xref: /illumos-gate/usr/src/uts/common/io/nvme/nvme.c (revision bc586359b7d9a851391f04b06254a9ead6109d47)
13c9168faSHans Rosenfeld /*
23c9168faSHans Rosenfeld  * This file and its contents are supplied under the terms of the
33c9168faSHans Rosenfeld  * Common Development and Distribution License ("CDDL"), version 1.0.
43c9168faSHans Rosenfeld  * You may only use this file in accordance with the terms of version
53c9168faSHans Rosenfeld  * 1.0 of the CDDL.
63c9168faSHans Rosenfeld  *
73c9168faSHans Rosenfeld  * A full copy of the text of the CDDL should have accompanied this
83c9168faSHans Rosenfeld  * source.  A copy of the CDDL is also available via the Internet at
93c9168faSHans Rosenfeld  * http://www.illumos.org/license/CDDL.
103c9168faSHans Rosenfeld  */
113c9168faSHans Rosenfeld 
123c9168faSHans Rosenfeld /*
13f313c178SYuri Pankov  * Copyright 2018 Nexenta Systems, Inc.
1434c938c7SPete Shephard  * Copyright 2016 Tegile Systems, Inc. All rights reserved.
152f95345bSYouzhong Yang  * Copyright (c) 2016 The MathWorks, Inc.  All rights reserved.
1648d370f1SRobert Mustacchi  * Copyright 2018 Joyent, Inc.
173c9168faSHans Rosenfeld  */
183c9168faSHans Rosenfeld 
193c9168faSHans Rosenfeld /*
203c9168faSHans Rosenfeld  * blkdev driver for NVMe compliant storage devices
213c9168faSHans Rosenfeld  *
22f8dcaea5SRobert Mustacchi  * This driver was written to conform to version 1.2.1 of the NVMe
23f8dcaea5SRobert Mustacchi  * specification.  It may work with newer versions, but that is completely
24f8dcaea5SRobert Mustacchi  * untested and disabled by default.
253c9168faSHans Rosenfeld  *
263c9168faSHans Rosenfeld  * The driver has only been tested on x86 systems and will not work on big-
273c9168faSHans Rosenfeld  * endian systems without changes to the code accessing registers and data
283c9168faSHans Rosenfeld  * structures used by the hardware.
293c9168faSHans Rosenfeld  *
303c9168faSHans Rosenfeld  *
313c9168faSHans Rosenfeld  * Interrupt Usage:
323c9168faSHans Rosenfeld  *
330b466603SHans Rosenfeld  * The driver will use a single interrupt while configuring the device as the
340b466603SHans Rosenfeld  * specification requires, but contrary to the specification it will try to use
350b466603SHans Rosenfeld  * a single-message MSI(-X) or FIXED interrupt. Later in the attach process it
360b466603SHans Rosenfeld  * will switch to multiple-message MSI(-X) if supported. The driver wants to
370b466603SHans Rosenfeld  * have one interrupt vector per CPU, but it will work correctly if less are
380b466603SHans Rosenfeld  * available. Interrupts can be shared by queues, the interrupt handler will
390b466603SHans Rosenfeld  * iterate through the I/O queue array by steps of n_intr_cnt. Usually only
400b466603SHans Rosenfeld  * the admin queue will share an interrupt with one I/O queue. The interrupt
410b466603SHans Rosenfeld  * handler will retrieve completed commands from all queues sharing an interrupt
420b466603SHans Rosenfeld  * vector and will post them to a taskq for completion processing.
433c9168faSHans Rosenfeld  *
443c9168faSHans Rosenfeld  *
453c9168faSHans Rosenfeld  * Command Processing:
463c9168faSHans Rosenfeld  *
474b324362SHans Rosenfeld  * NVMe devices can have up to 65535 I/O queue pairs, with each queue holding up
483c9168faSHans Rosenfeld  * to 65536 I/O commands. The driver will configure one I/O queue pair per
493c9168faSHans Rosenfeld  * available interrupt vector, with the queue length usually much smaller than
503c9168faSHans Rosenfeld  * the maximum of 65536. If the hardware doesn't provide enough queues, fewer
513c9168faSHans Rosenfeld  * interrupt vectors will be used.
523c9168faSHans Rosenfeld  *
533c9168faSHans Rosenfeld  * Additionally the hardware provides a single special admin queue pair that can
543c9168faSHans Rosenfeld  * hold up to 4096 admin commands.
553c9168faSHans Rosenfeld  *
563c9168faSHans Rosenfeld  * From the hardware perspective both queues of a queue pair are independent,
573c9168faSHans Rosenfeld  * but they share some driver state: the command array (holding pointers to
583c9168faSHans Rosenfeld  * commands currently being processed by the hardware) and the active command
59e984c70bSHans Rosenfeld  * counter. Access to a queue pair and the shared state is protected by
60e984c70bSHans Rosenfeld  * nq_mutex.
613c9168faSHans Rosenfeld  *
623c9168faSHans Rosenfeld  * When a command is submitted to a queue pair the active command counter is
633c9168faSHans Rosenfeld  * incremented and a pointer to the command is stored in the command array. The
643c9168faSHans Rosenfeld  * array index is used as command identifier (CID) in the submission queue
653c9168faSHans Rosenfeld  * entry. Some commands may take a very long time to complete, and if the queue
663c9168faSHans Rosenfeld  * wraps around in that time a submission may find the next array slot to still
673c9168faSHans Rosenfeld  * be used by a long-running command. In this case the array is sequentially
683c9168faSHans Rosenfeld  * searched for the next free slot. The length of the command array is the same
694b324362SHans Rosenfeld  * as the configured queue length. Queue overrun is prevented by the semaphore,
704b324362SHans Rosenfeld  * so a command submission may block if the queue is full.
713c9168faSHans Rosenfeld  *
723c9168faSHans Rosenfeld  *
734ac9cfccSHans Rosenfeld  * Polled I/O Support:
744ac9cfccSHans Rosenfeld  *
754ac9cfccSHans Rosenfeld  * For kernel core dump support the driver can do polled I/O. As interrupts are
764ac9cfccSHans Rosenfeld  * turned off while dumping the driver will just submit a command in the regular
774ac9cfccSHans Rosenfeld  * way, and then repeatedly attempt a command retrieval until it gets the
784ac9cfccSHans Rosenfeld  * command back.
794ac9cfccSHans Rosenfeld  *
804ac9cfccSHans Rosenfeld  *
813c9168faSHans Rosenfeld  * Namespace Support:
823c9168faSHans Rosenfeld  *
833c9168faSHans Rosenfeld  * NVMe devices can have multiple namespaces, each being a independent data
843c9168faSHans Rosenfeld  * store. The driver supports multiple namespaces and creates a blkdev interface
853c9168faSHans Rosenfeld  * for each namespace found. Namespaces can have various attributes to support
86db083a4dSYuri Pankov  * protection information. This driver does not support any of this and ignores
87db083a4dSYuri Pankov  * namespaces that have these attributes.
883c9168faSHans Rosenfeld  *
8924979ca3SHans Rosenfeld  * As of NVMe 1.1 namespaces can have an 64bit Extended Unique Identifier
9024979ca3SHans Rosenfeld  * (EUI64). This driver uses the EUI64 if present to generate the devid and
9124979ca3SHans Rosenfeld  * passes it to blkdev to use it in the device node names. As this is currently
9224979ca3SHans Rosenfeld  * untested namespaces with EUI64 are ignored by default.
9324979ca3SHans Rosenfeld  *
943d9b1a2aSHans Rosenfeld  * We currently support only (2 << NVME_MINOR_INST_SHIFT) - 2 namespaces in a
953d9b1a2aSHans Rosenfeld  * single controller. This is an artificial limit imposed by the driver to be
963d9b1a2aSHans Rosenfeld  * able to address a reasonable number of controllers and namespaces using a
973d9b1a2aSHans Rosenfeld  * 32bit minor node number.
983d9b1a2aSHans Rosenfeld  *
993d9b1a2aSHans Rosenfeld  *
1003d9b1a2aSHans Rosenfeld  * Minor nodes:
1013d9b1a2aSHans Rosenfeld  *
1023d9b1a2aSHans Rosenfeld  * For each NVMe device the driver exposes one minor node for the controller and
1033d9b1a2aSHans Rosenfeld  * one minor node for each namespace. The only operations supported by those
1043d9b1a2aSHans Rosenfeld  * minor nodes are open(9E), close(9E), and ioctl(9E). This serves as the
1053d9b1a2aSHans Rosenfeld  * interface for the nvmeadm(1M) utility.
1063d9b1a2aSHans Rosenfeld  *
1073c9168faSHans Rosenfeld  *
1083c9168faSHans Rosenfeld  * Blkdev Interface:
1093c9168faSHans Rosenfeld  *
1103c9168faSHans Rosenfeld  * This driver uses blkdev to do all the heavy lifting involved with presenting
1113c9168faSHans Rosenfeld  * a disk device to the system. As a result, the processing of I/O requests is
1123c9168faSHans Rosenfeld  * relatively simple as blkdev takes care of partitioning, boundary checks, DMA
1133c9168faSHans Rosenfeld  * setup, and splitting of transfers into manageable chunks.
1143c9168faSHans Rosenfeld  *
1153c9168faSHans Rosenfeld  * I/O requests coming in from blkdev are turned into NVM commands and posted to
1163c9168faSHans Rosenfeld  * an I/O queue. The queue is selected by taking the CPU id modulo the number of
1173c9168faSHans Rosenfeld  * queues. There is currently no timeout handling of I/O commands.
1183c9168faSHans Rosenfeld  *
1193c9168faSHans Rosenfeld  * Blkdev also supports querying device/media information and generating a
1203c9168faSHans Rosenfeld  * devid. The driver reports the best block size as determined by the namespace
1213c9168faSHans Rosenfeld  * format back to blkdev as physical block size to support partition and block
12224979ca3SHans Rosenfeld  * alignment. The devid is either based on the namespace EUI64, if present, or
12324979ca3SHans Rosenfeld  * composed using the device vendor ID, model number, serial number, and the
12424979ca3SHans Rosenfeld  * namespace ID.
1253c9168faSHans Rosenfeld  *
1263c9168faSHans Rosenfeld  *
1273c9168faSHans Rosenfeld  * Error Handling:
1283c9168faSHans Rosenfeld  *
1293c9168faSHans Rosenfeld  * Error handling is currently limited to detecting fatal hardware errors,
1303c9168faSHans Rosenfeld  * either by asynchronous events, or synchronously through command status or
1313c9168faSHans Rosenfeld  * admin command timeouts. In case of severe errors the device is fenced off,
1323c9168faSHans Rosenfeld  * all further requests will return EIO. FMA is then called to fault the device.
1333c9168faSHans Rosenfeld  *
1343c9168faSHans Rosenfeld  * The hardware has a limit for outstanding asynchronous event requests. Before
1353c9168faSHans Rosenfeld  * this limit is known the driver assumes it is at least 1 and posts a single
1363c9168faSHans Rosenfeld  * asynchronous request. Later when the limit is known more asynchronous event
1373c9168faSHans Rosenfeld  * requests are posted to allow quicker reception of error information. When an
1383c9168faSHans Rosenfeld  * asynchronous event is posted by the hardware the driver will parse the error
1393c9168faSHans Rosenfeld  * status fields and log information or fault the device, depending on the
1403c9168faSHans Rosenfeld  * severity of the asynchronous event. The asynchronous event request is then
1413c9168faSHans Rosenfeld  * reused and posted to the admin queue again.
1423c9168faSHans Rosenfeld  *
1433c9168faSHans Rosenfeld  * On command completion the command status is checked for errors. In case of
1443c9168faSHans Rosenfeld  * errors indicating a driver bug the driver panics. Almost all other error
1453c9168faSHans Rosenfeld  * status values just cause EIO to be returned.
1463c9168faSHans Rosenfeld  *
1473c9168faSHans Rosenfeld  * Command timeouts are currently detected for all admin commands except
1483c9168faSHans Rosenfeld  * asynchronous event requests. If a command times out and the hardware appears
149e984c70bSHans Rosenfeld  * to be healthy the driver attempts to abort the command. The original command
150e984c70bSHans Rosenfeld  * timeout is also applied to the abort command. If the abort times out too the
1513c9168faSHans Rosenfeld  * driver assumes the device to be dead, fences it off, and calls FMA to retire
152e984c70bSHans Rosenfeld  * it. In all other cases the aborted command should return immediately with a
153e984c70bSHans Rosenfeld  * status indicating it was aborted, and the driver will wait indefinitely for
154e984c70bSHans Rosenfeld  * that to happen. No timeout handling of normal I/O commands is presently done.
1553c9168faSHans Rosenfeld  *
156e984c70bSHans Rosenfeld  * Any command that times out due to the controller dropping dead will be put on
157e984c70bSHans Rosenfeld  * nvme_lost_cmds list if it references DMA memory. This will prevent the DMA
158e984c70bSHans Rosenfeld  * memory being reused by the system and later be written to by a "dead" NVMe
159e984c70bSHans Rosenfeld  * controller.
160e984c70bSHans Rosenfeld  *
161e984c70bSHans Rosenfeld  *
162e984c70bSHans Rosenfeld  * Locking:
163e984c70bSHans Rosenfeld  *
164e984c70bSHans Rosenfeld  * Each queue pair has its own nq_mutex, which must be held when accessing the
165e984c70bSHans Rosenfeld  * associated queue registers or the shared state of the queue pair. Callers of
166e984c70bSHans Rosenfeld  * nvme_unqueue_cmd() must make sure that nq_mutex is held, while
167e984c70bSHans Rosenfeld  * nvme_submit_{admin,io}_cmd() and nvme_retrieve_cmd() take care of this
168e984c70bSHans Rosenfeld  * themselves.
169e984c70bSHans Rosenfeld  *
170e984c70bSHans Rosenfeld  * Each command also has its own nc_mutex, which is associated with the
171e984c70bSHans Rosenfeld  * condition variable nc_cv. It is only used on admin commands which are run
172e984c70bSHans Rosenfeld  * synchronously. In that case it must be held across calls to
173e984c70bSHans Rosenfeld  * nvme_submit_{admin,io}_cmd() and nvme_wait_cmd(), which is taken care of by
174e984c70bSHans Rosenfeld  * nvme_admin_cmd(). It must also be held whenever the completion state of the
175e984c70bSHans Rosenfeld  * command is changed or while a admin command timeout is handled.
176e984c70bSHans Rosenfeld  *
177e984c70bSHans Rosenfeld  * If both nc_mutex and nq_mutex must be held, nc_mutex must be acquired first.
178e984c70bSHans Rosenfeld  * More than one nc_mutex may only be held when aborting commands. In this case,
179e984c70bSHans Rosenfeld  * the nc_mutex of the command to be aborted must be held across the call to
180e984c70bSHans Rosenfeld  * nvme_abort_cmd() to prevent the command from completing while the abort is in
181e984c70bSHans Rosenfeld  * progress.
182e984c70bSHans Rosenfeld  *
183e984c70bSHans Rosenfeld  * Each minor node has its own nm_mutex, which protects the open count nm_ocnt
184e984c70bSHans Rosenfeld  * and exclusive-open flag nm_oexcl.
1853c9168faSHans Rosenfeld  *
1863c9168faSHans Rosenfeld  *
1873c9168faSHans Rosenfeld  * Quiesce / Fast Reboot:
1883c9168faSHans Rosenfeld  *
1893c9168faSHans Rosenfeld  * The driver currently does not support fast reboot. A quiesce(9E) entry point
1903c9168faSHans Rosenfeld  * is still provided which is used to send a shutdown notification to the
1913c9168faSHans Rosenfeld  * device.
1923c9168faSHans Rosenfeld  *
1933c9168faSHans Rosenfeld  *
1943c9168faSHans Rosenfeld  * Driver Configuration:
1953c9168faSHans Rosenfeld  *
1963c9168faSHans Rosenfeld  * The following driver properties can be changed to control some aspects of the
1973c9168faSHans Rosenfeld  * drivers operation:
1983c9168faSHans Rosenfeld  * - strict-version: can be set to 0 to allow devices conforming to newer
19948d370f1SRobert Mustacchi  *   major versions to be used
2003c9168faSHans Rosenfeld  * - ignore-unknown-vendor-status: can be set to 1 to not handle any vendor
2013c9168faSHans Rosenfeld  *   specific command status as a fatal error leading device faulting
2023c9168faSHans Rosenfeld  * - admin-queue-len: the maximum length of the admin queue (16-4096)
2033c9168faSHans Rosenfeld  * - io-queue-len: the maximum length of the I/O queues (16-65536)
2043c9168faSHans Rosenfeld  * - async-event-limit: the maximum number of asynchronous event requests to be
2053c9168faSHans Rosenfeld  *   posted by the driver
206d148d46eSHans Rosenfeld  * - volatile-write-cache-enable: can be set to 0 to disable the volatile write
207d148d46eSHans Rosenfeld  *   cache
2086801591eSHans Rosenfeld  * - min-phys-block-size: the minimum physical block size to report to blkdev,
2096801591eSHans Rosenfeld  *   which is among other things the basis for ZFS vdev ashift
2103c9168faSHans Rosenfeld  *
2113c9168faSHans Rosenfeld  *
2123c9168faSHans Rosenfeld  * TODO:
2133c9168faSHans Rosenfeld  * - figure out sane default for I/O queue depth reported to blkdev
2143c9168faSHans Rosenfeld  * - FMA handling of media errors
2153c9168faSHans Rosenfeld  * - support for devices supporting very large I/O requests using chained PRPs
2163c9168faSHans Rosenfeld  * - support for configuring hardware parameters like interrupt coalescing
2173c9168faSHans Rosenfeld  * - support for media formatting and hard partitioning into namespaces
2183c9168faSHans Rosenfeld  * - support for big-endian systems
2193c9168faSHans Rosenfeld  * - support for fast reboot
22024979ca3SHans Rosenfeld  * - support for firmware updates
22124979ca3SHans Rosenfeld  * - support for NVMe Subsystem Reset (1.1)
22224979ca3SHans Rosenfeld  * - support for Scatter/Gather lists (1.1)
22324979ca3SHans Rosenfeld  * - support for Reservations (1.1)
22424979ca3SHans Rosenfeld  * - support for power management
2253c9168faSHans Rosenfeld  */
2263c9168faSHans Rosenfeld 
2273c9168faSHans Rosenfeld #include <sys/byteorder.h>
2283c9168faSHans Rosenfeld #ifdef _BIG_ENDIAN
2293c9168faSHans Rosenfeld #error nvme driver needs porting for big-endian platforms
2303c9168faSHans Rosenfeld #endif
2313c9168faSHans Rosenfeld 
2323c9168faSHans Rosenfeld #include <sys/modctl.h>
2333c9168faSHans Rosenfeld #include <sys/conf.h>
2343c9168faSHans Rosenfeld #include <sys/devops.h>
2353c9168faSHans Rosenfeld #include <sys/ddi.h>
2363c9168faSHans Rosenfeld #include <sys/sunddi.h>
2373d9b1a2aSHans Rosenfeld #include <sys/sunndi.h>
2383c9168faSHans Rosenfeld #include <sys/bitmap.h>
2393c9168faSHans Rosenfeld #include <sys/sysmacros.h>
2403c9168faSHans Rosenfeld #include <sys/param.h>
2413c9168faSHans Rosenfeld #include <sys/varargs.h>
2423c9168faSHans Rosenfeld #include <sys/cpuvar.h>
2433c9168faSHans Rosenfeld #include <sys/disp.h>
2443c9168faSHans Rosenfeld #include <sys/blkdev.h>
2453c9168faSHans Rosenfeld #include <sys/atomic.h>
2463c9168faSHans Rosenfeld #include <sys/archsystm.h>
247510a6847SHans Rosenfeld #include <sys/sata/sata_hba.h>
2483d9b1a2aSHans Rosenfeld #include <sys/stat.h>
2493d9b1a2aSHans Rosenfeld #include <sys/policy.h>
250e984c70bSHans Rosenfeld #include <sys/list.h>
2513d9b1a2aSHans Rosenfeld 
2523d9b1a2aSHans Rosenfeld #include <sys/nvme.h>
2533c9168faSHans Rosenfeld 
2549d08e1f8SHans Rosenfeld #ifdef __x86
2559d08e1f8SHans Rosenfeld #include <sys/x86_archext.h>
2569d08e1f8SHans Rosenfeld #endif
2579d08e1f8SHans Rosenfeld 
2583c9168faSHans Rosenfeld #include "nvme_reg.h"
2593c9168faSHans Rosenfeld #include "nvme_var.h"
2603c9168faSHans Rosenfeld 
26148d370f1SRobert Mustacchi /*
26248d370f1SRobert Mustacchi  * Assertions to make sure that we've properly captured various aspects of the
26348d370f1SRobert Mustacchi  * packed structures and haven't broken them during updates.
26448d370f1SRobert Mustacchi  */
26548d370f1SRobert Mustacchi CTASSERT(sizeof (nvme_identify_ctrl_t) == 0x1000);
26648d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_oacs) == 256);
26748d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_sqes) == 512);
26848d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_subnqn) == 768);
26948d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_nvmof) == 1792);
27048d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_psd) == 2048);
27148d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_ctrl_t, id_vs) == 3072);
27248d370f1SRobert Mustacchi 
27348d370f1SRobert Mustacchi CTASSERT(sizeof (nvme_identify_nsid_t) == 0x1000);
27448d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_nsid_t, id_fpi) == 32);
27548d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_nsid_t, id_nguid) == 104);
27648d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_nsid_t, id_lbaf) == 128);
27748d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_nsid_t, id_vs) == 384);
27848d370f1SRobert Mustacchi 
27948d370f1SRobert Mustacchi CTASSERT(sizeof (nvme_identify_primary_caps_t) == 0x1000);
28048d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_primary_caps_t, nipc_vqfrt) == 32);
28148d370f1SRobert Mustacchi CTASSERT(offsetof(nvme_identify_primary_caps_t, nipc_vifrt) == 64);
28248d370f1SRobert Mustacchi 
2833c9168faSHans Rosenfeld 
2843c9168faSHans Rosenfeld /* NVMe spec version supported */
2853c9168faSHans Rosenfeld static const int nvme_version_major = 1;
2863c9168faSHans Rosenfeld 
287e8ba2a38SHans Rosenfeld /* tunable for admin command timeout in seconds, default is 1s */
2883d9b1a2aSHans Rosenfeld int nvme_admin_cmd_timeout = 1;
2893d9b1a2aSHans Rosenfeld 
2903d9b1a2aSHans Rosenfeld /* tunable for FORMAT NVM command timeout in seconds, default is 600s */
2913d9b1a2aSHans Rosenfeld int nvme_format_cmd_timeout = 600;
292e8ba2a38SHans Rosenfeld 
2933c9168faSHans Rosenfeld static int nvme_attach(dev_info_t *, ddi_attach_cmd_t);
2943c9168faSHans Rosenfeld static int nvme_detach(dev_info_t *, ddi_detach_cmd_t);
2953c9168faSHans Rosenfeld static int nvme_quiesce(dev_info_t *);
2963c9168faSHans Rosenfeld static int nvme_fm_errcb(dev_info_t *, ddi_fm_error_t *, const void *);
2973c9168faSHans Rosenfeld static int nvme_setup_interrupts(nvme_t *, int, int);
2983c9168faSHans Rosenfeld static void nvme_release_interrupts(nvme_t *);
2993c9168faSHans Rosenfeld static uint_t nvme_intr(caddr_t, caddr_t);
3003c9168faSHans Rosenfeld 
3013c9168faSHans Rosenfeld static void nvme_shutdown(nvme_t *, int, boolean_t);
3023c9168faSHans Rosenfeld static boolean_t nvme_reset(nvme_t *, boolean_t);
3033c9168faSHans Rosenfeld static int nvme_init(nvme_t *);
3043c9168faSHans Rosenfeld static nvme_cmd_t *nvme_alloc_cmd(nvme_t *, int);
3053c9168faSHans Rosenfeld static void nvme_free_cmd(nvme_cmd_t *);
3063c9168faSHans Rosenfeld static nvme_cmd_t *nvme_create_nvm_cmd(nvme_namespace_t *, uint8_t,
3073c9168faSHans Rosenfeld     bd_xfer_t *);
308e984c70bSHans Rosenfeld static void nvme_admin_cmd(nvme_cmd_t *, int);
3094b324362SHans Rosenfeld static void nvme_submit_admin_cmd(nvme_qpair_t *, nvme_cmd_t *);
3104b324362SHans Rosenfeld static int nvme_submit_io_cmd(nvme_qpair_t *, nvme_cmd_t *);
3114b324362SHans Rosenfeld static void nvme_submit_cmd_common(nvme_qpair_t *, nvme_cmd_t *);
312e984c70bSHans Rosenfeld static nvme_cmd_t *nvme_unqueue_cmd(nvme_t *, nvme_qpair_t *, int);
3133c9168faSHans Rosenfeld static nvme_cmd_t *nvme_retrieve_cmd(nvme_t *, nvme_qpair_t *);
314e984c70bSHans Rosenfeld static void nvme_wait_cmd(nvme_cmd_t *, uint_t);
3153c9168faSHans Rosenfeld static void nvme_wakeup_cmd(void *);
3163c9168faSHans Rosenfeld static void nvme_async_event_task(void *);
3173c9168faSHans Rosenfeld 
3183c9168faSHans Rosenfeld static int nvme_check_unknown_cmd_status(nvme_cmd_t *);
3193c9168faSHans Rosenfeld static int nvme_check_vendor_cmd_status(nvme_cmd_t *);
3203c9168faSHans Rosenfeld static int nvme_check_integrity_cmd_status(nvme_cmd_t *);
3213c9168faSHans Rosenfeld static int nvme_check_specific_cmd_status(nvme_cmd_t *);
3223c9168faSHans Rosenfeld static int nvme_check_generic_cmd_status(nvme_cmd_t *);
3233c9168faSHans Rosenfeld static inline int nvme_check_cmd_status(nvme_cmd_t *);
3243c9168faSHans Rosenfeld 
325e984c70bSHans Rosenfeld static int nvme_abort_cmd(nvme_cmd_t *, uint_t);
3264b324362SHans Rosenfeld static void nvme_async_event(nvme_t *);
327*bc586359SRobert Mustacchi static int nvme_format_nvm(nvme_t *, boolean_t, uint32_t, uint8_t, boolean_t,
328*bc586359SRobert Mustacchi     uint8_t, boolean_t, uint8_t);
329*bc586359SRobert Mustacchi static int nvme_get_logpage(nvme_t *, boolean_t, void **, size_t *, uint8_t,
330*bc586359SRobert Mustacchi     ...);
331*bc586359SRobert Mustacchi static int nvme_identify(nvme_t *, boolean_t, uint32_t, void **);
332*bc586359SRobert Mustacchi static int nvme_set_features(nvme_t *, boolean_t, uint32_t, uint8_t, uint32_t,
333d148d46eSHans Rosenfeld     uint32_t *);
334*bc586359SRobert Mustacchi static int nvme_get_features(nvme_t *, boolean_t, uint32_t, uint8_t, uint32_t *,
3353d9b1a2aSHans Rosenfeld     void **, size_t *);
336e984c70bSHans Rosenfeld static int nvme_write_cache_set(nvme_t *, boolean_t);
337e984c70bSHans Rosenfeld static int nvme_set_nqueues(nvme_t *, uint16_t *);
3383c9168faSHans Rosenfeld 
3393c9168faSHans Rosenfeld static void nvme_free_dma(nvme_dma_t *);
3403c9168faSHans Rosenfeld static int nvme_zalloc_dma(nvme_t *, size_t, uint_t, ddi_dma_attr_t *,
3413c9168faSHans Rosenfeld     nvme_dma_t **);
3423c9168faSHans Rosenfeld static int nvme_zalloc_queue_dma(nvme_t *, uint32_t, uint16_t, uint_t,
3433c9168faSHans Rosenfeld     nvme_dma_t **);
3443c9168faSHans Rosenfeld static void nvme_free_qpair(nvme_qpair_t *);
3453c9168faSHans Rosenfeld static int nvme_alloc_qpair(nvme_t *, uint32_t, nvme_qpair_t **, int);
3463c9168faSHans Rosenfeld static int nvme_create_io_qpair(nvme_t *, nvme_qpair_t *, uint16_t);
3473c9168faSHans Rosenfeld 
3483c9168faSHans Rosenfeld static inline void nvme_put64(nvme_t *, uintptr_t, uint64_t);
3493c9168faSHans Rosenfeld static inline void nvme_put32(nvme_t *, uintptr_t, uint32_t);
3503c9168faSHans Rosenfeld static inline uint64_t nvme_get64(nvme_t *, uintptr_t);
3513c9168faSHans Rosenfeld static inline uint32_t nvme_get32(nvme_t *, uintptr_t);
3523c9168faSHans Rosenfeld 
3533c9168faSHans Rosenfeld static boolean_t nvme_check_regs_hdl(nvme_t *);
3543c9168faSHans Rosenfeld static boolean_t nvme_check_dma_hdl(nvme_dma_t *);
3553c9168faSHans Rosenfeld 
3563c9168faSHans Rosenfeld static int nvme_fill_prp(nvme_cmd_t *, bd_xfer_t *);
3573c9168faSHans Rosenfeld 
3583c9168faSHans Rosenfeld static void nvme_bd_xfer_done(void *);
3593c9168faSHans Rosenfeld static void nvme_bd_driveinfo(void *, bd_drive_t *);
3603c9168faSHans Rosenfeld static int nvme_bd_mediainfo(void *, bd_media_t *);
3613c9168faSHans Rosenfeld static int nvme_bd_cmd(nvme_namespace_t *, bd_xfer_t *, uint8_t);
3623c9168faSHans Rosenfeld static int nvme_bd_read(void *, bd_xfer_t *);
3633c9168faSHans Rosenfeld static int nvme_bd_write(void *, bd_xfer_t *);
3643c9168faSHans Rosenfeld static int nvme_bd_sync(void *, bd_xfer_t *);
3653c9168faSHans Rosenfeld static int nvme_bd_devid(void *, dev_info_t *, ddi_devid_t *);
3663c9168faSHans Rosenfeld 
3678834f7acSYouzhong Yang static int nvme_prp_dma_constructor(void *, void *, int);
3688834f7acSYouzhong Yang static void nvme_prp_dma_destructor(void *, void *);
3698834f7acSYouzhong Yang 
3703c9168faSHans Rosenfeld static void nvme_prepare_devid(nvme_t *, uint32_t);
3713c9168faSHans Rosenfeld 
3723d9b1a2aSHans Rosenfeld static int nvme_open(dev_t *, int, int, cred_t *);
3733d9b1a2aSHans Rosenfeld static int nvme_close(dev_t, int, int, cred_t *);
3743d9b1a2aSHans Rosenfeld static int nvme_ioctl(dev_t, int, intptr_t, int, cred_t *, int *);
3753d9b1a2aSHans Rosenfeld 
376dc97a43dSHans Rosenfeld #define	NVME_MINOR_INST_SHIFT	9
3773d9b1a2aSHans Rosenfeld #define	NVME_MINOR(inst, nsid)	(((inst) << NVME_MINOR_INST_SHIFT) | (nsid))
3783d9b1a2aSHans Rosenfeld #define	NVME_MINOR_INST(minor)	((minor) >> NVME_MINOR_INST_SHIFT)
3793d9b1a2aSHans Rosenfeld #define	NVME_MINOR_NSID(minor)	((minor) & ((1 << NVME_MINOR_INST_SHIFT) - 1))
3803d9b1a2aSHans Rosenfeld #define	NVME_MINOR_MAX		(NVME_MINOR(1, 0) - 2)
3813d9b1a2aSHans Rosenfeld 
3823c9168faSHans Rosenfeld static void *nvme_state;
3833c9168faSHans Rosenfeld static kmem_cache_t *nvme_cmd_cache;
3843c9168faSHans Rosenfeld 
3853c9168faSHans Rosenfeld /*
3863c9168faSHans Rosenfeld  * DMA attributes for queue DMA memory
3873c9168faSHans Rosenfeld  *
3883c9168faSHans Rosenfeld  * Queue DMA memory must be page aligned. The maximum length of a queue is
3893c9168faSHans Rosenfeld  * 65536 entries, and an entry can be 64 bytes long.
3903c9168faSHans Rosenfeld  */
3913c9168faSHans Rosenfeld static ddi_dma_attr_t nvme_queue_dma_attr = {
3923c9168faSHans Rosenfeld 	.dma_attr_version	= DMA_ATTR_V0,
3933c9168faSHans Rosenfeld 	.dma_attr_addr_lo	= 0,
3943c9168faSHans Rosenfeld 	.dma_attr_addr_hi	= 0xffffffffffffffffULL,
395910f0d12SYouzhong Yang 	.dma_attr_count_max	= (UINT16_MAX + 1) * sizeof (nvme_sqe_t) - 1,
3963c9168faSHans Rosenfeld 	.dma_attr_align		= 0x1000,
3973c9168faSHans Rosenfeld 	.dma_attr_burstsizes	= 0x7ff,
3983c9168faSHans Rosenfeld 	.dma_attr_minxfer	= 0x1000,
3993c9168faSHans Rosenfeld 	.dma_attr_maxxfer	= (UINT16_MAX + 1) * sizeof (nvme_sqe_t),
4003c9168faSHans Rosenfeld 	.dma_attr_seg		= 0xffffffffffffffffULL,
4013c9168faSHans Rosenfeld 	.dma_attr_sgllen	= 1,
4023c9168faSHans Rosenfeld 	.dma_attr_granular	= 1,
4033c9168faSHans Rosenfeld 	.dma_attr_flags		= 0,
4043c9168faSHans Rosenfeld };
4053c9168faSHans Rosenfeld 
4063c9168faSHans Rosenfeld /*
4073c9168faSHans Rosenfeld  * DMA attributes for transfers using Physical Region Page (PRP) entries
4083c9168faSHans Rosenfeld  *
4093c9168faSHans Rosenfeld  * A PRP entry describes one page of DMA memory using the page size specified
4103c9168faSHans Rosenfeld  * in the controller configuration's memory page size register (CC.MPS). It uses
4113c9168faSHans Rosenfeld  * a 64bit base address aligned to this page size. There is no limitation on
4123c9168faSHans Rosenfeld  * chaining PRPs together for arbitrarily large DMA transfers.
4133c9168faSHans Rosenfeld  */
4143c9168faSHans Rosenfeld static ddi_dma_attr_t nvme_prp_dma_attr = {
4153c9168faSHans Rosenfeld 	.dma_attr_version	= DMA_ATTR_V0,
4163c9168faSHans Rosenfeld 	.dma_attr_addr_lo	= 0,
4173c9168faSHans Rosenfeld 	.dma_attr_addr_hi	= 0xffffffffffffffffULL,
4183c9168faSHans Rosenfeld 	.dma_attr_count_max	= 0xfff,
4193c9168faSHans Rosenfeld 	.dma_attr_align		= 0x1000,
4203c9168faSHans Rosenfeld 	.dma_attr_burstsizes	= 0x7ff,
4213c9168faSHans Rosenfeld 	.dma_attr_minxfer	= 0x1000,
4223c9168faSHans Rosenfeld 	.dma_attr_maxxfer	= 0x1000,
4232f95345bSYouzhong Yang 	.dma_attr_seg		= 0xfff,
4243c9168faSHans Rosenfeld 	.dma_attr_sgllen	= -1,
4253c9168faSHans Rosenfeld 	.dma_attr_granular	= 1,
4263c9168faSHans Rosenfeld 	.dma_attr_flags		= 0,
4273c9168faSHans Rosenfeld };
4283c9168faSHans Rosenfeld 
4293c9168faSHans Rosenfeld /*
4303c9168faSHans Rosenfeld  * DMA attributes for transfers using scatter/gather lists
4313c9168faSHans Rosenfeld  *
4323c9168faSHans Rosenfeld  * A SGL entry describes a chunk of DMA memory using a 64bit base address and a
4333c9168faSHans Rosenfeld  * 32bit length field. SGL Segment and SGL Last Segment entries require the
4343c9168faSHans Rosenfeld  * length to be a multiple of 16 bytes.
