1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright(c) 2016 RehiveTech. All rights reserved. 3 */ 4 5 #include <string.h> 6 #include <inttypes.h> 7 #include <stdio.h> 8 #include <stdlib.h> 9 #include <stdint.h> 10 #include <stdbool.h> 11 #include <sys/queue.h> 12 13 #include <rte_eal.h> 14 #include <rte_dev.h> 15 #include <rte_bus.h> 16 #include <rte_common.h> 17 #include <rte_devargs.h> 18 #include <rte_memory.h> 19 #include <rte_tailq.h> 20 #include <rte_spinlock.h> 21 #include <rte_string_fns.h> 22 #include <rte_errno.h> 23 24 #include "rte_bus_vdev.h" 25 #include "vdev_logs.h" 26 #include "vdev_private.h" 27 28 #define VDEV_MP_KEY "bus_vdev_mp" 29 30 int vdev_logtype_bus; 31 32 /* Forward declare to access virtual bus name */ 33 static struct rte_bus rte_vdev_bus; 34 35 /** Double linked list of virtual device drivers. */ 36 TAILQ_HEAD(vdev_device_list, rte_vdev_device); 37 38 static struct vdev_device_list vdev_device_list = 39 TAILQ_HEAD_INITIALIZER(vdev_device_list); 40 /* The lock needs to be recursive because a vdev can manage another vdev. */ 41 static rte_spinlock_recursive_t vdev_device_list_lock = 42 RTE_SPINLOCK_RECURSIVE_INITIALIZER; 43 44 struct vdev_driver_list vdev_driver_list = 45 TAILQ_HEAD_INITIALIZER(vdev_driver_list); 46 47 struct vdev_custom_scan { 48 TAILQ_ENTRY(vdev_custom_scan) next; 49 rte_vdev_scan_callback callback; 50 void *user_arg; 51 }; 52 TAILQ_HEAD(vdev_custom_scans, vdev_custom_scan); 53 static struct vdev_custom_scans vdev_custom_scans = 54 TAILQ_HEAD_INITIALIZER(vdev_custom_scans); 55 static rte_spinlock_t vdev_custom_scan_lock = RTE_SPINLOCK_INITIALIZER; 56 57 /* register a driver */ 58 void 59 rte_vdev_register(struct rte_vdev_driver *driver) 60 { 61 TAILQ_INSERT_TAIL(&vdev_driver_list, driver, next); 62 } 63 64 /* unregister a driver */ 65 void 66 rte_vdev_unregister(struct rte_vdev_driver *driver) 67 { 68 TAILQ_REMOVE(&vdev_driver_list, driver, next); 69 } 70 71 int 72 rte_vdev_add_custom_scan(rte_vdev_scan_callback callback, void *user_arg) 73 { 74 struct vdev_custom_scan *custom_scan; 75 76 rte_spinlock_lock(&vdev_custom_scan_lock); 77 78 /* check if already registered */ 79 TAILQ_FOREACH(custom_scan, &vdev_custom_scans, next) { 80 if (custom_scan->callback == callback && 81 custom_scan->user_arg == user_arg) 82 break; 83 } 84 85 if (custom_scan == NULL) { 86 custom_scan = malloc(sizeof(struct vdev_custom_scan)); 87 if (custom_scan != NULL) { 88 custom_scan->callback = callback; 89 custom_scan->user_arg = user_arg; 90 TAILQ_INSERT_TAIL(&vdev_custom_scans, custom_scan, next); 91 } 92 } 93 94 rte_spinlock_unlock(&vdev_custom_scan_lock); 95 96 return (custom_scan == NULL) ? -1 : 0; 97 } 98 99 int 100 rte_vdev_remove_custom_scan(rte_vdev_scan_callback callback, void *user_arg) 101 { 102 struct vdev_custom_scan *custom_scan, *tmp_scan; 103 104 rte_spinlock_lock(&vdev_custom_scan_lock); 105 TAILQ_FOREACH_SAFE(custom_scan, &vdev_custom_scans, next, tmp_scan) { 106 if (custom_scan->callback != callback || 107 (custom_scan->user_arg != (void *)-1 && 108 custom_scan->user_arg != user_arg)) 109 continue; 110 TAILQ_REMOVE(&vdev_custom_scans, custom_scan, next); 111 free(custom_scan); 112 } 113 rte_spinlock_unlock(&vdev_custom_scan_lock); 114 115 return 0; 116 } 117 118 static int 119 vdev_parse(const char *name, void *addr) 120 { 121 struct rte_vdev_driver **out = addr; 122 struct rte_vdev_driver *driver = NULL; 123 124 TAILQ_FOREACH(driver, &vdev_driver_list, next) { 125 if (strncmp(driver->driver.name, name, 126 strlen(driver->driver.name)) == 0) 127 break; 128 if (driver->driver.alias && 129 strncmp(driver->driver.alias, name, 