1bb0ec6b3SJim Harris /*- 2e9efbc13SJim Harris * Copyright (C) 2012-2013 Intel Corporation 3bb0ec6b3SJim Harris * All rights reserved. 4bb0ec6b3SJim Harris * 5bb0ec6b3SJim Harris * Redistribution and use in source and binary forms, with or without 6bb0ec6b3SJim Harris * modification, are permitted provided that the following conditions 7bb0ec6b3SJim Harris * are met: 8bb0ec6b3SJim Harris * 1. Redistributions of source code must retain the above copyright 9bb0ec6b3SJim Harris * notice, this list of conditions and the following disclaimer. 10bb0ec6b3SJim Harris * 2. Redistributions in binary form must reproduce the above copyright 11bb0ec6b3SJim Harris * notice, this list of conditions and the following disclaimer in the 12bb0ec6b3SJim Harris * documentation and/or other materials provided with the distribution. 13bb0ec6b3SJim Harris * 14bb0ec6b3SJim Harris * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 15bb0ec6b3SJim Harris * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 16bb0ec6b3SJim Harris * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 17bb0ec6b3SJim Harris * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 18bb0ec6b3SJim Harris * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 19bb0ec6b3SJim Harris * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 20bb0ec6b3SJim Harris * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 21bb0ec6b3SJim Harris * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 22bb0ec6b3SJim Harris * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 23bb0ec6b3SJim Harris * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 24bb0ec6b3SJim Harris * SUCH DAMAGE. 25bb0ec6b3SJim Harris */ 26bb0ec6b3SJim Harris 27bb0ec6b3SJim Harris #include <sys/cdefs.h> 28bb0ec6b3SJim Harris __FBSDID("$FreeBSD$"); 29bb0ec6b3SJim Harris 30bb0ec6b3SJim Harris #include <sys/param.h> 31bb0ec6b3SJim Harris #include <sys/bio.h> 32bb0ec6b3SJim Harris #include <sys/kernel.h> 33bb0ec6b3SJim Harris #include <sys/malloc.h> 34bb0ec6b3SJim Harris #include <sys/module.h> 35bb0ec6b3SJim Harris #include <sys/systm.h> 36bb0ec6b3SJim Harris #include <sys/taskqueue.h> 37bb0ec6b3SJim Harris 38bb0ec6b3SJim Harris #include <geom/geom.h> 39bb0ec6b3SJim Harris #include <geom/geom_disk.h> 40bb0ec6b3SJim Harris 41bb0ec6b3SJim Harris #include <dev/nvme/nvme.h> 42bb0ec6b3SJim Harris 4338441bd9SJim Harris #define NVD_STR "nvd" 4438441bd9SJim Harris 45bb0ec6b3SJim Harris struct nvd_disk; 46bb0ec6b3SJim Harris 47bb0ec6b3SJim Harris static disk_ioctl_t nvd_ioctl; 48bb0ec6b3SJim Harris static disk_strategy_t nvd_strategy; 49bb0ec6b3SJim Harris 50ec84ecbbSJim Harris static void *nvd_new_disk(struct nvme_namespace *ns, void *ctrlr); 51bb0ec6b3SJim Harris static void destroy_geom_disk(struct nvd_disk *ndisk); 52bb0ec6b3SJim Harris 53ec84ecbbSJim Harris static void *nvd_new_controller(struct nvme_controller *ctrlr); 54232e2edbSJim Harris static void