1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (C) 2011, Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com> 4 * 5 * Parts came from builtin-annotate.c, see those files for further 6 * copyright notes. 7 */ 8 9 #include <errno.h> 10 #include <inttypes.h> 11 #include <libgen.h> 12 #include <stdlib.h> 13 #include "util.h" // hex_width() 14 #include "ui/ui.h" 15 #include "sort.h" 16 #include "build-id.h" 17 #include "color.h" 18 #include "config.h" 19 #include "disasm.h" 20 #include "dso.h" 21 #include "env.h" 22 #include "map.h" 23 #include "maps.h" 24 #include "symbol.h" 25 #include "srcline.h" 26 #include "units.h" 27 #include "debug.h" 28 #include "debuginfo.h" 29 #include "annotate.h" 30 #include "annotate-data.h" 31 #include "evsel.h" 32 #include "evlist.h" 33 #include "bpf-event.h" 34 #include "bpf-utils.h" 35 #include "block-range.h" 36 #include "string2.h" 37 #include "dwarf-regs.h" 38 #include "util/event.h" 39 #include "util/sharded_mutex.h" 40 #include "arch/common.h" 41 #include "namespaces.h" 42 #include "thread.h" 43 #include "hashmap.h" 44 #include "strbuf.h" 45 #include <regex.h> 46 #include <linux/bitops.h> 47 #include <linux/kernel.h> 48 #include <linux/string.h> 49 #include <linux/zalloc.h> 50 #include <subcmd/parse-options.h> 51 #include <subcmd/run-command.h> 52 #include <math.h> 53 54 /* FIXME: For the HE_COLORSET */ 55 #include "ui/browser.h" 56 57 /* 58 * FIXME: Using the same values as slang.h, 59 * but that header may not be available everywhere 60 */ 61 #define LARROW_CHAR ((unsigned char)',') 62 #define RARROW_CHAR ((unsigned char)'+') 63 #define DARROW_CHAR ((unsigned char)'.') 64 #define UARROW_CHAR ((unsigned char)'-') 65 66 #include <linux/ctype.h> 67 68 /* global annotation options */ 69 struct annotation_options annotate_opts; 70 71 /* Data type collection debug statistics */ 72 struct annotated_data_stat ann_data_stat; 73 LIST_HEAD(ann_insn_stat); 74 75 /* Pseudo data types */ 76 struct annotated_data_type stackop_type = { 77 .self = { 78 .type_name = (char *)"(stack operation)", 79 .children = LIST_HEAD_INIT(stackop_type.self.children), 80 }, 81 }; 82 83 struct annotated_data_type canary_type = { 84 .self = { 85 .type_name = (char *)"(stack canary)", 86 .children = LIST_HEAD_INIT(canary_type.self.children), 87 }, 88 }; 89 90 #define NO_TYPE ((struct annotated_data_type *)-1UL) 91 92 /* symbol histogram: key = offset << 16 | evsel->core.idx */ 93 static size_t sym_hist_hash(long key, void *ctx __maybe_unused) 94 { 95 return (key >> 16) + (key & 0xffff); 96 } 97 98 static bool sym_hist_equal(long key1, long key2, void *ctx __maybe_unused) 99 { 100 return key1 == key2; 101 } 102 103 static struct annotated_source *annotated_source__new(void) 104 { 105 struct annotated_source *src = zalloc(sizeof(*src)); 106 107 if (src != NULL) 108 INIT_LIST_HEAD(&src->source); 109 110 return src; 111 } 112 113 static __maybe_unused void annotated_source__delete(struct annotated_source *src) 114 { 115 struct hashmap_entry *cur; 116 size_t bkt; 117 118 if (src == NULL) 119 return; 120 121 if (src->samples) { 122 hashmap__for_each_entry(src->samples, cur, bkt) 123 zfree(&cur->pvalue); 124 hashmap__free(src->samples); 125 } 126 zfree(&src->histograms); 127 free(src); 128 } 129 130 static int annotated_source__alloc_histograms(struct annotated_source *src, 131 int nr_hists) 132 { 133 src->nr_histograms = nr_hists; 134 src->histograms = calloc(nr_hists, sizeof(*src->histograms)); 135 136 if (src->histograms == NULL) 137 return -1; 138 139 src->samples = hashmap__new(sym_hist_hash, sym_hist_equal, NULL); 140 if (src->samples == NULL) 141 zfree(&src->histograms); 142 143 return src->histograms ? 0 : -1; 144 } 145 146 void symbol__annotate_zero_histograms(struct symbol *sym) 147 { 148 struct annotation *notes = symbol__annotation(sym); 149 150 annotation__lock(notes); 151 if (notes->src != NULL) { 152 memset(notes->src->histograms, 0, 153 notes->src->nr_histograms * sizeof(*notes->src->histograms)); 154 hashmap__clear(notes->src->samples); 155 } 156 if (notes->branch && notes->branch->cycles_hist) { 157 memset(notes->branch->cycles_hist, 0, 158 symbol__size(sym) * sizeof(struct cyc_hist)); 159 } 160 annotation__unlock(notes); 161 } 162 163 static int __symbol__account_cycles(struct cyc_hist *ch, 164 u64 start, 165 unsigned offset, unsigned cycles, 166 unsigned have_start) 167 { 168 /* 169 * For now we can only account one basic block per 170 * final jump. But multiple could be overlapping. 171 * Always account the longest one. So when 172 * a shorter one has been already seen throw it away. 173 * 174 * We separately always account the full cycles. 175 */ 176 ch[offset].num_aggr++; 177 ch[offset].cycles_aggr += cycles; 178 179 if (cycles > ch[offset].cycles_max) 180 ch[offset].cycles_max = cycles; 181 182 if (ch[offset].cycles_min) { 183 if (cycles && cycles < ch[offset].cycles_min) 184 ch[offset].cycles_min = cycles; 185 } else 186 ch[offset].cycles_min = cycles; 187 188 if (!have_start && ch[offset].have_start) 189 return 0; 190 if (ch[offset].num) { 191 if (have_start && (!ch[offset].have_start || 192 ch[offset].start > start)) { 193 ch[offset].have_start = 0; 194 ch[offset].cycles = 0; 195 ch[offset].num = 0; 196 if (ch[offset].reset < 0xffff) 197 ch[offset].reset++; 198 } else if (have_start && 199 ch[offset].start < start) 200 return 0; 201 } 202 203 if (ch[offset].num < NUM_SPARKS) 204 ch[offset].cycles_spark[ch[offset].num] = cycles; 205 206 ch[offset].have_start = have_start; 207 ch[offset].start = start; 208 ch[offset].cycles += cycles; 209 ch[offset].num++; 210 return 0; 211 } 212 213 static int __symbol__inc_addr_samples(struct map_symbol *ms, 214 struct annotated_source *src, struct evsel *evsel, u64 addr, 215 struct perf_sample *sample) 216 { 217 struct symbol *sym = ms->sym; 218 long hash_key; 219 u64 offset; 220 struct sym_hist *h; 221 struct sym_hist_entry *entry; 222 223 pr_debug3("%s: addr=%#" PRIx64 "\n", __func__, map__unmap_ip(ms->map, addr)); 224 225 if ((addr < sym->start || addr >= sym->end) && 226 (addr != sym->end || sym->start != sym->end)) { 227 pr_debug("%s(%d): ERANGE! sym->name=%s, start=%#" PRIx64 ", addr=%#" PRIx64 ", end=%#" PRIx64 "\n", 228 __func__, __LINE__, sym->name, sym->start, addr, sym->end); 229 return -ERANGE; 230 } 231 232 offset = addr - sym->start; 233 h = annotated_source__histogram(src, evsel); 234 if (h == NULL) { 235 pr_debug("%s(%d): ENOMEM! sym->name=%s, start=%#" PRIx64 ", addr=%#" PRIx64 ", end=%#" PRIx64 ", func: %d\n", 236 __func__, __LINE__, sym->name, sym->start, addr, sym->end, sym->type == STT_FUNC); 237 return -ENOMEM; 238 } 239 240 hash_key = offset << 16 | evsel->core.idx; 241 if (!hashmap__find(src->samples, hash_key, &entry)) { 242 entry = zalloc(sizeof(*entry)); 243 if (entry == NULL) 244 return -ENOMEM; 245 246 if (hashmap__add(src->samples, hash_key, entry) < 0) 247 return -ENOMEM; 248 } 249 250 h->nr_samples++; 251 h->period += sample->period; 252 entry->nr_samples++; 253 entry->period += sample->period; 254 255 pr_debug3("%#" PRIx64 " %s: period++ [addr: %#" PRIx64 ", %#" PRIx64 256 ", evidx=%d] => nr_samples: %" PRIu64 ", period: %" PRIu64 "\n", 257 sym->start, sym->name, addr, addr - sym->start, evsel->core.idx, 258 entry->nr_samples, entry->period); 259 return 0; 260 } 261 262 struct annotated_branch *annotation__get_branch(struct annotation *notes) 263 { 264 if (notes == NULL) 265 return NULL; 266 267 if (notes->branch == NULL) 268 notes->branch = zalloc(sizeof(*notes->branch)); 269 270 return notes->branch; 271 } 272 273 static struct annotated_branch *symbol__find_branch_hist(struct symbol *sym, 274 unsigned int br_cntr_nr) 275 { 276 struct annotation *notes = symbol__annotation(sym); 277 struct annotated_branch *branch; 278 const size_t size = symbol__size(sym); 279 280 branch = annotation__get_branch(notes); 281 if (branch == NULL) 282 return NULL; 283 284 if (branch->cycles_hist == NULL) { 285 branch->cycles_hist = calloc(size, sizeof(struct cyc_hist)); 286 if (!branch->cycles_hist) 287 return NULL; 288 } 289 290 if (br_cntr_nr && branch->br_cntr == NULL) { 291 branch->br_cntr = calloc(br_cntr_nr * size, sizeof(u64)); 292 if (!branch->br_cntr) 293 return NULL; 294 } 295 296 return branch; 297 } 298 299 struct annotated_source *symbol__hists(struct symbol *sym, int nr_hists) 300 { 301 struct annotation *notes = symbol__annotation(sym); 302 303 if (notes->src == NULL) { 304 notes->src = annotated_source__new(); 305 if (notes->src == NULL) 306 return NULL; 307 goto alloc_histograms; 308 } 309 310 if (notes->src->histograms == NULL) { 311 alloc_histograms: 312 annotated_source__alloc_histograms(notes->src, nr_hists); 313 } 314 315 return notes->src; 316 } 317 318 static int symbol__inc_addr_samples(struct map_symbol *ms, 319 struct evsel *evsel, u64 addr, 320 struct perf_sample *sample) 321 { 322 struct symbol *sym = ms->sym; 323 struct annotated_source *src; 324 325 if (sym == NULL) 326 return 0; 327 src = symbol__hists(sym, evsel->evlist->core.nr_entries); 328 return src ? __symbol__inc_addr_samples(ms, src, evsel, addr, sample) : 0; 329 } 330 331 static int symbol__account_br_cntr(struct annotated_branch *branch, 332 struct evsel *evsel, 333 unsigned offset, 334 u64 br_cntr) 335 { 336 unsigned int br_cntr_nr = evsel__leader(evsel)->br_cntr_nr; 337 unsigned int base = evsel__leader(evsel)->br_cntr_idx; 338 unsigned int off = offset * evsel->evlist->nr_br_cntr; 339 u64 *branch_br_cntr = branch->br_cntr; 340 unsigned int i, mask, width; 341 342 if (!br_cntr || !branch_br_cntr) 343 return 0; 344 345 perf_env__find_br_cntr_info(evsel__env(evsel), NULL, &width); 346 mask = (1L << width) - 1; 347 for (i = 0; i < br_cntr_nr; i++) { 348 u64 cntr = (br_cntr >> i * width) & mask; 349 350 branch_br_cntr[off + i + base] += cntr; 351 if (cntr == mask) 352 branch_br_cntr[off + i + base] |= ANNOTATION__BR_CNTR_SATURATED_FLAG; 353 } 354 355 return 0; 356 } 357 358 static int symbol__account_cycles(u64 addr, u64 start, struct symbol *sym, 359 unsigned cycles, struct evsel *evsel, 360 u64 br_cntr) 361 { 362 struct annotated_branch *branch; 363 unsigned offset; 364 int ret; 365 366 if (sym == NULL) 367 return 0; 368 branch = symbol__find_branch_hist(sym, evsel->evlist->nr_br_cntr); 369 if (!branch) 370 return -ENOMEM; 371 if (addr < sym->start || addr >= sym->end) 372 return -ERANGE; 373 374 if (start) { 375 if (start < sym->start || start >= sym->end) 376 return -ERANGE; 377 if (start >= addr) 378 start = 0; 379 } 380 offset = addr - sym->start; 381 ret = __symbol__account_cycles(branch->cycles_hist, 382 start ? start - sym->start : 0, 383 offset, cycles, 384 !!start); 385 386 if (ret) 387 return ret; 388 389 return symbol__account_br_cntr(branch, evsel, offset, br_cntr); 390 } 391 392 int addr_map_symbol__account_cycles(struct addr_map_symbol *ams, 393 struct addr_map_symbol *start, 394 unsigned cycles, 395 struct evsel *evsel, 396 u64 br_cntr) 397 { 398 u64 saddr = 0; 399 int err; 400 401 if (!cycles) 402 return 0; 403 404 /* 405 * Only set start when IPC can be computed. We can only 406 * compute it when the basic block is completely in a single 407 * function. 