1 // SPDX-License-Identifier: GPL-2.0 2 #include <linux/list.h> 3 #include <linux/compiler.h> 4 #include <linux/string.h> 5 #include <linux/zalloc.h> 6 #include <linux/ctype.h> 7 #include <sys/types.h> 8 #include <fcntl.h> 9 #include <sys/stat.h> 10 #include <unistd.h> 11 #include <stdio.h> 12 #include <stdbool.h> 13 #include <dirent.h> 14 #include <api/fs/fs.h> 15 #include <api/io.h> 16 #include <api/io_dir.h> 17 #include <locale.h> 18 #include <fnmatch.h> 19 #include <math.h> 20 #include "debug.h" 21 #include "evsel.h" 22 #include "pmu.h" 23 #include "drm_pmu.h" 24 #include "hwmon_pmu.h" 25 #include "pmus.h" 26 #include "tool_pmu.h" 27 #include "tp_pmu.h" 28 #include <util/pmu-bison.h> 29 #include <util/pmu-flex.h> 30 #include "parse-events.h" 31 #include "print-events.h" 32 #include "hashmap.h" 33 #include "header.h" 34 #include "string2.h" 35 #include "strbuf.h" 36 #include "fncache.h" 37 #include "util/evsel_config.h" 38 #include <regex.h> 39 40 #define UNIT_MAX_LEN 31 /* max length for event unit name */ 41 42 enum event_source { 43 /* An event loaded from /sys/bus/event_source/devices/<pmu>/events. */ 44 EVENT_SRC_SYSFS, 45 /* An event loaded from a CPUID matched json file. */ 46 EVENT_SRC_CPU_JSON, 47 /* 48 * An event loaded from a /sys/bus/event_source/devices/<pmu>/identifier matched json 49 * file. 50 */ 51 EVENT_SRC_SYS_JSON, 52 }; 53 54 /** 55 * struct perf_pmu_alias - An event either read from sysfs or builtin in 56 * pmu-events.c, created by parsing the pmu-events json files. 57 */ 58 struct perf_pmu_alias { 59 /** @name: Name of the event like "mem-loads". */ 60 char *name; 61 /** @desc: Optional short description of the event. */ 62 char *desc; 63 /** @long_desc: Optional long description. */ 64 char *long_desc; 65 /** 66 * @topic: Optional topic such as cache or pipeline, particularly for 67 * json events. 68 */ 69 char *topic; 70 /** @terms: Owned copy of the event terms. */ 71 char *terms; 72 /** 73 * @legacy_terms: If the event aliases a legacy event, holds a copy 74 * ofthe legacy event string. 75 */ 76 char *legacy_terms; 77 /** 78 * @pmu_name: The name copied from the json struct pmu_event. This can 79 * differ from the PMU name as it won't have suffixes. 80 */ 81 char *pmu_name; 82 /** @unit: Units for the event, such as bytes or cache lines. */ 83 char unit[UNIT_MAX_LEN+1]; 84 /** @scale: Value to scale read counter values by. */ 85 double scale; 86 /** @retirement_latency_mean: Value to be given for unsampled retirement latency mean. */ 87 double retirement_latency_mean; 88 /** @retirement_latency_min: Value to be given for unsampled retirement latency min. */ 89 double retirement_latency_min; 90 /** @retirement_latency_max: Value to be given for unsampled retirement latency max. */ 91 double retirement_latency_max; 92 /** 93 * @per_pkg: Does the file 94 * <sysfs>/bus/event_source/devices/<pmu_name>/events/<name>.per-pkg or 95 * equivalent json value exist and have the value 1. 96 */ 97 bool per_pkg; 98 /** 99 * @snapshot: Does the file 100 * <sysfs>/bus/event_source/devices/<pmu_name>/events/<name>.snapshot 101 * exist and have the value 1. 102 */ 103 bool snapshot; 104 /** 105 * @deprecated: Is the event hidden and so not shown in perf list by 106 * default. 107 */ 108 bool deprecated; 109 /** 110 * @legacy_deprecated_checked: Legacy events may not be supported by the 111 * PMU need to be checked. If they aren't supported they are marked 112 * deprecated. 113 */ 114 bool legacy_deprecated_checked; 115 /** @from_sysfs: Was the alias from sysfs or a json event? */ 116 bool from_sysfs; 117 /** @info_loaded: Have the scale, unit and other values been read from disk? */ 118 bool info_loaded; 119 }; 120 121 static int pmu_aliases_parse(struct perf_pmu *pmu); 122 123 static struct perf_pmu_format *perf_pmu__new_format(struct list_head *list, char *name) 124 { 125 struct perf_pmu_format *format; 126 127 format = zalloc(sizeof(*format)); 128 if (!format) 129 return NULL; 130 131 format->name = strdup(name); 132 if (!format->name) { 133 free(format); 134 return NULL; 135 } 136 list_add_tail(&format->list, list); 137 return format; 138 } 139 140 /* Called at the end of parsing a format. */ 141 void perf_pmu_format__set_value(void *vformat, int config, unsigned long *bits) 142 { 143 struct perf_pmu_format *format = vformat; 144 145 format->value = config; 146 memcpy(format->bits, bits, sizeof(format->bits)); 147 } 148 149 static void __perf_pmu_format__load(struct perf_pmu_format *format, FILE *file) 150 { 151 void *scanner; 152 int ret; 153 154 ret = perf_pmu_lex_init(&scanner); 155 if (ret) 156 return; 157 158 perf_pmu_set_in(file, scanner); 159 ret = perf_pmu_parse(format, scanner); 160 perf_pmu_lex_destroy(scanner); 161 format->loaded = true; 162 } 163 164 static void perf_pmu_format__load(const struct perf_pmu *pmu, struct perf_pmu_format *format) 165 { 166 char path[PATH_MAX]; 167 FILE *file = NULL; 168 169 if (format->loaded) 170 return; 171 172 if (!perf_pmu__pathname_scnprintf(path, sizeof(path), pmu->name, "format")) 173 return; 174 175 assert(strlen(path) + strlen(format->name) + 2 < sizeof(path)); 176 strcat(path, "/"); 177 strcat(path, format->name); 178 179 file = fopen(path, "r"); 180 if (!file) 181 return; 182 __perf_pmu_format__load(format, file); 183 fclose(file); 184 } 185 186 /* 187 * Parse & process all the sysfs attributes located under 188 * the directory specified in 'dir' parameter. 189 */ 190 static int perf_pmu__format_parse(struct perf_pmu *pmu, int dirfd, bool eager_load) 191 { 192 struct io_dirent64 *evt_ent; 193 struct io_dir format_dir; 194 int ret = 0; 195 196 io_dir__init(&format_dir, dirfd); 197 198 while ((evt_ent = io_dir__readdir(&format_dir)) != NULL) { 199 struct perf_pmu_format *format; 200 char *name = evt_ent->d_name; 201 202 if (io_dir__is_dir(&format_dir, evt_ent)) 203 continue; 204 205 format = perf_pmu__new_format(&pmu->format, name); 206 if (!format) { 207 ret = -ENOMEM; 208 break; 209 } 210 211 if (eager_load) { 212 FILE *file; 213 int fd = openat(dirfd, name, O_RDONLY); 214 215 if (fd < 0) { 216 ret = -errno; 217 break; 218 } 219 file = fdopen(fd, "r"); 220 if (!file) { 221 close(fd); 222 break; 223 } 224 __perf_pmu_format__load(format, file); 225 fclose(file); 226 } 227 } 228 229 close(format_dir.dirfd); 230 return ret; 231 } 232 233 /* 234 * Reading/parsing the default pmu format definition, which should be 235 * located at: 236 * /sys/bus/event_source/devices/<dev>/format as sysfs group attributes. 237 */ 238 static int pmu_format(struct perf_pmu *pmu, int dirfd, const char *name, bool eager_load) 239 { 240 int fd; 241 242 fd = perf_pmu__pathname_fd(dirfd, name, "format", O_DIRECTORY); 243 if (fd < 0) 244 return 0; 245 246 /* it'll close the fd */ 247 if (perf_pmu__format_parse(pmu, fd, eager_load)) 248 return -1; 249 250 return 0; 251 } 252 253 static int parse_double(const char *scale, char **end, double *sval) 254 { 255 char *lc; 256 int ret = 0; 257 258 /* 259 * save current locale 260 */ 261 lc = setlocale(LC_NUMERIC, NULL); 262 263 /* 264 * The lc string may be allocated in static storage, 265 * so get a dynamic copy to make it survive setlocale 266 * call below. 267 */ 268 lc = strdup(lc); 269 if (!lc) { 270 ret = -ENOMEM; 271 goto out; 272 } 273 274 /* 275 * force to C locale to ensure kernel 276 * scale string is converted correctly. 277 * kernel uses default C locale. 278 */ 279 setlocale(LC_NUMERIC, "C"); 280 281 *sval = strtod(scale, end); 282 283 out: 284 /* restore locale */ 285 setlocale(LC_NUMERIC, lc); 286 free(lc); 287 return ret; 288 } 289 290 int perf_pmu__convert_scale(const char *scale, char **end, double *sval) 291 { 292 return parse_double(scale, end, sval); 293 } 294 295 static int perf_pmu__parse_scale(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 296 { 297 struct stat st; 298 ssize_t sret; 299 size_t len; 300 char scale[128]; 301 int fd, ret = -1; 302 char path[PATH_MAX]; 303 304 len = perf_pmu__event_source_devices_scnprintf(path, sizeof(path)); 305 if (!len) 306 return 0; 307 scnprintf(path + len, sizeof(path) - len, "%s/events/%s.scale", pmu->name, alias->name); 308 309 fd = open(path, O_RDONLY); 310 if (fd == -1) 311 return -1; 312 313 if (fstat(fd, &st) < 0) 314 goto error; 315 316 sret = read(fd, scale, sizeof(scale)-1); 317 if (sret < 0) 318 goto error; 319 320 if (scale[sret - 1] == '\n') 321 scale[sret - 1] = '\0'; 322 else 323 scale[sret] = '\0'; 324 325 ret = perf_pmu__convert_scale(scale, NULL, &alias->scale); 326 error: 327 close(fd); 328 return ret; 329 } 330 331 static int perf_pmu__parse_unit(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 332 { 333 char path[PATH_MAX]; 334 size_t len; 335 ssize_t sret; 336 int fd; 337 338 339 len = perf_pmu__event_source_devices_scnprintf(path, sizeof(path)); 340 if (!len) 341 return 0; 342 scnprintf(path + len, sizeof(path) - len, "%s/events/%s.unit", pmu->name, alias->name); 343 344 fd = open(path, O_RDONLY); 345 if (fd == -1) 346 return -1; 347 348 sret = read(fd, alias->unit, UNIT_MAX_LEN); 349 if (sret < 0) 350 goto error; 351 352 close(fd); 353 354 if (alias->unit[sret - 1] == '\n') 355 alias->unit[sret - 1] = '\0'; 356 else 357 alias->unit[sret] = '\0'; 358 359 return 0; 360 error: 361 close(fd); 362 alias->unit[0] = '\0'; 363 return -1; 364 } 365 366 static bool perf_pmu__parse_event_source_bool(const char *pmu_name, const char *event_name, 367 const char *suffix) 368 { 369 char path[PATH_MAX]; 370 size_t len; 371 int fd; 372 373 len = perf_pmu__event_source_devices_scnprintf(path, sizeof(path)); 374 if (!len) 375 return false; 376 377 scnprintf(path + len, sizeof(path) - len, "%s/events/%s.