1 /*- 2 * BSD LICENSE 3 * 4 * Copyright (c) Intel Corporation. All rights reserved. 5 * Copyright (c) 2019 Mellanox Technologies LTD. All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 11 * * Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * * Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in 15 * the documentation and/or other materials provided with the 16 * distribution. 17 * * Neither the name of Intel Corporation nor the names of its 18 * contributors may be used to endorse or promote products derived 19 * from this software without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 */ 33 34 #include "spdk/stdinc.h" 35 36 #include "bdev_nvme.h" 37 #include "common.h" 38 39 #include "spdk/config.h" 40 41 #include "spdk/string.h" 42 #include "spdk/rpc.h" 43 #include "spdk/util.h" 44 45 #include "spdk/log.h" 46 #include "spdk/bdev_module.h" 47 48 struct open_descriptors { 49 void *desc; 50 struct spdk_bdev *bdev; 51 TAILQ_ENTRY(open_descriptors) tqlst; 52 struct spdk_thread *thread; 53 }; 54 typedef TAILQ_HEAD(, open_descriptors) open_descriptors_t; 55 56 static int 57 rpc_decode_action_on_timeout(const struct spdk_json_val *val, void *out) 58 { 59 enum spdk_bdev_timeout_action *action = out; 60 61 if (spdk_json_strequal(val, "none") == true) { 62 *action = SPDK_BDEV_NVME_TIMEOUT_ACTION_NONE; 63 } else if (spdk_json_strequal(val, "abort") == true) { 64 *action = SPDK_BDEV_NVME_TIMEOUT_ACTION_ABORT; 65 } else if (spdk_json_strequal(val, "reset") == true) { 66 *action = SPDK_BDEV_NVME_TIMEOUT_ACTION_RESET; 67 } else { 68 SPDK_NOTICELOG("Invalid parameter value: action_on_timeout\n"); 69 return -EINVAL; 70 } 71 72 return 0; 73 } 74 75 static const struct spdk_json_object_decoder rpc_bdev_nvme_options_decoders[] = { 76 {"action_on_timeout", offsetof(struct spdk_bdev_nvme_opts, action_on_timeout), rpc_decode_action_on_timeout, true}, 77 {"timeout_us", offsetof(struct spdk_bdev_nvme_opts, timeout_us), spdk_json_decode_uint64, true}, 78 {"keep_alive_timeout_ms", offsetof(struct spdk_bdev_nvme_opts, keep_alive_timeout_ms), spdk_json_decode_uint32, true}, 79 {"retry_count", offsetof(struct spdk_bdev_nvme_opts, retry_count), spdk_json_decode_uint32, true}, 80 {"arbitration_burst", offsetof(struct spdk_bdev_nvme_opts, arbitration_burst), spdk_json_decode_uint32, true}, 81 {"low_priority_weight", offsetof(struct spdk_bdev_nvme_opts, low_priority_weight), spdk_json_decode_uint32, true}, 82 {"medium_priority_weight", offsetof(struct spdk_bdev_nvme_opts, medium_priority_weight), spdk_json_decode_uint32, true}, 83 {"high_priority_weight", offsetof(struct spdk_bdev_nvme_opts, high_priority_weight), spdk_json_decode_uint32, true}, 84 {"nvme_adminq_poll_period_us", offsetof(struct spdk_bdev_nvme_opts, nvme_adminq_poll_period_us), spdk_json_decode_uint64, true}, 85 {"nvme_ioq_poll_period_us", offsetof(struct spdk_bdev_nvme_opts, nvme_ioq_poll_period_us), spdk_json_decode_uint64, true}, 86 {"io_queue_requests", offsetof(struct spdk_bdev_nvme_opts, io_queue_requests), spdk_json_decode_uint32, true}, 87 {"delay_cmd_submit", offsetof(struct spdk_bdev_nvme_opts, delay_cmd_submit), spdk_json_decode_bool, true}, 88 }; 89 90 static void 91 rpc_bdev_nvme_set_options(struct spdk_jsonrpc_request *request, 92 const struct spdk_json_val *params) 93 { 94 struct spdk_bdev_nvme_opts opts; 95 int rc; 96 97 bdev_nvme_get_opts(&opts); 98 if (params && spdk_json_decode_object(params, rpc_bdev_nvme_options_decoders, 99 SPDK_COUNTOF(rpc_bdev_nvme_options_decoders), 100 &opts)) { 101 SPDK_ERRLOG("spdk_json_decode_object failed\n"); 102 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 103 "spdk_json_decode_object failed"); 104 return; 105 } 106 107 rc = bdev_nvme_set_opts(&opts); 108 if (rc) { 109 