core.c 113.7 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 * NVM Express device driver
 * Copyright (c) 2011-2014, Intel Corporation.
 */

#include <linux/blkdev.h>
#include <linux/blk-mq.h>
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#include <linux/compat.h>
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#include <linux/delay.h>
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#include <linux/errno.h>
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#include <linux/hdreg.h>
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include <linux/backing-dev.h>
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#include <linux/list_sort.h>
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#include <linux/slab.h>
#include <linux/types.h>
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#include <linux/pr.h>
#include <linux/ptrace.h>
#include <linux/nvme_ioctl.h>
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#include <linux/pm_qos.h>
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#include <asm/unaligned.h>
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#include "nvme.h"
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#include "fabrics.h"
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#define CREATE_TRACE_POINTS
#include "trace.h"

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#define NVME_MINORS		(1U << MINORBITS)

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unsigned int admin_timeout = 60;
module_param(admin_timeout, uint, 0644);
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MODULE_PARM_DESC(admin_timeout, "timeout in seconds for admin commands");
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EXPORT_SYMBOL_GPL(admin_timeout);
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unsigned int nvme_io_timeout = 30;
module_param_named(io_timeout, nvme_io_timeout, uint, 0644);
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MODULE_PARM_DESC(io_timeout, "timeout in seconds for I/O");
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EXPORT_SYMBOL_GPL(nvme_io_timeout);
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static unsigned char shutdown_timeout = 5;
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module_param(shutdown_timeout, byte, 0644);
MODULE_PARM_DESC(shutdown_timeout, "timeout in seconds for controller shutdown");

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static u8 nvme_max_retries = 5;
module_param_named(max_retries, nvme_max_retries, byte, 0644);
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MODULE_PARM_DESC(max_retries, "max number of retries a command may have");
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static unsigned long default_ps_max_latency_us = 100000;
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module_param(default_ps_max_latency_us, ulong, 0644);
MODULE_PARM_DESC(default_ps_max_latency_us,
		 "max power saving latency for new devices; use PM QOS to change per device");

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static bool force_apst;
module_param(force_apst, bool, 0644);
MODULE_PARM_DESC(force_apst, "allow APST for newly enumerated devices even if quirked off");

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static bool streams;
module_param(streams, bool, 0644);
MODULE_PARM_DESC(streams, "turn on support for Streams write directives");

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/*
 * nvme_wq - hosts nvme related works that are not reset or delete
 * nvme_reset_wq - hosts nvme reset works
 * nvme_delete_wq - hosts nvme delete works
 *
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 * nvme_wq will host works such as scan, aen handling, fw activation,
 * keep-alive, periodic reconnects etc. nvme_reset_wq
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 * runs reset works which also flush works hosted on nvme_wq for
 * serialization purposes. nvme_delete_wq host controller deletion
 * works which flush reset works for serialization.
 */
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struct workqueue_struct *nvme_wq;
EXPORT_SYMBOL_GPL(nvme_wq);

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struct workqueue_struct *nvme_reset_wq;
EXPORT_SYMBOL_GPL(nvme_reset_wq);

struct workqueue_struct *nvme_delete_wq;
EXPORT_SYMBOL_GPL(nvme_delete_wq);

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static LIST_HEAD(nvme_subsystems);
static DEFINE_MUTEX(nvme_subsystems_lock);
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static DEFINE_IDA(nvme_instance_ida);
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static dev_t nvme_ctrl_base_chr_devt;
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static struct class *nvme_class;
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static struct class *nvme_subsys_class;
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static void nvme_put_subsystem(struct nvme_subsystem *subsys);
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static void nvme_remove_invalid_namespaces(struct nvme_ctrl *ctrl,
					   unsigned nsid);

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/*
 * Prepare a queue for teardown.
 *
 * This must forcibly unquiesce queues to avoid blocking dispatch, and only set
 * the capacity to 0 after that to avoid blocking dispatchers that may be
 * holding bd_butex.  This will end buffered writers dirtying pages that can't
 * be synced.
 */
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static void nvme_set_queue_dying(struct nvme_ns *ns)
{
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	if (test_and_set_bit(NVME_NS_DEAD, &ns->flags))
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		return;
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	blk_set_queue_dying(ns->queue);
	blk_mq_unquiesce_queue(ns->queue);
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	set_capacity_and_notify(ns->disk, 0);
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}
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void nvme_queue_scan(struct nvme_ctrl *ctrl)
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{
	/*
	 * Only new queue scan work when admin and IO queues are both alive
	 */
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	if (ctrl->state == NVME_CTRL_LIVE && ctrl->tagset)
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		queue_work(nvme_wq, &ctrl->scan_work);
}

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/*
 * Use this function to proceed with scheduling reset_work for a controller
 * that had previously been set to the resetting state. This is intended for
 * code paths that can't be interrupted by other reset attempts. A hot removal
 * may prevent this from succeeding.
 */
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int nvme_try_sched_reset(struct nvme_ctrl *ctrl)
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{
	if (ctrl->state != NVME_CTRL_RESETTING)
		return -EBUSY;
	if (!queue_work(nvme_reset_wq, &ctrl->reset_work))
		return -EBUSY;
	return 0;
}
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EXPORT_SYMBOL_GPL(nvme_try_sched_reset);
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static void nvme_failfast_work(struct work_struct *work)
{
	struct nvme_ctrl *ctrl = container_of(to_delayed_work(work),
			struct nvme_ctrl, failfast_work);

	if (ctrl->state != NVME_CTRL_CONNECTING)
		return;

	set_bit(NVME_CTRL_FAILFAST_EXPIRED, &ctrl->flags);
	dev_info(ctrl->device, "failfast expired\n");
	nvme_kick_requeue_lists(ctrl);
}

static inline void nvme_start_failfast_work(struct nvme_ctrl *ctrl)
{
	if (!ctrl->opts || ctrl->opts->fast_io_fail_tmo == -1)
		return;

	schedule_delayed_work(&ctrl->failfast_work,
			      ctrl->opts->fast_io_fail_tmo * HZ);
}

static inline void nvme_stop_failfast_work(struct nvme_ctrl *ctrl)
{
	if (!ctrl->opts)
		return;

	cancel_delayed_work_sync(&ctrl->failfast_work);
	clear_bit(NVME_CTRL_FAILFAST_EXPIRED, &ctrl->flags);
}


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int nvme_reset_ctrl(struct nvme_ctrl *ctrl)
{
	if (!nvme_change_ctrl_state(ctrl, NVME_CTRL_RESETTING))
		return -EBUSY;
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	if (!queue_work(nvme_reset_wq, &ctrl->reset_work))
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		return -EBUSY;
	return 0;
}
EXPORT_SYMBOL_GPL(nvme_reset_ctrl);

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int nvme_reset_ctrl_sync(struct nvme_ctrl *ctrl)
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{
	int ret;

	ret = nvme_reset_ctrl(ctrl);
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	if (!ret) {
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		flush_work(&ctrl->reset_work);
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		if (ctrl->state != NVME_CTRL_LIVE)
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			ret = -ENETRESET;
	}

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	return ret;
}

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static void nvme_do_delete_ctrl(struct nvme_ctrl *ctrl)
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{
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	dev_info(ctrl->device,
		 "Removing ctrl: NQN \"%s\"\n", ctrl->opts->subsysnqn);

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	flush_work(&ctrl->reset_work);
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	nvme_stop_ctrl(ctrl);
	nvme_remove_namespaces(ctrl);
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	ctrl->ops->delete_ctrl(ctrl);
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	nvme_uninit_ctrl(ctrl);
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}

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static void nvme_delete_ctrl_work(struct work_struct *work)
{
	struct nvme_ctrl *ctrl =
		container_of(work, struct nvme_ctrl, delete_work);

	nvme_do_delete_ctrl(ctrl);
}

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int nvme_delete_ctrl(struct nvme_ctrl *ctrl)
{
	if (!nvme_change_ctrl_state(ctrl, NVME_CTRL_DELETING))
		return -EBUSY;
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	if (!queue_work(nvme_delete_wq, &ctrl->delete_work))
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		return -EBUSY;
	return 0;
}
EXPORT_SYMBOL_GPL(nvme_delete_ctrl);

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static void nvme_delete_ctrl_sync(struct nvme_ctrl *ctrl)
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{
	/*
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	 * Keep a reference until nvme_do_delete_ctrl() complete,
	 * since ->delete_ctrl can free the controller.
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	 */
	nvme_get_ctrl(ctrl);
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	if (nvme_change_ctrl_state(ctrl, NVME_CTRL_DELETING))
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		nvme_do_delete_ctrl(ctrl);
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	nvme_put_ctrl(ctrl);
}

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static blk_status_t nvme_error_status(u16 status)
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{
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	switch (status & 0x7ff) {
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	case NVME_SC_SUCCESS:
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		return BLK_STS_OK;
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	case NVME_SC_CAP_EXCEEDED:
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		return BLK_STS_NOSPC;
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	case NVME_SC_LBA_RANGE:
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	case NVME_SC_CMD_INTERRUPTED:
	case NVME_SC_NS_NOT_READY:
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		return BLK_STS_TARGET;
	case NVME_SC_BAD_ATTRIBUTES:
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	case NVME_SC_ONCS_NOT_SUPPORTED:
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	case NVME_SC_INVALID_OPCODE:
	case NVME_SC_INVALID_FIELD:
	case NVME_SC_INVALID_NS:
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		return BLK_STS_NOTSUPP;
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	case NVME_SC_WRITE_FAULT:
	case NVME_SC_READ_ERROR:
	case NVME_SC_UNWRITTEN_BLOCK:
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	case NVME_SC_ACCESS_DENIED:
	case NVME_SC_READ_ONLY:
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	case NVME_SC_COMPARE_FAILED:
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		return BLK_STS_MEDIUM;
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	case NVME_SC_GUARD_CHECK:
	case NVME_SC_APPTAG_CHECK:
	case NVME_SC_REFTAG_CHECK:
	case NVME_SC_INVALID_PI:
		return BLK_STS_PROTECTION;
	case NVME_SC_RESERVATION_CONFLICT:
		return BLK_STS_NEXUS;
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	case NVME_SC_HOST_PATH_ERROR:
		return BLK_STS_TRANSPORT;
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	case NVME_SC_ZONE_TOO_MANY_ACTIVE:
		return BLK_STS_ZONE_ACTIVE_RESOURCE;
	case NVME_SC_ZONE_TOO_MANY_OPEN:
		return BLK_STS_ZONE_OPEN_RESOURCE;
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	default:
		return BLK_STS_IOERR;
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	}
}

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static void nvme_retry_req(struct request *req)
{
	unsigned long delay = 0;
	u16 crd;

	/* The mask and shift result must be <= 3 */
	crd = (nvme_req(req)->status & NVME_SC_CRD) >> 11;
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	if (crd)
		delay = nvme_req(req)->ctrl->crdt[crd - 1] * 100;
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	nvme_req(req)->retries++;
	blk_mq_requeue_request(req, false);
	blk_mq_delay_kick_requeue_list(req->q, delay);
}

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enum nvme_disposition {
	COMPLETE,
	RETRY,
	FAILOVER,
};

static inline enum nvme_disposition nvme_decide_disposition(struct request *req)
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{
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	if (likely(nvme_req(req)->status == 0))
		return COMPLETE;
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	if (blk_noretry_request(req) ||
	    (nvme_req(req)->status & NVME_SC_DNR) ||
	    nvme_req(req)->retries >= nvme_max_retries)
		return COMPLETE;
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	if (req->cmd_flags & REQ_NVME_MPATH) {
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		if (nvme_is_path_error(nvme_req(req)->status) ||
		    blk_queue_dying(req->q))
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			return FAILOVER;
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	} else {
		if (blk_queue_dying(req->q))
			return COMPLETE;
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	}
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	return RETRY;
}
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static inline void nvme_end_req(struct request *req)
{
	blk_status_t status = nvme_error_status(nvme_req(req)->status);
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	if (IS_ENABLED(CONFIG_BLK_DEV_ZONED) &&
	    req_op(req) == REQ_OP_ZONE_APPEND)
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		req->__sector = nvme_lba_to_sect(req->q->queuedata,
			le64_to_cpu(nvme_req(req)->result.u64));
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	nvme_trace_bio_complete(req);
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	blk_mq_end_request(req, status);
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}
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void nvme_complete_rq(struct request *req)
{
	trace_nvme_complete_rq(req);
	nvme_cleanup_cmd(req);

	if (nvme_req(req)->ctrl->kas)
		nvme_req(req)->ctrl->comp_seen = true;

	switch (nvme_decide_disposition(req)) {
	case COMPLETE:
		nvme_end_req(req);
		return;
	case RETRY:
		nvme_retry_req(req);
		return;
	case FAILOVER:
		nvme_failover_req(req);
		return;
	}
}
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EXPORT_SYMBOL_GPL(nvme_complete_rq);

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/*
 * Called to unwind from ->queue_rq on a failed command submission so that the
 * multipathing code gets called to potentially failover to another path.
 * The caller needs to unwind all transport specific resource allocations and
 * must return propagate the return value.
 */
blk_status_t nvme_host_path_error(struct request *req)
{
	nvme_req(req)->status = NVME_SC_HOST_PATH_ERROR;
	blk_mq_set_request_complete(req);
	nvme_complete_rq(req);
	return BLK_STS_OK;
}
EXPORT_SYMBOL_GPL(nvme_host_path_error);

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bool nvme_cancel_request(struct request *req, void *data, bool reserved)
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{
	dev_dbg_ratelimited(((struct nvme_ctrl *) data)->device,
				"Cancelling I/O %d", req->tag);

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	/* don't abort one completed request */
	if (blk_mq_request_completed(req))
		return true;

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	nvme_req(req)->status = NVME_SC_HOST_ABORTED_CMD;
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	nvme_req(req)->flags |= NVME_REQ_CANCELLED;
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	blk_mq_complete_request(req);
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	return true;
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}
EXPORT_SYMBOL_GPL(nvme_cancel_request);

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void nvme_cancel_tagset(struct nvme_ctrl *ctrl)
{
	if (ctrl->tagset) {
		blk_mq_tagset_busy_iter(ctrl->tagset,
				nvme_cancel_request, ctrl);
		blk_mq_tagset_wait_completed_request(ctrl->tagset);
	}
}
EXPORT_SYMBOL_GPL(nvme_cancel_tagset);

void nvme_cancel_admin_tagset(struct nvme_ctrl *ctrl)
{
	if (ctrl->admin_tagset) {
		blk_mq_tagset_busy_iter(ctrl->admin_tagset,
				nvme_cancel_request, ctrl);
		blk_mq_tagset_wait_completed_request(ctrl->admin_tagset);
	}
}
EXPORT_SYMBOL_GPL(nvme_cancel_admin_tagset);

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bool nvme_change_ctrl_state(struct nvme_ctrl *ctrl,
		enum nvme_ctrl_state new_state)
{
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	enum nvme_ctrl_state old_state;
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	unsigned long flags;
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	bool changed = false;

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	spin_lock_irqsave(&ctrl->lock, flags);
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	old_state = ctrl->state;
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	switch (new_state) {
	case NVME_CTRL_LIVE:
		switch (old_state) {
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		case NVME_CTRL_NEW:
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		case NVME_CTRL_RESETTING:
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		case NVME_CTRL_CONNECTING:
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			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
	case NVME_CTRL_RESETTING:
		switch (old_state) {
		case NVME_CTRL_NEW:
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		case NVME_CTRL_LIVE:
			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
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	case NVME_CTRL_CONNECTING:
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		switch (old_state) {
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		case NVME_CTRL_NEW:
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		case NVME_CTRL_RESETTING:
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			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
	case NVME_CTRL_DELETING:
		switch (old_state) {
		case NVME_CTRL_LIVE:
		case NVME_CTRL_RESETTING:
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		case NVME_CTRL_CONNECTING:
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			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
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	case NVME_CTRL_DELETING_NOIO:
		switch (old_state) {
		case NVME_CTRL_DELETING:
		case NVME_CTRL_DEAD:
			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
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	case NVME_CTRL_DEAD:
		switch (old_state) {
		case NVME_CTRL_DELETING:
			changed = true;
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			fallthrough;
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		default:
			break;
		}
		break;
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	default:
		break;
	}

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	if (changed) {
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		ctrl->state = new_state;
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		wake_up_all(&ctrl->state_wq);
	}
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	spin_unlock_irqrestore(&ctrl->lock, flags);
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	if (!changed)
		return false;

	if (ctrl->state == NVME_CTRL_LIVE) {
		if (old_state == NVME_CTRL_CONNECTING)
			nvme_stop_failfast_work(ctrl);
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		nvme_kick_requeue_lists(ctrl);
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	} else if (ctrl->state == NVME_CTRL_CONNECTING &&
		old_state == NVME_CTRL_RESETTING) {
		nvme_start_failfast_work(ctrl);
	}
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	return changed;
}
EXPORT_SYMBOL_GPL(nvme_change_ctrl_state);

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/*
 * Returns true for sink states that can't ever transition back to live.
 */
static bool nvme_state_terminal(struct nvme_ctrl *ctrl)
{
	switch (ctrl->state) {
	case NVME_CTRL_NEW:
	case NVME_CTRL_LIVE:
	case NVME_CTRL_RESETTING:
	case NVME_CTRL_CONNECTING:
		return false;
	case NVME_CTRL_DELETING:
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	case NVME_CTRL_DELETING_NOIO:
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	case NVME_CTRL_DEAD:
		return true;
	default:
		WARN_ONCE(1, "Unhandled ctrl state:%d", ctrl->state);
		return true;
	}
}

/*
 * Waits for the controller state to be resetting, or returns false if it is
 * not possible to ever transition to that state.
 */
bool nvme_wait_reset(struct nvme_ctrl *ctrl)
{
	wait_event(ctrl->state_wq,
		   nvme_change_ctrl_state(ctrl, NVME_CTRL_RESETTING) ||
		   nvme_state_terminal(ctrl));
	return ctrl->state == NVME_CTRL_RESETTING;
}
EXPORT_SYMBOL_GPL(nvme_wait_reset);

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static void nvme_free_ns_head(struct kref *ref)
{
	struct nvme_ns_head *head =
		container_of(ref, struct nvme_ns_head, ref);

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	nvme_mpath_remove_disk(head);
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	ida_simple_remove(&head->subsys->ns_ida, head->instance);
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	cleanup_srcu_struct(&head->srcu);
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	nvme_put_subsystem(head->subsys);
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	kfree(head);
}

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bool nvme_tryget_ns_head(struct nvme_ns_head *head)
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{
	return kref_get_unless_zero(&head->ref);
}

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void nvme_put_ns_head(struct nvme_ns_head *head)
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{
	kref_put(&head->ref, nvme_free_ns_head);
}

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static void nvme_free_ns(struct kref *kref)
{
	struct nvme_ns *ns = container_of(kref, struct nvme_ns, kref);

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	if (ns->ndev)
		nvme_nvm_unregister(ns);
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	put_disk(ns->disk);
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	nvme_put_ns_head(ns->head);
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	nvme_put_ctrl(ns->ctrl);
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	kfree(ns);
}

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void nvme_put_ns(struct nvme_ns *ns)
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{
	kref_put(&ns->kref, nvme_free_ns);
}
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EXPORT_SYMBOL_NS_GPL(nvme_put_ns, NVME_TARGET_PASSTHRU);
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static inline void nvme_clear_nvme_request(struct request *req)
{
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	struct nvme_command *cmd = nvme_req(req)->cmd;

	memset(cmd, 0, sizeof(*cmd));
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	nvme_req(req)->retries = 0;
	nvme_req(req)->flags = 0;
	req->rq_flags |= RQF_DONTPREP;
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}

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static inline unsigned int nvme_req_op(struct nvme_command *cmd)
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{
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	return nvme_is_write(cmd) ? REQ_OP_DRV_OUT : REQ_OP_DRV_IN;
}
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static inline void nvme_init_request(struct request *req,
		struct nvme_command *cmd)
{
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	if (req->q->queuedata)
		req->timeout = NVME_IO_TIMEOUT;
	else /* no queuedata implies admin queue */
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		req->timeout = NVME_ADMIN_TIMEOUT;
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	/* passthru commands should let the driver set the SGL flags */
	cmd->common.flags &= ~NVME_CMD_SGL_ALL;

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	req->cmd_flags |= REQ_FAILFAST_DRIVER;
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	nvme_clear_nvme_request(req);
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	memcpy(nvme_req(req)->cmd, cmd, sizeof(*cmd));
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}
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struct request *nvme_alloc_request(struct request_queue *q,
		struct nvme_command *cmd, blk_mq_req_flags_t flags)
{
	struct request *req;

	req = blk_mq_alloc_request(q, nvme_req_op(cmd), flags);
	if (!IS_ERR(req))
		nvme_init_request(req, cmd);
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	return req;
}
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EXPORT_SYMBOL_GPL(nvme_alloc_request);
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static struct request *nvme_alloc_request_qid(struct request_queue *q,
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		struct nvme_command *cmd, blk_mq_req_flags_t flags, int qid)
{
	struct request *req;

	req = blk_mq_alloc_request_hctx(q, nvme_req_op(cmd), flags,
			qid ? qid - 1 : 0);
	if (!IS_ERR(req))
		nvme_init_request(req, cmd);
	return req;
}

636 637 638 639 640 641 642
static int nvme_toggle_streams(struct nvme_ctrl *ctrl, bool enable)
{
	struct nvme_command c;

	memset(&c, 0, sizeof(c));

	c.directive.opcode = nvme_admin_directive_send;
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	c.directive.nsid = cpu_to_le32(NVME_NSID_ALL);
644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671
	c.directive.doper = NVME_DIR_SND_ID_OP_ENABLE;
	c.directive.dtype = NVME_DIR_IDENTIFY;
	c.directive.tdtype = NVME_DIR_STREAMS;
	c.directive.endir = enable ? NVME_DIR_ENDIR : 0;

	return nvme_submit_sync_cmd(ctrl->admin_q, &c, NULL, 0);
}

static int nvme_disable_streams(struct nvme_ctrl *ctrl)
{
	return nvme_toggle_streams(ctrl, false);
}

static int nvme_enable_streams(struct nvme_ctrl *ctrl)
{
	return nvme_toggle_streams(ctrl, true);
}

static int nvme_get_stream_params(struct nvme_ctrl *ctrl,
				  struct streams_directive_params *s, u32 nsid)
{
	struct nvme_command c;

	memset(&c, 0, sizeof(c));
	memset(s, 0, sizeof(*s));

	c.directive.opcode = nvme_admin_directive_recv;
	c.directive.nsid = cpu_to_le32(nsid);
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	c.directive.numd = cpu_to_le32(nvme_bytes_to_numd(sizeof(*s)));
673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692
	c.directive.doper = NVME_DIR_RCV_ST_OP_PARAM;
	c.directive.dtype = NVME_DIR_STREAMS;

	return nvme_submit_sync_cmd(ctrl->admin_q, &c, s, sizeof(*s));
}

static int nvme_configure_directives(struct nvme_ctrl *ctrl)
{
	struct streams_directive_params s;
	int ret;

	if (!(ctrl->oacs & NVME_CTRL_OACS_DIRECTIVES))
		return 0;
	if (!streams)
		return 0;

	ret = nvme_enable_streams(ctrl);
	if (ret)
		return ret;

