",
820 __func__, ctxid);
821 rc = -EINVAL;
822 goto out;
823 }
824
825 put_ctx = true;
826 }
827
828 /* Cleanup outstanding resources tied to this LUN */
829 if (ctxi->rht_out) {
830 marshal_det_to_rele(detach, &rel);
831 for (i = 0; i < MAX_RHT_PER_CONTEXT; i++) {
832 if (ctxi->rht_lun[i] == lli) {
833 rel.rsrc_handle = i;
834 _cxlflash_disk_release(sdev, ctxi, &rel);
835 }
836
837 /* No need to loop further if we're done */
838 if (ctxi->rht_out == 0)
839 break;
840 }
841 }
842
843 /* Take our LUN out of context, free the node */
844 list_for_each_entry_safe(lun_access, t, &ctxi->luns, list)
845 if (lun_access->lli == lli) {
846 list_del(&lun_access->list);
847 kfree(lun_access);
848 lun_access = NULL;
849 break;
850 }
851
852 /* Tear down context following last LUN cleanup */
853 if (list_empty(&ctxi->luns)) {
854 ctxi->unavail = true;
855 mutex_unlock(&ctxi->mutex);
856 mutex_lock(&cfg->ctx_tbl_list_mutex);
857 mutex_lock(&ctxi->mutex);
858
859 /* Might not have been in error list so conditionally remove */
860 if (!list_empty(&ctxi->list))
861 list_del(&ctxi->list);
862 cfg->ctx_tbl[ctxid] = NULL;
863 mutex_unlock(&cfg->ctx_tbl_list_mutex);
864 mutex_unlock(&ctxi->mutex);
865
866 lfd = ctxi->lfd;
867 destroy_context(cfg, ctxi);
868 ctxi = NULL;
869 put_ctx = false;
870
871 /*
872 * As a last step, clean up external resources when not
873 * already on an external cleanup thread, i.e.: close(adap_fd).
874 *
875 * NOTE: this will free up the context from the CXL services,
876 * allowing it to dole out the same context_id on a future
877 * (or even currently in-flight) disk_attach operation.
878 */
879 if (lfd != -1)
880 sys_close(lfd);
881 }
882
883out:
884 if (put_ctx)
885 put_context(ctxi);
886 dev_dbg(dev, "%s: returning rc=%d\n", __func__, rc);
887 return rc;
888}
889
890static int cxlflash_disk_detach(struct scsi_device *sdev,
891 struct dk_cxlflash_detach *detach)
892{
893 return _cxlflash_disk_detach(sdev, NULL, detach);
894}
895
896/**
897 * cxlflash_cxl_release() - release handler for adapter file descriptor
898 * @inode: File-system inode associated with fd.
899 * @file: File installed with adapter file descriptor.
900 *
901 * This routine is the release handler for the fops registered with
902 * the CXL services on an initial attach for a context. It is called
903 * when a close is performed on the adapter file descriptor returned
904 * to the user. Programmatically, the user is not required to perform
905 * the close, as it is handled internally via the detach ioctl when
906 * a context is being removed. Note that nothing prevents the user
907 * from performing a close, but the user should be aware that doing
908 * so is considered catastrophic and subsequent usage of the superpipe
909 * API with previously saved off tokens will fail.
910 *
911 * When initiated from an external close (either by the user or via
912 * a process tear down), the routine derives the context reference
913 * and calls detach for each LUN associated with the context. The
914 * final detach operation will cause the context itself to be freed.
915 * Note that the saved off lfd is reset prior to calling detach to
916 * signify that the final detach should not perform a close.
917 *
918 * When initiated from a detach operation as part of the tear down
919 * of a context, the context is first completely freed and then the
920 * close is performed. This routine will fail to derive the context
921 * reference (due to the context having already been freed) and then
922 * call into the CXL release entry point.
923 *
924 * Thus, with exception to when the CXL process element (context id)
925 * lookup fails (a case that should theoretically never occur), every
926 * call into this routine results in a complete freeing of a context.
927 *
928 * As part of the detach, all per-context resources associated with the LUN
929 * are cleaned up. When detaching the last LUN for a context, the context
930 * itself is cleaned up and released.
931 *
932 * Return: 0 on success
933 */
934static int cxlflash_cxl_release(struct inode *inode, struct file *file)
935{
936 struct cxl_context *ctx = cxl_fops_get_context(file);
937 struct cxlflash_cfg *cfg = container_of(file->f_op, struct cxlflash_cfg,
938 cxl_fops);
939 struct device *dev = &cfg->dev->dev;
940 struct ctx_info *ctxi = NULL;
941 struct dk_cxlflash_detach detach = { { 0 }, 0 };
942 struct lun_access *lun_access, *t;
943 enum ctx_ctrl ctrl = CTX_CTRL_ERR_FALLBACK | CTX_CTRL_FILE;
944 int ctxid;
945
946 ctxid = cxl_process_element(ctx);
947 if (unlikely(ctxid < 0)) {
948 dev_err(dev, "%s: Context %p was closed! (%d)\n",
949 __func__, ctx, ctxid);
950 goto out;
951 }
952
953 ctxi = get_context(cfg, ctxid, file, ctrl);
954 if (unlikely(!ctxi)) {
955 ctxi = get_context(cfg, ctxid, file, ctrl | CTX_CTRL_CLONE);
956 if (!ctxi) {
957 dev_dbg(dev, "%s: Context %d already free!\n",
958 __func__, ctxid);
959 goto out_release;
960 }
961
962 dev_dbg(dev, "%s: Another process owns context %d!\n",
963 __func__, ctxid);
964 put_context(ctxi);
965 goto out;
966 }
967
968 dev_dbg(dev, "%s: close(%d) for context %d\n",
969 __func__, ctxi->lfd, ctxid);
970
971 /* Reset the file descriptor to indicate we're on a close() thread */
972 ctxi->lfd = -1;
973 detach.context_id = ctxi->ctxid;
974 list_for_each_entry_safe(lun_access, t, &ctxi->luns, list)
975 _cxlflash_disk_detach(lun_access->sdev, ctxi, &detach);
976out_release:
977 cxl_fd_release(inode, file);
978out:
979 dev_dbg(dev, "%s: returning\n", __func__);
980 return 0;
981}
982
983/**
984 * unmap_context() - clears a previously established mapping
985 * @ctxi: Context owning the mapping.
986 *
987 * This routine is used to switch between the error notification page
988 * (dummy page of all 1's) and the real mapping (established by the CXL
989 * fault handler).