spdk_jsonrpc_send_error_response(request, rc, spdk_strerror(-rc)); 110 return; 111 } 112 113 spdk_jsonrpc_send_bool_response(request, true); 114 115 return; 116 } 117 SPDK_RPC_REGISTER("bdev_nvme_set_options", rpc_bdev_nvme_set_options, 118 SPDK_RPC_STARTUP | SPDK_RPC_RUNTIME) 119 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_set_options, set_bdev_nvme_options) 120 121 struct rpc_bdev_nvme_hotplug { 122 bool enabled; 123 uint64_t period_us; 124 }; 125 126 static const struct spdk_json_object_decoder rpc_bdev_nvme_hotplug_decoders[] = { 127 {"enable", offsetof(struct rpc_bdev_nvme_hotplug, enabled), spdk_json_decode_bool, false}, 128 {"period_us", offsetof(struct rpc_bdev_nvme_hotplug, period_us), spdk_json_decode_uint64, true}, 129 }; 130 131 static void 132 rpc_bdev_nvme_set_hotplug_done(void *ctx) 133 { 134 struct spdk_jsonrpc_request *request = ctx; 135 136 spdk_jsonrpc_send_bool_response(request, true); 137 } 138 139 static void 140 rpc_bdev_nvme_set_hotplug(struct spdk_jsonrpc_request *request, 141 const struct spdk_json_val *params) 142 { 143 struct rpc_bdev_nvme_hotplug req = {false, 0}; 144 int rc; 145 146 if (spdk_json_decode_object(params, rpc_bdev_nvme_hotplug_decoders, 147 SPDK_COUNTOF(rpc_bdev_nvme_hotplug_decoders), &req)) { 148 SPDK_ERRLOG("spdk_json_decode_object failed\n"); 149 rc = -EINVAL; 150 goto invalid; 151 } 152 153 rc = bdev_nvme_set_hotplug(req.enabled, req.period_us, rpc_bdev_nvme_set_hotplug_done, 154 request); 155 if (rc) { 156 goto invalid; 157 } 158 159 return; 160 invalid: 161 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INVALID_PARAMS, spdk_strerror(-rc)); 162 } 163 SPDK_RPC_REGISTER("bdev_nvme_set_hotplug", rpc_bdev_nvme_set_hotplug, SPDK_RPC_RUNTIME) 164 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_set_hotplug, set_bdev_nvme_hotplug) 165 166 struct rpc_bdev_nvme_attach_controller { 167 char *name; 168 char *trtype; 169 char *adrfam; 170 char *traddr; 171 char *trsvcid; 172 char *priority; 173 char *subnqn; 174 char *hostnqn; 175 char *hostaddr; 176 char *hostsvcid; 177 bool prchk_reftag; 178 bool prchk_guard; 179 }; 180 181 static void 182 free_rpc_bdev_nvme_attach_controller(struct rpc_bdev_nvme_attach_controller *req) 183 { 184 free(req->name); 185 free(req->trtype); 186 free(req->adrfam); 187 free(req->traddr); 188 free(req->trsvcid); 189 free(req->priority); 190 free(req->subnqn); 191 free(req->hostnqn); 192 free(req->hostaddr); 193 free(req->hostsvcid); 194 } 195 196 static const struct spdk_json_object_decoder rpc_bdev_nvme_attach_controller_decoders[] = { 197 {"name", offsetof(struct rpc_bdev_nvme_attach_controller, name), spdk_json_decode_string}, 198 {"trtype", offsetof(struct rpc_bdev_nvme_attach_controller, trtype), spdk_json_decode_string}, 199 {"traddr", offsetof(struct rpc_bdev_nvme_attach_controller, traddr), spdk_json_decode_string}, 200 201 {"adrfam", offsetof(struct rpc_bdev_nvme_attach_controller, adrfam), spdk_json_decode_string, true}, 202 {"trsvcid", offsetof(struct rpc_bdev_nvme_attach_controller, trsvcid), spdk_json_decode_string, true}, 203 {"priority", offsetof(struct rpc_bdev_nvme_attach_controller, priority), spdk_json_decode_string, true}, 204 {"subnqn", offsetof(struct rpc_bdev_nvme_attach_controller, subnqn), spdk_json_decode_string, true}, 205 {"hostnqn", offsetof(struct rpc_bdev_nvme_attach_controller, hostnqn), spdk_json_decode_string, true}, 206 {"hostaddr", offsetof(struct rpc_bdev_nvme_attach_controller, hostaddr), spdk_json_decode_string, true}, 207 {"hostsvcid", offsetof(struct rpc_bdev_nvme_attach_controller, hostsvcid), spdk_json_decode_string, true}, 208 209 {"prchk_reftag", offsetof(struct rpc_bdev_nvme_attach_controller, prchk_reftag), spdk_json_decode_bool, true}, 210 {"prchk_guard", offsetof(struct