1/* 2 * builtin-trace.c 3 * 4 * Builtin 'trace' command: 5 * 6 * Display a continuously updated trace of any workload, CPU, specific PID, 7 * system wide, etc. Default format is loosely strace like, but any other 8 * event may be specified using --event. 9 * 10 * Copyright (C) 2012, 2013, 2014, 2015 Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com> 11 * 12 * Initially based on the 'trace' prototype by Thomas Gleixner: 13 * 14 * http://lwn.net/Articles/415728/ ("Announcing a new utility: 'trace'") 15 */ 16 17#include "util/record.h" 18#include <traceevent/event-parse.h> 19#include <api/fs/tracing_path.h> 20#include <bpf/bpf.h> 21#include "util/bpf_map.h" 22#include "util/rlimit.h" 23#include "builtin.h" 24#include "util/cgroup.h" 25#include "util/color.h" 26#include "util/config.h" 27#include "util/debug.h" 28#include "util/dso.h" 29#include "util/env.h" 30#include "util/event.h" 31#include "util/evsel.h" 32#include "util/evsel_fprintf.h" 33#include "util/synthetic-events.h" 34#include "util/evlist.h" 35#include "util/evswitch.h" 36#include "util/mmap.h" 37#include <subcmd/pager.h> 38#include <subcmd/exec-cmd.h> 39#include "util/machine.h" 40#include "util/map.h" 41#include "util/symbol.h" 42#include "util/path.h" 43#include "util/session.h" 44#include "util/thread.h" 45#include <subcmd/parse-options.h> 46#include "util/strlist.h" 47#include "util/intlist.h" 48#include "util/thread_map.h" 49#include "util/stat.h" 50#include "util/tool.h" 51#include "util/util.h" 52#include "trace/beauty/beauty.h" 53#include "trace-event.h" 54#include "util/parse-events.h" 55#include "util/bpf-loader.h" 56#include "callchain.h" 57#include "print_binary.h" 58#include "string2.h" 59#include "syscalltbl.h" 60#include "rb_resort.h" 61#include "../perf.h" 62 63#include <errno.h> 64#include <inttypes.h> 65#include <poll.h> 66#include <signal.h> 67#include <stdlib.h> 68#include <string.h> 69#include <linux/err.h> 70#include <linux/filter.h> 71#include <linux/kernel.h> 72#include <linux/random.h> 73#include <linux/stringify.h> 74#include <linux/time64.h> 75#include <linux/zalloc.h> 76#include <fcntl.h> 77#include <sys/sysmacros.h> 78 79#include <linux/ctype.h> 80#include <perf/mmap.h> 81 82#ifndef O_CLOEXEC 83# define O_CLOEXEC 02000000 84#endif 85 86#ifndef F_LINUX_SPECIFIC_BASE 87# define F_LINUX_SPECIFIC_BASE 1024 88#endif 89 90#define RAW_SYSCALL_ARGS_NUM 6 91 92/* 93 * strtoul: Go from a string to a value, i.e. for msr: MSR_FS_BASE to 0xc0000100 94 */ 95struct syscall_arg_fmt { 96 size_t (*scnprintf)(char *bf, size_t size, struct syscall_arg *arg); 97 bool (*strtoul)(char *bf, size_t size, struct syscall_arg *arg, u64 *val); 98 unsigned long (*mask_val)(struct syscall_arg *arg, unsigned long val); 99 void *parm; 100 const char *name; 101 u16 nr_entries; // for arrays 102 bool show_zero; 103}; 104 105struct syscall_fmt { 106 const char *name; 107 const char *alias; 108 struct { 109 const char *sys_enter, 110 *sys_exit; 111 } bpf_prog_name; 112 struct syscall_arg_fmt arg[RAW_SYSCALL_ARGS_NUM]; 113 u8 nr_args; 114 bool errpid; 115 bool timeout; 116 bool hexret; 117}; 118 119struct trace { 120 struct perf_tool tool; 121 struct syscalltbl *sctbl; 122 struct { 123 struct syscall *table; 124 struct bpf_map *map; 125 struct { // per syscall BPF_MAP_TYPE_PROG_ARRAY 126 struct bpf_map *sys_enter, 127 *sys_exit; 128 } prog_array; 129 struct { 130 struct evsel *sys_enter, 131 *sys_exit, 132 *augmented; 133 } events; 134 struct bpf_program *unaugmented_prog; 135 } syscalls; 136 struct { 137 struct bpf_map *map; 138 } dump; 139 struct record_opts opts; 140 struct evlist *evlist; 141 struct machine *host; 142 struct thread *current; 143 struct bpf_object *bpf_obj; 144 struct cgroup *cgroup; 145 u64 base_time; 146 FILE *output; 147 unsigned long nr_events; 148 unsigned long nr_events_printed; 149 unsigned long max_events; 150 struct evswitch evswitch; 151 struct strlist *ev_qualifier; 152 struct { 153 size_t nr; 154 int *entries; 155 } ev_qualifier_ids; 156 struct { 157 size_t nr; 158 pid_t *entries; 159 struct bpf_map *map; 160 } filter_pids; 161 double duration_filter; 162 double runtime_ms; 163 struct { 164 u64 vfs_getname, 165 proc_getname; 166 } stats; 167 unsigned int max_stack; 168 unsigned int min_stack; 169 int raw_augmented_syscalls_args_size; 170 bool raw_augmented_syscalls; 171 bool fd_path_disabled; 172 bool sort_events; 173 bool not_ev_qualifier; 174 bool live; 175 bool full_time; 176 bool sched; 177 bool multiple_threads; 178 bool summary; 179 bool summary_only; 180 bool errno_summary; 181 bool failure_only; 182 bool show_comm; 183 bool print_sample; 184 bool show_tool_stats; 185 bool trace_syscalls; 186 bool libtraceevent_print; 187 bool kernel_syscallchains; 188 s16 args_alignment; 189 bool show_tstamp; 190 bool show_duration; 191 bool show_zeros; 192 bool show_arg_names; 193 bool show_string_prefix; 194 bool force; 195 bool vfs_getname; 196 int trace_pgfaults; 197 char *perfconfig_events; 198 struct { 199 struct ordered_events data; 200 u64 last; 201 } oe; 202}; 203 204struct tp_field { 205 int offset; 206 union { 207 u64 (*integer)(struct tp_field *field, struct perf_sample *sample); 208 void *(*pointer)(struct tp_field *field, struct perf_sample *sample); 209 }; 210}; 211 212#define TP_UINT_FIELD(bits) \ 213static u64 tp_field__u##bits(struct tp_field *field, struct perf_sample *sample) \ 214{ \ 215 u##bits value; \ 216 memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \ 217 return value; \ 218} 219 220TP_UINT_FIELD(8); 221TP_UINT_FIELD(16); 222TP_UINT_FIELD(32); 223TP_UINT_FIELD(64); 224 225#define TP_UINT_FIELD__SWAPPED(bits) \ 226static u64 tp_field__swapped_u##bits(struct tp_field *field, struct perf_sample *sample) \ 227{ \ 228 u##bits value; \ 229 memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \ 230 return bswap_##bits(value);\ 231} 232 233TP_UINT_FIELD__SWAPPED(16); 234TP_UINT_FIELD__SWAPPED(32); 235TP_UINT_FIELD__SWAPPED(64); 236 237static int __tp_field__init_uint(struct tp_field *field, int size, int offset, bool needs_swap) 238{ 239 field->offset = offset; 240 241 switch (size) { 242 case 1: 243 field->integer = tp_field__u8; 244 break; 245 case 2: 246 field->integer = needs_swap ? tp_field__swapped_u16 : tp_field__u16; 247 break; 248 case 4: 249 field->integer = needs_swap ? tp_field__swapped_u32 : tp_field__u32; 250 break; 251 case 8: 252 field->integer = needs_swap ? tp_field__swapped_u64 : tp_field__u64; 253 break; 254 default: 255 return -1; 256 } 257 258 return 0; 259} 260 261static int tp_field__init_uint(struct tp_field *field, struct tep_format_field *format_field, bool needs_swap) 262{ 263 return __tp_field__init_uint(field, format_field->size, format_field->offset, needs_swap); 264} 265 266static void *tp_field__ptr(struct tp_field *field, struct perf_sample *sample) 267{ 268 return sample->raw_data + field->offset; 269} 270 271static int __tp_field__init_ptr(struct tp_field *field, int offset) 272{ 273 field->offset = offset; 274 field->pointer = tp_field__ptr; 275 return 0; 276} 277 278static int tp_field__init_ptr(struct tp_field *field, struct tep_format_field *format_field) 279{ 280 return __tp_field__init_ptr(field, format_field->offset); 281} 282 283struct syscall_tp { 284 struct tp_field id; 285 union { 286 struct tp_field args, ret; 287 }; 288}; 289 290/* 291 * The evsel->priv as used by 'perf trace' 292 * sc: for raw_syscalls:sys_{enter,exit} and syscalls:sys_{enter,exit}_SYSCALLNAME 293 * fmt: for all the other tracepoints 294 */ 295struct evsel_trace { 296 struct syscall_tp sc; 297 struct syscall_arg_fmt *fmt; 298}; 299 300static struct evsel_trace *evsel_trace__new(void) 301{ 302 return zalloc(sizeof(struct evsel_trace)); 303} 304 305static void evsel_trace__delete(struct evsel_trace *et) 306{ 307 if (et == NULL) 308 return; 309 310 zfree(&et->fmt); 311 free(et); 312} 313 314/* 315 * Used with raw_syscalls:sys_{enter,exit} and with the 316 * syscalls:sys_{enter,exit}_SYSCALL tracepoints 317 */ 318static inline struct syscall_tp *__evsel__syscall_tp(struct evsel *evsel) 319{ 320 struct evsel_trace *et = evsel->priv; 321 322 return &et->sc; 323} 324 325static struct syscall_tp *evsel__syscall_tp(struct evsel *evsel) 326{ 327 if (evsel->priv == NULL) { 328 evsel->priv = evsel_trace__new(); 329 if (evsel->priv == NULL) 330 return NULL; 331 } 332 333 return __evsel__syscall_tp(evsel); 334} 335 336/* 337 * Used with all the other tracepoints. 338 */ 339static inline struct syscall_arg_fmt *__evsel__syscall_arg_fmt(struct evsel *evsel) 340{ 341 struct evsel_trace *et = evsel->priv; 342 343 return et->fmt; 344} 345 346static struct syscall_arg_fmt *evsel__syscall_arg_fmt(struct evsel *evsel) 347{ 348 struct evsel_trace *et = evsel->priv; 349 350 if (evsel->priv == NULL) { 351 et = evsel->priv = evsel_trace__new(); 352 353 if (et == NULL) 354 return NULL; 355 } 356 357 if (et->fmt == NULL) { 358 et->fmt = calloc(evsel->tp_format->format.nr_fields, sizeof(struct syscall_arg_fmt)); 359 if (et->fmt == NULL) 360 goto out_delete; 361 } 362 363 return __evsel__syscall_arg_fmt(evsel); 364 365out_delete: 366 evsel_trace__delete(evsel->priv); 367 evsel->priv = NULL; 368 return NULL; 369} 370 371static int evsel__init_tp_uint_field(struct evsel *evsel, struct tp_field *field, const char *name) 372{ 373 struct tep_format_field *format_field = evsel__field(evsel, name); 374 375 if (format_field == NULL) 376 return -1; 377 378 return tp_field__init_uint(field, format_field, evsel->needs_swap); 379} 380 381#define perf_evsel__init_sc_tp_uint_field(evsel, name) \ 382 ({ struct syscall_tp *sc = __evsel__syscall_tp(evsel);\ 383 evsel__init_tp_uint_field(evsel, &sc->name, #name); }) 384 385static int evsel__init_tp_ptr_field(struct evsel *evsel, struct tp_field *field, const char *name) 386{ 387 struct tep_format_field *format_field = evsel__field(evsel, name); 388 389 if (format_field == NULL) 390 return -1; 391 392 return tp_field__init_ptr(field, format_field); 393} 394 395#define perf_evsel__init_sc_tp_ptr_field(evsel, name) \ 396 ({ struct syscall_tp *sc = __evsel__syscall_tp(evsel);\ 397 evsel__init_tp_ptr_field(evsel, &sc->name, #name); }) 398 399static void evsel__delete_priv(struct evsel *evsel) 400{ 401 zfree(&evsel->priv); 402 evsel__delete(evsel); 403} 404 405static int evsel__init_syscall_tp(struct evsel *evsel) 406{ 407 struct syscall_tp *sc = evsel__syscall_tp(evsel); 408 409 if (sc != NULL) { 410 if (evsel__init_tp_uint_field(evsel, &sc->id, "__syscall_nr") && 411 evsel__init_tp_uint_field(evsel, &sc->id, "nr")) 412 return -ENOENT; 413 return 0; 414 } 415 416 return -ENOMEM; 417} 418 419static int evsel__init_augmented_syscall_tp(struct evsel *evsel, struct evsel *tp) 420{ 421 struct syscall_tp *sc = evsel__syscall_tp(evsel); 422 423 if (sc != NULL) { 424 struct tep_format_field *syscall_id = evsel__field(tp, "id"); 425 if (syscall_id == NULL) 426 syscall_id = evsel__field(tp, "__syscall_nr"); 427 if (syscall_id == NULL || 428 __tp_field__init_uint(&sc->id, syscall_id->size, syscall_id->offset, evsel->needs_swap)) 429 return -EINVAL; 430 431 return 0; 432 } 433 434 return -ENOMEM; 435} 436 437static int evsel__init_augmented_syscall_tp_args(struct evsel *evsel) 438{ 439 struct syscall_tp *sc = __evsel__syscall_tp(evsel); 440 441 return __tp_field__init_ptr(&sc->args, sc->id.offset + sizeof(u64)); 442} 443 444static int evsel__init_augmented_syscall_tp_ret(struct evsel *evsel) 445{ 446 struct syscall_tp *sc = __evsel__syscall_tp(evsel); 447 448 return __tp_field__init_uint(&sc->ret, sizeof(u64), sc->id.offset + sizeof(u64), evsel->needs_swap); 449} 450 451static int evsel__init_raw_syscall_tp(struct evsel *evsel, void *handler) 452{ 453 if (evsel__syscall_tp(evsel) != NULL) { 454 if (perf_evsel__init_sc_tp_uint_field(evsel, id)) 455 return -ENOENT; 456 457 evsel->handler = handler; 458 return 0; 459 } 460 461 return -ENOMEM; 462} 463 464static struct evsel *perf_evsel__raw_syscall_newtp(const char *direction, void *handler) 465{ 466 struct evsel *evsel = evsel__newtp("raw_syscalls", direction); 467 468 /* older kernel (e.g., RHEL6) use syscalls:{enter,exit} */ 469 if (IS_ERR(evsel)) 470 evsel = evsel__newtp("syscalls", direction); 471 472 if (IS_ERR(evsel)) 473 return NULL; 474 475 if (evsel__init_raw_syscall_tp(evsel, handler)) 476 goto out_delete; 477 478 return evsel; 479 480out_delete: 481 evsel__delete_priv(evsel); 482 return NULL; 483} 484 485#define perf_evsel__sc_tp_uint(evsel, name, sample) \ 486 ({ struct syscall_tp *fields = __evsel__syscall_tp(evsel); \ 487 fields->name.integer(&fields->name, sample); }) 488 489#define perf_evsel__sc_tp_ptr(evsel, name, sample) \ 490 ({ struct syscall_tp *fields = __evsel__syscall_tp(evsel); \ 491 fields->name.pointer(&fields->name, sample); }) 492 493size_t strarray__scnprintf_suffix(struct strarray *sa, char *bf, size_t size, const char *intfmt, bool show_suffix, int val) 494{ 495 int idx = val - sa->offset; 496 497 if (idx < 0 || idx >= sa->nr_entries || sa->entries[idx] == NULL) { 498 size_t printed = scnprintf(bf, size, intfmt, val); 499 if (show_suffix) 500 printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sa->prefix); 501 return printed; 502 } 503 504 return scnprintf(bf, size, "%s%s", sa->entries[idx], show_suffix ? sa->prefix : ""); 505} 506 507size_t strarray__scnprintf(struct strarray *sa, char *bf, size_t size, const char *intfmt, bool show_prefix, int val) 508{ 509 int idx = val - sa->offset; 510 511 if (idx < 0 || idx >= sa->nr_entries || sa->entries[idx] == NULL) { 512 size_t printed = scnprintf(bf, size, intfmt, val); 513 if (show_prefix) 514 printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sa->prefix); 515 return printed; 516 } 517 518 return scnprintf(bf, size, "%s%s", show_prefix ? sa->prefix : "", sa->entries[idx]); 519} 520 521static size_t __syscall_arg__scnprintf_strarray(char *bf, size_t size, 522 const char *intfmt, 523 struct syscall_arg *arg) 524{ 525 return strarray__scnprintf(arg->parm, bf, size, intfmt, arg->show_string_prefix, arg->val); 526} 527 528static size_t syscall_arg__scnprintf_strarray(char *bf, size_t size, 529 struct syscall_arg *arg) 530{ 531 return __syscall_arg__scnprintf_strarray(bf, size, "%d", arg); 532} 533 534#define SCA_STRARRAY syscall_arg__scnprintf_strarray 535 536bool syscall_arg__strtoul_strarray(char *bf, size_t size, struct syscall_arg *arg, u64 *ret) 537{ 538 return strarray__strtoul(arg->parm, bf, size, ret); 539} 540 541bool syscall_arg__strtoul_strarray_flags(char *bf, size_t size, struct syscall_arg *arg, u64 *ret) 542{ 543 return strarray__strtoul_flags(arg->parm, bf, size, ret); 544} 545 546bool syscall_arg__strtoul_strarrays(char *bf, size_t size, struct syscall_arg *arg, u64 *ret) 547{ 548 return strarrays__strtoul(arg->parm, bf, size, ret); 549} 550 551size_t syscall_arg__scnprintf_strarray_flags(char *bf, size_t size, struct syscall_arg *arg) 552{ 553 return strarray__scnprintf_flags(arg->parm, bf, size, arg->show_string_prefix, arg->val); 554} 555 556size_t strarrays__scnprintf(struct strarrays *sas, char *bf, size_t size, const char *intfmt, bool show_prefix, int val) 557{ 558 size_t printed; 559 int i; 560 561 for (i = 0; i < sas->nr_entries; ++i) { 562 struct strarray *sa = sas->entries[i]; 563 int idx = val - sa->offset; 564 565 if (idx >= 0 && idx < sa->nr_entries) { 566 if (sa->entries[idx] == NULL) 567 break; 568 return scnprintf(bf, size, "%s%s", show_prefix ? sa->prefix : "", sa->entries[idx]); 569 } 570 } 571 572 printed = scnprintf(bf, size, intfmt, val); 573 if (show_prefix) 574 printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sas->entries[0]->prefix); 575 return printed; 576} 577 578bool strarray__strtoul(struct strarray *sa, char *bf, size_t size, u64 *ret) 579{ 580 int i; 581 582 for (i = 0; i < sa->nr_entries; ++i) { 583 if (sa->entries[i] && strncmp(sa->entries[i], bf, size) == 0 && sa->entries[i][size] == '\0') { 584 *ret = sa->offset + i; 585 return true; 586 } 587 } 588 589 return false; 590} 591 592bool strarray__strtoul_flags(struct strarray *sa, char *bf, size_t size, u64 *ret) 593{ 594 u64 val = 0; 595 char *tok = bf, *sep, *end; 596 597 *ret = 0; 598 599 while (size != 0) { 600 int toklen = size; 601 602 sep = memchr(tok, '|', size); 603 if (sep != NULL) { 604 size -= sep - tok + 1; 605 606 end = sep - 1; 607 while (end > tok && isspace(*end)) 608 --end; 609 610 toklen = end - tok + 1; 611 } 612 613 while (isspace(*tok)) 614 ++tok; 615 616 if (isalpha(*tok) || *tok == '_') { 617 if (!strarray__strtoul(sa, tok, toklen, &val)) 618 return false; 619 } else { 620 bool is_hexa = tok[0] == 0 && (tok[1] = 'x' || tok[1] == 'X'); 621 622 val = strtoul(tok, NULL, is_hexa ? 16 : 0); 623 } 624 625 *ret |= (1 << (val - 1)); 626 627 if (sep == NULL) 628 break; 629 tok = sep + 1; 630 } 631 632 return true; 633} 634 635bool strarrays__strtoul(struct strarrays *sas, char *bf, size_t size, u64 *ret) 636{ 637 int i; 638 639 for (i = 0; i < sas->nr_entries; ++i) { 640 struct strarray *sa = sas->entries[i]; 641 642 if (strarray__strtoul(sa, bf, size, ret)) 643 return true; 644 } 645 646 return false; 647} 648 649size_t syscall_arg__scnprintf_strarrays(char *bf, size_t size, 650 struct syscall_arg *arg) 651{ 652 return strarrays__scnprintf(arg->parm, bf, size, "%d", arg->show_string_prefix, arg->val); 653} 654 655#ifndef AT_FDCWD 656#define AT_FDCWD -100 657#endif 658 659static size_t syscall_arg__scnprintf_fd_at(char *bf, size_t size, 660 struct syscall_arg *arg) 661{ 662 int fd = arg->val; 663 const char *prefix = "AT_FD"; 664 665 if (fd == AT_FDCWD) 666 return scnprintf(bf, size, "%s%s", arg->show_string_prefix ? prefix : "", "CWD"); 667 668 return syscall_arg__scnprintf_fd(bf, size, arg); 669} 670 671#define SCA_FDAT syscall_arg__scnprintf_fd_at 672 673static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size, 674 struct syscall_arg *arg); 675 676#define SCA_CLOSE_FD syscall_arg__scnprintf_close_fd 677 678size_t syscall_arg__scnprintf_hex(char *bf, size_t size, struct syscall_arg *arg) 679{ 680 return scnprintf(bf, size, "%#lx", arg->val); 681} 682 683size_t syscall_arg__scnprintf_ptr(char *bf, size_t size, struct syscall_arg *arg) 684{ 685 if (arg->val == 0) 686 return scnprintf(bf, size, "NULL"); 687 return syscall_arg__scnprintf_hex(bf, size, arg); 688} 689 690size_t syscall_arg__scnprintf_int(char *bf, size_t size, struct syscall_arg *arg) 691{ 692 return scnprintf(bf, size, "%d", arg->val); 693} 694 695size_t syscall_arg__scnprintf_long(char *bf, size_t size, struct syscall_arg *arg) 696{ 697 return scnprintf(bf, size, "%ld", arg->val); 698} 699 700static size_t syscall_arg__scnprintf_char_array(char *bf, size_t size, struct syscall_arg *arg) 701{ 702 // XXX Hey, maybe for sched:sched_switch prev/next comm fields we can 703 // fill missing comms using thread__set_comm()... 704 // here or in a special syscall_arg__scnprintf_pid_sched_tp... 705 return scnprintf(bf, size, "\"%-.