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	ret = nvme_get_stream_params(ctrl, &s, NVME_NSID_ALL);
694
	if (ret)
695
		goto out_disable_stream;
696 697 698 699 700

	ctrl->nssa = le16_to_cpu(s.nssa);
	if (ctrl->nssa < BLK_MAX_WRITE_HINTS - 1) {
		dev_info(ctrl->device, "too few streams (%u) available\n",
					ctrl->nssa);
701
		goto out_disable_stream;
702 703
	}

704
	ctrl->nr_streams = min_t(u16, ctrl->nssa, BLK_MAX_WRITE_HINTS - 1);
705 706
	dev_info(ctrl->device, "Using %u streams\n", ctrl->nr_streams);
	return 0;
707 708 709 710

out_disable_stream:
	nvme_disable_streams(ctrl);
	return ret;
711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737
}

/*
 * Check if 'req' has a write hint associated with it. If it does, assign
 * a valid namespace stream to the write.
 */
static void nvme_assign_write_stream(struct nvme_ctrl *ctrl,
				     struct request *req, u16 *control,
				     u32 *dsmgmt)
{
	enum rw_hint streamid = req->write_hint;

	if (streamid == WRITE_LIFE_NOT_SET || streamid == WRITE_LIFE_NONE)
		streamid = 0;
	else {
		streamid--;
		if (WARN_ON_ONCE(streamid > ctrl->nr_streams))
			return;

		*control |= NVME_RW_DTYPE_STREAMS;
		*dsmgmt |= streamid << 16;
	}

	if (streamid < ARRAY_SIZE(req->q->write_hints))
		req->q->write_hints[streamid] += blk_rq_bytes(req) >> 9;
}

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static inline void nvme_setup_flush(struct nvme_ns *ns,
		struct nvme_command *cmnd)
{
	cmnd->common.opcode = nvme_cmd_flush;
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	cmnd->common.nsid = cpu_to_le32(ns->head->ns_id);
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743 744
}

745
static blk_status_t nvme_setup_discard(struct nvme_ns *ns, struct request *req,
M
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746 747
		struct nvme_command *cmnd)
{
748
	unsigned short segments = blk_rq_nr_discard_segments(req), n = 0;
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749
	struct nvme_dsm_range *range;
750
	struct bio *bio;
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752 753 754 755 756 757 758 759
	/*
	 * Some devices do not consider the DSM 'Number of Ranges' field when
	 * determining how much data to DMA. Always allocate memory for maximum
	 * number of segments to prevent device reading beyond end of buffer.
	 */
	static const size_t alloc_size = sizeof(*range) * NVME_DSM_MAX_RANGES;

	range = kzalloc(alloc_size, GFP_ATOMIC | __GFP_NOWARN);
760 761 762 763 764 765 766 767 768 769 770
	if (!range) {
		/*
		 * If we fail allocation our range, fallback to the controller
		 * discard page. If that's also busy, it's safe to return
		 * busy, as we know we can make progress once that's freed.
		 */
		if (test_and_set_bit_lock(0, &ns->ctrl->discard_page_busy))
			return BLK_STS_RESOURCE;

		range = page_address(ns->ctrl->discard_page);
	}
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772
	__rq_for_each_bio(bio, req) {
773
		u64 slba = nvme_sect_to_lba(ns, bio->bi_iter.bi_sector);
774 775
		u32 nlb = bio->bi_iter.bi_size >> ns->lba_shift;

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776 777 778 779 780
		if (n < segments) {
			range[n].cattr = cpu_to_le32(0);
			range[n].nlb = cpu_to_le32(nlb);
			range[n].slba = cpu_to_le64(slba);
		}
781 782 783 784
		n++;
	}

	if (WARN_ON_ONCE(n != segments)) {
785 786 787 788
		if (virt_to_page(range) == ns->ctrl->discard_page)
			clear_bit_unlock(0, &ns->ctrl->discard_page_busy);
		else
			kfree(range);
789
		return BLK_STS_IOERR;
790
	}
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791 792

	cmnd->dsm.opcode = nvme_cmd_dsm;
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	cmnd->dsm.nsid = cpu_to_le32(ns->head->ns_id);
794
	cmnd->dsm.nr = cpu_to_le32(segments - 1);
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	cmnd->dsm.attributes = cpu_to_le32(NVME_DSMGMT_AD);

797 798
	req->special_vec.bv_page = virt_to_page(range);
	req->special_vec.bv_offset = offset_in_page(range);
799
	req->special_vec.bv_len = alloc_size;
800
	req->rq_flags |= RQF_SPECIAL_PAYLOAD;
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801

802
	return BLK_STS_OK;
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}

805 806 807 808 809 810 811 812 813
static inline blk_status_t nvme_setup_write_zeroes(struct nvme_ns *ns,
		struct request *req, struct nvme_command *cmnd)
{
	if (ns->ctrl->quirks & NVME_QUIRK_DEALLOCATE_ZEROES)
		return nvme_setup_discard(ns, req, cmnd);

	cmnd->write_zeroes.opcode = nvme_cmd_write_zeroes;
	cmnd->write_zeroes.nsid = cpu_to_le32(ns->head->ns_id);
	cmnd->write_zeroes.slba =
814
		cpu_to_le64(nvme_sect_to_lba(ns, blk_rq_pos(req)));
815 816 817 818 819 820
	cmnd->write_zeroes.length =
		cpu_to_le16((blk_rq_bytes(req) >> ns->lba_shift) - 1);
	cmnd->write_zeroes.control = 0;
	return BLK_STS_OK;
}

821
static inline blk_status_t nvme_setup_rw(struct nvme_ns *ns,
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822 823
		struct request *req, struct nvme_command *cmnd,
		enum nvme_opcode op)
M
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824
{
825
	struct nvme_ctrl *ctrl = ns->ctrl;
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826 827 828 829 830 831 832 833 834 835 836
	u16 control = 0;
	u32 dsmgmt = 0;

	if (req->cmd_flags & REQ_FUA)
		control |= NVME_RW_FUA;
	if (req->cmd_flags & (REQ_FAILFAST_DEV | REQ_RAHEAD))
		control |= NVME_RW_LR;

	if (req->cmd_flags & REQ_RAHEAD)
		dsmgmt |= NVME_RW_DSM_FREQ_PREFETCH;

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837
	cmnd->rw.opcode = op;
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838
	cmnd->rw.nsid = cpu_to_le32(ns->head->ns_id);
839
	cmnd->rw.slba = cpu_to_le64(nvme_sect_to_lba(ns, blk_rq_pos(req)));
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840 841
	cmnd->rw.length = cpu_to_le16((blk_rq_bytes(req) >> ns->lba_shift) - 1);

842 843 844
	if (req_op(req) == REQ_OP_WRITE && ctrl->nr_streams)
		nvme_assign_write_stream(ctrl, req, &control, &dsmgmt);

M
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845
	if (ns->ms) {
846 847 848 849 850 851 852 853 854 855 856 857
		/*
		 * If formated with metadata, the block layer always provides a
		 * metadata buffer if CONFIG_BLK_DEV_INTEGRITY is enabled.  Else
		 * we enable the PRACT bit for protection information or set the
		 * namespace capacity to zero to prevent any I/O.
		 */
		if (!blk_integrity_rq(req)) {
			if (WARN_ON_ONCE(!nvme_ns_has_pi(ns)))
				return BLK_STS_NOTSUPP;
			control |= NVME_RW_PRINFO_PRACT;
		}

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858 859 860 861 862 863 864 865
		switch (ns->pi_type) {
		case NVME_NS_DPS_PI_TYPE3:
			control |= NVME_RW_PRINFO_PRCHK_GUARD;
			break;
		case NVME_NS_DPS_PI_TYPE1:
		case NVME_NS_DPS_PI_TYPE2:
			control |= NVME_RW_PRINFO_PRCHK_GUARD |
					NVME_RW_PRINFO_PRCHK_REF;
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			if (op == nvme_cmd_zone_append)
				control |= NVME_RW_APPEND_PIREMAP;
868
			cmnd->rw.reftag = cpu_to_le32(t10_pi_ref_tag(req));
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869 870 871 872 873 874
			break;
		}
	}

	cmnd->rw.control = cpu_to_le16(control);
	cmnd->rw.dsmgmt = cpu_to_le32(dsmgmt);
875
	return 0;
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876 877
}

878 879 880
void nvme_cleanup_cmd(struct request *req)
{
	if (req->rq_flags & RQF_SPECIAL_PAYLOAD) {
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		struct nvme_ctrl *ctrl = nvme_req(req)->ctrl;
882 883
		struct page *page = req->special_vec.bv_page;

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884 885
		if (page == ctrl->discard_page)
			clear_bit_unlock(0, &ctrl->discard_page_busy);
886 887
		else
			kfree(page_address(page) + req->special_vec.bv_offset);
888 889 890 891
	}
}
EXPORT_SYMBOL_GPL(nvme_cleanup_cmd);

892
blk_status_t nvme_setup_cmd(struct nvme_ns *ns, struct request *req)
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893
{
894
	struct nvme_command *cmd = nvme_req(req)->cmd;
895
	blk_status_t ret = BLK_STS_OK;
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896

897 898
	if (!(req->rq_flags & RQF_DONTPREP))
		nvme_clear_nvme_request(req);
899

900 901 902
	switch (req_op(req)) {
	case REQ_OP_DRV_IN:
	case REQ_OP_DRV_OUT:
903
		/* these are setup prior to execution in nvme_init_request() */
904 905
		break;
	case REQ_OP_FLUSH:
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		nvme_setup_flush(ns, cmd);
907
		break;
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	case REQ_OP_ZONE_RESET_ALL:
	case REQ_OP_ZONE_RESET:
		ret = nvme_setup_zone_mgmt_send(ns, req, cmd, NVME_ZONE_RESET);
		break;
	case REQ_OP_ZONE_OPEN:
		ret = nvme_setup_zone_mgmt_send(ns, req, cmd, NVME_ZONE_OPEN);
		break;
	case REQ_OP_ZONE_CLOSE:
		ret = nvme_setup_zone_mgmt_send(ns, req, cmd, NVME_ZONE_CLOSE);
		break;
	case REQ_OP_ZONE_FINISH:
		ret = nvme_setup_zone_mgmt_send(ns, req, cmd, NVME_ZONE_FINISH);
		break;
921
	case REQ_OP_WRITE_ZEROES:
922 923
		ret = nvme_setup_write_zeroes(ns, req, cmd);
		break;
924
	case REQ_OP_DISCARD:
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925
		ret = nvme_setup_discard(ns, req, cmd);
926 927
		break;
	case REQ_OP_READ:
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928 929
		ret = nvme_setup_rw(ns, req, cmd, nvme_cmd_read);
		break;
930
	case REQ_OP_WRITE:
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931 932 933 934
		ret = nvme_setup_rw(ns, req, cmd, nvme_cmd_write);
		break;
	case REQ_OP_ZONE_APPEND:
		ret = nvme_setup_rw(ns, req, cmd, nvme_cmd_zone_append);
935 936 937
		break;
	default:
		WARN_ON_ONCE(1);
938
		return BLK_STS_IOERR;
939
	}
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940

941
	cmd->common.command_id = req->tag;
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	trace_nvme_setup_cmd(req, cmd);
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943 944 945 946
	return ret;
}
EXPORT_SYMBOL_GPL(nvme_setup_cmd);

947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963
static void nvme_end_sync_rq(struct request *rq, blk_status_t error)
{
	struct completion *waiting = rq->end_io_data;

	rq->end_io_data = NULL;
	complete(waiting);
}

static void nvme_execute_rq_polled(struct request_queue *q,
		struct gendisk *bd_disk, struct request *rq, int at_head)
{
	DECLARE_COMPLETION_ONSTACK(wait);

	WARN_ON_ONCE(!test_bit(QUEUE_FLAG_POLL, &q->queue_flags));

	rq->cmd_flags |= REQ_HIPRI;
	rq->end_io_data = &wait;
964
	blk_execute_rq_nowait(bd_disk, rq, at_head, nvme_end_sync_rq);
965 966 967 968 969 970 971

	while (!completion_done(&wait)) {
		blk_poll(q, request_to_qc_t(rq->mq_hctx, rq), true);
		cond_resched();
	}
}

972 973 974 975 976
/*
 * Returns 0 on success.  If the result is negative, it's a Linux error code;
 * if the result is positive, it's an NVM Express status code
 */
int __nvme_submit_sync_cmd(struct request_queue *q, struct nvme_command *cmd,
977
		union nvme_result *result, void *buffer, unsigned bufflen,
978
		unsigned timeout, int qid, int at_head,
979
		blk_mq_req_flags_t flags, bool poll)
980 981 982 983
{
	struct request *req;
	int ret;

984 985 986 987
	if (qid == NVME_QID_ANY)
		req = nvme_alloc_request(q, cmd, flags);
	else
		req = nvme_alloc_request_qid(q, cmd, flags, qid);
988 989 990
	if (IS_ERR(req))
		return PTR_ERR(req);

991 992
	if (timeout)
		req->timeout = timeout;
993

994 995 996 997
	if (buffer && bufflen) {
		ret = blk_rq_map_kern(q, req, buffer, bufflen, GFP_KERNEL);
		if (ret)
			goto out;
998 999
	}

1000 1001 1002
	if (poll)
		nvme_execute_rq_polled(req->q, NULL, req, at_head);
	else
1003
		blk_execute_rq(NULL, req, at_head);
1004 1005
	if (result)
		*result = nvme_req(req)->result;
1006 1007 1008 1009
	if (nvme_req(req)->flags & NVME_REQ_CANCELLED)
		ret = -EINTR;
	else
		ret = nvme_req(req)->status;
1010 1011 1012 1013
 out:
	blk_mq_free_request(req);
	return ret;
}
1014
EXPORT_SYMBOL_GPL(__nvme_submit_sync_cmd);
1015 1016 1017 1018

int nvme_submit_sync_cmd(struct request_queue *q, struct nvme_command *cmd,
		void *buffer, unsigned bufflen)
{
1019
	return __nvme_submit_sync_cmd(q, cmd, NULL, buffer, bufflen, 0,
1020
			NVME_QID_ANY, 0, 0, false);
1021
}
1022
EXPORT_SYMBOL_GPL(nvme_submit_sync_cmd);
1023

1024 1025 1026 1027
static u32 nvme_known_admin_effects(u8 opcode)
{
	switch (opcode) {
	case nvme_admin_format_nvm:
1028
		return NVME_CMD_EFFECTS_LBCC | NVME_CMD_EFFECTS_NCC |
1029 1030
			NVME_CMD_EFFECTS_CSE_MASK;
	case nvme_admin_sanitize_nvm:
1031
		return NVME_CMD_EFFECTS_LBCC | NVME_CMD_EFFECTS_CSE_MASK;
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045
	default:
		break;
	}
	return 0;
}

u32 nvme_command_effects(struct nvme_ctrl *ctrl, struct nvme_ns *ns, u8 opcode)
{
	u32 effects = 0;

	if (ns) {
		if (ns->head->effects)
			effects = le32_to_cpu(ns->head->effects->iocs[opcode]);
		if (effects & ~(NVME_CMD_EFFECTS_CSUPP | NVME_CMD_EFFECTS_LBCC))
1046 1047 1048
			dev_warn_once(ctrl->device,
				"IO command:%02x has unhandled effects:%08x\n",
				opcode, effects);
1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068
		return 0;
	}

	if (ctrl->effects)
		effects = le32_to_cpu(ctrl->effects->acs[opcode]);
	effects |= nvme_known_admin_effects(opcode);

	return effects;
}
EXPORT_SYMBOL_NS_GPL(nvme_command_effects, NVME_TARGET_PASSTHRU);

static u32 nvme_passthru_start(struct nvme_ctrl *ctrl, struct nvme_ns *ns,
			       u8 opcode)
{
	u32 effects = nvme_command_effects(ctrl, ns, opcode);

	/*
	 * For simplicity, IO to all namespaces is quiesced even if the command
	 * effects say only one namespace is affected.
	 */
1069
	if (effects & NVME_CMD_EFFECTS_CSE_MASK) {
1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081
		mutex_lock(&ctrl->scan_lock);
		mutex_lock(&ctrl->subsys->lock);
		nvme_mpath_start_freeze(ctrl->subsys);
		nvme_mpath_wait_freeze(ctrl->subsys);
		nvme_start_freeze(ctrl);
		nvme_wait_freeze(ctrl);
	}
	return effects;
}

static void nvme_passthru_end(struct nvme_ctrl *ctrl, u32 effects)
{
1082
	if (effects & NVME_CMD_EFFECTS_CSE_MASK) {
1083 1084 1085 1086 1087 1088 1089
		nvme_unfreeze(ctrl);
		nvme_mpath_unfreeze(ctrl->subsys);
		mutex_unlock(&ctrl->subsys->lock);
		nvme_remove_invalid_namespaces(ctrl, NVME_NSID_ALL);
		mutex_unlock(&ctrl->scan_lock);
	}
	if (effects & NVME_CMD_EFFECTS_CCC)
1090
		nvme_init_ctrl_finish(ctrl);
1091 1092 1093 1094 1095 1096
	if (effects & (NVME_CMD_EFFECTS_NIC | NVME_CMD_EFFECTS_NCC)) {
		nvme_queue_scan(ctrl);
		flush_work(&ctrl->scan_work);
	}
}

1097 1098 1099 1100 1101 1102 1103 1104 1105
void nvme_execute_passthru_rq(struct request *rq)
{
	struct nvme_command *cmd = nvme_req(rq)->cmd;
	struct nvme_ctrl *ctrl = nvme_req(rq)->ctrl;
	struct nvme_ns *ns = rq->q->queuedata;
	struct gendisk *disk = ns ? ns->disk : NULL;
	u32 effects;

	effects = nvme_passthru_start(ctrl, ns, cmd->common.opcode);
1106
	blk_execute_rq(disk, rq, 0);
1107 1108
	if (effects) /* nothing to be done for zero cmd effects */
		nvme_passthru_end(ctrl, effects);
1109 1110 1111
}
EXPORT_SYMBOL_NS_GPL(nvme_execute_passthru_rq, NVME_TARGET_PASSTHRU);

1112
static void nvme_keep_alive_end_io(struct request *rq, blk_status_t status)
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1113 1114
{
	struct nvme_ctrl *ctrl = rq->end_io_data;
1115 1116
	unsigned long flags;
	bool startka = false;
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1117 1118 1119

	blk_mq_free_request(rq);

1120
	if (status) {
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1121
		dev_err(ctrl->device,
1122 1123
			"failed nvme_keep_alive_end_io error=%d\n",
				status);
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1124 1125 1126
		return;
	}

1127
	ctrl->comp_seen = false;
1128 1129 1130 1131 1132 1133
	spin_lock_irqsave(&ctrl->lock, flags);
	if (ctrl->state == NVME_CTRL_LIVE ||
	    ctrl->state == NVME_CTRL_CONNECTING)
		startka = true;
	spin_unlock_irqrestore(&ctrl->lock, flags);
	if (startka)
1134
		queue_delayed_work(nvme_wq, &ctrl->ka_work, ctrl->kato * HZ);
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1135 1136 1137 1138 1139 1140
}

static int nvme_keep_alive(struct nvme_ctrl *ctrl)
{
	struct request *rq;

1141 1142
	rq = nvme_alloc_request(ctrl->admin_q, &ctrl->ka_cmd,
			BLK_MQ_REQ_RESERVED);
S
Sagi Grimberg 已提交
1143 1144 1145 1146 1147 1148
	if (IS_ERR(rq))
		return PTR_ERR(rq);

	rq->timeout = ctrl->kato * HZ;
	rq->end_io_data = ctrl;

1149
	blk_execute_rq_nowait(NULL, rq, 0, nvme_keep_alive_end_io);
S
Sagi Grimberg 已提交
1150 1151 1152 1153 1154 1155 1156 1157

	return 0;
}

static void nvme_keep_alive_work(struct work_struct *work)
{
	struct nvme_ctrl *ctrl = container_of(to_delayed_work(work),
			struct nvme_ctrl, ka_work);
1158 1159 1160 1161 1162 1163
	bool comp_seen = ctrl->comp_seen;

	if ((ctrl->ctratt & NVME_CTRL_ATTR_TBKAS) && comp_seen) {
		dev_dbg(ctrl->device,
			"reschedule traffic based keep-alive timer\n");
		ctrl->comp_seen = false;
1164
		queue_delayed_work(nvme_wq, &ctrl->ka_work, ctrl->kato * HZ);
1165 1166
		return;
	}
S
Sagi Grimberg 已提交
1167 1168 1169 1170

	if (nvme_keep_alive(ctrl)) {
		/* allocation failure, reset the controller */
		dev_err(ctrl->device, "keep-alive failed\n");
1171
		nvme_reset_ctrl(ctrl);
S
Sagi Grimberg 已提交
1172 1173 1174 1175
		return;
	}
}

1176
static void nvme_start_keep_alive(struct nvme_ctrl *ctrl)
S
Sagi Grimberg 已提交
1177 1178 1179 1180
{
	if (unlikely(ctrl->kato == 0))
		return;

1181
	queue_delayed_work(nvme_wq, &ctrl->ka_work, ctrl->kato * HZ);
S
Sagi Grimberg 已提交
1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
}

void nvme_stop_keep_alive(struct nvme_ctrl *ctrl)
{
	if (unlikely(ctrl->kato == 0))
		return;

	cancel_delayed_work_sync(&ctrl->ka_work);
}
EXPORT_SYMBOL_GPL(nvme_stop_keep_alive);

1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205
/*
 * In NVMe 1.0 the CNS field was just a binary controller or namespace
 * flag, thus sending any new CNS opcodes has a big chance of not working.
 * Qemu unfortunately had that bug after reporting a 1.1 version compliance
 * (but not for any later version).
 */
static bool nvme_ctrl_limited_cns(struct nvme_ctrl *ctrl)
{
	if (ctrl->quirks & NVME_QUIRK_IDENTIFY_CNS)
		return ctrl->vs < NVME_VS(1, 2, 0);
	return ctrl->vs < NVME_VS(1, 1, 0);
}

K
Keith Busch 已提交
1206
static int nvme_identify_ctrl(struct nvme_ctrl *dev, struct nvme_id_ctrl **id)
1207 1208 1209 1210 1211 1212
{
	struct nvme_command c = { };
	int error;

	/* gcc-4.4.4 (at least) has issues with initializers and anon unions */
	c.identify.opcode = nvme_admin_identify;
1213
	c.identify.cns = NVME_ID_CNS_CTRL;
1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225

	*id = kmalloc(sizeof(struct nvme_id_ctrl), GFP_KERNEL);
	if (!*id)
		return -ENOMEM;

	error = nvme_submit_sync_cmd(dev->admin_q, &c, *id,
			sizeof(struct nvme_id_ctrl));
	if (error)
		kfree(*id);
	return error;
}

1226 1227 1228 1229 1230
static bool nvme_multi_css(struct nvme_ctrl *ctrl)
{
	return (ctrl->ctrl_config & NVME_CC_CSS_MASK) == NVME_CC_CSS_CSI;
}

