1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Implement the AER root port service driver. The driver registers an IRQ 4 * handler. When a root port triggers an AER interrupt, the IRQ handler 5 * collects root port status and schedules work. 6 * 7 * Copyright (C) 2006 Intel Corp. 8 * Tom Long Nguyen (tom.l.nguyen@intel.com) 9 * Zhang Yanmin (yanmin.zhang@intel.com) 10 * 11 * (C) Copyright 2009 Hewlett-Packard Development Company, L.P. 12 * Andrew Patterson <andrew.patterson@hp.com> 13 */ 14 15 #define pr_fmt(fmt) "AER: " fmt 16 #define dev_fmt pr_fmt 17 18 #include <linux/bitops.h> 19 #include <linux/cper.h> 20 #include <linux/pci.h> 21 #include <linux/pci-acpi.h> 22 #include <linux/sched.h> 23 #include <linux/kernel.h> 24 #include <linux/errno.h> 25 #include <linux/pm.h> 26 #include <linux/init.h> 27 #include <linux/interrupt.h> 28 #include <linux/delay.h> 29 #include <linux/kfifo.h> 30 #include <linux/slab.h> 31 #include <acpi/apei.h> 32 #include <acpi/ghes.h> 33 #include <ras/ras_event.h> 34 35 #include "../pci.h" 36 #include "portdrv.h" 37 38 #define AER_ERROR_SOURCES_MAX 128 39 40 #define AER_MAX_TYPEOF_COR_ERRS 16 /* as per PCI_ERR_COR_STATUS */ 41 #define AER_MAX_TYPEOF_UNCOR_ERRS 27 /* as per PCI_ERR_UNCOR_STATUS*/ 42 43 struct aer_err_source { 44 unsigned int status; 45 unsigned int id; 46 }; 47 48 struct aer_rpc { 49 struct pci_dev *rpd; /* Root Port device */ 50 DECLARE_KFIFO(aer_fifo, struct aer_err_source, AER_ERROR_SOURCES_MAX); 51 }; 52 53 /* AER stats for the device */ 54 struct aer_stats { 55 56 /* 57 * Fields for all AER capable devices. They indicate the errors 58 * "as seen by this device". Note that this may mean that if an 59 * end point is causing problems, the AER counters may increment 60 * at its link partner (e.g. root port) because the errors will be 61 * "seen" by the link partner and not the problematic end point 62 * itself (which may report all counters as 0 as it never saw any 63 * problems). 64 */ 65 /* Counters for different type of correctable errors */ 66 u64 dev_cor_errs[AER_MAX_TYPEOF_COR_ERRS]; 67 /* Counters for different type of fatal uncorrectable errors */ 68 u64 dev_fatal_errs[AER_MAX_TYPEOF_UNCOR_ERRS]; 69 /* Counters for different type of nonfatal uncorrectable errors */ 70 u64 dev_nonfatal_errs[AER_MAX_TYPEOF_UNCOR_ERRS]; 71 /* Total number of ERR_COR sent by this device */ 72 u64 dev_total_cor_errs; 73 /* Total number of ERR_FATAL sent by this device */ 74 u64 dev_total_fatal_errs; 75 /* Total number of ERR_NONFATAL sent by this device */ 76 u64 dev_total_nonfatal_errs; 77 78 /* 79 * Fields for Root ports & root complex event collectors only, these 80 * indicate the total number of ERR_COR, ERR_FATAL, and ERR_NONFATAL 81 * messages received by the root port / event collector, INCLUDING the 82 * ones that are generated internally (by the rootport itself) 83 */ 84 u64 rootport_total_cor_errs; 85 u64 rootport_total_fatal_errs; 86 u64 rootport_total_nonfatal_errs; 87 }; 88 89 #define AER_LOG_TLP_MASKS (PCI_ERR_UNC_POISON_TLP| \ 90 PCI_ERR_UNC_ECRC| \ 91 PCI_ERR_UNC_UNSUP| \ 92 PCI_ERR_UNC_COMP_ABORT| \ 93 PCI_ERR_UNC_UNX_COMP| \ 94 PCI_ERR_UNC_MALF_TLP) 95 96 #define SYSTEM_ERROR_INTR_ON_MESG_MASK (PCI_EXP_RTCTL_SECEE| \ 97 PCI_EXP_RTCTL_SENFEE| \ 98 PCI_EXP_RTCTL_SEFEE) 99 #define ROOT_PORT_INTR_ON_MESG_MASK (PCI_ERR_ROOT_CMD_COR_EN| \ 100 PCI_ERR_ROOT_CMD_NONFATAL_EN| \ 101 PCI_ERR_ROOT_CMD_FATAL_EN) 102 #define ERR_COR_ID(d) (d & 0xffff) 103 #define ERR_UNCOR_ID(d) (d >> 16) 104 105 #define AER_ERR_STATUS_MASK (PCI_ERR_ROOT_UNCOR_RCV | \ 106 PCI_ERR_ROOT_COR_RCV | \ 107 PCI_ERR_ROOT_MULTI_COR_RCV | \ 108 PCI_ERR_ROOT_MULTI_UNCOR_RCV) 109 110 static int pcie_aer_disable; 111 static pci_ers_result_t aer_root_reset(struct pci_dev *dev); 112 113 void pci_no_aer(void) 114 { 115 pcie_aer_disable = 1; 116 } 117 118 bool pci_aer_available(void) 119 { 120 return !pcie_aer_disable && pci_msi_enabled(); 121 } 122 123 #ifdef CONFIG_PCIE_ECRC 124 125 #define ECRC_POLICY_DEFAULT 0 /* ECRC set by BIOS */ 126 #define ECRC_POLICY_OFF 1 /* ECRC off for performance */ 127 #define ECRC_POLICY_ON 2 /* ECRC on for data integrity */ 128 129 static int ecrc_policy = ECRC_POLICY_DEFAULT; 130 131 static const char * const ecrc_policy_str[] = { 132 [ECRC_POLICY_DEFAULT] = "bios", 133 [ECRC_POLICY_OFF] = "off", 134 [ECRC_POLICY_ON] = "on" 135 }; 136 137 /** 138 * enable_ecrc_checking - enable PCIe ECRC checking for a device 139 * @dev: the PCI device 140 * 141 * Returns 0 on success, or negative on failure. 142 */ 143 static int enable_ecrc_checking(struct pci_dev *dev) 144 { 145 int aer = dev->aer_cap; 146 u32 reg32; 147 148 if (!aer) 149 return -ENODEV; 150 151 pci_read_config_dword(dev, aer + PCI_ERR_CAP, ®32); 152 if (reg32 & PCI_ERR_CAP_ECRC_GENC) 153 reg32 |= PCI_ERR_CAP_ECRC_GENE; 154 if (reg32 & PCI_ERR_CAP_ECRC_CHKC) 155 reg32 |= PCI_ERR_CAP_ECRC_CHKE; 156 pci_write_config_dword(dev, aer + PCI_ERR_CAP, reg32); 157 158 return 0; 159 } 160 161 /** 162 * disable_ecrc_checking - disables PCIe ECRC checking for a device 163 * @dev: the PCI device 164 * 165 * Returns 0 on success, or negative on failure. 