sas_scsi_host.c 30.6 KB
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/*
 * Serial Attached SCSI (SAS) class SCSI Host glue.
 *
 * Copyright (C) 2005 Adaptec, Inc.  All rights reserved.
 * Copyright (C) 2005 Luben Tuikov <luben_tuikov@adaptec.com>
 *
 * This file is licensed under GPLv2.
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License as
 * published by the Free Software Foundation; either version 2 of the
 * License, or (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
 * USA
 *
 */

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#include <linux/kthread.h>
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#include <linux/firmware.h>
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#include <linux/export.h>
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#include <linux/ctype.h>
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#include "sas_internal.h"

#include <scsi/scsi_host.h>
#include <scsi/scsi_device.h>
#include <scsi/scsi_tcq.h>
#include <scsi/scsi.h>
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#include <scsi/scsi_eh.h>
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#include <scsi/scsi_transport.h>
#include <scsi/scsi_transport_sas.h>
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#include <scsi/sas_ata.h>
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#include "../scsi_sas_internal.h"
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#include "../scsi_transport_api.h"
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#include "../scsi_priv.h"
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#include <linux/err.h>
#include <linux/blkdev.h>
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#include <linux/freezer.h>
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#include <linux/gfp.h>
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#include <linux/scatterlist.h>
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#include <linux/libata.h>
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/* record final status and free the task */
static void sas_end_task(struct scsi_cmnd *sc, struct sas_task *task)
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{
	struct task_status_struct *ts = &task->task_status;
	int hs = 0, stat = 0;

	if (ts->resp == SAS_TASK_UNDELIVERED) {
		/* transport error */
		hs = DID_NO_CONNECT;
	} else { /* ts->resp == SAS_TASK_COMPLETE */
		/* task delivered, what happened afterwards? */
		switch (ts->stat) {
		case SAS_DEV_NO_RESPONSE:
		case SAS_INTERRUPTED:
		case SAS_PHY_DOWN:
		case SAS_NAK_R_ERR:
		case SAS_OPEN_TO:
			hs = DID_NO_CONNECT;
			break;
		case SAS_DATA_UNDERRUN:
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			scsi_set_resid(sc, ts->residual);
			if (scsi_bufflen(sc) - scsi_get_resid(sc) < sc->underflow)
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				hs = DID_ERROR;
			break;
		case SAS_DATA_OVERRUN:
			hs = DID_ERROR;
			break;
		case SAS_QUEUE_FULL:
			hs = DID_SOFT_ERROR; /* retry */
			break;
		case SAS_DEVICE_UNKNOWN:
			hs = DID_BAD_TARGET;
			break;
		case SAS_SG_ERR:
			hs = DID_PARITY;
			break;
		case SAS_OPEN_REJECT:
			if (ts->open_rej_reason == SAS_OREJ_RSVD_RETRY)
				hs = DID_SOFT_ERROR; /* retry */
			else
				hs = DID_ERROR;
			break;
		case SAS_PROTO_RESPONSE:
			SAS_DPRINTK("LLDD:%s sent SAS_PROTO_RESP for an SSP "
				    "task; please report this\n",
				    task->dev->port->ha->sas_ha_name);
			break;
		case SAS_ABORTED_TASK:
			hs = DID_ABORT;
			break;
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		case SAM_STAT_CHECK_CONDITION:
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			memcpy(sc->sense_buffer, ts->buf,
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			       min(SCSI_SENSE_BUFFERSIZE, ts->buf_valid_size));
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			stat = SAM_STAT_CHECK_CONDITION;
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			break;
		default:
			stat = ts->stat;
			break;
		}
	}
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	sc->result = (hs << 16) | stat;
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	ASSIGN_SAS_TASK(sc, NULL);
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	list_del_init(&task->list);
	sas_free_task(task);
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}

static void sas_scsi_task_done(struct sas_task *task)
{
	struct scsi_cmnd *sc = task->uldd_task;
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	struct domain_device *dev = task->dev;
	struct sas_ha_struct *ha = dev->port->ha;
	unsigned long flags;

	spin_lock_irqsave(&dev->done_lock, flags);
	if (test_bit(SAS_HA_FROZEN, &ha->state))
		task = NULL;
	else
		ASSIGN_SAS_TASK(sc, NULL);
	spin_unlock_irqrestore(&dev->done_lock, flags);
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	if (unlikely(!task)) {
		/* task will be completed by the error handler */
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		SAS_DPRINTK("task done but aborted\n");
		return;
	}

	if (unlikely(!sc)) {
		SAS_DPRINTK("task_done called with non existing SCSI cmnd!\n");
		list_del_init(&task->list);
		sas_free_task(task);
		return;
	}

	sas_end_task(sc, task);
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	sc->scsi_done(sc);
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}

static struct sas_task *sas_create_task(struct scsi_cmnd *cmd,
					       struct domain_device *dev,
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					       gfp_t gfp_flags)
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{
	struct sas_task *task = sas_alloc_task(gfp_flags);
	struct scsi_lun lun;

	if (!task)
		return NULL;

	task->uldd_task = cmd;
	ASSIGN_SAS_TASK(cmd, task);

	task->dev = dev;
	task->task_proto = task->dev->tproto; /* BUG_ON(!SSP) */

	task->ssp_task.retry_count = 1;
	int_to_scsilun(cmd->device->lun, &lun);
	memcpy(task->ssp_task.LUN, &lun.scsi_lun, 8);
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	task->ssp_task.task_attr = TASK_ATTR_SIMPLE;
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	task->ssp_task.cmd = cmd;
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	task->scatter = scsi_sglist(cmd);
	task->num_scatter = scsi_sg_count(cmd);
	task->total_xfer_len = scsi_bufflen(cmd);
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	task->data_dir = cmd->sc_data_direction;

