1 /* Broadcom NetXtreme-C/E network driver. 2 * 3 * Copyright (c) 2017 Broadcom Limited 4 * 5 * This program is free software; you can redistribute it and/or modify 6 * it under the terms of the GNU General Public License as published by 7 * the Free Software Foundation. 8 */ 9 10 #include <linux/pci.h> 11 #include <linux/netdevice.h> 12 #include <linux/vmalloc.h> 13 #include <net/devlink.h> 14 #include "bnxt_hsi.h" 15 #include "bnxt.h" 16 #include "bnxt_hwrm.h" 17 #include "bnxt_vfr.h" 18 #include "bnxt_devlink.h" 19 #include "bnxt_ethtool.h" 20 #include "bnxt_ulp.h" 21 #include "bnxt_ptp.h" 22 #include "bnxt_coredump.h" 23 #include "bnxt_nvm_defs.h" 24 25 static void __bnxt_fw_recover(struct bnxt *bp) 26 { 27 if (test_bit(BNXT_STATE_FW_FATAL_COND, &bp->state) || 28 test_bit(BNXT_STATE_FW_NON_FATAL_COND, &bp->state)) 29 bnxt_fw_reset(bp); 30 else 31 bnxt_fw_exception(bp); 32 } 33 34 static int 35 bnxt_dl_flash_update(struct devlink *dl, 36 struct devlink_flash_update_params *params, 37 struct netlink_ext_ack *extack) 38 { 39 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 40 int rc; 41 42 if (!BNXT_PF(bp)) { 43 NL_SET_ERR_MSG_MOD(extack, 44 "flash update not supported from a VF"); 45 return -EPERM; 46 } 47 48 devlink_flash_update_status_notify(dl, "Preparing to flash", NULL, 0, 0); 49 rc = bnxt_flash_package_from_fw_obj(bp->dev, params->fw, 0, extack); 50 if (!rc) 51 devlink_flash_update_status_notify(dl, "Flashing done", NULL, 0, 0); 52 else 53 devlink_flash_update_status_notify(dl, "Flashing failed", NULL, 0, 0); 54 return rc; 55 } 56 57 static int bnxt_hwrm_remote_dev_reset_set(struct bnxt *bp, bool remote_reset) 58 { 59 struct hwrm_func_cfg_input *req; 60 int rc; 61 62 if (~bp->fw_cap & BNXT_FW_CAP_HOT_RESET_IF) 63 return -EOPNOTSUPP; 64 65 rc = bnxt_hwrm_func_cfg_short_req_init(bp, &req); 66 if (rc) 67 return rc; 68 69 req->fid = cpu_to_le16(0xffff); 70 req->enables = cpu_to_le32(FUNC_CFG_REQ_ENABLES_HOT_RESET_IF_SUPPORT); 71 if (remote_reset) 72 req->flags = cpu_to_le32(FUNC_CFG_REQ_FLAGS_HOT_RESET_IF_EN_DIS); 73 74 return hwrm_req_send(bp, req); 75 } 76 77 static char *bnxt_health_severity_str(enum bnxt_health_severity severity) 78 { 79 switch (severity) { 80 case SEVERITY_NORMAL: return "normal"; 81 case SEVERITY_WARNING: return "warning"; 82 case SEVERITY_RECOVERABLE: return "recoverable"; 83 case SEVERITY_FATAL: return "fatal"; 84 default: return "unknown"; 85 } 86 } 87 88 static char *bnxt_health_remedy_str(enum bnxt_health_remedy remedy) 89 { 90 switch (remedy) { 91 case REMEDY_DEVLINK_RECOVER: return "devlink recover"; 92 case REMEDY_POWER_CYCLE_DEVICE: return "device power cycle"; 93 case REMEDY_POWER_CYCLE_HOST: return "host power cycle"; 94 case REMEDY_FW_UPDATE: return "update firmware"; 95 case REMEDY_HW_REPLACE: return "replace hardware"; 96 default: return "unknown"; 97 } 98 } 99 100 static int bnxt_fw_diagnose(struct devlink_health_reporter *reporter, 101 struct devlink_fmsg *fmsg, 102 struct netlink_ext_ack *extack) 103 { 104 struct bnxt *bp = devlink_health_reporter_priv(reporter); 105 struct bnxt_fw_health *h = bp->fw_health; 106 u32 fw_status, fw_resets; 107 108 if (test_bit(BNXT_STATE_IN_FW_RESET, &bp->state)) { 109 devlink_fmsg_string_pair_put(fmsg, "Status", "recovering"); 110 return 0; 111 } 112 113 if (!h->status_reliable) { 114 devlink_fmsg_string_pair_put(fmsg, "Status", "unknown"); 115 return 0; 116 } 117 118 mutex_lock(&h->lock); 119 fw_status = bnxt_fw_health_readl(bp, BNXT_FW_HEALTH_REG); 120 if (BNXT_FW_IS_BOOTING(fw_status)) { 121 devlink_fmsg_string_pair_put(fmsg, "Status", "initializing"); 122 } else if (h->severity || fw_status != BNXT_FW_STATUS_HEALTHY) { 123 if (!h->severity) { 124 h->severity = SEVERITY_FATAL; 125 h->remedy = REMEDY_POWER_CYCLE_DEVICE; 126 h->diagnoses++; 127 devlink_health_report(h->fw_reporter, 128 "FW error diagnosed", h); 129 } 130 devlink_fmsg_string_pair_put(fmsg, "Status", "error"); 131 devlink_fmsg_u32_pair_put(fmsg, "Syndrome", fw_status); 132 } else { 133 devlink_fmsg_string_pair_put(fmsg, "Status", "healthy"); 134 } 135 136 devlink_fmsg_string_pair_put(fmsg, "Severity", 137 bnxt_health_severity_str(h->severity)); 138 139 if (h->severity) { 140 devlink_fmsg_string_pair_put(fmsg, "Remedy", 141 bnxt_health_remedy_str(h->remedy)); 142 if (h->remedy == REMEDY_DEVLINK_RECOVER) 143 devlink_fmsg_string_pair_put(fmsg, "Impact", 144 "traffic+ntuple_cfg"); 145 } 146 147 mutex_unlock(&h->lock); 148 if (!h->resets_reliable) 149 return 0; 150 151 fw_resets = bnxt_fw_health_readl(bp, BNXT_FW_RESET_CNT_REG); 152 devlink_fmsg_u32_pair_put(fmsg, "Resets", fw_resets); 153 devlink_fmsg_u32_pair_put(fmsg, "Arrests", h->arrests); 154 devlink_fmsg_u32_pair_put(fmsg, "Survivals", h->survivals); 155 devlink_fmsg_u32_pair_put(fmsg, "Discoveries", h->discoveries); 156 