166 */ 167 static int disable_ecrc_checking(struct pci_dev *dev) 168 { 169 int aer = dev->aer_cap; 170 u32 reg32; 171 172 if (!aer) 173 return -ENODEV; 174 175 pci_read_config_dword(dev, aer + PCI_ERR_CAP, ®32); 176 reg32 &= ~(PCI_ERR_CAP_ECRC_GENE | PCI_ERR_CAP_ECRC_CHKE); 177 pci_write_config_dword(dev, aer + PCI_ERR_CAP, reg32); 178 179 return 0; 180 } 181 182 /** 183 * pcie_set_ecrc_checking - set/unset PCIe ECRC checking for a device based on global policy 184 * @dev: the PCI device 185 */ 186 void pcie_set_ecrc_checking(struct pci_dev *dev) 187 { 188 if (!pcie_aer_is_native(dev)) 189 return; 190 191 switch (ecrc_policy) { 192 case ECRC_POLICY_DEFAULT: 193 return; 194 case ECRC_POLICY_OFF: 195 disable_ecrc_checking(dev); 196 break; 197 case ECRC_POLICY_ON: 198 enable_ecrc_checking(dev); 199 break; 200 default: 201 return; 202 } 203 } 204 205 /** 206 * pcie_ecrc_get_policy - parse kernel command-line ecrc option 207 * @str: ECRC policy from kernel command line to use 208 */ 209 void pcie_ecrc_get_policy(char *str) 210 { 211 int i; 212 213 i = match_string(ecrc_policy_str, ARRAY_SIZE(ecrc_policy_str), str); 214 if (i < 0) 215 return; 216 217 ecrc_policy = i; 218 } 219 #endif /* CONFIG_PCIE_ECRC */ 220 221 #define PCI_EXP_AER_FLAGS (PCI_EXP_DEVCTL_CERE | PCI_EXP_DEVCTL_NFERE | \ 222 PCI_EXP_DEVCTL_FERE | PCI_EXP_DEVCTL_URRE) 223 224 int pcie_aer_is_native(struct pci_dev *dev) 225 { 226 struct pci_host_bridge *host = pci_find_host_bridge(dev->bus); 227 228 if (!dev->aer_cap) 229 return 0; 230 231 return pcie_ports_native || host->native_aer; 232 } 233 EXPORT_SYMBOL_NS_GPL(pcie_aer_is_native, CXL); 234 235 static int pci_enable_pcie_error_reporting(struct pci_dev *dev) 236 { 237 int rc; 238 239 if (!pcie_aer_is_native(dev)) 240 return -EIO; 241 242 rc = pcie_capability_set_word(dev, PCI_EXP_DEVCTL, PCI_EXP_AER_FLAGS); 243 return pcibios_err_to_errno(rc); 244 } 245 246 int pci_aer_clear_nonfatal_status(struct pci_dev *dev) 247 { 248 int aer = dev->aer_cap; 249 u32 status, sev; 250 251 if (!pcie_aer_is_native(dev)) 252 return -EIO; 253 254 /* Clear status bits for ERR_NONFATAL errors only */ 255 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, &status); 256 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_SEVER, &sev); 257 status &= ~sev; 258 if (status) 259 pci_write_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, status); 260 261 return 0; 262 } 263 EXPORT_SYMBOL_GPL(pci_aer_clear_nonfatal_status); 264 265 void pci_aer_clear_fatal_status(struct pci_dev *dev) 266 { 267 int aer = dev->aer_cap; 268 u32 status, sev; 269 270 if (!pcie_aer_is_native(dev)) 271 return; 272 273 /* Clear status bits for ERR_FATAL errors only */ 274 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, &status); 275 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_SEVER, &sev); 276 status &= sev; 277 if (status) 278 pci_write_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, status); 279 } 280 281 /** 282 * pci_aer_raw_clear_status - Clear AER error registers. 283 * @dev: the PCI device 284 * 285 * Clearing AER error status registers unconditionally, regardless of 286 * whether they're owned by firmware or the OS. 287 * 288 * Returns 0 on success, or negative on failure. 289 */ 290 int pci_aer_raw_clear_status(struct pci_dev *dev) 291 { 292 int aer = dev->aer_cap; 293 u32 status; 294 int port_type; 295 296 if (!aer) 297 return -EIO; 298 299 port_type = pci_pcie_type(dev); 300 if (port_type == PCI_EXP_TYPE_ROOT_PORT || 301 port_type == PCI_EXP_TYPE_RC_EC) { 302 pci_read_config_dword(dev, aer + PCI_ERR_ROOT_STATUS, &status); 303 pci_write_config_dword(dev, aer + PCI_ERR_ROOT_STATUS, status); 304 } 305 306 pci_read_config_dword(dev, aer + PCI_ERR_COR_STATUS, &status); 307 pci_write_config_dword(dev, aer + PCI_ERR_COR_STATUS, status); 308 309 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, &status); 310 pci_write_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, status); 311 312 return 0; 313 } 314 315 int pci_aer_clear_status(struct pci_dev *dev) 316 { 317 if (!pcie_aer_is_native(dev)) 318 return -EIO; 319 320 return pci_aer_raw_clear_status(dev); 321 } 322 323 void pci_save_aer_state(struct pci_dev *dev) 324 { 325 int aer = dev->aer_cap; 326 struct pci_cap_saved_state *save_state; 327 u32 *cap; 328 329 if (!aer) 330 return; 331 332 save_state = pci_find_saved_ext_cap(dev, PCI_EXT_CAP_ID_ERR); 333 if (!save_state) 334 return; 335 336 cap = &save_state->cap.data[0]; 337 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_MASK, cap++); 338 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_SEVER, cap++); 339 pci_read_config_dword(dev, aer + PCI_ERR_COR_MASK, cap++); 340 pci_read_config_dword(dev, aer + PCI_ERR_CAP, cap++); 341 if (pcie_cap_has_rtctl(dev)) 342 pci_read_config_dword(dev, aer + PCI_ERR_ROOT_COMMAND, cap++); 343 } 344 345 void pci_restore_aer_state(struct pci_dev *dev) 346 { 347 int aer = dev->aer_cap; 348 struct pci_cap_saved_state *save_state; 349 u32 *cap; 350 351 if (!aer) 352 return; 353 354 save_state = pci_find_saved_ext_cap(dev, PCI_EXT_CAP_ID_ERR); 355 if (!save_state) 356 return; 357 358 cap = &save_state->cap.data[0]; 359 pci_write_config_dword(dev, aer + PCI_ERR_UNCOR_MASK, *cap++); 360 pci_write_config_dword(dev, aer + PCI_ERR_UNCOR_SEVER, *cap++); 361 pci_write_config_dword(dev, aer + PCI_ERR_COR_MASK, *cap++); 362 pci_write_config_dword(dev, aer + PCI_ERR_CAP, *cap++); 363 if (pcie_cap_has_rtctl(dev)) 364 pci_write_config_dword(dev, aer + PCI_ERR_ROOT_COMMAND, *cap++); 365 } 366 367 void pci_aer_init(struct pci_dev *dev) 368 { 369 int n; 370 371 dev->aer_cap = pci_find_ext_capability(dev, PCI_EXT_CAP_ID_ERR); 372 if (!dev->aer_cap) 373 return; 374 375 dev->aer_stats = kzalloc(sizeof(struct aer_stats), GFP_KERNEL); 376 377 /* 378 * We save/restore PCI_ERR_UNCOR_MASK, PCI_ERR_UNCOR_SEVER, 379 * PCI_ERR_COR_MASK, and PCI_ERR_CAP. Root and Root Complex Event 380 * Collectors also implement PCI_ERR_ROOT_COMMAND (PCIe r5.0, sec 381 * 7.8.4). 