remote_device.c 52.3 KB
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/*
 * This file is provided under a dual BSD/GPLv2 license.  When using or
 * redistributing this file, you may do so under either license.
 *
 * GPL LICENSE SUMMARY
 *
 * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved.
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of version 2 of the GNU General Public License as
 * published by the Free Software Foundation.
 *
 * 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., 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
 * The full GNU General Public License is included in this distribution
 * in the file called LICENSE.GPL.
 *
 * BSD LICENSE
 *
 * Copyright(c) 2008 - 2011 Intel Corporation. All rights reserved.
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 *
 *   * Redistributions of source code must retain the above copyright
 *     notice, this list of conditions and the following disclaimer.
 *   * Redistributions in binary form must reproduce the above copyright
 *     notice, this list of conditions and the following disclaimer in
 *     the documentation and/or other materials provided with the
 *     distribution.
 *   * Neither the name of Intel Corporation nor the names of its
 *     contributors may be used to endorse or promote products derived
 *     from this software without specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 */
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#include <scsi/sas.h>
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#include "isci.h"
#include "port.h"
#include "remote_device.h"
#include "request.h"
#include "remote_node_context.h"
#include "scu_event_codes.h"
#include "task.h"

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/**
 * isci_remote_device_change_state() - This function gets the status of the
 *    remote_device object.
 * @isci_device: This parameter points to the isci_remote_device object
 *
 * status of the object as a isci_status enum.
 */
void isci_remote_device_change_state(
	struct isci_remote_device *isci_device,
	enum isci_status status)
{
	unsigned long flags;

	spin_lock_irqsave(&isci_device->state_lock, flags);
	isci_device->status = status;
	spin_unlock_irqrestore(&isci_device->state_lock, flags);
}

/**
 * isci_remote_device_not_ready() - This function is called by the scic when
 *    the remote device is not ready. We mark the isci device as ready (not
 *    "ready_for_io") and signal the waiting proccess.
 * @isci_host: This parameter specifies the isci host object.
 * @isci_device: This parameter specifies the remote device
 *
 */
static void isci_remote_device_not_ready(struct isci_host *ihost,
				  struct isci_remote_device *idev, u32 reason)
{
	dev_dbg(&ihost->pdev->dev,
		"%s: isci_device = %p\n", __func__, idev);

	if (reason == SCIC_REMOTE_DEVICE_NOT_READY_STOP_REQUESTED)
		isci_remote_device_change_state(idev, isci_stopping);
	else
		/* device ready is actually a "not ready for io" state. */
		isci_remote_device_change_state(idev, isci_ready);
}

/**
 * isci_remote_device_ready() - This function is called by the scic when the
 *    remote device is ready. We mark the isci device as ready and signal the
 *    waiting proccess.
 * @ihost: our valid isci_host
 * @idev: remote device
 *
 */
static void isci_remote_device_ready(struct isci_host *ihost, struct isci_remote_device *idev)
{
	dev_dbg(&ihost->pdev->dev,
		"%s: idev = %p\n", __func__, idev);

	isci_remote_device_change_state(idev, isci_ready_for_io);
	if (test_and_clear_bit(IDEV_START_PENDING, &idev->flags))
		wake_up(&ihost->eventq);
}

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/* called once the remote node context is ready to be freed.
 * The remote device can now report that its stop operation is complete. none
 */
static void rnc_destruct_done(void *_dev)
{
	struct scic_sds_remote_device *sci_dev = _dev;
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	BUG_ON(sci_dev->started_request_count != 0);
	sci_base_state_machine_change_state(&sci_dev->state_machine,
					    SCI_BASE_REMOTE_DEVICE_STATE_STOPPED);
}
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static enum sci_status scic_sds_remote_device_terminate_requests(struct scic_sds_remote_device *sci_dev)
{
	struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;
	u32 i, request_count = sci_dev->started_request_count;
	enum sci_status status  = SCI_SUCCESS;

	for (i = 0; i < SCI_MAX_IO_REQUESTS && i < request_count; i++) {
		struct scic_sds_request *sci_req;
		enum sci_status s;

		sci_req = scic->io_request_table[i];
		if (!sci_req || sci_req->target_device != sci_dev)
			continue;
		s = scic_controller_terminate_request(scic, sci_dev, sci_req);
		if (s != SCI_SUCCESS)
			status = s;
	}

	return status;
}

enum sci_status scic_remote_device_stop(struct scic_sds_remote_device *sci_dev,
					u32 timeout)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
		return SCI_SUCCESS;
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
		/* device not started so there had better be no requests */
		BUG_ON(sci_dev->started_request_count != 0);
		scic_sds_remote_node_context_destruct(&sci_dev->rnc,
						      rnc_destruct_done, sci_dev);
		/* Transition to the stopping state and wait for the
		 * remote node to complete being posted and invalidated.
		 */
		sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_STOPPING);
		return SCI_SUCCESS;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
		sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_STOPPING);
		if (sci_dev->started_request_count == 0) {
			scic_sds_remote_node_context_destruct(&sci_dev->rnc,
							      rnc_destruct_done, sci_dev);
			return SCI_SUCCESS;
		} else
			return scic_sds_remote_device_terminate_requests(sci_dev);
		break;
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
		/* All requests should have been terminated, but if there is an
		 * attempt to stop a device already in the stopping state, then
		 * try again to terminate.
		 */
		return scic_sds_remote_device_terminate_requests(sci_dev);
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING:
		sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_STOPPING);
		return SCI_SUCCESS;
	}
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}

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enum sci_status scic_remote_device_reset(struct scic_sds_remote_device *sci_dev)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
		sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_RESETTING);
		return SCI_SUCCESS;
	}
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}

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enum sci_status scic_remote_device_reset_complete(struct scic_sds_remote_device *sci_dev)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;

	if (state != SCI_BASE_REMOTE_DEVICE_STATE_RESETTING) {
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	}
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	sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_READY);
	return SCI_SUCCESS;
}
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enum sci_status scic_sds_remote_device_suspend(struct scic_sds_remote_device *sci_dev,
					       u32 suspend_type)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;

	if (state != SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD) {
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	}

	return scic_sds_remote_node_context_suspend(&sci_dev->rnc,
						    suspend_type, NULL, NULL);
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}

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enum sci_status scic_sds_remote_device_frame_handler(struct scic_sds_remote_device *sci_dev,
						     u32 frame_index)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;
	enum sci_status status;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		/* Return the frame back to the controller */
		scic_sds_controller_release_frame(scic, frame_index);
		return SCI_FAILURE_INVALID_STATE;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING: {
		struct scic_sds_request *sci_req;
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		struct ssp_frame_hdr hdr;
		void *frame_header;
		ssize_t word_cnt;
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		status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control,
								       frame_index,
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								       &frame_header);
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		if (status != SCI_SUCCESS)
			return status;