nvd_controller_fail(void *ctrlr); 55ec84ecbbSJim Harris 56bb0ec6b3SJim Harris static int nvd_load(void); 57bb0ec6b3SJim Harris static void nvd_unload(void); 58bb0ec6b3SJim Harris 59bb0ec6b3SJim Harris MALLOC_DEFINE(M_NVD, "nvd", "nvd(4) allocations"); 60bb0ec6b3SJim Harris 61bb0ec6b3SJim Harris struct nvme_consumer *consumer_handle; 62bb0ec6b3SJim Harris 63bb0ec6b3SJim Harris struct nvd_disk { 64bb0ec6b3SJim Harris 65bb0ec6b3SJim Harris struct bio_queue_head bioq; 66bb0ec6b3SJim Harris struct task bioqtask; 67bb0ec6b3SJim Harris struct mtx bioqlock; 68bb0ec6b3SJim Harris 69bb0ec6b3SJim Harris struct disk *disk; 70bb0ec6b3SJim Harris struct taskqueue *tq; 71bb0ec6b3SJim Harris struct nvme_namespace *ns; 72bb0ec6b3SJim Harris 73bb0ec6b3SJim Harris uint32_t cur_depth; 74bb0ec6b3SJim Harris 75ec84ecbbSJim Harris TAILQ_ENTRY(nvd_disk) global_tailq; 76ec84ecbbSJim Harris TAILQ_ENTRY(nvd_disk) ctrlr_tailq; 77bb0ec6b3SJim Harris }; 78bb0ec6b3SJim Harris 79ec84ecbbSJim Harris struct nvd_controller { 80ec84ecbbSJim Harris 81ec84ecbbSJim Harris TAILQ_ENTRY(nvd_controller) tailq; 82ec84ecbbSJim Harris TAILQ_HEAD(, nvd_disk) disk_head; 83ec84ecbbSJim Harris }; 84ec84ecbbSJim Harris 85ec84ecbbSJim Harris static TAILQ_HEAD(, nvd_controller) ctrlr_head; 86ec84ecbbSJim Harris static TAILQ_HEAD(disk_list, nvd_disk) disk_head; 87bb0ec6b3SJim Harris 88bb0ec6b3SJim Harris static int nvd_modevent(module_t mod, int type, void *arg) 89bb0ec6b3SJim Harris { 90bb0ec6b3SJim Harris int error = 0; 91bb0ec6b3SJim Harris 92bb0ec6b3SJim Harris switch (type) { 93bb0ec6b3SJim Harris case MOD_LOAD: 94bb0ec6b3SJim Harris error = nvd_load(); 95bb0ec6b3SJim Harris break; 96bb0ec6b3SJim Harris case MOD_UNLOAD: 97bb0ec6b3SJim Harris nvd_unload(); 98bb0ec6b3SJim Harris break; 99bb0ec6b3SJim Harris default: 100bb0ec6b3SJim Harris break; 101bb0ec6b3SJim Harris } 102bb0ec6b3SJim Harris 103bb0ec6b3SJim Harris return (error); 104bb0ec6b3SJim Harris } 105bb0ec6b3SJim Harris 106bb0ec6b3SJim Harris moduledata_t nvd_mod = { 10738441bd9SJim Harris NVD_STR, 108bb0ec6b3SJim Harris (modeventhand_t)nvd_modevent, 1099823d527SKevin Lo 0 110bb0ec6b3SJim Harris }; 111bb0ec6b3SJim Harris 112bb0ec6b3SJim Harris DECLARE_MODULE(nvd, nvd_mod, SI_SUB_DRIVERS, SI_ORDER_ANY); 113bb0ec6b3SJim Harris MODULE_VERSION(nvd, 1); 114bb0ec6b3SJim Harris MODULE_DEPEND(nvd, nvme, 1, 1, 1); 115bb0ec6b3SJim Harris 116bb0ec6b3SJim Harris static int 117bb0ec6b3SJim Harris nvd_load() 118bb0ec6b3SJim Harris { 119bb0ec6b3SJim Harris 120ec84ecbbSJim Harris TAILQ_INIT(&ctrlr_head); 121ec84ecbbSJim Harris TAILQ_INIT(&disk_head); 122ec84ecbbSJim Harris 123ec84ecbbSJim Harris consumer_handle = nvme_register_consumer(nvd_new_disk, 124232e2edbSJim Harris nvd_new_controller, NULL, nvd_controller_fail); 125bb0ec6b3SJim Harris 126bb0ec6b3SJim Harris return (consumer_handle != NULL ? 