devlink_fmsg_u32_pair_put(fmsg, "Fatalities", h->fatalities); 157 devlink_fmsg_u32_pair_put(fmsg, "Diagnoses", h->diagnoses); 158 return 0; 159 } 160 161 static int bnxt_fw_dump(struct devlink_health_reporter *reporter, 162 struct devlink_fmsg *fmsg, void *priv_ctx, 163 struct netlink_ext_ack *extack) 164 { 165 struct bnxt *bp = devlink_health_reporter_priv(reporter); 166 u32 dump_len; 167 void *data; 168 int rc; 169 170 /* TODO: no firmware dump support in devlink_health_report() context */ 171 if (priv_ctx) 172 return -EOPNOTSUPP; 173 174 dump_len = bnxt_get_coredump_length(bp, BNXT_DUMP_LIVE); 175 if (!dump_len) 176 return -EIO; 177 178 data = vmalloc(dump_len); 179 if (!data) 180 return -ENOMEM; 181 182 rc = bnxt_get_coredump(bp, BNXT_DUMP_LIVE, data, &dump_len); 183 if (!rc) { 184 devlink_fmsg_pair_nest_start(fmsg, "core"); 185 devlink_fmsg_binary_pair_put(fmsg, "data", data, dump_len); 186 devlink_fmsg_u32_pair_put(fmsg, "size", dump_len); 187 devlink_fmsg_pair_nest_end(fmsg); 188 } 189 190 vfree(data); 191 return rc; 192 } 193 194 static int bnxt_fw_recover(struct devlink_health_reporter *reporter, 195 void *priv_ctx, 196 struct netlink_ext_ack *extack) 197 { 198 struct bnxt *bp = devlink_health_reporter_priv(reporter); 199 200 if (bp->fw_health->severity == SEVERITY_FATAL) 201 return -ENODEV; 202 203 set_bit(BNXT_STATE_RECOVER, &bp->state); 204 __bnxt_fw_recover(bp); 205 206 return -EINPROGRESS; 207 } 208 209 static const struct devlink_health_reporter_ops bnxt_dl_fw_reporter_ops = { 210 .name = "fw", 211 .diagnose = bnxt_fw_diagnose, 212 .dump = bnxt_fw_dump, 213 .recover = bnxt_fw_recover, 214 }; 215 216 static struct devlink_health_reporter * 217 __bnxt_dl_reporter_create(struct bnxt *bp, 218 const struct devlink_health_reporter_ops *ops) 219 { 220 struct devlink_health_reporter *reporter; 221 222 reporter = devlink_health_reporter_create(bp->dl, ops, 0, bp); 223 if (IS_ERR(reporter)) { 224 netdev_warn(bp->dev, "Failed to create %s health reporter, rc = %ld\n", 225 ops->name, PTR_ERR(reporter)); 226 return NULL; 227 } 228 229 return reporter; 230 } 231 232 void bnxt_dl_fw_reporters_create(struct bnxt *bp) 233 { 234 struct bnxt_fw_health *fw_health = bp->fw_health; 235 236 if (fw_health && !fw_health->fw_reporter) 237 fw_health->fw_reporter = __bnxt_dl_reporter_create(bp, &bnxt_dl_fw_reporter_ops); 238 } 239 240 void bnxt_dl_fw_reporters_destroy(struct bnxt *bp) 241 { 242 struct bnxt_fw_health *fw_health = bp->fw_health; 243 244 if (fw_health && fw_health->fw_reporter) { 245 devlink_health_reporter_destroy(fw_health->fw_reporter); 246 fw_health->fw_reporter = NULL; 247 } 248 } 249 250 void bnxt_devlink_health_fw_report(struct bnxt *bp) 251 { 252 struct bnxt_fw_health *fw_health = bp->fw_health; 253 int rc; 254 255 if (!fw_health) 256 return; 257 258 if (!fw_health->fw_reporter) { 259 __bnxt_fw_recover(bp); 260 return; 261 } 262 263 mutex_lock(&fw_health->lock); 264 fw_health->severity = SEVERITY_RECOVERABLE; 265 fw_health->remedy = REMEDY_DEVLINK_RECOVER; 266 mutex_unlock(&fw_health->lock); 267 rc = devlink_health_report(fw_health->fw_reporter, "FW error reported", 268 fw_health); 269 if (rc == -ECANCELED) 270 __bnxt_fw_recover(bp); 271 } 272 273 void bnxt_dl_health_fw_status_update(struct bnxt *bp, bool healthy) 274 { 275 struct bnxt_fw_health *fw_health = bp->fw_health; 276 u8 state; 277 278 mutex_lock(&fw_health->lock); 279 if (healthy) { 280 fw_health->severity = SEVERITY_NORMAL; 281 state = DEVLINK_HEALTH_REPORTER_STATE_HEALTHY; 282 } else { 283 fw_health->severity = SEVERITY_FATAL; 284 fw_health->remedy = REMEDY_POWER_CYCLE_DEVICE; 285 state = DEVLINK_HEALTH_REPORTER_STATE_ERROR; 286 } 287 mutex_unlock(&fw_health->lock); 288 devlink_health_reporter_state_update(fw_health->fw_reporter, state); 289 } 290 291 void bnxt_dl_health_fw_recovery_done(struct bnxt *bp) 292 { 293 struct bnxt_dl *dl = devlink_priv(bp->dl); 294 295 devlink_health_reporter_recovery_done(bp->fw_health->fw_reporter); 296 bnxt_hwrm_remote_dev_reset_set(bp, dl->remote_reset); 297 } 298 299 static int bnxt_dl_info_get(struct devlink *dl, struct devlink_info_req *req, 300 struct netlink_ext_ack *extack); 301 302 static void 303 bnxt_dl_livepatch_report_err(struct bnxt *bp, struct netlink_ext_ack *extack, 304 struct hwrm_fw_livepatch_output *resp) 305 { 306 int err = ((struct hwrm_err_output *)resp)->cmd_err; 307 308 switch (err) { 309 case FW_LIVEPATCH_CMD_ERR_CODE_INVALID_OPCODE: 310 netdev_err(bp->dev, "Illegal live patch opcode"); 311 NL_SET_ERR_MSG_MOD(extack, "Invalid opcode"); 312 break; 313 case FW_LIVEPATCH_CMD_ERR_CODE_NOT_SUPPORTED: 314 NL_SET_ERR_MSG_MOD(extack, "Live patch operation not supported"); 315 break; 316 case FW_LIVEPATCH_CMD_ERR_CODE_NOT_INSTALLED: 317 NL_SET_ERR_MSG_MOD(extack, "Live patch not found"); 318 break; 319 case FW_LIVEPATCH_CMD_ERR_CODE_NOT_PATCHED: 320 