%s", pmu_name, event_name, suffix); 378 379 fd = open(path, O_RDONLY); 380 if (fd == -1) 381 return false; 382 383 #ifndef NDEBUG 384 { 385 char buf[8]; 386 387 len = read(fd, buf, sizeof(buf)); 388 assert(len == 1 || len == 2); 389 assert(buf[0] == '1'); 390 } 391 #endif 392 393 close(fd); 394 return true; 395 } 396 397 static void perf_pmu__parse_per_pkg(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 398 { 399 alias->per_pkg = perf_pmu__parse_event_source_bool(pmu->name, alias->name, "per-pkg"); 400 } 401 402 static void perf_pmu__parse_snapshot(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 403 { 404 alias->snapshot = perf_pmu__parse_event_source_bool(pmu->name, alias->name, "snapshot"); 405 } 406 407 /* Delete an alias entry. */ 408 static void perf_pmu_free_alias(struct perf_pmu_alias *alias) 409 { 410 if (!alias) 411 return; 412 413 zfree(&alias->name); 414 zfree(&alias->desc); 415 zfree(&alias->long_desc); 416 zfree(&alias->topic); 417 zfree(&alias->pmu_name); 418 zfree(&alias->terms); 419 zfree(&alias->legacy_terms); 420 free(alias); 421 } 422 423 static void perf_pmu__del_aliases(struct perf_pmu *pmu) 424 { 425 struct hashmap_entry *entry; 426 size_t bkt; 427 428 if (!pmu->aliases) 429 return; 430 431 hashmap__for_each_entry(pmu->aliases, entry, bkt) 432 perf_pmu_free_alias(entry->pvalue); 433 434 hashmap__free(pmu->aliases); 435 pmu->aliases = NULL; 436 } 437 438 static struct perf_pmu_alias *perf_pmu__find_alias(struct perf_pmu *pmu, 439 const char *name, 440 bool load) 441 { 442 struct perf_pmu_alias *alias; 443 bool has_sysfs_event; 444 char event_file_name[NAME_MAX + 8]; 445 446 if (hashmap__find(pmu->aliases, name, &alias)) 447 return alias; 448 449 if (!load || pmu->sysfs_aliases_loaded) 450 return NULL; 451 452 /* 453 * Test if alias/event 'name' exists in the PMU's sysfs/events 454 * directory. If not skip parsing the sysfs aliases. Sysfs event 455 * name must be all lower or all upper case. 456 */ 457 scnprintf(event_file_name, sizeof(event_file_name), "events/%s", name); 458 for (size_t i = 7, n = 7 + strlen(name); i < n; i++) 459 event_file_name[i] = tolower(event_file_name[i]); 460 461 has_sysfs_event = perf_pmu__file_exists(pmu, event_file_name); 462 if (!has_sysfs_event) { 463 for (size_t i = 7, n = 7 + strlen(name); i < n; i++) 464 event_file_name[i] = toupper(event_file_name[i]); 465 466 has_sysfs_event = perf_pmu__file_exists(pmu, event_file_name); 467 } 468 if (has_sysfs_event) { 469 pmu_aliases_parse(pmu); 470 if (hashmap__find(pmu->aliases, name, &alias)) 471 return alias; 472 } 473 474 return NULL; 475 } 476 477 static bool assign_str(const char *name, const char *field, char **old_str, 478 const char *new_str) 479 { 480 if (!*old_str && new_str) { 481 *old_str = strdup(new_str); 482 return true; 483 } 484 485 if (!new_str || !strcasecmp(*old_str, new_str)) 486 return false; /* Nothing to update. */ 487 488 pr_debug("alias %s differs in field '%s' ('%s' != '%s')\n", 489 name, field, *old_str, new_str); 490 zfree(old_str); 491 *old_str = strdup(new_str); 492 return true; 493 } 494 495 static void read_alias_info(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 496 { 497 if (!alias->from_sysfs || alias->info_loaded) 498 return; 499 500 /* 501 * load unit name and scale if available 502 */ 503 perf_pmu__parse_unit(pmu, alias); 504 perf_pmu__parse_scale(pmu, alias); 505 perf_pmu__parse_per_pkg(pmu, alias); 506 perf_pmu__parse_snapshot(pmu, alias); 507 } 508 509 struct update_alias_data { 510 struct perf_pmu *pmu; 511 struct perf_pmu_alias *alias; 512 bool legacy; 513 }; 514 515 static int update_alias(const struct pmu_event *pe, 516 const struct pmu_events_table *table __maybe_unused, 517 void *vdata) 518 { 519 struct update_alias_data *data = vdata; 520 int ret = 0; 521 522 read_alias_info(data->pmu, data->alias); 523 assign_str(pe->name, "desc", &data->alias->desc, pe->desc); 524 assign_str(pe->name, "long_desc", &data->alias->long_desc, pe->long_desc); 525 assign_str(pe->name, "topic", &data->alias->topic, pe->topic); 526 data->alias->per_pkg = pe->perpkg; 527 if (pe->event) { 528 if (data->legacy) { 529 zfree(&data->alias->legacy_terms); 530 data->alias->legacy_terms = strdup(pe->event); 531 } else { 532 zfree(&data->alias->terms); 533 data->alias->terms = strdup(pe->event); 534 } 535 } 536 if (!ret && pe->unit) { 537 char *unit; 538 539 ret = perf_pmu__convert_scale(pe->unit, &unit, &data->alias->scale); 540 if (!ret) 541 snprintf(data->alias->unit, sizeof(data->alias->unit), "%s", unit); 542 } 543 if (!ret && pe->retirement_latency_mean) { 544 ret = parse_double(pe->retirement_latency_mean, NULL, 545 &data->alias->retirement_latency_mean); 546 } 547 if (!ret && pe->retirement_latency_min) { 548 ret = parse_double(pe->retirement_latency_min, NULL, 549 &data->alias->retirement_latency_min); 550 } 551 if (!ret && pe->retirement_latency_max) { 552 ret = parse_double(pe->retirement_latency_max, NULL, 553 &data->alias->retirement_latency_max); 554 } 555 return ret; 556 } 557 558 static int perf_pmu__new_alias(struct perf_pmu *pmu, const char *name, 559 const char *desc, const char *val, int val_fd, 560 const struct pmu_event *pe, enum event_source src) 561 { 562 struct perf_pmu_alias *alias, *old_alias; 563 int ret = 0; 564 const char *long_desc = NULL, *topic = NULL, *unit = NULL, *pmu_name = NULL; 565 bool deprecated = false, perpkg = false; 566 567 if (perf_pmu__find_alias(pmu, name, /*load=*/ false)) { 568 /* Alias was already created/loaded. */ 569 return 0; 570 } 571 572 if (pe) { 573 long_desc = pe->long_desc; 574 topic = pe->topic; 575 unit = pe->unit; 576 perpkg = pe->perpkg; 577 deprecated = pe->deprecated; 578 if (pe->pmu && strcmp(pe->pmu, "default_core")) 579 pmu_name = pe->pmu; 580 } 581 582 alias = zalloc(sizeof(*alias)); 583 if (!alias) 584 return -ENOMEM; 585 586 alias->scale = 1.0; 587 alias->unit[0] = '\0'; 588 alias->per_pkg = perpkg; 589 alias->snapshot = false; 590 alias->deprecated = deprecated; 591 alias->retirement_latency_mean = 0.0; 592 alias->retirement_latency_min = 0.0; 593 alias->retirement_latency_max = 0.0; 594 595 if (!ret && pe && pe->retirement_latency_mean) { 596 ret = parse_double(pe->retirement_latency_mean, NULL, 597 &alias->retirement_latency_mean); 598 } 599 if (!ret && pe && pe->retirement_latency_min) { 600 ret = parse_double(pe->retirement_latency_min, NULL, 601 &alias->retirement_latency_min); 602 } 603 if (!ret && pe && pe->retirement_latency_max) { 604 ret = parse_double(pe->retirement_latency_max, NULL, 605 &alias->retirement_latency_max); 606 } 607 if (ret) 608 return ret; 609 610 if (val_fd < 0) { 611 alias->terms = strdup(val); 612 } else { 613 char buf[256]; 614 struct io io; 615 size_t line_len; 616 617 io__init(&io, val_fd, buf, sizeof(buf)); 618 ret = io__getline(&io, &alias->terms, &line_len) < 0 ? -errno : 0; 619 if (ret) { 620 pr_err("Failed to read alias %s\n", name); 621 return ret; 622 } 623 if (line_len >= 1 && alias->terms[line_len - 1] == '\n') 624 alias->terms[line_len - 1] = '\0'; 625 } 626 alias->name = strdup(name); 627 alias->desc = desc ? strdup(desc) : NULL; 628 alias->long_desc = long_desc ? strdup(long_desc) : NULL; 629 alias->topic = topic ? strdup(topic) : NULL; 630 alias->pmu_name = pmu_name ? strdup(pmu_name) : NULL; 631 if (unit) { 632 if (perf_pmu__convert_scale(unit, (char **)&unit, &alias->scale) < 0) { 633 perf_pmu_free_alias(alias); 634 return -1; 635 } 636 snprintf(alias->unit, sizeof(alias->unit), "%s", unit); 637 } 638 switch (src) { 639 default: 640 case EVENT_SRC_SYSFS: 641 alias->from_sysfs = true; 642 if (pmu->events_table || pmu->is_core) { 643 /* Update an event from sysfs with json data. */ 644 struct update_alias_data data = { 645 .pmu = pmu, 646 .alias = alias, 647 .legacy = false, 648 }; 649 if ((pmu_events_table__find_event(pmu->events_table, pmu, name, 650 update_alias, &data) == 0)) { 651 /* 652 * Override sysfs encodings with json encodings 653 * specific to the cpuid. 654 */ 655 pmu->cpu_common_json_aliases++; 656 } 657 if (pmu->is_core) { 658 /* Add in legacy encodings. */ 659 data.legacy = true; 660 if (pmu_events_table__find_event( 661 perf_pmu__default_core_events_table(), 662 pmu, name, update_alias, &data) == 0) 663 pmu->cpu_common_json_aliases++; 664 } 665 } 666 pmu->sysfs_aliases++; 667 break; 668 case EVENT_SRC_CPU_JSON: 669 pmu->cpu_json_aliases++; 670 break; 671 case EVENT_SRC_SYS_JSON: 672 pmu->sys_json_aliases++; 673 break; 674 675 } 676 hashmap__set(pmu->aliases, alias->name, alias, /*old_key=*/ NULL, &old_alias); 677 perf_pmu_free_alias(old_alias); 678 return 0; 679 } 680 681 static inline bool pmu_alias_info_file(const char *name) 682 { 683 size_t len; 684 685 len = strlen(name); 686 if (len > 5 && !strcmp(name + len - 5, ".unit")) 687 return true; 688 if (len > 6 && !strcmp(name + len - 6, ".scale")) 689 return true; 690 if (len > 8 && !strcmp(name + len - 8, ".per-pkg")) 691 return true; 692 if (len > 9 && !strcmp(name + len - 9, ".snapshot")) 693 return true; 694 695 return false; 696 } 697 698 /* 699 * Reading the pmu event aliases definition, which should be located at: 700 * /sys/bus/event_source/devices/<dev>/events as sysfs group attributes. 