1231
static int nvme_process_ns_desc(struct nvme_ctrl *ctrl, struct nvme_ns_ids *ids,
1232
		struct nvme_ns_id_desc *cur, bool *csi_seen)
1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261
{
	const char *warn_str = "ctrl returned bogus length:";
	void *data = cur;

	switch (cur->nidt) {
	case NVME_NIDT_EUI64:
		if (cur->nidl != NVME_NIDT_EUI64_LEN) {
			dev_warn(ctrl->device, "%s %d for NVME_NIDT_EUI64\n",
				 warn_str, cur->nidl);
			return -1;
		}
		memcpy(ids->eui64, data + sizeof(*cur), NVME_NIDT_EUI64_LEN);
		return NVME_NIDT_EUI64_LEN;
	case NVME_NIDT_NGUID:
		if (cur->nidl != NVME_NIDT_NGUID_LEN) {
			dev_warn(ctrl->device, "%s %d for NVME_NIDT_NGUID\n",
				 warn_str, cur->nidl);
			return -1;
		}
		memcpy(ids->nguid, data + sizeof(*cur), NVME_NIDT_NGUID_LEN);
		return NVME_NIDT_NGUID_LEN;
	case NVME_NIDT_UUID:
		if (cur->nidl != NVME_NIDT_UUID_LEN) {
			dev_warn(ctrl->device, "%s %d for NVME_NIDT_UUID\n",
				 warn_str, cur->nidl);
			return -1;
		}
		uuid_copy(&ids->uuid, data + sizeof(*cur));
		return NVME_NIDT_UUID_LEN;
1262 1263 1264 1265 1266 1267 1268 1269 1270
	case NVME_NIDT_CSI:
		if (cur->nidl != NVME_NIDT_CSI_LEN) {
			dev_warn(ctrl->device, "%s %d for NVME_NIDT_CSI\n",
				 warn_str, cur->nidl);
			return -1;
		}
		memcpy(&ids->csi, data + sizeof(*cur), NVME_NIDT_CSI_LEN);
		*csi_seen = true;
		return NVME_NIDT_CSI_LEN;
1271 1272 1273 1274 1275 1276
	default:
		/* Skip unknown types */
		return cur->nidl;
	}
}

1277
static int nvme_identify_ns_descs(struct nvme_ctrl *ctrl, unsigned nsid,
1278
		struct nvme_ns_ids *ids)
1279 1280
{
	struct nvme_command c = { };
1281 1282
	bool csi_seen = false;
	int status, pos, len;
1283 1284
	void *data;

1285 1286
	if (ctrl->vs < NVME_VS(1, 3, 0) && !nvme_multi_css(ctrl))
		return 0;
1287 1288 1289
	if (ctrl->quirks & NVME_QUIRK_NO_NS_DESC_LIST)
		return 0;

1290 1291 1292 1293 1294 1295 1296 1297
	c.identify.opcode = nvme_admin_identify;
	c.identify.nsid = cpu_to_le32(nsid);
	c.identify.cns = NVME_ID_CNS_NS_DESC_LIST;

	data = kzalloc(NVME_IDENTIFY_DATA_SIZE, GFP_KERNEL);
	if (!data)
		return -ENOMEM;

1298
	status = nvme_submit_sync_cmd(ctrl->admin_q, &c, data,
1299
				      NVME_IDENTIFY_DATA_SIZE);
1300 1301
	if (status) {
		dev_warn(ctrl->device,
1302 1303
			"Identify Descriptors failed (nsid=%u, status=0x%x)\n",
			nsid, status);
1304
		goto free_data;
1305
	}
1306 1307 1308 1309 1310 1311 1312

	for (pos = 0; pos < NVME_IDENTIFY_DATA_SIZE; pos += len) {
		struct nvme_ns_id_desc *cur = data + pos;

		if (cur->nidl == 0)
			break;

1313
		len = nvme_process_ns_desc(ctrl, ids, cur, &csi_seen);
1314
		if (len < 0)
1315
			break;
1316 1317 1318

		len += sizeof(*cur);
	}
1319 1320 1321 1322 1323 1324 1325

	if (nvme_multi_css(ctrl) && !csi_seen) {
		dev_warn(ctrl->device, "Command set not reported for nsid:%d\n",
			 nsid);
		status = -EINVAL;
	}

1326 1327 1328 1329 1330
free_data:
	kfree(data);
	return status;
}

1331 1332
static int nvme_identify_ns(struct nvme_ctrl *ctrl, unsigned nsid,
			struct nvme_ns_ids *ids, struct nvme_id_ns **id)
1333 1334 1335 1336 1337
{
	struct nvme_command c = { };
	int error;

	/* gcc-4.4.4 (at least) has issues with initializers and anon unions */
1338 1339
	c.identify.opcode = nvme_admin_identify;
	c.identify.nsid = cpu_to_le32(nsid);
1340
	c.identify.cns = NVME_ID_CNS_NS;
1341

1342 1343 1344
	*id = kmalloc(sizeof(**id), GFP_KERNEL);
	if (!*id)
		return -ENOMEM;
1345

1346
	error = nvme_submit_sync_cmd(ctrl->admin_q, &c, *id, sizeof(**id));
1347
	if (error) {
1348
		dev_warn(ctrl->device, "Identify namespace failed (%d)\n", error);
1349
		goto out_free_id;
1350 1351
	}

1352
	error = NVME_SC_INVALID_NS | NVME_SC_DNR;
1353 1354
	if ((*id)->ncap == 0) /* namespace not allocated or attached */
		goto out_free_id;
1355 1356 1357 1358 1359 1360 1361 1362

	if (ctrl->vs >= NVME_VS(1, 1, 0) &&
	    !memchr_inv(ids->eui64, 0, sizeof(ids->eui64)))
		memcpy(ids->eui64, (*id)->eui64, sizeof(ids->eui64));
	if (ctrl->vs >= NVME_VS(1, 2, 0) &&
	    !memchr_inv(ids->nguid, 0, sizeof(ids->nguid)))
		memcpy(ids->nguid, (*id)->nguid, sizeof(ids->nguid));

1363 1364 1365 1366
	return 0;

out_free_id:
	kfree(*id);
1367
	return error;
1368 1369
}

K
Keith Busch 已提交
1370 1371
static int nvme_features(struct nvme_ctrl *dev, u8 op, unsigned int fid,
		unsigned int dword11, void *buffer, size_t buflen, u32 *result)
1372
{
1373
	union nvme_result res = { 0 };
1374
	struct nvme_command c;
1375
	int ret;
1376 1377

	memset(&c, 0, sizeof(c));
K
Keith Busch 已提交
1378
	c.features.opcode = op;
1379 1380 1381
	c.features.fid = cpu_to_le32(fid);
	c.features.dword11 = cpu_to_le32(dword11);

1382
	ret = __nvme_submit_sync_cmd(dev->admin_q, &c, &res,
1383
			buffer, buflen, 0, NVME_QID_ANY, 0, 0, false);
1384
	if (ret >= 0 && result)
1385
		*result = le32_to_cpu(res.u32);
1386
	return ret;
1387 1388
}

K
Keith Busch 已提交
1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406
int nvme_set_features(struct nvme_ctrl *dev, unsigned int fid,
		      unsigned int dword11, void *buffer, size_t buflen,
		      u32 *result)
{
	return nvme_features(dev, nvme_admin_set_features, fid, dword11, buffer,
			     buflen, result);
}
EXPORT_SYMBOL_GPL(nvme_set_features);

int nvme_get_features(struct nvme_ctrl *dev, unsigned int fid,
		      unsigned int dword11, void *buffer, size_t buflen,
		      u32 *result)
{
	return nvme_features(dev, nvme_admin_get_features, fid, dword11, buffer,
			     buflen, result);
}
EXPORT_SYMBOL_GPL(nvme_get_features);

C
Christoph Hellwig 已提交
1407 1408 1409 1410 1411 1412
int nvme_set_queue_count(struct nvme_ctrl *ctrl, int *count)
{
	u32 q_count = (*count - 1) | ((*count - 1) << 16);
	u32 result;
	int status, nr_io_queues;

1413
	status = nvme_set_features(ctrl, NVME_FEAT_NUM_QUEUES, q_count, NULL, 0,
C
Christoph Hellwig 已提交
1414
			&result);
1415
	if (status < 0)
C
Christoph Hellwig 已提交
1416 1417
		return status;

1418 1419 1420 1421 1422 1423
	/*
	 * Degraded controllers might return an error when setting the queue
	 * count.  We still want to be able to bring them online and offer
	 * access to the admin queue, as that might be only way to fix them up.
	 */
	if (status > 0) {
1424
		dev_err(ctrl->device, "Could not set queue count (%d)\n", status);
1425 1426 1427 1428 1429 1430
		*count = 0;
	} else {
		nr_io_queues = min(result & 0xffff, result >> 16) + 1;
		*count = min(*count, nr_io_queues);
	}

C
Christoph Hellwig 已提交
1431 1432
	return 0;
}
1433
EXPORT_SYMBOL_GPL(nvme_set_queue_count);
C
Christoph Hellwig 已提交
1434

1435
#define NVME_AEN_SUPPORTED \
1436 1437
	(NVME_AEN_CFG_NS_ATTR | NVME_AEN_CFG_FW_ACT | \
	 NVME_AEN_CFG_ANA_CHANGE | NVME_AEN_CFG_DISC_CHANGE)
1438 1439 1440

static void nvme_enable_aen(struct nvme_ctrl *ctrl)
{
1441
	u32 result, supported_aens = ctrl->oaes & NVME_AEN_SUPPORTED;
1442 1443
	int status;

1444 1445 1446 1447 1448
	if (!supported_aens)
		return;

	status = nvme_set_features(ctrl, NVME_FEAT_ASYNC_EVENT, supported_aens,
			NULL, 0, &result);
1449 1450
	if (status)
		dev_warn(ctrl->device, "Failed to configure AEN (cfg %x)\n",
1451
			 supported_aens);
1452 1453

	queue_work(nvme_wq, &ctrl->async_event_work);
1454 1455
}

1456 1457 1458 1459
/*
 * Issue ioctl requests on the first available path.  Note that unlike normal
 * block layer requests we will not retry failed request on another controller.
 */
K
Keith Busch 已提交
1460
struct nvme_ns *nvme_get_ns_from_disk(struct gendisk *disk,
1461
		struct nvme_ns_head **head, int *srcu_idx)
1462
{
1463 1464
#ifdef CONFIG_NVME_MULTIPATH
	if (disk->fops == &nvme_ns_head_ops) {
1465 1466
		struct nvme_ns *ns;

1467 1468
		*head = disk->private_data;
		*srcu_idx = srcu_read_lock(&(*head)->srcu);
1469 1470 1471 1472
		ns = nvme_find_path(*head);
		if (!ns)
			srcu_read_unlock(&(*head)->srcu, *srcu_idx);
		return ns;
1473 1474 1475 1476 1477 1478
	}
#endif
	*head = NULL;
	*srcu_idx = -1;
	return disk->private_data;
}
1479

K
Keith Busch 已提交
1480
void nvme_put_ns_from_disk(struct nvme_ns_head *head, int idx)
1481 1482 1483 1484
{
	if (head)
		srcu_read_unlock(&head->srcu, idx);
}
1485 1486 1487

static int nvme_open(struct block_device *bdev, fmode_t mode)
{
C
Christoph Hellwig 已提交
1488 1489
	struct nvme_ns *ns = bdev->bd_disk->private_data;

1490
	/* should never be called due to GENHD_FL_HIDDEN */
1491
	if (WARN_ON_ONCE(nvme_ns_head_multipath(ns->head)))
1492
		goto fail;
C
Christoph Hellwig 已提交
1493
	if (!kref_get_unless_zero(&ns->kref))
1494 1495 1496 1497
		goto fail;
	if (!try_module_get(ns->ctrl->ops->module))
		goto fail_put_ns;

C
Christoph Hellwig 已提交
1498
	return 0;
1499 1500 1501 1502 1503

fail_put_ns:
	nvme_put_ns(ns);
fail:
	return -ENXIO;
1504 1505 1506 1507
}

static void nvme_release(struct gendisk *disk, fmode_t mode)
{
1508 1509 1510 1511
	struct nvme_ns *ns = disk->private_data;

	module_put(ns->ctrl->ops->module);
	nvme_put_ns(ns);
1512 1513
}

1514
int nvme_getgeo(struct block_device *bdev, struct hd_geometry *geo)
1515 1516 1517 1518 1519 1520 1521 1522 1523
{
	/* some standard values */
	geo->heads = 1 << 6;
	geo->sectors = 1 << 5;
	geo->cylinders = get_capacity(bdev->bd_disk) >> 11;
	return 0;
}

#ifdef CONFIG_BLK_DEV_INTEGRITY
1524 1525
static void nvme_init_integrity(struct gendisk *disk, u16 ms, u8 pi_type,
				u32 max_integrity_segments)
1526 1527 1528
{
	struct blk_integrity integrity;

1529
	memset(&integrity, 0, sizeof(integrity));
1530
	switch (pi_type) {
1531 1532
	case NVME_NS_DPS_PI_TYPE3:
		integrity.profile = &t10_pi_type3_crc;
1533 1534
		integrity.tag_size = sizeof(u16) + sizeof(u32);
		integrity.flags |= BLK_INTEGRITY_DEVICE_CAPABLE;
1535 1536 1537 1538
		break;
	case NVME_NS_DPS_PI_TYPE1:
	case NVME_NS_DPS_PI_TYPE2:
		integrity.profile = &t10_pi_type1_crc;
1539 1540
		integrity.tag_size = sizeof(u16);
		integrity.flags |= BLK_INTEGRITY_DEVICE_CAPABLE;
1541 1542 1543 1544 1545
		break;
	default:
		integrity.profile = NULL;
		break;
	}
1546 1547
	integrity.tuple_size = ms;
	blk_integrity_register(disk, &integrity);
1548
	blk_queue_max_integrity_segments(disk->queue, max_integrity_segments);
1549 1550
}
#else
1551 1552
static void nvme_init_integrity(struct gendisk *disk, u16 ms, u8 pi_type,
				u32 max_integrity_segments)
1553 1554 1555 1556
{
}
#endif /* CONFIG_BLK_DEV_INTEGRITY */

1557
static void nvme_config_discard(struct gendisk *disk, struct nvme_ns *ns)
1558
{
1559
	struct nvme_ctrl *ctrl = ns->ctrl;
1560
	struct request_queue *queue = disk->queue;
1561 1562
	u32 size = queue_logical_block_size(queue);

1563
	if (ctrl->max_discard_sectors == 0) {
1564 1565 1566 1567 1568 1569
		blk_queue_flag_clear(QUEUE_FLAG_DISCARD, queue);
		return;
	}

	if (ctrl->nr_streams && ns->sws && ns->sgs)
		size *= ns->sws * ns->sgs;
1570

1571 1572 1573
	BUILD_BUG_ON(PAGE_SIZE / sizeof(struct nvme_dsm_range) <
			NVME_DSM_MAX_RANGES);

1574
	queue->limits.discard_alignment = 0;
1575
	queue->limits.discard_granularity = size;
1576

1577 1578 1579 1580
	/* If discard is already enabled, don't reset queue limits */
	if (blk_queue_flag_test_and_set(QUEUE_FLAG_DISCARD, queue))
		return;

1581 1582
	blk_queue_max_discard_sectors(queue, ctrl->max_discard_sectors);
	blk_queue_max_discard_segments(queue, ctrl->max_discard_segments);
1583 1584

	if (ctrl->quirks & NVME_QUIRK_DEALLOCATE_ZEROES)
1585
		blk_queue_max_write_zeroes_sectors(queue, UINT_MAX);
1586 1587
}

C
Christoph Hellwig 已提交
1588 1589 1590 1591 1592 1593 1594
static bool nvme_ns_ids_valid(struct nvme_ns_ids *ids)
{
	return !uuid_is_null(&ids->uuid) ||
		memchr_inv(ids->nguid, 0, sizeof(ids->nguid)) ||
		memchr_inv(ids->eui64, 0, sizeof(ids->eui64));
}

1595 1596 1597 1598
static bool nvme_ns_ids_equal(struct nvme_ns_ids *a, struct nvme_ns_ids *b)
{
	return uuid_equal(&a->uuid, &b->uuid) &&
		memcmp(&a->nguid, &b->nguid, sizeof(a->nguid)) == 0 &&
1599 1600
		memcmp(&a->eui64, &b->eui64, sizeof(a->eui64)) == 0 &&
		a->csi == b->csi;
1601 1602
}

K
Keith Busch 已提交
1603 1604
static int nvme_setup_streams_ns(struct nvme_ctrl *ctrl, struct nvme_ns *ns,
				 u32 *phys_bs, u32 *io_opt)
1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619
{
	struct streams_directive_params s;
	int ret;

	if (!ctrl->nr_streams)
		return 0;

	ret = nvme_get_stream_params(ctrl, &s, ns->head->ns_id);
	if (ret)
		return ret;

	ns->sws = le32_to_cpu(s.sws);
	ns->sgs = le16_to_cpu(s.sgs);

	if (ns->sws) {
K
Keith Busch 已提交
1620
		*phys_bs = ns->sws * (1 << ns->lba_shift);
1621
		if (ns->sgs)
K
Keith Busch 已提交
1622
			*io_opt = *phys_bs * ns->sgs;
1623 1624 1625 1626 1627
	}

	return 0;
}

1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671
static int nvme_configure_metadata(struct nvme_ns *ns, struct nvme_id_ns *id)
{
	struct nvme_ctrl *ctrl = ns->ctrl;

	/*
	 * The PI implementation requires the metadata size to be equal to the
	 * t10 pi tuple size.
	 */
	ns->ms = le16_to_cpu(id->lbaf[id->flbas & NVME_NS_FLBAS_LBA_MASK].ms);
	if (ns->ms == sizeof(struct t10_pi_tuple))
		ns->pi_type = id->dps & NVME_NS_DPS_PI_MASK;
	else
		ns->pi_type = 0;

	ns->features &= ~(NVME_NS_METADATA_SUPPORTED | NVME_NS_EXT_LBAS);
	if (!ns->ms || !(ctrl->ops->flags & NVME_F_METADATA_SUPPORTED))
		return 0;
	if (ctrl->ops->flags & NVME_F_FABRICS) {
		/*
		 * The NVMe over Fabrics specification only supports metadata as
		 * part of the extended data LBA.  We rely on HCA/HBA support to
		 * remap the separate metadata buffer from the block layer.
		 */
		if (WARN_ON_ONCE(!(id->flbas & NVME_NS_FLBAS_META_EXT)))
			return -EINVAL;
		if (ctrl->max_integrity_segments)
			ns->features |=
				(NVME_NS_METADATA_SUPPORTED | NVME_NS_EXT_LBAS);
	} else {
		/*
		 * For PCIe controllers, we can't easily remap the separate
		 * metadata buffer from the block layer and thus require a
		 * separate metadata buffer for block layer metadata/PI support.
		 * We allow extended LBAs for the passthrough interface, though.
		 */
		if (id->flbas & NVME_NS_FLBAS_META_EXT)
			ns->features |= NVME_NS_EXT_LBAS;
		else
			ns->features |= NVME_NS_METADATA_SUPPORTED;
	}

	return 0;
}

1672 1673 1674
static void nvme_set_queue_limits(struct nvme_ctrl *ctrl,
		struct request_queue *q)
{
1675
	bool vwc = ctrl->vwc & NVME_CTRL_VWC_PRESENT;
1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689

	if (ctrl->max_hw_sectors) {
		u32 max_segments =
			(ctrl->max_hw_sectors / (NVME_CTRL_PAGE_SIZE >> 9)) + 1;

		max_segments = min_not_zero(max_segments, ctrl->max_segments);
		blk_queue_max_hw_sectors(q, ctrl->max_hw_sectors);
		blk_queue_max_segments(q, min_t(u32, max_segments, USHRT_MAX));
	}
	blk_queue_virt_boundary(q, NVME_CTRL_PAGE_SIZE - 1);
	blk_queue_dma_alignment(q, 7);
	blk_queue_write_cache(q, vwc, vwc);
}

1690 1691 1692
static void nvme_update_disk_info(struct gendisk *disk,
		struct nvme_ns *ns, struct nvme_id_ns *id)
{
1693
	sector_t capacity = nvme_lba_to_sect(ns, le64_to_cpu(id->nsze));
1694
	unsigned short bs = 1 << ns->lba_shift;
D
Damien Le Moal 已提交
1695
	u32 atomic_bs, phys_bs, io_opt = 0;
1696

1697 1698 1699 1700
	/*
	 * The block layer can't support LBA sizes larger than the page size
	 * yet, so catch this early and don't allow block I/O.
	 */
1701
	if (ns->lba_shift > PAGE_SHIFT) {
1702
		capacity = 0;
1703 1704
		bs = (1 << 9);
	}
1705

1706 1707
	blk_integrity_unregister(disk);

D
Damien Le Moal 已提交
1708
	atomic_bs = phys_bs = bs;
K
Keith Busch 已提交
1709
	nvme_setup_streams_ns(ns->ctrl, ns, &phys_bs, &io_opt);
1710 1711 1712 1713 1714 1715
	if (id->nabo == 0) {
		/*
		 * Bit 1 indicates whether NAWUPF is defined for this namespace
		 * and whether it should be used instead of AWUPF. If NAWUPF ==
		 * 0 then AWUPF must be used instead.
		 */
1716
		if (id->nsfeat & NVME_NS_FEAT_ATOMICS && id->nawupf)
1717 1718 1719 1720
			atomic_bs = (1 + le16_to_cpu(id->nawupf)) * bs;
		else
			atomic_bs = (1 + ns->ctrl->subsys->awupf) * bs;
	}
K
Keith Busch 已提交
1721

1722
	if (id->nsfeat & NVME_NS_FEAT_IO_OPT) {
1723
		/* NPWG = Namespace Preferred Write Granularity */
K
Keith Busch 已提交
1724
		phys_bs = bs * (1 + le16_to_cpu(id->npwg));
1725
		/* NOWS = Namespace Optimal Write Size */
K
Keith Busch 已提交
1726
		io_opt = bs * (1 + le16_to_cpu(id->nows));
1727 1728
	}

1729
	blk_queue_logical_block_size(disk->queue, bs);
1730 1731 1732 1733 1734 1735 1736 1737
	/*
	 * Linux filesystems assume writing a single physical block is
	 * an atomic operation. Hence limit the physical block size to the
	 * value of the Atomic Write Unit Power Fail parameter.
	 */
	blk_queue_physical_block_size(disk->queue, min(phys_bs, atomic_bs));
	blk_queue_io_min(disk->queue, phys_bs);
	blk_queue_io_opt(disk->queue, io_opt);
1738

1739 1740 1741 1742 1743 1744 1745 1746 1747
	/*
	 * Register a metadata profile for PI, or the plain non-integrity NVMe
	 * metadata masquerading as Type 0 if supported, otherwise reject block
	 * I/O to namespaces with metadata except when the namespace supports
	 * PI, as it can strip/insert in that case.
	 */
	if (ns->ms) {
		if (IS_ENABLED(CONFIG_BLK_DEV_INTEGRITY) &&
		    (ns->features & NVME_NS_METADATA_SUPPORTED))
1748 1749
			nvme_init_integrity(disk, ns->ms, ns->pi_type,
					    ns->ctrl->max_integrity_segments);
1750 1751 1752 1753
		else if (!nvme_ns_has_pi(ns))
			capacity = 0;
	}