	task->task_done = sas_scsi_task_done;

	return task;
}

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int sas_queue_up(struct sas_task *task)
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{
	struct sas_ha_struct *sas_ha = task->dev->port->ha;
	struct scsi_core *core = &sas_ha->core;
	unsigned long flags;
	LIST_HEAD(list);

	spin_lock_irqsave(&core->task_queue_lock, flags);
	if (sas_ha->lldd_queue_size < core->task_queue_size + 1) {
		spin_unlock_irqrestore(&core->task_queue_lock, flags);
		return -SAS_QUEUE_FULL;
	}
	list_add_tail(&task->list, &core->task_queue);
	core->task_queue_size += 1;
	spin_unlock_irqrestore(&core->task_queue_lock, flags);
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	wake_up_process(core->queue_thread);
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	return 0;
}

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int sas_queuecommand(struct Scsi_Host *host, struct scsi_cmnd *cmd)
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{
	struct sas_internal *i = to_sas_internal(host->transportt);
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	struct domain_device *dev = cmd_to_domain_dev(cmd);
	struct sas_ha_struct *sas_ha = dev->port->ha;
	struct sas_task *task;
	int res = 0;
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	/* If the device fell off, no sense in issuing commands */
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	if (test_bit(SAS_DEV_GONE, &dev->state)) {
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		cmd->result = DID_BAD_TARGET << 16;
		goto out_done;
	}
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	if (dev_is_sata(dev)) {
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		spin_lock_irq(dev->sata_dev.ap->lock);
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		res = ata_sas_queuecmd(cmd, dev->sata_dev.ap);
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		spin_unlock_irq(dev->sata_dev.ap->lock);
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		return res;
	}
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	task = sas_create_task(cmd, dev, GFP_ATOMIC);
	if (!task)
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		return SCSI_MLQUEUE_HOST_BUSY;
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	/* Queue up, Direct Mode or Task Collector Mode. */
	if (sas_ha->lldd_max_execute_num < 2)
		res = i->dft->lldd_execute_task(task, 1, GFP_ATOMIC);
	else
		res = sas_queue_up(task);

	if (res)
		goto out_free_task;
	return 0;

out_free_task:
	SAS_DPRINTK("lldd_execute_task returned: %d\n", res);
	ASSIGN_SAS_TASK(cmd, NULL);
	sas_free_task(task);
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	if (res == -SAS_QUEUE_FULL)
		cmd->result = DID_SOFT_ERROR << 16; /* retry */
	else
		cmd->result = DID_ERROR << 16;
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out_done:
	cmd->scsi_done(cmd);
	return 0;
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}

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static void sas_eh_finish_cmd(struct scsi_cmnd *cmd)
{
	struct sas_ha_struct *sas_ha = SHOST_TO_SAS_HA(cmd->device->host);
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	struct sas_task *task = TO_SAS_TASK(cmd);
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	/* At this point, we only get called following an actual abort
	 * of the task, so we should be guaranteed not to be racing with
	 * any completions from the LLD.  Task is freed after this.
	 */
	sas_end_task(cmd, task);

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	/* now finish the command and move it on to the error
	 * handler done list, this also takes it off the
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	 * error handler pending list.
	 */
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	scsi_eh_finish_cmd(cmd, &sas_ha->eh_done_q);
}

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static void sas_eh_defer_cmd(struct scsi_cmnd *cmd)
{
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	struct domain_device *dev = cmd_to_domain_dev(cmd);
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	struct sas_ha_struct *ha = dev->port->ha;
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	struct sas_task *task = TO_SAS_TASK(cmd);
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	if (!dev_is_sata(dev)) {
		sas_eh_finish_cmd(cmd);
		return;
	}

	/* report the timeout to libata */
	sas_end_task(cmd, task);
	list_move_tail(&cmd->eh_entry, &ha->eh_ata_q);
}

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static void sas_scsi_clear_queue_lu(struct list_head *error_q, struct scsi_cmnd *my_cmd)
{
	struct scsi_cmnd *cmd, *n;

	list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
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		if (cmd->device->sdev_target == my_cmd->device->sdev_target &&
		    cmd->device->lun == my_cmd->device->lun)
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			sas_eh_defer_cmd(cmd);
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	}
}

static void sas_scsi_clear_queue_I_T(struct list_head *error_q,
				     struct domain_device *dev)
{
	struct scsi_cmnd *cmd, *n;

	list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
		struct domain_device *x = cmd_to_domain_dev(cmd);

		if (x == dev)
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			sas_eh_finish_cmd(cmd);
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	}
}

static void sas_scsi_clear_queue_port(struct list_head *error_q,
				      struct asd_sas_port *port)
{
	struct scsi_cmnd *cmd, *n;

	list_for_each_entry_safe(cmd, n, error_q, eh_entry) {
		struct domain_device *dev = cmd_to_domain_dev(cmd);
		struct asd_sas_port *x = dev->port;

		if (x == port)
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			sas_eh_finish_cmd(cmd);
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	}
}

enum task_disposition {
	TASK_IS_DONE,
	TASK_IS_ABORTED,
	TASK_IS_AT_LU,
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	TASK_IS_NOT_AT_HA,
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	TASK_IS_NOT_AT_LU,
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	TASK_ABORT_FAILED,
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};

static enum task_disposition sas_scsi_find_task(struct sas_task *task)
{
	struct sas_ha_struct *ha = task->dev->port->ha;
	unsigned long flags;
	int i, res;
	struct sas_internal *si =
		to_sas_internal(task->dev->port->ha->core.shost->transportt);

	if (ha->lldd_max_execute_num > 1) {
		struct scsi_core *core = &ha->core;
		struct sas_task *t, *n;