701 */ 702 static int __pmu_aliases_parse(struct perf_pmu *pmu, int events_dir_fd) 703 { 704 struct io_dirent64 *evt_ent; 705 struct io_dir event_dir; 706 707 io_dir__init(&event_dir, events_dir_fd); 708 709 while ((evt_ent = io_dir__readdir(&event_dir))) { 710 char *name = evt_ent->d_name; 711 int fd; 712 713 if (!strcmp(name, ".") || !strcmp(name, "..")) 714 continue; 715 716 /* 717 * skip info files parsed in perf_pmu__new_alias() 718 */ 719 if (pmu_alias_info_file(name)) 720 continue; 721 722 fd = openat(events_dir_fd, name, O_RDONLY); 723 if (fd == -1) { 724 pr_debug("Cannot open %s\n", name); 725 continue; 726 } 727 728 if (perf_pmu__new_alias(pmu, name, /*desc=*/ NULL, 729 /*val=*/ NULL, fd, /*pe=*/ NULL, 730 EVENT_SRC_SYSFS) < 0) 731 pr_debug("Cannot set up %s\n", name); 732 close(fd); 733 } 734 735 pmu->sysfs_aliases_loaded = true; 736 return 0; 737 } 738 739 static int pmu_aliases_parse(struct perf_pmu *pmu) 740 { 741 char path[PATH_MAX]; 742 size_t len; 743 int events_dir_fd, ret; 744 745 if (pmu->sysfs_aliases_loaded) 746 return 0; 747 748 len = perf_pmu__event_source_devices_scnprintf(path, sizeof(path)); 749 if (!len) 750 return 0; 751 scnprintf(path + len, sizeof(path) - len, "%s/events", pmu->name); 752 753 events_dir_fd = open(path, O_DIRECTORY); 754 if (events_dir_fd == -1) { 755 pmu->sysfs_aliases_loaded = true; 756 return 0; 757 } 758 ret = __pmu_aliases_parse(pmu, events_dir_fd); 759 close(events_dir_fd); 760 return ret; 761 } 762 763 static int pmu_aliases_parse_eager(struct perf_pmu *pmu, int sysfs_fd) 764 { 765 char path[NAME_MAX + 8]; 766 int ret, events_dir_fd; 767 768 scnprintf(path, sizeof(path), "%s/events", pmu->name); 769 events_dir_fd = openat(sysfs_fd, path, O_DIRECTORY, 0); 770 if (events_dir_fd == -1) { 771 pmu->sysfs_aliases_loaded = true; 772 return 0; 773 } 774 ret = __pmu_aliases_parse(pmu, events_dir_fd); 775 close(events_dir_fd); 776 return ret; 777 } 778 779 static int pmu_alias_terms(struct perf_pmu_alias *alias, struct list_head *terms) 780 { 781 struct parse_events_terms alias_terms; 782 struct parse_events_term *term; 783 int ret; 784 785 parse_events_terms__init(&alias_terms); 786 ret = parse_events_terms(&alias_terms, alias->terms); 787 if (ret) { 788 pr_err("Cannot parse '%s' terms '%s': %d\n", 789 alias->name, alias->terms, ret); 790 parse_events_terms__exit(&alias_terms); 791 return ret; 792 } 793 list_for_each_entry(term, &alias_terms.terms, list) { 794 /* 795 * Weak terms don't override command line options, 796 * which we don't want for implicit terms in aliases. 797 */ 798 term->weak = true; 799 } 800 list_splice_init(&alias_terms.terms, terms); 801 parse_events_terms__exit(&alias_terms); 802 return 0; 803 } 804 805 /* 806 * Uncore PMUs have a "cpumask" file under sysfs. CPU PMUs (e.g. on arm/arm64) 807 * may have a "cpus" file. 808 */ 809 static struct perf_cpu_map *pmu_cpumask(int dirfd, const char *pmu_name, bool is_core) 810 { 811 const char *templates[] = { 812 "cpumask", 813 "cpus", 814 NULL 815 }; 816 const char **template; 817 818 for (template = templates; *template; template++) { 819 struct io io; 820 char buf[128]; 821 char *cpumask = NULL; 822 size_t cpumask_len; 823 ssize_t ret; 824 struct perf_cpu_map *cpus; 825 826 io.fd = perf_pmu__pathname_fd(dirfd, pmu_name, *template, O_RDONLY); 827 if (io.fd < 0) 828 continue; 829 830 io__init(&io, io.fd, buf, sizeof(buf)); 831 ret = io__getline(&io, &cpumask, &cpumask_len); 832 close(io.fd); 833 if (ret < 0) 834 continue; 835 836 cpus = perf_cpu_map__new(cpumask); 837 free(cpumask); 838 if (cpus) 839 return cpus; 840 } 841 842 /* Nothing found, for core PMUs assume this means all CPUs. */ 843 return is_core ? cpu_map__online() : NULL; 844 } 845 846 static bool pmu_is_uncore(int dirfd, const char *name) 847 { 848 int fd; 849 850 fd = perf_pmu__pathname_fd(dirfd, name, "cpumask", O_PATH); 851 if (fd < 0) 852 return false; 853 854 close(fd); 855 return true; 856 } 857 858 static char *pmu_id(const char *name) 859 { 860 char path[PATH_MAX], *str; 861 size_t len; 862 863 perf_pmu__pathname_scnprintf(path, sizeof(path), name, "identifier"); 864 865 if (filename__read_str(path, &str, &len) < 0) 866 return NULL; 867 868 str[len - 1] = 0; /* remove line feed */ 869 870 return str; 871 } 872 873 /** 874 * is_sysfs_pmu_core() - PMU CORE devices have different name other than cpu in 875 * sysfs on some platforms like ARM or Intel hybrid. Looking for 876 * possible the cpus file in sysfs files to identify whether this is a 877 * core device. 878 * @name: The PMU name such as "cpu_atom". 879 */ 880 static int is_sysfs_pmu_core(const char *name) 881 { 882 char path[PATH_MAX]; 883 884 if (!perf_pmu__pathname_scnprintf(path, sizeof(path), name, "cpus")) 885 return 0; 886 return file_available(path); 887 } 888 889 /** 890 * Return the length of the PMU name not including the suffix for uncore PMUs. 891 * 892 * We want to deduplicate many similar uncore PMUs by stripping their suffixes, 893 * but there are never going to be too many core PMUs and the suffixes might be 894 * interesting. "arm_cortex_a53" vs "arm_cortex_a57" or "cpum_cf" for example. 895 * 896 * @skip_duplicate_pmus: False in verbose mode so all uncore PMUs are visible 897 */ 898 static size_t pmu_deduped_name_len(const struct perf_pmu *pmu, const char *name, 899 bool skip_duplicate_pmus) 900 { 901 return skip_duplicate_pmus && !pmu->is_core 902 ? pmu_name_len_no_suffix(name) 903 : strlen(name); 904 } 905 906 /** 907 * perf_pmu__match_wildcard - Does the pmu_name start with tok and is then only 908 * followed by nothing or a suffix? tok may contain 909 * part of a suffix. 910 * @pmu_name: The pmu_name with possible suffix. 911 * @tok: The wildcard argument to match. 912 */ 913 static bool perf_pmu__match_wildcard(const char *pmu_name, const char *tok) 914 { 915 const char *p, *suffix; 916 bool has_hex = false; 917 size_t tok_len = strlen(tok); 918 919 /* Check start of pmu_name for equality. */ 920 if (strncmp(pmu_name, tok, tok_len)) 921 return false; 922 923 suffix = p = pmu_name + tok_len; 924 if (*p == 0) 925 return true; 926 927 if (*p == '_') { 928 ++p; 929 ++suffix; 930 } 931 932 /* Ensure we end in a number */ 933 while (1) { 934 if (!isxdigit(*p)) 935 return false; 936 if (!has_hex) 937 has_hex = !isdigit(*p); 938 if (*(++p) == 0) 939 break; 940 } 941 942 if (has_hex) 943 return (p - suffix) > 2; 944 945 return true; 946 } 947 948 /** 949 * perf_pmu__match_ignoring_suffix_uncore - Does the pmu_name match tok ignoring 950 * any trailing suffix on pmu_name and 951 * tok? The Suffix must be in form 952 * tok_{digits}, or tok{digits}. 953 * @pmu_name: The pmu_name with possible suffix. 954 * @tok: The possible match to pmu_name. 955 */ 956 static bool perf_pmu__match_ignoring_suffix_uncore(const char *pmu_name, const char *tok) 957 { 958 size_t pmu_name_len, tok_len; 959 960 /* For robustness, check for NULL. */ 961 if (pmu_name == NULL) 962 return tok == NULL; 963 964 /* uncore_ prefixes are ignored. */ 965 if (!strncmp(pmu_name, "uncore_", 7)) 966 pmu_name += 7; 967 if (!strncmp(tok, "uncore_", 7)) 968 tok += 7; 969 970 pmu_name_len = pmu_name_len_no_suffix(pmu_name); 971 tok_len = pmu_name_len_no_suffix(tok); 972 if (pmu_name_len != tok_len) 973 return false; 974 975 return strncmp(pmu_name, tok, pmu_name_len) == 0; 976 } 977 978 979 /** 980 * perf_pmu__match_wildcard_uncore - does to_match match the PMU's name? 981 * @pmu_name: The pmu->name or pmu->alias to match against. 982 * @to_match: the json struct pmu_event name. This may lack a suffix (which 983 * matches) or be of the form "socket,pmuname" which will match 984 * "socketX_pmunameY". 985 */ 986 static bool perf_pmu__match_wildcard_uncore(const char *pmu_name, const char *to_match) 987 { 988 char *mutable_to_match, *tok, *tmp; 989 990 if (!pmu_name) 991 return false; 992 993 /* uncore_ prefixes are ignored. */ 994 if (!strncmp(pmu_name, "uncore_", 7)) 995 pmu_name += 7; 996 if (!strncmp(to_match, "uncore_", 7)) 997 to_match += 7; 998 999 if (strchr(to_match, ',') == NULL) 1000 return perf_pmu__match_wildcard(pmu_name, to_match); 1001 1002 /* Process comma separated list of PMU name components. */ 1003 mutable_to_match = strdup(to_match); 1004 if (!mutable_to_match) 1005 return false; 1006 1007 tok = strtok_r(mutable_to_match, ",", &tmp); 1008 while (tok) { 1009 size_t tok_len = strlen(tok); 1010 1011 if (strncmp(pmu_name, tok, tok_len)) { 1012 /* Mismatch between part of pmu_name and tok. */ 1013 free(mutable_to_match); 1014 return false; 1015 } 1016 /* Move pmu_name forward over tok and suffix. */ 1017 pmu_name += tok_len; 1018 while (*pmu_name != '\0' && isdigit(*pmu_name)) 1019 pmu_name++; 1020 if (*pmu_name == '_') 1021 pmu_name++; 1022 1023 tok = strtok_r(NULL, ",", &tmp); 1024 } 1025 free(mutable_to_match); 1026 return *pmu_name == '\0'; 1027 } 1028 1029 bool pmu_uncore_identifier_match(const char *compat, const char *id) 1030 { 1031 regex_t re; 1032 regmatch_t pmatch[1]; 1033 int match; 1034 1035 if (regcomp(&re, compat, REG_EXTENDED) != 0) { 1036 /* Warn unable to generate match particular string. */ 1037 pr_info("Invalid regular expression %s\n", compat); 1038 return false; 1039 } 1040 1041 match = !regexec(&re, id, 1, pmatch, 0); 1042 if (match) { 1043 /* Ensure a full match. */ 1044 match = pmatch[0].rm_so == 0 && (size_t)pmatch[0].rm_eo == strlen(id); 1045 } 1046 regfree(&re); 1047 1048 return match; 1049 } 1050 1051 static int pmu_add_cpu_aliases_map_callback(const struct pmu_event *pe, 1052 const struct pmu_events_table *table __maybe_unused, 1053 void *vdata) 1054 { 1055 struct perf_pmu *pmu = vdata; 1056 1057 perf_pmu__new_alias(pmu, pe->name, pe->desc, pe->event, /*val_fd=*/ -1, 1058 pe, EVENT_SRC_CPU_JSON); 1059 return 0; 1060 } 1061 1062 /* 1063 * From the pmu_events_table, find the events that correspond to the given 1064 * PMU and add them to the list 'head'. 