1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * intel_pt.c: Intel Processor Trace support 4 * Copyright (c) 2013-2015, Intel Corporation. 5 */ 6 #include "../../../util/intel-pt.h" 7 8 #include <errno.h> 9 #include <stdbool.h> 10 11 #include <linux/bitops.h> 12 #include <linux/err.h> 13 #include <linux/kernel.h> 14 #include <linux/log2.h> 15 #include <linux/types.h> 16 #include <linux/zalloc.h> 17 18 #include <api/fs/fs.h> 19 #include <internal/lib.h> // page_size 20 #include <subcmd/parse-options.h> 21 22 #include "../../../util/auxtrace.h" 23 #include "../../../util/config.h" 24 #include "../../../util/cpumap.h" 25 #include "../../../util/debug.h" 26 #include "../../../util/event.h" 27 #include "../../../util/evlist.h" 28 #include "../../../util/evsel.h" 29 #include "../../../util/evsel_config.h" 30 #include "../../../util/mmap.h" 31 #include "../../../util/parse-events.h" 32 #include "../../../util/perf_api_probe.h" 33 #include "../../../util/pmu.h" 34 #include "../../../util/pmus.h" 35 #include "../../../util/record.h" 36 #include "../../../util/session.h" 37 #include "../../../util/target.h" 38 #include "../../../util/tsc.h" 39 #include "cpuid.h" 40 41 #define KiB(x) ((x) * 1024) 42 #define MiB(x) ((x) * 1024 * 1024) 43 #define KiB_MASK(x) (KiB(x) - 1) 44 #define MiB_MASK(x) (MiB(x) - 1) 45 46 #define INTEL_PT_PSB_PERIOD_NEAR 256 47 48 struct intel_pt_snapshot_ref { 49 void *ref_buf; 50 size_t ref_offset; 51 bool wrapped; 52 }; 53 54 struct intel_pt_recording { 55 struct auxtrace_record itr; 56 struct perf_pmu *intel_pt_pmu; 57 int have_sched_switch; 58 struct evlist *evlist; 59 bool all_switch_events; 60 bool snapshot_mode; 61 bool snapshot_init_done; 62 size_t snapshot_size; 63 size_t snapshot_ref_buf_size; 64 int snapshot_ref_cnt; 65 struct intel_pt_snapshot_ref *snapshot_refs; 66 size_t priv_size; 67 }; 68 69 static int intel_pt_parse_terms_with_default(const struct perf_pmu *pmu, 70 const char *str, 71 u64 *config) 72 { 73 struct parse_events_terms terms; 74 struct perf_event_attr attr = { .size = 0, }; 75 int err; 76 77 parse_events_terms__init(&terms); 78 err = parse_events_terms(&terms, str); 79 if (err) 80 goto out_free; 81 82 attr.config = *config; 83 err = perf_pmu__config_terms(pmu, &attr, &terms, /*zero=*/true, /*apply_hardcoded=*/false, 84 /*err=*/NULL); 85 if (err) 86 goto out_free; 87 88 *config = attr.config; 89 out_free: 90 parse_events_terms__exit(&terms); 91 return err; 92 } 93 94 static int intel_pt_parse_terms(const struct perf_pmu *pmu, const char *str, u64 *config) 95 { 96 *config = 0; 97 return intel_pt_parse_terms_with_default(pmu, str, config); 98 } 99 100 static u64 intel_pt_masked_bits(u64 mask, u64 bits) 101 { 102 const u64 top_bit = 1ULL << 63; 103 u64 res = 0; 104 int i; 105 106 for (i = 0; i < 64; i++) { 107 if (mask & top_bit) { 108 res <<= 1; 109 if (bits & top_bit) 110 res |= 1; 111 } 112 mask <<= 1; 113 bits <<= 1; 114 } 115 116 return res; 117 } 118 119 static int intel_pt_read_config(struct perf_pmu *intel_pt_pmu, const char *str, 120 struct evlist *evlist, u64 *res) 121 { 122 struct evsel *evsel; 123 u64 mask; 124 125 *res = 0; 126 127 mask = perf_pmu__format_bits(intel_pt_pmu, str); 128 if (!mask) 129 return -EINVAL; 130 131 evlist__for_each_entry(evlist, evsel) { 132 if (evsel->core.attr.type == intel_pt_pmu->type) { 133 *res = intel_pt_masked_bits(mask, evsel->core.attr.config); 134 return 0; 135 } 136 } 137 138 return -EINVAL; 139 } 140 141 static size_t intel_pt_psb_period(struct perf_pmu *intel_pt_pmu, 142 struct evlist *evlist) 143 { 144 u64 val; 145 int err, topa_multiple_entries; 146 size_t psb_period; 147 148 if (perf_pmu__scan_file(intel_pt_pmu, "caps/topa_multiple_entries", 149 "%d", &topa_multiple_entries) != 1) 150 topa_multiple_entries = 0; 151 152 /* 153 * Use caps/topa_multiple_entries to indicate early hardware that had 154 * extra frequent PSBs. 155 */ 156 if (!topa_multiple_entries) { 157 psb_period = 256; 158 goto out; 159 } 160 161 err = intel_pt_read_config(intel_pt_pmu, "psb_period", evlist, &val); 162 if (err) 163 val = 0; 164 165 psb_period = 1 << (val + 11); 166 out: 167 pr_debug2("%s psb_period %zu\n", intel_pt_pmu->name, psb_period); 168 return psb_period; 169 } 170 171 static int intel_pt_pick_bit(int bits, int target) 172 { 173 int pos, pick = -1; 174 175 for (pos = 0; bits; bits >>= 1, pos++) { 176 if (bits & 1) { 177 if (pos <= target || pick < 0) 178 pick = pos; 179 if (pos >= target) 180 break; 181 } 182 } 183 184 return pick; 185 } 186 187 static u64 intel_pt_default_config(const struct perf_pmu *intel_pt_pmu) 188 { 189 char buf[256]; 190 int mtc, mtc_periods = 0, mtc_period; 191 int psb_cyc, psb_periods, psb_period; 192 int pos = 0; 193 u64 config; 194 char c; 195 int dirfd; 196 197 dirfd = perf_pmu__event_source_devices_fd(); 198 199 pos += scnprintf(buf + pos, sizeof(buf) - pos, "tsc"); 200 201 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "caps/mtc", "%d", 202 &mtc) != 1) 203 mtc = 1; 204 205 if (mtc) { 206 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "caps/mtc_periods", "%x", 207 &mtc_periods) != 1) 208 mtc_periods = 0; 209 if (mtc_periods) { 210 mtc_period = intel_pt_pick_bit(mtc_periods, 3); 211 pos += scnprintf(buf + pos, sizeof(buf) - pos, 212 ",mtc,mtc_period=%d", mtc_period); 213 } 214 } 215 216 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "caps/psb_cyc", "%d", 217 &psb_cyc) != 1) 218 psb_cyc = 1; 219 220 if (psb_cyc && mtc_periods) { 221 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "caps/psb_periods", "%x", 222 &psb_periods) != 1) 223 psb_periods = 0; 224 if (psb_periods) { 225 psb_period = intel_pt_pick_bit(psb_periods, 3); 226 pos += scnprintf(buf + pos, sizeof(buf) - pos, 227 ",psb_period=%d", psb_period); 228 } 229 } 230 231 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "format/pt", "%c", &c) == 1 && 232 perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "format/branch", "%c", &c) == 1) 233 pos += scnprintf(buf + pos, sizeof(buf) - pos, ",pt,branch"); 234 235 pr_debug2("%s default config: %s\n", intel_pt_pmu->name, buf); 236 237 intel_pt_parse_terms(intel_pt_pmu, buf, &config); 238 239 close(dirfd); 240 return config; 241 } 242 243 static int intel_pt_parse_snapshot_options(struct auxtrace_record *itr, 244 struct record_opts *opts, 245 const char *str) 246 { 247 struct intel_pt_recording *ptr = 248 container_of(itr, struct intel_pt_recording, itr); 249 unsigned long long snapshot_size = 0; 250 char *endptr; 251 252 if (str) { 253 snapshot_size = strtoull(str, &endptr, 0); 254 if (*endptr || snapshot_size > SIZE_MAX) 255 return -1; 256 } 257 258 opts->auxtrace_snapshot_mode = true; 259 opts->auxtrace_snapshot_size = snapshot_size; 260 261 ptr->snapshot_size = snapshot_size; 262 263 return 0; 264 } 265 266 void intel_pt_pmu_default_config(const struct perf_pmu *intel_pt_pmu, 267 struct perf_event_attr *attr) 268 { 269 static u64 config; 270 static bool initialized; 271 272 if (!initialized) { 273 config = intel_pt_default_config(intel_pt_pmu); 274 initialized = true; 275 } 276 attr->config = config; 277 } 278 279 static const char *intel_pt_find_filter(struct evlist *evlist, 280 struct perf_pmu *intel_pt_pmu) 281 { 282 struct evsel *evsel; 283 284 evlist__for_each_entry(evlist, evsel) { 285 if (evsel->core.attr.type == intel_pt_pmu->type) 286 return evsel->filter; 287 } 288 289 return NULL; 290 } 291 292 static size_t intel_pt_filter_bytes(const char *filter) 293 { 294 size_t len = filter ? strlen(filter) : 0; 295 296 return len ? roundup(len + 1, 8) : 0; 297 } 298 299 static size_t 300 intel_pt_info_priv_size(struct auxtrace_record *itr, struct evlist *evlist) 301 { 302 struct intel_pt_recording *ptr = 303 container_of(itr, struct intel_pt_recording, itr); 304 const char *filter = intel_pt_find_filter(evlist, ptr->intel_pt_pmu); 305 306 ptr->priv_size = (INTEL_PT_AUXTRACE_PRIV_MAX * sizeof(u64)) + 307 intel_pt_filter_bytes(filter); 308 ptr->priv_size += sizeof(u64); /* Cap Event Trace */ 309 310 return ptr->priv_size; 311 } 312 313 static void intel_pt_tsc_ctc_ratio(u32 *n, u32 *d) 314 { 315 unsigned int eax = 0, ebx = 0, ecx = 0, edx = 0; 316 317 cpuid(0x15, 0, &eax, &ebx, &ecx, &edx); 318 *n = ebx; 319 *d = eax; 320 } 321 322 static int intel_pt_info_fill(struct auxtrace_record *itr, 323 struct perf_session *session, 324 struct perf_record_auxtrace_info *auxtrace_info, 325 size_t priv_size) 326 { 327 struct intel_pt_recording *ptr = 328 container_of(itr, struct intel_pt_recording, itr); 329 struct perf_pmu *intel_pt_pmu = ptr->intel_pt_pmu; 330 struct perf_event_mmap_page *pc; 331 struct perf_tsc_conversion tc = { .time_mult = 0, }; 332 bool cap_user_time_zero = false, per_cpu_mmaps; 333 u64 tsc_bit, mtc_bit, mtc_freq_bits, cyc_bit, noretcomp_bit; 334 u32 tsc_ctc_ratio_n, tsc_ctc_ratio_d; 335 unsigned long