rpc_bdev_nvme_attach_controller, prchk_guard), spdk_json_decode_bool, true} 211 }; 212 213 #define NVME_MAX_BDEVS_PER_RPC 128 214 215 struct rpc_bdev_nvme_attach_controller_ctx { 216 struct rpc_bdev_nvme_attach_controller req; 217 uint32_t count; 218 const char *names[NVME_MAX_BDEVS_PER_RPC]; 219 struct spdk_jsonrpc_request *request; 220 }; 221 222 static void 223 rpc_bdev_nvme_attach_controller_done(void *cb_ctx, size_t bdev_count, int rc) 224 { 225 struct rpc_bdev_nvme_attach_controller_ctx *ctx = cb_ctx; 226 struct spdk_jsonrpc_request *request = ctx->request; 227 struct spdk_json_write_ctx *w; 228 size_t i; 229 230 if (rc < 0) { 231 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INVALID_PARAMS, "Invalid parameters"); 232 goto exit; 233 } 234 235 w = spdk_jsonrpc_begin_result(request); 236 spdk_json_write_array_begin(w); 237 for (i = 0; i < bdev_count; i++) { 238 spdk_json_write_string(w, ctx->names[i]); 239 } 240 spdk_json_write_array_end(w); 241 spdk_jsonrpc_end_result(request, w); 242 243 exit: 244 free_rpc_bdev_nvme_attach_controller(&ctx->req); 245 free(ctx); 246 } 247 248 static void 249 rpc_bdev_nvme_attach_controller(struct spdk_jsonrpc_request *request, 250 const struct spdk_json_val *params) 251 { 252 struct rpc_bdev_nvme_attach_controller_ctx *ctx; 253 struct spdk_nvme_transport_id trid = {}; 254 struct spdk_nvme_host_id hostid = {}; 255 uint32_t prchk_flags = 0; 256 struct nvme_bdev_ctrlr *ctrlr = NULL; 257 size_t len, maxlen; 258 int rc; 259 260 ctx = calloc(1, sizeof(*ctx)); 261 if (!ctx) { 262 spdk_jsonrpc_send_error_response(request, -ENOMEM, spdk_strerror(ENOMEM)); 263 return; 264 } 265 266 if (spdk_json_decode_object(params, rpc_bdev_nvme_attach_controller_decoders, 267 SPDK_COUNTOF(rpc_bdev_nvme_attach_controller_decoders), 268 &ctx->req)) { 269 SPDK_ERRLOG("spdk_json_decode_object failed\n"); 270 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 271 "spdk_json_decode_object failed"); 272 goto cleanup; 273 } 274 275 /* Parse trstring */ 276 rc = spdk_nvme_transport_id_populate_trstring(&trid, ctx->req.trtype); 277 if (rc < 0) { 278 SPDK_ERRLOG("Failed to parse trtype: %s\n", ctx->req.trtype); 279 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "Failed to parse trtype: %s", 280 ctx->req.trtype); 281 goto cleanup; 282 } 283 284 /* Parse trtype */ 285 rc = spdk_nvme_transport_id_parse_trtype(&trid.trtype, ctx->req.trtype); 286 assert(rc == 0); 287 288 ctrlr = nvme_bdev_ctrlr_get_by_name(ctx->req.name); 289 290 /* Parse traddr */ 291 maxlen = sizeof(trid.traddr); 292 len = strnlen(ctx->req.traddr, maxlen); 293 if (len == maxlen) { 294 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "traddr too long: %s", 295 ctx->req.traddr); 296 goto cleanup; 297 } 298 memcpy(trid.traddr, ctx->req.traddr, len + 1); 299 300 /* Parse adrfam */ 301 if (ctx->req.adrfam) { 302 rc = spdk_nvme_transport_id_parse_adrfam(&trid.adrfam, ctx->req.adrfam); 303 if (rc < 0) { 304 SPDK_ERRLOG("Failed to parse adrfam: %s\n", ctx->req.adrfam); 305 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "Failed to parse adrfam: %s", 306 ctx->req.adrfam); 307 goto cleanup; 308 } 309 } 310 311 /* Parse trsvcid */ 312 if (ctx->req.trsvcid) { 313 maxlen = sizeof(trid.trsvcid); 314 len = strnlen(ctx->req.trsvcid, maxlen); 315 if (len == maxlen) { 316 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "trsvcid too long: %s", 317 ctx->req.trsvcid); 318 goto cleanup; 319 } 320 memcpy(trid.trsvcid, ctx->req.trsvcid, len + 1); 321 } 322 323 /* Parse priority for the NVMe-oF transport connection */ 324 if (ctx->req.priority) { 325 trid.priority = spdk_strtol(ctx->req.priority, 10); 326 } 327 328 /* Parse subnqn */ 329 if (ctx->req.subnqn) { 330 maxlen = sizeof(trid.subnqn); 331 len = strnlen(ctx->req.subnqn, maxlen); 332 if (len == maxlen) { 