1754
	set_capacity_and_notify(disk, capacity);
1755

1756
	nvme_config_discard(disk, ns);
1757 1758
	blk_queue_max_write_zeroes_sectors(disk->queue,
					   ns->ctrl->max_zeroes_sectors);
1759

1760 1761
	set_disk_ro(disk, (id->nsattr & NVME_NS_ATTR_RO) ||
		test_bit(NVME_NS_FORCE_RO, &ns->flags));
1762 1763
}

1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800
static inline bool nvme_first_scan(struct gendisk *disk)
{
	/* nvme_alloc_ns() scans the disk prior to adding it */
	return !(disk->flags & GENHD_FL_UP);
}

static void nvme_set_chunk_sectors(struct nvme_ns *ns, struct nvme_id_ns *id)
{
	struct nvme_ctrl *ctrl = ns->ctrl;
	u32 iob;

	if ((ctrl->quirks & NVME_QUIRK_STRIPE_SIZE) &&
	    is_power_of_2(ctrl->max_hw_sectors))
		iob = ctrl->max_hw_sectors;
	else
		iob = nvme_lba_to_sect(ns, le16_to_cpu(id->noiob));

	if (!iob)
		return;

	if (!is_power_of_2(iob)) {
		if (nvme_first_scan(ns->disk))
			pr_warn("%s: ignoring unaligned IO boundary:%u\n",
				ns->disk->disk_name, iob);
		return;
	}

	if (blk_queue_is_zoned(ns->disk->queue)) {
		if (nvme_first_scan(ns->disk))
			pr_warn("%s: ignoring zoned namespace IO boundary\n",
				ns->disk->disk_name);
		return;
	}

	blk_queue_chunk_sectors(ns->queue, iob);
}

1801
static int nvme_update_ns_info(struct nvme_ns *ns, struct nvme_id_ns *id)
1802
{
K
Keith Busch 已提交
1803 1804
	unsigned lbaf = id->flbas & NVME_NS_FLBAS_LBA_MASK;
	int ret;
1805

1806
	blk_mq_freeze_queue(ns->disk->queue);
K
Keith Busch 已提交
1807
	ns->lba_shift = id->lbaf[lbaf].ds;
1808
	nvme_set_queue_limits(ns->ctrl, ns->queue);
1809

1810 1811 1812 1813 1814 1815
	ret = nvme_configure_metadata(ns, id);
	if (ret)
		goto out_unfreeze;
	nvme_set_chunk_sectors(ns, id);
	nvme_update_disk_info(ns->disk, ns, id);

1816
	if (ns->head->ids.csi == NVME_CSI_ZNS) {
1817
		ret = nvme_update_zone_info(ns, lbaf);
1818
		if (ret)
1819
			goto out_unfreeze;
1820 1821
	}

1822
	blk_mq_unfreeze_queue(ns->disk->queue);
1823

1824 1825
	if (blk_queue_is_zoned(ns->queue)) {
		ret = nvme_revalidate_zones(ns);
1826
		if (ret && !nvme_first_scan(ns->disk))
1827
			return ret;
1828 1829
	}

1830
	if (nvme_ns_head_multipath(ns->head)) {
1831
		blk_mq_freeze_queue(ns->head->disk->queue);
1832
		nvme_update_disk_info(ns->head->disk, ns, id);
1833 1834
		blk_stack_limits(&ns->head->disk->queue->limits,
				 &ns->queue->limits, 0);
1835
		blk_queue_update_readahead(ns->head->disk->queue);
1836
		blk_mq_unfreeze_queue(ns->head->disk->queue);
1837
	}
1838
	return 0;
1839

1840 1841
out_unfreeze:
	blk_mq_unfreeze_queue(ns->disk->queue);
K
Keith Busch 已提交
1842 1843 1844
	return ret;
}

1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867
static char nvme_pr_type(enum pr_type type)
{
	switch (type) {
	case PR_WRITE_EXCLUSIVE:
		return 1;
	case PR_EXCLUSIVE_ACCESS:
		return 2;
	case PR_WRITE_EXCLUSIVE_REG_ONLY:
		return 3;
	case PR_EXCLUSIVE_ACCESS_REG_ONLY:
		return 4;
	case PR_WRITE_EXCLUSIVE_ALL_REGS:
		return 5;
	case PR_EXCLUSIVE_ACCESS_ALL_REGS:
		return 6;
	default:
		return 0;
	}
};

static int nvme_pr_command(struct block_device *bdev, u32 cdw10,
				u64 key, u64 sa_key, u8 op)
{
1868 1869
	struct nvme_ns_head *head = NULL;
	struct nvme_ns *ns;
1870
	struct nvme_command c;
1871
	int srcu_idx, ret;
1872 1873
	u8 data[16] = { 0, };

1874 1875 1876 1877
	ns = nvme_get_ns_from_disk(bdev->bd_disk, &head, &srcu_idx);
	if (unlikely(!ns))
		return -EWOULDBLOCK;

1878 1879 1880 1881 1882
	put_unaligned_le64(key, &data[0]);
	put_unaligned_le64(sa_key, &data[8]);

	memset(&c, 0, sizeof(c));
	c.common.opcode = op;
1883
	c.common.nsid = cpu_to_le32(ns->head->ns_id);
1884
	c.common.cdw10 = cpu_to_le32(cdw10);
1885

1886
	ret = nvme_submit_sync_cmd(ns->queue, &c, data, 16);
1887 1888
	nvme_put_ns_from_disk(head, srcu_idx);
	return ret;
1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920
}

static int nvme_pr_register(struct block_device *bdev, u64 old,
		u64 new, unsigned flags)
{
	u32 cdw10;

	if (flags & ~PR_FL_IGNORE_KEY)
		return -EOPNOTSUPP;

	cdw10 = old ? 2 : 0;
	cdw10 |= (flags & PR_FL_IGNORE_KEY) ? 1 << 3 : 0;
	cdw10 |= (1 << 30) | (1 << 31); /* PTPL=1 */
	return nvme_pr_command(bdev, cdw10, old, new, nvme_cmd_resv_register);
}

static int nvme_pr_reserve(struct block_device *bdev, u64 key,
		enum pr_type type, unsigned flags)
{
	u32 cdw10;

	if (flags & ~PR_FL_IGNORE_KEY)
		return -EOPNOTSUPP;

	cdw10 = nvme_pr_type(type) << 8;
	cdw10 |= ((flags & PR_FL_IGNORE_KEY) ? 1 << 3 : 0);
	return nvme_pr_command(bdev, cdw10, key, 0, nvme_cmd_resv_acquire);
}

static int nvme_pr_preempt(struct block_device *bdev, u64 old, u64 new,
		enum pr_type type, bool abort)
{
1921
	u32 cdw10 = nvme_pr_type(type) << 8 | (abort ? 2 : 1);
1922

1923 1924 1925 1926 1927
	return nvme_pr_command(bdev, cdw10, old, new, nvme_cmd_resv_acquire);
}

static int nvme_pr_clear(struct block_device *bdev, u64 key)
{
1928
	u32 cdw10 = 1 | (key ? 1 << 3 : 0);
1929

1930 1931 1932 1933 1934
	return nvme_pr_command(bdev, cdw10, key, 0, nvme_cmd_resv_register);
}

static int nvme_pr_release(struct block_device *bdev, u64 key, enum pr_type type)
{
1935
	u32 cdw10 = nvme_pr_type(type) << 8 | (key ? 1 << 3 : 0);
1936

1937 1938 1939
	return nvme_pr_command(bdev, cdw10, key, 0, nvme_cmd_resv_release);
}

1940
const struct pr_ops nvme_pr_ops = {
1941 1942 1943 1944 1945 1946 1947
	.pr_register	= nvme_pr_register,
	.pr_reserve	= nvme_pr_reserve,
	.pr_release	= nvme_pr_release,
	.pr_preempt	= nvme_pr_preempt,
	.pr_clear	= nvme_pr_clear,
};

1948
#ifdef CONFIG_BLK_SED_OPAL
1949 1950
int nvme_sec_submit(void *data, u16 spsp, u8 secp, void *buffer, size_t len,
		bool send)
1951
{
1952
	struct nvme_ctrl *ctrl = data;
1953 1954 1955 1956 1957 1958 1959 1960
	struct nvme_command cmd;

	memset(&cmd, 0, sizeof(cmd));
	if (send)
		cmd.common.opcode = nvme_admin_security_send;
	else
		cmd.common.opcode = nvme_admin_security_recv;
	cmd.common.nsid = 0;
1961 1962
	cmd.common.cdw10 = cpu_to_le32(((u32)secp) << 24 | ((u32)spsp) << 8);
	cmd.common.cdw11 = cpu_to_le32(len);
1963

1964 1965
	return __nvme_submit_sync_cmd(ctrl->admin_q, &cmd, NULL, buffer, len, 0,
			NVME_QID_ANY, 1, 0, false);
1966 1967 1968 1969
}
EXPORT_SYMBOL_GPL(nvme_sec_submit);
#endif /* CONFIG_BLK_SED_OPAL */

J
Javier González 已提交
1970
static const struct block_device_operations nvme_bdev_ops = {
1971 1972 1973 1974 1975
	.owner		= THIS_MODULE,
	.ioctl		= nvme_ioctl,
	.open		= nvme_open,
	.release	= nvme_release,
	.getgeo		= nvme_getgeo,
K
Keith Busch 已提交
1976
	.report_zones	= nvme_report_zones,
1977 1978 1979
	.pr_ops		= &nvme_pr_ops,
};

1980
#ifdef CONFIG_NVME_MULTIPATH
1981
struct nvme_ctrl *nvme_find_get_live_ctrl(struct nvme_subsystem *subsys)
1982
{
1983
	struct nvme_ctrl *ctrl;
1984 1985
	int ret;

1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999
	ret = mutex_lock_killable(&nvme_subsystems_lock);
	if (ret)
		return ERR_PTR(ret);
	list_for_each_entry(ctrl, &subsys->ctrls, subsys_entry) {
		if (ctrl->state == NVME_CTRL_LIVE)
			goto found;
	}
	mutex_unlock(&nvme_subsystems_lock);
	return ERR_PTR(-EWOULDBLOCK);
found:
	nvme_get_ctrl(ctrl);
	mutex_unlock(&nvme_subsystems_lock);
	return ctrl;
}
2000 2001
#endif /* CONFIG_NVME_MULTIPATH */

2002 2003 2004 2005 2006 2007 2008 2009
static int nvme_wait_ready(struct nvme_ctrl *ctrl, u64 cap, bool enabled)
{
	unsigned long timeout =
		((NVME_CAP_TIMEOUT(cap) + 1) * HZ / 2) + jiffies;
	u32 csts, bit = enabled ? NVME_CSTS_RDY : 0;
	int ret;

	while ((ret = ctrl->ops->reg_read32(ctrl, NVME_REG_CSTS, &csts)) == 0) {
K
Keith Busch 已提交
2010 2011
		if (csts == ~0)
			return -ENODEV;
2012 2013 2014
		if ((csts & NVME_CSTS_RDY) == bit)
			break;

2015
		usleep_range(1000, 2000);
2016 2017 2018
		if (fatal_signal_pending(current))
			return -EINTR;
		if (time_after(jiffies, timeout)) {
2019
			dev_err(ctrl->device,
2020 2021
				"Device not ready; aborting %s, CSTS=0x%x\n",
				enabled ? "initialisation" : "reset", csts);
2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034
			return -ENODEV;
		}
	}

	return ret;
}

/*
 * If the device has been passed off to us in an enabled state, just clear
 * the enabled bit.  The spec says we should set the 'shutdown notification
 * bits', but doing so may cause the device to complete commands to the
 * admin queue ... and we don't know what memory that might be pointing at!
 */
2035
int nvme_disable_ctrl(struct nvme_ctrl *ctrl)
2036 2037 2038 2039 2040 2041 2042 2043 2044
{
	int ret;

	ctrl->ctrl_config &= ~NVME_CC_SHN_MASK;
	ctrl->ctrl_config &= ~NVME_CC_ENABLE;

	ret = ctrl->ops->reg_write32(ctrl, NVME_REG_CC, ctrl->ctrl_config);
	if (ret)
		return ret;
2045

2046
	if (ctrl->quirks & NVME_QUIRK_DELAY_BEFORE_CHK_RDY)
2047 2048
		msleep(NVME_QUIRK_DELAY_AMOUNT);

2049
	return nvme_wait_ready(ctrl, ctrl->cap, false);
2050
}
2051
EXPORT_SYMBOL_GPL(nvme_disable_ctrl);
2052

2053
int nvme_enable_ctrl(struct nvme_ctrl *ctrl)
2054
{
2055
	unsigned dev_page_min;
2056 2057
	int ret;

2058 2059 2060 2061 2062 2063 2064
	ret = ctrl->ops->reg_read64(ctrl, NVME_REG_CAP, &ctrl->cap);
	if (ret) {
		dev_err(ctrl->device, "Reading CAP failed (%d)\n", ret);
		return ret;
	}
	dev_page_min = NVME_CAP_MPSMIN(ctrl->cap) + 12;

2065
	if (NVME_CTRL_PAGE_SHIFT < dev_page_min) {
2066
		dev_err(ctrl->device,
2067
			"Minimum device page size %u too large for host (%u)\n",
2068
			1 << dev_page_min, 1 << NVME_CTRL_PAGE_SHIFT);
2069 2070 2071
		return -ENODEV;
	}

2072 2073 2074 2075
	if (NVME_CAP_CSS(ctrl->cap) & NVME_CAP_CSS_CSI)
		ctrl->ctrl_config = NVME_CC_CSS_CSI;
	else
		ctrl->ctrl_config = NVME_CC_CSS_NVM;
2076
	ctrl->ctrl_config |= (NVME_CTRL_PAGE_SHIFT - 12) << NVME_CC_MPS_SHIFT;
2077
	ctrl->ctrl_config |= NVME_CC_AMS_RR | NVME_CC_SHN_NONE;
2078 2079 2080 2081 2082 2083
	ctrl->ctrl_config |= NVME_CC_IOSQES | NVME_CC_IOCQES;
	ctrl->ctrl_config |= NVME_CC_ENABLE;

	ret = ctrl->ops->reg_write32(ctrl, NVME_REG_CC, ctrl->ctrl_config);
	if (ret)
		return ret;
2084
	return nvme_wait_ready(ctrl, ctrl->cap, true);
2085
}
2086
EXPORT_SYMBOL_GPL(nvme_enable_ctrl);
2087 2088 2089

int nvme_shutdown_ctrl(struct nvme_ctrl *ctrl)
{
2090
	unsigned long timeout = jiffies + (ctrl->shutdown_timeout * HZ);
2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108
	u32 csts;
	int ret;

	ctrl->ctrl_config &= ~NVME_CC_SHN_MASK;
	ctrl->ctrl_config |= NVME_CC_SHN_NORMAL;

	ret = ctrl->ops->reg_write32(ctrl, NVME_REG_CC, ctrl->ctrl_config);
	if (ret)
		return ret;

	while ((ret = ctrl->ops->reg_read32(ctrl, NVME_REG_CSTS, &csts)) == 0) {
		if ((csts & NVME_CSTS_SHST_MASK) == NVME_CSTS_SHST_CMPLT)
			break;

		msleep(100);
		if (fatal_signal_pending(current))
			return -EINTR;
		if (time_after(jiffies, timeout)) {
2109
			dev_err(ctrl->device,
2110 2111 2112 2113 2114 2115 2116
				"Device shutdown incomplete; abort shutdown\n");
			return -ENODEV;
		}
	}

	return ret;
}
2117
EXPORT_SYMBOL_GPL(nvme_shutdown_ctrl);
2118

2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135
static int nvme_configure_timestamp(struct nvme_ctrl *ctrl)
{
	__le64 ts;
	int ret;

	if (!(ctrl->oncs & NVME_CTRL_ONCS_TIMESTAMP))
		return 0;

	ts = cpu_to_le64(ktime_to_ms(ktime_get_real()));
	ret = nvme_set_features(ctrl, NVME_FEAT_TIMESTAMP, 0, &ts, sizeof(ts),
			NULL);
	if (ret)
		dev_warn_once(ctrl->device,
			"could not set timestamp (%d)\n", ret);
	return ret;
}

2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155
static int nvme_configure_acre(struct nvme_ctrl *ctrl)
{
	struct nvme_feat_host_behavior *host;
	int ret;

	/* Don't bother enabling the feature if retry delay is not reported */
	if (!ctrl->crdt[0])
		return 0;

	host = kzalloc(sizeof(*host), GFP_KERNEL);
	if (!host)
		return 0;

	host->acre = NVME_ENABLE_ACRE;
	ret = nvme_set_features(ctrl, NVME_FEAT_HOST_BEHAVIOR, 0,
				host, sizeof(*host), NULL);
	kfree(host);
	return ret;
}

2156
static int nvme_configure_apst(struct nvme_ctrl *ctrl)
2157 2158 2159 2160 2161 2162 2163 2164
{
	/*
	 * APST (Autonomous Power State Transition) lets us program a
	 * table of power state transitions that the controller will
	 * perform automatically.  We configure it with a simple
	 * heuristic: we are willing to spend at most 2% of the time
	 * transitioning between power states.  Therefore, when running
	 * in any given state, we will enter the next lower-power
A
Andy Lutomirski 已提交
2165
	 * non-operational state after waiting 50 * (enlat + exlat)
2166
	 * microseconds, as long as that state's exit latency is under
2167 2168 2169 2170 2171 2172 2173 2174 2175
	 * the requested maximum latency.
	 *
	 * We will not autonomously enter any non-operational state for
	 * which the total latency exceeds ps_max_latency_us.  Users
	 * can set ps_max_latency_us to zero to turn off APST.
	 */

	unsigned apste;
	struct nvme_feat_auto_pst *table;
2176 2177
	u64 max_lat_us = 0;
	int max_ps = -1;
2178 2179 2180 2181 2182 2183 2184
	int ret;

	/*
	 * If APST isn't supported or if we haven't been initialized yet,
	 * then don't do anything.
	 */
	if (!ctrl->apsta)
2185
		return 0;
2186 2187 2188

	if (ctrl->npss > 31) {
		dev_warn(ctrl->device, "NPSS is invalid; not using APST\n");
2189
		return 0;
2190 2191 2192 2193
	}

	table = kzalloc(sizeof(*table), GFP_KERNEL);
	if (!table)
2194
		return 0;
2195

2196
	if (!ctrl->apst_enabled || ctrl->ps_max_latency_us == 0) {
2197 2198
		/* Turn off APST. */
		apste = 0;
2199
		dev_dbg(ctrl->device, "APST disabled\n");
2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210
	} else {
		__le64 target = cpu_to_le64(0);
		int state;

		/*
		 * Walk through all states from lowest- to highest-power.
		 * According to the spec, lower-numbered states use more
		 * power.  NPSS, despite the name, is the index of the
		 * lowest-power state, not the number of states.
		 */
		for (state = (int)ctrl->npss; state >= 0; state--) {
2211
			u64 total_latency_us, exit_latency_us, transition_ms;
2212 2213 2214 2215

			if (target)
				table->entries[state] = target;

2216 2217 2218 2219 2220 2221 2222 2223
			/*
			 * Don't allow transitions to the deepest state
			 * if it's quirked off.
			 */
			if (state == ctrl->npss &&
			    (ctrl->quirks & NVME_QUIRK_NO_DEEPEST_PS))
				continue;

2224 2225 2226 2227 2228 2229 2230 2231
			/*
			 * Is this state a useful non-operational state for
			 * higher-power states to autonomously transition to?
			 */
			if (!(ctrl->psd[state].flags &
			      NVME_PS_FLAGS_NON_OP_STATE))
				continue;

2232 2233 2234
			exit_latency_us =
				(u64)le32_to_cpu(ctrl->psd[state].exit_lat);
			if (exit_latency_us > ctrl->ps_max_latency_us)
2235 2236
				continue;

2237 2238 2239 2240
			total_latency_us =
				exit_latency_us +
				le32_to_cpu(ctrl->psd[state].entry_lat);

2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251
			/*
			 * This state is good.  Use it as the APST idle
			 * target for higher power states.
			 */
			transition_ms = total_latency_us + 19;
			do_div(transition_ms, 20);
			if (transition_ms > (1 << 24) - 1)
				transition_ms = (1 << 24) - 1;

			target = cpu_to_le64((state << 3) |
					     (transition_ms << 8));
2252 2253 2254 2255 2256 2257

			if (max_ps == -1)
				max_ps = state;

			if (total_latency_us > max_lat_us)
				max_lat_us = total_latency_us;
2258 2259 2260
		}

		apste = 1;
2261 2262 2263 2264 2265 2266 2267

		if (max_ps == -1) {
			dev_dbg(ctrl->device, "APST enabled but no non-operational states are available\n");
		} else {
			dev_dbg(ctrl->device, "APST enabled: max PS = %d, max round-trip latency = %lluus, table = %*phN\n",
				max_ps, max_lat_us, (int)sizeof(*table), table);
		}
2268 2269 2270 2271 2272 2273 2274 2275
	}

	ret = nvme_set_features(ctrl, NVME_FEAT_AUTO_PST, apste,
				table, sizeof(*table), NULL);
	if (ret)
		dev_err(ctrl->device, "failed to set APST feature (%d)\n", ret);

	kfree(table);
2276
	return ret;
2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299
}

static void nvme_set_latency_tolerance(struct device *dev, s32 val)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	u64 latency;

	switch (val) {
	case PM_QOS_LATENCY_TOLERANCE_NO_CONSTRAINT:
	case PM_QOS_LATENCY_ANY:
		latency = U64_MAX;
		break;

	default:
		latency = val;
	}

	if (ctrl->ps_max_latency_us != latency) {
		ctrl->ps_max_latency_us = latency;
		nvme_configure_apst(ctrl);
	}
}

2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312
struct nvme_core_quirk_entry {
	/*
	 * NVMe model and firmware strings are padded with spaces.  For
	 * simplicity, strings in the quirk table are padded with NULLs
	 * instead.
	 */
	u16 vid;
	const char *mn;
	const char *fr;
	unsigned long quirks;
};

static const struct nvme_core_quirk_entry core_quirks[] = {
2313
	{
2314 2315 2316 2317 2318 2319
		/*
		 * This Toshiba device seems to die using any APST states.  See:
		 * https://bugs.launchpad.net/ubuntu/+source/linux/+bug/1678184/comments/11
		 */
		.vid = 0x1179,
		.mn = "THNSF5256GPUK TOSHIBA",
2320
		.quirks = NVME_QUIRK_NO_APST,
2321 2322 2323 2324 2325 2326 2327 2328 2329 2330
	},
	{
		/*
		 * This LiteON CL1-3D*-Q11 firmware version has a race
		 * condition associated with actions related to suspend to idle
		 * LiteON has resolved the problem in future firmware
		 */
		.vid = 0x14a4,
		.fr = "22301111",
		.quirks = NVME_QUIRK_SIMPLE_SUSPEND,
2331
	}
2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362
};