0 : -1); 127bb0ec6b3SJim Harris } 128bb0ec6b3SJim Harris 129bb0ec6b3SJim Harris static void 130bb0ec6b3SJim Harris nvd_unload() 131bb0ec6b3SJim Harris { 132ec84ecbbSJim Harris struct nvd_controller *ctrlr; 133ec84ecbbSJim Harris struct nvd_disk *disk; 134bb0ec6b3SJim Harris 135ec84ecbbSJim Harris while (!TAILQ_EMPTY(&ctrlr_head)) { 136ec84ecbbSJim Harris ctrlr = TAILQ_FIRST(&ctrlr_head); 137ec84ecbbSJim Harris TAILQ_REMOVE(&ctrlr_head, ctrlr, tailq); 138ec84ecbbSJim Harris free(ctrlr, M_NVD); 139ec84ecbbSJim Harris } 140ec84ecbbSJim Harris 141ec84ecbbSJim Harris while (!TAILQ_EMPTY(&disk_head)) { 142ec84ecbbSJim Harris disk = TAILQ_FIRST(&disk_head); 143ec84ecbbSJim Harris TAILQ_REMOVE(&disk_head, disk, global_tailq); 144ec84ecbbSJim Harris destroy_geom_disk(disk); 145ec84ecbbSJim Harris free(disk, M_NVD); 146bb0ec6b3SJim Harris } 147bb0ec6b3SJim Harris 148bb0ec6b3SJim Harris nvme_unregister_consumer(consumer_handle); 149bb0ec6b3SJim Harris } 150bb0ec6b3SJim Harris 151bb0ec6b3SJim Harris static void 152bb0ec6b3SJim Harris nvd_strategy(struct bio *bp) 153bb0ec6b3SJim Harris { 154bb0ec6b3SJim Harris struct nvd_disk *ndisk; 155bb0ec6b3SJim Harris 156bb0ec6b3SJim Harris ndisk = (struct nvd_disk *)bp->bio_disk->d_drv1; 157bb0ec6b3SJim Harris 158bb0ec6b3SJim Harris mtx_lock(&ndisk->bioqlock); 159bb0ec6b3SJim Harris bioq_insert_tail(&ndisk->bioq, bp); 160bb0ec6b3SJim Harris mtx_unlock(&ndisk->bioqlock); 161bb0ec6b3SJim Harris taskqueue_enqueue(ndisk->tq, &ndisk->bioqtask); 162bb0ec6b3SJim Harris } 163bb0ec6b3SJim Harris 164bb0ec6b3SJim Harris static int 165bb0ec6b3SJim Harris nvd_ioctl(struct disk *ndisk, u_long cmd, void *data, int fflag, 166bb0ec6b3SJim Harris struct thread *td) 167bb0ec6b3SJim Harris { 168bb0ec6b3SJim Harris int ret = 0; 169bb0ec6b3SJim Harris 170bb0ec6b3SJim Harris switch (cmd) { 171bb0ec6b3SJim Harris default: 172bb0ec6b3SJim Harris ret = EIO; 173bb0ec6b3SJim Harris } 174bb0ec6b3SJim Harris 175bb0ec6b3SJim Harris return (ret); 176bb0ec6b3SJim Harris } 177bb0ec6b3SJim Harris 178bb0ec6b3SJim Harris static void 179cf81529cSJim Harris nvd_done(void *arg, const struct nvme_completion *cpl) 180bb0ec6b3SJim Harris { 181bb0ec6b3SJim Harris struct bio *bp; 182bb0ec6b3SJim Harris struct nvd_disk *ndisk; 183bb0ec6b3SJim Harris 184bb0ec6b3SJim Harris bp = (struct bio *)arg; 185bb0ec6b3SJim Harris 186bb0ec6b3SJim Harris ndisk = bp->bio_disk->d_drv1; 187bb0ec6b3SJim Harris 1880f71ecf7SJim Harris atomic_add_int(&ndisk->cur_depth, -1); 189bb0ec6b3SJim Harris 190bb0ec6b3SJim Harris biodone(bp); 191bb0ec6b3SJim Harris } 192bb0ec6b3SJim Harris 193bb0ec6b3SJim Harris static void 194bb0ec6b3SJim Harris nvd_bioq_process(void *arg, int pending) 195bb0ec6b3SJim Harris { 196bb0ec6b3SJim Harris struct nvd_disk *ndisk = arg; 197bb0ec6b3SJim Harris struct bio *bp; 198bb0ec6b3SJim Harris int err; 199bb0ec6b3SJim Harris 200bb0ec6b3SJim Harris for (;;) { 201bb0ec6b3SJim Harris mtx_lock(&ndisk->bioqlock); 202bb0ec6b3SJim Harris bp = bioq_takefirst(&ndisk->bioq); 