333 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "subnqn too long: %s", 334 ctx->req.subnqn); 335 goto cleanup; 336 } 337 memcpy(trid.subnqn, ctx->req.subnqn, len + 1); 338 } 339 340 if (ctrlr && (ctx->req.hostaddr || ctx->req.hostnqn || ctx->req.hostsvcid || ctx->req.prchk_guard || 341 ctx->req.prchk_reftag)) { 342 goto conflicting_arguments; 343 } 344 345 if (ctx->req.hostaddr) { 346 maxlen = sizeof(hostid.hostaddr); 347 len = strnlen(ctx->req.hostaddr, maxlen); 348 if (len == maxlen) { 349 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "hostaddr too long: %s", 350 ctx->req.hostaddr); 351 goto cleanup; 352 } 353 memcpy(hostid.hostaddr, ctx->req.hostaddr, len + 1); 354 } 355 356 if (ctx->req.hostsvcid) { 357 maxlen = sizeof(hostid.hostsvcid); 358 len = strnlen(ctx->req.hostsvcid, maxlen); 359 if (len == maxlen) { 360 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "hostsvcid too long: %s", 361 ctx->req.hostsvcid); 362 goto cleanup; 363 } 364 memcpy(hostid.hostsvcid, ctx->req.hostsvcid, len + 1); 365 } 366 367 if (ctx->req.prchk_reftag) { 368 prchk_flags |= SPDK_NVME_IO_FLAGS_PRCHK_REFTAG; 369 } 370 371 if (ctx->req.prchk_guard) { 372 prchk_flags |= SPDK_NVME_IO_FLAGS_PRCHK_GUARD; 373 } 374 375 ctx->request = request; 376 ctx->count = NVME_MAX_BDEVS_PER_RPC; 377 rc = bdev_nvme_create(&trid, &hostid, ctx->req.name, ctx->names, ctx->count, ctx->req.hostnqn, 378 prchk_flags, rpc_bdev_nvme_attach_controller_done, ctx); 379 if (rc) { 380 spdk_jsonrpc_send_error_response(request, rc, spdk_strerror(-rc)); 381 goto cleanup; 382 } 383 384 return; 385 386 conflicting_arguments: 387 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, 388 "Invalid agrgument list. Existing controller name cannot be combined with host information or PI options.\n"); 389 cleanup: 390 free_rpc_bdev_nvme_attach_controller(&ctx->req); 391 free(ctx); 392 } 393 SPDK_RPC_REGISTER("bdev_nvme_attach_controller", rpc_bdev_nvme_attach_controller, 394 SPDK_RPC_RUNTIME) 395 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_attach_controller, construct_nvme_bdev) 396 397 static void 398 rpc_dump_nvme_controller_info(struct spdk_json_write_ctx *w, 399 struct nvme_bdev_ctrlr *nvme_bdev_ctrlr) 400 { 401 struct spdk_nvme_transport_id *trid; 402 403 trid = nvme_bdev_ctrlr->connected_trid; 404 405 spdk_json_write_object_begin(w); 406 spdk_json_write_named_string(w, "name", nvme_bdev_ctrlr->name); 407 408 #ifdef SPDK_CONFIG_NVME_CUSE 409 size_t cuse_name_size = 128; 410 char cuse_name[cuse_name_size]; 411 412 int rc = spdk_nvme_cuse_get_ctrlr_name(nvme_bdev_ctrlr->ctrlr, cuse_name, &cuse_name_size); 413 if (rc == 0) { 414 spdk_json_write_named_string(w, "cuse_device", cuse_name); 415 } 416 #endif 417 418 spdk_json_write_named_object_begin(w, "trid"); 419 nvme_bdev_dump_trid_json(trid, w); 420 spdk_json_write_object_end(w); 421 422 spdk_json_write_object_end(w); 423 } 424 425 struct rpc_bdev_nvme_get_controllers { 426 char *name; 427 }; 428 429 static void 430 free_rpc_bdev_nvme_get_controllers(struct rpc_bdev_nvme_get_controllers *r) 431 { 432 free(r->name); 433 } 434 435 static const struct spdk_json_object_decoder rpc_bdev_nvme_get_controllers_decoders[] = { 436 {"name", offsetof(struct rpc_bdev_nvme_get_controllers, name), spdk_json_decode_string, true}, 437 }; 438 439 static void 440 rpc_bdev_nvme_get_controllers(struct spdk_jsonrpc_request *request, 441 const struct spdk_json_val *params) 442 { 443 struct rpc_bdev_nvme_get_controllers req = {}; 444 struct spdk_json_write_ctx *w; 445 struct nvme_bdev_ctrlr *ctrlr = NULL; 446 447 if (params && spdk_json_decode_object(params, rpc_bdev_nvme_get_controllers_decoders, 448 SPDK_COUNTOF(rpc_bdev_nvme_get_controllers_decoders), 449 &req)) { 450 SPDK_ERRLOG("spdk_json_decode_object