990 */
991static void unmap_context(struct ctx_info *ctxi)
992{
993 unmap_mapping_range(ctxi->file->f_mapping, 0, 0, 1);
994}
995
996/**
997 * get_err_page() - obtains and allocates the error notification page
998 *
999 * Return: error notification page on success, NULL on failure
1000 */
1001static struct page *get_err_page(void)
1002{
1003 struct page *err_page = global.err_page;
1004
1005 if (unlikely(!err_page)) {
1006 err_page = alloc_page(GFP_KERNEL);
1007 if (unlikely(!err_page)) {
1008 pr_err("%s: Unable to allocate err_page!\n", __func__);
1009 goto out;
1010 }
1011
1012 memset(page_address(err_page), -1, PAGE_SIZE);
1013
1014 /* Serialize update w/ other threads to avoid a leak */
1015 mutex_lock(&global.mutex);
1016 if (likely(!global.err_page))
1017 global.err_page = err_page;
1018 else {
1019 __free_page(err_page);
1020 err_page = global.err_page;
1021 }
1022 mutex_unlock(&global.mutex);
1023 }
1024
1025out:
1026 pr_debug("%s: returning err_page=%p\n", __func__, err_page);
1027 return err_page;
1028}
1029
1030/**
1031 * cxlflash_mmap_fault() - mmap fault handler for adapter file descriptor
1032 * @vma: VM area associated with mapping.
1033 * @vmf: VM fault associated with current fault.
1034 *
1035 * To support error notification via MMIO, faults are 'caught' by this routine
1036 * that was inserted before passing back the adapter file descriptor on attach.
1037 * When a fault occurs, this routine evaluates if error recovery is active and
1038 * if so, installs the error page to 'notify' the user about the error state.
1039 * During normal operation, the fault is simply handled by the original fault
1040 * handler that was installed by CXL services as part of initializing the
1041 * adapter file descriptor. The VMA's page protection bits are toggled to
1042 * indicate cached/not-cached depending on the memory backing the fault.
1043 *
1044 * Return: 0 on success, VM_FAULT_SIGBUS on failure
1045 */
1046static int cxlflash_mmap_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
1047{
1048 struct file *file = vma->vm_file;
1049 struct cxl_context *ctx = cxl_fops_get_context(file);
1050 struct cxlflash_cfg *cfg = container_of(file->f_op, struct cxlflash_cfg,
1051 cxl_fops);
1052 struct device *dev = &cfg->dev->dev;
1053 struct ctx_info *ctxi = NULL;
1054 struct page *err_page = NULL;
1055 enum ctx_ctrl ctrl = CTX_CTRL_ERR_FALLBACK | CTX_CTRL_FILE;
1056 int rc = 0;
1057 int ctxid;
1058
1059 ctxid = cxl_process_element(ctx);
1060 if (unlikely(ctxid < 0)) {
1061 dev_err(dev, "%s: Context %p was closed! (%d)\n",
1062 __func__, ctx, ctxid);
1063 goto err;
1064 }
1065
1066 ctxi = get_context(cfg, ctxid, file, ctrl);
1067 if (unlikely(!ctxi)) {
1068 dev_dbg(dev, "%s: Bad context! (%d)\n", __func__, ctxid);
1069 goto err;
1070 }
1071
1072 dev_dbg(dev, "%s: fault(%d) for context %d\n",
1073 __func__, ctxi->lfd, ctxid);
1074
1075 if (likely(!ctxi->err_recovery_active)) {
1076 vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
1077 rc = ctxi->cxl_mmap_vmops->fault(vma, vmf);
1078 } else {
1079 dev_dbg(dev, "%s: err recovery active, use err_page!\n",
1080 __func__);
1081
1082 err_page = get_err_page();
1083 if (unlikely(!err_page)) {
1084 dev_err(dev, "%s: Could not obtain error page!\n",
1085 __func__);
1086 rc = VM_FAULT_RETRY;
1087 goto out;
1088 }
1089
1090 get_page(err_page);
1091 vmf->page = err_page;
1092 vma->vm_page_prot = pgprot_cached(vma->vm_page_prot);
1093 }
1094
1095out:
1096 if (likely(ctxi))
1097 put_context(ctxi);
1098 dev_dbg(dev, "%s: returning rc=%d\n", __func__, rc);
1099 return rc;
1100
1101err:
1102 rc = VM_FAULT_SIGBUS;
1103 goto out;
1104}
1105
1106/*
1107 * Local MMAP vmops to 'catch' faults
1108 */
1109static const struct vm_operations_struct cxlflash_mmap_vmops = {
1110 .fault = cxlflash_mmap_fault,
1111};
1112
1113/**
1114 * cxlflash_cxl_mmap() - mmap handler for adapter file descriptor
1115 * @file: File installed with adapter file descriptor.
1116 * @vma: VM area associated with mapping.
1117 *
1118 * Installs local mmap vmops to 'catch' faults for error notification support.
1119 *
1120 * Return: 0 on success, -errno on failure
1121 */
1122static int cxlflash_cxl_mmap(struct file *file, struct vm_area_struct *vma)
1123{
1124 struct cxl_context *ctx = cxl_fops_get_context(file);
1125 struct cxlflash_cfg *cfg = container_of(file->f_op, struct cxlflash_cfg,
1126 cxl_fops);
1127 struct device *dev = &cfg->dev->dev;
1128 struct ctx_info *ctxi = NULL;
1129 enum ctx_ctrl ctrl = CTX_CTRL_ERR_FALLBACK | CTX_CTRL_FILE;
1130 int ctxid;
1131 int rc = 0;
1132
1133 ctxid = cxl_process_element(ctx);
1134 if (unlikely(ctxid < 0)) {
1135 dev_err(dev, "%s: Context %p was closed! (%d)\n",
1136 __func__, ctx, ctxid);
1137 rc = -EIO;
1138 goto out;
1139 }
1140
1141 ctxi = get_context(cfg, ctxid, file, ctrl);
1142 if (unlikely(!ctxi)) {
1143 dev_dbg(dev, "%s: Bad context! (%d)\n", __func__, ctxid);
1144 rc = -EIO;
1145 goto out;
1146 }
1147
1148 dev_dbg(dev, "%s: mmap(%d) for context %d\n",
1149 __func__, ctxi->lfd, ctxid);
1150
1151 rc = cxl_fd_mmap(file, vma);
1152 if (likely(!rc)) {
1153 /* Insert ourself in the mmap fault handler path */
1154 ctxi->cxl_mmap_vmops = vma->vm_ops;
1155 vma->vm_ops = &cxlflash_mmap_vmops;
1156 }
1157
1158out:
1159 if (likely(ctxi))
1160 put_context(ctxi);
1161 return rc;
1162}
1163
1164/*
1165 * Local fops for adapter file descriptor
1166 */
1167static const struct file_operations cxlflash_cxl_fops = {
1168 .owner = THIS_MODULE,
1169 .mmap = cxlflash_cxl_mmap,
1170 .release = cxlflash_cxl_release,
1171};
1172
1173/**
1174 * cxlflash_mark_contexts_error() - move contexts to error state and list
1175 * @cfg: Internal structure associated with the host.
