1 // SPDX-License-Identifier: GPL-2.0 2 #include <errno.h> 3 #include <inttypes.h> 4 #include <regex.h> 5 #include <stdlib.h> 6 #include <linux/mman.h> 7 #include <linux/time64.h> 8 #include "debug.h" 9 #include "dso.h" 10 #include "sort.h" 11 #include "hist.h" 12 #include "cacheline.h" 13 #include "comm.h" 14 #include "map.h" 15 #include "maps.h" 16 #include "symbol.h" 17 #include "map_symbol.h" 18 #include "branch.h" 19 #include "thread.h" 20 #include "evsel.h" 21 #include "evlist.h" 22 #include "srcline.h" 23 #include "strlist.h" 24 #include "strbuf.h" 25 #include "mem-events.h" 26 #include "mem-info.h" 27 #include "annotate.h" 28 #include "annotate-data.h" 29 #include "event.h" 30 #include "time-utils.h" 31 #include "cgroup.h" 32 #include "machine.h" 33 #include "trace-event.h" 34 #include <linux/kernel.h> 35 #include <linux/string.h> 36 37 #ifdef HAVE_LIBTRACEEVENT 38 #include <event-parse.h> 39 #endif 40 41 regex_t parent_regex; 42 const char default_parent_pattern[] = "^sys_|^do_page_fault"; 43 const char *parent_pattern = default_parent_pattern; 44 const char *default_sort_order = "comm,dso,symbol"; 45 const char default_branch_sort_order[] = "comm,dso_from,symbol_from,symbol_to,cycles"; 46 const char default_mem_sort_order[] = "local_weight,mem,sym,dso,symbol_daddr,dso_daddr,snoop,tlb,locked,blocked,local_ins_lat,local_p_stage_cyc"; 47 const char default_top_sort_order[] = "dso,symbol"; 48 const char default_diff_sort_order[] = "dso,symbol"; 49 const char default_tracepoint_sort_order[] = "trace"; 50 const char *sort_order; 51 const char *field_order; 52 regex_t ignore_callees_regex; 53 int have_ignore_callees = 0; 54 enum sort_mode sort__mode = SORT_MODE__NORMAL; 55 static const char *const dynamic_headers[] = {"local_ins_lat", "ins_lat", "local_p_stage_cyc", "p_stage_cyc"}; 56 static const char *const arch_specific_sort_keys[] = {"local_p_stage_cyc", "p_stage_cyc"}; 57 58 /* 59 * Some architectures have Adjacent Cacheline Prefetch feature, which 60 * behaves like the cacheline size is doubled. Enable this flag to 61 * check things in double cacheline granularity. 62 */ 63 bool chk_double_cl; 64 65 /* 66 * Replaces all occurrences of a char used with the: 67 * 68 * -t, --field-separator 69 * 70 * option, that uses a special separator character and don't pad with spaces, 71 * replacing all occurrences of this separator in symbol names (and other 72 * output) with a '.' character, that thus it's the only non valid separator. 73 */ 74 static int repsep_snprintf(char *bf, size_t size, const char *fmt, ...) 75 { 76 int n; 77 va_list ap; 78 79 va_start(ap, fmt); 80 n = vsnprintf(bf, size, fmt, ap); 81 if (symbol_conf.field_sep && n > 0) { 82 char *sep = bf; 83 84 while (1) { 85 sep = strchr(sep, *symbol_conf.field_sep); 86 if (sep == NULL) 87 break; 88 *sep = '.'; 89 } 90 } 91 va_end(ap); 92 93 if (n >= (int)size) 94 return size - 1; 95 return n; 96 } 97 98 static int64_t cmp_null(const void *l, const void *r) 99 { 100 if (!l && !r) 101 return 0; 102 else if (!l) 103 return -1; 104 else 105 return 1; 106 } 107 108 /* --sort pid */ 109 110 static int64_t 111 sort__thread_cmp(struct hist_entry *left, struct hist_entry *right) 112 { 113 return thread__tid(right->thread) - thread__tid(left->thread); 114 } 115 116 static int hist_entry__thread_snprintf(struct hist_entry *he, char *bf, 117 size_t size, unsigned int width) 118 { 119 const char *comm = thread__comm_str(he->thread); 120 121 width = max(7U, width) - 8; 122 return repsep_snprintf(bf, size, "%7d:%-*.*s", thread__tid(he->thread), 123 width, width, comm ?: ""); 124 } 125 126 static int hist_entry__thread_filter(struct hist_entry *he, int type, const void *arg) 127 { 128 const struct thread *th = arg; 129 130 if (type != HIST_FILTER__THREAD) 131 return -1; 132 133 return th && !RC_CHK_EQUAL(he->thread, th); 134 } 135 136 struct sort_entry sort_thread = { 137 .se_header = " Pid:Command", 138 .se_cmp = sort__thread_cmp, 139 .se_snprintf = hist_entry__thread_snprintf, 140 .se_filter = hist_entry__thread_filter, 141 .se_width_idx = HISTC_THREAD, 142 }; 143 144 /* --sort tgid */ 145 146 static int64_t 147 sort__tgid_cmp(struct hist_entry *left, struct hist_entry *right) 148 { 149 return thread__pid(right->thread) - thread__pid(left->thread); 150 } 151 152 static int hist_entry__tgid_snprintf(struct hist_entry *he, char *bf, 153 size_t size, unsigned int width) 154 { 155 int tgid = thread__pid(he->thread); 156 const char *comm = NULL; 157 158 /* display comm of the thread-group leader */ 159 if (thread__pid(he->thread) == thread__tid(he->thread)) { 160 comm = thread__comm_str(he->thread); 161 } else { 162 struct maps *maps = thread__maps(he->thread); 163 struct thread *leader = machine__find_thread(maps__machine(maps), 164 tgid, tgid); 165 if (leader) { 166 comm = thread__comm_str(leader); 167 thread__put(leader); 168 } 169 } 170 width = max(7U, width) - 8; 171 return repsep_snprintf(bf, size, "%7d:%-*.*s", tgid, width, width, comm ?: ""); 172 } 173 174 struct sort_entry sort_tgid = { 175 .se_header = " Tgid:Command", 176 .se_cmp = sort__tgid_cmp, 177 .se_snprintf = hist_entry__tgid_snprintf, 178 .se_width_idx = HISTC_TGID, 179 }; 180 181 /* --sort simd */ 182 183 static int64_t 184 sort__simd_cmp(struct hist_entry *left, struct hist_entry *right) 185 { 186 if (left->simd_flags.arch != right->simd_flags.arch) 187 return (int64_t) left->simd_flags.arch - right->simd_flags.arch; 188 189 return (int64_t) left->simd_flags.pred - right->simd_flags.pred; 190 } 191 192 static const char *hist_entry__get_simd_name(struct simd_flags *simd_flags) 193 { 194 u64 arch = simd_flags->arch; 195 196 if (arch & SIMD_OP_FLAGS_ARCH_SVE) 197 return "SVE"; 198 else 199 return "n/a"; 200 } 201 202 static int hist_entry__simd_snprintf(struct hist_entry *he, char *bf, 203 size_t size, unsigned int width __maybe_unused) 204 { 205 const char *name; 206 207 if (!he->simd_flags.arch) 208 return repsep_snprintf(bf, size, ""); 209 210 name = hist_entry__get_simd_name(&he->simd_flags); 211 212 if (he->simd_flags.pred & SIMD_OP_FLAGS_PRED_EMPTY) 213 return repsep_snprintf(bf, size, "[e] %s", name); 214 else if (he->simd_flags.pred & SIMD_OP_FLAGS_PRED_PARTIAL) 215 return repsep_snprintf(bf, size, "[p] %s", name); 216 217 return repsep_snprintf(bf, size, "[.] %s", name); 218 } 219 220 struct sort_entry sort_simd = { 221 .se_header = "Simd ", 222 .se_cmp = sort__simd_cmp, 223 .se_snprintf = hist_entry__simd_snprintf, 224 .se_width_idx = HISTC_SIMD, 225 }; 226 227 /* --sort comm */ 228 229 /* 230 * We can't use pointer comparison in functions below, 231 * because it gives different results based on pointer 232 * values, which could break some sorting assumptions. 233 */ 234 static int64_t 235 sort__comm_cmp(struct hist_entry *left, struct hist_entry *right) 236 { 237 return strcmp(comm__str(right->comm), comm__str(left->comm)); 238 } 239 240 static int64_t 241 sort__comm_collapse(struct hist_entry *left, struct hist_entry *right) 242 { 243 return strcmp(comm__str(right->comm), comm__str(left->comm)); 244 } 245 246 static int64_t 247 sort__comm_sort(struct hist_entry *left, struct hist_entry *right) 248 { 249 return strcmp(comm__str(right->comm), comm__str(left->comm)); 250 } 251 252 static int hist_entry__comm_snprintf(struct hist_entry *he, char *bf, 253 size_t size, unsigned int width) 254 { 255 return repsep_snprintf(bf, size, "%-*.*s", width, width, comm__str(he->comm)); 256 } 257 258 struct sort_entry sort_comm = { 259 .se_header = "Command", 260 .se_cmp = sort__comm_cmp, 261 .se_collapse = sort__comm_collapse, 262 .se_sort = sort__comm_sort, 263 .se_snprintf = hist_entry__comm_snprintf, 264 .se_filter = hist_entry__thread_filter, 265 .se_width_idx = HISTC_COMM, 266 }; 267 268 /* --sort dso */ 269 270 static int64_t _sort__dso_cmp(struct map *map_l, struct map *map_r) 271 { 272 struct dso *dso_l = map_l ? map__dso(map_l) : NULL; 273 struct dso *dso_r = map_r ? map__dso(map_r) : NULL; 274 const char *dso_name_l, *dso_name_r; 275 276 if (!dso_l || !dso_r) 277 return cmp_null(dso_r, dso_l); 278 279 if (verbose > 0) { 280 dso_name_l = dso__long_name(dso_l); 281 dso_name_r = dso__long_name(dso_r); 282 } else { 283 dso_name_l = dso__short_name(dso_l); 284 dso_name_r = dso__short_name(dso_r); 285 } 286 287 return strcmp(dso_name_l, dso_name_r); 288 } 289 290 static int64_t 291 sort__dso_cmp(struct hist_entry *left, struct hist_entry *right) 292 { 293 return _sort__dso_cmp(right->ms.map, left->ms.map); 294 } 295 296 static int _hist_entry__dso_snprintf(struct map *map, char *bf, 297 size_t size, unsigned int width) 298 { 299 const struct dso *dso = map ? map__dso(map) : NULL; 300 const char *dso_name = "[unknown]"; 301 302 if (dso) 303 dso_name = verbose > 0 ? dso__long_name(dso) : dso__short_name(dso); 304 305 return repsep_snprintf(bf, size, "%-*.*s", width, width, dso_name); 306 } 307 308 static int hist_entry__dso_snprintf(struct hist_entry *he, char *bf, 309 size_t size, unsigned int width) 310 { 311 return _hist_entry__dso_snprintf(he->ms.map, bf, size, width); 312 } 313 314 static int hist_entry__dso_filter(struct hist_entry *he, int type, const void *arg) 315 { 316 const struct dso *dso = arg; 317 318 if (type != HIST_FILTER__DSO) 319 return -1; 320 321 return dso && (!he->ms.map || map__dso(he->ms.map) != dso); 322 } 323 324 struct sort_entry sort_dso = { 325 .se_header = "Shared Object", 326 .se_cmp = sort__dso_cmp, 327 .se_snprintf = hist_entry__dso_snprintf, 328 .se_filter = hist_entry__dso_filter, 329 .se_width_idx = HISTC_DSO, 330 }; 331 332 /* --sort symbol */ 333 334 static int64_t _sort__addr_cmp(u64 left_ip, u64 right_ip) 335 { 336 return (int64_t)(right_ip - left_ip); 337 } 338 339 int64_t _sort__sym_cmp(struct symbol *sym_l, struct symbol *sym_r) 340 { 341 if (!sym_l || !sym_r) 342 return cmp_null(sym_l, sym_r); 343 344 if (sym_l == sym_r) 345 return 0; 346 347 if (sym_l->inlined || sym_r->inlined) { 348 int ret = strcmp(sym_l->name, sym_r->name); 349 350 if (ret) 351 return ret; 352 if ((sym_l->start <= sym_r->end) && (sym_l->end >= sym_r->start)) 353 return 0; 354 } 355 356 if (sym_l->start != sym_r->start) 357 return (int64_t)(sym_r->start - sym_l->start); 358 359 return (int64_t)(sym_r->end - sym_l->end); 360 } 361 362 static int64_t 363 sort__sym_cmp(struct hist_entry *left, struct hist_entry *right) 364 { 365 int64_t ret; 366 367 if (!left->ms.sym && !right->ms.sym) 368 return _sort__addr_cmp(left->ip, right->ip); 369 370 /* 371 * comparing symbol address alone is not enough since it's a 372 * relative address within a dso. 373 */ 374 if (!hists__has(left->hists, dso)) { 375 ret = sort__dso_cmp(left, right); 376 if (ret != 0) 377 return ret; 378 } 379 380 return _sort__sym_cmp(left->ms.sym, right->ms.sym); 381 } 382 383 static int64_t 384 sort__sym_sort(struct hist_entry *left, struct hist_entry *right) 385 { 386 if (!left->ms.sym || !right->ms.sym) 387 return cmp_null(left->ms.sym, right->ms.sym); 388 389 return strcmp(right->ms.sym->name, left->ms.sym->name); 390 } 391 392 static int _hist_entry__sym_snprintf(struct map_symbol *ms, 393 u64 ip, char level, char *bf, size_t size, 394 unsigned int width) 395 { 396 struct symbol *sym = ms->sym; 397 struct map *map = ms->map; 398 size_t ret = 0; 399 400 if (verbose > 0) { 401 struct dso *dso = map ? map__dso(map) : NULL; 402 char o = dso ? dso__symtab_origin(dso) : '!'; 403 u64 rip = ip; 404 405 if (dso && dso__kernel(dso) && dso__adjust_symbols(dso)) 406 rip = map__unmap_ip(map, ip); 407 408 ret += repsep_snprintf(bf, size, "%-#*llx %c ", 409 BITS_PER_LONG / 4 + 2, rip, o); 410 } 411 412 ret += repsep_snprintf(bf + ret, size - ret, "[%c] ", level); 413 if (sym && map) { 414 if (sym->type == STT_OBJECT) { 415 ret += repsep_snprintf(bf + ret, size - ret, "%s", sym->name); 416 ret += repsep_snprintf(bf + ret, size - ret, "+0x%llx", 417 ip - map__unmap_ip(map, sym->start)); 418 } else { 419 ret += repsep_snprintf(bf + ret, size - ret, "%.*s", 420 width - ret, 421 sym->name); 422 if (sym->inlined) 423 ret += repsep_snprintf(bf + ret, size - ret, 424 " (inlined)"); 425 } 426 } else { 427 size_t len = BITS_PER_LONG / 4; 428 ret += repsep_snprintf(bf + ret, size - ret, "%-#.*llx", 429 len, ip); 430 } 431 432 return ret; 433 } 434 435 int hist_entry__sym_snprintf(struct hist_entry *he, char *bf, size_t size, unsigned int width) 436 { 437 return _hist_entry__sym_snprintf(&he->ms, he->ip, 438 he->level, bf, size, width); 439 } 440 441 static int hist_entry__sym_filter(struct hist_entry *he, int type, const void *arg) 442 { 443 const char *sym = arg; 444 445 if (type != HIST_FILTER__SYMBOL) 446 return -1; 447 448 return sym && (!he->ms.sym || !strstr(he->ms.sym->name, sym)); 449 } 450 451 struct sort_entry sort_sym = { 452 .se_header = "Symbol", 453 .se_cmp = sort__sym_cmp, 454 .se_sort = sort__sym_sort, 455 .se_snprintf = hist_entry__sym_snprintf, 456 .se_filter = hist_entry__sym_filter, 457 .se_width_idx = HISTC_SYMBOL, 458 }; 459 460 /* --sort symoff */ 461 462 static int64_t 463 sort__symoff_cmp(struct hist_entry *left, struct hist_entry *right) 464 { 465 int64_t ret; 466 467 ret = sort__sym_cmp(left, right); 468 if (ret) 469 return ret; 470 471 return left->ip - right->ip; 472 } 473 474 static int64_t 475 sort__symoff_sort(struct hist_entry *left, struct hist_entry *right) 476 { 477 int64_t ret; 478 479 ret = sort__sym_sort(left, right); 480 if (ret) 481 return ret; 482 483 return left->ip - right->ip; 484 } 485 486 static int 487 hist_entry__symoff_snprintf(struct hist_entry *he, char *bf, size_t size, unsigned int width) 488 { 489 struct symbol *sym = he->ms.sym; 490 491 if (sym == NULL) 492 return repsep_snprintf(bf, size, "[%c] %-#.*llx", he->level, width - 4, he->ip); 493 494 return repsep_snprintf(bf, size, "[%c] %s+0x%llx", he->level, sym->name, he->ip - sym->start); 495 } 496 497 struct sort_entry sort_sym_offset = { 498 .se_header = "Symbol Offset", 499 .se_cmp = sort__symoff_cmp, 500 .se_sort = sort__symoff_sort, 501 .se_snprintf = hist_entry__symoff_snprintf, 502 .se_filter = hist_entry__sym_filter, 503 .se_width_idx = HISTC_SYMBOL_OFFSET, 504 }; 505 506 /* --sort srcline */ 507 508 char *hist_entry__srcline(struct hist_entry *he) 509 { 510 return map__srcline(he->ms.map, he->ip, he->ms.sym); 511 } 512 513 static int64_t 514 sort__srcline_cmp(struct hist_entry *left, struct hist_entry *right) 515 { 516 int64_t ret; 517 518 ret = _sort__addr_cmp(left->ip, right->ip); 519 if (ret) 520 return ret; 521 522 return sort__dso_cmp(left, right); 523 } 524 525 static int64_t 526 sort__srcline_collapse(struct hist_entry *left, struct hist_entry *right) 527 { 528 if (!left->srcline) 529 left->srcline = hist_entry__srcline(left); 530 if (!right->srcline) 531 right->srcline = hist_entry__srcline(right); 532 533 return strcmp(right->srcline, left->srcline); 534 } 535 536 static int64_t 537 sort__srcline_sort(struct hist_entry *left, struct hist_entry *right) 538 { 539 return sort__srcline_collapse(left, right); 540 } 541 542 static void 543 sort__srcline_init(struct hist_entry *he) 544 { 545 if (!he->srcline) 546 he->srcline = hist_entry__srcline(he); 547 } 548 549 static int hist_entry__srcline_snprintf(struct hist_entry *he, char *bf, 550 size_t size, unsigned int width) 551 { 552 return repsep_snprintf(bf, size, "%-.