/* match is null-terminated but idstr is space-padded. */
static bool string_matches(const char *idstr, const char *match, size_t len)
{
	size_t matchlen;

	if (!match)
		return true;

	matchlen = strlen(match);
	WARN_ON_ONCE(matchlen > len);

	if (memcmp(idstr, match, matchlen))
		return false;

	for (; matchlen < len; matchlen++)
		if (idstr[matchlen] != ' ')
			return false;

	return true;
}

static bool quirk_matches(const struct nvme_id_ctrl *id,
			  const struct nvme_core_quirk_entry *q)
{
	return q->vid == le16_to_cpu(id->vid) &&
		string_matches(id->mn, q->mn, sizeof(id->mn)) &&
		string_matches(id->fr, q->fr, sizeof(id->fr));
}

C
Christoph Hellwig 已提交
2363 2364
static void nvme_init_subnqn(struct nvme_subsystem *subsys, struct nvme_ctrl *ctrl,
		struct nvme_id_ctrl *id)
2365 2366 2367 2368
{
	size_t nqnlen;
	int off;

2369 2370 2371 2372 2373 2374
	if(!(ctrl->quirks & NVME_QUIRK_IGNORE_DEV_SUBNQN)) {
		nqnlen = strnlen(id->subnqn, NVMF_NQN_SIZE);
		if (nqnlen > 0 && nqnlen < NVMF_NQN_SIZE) {
			strlcpy(subsys->subnqn, id->subnqn, NVMF_NQN_SIZE);
			return;
		}
2375

2376 2377 2378
		if (ctrl->vs >= NVME_VS(1, 2, 1))
			dev_warn(ctrl->device, "missing or invalid SUBNQN field.\n");
	}
2379 2380

	/* Generate a "fake" NQN per Figure 254 in NVMe 1.3 + ECN 001 */
C
Christoph Hellwig 已提交
2381
	off = snprintf(subsys->subnqn, NVMF_NQN_SIZE,
2382
			"nqn.2014.08.org.nvmexpress:%04x%04x",
2383
			le16_to_cpu(id->vid), le16_to_cpu(id->ssvid));
C
Christoph Hellwig 已提交
2384
	memcpy(subsys->subnqn + off, id->sn, sizeof(id->sn));
2385
	off += sizeof(id->sn);
C
Christoph Hellwig 已提交
2386
	memcpy(subsys->subnqn + off, id->mn, sizeof(id->mn));
2387
	off += sizeof(id->mn);
C
Christoph Hellwig 已提交
2388 2389 2390
	memset(subsys->subnqn + off, 0, sizeof(subsys->subnqn) - off);
}

2391
static void nvme_release_subsystem(struct device *dev)
C
Christoph Hellwig 已提交
2392
{
2393 2394 2395
	struct nvme_subsystem *subsys =
		container_of(dev, struct nvme_subsystem, dev);

2396 2397
	if (subsys->instance >= 0)
		ida_simple_remove(&nvme_instance_ida, subsys->instance);
C
Christoph Hellwig 已提交
2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409
	kfree(subsys);
}

static void nvme_destroy_subsystem(struct kref *ref)
{
	struct nvme_subsystem *subsys =
			container_of(ref, struct nvme_subsystem, ref);

	mutex_lock(&nvme_subsystems_lock);
	list_del(&subsys->entry);
	mutex_unlock(&nvme_subsystems_lock);

C
Christoph Hellwig 已提交
2410
	ida_destroy(&subsys->ns_ida);
C
Christoph Hellwig 已提交
2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425
	device_del(&subsys->dev);
	put_device(&subsys->dev);
}

static void nvme_put_subsystem(struct nvme_subsystem *subsys)
{
	kref_put(&subsys->ref, nvme_destroy_subsystem);
}

static struct nvme_subsystem *__nvme_find_get_subsystem(const char *subsysnqn)
{
	struct nvme_subsystem *subsys;

	lockdep_assert_held(&nvme_subsystems_lock);

2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436
	/*
	 * Fail matches for discovery subsystems. This results
	 * in each discovery controller bound to a unique subsystem.
	 * This avoids issues with validating controller values
	 * that can only be true when there is a single unique subsystem.
	 * There may be multiple and completely independent entities
	 * that provide discovery controllers.
	 */
	if (!strcmp(subsysnqn, NVME_DISC_SUBSYS_NAME))
		return NULL;

C
Christoph Hellwig 已提交
2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447
	list_for_each_entry(subsys, &nvme_subsystems, entry) {
		if (strcmp(subsys->subnqn, subsysnqn))
			continue;
		if (!kref_get_unless_zero(&subsys->ref))
			continue;
		return subsys;
	}

	return NULL;
}

2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458
#define SUBSYS_ATTR_RO(_name, _mode, _show)			\
	struct device_attribute subsys_attr_##_name = \
		__ATTR(_name, _mode, _show, NULL)

static ssize_t nvme_subsys_show_nqn(struct device *dev,
				    struct device_attribute *attr,
				    char *buf)
{
	struct nvme_subsystem *subsys =
		container_of(dev, struct nvme_subsystem, dev);

2459
	return sysfs_emit(buf, "%s\n", subsys->subnqn);
2460 2461 2462 2463 2464 2465 2466 2467 2468
}
static SUBSYS_ATTR_RO(subsysnqn, S_IRUGO, nvme_subsys_show_nqn);

#define nvme_subsys_show_str_function(field)				\
static ssize_t subsys_##field##_show(struct device *dev,		\
			    struct device_attribute *attr, char *buf)	\
{									\
	struct nvme_subsystem *subsys =					\
		container_of(dev, struct nvme_subsystem, dev);		\
2469 2470
	return sysfs_emit(buf, "%.*s\n",				\
			   (int)sizeof(subsys->field), subsys->field);	\
2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482
}									\
static SUBSYS_ATTR_RO(field, S_IRUGO, subsys_##field##_show);

nvme_subsys_show_str_function(model);
nvme_subsys_show_str_function(serial);
nvme_subsys_show_str_function(firmware_rev);

static struct attribute *nvme_subsys_attrs[] = {
	&subsys_attr_model.attr,
	&subsys_attr_serial.attr,
	&subsys_attr_firmware_rev.attr,
	&subsys_attr_subsysnqn.attr,
2483 2484 2485
#ifdef CONFIG_NVME_MULTIPATH
	&subsys_attr_iopolicy.attr,
#endif
2486 2487 2488
	NULL,
};

2489
static const struct attribute_group nvme_subsys_attrs_group = {
2490 2491 2492 2493 2494 2495 2496 2497
	.attrs = nvme_subsys_attrs,
};

static const struct attribute_group *nvme_subsys_attrs_groups[] = {
	&nvme_subsys_attrs_group,
	NULL,
};

2498 2499 2500 2501 2502
static inline bool nvme_discovery_ctrl(struct nvme_ctrl *ctrl)
{
	return ctrl->opts && ctrl->opts->discovery_nqn;
}

2503 2504
static bool nvme_validate_cntlid(struct nvme_subsystem *subsys,
		struct nvme_ctrl *ctrl, struct nvme_id_ctrl *id)
2505
{
2506
	struct nvme_ctrl *tmp;
2507

2508 2509
	lockdep_assert_held(&nvme_subsystems_lock);

2510
	list_for_each_entry(tmp, &subsys->ctrls, subsys_entry) {
2511
		if (nvme_state_terminal(tmp))
2512 2513 2514 2515 2516 2517 2518 2519
			continue;

		if (tmp->cntlid == ctrl->cntlid) {
			dev_err(ctrl->device,
				"Duplicate cntlid %u with %s, rejecting\n",
				ctrl->cntlid, dev_name(tmp->device));
			return false;
		}
2520

2521
		if ((id->cmic & NVME_CTRL_CMIC_MULTI_CTRL) ||
2522
		    nvme_discovery_ctrl(ctrl))
2523 2524 2525 2526 2527
			continue;

		dev_err(ctrl->device,
			"Subsystem does not support multiple controllers\n");
		return false;
2528 2529
	}

2530
	return true;
2531 2532
}

C
Christoph Hellwig 已提交
2533 2534 2535 2536 2537 2538 2539 2540
static int nvme_init_subsystem(struct nvme_ctrl *ctrl, struct nvme_id_ctrl *id)
{
	struct nvme_subsystem *subsys, *found;
	int ret;

	subsys = kzalloc(sizeof(*subsys), GFP_KERNEL);
	if (!subsys)
		return -ENOMEM;
2541 2542

	subsys->instance = -1;
C
Christoph Hellwig 已提交
2543 2544 2545
	mutex_init(&subsys->lock);
	kref_init(&subsys->ref);
	INIT_LIST_HEAD(&subsys->ctrls);
C
Christoph Hellwig 已提交
2546
	INIT_LIST_HEAD(&subsys->nsheads);
C
Christoph Hellwig 已提交
2547 2548 2549 2550 2551 2552
	nvme_init_subnqn(subsys, ctrl, id);
	memcpy(subsys->serial, id->sn, sizeof(subsys->serial));
	memcpy(subsys->model, id->mn, sizeof(subsys->model));
	memcpy(subsys->firmware_rev, id->fr, sizeof(subsys->firmware_rev));
	subsys->vendor_id = le16_to_cpu(id->vid);
	subsys->cmic = id->cmic;
2553
	subsys->awupf = le16_to_cpu(id->awupf);
2554 2555 2556
#ifdef CONFIG_NVME_MULTIPATH
	subsys->iopolicy = NVME_IOPOLICY_NUMA;
#endif
C
Christoph Hellwig 已提交
2557 2558 2559

	subsys->dev.class = nvme_subsys_class;
	subsys->dev.release = nvme_release_subsystem;
2560
	subsys->dev.groups = nvme_subsys_attrs_groups;
2561
	dev_set_name(&subsys->dev, "nvme-subsys%d", ctrl->instance);
C
Christoph Hellwig 已提交
2562 2563 2564 2565 2566
	device_initialize(&subsys->dev);

	mutex_lock(&nvme_subsystems_lock);
	found = __nvme_find_get_subsystem(subsys->subnqn);
	if (found) {
2567
		put_device(&subsys->dev);
C
Christoph Hellwig 已提交
2568
		subsys = found;
2569

2570
		if (!nvme_validate_cntlid(subsys, ctrl, id)) {
C
Christoph Hellwig 已提交
2571
			ret = -EINVAL;
2572
			goto out_put_subsystem;
C
Christoph Hellwig 已提交
2573 2574 2575 2576 2577 2578
		}
	} else {
		ret = device_add(&subsys->dev);
		if (ret) {
			dev_err(ctrl->device,
				"failed to register subsystem device.\n");
2579
			put_device(&subsys->dev);
C
Christoph Hellwig 已提交
2580 2581
			goto out_unlock;
		}
C
Christoph Hellwig 已提交
2582
		ida_init(&subsys->ns_ida);
C
Christoph Hellwig 已提交
2583 2584 2585
		list_add_tail(&subsys->entry, &nvme_subsystems);
	}

2586 2587 2588
	ret = sysfs_create_link(&subsys->dev.kobj, &ctrl->device->kobj,
				dev_name(ctrl->device));
	if (ret) {
C
Christoph Hellwig 已提交
2589 2590
		dev_err(ctrl->device,
			"failed to create sysfs link from subsystem.\n");
2591
		goto out_put_subsystem;
C
Christoph Hellwig 已提交
2592 2593
	}

2594 2595
	if (!found)
		subsys->instance = ctrl->instance;
2596
	ctrl->subsys = subsys;
C
Christoph Hellwig 已提交
2597
	list_add_tail(&ctrl->subsys_entry, &subsys->ctrls);
2598
	mutex_unlock(&nvme_subsystems_lock);
C
Christoph Hellwig 已提交
2599 2600
	return 0;

2601 2602
out_put_subsystem:
	nvme_put_subsystem(subsys);
C
Christoph Hellwig 已提交
2603 2604 2605
out_unlock:
	mutex_unlock(&nvme_subsystems_lock);
	return ret;
2606 2607
}

2608
int nvme_get_log(struct nvme_ctrl *ctrl, u32 nsid, u8 log_page, u8 lsp, u8 csi,
2609
		void *log, size_t size, u64 offset)
K
Keith Busch 已提交
2610 2611
{
	struct nvme_command c = { };
K
Keith Busch 已提交
2612
	u32 dwlen = nvme_bytes_to_numd(size);
2613 2614

	c.get_log_page.opcode = nvme_admin_get_log_page;
2615
	c.get_log_page.nsid = cpu_to_le32(nsid);
2616
	c.get_log_page.lid = log_page;
2617
	c.get_log_page.lsp = lsp;
2618 2619
	c.get_log_page.numdl = cpu_to_le16(dwlen & ((1 << 16) - 1));
	c.get_log_page.numdu = cpu_to_le16(dwlen >> 16);
2620 2621
	c.get_log_page.lpol = cpu_to_le32(lower_32_bits(offset));
	c.get_log_page.lpou = cpu_to_le32(upper_32_bits(offset));
2622
	c.get_log_page.csi = csi;
K
Keith Busch 已提交
2623 2624 2625 2626

	return nvme_submit_sync_cmd(ctrl->admin_q, &c, log, size);
}

2627 2628
static int nvme_get_effects_log(struct nvme_ctrl *ctrl, u8 csi,
				struct nvme_effects_log **log)
2629
{
2630
	struct nvme_effects_log	*cel = xa_load(&ctrl->cels, csi);
2631 2632
	int ret;

2633 2634
	if (cel)
		goto out;
2635

2636 2637 2638
	cel = kzalloc(sizeof(*cel), GFP_KERNEL);
	if (!cel)
		return -ENOMEM;
2639

2640
	ret = nvme_get_log(ctrl, 0x00, NVME_LOG_CMD_EFFECTS, 0, csi,
2641
			cel, sizeof(*cel), 0);
2642
	if (ret) {
2643 2644
		kfree(cel);
		return ret;
2645
	}
2646

2647
	xa_store(&ctrl->cels, csi, cel, GFP_KERNEL);
2648
out:
2649
	*log = cel;
2650
	return 0;
2651 2652
}

2653 2654
static inline u32 nvme_mps_to_sectors(struct nvme_ctrl *ctrl, u32 units)
{
2655
	u32 page_shift = NVME_CAP_MPSMIN(ctrl->cap) + 12, val;
2656

2657 2658 2659
	if (check_shl_overflow(1U, units + page_shift - 9, &val))
		return UINT_MAX;
	return val;
2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714
}

static int nvme_init_non_mdts_limits(struct nvme_ctrl *ctrl)
{
	struct nvme_command c = { };
	struct nvme_id_ctrl_nvm *id;
	int ret;

	if (ctrl->oncs & NVME_CTRL_ONCS_DSM) {
		ctrl->max_discard_sectors = UINT_MAX;
		ctrl->max_discard_segments = NVME_DSM_MAX_RANGES;
	} else {
		ctrl->max_discard_sectors = 0;
		ctrl->max_discard_segments = 0;
	}

	/*
	 * Even though NVMe spec explicitly states that MDTS is not applicable
	 * to the write-zeroes, we are cautious and limit the size to the
	 * controllers max_hw_sectors value, which is based on the MDTS field
	 * and possibly other limiting factors.
	 */
	if ((ctrl->oncs & NVME_CTRL_ONCS_WRITE_ZEROES) &&
	    !(ctrl->quirks & NVME_QUIRK_DISABLE_WRITE_ZEROES))
		ctrl->max_zeroes_sectors = ctrl->max_hw_sectors;
	else
		ctrl->max_zeroes_sectors = 0;

	if (nvme_ctrl_limited_cns(ctrl))
		return 0;

	id = kzalloc(sizeof(*id), GFP_KERNEL);
	if (!id)
		return 0;

	c.identify.opcode = nvme_admin_identify;
	c.identify.cns = NVME_ID_CNS_CS_CTRL;
	c.identify.csi = NVME_CSI_NVM;

	ret = nvme_submit_sync_cmd(ctrl->admin_q, &c, id, sizeof(*id));
	if (ret)
		goto free_data;

	if (id->dmrl)
		ctrl->max_discard_segments = id->dmrl;
	if (id->dmrsl)
		ctrl->max_discard_sectors = le32_to_cpu(id->dmrsl);
	if (id->wzsl)
		ctrl->max_zeroes_sectors = nvme_mps_to_sectors(ctrl, id->wzsl);

free_data:
	kfree(id);
	return ret;
}

2715
static int nvme_init_identify(struct nvme_ctrl *ctrl)
2716 2717
{
	struct nvme_id_ctrl *id;
2718
	u32 max_hw_sectors;
2719
	bool prev_apst_enabled;
2720
	int ret;
2721

2722 2723
	ret = nvme_identify_ctrl(ctrl, &id);
	if (ret) {
2724
		dev_err(ctrl->device, "Identify Controller failed (%d)\n", ret);
2725 2726 2727
		return -EIO;
	}

2728
	if (id->lpa & NVME_CTRL_LPA_CMD_EFFECTS_LOG) {
2729
		ret = nvme_get_effects_log(ctrl, NVME_CSI_NVM, &ctrl->effects);
2730
		if (ret < 0)
2731
			goto out_free;
2732
	}
2733

2734 2735 2736
	if (!(ctrl->ops->flags & NVME_F_FABRICS))
		ctrl->cntlid = le16_to_cpu(id->cntlid);

2737
	if (!ctrl->identified) {
2738
		unsigned int i;
C
Christoph Hellwig 已提交
2739 2740 2741 2742 2743

		ret = nvme_init_subsystem(ctrl, id);
		if (ret)
			goto out_free;

2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757
		/*
		 * Check for quirks.  Quirk can depend on firmware version,
		 * so, in principle, the set of quirks present can change
		 * across a reset.  As a possible future enhancement, we
		 * could re-scan for quirks every time we reinitialize
		 * the device, but we'd have to make sure that the driver
		 * behaves intelligently if the quirks change.
		 */
		for (i = 0; i < ARRAY_SIZE(core_quirks); i++) {
			if (quirk_matches(id, &core_quirks[i]))
				ctrl->quirks |= core_quirks[i].quirks;
		}
	}

2758
	if (force_apst && (ctrl->quirks & NVME_QUIRK_NO_DEEPEST_PS)) {
2759
		dev_warn(ctrl->device, "forcibly allowing all power states due to nvme_core.force_apst -- use at your own risk\n");
2760 2761 2762
		ctrl->quirks &= ~NVME_QUIRK_NO_DEEPEST_PS;
	}

2763 2764 2765 2766
	ctrl->crdt[0] = le16_to_cpu(id->crdt1);
	ctrl->crdt[1] = le16_to_cpu(id->crdt2);
	ctrl->crdt[2] = le16_to_cpu(id->crdt3);

2767
	ctrl->oacs = le16_to_cpu(id->oacs);
2768
	ctrl->oncs = le16_to_cpu(id->oncs);
2769
	ctrl->mtfa = le16_to_cpu(id->mtfa);
2770
	ctrl->oaes = le32_to_cpu(id->oaes);
2771 2772 2773
	ctrl->wctemp = le16_to_cpu(id->wctemp);
	ctrl->cctemp = le16_to_cpu(id->cctemp);

2774
	atomic_set(&ctrl->abort_limit, id->acl + 1);
2775 2776
	ctrl->vwc = id->vwc;
	if (id->mdts)
2777
		max_hw_sectors = nvme_mps_to_sectors(ctrl, id->mdts);
2778
	else
2779 2780 2781
		max_hw_sectors = UINT_MAX;
	ctrl->max_hw_sectors =
		min_not_zero(ctrl->max_hw_sectors, max_hw_sectors);
2782

2783
	nvme_set_queue_limits(ctrl, ctrl->admin_q);
2784
	ctrl->sgls = le32_to_cpu(id->sgls);
S
Sagi Grimberg 已提交
2785
	ctrl->kas = le16_to_cpu(id->kas);
C
Christoph Hellwig 已提交
2786
	ctrl->max_namespaces = le32_to_cpu(id->mnan);
S
Sagi Grimberg 已提交
2787
	ctrl->ctratt = le32_to_cpu(id->ctratt);
2788

2789 2790
	if (id->rtd3e) {
		/* us -> s */
2791
		u32 transition_time = le32_to_cpu(id->rtd3e) / USEC_PER_SEC;
2792 2793 2794 2795 2796

		ctrl->shutdown_timeout = clamp_t(unsigned int, transition_time,
						 shutdown_timeout, 60);

		if (ctrl->shutdown_timeout != shutdown_timeout)
2797
			dev_info(ctrl->device,
2798 2799 2800 2801 2802
				 "Shutdown timeout set to %u seconds\n",
				 ctrl->shutdown_timeout);
	} else
		ctrl->shutdown_timeout = shutdown_timeout;

2803
	ctrl->npss = id->npss;
2804 2805
	ctrl->apsta = id->apsta;
	prev_apst_enabled = ctrl->apst_enabled;
2806 2807
	if (ctrl->quirks & NVME_QUIRK_NO_APST) {
		if (force_apst && id->apsta) {
2808
			dev_warn(ctrl->device, "forcibly allowing APST due to nvme_core.force_apst -- use at your own risk\n");
2809
			ctrl->apst_enabled = true;
2810
		} else {
2811
			ctrl->apst_enabled = false;
2812 2813
		}
	} else {
2814
		ctrl->apst_enabled = id->apsta;
2815
	}
2816 2817
	memcpy(ctrl->psd, id->psd, sizeof(ctrl->psd));

2818
	if (ctrl->ops->flags & NVME_F_FABRICS) {
2819 2820 2821 2822 2823 2824 2825 2826 2827
		ctrl->icdoff = le16_to_cpu(id->icdoff);
		ctrl->ioccsz = le32_to_cpu(id->ioccsz);
		ctrl->iorcsz = le32_to_cpu(id->iorcsz);
		ctrl->maxcmd = le16_to_cpu(id->maxcmd);

		/*
		 * In fabrics we need to verify the cntlid matches the
		 * admin connect
		 */
2828
		if (ctrl->cntlid != le16_to_cpu(id->cntlid)) {
2829 2830 2831 2832
			dev_err(ctrl->device,
				"Mismatching cntlid: Connect %u vs Identify "
				"%u, rejecting\n",
				ctrl->cntlid, le16_to_cpu(id->cntlid));
2833
			ret = -EINVAL;
2834 2835
			goto out_free;
		}
S
Sagi Grimberg 已提交
2836

2837
		if (!nvme_discovery_ctrl(ctrl) && !ctrl->kas) {
2838
			dev_err(ctrl->device,
S
Sagi Grimberg 已提交
2839 2840
				"keep-alive support is mandatory for fabrics\n");
			ret = -EINVAL;
2841
			goto out_free;
S
Sagi Grimberg 已提交
2842
		}
2843
	} else {
2844 2845
		ctrl->hmpre = le32_to_cpu(id->hmpre);
		ctrl->hmmin = le32_to_cpu(id->hmmin);
2846 2847
		ctrl->hmminds = le32_to_cpu(id->hmminds);
		ctrl->hmmaxd = le16_to_cpu(id->hmmaxd);
2848
	}
2849

C
Christoph Hellwig 已提交
2850 2851
	ret = nvme_mpath_init(ctrl, id);
	if (ret < 0)
2852
		goto out_free;
C
Christoph Hellwig 已提交
2853