max_non_turbo_ratio; 336 size_t filter_str_len; 337 const char *filter; 338 int event_trace; 339 __u64 *info; 340 int err; 341 342 if (priv_size != ptr->priv_size) 343 return -EINVAL; 344 345 intel_pt_parse_terms(intel_pt_pmu, "tsc", &tsc_bit); 346 intel_pt_parse_terms(intel_pt_pmu, "noretcomp", &noretcomp_bit); 347 intel_pt_parse_terms(intel_pt_pmu, "mtc", &mtc_bit); 348 mtc_freq_bits = perf_pmu__format_bits(intel_pt_pmu, "mtc_period"); 349 intel_pt_parse_terms(intel_pt_pmu, "cyc", &cyc_bit); 350 351 intel_pt_tsc_ctc_ratio(&tsc_ctc_ratio_n, &tsc_ctc_ratio_d); 352 353 if (perf_pmu__scan_file(intel_pt_pmu, "max_nonturbo_ratio", 354 "%lu", &max_non_turbo_ratio) != 1) 355 max_non_turbo_ratio = 0; 356 if (perf_pmu__scan_file(intel_pt_pmu, "caps/event_trace", 357 "%d", &event_trace) != 1) 358 event_trace = 0; 359 360 filter = intel_pt_find_filter(session->evlist, ptr->intel_pt_pmu); 361 filter_str_len = filter ? strlen(filter) : 0; 362 363 if (!evlist__core(session->evlist)->nr_mmaps) 364 return -EINVAL; 365 366 pc = evlist__mmap(session->evlist)[0].core.base; 367 if (pc) { 368 err = perf_read_tsc_conversion(pc, &tc); 369 if (err) { 370 if (err != -EOPNOTSUPP) 371 return err; 372 } else { 373 cap_user_time_zero = tc.time_mult != 0; 374 } 375 if (!cap_user_time_zero) 376 ui__warning("Intel Processor Trace: TSC not available\n"); 377 } 378 379 per_cpu_mmaps = !perf_cpu_map__is_any_cpu_or_is_empty( 380 evlist__core(session->evlist)->user_requested_cpus); 381 382 auxtrace_info->type = PERF_AUXTRACE_INTEL_PT; 383 auxtrace_info->priv[INTEL_PT_PMU_TYPE] = intel_pt_pmu->type; 384 auxtrace_info->priv[INTEL_PT_TIME_SHIFT] = tc.time_shift; 385 auxtrace_info->priv[INTEL_PT_TIME_MULT] = tc.time_mult; 386 auxtrace_info->priv[INTEL_PT_TIME_ZERO] = tc.time_zero; 387 auxtrace_info->priv[INTEL_PT_CAP_USER_TIME_ZERO] = cap_user_time_zero; 388 auxtrace_info->priv[INTEL_PT_TSC_BIT] = tsc_bit; 389 auxtrace_info->priv[INTEL_PT_NORETCOMP_BIT] = noretcomp_bit; 390 auxtrace_info->priv[INTEL_PT_HAVE_SCHED_SWITCH] = ptr->have_sched_switch; 391 auxtrace_info->priv[INTEL_PT_SNAPSHOT_MODE] = ptr->snapshot_mode; 392 auxtrace_info->priv[INTEL_PT_PER_CPU_MMAPS] = per_cpu_mmaps; 393 auxtrace_info->priv[INTEL_PT_MTC_BIT] = mtc_bit; 394 auxtrace_info->priv[INTEL_PT_MTC_FREQ_BITS] = mtc_freq_bits; 395 auxtrace_info->priv[INTEL_PT_TSC_CTC_N] = tsc_ctc_ratio_n; 396 auxtrace_info->priv[INTEL_PT_TSC_CTC_D] = tsc_ctc_ratio_d; 397 auxtrace_info->priv[INTEL_PT_CYC_BIT] = cyc_bit; 398 auxtrace_info->priv[INTEL_PT_MAX_NONTURBO_RATIO] = max_non_turbo_ratio; 399 auxtrace_info->priv[INTEL_PT_FILTER_STR_LEN] = filter_str_len; 400 401 info = &auxtrace_info->priv[INTEL_PT_FILTER_STR_LEN] + 1; 402 403 if (filter_str_len) { 404 size_t len = intel_pt_filter_bytes(filter); 405 406 strncpy((char *)info, filter, len); 407 info += len >> 3; 408 } 409 410 *info++ = event_trace; 411 412 return 0; 413 } 414 415 #ifdef HAVE_LIBTRACEEVENT 416 static int intel_pt_track_switches(struct evlist *evlist) 417 { 418 const char *sched_switch = "sched:sched_switch"; 419 struct evsel *evsel; 420 int err; 421 422 if (!evlist__can_select_event(evlist, sched_switch)) 423 return -EPERM; 424 425 evsel = evlist__add_sched_switch(evlist, true); 426 if (IS_ERR(evsel)) { 427 err = PTR_ERR(evsel); 428 pr_debug2("%s: failed to create %s, error = %d\n", 429 __func__, sched_switch, err); 430 return err; 431 } 432 433 evsel->immediate = true; 434 435 return 0; 436 } 437 #endif 438 439 static bool intel_pt_exclude_guest(void) 440 { 441 int pt_mode; 442 443 if (sysfs__read_int("module/kvm_intel/parameters/pt_mode", &pt_mode)) 444 pt_mode = 0; 445 446 return pt_mode == 1; 447 } 448 449 static void intel_pt_valid_str(char *str, size_t len, u64 valid) 450 { 451 unsigned int val, last = 0, state = 1; 452 int p = 0; 453 454 str[0] = '\0'; 455 456 for (val = 0; val <= 64; val++, valid >>= 1) { 457 if (valid & 1) { 458 last = val; 459 switch (state) { 460 case 0: 461 p += scnprintf(str + p, len - p, ","); 462 /* Fall through */ 463 case 1: 464 p += scnprintf(str + p, len - p, "%u", val); 465 state = 2; 466 break; 467 case 2: 468 state = 3; 469 break; 470 case 3: 471 state = 4; 472 break; 473 default: 474 break; 475 } 476 } else { 477 switch (state) { 478 case 3: 479 p += scnprintf(str + p, len - p, ",%u", last); 480 state = 0; 481 break; 482 case 4: 483 p += scnprintf(str + p, len - p, "-%u", last); 484 state = 0; 485 break; 