NL_SET_ERR_MSG_MOD(extack, 321 "Live patch deactivation failed. Firmware not patched."); 322 break; 323 case FW_LIVEPATCH_CMD_ERR_CODE_AUTH_FAIL: 324 NL_SET_ERR_MSG_MOD(extack, "Live patch not authenticated"); 325 break; 326 case FW_LIVEPATCH_CMD_ERR_CODE_INVALID_HEADER: 327 NL_SET_ERR_MSG_MOD(extack, "Incompatible live patch"); 328 break; 329 case FW_LIVEPATCH_CMD_ERR_CODE_INVALID_SIZE: 330 NL_SET_ERR_MSG_MOD(extack, "Live patch has invalid size"); 331 break; 332 case FW_LIVEPATCH_CMD_ERR_CODE_ALREADY_PATCHED: 333 NL_SET_ERR_MSG_MOD(extack, "Live patch already applied"); 334 break; 335 default: 336 netdev_err(bp->dev, "Unexpected live patch error: %d\n", err); 337 NL_SET_ERR_MSG_MOD(extack, "Failed to activate live patch"); 338 break; 339 } 340 } 341 342 /* Live patch status in NVM */ 343 #define BNXT_LIVEPATCH_NOT_INSTALLED 0 344 #define BNXT_LIVEPATCH_INSTALLED FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_INSTALL 345 #define BNXT_LIVEPATCH_REMOVED FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_ACTIVE 346 #define BNXT_LIVEPATCH_MASK (FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_INSTALL | \ 347 FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_ACTIVE) 348 #define BNXT_LIVEPATCH_ACTIVATED BNXT_LIVEPATCH_MASK 349 350 #define BNXT_LIVEPATCH_STATE(flags) ((flags) & BNXT_LIVEPATCH_MASK) 351 352 static int 353 bnxt_dl_livepatch_activate(struct bnxt *bp, struct netlink_ext_ack *extack) 354 { 355 struct hwrm_fw_livepatch_query_output *query_resp; 356 struct hwrm_fw_livepatch_query_input *query_req; 357 struct hwrm_fw_livepatch_output *patch_resp; 358 struct hwrm_fw_livepatch_input *patch_req; 359 u16 flags, live_patch_state; 360 bool activated = false; 361 u32 installed = 0; 362 u8 target; 363 int rc; 364 365 if (~bp->fw_cap & BNXT_FW_CAP_LIVEPATCH) { 366 NL_SET_ERR_MSG_MOD(extack, "Device does not support live patch"); 367 return -EOPNOTSUPP; 368 } 369 370 rc = hwrm_req_init(bp, query_req, HWRM_FW_LIVEPATCH_QUERY); 371 if (rc) 372 return rc; 373 query_resp = hwrm_req_hold(bp, query_req); 374 375 rc = hwrm_req_init(bp, patch_req, HWRM_FW_LIVEPATCH); 376 if (rc) { 377 hwrm_req_drop(bp, query_req); 378 return rc; 379 } 380 patch_req->loadtype = FW_LIVEPATCH_REQ_LOADTYPE_NVM_INSTALL; 381 patch_resp = hwrm_req_hold(bp, patch_req); 382 383 for (target = 1; target <= FW_LIVEPATCH_REQ_FW_TARGET_LAST; target++) { 384 query_req->fw_target = target; 385 rc = hwrm_req_send(bp, query_req); 386 if (rc) { 387 NL_SET_ERR_MSG_MOD(extack, "Failed to query packages"); 388 break; 389 } 390 391 flags = le16_to_cpu(query_resp->status_flags); 392 live_patch_state = BNXT_LIVEPATCH_STATE(flags); 393 394 if (live_patch_state == BNXT_LIVEPATCH_NOT_INSTALLED) 395 continue; 396 397 if (live_patch_state == BNXT_LIVEPATCH_ACTIVATED) { 398 activated = true; 399 continue; 400 } 401 402 if (live_patch_state == BNXT_LIVEPATCH_INSTALLED) 403 patch_req->opcode = FW_LIVEPATCH_REQ_OPCODE_ACTIVATE; 404 else if (live_patch_state == BNXT_LIVEPATCH_REMOVED) 405 patch_req->opcode = FW_LIVEPATCH_REQ_OPCODE_DEACTIVATE; 406 407 patch_req->fw_target = target; 408 rc = hwrm_req_send(bp, patch_req); 409 if (rc) { 410 bnxt_dl_livepatch_report_err(bp, extack, patch_resp); 411 break; 412 } 413 installed++; 414 } 415 416 if (!rc && !installed) { 417 if (activated) { 418 NL_SET_ERR_MSG_MOD(extack, "Live patch already activated"); 419 rc = -EEXIST; 420 } else { 421 NL_SET_ERR_MSG_MOD(extack, "No live patches found"); 422 rc = -ENOENT; 423 } 424 } 425 hwrm_req_drop(bp, query_req); 426 hwrm_req_drop(bp, patch_req); 427 return rc; 428 } 429 430 static int bnxt_dl_reload_down(struct devlink *dl, bool netns_change, 431 enum devlink_reload_action action, 432 enum devlink_reload_limit limit, 433 struct netlink_ext_ack *extack) 434 { 435 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 436 int rc = 0; 437 438 switch (action) { 439 case DEVLINK_RELOAD_ACTION_DRIVER_REINIT: { 440 rtnl_lock(); 441 if (bnxt_sriov_cfg(bp)) { 442 NL_SET_ERR_MSG_MOD(extack, 443 "reload is unsupported while VFs are allocated or being configured"); 444 rtnl_unlock(); 445 return -EOPNOTSUPP; 446 } 447 if (bp->dev->reg_state == NETREG_UNREGISTERED) { 448 rtnl_unlock(); 449 return -ENODEV; 450 } 451 bnxt_ulp_stop(bp); 452 if (netif_running(bp->dev)) 453 bnxt_close_nic(bp, true, true); 454 bnxt_vf_reps_free(bp); 455 rc = bnxt_hwrm_func_drv_unrgtr(bp); 456 if (rc) { 457 NL_SET_ERR_MSG_MOD(extack, "Failed to deregister"); 458 if (netif_running(bp->dev)) 459 dev_close(bp->dev); 460 rtnl_unlock(); 461 break; 462 } 463 bnxt_cancel_reservations(bp, false); 464 bnxt_free_ctx_mem(bp); 465 kfree(bp->ctx); 466 bp->ctx = NULL; 467 break; 468 } 469 case DEVLINK_RELOAD_ACTION_FW_ACTIVATE: { 470 if (limit == DEVLINK_RELOAD_LIMIT_NO_RESET) 471 return bnxt_dl_livepatch_activate(bp, extack); 472 if (~bp->fw_cap & BNXT_FW_CAP_HOT_RESET) { 