4353c9168faSHans Rosenfeld  */
4363c9168faSHans Rosenfeld static ddi_dma_attr_t nvme_sgl_dma_attr = {
4373c9168faSHans Rosenfeld 	.dma_attr_version	= DMA_ATTR_V0,
4383c9168faSHans Rosenfeld 	.dma_attr_addr_lo	= 0,
4393c9168faSHans Rosenfeld 	.dma_attr_addr_hi	= 0xffffffffffffffffULL,
4403c9168faSHans Rosenfeld 	.dma_attr_count_max	= 0xffffffffUL,
4413c9168faSHans Rosenfeld 	.dma_attr_align		= 1,
4423c9168faSHans Rosenfeld 	.dma_attr_burstsizes	= 0x7ff,
4433c9168faSHans Rosenfeld 	.dma_attr_minxfer	= 0x10,
4443c9168faSHans Rosenfeld 	.dma_attr_maxxfer	= 0xfffffffffULL,
4453c9168faSHans Rosenfeld 	.dma_attr_seg		= 0xffffffffffffffffULL,
4463c9168faSHans Rosenfeld 	.dma_attr_sgllen	= -1,
4473c9168faSHans Rosenfeld 	.dma_attr_granular	= 0x10,
4483c9168faSHans Rosenfeld 	.dma_attr_flags		= 0
4493c9168faSHans Rosenfeld };
4503c9168faSHans Rosenfeld 
4513c9168faSHans Rosenfeld static ddi_device_acc_attr_t nvme_reg_acc_attr = {
4523c9168faSHans Rosenfeld 	.devacc_attr_version	= DDI_DEVICE_ATTR_V0,
4533c9168faSHans Rosenfeld 	.devacc_attr_endian_flags = DDI_STRUCTURE_LE_ACC,
4543c9168faSHans Rosenfeld 	.devacc_attr_dataorder	= DDI_STRICTORDER_ACC
4553c9168faSHans Rosenfeld };
4563c9168faSHans Rosenfeld 
4573d9b1a2aSHans Rosenfeld static struct cb_ops nvme_cb_ops = {
4583d9b1a2aSHans Rosenfeld 	.cb_open	= nvme_open,
4593d9b1a2aSHans Rosenfeld 	.cb_close	= nvme_close,
4603d9b1a2aSHans Rosenfeld 	.cb_strategy	= nodev,
4613d9b1a2aSHans Rosenfeld 	.cb_print	= nodev,
4623d9b1a2aSHans Rosenfeld 	.cb_dump	= nodev,
4633d9b1a2aSHans Rosenfeld 	.cb_read	= nodev,
4643d9b1a2aSHans Rosenfeld 	.cb_write	= nodev,
4653d9b1a2aSHans Rosenfeld 	.cb_ioctl	= nvme_ioctl,
4663d9b1a2aSHans Rosenfeld 	.cb_devmap	= nodev,
4673d9b1a2aSHans Rosenfeld 	.cb_mmap	= nodev,
4683d9b1a2aSHans Rosenfeld 	.cb_segmap	= nodev,
4693d9b1a2aSHans Rosenfeld 	.cb_chpoll	= nochpoll,
4703d9b1a2aSHans Rosenfeld 	.cb_prop_op	= ddi_prop_op,
4713d9b1a2aSHans Rosenfeld 	.cb_str		= 0,
4723d9b1a2aSHans Rosenfeld 	.cb_flag	= D_NEW | D_MP,
4733d9b1a2aSHans Rosenfeld 	.cb_rev		= CB_REV,
4743d9b1a2aSHans Rosenfeld 	.cb_aread	= nodev,
4753d9b1a2aSHans Rosenfeld 	.cb_awrite	= nodev
4763d9b1a2aSHans Rosenfeld };
4773d9b1a2aSHans Rosenfeld 
4783c9168faSHans Rosenfeld static struct dev_ops nvme_dev_ops = {
4793c9168faSHans Rosenfeld 	.devo_rev	= DEVO_REV,
4803c9168faSHans Rosenfeld 	.devo_refcnt	= 0,
4813c9168faSHans Rosenfeld 	.devo_getinfo	= ddi_no_info,
4823c9168faSHans Rosenfeld 	.devo_identify	= nulldev,
4833c9168faSHans Rosenfeld 	.devo_probe	= nulldev,
4843c9168faSHans Rosenfeld 	.devo_attach	= nvme_attach,
4853c9168faSHans Rosenfeld 	.devo_detach	= nvme_detach,
4863c9168faSHans Rosenfeld 	.devo_reset	= nodev,
4873d9b1a2aSHans Rosenfeld 	.devo_cb_ops	= &nvme_cb_ops,
4883c9168faSHans Rosenfeld 	.devo_bus_ops	= NULL,
4893c9168faSHans Rosenfeld 	.devo_power	= NULL,
4903c9168faSHans Rosenfeld 	.devo_quiesce	= nvme_quiesce,
4913c9168faSHans Rosenfeld };
4923c9168faSHans Rosenfeld 
4933c9168faSHans Rosenfeld static struct modldrv nvme_modldrv = {
4943c9168faSHans Rosenfeld 	.drv_modops	= &mod_driverops,
49524979ca3SHans Rosenfeld 	.drv_linkinfo	= "NVMe v1.1b",
4963c9168faSHans Rosenfeld 	.drv_dev_ops	= &nvme_dev_ops
4973c9168faSHans Rosenfeld };
4983c9168faSHans Rosenfeld 
4993c9168faSHans Rosenfeld static struct modlinkage nvme_modlinkage = {
5003c9168faSHans Rosenfeld 	.ml_rev		= MODREV_1,
5013c9168faSHans Rosenfeld 	.ml_linkage	= { &nvme_modldrv, NULL }
5023c9168faSHans Rosenfeld };
5033c9168faSHans Rosenfeld 
5043c9168faSHans Rosenfeld static bd_ops_t nvme_bd_ops = {
5053c9168faSHans Rosenfeld 	.o_version	= BD_OPS_VERSION_0,
5063c9168faSHans Rosenfeld 	.o_drive_info	= nvme_bd_driveinfo,
5073c9168faSHans Rosenfeld 	.o_media_info	= nvme_bd_mediainfo,
5083c9168faSHans Rosenfeld 	.o_devid_init	= nvme_bd_devid,
5093c9168faSHans Rosenfeld 	.o_sync_cache	= nvme_bd_sync,
5103c9168faSHans Rosenfeld 	.o_read		= nvme_bd_read,
5113c9168faSHans Rosenfeld 	.o_write	= nvme_bd_write,
5123c9168faSHans Rosenfeld };
5133c9168faSHans Rosenfeld 
514e984c70bSHans Rosenfeld /*
515e984c70bSHans Rosenfeld  * This list will hold commands that have timed out and couldn't be aborted.
516e984c70bSHans Rosenfeld  * As we don't know what the hardware may still do with the DMA memory we can't
517e984c70bSHans Rosenfeld  * free them, so we'll keep them forever on this list where we can easily look
518e984c70bSHans Rosenfeld  * at them with mdb.
519e984c70bSHans Rosenfeld  */
520e984c70bSHans Rosenfeld static struct list nvme_lost_cmds;
521e984c70bSHans Rosenfeld static kmutex_t nvme_lc_mutex;
522e984c70bSHans Rosenfeld 
5233c9168faSHans Rosenfeld int
5243c9168faSHans Rosenfeld _init(void)
5253c9168faSHans Rosenfeld {
5263c9168faSHans Rosenfeld 	int error;
5273c9168faSHans Rosenfeld 
5283c9168faSHans Rosenfeld 	error = ddi_soft_state_init(&nvme_state, sizeof (nvme_t), 1);
5293c9168faSHans Rosenfeld 	if (error != DDI_SUCCESS)
5303c9168faSHans Rosenfeld 		return (error);
5313c9168faSHans Rosenfeld 
5323c9168faSHans Rosenfeld 	nvme_cmd_cache = kmem_cache_create("nvme_cmd_cache",
5333c9168faSHans Rosenfeld 	    sizeof (nvme_cmd_t), 64, NULL, NULL, NULL, NULL, NULL, 0);
5343c9168faSHans Rosenfeld 
535e984c70bSHans Rosenfeld 	mutex_init(&nvme_lc_mutex, NULL, MUTEX_DRIVER, NULL);
536e984c70bSHans Rosenfeld 	list_create(&nvme_lost_cmds, sizeof (nvme_cmd_t),
537e984c70bSHans Rosenfeld 	    offsetof(nvme_cmd_t, nc_list));
538e984c70bSHans Rosenfeld 
5393c9168faSHans Rosenfeld 	bd_mod_init(&nvme_dev_ops);
5403c9168faSHans Rosenfeld 
5413c9168faSHans Rosenfeld 	error = mod_install(&nvme_modlinkage);
5423c9168faSHans Rosenfeld 	if (error != DDI_SUCCESS) {
5433c9168faSHans Rosenfeld 		ddi_soft_state_fini(&nvme_state);
544e984c70bSHans Rosenfeld 		mutex_destroy(&nvme_lc_mutex);
545e984c70bSHans Rosenfeld 		list_destroy(&nvme_lost_cmds);
5463c9168faSHans Rosenfeld 		bd_mod_fini(&nvme_dev_ops);
5473c9168faSHans Rosenfeld 	}
5483c9168faSHans Rosenfeld 
5493c9168faSHans Rosenfeld 	return (error);
5503c9168faSHans Rosenfeld }
5513c9168faSHans Rosenfeld 
5523c9168faSHans Rosenfeld int
5533c9168faSHans Rosenfeld _fini(void)
5543c9168faSHans Rosenfeld {
5553c9168faSHans Rosenfeld 	int error;
5563c9168faSHans Rosenfeld 
557e984c70bSHans Rosenfeld 	if (!list_is_empty(&nvme_lost_cmds))
558e984c70bSHans Rosenfeld 		return (DDI_FAILURE);
559e984c70bSHans Rosenfeld 
5603c9168faSHans Rosenfeld 	error = mod_remove(&nvme_modlinkage);
5613c9168faSHans Rosenfeld 	if (error == DDI_SUCCESS) {
5623c9168faSHans Rosenfeld 		ddi_soft_state_fini(&nvme_state);
5633c9168faSHans Rosenfeld 		kmem_cache_destroy(nvme_cmd_cache);
564e984c70bSHans Rosenfeld 		mutex_destroy(&nvme_lc_mutex);
565e984c70bSHans Rosenfeld 		list_destroy(&nvme_lost_cmds);
5663c9168faSHans Rosenfeld 		bd_mod_fini(&nvme_dev_ops);
5673c9168faSHans Rosenfeld 	}
5683c9168faSHans Rosenfeld 
5693c9168faSHans Rosenfeld 	return (error);
5703c9168faSHans Rosenfeld }
5713c9168faSHans Rosenfeld 
5723c9168faSHans Rosenfeld int
5733c9168faSHans Rosenfeld _info(struct modinfo *modinfop)
5743c9168faSHans Rosenfeld {
5753c9168faSHans Rosenfeld 	return (mod_info(&nvme_modlinkage, modinfop));
5763c9168faSHans Rosenfeld }
5773c9168faSHans Rosenfeld 
5783c9168faSHans Rosenfeld static inline void
5793c9168faSHans Rosenfeld nvme_put64(nvme_t *nvme, uintptr_t reg, uint64_t val)
5803c9168faSHans Rosenfeld {
5813c9168faSHans Rosenfeld 	ASSERT(((uintptr_t)(nvme->n_regs + reg) & 0x7) == 0);
5823c9168faSHans Rosenfeld 
5833c9168faSHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
5843c9168faSHans Rosenfeld 	ddi_put64(nvme->n_regh, (uint64_t *)(nvme->n_regs + reg), val);
5853c9168faSHans Rosenfeld }
5863c9168faSHans Rosenfeld 
5873c9168faSHans Rosenfeld static inline void
5883c9168faSHans Rosenfeld nvme_put32(nvme_t *nvme, uintptr_t reg, uint32_t val)
5893c9168faSHans Rosenfeld {
5903c9168faSHans Rosenfeld 	ASSERT(((uintptr_t)(nvme->n_regs + reg) & 0x3) == 0);
5913c9168faSHans Rosenfeld 
5923c9168faSHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
5933c9168faSHans Rosenfeld 	ddi_put32(nvme->n_regh, (uint32_t *)(nvme->n_regs + reg), val);
5943c9168faSHans Rosenfeld }
5953c9168faSHans Rosenfeld 
5963c9168faSHans Rosenfeld static inline uint64_t
5973c9168faSHans Rosenfeld nvme_get64(nvme_t *nvme, uintptr_t reg)
5983c9168faSHans Rosenfeld {
5993c9168faSHans Rosenfeld 	uint64_t val;
6003c9168faSHans Rosenfeld 
6013c9168faSHans Rosenfeld 	ASSERT(((uintptr_t)(nvme->n_regs + reg) & 0x7) == 0);
6023c9168faSHans Rosenfeld 
6033c9168faSHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
6043c9168faSHans Rosenfeld 	val = ddi_get64(nvme->n_regh, (uint64_t *)(nvme->n_regs + reg));
6053c9168faSHans Rosenfeld 
6063c9168faSHans Rosenfeld 	return (val);
6073c9168faSHans Rosenfeld }
6083c9168faSHans Rosenfeld 
6093c9168faSHans Rosenfeld static inline uint32_t
6103c9168faSHans Rosenfeld nvme_get32(nvme_t *nvme, uintptr_t reg)
6113c9168faSHans Rosenfeld {
6123c9168faSHans Rosenfeld 	uint32_t val;
6133c9168faSHans Rosenfeld 
6143c9168faSHans Rosenfeld 	ASSERT(((uintptr_t)(nvme->n_regs + reg) & 0x3) == 0);
6153c9168faSHans Rosenfeld 
6163c9168faSHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
6173c9168faSHans Rosenfeld 	val = ddi_get32(nvme->n_regh, (uint32_t *)(nvme->n_regs + reg));
6183c9168faSHans Rosenfeld 
6193c9168faSHans Rosenfeld 	return (val);
6203c9168faSHans Rosenfeld }
6213c9168faSHans Rosenfeld 
6223c9168faSHans Rosenfeld static boolean_t
6233c9168faSHans Rosenfeld nvme_check_regs_hdl(nvme_t *nvme)
6243c9168faSHans Rosenfeld {
6253c9168faSHans Rosenfeld 	ddi_fm_error_t error;
6263c9168faSHans Rosenfeld 
6273c9168faSHans Rosenfeld 	ddi_fm_acc_err_get(nvme->n_regh, &error, DDI_FME_VERSION);
6283c9168faSHans Rosenfeld 
6293c9168faSHans Rosenfeld 	if (error.fme_status != DDI_FM_OK)
6303c9168faSHans Rosenfeld 		return (B_TRUE);
6313c9168faSHans Rosenfeld 
6323c9168faSHans Rosenfeld 	return (B_FALSE);
6333c9168faSHans Rosenfeld }
6343c9168faSHans Rosenfeld 
6353c9168faSHans Rosenfeld static boolean_t
6363c9168faSHans Rosenfeld nvme_check_dma_hdl(nvme_dma_t *dma)
6373c9168faSHans Rosenfeld {
6383c9168faSHans Rosenfeld 	ddi_fm_error_t error;
6393c9168faSHans Rosenfeld 
6403c9168faSHans Rosenfeld 	if (dma == NULL)
6413c9168faSHans Rosenfeld 		return (B_FALSE);
6423c9168faSHans Rosenfeld 
6433c9168faSHans Rosenfeld 	ddi_fm_dma_err_get(dma->nd_dmah, &error, DDI_FME_VERSION);
6443c9168faSHans Rosenfeld 
6453c9168faSHans Rosenfeld 	if (error.fme_status != DDI_FM_OK)
6463c9168faSHans Rosenfeld 		return (B_TRUE);
6473c9168faSHans Rosenfeld 
6483c9168faSHans Rosenfeld 	return (B_FALSE);
6493c9168faSHans Rosenfeld }
6503c9168faSHans Rosenfeld 
6513c9168faSHans Rosenfeld static void
6528834f7acSYouzhong Yang nvme_free_dma_common(nvme_dma_t *dma)
6533c9168faSHans Rosenfeld {
6543c9168faSHans Rosenfeld 	if (dma->nd_dmah != NULL)
6553c9168faSHans Rosenfeld 		(void) ddi_dma_unbind_handle(dma->nd_dmah);
6563c9168faSHans Rosenfeld 	if (dma->nd_acch != NULL)
6573c9168faSHans Rosenfeld 		ddi_dma_mem_free(&dma->nd_acch);
6583c9168faSHans Rosenfeld 	if (dma->nd_dmah != NULL)
6593c9168faSHans Rosenfeld 		ddi_dma_free_handle(&dma->nd_dmah);
6603c9168faSHans Rosenfeld }
6613c9168faSHans Rosenfeld 
6628834f7acSYouzhong Yang static void
6638834f7acSYouzhong Yang nvme_free_dma(nvme_dma_t *dma)
6643c9168faSHans Rosenfeld {
6658834f7acSYouzhong Yang 	nvme_free_dma_common(dma);
6668834f7acSYouzhong Yang 	kmem_free(dma, sizeof (*dma));
6678834f7acSYouzhong Yang }
6688834f7acSYouzhong Yang 
669b6bc2fd4SDan McDonald /* ARGSUSED */
6708834f7acSYouzhong Yang static void
6718834f7acSYouzhong Yang nvme_prp_dma_destructor(void *buf, void *private)
6728834f7acSYouzhong Yang {
6738834f7acSYouzhong Yang 	nvme_dma_t *dma = (nvme_dma_t *)buf;
6743c9168faSHans Rosenfeld 
6758834f7acSYouzhong Yang 	nvme_free_dma_common(dma);
6768834f7acSYouzhong Yang }
6778834f7acSYouzhong Yang 
6788834f7acSYouzhong Yang static int
6798834f7acSYouzhong Yang nvme_alloc_dma_common(nvme_t *nvme, nvme_dma_t *dma,
6808834f7acSYouzhong Yang     size_t len, uint_t flags, ddi_dma_attr_t *dma_attr)
6818834f7acSYouzhong Yang {
6823c9168faSHans Rosenfeld 	if (ddi_dma_alloc_handle(nvme->n_dip, dma_attr, DDI_DMA_SLEEP, NULL,
6833c9168faSHans Rosenfeld 	    &dma->nd_dmah) != DDI_SUCCESS) {
6843c9168faSHans Rosenfeld 		/*
6853c9168faSHans Rosenfeld 		 * Due to DDI_DMA_SLEEP this can't be DDI_DMA_NORESOURCES, and
6863c9168faSHans Rosenfeld 		 * the only other possible error is DDI_DMA_BADATTR which
6873c9168faSHans Rosenfeld 		 * indicates a driver bug which should cause a panic.
6883c9168faSHans Rosenfeld 		 */
6893c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_PANIC,
6903c9168faSHans Rosenfeld 		    "!failed to get DMA handle, check DMA attributes");
6913c9168faSHans Rosenfeld 		return (DDI_FAILURE);
6923c9168faSHans Rosenfeld 	}
6933c9168faSHans Rosenfeld 
6943c9168faSHans Rosenfeld 	/*
6953c9168faSHans Rosenfeld 	 * ddi_dma_mem_alloc() can only fail when DDI_DMA_NOSLEEP is specified
6963c9168faSHans Rosenfeld 	 * or the flags are conflicting, which isn't the case here.
6973c9168faSHans Rosenfeld 	 */
6983c9168faSHans Rosenfeld 	(void) ddi_dma_mem_alloc(dma->nd_dmah, len, &nvme->n_reg_acc_attr,
6993c9168faSHans Rosenfeld 	    DDI_DMA_CONSISTENT, DDI_DMA_SLEEP, NULL, &dma->nd_memp,
7003c9168faSHans Rosenfeld 	    &dma->nd_len, &dma->nd_acch);
7013c9168faSHans Rosenfeld 
7023c9168faSHans Rosenfeld 	if (ddi_dma_addr_bind_handle(dma->nd_dmah, NULL, dma->nd_memp,
7033c9168faSHans Rosenfeld 	    dma->nd_len, flags | DDI_DMA_CONSISTENT, DDI_DMA_SLEEP, NULL,
7043c9168faSHans Rosenfeld 	    &dma->nd_cookie, &dma->nd_ncookie) != DDI_DMA_MAPPED) {
7053c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
7063c9168faSHans Rosenfeld 		    "!failed to bind DMA memory");
7073c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_dma_bind_err);
7088834f7acSYouzhong Yang 		nvme_free_dma_common(dma);
7098834f7acSYouzhong Yang 		return (DDI_FAILURE);
7108834f7acSYouzhong Yang 	}
7118834f7acSYouzhong Yang 
7128834f7acSYouzhong Yang 	return (DDI_SUCCESS);
7138834f7acSYouzhong Yang }
7148834f7acSYouzhong Yang 
7158834f7acSYouzhong Yang static int
7168834f7acSYouzhong Yang nvme_zalloc_dma(nvme_t *nvme, size_t len, uint_t flags,
7178834f7acSYouzhong Yang     ddi_dma_attr_t *dma_attr, nvme_dma_t **ret)
7188834f7acSYouzhong Yang {
7198834f7acSYouzhong Yang 	nvme_dma_t *dma = kmem_zalloc(sizeof (nvme_dma_t), KM_SLEEP);
7208834f7acSYouzhong Yang 
7218834f7acSYouzhong Yang 	if (nvme_alloc_dma_common(nvme, dma, len, flags, dma_attr) !=
7228834f7acSYouzhong Yang 	    DDI_SUCCESS) {
7233c9168faSHans Rosenfeld 		*ret = NULL;
7248834f7acSYouzhong Yang 		kmem_free(dma, sizeof (nvme_dma_t));
7253c9168faSHans Rosenfeld 		return (DDI_FAILURE);
7263c9168faSHans Rosenfeld 	}
7273c9168faSHans Rosenfeld 
7283c9168faSHans Rosenfeld 	bzero(dma->nd_memp, dma->nd_len);
7293c9168faSHans Rosenfeld 
7303c9168faSHans Rosenfeld 	*ret = dma;
7313c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
7323c9168faSHans Rosenfeld }
7333c9168faSHans Rosenfeld 
734b6bc2fd4SDan McDonald /* ARGSUSED */
7358834f7acSYouzhong Yang static int
7368834f7acSYouzhong Yang nvme_prp_dma_constructor(void *buf, void *private, int flags)
7378834f7acSYouzhong Yang {
7388834f7acSYouzhong Yang 	nvme_dma_t *dma = (nvme_dma_t *)buf;
7398834f7acSYouzhong Yang 	nvme_t *nvme = (nvme_t *)private;
7408834f7acSYouzhong Yang 
7418834f7acSYouzhong Yang 	dma->nd_dmah = NULL;
7428834f7acSYouzhong Yang 	dma->nd_acch = NULL;
7438834f7acSYouzhong Yang 
7448834f7acSYouzhong Yang 	if (nvme_alloc_dma_common(nvme, dma, nvme->n_pagesize,
7458834f7acSYouzhong Yang 	    DDI_DMA_READ, &nvme->n_prp_dma_attr) != DDI_SUCCESS) {
7468834f7acSYouzhong Yang 		return (-1);
7478834f7acSYouzhong Yang 	}
7488834f7acSYouzhong Yang 
7498834f7acSYouzhong Yang 	ASSERT(dma->nd_ncookie == 1);
7508834f7acSYouzhong Yang 
7518834f7acSYouzhong Yang 	dma->nd_cached = B_TRUE;
7528834f7acSYouzhong Yang 
7538834f7acSYouzhong Yang 	return (0);
7548834f7acSYouzhong Yang }
7558834f7acSYouzhong Yang 
7563c9168faSHans Rosenfeld static int
7573c9168faSHans Rosenfeld nvme_zalloc_queue_dma(nvme_t *nvme, uint32_t nentry, uint16_t qe_len,
7583c9168faSHans Rosenfeld     uint_t flags, nvme_dma_t **dma)
7593c9168faSHans Rosenfeld {
7603c9168faSHans Rosenfeld 	uint32_t len = nentry * qe_len;
7613c9168faSHans Rosenfeld 	ddi_dma_attr_t q_dma_attr = nvme->n_queue_dma_attr;
7623c9168faSHans Rosenfeld 
7633c9168faSHans Rosenfeld 	len = roundup(len, nvme->n_pagesize);
7643c9168faSHans Rosenfeld 
7653c9168faSHans Rosenfeld 	q_dma_attr.dma_attr_minxfer = len;
7663c9168faSHans Rosenfeld 
7673c9168faSHans Rosenfeld 	if (nvme_zalloc_dma(nvme, len, flags, &q_dma_attr, dma)
7683c9168faSHans Rosenfeld 	    != DDI_SUCCESS) {
7693c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
7703c9168faSHans Rosenfeld 		    "!failed to get DMA memory for queue");
7713c9168faSHans Rosenfeld 		goto fail;
7723c9168faSHans Rosenfeld 	}
7733c9168faSHans Rosenfeld 
7743c9168faSHans Rosenfeld 	if ((*dma)->nd_ncookie != 1) {
7753c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
7763c9168faSHans Rosenfeld 		    "!got too many cookies for queue DMA");
7773c9168faSHans Rosenfeld 		goto fail;
7783c9168faSHans Rosenfeld 	}
7793c9168faSHans Rosenfeld 
7803c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
7813c9168faSHans Rosenfeld 
7823c9168faSHans Rosenfeld fail:
7833c9168faSHans Rosenfeld 	if (*dma) {
7843c9168faSHans Rosenfeld 		nvme_free_dma(*dma);
7853c9168faSHans Rosenfeld 		*dma = NULL;
7863c9168faSHans Rosenfeld 	}
7873c9168faSHans Rosenfeld 
7883c9168faSHans Rosenfeld 	return (DDI_FAILURE);
7893c9168faSHans Rosenfeld }
7903c9168faSHans Rosenfeld 
7913c9168faSHans Rosenfeld static void
7923c9168faSHans Rosenfeld nvme_free_qpair(nvme_qpair_t *qp)
7933c9168faSHans Rosenfeld {
7943c9168faSHans Rosenfeld 	int i;
7953c9168faSHans Rosenfeld 
7963c9168faSHans Rosenfeld 	mutex_destroy(&qp->nq_mutex);
7974b324362SHans Rosenfeld 	sema_destroy(&qp->nq_sema);
7983c9168faSHans Rosenfeld 
7993c9168faSHans Rosenfeld 	if (qp->nq_sqdma != NULL)
8003c9168faSHans Rosenfeld 		nvme_free_dma(qp->nq_sqdma);
8013c9168faSHans Rosenfeld 	if (qp->nq_cqdma != NULL)
8023c9168faSHans Rosenfeld 		nvme_free_dma(qp->nq_cqdma);
8033c9168faSHans Rosenfeld 
8043c9168faSHans Rosenfeld 	if (qp->nq_active_cmds > 0)
8053c9168faSHans Rosenfeld 		for (i = 0; i != qp->nq_nentry; i++)
8063c9168faSHans Rosenfeld 			if (qp->nq_cmd[i] != NULL)
8073c9168faSHans Rosenfeld 				nvme_free_cmd(qp->nq_cmd[i]);
8083c9168faSHans Rosenfeld 
8093c9168faSHans Rosenfeld 	if (qp->nq_cmd != NULL)
8103c9168faSHans Rosenfeld 		kmem_free(qp->nq_cmd, sizeof (nvme_cmd_t *) * qp->nq_nentry);
8113c9168faSHans Rosenfeld 
8123c9168faSHans Rosenfeld 	kmem_free(qp, sizeof (nvme_qpair_t));
8133c9168faSHans Rosenfeld }
8143c9168faSHans Rosenfeld 
8153c9168faSHans Rosenfeld static int
8163c9168faSHans Rosenfeld nvme_alloc_qpair(nvme_t *nvme, uint32_t nentry, nvme_qpair_t **nqp,
8173c9168faSHans Rosenfeld     int idx)
8183c9168faSHans Rosenfeld {
8193c9168faSHans Rosenfeld 	nvme_qpair_t *qp = kmem_zalloc(sizeof (*qp), KM_SLEEP);
8203c9168faSHans Rosenfeld 
8213c9168faSHans Rosenfeld 	mutex_init(&qp->nq_mutex, NULL, MUTEX_DRIVER,
8223c9168faSHans Rosenfeld 	    DDI_INTR_PRI(nvme->n_intr_pri));
8234b324362SHans Rosenfeld 	sema_init(&qp->nq_sema, nentry, NULL, SEMA_DRIVER, NULL);
8243c9168faSHans Rosenfeld 
8253c9168faSHans Rosenfeld 	if (nvme_zalloc_queue_dma(nvme, nentry, sizeof (nvme_sqe_t),
8263c9168faSHans Rosenfeld 	    DDI_DMA_WRITE, &qp->nq_sqdma) != DDI_SUCCESS)
8273c9168faSHans Rosenfeld 		goto fail;
8283c9168faSHans Rosenfeld 
8293c9168faSHans Rosenfeld 	if (nvme_zalloc_queue_dma(nvme, nentry, sizeof (nvme_cqe_t),
8303c9168faSHans Rosenfeld 	    DDI_DMA_READ, &qp->nq_cqdma) != DDI_SUCCESS)
8313c9168faSHans Rosenfeld 		goto fail;
8323c9168faSHans Rosenfeld 
8333c9168faSHans Rosenfeld 	qp->nq_sq = (nvme_sqe_t *)qp->nq_sqdma->nd_memp;
8343c9168faSHans Rosenfeld 	qp->nq_cq = (nvme_cqe_t *)qp->nq_cqdma->nd_memp;
8353c9168faSHans Rosenfeld 	qp->nq_nentry = nentry;
8363c9168faSHans Rosenfeld 
8373c9168faSHans Rosenfeld 	qp->nq_sqtdbl = NVME_REG_SQTDBL(nvme, idx);
8383c9168faSHans Rosenfeld 	qp->nq_cqhdbl = NVME_REG_CQHDBL(nvme, idx);
8393c9168faSHans Rosenfeld 
8403c9168faSHans Rosenfeld 	qp->nq_cmd = kmem_zalloc(sizeof (nvme_cmd_t *) * nentry, KM_SLEEP);
8413c9168faSHans Rosenfeld 	qp->nq_next_cmd = 0;
8423c9168faSHans Rosenfeld 
8433c9168faSHans Rosenfeld 	*nqp = qp;
8443c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
8453c9168faSHans Rosenfeld 
8463c9168faSHans Rosenfeld fail:
8473c9168faSHans Rosenfeld 	nvme_free_qpair(qp);
8483c9168faSHans Rosenfeld 	*nqp = NULL;
8493c9168faSHans Rosenfeld 
8503c9168faSHans Rosenfeld 	return (DDI_FAILURE);
8513c9168faSHans Rosenfeld }
8523c9168faSHans Rosenfeld 
8533c9168faSHans Rosenfeld static nvme_cmd_t *
8543c9168faSHans Rosenfeld nvme_alloc_cmd(nvme_t *nvme, int kmflag)
8553c9168faSHans Rosenfeld {
8563c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = kmem_cache_alloc(nvme_cmd_cache, kmflag);
8573c9168faSHans Rosenfeld 
8583c9168faSHans Rosenfeld 	if (cmd == NULL)
8593c9168faSHans Rosenfeld 		return (cmd);
8603c9168faSHans Rosenfeld 
8613c9168faSHans Rosenfeld 	bzero(cmd, sizeof (nvme_cmd_t));
8623c9168faSHans Rosenfeld 
8633c9168faSHans Rosenfeld 	cmd->nc_nvme = nvme;
8643c9168faSHans Rosenfeld 
8653c9168faSHans Rosenfeld 	mutex_init(&cmd->nc_mutex, NULL, MUTEX_DRIVER,
8663c9168faSHans Rosenfeld 	    DDI_INTR_PRI(nvme->n_intr_pri));
8673c9168faSHans Rosenfeld 	cv_init(&cmd->nc_cv, NULL, CV_DRIVER, NULL);
8683c9168faSHans Rosenfeld 
8693c9168faSHans Rosenfeld 	return (cmd);
8703c9168faSHans Rosenfeld }
8713c9168faSHans Rosenfeld 
8723c9168faSHans Rosenfeld static void
8733c9168faSHans Rosenfeld nvme_free_cmd(nvme_cmd_t *cmd)
8743c9168faSHans Rosenfeld {
875e984c70bSHans Rosenfeld 	/* Don't free commands on the lost commands list. */
876e984c70bSHans Rosenfeld 	if (list_link_active(&cmd->nc_list))
877e984c70bSHans Rosenfeld 		return;
878e984c70bSHans Rosenfeld 
8793c9168faSHans Rosenfeld 	if (cmd->nc_dma) {
8808834f7acSYouzhong Yang 		if (cmd->nc_dma->nd_cached)
8818834f7acSYouzhong Yang 			kmem_cache_free(cmd->nc_nvme->n_prp_cache,
8828834f7acSYouzhong Yang 			    cmd->nc_dma);
8838834f7acSYouzhong Yang 		else
8848834f7acSYouzhong Yang 			nvme_free_dma(cmd->nc_dma);
8853c9168faSHans Rosenfeld 		cmd->nc_dma = NULL;
8863c9168faSHans Rosenfeld 	}
8873c9168faSHans Rosenfeld 
8883c9168faSHans Rosenfeld 	cv_destroy(&cmd->nc_cv);
8893c9168faSHans Rosenfeld 	mutex_destroy(&cmd->nc_mutex);
8903c9168faSHans Rosenfeld 
8913c9168faSHans Rosenfeld 	kmem_cache_free(nvme_cmd_cache, cmd);
8923c9168faSHans Rosenfeld }
8933c9168faSHans Rosenfeld 
8944b324362SHans Rosenfeld static void
8954b324362SHans Rosenfeld nvme_submit_admin_cmd(nvme_qpair_t *qp, nvme_cmd_t *cmd)
8964b324362SHans Rosenfeld {
8974b324362SHans Rosenfeld 	sema_p(&qp->nq_sema);
8984b324362SHans Rosenfeld 	nvme_submit_cmd_common(qp, cmd);
8994b324362SHans Rosenfeld }
9004b324362SHans Rosenfeld 
9013c9168faSHans Rosenfeld static int
9024b324362SHans Rosenfeld nvme_submit_io_cmd(nvme_qpair_t *qp, nvme_cmd_t *cmd)
9033c9168faSHans Rosenfeld {
9044b324362SHans Rosenfeld 	if (sema_tryp(&qp->nq_sema) == 0)
9054b324362SHans Rosenfeld 		return (EAGAIN);
9063c9168faSHans Rosenfeld 
9074b324362SHans Rosenfeld 	nvme_submit_cmd_common(qp, cmd);
9084b324362SHans Rosenfeld 	return (0);
9094b324362SHans Rosenfeld }
9103c9168faSHans Rosenfeld 
9114b324362SHans Rosenfeld static void
9124b324362SHans Rosenfeld nvme_submit_cmd_common(nvme_qpair_t *qp, nvme_cmd_t *cmd)
9134b324362SHans Rosenfeld {
9144b324362SHans Rosenfeld 	nvme_reg_sqtdbl_t tail = { 0 };
9153c9168faSHans Rosenfeld 
9164b324362SHans Rosenfeld 	mutex_enter(&qp->nq_mutex);
9173c9168faSHans Rosenfeld 	cmd->nc_completed = B_FALSE;
9183c9168faSHans Rosenfeld 
9193c9168faSHans Rosenfeld 	/*
9203c9168faSHans Rosenfeld 	 * Try to insert the cmd into the active cmd array at the nq_next_cmd
9213c9168faSHans Rosenfeld 	 * slot. If the slot is already occupied advance to the next slot and
9223c9168faSHans Rosenfeld 	 * try again. This can happen for long running commands like async event
9233c9168faSHans Rosenfeld 	 * requests.
