1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Driver for Broadcom MPI3 Storage Controllers
5 * Copyright (C) 2017-2023 Broadcom Inc.
12 /* global driver scop variables */
13 LIST_HEAD(mrioc_list);
14 DEFINE_SPINLOCK(mrioc_list_lock);
16 static int warn_non_secure_ctlr;
17 atomic64_t event_counter;
19 MODULE_AUTHOR(MPI3MR_DRIVER_AUTHOR);
20 MODULE_DESCRIPTION(MPI3MR_DRIVER_DESC);
21 MODULE_LICENSE(MPI3MR_DRIVER_LICENSE);
22 MODULE_VERSION(MPI3MR_DRIVER_VERSION);
24 /* Module parameters*/
26 module_param(prot_mask, int, 0);
27 MODULE_PARM_DESC(prot_mask, "Host protection capabilities mask, def=0x07");
29 static int prot_guard_mask = 3;
30 module_param(prot_guard_mask, int, 0);
31 MODULE_PARM_DESC(prot_guard_mask, " Host protection guard mask, def=3");
32 static int logging_level;
33 module_param(logging_level, int, 0);
34 MODULE_PARM_DESC(logging_level,
35 " bits for enabling additional logging info (default=0)");
37 /* Forward declarations*/
38 static void mpi3mr_send_event_ack(struct mpi3mr_ioc *mrioc, u8 event,
39 struct mpi3mr_drv_cmd *cmdparam, u32 event_ctx);
41 #define MPI3MR_DRIVER_EVENT_TG_QD_REDUCTION (0xFFFF)
43 #define MPI3_EVENT_WAIT_FOR_DEVICES_TO_REFRESH (0xFFFE)
46 * mpi3mr_host_tag_for_scmd - Get host tag for a scmd
47 * @mrioc: Adapter instance reference
48 * @scmd: SCSI command reference
50 * Calculate the host tag based on block tag for a given scmd.
52 * Return: Valid host tag or MPI3MR_HOSTTAG_INVALID.
54 static u16 mpi3mr_host_tag_for_scmd(struct mpi3mr_ioc *mrioc,
55 struct scsi_cmnd *scmd)
57 struct scmd_priv *priv = NULL;
59 u16 host_tag, hw_queue;
61 unique_tag = blk_mq_unique_tag(scsi_cmd_to_rq(scmd));
63 hw_queue = blk_mq_unique_tag_to_hwq(unique_tag);
64 if (hw_queue >= mrioc->num_op_reply_q)
65 return MPI3MR_HOSTTAG_INVALID;
66 host_tag = blk_mq_unique_tag_to_tag(unique_tag);
68 if (WARN_ON(host_tag >= mrioc->max_host_ios))
69 return MPI3MR_HOSTTAG_INVALID;
71 priv = scsi_cmd_priv(scmd);
72 /*host_tag 0 is invalid hence incrementing by 1*/
73 priv->host_tag = host_tag + 1;
75 priv->in_lld_scope = 1;
76 priv->req_q_idx = hw_queue;
77 priv->meta_chain_idx = -1;
79 priv->meta_sg_valid = 0;
80 return priv->host_tag;
84 * mpi3mr_scmd_from_host_tag - Get SCSI command from host tag
85 * @mrioc: Adapter instance reference
87 * @qidx: Operational queue index
89 * Identify the block tag from the host tag and queue index and
90 * retrieve associated scsi command using scsi_host_find_tag().
92 * Return: SCSI command reference or NULL.
94 static struct scsi_cmnd *mpi3mr_scmd_from_host_tag(
95 struct mpi3mr_ioc *mrioc, u16 host_tag, u16 qidx)
97 struct scsi_cmnd *scmd = NULL;
98 struct scmd_priv *priv = NULL;
99 u32 unique_tag = host_tag - 1;
101 if (WARN_ON(host_tag > mrioc->max_host_ios))
104 unique_tag |= (qidx << BLK_MQ_UNIQUE_TAG_BITS);
106 scmd = scsi_host_find_tag(mrioc->shost, unique_tag);
108 priv = scsi_cmd_priv(scmd);
109 if (!priv->in_lld_scope)
117 * mpi3mr_clear_scmd_priv - Cleanup SCSI command private date
118 * @mrioc: Adapter instance reference
119 * @scmd: SCSI command reference
121 * Invalidate the SCSI command private data to mark the command
122 * is not in LLD scope anymore.
126 static void mpi3mr_clear_scmd_priv(struct mpi3mr_ioc *mrioc,
127 struct scsi_cmnd *scmd)
129 struct scmd_priv *priv = NULL;
131 priv = scsi_cmd_priv(scmd);
133 if (WARN_ON(priv->in_lld_scope == 0))
135 priv->host_tag = MPI3MR_HOSTTAG_INVALID;
136 priv->req_q_idx = 0xFFFF;
138 priv->in_lld_scope = 0;
139 priv->meta_sg_valid = 0;
140 if (priv->chain_idx >= 0) {
141 clear_bit(priv->chain_idx, mrioc->chain_bitmap);
142 priv->chain_idx = -1;
144 if (priv->meta_chain_idx >= 0) {
145 clear_bit(priv->meta_chain_idx, mrioc->chain_bitmap);
146 priv->meta_chain_idx = -1;
150 static void mpi3mr_dev_rmhs_send_tm(struct mpi3mr_ioc *mrioc, u16 handle,
151 struct mpi3mr_drv_cmd *cmdparam, u8 iou_rc);
152 static void mpi3mr_fwevt_worker(struct work_struct *work);
155 * mpi3mr_fwevt_free - firmware event memory dealloctor
156 * @r: k reference pointer of the firmware event
158 * Free firmware event memory when no reference.
160 static void mpi3mr_fwevt_free(struct kref *r)
162 kfree(container_of(r, struct mpi3mr_fwevt, ref_count));
166 * mpi3mr_fwevt_get - k reference incrementor
167 * @fwevt: Firmware event reference
169 * Increment firmware event reference count.
171 static void mpi3mr_fwevt_get(struct mpi3mr_fwevt *fwevt)
173 kref_get(&fwevt->ref_count);
177 * mpi3mr_fwevt_put - k reference decrementor
178 * @fwevt: Firmware event reference
180 * decrement firmware event reference count.
182 static void mpi3mr_fwevt_put(struct mpi3mr_fwevt *fwevt)
184 kref_put(&fwevt->ref_count, mpi3mr_fwevt_free);
188 * mpi3mr_alloc_fwevt - Allocate firmware event
189 * @len: length of firmware event data to allocate
191 * Allocate firmware event with required length and initialize
192 * the reference counter.
194 * Return: firmware event reference.
196 static struct mpi3mr_fwevt *mpi3mr_alloc_fwevt(int len)
198 struct mpi3mr_fwevt *fwevt;
200 fwevt = kzalloc(sizeof(*fwevt) + len, GFP_ATOMIC);
204 kref_init(&fwevt->ref_count);
209 * mpi3mr_fwevt_add_to_list - Add firmware event to the list
210 * @mrioc: Adapter instance reference
211 * @fwevt: Firmware event reference
213 * Add the given firmware event to the firmware event list.
217 static void mpi3mr_fwevt_add_to_list(struct mpi3mr_ioc *mrioc,
218 struct mpi3mr_fwevt *fwevt)
222 if (!mrioc->fwevt_worker_thread)
225 spin_lock_irqsave(&mrioc->fwevt_lock, flags);
226 /* get fwevt reference count while adding it to fwevt_list */
227 mpi3mr_fwevt_get(fwevt);
228 INIT_LIST_HEAD(&fwevt->list);
229 list_add_tail(&fwevt->list, &mrioc->fwevt_list);
230 INIT_WORK(&fwevt->work, mpi3mr_fwevt_worker);
231 /* get fwevt reference count while enqueueing it to worker queue */
232 mpi3mr_fwevt_get(fwevt);
233 queue_work(mrioc->fwevt_worker_thread, &fwevt->work);
234 spin_unlock_irqrestore(&mrioc->fwevt_lock, flags);
238 * mpi3mr_fwevt_del_from_list - Delete firmware event from list
239 * @mrioc: Adapter instance reference
240 * @fwevt: Firmware event reference
242 * Delete the given firmware event from the firmware event list.
246 static void mpi3mr_fwevt_del_from_list(struct mpi3mr_ioc *mrioc,
247 struct mpi3mr_fwevt *fwevt)
251 spin_lock_irqsave(&mrioc->fwevt_lock, flags);
252 if (!list_empty(&fwevt->list)) {
253 list_del_init(&fwevt->list);
255 * Put fwevt reference count after
256 * removing it from fwevt_list
258 mpi3mr_fwevt_put(fwevt);
260 spin_unlock_irqrestore(&mrioc->fwevt_lock, flags);
264 * mpi3mr_dequeue_fwevt - Dequeue firmware event from the list
265 * @mrioc: Adapter instance reference
267 * Dequeue a firmware event from the firmware event list.
269 * Return: firmware event.
271 static struct mpi3mr_fwevt *mpi3mr_dequeue_fwevt(
272 struct mpi3mr_ioc *mrioc)
275 struct mpi3mr_fwevt *fwevt = NULL;
277 spin_lock_irqsave(&mrioc->fwevt_lock, flags);
278 if (!list_empty(&mrioc->fwevt_list)) {
279 fwevt = list_first_entry(&mrioc->fwevt_list,
280 struct mpi3mr_fwevt, list);
281 list_del_init(&fwevt->list);
283 * Put fwevt reference count after
284 * removing it from fwevt_list
286 mpi3mr_fwevt_put(fwevt);
288 spin_unlock_irqrestore(&mrioc->fwevt_lock, flags);
294 * mpi3mr_cancel_work - cancel firmware event
295 * @fwevt: fwevt object which needs to be canceled
299 static void mpi3mr_cancel_work(struct mpi3mr_fwevt *fwevt)
302 * Wait on the fwevt to complete. If this returns 1, then
303 * the event was never executed.
305 * If it did execute, we wait for it to finish, and the put will
306 * happen from mpi3mr_process_fwevt()
308 if (cancel_work_sync(&fwevt->work)) {
310 * Put fwevt reference count after
311 * dequeuing it from worker queue
313 mpi3mr_fwevt_put(fwevt);
315 * Put fwevt reference count to neutralize
316 * kref_init increment
318 mpi3mr_fwevt_put(fwevt);
323 * mpi3mr_cleanup_fwevt_list - Cleanup firmware event list
324 * @mrioc: Adapter instance reference
326 * Flush all pending firmware events from the firmware event
331 void mpi3mr_cleanup_fwevt_list(struct mpi3mr_ioc *mrioc)
333 struct mpi3mr_fwevt *fwevt = NULL;
335 if ((list_empty(&mrioc->fwevt_list) && !mrioc->current_event) ||
336 !mrioc->fwevt_worker_thread)
339 while ((fwevt = mpi3mr_dequeue_fwevt(mrioc)))
340 mpi3mr_cancel_work(fwevt);
342 if (mrioc->current_event) {
343 fwevt = mrioc->current_event;
345 * Don't call cancel_work_sync() API for the
346 * fwevt work if the controller reset is
347 * get called as part of processing the
348 * same fwevt work (or) when worker thread is
349 * waiting for device add/remove APIs to complete.
350 * Otherwise we will see deadlock.
352 if (current_work() == &fwevt->work || fwevt->pending_at_sml) {
357 mpi3mr_cancel_work(fwevt);
362 * mpi3mr_queue_qd_reduction_event - Queue TG QD reduction event
363 * @mrioc: Adapter instance reference
364 * @tg: Throttle group information pointer
366 * Accessor to queue on synthetically generated driver event to
367 * the event worker thread, the driver event will be used to
368 * reduce the QD of all VDs in the TG from the worker thread.
372 static void mpi3mr_queue_qd_reduction_event(struct mpi3mr_ioc *mrioc,
373 struct mpi3mr_throttle_group_info *tg)
375 struct mpi3mr_fwevt *fwevt;
376 u16 sz = sizeof(struct mpi3mr_throttle_group_info *);
379 * If the QD reduction event is already queued due to throttle and if
380 * the QD is not restored through device info change event
381 * then dont queue further reduction events
383 if (tg->fw_qd != tg->modified_qd)
386 fwevt = mpi3mr_alloc_fwevt(sz);
388 ioc_warn(mrioc, "failed to queue TG QD reduction event\n");
391 *(struct mpi3mr_throttle_group_info **)fwevt->event_data = tg;
392 fwevt->mrioc = mrioc;
393 fwevt->event_id = MPI3MR_DRIVER_EVENT_TG_QD_REDUCTION;
395 fwevt->process_evt = 1;
397 fwevt->event_data_size = sz;
398 tg->modified_qd = max_t(u16, (tg->fw_qd * tg->qd_reduction) / 10, 8);
400 dprint_event_bh(mrioc, "qd reduction event queued for tg_id(%d)\n",
402 mpi3mr_fwevt_add_to_list(mrioc, fwevt);
406 * mpi3mr_invalidate_devhandles -Invalidate device handles
407 * @mrioc: Adapter instance reference
409 * Invalidate the device handles in the target device structures
410 * . Called post reset prior to reinitializing the controller.
414 void mpi3mr_invalidate_devhandles(struct mpi3mr_ioc *mrioc)
416 struct mpi3mr_tgt_dev *tgtdev;
417 struct mpi3mr_stgt_priv_data *tgt_priv;
419 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list) {
420 tgtdev->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
421 if (tgtdev->starget && tgtdev->starget->hostdata) {
422 tgt_priv = tgtdev->starget->hostdata;
423 tgt_priv->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
424 tgt_priv->io_throttle_enabled = 0;
425 tgt_priv->io_divert = 0;
426 tgt_priv->throttle_group = NULL;
427 if (tgtdev->host_exposed)
428 atomic_set(&tgt_priv->block_io, 1);
434 * mpi3mr_print_scmd - print individual SCSI command
436 * @data: Adapter instance reference
438 * Print the SCSI command details if it is in LLD scope.
440 * Return: true always.
442 static bool mpi3mr_print_scmd(struct request *rq, void *data)
444 struct mpi3mr_ioc *mrioc = (struct mpi3mr_ioc *)data;
445 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(rq);
446 struct scmd_priv *priv = NULL;
449 priv = scsi_cmd_priv(scmd);
450 if (!priv->in_lld_scope)
453 ioc_info(mrioc, "%s :Host Tag = %d, qid = %d\n",
454 __func__, priv->host_tag, priv->req_q_idx + 1);
455 scsi_print_command(scmd);
463 * mpi3mr_flush_scmd - Flush individual SCSI command
465 * @data: Adapter instance reference
467 * Return the SCSI command to the upper layers if it is in LLD
470 * Return: true always.
473 static bool mpi3mr_flush_scmd(struct request *rq, void *data)
475 struct mpi3mr_ioc *mrioc = (struct mpi3mr_ioc *)data;
476 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(rq);
477 struct scmd_priv *priv = NULL;
480 priv = scsi_cmd_priv(scmd);
481 if (!priv->in_lld_scope)
484 if (priv->meta_sg_valid)
485 dma_unmap_sg(&mrioc->pdev->dev, scsi_prot_sglist(scmd),
486 scsi_prot_sg_count(scmd), scmd->sc_data_direction);
487 mpi3mr_clear_scmd_priv(mrioc, scmd);
488 scsi_dma_unmap(scmd);
489 scmd->result = DID_RESET << 16;
490 scsi_print_command(scmd);
492 mrioc->flush_io_count++;
500 * mpi3mr_count_dev_pending - Count commands pending for a lun
502 * @data: SCSI device reference
504 * This is an iterator function called for each SCSI command in
505 * a host and if the command is pending in the LLD for the
506 * specific device(lun) then device specific pending I/O counter
507 * is updated in the device structure.
509 * Return: true always.
512 static bool mpi3mr_count_dev_pending(struct request *rq, void *data)
514 struct scsi_device *sdev = (struct scsi_device *)data;
515 struct mpi3mr_sdev_priv_data *sdev_priv_data = sdev->hostdata;
516 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(rq);
517 struct scmd_priv *priv;
520 priv = scsi_cmd_priv(scmd);
521 if (!priv->in_lld_scope)
523 if (scmd->device == sdev)
524 sdev_priv_data->pend_count++;
532 * mpi3mr_count_tgt_pending - Count commands pending for target
534 * @data: SCSI target reference
536 * This is an iterator function called for each SCSI command in
537 * a host and if the command is pending in the LLD for the
538 * specific target then target specific pending I/O counter is
539 * updated in the target structure.
541 * Return: true always.
544 static bool mpi3mr_count_tgt_pending(struct request *rq, void *data)
546 struct scsi_target *starget = (struct scsi_target *)data;
547 struct mpi3mr_stgt_priv_data *stgt_priv_data = starget->hostdata;
548 struct scsi_cmnd *scmd = blk_mq_rq_to_pdu(rq);
549 struct scmd_priv *priv;
552 priv = scsi_cmd_priv(scmd);
553 if (!priv->in_lld_scope)
555 if (scmd->device && (scsi_target(scmd->device) == starget))
556 stgt_priv_data->pend_count++;
564 * mpi3mr_flush_host_io - Flush host I/Os
565 * @mrioc: Adapter instance reference
567 * Flush all of the pending I/Os by calling
568 * blk_mq_tagset_busy_iter() for each possible tag. This is
569 * executed post controller reset
573 void mpi3mr_flush_host_io(struct mpi3mr_ioc *mrioc)
575 struct Scsi_Host *shost = mrioc->shost;
577 mrioc->flush_io_count = 0;
578 ioc_info(mrioc, "%s :Flushing Host I/O cmds post reset\n", __func__);
579 blk_mq_tagset_busy_iter(&shost->tag_set,
580 mpi3mr_flush_scmd, (void *)mrioc);
581 ioc_info(mrioc, "%s :Flushed %d Host I/O cmds\n", __func__,
582 mrioc->flush_io_count);
586 * mpi3mr_flush_cmds_for_unrecovered_controller - Flush all pending cmds
587 * @mrioc: Adapter instance reference
589 * This function waits for currently running IO poll threads to
590 * exit and then flushes all host I/Os and any internal pending
591 * cmds. This is executed after controller is marked as
596 void mpi3mr_flush_cmds_for_unrecovered_controller(struct mpi3mr_ioc *mrioc)
598 struct Scsi_Host *shost = mrioc->shost;
601 if (!mrioc->unrecoverable)
604 if (mrioc->op_reply_qinfo) {
605 for (i = 0; i < mrioc->num_queues; i++) {
606 while (atomic_read(&mrioc->op_reply_qinfo[i].in_use))
608 atomic_set(&mrioc->op_reply_qinfo[i].pend_ios, 0);
611 mrioc->flush_io_count = 0;
612 blk_mq_tagset_busy_iter(&shost->tag_set,
613 mpi3mr_flush_scmd, (void *)mrioc);
614 mpi3mr_flush_delayed_cmd_lists(mrioc);
615 mpi3mr_flush_drv_cmds(mrioc);
619 * mpi3mr_alloc_tgtdev - target device allocator
621 * Allocate target device instance and initialize the reference
624 * Return: target device instance.
626 static struct mpi3mr_tgt_dev *mpi3mr_alloc_tgtdev(void)
628 struct mpi3mr_tgt_dev *tgtdev;
630 tgtdev = kzalloc(sizeof(*tgtdev), GFP_ATOMIC);
633 kref_init(&tgtdev->ref_count);
638 * mpi3mr_tgtdev_add_to_list -Add tgtdevice to the list
639 * @mrioc: Adapter instance reference
640 * @tgtdev: Target device
642 * Add the target device to the target device list
646 static void mpi3mr_tgtdev_add_to_list(struct mpi3mr_ioc *mrioc,
647 struct mpi3mr_tgt_dev *tgtdev)
651 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
652 mpi3mr_tgtdev_get(tgtdev);
653 INIT_LIST_HEAD(&tgtdev->list);
654 list_add_tail(&tgtdev->list, &mrioc->tgtdev_list);
655 tgtdev->state = MPI3MR_DEV_CREATED;
656 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
660 * mpi3mr_tgtdev_del_from_list -Delete tgtdevice from the list
661 * @mrioc: Adapter instance reference
662 * @tgtdev: Target device
663 * @must_delete: Must delete the target device from the list irrespective
664 * of the device state.
666 * Remove the target device from the target device list
670 static void mpi3mr_tgtdev_del_from_list(struct mpi3mr_ioc *mrioc,
671 struct mpi3mr_tgt_dev *tgtdev, bool must_delete)
675 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
676 if ((tgtdev->state == MPI3MR_DEV_REMOVE_HS_STARTED) || (must_delete == true)) {
677 if (!list_empty(&tgtdev->list)) {
678 list_del_init(&tgtdev->list);
679 tgtdev->state = MPI3MR_DEV_DELETED;
680 mpi3mr_tgtdev_put(tgtdev);
683 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
687 * __mpi3mr_get_tgtdev_by_handle -Get tgtdev from device handle
688 * @mrioc: Adapter instance reference
689 * @handle: Device handle
691 * Accessor to retrieve target device from the device handle.
694 * Return: Target device reference.
696 static struct mpi3mr_tgt_dev *__mpi3mr_get_tgtdev_by_handle(
697 struct mpi3mr_ioc *mrioc, u16 handle)
699 struct mpi3mr_tgt_dev *tgtdev;
701 assert_spin_locked(&mrioc->tgtdev_lock);
702 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list)
703 if (tgtdev->dev_handle == handle)
708 mpi3mr_tgtdev_get(tgtdev);
713 * mpi3mr_get_tgtdev_by_handle -Get tgtdev from device handle
714 * @mrioc: Adapter instance reference
715 * @handle: Device handle
717 * Accessor to retrieve target device from the device handle.
720 * Return: Target device reference.
722 struct mpi3mr_tgt_dev *mpi3mr_get_tgtdev_by_handle(
723 struct mpi3mr_ioc *mrioc, u16 handle)
725 struct mpi3mr_tgt_dev *tgtdev;
728 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
729 tgtdev = __mpi3mr_get_tgtdev_by_handle(mrioc, handle);
730 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
735 * __mpi3mr_get_tgtdev_by_perst_id -Get tgtdev from persist ID
736 * @mrioc: Adapter instance reference
737 * @persist_id: Persistent ID
739 * Accessor to retrieve target device from the Persistent ID.
742 * Return: Target device reference.
744 static struct mpi3mr_tgt_dev *__mpi3mr_get_tgtdev_by_perst_id(
745 struct mpi3mr_ioc *mrioc, u16 persist_id)
747 struct mpi3mr_tgt_dev *tgtdev;
749 assert_spin_locked(&mrioc->tgtdev_lock);
750 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list)
751 if (tgtdev->perst_id == persist_id)
756 mpi3mr_tgtdev_get(tgtdev);
761 * mpi3mr_get_tgtdev_by_perst_id -Get tgtdev from persistent ID
762 * @mrioc: Adapter instance reference
763 * @persist_id: Persistent ID
765 * Accessor to retrieve target device from the Persistent ID.
768 * Return: Target device reference.
770 static struct mpi3mr_tgt_dev *mpi3mr_get_tgtdev_by_perst_id(
771 struct mpi3mr_ioc *mrioc, u16 persist_id)
773 struct mpi3mr_tgt_dev *tgtdev;
776 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
777 tgtdev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, persist_id);
778 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
783 * __mpi3mr_get_tgtdev_from_tgtpriv -Get tgtdev from tgt private
784 * @mrioc: Adapter instance reference
785 * @tgt_priv: Target private data
787 * Accessor to return target device from the target private
788 * data. Non Lock version
790 * Return: Target device reference.
792 static struct mpi3mr_tgt_dev *__mpi3mr_get_tgtdev_from_tgtpriv(
793 struct mpi3mr_ioc *mrioc, struct mpi3mr_stgt_priv_data *tgt_priv)
795 struct mpi3mr_tgt_dev *tgtdev;
797 assert_spin_locked(&mrioc->tgtdev_lock);
798 tgtdev = tgt_priv->tgt_dev;
800 mpi3mr_tgtdev_get(tgtdev);
805 * mpi3mr_set_io_divert_for_all_vd_in_tg -set divert for TG VDs
806 * @mrioc: Adapter instance reference
807 * @tg: Throttle group information pointer
808 * @divert_value: 1 or 0
810 * Accessor to set io_divert flag for each device associated
811 * with the given throttle group with the given value.