1065 */ 1066 void pmu_add_cpu_aliases_table(struct perf_pmu *pmu, const struct pmu_events_table *table) 1067 { 1068 pmu_events_table__for_each_event(table, pmu, pmu_add_cpu_aliases_map_callback, pmu); 1069 } 1070 1071 static void pmu_add_cpu_aliases(struct perf_pmu *pmu) 1072 { 1073 if (!pmu->events_table && !pmu->is_core) 1074 return; 1075 1076 if (pmu->cpu_aliases_added) 1077 return; 1078 1079 pmu_add_cpu_aliases_table(pmu, pmu->events_table); 1080 if (pmu->is_core) 1081 pmu_add_cpu_aliases_table(pmu, perf_pmu__default_core_events_table()); 1082 1083 pmu->cpu_aliases_added = true; 1084 } 1085 1086 static int pmu_add_sys_aliases_iter_fn(const struct pmu_event *pe, 1087 const struct pmu_events_table *table __maybe_unused, 1088 void *vdata) 1089 { 1090 struct perf_pmu *pmu = vdata; 1091 1092 if (!pe->compat || !pe->pmu) { 1093 /* No data to match. */ 1094 return 0; 1095 } 1096 1097 if (!perf_pmu__match_wildcard_uncore(pmu->name, pe->pmu) && 1098 !perf_pmu__match_wildcard_uncore(pmu->alias_name, pe->pmu)) { 1099 /* PMU name/alias_name don't match. */ 1100 return 0; 1101 } 1102 1103 if (pmu_uncore_identifier_match(pe->compat, pmu->id)) { 1104 /* Id matched. */ 1105 perf_pmu__new_alias(pmu, 1106 pe->name, 1107 pe->desc, 1108 pe->event, 1109 /*val_fd=*/ -1, 1110 pe, 1111 EVENT_SRC_SYS_JSON); 1112 } 1113 return 0; 1114 } 1115 1116 void pmu_add_sys_aliases(struct perf_pmu *pmu) 1117 { 1118 if (!pmu->id) 1119 return; 1120 1121 pmu_for_each_sys_event(pmu_add_sys_aliases_iter_fn, pmu); 1122 } 1123 1124 static char *pmu_find_alias_name(struct perf_pmu *pmu, int dirfd) 1125 { 1126 FILE *file = perf_pmu__open_file_at(pmu, dirfd, "alias"); 1127 char *line = NULL; 1128 size_t line_len = 0; 1129 ssize_t ret; 1130 1131 if (!file) 1132 return NULL; 1133 1134 ret = getline(&line, &line_len, file); 1135 if (ret < 0) { 1136 fclose(file); 1137 return NULL; 1138 } 1139 /* Remove trailing newline. */ 1140 if (ret > 0 && line[ret - 1] == '\n') 1141 line[--ret] = '\0'; 1142 1143 fclose(file); 1144 return line; 1145 } 1146 1147 static int pmu_max_precise(int dirfd, struct perf_pmu *pmu) 1148 { 1149 int max_precise = -1; 1150 1151 perf_pmu__scan_file_at(pmu, dirfd, "caps/max_precise", "%d", &max_precise); 1152 return max_precise; 1153 } 1154 1155 void __weak 1156 perf_pmu__arch_init(struct perf_pmu *pmu) 1157 { 1158 if (pmu->is_core) 1159 pmu->mem_events = perf_mem_events; 1160 } 1161 1162 /* Variant of str_hash that does tolower on each character. */ 1163 static size_t aliases__hash(long key, void *ctx __maybe_unused) 1164 { 1165 const char *s = (const char *)key; 1166 size_t h = 0; 1167 1168 while (*s) { 1169 h = h * 31 + tolower(*s); 1170 s++; 1171 } 1172 return h; 1173 } 1174 1175 static bool aliases__equal(long key1, long key2, void *ctx __maybe_unused) 1176 { 1177 return strcasecmp((const char *)key1, (const char *)key2) == 0; 1178 } 1179 1180 int perf_pmu__init(struct perf_pmu *pmu, __u32 type, const char *name) 1181 { 1182 pmu->type = type; 1183 INIT_LIST_HEAD(&pmu->format); 1184 INIT_LIST_HEAD(&pmu->caps); 1185 1186 pmu->name = strdup(name); 1187 if (!pmu->name) 1188 return -ENOMEM; 1189 1190 pmu->aliases = hashmap__new(aliases__hash, aliases__equal, /*ctx=*/ NULL); 1191 if (!pmu->aliases) 1192 return -ENOMEM; 1193 1194 return 0; 1195 } 1196 1197 static __u32 wellknown_pmu_type(const char *pmu_name) 1198 { 1199 struct { 1200 const char *pmu_name; 1201 __u32 type; 1202 } wellknown_pmus[] = { 1203 { 1204 "software", 1205 PERF_TYPE_SOFTWARE 1206 }, 1207 { 1208 "tracepoint", 1209 PERF_TYPE_TRACEPOINT 1210 }, 1211 { 1212 "breakpoint", 1213 PERF_TYPE_BREAKPOINT 1214 }, 1215 }; 1216 for (size_t i = 0; i < ARRAY_SIZE(wellknown_pmus); i++) { 1217 if (!strcmp(wellknown_pmus[i].pmu_name, pmu_name)) 1218 return wellknown_pmus[i].type; 1219 } 1220 return PERF_TYPE_MAX; 1221 } 1222 1223 struct perf_pmu *perf_pmu__lookup(struct list_head *pmus, int dirfd, const char *name, 1224 bool eager_load) 1225 { 1226 struct perf_pmu *pmu; 1227 1228 pmu = zalloc(sizeof(*pmu)); 1229 if (!pmu) 1230 return NULL; 1231 1232 if (perf_pmu__init(pmu, PERF_PMU_TYPE_FAKE, name) != 0) { 1233 perf_pmu__delete(pmu); 1234 return NULL; 1235 } 1236 1237 /* 1238 * Read type early to fail fast if a lookup name isn't a PMU. Ensure 1239 * that type value is successfully assigned (return 1). 1240 */ 1241 if (perf_pmu__scan_file_at(pmu, dirfd, "type", "%u", &pmu->type) != 1) { 1242 /* Double check the PMU's name isn't wellknown. */ 1243 pmu->type = wellknown_pmu_type(name); 1244 if (pmu->type == PERF_TYPE_MAX) { 1245 perf_pmu__delete(pmu); 1246 return NULL; 1247 } 1248 } 1249 1250 /* 1251 * The pmu data we store & need consists of the pmu 1252 * type value and format definitions. Load both right 1253 * now. 1254 */ 1255 if (pmu_format(pmu, dirfd, name, eager_load)) { 1256 perf_pmu__delete(pmu); 1257 return NULL; 1258 } 1259 1260 pmu->is_core = is_pmu_core(name); 1261 pmu->cpus = pmu_cpumask(dirfd, name, pmu->is_core); 1262 1263 pmu->is_uncore = pmu_is_uncore(dirfd, name); 1264 if (pmu->is_uncore) 1265 pmu->id = pmu_id(name); 1266 pmu->max_precise = pmu_max_precise(dirfd, pmu); 1267 pmu->alias_name = pmu_find_alias_name(pmu, dirfd); 1268 pmu->events_table = perf_pmu__find_events_table(pmu); 1269 /* 1270 * Load the sys json events/aliases when loading the PMU as each event 1271 * may have a different compat regular expression. We therefore can't 1272 * know the number of sys json events/aliases without computing the 1273 * regular expressions for them all. 1274 */ 1275 pmu_add_sys_aliases(pmu); 1276 list_add_tail(&pmu->list, pmus); 1277 1278 perf_pmu__arch_init(pmu); 1279 1280 if (eager_load) 1281 pmu_aliases_parse_eager(pmu, dirfd); 1282 1283 return pmu; 1284 } 1285 1286 /* Creates the PMU when sysfs scanning fails. */ 1287 struct perf_pmu *perf_pmu__create_placeholder_core_pmu(struct list_head *core_pmus) 1288 { 1289 struct perf_pmu *pmu = zalloc(sizeof(*pmu)); 1290 1291 if (!pmu) 1292 return NULL; 1293 1294 pmu->name = strdup("cpu"); 1295 if (!pmu->name) { 1296 free(pmu); 1297 return NULL; 1298 } 1299 1300 pmu->is_core = true; 1301 pmu->type = PERF_TYPE_RAW; 1302 pmu->cpus = cpu_map__online(); 1303 1304 INIT_LIST_HEAD(&pmu->format); 1305 pmu->aliases = hashmap__new(aliases__hash, aliases__equal, /*ctx=*/ NULL); 1306 INIT_LIST_HEAD(&pmu->caps); 1307 list_add_tail(&pmu->list, core_pmus); 1308 return pmu; 1309 } 1310 1311 bool perf_pmu__is_fake(const struct perf_pmu *pmu) 1312 { 1313 return pmu->type == PERF_PMU_TYPE_FAKE; 1314 } 1315 1316 void perf_pmu__warn_invalid_formats(struct perf_pmu *pmu) 1317 { 1318 struct perf_pmu_format *format; 1319 1320 if (pmu->formats_checked) 1321 return; 1322 1323 pmu->formats_checked = true; 1324 1325 /* fake pmu doesn't have format list */ 1326 if (perf_pmu__is_fake(pmu)) 1327 return; 1328 1329 list_for_each_entry(format, &pmu->format, list) { 1330 perf_pmu_format__load(pmu, format); 1331 if (format->value >= PERF_PMU_FORMAT_VALUE_CONFIG_END) { 1332 pr_warning("WARNING: '%s' format '%s' requires 'perf_event_attr::config%d'" 1333 "which is not supported by this version of perf!\n", 1334 pmu->name, format->name, format->value); 1335 return; 1336 } 1337 } 1338 } 1339 1340 /* 1341 * Unpacks a raw config[n] value using the sparse bitfield that defines a 1342 * format attr. For example "config1:1,6-7,44" defines a 4 bit value across non 1343 * contiguous bits and this function returns those 4 bits as a value. 1344 */ 1345 u64 perf_pmu__format_unpack(unsigned long *format, u64 config_val) 1346 { 1347 int val_bit = 0; 1348 u64 res = 0; 1349 int fmt_bit; 1350 1351 for_each_set_bit(fmt_bit, format, PERF_PMU_FORMAT_BITS) { 1352 if (config_val & (1ULL << fmt_bit)) 1353 res |= BIT_ULL(val_bit); 1354 1355 val_bit++; 1356 } 1357 return res; 1358 } 1359 1360 struct perf_pmu_format *pmu_find_format(const struct list_head *formats, 1361 const char *name) 1362 { 1363 struct perf_pmu_format *format; 1364 1365 list_for_each_entry(format, formats, list) 1366 if (!strcmp(format->name, name)) 1367 return format; 1368 1369 return NULL; 1370 } 1371 1372 __u64 perf_pmu__format_bits(const struct perf_pmu *pmu, const char *name) 1373 { 1374 struct perf_pmu_format *format = pmu_find_format(&pmu->format, name); 1375 __u64 bits = 0; 1376 int fbit; 1377 1378 if (!format) 1379 return 0; 1380 1381 for_each_set_bit(fbit, format->bits, PERF_PMU_FORMAT_BITS) 1382 bits |= 1ULL << fbit; 1383 1384 return bits; 1385 } 1386 1387 int perf_pmu__format_type(const struct perf_pmu *pmu, const char *name) 1388 { 1389 struct perf_pmu_format *format = pmu_find_format(&pmu->format, name); 1390 1391 if (!format) 1392 return -1; 1393 1394 perf_pmu_format__load(pmu, format); 1395 return format->value; 1396 } 1397 1398 /* 1399 * Sets value based on the format definition (format parameter) 1400 * and unformatted value (value parameter). 