408 * Special case the case when the jump is elsewhere, but 409 * it starts on the function start. 410 */ 411 if (start && 412 (start->ms.sym == ams->ms.sym || 413 (ams->ms.sym && 414 start->addr == ams->ms.sym->start + map__start(ams->ms.map)))) 415 saddr = start->al_addr; 416 if (saddr == 0) 417 pr_debug2("BB with bad start: addr %"PRIx64" start %"PRIx64" sym %"PRIx64" saddr %"PRIx64"\n", 418 ams->addr, 419 start ? start->addr : 0, 420 ams->ms.sym ? ams->ms.sym->start + map__start(ams->ms.map) : 0, 421 saddr); 422 err = symbol__account_cycles(ams->al_addr, saddr, ams->ms.sym, cycles, evsel, br_cntr); 423 if (err) 424 pr_debug2("account_cycles failed %d\n", err); 425 return err; 426 } 427 428 struct annotation_line *annotated_source__get_line(struct annotated_source *src, 429 s64 offset) 430 { 431 struct annotation_line *al; 432 433 list_for_each_entry(al, &src->source, node) { 434 if (al->offset == offset) 435 return al; 436 } 437 return NULL; 438 } 439 440 static unsigned annotation__count_insn(struct annotation *notes, u64 start, u64 end) 441 { 442 struct annotation_line *al; 443 unsigned n_insn = 0; 444 445 al = annotated_source__get_line(notes->src, start); 446 if (al == NULL) 447 return 0; 448 449 list_for_each_entry_from(al, ¬es->src->source, node) { 450 if (al->offset == -1) 451 continue; 452 if ((u64)al->offset > end) 453 break; 454 n_insn++; 455 } 456 return n_insn; 457 } 458 459 static void annotated_branch__delete(struct annotated_branch *branch) 460 { 461 if (branch) { 462 zfree(&branch->cycles_hist); 463 free(branch->br_cntr); 464 free(branch); 465 } 466 } 467 468 static void annotation__count_and_fill(struct annotation *notes, u64 start, u64 end, struct cyc_hist *ch) 469 { 470 unsigned n_insn; 471 unsigned int cover_insn = 0; 472 473 n_insn = annotation__count_insn(notes, start, end); 474 if (n_insn && ch->num && ch->cycles) { 475 struct annotation_line *al; 476 struct annotated_branch *branch; 477 float ipc = n_insn / ((double)ch->cycles / (double)ch->num); 478 479 /* Hide data when there are too many overlaps. */ 480 if (ch->reset >= 0x7fff) 481 return; 482 483 al = annotated_source__get_line(notes->src, start); 484 if (al == NULL) 485 return; 486 487 list_for_each_entry_from(al, ¬es->src->source, node) { 488 if (al->offset == -1) 489 continue; 490 if ((u64)al->offset > end) 491 break; 492 if (al->cycles && al->cycles->ipc == 0.0) { 493 al->cycles->ipc = ipc; 494 cover_insn++; 495 } 496 } 497 498 branch = annotation__get_branch(notes); 499 if (cover_insn && branch) { 500 branch->hit_cycles += ch->cycles; 501 branch->hit_insn += n_insn * ch->num; 502 branch->cover_insn += cover_insn; 503 } 504 } 505 } 506 507 static int annotation__compute_ipc(struct annotation *notes, size_t size, 508 struct evsel *evsel) 509 { 510 unsigned int br_cntr_nr = evsel->evlist->nr_br_cntr; 511 int err = 0; 512 s64 offset; 513 514 if (!notes->branch || !notes->branch->cycles_hist) 515 return 0; 516 517 notes->branch->total_insn = annotation__count_insn(notes, 0, size - 1); 518 notes->branch->hit_cycles = 0; 519 notes->branch->hit_insn = 0; 520 notes->branch->cover_insn = 0; 521 522 annotation__lock(notes); 523 for (offset = size - 1; offset >= 0; --offset) { 524 struct cyc_hist *ch; 525 526 ch = ¬es->branch->cycles_hist[offset]; 527 if (ch && ch->cycles) { 528 struct annotation_line *al; 529 530 al = annotated_source__get_line(notes->src, offset); 531 if (al && al->cycles == NULL) { 532 al->cycles = zalloc(sizeof(*al->cycles)); 533 if (al->cycles == NULL) { 534 err = ENOMEM; 535 break; 536 } 537 } 538 if (ch->have_start) 539 annotation__count_and_fill(notes, ch->start, offset, ch); 540 if (al && ch->num_aggr) { 541 al->cycles->avg = ch->cycles_aggr / ch->num_aggr; 542 al->cycles->max = ch->cycles_max; 543 al->cycles->min = ch->cycles_min; 544 } 545 if (al && notes->branch->br_cntr) { 546 if (!al->br_cntr) { 547 al->br_cntr = calloc(br_cntr_nr, sizeof(u64)); 548 if (!al->br_cntr) { 549 err = ENOMEM; 550 break; 551 } 552 } 553 al->num_aggr = ch->num_aggr; 554 al->br_cntr_nr = br_cntr_nr; 555 al->evsel = evsel; 556 memcpy(al->br_cntr, ¬es->branch->br_cntr[offset * br_cntr_nr], 557 br_cntr_nr * sizeof(u64)); 558 } 559 } 560 } 561 562 if (err) { 563 while (++offset < (s64)size) { 564 struct cyc_hist *ch = ¬es->branch->cycles_hist[offset]; 565 566 if (ch && ch->cycles) { 567 struct annotation_line *al; 568 569 al = annotated_source__get_line(notes->src, offset); 570 if (al) { 571 zfree(&al->cycles); 572 zfree(&al->br_cntr); 573 } 574 } 575 } 576 } 577 578 annotation__unlock(notes); 579 return 0; 580 } 581 582 int addr_map_symbol__inc_samples(struct addr_map_symbol *ams, struct perf_sample *sample, 583 struct evsel *evsel) 584 { 585 return symbol__inc_addr_samples(&ams->ms, evsel, ams->al_addr, sample); 586 } 587 588 int hist_entry__inc_addr_samples(struct hist_entry *he, struct perf_sample *sample, 589 struct evsel *evsel, u64 ip) 590 { 591 return symbol__inc_addr_samples(&he->ms, evsel, ip, sample); 592 } 593 594 595 void annotation__exit(struct annotation *notes) 596 { 597 annotated_source__delete(notes->src); 598 annotated_branch__delete(notes->branch); 599 } 600 601 static struct sharded_mutex *sharded_mutex; 602 603 static void annotation__init_sharded_mutex(void) 604 { 605 /* As many mutexes as there are CPUs. */ 606 sharded_mutex = sharded_mutex__new(cpu__max_present_cpu().cpu); 607 } 608 609 static size_t annotation__hash(const struct annotation *notes) 610 { 611 return (size_t)notes; 612 } 613 614 static struct mutex *annotation__get_mutex(const struct annotation *notes) 615 { 616 static pthread_once_t once = PTHREAD_ONCE_INIT; 617 618 pthread_once(&once, annotation__init_sharded_mutex); 619 if (!sharded_mutex) 620 return NULL; 621 622 return sharded_mutex__get_mutex(sharded_mutex, annotation__hash(notes)); 623 } 624 625 void annotation__lock(struct annotation *notes) 626 NO_THREAD_SAFETY_ANALYSIS 627 { 628 struct mutex *mutex = annotation__get_mutex(notes); 629 630 if (mutex) 631 mutex_lock(mutex); 632 } 633 634 void annotation__unlock(struct annotation *notes) 635 NO_THREAD_SAFETY_ANALYSIS 636 { 637 struct mutex *mutex = annotation__get_mutex(notes); 638 639 if (mutex) 640 mutex_unlock(mutex); 641 } 642 643 bool annotation__trylock(struct annotation *notes) 644 { 645 struct mutex *mutex = annotation__get_mutex(notes); 646 647 if (!mutex) 648 return false; 649 650 return mutex_trylock(mutex); 651 } 652 653 void annotation_line__add(struct annotation_line *al, struct list_head *head) 654 { 655 list_add_tail(&al->node, head); 656 } 657 658 struct annotation_line * 659 annotation_line__next(struct annotation_line *pos, struct list_head *head) 660 { 661 list_for_each_entry_continue(pos, head, node) 662 if (pos->offset >= 0) 663 return pos; 664 665 return NULL; 666 } 667 668 static const char *annotate__address_color(struct block_range *br) 669 { 670 double cov = block_range__coverage(br); 671 672 if (cov >= 0) { 673 /* mark red for >75% coverage */ 674 if (cov > 0.75) 675 return PERF_COLOR_RED; 676 677 /* mark dull for <1% coverage */ 678 if (cov < 0.01) 679 return PERF_COLOR_NORMAL; 680 } 681 682 return PERF_COLOR_MAGENTA; 683 } 684 685 static const char *annotate__asm_color(struct block_range *br) 686 { 687 double cov = block_range__coverage(br); 688 689 if (cov >= 0) { 690 /* mark dull for <1% coverage */ 691 if (cov < 0.01) 692 return PERF_COLOR_NORMAL; 693 } 694 695 return PERF_COLOR_BLUE; 696 } 697 698 static void annotate__branch_printf(struct block_range *br, u64 addr) 699 { 700 bool emit_comment = true; 701 702 if (!br) 703 return; 704 705 #if 1 706 if (br->is_target && br->start == addr) { 707 struct block_range *branch = br; 708 double p; 709 710 /* 711 * Find matching branch to our target. 712 */ 713 while (!branch->is_branch) 714 branch = block_range__next(branch); 715 716 p = 100 *(double)br->entry / branch->coverage; 717 718 if (p > 0.1) { 719 if (emit_comment) { 720 emit_comment = false; 721 printf("\t#"); 722 } 723 724 /* 725 * The percentage of coverage joined at this target in relation 726 * to the next branch. 727 */ 728 printf(" +%.2f%%", p); 729 } 730 } 731 #endif 732 if (br->is_branch && br->end == addr) { 733 double p = 100*(double)br->taken / br->coverage; 734 735 if (p > 0.1) { 736 if (emit_comment) { 737 emit_comment = false; 738 printf("\t#"); 739 } 740 741 /* 742 * The percentage of coverage leaving at this branch, and 743 * its prediction ratio. 744 */ 745 printf(" -%.2f%% (p:%.2f%%)", p, 100*(double)br->pred / br->taken); 746 } 747 } 748 } 749 750 static int disasm_line__print(struct disasm_line *dl, u64 start, int addr_fmt_width) 751 { 752 s64 offset = dl->al.offset; 753 const u64 addr = start + offset; 754 struct block_range *br; 755 756 br = block_range__find(addr); 757 color_fprintf(stdout, annotate__address_color(br), " %*" PRIx64 ":", addr_fmt_width, addr); 758 color_fprintf(stdout, annotate__asm_color(br), "%s", dl->al.line); 759 annotate__branch_printf(br, addr); 760 return 0; 761 } 762 763 static struct annotated_data_type * 764 __hist_entry__get_data_type(struct hist_entry *he, struct arch *arch, 765 struct debuginfo *dbg, struct disasm_line *dl, 766 int *type_offset); 767 768 struct annotation_print_data { 769 struct hist_entry *he; 770 struct evsel *evsel; 771 struct arch *arch; 772 struct debuginfo *dbg; 773 u64 start; 774 int addr_fmt_width; 775 }; 776 777 static int 778 annotation_line__print(struct annotation_line *al, struct annotation_print_data *apd, 779 struct annotation_options *opts, int printed, 780 struct annotation_line *queue) 781 { 782 struct symbol *sym = apd->he->ms.sym; 783 struct disasm_line *dl = container_of(al, struct disasm_line, al); 784 struct annotation *notes = symbol__annotation(sym); 785 static const char *prev_line; 786 int max_lines = opts->max_lines; 787 int percent_type = opts->percent_type; 788 789 if (al->offset != -1) { 790 double max_percent = 0.0; 791 int i, nr_percent = 1; 792 const char *color; 793 794 for (i = 0; i < al->data_nr; i++) { 795 double percent; 796 797 percent = annotation_data__percent(&al->data[i], 798 percent_type); 799 800 if (percent > max_percent) 801 max_percent = percent; 802 } 803 804 if (al->data_nr > nr_percent) 805 nr_percent = al->data_nr; 806 807 if (max_percent < opts->min_pcnt) 808 return -1; 809 810 if (max_lines && printed >= max_lines) 811 return 1; 812 813 if (queue != NULL) { 814 struct annotation_options