382 */ 383 n = pcie_cap_has_rtctl(dev) ? 5 : 4; 384 pci_add_ext_cap_save_buffer(dev, PCI_EXT_CAP_ID_ERR, sizeof(u32) * n); 385 386 pci_aer_clear_status(dev); 387 388 if (pci_aer_available()) 389 pci_enable_pcie_error_reporting(dev); 390 391 pcie_set_ecrc_checking(dev); 392 } 393 394 void pci_aer_exit(struct pci_dev *dev) 395 { 396 kfree(dev->aer_stats); 397 dev->aer_stats = NULL; 398 } 399 400 #define AER_AGENT_RECEIVER 0 401 #define AER_AGENT_REQUESTER 1 402 #define AER_AGENT_COMPLETER 2 403 #define AER_AGENT_TRANSMITTER 3 404 405 #define AER_AGENT_REQUESTER_MASK(t) ((t == AER_CORRECTABLE) ? \ 406 0 : (PCI_ERR_UNC_COMP_TIME|PCI_ERR_UNC_UNSUP)) 407 #define AER_AGENT_COMPLETER_MASK(t) ((t == AER_CORRECTABLE) ? \ 408 0 : PCI_ERR_UNC_COMP_ABORT) 409 #define AER_AGENT_TRANSMITTER_MASK(t) ((t == AER_CORRECTABLE) ? \ 410 (PCI_ERR_COR_REP_ROLL|PCI_ERR_COR_REP_TIMER) : 0) 411 412 #define AER_GET_AGENT(t, e) \ 413 ((e & AER_AGENT_COMPLETER_MASK(t)) ? AER_AGENT_COMPLETER : \ 414 (e & AER_AGENT_REQUESTER_MASK(t)) ? AER_AGENT_REQUESTER : \ 415 (e & AER_AGENT_TRANSMITTER_MASK(t)) ? AER_AGENT_TRANSMITTER : \ 416 AER_AGENT_RECEIVER) 417 418 #define AER_PHYSICAL_LAYER_ERROR 0 419 #define AER_DATA_LINK_LAYER_ERROR 1 420 #define AER_TRANSACTION_LAYER_ERROR 2 421 422 #define AER_PHYSICAL_LAYER_ERROR_MASK(t) ((t == AER_CORRECTABLE) ? \ 423 PCI_ERR_COR_RCVR : 0) 424 #define AER_DATA_LINK_LAYER_ERROR_MASK(t) ((t == AER_CORRECTABLE) ? \ 425 (PCI_ERR_COR_BAD_TLP| \ 426 PCI_ERR_COR_BAD_DLLP| \ 427 PCI_ERR_COR_REP_ROLL| \ 428 PCI_ERR_COR_REP_TIMER) : PCI_ERR_UNC_DLP) 429 430 #define AER_GET_LAYER_ERROR(t, e) \ 431 ((e & AER_PHYSICAL_LAYER_ERROR_MASK(t)) ? AER_PHYSICAL_LAYER_ERROR : \ 432 (e & AER_DATA_LINK_LAYER_ERROR_MASK(t)) ? AER_DATA_LINK_LAYER_ERROR : \ 433 AER_TRANSACTION_LAYER_ERROR) 434 435 /* 436 * AER error strings 437 */ 438 static const char *aer_error_severity_string[] = { 439 "Uncorrected (Non-Fatal)", 440 "Uncorrected (Fatal)", 441 "Corrected" 442 }; 443 444 static const char *aer_error_layer[] = { 445 "Physical Layer", 446 "Data Link Layer", 447 "Transaction Layer" 448 }; 449 450 static const char *aer_correctable_error_string[] = { 451 "RxErr", /* Bit Position 0 */ 452 NULL, 453 NULL, 454 NULL, 455 NULL, 456 NULL, 457 "BadTLP", /* Bit Position 6 */ 458 "BadDLLP", /* Bit Position 7 */ 459 "Rollover", /* Bit Position 8 */ 460 NULL, 461 NULL, 462 NULL, 463 "Timeout", /* Bit Position 12 */ 464 "NonFatalErr", /* Bit Position 13 */ 465 "CorrIntErr", /* Bit Position 14 */ 466 "HeaderOF", /* Bit Position 15 */ 467 NULL, /* Bit Position 16 */ 468 NULL, /* Bit Position 17 */ 469 NULL, /* Bit Position 18 */ 470 NULL, /* Bit Position 19 */ 471 NULL, /* Bit Position 20 */ 472 NULL, /* Bit Position 21 */ 473 NULL, /* Bit Position 22 */ 474 NULL, /* Bit Position 23 */ 475 NULL, /* Bit Position 24 */ 476 NULL, /* Bit Position 25 */ 477 NULL, /* Bit Position 26 */ 478 NULL, /* Bit Position 27 */ 479 NULL, /* Bit Position 28 */ 480 NULL, /* Bit Position 29 */ 481 NULL, /* Bit Position 30 */ 482 NULL, /* Bit Position 31 */ 483 }; 484 485 static const char *aer_uncorrectable_error_string[] = { 486 "Undefined", /* Bit Position 0 */ 487 NULL, 488 NULL, 489 NULL, 490 "DLP", /* Bit Position 4 */ 491 "SDES", /* Bit Position 5 */ 492 NULL, 493 NULL, 494 NULL, 495 NULL, 496 NULL, 497 NULL, 498 "TLP", /* Bit Position 12 */ 499 "FCP", /* Bit Position 13 */ 500 "CmpltTO", /* Bit Position 14 */ 501 "CmpltAbrt", /* Bit Position 15 */ 502 "UnxCmplt", /* Bit Position 16 */ 503 "RxOF", /* Bit Position 17 */ 504 "MalfTLP", /* Bit Position 18 */ 505 "ECRC", /* Bit Position 19 */ 506 "UnsupReq", /* Bit Position 20 */ 507 "ACSViol", /* Bit Position 21 */ 508 "UncorrIntErr", /* Bit Position 22 */ 509 "BlockedTLP", /* Bit Position 23 */ 510 "AtomicOpBlocked", /* Bit Position 24 */ 511 "TLPBlockedErr", /* Bit Position 25 */ 512 "PoisonTLPBlocked", /* Bit Position 26 */ 513 NULL, /* Bit Position 27 */ 514 NULL, /* Bit Position 28 */ 515 NULL, /* Bit Position 29 */ 516 NULL, /* Bit Position 30 */ 517 NULL, /* Bit Position 31 */ 518 }; 519 520 static const char *aer_agent_string[] = { 521 "Receiver ID", 522 "Requester ID", 523 "Completer ID", 524 "Transmitter ID" 525 }; 526 527 #define aer_stats_dev_attr(name, stats_array, strings_array, \ 528 total_string, total_field) \ 529 static ssize_t \ 530 name##_show(struct device *dev, struct device_attribute *attr, \ 531 char *buf) \ 532 { \ 533 unsigned int i; \ 534 struct pci_dev *pdev = to_pci_dev(dev); \ 535 u64 *stats = pdev->aer_stats->stats_array; \ 536 size_t len = 0; \ 537 \ 538 for (i = 0; i < ARRAY_SIZE(pdev->aer_stats->stats_array); i++) {\ 539 if (strings_array[i]) \ 540 len += sysfs_emit_at(buf, len, "%s %llu\n", \ 541 strings_array[i], \ 542 stats[i]); \ 543 else if (stats[i]) \ 544 len += sysfs_emit_at(buf, len, \ 545 #stats_array "_bit[%d] %llu\n",\ 546 i, stats[i]); \ 547 } \ 548 len += sysfs_emit_at(buf, len, "TOTAL_%s %llu\n", total_string, \ 549 pdev->aer_stats->total_field); \ 550 return len; \ 551 } \ 552 static DEVICE_ATTR_RO(name) 553 554 aer_stats_dev_attr(aer_dev_correctable, dev_cor_errs, 555 aer_correctable_error_string, "ERR_COR", 556 dev_total_cor_errs); 557 aer_stats_dev_attr(aer_dev_fatal, dev_fatal_errs, 