2854
	if (ctrl->apst_enabled && !prev_apst_enabled)
2855
		dev_pm_qos_expose_latency_tolerance(ctrl->device);
2856
	else if (!ctrl->apst_enabled && prev_apst_enabled)
2857 2858
		dev_pm_qos_hide_latency_tolerance(ctrl->device);

2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887
out_free:
	kfree(id);
	return ret;
}

/*
 * Initialize the cached copies of the Identify data and various controller
 * register in our nvme_ctrl structure.  This should be called as soon as
 * the admin queue is fully up and running.
 */
int nvme_init_ctrl_finish(struct nvme_ctrl *ctrl)
{
	int ret;

	ret = ctrl->ops->reg_read32(ctrl, NVME_REG_VS, &ctrl->vs);
	if (ret) {
		dev_err(ctrl->device, "Reading VS failed (%d)\n", ret);
		return ret;
	}

	ctrl->sqsize = min_t(u16, NVME_CAP_MQES(ctrl->cap), ctrl->sqsize);

	if (ctrl->vs >= NVME_VS(1, 1, 0))
		ctrl->subsystem = NVME_CAP_NSSRC(ctrl->cap);

	ret = nvme_init_identify(ctrl);
	if (ret)
		return ret;

2888 2889 2890 2891
	ret = nvme_init_non_mdts_limits(ctrl);
	if (ret < 0)
		return ret;

2892 2893 2894
	ret = nvme_configure_apst(ctrl);
	if (ret < 0)
		return ret;
2895

2896 2897 2898
	ret = nvme_configure_timestamp(ctrl);
	if (ret < 0)
		return ret;
2899 2900 2901 2902

	ret = nvme_configure_directives(ctrl);
	if (ret < 0)
		return ret;
2903

2904 2905 2906 2907
	ret = nvme_configure_acre(ctrl);
	if (ret < 0)
		return ret;

2908
	if (!ctrl->identified && !nvme_discovery_ctrl(ctrl)) {
K
Keith Busch 已提交
2909 2910 2911 2912
		ret = nvme_hwmon_init(ctrl);
		if (ret < 0)
			return ret;
	}
2913

2914
	ctrl->identified = true;
2915

2916
	return 0;
2917
}
2918
EXPORT_SYMBOL_GPL(nvme_init_ctrl_finish);
2919

2920
static int nvme_dev_open(struct inode *inode, struct file *file)
2921
{
2922 2923
	struct nvme_ctrl *ctrl =
		container_of(inode->i_cdev, struct nvme_ctrl, cdev);
2924

2925 2926 2927 2928
	switch (ctrl->state) {
	case NVME_CTRL_LIVE:
		break;
	default:
2929
		return -EWOULDBLOCK;
2930 2931
	}

2932
	nvme_get_ctrl(ctrl);
2933 2934
	if (!try_module_get(ctrl->ops->module)) {
		nvme_put_ctrl(ctrl);
2935
		return -EINVAL;
2936
	}
2937

2938
	file->private_data = ctrl;
2939 2940 2941
	return 0;
}

2942 2943 2944 2945 2946 2947 2948 2949 2950 2951
static int nvme_dev_release(struct inode *inode, struct file *file)
{
	struct nvme_ctrl *ctrl =
		container_of(inode->i_cdev, struct nvme_ctrl, cdev);

	module_put(ctrl->ops->module);
	nvme_put_ctrl(ctrl);
	return 0;
}

2952 2953 2954
static const struct file_operations nvme_dev_fops = {
	.owner		= THIS_MODULE,
	.open		= nvme_dev_open,
2955
	.release	= nvme_dev_release,
2956
	.unlocked_ioctl	= nvme_dev_ioctl,
2957
	.compat_ioctl	= compat_ptr_ioctl,
2958 2959 2960 2961 2962 2963 2964 2965 2966
};

static ssize_t nvme_sysfs_reset(struct device *dev,
				struct device_attribute *attr, const char *buf,
				size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	int ret;

2967
	ret = nvme_reset_ctrl_sync(ctrl);
2968 2969 2970
	if (ret < 0)
		return ret;
	return count;
2971
}
2972
static DEVICE_ATTR(reset_controller, S_IWUSR, NULL, nvme_sysfs_reset);
2973

K
Keith Busch 已提交
2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984
static ssize_t nvme_sysfs_rescan(struct device *dev,
				struct device_attribute *attr, const char *buf,
				size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

	nvme_queue_scan(ctrl);
	return count;
}
static DEVICE_ATTR(rescan_controller, S_IWUSR, NULL, nvme_sysfs_rescan);

2985 2986 2987 2988
static inline struct nvme_ns_head *dev_to_ns_head(struct device *dev)
{
	struct gendisk *disk = dev_to_disk(dev);

J
Javier González 已提交
2989
	if (disk->fops == &nvme_bdev_ops)
2990 2991 2992 2993 2994
		return nvme_get_ns_from_dev(dev)->head;
	else
		return disk->private_data;
}

2995
static ssize_t wwid_show(struct device *dev, struct device_attribute *attr,
2996
		char *buf)
2997
{
2998 2999 3000
	struct nvme_ns_head *head = dev_to_ns_head(dev);
	struct nvme_ns_ids *ids = &head->ids;
	struct nvme_subsystem *subsys = head->subsys;
C
Christoph Hellwig 已提交
3001 3002
	int serial_len = sizeof(subsys->serial);
	int model_len = sizeof(subsys->model);
3003

3004
	if (!uuid_is_null(&ids->uuid))
3005
		return sysfs_emit(buf, "uuid.%pU\n", &ids->uuid);
3006

3007
	if (memchr_inv(ids->nguid, 0, sizeof(ids->nguid)))
3008
		return sysfs_emit(buf, "eui.%16phN\n", ids->nguid);
3009

3010
	if (memchr_inv(ids->eui64, 0, sizeof(ids->eui64)))
3011
		return sysfs_emit(buf, "eui.%8phN\n", ids->eui64);
3012

C
Christoph Hellwig 已提交
3013 3014
	while (serial_len > 0 && (subsys->serial[serial_len - 1] == ' ' ||
				  subsys->serial[serial_len - 1] == '\0'))
3015
		serial_len--;
C
Christoph Hellwig 已提交
3016 3017
	while (model_len > 0 && (subsys->model[model_len - 1] == ' ' ||
				 subsys->model[model_len - 1] == '\0'))
3018 3019
		model_len--;

3020
	return sysfs_emit(buf, "nvme.%04x-%*phN-%*phN-%08x\n", subsys->vendor_id,
C
Christoph Hellwig 已提交
3021
		serial_len, subsys->serial, model_len, subsys->model,
3022
		head->ns_id);
3023
}
J
Joe Perches 已提交
3024
static DEVICE_ATTR_RO(wwid);
3025

3026
static ssize_t nguid_show(struct device *dev, struct device_attribute *attr,
3027
		char *buf)
3028
{
3029
	return sysfs_emit(buf, "%pU\n", dev_to_ns_head(dev)->ids.nguid);
3030
}
J
Joe Perches 已提交
3031
static DEVICE_ATTR_RO(nguid);
3032

3033
static ssize_t uuid_show(struct device *dev, struct device_attribute *attr,
3034
		char *buf)
3035
{
3036
	struct nvme_ns_ids *ids = &dev_to_ns_head(dev)->ids;
3037 3038 3039 3040

	/* For backward compatibility expose the NGUID to userspace if
	 * we have no UUID set
	 */
3041
	if (uuid_is_null(&ids->uuid)) {
3042 3043
		printk_ratelimited(KERN_WARNING
				   "No UUID available providing old NGUID\n");
3044
		return sysfs_emit(buf, "%pU\n", ids->nguid);
3045
	}
3046
	return sysfs_emit(buf, "%pU\n", &ids->uuid);
3047
}
J
Joe Perches 已提交
3048
static DEVICE_ATTR_RO(uuid);
3049 3050

static ssize_t eui_show(struct device *dev, struct device_attribute *attr,
3051
		char *buf)
3052
{
3053
	return sysfs_emit(buf, "%8ph\n", dev_to_ns_head(dev)->ids.eui64);
3054
}
J
Joe Perches 已提交
3055
static DEVICE_ATTR_RO(eui);
3056 3057

static ssize_t nsid_show(struct device *dev, struct device_attribute *attr,
3058
		char *buf)
3059
{
3060
	return sysfs_emit(buf, "%d\n", dev_to_ns_head(dev)->ns_id);
3061
}
J
Joe Perches 已提交
3062
static DEVICE_ATTR_RO(nsid);
3063

3064
static struct attribute *nvme_ns_id_attrs[] = {
3065
	&dev_attr_wwid.attr,
3066
	&dev_attr_uuid.attr,
3067
	&dev_attr_nguid.attr,
3068 3069
	&dev_attr_eui.attr,
	&dev_attr_nsid.attr,
C
Christoph Hellwig 已提交
3070 3071 3072 3073
#ifdef CONFIG_NVME_MULTIPATH
	&dev_attr_ana_grpid.attr,
	&dev_attr_ana_state.attr,
#endif
3074 3075 3076
	NULL,
};

3077
static umode_t nvme_ns_id_attrs_are_visible(struct kobject *kobj,
3078 3079 3080
		struct attribute *a, int n)
{
	struct device *dev = container_of(kobj, struct device, kobj);
3081
	struct nvme_ns_ids *ids = &dev_to_ns_head(dev)->ids;
3082 3083

	if (a == &dev_attr_uuid.attr) {
3084
		if (uuid_is_null(&ids->uuid) &&
3085
		    !memchr_inv(ids->nguid, 0, sizeof(ids->nguid)))
3086 3087 3088
			return 0;
	}
	if (a == &dev_attr_nguid.attr) {
3089
		if (!memchr_inv(ids->nguid, 0, sizeof(ids->nguid)))
3090 3091 3092
			return 0;
	}
	if (a == &dev_attr_eui.attr) {
3093
		if (!memchr_inv(ids->eui64, 0, sizeof(ids->eui64)))
3094 3095
			return 0;
	}
C
Christoph Hellwig 已提交
3096 3097
#ifdef CONFIG_NVME_MULTIPATH
	if (a == &dev_attr_ana_grpid.attr || a == &dev_attr_ana_state.attr) {
J
Javier González 已提交
3098
		if (dev_to_disk(dev)->fops != &nvme_bdev_ops) /* per-path attr */
C
Christoph Hellwig 已提交
3099 3100 3101 3102 3103
			return 0;
		if (!nvme_ctrl_use_ana(nvme_get_ns_from_dev(dev)->ctrl))
			return 0;
	}
#endif
3104 3105 3106
	return a->mode;
}

3107
static const struct attribute_group nvme_ns_id_attr_group = {
3108 3109
	.attrs		= nvme_ns_id_attrs,
	.is_visible	= nvme_ns_id_attrs_are_visible,
3110 3111
};

3112 3113 3114 3115 3116 3117 3118 3119
const struct attribute_group *nvme_ns_id_attr_groups[] = {
	&nvme_ns_id_attr_group,
#ifdef CONFIG_NVM
	&nvme_nvm_attr_group,
#endif
	NULL,
};

M
Ming Lin 已提交
3120
#define nvme_show_str_function(field)						\
3121 3122 3123 3124
static ssize_t  field##_show(struct device *dev,				\
			    struct device_attribute *attr, char *buf)		\
{										\
        struct nvme_ctrl *ctrl = dev_get_drvdata(dev);				\
3125
        return sysfs_emit(buf, "%.*s\n",					\
C
Christoph Hellwig 已提交
3126
		(int)sizeof(ctrl->subsys->field), ctrl->subsys->field);		\
3127 3128 3129
}										\
static DEVICE_ATTR(field, S_IRUGO, field##_show, NULL);

C
Christoph Hellwig 已提交
3130 3131 3132 3133
nvme_show_str_function(model);
nvme_show_str_function(serial);
nvme_show_str_function(firmware_rev);

M
Ming Lin 已提交
3134 3135 3136 3137 3138
#define nvme_show_int_function(field)						\
static ssize_t  field##_show(struct device *dev,				\
			    struct device_attribute *attr, char *buf)		\
{										\
        struct nvme_ctrl *ctrl = dev_get_drvdata(dev);				\
3139
        return sysfs_emit(buf, "%d\n", ctrl->field);				\
M
Ming Lin 已提交
3140 3141 3142 3143
}										\
static DEVICE_ATTR(field, S_IRUGO, field##_show, NULL);

nvme_show_int_function(cntlid);
3144
nvme_show_int_function(numa_node);
3145 3146
nvme_show_int_function(queue_count);
nvme_show_int_function(sqsize);
3147

M
Ming Lin 已提交
3148 3149 3150 3151 3152 3153 3154
static ssize_t nvme_sysfs_delete(struct device *dev,
				struct device_attribute *attr, const char *buf,
				size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

	if (device_remove_file_self(dev, attr))
3155
		nvme_delete_ctrl_sync(ctrl);
M
Ming Lin 已提交
3156 3157 3158 3159 3160 3161 3162 3163 3164 3165
	return count;
}
static DEVICE_ATTR(delete_controller, S_IWUSR, NULL, nvme_sysfs_delete);

static ssize_t nvme_sysfs_show_transport(struct device *dev,
					 struct device_attribute *attr,
					 char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

3166
	return sysfs_emit(buf, "%s\n", ctrl->ops->name);
M
Ming Lin 已提交
3167 3168 3169
}
static DEVICE_ATTR(transport, S_IRUGO, nvme_sysfs_show_transport, NULL);

3170 3171 3172 3173 3174 3175 3176 3177 3178
static ssize_t nvme_sysfs_show_state(struct device *dev,
				     struct device_attribute *attr,
				     char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	static const char *const state_name[] = {
		[NVME_CTRL_NEW]		= "new",
		[NVME_CTRL_LIVE]	= "live",
		[NVME_CTRL_RESETTING]	= "resetting",
3179
		[NVME_CTRL_CONNECTING]	= "connecting",
3180
		[NVME_CTRL_DELETING]	= "deleting",
3181
		[NVME_CTRL_DELETING_NOIO]= "deleting (no IO)",
3182 3183 3184 3185 3186
		[NVME_CTRL_DEAD]	= "dead",
	};

	if ((unsigned)ctrl->state < ARRAY_SIZE(state_name) &&
	    state_name[ctrl->state])
3187
		return sysfs_emit(buf, "%s\n", state_name[ctrl->state]);
3188

3189
	return sysfs_emit(buf, "unknown state\n");
3190 3191 3192 3193
}

static DEVICE_ATTR(state, S_IRUGO, nvme_sysfs_show_state, NULL);

M
Ming Lin 已提交
3194 3195 3196 3197 3198 3199
static ssize_t nvme_sysfs_show_subsysnqn(struct device *dev,
					 struct device_attribute *attr,
					 char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

3200
	return sysfs_emit(buf, "%s\n", ctrl->subsys->subnqn);
M
Ming Lin 已提交
3201 3202 3203
}
static DEVICE_ATTR(subsysnqn, S_IRUGO, nvme_sysfs_show_subsysnqn, NULL);

3204 3205 3206 3207 3208 3209
static ssize_t nvme_sysfs_show_hostnqn(struct device *dev,
					struct device_attribute *attr,
					char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

3210
	return sysfs_emit(buf, "%s\n", ctrl->opts->host->nqn);
3211 3212 3213
}
static DEVICE_ATTR(hostnqn, S_IRUGO, nvme_sysfs_show_hostnqn, NULL);

3214 3215 3216 3217 3218 3219
static ssize_t nvme_sysfs_show_hostid(struct device *dev,
					struct device_attribute *attr,
					char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

3220
	return sysfs_emit(buf, "%pU\n", &ctrl->opts->host->id);
3221 3222 3223
}
static DEVICE_ATTR(hostid, S_IRUGO, nvme_sysfs_show_hostid, NULL);

M
Ming Lin 已提交
3224 3225 3226 3227 3228 3229 3230 3231 3232 3233
static ssize_t nvme_sysfs_show_address(struct device *dev,
					 struct device_attribute *attr,
					 char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

	return ctrl->ops->get_address(ctrl, buf, PAGE_SIZE);
}
static DEVICE_ATTR(address, S_IRUGO, nvme_sysfs_show_address, NULL);

3234 3235 3236 3237 3238 3239 3240
static ssize_t nvme_ctrl_loss_tmo_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	struct nvmf_ctrl_options *opts = ctrl->opts;

	if (ctrl->opts->max_reconnects == -1)
3241 3242 3243
		return sysfs_emit(buf, "off\n");
	return sysfs_emit(buf, "%d\n",
			  opts->max_reconnects * opts->reconnect_delay);
3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256
}

static ssize_t nvme_ctrl_loss_tmo_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	struct nvmf_ctrl_options *opts = ctrl->opts;
	int ctrl_loss_tmo, err;

	err = kstrtoint(buf, 10, &ctrl_loss_tmo);
	if (err)
		return -EINVAL;

3257
	if (ctrl_loss_tmo < 0)
3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268 3269 3270 3271 3272
		opts->max_reconnects = -1;
	else
		opts->max_reconnects = DIV_ROUND_UP(ctrl_loss_tmo,
						opts->reconnect_delay);
	return count;
}
static DEVICE_ATTR(ctrl_loss_tmo, S_IRUGO | S_IWUSR,
	nvme_ctrl_loss_tmo_show, nvme_ctrl_loss_tmo_store);

static ssize_t nvme_ctrl_reconnect_delay_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

	if (ctrl->opts->reconnect_delay == -1)
3273 3274
		return sysfs_emit(buf, "off\n");
	return sysfs_emit(buf, "%d\n", ctrl->opts->reconnect_delay);
3275 3276 3277 3278 3279 3280 3281 3282 3283 3284
}

static ssize_t nvme_ctrl_reconnect_delay_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	unsigned int v;
	int err;

	err = kstrtou32(buf, 10, &v);
3285 3286
	if (err)
		return err;
3287 3288 3289 3290 3291 3292 3293

	ctrl->opts->reconnect_delay = v;
	return count;
}
static DEVICE_ATTR(reconnect_delay, S_IRUGO | S_IWUSR,
	nvme_ctrl_reconnect_delay_show, nvme_ctrl_reconnect_delay_store);

3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323
static ssize_t nvme_ctrl_fast_io_fail_tmo_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

	if (ctrl->opts->fast_io_fail_tmo == -1)
		return sysfs_emit(buf, "off\n");
	return sysfs_emit(buf, "%d\n", ctrl->opts->fast_io_fail_tmo);
}

static ssize_t nvme_ctrl_fast_io_fail_tmo_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t count)
{
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);
	struct nvmf_ctrl_options *opts = ctrl->opts;
	int fast_io_fail_tmo, err;

	err = kstrtoint(buf, 10, &fast_io_fail_tmo);
	if (err)
		return -EINVAL;

	if (fast_io_fail_tmo < 0)
		opts->fast_io_fail_tmo = -1;
	else
		opts->fast_io_fail_tmo = fast_io_fail_tmo;
	return count;
}
static DEVICE_ATTR(fast_io_fail_tmo, S_IRUGO | S_IWUSR,
	nvme_ctrl_fast_io_fail_tmo_show, nvme_ctrl_fast_io_fail_tmo_store);

3324 3325
static struct attribute *nvme_dev_attrs[] = {
	&dev_attr_reset_controller.attr,
K
Keith Busch 已提交
3326
	&dev_attr_rescan_controller.attr,
3327 3328 3329
	&dev_attr_model.attr,
	&dev_attr_serial.attr,
	&dev_attr_firmware_rev.attr,
M
Ming Lin 已提交
3330
	&dev_attr_cntlid.attr,
M
Ming Lin 已提交
3331 3332 3333 3334
	&dev_attr_delete_controller.attr,
	&dev_attr_transport.attr,
	&dev_attr_subsysnqn.attr,
	&dev_attr_address.attr,
3335
	&dev_attr_state.attr,
3336
	&dev_attr_numa_node.attr,
3337 3338
	&dev_attr_queue_count.attr,
	&dev_attr_sqsize.attr,
3339
	&dev_attr_hostnqn.attr,
3340
	&dev_attr_hostid.attr,
3341 3342
	&dev_attr_ctrl_loss_tmo.attr,
	&dev_attr_reconnect_delay.attr,
3343
	&dev_attr_fast_io_fail_tmo.attr,
3344 3345 3346
	NULL
};

M
Ming Lin 已提交
3347 3348 3349 3350 3351 3352
static umode_t nvme_dev_attrs_are_visible(struct kobject *kobj,
		struct attribute *a, int n)
{
	struct device *dev = container_of(kobj, struct device, kobj);
	struct nvme_ctrl *ctrl = dev_get_drvdata(dev);

3353 3354 3355 3356
	if (a == &dev_attr_delete_controller.attr && !ctrl->ops->delete_ctrl)
		return 0;
	if (a == &dev_attr_address.attr && !ctrl->ops->get_address)
		return 0;
3357 3358
	if (a == &dev_attr_hostnqn.attr && !ctrl->opts)
		return 0;
3359 3360
	if (a == &dev_attr_hostid.attr && !ctrl->opts)
		return 0;
3361 3362 3363 3364
	if (a == &dev_attr_ctrl_loss_tmo.attr && !ctrl->opts)
		return 0;
	if (a == &dev_attr_reconnect_delay.attr && !ctrl->opts)
		return 0;
M
Ming Lin 已提交
3365 3366 3367 3368

	return a->mode;
}

3369
static const struct attribute_group nvme_dev_attrs_group = {
M
Ming Lin 已提交
3370 3371
	.attrs		= nvme_dev_attrs,
	.is_visible	= nvme_dev_attrs_are_visible,
3372 3373 3374 3375 3376 3377 3378
};

static const struct attribute_group *nvme_dev_attr_groups[] = {
	&nvme_dev_attrs_group,
	NULL,
};

3379
static struct nvme_ns_head *nvme_find_ns_head(struct nvme_subsystem *subsys,
C
Christoph Hellwig 已提交
3380 3381 3382 3383 3384 3385 3386
		unsigned nsid)
{
	struct nvme_ns_head *h;

	lockdep_assert_held(&subsys->lock);

	list_for_each_entry(h, &subsys->nsheads, entry) {
3387
		if (h->ns_id == nsid && nvme_tryget_ns_head(h))
C
Christoph Hellwig 已提交
3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410
			return h;
	}

	return NULL;
}

static int __nvme_check_ids(struct nvme_subsystem *subsys,
		struct nvme_ns_head *new)
{
	struct nvme_ns_head *h;

	lockdep_assert_held(&subsys->lock);

	list_for_each_entry(h, &subsys->nsheads, entry) {
		if (nvme_ns_ids_valid(&new->ids) &&
		    nvme_ns_ids_equal(&new->ids, &h->ids))
			return -EINVAL;
	}

	return 0;
}

static struct nvme_ns_head *nvme_alloc_ns_head(struct nvme_ctrl *ctrl,
K
Keith Busch 已提交
3411
		unsigned nsid, struct nvme_ns_ids *ids)
C
Christoph Hellwig 已提交
3412 3413
{
	struct nvme_ns_head *head;
3414
	size_t size = sizeof(*head);
C
Christoph Hellwig 已提交
3415 3416
	int ret = -ENOMEM;