queue_opts = { 815 .max_lines = 1, 816 .percent_type = percent_type, 817 }; 818 819 list_for_each_entry_from(queue, ¬es->src->source, node) { 820 if (queue == al) 821 break; 822 annotation_line__print(queue, apd, &queue_opts, 823 /*printed=*/0, /*queue=*/NULL); 824 } 825 } 826 827 color = get_percent_color(max_percent); 828 829 for (i = 0; i < nr_percent; i++) { 830 struct annotation_data *data = &al->data[i]; 831 double percent; 832 833 percent = annotation_data__percent(data, percent_type); 834 color = get_percent_color(percent); 835 836 if (symbol_conf.show_total_period) 837 color_fprintf(stdout, color, " %11" PRIu64, 838 data->he.period); 839 else if (symbol_conf.show_nr_samples) 840 color_fprintf(stdout, color, " %7" PRIu64, 841 data->he.nr_samples); 842 else 843 color_fprintf(stdout, color, " %7.2f", percent); 844 } 845 846 printf(" : "); 847 848 disasm_line__print(dl, apd->start, apd->addr_fmt_width); 849 850 if (opts->code_with_type && apd->dbg) { 851 struct annotated_data_type *data_type; 852 int offset = 0; 853 854 data_type = __hist_entry__get_data_type(apd->he, apd->arch, 855 apd->dbg, dl, &offset); 856 if (data_type && data_type != NO_TYPE) { 857 char buf[4096]; 858 859 printf("\t\t# data-type: %s", 860 data_type->self.type_name); 861 862 if (data_type != &stackop_type && 863 data_type != &canary_type) 864 printf(" +%#x", offset); 865 866 if (annotated_data_type__get_member_name(data_type, 867 buf, 868 sizeof(buf), 869 offset)) 870 printf(" (%s)", buf); 871 } 872 } 873 874 /* 875 * Also color the filename and line if needed, with 876 * the same color than the percentage. Don't print it 877 * twice for close colored addr with the same filename:line 878 */ 879 if (al->path) { 880 if (!prev_line || strcmp(prev_line, al->path)) { 881 color_fprintf(stdout, color, " // %s", al->path); 882 prev_line = al->path; 883 } 884 } 885 886 printf("\n"); 887 } else if (max_lines && printed >= max_lines) 888 return 1; 889 else { 890 int width = annotation__pcnt_width(notes); 891 892 if (queue) 893 return -1; 894 895 if (!*al->line) 896 printf(" %*s:\n", width, " "); 897 else 898 printf(" %*s: %-*d %s\n", width, " ", apd->addr_fmt_width, 899 al->line_nr, al->line); 900 } 901 902 return 0; 903 } 904 905 static void calc_percent(struct annotation *notes, 906 struct evsel *evsel, 907 struct annotation_data *data, 908 s64 offset, s64 end) 909 { 910 struct hists *hists = evsel__hists(evsel); 911 struct sym_hist *sym_hist = annotation__histogram(notes, evsel); 912 unsigned int hits = 0; 913 u64 period = 0; 914 915 while (offset < end) { 916 struct sym_hist_entry *entry; 917 918 entry = annotated_source__hist_entry(notes->src, evsel, offset); 919 if (entry) { 920 hits += entry->nr_samples; 921 period += entry->period; 922 } 923 ++offset; 924 } 925 926 if (sym_hist->nr_samples) { 927 data->he.period = period; 928 data->he.nr_samples = hits; 929 data->percent[PERCENT_HITS_LOCAL] = 100.0 * hits / sym_hist->nr_samples; 930 } 931 932 if (hists->stats.nr_non_filtered_samples) 933 data->percent[PERCENT_HITS_GLOBAL] = 100.0 * hits / hists->stats.nr_non_filtered_samples; 934 935 if (sym_hist->period) 936 data->percent[PERCENT_PERIOD_LOCAL] = 100.0 * period / sym_hist->period; 937 938 if (hists->stats.total_period) 939 data->percent[PERCENT_PERIOD_GLOBAL] = 100.0 * period / hists->stats.total_period; 940 } 941 942 static void annotation__calc_percent(struct annotation *notes, 943 struct evsel *leader, s64 len) 944 { 945 struct annotation_line *al, *next; 946 struct evsel *evsel; 947 948 list_for_each_entry(al, ¬es->src->source, node) { 949 s64 end; 950 int i = 0; 951 952 if (al->offset == -1) 953 continue; 954 955 next = annotation_line__next(al, ¬es->src->source); 956 end = next ? next->offset : len; 957 958 for_each_group_evsel(evsel, leader) { 959 struct annotation_data *data; 960 961 BUG_ON(i >= al->data_nr); 962 963 if (symbol_conf.skip_empty && 964 evsel__hists(evsel)->stats.nr_samples == 0) 965 continue; 966 967 data = &al->data[i++]; 968 969 calc_percent(notes, evsel, data, al->offset, end); 970 } 971 } 972 } 973 974 void symbol__calc_percent(struct symbol *sym, struct evsel *evsel) 975 { 976 struct annotation *notes = symbol__annotation(sym); 977 978 annotation__calc_percent(notes, evsel, symbol__size(sym)); 979 } 980 981 static int evsel__get_arch(struct evsel *evsel, struct arch **parch) 982 { 983 struct perf_env *env = evsel__env(evsel); 984 const char *arch_name = perf_env__arch(env); 985 struct arch *arch; 986 int err; 987 988 if (!arch_name) { 989 *parch = NULL; 990 return errno; 991 } 992 993 *parch = arch = arch__find(arch_name); 994 if (arch == NULL) { 995 pr_err("%s: unsupported arch %s\n", __func__, arch_name); 996 return ENOTSUP; 997 } 998 999 if (arch->init) { 1000 err = arch->init(arch, env ? env->cpuid : NULL); 1001 if (err) { 1002 pr_err("%s: failed to initialize %s arch priv area\n", 1003 __func__, arch->name); 1004 return err; 1005 } 1006 } 1007 return 0; 1008 } 1009 1010 int symbol__annotate(struct map_symbol *ms, struct evsel *evsel, 1011 struct arch **parch) 1012 { 1013 struct symbol *sym = ms->sym; 1014 struct annotation *notes = symbol__annotation(sym); 1015 struct annotate_args args = { 1016 .evsel = evsel, 1017 .options = &annotate_opts, 1018 }; 1019 struct arch *arch = NULL; 1020 int err, nr; 1021 1022 err = evsel__get_arch(evsel, &arch); 1023 if (err < 0) 1024 return err; 1025 1026 if (parch) 1027 *parch = arch; 1028 1029 if (notes->src && !list_empty(¬es->src->source)) 1030 return 0; 1031 1032 args.arch = arch; 1033 args.ms = *ms; 1034 1035 if (notes->src == NULL) { 1036 notes->src = annotated_source__new(); 1037 if (notes->src == NULL) 1038 return -1; 1039 } 1040 1041 nr = 0; 1042 if (evsel__is_group_event(evsel)) { 1043 struct evsel *pos; 1044 1045 for_each_group_evsel(pos, evsel) { 1046 if (symbol_conf.skip_empty && 1047 evsel__hists(pos)->stats.nr_samples == 0) 1048 continue; 1049 nr++; 1050 } 1051 } 1052 notes->src->nr_events = nr ? nr : 1; 1053 1054 if (annotate_opts.full_addr) 1055 notes->src->start = map__objdump_2mem(ms->map, ms->sym->start); 1056 else 1057 notes->src->start = map__rip_2objdump(ms->map, ms->sym->start); 1058 1059 return symbol__disassemble(sym, &args); 1060 } 1061 1062 static void insert_source_line(struct rb_root *root, struct annotation_line *al) 1063 { 1064 struct annotation_line *iter; 1065 struct rb_node **p = &root->rb_node; 1066 struct rb_node *parent = NULL; 1067 unsigned int percent_type = annotate_opts.percent_type; 1068 int i, ret; 1069 1070 while (*p != NULL) { 1071 parent = *p; 1072 iter = rb_entry(parent, struct annotation_line, rb_node); 1073 1074 ret = strcmp(iter->path, al->path); 1075 if (ret == 0) { 1076 for (i = 0; i < al->data_nr; i++) { 1077 iter->data[i].percent_sum += annotation_data__percent(&al->data[i], 1078 percent_type); 1079 } 1080 return; 1081 } 1082 1083 if (ret < 0) 1084 p = &(*p)->rb_left; 1085 else 1086 p = &(*p)->rb_right; 1087 } 1088 1089 for (i = 0; i < al->data_nr; i++) { 1090 al->data[i].percent_sum = annotation_data__percent(&al->data[i], 1091 percent_type); 1092 } 1093 1094 rb_link_node(&al->rb_node, parent, p); 1095 rb_insert_color(&al->rb_node, root); 1096 } 1097 1098 static int cmp_source_line(struct annotation_line *a, struct annotation_line *b) 1099 { 1100 int i; 1101 1102 for (i = 0; i < a->data_nr; i++) { 1103 if (a->data[i].percent_sum == b->data[i].percent_sum) 1104 continue; 1105 return a->data[i].percent_sum > b->data[i].percent_sum; 1106 } 1107 1108 return 0; 1109 } 1110 1111 static void __resort_source_line(struct rb_root *root, struct annotation_line *al) 1112 { 1113 struct annotation_line *iter; 1114 struct rb_node **p = &root->rb_node; 1115 struct rb_node *parent = NULL; 1116 1117 while (*p != NULL) { 1118 parent = *p; 1119 iter = rb_entry(parent, struct annotation_line, rb_node); 1120 1121 if (cmp_source_line(al, iter)) 1122 p = &(*p)->rb_left; 1123 else 1124 p = &(*p)->rb_right; 1125 } 1126 1127 rb_link_node(&al->rb_node, parent, p); 1128 rb_insert_color(&al->rb_node, root); 1129 } 1130 1131 static void resort_source_line(struct rb_root *dest_root, struct rb_root *src_root) 1132 { 1133 struct annotation_line *al; 1134 struct rb_node *node; 1135 1136 node = rb_first(src_root); 1137 while (node) { 1138 struct rb_node *next; 1139 1140 al = rb_entry(node, struct annotation_line, rb_node); 1141 next = rb_next(node); 1142 rb_erase(node, src_root); 1143 1144 __resort_source_line(dest_root, al); 1145 node = next; 1146 } 1147 } 1148 1149 static void print_summary(struct rb_root *root, const char *filename) 1150 { 1151 struct annotation_line *al; 1152 struct rb_node *node; 1153 1154 printf("\nSorted summary for file %s\n", filename); 1155 printf("----------------------------------------------\n\n"); 1156 1157 if (RB_EMPTY_ROOT(root)) { 1158 printf(" Nothing higher than %1.1f%%\n", MIN_GREEN); 1159 return; 1160 } 1161 1162 node = rb_first(root); 1163 while (node) { 1164 double percent, percent_max = 0.0; 1165 const char *color; 1166 char *path; 1167 int i; 1168 1169 al = rb_entry(node, struct annotation_line, rb_node); 1170 for (i = 0; i < al->data_nr; i++) { 1171 percent = al->data[i].percent_sum; 1172 color = get_percent_color(percent); 1173 color_fprintf(stdout, color, " %7.2f", percent); 1174 1175 if (percent > percent_max) 1176 percent_max = percent; 1177 } 1178 1179 path = al->path; 1180 color = get_percent_color(percent_max); 1181 color_fprintf(stdout, color, " %s\n", path); 1182 1183 node = rb_next(node); 1184 } 1185 } 1186 1187 static void symbol__annotate_hits(struct symbol *sym, struct evsel *evsel) 1188 { 1189 struct annotation *notes = symbol__annotation(sym); 1190 struct sym_hist *h = annotation__histogram(notes, evsel); 1191 u64 len = symbol__size(sym), offset; 1192 1193 for (offset = 0; offset < len; ++offset) { 1194 struct sym_hist_entry *entry; 1195 1196 entry = annotated_source__hist_entry(notes->src, evsel, offset); 1197 if (entry && entry->nr_samples != 0) 1198 printf("%*" PRIx64 ": %" PRIu64 "\n", BITS_PER_LONG / 2, 1199 sym->start + offset, entry->nr_samples); 1200 } 1201 printf("%*s: %" PRIu64 "\n", BITS_PER_LONG / 2, "h->nr_samples", h->nr_samples); 1202 } 1203 1204 static int annotated_source__addr_fmt_width(struct list_head *lines, u64 start) 1205 { 1206 char bf[32]; 1207 struct annotation_line *line; 1208 1209 list_for_each_entry_reverse(line, lines, node) { 1210 if (line->offset != -1) 1211 return scnprintf(bf, sizeof(bf), "%" PRIx64, start + line->offset); 1212 } 1213 1214 return 0; 1215 } 1216 1217 int hist_entry__annotate_printf(struct hist_entry *he, struct evsel *evsel) 1218 { 1219 struct map_symbol *ms = &he->ms; 1220 struct map *map = ms->map; 1221 struct symbol *sym = ms->sym; 1222 struct dso *dso = map__dso(map); 1223 char *filename; 1224 const char *d_filename; 1225 const char *evsel_name = evsel__name(evsel); 1226 struct annotation *notes = symbol__annotation(sym); 1227 struct sym_hist *h = annotation__histogram(notes, evsel); 1228 struct annotation_line *pos, *queue = NULL; 1229 struct annotation_options *opts = &annotate_opts; 1230 struct annotation_print_data apd = { 1231 .he = he, 1232 .evsel = evsel, 1233 .start = map__rip_2objdump(map, sym->start), 1234 }; 1235 int printed = 2, queue_len = 0; 1236 int more = 0; 1237 bool context = opts->context; 1238 int width = annotation__pcnt_width(notes); 1239 int graph_dotted_len; 1240 char buf[512]; 1241 1242 filename = strdup(dso__long_name(dso)); 1243 if (!filename) 1244 return -ENOMEM; 1245 1246 if (opts->full_path) 1247 d_filename = filename; 1248 else 1249 d_filename = basename(filename); 1250 1251 if (evsel__is_group_event(evsel)) { 1252 evsel__group_desc(evsel, buf, sizeof(buf)); 1253 evsel_name = buf; 1254 } 1255 1256 graph_dotted_len = printf(" %-*.