failed\n"); 451 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 452 "spdk_json_decode_object failed"); 453 goto cleanup; 454 } 455 456 if (req.name) { 457 ctrlr = nvme_bdev_ctrlr_get_by_name(req.name); 458 if (ctrlr == NULL) { 459 SPDK_ERRLOG("ctrlr '%s' does not exist\n", req.name); 460 spdk_jsonrpc_send_error_response_fmt(request, EINVAL, "Controller %s does not exist", req.name); 461 goto cleanup; 462 } 463 } 464 465 w = spdk_jsonrpc_begin_result(request); 466 spdk_json_write_array_begin(w); 467 468 if (ctrlr != NULL) { 469 rpc_dump_nvme_controller_info(w, ctrlr); 470 } else { 471 for (ctrlr = nvme_bdev_first_ctrlr(); ctrlr; ctrlr = nvme_bdev_next_ctrlr(ctrlr)) { 472 rpc_dump_nvme_controller_info(w, ctrlr); 473 } 474 } 475 476 spdk_json_write_array_end(w); 477 478 spdk_jsonrpc_end_result(request, w); 479 480 cleanup: 481 free_rpc_bdev_nvme_get_controllers(&req); 482 } 483 SPDK_RPC_REGISTER("bdev_nvme_get_controllers", rpc_bdev_nvme_get_controllers, SPDK_RPC_RUNTIME) 484 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_get_controllers, get_nvme_controllers) 485 486 struct rpc_bdev_nvme_detach_controller { 487 char *name; 488 char *trtype; 489 char *adrfam; 490 char *traddr; 491 char *trsvcid; 492 char *subnqn; 493 }; 494 495 static void 496 free_rpc_bdev_nvme_detach_controller(struct rpc_bdev_nvme_detach_controller *req) 497 { 498 free(req->name); 499 free(req->trtype); 500 free(req->adrfam); 501 free(req->traddr); 502 free(req->trsvcid); 503 free(req->subnqn); 504 } 505 506 static const struct spdk_json_object_decoder rpc_bdev_nvme_detach_controller_decoders[] = { 507 {"name", offsetof(struct rpc_bdev_nvme_detach_controller, name), spdk_json_decode_string}, 508 {"trtype", offsetof(struct rpc_bdev_nvme_detach_controller, trtype), spdk_json_decode_string, true}, 509 {"traddr", offsetof(struct rpc_bdev_nvme_detach_controller, traddr), spdk_json_decode_string, true}, 510 {"adrfam", offsetof(struct rpc_bdev_nvme_detach_controller, adrfam), spdk_json_decode_string, true}, 511 {"trsvcid", offsetof(struct rpc_bdev_nvme_detach_controller, trsvcid), spdk_json_decode_string, true}, 512 {"subnqn", offsetof(struct rpc_bdev_nvme_detach_controller, subnqn), spdk_json_decode_string, true}, 513 }; 514 515 static void 516 rpc_bdev_nvme_detach_controller(struct spdk_jsonrpc_request *request, 517 const struct spdk_json_val *params) 518 { 519 struct rpc_bdev_nvme_detach_controller req = {NULL}; 520 struct spdk_nvme_transport_id trid = {}; 521 size_t len, maxlen; 522 int rc = 0; 523 bool all_trid_entries, one_trid_entry; 524 525 if (spdk_json_decode_object(params, rpc_bdev_nvme_detach_controller_decoders, 526 SPDK_COUNTOF(rpc_bdev_nvme_detach_controller_decoders), 527 &req)) { 528 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 529 "spdk_json_decode_object failed"); 530 goto cleanup; 531 } 532 533 all_trid_entries = req.trtype && req.traddr && req.adrfam && req.trsvcid && req.subnqn; 534 one_trid_entry = req.trtype || req.traddr || req.adrfam || req.trsvcid || req.subnqn; 535 536 if (all_trid_entries ^ one_trid_entry) { 537 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INVALID_PARAMS, 538 "trtype, traddr, adrfam, trsvcid, subnqn must all be provided together or not at all."); 539 goto cleanup; 540 } 541 542 if (all_trid_entries) { 543 /* Parse trtype */ 544 rc = spdk_nvme_transport_id_parse_trtype(&trid.trtype, req.trtype); 545 if (rc < 0) { 546 SPDK_ERRLOG("Failed to parse trtype: %s\n", req.trtype); 547 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "Failed to parse trtype: %s", 548 req.trtype); 549 goto cleanup; 550 } 551 552 /* Parse traddr */ 553 maxlen = sizeof(trid.traddr); 554 len = strnlen(req.traddr, maxlen); 555 if (len == maxlen) { 556 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "traddr