203bb0ec6b3SJim Harris mtx_unlock(&ndisk->bioqlock); 204bb0ec6b3SJim Harris if (bp == NULL) 205bb0ec6b3SJim Harris break; 206bb0ec6b3SJim Harris 207bb0ec6b3SJim Harris #ifdef BIO_ORDERED 208bb0ec6b3SJim Harris /* 209bb0ec6b3SJim Harris * BIO_ORDERED flag dictates that all outstanding bios 210bb0ec6b3SJim Harris * must be completed before processing the bio with 211bb0ec6b3SJim Harris * BIO_ORDERED flag set. 212bb0ec6b3SJim Harris */ 213bb0ec6b3SJim Harris if (bp->bio_flags & BIO_ORDERED) { 214bb0ec6b3SJim Harris while (ndisk->cur_depth > 0) { 215bb0ec6b3SJim Harris pause("nvd flush", 1); 216bb0ec6b3SJim Harris } 217bb0ec6b3SJim Harris } 218bb0ec6b3SJim Harris #endif 219bb0ec6b3SJim Harris 220bb0ec6b3SJim Harris bp->bio_driver1 = NULL; 2210f71ecf7SJim Harris atomic_add_int(&ndisk->cur_depth, 1); 222bb0ec6b3SJim Harris 223bb0ec6b3SJim Harris err = nvme_ns_bio_process(ndisk->ns, bp, nvd_done); 224bb0ec6b3SJim Harris 225bb0ec6b3SJim Harris if (err) { 2260f71ecf7SJim Harris atomic_add_int(&ndisk->cur_depth, -1); 2279eb93f29SJim Harris bp->bio_error = err; 228bb0ec6b3SJim Harris bp->bio_flags |= BIO_ERROR; 229bb0ec6b3SJim Harris bp->bio_resid = bp->bio_bcount; 230bb0ec6b3SJim Harris biodone(bp); 231bb0ec6b3SJim Harris } 232bb0ec6b3SJim Harris 233bb0ec6b3SJim Harris #ifdef BIO_ORDERED 234bb0ec6b3SJim Harris /* 235bb0ec6b3SJim Harris * BIO_ORDERED flag dictates that the bio with BIO_ORDERED 236bb0ec6b3SJim Harris * flag set must be completed before proceeding with 237bb0ec6b3SJim Harris * additional bios. 238bb0ec6b3SJim Harris */ 239bb0ec6b3SJim Harris if (bp->bio_flags & BIO_ORDERED) { 240bb0ec6b3SJim Harris while (ndisk->cur_depth > 0) { 241bb0ec6b3SJim Harris pause("nvd flush", 1); 242bb0ec6b3SJim Harris } 243bb0ec6b3SJim Harris } 244bb0ec6b3SJim Harris #endif 245bb0ec6b3SJim Harris } 246bb0ec6b3SJim Harris } 247bb0ec6b3SJim Harris 248038a5ee4SJim Harris static void * 249ec84ecbbSJim Harris nvd_new_controller(struct nvme_controller *ctrlr) 250ec84ecbbSJim Harris { 251ec84ecbbSJim Harris struct nvd_controller *nvd_ctrlr; 252ec84ecbbSJim Harris 253ec84ecbbSJim Harris nvd_ctrlr = malloc(sizeof(struct nvd_controller), M_NVD, 254237d2019SJim Harris M_ZERO | M_WAITOK); 255ec84ecbbSJim Harris 256ec84ecbbSJim Harris TAILQ_INIT(&nvd_ctrlr->disk_head); 257ec84ecbbSJim Harris TAILQ_INSERT_TAIL(&ctrlr_head, nvd_ctrlr, tailq); 258ec84ecbbSJim Harris 259ec84ecbbSJim Harris return (nvd_ctrlr); 260ec84ecbbSJim Harris } 261ec84ecbbSJim Harris 262ec84ecbbSJim Harris static void * 263ec84ecbbSJim Harris nvd_new_disk(struct nvme_namespace *ns, void *ctrlr_arg) 264bb0ec6b3SJim Harris { 26538441bd9SJim Harris uint8_t descr[NVME_MODEL_NUMBER_LENGTH+1]; 266bb0ec6b3SJim Harris struct nvd_disk *ndisk; 267bb0ec6b3SJim Harris struct disk *disk; 268ec84ecbbSJim Harris struct nvd_controller *ctrlr = ctrlr_arg; 269bb0ec6b3SJim Harris 270237d2019SJim Harris ndisk = malloc(sizeof(struct