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		mutex_lock(&core->task_queue_flush);
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		spin_lock_irqsave(&core->task_queue_lock, flags);
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		list_for_each_entry_safe(t, n, &core->task_queue, list)
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			if (task == t) {
				list_del_init(&t->list);
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				break;
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			}
		spin_unlock_irqrestore(&core->task_queue_lock, flags);
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		mutex_unlock(&core->task_queue_flush);

		if (task == t)
			return TASK_IS_NOT_AT_HA;
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	}

	for (i = 0; i < 5; i++) {
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		SAS_DPRINTK("%s: aborting task 0x%p\n", __func__, task);
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		res = si->dft->lldd_abort_task(task);

		spin_lock_irqsave(&task->task_state_lock, flags);
		if (task->task_state_flags & SAS_TASK_STATE_DONE) {
			spin_unlock_irqrestore(&task->task_state_lock, flags);
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			SAS_DPRINTK("%s: task 0x%p is done\n", __func__,
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				    task);
			return TASK_IS_DONE;
		}
		spin_unlock_irqrestore(&task->task_state_lock, flags);

		if (res == TMF_RESP_FUNC_COMPLETE) {
			SAS_DPRINTK("%s: task 0x%p is aborted\n",
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				    __func__, task);
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			return TASK_IS_ABORTED;
		} else if (si->dft->lldd_query_task) {
			SAS_DPRINTK("%s: querying task 0x%p\n",
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				    __func__, task);
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			res = si->dft->lldd_query_task(task);
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			switch (res) {
			case TMF_RESP_FUNC_SUCC:
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				SAS_DPRINTK("%s: task 0x%p at LU\n",
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					    __func__, task);
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				return TASK_IS_AT_LU;
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			case TMF_RESP_FUNC_COMPLETE:
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				SAS_DPRINTK("%s: task 0x%p not at LU\n",
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					    __func__, task);
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				return TASK_IS_NOT_AT_LU;
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			case TMF_RESP_FUNC_FAILED:
                                SAS_DPRINTK("%s: task 0x%p failed to abort\n",
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                                                __func__, task);
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                                return TASK_ABORT_FAILED;
                        }

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		}
	}
	return res;
}

static int sas_recover_lu(struct domain_device *dev, struct scsi_cmnd *cmd)
{
	int res = TMF_RESP_FUNC_FAILED;
	struct scsi_lun lun;
	struct sas_internal *i =
		to_sas_internal(dev->port->ha->core.shost->transportt);

	int_to_scsilun(cmd->device->lun, &lun);

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	SAS_DPRINTK("eh: device %llx LUN %llx has the task\n",
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		    SAS_ADDR(dev->sas_addr),
		    cmd->device->lun);

	if (i->dft->lldd_abort_task_set)
		res = i->dft->lldd_abort_task_set(dev, lun.scsi_lun);

	if (res == TMF_RESP_FUNC_FAILED) {
		if (i->dft->lldd_clear_task_set)
			res = i->dft->lldd_clear_task_set(dev, lun.scsi_lun);
	}

	if (res == TMF_RESP_FUNC_FAILED) {
		if (i->dft->lldd_lu_reset)
			res = i->dft->lldd_lu_reset(dev, lun.scsi_lun);
	}

	return res;
}

static int sas_recover_I_T(struct domain_device *dev)
{
	int res = TMF_RESP_FUNC_FAILED;
	struct sas_internal *i =
		to_sas_internal(dev->port->ha->core.shost->transportt);

	SAS_DPRINTK("I_T nexus reset for dev %016llx\n",
		    SAS_ADDR(dev->sas_addr));

	if (i->dft->lldd_I_T_nexus_reset)
		res = i->dft->lldd_I_T_nexus_reset(dev);

	return res;
}

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/* take a reference on the last known good phy for this device */
struct sas_phy *sas_get_local_phy(struct domain_device *dev)
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{
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	struct sas_ha_struct *ha = dev->port->ha;
	struct sas_phy *phy;
	unsigned long flags;
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	/* a published domain device always has a valid phy, it may be
	 * stale, but it is never NULL
	 */
	BUG_ON(!dev->phy);

	spin_lock_irqsave(&ha->phy_port_lock, flags);
	phy = dev->phy;
	get_device(&phy->dev);
	spin_unlock_irqrestore(&ha->phy_port_lock, flags);

	return phy;
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}
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EXPORT_SYMBOL_GPL(sas_get_local_phy);
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static void sas_wait_eh(struct domain_device *dev)
{
	struct sas_ha_struct *ha = dev->port->ha;
	DEFINE_WAIT(wait);

	if (dev_is_sata(dev)) {
		ata_port_wait_eh(dev->sata_dev.ap);
		return;
	}
 retry:
	spin_lock_irq(&ha->lock);

	while (test_bit(SAS_DEV_EH_PENDING, &dev->state)) {
		prepare_to_wait(&ha->eh_wait_q, &wait, TASK_UNINTERRUPTIBLE);
		spin_unlock_irq(&ha->lock);
		schedule();
		spin_lock_irq(&ha->lock);
	}
	finish_wait(&ha->eh_wait_q, &wait);

	spin_unlock_irq(&ha->lock);