*s| Source code & Disassembly of %s for %s (%" PRIu64 " samples, " 1257 "percent: %s)\n", 1258 width, width, symbol_conf.show_total_period ? "Period" : 1259 symbol_conf.show_nr_samples ? "Samples" : "Percent", 1260 d_filename, evsel_name, h->nr_samples, 1261 percent_type_str(opts->percent_type)); 1262 1263 printf("%-*.*s----\n", 1264 graph_dotted_len, graph_dotted_len, graph_dotted_line); 1265 1266 if (verbose > 0) 1267 symbol__annotate_hits(sym, evsel); 1268 1269 apd.addr_fmt_width = annotated_source__addr_fmt_width(¬es->src->source, 1270 apd.start); 1271 evsel__get_arch(evsel, &apd.arch); 1272 apd.dbg = debuginfo__new(filename); 1273 1274 list_for_each_entry(pos, ¬es->src->source, node) { 1275 int err; 1276 1277 if (context && queue == NULL) { 1278 queue = pos; 1279 queue_len = 0; 1280 } 1281 1282 err = annotation_line__print(pos, &apd, opts, printed, queue); 1283 1284 switch (err) { 1285 case 0: 1286 ++printed; 1287 if (context) { 1288 printed += queue_len; 1289 queue = NULL; 1290 queue_len = 0; 1291 } 1292 break; 1293 case 1: 1294 /* filtered by max_lines */ 1295 ++more; 1296 break; 1297 case -1: 1298 default: 1299 /* 1300 * Filtered by min_pcnt or non IP lines when 1301 * context != 0 1302 */ 1303 if (!context) 1304 break; 1305 if (queue_len == context) 1306 queue = list_entry(queue->node.next, typeof(*queue), node); 1307 else 1308 ++queue_len; 1309 break; 1310 } 1311 } 1312 1313 debuginfo__delete(apd.dbg); 1314 free(filename); 1315 1316 return more; 1317 } 1318 1319 static void FILE__set_percent_color(void *fp __maybe_unused, 1320 double percent __maybe_unused, 1321 bool current __maybe_unused) 1322 { 1323 } 1324 1325 static int FILE__set_jumps_percent_color(void *fp __maybe_unused, 1326 int nr __maybe_unused, bool current __maybe_unused) 1327 { 1328 return 0; 1329 } 1330 1331 static int FILE__set_color(void *fp __maybe_unused, int color __maybe_unused) 1332 { 1333 return 0; 1334 } 1335 1336 static void FILE__printf(void *fp, const char *fmt, ...) 1337 { 1338 va_list args; 1339 1340 va_start(args, fmt); 1341 vfprintf(fp, fmt, args); 1342 va_end(args); 1343 } 1344 1345 static void FILE__write_graph(void *fp, int graph) 1346 { 1347 const char *s; 1348 switch (graph) { 1349 1350 case DARROW_CHAR: s = "↓"; break; 1351 case UARROW_CHAR: s = "↑"; break; 1352 case LARROW_CHAR: s = "←"; break; 1353 case RARROW_CHAR: s = "→"; break; 1354 default: s = "?"; break; 1355 } 1356 1357 fputs(s, fp); 1358 } 1359 1360 static int symbol__annotate_fprintf2(struct symbol *sym, FILE *fp) 1361 { 1362 struct annotation *notes = symbol__annotation(sym); 1363 struct annotation_write_ops wops = { 1364 .first_line = true, 1365 .obj = fp, 1366 .set_color = FILE__set_color, 1367 .set_percent_color = FILE__set_percent_color, 1368 .set_jumps_percent_color = FILE__set_jumps_percent_color, 1369 .printf = FILE__printf, 1370 .write_graph = FILE__write_graph, 1371 }; 1372 struct annotation_line *al; 1373 1374 list_for_each_entry(al, ¬es->src->source, node) { 1375 if (annotation_line__filter(al)) 1376 continue; 1377 annotation_line__write(al, notes, &wops); 1378 fputc('\n', fp); 1379 wops.first_line = false; 1380 } 1381 1382 return 0; 1383 } 1384 1385 int map_symbol__annotation_dump(struct map_symbol *ms, struct evsel *evsel) 1386 { 1387 const char *ev_name = evsel__name(evsel); 1388 char buf[1024]; 1389 char *filename; 1390 int err = -1; 1391 FILE *fp; 1392 1393 if (asprintf(&filename, "%s.annotation", ms->sym->name) < 0) 1394 return -1; 1395 1396 fp = fopen(filename, "w"); 1397 if (fp == NULL) 1398 goto out_free_filename; 1399 1400 if (evsel__is_group_event(evsel)) { 1401 evsel__group_desc(evsel, buf, sizeof(buf)); 1402 ev_name = buf; 1403 } 1404 1405 fprintf(fp, "%s() %s\nEvent: %s\n\n", 1406 ms->sym->name, dso__long_name(map__dso(ms->map)), ev_name); 1407 symbol__annotate_fprintf2(ms->sym, fp); 1408 1409 fclose(fp); 1410 err = 0; 1411 out_free_filename: 1412 free(filename); 1413 return err; 1414 } 1415 1416 void symbol__annotate_zero_histogram(struct symbol *sym, struct evsel *evsel) 1417 { 1418 struct annotation *notes = symbol__annotation(sym); 1419 struct sym_hist *h = annotation__histogram(notes, evsel); 1420 1421 memset(h, 0, sizeof(*notes->src->histograms) * notes->src->nr_histograms); 1422 } 1423 1424 void symbol__annotate_decay_histogram(struct symbol *sym, struct evsel *evsel) 1425 { 1426 struct annotation *notes = symbol__annotation(sym); 1427 struct sym_hist *h = annotation__histogram(notes, evsel); 1428 struct annotation_line *al; 1429 1430 h->nr_samples = 0; 1431 list_for_each_entry(al, ¬es->src->source, node) { 1432 struct sym_hist_entry *entry; 1433 1434 if (al->offset == -1) 1435 continue; 1436 1437 entry = annotated_source__hist_entry(notes->src, evsel, al->offset); 1438 if (entry == NULL) 1439 continue; 1440 1441 entry->nr_samples = entry->nr_samples * 7 / 8; 1442 h->nr_samples += entry->nr_samples; 1443 } 1444 } 1445 1446 void annotated_source__purge(struct annotated_source *as) 1447 { 1448 struct annotation_line *al, *n; 1449 1450 list_for_each_entry_safe(al, n, &as->source, node) { 1451 list_del_init(&al->node); 1452 disasm_line__free(disasm_line(al)); 1453 } 1454 as->tried_source = false; 1455 } 1456 1457 static size_t disasm_line__fprintf(struct disasm_line *dl, FILE *fp) 1458 { 1459 size_t printed; 1460 1461 if (dl->al.offset == -1) 1462 return fprintf(fp, "%s\n", dl->al.line); 1463 1464 printed = fprintf(fp, "%#" PRIx64 " %s", dl->al.offset, dl->ins.name); 1465 1466 if (dl->ops.raw[0] != '\0') { 1467 printed += fprintf(fp, "%.*s %s\n", 6 - (int)printed, " ", 1468 dl->ops.raw); 1469 } 1470 1471 return printed + fprintf(fp, "\n"); 1472 } 1473 1474 size_t disasm__fprintf(struct list_head *head, FILE *fp) 1475 { 1476 struct disasm_line *pos; 1477 size_t printed = 0; 1478 1479 list_for_each_entry(pos, head, al.node) 1480 printed += disasm_line__fprintf(pos, fp); 1481 1482 return printed; 1483 } 1484 1485 bool disasm_line__is_valid_local_jump(struct disasm_line *dl, struct symbol *sym) 1486 { 1487 if (!dl || !dl->ins.ops || !ins__is_jump(&dl->ins) || 1488 !disasm_line__has_local_offset(dl) || dl->ops.target.offset < 0 || 1489 dl->ops.target.offset >= (s64)symbol__size(sym)) 1490 return false; 1491 1492 return true; 1493 } 1494 1495 static void 1496 annotation__mark_jump_targets(struct annotation *notes, struct symbol *sym) 1497 { 1498 struct annotation_line *al; 1499 1500 /* PLT symbols contain external offsets */ 1501 if (strstr(sym->name, "@plt")) 1502 return; 1503 1504 list_for_each_entry(al, ¬es->src->source, node) { 1505 struct disasm_line *dl; 1506 struct annotation_line *target; 1507 1508 dl = disasm_line(al); 1509 1510 if (!disasm_line__is_valid_local_jump(dl, sym)) 1511 continue; 1512 1513 target = annotated_source__get_line(notes->src, 1514 dl->ops.target.offset); 1515 /* 1516 * FIXME: Oops, no jump target? Buggy disassembler? Or do we 1517 * have to adjust to the previous offset? 1518 */ 1519 if (target == NULL) 1520 continue; 1521 1522 if (++target->jump_sources > notes->src->max_jump_sources) 1523 notes->src->max_jump_sources = target->jump_sources; 1524 } 1525 } 1526 1527 static void annotation__set_index(struct annotation *notes) 1528 { 1529 struct annotation_line *al; 1530 struct annotated_source *src = notes->src; 1531 1532 src->widths.max_line_len = 0; 1533 src->nr_entries = 0; 1534 src->nr_asm_entries = 0; 1535 1536 list_for_each_entry(al, &src->source, node) { 1537 size_t line_len = strlen(al->line); 1538 1539 if (src->widths.max_line_len < line_len) 1540 src->widths.max_line_len = line_len; 1541 al->idx = src->nr_entries++; 1542 if (al->offset != -1) 1543 al->idx_asm = src->nr_asm_entries++; 1544 else 1545 al->idx_asm = -1; 1546 } 1547 } 1548 1549 static inline int width_jumps(int n) 1550 { 1551 if (n >= 100) 1552 return 5; 1553 if (n / 10) 1554 return 2; 1555 return 1; 1556 } 1557 1558 static int annotation__max_ins_name(struct annotation *notes) 1559 { 1560 int max_name = 0, len; 1561 struct annotation_line *al; 1562 1563 list_for_each_entry(al, ¬es->src->source, node) { 1564 if (al->offset == -1) 1565 continue; 1566 1567 len = strlen(disasm_line(al)->ins.name); 1568 if (max_name < len) 1569 max_name = len; 1570 } 1571 1572 return max_name; 1573 } 1574 1575 static void 1576 annotation__init_column_widths(struct annotation *notes, struct symbol *sym) 1577 { 1578 notes->src->widths.addr = notes->src->widths.target = 1579 notes->src->widths.min_addr = hex_width(symbol__size(sym)); 1580 notes->src->widths.max_addr = hex_width(sym->end); 1581 notes->src->widths.jumps = width_jumps(notes->src->max_jump_sources); 1582 notes->src->widths.max_ins_name = annotation__max_ins_name(notes); 1583 } 1584 1585 void annotation__update_column_widths(struct annotation *notes) 1586 { 1587 if (annotate_opts.use_offset) 1588 notes->src->widths.target = notes->src->widths.min_addr; 1589 else if (annotate_opts.full_addr) 1590 notes->src->widths.target = BITS_PER_LONG / 4; 1591 else 1592 notes->src->widths.target = notes->src->widths.max_addr; 1593 1594 notes->src->widths.addr = notes->src->widths.target; 1595 1596 if (annotate_opts.show_nr_jumps) 1597 notes->src->widths.addr += notes->src->widths.jumps + 1; 1598 } 1599 1600 void annotation__toggle_full_addr(struct annotation *notes, struct map_symbol *ms) 1601 { 1602 annotate_opts.full_addr = !annotate_opts.full_addr; 1603 1604 if (annotate_opts.full_addr) 1605 notes->src->start = map__objdump_2mem(ms->map, ms->sym->start); 1606 else 1607 notes->src->start = map__rip_2objdump(ms->map, ms->sym->start); 1608 1609 annotation__update_column_widths(notes); 1610 } 1611 1612 static void annotation__calc_lines(struct annotation *notes, struct map_symbol *ms, 1613 struct rb_root *root) 1614 { 1615 struct annotation_line *al; 1616 struct rb_root tmp_root = RB_ROOT; 1617 1618 