1176 *
1177 * A context is only moved over to the error list when there are no outstanding
1178 * references to it. This ensures that a running operation has completed.
1179 *
1180 * Return: 0 on success, -errno on failure
1181 */
1182int cxlflash_mark_contexts_error(struct cxlflash_cfg *cfg)
1183{
1184 int i, rc = 0;
1185 struct ctx_info *ctxi = NULL;
1186
1187 mutex_lock(&cfg->ctx_tbl_list_mutex);
1188
1189 for (i = 0; i < MAX_CONTEXT; i++) {
1190 ctxi = cfg->ctx_tbl[i];
1191 if (ctxi) {
1192 mutex_lock(&ctxi->mutex);
1193 cfg->ctx_tbl[i] = NULL;
1194 list_add(&ctxi->list, &cfg->ctx_err_recovery);
1195 ctxi->err_recovery_active = true;
1196 ctxi->ctrl_map = NULL;
1197 unmap_context(ctxi);
1198 mutex_unlock(&ctxi->mutex);
1199 }
1200 }
1201
1202 mutex_unlock(&cfg->ctx_tbl_list_mutex);
1203 return rc;
1204}
1205
1206/*
1207 * Dummy NULL fops
1208 */
1209static const struct file_operations null_fops = {
1210 .owner = THIS_MODULE,
1211};
1212
1213/**
1214 * cxlflash_disk_attach() - attach a LUN to a context
1215 * @sdev: SCSI device associated with LUN.
1216 * @attach: Attach ioctl data structure.
1217 *
1218 * Creates a context and attaches LUN to it. A LUN can only be attached
1219 * one time to a context (subsequent attaches for the same context/LUN pair
1220 * are not supported). Additional LUNs can be attached to a context by
1221 * specifying the 'reuse' flag defined in the cxlflash_ioctl.h header.
1222 *
1223 * Return: 0 on success, -errno on failure
1224 */
1225static int cxlflash_disk_attach(struct scsi_device *sdev,
1226 struct dk_cxlflash_attach *attach)
1227{
1228 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1229 struct device *dev = &cfg->dev->dev;
1230 struct afu *afu = cfg->afu;
1231 struct llun_info *lli = sdev->hostdata;
1232 struct glun_info *gli = lli->parent;
1233 struct cxl_ioctl_start_work *work;
1234 struct ctx_info *ctxi = NULL;
1235 struct lun_access *lun_access = NULL;
1236 int rc = 0;
1237 u32 perms;
1238 int ctxid = -1;
1239 u64 rctxid = 0UL;
1240 struct file *file;
1241
1242 struct cxl_context *ctx;
1243
1244 int fd = -1;
1245
1246 /* On first attach set fileops */
1247 if (atomic_read(&cfg->num_user_contexts) == 0)
1248 cfg->cxl_fops = cxlflash_cxl_fops;
1249
1250 if (attach->num_interrupts > 4) {
1251 dev_dbg(dev, "%s: Cannot support this many interrupts %llu\n",
1252 __func__, attach->num_interrupts);
1253 rc = -EINVAL;
1254 goto out;
1255 }
1256
1257 if (gli->max_lba == 0) {
1258 dev_dbg(dev, "%s: No capacity info for this LUN (%016llX)\n",
1259 __func__, lli->lun_id[sdev->channel]);
1260 rc = read_cap16(sdev, lli);
1261 if (rc) {
1262 dev_err(dev, "%s: Invalid device! (%d)\n",
1263 __func__, rc);
1264 rc = -ENODEV;
1265 goto out;
1266 }
1267 dev_dbg(dev, "%s: LBA = %016llX\n", __func__, gli->max_lba);
1268 dev_dbg(dev, "%s: BLK_LEN = %08X\n", __func__, gli->blk_len);
1269 }
1270
1271 if (attach->hdr.flags & DK_CXLFLASH_ATTACH_REUSE_CONTEXT) {
1272 rctxid = attach->context_id;
1273 ctxi = get_context(cfg, rctxid, NULL, 0);
1274 if (!ctxi) {
1275 dev_dbg(dev, "%s: Bad context! (%016llX)\n",
1276 __func__, rctxid);
1277 rc = -EINVAL;
1278 goto out;
1279 }
1280
1281 list_for_each_entry(lun_access, &ctxi->luns, list)
1282 if (lun_access->lli == lli) {
1283 dev_dbg(dev, "%s: Already attached!\n",
1284 __func__);
1285 rc = -EINVAL;
1286 goto out;
1287 }
1288 }
1289
1290 lun_access = kzalloc(sizeof(*lun_access), GFP_KERNEL);
1291 if (unlikely(!lun_access)) {
1292 dev_err(dev, "%s: Unable to allocate lun_access!\n", __func__);
1293 rc = -ENOMEM;
1294 goto out;
1295 }
1296
1297 lun_access->lli = lli;
1298 lun_access->sdev = sdev;
1299
1300 /* Non-NULL context indicates reuse */
1301 if (ctxi) {
1302 dev_dbg(dev, "%s: Reusing context for LUN! (%016llX)\n",
1303 __func__, rctxid);
1304 list_add(&lun_access->list, &ctxi->luns);
1305 fd = ctxi->lfd;
1306 goto out_attach;
1307 }
1308
1309 ctx = cxl_dev_context_init(cfg->dev);
1310 if (unlikely(IS_ERR_OR_NULL(ctx))) {
1311 dev_err(dev, "%s: Could not initialize context %p\n",
1312 __func__, ctx);
1313 rc = -ENODEV;
1314 goto err0;
1315 }
1316
1317 ctxid = cxl_process_element(ctx);
1318 if (unlikely((ctxid > MAX_CONTEXT) || (ctxid < 0))) {
1319 dev_err(dev, "%s: ctxid (%d) invalid!\n", __func__, ctxid);
1320 rc = -EPERM;
1321 goto err1;
1322 }
1323
1324 file = cxl_get_fd(ctx, &cfg->cxl_fops, &fd);
1325 if (unlikely(fd < 0)) {
1326 rc = -ENODEV;
1327 dev_err(dev, "%s: Could not get file descriptor\n", __func__);
1328 goto err1;
1329 }
1330
1331 /* Translate read/write O_* flags from fcntl.h to AFU permission bits */
1332 perms = SISL_RHT_PERM(attach->hdr.flags + 1);
1333
1334 ctxi = create_context(cfg, ctx, ctxid, fd, file, perms);
1335 if (unlikely(!ctxi)) {
1336 dev_err(dev, "%s: Failed to create context! (%d)\n",
1337 __func__, ctxid);
1338 goto err2;
1339 }
1340
1341 work = &ctxi->work;
1342 work->num_interrupts = attach->num_interrupts;
1343 work->flags = CXL_START_WORK_NUM_IRQS;
1344
1345 rc = cxl_start_work(ctx, work);
1346 if (unlikely(rc)) {
1347 dev_dbg(dev, "%s: Could not start context rc=%d\n",
1348 __func__, rc);
1349 goto err3;
1350 }
1351
1352 rc = afu_attach(cfg, ctxi);
1353 if (unlikely(rc)) {
1354 dev_err(dev, "%s: Could not attach AFU rc %d\n", __func__, rc);
1355 goto err4;
1356 }
1357
1358 /*
1359 * No error paths after this point. Once the fd is installed it's
1360 * visible to user space and can't be undone safely on this thread.
