builtin-trace.c 84 KB

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  1. #include <traceevent/event-parse.h>
  2. #include "builtin.h"
  3. #include "util/color.h"
  4. #include "util/debug.h"
  5. #include "util/evlist.h"
  6. #include "util/exec_cmd.h"
  7. #include "util/machine.h"
  8. #include "util/session.h"
  9. #include "util/thread.h"
  10. #include "util/parse-options.h"
  11. #include "util/strlist.h"
  12. #include "util/intlist.h"
  13. #include "util/thread_map.h"
  14. #include "util/stat.h"
  15. #include "trace-event.h"
  16. #include "util/parse-events.h"
  17. #include <libaudit.h>
  18. #include <stdlib.h>
  19. #include <sys/mman.h>
  20. #include <linux/futex.h>
  21. /* For older distros: */
  22. #ifndef MAP_STACK
  23. # define MAP_STACK 0x20000
  24. #endif
  25. #ifndef MADV_HWPOISON
  26. # define MADV_HWPOISON 100
  27. #endif
  28. #ifndef MADV_MERGEABLE
  29. # define MADV_MERGEABLE 12
  30. #endif
  31. #ifndef MADV_UNMERGEABLE
  32. # define MADV_UNMERGEABLE 13
  33. #endif
  34. #ifndef EFD_SEMAPHORE
  35. # define EFD_SEMAPHORE 1
  36. #endif
  37. #ifndef EFD_NONBLOCK
  38. # define EFD_NONBLOCK 00004000
  39. #endif
  40. #ifndef EFD_CLOEXEC
  41. # define EFD_CLOEXEC 02000000
  42. #endif
  43. #ifndef O_CLOEXEC
  44. # define O_CLOEXEC 02000000
  45. #endif
  46. #ifndef SOCK_DCCP
  47. # define SOCK_DCCP 6
  48. #endif
  49. #ifndef SOCK_CLOEXEC
  50. # define SOCK_CLOEXEC 02000000
  51. #endif
  52. #ifndef SOCK_NONBLOCK
  53. # define SOCK_NONBLOCK 00004000
  54. #endif
  55. #ifndef MSG_CMSG_CLOEXEC
  56. # define MSG_CMSG_CLOEXEC 0x40000000
  57. #endif
  58. #ifndef PERF_FLAG_FD_NO_GROUP
  59. # define PERF_FLAG_FD_NO_GROUP (1UL << 0)
  60. #endif
  61. #ifndef PERF_FLAG_FD_OUTPUT
  62. # define PERF_FLAG_FD_OUTPUT (1UL << 1)
  63. #endif
  64. #ifndef PERF_FLAG_PID_CGROUP
  65. # define PERF_FLAG_PID_CGROUP (1UL << 2) /* pid=cgroup id, per-cpu mode only */
  66. #endif
  67. #ifndef PERF_FLAG_FD_CLOEXEC
  68. # define PERF_FLAG_FD_CLOEXEC (1UL << 3) /* O_CLOEXEC */
  69. #endif
  70. struct tp_field {
  71. int offset;
  72. union {
  73. u64 (*integer)(struct tp_field *field, struct perf_sample *sample);
  74. void *(*pointer)(struct tp_field *field, struct perf_sample *sample);
  75. };
  76. };
  77. #define TP_UINT_FIELD(bits) \
  78. static u64 tp_field__u##bits(struct tp_field *field, struct perf_sample *sample) \
  79. { \
  80. u##bits value; \
  81. memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \
  82. return value; \
  83. }
  84. TP_UINT_FIELD(8);
  85. TP_UINT_FIELD(16);
  86. TP_UINT_FIELD(32);
  87. TP_UINT_FIELD(64);
  88. #define TP_UINT_FIELD__SWAPPED(bits) \
  89. static u64 tp_field__swapped_u##bits(struct tp_field *field, struct perf_sample *sample) \
  90. { \
  91. u##bits value; \
  92. memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \
  93. return bswap_##bits(value);\
  94. }
  95. TP_UINT_FIELD__SWAPPED(16);
  96. TP_UINT_FIELD__SWAPPED(32);
  97. TP_UINT_FIELD__SWAPPED(64);
  98. static int tp_field__init_uint(struct tp_field *field,
  99. struct format_field *format_field,
  100. bool needs_swap)
  101. {
  102. field->offset = format_field->offset;
  103. switch (format_field->size) {
  104. case 1:
  105. field->integer = tp_field__u8;
  106. break;
  107. case 2:
  108. field->integer = needs_swap ? tp_field__swapped_u16 : tp_field__u16;
  109. break;
  110. case 4:
  111. field->integer = needs_swap ? tp_field__swapped_u32 : tp_field__u32;
  112. break;
  113. case 8:
  114. field->integer = needs_swap ? tp_field__swapped_u64 : tp_field__u64;
  115. break;
  116. default:
  117. return -1;
  118. }
  119. return 0;
  120. }
  121. static void *tp_field__ptr(struct tp_field *field, struct perf_sample *sample)
  122. {
  123. return sample->raw_data + field->offset;
  124. }
  125. static int tp_field__init_ptr(struct tp_field *field, struct format_field *format_field)
  126. {
  127. field->offset = format_field->offset;
  128. field->pointer = tp_field__ptr;
  129. return 0;
  130. }
  131. struct syscall_tp {
  132. struct tp_field id;
  133. union {
  134. struct tp_field args, ret;
  135. };
  136. };
  137. static int perf_evsel__init_tp_uint_field(struct perf_evsel *evsel,
  138. struct tp_field *field,
  139. const char *name)
  140. {
  141. struct format_field *format_field = perf_evsel__field(evsel, name);
  142. if (format_field == NULL)
  143. return -1;
  144. return tp_field__init_uint(field, format_field, evsel->needs_swap);
  145. }
  146. #define perf_evsel__init_sc_tp_uint_field(evsel, name) \
  147. ({ struct syscall_tp *sc = evsel->priv;\
  148. perf_evsel__init_tp_uint_field(evsel, &sc->name, #name); })
  149. static int perf_evsel__init_tp_ptr_field(struct perf_evsel *evsel,
  150. struct tp_field *field,
  151. const char *name)
  152. {
  153. struct format_field *format_field = perf_evsel__field(evsel, name);
  154. if (format_field == NULL)
  155. return -1;
  156. return tp_field__init_ptr(field, format_field);
  157. }
  158. #define perf_evsel__init_sc_tp_ptr_field(evsel, name) \
  159. ({ struct syscall_tp *sc = evsel->priv;\
  160. perf_evsel__init_tp_ptr_field(evsel, &sc->name, #name); })
  161. static void perf_evsel__delete_priv(struct perf_evsel *evsel)
  162. {
  163. zfree(&evsel->priv);
  164. perf_evsel__delete(evsel);
  165. }
  166. static int perf_evsel__init_syscall_tp(struct perf_evsel *evsel, void *handler)
  167. {
  168. evsel->priv = malloc(sizeof(struct syscall_tp));
  169. if (evsel->priv != NULL) {
  170. if (perf_evsel__init_sc_tp_uint_field(evsel, id))
  171. goto out_delete;
  172. evsel->handler = handler;
  173. return 0;
  174. }
  175. return -ENOMEM;
  176. out_delete:
  177. zfree(&evsel->priv);
  178. return -ENOENT;
  179. }
  180. static struct perf_evsel *perf_evsel__syscall_newtp(const char *direction, void *handler)
  181. {
  182. struct perf_evsel *evsel = perf_evsel__newtp("raw_syscalls", direction);
  183. /* older kernel (e.g., RHEL6) use syscalls:{enter,exit} */
  184. if (evsel == NULL)
  185. evsel = perf_evsel__newtp("syscalls", direction);
  186. if (evsel) {
  187. if (perf_evsel__init_syscall_tp(evsel, handler))
  188. goto out_delete;
  189. }
  190. return evsel;
  191. out_delete:
  192. perf_evsel__delete_priv(evsel);
  193. return NULL;
  194. }
  195. #define perf_evsel__sc_tp_uint(evsel, name, sample) \
  196. ({ struct syscall_tp *fields = evsel->priv; \
  197. fields->name.integer(&fields->name, sample); })
  198. #define perf_evsel__sc_tp_ptr(evsel, name, sample) \
  199. ({ struct syscall_tp *fields = evsel->priv; \
  200. fields->name.pointer(&fields->name, sample); })
  201. struct syscall_arg {
  202. unsigned long val;
  203. struct thread *thread;
  204. struct trace *trace;
  205. void *parm;
  206. u8 idx;
  207. u8 mask;
  208. };
  209. struct strarray {
  210. int offset;
  211. int nr_entries;
  212. const char **entries;
  213. };
  214. #define DEFINE_STRARRAY(array) struct strarray strarray__##array = { \
  215. .nr_entries = ARRAY_SIZE(array), \
  216. .entries = array, \
  217. }
  218. #define DEFINE_STRARRAY_OFFSET(array, off) struct strarray strarray__##array = { \
  219. .offset = off, \
  220. .nr_entries = ARRAY_SIZE(array), \
  221. .entries = array, \
  222. }
  223. static size_t __syscall_arg__scnprintf_strarray(char *bf, size_t size,
  224. const char *intfmt,
  225. struct syscall_arg *arg)
  226. {
  227. struct strarray *sa = arg->parm;
  228. int idx = arg->val - sa->offset;
  229. if (idx < 0 || idx >= sa->nr_entries)
  230. return scnprintf(bf, size, intfmt, arg->val);
  231. return scnprintf(bf, size, "%s", sa->entries[idx]);
  232. }
  233. static size_t syscall_arg__scnprintf_strarray(char *bf, size_t size,
  234. struct syscall_arg *arg)
  235. {
  236. return __syscall_arg__scnprintf_strarray(bf, size, "%d", arg);
  237. }
  238. #define SCA_STRARRAY syscall_arg__scnprintf_strarray
  239. #if defined(__i386__) || defined(__x86_64__)
  240. /*
  241. * FIXME: Make this available to all arches as soon as the ioctl beautifier
  242. * gets rewritten to support all arches.