558 aer_uncorrectable_error_string, "ERR_FATAL", 559 dev_total_fatal_errs); 560 aer_stats_dev_attr(aer_dev_nonfatal, dev_nonfatal_errs, 561 aer_uncorrectable_error_string, "ERR_NONFATAL", 562 dev_total_nonfatal_errs); 563 564 #define aer_stats_rootport_attr(name, field) \ 565 static ssize_t \ 566 name##_show(struct device *dev, struct device_attribute *attr, \ 567 char *buf) \ 568 { \ 569 struct pci_dev *pdev = to_pci_dev(dev); \ 570 return sysfs_emit(buf, "%llu\n", pdev->aer_stats->field); \ 571 } \ 572 static DEVICE_ATTR_RO(name) 573 574 aer_stats_rootport_attr(aer_rootport_total_err_cor, 575 rootport_total_cor_errs); 576 aer_stats_rootport_attr(aer_rootport_total_err_fatal, 577 rootport_total_fatal_errs); 578 aer_stats_rootport_attr(aer_rootport_total_err_nonfatal, 579 rootport_total_nonfatal_errs); 580 581 static struct attribute *aer_stats_attrs[] __ro_after_init = { 582 &dev_attr_aer_dev_correctable.attr, 583 &dev_attr_aer_dev_fatal.attr, 584 &dev_attr_aer_dev_nonfatal.attr, 585 &dev_attr_aer_rootport_total_err_cor.attr, 586 &dev_attr_aer_rootport_total_err_fatal.attr, 587 &dev_attr_aer_rootport_total_err_nonfatal.attr, 588 NULL 589 }; 590 591 static umode_t aer_stats_attrs_are_visible(struct kobject *kobj, 592 struct attribute *a, int n) 593 { 594 struct device *dev = kobj_to_dev(kobj); 595 struct pci_dev *pdev = to_pci_dev(dev); 596 597 if (!pdev->aer_stats) 598 return 0; 599 600 if ((a == &dev_attr_aer_rootport_total_err_cor.attr || 601 a == &dev_attr_aer_rootport_total_err_fatal.attr || 602 a == &dev_attr_aer_rootport_total_err_nonfatal.attr) && 603 ((pci_pcie_type(pdev) != PCI_EXP_TYPE_ROOT_PORT) && 604 (pci_pcie_type(pdev) != PCI_EXP_TYPE_RC_EC))) 605 return 0; 606 607 return a->mode; 608 } 609 610 const struct attribute_group aer_stats_attr_group = { 611 .attrs = aer_stats_attrs, 612 .is_visible = aer_stats_attrs_are_visible, 613 }; 614 615 static void pci_dev_aer_stats_incr(struct pci_dev *pdev, 616 struct aer_err_info *info) 617 { 618 unsigned long status = info->status & ~info->mask; 619 int i, max = -1; 620 u64 *counter = NULL; 621 struct aer_stats *aer_stats = pdev->aer_stats; 622 623 if (!aer_stats) 624 return; 625 626 switch (info->severity) { 627 case AER_CORRECTABLE: 628 aer_stats->dev_total_cor_errs++; 629 counter = &aer_stats->dev_cor_errs[0]; 630 max = AER_MAX_TYPEOF_COR_ERRS; 631 break; 632 case AER_NONFATAL: 633 aer_stats->dev_total_nonfatal_errs++; 634 counter = &aer_stats->dev_nonfatal_errs[0]; 635 max = AER_MAX_TYPEOF_UNCOR_ERRS; 636 break; 637 case AER_FATAL: 638 aer_stats->dev_total_fatal_errs++; 639 counter = &aer_stats->dev_fatal_errs[0]; 640 max = AER_MAX_TYPEOF_UNCOR_ERRS; 641 break; 642 } 643 644 for_each_set_bit(i, &status, max) 645 counter[i]++; 646 } 647 648 static void pci_rootport_aer_stats_incr(struct pci_dev *pdev, 649 struct aer_err_source *e_src) 650 { 651 struct aer_stats *aer_stats = pdev->aer_stats; 652 653 if (!aer_stats) 654 return; 655 656 if (e_src->status & PCI_ERR_ROOT_COR_RCV) 657 aer_stats->rootport_total_cor_errs++; 658 659 if (e_src->status & PCI_ERR_ROOT_UNCOR_RCV) { 660 if (e_src->status & PCI_ERR_ROOT_FATAL_RCV) 661 aer_stats->rootport_total_fatal_errs++; 662 else 663 aer_stats->rootport_total_nonfatal_errs++; 664 } 665 } 666 667 static void __print_tlp_header(struct pci_dev *dev, 668 struct aer_header_log_regs *t) 669 { 670 pci_err(dev, " TLP Header: %08x %08x %08x %08x\n", 671 t->dw0, t->dw1, t->dw2, t->dw3); 672 } 673 674 static void __aer_print_error(struct pci_dev *dev, 675 struct aer_err_info *info) 676 { 677 const char **strings; 678 unsigned long status = info->status & ~info->mask; 679 const char *level, *errmsg; 680 int i; 681 682 if (info->severity == AER_CORRECTABLE) { 683 strings = aer_correctable_error_string; 684 level = KERN_WARNING; 685 } else { 686 strings = aer_uncorrectable_error_string; 687 level = KERN_ERR; 688 } 689 690 for_each_set_bit(i, &status, 32) { 691 errmsg = strings[i]; 692 if (!errmsg) 693 errmsg = "Unknown Error Bit"; 694 695 pci_printk(level, dev, " [%2d] %-22s%s\n", i, errmsg, 696 info->first_error == i ? " (First)" : ""); 697 } 698 pci_dev_aer_stats_incr(dev, info); 699 } 700 701 void aer_print_error(struct pci_dev *dev, struct aer_err_info *info) 702 { 703 int layer, agent; 704 int id = pci_dev_id(dev); 705 const char *level; 706 707 if (!info->status) { 708 pci_err(dev, "PCIe Bus Error: severity=%s, type=Inaccessible, (Unregistered Agent ID)\n", 709 aer_error_severity_string[info->severity]); 710 goto out; 711 } 712 713 layer = AER_GET_LAYER_ERROR(info->severity, info->status); 714 agent = AER_GET_AGENT(info->severity, info->status); 715 716 level = (info->severity == AER_CORRECTABLE) ? KERN_WARNING : KERN_ERR; 717 718 pci_printk(level, dev, "PCIe Bus Error: severity=%s, type=%s, (%s)\n", 719 aer_error_severity_string[info->severity], 720 aer_error_layer[layer], aer_agent_string[agent]); 721 722 pci_printk(level, dev, " device [%04x:%04x] error status/mask=%08x/%08x\n", 723 dev->vendor, dev->device, info->status, info->mask); 724 725 __aer_print_error(dev, info); 726 727 if (info->tlp_header_valid) 728 __print_tlp_header(dev, &info->tlp); 729 730 out: 731 if (info->id && info->error_dev_num > 1 && info->id == id) 732 pci_err(dev, " Error of this Agent is reported first\n"); 733 734 trace_aer_event(dev_name(&dev->dev), (info->status & ~info->mask), 735 info->severity, info->tlp_header_valid, &info->tlp); 736 } 737 738 static void aer_print_port_info(struct pci_dev *dev, struct aer_err_info *info) 739 { 740 u8 bus = info->id >> 8; 741 u8 devfn = info->id & 0xff; 742 743 pci_info(dev, "%s%s error received: %04x:%02x:%02x.