1361 * There is no need to worry about a deadlock here because no one
1362 * knows about us yet; we can be the only one holding our mutex.
1363 */
1364 list_add(&lun_access->list, &ctxi->luns);
1365 mutex_unlock(&ctxi->mutex);
1366 mutex_lock(&cfg->ctx_tbl_list_mutex);
1367 mutex_lock(&ctxi->mutex);
1368 cfg->ctx_tbl[ctxid] = ctxi;
1369 mutex_unlock(&cfg->ctx_tbl_list_mutex);
1370 fd_install(fd, file);
1371
1372out_attach:
1373 attach->hdr.return_flags = 0;
1374 attach->context_id = ctxi->ctxid;
1375 attach->block_size = gli->blk_len;
1376 attach->mmio_size = sizeof(afu->afu_map->hosts[0].harea);
1377 attach->last_lba = gli->max_lba;
1378 attach->max_xfer = (sdev->host->max_sectors * 512) / gli->blk_len;
1379
1380out:
1381 attach->adap_fd = fd;
1382
1383 if (ctxi)
1384 put_context(ctxi);
1385
1386 dev_dbg(dev, "%s: returning ctxid=%d fd=%d bs=%lld rc=%d llba=%lld\n",
1387 __func__, ctxid, fd, attach->block_size, rc, attach->last_lba);
1388 return rc;
1389
1390err4:
1391 cxl_stop_context(ctx);
1392err3:
1393 put_context(ctxi);
1394 destroy_context(cfg, ctxi);
1395 ctxi = NULL;
1396err2:
1397 /*
1398 * Here, we're overriding the fops with a dummy all-NULL fops because
1399 * fput() calls the release fop, which will cause us to mistakenly
1400 * call into the CXL code. Rather than try to add yet more complexity
1401 * to that routine (cxlflash_cxl_release) we should try to fix the
1402 * issue here.
1403 */
1404 file->f_op = &null_fops;
1405 fput(file);
1406 put_unused_fd(fd);
1407 fd = -1;
1408err1:
1409 cxl_release_context(ctx);
1410err0:
1411 kfree(lun_access);
1412 goto out;
1413}
1414
1415/**
1416 * recover_context() - recovers a context in error
1417 * @cfg: Internal structure associated with the host.
1418 * @ctxi: Context to release.
1419 *
1420 * Restablishes the state for a context-in-error.
1421 *
1422 * Return: 0 on success, -errno on failure
1423 */
1424static int recover_context(struct cxlflash_cfg *cfg, struct ctx_info *ctxi)
1425{
1426 struct device *dev = &cfg->dev->dev;
1427 int rc = 0;
1428 int old_fd, fd = -1;
1429 int ctxid = -1;
1430 struct file *file;
1431 struct cxl_context *ctx;
1432 struct afu *afu = cfg->afu;
1433
1434 ctx = cxl_dev_context_init(cfg->dev);
1435 if (unlikely(IS_ERR_OR_NULL(ctx))) {
1436 dev_err(dev, "%s: Could not initialize context %p\n",
1437 __func__, ctx);
1438 rc = -ENODEV;
1439 goto out;
1440 }
1441
1442 ctxid = cxl_process_element(ctx);
1443 if (unlikely((ctxid > MAX_CONTEXT) || (ctxid < 0))) {
1444 dev_err(dev, "%s: ctxid (%d) invalid!\n", __func__, ctxid);
1445 rc = -EPERM;
1446 goto err1;
1447 }
1448
1449 file = cxl_get_fd(ctx, &cfg->cxl_fops, &fd);
1450 if (unlikely(fd < 0)) {
1451 rc = -ENODEV;
1452 dev_err(dev, "%s: Could not get file descriptor\n", __func__);
1453 goto err1;
1454 }
1455
1456 rc = cxl_start_work(ctx, &ctxi->work);
1457 if (unlikely(rc)) {
1458 dev_dbg(dev, "%s: Could not start context rc=%d\n",
1459 __func__, rc);
1460 goto err2;
1461 }
1462
1463 /* Update with new MMIO area based on updated context id */
1464 ctxi->ctrl_map = &afu->afu_map->ctrls[ctxid].ctrl;
1465
1466 rc = afu_attach(cfg, ctxi);
1467 if (rc) {
1468 dev_err(dev, "%s: Could not attach AFU rc %d\n", __func__, rc);
1469 goto err3;
1470 }
1471
1472 /*
1473 * No error paths after this point. Once the fd is installed it's
1474 * visible to user space and can't be undone safely on this thread.
1475 */
1476 old_fd = ctxi->lfd;
1477 ctxi->ctxid = ENCODE_CTXID(ctxi, ctxid);
1478 ctxi->lfd = fd;
1479 ctxi->ctx = ctx;
1480 ctxi->file = file;
1481
1482 /*
1483 * Put context back in table (note the reinit of the context list);
1484 * we must first drop the context's mutex and then acquire it in
1485 * order with the table/list mutex to avoid a deadlock - safe to do
1486 * here because no one can find us at this moment in time.