*s\"", arg->fmt->nr_entries ?: arg->len, arg->val); 706} 707 708#define SCA_CHAR_ARRAY syscall_arg__scnprintf_char_array 709 710static const char *bpf_cmd[] = { 711 "MAP_CREATE", "MAP_LOOKUP_ELEM", "MAP_UPDATE_ELEM", "MAP_DELETE_ELEM", 712 "MAP_GET_NEXT_KEY", "PROG_LOAD", 713}; 714static DEFINE_STRARRAY(bpf_cmd, "BPF_"); 715 716static const char *fsmount_flags[] = { 717 [1] = "CLOEXEC", 718}; 719static DEFINE_STRARRAY(fsmount_flags, "FSMOUNT_"); 720 721#include "trace/beauty/generated/fsconfig_arrays.c" 722 723static DEFINE_STRARRAY(fsconfig_cmds, "FSCONFIG_"); 724 725static const char *epoll_ctl_ops[] = { "ADD", "DEL", "MOD", }; 726static DEFINE_STRARRAY_OFFSET(epoll_ctl_ops, "EPOLL_CTL_", 1); 727 728static const char *itimers[] = { "REAL", "VIRTUAL", "PROF", }; 729static DEFINE_STRARRAY(itimers, "ITIMER_"); 730 731static const char *keyctl_options[] = { 732 "GET_KEYRING_ID", "JOIN_SESSION_KEYRING", "UPDATE", "REVOKE", "CHOWN", 733 "SETPERM", "DESCRIBE", "CLEAR", "LINK", "UNLINK", "SEARCH", "READ", 734 "INSTANTIATE", "NEGATE", "SET_REQKEY_KEYRING", "SET_TIMEOUT", 735 "ASSUME_AUTHORITY", "GET_SECURITY", "SESSION_TO_PARENT", "REJECT", 736 "INSTANTIATE_IOV", "INVALIDATE", "GET_PERSISTENT", 737}; 738static DEFINE_STRARRAY(keyctl_options, "KEYCTL_"); 739 740static const char *whences[] = { "SET", "CUR", "END", 741#ifdef SEEK_DATA 742"DATA", 743#endif 744#ifdef SEEK_HOLE 745"HOLE", 746#endif 747}; 748static DEFINE_STRARRAY(whences, "SEEK_"); 749 750static const char *fcntl_cmds[] = { 751 "DUPFD", "GETFD", "SETFD", "GETFL", "SETFL", "GETLK", "SETLK", 752 "SETLKW", "SETOWN", "GETOWN", "SETSIG", "GETSIG", "GETLK64", 753 "SETLK64", "SETLKW64", "SETOWN_EX", "GETOWN_EX", 754 "GETOWNER_UIDS", 755}; 756static DEFINE_STRARRAY(fcntl_cmds, "F_"); 757 758static const char *fcntl_linux_specific_cmds[] = { 759 "SETLEASE", "GETLEASE", "NOTIFY", [5] = "CANCELLK", "DUPFD_CLOEXEC", 760 "SETPIPE_SZ", "GETPIPE_SZ", "ADD_SEALS", "GET_SEALS", 761 "GET_RW_HINT", "SET_RW_HINT", "GET_FILE_RW_HINT", "SET_FILE_RW_HINT", 762}; 763 764static DEFINE_STRARRAY_OFFSET(fcntl_linux_specific_cmds, "F_", F_LINUX_SPECIFIC_BASE); 765 766static struct strarray *fcntl_cmds_arrays[] = { 767 &strarray__fcntl_cmds, 768 &strarray__fcntl_linux_specific_cmds, 769}; 770 771static DEFINE_STRARRAYS(fcntl_cmds_arrays); 772 773static const char *rlimit_resources[] = { 774 "CPU", "FSIZE", "DATA", "STACK", "CORE", "RSS", "NPROC", "NOFILE", 775 "MEMLOCK", "AS", "LOCKS", "SIGPENDING", "MSGQUEUE", "NICE", "RTPRIO", 776 "RTTIME", 777}; 778static DEFINE_STRARRAY(rlimit_resources, "RLIMIT_"); 779 780static const char *sighow[] = { "BLOCK", "UNBLOCK", "SETMASK", }; 781static DEFINE_STRARRAY(sighow, "SIG_"); 782 783static const char *clockid[] = { 784 "REALTIME", "MONOTONIC", "PROCESS_CPUTIME_ID", "THREAD_CPUTIME_ID", 785 "MONOTONIC_RAW", "REALTIME_COARSE", "MONOTONIC_COARSE", "BOOTTIME", 786 "REALTIME_ALARM", "BOOTTIME_ALARM", "SGI_CYCLE", "TAI" 787}; 788static DEFINE_STRARRAY(clockid, "CLOCK_"); 789 790static size_t syscall_arg__scnprintf_access_mode(char *bf, size_t size, 791 struct syscall_arg *arg) 792{ 793 bool show_prefix = arg->show_string_prefix; 794 const char *suffix = "_OK"; 795 size_t printed = 0; 796 int mode = arg->val; 797 798 if (mode == F_OK) /* 0 */ 799 return scnprintf(bf, size, "F%s", show_prefix ? suffix : ""); 800#define P_MODE(n) \ 801 if (mode & n##_OK) { \ 802 printed += scnprintf(bf + printed, size - printed, "%s%s", #n, show_prefix ? suffix : ""); \ 803 mode &= ~n##_OK; \ 804 } 805 806 P_MODE(R); 807 P_MODE(W); 808 P_MODE(X); 809#undef P_MODE 810 811 if (mode) 812 printed += scnprintf(bf + printed, size - printed, "|%#x", mode); 813 814 return printed; 815} 816 817#define SCA_ACCMODE syscall_arg__scnprintf_access_mode 818 819static size_t syscall_arg__scnprintf_filename(char *bf, size_t size, 820 struct syscall_arg *arg); 821 822#define SCA_FILENAME syscall_arg__scnprintf_filename 823 824static size_t syscall_arg__scnprintf_pipe_flags(char *bf, size_t size, 825 struct syscall_arg *arg) 826{ 827 bool show_prefix = arg->show_string_prefix; 828 const char *prefix = "O_"; 829 int printed = 0, flags = arg->val; 830 831#define P_FLAG(n) \ 832 if (flags & O_##n) { \ 833 printed += scnprintf(bf + printed, size - printed, "%s%s%s", printed ? "|" : "", show_prefix ? prefix : "", #n); \ 834 flags &= ~O_##n; \ 835 } 836 837 P_FLAG(CLOEXEC); 838 P_FLAG(NONBLOCK); 839#undef P_FLAG 840 841 if (flags) 842 printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags); 843 844 return printed; 845} 846 847#define SCA_PIPE_FLAGS syscall_arg__scnprintf_pipe_flags 848 849#ifndef GRND_NONBLOCK 850#define GRND_NONBLOCK 0x0001 851#endif 852#ifndef GRND_RANDOM 853#define GRND_RANDOM 0x0002 854#endif 855 856static size_t syscall_arg__scnprintf_getrandom_flags(char *bf, size_t size, 857 struct syscall_arg *arg) 858{ 859 bool show_prefix = arg->show_string_prefix; 860 const char *prefix = "GRND_"; 861 int printed = 0, flags = arg->val; 862 863#define P_FLAG(n) \ 864 if (flags & GRND_##n) { \ 865 printed += scnprintf(bf + printed, size - printed, "%s%s%s", printed ? "|" : "", show_prefix ? prefix : "", #n); \ 866 flags &= ~GRND_##n; \ 867 } 868 869 P_FLAG(RANDOM); 870 P_FLAG(NONBLOCK); 871#undef P_FLAG 872 873 if (flags) 874 printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags); 875 876 return printed; 877} 878 879#define SCA_GETRANDOM_FLAGS syscall_arg__scnprintf_getrandom_flags 880 881#define STRARRAY(name, array) \ 882 { .scnprintf = SCA_STRARRAY, \ 883 .strtoul = STUL_STRARRAY, \ 884 .parm = &strarray__##array, } 885 886#define STRARRAY_FLAGS(name, array) \ 887 { .scnprintf = SCA_STRARRAY_FLAGS, \ 888 .strtoul = STUL_STRARRAY_FLAGS, \ 889 .parm = &strarray__##array, } 890 891#include "trace/beauty/arch_errno_names.c" 892#include "trace/beauty/eventfd.c" 893#include "trace/beauty/futex_op.c" 894#include "trace/beauty/futex_val3.c" 895#include "trace/beauty/mmap.c" 896#include "trace/beauty/mode_t.c" 897#include "trace/beauty/msg_flags.c" 898#include "trace/beauty/open_flags.c" 899#include "trace/beauty/perf_event_open.c" 900#include "trace/beauty/pid.c" 901#include "trace/beauty/sched_policy.c" 902#include "trace/beauty/seccomp.c" 903#include "trace/beauty/signum.c" 904#include "trace/beauty/socket_type.c" 905#include "trace/beauty/waitid_options.c" 906 907static struct syscall_fmt syscall_fmts[] = { 908 { .name = "access", 909 .arg = { [1] = { .scnprintf = SCA_ACCMODE, /* mode */ }, }, }, 910 { .name = "arch_prctl", 911 .arg = { [0] = { .scnprintf = SCA_X86_ARCH_PRCTL_CODE, /* code */ }, 912 [1] = { .scnprintf = SCA_PTR, /* arg2 */ }, }, }, 913 { .name = "bind", 914 .arg = { [0] = { .scnprintf = SCA_INT, /* fd */ }, 915 [1] = { .scnprintf = SCA_SOCKADDR, /* umyaddr */ }, 916 [2] = { .scnprintf = SCA_INT, /* addrlen */ }, }, }, 917 { .name = "bpf", 918 .arg = { [0] = STRARRAY(cmd, bpf_cmd), }, }, 919 { .name = "brk", .hexret = true, 920 .arg = { [0] = { .scnprintf = SCA_PTR, /* brk */ }, }, }, 921 { .name = "clock_gettime", 922 .arg = { [0] = STRARRAY(clk_id, clockid), }, }, 923 { .name = "clone", .errpid = true, .nr_args = 5, 924 .arg = { [0] = { .name = "flags", .scnprintf = SCA_CLONE_FLAGS, }, 925 [1] = { .name = "child_stack", .scnprintf = SCA_HEX, }, 926 [2] = { .name = "parent_tidptr", .scnprintf = SCA_HEX, }, 927 [3] = { .name = "child_tidptr", .scnprintf = SCA_HEX, }, 928 [4] = { .name = "tls", .scnprintf = SCA_HEX, }, }, }, 929 { .name = "close", 930 .arg = { [0] = { .scnprintf = SCA_CLOSE_FD, /* fd */ }, }, }, 931 { .name = "connect", 932 .arg = { [0] = { .scnprintf = SCA_INT, /* fd */ }, 933 [1] = { .scnprintf = SCA_SOCKADDR, /* servaddr */ }, 934 [2] = { .scnprintf = SCA_INT, /* addrlen */ }, }, }, 935 { .name = "epoll_ctl", 936 .arg = { [1] = STRARRAY(op, epoll_ctl_ops), }, }, 937 { .name = "eventfd2", 938 .arg = { [1] = { .scnprintf = SCA_EFD_FLAGS, /* flags */ }, }, }, 939 { .name = "fchmodat", 940 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 941 { .name = "fchownat", 942 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 943 { .name = "fcntl", 944 .arg = { [1] = { .scnprintf = SCA_FCNTL_CMD, /* cmd */ 945 .strtoul = STUL_STRARRAYS, 946 .parm = &strarrays__fcntl_cmds_arrays, 947 .show_zero = true, }, 948 [2] = { .scnprintf = SCA_FCNTL_ARG, /* arg */ }, }, }, 949 { .name = "flock", 950 .arg = { [1] = { .scnprintf = SCA_FLOCK, /* cmd */ }, }, }, 951 { .name = "fsconfig", 952 .arg = { [1] = STRARRAY(cmd, fsconfig_cmds), }, }, 953 { .name = "fsmount", 954 .arg = { [1] = STRARRAY_FLAGS(flags, fsmount_flags), 955 [2] = { .scnprintf = SCA_FSMOUNT_ATTR_FLAGS, /* attr_flags */ }, }, }, 956 { .name = "fspick", 957 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, 958 [1] = { .scnprintf = SCA_FILENAME, /* path */ }, 959 [2] = { .scnprintf = SCA_FSPICK_FLAGS, /* flags */ }, }, }, 960 { .name = "fstat", .alias = "newfstat", }, 961 { .name = "fstatat", .alias = "newfstatat", }, 962 { .name = "futex", 963 .arg = { [1] = { .scnprintf = SCA_FUTEX_OP, /* op */ }, 964 [5] = { .scnprintf = SCA_FUTEX_VAL3, /* val3 */ }, }, }, 965 { .name = "futimesat", 966 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 967 { .name = "getitimer", 968 .arg = { [0] = STRARRAY(which, itimers), }, }, 969 { .name = "getpid", .errpid = true, }, 970 { .name = "getpgid", .errpid = true, }, 971 { .name = "getppid", .errpid = true, }, 972 { .name = "getrandom", 973 .arg = { [2] = { .scnprintf = SCA_GETRANDOM_FLAGS, /* flags */ }, }, }, 974 { .name = "getrlimit", 975 .arg = { [0] = STRARRAY(resource, rlimit_resources), }, }, 976 { .name = "gettid", .errpid = true, }, 977 { .name = "ioctl", 978 .arg = { 979#if defined(__i386__) || defined(__x86_64__) 980/* 981 * FIXME: Make this available to all arches. 982 */ 983 [1] = { .scnprintf = SCA_IOCTL_CMD, /* cmd */ }, 984 [2] = { .scnprintf = SCA_HEX, /* arg */ }, }, }, 985#else 986 [2] = { .scnprintf = SCA_HEX, /* arg */ }, }, }, 987#endif 988 { .name = "kcmp", .nr_args = 5, 989 .arg = { [0] = { .name = "pid1", .scnprintf = SCA_PID, }, 990 [1] = { .name = "pid2", .scnprintf = SCA_PID, }, 991 [2] = { .name = "type", .scnprintf = SCA_KCMP_TYPE, }, 992 [3] = { .name = "idx1", .scnprintf = SCA_KCMP_IDX, }, 993 [4] = { .name = "idx2", .scnprintf = SCA_KCMP_IDX, }, }, }, 994 { .name = "keyctl", 995 .arg = { [0] = STRARRAY(option, keyctl_options), }, }, 996 { .name = "kill", 997 .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 998 { .name = "linkat", 999 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 1000 { .name = "lseek", 1001 .arg = { [2] = STRARRAY(whence, whences), }, }, 1002 { .name = "lstat", .alias = "newlstat", }, 1003 { .name = "madvise", 1004 .arg = { [0] = { .scnprintf = SCA_HEX, /* start */ }, 1005 [2] = { .scnprintf = SCA_MADV_BHV, /* behavior */ }, }, }, 1006 { .name = "mkdirat", 1007 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 1008 { .name = "mknodat", 1009 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, }, 1010 { .name = "mmap", .hexret = true, 1011/* The standard mmap maps to old_mmap on s390x */ 1012#if defined(__s390x__) 1013 .alias = "old_mmap", 1014#endif 1015 .arg = { [2] = { .scnprintf = SCA_MMAP_PROT, /* prot */ }, 1016 [3] = { .scnprintf = SCA_MMAP_FLAGS, /* flags */ 1017 .strtoul = STUL_STRARRAY_FLAGS, 1018 .parm = &strarray__mmap_flags, }, 1019 [5] = { .scnprintf = SCA_HEX, /* offset */ }, }, }, 1020 { .name = "mount", 1021 .arg = { [0] = { .scnprintf = SCA_FILENAME, /* dev_name */ }, 1022 [3] = { .scnprintf = SCA_MOUNT_FLAGS, /* flags */ 1023 .mask_val = SCAMV_MOUNT_FLAGS, /* flags */ }, }, }, 1024 { .name = "move_mount", 1025 .arg = { [0] = { .scnprintf = SCA_FDAT, /* from_dfd */ }, 1026 [1] = { .scnprintf = SCA_FILENAME, /* from_pathname */ }, 1027 [2] = { .scnprintf = SCA_FDAT, /* to_dfd */ }, 1028 [3] = { .scnprintf = SCA_FILENAME, /* to_pathname */ }, 1029 [4] = { .scnprintf = SCA_MOVE_MOUNT_FLAGS, /* flags */ }, }, }, 1030 { .name = "mprotect", 1031 .arg = { [0] = { .scnprintf = SCA_HEX, /* start */ }, 1032 [2] = { .scnprintf = SCA_MMAP_PROT, /* prot */ }, }, }, 1033 { .name = "mq_unlink", 1034 .arg = { [0] = { .scnprintf = SCA_FILENAME, /* u_name */ }, }, }, 1035 { .name = "mremap", .hexret = true, 1036 .arg = { [3] = { .scnprintf = SCA_MREMAP_FLAGS, /* flags */ }, }, }, 1037 { .name = "name_to_handle_at", 1038 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, }, 1039 { .name = "newfstatat", 1040 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, }, 1041 { .name = "open", 1042 .arg = { [1] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, }, 1043 { .name = "open_by_handle_at", 1044 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, 1045 [2] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, }, 1046 { .name = "openat", 1047 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, 1048 [2] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, }, 1049 { .name = "perf_event_open", 1050 .arg = { [2] = { .scnprintf = SCA_INT, /* cpu */ }, 1051 [3] = { .scnprintf = SCA_FD, /* group_fd */ }, 1052 [4] = { .scnprintf = SCA_PERF_FLAGS, /* flags */ }, }, }, 1053 { .name = "pipe2", 1054 .arg = { [1] = { .scnprintf = SCA_PIPE_FLAGS, /* flags */ }, }, }, 1055 { .name = "pkey_alloc", 1056 .arg = { [1] = { .scnprintf = SCA_PKEY_ALLOC_ACCESS_RIGHTS, /* access_rights */ }, }, }, 1057 { .name = "pkey_free", 1058 .arg = { [0] = { .scnprintf = SCA_INT, /* key */ }, }, }, 1059 { .name = "pkey_mprotect", 1060 .arg = { [0] = { .scnprintf = SCA_HEX, /* start */ }, 1061 [2] = { .scnprintf = SCA_MMAP_PROT, /* prot */ }, 1062 [3] = { .scnprintf = SCA_INT, /* pkey */ }, }, }, 1063 { .name = "poll", .timeout = true, }, 1064 { .name = "ppoll", .timeout = true, }, 1065 { .name = "prctl", 1066 .arg = { [0] = { .scnprintf = SCA_PRCTL_OPTION, /* option */ 1067 .strtoul = STUL_STRARRAY, 1068 .parm = &strarray__prctl_options, }, 1069 [1] = { .scnprintf = SCA_PRCTL_ARG2, /* arg2 */ }, 1070 [2] = { .scnprintf = SCA_PRCTL_ARG3, /* arg3 */ }, }, }, 1071 { .name = "pread", .alias = "pread64", }, 1072 { .name = "preadv", .alias = "pread", }, 1073 { .name = "prlimit64", 1074 .arg = { [1] = STRARRAY(resource, rlimit_resources), }, }, 1075 { .name = "pwrite", .alias = "pwrite64", }, 1076 { .name = "readlinkat", 1077 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, }, 1078 { .name = "recvfrom", 1079 .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, }, 1080 { .name = "recvmmsg", 1081 .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, }, 1082 { .name = "recvmsg", 1083 .arg = { [2] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, }, 1084 { .name = "renameat", 1085 .arg = { [0] = { .scnprintf = SCA_FDAT, /* olddirfd */ }, 1086 [2] = { .scnprintf = SCA_FDAT, /* newdirfd */ }, }, }, 1087 { .name = "renameat2", 1088 .arg = { [0] = { .scnprintf = SCA_FDAT, /* olddirfd */ }, 1089 [2] = { .scnprintf = SCA_FDAT, /* newdirfd */ }, 1090 [4] = { .scnprintf = SCA_RENAMEAT2_FLAGS, /* flags */ }, }, }, 1091 { .name = "rt_sigaction", 1092 .arg = { [0] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 1093 { .name = "rt_sigprocmask", 1094 .arg = { [0] = STRARRAY(how, sighow), }, }, 1095 { .name = "rt_sigqueueinfo", 1096 .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 1097 { .name = "rt_tgsigqueueinfo", 1098 .arg = { [2] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 1099 { .name = "sched_setscheduler", 1100 .arg = { [1] = { .scnprintf = SCA_SCHED_POLICY, /* policy */ }, }, }, 1101 { .name = "seccomp", 1102 .arg = { [0] = { .scnprintf = SCA_SECCOMP_OP, /* op */ }, 1103 [1] = { .scnprintf = SCA_SECCOMP_FLAGS, /* flags */ }, }, }, 1104 { .name = "select", .timeout = true, }, 1105 { .name = "sendfile", .alias = "sendfile64", }, 1106 { .name = "sendmmsg", 1107 .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, }, 1108 { .name = "sendmsg", 1109 .arg = { [2] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, }, 1110 { .name = "sendto", 1111 .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, 1112 [4] = { .scnprintf = SCA_SOCKADDR, /* addr */ }, }, }, 1113 { .name = "set_tid_address", .errpid = true, }, 1114 { .name = "setitimer", 1115 .arg = { [0] = STRARRAY(which, itimers), }, }, 1116 { .name = "setrlimit", 1117 .arg = { [0] = STRARRAY(resource, rlimit_resources), }, }, 1118 { .name = "socket", 1119 .arg = { [0] = STRARRAY(family, socket_families), 1120 [1] = { .scnprintf = SCA_SK_TYPE, /* type */ }, 1121 [2] = { .scnprintf = SCA_SK_PROTO, /* protocol */ }, }, }, 1122 { .name = "socketpair", 1123 .arg = { [0] = STRARRAY(family, socket_families), 1124 [1] = { .scnprintf = SCA_SK_TYPE, /* type */ }, 1125 [2] = { .scnprintf = SCA_SK_PROTO, /* protocol */ }, }, }, 1126 { .name = "stat", .alias = "newstat", }, 1127 { .name = "statx", 1128 .arg = { [0] = { .scnprintf = SCA_FDAT, /* fdat */ }, 1129 [2] = { .scnprintf = SCA_STATX_FLAGS, /* flags */ } , 1130 [3] = { .scnprintf = SCA_STATX_MASK, /* mask */ }, }, }, 1131 { .name = "swapoff", 1132 .arg = { [0] = { .scnprintf = SCA_FILENAME, /* specialfile */ }, }, }, 1133 { .name = "swapon", 1134 .arg = { [0] = { .scnprintf = SCA_FILENAME, /* specialfile */ }, }, }, 1135 { .name = "symlinkat", 1136 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, }, 1137 { .name = "sync_file_range", 1138 .arg = { [3] = { .scnprintf = SCA_SYNC_FILE_RANGE_FLAGS, /* flags */ }, }, }, 1139 { .name = "tgkill", 1140 .arg = { [2] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 1141 { .name = "tkill", 1142 .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, }, 1143 { .name = "umount2", .alias = "umount", 1144 .arg = { [0] = { .scnprintf = SCA_FILENAME, /* name */ }, }, }, 1145 { .name = "uname", .alias = "newuname", }, 1146 { .name = "unlinkat", 1147 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, }, 1148 { .name = "utimensat", 1149 .arg = { [0] = { .scnprintf = SCA_FDAT, /* dirfd */ }, }, }, 1150 { .name = "wait4", .errpid = true, 1151 .arg = { [2] = { .scnprintf = SCA_WAITID_OPTIONS, /* options */ }, }, }, 1152 { .name = "waitid", .errpid = true, 1153 .arg = { [3] = { .scnprintf = SCA_WAITID_OPTIONS, /* options */ }, }, }, 1154}; 1155 1156static int syscall_fmt__cmp(const void *name, const void *fmtp) 1157{ 1158 const struct syscall_fmt *fmt = fmtp; 1159 return strcmp(name, fmt->name); 1160} 1161 1162static struct syscall_fmt *__syscall_fmt__find(struct syscall_fmt *fmts, const int nmemb, const char *name) 1163{ 1164 return bsearch(name, fmts, nmemb, sizeof(struct syscall_fmt), syscall_fmt__cmp); 1165} 1166 1167static struct syscall_fmt *syscall_fmt__find(const char *name) 1168{ 1169 const int nmemb = ARRAY_SIZE(syscall_fmts); 1170 return __syscall_fmt__find(syscall_fmts, nmemb, name); 1171} 1172 1173static struct syscall_fmt *__syscall_fmt__find_by_alias(struct syscall_fmt *fmts, const int nmemb, const char *alias) 1174{ 1175 int i; 1176 1177 for (i = 0; i < nmemb; ++i) { 1178 if (fmts[i].alias && strcmp(fmts[i].alias, alias) == 0) 1179 return &fmts[i]; 1180 } 1181 1182 return NULL; 1183} 1184 1185static struct syscall_fmt *syscall_fmt__find_by_alias(const char *alias) 1186{ 1187 const int nmemb = ARRAY_SIZE(syscall_fmts); 1188 return __syscall_fmt__find_by_alias(syscall_fmts, nmemb, alias); 1189} 1190 1191/* 1192 * is_exit: is this "exit" or "exit_group"? 1193 * is_open: is this "open" or "openat"? To associate the fd returned in sys_exit with the pathname in sys_enter. 1194 * args_size: sum of the sizes of the syscall arguments, anything after that is augmented stuff: pathname for openat, etc. 1195 * nonexistent: Just a hole in the syscall table, syscall id not allocated 1196 */ 1197struct syscall { 1198 struct tep_event *tp_format; 1199 int nr_args; 1200 int args_size; 1201 struct { 1202 struct bpf_program *sys_enter, 1203 *sys_exit; 1204 } bpf_prog; 1205 bool is_exit; 1206 bool is_open; 1207 bool nonexistent; 1208 struct tep_format_field *args; 1209 const char *name; 1210 struct syscall_fmt *fmt; 1211 struct syscall_arg_fmt *arg_fmt; 1212}; 1213 1214/* 1215 * Must match what is in the BPF program: 1216 * 1217 * tools/perf/examples/bpf/augmented_raw_syscalls.c 1218 */ 1219struct bpf_map_syscall_entry { 1220 bool enabled; 1221 u16 string_args_len[RAW_SYSCALL_ARGS_NUM]; 1222}; 1223 1224/* 1225 * We need to have this 'calculated' boolean because in some cases we really 1226 * don't know what is the duration of a syscall, for instance, when we start 1227 * a session and some threads are waiting for a syscall to finish, say 'poll', 1228 * in which case all we can do is to print "( ? ) for duration and for the 1229 * start timestamp. 1230 */ 1231static size_t fprintf_duration(unsigned long t, bool calculated, FILE *fp) 1232{ 1233 double duration = (double)t / NSEC_PER_MSEC; 1234 size_t printed = fprintf(fp, "("); 1235 1236 if (!calculated) 1237 printed += fprintf(fp, " "); 1238 else if (duration >= 1.0) 1239 printed += color_fprintf(fp, PERF_COLOR_RED, "%6.3f ms", duration); 1240 else if (duration >= 0.01) 1241 printed += color_fprintf(fp, PERF_COLOR_YELLOW, "%6.3f ms", duration); 1242 else 1243 printed += color_fprintf(fp, PERF_COLOR_NORMAL, "%6.3f ms", duration); 1244 return printed + fprintf(fp, "): "); 1245} 1246 1247/** 1248 * filename.ptr: The filename char pointer that will be vfs_getname'd 1249 * filename.entry_str_pos: Where to insert the string translated from 1250 * filename.ptr by the vfs_getname tracepoint/kprobe. 