473 NL_SET_ERR_MSG_MOD(extack, "Device not capable, requires reboot"); 474 return -EOPNOTSUPP; 475 } 476 if (!bnxt_hwrm_reset_permitted(bp)) { 477 NL_SET_ERR_MSG_MOD(extack, 478 "Reset denied by firmware, it may be inhibited by remote driver"); 479 return -EPERM; 480 } 481 rtnl_lock(); 482 if (bp->dev->reg_state == NETREG_UNREGISTERED) { 483 rtnl_unlock(); 484 return -ENODEV; 485 } 486 if (netif_running(bp->dev)) 487 set_bit(BNXT_STATE_FW_ACTIVATE, &bp->state); 488 rc = bnxt_hwrm_firmware_reset(bp->dev, 489 FW_RESET_REQ_EMBEDDED_PROC_TYPE_CHIP, 490 FW_RESET_REQ_SELFRST_STATUS_SELFRSTASAP, 491 FW_RESET_REQ_FLAGS_RESET_GRACEFUL | 492 FW_RESET_REQ_FLAGS_FW_ACTIVATION); 493 if (rc) { 494 NL_SET_ERR_MSG_MOD(extack, "Failed to activate firmware"); 495 clear_bit(BNXT_STATE_FW_ACTIVATE, &bp->state); 496 rtnl_unlock(); 497 } 498 break; 499 } 500 default: 501 rc = -EOPNOTSUPP; 502 } 503 504 return rc; 505 } 506 507 static int bnxt_dl_reload_up(struct devlink *dl, enum devlink_reload_action action, 508 enum devlink_reload_limit limit, u32 *actions_performed, 509 struct netlink_ext_ack *extack) 510 { 511 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 512 int rc = 0; 513 514 *actions_performed = 0; 515 switch (action) { 516 case DEVLINK_RELOAD_ACTION_DRIVER_REINIT: { 517 bnxt_fw_init_one(bp); 518 bnxt_vf_reps_alloc(bp); 519 if (netif_running(bp->dev)) 520 rc = bnxt_open_nic(bp, true, true); 521 bnxt_ulp_start(bp, rc); 522 if (!rc) { 523 bnxt_reenable_sriov(bp); 524 bnxt_ptp_reapply_pps(bp); 525 } 526 break; 527 } 528 case DEVLINK_RELOAD_ACTION_FW_ACTIVATE: { 529 unsigned long start = jiffies; 530 unsigned long timeout = start + BNXT_DFLT_FW_RST_MAX_DSECS * HZ / 10; 531 532 if (limit == DEVLINK_RELOAD_LIMIT_NO_RESET) 533 break; 534 if (bp->fw_cap & BNXT_FW_CAP_ERROR_RECOVERY) 535 timeout = start + bp->fw_health->normal_func_wait_dsecs * HZ / 10; 536 if (!netif_running(bp->dev)) 537 NL_SET_ERR_MSG_MOD(extack, 538 "Device is closed, not waiting for reset notice that will never come"); 539 rtnl_unlock(); 540 while (test_bit(BNXT_STATE_FW_ACTIVATE, &bp->state)) { 541 if (time_after(jiffies, timeout)) { 542 NL_SET_ERR_MSG_MOD(extack, "Activation incomplete"); 543 rc = -ETIMEDOUT; 544 break; 545 } 546 if (test_bit(BNXT_STATE_ABORT_ERR, &bp->state)) { 547 NL_SET_ERR_MSG_MOD(extack, "Activation aborted"); 548 rc = -ENODEV; 549 break; 550 } 551 msleep(50); 552 } 553 rtnl_lock(); 554 if (!rc) 555 *actions_performed |= BIT(DEVLINK_RELOAD_ACTION_DRIVER_REINIT); 556 clear_bit(BNXT_STATE_FW_ACTIVATE, &bp->state); 557 break; 558 } 559 default: 560 return -EOPNOTSUPP; 561 } 562 563 if (!rc) { 564 bnxt_print_device_info(bp); 565 if (netif_running(bp->dev)) { 566 mutex_lock(&bp->link_lock); 567 bnxt_report_link(bp); 568 mutex_unlock(&bp->link_lock); 569 } 570 *actions_performed |= BIT(action); 571 } else if (netif_running(bp->dev)) { 572 dev_close(bp->dev); 573 } 574 rtnl_unlock(); 575 return rc; 576 } 577 578 static bool bnxt_nvm_test(struct bnxt *bp, struct netlink_ext_ack *extack) 579 { 580 bool rc = false; 581 u32 datalen; 582 u16 index; 583 u8 *buf; 584 585 if (bnxt_find_nvram_item(bp->dev, BNX_DIR_TYPE_VPD, 586 BNX_DIR_ORDINAL_FIRST, BNX_DIR_EXT_NONE, 587 &index, NULL, &datalen) || !datalen) { 588 NL_SET_ERR_MSG_MOD(extack, "nvm test vpd entry error"); 589 return false; 590 } 591 592 buf = kzalloc(datalen, GFP_KERNEL); 593 if (!buf) { 594 NL_SET_ERR_MSG_MOD(extack, "insufficient memory for nvm test"); 595 return false; 596 } 597 598 if (bnxt_get_nvram_item(bp->dev, index, 0, datalen, buf)) { 599 NL_SET_ERR_MSG_MOD(extack, "nvm test vpd read error"); 600 goto done; 601 } 602 603 if (bnxt_flash_nvram(bp->dev, BNX_DIR_TYPE_VPD, BNX_DIR_ORDINAL_FIRST, 604 BNX_DIR_EXT_NONE, 0, 0, buf, datalen)) { 605 NL_SET_ERR_MSG_MOD(extack, "nvm test vpd write error"); 606 goto done; 607 } 608 609 rc = true; 610 611 done: 612 kfree(buf); 613 return rc; 614 } 615 616 static bool bnxt_dl_selftest_check(struct devlink *dl, unsigned int id, 617 struct netlink_ext_ack *extack) 618 { 619 return id == DEVLINK_ATTR_SELFTEST_ID_FLASH; 620 } 621 622 static enum devlink_selftest_status bnxt_dl_selftest_run(struct devlink *dl, 623 unsigned int id, 624 struct netlink_ext_ack *extack) 625 { 626 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 627 628 if (id == DEVLINK_ATTR_SELFTEST_ID_FLASH) 629 return bnxt_nvm_test(bp, extack) ? 