	/* make sure SCSI EH is complete */
	if (scsi_host_in_recovery(ha->core.shost)) {
		msleep(10);
		goto retry;
	}
}
EXPORT_SYMBOL(sas_wait_eh);

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static int sas_queue_reset(struct domain_device *dev, int reset_type,
			   u64 lun, int wait)
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{
	struct sas_ha_struct *ha = dev->port->ha;
	int scheduled = 0, tries = 100;

	/* ata: promote lun reset to bus reset */
	if (dev_is_sata(dev)) {
		sas_ata_schedule_reset(dev);
		if (wait)
			sas_ata_wait_eh(dev);
		return SUCCESS;
	}

	while (!scheduled && tries--) {
		spin_lock_irq(&ha->lock);
		if (!test_bit(SAS_DEV_EH_PENDING, &dev->state) &&
		    !test_bit(reset_type, &dev->state)) {
			scheduled = 1;
			ha->eh_active++;
			list_add_tail(&dev->ssp_dev.eh_list_node, &ha->eh_dev_q);
			set_bit(SAS_DEV_EH_PENDING, &dev->state);
			set_bit(reset_type, &dev->state);
			int_to_scsilun(lun, &dev->ssp_dev.reset_lun);
			scsi_schedule_eh(ha->core.shost);
		}
		spin_unlock_irq(&ha->lock);

		if (wait)
			sas_wait_eh(dev);

		if (scheduled)
			return SUCCESS;
	}

	SAS_DPRINTK("%s reset of %s failed\n",
		    reset_type == SAS_DEV_LU_RESET ? "LUN" : "Bus",
		    dev_name(&dev->rphy->dev));

	return FAILED;
}

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int sas_eh_abort_handler(struct scsi_cmnd *cmd)
{
	int res;
	struct sas_task *task = TO_SAS_TASK(cmd);
	struct Scsi_Host *host = cmd->device->host;
	struct sas_internal *i = to_sas_internal(host->transportt);

	if (current != host->ehandler)
		return FAILED;

	if (!i->dft->lldd_abort_task)
		return FAILED;

	res = i->dft->lldd_abort_task(task);
	if (res == TMF_RESP_FUNC_SUCC || res == TMF_RESP_FUNC_COMPLETE)
		return SUCCESS;

	return FAILED;
}
EXPORT_SYMBOL_GPL(sas_eh_abort_handler);

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/* Attempt to send a LUN reset message to a device */
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int sas_eh_device_reset_handler(struct scsi_cmnd *cmd)
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{
	int res;
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	struct scsi_lun lun;
	struct Scsi_Host *host = cmd->device->host;
	struct domain_device *dev = cmd_to_domain_dev(cmd);
	struct sas_internal *i = to_sas_internal(host->transportt);

	if (current != host->ehandler)
		return sas_queue_reset(dev, SAS_DEV_LU_RESET, cmd->device->lun, 0);
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	int_to_scsilun(cmd->device->lun, &lun);

	if (!i->dft->lldd_lu_reset)
		return FAILED;

	res = i->dft->lldd_lu_reset(dev, lun.scsi_lun);
	if (res == TMF_RESP_FUNC_SUCC || res == TMF_RESP_FUNC_COMPLETE)
		return SUCCESS;

	return FAILED;
}

int sas_eh_bus_reset_handler(struct scsi_cmnd *cmd)
581 582
{
	int res;
583 584 585
	struct Scsi_Host *host = cmd->device->host;
	struct domain_device *dev = cmd_to_domain_dev(cmd);
	struct sas_internal *i = to_sas_internal(host->transportt);
586

587 588 589
	if (current != host->ehandler)
		return sas_queue_reset(dev, SAS_DEV_RESET, 0, 0);

590 591
	if (!i->dft->lldd_I_T_nexus_reset)
		return FAILED;
592

593 594 595
	res = i->dft->lldd_I_T_nexus_reset(dev);
	if (res == TMF_RESP_FUNC_SUCC || res == TMF_RESP_FUNC_COMPLETE ||
	    res == -ENODEV)
596 597 598 599 600 601
		return SUCCESS;

	return FAILED;
}

/* Try to reset a device */
602
static int try_to_reset_cmd_device(struct scsi_cmnd *cmd)
603
{
604
	int res;
605
	struct Scsi_Host *shost = cmd->device->host;
606

607
	if (!shost->hostt->eh_device_reset_handler)
608 609 610 611 612
		goto try_bus_reset;

	res = shost->hostt->eh_device_reset_handler(cmd);
	if (res == SUCCESS)
		return res;
613

614 615 616 617 618
try_bus_reset:
	if (shost->hostt->eh_bus_reset_handler)
		return shost->hostt->eh_bus_reset_handler(cmd);

	return FAILED;
619 620
}

621
static void sas_eh_handle_sas_errors(struct Scsi_Host *shost, struct list_head *work_q)
J
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622 623 624
{
	struct scsi_cmnd *cmd, *n;
	enum task_disposition res = TASK_IS_DONE;
625
	int tmf_resp, need_reset;
J
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626
	struct sas_internal *i = to_sas_internal(shost->transportt);
627 628
	unsigned long flags;
	struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
629
	LIST_HEAD(done);
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630

631
	/* clean out any commands that won the completion vs eh race */
632
	list_for_each_entry_safe(cmd, n, work_q, eh_entry) {
633 634 635 636 637 638 639 640 641 642
		struct domain_device *dev = cmd_to_domain_dev(cmd);
		struct sas_task *task;

		spin_lock_irqsave(&dev->done_lock, flags);
		/* by this point the lldd has either observed
		 * SAS_HA_FROZEN and is leaving the task alone, or has
		 * won the race with eh and decided to complete it
		 */
		task = TO_SAS_TASK(cmd);
		spin_unlock_irqrestore(&dev->done_lock, flags);
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643