list_for_each_entry(al, ¬es->src->source, node) { 1619 double percent_max = 0.0; 1620 u64 addr; 1621 int i; 1622 1623 for (i = 0; i < al->data_nr; i++) { 1624 double percent; 1625 1626 percent = annotation_data__percent(&al->data[i], 1627 annotate_opts.percent_type); 1628 1629 if (percent > percent_max) 1630 percent_max = percent; 1631 } 1632 1633 if (percent_max <= 0.5) 1634 continue; 1635 1636 addr = map__rip_2objdump(ms->map, ms->sym->start); 1637 al->path = get_srcline(map__dso(ms->map), addr + al->offset, NULL, 1638 false, true, ms->sym->start + al->offset); 1639 insert_source_line(&tmp_root, al); 1640 } 1641 1642 resort_source_line(root, &tmp_root); 1643 } 1644 1645 static void symbol__calc_lines(struct map_symbol *ms, struct rb_root *root) 1646 { 1647 struct annotation *notes = symbol__annotation(ms->sym); 1648 1649 annotation__calc_lines(notes, ms, root); 1650 } 1651 1652 int hist_entry__tty_annotate2(struct hist_entry *he, struct evsel *evsel) 1653 { 1654 struct map_symbol *ms = &he->ms; 1655 struct dso *dso = map__dso(ms->map); 1656 struct symbol *sym = ms->sym; 1657 struct rb_root source_line = RB_ROOT; 1658 struct hists *hists = evsel__hists(evsel); 1659 char buf[1024]; 1660 int err; 1661 1662 err = symbol__annotate2(ms, evsel, NULL); 1663 if (err) { 1664 char msg[BUFSIZ]; 1665 1666 dso__set_annotate_warned(dso); 1667 symbol__strerror_disassemble(ms, err, msg, sizeof(msg)); 1668 ui__error("Couldn't annotate %s:\n%s", sym->name, msg); 1669 return -1; 1670 } 1671 1672 if (annotate_opts.print_lines) { 1673 srcline_full_filename = annotate_opts.full_path; 1674 symbol__calc_lines(ms, &source_line); 1675 print_summary(&source_line, dso__long_name(dso)); 1676 } 1677 1678 hists__scnprintf_title(hists, buf, sizeof(buf)); 1679 fprintf(stdout, "%s, [percent: %s]\n%s() %s\n", 1680 buf, percent_type_str(annotate_opts.percent_type), sym->name, dso__long_name(dso)); 1681 symbol__annotate_fprintf2(sym, stdout); 1682 1683 annotated_source__purge(symbol__annotation(sym)->src); 1684 1685 return 0; 1686 } 1687 1688 int hist_entry__tty_annotate(struct hist_entry *he, struct evsel *evsel) 1689 { 1690 struct map_symbol *ms = &he->ms; 1691 struct dso *dso = map__dso(ms->map); 1692 struct symbol *sym = ms->sym; 1693 struct rb_root source_line = RB_ROOT; 1694 int err; 1695 1696 err = symbol__annotate(ms, evsel, NULL); 1697 if (err) { 1698 char msg[BUFSIZ]; 1699 1700 dso__set_annotate_warned(dso); 1701 symbol__strerror_disassemble(ms, err, msg, sizeof(msg)); 1702 ui__error("Couldn't annotate %s:\n%s", sym->name, msg); 1703 return -1; 1704 } 1705 1706 symbol__calc_percent(sym, evsel); 1707 1708 if (annotate_opts.print_lines) { 1709 srcline_full_filename = annotate_opts.full_path; 1710 symbol__calc_lines(ms, &source_line); 1711 print_summary(&source_line, dso__long_name(dso)); 1712 } 1713 1714 hist_entry__annotate_printf(he, evsel); 1715 1716 annotated_source__purge(symbol__annotation(sym)->src); 1717 1718 return 0; 1719 } 1720 1721 bool ui__has_annotation(void) 1722 { 1723 return use_browser == 1 && perf_hpp_list.sym; 1724 } 1725 1726 1727 static double annotation_line__max_percent(struct annotation_line *al, 1728 unsigned int percent_type) 1729 { 1730 double percent_max = 0.0; 1731 int i; 1732 1733 for (i = 0; i < al->data_nr; i++) { 1734 double percent; 1735 1736 percent = annotation_data__percent(&al->data[i], 1737 percent_type); 1738 1739 if (percent > percent_max) 1740 percent_max = percent; 1741 } 1742 1743 return percent_max; 1744 } 1745 1746 static void disasm_line__write(struct disasm_line *dl, struct annotation *notes, 1747 void *obj, char *bf, size_t size, 1748 void (*obj__printf)(void *obj, const char *fmt, ...), 1749 void (*obj__write_graph)(void *obj, int graph)) 1750 { 1751 if (dl->ins.ops && dl->ins.ops->scnprintf) { 1752 if (ins__is_jump(&dl->ins)) { 1753 bool fwd; 1754 1755 if (dl->ops.target.outside) 1756 goto call_like; 1757 fwd = dl->ops.target.offset > dl->al.offset; 1758 obj__write_graph(obj, fwd ? DARROW_CHAR : UARROW_CHAR); 1759 obj__printf(obj, " "); 1760 } else if (ins__is_call(&dl->ins)) { 1761 call_like: 1762 obj__write_graph(obj, RARROW_CHAR); 1763 obj__printf(obj, " "); 1764 } else if (ins__is_ret(&dl->ins)) { 1765 obj__write_graph(obj, LARROW_CHAR); 1766 obj__printf(obj, " "); 1767 } else { 1768 obj__printf(obj, " "); 1769 } 1770 } else { 1771 obj__printf(obj, " "); 1772 } 1773 1774 disasm_line__scnprintf(dl, bf, size, !annotate_opts.use_offset, 1775 notes->src->widths.max_ins_name); 1776 } 1777 1778 static void ipc_coverage_string(char *bf, int size, struct annotation *notes) 1779 { 1780 double ipc = 0.0, coverage = 0.0; 1781 struct annotated_branch *branch = annotation__get_branch(notes); 1782 1783 if (branch && branch->hit_cycles) 1784 ipc = branch->hit_insn / ((double)branch->hit_cycles); 1785 1786 if (branch && branch->total_insn) { 1787 coverage = branch->cover_insn * 100.0 / 1788 ((double)branch->total_insn); 1789 } 1790 1791 scnprintf(bf, size, "(Average IPC: %.2f, IPC Coverage: %.1f%%)", 1792 ipc, coverage); 1793 } 1794 1795 int annotation_br_cntr_abbr_list(char **str, struct evsel *evsel, bool header) 1796 { 1797 struct evsel *pos; 1798 struct strbuf sb; 1799 1800 if (evsel->evlist->nr_br_cntr <= 0) 1801 return -ENOTSUP; 1802 1803 strbuf_init(&sb, /*hint=*/ 0); 1804 1805 if (header && strbuf_addf(&sb, "# Branch counter abbr list:\n")) 1806 goto err; 1807 1808 evlist__for_each_entry(evsel->evlist, pos) { 1809 if (!(pos->core.attr.branch_sample_type & PERF_SAMPLE_BRANCH_COUNTERS)) 1810 continue; 1811 if (header && strbuf_addf(&sb, "#")) 1812 goto err; 1813 1814 if (strbuf_addf(&sb, " %s = %s\n", pos->name, pos->abbr_name)) 1815 goto err; 1816 } 1817 1818 if (header && strbuf_addf(&sb, "#")) 1819 goto err; 1820 if (strbuf_addf(&sb, " '-' No event occurs\n")) 1821 goto err; 1822 1823 if (header && strbuf_addf(&sb, "#")) 1824 goto err; 1825 if (strbuf_addf(&sb, " '+' Event occurrences may be lost due to branch counter saturated\n")) 1826 goto err; 1827 1828 *str = strbuf_detach(&sb, NULL); 1829 1830 return 0; 1831 err: 1832 strbuf_release(&sb); 1833 return -ENOMEM; 1834 } 1835 1836 /* Assume the branch counter saturated at 3 */ 1837 #define ANNOTATION_BR_CNTR_SATURATION 3 1838 1839 int annotation_br_cntr_entry(char **str, int br_cntr_nr, 1840 u64 *br_cntr, int num_aggr, 1841 struct evsel *evsel) 1842 { 1843 struct evsel *pos = evsel ? evlist__first(evsel->evlist) : NULL; 1844 bool saturated = false; 1845 int i, j, avg, used; 1846 struct strbuf sb; 1847 1848 strbuf_init(&sb, /*hint=*/ 0); 1849 for (i = 0; i < br_cntr_nr; i++) { 1850 used = 0; 1851 avg = ceil((double)(br_cntr[i] & ~ANNOTATION__BR_CNTR_SATURATED_FLAG) / 1852 (double)num_aggr); 1853 1854 /* 1855 * A histogram with the abbr name is displayed by default. 1856 * With -v, the exact number of branch counter is displayed. 1857 */ 1858 if (verbose) { 1859 evlist__for_each_entry_from(evsel->evlist, pos) { 1860 if ((pos->core.attr.branch_sample_type & PERF_SAMPLE_BRANCH_COUNTERS) && 1861 (pos->br_cntr_idx == i)) 1862 break; 1863 } 1864 if (strbuf_addstr(&sb, pos->abbr_name)) 1865 goto err; 1866 1867 if (!br_cntr[i]) { 1868 if (strbuf_addstr(&sb, "=-")) 1869 goto err; 1870 } else { 1871 if (strbuf_addf(&sb, "=%d", avg)) 1872 goto err; 1873 } 1874 if (br_cntr[i] & ANNOTATION__BR_CNTR_SATURATED_FLAG) { 1875 if (strbuf_addch(&sb, '+')) 1876 goto err; 1877 } else { 1878 if (strbuf_addch(&sb, ' ')) 1879 goto err; 1880 } 1881 1882 if ((i < br_cntr_nr - 1) && strbuf_addch(&sb, ',')) 1883 goto err; 1884 continue; 1885 } 1886 1887 if (strbuf_addch(&sb, '|')) 1888 goto err; 1889 1890 if (!br_cntr[i]) { 1891 if (strbuf_addch(&sb, '-')) 1892 goto err; 1893 used++; 1894 } else { 1895 evlist__for_each_entry_from(evsel->evlist, pos) { 1896 if ((pos->core.attr.branch_sample_type & PERF_SAMPLE_BRANCH_COUNTERS) && 1897 (pos->br_cntr_idx == i)) 1898 break; 1899 } 1900 if (br_cntr[i] & ANNOTATION__BR_CNTR_SATURATED_FLAG) 1901 saturated = true; 1902 1903 for (j = 0; j < avg; j++, used++) { 1904 /* Print + if the number of logged events > 3 */ 1905 if (j >= ANNOTATION_BR_CNTR_SATURATION) { 1906 saturated = true; 1907 break; 1908 } 1909 if (strbuf_addstr(&sb, pos->abbr_name)) 1910 goto err; 1911 } 1912 1913 if (saturated) { 1914 if (strbuf_addch(&sb, '+')) 1915 goto err; 1916 used++; 1917 } 1918 pos = list_next_entry(pos, core.node); 1919 } 1920 1921 for (j = used; j < ANNOTATION_BR_CNTR_SATURATION + 1; j++) { 1922 if (strbuf_addch(&sb, ' ')) 1923 goto err; 1924 } 1925 } 1926 1927 if (!verbose && strbuf_addch(&sb, br_cntr_nr ? '|' : ' ')) 1928 goto err; 1929 1930 *str = strbuf_detach(&sb, NULL); 1931 1932 return 0; 1933 err: 1934 strbuf_release(&sb); 1935 return -ENOMEM; 1936 } 1937 1938 static void __annotation_line__write(struct annotation_line *al, struct annotation *notes, 1939 bool first_line, bool current_entry, bool change_color, int width, 1940 void *obj, unsigned int percent_type, 1941 int (*obj__set_color)(void *obj, int color), 1942 void (*obj__set_percent_color)(void *obj, double percent, bool current), 1943 int (*obj__set_jumps_percent_color)(void *obj, int nr, bool current), 1944 void (*obj__printf)(void *obj, const char *fmt, ...), 1945 void (*obj__write_graph)(void *obj, int graph)) 1946 1947 { 1948 double percent_max = annotation_line__max_percent(al, percent_type); 1949 int pcnt_width = annotation__pcnt_width(notes), 1950 cycles_width = annotation__cycles_width(notes); 1951 bool show_title = false; 1952 char bf[256]; 1953 int printed; 1954 1955 if (first_line && (al->offset == -1 || percent_max == 0.0)) { 1956 if (notes->branch && al->cycles) { 1957 if (al->cycles->ipc == 0.0 && al->cycles->avg == 0) 1958 show_title = true; 1959 } else 1960 show_title = true; 1961 } 1962 1963 if (al->offset != -1 && percent_max != 0.0) { 1964 int i; 1965 1966 for (i = 0; i < al->data_nr; i++) { 1967 double percent; 1968 1969 percent = annotation_data__percent(&al->data[i], percent_type); 1970 1971 obj__set_percent_color(obj, percent, current_entry); 1972 if (symbol_conf.show_total_period) { 1973 obj__printf(obj, "%11" PRIu64 " ", al->data[i].he.period); 1974 } else if (symbol_conf.show_nr_samples) { 1975 obj__printf(obj, "%7" PRIu64 " ", 1976 al->data[i].he.nr_samples); 1977 } else { 1978 obj__printf(obj, "%7.2f ", percent); 1979 } 1980 } 1981 } else { 1982 obj__set_percent_color(obj, 0, current_entry); 1983 1984 if (!show_title) 1985 obj__printf(obj, "%-*s", pcnt_width, " "); 1986 else { 1987 obj__printf(obj, "%-*s", pcnt_width, 1988 symbol_conf.show_total_period ? "Period" : 1989 symbol_conf.show_nr_samples ? "Samples" : "Percent"); 1990 } 1991 } 1992 1993 if (notes->branch) { 1994 if (al->cycles && al->cycles->ipc) 1995 obj__printf(obj, "%*.2f ", ANNOTATION__IPC_WIDTH - 1, al->cycles->ipc); 1996 else if (!show_title) 1997 obj__printf(obj, "%*s", ANNOTATION__IPC_WIDTH, " "); 1998 else 1999 obj__printf(obj, "%*s ", ANNOTATION__IPC_WIDTH - 1, "IPC"); 2000 2001 if (!annotate_opts.show_minmax_cycle) { 2002 if (al->cycles && al->cycles->avg) 2003 obj__printf(obj, "%*" PRIu64 " ", 2004 ANNOTATION__CYCLES_WIDTH - 1, al->cycles->avg); 2005 else if (!show_title) 2006 obj__printf(obj, "%*s", 2007 ANNOTATION__CYCLES_WIDTH, " "); 2008 else 2009 obj__printf(obj, "%*s ", 2010 ANNOTATION__CYCLES_WIDTH - 1, 2011 "Cycle"); 2012 } else { 2013 if (al->cycles) { 2014 char str[32]; 2015 2016 scnprintf(str, sizeof(str), 2017 "%" PRIu64 "(%" PRIu64 "/%" PRIu64 ")", 2018 al->cycles->avg, al->cycles->min, 2019 al->cycles->max); 2020 2021 obj__printf(obj, "%*s ", 2022 ANNOTATION__MINMAX_CYCLES_WIDTH - 1, 2023 str); 2024 } else if (!show_title) 2025 obj__printf(obj, "%*s", 2026 ANNOTATION__MINMAX_CYCLES_WIDTH, 2027 " "); 2028 else 2029 obj__printf(obj, "%*s ", 2030 ANNOTATION__MINMAX_CYCLES_WIDTH - 1, 2031 "Cycle(min/max)"); 2032 } 2033 2034 if (annotate_opts.show_br_cntr) { 2035 if (show_title) { 2036 obj__printf(obj, "%*s ", 2037 ANNOTATION__BR_CNTR_WIDTH, 2038 "Branch Counter"); 2039 } else { 2040 char *buf; 2041 2042 if (!annotation_br_cntr_entry(&buf, al->br_cntr_nr, al->br_cntr, 2043 al->num_aggr, al->evsel)) { 2044 obj__printf(obj, "%*s ", ANNOTATION__BR_CNTR_WIDTH, buf); 2045 free(buf); 2046 } 2047 } 2048 } 2049 2050 if (show_title && !