too long: %s", 557 req.traddr); 558 goto cleanup; 559 } 560 memcpy(trid.traddr, req.traddr, len + 1); 561 562 rc = spdk_nvme_transport_id_parse_adrfam(&trid.adrfam, req.adrfam); 563 if (rc < 0) { 564 SPDK_ERRLOG("Failed to parse adrfam: %s\n", req.adrfam); 565 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "Failed to parse adrfam: %s", 566 req.adrfam); 567 goto cleanup; 568 } 569 570 maxlen = sizeof(trid.trsvcid); 571 len = strnlen(req.trsvcid, maxlen); 572 if (len == maxlen) { 573 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "trsvcid too long: %s", 574 req.trsvcid); 575 goto cleanup; 576 } 577 memcpy(trid.trsvcid, req.trsvcid, len + 1); 578 579 maxlen = sizeof(trid.subnqn); 580 len = strnlen(req.subnqn, maxlen); 581 if (len == maxlen) { 582 spdk_jsonrpc_send_error_response_fmt(request, -EINVAL, "subnqn too long: %s", 583 req.subnqn); 584 goto cleanup; 585 } 586 memcpy(trid.subnqn, req.subnqn, len + 1); 587 rc = bdev_nvme_remove_trid(req.name, &trid); 588 } else { 589 rc = bdev_nvme_delete(req.name); 590 } 591 592 if (rc != 0) { 593 spdk_jsonrpc_send_error_response(request, rc, spdk_strerror(-rc)); 594 goto cleanup; 595 } 596 597 spdk_jsonrpc_send_bool_response(request, true); 598 599 cleanup: 600 free_rpc_bdev_nvme_detach_controller(&req); 601 } 602 SPDK_RPC_REGISTER("bdev_nvme_detach_controller", rpc_bdev_nvme_detach_controller, 603 SPDK_RPC_RUNTIME) 604 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_detach_controller, delete_nvme_controller) 605 606 struct rpc_apply_firmware { 607 char *filename; 608 char *bdev_name; 609 }; 610 611 static void 612 free_rpc_apply_firmware(struct rpc_apply_firmware *req) 613 { 614 free(req->filename); 615 free(req->bdev_name); 616 } 617 618 static const struct spdk_json_object_decoder rpc_apply_firmware_decoders[] = { 619 {"filename", offsetof(struct rpc_apply_firmware, filename), spdk_json_decode_string}, 620 {"bdev_name", offsetof(struct rpc_apply_firmware, bdev_name), spdk_json_decode_string}, 621 }; 622 623 struct firmware_update_info { 624 void *fw_image; 625 void *p; 626 unsigned int size; 627 unsigned int size_remaining; 628 unsigned int offset; 629 unsigned int transfer; 630 631 void *desc; 632 struct spdk_io_channel *ch; 633 struct spdk_jsonrpc_request *request; 634 struct spdk_nvme_ctrlr *ctrlr; 635 open_descriptors_t desc_head; 636 struct rpc_apply_firmware *req; 637 }; 638 639 static void 640 _apply_firmware_cleanup(void *ctx) 641 { 642 struct spdk_bdev_desc *desc = ctx; 643 644 spdk_bdev_close(desc); 645 } 646 647 static void 648 apply_firmware_cleanup(void *cb_arg) 649 { 650 struct open_descriptors *opt, *tmp; 651 struct firmware_update_info *firm_ctx = cb_arg; 652 653 if (!firm_ctx) { 654 return; 655 } 656 657 if (firm_ctx->fw_image) { 658 spdk_free(firm_ctx->fw_image); 659 } 660 661 if (firm_ctx->req) { 662 free_rpc_apply_firmware(firm_ctx->req); 663 free(firm_ctx->req); 664 } 665 666 if (firm_ctx->ch) { 667 spdk_put_io_channel(firm_ctx->ch); 668 } 669 670 TAILQ_FOREACH_SAFE(opt, &firm_ctx->desc_head, tqlst, tmp) { 671 TAILQ_REMOVE(&firm_ctx->desc_head, opt, tqlst); 672 /* Close the underlying bdev on its same opened thread. */ 673 if (opt->thread && opt->thread != spdk_get_thread()) { 674 spdk_thread_send_msg(opt->thread, _apply_firmware_cleanup, opt->desc); 675 } else { 676 spdk_bdev_close(opt->desc); 677 } 678 free(opt); 679 } 680 free(firm_ctx); 681 } 682 683 static void 684 apply_firmware_complete_reset(struct spdk_bdev_io *bdev_io, bool success, void *cb_arg) 685 { 686 struct spdk_json_write_ctx *w; 687 struct firmware_update_info *firm_ctx = cb_arg; 688 689 spdk_bdev_free_io(bdev_io); 690 691 if (!success) { 692 spdk_jsonrpc_send_error_response(firm_ctx->request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 