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		word_cnt = sizeof(hdr) / sizeof(u32);
		sci_swab32_cpy(&hdr, frame_header, word_cnt);

		sci_req = scic_request_by_tag(scic, be16_to_cpu(hdr.tag));
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		if (sci_req && sci_req->target_device == sci_dev) {
			/* The IO request is now in charge of releasing the frame */
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			status = scic_sds_io_request_frame_handler(sci_req, frame_index);
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		} else {
			/* We could not map this tag to a valid IO
			 * request Just toss the frame and continue
			 */
			scic_sds_controller_release_frame(scic, frame_index);
		}
		break;
	}
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ: {
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		struct dev_to_host_fis *hdr;
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		status = scic_sds_unsolicited_frame_control_get_header(&scic->uf_control,
								       frame_index,
								       (void **)&hdr);
		if (status != SCI_SUCCESS)
			return status;

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		if (hdr->fis_type == FIS_SETDEVBITS &&
		    (hdr->status & ATA_ERR)) {
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			sci_dev->not_ready_reason = SCIC_REMOTE_DEVICE_NOT_READY_SATA_SDB_ERROR_FIS_RECEIVED;

			/* TODO Check sactive and complete associated IO if any. */
			sci_base_state_machine_change_state(sm, SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR);
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		} else if (hdr->fis_type == FIS_REGD2H &&
			   (hdr->status & ATA_ERR)) {
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			/*
			 * Some devices return D2H FIS when an NCQ error is detected.
			 * Treat this like an SDB error FIS ready reason.
			 */
			sci_dev->not_ready_reason = SCIC_REMOTE_DEVICE_NOT_READY_SATA_SDB_ERROR_FIS_RECEIVED;
			sci_base_state_machine_change_state(&sci_dev->state_machine,
							    SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR);
		} else
			status = SCI_FAILURE;

		scic_sds_controller_release_frame(scic, frame_index);
		break;
	}
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
		/* The device does not process any UF received from the hardware while
		 * in this state.  All unsolicited frames are forwarded to the io request
		 * object.
		 */
		status = scic_sds_io_request_frame_handler(sci_dev->working_request, frame_index);
		break;
	}

	return status;
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}

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static bool is_remote_device_ready(struct scic_sds_remote_device *sci_dev)
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{
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	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
		return true;
	default:
		return false;
	}
}

enum sci_status scic_sds_remote_device_event_handler(struct scic_sds_remote_device *sci_dev,
						     u32 event_code)
{
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	enum sci_status status;

	switch (scu_get_event_type(event_code)) {
	case SCU_EVENT_TYPE_RNC_OPS_MISC:
	case SCU_EVENT_TYPE_RNC_SUSPEND_TX:
	case SCU_EVENT_TYPE_RNC_SUSPEND_TX_RX:
		status = scic_sds_remote_node_context_event_handler(&sci_dev->rnc, event_code);
		break;
	case SCU_EVENT_TYPE_PTX_SCHEDULE_EVENT:
		if (scu_get_event_code(event_code) == SCU_EVENT_IT_NEXUS_TIMEOUT) {
			status = SCI_SUCCESS;

			/* Suspend the associated RNC */
			scic_sds_remote_node_context_suspend(&sci_dev->rnc,
							      SCI_SOFTWARE_SUSPENSION,
							      NULL, NULL);

			dev_dbg(scirdev_to_dev(sci_dev),
				"%s: device: %p event code: %x: %s\n",
				__func__, sci_dev, event_code,
				is_remote_device_ready(sci_dev)
				? "I_T_Nexus_Timeout event"
				: "I_T_Nexus_Timeout event in wrong state");

			break;
		}
	/* Else, fall through and treat as unhandled... */
	default:
		dev_dbg(scirdev_to_dev(sci_dev),
			"%s: device: %p event code: %x: %s\n",
			__func__, sci_dev, event_code,
			is_remote_device_ready(sci_dev)
			? "unexpected event"
			: "unexpected event in wrong state");
		status = SCI_FAILURE_INVALID_STATE;
		break;
	}

	if (status != SCI_SUCCESS)
		return status;

	if (state == SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE) {

		/* We pick up suspension events to handle specifically to this
		 * state. We resume the RNC right away.
		 */
		if (scu_get_event_type(event_code) == SCU_EVENT_TYPE_RNC_SUSPEND_TX ||
		    scu_get_event_type(event_code) == SCU_EVENT_TYPE_RNC_SUSPEND_TX_RX)
			status = scic_sds_remote_node_context_resume(&sci_dev->rnc, NULL, NULL);
	}

	return status;
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}

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static void scic_sds_remote_device_start_request(struct scic_sds_remote_device *sci_dev,
						 struct scic_sds_request *sci_req,
						 enum sci_status status)
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{
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	struct scic_sds_port *sci_port = sci_dev->owning_port;

	/* cleanup requests that failed after starting on the port */
	if (status != SCI_SUCCESS)
		scic_sds_port_complete_io(sci_port, sci_dev, sci_req);
	else
		scic_sds_remote_device_increment_request_count(sci_dev);
}

enum sci_status scic_sds_remote_device_start_io(struct scic_sds_controller *scic,
						struct scic_sds_remote_device *sci_dev,
						struct scic_sds_request *sci_req)
{
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	struct scic_sds_port *sci_port = sci_dev->owning_port;
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	struct isci_request *ireq = sci_req_to_ireq(sci_req);
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	enum sci_status status;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
		/* attempt to start an io request for this device object. The remote
		 * device object will issue the start request for the io and if
		 * successful it will start the request for the port object then
		 * increment its own request count.
		 */
		status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			return status;

		status = scic_sds_remote_node_context_start_io(&sci_dev->rnc, sci_req);
		if (status != SCI_SUCCESS)
			break;

		status = scic_sds_request_start(sci_req);
		break;
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE: {
		/* handle the start io operation for a sata device that is in
		 * the command idle state. - Evalute the type of IO request to
		 * be started - If its an NCQ request change to NCQ substate -
		 * If its any other command change to the CMD substate
		 *
		 * If this is a softreset we may want to have a different
		 * substate.
		 */
		enum scic_sds_remote_device_states new_state;
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		struct sas_task *task = isci_request_access_task(ireq);
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		status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			return status;

		status = scic_sds_remote_node_context_start_io(&sci_dev->rnc, sci_req);
		if (status != SCI_SUCCESS)
			break;

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		status = scic_sds_request_start(sci_req);
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		if (status != SCI_SUCCESS)
			break;