1251 * ret_scnprintf: syscall args may set this to a different syscall return 1252 * formatter, for instance, fcntl may return fds, file flags, etc. 1253 */ 1254struct thread_trace { 1255 u64 entry_time; 1256 bool entry_pending; 1257 unsigned long nr_events; 1258 unsigned long pfmaj, pfmin; 1259 char *entry_str; 1260 double runtime_ms; 1261 size_t (*ret_scnprintf)(char *bf, size_t size, struct syscall_arg *arg); 1262 struct { 1263 unsigned long ptr; 1264 short int entry_str_pos; 1265 bool pending_open; 1266 unsigned int namelen; 1267 char *name; 1268 } filename; 1269 struct { 1270 int max; 1271 struct file *table; 1272 } files; 1273 1274 struct intlist *syscall_stats; 1275}; 1276 1277static struct thread_trace *thread_trace__new(void) 1278{ 1279 struct thread_trace *ttrace = zalloc(sizeof(struct thread_trace)); 1280 1281 if (ttrace) { 1282 ttrace->files.max = -1; 1283 ttrace->syscall_stats = intlist__new(NULL); 1284 } 1285 1286 return ttrace; 1287} 1288 1289static struct thread_trace *thread__trace(struct thread *thread, FILE *fp) 1290{ 1291 struct thread_trace *ttrace; 1292 1293 if (thread == NULL) 1294 goto fail; 1295 1296 if (thread__priv(thread) == NULL) 1297 thread__set_priv(thread, thread_trace__new()); 1298 1299 if (thread__priv(thread) == NULL) 1300 goto fail; 1301 1302 ttrace = thread__priv(thread); 1303 ++ttrace->nr_events; 1304 1305 return ttrace; 1306fail: 1307 color_fprintf(fp, PERF_COLOR_RED, 1308 "WARNING: not enough memory, dropping samples!\n"); 1309 return NULL; 1310} 1311 1312 1313void syscall_arg__set_ret_scnprintf(struct syscall_arg *arg, 1314 size_t (*ret_scnprintf)(char *bf, size_t size, struct syscall_arg *arg)) 1315{ 1316 struct thread_trace *ttrace = thread__priv(arg->thread); 1317 1318 ttrace->ret_scnprintf = ret_scnprintf; 1319} 1320 1321#define TRACE_PFMAJ (1 << 0) 1322#define TRACE_PFMIN (1 << 1) 1323 1324static const size_t trace__entry_str_size = 2048; 1325 1326static struct file *thread_trace__files_entry(struct thread_trace *ttrace, int fd) 1327{ 1328 if (fd < 0) 1329 return NULL; 1330 1331 if (fd > ttrace->files.max) { 1332 struct file *nfiles = realloc(ttrace->files.table, (fd + 1) * sizeof(struct file)); 1333 1334 if (nfiles == NULL) 1335 return NULL; 1336 1337 if (ttrace->files.max != -1) { 1338 memset(nfiles + ttrace->files.max + 1, 0, 1339 (fd - ttrace->files.max) * sizeof(struct file)); 1340 } else { 1341 memset(nfiles, 0, (fd + 1) * sizeof(struct file)); 1342 } 1343 1344 ttrace->files.table = nfiles; 1345 ttrace->files.max = fd; 1346 } 1347 1348 return ttrace->files.table + fd; 1349} 1350 1351struct file *thread__files_entry(struct thread *thread, int fd) 1352{ 1353 return thread_trace__files_entry(thread__priv(thread), fd); 1354} 1355 1356static int trace__set_fd_pathname(struct thread *thread, int fd, const char *pathname) 1357{ 1358 struct thread_trace *ttrace = thread__priv(thread); 1359 struct file *file = thread_trace__files_entry(ttrace, fd); 1360 1361 if (file != NULL) { 1362 struct stat st; 1363 if (stat(pathname, &st) == 0) 1364 file->dev_maj = major(st.st_rdev); 1365 file->pathname = strdup(pathname); 1366 if (file->pathname) 1367 return 0; 1368 } 1369 1370 return -1; 1371} 1372 1373static int thread__read_fd_path(struct thread *thread, int fd) 1374{ 1375 char linkname[PATH_MAX], pathname[PATH_MAX]; 1376 struct stat st; 1377 int ret; 1378 1379 if (thread->pid_ == thread->tid) { 1380 scnprintf(linkname, sizeof(linkname), 1381 "/proc/%d/fd/%d", thread->pid_, fd); 1382 } else { 1383 scnprintf(linkname, sizeof(linkname), 1384 "/proc/%d/task/%d/fd/%d", thread->pid_, thread->tid, fd); 1385 } 1386 1387 if (lstat(linkname, &st) < 0 || st.st_size + 1 > (off_t)sizeof(pathname)) 1388 return -1; 1389 1390 ret = readlink(linkname, pathname, sizeof(pathname)); 1391 1392 if (ret < 0 || ret > st.st_size) 1393 return -1; 1394 1395 pathname[ret] = '\0'; 1396 return trace__set_fd_pathname(thread, fd, pathname); 1397} 1398 1399static const char *thread__fd_path(struct thread *thread, int fd, 1400 struct trace *trace) 1401{ 1402 struct thread_trace *ttrace = thread__priv(thread); 1403 1404 if (ttrace == NULL || trace->fd_path_disabled) 1405 return NULL; 1406 1407 if (fd < 0) 1408 return NULL; 1409 1410 if ((fd > ttrace->files.max || ttrace->files.table[fd].pathname == NULL)) { 1411 if (!trace->live) 1412 return NULL; 1413 ++trace->stats.proc_getname; 1414 if (thread__read_fd_path(thread, fd)) 1415 return NULL; 1416 } 1417 1418 return ttrace->files.table[fd].pathname; 1419} 1420 1421size_t syscall_arg__scnprintf_fd(char *bf, size_t size, struct syscall_arg *arg) 1422{ 1423 int fd = arg->val; 1424 size_t printed = scnprintf(bf, size, "%d", fd); 1425 const char *path = thread__fd_path(arg->thread, fd, arg->trace); 1426 1427 if (path) 1428 printed += scnprintf(bf + printed, size - printed, "<%s>", path); 1429 1430 return printed; 1431} 1432 1433size_t pid__scnprintf_fd(struct trace *trace, pid_t pid, int fd, char *bf, size_t size) 1434{ 1435 size_t printed = scnprintf(bf, size, "%d", fd); 1436 struct thread *thread = machine__find_thread(trace->host, pid, pid); 1437 1438 if (thread) { 1439 const char *path = thread__fd_path(thread, fd, trace); 1440 1441 if (path) 1442 printed += scnprintf(bf + printed, size - printed, "<%s>", path); 1443 1444 thread__put(thread); 1445 } 1446 1447 return printed; 1448} 1449 1450static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size, 1451 struct syscall_arg *arg) 1452{ 1453 int fd = arg->val; 1454 size_t printed = syscall_arg__scnprintf_fd(bf, size, arg); 1455 struct thread_trace *ttrace = thread__priv(arg->thread); 1456 1457 if (ttrace && fd >= 0 && fd <= ttrace->files.max) 1458 zfree(&ttrace->files.table[fd].pathname); 1459 1460 return printed; 1461} 1462 1463static void thread__set_filename_pos(struct thread *thread, const char *bf, 1464 unsigned long ptr) 1465{ 1466 struct thread_trace *ttrace = thread__priv(thread); 1467 1468 ttrace->filename.ptr = ptr; 1469 ttrace->filename.entry_str_pos = bf - ttrace->entry_str; 1470} 1471 1472static size_t syscall_arg__scnprintf_augmented_string(struct syscall_arg *arg, char *bf, size_t size) 1473{ 1474 struct augmented_arg *augmented_arg = arg->augmented.args; 1475 size_t printed = scnprintf(bf, size, "\"%.*s\"", augmented_arg->size, augmented_arg->value); 1476 /* 1477 * So that the next arg with a payload can consume its augmented arg, i.e. for rename* syscalls 1478 * we would have two strings, each prefixed by its size. 1479 */ 1480 int consumed = sizeof(*augmented_arg) + augmented_arg->size; 1481 1482 arg->augmented.args = ((void *)arg->augmented.args) + consumed; 1483 arg->augmented.size -= consumed; 1484 1485 return printed; 1486} 1487 1488static size_t syscall_arg__scnprintf_filename(char *bf, size_t size, 1489 struct syscall_arg *arg) 1490{ 1491 unsigned long ptr = arg->val; 1492 1493 if (arg->augmented.args) 1494 return syscall_arg__scnprintf_augmented_string(arg, bf, size); 1495 1496 if (!arg->trace->vfs_getname) 1497 return scnprintf(bf, size, "%#x", ptr); 1498 1499 thread__set_filename_pos(arg->thread, bf, ptr); 1500 return 0; 1501} 1502 1503static bool trace__filter_duration(struct trace *trace, double t) 1504{ 1505 return t < (trace->duration_filter * NSEC_PER_MSEC); 1506} 1507 1508static size_t __trace__fprintf_tstamp(struct trace *trace, u64 tstamp, FILE *fp) 1509{ 1510 double ts = (double)(tstamp - trace->base_time) / NSEC_PER_MSEC; 1511 1512 return fprintf(fp, "%10.3f ", ts); 1513} 1514 1515/* 1516 * We're handling tstamp=0 as an undefined tstamp, i.e. like when we are 1517 * using ttrace->entry_time for a thread that receives a sys_exit without 1518 * first having received a sys_enter ("poll" issued before tracing session 1519 * starts, lost sys_enter exit due to ring buffer overflow). 1520 */ 1521static size_t trace__fprintf_tstamp(struct trace *trace, u64 tstamp, FILE *fp) 1522{ 1523 if (tstamp > 0) 1524 return __trace__fprintf_tstamp(trace, tstamp, fp); 1525 1526 return fprintf(fp, " ? "); 1527} 1528 1529static bool done = false; 1530static bool interrupted = false; 1531 1532static void sig_handler(int sig) 1533{ 1534 done = true; 1535 interrupted = sig == SIGINT; 1536} 1537 1538static size_t trace__fprintf_comm_tid(struct trace *trace, struct thread *thread, FILE *fp) 1539{ 1540 size_t printed = 0; 1541 1542 if (trace->multiple_threads) { 1543 if (trace->show_comm) 1544 printed += fprintf(fp, "%.14s/", thread__comm_str(thread)); 1545 printed += fprintf(fp, "%d ", thread->tid); 1546 } 1547 1548 return printed; 1549} 1550 1551static size_t trace__fprintf_entry_head(struct trace *trace, struct thread *thread, 1552 u64 duration, bool duration_calculated, u64 tstamp, FILE *fp) 1553{ 1554 size_t printed = 0; 1555 1556 if (trace->show_tstamp) 1557 printed = trace__fprintf_tstamp(trace, tstamp, fp); 1558 if (trace->show_duration) 1559 printed += fprintf_duration(duration, duration_calculated, fp); 1560 return printed + trace__fprintf_comm_tid(trace, thread, fp); 1561} 1562 1563static int trace__process_event(struct trace *trace, struct machine *machine, 1564 union perf_event *event, struct perf_sample *sample) 1565{ 1566 int ret = 0; 1567 1568 switch (event->header.type) { 1569 case PERF_RECORD_LOST: 1570 color_fprintf(trace->output, PERF_COLOR_RED, 1571 "LOST %" PRIu64 " events!\n", event->lost.lost); 1572 ret = machine__process_lost_event(machine, event, sample); 1573 break; 1574 default: 1575 ret = machine__process_event(machine, event, sample); 1576 break; 1577 } 1578 1579 return ret; 1580} 1581 1582static int trace__tool_process(struct perf_tool *tool, 1583 union perf_event *event, 1584 struct perf_sample *sample, 1585 struct machine *machine) 1586{ 1587 struct trace *trace = container_of(tool, struct trace, tool); 1588 return trace__process_event(trace, machine, event, sample); 1589} 1590 1591static char *trace__machine__resolve_kernel_addr(void *vmachine, unsigned long long *addrp, char **modp) 1592{ 1593 struct machine *machine = vmachine; 1594 1595 if (machine->kptr_restrict_warned) 1596 return NULL; 1597 1598 if (symbol_conf.kptr_restrict) { 1599 pr_warning("Kernel address maps (/proc/{kallsyms,modules}) are restricted.\n\n" 1600 "Check /proc/sys/kernel/kptr_restrict and /proc/sys/kernel/perf_event_paranoid.\n\n" 1601 "Kernel samples will not be resolved.\n"); 1602 machine->kptr_restrict_warned = true; 1603 return NULL; 1604 } 1605 1606 return machine__resolve_kernel_addr(vmachine, addrp, modp); 1607} 1608 1609static int trace__symbols_init(struct trace *trace, struct evlist *evlist) 1610{ 1611 int err = symbol__init(NULL); 1612 1613 if (err) 1614 return err; 1615 1616 trace->host = machine__new_host(); 1617 if (trace->host == NULL) 1618 return -ENOMEM; 1619 1620 err = trace_event__register_resolver(trace->host, trace__machine__resolve_kernel_addr); 1621 if (err < 0) 1622 goto out; 1623 1624 err = __machine__synthesize_threads(trace->host, &trace->tool, &trace->opts.target, 1625 evlist->core.threads, trace__tool_process, false, 1626 1); 1627out: 1628 if (err) 1629 symbol__exit(); 1630 1631 return err; 1632} 1633 1634static void trace__symbols__exit(struct trace *trace) 1635{ 1636 machine__exit(trace->host); 1637 trace->host = NULL; 1638 1639 symbol__exit(); 1640} 1641 1642static int syscall__alloc_arg_fmts(struct syscall *sc, int nr_args) 1643{ 1644 int idx; 1645 1646 if (nr_args == RAW_SYSCALL_ARGS_NUM && sc->fmt && sc->fmt->nr_args != 0) 1647 nr_args = sc->fmt->nr_args; 1648 1649 sc->arg_fmt = calloc(nr_args, sizeof(*sc->arg_fmt)); 1650 if (sc->arg_fmt == NULL) 1651 return -1; 1652 1653 for (idx = 0; idx < nr_args; ++idx) { 1654 if (sc->fmt) 1655 sc->arg_fmt[idx] = sc->fmt->arg[idx]; 1656 } 1657 1658 sc->nr_args = nr_args; 1659 return 0; 1660} 1661 1662static struct syscall_arg_fmt syscall_arg_fmts__by_name[] = { 1663 { .name = "msr", .scnprintf = SCA_X86_MSR, .strtoul = STUL_X86_MSR, }, 1664 { .name = "vector", .scnprintf = SCA_X86_IRQ_VECTORS, .strtoul = STUL_X86_IRQ_VECTORS, }, 1665}; 1666 1667static int syscall_arg_fmt__cmp(const void *name, const void *fmtp) 1668{ 1669 const struct syscall_arg_fmt *fmt = fmtp; 1670 return strcmp(name, fmt->name); 1671} 1672 1673static struct syscall_arg_fmt * 1674__syscall_arg_fmt__find_by_name(struct syscall_arg_fmt *fmts, const int nmemb, const char *name) 1675{ 1676 return bsearch(name, fmts, nmemb, sizeof(struct syscall_arg_fmt), syscall_arg_fmt__cmp); 1677} 1678 1679static struct syscall_arg_fmt *syscall_arg_fmt__find_by_name(const char *name) 1680{ 1681 const int nmemb = ARRAY_SIZE(syscall_arg_fmts__by_name); 1682 return __syscall_arg_fmt__find_by_name(syscall_arg_fmts__by_name, nmemb, name); 1683} 1684 1685static struct tep_format_field * 1686syscall_arg_fmt__init_array(struct syscall_arg_fmt *arg, struct tep_format_field *field) 1687{ 1688 struct tep_format_field *last_field = NULL; 1689 int len; 1690 1691 for (; field; field = field->next, ++arg) { 1692 last_field = field; 1693 1694 if (arg->scnprintf) 1695 continue; 1696 1697 len = strlen(field->name); 1698 1699 if (strcmp(field->type, "const char *") == 0 && 1700 ((len >= 4 && strcmp(field->name + len - 4, "name") == 0) || 1701 strstr(field->name, "path") != NULL)) 1702 arg->scnprintf = SCA_FILENAME; 1703 else if ((field->flags & TEP_FIELD_IS_POINTER) || strstr(field->name, "addr")) 1704 arg->scnprintf = SCA_PTR; 1705 else if (strcmp(field->type, "pid_t") == 0) 1706 arg->scnprintf = SCA_PID; 1707 else if (strcmp(field->type, "umode_t") == 0) 1708 arg->scnprintf = SCA_MODE_T; 1709 else if ((field->flags & TEP_FIELD_IS_ARRAY) && strstr(field->type, "char")) { 1710 arg->scnprintf = SCA_CHAR_ARRAY; 1711 arg->nr_entries = field->arraylen; 1712 } else if ((strcmp(field->type, "int") == 0 || 1713 strcmp(field->type, "unsigned int") == 0 || 1714 strcmp(field->type, "long") == 0) && 1715 len >= 2 && strcmp(field->name + len - 2, "fd") == 0) { 1716 /* 1717 * /sys/kernel/tracing/events/syscalls/sys_enter* 1718 * egrep 'field:.*fd;' .../format|sed -r 's/.*field:([a-z ]+) [a-z_]*fd.+/\1/g'|sort|uniq -c 1719 * 65 int 1720 * 23 unsigned int 1721 * 7 unsigned long 1722 */ 1723 arg->scnprintf = SCA_FD; 1724 } else { 1725 struct syscall_arg_fmt *fmt = syscall_arg_fmt__find_by_name(field->name); 1726 1727 if (fmt) { 1728 arg->scnprintf = fmt->scnprintf; 1729 arg->strtoul = fmt->strtoul; 1730 } 1731 } 1732 } 1733 1734 return last_field; 1735} 1736 1737static int syscall__set_arg_fmts(struct syscall *sc) 1738{ 1739 struct tep_format_field *last_field = syscall_arg_fmt__init_array(sc->arg_fmt, sc->args); 1740 1741 if (last_field) 1742 sc->args_size = last_field->offset + last_field->size; 1743 1744 return 0; 1745} 1746 1747static int trace__read_syscall_info(struct trace *trace, int id) 1748{ 1749 char tp_name[128]; 1750 struct syscall *sc; 1751 const char *name = syscalltbl__name(trace->sctbl, id); 1752 1753#ifdef HAVE_SYSCALL_TABLE_SUPPORT 1754 if (trace->syscalls.table == NULL) { 1755 trace->syscalls.table = calloc(trace->sctbl->syscalls.max_id + 1, sizeof(*sc)); 1756 if (trace->syscalls.table == NULL) 1757 return -ENOMEM; 1758 } 1759#else 1760 if (id > trace->sctbl->syscalls.max_id || (id == 0 && trace->syscalls.table == NULL)) { 1761 // When using libaudit we don't know beforehand what is the max syscall id 1762 struct syscall *table = realloc(trace->syscalls.table, (id + 1) * sizeof(*sc)); 1763 1764 if (table == NULL) 1765 return -ENOMEM; 1766 1767 // Need to memset from offset 0 and +1 members if brand new 1768 if (trace->syscalls.table == NULL) 1769 memset(table, 0, (id + 1) * sizeof(*sc)); 1770 else 1771 memset(table + trace->sctbl->syscalls.max_id + 1, 0, (id - trace->sctbl->syscalls.max_id) * sizeof(*sc)); 1772 1773 trace->syscalls.table = table; 1774 trace->sctbl->syscalls.max_id = id; 1775 } 1776#endif 1777 sc = trace->syscalls.table + id; 1778 if (sc->nonexistent) 1779 return -EEXIST; 1780 1781 if (name == NULL) { 1782 sc->nonexistent = true; 1783 return -EEXIST; 1784 } 1785 1786 sc->name = name; 1787 sc->fmt = syscall_fmt__find(sc->name); 1788 1789 snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->name); 1790 sc->tp_format = trace_event__tp_format("syscalls", tp_name); 1791 1792 if (IS_ERR(sc->tp_format) && sc->fmt && sc->fmt->alias) { 1793 snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->fmt->alias); 1794 sc->tp_format = trace_event__tp_format("syscalls", tp_name); 1795 } 1796 1797 /* 1798 * Fails to read trace point format via sysfs node, so the trace point 1799 * doesn't exist. Set the 'nonexistent' flag as true. 1800 */ 1801 if (IS_ERR(sc->tp_format)) { 1802 sc->nonexistent = true; 1803 return PTR_ERR(sc->tp_format); 1804 } 1805 1806 if (syscall__alloc_arg_fmts(sc, IS_ERR(sc->tp_format) ? 1807 RAW_SYSCALL_ARGS_NUM : sc->tp_format->format.nr_fields)) 1808 return -ENOMEM; 1809 1810 sc->args = sc->tp_format->format.fields; 1811 /* 1812 * We need to check and discard the first variable '__syscall_nr' 1813 * or 'nr' that mean the syscall number. It is needless here. 1814 * So drop '__syscall_nr' or 'nr' field but does not exist on older kernels. 1815 */ 1816 if (sc->args && (!strcmp(sc->args->name, "__syscall_nr") || !strcmp(sc->args->name, "nr"))) { 1817 sc->args = sc->args->next; 1818 --sc->nr_args; 1819 } 1820 1821 sc->is_exit = !strcmp(name, "exit_group") || !strcmp(name, "exit"); 1822 sc->is_open = !strcmp(name, "open") || !strcmp(name, "openat"); 1823 1824 return syscall__set_arg_fmts(sc); 1825} 1826 1827static int evsel__init_tp_arg_scnprintf(struct evsel *evsel) 1828{ 1829 struct syscall_arg_fmt *fmt = evsel__syscall_arg_fmt(evsel); 1830 1831 if (fmt != NULL) { 1832 syscall_arg_fmt__init_array(fmt, evsel->tp_format->format.fields); 1833 return 0; 1834 } 1835 1836 return -ENOMEM; 1837} 1838 1839static int intcmp(const void *a, const void *b) 1840{ 1841 const int *one = a, *another = b; 1842 1843 return *one - *another; 1844} 1845 1846static int trace__validate_ev_qualifier(struct trace *trace) 1847{ 1848 int err = 0; 1849 bool printed_invalid_prefix = false; 1850 struct str_node *pos; 1851 size_t nr_used = 0, nr_allocated = strlist__nr_entries(trace->ev_qualifier); 1852 1853 trace->ev_qualifier_ids.entries = malloc(nr_allocated * 1854 sizeof(trace->ev_qualifier_ids.entries[0])); 1855 1856 if (trace->ev_qualifier_ids.entries == NULL) { 1857 fputs("Error:\tNot enough memory for allocating events qualifier ids\n", 1858 trace->output); 1859 err = -EINVAL; 1860 goto out; 1861 } 1862 1863 strlist__for_each_entry(pos, trace->ev_qualifier) { 1864 const char *sc = pos->s; 1865 int id = syscalltbl__id(trace->sctbl, sc), match_next = -1; 1866 1867 if (id < 0) { 1868 id = syscalltbl__strglobmatch_first(trace->sctbl, sc, &match_next); 1869 if (id >= 0) 1870 goto matches; 1871 1872 if (!printed_invalid_prefix) { 1873 pr_debug("Skipping unknown syscalls: "); 1874 printed_invalid_prefix = true; 1875 } else { 1876 pr_debug(", "); 1877 } 1878 1879 pr_debug("%s", sc); 1880 continue; 1881 } 1882matches: 1883 trace->ev_qualifier_ids.entries[nr_used++] = id; 1884 if (match_next == -1) 1885 continue; 1886 1887 while (1) { 1888 id = syscalltbl__strglobmatch_next(trace->sctbl, sc, &match_next); 1889 if (id < 0) 1890 break; 1891 if (nr_allocated == nr_used) { 1892 void *entries; 1893 1894 nr_allocated += 8; 1895 entries = realloc(trace->ev_qualifier_ids.entries, 1896 nr_allocated * sizeof(trace->ev_qualifier_ids.entries[0])); 1897 if (entries == NULL) { 1898 err = -ENOMEM; 1899 fputs("\nError:\t Not enough memory for parsing\n", trace->output); 1900 goto out_free; 1901 } 1902 trace->ev_qualifier_ids.entries = entries; 1903 } 1904 trace->ev_qualifier_ids.entries[nr_used++] = id; 1905 } 1906 } 1907 1908 trace->ev_qualifier_ids.nr = nr_used; 1909 qsort(trace->ev_qualifier_ids.entries, nr_used, sizeof(int), intcmp); 1910out: 1911 if (printed_invalid_prefix) 1912 pr_debug("\n"); 1913 return err; 1914out_free: 1915 zfree(&trace->ev_qualifier_ids.entries); 1916 trace->ev_qualifier_ids.nr = 0; 1917 goto out; 1918} 1919 1920static __maybe_unused bool trace__syscall_enabled(struct trace *trace, int id) 1921{ 1922 bool in_ev_qualifier; 1923 1924 if (trace->ev_qualifier_ids.nr == 0) 1925 return true; 1926 1927 in_ev_qualifier = bsearch(&id, trace->ev_qualifier_ids.entries, 1928 trace->ev_qualifier_ids.nr, sizeof(int), intcmp) != NULL; 1929 1930 if (in_ev_qualifier) 1931 return !trace->not_ev_qualifier; 1932 1933 return trace->not_ev_qualifier; 1934} 1935 1936/* 1937 * args is to be interpreted as a series of longs but we need to handle 1938 * 8-byte unaligned accesses. args points to raw_data within the event 1939 * and raw_data is guaranteed to be 8-byte unaligned because it is 1940 * preceded by raw_size which is a u32. So we need to copy args to a temp 1941 * variable to read it. Most notably this avoids extended load instructions 1942 * on unaligned addresses 1943 */ 1944unsigned long syscall_arg__val(struct syscall_arg *arg, u8 idx) 1945{ 1946 unsigned long val; 1947 unsigned char *p = arg->args + sizeof(unsigned long) * idx; 1948 1949 memcpy(&val, p, sizeof(val)); 1950 return val; 1951} 1952 1953static size_t syscall__scnprintf_name(struct syscall *sc, char *bf, size_t size, 1954 struct syscall_arg *arg) 1955{ 1956 if (sc->arg_fmt && sc->arg_fmt[arg->idx].name) 1957 return scnprintf(bf, size, "%s: ", sc->arg_fmt[arg->idx].name); 1958 1959 return scnprintf(bf, size, "arg%d: ", arg->idx); 1960} 1961 1962/* 1963 * Check if the value is in fact zero, i.e. mask whatever needs masking, such 1964 * as mount 'flags' argument that needs ignoring some magic flag, see comment 1965 * in tools/perf/trace/beauty/mount_flags.c 1966 */ 1967static unsigned long syscall_arg_fmt__mask_val(struct syscall_arg_fmt *fmt, struct syscall_arg *arg, unsigned long val) 1968{ 1969 if (fmt && fmt->mask_val) 1970 return fmt->mask_val(arg, val); 1971 1972 return val; 1973} 1974 1975static size_t syscall_arg_fmt__scnprintf_val(struct syscall_arg_fmt *fmt, char *bf, size_t size, 1976 struct syscall_arg *arg, unsigned long val) 1977{ 1978 if (fmt && fmt->scnprintf) { 1979 arg->val = val; 1980 if (fmt->parm) 1981 arg->parm = fmt->parm; 1982 return fmt->scnprintf(bf, size, arg); 1983 } 1984 return scnprintf(bf, size, "%ld", val); 1985} 1986 1987static size_t syscall__scnprintf_args(struct syscall *sc, char *bf, size_t size, 1988 unsigned char *args, void *augmented_args, int augmented_args_size, 1989 struct trace *trace, struct thread *thread) 1990{ 1991 size_t printed = 0; 1992 unsigned long val; 1993 u8 bit = 1; 1994 struct syscall_arg arg = { 1995 .args = args, 1996 .augmented = { 1997 .size = augmented_args_size, 1998 .args = augmented_args, 1999 }, 2000 .idx = 0, 2001 .mask = 0, 2002 .trace = trace, 2003 .thread = thread, 2004 .show_string_prefix = trace->show_string_prefix, 2005 }; 2006 struct thread_trace *ttrace = thread__priv(thread); 2007 2008 /* 2009 * Things like fcntl will set this in its 'cmd' formatter to pick the 2010 * right formatter for the return value (an fd? file flags?), which is 2011 * not needed for syscalls that always return a given type, say an fd. 2012 */ 2013 ttrace->ret_scnprintf = NULL; 2014 2015 if (sc->args != NULL) { 2016 struct tep_format_field *field; 2017 2018 for (field = sc->args; field; 2019 field = field->next, ++arg.idx, bit <<= 1) { 2020 if (arg.mask & bit) 2021 continue; 2022 2023 arg.fmt = &sc->arg_fmt[arg.idx]; 2024 val = syscall_arg__val(&arg, arg.idx); 2025 /* 2026 * Some syscall args need some mask, most don't and 2027 * return val untouched. 