630 DEVLINK_SELFTEST_STATUS_PASS : 631 DEVLINK_SELFTEST_STATUS_FAIL; 632 633 return DEVLINK_SELFTEST_STATUS_SKIP; 634 } 635 636 static const struct devlink_ops bnxt_dl_ops = { 637 #ifdef CONFIG_BNXT_SRIOV 638 .eswitch_mode_set = bnxt_dl_eswitch_mode_set, 639 .eswitch_mode_get = bnxt_dl_eswitch_mode_get, 640 #endif /* CONFIG_BNXT_SRIOV */ 641 .info_get = bnxt_dl_info_get, 642 .flash_update = bnxt_dl_flash_update, 643 .reload_actions = BIT(DEVLINK_RELOAD_ACTION_DRIVER_REINIT) | 644 BIT(DEVLINK_RELOAD_ACTION_FW_ACTIVATE), 645 .reload_limits = BIT(DEVLINK_RELOAD_LIMIT_NO_RESET), 646 .reload_down = bnxt_dl_reload_down, 647 .reload_up = bnxt_dl_reload_up, 648 .selftest_check = bnxt_dl_selftest_check, 649 .selftest_run = bnxt_dl_selftest_run, 650 }; 651 652 static const struct devlink_ops bnxt_vf_dl_ops; 653 654 enum bnxt_dl_param_id { 655 BNXT_DEVLINK_PARAM_ID_BASE = DEVLINK_PARAM_GENERIC_ID_MAX, 656 BNXT_DEVLINK_PARAM_ID_GRE_VER_CHECK, 657 }; 658 659 static const struct bnxt_dl_nvm_param nvm_params[] = { 660 {DEVLINK_PARAM_GENERIC_ID_ENABLE_SRIOV, NVM_OFF_ENABLE_SRIOV, 661 BNXT_NVM_SHARED_CFG, 1, 1}, 662 {DEVLINK_PARAM_GENERIC_ID_IGNORE_ARI, NVM_OFF_IGNORE_ARI, 663 BNXT_NVM_SHARED_CFG, 1, 1}, 664 {DEVLINK_PARAM_GENERIC_ID_MSIX_VEC_PER_PF_MAX, 665 NVM_OFF_MSIX_VEC_PER_PF_MAX, BNXT_NVM_SHARED_CFG, 10, 4}, 666 {DEVLINK_PARAM_GENERIC_ID_MSIX_VEC_PER_PF_MIN, 667 NVM_OFF_MSIX_VEC_PER_PF_MIN, BNXT_NVM_SHARED_CFG, 7, 4}, 668 {BNXT_DEVLINK_PARAM_ID_GRE_VER_CHECK, NVM_OFF_DIS_GRE_VER_CHECK, 669 BNXT_NVM_SHARED_CFG, 1, 1}, 670 }; 671 672 union bnxt_nvm_data { 673 u8 val8; 674 __le32 val32; 675 }; 676 677 static void bnxt_copy_to_nvm_data(union bnxt_nvm_data *dst, 678 union devlink_param_value *src, 679 int nvm_num_bits, int dl_num_bytes) 680 { 681 u32 val32 = 0; 682 683 if (nvm_num_bits == 1) { 684 dst->val8 = src->vbool; 685 return; 686 } 687 if (dl_num_bytes == 4) 688 val32 = src->vu32; 689 else if (dl_num_bytes == 2) 690 val32 = (u32)src->vu16; 691 else if (dl_num_bytes == 1) 692 val32 = (u32)src->vu8; 693 dst->val32 = cpu_to_le32(val32); 694 } 695 696 static void bnxt_copy_from_nvm_data(union devlink_param_value *dst, 697 union bnxt_nvm_data *src, 698 int nvm_num_bits, int dl_num_bytes) 699 { 700 u32 val32; 701 702 if (nvm_num_bits == 1) { 703 dst->vbool = src->val8; 704 return; 705 } 706 val32 = le32_to_cpu(src->val32); 707 if (dl_num_bytes == 4) 708 dst->vu32 = val32; 709 else if (dl_num_bytes == 2) 710 dst->vu16 = (u16)val32; 711 else if (dl_num_bytes == 1) 712 dst->vu8 = (u8)val32; 713 } 714 715 static int bnxt_hwrm_get_nvm_cfg_ver(struct bnxt *bp, u32 *nvm_cfg_ver) 716 { 717 struct hwrm_nvm_get_variable_input *req; 718 u16 bytes = BNXT_NVM_CFG_VER_BYTES; 719 u16 bits = BNXT_NVM_CFG_VER_BITS; 720 union devlink_param_value ver; 721 union bnxt_nvm_data *data; 722 dma_addr_t data_dma_addr; 723 int rc, i = 2; 724 u16 dim = 1; 725 726 rc = hwrm_req_init(bp, req, HWRM_NVM_GET_VARIABLE); 727 if (rc) 728 return rc; 729 730 data = hwrm_req_dma_slice(bp, req, sizeof(*data), &data_dma_addr); 731 if (!data) { 732 rc = -ENOMEM; 733 goto exit; 734 } 735 736 /* earlier devices present as an array of raw bytes */ 737 if (!BNXT_CHIP_P5(bp)) { 738 dim = 0; 739 i = 0; 740 bits *= 3; /* array of 3 version components */ 741 bytes *= 4; /* copy whole word */ 742 } 743 744 hwrm_req_hold(bp, req); 745 req->dest_data_addr = cpu_to_le64(data_dma_addr); 746 req->data_len = cpu_to_le16(bits); 747 req->option_num = cpu_to_le16(NVM_OFF_NVM_CFG_VER); 748 req->dimensions = cpu_to_le16(dim); 749 750 while (i >= 0) { 751 req->index_0 = cpu_to_le16(i--); 752 rc = hwrm_req_send_silent(bp, req); 753 if (rc) 754 goto exit; 755 bnxt_copy_from_nvm_data(&ver, data, bits, bytes); 756 757 if (BNXT_CHIP_P5(bp)) { 758 *nvm_cfg_ver <<= 8; 759 *nvm_cfg_ver |= ver.vu8; 760 } else { 761 *nvm_cfg_ver = ver.vu32; 762 } 763 } 764 765 exit: 766 hwrm_req_drop(bp, req); 767 return rc; 768 } 769 770 static int bnxt_dl_info_put(struct bnxt *bp, struct devlink_info_req *req, 771 enum bnxt_dl_version_type type, const char *key, 772 char *buf) 773 { 774 if (!strlen(buf)) 775 return 0; 776 777 if ((bp->flags & BNXT_FLAG_CHIP_P5) && 778 (!strcmp(key, DEVLINK_INFO_VERSION_GENERIC_FW_NCSI) || 779 !strcmp(key, DEVLINK_INFO_VERSION_GENERIC_FW_ROCE))) 780 return 0; 781 782 switch (type) { 783 case BNXT_VERSION_FIXED: 784 return devlink_info_version_fixed_put(req, key, buf); 785 case BNXT_VERSION_RUNNING: 786 return devlink_info_version_running_put(req, key, buf); 787 case BNXT_VERSION_STORED: 788 return devlink_info_version_stored_put(req, key, buf); 789 } 790 return 0; 791 } 792 793 #define BNXT_FW_SRT_PATCH "fw.srt.patch" 794 #define BNXT_FW_CRT_PATCH "fw.crt.patch" 795 796 static int bnxt_dl_livepatch_info_put(struct bnxt *bp, 797 struct devlink_info_req *req, 798 const char *key) 799 { 800 struct hwrm_fw_livepatch_query_input *query; 801 struct hwrm_fw_livepatch_query_output *resp; 802 u16 flags; 803 int rc; 804 805 if (~bp->fw_cap & BNXT_FW_CAP_LIVEPATCH) 806 return 0; 807 808 rc = hwrm_req_init(bp, query, HWRM_FW_LIVEPATCH_QUERY); 809 if (rc) 810 return rc; 811 812 if (!strcmp(key, BNXT_FW_SRT_PATCH)) 813 query->fw_target = FW_LIVEPATCH_QUERY_REQ_FW_TARGET_SECURE_FW; 814 else if (!strcmp(key, BNXT_FW_CRT_PATCH)) 815 query->fw_target = FW_LIVEPATCH_QUERY_REQ_FW_TARGET_COMMON_FW; 816 