%d\n", 744 info->multi_error_valid ? "Multiple " : "", 745 aer_error_severity_string[info->severity], 746 pci_domain_nr(dev->bus), bus, PCI_SLOT(devfn), 747 PCI_FUNC(devfn)); 748 } 749 750 #ifdef CONFIG_ACPI_APEI_PCIEAER 751 int cper_severity_to_aer(int cper_severity) 752 { 753 switch (cper_severity) { 754 case CPER_SEV_RECOVERABLE: 755 return AER_NONFATAL; 756 case CPER_SEV_FATAL: 757 return AER_FATAL; 758 default: 759 return AER_CORRECTABLE; 760 } 761 } 762 EXPORT_SYMBOL_GPL(cper_severity_to_aer); 763 764 void cper_print_aer(struct pci_dev *dev, int aer_severity, 765 struct aer_capability_regs *aer) 766 { 767 int layer, agent, tlp_header_valid = 0; 768 u32 status, mask; 769 struct aer_err_info info; 770 771 if (aer_severity == AER_CORRECTABLE) { 772 status = aer->cor_status; 773 mask = aer->cor_mask; 774 } else { 775 status = aer->uncor_status; 776 mask = aer->uncor_mask; 777 tlp_header_valid = status & AER_LOG_TLP_MASKS; 778 } 779 780 layer = AER_GET_LAYER_ERROR(aer_severity, status); 781 agent = AER_GET_AGENT(aer_severity, status); 782 783 memset(&info, 0, sizeof(info)); 784 info.severity = aer_severity; 785 info.status = status; 786 info.mask = mask; 787 info.first_error = PCI_ERR_CAP_FEP(aer->cap_control); 788 789 pci_err(dev, "aer_status: 0x%08x, aer_mask: 0x%08x\n", status, mask); 790 __aer_print_error(dev, &info); 791 pci_err(dev, "aer_layer=%s, aer_agent=%s\n", 792 aer_error_layer[layer], aer_agent_string[agent]); 793 794 if (aer_severity != AER_CORRECTABLE) 795 pci_err(dev, "aer_uncor_severity: 0x%08x\n", 796 aer->uncor_severity); 797 798 if (tlp_header_valid) 799 __print_tlp_header(dev, &aer->header_log); 800 801 trace_aer_event(dev_name(&dev->dev), (status & ~mask), 802 aer_severity, tlp_header_valid, &aer->header_log); 803 } 804 #endif 805 806 /** 807 * add_error_device - list device to be handled 808 * @e_info: pointer to error info 809 * @dev: pointer to pci_dev to be added 810 */ 811 static int add_error_device(struct aer_err_info *e_info, struct pci_dev *dev) 812 { 813 if (e_info->error_dev_num < AER_MAX_MULTI_ERR_DEVICES) { 814 e_info->dev[e_info->error_dev_num] = pci_dev_get(dev); 815 e_info->error_dev_num++; 816 return 0; 817 } 818 return -ENOSPC; 819 } 820 821 /** 822 * is_error_source - check whether the device is source of reported error 823 * @dev: pointer to pci_dev to be checked 824 * @e_info: pointer to reported error info 825 */ 826 static bool is_error_source(struct pci_dev *dev, struct aer_err_info *e_info) 827 { 828 int aer = dev->aer_cap; 829 u32 status, mask; 830 u16 reg16; 831 832 /* 833 * When bus id is equal to 0, it might be a bad id 834 * reported by root port. 835 */ 836 if ((PCI_BUS_NUM(e_info->id) != 0) && 837 !(dev->bus->bus_flags & PCI_BUS_FLAGS_NO_AERSID)) { 838 /* Device ID match? */ 839 if (e_info->id == pci_dev_id(dev)) 840 return true; 841 842 /* Continue id comparing if there is no multiple error */ 843 if (!e_info->multi_error_valid) 844 return false; 845 } 846 847 /* 848 * When either 849 * 1) bus id is equal to 0. Some ports might lose the bus 850 * id of error source id; 851 * 2) bus flag PCI_BUS_FLAGS_NO_AERSID is set 852 * 3) There are multiple errors and prior ID comparing fails; 853 * We check AER status registers to find possible reporter. 854 */ 855 if (atomic_read(&dev->enable_cnt) == 0) 856 return false; 857 858 /* Check if AER is enabled */ 859 pcie_capability_read_word(dev, PCI_EXP_DEVCTL, ®16); 860 if (!(reg16 & PCI_EXP_AER_FLAGS)) 861 return false; 862 863 if (!aer) 864 return false; 865 866 /* Check if error is recorded */ 867 if (e_info->severity == AER_CORRECTABLE) { 868 pci_read_config_dword(dev, aer + PCI_ERR_COR_STATUS, &status); 869 pci_read_config_dword(dev, aer + PCI_ERR_COR_MASK, &mask); 870 } else { 871 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, &status); 872 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_MASK, &mask); 873 } 874 if (status & ~mask) 875 return true; 876 877 return false; 878 } 879 880 static int find_device_iter(struct pci_dev *dev, void *data) 881 { 882 struct aer_err_info *e_info = (struct aer_err_info *)data; 883 884 if (is_error_source(dev, e_info)) { 885 /* List this device */ 886 if (add_error_device(e_info, dev)) { 887 /* We cannot handle more... Stop iteration */ 888 /* TODO: Should print error message here? */ 889 return 1; 890 } 891 892 /* If there is only a single error, stop iteration */ 893 if (!e_info->multi_error_valid) 894 return 1; 895 } 896 return 0; 897 } 898 899 /** 900 * find_source_device - search through device hierarchy for source device 901 * @parent: pointer to Root Port pci_dev data structure 902 * @e_info: including detailed error information such like id 903 * 904 * Return true if found. 905 * 906 * Invoked by DPC when error is detected at the Root Port. 907 * Caller of this function must set id, severity, and multi_error_valid of 908 * struct aer_err_info pointed by @e_info properly. This function must fill 909 * e_info->error_dev_num and e_info->dev[], based on the given information. 