  243. */
  244. static size_t syscall_arg__scnprintf_strhexarray(char *bf, size_t size,
  245. struct syscall_arg *arg)
  246. {
  247. return __syscall_arg__scnprintf_strarray(bf, size, "%#x", arg);
  248. }
  249. #define SCA_STRHEXARRAY syscall_arg__scnprintf_strhexarray
  250. #endif /* defined(__i386__) || defined(__x86_64__) */
  251. static size_t syscall_arg__scnprintf_fd(char *bf, size_t size,
  252. struct syscall_arg *arg);
  253. #define SCA_FD syscall_arg__scnprintf_fd
  254. static size_t syscall_arg__scnprintf_fd_at(char *bf, size_t size,
  255. struct syscall_arg *arg)
  256. {
  257. int fd = arg->val;
  258. if (fd == AT_FDCWD)
  259. return scnprintf(bf, size, "CWD");
  260. return syscall_arg__scnprintf_fd(bf, size, arg);
  261. }
  262. #define SCA_FDAT syscall_arg__scnprintf_fd_at
  263. static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size,
  264. struct syscall_arg *arg);
  265. #define SCA_CLOSE_FD syscall_arg__scnprintf_close_fd
  266. static size_t syscall_arg__scnprintf_hex(char *bf, size_t size,
  267. struct syscall_arg *arg)
  268. {
  269. return scnprintf(bf, size, "%#lx", arg->val);
  270. }
  271. #define SCA_HEX syscall_arg__scnprintf_hex
  272. static size_t syscall_arg__scnprintf_int(char *bf, size_t size,
  273. struct syscall_arg *arg)
  274. {
  275. return scnprintf(bf, size, "%d", arg->val);
  276. }
  277. #define SCA_INT syscall_arg__scnprintf_int
  278. static size_t syscall_arg__scnprintf_mmap_prot(char *bf, size_t size,
  279. struct syscall_arg *arg)
  280. {
  281. int printed = 0, prot = arg->val;
  282. if (prot == PROT_NONE)
  283. return scnprintf(bf, size, "NONE");
  284. #define P_MMAP_PROT(n) \
  285. if (prot & PROT_##n) { \
  286. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  287. prot &= ~PROT_##n; \
  288. }
  289. P_MMAP_PROT(EXEC);
  290. P_MMAP_PROT(READ);
  291. P_MMAP_PROT(WRITE);
  292. #ifdef PROT_SEM
  293. P_MMAP_PROT(SEM);
  294. #endif
  295. P_MMAP_PROT(GROWSDOWN);
  296. P_MMAP_PROT(GROWSUP);
  297. #undef P_MMAP_PROT
  298. if (prot)
  299. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", prot);
  300. return printed;
  301. }
  302. #define SCA_MMAP_PROT syscall_arg__scnprintf_mmap_prot
  303. static size_t syscall_arg__scnprintf_mmap_flags(char *bf, size_t size,
  304. struct syscall_arg *arg)
  305. {
  306. int printed = 0, flags = arg->val;
  307. #define P_MMAP_FLAG(n) \
  308. if (flags & MAP_##n) { \
  309. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  310. flags &= ~MAP_##n; \
  311. }
  312. P_MMAP_FLAG(SHARED);
  313. P_MMAP_FLAG(PRIVATE);
  314. #ifdef MAP_32BIT
  315. P_MMAP_FLAG(32BIT);
  316. #endif
  317. P_MMAP_FLAG(ANONYMOUS);
  318. P_MMAP_FLAG(DENYWRITE);
  319. P_MMAP_FLAG(EXECUTABLE);
  320. P_MMAP_FLAG(FILE);
  321. P_MMAP_FLAG(FIXED);
  322. P_MMAP_FLAG(GROWSDOWN);
  323. #ifdef MAP_HUGETLB
  324. P_MMAP_FLAG(HUGETLB);
  325. #endif
  326. P_MMAP_FLAG(LOCKED);
  327. P_MMAP_FLAG(NONBLOCK);
  328. P_MMAP_FLAG(NORESERVE);
  329. P_MMAP_FLAG(POPULATE);
  330. P_MMAP_FLAG(STACK);
  331. #ifdef MAP_UNINITIALIZED
  332. P_MMAP_FLAG(UNINITIALIZED);
  333. #endif
  334. #undef P_MMAP_FLAG
  335. if (flags)
  336. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  337. return printed;
  338. }
  339. #define SCA_MMAP_FLAGS syscall_arg__scnprintf_mmap_flags
  340. static size_t syscall_arg__scnprintf_mremap_flags(char *bf, size_t size,
  341. struct syscall_arg *arg)
  342. {
  343. int printed = 0, flags = arg->val;
  344. #define P_MREMAP_FLAG(n) \
  345. if (flags & MREMAP_##n) { \
  346. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  347. flags &= ~MREMAP_##n; \
  348. }
  349. P_MREMAP_FLAG(MAYMOVE);
  350. #ifdef MREMAP_FIXED
  351. P_MREMAP_FLAG(FIXED);
  352. #endif
  353. #undef P_MREMAP_FLAG
  354. if (flags)
  355. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  356. return printed;
  357. }
  358. #define SCA_MREMAP_FLAGS syscall_arg__scnprintf_mremap_flags
  359. static size_t syscall_arg__scnprintf_madvise_behavior(char *bf, size_t size,
  360. struct syscall_arg *arg)
  361. {
  362. int behavior = arg->val;
  363. switch (behavior) {
  364. #define P_MADV_BHV(n) case MADV_##n: return scnprintf(bf, size, #n)
  365. P_MADV_BHV(NORMAL);
  366. P_MADV_BHV(RANDOM);
  367. P_MADV_BHV(SEQUENTIAL);
  368. P_MADV_BHV(WILLNEED);
  369. P_MADV_BHV(DONTNEED);
  370. P_MADV_BHV(REMOVE);
  371. P_MADV_BHV(DONTFORK);
  372. P_MADV_BHV(DOFORK);
  373. P_MADV_BHV(HWPOISON);
  374. #ifdef MADV_SOFT_OFFLINE
  375. P_MADV_BHV(SOFT_OFFLINE);
  376. #endif
  377. P_MADV_BHV(MERGEABLE);
  378. P_MADV_BHV(UNMERGEABLE);
  379. #ifdef MADV_HUGEPAGE
  380. P_MADV_BHV(HUGEPAGE);
  381. #endif
  382. #ifdef MADV_NOHUGEPAGE
  383. P_MADV_BHV(NOHUGEPAGE);
  384. #endif
  385. #ifdef MADV_DONTDUMP
  386. P_MADV_BHV(DONTDUMP);
  387. #endif
  388. #ifdef MADV_DODUMP
  389. P_MADV_BHV(DODUMP);
  390. #endif
  391. #undef P_MADV_PHV
  392. default: break;
  393. }
  394. return scnprintf(bf, size, "%#x", behavior);
  395. }
  396. #define SCA_MADV_BHV syscall_arg__scnprintf_madvise_behavior
  397. static size_t syscall_arg__scnprintf_flock(char *bf, size_t size,
  398. struct syscall_arg *arg)
  399. {
  400. int printed = 0, op = arg->val;
  401. if (op == 0)
  402. return scnprintf(bf, size, "NONE");
  403. #define P_CMD(cmd) \
  404. if ((op & LOCK_##cmd) == LOCK_##cmd) { \
  405. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #cmd); \
  406. op &= ~LOCK_##cmd; \
  407. }
  408. P_CMD(SH);
  409. P_CMD(EX);
  410. P_CMD(NB);
  411. P_CMD(UN);
  412. P_CMD(MAND);
  413. P_CMD(RW);
  414. P_CMD(READ);
  415. P_CMD(WRITE);
  416. #undef P_OP
  417. if (op)
  418. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", op);
  419. return printed;
  420. }
  421. #define SCA_FLOCK syscall_arg__scnprintf_flock
  422. static size_t syscall_arg__scnprintf_futex_op(char *bf, size_t size, struct syscall_arg *arg)
  423. {
  424. enum syscall_futex_args {
  425. SCF_UADDR = (1 << 0),
  426. SCF_OP = (1 << 1),
  427. SCF_VAL = (1 << 2),
  428. SCF_TIMEOUT = (1 << 3),
  429. SCF_UADDR2 = (1 << 4),
  430. SCF_VAL3 = (1 << 5),
  431. };
  432. int op = arg->val;
  433. int cmd = op & FUTEX_CMD_MASK;
  434. size_t printed = 0;
  435. switch (cmd) {
  436. #define P_FUTEX_OP(n) case FUTEX_##n: printed = scnprintf(bf, size, #n);
  437. P_FUTEX_OP(WAIT); arg->mask |= SCF_VAL3|SCF_UADDR2; break;
  438. P_FUTEX_OP(WAKE); arg->mask |= SCF_VAL3|SCF_UADDR2|SCF_TIMEOUT; break;
  439. P_FUTEX_OP(FD); arg->mask |= SCF_VAL3|SCF_UADDR2|SCF_TIMEOUT; break;
  440. P_FUTEX_OP(REQUEUE); arg->mask |= SCF_VAL3|SCF_TIMEOUT; break;
  441. P_FUTEX_OP(CMP_REQUEUE); arg->mask |= SCF_TIMEOUT; break;
  442. P_FUTEX_OP(CMP_REQUEUE_PI); arg->mask |= SCF_TIMEOUT; break;
  443. P_FUTEX_OP(WAKE_OP); break;
  444. P_FUTEX_OP(LOCK_PI); arg->mask |= SCF_VAL3|SCF_UADDR2|SCF_TIMEOUT; break;
  445. P_FUTEX_OP(UNLOCK_PI); arg->mask |= SCF_VAL3|SCF_UADDR2|SCF_TIMEOUT; break;
  446. P_FUTEX_OP(TRYLOCK_PI); arg->mask |= SCF_VAL3|SCF_UADDR2; break;
  447. P_FUTEX_OP(WAIT_BITSET); arg->mask |= SCF_UADDR2; break;
  448. P_FUTEX_OP(WAKE_BITSET); arg->mask |= SCF_UADDR2; break;
  449. P_FUTEX_OP(WAIT_REQUEUE_PI); break;
  450. default: printed = scnprintf(bf, size, "%#x", cmd); break;
  451. }
  452. if (op & FUTEX_PRIVATE_FLAG)
  453. printed += scnprintf(bf + printed, size - printed, "|PRIV");
  454. if (op & FUTEX_CLOCK_REALTIME)
  455. printed += scnprintf(bf + printed, size - printed, "|CLKRT");
  456. return printed;
  457. }
  458. #define SCA_FUTEX_OP syscall_arg__scnprintf_futex_op
  459. static const char *epoll_ctl_ops[] = { "ADD", "DEL", "MOD", };
  460. static DEFINE_STRARRAY_OFFSET(epoll_ctl_ops, 1);
  461. static const char *itimers[] = { "REAL", "VIRTUAL", "PROF", };
  462. static DEFINE_STRARRAY(itimers);
  463. static const char *whences[] = { "SET", "CUR", "END",
  464. #ifdef SEEK_DATA
  465. "DATA",
  466. #endif
  467. #ifdef SEEK_HOLE