9243c9168faSHans Rosenfeld 	 */
9253c9168faSHans Rosenfeld 	while (qp->nq_cmd[qp->nq_next_cmd] != NULL)
9263c9168faSHans Rosenfeld 		qp->nq_next_cmd = (qp->nq_next_cmd + 1) % qp->nq_nentry;
9273c9168faSHans Rosenfeld 	qp->nq_cmd[qp->nq_next_cmd] = cmd;
9283c9168faSHans Rosenfeld 
9293c9168faSHans Rosenfeld 	qp->nq_active_cmds++;
9303c9168faSHans Rosenfeld 
9313c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cid = qp->nq_next_cmd;
9323c9168faSHans Rosenfeld 	bcopy(&cmd->nc_sqe, &qp->nq_sq[qp->nq_sqtail], sizeof (nvme_sqe_t));
9333c9168faSHans Rosenfeld 	(void) ddi_dma_sync(qp->nq_sqdma->nd_dmah,
9343c9168faSHans Rosenfeld 	    sizeof (nvme_sqe_t) * qp->nq_sqtail,
9353c9168faSHans Rosenfeld 	    sizeof (nvme_sqe_t), DDI_DMA_SYNC_FORDEV);
9363c9168faSHans Rosenfeld 	qp->nq_next_cmd = (qp->nq_next_cmd + 1) % qp->nq_nentry;
9373c9168faSHans Rosenfeld 
9383c9168faSHans Rosenfeld 	tail.b.sqtdbl_sqt = qp->nq_sqtail = (qp->nq_sqtail + 1) % qp->nq_nentry;
9393c9168faSHans Rosenfeld 	nvme_put32(cmd->nc_nvme, qp->nq_sqtdbl, tail.r);
9403c9168faSHans Rosenfeld 
9413c9168faSHans Rosenfeld 	mutex_exit(&qp->nq_mutex);
9423c9168faSHans Rosenfeld }
9433c9168faSHans Rosenfeld 
944e984c70bSHans Rosenfeld static nvme_cmd_t *
945e984c70bSHans Rosenfeld nvme_unqueue_cmd(nvme_t *nvme, nvme_qpair_t *qp, int cid)
946e984c70bSHans Rosenfeld {
947e984c70bSHans Rosenfeld 	nvme_cmd_t *cmd;
948e984c70bSHans Rosenfeld 
949e984c70bSHans Rosenfeld 	ASSERT(mutex_owned(&qp->nq_mutex));
950e984c70bSHans Rosenfeld 	ASSERT3S(cid, <, qp->nq_nentry);
951e984c70bSHans Rosenfeld 
952e984c70bSHans Rosenfeld 	cmd = qp->nq_cmd[cid];
953e984c70bSHans Rosenfeld 	qp->nq_cmd[cid] = NULL;
954e984c70bSHans Rosenfeld 	ASSERT3U(qp->nq_active_cmds, >, 0);
955e984c70bSHans Rosenfeld 	qp->nq_active_cmds--;
956e984c70bSHans Rosenfeld 	sema_v(&qp->nq_sema);
957e984c70bSHans Rosenfeld 
958e984c70bSHans Rosenfeld 	ASSERT3P(cmd, !=, NULL);
959e984c70bSHans Rosenfeld 	ASSERT3P(cmd->nc_nvme, ==, nvme);
960e984c70bSHans Rosenfeld 	ASSERT3S(cmd->nc_sqe.sqe_cid, ==, cid);
961e984c70bSHans Rosenfeld 
962e984c70bSHans Rosenfeld 	return (cmd);
963e984c70bSHans Rosenfeld }
964e984c70bSHans Rosenfeld 
9653c9168faSHans Rosenfeld static nvme_cmd_t *
9663c9168faSHans Rosenfeld nvme_retrieve_cmd(nvme_t *nvme, nvme_qpair_t *qp)
9673c9168faSHans Rosenfeld {
9683c9168faSHans Rosenfeld 	nvme_reg_cqhdbl_t head = { 0 };
9693c9168faSHans Rosenfeld 
9703c9168faSHans Rosenfeld 	nvme_cqe_t *cqe;
9713c9168faSHans Rosenfeld 	nvme_cmd_t *cmd;
9723c9168faSHans Rosenfeld 
9733c9168faSHans Rosenfeld 	(void) ddi_dma_sync(qp->nq_cqdma->nd_dmah, 0,
9743c9168faSHans Rosenfeld 	    sizeof (nvme_cqe_t) * qp->nq_nentry, DDI_DMA_SYNC_FORKERNEL);
9753c9168faSHans Rosenfeld 
9764ac9cfccSHans Rosenfeld 	mutex_enter(&qp->nq_mutex);
9773c9168faSHans Rosenfeld 	cqe = &qp->nq_cq[qp->nq_cqhead];
9783c9168faSHans Rosenfeld 
9793c9168faSHans Rosenfeld 	/* Check phase tag of CQE. Hardware inverts it for new entries. */
9804ac9cfccSHans Rosenfeld 	if (cqe->cqe_sf.sf_p == qp->nq_phase) {
9814ac9cfccSHans Rosenfeld 		mutex_exit(&qp->nq_mutex);
9823c9168faSHans Rosenfeld 		return (NULL);
9834ac9cfccSHans Rosenfeld 	}
9843c9168faSHans Rosenfeld 
9853c9168faSHans Rosenfeld 	ASSERT(nvme->n_ioq[cqe->cqe_sqid] == qp);
9863c9168faSHans Rosenfeld 
987e984c70bSHans Rosenfeld 	cmd = nvme_unqueue_cmd(nvme, qp, cqe->cqe_cid);
9883c9168faSHans Rosenfeld 
9893c9168faSHans Rosenfeld 	ASSERT(cmd->nc_sqid == cqe->cqe_sqid);
9903c9168faSHans Rosenfeld 	bcopy(cqe, &cmd->nc_cqe, sizeof (nvme_cqe_t));
9913c9168faSHans Rosenfeld 
9923c9168faSHans Rosenfeld 	qp->nq_sqhead = cqe->cqe_sqhd;
9933c9168faSHans Rosenfeld 
9943c9168faSHans Rosenfeld 	head.b.cqhdbl_cqh = qp->nq_cqhead = (qp->nq_cqhead + 1) % qp->nq_nentry;
9953c9168faSHans Rosenfeld 
9963c9168faSHans Rosenfeld 	/* Toggle phase on wrap-around. */
9973c9168faSHans Rosenfeld 	if (qp->nq_cqhead == 0)
9983c9168faSHans Rosenfeld 		qp->nq_phase = qp->nq_phase ? 0 : 1;
9993c9168faSHans Rosenfeld 
10003c9168faSHans Rosenfeld 	nvme_put32(cmd->nc_nvme, qp->nq_cqhdbl, head.r);
10014ac9cfccSHans Rosenfeld 	mutex_exit(&qp->nq_mutex);
10023c9168faSHans Rosenfeld 
10033c9168faSHans Rosenfeld 	return (cmd);
10043c9168faSHans Rosenfeld }
10053c9168faSHans Rosenfeld 
10063c9168faSHans Rosenfeld static int
10073c9168faSHans Rosenfeld nvme_check_unknown_cmd_status(nvme_cmd_t *cmd)
10083c9168faSHans Rosenfeld {
10093c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
10103c9168faSHans Rosenfeld 
10113c9168faSHans Rosenfeld 	dev_err(cmd->nc_nvme->n_dip, CE_WARN,
10123c9168faSHans Rosenfeld 	    "!unknown command status received: opc = %x, sqid = %d, cid = %d, "
10133c9168faSHans Rosenfeld 	    "sc = %x, sct = %x, dnr = %d, m = %d", cmd->nc_sqe.sqe_opc,
10143c9168faSHans Rosenfeld 	    cqe->cqe_sqid, cqe->cqe_cid, cqe->cqe_sf.sf_sc, cqe->cqe_sf.sf_sct,
10153c9168faSHans Rosenfeld 	    cqe->cqe_sf.sf_dnr, cqe->cqe_sf.sf_m);
10163c9168faSHans Rosenfeld 
10173d9b1a2aSHans Rosenfeld 	if (cmd->nc_xfer != NULL)
10183d9b1a2aSHans Rosenfeld 		bd_error(cmd->nc_xfer, BD_ERR_ILLRQ);
1019bef9e21aSHans Rosenfeld 
10203c9168faSHans Rosenfeld 	if (cmd->nc_nvme->n_strict_version) {
10213c9168faSHans Rosenfeld 		cmd->nc_nvme->n_dead = B_TRUE;
10223c9168faSHans Rosenfeld 		ddi_fm_service_impact(cmd->nc_nvme->n_dip, DDI_SERVICE_LOST);
10233c9168faSHans Rosenfeld 	}
10243c9168faSHans Rosenfeld 
10253c9168faSHans Rosenfeld 	return (EIO);
10263c9168faSHans Rosenfeld }
10273c9168faSHans Rosenfeld 
10283c9168faSHans Rosenfeld static int
10293c9168faSHans Rosenfeld nvme_check_vendor_cmd_status(nvme_cmd_t *cmd)
10303c9168faSHans Rosenfeld {
10313c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
10323c9168faSHans Rosenfeld 
10333c9168faSHans Rosenfeld 	dev_err(cmd->nc_nvme->n_dip, CE_WARN,
10343c9168faSHans Rosenfeld 	    "!unknown command status received: opc = %x, sqid = %d, cid = %d, "
10353c9168faSHans Rosenfeld 	    "sc = %x, sct = %x, dnr = %d, m = %d", cmd->nc_sqe.sqe_opc,
10363c9168faSHans Rosenfeld 	    cqe->cqe_sqid, cqe->cqe_cid, cqe->cqe_sf.sf_sc, cqe->cqe_sf.sf_sct,
10373c9168faSHans Rosenfeld 	    cqe->cqe_sf.sf_dnr, cqe->cqe_sf.sf_m);
103834c938c7SPete Shephard 	if (!cmd->nc_nvme->n_ignore_unknown_vendor_status) {
10393c9168faSHans Rosenfeld 		cmd->nc_nvme->n_dead = B_TRUE;
10403c9168faSHans Rosenfeld 		ddi_fm_service_impact(cmd->nc_nvme->n_dip, DDI_SERVICE_LOST);
10413c9168faSHans Rosenfeld 	}
10423c9168faSHans Rosenfeld 
10433c9168faSHans Rosenfeld 	return (EIO);
10443c9168faSHans Rosenfeld }
10453c9168faSHans Rosenfeld 
10463c9168faSHans Rosenfeld static int
10473c9168faSHans Rosenfeld nvme_check_integrity_cmd_status(nvme_cmd_t *cmd)
10483c9168faSHans Rosenfeld {
10493c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
10503c9168faSHans Rosenfeld 
10513c9168faSHans Rosenfeld 	switch (cqe->cqe_sf.sf_sc) {
10523c9168faSHans Rosenfeld 	case NVME_CQE_SC_INT_NVM_WRITE:
10533c9168faSHans Rosenfeld 		/* write fail */
10543c9168faSHans Rosenfeld 		/* TODO: post ereport */
10553d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
10563d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_MEDIA);
10573c9168faSHans Rosenfeld 		return (EIO);
10583c9168faSHans Rosenfeld 
10593c9168faSHans Rosenfeld 	case NVME_CQE_SC_INT_NVM_READ:
10603c9168faSHans Rosenfeld 		/* read fail */
10613c9168faSHans Rosenfeld 		/* TODO: post ereport */
10623d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
10633d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_MEDIA);
10643c9168faSHans Rosenfeld 		return (EIO);
10653c9168faSHans Rosenfeld 
10663c9168faSHans Rosenfeld 	default:
10673c9168faSHans Rosenfeld 		return (nvme_check_unknown_cmd_status(cmd));
10683c9168faSHans Rosenfeld 	}
10693c9168faSHans Rosenfeld }
10703c9168faSHans Rosenfeld 
10713c9168faSHans Rosenfeld static int
10723c9168faSHans Rosenfeld nvme_check_generic_cmd_status(nvme_cmd_t *cmd)
10733c9168faSHans Rosenfeld {
10743c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
10753c9168faSHans Rosenfeld 
10763c9168faSHans Rosenfeld 	switch (cqe->cqe_sf.sf_sc) {
10773c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_SUCCESS:
10783c9168faSHans Rosenfeld 		return (0);
10793c9168faSHans Rosenfeld 
10803c9168faSHans Rosenfeld 	/*
10813c9168faSHans Rosenfeld 	 * Errors indicating a bug in the driver should cause a panic.
10823c9168faSHans Rosenfeld 	 */
10833c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_INV_OPC:
10843c9168faSHans Rosenfeld 		/* Invalid Command Opcode */
108508139162SToomas Soome 		if (!cmd->nc_dontpanic)
108608139162SToomas Soome 			dev_err(cmd->nc_nvme->n_dip, CE_PANIC,
108708139162SToomas Soome 			    "programming error: invalid opcode in cmd %p",
108808139162SToomas Soome 			    (void *)cmd);
108908139162SToomas Soome 		return (EINVAL);
10903c9168faSHans Rosenfeld 
10913c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_INV_FLD:
10923c9168faSHans Rosenfeld 		/* Invalid Field in Command */
10933d9b1a2aSHans Rosenfeld 		if (!cmd->nc_dontpanic)
10943d9b1a2aSHans Rosenfeld 			dev_err(cmd->nc_nvme->n_dip, CE_PANIC,
10953d9b1a2aSHans Rosenfeld 			    "programming error: invalid field in cmd %p",
10963d9b1a2aSHans Rosenfeld 			    (void *)cmd);
10973d9b1a2aSHans Rosenfeld 		return (EIO);
10983c9168faSHans Rosenfeld 
10993c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_ID_CNFL:
11003c9168faSHans Rosenfeld 		/* Command ID Conflict */
11013c9168faSHans Rosenfeld 		dev_err(cmd->nc_nvme->n_dip, CE_PANIC, "programming error: "
11023c9168faSHans Rosenfeld 		    "cmd ID conflict in cmd %p", (void *)cmd);
11033c9168faSHans Rosenfeld 		return (0);
11043c9168faSHans Rosenfeld 
11053c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_INV_NS:
11063c9168faSHans Rosenfeld 		/* Invalid Namespace or Format */
11073d9b1a2aSHans Rosenfeld 		if (!cmd->nc_dontpanic)
11083d9b1a2aSHans Rosenfeld 			dev_err(cmd->nc_nvme->n_dip, CE_PANIC,
1109f313c178SYuri Pankov 			    "programming error: invalid NS/format in cmd %p",
11103d9b1a2aSHans Rosenfeld 			    (void *)cmd);
11113d9b1a2aSHans Rosenfeld 		return (EINVAL);
11123c9168faSHans Rosenfeld 
11133c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_NVM_LBA_RANGE:
11143c9168faSHans Rosenfeld 		/* LBA Out Of Range */
11153c9168faSHans Rosenfeld 		dev_err(cmd->nc_nvme->n_dip, CE_PANIC, "programming error: "
11163c9168faSHans Rosenfeld 		    "LBA out of range in cmd %p", (void *)cmd);
11173c9168faSHans Rosenfeld 		return (0);
11183c9168faSHans Rosenfeld 
11193c9168faSHans Rosenfeld 	/*
11203c9168faSHans Rosenfeld 	 * Non-fatal errors, handle gracefully.
11213c9168faSHans Rosenfeld 	 */
11223c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_DATA_XFR_ERR:
11233c9168faSHans Rosenfeld 		/* Data Transfer Error (DMA) */
11243c9168faSHans Rosenfeld 		/* TODO: post ereport */
11253c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_data_xfr_err);
11263d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
11273d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_NTRDY);
11283c9168faSHans Rosenfeld 		return (EIO);
11293c9168faSHans Rosenfeld 
11303c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_INTERNAL_ERR:
11313c9168faSHans Rosenfeld 		/*
11323c9168faSHans Rosenfeld 		 * Internal Error. The spec (v1.0, section 4.5.1.2) says
11333c9168faSHans Rosenfeld 		 * detailed error information is returned as async event,
11343c9168faSHans Rosenfeld 		 * so we pretty much ignore the error here and handle it
11353c9168faSHans Rosenfeld 		 * in the async event handler.
11363c9168faSHans Rosenfeld 		 */
11373c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_internal_err);
11383d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
11393d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_NTRDY);
11403c9168faSHans Rosenfeld 		return (EIO);
11413c9168faSHans Rosenfeld 
11423c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_ABORT_REQUEST:
11433c9168faSHans Rosenfeld 		/*
11443c9168faSHans Rosenfeld 		 * Command Abort Requested. This normally happens only when a
11453c9168faSHans Rosenfeld 		 * command times out.
11463c9168faSHans Rosenfeld 		 */
11473c9168faSHans Rosenfeld 		/* TODO: post ereport or change blkdev to handle this? */
11483c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_abort_rq_err);
11493c9168faSHans Rosenfeld 		return (ECANCELED);
11503c9168faSHans Rosenfeld 
11513c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_ABORT_PWRLOSS:
11523c9168faSHans Rosenfeld 		/* Command Aborted due to Power Loss Notification */
11533c9168faSHans Rosenfeld 		ddi_fm_service_impact(cmd->nc_nvme->n_dip, DDI_SERVICE_LOST);
11543c9168faSHans Rosenfeld 		cmd->nc_nvme->n_dead = B_TRUE;
11553c9168faSHans Rosenfeld 		return (EIO);
11563c9168faSHans Rosenfeld 
11573c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_ABORT_SQ_DEL:
11583c9168faSHans Rosenfeld 		/* Command Aborted due to SQ Deletion */
11593c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_abort_sq_del);
11603c9168faSHans Rosenfeld 		return (EIO);
11613c9168faSHans Rosenfeld 
11623c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_NVM_CAP_EXC:
11633c9168faSHans Rosenfeld 		/* Capacity Exceeded */
11643c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_nvm_cap_exc);
11653d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
11663d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_MEDIA);
11673c9168faSHans Rosenfeld 		return (EIO);
11683c9168faSHans Rosenfeld 
11693c9168faSHans Rosenfeld 	case NVME_CQE_SC_GEN_NVM_NS_NOTRDY:
11703c9168faSHans Rosenfeld 		/* Namespace Not Ready */
11713c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_nvm_ns_notrdy);
11723d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
11733d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_NTRDY);
11743c9168faSHans Rosenfeld 		return (EIO);
11753c9168faSHans Rosenfeld 
11763c9168faSHans Rosenfeld 	default:
11773c9168faSHans Rosenfeld 		return (nvme_check_unknown_cmd_status(cmd));
11783c9168faSHans Rosenfeld 	}
11793c9168faSHans Rosenfeld }
11803c9168faSHans Rosenfeld 
11813c9168faSHans Rosenfeld static int
11823c9168faSHans Rosenfeld nvme_check_specific_cmd_status(nvme_cmd_t *cmd)
11833c9168faSHans Rosenfeld {
11843c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
11853c9168faSHans Rosenfeld 
11863c9168faSHans Rosenfeld 	switch (cqe->cqe_sf.sf_sc) {
11873c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_CQ:
11883c9168faSHans Rosenfeld 		/* Completion Queue Invalid */
11893c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_SQUEUE);
11903c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_cq_err);
11913c9168faSHans Rosenfeld 		return (EINVAL);
11923c9168faSHans Rosenfeld 
11933c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_QID:
11943c9168faSHans Rosenfeld 		/* Invalid Queue Identifier */
11953c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_SQUEUE ||
11963c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_DELETE_SQUEUE ||
11973c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_CQUEUE ||
11983c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_DELETE_CQUEUE);
11993c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_qid_err);
12003c9168faSHans Rosenfeld 		return (EINVAL);
12013c9168faSHans Rosenfeld 
12023c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_MAX_QSZ_EXC:
12033c9168faSHans Rosenfeld 		/* Max Queue Size Exceeded */
12043c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_SQUEUE ||
12053c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_CQUEUE);
12063c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_max_qsz_exc);
12073c9168faSHans Rosenfeld 		return (EINVAL);
12083c9168faSHans Rosenfeld 
12093c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_ABRT_CMD_EXC:
12103c9168faSHans Rosenfeld 		/* Abort Command Limit Exceeded */
12113c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_ABORT);
12123c9168faSHans Rosenfeld 		dev_err(cmd->nc_nvme->n_dip, CE_PANIC, "programming error: "
12133c9168faSHans Rosenfeld 		    "abort command limit exceeded in cmd %p", (void *)cmd);
12143c9168faSHans Rosenfeld 		return (0);
12153c9168faSHans Rosenfeld 
12163c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_ASYNC_EVREQ_EXC:
12173c9168faSHans Rosenfeld 		/* Async Event Request Limit Exceeded */
12183c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_ASYNC_EVENT);
12193c9168faSHans Rosenfeld 		dev_err(cmd->nc_nvme->n_dip, CE_PANIC, "programming error: "
12203c9168faSHans Rosenfeld 		    "async event request limit exceeded in cmd %p",
12213c9168faSHans Rosenfeld 		    (void *)cmd);
12223c9168faSHans Rosenfeld 		return (0);
12233c9168faSHans Rosenfeld 
12243c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_INT_VECT:
12253c9168faSHans Rosenfeld 		/* Invalid Interrupt Vector */
12263c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_CREATE_CQUEUE);
12273c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_int_vect);
12283c9168faSHans Rosenfeld 		return (EINVAL);
12293c9168faSHans Rosenfeld 
12303c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_LOG_PAGE:
12313c9168faSHans Rosenfeld 		/* Invalid Log Page */
12323c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_GET_LOG_PAGE);
12333c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_log_page);
12343c9168faSHans Rosenfeld 		return (EINVAL);
12353c9168faSHans Rosenfeld 
12363c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_FORMAT:
12373c9168faSHans Rosenfeld 		/* Invalid Format */
12383c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_FORMAT);
12393c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_format);
12403d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
12413d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_ILLRQ);
12423c9168faSHans Rosenfeld 		return (EINVAL);
12433c9168faSHans Rosenfeld 
12443c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_INV_Q_DEL:
12453c9168faSHans Rosenfeld 		/* Invalid Queue Deletion */
12463c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_DELETE_CQUEUE);
12473c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_q_del);
12483c9168faSHans Rosenfeld 		return (EINVAL);
12493c9168faSHans Rosenfeld 
12503c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_NVM_CNFL_ATTR:
12513c9168faSHans Rosenfeld 		/* Conflicting Attributes */
12523c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_DSET_MGMT ||
12533c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_READ ||
12543c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_WRITE);
12553c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_cnfl_attr);
12563d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
12573d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_ILLRQ);
12583c9168faSHans Rosenfeld 		return (EINVAL);
12593c9168faSHans Rosenfeld 
12603c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_NVM_INV_PROT:
12613c9168faSHans Rosenfeld 		/* Invalid Protection Information */
12623c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_COMPARE ||
12633c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_READ ||
12643c9168faSHans Rosenfeld 		    cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_WRITE);
12653c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_inv_prot);
12663d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
12673d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_ILLRQ);
12683c9168faSHans Rosenfeld 		return (EINVAL);
12693c9168faSHans Rosenfeld 
12703c9168faSHans Rosenfeld 	case NVME_CQE_SC_SPC_NVM_READONLY:
12713c9168faSHans Rosenfeld 		/* Write to Read Only Range */
12723c9168faSHans Rosenfeld 		ASSERT(cmd->nc_sqe.sqe_opc == NVME_OPC_NVM_WRITE);
12733c9168faSHans Rosenfeld 		atomic_inc_32(&cmd->nc_nvme->n_readonly);
12743d9b1a2aSHans Rosenfeld 		if (cmd->nc_xfer != NULL)
12753d9b1a2aSHans Rosenfeld 			bd_error(cmd->nc_xfer, BD_ERR_ILLRQ);
12763c9168faSHans Rosenfeld 		return (EROFS);
12773c9168faSHans Rosenfeld 
12783c9168faSHans Rosenfeld 	default:
12793c9168faSHans Rosenfeld 		return (nvme_check_unknown_cmd_status(cmd));
12803c9168faSHans Rosenfeld 	}
12813c9168faSHans Rosenfeld }
12823c9168faSHans Rosenfeld 
12833c9168faSHans Rosenfeld static inline int
12843c9168faSHans Rosenfeld nvme_check_cmd_status(nvme_cmd_t *cmd)
12853c9168faSHans Rosenfeld {
12863c9168faSHans Rosenfeld 	nvme_cqe_t *cqe = &cmd->nc_cqe;
12873c9168faSHans Rosenfeld 
1288e984c70bSHans Rosenfeld 	/*
1289e984c70bSHans Rosenfeld 	 * Take a shortcut if the controller is dead, or if
1290e984c70bSHans Rosenfeld 	 * command status indicates no error.
1291e984c70bSHans Rosenfeld 	 */
1292e984c70bSHans Rosenfeld 	if (cmd->nc_nvme->n_dead)
1293e984c70bSHans Rosenfeld 		return (EIO);
1294e984c70bSHans Rosenfeld 
12953c9168faSHans Rosenfeld 	if (cqe->cqe_sf.sf_sct == NVME_CQE_SCT_GENERIC &&
12963c9168faSHans Rosenfeld 	    cqe->cqe_sf.sf_sc == NVME_CQE_SC_GEN_SUCCESS)
12973c9168faSHans Rosenfeld 		return (0);
12983c9168faSHans Rosenfeld 
12993c9168faSHans Rosenfeld 	if (cqe->cqe_sf.sf_sct == NVME_CQE_SCT_GENERIC)
13003c9168faSHans Rosenfeld 		return (nvme_check_generic_cmd_status(cmd));
13013c9168faSHans Rosenfeld 	else if (cqe->cqe_sf.sf_sct == NVME_CQE_SCT_SPECIFIC)
13023c9168faSHans Rosenfeld 		return (nvme_check_specific_cmd_status(cmd));
13033c9168faSHans Rosenfeld 	else if (cqe->cqe_sf.sf_sct == NVME_CQE_SCT_INTEGRITY)
13043c9168faSHans Rosenfeld 		return (nvme_check_integrity_cmd_status(cmd));
13053c9168faSHans Rosenfeld 	else if (cqe->cqe_sf.sf_sct == NVME_CQE_SCT_VENDOR)
13063c9168faSHans Rosenfeld 		return (nvme_check_vendor_cmd_status(cmd));
13073c9168faSHans Rosenfeld 
13083c9168faSHans Rosenfeld 	return (nvme_check_unknown_cmd_status(cmd));
13093c9168faSHans Rosenfeld }
13103c9168faSHans Rosenfeld 
1311e984c70bSHans Rosenfeld static int
1312e984c70bSHans Rosenfeld nvme_abort_cmd(nvme_cmd_t *abort_cmd, uint_t sec)
13133c9168faSHans Rosenfeld {
13143c9168faSHans Rosenfeld 	nvme_t *nvme = abort_cmd->nc_nvme;
13153c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
13163c9168faSHans Rosenfeld 	nvme_abort_cmd_t ac = { 0 };
1317e984c70bSHans Rosenfeld 	int ret = 0;
13183c9168faSHans Rosenfeld 
13193c9168faSHans Rosenfeld 	sema_p(&nvme->n_abort_sema);
13203c9168faSHans Rosenfeld 
13213c9168faSHans Rosenfeld 	ac.b.ac_cid = abort_cmd->nc_sqe.sqe_cid;
13223c9168faSHans Rosenfeld 	ac.b.ac_sqid = abort_cmd->nc_sqid;
13233c9168faSHans Rosenfeld 
13243c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
13253c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_ABORT;
13263c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
13273c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = ac.r;
13283c9168faSHans Rosenfeld 
13293c9168faSHans Rosenfeld 	/*
13303c9168faSHans Rosenfeld 	 * Send the ABORT to the hardware. The ABORT command will return _after_
1331e984c70bSHans Rosenfeld 	 * the aborted command has completed (aborted or otherwise), but since
1332e984c70bSHans Rosenfeld 	 * we still hold the aborted command's mutex its callback hasn't been
1333e984c70bSHans Rosenfeld 	 * processed yet.
13343c9168faSHans Rosenfeld 	 */
1335e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, sec);
13363c9168faSHans Rosenfeld 	sema_v(&nvme->n_abort_sema);
13373c9168faSHans Rosenfeld 
1338e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
13393c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
13403c9168faSHans Rosenfeld 		    "!ABORT failed with sct = %x, sc = %x",
13413c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
13423c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_abort_failed);
13433c9168faSHans Rosenfeld 	} else {
1344e984c70bSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
1345e984c70bSHans Rosenfeld 		    "!ABORT of command %d/%d %ssuccessful",
1346e984c70bSHans Rosenfeld 		    abort_cmd->nc_sqe.sqe_cid, abort_cmd->nc_sqid,
1347e984c70bSHans Rosenfeld 		    cmd->nc_cqe.cqe_dw0 & 1 ? "un" : "");
1348e984c70bSHans Rosenfeld 		if ((cmd->nc_cqe.cqe_dw0 & 1) == 0)
1349e984c70bSHans Rosenfeld 			atomic_inc_32(&nvme->n_cmd_aborted);
13503c9168faSHans Rosenfeld 	}
13513c9168faSHans Rosenfeld 
13523c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
1353e984c70bSHans Rosenfeld 	return (ret);
13543c9168faSHans Rosenfeld }
13553c9168faSHans Rosenfeld 
13563c9168faSHans Rosenfeld /*
13573c9168faSHans Rosenfeld  * nvme_wait_cmd -- wait for command completion or timeout
13583c9168faSHans Rosenfeld  *
13593c9168faSHans Rosenfeld  * In case of a serious error or a timeout of the abort command the hardware
13603c9168faSHans Rosenfeld  * will be declared dead and FMA will be notified.
13613c9168faSHans Rosenfeld  */
1362e984c70bSHans Rosenfeld static void
1363e8ba2a38SHans Rosenfeld nvme_wait_cmd(nvme_cmd_t *cmd, uint_t sec)
13643c9168faSHans Rosenfeld {
1365e8ba2a38SHans Rosenfeld 	clock_t timeout = ddi_get_lbolt() + drv_usectohz(sec * MICROSEC);
13663c9168faSHans Rosenfeld 	nvme_t *nvme = cmd->nc_nvme;
13673c9168faSHans Rosenfeld 	nvme_reg_csts_t csts;
1368e984c70bSHans Rosenfeld 	nvme_qpair_t *qp;
13693c9168faSHans Rosenfeld 
13703c9168faSHans Rosenfeld 	ASSERT(mutex_owned(&cmd->nc_mutex));
13713c9168faSHans Rosenfeld 
13723c9168faSHans Rosenfeld 	while (!cmd->nc_completed) {
13733c9168faSHans Rosenfeld 		if (cv_timedwait(&cmd->nc_cv, &cmd->nc_mutex, timeout) == -1)
13743c9168faSHans Rosenfeld 			break;
13753c9168faSHans Rosenfeld 	}
13763c9168faSHans Rosenfeld 
13773c9168faSHans Rosenfeld 	if (cmd->nc_completed)
1378e984c70bSHans Rosenfeld 		return;
13793c9168faSHans Rosenfeld 
13803c9168faSHans Rosenfeld 	/*
1381e984c70bSHans Rosenfeld 	 * The command timed out.
1382e984c70bSHans Rosenfeld 	 *
13833c9168faSHans Rosenfeld 	 * Check controller for fatal status, any errors associated with the
13843c9168faSHans Rosenfeld 	 * register or DMA handle, or for a double timeout (abort command timed
13853c9168faSHans Rosenfeld 	 * out). If necessary log a warning and call FMA.
13863c9168faSHans Rosenfeld 	 */
13873c9168faSHans Rosenfeld 	csts.r = nvme_get32(nvme, NVME_REG_CSTS);
1388e984c70bSHans Rosenfeld 	dev_err(nvme->n_dip, CE_WARN, "!command %d/%d timeout, "
1389e984c70bSHans Rosenfeld 	    "OPC = %x, CFS = %d", cmd->nc_sqe.sqe_cid, cmd->nc_sqid,
1390e984c70bSHans Rosenfeld 	    cmd->nc_sqe.sqe_opc, csts.b.csts_cfs);
13913c9168faSHans Rosenfeld 	atomic_inc_32(&nvme->n_cmd_timeout);
13923c9168faSHans Rosenfeld 
13933c9168faSHans Rosenfeld 	if (csts.b.csts_cfs ||
13943c9168faSHans Rosenfeld 	    nvme_check_regs_hdl(nvme) ||
13953c9168faSHans Rosenfeld 	    nvme_check_dma_hdl(cmd->nc_dma) ||
13963c9168faSHans Rosenfeld 	    cmd->nc_sqe.sqe_opc == NVME_OPC_ABORT) {
13973c9168faSHans Rosenfeld 		ddi_fm_service_impact(nvme->n_dip, DDI_SERVICE_LOST);
13983c9168faSHans Rosenfeld 		nvme->n_dead = B_TRUE;
1399e984c70bSHans Rosenfeld 	} else if (nvme_abort_cmd(cmd, sec) == 0) {
14003c9168faSHans Rosenfeld 		/*
1401e984c70bSHans Rosenfeld 		 * If the abort succeeded the command should complete
1402e984c70bSHans Rosenfeld 		 * immediately with an appropriate status.
14033c9168faSHans Rosenfeld 		 */
1404e984c70bSHans Rosenfeld 		while (!cmd->nc_completed)
1405e984c70bSHans Rosenfeld 			cv_wait(&cmd->nc_cv, &cmd->nc_mutex);
1406e984c70bSHans Rosenfeld 
1407e984c70bSHans Rosenfeld 		return;
14083c9168faSHans Rosenfeld 	}
14093c9168faSHans Rosenfeld 
1410e984c70bSHans Rosenfeld 	qp = nvme->n_ioq[cmd->nc_sqid];
1411e984c70bSHans Rosenfeld 
1412e984c70bSHans Rosenfeld 	mutex_enter(&qp->nq_mutex);
1413e984c70bSHans Rosenfeld 	(void) nvme_unqueue_cmd(nvme, qp, cmd->nc_sqe.sqe_cid);
1414e984c70bSHans Rosenfeld 	mutex_exit(&qp->nq_mutex);
1415e984c70bSHans Rosenfeld 
1416e984c70bSHans Rosenfeld 	/*
1417e984c70bSHans Rosenfeld 	 * As we don't know what the presumed dead hardware might still do with
1418e984c70bSHans Rosenfeld 	 * the DMA memory, we'll put the command on the lost commands list if it
1419e984c70bSHans Rosenfeld 	 * has any DMA memory.
1420e984c70bSHans Rosenfeld 	 */
1421e984c70bSHans Rosenfeld 	if (cmd->nc_dma != NULL) {
1422e984c70bSHans Rosenfeld 		mutex_enter(&nvme_lc_mutex);
1423e984c70bSHans Rosenfeld 		list_insert_head(&nvme_lost_cmds, cmd);
1424e984c70bSHans Rosenfeld 		mutex_exit(&nvme_lc_mutex);
1425e984c70bSHans Rosenfeld 	}
14263c9168faSHans Rosenfeld }
14273c9168faSHans Rosenfeld 
14283c9168faSHans Rosenfeld static void
14293c9168faSHans Rosenfeld nvme_wakeup_cmd(void *arg)
14303c9168faSHans Rosenfeld {
14313c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = arg;
14323c9168faSHans Rosenfeld 
14333c9168faSHans Rosenfeld 	mutex_enter(&cmd->nc_mutex);
14343c9168faSHans Rosenfeld 	cmd->nc_completed = B_TRUE;
14353c9168faSHans Rosenfeld 	cv_signal(&cmd->nc_cv);
14363c9168faSHans Rosenfeld 	mutex_exit(&cmd->nc_mutex);
14373c9168faSHans Rosenfeld }
14383c9168faSHans Rosenfeld 
14393c9168faSHans Rosenfeld static void
14403c9168faSHans Rosenfeld nvme_async_event_task(void *arg)
14413c9168faSHans Rosenfeld {
14423c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = arg;
14433c9168faSHans Rosenfeld 	nvme_t *nvme = cmd->nc_nvme;
14443c9168faSHans Rosenfeld 	nvme_error_log_entry_t *error_log = NULL;
14453c9168faSHans Rosenfeld 	nvme_health_log_t *health_log = NULL;
14463d9b1a2aSHans Rosenfeld 	size_t logsize = 0;
14473c9168faSHans Rosenfeld 	nvme_async_event_t event;
14483c9168faSHans Rosenfeld 
14493c9168faSHans Rosenfeld 	/*
14503c9168faSHans Rosenfeld 	 * Check for errors associated with the async request itself. The only
14513c9168faSHans Rosenfeld 	 * command-specific error is "async event limit exceeded", which
14523c9168faSHans Rosenfeld 	 * indicates a programming error in the driver and causes a panic in
14533c9168faSHans Rosenfeld 	 * nvme_check_cmd_status().
14543c9168faSHans Rosenfeld 	 *
14553c9168faSHans Rosenfeld 	 * Other possible errors are various scenarios where the async request
14563c9168faSHans Rosenfeld 	 * was aborted, or internal errors in the device. Internal errors are
14573c9168faSHans Rosenfeld 	 * reported to FMA, the command aborts need no special handling here.
145808139162SToomas Soome 	 *
145908139162SToomas Soome 	 * And finally, at least qemu nvme does not support async events,
146008139162SToomas Soome 	 * and will return NVME_CQE_SC_GEN_INV_OPC | DNR. If so, we
146108139162SToomas Soome 	 * will avoid posting async events.