2028 */ 2029 val = syscall_arg_fmt__mask_val(&sc->arg_fmt[arg.idx], &arg, val); 2030 2031 /* 2032 * Suppress this argument if its value is zero and 2033 * and we don't have a string associated in an 2034 * strarray for it. 2035 */ 2036 if (val == 0 && 2037 !trace->show_zeros && 2038 !(sc->arg_fmt && 2039 (sc->arg_fmt[arg.idx].show_zero || 2040 sc->arg_fmt[arg.idx].scnprintf == SCA_STRARRAY || 2041 sc->arg_fmt[arg.idx].scnprintf == SCA_STRARRAYS) && 2042 sc->arg_fmt[arg.idx].parm)) 2043 continue; 2044 2045 printed += scnprintf(bf + printed, size - printed, "%s", printed ? ", " : ""); 2046 2047 if (trace->show_arg_names) 2048 printed += scnprintf(bf + printed, size - printed, "%s: ", field->name); 2049 2050 printed += syscall_arg_fmt__scnprintf_val(&sc->arg_fmt[arg.idx], 2051 bf + printed, size - printed, &arg, val); 2052 } 2053 } else if (IS_ERR(sc->tp_format)) { 2054 /* 2055 * If we managed to read the tracepoint /format file, then we 2056 * may end up not having any args, like with gettid(), so only 2057 * print the raw args when we didn't manage to read it. 2058 */ 2059 while (arg.idx < sc->nr_args) { 2060 if (arg.mask & bit) 2061 goto next_arg; 2062 val = syscall_arg__val(&arg, arg.idx); 2063 if (printed) 2064 printed += scnprintf(bf + printed, size - printed, ", "); 2065 printed += syscall__scnprintf_name(sc, bf + printed, size - printed, &arg); 2066 printed += syscall_arg_fmt__scnprintf_val(&sc->arg_fmt[arg.idx], bf + printed, size - printed, &arg, val); 2067next_arg: 2068 ++arg.idx; 2069 bit <<= 1; 2070 } 2071 } 2072 2073 return printed; 2074} 2075 2076typedef int (*tracepoint_handler)(struct trace *trace, struct evsel *evsel, 2077 union perf_event *event, 2078 struct perf_sample *sample); 2079 2080static struct syscall *trace__syscall_info(struct trace *trace, 2081 struct evsel *evsel, int id) 2082{ 2083 int err = 0; 2084 2085 if (id < 0) { 2086 2087 /* 2088 * XXX: Noticed on x86_64, reproduced as far back as 3.0.36, haven't tried 2089 * before that, leaving at a higher verbosity level till that is 2090 * explained. Reproduced with plain ftrace with: 2091 * 2092 * echo 1 > /t/events/raw_syscalls/sys_exit/enable 2093 * grep "NR -1 " /t/trace_pipe 2094 * 2095 * After generating some load on the machine. 2096 */ 2097 if (verbose > 1) { 2098 static u64 n; 2099 fprintf(trace->output, "Invalid syscall %d id, skipping (%s, %" PRIu64 ") ...\n", 2100 id, evsel__name(evsel), ++n); 2101 } 2102 return NULL; 2103 } 2104 2105 err = -EINVAL; 2106 2107#ifdef HAVE_SYSCALL_TABLE_SUPPORT 2108 if (id > trace->sctbl->syscalls.max_id) { 2109#else 2110 if (id >= trace->sctbl->syscalls.max_id) { 2111 /* 2112 * With libaudit we don't know beforehand what is the max_id, 2113 * so we let trace__read_syscall_info() figure that out as we 2114 * go on reading syscalls. 2115 */ 2116 err = trace__read_syscall_info(trace, id); 2117 if (err) 2118#endif 2119 goto out_cant_read; 2120 } 2121 2122 if ((trace->syscalls.table == NULL || trace->syscalls.table[id].name == NULL) && 2123 (err = trace__read_syscall_info(trace, id)) != 0) 2124 goto out_cant_read; 2125 2126 if (trace->syscalls.table && trace->syscalls.table[id].nonexistent) 2127 goto out_cant_read; 2128 2129 return &trace->syscalls.table[id]; 2130 2131out_cant_read: 2132 if (verbose > 0) { 2133 char sbuf[STRERR_BUFSIZE]; 2134 fprintf(trace->output, "Problems reading syscall %d: %d (%s)", id, -err, str_error_r(-err, sbuf, sizeof(sbuf))); 2135 if (id <= trace->sctbl->syscalls.max_id && trace->syscalls.table[id].name != NULL) 2136 fprintf(trace->output, "(%s)", trace->syscalls.table[id].name); 2137 fputs(" information\n", trace->output); 2138 } 2139 return NULL; 2140} 2141 2142struct syscall_stats { 2143 struct stats stats; 2144 u64 nr_failures; 2145 int max_errno; 2146 u32 *errnos; 2147}; 2148 2149static void thread__update_stats(struct thread *thread, struct thread_trace *ttrace, 2150 int id, struct perf_sample *sample, long err, bool errno_summary) 2151{ 2152 struct int_node *inode; 2153 struct syscall_stats *stats; 2154 u64 duration = 0; 2155 2156 inode = intlist__findnew(ttrace->syscall_stats, id); 2157 if (inode == NULL) 2158 return; 2159 2160 stats = inode->priv; 2161 if (stats == NULL) { 2162 stats = malloc(sizeof(*stats)); 2163 if (stats == NULL) 2164 return; 2165 2166 stats->nr_failures = 0; 2167 stats->max_errno = 0; 2168 stats->errnos = NULL; 2169 init_stats(&stats->stats); 2170 inode->priv = stats; 2171 } 2172 2173 if (ttrace->entry_time && sample->time > ttrace->entry_time) 2174 duration = sample->time - ttrace->entry_time; 2175 2176 update_stats(&stats->stats, duration); 2177 2178 if (err < 0) { 2179 ++stats->nr_failures; 2180 2181 if (!errno_summary) 2182 return; 2183 2184 err = -err; 2185 if (err > stats->max_errno) { 2186 u32 *new_errnos = realloc(stats->errnos, err * sizeof(u32)); 2187 2188 if (new_errnos) { 2189 memset(new_errnos + stats->max_errno, 0, (err - stats->max_errno) * sizeof(u32)); 2190 } else { 2191 pr_debug("Not enough memory for errno stats for thread \"%s\"(%d/%d), results will be incomplete\n", 2192 thread__comm_str(thread), thread->pid_, thread->tid); 2193 return; 2194 } 2195 2196 stats->errnos = new_errnos; 2197 stats->max_errno = err; 2198 } 2199 2200 ++stats->errnos[err - 1]; 2201 } 2202} 2203 2204static int trace__printf_interrupted_entry(struct trace *trace) 2205{ 2206 struct thread_trace *ttrace; 2207 size_t printed; 2208 int len; 2209 2210 if (trace->failure_only || trace->current == NULL) 2211 return 0; 2212 2213 ttrace = thread__priv(trace->current); 2214 2215 if (!ttrace->entry_pending) 2216 return 0; 2217 2218 printed = trace__fprintf_entry_head(trace, trace->current, 0, false, ttrace->entry_time, trace->output); 2219 printed += len = fprintf(trace->output, "%s)", ttrace->entry_str); 2220 2221 if (len < trace->args_alignment - 4) 2222 printed += fprintf(trace->output, "%-*s", trace->args_alignment - 4 - len, " "); 2223 2224 printed += fprintf(trace->output, " ...\n"); 2225 2226 ttrace->entry_pending = false; 2227 ++trace->nr_events_printed; 2228 2229 return printed; 2230} 2231 2232static int trace__fprintf_sample(struct trace *trace, struct evsel *evsel, 2233 struct perf_sample *sample, struct thread *thread) 2234{ 2235 int printed = 0; 2236 2237 if (trace->print_sample) { 2238 double ts = (double)sample->time / NSEC_PER_MSEC; 2239 2240 printed += fprintf(trace->output, "%22s %10.3f %s %d/%d [%d]\n", 2241 evsel__name(evsel), ts, 2242 thread__comm_str(thread), 2243 sample->pid, sample->tid, sample->cpu); 2244 } 2245 2246 return printed; 2247} 2248 2249static void *syscall__augmented_args(struct syscall *sc, struct perf_sample *sample, int *augmented_args_size, int raw_augmented_args_size) 2250{ 2251 void *augmented_args = NULL; 2252 /* 2253 * For now with BPF raw_augmented we hook into raw_syscalls:sys_enter 2254 * and there we get all 6 syscall args plus the tracepoint common fields 2255 * that gets calculated at the start and the syscall_nr (another long). 2256 * So we check if that is the case and if so don't look after the 2257 * sc->args_size but always after the full raw_syscalls:sys_enter payload, 2258 * which is fixed. 2259 * 2260 * We'll revisit this later to pass s->args_size to the BPF augmenter 2261 * (now tools/perf/examples/bpf/augmented_raw_syscalls.c, so that it 2262 * copies only what we need for each syscall, like what happens when we 2263 * use syscalls:sys_enter_NAME, so that we reduce the kernel/userspace 2264 * traffic to just what is needed for each syscall. 2265 */ 2266 int args_size = raw_augmented_args_size ?: sc->args_size; 2267 2268 *augmented_args_size = sample->raw_size - args_size; 2269 if (*augmented_args_size > 0) 2270 augmented_args = sample->raw_data + args_size; 2271 2272 return augmented_args; 2273} 2274 2275static int trace__sys_enter(struct trace *trace, struct evsel *evsel, 2276 union perf_event *event __maybe_unused, 2277 struct perf_sample *sample) 2278{ 2279 char *msg; 2280 void *args; 2281 int printed = 0; 2282 struct thread *thread; 2283 int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1; 2284 int augmented_args_size = 0; 2285 void *augmented_args = NULL; 2286 struct syscall *sc = trace__syscall_info(trace, evsel, id); 2287 struct thread_trace *ttrace; 2288 2289 if (sc == NULL) 2290 return -1; 2291 2292 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2293 ttrace = thread__trace(thread, trace->output); 2294 if (ttrace == NULL) 2295 goto out_put; 2296 2297 trace__fprintf_sample(trace, evsel, sample, thread); 2298 2299 args = perf_evsel__sc_tp_ptr(evsel, args, sample); 2300 2301 if (ttrace->entry_str == NULL) { 2302 ttrace->entry_str = malloc(trace__entry_str_size); 2303 if (!ttrace->entry_str) 2304 goto out_put; 2305 } 2306 2307 if (!(trace->duration_filter || trace->summary_only || trace->min_stack)) 2308 trace__printf_interrupted_entry(trace); 2309 /* 2310 * If this is raw_syscalls.sys_enter, then it always comes with the 6 possible 2311 * arguments, even if the syscall being handled, say "openat", uses only 4 arguments 2312 * this breaks syscall__augmented_args() check for augmented args, as we calculate 2313 * syscall->args_size using each syscalls:sys_enter_NAME tracefs format file, 2314 * so when handling, say the openat syscall, we end up getting 6 args for the 2315 * raw_syscalls:sys_enter event, when we expected just 4, we end up mistakenly 2316 * thinking that the extra 2 u64 args are the augmented filename, so just check 2317 * here and avoid using augmented syscalls when the evsel is the raw_syscalls one. 2318 */ 2319 if (evsel != trace->syscalls.events.sys_enter) 2320 augmented_args = syscall__augmented_args(sc, sample, &augmented_args_size, trace->raw_augmented_syscalls_args_size); 2321 ttrace->entry_time = sample->time; 2322 msg = ttrace->entry_str; 2323 printed += scnprintf(msg + printed, trace__entry_str_size - printed, "%s(", sc->name); 2324 2325 printed += syscall__scnprintf_args(sc, msg + printed, trace__entry_str_size - printed, 2326 args, augmented_args, augmented_args_size, trace, thread); 2327 2328 if (sc->is_exit) { 2329 if (!(trace->duration_filter || trace->summary_only || trace->failure_only || trace->min_stack)) { 2330 int alignment = 0; 2331 2332 trace__fprintf_entry_head(trace, thread, 0, false, ttrace->entry_time, trace->output); 2333 printed = fprintf(trace->output, "%s)", ttrace->entry_str); 2334 if (trace->args_alignment > printed) 2335 alignment = trace->args_alignment - printed; 2336 fprintf(trace->output, "%*s= ?\n", alignment, " "); 2337 } 2338 } else { 2339 ttrace->entry_pending = true; 2340 /* See trace__vfs_getname & trace__sys_exit */ 2341 ttrace->filename.pending_open = false; 2342 } 2343 2344 if (trace->current != thread) { 2345 thread__put(trace->current); 2346 trace->current = thread__get(thread); 2347 } 2348 err = 0; 2349out_put: 2350 thread__put(thread); 2351 return err; 2352} 2353 2354static int trace__fprintf_sys_enter(struct trace *trace, struct evsel *evsel, 2355 struct perf_sample *sample) 2356{ 2357 struct thread_trace *ttrace; 2358 struct thread *thread; 2359 int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1; 2360 struct syscall *sc = trace__syscall_info(trace, evsel, id); 2361 char msg[1024]; 2362 void *args, *augmented_args = NULL; 2363 int augmented_args_size; 2364 2365 if (sc == NULL) 2366 return -1; 2367 2368 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2369 ttrace = thread__trace(thread, trace->output); 2370 /* 2371 * We need to get ttrace just to make sure it is there when syscall__scnprintf_args() 2372 * and the rest of the beautifiers accessing it via struct syscall_arg touches it. 2373 */ 2374 if (ttrace == NULL) 2375 goto out_put; 2376 2377 args = perf_evsel__sc_tp_ptr(evsel, args, sample); 2378 augmented_args = syscall__augmented_args(sc, sample, &augmented_args_size, trace->raw_augmented_syscalls_args_size); 2379 syscall__scnprintf_args(sc, msg, sizeof(msg), args, augmented_args, augmented_args_size, trace, thread); 2380 fprintf(trace->output, "%s", msg); 2381 err = 0; 2382out_put: 2383 thread__put(thread); 2384 return err; 2385} 2386 2387static int trace__resolve_callchain(struct trace *trace, struct evsel *evsel, 2388 struct perf_sample *sample, 2389 struct callchain_cursor *cursor) 2390{ 2391 struct addr_location al; 2392 int max_stack = evsel->core.attr.sample_max_stack ? 2393 evsel->core.attr.sample_max_stack : 2394 trace->max_stack; 2395 int err; 2396 2397 if (machine__resolve(trace->host, &al, sample) < 0) 2398 return -1; 2399 2400 err = thread__resolve_callchain(al.thread, cursor, evsel, sample, NULL, NULL, max_stack); 2401 addr_location__put(&al); 2402 return err; 2403} 2404 2405static int trace__fprintf_callchain(struct trace *trace, struct perf_sample *sample) 2406{ 2407 /* TODO: user-configurable print_opts */ 2408 const unsigned int print_opts = EVSEL__PRINT_SYM | 2409 EVSEL__PRINT_DSO | 2410 EVSEL__PRINT_UNKNOWN_AS_ADDR; 2411 2412 return sample__fprintf_callchain(sample, 38, print_opts, &callchain_cursor, symbol_conf.bt_stop_list, trace->output); 2413} 2414 2415static const char *errno_to_name(struct evsel *evsel, int err) 2416{ 2417 struct perf_env *env = evsel__env(evsel); 2418 const char *arch_name = perf_env__arch(env); 2419 2420 return arch_syscalls__strerrno(arch_name, err); 2421} 2422 2423static int trace__sys_exit(struct trace *trace, struct evsel *evsel, 2424 union perf_event *event __maybe_unused, 2425 struct perf_sample *sample) 2426{ 2427 long ret; 2428 u64 duration = 0; 2429 bool duration_calculated = false; 2430 struct thread *thread; 2431 int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1, callchain_ret = 0, printed = 0; 2432 int alignment = trace->args_alignment; 2433 struct syscall *sc = trace__syscall_info(trace, evsel, id); 2434 struct thread_trace *ttrace; 2435 2436 if (sc == NULL) 2437 return -1; 2438 2439 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2440 ttrace = thread__trace(thread, trace->output); 2441 if (ttrace == NULL) 2442 goto out_put; 2443 2444 trace__fprintf_sample(trace, evsel, sample, thread); 2445 2446 ret = perf_evsel__sc_tp_uint(evsel, ret, sample); 2447 2448 if (trace->summary) 2449 thread__update_stats(thread, ttrace, id, sample, ret, trace->errno_summary); 2450 2451 if (!trace->fd_path_disabled && sc->is_open && ret >= 0 && ttrace->filename.pending_open) { 2452 trace__set_fd_pathname(thread, ret, ttrace->filename.name); 2453 ttrace->filename.pending_open = false; 2454 ++trace->stats.vfs_getname; 2455 } 2456 2457 if (ttrace->entry_time) { 2458 duration = sample->time - ttrace->entry_time; 2459 if (trace__filter_duration(trace, duration)) 2460 goto out; 2461 duration_calculated = true; 2462 } else if (trace->duration_filter) 2463 goto out; 2464 2465 if (sample->callchain) { 2466 callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor); 2467 if (callchain_ret == 0) { 2468 if (callchain_cursor.nr < trace->min_stack) 2469 goto out; 2470 callchain_ret = 1; 2471 } 2472 } 2473 2474 if (trace->summary_only || (ret >= 0 && trace->failure_only)) 2475 goto out; 2476 2477 trace__fprintf_entry_head(trace, thread, duration, duration_calculated, ttrace->entry_time, trace->output); 2478 2479 if (ttrace->entry_pending) { 2480 printed = fprintf(trace->output, "%s", ttrace->entry_str); 2481 } else { 2482 printed += fprintf(trace->output, " ... ["); 2483 color_fprintf(trace->output, PERF_COLOR_YELLOW, "continued"); 2484 printed += 9; 2485 printed += fprintf(trace->output, "]: %s()", sc->name); 2486 } 2487 2488 printed++; /* the closing ')' */ 2489 2490 if (alignment > printed) 2491 alignment -= printed; 2492 else 2493 alignment = 0; 2494 2495 fprintf(trace->output, ")%*s= ", alignment, " "); 2496 2497 if (sc->fmt == NULL) { 2498 if (ret < 0) 2499 goto errno_print; 2500signed_print: 2501 fprintf(trace->output, "%ld", ret); 2502 } else if (ret < 0) { 2503errno_print: { 2504 char bf[STRERR_BUFSIZE]; 2505 const char *emsg = str_error_r(-ret, bf, sizeof(bf)), 2506 *e = errno_to_name(evsel, -ret); 2507 2508 fprintf(trace->output, "-1 %s (%s)", e, emsg); 2509 } 2510 } else if (ret == 0 && sc->fmt->timeout) 2511 fprintf(trace->output, "0 (Timeout)"); 2512 else if (ttrace->ret_scnprintf) { 2513 char bf[1024]; 2514 struct syscall_arg arg = { 2515 .val = ret, 2516 .thread = thread, 2517 .trace = trace, 2518 }; 2519 ttrace->ret_scnprintf(bf, sizeof(bf), &arg); 2520 ttrace->ret_scnprintf = NULL; 2521 fprintf(trace->output, "%s", bf); 2522 } else if (sc->fmt->hexret) 2523 fprintf(trace->output, "%#lx", ret); 2524 else if (sc->fmt->errpid) { 2525 struct thread *child = machine__find_thread(trace->host, ret, ret); 2526 2527 if (child != NULL) { 2528 fprintf(trace->output, "%ld", ret); 2529 if (child->comm_set) 2530 fprintf(trace->output, " (%s)", thread__comm_str(child)); 2531 thread__put(child); 2532 } 2533 } else 2534 goto signed_print; 2535 2536 fputc('\n', trace->output); 2537 2538 /* 2539 * We only consider an 'event' for the sake of --max-events a non-filtered 2540 * sys_enter + sys_exit and other tracepoint events. 