nvd_disk), M_NVD, M_ZERO | M_WAITOK); 271bb0ec6b3SJim Harris 272bb0ec6b3SJim Harris disk = disk_alloc(); 273bb0ec6b3SJim Harris disk->d_strategy = nvd_strategy; 274bb0ec6b3SJim Harris disk->d_ioctl = nvd_ioctl; 27538441bd9SJim Harris disk->d_name = NVD_STR; 276bb0ec6b3SJim Harris disk->d_drv1 = ndisk; 277bb0ec6b3SJim Harris 278bb0ec6b3SJim Harris disk->d_maxsize = nvme_ns_get_max_io_xfer_size(ns); 279bb0ec6b3SJim Harris disk->d_sectorsize = nvme_ns_get_sector_size(ns); 280bb0ec6b3SJim Harris disk->d_mediasize = (off_t)nvme_ns_get_size(ns); 281*70fb74bdSJim Harris disk->d_delmaxsize = (off_t)nvme_ns_get_size(ns); 282bb0ec6b3SJim Harris 283ec84ecbbSJim Harris if (TAILQ_EMPTY(&disk_head)) 284bb0ec6b3SJim Harris disk->d_unit = 0; 285bb0ec6b3SJim Harris else 286ec84ecbbSJim Harris disk->d_unit = 287ec84ecbbSJim Harris TAILQ_LAST(&disk_head, disk_list)->disk->d_unit + 1; 288bb0ec6b3SJim Harris 289bb0ec6b3SJim Harris disk->d_flags = 0; 290bb0ec6b3SJim Harris 291bb0ec6b3SJim Harris if (nvme_ns_get_flags(ns) & NVME_NS_DEALLOCATE_SUPPORTED) 292bb0ec6b3SJim Harris disk->d_flags |= DISKFLAG_CANDELETE; 293bb0ec6b3SJim Harris 294bb0ec6b3SJim Harris if (nvme_ns_get_flags(ns) & NVME_NS_FLUSH_SUPPORTED) 295bb0ec6b3SJim Harris disk->d_flags |= DISKFLAG_CANFLUSHCACHE; 296bb0ec6b3SJim Harris 2975fdf9c3cSJim Harris /* ifdef used here to ease porting to stable branches at a later point. */ 2985fdf9c3cSJim Harris #ifdef DISKFLAG_UNMAPPED_BIO 2995fdf9c3cSJim Harris disk->d_flags |= DISKFLAG_UNMAPPED_BIO; 3005fdf9c3cSJim Harris #endif 3015fdf9c3cSJim Harris 302e8f25c62SJim Harris /* 303e8f25c62SJim Harris * d_ident and d_descr are both far bigger than the length of either 304e8f25c62SJim Harris * the serial or model number strings. 305e8f25c62SJim Harris */ 30638441bd9SJim Harris nvme_strvis(disk->d_ident, nvme_ns_get_serial_number(ns), 30738441bd9SJim Harris sizeof(disk->d_ident), NVME_SERIAL_NUMBER_LENGTH); 30838441bd9SJim Harris 30938441bd9SJim Harris nvme_strvis(descr, nvme_ns_get_model_number(ns), sizeof(descr), 31038441bd9SJim Harris NVME_MODEL_NUMBER_LENGTH); 311bb0ec6b3SJim Harris 312bb0ec6b3SJim Harris #if __FreeBSD_version >= 900034 31338441bd9SJim Harris strlcpy(disk->d_descr, descr, sizeof(descr)); 314bb0ec6b3SJim Harris #endif 315bb0ec6b3SJim Harris 316bb0ec6b3SJim Harris ndisk->ns = ns; 317bb0ec6b3SJim Harris ndisk->disk = disk; 318bb0ec6b3SJim Harris ndisk->cur_depth = 0; 319bb0ec6b3SJim Harris 320bb0ec6b3SJim Harris mtx_init(&ndisk->bioqlock, "NVD bioq lock", NULL, MTX_DEF); 321bb0ec6b3SJim Harris bioq_init(&ndisk->bioq); 322bb0ec6b3SJim Harris 323bb0ec6b3SJim Harris TASK_INIT(&ndisk->bioqtask, 0, nvd_bioq_process, ndisk); 324bb0ec6b3SJim Harris ndisk->tq = taskqueue_create("nvd_taskq", M_WAITOK, 325bb0ec6b3SJim Harris taskqueue_thread_enqueue, &ndisk->tq); 326bb0ec6b3SJim Harris taskqueue_start_threads(&ndisk->tq, 1, PI_DISK, "nvd taskq"); 327bb0ec6b3SJim Harris 328ec84ecbbSJim