1487 */
1488 mutex_unlock(&ctxi->mutex);
1489 mutex_lock(&cfg->ctx_tbl_list_mutex);
1490 mutex_lock(&ctxi->mutex);
1491 list_del_init(&ctxi->list);
1492 cfg->ctx_tbl[ctxid] = ctxi;
1493 mutex_unlock(&cfg->ctx_tbl_list_mutex);
1494 fd_install(fd, file);
1495
1496 /* Release the original adapter fd and associated CXL resources */
1497 sys_close(old_fd);
1498out:
1499 dev_dbg(dev, "%s: returning ctxid=%d fd=%d rc=%d\n",
1500 __func__, ctxid, fd, rc);
1501 return rc;
1502
1503err3:
1504 cxl_stop_context(ctx);
1505err2:
1506 fput(file);
1507 put_unused_fd(fd);
1508err1:
1509 cxl_release_context(ctx);
1510 goto out;
1511}
1512
1513/**
1514 * check_state() - checks and responds to the current adapter state
1515 * @cfg: Internal structure associated with the host.
1516 *
1517 * This routine can block and should only be used on process context.
1518 * Note that when waking up from waiting in limbo, the state is unknown
1519 * and must be checked again before proceeding.
1520 *
1521 * Return: 0 on success, -errno on failure
1522 */
1523static int check_state(struct cxlflash_cfg *cfg)
1524{
1525 struct device *dev = &cfg->dev->dev;
1526 int rc = 0;
1527
1528retry:
1529 switch (cfg->state) {
1530 case STATE_LIMBO:
1531 dev_dbg(dev, "%s: Limbo, going to wait...\n", __func__);
1532 rc = wait_event_interruptible(cfg->limbo_waitq,
1533 cfg->state != STATE_LIMBO);
1534 if (unlikely(rc))
1535 break;
1536 goto retry;
1537 case STATE_FAILTERM:
1538 dev_dbg(dev, "%s: Failed/Terminating!\n", __func__);
1539 rc = -ENODEV;
1540 break;
1541 default:
1542 break;
1543 }
1544
1545 return rc;
1546}
1547
1548/**
1549 * cxlflash_afu_recover() - initiates AFU recovery
1550 * @sdev: SCSI device associated with LUN.
1551 * @recover: Recover ioctl data structure.
1552 *
1553 * Only a single recovery is allowed at a time to avoid exhausting CXL
1554 * resources (leading to recovery failure) in the event that we're up
1555 * against the maximum number of contexts limit. For similar reasons,
1556 * a context recovery is retried if there are multiple recoveries taking
1557 * place at the same time and the failure was due to CXL services being
1558 * unable to keep up.
1559 *
1560 * Because a user can detect an error condition before the kernel, it is
1561 * quite possible for this routine to act as the kernel's EEH detection
1562 * source (MMIO read of mbox_r). Because of this, there is a window of
1563 * time where an EEH might have been detected but not yet 'serviced'
1564 * (callback invoked, causing the device to enter limbo state). To avoid
1565 * looping in this routine during that window, a 1 second sleep is in place
1566 * between the time the MMIO failure is detected and the time a wait on the
1567 * limbo wait queue is attempted via check_state().
1568 *
1569 * Return: 0 on success, -errno on failure
1570 */
1571static int cxlflash_afu_recover(struct scsi_device *sdev,
1572 struct dk_cxlflash_recover_afu *recover)
1573{
1574 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1575 struct device *dev = &cfg->dev->dev;
1576 struct llun_info *lli = sdev->hostdata;
1577 struct afu *afu = cfg->afu;
1578 struct ctx_info *ctxi = NULL;
1579 struct mutex *mutex = &cfg->ctx_recovery_mutex;
1580 u64 ctxid = DECODE_CTXID(recover->context_id),
1581 rctxid = recover->context_id;
1582 long reg;
1583 int lretry = 20; /* up to 2 seconds */
1584 int rc = 0;
1585
1586 atomic_inc(&cfg->recovery_threads);
1587 rc = mutex_lock_interruptible(mutex);
1588 if (rc)
1589 goto out;
1590
1591 dev_dbg(dev, "%s: reason 0x%016llX rctxid=%016llX\n",
1592 __func__, recover->reason, rctxid);
1593
1594retry:
1595 /* Ensure that this process is attached to the context */
1596 ctxi = get_context(cfg, rctxid, lli, CTX_CTRL_ERR_FALLBACK);
1597 if (unlikely(!ctxi)) {
1598 dev_dbg(dev, "%s: Bad context! (%llu)\n", __func__, ctxid);
1599 rc = -EINVAL;
1600 goto out;
1601 }
1602
1603 if (ctxi->err_recovery_active) {
1604retry_recover:
1605 rc = recover_context(cfg, ctxi);
1606 if (unlikely(rc)) {
1607 dev_err(dev, "%s: Recovery failed for context %llu (rc=%d)\n",
1608 __func__, ctxid, rc);
1609 if ((rc == -ENODEV) &&
1610 ((atomic_read(&cfg->recovery_threads) > 1) ||
1611 (lretry--))) {
1612 dev_dbg(dev, "%s: Going to try again!\n",
1613 __func__);
1614 mutex_unlock(mutex);
1615 msleep(100);
1616 rc = mutex_lock_interruptible(mutex);
1617 if (rc)
1618 goto out;
1619 goto retry_recover;
1620 }
1621
1622 goto out;
1623 }
1624
1625 ctxi->err_recovery_active = false;
1626 recover->context_id = ctxi->ctxid;
1627 recover->adap_fd = ctxi->lfd;
1628 recover->mmio_size = sizeof(afu->afu_map->hosts[0].harea);
1629 recover->hdr.return_flags |=
1630 DK_CXLFLASH_RECOVER_AFU_CONTEXT_RESET;
1631 goto out;
1632 }
1633
1634 /* Test if in error state */
1635 reg = readq_be(&afu->ctrl_map->mbox_r);
1636 if (reg == -1) {
1637 dev_dbg(dev, "%s: MMIO read fail! Wait for recovery...\n",
1638 __func__);
1639 mutex_unlock(&ctxi->mutex);
1640 ctxi = NULL;
1641 ssleep(1);
1642 rc = check_state(cfg);
1643 if (unlikely(rc))
1644 goto out;
1645 goto retry;
1646 }
1647
1648 dev_dbg(dev, "%s: MMIO working, no recovery required!\n", __func__);
1649out:
1650 if (likely(ctxi))
1651 put_context(ctxi);
1652 mutex_unlock(mutex);
1653 atomic_dec_if_positive(&cfg->recovery_threads);
1654 return rc;
1655}
1656
1657/**
1658 * process_sense() - evaluates and processes sense data
1659 * @sdev: SCSI device associated with LUN.