2541 */ 2542 if (++trace->nr_events_printed == trace->max_events && trace->max_events != ULONG_MAX) 2543 interrupted = true; 2544 2545 if (callchain_ret > 0) 2546 trace__fprintf_callchain(trace, sample); 2547 else if (callchain_ret < 0) 2548 pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel)); 2549out: 2550 ttrace->entry_pending = false; 2551 err = 0; 2552out_put: 2553 thread__put(thread); 2554 return err; 2555} 2556 2557static int trace__vfs_getname(struct trace *trace, struct evsel *evsel, 2558 union perf_event *event __maybe_unused, 2559 struct perf_sample *sample) 2560{ 2561 struct thread *thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2562 struct thread_trace *ttrace; 2563 size_t filename_len, entry_str_len, to_move; 2564 ssize_t remaining_space; 2565 char *pos; 2566 const char *filename = evsel__rawptr(evsel, sample, "pathname"); 2567 2568 if (!thread) 2569 goto out; 2570 2571 ttrace = thread__priv(thread); 2572 if (!ttrace) 2573 goto out_put; 2574 2575 filename_len = strlen(filename); 2576 if (filename_len == 0) 2577 goto out_put; 2578 2579 if (ttrace->filename.namelen < filename_len) { 2580 char *f = realloc(ttrace->filename.name, filename_len + 1); 2581 2582 if (f == NULL) 2583 goto out_put; 2584 2585 ttrace->filename.namelen = filename_len; 2586 ttrace->filename.name = f; 2587 } 2588 2589 strcpy(ttrace->filename.name, filename); 2590 ttrace->filename.pending_open = true; 2591 2592 if (!ttrace->filename.ptr) 2593 goto out_put; 2594 2595 entry_str_len = strlen(ttrace->entry_str); 2596 remaining_space = trace__entry_str_size - entry_str_len - 1; /* \0 */ 2597 if (remaining_space <= 0) 2598 goto out_put; 2599 2600 if (filename_len > (size_t)remaining_space) { 2601 filename += filename_len - remaining_space; 2602 filename_len = remaining_space; 2603 } 2604 2605 to_move = entry_str_len - ttrace->filename.entry_str_pos + 1; /* \0 */ 2606 pos = ttrace->entry_str + ttrace->filename.entry_str_pos; 2607 memmove(pos + filename_len, pos, to_move); 2608 memcpy(pos, filename, filename_len); 2609 2610 ttrace->filename.ptr = 0; 2611 ttrace->filename.entry_str_pos = 0; 2612out_put: 2613 thread__put(thread); 2614out: 2615 return 0; 2616} 2617 2618static int trace__sched_stat_runtime(struct trace *trace, struct evsel *evsel, 2619 union perf_event *event __maybe_unused, 2620 struct perf_sample *sample) 2621{ 2622 u64 runtime = evsel__intval(evsel, sample, "runtime"); 2623 double runtime_ms = (double)runtime / NSEC_PER_MSEC; 2624 struct thread *thread = machine__findnew_thread(trace->host, 2625 sample->pid, 2626 sample->tid); 2627 struct thread_trace *ttrace = thread__trace(thread, trace->output); 2628 2629 if (ttrace == NULL) 2630 goto out_dump; 2631 2632 ttrace->runtime_ms += runtime_ms; 2633 trace->runtime_ms += runtime_ms; 2634out_put: 2635 thread__put(thread); 2636 return 0; 2637 2638out_dump: 2639 fprintf(trace->output, "%s: comm=%s,pid=%u,runtime=%" PRIu64 ",vruntime=%" PRIu64 ")\n", 2640 evsel->name, 2641 evsel__strval(evsel, sample, "comm"), 2642 (pid_t)evsel__intval(evsel, sample, "pid"), 2643 runtime, 2644 evsel__intval(evsel, sample, "vruntime")); 2645 goto out_put; 2646} 2647 2648static int bpf_output__printer(enum binary_printer_ops op, 2649 unsigned int val, void *extra __maybe_unused, FILE *fp) 2650{ 2651 unsigned char ch = (unsigned char)val; 2652 2653 switch (op) { 2654 case BINARY_PRINT_CHAR_DATA: 2655 return fprintf(fp, "%c", isprint(ch) ? ch : '.'); 2656 case BINARY_PRINT_DATA_BEGIN: 2657 case BINARY_PRINT_LINE_BEGIN: 2658 case BINARY_PRINT_ADDR: 2659 case BINARY_PRINT_NUM_DATA: 2660 case BINARY_PRINT_NUM_PAD: 2661 case BINARY_PRINT_SEP: 2662 case BINARY_PRINT_CHAR_PAD: 2663 case BINARY_PRINT_LINE_END: 2664 case BINARY_PRINT_DATA_END: 2665 default: 2666 break; 2667 } 2668 2669 return 0; 2670} 2671 2672static void bpf_output__fprintf(struct trace *trace, 2673 struct perf_sample *sample) 2674{ 2675 binary__fprintf(sample->raw_data, sample->raw_size, 8, 2676 bpf_output__printer, NULL, trace->output); 2677 ++trace->nr_events_printed; 2678} 2679 2680static size_t trace__fprintf_tp_fields(struct trace *trace, struct evsel *evsel, struct perf_sample *sample, 2681 struct thread *thread, void *augmented_args, int augmented_args_size) 2682{ 2683 char bf[2048]; 2684 size_t size = sizeof(bf); 2685 struct tep_format_field *field = evsel->tp_format->format.fields; 2686 struct syscall_arg_fmt *arg = __evsel__syscall_arg_fmt(evsel); 2687 size_t printed = 0; 2688 unsigned long val; 2689 u8 bit = 1; 2690 struct syscall_arg syscall_arg = { 2691 .augmented = { 2692 .size = augmented_args_size, 2693 .args = augmented_args, 2694 }, 2695 .idx = 0, 2696 .mask = 0, 2697 .trace = trace, 2698 .thread = thread, 2699 .show_string_prefix = trace->show_string_prefix, 2700 }; 2701 2702 for (; field && arg; field = field->next, ++syscall_arg.idx, bit <<= 1, ++arg) { 2703 if (syscall_arg.mask & bit) 2704 continue; 2705 2706 syscall_arg.len = 0; 2707 syscall_arg.fmt = arg; 2708 if (field->flags & TEP_FIELD_IS_ARRAY) { 2709 int offset = field->offset; 2710 2711 if (field->flags & TEP_FIELD_IS_DYNAMIC) { 2712 offset = format_field__intval(field, sample, evsel->needs_swap); 2713 syscall_arg.len = offset >> 16; 2714 offset &= 0xffff; 2715 } 2716 2717 val = (uintptr_t)(sample->raw_data + offset); 2718 } else 2719 val = format_field__intval(field, sample, evsel->needs_swap); 2720 /* 2721 * Some syscall args need some mask, most don't and 2722 * return val untouched. 2723 */ 2724 val = syscall_arg_fmt__mask_val(arg, &syscall_arg, val); 2725 2726 /* 2727 * Suppress this argument if its value is zero and 2728 * and we don't have a string associated in an 2729 * strarray for it. 2730 */ 2731 if (val == 0 && 2732 !trace->show_zeros && 2733 !((arg->show_zero || 2734 arg->scnprintf == SCA_STRARRAY || 2735 arg->scnprintf == SCA_STRARRAYS) && 2736 arg->parm)) 2737 continue; 2738 2739 printed += scnprintf(bf + printed, size - printed, "%s", printed ? ", " : ""); 2740 2741 /* 2742 * XXX Perhaps we should have a show_tp_arg_names, 2743 * leaving show_arg_names just for syscalls? 2744 */ 2745 if (1 || trace->show_arg_names) 2746 printed += scnprintf(bf + printed, size - printed, "%s: ", field->name); 2747 2748 printed += syscall_arg_fmt__scnprintf_val(arg, bf + printed, size - printed, &syscall_arg, val); 2749 } 2750 2751 return printed + fprintf(trace->output, "%s", bf); 2752} 2753 2754static int trace__event_handler(struct trace *trace, struct evsel *evsel, 2755 union perf_event *event __maybe_unused, 2756 struct perf_sample *sample) 2757{ 2758 struct thread *thread; 2759 int callchain_ret = 0; 2760 /* 2761 * Check if we called perf_evsel__disable(evsel) due to, for instance, 2762 * this event's max_events having been hit and this is an entry coming 2763 * from the ring buffer that we should discard, since the max events 2764 * have already been considered/printed. 2765 */ 2766 if (evsel->disabled) 2767 return 0; 2768 2769 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2770 2771 if (sample->callchain) { 2772 callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor); 2773 if (callchain_ret == 0) { 2774 if (callchain_cursor.nr < trace->min_stack) 2775 goto out; 2776 callchain_ret = 1; 2777 } 2778 } 2779 2780 trace__printf_interrupted_entry(trace); 2781 trace__fprintf_tstamp(trace, sample->time, trace->output); 2782 2783 if (trace->trace_syscalls && trace->show_duration) 2784 fprintf(trace->output, "( ): "); 2785 2786 if (thread) 2787 trace__fprintf_comm_tid(trace, thread, trace->output); 2788 2789 if (evsel == trace->syscalls.events.augmented) { 2790 int id = perf_evsel__sc_tp_uint(evsel, id, sample); 2791 struct syscall *sc = trace__syscall_info(trace, evsel, id); 2792 2793 if (sc) { 2794 fprintf(trace->output, "%s(", sc->name); 2795 trace__fprintf_sys_enter(trace, evsel, sample); 2796 fputc(')', trace->output); 2797 goto newline; 2798 } 2799 2800 /* 2801 * XXX: Not having the associated syscall info or not finding/adding 2802 * the thread should never happen, but if it does... 2803 * fall thru and print it as a bpf_output event. 2804 */ 2805 } 2806 2807 fprintf(trace->output, "%s(", evsel->name); 2808 2809 if (evsel__is_bpf_output(evsel)) { 2810 bpf_output__fprintf(trace, sample); 2811 } else if (evsel->tp_format) { 2812 if (strncmp(evsel->tp_format->name, "sys_enter_", 10) || 2813 trace__fprintf_sys_enter(trace, evsel, sample)) { 2814 if (trace->libtraceevent_print) { 2815 event_format__fprintf(evsel->tp_format, sample->cpu, 2816 sample->raw_data, sample->raw_size, 2817 trace->output); 2818 } else { 2819 trace__fprintf_tp_fields(trace, evsel, sample, thread, NULL, 0); 2820 } 2821 } 2822 } 2823 2824newline: 2825 fprintf(trace->output, ")\n"); 2826 2827 if (callchain_ret > 0) 2828 trace__fprintf_callchain(trace, sample); 2829 else if (callchain_ret < 0) 2830 pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel)); 2831 2832 ++trace->nr_events_printed; 2833 2834 if (evsel->max_events != ULONG_MAX && ++evsel->nr_events_printed == evsel->max_events) { 2835 evsel__disable(evsel); 2836 evsel__close(evsel); 2837 } 2838out: 2839 thread__put(thread); 2840 return 0; 2841} 2842 2843static void print_location(FILE *f, struct perf_sample *sample, 2844 struct addr_location *al, 2845 bool print_dso, bool print_sym) 2846{ 2847 2848 if ((verbose > 0 || print_dso) && al->map) 2849 fprintf(f, "%s@", al->map->dso->long_name); 2850 2851 if ((verbose > 0 || print_sym) && al->sym) 2852 fprintf(f, "%s+0x%" PRIx64, al->sym->name, 2853 al->addr - al->sym->start); 2854 else if (al->map) 2855 fprintf(f, "0x%" PRIx64, al->addr); 2856 else 2857 fprintf(f, "0x%" PRIx64, sample->addr); 2858} 2859 2860static int trace__pgfault(struct trace *trace, 2861 struct evsel *evsel, 2862 union perf_event *event __maybe_unused, 2863 struct perf_sample *sample) 2864{ 2865 struct thread *thread; 2866 struct addr_location al; 2867 char map_type = 'd'; 2868 struct thread_trace *ttrace; 2869 int err = -1; 2870 int callchain_ret = 0; 2871 2872 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2873 2874 if (sample->callchain) { 2875 callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor); 2876 if (callchain_ret == 0) { 2877 if (callchain_cursor.nr < trace->min_stack) 2878 goto out_put; 2879 callchain_ret = 1; 2880 } 2881 } 2882 2883 ttrace = thread__trace(thread, trace->output); 2884 if (ttrace == NULL) 2885 goto out_put; 2886 2887 if (evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ) 2888 ttrace->pfmaj++; 2889 else 2890 ttrace->pfmin++; 2891 2892 if (trace->summary_only) 2893 goto out; 2894 2895 thread__find_symbol(thread, sample->cpumode, sample->ip, &al); 2896 2897 trace__fprintf_entry_head(trace, thread, 0, true, sample->time, trace->output); 2898 2899 fprintf(trace->output, "%sfault [", 2900 evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ ? 2901 "maj" : "min"); 2902 2903 print_location(trace->output, sample, &al, false, true); 2904 2905 fprintf(trace->output, "] => "); 2906 2907 thread__find_symbol(thread, sample->cpumode, sample->addr, &al); 2908 2909 if (!al.map) { 2910 thread__find_symbol(thread, sample->cpumode, sample->addr, &al); 2911 2912 if (al.map) 2913 map_type = 'x'; 2914 else 2915 map_type = '?'; 2916 } 2917 2918 print_location(trace->output, sample, &al, true, false); 2919 2920 fprintf(trace->output, " (%c%c)\n", map_type, al.level); 2921 2922 if (callchain_ret > 0) 2923 trace__fprintf_callchain(trace, sample); 2924 else if (callchain_ret < 0) 2925 pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel)); 2926 2927 ++trace->nr_events_printed; 2928out: 2929 err = 0; 2930out_put: 2931 thread__put(thread); 2932 return err; 2933} 2934 2935static void trace__set_base_time(struct trace *trace, 2936 struct evsel *evsel, 2937 struct perf_sample *sample) 2938{ 2939 /* 2940 * BPF events were not setting PERF_SAMPLE_TIME, so be more robust 2941 * and don't use sample->time unconditionally, we may end up having 2942 * some other event in the future without PERF_SAMPLE_TIME for good 2943 * reason, i.e. we may not be interested in its timestamps, just in 2944 * it taking place, picking some piece of information when it 2945 * appears in our event stream (vfs_getname comes to mind). 2946 */ 2947 if (trace->base_time == 0 && !trace->full_time && 2948 (evsel->core.attr.sample_type & PERF_SAMPLE_TIME)) 2949 trace->base_time = sample->time; 2950} 2951 2952static int trace__process_sample(struct perf_tool *tool, 2953 union perf_event *event, 2954 struct perf_sample *sample, 2955 struct evsel *evsel, 2956 struct machine *machine __maybe_unused) 2957{ 2958 struct trace *trace = container_of(tool, struct trace, tool); 2959 struct thread *thread; 2960 int err = 0; 2961 2962 tracepoint_handler handler = evsel->handler; 2963 2964 thread = machine__findnew_thread(trace->host, sample->pid, sample->tid); 2965 if (thread && thread__is_filtered(thread)) 2966 goto out; 2967 2968 trace__set_base_time(trace, evsel, sample); 2969 2970 if (handler) { 2971 ++trace->nr_events; 2972 handler(trace, evsel, event, sample); 2973 } 2974out: 2975 thread__put(thread); 2976 return err; 2977} 2978 2979static int trace__record(struct trace *trace, int argc, const char **argv) 2980{ 2981 unsigned int rec_argc, i, j; 2982 const char **rec_argv; 2983 const char * const record_args[] = { 2984 "record", 2985 "-R", 2986 "-m", "1024", 2987 "-c", "1", 2988 }; 2989 pid_t pid = getpid(); 2990 char *filter = asprintf__tp_filter_pids(1, &pid); 2991 const char * const sc_args[] = { "-e", }; 2992 unsigned int sc_args_nr = ARRAY_SIZE(sc_args); 2993 const char * const majpf_args[] = { "-e", "major-faults" }; 2994 unsigned int majpf_args_nr = ARRAY_SIZE(majpf_args); 2995 const char * const minpf_args[] = { "-e", "minor-faults" }; 2996 unsigned int minpf_args_nr = ARRAY_SIZE(minpf_args); 2997 int err = -1; 2998 2999 /* +3 is for the event string below and the pid filter */ 3000 rec_argc = ARRAY_SIZE(record_args) + sc_args_nr + 3 + 3001 majpf_args_nr + minpf_args_nr + argc; 3002 rec_argv = calloc(rec_argc + 1, sizeof(char *)); 3003 3004 if (rec_argv == NULL || filter == NULL) 3005 goto out_free; 3006 3007 j = 0; 3008 for (i = 0; i < ARRAY_SIZE(record_args); i++) 3009 rec_argv[j++] = record_args[i]; 3010 3011 if (trace->trace_syscalls) { 3012 for (i = 0; i < sc_args_nr; i++) 3013 rec_argv[j++] = sc_args[i]; 3014 3015 /* event string may be different for older kernels - e.g., RHEL6 */ 3016 if (is_valid_tracepoint("raw_syscalls:sys_enter")) 3017 rec_argv[j++] = "raw_syscalls:sys_enter,raw_syscalls:sys_exit"; 3018 else if (is_valid_tracepoint("syscalls:sys_enter")) 3019 rec_argv[j++] = "syscalls:sys_enter,syscalls:sys_exit"; 3020 else { 3021 pr_err("Neither raw_syscalls nor syscalls events exist.\n"); 3022 goto out_free; 3023 } 3024 } 3025 3026 rec_argv[j++] = "--filter"; 3027 rec_argv[j++] = filter; 3028 3029 if (trace->trace_pgfaults & TRACE_PFMAJ) 3030 for (i = 0; i < majpf_args_nr; i++) 3031 rec_argv[j++] = majpf_args[i]; 3032 3033 if (trace->trace_pgfaults & TRACE_PFMIN) 3034 for (i = 0; i < minpf_args_nr; i++) 3035 rec_argv[j++] = minpf_args[i]; 3036 3037 for (i = 0; i < (unsigned int)argc; i++) 3038 rec_argv[j++] = argv[i]; 3039 3040 err = cmd_record(j, rec_argv); 3041out_free: 3042 free(filter); 3043 free(rec_argv); 3044 return err; 3045} 3046 3047static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp); 3048 3049static bool evlist__add_vfs_getname(struct evlist *evlist) 3050{ 3051 bool found = false; 3052 struct evsel *evsel, *tmp; 3053 struct parse_events_error err; 3054 int ret; 3055 3056 bzero(&err, sizeof(err)); 3057 ret = parse_events(evlist, "probe:vfs_getname*", &err); 3058 if (ret) { 3059 free(err.str); 3060 free(err.help); 3061 free(err.first_str); 3062 free(err.first_help); 3063 return false; 3064 } 3065 3066 evlist__for_each_entry_safe(evlist, evsel, tmp) { 3067 if (!strstarts(evsel__name(evsel), "probe:vfs_getname")) 3068 continue; 3069 3070 if (evsel__field(evsel, "pathname")) { 3071 evsel->handler = trace__vfs_getname; 3072 found = true; 3073 continue; 3074 } 3075 3076 list_del_init(&evsel->core.node); 3077 evsel->evlist = NULL; 3078 evsel__delete(evsel); 3079 } 3080 3081 return found; 3082} 3083 3084static struct evsel *evsel__new_pgfault(u64 config) 3085{ 3086 struct evsel *evsel; 3087 struct perf_event_attr attr = { 3088 .type = PERF_TYPE_SOFTWARE, 3089 .mmap_data = 1, 3090 }; 3091 3092 attr.config = config; 3093 attr.sample_period = 1; 3094 3095 event_attr_init(&attr); 3096 3097 evsel = evsel__new(&attr); 3098 if (evsel) 3099 evsel->handler = trace__pgfault; 3100 3101 return evsel; 3102} 3103 3104static void trace__handle_event(struct trace *trace, union perf_event *event, struct perf_sample *sample) 3105{ 3106 const u32 type = event->header.type; 3107 struct evsel *evsel; 3108 3109 if (type != PERF_RECORD_SAMPLE) { 3110 trace__process_event(trace, trace->host, event, sample); 3111 return; 3112 } 3113 3114 evsel = perf_evlist__id2evsel(trace->evlist, sample->id); 3115 if (evsel == NULL) { 3116 fprintf(trace->output, "Unknown tp ID %" PRIu64 ", skipping...\n", sample->id); 3117 return; 3118 } 3119 3120 if (evswitch__discard(&trace->evswitch, evsel)) 3121 return; 3122 3123 trace__set_base_time(trace, evsel, sample); 3124 3125 if (evsel->core.attr.type == PERF_TYPE_TRACEPOINT && 3126 sample->raw_data == NULL) { 3127 fprintf(trace->output, "%s sample with no payload for tid: %d, cpu %d, raw_size=%d, skipping...\n", 3128 evsel__name(evsel), sample->tid, 3129 sample->cpu, sample->raw_size); 3130 } else { 3131 tracepoint_handler handler = evsel->handler; 3132 handler(trace, evsel, event, sample); 3133 } 3134 3135 if (trace->nr_events_printed >= trace->max_events && trace->max_events != ULONG_MAX) 3136 interrupted = true; 3137} 3138 3139static int trace__add_syscall_newtp(struct trace *trace) 3140{ 3141 int ret = -1; 3142 struct evlist *evlist = trace->evlist; 3143 struct evsel *sys_enter, *sys_exit; 3144 3145 sys_enter = perf_evsel__raw_syscall_newtp("sys_enter", trace__sys_enter); 3146 if (sys_enter == NULL) 3147 goto out; 3148 3149 if (perf_evsel__init_sc_tp_ptr_field(sys_enter, args)) 3150 goto out_delete_sys_enter; 3151 3152 sys_exit = perf_evsel__raw_syscall_newtp("sys_exit", trace__sys_exit); 3153 if (sys_exit == NULL) 3154 goto out_delete_sys_enter; 3155 3156 if (perf_evsel__init_sc_tp_uint_field(sys_exit, ret)) 3157 goto out_delete_sys_exit; 3158 3159 evsel__config_callchain(sys_enter, &trace->opts, &callchain_param); 3160 evsel__config_callchain(sys_exit, &trace->opts, &callchain_param); 3161 3162 evlist__add(evlist, sys_enter); 3163 evlist__add(evlist, sys_exit); 3164 3165 if (callchain_param.enabled && !trace->kernel_syscallchains) { 3166 /* 3167 * We're interested only in the user space callchain 3168 * leading to the syscall, allow overriding that for 3169 * debugging reasons using --kernel_syscall_callchains 3170 */ 3171 sys_exit->core.attr.exclude_callchain_kernel = 1; 3172 } 3173 3174 trace->syscalls.events.sys_enter = sys_enter; 3175 trace->syscalls.events.sys_exit = sys_exit; 3176 3177 ret = 0; 3178out: 3179 return ret; 3180 3181out_delete_sys_exit: 3182 evsel__delete_priv(sys_exit); 3183out_delete_sys_enter: 3184 evsel__delete_priv(sys_enter); 3185 goto out; 3186} 3187 3188static int trace__set_ev_qualifier_tp_filter(struct trace *trace) 3189{ 3190 int err = -1; 3191 struct evsel *sys_exit; 3192 char *filter = asprintf_expr_inout_ints("id", !trace->not_ev_qualifier, 3193 trace->ev_qualifier_ids.nr, 3194 trace->ev_qualifier_ids.entries); 3195 3196 if (filter == NULL) 3197 goto out_enomem; 3198 3199 if (!evsel__append_tp_filter(trace->syscalls.events.sys_enter, filter)) { 3200 sys_exit = trace->syscalls.events.sys_exit; 3201 err = evsel__append_tp_filter(sys_exit, filter); 3202 } 3203 3204 free(filter); 3205out: 3206 return err; 3207out_enomem: 3208 errno = ENOMEM; 3209 goto out; 3210} 3211 3212#ifdef HAVE_LIBBPF_SUPPORT 3213static struct bpf_map *trace__find_bpf_map_by_name(struct trace *trace, const char *name) 3214{ 3215 if (trace->bpf_obj == NULL) 3216 return NULL; 3217 3218 return bpf_object__find_map_by_name(trace->bpf_obj, name); 3219} 3220 3221static void trace__set_bpf_map_filtered_pids(struct trace *trace) 3222{ 3223 trace->filter_pids.map = trace__find_bpf_map_by_name(trace, "pids_filtered"); 3224} 3225 3226static void trace__set_bpf_map_syscalls(struct trace *trace) 3227{ 3228 trace->syscalls.map = trace__find_bpf_map_by_name(trace, "syscalls"); 3229 trace->syscalls.prog_array.sys_enter = trace__find_bpf_map_by_name(trace, "syscalls_sys_enter"); 3230 trace->syscalls.prog_array.sys_exit = trace__find_bpf_map_by_name(trace, "syscalls_sys_exit"); 3231} 3232 3233static struct bpf_program *trace__find_bpf_program_by_title(struct trace *trace, const char *name) 3234{ 3235 if (trace->bpf_obj == NULL) 3236 return NULL; 3237 3238 return bpf_object__find_program_by_title(trace->bpf_obj, name); 3239} 3240 3241static struct bpf_program *trace__find_syscall_bpf_prog(struct trace *trace, struct syscall *sc, 3242 const char *prog_name, const char *type) 3243{ 3244 struct bpf_program *prog; 3245 3246 if (prog_name == NULL) { 3247 char default_prog_name[256]; 3248 scnprintf(default_prog_name, sizeof(default_prog_name), "!syscalls:sys_%s_%s", type, sc->name); 3249 prog = trace__find_bpf_program_by_title(trace, default_prog_name); 3250 if (prog != NULL) 3251 goto out_found; 3252 if (sc->fmt && sc->fmt->alias) { 3253 