3417 3418 3419 3420 3421
#ifdef CONFIG_NVME_MULTIPATH
	size += num_possible_nodes() * sizeof(struct nvme_ns *);
#endif

	head = kzalloc(size, GFP_KERNEL);
C
Christoph Hellwig 已提交
3422 3423 3424 3425 3426 3427 3428
	if (!head)
		goto out;
	ret = ida_simple_get(&ctrl->subsys->ns_ida, 1, 0, GFP_KERNEL);
	if (ret < 0)
		goto out_free_head;
	head->instance = ret;
	INIT_LIST_HEAD(&head->list);
3429 3430 3431
	ret = init_srcu_struct(&head->srcu);
	if (ret)
		goto out_ida_remove;
C
Christoph Hellwig 已提交
3432 3433
	head->subsys = ctrl->subsys;
	head->ns_id = nsid;
3434
	head->ids = *ids;
C
Christoph Hellwig 已提交
3435 3436 3437 3438 3439 3440 3441 3442 3443
	kref_init(&head->ref);

	ret = __nvme_check_ids(ctrl->subsys, head);
	if (ret) {
		dev_err(ctrl->device,
			"duplicate IDs for nsid %d\n", nsid);
		goto out_cleanup_srcu;
	}

3444 3445 3446 3447 3448 3449 3450
	if (head->ids.csi) {
		ret = nvme_get_effects_log(ctrl, head->ids.csi, &head->effects);
		if (ret)
			goto out_cleanup_srcu;
	} else
		head->effects = ctrl->effects;

3451 3452 3453 3454
	ret = nvme_mpath_alloc_disk(ctrl, head);
	if (ret)
		goto out_cleanup_srcu;

C
Christoph Hellwig 已提交
3455
	list_add_tail(&head->entry, &ctrl->subsys->nsheads);
3456 3457 3458

	kref_get(&ctrl->subsys->ref);

C
Christoph Hellwig 已提交
3459 3460 3461
	return head;
out_cleanup_srcu:
	cleanup_srcu_struct(&head->srcu);
3462
out_ida_remove:
C
Christoph Hellwig 已提交
3463 3464 3465 3466
	ida_simple_remove(&ctrl->subsys->ns_ida, head->instance);
out_free_head:
	kfree(head);
out:
3467 3468
	if (ret > 0)
		ret = blk_status_to_errno(nvme_error_status(ret));
C
Christoph Hellwig 已提交
3469 3470 3471 3472
	return ERR_PTR(ret);
}

static int nvme_init_ns_head(struct nvme_ns *ns, unsigned nsid,
3473
		struct nvme_ns_ids *ids, bool is_shared)
C
Christoph Hellwig 已提交
3474 3475 3476 3477 3478 3479
{
	struct nvme_ctrl *ctrl = ns->ctrl;
	struct nvme_ns_head *head = NULL;
	int ret = 0;

	mutex_lock(&ctrl->subsys->lock);
3480
	head = nvme_find_ns_head(ctrl->subsys, nsid);
C
Christoph Hellwig 已提交
3481
	if (!head) {
3482
		head = nvme_alloc_ns_head(ctrl, nsid, ids);
C
Christoph Hellwig 已提交
3483 3484 3485 3486
		if (IS_ERR(head)) {
			ret = PTR_ERR(head);
			goto out_unlock;
		}
3487
		head->shared = is_shared;
C
Christoph Hellwig 已提交
3488
	} else {
3489
		ret = -EINVAL;
3490
		if (!is_shared || !head->shared) {
3491
			dev_err(ctrl->device,
3492 3493
				"Duplicate unshared namespace %d\n", nsid);
			goto out_put_ns_head;
3494
		}
3495
		if (!nvme_ns_ids_equal(&head->ids, ids)) {
C
Christoph Hellwig 已提交
3496 3497 3498
			dev_err(ctrl->device,
				"IDs don't match for shared namespace %d\n",
					nsid);
3499
			goto out_put_ns_head;
C
Christoph Hellwig 已提交
3500 3501 3502
		}
	}

3503
	list_add_tail_rcu(&ns->siblings, &head->list);
C
Christoph Hellwig 已提交
3504
	ns->head = head;
3505 3506
	mutex_unlock(&ctrl->subsys->lock);
	return 0;
C
Christoph Hellwig 已提交
3507

3508 3509
out_put_ns_head:
	nvme_put_ns_head(head);
C
Christoph Hellwig 已提交
3510 3511 3512 3513 3514
out_unlock:
	mutex_unlock(&ctrl->subsys->lock);
	return ret;
}

3515 3516 3517 3518 3519
static int ns_cmp(void *priv, struct list_head *a, struct list_head *b)
{
	struct nvme_ns *nsa = container_of(a, struct nvme_ns, list);
	struct nvme_ns *nsb = container_of(b, struct nvme_ns, list);

C
Christoph Hellwig 已提交
3520
	return nsa->head->ns_id - nsb->head->ns_id;
3521 3522
}

3523
struct nvme_ns *nvme_find_get_ns(struct nvme_ctrl *ctrl, unsigned nsid)
3524
{
3525
	struct nvme_ns *ns, *ret = NULL;
3526

3527
	down_read(&ctrl->namespaces_rwsem);
3528
	list_for_each_entry(ns, &ctrl->namespaces, list) {
C
Christoph Hellwig 已提交
3529
		if (ns->head->ns_id == nsid) {
3530 3531
			if (!kref_get_unless_zero(&ns->kref))
				continue;
3532 3533 3534
			ret = ns;
			break;
		}
C
Christoph Hellwig 已提交
3535
		if (ns->head->ns_id > nsid)
3536 3537
			break;
	}
3538
	up_read(&ctrl->namespaces_rwsem);
3539
	return ret;
3540
}
3541
EXPORT_SYMBOL_NS_GPL(nvme_find_get_ns, NVME_TARGET_PASSTHRU);
3542

3543 3544
static void nvme_alloc_ns(struct nvme_ctrl *ctrl, unsigned nsid,
		struct nvme_ns_ids *ids)
3545 3546 3547
{
	struct nvme_ns *ns;
	struct gendisk *disk;
3548
	struct nvme_id_ns *id;
3549
	int node = ctrl->numa_node;
3550

3551
	if (nvme_identify_ns(ctrl, nsid, ids, &id))
3552 3553
		return;

3554 3555
	ns = kzalloc_node(sizeof(*ns), GFP_KERNEL, node);
	if (!ns)
3556
		goto out_free_id;
3557 3558

	ns->queue = blk_mq_init_queue(ctrl->tagset);
3559
	if (IS_ERR(ns->queue))
C
Christoph Hellwig 已提交
3560
		goto out_free_ns;
3561

3562
	if (ctrl->opts && ctrl->opts->data_digest)
3563
		blk_queue_flag_set(QUEUE_FLAG_STABLE_WRITES, ns->queue);
3564

3565
	blk_queue_flag_set(QUEUE_FLAG_NONROT, ns->queue);
3566 3567 3568
	if (ctrl->ops->flags & NVME_F_PCI_P2PDMA)
		blk_queue_flag_set(QUEUE_FLAG_PCI_P2PDMA, ns->queue);

3569 3570 3571 3572
	ns->queue->queuedata = ns;
	ns->ctrl = ctrl;
	kref_init(&ns->kref);

3573
	if (nvme_init_ns_head(ns, nsid, ids, id->nmic & NVME_NS_NMIC_SHARED))
3574
		goto out_free_queue;
3575

3576
	disk = alloc_disk_node(0, node);
3577
	if (!disk)
C
Christoph Hellwig 已提交
3578
		goto out_unlink_ns;
3579

J
Javier González 已提交
3580
	disk->fops = &nvme_bdev_ops;
3581 3582
	disk->private_data = ns;
	disk->queue = ns->queue;
3583 3584 3585 3586 3587 3588 3589 3590 3591
	disk->flags = GENHD_FL_EXT_DEVT;
	/*
	 * Without the multipath code enabled, multiple controller per
	 * subsystems are visible as devices and thus we cannot use the
	 * subsystem instance.
	 */
	if (!nvme_mpath_set_disk_name(ns, disk->disk_name, &disk->flags))
		sprintf(disk->disk_name, "nvme%dn%d", ctrl->instance,
			ns->head->instance);
3592 3593
	ns->disk = disk;

3594
	if (nvme_update_ns_info(ns, id))
3595
		goto out_put_disk;
3596

3597
	if ((ctrl->quirks & NVME_QUIRK_LIGHTNVM) && id->vs[0] == 0x1) {
3598
		if (nvme_nvm_register(ns, disk->disk_name, node)) {
3599 3600 3601 3602 3603
			dev_warn(ctrl->device, "LightNVM init failure\n");
			goto out_put_disk;
		}
	}

3604
	down_write(&ctrl->namespaces_rwsem);
3605
	list_add_tail(&ns->list, &ctrl->namespaces);
3606
	up_write(&ctrl->namespaces_rwsem);
3607

3608
	nvme_get_ctrl(ctrl);
3609

3610
	device_add_disk(ctrl->device, ns->disk, nvme_ns_id_attr_groups);
3611

C
Christoph Hellwig 已提交
3612
	nvme_mpath_add_disk(ns, id);
3613
	nvme_fault_inject_init(&ns->fault_inject, ns->disk->disk_name);
C
Christoph Hellwig 已提交
3614 3615
	kfree(id);

3616
	return;
3617
 out_put_disk:
3618 3619
	/* prevent double queue cleanup */
	ns->disk->queue = NULL;
3620
	put_disk(ns->disk);
C
Christoph Hellwig 已提交
3621 3622 3623
 out_unlink_ns:
	mutex_lock(&ctrl->subsys->lock);
	list_del_rcu(&ns->siblings);
3624 3625
	if (list_empty(&ns->head->list))
		list_del_init(&ns->head->entry);
C
Christoph Hellwig 已提交
3626
	mutex_unlock(&ctrl->subsys->lock);
3627
	nvme_put_ns_head(ns->head);
3628 3629 3630 3631
 out_free_queue:
	blk_cleanup_queue(ns->queue);
 out_free_ns:
	kfree(ns);
3632 3633
 out_free_id:
	kfree(id);
3634 3635 3636 3637
}

static void nvme_ns_remove(struct nvme_ns *ns)
{
3638 3639
	if (test_and_set_bit(NVME_NS_REMOVING, &ns->flags))
		return;
3640

3641
	set_capacity(ns->disk, 0);
3642
	nvme_fault_inject_fini(&ns->fault_inject);
3643 3644 3645

	mutex_lock(&ns->ctrl->subsys->lock);
	list_del_rcu(&ns->siblings);
3646 3647
	if (list_empty(&ns->head->list))
		list_del_init(&ns->head->entry);
3648
	mutex_unlock(&ns->ctrl->subsys->lock);
3649

3650 3651 3652 3653
	synchronize_rcu(); /* guarantee not available in head->list */
	nvme_mpath_clear_current_path(ns);
	synchronize_srcu(&ns->head->srcu); /* wait for concurrent submissions */

C
Christoph Hellwig 已提交
3654
	if (ns->disk->flags & GENHD_FL_UP) {
3655 3656
		del_gendisk(ns->disk);
		blk_cleanup_queue(ns->queue);
3657 3658
		if (blk_get_integrity(ns->disk))
			blk_integrity_unregister(ns->disk);
3659
	}
3660

3661
	down_write(&ns->ctrl->namespaces_rwsem);
3662
	list_del_init(&ns->list);
3663
	up_write(&ns->ctrl->namespaces_rwsem);
3664

3665
	nvme_mpath_check_last_path(ns);
3666 3667 3668
	nvme_put_ns(ns);
}

3669 3670 3671 3672 3673 3674 3675 3676 3677 3678
static void nvme_ns_remove_by_nsid(struct nvme_ctrl *ctrl, u32 nsid)
{
	struct nvme_ns *ns = nvme_find_get_ns(ctrl, nsid);

	if (ns) {
		nvme_ns_remove(ns);
		nvme_put_ns(ns);
	}
}

3679
static void nvme_validate_ns(struct nvme_ns *ns, struct nvme_ns_ids *ids)
C
Christoph Hellwig 已提交
3680 3681
{
	struct nvme_id_ns *id;
3682
	int ret = NVME_SC_INVALID_NS | NVME_SC_DNR;
C
Christoph Hellwig 已提交
3683

3684 3685
	if (test_bit(NVME_NS_DEAD, &ns->flags))
		goto out;
C
Christoph Hellwig 已提交
3686

3687
	ret = nvme_identify_ns(ns->ctrl, ns->head->ns_id, ids, &id);
C
Christoph Hellwig 已提交
3688 3689 3690
	if (ret)
		goto out;

3691
	ret = NVME_SC_INVALID_NS | NVME_SC_DNR;
C
Christoph Hellwig 已提交
3692
	if (!nvme_ns_ids_equal(&ns->head->ids, ids)) {
3693
		dev_err(ns->ctrl->device,
C
Christoph Hellwig 已提交
3694
			"identifiers changed for nsid %d\n", ns->head->ns_id);
3695
		goto out_free_id;
C
Christoph Hellwig 已提交
3696 3697 3698
	}

	ret = nvme_update_ns_info(ns, id);
3699 3700

out_free_id:
C
Christoph Hellwig 已提交
3701 3702 3703
	kfree(id);
out:
	/*
3704
	 * Only remove the namespace if we got a fatal error back from the
C
Christoph Hellwig 已提交
3705
	 * device, otherwise ignore the error and just move on.
3706 3707
	 *
	 * TODO: we should probably schedule a delayed retry here.
C
Christoph Hellwig 已提交
3708
	 */
3709
	if (ret > 0 && (ret & NVME_SC_DNR))
3710
		nvme_ns_remove(ns);
C
Christoph Hellwig 已提交
3711 3712
}

3713
static void nvme_validate_or_alloc_ns(struct nvme_ctrl *ctrl, unsigned nsid)
3714
{
3715
	struct nvme_ns_ids ids = { };
3716 3717
	struct nvme_ns *ns;

3718 3719
	if (nvme_identify_ns_descs(ctrl, nsid, &ids))
		return;
3720

3721
	ns = nvme_find_get_ns(ctrl, nsid);
3722
	if (ns) {
3723
		nvme_validate_ns(ns, &ids);
3724
		nvme_put_ns(ns);
3725 3726 3727
		return;
	}

3728 3729 3730 3731 3732 3733 3734 3735 3736 3737 3738
	switch (ids.csi) {
	case NVME_CSI_NVM:
		nvme_alloc_ns(ctrl, nsid, &ids);
		break;
	case NVME_CSI_ZNS:
		if (!IS_ENABLED(CONFIG_BLK_DEV_ZONED)) {
			dev_warn(ctrl->device,
				"nsid %u not supported without CONFIG_BLK_DEV_ZONED\n",
				nsid);
			break;
		}
3739 3740 3741
		if (!nvme_multi_css(ctrl)) {
			dev_warn(ctrl->device,
				"command set not reported for nsid: %d\n",
3742
				nsid);
3743 3744
			break;
		}
3745 3746 3747 3748 3749 3750 3751
		nvme_alloc_ns(ctrl, nsid, &ids);
		break;
	default:
		dev_warn(ctrl->device, "unknown csi %u for nsid %u\n",
			ids.csi, nsid);
		break;
	}
3752 3753
}

3754 3755 3756 3757
static void nvme_remove_invalid_namespaces(struct nvme_ctrl *ctrl,
					unsigned nsid)
{
	struct nvme_ns *ns, *next;
3758
	LIST_HEAD(rm_list);
3759

3760
	down_write(&ctrl->namespaces_rwsem);
3761
	list_for_each_entry_safe(ns, next, &ctrl->namespaces, list) {
3762
		if (ns->head->ns_id > nsid || test_bit(NVME_NS_DEAD, &ns->flags))
3763
			list_move_tail(&ns->list, &rm_list);
3764
	}
3765
	up_write(&ctrl->namespaces_rwsem);
3766 3767 3768 3769

	list_for_each_entry_safe(ns, next, &rm_list, list)
		nvme_ns_remove(ns);

3770 3771
}

3772
static int nvme_scan_ns_list(struct nvme_ctrl *ctrl)
3773
{
3774
	const int nr_entries = NVME_IDENTIFY_DATA_SIZE / sizeof(__le32);
3775
	__le32 *ns_list;
3776 3777
	u32 prev = 0;
	int ret = 0, i;
3778

3779 3780
	if (nvme_ctrl_limited_cns(ctrl))
		return -EOPNOTSUPP;
3781

3782
	ns_list = kzalloc(NVME_IDENTIFY_DATA_SIZE, GFP_KERNEL);
3783 3784 3785
	if (!ns_list)
		return -ENOMEM;

3786
	for (;;) {
3787 3788 3789 3790 3791 3792 3793 3794
		struct nvme_command cmd = {
			.identify.opcode	= nvme_admin_identify,
			.identify.cns		= NVME_ID_CNS_NS_ACTIVE_LIST,
			.identify.nsid		= cpu_to_le32(prev),
		};

		ret = nvme_submit_sync_cmd(ctrl->admin_q, &cmd, ns_list,
					    NVME_IDENTIFY_DATA_SIZE);
3795 3796 3797
		if (ret) {
			dev_warn(ctrl->device,
				"Identify NS List failed (status=0x%x)\n", ret);
3798
			goto free;
3799
		}
3800

3801
		for (i = 0; i < nr_entries; i++) {
3802
			u32 nsid = le32_to_cpu(ns_list[i]);
3803

3804 3805
			if (!nsid)	/* end of the list? */
				goto out;
3806
			nvme_validate_or_alloc_ns(ctrl, nsid);
3807 3808
			while (++prev < nsid)
				nvme_ns_remove_by_nsid(ctrl, prev);
3809 3810 3811
		}
	}
 out:
3812 3813
	nvme_remove_invalid_namespaces(ctrl, prev);
 free:
3814 3815 3816 3817
	kfree(ns_list);
	return ret;
}

3818
static void nvme_scan_ns_sequential(struct nvme_ctrl *ctrl)
3819
{
3820 3821 3822 3823 3824 3825 3826
	struct nvme_id_ctrl *id;
	u32 nn, i;

	if (nvme_identify_ctrl(ctrl, &id))
		return;
	nn = le32_to_cpu(id->nn);
	kfree(id);
3827

3828
	for (i = 1; i <= nn; i++)
3829
		nvme_validate_or_alloc_ns(ctrl, i);
3830

3831
	nvme_remove_invalid_namespaces(ctrl, nn);
3832 3833
}

3834
static void nvme_clear_changed_ns_log(struct nvme_ctrl *ctrl)
3835 3836 3837
{
	size_t log_size = NVME_MAX_CHANGED_NAMESPACES * sizeof(__le32);
	__le32 *log;
3838
	int error;
3839 3840 3841

	log = kzalloc(log_size, GFP_KERNEL);
	if (!log)
3842
		return;
3843

3844 3845 3846 3847 3848 3849
	/*
	 * We need to read the log to clear the AEN, but we don't want to rely
	 * on it for the changed namespace information as userspace could have
	 * raced with us in reading the log page, which could cause us to miss
	 * updates.
	 */
3850 3851
	error = nvme_get_log(ctrl, NVME_NSID_ALL, NVME_LOG_CHANGED_NS, 0,
			NVME_CSI_NVM, log, log_size, 0);
3852
	if (error)
3853 3854 3855 3856 3857 3858
		dev_warn(ctrl->device,
			"reading changed ns log failed: %d\n", error);

	kfree(log);
}

3859
static void nvme_scan_work(struct work_struct *work)
3860
{
3861 3862
	struct nvme_ctrl *ctrl =
		container_of(work, struct nvme_ctrl, scan_work);
3863

K
Keith Busch 已提交
3864 3865
	/* No tagset on a live ctrl means IO queues could not created */
	if (ctrl->state != NVME_CTRL_LIVE || !ctrl->tagset)
3866 3867
		return;

D
Dan Carpenter 已提交
3868
	if (test_and_clear_bit(NVME_AER_NOTICE_NS_CHANGED, &ctrl->events)) {
3869
		dev_info(ctrl->device, "rescanning namespaces.\n");
3870
		nvme_clear_changed_ns_log(ctrl);
3871 3872
	}

3873
	mutex_lock(&ctrl->scan_lock);
3874 3875
	if (nvme_scan_ns_list(ctrl) != 0)
		nvme_scan_ns_sequential(ctrl);
3876
	mutex_unlock(&ctrl->scan_lock);
3877

3878
	down_write(&ctrl->namespaces_rwsem);
3879
	list_sort(NULL, &ctrl->namespaces, ns_cmp);
3880
	up_write(&ctrl->namespaces_rwsem);
3881
}
3882

3883 3884 3885 3886 3887
/*
 * This function iterates the namespace list unlocked to allow recovery from
 * controller failure. It is up to the caller to ensure the namespace list is
 * not modified by scan work while this function is executing.
 */
3888 3889 3890
void nvme_remove_namespaces(struct nvme_ctrl *ctrl)
{
	struct nvme_ns *ns, *next;
3891
	LIST_HEAD(ns_list);
3892

3893 3894 3895 3896 3897 3898 3899
	/*
	 * make sure to requeue I/O to all namespaces as these
	 * might result from the scan itself and must complete
	 * for the scan_work to make progress
	 */
	nvme_mpath_clear_ctrl_paths(ctrl);

3900 3901 3902
	/* prevent racing with ns scanning */
	flush_work(&ctrl->scan_work);

3903 3904 3905 3906 3907 3908 3909 3910 3911
	/*
	 * The dead states indicates the controller was not gracefully
	 * disconnected. In that case, we won't be able to flush any data while
	 * removing the namespaces' disks; fail all the queues now to avoid
	 * potentially having to clean up the failed sync later.
	 */
	if (ctrl->state == NVME_CTRL_DEAD)
		nvme_kill_queues(ctrl);

3912 3913 3914
	/* this is a no-op when called from the controller reset handler */
	nvme_change_ctrl_state(ctrl, NVME_CTRL_DELETING_NOIO);

3915
	down_write(&ctrl->namespaces_rwsem);
3916
	list_splice_init(&ctrl->namespaces, &ns_list);
3917
	up_write(&ctrl->namespaces_rwsem);
3918 3919

	list_for_each_entry_safe(ns, next, &ns_list, list)
3920 3921
		nvme_ns_remove(ns);
}
3922
EXPORT_SYMBOL_GPL(nvme_remove_namespaces);
3923

3924 3925 3926 3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950
static int nvme_class_uevent(struct device *dev, struct kobj_uevent_env *env)
{
	struct nvme_ctrl *ctrl =
		container_of(dev, struct nvme_ctrl, ctrl_device);
	struct nvmf_ctrl_options *opts = ctrl->opts;
	int ret;

	ret = add_uevent_var(env, "NVME_TRTYPE=%s", ctrl->ops->name);
	if (ret)
		return ret;

	if (opts) {
		ret = add_uevent_var(env, "NVME_TRADDR=%s", opts->traddr);
		if (ret)
			return ret;

		ret = add_uevent_var(env, "NVME_TRSVCID=%s",
				opts->trsvcid ?: "none");
		if (ret)
			return ret;

		ret = add_uevent_var(env, "NVME_HOST_TRADDR=%s",
				opts->host_traddr ?: "none");
	}
	return ret;
}