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		if (task->ata_task.use_ncq)
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			new_state = SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ;
		else {
			sci_dev->working_request = sci_req;
			new_state = SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD;
		}
		sci_base_state_machine_change_state(sm, new_state);
		break;
	}
530 531 532 533
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ: {
		struct sas_task *task = isci_request_access_task(ireq);

		if (task->ata_task.use_ncq) {
534 535 536 537 538 539 540 541
			status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
			if (status != SCI_SUCCESS)
				return status;

			status = scic_sds_remote_node_context_start_io(&sci_dev->rnc, sci_req);
			if (status != SCI_SUCCESS)
				break;

542
			status = scic_sds_request_start(sci_req);
543 544 545
		} else
			return SCI_FAILURE_INVALID_STATE;
		break;
546
	}
547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
		return SCI_FAILURE_REMOTE_DEVICE_RESET_REQUIRED;
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
		status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			return status;

		status = scic_sds_remote_node_context_start_io(&sci_dev->rnc, sci_req);
		if (status != SCI_SUCCESS)
			break;

		status = scic_sds_request_start(sci_req);
		if (status != SCI_SUCCESS)
			break;

		sci_dev->working_request = sci_req;
		sci_base_state_machine_change_state(&sci_dev->state_machine,
						    SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD);
		break;
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
		/* device is already handling a command it can not accept new commands
		 * until this one is complete.
		 */
		return SCI_FAILURE_INVALID_STATE;
	}

	scic_sds_remote_device_start_request(sci_dev, sci_req, status);
	return status;
576 577
}

578 579 580
static enum sci_status common_complete_io(struct scic_sds_port *sci_port,
					  struct scic_sds_remote_device *sci_dev,
					  struct scic_sds_request *sci_req)
581
{
582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663
	enum sci_status status;

	status = scic_sds_request_complete(sci_req);
	if (status != SCI_SUCCESS)
		return status;

	status = scic_sds_port_complete_io(sci_port, sci_dev, sci_req);
	if (status != SCI_SUCCESS)
		return status;

	scic_sds_remote_device_decrement_request_count(sci_dev);
	return status;
}

enum sci_status scic_sds_remote_device_complete_io(struct scic_sds_controller *scic,
						   struct scic_sds_remote_device *sci_dev,
						   struct scic_sds_request *sci_req)
{
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	struct scic_sds_port *sci_port = sci_dev->owning_port;
	enum sci_status status;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING:
		status = common_complete_io(sci_port, sci_dev, sci_req);
		break;
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
		status = common_complete_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			break;

		if (sci_req->sci_status == SCI_FAILURE_REMOTE_DEVICE_RESET_REQUIRED) {
			/* This request causes hardware error, device needs to be Lun Reset.
			 * So here we force the state machine to IDLE state so the rest IOs
			 * can reach RNC state handler, these IOs will be completed by RNC with
			 * status of "DEVICE_RESET_REQUIRED", instead of "INVALID STATE".
			 */
			sci_base_state_machine_change_state(sm, SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET);
		} else if (scic_sds_remote_device_get_request_count(sci_dev) == 0)
			sci_base_state_machine_change_state(sm, SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE);
		break;
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
		status = common_complete_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			break;
		sci_base_state_machine_change_state(sm, SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE);
		break;
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
		status = common_complete_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			break;

		if (scic_sds_remote_device_get_request_count(sci_dev) == 0)
			scic_sds_remote_node_context_destruct(&sci_dev->rnc,
							      rnc_destruct_done,
							      sci_dev);
		break;
	}

	if (status != SCI_SUCCESS)
		dev_err(scirdev_to_dev(sci_dev),
			"%s: Port:0x%p Device:0x%p Request:0x%p Status:0x%x "
			"could not complete\n", __func__, sci_port,
			sci_dev, sci_req, status);

	return status;
664 665
}

666
static void scic_sds_remote_device_continue_request(void *dev)
667
{
668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710
	struct scic_sds_remote_device *sci_dev = dev;

	/* we need to check if this request is still valid to continue. */
	if (sci_dev->working_request)
		scic_controller_continue_io(sci_dev->working_request);
}

enum sci_status scic_sds_remote_device_start_task(struct scic_sds_controller *scic,
						  struct scic_sds_remote_device *sci_dev,
						  struct scic_sds_request *sci_req)
{
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	struct scic_sds_port *sci_port = sci_dev->owning_port;
	enum sci_status status;

	switch (state) {
	case SCI_BASE_REMOTE_DEVICE_STATE_INITIAL:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPED:
	case SCI_BASE_REMOTE_DEVICE_STATE_STARTING:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCI_BASE_REMOTE_DEVICE_STATE_STOPPING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FAILED:
	case SCI_BASE_REMOTE_DEVICE_STATE_RESETTING:
	case SCI_BASE_REMOTE_DEVICE_STATE_FINAL:
	default:
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR:
	case SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET:
		status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			return status;

		status = scic_sds_remote_node_context_start_task(&sci_dev->rnc, sci_req);
		if (status != SCI_SUCCESS)
			goto out;

711
		status = scic_sds_request_start(sci_req);
712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756
		if (status != SCI_SUCCESS)
			goto out;

		/* Note: If the remote device state is not IDLE this will
		 * replace the request that probably resulted in the task
		 * management request.
		 */
		sci_dev->working_request = sci_req;
		sci_base_state_machine_change_state(sm, SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD);

		/* The remote node context must cleanup the TCi to NCQ mapping
		 * table.  The only way to do this correctly is to either write
		 * to the TLCR register or to invalidate and repost the RNC. In
		 * either case the remote node context state machine will take
		 * the correct action when the remote node context is suspended
		 * and later resumed.
		 */
		scic_sds_remote_node_context_suspend(&sci_dev->rnc,
				SCI_SOFTWARE_SUSPENSION, NULL, NULL);
		scic_sds_remote_node_context_resume(&sci_dev->rnc,
				scic_sds_remote_device_continue_request,
						    sci_dev);

	out:
		scic_sds_remote_device_start_request(sci_dev, sci_req, status);
		/* We need to let the controller start request handler know that
		 * it can't post TC yet. We will provide a callback function to
		 * post TC when RNC gets resumed.
		 */
		return SCI_FAILURE_RESET_DEVICE_PARTIAL_SUCCESS;
	case SCI_BASE_REMOTE_DEVICE_STATE_READY:
		status = scic_sds_port_start_io(sci_port, sci_dev, sci_req);
		if (status != SCI_SUCCESS)
			return status;

		status = scic_sds_remote_node_context_start_task(&sci_dev->rnc, sci_req);
		if (status != SCI_SUCCESS)
			break;

		status = scic_sds_request_start(sci_req);
		break;
	}
	scic_sds_remote_device_start_request(sci_dev, sci_req, status);

	return status;
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}

/**
 *
 * @sci_dev:
 * @request:
 *
 * This method takes the request and bulids an appropriate SCU context for the
 * request and then requests the controller to post the request. none
 */
void scic_sds_remote_device_post_request(
	struct scic_sds_remote_device *sci_dev,
	u32 request)
{
	u32 context;

	context = scic_sds_remote_device_build_command_context(sci_dev, request);

	scic_sds_controller_post_request(
		scic_sds_remote_device_get_controller(sci_dev),
		context
		);
}