  468. "HOLE",
  469. #endif
  470. };
  471. static DEFINE_STRARRAY(whences);
  472. static const char *fcntl_cmds[] = {
  473. "DUPFD", "GETFD", "SETFD", "GETFL", "SETFL", "GETLK", "SETLK",
  474. "SETLKW", "SETOWN", "GETOWN", "SETSIG", "GETSIG", "F_GETLK64",
  475. "F_SETLK64", "F_SETLKW64", "F_SETOWN_EX", "F_GETOWN_EX",
  476. "F_GETOWNER_UIDS",
  477. };
  478. static DEFINE_STRARRAY(fcntl_cmds);
  479. static const char *rlimit_resources[] = {
  480. "CPU", "FSIZE", "DATA", "STACK", "CORE", "RSS", "NPROC", "NOFILE",
  481. "MEMLOCK", "AS", "LOCKS", "SIGPENDING", "MSGQUEUE", "NICE", "RTPRIO",
  482. "RTTIME",
  483. };
  484. static DEFINE_STRARRAY(rlimit_resources);
  485. static const char *sighow[] = { "BLOCK", "UNBLOCK", "SETMASK", };
  486. static DEFINE_STRARRAY(sighow);
  487. static const char *clockid[] = {
  488. "REALTIME", "MONOTONIC", "PROCESS_CPUTIME_ID", "THREAD_CPUTIME_ID",
  489. "MONOTONIC_RAW", "REALTIME_COARSE", "MONOTONIC_COARSE",
  490. };
  491. static DEFINE_STRARRAY(clockid);
  492. static const char *socket_families[] = {
  493. "UNSPEC", "LOCAL", "INET", "AX25", "IPX", "APPLETALK", "NETROM",
  494. "BRIDGE", "ATMPVC", "X25", "INET6", "ROSE", "DECnet", "NETBEUI",
  495. "SECURITY", "KEY", "NETLINK", "PACKET", "ASH", "ECONET", "ATMSVC",
  496. "RDS", "SNA", "IRDA", "PPPOX", "WANPIPE", "LLC", "IB", "CAN", "TIPC",
  497. "BLUETOOTH", "IUCV", "RXRPC", "ISDN", "PHONET", "IEEE802154", "CAIF",
  498. "ALG", "NFC", "VSOCK",
  499. };
  500. static DEFINE_STRARRAY(socket_families);
  501. #ifndef SOCK_TYPE_MASK
  502. #define SOCK_TYPE_MASK 0xf
  503. #endif
  504. static size_t syscall_arg__scnprintf_socket_type(char *bf, size_t size,
  505. struct syscall_arg *arg)
  506. {
  507. size_t printed;
  508. int type = arg->val,
  509. flags = type & ~SOCK_TYPE_MASK;
  510. type &= SOCK_TYPE_MASK;
  511. /*
  512. * Can't use a strarray, MIPS may override for ABI reasons.
  513. */
  514. switch (type) {
  515. #define P_SK_TYPE(n) case SOCK_##n: printed = scnprintf(bf, size, #n); break;
  516. P_SK_TYPE(STREAM);
  517. P_SK_TYPE(DGRAM);
  518. P_SK_TYPE(RAW);
  519. P_SK_TYPE(RDM);
  520. P_SK_TYPE(SEQPACKET);
  521. P_SK_TYPE(DCCP);
  522. P_SK_TYPE(PACKET);
  523. #undef P_SK_TYPE
  524. default:
  525. printed = scnprintf(bf, size, "%#x", type);
  526. }
  527. #define P_SK_FLAG(n) \
  528. if (flags & SOCK_##n) { \
  529. printed += scnprintf(bf + printed, size - printed, "|%s", #n); \
  530. flags &= ~SOCK_##n; \
  531. }
  532. P_SK_FLAG(CLOEXEC);
  533. P_SK_FLAG(NONBLOCK);
  534. #undef P_SK_FLAG
  535. if (flags)
  536. printed += scnprintf(bf + printed, size - printed, "|%#x", flags);
  537. return printed;
  538. }
  539. #define SCA_SK_TYPE syscall_arg__scnprintf_socket_type
  540. #ifndef MSG_PROBE
  541. #define MSG_PROBE 0x10
  542. #endif
  543. #ifndef MSG_WAITFORONE
  544. #define MSG_WAITFORONE 0x10000
  545. #endif
  546. #ifndef MSG_SENDPAGE_NOTLAST
  547. #define MSG_SENDPAGE_NOTLAST 0x20000
  548. #endif
  549. #ifndef MSG_FASTOPEN
  550. #define MSG_FASTOPEN 0x20000000
  551. #endif
  552. static size_t syscall_arg__scnprintf_msg_flags(char *bf, size_t size,
  553. struct syscall_arg *arg)
  554. {
  555. int printed = 0, flags = arg->val;
  556. if (flags == 0)
  557. return scnprintf(bf, size, "NONE");
  558. #define P_MSG_FLAG(n) \
  559. if (flags & MSG_##n) { \
  560. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  561. flags &= ~MSG_##n; \
  562. }
  563. P_MSG_FLAG(OOB);
  564. P_MSG_FLAG(PEEK);
  565. P_MSG_FLAG(DONTROUTE);
  566. P_MSG_FLAG(TRYHARD);
  567. P_MSG_FLAG(CTRUNC);
  568. P_MSG_FLAG(PROBE);
  569. P_MSG_FLAG(TRUNC);
  570. P_MSG_FLAG(DONTWAIT);
  571. P_MSG_FLAG(EOR);
  572. P_MSG_FLAG(WAITALL);
  573. P_MSG_FLAG(FIN);
  574. P_MSG_FLAG(SYN);
  575. P_MSG_FLAG(CONFIRM);
  576. P_MSG_FLAG(RST);
  577. P_MSG_FLAG(ERRQUEUE);
  578. P_MSG_FLAG(NOSIGNAL);
  579. P_MSG_FLAG(MORE);
  580. P_MSG_FLAG(WAITFORONE);
  581. P_MSG_FLAG(SENDPAGE_NOTLAST);
  582. P_MSG_FLAG(FASTOPEN);
  583. P_MSG_FLAG(CMSG_CLOEXEC);
  584. #undef P_MSG_FLAG
  585. if (flags)
  586. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  587. return printed;
  588. }
  589. #define SCA_MSG_FLAGS syscall_arg__scnprintf_msg_flags
  590. static size_t syscall_arg__scnprintf_access_mode(char *bf, size_t size,
  591. struct syscall_arg *arg)
  592. {
  593. size_t printed = 0;
  594. int mode = arg->val;
  595. if (mode == F_OK) /* 0 */
  596. return scnprintf(bf, size, "F");
  597. #define P_MODE(n) \
  598. if (mode & n##_OK) { \
  599. printed += scnprintf(bf + printed, size - printed, "%s", #n); \
  600. mode &= ~n##_OK; \
  601. }
  602. P_MODE(R);
  603. P_MODE(W);
  604. P_MODE(X);
  605. #undef P_MODE
  606. if (mode)
  607. printed += scnprintf(bf + printed, size - printed, "|%#x", mode);
  608. return printed;
  609. }
  610. #define SCA_ACCMODE syscall_arg__scnprintf_access_mode
  611. static size_t syscall_arg__scnprintf_filename(char *bf, size_t size,
  612. struct syscall_arg *arg);
  613. #define SCA_FILENAME syscall_arg__scnprintf_filename
  614. static size_t syscall_arg__scnprintf_open_flags(char *bf, size_t size,
  615. struct syscall_arg *arg)
  616. {
  617. int printed = 0, flags = arg->val;
  618. if (!(flags & O_CREAT))
  619. arg->mask |= 1 << (arg->idx + 1); /* Mask the mode parm */
  620. if (flags == 0)
  621. return scnprintf(bf, size, "RDONLY");
  622. #define P_FLAG(n) \
  623. if (flags & O_##n) { \
  624. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  625. flags &= ~O_##n; \
  626. }
  627. P_FLAG(APPEND);
  628. P_FLAG(ASYNC);
  629. P_FLAG(CLOEXEC);
  630. P_FLAG(CREAT);
  631. P_FLAG(DIRECT);
  632. P_FLAG(DIRECTORY);
  633. P_FLAG(EXCL);
  634. P_FLAG(LARGEFILE);
  635. P_FLAG(NOATIME);
  636. P_FLAG(NOCTTY);
  637. #ifdef O_NONBLOCK
  638. P_FLAG(NONBLOCK);
  639. #elif O_NDELAY
  640. P_FLAG(NDELAY);
  641. #endif
  642. #ifdef O_PATH
  643. P_FLAG(PATH);
  644. #endif
  645. P_FLAG(RDWR);
  646. #ifdef O_DSYNC
  647. if ((flags & O_SYNC) == O_SYNC)
  648. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", "SYNC");
  649. else {
  650. P_FLAG(DSYNC);
  651. }
  652. #else
  653. P_FLAG(SYNC);
  654. #endif
  655. P_FLAG(TRUNC);
  656. P_FLAG(WRONLY);
  657. #undef P_FLAG
  658. if (flags)
  659. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  660. return printed;
  661. }
  662. #define SCA_OPEN_FLAGS syscall_arg__scnprintf_open_flags
  663. static size_t syscall_arg__scnprintf_perf_flags(char *bf, size_t size,
  664. struct syscall_arg *arg)
  665. {
  666. int printed = 0, flags = arg->val;
  667. if (flags == 0)
  668. return 0;
  669. #define P_FLAG(n) \
  670. if (flags & PERF_FLAG_##n) { \
  671. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  672. flags &= ~PERF_FLAG_##n; \
  673. }
  674. P_FLAG(FD_NO_GROUP);
  675. P_FLAG(FD_OUTPUT);
  676. P_FLAG(PID_CGROUP);
  677. P_FLAG(FD_CLOEXEC);
  678. #undef P_FLAG
  679. if (flags)
  680. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  681. return printed;
  682. }
  683. #define SCA_PERF_FLAGS syscall_arg__scnprintf_perf_flags
  684. static size_t syscall_arg__scnprintf_eventfd_flags(char *bf, size_t size,
  685. struct syscall_arg *arg)
  686. {
  687. int printed = 0, flags = arg->val;
  688. if (flags == 0)
  689. return scnprintf(bf, size, "NONE");
  690. #define P_FLAG(n) \
  691. if (flags & EFD_##n) { \
  692. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  693. flags &= ~EFD_##n; \
  694. }
  695. P_FLAG(SEMAPHORE);
  696. P_FLAG(CLOEXEC);
  697. P_FLAG(NONBLOCK);
  698. #undef P_FLAG
  699. if (flags)
  700. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  701. return printed;
  702. }
  703. #define SCA_EFD_FLAGS syscall_arg__scnprintf_eventfd_flags
  704. static size_t syscall_arg__scnprintf_pipe_flags(char *bf, size_t size,
  705. struct syscall_arg *arg)
  706. {
  707. int printed = 0, flags = arg->val;
  708. #define P_FLAG(n) \
  709. if (flags & O_##n) { \