1660 * @verify: Verify ioctl data structure.
1661 *
1662 * Return: 0 on success, -errno on failure
1663 */
1664static int process_sense(struct scsi_device *sdev,
1665 struct dk_cxlflash_verify *verify)
1666{
1667 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1668 struct device *dev = &cfg->dev->dev;
1669 struct llun_info *lli = sdev->hostdata;
1670 struct glun_info *gli = lli->parent;
1671 u64 prev_lba = gli->max_lba;
1672 struct scsi_sense_hdr sshdr = { 0 };
1673 int rc = 0;
1674
1675 rc = scsi_normalize_sense((const u8 *)&verify->sense_data,
1676 DK_CXLFLASH_VERIFY_SENSE_LEN, &sshdr);
1677 if (!rc) {
1678 dev_err(dev, "%s: Failed to normalize sense data!\n", __func__);
1679 rc = -EINVAL;
1680 goto out;
1681 }
1682
1683 switch (sshdr.sense_key) {
1684 case NO_SENSE:
1685 case RECOVERED_ERROR:
1686 /* fall through */
1687 case NOT_READY:
1688 break;
1689 case UNIT_ATTENTION:
1690 switch (sshdr.asc) {
1691 case 0x29: /* Power on Reset or Device Reset */
1692 /* fall through */
1693 case 0x2A: /* Device settings/capacity changed */
1694 rc = read_cap16(sdev, lli);
1695 if (rc) {
1696 rc = -ENODEV;
1697 break;
1698 }
1699 if (prev_lba != gli->max_lba)
1700 dev_dbg(dev, "%s: Capacity changed old=%lld "
1701 "new=%lld\n", __func__, prev_lba,
1702 gli->max_lba);
1703 break;
1704 case 0x3F: /* Report LUNs changed, Rescan. */
1705 scsi_scan_host(cfg->host);
1706 break;
1707 default:
1708 rc = -EIO;
1709 break;
1710 }
1711 break;
1712 default:
1713 rc = -EIO;
1714 break;
1715 }
1716out:
1717 dev_dbg(dev, "%s: sense_key %x asc %x ascq %x rc %d\n", __func__,
1718 sshdr.sense_key, sshdr.asc, sshdr.ascq, rc);
1719 return rc;
1720}
1721
1722/**
1723 * cxlflash_disk_verify() - verifies a LUN is the same and handle size changes
1724 * @sdev: SCSI device associated with LUN.
1725 * @verify: Verify ioctl data structure.
1726 *
1727 * Return: 0 on success, -errno on failure
1728 */
1729static int cxlflash_disk_verify(struct scsi_device *sdev,
1730 struct dk_cxlflash_verify *verify)
1731{
1732 int rc = 0;
1733 struct ctx_info *ctxi = NULL;
1734 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1735 struct device *dev = &cfg->dev->dev;
1736 struct llun_info *lli = sdev->hostdata;
1737 struct glun_info *gli = lli->parent;
1738 struct sisl_rht_entry *rhte = NULL;
1739 res_hndl_t rhndl = verify->rsrc_handle;
1740 u64 ctxid = DECODE_CTXID(verify->context_id),
1741 rctxid = verify->context_id;
1742 u64 last_lba = 0;
1743
1744 dev_dbg(dev, "%s: ctxid=%llu rhndl=%016llX, hint=%016llX, "
1745 "flags=%016llX\n", __func__, ctxid, verify->rsrc_handle,
1746 verify->hint, verify->hdr.flags);
1747
1748 ctxi = get_context(cfg, rctxid, lli, 0);
1749 if (unlikely(!ctxi)) {
1750 dev_dbg(dev, "%s: Bad context! (%llu)\n", __func__, ctxid);
1751 rc = -EINVAL;
1752 goto out;
1753 }
1754
1755 rhte = get_rhte(ctxi, rhndl, lli);
1756 if (unlikely(!rhte)) {
1757 dev_dbg(dev, "%s: Bad resource handle! (%d)\n",
1758 __func__, rhndl);
1759 rc = -EINVAL;
1760 goto out;
1761 }
1762
1763 /*
1764 * Look at the hint/sense to see if it requires us to redrive
1765 * inquiry (i.e. the Unit attention is due to the WWN changing).
1766 */
1767 if (verify->hint & DK_CXLFLASH_VERIFY_HINT_SENSE) {
1768 rc = process_sense(sdev, verify);
1769 if (unlikely(rc)) {
1770 dev_err(dev, "%s: Failed to validate sense data (%d)\n",
1771 __func__, rc);
1772 goto out;
1773 }
1774 }
1775
1776 switch (gli->mode) {
1777 case MODE_PHYSICAL:
1778 last_lba = gli->max_lba;
1779 break;
2cb79266
MO
1780 case MODE_VIRTUAL:
1781 /* Cast lxt_cnt to u64 for multiply to be treated as 64bit op */
1782 last_lba = ((u64)rhte->lxt_cnt * MC_CHUNK_SIZE * gli->blk_len);
1783 last_lba /= CXLFLASH_BLOCK_SIZE;
1784 last_lba--;
1785 break;
65be2c79
MO
1786 default:
1787 WARN(1, "Unsupported LUN mode!");
1788 }
1789
1790 verify->last_lba = last_lba;
1791
1792out:
1793 if (likely(ctxi))
1794 put_context(ctxi);
1795 dev_dbg(dev, "%s: returning rc=%d llba=%llX\n",
1796 __func__, rc, verify->last_lba);
1797 return rc;
1798}
1799
1800/**
1801 * decode_ioctl() - translates an encoded ioctl to an easily identifiable string
1802 * @cmd: The ioctl command to decode.
1803 *
1804 * Return: A string identifying the decoded ioctl.