781
/* called once the remote node context has transisitioned to a
782
 * ready state.  This is the indication that the remote device object can also
783
 * transition to ready.
784
 */
785
static void remote_device_resume_done(void *_dev)
786 787 788
{
	struct scic_sds_remote_device *sci_dev = _dev;

789 790
	if (is_remote_device_ready(sci_dev))
		return;
791

792 793 794
	/* go 'ready' if we are not already in a ready state */
	sci_base_state_machine_change_state(&sci_dev->state_machine,
					    SCI_BASE_REMOTE_DEVICE_STATE_READY);
795 796
}

797 798 799 800 801 802 803 804 805 806
static void scic_sds_stp_remote_device_ready_idle_substate_resume_complete_handler(void *_dev)
{
	struct scic_sds_remote_device *sci_dev = _dev;
	struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);
	struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;

	/* For NCQ operation we do not issue a isci_remote_device_not_ready().
	 * As a result, avoid sending the ready notification.
	 */
	if (sci_dev->state_machine.previous_state_id != SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ)
807
		isci_remote_device_ready(scic_to_ihost(scic), idev);
808 809 810
}

static void scic_sds_remote_device_initial_state_enter(void *object)
811
{
812
	struct scic_sds_remote_device *sci_dev = object;
813

814 815 816
	/* Initial state is a transitional state to the stopped state */
	sci_base_state_machine_change_state(&sci_dev->state_machine,
					    SCI_BASE_REMOTE_DEVICE_STATE_STOPPED);
817
}
818

819 820 821 822 823 824 825 826 827 828 829 830 831 832 833
/**
 * scic_remote_device_destruct() - free remote node context and destruct
 * @remote_device: This parameter specifies the remote device to be destructed.
 *
 * Remote device objects are a limited resource.  As such, they must be
 * protected.  Thus calls to construct and destruct are mutually exclusive and
 * non-reentrant. The return value shall indicate if the device was
 * successfully destructed or if some failure occurred. enum sci_status This value
 * is returned if the device is successfully destructed.
 * SCI_FAILURE_INVALID_REMOTE_DEVICE This value is returned if the supplied
 * device isn't valid (e.g. it's already been destoryed, the handle isn't
 * valid, etc.).
 */
static enum sci_status scic_remote_device_destruct(struct scic_sds_remote_device *sci_dev)
{
834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	struct scic_sds_controller *scic;

	if (state != SCI_BASE_REMOTE_DEVICE_STATE_STOPPED) {
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	}

	scic = sci_dev->owning_port->owning_controller;
	scic_sds_controller_free_remote_node_context(scic, sci_dev,
						     sci_dev->rnc.remote_node_index);
	sci_dev->rnc.remote_node_index = SCIC_SDS_REMOTE_NODE_CONTEXT_INVALID_INDEX;
	sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_FINAL);

	return SCI_SUCCESS;
851
}
852 853 854

/**
 * isci_remote_device_deconstruct() - This function frees an isci_remote_device.
D
Dan Williams 已提交
855 856
 * @ihost: This parameter specifies the isci host object.
 * @idev: This parameter specifies the remote device to be freed.
857 858
 *
 */
D
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859
static void isci_remote_device_deconstruct(struct isci_host *ihost, struct isci_remote_device *idev)
860
{
D
Dan Williams 已提交
861 862
	dev_dbg(&ihost->pdev->dev,
		"%s: isci_device = %p\n", __func__, idev);
863 864 865 866 867

	/* There should not be any outstanding io's. All paths to
	 * here should go through isci_remote_device_nuke_requests.
	 * If we hit this condition, we will need a way to complete
	 * io requests in process */
D
Dan Williams 已提交
868
	while (!list_empty(&idev->reqs_in_process)) {
869

D
Dan Williams 已提交
870
		dev_err(&ihost->pdev->dev,
871 872 873 874
			"%s: ** request list not empty! **\n", __func__);
		BUG();
	}

875
	scic_remote_device_destruct(&idev->sci);
D
Dan Williams 已提交
876 877 878 879 880 881 882
	idev->domain_dev->lldd_dev = NULL;
	idev->domain_dev = NULL;
	idev->isci_port = NULL;
	list_del_init(&idev->node);

	clear_bit(IDEV_START_PENDING, &idev->flags);
	clear_bit(IDEV_STOP_PENDING, &idev->flags);
D
Dan Williams 已提交
883
	clear_bit(IDEV_EH, &idev->flags);
D
Dan Williams 已提交
884
	wake_up(&ihost->eventq);
885 886
}

887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906
/**
 * isci_remote_device_stop_complete() - This function is called by the scic
 *    when the remote device stop has completed. We mark the isci device as not
 *    ready and remove the isci remote device.
 * @ihost: This parameter specifies the isci host object.
 * @idev: This parameter specifies the remote device.
 * @status: This parameter specifies status of the completion.
 *
 */
static void isci_remote_device_stop_complete(struct isci_host *ihost,
					     struct isci_remote_device *idev)
{
	dev_dbg(&ihost->pdev->dev, "%s: complete idev = %p\n", __func__, idev);

	isci_remote_device_change_state(idev, isci_stopped);

	/* after stop, we can tear down resources. */
	isci_remote_device_deconstruct(ihost, idev);
}

907
static void scic_sds_remote_device_stopped_state_enter(void *object)
908
{
909
	struct scic_sds_remote_device *sci_dev = object;
910 911
	struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;
	struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);
912 913 914 915 916 917 918
	u32 prev_state;

	/* If we are entering from the stopping state let the SCI User know that
	 * the stop operation has completed.
	 */
	prev_state = sci_dev->state_machine.previous_state_id;
	if (prev_state == SCI_BASE_REMOTE_DEVICE_STATE_STOPPING)
919
		isci_remote_device_stop_complete(scic_to_ihost(scic), idev);
920 921 922 923

	scic_sds_controller_remote_device_stopped(scic, sci_dev);
}

924
static void scic_sds_remote_device_starting_state_enter(void *object)
925
{
926
	struct scic_sds_remote_device *sci_dev = object;
927
	struct scic_sds_controller *scic = scic_sds_remote_device_get_controller(sci_dev);
928
	struct isci_host *ihost = scic_to_ihost(scic);
929
	struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);
930 931 932 933 934

	isci_remote_device_not_ready(ihost, idev,
				     SCIC_REMOTE_DEVICE_NOT_READY_START_REQUESTED);
}