*s", width, he->srcline); 553 } 554 555 struct sort_entry sort_srcline = { 556 .se_header = "Source:Line", 557 .se_cmp = sort__srcline_cmp, 558 .se_collapse = sort__srcline_collapse, 559 .se_sort = sort__srcline_sort, 560 .se_init = sort__srcline_init, 561 .se_snprintf = hist_entry__srcline_snprintf, 562 .se_width_idx = HISTC_SRCLINE, 563 }; 564 565 /* --sort srcline_from */ 566 567 static char *addr_map_symbol__srcline(struct addr_map_symbol *ams) 568 { 569 return map__srcline(ams->ms.map, ams->al_addr, ams->ms.sym); 570 } 571 572 static int64_t 573 sort__srcline_from_cmp(struct hist_entry *left, struct hist_entry *right) 574 { 575 return left->branch_info->from.addr - right->branch_info->from.addr; 576 } 577 578 static int64_t 579 sort__srcline_from_collapse(struct hist_entry *left, struct hist_entry *right) 580 { 581 if (!left->branch_info->srcline_from) 582 left->branch_info->srcline_from = addr_map_symbol__srcline(&left->branch_info->from); 583 584 if (!right->branch_info->srcline_from) 585 right->branch_info->srcline_from = addr_map_symbol__srcline(&right->branch_info->from); 586 587 return strcmp(right->branch_info->srcline_from, left->branch_info->srcline_from); 588 } 589 590 static int64_t 591 sort__srcline_from_sort(struct hist_entry *left, struct hist_entry *right) 592 { 593 return sort__srcline_from_collapse(left, right); 594 } 595 596 static void sort__srcline_from_init(struct hist_entry *he) 597 { 598 if (!he->branch_info->srcline_from) 599 he->branch_info->srcline_from = addr_map_symbol__srcline(&he->branch_info->from); 600 } 601 602 static int hist_entry__srcline_from_snprintf(struct hist_entry *he, char *bf, 603 size_t size, unsigned int width) 604 { 605 return repsep_snprintf(bf, size, "%-*.*s", width, width, he->branch_info->srcline_from); 606 } 607 608 struct sort_entry sort_srcline_from = { 609 .se_header = "From Source:Line", 610 .se_cmp = sort__srcline_from_cmp, 611 .se_collapse = sort__srcline_from_collapse, 612 .se_sort = sort__srcline_from_sort, 613 .se_init = sort__srcline_from_init, 614 .se_snprintf = hist_entry__srcline_from_snprintf, 615 .se_width_idx = HISTC_SRCLINE_FROM, 616 }; 617 618 /* --sort srcline_to */ 619 620 static int64_t 621 sort__srcline_to_cmp(struct hist_entry *left, struct hist_entry *right) 622 { 623 return left->branch_info->to.addr - right->branch_info->to.addr; 624 } 625 626 static int64_t 627 sort__srcline_to_collapse(struct hist_entry *left, struct hist_entry *right) 628 { 629 if (!left->branch_info->srcline_to) 630 left->branch_info->srcline_to = addr_map_symbol__srcline(&left->branch_info->to); 631 632 if (!right->branch_info->srcline_to) 633 right->branch_info->srcline_to = addr_map_symbol__srcline(&right->branch_info->to); 634 635 return strcmp(right->branch_info->srcline_to, left->branch_info->srcline_to); 636 } 637 638 static int64_t 639 sort__srcline_to_sort(struct hist_entry *left, struct hist_entry *right) 640 { 641 return sort__srcline_to_collapse(left, right); 642 } 643 644 static void sort__srcline_to_init(struct hist_entry *he) 645 { 646 if (!he->branch_info->srcline_to) 647 he->branch_info->srcline_to = addr_map_symbol__srcline(&he->branch_info->to); 648 } 649 650 static int hist_entry__srcline_to_snprintf(struct hist_entry *he, char *bf, 651 size_t size, unsigned int width) 652 { 653 return repsep_snprintf(bf, size, "%-*.*s", width, width, he->branch_info->srcline_to); 654 } 655 656 struct sort_entry sort_srcline_to = { 657 .se_header = "To Source:Line", 658 .se_cmp = sort__srcline_to_cmp, 659 .se_collapse = sort__srcline_to_collapse, 660 .se_sort = sort__srcline_to_sort, 661 .se_init = sort__srcline_to_init, 662 .se_snprintf = hist_entry__srcline_to_snprintf, 663 .se_width_idx = HISTC_SRCLINE_TO, 664 }; 665 666 static int hist_entry__sym_ipc_snprintf(struct hist_entry *he, char *bf, 667 size_t size, unsigned int width) 668 { 669 670 struct symbol *sym = he->ms.sym; 671 struct annotated_branch *branch; 672 double ipc = 0.0, coverage = 0.0; 673 char tmp[64]; 674 675 if (!sym) 676 return repsep_snprintf(bf, size, "%-*s", width, "-"); 677 678 branch = symbol__annotation(sym)->branch; 679 680 if (branch && branch->hit_cycles) 681 ipc = branch->hit_insn / ((double)branch->hit_cycles); 682 683 if (branch && branch->total_insn) { 684 coverage = branch->cover_insn * 100.0 / 685 ((double)branch->total_insn); 686 } 687 688 snprintf(tmp, sizeof(tmp), "%-5.2f [%5.1f%%]", ipc, coverage); 689 return repsep_snprintf(bf, size, "%-*s", width, tmp); 690 } 691 692 struct sort_entry sort_sym_ipc = { 693 .se_header = "IPC [IPC Coverage]", 694 .se_cmp = sort__sym_cmp, 695 .se_snprintf = hist_entry__sym_ipc_snprintf, 696 .se_width_idx = HISTC_SYMBOL_IPC, 697 }; 698 699 static int hist_entry__sym_ipc_null_snprintf(struct hist_entry *he 700 __maybe_unused, 701 char *bf, size_t size, 702 unsigned int width) 703 { 704 char tmp[64]; 705 706 snprintf(tmp, sizeof(tmp), "%-5s %2s", "-", "-"); 707 return repsep_snprintf(bf, size, "%-*s", width, tmp); 708 } 709 710 struct sort_entry sort_sym_ipc_null = { 711 .se_header = "IPC [IPC Coverage]", 712 .se_cmp = sort__sym_cmp, 713 .se_snprintf = hist_entry__sym_ipc_null_snprintf, 714 .se_width_idx = HISTC_SYMBOL_IPC, 715 }; 716 717 /* --sort callchain_branch_predicted */ 718 719 static int64_t 720 sort__callchain_branch_predicted_cmp(struct hist_entry *left __maybe_unused, 721 struct hist_entry *right __maybe_unused) 722 { 723 return 0; 724 } 725 726 static int hist_entry__callchain_branch_predicted_snprintf( 727 struct hist_entry *he, char *bf, size_t size, unsigned int width) 728 { 729 u64 branch_count, predicted_count; 730 double percent = 0.0; 731 char str[32]; 732 733 callchain_branch_counts(he->callchain, &branch_count, 734 &predicted_count, NULL, NULL); 735 736 if (branch_count) 737 percent = predicted_count * 100.0 / branch_count; 738 739 snprintf(str, sizeof(str), "%.1f%%", percent); 740 return repsep_snprintf(bf, size, "%-*.*s", width, width, str); 741 } 742 743 struct sort_entry sort_callchain_branch_predicted = { 744 .se_header = "Predicted", 745 .se_cmp = sort__callchain_branch_predicted_cmp, 746 .se_snprintf = hist_entry__callchain_branch_predicted_snprintf, 747 .se_width_idx = HISTC_CALLCHAIN_BRANCH_PREDICTED, 748 }; 749 750 /* --sort callchain_branch_abort */ 751 752 static int64_t 753 sort__callchain_branch_abort_cmp(struct hist_entry *left __maybe_unused, 754 struct hist_entry *right __maybe_unused) 755 { 756 return 0; 757 } 758 759 static int hist_entry__callchain_branch_abort_snprintf(struct hist_entry *he, 760 char *bf, size_t size, 761 unsigned int width) 762 { 763 u64 branch_count, abort_count; 764 char str[32]; 765 766 callchain_branch_counts(he->callchain, &branch_count, 767 NULL, &abort_count, NULL); 768 769 snprintf(str, sizeof(str), "%" PRId64, abort_count); 770 return repsep_snprintf(bf, size, "%-*.*s", width, width, str); 771 } 772 773 struct sort_entry sort_callchain_branch_abort = { 774 .se_header = "Abort", 775 .se_cmp = sort__callchain_branch_abort_cmp, 776 .se_snprintf = hist_entry__callchain_branch_abort_snprintf, 777 .se_width_idx = HISTC_CALLCHAIN_BRANCH_ABORT, 778 }; 779 780 /* --sort callchain_branch_cycles */ 781 782 static int64_t 783 sort__callchain_branch_cycles_cmp(struct hist_entry *left __maybe_unused, 784 struct hist_entry *right __maybe_unused) 785 { 786 return 0; 787 } 788 789 static int hist_entry__callchain_branch_cycles_snprintf(struct hist_entry *he, 790 char *bf, size_t size, 791 unsigned int width) 792 { 793 u64 branch_count, cycles_count, cycles = 0; 794 char str[32]; 795 796 callchain_branch_counts(he->callchain, &branch_count, 797 NULL, NULL, &cycles_count); 798 799 if (branch_count) 800 cycles = cycles_count / branch_count; 801 802 snprintf(str, sizeof(str), "%" PRId64 "", cycles); 803 return repsep_snprintf(bf, size, "%-*.*s", width, width, str); 804 } 805 806 struct sort_entry sort_callchain_branch_cycles = { 807 .se_header = "Cycles", 808 .se_cmp = sort__callchain_branch_cycles_cmp, 809 .se_snprintf = hist_entry__callchain_branch_cycles_snprintf, 810 .se_width_idx = HISTC_CALLCHAIN_BRANCH_CYCLES, 811 }; 812 813 /* --sort srcfile */ 814 815 static char no_srcfile[1]; 816 817 static char *hist_entry__get_srcfile(struct hist_entry *e) 818 { 819 char *sf, *p; 820 struct map *map = e->ms.map; 821 822 if (!map) 823 return no_srcfile; 824 825 sf = __get_srcline(map__dso(map), map__rip_2objdump(map, e->ip), 826 e->ms.sym, false, true, true, e->ip); 827 if (sf == SRCLINE_UNKNOWN) 828 return no_srcfile; 829 p = strchr(sf, ':'); 830 if (p && *sf) { 831 *p = 0; 832 return sf; 833 } 834 free(sf); 835 return no_srcfile; 836 } 837 838 static int64_t 839 sort__srcfile_cmp(struct hist_entry *left, struct hist_entry *right) 840 { 841 return sort__srcline_cmp(left, right); 842 } 843 844 static int64_t 845 sort__srcfile_collapse(struct hist_entry *left, struct hist_entry *right) 846 { 847 if (!left->srcfile) 848 left->srcfile = hist_entry__get_srcfile(left); 849 if (!right->srcfile) 850 right->srcfile = hist_entry__get_srcfile(right); 851 852 return strcmp(right->srcfile, left->srcfile); 853 } 854 855 static int64_t 856 sort__srcfile_sort(struct hist_entry *left, struct hist_entry *right) 857 { 858 return sort__srcfile_collapse(left, right); 859 } 860 861 static void sort__srcfile_init(struct hist_entry *he) 862 { 863 if (!he->srcfile) 864 he->srcfile = hist_entry__get_srcfile(he); 865 } 866 867 static int hist_entry__srcfile_snprintf(struct hist_entry *he, char *bf, 868 size_t size, unsigned int width) 869 { 870 return repsep_snprintf(bf, size, "%-.*s", width, he->srcfile); 871 } 872 873 struct sort_entry sort_srcfile = { 874 .se_header = "Source File", 875 .se_cmp = sort__srcfile_cmp, 876 .se_collapse = sort__srcfile_collapse, 877 .se_sort = sort__srcfile_sort, 878 .se_init = sort__srcfile_init, 879 .se_snprintf = hist_entry__srcfile_snprintf, 880 .se_width_idx = HISTC_SRCFILE, 881 }; 882 883 /* --sort parent */ 884 885 static int64_t 886 sort__parent_cmp(struct hist_entry *left, struct hist_entry *right) 887 { 888 struct symbol *sym_l = left->parent; 889 struct symbol *sym_r = right->parent; 890 891 if (!sym_l || !sym_r) 892 return cmp_null(sym_l, sym_r); 893 894 return strcmp(sym_r->name, sym_l->name); 895 } 896 897 static int hist_entry__parent_snprintf(struct hist_entry *he, char *bf, 898 size_t size, unsigned int width) 899 { 900 return repsep_snprintf(bf, size, "%-*.*s", width, width, 901 he->parent ? he->parent->name : "[other]"); 902 } 903 904 struct sort_entry sort_parent = { 905 .se_header = "Parent symbol", 906 .se_cmp = sort__parent_cmp, 907 .se_snprintf = hist_entry__parent_snprintf, 908 .se_width_idx = HISTC_PARENT, 909 }; 910 911 /* --sort cpu */ 912 913 static int64_t 914 sort__cpu_cmp(struct hist_entry *left, struct hist_entry *right) 915 { 916 return right->cpu - left->cpu; 917 } 918 919 static int hist_entry__cpu_snprintf(struct hist_entry *he, char *bf, 920 size_t size, unsigned int width) 921 { 922 return repsep_snprintf(bf, size, "%*.*d", width, width, he->cpu); 923 } 924 925 struct sort_entry sort_cpu = { 926 .se_header = "CPU", 927 .se_cmp = sort__cpu_cmp, 928 .se_snprintf = hist_entry__cpu_snprintf, 929 .se_width_idx = HISTC_CPU, 930 }; 931 932 /* --sort parallelism */ 933 934 static int64_t 935 sort__parallelism_cmp(struct hist_entry *left, struct hist_entry *right) 936 { 937 return right->parallelism - left->parallelism; 938 } 939 940 static int hist_entry__parallelism_filter(struct hist_entry *he, int type, const void *arg) 941 { 942 const unsigned long *parallelism_filter = arg; 943 944 if (type != HIST_FILTER__PARALLELISM) 945 return -1; 946 947 return test_bit(he->parallelism, parallelism_filter); 948 } 949 950 static int hist_entry__parallelism_snprintf(struct hist_entry *he, char *bf, 951 size_t size, unsigned int width) 952 { 953 return repsep_snprintf(bf, size, "%*d", width, he->parallelism); 954 } 955 956 struct sort_entry sort_parallelism = { 957 .se_header = "Parallelism", 958 .se_cmp = sort__parallelism_cmp, 959 .se_filter = hist_entry__parallelism_filter, 960 .se_snprintf = hist_entry__parallelism_snprintf, 961 .se_width_idx = HISTC_PARALLELISM, 962 }; 963 964 /* --sort cgroup_id */ 965 966 static int64_t _sort__cgroup_dev_cmp(u64 left_dev, u64 right_dev) 967 { 968 return (int64_t)(right_dev - left_dev); 969 } 970 971 static int64_t _sort__cgroup_inode_cmp(u64 left_ino, u64 right_ino) 972 { 973 return (int64_t)(right_ino - left_ino); 974 } 975 976 static int64_t 977 sort__cgroup_id_cmp(struct hist_entry *left, struct hist_entry *right) 978 { 979 int64_t ret; 980 981 ret = _sort__cgroup_dev_cmp(right->cgroup_id.dev, left->cgroup_id.dev); 982 if (ret != 0) 983 return ret; 984 985 return _sort__cgroup_inode_cmp(right->cgroup_id.ino, 986 left->cgroup_id.ino); 987 } 988 989 static int hist_entry__cgroup_id_snprintf(struct hist_entry *he, 990 char *bf, size_t size, 991 unsigned int width __maybe_unused) 992 { 993 return repsep_snprintf(bf, size, "%lu/0x%lx", he->cgroup_id.dev, 994 he->cgroup_id.ino); 995 } 996 997 struct sort_entry sort_cgroup_id = { 998 .se_header = "cgroup id (dev/inode)", 999 .se_cmp = sort__cgroup_id_cmp, 1000 .se_snprintf = hist_entry__cgroup_id_snprintf, 1001 .se_width_idx = HISTC_CGROUP_ID, 1002 }; 1003 1004 /* --sort cgroup */ 1005 1006 static int64_t 1007 sort__cgroup_cmp(struct hist_entry *left, struct hist_entry *right) 1008 { 1009 return right->cgroup - left->cgroup; 1010 } 1011 1012 static int hist_entry__cgroup_snprintf(struct hist_entry *he, 1013 char *bf, size_t size, 1014 unsigned int width __maybe_unused) 1015 { 1016 const char *cgrp_name = "N/A"; 1017 1018 if (he->cgroup) { 1019 struct cgroup *cgrp = cgroup__find(maps__machine(he->ms.maps)->env, 1020 he->cgroup); 1021 if (cgrp != NULL) 1022 cgrp_name = cgrp->name; 1023 else 1024 cgrp_name = "unknown"; 1025 } 1026 1027 return repsep_snprintf(bf, size, "%s", cgrp_name); 1028 } 1029 1030 struct sort_entry sort_cgroup = { 1031 .se_header = "Cgroup", 1032 .se_cmp = sort__cgroup_cmp, 1033 .se_snprintf = hist_entry__cgroup_snprintf, 1034 .se_width_idx = HISTC_CGROUP, 1035 }; 1036 1037 /* --sort socket */ 1038 1039 static int64_t 1040 sort__socket_cmp(struct hist_entry *left, struct hist_entry *right) 1041 { 1042 return right->socket - left->socket; 1043 } 1044 1045 static int hist_entry__socket_snprintf(struct hist_entry *he, char *bf, 1046 size_t size, unsigned int width) 1047 { 1048 return repsep_snprintf(bf, size, "%*.*d", width, width-3, he->socket); 1049 } 1050 1051 static int hist_entry__socket_filter(struct hist_entry *he, int type, const void *arg) 1052 { 1053 int sk = *(const int *)arg; 1054 1055 if (type != HIST_FILTER__SOCKET) 1056 return -1; 1057 1058 return sk >= 0 && he->socket != sk; 1059 } 1060 1061 struct sort_entry sort_socket = { 1062 .se_header = "Socket", 1063 .se_cmp = sort__socket_cmp, 1064 .se_snprintf = hist_entry__socket_snprintf, 1065 .se_filter = hist_entry__socket_filter, 1066 .se_width_idx = HISTC_SOCKET, 1067 }; 1068 1069 /* --sort time */ 1070 1071 static int64_t 1072 sort__time_cmp(struct hist_entry *left, struct hist_entry *right) 1073 { 1074 return right->time - left->time; 1075 } 1076 1077 static int hist_entry__time_snprintf(struct hist_entry *he, char *bf, 1078 size_t size, unsigned int width) 1079 { 1080 char he_time[32]; 1081 1082 if (symbol_conf.nanosecs) 1083 timestamp__scnprintf_nsec(he->time, he_time, 1084 sizeof(he_time)); 1085 else 1086 timestamp__scnprintf_usec(he->time, he_time, 1087 sizeof(he_time)); 1088 1089 return repsep_snprintf(bf, size, "%-.