644
		if (!task)
645 646 647 648 649 650
			list_move_tail(&cmd->eh_entry, &done);
	}

 Again:
	list_for_each_entry_safe(cmd, n, work_q, eh_entry) {
		struct sas_task *task = TO_SAS_TASK(cmd);
651 652

		list_del_init(&cmd->eh_entry);
653 654 655 656 657

		spin_lock_irqsave(&task->task_state_lock, flags);
		need_reset = task->task_state_flags & SAS_TASK_NEED_DEV_RESET;
		spin_unlock_irqrestore(&task->task_state_lock, flags);

658 659
		if (need_reset) {
			SAS_DPRINTK("%s: task 0x%p requests reset\n",
660
				    __func__, task);
661 662 663
			goto reset;
		}

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664 665 666 667 668 669
		SAS_DPRINTK("trying to find task 0x%p\n", task);
		res = sas_scsi_find_task(task);

		cmd->eh_eflags = 0;

		switch (res) {
670 671 672 673 674 675 676 677
		case TASK_IS_NOT_AT_HA:
			SAS_DPRINTK("%s: task 0x%p is not at ha: %s\n",
				    __func__, task,
				    cmd->retries ? "retry" : "aborted");
			if (cmd->retries)
				cmd->retries--;
			sas_eh_finish_cmd(cmd);
			continue;
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		case TASK_IS_DONE:
679
			SAS_DPRINTK("%s: task 0x%p is done\n", __func__,
J
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680
				    task);
681
			sas_eh_defer_cmd(cmd);
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682 683 684
			continue;
		case TASK_IS_ABORTED:
			SAS_DPRINTK("%s: task 0x%p is aborted\n",
685
				    __func__, task);
686
			sas_eh_defer_cmd(cmd);
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687 688 689
			continue;
		case TASK_IS_AT_LU:
			SAS_DPRINTK("task 0x%p is at LU: lu recover\n", task);
690
 reset:
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691 692
			tmf_resp = sas_recover_lu(task->dev, cmd);
			if (tmf_resp == TMF_RESP_FUNC_COMPLETE) {
H
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693
				SAS_DPRINTK("dev %016llx LU %llx is "
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694 695 696
					    "recovered\n",
					    SAS_ADDR(task->dev),
					    cmd->device->lun);
697
				sas_eh_defer_cmd(cmd);
698
				sas_scsi_clear_queue_lu(work_q, cmd);
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				goto Again;
			}
			/* fallthrough */
		case TASK_IS_NOT_AT_LU:
703
		case TASK_ABORT_FAILED:
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704 705 706
			SAS_DPRINTK("task 0x%p is not at LU: I_T recover\n",
				    task);
			tmf_resp = sas_recover_I_T(task->dev);
707 708
			if (tmf_resp == TMF_RESP_FUNC_COMPLETE ||
			    tmf_resp == -ENODEV) {
709
				struct domain_device *dev = task->dev;
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710 711
				SAS_DPRINTK("I_T %016llx recovered\n",
					    SAS_ADDR(task->dev->sas_addr));
712
				sas_eh_finish_cmd(cmd);
713
				sas_scsi_clear_queue_I_T(work_q, dev);
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714 715 716
				goto Again;
			}
			/* Hammer time :-) */
717
			try_to_reset_cmd_device(cmd);
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718 719 720 721 722 723 724 725
			if (i->dft->lldd_clear_nexus_port) {
				struct asd_sas_port *port = task->dev->port;
				SAS_DPRINTK("clearing nexus for port:%d\n",
					    port->id);
				res = i->dft->lldd_clear_nexus_port(port);
				if (res == TMF_RESP_FUNC_COMPLETE) {
					SAS_DPRINTK("clear nexus port:%d "
						    "succeeded\n", port->id);
726
					sas_eh_finish_cmd(cmd);
727
					sas_scsi_clear_queue_port(work_q,
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728 729 730 731 732 733 734 735 736 737
								  port);
					goto Again;
				}
			}
			if (i->dft->lldd_clear_nexus_ha) {
				SAS_DPRINTK("clear nexus ha\n");
				res = i->dft->lldd_clear_nexus_ha(ha);
				if (res == TMF_RESP_FUNC_COMPLETE) {
					SAS_DPRINTK("clear nexus ha "
						    "succeeded\n");
738 739
					sas_eh_finish_cmd(cmd);
					goto clear_q;
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740 741 742 743 744 745
				}
			}
			/* If we are here -- this means that no amount
			 * of effort could recover from errors.  Quite
			 * possibly the HA just disappeared.
			 */
H
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746
			SAS_DPRINTK("error from  device %llx, LUN %llx "
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747 748 749 750
				    "couldn't be recovered in any way\n",
				    SAS_ADDR(task->dev->sas_addr),
				    cmd->device->lun);

751
			sas_eh_finish_cmd(cmd);
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752 753 754
			goto clear_q;
		}
	}
755 756
 out:
	list_splice_tail(&done, work_q);
757
	list_splice_tail_init(&ha->eh_ata_q, work_q);
758
	return;
759 760

 clear_q:
761
	SAS_DPRINTK("--- Exit %s -- clear_q\n", __func__);
762 763
	list_for_each_entry_safe(cmd, n, work_q, eh_entry)
		sas_eh_finish_cmd(cmd);
764
	goto out;
765 766
}