935
static void scic_sds_remote_device_ready_state_enter(void *object)
936
{
937
	struct scic_sds_remote_device *sci_dev = object;
938
	struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;
939 940
	struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);
	struct domain_device *dev = idev->domain_dev;
941 942 943

	scic->remote_device_sequence[sci_dev->rnc.remote_node_index]++;

944 945 946 947 948 949 950
	if (dev->dev_type == SATA_DEV || (dev->tproto & SAS_PROTOCOL_SATA)) {
		sci_base_state_machine_change_state(&sci_dev->state_machine,
						    SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE);
	} else if (dev_is_expander(dev)) {
		sci_base_state_machine_change_state(&sci_dev->state_machine,
						    SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE);
	} else
951
		isci_remote_device_ready(scic_to_ihost(scic), idev);
952 953
}

954
static void scic_sds_remote_device_ready_state_exit(void *object)
955
{
956
	struct scic_sds_remote_device *sci_dev = object;
957 958 959 960
	struct domain_device *dev = sci_dev_to_domain(sci_dev);

	if (dev->dev_type == SAS_END_DEV) {
		struct scic_sds_controller *scic = sci_dev->owning_port->owning_controller;
961
		struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);
962

963
		isci_remote_device_not_ready(scic_to_ihost(scic), idev,
964 965 966 967
					     SCIC_REMOTE_DEVICE_NOT_READY_STOP_REQUESTED);
	}
}

968
static void scic_sds_remote_device_resetting_state_enter(void *object)
969
{
970
	struct scic_sds_remote_device *sci_dev = object;
971 972 973 974 975

	scic_sds_remote_node_context_suspend(
		&sci_dev->rnc, SCI_SOFTWARE_SUSPENSION, NULL, NULL);
}

976
static void scic_sds_remote_device_resetting_state_exit(void *object)
977
{
978
	struct scic_sds_remote_device *sci_dev = object;
979 980 981 982

	scic_sds_remote_node_context_resume(&sci_dev->rnc, NULL, NULL);
}

983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006
static void scic_sds_stp_remote_device_ready_idle_substate_enter(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;

	sci_dev->working_request = NULL;
	if (scic_sds_remote_node_context_is_ready(&sci_dev->rnc)) {
		/*
		 * Since the RNC is ready, it's alright to finish completion
		 * processing (e.g. signal the remote device is ready). */
		scic_sds_stp_remote_device_ready_idle_substate_resume_complete_handler(sci_dev);
	} else {
		scic_sds_remote_node_context_resume(&sci_dev->rnc,
			scic_sds_stp_remote_device_ready_idle_substate_resume_complete_handler,
			sci_dev);
	}
}

static void scic_sds_stp_remote_device_ready_cmd_substate_enter(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;
	struct scic_sds_controller *scic = scic_sds_remote_device_get_controller(sci_dev);

	BUG_ON(sci_dev->working_request == NULL);

1007
	isci_remote_device_not_ready(scic_to_ihost(scic), sci_dev_to_idev(sci_dev),
1008 1009 1010 1011 1012 1013 1014 1015 1016 1017
				     SCIC_REMOTE_DEVICE_NOT_READY_SATA_REQUEST_STARTED);
}

static void scic_sds_stp_remote_device_ready_ncq_error_substate_enter(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;
	struct scic_sds_controller *scic = scic_sds_remote_device_get_controller(sci_dev);
	struct isci_remote_device *idev = sci_dev_to_idev(sci_dev);

	if (sci_dev->not_ready_reason == SCIC_REMOTE_DEVICE_NOT_READY_SATA_SDB_ERROR_FIS_RECEIVED)
1018
		isci_remote_device_not_ready(scic_to_ihost(scic), idev,
1019 1020 1021 1022 1023 1024 1025 1026
					     sci_dev->not_ready_reason);
}

static void scic_sds_smp_remote_device_ready_idle_substate_enter(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;
	struct scic_sds_controller *scic = scic_sds_remote_device_get_controller(sci_dev);

1027
	isci_remote_device_ready(scic_to_ihost(scic), sci_dev_to_idev(sci_dev));
1028 1029 1030 1031 1032 1033 1034 1035 1036
}

static void scic_sds_smp_remote_device_ready_cmd_substate_enter(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;
	struct scic_sds_controller *scic = scic_sds_remote_device_get_controller(sci_dev);

	BUG_ON(sci_dev->working_request == NULL);

1037
	isci_remote_device_not_ready(scic_to_ihost(scic), sci_dev_to_idev(sci_dev),
1038 1039 1040 1041 1042 1043 1044 1045 1046
				     SCIC_REMOTE_DEVICE_NOT_READY_SMP_REQUEST_STARTED);
}

static void scic_sds_smp_remote_device_ready_cmd_substate_exit(void *object)
{
	struct scic_sds_remote_device *sci_dev = object;

	sci_dev->working_request = NULL;
}
1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061

static const struct sci_base_state scic_sds_remote_device_state_table[] = {
	[SCI_BASE_REMOTE_DEVICE_STATE_INITIAL] = {
		.enter_state = scic_sds_remote_device_initial_state_enter,
	},
	[SCI_BASE_REMOTE_DEVICE_STATE_STOPPED] = {
		.enter_state = scic_sds_remote_device_stopped_state_enter,
	},
	[SCI_BASE_REMOTE_DEVICE_STATE_STARTING] = {
		.enter_state = scic_sds_remote_device_starting_state_enter,
	},
	[SCI_BASE_REMOTE_DEVICE_STATE_READY] = {
		.enter_state = scic_sds_remote_device_ready_state_enter,
		.exit_state  = scic_sds_remote_device_ready_state_exit
	},
1062 1063 1064 1065 1066 1067
	[SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_IDLE] = {
		.enter_state = scic_sds_stp_remote_device_ready_idle_substate_enter,
	},
	[SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_CMD] = {
		.enter_state = scic_sds_stp_remote_device_ready_cmd_substate_enter,
	},
1068
	[SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ] = { },
1069 1070 1071
	[SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_NCQ_ERROR] = {
		.enter_state = scic_sds_stp_remote_device_ready_ncq_error_substate_enter,
	},
1072
	[SCIC_SDS_STP_REMOTE_DEVICE_READY_SUBSTATE_AWAIT_RESET] = { },
1073 1074 1075 1076 1077 1078 1079
	[SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_IDLE] = {
		.enter_state = scic_sds_smp_remote_device_ready_idle_substate_enter,
	},
	[SCIC_SDS_SMP_REMOTE_DEVICE_READY_SUBSTATE_CMD] = {
		.enter_state = scic_sds_smp_remote_device_ready_cmd_substate_enter,
		.exit_state  = scic_sds_smp_remote_device_ready_cmd_substate_exit,
	},
1080 1081
	[SCI_BASE_REMOTE_DEVICE_STATE_STOPPING] = { },
	[SCI_BASE_REMOTE_DEVICE_STATE_FAILED] = { },
1082 1083 1084 1085
	[SCI_BASE_REMOTE_DEVICE_STATE_RESETTING] = {
		.enter_state = scic_sds_remote_device_resetting_state_enter,
		.exit_state  = scic_sds_remote_device_resetting_state_exit
	},
1086
	[SCI_BASE_REMOTE_DEVICE_STATE_FINAL] = { },
1087 1088 1089
};