  710. printed += scnprintf(bf + printed, size - printed, "%s%s", printed ? "|" : "", #n); \
  711. flags &= ~O_##n; \
  712. }
  713. P_FLAG(CLOEXEC);
  714. P_FLAG(NONBLOCK);
  715. #undef P_FLAG
  716. if (flags)
  717. printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
  718. return printed;
  719. }
  720. #define SCA_PIPE_FLAGS syscall_arg__scnprintf_pipe_flags
  721. static size_t syscall_arg__scnprintf_signum(char *bf, size_t size, struct syscall_arg *arg)
  722. {
  723. int sig = arg->val;
  724. switch (sig) {
  725. #define P_SIGNUM(n) case SIG##n: return scnprintf(bf, size, #n)
  726. P_SIGNUM(HUP);
  727. P_SIGNUM(INT);
  728. P_SIGNUM(QUIT);
  729. P_SIGNUM(ILL);
  730. P_SIGNUM(TRAP);
  731. P_SIGNUM(ABRT);
  732. P_SIGNUM(BUS);
  733. P_SIGNUM(FPE);
  734. P_SIGNUM(KILL);
  735. P_SIGNUM(USR1);
  736. P_SIGNUM(SEGV);
  737. P_SIGNUM(USR2);
  738. P_SIGNUM(PIPE);
  739. P_SIGNUM(ALRM);
  740. P_SIGNUM(TERM);
  741. P_SIGNUM(CHLD);
  742. P_SIGNUM(CONT);
  743. P_SIGNUM(STOP);
  744. P_SIGNUM(TSTP);
  745. P_SIGNUM(TTIN);
  746. P_SIGNUM(TTOU);
  747. P_SIGNUM(URG);
  748. P_SIGNUM(XCPU);
  749. P_SIGNUM(XFSZ);
  750. P_SIGNUM(VTALRM);
  751. P_SIGNUM(PROF);
  752. P_SIGNUM(WINCH);
  753. P_SIGNUM(IO);
  754. P_SIGNUM(PWR);
  755. P_SIGNUM(SYS);
  756. #ifdef SIGEMT
  757. P_SIGNUM(EMT);
  758. #endif
  759. #ifdef SIGSTKFLT
  760. P_SIGNUM(STKFLT);
  761. #endif
  762. #ifdef SIGSWI
  763. P_SIGNUM(SWI);
  764. #endif
  765. default: break;
  766. }
  767. return scnprintf(bf, size, "%#x", sig);
  768. }
  769. #define SCA_SIGNUM syscall_arg__scnprintf_signum
  770. #if defined(__i386__) || defined(__x86_64__)
  771. /*
  772. * FIXME: Make this available to all arches.
  773. */
  774. #define TCGETS 0x5401
  775. static const char *tioctls[] = {
  776. "TCGETS", "TCSETS", "TCSETSW", "TCSETSF", "TCGETA", "TCSETA", "TCSETAW",
  777. "TCSETAF", "TCSBRK", "TCXONC", "TCFLSH", "TIOCEXCL", "TIOCNXCL",
  778. "TIOCSCTTY", "TIOCGPGRP", "TIOCSPGRP", "TIOCOUTQ", "TIOCSTI",
  779. "TIOCGWINSZ", "TIOCSWINSZ", "TIOCMGET", "TIOCMBIS", "TIOCMBIC",
  780. "TIOCMSET", "TIOCGSOFTCAR", "TIOCSSOFTCAR", "FIONREAD", "TIOCLINUX",
  781. "TIOCCONS", "TIOCGSERIAL", "TIOCSSERIAL", "TIOCPKT", "FIONBIO",
  782. "TIOCNOTTY", "TIOCSETD", "TIOCGETD", "TCSBRKP", [0x27] = "TIOCSBRK",
  783. "TIOCCBRK", "TIOCGSID", "TCGETS2", "TCSETS2", "TCSETSW2", "TCSETSF2",
  784. "TIOCGRS485", "TIOCSRS485", "TIOCGPTN", "TIOCSPTLCK",
  785. "TIOCGDEV||TCGETX", "TCSETX", "TCSETXF", "TCSETXW", "TIOCSIG",
  786. "TIOCVHANGUP", "TIOCGPKT", "TIOCGPTLCK", "TIOCGEXCL",
  787. [0x50] = "FIONCLEX", "FIOCLEX", "FIOASYNC", "TIOCSERCONFIG",
  788. "TIOCSERGWILD", "TIOCSERSWILD", "TIOCGLCKTRMIOS", "TIOCSLCKTRMIOS",
  789. "TIOCSERGSTRUCT", "TIOCSERGETLSR", "TIOCSERGETMULTI", "TIOCSERSETMULTI",
  790. "TIOCMIWAIT", "TIOCGICOUNT", [0x60] = "FIOQSIZE",
  791. };
  792. static DEFINE_STRARRAY_OFFSET(tioctls, 0x5401);
  793. #endif /* defined(__i386__) || defined(__x86_64__) */
  794. #define STRARRAY(arg, name, array) \
  795. .arg_scnprintf = { [arg] = SCA_STRARRAY, }, \
  796. .arg_parm = { [arg] = &strarray__##array, }
  797. static struct syscall_fmt {
  798. const char *name;
  799. const char *alias;
  800. size_t (*arg_scnprintf[6])(char *bf, size_t size, struct syscall_arg *arg);
  801. void *arg_parm[6];
  802. bool errmsg;
  803. bool timeout;
  804. bool hexret;
  805. } syscall_fmts[] = {
  806. { .name = "access", .errmsg = true,
  807. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */
  808. [1] = SCA_ACCMODE, /* mode */ }, },
  809. { .name = "arch_prctl", .errmsg = true, .alias = "prctl", },
  810. { .name = "brk", .hexret = true,
  811. .arg_scnprintf = { [0] = SCA_HEX, /* brk */ }, },
  812. { .name = "chdir", .errmsg = true,
  813. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  814. { .name = "chmod", .errmsg = true,
  815. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  816. { .name = "chroot", .errmsg = true,
  817. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  818. { .name = "clock_gettime", .errmsg = true, STRARRAY(0, clk_id, clockid), },
  819. { .name = "close", .errmsg = true,
  820. .arg_scnprintf = { [0] = SCA_CLOSE_FD, /* fd */ }, },
  821. { .name = "connect", .errmsg = true, },
  822. { .name = "creat", .errmsg = true,
  823. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  824. { .name = "dup", .errmsg = true,
  825. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  826. { .name = "dup2", .errmsg = true,
  827. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  828. { .name = "dup3", .errmsg = true,
  829. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  830. { .name = "epoll_ctl", .errmsg = true, STRARRAY(1, op, epoll_ctl_ops), },
  831. { .name = "eventfd2", .errmsg = true,
  832. .arg_scnprintf = { [1] = SCA_EFD_FLAGS, /* flags */ }, },
  833. { .name = "faccessat", .errmsg = true,
  834. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  835. [1] = SCA_FILENAME, /* filename */ }, },
  836. { .name = "fadvise64", .errmsg = true,
  837. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  838. { .name = "fallocate", .errmsg = true,
  839. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  840. { .name = "fchdir", .errmsg = true,
  841. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  842. { .name = "fchmod", .errmsg = true,
  843. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  844. { .name = "fchmodat", .errmsg = true,
  845. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */ }, },
  846. { .name = "fchown", .errmsg = true,
  847. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  848. { .name = "fchownat", .errmsg = true,
  849. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */
  850. [1] = SCA_FILENAME, /* filename */ }, },
  851. { .name = "fcntl", .errmsg = true,
  852. .arg_scnprintf = { [0] = SCA_FD, /* fd */
  853. [1] = SCA_STRARRAY, /* cmd */ },
  854. .arg_parm = { [1] = &strarray__fcntl_cmds, /* cmd */ }, },
  855. { .name = "fdatasync", .errmsg = true,
  856. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  857. { .name = "flock", .errmsg = true,
  858. .arg_scnprintf = { [0] = SCA_FD, /* fd */
  859. [1] = SCA_FLOCK, /* cmd */ }, },
  860. { .name = "fsetxattr", .errmsg = true,
  861. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  862. { .name = "fstat", .errmsg = true, .alias = "newfstat",
  863. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  864. { .name = "fstatat", .errmsg = true, .alias = "newfstatat",
  865. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  866. [1] = SCA_FILENAME, /* filename */ }, },
  867. { .name = "fstatfs", .errmsg = true,
  868. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  869. { .name = "fsync", .errmsg = true,
  870. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  871. { .name = "ftruncate", .errmsg = true,
  872. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  873. { .name = "futex", .errmsg = true,
  874. .arg_scnprintf = { [1] = SCA_FUTEX_OP, /* op */ }, },
  875. { .name = "futimesat", .errmsg = true,
  876. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */ }, },
  877. { .name = "getdents", .errmsg = true,
  878. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  879. { .name = "getdents64", .errmsg = true,
  880. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  881. { .name = "getitimer", .errmsg = true, STRARRAY(0, which, itimers), },
  882. { .name = "getrlimit", .errmsg = true, STRARRAY(0, resource, rlimit_resources), },
  883. { .name = "getxattr", .errmsg = true,
  884. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  885. { .name = "inotify_add_watch", .errmsg = true,
  886. .arg_scnprintf = { [1] = SCA_FILENAME, /* pathname */ }, },
  887. { .name = "ioctl", .errmsg = true,
  888. .arg_scnprintf = { [0] = SCA_FD, /* fd */
  889. #if defined(__i386__) || defined(__x86_64__)
  890. /*
  891. * FIXME: Make this available to all arches.