1401 */ 1402 void perf_pmu__format_pack(unsigned long *format, __u64 value, __u64 *v, 1403 bool zero) 1404 { 1405 unsigned long fbit, vbit; 1406 1407 for (fbit = 0, vbit = 0; fbit < PERF_PMU_FORMAT_BITS; fbit++) { 1408 1409 if (!test_bit(fbit, format)) 1410 continue; 1411 1412 if (value & (1llu << vbit++)) 1413 *v |= (1llu << fbit); 1414 else if (zero) 1415 *v &= ~(1llu << fbit); 1416 } 1417 } 1418 1419 static __u64 pmu_format_max_value(const unsigned long *format) 1420 { 1421 int w; 1422 1423 w = bitmap_weight(format, PERF_PMU_FORMAT_BITS); 1424 if (!w) 1425 return 0; 1426 if (w < 64) 1427 return (1ULL << w) - 1; 1428 return -1; 1429 } 1430 1431 /* 1432 * Term is a string term, and might be a param-term. Try to look up it's value 1433 * in the remaining terms. 1434 * - We have a term like "base-or-format-term=param-term", 1435 * - We need to find the value supplied for "param-term" (with param-term named 1436 * in a config string) later on in the term list. 1437 */ 1438 static int pmu_resolve_param_term(struct parse_events_term *term, 1439 struct parse_events_terms *head_terms, 1440 __u64 *value) 1441 { 1442 struct parse_events_term *t; 1443 1444 list_for_each_entry(t, &head_terms->terms, list) { 1445 if (t->type_val == PARSE_EVENTS__TERM_TYPE_NUM && 1446 t->config && !strcmp(t->config, term->config)) { 1447 t->used = true; 1448 *value = t->val.num; 1449 return 0; 1450 } 1451 } 1452 1453 if (verbose > 0) 1454 printf("Required parameter '%s' not specified\n", term->config); 1455 1456 return -1; 1457 } 1458 1459 static char *pmu_formats_string(const struct list_head *formats) 1460 { 1461 struct perf_pmu_format *format; 1462 char *str = NULL; 1463 struct strbuf buf = STRBUF_INIT; 1464 unsigned int i = 0; 1465 1466 if (!formats) 1467 return NULL; 1468 1469 /* sysfs exported terms */ 1470 list_for_each_entry(format, formats, list) 1471 if (strbuf_addf(&buf, i++ ? ",%s" : "%s", format->name) < 0) 1472 goto error; 1473 1474 str = strbuf_detach(&buf, NULL); 1475 error: 1476 strbuf_release(&buf); 1477 1478 return str; 1479 } 1480 1481 /* 1482 * Setup one of config[12] attr members based on the 1483 * user input data - term parameter. 1484 */ 1485 static int pmu_config_term(const struct perf_pmu *pmu, 1486 struct perf_event_attr *attr, 1487 struct parse_events_term *term, 1488 struct parse_events_terms *head_terms, 1489 bool zero, bool apply_hardcoded, 1490 struct parse_events_error *err) 1491 { 1492 struct perf_pmu_format *format; 1493 __u64 *vp; 1494 __u64 val, max_val; 1495 1496 /* 1497 * If this is a parameter we've already used for parameterized-eval, 1498 * skip it in normal eval. 1499 */ 1500 if (term->used) 1501 return 0; 1502 1503 /* 1504 * Hardcoded terms are generally handled in event parsing, which 1505 * traditionally have had to handle not having a PMU. An alias may 1506 * have hard coded config values, optionally apply them below. 1507 */ 1508 if (parse_events__is_hardcoded_term(term)) { 1509 /* Config terms set all bits in the config. */ 1510 DECLARE_BITMAP(bits, PERF_PMU_FORMAT_BITS); 1511 1512 if (!apply_hardcoded) 1513 return 0; 1514 1515 bitmap_fill(bits, PERF_PMU_FORMAT_BITS); 1516 1517 switch (term->type_term) { 1518 case PARSE_EVENTS__TERM_TYPE_CONFIG: 1519 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1520 perf_pmu__format_pack(bits, term->val.num, &attr->config, zero); 1521 break; 1522 case PARSE_EVENTS__TERM_TYPE_CONFIG1: 1523 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1524 perf_pmu__format_pack(bits, term->val.num, &attr->config1, zero); 1525 break; 1526 case PARSE_EVENTS__TERM_TYPE_CONFIG2: 1527 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1528 perf_pmu__format_pack(bits, term->val.num, &attr->config2, zero); 1529 break; 1530 case PARSE_EVENTS__TERM_TYPE_CONFIG3: 1531 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1532 perf_pmu__format_pack(bits, term->val.num, &attr->config3, zero); 1533 break; 1534 case PARSE_EVENTS__TERM_TYPE_CONFIG4: 1535 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1536 perf_pmu__format_pack(bits, term->val.num, &attr->config4, zero); 1537 break; 1538 case PARSE_EVENTS__TERM_TYPE_LEGACY_HARDWARE_CONFIG: 1539 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1540 assert(term->val.num < PERF_COUNT_HW_MAX); 1541 assert(pmu->is_core); 1542 attr->config = term->val.num; 1543 if (perf_pmus__supports_extended_type()) 1544 attr->config |= (__u64)pmu->type << PERF_PMU_TYPE_SHIFT; 1545 attr->type = PERF_TYPE_HARDWARE; 1546 break; 1547 case PARSE_EVENTS__TERM_TYPE_LEGACY_CACHE_CONFIG: { 1548 #ifndef NDEBUG 1549 int cache_type = term->val.num & 0xFF; 1550 int cache_op = (term->val.num >> 8) & 0xFF; 1551 int cache_result = (term->val.num >> 16) & 0xFF; 1552 1553 assert(cache_type < PERF_COUNT_HW_CACHE_MAX); 1554 assert(cache_op < PERF_COUNT_HW_CACHE_OP_MAX); 1555 assert(cache_result < PERF_COUNT_HW_CACHE_RESULT_MAX); 1556 #endif 1557 assert(term->type_val == PARSE_EVENTS__TERM_TYPE_NUM); 1558 assert((term->val.num & ~0xFFFFFF) == 0); 1559 assert(pmu->is_core); 1560 attr->config = term->val.num; 1561 if (perf_pmus__supports_extended_type()) 1562 attr->config |= (__u64)pmu->type << PERF_PMU_TYPE_SHIFT; 1563 attr->type = PERF_TYPE_HW_CACHE; 1564 break; 1565 } 1566 case PARSE_EVENTS__TERM_TYPE_USER: /* Not hardcoded. */ 1567 return -EINVAL; 1568 case PARSE_EVENTS__TERM_TYPE_NAME ... PARSE_EVENTS__TERM_TYPE_RATIO_TO_PREV: 1569 /* Skip non-config terms. */ 1570 break; 1571 default: 1572 break; 1573 } 1574 return 0; 1575 } 1576 1577 format = pmu_find_format(&pmu->format, term->config); 1578 if (!format) { 1579 char *pmu_term = pmu_formats_string(&pmu->format); 1580 char *unknown_term; 1581 char *help_msg; 1582 1583 if (asprintf(&unknown_term, 1584 "unknown term '%s' for pmu '%s'", 1585 term->config, pmu->name) < 0) 1586 unknown_term = NULL; 1587 help_msg = parse_events_formats_error_string(pmu_term); 1588 if (err) { 1589 parse_events_error__handle(err, term->err_term, 1590 unknown_term, 1591 help_msg); 1592 } else { 1593 pr_debug("%s (%s)\n", unknown_term, help_msg); 1594 free(unknown_term); 1595 } 1596 free(pmu_term); 1597 return -EINVAL; 1598 } 1599 perf_pmu_format__load(pmu, format); 1600 switch (format->value) { 1601 case PERF_PMU_FORMAT_VALUE_CONFIG: 1602 vp = &attr->config; 1603 break; 1604 case PERF_PMU_FORMAT_VALUE_CONFIG1: 1605 vp = &attr->config1; 1606 break; 1607 case PERF_PMU_FORMAT_VALUE_CONFIG2: 1608 vp = &attr->config2; 1609 break; 1610 case PERF_PMU_FORMAT_VALUE_CONFIG3: 1611 vp = &attr->config3; 1612 break; 1613 case PERF_PMU_FORMAT_VALUE_CONFIG4: 1614 vp = &attr->config4; 1615 break; 1616 default: 1617 return -EINVAL; 1618 } 1619 1620 /* 1621 * Either directly use a numeric term, or try to translate string terms 1622 * using event parameters. 1623 */ 1624 if (term->type_val == PARSE_EVENTS__TERM_TYPE_NUM) { 1625 if (term->no_value && 1626 bitmap_weight(format->bits, PERF_PMU_FORMAT_BITS) > 1) { 1627 if (err) { 1628 parse_events_error__handle(err, term->err_val, 1629 strdup("no value assigned for term"), 1630 NULL); 1631 } 1632 return -EINVAL; 1633 } 1634 1635 val = term->val.num; 1636 } else if (term->type_val == PARSE_EVENTS__TERM_TYPE_STR) { 1637 if (strcmp(term->val.str, "?")) { 1638 if (verbose > 0) { 1639 pr_info("Invalid sysfs entry %s=%s\n", 1640 term->config, term->val.str); 1641 } 1642 if (err) { 1643 parse_events_error__handle(err, term->err_val, 1644 strdup("expected numeric value"), 1645 NULL); 1646 } 1647 return -EINVAL; 1648 } 1649 1650 if (pmu_resolve_param_term(term, head_terms, &val)) 1651 return -EINVAL; 1652 } else 1653 return -EINVAL; 1654 1655 max_val = pmu_format_max_value(format->bits); 1656 if (val > max_val) { 1657 if (err) { 1658 char *err_str; 1659 1660 if (asprintf(&err_str, 1661 "value too big for format (%s), maximum is %llu", 1662 format->name, (unsigned long long)max_val) < 0) { 1663 err_str = strdup("value too big for format"); 1664 } 1665 parse_events_error__handle(err, term->err_val, err_str, /*help=*/NULL); 1666 return -EINVAL; 1667 } 1668 /* 1669 * Assume we don't care if !err, in which case the value will be 1670 * silently truncated. 