scnprintf(default_prog_name, sizeof(default_prog_name), "!syscalls:sys_%s_%s", type, sc->fmt->alias); 3254 prog = trace__find_bpf_program_by_title(trace, default_prog_name); 3255 if (prog != NULL) 3256 goto out_found; 3257 } 3258 goto out_unaugmented; 3259 } 3260 3261 prog = trace__find_bpf_program_by_title(trace, prog_name); 3262 3263 if (prog != NULL) { 3264out_found: 3265 return prog; 3266 } 3267 3268 pr_debug("Couldn't find BPF prog \"%s\" to associate with syscalls:sys_%s_%s, not augmenting it\n", 3269 prog_name, type, sc->name); 3270out_unaugmented: 3271 return trace->syscalls.unaugmented_prog; 3272} 3273 3274static void trace__init_syscall_bpf_progs(struct trace *trace, int id) 3275{ 3276 struct syscall *sc = trace__syscall_info(trace, NULL, id); 3277 3278 if (sc == NULL) 3279 return; 3280 3281 sc->bpf_prog.sys_enter = trace__find_syscall_bpf_prog(trace, sc, sc->fmt ? sc->fmt->bpf_prog_name.sys_enter : NULL, "enter"); 3282 sc->bpf_prog.sys_exit = trace__find_syscall_bpf_prog(trace, sc, sc->fmt ? sc->fmt->bpf_prog_name.sys_exit : NULL, "exit"); 3283} 3284 3285static int trace__bpf_prog_sys_enter_fd(struct trace *trace, int id) 3286{ 3287 struct syscall *sc = trace__syscall_info(trace, NULL, id); 3288 return sc ? bpf_program__fd(sc->bpf_prog.sys_enter) : bpf_program__fd(trace->syscalls.unaugmented_prog); 3289} 3290 3291static int trace__bpf_prog_sys_exit_fd(struct trace *trace, int id) 3292{ 3293 struct syscall *sc = trace__syscall_info(trace, NULL, id); 3294 return sc ? bpf_program__fd(sc->bpf_prog.sys_exit) : bpf_program__fd(trace->syscalls.unaugmented_prog); 3295} 3296 3297static void trace__init_bpf_map_syscall_args(struct trace *trace, int id, struct bpf_map_syscall_entry *entry) 3298{ 3299 struct syscall *sc = trace__syscall_info(trace, NULL, id); 3300 int arg = 0; 3301 3302 if (sc == NULL) 3303 goto out; 3304 3305 for (; arg < sc->nr_args; ++arg) { 3306 entry->string_args_len[arg] = 0; 3307 if (sc->arg_fmt[arg].scnprintf == SCA_FILENAME) { 3308 /* Should be set like strace -s strsize */ 3309 entry->string_args_len[arg] = PATH_MAX; 3310 } 3311 } 3312out: 3313 for (; arg < 6; ++arg) 3314 entry->string_args_len[arg] = 0; 3315} 3316static int trace__set_ev_qualifier_bpf_filter(struct trace *trace) 3317{ 3318 int fd = bpf_map__fd(trace->syscalls.map); 3319 struct bpf_map_syscall_entry value = { 3320 .enabled = !trace->not_ev_qualifier, 3321 }; 3322 int err = 0; 3323 size_t i; 3324 3325 for (i = 0; i < trace->ev_qualifier_ids.nr; ++i) { 3326 int key = trace->ev_qualifier_ids.entries[i]; 3327 3328 if (value.enabled) { 3329 trace__init_bpf_map_syscall_args(trace, key, &value); 3330 trace__init_syscall_bpf_progs(trace, key); 3331 } 3332 3333 err = bpf_map_update_elem(fd, &key, &value, BPF_EXIST); 3334 if (err) 3335 break; 3336 } 3337 3338 return err; 3339} 3340 3341static int __trace__init_syscalls_bpf_map(struct trace *trace, bool enabled) 3342{ 3343 int fd = bpf_map__fd(trace->syscalls.map); 3344 struct bpf_map_syscall_entry value = { 3345 .enabled = enabled, 3346 }; 3347 int err = 0, key; 3348 3349 for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) { 3350 if (enabled) 3351 trace__init_bpf_map_syscall_args(trace, key, &value); 3352 3353 err = bpf_map_update_elem(fd, &key, &value, BPF_ANY); 3354 if (err) 3355 break; 3356 } 3357 3358 return err; 3359} 3360 3361static int trace__init_syscalls_bpf_map(struct trace *trace) 3362{ 3363 bool enabled = true; 3364 3365 if (trace->ev_qualifier_ids.nr) 3366 enabled = trace->not_ev_qualifier; 3367 3368 return __trace__init_syscalls_bpf_map(trace, enabled); 3369} 3370 3371static struct bpf_program *trace__find_usable_bpf_prog_entry(struct trace *trace, struct syscall *sc) 3372{ 3373 struct tep_format_field *field, *candidate_field; 3374 int id; 3375 3376 /* 3377 * We're only interested in syscalls that have a pointer: 3378 */ 3379 for (field = sc->args; field; field = field->next) { 3380 if (field->flags & TEP_FIELD_IS_POINTER) 3381 goto try_to_find_pair; 3382 } 3383 3384 return NULL; 3385 3386try_to_find_pair: 3387 for (id = 0; id < trace->sctbl->syscalls.nr_entries; ++id) { 3388 struct syscall *pair = trace__syscall_info(trace, NULL, id); 3389 struct bpf_program *pair_prog; 3390 bool is_candidate = false; 3391 3392 if (pair == NULL || pair == sc || 3393 pair->bpf_prog.sys_enter == trace->syscalls.unaugmented_prog) 3394 continue; 3395 3396 for (field = sc->args, candidate_field = pair->args; 3397 field && candidate_field; field = field->next, candidate_field = candidate_field->next) { 3398 bool is_pointer = field->flags & TEP_FIELD_IS_POINTER, 3399 candidate_is_pointer = candidate_field->flags & TEP_FIELD_IS_POINTER; 3400 3401 if (is_pointer) { 3402 if (!candidate_is_pointer) { 3403 // The candidate just doesn't copies our pointer arg, might copy other pointers we want. 3404 continue; 3405 } 3406 } else { 3407 if (candidate_is_pointer) { 3408 // The candidate might copy a pointer we don't have, skip it. 3409 goto next_candidate; 3410 } 3411 continue; 3412 } 3413 3414 if (strcmp(field->type, candidate_field->type)) 3415 goto next_candidate; 3416 3417 is_candidate = true; 3418 } 3419 3420 if (!is_candidate) 3421 goto next_candidate; 3422 3423 /* 3424 * Check if the tentative pair syscall augmenter has more pointers, if it has, 3425 * then it may be collecting that and we then can't use it, as it would collect 3426 * more than what is common to the two syscalls. 3427 */ 3428 if (candidate_field) { 3429 for (candidate_field = candidate_field->next; candidate_field; candidate_field = candidate_field->next) 3430 if (candidate_field->flags & TEP_FIELD_IS_POINTER) 3431 goto next_candidate; 3432 } 3433 3434 pair_prog = pair->bpf_prog.sys_enter; 3435 /* 3436 * If the pair isn't enabled, then its bpf_prog.sys_enter will not 3437 * have been searched for, so search it here and if it returns the 3438 * unaugmented one, then ignore it, otherwise we'll reuse that BPF 3439 * program for a filtered syscall on a non-filtered one. 3440 * 3441 * For instance, we have "!syscalls:sys_enter_renameat" and that is 3442 * useful for "renameat2". 3443 */ 3444 if (pair_prog == NULL) { 3445 pair_prog = trace__find_syscall_bpf_prog(trace, pair, pair->fmt ? pair->fmt->bpf_prog_name.sys_enter : NULL, "enter"); 3446 if (pair_prog == trace->syscalls.unaugmented_prog) 3447 goto next_candidate; 3448 } 3449 3450 pr_debug("Reusing \"%s\" BPF sys_enter augmenter for \"%s\"\n", pair->name, sc->name); 3451 return pair_prog; 3452 next_candidate: 3453 continue; 3454 } 3455 3456 return NULL; 3457} 3458 3459static int trace__init_syscalls_bpf_prog_array_maps(struct trace *trace) 3460{ 3461 int map_enter_fd = bpf_map__fd(trace->syscalls.prog_array.sys_enter), 3462 map_exit_fd = bpf_map__fd(trace->syscalls.prog_array.sys_exit); 3463 int err = 0, key; 3464 3465 for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) { 3466 int prog_fd; 3467 3468 if (!trace__syscall_enabled(trace, key)) 3469 continue; 3470 3471 trace__init_syscall_bpf_progs(trace, key); 3472 3473 // It'll get at least the "!raw_syscalls:unaugmented" 3474 prog_fd = trace__bpf_prog_sys_enter_fd(trace, key); 3475 err = bpf_map_update_elem(map_enter_fd, &key, &prog_fd, BPF_ANY); 3476 if (err) 3477 break; 3478 prog_fd = trace__bpf_prog_sys_exit_fd(trace, key); 3479 err = bpf_map_update_elem(map_exit_fd, &key, &prog_fd, BPF_ANY); 3480 if (err) 3481 break; 3482 } 3483 3484 /* 3485 * Now lets do a second pass looking for enabled syscalls without 3486 * an augmenter that have a signature that is a superset of another 3487 * syscall with an augmenter so that we can auto-reuse it. 3488 * 3489 * I.e. if we have an augmenter for the "open" syscall that has 3490 * this signature: 3491 * 3492 * int open(const char *pathname, int flags, mode_t mode); 3493 * 3494 * I.e. that will collect just the first string argument, then we 3495 * can reuse it for the 'creat' syscall, that has this signature: 3496 * 3497 * int creat(const char *pathname, mode_t mode); 3498 * 3499 * and for: 3500 * 3501 * int stat(const char *pathname, struct stat *statbuf); 3502 * int lstat(const char *pathname, struct stat *statbuf); 3503 * 3504 * Because the 'open' augmenter will collect the first arg as a string, 3505 * and leave alone all the other args, which already helps with 3506 * beautifying 'stat' and 'lstat''s pathname arg. 3507 * 3508 * Then, in time, when 'stat' gets an augmenter that collects both 3509 * first and second arg (this one on the raw_syscalls:sys_exit prog 3510 * array tail call, then that one will be used. 3511 */ 3512 for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) { 3513 struct syscall *sc = trace__syscall_info(trace, NULL, key); 3514 struct bpf_program *pair_prog; 3515 int prog_fd; 3516 3517 if (sc == NULL || sc->bpf_prog.sys_enter == NULL) 3518 continue; 3519 3520 /* 3521 * For now we're just reusing the sys_enter prog, and if it 3522 * already has an augmenter, we don't need to find one. 3523 */ 3524 if (sc->bpf_prog.sys_enter != trace->syscalls.unaugmented_prog) 3525 continue; 3526 3527 /* 3528 * Look at all the other syscalls for one that has a signature 3529 * that is close enough that we can share: 3530 */ 3531 pair_prog = trace__find_usable_bpf_prog_entry(trace, sc); 3532 if (pair_prog == NULL) 3533 continue; 3534 3535 sc->bpf_prog.sys_enter = pair_prog; 3536 3537 /* 3538 * Update the BPF_MAP_TYPE_PROG_SHARED for raw_syscalls:sys_enter 3539 * with the fd for the program we're reusing: 3540 */ 3541 prog_fd = bpf_program__fd(sc->bpf_prog.sys_enter); 3542 err = bpf_map_update_elem(map_enter_fd, &key, &prog_fd, BPF_ANY); 3543 if (err) 3544 break; 3545 } 3546 3547 3548 return err; 3549} 3550 3551static void trace__delete_augmented_syscalls(struct trace *trace) 3552{ 3553 struct evsel *evsel, *tmp; 3554 3555 evlist__remove(trace->evlist, trace->syscalls.events.augmented); 3556 evsel__delete(trace->syscalls.events.augmented); 3557 trace->syscalls.events.augmented = NULL; 3558 3559 evlist__for_each_entry_safe(trace->evlist, tmp, evsel) { 3560 if (evsel->bpf_obj == trace->bpf_obj) { 3561 evlist__remove(trace->evlist, evsel); 3562 evsel__delete(evsel); 3563 } 3564 3565 } 3566 3567 bpf_object__close(trace->bpf_obj); 3568 trace->bpf_obj = NULL; 3569} 3570#else // HAVE_LIBBPF_SUPPORT 3571static struct bpf_map *trace__find_bpf_map_by_name(struct trace *trace __maybe_unused, 3572 const char *name __maybe_unused) 3573{ 3574 return NULL; 3575} 3576 3577static void trace__set_bpf_map_filtered_pids(struct trace *trace __maybe_unused) 3578{ 3579} 3580 3581static void trace__set_bpf_map_syscalls(struct trace *trace __maybe_unused) 3582{ 3583} 3584 3585static int trace__set_ev_qualifier_bpf_filter(struct trace *trace __maybe_unused) 3586{ 3587 return 0; 3588} 3589 3590static int trace__init_syscalls_bpf_map(struct trace *trace __maybe_unused) 3591{ 3592 return 0; 3593} 3594 3595static struct bpf_program *trace__find_bpf_program_by_title(struct trace *trace __maybe_unused, 3596 const char *name __maybe_unused) 3597{ 3598 return NULL; 3599} 3600 3601static int trace__init_syscalls_bpf_prog_array_maps(struct trace *trace __maybe_unused) 3602{ 3603 return 0; 3604} 3605 3606static void trace__delete_augmented_syscalls(struct trace *trace __maybe_unused) 3607{ 3608} 3609#endif // HAVE_LIBBPF_SUPPORT 3610 3611static bool trace__only_augmented_syscalls_evsels(struct trace *trace) 3612{ 3613 struct evsel *evsel; 3614 3615 evlist__for_each_entry(trace->evlist, evsel) { 3616 if (evsel == trace->syscalls.events.augmented || 3617 evsel->bpf_obj == trace->bpf_obj) 3618 continue; 3619 3620 return false; 3621 } 3622 3623 return true; 3624} 3625 3626static int trace__set_ev_qualifier_filter(struct trace *trace) 3627{ 3628 if (trace->syscalls.map) 3629 return trace__set_ev_qualifier_bpf_filter(trace); 3630 if (trace->syscalls.events.sys_enter) 3631 return trace__set_ev_qualifier_tp_filter(trace); 3632 return 0; 3633} 3634 3635static int bpf_map__set_filter_pids(struct bpf_map *map __maybe_unused, 3636 size_t npids __maybe_unused, pid_t *pids __maybe_unused) 3637{ 3638 int err = 0; 3639#ifdef HAVE_LIBBPF_SUPPORT 3640 bool value = true; 3641 int map_fd = bpf_map__fd(map); 3642 size_t i; 3643 3644 for (i = 0; i < npids; ++i) { 3645 err = bpf_map_update_elem(map_fd, &pids[i], &value, BPF_ANY); 3646 if (err) 3647 break; 3648 } 3649#endif 3650 return err; 3651} 3652 3653static int trace__set_filter_loop_pids(struct trace *trace) 3654{ 3655 unsigned int nr = 1, err; 3656 pid_t pids[32] = { 3657 getpid(), 3658 }; 3659 struct thread *thread = machine__find_thread(trace->host, pids[0], pids[0]); 3660 3661 while (thread && nr < ARRAY_SIZE(pids)) { 3662 struct thread *parent = machine__find_thread(trace->host, thread->ppid, thread->ppid); 3663 3664 if (parent == NULL) 3665 break; 3666 3667 if (!strcmp(thread__comm_str(parent), "sshd") || 3668 strstarts(thread__comm_str(parent), "gnome-terminal")) { 3669 pids[nr++] = parent->tid; 3670 break; 3671 } 3672 thread = parent; 3673 } 3674 3675 err = perf_evlist__append_tp_filter_pids(trace->evlist, nr, pids); 3676 if (!err && trace->filter_pids.map) 3677 err = bpf_map__set_filter_pids(trace->filter_pids.map, nr, pids); 3678 3679 return err; 3680} 3681 3682static int trace__set_filter_pids(struct trace *trace) 3683{ 3684 int err = 0; 3685 /* 3686 * Better not use !target__has_task() here because we need to cover the 3687 * case where no threads were specified in the command line, but a 3688 * workload was, and in that case we will fill in the thread_map when 3689 * we fork the workload in perf_evlist__prepare_workload. 3690 */ 3691 if (trace->filter_pids.nr > 0) { 3692 err = perf_evlist__append_tp_filter_pids(trace->evlist, trace->filter_pids.nr, 3693 trace->filter_pids.entries); 3694 if (!err && trace->filter_pids.map) { 3695 err = bpf_map__set_filter_pids(trace->filter_pids.map, trace->filter_pids.nr, 3696 trace->filter_pids.entries); 3697 } 3698 } else if (perf_thread_map__pid(trace->evlist->core.threads, 0) == -1) { 3699 err = trace__set_filter_loop_pids(trace); 3700 } 3701 3702 return err; 3703} 3704 3705static int __trace__deliver_event(struct trace *trace, union perf_event *event) 3706{ 3707 struct evlist *evlist = trace->evlist; 3708 struct perf_sample sample; 3709 int err; 3710 3711 err = perf_evlist__parse_sample(evlist, event, &sample); 3712 if (err) 3713 fprintf(trace->output, "Can't parse sample, err = %d, skipping...\n", err); 3714 else 3715 trace__handle_event(trace, event, &sample); 3716 3717 return 0; 3718} 3719 3720static int __trace__flush_events(struct trace *trace) 3721{ 3722 u64 first = ordered_events__first_time(&trace->oe.data); 3723 u64 flush = trace->oe.last - NSEC_PER_SEC; 3724 3725 /* Is there some thing to flush.. */ 3726 if (first && first < flush) 3727 return ordered_events__flush_time(&trace->oe.data, flush); 3728 3729 return 0; 3730} 3731 3732static int trace__flush_events(struct trace *trace) 3733{ 3734 return !trace->sort_events ? 0 : __trace__flush_events(trace); 3735} 3736 3737static int trace__deliver_event(struct trace *trace, union perf_event *event) 3738{ 3739 int err; 3740 3741 if (!trace->sort_events) 3742 return __trace__deliver_event(trace, event); 3743 3744 err = perf_evlist__parse_sample_timestamp(trace->evlist, event, &trace->oe.last); 3745 if (err && err != -1) 3746 return err; 3747 3748 err = ordered_events__queue(&trace->oe.data, event, trace->oe.last, 0); 3749 if (err) 3750 return err; 3751 3752 return trace__flush_events(trace); 3753} 3754 3755static int ordered_events__deliver_event(struct ordered_events *oe, 3756 struct ordered_event *event) 3757{ 3758 struct trace *trace = container_of(oe, struct trace, oe.data); 3759 3760 return __trace__deliver_event(trace, event->event); 3761} 3762 3763static struct syscall_arg_fmt *evsel__find_syscall_arg_fmt_by_name(struct evsel *evsel, char *arg) 3764{ 3765 struct tep_format_field *field; 3766 struct syscall_arg_fmt *fmt = __evsel__syscall_arg_fmt(evsel); 3767 3768 if (evsel->tp_format == NULL || fmt == NULL) 3769 return NULL; 3770 3771 for (field = evsel->tp_format->format.fields; field; field = field->next, ++fmt) 3772 if (strcmp(field->name, arg) == 0) 3773 return fmt; 3774 3775 return NULL; 3776} 3777 3778static int trace__expand_filter(struct trace *trace __maybe_unused, struct evsel *evsel) 3779{ 3780 char *tok, *left = evsel->filter, *new_filter = evsel->filter; 3781 3782 while ((tok = strpbrk(left, "=<>!")) != NULL) { 3783 char *right = tok + 1, *right_end; 3784 3785 if (*right == '=') 3786 ++right; 3787 3788 while (isspace(*right)) 3789 ++right; 3790 3791 if (*right == '\0') 3792 break; 3793 3794 while (!isalpha(*left)) 3795 if (++left == tok) { 3796 /* 3797 * Bail out, can't find the name of the argument that is being 3798 * used in the filter, let it try to set this filter, will fail later. 3799 */ 3800 return 0; 3801 } 3802 3803 right_end = right + 1; 3804 while (isalnum(*right_end) || *right_end == '_' || *right_end == '|') 3805 ++right_end; 3806 3807 if (isalpha(*right)) { 3808 struct syscall_arg_fmt *fmt; 3809 int left_size = tok - left, 3810 right_size = right_end - right; 3811 char arg[128]; 3812 3813 while (isspace(left[left_size - 1])) 3814 --left_size; 3815 3816 scnprintf(arg, sizeof(arg), "%.*s", left_size, left); 3817 3818 fmt = evsel__find_syscall_arg_fmt_by_name(evsel, arg); 3819 if (fmt == NULL) { 3820 pr_err("\"%s\" not found in \"%s\", can't set filter \"%s\"\n", 3821 arg, evsel->name, evsel->filter); 3822 return -1; 3823 } 3824 3825 pr_debug2("trying to expand \"%s\" \"%.*s\" \"%.*s\" -> ", 3826 arg, (int)(right - tok), tok, right_size, right); 3827 3828 if (fmt->strtoul) { 3829 u64 val; 3830 struct syscall_arg syscall_arg = { 3831 .parm = fmt->parm, 3832 }; 3833 3834 if (fmt->strtoul(right, right_size, &syscall_arg, &val)) { 3835 char *n, expansion[19]; 3836 int expansion_lenght = scnprintf(expansion, sizeof(expansion), "%#" PRIx64, val); 3837 int expansion_offset = right - new_filter; 3838 3839 pr_debug("%s", expansion); 3840 3841 if (asprintf(&n, "%.*s%s%s", expansion_offset, new_filter, expansion, right_end) < 0) { 3842 pr_debug(" out of memory!\n"); 3843 free(new_filter); 3844 return -1; 3845 } 3846 if (new_filter != evsel->filter) 3847 free(new_filter); 3848 left = n + expansion_offset + expansion_lenght; 3849 new_filter = n; 3850 } else { 3851 pr_err("\"%.*s\" not found for \"%s\" in \"%s\", can't set filter \"%s\"\n", 3852 right_size, right, arg, evsel->name, evsel->filter); 3853 return -1; 3854 } 3855 } else { 3856 pr_err("No resolver (strtoul) for \"%s\" in \"%s\", can't set filter \"%s\"\n", 3857 arg, evsel->name, evsel->filter); 3858 return -1; 3859 } 3860 3861 pr_debug("\n"); 3862 } else { 3863 left = right_end; 3864 } 3865 } 3866 3867 if (new_filter != evsel->filter) { 3868 pr_debug("New filter for %s: %s\n", evsel->name, new_filter); 3869 evsel__set_filter(evsel, new_filter); 3870 free(new_filter); 3871 } 3872 3873 return 0; 3874} 3875 3876static int trace__expand_filters(struct trace *trace, struct evsel **err_evsel) 3877{ 3878 struct evlist *evlist = trace->evlist; 3879 struct evsel *evsel; 3880 3881 evlist__for_each_entry(evlist, evsel) { 3882 if (evsel->filter == NULL) 3883 continue; 3884 3885 if (trace__expand_filter(trace, evsel)) { 3886 *err_evsel = evsel; 3887 return -1; 3888 } 3889 } 3890 3891 return 0; 3892} 3893 3894static int trace__run(struct trace *trace, int argc, const char **argv) 3895{ 3896 struct evlist *evlist = trace->evlist; 3897 struct evsel *evsel, *pgfault_maj = NULL, *pgfault_min = NULL; 3898 int err = -1, i; 3899 unsigned long before; 3900 const bool forks = argc > 0; 3901 bool draining = false; 3902 3903 trace->live = true; 3904 3905 if (!trace->raw_augmented_syscalls) { 3906 if (trace->trace_syscalls && trace__add_syscall_newtp(trace)) 3907 goto out_error_raw_syscalls; 3908 3909 if (trace->trace_syscalls) 3910 trace->vfs_getname = evlist__add_vfs_getname(evlist); 3911 } 3912 3913 if ((trace->trace_pgfaults & TRACE_PFMAJ)) { 3914 pgfault_maj = evsel__new_pgfault(PERF_COUNT_SW_PAGE_FAULTS_MAJ); 3915 if (pgfault_maj == NULL) 3916 goto out_error_mem; 3917 evsel__config_callchain(pgfault_maj, &trace->opts, &callchain_param); 3918 evlist__add(evlist, pgfault_maj); 3919 } 3920 3921 if ((trace->trace_pgfaults & TRACE_PFMIN)) { 3922 pgfault_min = evsel__new_pgfault(PERF_COUNT_SW_PAGE_FAULTS_MIN); 3923 if (pgfault_min == NULL) 3924 goto out_error_mem; 3925 evsel__config_callchain(pgfault_min, &trace->opts, &callchain_param); 3926 evlist__add(evlist, pgfault_min); 3927 } 3928 3929 if (trace->sched && 3930 evlist__add_newtp(evlist, "sched", "sched_stat_runtime", trace__sched_stat_runtime)) 3931 goto out_error_sched_stat_runtime; 3932 /* 3933 * If a global cgroup was set, apply it to all the events without an 3934 * explicit cgroup. I.e.: 3935 * 3936 * trace -G A -e sched:*switch 3937 * 3938 * Will set all raw_syscalls:sys_{enter,exit}, pgfault, vfs_getname, etc 3939 * _and_ sched:sched_switch to the 'A' cgroup, while: 3940 * 3941 * trace -e sched:*switch -G A 3942 * 3943 * will only set the sched:sched_switch event to the 'A' cgroup, all the 3944 * other events (raw_syscalls:sys_{enter,exit}, etc are left "without" 3945 * a cgroup (on the root cgroup, sys wide, etc). 