*s", width, he_time); 1090 } 1091 1092 struct sort_entry sort_time = { 1093 .se_header = "Time", 1094 .se_cmp = sort__time_cmp, 1095 .se_snprintf = hist_entry__time_snprintf, 1096 .se_width_idx = HISTC_TIME, 1097 }; 1098 1099 /* --sort trace */ 1100 1101 #ifdef HAVE_LIBTRACEEVENT 1102 static char *get_trace_output(struct hist_entry *he) 1103 { 1104 struct trace_seq seq; 1105 struct evsel *evsel; 1106 struct tep_record rec = { 1107 .data = he->raw_data, 1108 .size = he->raw_size, 1109 }; 1110 struct tep_event *tp_format; 1111 1112 evsel = hists_to_evsel(he->hists); 1113 1114 trace_seq_init(&seq); 1115 tp_format = evsel__tp_format(evsel); 1116 if (tp_format) { 1117 if (symbol_conf.raw_trace) 1118 tep_print_fields(&seq, he->raw_data, he->raw_size, tp_format); 1119 else 1120 tep_print_event(tp_format->tep, &seq, &rec, "%s", TEP_PRINT_INFO); 1121 } 1122 1123 /* 1124 * Trim the buffer, it starts at 4KB and we're not going to 1125 * add anything more to this buffer. 1126 */ 1127 return realloc(seq.buffer, seq.len + 1); 1128 } 1129 1130 static int64_t 1131 sort__trace_cmp(struct hist_entry *left, struct hist_entry *right) 1132 { 1133 struct evsel *evsel; 1134 1135 evsel = hists_to_evsel(left->hists); 1136 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) 1137 return 0; 1138 1139 if (left->trace_output == NULL) 1140 left->trace_output = get_trace_output(left); 1141 if (right->trace_output == NULL) 1142 right->trace_output = get_trace_output(right); 1143 1144 return strcmp(right->trace_output, left->trace_output); 1145 } 1146 1147 static int hist_entry__trace_snprintf(struct hist_entry *he, char *bf, 1148 size_t size, unsigned int width) 1149 { 1150 struct evsel *evsel; 1151 1152 evsel = hists_to_evsel(he->hists); 1153 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) 1154 return scnprintf(bf, size, "%-.*s", width, "N/A"); 1155 1156 if (he->trace_output == NULL) 1157 he->trace_output = get_trace_output(he); 1158 return repsep_snprintf(bf, size, "%-.*s", width, he->trace_output); 1159 } 1160 1161 struct sort_entry sort_trace = { 1162 .se_header = "Trace output", 1163 .se_cmp = sort__trace_cmp, 1164 .se_snprintf = hist_entry__trace_snprintf, 1165 .se_width_idx = HISTC_TRACE, 1166 }; 1167 #endif /* HAVE_LIBTRACEEVENT */ 1168 1169 /* sort keys for branch stacks */ 1170 1171 static int64_t 1172 sort__dso_from_cmp(struct hist_entry *left, struct hist_entry *right) 1173 { 1174 if (!left->branch_info || !right->branch_info) 1175 return cmp_null(left->branch_info, right->branch_info); 1176 1177 return _sort__dso_cmp(left->branch_info->from.ms.map, 1178 right->branch_info->from.ms.map); 1179 } 1180 1181 static int hist_entry__dso_from_snprintf(struct hist_entry *he, char *bf, 1182 size_t size, unsigned int width) 1183 { 1184 if (he->branch_info) 1185 return _hist_entry__dso_snprintf(he->branch_info->from.ms.map, 1186 bf, size, width); 1187 else 1188 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1189 } 1190 1191 static int hist_entry__dso_from_filter(struct hist_entry *he, int type, 1192 const void *arg) 1193 { 1194 const struct dso *dso = arg; 1195 1196 if (type != HIST_FILTER__DSO) 1197 return -1; 1198 1199 return dso && (!he->branch_info || !he->branch_info->from.ms.map || 1200 map__dso(he->branch_info->from.ms.map) != dso); 1201 } 1202 1203 static int64_t 1204 sort__dso_to_cmp(struct hist_entry *left, struct hist_entry *right) 1205 { 1206 if (!left->branch_info || !right->branch_info) 1207 return cmp_null(left->branch_info, right->branch_info); 1208 1209 return _sort__dso_cmp(left->branch_info->to.ms.map, 1210 right->branch_info->to.ms.map); 1211 } 1212 1213 static int hist_entry__dso_to_snprintf(struct hist_entry *he, char *bf, 1214 size_t size, unsigned int width) 1215 { 1216 if (he->branch_info) 1217 return _hist_entry__dso_snprintf(he->branch_info->to.ms.map, 1218 bf, size, width); 1219 else 1220 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1221 } 1222 1223 static int hist_entry__dso_to_filter(struct hist_entry *he, int type, 1224 const void *arg) 1225 { 1226 const struct dso *dso = arg; 1227 1228 if (type != HIST_FILTER__DSO) 1229 return -1; 1230 1231 return dso && (!he->branch_info || !he->branch_info->to.ms.map || 1232 map__dso(he->branch_info->to.ms.map) != dso); 1233 } 1234 1235 static int64_t 1236 sort__sym_from_cmp(struct hist_entry *left, struct hist_entry *right) 1237 { 1238 struct addr_map_symbol *from_l, *from_r; 1239 1240 if (!left->branch_info || !right->branch_info) 1241 return cmp_null(left->branch_info, right->branch_info); 1242 1243 from_l = &left->branch_info->from; 1244 from_r = &right->branch_info->from; 1245 1246 if (!from_l->ms.sym && !from_r->ms.sym) 1247 return _sort__addr_cmp(from_l->addr, from_r->addr); 1248 1249 return _sort__sym_cmp(from_l->ms.sym, from_r->ms.sym); 1250 } 1251 1252 static int64_t 1253 sort__sym_to_cmp(struct hist_entry *left, struct hist_entry *right) 1254 { 1255 struct addr_map_symbol *to_l, *to_r; 1256 1257 if (!left->branch_info || !right->branch_info) 1258 return cmp_null(left->branch_info, right->branch_info); 1259 1260 to_l = &left->branch_info->to; 1261 to_r = &right->branch_info->to; 1262 1263 if (!to_l->ms.sym && !to_r->ms.sym) 1264 return _sort__addr_cmp(to_l->addr, to_r->addr); 1265 1266 return _sort__sym_cmp(to_l->ms.sym, to_r->ms.sym); 1267 } 1268 1269 static int hist_entry__sym_from_snprintf(struct hist_entry *he, char *bf, 1270 size_t size, unsigned int width) 1271 { 1272 if (he->branch_info) { 1273 struct addr_map_symbol *from = &he->branch_info->from; 1274 1275 return _hist_entry__sym_snprintf(&from->ms, from->al_addr, 1276 from->al_level, bf, size, width); 1277 } 1278 1279 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1280 } 1281 1282 static int hist_entry__sym_to_snprintf(struct hist_entry *he, char *bf, 1283 size_t size, unsigned int width) 1284 { 1285 if (he->branch_info) { 1286 struct addr_map_symbol *to = &he->branch_info->to; 1287 1288 return _hist_entry__sym_snprintf(&to->ms, to->al_addr, 1289 to->al_level, bf, size, width); 1290 } 1291 1292 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1293 } 1294 1295 static int hist_entry__sym_from_filter(struct hist_entry *he, int type, 1296 const void *arg) 1297 { 1298 const char *sym = arg; 1299 1300 if (type != HIST_FILTER__SYMBOL) 1301 return -1; 1302 1303 return sym && !(he->branch_info && he->branch_info->from.ms.sym && 1304 strstr(he->branch_info->from.ms.sym->name, sym)); 1305 } 1306 1307 static int hist_entry__sym_to_filter(struct hist_entry *he, int type, 1308 const void *arg) 1309 { 1310 const char *sym = arg; 1311 1312 if (type != HIST_FILTER__SYMBOL) 1313 return -1; 1314 1315 return sym && !(he->branch_info && he->branch_info->to.ms.sym && 1316 strstr(he->branch_info->to.ms.sym->name, sym)); 1317 } 1318 1319 struct sort_entry sort_dso_from = { 1320 .se_header = "Source Shared Object", 1321 .se_cmp = sort__dso_from_cmp, 1322 .se_snprintf = hist_entry__dso_from_snprintf, 1323 .se_filter = hist_entry__dso_from_filter, 1324 .se_width_idx = HISTC_DSO_FROM, 1325 }; 1326 1327 struct sort_entry sort_dso_to = { 1328 .se_header = "Target Shared Object", 1329 .se_cmp = sort__dso_to_cmp, 1330 .se_snprintf = hist_entry__dso_to_snprintf, 1331 .se_filter = hist_entry__dso_to_filter, 1332 .se_width_idx = HISTC_DSO_TO, 1333 }; 1334 1335 struct sort_entry sort_sym_from = { 1336 .se_header = "Source Symbol", 1337 .se_cmp = sort__sym_from_cmp, 1338 .se_snprintf = hist_entry__sym_from_snprintf, 1339 .se_filter = hist_entry__sym_from_filter, 1340 .se_width_idx = HISTC_SYMBOL_FROM, 1341 }; 1342 1343 struct sort_entry sort_sym_to = { 1344 .se_header = "Target Symbol", 1345 .se_cmp = sort__sym_to_cmp, 1346 .se_snprintf = hist_entry__sym_to_snprintf, 1347 .se_filter = hist_entry__sym_to_filter, 1348 .se_width_idx = HISTC_SYMBOL_TO, 1349 }; 1350 1351 static int _hist_entry__addr_snprintf(struct map_symbol *ms, 1352 u64 ip, char level, char *bf, size_t size, 1353 unsigned int width) 1354 { 1355 struct symbol *sym = ms->sym; 1356 struct map *map = ms->map; 1357 size_t ret = 0, offs; 1358 1359 ret += repsep_snprintf(bf + ret, size - ret, "[%c] ", level); 1360 if (sym && map) { 1361 if (sym->type == STT_OBJECT) { 1362 ret += repsep_snprintf(bf + ret, size - ret, "%s", sym->name); 1363 ret += repsep_snprintf(bf + ret, size - ret, "+0x%llx", 1364 ip - map__unmap_ip(map, sym->start)); 1365 } else { 1366 ret += repsep_snprintf(bf + ret, size - ret, "%.*s", 1367 width - ret, 1368 sym->name); 1369 offs = ip - sym->start; 1370 if (offs) 1371 ret += repsep_snprintf(bf + ret, size - ret, "+0x%llx", offs); 1372 } 1373 } else { 1374 size_t len = BITS_PER_LONG / 4; 1375 ret += repsep_snprintf(bf + ret, size - ret, "%-#.*llx", 1376 len, ip); 1377 } 1378 1379 return ret; 1380 } 1381 1382 static int hist_entry__addr_from_snprintf(struct hist_entry *he, char *bf, 1383 size_t size, unsigned int width) 1384 { 1385 if (he->branch_info) { 1386 struct addr_map_symbol *from = &he->branch_info->from; 1387 1388 return _hist_entry__addr_snprintf(&from->ms, from->al_addr, 1389 he->level, bf, size, width); 1390 } 1391 1392 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1393 } 1394 1395 static int hist_entry__addr_to_snprintf(struct hist_entry *he, char *bf, 1396 size_t size, unsigned int width) 1397 { 1398 if (he->branch_info) { 1399 struct addr_map_symbol *to = &he->branch_info->to; 1400 1401 return _hist_entry__addr_snprintf(&to->ms, to->al_addr, 1402 he->level, bf, size, width); 1403 } 1404 1405 return repsep_snprintf(bf, size, "%-*.*s", width, width, "N/A"); 1406 } 1407 1408 static int64_t 1409 sort__addr_from_cmp(struct hist_entry *left, struct hist_entry *right) 1410 { 1411 struct addr_map_symbol *from_l; 1412 struct addr_map_symbol *from_r; 1413 int64_t ret; 1414 1415 if (!left->branch_info || !right->branch_info) 1416 return cmp_null(left->branch_info, right->branch_info); 1417 1418 from_l = &left->branch_info->from; 1419 from_r = &right->branch_info->from; 1420 1421 /* 1422 * comparing symbol address alone is not enough since it's a 1423 * relative address within a dso. 1424 */ 1425 ret = _sort__dso_cmp(from_l->ms.map, from_r->ms.map); 1426 if (ret != 0) 1427 return ret; 1428 1429 return _sort__addr_cmp(from_l->addr, from_r->addr); 1430 } 1431 1432 static int64_t 1433 sort__addr_to_cmp(struct hist_entry *left, struct hist_entry *right) 1434 { 1435 struct addr_map_symbol *to_l; 1436 struct addr_map_symbol *to_r; 1437 int64_t ret; 1438 1439 if (!left->branch_info || !right->branch_info) 1440 return cmp_null(left->branch_info, right->branch_info); 1441 1442 to_l = &left->branch_info->to; 1443 to_r = &right->branch_info->to; 1444 1445 /* 1446 * comparing symbol address alone is not enough since it's a 1447 * relative address within a dso. 1448 */ 1449 ret = _sort__dso_cmp(to_l->ms.map, to_r->ms.map); 1450 if (ret != 0) 1451 return ret; 1452 1453 return _sort__addr_cmp(to_l->addr, to_r->addr); 1454 } 1455 1456 struct sort_entry sort_addr_from = { 1457 .se_header = "Source Address", 1458 .se_cmp = sort__addr_from_cmp, 1459 .se_snprintf = hist_entry__addr_from_snprintf, 1460 .se_filter = hist_entry__sym_from_filter, /* shared with sym_from */ 1461 .se_width_idx = HISTC_ADDR_FROM, 1462 }; 1463 1464 struct sort_entry sort_addr_to = { 1465 .se_header = "Target Address", 1466 .se_cmp = sort__addr_to_cmp, 1467 .se_snprintf = hist_entry__addr_to_snprintf, 1468 .se_filter = hist_entry__sym_to_filter, /* shared with sym_to */ 1469 .se_width_idx = HISTC_ADDR_TO, 1470 }; 1471 1472 1473 static int64_t 1474 sort__mispredict_cmp(struct hist_entry *left, struct hist_entry *right) 1475 { 1476 unsigned char mp, p; 1477 1478 if (!left->branch_info || !right->branch_info) 1479 return cmp_null(left->branch_info, right->branch_info); 1480 1481 mp = left->branch_info->flags.mispred != right->branch_info->flags.mispred; 1482 p = left->branch_info->flags.predicted != right->branch_info->flags.predicted; 1483 return mp || p; 1484 } 1485 1486 static int hist_entry__mispredict_snprintf(struct hist_entry *he, char *bf, 1487 size_t size, unsigned int width){ 1488 static const char *out = "N/A"; 1489 1490 if (he->branch_info) { 1491 if (he->branch_info->flags.predicted) 1492 out = "N"; 1493 else if (he->branch_info->flags.mispred) 1494 out = "Y"; 1495 } 1496 1497 return repsep_snprintf(bf, size, "%-*.*s", width, width, out); 1498 } 1499 1500 static int64_t 1501 sort__cycles_cmp(struct hist_entry *left, struct hist_entry *right) 1502 { 1503 if (!left->branch_info || !right->branch_info) 1504 return cmp_null(left->branch_info, right->branch_info); 1505 1506 return left->branch_info->flags.cycles - 1507 right->branch_info->flags.cycles; 1508 } 1509 1510 static int hist_entry__cycles_snprintf(struct hist_entry *he, char *bf, 1511 size_t size, unsigned int width) 1512 { 1513 if (!he->branch_info) 1514 return scnprintf(bf, size, "%-.*s", width, "N/A"); 1515 if (he->branch_info->flags.cycles == 0) 1516 return repsep_snprintf(bf, size, "%-*s", width, "-"); 1517 return repsep_snprintf(bf, size, "%-*hd", width, 1518 he->branch_info->flags.cycles); 1519 } 1520 1521 struct sort_entry sort_cycles = { 1522 .se_header = "Basic Block Cycles", 1523 .se_cmp = sort__cycles_cmp, 1524 .se_snprintf = hist_entry__cycles_snprintf, 1525 .se_width_idx = HISTC_CYCLES, 1526 }; 1527 1528 /* --sort daddr_sym */ 1529 int64_t 1530 sort__daddr_cmp(struct hist_entry *left, struct hist_entry *right) 1531 { 1532 uint64_t l = 0, r = 0; 1533 1534 if (left->mem_info) 1535 l = mem_info__daddr(left->mem_info)->addr; 1536 if (right->mem_info) 1537 r = mem_info__daddr(right->mem_info)->addr; 1538 1539 return (int64_t)(r - l); 1540 } 1541 1542 static int hist_entry__daddr_snprintf(struct hist_entry *he, char *bf, 1543 size_t size, unsigned int width) 1544 { 1545 uint64_t addr = 0; 1546 struct map_symbol *ms = NULL; 1547 1548 if (he->mem_info) { 1549 addr = mem_info__daddr(he->mem_info)->addr; 1550 ms = &mem_info__daddr(he->mem_info)->ms; 1551 } 1552 return _hist_entry__sym_snprintf(ms, addr, he->level, bf, size, width); 1553 } 1554 1555 int64_t 1556 sort__iaddr_cmp(struct hist_entry *left, struct hist_entry *right) 1557 { 1558 uint64_t l = 0, r = 0; 1559 1560 if (left->mem_info) 1561 l = mem_info__iaddr(left->mem_info)->addr; 1562 if (right->mem_info) 1563 r = mem_info__iaddr(right->mem_info)->addr; 1564 1565 return (int64_t)(r - l); 1566 } 1567 1568 static int hist_entry__iaddr_snprintf(struct hist_entry *he, char *bf, 1569 size_t size, unsigned int width) 1570 { 1571 uint64_t addr = 0; 1572 struct map_symbol *ms = NULL; 1573 1574 if (he->mem_info) { 1575 addr = mem_info__iaddr(he->mem_info)->addr; 1576 ms = &mem_info__iaddr(he->mem_info)->ms; 1577 } 1578 return _hist_entry__sym_snprintf(ms, addr, he->level, bf, size, width); 1579 } 1580 1581 static int64_t 1582 sort__dso_daddr_cmp(struct hist_entry *left, struct hist_entry *right) 1583 { 1584 struct map *map_l = NULL; 1585 struct map *map_r = NULL; 1586 1587 if (left->mem_info) 1588 map_l = mem_info__daddr(left->mem_info)->ms.map; 1589 if (right->mem_info) 1590 map_r = mem_info__daddr(right->mem_info)->ms.map; 1591 1592 return _sort__dso_cmp(map_l, map_r); 1593 } 1594 1595 static int hist_entry__dso_daddr_snprintf(struct hist_entry *he, char *bf, 1596 size_t size, unsigned int width) 1597 { 1598 struct map *map = NULL; 1599 1600 if (he->mem_info) 1601 map = mem_info__daddr(he->mem_info)->ms.map; 1602 1603 return _hist_entry__dso_snprintf(map, bf, size, width); 1604 } 1605 1606 static int64_t 1607 sort__locked_cmp(struct hist_entry *left, struct hist_entry *right) 1608 { 1609 union perf_mem_data_src data_src_l; 1610 union perf_mem_data_src data_src_r; 1611 1612 if (left->mem_info) 1613 data_src_l = *mem_info__data_src(left->mem_info); 1614 else 1615 data_src_l.mem_lock = PERF_MEM_LOCK_NA; 1616 1617 if (right->mem_info) 1618 data_src_r = *mem_info__data_src(right->mem_info); 1619 else 1620 data_src_r.mem_lock = PERF_MEM_LOCK_NA; 1621 1622 return (int64_t)(data_src_r.mem_lock - data_src_l.mem_lock); 1623 } 1624 1625 static int hist_entry__locked_snprintf(struct hist_entry *he, char *bf, 1626 size_t size, unsigned int width) 1627 { 1628 char out[10]; 1629 1630 perf_mem__lck_scnprintf(out, sizeof(out), he->mem_info); 1631 return repsep_snprintf(bf, size, "%.