else 817 goto exit; 818 819 resp = hwrm_req_hold(bp, query); 820 rc = hwrm_req_send(bp, query); 821 if (rc) 822 goto exit; 823 824 flags = le16_to_cpu(resp->status_flags); 825 if (flags & FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_ACTIVE) { 826 resp->active_ver[sizeof(resp->active_ver) - 1] = '\0'; 827 rc = devlink_info_version_running_put(req, key, resp->active_ver); 828 if (rc) 829 goto exit; 830 } 831 832 if (flags & FW_LIVEPATCH_QUERY_RESP_STATUS_FLAGS_INSTALL) { 833 resp->install_ver[sizeof(resp->install_ver) - 1] = '\0'; 834 rc = devlink_info_version_stored_put(req, key, resp->install_ver); 835 if (rc) 836 goto exit; 837 } 838 839 exit: 840 hwrm_req_drop(bp, query); 841 return rc; 842 } 843 844 #define HWRM_FW_VER_STR_LEN 16 845 846 static int bnxt_dl_info_get(struct devlink *dl, struct devlink_info_req *req, 847 struct netlink_ext_ack *extack) 848 { 849 struct hwrm_nvm_get_dev_info_output nvm_dev_info; 850 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 851 struct hwrm_ver_get_output *ver_resp; 852 char mgmt_ver[FW_VER_STR_LEN]; 853 char roce_ver[FW_VER_STR_LEN]; 854 char ncsi_ver[FW_VER_STR_LEN]; 855 char buf[32]; 856 u32 ver = 0; 857 int rc; 858 859 if (BNXT_PF(bp) && (bp->flags & BNXT_FLAG_DSN_VALID)) { 860 sprintf(buf, "%02X-%02X-%02X-%02X-%02X-%02X-%02X-%02X", 861 bp->dsn[7], bp->dsn[6], bp->dsn[5], bp->dsn[4], 862 bp->dsn[3], bp->dsn[2], bp->dsn[1], bp->dsn[0]); 863 rc = devlink_info_serial_number_put(req, buf); 864 if (rc) 865 return rc; 866 } 867 868 if (strlen(bp->board_serialno)) { 869 rc = devlink_info_board_serial_number_put(req, bp->board_serialno); 870 if (rc) 871 return rc; 872 } 873 874 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_FIXED, 875 DEVLINK_INFO_VERSION_GENERIC_BOARD_ID, 876 bp->board_partno); 877 if (rc) 878 return rc; 879 880 sprintf(buf, "%X", bp->chip_num); 881 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_FIXED, 882 DEVLINK_INFO_VERSION_GENERIC_ASIC_ID, buf); 883 if (rc) 884 return rc; 885 886 ver_resp = &bp->ver_resp; 887 sprintf(buf, "%c%d", 'A' + ver_resp->chip_rev, ver_resp->chip_metal); 888 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_FIXED, 889 DEVLINK_INFO_VERSION_GENERIC_ASIC_REV, buf); 890 if (rc) 891 return rc; 892 893 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 894 DEVLINK_INFO_VERSION_GENERIC_FW_PSID, 895 bp->nvm_cfg_ver); 896 if (rc) 897 return rc; 898 899 buf[0] = 0; 900 strncat(buf, ver_resp->active_pkg_name, HWRM_FW_VER_STR_LEN); 901 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 902 DEVLINK_INFO_VERSION_GENERIC_FW, buf); 903 if (rc) 904 return rc; 905 906 if (BNXT_PF(bp) && !bnxt_hwrm_get_nvm_cfg_ver(bp, &ver)) { 907 sprintf(buf, "%d.%d.%d", (ver >> 16) & 0xff, (ver >> 8) & 0xff, 908 ver & 0xff); 909 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 910 DEVLINK_INFO_VERSION_GENERIC_FW_PSID, 911 buf); 912 if (rc) 913 return rc; 914 } 915 916 if (ver_resp->flags & VER_GET_RESP_FLAGS_EXT_VER_AVAIL) { 917 snprintf(mgmt_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 918 ver_resp->hwrm_fw_major, ver_resp->hwrm_fw_minor, 919 ver_resp->hwrm_fw_build, ver_resp->hwrm_fw_patch); 920 921 snprintf(ncsi_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 922 ver_resp->mgmt_fw_major, ver_resp->mgmt_fw_minor, 923 ver_resp->mgmt_fw_build, ver_resp->mgmt_fw_patch); 924 925 snprintf(roce_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 926 ver_resp->roce_fw_major, ver_resp->roce_fw_minor, 927 ver_resp->roce_fw_build, ver_resp->roce_fw_patch); 928 } else { 929 snprintf(mgmt_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 930 ver_resp->hwrm_fw_maj_8b, ver_resp->hwrm_fw_min_8b, 931 ver_resp->hwrm_fw_bld_8b, ver_resp->hwrm_fw_rsvd_8b); 932 933 snprintf(ncsi_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 934 ver_resp->mgmt_fw_maj_8b, ver_resp->mgmt_fw_min_8b, 935 ver_resp->mgmt_fw_bld_8b, ver_resp->mgmt_fw_rsvd_8b); 936 937 snprintf(roce_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 938 ver_resp->roce_fw_maj_8b, ver_resp->roce_fw_min_8b, 939 ver_resp->roce_fw_bld_8b, ver_resp->roce_fw_rsvd_8b); 940 } 941 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 942 DEVLINK_INFO_VERSION_GENERIC_FW_MGMT, mgmt_ver); 943 if (rc) 944 return rc; 945 946 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 947 DEVLINK_INFO_VERSION_GENERIC_FW_MGMT_API, 948 bp->hwrm_ver_supp); 949 if (rc) 950 return rc; 951 952 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 953 DEVLINK_INFO_VERSION_GENERIC_FW_NCSI, ncsi_ver); 954 if (rc) 955 return rc; 956 957 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_RUNNING, 958 DEVLINK_INFO_VERSION_GENERIC_FW_ROCE, roce_ver); 959 if (rc) 960 return rc; 961 962 rc = bnxt_hwrm_nvm_get_dev_info(bp, &nvm_dev_info); 963 if (rc || 964 !