*al->line) { 2051 ipc_coverage_string(bf, sizeof(bf), notes); 2052 obj__printf(obj, "%*s", ANNOTATION__AVG_IPC_WIDTH, bf); 2053 } 2054 } 2055 2056 obj__printf(obj, " "); 2057 2058 if (!*al->line) 2059 obj__printf(obj, "%-*s", width - pcnt_width - cycles_width, " "); 2060 else if (al->offset == -1) { 2061 if (al->line_nr && annotate_opts.show_linenr) 2062 printed = scnprintf(bf, sizeof(bf), "%-*d ", 2063 notes->src->widths.addr + 1, al->line_nr); 2064 else 2065 printed = scnprintf(bf, sizeof(bf), "%-*s ", 2066 notes->src->widths.addr, " "); 2067 obj__printf(obj, bf); 2068 obj__printf(obj, "%-*s", width - printed - pcnt_width - cycles_width + 1, al->line); 2069 } else { 2070 u64 addr = al->offset; 2071 int color = -1; 2072 2073 if (!annotate_opts.use_offset) 2074 addr += notes->src->start; 2075 2076 if (!annotate_opts.use_offset) { 2077 printed = scnprintf(bf, sizeof(bf), "%" PRIx64 ": ", addr); 2078 } else { 2079 if (al->jump_sources && 2080 annotate_opts.offset_level >= ANNOTATION__OFFSET_JUMP_TARGETS) { 2081 if (annotate_opts.show_nr_jumps) { 2082 int prev; 2083 printed = scnprintf(bf, sizeof(bf), "%*d ", 2084 notes->src->widths.jumps, 2085 al->jump_sources); 2086 prev = obj__set_jumps_percent_color(obj, al->jump_sources, 2087 current_entry); 2088 obj__printf(obj, bf); 2089 obj__set_color(obj, prev); 2090 } 2091 print_addr: 2092 printed = scnprintf(bf, sizeof(bf), "%*" PRIx64 ": ", 2093 notes->src->widths.target, addr); 2094 } else if (ins__is_call(&disasm_line(al)->ins) && 2095 annotate_opts.offset_level >= ANNOTATION__OFFSET_CALL) { 2096 goto print_addr; 2097 } else if (annotate_opts.offset_level == ANNOTATION__MAX_OFFSET_LEVEL) { 2098 goto print_addr; 2099 } else { 2100 printed = scnprintf(bf, sizeof(bf), "%-*s ", 2101 notes->src->widths.addr, " "); 2102 } 2103 } 2104 2105 if (change_color) 2106 color = obj__set_color(obj, HE_COLORSET_ADDR); 2107 obj__printf(obj, bf); 2108 if (change_color) 2109 obj__set_color(obj, color); 2110 2111 disasm_line__write(disasm_line(al), notes, obj, bf, sizeof(bf), obj__printf, obj__write_graph); 2112 2113 obj__printf(obj, "%-*s", width - pcnt_width - cycles_width - 3 - printed, bf); 2114 } 2115 2116 } 2117 2118 void annotation_line__write(struct annotation_line *al, struct annotation *notes, 2119 struct annotation_write_ops *wops) 2120 { 2121 __annotation_line__write(al, notes, wops->first_line, wops->current_entry, 2122 wops->change_color, wops->width, wops->obj, 2123 annotate_opts.percent_type, 2124 wops->set_color, wops->set_percent_color, 2125 wops->set_jumps_percent_color, wops->printf, 2126 wops->write_graph); 2127 } 2128 2129 int symbol__annotate2(struct map_symbol *ms, struct evsel *evsel, 2130 struct arch **parch) 2131 { 2132 struct symbol *sym = ms->sym; 2133 struct annotation *notes = symbol__annotation(sym); 2134 size_t size = symbol__size(sym); 2135 int err; 2136 2137 err = symbol__annotate(ms, evsel, parch); 2138 if (err) 2139 return err; 2140 2141 symbol__calc_percent(sym, evsel); 2142 2143 annotation__set_index(notes); 2144 annotation__mark_jump_targets(notes, sym); 2145 2146 err = annotation__compute_ipc(notes, size, evsel); 2147 if (err) 2148 return err; 2149 2150 annotation__init_column_widths(notes, sym); 2151 annotation__update_column_widths(notes); 2152 sym->annotate2 = 1; 2153 2154 return 0; 2155 } 2156 2157 const char * const perf_disassembler__strs[] = { 2158 [PERF_DISASM_UNKNOWN] = "unknown", 2159 [PERF_DISASM_LLVM] = "llvm", 2160 [PERF_DISASM_CAPSTONE] = "capstone", 2161 [PERF_DISASM_OBJDUMP] = "objdump", 2162 }; 2163 2164 2165 static void annotation_options__add_disassembler(struct annotation_options *options, 2166 enum perf_disassembler dis) 2167 { 2168 for (u8 i = 0; i < ARRAY_SIZE(options->disassemblers); i++) { 2169 if (options->disassemblers[i] == dis) { 2170 /* Disassembler is already present then don't add again. */ 2171 return; 2172 } 2173 if (options->disassemblers[i] == PERF_DISASM_UNKNOWN) { 2174 /* Found a free slot. */ 2175 options->disassemblers[i] = dis; 2176 return; 2177 } 2178 } 2179 pr_err("Failed to add disassembler %d\n", dis); 2180 } 2181 2182 static int annotation_options__add_disassemblers_str(struct annotation_options *options, 2183 const char *str) 2184 { 2185 while (str && *str != '\0') { 2186 const char *comma = strchr(str, ','); 2187 int len = comma ? comma - str : (int)strlen(str); 2188 bool match = false; 2189 2190 for (u8 i = 0; i < ARRAY_SIZE(perf_disassembler__strs); i++) { 2191 const char *dis_str = perf_disassembler__strs[i]; 2192 2193 if (len == (int)strlen(dis_str) && !strncmp(str, dis_str, len)) { 2194 annotation_options__add_disassembler(options, i); 2195 match = true; 2196 break; 2197 } 2198 } 2199 if (!match) { 2200 pr_err("Invalid disassembler '%.*s'\n", len, str); 2201 return -1; 2202 } 2203 str = comma ? comma + 1 : NULL; 2204 } 2205 return 0; 2206 } 2207 2208 static int annotation__config(const char *var, const char *value, void *data) 2209 { 2210 struct annotation_options *opt = data; 2211 2212 if (!strstarts(var, "annotate.")) 2213 return 0; 2214 2215 if (!strcmp(var, "annotate.offset_level")) { 2216 perf_config_u8(&opt->offset_level, "offset_level", value); 2217 2218 if (opt->offset_level > ANNOTATION__MAX_OFFSET_LEVEL) 2219 opt->offset_level = ANNOTATION__MAX_OFFSET_LEVEL; 2220 else if (opt->offset_level < ANNOTATION__MIN_OFFSET_LEVEL) 2221 opt->offset_level = ANNOTATION__MIN_OFFSET_LEVEL; 2222 } else if (!strcmp(var, "annotate.disassemblers")) { 2223 int err = annotation_options__add_disassemblers_str(opt, value); 2224 2225 if (err) 2226 return err; 2227 } else if (!strcmp(var, "annotate.hide_src_code")) { 2228 opt->hide_src_code = perf_config_bool("hide_src_code", value); 2229 } else if (!strcmp(var, "annotate.jump_arrows")) { 2230 opt->jump_arrows = perf_config_bool("jump_arrows", value); 2231 } else if (!strcmp(var, "annotate.show_linenr")) { 2232 opt->show_linenr = perf_config_bool("show_linenr", value); 2233 } else if (!strcmp(var, "annotate.show_nr_jumps")) { 2234 opt->show_nr_jumps = perf_config_bool("show_nr_jumps", value); 2235 } else if (!strcmp(var, "annotate.show_nr_samples")) { 2236 symbol_conf.show_nr_samples = perf_config_bool("show_nr_samples", 2237 value); 2238 } else if (!strcmp(var, "annotate.show_total_period")) { 2239 symbol_conf.show_total_period = perf_config_bool("show_total_period", 2240 value); 2241 } else if (!strcmp(var, "annotate.use_offset")) { 2242 opt->use_offset = perf_config_bool("use_offset", value); 2243 } else if (!strcmp(var, "annotate.disassembler_style")) { 2244 opt->disassembler_style = strdup(value); 2245 if (!opt->disassembler_style) { 2246 pr_err("Not enough memory for annotate.disassembler_style\n"); 2247 return -1; 2248 } 2249 } else if (!strcmp(var, "annotate.objdump")) { 2250 opt->objdump_path = strdup(value); 2251 if (!opt->objdump_path) { 2252 pr_err("Not enough memory for annotate.objdump\n"); 2253 return -1; 2254 } 2255 } else if (!strcmp(var, "annotate.addr2line")) { 2256 symbol_conf.addr2line_path = strdup(value); 2257 if (!symbol_conf.addr2line_path) { 2258 pr_err("Not enough memory for annotate.addr2line\n"); 2259 return -1; 2260 } 2261 } else if (!strcmp(var, "annotate.demangle")) { 2262 symbol_conf.demangle = perf_config_bool("demangle", value); 2263 } else if (!strcmp(var, "annotate.demangle_kernel")) { 2264 symbol_conf.demangle_kernel = perf_config_bool("demangle_kernel", value); 2265 } else { 2266 pr_debug("%s variable unknown, ignoring...", var); 2267 } 2268 2269 return 0; 2270 } 2271 2272 void annotation_options__init(void) 2273 { 2274 struct annotation_options *opt = &annotate_opts; 2275 2276 memset(opt, 0, sizeof(*opt)); 2277 2278 /* Default values. */ 2279 opt->use_offset = true; 2280 opt->jump_arrows = true; 2281 opt->annotate_src = true; 2282 opt->offset_level = ANNOTATION__OFFSET_JUMP_TARGETS; 2283 opt->percent_type = PERCENT_PERIOD_LOCAL; 2284 opt->hide_src_code = true; 2285 opt->hide_src_code_on_title = true; 2286 } 2287 2288 void annotation_options__exit(void) 2289 { 2290 zfree(&annotate_opts.disassembler_style); 2291 zfree(&annotate_opts.objdump_path); 2292 } 2293 2294 static void annotation_options__default_init_disassemblers(struct annotation_options *options) 2295 { 2296 if (options->disassemblers[0] != PERF_DISASM_UNKNOWN) { 2297 /* Already initialized. */ 2298 return; 2299 } 2300 #ifdef HAVE_LIBLLVM_SUPPORT 2301 annotation_options__add_disassembler(options, PERF_DISASM_LLVM); 2302 #endif 2303 #ifdef HAVE_LIBCAPSTONE_SUPPORT 2304 annotation_options__add_disassembler(options, PERF_DISASM_CAPSTONE); 2305 #endif 2306 annotation_options__add_disassembler(options, PERF_DISASM_OBJDUMP); 2307 } 2308 2309 void annotation_config__init(void) 2310 { 2311 perf_config(annotation__config, &annotate_opts); 2312 annotation_options__default_init_disassemblers(&annotate_opts); 2313 } 2314 2315 static unsigned int parse_percent_type(char *str1, char *str2) 2316 { 2317 unsigned int type = (unsigned int) -1; 2318 2319 if (!strcmp("period", str1)) { 2320 if (!strcmp("local", str2)) 2321 type = PERCENT_PERIOD_LOCAL; 2322 else if (!strcmp("global", str2)) 2323 type = PERCENT_PERIOD_GLOBAL; 2324 } 2325 2326 if (!strcmp("hits", str1)) { 2327 if (!strcmp("local", str2)) 2328 type = PERCENT_HITS_LOCAL; 2329 else if (!strcmp("global", str2)) 2330 type = PERCENT_HITS_GLOBAL; 2331 } 2332 2333 return type; 2334 } 2335 2336 int annotate_parse_percent_type(const struct option *opt __maybe_unused, const char *_str, 2337 int unset __maybe_unused) 2338 { 2339 unsigned int type; 2340 char *str1, *str2; 2341 int err = -1; 2342 2343 str1 = strdup(_str); 2344 if (!str1) 2345 return -ENOMEM; 2346 2347 str2 = strchr(str1, '-'); 2348 if (!str2) 2349 goto out; 2350 2351 *str2++ = 0; 2352 2353 type = parse_percent_type(str1, str2); 2354 if (type == (unsigned int) -1) 2355 type = parse_percent_type(str2, str1); 2356 if (type != (unsigned int) -1) { 2357 annotate_opts.percent_type = type; 2358 err = 0; 2359 } 2360 2361 out: 2362 free(str1); 2363 return err; 2364 } 2365 2366 int annotate_check_args(void) 2367 { 2368 struct annotation_options *args = &annotate_opts; 2369 2370 if (args->prefix_strip && !args->prefix) { 2371 pr_err("--prefix-strip requires --prefix\n"); 2372 return -1; 2373 } 2374 return 0; 2375 } 2376 2377 /* 2378 * Get register number and access offset from the given instruction. 