815 static void mpi3mr_set_io_divert_for_all_vd_in_tg(struct mpi3mr_ioc *mrioc,
816 struct mpi3mr_throttle_group_info *tg, u8 divert_value)
819 struct mpi3mr_tgt_dev *tgtdev;
820 struct mpi3mr_stgt_priv_data *tgt_priv;
822 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
823 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list) {
824 if (tgtdev->starget && tgtdev->starget->hostdata) {
825 tgt_priv = tgtdev->starget->hostdata;
826 if (tgt_priv->throttle_group == tg)
827 tgt_priv->io_divert = divert_value;
830 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
834 * mpi3mr_print_device_event_notice - print notice related to post processing of
835 * device event after controller reset.
837 * @mrioc: Adapter instance reference
838 * @device_add: true for device add event and false for device removal event
842 void mpi3mr_print_device_event_notice(struct mpi3mr_ioc *mrioc,
845 ioc_notice(mrioc, "Device %s was in progress before the reset and\n",
846 (device_add ? "addition" : "removal"));
847 ioc_notice(mrioc, "completed after reset, verify whether the exposed devices\n");
848 ioc_notice(mrioc, "are matched with attached devices for correctness\n");
852 * mpi3mr_remove_tgtdev_from_host - Remove dev from upper layers
853 * @mrioc: Adapter instance reference
854 * @tgtdev: Target device structure
856 * Checks whether the device is exposed to upper layers and if it
857 * is then remove the device from upper layers by calling
858 * scsi_remove_target().
860 * Return: 0 on success, non zero on failure.
862 void mpi3mr_remove_tgtdev_from_host(struct mpi3mr_ioc *mrioc,
863 struct mpi3mr_tgt_dev *tgtdev)
865 struct mpi3mr_stgt_priv_data *tgt_priv;
867 ioc_info(mrioc, "%s :Removing handle(0x%04x), wwid(0x%016llx)\n",
868 __func__, tgtdev->dev_handle, (unsigned long long)tgtdev->wwid);
869 if (tgtdev->starget && tgtdev->starget->hostdata) {
870 tgt_priv = tgtdev->starget->hostdata;
871 atomic_set(&tgt_priv->block_io, 0);
872 tgt_priv->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
875 if (!mrioc->sas_transport_enabled || (tgtdev->dev_type !=
876 MPI3_DEVICE_DEVFORM_SAS_SATA) || tgtdev->non_stl) {
877 if (tgtdev->starget) {
878 if (mrioc->current_event)
879 mrioc->current_event->pending_at_sml = 1;
880 scsi_remove_target(&tgtdev->starget->dev);
881 tgtdev->host_exposed = 0;
882 if (mrioc->current_event) {
883 mrioc->current_event->pending_at_sml = 0;
884 if (mrioc->current_event->discard) {
885 mpi3mr_print_device_event_notice(mrioc,
892 mpi3mr_remove_tgtdev_from_sas_transport(mrioc, tgtdev);
894 ioc_info(mrioc, "%s :Removed handle(0x%04x), wwid(0x%016llx)\n",
895 __func__, tgtdev->dev_handle, (unsigned long long)tgtdev->wwid);
899 * mpi3mr_report_tgtdev_to_host - Expose device to upper layers
900 * @mrioc: Adapter instance reference
901 * @perst_id: Persistent ID of the device
903 * Checks whether the device can be exposed to upper layers and
904 * if it is not then expose the device to upper layers by
905 * calling scsi_scan_target().
907 * Return: 0 on success, non zero on failure.
909 static int mpi3mr_report_tgtdev_to_host(struct mpi3mr_ioc *mrioc,
913 struct mpi3mr_tgt_dev *tgtdev;
915 if (mrioc->reset_in_progress)
918 tgtdev = mpi3mr_get_tgtdev_by_perst_id(mrioc, perst_id);
923 if (tgtdev->is_hidden || tgtdev->host_exposed) {
927 if (!mrioc->sas_transport_enabled || (tgtdev->dev_type !=
928 MPI3_DEVICE_DEVFORM_SAS_SATA) || tgtdev->non_stl){
929 tgtdev->host_exposed = 1;
930 if (mrioc->current_event)
931 mrioc->current_event->pending_at_sml = 1;
932 scsi_scan_target(&mrioc->shost->shost_gendev,
933 mrioc->scsi_device_channel, tgtdev->perst_id,
934 SCAN_WILD_CARD, SCSI_SCAN_INITIAL);
935 if (!tgtdev->starget)
936 tgtdev->host_exposed = 0;
937 if (mrioc->current_event) {
938 mrioc->current_event->pending_at_sml = 0;
939 if (mrioc->current_event->discard) {
940 mpi3mr_print_device_event_notice(mrioc, true);
945 mpi3mr_report_tgtdev_to_sas_transport(mrioc, tgtdev);
948 mpi3mr_tgtdev_put(tgtdev);
954 * mpi3mr_change_queue_depth- Change QD callback handler
955 * @sdev: SCSI device reference
956 * @q_depth: Queue depth
958 * Validate and limit QD and call scsi_change_queue_depth.
960 * Return: return value of scsi_change_queue_depth
962 static int mpi3mr_change_queue_depth(struct scsi_device *sdev,
965 struct scsi_target *starget = scsi_target(sdev);
966 struct Scsi_Host *shost = dev_to_shost(&starget->dev);
969 if (!sdev->tagged_supported)
971 if (q_depth > shost->can_queue)
972 q_depth = shost->can_queue;
974 q_depth = MPI3MR_DEFAULT_SDEV_QD;
975 retval = scsi_change_queue_depth(sdev, q_depth);
976 sdev->max_queue_depth = sdev->queue_depth;
982 * mpi3mr_update_sdev - Update SCSI device information
983 * @sdev: SCSI device reference
984 * @data: target device reference
986 * This is an iterator function called for each SCSI device in a
987 * target to update the target specific information into each
993 mpi3mr_update_sdev(struct scsi_device *sdev, void *data)
995 struct mpi3mr_tgt_dev *tgtdev;
997 tgtdev = (struct mpi3mr_tgt_dev *)data;
1001 mpi3mr_change_queue_depth(sdev, tgtdev->q_depth);
1002 switch (tgtdev->dev_type) {
1003 case MPI3_DEVICE_DEVFORM_PCIE:
1004 /*The block layer hw sector size = 512*/
1005 if ((tgtdev->dev_spec.pcie_inf.dev_info &
1006 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_MASK) ==
1007 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_NVME_DEVICE) {
1008 blk_queue_max_hw_sectors(sdev->request_queue,
1009 tgtdev->dev_spec.pcie_inf.mdts / 512);
1010 if (tgtdev->dev_spec.pcie_inf.pgsz == 0)
1011 blk_queue_virt_boundary(sdev->request_queue,
1012 ((1 << MPI3MR_DEFAULT_PGSZEXP) - 1));
1014 blk_queue_virt_boundary(sdev->request_queue,
1015 ((1 << tgtdev->dev_spec.pcie_inf.pgsz) - 1));
1024 * mpi3mr_rfresh_tgtdevs - Refresh target device exposure
1025 * @mrioc: Adapter instance reference
1027 * This is executed post controller reset to identify any
1028 * missing devices during reset and remove from the upper layers
1029 * or expose any newly detected device to the upper layers.
1034 void mpi3mr_rfresh_tgtdevs(struct mpi3mr_ioc *mrioc)
1036 struct mpi3mr_tgt_dev *tgtdev, *tgtdev_next;
1038 list_for_each_entry_safe(tgtdev, tgtdev_next, &mrioc->tgtdev_list,
1040 if (tgtdev->dev_handle == MPI3MR_INVALID_DEV_HANDLE) {
1041 dprint_reset(mrioc, "removing target device with perst_id(%d)\n",
1043 if (tgtdev->host_exposed)
1044 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
1045 mpi3mr_tgtdev_del_from_list(mrioc, tgtdev, true);
1046 mpi3mr_tgtdev_put(tgtdev);
1051 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list) {
1052 if ((tgtdev->dev_handle != MPI3MR_INVALID_DEV_HANDLE) &&
1053 !tgtdev->is_hidden && !tgtdev->host_exposed)
1054 mpi3mr_report_tgtdev_to_host(mrioc, tgtdev->perst_id);
1059 * mpi3mr_update_tgtdev - DevStatusChange evt bottomhalf
1060 * @mrioc: Adapter instance reference
1061 * @tgtdev: Target device internal structure
1062 * @dev_pg0: New device page0
1063 * @is_added: Flag to indicate the device is just added
1065 * Update the information from the device page0 into the driver
1066 * cached target device structure.
1070 static void mpi3mr_update_tgtdev(struct mpi3mr_ioc *mrioc,
1071 struct mpi3mr_tgt_dev *tgtdev, struct mpi3_device_page0 *dev_pg0,
1075 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data = NULL;
1076 struct mpi3mr_enclosure_node *enclosure_dev = NULL;
1079 tgtdev->perst_id = le16_to_cpu(dev_pg0->persistent_id);
1080 tgtdev->dev_handle = le16_to_cpu(dev_pg0->dev_handle);
1081 tgtdev->dev_type = dev_pg0->device_form;
1082 tgtdev->io_unit_port = dev_pg0->io_unit_port;
1083 tgtdev->encl_handle = le16_to_cpu(dev_pg0->enclosure_handle);
1084 tgtdev->parent_handle = le16_to_cpu(dev_pg0->parent_dev_handle);
1085 tgtdev->slot = le16_to_cpu(dev_pg0->slot);
1086 tgtdev->q_depth = le16_to_cpu(dev_pg0->queue_depth);
1087 tgtdev->wwid = le64_to_cpu(dev_pg0->wwid);
1088 tgtdev->devpg0_flag = le16_to_cpu(dev_pg0->flags);
1090 if (tgtdev->encl_handle)
1091 enclosure_dev = mpi3mr_enclosure_find_by_handle(mrioc,
1092 tgtdev->encl_handle);
1094 tgtdev->enclosure_logical_id = le64_to_cpu(
1095 enclosure_dev->pg0.enclosure_logical_id);
1097 flags = tgtdev->devpg0_flag;
1099 tgtdev->is_hidden = (flags & MPI3_DEVICE0_FLAGS_HIDDEN);
1101 if (is_added == true)
1102 tgtdev->io_throttle_enabled =
1103 (flags & MPI3_DEVICE0_FLAGS_IO_THROTTLING_REQUIRED) ? 1 : 0;
1106 if (tgtdev->starget && tgtdev->starget->hostdata) {
1107 scsi_tgt_priv_data = (struct mpi3mr_stgt_priv_data *)
1108 tgtdev->starget->hostdata;
1109 scsi_tgt_priv_data->perst_id = tgtdev->perst_id;
1110 scsi_tgt_priv_data->dev_handle = tgtdev->dev_handle;
1111 scsi_tgt_priv_data->dev_type = tgtdev->dev_type;
1112 scsi_tgt_priv_data->io_throttle_enabled =
1113 tgtdev->io_throttle_enabled;
1114 if (is_added == true)
1115 atomic_set(&scsi_tgt_priv_data->block_io, 0);
1118 switch (dev_pg0->access_status) {
1119 case MPI3_DEVICE0_ASTATUS_NO_ERRORS:
1120 case MPI3_DEVICE0_ASTATUS_PREPARE:
1121 case MPI3_DEVICE0_ASTATUS_NEEDS_INITIALIZATION:
1122 case MPI3_DEVICE0_ASTATUS_DEVICE_MISSING_DELAY:
1125 tgtdev->is_hidden = 1;
1129 switch (tgtdev->dev_type) {
1130 case MPI3_DEVICE_DEVFORM_SAS_SATA:
1132 struct mpi3_device0_sas_sata_format *sasinf =
1133 &dev_pg0->device_specific.sas_sata_format;
1134 u16 dev_info = le16_to_cpu(sasinf->device_info);
1136 tgtdev->dev_spec.sas_sata_inf.dev_info = dev_info;
1137 tgtdev->dev_spec.sas_sata_inf.sas_address =
1138 le64_to_cpu(sasinf->sas_address);
1139 tgtdev->dev_spec.sas_sata_inf.phy_id = sasinf->phy_num;
1140 tgtdev->dev_spec.sas_sata_inf.attached_phy_id =
1141 sasinf->attached_phy_identifier;
1142 if ((dev_info & MPI3_SAS_DEVICE_INFO_DEVICE_TYPE_MASK) !=
1143 MPI3_SAS_DEVICE_INFO_DEVICE_TYPE_END_DEVICE)
1144 tgtdev->is_hidden = 1;
1145 else if (!(dev_info & (MPI3_SAS_DEVICE_INFO_STP_SATA_TARGET |
1146 MPI3_SAS_DEVICE_INFO_SSP_TARGET)))
1147 tgtdev->is_hidden = 1;
1149 if (((tgtdev->devpg0_flag &
1150 MPI3_DEVICE0_FLAGS_ATT_METHOD_DIR_ATTACHED)
1151 && (tgtdev->devpg0_flag &
1152 MPI3_DEVICE0_FLAGS_ATT_METHOD_VIRTUAL)) ||
1153 (tgtdev->parent_handle == 0xFFFF))
1154 tgtdev->non_stl = 1;
1155 if (tgtdev->dev_spec.sas_sata_inf.hba_port)
1156 tgtdev->dev_spec.sas_sata_inf.hba_port->port_id =
1157 dev_pg0->io_unit_port;
1160 case MPI3_DEVICE_DEVFORM_PCIE:
1162 struct mpi3_device0_pcie_format *pcieinf =
1163 &dev_pg0->device_specific.pcie_format;
1164 u16 dev_info = le16_to_cpu(pcieinf->device_info);
1166 tgtdev->dev_spec.pcie_inf.dev_info = dev_info;
1167 tgtdev->dev_spec.pcie_inf.capb =
1168 le32_to_cpu(pcieinf->capabilities);
1169 tgtdev->dev_spec.pcie_inf.mdts = MPI3MR_DEFAULT_MDTS;
1171 tgtdev->dev_spec.pcie_inf.pgsz = 12;
1172 if (dev_pg0->access_status == MPI3_DEVICE0_ASTATUS_NO_ERRORS) {
1173 tgtdev->dev_spec.pcie_inf.mdts =
1174 le32_to_cpu(pcieinf->maximum_data_transfer_size);
1175 tgtdev->dev_spec.pcie_inf.pgsz = pcieinf->page_size;
1176 tgtdev->dev_spec.pcie_inf.reset_to =
1177 max_t(u8, pcieinf->controller_reset_to,
1178 MPI3MR_INTADMCMD_TIMEOUT);
1179 tgtdev->dev_spec.pcie_inf.abort_to =
1180 max_t(u8, pcieinf->nvme_abort_to,
1181 MPI3MR_INTADMCMD_TIMEOUT);
1183 if (tgtdev->dev_spec.pcie_inf.mdts > (1024 * 1024))
1184 tgtdev->dev_spec.pcie_inf.mdts = (1024 * 1024);
1185 if (((dev_info & MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_MASK) !=
1186 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_NVME_DEVICE) &&
1187 ((dev_info & MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_MASK) !=
1188 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_SCSI_DEVICE))
1189 tgtdev->is_hidden = 1;
1190 tgtdev->non_stl = 1;
1193 prot_mask = scsi_host_get_prot(mrioc->shost);
1194 if (prot_mask & SHOST_DIX_TYPE0_PROTECTION) {
1195 scsi_host_set_prot(mrioc->shost, prot_mask & 0x77);
1197 "%s : Disabling DIX0 prot capability\n", __func__);
1199 "because HBA does not support DIX0 operation on NVME drives\n");
1203 case MPI3_DEVICE_DEVFORM_VD:
1205 struct mpi3_device0_vd_format *vdinf =
1206 &dev_pg0->device_specific.vd_format;
1207 struct mpi3mr_throttle_group_info *tg = NULL;
1208 u16 vdinf_io_throttle_group =
1209 le16_to_cpu(vdinf->io_throttle_group);
1211 tgtdev->dev_spec.vd_inf.state = vdinf->vd_state;
1212 if (vdinf->vd_state == MPI3_DEVICE0_VD_STATE_OFFLINE)
1213 tgtdev->is_hidden = 1;
1214 tgtdev->non_stl = 1;
1215 tgtdev->dev_spec.vd_inf.tg_id = vdinf_io_throttle_group;
1216 tgtdev->dev_spec.vd_inf.tg_high =
1217 le16_to_cpu(vdinf->io_throttle_group_high) * 2048;
1218 tgtdev->dev_spec.vd_inf.tg_low =
1219 le16_to_cpu(vdinf->io_throttle_group_low) * 2048;
1220 if (vdinf_io_throttle_group < mrioc->num_io_throttle_group) {
1221 tg = mrioc->throttle_groups + vdinf_io_throttle_group;
1222 tg->id = vdinf_io_throttle_group;
1223 tg->high = tgtdev->dev_spec.vd_inf.tg_high;
1224 tg->low = tgtdev->dev_spec.vd_inf.tg_low;
1226 tgtdev->dev_spec.vd_inf.tg_qd_reduction;
1227 if (is_added == true)
1228 tg->fw_qd = tgtdev->q_depth;
1229 tg->modified_qd = tgtdev->q_depth;
1231 tgtdev->dev_spec.vd_inf.tg = tg;
1232 if (scsi_tgt_priv_data)
1233 scsi_tgt_priv_data->throttle_group = tg;
1242 * mpi3mr_devstatuschg_evt_bh - DevStatusChange evt bottomhalf
1243 * @mrioc: Adapter instance reference
1244 * @fwevt: Firmware event information.
1246 * Process Device status Change event and based on device's new
1247 * information, either expose the device to the upper layers, or
1248 * remove the device from upper layers.
1252 static void mpi3mr_devstatuschg_evt_bh(struct mpi3mr_ioc *mrioc,
1253 struct mpi3mr_fwevt *fwevt)
1256 u8 uhide = 0, delete = 0, cleanup = 0;
1257 struct mpi3mr_tgt_dev *tgtdev = NULL;
1258 struct mpi3_event_data_device_status_change *evtdata =
1259 (struct mpi3_event_data_device_status_change *)fwevt->event_data;
1261 dev_handle = le16_to_cpu(evtdata->dev_handle);
1263 "%s :device status change: handle(0x%04x): reason code(0x%x)\n",
1264 __func__, dev_handle, evtdata->reason_code);
1265 switch (evtdata->reason_code) {
1266 case MPI3_EVENT_DEV_STAT_RC_HIDDEN:
1269 case MPI3_EVENT_DEV_STAT_RC_NOT_HIDDEN:
1272 case MPI3_EVENT_DEV_STAT_RC_VD_NOT_RESPONDING:
1277 ioc_info(mrioc, "%s :Unhandled reason code(0x%x)\n", __func__,
1278 evtdata->reason_code);
1282 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, dev_handle);
1286 tgtdev->is_hidden = 0;
1287 if (!tgtdev->host_exposed)
1288 mpi3mr_report_tgtdev_to_host(mrioc, tgtdev->perst_id);
1292 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
1295 mpi3mr_tgtdev_del_from_list(mrioc, tgtdev, false);
1296 mpi3mr_tgtdev_put(tgtdev);
1301 mpi3mr_tgtdev_put(tgtdev);
1305 * mpi3mr_devinfochg_evt_bh - DeviceInfoChange evt bottomhalf
1306 * @mrioc: Adapter instance reference
1307 * @dev_pg0: New device page0
1309 * Process Device Info Change event and based on device's new
1310 * information, either expose the device to the upper layers, or
1311 * remove the device from upper layers or update the details of
1316 static void mpi3mr_devinfochg_evt_bh(struct mpi3mr_ioc *mrioc,
1317 struct mpi3_device_page0 *dev_pg0)
1319 struct mpi3mr_tgt_dev *tgtdev = NULL;
1320 u16 dev_handle = 0, perst_id = 0;
1322 perst_id = le16_to_cpu(dev_pg0->persistent_id);
1323 dev_handle = le16_to_cpu(dev_pg0->dev_handle);
1325 "%s :Device info change: handle(0x%04x): persist_id(0x%x)\n",
1326 __func__, dev_handle, perst_id);
1327 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, dev_handle);
1330 mpi3mr_update_tgtdev(mrioc, tgtdev, dev_pg0, false);
1331 if (!tgtdev->is_hidden && !tgtdev->host_exposed)
1332 mpi3mr_report_tgtdev_to_host(mrioc, perst_id);
1333 if (tgtdev->is_hidden && tgtdev->host_exposed)
1334 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
1335 if (!tgtdev->is_hidden && tgtdev->host_exposed && tgtdev->starget)
1336 starget_for_each_device(tgtdev->starget, (void *)tgtdev,
1337 mpi3mr_update_sdev);
1340 mpi3mr_tgtdev_put(tgtdev);
1344 * mpi3mr_free_enclosure_list - release enclosures
1345 * @mrioc: Adapter instance reference
1347 * Free memory allocated during encloure add.
1351 void mpi3mr_free_enclosure_list(struct mpi3mr_ioc *mrioc)
1353 struct mpi3mr_enclosure_node *enclosure_dev, *enclosure_dev_next;
1355 list_for_each_entry_safe(enclosure_dev,
1356 enclosure_dev_next, &mrioc->enclosure_list, list) {
1357 list_del(&enclosure_dev->list);
1358 kfree(enclosure_dev);
1363 * mpi3mr_enclosure_find_by_handle - enclosure search by handle
1364 * @mrioc: Adapter instance reference
1365 * @handle: Firmware device handle of the enclosure
1367 * This searches for enclosure device based on handle, then returns the
1370 * Return: Enclosure object reference or NULL
1372 struct mpi3mr_enclosure_node *mpi3mr_enclosure_find_by_handle(
1373 struct mpi3mr_ioc *mrioc, u16 handle)
1375 struct mpi3mr_enclosure_node *enclosure_dev, *r = NULL;
1377 list_for_each_entry(enclosure_dev, &mrioc->enclosure_list, list) {
1378 if (le16_to_cpu(enclosure_dev->pg0.enclosure_handle) != handle)
1388 * mpi3mr_encldev_add_chg_evt_debug - debug for enclosure event
1389 * @mrioc: Adapter instance reference
1390 * @encl_pg0: Enclosure page 0.
1391 * @is_added: Added event or not
1395 static void mpi3mr_encldev_add_chg_evt_debug(struct mpi3mr_ioc *mrioc,
1396 struct mpi3_enclosure_page0 *encl_pg0, u8 is_added)
1398 char *reason_str = NULL;
1400 if (!(mrioc->logging_level & MPI3_DEBUG_EVENT_WORK_TASK))
1404 reason_str = "enclosure added";
1406 reason_str = "enclosure dev status changed";
1409 "%s: handle(0x%04x), enclosure logical id(0x%016llx)\n",
1410 reason_str, le16_to_cpu(encl_pg0->enclosure_handle),
1411 (unsigned long long)le64_to_cpu(encl_pg0->enclosure_logical_id));
1413 "number of slots(%d), port(%d), flags(0x%04x), present(%d)\n",
1414 le16_to_cpu(encl_pg0->num_slots), encl_pg0->io_unit_port,
1415 le16_to_cpu(encl_pg0->flags),
1416 ((le16_to_cpu(encl_pg0->flags) &
1417 MPI3_ENCLS0_FLAGS_ENCL_DEV_PRESENT_MASK) >> 4));
1421 * mpi3mr_encldev_add_chg_evt_bh - Enclosure evt bottomhalf
1422 * @mrioc: Adapter instance reference
1423 * @fwevt: Firmware event reference
1425 * Prints information about the Enclosure device status or
1426 * Enclosure add events if logging is enabled and add or remove
1427 * the enclosure from the controller's internal list of
1432 static void mpi3mr_encldev_add_chg_evt_bh(struct mpi3mr_ioc *mrioc,
1433 struct mpi3mr_fwevt *fwevt)
1435 struct mpi3mr_enclosure_node *enclosure_dev = NULL;
1436 struct mpi3_enclosure_page0 *encl_pg0;
1440 encl_pg0 = (struct mpi3_enclosure_page0 *) fwevt->event_data;
1441 added = (fwevt->event_id == MPI3_EVENT_ENCL_DEVICE_ADDED) ? 1 : 0;
1442 mpi3mr_encldev_add_chg_evt_debug(mrioc, encl_pg0, added);
1445 encl_handle = le16_to_cpu(encl_pg0->enclosure_handle);
1446 present = ((le16_to_cpu(encl_pg0->flags) &
1447 MPI3_ENCLS0_FLAGS_ENCL_DEV_PRESENT_MASK) >> 4);
1450 enclosure_dev = mpi3mr_enclosure_find_by_handle(mrioc,
1452 if (!enclosure_dev && present) {
1454 kzalloc(sizeof(struct mpi3mr_enclosure_node),
1458 list_add_tail(&enclosure_dev->list,
1459 &mrioc->enclosure_list);
1461 if (enclosure_dev) {
1463 list_del(&enclosure_dev->list);
1464 kfree(enclosure_dev);
1466 memcpy(&enclosure_dev->pg0, encl_pg0,
1467 sizeof(enclosure_dev->pg0));
1473 * mpi3mr_sastopochg_evt_debug - SASTopoChange details
1474 * @mrioc: Adapter instance reference
1475 * @event_data: SAS topology change list event data
1477 * Prints information about the SAS topology change event.