130 strlen(driver->driver.alias)) == 0) 131 break; 132 } 133 if (driver != NULL && 134 addr != NULL) 135 *out = driver; 136 return driver == NULL; 137 } 138 139 static int 140 vdev_probe_all_drivers(struct rte_vdev_device *dev) 141 { 142 const char *name; 143 struct rte_vdev_driver *driver; 144 int ret; 145 146 name = rte_vdev_device_name(dev); 147 148 VDEV_LOG(DEBUG, "Search driver %s to probe device %s", name, 149 rte_vdev_device_name(dev)); 150 151 if (vdev_parse(name, &driver)) 152 return -1; 153 dev->device.driver = &driver->driver; 154 ret = driver->probe(dev); 155 if (ret) 156 dev->device.driver = NULL; 157 return ret; 158 } 159 160 /* The caller shall be responsible for thread-safe */ 161 static struct rte_vdev_device * 162 find_vdev(const char *name) 163 { 164 struct rte_vdev_device *dev; 165 166 if (!name) 167 return NULL; 168 169 TAILQ_FOREACH(dev, &vdev_device_list, next) { 170 const char *devname = rte_vdev_device_name(dev); 171 172 if (!strcmp(devname, name)) 173 return dev; 174 } 175 176 return NULL; 177 } 178 179 static struct rte_devargs * 180 alloc_devargs(const char *name, const char *args) 181 { 182 struct rte_devargs *devargs; 183 int ret; 184 185 devargs = calloc(1, sizeof(*devargs)); 186 if (!devargs) 187 return NULL; 188 189 devargs->bus = &rte_vdev_bus; 190 if (args) 191 devargs->args = strdup(args); 192 else 193 devargs->args = strdup(""); 194 195 ret = snprintf(devargs->name, sizeof(devargs->name), "%s", name); 196 if (ret < 0 || ret >= (int)sizeof(devargs->name)) { 197 free(devargs->args); 198 free(devargs); 199 return NULL; 200 } 201 202 return devargs; 203 } 204 205 static int 206 insert_vdev(const char *name, const char *args, struct rte_vdev_device **p_dev) 207 { 208 struct rte_vdev_device *dev; 209 struct rte_devargs *devargs; 210 int ret; 211 212 if (name == NULL) 213 return -EINVAL; 214 215 devargs = alloc_devargs(name, args); 216 if (!devargs) 217 return -ENOMEM; 218 219 dev = calloc(1, sizeof(*dev)); 220 if (!dev) { 221 ret = -ENOMEM; 222 goto fail; 223 } 224 225 dev->device.devargs = devargs; 226 dev->device.numa_node = SOCKET_ID_ANY; 227 dev->device.name = devargs->name; 228 229 if (find_vdev(name)) { 230 ret = -EEXIST; 231 goto fail; 232 } 233 234 TAILQ_INSERT_TAIL(&vdev_device_list, dev, next); 235 rte_devargs_insert(devargs); 236 237 if (p_dev) 238 *p_dev = dev; 239 240 return 0; 241 fail: 242 free(devargs->args); 243 free(devargs); 244 free(dev); 245 return ret; 246 } 247 248 int 249 rte_vdev_init(const char *name, const char *args) 250 { 251 struct rte_vdev_device *dev; 252 struct rte_devargs *devargs; 253 int ret; 254 255 rte_spinlock_recursive_lock(&vdev_device_list_lock); 256 ret = insert_vdev(name, args, &dev); 257 if (ret == 0) { 258 ret = vdev_probe_all_drivers(dev); 259 if (ret) { 260 if (ret > 0) 261 VDEV_LOG(ERR, "no driver found for %s", name); 262 /* If fails, remove it from vdev list */ 263 devargs = dev->device.devargs; 264 TAILQ_REMOVE(&vdev_device_list, dev, next); 265 rte_devargs_remove(devargs->bus->name, devargs->name); 266 free(dev); 267 } 268 } 269 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 270 return ret; 271 } 272 273 static int 274 vdev_remove_driver(struct rte_vdev_device *dev) 275 { 276 const char *name = rte_vdev_device_name(dev); 277 const struct rte_vdev_driver *driver; 278 279 if (!dev->device.driver) { 280 VDEV_LOG(DEBUG, "no driver attach to device %s", name); 281 return 1; 282 } 283 284 driver = container_of(dev->device.driver, const struct rte_vdev_driver, 285 driver); 286 return driver->remove(dev); 287 } 288 289 int 290 rte_vdev_uninit(const char *name) 291 { 292 