14623c9168faSHans Rosenfeld 	 */
146308139162SToomas Soome 
1464e984c70bSHans Rosenfeld 	if (nvme_check_cmd_status(cmd) != 0) {
14653c9168faSHans Rosenfeld 		dev_err(cmd->nc_nvme->n_dip, CE_WARN,
14663c9168faSHans Rosenfeld 		    "!async event request returned failure, sct = %x, "
14673c9168faSHans Rosenfeld 		    "sc = %x, dnr = %d, m = %d", cmd->nc_cqe.cqe_sf.sf_sct,
14683c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sc, cmd->nc_cqe.cqe_sf.sf_dnr,
14693c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_m);
14703c9168faSHans Rosenfeld 
14713c9168faSHans Rosenfeld 		if (cmd->nc_cqe.cqe_sf.sf_sct == NVME_CQE_SCT_GENERIC &&
14723c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sc == NVME_CQE_SC_GEN_INTERNAL_ERR) {
14733c9168faSHans Rosenfeld 			cmd->nc_nvme->n_dead = B_TRUE;
14743c9168faSHans Rosenfeld 			ddi_fm_service_impact(cmd->nc_nvme->n_dip,
14753c9168faSHans Rosenfeld 			    DDI_SERVICE_LOST);
14763c9168faSHans Rosenfeld 		}
147708139162SToomas Soome 
147808139162SToomas Soome 		if (cmd->nc_cqe.cqe_sf.sf_sct == NVME_CQE_SCT_GENERIC &&
147908139162SToomas Soome 		    cmd->nc_cqe.cqe_sf.sf_sc == NVME_CQE_SC_GEN_INV_OPC &&
148008139162SToomas Soome 		    cmd->nc_cqe.cqe_sf.sf_dnr == 1) {
148108139162SToomas Soome 			nvme->n_async_event_supported = B_FALSE;
148208139162SToomas Soome 		}
148308139162SToomas Soome 
14843c9168faSHans Rosenfeld 		nvme_free_cmd(cmd);
14853c9168faSHans Rosenfeld 		return;
14863c9168faSHans Rosenfeld 	}
14873c9168faSHans Rosenfeld 
14883c9168faSHans Rosenfeld 
14893c9168faSHans Rosenfeld 	event.r = cmd->nc_cqe.cqe_dw0;
14903c9168faSHans Rosenfeld 
14913c9168faSHans Rosenfeld 	/* Clear CQE and re-submit the async request. */
14923c9168faSHans Rosenfeld 	bzero(&cmd->nc_cqe, sizeof (nvme_cqe_t));
14934b324362SHans Rosenfeld 	nvme_submit_admin_cmd(nvme->n_adminq, cmd);
14943c9168faSHans Rosenfeld 
14953c9168faSHans Rosenfeld 	switch (event.b.ae_type) {
14963c9168faSHans Rosenfeld 	case NVME_ASYNC_TYPE_ERROR:
14973c9168faSHans Rosenfeld 		if (event.b.ae_logpage == NVME_LOGPAGE_ERROR) {
1498*bc586359SRobert Mustacchi 			(void) nvme_get_logpage(nvme, B_FALSE,
1499*bc586359SRobert Mustacchi 			    (void **)&error_log, &logsize, event.b.ae_logpage);
15003c9168faSHans Rosenfeld 		} else {
15013c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN, "!wrong logpage in "
15023c9168faSHans Rosenfeld 			    "async event reply: %d", event.b.ae_logpage);
15033c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_wrong_logpage);
15043c9168faSHans Rosenfeld 		}
15053c9168faSHans Rosenfeld 
15063c9168faSHans Rosenfeld 		switch (event.b.ae_info) {
15073c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_INV_SQ:
15083c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_PANIC, "programming error: "
15093c9168faSHans Rosenfeld 			    "invalid submission queue");
15103c9168faSHans Rosenfeld 			return;
15113c9168faSHans Rosenfeld 
15123c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_INV_DBL:
15133c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_PANIC, "programming error: "
15143c9168faSHans Rosenfeld 			    "invalid doorbell write value");
15153c9168faSHans Rosenfeld 			return;
15163c9168faSHans Rosenfeld 
15173c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_DIAGFAIL:
15183c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN, "!diagnostic failure");
15193c9168faSHans Rosenfeld 			ddi_fm_service_impact(nvme->n_dip, DDI_SERVICE_LOST);
15203c9168faSHans Rosenfeld 			nvme->n_dead = B_TRUE;
15213c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_diagfail_event);
15223c9168faSHans Rosenfeld 			break;
15233c9168faSHans Rosenfeld 
15243c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_PERSISTENT:
15253c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN, "!persistent internal "
15263c9168faSHans Rosenfeld 			    "device error");
15273c9168faSHans Rosenfeld 			ddi_fm_service_impact(nvme->n_dip, DDI_SERVICE_LOST);
15283c9168faSHans Rosenfeld 			nvme->n_dead = B_TRUE;
15293c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_persistent_event);
15303c9168faSHans Rosenfeld 			break;
15313c9168faSHans Rosenfeld 
15323c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_TRANSIENT:
15333c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN, "!transient internal "
15343c9168faSHans Rosenfeld 			    "device error");
15353c9168faSHans Rosenfeld 			/* TODO: send ereport */
15363c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_transient_event);
15373c9168faSHans Rosenfeld 			break;
15383c9168faSHans Rosenfeld 
15393c9168faSHans Rosenfeld 		case NVME_ASYNC_ERROR_FW_LOAD:
15403c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
15413c9168faSHans Rosenfeld 			    "!firmware image load error");
15423c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_fw_load_event);
15433c9168faSHans Rosenfeld 			break;
15443c9168faSHans Rosenfeld 		}
15453c9168faSHans Rosenfeld 		break;
15463c9168faSHans Rosenfeld 
15473c9168faSHans Rosenfeld 	case NVME_ASYNC_TYPE_HEALTH:
15483c9168faSHans Rosenfeld 		if (event.b.ae_logpage == NVME_LOGPAGE_HEALTH) {
1549*bc586359SRobert Mustacchi 			(void) nvme_get_logpage(nvme, B_FALSE,
1550*bc586359SRobert Mustacchi 			    (void **)&health_log, &logsize, event.b.ae_logpage,
1551*bc586359SRobert Mustacchi 			    -1);
15523c9168faSHans Rosenfeld 		} else {
15533c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN, "!wrong logpage in "
15543c9168faSHans Rosenfeld 			    "async event reply: %d", event.b.ae_logpage);
15553c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_wrong_logpage);
15563c9168faSHans Rosenfeld 		}
15573c9168faSHans Rosenfeld 
15583c9168faSHans Rosenfeld 		switch (event.b.ae_info) {
15593c9168faSHans Rosenfeld 		case NVME_ASYNC_HEALTH_RELIABILITY:
15603c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
15613c9168faSHans Rosenfeld 			    "!device reliability compromised");
15623c9168faSHans Rosenfeld 			/* TODO: send ereport */
15633c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_reliability_event);
15643c9168faSHans Rosenfeld 			break;
15653c9168faSHans Rosenfeld 
15663c9168faSHans Rosenfeld 		case NVME_ASYNC_HEALTH_TEMPERATURE:
15673c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
15683c9168faSHans Rosenfeld 			    "!temperature above threshold");
15693c9168faSHans Rosenfeld 			/* TODO: send ereport */
15703c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_temperature_event);
15713c9168faSHans Rosenfeld 			break;
15723c9168faSHans Rosenfeld 
15733c9168faSHans Rosenfeld 		case NVME_ASYNC_HEALTH_SPARE:
15743c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
15753c9168faSHans Rosenfeld 			    "!spare space below threshold");
15763c9168faSHans Rosenfeld 			/* TODO: send ereport */
15773c9168faSHans Rosenfeld 			atomic_inc_32(&nvme->n_spare_event);
15783c9168faSHans Rosenfeld 			break;
15793c9168faSHans Rosenfeld 		}
15803c9168faSHans Rosenfeld 		break;
15813c9168faSHans Rosenfeld 
15823c9168faSHans Rosenfeld 	case NVME_ASYNC_TYPE_VENDOR:
15833c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!vendor specific async event "
15843c9168faSHans Rosenfeld 		    "received, info = %x, logpage = %x", event.b.ae_info,
15853c9168faSHans Rosenfeld 		    event.b.ae_logpage);
15863c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_vendor_event);
15873c9168faSHans Rosenfeld 		break;
15883c9168faSHans Rosenfeld 
15893c9168faSHans Rosenfeld 	default:
15903c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!unknown async event received, "
15913c9168faSHans Rosenfeld 		    "type = %x, info = %x, logpage = %x", event.b.ae_type,
15923c9168faSHans Rosenfeld 		    event.b.ae_info, event.b.ae_logpage);
15933c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_unknown_event);
15943c9168faSHans Rosenfeld 		break;
15953c9168faSHans Rosenfeld 	}
15963c9168faSHans Rosenfeld 
15973c9168faSHans Rosenfeld 	if (error_log)
15983d9b1a2aSHans Rosenfeld 		kmem_free(error_log, logsize);
15993c9168faSHans Rosenfeld 
16003c9168faSHans Rosenfeld 	if (health_log)
16013d9b1a2aSHans Rosenfeld 		kmem_free(health_log, logsize);
16023c9168faSHans Rosenfeld }
16033c9168faSHans Rosenfeld 
1604e984c70bSHans Rosenfeld static void
1605e8ba2a38SHans Rosenfeld nvme_admin_cmd(nvme_cmd_t *cmd, int sec)
16063c9168faSHans Rosenfeld {
16073c9168faSHans Rosenfeld 	mutex_enter(&cmd->nc_mutex);
16084b324362SHans Rosenfeld 	nvme_submit_admin_cmd(cmd->nc_nvme->n_adminq, cmd);
1609e984c70bSHans Rosenfeld 	nvme_wait_cmd(cmd, sec);
16103c9168faSHans Rosenfeld 	mutex_exit(&cmd->nc_mutex);
16113c9168faSHans Rosenfeld }
16123c9168faSHans Rosenfeld 
16134b324362SHans Rosenfeld static void
16143c9168faSHans Rosenfeld nvme_async_event(nvme_t *nvme)
16153c9168faSHans Rosenfeld {
161608139162SToomas Soome 	nvme_cmd_t *cmd;
16173c9168faSHans Rosenfeld 
161808139162SToomas Soome 	cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
16193c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
16203c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_ASYNC_EVENT;
16213c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_async_event_task;
162208139162SToomas Soome 	cmd->nc_dontpanic = B_TRUE;
16233c9168faSHans Rosenfeld 
16244b324362SHans Rosenfeld 	nvme_submit_admin_cmd(nvme->n_adminq, cmd);
16253c9168faSHans Rosenfeld }
16263c9168faSHans Rosenfeld 
16273d9b1a2aSHans Rosenfeld static int
1628*bc586359SRobert Mustacchi nvme_format_nvm(nvme_t *nvme, boolean_t user, uint32_t nsid, uint8_t lbaf,
1629*bc586359SRobert Mustacchi     boolean_t ms, uint8_t pi, boolean_t pil, uint8_t ses)
16303d9b1a2aSHans Rosenfeld {
16313d9b1a2aSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
16323d9b1a2aSHans Rosenfeld 	nvme_format_nvm_t format_nvm = { 0 };
16333d9b1a2aSHans Rosenfeld 	int ret;
16343d9b1a2aSHans Rosenfeld 
16353d9b1a2aSHans Rosenfeld 	format_nvm.b.fm_lbaf = lbaf & 0xf;
16363d9b1a2aSHans Rosenfeld 	format_nvm.b.fm_ms = ms ? 1 : 0;
16373d9b1a2aSHans Rosenfeld 	format_nvm.b.fm_pi = pi & 0x7;
16383d9b1a2aSHans Rosenfeld 	format_nvm.b.fm_pil = pil ? 1 : 0;
16393d9b1a2aSHans Rosenfeld 	format_nvm.b.fm_ses = ses & 0x7;
16403d9b1a2aSHans Rosenfeld 
16413d9b1a2aSHans Rosenfeld 	cmd->nc_sqid = 0;
16423d9b1a2aSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
16433d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_nsid = nsid;
16443d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_NVM_FORMAT;
16453d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = format_nvm.r;
16463d9b1a2aSHans Rosenfeld 
16473d9b1a2aSHans Rosenfeld 	/*
16483d9b1a2aSHans Rosenfeld 	 * Some devices like Samsung SM951 don't allow formatting of all
16493d9b1a2aSHans Rosenfeld 	 * namespaces in one command. Handle that gracefully.
16503d9b1a2aSHans Rosenfeld 	 */
16513d9b1a2aSHans Rosenfeld 	if (nsid == (uint32_t)-1)
16523d9b1a2aSHans Rosenfeld 		cmd->nc_dontpanic = B_TRUE;
1653*bc586359SRobert Mustacchi 	/*
1654*bc586359SRobert Mustacchi 	 * If this format request was initiated by the user, then don't allow a
1655*bc586359SRobert Mustacchi 	 * programmer error to panic the system.
1656*bc586359SRobert Mustacchi 	 */
1657*bc586359SRobert Mustacchi 	if (user)
1658*bc586359SRobert Mustacchi 		cmd->nc_dontpanic = B_TRUE;
16593d9b1a2aSHans Rosenfeld 
1660e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_format_cmd_timeout);
16613d9b1a2aSHans Rosenfeld 
16623d9b1a2aSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
16633d9b1a2aSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
16643d9b1a2aSHans Rosenfeld 		    "!FORMAT failed with sct = %x, sc = %x",
16653d9b1a2aSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
16663d9b1a2aSHans Rosenfeld 	}
16673d9b1a2aSHans Rosenfeld 
16683d9b1a2aSHans Rosenfeld 	nvme_free_cmd(cmd);
16693d9b1a2aSHans Rosenfeld 	return (ret);
16703d9b1a2aSHans Rosenfeld }
16713d9b1a2aSHans Rosenfeld 
16723d9b1a2aSHans Rosenfeld static int
1673*bc586359SRobert Mustacchi nvme_get_logpage(nvme_t *nvme, boolean_t user, void **buf, size_t *bufsize,
1674*bc586359SRobert Mustacchi     uint8_t logpage, ...)
16753c9168faSHans Rosenfeld {
16763c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
167734c938c7SPete Shephard 	nvme_getlogpage_t getlogpage = { 0 };
16783c9168faSHans Rosenfeld 	va_list ap;
1679e984c70bSHans Rosenfeld 	int ret;
16803c9168faSHans Rosenfeld 
16813c9168faSHans Rosenfeld 	va_start(ap, logpage);
16823c9168faSHans Rosenfeld 
16833c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
16843c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
16853c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_GET_LOG_PAGE;
16863c9168faSHans Rosenfeld 
1687*bc586359SRobert Mustacchi 	if (user)
1688*bc586359SRobert Mustacchi 		cmd->nc_dontpanic = B_TRUE;
1689*bc586359SRobert Mustacchi 
16903c9168faSHans Rosenfeld 	getlogpage.b.lp_lid = logpage;
16913c9168faSHans Rosenfeld 
16923c9168faSHans Rosenfeld 	switch (logpage) {
16933c9168faSHans Rosenfeld 	case NVME_LOGPAGE_ERROR:
16943c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = (uint32_t)-1;
16953d9b1a2aSHans Rosenfeld 		/*
16963d9b1a2aSHans Rosenfeld 		 * The GET LOG PAGE command can use at most 2 pages to return
16973d9b1a2aSHans Rosenfeld 		 * data, PRP lists are not supported.
16983d9b1a2aSHans Rosenfeld 		 */
16993d9b1a2aSHans Rosenfeld 		*bufsize = MIN(2 * nvme->n_pagesize,
17003d9b1a2aSHans Rosenfeld 		    nvme->n_error_log_len * sizeof (nvme_error_log_entry_t));
17013c9168faSHans Rosenfeld 		break;
17023c9168faSHans Rosenfeld 
17033c9168faSHans Rosenfeld 	case NVME_LOGPAGE_HEALTH:
17043c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = va_arg(ap, uint32_t);
17053d9b1a2aSHans Rosenfeld 		*bufsize = sizeof (nvme_health_log_t);
17063c9168faSHans Rosenfeld 		break;
17073c9168faSHans Rosenfeld 
17083c9168faSHans Rosenfeld 	case NVME_LOGPAGE_FWSLOT:
17093c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = (uint32_t)-1;
17103d9b1a2aSHans Rosenfeld 		*bufsize = sizeof (nvme_fwslot_log_t);
17113c9168faSHans Rosenfeld 		break;
17123c9168faSHans Rosenfeld 
17133c9168faSHans Rosenfeld 	default:
17143c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!unknown log page requested: %d",
17153c9168faSHans Rosenfeld 		    logpage);
17163c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_unknown_logpage);
1717e984c70bSHans Rosenfeld 		ret = EINVAL;
17183c9168faSHans Rosenfeld 		goto fail;
17193c9168faSHans Rosenfeld 	}
17203c9168faSHans Rosenfeld 
17213c9168faSHans Rosenfeld 	va_end(ap);
17223c9168faSHans Rosenfeld 
17233d9b1a2aSHans Rosenfeld 	getlogpage.b.lp_numd = *bufsize / sizeof (uint32_t) - 1;
17243c9168faSHans Rosenfeld 
17253c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = getlogpage.r;
17263c9168faSHans Rosenfeld 
17273c9168faSHans Rosenfeld 	if (nvme_zalloc_dma(nvme, getlogpage.b.lp_numd * sizeof (uint32_t),
17283c9168faSHans Rosenfeld 	    DDI_DMA_READ, &nvme->n_prp_dma_attr, &cmd->nc_dma) != DDI_SUCCESS) {
17293c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
17303c9168faSHans Rosenfeld 		    "!nvme_zalloc_dma failed for GET LOG PAGE");
1731e984c70bSHans Rosenfeld 		ret = ENOMEM;
17323c9168faSHans Rosenfeld 		goto fail;
17333c9168faSHans Rosenfeld 	}
17343c9168faSHans Rosenfeld 
17353c9168faSHans Rosenfeld 	if (cmd->nc_dma->nd_ncookie > 2) {
17363c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
17373c9168faSHans Rosenfeld 		    "!too many DMA cookies for GET LOG PAGE");
17383c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_too_many_cookies);
1739e984c70bSHans Rosenfeld 		ret = ENOMEM;
17403c9168faSHans Rosenfeld 		goto fail;
17413c9168faSHans Rosenfeld 	}
17423c9168faSHans Rosenfeld 
17433c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[0] = cmd->nc_dma->nd_cookie.dmac_laddress;
17443c9168faSHans Rosenfeld 	if (cmd->nc_dma->nd_ncookie > 1) {
17453c9168faSHans Rosenfeld 		ddi_dma_nextcookie(cmd->nc_dma->nd_dmah,
17463c9168faSHans Rosenfeld 		    &cmd->nc_dma->nd_cookie);
17473c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_dptr.d_prp[1] =
17483c9168faSHans Rosenfeld 		    cmd->nc_dma->nd_cookie.dmac_laddress;
17493c9168faSHans Rosenfeld 	}
17503c9168faSHans Rosenfeld 
1751e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
17523c9168faSHans Rosenfeld 
1753e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
17543c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
17553c9168faSHans Rosenfeld 		    "!GET LOG PAGE failed with sct = %x, sc = %x",
17563c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
17573c9168faSHans Rosenfeld 		goto fail;
17583c9168faSHans Rosenfeld 	}
17593c9168faSHans Rosenfeld 
17603d9b1a2aSHans Rosenfeld 	*buf = kmem_alloc(*bufsize, KM_SLEEP);
17613d9b1a2aSHans Rosenfeld 	bcopy(cmd->nc_dma->nd_memp, *buf, *bufsize);
17623d9b1a2aSHans Rosenfeld 
17633c9168faSHans Rosenfeld fail:
17643c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
17653c9168faSHans Rosenfeld 
17663d9b1a2aSHans Rosenfeld 	return (ret);
17673c9168faSHans Rosenfeld }
17683c9168faSHans Rosenfeld 
1769e984c70bSHans Rosenfeld static int
1770*bc586359SRobert Mustacchi nvme_identify(nvme_t *nvme, boolean_t user, uint32_t nsid, void **buf)
17713c9168faSHans Rosenfeld {
17723c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
1773e984c70bSHans Rosenfeld 	int ret;
1774e984c70bSHans Rosenfeld 
1775e984c70bSHans Rosenfeld 	if (buf == NULL)
1776e984c70bSHans Rosenfeld 		return (EINVAL);
17773c9168faSHans Rosenfeld 
17783c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
17793c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
17803c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_IDENTIFY;
17813c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_nsid = nsid;
17823c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = nsid ? NVME_IDENTIFY_NSID : NVME_IDENTIFY_CTRL;
17833c9168faSHans Rosenfeld 
17843c9168faSHans Rosenfeld 	if (nvme_zalloc_dma(nvme, NVME_IDENTIFY_BUFSIZE, DDI_DMA_READ,
17853c9168faSHans Rosenfeld 	    &nvme->n_prp_dma_attr, &cmd->nc_dma) != DDI_SUCCESS) {
17863c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
17873c9168faSHans Rosenfeld 		    "!nvme_zalloc_dma failed for IDENTIFY");
1788e984c70bSHans Rosenfeld 		ret = ENOMEM;
17893c9168faSHans Rosenfeld 		goto fail;
17903c9168faSHans Rosenfeld 	}
17913c9168faSHans Rosenfeld 
17923c9168faSHans Rosenfeld 	if (cmd->nc_dma->nd_ncookie > 2) {
17933c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
17943c9168faSHans Rosenfeld 		    "!too many DMA cookies for IDENTIFY");
17953c9168faSHans Rosenfeld 		atomic_inc_32(&nvme->n_too_many_cookies);
1796e984c70bSHans Rosenfeld 		ret = ENOMEM;
17973c9168faSHans Rosenfeld 		goto fail;
17983c9168faSHans Rosenfeld 	}
17993c9168faSHans Rosenfeld 
18003c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[0] = cmd->nc_dma->nd_cookie.dmac_laddress;
18013c9168faSHans Rosenfeld 	if (cmd->nc_dma->nd_ncookie > 1) {
18023c9168faSHans Rosenfeld 		ddi_dma_nextcookie(cmd->nc_dma->nd_dmah,
18033c9168faSHans Rosenfeld 		    &cmd->nc_dma->nd_cookie);
18043c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_dptr.d_prp[1] =
18053c9168faSHans Rosenfeld 		    cmd->nc_dma->nd_cookie.dmac_laddress;
18063c9168faSHans Rosenfeld 	}
18073c9168faSHans Rosenfeld 
1808*bc586359SRobert Mustacchi 	if (user)
1809*bc586359SRobert Mustacchi 		cmd->nc_dontpanic = B_TRUE;
1810*bc586359SRobert Mustacchi 
1811e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
18123c9168faSHans Rosenfeld 
1813e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
18143c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
18153c9168faSHans Rosenfeld 		    "!IDENTIFY failed with sct = %x, sc = %x",
18163c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
18173c9168faSHans Rosenfeld 		goto fail;
18183c9168faSHans Rosenfeld 	}
18193c9168faSHans Rosenfeld 
1820e984c70bSHans Rosenfeld 	*buf = kmem_alloc(NVME_IDENTIFY_BUFSIZE, KM_SLEEP);
1821e984c70bSHans Rosenfeld 	bcopy(cmd->nc_dma->nd_memp, *buf, NVME_IDENTIFY_BUFSIZE);
18223c9168faSHans Rosenfeld 
18233c9168faSHans Rosenfeld fail:
18243c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
18253c9168faSHans Rosenfeld 
1826e984c70bSHans Rosenfeld 	return (ret);
18273c9168faSHans Rosenfeld }
18283c9168faSHans Rosenfeld 
1829e984c70bSHans Rosenfeld static int
1830*bc586359SRobert Mustacchi nvme_set_features(nvme_t *nvme, boolean_t user, uint32_t nsid, uint8_t feature,
1831*bc586359SRobert Mustacchi     uint32_t val, uint32_t *res)
18323c9168faSHans Rosenfeld {
1833d148d46eSHans Rosenfeld 	_NOTE(ARGUNUSED(nsid));
18343c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
1835e984c70bSHans Rosenfeld 	int ret = EINVAL;
18363c9168faSHans Rosenfeld 
1837d148d46eSHans Rosenfeld 	ASSERT(res != NULL);
18383c9168faSHans Rosenfeld 
18393c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
18403c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
18413c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_SET_FEATURES;
1842d148d46eSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = feature;
1843d148d46eSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw11 = val;
1844d148d46eSHans Rosenfeld 
1845*bc586359SRobert Mustacchi 	if (user)
1846*bc586359SRobert Mustacchi 		cmd->nc_dontpanic = B_TRUE;
1847*bc586359SRobert Mustacchi 
1848d148d46eSHans Rosenfeld 	switch (feature) {
1849d148d46eSHans Rosenfeld 	case NVME_FEAT_WRITE_CACHE:
1850d148d46eSHans Rosenfeld 		if (!nvme->n_write_cache_present)
1851d148d46eSHans Rosenfeld 			goto fail;
1852d148d46eSHans Rosenfeld 		break;
1853d148d46eSHans Rosenfeld 
1854d148d46eSHans Rosenfeld 	case NVME_FEAT_NQUEUES:
1855d148d46eSHans Rosenfeld 		break;
1856d148d46eSHans Rosenfeld 
1857d148d46eSHans Rosenfeld 	default:
1858d148d46eSHans Rosenfeld 		goto fail;
1859d148d46eSHans Rosenfeld 	}
18603c9168faSHans Rosenfeld 
1861e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
18623c9168faSHans Rosenfeld 
1863e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
18643c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
1865d148d46eSHans Rosenfeld 		    "!SET FEATURES %d failed with sct = %x, sc = %x",
1866d148d46eSHans Rosenfeld 		    feature, cmd->nc_cqe.cqe_sf.sf_sct,
1867d148d46eSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sc);
1868d148d46eSHans Rosenfeld 		goto fail;
18693c9168faSHans Rosenfeld 	}
18703c9168faSHans Rosenfeld 
1871d148d46eSHans Rosenfeld 	*res = cmd->nc_cqe.cqe_dw0;
1872d148d46eSHans Rosenfeld 
1873d148d46eSHans Rosenfeld fail:
18743c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
1875d148d46eSHans Rosenfeld 	return (ret);
1876d148d46eSHans Rosenfeld }
1877d148d46eSHans Rosenfeld 
1878e984c70bSHans Rosenfeld static int
1879*bc586359SRobert Mustacchi nvme_get_features(nvme_t *nvme, boolean_t user, uint32_t nsid, uint8_t feature,
1880*bc586359SRobert Mustacchi     uint32_t *res, void **buf, size_t *bufsize)
18813d9b1a2aSHans Rosenfeld {
18823d9b1a2aSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
1883e984c70bSHans Rosenfeld 	int ret = EINVAL;
18843d9b1a2aSHans Rosenfeld 
18853d9b1a2aSHans Rosenfeld 	ASSERT(res != NULL);
18863d9b1a2aSHans Rosenfeld 
18873d9b1a2aSHans Rosenfeld 	if (bufsize != NULL)
18883d9b1a2aSHans Rosenfeld 		*bufsize = 0;
18893d9b1a2aSHans Rosenfeld 
18903d9b1a2aSHans Rosenfeld 	cmd->nc_sqid = 0;
18913d9b1a2aSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
18923d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_GET_FEATURES;
18933d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = feature;
18943d9b1a2aSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw11 = *res;
18953d9b1a2aSHans Rosenfeld 
1896f313c178SYuri Pankov 	/*
1897f313c178SYuri Pankov 	 * For some of the optional features there doesn't seem to be a method
1898f313c178SYuri Pankov 	 * of detecting whether it is supported other than using it.  This will
1899f313c178SYuri Pankov 	 * cause "Invalid Field in Command" error, which is normally considered
1900f313c178SYuri Pankov 	 * a programming error.  Set the nc_dontpanic flag to override the panic
1901f313c178SYuri Pankov 	 * in nvme_check_generic_cmd_status().
1902f313c178SYuri Pankov 	 */
19033d9b1a2aSHans Rosenfeld 	switch (feature) {
19043d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ARBITRATION:
19053d9b1a2aSHans Rosenfeld 	case NVME_FEAT_POWER_MGMT:
19063d9b1a2aSHans Rosenfeld 	case NVME_FEAT_TEMPERATURE:
19073d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ERROR:
19083d9b1a2aSHans Rosenfeld 	case NVME_FEAT_NQUEUES:
19093d9b1a2aSHans Rosenfeld 	case NVME_FEAT_INTR_COAL:
19103d9b1a2aSHans Rosenfeld 	case NVME_FEAT_INTR_VECT:
19113d9b1a2aSHans Rosenfeld 	case NVME_FEAT_WRITE_ATOM:
19123d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ASYNC_EVENT:
19133d9b1a2aSHans Rosenfeld 		break;
19143d9b1a2aSHans Rosenfeld 
19153d9b1a2aSHans Rosenfeld 	case NVME_FEAT_WRITE_CACHE:
19163d9b1a2aSHans Rosenfeld 		if (!nvme->n_write_cache_present)
19173d9b1a2aSHans Rosenfeld 			goto fail;
19183d9b1a2aSHans Rosenfeld 		break;
19193d9b1a2aSHans Rosenfeld 
19203d9b1a2aSHans Rosenfeld 	case NVME_FEAT_LBA_RANGE:
19213d9b1a2aSHans Rosenfeld 		if (!nvme->n_lba_range_supported)
19223d9b1a2aSHans Rosenfeld 			goto fail;
19233d9b1a2aSHans Rosenfeld 
19243d9b1a2aSHans Rosenfeld 		cmd->nc_dontpanic = B_TRUE;
19253d9b1a2aSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = nsid;
19263d9b1a2aSHans Rosenfeld 		ASSERT(bufsize != NULL);
19273d9b1a2aSHans Rosenfeld 		*bufsize = NVME_LBA_RANGE_BUFSIZE;
19283d9b1a2aSHans Rosenfeld 		break;
19293d9b1a2aSHans Rosenfeld 
19303d9b1a2aSHans Rosenfeld 	case NVME_FEAT_AUTO_PST:
19313d9b1a2aSHans Rosenfeld 		if (!nvme->n_auto_pst_supported)
19323d9b1a2aSHans Rosenfeld 			goto fail;
19333d9b1a2aSHans Rosenfeld 
19343d9b1a2aSHans Rosenfeld 		ASSERT(bufsize != NULL);
19353d9b1a2aSHans Rosenfeld 		*bufsize = NVME_AUTO_PST_BUFSIZE;
19363d9b1a2aSHans Rosenfeld 		break;
19373d9b1a2aSHans Rosenfeld 
1938f313c178SYuri Pankov 	case NVME_FEAT_PROGRESS:
1939f313c178SYuri Pankov 		if (!nvme->n_progress_supported)
1940f313c178SYuri Pankov 			goto fail;
1941f313c178SYuri Pankov 
1942f313c178SYuri Pankov 		cmd->nc_dontpanic = B_TRUE;
1943f313c178SYuri Pankov 		break;
1944f313c178SYuri Pankov 
19453d9b1a2aSHans Rosenfeld 	default:
19463d9b1a2aSHans Rosenfeld 		goto fail;
19473d9b1a2aSHans Rosenfeld 	}
19483d9b1a2aSHans Rosenfeld 
1949*bc586359SRobert Mustacchi 	if (user)
1950*bc586359SRobert Mustacchi 		cmd->nc_dontpanic = B_TRUE;
1951*bc586359SRobert Mustacchi 
19523d9b1a2aSHans Rosenfeld 	if (bufsize != NULL && *bufsize != 0) {
19533d9b1a2aSHans Rosenfeld 		if (nvme_zalloc_dma(nvme, *bufsize, DDI_DMA_READ,
19543d9b1a2aSHans Rosenfeld 		    &nvme->n_prp_dma_attr, &cmd->nc_dma) != DDI_SUCCESS) {
19553d9b1a2aSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
19563d9b1a2aSHans Rosenfeld 			    "!nvme_zalloc_dma failed for GET FEATURES");
1957e984c70bSHans Rosenfeld 			ret = ENOMEM;
19583d9b1a2aSHans Rosenfeld 			goto fail;
19593d9b1a2aSHans Rosenfeld 		}
19603d9b1a2aSHans Rosenfeld 
19613d9b1a2aSHans Rosenfeld 		if (cmd->nc_dma->nd_ncookie > 2) {
19623d9b1a2aSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
19633d9b1a2aSHans Rosenfeld 			    "!too many DMA cookies for GET FEATURES");
19643d9b1a2aSHans Rosenfeld 			atomic_inc_32(&nvme->n_too_many_cookies);
1965e984c70bSHans Rosenfeld 			ret = ENOMEM;
19663d9b1a2aSHans Rosenfeld 			goto fail;
19673d9b1a2aSHans Rosenfeld 		}
19683d9b1a2aSHans Rosenfeld 
19693d9b1a2aSHans Rosenfeld 		cmd->nc_sqe.sqe_dptr.d_prp[0] =
19703d9b1a2aSHans Rosenfeld 		    cmd->nc_dma->nd_cookie.dmac_laddress;
19713d9b1a2aSHans Rosenfeld 		if (cmd->nc_dma->nd_ncookie > 1) {
19723d9b1a2aSHans Rosenfeld 			ddi_dma_nextcookie(cmd->nc_dma->nd_dmah,
19733d9b1a2aSHans Rosenfeld 			    &cmd->nc_dma->nd_cookie);
19743d9b1a2aSHans Rosenfeld 			cmd->nc_sqe.sqe_dptr.d_prp[1] =
19753d9b1a2aSHans Rosenfeld 			    cmd->nc_dma->nd_cookie.dmac_laddress;
19763d9b1a2aSHans Rosenfeld 		}
19773d9b1a2aSHans Rosenfeld 	}
19783d9b1a2aSHans Rosenfeld 
1979e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
19803d9b1a2aSHans Rosenfeld 
1981e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
1982f313c178SYuri Pankov 		boolean_t known = B_TRUE;
1983f313c178SYuri Pankov 
1984f313c178SYuri Pankov 		/* Check if this is unsupported optional feature */
1985f313c178SYuri Pankov 		if (cmd->nc_cqe.cqe_sf.sf_sct == NVME_CQE_SCT_GENERIC &&
1986f313c178SYuri Pankov 		    cmd->nc_cqe.cqe_sf.sf_sc == NVME_CQE_SC_GEN_INV_FLD) {
1987f313c178SYuri Pankov 			switch (feature) {
1988f313c178SYuri Pankov 			case NVME_FEAT_LBA_RANGE:
1989f313c178SYuri Pankov 				nvme->n_lba_range_supported = B_FALSE;
1990f313c178SYuri Pankov 				break;
1991f313c178SYuri Pankov 			case NVME_FEAT_PROGRESS:
1992f313c178SYuri Pankov 				nvme->n_progress_supported = B_FALSE;
1993f313c178SYuri Pankov 				break;
1994f313c178SYuri Pankov 			default:
1995f313c178SYuri Pankov 				known = B_FALSE;
1996f313c178SYuri Pankov 				break;
1997f313c178SYuri Pankov 			}
1998f313c178SYuri Pankov 		} else {
1999f313c178SYuri Pankov 			known = B_FALSE;
2000f313c178SYuri Pankov 		}
2001f313c178SYuri Pankov 
2002f313c178SYuri Pankov 		/* Report the error otherwise */
2003f313c178SYuri Pankov 		if (!known) {
20043d9b1a2aSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
20053d9b1a2aSHans Rosenfeld 			    "!GET FEATURES %d failed with sct = %x, sc = %x",
20063d9b1a2aSHans Rosenfeld 			    feature, cmd->nc_cqe.cqe_sf.sf_sct,
20073d9b1a2aSHans Rosenfeld 			    cmd->nc_cqe.cqe_sf.sf_sc);
2008f313c178SYuri Pankov 		}
2009f313c178SYuri Pankov 
20103d9b1a2aSHans Rosenfeld 		goto fail;
20113d9b1a2aSHans Rosenfeld 	}
20123d9b1a2aSHans Rosenfeld 
20133d9b1a2aSHans Rosenfeld 	if (bufsize != NULL && *bufsize != 0) {
20143d9b1a2aSHans Rosenfeld 		ASSERT(buf != NULL);
20153d9b1a2aSHans Rosenfeld 		*buf = kmem_alloc(*bufsize, KM_SLEEP);
20163d9b1a2aSHans Rosenfeld 		bcopy(cmd->nc_dma->nd_memp, *buf, *bufsize);
20173d9b1a2aSHans Rosenfeld 	}
20183d9b1a2aSHans Rosenfeld 
20193d9b1a2aSHans Rosenfeld 	*res = cmd->nc_cqe.cqe_dw0;
20203d9b1a2aSHans Rosenfeld 
20213d9b1a2aSHans Rosenfeld fail:
20223d9b1a2aSHans Rosenfeld 	nvme_free_cmd(cmd);
20233d9b1a2aSHans Rosenfeld 	return (ret);
20243d9b1a2aSHans Rosenfeld }
20253d9b1a2aSHans Rosenfeld 
2026e984c70bSHans Rosenfeld static int
2027d148d46eSHans Rosenfeld nvme_write_cache_set(nvme_t *nvme, boolean_t enable)
2028d148d46eSHans Rosenfeld {
2029d148d46eSHans Rosenfeld 	nvme_write_cache_t nwc = { 0 };
2030d148d46eSHans Rosenfeld 
2031d148d46eSHans Rosenfeld 	if (enable)
2032d148d46eSHans Rosenfeld 		nwc.b.wc_wce = 1;
2033d148d46eSHans Rosenfeld 
2034*bc586359SRobert Mustacchi 	return (nvme_set_features(nvme, B_FALSE, 0, NVME_FEAT_WRITE_CACHE,
2035*bc586359SRobert Mustacchi 	    nwc.r, &nwc.r));
2036d148d46eSHans Rosenfeld }
2037d148d46eSHans Rosenfeld 
2038d148d46eSHans Rosenfeld static int
2039e984c70bSHans Rosenfeld nvme_set_nqueues(nvme_t *nvme, uint16_t *nqueues)
2040d148d46eSHans Rosenfeld {
20413d9b1a2aSHans Rosenfeld 	nvme_nqueues_t nq = { 0 };
2042e984c70bSHans Rosenfeld 	int ret;
2043d148d46eSHans Rosenfeld 
2044e984c70bSHans Rosenfeld 	nq.b.nq_nsq = nq.b.nq_ncq = *nqueues - 1;
2045d148d46eSHans Rosenfeld 
2046*bc586359SRobert Mustacchi 	ret = nvme_set_features(nvme, B_FALSE, 0, NVME_FEAT_NQUEUES, nq.r,
2047*bc586359SRobert Mustacchi 	    &nq.r);
2048e984c70bSHans Rosenfeld 
2049e984c70bSHans Rosenfeld 	if (ret == 0) {
2050e984c70bSHans Rosenfeld 		/*
2051e984c70bSHans Rosenfeld 		 * Always use the same number of submission and completion
2052e984c70bSHans Rosenfeld 		 * queues, and never use more than the requested number of
2053e984c70bSHans Rosenfeld 		 * queues.