(nvm_dev_info.flags & NVM_GET_DEV_INFO_RESP_FLAGS_FW_VER_VALID)) { 965 if (!bnxt_get_pkginfo(bp->dev, buf, sizeof(buf))) 966 return bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 967 DEVLINK_INFO_VERSION_GENERIC_FW, 968 buf); 969 return 0; 970 } 971 972 buf[0] = 0; 973 strncat(buf, nvm_dev_info.pkg_name, HWRM_FW_VER_STR_LEN); 974 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 975 DEVLINK_INFO_VERSION_GENERIC_FW, buf); 976 if (rc) 977 return rc; 978 979 snprintf(mgmt_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 980 nvm_dev_info.hwrm_fw_major, nvm_dev_info.hwrm_fw_minor, 981 nvm_dev_info.hwrm_fw_build, nvm_dev_info.hwrm_fw_patch); 982 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 983 DEVLINK_INFO_VERSION_GENERIC_FW_MGMT, mgmt_ver); 984 if (rc) 985 return rc; 986 987 snprintf(ncsi_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 988 nvm_dev_info.mgmt_fw_major, nvm_dev_info.mgmt_fw_minor, 989 nvm_dev_info.mgmt_fw_build, nvm_dev_info.mgmt_fw_patch); 990 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 991 DEVLINK_INFO_VERSION_GENERIC_FW_NCSI, ncsi_ver); 992 if (rc) 993 return rc; 994 995 snprintf(roce_ver, FW_VER_STR_LEN, "%d.%d.%d.%d", 996 nvm_dev_info.roce_fw_major, nvm_dev_info.roce_fw_minor, 997 nvm_dev_info.roce_fw_build, nvm_dev_info.roce_fw_patch); 998 rc = bnxt_dl_info_put(bp, req, BNXT_VERSION_STORED, 999 DEVLINK_INFO_VERSION_GENERIC_FW_ROCE, roce_ver); 1000 if (rc) 1001 return rc; 1002 1003 if (BNXT_CHIP_P5(bp)) { 1004 rc = bnxt_dl_livepatch_info_put(bp, req, BNXT_FW_SRT_PATCH); 1005 if (rc) 1006 return rc; 1007 } 1008 return bnxt_dl_livepatch_info_put(bp, req, BNXT_FW_CRT_PATCH); 1009 1010 } 1011 1012 static int bnxt_hwrm_nvm_req(struct bnxt *bp, u32 param_id, void *msg, 1013 union devlink_param_value *val) 1014 { 1015 struct hwrm_nvm_get_variable_input *req = msg; 1016 struct bnxt_dl_nvm_param nvm_param; 1017 struct hwrm_err_output *resp; 1018 union bnxt_nvm_data *data; 1019 dma_addr_t data_dma_addr; 1020 int idx = 0, rc, i; 1021 1022 /* Get/Set NVM CFG parameter is supported only on PFs */ 1023 if (BNXT_VF(bp)) { 1024 hwrm_req_drop(bp, req); 1025 return -EPERM; 1026 } 1027 1028 for (i = 0; i < ARRAY_SIZE(nvm_params); i++) { 1029 if (nvm_params[i].id == param_id) { 1030 nvm_param = nvm_params[i]; 1031 break; 1032 } 1033 } 1034 1035 if (i == ARRAY_SIZE(nvm_params)) { 1036 hwrm_req_drop(bp, req); 1037 return -EOPNOTSUPP; 1038 } 1039 1040 if (nvm_param.dir_type == BNXT_NVM_PORT_CFG) 1041 idx = bp->pf.port_id; 1042 else if (nvm_param.dir_type == BNXT_NVM_FUNC_CFG) 1043 idx = bp->pf.fw_fid - BNXT_FIRST_PF_FID; 1044 1045 data = hwrm_req_dma_slice(bp, req, sizeof(*data), &data_dma_addr); 1046 1047 if (!data) { 1048 hwrm_req_drop(bp, req); 1049 return -ENOMEM; 1050 } 1051 1052 req->dest_data_addr = cpu_to_le64(data_dma_addr); 1053 req->data_len = cpu_to_le16(nvm_param.nvm_num_bits); 1054 req->option_num = cpu_to_le16(nvm_param.offset); 1055 req->index_0 = cpu_to_le16(idx); 1056 if (idx) 1057 req->dimensions = cpu_to_le16(1); 1058 1059 resp = hwrm_req_hold(bp, req); 1060 if (req->req_type == cpu_to_le16(HWRM_NVM_SET_VARIABLE)) { 1061 bnxt_copy_to_nvm_data(data, val, nvm_param.nvm_num_bits, 1062 nvm_param.dl_num_bytes); 1063 rc = hwrm_req_send(bp, msg); 1064 } else { 1065 rc = hwrm_req_send_silent(bp, msg); 1066 if (!rc) { 1067 bnxt_copy_from_nvm_data(val, data, 1068 nvm_param.nvm_num_bits, 1069 nvm_param.dl_num_bytes); 1070 } else { 1071 if (resp->cmd_err == 1072 NVM_GET_VARIABLE_CMD_ERR_CODE_VAR_NOT_EXIST) 1073 rc = -EOPNOTSUPP; 1074 } 1075 } 1076 hwrm_req_drop(bp, req); 1077 if (rc == -EACCES) 1078 netdev_err(bp->dev, "PF does not have admin privileges to modify NVM config\n"); 1079 return rc; 1080 } 1081 1082 static int bnxt_dl_nvm_param_get(struct devlink *dl, u32 id, 1083 struct devlink_param_gset_ctx *ctx) 1084 { 1085 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 1086 struct hwrm_nvm_get_variable_input *req; 1087 int rc; 1088 1089 rc = hwrm_req_init(bp, req, HWRM_NVM_GET_VARIABLE); 1090 if (rc) 1091 return rc; 1092 1093 rc = bnxt_hwrm_nvm_req(bp, id, req, &ctx->val); 1094 if (!rc && id == BNXT_DEVLINK_PARAM_ID_GRE_VER_CHECK) 1095 ctx->val.vbool = !ctx->val.vbool; 1096 1097 return rc; 1098 } 1099 1100 static int bnxt_dl_nvm_param_set(struct devlink *dl, u32 id, 1101 struct devlink_param_gset_ctx *ctx) 1102 { 1103 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 1104 struct hwrm_nvm_set_variable_input *req; 1105 int rc; 1106 1107 rc = hwrm_req_init(bp, req, HWRM_NVM_SET_VARIABLE); 1108 if (rc) 1109 return rc; 1110 1111 if (id == BNXT_DEVLINK_PARAM_ID_GRE_VER_CHECK) 1112 ctx->val.vbool = !ctx->val.vbool; 1113 1114 return bnxt_hwrm_nvm_req(bp, id, req, &ctx->val); 1115 } 1116 1117 static int bnxt_dl_msix_validate(struct devlink *dl, u32 id, 1118 union devlink_param_value val, 1119 struct netlink_ext_ack *extack) 1120 { 1121 int max_val = -1; 1122 1123 if (id == DEVLINK_PARAM_GENERIC_ID_MSIX_VEC_PER_PF_MAX) 1124 max_val = BNXT_MSIX_VEC_MAX; 1125 1126 if (id == DEVLINK_PARAM_GENERIC_ID_MSIX_VEC_PER_PF_MIN) 1127 max_val = BNXT_MSIX_VEC_MIN_MAX; 1128 1129 if (val.vu32 > max_val) { 1130 NL_SET_ERR_MSG_MOD(extack, "MSIX value is exceeding the range"); 1131 return -EINVAL; 1132 } 1133 1134 return 0; 1135 } 1136 1137 static int bnxt_remote_dev_reset_get(struct devlink *dl, u32 id, 1138 struct devlink_param_gset_ctx *ctx) 1139 { 1140 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 1141 1142 if (~bp->fw_cap & BNXT_FW_CAP_HOT_RESET_IF) 1143 return -EOPNOTSUPP; 1144 1145 ctx->val.vbool = bnxt_dl_get_remote_reset(dl); 1146 return 0; 1147 } 1148 1149 static int bnxt_remote_dev_reset_set(struct devlink *dl, u32 id, 1150 struct devlink_param_gset_ctx *ctx) 1151 { 1152 struct bnxt *bp = bnxt_get_bp_from_dl(dl); 1153 int rc; 1154 1155 rc = bnxt_hwrm_remote_dev_reset_set(bp, ctx->val.vbool); 1156 if (rc) 1157 return rc; 1158 1159 bnxt_dl_set_remote_reset(dl, ctx->val.vbool); 1160 return rc; 1161 } 1162 1163 static const struct devlink_param bnxt_dl_params[] = { 1164 DEVLINK_PARAM_GENERIC(ENABLE_SRIOV, 1165 BIT(DEVLINK_PARAM_CMODE_PERMANENT), 1166 bnxt_dl_nvm_param_get, bnxt_dl_nvm_param_set, 1167 NULL), 1168 DEVLINK_PARAM_GENERIC(IGNORE_ARI, 1169 BIT(DEVLINK_PARAM_CMODE_PERMANENT), 1170 bnxt_dl_nvm_param_get, bnxt_dl_nvm_param_set, 1171 NULL), 1172 DEVLINK_PARAM_GENERIC(MSIX_VEC_PER_PF_MAX, 1173 BIT(DEVLINK_PARAM_CMODE_PERMANENT), 1174 bnxt_dl_nvm_param_get, bnxt_dl_nvm_param_set, 1175 bnxt_dl_msix_validate), 1176 DEVLINK_PARAM_GENERIC(MSIX_VEC_PER_PF_MIN, 1177 BIT(DEVLINK_PARAM_CMODE_PERMANENT), 1178 bnxt_dl_nvm_param_get, bnxt_dl_nvm_param_set, 1179 bnxt_dl_msix_validate), 1180 DEVLINK_PARAM_DRIVER(BNXT_DEVLINK_PARAM_ID_GRE_VER_CHECK, 1181 "gre_ver_check", DEVLINK_PARAM_TYPE_BOOL, 1182 BIT(DEVLINK_PARAM_CMODE_PERMANENT), 1183 bnxt_dl_nvm_param_get, bnxt_dl_nvm_param_set, 1184 NULL), 1185 /* keep REMOTE_DEV_RESET last, it is excluded based on caps */ 1186 DEVLINK_PARAM_GENERIC(ENABLE_REMOTE_DEV_RESET, 1187 BIT(DEVLINK_PARAM_CMODE_RUNTIME), 1188 bnxt_remote_dev_reset_get, 1189 bnxt_remote_dev_reset_set, NULL), 1190 }; 1191 1192 static int bnxt_dl_params_register(struct bnxt *bp) 1193 { 1194 int num_params = ARRAY_SIZE(bnxt_dl_params); 1195 int rc; 1196 1197 if (bp->hwrm_spec_code < 0x10600) 1198 return 0; 1199 1200 if (~bp->fw_cap & BNXT_FW_CAP_HOT_RESET_IF) 1201 num_params--; 1202 1203 rc = devlink_params_register(bp->dl, bnxt_dl_params, num_params); 1204 if (rc) 1205 netdev_warn(bp->dev, "devlink_params_register failed. rc=%d\n", 1206 rc); 1207 return rc; 1208 } 1209 1210 static void bnxt_dl_params_unregister(struct bnxt *bp) 1211 { 1212 int num_params = ARRAY_SIZE(bnxt_dl_params); 1213 1214 if (bp->hwrm_spec_code < 0x10600) 1215 return; 1216 1217 if (~bp->fw_cap & BNXT_FW_CAP_HOT_RESET_IF) 1218 num_params--; 1219 1220 devlink_params_unregister(bp->dl, bnxt_dl_params, num_params); 1221 } 1222 1223 int bnxt_dl_register(struct bnxt *bp) 1224 { 1225 const struct devlink_ops *devlink_ops; 1226 struct devlink_port_attrs attrs = {}; 1227 struct bnxt_dl *bp_dl; 1228 struct devlink *dl; 1229 int rc; 1230 1231 if (BNXT_PF(bp)) 1232 devlink_ops = &bnxt_dl_ops; 1233 else 1234 devlink_ops = &bnxt_vf_dl_ops; 1235 1236 dl = devlink_alloc(devlink_ops, sizeof(struct bnxt_dl), &bp->pdev->dev); 1237 if (!dl) { 1238 netdev_warn(bp->dev, "devlink_alloc failed\n"); 1239 return -ENOMEM; 1240 } 1241 1242 bp->dl = dl; 1243 bp_dl = devlink_priv(dl); 1244 bp_dl->bp = bp; 1245 bnxt_dl_set_remote_reset(dl, true); 1246 1247 /* Add switchdev eswitch mode setting, if SRIOV supported */ 1248 if (pci_find_ext_capability(bp->pdev, PCI_EXT_CAP_ID_SRIOV) && 1249 bp->hwrm_spec_code > 0x10803) 1250 bp->eswitch_mode = DEVLINK_ESWITCH_MODE_LEGACY; 1251 1252 if (!BNXT_PF(bp)) 1253 goto out; 1254 1255 attrs.flavour = DEVLINK_PORT_FLAVOUR_PHYSICAL; 1256 attrs.phys.port_number = bp->pf.port_id; 1257 memcpy(attrs.switch_id.id, bp->dsn, sizeof(bp->dsn)); 1258 attrs.switch_id.id_len = sizeof(bp->dsn); 1259 devlink_port_attrs_set(&bp->dl_port, &attrs); 1260 rc = devlink_port_register(dl, &bp->dl_port, bp->pf.port_id); 1261 if (rc) { 1262 netdev_err(bp->dev, "devlink_port_register failed\n"); 1263 goto err_dl_free; 1264 } 1265 1266 rc = bnxt_dl_params_register(bp); 1267 if (rc) 1268 goto err_dl_port_unreg; 1269 1270 out: 1271 devlink_register(dl); 1272 return 0; 1273 1274 err_dl_port_unreg: 1275 devlink_port_unregister(&bp->dl_port); 1276 err_dl_free: 1277 devlink_free(dl); 1278 return rc; 1279 } 1280 1281 void bnxt_dl_unregister(struct bnxt *bp) 1282 { 1283 struct devlink *dl = bp->dl; 1284 1285 devlink_unregister(dl); 1286 if (BNXT_PF(bp)) { 1287 bnxt_dl_params_unregister(bp); 1288 devlink_port_unregister(&bp->dl_port); 1289 } 1290 devlink_free(dl); 1291 } 1292