767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799
static void sas_eh_handle_resets(struct Scsi_Host *shost)
{
	struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
	struct sas_internal *i = to_sas_internal(shost->transportt);

	/* handle directed resets to sas devices */
	spin_lock_irq(&ha->lock);
	while (!list_empty(&ha->eh_dev_q)) {
		struct domain_device *dev;
		struct ssp_device *ssp;

		ssp = list_entry(ha->eh_dev_q.next, typeof(*ssp), eh_list_node);
		list_del_init(&ssp->eh_list_node);
		dev = container_of(ssp, typeof(*dev), ssp_dev);
		kref_get(&dev->kref);
		WARN_ONCE(dev_is_sata(dev), "ssp reset to ata device?\n");

		spin_unlock_irq(&ha->lock);

		if (test_and_clear_bit(SAS_DEV_LU_RESET, &dev->state))
			i->dft->lldd_lu_reset(dev, ssp->reset_lun.scsi_lun);

		if (test_and_clear_bit(SAS_DEV_RESET, &dev->state))
			i->dft->lldd_I_T_nexus_reset(dev);

		sas_put_device(dev);
		spin_lock_irq(&ha->lock);
		clear_bit(SAS_DEV_EH_PENDING, &dev->state);
		ha->eh_active--;
	}
	spin_unlock_irq(&ha->lock);
}

800

801 802 803 804
void sas_scsi_recover_host(struct Scsi_Host *shost)
{
	struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
	LIST_HEAD(eh_work_q);
805 806
	int tries = 0;
	bool retry;
807

808 809 810 811
retry:
	tries++;
	retry = true;
	spin_lock_irq(shost->host_lock);
812
	list_splice_init(&shost->eh_cmd_q, &eh_work_q);
813
	spin_unlock_irq(shost->host_lock);
814

815
	SAS_DPRINTK("Enter %s busy: %d failed: %d\n",
816
		    __func__, atomic_read(&shost->host_busy), shost->host_failed);
817 818
	/*
	 * Deal with commands that still have SAS tasks (i.e. they didn't
819 820
	 * complete via the normal sas_task completion mechanism),
	 * SAS_HA_FROZEN gives eh dominion over all sas_task completion.
821
	 */
822
	set_bit(SAS_HA_FROZEN, &ha->state);
823 824 825
	sas_eh_handle_sas_errors(shost, &eh_work_q);
	clear_bit(SAS_HA_FROZEN, &ha->state);
	if (list_empty(&eh_work_q))
826 827 828 829 830 831 832 833
		goto out;

	/*
	 * Now deal with SCSI commands that completed ok but have a an error
	 * code (and hopefully sense data) attached.  This is roughly what
	 * scsi_unjam_host does, but we skip scsi_eh_abort_cmds because any
	 * command we see here has no sas_task and is thus unknown to the HA.
	 */
834 835 836
	sas_ata_eh(shost, &eh_work_q, &ha->eh_done_q);
	if (!scsi_eh_get_sense(&eh_work_q, &ha->eh_done_q))
		scsi_eh_ready_devs(shost, &eh_work_q, &ha->eh_done_q);
837 838

out:
839 840 841
	if (ha->lldd_max_execute_num > 1)
		wake_up_process(ha->core.queue_thread);

842 843
	sas_eh_handle_resets(shost);

844 845 846
	/* now link into libata eh --- if we have any ata devices */
	sas_ata_strategy_handler(shost);

847
	scsi_eh_flush_done_q(&ha->eh_done_q);
848

849 850 851 852 853 854 855 856 857 858 859 860
	/* check if any new eh work was scheduled during the last run */
	spin_lock_irq(&ha->lock);
	if (ha->eh_active == 0) {
		shost->host_eh_scheduled = 0;
		retry = false;
	}
	spin_unlock_irq(&ha->lock);

	if (retry)
		goto retry;

	SAS_DPRINTK("--- Exit %s: busy: %d failed: %d tries: %d\n",
861 862
		    __func__, atomic_read(&shost->host_busy),
		    shost->host_failed, tries);
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}

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865
enum blk_eh_timer_return sas_scsi_timed_out(struct scsi_cmnd *cmd)
J
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866
{
867
	scmd_dbg(cmd, "command %p timed out\n", cmd);
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868

J
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869
	return BLK_EH_NOT_HANDLED;
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870 871
}

872 873 874 875 876
int sas_ioctl(struct scsi_device *sdev, int cmd, void __user *arg)
{
	struct domain_device *dev = sdev_to_domain_dev(sdev);

	if (dev_is_sata(dev))
877
		return ata_sas_scsi_ioctl(dev->sata_dev.ap, sdev, cmd, arg);
878 879 880 881

	return -EINVAL;
}

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struct domain_device *sas_find_dev_by_rphy(struct sas_rphy *rphy)
{
	struct Scsi_Host *shost = dev_to_shost(rphy->dev.parent);
	struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
	struct domain_device *found_dev = NULL;
	int i;
888
	unsigned long flags;
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889

890
	spin_lock_irqsave(&ha->phy_port_lock, flags);
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891 892 893 894 895 896 897 898 899 900 901 902 903 904 905
	for (i = 0; i < ha->num_phys; i++) {
		struct asd_sas_port *port = ha->sas_port[i];
		struct domain_device *dev;

		spin_lock(&port->dev_list_lock);
		list_for_each_entry(dev, &port->dev_list, dev_list_node) {
			if (rphy == dev->rphy) {
				found_dev = dev;
				spin_unlock(&port->dev_list_lock);
				goto found;
			}
		}
		spin_unlock(&port->dev_list_lock);
	}
 found:
906
	spin_unlock_irqrestore(&ha->phy_port_lock, flags);
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907 908 909 910 911 912

	return found_dev;
}

int sas_target_alloc(struct scsi_target *starget)
{
913 914
	struct sas_rphy *rphy = dev_to_rphy(starget->dev.parent);
	struct domain_device *found_dev = sas_find_dev_by_rphy(rphy);
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915 916 917 918

	if (!found_dev)
		return -ENODEV;