910 */ 911 static bool find_source_device(struct pci_dev *parent, 912 struct aer_err_info *e_info) 913 { 914 struct pci_dev *dev = parent; 915 int result; 916 917 /* Must reset in this function */ 918 e_info->error_dev_num = 0; 919 920 /* Is Root Port an agent that sends error message? */ 921 result = find_device_iter(dev, e_info); 922 if (result) 923 return true; 924 925 if (pci_pcie_type(parent) == PCI_EXP_TYPE_RC_EC) 926 pcie_walk_rcec(parent, find_device_iter, e_info); 927 else 928 pci_walk_bus(parent->subordinate, find_device_iter, e_info); 929 930 if (!e_info->error_dev_num) { 931 pci_info(parent, "can't find device of ID%04x\n", e_info->id); 932 return false; 933 } 934 return true; 935 } 936 937 /** 938 * handle_error_source - handle logging error into an event log 939 * @dev: pointer to pci_dev data structure of error source device 940 * @info: comprehensive error information 941 * 942 * Invoked when an error being detected by Root Port. 943 */ 944 static void handle_error_source(struct pci_dev *dev, struct aer_err_info *info) 945 { 946 int aer = dev->aer_cap; 947 948 if (info->severity == AER_CORRECTABLE) { 949 /* 950 * Correctable error does not need software intervention. 951 * No need to go through error recovery process. 952 */ 953 if (aer) 954 pci_write_config_dword(dev, aer + PCI_ERR_COR_STATUS, 955 info->status); 956 if (pcie_aer_is_native(dev)) { 957 struct pci_driver *pdrv = dev->driver; 958 959 if (pdrv && pdrv->err_handler && 960 pdrv->err_handler->cor_error_detected) 961 pdrv->err_handler->cor_error_detected(dev); 962 pcie_clear_device_status(dev); 963 } 964 } else if (info->severity == AER_NONFATAL) 965 pcie_do_recovery(dev, pci_channel_io_normal, aer_root_reset); 966 else if (info->severity == AER_FATAL) 967 pcie_do_recovery(dev, pci_channel_io_frozen, aer_root_reset); 968 pci_dev_put(dev); 969 } 970 971 #ifdef CONFIG_ACPI_APEI_PCIEAER 972 973 #define AER_RECOVER_RING_SIZE 16 974 975 struct aer_recover_entry { 976 u8 bus; 977 u8 devfn; 978 u16 domain; 979 int severity; 980 struct aer_capability_regs *regs; 981 }; 982 983 static DEFINE_KFIFO(aer_recover_ring, struct aer_recover_entry, 984 AER_RECOVER_RING_SIZE); 985 986 static void aer_recover_work_func(struct work_struct *work) 987 { 988 struct aer_recover_entry entry; 989 struct pci_dev *pdev; 990 991 while (kfifo_get(&aer_recover_ring, &entry)) { 992 pdev = pci_get_domain_bus_and_slot(entry.domain, entry.bus, 993 entry.devfn); 994 if (!pdev) { 995 pr_err("no pci_dev for %04x:%02x:%02x.%x\n", 996 entry.domain, entry.bus, 997 PCI_SLOT(entry.devfn), PCI_FUNC(entry.devfn)); 998 continue; 999 } 1000 cper_print_aer(pdev, entry.severity, entry.regs); 1001 /* 1002 * Memory for aer_capability_regs(entry.regs) is being allocated from the 1003 * ghes_estatus_pool to protect it from overwriting when multiple sections 1004 * are present in the error status. Thus free the same after processing 1005 * the data. 1006 */ 1007 ghes_estatus_pool_region_free((unsigned long)entry.regs, 1008 sizeof(struct aer_capability_regs)); 1009 1010 if (entry.severity == AER_NONFATAL) 1011 pcie_do_recovery(pdev, pci_channel_io_normal, 1012 aer_root_reset); 1013 else if (entry.severity == AER_FATAL) 1014 pcie_do_recovery(pdev, pci_channel_io_frozen, 1015 aer_root_reset); 1016 pci_dev_put(pdev); 1017 } 1018 } 1019 1020 /* 1021 * Mutual exclusion for writers of aer_recover_ring, reader side don't 1022 * need lock, because there is only one reader and lock is not needed 1023 * between reader and writer. 1024 */ 1025 static DEFINE_SPINLOCK(aer_recover_ring_lock); 1026 static DECLARE_WORK(aer_recover_work, aer_recover_work_func); 1027 1028 void aer_recover_queue(int domain, unsigned int bus, unsigned int devfn, 1029 int severity, struct aer_capability_regs *aer_regs) 1030 { 1031 struct aer_recover_entry entry = { 1032 .bus = bus, 1033 .devfn = devfn, 1034 .domain = domain, 1035 .severity = severity, 1036 .regs = aer_regs, 1037 }; 1038 1039 if (kfifo_in_spinlocked(&aer_recover_ring, &entry, 1, 1040 &aer_recover_ring_lock)) 1041 schedule_work(&aer_recover_work); 1042 else 1043 pr_err("buffer overflow in recovery for %04x:%02x:%02x.%x\n", 1044 domain, bus, PCI_SLOT(devfn), PCI_FUNC(devfn)); 1045 } 1046 EXPORT_SYMBOL_GPL(aer_recover_queue); 1047 #endif 1048 1049 /** 1050 * aer_get_device_error_info - read error status from dev and store it to info 1051 * @dev: pointer to the device expected to have a error record 1052 * @info: pointer to structure to store the error record 1053 * 1054 * Return 1 on success, 0 on error. 1055 * 1056 * Note that @info is reused among all error devices. Clear fields properly. 1057 */ 1058 int aer_get_device_error_info(struct pci_dev *dev, struct aer_err_info *info) 1059 { 1060 int type = pci_pcie_type(dev); 1061 int aer = dev->aer_cap; 1062 int temp; 1063 1064 /* Must reset in this function */ 1065 info->status = 0; 1066 info->tlp_header_valid = 0; 1067 1068 /* The device might not support AER */ 1069 if (!aer) 1070 return 0; 1071 1072 if (info->severity == AER_CORRECTABLE) { 1073 pci_read_config_dword(dev, aer + PCI_ERR_COR_STATUS, 1074 &info->status); 1075 pci_read_config_dword(dev, aer + PCI_ERR_COR_MASK, 1076 &info->mask); 1077 if (!(info->status & ~info->mask)) 1078 return 0; 1079 } else if (type == PCI_EXP_TYPE_ROOT_PORT || 1080 type == PCI_EXP_TYPE_RC_EC || 1081 type == PCI_EXP_TYPE_DOWNSTREAM || 1082 info->severity == AER_NONFATAL) { 1083 1084 /* Link is still healthy for IO reads */ 1085 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_STATUS, 1086 &info->status); 1087 pci_read_config_dword(dev, aer + PCI_ERR_UNCOR_MASK, 1088 &info->mask); 1089 if (!