486 default: 487 break; 488 } 489 if (state != 1) 490 state = 0; 491 } 492 } 493 } 494 495 static int intel_pt_val_config_term(struct perf_pmu *intel_pt_pmu, int dirfd, 496 const char *caps, const char *name, 497 const char *supported, u64 config) 498 { 499 char valid_str[256]; 500 unsigned int shift; 501 unsigned long long valid; 502 u64 bits; 503 int ok; 504 505 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, caps, "%llx", &valid) != 1) 506 valid = 0; 507 508 if (supported && 509 perf_pmu__scan_file_at(intel_pt_pmu, dirfd, supported, "%d", &ok) == 1 && !ok) 510 valid = 0; 511 512 valid |= 1; 513 514 bits = perf_pmu__format_bits(intel_pt_pmu, name); 515 516 config &= bits; 517 518 for (shift = 0; bits && !(bits & 1); shift++) 519 bits >>= 1; 520 521 config >>= shift; 522 523 if (config > 63) 524 goto out_err; 525 526 if (valid & (1 << config)) 527 return 0; 528 out_err: 529 intel_pt_valid_str(valid_str, sizeof(valid_str), valid); 530 pr_err("Invalid %s for %s. Valid values are: %s\n", 531 name, INTEL_PT_PMU_NAME, valid_str); 532 return -EINVAL; 533 } 534 535 static int intel_pt_validate_config(struct perf_pmu *intel_pt_pmu, 536 struct evsel *evsel) 537 { 538 int err, dirfd; 539 char c; 540 541 if (!evsel) 542 return 0; 543 544 dirfd = perf_pmu__event_source_devices_fd(); 545 if (dirfd < 0) 546 return dirfd; 547 548 /* 549 * If supported, force pass-through config term (pt=1) even if user 550 * sets pt=0, which avoids senseless kernel errors. 551 */ 552 if (perf_pmu__scan_file_at(intel_pt_pmu, dirfd, "format/pt", "%c", &c) == 1 && 553 !(evsel->core.attr.config & 1)) { 554 pr_warning("pt=0 doesn't make sense, forcing pt=1\n"); 555 evsel->core.attr.config |= 1; 556 } 557 558 err = intel_pt_val_config_term(intel_pt_pmu, dirfd, "caps/cycle_thresholds", 559 "cyc_thresh", "caps/psb_cyc", 560 evsel->core.attr.config); 561 if (err) 562 goto out; 563 564 err = intel_pt_val_config_term(intel_pt_pmu, dirfd, "caps/mtc_periods", 565 "mtc_period", "caps/mtc", 566 evsel->core.attr.config); 567 if (err) 568 goto out; 569 570 err = intel_pt_val_config_term(intel_pt_pmu, dirfd, "caps/psb_periods", 571 "psb_period", "caps/psb_cyc", 572 evsel->core.attr.config); 573 574 out: 575 close(dirfd); 576 return err; 577 } 578 579 static void intel_pt_min_max_sample_sz(struct evlist *evlist, 580 size_t *min_sz, size_t *max_sz) 581 { 582 struct evsel *evsel; 583 584 evlist__for_each_entry(evlist, evsel) { 585 size_t sz = evsel->core.attr.aux_sample_size; 586 587 if (!sz) 588 continue; 589 if (min_sz && (sz < *min_sz || !*min_sz)) 590 *min_sz = sz; 591 if (max_sz && sz > *max_sz) 592 *max_sz = sz; 593 } 594 } 595 596 /* 597 * Currently, there is not enough information to disambiguate different PEBS 598 * events, so only allow one. 599 */ 600 static bool intel_pt_too_many_aux_output(struct evlist *evlist) 601 { 602 struct evsel *evsel; 603 int aux_output_cnt = 0; 604 605 evlist__for_each_entry(evlist, evsel) 606 aux_output_cnt += !!evsel->core.attr.aux_output; 607 608 if (aux_output_cnt > 1) { 609 pr_err(INTEL_PT_PMU_NAME " supports at most one event with aux-output\n"); 610 return true; 611 } 612 613 return false; 614 } 615 616 static int intel_pt_recording_options(struct auxtrace_record *itr, 617 struct evlist *evlist, 618 struct record_opts *opts) 619 { 620 struct intel_pt_recording *ptr = 621 container_of(itr, struct intel_pt_recording, itr); 622 struct perf_pmu *intel_pt_pmu = ptr->intel_pt_pmu; 623 bool have_timing_info, need_immediate = false; 624 struct evsel *evsel, *intel_pt_evsel = NULL; 625 const struct perf_cpu_map *cpus = evlist__core(evlist)->user_requested_cpus; 626 bool privileged = perf_event_paranoid_check(-1); 627 u64 tsc_bit; 628 int err; 629 630 ptr->evlist = evlist; 631 ptr->snapshot_mode = opts->auxtrace_snapshot_mode; 632 633 evlist__for_each_entry(evlist, evsel) { 634 if (evsel->core.attr.type == intel_pt_pmu->type) { 635 if (intel_pt_evsel) { 636 pr_err("There may be only one " INTEL_PT_PMU_NAME " event\n"); 637 return -EINVAL; 638 } 639 evsel->core.attr.freq = 0; 640 evsel->core.attr.sample_period = 1; 641 evsel->core.attr.exclude_guest = intel_pt_exclude_guest(); 642 evsel->no_aux_samples = true; 643 evsel->needs_auxtrace_mmap = true; 644 intel_pt_evsel = evsel; 645 opts->full_auxtrace = true; 646 } 647 } 648 649 if (opts->auxtrace_snapshot_mode && !opts->full_auxtrace) { 650 pr_err("Snapshot mode (-S option) requires " INTEL_PT_PMU_NAME " PMU event (-e " INTEL_PT_PMU_NAME ")\n"); 651 return -EINVAL; 652 } 653 654 if (opts->auxtrace_snapshot_mode && opts->auxtrace_sample_mode) { 655 pr_err("Snapshot mode (" INTEL_PT_PMU_NAME " PMU) and sample trace cannot be used together\n"); 656 return -EINVAL; 657 } 658 659 if (opts->use_clockid) { 660 pr_err("Cannot use clockid (-k option) with " INTEL_PT_PMU_NAME "\n"); 661 return -EINVAL; 662 } 663 664 if (intel_pt_too_many_aux_output(evlist)) 665 return -EINVAL; 666 667 if (!opts->full_auxtrace) 668 return 0; 669 670 if (opts->auxtrace_sample_mode) 671 evsel__set_config_if_unset(intel_pt_evsel, "psb_period", 0); 672 673 err = intel_pt_validate_config(intel_pt_pmu, intel_pt_evsel); 674 if (err) 675 return err; 676 677 /* Set default sizes for snapshot mode */ 678 if (opts->auxtrace_snapshot_mode) { 679 size_t psb_period = intel_pt_psb_period(intel_pt_pmu, evlist); 680 681 if (!opts->auxtrace_snapshot_size && !opts->auxtrace_mmap_pages) { 682 if (privileged) { 683 opts->auxtrace_mmap_pages = MiB(4) / page_size; 684 } else { 685 opts->auxtrace_mmap_pages = KiB(128) / page_size; 686 if (opts->mmap_pages == UINT_MAX) 687 opts->mmap_pages = KiB(256) / page_size; 688 } 689 } else if (!opts->auxtrace_mmap_pages && !privileged && 690 opts->mmap_pages == UINT_MAX) { 691 opts->mmap_pages = KiB(256) / page_size; 692 } 693 if (!opts->auxtrace_snapshot_size) 694 opts->auxtrace_snapshot_size = 695 opts->auxtrace_mmap_pages * (size_t)page_size; 696 if (!opts->auxtrace_mmap_pages) { 697 size_t sz = opts->auxtrace_snapshot_size; 698 699 sz = round_up(sz, page_size) / page_size; 700 opts->auxtrace_mmap_pages = roundup_pow_of_two(sz); 701 } 702 if (opts->auxtrace_snapshot_size > 703 opts->auxtrace_mmap_pages * (size_t)page_size) { 704 pr_err("Snapshot size %zu must not be greater than AUX area tracing mmap size %zu\n", 705 opts->auxtrace_snapshot_size, 706 opts->auxtrace_mmap_pages * (size_t)page_size); 707 return -EINVAL; 708 } 709 if (!opts->auxtrace_snapshot_size || !opts->auxtrace_mmap_pages) { 710 pr_err("Failed to calculate default snapshot size and/or AUX area tracing mmap pages\n"); 711 return -EINVAL; 712 } 713 pr_debug2("Intel PT snapshot size: %zu\n", 714 opts->auxtrace_snapshot_size); 715 if (psb_period && 716 opts->auxtrace_snapshot_size <= psb_period + 717 INTEL_PT_PSB_PERIOD_NEAR) 718 ui__warning("Intel PT snapshot size (%zu) may be too small for PSB period (%zu)\n", 719 opts->auxtrace_snapshot_size, psb_period); 720 } 721 722 /* Set default sizes for sample mode */ 723 if (opts->auxtrace_sample_mode) { 724 size_t psb_period = intel_pt_psb_period(intel_pt_pmu, evlist); 725 size_t min_sz = 0, max_sz = 0; 726 727 intel_pt_min_max_sample_sz(evlist, &min_sz, &max_sz); 728 if (!opts->auxtrace_mmap_pages && !privileged && 729 opts->mmap_pages == UINT_MAX) 730 opts->mmap_pages = KiB(256) / page_size; 731 if (!opts->auxtrace_mmap_pages) { 732 size_t sz = round_up(max_sz, page_size) / page_size; 733 734 opts->auxtrace_mmap_pages = roundup_pow_of_two(sz); 735 } 736 if (max_sz > opts->auxtrace_mmap_pages * (size_t)page_size) { 737 pr_err("Sample size %zu must not be greater than AUX area tracing mmap size %zu\n", 738 max_sz, 739 opts->auxtrace_mmap_pages * (size_t)page_size); 740 return -EINVAL; 741 } 742 pr_debug2("Intel PT min. sample size: %zu max. sample size: %zu\n", 743 min_sz, max_sz); 744 if (psb_period && 745 min_sz <= psb_period + INTEL_PT_PSB_PERIOD_NEAR) 746 ui__warning("Intel PT sample size (%zu) may be too small for PSB period (%zu)\n", 747 min_sz, psb_period); 748 } 749 750 /* Set default sizes for full trace mode */ 751 if (opts->full_auxtrace && !opts->auxtrace_mmap_pages) { 752 if (privileged) { 753 opts->auxtrace_mmap_pages = MiB(4) / page_size; 754 } else { 755 opts->auxtrace_mmap_pages = KiB(128) / page_size; 756 if (opts->mmap_pages == UINT_MAX) 757 opts->mmap_pages = KiB(256) / page_size; 758 } 759 } 760 761 /* Validate auxtrace_mmap_pages */ 762 if (opts->auxtrace_mmap_pages) { 763 size_t sz = opts->auxtrace_mmap_pages * (size_t)page_size; 764 size_t min_sz; 765 766 if (opts->auxtrace_snapshot_mode || opts->auxtrace_sample_mode) 767 min_sz = KiB(4); 768 else 769 min_sz = KiB(8); 770 771 if (sz < min_sz || !is_power_of_2(sz)) { 772 pr_err("Invalid mmap size for Intel Processor Trace: must be at least %zuKiB and a power of 2\n", 773 min_sz / 1024); 774 return -EINVAL; 775 } 776 } 777 778 if (!opts->auxtrace_snapshot_mode && !opts->auxtrace_sample_mode) { 779 size_t aw = opts->auxtrace_mmap_pages * (size_t)page_size / 4; 780 u32 aux_watermark = aw > UINT_MAX ? UINT_MAX : aw; 781 782 intel_pt_evsel->core.attr.aux_watermark = aux_watermark; 783 } 784 785 intel_pt_parse_terms(intel_pt_pmu, "tsc", &tsc_bit); 786 787 if (opts->full_auxtrace && (intel_pt_evsel->core.attr.config & tsc_bit)) 788 have_timing_info = true; 789 else 790 have_timing_info = false; 791 792 /* 793 * Per-cpu recording needs sched_switch events to distinguish different 794 * threads. 