Harris TAILQ_INSERT_TAIL(&disk_head, ndisk, global_tailq); 329ec84ecbbSJim Harris TAILQ_INSERT_TAIL(&ctrlr->disk_head, ndisk, ctrlr_tailq); 330038a5ee4SJim Harris 331c3e9dd89SJim Harris disk_create(disk, DISK_VERSION); 332c3e9dd89SJim Harris 33338441bd9SJim Harris printf(NVD_STR"%u: <%s> NVMe namespace\n", disk->d_unit, descr); 33438441bd9SJim Harris printf(NVD_STR"%u: %juMB (%ju %u byte sectors)\n", disk->d_unit, 33538441bd9SJim Harris (uintmax_t)disk->d_mediasize / (1024*1024), 33638441bd9SJim Harris (uintmax_t)disk->d_mediasize / disk->d_sectorsize, 33738441bd9SJim Harris disk->d_sectorsize); 33838441bd9SJim Harris 339038a5ee4SJim Harris return (NULL); 340bb0ec6b3SJim Harris } 341bb0ec6b3SJim Harris 342bb0ec6b3SJim Harris static void 343bb0ec6b3SJim Harris destroy_geom_disk(struct nvd_disk *ndisk) 344bb0ec6b3SJim Harris { 345bb0ec6b3SJim Harris struct bio *bp; 34638441bd9SJim Harris struct disk *disk; 34738441bd9SJim Harris uint32_t unit; 34838441bd9SJim Harris int cnt = 0; 349bb0ec6b3SJim Harris 35038441bd9SJim Harris disk = ndisk->disk; 35138441bd9SJim Harris unit = disk->d_unit; 352bb0ec6b3SJim Harris taskqueue_free(ndisk->tq); 35338441bd9SJim Harris 354bb0ec6b3SJim Harris disk_destroy(ndisk->disk); 355bb0ec6b3SJim Harris 356bb0ec6b3SJim Harris mtx_lock(&ndisk->bioqlock); 357bb0ec6b3SJim Harris for (;;) { 358bb0ec6b3SJim Harris bp = bioq_takefirst(&ndisk->bioq); 359bb0ec6b3SJim Harris if (bp == NULL) 360bb0ec6b3SJim Harris break; 361bb0ec6b3SJim Harris bp->bio_error = EIO; 362bb0ec6b3SJim Harris bp->bio_flags |= BIO_ERROR; 363bb0ec6b3SJim Harris bp->bio_resid = bp->bio_bcount; 36438441bd9SJim Harris cnt++; 365bb0ec6b3SJim Harris biodone(bp); 366bb0ec6b3SJim Harris } 36738441bd9SJim Harris 36838441bd9SJim Harris printf(NVD_STR"%u: lost device - %d outstanding\n", unit, cnt); 36938441bd9SJim Harris printf(NVD_STR"%u: removing device entry\n", unit); 37038441bd9SJim Harris 371bb0ec6b3SJim Harris mtx_unlock(&ndisk->bioqlock); 372bb0ec6b3SJim Harris 373bb0ec6b3SJim Harris mtx_destroy(&ndisk->bioqlock); 374bb0ec6b3SJim Harris } 375232e2edbSJim Harris 376232e2edbSJim Harris static void 377232e2edbSJim Harris nvd_controller_fail(void *ctrlr_arg) 378232e2edbSJim Harris { 379232e2edbSJim Harris struct nvd_controller *ctrlr = ctrlr_arg; 380232e2edbSJim Harris struct nvd_disk *disk; 381232e2edbSJim Harris 382232e2edbSJim Harris while (!TAILQ_EMPTY(&ctrlr->disk_head)) { 383232e2edbSJim Harris disk = TAILQ_FIRST(&ctrlr->disk_head); 384232e2edbSJim Harris TAILQ_REMOVE(&disk_head, disk, global_tailq); 385232e2edbSJim Harris TAILQ_REMOVE(&ctrlr->disk_head, disk, ctrlr_tailq); 386232e2edbSJim Harris destroy_geom_disk(disk); 387232e2edbSJim Harris free(disk, M_NVD); 388232e2edbSJim Harris } 389232e2edbSJim Harris 390232e2edbSJim Harris TAILQ_REMOVE(&ctrlr_head, ctrlr, tailq); 391232e2edbSJim Harris free(ctrlr, M_NVD); 392232e2edbSJim Harris } 393232e2edbSJim Harris 394