2054e984c70bSHans Rosenfeld 		 */
2055e984c70bSHans Rosenfeld 		*nqueues = MIN(*nqueues, MIN(nq.b.nq_nsq, nq.b.nq_ncq) + 1);
2056d148d46eSHans Rosenfeld 	}
20573c9168faSHans Rosenfeld 
2058e984c70bSHans Rosenfeld 	return (ret);
20593c9168faSHans Rosenfeld }
20603c9168faSHans Rosenfeld 
20613c9168faSHans Rosenfeld static int
20623c9168faSHans Rosenfeld nvme_create_io_qpair(nvme_t *nvme, nvme_qpair_t *qp, uint16_t idx)
20633c9168faSHans Rosenfeld {
20643c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
20653c9168faSHans Rosenfeld 	nvme_create_queue_dw10_t dw10 = { 0 };
20663c9168faSHans Rosenfeld 	nvme_create_cq_dw11_t c_dw11 = { 0 };
20673c9168faSHans Rosenfeld 	nvme_create_sq_dw11_t s_dw11 = { 0 };
2068e984c70bSHans Rosenfeld 	int ret;
20693c9168faSHans Rosenfeld 
20703c9168faSHans Rosenfeld 	dw10.b.q_qid = idx;
20713c9168faSHans Rosenfeld 	dw10.b.q_qsize = qp->nq_nentry - 1;
20723c9168faSHans Rosenfeld 
20733c9168faSHans Rosenfeld 	c_dw11.b.cq_pc = 1;
20743c9168faSHans Rosenfeld 	c_dw11.b.cq_ien = 1;
20753c9168faSHans Rosenfeld 	c_dw11.b.cq_iv = idx % nvme->n_intr_cnt;
20763c9168faSHans Rosenfeld 
20773c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
20783c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
20793c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_CREATE_CQUEUE;
20803c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = dw10.r;
20813c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw11 = c_dw11.r;
20823c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[0] = qp->nq_cqdma->nd_cookie.dmac_laddress;
20833c9168faSHans Rosenfeld 
2084e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
20853c9168faSHans Rosenfeld 
2086e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
20873c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
20883c9168faSHans Rosenfeld 		    "!CREATE CQUEUE failed with sct = %x, sc = %x",
20893c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
2090e984c70bSHans Rosenfeld 		goto fail;
20913c9168faSHans Rosenfeld 	}
20923c9168faSHans Rosenfeld 
20933c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
20943c9168faSHans Rosenfeld 
20953c9168faSHans Rosenfeld 	s_dw11.b.sq_pc = 1;
20963c9168faSHans Rosenfeld 	s_dw11.b.sq_cqid = idx;
20973c9168faSHans Rosenfeld 
20983c9168faSHans Rosenfeld 	cmd = nvme_alloc_cmd(nvme, KM_SLEEP);
20993c9168faSHans Rosenfeld 	cmd->nc_sqid = 0;
21003c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_wakeup_cmd;
21013c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = NVME_OPC_CREATE_SQUEUE;
21023c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw10 = dw10.r;
21033c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_cdw11 = s_dw11.r;
21043c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[0] = qp->nq_sqdma->nd_cookie.dmac_laddress;
21053c9168faSHans Rosenfeld 
2106e984c70bSHans Rosenfeld 	nvme_admin_cmd(cmd, nvme_admin_cmd_timeout);
21073c9168faSHans Rosenfeld 
2108e984c70bSHans Rosenfeld 	if ((ret = nvme_check_cmd_status(cmd)) != 0) {
21093c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
21103c9168faSHans Rosenfeld 		    "!CREATE SQUEUE failed with sct = %x, sc = %x",
21113c9168faSHans Rosenfeld 		    cmd->nc_cqe.cqe_sf.sf_sct, cmd->nc_cqe.cqe_sf.sf_sc);
2112e984c70bSHans Rosenfeld 		goto fail;
21133c9168faSHans Rosenfeld 	}
21143c9168faSHans Rosenfeld 
2115e984c70bSHans Rosenfeld fail:
21163c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
21173c9168faSHans Rosenfeld 
2118e984c70bSHans Rosenfeld 	return (ret);
21193c9168faSHans Rosenfeld }
21203c9168faSHans Rosenfeld 
21213c9168faSHans Rosenfeld static boolean_t
21223c9168faSHans Rosenfeld nvme_reset(nvme_t *nvme, boolean_t quiesce)
21233c9168faSHans Rosenfeld {
21243c9168faSHans Rosenfeld 	nvme_reg_csts_t csts;
21253c9168faSHans Rosenfeld 	int i;
21263c9168faSHans Rosenfeld 
21273c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_CC, 0);
21283c9168faSHans Rosenfeld 
21293c9168faSHans Rosenfeld 	csts.r = nvme_get32(nvme, NVME_REG_CSTS);
21303c9168faSHans Rosenfeld 	if (csts.b.csts_rdy == 1) {
21313c9168faSHans Rosenfeld 		nvme_put32(nvme, NVME_REG_CC, 0);
21323c9168faSHans Rosenfeld 		for (i = 0; i != nvme->n_timeout * 10; i++) {
21333c9168faSHans Rosenfeld 			csts.r = nvme_get32(nvme, NVME_REG_CSTS);
21343c9168faSHans Rosenfeld 			if (csts.b.csts_rdy == 0)
21353c9168faSHans Rosenfeld 				break;
21363c9168faSHans Rosenfeld 
21373c9168faSHans Rosenfeld 			if (quiesce)
21383c9168faSHans Rosenfeld 				drv_usecwait(50000);
21393c9168faSHans Rosenfeld 			else
21403c9168faSHans Rosenfeld 				delay(drv_usectohz(50000));
21413c9168faSHans Rosenfeld 		}
21423c9168faSHans Rosenfeld 	}
21433c9168faSHans Rosenfeld 
21443c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_AQA, 0);
21453c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_ASQ, 0);
21463c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_ACQ, 0);
21473c9168faSHans Rosenfeld 
21483c9168faSHans Rosenfeld 	csts.r = nvme_get32(nvme, NVME_REG_CSTS);
21493c9168faSHans Rosenfeld 	return (csts.b.csts_rdy == 0 ? B_TRUE : B_FALSE);
21503c9168faSHans Rosenfeld }
21513c9168faSHans Rosenfeld 
21523c9168faSHans Rosenfeld static void
21533c9168faSHans Rosenfeld nvme_shutdown(nvme_t *nvme, int mode, boolean_t quiesce)
21543c9168faSHans Rosenfeld {
21553c9168faSHans Rosenfeld 	nvme_reg_cc_t cc;
21563c9168faSHans Rosenfeld 	nvme_reg_csts_t csts;
21573c9168faSHans Rosenfeld 	int i;
21583c9168faSHans Rosenfeld 
21593c9168faSHans Rosenfeld 	ASSERT(mode == NVME_CC_SHN_NORMAL || mode == NVME_CC_SHN_ABRUPT);
21603c9168faSHans Rosenfeld 
21613c9168faSHans Rosenfeld 	cc.r = nvme_get32(nvme, NVME_REG_CC);
21623c9168faSHans Rosenfeld 	cc.b.cc_shn = mode & 0x3;
21633c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_CC, cc.r);
21643c9168faSHans Rosenfeld 
21653c9168faSHans Rosenfeld 	for (i = 0; i != 10; i++) {
21663c9168faSHans Rosenfeld 		csts.r = nvme_get32(nvme, NVME_REG_CSTS);
21673c9168faSHans Rosenfeld 		if (csts.b.csts_shst == NVME_CSTS_SHN_COMPLETE)
21683c9168faSHans Rosenfeld 			break;
21693c9168faSHans Rosenfeld 
21703c9168faSHans Rosenfeld 		if (quiesce)
21713c9168faSHans Rosenfeld 			drv_usecwait(100000);
21723c9168faSHans Rosenfeld 		else
21733c9168faSHans Rosenfeld 			delay(drv_usectohz(100000));
21743c9168faSHans Rosenfeld 	}
21753c9168faSHans Rosenfeld }
21763c9168faSHans Rosenfeld 
21773c9168faSHans Rosenfeld 
21783c9168faSHans Rosenfeld static void
21793c9168faSHans Rosenfeld nvme_prepare_devid(nvme_t *nvme, uint32_t nsid)
21803c9168faSHans Rosenfeld {
218124979ca3SHans Rosenfeld 	/*
218224979ca3SHans Rosenfeld 	 * Section 7.7 of the spec describes how to get a unique ID for
218324979ca3SHans Rosenfeld 	 * the controller: the vendor ID, the model name and the serial
218424979ca3SHans Rosenfeld 	 * number shall be unique when combined.
218524979ca3SHans Rosenfeld 	 *
218624979ca3SHans Rosenfeld 	 * If a namespace has no EUI64 we use the above and add the hex
218724979ca3SHans Rosenfeld 	 * namespace ID to get a unique ID for the namespace.
218824979ca3SHans Rosenfeld 	 */
21893c9168faSHans Rosenfeld 	char model[sizeof (nvme->n_idctl->id_model) + 1];
21903c9168faSHans Rosenfeld 	char serial[sizeof (nvme->n_idctl->id_serial) + 1];
21913c9168faSHans Rosenfeld 
21923c9168faSHans Rosenfeld 	bcopy(nvme->n_idctl->id_model, model, sizeof (nvme->n_idctl->id_model));
21933c9168faSHans Rosenfeld 	bcopy(nvme->n_idctl->id_serial, serial,
21943c9168faSHans Rosenfeld 	    sizeof (nvme->n_idctl->id_serial));
21953c9168faSHans Rosenfeld 
21963c9168faSHans Rosenfeld 	model[sizeof (nvme->n_idctl->id_model)] = '\0';
21973c9168faSHans Rosenfeld 	serial[sizeof (nvme->n_idctl->id_serial)] = '\0';
21983c9168faSHans Rosenfeld 
219924979ca3SHans Rosenfeld 	nvme->n_ns[nsid - 1].ns_devid = kmem_asprintf("%4X-%s-%s-%X",
22003c9168faSHans Rosenfeld 	    nvme->n_idctl->id_vid, model, serial, nsid);
22013c9168faSHans Rosenfeld }
22023c9168faSHans Rosenfeld 
22033d9b1a2aSHans Rosenfeld static int
22043d9b1a2aSHans Rosenfeld nvme_init_ns(nvme_t *nvme, int nsid)
22053d9b1a2aSHans Rosenfeld {
22063d9b1a2aSHans Rosenfeld 	nvme_namespace_t *ns = &nvme->n_ns[nsid - 1];
22073d9b1a2aSHans Rosenfeld 	nvme_identify_nsid_t *idns;
22083d9b1a2aSHans Rosenfeld 	int last_rp;
22093d9b1a2aSHans Rosenfeld 
22103d9b1a2aSHans Rosenfeld 	ns->ns_nvme = nvme;
22113d9b1a2aSHans Rosenfeld 
2212*bc586359SRobert Mustacchi 	if (nvme_identify(nvme, B_FALSE, nsid, (void **)&idns) != 0) {
22133d9b1a2aSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
22143d9b1a2aSHans Rosenfeld 		    "!failed to identify namespace %d", nsid);
22153d9b1a2aSHans Rosenfeld 		return (DDI_FAILURE);
22163d9b1a2aSHans Rosenfeld 	}
22173d9b1a2aSHans Rosenfeld 
22183d9b1a2aSHans Rosenfeld 	ns->ns_idns = idns;
22193d9b1a2aSHans Rosenfeld 	ns->ns_id = nsid;
22203d9b1a2aSHans Rosenfeld 	ns->ns_block_count = idns->id_nsize;
22213d9b1a2aSHans Rosenfeld 	ns->ns_block_size =
22223d9b1a2aSHans Rosenfeld 	    1 << idns->id_lbaf[idns->id_flbas.lba_format].lbaf_lbads;
22233d9b1a2aSHans Rosenfeld 	ns->ns_best_block_size = ns->ns_block_size;
22243d9b1a2aSHans Rosenfeld 
22253d9b1a2aSHans Rosenfeld 	/*
22263d9b1a2aSHans Rosenfeld 	 * Get the EUI64 if present. Use it for devid and device node names.
22273d9b1a2aSHans Rosenfeld 	 */
22283d9b1a2aSHans Rosenfeld 	if (NVME_VERSION_ATLEAST(&nvme->n_version, 1, 1))
22293d9b1a2aSHans Rosenfeld 		bcopy(idns->id_eui64, ns->ns_eui64, sizeof (ns->ns_eui64));
22303d9b1a2aSHans Rosenfeld 
22313d9b1a2aSHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
22323d9b1a2aSHans Rosenfeld 	if (*(uint64_t *)ns->ns_eui64 != 0) {
22333d9b1a2aSHans Rosenfeld 		uint8_t *eui64 = ns->ns_eui64;
22343d9b1a2aSHans Rosenfeld 
22353d9b1a2aSHans Rosenfeld 		(void) snprintf(ns->ns_name, sizeof (ns->ns_name),
22363d9b1a2aSHans Rosenfeld 		    "%02x%02x%02x%02x%02x%02x%02x%02x",
22373d9b1a2aSHans Rosenfeld 		    eui64[0], eui64[1], eui64[2], eui64[3],
22383d9b1a2aSHans Rosenfeld 		    eui64[4], eui64[5], eui64[6], eui64[7]);
22393d9b1a2aSHans Rosenfeld 	} else {
22403d9b1a2aSHans Rosenfeld 		(void) snprintf(ns->ns_name, sizeof (ns->ns_name), "%d",
22413d9b1a2aSHans Rosenfeld 		    ns->ns_id);
22423d9b1a2aSHans Rosenfeld 
22433d9b1a2aSHans Rosenfeld 		nvme_prepare_devid(nvme, ns->ns_id);
22443d9b1a2aSHans Rosenfeld 	}
22453d9b1a2aSHans Rosenfeld 
22463d9b1a2aSHans Rosenfeld 	/*
22473d9b1a2aSHans Rosenfeld 	 * Find the LBA format with no metadata and the best relative
22483d9b1a2aSHans Rosenfeld 	 * performance. A value of 3 means "degraded", 0 is best.
22493d9b1a2aSHans Rosenfeld 	 */
22503d9b1a2aSHans Rosenfeld 	last_rp = 3;
22513d9b1a2aSHans Rosenfeld 	for (int j = 0; j <= idns->id_nlbaf; j++) {
22523d9b1a2aSHans Rosenfeld 		if (idns->id_lbaf[j].lbaf_lbads == 0)
22533d9b1a2aSHans Rosenfeld 			break;
22543d9b1a2aSHans Rosenfeld 		if (idns->id_lbaf[j].lbaf_ms != 0)
22553d9b1a2aSHans Rosenfeld 			continue;
22563d9b1a2aSHans Rosenfeld 		if (idns->id_lbaf[j].lbaf_rp >= last_rp)
22573d9b1a2aSHans Rosenfeld 			continue;
22583d9b1a2aSHans Rosenfeld 		last_rp = idns->id_lbaf[j].lbaf_rp;
22593d9b1a2aSHans Rosenfeld 		ns->ns_best_block_size =
22603d9b1a2aSHans Rosenfeld 		    1 << idns->id_lbaf[j].lbaf_lbads;
22613d9b1a2aSHans Rosenfeld 	}
22623d9b1a2aSHans Rosenfeld 
22633d9b1a2aSHans Rosenfeld 	if (ns->ns_best_block_size < nvme->n_min_block_size)
22643d9b1a2aSHans Rosenfeld 		ns->ns_best_block_size = nvme->n_min_block_size;
22653d9b1a2aSHans Rosenfeld 
22663d9b1a2aSHans Rosenfeld 	/*
22673d9b1a2aSHans Rosenfeld 	 * We currently don't support namespaces that use either:
22683d9b1a2aSHans Rosenfeld 	 * - protection information
2269621738e2SHans Rosenfeld 	 * - illegal block size (< 512)
22703d9b1a2aSHans Rosenfeld 	 */
2271db083a4dSYuri Pankov 	if (idns->id_dps.dp_pinfo) {
22723d9b1a2aSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
2273db083a4dSYuri Pankov 		    "!ignoring namespace %d, unsupported feature: "
2274db083a4dSYuri Pankov 		    "pinfo = %d", nsid, idns->id_dps.dp_pinfo);
22753d9b1a2aSHans Rosenfeld 		ns->ns_ignore = B_TRUE;
2276621738e2SHans Rosenfeld 	} else if (ns->ns_block_size < 512) {
2277621738e2SHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
2278621738e2SHans Rosenfeld 		    "!ignoring namespace %d, unsupported block size %"PRIu64,
2279621738e2SHans Rosenfeld 		    nsid, (uint64_t)ns->ns_block_size);
228031c62b25SHans Rosenfeld 		ns->ns_ignore = B_TRUE;
22813d9b1a2aSHans Rosenfeld 	} else {
22823d9b1a2aSHans Rosenfeld 		ns->ns_ignore = B_FALSE;
22833d9b1a2aSHans Rosenfeld 	}
22843d9b1a2aSHans Rosenfeld 
22853d9b1a2aSHans Rosenfeld 	return (DDI_SUCCESS);
22863d9b1a2aSHans Rosenfeld }
22873d9b1a2aSHans Rosenfeld 
22883c9168faSHans Rosenfeld static int
22893c9168faSHans Rosenfeld nvme_init(nvme_t *nvme)
22903c9168faSHans Rosenfeld {
22913c9168faSHans Rosenfeld 	nvme_reg_cc_t cc = { 0 };
22923c9168faSHans Rosenfeld 	nvme_reg_aqa_t aqa = { 0 };
22933c9168faSHans Rosenfeld 	nvme_reg_asq_t asq = { 0 };
22943c9168faSHans Rosenfeld 	nvme_reg_acq_t acq = { 0 };
22953c9168faSHans Rosenfeld 	nvme_reg_cap_t cap;
22963c9168faSHans Rosenfeld 	nvme_reg_vs_t vs;
22973c9168faSHans Rosenfeld 	nvme_reg_csts_t csts;
22983c9168faSHans Rosenfeld 	int i = 0;
2299e984c70bSHans Rosenfeld 	uint16_t nqueues;
2300510a6847SHans Rosenfeld 	char model[sizeof (nvme->n_idctl->id_model) + 1];
2301510a6847SHans Rosenfeld 	char *vendor, *product;
23023c9168faSHans Rosenfeld 
23033c9168faSHans Rosenfeld 	/* Check controller version */
23043c9168faSHans Rosenfeld 	vs.r = nvme_get32(nvme, NVME_REG_VS);
230524979ca3SHans Rosenfeld 	nvme->n_version.v_major = vs.b.vs_mjr;
230624979ca3SHans Rosenfeld 	nvme->n_version.v_minor = vs.b.vs_mnr;
23073c9168faSHans Rosenfeld 	dev_err(nvme->n_dip, CE_CONT, "?NVMe spec version %d.%d",
230824979ca3SHans Rosenfeld 	    nvme->n_version.v_major, nvme->n_version.v_minor);
23093c9168faSHans Rosenfeld 
231048d370f1SRobert Mustacchi 	if (nvme->n_version.v_major > nvme_version_major) {
231148d370f1SRobert Mustacchi 		dev_err(nvme->n_dip, CE_WARN, "!no support for version > %d.x",
231248d370f1SRobert Mustacchi 		    nvme_version_major);
23133c9168faSHans Rosenfeld 		if (nvme->n_strict_version)
23143c9168faSHans Rosenfeld 			goto fail;
23153c9168faSHans Rosenfeld 	}
23163c9168faSHans Rosenfeld 
23173c9168faSHans Rosenfeld 	/* retrieve controller configuration */
23183c9168faSHans Rosenfeld 	cap.r = nvme_get64(nvme, NVME_REG_CAP);
23193c9168faSHans Rosenfeld 
23203c9168faSHans Rosenfeld 	if ((cap.b.cap_css & NVME_CAP_CSS_NVM) == 0) {
23213c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
23223c9168faSHans Rosenfeld 		    "!NVM command set not supported by hardware");
23233c9168faSHans Rosenfeld 		goto fail;
23243c9168faSHans Rosenfeld 	}
23253c9168faSHans Rosenfeld 
23263c9168faSHans Rosenfeld 	nvme->n_nssr_supported = cap.b.cap_nssrs;
23273c9168faSHans Rosenfeld 	nvme->n_doorbell_stride = 4 << cap.b.cap_dstrd;
23283c9168faSHans Rosenfeld 	nvme->n_timeout = cap.b.cap_to;
23293c9168faSHans Rosenfeld 	nvme->n_arbitration_mechanisms = cap.b.cap_ams;
23303c9168faSHans Rosenfeld 	nvme->n_cont_queues_reqd = cap.b.cap_cqr;
23313c9168faSHans Rosenfeld 	nvme->n_max_queue_entries = cap.b.cap_mqes + 1;
23323c9168faSHans Rosenfeld 
23333c9168faSHans Rosenfeld 	/*
23343c9168faSHans Rosenfeld 	 * The MPSMIN and MPSMAX fields in the CAP register use 0 to specify
23353c9168faSHans Rosenfeld 	 * the base page size of 4k (1<<12), so add 12 here to get the real
23363c9168faSHans Rosenfeld 	 * page size value.
23373c9168faSHans Rosenfeld 	 */
23383c9168faSHans Rosenfeld 	nvme->n_pageshift = MIN(MAX(cap.b.cap_mpsmin + 12, PAGESHIFT),
23393c9168faSHans Rosenfeld 	    cap.b.cap_mpsmax + 12);
23403c9168faSHans Rosenfeld 	nvme->n_pagesize = 1UL << (nvme->n_pageshift);
23413c9168faSHans Rosenfeld 
23423c9168faSHans Rosenfeld 	/*
23433c9168faSHans Rosenfeld 	 * Set up Queue DMA to transfer at least 1 page-aligned page at a time.
23443c9168faSHans Rosenfeld 	 */
23453c9168faSHans Rosenfeld 	nvme->n_queue_dma_attr.dma_attr_align = nvme->n_pagesize;
23463c9168faSHans Rosenfeld 	nvme->n_queue_dma_attr.dma_attr_minxfer = nvme->n_pagesize;
23473c9168faSHans Rosenfeld 
23483c9168faSHans Rosenfeld 	/*
23493c9168faSHans Rosenfeld 	 * Set up PRP DMA to transfer 1 page-aligned page at a time.
23503c9168faSHans Rosenfeld 	 * Maxxfer may be increased after we identified the controller limits.
23513c9168faSHans Rosenfeld 	 */
23523c9168faSHans Rosenfeld 	nvme->n_prp_dma_attr.dma_attr_maxxfer = nvme->n_pagesize;
23533c9168faSHans Rosenfeld 	nvme->n_prp_dma_attr.dma_attr_minxfer = nvme->n_pagesize;
23543c9168faSHans Rosenfeld 	nvme->n_prp_dma_attr.dma_attr_align = nvme->n_pagesize;
23552f95345bSYouzhong Yang 	nvme->n_prp_dma_attr.dma_attr_seg = nvme->n_pagesize - 1;
23563c9168faSHans Rosenfeld 
23573c9168faSHans Rosenfeld 	/*
23583c9168faSHans Rosenfeld 	 * Reset controller if it's still in ready state.
23593c9168faSHans Rosenfeld 	 */
23603c9168faSHans Rosenfeld 	if (nvme_reset(nvme, B_FALSE) == B_FALSE) {
23613c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!unable to reset controller");
23623c9168faSHans Rosenfeld 		ddi_fm_service_impact(nvme->n_dip, DDI_SERVICE_LOST);
23633c9168faSHans Rosenfeld 		nvme->n_dead = B_TRUE;
23643c9168faSHans Rosenfeld 		goto fail;
23653c9168faSHans Rosenfeld 	}
23663c9168faSHans Rosenfeld 
23673c9168faSHans Rosenfeld 	/*
23683c9168faSHans Rosenfeld 	 * Create the admin queue pair.
23693c9168faSHans Rosenfeld 	 */
23703c9168faSHans Rosenfeld 	if (nvme_alloc_qpair(nvme, nvme->n_admin_queue_len, &nvme->n_adminq, 0)
23713c9168faSHans Rosenfeld 	    != DDI_SUCCESS) {
23723c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
23733c9168faSHans Rosenfeld 		    "!unable to allocate admin qpair");
23743c9168faSHans Rosenfeld 		goto fail;
23753c9168faSHans Rosenfeld 	}
23763c9168faSHans Rosenfeld 	nvme->n_ioq = kmem_alloc(sizeof (nvme_qpair_t *), KM_SLEEP);
23773c9168faSHans Rosenfeld 	nvme->n_ioq[0] = nvme->n_adminq;
23783c9168faSHans Rosenfeld 
23793c9168faSHans Rosenfeld 	nvme->n_progress |= NVME_ADMIN_QUEUE;
23803c9168faSHans Rosenfeld 
23813c9168faSHans Rosenfeld 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, nvme->n_dip,
23823c9168faSHans Rosenfeld 	    "admin-queue-len", nvme->n_admin_queue_len);
23833c9168faSHans Rosenfeld 
23843c9168faSHans Rosenfeld 	aqa.b.aqa_asqs = aqa.b.aqa_acqs = nvme->n_admin_queue_len - 1;
23853c9168faSHans Rosenfeld 	asq = nvme->n_adminq->nq_sqdma->nd_cookie.dmac_laddress;
23863c9168faSHans Rosenfeld 	acq = nvme->n_adminq->nq_cqdma->nd_cookie.dmac_laddress;
23873c9168faSHans Rosenfeld 
23883c9168faSHans Rosenfeld 	ASSERT((asq & (nvme->n_pagesize - 1)) == 0);
23893c9168faSHans Rosenfeld 	ASSERT((acq & (nvme->n_pagesize - 1)) == 0);
23903c9168faSHans Rosenfeld 
23913c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_AQA, aqa.r);
23923c9168faSHans Rosenfeld 	nvme_put64(nvme, NVME_REG_ASQ, asq);
23933c9168faSHans Rosenfeld 	nvme_put64(nvme, NVME_REG_ACQ, acq);
23943c9168faSHans Rosenfeld 
239534c938c7SPete Shephard 	cc.b.cc_ams = 0;	/* use Round-Robin arbitration */
239634c938c7SPete Shephard 	cc.b.cc_css = 0;	/* use NVM command set */
23973c9168faSHans Rosenfeld 	cc.b.cc_mps = nvme->n_pageshift - 12;
239834c938c7SPete Shephard 	cc.b.cc_shn = 0;	/* no shutdown in progress */
239934c938c7SPete Shephard 	cc.b.cc_en = 1;		/* enable controller */
240034c938c7SPete Shephard 	cc.b.cc_iosqes = 6;	/* submission queue entry is 2^6 bytes long */
240134c938c7SPete Shephard 	cc.b.cc_iocqes = 4;	/* completion queue entry is 2^4 bytes long */
24023c9168faSHans Rosenfeld 
24033c9168faSHans Rosenfeld 	nvme_put32(nvme, NVME_REG_CC, cc.r);
24043c9168faSHans Rosenfeld 
24053c9168faSHans Rosenfeld 	/*
24063c9168faSHans Rosenfeld 	 * Wait for the controller to become ready.
24073c9168faSHans Rosenfeld 	 */
24083c9168faSHans Rosenfeld 	csts.r = nvme_get32(nvme, NVME_REG_CSTS);
24093c9168faSHans Rosenfeld 	if (csts.b.csts_rdy == 0) {
24103c9168faSHans Rosenfeld 		for (i = 0; i != nvme->n_timeout * 10; i++) {
24113c9168faSHans Rosenfeld 			delay(drv_usectohz(50000));
24123c9168faSHans Rosenfeld 			csts.r = nvme_get32(nvme, NVME_REG_CSTS);
24133c9168faSHans Rosenfeld 
24143c9168faSHans Rosenfeld 			if (csts.b.csts_cfs == 1) {
24153c9168faSHans Rosenfeld 				dev_err(nvme->n_dip, CE_WARN,
24163c9168faSHans Rosenfeld 				    "!controller fatal status at init");
24173c9168faSHans Rosenfeld 				ddi_fm_service_impact(nvme->n_dip,
24183c9168faSHans Rosenfeld 				    DDI_SERVICE_LOST);
24193c9168faSHans Rosenfeld 				nvme->n_dead = B_TRUE;
24203c9168faSHans Rosenfeld 				goto fail;
24213c9168faSHans Rosenfeld 			}
24223c9168faSHans Rosenfeld 
24233c9168faSHans Rosenfeld 			if (csts.b.csts_rdy == 1)
24243c9168faSHans Rosenfeld 				break;
24253c9168faSHans Rosenfeld 		}
24263c9168faSHans Rosenfeld 	}
24273c9168faSHans Rosenfeld 
24283c9168faSHans Rosenfeld 	if (csts.b.csts_rdy == 0) {
24293c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!controller not ready");
24303c9168faSHans Rosenfeld 		ddi_fm_service_impact(nvme->n_dip, DDI_SERVICE_LOST);
24313c9168faSHans Rosenfeld 		nvme->n_dead = B_TRUE;
24323c9168faSHans Rosenfeld 		goto fail;
24333c9168faSHans Rosenfeld 	}
24343c9168faSHans Rosenfeld 
24353c9168faSHans Rosenfeld 	/*
24363c9168faSHans Rosenfeld 	 * Assume an abort command limit of 1. We'll destroy and re-init
24373c9168faSHans Rosenfeld 	 * that later when we know the true abort command limit.
24383c9168faSHans Rosenfeld 	 */
24393c9168faSHans Rosenfeld 	sema_init(&nvme->n_abort_sema, 1, NULL, SEMA_DRIVER, NULL);
24403c9168faSHans Rosenfeld 
2441bf26ea4bSHans Rosenfeld 	/*
2442bf26ea4bSHans Rosenfeld 	 * Setup initial interrupt for admin queue.
2443bf26ea4bSHans Rosenfeld 	 */
2444bf26ea4bSHans Rosenfeld 	if ((nvme_setup_interrupts(nvme, DDI_INTR_TYPE_MSIX, 1)
2445bf26ea4bSHans Rosenfeld 	    != DDI_SUCCESS) &&
2446bf26ea4bSHans Rosenfeld 	    (nvme_setup_interrupts(nvme, DDI_INTR_TYPE_MSI, 1)
2447bf26ea4bSHans Rosenfeld 	    != DDI_SUCCESS) &&
2448bf26ea4bSHans Rosenfeld 	    (nvme_setup_interrupts(nvme, DDI_INTR_TYPE_FIXED, 1)
2449bf26ea4bSHans Rosenfeld 	    != DDI_SUCCESS)) {
2450bf26ea4bSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
2451bf26ea4bSHans Rosenfeld 		    "!failed to setup initial interrupt");
2452bf26ea4bSHans Rosenfeld 		goto fail;
2453bf26ea4bSHans Rosenfeld 	}
2454bf26ea4bSHans Rosenfeld 
24553c9168faSHans Rosenfeld 	/*
24563c9168faSHans Rosenfeld 	 * Post an asynchronous event command to catch errors.
245708139162SToomas Soome 	 * We assume the asynchronous events are supported as required by
245808139162SToomas Soome 	 * specification (Figure 40 in section 5 of NVMe 1.2).
245908139162SToomas Soome 	 * However, since at least qemu does not follow the specification,
246008139162SToomas Soome 	 * we need a mechanism to protect ourselves.
24613c9168faSHans Rosenfeld 	 */
246208139162SToomas Soome 	nvme->n_async_event_supported = B_TRUE;
24634b324362SHans Rosenfeld 	nvme_async_event(nvme);
24643c9168faSHans Rosenfeld 
24653c9168faSHans Rosenfeld 	/*
24663c9168faSHans Rosenfeld 	 * Identify Controller
24673c9168faSHans Rosenfeld 	 */
2468*bc586359SRobert Mustacchi 	if (nvme_identify(nvme, B_FALSE, 0, (void **)&nvme->n_idctl) != 0) {
24693c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
24703c9168faSHans Rosenfeld 		    "!failed to identify controller");
24713c9168faSHans Rosenfeld 		goto fail;
24723c9168faSHans Rosenfeld 	}
24733c9168faSHans Rosenfeld 
2474510a6847SHans Rosenfeld 	/*
2475510a6847SHans Rosenfeld 	 * Get Vendor & Product ID
2476510a6847SHans Rosenfeld 	 */
2477510a6847SHans Rosenfeld 	bcopy(nvme->n_idctl->id_model, model, sizeof (nvme->n_idctl->id_model));
2478510a6847SHans Rosenfeld 	model[sizeof (nvme->n_idctl->id_model)] = '\0';
2479510a6847SHans Rosenfeld 	sata_split_model(model, &vendor, &product);
2480510a6847SHans Rosenfeld 
2481510a6847SHans Rosenfeld 	if (vendor == NULL)
2482510a6847SHans Rosenfeld 		nvme->n_vendor = strdup("NVMe");
2483510a6847SHans Rosenfeld 	else
2484510a6847SHans Rosenfeld 		nvme->n_vendor = strdup(vendor);
2485510a6847SHans Rosenfeld 
2486510a6847SHans Rosenfeld 	nvme->n_product = strdup(product);
2487510a6847SHans Rosenfeld 
24883c9168faSHans Rosenfeld 	/*
24893c9168faSHans Rosenfeld 	 * Get controller limits.
24903c9168faSHans Rosenfeld 	 */
24913c9168faSHans Rosenfeld 	nvme->n_async_event_limit = MAX(NVME_MIN_ASYNC_EVENT_LIMIT,
24923c9168faSHans Rosenfeld 	    MIN(nvme->n_admin_queue_len / 10,
24933c9168faSHans Rosenfeld 	    MIN(nvme->n_idctl->id_aerl + 1, nvme->n_async_event_limit)));
24943c9168faSHans Rosenfeld 
24953c9168faSHans Rosenfeld 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, nvme->n_dip,
24963c9168faSHans Rosenfeld 	    "async-event-limit", nvme->n_async_event_limit);
24973c9168faSHans Rosenfeld 
24983c9168faSHans Rosenfeld 	nvme->n_abort_command_limit = nvme->n_idctl->id_acl + 1;
24993c9168faSHans Rosenfeld 
25006afc9eb2SHans Rosenfeld 	/*
25016afc9eb2SHans Rosenfeld 	 * Reinitialize the semaphore with the true abort command limit
25026afc9eb2SHans Rosenfeld 	 * supported by the hardware. It's not necessary to disable interrupts
25036afc9eb2SHans Rosenfeld 	 * as only command aborts use the semaphore, and no commands are
25046afc9eb2SHans Rosenfeld 	 * executed or aborted while we're here.
25056afc9eb2SHans Rosenfeld 	 */
25063c9168faSHans Rosenfeld 	sema_destroy(&nvme->n_abort_sema);
25073c9168faSHans Rosenfeld 	sema_init(&nvme->n_abort_sema, nvme->n_abort_command_limit - 1, NULL,
25083c9168faSHans Rosenfeld 	    SEMA_DRIVER, NULL);
25093c9168faSHans Rosenfeld 
25103c9168faSHans Rosenfeld 	nvme->n_progress |= NVME_CTRL_LIMITS;
25113c9168faSHans Rosenfeld 
25123c9168faSHans Rosenfeld 	if (nvme->n_idctl->id_mdts == 0)
25133c9168faSHans Rosenfeld 		nvme->n_max_data_transfer_size = nvme->n_pagesize * 65536;
25143c9168faSHans Rosenfeld 	else
25153c9168faSHans Rosenfeld 		nvme->n_max_data_transfer_size =
25163c9168faSHans Rosenfeld 		    1ull << (nvme->n_pageshift + nvme->n_idctl->id_mdts);
25173c9168faSHans Rosenfeld 
25183c9168faSHans Rosenfeld 	nvme->n_error_log_len = nvme->n_idctl->id_elpe + 1;
25193c9168faSHans Rosenfeld 
25203c9168faSHans Rosenfeld 	/*
25213c9168faSHans Rosenfeld 	 * Limit n_max_data_transfer_size to what we can handle in one PRP.
25223c9168faSHans Rosenfeld 	 * Chained PRPs are currently unsupported.
25233c9168faSHans Rosenfeld 	 *
25243c9168faSHans Rosenfeld 	 * This is a no-op on hardware which doesn't support a transfer size
25253c9168faSHans Rosenfeld 	 * big enough to require chained PRPs.
25263c9168faSHans Rosenfeld 	 */
25273c9168faSHans Rosenfeld 	nvme->n_max_data_transfer_size = MIN(nvme->n_max_data_transfer_size,
25283c9168faSHans Rosenfeld 	    (nvme->n_pagesize / sizeof (uint64_t) * nvme->n_pagesize));
25293c9168faSHans Rosenfeld 
25303c9168faSHans Rosenfeld 	nvme->n_prp_dma_attr.dma_attr_maxxfer = nvme->n_max_data_transfer_size;
25313c9168faSHans Rosenfeld 
25323c9168faSHans Rosenfeld 	/*
25333c9168faSHans Rosenfeld 	 * Make sure the minimum/maximum queue entry sizes are not
25343c9168faSHans Rosenfeld 	 * larger/smaller than the default.