  892. */
  893. [1] = SCA_STRHEXARRAY, /* cmd */
  894. [2] = SCA_HEX, /* arg */ },
  895. .arg_parm = { [1] = &strarray__tioctls, /* cmd */ }, },
  896. #else
  897. [2] = SCA_HEX, /* arg */ }, },
  898. #endif
  899. { .name = "kill", .errmsg = true,
  900. .arg_scnprintf = { [1] = SCA_SIGNUM, /* sig */ }, },
  901. { .name = "lchown", .errmsg = true,
  902. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  903. { .name = "lgetxattr", .errmsg = true,
  904. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  905. { .name = "linkat", .errmsg = true,
  906. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */ }, },
  907. { .name = "listxattr", .errmsg = true,
  908. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  909. { .name = "lseek", .errmsg = true,
  910. .arg_scnprintf = { [0] = SCA_FD, /* fd */
  911. [2] = SCA_STRARRAY, /* whence */ },
  912. .arg_parm = { [2] = &strarray__whences, /* whence */ }, },
  913. { .name = "lsetxattr", .errmsg = true,
  914. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  915. { .name = "lstat", .errmsg = true, .alias = "newlstat", },
  916. { .name = "lsxattr", .errmsg = true,
  917. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  918. { .name = "madvise", .errmsg = true,
  919. .arg_scnprintf = { [0] = SCA_HEX, /* start */
  920. [2] = SCA_MADV_BHV, /* behavior */ }, },
  921. { .name = "mkdir", .errmsg = true,
  922. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  923. { .name = "mkdirat", .errmsg = true,
  924. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */
  925. [1] = SCA_FILENAME, /* pathname */ }, },
  926. { .name = "mknod", .errmsg = true,
  927. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  928. { .name = "mknodat", .errmsg = true,
  929. .arg_scnprintf = { [0] = SCA_FDAT, /* fd */ }, },
  930. { .name = "mlock", .errmsg = true,
  931. .arg_scnprintf = { [0] = SCA_HEX, /* addr */ }, },
  932. { .name = "mlockall", .errmsg = true,
  933. .arg_scnprintf = { [0] = SCA_HEX, /* addr */ }, },
  934. { .name = "mmap", .hexret = true,
  935. .arg_scnprintf = { [0] = SCA_HEX, /* addr */
  936. [2] = SCA_MMAP_PROT, /* prot */
  937. [3] = SCA_MMAP_FLAGS, /* flags */
  938. [4] = SCA_FD, /* fd */ }, },
  939. { .name = "mprotect", .errmsg = true,
  940. .arg_scnprintf = { [0] = SCA_HEX, /* start */
  941. [2] = SCA_MMAP_PROT, /* prot */ }, },
  942. { .name = "mremap", .hexret = true,
  943. .arg_scnprintf = { [0] = SCA_HEX, /* addr */
  944. [3] = SCA_MREMAP_FLAGS, /* flags */
  945. [4] = SCA_HEX, /* new_addr */ }, },
  946. { .name = "munlock", .errmsg = true,
  947. .arg_scnprintf = { [0] = SCA_HEX, /* addr */ }, },
  948. { .name = "munmap", .errmsg = true,
  949. .arg_scnprintf = { [0] = SCA_HEX, /* addr */ }, },
  950. { .name = "name_to_handle_at", .errmsg = true,
  951. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */ }, },
  952. { .name = "newfstatat", .errmsg = true,
  953. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  954. [1] = SCA_FILENAME, /* filename */ }, },
  955. { .name = "open", .errmsg = true,
  956. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */
  957. [1] = SCA_OPEN_FLAGS, /* flags */ }, },
  958. { .name = "open_by_handle_at", .errmsg = true,
  959. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  960. [2] = SCA_OPEN_FLAGS, /* flags */ }, },
  961. { .name = "openat", .errmsg = true,
  962. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  963. [1] = SCA_FILENAME, /* filename */
  964. [2] = SCA_OPEN_FLAGS, /* flags */ }, },
  965. { .name = "perf_event_open", .errmsg = true,
  966. .arg_scnprintf = { [1] = SCA_INT, /* pid */
  967. [2] = SCA_INT, /* cpu */
  968. [3] = SCA_FD, /* group_fd */
  969. [4] = SCA_PERF_FLAGS, /* flags */ }, },
  970. { .name = "pipe2", .errmsg = true,
  971. .arg_scnprintf = { [1] = SCA_PIPE_FLAGS, /* flags */ }, },
  972. { .name = "poll", .errmsg = true, .timeout = true, },
  973. { .name = "ppoll", .errmsg = true, .timeout = true, },
  974. { .name = "pread", .errmsg = true, .alias = "pread64",
  975. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  976. { .name = "preadv", .errmsg = true, .alias = "pread",
  977. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  978. { .name = "prlimit64", .errmsg = true, STRARRAY(1, resource, rlimit_resources), },
  979. { .name = "pwrite", .errmsg = true, .alias = "pwrite64",
  980. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  981. { .name = "pwritev", .errmsg = true,
  982. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  983. { .name = "read", .errmsg = true,
  984. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  985. { .name = "readlink", .errmsg = true,
  986. .arg_scnprintf = { [0] = SCA_FILENAME, /* path */ }, },
  987. { .name = "readlinkat", .errmsg = true,
  988. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  989. [1] = SCA_FILENAME, /* pathname */ }, },
  990. { .name = "readv", .errmsg = true,
  991. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  992. { .name = "recvfrom", .errmsg = true,
  993. .arg_scnprintf = { [3] = SCA_MSG_FLAGS, /* flags */ }, },
  994. { .name = "recvmmsg", .errmsg = true,
  995. .arg_scnprintf = { [3] = SCA_MSG_FLAGS, /* flags */ }, },
  996. { .name = "recvmsg", .errmsg = true,
  997. .arg_scnprintf = { [2] = SCA_MSG_FLAGS, /* flags */ }, },
  998. { .name = "removexattr", .errmsg = true,
  999. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  1000. { .name = "renameat", .errmsg = true,
  1001. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */ }, },
  1002. { .name = "rmdir", .errmsg = true,
  1003. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  1004. { .name = "rt_sigaction", .errmsg = true,
  1005. .arg_scnprintf = { [0] = SCA_SIGNUM, /* sig */ }, },
  1006. { .name = "rt_sigprocmask", .errmsg = true, STRARRAY(0, how, sighow), },
  1007. { .name = "rt_sigqueueinfo", .errmsg = true,
  1008. .arg_scnprintf = { [1] = SCA_SIGNUM, /* sig */ }, },
  1009. { .name = "rt_tgsigqueueinfo", .errmsg = true,
  1010. .arg_scnprintf = { [2] = SCA_SIGNUM, /* sig */ }, },
  1011. { .name = "select", .errmsg = true, .timeout = true, },
  1012. { .name = "sendmmsg", .errmsg = true,
  1013. .arg_scnprintf = { [3] = SCA_MSG_FLAGS, /* flags */ }, },
  1014. { .name = "sendmsg", .errmsg = true,
  1015. .arg_scnprintf = { [2] = SCA_MSG_FLAGS, /* flags */ }, },
  1016. { .name = "sendto", .errmsg = true,
  1017. .arg_scnprintf = { [3] = SCA_MSG_FLAGS, /* flags */ }, },
  1018. { .name = "setitimer", .errmsg = true, STRARRAY(0, which, itimers), },
  1019. { .name = "setrlimit", .errmsg = true, STRARRAY(0, resource, rlimit_resources), },
  1020. { .name = "setxattr", .errmsg = true,
  1021. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  1022. { .name = "shutdown", .errmsg = true,
  1023. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  1024. { .name = "socket", .errmsg = true,
  1025. .arg_scnprintf = { [0] = SCA_STRARRAY, /* family */
  1026. [1] = SCA_SK_TYPE, /* type */ },
  1027. .arg_parm = { [0] = &strarray__socket_families, /* family */ }, },
  1028. { .name = "socketpair", .errmsg = true,
  1029. .arg_scnprintf = { [0] = SCA_STRARRAY, /* family */
  1030. [1] = SCA_SK_TYPE, /* type */ },
  1031. .arg_parm = { [0] = &strarray__socket_families, /* family */ }, },
  1032. { .name = "stat", .errmsg = true, .alias = "newstat", },
  1033. { .name = "statfs", .errmsg = true,
  1034. .arg_scnprintf = { [0] = SCA_FILENAME, /* pathname */ }, },
  1035. { .name = "swapoff", .errmsg = true,
  1036. .arg_scnprintf = { [0] = SCA_FILENAME, /* specialfile */ }, },
  1037. { .name = "swapon", .errmsg = true,
  1038. .arg_scnprintf = { [0] = SCA_FILENAME, /* specialfile */ }, },
  1039. { .name = "symlinkat", .errmsg = true,
  1040. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */ }, },
  1041. { .name = "tgkill", .errmsg = true,
  1042. .arg_scnprintf = { [2] = SCA_SIGNUM, /* sig */ }, },
  1043. { .name = "tkill", .errmsg = true,
  1044. .arg_scnprintf = { [1] = SCA_SIGNUM, /* sig */ }, },
  1045. { .name = "truncate", .errmsg = true,