1482 mpi3mr_sastopochg_evt_debug(struct mpi3mr_ioc *mrioc,
1483 struct mpi3_event_data_sas_topology_change_list *event_data)
1487 u8 reason_code, phy_number;
1488 char *status_str = NULL;
1489 u8 link_rate, prev_link_rate;
1491 switch (event_data->exp_status) {
1492 case MPI3_EVENT_SAS_TOPO_ES_NOT_RESPONDING:
1493 status_str = "remove";
1495 case MPI3_EVENT_SAS_TOPO_ES_RESPONDING:
1496 status_str = "responding";
1498 case MPI3_EVENT_SAS_TOPO_ES_DELAY_NOT_RESPONDING:
1499 status_str = "remove delay";
1501 case MPI3_EVENT_SAS_TOPO_ES_NO_EXPANDER:
1502 status_str = "direct attached";
1505 status_str = "unknown status";
1508 ioc_info(mrioc, "%s :sas topology change: (%s)\n",
1509 __func__, status_str);
1511 "%s :\texpander_handle(0x%04x), port(%d), enclosure_handle(0x%04x) start_phy(%02d), num_entries(%d)\n",
1512 __func__, le16_to_cpu(event_data->expander_dev_handle),
1513 event_data->io_unit_port,
1514 le16_to_cpu(event_data->enclosure_handle),
1515 event_data->start_phy_num, event_data->num_entries);
1516 for (i = 0; i < event_data->num_entries; i++) {
1517 handle = le16_to_cpu(event_data->phy_entry[i].attached_dev_handle);
1520 phy_number = event_data->start_phy_num + i;
1521 reason_code = event_data->phy_entry[i].status &
1522 MPI3_EVENT_SAS_TOPO_PHY_RC_MASK;
1523 switch (reason_code) {
1524 case MPI3_EVENT_SAS_TOPO_PHY_RC_TARG_NOT_RESPONDING:
1525 status_str = "target remove";
1527 case MPI3_EVENT_SAS_TOPO_PHY_RC_DELAY_NOT_RESPONDING:
1528 status_str = "delay target remove";
1530 case MPI3_EVENT_SAS_TOPO_PHY_RC_PHY_CHANGED:
1531 status_str = "link status change";
1533 case MPI3_EVENT_SAS_TOPO_PHY_RC_NO_CHANGE:
1534 status_str = "link status no change";
1536 case MPI3_EVENT_SAS_TOPO_PHY_RC_RESPONDING:
1537 status_str = "target responding";
1540 status_str = "unknown";
1543 link_rate = event_data->phy_entry[i].link_rate >> 4;
1544 prev_link_rate = event_data->phy_entry[i].link_rate & 0xF;
1546 "%s :\tphy(%02d), attached_handle(0x%04x): %s: link rate: new(0x%02x), old(0x%02x)\n",
1547 __func__, phy_number, handle, status_str, link_rate,
1553 * mpi3mr_sastopochg_evt_bh - SASTopologyChange evt bottomhalf
1554 * @mrioc: Adapter instance reference
1555 * @fwevt: Firmware event reference
1557 * Prints information about the SAS topology change event and
1558 * for "not responding" event code, removes the device from the
1563 static void mpi3mr_sastopochg_evt_bh(struct mpi3mr_ioc *mrioc,
1564 struct mpi3mr_fwevt *fwevt)
1566 struct mpi3_event_data_sas_topology_change_list *event_data =
1567 (struct mpi3_event_data_sas_topology_change_list *)fwevt->event_data;
1571 u64 exp_sas_address = 0, parent_sas_address = 0;
1572 struct mpi3mr_hba_port *hba_port = NULL;
1573 struct mpi3mr_tgt_dev *tgtdev = NULL;
1574 struct mpi3mr_sas_node *sas_expander = NULL;
1575 unsigned long flags;
1576 u8 link_rate, prev_link_rate, parent_phy_number;
1578 mpi3mr_sastopochg_evt_debug(mrioc, event_data);
1579 if (mrioc->sas_transport_enabled) {
1580 hba_port = mpi3mr_get_hba_port_by_id(mrioc,
1581 event_data->io_unit_port);
1582 if (le16_to_cpu(event_data->expander_dev_handle)) {
1583 spin_lock_irqsave(&mrioc->sas_node_lock, flags);
1584 sas_expander = __mpi3mr_expander_find_by_handle(mrioc,
1585 le16_to_cpu(event_data->expander_dev_handle));
1587 exp_sas_address = sas_expander->sas_address;
1588 hba_port = sas_expander->hba_port;
1590 spin_unlock_irqrestore(&mrioc->sas_node_lock, flags);
1591 parent_sas_address = exp_sas_address;
1593 parent_sas_address = mrioc->sas_hba.sas_address;
1596 for (i = 0; i < event_data->num_entries; i++) {
1599 handle = le16_to_cpu(event_data->phy_entry[i].attached_dev_handle);
1602 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, handle);
1606 reason_code = event_data->phy_entry[i].status &
1607 MPI3_EVENT_SAS_TOPO_PHY_RC_MASK;
1609 switch (reason_code) {
1610 case MPI3_EVENT_SAS_TOPO_PHY_RC_TARG_NOT_RESPONDING:
1611 if (tgtdev->host_exposed)
1612 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
1613 mpi3mr_tgtdev_del_from_list(mrioc, tgtdev, false);
1614 mpi3mr_tgtdev_put(tgtdev);
1616 case MPI3_EVENT_SAS_TOPO_PHY_RC_RESPONDING:
1617 case MPI3_EVENT_SAS_TOPO_PHY_RC_PHY_CHANGED:
1618 case MPI3_EVENT_SAS_TOPO_PHY_RC_NO_CHANGE:
1620 if (!mrioc->sas_transport_enabled || tgtdev->non_stl
1621 || tgtdev->is_hidden)
1623 link_rate = event_data->phy_entry[i].link_rate >> 4;
1624 prev_link_rate = event_data->phy_entry[i].link_rate & 0xF;
1625 if (link_rate == prev_link_rate)
1627 if (!parent_sas_address)
1629 parent_phy_number = event_data->start_phy_num + i;
1630 mpi3mr_update_links(mrioc, parent_sas_address, handle,
1631 parent_phy_number, link_rate, hba_port);
1638 mpi3mr_tgtdev_put(tgtdev);
1641 if (mrioc->sas_transport_enabled && (event_data->exp_status ==
1642 MPI3_EVENT_SAS_TOPO_ES_NOT_RESPONDING)) {
1644 mpi3mr_expander_remove(mrioc, exp_sas_address,
1650 * mpi3mr_pcietopochg_evt_debug - PCIeTopoChange details
1651 * @mrioc: Adapter instance reference
1652 * @event_data: PCIe topology change list event data
1654 * Prints information about the PCIe topology change event.
1659 mpi3mr_pcietopochg_evt_debug(struct mpi3mr_ioc *mrioc,
1660 struct mpi3_event_data_pcie_topology_change_list *event_data)
1666 char *status_str = NULL;
1667 u8 link_rate, prev_link_rate;
1669 switch (event_data->switch_status) {
1670 case MPI3_EVENT_PCIE_TOPO_SS_NOT_RESPONDING:
1671 status_str = "remove";
1673 case MPI3_EVENT_PCIE_TOPO_SS_RESPONDING:
1674 status_str = "responding";
1676 case MPI3_EVENT_PCIE_TOPO_SS_DELAY_NOT_RESPONDING:
1677 status_str = "remove delay";
1679 case MPI3_EVENT_PCIE_TOPO_SS_NO_PCIE_SWITCH:
1680 status_str = "direct attached";
1683 status_str = "unknown status";
1686 ioc_info(mrioc, "%s :pcie topology change: (%s)\n",
1687 __func__, status_str);
1689 "%s :\tswitch_handle(0x%04x), enclosure_handle(0x%04x) start_port(%02d), num_entries(%d)\n",
1690 __func__, le16_to_cpu(event_data->switch_dev_handle),
1691 le16_to_cpu(event_data->enclosure_handle),
1692 event_data->start_port_num, event_data->num_entries);
1693 for (i = 0; i < event_data->num_entries; i++) {
1695 le16_to_cpu(event_data->port_entry[i].attached_dev_handle);
1698 port_number = event_data->start_port_num + i;
1699 reason_code = event_data->port_entry[i].port_status;
1700 switch (reason_code) {
1701 case MPI3_EVENT_PCIE_TOPO_PS_NOT_RESPONDING:
1702 status_str = "target remove";
1704 case MPI3_EVENT_PCIE_TOPO_PS_DELAY_NOT_RESPONDING:
1705 status_str = "delay target remove";
1707 case MPI3_EVENT_PCIE_TOPO_PS_PORT_CHANGED:
1708 status_str = "link status change";
1710 case MPI3_EVENT_PCIE_TOPO_PS_NO_CHANGE:
1711 status_str = "link status no change";
1713 case MPI3_EVENT_PCIE_TOPO_PS_RESPONDING:
1714 status_str = "target responding";
1717 status_str = "unknown";
1720 link_rate = event_data->port_entry[i].current_port_info &
1721 MPI3_EVENT_PCIE_TOPO_PI_RATE_MASK;
1722 prev_link_rate = event_data->port_entry[i].previous_port_info &
1723 MPI3_EVENT_PCIE_TOPO_PI_RATE_MASK;
1725 "%s :\tport(%02d), attached_handle(0x%04x): %s: link rate: new(0x%02x), old(0x%02x)\n",
1726 __func__, port_number, handle, status_str, link_rate,
1732 * mpi3mr_pcietopochg_evt_bh - PCIeTopologyChange evt bottomhalf
1733 * @mrioc: Adapter instance reference
1734 * @fwevt: Firmware event reference
1736 * Prints information about the PCIe topology change event and
1737 * for "not responding" event code, removes the device from the
1742 static void mpi3mr_pcietopochg_evt_bh(struct mpi3mr_ioc *mrioc,
1743 struct mpi3mr_fwevt *fwevt)
1745 struct mpi3_event_data_pcie_topology_change_list *event_data =
1746 (struct mpi3_event_data_pcie_topology_change_list *)fwevt->event_data;
1750 struct mpi3mr_tgt_dev *tgtdev = NULL;
1752 mpi3mr_pcietopochg_evt_debug(mrioc, event_data);
1754 for (i = 0; i < event_data->num_entries; i++) {
1758 le16_to_cpu(event_data->port_entry[i].attached_dev_handle);
1761 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, handle);
1765 reason_code = event_data->port_entry[i].port_status;
1767 switch (reason_code) {
1768 case MPI3_EVENT_PCIE_TOPO_PS_NOT_RESPONDING:
1769 if (tgtdev->host_exposed)
1770 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
1771 mpi3mr_tgtdev_del_from_list(mrioc, tgtdev, false);
1772 mpi3mr_tgtdev_put(tgtdev);
1778 mpi3mr_tgtdev_put(tgtdev);
1783 * mpi3mr_logdata_evt_bh - Log data event bottomhalf
1784 * @mrioc: Adapter instance reference
1785 * @fwevt: Firmware event reference
1787 * Extracts the event data and calls application interfacing
1788 * function to process the event further.
1792 static void mpi3mr_logdata_evt_bh(struct mpi3mr_ioc *mrioc,
1793 struct mpi3mr_fwevt *fwevt)
1795 mpi3mr_app_save_logdata(mrioc, fwevt->event_data,
1796 fwevt->event_data_size);
1800 * mpi3mr_update_sdev_qd - Update SCSI device queue depath
1801 * @sdev: SCSI device reference
1802 * @data: Queue depth reference
1804 * This is an iterator function called for each SCSI device in a
1805 * target to update the QD of each SCSI device.
1809 static void mpi3mr_update_sdev_qd(struct scsi_device *sdev, void *data)
1811 u16 *q_depth = (u16 *)data;
1813 scsi_change_queue_depth(sdev, (int)*q_depth);
1814 sdev->max_queue_depth = sdev->queue_depth;
1818 * mpi3mr_set_qd_for_all_vd_in_tg -set QD for TG VDs
1819 * @mrioc: Adapter instance reference
1820 * @tg: Throttle group information pointer
1822 * Accessor to reduce QD for each device associated with the
1823 * given throttle group.
1827 static void mpi3mr_set_qd_for_all_vd_in_tg(struct mpi3mr_ioc *mrioc,
1828 struct mpi3mr_throttle_group_info *tg)
1830 unsigned long flags;
1831 struct mpi3mr_tgt_dev *tgtdev;
1832 struct mpi3mr_stgt_priv_data *tgt_priv;
1835 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
1836 list_for_each_entry(tgtdev, &mrioc->tgtdev_list, list) {
1837 if (tgtdev->starget && tgtdev->starget->hostdata) {
1838 tgt_priv = tgtdev->starget->hostdata;
1839 if (tgt_priv->throttle_group == tg) {
1840 dprint_event_bh(mrioc,
1841 "updating qd due to throttling for persist_id(%d) original_qd(%d), reduced_qd (%d)\n",
1842 tgt_priv->perst_id, tgtdev->q_depth,
1844 starget_for_each_device(tgtdev->starget,
1845 (void *)&tg->modified_qd,
1846 mpi3mr_update_sdev_qd);
1850 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
1854 * mpi3mr_fwevt_bh - Firmware event bottomhalf handler
1855 * @mrioc: Adapter instance reference
1856 * @fwevt: Firmware event reference
1858 * Identifies the firmware event and calls corresponding bottomg
1859 * half handler and sends event acknowledgment if required.
1863 static void mpi3mr_fwevt_bh(struct mpi3mr_ioc *mrioc,
1864 struct mpi3mr_fwevt *fwevt)
1866 struct mpi3_device_page0 *dev_pg0 = NULL;
1867 u16 perst_id, handle, dev_info;
1868 struct mpi3_device0_sas_sata_format *sasinf = NULL;
1870 mpi3mr_fwevt_del_from_list(mrioc, fwevt);
1871 mrioc->current_event = fwevt;
1873 if (mrioc->stop_drv_processing)
1876 if (mrioc->unrecoverable) {
1877 dprint_event_bh(mrioc,
1878 "ignoring event(0x%02x) in bottom half handler due to unrecoverable controller\n",
1883 if (!fwevt->process_evt)
1886 switch (fwevt->event_id) {
1887 case MPI3_EVENT_DEVICE_ADDED:
1889 dev_pg0 = (struct mpi3_device_page0 *)fwevt->event_data;
1890 perst_id = le16_to_cpu(dev_pg0->persistent_id);
1891 handle = le16_to_cpu(dev_pg0->dev_handle);
1892 if (perst_id != MPI3_DEVICE0_PERSISTENTID_INVALID)
1893 mpi3mr_report_tgtdev_to_host(mrioc, perst_id);
1894 else if (mrioc->sas_transport_enabled &&
1895 (dev_pg0->device_form == MPI3_DEVICE_DEVFORM_SAS_SATA)) {
1896 sasinf = &dev_pg0->device_specific.sas_sata_format;
1897 dev_info = le16_to_cpu(sasinf->device_info);
1898 if (!mrioc->sas_hba.num_phys)
1899 mpi3mr_sas_host_add(mrioc);
1901 mpi3mr_sas_host_refresh(mrioc);
1903 if (mpi3mr_is_expander_device(dev_info))
1904 mpi3mr_expander_add(mrioc, handle);
1908 case MPI3_EVENT_DEVICE_INFO_CHANGED:
1910 dev_pg0 = (struct mpi3_device_page0 *)fwevt->event_data;
1911 perst_id = le16_to_cpu(dev_pg0->persistent_id);
1912 if (perst_id != MPI3_DEVICE0_PERSISTENTID_INVALID)
1913 mpi3mr_devinfochg_evt_bh(mrioc, dev_pg0);
1916 case MPI3_EVENT_DEVICE_STATUS_CHANGE:
1918 mpi3mr_devstatuschg_evt_bh(mrioc, fwevt);
1921 case MPI3_EVENT_ENCL_DEVICE_ADDED:
1922 case MPI3_EVENT_ENCL_DEVICE_STATUS_CHANGE:
1924 mpi3mr_encldev_add_chg_evt_bh(mrioc, fwevt);
1928 case MPI3_EVENT_SAS_TOPOLOGY_CHANGE_LIST:
1930 mpi3mr_sastopochg_evt_bh(mrioc, fwevt);
1933 case MPI3_EVENT_PCIE_TOPOLOGY_CHANGE_LIST:
1935 mpi3mr_pcietopochg_evt_bh(mrioc, fwevt);
1938 case MPI3_EVENT_LOG_DATA:
1940 mpi3mr_logdata_evt_bh(mrioc, fwevt);
1943 case MPI3MR_DRIVER_EVENT_TG_QD_REDUCTION:
1945 struct mpi3mr_throttle_group_info *tg;
1947 tg = *(struct mpi3mr_throttle_group_info **)fwevt->event_data;
1948 dprint_event_bh(mrioc,
1949 "qd reduction event processed for tg_id(%d) reduction_needed(%d)\n",
1950 tg->id, tg->need_qd_reduction);
1951 if (tg->need_qd_reduction) {
1952 mpi3mr_set_qd_for_all_vd_in_tg(mrioc, tg);
1953 tg->need_qd_reduction = 0;
1957 case MPI3_EVENT_WAIT_FOR_DEVICES_TO_REFRESH:
1959 while (mrioc->device_refresh_on)
1962 dprint_event_bh(mrioc,
1963 "scan for non responding and newly added devices after soft reset started\n");
1964 if (mrioc->sas_transport_enabled) {
1965 mpi3mr_refresh_sas_ports(mrioc);
1966 mpi3mr_refresh_expanders(mrioc);
1968 mpi3mr_rfresh_tgtdevs(mrioc);
1970 "scan for non responding and newly added devices after soft reset completed\n");
1978 if (fwevt->send_ack)
1979 mpi3mr_process_event_ack(mrioc, fwevt->event_id,
1982 /* Put fwevt reference count to neutralize kref_init increment */
1983 mpi3mr_fwevt_put(fwevt);
1984 mrioc->current_event = NULL;
1988 * mpi3mr_fwevt_worker - Firmware event worker
1989 * @work: Work struct containing firmware event
1991 * Extracts the firmware event and calls mpi3mr_fwevt_bh.
1995 static void mpi3mr_fwevt_worker(struct work_struct *work)
1997 struct mpi3mr_fwevt *fwevt = container_of(work, struct mpi3mr_fwevt,
1999 mpi3mr_fwevt_bh(fwevt->mrioc, fwevt);
2001 * Put fwevt reference count after
2002 * dequeuing it from worker queue
2004 mpi3mr_fwevt_put(fwevt);
2008 * mpi3mr_create_tgtdev - Create and add a target device
2009 * @mrioc: Adapter instance reference
2010 * @dev_pg0: Device Page 0 data
2012 * If the device specified by the device page 0 data is not
2013 * present in the driver's internal list, allocate the memory
2014 * for the device, populate the data and add to the list, else
2015 * update the device data. The key is persistent ID.
2017 * Return: 0 on success, -ENOMEM on memory allocation failure
2019 static int mpi3mr_create_tgtdev(struct mpi3mr_ioc *mrioc,
2020 struct mpi3_device_page0 *dev_pg0)
2023 struct mpi3mr_tgt_dev *tgtdev = NULL;
2025 unsigned long flags;
2027 perst_id = le16_to_cpu(dev_pg0->persistent_id);
2028 if (perst_id == MPI3_DEVICE0_PERSISTENTID_INVALID)
2031 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
2032 tgtdev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, perst_id);
2034 tgtdev->state = MPI3MR_DEV_CREATED;
2035 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
2038 mpi3mr_update_tgtdev(mrioc, tgtdev, dev_pg0, true);
2039 mpi3mr_tgtdev_put(tgtdev);
2041 tgtdev = mpi3mr_alloc_tgtdev();
2044 mpi3mr_update_tgtdev(mrioc, tgtdev, dev_pg0, true);
2045 mpi3mr_tgtdev_add_to_list(mrioc, tgtdev);
2052 * mpi3mr_flush_delayed_cmd_lists - Flush pending commands
2053 * @mrioc: Adapter instance reference
2055 * Flush pending commands in the delayed lists due to a
2056 * controller reset or driver removal as a cleanup.
2060 void mpi3mr_flush_delayed_cmd_lists(struct mpi3mr_ioc *mrioc)
2062 struct delayed_dev_rmhs_node *_rmhs_node;
2063 struct delayed_evt_ack_node *_evtack_node;
2065 dprint_reset(mrioc, "flushing delayed dev_remove_hs commands\n");
2066 while (!list_empty(&mrioc->delayed_rmhs_list)) {
2067 _rmhs_node = list_entry(mrioc->delayed_rmhs_list.next,
2068 struct delayed_dev_rmhs_node, list);
2069 list_del(&_rmhs_node->list);
2072 dprint_reset(mrioc, "flushing delayed event ack commands\n");
2073 while (!list_empty(&mrioc->delayed_evtack_cmds_list)) {
2074 _evtack_node = list_entry(mrioc->delayed_evtack_cmds_list.next,
2075 struct delayed_evt_ack_node, list);
2076 list_del(&_evtack_node->list);
2077 kfree(_evtack_node);
2082 * mpi3mr_dev_rmhs_complete_iou - Device removal IOUC completion
2083 * @mrioc: Adapter instance reference
2084 * @drv_cmd: Internal command tracker
2086 * Issues a target reset TM to the firmware from the device
2087 * removal TM pend list or retry the removal handshake sequence
2088 * based on the IOU control request IOC status.
2092 static void mpi3mr_dev_rmhs_complete_iou(struct mpi3mr_ioc *mrioc,
2093 struct mpi3mr_drv_cmd *drv_cmd)
2095 u16 cmd_idx = drv_cmd->host_tag - MPI3MR_HOSTTAG_DEVRMCMD_MIN;
2096 struct delayed_dev_rmhs_node *delayed_dev_rmhs = NULL;
2098 if (drv_cmd->state & MPI3MR_CMD_RESET)
2102 "%s :dev_rmhs_iouctrl_complete:handle(0x%04x), ioc_status(0x%04x), loginfo(0x%08x)\n",
2103 __func__, drv_cmd->dev_handle, drv_cmd->ioc_status,
2104 drv_cmd->ioc_loginfo);
2105 if (drv_cmd->ioc_status != MPI3_IOCSTATUS_SUCCESS) {
2106 if (drv_cmd->retry_count < MPI3MR_DEV_RMHS_RETRY_COUNT) {
2107 drv_cmd->retry_count++;
2109 "%s :dev_rmhs_iouctrl_complete: handle(0x%04x)retrying handshake retry=%d\n",
2110 __func__, drv_cmd->dev_handle,
2111 drv_cmd->retry_count);
2112 mpi3mr_dev_rmhs_send_tm(mrioc, drv_cmd->dev_handle,
2113 drv_cmd, drv_cmd->iou_rc);
2117 "%s :dev removal handshake failed after all retries: handle(0x%04x)\n",
2118 __func__, drv_cmd->dev_handle);
2121 "%s :dev removal handshake completed successfully: handle(0x%04x)\n",
2122 __func__, drv_cmd->dev_handle);
2123 clear_bit(drv_cmd->dev_handle, mrioc->removepend_bitmap);
2126 if (!list_empty(&mrioc->delayed_rmhs_list)) {
2127 delayed_dev_rmhs = list_entry(mrioc->delayed_rmhs_list.next,
2128 struct delayed_dev_rmhs_node, list);
2129 drv_cmd->dev_handle = delayed_dev_rmhs->handle;
2130 drv_cmd->retry_count = 0;
2131 drv_cmd->iou_rc = delayed_dev_rmhs->iou_rc;
2133 "%s :dev_rmhs_iouctrl_complete: processing delayed TM: handle(0x%04x)\n",
2134 __func__, drv_cmd->dev_handle);
2135 mpi3mr_dev_rmhs_send_tm(mrioc, drv_cmd->dev_handle, drv_cmd,
2137 list_del(&delayed_dev_rmhs->list);
2138 kfree(delayed_dev_rmhs);
2143 drv_cmd->state = MPI3MR_CMD_NOTUSED;
2144 drv_cmd->callback = NULL;
2145 drv_cmd->retry_count = 0;
2146 drv_cmd->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
2147 clear_bit(cmd_idx, mrioc->devrem_bitmap);
2151 * mpi3mr_dev_rmhs_complete_tm - Device removal TM completion
2152 * @mrioc: Adapter instance reference
2153 * @drv_cmd: Internal command tracker
2155 * Issues a target reset TM to the firmware from the device
2156 * removal TM pend list or issue IO unit control request as
2157 * part of device removal or hidden acknowledgment handshake.