1805 */
1806static char *decode_ioctl(int cmd)
1807{
1808 switch (cmd) {
1809 case DK_CXLFLASH_ATTACH:
1810 return __stringify_1(DK_CXLFLASH_ATTACH);
1811 case DK_CXLFLASH_USER_DIRECT:
1812 return __stringify_1(DK_CXLFLASH_USER_DIRECT);
2cb79266
MO
1813 case DK_CXLFLASH_USER_VIRTUAL:
1814 return __stringify_1(DK_CXLFLASH_USER_VIRTUAL);
1815 case DK_CXLFLASH_VLUN_RESIZE:
1816 return __stringify_1(DK_CXLFLASH_VLUN_RESIZE);
65be2c79
MO
1817 case DK_CXLFLASH_RELEASE:
1818 return __stringify_1(DK_CXLFLASH_RELEASE);
1819 case DK_CXLFLASH_DETACH:
1820 return __stringify_1(DK_CXLFLASH_DETACH);
1821 case DK_CXLFLASH_VERIFY:
1822 return __stringify_1(DK_CXLFLASH_VERIFY);
2cb79266
MO
1823 case DK_CXLFLASH_VLUN_CLONE:
1824 return __stringify_1(DK_CXLFLASH_VLUN_CLONE);
65be2c79
MO
1825 case DK_CXLFLASH_RECOVER_AFU:
1826 return __stringify_1(DK_CXLFLASH_RECOVER_AFU);
1827 case DK_CXLFLASH_MANAGE_LUN:
1828 return __stringify_1(DK_CXLFLASH_MANAGE_LUN);
1829 }
1830
1831 return "UNKNOWN";
1832}
1833
1834/**
1835 * cxlflash_disk_direct_open() - opens a direct (physical) disk
1836 * @sdev: SCSI device associated with LUN.
1837 * @arg: UDirect ioctl data structure.
1838 *
1839 * On successful return, the user is informed of the resource handle
1840 * to be used to identify the direct lun and the size (in blocks) of
1841 * the direct lun in last LBA format.
1842 *
1843 * Return: 0 on success, -errno on failure
1844 */
1845static int cxlflash_disk_direct_open(struct scsi_device *sdev, void *arg)
1846{
1847 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1848 struct device *dev = &cfg->dev->dev;
1849 struct afu *afu = cfg->afu;
1850 struct llun_info *lli = sdev->hostdata;
1851 struct glun_info *gli = lli->parent;
1852
1853 struct dk_cxlflash_udirect *pphys = (struct dk_cxlflash_udirect *)arg;
1854
1855 u64 ctxid = DECODE_CTXID(pphys->context_id),
1856 rctxid = pphys->context_id;
1857 u64 lun_size = 0;
1858 u64 last_lba = 0;
1859 u64 rsrc_handle = -1;
1860 u32 port = CHAN2PORT(sdev->channel);
1861
1862 int rc = 0;
1863
1864 struct ctx_info *ctxi = NULL;
1865 struct sisl_rht_entry *rhte = NULL;
1866
1867 pr_debug("%s: ctxid=%llu ls=0x%llx\n", __func__, ctxid, lun_size);
1868
1869 rc = cxlflash_lun_attach(gli, MODE_PHYSICAL, false);
1870 if (unlikely(rc)) {
1871 dev_dbg(dev, "%s: Failed to attach to LUN! (PHYSICAL)\n",
1872 __func__);
1873 goto out;
1874 }
1875
1876 ctxi = get_context(cfg, rctxid, lli, 0);
1877 if (unlikely(!ctxi)) {
1878 dev_dbg(dev, "%s: Bad context! (%llu)\n", __func__, ctxid);
1879 rc = -EINVAL;
1880 goto err1;
1881 }
1882
1883 rhte = rhte_checkout(ctxi, lli);
1884 if (unlikely(!rhte)) {
1885 dev_dbg(dev, "%s: too many opens for this context\n", __func__);
1886 rc = -EMFILE; /* too many opens */
1887 goto err1;
1888 }
1889
1890 rsrc_handle = (rhte - ctxi->rht_start);
1891
1892 rht_format1(rhte, lli->lun_id[sdev->channel], ctxi->rht_perms, port);
1893 cxlflash_afu_sync(afu, ctxid, rsrc_handle, AFU_LW_SYNC);
1894
1895 last_lba = gli->max_lba;
1896 pphys->hdr.return_flags = 0;
1897 pphys->last_lba = last_lba;
1898 pphys->rsrc_handle = rsrc_handle;
1899
1900out:
1901 if (likely(ctxi))
1902 put_context(ctxi);
1903 dev_dbg(dev, "%s: returning handle 0x%llx rc=%d llba %lld\n",
1904 __func__, rsrc_handle, rc, last_lba);
1905 return rc;
1906
1907err1:
1908 cxlflash_lun_detach(gli);
1909 goto out;
1910}
1911
1912/**
1913 * ioctl_common() - common IOCTL handler for driver
1914 * @sdev: SCSI device associated with LUN.
1915 * @cmd: IOCTL command.
1916 *
1917 * Handles common fencing operations that are valid for multiple ioctls. Always
1918 * allow through ioctls that are cleanup oriented in nature, even when operating
1919 * in a failed/terminating state.
1920 *
1921 * Return: 0 on success, -errno on failure
1922 */
1923static int ioctl_common(struct scsi_device *sdev, int cmd)
1924{
1925 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1926 struct device *dev = &cfg->dev->dev;
1927 struct llun_info *lli = sdev->hostdata;
1928 int rc = 0;
1929
1930 if (unlikely(!lli)) {
1931 dev_dbg(dev, "%s: Unknown LUN\n", __func__);
1932 rc = -EINVAL;
1933 goto out;
1934 }
1935
1936 rc = check_state(cfg);
1937 if (unlikely(rc) && (cfg->state == STATE_FAILTERM)) {
1938 switch (cmd) {
2cb79266 1939 case DK_CXLFLASH_VLUN_RESIZE:
65be2c79
MO
1940 case DK_CXLFLASH_RELEASE:
1941 case DK_CXLFLASH_DETACH:
1942 dev_dbg(dev, "%s: Command override! (%d)\n",
1943 __func__, rc);
1944 rc = 0;
1945 break;
1946 }
1947 }
1948out:
1949 return rc;
1950}
1951
1952/**
1953 * cxlflash_ioctl() - IOCTL handler for driver
1954 * @sdev: SCSI device associated with LUN.
1955 * @cmd: IOCTL command.
1956 * @arg: Userspace ioctl data structure.