795 */ 796 if (have_timing_info && !perf_cpu_map__is_any_cpu_or_is_empty(cpus) && 797 !record_opts__no_switch_events(opts)) { 798 if (perf_can_record_switch_events()) { 799 bool cpu_wide = !target__none(&opts->target) && 800 !target__has_task(&opts->target); 801 802 if (ptr->all_switch_events && !cpu_wide && perf_can_record_cpu_wide()) { 803 struct evsel *switch_evsel; 804 805 switch_evsel = evlist__add_dummy_on_all_cpus(evlist); 806 if (!switch_evsel) 807 return -ENOMEM; 808 809 switch_evsel->core.attr.context_switch = 1; 810 switch_evsel->immediate = true; 811 812 evsel__set_sample_bit(switch_evsel, TID); 813 evsel__set_sample_bit(switch_evsel, TIME); 814 evsel__set_sample_bit(switch_evsel, CPU); 815 evsel__reset_sample_bit(switch_evsel, BRANCH_STACK); 816 817 opts->record_switch_events = false; 818 ptr->have_sched_switch = 3; 819 } else { 820 opts->record_switch_events = true; 821 need_immediate = true; 822 if (cpu_wide) 823 ptr->have_sched_switch = 3; 824 else 825 ptr->have_sched_switch = 2; 826 } 827 } else { 828 #ifdef HAVE_LIBTRACEEVENT 829 err = intel_pt_track_switches(evlist); 830 if (err == -EPERM) 831 pr_debug2("Unable to select sched:sched_switch\n"); 832 else if (err) 833 return err; 834 else 835 ptr->have_sched_switch = 1; 836 #endif 837 } 838 } 839 840 if (have_timing_info && !intel_pt_evsel->core.attr.exclude_kernel && 841 perf_can_record_text_poke_events() && perf_can_record_cpu_wide()) 842 opts->text_poke = true; 843 844 if (intel_pt_evsel) { 845 /* 846 * To obtain the auxtrace buffer file descriptor, the auxtrace 847 * event must come first. 848 */ 849 evlist__to_front(evlist, intel_pt_evsel); 850 /* 851 * In the case of per-cpu mmaps, we need the CPU on the 852 * AUX event. 853 */ 854 if (!perf_cpu_map__is_any_cpu_or_is_empty(cpus)) 855 evsel__set_sample_bit(intel_pt_evsel, CPU); 856 } 857 858 /* Add dummy event to keep tracking */ 859 if (opts->full_auxtrace) { 860 bool need_system_wide_tracking; 861 struct evsel *tracking_evsel; 862 863 /* 864 * User space tasks can migrate between CPUs, so when tracing 865 * selected CPUs, sideband for all CPUs is still needed. 866 */ 867 need_system_wide_tracking = opts->target.cpu_list && 868 !intel_pt_evsel->core.attr.exclude_user; 869 870 tracking_evsel = evlist__add_aux_dummy(evlist, need_system_wide_tracking); 871 if (!tracking_evsel) 872 return -ENOMEM; 873 874 evlist__set_tracking_event(evlist, tracking_evsel); 875 876 if (need_immediate) 877 tracking_evsel->immediate = true; 878 879 /* In per-cpu case, always need the time of mmap events etc */ 880 if (!perf_cpu_map__is_any_cpu_or_is_empty(cpus)) { 881 evsel__set_sample_bit(tracking_evsel, TIME); 882 /* And the CPU for switch events */ 883 evsel__set_sample_bit(tracking_evsel, CPU); 884 } 885 evsel__reset_sample_bit(tracking_evsel, BRANCH_STACK); 886 } 887 888 /* 889 * Warn the user when we do not have enough information to decode i.e. 890 * per-cpu with no sched_switch (except workload-only). 891 */ 892 if (!ptr->have_sched_switch && !perf_cpu_map__is_any_cpu_or_is_empty(cpus) && 893 !target__none(&opts->target) && 894 !intel_pt_evsel->core.attr.exclude_user) 895 ui__warning("Intel Processor Trace decoding will not be possible except for kernel tracing!