25353c9168faSHans Rosenfeld 	 */
25363c9168faSHans Rosenfeld 
25373c9168faSHans Rosenfeld 	if (((1 << nvme->n_idctl->id_sqes.qes_min) > sizeof (nvme_sqe_t)) ||
25383c9168faSHans Rosenfeld 	    ((1 << nvme->n_idctl->id_sqes.qes_max) < sizeof (nvme_sqe_t)) ||
25393c9168faSHans Rosenfeld 	    ((1 << nvme->n_idctl->id_cqes.qes_min) > sizeof (nvme_cqe_t)) ||
25403c9168faSHans Rosenfeld 	    ((1 << nvme->n_idctl->id_cqes.qes_max) < sizeof (nvme_cqe_t)))
25413c9168faSHans Rosenfeld 		goto fail;
25423c9168faSHans Rosenfeld 
25433c9168faSHans Rosenfeld 	/*
25443c9168faSHans Rosenfeld 	 * Check for the presence of a Volatile Write Cache. If present,
2545d148d46eSHans Rosenfeld 	 * enable or disable based on the value of the property
2546d148d46eSHans Rosenfeld 	 * volatile-write-cache-enable (default is enabled).
25473c9168faSHans Rosenfeld 	 */
2548d148d46eSHans Rosenfeld 	nvme->n_write_cache_present =
2549d148d46eSHans Rosenfeld 	    nvme->n_idctl->id_vwc.vwc_present == 0 ? B_FALSE : B_TRUE;
2550d148d46eSHans Rosenfeld 
2551d148d46eSHans Rosenfeld 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, nvme->n_dip,
2552d148d46eSHans Rosenfeld 	    "volatile-write-cache-present",
2553d148d46eSHans Rosenfeld 	    nvme->n_write_cache_present ? 1 : 0);
2554d148d46eSHans Rosenfeld 
2555d148d46eSHans Rosenfeld 	if (!nvme->n_write_cache_present) {
2556d148d46eSHans Rosenfeld 		nvme->n_write_cache_enabled = B_FALSE;
2557e984c70bSHans Rosenfeld 	} else if (nvme_write_cache_set(nvme, nvme->n_write_cache_enabled)
2558e984c70bSHans Rosenfeld 	    != 0) {
2559d148d46eSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
2560d148d46eSHans Rosenfeld 		    "!failed to %sable volatile write cache",
2561d148d46eSHans Rosenfeld 		    nvme->n_write_cache_enabled ? "en" : "dis");
25623c9168faSHans Rosenfeld 		/*
2563d148d46eSHans Rosenfeld 		 * Assume the cache is (still) enabled.
25643c9168faSHans Rosenfeld 		 */
2565d148d46eSHans Rosenfeld 		nvme->n_write_cache_enabled = B_TRUE;
25663c9168faSHans Rosenfeld 	}
25673c9168faSHans Rosenfeld 
2568d148d46eSHans Rosenfeld 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, nvme->n_dip,
2569d148d46eSHans Rosenfeld 	    "volatile-write-cache-enable",
2570d148d46eSHans Rosenfeld 	    nvme->n_write_cache_enabled ? 1 : 0);
2571d148d46eSHans Rosenfeld 
25723c9168faSHans Rosenfeld 	/*
25733d9b1a2aSHans Rosenfeld 	 * Assume LBA Range Type feature is supported. If it isn't this
25743d9b1a2aSHans Rosenfeld 	 * will be set to B_FALSE by nvme_get_features().
25753c9168faSHans Rosenfeld 	 */
25763d9b1a2aSHans Rosenfeld 	nvme->n_lba_range_supported = B_TRUE;
25773d9b1a2aSHans Rosenfeld 
25783d9b1a2aSHans Rosenfeld 	/*
25793d9b1a2aSHans Rosenfeld 	 * Check support for Autonomous Power State Transition.
25803d9b1a2aSHans Rosenfeld 	 */
25813d9b1a2aSHans Rosenfeld 	if (NVME_VERSION_ATLEAST(&nvme->n_version, 1, 1))
25823d9b1a2aSHans Rosenfeld 		nvme->n_auto_pst_supported =
25833d9b1a2aSHans Rosenfeld 		    nvme->n_idctl->id_apsta.ap_sup == 0 ? B_FALSE : B_TRUE;
25843c9168faSHans Rosenfeld 
2585f313c178SYuri Pankov 	/*
2586f313c178SYuri Pankov 	 * Assume Software Progress Marker feature is supported.  If it isn't
2587f313c178SYuri Pankov 	 * this will be set to B_FALSE by nvme_get_features().
2588f313c178SYuri Pankov 	 */
2589f313c178SYuri Pankov 	nvme->n_progress_supported = B_TRUE;
2590f313c178SYuri Pankov 
25913c9168faSHans Rosenfeld 	/*
25923c9168faSHans Rosenfeld 	 * Identify Namespaces
25933c9168faSHans Rosenfeld 	 */
25943c9168faSHans Rosenfeld 	nvme->n_namespace_count = nvme->n_idctl->id_nn;
2595bf8c808aSYuri Pankov 
2596bf8c808aSYuri Pankov 	if (nvme->n_namespace_count == 0) {
2597bf8c808aSYuri Pankov 		dev_err(nvme->n_dip, CE_WARN,
2598bf8c808aSYuri Pankov 		    "!controllers without namespaces are not supported");
2599bf8c808aSYuri Pankov 		goto fail;
2600bf8c808aSYuri Pankov 	}
2601bf8c808aSYuri Pankov 
26023d9b1a2aSHans Rosenfeld 	if (nvme->n_namespace_count > NVME_MINOR_MAX) {
26033d9b1a2aSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
26043d9b1a2aSHans Rosenfeld 		    "!too many namespaces: %d, limiting to %d\n",
26053d9b1a2aSHans Rosenfeld 		    nvme->n_namespace_count, NVME_MINOR_MAX);
26063d9b1a2aSHans Rosenfeld 		nvme->n_namespace_count = NVME_MINOR_MAX;
26073d9b1a2aSHans Rosenfeld 	}
26083d9b1a2aSHans Rosenfeld 
26093c9168faSHans Rosenfeld 	nvme->n_ns = kmem_zalloc(sizeof (nvme_namespace_t) *
26103c9168faSHans Rosenfeld 	    nvme->n_namespace_count, KM_SLEEP);
26113c9168faSHans Rosenfeld 
26123c9168faSHans Rosenfeld 	for (i = 0; i != nvme->n_namespace_count; i++) {
26133d9b1a2aSHans Rosenfeld 		mutex_init(&nvme->n_ns[i].ns_minor.nm_mutex, NULL, MUTEX_DRIVER,
26143d9b1a2aSHans Rosenfeld 		    NULL);
26153d9b1a2aSHans Rosenfeld 		if (nvme_init_ns(nvme, i + 1) != DDI_SUCCESS)
26163c9168faSHans Rosenfeld 			goto fail;
26173c9168faSHans Rosenfeld 	}
26183c9168faSHans Rosenfeld 
26193c9168faSHans Rosenfeld 	/*
26203c9168faSHans Rosenfeld 	 * Try to set up MSI/MSI-X interrupts.
26213c9168faSHans Rosenfeld 	 */
26223c9168faSHans Rosenfeld 	if ((nvme->n_intr_types & (DDI_INTR_TYPE_MSI | DDI_INTR_TYPE_MSIX))
26233c9168faSHans Rosenfeld 	    != 0) {
26243c9168faSHans Rosenfeld 		nvme_release_interrupts(nvme);
26253c9168faSHans Rosenfeld 
26263c9168faSHans Rosenfeld 		nqueues = MIN(UINT16_MAX, ncpus);
26273c9168faSHans Rosenfeld 
26283c9168faSHans Rosenfeld 		if ((nvme_setup_interrupts(nvme, DDI_INTR_TYPE_MSIX,
26293c9168faSHans Rosenfeld 		    nqueues) != DDI_SUCCESS) &&
26303c9168faSHans Rosenfeld 		    (nvme_setup_interrupts(nvme, DDI_INTR_TYPE_MSI,
26313c9168faSHans Rosenfeld 		    nqueues) != DDI_SUCCESS)) {
26323c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
26333c9168faSHans Rosenfeld 			    "!failed to setup MSI/MSI-X interrupts");
26343c9168faSHans Rosenfeld 			goto fail;
26353c9168faSHans Rosenfeld 		}
26363c9168faSHans Rosenfeld 	}
26373c9168faSHans Rosenfeld 
26383c9168faSHans Rosenfeld 	nqueues = nvme->n_intr_cnt;
26393c9168faSHans Rosenfeld 
26403c9168faSHans Rosenfeld 	/*
26413c9168faSHans Rosenfeld 	 * Create I/O queue pairs.
26423c9168faSHans Rosenfeld 	 */
2643e984c70bSHans Rosenfeld 
2644e984c70bSHans Rosenfeld 	if (nvme_set_nqueues(nvme, &nqueues) != 0) {
26453c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN,
2646e984c70bSHans Rosenfeld 		    "!failed to set number of I/O queues to %d",
2647e984c70bSHans Rosenfeld 		    nvme->n_intr_cnt);
26483c9168faSHans Rosenfeld 		goto fail;
26493c9168faSHans Rosenfeld 	}
26503c9168faSHans Rosenfeld 
26513c9168faSHans Rosenfeld 	/*
26523c9168faSHans Rosenfeld 	 * Reallocate I/O queue array
26533c9168faSHans Rosenfeld 	 */
26543c9168faSHans Rosenfeld 	kmem_free(nvme->n_ioq, sizeof (nvme_qpair_t *));
26553c9168faSHans Rosenfeld 	nvme->n_ioq = kmem_zalloc(sizeof (nvme_qpair_t *) *
2656e984c70bSHans Rosenfeld 	    (nqueues + 1), KM_SLEEP);
26573c9168faSHans Rosenfeld 	nvme->n_ioq[0] = nvme->n_adminq;
26583c9168faSHans Rosenfeld 
2659e984c70bSHans Rosenfeld 	nvme->n_ioq_count = nqueues;
2660e984c70bSHans Rosenfeld 
26613c9168faSHans Rosenfeld 	/*
26623c9168faSHans Rosenfeld 	 * If we got less queues than we asked for we might as well give
26633c9168faSHans Rosenfeld 	 * some of the interrupt vectors back to the system.
26643c9168faSHans Rosenfeld 	 */
2665e984c70bSHans Rosenfeld 	if (nvme->n_ioq_count < nvme->n_intr_cnt) {
26663c9168faSHans Rosenfeld 		nvme_release_interrupts(nvme);
26673c9168faSHans Rosenfeld 
266834c938c7SPete Shephard 		if (nvme_setup_interrupts(nvme, nvme->n_intr_type,
266934c938c7SPete Shephard 		    nvme->n_ioq_count) != DDI_SUCCESS) {
26703c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
26713c9168faSHans Rosenfeld 			    "!failed to reduce number of interrupts");
26723c9168faSHans Rosenfeld 			goto fail;
26733c9168faSHans Rosenfeld 		}
26743c9168faSHans Rosenfeld 	}
26753c9168faSHans Rosenfeld 
26763c9168faSHans Rosenfeld 	/*
26773c9168faSHans Rosenfeld 	 * Alloc & register I/O queue pairs
26783c9168faSHans Rosenfeld 	 */
26793c9168faSHans Rosenfeld 	nvme->n_io_queue_len =
26803c9168faSHans Rosenfeld 	    MIN(nvme->n_io_queue_len, nvme->n_max_queue_entries);
26813c9168faSHans Rosenfeld 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, nvme->n_dip, "io-queue-len",
26823c9168faSHans Rosenfeld 	    nvme->n_io_queue_len);
26833c9168faSHans Rosenfeld 
26843c9168faSHans Rosenfeld 	for (i = 1; i != nvme->n_ioq_count + 1; i++) {
26853c9168faSHans Rosenfeld 		if (nvme_alloc_qpair(nvme, nvme->n_io_queue_len,
26863c9168faSHans Rosenfeld 		    &nvme->n_ioq[i], i) != DDI_SUCCESS) {
26873c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
26883c9168faSHans Rosenfeld 			    "!unable to allocate I/O qpair %d", i);
26893c9168faSHans Rosenfeld 			goto fail;
26903c9168faSHans Rosenfeld 		}
26913c9168faSHans Rosenfeld 
2692e984c70bSHans Rosenfeld 		if (nvme_create_io_qpair(nvme, nvme->n_ioq[i], i) != 0) {
26933c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
26943c9168faSHans Rosenfeld 			    "!unable to create I/O qpair %d", i);
26953c9168faSHans Rosenfeld 			goto fail;
26963c9168faSHans Rosenfeld 		}
26973c9168faSHans Rosenfeld 	}
26983c9168faSHans Rosenfeld 
26993c9168faSHans Rosenfeld 	/*
27003c9168faSHans Rosenfeld 	 * Post more asynchronous events commands to reduce event reporting
27013c9168faSHans Rosenfeld 	 * latency as suggested by the spec.
27023c9168faSHans Rosenfeld 	 */
270308139162SToomas Soome 	if (nvme->n_async_event_supported) {
270408139162SToomas Soome 		for (i = 1; i != nvme->n_async_event_limit; i++)
270508139162SToomas Soome 			nvme_async_event(nvme);
270608139162SToomas Soome 	}
27073c9168faSHans Rosenfeld 
27083c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
27093c9168faSHans Rosenfeld 
27103c9168faSHans Rosenfeld fail:
27113c9168faSHans Rosenfeld 	(void) nvme_reset(nvme, B_FALSE);
27123c9168faSHans Rosenfeld 	return (DDI_FAILURE);
27133c9168faSHans Rosenfeld }
27143c9168faSHans Rosenfeld 
27153c9168faSHans Rosenfeld static uint_t
27163c9168faSHans Rosenfeld nvme_intr(caddr_t arg1, caddr_t arg2)
27173c9168faSHans Rosenfeld {
27183c9168faSHans Rosenfeld 	/*LINTED: E_PTR_BAD_CAST_ALIGN*/
27193c9168faSHans Rosenfeld 	nvme_t *nvme = (nvme_t *)arg1;
27203c9168faSHans Rosenfeld 	int inum = (int)(uintptr_t)arg2;
2721bf26ea4bSHans Rosenfeld 	int ccnt = 0;
27223c9168faSHans Rosenfeld 	int qnum;
27233c9168faSHans Rosenfeld 	nvme_cmd_t *cmd;
27243c9168faSHans Rosenfeld 
27253c9168faSHans Rosenfeld 	if (inum >= nvme->n_intr_cnt)
27263c9168faSHans Rosenfeld 		return (DDI_INTR_UNCLAIMED);
27273c9168faSHans Rosenfeld 
2728e984c70bSHans Rosenfeld 	if (nvme->n_dead)
2729e984c70bSHans Rosenfeld 		return (nvme->n_intr_type == DDI_INTR_TYPE_FIXED ?
2730e984c70bSHans Rosenfeld 		    DDI_INTR_UNCLAIMED : DDI_INTR_CLAIMED);
2731e984c70bSHans Rosenfeld 
27323c9168faSHans Rosenfeld 	/*
27333c9168faSHans Rosenfeld 	 * The interrupt vector a queue uses is calculated as queue_idx %
27343c9168faSHans Rosenfeld 	 * intr_cnt in nvme_create_io_qpair(). Iterate through the queue array
27353c9168faSHans Rosenfeld 	 * in steps of n_intr_cnt to process all queues using this vector.
27363c9168faSHans Rosenfeld 	 */
27373c9168faSHans Rosenfeld 	for (qnum = inum;
27383c9168faSHans Rosenfeld 	    qnum < nvme->n_ioq_count + 1 && nvme->n_ioq[qnum] != NULL;
27393c9168faSHans Rosenfeld 	    qnum += nvme->n_intr_cnt) {
27403c9168faSHans Rosenfeld 		while ((cmd = nvme_retrieve_cmd(nvme, nvme->n_ioq[qnum]))) {
27413c9168faSHans Rosenfeld 			taskq_dispatch_ent((taskq_t *)cmd->nc_nvme->n_cmd_taskq,
27423c9168faSHans Rosenfeld 			    cmd->nc_callback, cmd, TQ_NOSLEEP, &cmd->nc_tqent);
2743bf26ea4bSHans Rosenfeld 			ccnt++;
27443c9168faSHans Rosenfeld 		}
27453c9168faSHans Rosenfeld 	}
27463c9168faSHans Rosenfeld 
2747bf26ea4bSHans Rosenfeld 	return (ccnt > 0 ? DDI_INTR_CLAIMED : DDI_INTR_UNCLAIMED);
27483c9168faSHans Rosenfeld }
27493c9168faSHans Rosenfeld 
27503c9168faSHans Rosenfeld static void
27516afc9eb2SHans Rosenfeld nvme_release_interrupts(nvme_t *nvme)
27523c9168faSHans Rosenfeld {
27533c9168faSHans Rosenfeld 	int i;
27543c9168faSHans Rosenfeld 
27553c9168faSHans Rosenfeld 	for (i = 0; i < nvme->n_intr_cnt; i++) {
27563c9168faSHans Rosenfeld 		if (nvme->n_inth[i] == NULL)
27573c9168faSHans Rosenfeld 			break;
27583c9168faSHans Rosenfeld 
27593c9168faSHans Rosenfeld 		if (nvme->n_intr_cap & DDI_INTR_FLAG_BLOCK)
27603c9168faSHans Rosenfeld 			(void) ddi_intr_block_disable(&nvme->n_inth[i], 1);
27613c9168faSHans Rosenfeld 		else
27623c9168faSHans Rosenfeld 			(void) ddi_intr_disable(nvme->n_inth[i]);
27633c9168faSHans Rosenfeld 
27643c9168faSHans Rosenfeld 		(void) ddi_intr_remove_handler(nvme->n_inth[i]);
27653c9168faSHans Rosenfeld 		(void) ddi_intr_free(nvme->n_inth[i]);
27663c9168faSHans Rosenfeld 	}
27673c9168faSHans Rosenfeld 
27683c9168faSHans Rosenfeld 	kmem_free(nvme->n_inth, nvme->n_inth_sz);
27693c9168faSHans Rosenfeld 	nvme->n_inth = NULL;
27703c9168faSHans Rosenfeld 	nvme->n_inth_sz = 0;
27713c9168faSHans Rosenfeld 
27723c9168faSHans Rosenfeld 	nvme->n_progress &= ~NVME_INTERRUPTS;
27733c9168faSHans Rosenfeld }
27743c9168faSHans Rosenfeld 
27753c9168faSHans Rosenfeld static int
27763c9168faSHans Rosenfeld nvme_setup_interrupts(nvme_t *nvme, int intr_type, int nqpairs)
27773c9168faSHans Rosenfeld {
27783c9168faSHans Rosenfeld 	int nintrs, navail, count;
27793c9168faSHans Rosenfeld 	int ret;
27803c9168faSHans Rosenfeld 	int i;
27813c9168faSHans Rosenfeld 
27823c9168faSHans Rosenfeld 	if (nvme->n_intr_types == 0) {
27833c9168faSHans Rosenfeld 		ret = ddi_intr_get_supported_types(nvme->n_dip,
27843c9168faSHans Rosenfeld 		    &nvme->n_intr_types);
27853c9168faSHans Rosenfeld 		if (ret != DDI_SUCCESS) {
27863c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
27873c9168faSHans Rosenfeld 			    "!%s: ddi_intr_get_supported types failed",
27883c9168faSHans Rosenfeld 			    __func__);
27893c9168faSHans Rosenfeld 			return (ret);
27903c9168faSHans Rosenfeld 		}
27919d08e1f8SHans Rosenfeld #ifdef __x86
27929d08e1f8SHans Rosenfeld 		if (get_hwenv() == HW_VMWARE)
27939d08e1f8SHans Rosenfeld 			nvme->n_intr_types &= ~DDI_INTR_TYPE_MSIX;
27949d08e1f8SHans Rosenfeld #endif
27953c9168faSHans Rosenfeld 	}
27963c9168faSHans Rosenfeld 
27973c9168faSHans Rosenfeld 	if ((nvme->n_intr_types & intr_type) == 0)
27983c9168faSHans Rosenfeld 		return (DDI_FAILURE);
27993c9168faSHans Rosenfeld 
28003c9168faSHans Rosenfeld 	ret = ddi_intr_get_nintrs(nvme->n_dip, intr_type, &nintrs);
28013c9168faSHans Rosenfeld 	if (ret != DDI_SUCCESS) {
28023c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!%s: ddi_intr_get_nintrs failed",
28033c9168faSHans Rosenfeld 		    __func__);
28043c9168faSHans Rosenfeld 		return (ret);
28053c9168faSHans Rosenfeld 	}
28063c9168faSHans Rosenfeld 
28073c9168faSHans Rosenfeld 	ret = ddi_intr_get_navail(nvme->n_dip, intr_type, &navail);
28083c9168faSHans Rosenfeld 	if (ret != DDI_SUCCESS) {
28093c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!%s: ddi_intr_get_navail failed",
28103c9168faSHans Rosenfeld 		    __func__);
28113c9168faSHans Rosenfeld 		return (ret);
28123c9168faSHans Rosenfeld 	}
28133c9168faSHans Rosenfeld 
28143c9168faSHans Rosenfeld 	/* We want at most one interrupt per queue pair. */
28153c9168faSHans Rosenfeld 	if (navail > nqpairs)
28163c9168faSHans Rosenfeld 		navail = nqpairs;
28173c9168faSHans Rosenfeld 
28183c9168faSHans Rosenfeld 	nvme->n_inth_sz = sizeof (ddi_intr_handle_t) * navail;
28193c9168faSHans Rosenfeld 	nvme->n_inth = kmem_zalloc(nvme->n_inth_sz, KM_SLEEP);
28203c9168faSHans Rosenfeld 
28213c9168faSHans Rosenfeld 	ret = ddi_intr_alloc(nvme->n_dip, nvme->n_inth, intr_type, 0, navail,
28223c9168faSHans Rosenfeld 	    &count, 0);
28233c9168faSHans Rosenfeld 	if (ret != DDI_SUCCESS) {
28243c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!%s: ddi_intr_alloc failed",
28253c9168faSHans Rosenfeld 		    __func__);
28263c9168faSHans Rosenfeld 		goto fail;
28273c9168faSHans Rosenfeld 	}
28283c9168faSHans Rosenfeld 
28293c9168faSHans Rosenfeld 	nvme->n_intr_cnt = count;
28303c9168faSHans Rosenfeld 
28313c9168faSHans Rosenfeld 	ret = ddi_intr_get_pri(nvme->n_inth[0], &nvme->n_intr_pri);
28323c9168faSHans Rosenfeld 	if (ret != DDI_SUCCESS) {
28333c9168faSHans Rosenfeld 		dev_err(nvme->n_dip, CE_WARN, "!%s: ddi_intr_get_pri failed",
28343c9168faSHans Rosenfeld 		    __func__);
28353c9168faSHans Rosenfeld 		goto fail;
28363c9168faSHans Rosenfeld 	}
28373c9168faSHans Rosenfeld 
28383c9168faSHans Rosenfeld 	for (i = 0; i < count; i++) {
28393c9168faSHans Rosenfeld 		ret = ddi_intr_add_handler(nvme->n_inth[i], nvme_intr,
28403c9168faSHans Rosenfeld 		    (void *)nvme, (void *)(uintptr_t)i);
28413c9168faSHans Rosenfeld 		if (ret != DDI_SUCCESS) {
28423c9168faSHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
28433c9168faSHans Rosenfeld 			    "!%s: ddi_intr_add_handler failed", __func__);
28443c9168faSHans Rosenfeld 			goto fail;
28453c9168faSHans Rosenfeld 		}
28463c9168faSHans Rosenfeld 	}
28473c9168faSHans Rosenfeld 
28483c9168faSHans Rosenfeld 	(void) ddi_intr_get_cap(nvme->n_inth[0], &nvme->n_intr_cap);
28493c9168faSHans Rosenfeld 
28506afc9eb2SHans Rosenfeld 	for (i = 0; i < count; i++) {
285175b41617SHans Rosenfeld 		if (nvme->n_intr_cap & DDI_INTR_FLAG_BLOCK)
285275b41617SHans Rosenfeld 			ret = ddi_intr_block_enable(&nvme->n_inth[i], 1);
285375b41617SHans Rosenfeld 		else
285475b41617SHans Rosenfeld 			ret = ddi_intr_enable(nvme->n_inth[i]);
28553c9168faSHans Rosenfeld 
285675b41617SHans Rosenfeld 		if (ret != DDI_SUCCESS) {
285775b41617SHans Rosenfeld 			dev_err(nvme->n_dip, CE_WARN,
285875b41617SHans Rosenfeld 			    "!%s: enabling interrupt %d failed", __func__, i);
285975b41617SHans Rosenfeld 			goto fail;
28606afc9eb2SHans Rosenfeld 		}
28616afc9eb2SHans Rosenfeld 	}
28626afc9eb2SHans Rosenfeld 
28633c9168faSHans Rosenfeld 	nvme->n_intr_type = intr_type;
28643c9168faSHans Rosenfeld 
28653c9168faSHans Rosenfeld 	nvme->n_progress |= NVME_INTERRUPTS;
28663c9168faSHans Rosenfeld 
28673c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
28683c9168faSHans Rosenfeld 
28693c9168faSHans Rosenfeld fail:
28703c9168faSHans Rosenfeld 	nvme_release_interrupts(nvme);
28713c9168faSHans Rosenfeld 
28723c9168faSHans Rosenfeld 	return (ret);
28733c9168faSHans Rosenfeld }
28743c9168faSHans Rosenfeld 
28753c9168faSHans Rosenfeld static int
28763c9168faSHans Rosenfeld nvme_fm_errcb(dev_info_t *dip, ddi_fm_error_t *fm_error, const void *arg)
28773c9168faSHans Rosenfeld {
28783c9168faSHans Rosenfeld 	_NOTE(ARGUNUSED(arg));
28793c9168faSHans Rosenfeld 
28803c9168faSHans Rosenfeld 	pci_ereport_post(dip, fm_error, NULL);
28813c9168faSHans Rosenfeld 	return (fm_error->fme_status);
28823c9168faSHans Rosenfeld }
28833c9168faSHans Rosenfeld 
28843c9168faSHans Rosenfeld static int
28853c9168faSHans Rosenfeld nvme_attach(dev_info_t *dip, ddi_attach_cmd_t cmd)
28863c9168faSHans Rosenfeld {
28873c9168faSHans Rosenfeld 	nvme_t *nvme;
28883c9168faSHans Rosenfeld 	int instance;
28893c9168faSHans Rosenfeld 	int nregs;
28903c9168faSHans Rosenfeld 	off_t regsize;
28913c9168faSHans Rosenfeld 	int i;
28923c9168faSHans Rosenfeld 	char name[32];
28933c9168faSHans Rosenfeld 
28943c9168faSHans Rosenfeld 	if (cmd != DDI_ATTACH)
28953c9168faSHans Rosenfeld 		return (DDI_FAILURE);
28963c9168faSHans Rosenfeld 
28973c9168faSHans Rosenfeld 	instance = ddi_get_instance(dip);
28983c9168faSHans Rosenfeld 
28993c9168faSHans Rosenfeld 	if (ddi_soft_state_zalloc(nvme_state, instance) != DDI_SUCCESS)
29003c9168faSHans Rosenfeld 		return (DDI_FAILURE);
29013c9168faSHans Rosenfeld 
29023c9168faSHans Rosenfeld 	nvme = ddi_get_soft_state(nvme_state, instance);
29033c9168faSHans Rosenfeld 	ddi_set_driver_private(dip, nvme);
29043c9168faSHans Rosenfeld 	nvme->n_dip = dip;
29053c9168faSHans Rosenfeld 
29063d9b1a2aSHans Rosenfeld 	mutex_init(&nvme->n_minor.nm_mutex, NULL, MUTEX_DRIVER, NULL);
29073d9b1a2aSHans Rosenfeld 
29083c9168faSHans Rosenfeld 	nvme->n_strict_version = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
29093c9168faSHans Rosenfeld 	    DDI_PROP_DONTPASS, "strict-version", 1) == 1 ? B_TRUE : B_FALSE;
29103c9168faSHans Rosenfeld 	nvme->n_ignore_unknown_vendor_status = ddi_prop_get_int(DDI_DEV_T_ANY,
29113c9168faSHans Rosenfeld 	    dip, DDI_PROP_DONTPASS, "ignore-unknown-vendor-status", 0) == 1 ?
29123c9168faSHans Rosenfeld 	    B_TRUE : B_FALSE;
29133c9168faSHans Rosenfeld 	nvme->n_admin_queue_len = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
29143c9168faSHans Rosenfeld 	    DDI_PROP_DONTPASS, "admin-queue-len", NVME_DEFAULT_ADMIN_QUEUE_LEN);
29153c9168faSHans Rosenfeld 	nvme->n_io_queue_len = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
29163c9168faSHans Rosenfeld 	    DDI_PROP_DONTPASS, "io-queue-len", NVME_DEFAULT_IO_QUEUE_LEN);
29173c9168faSHans Rosenfeld 	nvme->n_async_event_limit = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
29183c9168faSHans Rosenfeld 	    DDI_PROP_DONTPASS, "async-event-limit",
29193c9168faSHans Rosenfeld 	    NVME_DEFAULT_ASYNC_EVENT_LIMIT);
2920d148d46eSHans Rosenfeld 	nvme->n_write_cache_enabled = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
2921d148d46eSHans Rosenfeld 	    DDI_PROP_DONTPASS, "volatile-write-cache-enable", 1) != 0 ?
2922d148d46eSHans Rosenfeld 	    B_TRUE : B_FALSE;
29236801591eSHans Rosenfeld 	nvme->n_min_block_size = ddi_prop_get_int(DDI_DEV_T_ANY, dip,
29246801591eSHans Rosenfeld 	    DDI_PROP_DONTPASS, "min-phys-block-size",
29256801591eSHans Rosenfeld 	    NVME_DEFAULT_MIN_BLOCK_SIZE);
29266801591eSHans Rosenfeld 
29276801591eSHans Rosenfeld 	if (!ISP2(nvme->n_min_block_size) ||
29286801591eSHans Rosenfeld 	    (nvme->n_min_block_size < NVME_DEFAULT_MIN_BLOCK_SIZE)) {
29296801591eSHans Rosenfeld 		dev_err(dip, CE_WARN, "!min-phys-block-size %s, "
29306801591eSHans Rosenfeld 		    "using default %d", ISP2(nvme->n_min_block_size) ?
29316801591eSHans Rosenfeld 		    "too low" : "not a power of 2",
29326801591eSHans Rosenfeld 		    NVME_DEFAULT_MIN_BLOCK_SIZE);
29336801591eSHans Rosenfeld 		nvme->n_min_block_size = NVME_DEFAULT_MIN_BLOCK_SIZE;
29346801591eSHans Rosenfeld 	}
29353c9168faSHans Rosenfeld 
29363c9168faSHans Rosenfeld 	if (nvme->n_admin_queue_len < NVME_MIN_ADMIN_QUEUE_LEN)
29373c9168faSHans Rosenfeld 		nvme->n_admin_queue_len = NVME_MIN_ADMIN_QUEUE_LEN;
29383c9168faSHans Rosenfeld 	else if (nvme->n_admin_queue_len > NVME_MAX_ADMIN_QUEUE_LEN)
29393c9168faSHans Rosenfeld 		nvme->n_admin_queue_len = NVME_MAX_ADMIN_QUEUE_LEN;
29403c9168faSHans Rosenfeld 
29413c9168faSHans Rosenfeld 	if (nvme->n_io_queue_len < NVME_MIN_IO_QUEUE_LEN)
29423c9168faSHans Rosenfeld 		nvme->n_io_queue_len = NVME_MIN_IO_QUEUE_LEN;
29433c9168faSHans Rosenfeld 
29443c9168faSHans Rosenfeld 	if (nvme->n_async_event_limit < 1)
29453c9168faSHans Rosenfeld 		nvme->n_async_event_limit = NVME_DEFAULT_ASYNC_EVENT_LIMIT;
29463c9168faSHans Rosenfeld 
29473c9168faSHans Rosenfeld 	nvme->n_reg_acc_attr = nvme_reg_acc_attr;
29483c9168faSHans Rosenfeld 	nvme->n_queue_dma_attr = nvme_queue_dma_attr;
29493c9168faSHans Rosenfeld 	nvme->n_prp_dma_attr = nvme_prp_dma_attr;
29503c9168faSHans Rosenfeld 	nvme->n_sgl_dma_attr = nvme_sgl_dma_attr;
29513c9168faSHans Rosenfeld 
29523c9168faSHans Rosenfeld 	/*
29533c9168faSHans Rosenfeld 	 * Setup FMA support.
29543c9168faSHans Rosenfeld 	 */
29553c9168faSHans Rosenfeld 	nvme->n_fm_cap = ddi_getprop(DDI_DEV_T_ANY, dip,
29563c9168faSHans Rosenfeld 	    DDI_PROP_CANSLEEP | DDI_PROP_DONTPASS, "fm-capable",
29573c9168faSHans Rosenfeld 	    DDI_FM_EREPORT_CAPABLE | DDI_FM_ACCCHK_CAPABLE |
29583c9168faSHans Rosenfeld 	    DDI_FM_DMACHK_CAPABLE | DDI_FM_ERRCB_CAPABLE);
29593c9168faSHans Rosenfeld 
29603c9168faSHans Rosenfeld 	ddi_fm_init(dip, &nvme->n_fm_cap, &nvme->n_fm_ibc);
29613c9168faSHans Rosenfeld 
29623c9168faSHans Rosenfeld 	if (nvme->n_fm_cap) {
29633c9168faSHans Rosenfeld 		if (nvme->n_fm_cap & DDI_FM_ACCCHK_CAPABLE)
29643c9168faSHans Rosenfeld 			nvme->n_reg_acc_attr.devacc_attr_access =
29653c9168faSHans Rosenfeld 			    DDI_FLAGERR_ACC;
29663c9168faSHans Rosenfeld 
29673c9168faSHans Rosenfeld 		if (nvme->n_fm_cap & DDI_FM_DMACHK_CAPABLE) {
29683c9168faSHans Rosenfeld 			nvme->n_prp_dma_attr.dma_attr_flags |= DDI_DMA_FLAGERR;
29693c9168faSHans Rosenfeld 			nvme->n_sgl_dma_attr.dma_attr_flags |= DDI_DMA_FLAGERR;
29703c9168faSHans Rosenfeld 		}
29713c9168faSHans Rosenfeld 
29723c9168faSHans Rosenfeld 		if (DDI_FM_EREPORT_CAP(nvme->n_fm_cap) ||
29733c9168faSHans Rosenfeld 		    DDI_FM_ERRCB_CAP(nvme->n_fm_cap))
29743c9168faSHans Rosenfeld 			pci_ereport_setup(dip);
29753c9168faSHans Rosenfeld 
29763c9168faSHans Rosenfeld 		if (DDI_FM_ERRCB_CAP(nvme->n_fm_cap))
29773c9168faSHans Rosenfeld 			ddi_fm_handler_register(dip, nvme_fm_errcb,
29783c9168faSHans Rosenfeld 			    (void *)nvme);
29793c9168faSHans Rosenfeld 	}
29803c9168faSHans Rosenfeld 
29813c9168faSHans Rosenfeld 	nvme->n_progress |= NVME_FMA_INIT;
29823c9168faSHans Rosenfeld 
29833c9168faSHans Rosenfeld 	/*
29843c9168faSHans Rosenfeld 	 * The spec defines several register sets. Only the controller
29853c9168faSHans Rosenfeld 	 * registers (set 1) are currently used.
29863c9168faSHans Rosenfeld 	 */
29873c9168faSHans Rosenfeld 	if (ddi_dev_nregs(dip, &nregs) == DDI_FAILURE ||
29883c9168faSHans Rosenfeld 	    nregs < 2 ||
29893c9168faSHans Rosenfeld 	    ddi_dev_regsize(dip, 1, &regsize) == DDI_FAILURE)
29903c9168faSHans Rosenfeld 		goto fail;
29913c9168faSHans Rosenfeld 
29923c9168faSHans Rosenfeld 	if (ddi_regs_map_setup(dip, 1, &nvme->n_regs, 0, regsize,
29933c9168faSHans Rosenfeld 	    &nvme->n_reg_acc_attr, &nvme->n_regh) != DDI_SUCCESS) {
29943c9168faSHans Rosenfeld 		dev_err(dip, CE_WARN, "!failed to map regset 1");
29953c9168faSHans Rosenfeld 		goto fail;
29963c9168faSHans Rosenfeld 	}
29973c9168faSHans Rosenfeld 
29983c9168faSHans Rosenfeld 	nvme->n_progress |= NVME_REGS_MAPPED;
29993c9168faSHans Rosenfeld 
30003c9168faSHans Rosenfeld 	/*
30013c9168faSHans Rosenfeld 	 * Create taskq for command completion.