2161 static void mpi3mr_dev_rmhs_complete_tm(struct mpi3mr_ioc *mrioc,
2162 struct mpi3mr_drv_cmd *drv_cmd)
2164 struct mpi3_iounit_control_request iou_ctrl;
2165 u16 cmd_idx = drv_cmd->host_tag - MPI3MR_HOSTTAG_DEVRMCMD_MIN;
2166 struct mpi3_scsi_task_mgmt_reply *tm_reply = NULL;
2169 if (drv_cmd->state & MPI3MR_CMD_RESET)
2172 if (drv_cmd->state & MPI3MR_CMD_REPLY_VALID)
2173 tm_reply = (struct mpi3_scsi_task_mgmt_reply *)drv_cmd->reply;
2177 "dev_rmhs_tr_complete:handle(0x%04x), ioc_status(0x%04x), loginfo(0x%08x), term_count(%d)\n",
2178 mrioc->name, drv_cmd->dev_handle, drv_cmd->ioc_status,
2179 drv_cmd->ioc_loginfo,
2180 le32_to_cpu(tm_reply->termination_count));
2182 pr_info(IOCNAME "Issuing IOU CTL: handle(0x%04x) dev_rmhs idx(%d)\n",
2183 mrioc->name, drv_cmd->dev_handle, cmd_idx);
2185 memset(&iou_ctrl, 0, sizeof(iou_ctrl));
2187 drv_cmd->state = MPI3MR_CMD_PENDING;
2188 drv_cmd->is_waiting = 0;
2189 drv_cmd->callback = mpi3mr_dev_rmhs_complete_iou;
2190 iou_ctrl.operation = drv_cmd->iou_rc;
2191 iou_ctrl.param16[0] = cpu_to_le16(drv_cmd->dev_handle);
2192 iou_ctrl.host_tag = cpu_to_le16(drv_cmd->host_tag);
2193 iou_ctrl.function = MPI3_FUNCTION_IO_UNIT_CONTROL;
2195 retval = mpi3mr_admin_request_post(mrioc, &iou_ctrl, sizeof(iou_ctrl),
2198 pr_err(IOCNAME "Issue DevRmHsTMIOUCTL: Admin post failed\n",
2205 drv_cmd->state = MPI3MR_CMD_NOTUSED;
2206 drv_cmd->callback = NULL;
2207 drv_cmd->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
2208 drv_cmd->retry_count = 0;
2209 clear_bit(cmd_idx, mrioc->devrem_bitmap);
2213 * mpi3mr_dev_rmhs_send_tm - Issue TM for device removal
2214 * @mrioc: Adapter instance reference
2215 * @handle: Device handle
2216 * @cmdparam: Internal command tracker
2217 * @iou_rc: IO unit reason code
2219 * Issues a target reset TM to the firmware or add it to a pend
2220 * list as part of device removal or hidden acknowledgment
2225 static void mpi3mr_dev_rmhs_send_tm(struct mpi3mr_ioc *mrioc, u16 handle,
2226 struct mpi3mr_drv_cmd *cmdparam, u8 iou_rc)
2228 struct mpi3_scsi_task_mgmt_request tm_req;
2230 u16 cmd_idx = MPI3MR_NUM_DEVRMCMD;
2232 struct mpi3mr_drv_cmd *drv_cmd = cmdparam;
2233 struct delayed_dev_rmhs_node *delayed_dev_rmhs = NULL;
2234 struct mpi3mr_tgt_dev *tgtdev = NULL;
2235 unsigned long flags;
2237 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
2238 tgtdev = __mpi3mr_get_tgtdev_by_handle(mrioc, handle);
2239 if (tgtdev && (iou_rc == MPI3_CTRL_OP_REMOVE_DEVICE))
2240 tgtdev->state = MPI3MR_DEV_REMOVE_HS_STARTED;
2241 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
2246 cmd_idx = find_first_zero_bit(mrioc->devrem_bitmap,
2247 MPI3MR_NUM_DEVRMCMD);
2248 if (cmd_idx < MPI3MR_NUM_DEVRMCMD) {
2249 if (!test_and_set_bit(cmd_idx, mrioc->devrem_bitmap))
2251 cmd_idx = MPI3MR_NUM_DEVRMCMD;
2253 } while (retrycount--);
2255 if (cmd_idx >= MPI3MR_NUM_DEVRMCMD) {
2256 delayed_dev_rmhs = kzalloc(sizeof(*delayed_dev_rmhs),
2258 if (!delayed_dev_rmhs)
2260 INIT_LIST_HEAD(&delayed_dev_rmhs->list);
2261 delayed_dev_rmhs->handle = handle;
2262 delayed_dev_rmhs->iou_rc = iou_rc;
2263 list_add_tail(&delayed_dev_rmhs->list,
2264 &mrioc->delayed_rmhs_list);
2265 ioc_info(mrioc, "%s :DevRmHs: tr:handle(0x%04x) is postponed\n",
2269 drv_cmd = &mrioc->dev_rmhs_cmds[cmd_idx];
2272 cmd_idx = drv_cmd->host_tag - MPI3MR_HOSTTAG_DEVRMCMD_MIN;
2274 "%s :Issuing TR TM: for devhandle 0x%04x with dev_rmhs %d\n",
2275 __func__, handle, cmd_idx);
2277 memset(&tm_req, 0, sizeof(tm_req));
2278 if (drv_cmd->state & MPI3MR_CMD_PENDING) {
2279 ioc_err(mrioc, "%s :Issue TM: Command is in use\n", __func__);
2282 drv_cmd->state = MPI3MR_CMD_PENDING;
2283 drv_cmd->is_waiting = 0;
2284 drv_cmd->callback = mpi3mr_dev_rmhs_complete_tm;
2285 drv_cmd->dev_handle = handle;
2286 drv_cmd->iou_rc = iou_rc;
2287 tm_req.dev_handle = cpu_to_le16(handle);
2288 tm_req.task_type = MPI3_SCSITASKMGMT_TASKTYPE_TARGET_RESET;
2289 tm_req.host_tag = cpu_to_le16(drv_cmd->host_tag);
2290 tm_req.task_host_tag = cpu_to_le16(MPI3MR_HOSTTAG_INVALID);
2291 tm_req.function = MPI3_FUNCTION_SCSI_TASK_MGMT;
2293 set_bit(handle, mrioc->removepend_bitmap);
2294 retval = mpi3mr_admin_request_post(mrioc, &tm_req, sizeof(tm_req), 1);
2296 ioc_err(mrioc, "%s :Issue DevRmHsTM: Admin Post failed\n",
2303 drv_cmd->state = MPI3MR_CMD_NOTUSED;
2304 drv_cmd->callback = NULL;
2305 drv_cmd->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
2306 drv_cmd->retry_count = 0;
2307 clear_bit(cmd_idx, mrioc->devrem_bitmap);
2311 * mpi3mr_complete_evt_ack - event ack request completion
2312 * @mrioc: Adapter instance reference
2313 * @drv_cmd: Internal command tracker
2315 * This is the completion handler for non blocking event
2316 * acknowledgment sent to the firmware and this will issue any
2317 * pending event acknowledgment request.
2321 static void mpi3mr_complete_evt_ack(struct mpi3mr_ioc *mrioc,
2322 struct mpi3mr_drv_cmd *drv_cmd)
2324 u16 cmd_idx = drv_cmd->host_tag - MPI3MR_HOSTTAG_EVTACKCMD_MIN;
2325 struct delayed_evt_ack_node *delayed_evtack = NULL;
2327 if (drv_cmd->state & MPI3MR_CMD_RESET)
2330 if (drv_cmd->ioc_status != MPI3_IOCSTATUS_SUCCESS) {
2331 dprint_event_th(mrioc,
2332 "immediate event ack failed with ioc_status(0x%04x) log_info(0x%08x)\n",
2333 (drv_cmd->ioc_status & MPI3_IOCSTATUS_STATUS_MASK),
2334 drv_cmd->ioc_loginfo);
2337 if (!list_empty(&mrioc->delayed_evtack_cmds_list)) {
2339 list_entry(mrioc->delayed_evtack_cmds_list.next,
2340 struct delayed_evt_ack_node, list);
2341 mpi3mr_send_event_ack(mrioc, delayed_evtack->event, drv_cmd,
2342 delayed_evtack->event_ctx);
2343 list_del(&delayed_evtack->list);
2344 kfree(delayed_evtack);
2348 drv_cmd->state = MPI3MR_CMD_NOTUSED;
2349 drv_cmd->callback = NULL;
2350 clear_bit(cmd_idx, mrioc->evtack_cmds_bitmap);
2354 * mpi3mr_send_event_ack - Issue event acknwoledgment request
2355 * @mrioc: Adapter instance reference
2356 * @event: MPI3 event id
2357 * @cmdparam: Internal command tracker
2358 * @event_ctx: event context
2360 * Issues event acknowledgment request to the firmware if there
2361 * is a free command to send the event ack else it to a pend
2362 * list so that it will be processed on a completion of a prior
2363 * event acknowledgment .
2367 static void mpi3mr_send_event_ack(struct mpi3mr_ioc *mrioc, u8 event,
2368 struct mpi3mr_drv_cmd *cmdparam, u32 event_ctx)
2370 struct mpi3_event_ack_request evtack_req;
2373 u16 cmd_idx = MPI3MR_NUM_EVTACKCMD;
2374 struct mpi3mr_drv_cmd *drv_cmd = cmdparam;
2375 struct delayed_evt_ack_node *delayed_evtack = NULL;
2378 dprint_event_th(mrioc,
2379 "sending delayed event ack in the top half for event(0x%02x), event_ctx(0x%08x)\n",
2383 dprint_event_th(mrioc,
2384 "sending event ack in the top half for event(0x%02x), event_ctx(0x%08x)\n",
2387 cmd_idx = find_first_zero_bit(mrioc->evtack_cmds_bitmap,
2388 MPI3MR_NUM_EVTACKCMD);
2389 if (cmd_idx < MPI3MR_NUM_EVTACKCMD) {
2390 if (!test_and_set_bit(cmd_idx,
2391 mrioc->evtack_cmds_bitmap))
2393 cmd_idx = MPI3MR_NUM_EVTACKCMD;
2395 } while (retrycount--);
2397 if (cmd_idx >= MPI3MR_NUM_EVTACKCMD) {
2398 delayed_evtack = kzalloc(sizeof(*delayed_evtack),
2400 if (!delayed_evtack)
2402 INIT_LIST_HEAD(&delayed_evtack->list);
2403 delayed_evtack->event = event;
2404 delayed_evtack->event_ctx = event_ctx;
2405 list_add_tail(&delayed_evtack->list,
2406 &mrioc->delayed_evtack_cmds_list);
2407 dprint_event_th(mrioc,
2408 "event ack in the top half for event(0x%02x), event_ctx(0x%08x) is postponed\n",
2412 drv_cmd = &mrioc->evtack_cmds[cmd_idx];
2415 cmd_idx = drv_cmd->host_tag - MPI3MR_HOSTTAG_EVTACKCMD_MIN;
2417 memset(&evtack_req, 0, sizeof(evtack_req));
2418 if (drv_cmd->state & MPI3MR_CMD_PENDING) {
2419 dprint_event_th(mrioc,
2420 "sending event ack failed due to command in use\n");
2423 drv_cmd->state = MPI3MR_CMD_PENDING;
2424 drv_cmd->is_waiting = 0;
2425 drv_cmd->callback = mpi3mr_complete_evt_ack;
2426 evtack_req.host_tag = cpu_to_le16(drv_cmd->host_tag);
2427 evtack_req.function = MPI3_FUNCTION_EVENT_ACK;
2428 evtack_req.event = event;
2429 evtack_req.event_context = cpu_to_le32(event_ctx);
2430 retval = mpi3mr_admin_request_post(mrioc, &evtack_req,
2431 sizeof(evtack_req), 1);
2433 dprint_event_th(mrioc,
2434 "posting event ack request is failed\n");
2438 dprint_event_th(mrioc,
2439 "event ack in the top half for event(0x%02x), event_ctx(0x%08x) is posted\n",
2444 drv_cmd->state = MPI3MR_CMD_NOTUSED;
2445 drv_cmd->callback = NULL;
2446 clear_bit(cmd_idx, mrioc->evtack_cmds_bitmap);
2450 * mpi3mr_pcietopochg_evt_th - PCIETopologyChange evt tophalf
2451 * @mrioc: Adapter instance reference
2452 * @event_reply: event data
2454 * Checks for the reason code and based on that either block I/O
2455 * to device, or unblock I/O to the device, or start the device
2456 * removal handshake with reason as remove with the firmware for
2461 static void mpi3mr_pcietopochg_evt_th(struct mpi3mr_ioc *mrioc,
2462 struct mpi3_event_notification_reply *event_reply)
2464 struct mpi3_event_data_pcie_topology_change_list *topo_evt =
2465 (struct mpi3_event_data_pcie_topology_change_list *)event_reply->event_data;
2469 struct mpi3mr_tgt_dev *tgtdev = NULL;
2470 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data = NULL;
2472 for (i = 0; i < topo_evt->num_entries; i++) {
2473 handle = le16_to_cpu(topo_evt->port_entry[i].attached_dev_handle);
2476 reason_code = topo_evt->port_entry[i].port_status;
2477 scsi_tgt_priv_data = NULL;
2478 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, handle);
2479 if (tgtdev && tgtdev->starget && tgtdev->starget->hostdata)
2480 scsi_tgt_priv_data = (struct mpi3mr_stgt_priv_data *)
2481 tgtdev->starget->hostdata;
2482 switch (reason_code) {
2483 case MPI3_EVENT_PCIE_TOPO_PS_NOT_RESPONDING:
2484 if (scsi_tgt_priv_data) {
2485 scsi_tgt_priv_data->dev_removed = 1;
2486 scsi_tgt_priv_data->dev_removedelay = 0;
2487 atomic_set(&scsi_tgt_priv_data->block_io, 0);
2489 mpi3mr_dev_rmhs_send_tm(mrioc, handle, NULL,
2490 MPI3_CTRL_OP_REMOVE_DEVICE);
2492 case MPI3_EVENT_PCIE_TOPO_PS_DELAY_NOT_RESPONDING:
2493 if (scsi_tgt_priv_data) {
2494 scsi_tgt_priv_data->dev_removedelay = 1;
2495 atomic_inc(&scsi_tgt_priv_data->block_io);
2498 case MPI3_EVENT_PCIE_TOPO_PS_RESPONDING:
2499 if (scsi_tgt_priv_data &&
2500 scsi_tgt_priv_data->dev_removedelay) {
2501 scsi_tgt_priv_data->dev_removedelay = 0;
2502 atomic_dec_if_positive
2503 (&scsi_tgt_priv_data->block_io);
2506 case MPI3_EVENT_PCIE_TOPO_PS_PORT_CHANGED:
2511 mpi3mr_tgtdev_put(tgtdev);
2516 * mpi3mr_sastopochg_evt_th - SASTopologyChange evt tophalf
2517 * @mrioc: Adapter instance reference
2518 * @event_reply: event data
2520 * Checks for the reason code and based on that either block I/O
2521 * to device, or unblock I/O to the device, or start the device
2522 * removal handshake with reason as remove with the firmware for
2527 static void mpi3mr_sastopochg_evt_th(struct mpi3mr_ioc *mrioc,
2528 struct mpi3_event_notification_reply *event_reply)
2530 struct mpi3_event_data_sas_topology_change_list *topo_evt =
2531 (struct mpi3_event_data_sas_topology_change_list *)event_reply->event_data;
2535 struct mpi3mr_tgt_dev *tgtdev = NULL;
2536 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data = NULL;
2538 for (i = 0; i < topo_evt->num_entries; i++) {
2539 handle = le16_to_cpu(topo_evt->phy_entry[i].attached_dev_handle);
2542 reason_code = topo_evt->phy_entry[i].status &
2543 MPI3_EVENT_SAS_TOPO_PHY_RC_MASK;
2544 scsi_tgt_priv_data = NULL;
2545 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, handle);
2546 if (tgtdev && tgtdev->starget && tgtdev->starget->hostdata)
2547 scsi_tgt_priv_data = (struct mpi3mr_stgt_priv_data *)
2548 tgtdev->starget->hostdata;
2549 switch (reason_code) {
2550 case MPI3_EVENT_SAS_TOPO_PHY_RC_TARG_NOT_RESPONDING:
2551 if (scsi_tgt_priv_data) {
2552 scsi_tgt_priv_data->dev_removed = 1;
2553 scsi_tgt_priv_data->dev_removedelay = 0;
2554 atomic_set(&scsi_tgt_priv_data->block_io, 0);
2556 mpi3mr_dev_rmhs_send_tm(mrioc, handle, NULL,
2557 MPI3_CTRL_OP_REMOVE_DEVICE);
2559 case MPI3_EVENT_SAS_TOPO_PHY_RC_DELAY_NOT_RESPONDING:
2560 if (scsi_tgt_priv_data) {
2561 scsi_tgt_priv_data->dev_removedelay = 1;
2562 atomic_inc(&scsi_tgt_priv_data->block_io);
2565 case MPI3_EVENT_SAS_TOPO_PHY_RC_RESPONDING:
2566 if (scsi_tgt_priv_data &&
2567 scsi_tgt_priv_data->dev_removedelay) {
2568 scsi_tgt_priv_data->dev_removedelay = 0;
2569 atomic_dec_if_positive
2570 (&scsi_tgt_priv_data->block_io);
2573 case MPI3_EVENT_SAS_TOPO_PHY_RC_PHY_CHANGED:
2578 mpi3mr_tgtdev_put(tgtdev);
2583 * mpi3mr_devstatuschg_evt_th - DeviceStatusChange evt tophalf
2584 * @mrioc: Adapter instance reference
2585 * @event_reply: event data
2587 * Checks for the reason code and based on that either block I/O
2588 * to device, or unblock I/O to the device, or start the device
2589 * removal handshake with reason as remove/hide acknowledgment
2590 * with the firmware.
2594 static void mpi3mr_devstatuschg_evt_th(struct mpi3mr_ioc *mrioc,
2595 struct mpi3_event_notification_reply *event_reply)
2598 u8 ublock = 0, block = 0, hide = 0, delete = 0, remove = 0;
2599 struct mpi3mr_tgt_dev *tgtdev = NULL;
2600 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data = NULL;
2601 struct mpi3_event_data_device_status_change *evtdata =
2602 (struct mpi3_event_data_device_status_change *)event_reply->event_data;
2604 if (mrioc->stop_drv_processing)
2607 dev_handle = le16_to_cpu(evtdata->dev_handle);
2609 switch (evtdata->reason_code) {
2610 case MPI3_EVENT_DEV_STAT_RC_INT_DEVICE_RESET_STRT:
2611 case MPI3_EVENT_DEV_STAT_RC_INT_IT_NEXUS_RESET_STRT:
2614 case MPI3_EVENT_DEV_STAT_RC_HIDDEN:
2618 case MPI3_EVENT_DEV_STAT_RC_VD_NOT_RESPONDING:
2622 case MPI3_EVENT_DEV_STAT_RC_INT_DEVICE_RESET_CMP:
2623 case MPI3_EVENT_DEV_STAT_RC_INT_IT_NEXUS_RESET_CMP:
2630 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, dev_handle);
2634 tgtdev->is_hidden = hide;
2635 if (tgtdev->starget && tgtdev->starget->hostdata) {
2636 scsi_tgt_priv_data = (struct mpi3mr_stgt_priv_data *)
2637 tgtdev->starget->hostdata;
2639 atomic_inc(&scsi_tgt_priv_data->block_io);
2641 scsi_tgt_priv_data->dev_removed = 1;
2643 atomic_dec_if_positive(&scsi_tgt_priv_data->block_io);
2646 mpi3mr_dev_rmhs_send_tm(mrioc, dev_handle, NULL,
2647 MPI3_CTRL_OP_REMOVE_DEVICE);
2649 mpi3mr_dev_rmhs_send_tm(mrioc, dev_handle, NULL,
2650 MPI3_CTRL_OP_HIDDEN_ACK);
2654 mpi3mr_tgtdev_put(tgtdev);
2658 * mpi3mr_preparereset_evt_th - Prepare for reset event tophalf
2659 * @mrioc: Adapter instance reference
2660 * @event_reply: event data
2662 * Blocks and unblocks host level I/O based on the reason code
2666 static void mpi3mr_preparereset_evt_th(struct mpi3mr_ioc *mrioc,
2667 struct mpi3_event_notification_reply *event_reply)
2669 struct mpi3_event_data_prepare_for_reset *evtdata =
2670 (struct mpi3_event_data_prepare_for_reset *)event_reply->event_data;
2672 if (evtdata->reason_code == MPI3_EVENT_PREPARE_RESET_RC_START) {
2673 dprint_event_th(mrioc,
2674 "prepare for reset event top half with rc=start\n");
2675 if (mrioc->prepare_for_reset)
2677 mrioc->prepare_for_reset = 1;
2678 mrioc->prepare_for_reset_timeout_counter = 0;
2679 } else if (evtdata->reason_code == MPI3_EVENT_PREPARE_RESET_RC_ABORT) {
2680 dprint_event_th(mrioc,
2681 "prepare for reset top half with rc=abort\n");
2682 mrioc->prepare_for_reset = 0;
2683 mrioc->prepare_for_reset_timeout_counter = 0;
2685 if ((event_reply->msg_flags & MPI3_EVENT_NOTIFY_MSGFLAGS_ACK_MASK)
2686 == MPI3_EVENT_NOTIFY_MSGFLAGS_ACK_REQUIRED)
2687 mpi3mr_send_event_ack(mrioc, event_reply->event, NULL,
2688 le32_to_cpu(event_reply->event_context));
2692 * mpi3mr_energypackchg_evt_th - Energy pack change evt tophalf
2693 * @mrioc: Adapter instance reference
2694 * @event_reply: event data
2696 * Identifies the new shutdown timeout value and update.
2700 static void mpi3mr_energypackchg_evt_th(struct mpi3mr_ioc *mrioc,
2701 struct mpi3_event_notification_reply *event_reply)
2703 struct mpi3_event_data_energy_pack_change *evtdata =
2704 (struct mpi3_event_data_energy_pack_change *)event_reply->event_data;
2705 u16 shutdown_timeout = le16_to_cpu(evtdata->shutdown_timeout);
2707 if (shutdown_timeout <= 0) {
2709 "%s :Invalid Shutdown Timeout received = %d\n",
2710 __func__, shutdown_timeout);
2715 "%s :Previous Shutdown Timeout Value = %d New Shutdown Timeout Value = %d\n",
2716 __func__, mrioc->facts.shutdown_timeout, shutdown_timeout);
2717 mrioc->facts.shutdown_timeout = shutdown_timeout;
2721 * mpi3mr_cablemgmt_evt_th - Cable management event tophalf
2722 * @mrioc: Adapter instance reference
2723 * @event_reply: event data
2725 * Displays Cable manegemt event details.
2729 static void mpi3mr_cablemgmt_evt_th(struct mpi3mr_ioc *mrioc,
2730 struct mpi3_event_notification_reply *event_reply)
2732 struct mpi3_event_data_cable_management *evtdata =
2733 (struct mpi3_event_data_cable_management *)event_reply->event_data;
2735 switch (evtdata->status) {
2736 case MPI3_EVENT_CABLE_MGMT_STATUS_INSUFFICIENT_POWER:
2738 ioc_info(mrioc, "An active cable with receptacle_id %d cannot be powered.\n"
2739 "Devices connected to this cable are not detected.\n"
2740 "This cable requires %d mW of power.\n",
2741 evtdata->receptacle_id,
2742 le32_to_cpu(evtdata->active_cable_power_requirement));
2745 case MPI3_EVENT_CABLE_MGMT_STATUS_DEGRADED:
2747 ioc_info(mrioc, "A cable with receptacle_id %d is not running at optimal speed\n",
2748 evtdata->receptacle_id);
2757 * mpi3mr_add_event_wait_for_device_refresh - Add Wait for Device Refresh Event
2758 * @mrioc: Adapter instance reference
2760 * Add driver specific event to make sure that the driver won't process the
2761 * events until all the devices are refreshed during soft reset.