(info->status & ~info->mask)) 1090 return 0; 1091 1092 /* Get First Error Pointer */ 1093 pci_read_config_dword(dev, aer + PCI_ERR_CAP, &temp); 1094 info->first_error = PCI_ERR_CAP_FEP(temp); 1095 1096 if (info->status & AER_LOG_TLP_MASKS) { 1097 info->tlp_header_valid = 1; 1098 pci_read_config_dword(dev, 1099 aer + PCI_ERR_HEADER_LOG, &info->tlp.dw0); 1100 pci_read_config_dword(dev, 1101 aer + PCI_ERR_HEADER_LOG + 4, &info->tlp.dw1); 1102 pci_read_config_dword(dev, 1103 aer + PCI_ERR_HEADER_LOG + 8, &info->tlp.dw2); 1104 pci_read_config_dword(dev, 1105 aer + PCI_ERR_HEADER_LOG + 12, &info->tlp.dw3); 1106 } 1107 } 1108 1109 return 1; 1110 } 1111 1112 static inline void aer_process_err_devices(struct aer_err_info *e_info) 1113 { 1114 int i; 1115 1116 /* Report all before handle them, not to lost records by reset etc. */ 1117 for (i = 0; i < e_info->error_dev_num && e_info->dev[i]; i++) { 1118 if (aer_get_device_error_info(e_info->dev[i], e_info)) 1119 aer_print_error(e_info->dev[i], e_info); 1120 } 1121 for (i = 0; i < e_info->error_dev_num && e_info->dev[i]; i++) { 1122 if (aer_get_device_error_info(e_info->dev[i], e_info)) 1123 handle_error_source(e_info->dev[i], e_info); 1124 } 1125 } 1126 1127 /** 1128 * aer_isr_one_error - consume an error detected by root port 1129 * @rpc: pointer to the root port which holds an error 1130 * @e_src: pointer to an error source 1131 */ 1132 static void aer_isr_one_error(struct aer_rpc *rpc, 1133 struct aer_err_source *e_src) 1134 { 1135 struct pci_dev *pdev = rpc->rpd; 1136 struct aer_err_info e_info; 1137 1138 pci_rootport_aer_stats_incr(pdev, e_src); 1139 1140 /* 1141 * There is a possibility that both correctable error and 1142 * uncorrectable error being logged. Report correctable error first. 1143 */ 1144 if (e_src->status & PCI_ERR_ROOT_COR_RCV) { 1145 e_info.id = ERR_COR_ID(e_src->id); 1146 e_info.severity = AER_CORRECTABLE; 1147 1148 if (e_src->status & PCI_ERR_ROOT_MULTI_COR_RCV) 1149 e_info.multi_error_valid = 1; 1150 else 1151 e_info.multi_error_valid = 0; 1152 aer_print_port_info(pdev, &e_info); 1153 1154 if (find_source_device(pdev, &e_info)) 1155 aer_process_err_devices(&e_info); 1156 } 1157 1158 if (e_src->status & PCI_ERR_ROOT_UNCOR_RCV) { 1159 e_info.id = ERR_UNCOR_ID(e_src->id); 1160 1161 if (e_src->status & PCI_ERR_ROOT_FATAL_RCV) 1162 e_info.severity = AER_FATAL; 1163 else 1164 e_info.severity = AER_NONFATAL; 1165 1166 if (e_src->status & PCI_ERR_ROOT_MULTI_UNCOR_RCV) 1167 e_info.multi_error_valid = 1; 1168 else 1169 e_info.multi_error_valid = 0; 1170 1171 aer_print_port_info(pdev, &e_info); 1172 1173 if (find_source_device(pdev, &e_info)) 1174 aer_process_err_devices(&e_info); 1175 } 1176 } 1177 1178 /** 1179 * aer_isr - consume errors detected by root port 1180 * @irq: IRQ assigned to Root Port 1181 * @context: pointer to Root Port data structure 1182 * 1183 * Invoked, as DPC, when root port records new detected error 1184 */ 1185 static irqreturn_t aer_isr(int irq, void *context) 1186 { 1187 struct pcie_device *dev = (struct pcie_device *)context; 1188 struct aer_rpc *rpc = get_service_data(dev); 1189 struct aer_err_source e_src; 1190 1191 if (kfifo_is_empty(&rpc->aer_fifo)) 1192 return IRQ_NONE; 1193 1194 while (kfifo_get(&rpc->aer_fifo, &e_src)) 1195 aer_isr_one_error(rpc, &e_src); 1196 return IRQ_HANDLED; 1197 } 1198 1199 /** 1200 * aer_irq - Root Port's ISR 1201 * @irq: IRQ assigned to Root Port 1202 * @context: pointer to Root Port data structure 1203 * 1204 * Invoked when Root Port detects AER messages. 1205 */ 1206 static irqreturn_t aer_irq(int irq, void *context) 1207 { 1208 struct pcie_device *pdev = (struct pcie_device *)context; 1209 struct aer_rpc *rpc = get_service_data(pdev); 1210 struct pci_dev *rp = rpc->rpd; 1211 int aer = rp->aer_cap; 1212 struct aer_err_source e_src = {}; 1213 1214 pci_read_config_dword(rp, aer + PCI_ERR_ROOT_STATUS, &e_src.status); 1215 if (!(e_src.status & AER_ERR_STATUS_MASK)) 1216 return IRQ_NONE; 1217 1218 pci_read_config_dword(rp, aer + PCI_ERR_ROOT_ERR_SRC, &e_src.id); 1219 pci_write_config_dword(rp, aer + PCI_ERR_ROOT_STATUS, e_src.status); 1220 1221 if (!kfifo_put(&rpc->aer_fifo, e_src)) 1222 return IRQ_HANDLED; 1223 1224 return IRQ_WAKE_THREAD; 1225 } 1226 1227 /** 1228 * aer_enable_rootport - enable Root Port's interrupts when receiving messages 1229 * @rpc: pointer to a Root Port data structure 1230 * 1231 * Invoked when PCIe bus loads AER service driver. 1232 */ 1233 static void aer_enable_rootport(struct aer_rpc *rpc) 1234 { 1235 struct pci_dev *pdev = rpc->rpd; 1236 int aer = pdev->aer_cap; 1237 u16 reg16; 1238 u32 reg32; 1239 1240 /* Clear PCIe Capability's Device Status */ 1241 pcie_capability_read_word(pdev, PCI_EXP_DEVSTA, ®16); 1242 pcie_capability_write_word(pdev, PCI_EXP_DEVSTA, reg16); 1243 1244 /* Disable system error generation in response to error messages */ 1245 pcie_capability_clear_word(pdev, PCI_EXP_RTCTL, 1246 SYSTEM_ERROR_INTR_ON_MESG_MASK); 1247 1248 /* Clear error status */ 1249 pci_read_config_dword(pdev, aer + PCI_ERR_ROOT_STATUS, ®32); 1250 pci_write_config_dword(pdev, aer + PCI_ERR_ROOT_STATUS, reg32); 1251 pci_read_config_dword(pdev, aer + PCI_ERR_COR_STATUS, ®32); 1252 pci_write_config_dword(pdev, aer + PCI_ERR_COR_STATUS, reg32); 1253 pci_read_config_dword(pdev, aer + PCI_ERR_UNCOR_STATUS, ®32); 1254 pci_write_config_dword(pdev, aer + PCI_ERR_UNCOR_STATUS, reg32); 1255 1256 /* Enable Root Port's interrupt in response to error messages */ 1257 pci_read_config_dword(pdev, aer + PCI_ERR_ROOT_COMMAND, ®32); 1258 reg32 |= ROOT_PORT_INTR_ON_MESG_MASK; 1259 pci_write_config_dword(pdev, aer + PCI_ERR_ROOT_COMMAND, reg32); 1260 } 1261 1262 /** 1263 * aer_disable_rootport - disable Root Port's interrupts when receiving messages 1264 * @rpc: pointer to a Root Port data structure 1265 * 1266 * Invoked when PCIe bus unloads AER service driver. 