30023c9168faSHans Rosenfeld 	 */
30033c9168faSHans Rosenfeld 	(void) snprintf(name, sizeof (name), "%s%d_cmd_taskq",
30043c9168faSHans Rosenfeld 	    ddi_driver_name(dip), ddi_get_instance(dip));
30053c9168faSHans Rosenfeld 	nvme->n_cmd_taskq = ddi_taskq_create(dip, name, MIN(UINT16_MAX, ncpus),
30063c9168faSHans Rosenfeld 	    TASKQ_DEFAULTPRI, 0);
30073c9168faSHans Rosenfeld 	if (nvme->n_cmd_taskq == NULL) {
30083c9168faSHans Rosenfeld 		dev_err(dip, CE_WARN, "!failed to create cmd taskq");
30093c9168faSHans Rosenfeld 		goto fail;
30103c9168faSHans Rosenfeld 	}
30113c9168faSHans Rosenfeld 
30128834f7acSYouzhong Yang 	/*
30138834f7acSYouzhong Yang 	 * Create PRP DMA cache
30148834f7acSYouzhong Yang 	 */
30158834f7acSYouzhong Yang 	(void) snprintf(name, sizeof (name), "%s%d_prp_cache",
30168834f7acSYouzhong Yang 	    ddi_driver_name(dip), ddi_get_instance(dip));
30178834f7acSYouzhong Yang 	nvme->n_prp_cache = kmem_cache_create(name, sizeof (nvme_dma_t),
30188834f7acSYouzhong Yang 	    0, nvme_prp_dma_constructor, nvme_prp_dma_destructor,
30198834f7acSYouzhong Yang 	    NULL, (void *)nvme, NULL, 0);
30203c9168faSHans Rosenfeld 
30213c9168faSHans Rosenfeld 	if (nvme_init(nvme) != DDI_SUCCESS)
30223c9168faSHans Rosenfeld 		goto fail;
30233c9168faSHans Rosenfeld 
30243c9168faSHans Rosenfeld 	/*
30253c9168faSHans Rosenfeld 	 * Attach the blkdev driver for each namespace.
30263c9168faSHans Rosenfeld 	 */
30273c9168faSHans Rosenfeld 	for (i = 0; i != nvme->n_namespace_count; i++) {
30283d9b1a2aSHans Rosenfeld 		if (ddi_create_minor_node(nvme->n_dip, nvme->n_ns[i].ns_name,
30293d9b1a2aSHans Rosenfeld 		    S_IFCHR, NVME_MINOR(ddi_get_instance(nvme->n_dip), i + 1),
30303d9b1a2aSHans Rosenfeld 		    DDI_NT_NVME_ATTACHMENT_POINT, 0) != DDI_SUCCESS) {
30313d9b1a2aSHans Rosenfeld 			dev_err(dip, CE_WARN,
30323d9b1a2aSHans Rosenfeld 			    "!failed to create minor node for namespace %d", i);
30333d9b1a2aSHans Rosenfeld 			goto fail;
30343d9b1a2aSHans Rosenfeld 		}
30353d9b1a2aSHans Rosenfeld 
30363c9168faSHans Rosenfeld 		if (nvme->n_ns[i].ns_ignore)
30373c9168faSHans Rosenfeld 			continue;
30383c9168faSHans Rosenfeld 
30393c9168faSHans Rosenfeld 		nvme->n_ns[i].ns_bd_hdl = bd_alloc_handle(&nvme->n_ns[i],
30403c9168faSHans Rosenfeld 		    &nvme_bd_ops, &nvme->n_prp_dma_attr, KM_SLEEP);
30413c9168faSHans Rosenfeld 
30423c9168faSHans Rosenfeld 		if (nvme->n_ns[i].ns_bd_hdl == NULL) {
30433c9168faSHans Rosenfeld 			dev_err(dip, CE_WARN,
30443c9168faSHans Rosenfeld 			    "!failed to get blkdev handle for namespace %d", i);
30453c9168faSHans Rosenfeld 			goto fail;
30463c9168faSHans Rosenfeld 		}
30473c9168faSHans Rosenfeld 
30483c9168faSHans Rosenfeld 		if (bd_attach_handle(dip, nvme->n_ns[i].ns_bd_hdl)
30493c9168faSHans Rosenfeld 		    != DDI_SUCCESS) {
30503c9168faSHans Rosenfeld 			dev_err(dip, CE_WARN,
30513c9168faSHans Rosenfeld 			    "!failed to attach blkdev handle for namespace %d",
30523c9168faSHans Rosenfeld 			    i);
30533c9168faSHans Rosenfeld 			goto fail;
30543c9168faSHans Rosenfeld 		}
30553c9168faSHans Rosenfeld 	}
30563c9168faSHans Rosenfeld 
30573d9b1a2aSHans Rosenfeld 	if (ddi_create_minor_node(dip, "devctl", S_IFCHR,
30583d9b1a2aSHans Rosenfeld 	    NVME_MINOR(ddi_get_instance(dip), 0), DDI_NT_NVME_NEXUS, 0)
30593d9b1a2aSHans Rosenfeld 	    != DDI_SUCCESS) {
30603d9b1a2aSHans Rosenfeld 		dev_err(dip, CE_WARN, "nvme_attach: "
30613d9b1a2aSHans Rosenfeld 		    "cannot create devctl minor node");
30623d9b1a2aSHans Rosenfeld 		goto fail;
30633d9b1a2aSHans Rosenfeld 	}
30643d9b1a2aSHans Rosenfeld 
30653c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
30663c9168faSHans Rosenfeld 
30673c9168faSHans Rosenfeld fail:
30683c9168faSHans Rosenfeld 	/* attach successful anyway so that FMA can retire the device */
30693c9168faSHans Rosenfeld 	if (nvme->n_dead)
30703c9168faSHans Rosenfeld 		return (DDI_SUCCESS);
30713c9168faSHans Rosenfeld 
30723c9168faSHans Rosenfeld 	(void) nvme_detach(dip, DDI_DETACH);
30733c9168faSHans Rosenfeld 
30743c9168faSHans Rosenfeld 	return (DDI_FAILURE);
30753c9168faSHans Rosenfeld }
30763c9168faSHans Rosenfeld 
30773c9168faSHans Rosenfeld static int
30783c9168faSHans Rosenfeld nvme_detach(dev_info_t *dip, ddi_detach_cmd_t cmd)
30793c9168faSHans Rosenfeld {
30803c9168faSHans Rosenfeld 	int instance, i;
30813c9168faSHans Rosenfeld 	nvme_t *nvme;
30823c9168faSHans Rosenfeld 
30833c9168faSHans Rosenfeld 	if (cmd != DDI_DETACH)
30843c9168faSHans Rosenfeld 		return (DDI_FAILURE);
30853c9168faSHans Rosenfeld 
30863c9168faSHans Rosenfeld 	instance = ddi_get_instance(dip);
30873c9168faSHans Rosenfeld 
30883c9168faSHans Rosenfeld 	nvme = ddi_get_soft_state(nvme_state, instance);
30893c9168faSHans Rosenfeld 
30903c9168faSHans Rosenfeld 	if (nvme == NULL)
30913c9168faSHans Rosenfeld 		return (DDI_FAILURE);
30923c9168faSHans Rosenfeld 
30933d9b1a2aSHans Rosenfeld 	ddi_remove_minor_node(dip, "devctl");
30943d9b1a2aSHans Rosenfeld 	mutex_destroy(&nvme->n_minor.nm_mutex);
30953d9b1a2aSHans Rosenfeld 
30963c9168faSHans Rosenfeld 	if (nvme->n_ns) {
30973c9168faSHans Rosenfeld 		for (i = 0; i != nvme->n_namespace_count; i++) {
30983d9b1a2aSHans Rosenfeld 			ddi_remove_minor_node(dip, nvme->n_ns[i].ns_name);
30993d9b1a2aSHans Rosenfeld 			mutex_destroy(&nvme->n_ns[i].ns_minor.nm_mutex);
31003d9b1a2aSHans Rosenfeld 
31013c9168faSHans Rosenfeld 			if (nvme->n_ns[i].ns_bd_hdl) {
31023c9168faSHans Rosenfeld 				(void) bd_detach_handle(
31033c9168faSHans Rosenfeld 				    nvme->n_ns[i].ns_bd_hdl);
31043c9168faSHans Rosenfeld 				bd_free_handle(nvme->n_ns[i].ns_bd_hdl);
31053c9168faSHans Rosenfeld 			}
31063c9168faSHans Rosenfeld 
31073c9168faSHans Rosenfeld 			if (nvme->n_ns[i].ns_idns)
31083c9168faSHans Rosenfeld 				kmem_free(nvme->n_ns[i].ns_idns,
31093c9168faSHans Rosenfeld 				    sizeof (nvme_identify_nsid_t));
311024979ca3SHans Rosenfeld 			if (nvme->n_ns[i].ns_devid)
311124979ca3SHans Rosenfeld 				strfree(nvme->n_ns[i].ns_devid);
31123c9168faSHans Rosenfeld 		}
31133c9168faSHans Rosenfeld 
31143c9168faSHans Rosenfeld 		kmem_free(nvme->n_ns, sizeof (nvme_namespace_t) *
31153c9168faSHans Rosenfeld 		    nvme->n_namespace_count);
31163c9168faSHans Rosenfeld 	}
31173c9168faSHans Rosenfeld 
31183c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_INTERRUPTS)
31193c9168faSHans Rosenfeld 		nvme_release_interrupts(nvme);
31203c9168faSHans Rosenfeld 
31213c9168faSHans Rosenfeld 	if (nvme->n_cmd_taskq)
31223c9168faSHans Rosenfeld 		ddi_taskq_wait(nvme->n_cmd_taskq);
31233c9168faSHans Rosenfeld 
31243c9168faSHans Rosenfeld 	if (nvme->n_ioq_count > 0) {
31253c9168faSHans Rosenfeld 		for (i = 1; i != nvme->n_ioq_count + 1; i++) {
31263c9168faSHans Rosenfeld 			if (nvme->n_ioq[i] != NULL) {
31273c9168faSHans Rosenfeld 				/* TODO: send destroy queue commands */
31283c9168faSHans Rosenfeld 				nvme_free_qpair(nvme->n_ioq[i]);
31293c9168faSHans Rosenfeld 			}
31303c9168faSHans Rosenfeld 		}
31313c9168faSHans Rosenfeld 
31323c9168faSHans Rosenfeld 		kmem_free(nvme->n_ioq, sizeof (nvme_qpair_t *) *
31333c9168faSHans Rosenfeld 		    (nvme->n_ioq_count + 1));
31343c9168faSHans Rosenfeld 	}
31353c9168faSHans Rosenfeld 
31368834f7acSYouzhong Yang 	if (nvme->n_prp_cache != NULL) {
31378834f7acSYouzhong Yang 		kmem_cache_destroy(nvme->n_prp_cache);
31388834f7acSYouzhong Yang 	}
31398834f7acSYouzhong Yang 
31403c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_REGS_MAPPED) {
31413c9168faSHans Rosenfeld 		nvme_shutdown(nvme, NVME_CC_SHN_NORMAL, B_FALSE);
31423c9168faSHans Rosenfeld 		(void) nvme_reset(nvme, B_FALSE);
31433c9168faSHans Rosenfeld 	}
31443c9168faSHans Rosenfeld 
31453c9168faSHans Rosenfeld 	if (nvme->n_cmd_taskq)
31463c9168faSHans Rosenfeld 		ddi_taskq_destroy(nvme->n_cmd_taskq);
31473c9168faSHans Rosenfeld 
31483c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_CTRL_LIMITS)
31493c9168faSHans Rosenfeld 		sema_destroy(&nvme->n_abort_sema);
31503c9168faSHans Rosenfeld 
31513c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_ADMIN_QUEUE)
31523c9168faSHans Rosenfeld 		nvme_free_qpair(nvme->n_adminq);
31533c9168faSHans Rosenfeld 
31543c9168faSHans Rosenfeld 	if (nvme->n_idctl)
31553d9b1a2aSHans Rosenfeld 		kmem_free(nvme->n_idctl, NVME_IDENTIFY_BUFSIZE);
31563c9168faSHans Rosenfeld 
31573c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_REGS_MAPPED)
31583c9168faSHans Rosenfeld 		ddi_regs_map_free(&nvme->n_regh);
31593c9168faSHans Rosenfeld 
31603c9168faSHans Rosenfeld 	if (nvme->n_progress & NVME_FMA_INIT) {
31613c9168faSHans Rosenfeld 		if (DDI_FM_ERRCB_CAP(nvme->n_fm_cap))
31623c9168faSHans Rosenfeld 			ddi_fm_handler_unregister(nvme->n_dip);
31633c9168faSHans Rosenfeld 
31643c9168faSHans Rosenfeld 		if (DDI_FM_EREPORT_CAP(nvme->n_fm_cap) ||
31653c9168faSHans Rosenfeld 		    DDI_FM_ERRCB_CAP(nvme->n_fm_cap))
31663c9168faSHans Rosenfeld 			pci_ereport_teardown(nvme->n_dip);
31673c9168faSHans Rosenfeld 
31683c9168faSHans Rosenfeld 		ddi_fm_fini(nvme->n_dip);
31693c9168faSHans Rosenfeld 	}
31703c9168faSHans Rosenfeld 
3171510a6847SHans Rosenfeld 	if (nvme->n_vendor != NULL)
3172510a6847SHans Rosenfeld 		strfree(nvme->n_vendor);
3173510a6847SHans Rosenfeld 
3174510a6847SHans Rosenfeld 	if (nvme->n_product != NULL)
3175510a6847SHans Rosenfeld 		strfree(nvme->n_product);
3176510a6847SHans Rosenfeld 
31773c9168faSHans Rosenfeld 	ddi_soft_state_free(nvme_state, instance);
31783c9168faSHans Rosenfeld 
31793c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
31803c9168faSHans Rosenfeld }
31813c9168faSHans Rosenfeld 
31823c9168faSHans Rosenfeld static int
31833c9168faSHans Rosenfeld nvme_quiesce(dev_info_t *dip)
31843c9168faSHans Rosenfeld {
31853c9168faSHans Rosenfeld 	int instance;
31863c9168faSHans Rosenfeld 	nvme_t *nvme;
31873c9168faSHans Rosenfeld 
31883c9168faSHans Rosenfeld 	instance = ddi_get_instance(dip);
31893c9168faSHans Rosenfeld 
31903c9168faSHans Rosenfeld 	nvme = ddi_get_soft_state(nvme_state, instance);
31913c9168faSHans Rosenfeld 
31923c9168faSHans Rosenfeld 	if (nvme == NULL)
31933c9168faSHans Rosenfeld 		return (DDI_FAILURE);
31943c9168faSHans Rosenfeld 
31953c9168faSHans Rosenfeld 	nvme_shutdown(nvme, NVME_CC_SHN_ABRUPT, B_TRUE);
31963c9168faSHans Rosenfeld 
31973c9168faSHans Rosenfeld 	(void) nvme_reset(nvme, B_TRUE);
31983c9168faSHans Rosenfeld 
31993c9168faSHans Rosenfeld 	return (DDI_FAILURE);
32003c9168faSHans Rosenfeld }
32013c9168faSHans Rosenfeld 
32023c9168faSHans Rosenfeld static int
32033c9168faSHans Rosenfeld nvme_fill_prp(nvme_cmd_t *cmd, bd_xfer_t *xfer)
32043c9168faSHans Rosenfeld {
32053c9168faSHans Rosenfeld 	nvme_t *nvme = cmd->nc_nvme;
32063c9168faSHans Rosenfeld 	int nprp_page, nprp;
32073c9168faSHans Rosenfeld 	uint64_t *prp;
32083c9168faSHans Rosenfeld 
32093c9168faSHans Rosenfeld 	if (xfer->x_ndmac == 0)
32103c9168faSHans Rosenfeld 		return (DDI_FAILURE);
32113c9168faSHans Rosenfeld 
32123c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[0] = xfer->x_dmac.dmac_laddress;
32133c9168faSHans Rosenfeld 	ddi_dma_nextcookie(xfer->x_dmah, &xfer->x_dmac);
32143c9168faSHans Rosenfeld 
32153c9168faSHans Rosenfeld 	if (xfer->x_ndmac == 1) {
32163c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_dptr.d_prp[1] = 0;
32173c9168faSHans Rosenfeld 		return (DDI_SUCCESS);
32183c9168faSHans Rosenfeld 	} else if (xfer->x_ndmac == 2) {
32193c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_dptr.d_prp[1] = xfer->x_dmac.dmac_laddress;
32203c9168faSHans Rosenfeld 		return (DDI_SUCCESS);
32213c9168faSHans Rosenfeld 	}
32223c9168faSHans Rosenfeld 
32233c9168faSHans Rosenfeld 	xfer->x_ndmac--;
32243c9168faSHans Rosenfeld 
32253c9168faSHans Rosenfeld 	nprp_page = nvme->n_pagesize / sizeof (uint64_t) - 1;
32263c9168faSHans Rosenfeld 	ASSERT(nprp_page > 0);
32273c9168faSHans Rosenfeld 	nprp = (xfer->x_ndmac + nprp_page - 1) / nprp_page;
32283c9168faSHans Rosenfeld 
32293c9168faSHans Rosenfeld 	/*
32303c9168faSHans Rosenfeld 	 * We currently don't support chained PRPs and set up our DMA
32313c9168faSHans Rosenfeld 	 * attributes to reflect that. If we still get an I/O request
32323c9168faSHans Rosenfeld 	 * that needs a chained PRP something is very wrong.
32333c9168faSHans Rosenfeld 	 */
32343c9168faSHans Rosenfeld 	VERIFY(nprp == 1);
32353c9168faSHans Rosenfeld 
32368834f7acSYouzhong Yang 	cmd->nc_dma = kmem_cache_alloc(nvme->n_prp_cache, KM_SLEEP);
32378834f7acSYouzhong Yang 	bzero(cmd->nc_dma->nd_memp, cmd->nc_dma->nd_len);
32383c9168faSHans Rosenfeld 
32393c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_dptr.d_prp[1] = cmd->nc_dma->nd_cookie.dmac_laddress;
32403c9168faSHans Rosenfeld 
32413c9168faSHans Rosenfeld 	/*LINTED: E_PTR_BAD_CAST_ALIGN*/
32423c9168faSHans Rosenfeld 	for (prp = (uint64_t *)cmd->nc_dma->nd_memp;
32433c9168faSHans Rosenfeld 	    xfer->x_ndmac > 0;
32443c9168faSHans Rosenfeld 	    prp++, xfer->x_ndmac--) {
32453c9168faSHans Rosenfeld 		*prp = xfer->x_dmac.dmac_laddress;
32463c9168faSHans Rosenfeld 		ddi_dma_nextcookie(xfer->x_dmah, &xfer->x_dmac);
32473c9168faSHans Rosenfeld 	}
32483c9168faSHans Rosenfeld 
32493c9168faSHans Rosenfeld 	(void) ddi_dma_sync(cmd->nc_dma->nd_dmah, 0, cmd->nc_dma->nd_len,
32503c9168faSHans Rosenfeld 	    DDI_DMA_SYNC_FORDEV);
32513c9168faSHans Rosenfeld 	return (DDI_SUCCESS);
32523c9168faSHans Rosenfeld }
32533c9168faSHans Rosenfeld 
32543c9168faSHans Rosenfeld static nvme_cmd_t *
32553c9168faSHans Rosenfeld nvme_create_nvm_cmd(nvme_namespace_t *ns, uint8_t opc, bd_xfer_t *xfer)
32563c9168faSHans Rosenfeld {
32573c9168faSHans Rosenfeld 	nvme_t *nvme = ns->ns_nvme;
32583c9168faSHans Rosenfeld 	nvme_cmd_t *cmd;
32593c9168faSHans Rosenfeld 
32603c9168faSHans Rosenfeld 	/*
32613c9168faSHans Rosenfeld 	 * Blkdev only sets BD_XFER_POLL when dumping, so don't sleep.
32623c9168faSHans Rosenfeld 	 */
32633c9168faSHans Rosenfeld 	cmd = nvme_alloc_cmd(nvme, (xfer->x_flags & BD_XFER_POLL) ?
32643c9168faSHans Rosenfeld 	    KM_NOSLEEP : KM_SLEEP);
32653c9168faSHans Rosenfeld 
32663c9168faSHans Rosenfeld 	if (cmd == NULL)
32673c9168faSHans Rosenfeld 		return (NULL);
32683c9168faSHans Rosenfeld 
32693c9168faSHans Rosenfeld 	cmd->nc_sqe.sqe_opc = opc;
32703c9168faSHans Rosenfeld 	cmd->nc_callback = nvme_bd_xfer_done;
32713c9168faSHans Rosenfeld 	cmd->nc_xfer = xfer;
32723c9168faSHans Rosenfeld 
32733c9168faSHans Rosenfeld 	switch (opc) {
32743c9168faSHans Rosenfeld 	case NVME_OPC_NVM_WRITE:
32753c9168faSHans Rosenfeld 	case NVME_OPC_NVM_READ:
32763c9168faSHans Rosenfeld 		VERIFY(xfer->x_nblks <= 0x10000);
32773c9168faSHans Rosenfeld 
32783c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = ns->ns_id;
32793c9168faSHans Rosenfeld 
32803c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_cdw10 = xfer->x_blkno & 0xffffffffu;
32813c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_cdw11 = (xfer->x_blkno >> 32);
32823c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_cdw12 = (uint16_t)(xfer->x_nblks - 1);
32833c9168faSHans Rosenfeld 
32843c9168faSHans Rosenfeld 		if (nvme_fill_prp(cmd, xfer) != DDI_SUCCESS)
32853c9168faSHans Rosenfeld 			goto fail;
32863c9168faSHans Rosenfeld 		break;
32873c9168faSHans Rosenfeld 
32883c9168faSHans Rosenfeld 	case NVME_OPC_NVM_FLUSH:
32893c9168faSHans Rosenfeld 		cmd->nc_sqe.sqe_nsid = ns->ns_id;
32903c9168faSHans Rosenfeld 		break;
32913c9168faSHans Rosenfeld 
32923c9168faSHans Rosenfeld 	default:
32933c9168faSHans Rosenfeld 		goto fail;
32943c9168faSHans Rosenfeld 	}
32953c9168faSHans Rosenfeld 
32963c9168faSHans Rosenfeld 	return (cmd);
32973c9168faSHans Rosenfeld 
32983c9168faSHans Rosenfeld fail:
32993c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
33003c9168faSHans Rosenfeld 	return (NULL);
33013c9168faSHans Rosenfeld }
33023c9168faSHans Rosenfeld 
33033c9168faSHans Rosenfeld static void
33043c9168faSHans Rosenfeld nvme_bd_xfer_done(void *arg)
33053c9168faSHans Rosenfeld {
33063c9168faSHans Rosenfeld 	nvme_cmd_t *cmd = arg;
33073c9168faSHans Rosenfeld 	bd_xfer_t *xfer = cmd->nc_xfer;
33083c9168faSHans Rosenfeld 	int error = 0;
33093c9168faSHans Rosenfeld 
33103c9168faSHans Rosenfeld 	error = nvme_check_cmd_status(cmd);
33113c9168faSHans Rosenfeld 	nvme_free_cmd(cmd);
33123c9168faSHans Rosenfeld 
33133c9168faSHans Rosenfeld 	bd_xfer_done(xfer, error);
33143c9168faSHans Rosenfeld }
33153c9168faSHans Rosenfeld 
33163c9168faSHans Rosenfeld static void
33173c9168faSHans Rosenfeld nvme_bd_driveinfo(void *arg, bd_drive_t *drive)
33183c9168faSHans Rosenfeld {
33193c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
33203c9168faSHans Rosenfeld 	nvme_t *nvme = ns->ns_nvme;
33213c9168faSHans Rosenfeld 
33223c9168faSHans Rosenfeld 	/*
33233c9168faSHans Rosenfeld 	 * blkdev maintains one queue size per instance (namespace),
33243c9168faSHans Rosenfeld 	 * but all namespace share the I/O queues.
33253c9168faSHans Rosenfeld 	 * TODO: need to figure out a sane default, or use per-NS I/O queues,
33263c9168faSHans Rosenfeld 	 * or change blkdev to handle EAGAIN
33273c9168faSHans Rosenfeld 	 */
33283c9168faSHans Rosenfeld 	drive->d_qsize = nvme->n_ioq_count * nvme->n_io_queue_len
33293c9168faSHans Rosenfeld 	    / nvme->n_namespace_count;
33303c9168faSHans Rosenfeld 
33313c9168faSHans Rosenfeld 	/*
33323c9168faSHans Rosenfeld 	 * d_maxxfer is not set, which means the value is taken from the DMA
33333c9168faSHans Rosenfeld 	 * attributes specified to bd_alloc_handle.
33343c9168faSHans Rosenfeld 	 */
33353c9168faSHans Rosenfeld 
33363c9168faSHans Rosenfeld 	drive->d_removable = B_FALSE;
33373c9168faSHans Rosenfeld 	drive->d_hotpluggable = B_FALSE;
33383c9168faSHans Rosenfeld 
333924979ca3SHans Rosenfeld 	bcopy(ns->ns_eui64, drive->d_eui64, sizeof (drive->d_eui64));
33403c9168faSHans Rosenfeld 	drive->d_target = ns->ns_id;
33413c9168faSHans Rosenfeld 	drive->d_lun = 0;
3342510a6847SHans Rosenfeld 
3343bef9e21aSHans Rosenfeld 	drive->d_model = nvme->n_idctl->id_model;
3344bef9e21aSHans Rosenfeld 	drive->d_model_len = sizeof (nvme->n_idctl->id_model);
3345510a6847SHans Rosenfeld 	drive->d_vendor = nvme->n_vendor;
3346510a6847SHans Rosenfeld 	drive->d_vendor_len = strlen(nvme->n_vendor);
3347510a6847SHans Rosenfeld 	drive->d_product = nvme->n_product;
3348510a6847SHans Rosenfeld 	drive->d_product_len = strlen(nvme->n_product);
3349510a6847SHans Rosenfeld 	drive->d_serial = nvme->n_idctl->id_serial;
3350510a6847SHans Rosenfeld 	drive->d_serial_len = sizeof (nvme->n_idctl->id_serial);
3351510a6847SHans Rosenfeld 	drive->d_revision = nvme->n_idctl->id_fwrev;
3352510a6847SHans Rosenfeld 	drive->d_revision_len = sizeof (nvme->n_idctl->id_fwrev);
33533c9168faSHans Rosenfeld }
33543c9168faSHans Rosenfeld 
33553c9168faSHans Rosenfeld static int
33563c9168faSHans Rosenfeld nvme_bd_mediainfo(void *arg, bd_media_t *media)
33573c9168faSHans Rosenfeld {
33583c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
33593c9168faSHans Rosenfeld 
33603c9168faSHans Rosenfeld 	media->m_nblks = ns->ns_block_count;
33613c9168faSHans Rosenfeld 	media->m_blksize = ns->ns_block_size;
33623c9168faSHans Rosenfeld 	media->m_readonly = B_FALSE;
33633c9168faSHans Rosenfeld 	media->m_solidstate = B_TRUE;
33643c9168faSHans Rosenfeld 
33653c9168faSHans Rosenfeld 	media->m_pblksize = ns->ns_best_block_size;
33663c9168faSHans Rosenfeld 
33673c9168faSHans Rosenfeld 	return (0);
33683c9168faSHans Rosenfeld }
33693c9168faSHans Rosenfeld 
33703c9168faSHans Rosenfeld static int
33713c9168faSHans Rosenfeld nvme_bd_cmd(nvme_namespace_t *ns, bd_xfer_t *xfer, uint8_t opc)
33723c9168faSHans Rosenfeld {
33733c9168faSHans Rosenfeld 	nvme_t *nvme = ns->ns_nvme;
33744b324362SHans Rosenfeld 	nvme_cmd_t *cmd;
33754ac9cfccSHans Rosenfeld 	nvme_qpair_t *ioq;
33764ac9cfccSHans Rosenfeld 	boolean_t poll;
33774b324362SHans Rosenfeld 	int ret;
33783c9168faSHans Rosenfeld 
33793c9168faSHans Rosenfeld 	if (nvme->n_dead)
33803c9168faSHans Rosenfeld 		return (EIO);
33813c9168faSHans Rosenfeld 
33823c9168faSHans Rosenfeld 	cmd = nvme_create_nvm_cmd(ns, opc, xfer);
33833c9168faSHans Rosenfeld 	if (cmd == NULL)
33843c9168faSHans Rosenfeld 		return (ENOMEM);
33853c9168faSHans Rosenfeld 
33863c9168faSHans Rosenfeld 	cmd->nc_sqid = (CPU->cpu_id % nvme->n_ioq_count) + 1;
33873c9168faSHans Rosenfeld 	ASSERT(cmd->nc_sqid <= nvme->n_ioq_count);
33884ac9cfccSHans Rosenfeld 	ioq = nvme->n_ioq[cmd->nc_sqid];
33894ac9cfccSHans Rosenfeld 
33904ac9cfccSHans Rosenfeld 	/*
33914ac9cfccSHans Rosenfeld 	 * Get the polling flag before submitting the command. The command may
33924ac9cfccSHans Rosenfeld 	 * complete immediately after it was submitted, which means we must
33934ac9cfccSHans Rosenfeld 	 * treat both cmd and xfer as if they have been freed already.
33944ac9cfccSHans Rosenfeld 	 */
33954ac9cfccSHans Rosenfeld 	poll = (xfer->x_flags & BD_XFER_POLL) != 0;
33963c9168faSHans Rosenfeld 
33974b324362SHans Rosenfeld 	ret = nvme_submit_io_cmd(ioq, cmd);
33984b324362SHans Rosenfeld 
33994b324362SHans Rosenfeld 	if (ret != 0)
34004b324362SHans Rosenfeld 		return (ret);
34013c9168faSHans Rosenfeld 
34024ac9cfccSHans Rosenfeld 	if (!poll)
34034ac9cfccSHans Rosenfeld 		return (0);
34044ac9cfccSHans Rosenfeld 
34054ac9cfccSHans Rosenfeld 	do {
34064b324362SHans Rosenfeld 		cmd = nvme_retrieve_cmd(nvme, ioq);
34074b324362SHans Rosenfeld 		if (cmd != NULL)
34084b324362SHans Rosenfeld 			nvme_bd_xfer_done(cmd);
34094ac9cfccSHans Rosenfeld 		else
34104ac9cfccSHans Rosenfeld 			drv_usecwait(10);
34114ac9cfccSHans Rosenfeld 	} while (ioq->nq_active_cmds != 0);
34124ac9cfccSHans Rosenfeld 
34133c9168faSHans Rosenfeld 	return (0);
34143c9168faSHans Rosenfeld }
34153c9168faSHans Rosenfeld 
34163c9168faSHans Rosenfeld static int
34173c9168faSHans Rosenfeld nvme_bd_read(void *arg, bd_xfer_t *xfer)
34183c9168faSHans Rosenfeld {
34193c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
34203c9168faSHans Rosenfeld 
34213c9168faSHans Rosenfeld 	return (nvme_bd_cmd(ns, xfer, NVME_OPC_NVM_READ));
34223c9168faSHans Rosenfeld }
34233c9168faSHans Rosenfeld 
34243c9168faSHans Rosenfeld static int
34253c9168faSHans Rosenfeld nvme_bd_write(void *arg, bd_xfer_t *xfer)
34263c9168faSHans Rosenfeld {
34273c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
34283c9168faSHans Rosenfeld 
34293c9168faSHans Rosenfeld 	return (nvme_bd_cmd(ns, xfer, NVME_OPC_NVM_WRITE));
34303c9168faSHans Rosenfeld }
34313c9168faSHans Rosenfeld 
34323c9168faSHans Rosenfeld static int
34333c9168faSHans Rosenfeld nvme_bd_sync(void *arg, bd_xfer_t *xfer)
34343c9168faSHans Rosenfeld {
34353c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
34363c9168faSHans Rosenfeld 
34373c9168faSHans Rosenfeld 	if (ns->ns_nvme->n_dead)
34383c9168faSHans Rosenfeld 		return (EIO);
34393c9168faSHans Rosenfeld 
34403c9168faSHans Rosenfeld 	/*
3441d148d46eSHans Rosenfeld 	 * If the volatile write cache is not present or not enabled the FLUSH
3442d148d46eSHans Rosenfeld 	 * command is a no-op, so we can take a shortcut here.