2765 void mpi3mr_add_event_wait_for_device_refresh(struct mpi3mr_ioc *mrioc)
2767 struct mpi3mr_fwevt *fwevt = NULL;
2769 fwevt = mpi3mr_alloc_fwevt(0);
2771 dprint_event_th(mrioc,
2772 "failed to schedule bottom half handler for event(0x%02x)\n",
2773 MPI3_EVENT_WAIT_FOR_DEVICES_TO_REFRESH);
2776 fwevt->mrioc = mrioc;
2777 fwevt->event_id = MPI3_EVENT_WAIT_FOR_DEVICES_TO_REFRESH;
2778 fwevt->send_ack = 0;
2779 fwevt->process_evt = 1;
2781 fwevt->event_data_size = 0;
2782 mpi3mr_fwevt_add_to_list(mrioc, fwevt);
2786 * mpi3mr_os_handle_events - Firmware event handler
2787 * @mrioc: Adapter instance reference
2788 * @event_reply: event data
2790 * Identify whteher the event has to handled and acknowledged
2791 * and either process the event in the tophalf and/or schedule a
2792 * bottom half through mpi3mr_fwevt_worker.
2796 void mpi3mr_os_handle_events(struct mpi3mr_ioc *mrioc,
2797 struct mpi3_event_notification_reply *event_reply)
2800 struct mpi3mr_fwevt *fwevt = NULL;
2801 bool ack_req = 0, process_evt_bh = 0;
2803 if (mrioc->stop_drv_processing)
2806 if ((event_reply->msg_flags & MPI3_EVENT_NOTIFY_MSGFLAGS_ACK_MASK)
2807 == MPI3_EVENT_NOTIFY_MSGFLAGS_ACK_REQUIRED)
2810 evt_type = event_reply->event;
2813 case MPI3_EVENT_DEVICE_ADDED:
2815 struct mpi3_device_page0 *dev_pg0 =
2816 (struct mpi3_device_page0 *)event_reply->event_data;
2817 if (mpi3mr_create_tgtdev(mrioc, dev_pg0))
2819 "%s :Failed to add device in the device add event\n",
2825 case MPI3_EVENT_DEVICE_STATUS_CHANGE:
2828 mpi3mr_devstatuschg_evt_th(mrioc, event_reply);
2831 case MPI3_EVENT_SAS_TOPOLOGY_CHANGE_LIST:
2834 mpi3mr_sastopochg_evt_th(mrioc, event_reply);
2837 case MPI3_EVENT_PCIE_TOPOLOGY_CHANGE_LIST:
2840 mpi3mr_pcietopochg_evt_th(mrioc, event_reply);
2843 case MPI3_EVENT_PREPARE_FOR_RESET:
2845 mpi3mr_preparereset_evt_th(mrioc, event_reply);
2849 case MPI3_EVENT_DEVICE_INFO_CHANGED:
2850 case MPI3_EVENT_LOG_DATA:
2851 case MPI3_EVENT_ENCL_DEVICE_STATUS_CHANGE:
2852 case MPI3_EVENT_ENCL_DEVICE_ADDED:
2857 case MPI3_EVENT_ENERGY_PACK_CHANGE:
2859 mpi3mr_energypackchg_evt_th(mrioc, event_reply);
2862 case MPI3_EVENT_CABLE_MGMT:
2864 mpi3mr_cablemgmt_evt_th(mrioc, event_reply);
2867 case MPI3_EVENT_SAS_DISCOVERY:
2868 case MPI3_EVENT_SAS_DEVICE_DISCOVERY_ERROR:
2869 case MPI3_EVENT_SAS_BROADCAST_PRIMITIVE:
2870 case MPI3_EVENT_PCIE_ENUMERATION:
2873 ioc_info(mrioc, "%s :event 0x%02x is not handled\n",
2874 __func__, evt_type);
2877 if (process_evt_bh || ack_req) {
2878 sz = event_reply->event_data_length * 4;
2879 fwevt = mpi3mr_alloc_fwevt(sz);
2881 ioc_info(mrioc, "%s :failure at %s:%d/%s()!\n",
2882 __func__, __FILE__, __LINE__, __func__);
2886 memcpy(fwevt->event_data, event_reply->event_data, sz);
2887 fwevt->mrioc = mrioc;
2888 fwevt->event_id = evt_type;
2889 fwevt->send_ack = ack_req;
2890 fwevt->process_evt = process_evt_bh;
2891 fwevt->evt_ctx = le32_to_cpu(event_reply->event_context);
2892 mpi3mr_fwevt_add_to_list(mrioc, fwevt);
2897 * mpi3mr_setup_eedp - Setup EEDP information in MPI3 SCSI IO
2898 * @mrioc: Adapter instance reference
2899 * @scmd: SCSI command reference
2900 * @scsiio_req: MPI3 SCSI IO request
2902 * Identifies the protection information flags from the SCSI
2903 * command and set appropriate flags in the MPI3 SCSI IO
2908 static void mpi3mr_setup_eedp(struct mpi3mr_ioc *mrioc,
2909 struct scsi_cmnd *scmd, struct mpi3_scsi_io_request *scsiio_req)
2912 unsigned char prot_op = scsi_get_prot_op(scmd);
2915 case SCSI_PROT_NORMAL:
2917 case SCSI_PROT_READ_STRIP:
2918 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_CHECK_REMOVE;
2920 case SCSI_PROT_WRITE_INSERT:
2921 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_INSERT;
2923 case SCSI_PROT_READ_INSERT:
2924 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_INSERT;
2925 scsiio_req->msg_flags |= MPI3_SCSIIO_MSGFLAGS_METASGL_VALID;
2927 case SCSI_PROT_WRITE_STRIP:
2928 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_CHECK_REMOVE;
2929 scsiio_req->msg_flags |= MPI3_SCSIIO_MSGFLAGS_METASGL_VALID;
2931 case SCSI_PROT_READ_PASS:
2932 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_CHECK;
2933 scsiio_req->msg_flags |= MPI3_SCSIIO_MSGFLAGS_METASGL_VALID;
2935 case SCSI_PROT_WRITE_PASS:
2936 if (scmd->prot_flags & SCSI_PROT_IP_CHECKSUM) {
2937 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_CHECK_REGEN;
2938 scsiio_req->sgl[0].eedp.application_tag_translation_mask =
2941 eedp_flags = MPI3_EEDPFLAGS_EEDP_OP_CHECK;
2943 scsiio_req->msg_flags |= MPI3_SCSIIO_MSGFLAGS_METASGL_VALID;
2949 if (scmd->prot_flags & SCSI_PROT_GUARD_CHECK)
2950 eedp_flags |= MPI3_EEDPFLAGS_CHK_GUARD;
2952 if (scmd->prot_flags & SCSI_PROT_IP_CHECKSUM)
2953 eedp_flags |= MPI3_EEDPFLAGS_HOST_GUARD_IP_CHKSUM;
2955 if (scmd->prot_flags & SCSI_PROT_REF_CHECK) {
2956 eedp_flags |= MPI3_EEDPFLAGS_CHK_REF_TAG |
2957 MPI3_EEDPFLAGS_INCR_PRI_REF_TAG;
2958 scsiio_req->cdb.eedp32.primary_reference_tag =
2959 cpu_to_be32(scsi_prot_ref_tag(scmd));
2962 if (scmd->prot_flags & SCSI_PROT_REF_INCREMENT)
2963 eedp_flags |= MPI3_EEDPFLAGS_INCR_PRI_REF_TAG;
2965 eedp_flags |= MPI3_EEDPFLAGS_ESC_MODE_APPTAG_DISABLE;
2967 switch (scsi_prot_interval(scmd)) {
2969 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_512;
2972 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_520;
2975 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_4080;
2978 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_4088;
2981 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_4096;
2984 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_4104;
2987 scsiio_req->sgl[0].eedp.user_data_size = MPI3_EEDP_UDS_4160;
2993 scsiio_req->sgl[0].eedp.eedp_flags = cpu_to_le16(eedp_flags);
2994 scsiio_req->sgl[0].eedp.flags = MPI3_SGE_FLAGS_ELEMENT_TYPE_EXTENDED;
2998 * mpi3mr_build_sense_buffer - Map sense information
3000 * @buf: Sense buffer to populate
3002 * @asc: Additional sense code
3003 * @ascq: Additional sense code qualifier
3005 * Maps the given sense information into either descriptor or
3006 * fixed format sense data.
3010 static inline void mpi3mr_build_sense_buffer(int desc, u8 *buf, u8 key,
3014 buf[0] = 0x72; /* descriptor, current */
3020 buf[0] = 0x70; /* fixed, current */
3029 * mpi3mr_map_eedp_error - Map EEDP errors from IOC status
3030 * @scmd: SCSI command reference
3031 * @ioc_status: status of MPI3 request
3033 * Maps the EEDP error status of the SCSI IO request to sense
3038 static void mpi3mr_map_eedp_error(struct scsi_cmnd *scmd,
3043 switch (ioc_status) {
3044 case MPI3_IOCSTATUS_EEDP_GUARD_ERROR:
3047 case MPI3_IOCSTATUS_EEDP_APP_TAG_ERROR:
3050 case MPI3_IOCSTATUS_EEDP_REF_TAG_ERROR:
3058 mpi3mr_build_sense_buffer(0, scmd->sense_buffer, ILLEGAL_REQUEST,
3060 scmd->result = (DID_ABORT << 16) | SAM_STAT_CHECK_CONDITION;
3064 * mpi3mr_process_op_reply_desc - reply descriptor handler
3065 * @mrioc: Adapter instance reference
3066 * @reply_desc: Operational reply descriptor
3067 * @reply_dma: place holder for reply DMA address
3068 * @qidx: Operational queue index
3070 * Process the operational reply descriptor and identifies the
3071 * descriptor type. Based on the descriptor map the MPI3 request
3072 * status to a SCSI command status and calls scsi_done call
3077 void mpi3mr_process_op_reply_desc(struct mpi3mr_ioc *mrioc,
3078 struct mpi3_default_reply_descriptor *reply_desc, u64 *reply_dma, u16 qidx)
3080 u16 reply_desc_type, host_tag = 0;
3081 u16 ioc_status = MPI3_IOCSTATUS_SUCCESS;
3082 u32 ioc_loginfo = 0;
3083 struct mpi3_status_reply_descriptor *status_desc = NULL;
3084 struct mpi3_address_reply_descriptor *addr_desc = NULL;
3085 struct mpi3_success_reply_descriptor *success_desc = NULL;
3086 struct mpi3_scsi_io_reply *scsi_reply = NULL;
3087 struct scsi_cmnd *scmd = NULL;
3088 struct scmd_priv *priv = NULL;
3089 u8 *sense_buf = NULL;
3090 u8 scsi_state = 0, scsi_status = 0, sense_state = 0;
3091 u32 xfer_count = 0, sense_count = 0, resp_data = 0;
3092 u16 dev_handle = 0xFFFF;
3093 struct scsi_sense_hdr sshdr;
3094 struct mpi3mr_stgt_priv_data *stgt_priv_data = NULL;
3095 struct mpi3mr_sdev_priv_data *sdev_priv_data = NULL;
3096 u32 ioc_pend_data_len = 0, tg_pend_data_len = 0, data_len_blks = 0;
3097 struct mpi3mr_throttle_group_info *tg = NULL;
3098 u8 throttle_enabled_dev = 0;
3101 reply_desc_type = le16_to_cpu(reply_desc->reply_flags) &
3102 MPI3_REPLY_DESCRIPT_FLAGS_TYPE_MASK;
3103 switch (reply_desc_type) {
3104 case MPI3_REPLY_DESCRIPT_FLAGS_TYPE_STATUS:
3105 status_desc = (struct mpi3_status_reply_descriptor *)reply_desc;
3106 host_tag = le16_to_cpu(status_desc->host_tag);
3107 ioc_status = le16_to_cpu(status_desc->ioc_status);
3109 MPI3_REPLY_DESCRIPT_STATUS_IOCSTATUS_LOGINFOAVAIL)
3110 ioc_loginfo = le32_to_cpu(status_desc->ioc_log_info);
3111 ioc_status &= MPI3_REPLY_DESCRIPT_STATUS_IOCSTATUS_STATUS_MASK;
3113 case MPI3_REPLY_DESCRIPT_FLAGS_TYPE_ADDRESS_REPLY:
3114 addr_desc = (struct mpi3_address_reply_descriptor *)reply_desc;
3115 *reply_dma = le64_to_cpu(addr_desc->reply_frame_address);
3116 scsi_reply = mpi3mr_get_reply_virt_addr(mrioc,
3119 panic("%s: scsi_reply is NULL, this shouldn't happen\n",
3123 host_tag = le16_to_cpu(scsi_reply->host_tag);
3124 ioc_status = le16_to_cpu(scsi_reply->ioc_status);
3125 scsi_status = scsi_reply->scsi_status;
3126 scsi_state = scsi_reply->scsi_state;
3127 dev_handle = le16_to_cpu(scsi_reply->dev_handle);
3128 sense_state = (scsi_state & MPI3_SCSI_STATE_SENSE_MASK);
3129 xfer_count = le32_to_cpu(scsi_reply->transfer_count);
3130 sense_count = le32_to_cpu(scsi_reply->sense_count);
3131 resp_data = le32_to_cpu(scsi_reply->response_data);
3132 sense_buf = mpi3mr_get_sensebuf_virt_addr(mrioc,
3133 le64_to_cpu(scsi_reply->sense_data_buffer_address));
3135 MPI3_REPLY_DESCRIPT_STATUS_IOCSTATUS_LOGINFOAVAIL)
3136 ioc_loginfo = le32_to_cpu(scsi_reply->ioc_log_info);
3137 ioc_status &= MPI3_REPLY_DESCRIPT_STATUS_IOCSTATUS_STATUS_MASK;
3138 if (sense_state == MPI3_SCSI_STATE_SENSE_BUFF_Q_EMPTY)
3139 panic("%s: Ran out of sense buffers\n", mrioc->name);
3141 case MPI3_REPLY_DESCRIPT_FLAGS_TYPE_SUCCESS:
3142 success_desc = (struct mpi3_success_reply_descriptor *)reply_desc;
3143 host_tag = le16_to_cpu(success_desc->host_tag);
3148 scmd = mpi3mr_scmd_from_host_tag(mrioc, host_tag, qidx);
3150 panic("%s: Cannot Identify scmd for host_tag 0x%x\n",
3151 mrioc->name, host_tag);
3154 priv = scsi_cmd_priv(scmd);
3156 data_len_blks = scsi_bufflen(scmd) >> 9;
3157 sdev_priv_data = scmd->device->hostdata;
3158 if (sdev_priv_data) {
3159 stgt_priv_data = sdev_priv_data->tgt_priv_data;
3160 if (stgt_priv_data) {
3161 tg = stgt_priv_data->throttle_group;
3162 throttle_enabled_dev =
3163 stgt_priv_data->io_throttle_enabled;
3166 if (unlikely((data_len_blks >= mrioc->io_throttle_data_length) &&
3167 throttle_enabled_dev)) {
3168 ioc_pend_data_len = atomic_sub_return(data_len_blks,
3169 &mrioc->pend_large_data_sz);
3171 tg_pend_data_len = atomic_sub_return(data_len_blks,
3172 &tg->pend_large_data_sz);
3173 if (tg->io_divert && ((ioc_pend_data_len <=
3174 mrioc->io_throttle_low) &&
3175 (tg_pend_data_len <= tg->low))) {
3177 mpi3mr_set_io_divert_for_all_vd_in_tg(
3181 if (ioc_pend_data_len <= mrioc->io_throttle_low)
3182 stgt_priv_data->io_divert = 0;
3184 } else if (unlikely((stgt_priv_data && stgt_priv_data->io_divert))) {
3185 ioc_pend_data_len = atomic_read(&mrioc->pend_large_data_sz);
3187 if (ioc_pend_data_len <= mrioc->io_throttle_low)
3188 stgt_priv_data->io_divert = 0;
3190 } else if (ioc_pend_data_len <= mrioc->io_throttle_low) {
3191 tg_pend_data_len = atomic_read(&tg->pend_large_data_sz);
3192 if (tg->io_divert && (tg_pend_data_len <= tg->low)) {
3194 mpi3mr_set_io_divert_for_all_vd_in_tg(
3201 scmd->result = DID_OK << 16;
3205 scsi_set_resid(scmd, scsi_bufflen(scmd) - xfer_count);
3206 if (ioc_status == MPI3_IOCSTATUS_SCSI_DATA_UNDERRUN &&
3207 xfer_count == 0 && (scsi_status == MPI3_SCSI_STATUS_BUSY ||
3208 scsi_status == MPI3_SCSI_STATUS_RESERVATION_CONFLICT ||
3209 scsi_status == MPI3_SCSI_STATUS_TASK_SET_FULL))
3210 ioc_status = MPI3_IOCSTATUS_SUCCESS;
3212 if ((sense_state == MPI3_SCSI_STATE_SENSE_VALID) && sense_count &&
3214 u32 sz = min_t(u32, SCSI_SENSE_BUFFERSIZE, sense_count);
3216 memcpy(scmd->sense_buffer, sense_buf, sz);
3219 switch (ioc_status) {
3220 case MPI3_IOCSTATUS_BUSY:
3221 case MPI3_IOCSTATUS_INSUFFICIENT_RESOURCES:
3222 scmd->result = SAM_STAT_BUSY;
3224 case MPI3_IOCSTATUS_SCSI_DEVICE_NOT_THERE:
3225 scmd->result = DID_NO_CONNECT << 16;
3227 case MPI3_IOCSTATUS_SCSI_IOC_TERMINATED:
3228 scmd->result = DID_SOFT_ERROR << 16;
3230 case MPI3_IOCSTATUS_SCSI_TASK_TERMINATED:
3231 case MPI3_IOCSTATUS_SCSI_EXT_TERMINATED:
3232 scmd->result = DID_RESET << 16;
3234 case MPI3_IOCSTATUS_SCSI_RESIDUAL_MISMATCH:
3235 if ((xfer_count == 0) || (scmd->underflow > xfer_count))
3236 scmd->result = DID_SOFT_ERROR << 16;
3238 scmd->result = (DID_OK << 16) | scsi_status;
3240 case MPI3_IOCSTATUS_SCSI_DATA_UNDERRUN:
3241 scmd->result = (DID_OK << 16) | scsi_status;
3242 if (sense_state == MPI3_SCSI_STATE_SENSE_VALID)
3244 if (xfer_count < scmd->underflow) {
3245 if (scsi_status == SAM_STAT_BUSY)
3246 scmd->result = SAM_STAT_BUSY;
3248 scmd->result = DID_SOFT_ERROR << 16;
3249 } else if ((scsi_state & (MPI3_SCSI_STATE_NO_SCSI_STATUS)) ||
3250 (sense_state != MPI3_SCSI_STATE_SENSE_NOT_AVAILABLE))
3251 scmd->result = DID_SOFT_ERROR << 16;
3252 else if (scsi_state & MPI3_SCSI_STATE_TERMINATED)
3253 scmd->result = DID_RESET << 16;
3255 case MPI3_IOCSTATUS_SCSI_DATA_OVERRUN:
3256 scsi_set_resid(scmd, 0);
3258 case MPI3_IOCSTATUS_SCSI_RECOVERED_ERROR:
3259 case MPI3_IOCSTATUS_SUCCESS:
3260 scmd->result = (DID_OK << 16) | scsi_status;
3261 if ((scsi_state & (MPI3_SCSI_STATE_NO_SCSI_STATUS)) ||
3262 (sense_state == MPI3_SCSI_STATE_SENSE_FAILED) ||
3263 (sense_state == MPI3_SCSI_STATE_SENSE_BUFF_Q_EMPTY))
3264 scmd->result = DID_SOFT_ERROR << 16;
3265 else if (scsi_state & MPI3_SCSI_STATE_TERMINATED)
3266 scmd->result = DID_RESET << 16;
3268 case MPI3_IOCSTATUS_EEDP_GUARD_ERROR:
3269 case MPI3_IOCSTATUS_EEDP_REF_TAG_ERROR:
3270 case MPI3_IOCSTATUS_EEDP_APP_TAG_ERROR:
3271 mpi3mr_map_eedp_error(scmd, ioc_status);
3273 case MPI3_IOCSTATUS_SCSI_PROTOCOL_ERROR:
3274 case MPI3_IOCSTATUS_INVALID_FUNCTION:
3275 case MPI3_IOCSTATUS_INVALID_SGL:
3276 case MPI3_IOCSTATUS_INTERNAL_ERROR:
3277 case MPI3_IOCSTATUS_INVALID_FIELD:
3278 case MPI3_IOCSTATUS_INVALID_STATE:
3279 case MPI3_IOCSTATUS_SCSI_IO_DATA_ERROR:
3280 case MPI3_IOCSTATUS_SCSI_TASK_MGMT_FAILED:
3281 case MPI3_IOCSTATUS_INSUFFICIENT_POWER:
3283 scmd->result = DID_SOFT_ERROR << 16;
3287 if (scmd->result != (DID_OK << 16) && (scmd->cmnd[0] != ATA_12) &&
3288 (scmd->cmnd[0] != ATA_16) &&
3289 mrioc->logging_level & MPI3_DEBUG_SCSI_ERROR) {
3290 ioc_info(mrioc, "%s :scmd->result 0x%x\n", __func__,
3292 scsi_print_command(scmd);
3294 "%s :Command issued to handle 0x%02x returned with error 0x%04x loginfo 0x%08x, qid %d\n",
3295 __func__, dev_handle, ioc_status, ioc_loginfo,
3296 priv->req_q_idx + 1);
3298 " host_tag %d scsi_state 0x%02x scsi_status 0x%02x, xfer_cnt %d resp_data 0x%x\n",
3299 host_tag, scsi_state, scsi_status, xfer_count, resp_data);
3301 scsi_normalize_sense(sense_buf, sense_count, &sshdr);
3303 "%s :sense_count 0x%x, sense_key 0x%x ASC 0x%x, ASCQ 0x%x\n",
3304 __func__, sense_count, sshdr.sense_key,
3305 sshdr.asc, sshdr.ascq);
3309 if (priv->meta_sg_valid) {
3310 dma_unmap_sg(&mrioc->pdev->dev, scsi_prot_sglist(scmd),
3311 scsi_prot_sg_count(scmd), scmd->sc_data_direction);
3313 mpi3mr_clear_scmd_priv(mrioc, scmd);
3314 scsi_dma_unmap(scmd);
3318 mpi3mr_repost_sense_buf(mrioc,
3319 le64_to_cpu(scsi_reply->sense_data_buffer_address));
3323 * mpi3mr_get_chain_idx - get free chain buffer index
3324 * @mrioc: Adapter instance reference
3326 * Try to get a free chain buffer index from the free pool.
3328 * Return: -1 on failure or the free chain buffer index
3330 static int mpi3mr_get_chain_idx(struct mpi3mr_ioc *mrioc)
3334 unsigned long flags;
3336 spin_lock_irqsave(&mrioc->chain_buf_lock, flags);
3338 cmd_idx = find_first_zero_bit(mrioc->chain_bitmap,
3339 mrioc->chain_buf_count);
3340 if (cmd_idx < mrioc->chain_buf_count) {
3341 set_bit(cmd_idx, mrioc->chain_bitmap);
3345 } while (retry_count--);
3346 spin_unlock_irqrestore(&mrioc->chain_buf_lock, flags);
3351 * mpi3mr_prepare_sg_scmd - build scatter gather list
3352 * @mrioc: Adapter instance reference
3353 * @scmd: SCSI command reference
3354 * @scsiio_req: MPI3 SCSI IO request
3356 * This function maps SCSI command's data and protection SGEs to
3357 * MPI request SGEs. If required additional 4K chain buffer is
3358 * used to send the SGEs.