*s", width, out); 1632 } 1633 1634 static int64_t 1635 sort__tlb_cmp(struct hist_entry *left, struct hist_entry *right) 1636 { 1637 union perf_mem_data_src data_src_l; 1638 union perf_mem_data_src data_src_r; 1639 1640 if (left->mem_info) 1641 data_src_l = *mem_info__data_src(left->mem_info); 1642 else 1643 data_src_l.mem_dtlb = PERF_MEM_TLB_NA; 1644 1645 if (right->mem_info) 1646 data_src_r = *mem_info__data_src(right->mem_info); 1647 else 1648 data_src_r.mem_dtlb = PERF_MEM_TLB_NA; 1649 1650 return (int64_t)(data_src_r.mem_dtlb - data_src_l.mem_dtlb); 1651 } 1652 1653 static int hist_entry__tlb_snprintf(struct hist_entry *he, char *bf, 1654 size_t size, unsigned int width) 1655 { 1656 char out[64]; 1657 1658 perf_mem__tlb_scnprintf(out, sizeof(out), he->mem_info); 1659 return repsep_snprintf(bf, size, "%-*s", width, out); 1660 } 1661 1662 static int64_t 1663 sort__lvl_cmp(struct hist_entry *left, struct hist_entry *right) 1664 { 1665 union perf_mem_data_src data_src_l; 1666 union perf_mem_data_src data_src_r; 1667 1668 if (left->mem_info) 1669 data_src_l = *mem_info__data_src(left->mem_info); 1670 else 1671 data_src_l.mem_lvl = PERF_MEM_LVL_NA; 1672 1673 if (right->mem_info) 1674 data_src_r = *mem_info__data_src(right->mem_info); 1675 else 1676 data_src_r.mem_lvl = PERF_MEM_LVL_NA; 1677 1678 return (int64_t)(data_src_r.mem_lvl - data_src_l.mem_lvl); 1679 } 1680 1681 static int hist_entry__lvl_snprintf(struct hist_entry *he, char *bf, 1682 size_t size, unsigned int width) 1683 { 1684 char out[64]; 1685 1686 perf_mem__lvl_scnprintf(out, sizeof(out), he->mem_info); 1687 return repsep_snprintf(bf, size, "%-*s", width, out); 1688 } 1689 1690 static int64_t 1691 sort__snoop_cmp(struct hist_entry *left, struct hist_entry *right) 1692 { 1693 union perf_mem_data_src data_src_l; 1694 union perf_mem_data_src data_src_r; 1695 1696 if (left->mem_info) 1697 data_src_l = *mem_info__data_src(left->mem_info); 1698 else 1699 data_src_l.mem_snoop = PERF_MEM_SNOOP_NA; 1700 1701 if (right->mem_info) 1702 data_src_r = *mem_info__data_src(right->mem_info); 1703 else 1704 data_src_r.mem_snoop = PERF_MEM_SNOOP_NA; 1705 1706 return (int64_t)(data_src_r.mem_snoop - data_src_l.mem_snoop); 1707 } 1708 1709 static int hist_entry__snoop_snprintf(struct hist_entry *he, char *bf, 1710 size_t size, unsigned int width) 1711 { 1712 char out[64]; 1713 1714 perf_mem__snp_scnprintf(out, sizeof(out), he->mem_info); 1715 return repsep_snprintf(bf, size, "%-*s", width, out); 1716 } 1717 1718 int64_t 1719 sort__dcacheline_cmp(struct hist_entry *left, struct hist_entry *right) 1720 { 1721 u64 l, r; 1722 struct map *l_map, *r_map; 1723 struct dso *l_dso, *r_dso; 1724 int rc; 1725 1726 if (!left->mem_info) return -1; 1727 if (!right->mem_info) return 1; 1728 1729 /* group event types together */ 1730 if (left->cpumode > right->cpumode) return -1; 1731 if (left->cpumode < right->cpumode) return 1; 1732 1733 l_map = mem_info__daddr(left->mem_info)->ms.map; 1734 r_map = mem_info__daddr(right->mem_info)->ms.map; 1735 1736 /* if both are NULL, jump to sort on al_addr instead */ 1737 if (!l_map && !r_map) 1738 goto addr; 1739 1740 if (!l_map) return -1; 1741 if (!r_map) return 1; 1742 1743 l_dso = map__dso(l_map); 1744 r_dso = map__dso(r_map); 1745 rc = dso__cmp_id(l_dso, r_dso); 1746 if (rc) 1747 return rc; 1748 /* 1749 * Addresses with no major/minor numbers or build ID are assumed to be 1750 * anonymous in userspace. Sort those on pid then address. 1751 * 1752 * The kernel and non-zero major/minor mapped areas are 1753 * assumed to be unity mapped. Sort those on address. 1754 */ 1755 if (left->cpumode != PERF_RECORD_MISC_KERNEL && (map__flags(l_map) & MAP_SHARED) == 0) { 1756 const struct dso_id *dso_id = dso__id_const(l_dso); 1757 1758 if (!dso_id->mmap2_valid) 1759 dso_id = dso__id_const(r_dso); 1760 1761 if (!build_id__is_defined(&dso_id->build_id) && 1762 (!dso_id->mmap2_valid || (dso_id->maj == 0 && dso_id->min == 0))) { 1763 /* userspace anonymous */ 1764 1765 if (thread__pid(left->thread) > thread__pid(right->thread)) 1766 return -1; 1767 if (thread__pid(left->thread) < thread__pid(right->thread)) 1768 return 1; 1769 } 1770 } 1771 1772 addr: 1773 /* al_addr does all the right addr - start + offset calculations */ 1774 l = cl_address(mem_info__daddr(left->mem_info)->al_addr, chk_double_cl); 1775 r = cl_address(mem_info__daddr(right->mem_info)->al_addr, chk_double_cl); 1776 1777 if (l > r) return -1; 1778 if (l < r) return 1; 1779 1780 return 0; 1781 } 1782 1783 static int hist_entry__dcacheline_snprintf(struct hist_entry *he, char *bf, 1784 size_t size, unsigned int width) 1785 { 1786 1787 uint64_t addr = 0; 1788 struct map_symbol *ms = NULL; 1789 char level = he->level; 1790 1791 if (he->mem_info) { 1792 struct map *map = mem_info__daddr(he->mem_info)->ms.map; 1793 struct dso *dso = map ? map__dso(map) : NULL; 1794 const struct dso_id *dso_id = dso ? dso__id_const(dso) : &dso_id_empty; 1795 1796 addr = cl_address(mem_info__daddr(he->mem_info)->al_addr, chk_double_cl); 1797 ms = &mem_info__daddr(he->mem_info)->ms; 1798 1799 /* print [s] for shared data mmaps */ 1800 if ((he->cpumode != PERF_RECORD_MISC_KERNEL) && 1801 map && !(map__prot(map) & PROT_EXEC) && 1802 (map__flags(map) & MAP_SHARED) && 1803 (!dso_id->mmap2_valid || (dso_id->maj == 0 && dso_id->min == 0))) 1804 level = 's'; 1805 else if (!map) 1806 level = 'X'; 1807 } 1808 return _hist_entry__sym_snprintf(ms, addr, level, bf, size, width); 1809 } 1810 1811 struct sort_entry sort_mispredict = { 1812 .se_header = "Branch Mispredicted", 1813 .se_cmp = sort__mispredict_cmp, 1814 .se_snprintf = hist_entry__mispredict_snprintf, 1815 .se_width_idx = HISTC_MISPREDICT, 1816 }; 1817 1818 static int64_t 1819 sort__weight_cmp(struct hist_entry *left, struct hist_entry *right) 1820 { 1821 return left->weight - right->weight; 1822 } 1823 1824 static int hist_entry__local_weight_snprintf(struct hist_entry *he, char *bf, 1825 size_t size, unsigned int width) 1826 { 1827 return repsep_snprintf(bf, size, "%-*llu", width, he->weight); 1828 } 1829 1830 struct sort_entry sort_local_weight = { 1831 .se_header = "Local Weight", 1832 .se_cmp = sort__weight_cmp, 1833 .se_snprintf = hist_entry__local_weight_snprintf, 1834 .se_width_idx = HISTC_LOCAL_WEIGHT, 1835 }; 1836 1837 static int hist_entry__global_weight_snprintf(struct hist_entry *he, char *bf, 1838 size_t size, unsigned int width) 1839 { 1840 return repsep_snprintf(bf, size, "%-*llu", width, 1841 he->weight * he->stat.nr_events); 1842 } 1843 1844 struct sort_entry sort_global_weight = { 1845 .se_header = "Weight", 1846 .se_cmp = sort__weight_cmp, 1847 .se_snprintf = hist_entry__global_weight_snprintf, 1848 .se_width_idx = HISTC_GLOBAL_WEIGHT, 1849 }; 1850 1851 static int64_t 1852 sort__ins_lat_cmp(struct hist_entry *left, struct hist_entry *right) 1853 { 1854 return left->ins_lat - right->ins_lat; 1855 } 1856 1857 static int hist_entry__local_ins_lat_snprintf(struct hist_entry *he, char *bf, 1858 size_t size, unsigned int width) 1859 { 1860 return repsep_snprintf(bf, size, "%-*u", width, he->ins_lat); 1861 } 1862 1863 struct sort_entry sort_local_ins_lat = { 1864 .se_header = "Local INSTR Latency", 1865 .se_cmp = sort__ins_lat_cmp, 1866 .se_snprintf = hist_entry__local_ins_lat_snprintf, 1867 .se_width_idx = HISTC_LOCAL_INS_LAT, 1868 }; 1869 1870 static int hist_entry__global_ins_lat_snprintf(struct hist_entry *he, char *bf, 1871 size_t size, unsigned int width) 1872 { 1873 return repsep_snprintf(bf, size, "%-*u", width, 1874 he->ins_lat * he->stat.nr_events); 1875 } 1876 1877 struct sort_entry sort_global_ins_lat = { 1878 .se_header = "INSTR Latency", 1879 .se_cmp = sort__ins_lat_cmp, 1880 .se_snprintf = hist_entry__global_ins_lat_snprintf, 1881 .se_width_idx = HISTC_GLOBAL_INS_LAT, 1882 }; 1883 1884 static int64_t 1885 sort__p_stage_cyc_cmp(struct hist_entry *left, struct hist_entry *right) 1886 { 1887 return left->p_stage_cyc - right->p_stage_cyc; 1888 } 1889 1890 static int hist_entry__global_p_stage_cyc_snprintf(struct hist_entry *he, char *bf, 1891 size_t size, unsigned int width) 1892 { 1893 return repsep_snprintf(bf, size, "%-*u", width, 1894 he->p_stage_cyc * he->stat.nr_events); 1895 } 1896 1897 1898 static int hist_entry__p_stage_cyc_snprintf(struct hist_entry *he, char *bf, 1899 size_t size, unsigned int width) 1900 { 1901 return repsep_snprintf(bf, size, "%-*u", width, he->p_stage_cyc); 1902 } 1903 1904 struct sort_entry sort_local_p_stage_cyc = { 1905 .se_header = "Local Pipeline Stage Cycle", 1906 .se_cmp = sort__p_stage_cyc_cmp, 1907 .se_snprintf = hist_entry__p_stage_cyc_snprintf, 1908 .se_width_idx = HISTC_LOCAL_P_STAGE_CYC, 1909 }; 1910 1911 struct sort_entry sort_global_p_stage_cyc = { 1912 .se_header = "Pipeline Stage Cycle", 1913 .se_cmp = sort__p_stage_cyc_cmp, 1914 .se_snprintf = hist_entry__global_p_stage_cyc_snprintf, 1915 .se_width_idx = HISTC_GLOBAL_P_STAGE_CYC, 1916 }; 1917 1918 struct sort_entry sort_mem_daddr_sym = { 1919 .se_header = "Data Symbol", 1920 .se_cmp = sort__daddr_cmp, 1921 .se_snprintf = hist_entry__daddr_snprintf, 1922 .se_width_idx = HISTC_MEM_DADDR_SYMBOL, 1923 }; 1924 1925 struct sort_entry sort_mem_iaddr_sym = { 1926 .se_header = "Code Symbol", 1927 .se_cmp = sort__iaddr_cmp, 1928 .se_snprintf = hist_entry__iaddr_snprintf, 1929 .se_width_idx = HISTC_MEM_IADDR_SYMBOL, 1930 }; 1931 1932 struct sort_entry sort_mem_daddr_dso = { 1933 .se_header = "Data Object", 1934 .se_cmp = sort__dso_daddr_cmp, 1935 .se_snprintf = hist_entry__dso_daddr_snprintf, 1936 .se_width_idx = HISTC_MEM_DADDR_DSO, 1937 }; 1938 1939 struct sort_entry sort_mem_locked = { 1940 .se_header = "Locked", 1941 .se_cmp = sort__locked_cmp, 1942 .se_snprintf = hist_entry__locked_snprintf, 1943 .se_width_idx = HISTC_MEM_LOCKED, 1944 }; 1945 1946 struct sort_entry sort_mem_tlb = { 1947 .se_header = "TLB access", 1948 .se_cmp = sort__tlb_cmp, 1949 .se_snprintf = hist_entry__tlb_snprintf, 1950 .se_width_idx = HISTC_MEM_TLB, 1951 }; 1952 1953 struct sort_entry sort_mem_lvl = { 1954 .se_header = "Memory access", 1955 .se_cmp = sort__lvl_cmp, 1956 .se_snprintf = hist_entry__lvl_snprintf, 1957 .se_width_idx = HISTC_MEM_LVL, 1958 }; 1959 1960 struct sort_entry sort_mem_snoop = { 1961 .se_header = "Snoop", 1962 .se_cmp = sort__snoop_cmp, 1963 .se_snprintf = hist_entry__snoop_snprintf, 1964 .se_width_idx = HISTC_MEM_SNOOP, 1965 }; 1966 1967 struct sort_entry sort_mem_dcacheline = { 1968 .se_header = "Data Cacheline", 1969 .se_cmp = sort__dcacheline_cmp, 1970 .se_snprintf = hist_entry__dcacheline_snprintf, 1971 .se_width_idx = HISTC_MEM_DCACHELINE, 1972 }; 1973 1974 static int64_t 1975 sort__blocked_cmp(struct hist_entry *left, struct hist_entry *right) 1976 { 1977 union perf_mem_data_src data_src_l; 1978 union perf_mem_data_src data_src_r; 1979 1980 if (left->mem_info) 1981 data_src_l = *mem_info__data_src(left->mem_info); 1982 else 1983 data_src_l.mem_blk = PERF_MEM_BLK_NA; 1984 1985 if (right->mem_info) 1986 data_src_r = *mem_info__data_src(right->mem_info); 1987 else 1988 data_src_r.mem_blk = PERF_MEM_BLK_NA; 1989 1990 return (int64_t)(data_src_r.mem_blk - data_src_l.mem_blk); 1991 } 1992 1993 static int hist_entry__blocked_snprintf(struct hist_entry *he, char *bf, 1994 size_t size, unsigned int width) 1995 { 1996 char out[16]; 1997 1998 perf_mem__blk_scnprintf(out, sizeof(out), he->mem_info); 1999 return repsep_snprintf(bf, size, "%.*s", width, out); 2000 } 2001 2002 struct sort_entry sort_mem_blocked = { 2003 .se_header = "Blocked", 2004 .se_cmp = sort__blocked_cmp, 2005 .se_snprintf = hist_entry__blocked_snprintf, 2006 .se_width_idx = HISTC_MEM_BLOCKED, 2007 }; 2008 2009 static int64_t 2010 sort__phys_daddr_cmp(struct hist_entry *left, struct hist_entry *right) 2011 { 2012 uint64_t l = 0, r = 0; 2013 2014 if (left->mem_info) 2015 l = mem_info__daddr(left->mem_info)->phys_addr; 2016 if (right->mem_info) 2017 r = mem_info__daddr(right->mem_info)->phys_addr; 2018 2019 return (int64_t)(r - l); 2020 } 2021 2022 static int hist_entry__phys_daddr_snprintf(struct hist_entry *he, char *bf, 2023 size_t size, unsigned int width) 2024 { 2025 uint64_t addr = 0; 2026 size_t ret = 0; 2027 size_t len = BITS_PER_LONG / 4; 2028 2029 addr = mem_info__daddr(he->mem_info)->phys_addr; 2030 2031 ret += repsep_snprintf(bf + ret, size - ret, "[%c] ", he->level); 2032 2033 ret += repsep_snprintf(bf + ret, size - ret, "%-#.