  1046. .arg_scnprintf = { [0] = SCA_FILENAME, /* path */ }, },
  1047. { .name = "uname", .errmsg = true, .alias = "newuname", },
  1048. { .name = "unlinkat", .errmsg = true,
  1049. .arg_scnprintf = { [0] = SCA_FDAT, /* dfd */
  1050. [1] = SCA_FILENAME, /* pathname */ }, },
  1051. { .name = "utime", .errmsg = true,
  1052. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  1053. { .name = "utimensat", .errmsg = true,
  1054. .arg_scnprintf = { [0] = SCA_FDAT, /* dirfd */
  1055. [1] = SCA_FILENAME, /* filename */ }, },
  1056. { .name = "utimes", .errmsg = true,
  1057. .arg_scnprintf = { [0] = SCA_FILENAME, /* filename */ }, },
  1058. { .name = "write", .errmsg = true,
  1059. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  1060. { .name = "writev", .errmsg = true,
  1061. .arg_scnprintf = { [0] = SCA_FD, /* fd */ }, },
  1062. };
  1063. static int syscall_fmt__cmp(const void *name, const void *fmtp)
  1064. {
  1065. const struct syscall_fmt *fmt = fmtp;
  1066. return strcmp(name, fmt->name);
  1067. }
  1068. static struct syscall_fmt *syscall_fmt__find(const char *name)
  1069. {
  1070. const int nmemb = ARRAY_SIZE(syscall_fmts);
  1071. return bsearch(name, syscall_fmts, nmemb, sizeof(struct syscall_fmt), syscall_fmt__cmp);
  1072. }
  1073. struct syscall {
  1074. struct event_format *tp_format;
  1075. int nr_args;
  1076. struct format_field *args;
  1077. const char *name;
  1078. bool is_exit;
  1079. struct syscall_fmt *fmt;
  1080. size_t (**arg_scnprintf)(char *bf, size_t size, struct syscall_arg *arg);
  1081. void **arg_parm;
  1082. };
  1083. static size_t fprintf_duration(unsigned long t, FILE *fp)
  1084. {
  1085. double duration = (double)t / NSEC_PER_MSEC;
  1086. size_t printed = fprintf(fp, "(");
  1087. if (duration >= 1.0)
  1088. printed += color_fprintf(fp, PERF_COLOR_RED, "%6.3f ms", duration);
  1089. else if (duration >= 0.01)
  1090. printed += color_fprintf(fp, PERF_COLOR_YELLOW, "%6.3f ms", duration);
  1091. else
  1092. printed += color_fprintf(fp, PERF_COLOR_NORMAL, "%6.3f ms", duration);
  1093. return printed + fprintf(fp, "): ");
  1094. }
  1095. /**
  1096. * filename.ptr: The filename char pointer that will be vfs_getname'd
  1097. * filename.entry_str_pos: Where to insert the string translated from
  1098. * filename.ptr by the vfs_getname tracepoint/kprobe.
  1099. */
  1100. struct thread_trace {
  1101. u64 entry_time;
  1102. u64 exit_time;
  1103. bool entry_pending;
  1104. unsigned long nr_events;
  1105. unsigned long pfmaj, pfmin;
  1106. char *entry_str;
  1107. double runtime_ms;
  1108. struct {
  1109. unsigned long ptr;
  1110. int entry_str_pos;
  1111. } filename;
  1112. struct {
  1113. int max;
  1114. char **table;
  1115. } paths;
  1116. struct intlist *syscall_stats;
  1117. };
  1118. static struct thread_trace *thread_trace__new(void)
  1119. {
  1120. struct thread_trace *ttrace = zalloc(sizeof(struct thread_trace));
  1121. if (ttrace)
  1122. ttrace->paths.max = -1;
  1123. ttrace->syscall_stats = intlist__new(NULL);
  1124. return ttrace;
  1125. }
  1126. static struct thread_trace *thread__trace(struct thread *thread, FILE *fp)
  1127. {
  1128. struct thread_trace *ttrace;
  1129. if (thread == NULL)
  1130. goto fail;
  1131. if (thread__priv(thread) == NULL)
  1132. thread__set_priv(thread, thread_trace__new());
  1133. if (thread__priv(thread) == NULL)
  1134. goto fail;
  1135. ttrace = thread__priv(thread);
  1136. ++ttrace->nr_events;
  1137. return ttrace;
  1138. fail:
  1139. color_fprintf(fp, PERF_COLOR_RED,
  1140. "WARNING: not enough memory, dropping samples!\n");
  1141. return NULL;
  1142. }
  1143. #define TRACE_PFMAJ (1 << 0)
  1144. #define TRACE_PFMIN (1 << 1)
  1145. static const size_t trace__entry_str_size = 2048;
  1146. struct trace {
  1147. struct perf_tool tool;
  1148. struct {
  1149. int machine;
  1150. int open_id;
  1151. } audit;
  1152. struct {
  1153. int max;
  1154. struct syscall *table;
  1155. struct {
  1156. struct perf_evsel *sys_enter,
  1157. *sys_exit;
  1158. } events;
  1159. } syscalls;
  1160. struct record_opts opts;
  1161. struct perf_evlist *evlist;
  1162. struct machine *host;
  1163. struct thread *current;
  1164. u64 base_time;
  1165. FILE *output;
  1166. unsigned long nr_events;
  1167. struct strlist *ev_qualifier;
  1168. struct {
  1169. size_t nr;
  1170. int *entries;
  1171. } ev_qualifier_ids;
  1172. const char *last_vfs_getname;
  1173. struct intlist *tid_list;
  1174. struct intlist *pid_list;
  1175. struct {
  1176. size_t nr;
  1177. pid_t *entries;
  1178. } filter_pids;
  1179. double duration_filter;
  1180. double runtime_ms;
  1181. struct {
  1182. u64 vfs_getname,
  1183. proc_getname;
  1184. } stats;
  1185. bool not_ev_qualifier;
  1186. bool live;
  1187. bool full_time;
  1188. bool sched;
  1189. bool multiple_threads;
  1190. bool summary;
  1191. bool summary_only;
  1192. bool show_comm;
  1193. bool show_tool_stats;
  1194. bool trace_syscalls;
  1195. bool force;
  1196. bool vfs_getname;
  1197. int trace_pgfaults;
  1198. };
  1199. static int trace__set_fd_pathname(struct thread *thread, int fd, const char *pathname)
  1200. {
  1201. struct thread_trace *ttrace = thread__priv(thread);
  1202. if (fd > ttrace->paths.max) {
  1203. char **npath = realloc(ttrace->paths.table, (fd + 1) * sizeof(char *));
  1204. if (npath == NULL)
  1205. return -1;
  1206. if (ttrace->paths.max != -1) {
  1207. memset(npath + ttrace->paths.max + 1, 0,
  1208. (fd - ttrace->paths.max) * sizeof(char *));
  1209. } else {
  1210. memset(npath, 0, (fd + 1) * sizeof(char *));
  1211. }
  1212. ttrace->paths.table = npath;
  1213. ttrace->paths.max = fd;
  1214. }
  1215. ttrace->paths.table[fd] = strdup(pathname);
  1216. return ttrace->paths.table[fd] != NULL ? 0 : -1;
  1217. }
  1218. static int thread__read_fd_path(struct thread *thread, int fd)
  1219. {
  1220. char linkname[PATH_MAX], pathname[PATH_MAX];
  1221. struct stat st;
  1222. int ret;
  1223. if (thread->pid_ == thread->tid) {
  1224. scnprintf(linkname, sizeof(linkname),
  1225. "/proc/%d/fd/%d", thread->pid_, fd);
  1226. } else {
  1227. scnprintf(linkname, sizeof(linkname),
  1228. "/proc/%d/task/%d/fd/%d", thread->pid_, thread->tid, fd);
  1229. }
  1230. if (lstat(linkname, &st) < 0 || st.st_size + 1 > (off_t)sizeof(pathname))
  1231. return -1;
  1232. ret = readlink(linkname, pathname, sizeof(pathname));
  1233. if (ret < 0 || ret > st.st_size)
  1234. return -1;
  1235. pathname[ret] = '\0';
  1236. return trace__set_fd_pathname(thread, fd, pathname);
  1237. }
  1238. static const char *thread__fd_path(struct thread *thread, int fd,
  1239. struct trace *trace)
  1240. {
  1241. struct thread_trace *ttrace = thread__priv(thread);
  1242. if (ttrace == NULL)
  1243. return NULL;
  1244. if (fd < 0)
  1245. return NULL;
  1246. if ((fd > ttrace->paths.max || ttrace->paths.table[fd] == NULL)) {
  1247. if (!trace->live)
  1248. return NULL;
  1249. ++trace->stats.proc_getname;
  1250. if (thread__read_fd_path(thread, fd))
  1251. return NULL;
  1252. }
  1253. return ttrace->paths.table[fd];
  1254. }
  1255. static size_t syscall_arg__scnprintf_fd(char *bf, size_t size,
  1256. struct syscall_arg *arg)
  1257. {
  1258. int fd = arg->val;
  1259. size_t printed = scnprintf(bf, size, "%d", fd);
  1260. const char *path = thread__fd_path(arg->thread, fd, arg->trace);
  1261. if (path)
  1262. printed += scnprintf(bf + printed, size - printed, "<%s>", path);
  1263. return printed;
  1264. }
  1265. static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size,
  1266. struct syscall_arg *arg)
  1267. {
  1268. int fd = arg->val;
  1269. size_t printed = syscall_arg__scnprintf_fd(bf, size, arg);
  1270. struct thread_trace *ttrace = thread__priv(arg->thread);
  1271. if (ttrace && fd >= 0 && fd <= ttrace->paths.max)
  1272. zfree(&ttrace->paths.table[fd]);
  1273. return printed;
  1274. }
  1275. static void thread__set_filename_pos(struct thread *thread, const char *bf,
  1276. unsigned long ptr)
  1277. {