/**
1090
 * scic_remote_device_construct() - common construction
1091 1092 1093
 * @sci_port: SAS/SATA port through which this device is accessed.
 * @sci_dev: remote device to construct
 *
1094 1095 1096 1097
 * This routine just performs benign initialization and does not
 * allocate the remote_node_context which is left to
 * scic_remote_device_[de]a_construct().  scic_remote_device_destruct()
 * frees the remote_node_context(s) for the device.
1098 1099 1100 1101 1102 1103 1104 1105 1106
 */
static void scic_remote_device_construct(struct scic_sds_port *sci_port,
				  struct scic_sds_remote_device *sci_dev)
{
	sci_dev->owning_port = sci_port;
	sci_dev->started_request_count = 0;

	sci_base_state_machine_construct(
		&sci_dev->state_machine,
1107
		sci_dev,
1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120
		scic_sds_remote_device_state_table,
		SCI_BASE_REMOTE_DEVICE_STATE_INITIAL
		);

	sci_base_state_machine_start(
		&sci_dev->state_machine
		);

	scic_sds_remote_node_context_construct(&sci_dev->rnc,
					       SCIC_SDS_REMOTE_NODE_CONTEXT_INVALID_INDEX);
}

/**
1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132
 * scic_remote_device_da_construct() - construct direct attached device.
 *
 * The information (e.g. IAF, Signature FIS, etc.) necessary to build
 * the device is known to the SCI Core since it is contained in the
 * scic_phy object.  Remote node context(s) is/are a global resource
 * allocated by this routine, freed by scic_remote_device_destruct().
 *
 * Returns:
 * SCI_FAILURE_DEVICE_EXISTS - device has already been constructed.
 * SCI_FAILURE_UNSUPPORTED_PROTOCOL - e.g. sas device attached to
 * sata-only controller instance.
 * SCI_FAILURE_INSUFFICIENT_RESOURCES - remote node contexts exhausted.
1133
 */
1134 1135
static enum sci_status scic_remote_device_da_construct(struct scic_sds_port *sci_port,
						       struct scic_sds_remote_device *sci_dev)
1136 1137
{
	enum sci_status status;
1138
	struct domain_device *dev = sci_dev_to_domain(sci_dev);
1139

1140 1141
	scic_remote_device_construct(sci_port, sci_dev);

1142 1143 1144 1145 1146
	/*
	 * This information is request to determine how many remote node context
	 * entries will be needed to store the remote node.
	 */
	sci_dev->is_direct_attached = true;
1147 1148
	status = scic_sds_controller_allocate_remote_node_context(sci_port->owning_controller,
								  sci_dev,
1149
								  &sci_dev->rnc.remote_node_index);
1150

1151 1152
	if (status != SCI_SUCCESS)
		return status;
1153

1154 1155 1156 1157
	if (dev->dev_type == SAS_END_DEV || dev->dev_type == SATA_DEV ||
	    (dev->tproto & SAS_PROTOCOL_STP) || dev_is_expander(dev))
		/* pass */;
	else
1158
		return SCI_FAILURE_UNSUPPORTED_PROTOCOL;
1159

1160
	sci_dev->connection_rate = scic_sds_port_get_max_allowed_speed(sci_port);
1161

1162 1163
	/* / @todo Should I assign the port width by reading all of the phys on the port? */
	sci_dev->device_port_width = 1;
1164

1165
	return SCI_SUCCESS;
1166 1167 1168
}

/**
1169 1170 1171 1172 1173 1174 1175 1176 1177 1178
 * scic_remote_device_ea_construct() - construct expander attached device
 *
 * Remote node context(s) is/are a global resource allocated by this
 * routine, freed by scic_remote_device_destruct().
 *
 * Returns:
 * SCI_FAILURE_DEVICE_EXISTS - device has already been constructed.
 * SCI_FAILURE_UNSUPPORTED_PROTOCOL - e.g. sas device attached to
 * sata-only controller instance.
 * SCI_FAILURE_INSUFFICIENT_RESOURCES - remote node contexts exhausted.
1179
 */
1180
static enum sci_status scic_remote_device_ea_construct(struct scic_sds_port *sci_port,
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1181
						       struct scic_sds_remote_device *sci_dev)
1182
{
1183
	struct domain_device *dev = sci_dev_to_domain(sci_dev);
1184 1185
	enum sci_status status;

1186
	scic_remote_device_construct(sci_port, sci_dev);
1187

1188 1189 1190
	status = scic_sds_controller_allocate_remote_node_context(sci_port->owning_controller,
								  sci_dev,
								  &sci_dev->rnc.remote_node_index);
1191 1192
	if (status != SCI_SUCCESS)
		return status;
1193

1194 1195 1196 1197 1198
	if (dev->dev_type == SAS_END_DEV || dev->dev_type == SATA_DEV ||
	    (dev->tproto & SAS_PROTOCOL_STP) || dev_is_expander(dev))
		/* pass */;
	else
		return SCI_FAILURE_UNSUPPORTED_PROTOCOL;
1199

1200 1201 1202 1203 1204 1205 1206 1207
	/*
	 * For SAS-2 the physical link rate is actually a logical link
	 * rate that incorporates multiplexing.  The SCU doesn't
	 * incorporate multiplexing and for the purposes of the
	 * connection the logical link rate is that same as the
	 * physical.  Furthermore, the SAS-2 and SAS-1.1 fields overlay
	 * one another, so this code works for both situations. */
	sci_dev->connection_rate = min_t(u16, scic_sds_port_get_max_allowed_speed(sci_port),
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1208
					 dev->linkrate);
1209