1957 *
1958 * Return: 0 on success, -errno on failure
1959 */
1960int cxlflash_ioctl(struct scsi_device *sdev, int cmd, void __user *arg)
1961{
1962 typedef int (*sioctl) (struct scsi_device *, void *);
1963
1964 struct cxlflash_cfg *cfg = (struct cxlflash_cfg *)sdev->host->hostdata;
1965 struct device *dev = &cfg->dev->dev;
1966 struct afu *afu = cfg->afu;
1967 struct dk_cxlflash_hdr *hdr;
1968 char buf[sizeof(union cxlflash_ioctls)];
1969 size_t size = 0;
1970 bool known_ioctl = false;
1971 int idx;
1972 int rc = 0;
1973 struct Scsi_Host *shost = sdev->host;
1974 sioctl do_ioctl = NULL;
1975
1976 static const struct {
1977 size_t size;
1978 sioctl ioctl;
1979 } ioctl_tbl[] = { /* NOTE: order matters here */
1980 {sizeof(struct dk_cxlflash_attach), (sioctl)cxlflash_disk_attach},
1981 {sizeof(struct dk_cxlflash_udirect), cxlflash_disk_direct_open},
1982 {sizeof(struct dk_cxlflash_release), (sioctl)cxlflash_disk_release},
1983 {sizeof(struct dk_cxlflash_detach), (sioctl)cxlflash_disk_detach},
1984 {sizeof(struct dk_cxlflash_verify), (sioctl)cxlflash_disk_verify},
1985 {sizeof(struct dk_cxlflash_recover_afu), (sioctl)cxlflash_afu_recover},
1986 {sizeof(struct dk_cxlflash_manage_lun), (sioctl)cxlflash_manage_lun},
2cb79266
MO
1987 {sizeof(struct dk_cxlflash_uvirtual), cxlflash_disk_virtual_open},
1988 {sizeof(struct dk_cxlflash_resize), (sioctl)cxlflash_vlun_resize},
1989 {sizeof(struct dk_cxlflash_clone), (sioctl)cxlflash_disk_clone},
65be2c79
MO
1990 };
1991
1992 /* Restrict command set to physical support only for internal LUN */
1993 if (afu->internal_lun)
1994 switch (cmd) {
1995 case DK_CXLFLASH_RELEASE:
2cb79266
MO
1996 case DK_CXLFLASH_USER_VIRTUAL:
1997 case DK_CXLFLASH_VLUN_RESIZE:
1998 case DK_CXLFLASH_VLUN_CLONE:
65be2c79
MO
1999 dev_dbg(dev, "%s: %s not supported for lun_mode=%d\n",
2000 __func__, decode_ioctl(cmd), afu->internal_lun);
2001 rc = -EINVAL;
2002 goto cxlflash_ioctl_exit;
2003 }
2004
2005 switch (cmd) {
2006 case DK_CXLFLASH_ATTACH:
2007 case DK_CXLFLASH_USER_DIRECT:
2008 case DK_CXLFLASH_RELEASE:
2009 case DK_CXLFLASH_DETACH:
2010 case DK_CXLFLASH_VERIFY:
2011 case DK_CXLFLASH_RECOVER_AFU:
2cb79266
MO
2012 case DK_CXLFLASH_USER_VIRTUAL:
2013 case DK_CXLFLASH_VLUN_RESIZE:
2014 case DK_CXLFLASH_VLUN_CLONE:
65be2c79
MO
2015 dev_dbg(dev, "%s: %s (%08X) on dev(%d/%d/%d/%llu)\n",
2016 __func__, decode_ioctl(cmd), cmd, shost->host_no,
2017 sdev->channel, sdev->id, sdev->lun);
2018 rc = ioctl_common(sdev, cmd);
2019 if (unlikely(rc))
2020 goto cxlflash_ioctl_exit;
2021
2022 /* fall through */
2023
2024 case DK_CXLFLASH_MANAGE_LUN:
2025 known_ioctl = true;
2026 idx = _IOC_NR(cmd) - _IOC_NR(DK_CXLFLASH_ATTACH);
2027 size = ioctl_tbl[idx].size;
2028 do_ioctl = ioctl_tbl[idx].ioctl;
2029
2030 if (likely(do_ioctl))
2031 break;
2032
2033 /* fall through */
2034 default:
2035 rc = -EINVAL;
2036 goto cxlflash_ioctl_exit;
2037 }
2038
2039 if (unlikely(copy_from_user(&buf, arg, size))) {
2040 dev_err(dev, "%s: copy_from_user() fail! "
2041 "size=%lu cmd=%d (%s) arg=%p\n",
2042 __func__, size, cmd, decode_ioctl(cmd), arg);
2043 rc = -EFAULT;
2044 goto cxlflash_ioctl_exit;
2045 }
2046
2047 hdr = (struct dk_cxlflash_hdr *)&buf;
2048 if (hdr->version != DK_CXLFLASH_VERSION_0) {
2049 dev_dbg(dev, "%s: Version %u not supported for %s\n",
2050 __func__, hdr->version, decode_ioctl(cmd));
2051 rc = -EINVAL;
2052 goto cxlflash_ioctl_exit;
2053 }
2054
2055 if (hdr->rsvd[0] || hdr->rsvd[1] || hdr->rsvd[2] || hdr->return_flags) {
2056 dev_dbg(dev, "%s: Reserved/rflags populated!\n", __func__);
2057 rc = -EINVAL;
2058 goto cxlflash_ioctl_exit;
2059 }
2060
2061 rc = do_ioctl(sdev, (void *)&buf);
2062 if (likely(!rc))
2063 if (unlikely(copy_to_user(arg, &buf, size))) {
2064 dev_err(dev, "%s: copy_to_user() fail! "
2065 "size=%lu cmd=%d (%s) arg=%p\n",
2066 __func__, size, cmd, decode_ioctl(cmd), arg);
2067 rc = -EFAULT;
2068 }
2069
2070 /* fall through to exit */
2071
2072cxlflash_ioctl_exit:
2073 if (unlikely(rc && known_ioctl))
2074 dev_err(dev, "%s: ioctl %s (%08X) on dev(%d/%d/%d/%llu) "
2075 "returned rc %d\n", __func__,
2076 decode_ioctl(cmd), cmd, shost->host_no,
2077 sdev->channel, sdev->id, sdev->lun, rc);
2078 else
2079 dev_dbg(dev, "%s: ioctl %s (%08X) on dev(%d/%d/%d/%llu) "
2080 "returned rc %d\n", __func__, decode_ioctl(cmd),
2081 cmd, shost->host_no, sdev->channel, sdev->id,
2082 sdev->lun, rc);
2083 return rc;
2084}
This page took 0.20145 seconds and 5 git commands to generate.