  1278. struct thread_trace *ttrace = thread__priv(thread);
  1279. ttrace->filename.ptr = ptr;
  1280. ttrace->filename.entry_str_pos = bf - ttrace->entry_str;
  1281. }
  1282. static size_t syscall_arg__scnprintf_filename(char *bf, size_t size,
  1283. struct syscall_arg *arg)
  1284. {
  1285. unsigned long ptr = arg->val;
  1286. if (!arg->trace->vfs_getname)
  1287. return scnprintf(bf, size, "%#x", ptr);
  1288. thread__set_filename_pos(arg->thread, bf, ptr);
  1289. return 0;
  1290. }
  1291. static bool trace__filter_duration(struct trace *trace, double t)
  1292. {
  1293. return t < (trace->duration_filter * NSEC_PER_MSEC);
  1294. }
  1295. static size_t trace__fprintf_tstamp(struct trace *trace, u64 tstamp, FILE *fp)
  1296. {
  1297. double ts = (double)(tstamp - trace->base_time) / NSEC_PER_MSEC;
  1298. return fprintf(fp, "%10.3f ", ts);
  1299. }
  1300. static bool done = false;
  1301. static bool interrupted = false;
  1302. static void sig_handler(int sig)
  1303. {
  1304. done = true;
  1305. interrupted = sig == SIGINT;
  1306. }
  1307. static size_t trace__fprintf_entry_head(struct trace *trace, struct thread *thread,
  1308. u64 duration, u64 tstamp, FILE *fp)
  1309. {
  1310. size_t printed = trace__fprintf_tstamp(trace, tstamp, fp);
  1311. printed += fprintf_duration(duration, fp);
  1312. if (trace->multiple_threads) {
  1313. if (trace->show_comm)
  1314. printed += fprintf(fp, "%.14s/", thread__comm_str(thread));
  1315. printed += fprintf(fp, "%d ", thread->tid);
  1316. }
  1317. return printed;
  1318. }
  1319. static int trace__process_event(struct trace *trace, struct machine *machine,
  1320. union perf_event *event, struct perf_sample *sample)
  1321. {
  1322. int ret = 0;
  1323. switch (event->header.type) {
  1324. case PERF_RECORD_LOST:
  1325. color_fprintf(trace->output, PERF_COLOR_RED,
  1326. "LOST %" PRIu64 " events!\n", event->lost.lost);
  1327. ret = machine__process_lost_event(machine, event, sample);
  1328. default:
  1329. ret = machine__process_event(machine, event, sample);
  1330. break;
  1331. }
  1332. return ret;
  1333. }
  1334. static int trace__tool_process(struct perf_tool *tool,
  1335. union perf_event *event,
  1336. struct perf_sample *sample,
  1337. struct machine *machine)
  1338. {
  1339. struct trace *trace = container_of(tool, struct trace, tool);
  1340. return trace__process_event(trace, machine, event, sample);
  1341. }
  1342. static int trace__symbols_init(struct trace *trace, struct perf_evlist *evlist)
  1343. {
  1344. int err = symbol__init(NULL);
  1345. if (err)
  1346. return err;
  1347. trace->host = machine__new_host();
  1348. if (trace->host == NULL)
  1349. return -ENOMEM;
  1350. if (trace_event__register_resolver(trace->host, machine__resolve_kernel_addr) < 0)
  1351. return -errno;
  1352. err = __machine__synthesize_threads(trace->host, &trace->tool, &trace->opts.target,
  1353. evlist->threads, trace__tool_process, false,
  1354. trace->opts.proc_map_timeout);
  1355. if (err)
  1356. symbol__exit();
  1357. return err;
  1358. }
  1359. static int syscall__set_arg_fmts(struct syscall *sc)
  1360. {
  1361. struct format_field *field;
  1362. int idx = 0;
  1363. sc->arg_scnprintf = calloc(sc->nr_args, sizeof(void *));
  1364. if (sc->arg_scnprintf == NULL)
  1365. return -1;
  1366. if (sc->fmt)
  1367. sc->arg_parm = sc->fmt->arg_parm;
  1368. for (field = sc->args; field; field = field->next) {
  1369. if (sc->fmt && sc->fmt->arg_scnprintf[idx])
  1370. sc->arg_scnprintf[idx] = sc->fmt->arg_scnprintf[idx];
  1371. else if (field->flags & FIELD_IS_POINTER)
  1372. sc->arg_scnprintf[idx] = syscall_arg__scnprintf_hex;
  1373. ++idx;
  1374. }
  1375. return 0;
  1376. }
  1377. static int trace__read_syscall_info(struct trace *trace, int id)
  1378. {
  1379. char tp_name[128];
  1380. struct syscall *sc;
  1381. const char *name = audit_syscall_to_name(id, trace->audit.machine);
  1382. if (name == NULL)
  1383. return -1;
  1384. if (id > trace->syscalls.max) {
  1385. struct syscall *nsyscalls = realloc(trace->syscalls.table, (id + 1) * sizeof(*sc));
  1386. if (nsyscalls == NULL)
  1387. return -1;
  1388. if (trace->syscalls.max != -1) {
  1389. memset(nsyscalls + trace->syscalls.max + 1, 0,
  1390. (id - trace->syscalls.max) * sizeof(*sc));
  1391. } else {
  1392. memset(nsyscalls, 0, (id + 1) * sizeof(*sc));
  1393. }
  1394. trace->syscalls.table = nsyscalls;
  1395. trace->syscalls.max = id;
  1396. }
  1397. sc = trace->syscalls.table + id;
  1398. sc->name = name;
  1399. sc->fmt = syscall_fmt__find(sc->name);
  1400. snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->name);
  1401. sc->tp_format = trace_event__tp_format("syscalls", tp_name);
  1402. if (sc->tp_format == NULL && sc->fmt && sc->fmt->alias) {
  1403. snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->fmt->alias);
  1404. sc->tp_format = trace_event__tp_format("syscalls", tp_name);
  1405. }
  1406. if (sc->tp_format == NULL)
  1407. return -1;
  1408. sc->args = sc->tp_format->format.fields;
  1409. sc->nr_args = sc->tp_format->format.nr_fields;
  1410. /* drop nr field - not relevant here; does not exist on older kernels */
  1411. if (sc->args && strcmp(sc->args->name, "nr") == 0) {
  1412. sc->args = sc->args->next;
  1413. --sc->nr_args;
  1414. }
  1415. sc->is_exit = !strcmp(name, "exit_group") || !strcmp(name, "exit");
  1416. return syscall__set_arg_fmts(sc);
  1417. }
  1418. static int trace__validate_ev_qualifier(struct trace *trace)
  1419. {
  1420. int err = 0, i;
  1421. struct str_node *pos;
  1422. trace->ev_qualifier_ids.nr = strlist__nr_entries(trace->ev_qualifier);
  1423. trace->ev_qualifier_ids.entries = malloc(trace->ev_qualifier_ids.nr *
  1424. sizeof(trace->ev_qualifier_ids.entries[0]));
  1425. if (trace->ev_qualifier_ids.entries == NULL) {
  1426. fputs("Error:\tNot enough memory for allocating events qualifier ids\n",
  1427. trace->output);
  1428. err = -EINVAL;
  1429. goto out;
  1430. }
  1431. i = 0;
  1432. strlist__for_each(pos, trace->ev_qualifier) {
  1433. const char *sc = pos->s;
  1434. int id = audit_name_to_syscall(sc, trace->audit.machine);
  1435. if (id < 0) {
  1436. if (err == 0) {
  1437. fputs("Error:\tInvalid syscall ", trace->output);
  1438. err = -EINVAL;
  1439. } else {
  1440. fputs(", ", trace->output);
  1441. }
  1442. fputs(sc, trace->output);
  1443. }
  1444. trace->ev_qualifier_ids.entries[i++] = id;
  1445. }
  1446. if (err < 0) {
  1447. fputs("\nHint:\ttry 'perf list syscalls:sys_enter_*'"
  1448. "\nHint:\tand: 'man syscalls'\n", trace->output);
  1449. zfree(&trace->ev_qualifier_ids.entries);
  1450. trace->ev_qualifier_ids.nr = 0;
  1451. }
  1452. out:
  1453. return err;
  1454. }
  1455. /*
  1456. * args is to be interpreted as a series of longs but we need to handle
  1457. * 8-byte unaligned accesses. args points to raw_data within the event
  1458. * and raw_data is guaranteed to be 8-byte unaligned because it is
  1459. * preceded by raw_size which is a u32. So we need to copy args to a temp
  1460. * variable to read it. Most notably this avoids extended load instructions
  1461. * on unaligned addresses
  1462. */
  1463. static size_t syscall__scnprintf_args(struct syscall *sc, char *bf, size_t size,
  1464. unsigned char *args, struct trace *trace,
  1465. struct thread *thread)
  1466. {
  1467. size_t printed = 0;
  1468. unsigned char *p;
  1469. unsigned long val;
  1470. if (sc->args != NULL) {
  1471. struct format_field *field;
  1472. u8 bit = 1;
  1473. struct syscall_arg arg = {
  1474. .idx = 0,
  1475. .mask = 0,
  1476. .trace = trace,
  1477. .thread = thread,
  1478. };
  1479. for (field = sc->args; field;
  1480. field = field->next, ++arg.idx, bit <<= 1) {
  1481. if (arg.mask & bit)
  1482. continue;
  1483. /* special care for unaligned accesses */
  1484. p = args + sizeof(unsigned long) * arg.idx;
  1485. memcpy(&val, p, sizeof(val));
  1486. /*
  1487. * Suppress this argument if its value is zero and
  1488. * and we don't have a string associated in an
  1489. * strarray for it.