34433c9168faSHans Rosenfeld 	 */
3444d148d46eSHans Rosenfeld 	if (!ns->ns_nvme->n_write_cache_present) {
34453c9168faSHans Rosenfeld 		bd_xfer_done(xfer, ENOTSUP);
34463c9168faSHans Rosenfeld 		return (0);
34473c9168faSHans Rosenfeld 	}
34483c9168faSHans Rosenfeld 
3449d148d46eSHans Rosenfeld 	if (!ns->ns_nvme->n_write_cache_enabled) {
3450d148d46eSHans Rosenfeld 		bd_xfer_done(xfer, 0);
3451d148d46eSHans Rosenfeld 		return (0);
3452d148d46eSHans Rosenfeld 	}
3453d148d46eSHans Rosenfeld 
34543c9168faSHans Rosenfeld 	return (nvme_bd_cmd(ns, xfer, NVME_OPC_NVM_FLUSH));
34553c9168faSHans Rosenfeld }
34563c9168faSHans Rosenfeld 
34573c9168faSHans Rosenfeld static int
34583c9168faSHans Rosenfeld nvme_bd_devid(void *arg, dev_info_t *devinfo, ddi_devid_t *devid)
34593c9168faSHans Rosenfeld {
34603c9168faSHans Rosenfeld 	nvme_namespace_t *ns = arg;
34613c9168faSHans Rosenfeld 
346224979ca3SHans Rosenfeld 	/*LINTED: E_BAD_PTR_CAST_ALIGN*/
346324979ca3SHans Rosenfeld 	if (*(uint64_t *)ns->ns_eui64 != 0) {
346424979ca3SHans Rosenfeld 		return (ddi_devid_init(devinfo, DEVID_SCSI3_WWN,
346524979ca3SHans Rosenfeld 		    sizeof (ns->ns_eui64), ns->ns_eui64, devid));
346624979ca3SHans Rosenfeld 	} else {
346724979ca3SHans Rosenfeld 		return (ddi_devid_init(devinfo, DEVID_ENCAP,
346824979ca3SHans Rosenfeld 		    strlen(ns->ns_devid), ns->ns_devid, devid));
346924979ca3SHans Rosenfeld 	}
34703c9168faSHans Rosenfeld }
34713d9b1a2aSHans Rosenfeld 
34723d9b1a2aSHans Rosenfeld static int
34733d9b1a2aSHans Rosenfeld nvme_open(dev_t *devp, int flag, int otyp, cred_t *cred_p)
34743d9b1a2aSHans Rosenfeld {
34753d9b1a2aSHans Rosenfeld #ifndef __lock_lint
34763d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(cred_p));
34773d9b1a2aSHans Rosenfeld #endif
34783d9b1a2aSHans Rosenfeld 	minor_t minor = getminor(*devp);
34793d9b1a2aSHans Rosenfeld 	nvme_t *nvme = ddi_get_soft_state(nvme_state, NVME_MINOR_INST(minor));
34803d9b1a2aSHans Rosenfeld 	int nsid = NVME_MINOR_NSID(minor);
34813d9b1a2aSHans Rosenfeld 	nvme_minor_state_t *nm;
34823d9b1a2aSHans Rosenfeld 	int rv = 0;
34833d9b1a2aSHans Rosenfeld 
34843d9b1a2aSHans Rosenfeld 	if (otyp != OTYP_CHR)
34853d9b1a2aSHans Rosenfeld 		return (EINVAL);
34863d9b1a2aSHans Rosenfeld 
34873d9b1a2aSHans Rosenfeld 	if (nvme == NULL)
34883d9b1a2aSHans Rosenfeld 		return (ENXIO);
34893d9b1a2aSHans Rosenfeld 
34903d9b1a2aSHans Rosenfeld 	if (nsid > nvme->n_namespace_count)
34913d9b1a2aSHans Rosenfeld 		return (ENXIO);
34923d9b1a2aSHans Rosenfeld 
3493e984c70bSHans Rosenfeld 	if (nvme->n_dead)
3494e984c70bSHans Rosenfeld 		return (EIO);
3495e984c70bSHans Rosenfeld 
34963d9b1a2aSHans Rosenfeld 	nm = nsid == 0 ? &nvme->n_minor : &nvme->n_ns[nsid - 1].ns_minor;
34973d9b1a2aSHans Rosenfeld 
34983d9b1a2aSHans Rosenfeld 	mutex_enter(&nm->nm_mutex);
34993d9b1a2aSHans Rosenfeld 	if (nm->nm_oexcl) {
35003d9b1a2aSHans Rosenfeld 		rv = EBUSY;
35013d9b1a2aSHans Rosenfeld 		goto out;
35023d9b1a2aSHans Rosenfeld 	}
35033d9b1a2aSHans Rosenfeld 
35043d9b1a2aSHans Rosenfeld 	if (flag & FEXCL) {
35053d9b1a2aSHans Rosenfeld 		if (nm->nm_ocnt != 0) {
35063d9b1a2aSHans Rosenfeld 			rv = EBUSY;
35073d9b1a2aSHans Rosenfeld 			goto out;
35083d9b1a2aSHans Rosenfeld 		}
35093d9b1a2aSHans Rosenfeld 		nm->nm_oexcl = B_TRUE;
35103d9b1a2aSHans Rosenfeld 	}
35113d9b1a2aSHans Rosenfeld 
35123d9b1a2aSHans Rosenfeld 	nm->nm_ocnt++;
35133d9b1a2aSHans Rosenfeld 
35143d9b1a2aSHans Rosenfeld out:
35153d9b1a2aSHans Rosenfeld 	mutex_exit(&nm->nm_mutex);
35163d9b1a2aSHans Rosenfeld 	return (rv);
35173d9b1a2aSHans Rosenfeld 
35183d9b1a2aSHans Rosenfeld }
35193d9b1a2aSHans Rosenfeld 
35203d9b1a2aSHans Rosenfeld static int
35213d9b1a2aSHans Rosenfeld nvme_close(dev_t dev, int flag, int otyp, cred_t *cred_p)
35223d9b1a2aSHans Rosenfeld {
35233d9b1a2aSHans Rosenfeld #ifndef __lock_lint
35243d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(cred_p));
35253d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(flag));
35263d9b1a2aSHans Rosenfeld #endif
35273d9b1a2aSHans Rosenfeld 	minor_t minor = getminor(dev);
35283d9b1a2aSHans Rosenfeld 	nvme_t *nvme = ddi_get_soft_state(nvme_state, NVME_MINOR_INST(minor));
35293d9b1a2aSHans Rosenfeld 	int nsid = NVME_MINOR_NSID(minor);
35303d9b1a2aSHans Rosenfeld 	nvme_minor_state_t *nm;
35313d9b1a2aSHans Rosenfeld 
35323d9b1a2aSHans Rosenfeld 	if (otyp != OTYP_CHR)
35333d9b1a2aSHans Rosenfeld 		return (ENXIO);
35343d9b1a2aSHans Rosenfeld 
35353d9b1a2aSHans Rosenfeld 	if (nvme == NULL)
35363d9b1a2aSHans Rosenfeld 		return (ENXIO);
35373d9b1a2aSHans Rosenfeld 
35383d9b1a2aSHans Rosenfeld 	if (nsid > nvme->n_namespace_count)
35393d9b1a2aSHans Rosenfeld 		return (ENXIO);
35403d9b1a2aSHans Rosenfeld 
35413d9b1a2aSHans Rosenfeld 	nm = nsid == 0 ? &nvme->n_minor : &nvme->n_ns[nsid - 1].ns_minor;
35423d9b1a2aSHans Rosenfeld 
35433d9b1a2aSHans Rosenfeld 	mutex_enter(&nm->nm_mutex);
35443d9b1a2aSHans Rosenfeld 	if (nm->nm_oexcl)
35453d9b1a2aSHans Rosenfeld 		nm->nm_oexcl = B_FALSE;
35463d9b1a2aSHans Rosenfeld 
35473d9b1a2aSHans Rosenfeld 	ASSERT(nm->nm_ocnt > 0);
35483d9b1a2aSHans Rosenfeld 	nm->nm_ocnt--;
35493d9b1a2aSHans Rosenfeld 	mutex_exit(&nm->nm_mutex);
35503d9b1a2aSHans Rosenfeld 
35513d9b1a2aSHans Rosenfeld 	return (0);
35523d9b1a2aSHans Rosenfeld }
35533d9b1a2aSHans Rosenfeld 
35543d9b1a2aSHans Rosenfeld static int
35553d9b1a2aSHans Rosenfeld nvme_ioctl_identify(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
35563d9b1a2aSHans Rosenfeld     cred_t *cred_p)
35573d9b1a2aSHans Rosenfeld {
35583d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(cred_p));
35593d9b1a2aSHans Rosenfeld 	int rv = 0;
35603d9b1a2aSHans Rosenfeld 	void *idctl;
35613d9b1a2aSHans Rosenfeld 
35623d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
35633d9b1a2aSHans Rosenfeld 		return (EPERM);
35643d9b1a2aSHans Rosenfeld 
35653d9b1a2aSHans Rosenfeld 	if (nioc->n_len < NVME_IDENTIFY_BUFSIZE)
35663d9b1a2aSHans Rosenfeld 		return (EINVAL);
35673d9b1a2aSHans Rosenfeld 
3568*bc586359SRobert Mustacchi 	if ((rv = nvme_identify(nvme, B_TRUE, nsid, (void **)&idctl)) != 0)
3569e984c70bSHans Rosenfeld 		return (rv);
35703d9b1a2aSHans Rosenfeld 
35713d9b1a2aSHans Rosenfeld 	if (ddi_copyout(idctl, (void *)nioc->n_buf, NVME_IDENTIFY_BUFSIZE, mode)
35723d9b1a2aSHans Rosenfeld 	    != 0)
35733d9b1a2aSHans Rosenfeld 		rv = EFAULT;
35743d9b1a2aSHans Rosenfeld 
35753d9b1a2aSHans Rosenfeld 	kmem_free(idctl, NVME_IDENTIFY_BUFSIZE);
35763d9b1a2aSHans Rosenfeld 
35773d9b1a2aSHans Rosenfeld 	return (rv);
35783d9b1a2aSHans Rosenfeld }
35793d9b1a2aSHans Rosenfeld 
35803d9b1a2aSHans Rosenfeld static int
35813d9b1a2aSHans Rosenfeld nvme_ioctl_capabilities(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc,
35823d9b1a2aSHans Rosenfeld     int mode, cred_t *cred_p)
35833d9b1a2aSHans Rosenfeld {
35843d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(nsid, cred_p));
35853d9b1a2aSHans Rosenfeld 	int rv = 0;
35863d9b1a2aSHans Rosenfeld 	nvme_reg_cap_t cap = { 0 };
35873d9b1a2aSHans Rosenfeld 	nvme_capabilities_t nc;
35883d9b1a2aSHans Rosenfeld 
35893d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
35903d9b1a2aSHans Rosenfeld 		return (EPERM);
35913d9b1a2aSHans Rosenfeld 
35923d9b1a2aSHans Rosenfeld 	if (nioc->n_len < sizeof (nc))
35933d9b1a2aSHans Rosenfeld 		return (EINVAL);
35943d9b1a2aSHans Rosenfeld 
35953d9b1a2aSHans Rosenfeld 	cap.r = nvme_get64(nvme, NVME_REG_CAP);
35963d9b1a2aSHans Rosenfeld 
35973d9b1a2aSHans Rosenfeld 	/*
35983d9b1a2aSHans Rosenfeld 	 * The MPSMIN and MPSMAX fields in the CAP register use 0 to
35993d9b1a2aSHans Rosenfeld 	 * specify the base page size of 4k (1<<12), so add 12 here to
36003d9b1a2aSHans Rosenfeld 	 * get the real page size value.
36013d9b1a2aSHans Rosenfeld 	 */
36023d9b1a2aSHans Rosenfeld 	nc.mpsmax = 1 << (12 + cap.b.cap_mpsmax);
36033d9b1a2aSHans Rosenfeld 	nc.mpsmin = 1 << (12 + cap.b.cap_mpsmin);
36043d9b1a2aSHans Rosenfeld 
36053d9b1a2aSHans Rosenfeld 	if (ddi_copyout(&nc, (void *)nioc->n_buf, sizeof (nc), mode) != 0)
36063d9b1a2aSHans Rosenfeld 		rv = EFAULT;
36073d9b1a2aSHans Rosenfeld 
36083d9b1a2aSHans Rosenfeld 	return (rv);
36093d9b1a2aSHans Rosenfeld }
36103d9b1a2aSHans Rosenfeld 
36113d9b1a2aSHans Rosenfeld static int
36123d9b1a2aSHans Rosenfeld nvme_ioctl_get_logpage(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc,
36133d9b1a2aSHans Rosenfeld     int mode, cred_t *cred_p)
36143d9b1a2aSHans Rosenfeld {
36153d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(cred_p));
36163d9b1a2aSHans Rosenfeld 	void *log = NULL;
36173d9b1a2aSHans Rosenfeld 	size_t bufsize = 0;
36183d9b1a2aSHans Rosenfeld 	int rv = 0;
36193d9b1a2aSHans Rosenfeld 
36203d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
36213d9b1a2aSHans Rosenfeld 		return (EPERM);
36223d9b1a2aSHans Rosenfeld 
36233d9b1a2aSHans Rosenfeld 	switch (nioc->n_arg) {
36243d9b1a2aSHans Rosenfeld 	case NVME_LOGPAGE_ERROR:
36253d9b1a2aSHans Rosenfeld 		if (nsid != 0)
36263d9b1a2aSHans Rosenfeld 			return (EINVAL);
36273d9b1a2aSHans Rosenfeld 		break;
36283d9b1a2aSHans Rosenfeld 	case NVME_LOGPAGE_HEALTH:
36293d9b1a2aSHans Rosenfeld 		if (nsid != 0 && nvme->n_idctl->id_lpa.lp_smart == 0)
36303d9b1a2aSHans Rosenfeld 			return (EINVAL);
36313d9b1a2aSHans Rosenfeld 
36323d9b1a2aSHans Rosenfeld 		if (nsid == 0)
36333d9b1a2aSHans Rosenfeld 			nsid = (uint32_t)-1;
36343d9b1a2aSHans Rosenfeld 
36353d9b1a2aSHans Rosenfeld 		break;
36363d9b1a2aSHans Rosenfeld 	case NVME_LOGPAGE_FWSLOT:
36373d9b1a2aSHans Rosenfeld 		if (nsid != 0)
36383d9b1a2aSHans Rosenfeld 			return (EINVAL);
36393d9b1a2aSHans Rosenfeld 		break;
36403d9b1a2aSHans Rosenfeld 	default:
36413d9b1a2aSHans Rosenfeld 		return (EINVAL);
36423d9b1a2aSHans Rosenfeld 	}
36433d9b1a2aSHans Rosenfeld 
3644*bc586359SRobert Mustacchi 	if (nvme_get_logpage(nvme, B_TRUE, &log, &bufsize, nioc->n_arg, nsid)
36453d9b1a2aSHans Rosenfeld 	    != DDI_SUCCESS)
36463d9b1a2aSHans Rosenfeld 		return (EIO);
36473d9b1a2aSHans Rosenfeld 
36483d9b1a2aSHans Rosenfeld 	if (nioc->n_len < bufsize) {
36493d9b1a2aSHans Rosenfeld 		kmem_free(log, bufsize);
36503d9b1a2aSHans Rosenfeld 		return (EINVAL);
36513d9b1a2aSHans Rosenfeld 	}
36523d9b1a2aSHans Rosenfeld 
36533d9b1a2aSHans Rosenfeld 	if (ddi_copyout(log, (void *)nioc->n_buf, bufsize, mode) != 0)
36543d9b1a2aSHans Rosenfeld 		rv = EFAULT;
36553d9b1a2aSHans Rosenfeld 
36563d9b1a2aSHans Rosenfeld 	nioc->n_len = bufsize;
36573d9b1a2aSHans Rosenfeld 	kmem_free(log, bufsize);
36583d9b1a2aSHans Rosenfeld 
36593d9b1a2aSHans Rosenfeld 	return (rv);
36603d9b1a2aSHans Rosenfeld }
36613d9b1a2aSHans Rosenfeld 
36623d9b1a2aSHans Rosenfeld static int
36633d9b1a2aSHans Rosenfeld nvme_ioctl_get_features(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc,
36643d9b1a2aSHans Rosenfeld     int mode, cred_t *cred_p)
36653d9b1a2aSHans Rosenfeld {
36663d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(cred_p));
36673d9b1a2aSHans Rosenfeld 	void *buf = NULL;
36683d9b1a2aSHans Rosenfeld 	size_t bufsize = 0;
36693d9b1a2aSHans Rosenfeld 	uint32_t res = 0;
36703d9b1a2aSHans Rosenfeld 	uint8_t feature;
36713d9b1a2aSHans Rosenfeld 	int rv = 0;
36723d9b1a2aSHans Rosenfeld 
36733d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
36743d9b1a2aSHans Rosenfeld 		return (EPERM);
36753d9b1a2aSHans Rosenfeld 
36763d9b1a2aSHans Rosenfeld 	if ((nioc->n_arg >> 32) > 0xff)
36773d9b1a2aSHans Rosenfeld 		return (EINVAL);
36783d9b1a2aSHans Rosenfeld 
36793d9b1a2aSHans Rosenfeld 	feature = (uint8_t)(nioc->n_arg >> 32);
36803d9b1a2aSHans Rosenfeld 
36813d9b1a2aSHans Rosenfeld 	switch (feature) {
36823d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ARBITRATION:
36833d9b1a2aSHans Rosenfeld 	case NVME_FEAT_POWER_MGMT:
36843d9b1a2aSHans Rosenfeld 	case NVME_FEAT_TEMPERATURE:
36853d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ERROR:
36863d9b1a2aSHans Rosenfeld 	case NVME_FEAT_NQUEUES:
36873d9b1a2aSHans Rosenfeld 	case NVME_FEAT_INTR_COAL:
36883d9b1a2aSHans Rosenfeld 	case NVME_FEAT_WRITE_ATOM:
36893d9b1a2aSHans Rosenfeld 	case NVME_FEAT_ASYNC_EVENT:
36903d9b1a2aSHans Rosenfeld 	case NVME_FEAT_PROGRESS:
36913d9b1a2aSHans Rosenfeld 		if (nsid != 0)
36923d9b1a2aSHans Rosenfeld 			return (EINVAL);
36933d9b1a2aSHans Rosenfeld 		break;
36943d9b1a2aSHans Rosenfeld 
36953d9b1a2aSHans Rosenfeld 	case NVME_FEAT_INTR_VECT:
36963d9b1a2aSHans Rosenfeld 		if (nsid != 0)
36973d9b1a2aSHans Rosenfeld 			return (EINVAL);
36983d9b1a2aSHans Rosenfeld 
36993d9b1a2aSHans Rosenfeld 		res = nioc->n_arg & 0xffffffffUL;
37003d9b1a2aSHans Rosenfeld 		if (res >= nvme->n_intr_cnt)
37013d9b1a2aSHans Rosenfeld 			return (EINVAL);
37023d9b1a2aSHans Rosenfeld 		break;
37033d9b1a2aSHans Rosenfeld 
37043d9b1a2aSHans Rosenfeld 	case NVME_FEAT_LBA_RANGE:
37053d9b1a2aSHans Rosenfeld 		if (nvme->n_lba_range_supported == B_FALSE)
37063d9b1a2aSHans Rosenfeld 			return (EINVAL);
37073d9b1a2aSHans Rosenfeld 
37083d9b1a2aSHans Rosenfeld 		if (nsid == 0 ||
37093d9b1a2aSHans Rosenfeld 		    nsid > nvme->n_namespace_count)
37103d9b1a2aSHans Rosenfeld 			return (EINVAL);
37113d9b1a2aSHans Rosenfeld 
37123d9b1a2aSHans Rosenfeld 		break;
37133d9b1a2aSHans Rosenfeld 
37143d9b1a2aSHans Rosenfeld 	case NVME_FEAT_WRITE_CACHE:
37153d9b1a2aSHans Rosenfeld 		if (nsid != 0)
37163d9b1a2aSHans Rosenfeld 			return (EINVAL);
37173d9b1a2aSHans Rosenfeld 
37183d9b1a2aSHans Rosenfeld 		if (!nvme->n_write_cache_present)
37193d9b1a2aSHans Rosenfeld 			return (EINVAL);
37203d9b1a2aSHans Rosenfeld 
37213d9b1a2aSHans Rosenfeld 		break;
37223d9b1a2aSHans Rosenfeld 
37233d9b1a2aSHans Rosenfeld 	case NVME_FEAT_AUTO_PST:
37243d9b1a2aSHans Rosenfeld 		if (nsid != 0)
37253d9b1a2aSHans Rosenfeld 			return (EINVAL);
37263d9b1a2aSHans Rosenfeld 
37273d9b1a2aSHans Rosenfeld 		if (!nvme->n_auto_pst_supported)
37283d9b1a2aSHans Rosenfeld 			return (EINVAL);
37293d9b1a2aSHans Rosenfeld 
37303d9b1a2aSHans Rosenfeld 		break;
37313d9b1a2aSHans Rosenfeld 
37323d9b1a2aSHans Rosenfeld 	default:
37333d9b1a2aSHans Rosenfeld 		return (EINVAL);
37343d9b1a2aSHans Rosenfeld 	}
37353d9b1a2aSHans Rosenfeld 
3736*bc586359SRobert Mustacchi 	rv = nvme_get_features(nvme, B_TRUE, nsid, feature, &res, &buf,
3737*bc586359SRobert Mustacchi 	    &bufsize);
3738e984c70bSHans Rosenfeld 	if (rv != 0)
3739e984c70bSHans Rosenfeld 		return (rv);
37403d9b1a2aSHans Rosenfeld 
37413d9b1a2aSHans Rosenfeld 	if (nioc->n_len < bufsize) {
37423d9b1a2aSHans Rosenfeld 		kmem_free(buf, bufsize);
37433d9b1a2aSHans Rosenfeld 		return (EINVAL);
37443d9b1a2aSHans Rosenfeld 	}
37453d9b1a2aSHans Rosenfeld 
37463d9b1a2aSHans Rosenfeld 	if (buf && ddi_copyout(buf, (void*)nioc->n_buf, bufsize, mode) != 0)
37473d9b1a2aSHans Rosenfeld 		rv = EFAULT;
37483d9b1a2aSHans Rosenfeld 
37493d9b1a2aSHans Rosenfeld 	kmem_free(buf, bufsize);
37503d9b1a2aSHans Rosenfeld 	nioc->n_arg = res;
37513d9b1a2aSHans Rosenfeld 	nioc->n_len = bufsize;
37523d9b1a2aSHans Rosenfeld 
37533d9b1a2aSHans Rosenfeld 	return (rv);
37543d9b1a2aSHans Rosenfeld }
37553d9b1a2aSHans Rosenfeld 
37563d9b1a2aSHans Rosenfeld static int
37573d9b1a2aSHans Rosenfeld nvme_ioctl_intr_cnt(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
37583d9b1a2aSHans Rosenfeld     cred_t *cred_p)
37593d9b1a2aSHans Rosenfeld {
37603d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(nsid, mode, cred_p));
37613d9b1a2aSHans Rosenfeld 
37623d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
37633d9b1a2aSHans Rosenfeld 		return (EPERM);
37643d9b1a2aSHans Rosenfeld 
37653d9b1a2aSHans Rosenfeld 	nioc->n_arg = nvme->n_intr_cnt;
37663d9b1a2aSHans Rosenfeld 	return (0);
37673d9b1a2aSHans Rosenfeld }
37683d9b1a2aSHans Rosenfeld 
37693d9b1a2aSHans Rosenfeld static int
37703d9b1a2aSHans Rosenfeld nvme_ioctl_version(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
37713d9b1a2aSHans Rosenfeld     cred_t *cred_p)
37723d9b1a2aSHans Rosenfeld {
37733d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(nsid, cred_p));
37743d9b1a2aSHans Rosenfeld 	int rv = 0;
37753d9b1a2aSHans Rosenfeld 
37763d9b1a2aSHans Rosenfeld 	if ((mode & FREAD) == 0)
37773d9b1a2aSHans Rosenfeld 		return (EPERM);
37783d9b1a2aSHans Rosenfeld 
37793d9b1a2aSHans Rosenfeld 	if (nioc->n_len < sizeof (nvme->n_version))
37803d9b1a2aSHans Rosenfeld 		return (ENOMEM);
37813d9b1a2aSHans Rosenfeld 
37823d9b1a2aSHans Rosenfeld 	if (ddi_copyout(&nvme->n_version, (void *)nioc->n_buf,
37833d9b1a2aSHans Rosenfeld 	    sizeof (nvme->n_version), mode) != 0)
37843d9b1a2aSHans Rosenfeld 		rv = EFAULT;
37853d9b1a2aSHans Rosenfeld 
37863d9b1a2aSHans Rosenfeld 	return (rv);
37873d9b1a2aSHans Rosenfeld }
37883d9b1a2aSHans Rosenfeld 
37893d9b1a2aSHans Rosenfeld static int
37903d9b1a2aSHans Rosenfeld nvme_ioctl_format(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
37913d9b1a2aSHans Rosenfeld     cred_t *cred_p)
37923d9b1a2aSHans Rosenfeld {
37933d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(mode));
37943d9b1a2aSHans Rosenfeld 	nvme_format_nvm_t frmt = { 0 };
37953d9b1a2aSHans Rosenfeld 	int c_nsid = nsid != 0 ? nsid - 1 : 0;
37963d9b1a2aSHans Rosenfeld 
37973d9b1a2aSHans Rosenfeld 	if ((mode & FWRITE) == 0 || secpolicy_sys_config(cred_p, B_FALSE) != 0)
37983d9b1a2aSHans Rosenfeld 		return (EPERM);
37993d9b1a2aSHans Rosenfeld 
38003d9b1a2aSHans Rosenfeld 	frmt.r = nioc->n_arg & 0xffffffff;
38013d9b1a2aSHans Rosenfeld 
38023d9b1a2aSHans Rosenfeld 	/*
38033d9b1a2aSHans Rosenfeld 	 * Check whether the FORMAT NVM command is supported.
38043d9b1a2aSHans Rosenfeld 	 */
38053d9b1a2aSHans Rosenfeld 	if (nvme->n_idctl->id_oacs.oa_format == 0)
38063d9b1a2aSHans Rosenfeld 		return (EINVAL);
38073d9b1a2aSHans Rosenfeld 
38083d9b1a2aSHans Rosenfeld 	/*
38093d9b1a2aSHans Rosenfeld 	 * Don't allow format or secure erase of individual namespace if that
38103d9b1a2aSHans Rosenfeld 	 * would cause a format or secure erase of all namespaces.
38113d9b1a2aSHans Rosenfeld 	 */
38123d9b1a2aSHans Rosenfeld 	if (nsid != 0 && nvme->n_idctl->id_fna.fn_format != 0)
38133d9b1a2aSHans Rosenfeld 		return (EINVAL);
38143d9b1a2aSHans Rosenfeld 
38153d9b1a2aSHans Rosenfeld 	if (nsid != 0 && frmt.b.fm_ses != NVME_FRMT_SES_NONE &&
38163d9b1a2aSHans Rosenfeld 	    nvme->n_idctl->id_fna.fn_sec_erase != 0)
38173d9b1a2aSHans Rosenfeld 		return (EINVAL);
38183d9b1a2aSHans Rosenfeld 
38193d9b1a2aSHans Rosenfeld 	/*
38203d9b1a2aSHans Rosenfeld 	 * Don't allow formatting with Protection Information.
38213d9b1a2aSHans Rosenfeld 	 */
38223d9b1a2aSHans Rosenfeld 	if (frmt.b.fm_pi != 0 || frmt.b.fm_pil != 0 || frmt.b.fm_ms != 0)
38233d9b1a2aSHans Rosenfeld 		return (EINVAL);
38243d9b1a2aSHans Rosenfeld 
38253d9b1a2aSHans Rosenfeld 	/*
38263d9b1a2aSHans Rosenfeld 	 * Don't allow formatting using an illegal LBA format, or any LBA format
38273d9b1a2aSHans Rosenfeld 	 * that uses metadata.
38283d9b1a2aSHans Rosenfeld 	 */
38293d9b1a2aSHans Rosenfeld 	if (frmt.b.fm_lbaf > nvme->n_ns[c_nsid].ns_idns->id_nlbaf ||
38303d9b1a2aSHans Rosenfeld 	    nvme->n_ns[c_nsid].ns_idns->id_lbaf[frmt.b.fm_lbaf].lbaf_ms != 0)
38313d9b1a2aSHans Rosenfeld 		return (EINVAL);
38323d9b1a2aSHans Rosenfeld 
38333d9b1a2aSHans Rosenfeld 	/*
38343d9b1a2aSHans Rosenfeld 	 * Don't allow formatting using an illegal Secure Erase setting.
38353d9b1a2aSHans Rosenfeld 	 */
38363d9b1a2aSHans Rosenfeld 	if (frmt.b.fm_ses > NVME_FRMT_MAX_SES ||
38373d9b1a2aSHans Rosenfeld 	    (frmt.b.fm_ses == NVME_FRMT_SES_CRYPTO &&
38383d9b1a2aSHans Rosenfeld 	    nvme->n_idctl->id_fna.fn_crypt_erase == 0))
38393d9b1a2aSHans Rosenfeld 		return (EINVAL);
38403d9b1a2aSHans Rosenfeld 
38413d9b1a2aSHans Rosenfeld 	if (nsid == 0)
38423d9b1a2aSHans Rosenfeld 		nsid = (uint32_t)-1;
38433d9b1a2aSHans Rosenfeld 
3844*bc586359SRobert Mustacchi 	return (nvme_format_nvm(nvme, B_TRUE, nsid, frmt.b.fm_lbaf, B_FALSE, 0,
3845*bc586359SRobert Mustacchi 	    B_FALSE, frmt.b.fm_ses));
38463d9b1a2aSHans Rosenfeld }
38473d9b1a2aSHans Rosenfeld 
38483d9b1a2aSHans Rosenfeld static int
38493d9b1a2aSHans Rosenfeld nvme_ioctl_detach(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
38503d9b1a2aSHans Rosenfeld     cred_t *cred_p)
38513d9b1a2aSHans Rosenfeld {
38523d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(nioc, mode));
38533d9b1a2aSHans Rosenfeld 	int rv = 0;
38543d9b1a2aSHans Rosenfeld 
38553d9b1a2aSHans Rosenfeld 	if ((mode & FWRITE) == 0 || secpolicy_sys_config(cred_p, B_FALSE) != 0)
38563d9b1a2aSHans Rosenfeld 		return (EPERM);
38573d9b1a2aSHans Rosenfeld 
38583d9b1a2aSHans Rosenfeld 	if (nsid == 0)
38593d9b1a2aSHans Rosenfeld 		return (EINVAL);
38603d9b1a2aSHans Rosenfeld 
38613d9b1a2aSHans Rosenfeld 	rv = bd_detach_handle(nvme->n_ns[nsid - 1].ns_bd_hdl);
38623d9b1a2aSHans Rosenfeld 	if (rv != DDI_SUCCESS)
38633d9b1a2aSHans Rosenfeld 		rv = EBUSY;
38643d9b1a2aSHans Rosenfeld 
38653d9b1a2aSHans Rosenfeld 	return (rv);
38663d9b1a2aSHans Rosenfeld }
38673d9b1a2aSHans Rosenfeld 
38683d9b1a2aSHans Rosenfeld static int
38693d9b1a2aSHans Rosenfeld nvme_ioctl_attach(nvme_t *nvme, int nsid, nvme_ioctl_t *nioc, int mode,
38703d9b1a2aSHans Rosenfeld     cred_t *cred_p)
38713d9b1a2aSHans Rosenfeld {
38723d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(nioc, mode));
38733d9b1a2aSHans Rosenfeld 	nvme_identify_nsid_t *idns;
38743d9b1a2aSHans Rosenfeld 	int rv = 0;
38753d9b1a2aSHans Rosenfeld 
38763d9b1a2aSHans Rosenfeld 	if ((mode & FWRITE) == 0 || secpolicy_sys_config(cred_p, B_FALSE) != 0)
38773d9b1a2aSHans Rosenfeld 		return (EPERM);
38783d9b1a2aSHans Rosenfeld 
38793d9b1a2aSHans Rosenfeld 	if (nsid == 0)
38803d9b1a2aSHans Rosenfeld 		return (EINVAL);
38813d9b1a2aSHans Rosenfeld 
38823d9b1a2aSHans Rosenfeld 	/*
38833d9b1a2aSHans Rosenfeld 	 * Identify namespace again, free old identify data.
38843d9b1a2aSHans Rosenfeld 	 */
38853d9b1a2aSHans Rosenfeld 	idns = nvme->n_ns[nsid - 1].ns_idns;
38863d9b1a2aSHans Rosenfeld 	if (nvme_init_ns(nvme, nsid) != DDI_SUCCESS)
38873d9b1a2aSHans Rosenfeld 		return (EIO);
38883d9b1a2aSHans Rosenfeld 
38893d9b1a2aSHans Rosenfeld 	kmem_free(idns, sizeof (nvme_identify_nsid_t));
38903d9b1a2aSHans Rosenfeld 
38913d9b1a2aSHans Rosenfeld 	rv = bd_attach_handle(nvme->n_dip, nvme->n_ns[nsid - 1].ns_bd_hdl);
38923d9b1a2aSHans Rosenfeld 	if (rv != DDI_SUCCESS)
38933d9b1a2aSHans Rosenfeld 		rv = EBUSY;
38943d9b1a2aSHans Rosenfeld 
38953d9b1a2aSHans Rosenfeld 	return (rv);
38963d9b1a2aSHans Rosenfeld }
38973d9b1a2aSHans Rosenfeld 
38983d9b1a2aSHans Rosenfeld static int
38993d9b1a2aSHans Rosenfeld nvme_ioctl(dev_t dev, int cmd, intptr_t arg, int mode, cred_t *cred_p,
39003d9b1a2aSHans Rosenfeld     int *rval_p)
39013d9b1a2aSHans Rosenfeld {
39023d9b1a2aSHans Rosenfeld #ifndef __lock_lint
39033d9b1a2aSHans Rosenfeld 	_NOTE(ARGUNUSED(rval_p));
39043d9b1a2aSHans Rosenfeld #endif
39053d9b1a2aSHans Rosenfeld 	minor_t minor = getminor(dev);
39063d9b1a2aSHans Rosenfeld 	nvme_t *nvme = ddi_get_soft_state(nvme_state, NVME_MINOR_INST(minor));
39073d9b1a2aSHans Rosenfeld 	int nsid = NVME_MINOR_NSID(minor);
39083d9b1a2aSHans Rosenfeld 	int rv = 0;
39093d9b1a2aSHans Rosenfeld 	nvme_ioctl_t nioc;
39103d9b1a2aSHans Rosenfeld 
39113d9b1a2aSHans Rosenfeld 	int (*nvme_ioctl[])(nvme_t *, int, nvme_ioctl_t *, int, cred_t *) = {
39123d9b1a2aSHans Rosenfeld 		NULL,
39133d9b1a2aSHans Rosenfeld 		nvme_ioctl_identify,
39143d9b1a2aSHans Rosenfeld 		nvme_ioctl_identify,
39153d9b1a2aSHans Rosenfeld 		nvme_ioctl_capabilities,
39163d9b1a2aSHans Rosenfeld 		nvme_ioctl_get_logpage,
39173d9b1a2aSHans Rosenfeld 		nvme_ioctl_get_features,
39183d9b1a2aSHans Rosenfeld 		nvme_ioctl_intr_cnt,
39193d9b1a2aSHans Rosenfeld 		nvme_ioctl_version,
39203d9b1a2aSHans Rosenfeld 		nvme_ioctl_format,
39213d9b1a2aSHans Rosenfeld 		nvme_ioctl_detach,
39223d9b1a2aSHans Rosenfeld 		nvme_ioctl_attach
39233d9b1a2aSHans Rosenfeld 	};
39243d9b1a2aSHans Rosenfeld 
39253d9b1a2aSHans Rosenfeld 	if (nvme == NULL)
39263d9b1a2aSHans Rosenfeld 		return (ENXIO);
39273d9b1a2aSHans Rosenfeld 
39283d9b1a2aSHans Rosenfeld 	if (nsid > nvme->n_namespace_count)
39293d9b1a2aSHans Rosenfeld 		return (ENXIO);
39303d9b1a2aSHans Rosenfeld 
39313d9b1a2aSHans Rosenfeld 	if (IS_DEVCTL(cmd))
39323d9b1a2aSHans Rosenfeld 		return (ndi_devctl_ioctl(nvme->n_dip, cmd, arg, mode, 0));
39333d9b1a2aSHans Rosenfeld 
39343d9b1a2aSHans Rosenfeld #ifdef _MULTI_DATAMODEL
39353d9b1a2aSHans Rosenfeld 	switch (ddi_model_convert_from(mode & FMODELS)) {
39363d9b1a2aSHans Rosenfeld 	case DDI_MODEL_ILP32: {
39373d9b1a2aSHans Rosenfeld 		nvme_ioctl32_t nioc32;
39383d9b1a2aSHans Rosenfeld 		if (ddi_copyin((void*)arg, &nioc32, sizeof (nvme_ioctl32_t),
39393d9b1a2aSHans Rosenfeld 		    mode) != 0)
39403d9b1a2aSHans Rosenfeld 			return (EFAULT);
39413d9b1a2aSHans Rosenfeld 		nioc.n_len = nioc32.n_len;
39423d9b1a2aSHans Rosenfeld 		nioc.n_buf = nioc32.n_buf;
39433d9b1a2aSHans Rosenfeld 		nioc.n_arg = nioc32.n_arg;
39443d9b1a2aSHans Rosenfeld 		break;
39453d9b1a2aSHans Rosenfeld 	}
39463d9b1a2aSHans Rosenfeld 	case DDI_MODEL_NONE:
39473d9b1a2aSHans Rosenfeld #endif
39483d9b1a2aSHans Rosenfeld 		if (ddi_copyin((void*)arg, &nioc, sizeof (nvme_ioctl_t), mode)
39493d9b1a2aSHans Rosenfeld 		    != 0)
39503d9b1a2aSHans Rosenfeld 			return (EFAULT);
39513d9b1a2aSHans Rosenfeld #ifdef _MULTI_DATAMODEL
39523d9b1a2aSHans Rosenfeld 		break;
39533d9b1a2aSHans Rosenfeld 	}
39543d9b1a2aSHans Rosenfeld #endif
39553d9b1a2aSHans Rosenfeld 
3956e984c70bSHans Rosenfeld 	if (nvme->n_dead && cmd != NVME_IOC_DETACH)
3957e984c70bSHans Rosenfeld 		return (EIO);
3958e984c70bSHans Rosenfeld 
3959e984c70bSHans Rosenfeld 
39603d9b1a2aSHans Rosenfeld 	if (cmd == NVME_IOC_IDENTIFY_CTRL) {
39613d9b1a2aSHans Rosenfeld 		/*
39623d9b1a2aSHans Rosenfeld 		 * This makes NVME_IOC_IDENTIFY_CTRL work the same on devctl and
39633d9b1a2aSHans Rosenfeld 		 * attachment point nodes.
39643d9b1a2aSHans Rosenfeld 		 */
39653d9b1a2aSHans Rosenfeld 		nsid = 0;
39663d9b1a2aSHans Rosenfeld 	} else if (cmd == NVME_IOC_IDENTIFY_NSID && nsid == 0) {
39673d9b1a2aSHans Rosenfeld 		/*
39683d9b1a2aSHans Rosenfeld 		 * This makes NVME_IOC_IDENTIFY_NSID work on a devctl node, it
39693d9b1a2aSHans Rosenfeld 		 * will always return identify data for namespace 1.
39703d9b1a2aSHans Rosenfeld 		 */
39713d9b1a2aSHans Rosenfeld 		nsid = 1;
39723d9b1a2aSHans Rosenfeld 	}
39733d9b1a2aSHans Rosenfeld 
39743d9b1a2aSHans Rosenfeld 	if (IS_NVME_IOC(cmd) && nvme_ioctl[NVME_IOC_CMD(cmd)] != NULL)
39753d9b1a2aSHans Rosenfeld 		rv = nvme_ioctl[NVME_IOC_CMD(cmd)](nvme, nsid, &nioc, mode,
39763d9b1a2aSHans Rosenfeld 		    cred_p);
39773d9b1a2aSHans Rosenfeld 	else
39783d9b1a2aSHans Rosenfeld 		rv = EINVAL;
39793d9b1a2aSHans Rosenfeld 
39803d9b1a2aSHans Rosenfeld #ifdef _MULTI_DATAMODEL
39813d9b1a2aSHans Rosenfeld 	switch (ddi_model_convert_from(mode & FMODELS)) {
39823d9b1a2aSHans Rosenfeld 	case DDI_MODEL_ILP32: {
39833d9b1a2aSHans Rosenfeld 		nvme_ioctl32_t nioc32;
39843d9b1a2aSHans Rosenfeld 
39853d9b1a2aSHans Rosenfeld 		nioc32.n_len = (size32_t)nioc.n_len;
39863d9b1a2aSHans Rosenfeld 		nioc32.n_buf = (uintptr32_t)nioc.n_buf;
39873d9b1a2aSHans Rosenfeld 		nioc32.n_arg = nioc.n_arg;
39883d9b1a2aSHans Rosenfeld 
39893d9b1a2aSHans Rosenfeld 		if (ddi_copyout(&nioc32, (void *)arg, sizeof (nvme_ioctl32_t),
39903d9b1a2aSHans Rosenfeld 		    mode) != 0)
39913d9b1a2aSHans Rosenfeld 			return (EFAULT);
39923d9b1a2aSHans Rosenfeld 		break;
39933d9b1a2aSHans Rosenfeld 	}
39943d9b1a2aSHans Rosenfeld 	case DDI_MODEL_NONE:
39953d9b1a2aSHans Rosenfeld #endif
39963d9b1a2aSHans Rosenfeld 		if (ddi_copyout(&nioc, (void *)arg, sizeof (nvme_ioctl_t), mode)
39973d9b1a2aSHans Rosenfeld 		    != 0)
39983d9b1a2aSHans Rosenfeld 			return (EFAULT);
39993d9b1a2aSHans Rosenfeld #ifdef _MULTI_DATAMODEL
40003d9b1a2aSHans Rosenfeld 		break;
40013d9b1a2aSHans Rosenfeld 	}
40023d9b1a2aSHans Rosenfeld #endif
40033d9b1a2aSHans Rosenfeld 
40043d9b1a2aSHans Rosenfeld 	return (rv);
40053d9b1a2aSHans Rosenfeld }
4006