3360 * Return: 0 on success, -ENOMEM on dma_map_sg failure
3362 static int mpi3mr_prepare_sg_scmd(struct mpi3mr_ioc *mrioc,
3363 struct scsi_cmnd *scmd, struct mpi3_scsi_io_request *scsiio_req)
3365 dma_addr_t chain_dma;
3366 struct scatterlist *sg_scmd;
3367 void *sg_local, *chain;
3369 int sges_left, chain_idx;
3370 u32 sges_in_segment;
3371 u8 simple_sgl_flags;
3372 u8 simple_sgl_flags_last;
3373 u8 last_chain_sgl_flags;
3374 struct chain_element *chain_req;
3375 struct scmd_priv *priv = NULL;
3376 u32 meta_sg = le32_to_cpu(scsiio_req->flags) &
3377 MPI3_SCSIIO_FLAGS_DMAOPERATION_HOST_PI;
3379 priv = scsi_cmd_priv(scmd);
3381 simple_sgl_flags = MPI3_SGE_FLAGS_ELEMENT_TYPE_SIMPLE |
3382 MPI3_SGE_FLAGS_DLAS_SYSTEM;
3383 simple_sgl_flags_last = simple_sgl_flags |
3384 MPI3_SGE_FLAGS_END_OF_LIST;
3385 last_chain_sgl_flags = MPI3_SGE_FLAGS_ELEMENT_TYPE_LAST_CHAIN |
3386 MPI3_SGE_FLAGS_DLAS_SYSTEM;
3389 sg_local = &scsiio_req->sgl[MPI3_SCSIIO_METASGL_INDEX];
3391 sg_local = &scsiio_req->sgl;
3393 if (!scsiio_req->data_length && !meta_sg) {
3394 mpi3mr_build_zero_len_sge(sg_local);
3399 sg_scmd = scsi_prot_sglist(scmd);
3400 sges_left = dma_map_sg(&mrioc->pdev->dev,
3401 scsi_prot_sglist(scmd),
3402 scsi_prot_sg_count(scmd),
3403 scmd->sc_data_direction);
3404 priv->meta_sg_valid = 1; /* To unmap meta sg DMA */
3406 sg_scmd = scsi_sglist(scmd);
3407 sges_left = scsi_dma_map(scmd);
3410 if (sges_left < 0) {
3411 sdev_printk(KERN_ERR, scmd->device,
3412 "scsi_dma_map failed: request for %d bytes!\n",
3413 scsi_bufflen(scmd));
3416 if (sges_left > MPI3MR_SG_DEPTH) {
3417 sdev_printk(KERN_ERR, scmd->device,
3418 "scsi_dma_map returned unsupported sge count %d!\n",
3423 sges_in_segment = (mrioc->facts.op_req_sz -
3424 offsetof(struct mpi3_scsi_io_request, sgl)) / sizeof(struct mpi3_sge_common);
3426 if (scsiio_req->sgl[0].eedp.flags ==
3427 MPI3_SGE_FLAGS_ELEMENT_TYPE_EXTENDED && !meta_sg) {
3428 sg_local += sizeof(struct mpi3_sge_common);
3430 /* Reserve 1st segment (scsiio_req->sgl[0]) for eedp */
3433 if (scsiio_req->msg_flags ==
3434 MPI3_SCSIIO_MSGFLAGS_METASGL_VALID && !meta_sg) {
3436 /* Reserve last segment (scsiio_req->sgl[3]) for meta sg */
3440 sges_in_segment = 1;
3442 if (sges_left <= sges_in_segment)
3443 goto fill_in_last_segment;
3445 /* fill in main message segment when there is a chain following */
3446 while (sges_in_segment > 1) {
3447 mpi3mr_add_sg_single(sg_local, simple_sgl_flags,
3448 sg_dma_len(sg_scmd), sg_dma_address(sg_scmd));
3449 sg_scmd = sg_next(sg_scmd);
3450 sg_local += sizeof(struct mpi3_sge_common);
3455 chain_idx = mpi3mr_get_chain_idx(mrioc);
3458 chain_req = &mrioc->chain_sgl_list[chain_idx];
3460 priv->meta_chain_idx = chain_idx;
3462 priv->chain_idx = chain_idx;
3464 chain = chain_req->addr;
3465 chain_dma = chain_req->dma_addr;
3466 sges_in_segment = sges_left;
3467 chain_length = sges_in_segment * sizeof(struct mpi3_sge_common);
3469 mpi3mr_add_sg_single(sg_local, last_chain_sgl_flags,
3470 chain_length, chain_dma);
3474 fill_in_last_segment:
3475 while (sges_left > 0) {
3477 mpi3mr_add_sg_single(sg_local,
3478 simple_sgl_flags_last, sg_dma_len(sg_scmd),
3479 sg_dma_address(sg_scmd));
3481 mpi3mr_add_sg_single(sg_local, simple_sgl_flags,
3482 sg_dma_len(sg_scmd), sg_dma_address(sg_scmd));
3483 sg_scmd = sg_next(sg_scmd);
3484 sg_local += sizeof(struct mpi3_sge_common);
3492 * mpi3mr_build_sg_scmd - build scatter gather list for SCSI IO
3493 * @mrioc: Adapter instance reference
3494 * @scmd: SCSI command reference
3495 * @scsiio_req: MPI3 SCSI IO request
3497 * This function calls mpi3mr_prepare_sg_scmd for constructing
3498 * both data SGEs and protection information SGEs in the MPI
3499 * format from the SCSI Command as appropriate .
3501 * Return: return value of mpi3mr_prepare_sg_scmd.
3503 static int mpi3mr_build_sg_scmd(struct mpi3mr_ioc *mrioc,
3504 struct scsi_cmnd *scmd, struct mpi3_scsi_io_request *scsiio_req)
3508 ret = mpi3mr_prepare_sg_scmd(mrioc, scmd, scsiio_req);
3512 if (scsiio_req->msg_flags == MPI3_SCSIIO_MSGFLAGS_METASGL_VALID) {
3513 /* There is a valid meta sg */
3514 scsiio_req->flags |=
3515 cpu_to_le32(MPI3_SCSIIO_FLAGS_DMAOPERATION_HOST_PI);
3516 ret = mpi3mr_prepare_sg_scmd(mrioc, scmd, scsiio_req);
3523 * mpi3mr_tm_response_name - get TM response as a string
3524 * @resp_code: TM response code
3526 * Convert known task management response code as a readable
3529 * Return: response code string.
3531 static const char *mpi3mr_tm_response_name(u8 resp_code)
3535 switch (resp_code) {
3536 case MPI3_SCSITASKMGMT_RSPCODE_TM_COMPLETE:
3537 desc = "task management request completed";
3539 case MPI3_SCSITASKMGMT_RSPCODE_INVALID_FRAME:
3540 desc = "invalid frame";
3542 case MPI3_SCSITASKMGMT_RSPCODE_TM_FUNCTION_NOT_SUPPORTED:
3543 desc = "task management request not supported";
3545 case MPI3_SCSITASKMGMT_RSPCODE_TM_FAILED:
3546 desc = "task management request failed";
3548 case MPI3_SCSITASKMGMT_RSPCODE_TM_SUCCEEDED:
3549 desc = "task management request succeeded";
3551 case MPI3_SCSITASKMGMT_RSPCODE_TM_INVALID_LUN:
3552 desc = "invalid LUN";
3554 case MPI3_SCSITASKMGMT_RSPCODE_TM_OVERLAPPED_TAG:
3555 desc = "overlapped tag attempted";
3557 case MPI3_SCSITASKMGMT_RSPCODE_IO_QUEUED_ON_IOC:
3558 desc = "task queued, however not sent to target";
3560 case MPI3_SCSITASKMGMT_RSPCODE_TM_NVME_DENIED:
3561 desc = "task management request denied by NVMe device";
3571 inline void mpi3mr_poll_pend_io_completions(struct mpi3mr_ioc *mrioc)
3574 int num_of_reply_queues =
3575 mrioc->num_op_reply_q + mrioc->op_reply_q_offset;
3577 for (i = mrioc->op_reply_q_offset; i < num_of_reply_queues; i++)
3578 mpi3mr_process_op_reply_q(mrioc,
3579 mrioc->intr_info[i].op_reply_q);
3583 * mpi3mr_issue_tm - Issue Task Management request
3584 * @mrioc: Adapter instance reference
3585 * @tm_type: Task Management type
3586 * @handle: Device handle
3588 * @htag: Host tag of the TM request
3589 * @timeout: TM timeout value
3590 * @drv_cmd: Internal command tracker
3591 * @resp_code: Response code place holder
3592 * @scmd: SCSI command
3594 * Issues a Task Management Request to the controller for a
3595 * specified target, lun and command and wait for its completion
3596 * and check TM response. Recover the TM if it timed out by
3597 * issuing controller reset.
3599 * Return: 0 on success, non-zero on errors
3601 int mpi3mr_issue_tm(struct mpi3mr_ioc *mrioc, u8 tm_type,
3602 u16 handle, uint lun, u16 htag, ulong timeout,
3603 struct mpi3mr_drv_cmd *drv_cmd,
3604 u8 *resp_code, struct scsi_cmnd *scmd)
3606 struct mpi3_scsi_task_mgmt_request tm_req;
3607 struct mpi3_scsi_task_mgmt_reply *tm_reply = NULL;
3609 struct mpi3mr_tgt_dev *tgtdev = NULL;
3610 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data = NULL;
3611 struct scmd_priv *cmd_priv = NULL;
3612 struct scsi_device *sdev = NULL;
3613 struct mpi3mr_sdev_priv_data *sdev_priv_data = NULL;
3615 ioc_info(mrioc, "%s :Issue TM: TM type (0x%x) for devhandle 0x%04x\n",
3616 __func__, tm_type, handle);
3617 if (mrioc->unrecoverable) {
3619 ioc_err(mrioc, "%s :Issue TM: Unrecoverable controller\n",
3624 memset(&tm_req, 0, sizeof(tm_req));
3625 mutex_lock(&drv_cmd->mutex);
3626 if (drv_cmd->state & MPI3MR_CMD_PENDING) {
3628 ioc_err(mrioc, "%s :Issue TM: Command is in use\n", __func__);
3629 mutex_unlock(&drv_cmd->mutex);
3632 if (mrioc->reset_in_progress) {
3634 ioc_err(mrioc, "%s :Issue TM: Reset in progress\n", __func__);
3635 mutex_unlock(&drv_cmd->mutex);
3639 drv_cmd->state = MPI3MR_CMD_PENDING;
3640 drv_cmd->is_waiting = 1;
3641 drv_cmd->callback = NULL;
3642 tm_req.dev_handle = cpu_to_le16(handle);
3643 tm_req.task_type = tm_type;
3644 tm_req.host_tag = cpu_to_le16(htag);
3646 int_to_scsilun(lun, (struct scsi_lun *)tm_req.lun);
3647 tm_req.function = MPI3_FUNCTION_SCSI_TASK_MGMT;
3649 tgtdev = mpi3mr_get_tgtdev_by_handle(mrioc, handle);
3652 sdev = scmd->device;
3653 sdev_priv_data = sdev->hostdata;
3654 scsi_tgt_priv_data = ((sdev_priv_data) ?
3655 sdev_priv_data->tgt_priv_data : NULL);
3657 if (tgtdev && tgtdev->starget && tgtdev->starget->hostdata)
3658 scsi_tgt_priv_data = (struct mpi3mr_stgt_priv_data *)
3659 tgtdev->starget->hostdata;
3662 if (scsi_tgt_priv_data)
3663 atomic_inc(&scsi_tgt_priv_data->block_io);
3665 if (tgtdev && (tgtdev->dev_type == MPI3_DEVICE_DEVFORM_PCIE)) {
3666 if (cmd_priv && tgtdev->dev_spec.pcie_inf.abort_to)
3667 timeout = tgtdev->dev_spec.pcie_inf.abort_to;
3668 else if (!cmd_priv && tgtdev->dev_spec.pcie_inf.reset_to)
3669 timeout = tgtdev->dev_spec.pcie_inf.reset_to;
3672 init_completion(&drv_cmd->done);
3673 retval = mpi3mr_admin_request_post(mrioc, &tm_req, sizeof(tm_req), 1);
3675 ioc_err(mrioc, "%s :Issue TM: Admin Post failed\n", __func__);
3678 wait_for_completion_timeout(&drv_cmd->done, (timeout * HZ));
3680 if (!(drv_cmd->state & MPI3MR_CMD_COMPLETE)) {
3681 drv_cmd->is_waiting = 0;
3683 if (!(drv_cmd->state & MPI3MR_CMD_RESET)) {
3685 "task management request timed out after %ld seconds\n",
3687 if (mrioc->logging_level & MPI3_DEBUG_TM)
3688 dprint_dump_req(&tm_req, sizeof(tm_req)/4);
3689 mpi3mr_soft_reset_handler(mrioc,
3690 MPI3MR_RESET_FROM_TM_TIMEOUT, 1);
3695 if (!(drv_cmd->state & MPI3MR_CMD_REPLY_VALID)) {
3696 dprint_tm(mrioc, "invalid task management reply message\n");
3701 tm_reply = (struct mpi3_scsi_task_mgmt_reply *)drv_cmd->reply;
3703 switch (drv_cmd->ioc_status) {
3704 case MPI3_IOCSTATUS_SUCCESS:
3705 *resp_code = le32_to_cpu(tm_reply->response_data) &
3706 MPI3MR_RI_MASK_RESPCODE;
3708 case MPI3_IOCSTATUS_SCSI_IOC_TERMINATED:
3709 *resp_code = MPI3_SCSITASKMGMT_RSPCODE_TM_COMPLETE;
3713 "task management request to handle(0x%04x) is failed with ioc_status(0x%04x) log_info(0x%08x)\n",
3714 handle, drv_cmd->ioc_status, drv_cmd->ioc_loginfo);
3719 switch (*resp_code) {
3720 case MPI3_SCSITASKMGMT_RSPCODE_TM_SUCCEEDED:
3721 case MPI3_SCSITASKMGMT_RSPCODE_TM_COMPLETE:
3723 case MPI3_SCSITASKMGMT_RSPCODE_IO_QUEUED_ON_IOC:
3724 if (tm_type != MPI3_SCSITASKMGMT_TASKTYPE_QUERY_TASK)
3733 "task management request type(%d) completed for handle(0x%04x) with ioc_status(0x%04x), log_info(0x%08x), termination_count(%d), response:%s(0x%x)\n",
3734 tm_type, handle, drv_cmd->ioc_status, drv_cmd->ioc_loginfo,
3735 le32_to_cpu(tm_reply->termination_count),
3736 mpi3mr_tm_response_name(*resp_code), *resp_code);
3739 mpi3mr_ioc_disable_intr(mrioc);
3740 mpi3mr_poll_pend_io_completions(mrioc);
3741 mpi3mr_ioc_enable_intr(mrioc);
3742 mpi3mr_poll_pend_io_completions(mrioc);
3743 mpi3mr_process_admin_reply_q(mrioc);
3746 case MPI3_SCSITASKMGMT_TASKTYPE_TARGET_RESET:
3747 if (!scsi_tgt_priv_data)
3749 scsi_tgt_priv_data->pend_count = 0;
3750 blk_mq_tagset_busy_iter(&mrioc->shost->tag_set,
3751 mpi3mr_count_tgt_pending,
3752 (void *)scsi_tgt_priv_data->starget);
3754 case MPI3_SCSITASKMGMT_TASKTYPE_LOGICAL_UNIT_RESET:
3755 if (!sdev_priv_data)
3757 sdev_priv_data->pend_count = 0;
3758 blk_mq_tagset_busy_iter(&mrioc->shost->tag_set,
3759 mpi3mr_count_dev_pending, (void *)sdev);
3766 drv_cmd->state = MPI3MR_CMD_NOTUSED;
3767 mutex_unlock(&drv_cmd->mutex);
3768 if (scsi_tgt_priv_data)
3769 atomic_dec_if_positive(&scsi_tgt_priv_data->block_io);
3771 mpi3mr_tgtdev_put(tgtdev);
3777 * mpi3mr_bios_param - BIOS param callback
3778 * @sdev: SCSI device reference
3779 * @bdev: Block device reference
3780 * @capacity: Capacity in logical sectors
3781 * @params: Parameter array
3783 * Just the parameters with heads/secots/cylinders.
3787 static int mpi3mr_bios_param(struct scsi_device *sdev,
3788 struct block_device *bdev, sector_t capacity, int params[])
3798 dummy = heads * sectors;
3799 cylinders = capacity;
3800 sector_div(cylinders, dummy);
3802 if ((ulong)capacity >= 0x200000) {
3805 dummy = heads * sectors;
3806 cylinders = capacity;
3807 sector_div(cylinders, dummy);
3811 params[1] = sectors;
3812 params[2] = cylinders;
3817 * mpi3mr_map_queues - Map queues callback handler
3818 * @shost: SCSI host reference
3820 * Maps default and poll queues.
3822 * Return: return zero.
3824 static void mpi3mr_map_queues(struct Scsi_Host *shost)
3826 struct mpi3mr_ioc *mrioc = shost_priv(shost);
3827 int i, qoff, offset;
3828 struct blk_mq_queue_map *map = NULL;
3830 offset = mrioc->op_reply_q_offset;
3832 for (i = 0, qoff = 0; i < HCTX_MAX_TYPES; i++) {
3833 map = &shost->tag_set.map[i];
3837 if (i == HCTX_TYPE_DEFAULT)
3838 map->nr_queues = mrioc->default_qcount;
3839 else if (i == HCTX_TYPE_POLL)
3840 map->nr_queues = mrioc->active_poll_qcount;
3842 if (!map->nr_queues) {
3843 BUG_ON(i == HCTX_TYPE_DEFAULT);
3848 * The poll queue(s) doesn't have an IRQ (and hence IRQ
3849 * affinity), so use the regular blk-mq cpu mapping
3851 map->queue_offset = qoff;
3852 if (i != HCTX_TYPE_POLL)
3853 blk_mq_pci_map_queues(map, mrioc->pdev, offset);
3855 blk_mq_map_queues(map);
3857 qoff += map->nr_queues;
3858 offset += map->nr_queues;
3863 * mpi3mr_get_fw_pending_ios - Calculate pending I/O count
3864 * @mrioc: Adapter instance reference
3866 * Calculate the pending I/Os for the controller and return.
3868 * Return: Number of pending I/Os
3870 static inline int mpi3mr_get_fw_pending_ios(struct mpi3mr_ioc *mrioc)
3875 for (i = 0; i < mrioc->num_op_reply_q; i++)
3876 pend_ios += atomic_read(&mrioc->op_reply_qinfo[i].pend_ios);
3881 * mpi3mr_print_pending_host_io - print pending I/Os
3882 * @mrioc: Adapter instance reference
3884 * Print number of pending I/Os and each I/O details prior to
3885 * reset for debug purpose.
3889 static void mpi3mr_print_pending_host_io(struct mpi3mr_ioc *mrioc)
3891 struct Scsi_Host *shost = mrioc->shost;
3893 ioc_info(mrioc, "%s :Pending commands prior to reset: %d\n",
3894 __func__, mpi3mr_get_fw_pending_ios(mrioc));
3895 blk_mq_tagset_busy_iter(&shost->tag_set,
3896 mpi3mr_print_scmd, (void *)mrioc);
3900 * mpi3mr_wait_for_host_io - block for I/Os to complete
3901 * @mrioc: Adapter instance reference
3902 * @timeout: time out in seconds
3903 * Waits for pending I/Os for the given adapter to complete or
3904 * to hit the timeout.
3908 void mpi3mr_wait_for_host_io(struct mpi3mr_ioc *mrioc, u32 timeout)
3910 enum mpi3mr_iocstate iocstate;
3913 iocstate = mpi3mr_get_iocstate(mrioc);
3914 if (iocstate != MRIOC_STATE_READY)
3917 if (!mpi3mr_get_fw_pending_ios(mrioc))
3920 "%s :Waiting for %d seconds prior to reset for %d I/O\n",
3921 __func__, timeout, mpi3mr_get_fw_pending_ios(mrioc));
3923 for (i = 0; i < timeout; i++) {
3924 if (!mpi3mr_get_fw_pending_ios(mrioc))
3926 iocstate = mpi3mr_get_iocstate(mrioc);
3927 if (iocstate != MRIOC_STATE_READY)
3932 ioc_info(mrioc, "%s :Pending I/Os after wait is: %d\n", __func__,
3933 mpi3mr_get_fw_pending_ios(mrioc));
3937 * mpi3mr_eh_host_reset - Host reset error handling callback
3938 * @scmd: SCSI command reference
3940 * Issue controller reset if the scmd is for a Physical Device,
3941 * if the scmd is for RAID volume, then wait for
3942 * MPI3MR_RAID_ERRREC_RESET_TIMEOUT and checke whether any
3943 * pending I/Os prior to issuing reset to the controller.
3945 * Return: SUCCESS of successful reset else FAILED
3947 static int mpi3mr_eh_host_reset(struct scsi_cmnd *scmd)
3949 struct mpi3mr_ioc *mrioc = shost_priv(scmd->device->host);
3950 struct mpi3mr_stgt_priv_data *stgt_priv_data;
3951 struct mpi3mr_sdev_priv_data *sdev_priv_data;
3952 u8 dev_type = MPI3_DEVICE_DEVFORM_VD;
3953 int retval = FAILED, ret;
3955 sdev_priv_data = scmd->device->hostdata;
3956 if (sdev_priv_data && sdev_priv_data->tgt_priv_data) {
3957 stgt_priv_data = sdev_priv_data->tgt_priv_data;
3958 dev_type = stgt_priv_data->dev_type;
3961 if (dev_type == MPI3_DEVICE_DEVFORM_VD) {
3962 mpi3mr_wait_for_host_io(mrioc,
3963 MPI3MR_RAID_ERRREC_RESET_TIMEOUT);
3964 if (!mpi3mr_get_fw_pending_ios(mrioc)) {
3970 mpi3mr_print_pending_host_io(mrioc);
3971 ret = mpi3mr_soft_reset_handler(mrioc,
3972 MPI3MR_RESET_FROM_EH_HOS, 1);
3978 sdev_printk(KERN_INFO, scmd->device,
3979 "Host reset is %s for scmd(%p)\n",
3980 ((retval == SUCCESS) ? "SUCCESS" : "FAILED"), scmd);
3986 * mpi3mr_eh_target_reset - Target reset error handling callback
3987 * @scmd: SCSI command reference
3989 * Issue Target reset Task Management and verify the scmd is
3990 * terminated successfully and return status accordingly.
3992 * Return: SUCCESS of successful termination of the scmd else
3995 static int mpi3mr_eh_target_reset(struct scsi_cmnd *scmd)
3997 struct mpi3mr_ioc *mrioc = shost_priv(scmd->device->host);
3998 struct mpi3mr_stgt_priv_data *stgt_priv_data;
3999 struct mpi3mr_sdev_priv_data *sdev_priv_data;
4002 int retval = FAILED, ret = 0;
4004 sdev_printk(KERN_INFO, scmd->device,
4005 "Attempting Target Reset! scmd(%p)\n", scmd);
4006 scsi_print_command(scmd);
4008 sdev_priv_data = scmd->device->hostdata;
4009 if (!sdev_priv_data || !sdev_priv_data->tgt_priv_data) {
4010 sdev_printk(KERN_INFO, scmd->device,
4011 "SCSI device is not available\n");
4016 stgt_priv_data = sdev_priv_data->tgt_priv_data;
4017 dev_handle = stgt_priv_data->dev_handle;
4018 if (stgt_priv_data->dev_removed) {
4019 struct scmd_priv *cmd_priv = scsi_cmd_priv(scmd);
4020 sdev_printk(KERN_INFO, scmd->device,
4021 "%s:target(handle = 0x%04x) is removed, target reset is not issued\n",
4022 mrioc->name, dev_handle);
4023 if (!cmd_priv->in_lld_scope || cmd_priv->host_tag == MPI3MR_HOSTTAG_INVALID)
4029 sdev_printk(KERN_INFO, scmd->device,
4030 "Target Reset is issued to handle(0x%04x)\n",
4033 ret = mpi3mr_issue_tm(mrioc,
4034 MPI3_SCSITASKMGMT_TASKTYPE_TARGET_RESET, dev_handle,
4035 sdev_priv_data->lun_id, MPI3MR_HOSTTAG_BLK_TMS,
4036 MPI3MR_RESETTM_TIMEOUT, &mrioc->host_tm_cmds, &resp_code, scmd);
4041 if (stgt_priv_data->pend_count) {
4042 sdev_printk(KERN_INFO, scmd->device,
4043 "%s: target has %d pending commands, target reset is failed\n",
4044 mrioc->name, stgt_priv_data->pend_count);
4050 sdev_printk(KERN_INFO, scmd->device,
4051 "%s: target reset is %s for scmd(%p)\n", mrioc->name,
4052 ((retval == SUCCESS) ? "SUCCESS" : "FAILED"), scmd);
4058 * mpi3mr_eh_dev_reset- Device reset error handling callback
4059 * @scmd: SCSI command reference
4061 * Issue lun reset Task Management and verify the scmd is
4062 * terminated successfully and return status accordingly.