struct rte_vdev_device *dev; 293 struct rte_devargs *devargs; 294 int ret; 295 296 if (name == NULL) 297 return -EINVAL; 298 299 rte_spinlock_recursive_lock(&vdev_device_list_lock); 300 301 dev = find_vdev(name); 302 if (!dev) { 303 ret = -ENOENT; 304 goto unlock; 305 } 306 307 ret = vdev_remove_driver(dev); 308 if (ret) 309 goto unlock; 310 311 TAILQ_REMOVE(&vdev_device_list, dev, next); 312 devargs = dev->device.devargs; 313 rte_devargs_remove(devargs->bus->name, devargs->name); 314 free(dev); 315 316 unlock: 317 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 318 return ret; 319 } 320 321 struct vdev_param { 322 #define VDEV_SCAN_REQ 1 323 #define VDEV_SCAN_ONE 2 324 #define VDEV_SCAN_REP 3 325 int type; 326 int num; 327 char name[RTE_DEV_NAME_MAX_LEN]; 328 }; 329 330 static int vdev_plug(struct rte_device *dev); 331 332 /** 333 * This function works as the action for both primary and secondary process 334 * for static vdev discovery when a secondary process is booting. 335 * 336 * step 1, secondary process sends a sync request to ask for vdev in primary; 337 * step 2, primary process receives the request, and send vdevs one by one; 338 * step 3, primary process sends back reply, which indicates how many vdevs 339 * are sent. 340 */ 341 static int 342 vdev_action(const struct rte_mp_msg *mp_msg, const void *peer) 343 { 344 struct rte_vdev_device *dev; 345 struct rte_mp_msg mp_resp; 346 struct vdev_param *ou = (struct vdev_param *)&mp_resp.param; 347 const struct vdev_param *in = (const struct vdev_param *)mp_msg->param; 348 const char *devname; 349 int num; 350 int ret; 351 352 strlcpy(mp_resp.name, VDEV_MP_KEY, sizeof(mp_resp.name)); 353 mp_resp.len_param = sizeof(*ou); 354 mp_resp.num_fds = 0; 355 356 switch (in->type) { 357 case VDEV_SCAN_REQ: 358 ou->type = VDEV_SCAN_ONE; 359 ou->num = 1; 360 num = 0; 361 362 rte_spinlock_recursive_lock(&vdev_device_list_lock); 363 TAILQ_FOREACH(dev, &vdev_device_list, next) { 364 devname = rte_vdev_device_name(dev); 365 if (strlen(devname) == 0) { 366 VDEV_LOG(INFO, "vdev with no name is not sent"); 367 continue; 368 } 369 VDEV_LOG(INFO, "send vdev, %s", devname); 370 strlcpy(ou->name, devname, RTE_DEV_NAME_MAX_LEN); 371 if (rte_mp_sendmsg(&mp_resp) < 0) 372 VDEV_LOG(ERR, "send vdev, %s, failed, %s", 373 devname, strerror(rte_errno)); 374 num++; 375 } 376 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 377 378 ou->type = VDEV_SCAN_REP; 379 ou->num = num; 380 if (rte_mp_reply(&mp_resp, peer) < 0) 381 VDEV_LOG(ERR, "Failed to reply a scan request"); 382 break; 383 case VDEV_SCAN_ONE: 384 VDEV_LOG(INFO, "receive vdev, %s", in->name); 385 ret = insert_vdev(in->name, NULL, NULL); 386 if (ret == -EEXIST) 387 VDEV_LOG(DEBUG, "device already exist, %s", in->name); 388 else if (ret < 0) 389 VDEV_LOG(ERR, "failed to add vdev, %s", in->name); 390 break; 391 default: 392 VDEV_LOG(ERR, "vdev cannot recognize this message"); 393 } 394 395 return 0; 396 } 397 398 static int 399 vdev_scan(void) 400 { 401 struct rte_vdev_device *dev; 402 struct rte_devargs *devargs; 403 struct vdev_custom_scan *custom_scan; 404 405 if (rte_mp_action_register(VDEV_MP_KEY, vdev_action) < 0 && 406 rte_errno != EEXIST) { 407 VDEV_LOG(ERR, "Failed to add vdev mp action"); 408 return -1; 409 } 410 411 if (rte_eal_process_type() == RTE_PROC_SECONDARY) { 412 struct rte_mp_msg mp_req, *mp_rep; 413 struct rte_mp_reply mp_reply; 414 struct timespec ts = {.tv_sec = 5, .tv_nsec = 0}; 415 struct vdev_param *req = (struct vdev_param *)mp_req.param; 416 struct vdev_param *resp; 417 418 strlcpy(mp_req.name, VDEV_MP_KEY, sizeof(mp_req.name)); 419 mp_req.len_param = sizeof(*req); 420 mp_req.num_fds = 0; 421 req->type = VDEV_SCAN_REQ; 422 if (rte_mp_request_sync(&mp_req, &mp_reply, &ts) == 0 && 423 mp_reply.nb_received == 1) { 424 mp_rep = &mp_reply.msgs[0]; 425 resp = (struct vdev_param *)mp_rep->param; 426 VDEV_LOG(INFO, "Received %d vdevs", resp->num); 427 } else 428 VDEV_LOG(ERR, "Failed to request vdev from primary"); 429 430 /* Fall through to allow private vdevs in secondary process */ 431 } 432 433 /* call custom scan callbacks if any */ 434 rte_spinlock_lock(&vdev_custom_scan_lock); 435 TAILQ_FOREACH(custom_scan, &vdev_custom_scans, next) { 436 if (custom_scan->callback != NULL) 437 /* 438 * the callback should update devargs list 439 * by calling rte_devargs_insert() with 440 * devargs.bus = rte_bus_find_by_name("vdev"); 441 * devargs.type = RTE_DEVTYPE_VIRTUAL; 442 * devargs.policy = RTE_DEV_WHITELISTED; 443 */ 444 custom_scan->callback(custom_scan->user_arg); 445 } 446 rte_spinlock_unlock(&vdev_custom_scan_lock); 447 448 /* for virtual devices we scan the devargs_list populated via cmdline */ 449 RTE_EAL_DEVARGS_FOREACH("vdev", devargs) { 450 451 dev = calloc(1, sizeof(*dev)); 452 if (!dev) 453 return -1; 454 455 rte_spinlock_recursive_lock(&vdev_device_list_lock); 456 457 if (find_vdev(devargs->name)) { 458 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 459 free(dev); 460 continue; 461 } 462 463 dev->device.devargs = devargs; 464 dev->device.numa_node = SOCKET_ID_ANY; 465 dev->device.name = devargs->name; 466 467 TAILQ_INSERT_TAIL(&vdev_device_list, dev, next); 468 469 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 470 } 471 472 return 0; 473 } 474 475 static int 476 vdev_probe(void) 477 { 478 struct rte_vdev_device *dev; 479 int ret = 0; 480 481 /* call the init function for each virtual device */ 482 TAILQ_FOREACH(dev, &vdev_device_list, next) { 483 /* we don't use the vdev lock here, as it's only used in DPDK 484 * initialization; and we don't want to hold such a lock when 485 * we call each driver probe. 486 */ 487 488 if (dev->device.driver) 489 continue; 490 491 if (vdev_probe_all_drivers(dev)) { 492 VDEV_LOG(ERR, "failed to initialize %s device", 493 rte_vdev_device_name(dev)); 494 ret = -1; 495 } 496 } 497 498 return ret; 499 } 500 501 struct rte_device * 502 rte_vdev_find_device(const struct rte_device *start, rte_dev_cmp_t cmp, 503 const void *data) 504 { 505 const struct rte_vdev_device *vstart; 506 struct rte_vdev_device *dev; 507 508 rte_spinlock_recursive_lock(&vdev_device_list_lock); 509 if (start != NULL) { 510 vstart = RTE_DEV_TO_VDEV_CONST(start); 511 dev = TAILQ_NEXT(vstart, next); 512 } else { 513 dev = TAILQ_FIRST(&vdev_device_list); 514 } 515 while (dev != NULL) { 516 if (cmp(&dev->device, data) == 0) 517 break; 518 dev = TAILQ_NEXT(dev, next); 519 } 520 rte_spinlock_recursive_unlock(&vdev_device_list_lock); 521 522 return dev ? &dev->device : NULL; 523 } 524 525 static int 526 vdev_plug(struct rte_device *dev) 527 { 528 return vdev_probe_all_drivers(RTE_DEV_TO_VDEV(dev)); 529 } 530 531 static int 532 vdev_unplug(struct rte_device *dev) 533 { 534 return rte_vdev_uninit(dev->name); 535 } 536 537 static struct rte_bus rte_vdev_bus = { 538 .scan = vdev_scan, 539 .probe = vdev_probe, 540 .find_device = rte_vdev_find_device, 541 .plug = vdev_plug, 542 .unplug = vdev_unplug, 543 .parse = vdev_parse, 544 .dev_iterate = rte_vdev_dev_iterate, 545 }; 546 547 RTE_REGISTER_BUS(vdev, rte_vdev_bus); 548 549 RTE_INIT(vdev_init_log) 550 { 551 vdev_logtype_bus = rte_log_register("bus.vdev"); 552 if (vdev_logtype_bus >= 0) 553 rte_log_set_level(vdev_logtype_bus, RTE_LOG_NOTICE); 554 } 555