2379 * It assumes AT&T x86 asm format like OFFSET(REG). Maybe it needs 2380 * to revisit the format when it handles different architecture. 2381 * Fills @reg and @offset when return 0. 2382 */ 2383 static int extract_reg_offset(struct arch *arch, const char *str, 2384 struct annotated_op_loc *op_loc) 2385 { 2386 char *p; 2387 char *regname; 2388 2389 if (arch->objdump.register_char == 0) 2390 return -1; 2391 2392 /* 2393 * It should start from offset, but it's possible to skip 0 2394 * in the asm. So 0(%rax) should be same as (%rax). 2395 * 2396 * However, it also start with a segment select register like 2397 * %gs:0x18(%rbx). In that case it should skip the part. 2398 */ 2399 if (*str == arch->objdump.register_char) { 2400 if (arch__is(arch, "x86")) { 2401 /* FIXME: Handle other segment registers */ 2402 if (!strncmp(str, "%gs:", 4)) 2403 op_loc->segment = INSN_SEG_X86_GS; 2404 } 2405 2406 while (*str && !isdigit(*str) && 2407 *str != arch->objdump.memory_ref_char) 2408 str++; 2409 } 2410 2411 op_loc->offset = strtol(str, &p, 0); 2412 2413 p = strchr(p, arch->objdump.register_char); 2414 if (p == NULL) 2415 return -1; 2416 2417 regname = strdup(p); 2418 if (regname == NULL) 2419 return -1; 2420 2421 op_loc->reg1 = get_dwarf_regnum(regname, arch->e_machine, arch->e_flags); 2422 free(regname); 2423 2424 /* Get the second register */ 2425 if (op_loc->multi_regs) { 2426 p = strchr(p + 1, arch->objdump.register_char); 2427 if (p == NULL) 2428 return -1; 2429 2430 regname = strdup(p); 2431 if (regname == NULL) 2432 return -1; 2433 2434 op_loc->reg2 = get_dwarf_regnum(regname, arch->e_machine, arch->e_flags); 2435 free(regname); 2436 } 2437 return 0; 2438 } 2439 2440 /** 2441 * annotate_get_insn_location - Get location of instruction 2442 * @arch: the architecture info 2443 * @dl: the target instruction 2444 * @loc: a buffer to save the data 2445 * 2446 * Get detailed location info (register and offset) in the instruction. 2447 * It needs both source and target operand and whether it accesses a 2448 * memory location. The offset field is meaningful only when the 2449 * corresponding mem flag is set. The reg2 field is meaningful only 2450 * when multi_regs flag is set. 2451 * 2452 * Some examples on x86: 2453 * 2454 * mov (%rax), %rcx # src_reg1 = rax, src_mem = 1, src_offset = 0 2455 * # dst_reg1 = rcx, dst_mem = 0 2456 * 2457 * mov 0x18, %r8 # src_reg1 = -1, src_mem = 0 2458 * # dst_reg1 = r8, dst_mem = 0 2459 * 2460 * mov %rsi, 8(%rbx,%rcx,4) # src_reg1 = rsi, src_mem = 0, src_multi_regs = 0 2461 * # dst_reg1 = rbx, dst_reg2 = rcx, dst_mem = 1 2462 * # dst_multi_regs = 1, dst_offset = 8 2463 */ 2464 int annotate_get_insn_location(struct arch *arch, struct disasm_line *dl, 2465 struct annotated_insn_loc *loc) 2466 { 2467 struct ins_operands *ops; 2468 struct annotated_op_loc *op_loc; 2469 int i; 2470 2471 if (ins__is_lock(&dl->ins)) 2472 ops = dl->ops.locked.ops; 2473 else 2474 ops = &dl->ops; 2475 2476 if (ops == NULL) 2477 return -1; 2478 2479 memset(loc, 0, sizeof(*loc)); 2480 2481 for_each_insn_op_loc(loc, i, op_loc) { 2482 const char *insn_str = ops->source.raw; 2483 bool multi_regs = ops->source.multi_regs; 2484 bool mem_ref = ops->source.mem_ref; 2485 2486 if (i == INSN_OP_TARGET) { 2487 insn_str = ops->target.raw; 2488 multi_regs = ops->target.multi_regs; 2489 mem_ref = ops->target.mem_ref; 2490 } 2491 2492 /* Invalidate the register by default */ 2493 op_loc->reg1 = -1; 2494 op_loc->reg2 = -1; 2495 2496 if (insn_str == NULL) { 2497 if (!arch__is(arch, "powerpc")) 2498 continue; 2499 } 2500 2501 /* 2502 * For powerpc, call get_powerpc_regs function which extracts the 2503 * required fields for op_loc, ie reg1, reg2, offset from the 2504 * raw instruction. 2505 */ 2506 if (arch__is(arch, "powerpc")) { 2507 op_loc->mem_ref = mem_ref; 2508 op_loc->multi_regs = multi_regs; 2509 get_powerpc_regs(dl->raw.raw_insn, !i, op_loc); 2510 } else if (strchr(insn_str, arch->objdump.memory_ref_char)) { 2511 op_loc->mem_ref = true; 2512 op_loc->multi_regs = multi_regs; 2513 extract_reg_offset(arch, insn_str, op_loc); 2514 } else { 2515 char *s, *p = NULL; 2516 2517 if (arch__is(arch, "x86")) { 2518 /* FIXME: Handle other segment registers */ 2519 if (!strncmp(insn_str, "%gs:", 4)) { 2520 op_loc->segment = INSN_SEG_X86_GS; 2521 op_loc->offset = strtol(insn_str + 4, 2522 &p, 0); 2523 if (p && p != insn_str + 4) 2524 op_loc->imm = true; 2525 continue; 2526 } 2527 } 2528 2529 s = strdup(insn_str); 2530 if (s == NULL) 2531 return -1; 2532 2533 if (*s == arch->objdump.register_char) 2534 op_loc->reg1 = get_dwarf_regnum(s, arch->e_machine, arch->e_flags); 2535 else if (*s == arch->objdump.imm_char) { 2536 op_loc->offset = strtol(s + 1, &p, 0); 2537 if (p && p != s + 1) 2538 op_loc->imm = true; 2539 } 2540 free(s); 2541 } 2542 } 2543 2544 return 0; 2545 } 2546 2547 static struct disasm_line *find_disasm_line(struct symbol *sym, u64 ip, 2548 bool allow_update) 2549 { 2550 struct disasm_line *dl; 2551 struct annotation *notes; 2552 2553 notes = symbol__annotation(sym); 2554 2555 list_for_each_entry(dl, ¬es->src->source, al.node) { 2556 if (dl->al.offset == -1) 2557 continue; 2558 2559 if (sym->start + dl->al.offset == ip) { 2560 /* 2561 * llvm-objdump places "lock" in a separate line and 2562 * in that case, we want to get the next line. 2563 */ 2564 if (ins__is_lock(&dl->ins) && 2565 *dl->ops.raw == '\0' && allow_update) { 2566 ip++; 2567 continue; 2568 } 2569 return dl; 2570 } 2571 } 2572 return NULL; 2573 } 2574 2575 static struct annotated_item_stat *annotate_data_stat(struct list_head *head, 2576 const char *name) 2577 { 2578 struct annotated_item_stat *istat; 2579 2580 list_for_each_entry(istat, head, list) { 2581 if (!strcmp(istat->name, name)) 2582 return istat; 2583 } 2584 2585 istat = zalloc(sizeof(*istat)); 2586 if (istat == NULL) 2587 return NULL; 2588 2589 istat->name = strdup(name); 2590 if ((istat->name == NULL) || (!strlen(istat->name))) { 2591 free(istat); 2592 return NULL; 2593 } 2594 2595 list_add_tail(&istat->list, head); 2596 return istat; 2597 } 2598 2599 static bool is_stack_operation(struct arch *arch, struct disasm_line *dl) 2600 { 2601 if (arch__is(arch, "x86")) { 2602 if (!strncmp(dl->ins.name, "push", 4) || 2603 !strncmp(dl->ins.name, "pop", 3) || 2604 !strncmp(dl->ins.name, "call", 4) || 2605 !strncmp(dl->ins.name, "ret", 3)) 2606 return true; 2607 } 2608 2609 return false; 2610 } 2611 2612 static bool is_stack_canary(struct arch *arch, struct annotated_op_loc *loc) 2613 { 2614 /* On x86_64, %gs:40 is used for stack canary */ 2615 if (arch__is(arch, "x86")) { 2616 if (loc->segment == INSN_SEG_X86_GS && loc->imm && 2617 loc->offset == 40) 2618 return true; 2619 } 2620 2621 return false; 2622 } 2623 2624 static struct disasm_line * 2625 annotation__prev_asm_line(struct annotation *notes, struct disasm_line *curr) 2626 { 2627 struct list_head *sources = ¬es->src->source; 2628 struct disasm_line *prev; 2629 2630 if (curr == list_first_entry(sources, struct disasm_line, al.node)) 2631 return NULL; 2632 2633 prev = list_prev_entry(curr, al.node); 2634 while (prev->al.offset == -1 && 2635 prev != list_first_entry(sources, struct disasm_line, al.node)) 2636 prev = list_prev_entry(prev, al.node); 2637 2638 if (prev->al.offset == -1) 2639 return NULL; 2640 2641 return prev; 2642 } 2643 2644 static struct disasm_line * 2645 annotation__next_asm_line(struct annotation *notes, struct disasm_line *curr) 2646 { 2647 struct list_head *sources = ¬es->src->source; 2648 struct disasm_line *next; 2649 2650 if (curr == list_last_entry(sources, struct disasm_line, al.node)) 2651 return NULL; 2652 2653 next = list_next_entry(curr, al.node); 2654 while (next->al.offset == -1 && 2655 next != list_last_entry(sources, struct disasm_line, al.node)) 2656 next = list_next_entry(next, al.node); 2657 2658 if (next->al.offset == -1) 2659 return NULL; 2660 2661 return next; 2662 } 2663 2664 u64 annotate_calc_pcrel(struct map_symbol *ms, u64 ip, int offset, 2665 struct disasm_line *dl) 2666 { 2667 struct annotation *notes; 2668 struct disasm_line *next; 2669 u64 addr; 2670 2671 notes = symbol__annotation(ms->sym); 2672 /* 2673 * PC-relative addressing starts from the next instruction address 2674 * But the IP is for the current instruction. Since disasm_line 2675 * doesn't have the instruction size, calculate it using the next 2676 * disasm_line. If it's the last one, we can use symbol's end 2677 * address directly. 