3946 * 3947 * Multiple cgroups: 3948 * 3949 * trace -G A -e sched:*switch -G B 3950 * 3951 * the syscall ones go to the 'A' cgroup, the sched:sched_switch goes 3952 * to the 'B' cgroup. 3953 * 3954 * evlist__set_default_cgroup() grabs a reference of the passed cgroup 3955 * only for the evsels still without a cgroup, i.e. evsel->cgroup == NULL. 3956 */ 3957 if (trace->cgroup) 3958 evlist__set_default_cgroup(trace->evlist, trace->cgroup); 3959 3960 err = perf_evlist__create_maps(evlist, &trace->opts.target); 3961 if (err < 0) { 3962 fprintf(trace->output, "Problems parsing the target to trace, check your options!\n"); 3963 goto out_delete_evlist; 3964 } 3965 3966 err = trace__symbols_init(trace, evlist); 3967 if (err < 0) { 3968 fprintf(trace->output, "Problems initializing symbol libraries!\n"); 3969 goto out_delete_evlist; 3970 } 3971 3972 perf_evlist__config(evlist, &trace->opts, &callchain_param); 3973 3974 signal(SIGCHLD, sig_handler); 3975 signal(SIGINT, sig_handler); 3976 3977 if (forks) { 3978 err = perf_evlist__prepare_workload(evlist, &trace->opts.target, 3979 argv, false, NULL); 3980 if (err < 0) { 3981 fprintf(trace->output, "Couldn't run the workload!\n"); 3982 goto out_delete_evlist; 3983 } 3984 } 3985 3986 err = evlist__open(evlist); 3987 if (err < 0) 3988 goto out_error_open; 3989 3990 err = bpf__apply_obj_config(); 3991 if (err) { 3992 char errbuf[BUFSIZ]; 3993 3994 bpf__strerror_apply_obj_config(err, errbuf, sizeof(errbuf)); 3995 pr_err("ERROR: Apply config to BPF failed: %s\n", 3996 errbuf); 3997 goto out_error_open; 3998 } 3999 4000 err = trace__set_filter_pids(trace); 4001 if (err < 0) 4002 goto out_error_mem; 4003 4004 if (trace->syscalls.map) 4005 trace__init_syscalls_bpf_map(trace); 4006 4007 if (trace->syscalls.prog_array.sys_enter) 4008 trace__init_syscalls_bpf_prog_array_maps(trace); 4009 4010 if (trace->ev_qualifier_ids.nr > 0) { 4011 err = trace__set_ev_qualifier_filter(trace); 4012 if (err < 0) 4013 goto out_errno; 4014 4015 if (trace->syscalls.events.sys_exit) { 4016 pr_debug("event qualifier tracepoint filter: %s\n", 4017 trace->syscalls.events.sys_exit->filter); 4018 } 4019 } 4020 4021 /* 4022 * If the "close" syscall is not traced, then we will not have the 4023 * opportunity to, in syscall_arg__scnprintf_close_fd() invalidate the 4024 * fd->pathname table and were ending up showing the last value set by 4025 * syscalls opening a pathname and associating it with a descriptor or 4026 * reading it from /proc/pid/fd/ in cases where that doesn't make 4027 * sense. 4028 * 4029 * So just disable this beautifier (SCA_FD, SCA_FDAT) when 'close' is 4030 * not in use. 4031 */ 4032 trace->fd_path_disabled = !trace__syscall_enabled(trace, syscalltbl__id(trace->sctbl, "close")); 4033 4034 err = trace__expand_filters(trace, &evsel); 4035 if (err) 4036 goto out_delete_evlist; 4037 err = perf_evlist__apply_filters(evlist, &evsel); 4038 if (err < 0) 4039 goto out_error_apply_filters; 4040 4041 if (trace->dump.map) 4042 bpf_map__fprintf(trace->dump.map, trace->output); 4043 4044 err = evlist__mmap(evlist, trace->opts.mmap_pages); 4045 if (err < 0) 4046 goto out_error_mmap; 4047 4048 if (!target__none(&trace->opts.target) && !trace->opts.initial_delay) 4049 evlist__enable(evlist); 4050 4051 if (forks) 4052 perf_evlist__start_workload(evlist); 4053 4054 if (trace->opts.initial_delay) { 4055 usleep(trace->opts.initial_delay * 1000); 4056 evlist__enable(evlist); 4057 } 4058 4059 trace->multiple_threads = perf_thread_map__pid(evlist->core.threads, 0) == -1 || 4060 evlist->core.threads->nr > 1 || 4061 evlist__first(evlist)->core.attr.inherit; 4062 4063 /* 4064 * Now that we already used evsel->core.attr to ask the kernel to setup the 4065 * events, lets reuse evsel->core.attr.sample_max_stack as the limit in 4066 * trace__resolve_callchain(), allowing per-event max-stack settings 4067 * to override an explicitly set --max-stack global setting. 4068 */ 4069 evlist__for_each_entry(evlist, evsel) { 4070 if (evsel__has_callchain(evsel) && 4071 evsel->core.attr.sample_max_stack == 0) 4072 evsel->core.attr.sample_max_stack = trace->max_stack; 4073 } 4074again: 4075 before = trace->nr_events; 4076 4077 for (i = 0; i < evlist->core.nr_mmaps; i++) { 4078 union perf_event *event; 4079 struct mmap *md; 4080 4081 md = &evlist->mmap[i]; 4082 if (perf_mmap__read_init(&md->core) < 0) 4083 continue; 4084 4085 while ((event = perf_mmap__read_event(&md->core)) != NULL) { 4086 ++trace->nr_events; 4087 4088 err = trace__deliver_event(trace, event); 4089 if (err) 4090 goto out_disable; 4091 4092 perf_mmap__consume(&md->core); 4093 4094 if (interrupted) 4095 goto out_disable; 4096 4097 if (done && !draining) { 4098 evlist__disable(evlist); 4099 draining = true; 4100 } 4101 } 4102 perf_mmap__read_done(&md->core); 4103 } 4104 4105 if (trace->nr_events == before) { 4106 int timeout = done ? 100 : -1; 4107 4108 if (!draining && evlist__poll(evlist, timeout) > 0) { 4109 if (evlist__filter_pollfd(evlist, POLLERR | POLLHUP | POLLNVAL) == 0) 4110 draining = true; 4111 4112 goto again; 4113 } else { 4114 if (trace__flush_events(trace)) 4115 goto out_disable; 4116 } 4117 } else { 4118 goto again; 4119 } 4120 4121out_disable: 4122 thread__zput(trace->current); 4123 4124 evlist__disable(evlist); 4125 4126 if (trace->sort_events) 4127 ordered_events__flush(&trace->oe.data, OE_FLUSH__FINAL); 4128 4129 if (!err) { 4130 if (trace->summary) 4131 trace__fprintf_thread_summary(trace, trace->output); 4132 4133 if (trace->show_tool_stats) { 4134 fprintf(trace->output, "Stats:\n " 4135 " vfs_getname : %" PRIu64 "\n" 4136 " proc_getname: %" PRIu64 "\n", 4137 trace->stats.vfs_getname, 4138 trace->stats.proc_getname); 4139 } 4140 } 4141 4142out_delete_evlist: 4143 trace__symbols__exit(trace); 4144 4145 evlist__delete(evlist); 4146 cgroup__put(trace->cgroup); 4147 trace->evlist = NULL; 4148 trace->live = false; 4149 return err; 4150{ 4151 char errbuf[BUFSIZ]; 4152 4153out_error_sched_stat_runtime: 4154 tracing_path__strerror_open_tp(errno, errbuf, sizeof(errbuf), "sched", "sched_stat_runtime"); 4155 goto out_error; 4156 4157out_error_raw_syscalls: 4158 tracing_path__strerror_open_tp(errno, errbuf, sizeof(errbuf), "raw_syscalls", "sys_(enter|exit)"); 4159 goto out_error; 4160 4161out_error_mmap: 4162 evlist__strerror_mmap(evlist, errno, errbuf, sizeof(errbuf)); 4163 goto out_error; 4164 4165out_error_open: 4166 evlist__strerror_open(evlist, errno, errbuf, sizeof(errbuf)); 4167 4168out_error: 4169 fprintf(trace->output, "%s\n", errbuf); 4170 goto out_delete_evlist; 4171 4172out_error_apply_filters: 4173 fprintf(trace->output, 4174 "Failed to set filter \"%s\" on event %s with %d (%s)\n", 4175 evsel->filter, evsel__name(evsel), errno, 4176 str_error_r(errno, errbuf, sizeof(errbuf))); 4177 goto out_delete_evlist; 4178} 4179out_error_mem: 4180 fprintf(trace->output, "Not enough memory to run!\n"); 4181 goto out_delete_evlist; 4182 4183out_errno: 4184 fprintf(trace->output, "errno=%d,%s\n", errno, strerror(errno)); 4185 goto out_delete_evlist; 4186} 4187 4188static int trace__replay(struct trace *trace) 4189{ 4190 const struct evsel_str_handler handlers[] = { 4191 { "probe:vfs_getname", trace__vfs_getname, }, 4192 }; 4193 struct perf_data data = { 4194 .path = input_name, 4195 .mode = PERF_DATA_MODE_READ, 4196 .force = trace->force, 4197 }; 4198 struct perf_session *session; 4199 struct evsel *evsel; 4200 int err = -1; 4201 4202 trace->tool.sample = trace__process_sample; 4203 trace->tool.mmap = perf_event__process_mmap; 4204 trace->tool.mmap2 = perf_event__process_mmap2; 4205 trace->tool.comm = perf_event__process_comm; 4206 trace->tool.exit = perf_event__process_exit; 4207 trace->tool.fork = perf_event__process_fork; 4208 trace->tool.attr = perf_event__process_attr; 4209 trace->tool.tracing_data = perf_event__process_tracing_data; 4210 trace->tool.build_id = perf_event__process_build_id; 4211 trace->tool.namespaces = perf_event__process_namespaces; 4212 4213 trace->tool.ordered_events = true; 4214 trace->tool.ordering_requires_timestamps = true; 4215 4216 /* add tid to output */ 4217 trace->multiple_threads = true; 4218 4219 session = perf_session__new(&data, false, &trace->tool); 4220 if (IS_ERR(session)) 4221 return PTR_ERR(session); 4222 4223 if (trace->opts.target.pid) 4224 symbol_conf.pid_list_str = strdup(trace->opts.target.pid); 4225 4226 if (trace->opts.target.tid) 4227 symbol_conf.tid_list_str = strdup(trace->opts.target.tid); 4228 4229 if (symbol__init(&session->header.env) < 0) 4230 goto out; 4231 4232 trace->host = &session->machines.host; 4233 4234 err = perf_session__set_tracepoints_handlers(session, handlers); 4235 if (err) 4236 goto out; 4237 4238 evsel = perf_evlist__find_tracepoint_by_name(session->evlist, 4239 "raw_syscalls:sys_enter"); 4240 /* older kernels have syscalls tp versus raw_syscalls */ 4241 if (evsel == NULL) 4242 evsel = perf_evlist__find_tracepoint_by_name(session->evlist, 4243 "syscalls:sys_enter"); 4244 4245 if (evsel && 4246 (evsel__init_raw_syscall_tp(evsel, trace__sys_enter) < 0 || 4247 perf_evsel__init_sc_tp_ptr_field(evsel, args))) { 4248 pr_err("Error during initialize raw_syscalls:sys_enter event\n"); 4249 goto out; 4250 } 4251 4252 evsel = perf_evlist__find_tracepoint_by_name(session->evlist, 4253 "raw_syscalls:sys_exit"); 4254 if (evsel == NULL) 4255 evsel = perf_evlist__find_tracepoint_by_name(session->evlist, 4256 "syscalls:sys_exit"); 4257 if (evsel && 4258 (evsel__init_raw_syscall_tp(evsel, trace__sys_exit) < 0 || 4259 perf_evsel__init_sc_tp_uint_field(evsel, ret))) { 4260 pr_err("Error during initialize raw_syscalls:sys_exit event\n"); 4261 goto out; 4262 } 4263 4264 evlist__for_each_entry(session->evlist, evsel) { 4265 if (evsel->core.attr.type == PERF_TYPE_SOFTWARE && 4266 (evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ || 4267 evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MIN || 4268 evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS)) 4269 evsel->handler = trace__pgfault; 4270 } 4271 4272 setup_pager(); 4273 4274 err = perf_session__process_events(session); 4275 if (err) 4276 pr_err("Failed to process events, error %d", err); 4277 4278 else if (trace->summary) 4279 trace__fprintf_thread_summary(trace, trace->output); 4280 4281out: 4282 perf_session__delete(session); 4283 4284 return err; 4285} 4286 4287static size_t trace__fprintf_threads_header(FILE *fp) 4288{ 4289 size_t printed; 4290 4291 printed = fprintf(fp, "\n Summary of events:\n\n"); 4292 4293 return printed; 4294} 4295 4296DEFINE_RESORT_RB(syscall_stats, a->msecs > b->msecs, 4297 struct syscall_stats *stats; 4298 double msecs; 4299 int syscall; 4300) 4301{ 4302 struct int_node *source = rb_entry(nd, struct int_node, rb_node); 4303 struct syscall_stats *stats = source->priv; 4304 4305 entry->syscall = source->i; 4306 entry->stats = stats; 4307 entry->msecs = stats ? (u64)stats->stats.n * (avg_stats(&stats->stats) / NSEC_PER_MSEC) : 0; 4308} 4309 4310static size_t thread__dump_stats(struct thread_trace *ttrace, 4311 struct trace *trace, FILE *fp) 4312{ 4313 size_t printed = 0; 4314 struct syscall *sc; 4315 struct rb_node *nd; 4316 DECLARE_RESORT_RB_INTLIST(syscall_stats, ttrace->syscall_stats); 4317 4318 if (syscall_stats == NULL) 4319 return 0; 4320 4321 printed += fprintf(fp, "\n"); 4322 4323 printed += fprintf(fp, " syscall calls errors total min avg max stddev\n"); 4324 printed += fprintf(fp, " (msec) (msec) (msec) (msec) (%%)\n"); 4325 printed += fprintf(fp, " --------------- -------- ------ -------- --------- --------- --------- ------\n"); 4326 4327 resort_rb__for_each_entry(nd, syscall_stats) { 4328 struct syscall_stats *stats = syscall_stats_entry->stats; 4329 if (stats) { 4330 double min = (double)(stats->stats.min) / NSEC_PER_MSEC; 4331 double max = (double)(stats->stats.max) / NSEC_PER_MSEC; 4332 double avg = avg_stats(&stats->stats); 4333 double pct; 4334 u64 n = (u64)stats->stats.n; 4335 4336 pct = avg ? 100.0 * stddev_stats(&stats->stats) / avg : 0.0; 4337 avg /= NSEC_PER_MSEC; 4338 4339 sc = &trace->syscalls.table[syscall_stats_entry->syscall]; 4340 printed += fprintf(fp, " %-15s", sc->name); 4341 printed += fprintf(fp, " %8" PRIu64 " %6" PRIu64 " %9.3f %9.3f %9.3f", 4342 n, stats->nr_failures, syscall_stats_entry->msecs, min, avg); 4343 printed += fprintf(fp, " %9.3f %9.2f%%\n", max, pct); 4344 4345 if (trace->errno_summary && stats->nr_failures) { 4346 const char *arch_name = perf_env__arch(trace->host->env); 4347 int e; 4348 4349 for (e = 0; e < stats->max_errno; ++e) { 4350 if (stats->errnos[e] != 0) 4351 fprintf(fp, "\t\t\t\t%s: %d\n", arch_syscalls__strerrno(arch_name, e + 1), stats->errnos[e]); 4352 } 4353 } 4354 } 4355 } 4356 4357 resort_rb__delete(syscall_stats); 4358 printed += fprintf(fp, "\n\n"); 4359 4360 return printed; 4361} 4362 4363static size_t trace__fprintf_thread(FILE *fp, struct thread *thread, struct trace *trace) 4364{ 4365 size_t printed = 0; 4366 struct thread_trace *ttrace = thread__priv(thread); 4367 double ratio; 4368 4369 if (ttrace == NULL) 4370 return 0; 4371 4372 ratio = (double)ttrace->nr_events / trace->nr_events * 100.0; 4373 4374 printed += fprintf(fp, " %s (%d), ", thread__comm_str(thread), thread->tid); 4375 printed += fprintf(fp, "%lu events, ", ttrace->nr_events); 4376 printed += fprintf(fp, "%.1f%%", ratio); 4377 if (ttrace->pfmaj) 4378 printed += fprintf(fp, ", %lu majfaults", ttrace->pfmaj); 4379 if (ttrace->pfmin) 4380 printed += fprintf(fp, ", %lu minfaults", ttrace->pfmin); 4381 if (trace->sched) 4382 printed += fprintf(fp, ", %.3f msec\n", ttrace->runtime_ms); 4383 else if (fputc('\n', fp) != EOF) 4384 ++printed; 4385 4386 printed += thread__dump_stats(ttrace, trace, fp); 4387 4388 return printed; 4389} 4390 4391static unsigned long thread__nr_events(struct thread_trace *ttrace) 4392{ 4393 return ttrace ? ttrace->nr_events : 0; 4394} 4395 4396DEFINE_RESORT_RB(threads, (thread__nr_events(a->thread->priv) < thread__nr_events(b->thread->priv)), 4397 struct thread *thread; 4398) 4399{ 4400 entry->thread = rb_entry(nd, struct thread, rb_node); 4401} 4402 4403static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp) 4404{ 4405 size_t printed = trace__fprintf_threads_header(fp); 4406 struct rb_node *nd; 4407 int i; 4408 4409 for (i = 0; i < THREADS__TABLE_SIZE; i++) { 4410 DECLARE_RESORT_RB_MACHINE_THREADS(threads, trace->host, i); 4411 4412 if (threads == NULL) { 4413 fprintf(fp, "%s", "Error sorting output by nr_events!\n"); 4414 return 0; 4415 } 4416 4417 resort_rb__for_each_entry(nd, threads) 4418 printed += trace__fprintf_thread(fp, threads_entry->thread, trace); 4419 4420 resort_rb__delete(threads); 4421 } 4422 return printed; 4423} 4424 4425static int trace__set_duration(const struct option *opt, const char *str, 4426 int unset __maybe_unused) 4427{ 4428 struct trace *trace = opt->value; 4429 4430 trace->duration_filter = atof(str); 4431 return 0; 4432} 4433 4434static int trace__set_filter_pids_from_option(const struct option *opt, const char *str, 4435 int unset __maybe_unused) 4436{ 4437 int ret = -1; 4438 size_t i; 4439 struct trace *trace = opt->value; 4440 /* 4441 * FIXME: introduce a intarray class, plain parse csv and create a 4442 * { int nr, int entries[] } struct... 4443 */ 4444 struct intlist *list = intlist__new(str); 4445 4446 if (list == NULL) 4447 return -1; 4448 4449 i = trace->filter_pids.nr = intlist__nr_entries(list) + 1; 4450 trace->filter_pids.entries = calloc(i, sizeof(pid_t)); 4451 4452 if (trace->filter_pids.entries == NULL) 4453 goto out; 4454 4455 trace->filter_pids.entries[0] = getpid(); 4456 4457 for (i = 1; i < trace->filter_pids.nr; ++i) 4458 trace->filter_pids.entries[i] = intlist__entry(list, i - 1)->i; 4459 4460 intlist__delete(list); 4461 ret = 0; 4462out: 4463 return ret; 4464} 4465 4466static int trace__open_output(struct trace *trace, const char *filename) 4467{ 4468 struct stat st; 4469 4470 if (!stat(filename, &st) && st.st_size) { 4471 char oldname[PATH_MAX]; 4472 4473 scnprintf(oldname, sizeof(oldname), "%s.old", filename); 4474 unlink(oldname); 4475 rename(filename, oldname); 4476 } 4477 4478 trace->output = fopen(filename, "w"); 4479 4480 return trace->output == NULL ? -errno : 0; 4481} 4482 4483static int parse_pagefaults(const struct option *opt, const char *str, 4484 int unset __maybe_unused) 4485{ 4486 int *trace_pgfaults = opt->value; 4487 4488 if (strcmp(str, "all") == 0) 4489 *trace_pgfaults |= TRACE_PFMAJ | TRACE_PFMIN; 4490 else if (strcmp(str, "maj") == 0) 4491 *trace_pgfaults |= TRACE_PFMAJ; 4492 else if (strcmp(str, "min") == 0) 4493 *trace_pgfaults |= TRACE_PFMIN; 4494 else 4495 return -1; 4496 4497 return 0; 4498} 4499 4500static void evlist__set_default_evsel_handler(struct evlist *evlist, void *handler) 4501{ 4502 struct evsel *evsel; 4503 4504 evlist__for_each_entry(evlist, evsel) { 4505 if (evsel->handler == NULL) 4506 evsel->handler = handler; 4507 } 4508} 4509 4510static void evsel__set_syscall_arg_fmt(struct evsel *evsel, const char *name) 4511{ 4512 struct syscall_arg_fmt *fmt = evsel__syscall_arg_fmt(evsel); 4513 4514 if (fmt) { 4515 struct syscall_fmt *scfmt = syscall_fmt__find(name); 4516 4517 if (scfmt) { 4518 int skip = 0; 4519 4520 if (strcmp(evsel->tp_format->format.fields->name, "__syscall_nr") == 0 || 4521 strcmp(evsel->tp_format->format.fields->name, "nr") == 0) 4522 ++skip; 4523 4524 memcpy(fmt + skip, scfmt->arg, (evsel->tp_format->format.nr_fields - skip) * sizeof(*fmt)); 4525 } 4526 } 4527} 4528 4529static int evlist__set_syscall_tp_fields(struct evlist *evlist) 4530{ 4531 struct evsel *evsel; 4532 4533 evlist__for_each_entry(evlist, evsel) { 4534 if (evsel->priv || !evsel->tp_format) 4535 continue; 4536 4537 if (strcmp(evsel->tp_format->system, "syscalls")) { 4538 evsel__init_tp_arg_scnprintf(evsel); 4539 continue; 4540 } 4541 4542 if (evsel__init_syscall_tp(evsel)) 4543 return -1; 4544 4545 if (!strncmp(evsel->tp_format->name, "sys_enter_", 10)) { 4546 struct syscall_tp *sc = __evsel__syscall_tp(evsel); 4547 4548 if (__tp_field__init_ptr(&sc->args, sc->id.offset + sizeof(u64))) 4549 return -1; 4550 4551 evsel__set_syscall_arg_fmt(evsel, evsel->tp_format->name + sizeof("sys_enter_") - 1); 4552 } else if (!strncmp(evsel->tp_format->name, "sys_exit_", 9)) { 4553 struct syscall_tp *sc = __evsel__syscall_tp(evsel); 4554 4555 if (__tp_field__init_uint(&sc->ret, sizeof(u64), sc->id.offset + sizeof(u64), evsel->needs_swap)) 4556 return -1; 4557 4558 evsel__set_syscall_arg_fmt(evsel, evsel->tp_format->name + sizeof("sys_exit_") - 1); 4559 } 4560 } 4561 4562 return 0; 4563} 4564 4565/* 4566 * XXX: Hackish, just splitting the combined -e+--event (syscalls 4567 * (raw_syscalls:{sys_{enter,exit}} + events (tracepoints, HW, SW, etc) to use 4568 * existing facilities unchanged (trace->ev_qualifier + parse_options()). 4569 * 4570 * It'd be better to introduce a parse_options() variant that would return a 4571 * list with the terms it didn't match to an event... 