4064 * Return: SUCCESS of successful termination of the scmd else
4067 static int mpi3mr_eh_dev_reset(struct scsi_cmnd *scmd)
4069 struct mpi3mr_ioc *mrioc = shost_priv(scmd->device->host);
4070 struct mpi3mr_stgt_priv_data *stgt_priv_data;
4071 struct mpi3mr_sdev_priv_data *sdev_priv_data;
4074 int retval = FAILED, ret = 0;
4076 sdev_printk(KERN_INFO, scmd->device,
4077 "Attempting Device(lun) Reset! scmd(%p)\n", scmd);
4078 scsi_print_command(scmd);
4080 sdev_priv_data = scmd->device->hostdata;
4081 if (!sdev_priv_data || !sdev_priv_data->tgt_priv_data) {
4082 sdev_printk(KERN_INFO, scmd->device,
4083 "SCSI device is not available\n");
4088 stgt_priv_data = sdev_priv_data->tgt_priv_data;
4089 dev_handle = stgt_priv_data->dev_handle;
4090 if (stgt_priv_data->dev_removed) {
4091 struct scmd_priv *cmd_priv = scsi_cmd_priv(scmd);
4092 sdev_printk(KERN_INFO, scmd->device,
4093 "%s: device(handle = 0x%04x) is removed, device(LUN) reset is not issued\n",
4094 mrioc->name, dev_handle);
4095 if (!cmd_priv->in_lld_scope || cmd_priv->host_tag == MPI3MR_HOSTTAG_INVALID)
4101 sdev_printk(KERN_INFO, scmd->device,
4102 "Device(lun) Reset is issued to handle(0x%04x)\n", dev_handle);
4104 ret = mpi3mr_issue_tm(mrioc,
4105 MPI3_SCSITASKMGMT_TASKTYPE_LOGICAL_UNIT_RESET, dev_handle,
4106 sdev_priv_data->lun_id, MPI3MR_HOSTTAG_BLK_TMS,
4107 MPI3MR_RESETTM_TIMEOUT, &mrioc->host_tm_cmds, &resp_code, scmd);
4112 if (sdev_priv_data->pend_count) {
4113 sdev_printk(KERN_INFO, scmd->device,
4114 "%s: device has %d pending commands, device(LUN) reset is failed\n",
4115 mrioc->name, sdev_priv_data->pend_count);
4120 sdev_printk(KERN_INFO, scmd->device,
4121 "%s: device(LUN) reset is %s for scmd(%p)\n", mrioc->name,
4122 ((retval == SUCCESS) ? "SUCCESS" : "FAILED"), scmd);
4128 * mpi3mr_scan_start - Scan start callback handler
4129 * @shost: SCSI host reference
4131 * Issue port enable request asynchronously.
4135 static void mpi3mr_scan_start(struct Scsi_Host *shost)
4137 struct mpi3mr_ioc *mrioc = shost_priv(shost);
4139 mrioc->scan_started = 1;
4140 ioc_info(mrioc, "%s :Issuing Port Enable\n", __func__);
4141 if (mpi3mr_issue_port_enable(mrioc, 1)) {
4142 ioc_err(mrioc, "%s :Issuing port enable failed\n", __func__);
4143 mrioc->scan_started = 0;
4144 mrioc->scan_failed = MPI3_IOCSTATUS_INTERNAL_ERROR;
4149 * mpi3mr_scan_finished - Scan finished callback handler
4150 * @shost: SCSI host reference
4151 * @time: Jiffies from the scan start
4153 * Checks whether the port enable is completed or timedout or
4154 * failed and set the scan status accordingly after taking any
4155 * recovery if required.
4157 * Return: 1 on scan finished or timed out, 0 for in progress
4159 static int mpi3mr_scan_finished(struct Scsi_Host *shost,
4162 struct mpi3mr_ioc *mrioc = shost_priv(shost);
4163 u32 pe_timeout = MPI3MR_PORTENABLE_TIMEOUT;
4164 u32 ioc_status = readl(&mrioc->sysif_regs->ioc_status);
4166 if ((ioc_status & MPI3_SYSIF_IOC_STATUS_RESET_HISTORY) ||
4167 (ioc_status & MPI3_SYSIF_IOC_STATUS_FAULT)) {
4168 ioc_err(mrioc, "port enable failed due to fault or reset\n");
4169 mpi3mr_print_fault_info(mrioc);
4170 mrioc->scan_failed = MPI3_IOCSTATUS_INTERNAL_ERROR;
4171 mrioc->scan_started = 0;
4172 mrioc->init_cmds.is_waiting = 0;
4173 mrioc->init_cmds.callback = NULL;
4174 mrioc->init_cmds.state = MPI3MR_CMD_NOTUSED;
4177 if (time >= (pe_timeout * HZ)) {
4178 ioc_err(mrioc, "port enable failed due to time out\n");
4179 mpi3mr_check_rh_fault_ioc(mrioc,
4180 MPI3MR_RESET_FROM_PE_TIMEOUT);
4181 mrioc->scan_failed = MPI3_IOCSTATUS_INTERNAL_ERROR;
4182 mrioc->scan_started = 0;
4183 mrioc->init_cmds.is_waiting = 0;
4184 mrioc->init_cmds.callback = NULL;
4185 mrioc->init_cmds.state = MPI3MR_CMD_NOTUSED;
4188 if (mrioc->scan_started)
4191 if (mrioc->scan_failed) {
4193 "port enable failed with status=0x%04x\n",
4194 mrioc->scan_failed);
4196 ioc_info(mrioc, "port enable is successfully completed\n");
4198 mpi3mr_start_watchdog(mrioc);
4199 mrioc->is_driver_loading = 0;
4200 mrioc->stop_bsgs = 0;
4205 * mpi3mr_slave_destroy - Slave destroy callback handler
4206 * @sdev: SCSI device reference
4208 * Cleanup and free per device(lun) private data.
4212 static void mpi3mr_slave_destroy(struct scsi_device *sdev)
4214 struct Scsi_Host *shost;
4215 struct mpi3mr_ioc *mrioc;
4216 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data;
4217 struct mpi3mr_tgt_dev *tgt_dev = NULL;
4218 unsigned long flags;
4219 struct scsi_target *starget;
4220 struct sas_rphy *rphy = NULL;
4222 if (!sdev->hostdata)
4225 starget = scsi_target(sdev);
4226 shost = dev_to_shost(&starget->dev);
4227 mrioc = shost_priv(shost);
4228 scsi_tgt_priv_data = starget->hostdata;
4230 scsi_tgt_priv_data->num_luns--;
4232 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
4233 if (starget->channel == mrioc->scsi_device_channel)
4234 tgt_dev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, starget->id);
4235 else if (mrioc->sas_transport_enabled && !starget->channel) {
4236 rphy = dev_to_rphy(starget->dev.parent);
4237 tgt_dev = __mpi3mr_get_tgtdev_by_addr_and_rphy(mrioc,
4238 rphy->identify.sas_address, rphy);
4241 if (tgt_dev && (!scsi_tgt_priv_data->num_luns))
4242 tgt_dev->starget = NULL;
4244 mpi3mr_tgtdev_put(tgt_dev);
4245 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4247 kfree(sdev->hostdata);
4248 sdev->hostdata = NULL;
4252 * mpi3mr_target_destroy - Target destroy callback handler
4253 * @starget: SCSI target reference
4255 * Cleanup and free per target private data.
4259 static void mpi3mr_target_destroy(struct scsi_target *starget)
4261 struct Scsi_Host *shost;
4262 struct mpi3mr_ioc *mrioc;
4263 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data;
4264 struct mpi3mr_tgt_dev *tgt_dev;
4265 unsigned long flags;
4267 if (!starget->hostdata)
4270 shost = dev_to_shost(&starget->dev);
4271 mrioc = shost_priv(shost);
4272 scsi_tgt_priv_data = starget->hostdata;
4274 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
4275 tgt_dev = __mpi3mr_get_tgtdev_from_tgtpriv(mrioc, scsi_tgt_priv_data);
4276 if (tgt_dev && (tgt_dev->starget == starget) &&
4277 (tgt_dev->perst_id == starget->id))
4278 tgt_dev->starget = NULL;
4280 scsi_tgt_priv_data->tgt_dev = NULL;
4281 scsi_tgt_priv_data->perst_id = 0;
4282 mpi3mr_tgtdev_put(tgt_dev);
4283 mpi3mr_tgtdev_put(tgt_dev);
4285 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4287 kfree(starget->hostdata);
4288 starget->hostdata = NULL;
4292 * mpi3mr_slave_configure - Slave configure callback handler
4293 * @sdev: SCSI device reference
4295 * Configure queue depth, max hardware sectors and virt boundary
4300 static int mpi3mr_slave_configure(struct scsi_device *sdev)
4302 struct scsi_target *starget;
4303 struct Scsi_Host *shost;
4304 struct mpi3mr_ioc *mrioc;
4305 struct mpi3mr_tgt_dev *tgt_dev = NULL;
4306 unsigned long flags;
4308 struct sas_rphy *rphy = NULL;
4310 starget = scsi_target(sdev);
4311 shost = dev_to_shost(&starget->dev);
4312 mrioc = shost_priv(shost);
4314 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
4315 if (starget->channel == mrioc->scsi_device_channel)
4316 tgt_dev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, starget->id);
4317 else if (mrioc->sas_transport_enabled && !starget->channel) {
4318 rphy = dev_to_rphy(starget->dev.parent);
4319 tgt_dev = __mpi3mr_get_tgtdev_by_addr_and_rphy(mrioc,
4320 rphy->identify.sas_address, rphy);
4322 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4326 mpi3mr_change_queue_depth(sdev, tgt_dev->q_depth);
4328 sdev->eh_timeout = MPI3MR_EH_SCMD_TIMEOUT;
4329 blk_queue_rq_timeout(sdev->request_queue, MPI3MR_SCMD_TIMEOUT);
4331 switch (tgt_dev->dev_type) {
4332 case MPI3_DEVICE_DEVFORM_PCIE:
4333 /*The block layer hw sector size = 512*/
4334 if ((tgt_dev->dev_spec.pcie_inf.dev_info &
4335 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_MASK) ==
4336 MPI3_DEVICE0_PCIE_DEVICE_INFO_TYPE_NVME_DEVICE) {
4337 blk_queue_max_hw_sectors(sdev->request_queue,
4338 tgt_dev->dev_spec.pcie_inf.mdts / 512);
4339 if (tgt_dev->dev_spec.pcie_inf.pgsz == 0)
4340 blk_queue_virt_boundary(sdev->request_queue,
4341 ((1 << MPI3MR_DEFAULT_PGSZEXP) - 1));
4343 blk_queue_virt_boundary(sdev->request_queue,
4344 ((1 << tgt_dev->dev_spec.pcie_inf.pgsz) - 1));
4351 mpi3mr_tgtdev_put(tgt_dev);
4357 * mpi3mr_slave_alloc -Slave alloc callback handler
4358 * @sdev: SCSI device reference
4360 * Allocate per device(lun) private data and initialize it.
4362 * Return: 0 on success -ENOMEM on memory allocation failure.
4364 static int mpi3mr_slave_alloc(struct scsi_device *sdev)
4366 struct Scsi_Host *shost;
4367 struct mpi3mr_ioc *mrioc;
4368 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data;
4369 struct mpi3mr_tgt_dev *tgt_dev = NULL;
4370 struct mpi3mr_sdev_priv_data *scsi_dev_priv_data;
4371 unsigned long flags;
4372 struct scsi_target *starget;
4374 struct sas_rphy *rphy = NULL;
4376 starget = scsi_target(sdev);
4377 shost = dev_to_shost(&starget->dev);
4378 mrioc = shost_priv(shost);
4379 scsi_tgt_priv_data = starget->hostdata;
4381 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
4383 if (starget->channel == mrioc->scsi_device_channel)
4384 tgt_dev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, starget->id);
4385 else if (mrioc->sas_transport_enabled && !starget->channel) {
4386 rphy = dev_to_rphy(starget->dev.parent);
4387 tgt_dev = __mpi3mr_get_tgtdev_by_addr_and_rphy(mrioc,
4388 rphy->identify.sas_address, rphy);
4392 if (tgt_dev->starget == NULL)
4393 tgt_dev->starget = starget;
4394 mpi3mr_tgtdev_put(tgt_dev);
4397 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4401 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4403 scsi_dev_priv_data = kzalloc(sizeof(*scsi_dev_priv_data), GFP_KERNEL);
4404 if (!scsi_dev_priv_data)
4407 scsi_dev_priv_data->lun_id = sdev->lun;
4408 scsi_dev_priv_data->tgt_priv_data = scsi_tgt_priv_data;
4409 sdev->hostdata = scsi_dev_priv_data;
4411 scsi_tgt_priv_data->num_luns++;
4417 * mpi3mr_target_alloc - Target alloc callback handler
4418 * @starget: SCSI target reference
4420 * Allocate per target private data and initialize it.
4422 * Return: 0 on success -ENOMEM on memory allocation failure.
4424 static int mpi3mr_target_alloc(struct scsi_target *starget)
4426 struct Scsi_Host *shost = dev_to_shost(&starget->dev);
4427 struct mpi3mr_ioc *mrioc = shost_priv(shost);
4428 struct mpi3mr_stgt_priv_data *scsi_tgt_priv_data;
4429 struct mpi3mr_tgt_dev *tgt_dev;
4430 unsigned long flags;
4432 struct sas_rphy *rphy = NULL;
4433 bool update_stgt_priv_data = false;
4435 scsi_tgt_priv_data = kzalloc(sizeof(*scsi_tgt_priv_data), GFP_KERNEL);
4436 if (!scsi_tgt_priv_data)
4439 starget->hostdata = scsi_tgt_priv_data;
4441 spin_lock_irqsave(&mrioc->tgtdev_lock, flags);
4443 if (starget->channel == mrioc->scsi_device_channel) {
4444 tgt_dev = __mpi3mr_get_tgtdev_by_perst_id(mrioc, starget->id);
4445 if (tgt_dev && !tgt_dev->is_hidden)
4446 update_stgt_priv_data = true;
4449 } else if (mrioc->sas_transport_enabled && !starget->channel) {
4450 rphy = dev_to_rphy(starget->dev.parent);
4451 tgt_dev = __mpi3mr_get_tgtdev_by_addr_and_rphy(mrioc,
4452 rphy->identify.sas_address, rphy);
4453 if (tgt_dev && !tgt_dev->is_hidden && !tgt_dev->non_stl &&
4454 (tgt_dev->dev_type == MPI3_DEVICE_DEVFORM_SAS_SATA))
4455 update_stgt_priv_data = true;
4460 if (update_stgt_priv_data) {
4461 scsi_tgt_priv_data->starget = starget;
4462 scsi_tgt_priv_data->dev_handle = tgt_dev->dev_handle;
4463 scsi_tgt_priv_data->perst_id = tgt_dev->perst_id;
4464 scsi_tgt_priv_data->dev_type = tgt_dev->dev_type;
4465 scsi_tgt_priv_data->tgt_dev = tgt_dev;
4466 tgt_dev->starget = starget;
4467 atomic_set(&scsi_tgt_priv_data->block_io, 0);
4469 scsi_tgt_priv_data->io_throttle_enabled =
4470 tgt_dev->io_throttle_enabled;
4471 if (tgt_dev->dev_type == MPI3_DEVICE_DEVFORM_VD)
4472 scsi_tgt_priv_data->throttle_group =
4473 tgt_dev->dev_spec.vd_inf.tg;
4475 spin_unlock_irqrestore(&mrioc->tgtdev_lock, flags);
4481 * mpi3mr_check_return_unmap - Whether an unmap is allowed
4482 * @mrioc: Adapter instance reference
4483 * @scmd: SCSI Command reference
4485 * The controller hardware cannot handle certain unmap commands
4486 * for NVMe drives, this routine checks those and return true
4487 * and completes the SCSI command with proper status and sense
4490 * Return: TRUE for not allowed unmap, FALSE otherwise.
4492 static bool mpi3mr_check_return_unmap(struct mpi3mr_ioc *mrioc,
4493 struct scsi_cmnd *scmd)
4496 u16 param_len, desc_len, trunc_param_len;
4498 trunc_param_len = param_len = get_unaligned_be16(scmd->cmnd + 7);
4500 if (mrioc->pdev->revision) {
4501 if ((param_len > 24) && ((param_len - 8) & 0xF)) {
4502 trunc_param_len -= (param_len - 8) & 0xF;
4503 dprint_scsi_command(mrioc, scmd, MPI3_DEBUG_SCSI_ERROR);
4504 dprint_scsi_err(mrioc,
4505 "truncating param_len from (%d) to (%d)\n",
4506 param_len, trunc_param_len);
4507 put_unaligned_be16(trunc_param_len, scmd->cmnd + 7);
4508 dprint_scsi_command(mrioc, scmd, MPI3_DEBUG_SCSI_ERROR);
4515 "%s: cdb received with zero parameter length\n",
4517 scsi_print_command(scmd);
4518 scmd->result = DID_OK << 16;
4523 if (param_len < 24) {
4525 "%s: cdb received with invalid param_len: %d\n",
4526 __func__, param_len);
4527 scsi_print_command(scmd);
4528 scmd->result = SAM_STAT_CHECK_CONDITION;
4529 scsi_build_sense_buffer(0, scmd->sense_buffer, ILLEGAL_REQUEST,
4534 if (param_len != scsi_bufflen(scmd)) {
4536 "%s: cdb received with param_len: %d bufflen: %d\n",
4537 __func__, param_len, scsi_bufflen(scmd));
4538 scsi_print_command(scmd);
4539 scmd->result = SAM_STAT_CHECK_CONDITION;
4540 scsi_build_sense_buffer(0, scmd->sense_buffer, ILLEGAL_REQUEST,
4545 buf = kzalloc(scsi_bufflen(scmd), GFP_ATOMIC);
4547 scsi_print_command(scmd);
4548 scmd->result = SAM_STAT_CHECK_CONDITION;
4549 scsi_build_sense_buffer(0, scmd->sense_buffer, ILLEGAL_REQUEST,
4554 scsi_sg_copy_to_buffer(scmd, buf, scsi_bufflen(scmd));
4555 desc_len = get_unaligned_be16(&buf[2]);
4557 if (desc_len < 16) {
4559 "%s: Invalid descriptor length in param list: %d\n",
4560 __func__, desc_len);
4561 scsi_print_command(scmd);
4562 scmd->result = SAM_STAT_CHECK_CONDITION;
4563 scsi_build_sense_buffer(0, scmd->sense_buffer, ILLEGAL_REQUEST,
4570 if (param_len > (desc_len + 8)) {
4571 trunc_param_len = desc_len + 8;
4572 scsi_print_command(scmd);
4573 dprint_scsi_err(mrioc,
4574 "truncating param_len(%d) to desc_len+8(%d)\n",
4575 param_len, trunc_param_len);
4576 put_unaligned_be16(trunc_param_len, scmd->cmnd + 7);
4577 scsi_print_command(scmd);
4585 * mpi3mr_allow_scmd_to_fw - Command is allowed during shutdown
4586 * @scmd: SCSI Command reference
4588 * Checks whether a cdb is allowed during shutdown or not.
4590 * Return: TRUE for allowed commands, FALSE otherwise.
4593 inline bool mpi3mr_allow_scmd_to_fw(struct scsi_cmnd *scmd)
4595 switch (scmd->cmnd[0]) {
4596 case SYNCHRONIZE_CACHE:
4605 * mpi3mr_qcmd - I/O request despatcher
4606 * @shost: SCSI Host reference
4607 * @scmd: SCSI Command reference
4609 * Issues the SCSI Command as an MPI3 request.
4611 * Return: 0 on successful queueing of the request or if the
4612 * request is completed with failure.
4613 * SCSI_MLQUEUE_DEVICE_BUSY when the device is busy.
4614 * SCSI_MLQUEUE_HOST_BUSY when the host queue is full.
4616 static int mpi3mr_qcmd(struct Scsi_Host *shost,
4617 struct scsi_cmnd *scmd)
4619 struct mpi3mr_ioc *mrioc = shost_priv(shost);
4620 struct mpi3mr_stgt_priv_data *stgt_priv_data;
4621 struct mpi3mr_sdev_priv_data *sdev_priv_data;
4622 struct scmd_priv *scmd_priv_data = NULL;
4623 struct mpi3_scsi_io_request *scsiio_req = NULL;
4624 struct op_req_qinfo *op_req_q = NULL;
4628 u32 scsiio_flags = 0, data_len_blks = 0;
4629 struct request *rq = scsi_cmd_to_rq(scmd);
4632 u32 tracked_io_sz = 0;
4633 u32 ioc_pend_data_len = 0, tg_pend_data_len = 0;
4634 struct mpi3mr_throttle_group_info *tg = NULL;
4636 if (mrioc->unrecoverable) {
4637 scmd->result = DID_ERROR << 16;
4642 sdev_priv_data = scmd->device->hostdata;
4643 if (!sdev_priv_data || !sdev_priv_data->tgt_priv_data) {
4644 scmd->result = DID_NO_CONNECT << 16;
4649 if (mrioc->stop_drv_processing &&
4650 !(mpi3mr_allow_scmd_to_fw(scmd))) {
4651 scmd->result = DID_NO_CONNECT << 16;
4656 stgt_priv_data = sdev_priv_data->tgt_priv_data;
4657 dev_handle = stgt_priv_data->dev_handle;
4659 /* Avoid error handling escalation when device is removed or blocked */
4661 if (scmd->device->host->shost_state == SHOST_RECOVERY &&
4662 scmd->cmnd[0] == TEST_UNIT_READY &&
4663 (stgt_priv_data->dev_removed || (dev_handle == MPI3MR_INVALID_DEV_HANDLE))) {
4664 scsi_build_sense(scmd, 0, UNIT_ATTENTION, 0x29, 0x07);
4669 if (mrioc->reset_in_progress) {
4670 retval = SCSI_MLQUEUE_HOST_BUSY;
4674 if (atomic_read(&stgt_priv_data->block_io)) {
4675 if (mrioc->stop_drv_processing) {
4676 scmd->result = DID_NO_CONNECT << 16;
4680 retval = SCSI_MLQUEUE_DEVICE_BUSY;
4684 if (dev_handle == MPI3MR_INVALID_DEV_HANDLE) {
4685 scmd->result = DID_NO_CONNECT << 16;
4689 if (stgt_priv_data->dev_removed) {
4690 scmd->result = DID_NO_CONNECT << 16;
4695 if (stgt_priv_data->dev_type == MPI3_DEVICE_DEVFORM_PCIE)
4697 if ((scmd->cmnd[0] == UNMAP) && is_pcie_dev &&
4698 (mrioc->pdev->device == MPI3_MFGPAGE_DEVID_SAS4116) &&
4699 mpi3mr_check_return_unmap(mrioc, scmd))
4702 host_tag = mpi3mr_host_tag_for_scmd(mrioc, scmd);
4703 if (host_tag == MPI3MR_HOSTTAG_INVALID) {
4704 scmd->result = DID_ERROR << 16;
4709 if (scmd->sc_data_direction == DMA_FROM_DEVICE)
4710 scsiio_flags = MPI3_SCSIIO_FLAGS_DATADIRECTION_READ;
4711 else if (scmd->sc_data_direction == DMA_TO_DEVICE)
4712 scsiio_flags = MPI3_SCSIIO_FLAGS_DATADIRECTION_WRITE;
4714 scsiio_flags = MPI3_SCSIIO_FLAGS_DATADIRECTION_NO_DATA_TRANSFER;
4716 scsiio_flags |= MPI3_SCSIIO_FLAGS_TASKATTRIBUTE_SIMPLEQ;
4718 if (sdev_priv_data->ncq_prio_enable) {
4719 iprio_class = IOPRIO_PRIO_CLASS(req_get_ioprio(rq));
4720 if (iprio_class == IOPRIO_CLASS_RT)
4721 scsiio_flags |= 1 << MPI3_SCSIIO_FLAGS_CMDPRI_SHIFT;
4724 if (scmd->cmd_len > 16)
4725 scsiio_flags |= MPI3_SCSIIO_FLAGS_CDB_GREATER_THAN_16;
4727 scmd_priv_data = scsi_cmd_priv(scmd);
4728 memset(scmd_priv_data->mpi3mr_scsiio_req, 0, MPI3MR_ADMIN_REQ_FRAME_SZ);
4729 scsiio_req = (struct mpi3_scsi_io_request *)scmd_priv_data->mpi3mr_scsiio_req;
4730 scsiio_req->function = MPI3_FUNCTION_SCSI_IO;
4731 scsiio_req->host_tag = cpu_to_le16(host_tag);
4733 mpi3mr_setup_eedp(mrioc, scmd, scsiio_req);
4735 memcpy(scsiio_req->cdb.cdb32, scmd->cmnd, scmd->cmd_len);
4736 scsiio_req->data_length = cpu_to_le32(scsi_bufflen(scmd));
4737 scsiio_req->dev_handle = cpu_to_le16(dev_handle);
4738 scsiio_req->flags = cpu_to_le32(scsiio_flags);
4739 int_to_scsilun(sdev_priv_data->lun_id,
4740 (struct scsi_lun *)scsiio_req->lun);
4742 if (mpi3mr_build_sg_scmd(mrioc, scmd, scsiio_req)) {
4743 mpi3mr_clear_scmd_priv(mrioc, scmd);
4744 retval = SCSI_MLQUEUE_HOST_BUSY;
4747 op_req_q = &mrioc->req_qinfo[scmd_priv_data->req_q_idx];
4748 data_len_blks = scsi_bufflen(scmd) >> 9;
4749 if ((data_len_blks >= mrioc->io_throttle_data_length) &&
4750 stgt_priv_data->io_throttle_enabled) {
4751 tracked_io_sz = data_len_blks;
4752 tg = stgt_priv_data->throttle_group;
4754 ioc_pend_data_len = atomic_add_return(data_len_blks,
4755 &mrioc->pend_large_data_sz);
4756 tg_pend_data_len = atomic_add_return(data_len_blks,
4757 &tg->pend_large_data_sz);
4758 if (!tg->io_divert && ((ioc_pend_data_len >=
4759 mrioc->io_throttle_high) ||
4760 (tg_pend_data_len >= tg->high))) {
4762 tg->need_qd_reduction = 1;
4763 mpi3mr_set_io_divert_for_all_vd_in_tg(mrioc,
4765 mpi3mr_queue_qd_reduction_event(mrioc, tg);
4768 ioc_pend_data_len = atomic_add_return(data_len_blks,
4769 &mrioc->pend_large_data_sz);
4770 if (ioc_pend_data_len >= mrioc->io_throttle_high)
4771 stgt_priv_data->io_divert = 1;
4775 if (stgt_priv_data->io_divert) {
4776 scsiio_req->msg_flags |=
4777 MPI3_SCSIIO_MSGFLAGS_DIVERT_TO_FIRMWARE;
4778 scsiio_flags |= MPI3_SCSIIO_FLAGS_DIVERT_REASON_IO_THROTTLING;
4780 scsiio_req->flags = cpu_to_le32(scsiio_flags);
4782 if (mpi3mr_op_request_post(mrioc, op_req_q,
4783 scmd_priv_data->mpi3mr_scsiio_req)) {
4784 mpi3mr_clear_scmd_priv(mrioc, scmd);
4785 retval = SCSI_MLQUEUE_HOST_BUSY;
4786 if (tracked_io_sz) {
4787 atomic_sub(tracked_io_sz, &mrioc->pend_large_data_sz);
4789 atomic_sub(tracked_io_sz,
4790 &tg->pend_large_data_sz);
4799 static const struct scsi_host_template mpi3mr_driver_template = {
4800 .module = THIS_MODULE,
4801 .name = "MPI3 Storage Controller",
4802 .proc_name = MPI3MR_DRIVER_NAME,
4803 .queuecommand = mpi3mr_qcmd,
4804 .target_alloc = mpi3mr_target_alloc,
4805 .slave_alloc = mpi3mr_slave_alloc,
4806 .slave_configure = mpi3mr_slave_configure,
4807 .target_destroy = mpi3mr_target_destroy,
4808 .slave_destroy = mpi3mr_slave_destroy,
4809 .scan_finished = mpi3mr_scan_finished,
4810 .scan_start = mpi3mr_scan_start,
4811 .change_queue_depth = mpi3mr_change_queue_depth,
4812 .eh_device_reset_handler = mpi3mr_eh_dev_reset,
4813 .eh_target_reset_handler = mpi3mr_eh_target_reset,
4814 .eh_host_reset_handler = mpi3mr_eh_host_reset,
4815 .bios_param = mpi3mr_bios_param,
4816 .map_queues = mpi3mr_map_queues,
4817 .mq_poll = mpi3mr_blk_mq_poll,
4821 .sg_tablesize = MPI3MR_SG_DEPTH,
4822 /* max xfer supported is 1M (2K in 512 byte sized sectors)
4824 .max_sectors = 2048,
4825 .cmd_per_lun = MPI3MR_MAX_CMDS_LUN,
4826 .max_segment_size = 0xffffffff,
4827 .track_queue_depth = 1,
4828 .cmd_size = sizeof(struct scmd_priv),
4829 .shost_groups = mpi3mr_host_groups,
4830 .sdev_groups = mpi3mr_dev_groups,
4834 * mpi3mr_init_drv_cmd - Initialize internal command tracker
4835 * @cmdptr: Internal command tracker
4836 * @host_tag: Host tag used for the specific command
4838 * Initialize the internal command tracker structure with
4839 * specified host tag.