\n"); 896 897 return 0; 898 } 899 900 static int intel_pt_snapshot_start(struct auxtrace_record *itr) 901 { 902 struct intel_pt_recording *ptr = 903 container_of(itr, struct intel_pt_recording, itr); 904 struct evsel *evsel; 905 906 evlist__for_each_entry(ptr->evlist, evsel) { 907 if (evsel->core.attr.type == ptr->intel_pt_pmu->type) 908 return evsel__disable(evsel); 909 } 910 return -EINVAL; 911 } 912 913 static int intel_pt_snapshot_finish(struct auxtrace_record *itr) 914 { 915 struct intel_pt_recording *ptr = 916 container_of(itr, struct intel_pt_recording, itr); 917 struct evsel *evsel; 918 919 evlist__for_each_entry(ptr->evlist, evsel) { 920 if (evsel->core.attr.type == ptr->intel_pt_pmu->type) 921 return evsel__enable(evsel); 922 } 923 return -EINVAL; 924 } 925 926 static int intel_pt_alloc_snapshot_refs(struct intel_pt_recording *ptr, int idx) 927 { 928 const size_t sz = sizeof(struct intel_pt_snapshot_ref); 929 int cnt = ptr->snapshot_ref_cnt, new_cnt = cnt * 2; 930 struct intel_pt_snapshot_ref *refs; 931 932 if (!new_cnt) 933 new_cnt = 16; 934 935 while (new_cnt <= idx) 936 new_cnt *= 2; 937 938 refs = calloc(new_cnt, sz); 939 if (!refs) 940 return -ENOMEM; 941 942 memcpy(refs, ptr->snapshot_refs, cnt * sz); 943 944 ptr->snapshot_refs = refs; 945 ptr->snapshot_ref_cnt = new_cnt; 946 947 return 0; 948 } 949 950 static void intel_pt_free_snapshot_refs(struct intel_pt_recording *ptr) 951 { 952 int i; 953 954 for (i = 0; i < ptr->snapshot_ref_cnt; i++) 955 zfree(&ptr->snapshot_refs[i].ref_buf); 956 zfree(&ptr->snapshot_refs); 957 } 958 959 static void intel_pt_recording_free(struct auxtrace_record *itr) 960 { 961 struct intel_pt_recording *ptr = 962 container_of(itr, struct intel_pt_recording, itr); 963 964 intel_pt_free_snapshot_refs(ptr); 965 free(ptr); 966 } 967 968 static int intel_pt_alloc_snapshot_ref(struct intel_pt_recording *ptr, int idx, 969 size_t snapshot_buf_size) 970 { 971 size_t ref_buf_size = ptr->snapshot_ref_buf_size; 972 void *ref_buf; 973 974 ref_buf = zalloc(ref_buf_size); 975 if (!ref_buf) 976 return -ENOMEM; 977 978 ptr->snapshot_refs[idx].ref_buf = ref_buf; 979 ptr->snapshot_refs[idx].ref_offset = snapshot_buf_size - ref_buf_size; 980 981 return 0; 982 } 983 984 static size_t intel_pt_snapshot_ref_buf_size(struct intel_pt_recording *ptr, 985 size_t snapshot_buf_size) 986 { 987 const size_t max_size = 256 * 1024; 988 size_t buf_size = 0, psb_period; 989 990 if (ptr->snapshot_size <= 64 * 1024) 991 return 0; 992 993 psb_period = intel_pt_psb_period(ptr->intel_pt_pmu, ptr->evlist); 994 if (psb_period) 995 buf_size = psb_period * 2; 996 997 if (!buf_size || buf_size > max_size) 998 buf_size = max_size; 999 1000 if (buf_size >= snapshot_buf_size) 1001 return 0; 1002 1003 if (buf_size >= ptr->snapshot_size / 2) 1004 return 0; 1005 1006 return buf_size; 1007 } 1008 1009 static int intel_pt_snapshot_init(struct intel_pt_recording *ptr, 1010 size_t snapshot_buf_size) 1011 { 1012 if (ptr->snapshot_init_done) 1013 return 0; 1014 1015 ptr->snapshot_init_done = true; 1016 1017 ptr->snapshot_ref_buf_size = intel_pt_snapshot_ref_buf_size(ptr, 1018 snapshot_buf_size); 1019 1020 return 0; 1021 } 1022 1023 /** 1024 * intel_pt_compare_buffers - compare bytes in a buffer to a circular buffer. 1025 * @buf1: first buffer 1026 * @compare_size: number of bytes to compare 1027 * @buf2: second buffer (a circular buffer) 1028 * @offs2: offset in second buffer 1029 * @buf2_size: size of second buffer 1030 * 1031 * The comparison allows for the possibility that the bytes to compare in the 1032 * circular buffer are not contiguous. It is assumed that @compare_size <= 1033 * @buf2_size. This function returns %false if the bytes are identical, %true 1034 * otherwise. 1035 */ 1036 static bool intel_pt_compare_buffers(void *buf1, size_t compare_size, 1037 void *buf2, size_t offs2, size_t buf2_size) 1038 { 1039 size_t end2 = offs2 + compare_size, part_size; 1040 1041 if (end2 <= buf2_size) 1042 return memcmp(buf1, buf2 + offs2, compare_size); 1043 1044 part_size = end2 - buf2_size; 1045 if (memcmp(buf1, buf2 + offs2, part_size)) 1046 return true; 1047 1048 compare_size -= part_size; 1049 1050 return memcmp(buf1 + part_size, buf2, compare_size); 1051 } 1052 1053 static bool intel_pt_compare_ref(void *ref_buf, size_t ref_offset, 1054 size_t ref_size, size_t buf_size, 1055 void *data, size_t head) 1056 { 1057 size_t ref_end = ref_offset + ref_size; 1058 1059 if (ref_end > buf_size) { 1060 if (head > ref_offset || head < ref_end - buf_size) 1061 return true; 1062 } else if (head > ref_offset && head < ref_end) { 1063 return true; 1064 } 1065 1066 return intel_pt_compare_buffers(ref_buf, ref_size, data, ref_offset, 1067 buf_size); 1068 } 1069 1070 static void intel_pt_copy_ref(void *ref_buf, size_t ref_size, size_t buf_size, 1071 void *data, size_t head) 1072 { 1073 if (head >= ref_size) { 1074 memcpy(ref_buf, data + head - ref_size, ref_size); 1075 } else { 1076 memcpy(ref_buf, data, head); 1077 ref_size -= head; 1078 memcpy(ref_buf + head, data + buf_size - ref_size, ref_size); 1079 } 1080 } 1081 1082 static bool intel_pt_wrapped(struct intel_pt_recording *ptr, int idx, 1083 struct auxtrace_mmap *mm, unsigned char *data, 1084 u64 head) 1085 { 1086 struct intel_pt_snapshot_ref *ref = &ptr->snapshot_refs[idx]; 1087 bool wrapped; 1088 1089 wrapped = intel_pt_compare_ref(ref->ref_buf, ref->ref_offset, 1090 ptr->snapshot_ref_buf_size, mm->len, 1091 data, head); 1092 1093 intel_pt_copy_ref(ref->ref_buf, ptr->snapshot_ref_buf_size, mm->len, 1094 data, head); 1095 1096 return wrapped; 1097 } 1098 1099 static bool intel_pt_first_wrap(u64 *data, size_t buf_size) 1100 { 1101 int i, a, b; 1102 1103 b = buf_size >> 3; 1104 a = b - 512; 1105 if (a < 0) 1106 a = 0; 1107 1108 for (i = a; i < b; i++) { 1109 if (data[i]) 1110 return true; 1111 } 1112 1113 return false; 1114 } 1115 1116 static int intel_pt_find_snapshot(struct auxtrace_record *itr, int idx, 1117 struct auxtrace_mmap *mm, unsigned char *data, 1118 u64 *head, u64 *old) 1119 { 1120 struct intel_pt_recording *ptr = 1121 container_of(itr, struct intel_pt_recording, itr); 1122 bool wrapped; 1123 int err; 1124 1125 pr_debug3("%s: mmap index %d old head %zu new head %zu\n", 1126 __func__, idx, (size_t)*old, (size_t)*head); 1127 1128 err = intel_pt_snapshot_init(ptr, mm->len); 1129 if (err) 1130 goto out_err; 1131 1132 if (idx >= ptr->snapshot_ref_cnt) { 1133 err = intel_pt_alloc_snapshot_refs(ptr, idx); 1134 if (err) 1135 goto out_err; 1136 } 1137 1138 if (ptr->snapshot_ref_buf_size) { 1139 if (!ptr->snapshot_refs[idx].ref_buf) { 1140 err = intel_pt_alloc_snapshot_ref(ptr, idx, mm->len); 1141 if (err) 1142 goto out_err; 1143 } 1144 wrapped = intel_pt_wrapped(ptr, idx, mm, data, *head); 1145 } else { 1146 wrapped = ptr->snapshot_refs[idx].wrapped; 1147 if (!wrapped && intel_pt_first_wrap((u64 *)data, mm->len)) { 1148 ptr->snapshot_refs[idx].wrapped = true; 1149 wrapped = true; 1150 } 1151 } 1152 1153 /* 1154 * In full trace mode 'head' continually increases. However in snapshot 1155 * mode 'head' is an offset within the buffer. Here 'old' and 'head' 1156 * are adjusted to match the full trace case which expects that 'old' is 1157 * always less than 'head'. 1158 */ 1159 if (wrapped) { 1160 *old = *head; 1161 *head += mm->len; 1162 } else { 1163 if (mm->mask) 1164 *old &= mm->mask; 1165 else 1166 *old %= mm->len; 1167 if (*old > *head) 1168 *head += mm->len; 1169 } 1170 1171 pr_debug3("%s: wrap-around %sdetected, adjusted old head %zu adjusted new head %zu\n", 1172 __func__, wrapped ? "" : "not ", (size_t)*old, (size_t)*head); 1173 1174 return 0; 1175 1176 out_err: 1177 pr_err("%s: failed, error %d\n", __func__, err); 1178 return err; 1179 } 1180 1181 static u64 intel_pt_reference(struct auxtrace_record *itr __maybe_unused) 1182 { 1183 return rdtsc(); 1184 } 1185 1186 static int intel_pt_perf_config(const char *var, const char *value, void *data) 1187 { 1188 struct intel_pt_recording *ptr = data; 1189 1190 if (!strcmp(var, "intel-pt.all-switch-events")) 1191 ptr->all_switch_events = perf_config_bool(var, value); 1192 1193 return 0; 1194 } 1195 1196 struct auxtrace_record *intel_pt_recording_init(int *err) 1197 { 1198 struct perf_pmu *intel_pt_pmu = perf_pmus__find(INTEL_PT_PMU_NAME); 1199 struct intel_pt_recording *ptr; 1200 1201 if (!intel_pt_pmu) 1202 return NULL; 1203 1204 if (setenv("JITDUMP_USE_ARCH_TIMESTAMP", "1", 1)) { 1205 *err = -errno; 1206 return NULL; 1207 } 1208 1209 ptr = zalloc(sizeof(struct intel_pt_recording)); 1210 if (!ptr) { 1211 *err = -ENOMEM; 1212 return NULL; 1213 } 1214 1215 perf_config(intel_pt_perf_config, ptr); 1216 1217 ptr->intel_pt_pmu = intel_pt_pmu; 1218 ptr->itr.recording_options = intel_pt_recording_options; 1219 ptr->itr.info_priv_size = intel_pt_info_priv_size; 1220 ptr->itr.info_fill = intel_pt_info_fill; 1221 ptr->itr.free = intel_pt_recording_free; 1222 ptr->itr.snapshot_start = intel_pt_snapshot_start; 1223 ptr->itr.snapshot_finish = intel_pt_snapshot_finish; 1224 ptr->itr.find_snapshot = intel_pt_find_snapshot; 1225 ptr->itr.parse_snapshot_options = intel_pt_parse_snapshot_options; 1226 ptr->itr.reference = intel_pt_reference; 1227 ptr->itr.read_finish = auxtrace_record__read_finish; 1228 /* 1229 * Decoding starts at a PSB packet. Minimum PSB period is 2K so 4K 1230 * should give at least 1 PSB per sample. 1231 */ 1232 ptr->itr.default_aux_sample_size = 4096; 1233 return &ptr->itr; 1234 } 1235