*llx", len, addr); 2034 2035 ret += repsep_snprintf(bf + ret, size - ret, "%-*s", width - ret, ""); 2036 2037 if (ret > width) 2038 bf[width] = '\0'; 2039 2040 return width; 2041 } 2042 2043 struct sort_entry sort_mem_phys_daddr = { 2044 .se_header = "Data Physical Address", 2045 .se_cmp = sort__phys_daddr_cmp, 2046 .se_snprintf = hist_entry__phys_daddr_snprintf, 2047 .se_width_idx = HISTC_MEM_PHYS_DADDR, 2048 }; 2049 2050 static int64_t 2051 sort__data_page_size_cmp(struct hist_entry *left, struct hist_entry *right) 2052 { 2053 uint64_t l = 0, r = 0; 2054 2055 if (left->mem_info) 2056 l = mem_info__daddr(left->mem_info)->data_page_size; 2057 if (right->mem_info) 2058 r = mem_info__daddr(right->mem_info)->data_page_size; 2059 2060 return (int64_t)(r - l); 2061 } 2062 2063 static int hist_entry__data_page_size_snprintf(struct hist_entry *he, char *bf, 2064 size_t size, unsigned int width) 2065 { 2066 char str[PAGE_SIZE_NAME_LEN]; 2067 2068 return repsep_snprintf(bf, size, "%-*s", width, 2069 get_page_size_name(mem_info__daddr(he->mem_info)->data_page_size, str)); 2070 } 2071 2072 struct sort_entry sort_mem_data_page_size = { 2073 .se_header = "Data Page Size", 2074 .se_cmp = sort__data_page_size_cmp, 2075 .se_snprintf = hist_entry__data_page_size_snprintf, 2076 .se_width_idx = HISTC_MEM_DATA_PAGE_SIZE, 2077 }; 2078 2079 static int64_t 2080 sort__code_page_size_cmp(struct hist_entry *left, struct hist_entry *right) 2081 { 2082 uint64_t l = left->code_page_size; 2083 uint64_t r = right->code_page_size; 2084 2085 return (int64_t)(r - l); 2086 } 2087 2088 static int hist_entry__code_page_size_snprintf(struct hist_entry *he, char *bf, 2089 size_t size, unsigned int width) 2090 { 2091 char str[PAGE_SIZE_NAME_LEN]; 2092 2093 return repsep_snprintf(bf, size, "%-*s", width, 2094 get_page_size_name(he->code_page_size, str)); 2095 } 2096 2097 struct sort_entry sort_code_page_size = { 2098 .se_header = "Code Page Size", 2099 .se_cmp = sort__code_page_size_cmp, 2100 .se_snprintf = hist_entry__code_page_size_snprintf, 2101 .se_width_idx = HISTC_CODE_PAGE_SIZE, 2102 }; 2103 2104 static int64_t 2105 sort__abort_cmp(struct hist_entry *left, struct hist_entry *right) 2106 { 2107 if (!left->branch_info || !right->branch_info) 2108 return cmp_null(left->branch_info, right->branch_info); 2109 2110 return left->branch_info->flags.abort != 2111 right->branch_info->flags.abort; 2112 } 2113 2114 static int hist_entry__abort_snprintf(struct hist_entry *he, char *bf, 2115 size_t size, unsigned int width) 2116 { 2117 static const char *out = "N/A"; 2118 2119 if (he->branch_info) { 2120 if (he->branch_info->flags.abort) 2121 out = "A"; 2122 else 2123 out = "."; 2124 } 2125 2126 return repsep_snprintf(bf, size, "%-*s", width, out); 2127 } 2128 2129 struct sort_entry sort_abort = { 2130 .se_header = "Transaction abort", 2131 .se_cmp = sort__abort_cmp, 2132 .se_snprintf = hist_entry__abort_snprintf, 2133 .se_width_idx = HISTC_ABORT, 2134 }; 2135 2136 static int64_t 2137 sort__in_tx_cmp(struct hist_entry *left, struct hist_entry *right) 2138 { 2139 if (!left->branch_info || !right->branch_info) 2140 return cmp_null(left->branch_info, right->branch_info); 2141 2142 return left->branch_info->flags.in_tx != 2143 right->branch_info->flags.in_tx; 2144 } 2145 2146 static int hist_entry__in_tx_snprintf(struct hist_entry *he, char *bf, 2147 size_t size, unsigned int width) 2148 { 2149 static const char *out = "N/A"; 2150 2151 if (he->branch_info) { 2152 if (he->branch_info->flags.in_tx) 2153 out = "T"; 2154 else 2155 out = "."; 2156 } 2157 2158 return repsep_snprintf(bf, size, "%-*s", width, out); 2159 } 2160 2161 struct sort_entry sort_in_tx = { 2162 .se_header = "Branch in transaction", 2163 .se_cmp = sort__in_tx_cmp, 2164 .se_snprintf = hist_entry__in_tx_snprintf, 2165 .se_width_idx = HISTC_IN_TX, 2166 }; 2167 2168 static int64_t 2169 sort__transaction_cmp(struct hist_entry *left, struct hist_entry *right) 2170 { 2171 return left->transaction - right->transaction; 2172 } 2173 2174 static inline char *add_str(char *p, const char *str) 2175 { 2176 strcpy(p, str); 2177 return p + strlen(str); 2178 } 2179 2180 static struct txbit { 2181 unsigned flag; 2182 const char *name; 2183 int skip_for_len; 2184 } txbits[] = { 2185 { PERF_TXN_ELISION, "EL ", 0 }, 2186 { PERF_TXN_TRANSACTION, "TX ", 1 }, 2187 { PERF_TXN_SYNC, "SYNC ", 1 }, 2188 { PERF_TXN_ASYNC, "ASYNC ", 0 }, 2189 { PERF_TXN_RETRY, "RETRY ", 0 }, 2190 { PERF_TXN_CONFLICT, "CON ", 0 }, 2191 { PERF_TXN_CAPACITY_WRITE, "CAP-WRITE ", 1 }, 2192 { PERF_TXN_CAPACITY_READ, "CAP-READ ", 0 }, 2193 { 0, NULL, 0 } 2194 }; 2195 2196 int hist_entry__transaction_len(void) 2197 { 2198 int i; 2199 int len = 0; 2200 2201 for (i = 0; txbits[i].name; i++) { 2202 if (!txbits[i].skip_for_len) 2203 len += strlen(txbits[i].name); 2204 } 2205 len += 4; /* :XX<space> */ 2206 return len; 2207 } 2208 2209 static int hist_entry__transaction_snprintf(struct hist_entry *he, char *bf, 2210 size_t size, unsigned int width) 2211 { 2212 u64 t = he->transaction; 2213 char buf[128]; 2214 char *p = buf; 2215 int i; 2216 2217 buf[0] = 0; 2218 for (i = 0; txbits[i].name; i++) 2219 if (txbits[i].flag & t) 2220 p = add_str(p, txbits[i].name); 2221 if (t && !(t & (PERF_TXN_SYNC|PERF_TXN_ASYNC))) 2222 p = add_str(p, "NEITHER "); 2223 if (t & PERF_TXN_ABORT_MASK) { 2224 sprintf(p, ":%" PRIx64, 2225 (t & PERF_TXN_ABORT_MASK) >> 2226 PERF_TXN_ABORT_SHIFT); 2227 p += strlen(p); 2228 } 2229 2230 return repsep_snprintf(bf, size, "%-*s", width, buf); 2231 } 2232 2233 struct sort_entry sort_transaction = { 2234 .se_header = "Transaction ", 2235 .se_cmp = sort__transaction_cmp, 2236 .se_snprintf = hist_entry__transaction_snprintf, 2237 .se_width_idx = HISTC_TRANSACTION, 2238 }; 2239 2240 /* --sort symbol_size */ 2241 2242 static int64_t _sort__sym_size_cmp(struct symbol *sym_l, struct symbol *sym_r) 2243 { 2244 int64_t size_l = sym_l != NULL ? symbol__size(sym_l) : 0; 2245 int64_t size_r = sym_r != NULL ? symbol__size(sym_r) : 0; 2246 2247 return size_l < size_r ? -1 : 2248 size_l == size_r ? 0 : 1; 2249 } 2250 2251 static int64_t 2252 sort__sym_size_cmp(struct hist_entry *left, struct hist_entry *right) 2253 { 2254 return _sort__sym_size_cmp(right->ms.sym, left->ms.sym); 2255 } 2256 2257 static int _hist_entry__sym_size_snprintf(struct symbol *sym, char *bf, 2258 size_t bf_size, unsigned int width) 2259 { 2260 if (sym) 2261 return repsep_snprintf(bf, bf_size, "%*d", width, symbol__size(sym)); 2262 2263 return repsep_snprintf(bf, bf_size, "%*s", width, "unknown"); 2264 } 2265 2266 static int hist_entry__sym_size_snprintf(struct hist_entry *he, char *bf, 2267 size_t size, unsigned int width) 2268 { 2269 return _hist_entry__sym_size_snprintf(he->ms.sym, bf, size, width); 2270 } 2271 2272 struct sort_entry sort_sym_size = { 2273 .se_header = "Symbol size", 2274 .se_cmp = sort__sym_size_cmp, 2275 .se_snprintf = hist_entry__sym_size_snprintf, 2276 .se_width_idx = HISTC_SYM_SIZE, 2277 }; 2278 2279 /* --sort dso_size */ 2280 2281 static int64_t _sort__dso_size_cmp(struct map *map_l, struct map *map_r) 2282 { 2283 int64_t size_l = map_l != NULL ? map__size(map_l) : 0; 2284 int64_t size_r = map_r != NULL ? map__size(map_r) : 0; 2285 2286 return size_l < size_r ? -1 : 2287 size_l == size_r ? 0 : 1; 2288 } 2289 2290 static int64_t 2291 sort__dso_size_cmp(struct hist_entry *left, struct hist_entry *right) 2292 { 2293 return _sort__dso_size_cmp(right->ms.map, left->ms.map); 2294 } 2295 2296 static int _hist_entry__dso_size_snprintf(struct map *map, char *bf, 2297 size_t bf_size, unsigned int width) 2298 { 2299 if (map && map__dso(map)) 2300 return repsep_snprintf(bf, bf_size, "%*d", width, map__size(map)); 2301 2302 return repsep_snprintf(bf, bf_size, "%*s", width, "unknown"); 2303 } 2304 2305 static int hist_entry__dso_size_snprintf(struct hist_entry *he, char *bf, 2306 size_t size, unsigned int width) 2307 { 2308 return _hist_entry__dso_size_snprintf(he->ms.map, bf, size, width); 2309 } 2310 2311 struct sort_entry sort_dso_size = { 2312 .se_header = "DSO size", 2313 .se_cmp = sort__dso_size_cmp, 2314 .se_snprintf = hist_entry__dso_size_snprintf, 2315 .se_width_idx = HISTC_DSO_SIZE, 2316 }; 2317 2318 /* --sort addr */ 2319 2320 static int64_t 2321 sort__addr_cmp(struct hist_entry *left, struct hist_entry *right) 2322 { 2323 u64 left_ip = left->ip; 2324 u64 right_ip = right->ip; 2325 struct map *left_map = left->ms.map; 2326 struct map *right_map = right->ms.map; 2327 2328 if (left_map) 2329 left_ip = map__unmap_ip(left_map, left_ip); 2330 if (right_map) 2331 right_ip = map__unmap_ip(right_map, right_ip); 2332 2333 return _sort__addr_cmp(left_ip, right_ip); 2334 } 2335 2336 static int hist_entry__addr_snprintf(struct hist_entry *he, char *bf, 2337 size_t size, unsigned int width) 2338 { 2339 u64 ip = he->ip; 2340 struct map *map = he->ms.map; 2341 2342 if (map) 2343 ip = map__unmap_ip(map, ip); 2344 2345 return repsep_snprintf(bf, size, "%-#*llx", width, ip); 2346 } 2347 2348 struct sort_entry sort_addr = { 2349 .se_header = "Address", 2350 .se_cmp = sort__addr_cmp, 2351 .se_snprintf = hist_entry__addr_snprintf, 2352 .se_width_idx = HISTC_ADDR, 2353 }; 2354 2355 /* --sort type */ 2356 2357 struct annotated_data_type unknown_type = { 2358 .self = { 2359 .type_name = (char *)"(unknown)", 2360 .children = LIST_HEAD_INIT(unknown_type.self.children), 2361 }, 2362 }; 2363 2364 static int64_t 2365 sort__type_cmp(struct hist_entry *left, struct hist_entry *right) 2366 { 2367 return sort__addr_cmp(left, right); 2368 } 2369 2370 static void sort__type_init(struct hist_entry *he) 2371 { 2372 if (he->mem_type) 2373 return; 2374 2375 he->mem_type = hist_entry__get_data_type(he); 2376 if (he->mem_type == NULL) { 2377 he->mem_type = &unknown_type; 2378 he->mem_type_off = 0; 2379 } 2380 } 2381 2382 static int64_t 2383 sort__type_collapse(struct hist_entry *left, struct hist_entry *right) 2384 { 2385 struct annotated_data_type *left_type = left->mem_type; 2386 struct annotated_data_type *right_type = right->mem_type; 2387 2388 if (!left_type) { 2389 sort__type_init(left); 2390 left_type = left->mem_type; 2391 } 2392 2393 if (!right_type) { 2394 sort__type_init(right); 2395 right_type = right->mem_type; 2396 } 2397 2398 return strcmp(left_type->self.type_name, right_type->self.type_name); 2399 } 2400 2401 static int64_t 2402 sort__type_sort(struct hist_entry *left, struct hist_entry *right) 2403 { 2404 return sort__type_collapse(left, right); 2405 } 2406 2407 static int hist_entry__type_snprintf(struct hist_entry *he, char *bf, 2408 size_t size, unsigned int width) 2409 { 2410 return repsep_snprintf(bf, size, "%-*s", width, he->mem_type->self.type_name); 2411 } 2412 2413 struct sort_entry sort_type = { 2414 .se_header = "Data Type", 2415 .se_cmp = sort__type_cmp, 2416 .se_collapse = sort__type_collapse, 2417 .se_sort = sort__type_sort, 2418 .se_init = sort__type_init, 2419 .se_snprintf = hist_entry__type_snprintf, 2420 .se_width_idx = HISTC_TYPE, 2421 }; 2422 2423 /* --sort typeoff */ 2424 2425 static int64_t 2426 sort__typeoff_sort(struct hist_entry *left, struct hist_entry *right) 2427 { 2428 struct annotated_data_type *left_type = left->mem_type; 2429 struct annotated_data_type *right_type = right->mem_type; 2430 int64_t ret; 2431 2432 if (!left_type) { 2433 sort__type_init(left); 2434 left_type = left->mem_type; 2435 } 2436 2437 if (!right_type) { 2438 sort__type_init(right); 2439 right_type = right->mem_type; 2440 } 2441 2442 ret = strcmp(left_type->self.type_name, right_type->self.type_name); 2443 if (ret) 2444 return ret; 2445 return left->mem_type_off - right->mem_type_off; 2446 } 2447 2448 static int hist_entry__typeoff_snprintf(struct hist_entry *he, char *bf, 2449 size_t size, unsigned int width __maybe_unused) 2450 { 2451 struct annotated_data_type *he_type = he->mem_type; 2452 char buf[4096]; 2453 2454 if (he_type == &unknown_type || he_type == &stackop_type || 2455 he_type == &canary_type) 2456 return repsep_snprintf(bf, size, "%s", he_type->self.type_name); 2457 2458 if (!annotated_data_type__get_member_name(he_type, buf, sizeof(buf), 2459 he->mem_type_off)) 2460 scnprintf(buf, sizeof(buf), "no field"); 2461 2462 return repsep_snprintf(bf, size, "%s +%#x (%s)", he_type->self.type_name, 2463 he->mem_type_off, buf); 2464 } 2465 2466 struct sort_entry sort_type_offset = { 2467 .se_header = "Data Type Offset", 2468 .se_cmp = sort__type_cmp, 2469 .se_collapse = sort__typeoff_sort, 2470 .se_sort = sort__typeoff_sort, 2471 .se_init = sort__type_init, 2472 .se_snprintf = hist_entry__typeoff_snprintf, 2473 .se_width_idx = HISTC_TYPE_OFFSET, 2474 }; 2475 2476 /* --sort typecln */ 2477 2478 /* TODO: use actual value in the system */ 2479 #define TYPE_CACHELINE_SIZE 64 2480 2481 static int64_t 2482 sort__typecln_sort(struct hist_entry *left, struct hist_entry *right) 2483 { 2484 struct annotated_data_type *left_type = left->mem_type; 2485 struct annotated_data_type *right_type = right->mem_type; 2486 int64_t left_cln, right_cln; 2487 int64_t ret; 2488 2489 if (!left_type) { 2490 sort__type_init(left); 2491 left_type = left->mem_type; 2492 } 2493 2494 if (!right_type) { 2495 sort__type_init(right); 2496 right_type = right->mem_type; 2497 } 2498 2499 ret = strcmp(left_type->self.type_name, right_type->self.type_name); 2500 if (ret) 2501 return ret; 2502 2503 left_cln = left->mem_type_off / TYPE_CACHELINE_SIZE; 2504 right_cln = right->mem_type_off / TYPE_CACHELINE_SIZE; 2505 return left_cln - right_cln; 2506 } 2507 2508 static int hist_entry__typecln_snprintf(struct hist_entry *he, char *bf, 2509 size_t size, unsigned int width __maybe_unused) 2510 { 2511 struct annotated_data_type *he_type = he->mem_type; 2512 2513 return repsep_snprintf(bf, size, "%s: cache-line %d", he_type->self.type_name, 2514 he->mem_type_off / TYPE_CACHELINE_SIZE); 2515 } 2516 2517 struct sort_entry sort_type_cacheline = { 2518 .se_header = "Data Type Cacheline", 2519 .se_cmp = sort__type_cmp, 2520 .se_collapse = sort__typecln_sort, 2521 .se_sort = sort__typecln_sort, 2522 .se_init = sort__type_init, 2523 .se_snprintf = hist_entry__typecln_snprintf, 2524 .se_width_idx = HISTC_TYPE_CACHELINE, 2525 }; 2526 2527 2528 struct sort_dimension { 2529 const char *name; 2530 struct sort_entry *entry; 2531 int taken; 2532 }; 2533 2534 int __weak arch_support_sort_key(const char *sort_key __maybe_unused) 2535 { 2536 return 0; 2537 } 2538 2539 const char * __weak arch_perf_header_entry(const char *se_header) 2540 { 2541 return se_header; 2542 } 2543 2544 static void sort_dimension_add_dynamic_header(struct sort_dimension *sd) 2545 { 2546 sd->entry->se_header = arch_perf_header_entry(sd->entry->se_header); 2547 } 2548 2549 #define DIM(d, n, func) [d] = { .name = n, .entry = &(func) } 2550 2551 static struct sort_dimension common_sort_dimensions[] = { 2552 DIM(SORT_PID, "pid", sort_thread), 2553 DIM(SORT_TGID, "tgid", sort_tgid), 2554 DIM(SORT_COMM, "comm", sort_comm), 2555 DIM(SORT_DSO, "dso", sort_dso), 2556 DIM(SORT_SYM, "symbol", sort_sym), 2557 DIM(SORT_PARENT, "parent", sort_parent), 2558 DIM(SORT_CPU, "cpu", sort_cpu), 2559 DIM(SORT_SOCKET, "socket", sort_socket), 2560 DIM(SORT_SRCLINE, "srcline", sort_srcline), 2561 DIM(SORT_SRCFILE, "srcfile", sort_srcfile), 2562 DIM(SORT_LOCAL_WEIGHT, "local_weight", sort_local_weight), 2563 DIM(SORT_GLOBAL_WEIGHT, "weight", sort_global_weight), 2564 DIM(SORT_TRANSACTION, "transaction", sort_transaction), 2565 #ifdef HAVE_LIBTRACEEVENT 2566 DIM(SORT_TRACE, "trace", sort_trace), 2567 #endif 2568 DIM(SORT_SYM_SIZE, "symbol_size", sort_sym_size), 2569 DIM(SORT_DSO_SIZE, "dso_size", sort_dso_size), 2570 DIM(SORT_CGROUP, "cgroup", sort_cgroup), 2571 DIM(SORT_CGROUP_ID, "cgroup_id", sort_cgroup_id), 2572 DIM(SORT_SYM_IPC_NULL, "ipc_null", sort_sym_ipc_null), 2573 DIM(SORT_TIME, "time", sort_time), 2574 DIM(SORT_CODE_PAGE_SIZE, "code_page_size", sort_code_page_size), 2575 DIM(SORT_LOCAL_INS_LAT, "local_ins_lat", sort_local_ins_lat), 2576 DIM(SORT_GLOBAL_INS_LAT, "ins_lat", sort_global_ins_lat), 2577 DIM(SORT_LOCAL_PIPELINE_STAGE_CYC, "local_p_stage_cyc", sort_local_p_stage_cyc), 2578 DIM(SORT_GLOBAL_PIPELINE_STAGE_CYC, "p_stage_cyc", sort_global_p_stage_cyc), 2579 DIM(SORT_ADDR, "addr", sort_addr), 2580 DIM(SORT_LOCAL_RETIRE_LAT, "local_retire_lat", sort_local_p_stage_cyc), 2581 DIM(SORT_GLOBAL_RETIRE_LAT, "retire_lat", sort_global_p_stage_cyc), 2582 DIM(SORT_SIMD, "simd", sort_simd), 2583 DIM(SORT_ANNOTATE_DATA_TYPE, "type", sort_type), 2584 DIM(SORT_ANNOTATE_DATA_TYPE_OFFSET, "typeoff", sort_type_offset), 2585 DIM(SORT_SYM_OFFSET, "symoff", sort_sym_offset), 2586 DIM(SORT_ANNOTATE_DATA_TYPE_CACHELINE, "typecln", sort_type_cacheline), 2587 DIM(SORT_PARALLELISM, "parallelism", sort_parallelism), 2588 }; 2589 2590 #undef DIM 2591 2592 #define DIM(d, n, func) [d - __SORT_BRANCH_STACK] = { .name = n, .entry = &(func) } 2593 2594 static struct sort_dimension bstack_sort_dimensions[] = { 2595 DIM(SORT_DSO_FROM, "dso_from", sort_dso_from), 2596 DIM(SORT_DSO_TO, "dso_to", sort_dso_to), 2597 DIM(SORT_SYM_FROM, "symbol_from", sort_sym_from), 2598 DIM(SORT_SYM_TO, "symbol_to", sort_sym_to), 2599 DIM(SORT_MISPREDICT, "mispredict", sort_mispredict), 2600 DIM(SORT_IN_TX, "in_tx", sort_in_tx), 2601 DIM(SORT_ABORT, "abort", sort_abort), 2602 DIM(SORT_CYCLES, "cycles", sort_cycles), 2603 DIM(SORT_SRCLINE_FROM, "srcline_from", sort_srcline_from), 2604 DIM(SORT_SRCLINE_TO, "srcline_to", sort_srcline_to), 2605 DIM(SORT_SYM_IPC, "ipc_lbr", sort_sym_ipc), 2606 DIM(SORT_ADDR_FROM, "addr_from", sort_addr_from), 2607 DIM(SORT_ADDR_TO, "addr_to", sort_addr_to), 2608 DIM(SORT_CALLCHAIN_BRANCH_PREDICTED, 2609 "callchain_branch_predicted", 2610 sort_callchain_branch_predicted), 2611 DIM(SORT_CALLCHAIN_BRANCH_ABORT, 2612 "callchain_branch_abort", 2613 sort_callchain_branch_abort), 2614 DIM(SORT_CALLCHAIN_BRANCH_CYCLES, 2615 "callchain_branch_cycles", 2616 sort_callchain_branch_cycles) 2617 }; 2618 2619 #undef DIM 2620 2621 #define DIM(d, n, func) [d - __SORT_MEMORY_MODE] = { .name = n, .entry = &(func) } 2622 2623 static struct sort_dimension memory_sort_dimensions[] = { 2624 DIM(SORT_MEM_DADDR_SYMBOL, "symbol_daddr", sort_mem_daddr_sym), 2625 DIM(SORT_MEM_IADDR_SYMBOL, "symbol_iaddr", sort_mem_iaddr_sym), 2626 DIM(SORT_MEM_DADDR_DSO, "dso_daddr", sort_mem_daddr_dso), 2627 DIM(SORT_MEM_LOCKED, "locked", sort_mem_locked), 2628 DIM(SORT_MEM_TLB, "tlb", sort_mem_tlb), 2629 DIM(SORT_MEM_LVL, "mem", sort_mem_lvl), 2630 DIM(SORT_MEM_SNOOP, "snoop", sort_mem_snoop), 2631 DIM(SORT_MEM_DCACHELINE, "dcacheline", sort_mem_dcacheline), 2632 DIM(SORT_MEM_PHYS_DADDR, "phys_daddr", sort_mem_phys_daddr), 2633 DIM(SORT_MEM_DATA_PAGE_SIZE, "data_page_size", sort_mem_data_page_size), 2634 DIM(SORT_MEM_BLOCKED, "blocked", sort_mem_blocked), 2635 }; 2636 2637 #undef DIM 2638 2639 struct hpp_dimension { 2640 const char *name; 2641 struct perf_hpp_fmt *fmt; 2642 int taken; 2643 int was_taken; 2644 int mem_mode; 2645 }; 2646 2647 #define DIM(d, n) { .name = n, .fmt = &perf_hpp__format[d], } 2648 #define DIM_MEM(d, n) { .name = n, .fmt = &perf_hpp__format[d], .mem_mode = 1, } 2649 2650 static struct hpp_dimension hpp_sort_dimensions[] = { 2651 DIM(PERF_HPP__OVERHEAD, "overhead"), 2652 DIM(PERF_HPP__LATENCY, "latency"), 2653 DIM(PERF_HPP__OVERHEAD_SYS, "overhead_sys"), 2654 DIM(PERF_HPP__OVERHEAD_US, "overhead_us"), 2655 DIM(PERF_HPP__OVERHEAD_GUEST_SYS, "overhead_guest_sys"), 2656 DIM(PERF_HPP__OVERHEAD_GUEST_US, "overhead_guest_us"), 2657 DIM(PERF_HPP__OVERHEAD_ACC, "overhead_children"), 2658 DIM(PERF_HPP__LATENCY_ACC, "latency_children"), 2659 DIM(PERF_HPP__SAMPLES, "sample"), 2660 DIM(PERF_HPP__PERIOD, "period"), 2661 DIM(PERF_HPP__WEIGHT1, "weight1"), 2662 DIM(PERF_HPP__WEIGHT2, "weight2"), 2663 DIM(PERF_HPP__WEIGHT3, "weight3"), 2664 /* aliases for weight_struct */ 2665 DIM(PERF_HPP__WEIGHT2, "ins_lat"), 2666 DIM(PERF_HPP__WEIGHT3, "retire_lat"), 2667 DIM(PERF_HPP__WEIGHT3, "p_stage_cyc"), 2668 /* used for output only when SORT_MODE__MEM */ 2669 DIM_MEM(PERF_HPP__MEM_STAT_OP, "op"), 2670 DIM_MEM(PERF_HPP__MEM_STAT_CACHE, "cache"), 2671 DIM_MEM(PERF_HPP__MEM_STAT_MEMORY, "memory"), 2672 DIM_MEM(PERF_HPP__MEM_STAT_SNOOP, "snoop"), 2673 DIM_MEM(PERF_HPP__MEM_STAT_DTLB, "dtlb"), 2674 }; 2675 2676 #undef DIM_MEM 2677 #undef DIM 2678 2679 struct hpp_sort_entry { 2680 struct perf_hpp_fmt hpp; 2681 struct sort_entry *se; 2682 }; 2683 2684 void perf_hpp__reset_sort_width(struct perf_hpp_fmt *fmt, struct hists *hists) 2685 { 2686 struct hpp_sort_entry *hse; 2687 2688 if (!perf_hpp__is_sort_entry(fmt)) 2689 return; 2690 2691 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2692 hists__new_col_len(hists, hse->se->se_width_idx, strlen(fmt->name)); 2693 } 2694 2695 static int __sort__hpp_header(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, 2696 struct hists *hists, int line, 2697 int *span __maybe_unused) 2698 { 2699 struct hpp_sort_entry *hse; 2700 size_t len = fmt->user_len; 2701 const char *hdr = ""; 2702 2703 if (line == hists->hpp_list->nr_header_lines - 1) 2704 hdr = fmt->name; 2705 2706 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2707 2708 if (!len) 2709 len = hists__col_len(hists, hse->se->se_width_idx); 2710 2711 return scnprintf(hpp->buf, hpp->size, "%-*.*s", len, len, hdr); 2712 } 2713 2714 static int __sort__hpp_width(struct perf_hpp_fmt *fmt, 2715 struct perf_hpp *hpp __maybe_unused, 2716 struct hists *hists) 2717 { 2718 struct hpp_sort_entry *hse; 2719 size_t len = fmt->user_len; 2720 2721 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2722 2723 if (!len) 2724 len = hists__col_len(hists, hse->se->se_width_idx); 2725 2726 return len; 2727 } 2728 2729 static int __sort__hpp_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, 2730 struct hist_entry *he) 2731 { 2732 struct hpp_sort_entry *hse; 2733 size_t len = fmt->user_len; 2734 2735 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2736 2737 if (!len) 2738 len = hists__col_len(he->hists, hse->se->se_width_idx); 2739 2740 return hse->se->se_snprintf(he, hpp->buf, hpp->size, len); 2741 } 2742 2743 static int64_t __sort__hpp_cmp(struct perf_hpp_fmt *fmt, 2744 struct hist_entry *a, struct hist_entry *b) 2745 { 2746 struct hpp_sort_entry *hse; 2747 2748 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2749 return hse->se->se_cmp(a, b); 2750 } 2751 2752 static int64_t __sort__hpp_collapse(struct perf_hpp_fmt *fmt, 2753 struct hist_entry *a, struct hist_entry *b) 2754 { 2755 struct hpp_sort_entry *hse; 2756 int64_t (*collapse_fn)(struct hist_entry *, struct hist_entry *); 2757 2758 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2759 collapse_fn = hse->se->se_collapse ?: hse->se->se_cmp; 2760 return collapse_fn(a, b); 2761 } 2762 2763 static int64_t __sort__hpp_sort(struct perf_hpp_fmt *fmt, 2764 struct hist_entry *a, struct hist_entry *b) 2765 { 2766 struct hpp_sort_entry *hse; 2767 int64_t (*sort_fn)(struct hist_entry *, struct hist_entry *); 2768 2769 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2770 sort_fn = hse->se->se_sort ?: hse->se->se_cmp; 2771 return sort_fn(a, b); 2772 } 2773 2774 bool perf_hpp__is_sort_entry(struct perf_hpp_fmt *format) 2775 { 2776 return format->header == __sort__hpp_header; 2777 } 2778 2779 #define MK_SORT_ENTRY_CHK(key) \ 2780 bool perf_hpp__is_ ## key ## _entry(struct perf_hpp_fmt *fmt) \ 2781 { \ 2782 struct hpp_sort_entry *hse; \ 2783 \ 2784 if (!perf_hpp__is_sort_entry(fmt)) \ 2785 return false; \ 2786 \ 2787 hse = container_of(fmt, struct hpp_sort_entry, hpp); \ 2788 return hse->se == &sort_ ## key ; \ 2789 } 2790 2791 #ifdef HAVE_LIBTRACEEVENT 2792 MK_SORT_ENTRY_CHK(trace) 2793 #else 2794 bool perf_hpp__is_trace_entry(struct perf_hpp_fmt *fmt __maybe_unused) 2795 { 2796 return false; 2797 } 2798 #endif 2799 MK_SORT_ENTRY_CHK(srcline) 2800 MK_SORT_ENTRY_CHK(srcfile) 2801 MK_SORT_ENTRY_CHK(thread) 2802 MK_SORT_ENTRY_CHK(comm) 2803 MK_SORT_ENTRY_CHK(dso) 2804 MK_SORT_ENTRY_CHK(sym) 2805 MK_SORT_ENTRY_CHK(parallelism) 2806 2807 2808 static bool __sort__hpp_equal(struct perf_hpp_fmt *a, struct perf_hpp_fmt *b) 2809 { 2810 struct hpp_sort_entry *hse_a; 2811 struct hpp_sort_entry *hse_b; 2812 2813 if (!perf_hpp__is_sort_entry(a) || !perf_hpp__is_sort_entry(b)) 2814 return false; 2815 2816 hse_a = container_of(a, struct hpp_sort_entry, hpp); 2817 hse_b = container_of(b, struct hpp_sort_entry, hpp); 2818 2819 return hse_a->se == hse_b->se; 2820 } 2821 2822 static void hse_free(struct perf_hpp_fmt *fmt) 2823 { 2824 struct hpp_sort_entry *hse; 2825 2826 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2827 free(hse); 2828 } 2829 2830 static void hse_init(struct perf_hpp_fmt *fmt, struct hist_entry *he) 2831 { 2832 struct hpp_sort_entry *hse; 2833 2834 if (!perf_hpp__is_sort_entry(fmt)) 2835 return; 2836 2837 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2838 2839 if (hse->se->se_init) 2840 hse->se->se_init(he); 2841 } 2842 2843 static struct hpp_sort_entry * 2844 __sort_dimension__alloc_hpp(struct sort_dimension *sd, int level) 2845 { 2846 struct hpp_sort_entry *hse; 2847 2848 hse = malloc(sizeof(*hse)); 2849 if (hse == NULL) { 2850 pr_err("Memory allocation failed\n"); 2851 return NULL; 2852 } 2853 2854 hse->se = sd->entry; 2855 hse->hpp.name = sd->entry->se_header; 2856 hse->hpp.header = __sort__hpp_header; 2857 hse->hpp.width = __sort__hpp_width; 2858 hse->hpp.entry = __sort__hpp_entry; 2859 hse->hpp.color = NULL; 2860 2861 hse->hpp.cmp = __sort__hpp_cmp; 2862 hse->hpp.collapse = __sort__hpp_collapse; 2863 hse->hpp.sort = __sort__hpp_sort; 2864 hse->hpp.equal = __sort__hpp_equal; 2865 hse->hpp.free = hse_free; 2866 hse->hpp.init = hse_init; 2867 2868 INIT_LIST_HEAD(&hse->hpp.list); 2869 INIT_LIST_HEAD(&hse->hpp.sort_list); 2870 hse->hpp.elide = false; 2871 hse->hpp.len = 0; 2872 hse->hpp.user_len = 0; 2873 hse->hpp.level = level; 2874 2875 return hse; 2876 } 2877 2878 static void hpp_free(struct perf_hpp_fmt *fmt) 2879 { 2880 free(fmt); 2881 } 2882 2883 static struct perf_hpp_fmt *__hpp_dimension__alloc_hpp(struct hpp_dimension *hd, 2884 int level) 2885 { 2886 struct perf_hpp_fmt *fmt; 2887 2888 fmt = memdup(hd->fmt, sizeof(*fmt)); 2889 if (fmt) { 2890 INIT_LIST_HEAD(&fmt->list); 2891 INIT_LIST_HEAD(&fmt->sort_list); 2892 fmt->free = hpp_free; 2893 fmt->level = level; 2894 } 2895 2896 return fmt; 2897 } 2898 2899 int hist_entry__filter(struct hist_entry *he, int type, const void *arg) 2900 { 2901 struct perf_hpp_fmt *fmt; 2902 struct hpp_sort_entry *hse; 2903 int ret = -1; 2904 int r; 2905 2906 perf_hpp_list__for_each_format(he->hpp_list, fmt) { 2907 if (!perf_hpp__is_sort_entry(fmt)) 2908 continue; 2909 2910 hse = container_of(fmt, struct hpp_sort_entry, hpp); 2911 if (hse->se->se_filter == NULL) 2912 continue; 2913 2914 /* 2915 * hist entry is filtered if any of sort key in the hpp list 2916 * is applied. But it should skip non-matched filter types. 2917 */ 2918 r = hse->se->se_filter(he, type, arg); 2919 if (r >= 0) { 2920 if (ret < 0) 2921 ret = 0; 2922 ret |= r; 2923 } 2924 } 2925 2926 return ret; 2927 } 2928 2929 static int __sort_dimension__add_hpp_sort(struct sort_dimension *sd, 2930 struct perf_hpp_list *list, 2931 int level) 2932 { 2933 struct hpp_sort_entry *hse = __sort_dimension__alloc_hpp(sd, level); 2934 2935 if (hse == NULL) 2936 return -1; 2937 2938 perf_hpp_list__register_sort_field(list, &hse->hpp); 2939 return 0; 2940 } 2941 2942 static int __sort_dimension__add_hpp_output(struct sort_dimension *sd, 2943 struct perf_hpp_list *list, 2944 int level) 2945 { 2946 struct hpp_sort_entry *hse = __sort_dimension__alloc_hpp(sd, level); 2947 2948 if (hse == NULL) 2949 return -1; 2950 2951 perf_hpp_list__column_register(list, &hse->hpp); 2952 return 0; 2953 } 2954 2955 #ifndef HAVE_LIBTRACEEVENT 2956 bool perf_hpp__is_dynamic_entry(struct perf_hpp_fmt *fmt __maybe_unused) 2957 { 2958 return false; 2959 } 2960 bool perf_hpp__defined_dynamic_entry(struct perf_hpp_fmt *fmt __maybe_unused, 2961 struct hists *hists __maybe_unused) 2962 { 2963 return false; 2964 } 2965 #else 2966 struct hpp_dynamic_entry { 2967 struct perf_hpp_fmt hpp; 2968 struct evsel *evsel; 2969 struct tep_format_field *field; 2970 unsigned dynamic_len; 2971 bool raw_trace; 2972 }; 2973 2974 static int hde_width(struct hpp_dynamic_entry *hde) 2975 { 2976 if (!hde->hpp.len) { 2977 int len = hde->dynamic_len; 2978 int namelen = strlen(hde->field->name); 2979 int fieldlen = hde->field->size; 2980 2981 if (namelen > len) 2982 len = namelen; 2983 2984 if (!(hde->field->flags & TEP_FIELD_IS_STRING)) { 2985 /* length for print hex numbers */ 2986 fieldlen = hde->field->size * 2 + 2; 2987 } 2988 if (fieldlen > len) 2989 len = fieldlen; 2990 2991 hde->hpp.len = len; 2992 } 2993 return hde->hpp.len; 2994 } 2995 2996 static void update_dynamic_len(struct hpp_dynamic_entry *hde, 2997 struct hist_entry *he) 2998 { 2999 char *str, *pos; 3000 struct tep_format_field *field = hde->field; 3001 size_t namelen; 3002 bool last = false; 3003 3004 if (hde->raw_trace) 3005 return; 3006 3007 /* parse pretty print result and update max length */ 3008 if (!he->trace_output) 3009 he->trace_output = get_trace_output(he); 3010 3011 namelen = strlen(field->name); 3012 str = he->trace_output; 3013 3014 while (str) { 3015 pos = strchr(str, ' '); 3016 if (pos == NULL) { 3017 last = true; 3018 pos = str + strlen(str); 3019 } 3020 3021 if (!strncmp(str, field->name, namelen)) { 3022 size_t len; 3023 3024 str += namelen + 1; 3025 len = pos - str; 3026 3027 if (len > hde->dynamic_len) 3028 hde->dynamic_len = len; 3029 break; 3030 } 3031 3032 if (last) 3033 str = NULL; 3034 else 3035 str = pos + 1; 3036 } 3037 } 3038 3039 static int __sort__hde_header(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, 3040 struct hists *hists __maybe_unused, 3041 int line __maybe_unused, 3042 int *span __maybe_unused) 3043 { 3044 struct hpp_dynamic_entry *hde; 3045 size_t len = fmt->user_len; 3046 3047 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3048 3049 if (!len) 3050 len = hde_width(hde); 3051 3052 return scnprintf(hpp->buf, hpp->size, "%*.*s", len, len, hde->field->name); 3053 } 3054 3055 static int __sort__hde_width(struct perf_hpp_fmt *fmt, 3056 struct perf_hpp *hpp __maybe_unused, 3057 struct hists *hists __maybe_unused) 3058 { 3059 struct hpp_dynamic_entry *hde; 3060 size_t len = fmt->user_len; 3061 3062 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3063 3064 if (!len) 3065 len = hde_width(hde); 3066 3067 return len; 3068 } 3069 3070 bool perf_hpp__defined_dynamic_entry(struct perf_hpp_fmt *fmt, struct hists *hists) 3071 { 3072 struct hpp_dynamic_entry *hde; 3073 3074 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3075 3076 return hists_to_evsel(hists) == hde->evsel; 3077 } 3078 3079 static int __sort__hde_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, 3080 struct hist_entry *he) 3081 { 3082 struct hpp_dynamic_entry *hde; 3083 size_t len = fmt->user_len; 3084 char *str, *pos; 3085 struct tep_format_field *field; 3086 size_t namelen; 3087 bool last = false; 3088 int ret; 3089 3090 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3091 3092 if (!len) 3093 len = hde_width(hde); 3094 3095 if (hde->raw_trace) 3096 goto raw_field; 3097 3098 if (!he->trace_output) 3099 he->trace_output = get_trace_output(he); 3100 3101 field = hde->field; 3102 namelen = strlen(field->name); 3103 str = he->trace_output; 3104 3105 while (str) { 3106 pos = strchr(str, ' '); 3107 if (pos == NULL) { 3108 last = true; 3109 pos = str + strlen(str); 3110 } 3111 3112 if (!strncmp(str, field->name, namelen)) { 3113 str += namelen + 1; 3114 str = strndup(str, pos - str); 3115 3116 if (str == NULL) 3117 return scnprintf(hpp->buf, hpp->size, 3118 "%*.*s", len, len, "ERROR"); 3119 break; 3120 } 3121 3122 if (last) 3123 str = NULL; 3124 else 3125 str = pos + 1; 3126 } 3127 3128 if (str == NULL) { 3129 struct trace_seq seq; 3130 raw_field: 3131 trace_seq_init(&seq); 3132 tep_print_field(&seq, he->raw_data, hde->field); 3133 str = seq.buffer; 3134 } 3135 3136 ret = scnprintf(hpp->buf, hpp->size, "%*.