3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966
static void nvme_aen_uevent(struct nvme_ctrl *ctrl)
{
	char *envp[2] = { NULL, NULL };
	u32 aen_result = ctrl->aen_result;

	ctrl->aen_result = 0;
	if (!aen_result)
		return;

	envp[0] = kasprintf(GFP_KERNEL, "NVME_AEN=%#08x", aen_result);
	if (!envp[0])
		return;
	kobject_uevent_env(&ctrl->device->kobj, KOBJ_CHANGE, envp);
	kfree(envp[0]);
}

3967 3968 3969 3970 3971
static void nvme_async_event_work(struct work_struct *work)
{
	struct nvme_ctrl *ctrl =
		container_of(work, struct nvme_ctrl, async_event_work);

3972
	nvme_aen_uevent(ctrl);
3973
	ctrl->ops->submit_async_event(ctrl);
3974 3975
}

3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997
static bool nvme_ctrl_pp_status(struct nvme_ctrl *ctrl)
{

	u32 csts;

	if (ctrl->ops->reg_read32(ctrl, NVME_REG_CSTS, &csts))
		return false;

	if (csts == ~0)
		return false;

	return ((ctrl->ctrl_config & NVME_CC_ENABLE) && (csts & NVME_CSTS_PP));
}

static void nvme_get_fw_slot_info(struct nvme_ctrl *ctrl)
{
	struct nvme_fw_slot_info_log *log;

	log = kmalloc(sizeof(*log), GFP_KERNEL);
	if (!log)
		return;

3998 3999
	if (nvme_get_log(ctrl, NVME_NSID_ALL, NVME_LOG_FW_SLOT, 0, NVME_CSI_NVM,
			log, sizeof(*log), 0))
4000
		dev_warn(ctrl->device, "Get FW SLOT INFO log error\n");
4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021
	kfree(log);
}

static void nvme_fw_act_work(struct work_struct *work)
{
	struct nvme_ctrl *ctrl = container_of(work,
				struct nvme_ctrl, fw_act_work);
	unsigned long fw_act_timeout;

	if (ctrl->mtfa)
		fw_act_timeout = jiffies +
				msecs_to_jiffies(ctrl->mtfa * 100);
	else
		fw_act_timeout = jiffies +
				msecs_to_jiffies(admin_timeout * 1000);

	nvme_stop_queues(ctrl);
	while (nvme_ctrl_pp_status(ctrl)) {
		if (time_after(jiffies, fw_act_timeout)) {
			dev_warn(ctrl->device,
				"Fw activation timeout, reset controller\n");
4022 4023
			nvme_try_sched_reset(ctrl);
			return;
4024 4025 4026 4027
		}
		msleep(100);
	}

4028
	if (!nvme_change_ctrl_state(ctrl, NVME_CTRL_LIVE))
4029 4030 4031
		return;

	nvme_start_queues(ctrl);
4032
	/* read FW slot information to clear the AER */
4033 4034 4035
	nvme_get_fw_slot_info(ctrl);
}

4036 4037
static void nvme_handle_aen_notice(struct nvme_ctrl *ctrl, u32 result)
{
4038 4039
	u32 aer_notice_type = (result & 0xff00) >> 8;

4040 4041
	trace_nvme_async_event(ctrl, aer_notice_type);

4042
	switch (aer_notice_type) {
4043
	case NVME_AER_NOTICE_NS_CHANGED:
D
Dan Carpenter 已提交
4044
		set_bit(NVME_AER_NOTICE_NS_CHANGED, &ctrl->events);
4045 4046 4047
		nvme_queue_scan(ctrl);
		break;
	case NVME_AER_NOTICE_FW_ACT_STARTING:
4048 4049 4050 4051 4052 4053 4054
		/*
		 * We are (ab)using the RESETTING state to prevent subsequent
		 * recovery actions from interfering with the controller's
		 * firmware activation.
		 */
		if (nvme_change_ctrl_state(ctrl, NVME_CTRL_RESETTING))
			queue_work(nvme_wq, &ctrl->fw_act_work);
4055
		break;
C
Christoph Hellwig 已提交
4056 4057 4058 4059 4060 4061 4062
#ifdef CONFIG_NVME_MULTIPATH
	case NVME_AER_NOTICE_ANA:
		if (!ctrl->ana_log_buf)
			break;
		queue_work(nvme_wq, &ctrl->ana_work);
		break;
#endif
4063 4064 4065
	case NVME_AER_NOTICE_DISC_CHANGED:
		ctrl->aen_result = result;
		break;
4066 4067 4068 4069 4070
	default:
		dev_warn(ctrl->device, "async event result %08x\n", result);
	}
}

4071
void nvme_complete_async_event(struct nvme_ctrl *ctrl, __le16 status,
4072
		volatile union nvme_result *res)
4073
{
4074
	u32 result = le32_to_cpu(res->u32);
4075
	u32 aer_type = result & 0x07;
4076

4077
	if (le16_to_cpu(status) >> 1 != NVME_SC_SUCCESS)
4078 4079
		return;

4080
	switch (aer_type) {
4081 4082 4083
	case NVME_AER_NOTICE:
		nvme_handle_aen_notice(ctrl, result);
		break;
4084 4085 4086 4087
	case NVME_AER_ERROR:
	case NVME_AER_SMART:
	case NVME_AER_CSS:
	case NVME_AER_VS:
4088
		trace_nvme_async_event(ctrl, aer_type);
4089
		ctrl->aen_result = result;
4090 4091 4092
		break;
	default:
		break;
4093
	}
4094
	queue_work(nvme_wq, &ctrl->async_event_work);
4095 4096
}
EXPORT_SYMBOL_GPL(nvme_complete_async_event);
4097

4098
void nvme_stop_ctrl(struct nvme_ctrl *ctrl)
4099
{
C
Christoph Hellwig 已提交
4100
	nvme_mpath_stop(ctrl);
4101
	nvme_stop_keep_alive(ctrl);
4102
	nvme_stop_failfast_work(ctrl);
4103
	flush_work(&ctrl->async_event_work);
4104
	cancel_work_sync(&ctrl->fw_act_work);
4105 4106 4107 4108 4109
}
EXPORT_SYMBOL_GPL(nvme_stop_ctrl);

void nvme_start_ctrl(struct nvme_ctrl *ctrl)
{
4110
	nvme_start_keep_alive(ctrl);
4111

4112 4113
	nvme_enable_aen(ctrl);

4114 4115 4116 4117 4118 4119
	if (ctrl->queue_count > 1) {
		nvme_queue_scan(ctrl);
		nvme_start_queues(ctrl);
	}
}
EXPORT_SYMBOL_GPL(nvme_start_ctrl);
4120

4121 4122
void nvme_uninit_ctrl(struct nvme_ctrl *ctrl)
{
4123
	nvme_hwmon_exit(ctrl);
4124
	nvme_fault_inject_fini(&ctrl->fault_inject);
4125
	dev_pm_qos_hide_latency_tolerance(ctrl->device);
4126
	cdev_device_del(&ctrl->cdev, ctrl->device);
4127
	nvme_put_ctrl(ctrl);
4128
}
4129
EXPORT_SYMBOL_GPL(nvme_uninit_ctrl);
4130

4131 4132 4133 4134 4135
static void nvme_free_cels(struct nvme_ctrl *ctrl)
{
	struct nvme_effects_log	*cel;
	unsigned long i;

4136
	xa_for_each(&ctrl->cels, i, cel) {
4137 4138 4139 4140 4141 4142 4143
		xa_erase(&ctrl->cels, i);
		kfree(cel);
	}

	xa_destroy(&ctrl->cels);
}

4144
static void nvme_free_ctrl(struct device *dev)
4145
{
4146 4147
	struct nvme_ctrl *ctrl =
		container_of(dev, struct nvme_ctrl, ctrl_device);
C
Christoph Hellwig 已提交
4148
	struct nvme_subsystem *subsys = ctrl->subsys;
4149

K
Keith Busch 已提交
4150
	if (!subsys || ctrl->instance != subsys->instance)
4151 4152
		ida_simple_remove(&nvme_instance_ida, ctrl->instance);

4153
	nvme_free_cels(ctrl);
C
Christoph Hellwig 已提交
4154
	nvme_mpath_uninit(ctrl);
S
Sagi Grimberg 已提交
4155
	__free_page(ctrl->discard_page);
4156

C
Christoph Hellwig 已提交
4157
	if (subsys) {
4158
		mutex_lock(&nvme_subsystems_lock);
C
Christoph Hellwig 已提交
4159 4160
		list_del(&ctrl->subsys_entry);
		sysfs_remove_link(&subsys->dev.kobj, dev_name(ctrl->device));
4161
		mutex_unlock(&nvme_subsystems_lock);
C
Christoph Hellwig 已提交
4162
	}
4163 4164 4165

	ctrl->ops->free_ctrl(ctrl);

C
Christoph Hellwig 已提交
4166 4167
	if (subsys)
		nvme_put_subsystem(subsys);
4168 4169 4170 4171 4172 4173 4174 4175 4176 4177 4178 4179
}

/*
 * Initialize a NVMe controller structures.  This needs to be called during
 * earliest initialization so that we have the initialized structured around
 * during probing.
 */
int nvme_init_ctrl(struct nvme_ctrl *ctrl, struct device *dev,
		const struct nvme_ctrl_ops *ops, unsigned long quirks)
{
	int ret;

4180
	ctrl->state = NVME_CTRL_NEW;
4181
	clear_bit(NVME_CTRL_FAILFAST_EXPIRED, &ctrl->flags);
4182
	spin_lock_init(&ctrl->lock);
4183
	mutex_init(&ctrl->scan_lock);
4184
	INIT_LIST_HEAD(&ctrl->namespaces);
4185
	xa_init(&ctrl->cels);
4186
	init_rwsem(&ctrl->namespaces_rwsem);
4187 4188 4189
	ctrl->dev = dev;
	ctrl->ops = ops;
	ctrl->quirks = quirks;
4190
	ctrl->numa_node = NUMA_NO_NODE;
4191
	INIT_WORK(&ctrl->scan_work, nvme_scan_work);
4192
	INIT_WORK(&ctrl->async_event_work, nvme_async_event_work);
4193
	INIT_WORK(&ctrl->fw_act_work, nvme_fw_act_work);
4194
	INIT_WORK(&ctrl->delete_work, nvme_delete_ctrl_work);
4195
	init_waitqueue_head(&ctrl->state_wq);
4196

4197
	INIT_DELAYED_WORK(&ctrl->ka_work, nvme_keep_alive_work);
4198
	INIT_DELAYED_WORK(&ctrl->failfast_work, nvme_failfast_work);
4199 4200 4201
	memset(&ctrl->ka_cmd, 0, sizeof(ctrl->ka_cmd));
	ctrl->ka_cmd.common.opcode = nvme_admin_keep_alive;

4202 4203 4204 4205 4206 4207 4208 4209
	BUILD_BUG_ON(NVME_DSM_MAX_RANGES * sizeof(struct nvme_dsm_range) >
			PAGE_SIZE);
	ctrl->discard_page = alloc_page(GFP_KERNEL);
	if (!ctrl->discard_page) {
		ret = -ENOMEM;
		goto out;
	}

4210 4211
	ret = ida_simple_get(&nvme_instance_ida, 0, 0, GFP_KERNEL);
	if (ret < 0)
4212
		goto out;
4213
	ctrl->instance = ret;
4214

4215 4216
	device_initialize(&ctrl->ctrl_device);
	ctrl->device = &ctrl->ctrl_device;
4217 4218
	ctrl->device->devt = MKDEV(MAJOR(nvme_ctrl_base_chr_devt),
			ctrl->instance);
4219 4220 4221 4222 4223 4224 4225
	ctrl->device->class = nvme_class;
	ctrl->device->parent = ctrl->dev;
	ctrl->device->groups = nvme_dev_attr_groups;
	ctrl->device->release = nvme_free_ctrl;
	dev_set_drvdata(ctrl->device, ctrl);
	ret = dev_set_name(ctrl->device, "nvme%d", ctrl->instance);
	if (ret)
4226 4227
		goto out_release_instance;

4228
	nvme_get_ctrl(ctrl);
4229 4230 4231
	cdev_init(&ctrl->cdev, &nvme_dev_fops);
	ctrl->cdev.owner = ops->module;
	ret = cdev_device_add(&ctrl->cdev, ctrl->device);
4232 4233
	if (ret)
		goto out_free_name;
4234

4235 4236 4237 4238 4239 4240 4241 4242
	/*
	 * Initialize latency tolerance controls.  The sysfs files won't
	 * be visible to userspace unless the device actually supports APST.
	 */
	ctrl->device->power.set_latency_tolerance = nvme_set_latency_tolerance;
	dev_pm_qos_update_user_latency_tolerance(ctrl->device,
		min(default_ps_max_latency_us, (unsigned long)S32_MAX));

4243 4244
	nvme_fault_inject_init(&ctrl->fault_inject, dev_name(ctrl->device));

4245
	return 0;
4246
out_free_name:
4247
	nvme_put_ctrl(ctrl);
4248
	kfree_const(ctrl->device->kobj.name);
4249
out_release_instance:
4250
	ida_simple_remove(&nvme_instance_ida, ctrl->instance);
4251
out:
4252 4253
	if (ctrl->discard_page)
		__free_page(ctrl->discard_page);
4254 4255
	return ret;
}
4256
EXPORT_SYMBOL_GPL(nvme_init_ctrl);
4257

4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268
/**
 * nvme_kill_queues(): Ends all namespace queues
 * @ctrl: the dead controller that needs to end
 *
 * Call this function when the driver determines it is unable to get the
 * controller in a state capable of servicing IO.
 */
void nvme_kill_queues(struct nvme_ctrl *ctrl)
{
	struct nvme_ns *ns;

4269
	down_read(&ctrl->namespaces_rwsem);
M
Ming Lei 已提交
4270

4271
	/* Forcibly unquiesce queues to avoid blocking dispatch */
I
Igor Konopko 已提交
4272
	if (ctrl->admin_q && !blk_queue_dying(ctrl->admin_q))
4273
		blk_mq_unquiesce_queue(ctrl->admin_q);
4274

4275 4276
	list_for_each_entry(ns, &ctrl->namespaces, list)
		nvme_set_queue_dying(ns);
4277

4278
	up_read(&ctrl->namespaces_rwsem);
4279
}
4280
EXPORT_SYMBOL_GPL(nvme_kill_queues);
4281

K
Keith Busch 已提交
4282 4283 4284 4285
void nvme_unfreeze(struct nvme_ctrl *ctrl)
{
	struct nvme_ns *ns;

4286
	down_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4287 4288
	list_for_each_entry(ns, &ctrl->namespaces, list)
		blk_mq_unfreeze_queue(ns->queue);
4289
	up_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4290 4291 4292
}
EXPORT_SYMBOL_GPL(nvme_unfreeze);

4293
int nvme_wait_freeze_timeout(struct nvme_ctrl *ctrl, long timeout)
K
Keith Busch 已提交
4294 4295 4296
{
	struct nvme_ns *ns;

4297
	down_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4298 4299 4300 4301 4302
	list_for_each_entry(ns, &ctrl->namespaces, list) {
		timeout = blk_mq_freeze_queue_wait_timeout(ns->queue, timeout);
		if (timeout <= 0)
			break;
	}
4303
	up_read(&ctrl->namespaces_rwsem);
4304
	return timeout;
K
Keith Busch 已提交
4305 4306 4307 4308 4309 4310 4311
}
EXPORT_SYMBOL_GPL(nvme_wait_freeze_timeout);

void nvme_wait_freeze(struct nvme_ctrl *ctrl)
{
	struct nvme_ns *ns;

4312
	down_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4313 4314
	list_for_each_entry(ns, &ctrl->namespaces, list)
		blk_mq_freeze_queue_wait(ns->queue);
4315
	up_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4316 4317 4318 4319 4320 4321 4322
}
EXPORT_SYMBOL_GPL(nvme_wait_freeze);

void nvme_start_freeze(struct nvme_ctrl *ctrl)
{
	struct nvme_ns *ns;

4323
	down_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4324
	list_for_each_entry(ns, &ctrl->namespaces, list)
4325
		blk_freeze_queue_start(ns->queue);
4326
	up_read(&ctrl->namespaces_rwsem);
K
Keith Busch 已提交
4327 4328 4329
}
EXPORT_SYMBOL_GPL(nvme_start_freeze);

4330
void nvme_stop_queues(struct nvme_ctrl *ctrl)
4331 4332 4333
{
	struct nvme_ns *ns;

4334
	down_read(&ctrl->namespaces_rwsem);
4335
	list_for_each_entry(ns, &ctrl->namespaces, list)
4336
		blk_mq_quiesce_queue(ns->queue);
4337
	up_read(&ctrl->namespaces_rwsem);
4338
}
4339
EXPORT_SYMBOL_GPL(nvme_stop_queues);
4340

4341
void nvme_start_queues(struct nvme_ctrl *ctrl)
4342 4343 4344
{
	struct nvme_ns *ns;

4345
	down_read(&ctrl->namespaces_rwsem);
4346
	list_for_each_entry(ns, &ctrl->namespaces, list)
4347
		blk_mq_unquiesce_queue(ns->queue);
4348
	up_read(&ctrl->namespaces_rwsem);
4349
}
4350
EXPORT_SYMBOL_GPL(nvme_start_queues);
4351

C
Chao Leng 已提交
4352
void nvme_sync_io_queues(struct nvme_ctrl *ctrl)
K
Keith Busch 已提交
4353 4354 4355 4356 4357 4358 4359
{
	struct nvme_ns *ns;

	down_read(&ctrl->namespaces_rwsem);
	list_for_each_entry(ns, &ctrl->namespaces, list)
		blk_sync_queue(ns->queue);
	up_read(&ctrl->namespaces_rwsem);
C
Chao Leng 已提交
4360 4361
}
EXPORT_SYMBOL_GPL(nvme_sync_io_queues);
4362

C
Chao Leng 已提交
4363 4364 4365
void nvme_sync_queues(struct nvme_ctrl *ctrl)
{
	nvme_sync_io_queues(ctrl);
4366 4367
	if (ctrl->admin_q)
		blk_sync_queue(ctrl->admin_q);
K
Keith Busch 已提交
4368 4369 4370
}
EXPORT_SYMBOL_GPL(nvme_sync_queues);

4371
struct nvme_ctrl *nvme_ctrl_from_file(struct file *file)
4372
{
4373 4374 4375
	if (file->f_op != &nvme_dev_fops)
		return NULL;
	return file->private_data;
4376
}
4377
EXPORT_SYMBOL_NS_GPL(nvme_ctrl_from_file, NVME_TARGET_PASSTHRU);
4378

4379 4380 4381 4382 4383 4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395 4396
/*
 * Check we didn't inadvertently grow the command structure sizes:
 */
static inline void _nvme_check_size(void)
{
	BUILD_BUG_ON(sizeof(struct nvme_common_command) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_rw_command) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_identify) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_features) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_download_firmware) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_format_cmd) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_dsm_cmd) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_write_zeroes_cmd) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_abort_cmd) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_get_log_page_command) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_command) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_id_ctrl) != NVME_IDENTIFY_DATA_SIZE);
	BUILD_BUG_ON(sizeof(struct nvme_id_ns) != NVME_IDENTIFY_DATA_SIZE);
K
Keith Busch 已提交
4397 4398
	BUILD_BUG_ON(sizeof(struct nvme_id_ns_zns) != NVME_IDENTIFY_DATA_SIZE);
	BUILD_BUG_ON(sizeof(struct nvme_id_ctrl_zns) != NVME_IDENTIFY_DATA_SIZE);
4399
	BUILD_BUG_ON(sizeof(struct nvme_id_ctrl_nvm) != NVME_IDENTIFY_DATA_SIZE);
4400 4401 4402 4403 4404 4405 4406
	BUILD_BUG_ON(sizeof(struct nvme_lba_range_type) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_smart_log) != 512);
	BUILD_BUG_ON(sizeof(struct nvme_dbbuf) != 64);
	BUILD_BUG_ON(sizeof(struct nvme_directive_cmd) != 64);
}


4407
static int __init nvme_core_init(void)
4408
{
4409
	int result = -ENOMEM;
4410

4411 4412
	_nvme_check_size();

4413 4414 4415
	nvme_wq = alloc_workqueue("nvme-wq",
			WQ_UNBOUND | WQ_MEM_RECLAIM | WQ_SYSFS, 0);
	if (!nvme_wq)
4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426
		goto out;

	nvme_reset_wq = alloc_workqueue("nvme-reset-wq",
			WQ_UNBOUND | WQ_MEM_RECLAIM | WQ_SYSFS, 0);
	if (!nvme_reset_wq)
		goto destroy_wq;

	nvme_delete_wq = alloc_workqueue("nvme-delete-wq",
			WQ_UNBOUND | WQ_MEM_RECLAIM | WQ_SYSFS, 0);
	if (!nvme_delete_wq)
		goto destroy_reset_wq;
4427

4428 4429
	result = alloc_chrdev_region(&nvme_ctrl_base_chr_devt, 0,
			NVME_MINORS, "nvme");
4430
	if (result < 0)
4431
		goto destroy_delete_wq;
4432 4433 4434 4435 4436 4437

	nvme_class = class_create(THIS_MODULE, "nvme");
	if (IS_ERR(nvme_class)) {
		result = PTR_ERR(nvme_class);
		goto unregister_chrdev;
	}
4438
	nvme_class->dev_uevent = nvme_class_uevent;
4439

C
Christoph Hellwig 已提交
4440 4441 4442 4443 4444
	nvme_subsys_class = class_create(THIS_MODULE, "nvme-subsystem");
	if (IS_ERR(nvme_subsys_class)) {
		result = PTR_ERR(nvme_subsys_class);
		goto destroy_class;
	}
4445
	return 0;
4446

C
Christoph Hellwig 已提交
4447 4448
destroy_class:
	class_destroy(nvme_class);
4449
unregister_chrdev:
4450
	unregister_chrdev_region(nvme_ctrl_base_chr_devt, NVME_MINORS);
4451 4452 4453 4454
destroy_delete_wq:
	destroy_workqueue(nvme_delete_wq);
destroy_reset_wq:
	destroy_workqueue(nvme_reset_wq);
4455 4456
destroy_wq:
	destroy_workqueue(nvme_wq);
4457
out:
4458
	return result;
4459 4460
}

4461
static void __exit nvme_core_exit(void)
4462
{
C
Christoph Hellwig 已提交
4463
	class_destroy(nvme_subsys_class);
4464
	class_destroy(nvme_class);
4465
	unregister_chrdev_region(nvme_ctrl_base_chr_devt, NVME_MINORS);
4466 4467
	destroy_workqueue(nvme_delete_wq);
	destroy_workqueue(nvme_reset_wq);
4468
	destroy_workqueue(nvme_wq);
M
Max Gurtovoy 已提交
4469
	ida_destroy(&nvme_instance_ida);
4470
}
4471 4472 4473 4474 4475

MODULE_LICENSE("GPL");
MODULE_VERSION("1.0");
module_init(nvme_core_init);
module_exit(nvme_core_exit);