1210 1211
	/* / @todo Should I assign the port width by reading all of the phys on the port? */
	sci_dev->device_port_width = 1;
1212

1213
	return SCI_SUCCESS;
1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229
}

/**
 * scic_remote_device_start() - This method will start the supplied remote
 *    device.  This method enables normal IO requests to flow through to the
 *    remote device.
 * @remote_device: This parameter specifies the device to be started.
 * @timeout: This parameter specifies the number of milliseconds in which the
 *    start operation should complete.
 *
 * An indication of whether the device was successfully started. SCI_SUCCESS
 * This value is returned if the device was successfully started.
 * SCI_FAILURE_INVALID_PHY This value is returned if the user attempts to start
 * the device when there have been no phys added to it.
 */
static enum sci_status scic_remote_device_start(struct scic_sds_remote_device *sci_dev,
1230
						u32 timeout)
1231
{
1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250
	struct sci_base_state_machine *sm = &sci_dev->state_machine;
	enum scic_sds_remote_device_states state = sm->current_state_id;
	enum sci_status status;

	if (state != SCI_BASE_REMOTE_DEVICE_STATE_STOPPED) {
		dev_warn(scirdev_to_dev(sci_dev), "%s: in wrong state: %d\n",
			 __func__, state);
		return SCI_FAILURE_INVALID_STATE;
	}

	status = scic_sds_remote_node_context_resume(&sci_dev->rnc,
						     remote_device_resume_done,
						     sci_dev);
	if (status != SCI_SUCCESS)
		return status;

	sci_base_state_machine_change_state(sm, SCI_BASE_REMOTE_DEVICE_STATE_STARTING);

	return SCI_SUCCESS;
1251
}
1252

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1253 1254
static enum sci_status isci_remote_device_construct(struct isci_port *iport,
						    struct isci_remote_device *idev)
1255
{
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1256
	struct scic_sds_port *sci_port = &iport->sci;
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1257 1258 1259
	struct isci_host *ihost = iport->isci_host;
	struct domain_device *dev = idev->domain_dev;
	enum sci_status status;
1260

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1261 1262 1263 1264
	if (dev->parent && dev_is_expander(dev->parent))
		status = scic_remote_device_ea_construct(sci_port, &idev->sci);
	else
		status = scic_remote_device_da_construct(sci_port, &idev->sci);
1265 1266

	if (status != SCI_SUCCESS) {
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1267 1268
		dev_dbg(&ihost->pdev->dev, "%s: construct failed: %d\n",
			__func__, status);
1269 1270 1271 1272 1273

		return status;
	}

	/* start the device. */
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1274
	status = scic_remote_device_start(&idev->sci, ISCI_REMOTE_DEVICE_START_TIMEOUT);
1275

D
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1276 1277 1278
	if (status != SCI_SUCCESS)
		dev_warn(&ihost->pdev->dev, "remote device start failed: %d\n",
			 status);
1279 1280 1281 1282

	return status;
}

1283
void isci_remote_device_nuke_requests(struct isci_host *ihost, struct isci_remote_device *idev)
1284 1285 1286
{
	DECLARE_COMPLETION_ONSTACK(aborted_task_completion);

1287 1288
	dev_dbg(&ihost->pdev->dev,
		"%s: idev = %p\n", __func__, idev);
1289 1290

	/* Cleanup all requests pending for this device. */
1291
	isci_terminate_pending_requests(ihost, idev, terminating);
1292

1293 1294
	dev_dbg(&ihost->pdev->dev,
		"%s: idev = %p, done\n", __func__, idev);
1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305
}

/**
 * This function builds the isci_remote_device when a libsas dev_found message
 *    is received.
 * @isci_host: This parameter specifies the isci host object.
 * @port: This parameter specifies the isci_port conected to this device.
 *
 * pointer to new isci_remote_device.
 */
static struct isci_remote_device *
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1306
isci_remote_device_alloc(struct isci_host *ihost, struct isci_port *iport)
1307
{
D
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1308 1309
	struct isci_remote_device *idev;
	int i;
1310

D
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1311
	for (i = 0; i < SCI_MAX_REMOTE_DEVICES; i++) {
1312
		idev = &ihost->devices[i];
D
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1313 1314 1315
		if (!test_and_set_bit(IDEV_ALLOCATED, &idev->flags))
			break;
	}
1316

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1317 1318
	if (i >= SCI_MAX_REMOTE_DEVICES) {
		dev_warn(&ihost->pdev->dev, "%s: failed\n", __func__);
1319 1320 1321
		return NULL;
	}

1322 1323 1324 1325 1326 1327
	if (WARN_ONCE(!list_empty(&idev->reqs_in_process), "found requests in process\n"))
		return NULL;

	if (WARN_ONCE(!list_empty(&idev->node), "found non-idle remote device\n"))
		return NULL;

D
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1328
	isci_remote_device_change_state(idev, isci_freed);
1329

D
Dan Williams 已提交
1330
	return idev;
1331 1332 1333 1334 1335 1336 1337 1338 1339 1340
}

/**
 * isci_remote_device_stop() - This function is called internally to stop the
 *    remote device.
 * @isci_host: This parameter specifies the isci host object.
 * @isci_device: This parameter specifies the remote device.
 *
 * The status of the scic request to stop.
 */
1341
enum sci_status isci_remote_device_stop(struct isci_host *ihost, struct isci_remote_device *idev)
1342 1343 1344 1345
{
	enum sci_status status;
	unsigned long flags;

1346 1347
	dev_dbg(&ihost->pdev->dev,
		"%s: isci_device = %p\n", __func__, idev);
1348

1349
	isci_remote_device_change_state(idev, isci_stopping);
1350 1351

	/* Kill all outstanding requests. */
1352
	isci_remote_device_nuke_requests(ihost, idev);
1353

1354
	set_bit(IDEV_STOP_PENDING, &idev->flags);
1355

1356
	spin_lock_irqsave(&ihost->scic_lock, flags);
1357
	status = scic_remote_device_stop(&idev->sci, 50);
1358
	spin_unlock_irqrestore(&ihost->scic_lock, flags);
1359 1360

	/* Wait for the stop complete callback. */
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Dan Williams 已提交
1361
	if (status == SCI_SUCCESS) {
1362
		wait_for_device_stop(ihost, idev);
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Dan Williams 已提交
1363 1364
		clear_bit(IDEV_ALLOCATED, &idev->flags);
	}
1365