*s", len, len, str); 3137 free(str); 3138 return ret; 3139 } 3140 3141 static int64_t __sort__hde_cmp(struct perf_hpp_fmt *fmt, 3142 struct hist_entry *a, struct hist_entry *b) 3143 { 3144 struct hpp_dynamic_entry *hde; 3145 struct tep_format_field *field; 3146 unsigned offset, size; 3147 3148 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3149 3150 field = hde->field; 3151 if (field->flags & TEP_FIELD_IS_DYNAMIC) { 3152 unsigned long long dyn; 3153 3154 tep_read_number_field(field, a->raw_data, &dyn); 3155 offset = dyn & 0xffff; 3156 size = (dyn >> 16) & 0xffff; 3157 if (tep_field_is_relative(field->flags)) 3158 offset += field->offset + field->size; 3159 /* record max width for output */ 3160 if (size > hde->dynamic_len) 3161 hde->dynamic_len = size; 3162 } else { 3163 offset = field->offset; 3164 size = field->size; 3165 } 3166 3167 return memcmp(a->raw_data + offset, b->raw_data + offset, size); 3168 } 3169 3170 bool perf_hpp__is_dynamic_entry(struct perf_hpp_fmt *fmt) 3171 { 3172 return fmt->cmp == __sort__hde_cmp; 3173 } 3174 3175 static bool __sort__hde_equal(struct perf_hpp_fmt *a, struct perf_hpp_fmt *b) 3176 { 3177 struct hpp_dynamic_entry *hde_a; 3178 struct hpp_dynamic_entry *hde_b; 3179 3180 if (!perf_hpp__is_dynamic_entry(a) || !perf_hpp__is_dynamic_entry(b)) 3181 return false; 3182 3183 hde_a = container_of(a, struct hpp_dynamic_entry, hpp); 3184 hde_b = container_of(b, struct hpp_dynamic_entry, hpp); 3185 3186 return hde_a->field == hde_b->field; 3187 } 3188 3189 static void hde_free(struct perf_hpp_fmt *fmt) 3190 { 3191 struct hpp_dynamic_entry *hde; 3192 3193 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3194 free(hde); 3195 } 3196 3197 static void __sort__hde_init(struct perf_hpp_fmt *fmt, struct hist_entry *he) 3198 { 3199 struct hpp_dynamic_entry *hde; 3200 3201 if (!perf_hpp__is_dynamic_entry(fmt)) 3202 return; 3203 3204 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3205 update_dynamic_len(hde, he); 3206 } 3207 3208 static struct hpp_dynamic_entry * 3209 __alloc_dynamic_entry(struct evsel *evsel, struct tep_format_field *field, 3210 int level) 3211 { 3212 struct hpp_dynamic_entry *hde; 3213 3214 hde = malloc(sizeof(*hde)); 3215 if (hde == NULL) { 3216 pr_debug("Memory allocation failed\n"); 3217 return NULL; 3218 } 3219 3220 hde->evsel = evsel; 3221 hde->field = field; 3222 hde->dynamic_len = 0; 3223 3224 hde->hpp.name = field->name; 3225 hde->hpp.header = __sort__hde_header; 3226 hde->hpp.width = __sort__hde_width; 3227 hde->hpp.entry = __sort__hde_entry; 3228 hde->hpp.color = NULL; 3229 3230 hde->hpp.init = __sort__hde_init; 3231 hde->hpp.cmp = __sort__hde_cmp; 3232 hde->hpp.collapse = __sort__hde_cmp; 3233 hde->hpp.sort = __sort__hde_cmp; 3234 hde->hpp.equal = __sort__hde_equal; 3235 hde->hpp.free = hde_free; 3236 3237 INIT_LIST_HEAD(&hde->hpp.list); 3238 INIT_LIST_HEAD(&hde->hpp.sort_list); 3239 hde->hpp.elide = false; 3240 hde->hpp.len = 0; 3241 hde->hpp.user_len = 0; 3242 hde->hpp.level = level; 3243 3244 return hde; 3245 } 3246 #endif /* HAVE_LIBTRACEEVENT */ 3247 3248 struct perf_hpp_fmt *perf_hpp_fmt__dup(struct perf_hpp_fmt *fmt) 3249 { 3250 struct perf_hpp_fmt *new_fmt = NULL; 3251 3252 if (perf_hpp__is_sort_entry(fmt)) { 3253 struct hpp_sort_entry *hse, *new_hse; 3254 3255 hse = container_of(fmt, struct hpp_sort_entry, hpp); 3256 new_hse = memdup(hse, sizeof(*hse)); 3257 if (new_hse) 3258 new_fmt = &new_hse->hpp; 3259 #ifdef HAVE_LIBTRACEEVENT 3260 } else if (perf_hpp__is_dynamic_entry(fmt)) { 3261 struct hpp_dynamic_entry *hde, *new_hde; 3262 3263 hde = container_of(fmt, struct hpp_dynamic_entry, hpp); 3264 new_hde = memdup(hde, sizeof(*hde)); 3265 if (new_hde) 3266 new_fmt = &new_hde->hpp; 3267 #endif 3268 } else { 3269 new_fmt = memdup(fmt, sizeof(*fmt)); 3270 } 3271 3272 INIT_LIST_HEAD(&new_fmt->list); 3273 INIT_LIST_HEAD(&new_fmt->sort_list); 3274 3275 return new_fmt; 3276 } 3277 3278 static int parse_field_name(char *str, char **event, char **field, char **opt) 3279 { 3280 char *event_name, *field_name, *opt_name; 3281 3282 event_name = str; 3283 field_name = strchr(str, '.'); 3284 3285 if (field_name) { 3286 *field_name++ = '\0'; 3287 } else { 3288 event_name = NULL; 3289 field_name = str; 3290 } 3291 3292 opt_name = strchr(field_name, '/'); 3293 if (opt_name) 3294 *opt_name++ = '\0'; 3295 3296 *event = event_name; 3297 *field = field_name; 3298 *opt = opt_name; 3299 3300 return 0; 3301 } 3302 3303 /* find match evsel using a given event name. The event name can be: 3304 * 1. '%' + event index (e.g. '%1' for first event) 3305 * 2. full event name (e.g. sched:sched_switch) 3306 * 3. partial event name (should not contain ':') 3307 */ 3308 static struct evsel *find_evsel(struct evlist *evlist, char *event_name) 3309 { 3310 struct evsel *evsel = NULL; 3311 struct evsel *pos; 3312 bool full_name; 3313 3314 /* case 1 */ 3315 if (event_name[0] == '%') { 3316 int nr = strtol(event_name+1, NULL, 0); 3317 3318 if (nr > evlist->core.nr_entries) 3319 return NULL; 3320 3321 evsel = evlist__first(evlist); 3322 while (--nr > 0) 3323 evsel = evsel__next(evsel); 3324 3325 return evsel; 3326 } 3327 3328 full_name = !!strchr(event_name, ':'); 3329 evlist__for_each_entry(evlist, pos) { 3330 /* case 2 */ 3331 if (full_name && evsel__name_is(pos, event_name)) 3332 return pos; 3333 /* case 3 */ 3334 if (!full_name && strstr(pos->name, event_name)) { 3335 if (evsel) { 3336 pr_debug("'%s' event is ambiguous: it can be %s or %s\n", 3337 event_name, evsel->name, pos->name); 3338 return NULL; 3339 } 3340 evsel = pos; 3341 } 3342 } 3343 3344 return evsel; 3345 } 3346 3347 #ifdef HAVE_LIBTRACEEVENT 3348 static int __dynamic_dimension__add(struct evsel *evsel, 3349 struct tep_format_field *field, 3350 bool raw_trace, int level) 3351 { 3352 struct hpp_dynamic_entry *hde; 3353 3354 hde = __alloc_dynamic_entry(evsel, field, level); 3355 if (hde == NULL) 3356 return -ENOMEM; 3357 3358 hde->raw_trace = raw_trace; 3359 3360 perf_hpp__register_sort_field(&hde->hpp); 3361 return 0; 3362 } 3363 3364 static int add_evsel_fields(struct evsel *evsel, bool raw_trace, int level) 3365 { 3366 int ret; 3367 struct tep_event *tp_format = evsel__tp_format(evsel); 3368 struct tep_format_field *field = tp_format ? tp_format->format.fields : NULL; 3369 while (field) { 3370 ret = __dynamic_dimension__add(evsel, field, raw_trace, level); 3371 if (ret < 0) 3372 return ret; 3373 3374 field = field->next; 3375 } 3376 return 0; 3377 } 3378 3379 static int add_all_dynamic_fields(struct evlist *evlist, bool raw_trace, 3380 int level) 3381 { 3382 int ret; 3383 struct evsel *evsel; 3384 3385 evlist__for_each_entry(evlist, evsel) { 3386 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) 3387 continue; 3388 3389 ret = add_evsel_fields(evsel, raw_trace, level); 3390 if (ret < 0) 3391 return ret; 3392 } 3393 return 0; 3394 } 3395 3396 static int add_all_matching_fields(struct evlist *evlist, 3397 char *field_name, bool raw_trace, int level) 3398 { 3399 int ret = -ESRCH; 3400 struct evsel *evsel; 3401 3402 evlist__for_each_entry(evlist, evsel) { 3403 struct tep_event *tp_format; 3404 struct tep_format_field *field; 3405 3406 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) 3407 continue; 3408 3409 tp_format = evsel__tp_format(evsel); 3410 if (tp_format == NULL) 3411 continue; 3412 3413 field = tep_find_any_field(tp_format, field_name); 3414 if (field == NULL) 3415 continue; 3416 3417 ret = __dynamic_dimension__add(evsel, field, raw_trace, level); 3418 if (ret < 0) 3419 break; 3420 } 3421 return ret; 3422 } 3423 #endif /* HAVE_LIBTRACEEVENT */ 3424 3425 static int add_dynamic_entry(struct evlist *evlist, const char *tok, 3426 int level) 3427 { 3428 char *str, *event_name, *field_name, *opt_name; 3429 struct evsel *evsel; 3430 bool raw_trace = symbol_conf.raw_trace; 3431 int ret = 0; 3432 3433 if (evlist == NULL) 3434 return -ENOENT; 3435 3436 str = strdup(tok); 3437 if (str == NULL) 3438 return -ENOMEM; 3439 3440 if (parse_field_name(str, &event_name, &field_name, &opt_name) < 0) { 3441 ret = -EINVAL; 3442 goto out; 3443 } 3444 3445 if (opt_name) { 3446 if (strcmp(opt_name, "raw")) { 3447 pr_debug("unsupported field option %s\n", opt_name); 3448 ret = -EINVAL; 3449 goto out; 3450 } 3451 raw_trace = true; 3452 } 3453 3454 #ifdef HAVE_LIBTRACEEVENT 3455 if (!strcmp(field_name, "trace_fields")) { 3456 ret = add_all_dynamic_fields(evlist, raw_trace, level); 3457 goto out; 3458 } 3459 3460 if (event_name == NULL) { 3461 ret = add_all_matching_fields(evlist, field_name, raw_trace, level); 3462 goto out; 3463 } 3464 #else 3465 evlist__for_each_entry(evlist, evsel) { 3466 if (evsel->core.attr.type == PERF_TYPE_TRACEPOINT) { 3467 pr_err("%s %s", ret ? "," : "This perf binary isn't linked with libtraceevent, can't process", evsel__name(evsel)); 3468 ret = -ENOTSUP; 3469 } 3470 } 3471 3472 if (ret) { 3473 pr_err("\n"); 3474 goto out; 3475 } 3476 #endif 3477 3478 evsel = find_evsel(evlist, event_name); 3479 if (evsel == NULL) { 3480 pr_debug("Cannot find event: %s\n", event_name); 3481 ret = -ENOENT; 3482 goto out; 3483 } 3484 3485 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) { 3486 pr_debug("%s is not a tracepoint event\n", event_name); 3487 ret = -EINVAL; 3488 goto out; 3489 } 3490 3491 #ifdef HAVE_LIBTRACEEVENT 3492 if (!strcmp(field_name, "*")) { 3493 ret = add_evsel_fields(evsel, raw_trace, level); 3494 } else { 3495 struct tep_event *tp_format = evsel__tp_format(evsel); 3496 struct tep_format_field *field = 3497 tp_format ? tep_find_any_field(tp_format, field_name) : NULL; 3498 3499 if (field == NULL) { 3500 pr_debug("Cannot find event field for %s.%s\n", 3501 event_name, field_name); 3502 return -ENOENT; 3503 } 3504 3505 ret = __dynamic_dimension__add(evsel, field, raw_trace, level); 3506 } 3507 #else 3508 (void)level; 3509 (void)raw_trace; 3510 #endif /* HAVE_LIBTRACEEVENT */ 3511 3512 out: 3513 free(str); 3514 return ret; 3515 } 3516 3517 static int __sort_dimension__add(struct sort_dimension *sd, 3518 struct perf_hpp_list *list, 3519 int level) 3520 { 3521 if (sd->taken) 3522 return 0; 3523 3524 if (__sort_dimension__add_hpp_sort(sd, list, level) < 0) 3525 return -1; 3526 3527 if (sd->entry->se_collapse) 3528 list->need_collapse = 1; 3529 3530 sd->taken = 1; 3531 3532 return 0; 3533 } 3534 3535 static int __hpp_dimension__add(struct hpp_dimension *hd, 3536 struct perf_hpp_list *list, 3537 int level) 3538 { 3539 struct perf_hpp_fmt *fmt; 3540 3541 if (hd->taken) 3542 return 0; 3543 3544 fmt = __hpp_dimension__alloc_hpp(hd, level); 3545 if (!fmt) 3546 return -1; 3547 3548 hd->taken = 1; 3549 hd->was_taken = 1; 3550 perf_hpp_list__register_sort_field(list, fmt); 3551 return 0; 3552 } 3553 3554 static int __sort_dimension__add_output(struct perf_hpp_list *list, 3555 struct sort_dimension *sd, 3556 int level) 3557 { 3558 if (sd->taken) 3559 return 0; 3560 3561 if (__sort_dimension__add_hpp_output(sd, list, level) < 0) 3562 return -1; 3563 3564 sd->taken = 1; 3565 return 0; 3566 } 3567 3568 static int __hpp_dimension__add_output(struct perf_hpp_list *list, 3569 struct hpp_dimension *hd, 3570 int level) 3571 { 3572 struct perf_hpp_fmt *fmt; 3573 3574 if (hd->taken) 3575 return 0; 3576 3577 fmt = __hpp_dimension__alloc_hpp(hd, level); 3578 if (!fmt) 3579 return -1; 3580 3581 hd->taken = 1; 3582 perf_hpp_list__column_register(list, fmt); 3583 return 0; 3584 } 3585 3586 int hpp_dimension__add_output(unsigned col, bool implicit) 3587 { 3588 struct hpp_dimension *hd; 3589 3590 BUG_ON(col >= PERF_HPP__MAX_INDEX); 3591 hd = &hpp_sort_dimensions[col]; 3592 if (implicit && !hd->was_taken) 3593 return 0; 3594 return __hpp_dimension__add_output(&perf_hpp_list, hd, /*level=*/0); 3595 } 3596 3597 int sort_dimension__add(struct perf_hpp_list *list, const char *tok, 3598 struct evlist *evlist, 3599 int level) 3600 { 3601 unsigned int i, j; 3602 3603 /* 3604 * Check to see if there are any arch specific 3605 * sort dimensions not applicable for the current 3606 * architecture. If so, Skip that sort key since 3607 * we don't want to display it in the output fields. 3608 */ 3609 for (j = 0; j < ARRAY_SIZE(arch_specific_sort_keys); j++) { 3610 if (!strcmp(arch_specific_sort_keys[j], tok) && 3611 !arch_support_sort_key(tok)) { 3612 return 0; 3613 } 3614 } 3615 3616 for (i = 0; i < ARRAY_SIZE(common_sort_dimensions); i++) { 3617 struct sort_dimension *sd = &common_sort_dimensions[i]; 3618 3619 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 3620 continue; 3621 3622 for (j = 0; j < ARRAY_SIZE(dynamic_headers); j++) { 3623 if (sd->name && !strcmp(dynamic_headers[j], sd->name)) 3624 sort_dimension_add_dynamic_header(sd); 3625 } 3626 3627 if (sd->entry == &sort_parent && parent_pattern) { 3628 int ret = regcomp(&parent_regex, parent_pattern, REG_EXTENDED); 3629 if (ret) { 3630 char err[BUFSIZ]; 3631 3632 regerror(ret, &parent_regex, err, sizeof(err)); 3633 pr_err("Invalid regex: %s\n%s", parent_pattern, err); 3634 return -EINVAL; 3635 } 3636 list->parent = 1; 3637 } else if (sd->entry == &sort_sym) { 3638 list->sym = 1; 3639 /* 3640 * perf diff displays the performance difference amongst 3641 * two or more perf.data files. Those files could come 3642 * from different binaries. So we should not compare 3643 * their ips, but the name of symbol. 