1671 */ 1672 } 1673 1674 perf_pmu__format_pack(format->bits, val, vp, zero); 1675 return 0; 1676 } 1677 1678 int perf_pmu__config_terms(const struct perf_pmu *pmu, 1679 struct perf_event_attr *attr, 1680 struct parse_events_terms *terms, 1681 bool zero, bool apply_hardcoded, 1682 struct parse_events_error *err) 1683 { 1684 struct parse_events_term *term; 1685 1686 if (perf_pmu__is_hwmon(pmu)) 1687 return hwmon_pmu__config_terms(pmu, attr, terms, err); 1688 if (perf_pmu__is_drm(pmu)) 1689 return drm_pmu__config_terms(pmu, attr, terms, err); 1690 1691 list_for_each_entry(term, &terms->terms, list) { 1692 if (pmu_config_term(pmu, attr, term, terms, zero, apply_hardcoded, err)) 1693 return -EINVAL; 1694 } 1695 1696 return 0; 1697 } 1698 1699 /* 1700 * Configures event's 'attr' parameter based on the: 1701 * 1) users input - specified in terms parameter 1702 * 2) pmu format definitions - specified by pmu parameter 1703 */ 1704 int perf_pmu__config(struct perf_pmu *pmu, struct perf_event_attr *attr, 1705 struct parse_events_terms *head_terms, 1706 bool apply_hardcoded, 1707 struct parse_events_error *err) 1708 { 1709 bool zero = !!pmu->perf_event_attr_init_default; 1710 1711 /* Fake PMU doesn't have proper terms so nothing to configure in attr. */ 1712 if (perf_pmu__is_fake(pmu)) 1713 return 0; 1714 1715 return perf_pmu__config_terms(pmu, attr, head_terms, zero, apply_hardcoded, err); 1716 } 1717 1718 static struct perf_pmu_alias *pmu_find_alias(struct perf_pmu *pmu, 1719 struct parse_events_term *term) 1720 { 1721 struct perf_pmu_alias *alias; 1722 const char *name; 1723 1724 if (parse_events__is_hardcoded_term(term)) 1725 return NULL; 1726 1727 if (term->type_val == PARSE_EVENTS__TERM_TYPE_NUM) { 1728 if (!term->no_value) 1729 return NULL; 1730 if (pmu_find_format(&pmu->format, term->config)) 1731 return NULL; 1732 name = term->config; 1733 1734 } else if (term->type_val == PARSE_EVENTS__TERM_TYPE_STR) { 1735 if (strcasecmp(term->config, "event")) 1736 return NULL; 1737 name = term->val.str; 1738 } else { 1739 return NULL; 1740 } 1741 1742 alias = perf_pmu__find_alias(pmu, name, /*load=*/ true); 1743 if (alias || pmu->cpu_aliases_added) 1744 return alias; 1745 1746 /* Alias doesn't exist, try to get it from the json events. */ 1747 if ((pmu_events_table__find_event(pmu->events_table, pmu, name, 1748 pmu_add_cpu_aliases_map_callback, 1749 pmu) == 0) || 1750 (pmu->is_core && 1751 pmu_events_table__find_event(perf_pmu__default_core_events_table(), 1752 pmu, name, 1753 pmu_add_cpu_aliases_map_callback, 1754 pmu) == 0)) { 1755 alias = perf_pmu__find_alias(pmu, name, /*load=*/ false); 1756 } 1757 return alias; 1758 } 1759 1760 1761 static int check_info_data(struct perf_pmu *pmu, 1762 struct perf_pmu_alias *alias, 1763 struct perf_pmu_info *info, 1764 struct parse_events_error *err, 1765 int column) 1766 { 1767 read_alias_info(pmu, alias); 1768 /* 1769 * Only one term in event definition can 1770 * define unit, scale and snapshot, fail 1771 * if there's more than one. 1772 */ 1773 if (info->unit && alias->unit[0]) { 1774 parse_events_error__handle(err, column, 1775 strdup("Attempt to set event's unit twice"), 1776 NULL); 1777 return -EINVAL; 1778 } 1779 if (info->scale && alias->scale) { 1780 parse_events_error__handle(err, column, 1781 strdup("Attempt to set event's scale twice"), 1782 NULL); 1783 return -EINVAL; 1784 } 1785 if (info->snapshot && alias->snapshot) { 1786 parse_events_error__handle(err, column, 1787 strdup("Attempt to set event snapshot twice"), 1788 NULL); 1789 return -EINVAL; 1790 } 1791 1792 if (alias->unit[0]) 1793 info->unit = alias->unit; 1794 1795 if (alias->scale) 1796 info->scale = alias->scale; 1797 1798 if (alias->snapshot) 1799 info->snapshot = alias->snapshot; 1800 1801 return 0; 1802 } 1803 1804 static int perf_pmu__parse_terms_to_attr(struct perf_pmu *pmu, const char *terms_str, 1805 struct perf_event_attr *attr) 1806 { 1807 struct parse_events_terms terms; 1808 int ret; 1809 1810 parse_events_terms__init(&terms); 1811 ret = parse_events_terms(&terms, terms_str); 1812 if (ret) { 1813 pr_debug("Failed to parse terms '%s': %d\n", terms_str, ret); 1814 parse_events_terms__exit(&terms); 1815 return ret; 1816 } 1817 ret = perf_pmu__config(pmu, attr, &terms, /*apply_hardcoded=*/true, /*err=*/NULL); 1818 parse_events_terms__exit(&terms); 1819 return ret; 1820 } 1821 1822 /* 1823 * Find alias in the terms list and replace it with the terms 1824 * defined for the alias 1825 */ 1826 int perf_pmu__check_alias(struct perf_pmu *pmu, struct parse_events_terms *head_terms, 1827 struct perf_pmu_info *info, bool *rewrote_terms, 1828 u64 *alternate_hw_config, struct parse_events_error *err) 1829 { 1830 struct parse_events_term *term, *h; 1831 struct perf_pmu_alias *alias; 1832 int ret; 1833 1834 *rewrote_terms = false; 1835 info->per_pkg = false; 1836 1837 /* 1838 * Mark unit and scale as not set 1839 * (different from default values, see below) 1840 */ 1841 info->unit = NULL; 1842 info->scale = 0.0; 1843 info->snapshot = false; 1844 info->retirement_latency_mean = 0.0; 1845 info->retirement_latency_min = 0.0; 1846 info->retirement_latency_max = 0.0; 1847 1848 if (perf_pmu__is_hwmon(pmu)) { 1849 ret = hwmon_pmu__check_alias(head_terms, info, err); 1850 goto out; 1851 } 1852 if (perf_pmu__is_drm(pmu)) { 1853 ret = drm_pmu__check_alias(pmu, head_terms, info, err); 1854 goto out; 1855 } 1856 1857 /* Fake PMU doesn't rewrite terms. */ 1858 if (perf_pmu__is_fake(pmu)) 1859 goto out; 1860 1861 list_for_each_entry_safe(term, h, &head_terms->terms, list) { 1862 alias = pmu_find_alias(pmu, term); 1863 if (!alias) 1864 continue; 1865 ret = pmu_alias_terms(alias, &term->list); 1866 if (ret) { 1867 parse_events_error__handle(err, term->err_term, 1868 strdup("Failed to parse terms"), 1869 NULL); 1870 return ret; 1871 } 1872 1873 *rewrote_terms = true; 1874 ret = check_info_data(pmu, alias, info, err, term->err_term); 1875 if (ret) 1876 return ret; 1877 1878 if (alias->legacy_terms) { 1879 struct perf_event_attr attr = {.config = 0,}; 1880 1881 ret = perf_pmu__parse_terms_to_attr(pmu, alias->legacy_terms, &attr); 1882 if (ret) { 1883 parse_events_error__handle(err, term->err_term, 1884 strdup("Error evaluating legacy terms"), 1885 NULL); 1886 return ret; 1887 } 1888 if (attr.type == PERF_TYPE_HARDWARE) 1889 *alternate_hw_config = attr.config & PERF_HW_EVENT_MASK; 1890 } 1891 1892 if (alias->per_pkg) 1893 info->per_pkg = true; 1894 1895 info->retirement_latency_mean = alias->retirement_latency_mean; 1896 info->retirement_latency_min = alias->retirement_latency_min; 1897 info->retirement_latency_max = alias->retirement_latency_max; 1898 1899 list_del_init(&term->list); 1900 parse_events_term__delete(term); 1901 } 1902 out: 1903 /* 1904 * if no unit or scale found in aliases, then 1905 * set defaults as for evsel 1906 * unit cannot left to NULL 1907 */ 1908 if (info->unit == NULL) 1909 info->unit = ""; 1910 1911 if (info->scale == 0.0) 1912 info->scale = 1.0; 1913 1914 return 0; 1915 } 1916 1917 struct find_event_args { 1918 const char *event; 1919 void *state; 1920 pmu_event_callback cb; 1921 }; 1922 1923 static int find_event_callback(void *state, struct pmu_event_info *info) 1924 { 1925 struct find_event_args *args = state; 1926 1927 if (!strcmp(args->event, info->name)) 1928 return args->cb(args->state, info); 1929 1930 return 0; 1931 } 1932 1933 int perf_pmu__find_event(struct perf_pmu *pmu, const char *event, void *state, pmu_event_callback cb) 1934 { 1935 struct find_event_args args = { 1936 .event = event, 1937 .state = state, 1938 .cb = cb, 1939 }; 1940 1941 /* Sub-optimal, but function is only used by tests. */ 1942 return perf_pmu__for_each_event(pmu, /*skip_duplicate_pmus=*/ false, 1943 &args, find_event_callback); 1944 } 1945 1946 static void perf_pmu__del_formats(struct list_head *formats) 1947 { 1948 struct perf_pmu_format *fmt, *tmp; 1949 1950 list_for_each_entry_safe(fmt, tmp, formats, list) { 1951 list_del(&fmt->list); 1952 zfree(&fmt->name); 1953 free(fmt); 1954 } 1955 } 1956 1957 bool perf_pmu__has_format(const struct perf_pmu *pmu, const char *name) 1958 { 1959 struct perf_pmu_format *format; 1960 1961 list_for_each_entry(format, &pmu->format, list) { 1962 if (!strcmp(format->name, name)) 1963 return true; 1964 } 1965 return false; 1966 } 1967 1968 int perf_pmu__for_each_format(struct perf_pmu *pmu, void *state, pmu_format_callback cb) 1969 { 1970 static const char *const terms[] = { 1971 "config=0..0xffffffffffffffff", 1972 "config1=0..0xffffffffffffffff", 1973 "config2=0..0xffffffffffffffff", 1974 "config3=0..0xffffffffffffffff", 1975 "config4=0..0xffffffffffffffff", 1976 "legacy-hardware-config=0..9,", 1977 "legacy-cache-config=0..0xffffff,", 1978 "name=string", 1979 "period=number", 1980 "freq=number", 1981 "branch_type=(u|k|hv|any|...)", 1982 "time", 1983 "call-graph=(fp|dwarf|lbr)", 1984 "stack-size=number", 1985 "max-stack=number", 1986 "nr=number", 1987 "inherit", 1988 "no-inherit", 1989 "overwrite", 1990 "no-overwrite", 1991 "percore", 1992 "aux-output", 1993 "aux-action=(pause|resume|start-paused)", 1994 "aux-sample-size=number", 1995 "cpu=number", 1996 "ratio-to-prev=string", 1997 }; 1998 struct perf_pmu_format *format; 1999 int ret; 2000 2001 /* 2002 * max-events and driver-config are missing above as are the internal 2003 * types user, metric-id, and raw. Assert against the enum 2004 * parse_events__term_type so they are kept in sync. 2005 */ 2006 _Static_assert(ARRAY_SIZE(terms) == __PARSE_EVENTS__TERM_TYPE_NR - 4, 2007 "perf_pmu__for_each_format()'s terms must be kept in sync with enum parse_events__term_type"); 2008 list_for_each_entry(format, &pmu->format, list) { 2009 perf_pmu_format__load(pmu, format); 2010 ret = cb(state, format->name, (int)format->value, format->bits); 2011 if (ret) 2012 return ret; 2013 } 2014 if (!pmu->is_core) 2015 return 0; 2016 2017 for (size_t i = 0; i < ARRAY_SIZE(terms); i++) { 2018 int config = PERF_PMU_FORMAT_VALUE_CONFIG; 2019 2020 if (i < PERF_PMU_FORMAT_VALUE_CONFIG_END) 2021 config = i; 2022 2023 ret = cb(state, terms[i], config, /*bits=*/NULL); 2024 if (ret) 2025 return ret; 2026 } 2027 return 0; 2028 } 2029 2030 bool is_pmu_core(const char *name) 2031 { 2032 return !strcmp(name, "cpu") || !strcmp(name, "cpum_cf") || is_sysfs_pmu_core(name); 2033 } 2034 2035 bool perf_pmu__supports_legacy_cache(const struct perf_pmu *pmu) 2036 { 2037 return pmu->is_core; 2038 } 2039 2040 bool perf_pmu__auto_merge_stats(const struct perf_pmu *pmu) 2041 { 2042 return !pmu->is_core || perf_pmus__num_core_pmus() == 1; 2043 } 2044 2045 bool perf_pmu__have_event(struct perf_pmu *pmu, const char *name) 2046 { 2047 if (!name) 2048 return false; 2049 if (perf_pmu__is_tool(pmu) && tool_pmu__skip_event(name)) 2050 return false; 2051 if (perf_pmu__is_tracepoint(pmu)) 2052 return tp_pmu__have_event(pmu, name); 2053 if (perf_pmu__is_hwmon(pmu)) 2054 return hwmon_pmu__have_event(pmu, name); 2055 if (perf_pmu__is_drm(pmu)) 2056 return drm_pmu__have_event(pmu, name); 2057 if (perf_pmu__find_alias(pmu, name, /*load=*/ true) != NULL) 2058 return true; 2059 if (pmu->cpu_aliases_added || (!pmu->events_table && !pmu->is_core)) 2060 return false; 2061 if (pmu_events_table__find_event(pmu->events_table, pmu, name, NULL, NULL) == 0) 2062 return true; 2063 return pmu->is_core && 2064 pmu_events_table__find_event(perf_pmu__default_core_events_table(), 2065 pmu, name, NULL, NULL) == 0; 2066 } 2067 2068 size_t perf_pmu__num_events(struct perf_pmu *pmu) 2069 { 2070 size_t nr; 2071 2072 if (perf_pmu__is_tracepoint(pmu)) 2073 return tp_pmu__num_events(pmu); 2074 if (perf_pmu__is_hwmon(pmu)) 2075 return hwmon_pmu__num_events(pmu); 2076 if (perf_pmu__is_drm(pmu)) 2077 return drm_pmu__num_events(pmu); 2078 2079 pmu_aliases_parse(pmu); 2080 nr = pmu->sysfs_aliases + pmu->sys_json_aliases; 2081 2082 if (pmu->cpu_aliases_added) { 2083 nr += pmu->cpu_json_aliases; 2084 } else if (pmu->events_table || pmu->is_core) { 2085 nr += pmu_events_table__num_events(pmu->events_table, pmu); 2086 if (pmu->is_core) { 2087 nr += pmu_events_table__num_events( 2088 perf_pmu__default_core_events_table(), pmu); 2089 } 2090 nr -= pmu->cpu_common_json_aliases; 2091 } else { 2092 assert(pmu->cpu_json_aliases == 0 && pmu->cpu_common_json_aliases == 0); 2093 } 2094 2095 if (perf_pmu__is_tool(pmu)) 2096 nr -= tool_pmu__num_skip_events(); 2097 2098 return pmu->selectable ? nr + 1 : nr; 2099 } 2100 2101 static int sub_non_neg(int a, int b) 2102 { 2103 if (b > a) 2104 return 0; 2105 return a - b; 2106 } 2107 2108 static char *format_alias(char *buf, int len, const struct perf_pmu *pmu, 2109 const struct perf_pmu_alias *alias, bool skip_duplicate_pmus) 2110 { 2111 struct parse_events_terms terms; 2112 struct parse_events_term *term; 2113 int ret, used; 2114 size_t pmu_name_len = pmu_deduped_name_len(pmu, pmu->name, 2115 skip_duplicate_pmus); 2116 2117 /* Paramemterized events have the parameters shown. */ 2118 if (strstr(alias->terms, "=?")) { 2119 /* No parameters. */ 2120 snprintf(buf, len, "%.*s/%s/", (int)pmu_name_len, pmu->name, alias->name); 2121 return buf; 2122 } 2123 2124 parse_events_terms__init(&terms); 2125 ret = parse_events_terms(&terms, alias->terms); 2126 if (ret) { 2127 pr_err("Failure to parse '%s' terms '%s': %d\n", 2128 alias->name, alias->terms, ret); 2129 parse_events_terms__exit(&terms); 2130 snprintf(buf, len, "%.*s/%s/", (int)pmu_name_len, pmu->name, alias->name); 2131 return buf; 2132 } 2133 used = snprintf(buf, len, "%.*s/%s", (int)pmu_name_len, pmu->name, alias->name); 2134 2135 list_for_each_entry(term, &terms.terms, list) { 2136 if (term->type_val == PARSE_EVENTS__TERM_TYPE_STR) 2137 used += snprintf(buf + used, sub_non_neg(len, used), 2138 ",%s=%s", term->config, 2139 term->val.str); 2140 } 2141 parse_events_terms__exit(&terms); 2142 if (sub_non_neg(len, used) > 0) { 2143 buf[used] = '/'; 2144 used++; 2145 } 2146 if (sub_non_neg(len, used) > 0) { 2147 buf[used] = '\0'; 2148 used++; 2149 } else 2150 buf[len - 1] = '\0'; 2151 2152 return buf; 2153 } 2154 2155 static bool perf_pmu_alias__check_deprecated(struct perf_pmu *pmu, struct perf_pmu_alias *alias) 2156 { 2157 struct perf_event_attr attr = {.config = 0,}; 2158 const char *check_terms; 2159 bool has_legacy_config; 2160 2161 if (alias->legacy_deprecated_checked) 2162 return alias->deprecated; 2163 2164 alias->legacy_deprecated_checked = true; 2165 if (alias->deprecated) 2166 return true; 2167 2168 check_terms = alias->terms; 2169 has_legacy_config = 2170 strstr(check_terms, "legacy-hardware-config=") != NULL || 2171 strstr(check_terms, "legacy-cache-config=") != NULL; 2172 if (!has_legacy_config && alias->legacy_terms) { 2173 check_terms = alias->legacy_terms; 2174 has_legacy_config = 2175 strstr(check_terms, "legacy-hardware-config=") != NULL || 2176 strstr(check_terms, "legacy-cache-config=") != NULL; 2177 } 2178 if (!has_legacy_config) 2179 return false; 2180 2181 if (perf_pmu__parse_terms_to_attr(pmu, check_terms, &attr) != 0) { 2182 /* Parsing failed, set as deprecated. */ 2183 alias->deprecated = true; 2184 } else if (attr.type < PERF_TYPE_MAX) { 2185 /* Flag unsupported legacy events as deprecated. */ 2186 alias->deprecated = !is_event_supported(attr.type, attr.config); 2187 } 2188 return alias->deprecated; 2189 } 2190 2191 int perf_pmu__for_each_event(struct perf_pmu *pmu, bool skip_duplicate_pmus, 2192 void *state, pmu_event_callback cb) 2193 { 2194 char buf[1024]; 2195 struct pmu_event_info info = { 2196 .pmu = pmu, 2197 .event_type_desc = "Kernel PMU event", 2198 }; 2199 int ret = 0; 2200 struct hashmap_entry *entry; 2201 size_t bkt; 2202 2203 if (perf_pmu__is_tracepoint(pmu)) 2204 return tp_pmu__for_each_event(pmu, state, cb); 2205 if (perf_pmu__is_hwmon(pmu)) 2206 return hwmon_pmu__for_each_event(pmu, state, cb); 2207 if (perf_pmu__is_drm(pmu)) 2208 return drm_pmu__for_each_event(pmu, state, cb); 2209 2210 pmu_aliases_parse(pmu); 2211 pmu_add_cpu_aliases(pmu); 2212 hashmap__for_each_entry(pmu->aliases, entry, bkt) { 2213 struct perf_pmu_alias *event = entry->pvalue; 2214 size_t buf_used, pmu_name_len; 2215 2216 if (perf_pmu__is_tool(pmu) && tool_pmu__skip_event(event->name)) 2217 continue; 2218 2219 info.pmu_name = event->pmu_name ?: pmu->name; 2220 pmu_name_len = pmu_deduped_name_len(pmu, info.pmu_name, 2221 skip_duplicate_pmus); 2222 info.alias = NULL; 2223 if (event->desc) { 2224 info.name = event->name; 2225 buf_used = 0; 2226 } else { 2227 info.name = format_alias(buf, sizeof(buf), pmu, event, 2228 skip_duplicate_pmus); 2229 if (pmu->is_core) { 2230 info.alias = info.name; 2231 info.name = event->name; 2232 } 2233 buf_used = strlen(buf) + 1; 2234 } 2235 info.scale_unit = NULL; 2236 if (strlen(event->unit) || event->scale != 1.0) { 2237 info.scale_unit = buf + buf_used; 2238 buf_used += snprintf(buf + buf_used, sizeof(buf) - buf_used, 2239 "%G%s", event->scale, event->unit) + 1; 2240 } 2241 info.desc = event->desc; 2242 info.long_desc = event->long_desc; 2243 info.encoding_desc = buf + buf_used; 2244 buf_used += snprintf(buf + buf_used, sizeof(buf) - buf_used, 2245 "%.*s/%s/", (int)pmu_name_len, info.pmu_name, event->terms) + 1; 2246 info.str = event->terms; 2247 info.topic = event->topic; 2248 info.deprecated = perf_pmu_alias__check_deprecated(pmu, event); 2249 ret = cb(state, &info); 2250 if (ret) 2251 goto out; 2252 } 2253 if (pmu->selectable) { 2254 info.name = buf; 2255 snprintf(buf, sizeof(buf), "%s//", pmu->name); 2256 info.alias = NULL; 2257 info.scale_unit = NULL; 2258 info.desc = NULL; 2259 info.long_desc = NULL; 2260 info.encoding_desc = NULL; 2261 info.topic = NULL; 2262 info.pmu_name = pmu->name; 2263 info.deprecated = false; 2264 ret = cb(state, &info); 2265 } 2266 out: 2267 return ret; 2268 } 2269 2270 static bool perf_pmu___name_match(const struct perf_pmu *pmu, const char *to_match, bool wildcard) 2271 { 2272 const char *names[2] = { 2273 pmu->name, 2274 pmu->alias_name, 2275 }; 2276 if (pmu->is_core) { 2277 for (size_t i = 0; i < ARRAY_SIZE(names); i++) { 2278 const char *name = names[i]; 2279 2280 if (!name) 2281 continue; 2282 2283 if (!strcmp(name, to_match)) { 2284 /* Exact name match. */ 2285 return true; 2286 } 2287 } 2288 if (!strcmp(to_match, "default_core")) { 2289 /* 2290 * jevents and tests use default_core as a marker for any core 2291 * PMU as the PMU name varies across architectures. 2292 */ 2293 return true; 2294 } 2295 return false; 2296 } 2297 if (!pmu->is_uncore) { 2298 /* 2299 * PMU isn't core or uncore, some kind of broken CPU mask 2300 * situation. Only match exact name. 2301 */ 2302 for (size_t i = 0; i < ARRAY_SIZE(names); i++) { 2303 const char *name = names[i]; 2304 2305 if (!name) 2306 continue; 2307 2308 if (!strcmp(name, to_match)) { 2309 /* Exact name match. */ 2310 return true; 2311 } 2312 } 2313 return false; 2314 } 2315 for (size_t i = 0; i < ARRAY_SIZE(names); i++) { 2316 const char *name = names[i]; 2317 2318 if (!name) 2319 continue; 2320 2321 if (wildcard && perf_pmu__match_wildcard_uncore(name, to_match)) 2322 return true; 2323 if (!wildcard && perf_pmu__match_ignoring_suffix_uncore(name, to_match)) 2324 return true; 2325 } 2326 return false; 2327 } 2328 2329 /** 2330 * perf_pmu__name_wildcard_match - Called by the jevents generated code to see 2331 * if pmu matches the json to_match string. 2332 * @pmu: The pmu whose name/alias to match. 2333 * @to_match: The possible match to pmu_name. 2334 */ 2335 bool perf_pmu__name_wildcard_match(const struct perf_pmu *pmu, const char *to_match) 2336 { 2337 return perf_pmu___name_match(pmu, to_match, /*wildcard=*/true); 2338 } 2339 2340 /** 2341 * perf_pmu__name_no_suffix_match - Does pmu's name match to_match ignoring any 2342 * trailing suffix on the pmu_name and/or tok? 2343 * @pmu: The pmu whose name/alias to match. 