xref: /spdk/module/bdev/nvme/bdev_nvme_rpc.c (revision 88e3ffd7b6c5ec1ea1a660354d25f02c766092e1)
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