3644 */ 3645 if (sort__mode == SORT_MODE__DIFF) 3646 sd->entry->se_collapse = sort__sym_sort; 3647 3648 } else if (sd->entry == &sort_dso) { 3649 list->dso = 1; 3650 } else if (sd->entry == &sort_socket) { 3651 list->socket = 1; 3652 } else if (sd->entry == &sort_thread) { 3653 list->thread = 1; 3654 } else if (sd->entry == &sort_comm) { 3655 list->comm = 1; 3656 } else if (sd->entry == &sort_type_offset) { 3657 symbol_conf.annotate_data_member = true; 3658 } 3659 3660 return __sort_dimension__add(sd, list, level); 3661 } 3662 3663 for (i = 0; i < ARRAY_SIZE(bstack_sort_dimensions); i++) { 3664 struct sort_dimension *sd = &bstack_sort_dimensions[i]; 3665 3666 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 3667 continue; 3668 3669 if ((sort__mode != SORT_MODE__BRANCH) && 3670 strncasecmp(tok, "callchain_branch_predicted", 3671 strlen(tok)) && 3672 strncasecmp(tok, "callchain_branch_abort", 3673 strlen(tok)) && 3674 strncasecmp(tok, "callchain_branch_cycles", 3675 strlen(tok))) 3676 return -EINVAL; 3677 3678 if (sd->entry == &sort_sym_from || sd->entry == &sort_sym_to) 3679 list->sym = 1; 3680 3681 __sort_dimension__add(sd, list, level); 3682 return 0; 3683 } 3684 3685 for (i = 0; i < ARRAY_SIZE(memory_sort_dimensions); i++) { 3686 struct sort_dimension *sd = &memory_sort_dimensions[i]; 3687 3688 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 3689 continue; 3690 3691 if (sort__mode != SORT_MODE__MEMORY) 3692 return -EINVAL; 3693 3694 if (sd->entry == &sort_mem_dcacheline && cacheline_size() == 0) 3695 return -EINVAL; 3696 3697 if (sd->entry == &sort_mem_daddr_sym) 3698 list->sym = 1; 3699 3700 __sort_dimension__add(sd, list, level); 3701 return 0; 3702 } 3703 3704 for (i = 0; i < ARRAY_SIZE(hpp_sort_dimensions); i++) { 3705 struct hpp_dimension *hd = &hpp_sort_dimensions[i]; 3706 3707 if (strncasecmp(tok, hd->name, strlen(tok))) 3708 continue; 3709 3710 return __hpp_dimension__add(hd, list, level); 3711 } 3712 3713 if (!add_dynamic_entry(evlist, tok, level)) 3714 return 0; 3715 3716 return -ESRCH; 3717 } 3718 3719 /* This should match with sort_dimension__add() above */ 3720 static bool is_hpp_sort_key(const char *key) 3721 { 3722 unsigned i; 3723 3724 for (i = 0; i < ARRAY_SIZE(arch_specific_sort_keys); i++) { 3725 if (!strcmp(arch_specific_sort_keys[i], key) && 3726 !arch_support_sort_key(key)) { 3727 return false; 3728 } 3729 } 3730 3731 for (i = 0; i < ARRAY_SIZE(common_sort_dimensions); i++) { 3732 struct sort_dimension *sd = &common_sort_dimensions[i]; 3733 3734 if (sd->name && !strncasecmp(key, sd->name, strlen(key))) 3735 return false; 3736 } 3737 3738 for (i = 0; i < ARRAY_SIZE(hpp_sort_dimensions); i++) { 3739 struct hpp_dimension *hd = &hpp_sort_dimensions[i]; 3740 3741 if (!strncasecmp(key, hd->name, strlen(key))) 3742 return true; 3743 } 3744 return false; 3745 } 3746 3747 static int setup_sort_list(struct perf_hpp_list *list, char *str, 3748 struct evlist *evlist) 3749 { 3750 char *tmp, *tok; 3751 int ret = 0; 3752 int level = 0; 3753 int next_level = 1; 3754 int prev_level = 0; 3755 bool in_group = false; 3756 bool prev_was_hpp = false; 3757 3758 do { 3759 tok = str; 3760 tmp = strpbrk(str, "{}, "); 3761 if (tmp) { 3762 if (in_group) 3763 next_level = level; 3764 else 3765 next_level = level + 1; 3766 3767 if (*tmp == '{') 3768 in_group = true; 3769 else if (*tmp == '}') 3770 in_group = false; 3771 3772 *tmp = '\0'; 3773 str = tmp + 1; 3774 } 3775 3776 if (*tok) { 3777 if (is_hpp_sort_key(tok)) { 3778 /* keep output (hpp) sort keys in the same level */ 3779 if (prev_was_hpp) { 3780 bool next_same = (level == next_level); 3781 3782 level = prev_level; 3783 next_level = next_same ? level : level+1; 3784 } 3785 prev_was_hpp = true; 3786 } else { 3787 prev_was_hpp = false; 3788 } 3789 3790 ret = sort_dimension__add(list, tok, evlist, level); 3791 if (ret == -EINVAL) { 3792 if (!cacheline_size() && !strncasecmp(tok, "dcacheline", strlen(tok))) 3793 ui__error("The \"dcacheline\" --sort key needs to know the cacheline size and it couldn't be determined on this system"); 3794 else 3795 ui__error("Invalid --sort key: `%s'", tok); 3796 break; 3797 } else if (ret == -ESRCH) { 3798 ui__error("Unknown --sort key: `%s'", tok); 3799 break; 3800 } 3801 prev_level = level; 3802 } 3803 3804 level = next_level; 3805 } while (tmp); 3806 3807 return ret; 3808 } 3809 3810 static const char *get_default_sort_order(struct evlist *evlist) 3811 { 3812 const char *default_sort_orders[] = { 3813 default_sort_order, 3814 default_branch_sort_order, 3815 default_mem_sort_order, 3816 default_top_sort_order, 3817 default_diff_sort_order, 3818 default_tracepoint_sort_order, 3819 }; 3820 bool use_trace = true; 3821 struct evsel *evsel; 3822 3823 BUG_ON(sort__mode >= ARRAY_SIZE(default_sort_orders)); 3824 3825 if (evlist == NULL || evlist__empty(evlist)) 3826 goto out_no_evlist; 3827 3828 evlist__for_each_entry(evlist, evsel) { 3829 if (evsel->core.attr.type != PERF_TYPE_TRACEPOINT) { 3830 use_trace = false; 3831 break; 3832 } 3833 } 3834 3835 if (use_trace) { 3836 sort__mode = SORT_MODE__TRACEPOINT; 3837 if (symbol_conf.raw_trace) 3838 return "trace_fields"; 3839 } 3840 out_no_evlist: 3841 return default_sort_orders[sort__mode]; 3842 } 3843 3844 static int setup_sort_order(struct evlist *evlist) 3845 { 3846 char *new_sort_order; 3847 3848 /* 3849 * Append '+'-prefixed sort order to the default sort 3850 * order string. 3851 */ 3852 if (!sort_order || is_strict_order(sort_order)) 3853 return 0; 3854 3855 if (sort_order[1] == '\0') { 3856 ui__error("Invalid --sort key: `+'"); 3857 return -EINVAL; 3858 } 3859 3860 /* 3861 * We allocate new sort_order string, but we never free it, 3862 * because it's checked over the rest of the code. 3863 */ 3864 if (asprintf(&new_sort_order, "%s,%s", 3865 get_default_sort_order(evlist), sort_order + 1) < 0) { 3866 pr_err("Not enough memory to set up --sort"); 3867 return -ENOMEM; 3868 } 3869 3870 sort_order = new_sort_order; 3871 return 0; 3872 } 3873 3874 /* 3875 * Adds 'pre,' prefix into 'str' is 'pre' is 3876 * not already part of 'str'. 3877 */ 3878 static char *prefix_if_not_in(const char *pre, char *str) 3879 { 3880 char *n; 3881 3882 if (!str || strstr(str, pre)) 3883 return str; 3884 3885 if (asprintf(&n, "%s,%s", pre, str) < 0) 3886 n = NULL; 3887 3888 free(str); 3889 return n; 3890 } 3891 3892 static char *setup_overhead(char *keys) 3893 { 3894 if (sort__mode == SORT_MODE__DIFF) 3895 return keys; 3896 3897 if (symbol_conf.prefer_latency) { 3898 keys = prefix_if_not_in("overhead", keys); 3899 keys = prefix_if_not_in("latency", keys); 3900 if (symbol_conf.cumulate_callchain) { 3901 keys = prefix_if_not_in("overhead_children", keys); 3902 keys = prefix_if_not_in("latency_children", keys); 3903 } 3904 } else if (!keys || (!strstr(keys, "overhead") && 3905 !strstr(keys, "latency"))) { 3906 if (symbol_conf.enable_latency) 3907 keys = prefix_if_not_in("latency", keys); 3908 keys = prefix_if_not_in("overhead", keys); 3909 if (symbol_conf.cumulate_callchain) { 3910 if (symbol_conf.enable_latency) 3911 keys = prefix_if_not_in("latency_children", keys); 3912 keys = prefix_if_not_in("overhead_children", keys); 3913 } 3914 } 3915 3916 return keys; 3917 } 3918 3919 static int __setup_sorting(struct evlist *evlist) 3920 { 3921 char *str; 3922 const char *sort_keys; 3923 int ret = 0; 3924 3925 ret = setup_sort_order(evlist); 3926 if (ret) 3927 return ret; 3928 3929 sort_keys = sort_order; 3930 if (sort_keys == NULL) { 3931 if (is_strict_order(field_order)) { 3932 /* 3933 * If user specified field order but no sort order, 3934 * we'll honor it and not add default sort orders. 3935 */ 3936 return 0; 3937 } 3938 3939 sort_keys = get_default_sort_order(evlist); 3940 } 3941 3942 str = strdup(sort_keys); 3943 if (str == NULL) { 3944 pr_err("Not enough memory to setup sort keys"); 3945 return -ENOMEM; 3946 } 3947 3948 /* 3949 * Prepend overhead fields for backward compatibility. 3950 */ 3951 if (!is_strict_order(field_order)) { 3952 str = setup_overhead(str); 3953 if (str == NULL) { 3954 pr_err("Not enough memory to setup overhead keys"); 3955 return -ENOMEM; 3956 } 3957 } 3958 3959 ret = setup_sort_list(&perf_hpp_list, str, evlist); 3960 3961 free(str); 3962 return ret; 3963 } 3964 3965 void perf_hpp__set_elide(int idx, bool elide) 3966 { 3967 struct perf_hpp_fmt *fmt; 3968 struct hpp_sort_entry *hse; 3969 3970 perf_hpp_list__for_each_format(&perf_hpp_list, fmt) { 3971 if (!perf_hpp__is_sort_entry(fmt)) 3972 continue; 3973 3974 hse = container_of(fmt, struct hpp_sort_entry, hpp); 3975 if (hse->se->se_width_idx == idx) { 3976 fmt->elide = elide; 3977 break; 3978 } 3979 } 3980 } 3981 3982 static bool __get_elide(struct strlist *list, const char *list_name, FILE *fp) 3983 { 3984 if (list && strlist__nr_entries(list) == 1) { 3985 if (fp != NULL) 3986 fprintf(fp, "# %s: %s\n", list_name, 3987 strlist__entry(list, 0)->s); 3988 return true; 3989 } 3990 return false; 3991 } 3992 3993 static bool get_elide(int idx, FILE *output) 3994 { 3995 switch (idx) { 3996 case HISTC_SYMBOL: 3997 return __get_elide(symbol_conf.sym_list, "symbol", output); 3998 case HISTC_DSO: 3999 return __get_elide(symbol_conf.dso_list, "dso", output); 4000 case HISTC_COMM: 4001 return __get_elide(symbol_conf.comm_list, "comm", output); 4002 default: 4003 break; 4004 } 4005 4006 if (sort__mode != SORT_MODE__BRANCH) 4007 return false; 4008 4009 switch (idx) { 4010 case HISTC_SYMBOL_FROM: 4011 return __get_elide(symbol_conf.sym_from_list, "sym_from", output); 4012 case HISTC_SYMBOL_TO: 4013 return __get_elide(symbol_conf.sym_to_list, "sym_to", output); 4014 case HISTC_DSO_FROM: 4015 return __get_elide(symbol_conf.dso_from_list, "dso_from", output); 4016 case HISTC_DSO_TO: 4017 return __get_elide(symbol_conf.dso_to_list, "dso_to", output); 4018 case HISTC_ADDR_FROM: 4019 return __get_elide(symbol_conf.sym_from_list, "addr_from", output); 4020 case HISTC_ADDR_TO: 4021 return __get_elide(symbol_conf.sym_to_list, "addr_to", output); 4022 default: 4023 break; 4024 } 4025 4026 return false; 4027 } 4028 4029 void sort__setup_elide(FILE *output) 4030 { 4031 struct perf_hpp_fmt *fmt; 4032 struct hpp_sort_entry *hse; 4033 4034 perf_hpp_list__for_each_format(&perf_hpp_list, fmt) { 4035 if (!perf_hpp__is_sort_entry(fmt)) 4036 continue; 4037 4038 hse = container_of(fmt, struct hpp_sort_entry, hpp); 4039 fmt->elide = get_elide(hse->se->se_width_idx, output); 4040 } 4041 4042 /* 4043 * It makes no sense to elide all of sort entries. 4044 * Just revert them to show up again. 4045 */ 4046 perf_hpp_list__for_each_format(&perf_hpp_list, fmt) { 4047 if (!perf_hpp__is_sort_entry(fmt)) 4048 continue; 4049 4050 if (!fmt->elide) 4051 return; 4052 } 4053 4054 perf_hpp_list__for_each_format(&perf_hpp_list, fmt) { 4055 if (!perf_hpp__is_sort_entry(fmt)) 4056 continue; 4057 4058 fmt->elide = false; 4059 } 4060 } 4061 4062 int output_field_add(struct perf_hpp_list *list, const char *tok, int *level) 4063 { 4064 unsigned int i; 4065 4066 for (i = 0; i < ARRAY_SIZE(hpp_sort_dimensions); i++) { 4067 struct hpp_dimension *hd = &hpp_sort_dimensions[i]; 4068 4069 if (strncasecmp(tok, hd->name, strlen(tok))) 4070 continue; 4071 4072 if (!strcasecmp(tok, "weight")) 4073 ui__warning("--fields weight shows the average value unlike in the --sort key.\n"); 4074 4075 if (hd->mem_mode && sort__mode != SORT_MODE__MEMORY) 4076 continue; 4077 4078 return __hpp_dimension__add_output(list, hd, *level); 4079 } 4080 4081 /* 4082 * A non-output field will increase level so that it can be in a 4083 * different hierarchy. 4084 */ 4085 (*level)++; 4086 4087 for (i = 0; i < ARRAY_SIZE(common_sort_dimensions); i++) { 4088 struct sort_dimension *sd = &common_sort_dimensions[i]; 4089 4090 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 4091 continue; 4092 4093 return __sort_dimension__add_output(list, sd, *level); 4094 } 4095 4096 for (i = 0; i < ARRAY_SIZE(bstack_sort_dimensions); i++) { 4097 struct sort_dimension *sd = &bstack_sort_dimensions[i]; 4098 4099 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 4100 continue; 4101 4102 if (sort__mode != SORT_MODE__BRANCH) 4103 return -EINVAL; 4104 4105 return __sort_dimension__add_output(list, sd, *level); 4106 } 4107 4108 for (i = 0; i < ARRAY_SIZE(memory_sort_dimensions); i++) { 4109 struct sort_dimension *sd = &memory_sort_dimensions[i]; 4110 4111 if (!sd->name || strncasecmp(tok, sd->name, strlen(tok))) 4112 continue; 4113 4114 if (sort__mode != SORT_MODE__MEMORY) 4115 return -EINVAL; 4116 4117 return __sort_dimension__add_output(list, sd, *level); 4118 } 4119 4120 return -ESRCH; 4121 } 4122 4123 static int setup_output_list(struct perf_hpp_list *list, char *str) 4124 { 4125 char *tmp, *tok; 4126 int ret = 0; 4127 int level = 0; 4128 4129 for (tok = strtok_r(str, ", ", &tmp); 4130 tok; tok = strtok_r(NULL, ", ", &tmp)) { 4131 ret = output_field_add(list, tok, &level); 4132 if (ret == -EINVAL) { 4133 ui__error("Invalid --fields key: `%s'", tok); 4134 break; 4135 } else if (ret == -ESRCH) { 4136 ui__error("Unknown --fields key: `%s'", tok); 4137 break; 4138 } 4139 } 4140 4141 return ret; 4142 } 4143 4144 void reset_dimensions(void) 4145 { 4146 unsigned int i; 4147 4148 for (i = 0; i < ARRAY_SIZE(common_sort_dimensions); i++) 4149 common_sort_dimensions[i].taken = 0; 4150 4151 for (i = 0; i < ARRAY_SIZE(hpp_sort_dimensions); i++) 4152 hpp_sort_dimensions[i].taken = 0; 4153 4154 for (i = 0; i < ARRAY_SIZE(bstack_sort_dimensions); i++) 4155 bstack_sort_dimensions[i].taken = 0; 4156 4157 for (i = 0; i < ARRAY_SIZE(memory_sort_dimensions); i++) 4158 memory_sort_dimensions[i].taken = 0; 4159 } 4160 4161 bool is_strict_order(const char *order) 4162 { 4163 return order && (*order != '+'); 4164 } 4165 4166 static int __setup_output_field(void) 4167 { 4168 char *str, *strp; 4169 int ret = -EINVAL; 4170 4171 if (field_order == NULL) 4172 return 0; 4173 4174 strp = str = strdup(field_order); 4175 if (str == NULL) { 4176 pr_err("Not enough memory to setup output fields"); 4177 return -ENOMEM; 4178 } 4179 4180 if (!is_strict_order(field_order)) 4181 strp++; 4182 4183 if (!strlen(strp)) { 4184 ui__error("Invalid --fields key: `+'"); 4185 goto out; 4186 } 4187 4188 ret = setup_output_list(&perf_hpp_list, strp); 4189 4190 out: 4191 free(str); 4192 return ret; 4193 } 4194 4195 int setup_sorting(struct evlist *evlist) 4196 { 4197 int err; 4198 4199 err = __setup_sorting(evlist); 4200 if (err < 0) 4201 return err; 4202 4203 if (parent_pattern != default_parent_pattern) { 4204 err = sort_dimension__add(&perf_hpp_list, "parent", evlist, -1); 4205 if (err < 0) 4206 return err; 4207 } 4208 4209 reset_dimensions(); 4210 4211 /* 4212 * perf diff doesn't use default hpp output fields. 4213 */ 4214 if (sort__mode != SORT_MODE__DIFF) 4215 perf_hpp__init(); 4216 4217 err = __setup_output_field(); 4218 if (err < 0) 4219 return err; 4220 4221 err = perf_hpp__alloc_mem_stats(&perf_hpp_list, evlist); 4222 if (err < 0) 4223 return err; 4224 4225 /* copy sort keys to output fields */ 4226 perf_hpp__setup_output_field(&perf_hpp_list); 4227 /* and then copy output fields to sort keys */ 4228 perf_hpp__append_sort_keys(&perf_hpp_list); 4229 4230 /* setup hists-specific output fields */ 4231 if (perf_hpp__setup_hists_formats(&perf_hpp_list, evlist) < 0) 4232 return -1; 4233 4234 return 0; 4235 } 4236 4237 void reset_output_field(void) 4238 { 4239 perf_hpp_list.need_collapse = 0; 4240 perf_hpp_list.parent = 0; 4241 perf_hpp_list.sym = 0; 4242 perf_hpp_list.dso = 0; 4243 4244 field_order = NULL; 4245 sort_order = NULL; 4246 4247 reset_dimensions(); 4248 perf_hpp__reset_output_field(&perf_hpp_list); 4249 } 4250 4251 #define INDENT (3*8 + 1) 4252 4253 static void add_key(struct strbuf *sb, const char *str, int *llen) 4254 { 4255 if (!str) 4256 return; 4257 4258 if (*llen >= 75) { 4259 strbuf_addstr(sb, "\n\t\t\t "); 4260 *llen = INDENT; 4261 } 4262 strbuf_addf(sb, " %s", str); 4263 *llen += strlen(str) + 1; 4264 } 4265 4266 static void add_sort_string(struct strbuf *sb, struct sort_dimension *s, int n, 4267 int *llen) 4268 { 4269 int i; 4270 4271 for (i = 0; i < n; i++) 4272 add_key(sb, s[i].name, llen); 4273 } 4274 4275 static void add_hpp_sort_string(struct strbuf *sb, struct hpp_dimension *s, int n, 4276 int *llen) 4277 { 4278 int i; 4279 4280 for (i = 0; i < n; i++) 4281 add_key(sb, s[i].name, llen); 4282 } 4283 4284 char *sort_help(const char *prefix, enum sort_mode mode) 4285 { 4286 struct strbuf sb; 4287 char *s; 4288 int len = strlen(prefix) + INDENT; 4289 4290 strbuf_init(&sb, 300); 4291 strbuf_addstr(&sb, prefix); 4292 add_hpp_sort_string(&sb, hpp_sort_dimensions, 4293 ARRAY_SIZE(hpp_sort_dimensions), &len); 4294 add_sort_string(&sb, common_sort_dimensions, 4295 ARRAY_SIZE(common_sort_dimensions), &len); 4296 if (mode == SORT_MODE__NORMAL || mode == SORT_MODE__BRANCH) 4297 add_sort_string(&sb, bstack_sort_dimensions, 4298 ARRAY_SIZE(bstack_sort_dimensions), &len); 4299 if (mode == SORT_MODE__NORMAL || mode == SORT_MODE__MEMORY) 4300 add_sort_string(&sb, memory_sort_dimensions, 4301 ARRAY_SIZE(memory_sort_dimensions), &len); 4302 s = strbuf_detach(&sb, NULL); 4303 strbuf_release(&sb); 4304 return s; 4305 } 4306