2678 */ 2679 next = annotation__next_asm_line(notes, dl); 2680 if (next == NULL) 2681 addr = ms->sym->end + offset; 2682 else 2683 addr = ip + (next->al.offset - dl->al.offset) + offset; 2684 2685 return map__rip_2objdump(ms->map, addr); 2686 } 2687 2688 static struct debuginfo_cache { 2689 struct dso *dso; 2690 struct debuginfo *dbg; 2691 } di_cache; 2692 2693 void debuginfo_cache__delete(void) 2694 { 2695 dso__put(di_cache.dso); 2696 di_cache.dso = NULL; 2697 2698 debuginfo__delete(di_cache.dbg); 2699 di_cache.dbg = NULL; 2700 } 2701 2702 static struct annotated_data_type * 2703 __hist_entry__get_data_type(struct hist_entry *he, struct arch *arch, 2704 struct debuginfo *dbg, struct disasm_line *dl, 2705 int *type_offset) 2706 { 2707 struct map_symbol *ms = &he->ms; 2708 struct annotated_insn_loc loc; 2709 struct annotated_op_loc *op_loc; 2710 struct annotated_data_type *mem_type; 2711 struct annotated_item_stat *istat; 2712 int i; 2713 2714 istat = annotate_data_stat(&ann_insn_stat, dl->ins.name); 2715 if (istat == NULL) { 2716 ann_data_stat.no_insn++; 2717 return NO_TYPE; 2718 } 2719 2720 if (annotate_get_insn_location(arch, dl, &loc) < 0) { 2721 ann_data_stat.no_insn_ops++; 2722 istat->bad++; 2723 return NO_TYPE; 2724 } 2725 2726 if (is_stack_operation(arch, dl)) { 2727 istat->good++; 2728 *type_offset = 0; 2729 return &stackop_type; 2730 } 2731 2732 for_each_insn_op_loc(&loc, i, op_loc) { 2733 struct data_loc_info dloc = { 2734 .arch = arch, 2735 .thread = he->thread, 2736 .ms = ms, 2737 .ip = ms->sym->start + dl->al.offset, 2738 .cpumode = he->cpumode, 2739 .op = op_loc, 2740 .di = dbg, 2741 }; 2742 2743 if (!op_loc->mem_ref && op_loc->segment == INSN_SEG_NONE) 2744 continue; 2745 2746 /* PC-relative addressing */ 2747 if (op_loc->reg1 == DWARF_REG_PC) { 2748 dloc.var_addr = annotate_calc_pcrel(ms, dloc.ip, 2749 op_loc->offset, dl); 2750 } 2751 2752 /* This CPU access in kernel - pretend PC-relative addressing */ 2753 if (dso__kernel(map__dso(ms->map)) && arch__is(arch, "x86") && 2754 op_loc->segment == INSN_SEG_X86_GS && op_loc->imm) { 2755 dloc.var_addr = op_loc->offset; 2756 op_loc->reg1 = DWARF_REG_PC; 2757 } 2758 2759 mem_type = find_data_type(&dloc); 2760 2761 if (mem_type == NULL && is_stack_canary(arch, op_loc)) { 2762 istat->good++; 2763 *type_offset = 0; 2764 return &canary_type; 2765 } 2766 2767 if (mem_type) 2768 istat->good++; 2769 else 2770 istat->bad++; 2771 2772 if (symbol_conf.annotate_data_sample) { 2773 struct evsel *evsel = hists_to_evsel(he->hists); 2774 2775 annotated_data_type__update_samples(mem_type, evsel, 2776 dloc.type_offset, 2777 he->stat.nr_events, 2778 he->stat.period); 2779 } 2780 *type_offset = dloc.type_offset; 2781 return mem_type ?: NO_TYPE; 2782 } 2783 2784 /* retry with a fused instruction */ 2785 return NULL; 2786 } 2787 2788 /** 2789 * hist_entry__get_data_type - find data type for given hist entry 2790 * @he: hist entry 2791 * 2792 * This function first annotates the instruction at @he->ip and extracts 2793 * register and offset info from it. Then it searches the DWARF debug 2794 * info to get a variable and type information using the address, register, 2795 * and offset. 2796 */ 2797 struct annotated_data_type *hist_entry__get_data_type(struct hist_entry *he) 2798 { 2799 struct map_symbol *ms = &he->ms; 2800 struct evsel *evsel = hists_to_evsel(he->hists); 2801 struct arch *arch; 2802 struct disasm_line *dl; 2803 struct annotated_data_type *mem_type; 2804 struct annotated_item_stat *istat; 2805 u64 ip = he->ip; 2806 2807 ann_data_stat.total++; 2808 2809 if (ms->map == NULL || ms->sym == NULL) { 2810 ann_data_stat.no_sym++; 2811 return NULL; 2812 } 2813 2814 if (!symbol_conf.init_annotation) { 2815 ann_data_stat.no_sym++; 2816 return NULL; 2817 } 2818 2819 /* 2820 * di_cache holds a pair of values, but code below assumes 2821 * di_cache.dso can be compared/updated and di_cache.dbg can be 2822 * read/updated independently from each other. That assumption only 2823 * holds in single threaded code. 2824 */ 2825 assert(perf_singlethreaded); 2826 2827 if (map__dso(ms->map) != di_cache.dso) { 2828 dso__put(di_cache.dso); 2829 di_cache.dso = dso__get(map__dso(ms->map)); 2830 2831 debuginfo__delete(di_cache.dbg); 2832 di_cache.dbg = debuginfo__new(dso__long_name(di_cache.dso)); 2833 } 2834 2835 if (di_cache.dbg == NULL) { 2836 ann_data_stat.no_dbginfo++; 2837 return NULL; 2838 } 2839 2840 /* Make sure it has the disasm of the function */ 2841 if (symbol__annotate(ms, evsel, &arch) < 0) { 2842 ann_data_stat.no_insn++; 2843 return NULL; 2844 } 2845 2846 /* 2847 * Get a disasm to extract the location from the insn. 2848 * This is too slow... 2849 */ 2850 dl = find_disasm_line(ms->sym, ip, /*allow_update=*/true); 2851 if (dl == NULL) { 2852 ann_data_stat.no_insn++; 2853 return NULL; 2854 } 2855 2856 retry: 2857 mem_type = __hist_entry__get_data_type(he, arch, di_cache.dbg, dl, 2858 &he->mem_type_off); 2859 if (mem_type) 2860 return mem_type == NO_TYPE ? NULL : mem_type; 2861 2862 /* 2863 * Some instructions can be fused and the actual memory access came 2864 * from the previous instruction. 2865 */ 2866 if (dl->al.offset > 0) { 2867 struct annotation *notes; 2868 struct disasm_line *prev_dl; 2869 2870 notes = symbol__annotation(ms->sym); 2871 prev_dl = annotation__prev_asm_line(notes, dl); 2872 2873 if (prev_dl && ins__is_fused(arch, prev_dl->ins.name, dl->ins.name)) { 2874 dl = prev_dl; 2875 goto retry; 2876 } 2877 } 2878 2879 ann_data_stat.no_mem_ops++; 2880 istat = annotate_data_stat(&ann_insn_stat, dl->ins.name); 2881 if (istat) 2882 istat->bad++; 2883 return NULL; 2884 } 2885 2886 /* Basic block traversal (BFS) data structure */ 2887 struct basic_block_data { 2888 struct list_head queue; 2889 struct list_head visited; 2890 }; 2891 2892 /* 2893 * During the traversal, it needs to know the parent block where the current 2894 * block block started from. Note that single basic block can be parent of 2895 * two child basic blocks (in case of condition jump). 2896 */ 2897 struct basic_block_link { 2898 struct list_head node; 2899 struct basic_block_link *parent; 2900 struct annotated_basic_block *bb; 2901 }; 2902 2903 /* Check any of basic block in the list already has the offset */ 2904 static bool basic_block_has_offset(struct list_head *head, s64 offset) 2905 { 2906 struct basic_block_link *link; 2907 2908 list_for_each_entry(link, head, node) { 2909 s64 begin_offset = link->bb->begin->al.offset; 2910 s64 end_offset = link->bb->end->al.offset; 2911 2912 if (begin_offset <= offset && offset <= end_offset) 2913 return true; 2914 } 2915 return false; 2916 } 2917 2918 static bool is_new_basic_block(struct basic_block_data *bb_data, 2919 struct disasm_line *dl) 2920 { 2921 s64 offset = dl->al.offset; 2922 2923 if (basic_block_has_offset(&bb_data->visited, offset)) 2924 return false; 2925 if (basic_block_has_offset(&bb_data->queue, offset)) 2926 return false; 2927 return true; 2928 } 2929 2930 /* Add a basic block starting from dl and link it to the parent */ 2931 static int add_basic_block(struct basic_block_data *bb_data, 2932 struct basic_block_link *parent, 2933 struct disasm_line *dl) 2934 { 2935 struct annotated_basic_block *bb; 2936 struct basic_block_link *link; 2937 2938 if (dl == NULL) 2939 return -1; 2940 2941 if (!is_new_basic_block(bb_data, dl)) 2942 return 0; 2943 2944 bb = zalloc(sizeof(*bb)); 2945 if (bb == NULL) 2946 return -1; 2947 2948 bb->begin = dl; 2949 bb->end = dl; 2950 INIT_LIST_HEAD(&bb->list); 2951 2952 link = malloc(sizeof(*link)); 2953 if (link == NULL) { 2954 free(bb); 2955 return -1; 2956 } 2957 2958 link->bb = bb; 2959 link->parent = parent; 2960 list_add_tail(&link->node, &bb_data->queue); 2961 return 0; 2962 } 2963 2964 /* Returns true when it finds the target in the current basic block */ 2965 static bool process_basic_block(struct basic_block_data *bb_data, 2966 struct basic_block_link *link, 2967 struct symbol *sym, u64 target) 2968 { 2969 struct disasm_line *dl, *next_dl, *last_dl; 2970 struct annotation *notes = symbol__annotation(sym); 2971 bool found = false; 2972 2973 dl = link->bb->begin; 2974 /* Check if it's already visited */ 2975 if (basic_block_has_offset(&bb_data->visited, dl->al.offset)) 2976 return false; 2977 2978 last_dl = list_last_entry(¬es->src->source, 2979 struct disasm_line, al.node); 2980 if (last_dl->al.offset == -1) 2981 last_dl = annotation__prev_asm_line(notes, last_dl); 2982 2983 if (last_dl == NULL) 2984 return false; 2985 2986 list_for_each_entry_from(dl, ¬es->src->source, al.node) { 2987 /* Skip comment or debug info line */ 2988 if (dl->al.offset == -1) 2989 continue; 2990 /* Found the target instruction */ 2991 if (sym->start + dl->al.offset == target) { 2992 found = true; 2993 break; 2994 } 2995 /* End of the function, finish the block */ 2996 if (dl == last_dl) 2997 break; 2998 /* 'return' instruction finishes the block */ 2999 if (ins__is_ret(&dl->ins)) 3000 break; 3001 /* normal instructions are part of the basic block */ 3002 if (!ins__is_jump(&dl->ins)) 3003 continue; 3004 /* jump to a different function, tail call or return */ 3005 if (dl->ops.target.outside) 3006 break; 3007 /* jump instruction creates new basic block(s) */ 3008 next_dl = find_disasm_line(sym, sym->start + dl->ops.target.offset, 3009 /*allow_update=*/false); 3010 if (next_dl) 3011 add_basic_block(bb_data, link, next_dl); 3012 3013 /* 3014 * FIXME: determine conditional jumps properly. 3015 * Conditional jumps create another basic block with the 3016 * next disasm line. 3017 */ 3018 if (!strstr(dl->ins.name, "jmp")) { 3019 next_dl = annotation__next_asm_line(notes, dl); 3020 if (next_dl) 3021 add_basic_block(bb_data, link, next_dl); 3022 } 3023 break; 3024 3025 } 3026 link->bb->end = dl; 3027 return found; 3028 } 3029 3030 /* 3031 * It founds a target basic block, build a proper linked list of basic blocks 3032 * by following the link recursively. 3033 */ 3034 static void link_found_basic_blocks(struct basic_block_link *link, 3035 struct list_head *head) 3036 { 3037 while (link) { 3038 struct basic_block_link *parent = link->parent; 3039 3040 list_move(&link->bb->list, head); 3041 list_del(&link->node); 3042 free(link); 3043 3044 link = parent; 3045 } 3046 } 3047 3048 static void delete_basic_blocks(struct basic_block_data *bb_data) 3049 { 3050 struct basic_block_link *link, *tmp; 3051 3052 list_for_each_entry_safe(link, tmp, &bb_data->queue, node) { 3053 list_del(&link->node); 3054 zfree(&link->bb); 3055 free(link); 3056 } 3057 3058 list_for_each_entry_safe(link, tmp, &bb_data->visited, node) { 3059 list_del(&link->node); 3060 zfree(&link->bb); 3061 free(link); 3062 } 3063 } 3064 3065 /** 3066 * annotate_get_basic_blocks - Get basic blocks for given address range 3067 * @sym: symbol to annotate 3068 * @src: source address 3069 * @dst: destination address 3070 * @head: list head to save basic blocks 3071 * 3072 * This function traverses disasm_lines from @src to @dst and save them in a 3073 * list of annotated_basic_block to @head. It uses BFS to find the shortest 3074 * path between two. The basic_block_link is to maintain parent links so 3075 * that it can build a list of blocks from the start. 3076 */ 3077 int annotate_get_basic_blocks(struct symbol *sym, s64 src, s64 dst, 3078 struct list_head *head) 3079 { 3080 struct basic_block_data bb_data = { 3081 .queue = LIST_HEAD_INIT(bb_data.queue), 3082 .visited = LIST_HEAD_INIT(bb_data.visited), 3083 }; 3084 struct basic_block_link *link; 3085 struct disasm_line *dl; 3086 int ret = -1; 3087 3088 dl = find_disasm_line(sym, src, /*allow_update=*/false); 3089 if (dl == NULL) 3090 return -1; 3091 3092 if (add_basic_block(&bb_data, /*parent=*/NULL, dl) < 0) 3093 return -1; 3094 3095 /* Find shortest path from src to dst using BFS */ 3096 while (!list_empty(&bb_data.queue)) { 3097 link = list_first_entry(&bb_data.queue, struct basic_block_link, node); 3098 3099 if (process_basic_block(&bb_data, link, sym, dst)) { 3100 link_found_basic_blocks(link, head); 3101 ret = 0; 3102 break; 3103 } 3104 list_move(&link->node, &bb_data.visited); 3105 } 3106 delete_basic_blocks(&bb_data); 3107 return ret; 3108 } 3109