919
	kref_get(&found_dev->kref);
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	starget->hostdata = found_dev;
	return 0;
}

D
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924
#define SAS_DEF_QD 256
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925 926 927 928 929 930 931 932

int sas_slave_configure(struct scsi_device *scsi_dev)
{
	struct domain_device *dev = sdev_to_domain_dev(scsi_dev);
	struct sas_ha_struct *sas_ha;

	BUG_ON(dev->rphy->identify.device_type != SAS_END_DEVICE);

933 934 935 936 937
	if (dev_is_sata(dev)) {
		ata_sas_slave_configure(scsi_dev, dev->sata_dev.ap);
		return 0;
	}

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938 939 940 941 942 943 944 945
	sas_ha = dev->port->ha;

	sas_read_port_mode_page(scsi_dev);

	if (scsi_dev->tagged_supported) {
		scsi_set_tag_type(scsi_dev, MSG_SIMPLE_TAG);
		scsi_activate_tcq(scsi_dev, SAS_DEF_QD);
	} else {
H
Hannes Reinecke 已提交
946
		SAS_DPRINTK("device %llx, LUN %llx doesn't support "
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947 948 949 950 951 952 953
			    "TCQ\n", SAS_ADDR(dev->sas_addr),
			    scsi_dev->lun);
		scsi_dev->tagged_supported = 0;
		scsi_set_tag_type(scsi_dev, 0);
		scsi_deactivate_tcq(scsi_dev, 1);
	}

954 955
	scsi_dev->allow_restart = 1;

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956 957 958
	return 0;
}

D
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959
int sas_change_queue_depth(struct scsi_device *sdev, int depth, int reason)
J
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960
{
D
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961
	struct domain_device *dev = sdev_to_domain_dev(sdev);
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962

963
	if (dev_is_sata(dev))
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964 965 966 967 968 969 970 971 972 973 974 975 976 977
		return __ata_change_queue_depth(dev->sata_dev.ap, sdev, depth,
						reason);

	switch (reason) {
	case SCSI_QDEPTH_DEFAULT:
	case SCSI_QDEPTH_RAMP_UP:
		if (!sdev->tagged_supported)
			depth = 1;
		scsi_adjust_queue_depth(sdev, scsi_get_tag_type(sdev), depth);
		break;
	case SCSI_QDEPTH_QFULL:
		scsi_track_queue_full(sdev, depth);
		break;
	default:
978
		return -EOPNOTSUPP;
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979 980
	}

D
Dan Williams 已提交
981
	return depth;
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982 983 984 985
}

int sas_change_queue_type(struct scsi_device *scsi_dev, int qt)
{
986 987 988 989 990
	struct domain_device *dev = sdev_to_domain_dev(scsi_dev);

	if (dev_is_sata(dev))
		return -EINVAL;

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991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024
	if (!scsi_dev->tagged_supported)
		return 0;

	scsi_deactivate_tcq(scsi_dev, 1);

	scsi_set_tag_type(scsi_dev, qt);
	scsi_activate_tcq(scsi_dev, scsi_dev->queue_depth);

	return qt;
}

int sas_bios_param(struct scsi_device *scsi_dev,
			  struct block_device *bdev,
			  sector_t capacity, int *hsc)
{
	hsc[0] = 255;
	hsc[1] = 63;
	sector_div(capacity, 255*63);
	hsc[2] = capacity;

	return 0;
}

/* ---------- Task Collector Thread implementation ---------- */

static void sas_queue(struct sas_ha_struct *sas_ha)
{
	struct scsi_core *core = &sas_ha->core;
	unsigned long flags;
	LIST_HEAD(q);
	int can_queue;
	int res;
	struct sas_internal *i = to_sas_internal(core->shost->transportt);

1025
	mutex_lock(&core->task_queue_flush);
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1026
	spin_lock_irqsave(&core->task_queue_lock, flags);
1027
	while (!kthread_should_stop() &&
1028 1029
	       !list_empty(&core->task_queue) &&
	       !test_bit(SAS_HA_FROZEN, &sas_ha->state)) {
J
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1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064

		can_queue = sas_ha->lldd_queue_size - core->task_queue_size;
		if (can_queue >= 0) {
			can_queue = core->task_queue_size;
			list_splice_init(&core->task_queue, &q);
		} else {
			struct list_head *a, *n;

			can_queue = sas_ha->lldd_queue_size;
			list_for_each_safe(a, n, &core->task_queue) {
				list_move_tail(a, &q);
				if (--can_queue == 0)
					break;
			}
			can_queue = sas_ha->lldd_queue_size;
		}
		core->task_queue_size -= can_queue;
		spin_unlock_irqrestore(&core->task_queue_lock, flags);
		{
			struct sas_task *task = list_entry(q.next,
							   struct sas_task,
							   list);
			list_del_init(&q);
			res = i->dft->lldd_execute_task(task, can_queue,
							GFP_KERNEL);
			if (unlikely(res))
				__list_add(&q, task->list.prev, &task->list);
		}
		spin_lock_irqsave(&core->task_queue_lock, flags);
		if (res) {
			list_splice_init(&q, &core->task_queue); /*at head*/
			core->task_queue_size += can_queue;
		}
	}
	spin_unlock_irqrestore(&core->task_queue_lock, flags);
1065
	mutex_unlock(&core->task_queue_flush);
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1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076
}