1267 */ 1268 static void aer_disable_rootport(struct aer_rpc *rpc) 1269 { 1270 struct pci_dev *pdev = rpc->rpd; 1271 int aer = pdev->aer_cap; 1272 u32 reg32; 1273 1274 /* Disable Root's interrupt in response to error messages */ 1275 pci_read_config_dword(pdev, aer + PCI_ERR_ROOT_COMMAND, ®32); 1276 reg32 &= ~ROOT_PORT_INTR_ON_MESG_MASK; 1277 pci_write_config_dword(pdev, aer + PCI_ERR_ROOT_COMMAND, reg32); 1278 1279 /* Clear Root's error status reg */ 1280 pci_read_config_dword(pdev, aer + PCI_ERR_ROOT_STATUS, ®32); 1281 pci_write_config_dword(pdev, aer + PCI_ERR_ROOT_STATUS, reg32); 1282 } 1283 1284 /** 1285 * aer_remove - clean up resources 1286 * @dev: pointer to the pcie_dev data structure 1287 * 1288 * Invoked when PCI Express bus unloads or AER probe fails. 1289 */ 1290 static void aer_remove(struct pcie_device *dev) 1291 { 1292 struct aer_rpc *rpc = get_service_data(dev); 1293 1294 aer_disable_rootport(rpc); 1295 } 1296 1297 /** 1298 * aer_probe - initialize resources 1299 * @dev: pointer to the pcie_dev data structure 1300 * 1301 * Invoked when PCI Express bus loads AER service driver. 1302 */ 1303 static int aer_probe(struct pcie_device *dev) 1304 { 1305 int status; 1306 struct aer_rpc *rpc; 1307 struct device *device = &dev->device; 1308 struct pci_dev *port = dev->port; 1309 1310 BUILD_BUG_ON(ARRAY_SIZE(aer_correctable_error_string) < 1311 AER_MAX_TYPEOF_COR_ERRS); 1312 BUILD_BUG_ON(ARRAY_SIZE(aer_uncorrectable_error_string) < 1313 AER_MAX_TYPEOF_UNCOR_ERRS); 1314 1315 /* Limit to Root Ports or Root Complex Event Collectors */ 1316 if ((pci_pcie_type(port) != PCI_EXP_TYPE_RC_EC) && 1317 (pci_pcie_type(port) != PCI_EXP_TYPE_ROOT_PORT)) 1318 return -ENODEV; 1319 1320 rpc = devm_kzalloc(device, sizeof(struct aer_rpc), GFP_KERNEL); 1321 if (!rpc) 1322 return -ENOMEM; 1323 1324 rpc->rpd = port; 1325 INIT_KFIFO(rpc->aer_fifo); 1326 set_service_data(dev, rpc); 1327 1328 status = devm_request_threaded_irq(device, dev->irq, aer_irq, aer_isr, 1329 IRQF_SHARED, "aerdrv", dev); 1330 if (status) { 1331 pci_err(port, "request AER IRQ %d failed\n", dev->irq); 1332 return status; 1333 } 1334 1335 aer_enable_rootport(rpc); 1336 pci_info(port, "enabled with IRQ %d\n", dev->irq); 1337 return 0; 1338 } 1339 1340 /** 1341 * aer_root_reset - reset Root Port hierarchy, RCEC, or RCiEP 1342 * @dev: pointer to Root Port, RCEC, or RCiEP 1343 * 1344 * Invoked by Port Bus driver when performing reset. 1345 */ 1346 static pci_ers_result_t aer_root_reset(struct pci_dev *dev) 1347 { 1348 int type = pci_pcie_type(dev); 1349 struct pci_dev *root; 1350 int aer; 1351 struct pci_host_bridge *host = pci_find_host_bridge(dev->bus); 1352 u32 reg32; 1353 int rc; 1354 1355 /* 1356 * Only Root Ports and RCECs have AER Root Command and Root Status 1357 * registers. If "dev" is an RCiEP, the relevant registers are in 1358 * the RCEC. 1359 */ 1360 if (type == PCI_EXP_TYPE_RC_END) 1361 root = dev->rcec; 1362 else 1363 root = pcie_find_root_port(dev); 1364 1365 /* 1366 * If the platform retained control of AER, an RCiEP may not have 1367 * an RCEC visible to us, so dev->rcec ("root") may be NULL. In 1368 * that case, firmware is responsible for these registers. 1369 */ 1370 aer = root ? root->aer_cap : 0; 1371 1372 if ((host->native_aer || pcie_ports_native) && aer) { 1373 /* Disable Root's interrupt in response to error messages */ 1374 pci_read_config_dword(root, aer + PCI_ERR_ROOT_COMMAND, ®32); 1375 reg32 &= ~ROOT_PORT_INTR_ON_MESG_MASK; 1376 pci_write_config_dword(root, aer + PCI_ERR_ROOT_COMMAND, reg32); 1377 } 1378 1379 if (type == PCI_EXP_TYPE_RC_EC || type == PCI_EXP_TYPE_RC_END) { 1380 rc = pcie_reset_flr(dev, PCI_RESET_DO_RESET); 1381 if (!rc) 1382 pci_info(dev, "has been reset\n"); 1383 else 1384 pci_info(dev, "not reset (no FLR support: %d)\n", rc); 1385 } else { 1386 rc = pci_bus_error_reset(dev); 1387 pci_info(dev, "%s Port link has been reset (%d)\n", 1388 pci_is_root_bus(dev->bus) ? "Root" : "Downstream", rc); 1389 } 1390 1391 if ((host->native_aer || pcie_ports_native) && aer) { 1392 /* Clear Root Error Status */ 1393 pci_read_config_dword(root, aer + PCI_ERR_ROOT_STATUS, ®32); 1394 pci_write_config_dword(root, aer + PCI_ERR_ROOT_STATUS, reg32); 1395 1396 /* Enable Root Port's interrupt in response to error messages */ 1397 pci_read_config_dword(root, aer + PCI_ERR_ROOT_COMMAND, ®32); 1398 reg32 |= ROOT_PORT_INTR_ON_MESG_MASK; 1399 pci_write_config_dword(root, aer + PCI_ERR_ROOT_COMMAND, reg32); 1400 } 1401 1402 return rc ? PCI_ERS_RESULT_DISCONNECT : PCI_ERS_RESULT_RECOVERED; 1403 } 1404 1405 static struct pcie_port_service_driver aerdriver = { 1406 .name = "aer", 1407 .port_type = PCIE_ANY_PORT, 1408 .service = PCIE_PORT_SERVICE_AER, 1409 1410 .probe = aer_probe, 1411 .remove = aer_remove, 1412 }; 1413 1414 /** 1415 * pcie_aer_init - register AER root service driver 1416 * 1417 * Invoked when AER root service driver is loaded. 1418 */ 1419 int __init pcie_aer_init(void) 1420 { 1421 if (!pci_aer_available()) 1422 return -ENXIO; 1423 return pcie_port_service_register(&aerdriver); 1424 } 1425