2344 * @to_match: The possible match to pmu_name. 2345 */ 2346 bool perf_pmu__name_no_suffix_match(const struct perf_pmu *pmu, const char *to_match) 2347 { 2348 return perf_pmu___name_match(pmu, to_match, /*wildcard=*/false); 2349 } 2350 2351 bool perf_pmu__is_software(const struct perf_pmu *pmu) 2352 { 2353 const char *known_sw_pmus[] = { 2354 "kprobe", 2355 "msr", 2356 "uprobe", 2357 }; 2358 2359 if (pmu->is_core || pmu->is_uncore || pmu->auxtrace) 2360 return false; 2361 switch (pmu->type) { 2362 case PERF_TYPE_HARDWARE: return false; 2363 case PERF_TYPE_SOFTWARE: return true; 2364 case PERF_TYPE_TRACEPOINT: return true; 2365 case PERF_TYPE_HW_CACHE: return false; 2366 case PERF_TYPE_RAW: return false; 2367 case PERF_TYPE_BREAKPOINT: return true; 2368 case PERF_PMU_TYPE_TOOL: return true; 2369 default: break; 2370 } 2371 for (size_t i = 0; i < ARRAY_SIZE(known_sw_pmus); i++) { 2372 if (!strcmp(pmu->name, known_sw_pmus[i])) 2373 return true; 2374 } 2375 return false; 2376 } 2377 2378 FILE *perf_pmu__open_file(const struct perf_pmu *pmu, const char *name) 2379 { 2380 char path[PATH_MAX]; 2381 2382 if (!perf_pmu__pathname_scnprintf(path, sizeof(path), pmu->name, name) || 2383 !file_available(path)) 2384 return NULL; 2385 2386 return fopen(path, "r"); 2387 } 2388 2389 FILE *perf_pmu__open_file_at(const struct perf_pmu *pmu, int dirfd, const char *name) 2390 { 2391 int fd; 2392 2393 fd = perf_pmu__pathname_fd(dirfd, pmu->name, name, O_RDONLY); 2394 if (fd < 0) 2395 return NULL; 2396 2397 return fdopen(fd, "r"); 2398 } 2399 2400 int perf_pmu__scan_file(const struct perf_pmu *pmu, const char *name, const char *fmt, 2401 ...) 2402 { 2403 va_list args; 2404 FILE *file; 2405 int ret = EOF; 2406 2407 va_start(args, fmt); 2408 file = perf_pmu__open_file(pmu, name); 2409 if (file) { 2410 ret = vfscanf(file, fmt, args); 2411 fclose(file); 2412 } 2413 va_end(args); 2414 return ret; 2415 } 2416 2417 int perf_pmu__scan_file_at(const struct perf_pmu *pmu, int dirfd, const char *name, 2418 const char *fmt, ...) 2419 { 2420 va_list args; 2421 FILE *file; 2422 int ret = EOF; 2423 2424 va_start(args, fmt); 2425 file = perf_pmu__open_file_at(pmu, dirfd, name); 2426 if (file) { 2427 ret = vfscanf(file, fmt, args); 2428 fclose(file); 2429 } 2430 va_end(args); 2431 return ret; 2432 } 2433 2434 bool perf_pmu__file_exists(const struct perf_pmu *pmu, const char *name) 2435 { 2436 char path[PATH_MAX]; 2437 2438 if (!perf_pmu__pathname_scnprintf(path, sizeof(path), pmu->name, name)) 2439 return false; 2440 2441 return file_available(path); 2442 } 2443 2444 static int perf_pmu__new_caps(struct list_head *list, char *name, char *value) 2445 { 2446 struct perf_pmu_caps *caps = zalloc(sizeof(*caps)); 2447 2448 if (!caps) 2449 return -ENOMEM; 2450 2451 caps->name = strdup(name); 2452 if (!caps->name) 2453 goto free_caps; 2454 caps->value = strndup(value, strlen(value) - 1); 2455 if (!caps->value) 2456 goto free_name; 2457 list_add_tail(&caps->list, list); 2458 return 0; 2459 2460 free_name: 2461 zfree(&caps->name); 2462 free_caps: 2463 free(caps); 2464 2465 return -ENOMEM; 2466 } 2467 2468 static void perf_pmu__del_caps(struct perf_pmu *pmu) 2469 { 2470 struct perf_pmu_caps *caps, *tmp; 2471 2472 list_for_each_entry_safe(caps, tmp, &pmu->caps, list) { 2473 list_del(&caps->list); 2474 zfree(&caps->name); 2475 zfree(&caps->value); 2476 free(caps); 2477 } 2478 } 2479 2480 struct perf_pmu_caps *perf_pmu__get_cap(struct perf_pmu *pmu, const char *name) 2481 { 2482 struct perf_pmu_caps *caps; 2483 2484 list_for_each_entry(caps, &pmu->caps, list) { 2485 if (!strcmp(caps->name, name)) 2486 return caps; 2487 } 2488 return NULL; 2489 } 2490 2491 /* 2492 * Reading/parsing the given pmu capabilities, which should be located at: 2493 * /sys/bus/event_source/devices/<dev>/caps as sysfs group attributes. 2494 * Return the number of capabilities 2495 */ 2496 int perf_pmu__caps_parse(struct perf_pmu *pmu) 2497 { 2498 char caps_path[PATH_MAX]; 2499 struct io_dir caps_dir; 2500 struct io_dirent64 *evt_ent; 2501 int caps_fd; 2502 2503 if (pmu->caps_initialized) 2504 return pmu->nr_caps; 2505 2506 pmu->nr_caps = 0; 2507 2508 if (!perf_pmu__pathname_scnprintf(caps_path, sizeof(caps_path), pmu->name, "caps")) 2509 return -1; 2510 2511 caps_fd = open(caps_path, O_CLOEXEC | O_DIRECTORY | O_RDONLY); 2512 if (caps_fd == -1) { 2513 pmu->caps_initialized = true; 2514 return 0; /* no error if caps does not exist */ 2515 } 2516 2517 io_dir__init(&caps_dir, caps_fd); 2518 2519 while ((evt_ent = io_dir__readdir(&caps_dir)) != NULL) { 2520 char *name = evt_ent->d_name; 2521 char value[128]; 2522 FILE *file; 2523 int fd; 2524 2525 if (io_dir__is_dir(&caps_dir, evt_ent)) 2526 continue; 2527 2528 fd = openat(caps_fd, name, O_RDONLY); 2529 if (fd == -1) 2530 continue; 2531 file = fdopen(fd, "r"); 2532 if (!file) { 2533 close(fd); 2534 continue; 2535 } 2536 2537 if (!fgets(value, sizeof(value), file) || 2538 (perf_pmu__new_caps(&pmu->caps, name, value) < 0)) { 2539 fclose(file); 2540 continue; 2541 } 2542 2543 pmu->nr_caps++; 2544 fclose(file); 2545 } 2546 2547 close(caps_fd); 2548 2549 pmu->caps_initialized = true; 2550 return pmu->nr_caps; 2551 } 2552 2553 static void perf_pmu__compute_config_masks(struct perf_pmu *pmu) 2554 { 2555 struct perf_pmu_format *format; 2556 2557 if (pmu->config_masks_computed) 2558 return; 2559 2560 list_for_each_entry(format, &pmu->format, list) { 2561 unsigned int i; 2562 __u64 *mask; 2563 2564 if (format->value >= PERF_PMU_FORMAT_VALUE_CONFIG_END) 2565 continue; 2566 2567 pmu->config_masks_present = true; 2568 mask = &pmu->config_masks[format->value]; 2569 2570 for_each_set_bit(i, format->bits, PERF_PMU_FORMAT_BITS) 2571 *mask |= 1ULL << i; 2572 } 2573 pmu->config_masks_computed = true; 2574 } 2575 2576 void perf_pmu__warn_invalid_config(struct perf_pmu *pmu, __u64 config, 2577 const char *name, int config_num, 2578 const char *config_name) 2579 { 2580 __u64 bits; 2581 char buf[100]; 2582 2583 perf_pmu__compute_config_masks(pmu); 2584 2585 /* 2586 * Kernel doesn't export any valid format bits. 2587 */ 2588 if (!pmu->config_masks_present) 2589 return; 2590 2591 bits = config & ~pmu->config_masks[config_num]; 2592 if (bits == 0) 2593 return; 2594 2595 bitmap_scnprintf((unsigned long *)&bits, sizeof(bits) * 8, buf, sizeof(buf)); 2596 2597 pr_warning("WARNING: event '%s' not valid (bits %s of %s " 2598 "'%llx' not supported by kernel)!\n", 2599 name ?: "N/A", buf, config_name, config); 2600 } 2601 2602 bool perf_pmu__wildcard_match(const struct perf_pmu *pmu, const char *wildcard_to_match) 2603 { 2604 const char *names[2] = { 2605 pmu->name, 2606 pmu->alias_name, 2607 }; 2608 bool need_fnmatch = strisglob(wildcard_to_match); 2609 2610 if (!strncmp(wildcard_to_match, "uncore_", 7)) 2611 wildcard_to_match += 7; 2612 2613 for (size_t i = 0; i < ARRAY_SIZE(names); i++) { 2614 const char *pmu_name = names[i]; 2615 2616 if (!pmu_name) 2617 continue; 2618 2619 if (!strncmp(pmu_name, "uncore_", 7)) 2620 pmu_name += 7; 2621 2622 if (perf_pmu__match_wildcard(pmu_name, wildcard_to_match) || 2623 (need_fnmatch && !fnmatch(wildcard_to_match, pmu_name, 0))) 2624 return true; 2625 } 2626 return false; 2627 } 2628 2629 int perf_pmu__event_source_devices_scnprintf(char *pathname, size_t size) 2630 { 2631 const char *sysfs = sysfs__mountpoint(); 2632 2633 if (!sysfs) 2634 return 0; 2635 return scnprintf(pathname, size, "%s/bus/event_source/devices/", sysfs); 2636 } 2637 2638 int perf_pmu__event_source_devices_fd(void) 2639 { 2640 char path[PATH_MAX]; 2641 const char *sysfs = sysfs__mountpoint(); 2642 2643 if (!sysfs) 2644 return -1; 2645 2646 scnprintf(path, sizeof(path), "%s/bus/event_source/devices/", sysfs); 2647 return open(path, O_DIRECTORY); 2648 } 2649 2650 /* 2651 * Fill 'buf' with the path to a file or folder in 'pmu_name' in 2652 * sysfs. For example if pmu_name = "cs_etm" and 'filename' = "format" 2653 * then pathname will be filled with 2654 * "/sys/bus/event_source/devices/cs_etm/format" 2655 * 2656 * Return 0 if the sysfs mountpoint couldn't be found, if no characters were 2657 * written or if the buffer size is exceeded. 2658 */ 2659 int perf_pmu__pathname_scnprintf(char *buf, size_t size, 2660 const char *pmu_name, const char *filename) 2661 { 2662 size_t len; 2663 2664 len = perf_pmu__event_source_devices_scnprintf(buf, size); 2665 if (!len || (len + strlen(pmu_name) + strlen(filename) + 1) >= size) 2666 return 0; 2667 2668 return scnprintf(buf + len, size - len, "%s/%s", pmu_name, filename); 2669 } 2670 2671 int perf_pmu__pathname_fd(int dirfd, const char *pmu_name, const char *filename, int flags) 2672 { 2673 char path[PATH_MAX]; 2674 2675 scnprintf(path, sizeof(path), "%s/%s", pmu_name, filename); 2676 return openat(dirfd, path, flags); 2677 } 2678 2679 void perf_pmu__delete(struct perf_pmu *pmu) 2680 { 2681 if (!pmu) 2682 return; 2683 2684 if (perf_pmu__is_hwmon(pmu)) 2685 hwmon_pmu__exit(pmu); 2686 else if (perf_pmu__is_drm(pmu)) 2687 drm_pmu__exit(pmu); 2688 2689 perf_pmu__del_formats(&pmu->format); 2690 perf_pmu__del_aliases(pmu); 2691 perf_pmu__del_caps(pmu); 2692 2693 perf_cpu_map__put(pmu->cpus); 2694 2695 zfree(&pmu->name); 2696 zfree(&pmu->alias_name); 2697 zfree(&pmu->id); 2698 free(pmu); 2699 } 2700 2701 const char *perf_pmu__name_from_config(struct perf_pmu *pmu, u64 config) 2702 { 2703 struct hashmap_entry *entry; 2704 size_t bkt; 2705 2706 if (!pmu) 2707 return NULL; 2708 2709 pmu_aliases_parse(pmu); 2710 pmu_add_cpu_aliases(pmu); 2711 hashmap__for_each_entry(pmu->aliases, entry, bkt) { 2712 struct perf_pmu_alias *event = entry->pvalue; 2713 struct perf_event_attr attr = {.config = 0,}; 2714 int ret = perf_pmu__parse_terms_to_attr(pmu, event->terms, &attr); 2715 2716 if (ret == 0 && config == attr.config) 2717 return event->name; 2718 } 2719 return NULL; 2720 } 2721