/**
 * sas_queue_thread -- The Task Collector thread
 * @_sas_ha: pointer to struct sas_ha
 */
static int sas_queue_thread(void *_sas_ha)
{
	struct sas_ha_struct *sas_ha = _sas_ha;

	while (1) {
1077 1078
		set_current_state(TASK_INTERRUPTIBLE);
		schedule();
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1079
		sas_queue(sas_ha);
1080
		if (kthread_should_stop())
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1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
			break;
	}

	return 0;
}

int sas_init_queue(struct sas_ha_struct *sas_ha)
{
	struct scsi_core *core = &sas_ha->core;

	spin_lock_init(&core->task_queue_lock);
1092
	mutex_init(&core->task_queue_flush);
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1093 1094 1095
	core->task_queue_size = 0;
	INIT_LIST_HEAD(&core->task_queue);

1096 1097 1098 1099 1100
	core->queue_thread = kthread_run(sas_queue_thread, sas_ha,
					 "sas_queue_%d", core->shost->host_no);
	if (IS_ERR(core->queue_thread))
		return PTR_ERR(core->queue_thread);
	return 0;
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}

void sas_shutdown_queue(struct sas_ha_struct *sas_ha)
{
	unsigned long flags;
	struct scsi_core *core = &sas_ha->core;
	struct sas_task *task, *n;

1109
	kthread_stop(core->queue_thread);
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	if (!list_empty(&core->task_queue))
		SAS_DPRINTK("HA: %llx: scsi core task queue is NOT empty!?\n",
			    SAS_ADDR(sas_ha->sas_addr));

	spin_lock_irqsave(&core->task_queue_lock, flags);
	list_for_each_entry_safe(task, n, &core->task_queue, list) {
		struct scsi_cmnd *cmd = task->uldd_task;

		list_del_init(&task->list);

		ASSIGN_SAS_TASK(cmd, NULL);
		sas_free_task(task);
		cmd->result = DID_ABORT << 16;
		cmd->scsi_done(cmd);
	}
	spin_unlock_irqrestore(&core->task_queue_lock, flags);
}

1129 1130 1131 1132 1133
/*
 * Tell an upper layer that it needs to initiate an abort for a given task.
 * This should only ever be called by an LLDD.
 */
void sas_task_abort(struct sas_task *task)
1134
{
1135
	struct scsi_cmnd *sc = task->uldd_task;
1136

1137 1138
	/* Escape for libsas internal commands */
	if (!sc) {
1139 1140 1141 1142 1143
		struct sas_task_slow *slow = task->slow_task;

		if (!slow)
			return;
		if (!del_timer(&slow->timer))
1144
			return;
1145
		slow->timer.function(slow->timer.data);
1146 1147
		return;
	}
1148

1149 1150
	if (dev_is_sata(task->dev)) {
		sas_ata_task_abort(task);
1151 1152 1153
	} else {
		struct request_queue *q = sc->device->request_queue;
		unsigned long flags;
1154

1155 1156 1157 1158
		spin_lock_irqsave(q->queue_lock, flags);
		blk_abort_request(sc->request);
		spin_unlock_irqrestore(q->queue_lock, flags);
	}
1159 1160
}

1161 1162
void sas_target_destroy(struct scsi_target *starget)
{
1163
	struct domain_device *found_dev = starget->hostdata;
1164 1165 1166 1167

	if (!found_dev)
		return;

1168 1169
	starget->hostdata = NULL;
	sas_put_device(found_dev);
1170 1171
}

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static void sas_parse_addr(u8 *sas_addr, const char *p)
{
	int i;
	for (i = 0; i < SAS_ADDR_SIZE; i++) {
		u8 h, l;
		if (!*p)
			break;
		h = isdigit(*p) ? *p-'0' : toupper(*p)-'A'+10;
		p++;
		l = isdigit(*p) ? *p-'0' : toupper(*p)-'A'+10;
		p++;
		sas_addr[i] = (h<<4) | l;
	}
}

#define SAS_STRING_ADDR_SIZE	16

int sas_request_addr(struct Scsi_Host *shost, u8 *addr)
{
	int res;
	const struct firmware *fw;

	res = request_firmware(&fw, "sas_addr", &shost->shost_gendev);
	if (res)
		return res;

	if (fw->size < SAS_STRING_ADDR_SIZE) {
		res = -ENODEV;
		goto out;
	}

	sas_parse_addr(addr, fw->data);

out:
	release_firmware(fw);
	return res;
}
EXPORT_SYMBOL_GPL(sas_request_addr);

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EXPORT_SYMBOL_GPL(sas_queuecommand);
EXPORT_SYMBOL_GPL(sas_target_alloc);
EXPORT_SYMBOL_GPL(sas_slave_configure);
EXPORT_SYMBOL_GPL(sas_change_queue_depth);
EXPORT_SYMBOL_GPL(sas_change_queue_type);
EXPORT_SYMBOL_GPL(sas_bios_param);
1217
EXPORT_SYMBOL_GPL(sas_task_abort);
1218
EXPORT_SYMBOL_GPL(sas_phy_reset);
1219
EXPORT_SYMBOL_GPL(sas_eh_device_reset_handler);
1220
EXPORT_SYMBOL_GPL(sas_eh_bus_reset_handler);
1221 1222
EXPORT_SYMBOL_GPL(sas_target_destroy);
EXPORT_SYMBOL_GPL(sas_ioctl);