4572 */ 4573static int trace__parse_events_option(const struct option *opt, const char *str, 4574 int unset __maybe_unused) 4575{ 4576 struct trace *trace = (struct trace *)opt->value; 4577 const char *s = str; 4578 char *sep = NULL, *lists[2] = { NULL, NULL, }; 4579 int len = strlen(str) + 1, err = -1, list, idx; 4580 char *strace_groups_dir = system_path(STRACE_GROUPS_DIR); 4581 char group_name[PATH_MAX]; 4582 struct syscall_fmt *fmt; 4583 4584 if (strace_groups_dir == NULL) 4585 return -1; 4586 4587 if (*s == '!') { 4588 ++s; 4589 trace->not_ev_qualifier = true; 4590 } 4591 4592 while (1) { 4593 if ((sep = strchr(s, ',')) != NULL) 4594 *sep = '\0'; 4595 4596 list = 0; 4597 if (syscalltbl__id(trace->sctbl, s) >= 0 || 4598 syscalltbl__strglobmatch_first(trace->sctbl, s, &idx) >= 0) { 4599 list = 1; 4600 goto do_concat; 4601 } 4602 4603 fmt = syscall_fmt__find_by_alias(s); 4604 if (fmt != NULL) { 4605 list = 1; 4606 s = fmt->name; 4607 } else { 4608 path__join(group_name, sizeof(group_name), strace_groups_dir, s); 4609 if (access(group_name, R_OK) == 0) 4610 list = 1; 4611 } 4612do_concat: 4613 if (lists[list]) { 4614 sprintf(lists[list] + strlen(lists[list]), ",%s", s); 4615 } else { 4616 lists[list] = malloc(len); 4617 if (lists[list] == NULL) 4618 goto out; 4619 strcpy(lists[list], s); 4620 } 4621 4622 if (!sep) 4623 break; 4624 4625 *sep = ','; 4626 s = sep + 1; 4627 } 4628 4629 if (lists[1] != NULL) { 4630 struct strlist_config slist_config = { 4631 .dirname = strace_groups_dir, 4632 }; 4633 4634 trace->ev_qualifier = strlist__new(lists[1], &slist_config); 4635 if (trace->ev_qualifier == NULL) { 4636 fputs("Not enough memory to parse event qualifier", trace->output); 4637 goto out; 4638 } 4639 4640 if (trace__validate_ev_qualifier(trace)) 4641 goto out; 4642 trace->trace_syscalls = true; 4643 } 4644 4645 err = 0; 4646 4647 if (lists[0]) { 4648 struct option o = { 4649 .value = &trace->evlist, 4650 }; 4651 err = parse_events_option(&o, lists[0], 0); 4652 } 4653out: 4654 if (sep) 4655 *sep = ','; 4656 4657 return err; 4658} 4659 4660static int trace__parse_cgroups(const struct option *opt, const char *str, int unset) 4661{ 4662 struct trace *trace = opt->value; 4663 4664 if (!list_empty(&trace->evlist->core.entries)) { 4665 struct option o = { 4666 .value = &trace->evlist, 4667 }; 4668 return parse_cgroups(&o, str, unset); 4669 } 4670 trace->cgroup = evlist__findnew_cgroup(trace->evlist, str); 4671 4672 return 0; 4673} 4674 4675static int trace__config(const char *var, const char *value, void *arg) 4676{ 4677 struct trace *trace = arg; 4678 int err = 0; 4679 4680 if (!strcmp(var, "trace.add_events")) { 4681 trace->perfconfig_events = strdup(value); 4682 if (trace->perfconfig_events == NULL) { 4683 pr_err("Not enough memory for %s\n", "trace.add_events"); 4684 return -1; 4685 } 4686 } else if (!strcmp(var, "trace.show_timestamp")) { 4687 trace->show_tstamp = perf_config_bool(var, value); 4688 } else if (!strcmp(var, "trace.show_duration")) { 4689 trace->show_duration = perf_config_bool(var, value); 4690 } else if (!strcmp(var, "trace.show_arg_names")) { 4691 trace->show_arg_names = perf_config_bool(var, value); 4692 if (!trace->show_arg_names) 4693 trace->show_zeros = true; 4694 } else if (!strcmp(var, "trace.show_zeros")) { 4695 bool new_show_zeros = perf_config_bool(var, value); 4696 if (!trace->show_arg_names && !new_show_zeros) { 4697 pr_warning("trace.show_zeros has to be set when trace.show_arg_names=no\n"); 4698 goto out; 4699 } 4700 trace->show_zeros = new_show_zeros; 4701 } else if (!strcmp(var, "trace.show_prefix")) { 4702 trace->show_string_prefix = perf_config_bool(var, value); 4703 } else if (!strcmp(var, "trace.no_inherit")) { 4704 trace->opts.no_inherit = perf_config_bool(var, value); 4705 } else if (!strcmp(var, "trace.args_alignment")) { 4706 int args_alignment = 0; 4707 if (perf_config_int(&args_alignment, var, value) == 0) 4708 trace->args_alignment = args_alignment; 4709 } else if (!strcmp(var, "trace.tracepoint_beautifiers")) { 4710 if (strcasecmp(value, "libtraceevent") == 0) 4711 trace->libtraceevent_print = true; 4712 else if (strcasecmp(value, "libbeauty") == 0) 4713 trace->libtraceevent_print = false; 4714 } 4715out: 4716 return err; 4717} 4718 4719int cmd_trace(int argc, const char **argv) 4720{ 4721 const char *trace_usage[] = { 4722 "perf trace [<options>] [<command>]", 4723 "perf trace [<options>] -- <command> [<options>]", 4724 "perf trace record [<options>] [<command>]", 4725 "perf trace record [<options>] -- <command> [<options>]", 4726 NULL 4727 }; 4728 struct trace trace = { 4729 .opts = { 4730 .target = { 4731 .uid = UINT_MAX, 4732 .uses_mmap = true, 4733 }, 4734 .user_freq = UINT_MAX, 4735 .user_interval = ULLONG_MAX, 4736 .no_buffering = true, 4737 .mmap_pages = UINT_MAX, 4738 }, 4739 .output = stderr, 4740 .show_comm = true, 4741 .show_tstamp = true, 4742 .show_duration = true, 4743 .show_arg_names = true, 4744 .args_alignment = 70, 4745 .trace_syscalls = false, 4746 .kernel_syscallchains = false, 4747 .max_stack = UINT_MAX, 4748 .max_events = ULONG_MAX, 4749 }; 4750 const char *map_dump_str = NULL; 4751 const char *output_name = NULL; 4752 const struct option trace_options[] = { 4753 OPT_CALLBACK('e', "event", &trace, "event", 4754 "event/syscall selector. use 'perf list' to list available events", 4755 trace__parse_events_option), 4756 OPT_CALLBACK(0, "filter", &trace.evlist, "filter", 4757 "event filter", parse_filter), 4758 OPT_BOOLEAN(0, "comm", &trace.show_comm, 4759 "show the thread COMM next to its id"), 4760 OPT_BOOLEAN(0, "tool_stats", &trace.show_tool_stats, "show tool stats"), 4761 OPT_CALLBACK(0, "expr", &trace, "expr", "list of syscalls/events to trace", 4762 trace__parse_events_option), 4763 OPT_STRING('o', "output", &output_name, "file", "output file name"), 4764 OPT_STRING('i', "input", &input_name, "file", "Analyze events in file"), 4765 OPT_STRING('p', "pid", &trace.opts.target.pid, "pid", 4766 "trace events on existing process id"), 4767 OPT_STRING('t', "tid", &trace.opts.target.tid, "tid", 4768 "trace events on existing thread id"), 4769 OPT_CALLBACK(0, "filter-pids", &trace, "CSV list of pids", 4770 "pids to filter (by the kernel)", trace__set_filter_pids_from_option), 4771 OPT_BOOLEAN('a', "all-cpus", &trace.opts.target.system_wide, 4772 "system-wide collection from all CPUs"), 4773 OPT_STRING('C', "cpu", &trace.opts.target.cpu_list, "cpu", 4774 "list of cpus to monitor"), 4775 OPT_BOOLEAN(0, "no-inherit", &trace.opts.no_inherit, 4776 "child tasks do not inherit counters"), 4777 OPT_CALLBACK('m', "mmap-pages", &trace.opts.mmap_pages, "pages", 4778 "number of mmap data pages", 4779 perf_evlist__parse_mmap_pages), 4780 OPT_STRING('u', "uid", &trace.opts.target.uid_str, "user", 4781 "user to profile"), 4782 OPT_CALLBACK(0, "duration", &trace, "float", 4783 "show only events with duration > N.M ms", 4784 trace__set_duration), 4785#ifdef HAVE_LIBBPF_SUPPORT 4786 OPT_STRING(0, "map-dump", &map_dump_str, "BPF map", "BPF map to periodically dump"), 4787#endif 4788 OPT_BOOLEAN(0, "sched", &trace.sched, "show blocking scheduler events"), 4789 OPT_INCR('v', "verbose", &verbose, "be more verbose"), 4790 OPT_BOOLEAN('T', "time", &trace.full_time, 4791 "Show full timestamp, not time relative to first start"), 4792 OPT_BOOLEAN(0, "failure", &trace.failure_only, 4793 "Show only syscalls that failed"), 4794 OPT_BOOLEAN('s', "summary", &trace.summary_only, 4795 "Show only syscall summary with statistics"), 4796 OPT_BOOLEAN('S', "with-summary", &trace.summary, 4797 "Show all syscalls and summary with statistics"), 4798 OPT_BOOLEAN(0, "errno-summary", &trace.errno_summary, 4799 "Show errno stats per syscall, use with -s or -S"), 4800 OPT_CALLBACK_DEFAULT('F', "pf", &trace.trace_pgfaults, "all|maj|min", 4801 "Trace pagefaults", parse_pagefaults, "maj"), 4802 OPT_BOOLEAN(0, "syscalls", &trace.trace_syscalls, "Trace syscalls"), 4803 OPT_BOOLEAN('f', "force", &trace.force, "don't complain, do it"), 4804 OPT_CALLBACK(0, "call-graph", &trace.opts, 4805 "record_mode[,record_size]", record_callchain_help, 4806 &record_parse_callchain_opt), 4807 OPT_BOOLEAN(0, "libtraceevent_print", &trace.libtraceevent_print, 4808 "Use libtraceevent to print the tracepoint arguments."), 4809 OPT_BOOLEAN(0, "kernel-syscall-graph", &trace.kernel_syscallchains, 4810 "Show the kernel callchains on the syscall exit path"), 4811 OPT_ULONG(0, "max-events", &trace.max_events, 4812 "Set the maximum number of events to print, exit after that is reached. "), 4813 OPT_UINTEGER(0, "min-stack", &trace.min_stack, 4814 "Set the minimum stack depth when parsing the callchain, " 4815 "anything below the specified depth will be ignored."), 4816 OPT_UINTEGER(0, "max-stack", &trace.max_stack, 4817 "Set the maximum stack depth when parsing the callchain, " 4818 "anything beyond the specified depth will be ignored. " 4819 "Default: kernel.perf_event_max_stack or " __stringify(PERF_MAX_STACK_DEPTH)), 4820 OPT_BOOLEAN(0, "sort-events", &trace.sort_events, 4821 "Sort batch of events before processing, use if getting out of order events"), 4822 OPT_BOOLEAN(0, "print-sample", &trace.print_sample, 4823 "print the PERF_RECORD_SAMPLE PERF_SAMPLE_ info, for debugging"), 4824 OPT_UINTEGER(0, "proc-map-timeout", &proc_map_timeout, 4825 "per thread proc mmap processing timeout in ms"), 4826 OPT_CALLBACK('G', "cgroup", &trace, "name", "monitor event in cgroup name only", 4827 trace__parse_cgroups), 4828 OPT_INTEGER('D', "delay", &trace.opts.initial_delay, 4829 "ms to wait before starting measurement after program " 4830 "start"), 4831 OPTS_EVSWITCH(&trace.evswitch), 4832 OPT_END() 4833 }; 4834 bool __maybe_unused max_stack_user_set = true; 4835 bool mmap_pages_user_set = true; 4836 struct evsel *evsel; 4837 const char * const trace_subcommands[] = { "record", NULL }; 4838 int err = -1; 4839 char bf[BUFSIZ]; 4840 4841 signal(SIGSEGV, sighandler_dump_stack); 4842 signal(SIGFPE, sighandler_dump_stack); 4843 4844 trace.evlist = evlist__new(); 4845 trace.sctbl = syscalltbl__new(); 4846 4847 if (trace.evlist == NULL || trace.sctbl == NULL) { 4848 pr_err("Not enough memory to run!\n"); 4849 err = -ENOMEM; 4850 goto out; 4851 } 4852 4853 /* 4854 * Parsing .perfconfig may entail creating a BPF event, that may need 4855 * to create BPF maps, so bump RLIM_MEMLOCK as the default 64K setting 4856 * is too small. This affects just this process, not touching the 4857 * global setting. If it fails we'll get something in 'perf trace -v' 4858 * to help diagnose the problem. 4859 */ 4860 rlimit__bump_memlock(); 4861 4862 err = perf_config(trace__config, &trace); 4863 if (err) 4864 goto out; 4865 4866 argc = parse_options_subcommand(argc, argv, trace_options, trace_subcommands, 4867 trace_usage, PARSE_OPT_STOP_AT_NON_OPTION); 4868 4869 /* 4870 * Here we already passed thru trace__parse_events_option() and it has 4871 * already figured out if -e syscall_name, if not but if --event 4872 * foo:bar was used, the user is interested _just_ in those, say, 4873 * tracepoint events, not in the strace-like syscall-name-based mode. 4874 * 4875 * This is important because we need to check if strace-like mode is 4876 * needed to decided if we should filter out the eBPF 4877 * __augmented_syscalls__ code, if it is in the mix, say, via 4878 * .perfconfig trace.add_events, and filter those out. 4879 */ 4880 if (!trace.trace_syscalls && !trace.trace_pgfaults && 4881 trace.evlist->core.nr_entries == 0 /* Was --events used? */) { 4882 trace.trace_syscalls = true; 4883 } 4884 /* 4885 * Now that we have --verbose figured out, lets see if we need to parse 4886 * events from .perfconfig, so that if those events fail parsing, say some 4887 * BPF program fails, then we'll be able to use --verbose to see what went 4888 * wrong in more detail. 4889 */ 4890 if (trace.perfconfig_events != NULL) { 4891 struct parse_events_error parse_err; 4892 4893 bzero(&parse_err, sizeof(parse_err)); 4894 err = parse_events(trace.evlist, trace.perfconfig_events, &parse_err); 4895 if (err) { 4896 parse_events_print_error(&parse_err, trace.perfconfig_events); 4897 goto out; 4898 } 4899 } 4900 4901 if ((nr_cgroups || trace.cgroup) && !trace.opts.target.system_wide) { 4902 usage_with_options_msg(trace_usage, trace_options, 4903 "cgroup monitoring only available in system-wide mode"); 4904 } 4905 4906 evsel = bpf__setup_output_event(trace.evlist, "__augmented_syscalls__"); 4907 if (IS_ERR(evsel)) { 4908 bpf__strerror_setup_output_event(trace.evlist, PTR_ERR(evsel), bf, sizeof(bf)); 4909 pr_err("ERROR: Setup trace syscalls enter failed: %s\n", bf); 4910 goto out; 4911 } 4912 4913 if (evsel) { 4914 trace.syscalls.events.augmented = evsel; 4915 4916 evsel = perf_evlist__find_tracepoint_by_name(trace.evlist, "raw_syscalls:sys_enter"); 4917 if (evsel == NULL) { 4918 pr_err("ERROR: raw_syscalls:sys_enter not found in the augmented BPF object\n"); 4919 goto out; 4920 } 4921 4922 if (evsel->bpf_obj == NULL) { 4923 pr_err("ERROR: raw_syscalls:sys_enter not associated to a BPF object\n"); 4924 goto out; 4925 } 4926 4927 trace.bpf_obj = evsel->bpf_obj; 4928 4929 /* 4930 * If we have _just_ the augmenter event but don't have a 4931 * explicit --syscalls, then assume we want all strace-like 4932 * syscalls: 4933 */ 4934 if (!trace.trace_syscalls && trace__only_augmented_syscalls_evsels(&trace)) 4935 trace.trace_syscalls = true; 4936 /* 4937 * So, if we have a syscall augmenter, but trace_syscalls, aka 4938 * strace-like syscall tracing is not set, then we need to trow 4939 * away the augmenter, i.e. all the events that were created 4940 * from that BPF object file. 4941 * 4942 * This is more to fix the current .perfconfig trace.add_events 4943 * style of setting up the strace-like eBPF based syscall point 4944 * payload augmenter. 4945 * 4946 * All this complexity will be avoided by adding an alternative 4947 * to trace.add_events in the form of 4948 * trace.bpf_augmented_syscalls, that will be only parsed if we 4949 * need it. 4950 * 4951 * .perfconfig trace.add_events is still useful if we want, for 4952 * instance, have msr_write.msr in some .perfconfig profile based 4953 * 'perf trace --config determinism.profile' mode, where for some 4954 * particular goal/workload type we want a set of events and 4955 * output mode (with timings, etc) instead of having to add 4956 * all via the command line. 4957 * 4958 * Also --config to specify an alternate .perfconfig file needs 4959 * to be implemented. 4960 */ 4961 if (!trace.trace_syscalls) { 4962 trace__delete_augmented_syscalls(&trace); 4963 } else { 4964 trace__set_bpf_map_filtered_pids(&trace); 4965 trace__set_bpf_map_syscalls(&trace); 4966 trace.syscalls.unaugmented_prog = trace__find_bpf_program_by_title(&trace, "!raw_syscalls:unaugmented"); 4967 } 4968 } 4969 4970 err = bpf__setup_stdout(trace.evlist); 4971 if (err) { 4972 bpf__strerror_setup_stdout(trace.evlist, err, bf, sizeof(bf)); 4973 pr_err("ERROR: Setup BPF stdout failed: %s\n", bf); 4974 goto out; 4975 } 4976 4977 err = -1; 4978 4979 if (map_dump_str) { 4980 trace.dump.map = trace__find_bpf_map_by_name(&trace, map_dump_str); 4981 if (trace.dump.map == NULL) { 4982 pr_err("ERROR: BPF map \"%s\" not found\n", map_dump_str); 4983 goto out; 4984 } 4985 } 4986 4987 if (trace.trace_pgfaults) { 4988 trace.opts.sample_address = true; 4989 trace.opts.sample_time = true; 4990 } 4991 4992 if (trace.opts.mmap_pages == UINT_MAX) 4993 mmap_pages_user_set = false; 4994 4995 if (trace.max_stack == UINT_MAX) { 4996 trace.max_stack = input_name ? PERF_MAX_STACK_DEPTH : sysctl__max_stack(); 4997 max_stack_user_set = false; 4998 } 4999 5000#ifdef HAVE_DWARF_UNWIND_SUPPORT 5001 if ((trace.min_stack || max_stack_user_set) && !callchain_param.enabled) { 5002 record_opts__parse_callchain(&trace.opts, &callchain_param, "dwarf", false); 5003 } 5004#endif 5005 5006 if (callchain_param.enabled) { 5007 if (!mmap_pages_user_set && geteuid() == 0) 5008 trace.opts.mmap_pages = perf_event_mlock_kb_in_pages() * 4; 5009 5010 symbol_conf.use_callchain = true; 5011 } 5012 5013 if (trace.evlist->core.nr_entries > 0) { 5014 evlist__set_default_evsel_handler(trace.evlist, trace__event_handler); 5015 if (evlist__set_syscall_tp_fields(trace.evlist)) { 5016 perror("failed to set syscalls:* tracepoint fields"); 5017 goto out; 5018 } 5019 } 5020 5021 if (trace.sort_events) { 5022 ordered_events__init(&trace.oe.data, ordered_events__deliver_event, &trace); 5023 ordered_events__set_copy_on_queue(&trace.oe.data, true); 5024 } 5025 5026 /* 5027 * If we are augmenting syscalls, then combine what we put in the 5028 * __augmented_syscalls__ BPF map with what is in the 5029 * syscalls:sys_exit_FOO tracepoints, i.e. just like we do without BPF, 5030 * combining raw_syscalls:sys_enter with raw_syscalls:sys_exit. 5031 * 5032 * We'll switch to look at two BPF maps, one for sys_enter and the 5033 * other for sys_exit when we start augmenting the sys_exit paths with 5034 * buffers that are being copied from kernel to userspace, think 'read' 5035 * syscall. 5036 */ 5037 if (trace.syscalls.events.augmented) { 5038 evlist__for_each_entry(trace.evlist, evsel) { 5039 bool raw_syscalls_sys_exit = strcmp(evsel__name(evsel), "raw_syscalls:sys_exit") == 0; 5040 5041 if (raw_syscalls_sys_exit) { 5042 trace.raw_augmented_syscalls = true; 5043 goto init_augmented_syscall_tp; 5044 } 5045 5046 if (trace.syscalls.events.augmented->priv == NULL && 5047 strstr(evsel__name(evsel), "syscalls:sys_enter")) { 5048 struct evsel *augmented = trace.syscalls.events.augmented; 5049 if (evsel__init_augmented_syscall_tp(augmented, evsel) || 5050 evsel__init_augmented_syscall_tp_args(augmented)) 5051 goto out; 5052 /* 5053 * Augmented is __augmented_syscalls__ BPF_OUTPUT event 5054 * Above we made sure we can get from the payload the tp fields 5055 * that we get from syscalls:sys_enter tracefs format file. 5056 */ 5057 augmented->handler = trace__sys_enter; 5058 /* 5059 * Now we do the same for the *syscalls:sys_enter event so that 5060 * if we handle it directly, i.e. if the BPF prog returns 0 so 5061 * as not to filter it, then we'll handle it just like we would 5062 * for the BPF_OUTPUT one: 5063 */ 5064 if (evsel__init_augmented_syscall_tp(evsel, evsel) || 5065 evsel__init_augmented_syscall_tp_args(evsel)) 5066 goto out; 5067 evsel->handler = trace__sys_enter; 5068 } 5069 5070 if (strstarts(evsel__name(evsel), "syscalls:sys_exit_")) { 5071 struct syscall_tp *sc; 5072init_augmented_syscall_tp: 5073 if (evsel__init_augmented_syscall_tp(evsel, evsel)) 5074 goto out; 5075 sc = __evsel__syscall_tp(evsel); 5076 /* 5077 * For now with BPF raw_augmented we hook into 5078 * raw_syscalls:sys_enter and there we get all 5079 * 6 syscall args plus the tracepoint common 5080 * fields and the syscall_nr (another long). 5081 * So we check if that is the case and if so 5082 * don't look after the sc->args_size but 5083 * always after the full raw_syscalls:sys_enter 5084 * payload, which is fixed. 5085 * 5086 * We'll revisit this later to pass 5087 * s->args_size to the BPF augmenter (now 5088 * tools/perf/examples/bpf/augmented_raw_syscalls.c, 5089 * so that it copies only what we need for each 5090 * syscall, like what happens when we use 5091 * syscalls:sys_enter_NAME, so that we reduce 5092 * the kernel/userspace traffic to just what is 5093 * needed for each syscall. 5094 */ 5095 if (trace.raw_augmented_syscalls) 5096 trace.raw_augmented_syscalls_args_size = (6 + 1) * sizeof(long) + sc->id.offset; 5097 evsel__init_augmented_syscall_tp_ret(evsel); 5098 evsel->handler = trace__sys_exit; 5099 } 5100 } 5101 } 5102 5103 if ((argc >= 1) && (strcmp(argv[0], "record") == 0)) 5104 return trace__record(&trace, argc-1, &argv[1]); 5105 5106 /* Using just --errno-summary will trigger --summary */ 5107 if (trace.errno_summary && !trace.summary && !trace.summary_only) 5108 trace.summary_only = true; 5109 5110 /* summary_only implies summary option, but don't overwrite summary if set */ 5111 if (trace.summary_only) 5112 trace.summary = trace.summary_only; 5113 5114 if (output_name != NULL) { 5115 err = trace__open_output(&trace, output_name); 5116 if (err < 0) { 5117 perror("failed to create output file"); 5118 goto out; 5119 } 5120 } 5121 5122 err = evswitch__init(&trace.evswitch, trace.evlist, stderr); 5123 if (err) 5124 goto out_close; 5125 5126 err = target__validate(&trace.opts.target); 5127 if (err) { 5128 target__strerror(&trace.opts.target, err, bf, sizeof(bf)); 5129 fprintf(trace.output, "%s", bf); 5130 goto out_close; 5131 } 5132 5133 err = target__parse_uid(&trace.opts.target); 5134 if (err) { 5135 target__strerror(&trace.opts.target, err, bf, sizeof(bf)); 5136 fprintf(trace.output, "%s", bf); 5137 goto out_close; 5138 } 5139 5140 if (!argc && target__none(&trace.opts.target)) 5141 trace.opts.target.system_wide = true; 5142 5143 if (input_name) 5144 err = trace__replay(&trace); 5145 else 5146 err = trace__run(&trace, argc, argv); 5147 5148out_close: 5149 if (output_name != NULL) 5150 fclose(trace.output); 5151out: 5152 zfree(&trace.perfconfig_events); 5153 return err; 5154} 5155