4843 static inline void mpi3mr_init_drv_cmd(struct mpi3mr_drv_cmd *cmdptr,
4846 mutex_init(&cmdptr->mutex);
4847 cmdptr->reply = NULL;
4848 cmdptr->state = MPI3MR_CMD_NOTUSED;
4849 cmdptr->dev_handle = MPI3MR_INVALID_DEV_HANDLE;
4850 cmdptr->host_tag = host_tag;
4854 * osintfc_mrioc_security_status -Check controller secure status
4855 * @pdev: PCI device instance
4857 * Read the Device Serial Number capability from PCI config
4858 * space and decide whether the controller is secure or not.
4860 * Return: 0 on success, non-zero on failure.
4863 osintfc_mrioc_security_status(struct pci_dev *pdev)
4871 base = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_DSN);
4874 "%s: PCI_EXT_CAP_ID_DSN is not supported\n", __func__);
4878 pci_read_config_dword(pdev, base + 4, &cap_data);
4880 debug_status = cap_data & MPI3MR_CTLR_SECURE_DBG_STATUS_MASK;
4881 ctlr_status = cap_data & MPI3MR_CTLR_SECURITY_STATUS_MASK;
4883 switch (ctlr_status) {
4884 case MPI3MR_INVALID_DEVICE:
4886 "%s: Non secure ctlr (Invalid) is detected: DID: 0x%x: SVID: 0x%x: SDID: 0x%x\n",
4887 __func__, pdev->device, pdev->subsystem_vendor,
4888 pdev->subsystem_device);
4891 case MPI3MR_CONFIG_SECURE_DEVICE:
4893 dev_info(&pdev->dev,
4894 "%s: Config secure ctlr is detected\n",
4897 case MPI3MR_HARD_SECURE_DEVICE:
4899 case MPI3MR_TAMPERED_DEVICE:
4901 "%s: Non secure ctlr (Tampered) is detected: DID: 0x%x: SVID: 0x%x: SDID: 0x%x\n",
4902 __func__, pdev->device, pdev->subsystem_vendor,
4903 pdev->subsystem_device);
4911 if (!retval && debug_status) {
4913 "%s: Non secure ctlr (Secure Dbg) is detected: DID: 0x%x: SVID: 0x%x: SDID: 0x%x\n",
4914 __func__, pdev->device, pdev->subsystem_vendor,
4915 pdev->subsystem_device);
4923 * mpi3mr_probe - PCI probe callback
4924 * @pdev: PCI device instance
4925 * @id: PCI device ID details
4927 * controller initialization routine. Checks the security status
4928 * of the controller and if it is invalid or tampered return the
4929 * probe without initializing the controller. Otherwise,
4930 * allocate per adapter instance through shost_priv and
4931 * initialize controller specific data structures, initializae
4932 * the controller hardware, add shost to the SCSI subsystem.
4934 * Return: 0 on success, non-zero on failure.
4938 mpi3mr_probe(struct pci_dev *pdev, const struct pci_device_id *id)
4940 struct mpi3mr_ioc *mrioc = NULL;
4941 struct Scsi_Host *shost = NULL;
4944 if (osintfc_mrioc_security_status(pdev)) {
4945 warn_non_secure_ctlr = 1;
4946 return 1; /* For Invalid and Tampered device */
4949 shost = scsi_host_alloc(&mpi3mr_driver_template,
4950 sizeof(struct mpi3mr_ioc));
4956 mrioc = shost_priv(shost);
4957 mrioc->id = mrioc_ids++;
4958 sprintf(mrioc->driver_name, "%s", MPI3MR_DRIVER_NAME);
4959 sprintf(mrioc->name, "%s%d", mrioc->driver_name, mrioc->id);
4960 INIT_LIST_HEAD(&mrioc->list);
4961 spin_lock(&mrioc_list_lock);
4962 list_add_tail(&mrioc->list, &mrioc_list);
4963 spin_unlock(&mrioc_list_lock);
4965 spin_lock_init(&mrioc->admin_req_lock);
4966 spin_lock_init(&mrioc->reply_free_queue_lock);
4967 spin_lock_init(&mrioc->sbq_lock);
4968 spin_lock_init(&mrioc->fwevt_lock);
4969 spin_lock_init(&mrioc->tgtdev_lock);
4970 spin_lock_init(&mrioc->watchdog_lock);
4971 spin_lock_init(&mrioc->chain_buf_lock);
4972 spin_lock_init(&mrioc->sas_node_lock);
4974 INIT_LIST_HEAD(&mrioc->fwevt_list);
4975 INIT_LIST_HEAD(&mrioc->tgtdev_list);
4976 INIT_LIST_HEAD(&mrioc->delayed_rmhs_list);
4977 INIT_LIST_HEAD(&mrioc->delayed_evtack_cmds_list);
4978 INIT_LIST_HEAD(&mrioc->sas_expander_list);
4979 INIT_LIST_HEAD(&mrioc->hba_port_table_list);
4980 INIT_LIST_HEAD(&mrioc->enclosure_list);
4982 mutex_init(&mrioc->reset_mutex);
4983 mpi3mr_init_drv_cmd(&mrioc->init_cmds, MPI3MR_HOSTTAG_INITCMDS);
4984 mpi3mr_init_drv_cmd(&mrioc->host_tm_cmds, MPI3MR_HOSTTAG_BLK_TMS);
4985 mpi3mr_init_drv_cmd(&mrioc->bsg_cmds, MPI3MR_HOSTTAG_BSG_CMDS);
4986 mpi3mr_init_drv_cmd(&mrioc->cfg_cmds, MPI3MR_HOSTTAG_CFG_CMDS);
4987 mpi3mr_init_drv_cmd(&mrioc->transport_cmds,
4988 MPI3MR_HOSTTAG_TRANSPORT_CMDS);
4990 for (i = 0; i < MPI3MR_NUM_DEVRMCMD; i++)
4991 mpi3mr_init_drv_cmd(&mrioc->dev_rmhs_cmds[i],
4992 MPI3MR_HOSTTAG_DEVRMCMD_MIN + i);
4994 for (i = 0; i < MPI3MR_NUM_EVTACKCMD; i++)
4995 mpi3mr_init_drv_cmd(&mrioc->evtack_cmds[i],
4996 MPI3MR_HOSTTAG_EVTACKCMD_MIN + i);
4999 mrioc->enable_segqueue = true;
5001 init_waitqueue_head(&mrioc->reset_waitq);
5002 mrioc->logging_level = logging_level;
5003 mrioc->shost = shost;
5005 mrioc->stop_bsgs = 1;
5007 /* init shost parameters */
5008 shost->max_cmd_len = MPI3MR_MAX_CDB_LENGTH;
5009 shost->max_lun = -1;
5010 shost->unique_id = mrioc->id;
5012 shost->max_channel = 0;
5013 shost->max_id = 0xFFFFFFFF;
5015 shost->host_tagset = 1;
5018 scsi_host_set_prot(shost, prot_mask);
5020 prot_mask = SHOST_DIF_TYPE1_PROTECTION
5021 | SHOST_DIF_TYPE2_PROTECTION
5022 | SHOST_DIF_TYPE3_PROTECTION;
5023 scsi_host_set_prot(shost, prot_mask);
5027 "%s :host protection capabilities enabled %s%s%s%s%s%s%s\n",
5029 (prot_mask & SHOST_DIF_TYPE1_PROTECTION) ? " DIF1" : "",
5030 (prot_mask & SHOST_DIF_TYPE2_PROTECTION) ? " DIF2" : "",
5031 (prot_mask & SHOST_DIF_TYPE3_PROTECTION) ? " DIF3" : "",
5032 (prot_mask & SHOST_DIX_TYPE0_PROTECTION) ? " DIX0" : "",
5033 (prot_mask & SHOST_DIX_TYPE1_PROTECTION) ? " DIX1" : "",
5034 (prot_mask & SHOST_DIX_TYPE2_PROTECTION) ? " DIX2" : "",
5035 (prot_mask & SHOST_DIX_TYPE3_PROTECTION) ? " DIX3" : "");
5037 if (prot_guard_mask)
5038 scsi_host_set_guard(shost, (prot_guard_mask & 3));
5040 scsi_host_set_guard(shost, SHOST_DIX_GUARD_CRC);
5042 snprintf(mrioc->fwevt_worker_name, sizeof(mrioc->fwevt_worker_name),
5043 "%s%d_fwevt_wrkr", mrioc->driver_name, mrioc->id);
5044 mrioc->fwevt_worker_thread = alloc_ordered_workqueue(
5045 mrioc->fwevt_worker_name, 0);
5046 if (!mrioc->fwevt_worker_thread) {
5047 ioc_err(mrioc, "failure at %s:%d/%s()!\n",
5048 __FILE__, __LINE__, __func__);
5050 goto fwevtthread_failed;
5053 mrioc->is_driver_loading = 1;
5054 mrioc->cpu_count = num_online_cpus();
5055 if (mpi3mr_setup_resources(mrioc)) {
5056 ioc_err(mrioc, "setup resources failed\n");
5058 goto resource_alloc_failed;
5060 if (mpi3mr_init_ioc(mrioc)) {
5061 ioc_err(mrioc, "initializing IOC failed\n");
5063 goto init_ioc_failed;
5066 shost->nr_hw_queues = mrioc->num_op_reply_q;
5067 if (mrioc->active_poll_qcount)
5070 shost->can_queue = mrioc->max_host_ios;
5071 shost->sg_tablesize = MPI3MR_SG_DEPTH;
5072 shost->max_id = mrioc->facts.max_perids + 1;
5074 retval = scsi_add_host(shost, &pdev->dev);
5076 ioc_err(mrioc, "failure at %s:%d/%s()!\n",
5077 __FILE__, __LINE__, __func__);
5078 goto addhost_failed;
5081 scsi_scan_host(shost);
5082 mpi3mr_bsg_init(mrioc);
5086 mpi3mr_stop_watchdog(mrioc);
5087 mpi3mr_cleanup_ioc(mrioc);
5089 mpi3mr_free_mem(mrioc);
5090 mpi3mr_cleanup_resources(mrioc);
5091 resource_alloc_failed:
5092 destroy_workqueue(mrioc->fwevt_worker_thread);
5094 spin_lock(&mrioc_list_lock);
5095 list_del(&mrioc->list);
5096 spin_unlock(&mrioc_list_lock);
5097 scsi_host_put(shost);
5103 * mpi3mr_remove - PCI remove callback
5104 * @pdev: PCI device instance
5106 * Cleanup the IOC by issuing MUR and shutdown notification.
5107 * Free up all memory and resources associated with the
5108 * controllerand target devices, unregister the shost.
5112 static void mpi3mr_remove(struct pci_dev *pdev)
5114 struct Scsi_Host *shost = pci_get_drvdata(pdev);
5115 struct mpi3mr_ioc *mrioc;
5116 struct workqueue_struct *wq;
5117 unsigned long flags;
5118 struct mpi3mr_tgt_dev *tgtdev, *tgtdev_next;
5119 struct mpi3mr_hba_port *port, *hba_port_next;
5120 struct mpi3mr_sas_node *sas_expander, *sas_expander_next;
5125 mrioc = shost_priv(shost);
5126 while (mrioc->reset_in_progress || mrioc->is_driver_loading)
5129 if (!pci_device_is_present(mrioc->pdev)) {
5130 mrioc->unrecoverable = 1;
5131 mpi3mr_flush_cmds_for_unrecovered_controller(mrioc);
5134 mpi3mr_bsg_exit(mrioc);
5135 mrioc->stop_drv_processing = 1;
5136 mpi3mr_cleanup_fwevt_list(mrioc);
5137 spin_lock_irqsave(&mrioc->fwevt_lock, flags);
5138 wq = mrioc->fwevt_worker_thread;
5139 mrioc->fwevt_worker_thread = NULL;
5140 spin_unlock_irqrestore(&mrioc->fwevt_lock, flags);
5142 destroy_workqueue(wq);
5144 if (mrioc->sas_transport_enabled)
5145 sas_remove_host(shost);
5147 scsi_remove_host(shost);
5149 list_for_each_entry_safe(tgtdev, tgtdev_next, &mrioc->tgtdev_list,
5151 mpi3mr_remove_tgtdev_from_host(mrioc, tgtdev);
5152 mpi3mr_tgtdev_del_from_list(mrioc, tgtdev, true);
5153 mpi3mr_tgtdev_put(tgtdev);
5155 mpi3mr_stop_watchdog(mrioc);
5156 mpi3mr_cleanup_ioc(mrioc);
5157 mpi3mr_free_mem(mrioc);
5158 mpi3mr_cleanup_resources(mrioc);
5160 spin_lock_irqsave(&mrioc->sas_node_lock, flags);
5161 list_for_each_entry_safe_reverse(sas_expander, sas_expander_next,
5162 &mrioc->sas_expander_list, list) {
5163 spin_unlock_irqrestore(&mrioc->sas_node_lock, flags);
5164 mpi3mr_expander_node_remove(mrioc, sas_expander);
5165 spin_lock_irqsave(&mrioc->sas_node_lock, flags);
5167 list_for_each_entry_safe(port, hba_port_next, &mrioc->hba_port_table_list, list) {
5169 "removing hba_port entry: %p port: %d from hba_port list\n",
5170 port, port->port_id);
5171 list_del(&port->list);
5174 spin_unlock_irqrestore(&mrioc->sas_node_lock, flags);
5176 if (mrioc->sas_hba.num_phys) {
5177 kfree(mrioc->sas_hba.phy);
5178 mrioc->sas_hba.phy = NULL;
5179 mrioc->sas_hba.num_phys = 0;
5182 spin_lock(&mrioc_list_lock);
5183 list_del(&mrioc->list);
5184 spin_unlock(&mrioc_list_lock);
5186 scsi_host_put(shost);
5190 * mpi3mr_shutdown - PCI shutdown callback
5191 * @pdev: PCI device instance
5193 * Free up all memory and resources associated with the
5198 static void mpi3mr_shutdown(struct pci_dev *pdev)
5200 struct Scsi_Host *shost = pci_get_drvdata(pdev);
5201 struct mpi3mr_ioc *mrioc;
5202 struct workqueue_struct *wq;
5203 unsigned long flags;
5208 mrioc = shost_priv(shost);
5209 while (mrioc->reset_in_progress || mrioc->is_driver_loading)
5212 mrioc->stop_drv_processing = 1;
5213 mpi3mr_cleanup_fwevt_list(mrioc);
5214 spin_lock_irqsave(&mrioc->fwevt_lock, flags);
5215 wq = mrioc->fwevt_worker_thread;
5216 mrioc->fwevt_worker_thread = NULL;
5217 spin_unlock_irqrestore(&mrioc->fwevt_lock, flags);
5219 destroy_workqueue(wq);
5221 mpi3mr_stop_watchdog(mrioc);
5222 mpi3mr_cleanup_ioc(mrioc);
5223 mpi3mr_cleanup_resources(mrioc);
5227 * mpi3mr_suspend - PCI power management suspend callback
5228 * @dev: Device struct
5230 * Change the power state to the given value and cleanup the IOC
5231 * by issuing MUR and shutdown notification
5235 static int __maybe_unused
5236 mpi3mr_suspend(struct device *dev)
5238 struct pci_dev *pdev = to_pci_dev(dev);
5239 struct Scsi_Host *shost = pci_get_drvdata(pdev);
5240 struct mpi3mr_ioc *mrioc;
5245 mrioc = shost_priv(shost);
5246 while (mrioc->reset_in_progress || mrioc->is_driver_loading)
5248 mrioc->stop_drv_processing = 1;
5249 mpi3mr_cleanup_fwevt_list(mrioc);
5250 scsi_block_requests(shost);
5251 mpi3mr_stop_watchdog(mrioc);
5252 mpi3mr_cleanup_ioc(mrioc);
5254 ioc_info(mrioc, "pdev=0x%p, slot=%s, entering operating state\n",
5255 pdev, pci_name(pdev));
5256 mpi3mr_cleanup_resources(mrioc);
5262 * mpi3mr_resume - PCI power management resume callback
5263 * @dev: Device struct
5265 * Restore the power state to D0 and reinitialize the controller
5266 * and resume I/O operations to the target devices
5268 * Return: 0 on success, non-zero on failure
5270 static int __maybe_unused
5271 mpi3mr_resume(struct device *dev)
5273 struct pci_dev *pdev = to_pci_dev(dev);
5274 struct Scsi_Host *shost = pci_get_drvdata(pdev);
5275 struct mpi3mr_ioc *mrioc;
5276 pci_power_t device_state = pdev->current_state;
5282 mrioc = shost_priv(shost);
5284 ioc_info(mrioc, "pdev=0x%p, slot=%s, previous operating state [D%d]\n",
5285 pdev, pci_name(pdev), device_state);
5287 mrioc->cpu_count = num_online_cpus();
5288 r = mpi3mr_setup_resources(mrioc);
5290 ioc_info(mrioc, "%s: Setup resources failed[%d]\n",
5295 mrioc->stop_drv_processing = 0;
5296 mpi3mr_invalidate_devhandles(mrioc);
5297 mpi3mr_free_enclosure_list(mrioc);
5298 mpi3mr_memset_buffers(mrioc);
5299 r = mpi3mr_reinit_ioc(mrioc, 1);
5301 ioc_err(mrioc, "resuming controller failed[%d]\n", r);
5304 ssleep(MPI3MR_RESET_TOPOLOGY_SETTLE_TIME);
5305 scsi_unblock_requests(shost);
5306 mrioc->device_refresh_on = 0;
5307 mpi3mr_start_watchdog(mrioc);
5312 static const struct pci_device_id mpi3mr_pci_id_table[] = {
5314 PCI_DEVICE_SUB(MPI3_MFGPAGE_VENDORID_BROADCOM,
5315 MPI3_MFGPAGE_DEVID_SAS4116, PCI_ANY_ID, PCI_ANY_ID)
5319 MODULE_DEVICE_TABLE(pci, mpi3mr_pci_id_table);
5321 static SIMPLE_DEV_PM_OPS(mpi3mr_pm_ops, mpi3mr_suspend, mpi3mr_resume);
5323 static struct pci_driver mpi3mr_pci_driver = {
5324 .name = MPI3MR_DRIVER_NAME,
5325 .id_table = mpi3mr_pci_id_table,
5326 .probe = mpi3mr_probe,
5327 .remove = mpi3mr_remove,
5328 .shutdown = mpi3mr_shutdown,
5329 .driver.pm = &mpi3mr_pm_ops,
5332 static ssize_t event_counter_show(struct device_driver *dd, char *buf)
5334 return sprintf(buf, "%llu\n", atomic64_read(&event_counter));
5336 static DRIVER_ATTR_RO(event_counter);
5338 static int __init mpi3mr_init(void)
5342 pr_info("Loading %s version %s\n", MPI3MR_DRIVER_NAME,
5343 MPI3MR_DRIVER_VERSION);
5345 mpi3mr_transport_template =
5346 sas_attach_transport(&mpi3mr_transport_functions);
5347 if (!mpi3mr_transport_template) {
5348 pr_err("%s failed to load due to sas transport attach failure\n",
5349 MPI3MR_DRIVER_NAME);
5353 ret_val = pci_register_driver(&mpi3mr_pci_driver);
5355 pr_err("%s failed to load due to pci register driver failure\n",
5356 MPI3MR_DRIVER_NAME);
5357 goto err_pci_reg_fail;
5360 ret_val = driver_create_file(&mpi3mr_pci_driver.driver,
5361 &driver_attr_event_counter);
5363 goto err_event_counter;
5368 pci_unregister_driver(&mpi3mr_pci_driver);
5371 sas_release_transport(mpi3mr_transport_template);
5375 static void __exit mpi3mr_exit(void)
5377 if (warn_non_secure_ctlr)
5379 "Unloading %s version %s while managing a non secure controller\n",
5380 MPI3MR_DRIVER_NAME, MPI3MR_DRIVER_VERSION);
5382 pr_info("Unloading %s version %s\n", MPI3MR_DRIVER_NAME,
5383 MPI3MR_DRIVER_VERSION);
5385 driver_remove_file(&mpi3mr_pci_driver.driver,
5386 &driver_attr_event_counter);
5387 pci_unregister_driver(&mpi3mr_pci_driver);
5388 sas_release_transport(mpi3mr_transport_template);
5391 module_init(mpi3mr_init);
5392 module_exit(mpi3mr_exit);