1366 1367 1368
	dev_dbg(&ihost->pdev->dev,
		"%s: idev = %p - after completion wait\n",
		__func__, idev);
1369 1370 1371 1372 1373 1374 1375 1376 1377 1378

	return status;
}

/**
 * isci_remote_device_gone() - This function is called by libsas when a domain
 *    device is removed.
 * @domain_device: This parameter specifies the libsas domain device.
 *
 */
1379
void isci_remote_device_gone(struct domain_device *dev)
1380
{
1381
	struct isci_host *ihost = dev_to_ihost(dev);
1382
	struct isci_remote_device *idev = dev->lldd_dev;
1383

1384
	dev_dbg(&ihost->pdev->dev,
1385
		"%s: domain_device = %p, isci_device = %p, isci_port = %p\n",
1386
		__func__, dev, idev, idev->isci_port);
1387

1388
	isci_remote_device_stop(ihost, idev);
1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402
}


/**
 * isci_remote_device_found() - This function is called by libsas when a remote
 *    device is discovered. A remote device object is created and started. the
 *    function then sleeps until the sci core device started message is
 *    received.
 * @domain_device: This parameter specifies the libsas domain device.
 *
 * status, zero indicates success.
 */
int isci_remote_device_found(struct domain_device *domain_dev)
{
1403
	struct isci_host *isci_host = dev_to_ihost(domain_dev);
1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
	struct isci_port *isci_port;
	struct isci_phy *isci_phy;
	struct asd_sas_port *sas_port;
	struct asd_sas_phy *sas_phy;
	struct isci_remote_device *isci_device;
	enum sci_status status;

	dev_dbg(&isci_host->pdev->dev,
		"%s: domain_device = %p\n", __func__, domain_dev);

1414 1415
	wait_for_start(isci_host);

1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431
	sas_port = domain_dev->port;
	sas_phy = list_first_entry(&sas_port->phy_list, struct asd_sas_phy,
				   port_phy_el);
	isci_phy = to_isci_phy(sas_phy);
	isci_port = isci_phy->isci_port;

	/* we are being called for a device on this port,
	 * so it has to come up eventually
	 */
	wait_for_completion(&isci_port->start_complete);

	if ((isci_stopping == isci_port_get_state(isci_port)) ||
	    (isci_stopped == isci_port_get_state(isci_port)))
		return -ENODEV;

	isci_device = isci_remote_device_alloc(isci_host, isci_port);
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1432 1433
	if (!isci_device)
		return -ENODEV;
1434 1435 1436 1437 1438 1439 1440 1441

	INIT_LIST_HEAD(&isci_device->node);
	domain_dev->lldd_dev = isci_device;
	isci_device->domain_dev = domain_dev;
	isci_device->isci_port = isci_port;
	isci_remote_device_change_state(isci_device, isci_starting);


1442
	spin_lock_irq(&isci_host->scic_lock);
1443 1444
	list_add_tail(&isci_device->node, &isci_port->remote_dev_list);

1445
	set_bit(IDEV_START_PENDING, &isci_device->flags);
1446
	status = isci_remote_device_construct(isci_port, isci_device);
1447
	spin_unlock_irq(&isci_host->scic_lock);
1448 1449 1450 1451 1452 1453 1454

	dev_dbg(&isci_host->pdev->dev,
		"%s: isci_device = %p\n",
		__func__, isci_device);

	if (status != SCI_SUCCESS) {

1455
		spin_lock_irq(&isci_host->scic_lock);
1456 1457 1458 1459
		isci_remote_device_deconstruct(
			isci_host,
			isci_device
			);
1460
		spin_unlock_irq(&isci_host->scic_lock);
1461 1462 1463
		return -ENODEV;
	}

1464 1465 1466
	/* wait for the device ready callback. */
	wait_for_device_start(isci_host, isci_device);

1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500
	return 0;
}
/**
 * isci_device_is_reset_pending() - This function will check if there is any
 *    pending reset condition on the device.
 * @request: This parameter is the isci_device object.
 *
 * true if there is a reset pending for the device.
 */
bool isci_device_is_reset_pending(
	struct isci_host *isci_host,
	struct isci_remote_device *isci_device)
{
	struct isci_request *isci_request;
	struct isci_request *tmp_req;
	bool reset_is_pending = false;
	unsigned long flags;

	dev_dbg(&isci_host->pdev->dev,
		"%s: isci_device = %p\n", __func__, isci_device);

	spin_lock_irqsave(&isci_host->scic_lock, flags);

	/* Check for reset on all pending requests. */
	list_for_each_entry_safe(isci_request, tmp_req,
				 &isci_device->reqs_in_process, dev_node) {
		dev_dbg(&isci_host->pdev->dev,
			"%s: isci_device = %p request = %p\n",
			__func__, isci_device, isci_request);

		if (isci_request->ttype == io_task) {
			struct sas_task *task = isci_request_access_task(
				isci_request);

1501
			spin_lock(&task->task_state_lock);
1502 1503
			if (task->task_state_flags & SAS_TASK_NEED_DEV_RESET)
				reset_is_pending = true;
1504
			spin_unlock(&task->task_state_lock);
1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523
		}
	}

	spin_unlock_irqrestore(&isci_host->scic_lock, flags);

	dev_dbg(&isci_host->pdev->dev,
		"%s: isci_device = %p reset_is_pending = %d\n",
		__func__, isci_device, reset_is_pending);

	return reset_is_pending;
}

/**
 * isci_device_clear_reset_pending() - This function will clear if any pending
 *    reset condition flags on the device.
 * @request: This parameter is the isci_device object.
 *
 * true if there is a reset pending for the device.
 */
1524
void isci_device_clear_reset_pending(struct isci_host *ihost, struct isci_remote_device *idev)
1525 1526 1527 1528 1529
{
	struct isci_request *isci_request;
	struct isci_request *tmp_req;
	unsigned long flags = 0;

1530 1531
	dev_dbg(&ihost->pdev->dev, "%s: idev=%p, ihost=%p\n",
		 __func__, idev, ihost);
1532

1533
	spin_lock_irqsave(&ihost->scic_lock, flags);
1534 1535 1536

	/* Clear reset pending on all pending requests. */
	list_for_each_entry_safe(isci_request, tmp_req,
1537 1538 1539
				 &idev->reqs_in_process, dev_node) {
		dev_dbg(&ihost->pdev->dev, "%s: idev = %p request = %p\n",
			 __func__, idev, isci_request);
1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551

		if (isci_request->ttype == io_task) {

			unsigned long flags2;
			struct sas_task *task = isci_request_access_task(
				isci_request);

			spin_lock_irqsave(&task->task_state_lock, flags2);
			task->task_state_flags &= ~SAS_TASK_NEED_DEV_RESET;
			spin_unlock_irqrestore(&task->task_state_lock, flags2);
		}
	}
1552
	spin_unlock_irqrestore(&ihost->scic_lock, flags);
1553
}