693 "firmware commit failed."); 694 apply_firmware_cleanup(firm_ctx); 695 return; 696 } 697 698 if (spdk_nvme_ctrlr_reset(firm_ctx->ctrlr) != 0) { 699 spdk_jsonrpc_send_error_response(firm_ctx->request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 700 "Controller reset failed."); 701 apply_firmware_cleanup(firm_ctx); 702 return; 703 } 704 705 w = spdk_jsonrpc_begin_result(firm_ctx->request); 706 spdk_json_write_string(w, "firmware commit succeeded. Controller reset in progress."); 707 spdk_jsonrpc_end_result(firm_ctx->request, w); 708 apply_firmware_cleanup(firm_ctx); 709 } 710 711 static void 712 apply_firmware_complete(struct spdk_bdev_io *bdev_io, bool success, void *cb_arg) 713 { 714 struct spdk_nvme_cmd cmd = {}; 715 struct spdk_nvme_fw_commit fw_commit; 716 int slot = 0; 717 int rc; 718 struct firmware_update_info *firm_ctx = cb_arg; 719 enum spdk_nvme_fw_commit_action commit_action = SPDK_NVME_FW_COMMIT_REPLACE_AND_ENABLE_IMG; 720 721 if (!success) { 722 spdk_jsonrpc_send_error_response(firm_ctx->request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 723 "firmware download failed ."); 724 spdk_bdev_free_io(bdev_io); 725 apply_firmware_cleanup(firm_ctx); 726 return; 727 } 728 729 firm_ctx->p += firm_ctx->transfer; 730 firm_ctx->offset += firm_ctx->transfer; 731 firm_ctx->size_remaining -= firm_ctx->transfer; 732 733 switch (firm_ctx->size_remaining) { 734 case 0: 735 /* firmware download completed. Commit firmware */ 736 memset(&fw_commit, 0, sizeof(struct spdk_nvme_fw_commit)); 737 fw_commit.fs = slot; 738 fw_commit.ca = commit_action; 739 740 cmd.opc = SPDK_NVME_OPC_FIRMWARE_COMMIT; 741 memcpy(&cmd.cdw10, &fw_commit, sizeof(uint32_t)); 742 rc = spdk_bdev_nvme_admin_passthru(firm_ctx->desc, firm_ctx->ch, &cmd, NULL, 0, 743 apply_firmware_complete_reset, firm_ctx); 744 if (rc) { 745 spdk_jsonrpc_send_error_response(firm_ctx->request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 746 "firmware commit failed."); 747 spdk_bdev_free_io(bdev_io); 748 apply_firmware_cleanup(firm_ctx); 749 return; 750 } 751 break; 752 default: 753 firm_ctx->transfer = spdk_min(firm_ctx->size_remaining, 4096); 754 cmd.opc = SPDK_NVME_OPC_FIRMWARE_IMAGE_DOWNLOAD; 755 756 cmd.cdw10 = spdk_nvme_bytes_to_numd(firm_ctx->transfer); 757 cmd.cdw11 = firm_ctx->offset >> 2; 758 rc = spdk_bdev_nvme_admin_passthru(firm_ctx->desc, firm_ctx->ch, &cmd, firm_ctx->p, 759 firm_ctx->transfer, apply_firmware_complete, firm_ctx); 760 if (rc) { 761 spdk_jsonrpc_send_error_response(firm_ctx->request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 762 "firmware download failed."); 763 spdk_bdev_free_io(bdev_io); 764 apply_firmware_cleanup(firm_ctx); 765 return; 766 } 767 break; 768 } 769 } 770 771 static void 772 rpc_bdev_nvme_apply_firmware(struct spdk_jsonrpc_request *request, 773 const struct spdk_json_val *params) 774 { 775 int rc; 776 int fd = -1; 777 struct stat fw_stat; 778 struct spdk_nvme_ctrlr *ctrlr; 779 char msg[1024]; 780 struct spdk_bdev *bdev; 781 struct spdk_bdev *bdev2; 782 struct open_descriptors *opt; 783 struct spdk_bdev_desc *desc; 784 struct spdk_nvme_cmd *cmd; 785 struct firmware_update_info *firm_ctx; 786 787 firm_ctx = calloc(1, sizeof(struct firmware_update_info)); 788 if (!firm_ctx) { 789 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, 790 "Memory allocation error."); 791 return; 792 } 793 firm_ctx->fw_image = NULL; 794 TAILQ_INIT(&firm_ctx->desc_head); 795 firm_ctx->request = request; 796 797 firm_ctx->req = calloc(1, sizeof(struct rpc_apply_firmware)); 798 if (!firm_ctx->req) { 799 snprintf(msg, sizeof(msg), "Memory allocation error."); 800 goto err; 801 } 802 803 if (spdk_json_decode_object(params, rpc_apply_firmware_decoders, 804 SPDK_COUNTOF(rpc_apply_firmware_decoders), firm_ctx->req)) { 805 snprintf(msg, sizeof(msg), "spdk_json_decode_object failed."); 806 goto err; 807 } 808 809 if ((bdev = spdk_bdev_get_by_name(firm_ctx->req->bdev_name)) == NULL) { 810 snprintf(msg, sizeof(msg), "bdev %s were not found", firm_ctx->req->bdev_name); 811 goto err; 812 } 813 814 if ((ctrlr = bdev_nvme_get_ctrlr(bdev)) == NULL) { 815 snprintf(msg, sizeof(msg), "Controller information for %s were not found.", 816 firm_ctx->req->bdev_name); 817 goto err; 818 } 819 firm_ctx->ctrlr = ctrlr; 820 821 for (bdev2 = spdk_bdev_first(); bdev2; bdev2 = spdk_bdev_next(bdev2)) { 822 823 if (bdev_nvme_get_ctrlr(bdev2) != ctrlr) { 824 continue; 825 } 826 827 if (!(opt = malloc(sizeof(struct open_descriptors)))) { 828 snprintf(msg, sizeof(msg), "Memory allocation error."); 829 goto err; 830 } 831 832 if (spdk_bdev_open(bdev2, true, NULL, NULL, &desc) != 0) { 833 snprintf(msg, sizeof(msg), "Device %s is in use.", firm_ctx->req->bdev_name); 834 free(opt); 835 goto err; 836 } 837 838 /* Save the thread where the base device is opened */ 839 opt->thread = spdk_get_thread(); 840 841 opt->desc = desc; 842 opt->bdev = bdev; 843 TAILQ_INSERT_TAIL(&firm_ctx->desc_head, opt, tqlst); 844 } 845 846 /* 847 * find a descriptor associated with our bdev 848 */ 849 firm_ctx->desc = NULL; 850 TAILQ_FOREACH(opt, &firm_ctx->desc_head, tqlst) { 851 if (opt->bdev == bdev) { 852 firm_ctx->desc = opt->desc; 853 break; 854 } 855 } 856 857 if (!firm_ctx->desc) { 858 snprintf(msg, sizeof(msg), "No descriptor were found."); 859 goto err; 860 } 861 862 firm_ctx->ch = spdk_bdev_get_io_channel(firm_ctx->desc); 863 if (!firm_ctx->ch) { 864 snprintf(msg, sizeof(msg), "No channels were found."); 865 goto err; 866 } 867 868 fd = open(firm_ctx->req->filename, O_RDONLY); 869 if (fd < 0) { 870 snprintf(msg, sizeof(msg), "open file failed."); 871 goto err; 872 } 873 874 rc = fstat(fd, &fw_stat); 875 if (rc < 0) { 876 close(fd); 877 snprintf(msg, sizeof(msg), "fstat failed."); 878 goto err; 879 } 880 881 firm_ctx->size = fw_stat.st_size; 882 if (fw_stat.st_size % 4) { 883 close(fd); 884 snprintf(msg, sizeof(msg), "Firmware image size is not multiple of 4."); 885 goto err; 886 } 887 888 firm_ctx->fw_image = spdk_zmalloc(firm_ctx->size, 4096, NULL, 889 SPDK_ENV_LCORE_ID_ANY, SPDK_MALLOC_DMA); 890 if (!firm_ctx->fw_image) { 891 close(fd); 892 snprintf(msg, sizeof(msg), "Memory allocation error."); 893 goto err; 894 } 895 firm_ctx->p = firm_ctx->fw_image; 896 897 if (read(fd, firm_ctx->p, firm_ctx->size) != ((ssize_t)(firm_ctx->size))) { 898 close(fd); 899 snprintf(msg, sizeof(msg), "Read firmware image failed!"); 900 goto err; 901 } 902 close(fd); 903 904 firm_ctx->offset = 0; 905 firm_ctx->size_remaining = firm_ctx->size; 906 firm_ctx->transfer = spdk_min(firm_ctx->size_remaining, 4096); 907 908 cmd = malloc(sizeof(struct spdk_nvme_cmd)); 909 if (!cmd) { 910 snprintf(msg, sizeof(msg), "Memory allocation error."); 911 goto err; 912 } 913 memset(cmd, 0, sizeof(struct spdk_nvme_cmd)); 914 cmd->opc = SPDK_NVME_OPC_FIRMWARE_IMAGE_DOWNLOAD; 915 916 cmd->cdw10 = spdk_nvme_bytes_to_numd(firm_ctx->transfer); 917 cmd->cdw11 = firm_ctx->offset >> 2; 918 919 rc = spdk_bdev_nvme_admin_passthru(firm_ctx->desc, firm_ctx->ch, cmd, firm_ctx->p, 920 firm_ctx->transfer, apply_firmware_complete, firm_ctx); 921 if (rc == 0) { 922 /* normal return here. */ 923 return; 924 } 925 926 free(cmd); 927 snprintf(msg, sizeof(msg), "Read firmware image failed!"); 928 err: 929 spdk_jsonrpc_send_error_response(request, SPDK_JSONRPC_ERROR_INTERNAL_ERROR, msg); 930 apply_firmware_cleanup(firm_ctx); 931 } 932 SPDK_RPC_REGISTER("bdev_nvme_apply_firmware", rpc_bdev_nvme_apply_firmware, SPDK_RPC_RUNTIME) 933 SPDK_RPC_REGISTER_ALIAS_DEPRECATED(bdev_nvme_apply_firmware, apply_nvme_firmware) 934