  1490. */
  1491. if (val == 0 &&
  1492. !(sc->arg_scnprintf &&
  1493. sc->arg_scnprintf[arg.idx] == SCA_STRARRAY &&
  1494. sc->arg_parm[arg.idx]))
  1495. continue;
  1496. printed += scnprintf(bf + printed, size - printed,
  1497. "%s%s: ", printed ? ", " : "", field->name);
  1498. if (sc->arg_scnprintf && sc->arg_scnprintf[arg.idx]) {
  1499. arg.val = val;
  1500. if (sc->arg_parm)
  1501. arg.parm = sc->arg_parm[arg.idx];
  1502. printed += sc->arg_scnprintf[arg.idx](bf + printed,
  1503. size - printed, &arg);
  1504. } else {
  1505. printed += scnprintf(bf + printed, size - printed,
  1506. "%ld", val);
  1507. }
  1508. }
  1509. } else {
  1510. int i = 0;
  1511. while (i < 6) {
  1512. /* special care for unaligned accesses */
  1513. p = args + sizeof(unsigned long) * i;
  1514. memcpy(&val, p, sizeof(val));
  1515. printed += scnprintf(bf + printed, size - printed,
  1516. "%sarg%d: %ld",
  1517. printed ? ", " : "", i, val);
  1518. ++i;
  1519. }
  1520. }
  1521. return printed;
  1522. }
  1523. typedef int (*tracepoint_handler)(struct trace *trace, struct perf_evsel *evsel,
  1524. union perf_event *event,
  1525. struct perf_sample *sample);
  1526. static struct syscall *trace__syscall_info(struct trace *trace,
  1527. struct perf_evsel *evsel, int id)
  1528. {
  1529. if (id < 0) {
  1530. /*
  1531. * XXX: Noticed on x86_64, reproduced as far back as 3.0.36, haven't tried
  1532. * before that, leaving at a higher verbosity level till that is
  1533. * explained. Reproduced with plain ftrace with:
  1534. *
  1535. * echo 1 > /t/events/raw_syscalls/sys_exit/enable
  1536. * grep "NR -1 " /t/trace_pipe
  1537. *
  1538. * After generating some load on the machine.
  1539. */
  1540. if (verbose > 1) {
  1541. static u64 n;
  1542. fprintf(trace->output, "Invalid syscall %d id, skipping (%s, %" PRIu64 ") ...\n",
  1543. id, perf_evsel__name(evsel), ++n);
  1544. }
  1545. return NULL;
  1546. }
  1547. if ((id > trace->syscalls.max || trace->syscalls.table[id].name == NULL) &&
  1548. trace__read_syscall_info(trace, id))
  1549. goto out_cant_read;
  1550. if ((id > trace->syscalls.max || trace->syscalls.table[id].name == NULL))
  1551. goto out_cant_read;
  1552. return &trace->syscalls.table[id];
  1553. out_cant_read:
  1554. if (verbose) {
  1555. fprintf(trace->output, "Problems reading syscall %d", id);
  1556. if (id <= trace->syscalls.max && trace->syscalls.table[id].name != NULL)
  1557. fprintf(trace->output, "(%s)", trace->syscalls.table[id].name);
  1558. fputs(" information\n", trace->output);
  1559. }
  1560. return NULL;
  1561. }
  1562. static void thread__update_stats(struct thread_trace *ttrace,
  1563. int id, struct perf_sample *sample)
  1564. {
  1565. struct int_node *inode;
  1566. struct stats *stats;
  1567. u64 duration = 0;
  1568. inode = intlist__findnew(ttrace->syscall_stats, id);
  1569. if (inode == NULL)
  1570. return;
  1571. stats = inode->priv;
  1572. if (stats == NULL) {
  1573. stats = malloc(sizeof(struct stats));
  1574. if (stats == NULL)
  1575. return;
  1576. init_stats(stats);
  1577. inode->priv = stats;
  1578. }
  1579. if (ttrace->entry_time && sample->time > ttrace->entry_time)
  1580. duration = sample->time - ttrace->entry_time;
  1581. update_stats(stats, duration);
  1582. }
  1583. static int trace__printf_interrupted_entry(struct trace *trace, struct perf_sample *sample)
  1584. {
  1585. struct thread_trace *ttrace;
  1586. u64 duration;
  1587. size_t printed;
  1588. if (trace->current == NULL)
  1589. return 0;
  1590. ttrace = thread__priv(trace->current);
  1591. if (!ttrace->entry_pending)
  1592. return 0;
  1593. duration = sample->time - ttrace->entry_time;
  1594. printed = trace__fprintf_entry_head(trace, trace->current, duration, sample->time, trace->output);
  1595. printed += fprintf(trace->output, "%-70s) ...\n", ttrace->entry_str);
  1596. ttrace->entry_pending = false;
  1597. return printed;
  1598. }
  1599. static int trace__sys_enter(struct trace *trace, struct perf_evsel *evsel,
  1600. union perf_event *event __maybe_unused,
  1601. struct perf_sample *sample)
  1602. {
  1603. char *msg;
  1604. void *args;
  1605. size_t printed = 0;
  1606. struct thread *thread;
  1607. int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1;
  1608. struct syscall *sc = trace__syscall_info(trace, evsel, id);
  1609. struct thread_trace *ttrace;
  1610. if (sc == NULL)
  1611. return -1;
  1612. thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
  1613. ttrace = thread__trace(thread, trace->output);
  1614. if (ttrace == NULL)
  1615. goto out_put;
  1616. args = perf_evsel__sc_tp_ptr(evsel, args, sample);
  1617. if (ttrace->entry_str == NULL) {
  1618. ttrace->entry_str = malloc(trace__entry_str_size);
  1619. if (!ttrace->entry_str)
  1620. goto out_put;
  1621. }
  1622. if (!trace->summary_only)
  1623. trace__printf_interrupted_entry(trace, sample);
  1624. ttrace->entry_time = sample->time;
  1625. msg = ttrace->entry_str;
  1626. printed += scnprintf(msg + printed, trace__entry_str_size - printed, "%s(", sc->name);
  1627. printed += syscall__scnprintf_args(sc, msg + printed, trace__entry_str_size - printed,
  1628. args, trace, thread);
  1629. if (sc->is_exit) {
  1630. if (!trace->duration_filter && !trace->summary_only) {
  1631. trace__fprintf_entry_head(trace, thread, 1, sample->time, trace->output);
  1632. fprintf(trace->output, "%-70s\n", ttrace->entry_str);
  1633. }
  1634. } else
  1635. ttrace->entry_pending = true;
  1636. if (trace->current != thread) {
  1637. thread__put(trace->current);
  1638. trace->current = thread__get(thread);
  1639. }
  1640. err = 0;
  1641. out_put:
  1642. thread__put(thread);
  1643. return err;
  1644. }
  1645. static int trace__sys_exit(struct trace *trace, struct perf_evsel *evsel,
  1646. union perf_event *event __maybe_unused,
  1647. struct perf_sample *sample)
  1648. {
  1649. long ret;
  1650. u64 duration = 0;
  1651. struct thread *thread;
  1652. int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1;
  1653. struct syscall *sc = trace__syscall_info(trace, evsel, id);
  1654. struct thread_trace *ttrace;
  1655. if (sc == NULL)
  1656. return -1;
  1657. thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
  1658. ttrace = thread__trace(thread, trace->output);
  1659. if (ttrace == NULL)
  1660. goto out_put;
  1661. if (trace->summary)
  1662. thread__update_stats(ttrace, id, sample);
  1663. ret = perf_evsel__sc_tp_uint(evsel, ret, sample);
  1664. if (id == trace->audit.open_id && ret >= 0 && trace->last_vfs_getname) {
  1665. trace__set_fd_pathname(thread, ret, trace->last_vfs_getname);
  1666. trace->last_vfs_getname = NULL;
  1667. ++trace->stats.vfs_getname;
  1668. }
  1669. ttrace->exit_time = sample->time;
  1670. if (ttrace->entry_time) {
  1671. duration = sample->time - ttrace->entry_time;
  1672. if (trace__filter_duration(trace, duration))
  1673. goto out;
  1674. } else if (trace->duration_filter)
  1675. goto out;
  1676. if (trace->summary_only)
  1677. goto out;
  1678. trace__fprintf_entry_head(trace, thread, duration, sample->time, trace->output);
  1679. if (ttrace->entry_pending) {
  1680. fprintf(trace->output, "%-70s", ttrace->entry_str);
  1681. } else {
  1682. fprintf(trace->output, " ... [");
  1683. color_fprintf(trace->output, PERF_COLOR_YELLOW, "continued");
  1684. fprintf(trace->output, "]: %s()", sc->name);
  1685. }
  1686. if (sc->fmt == NULL) {
  1687. signed_print:
  1688. fprintf(trace->output, ") = %ld", ret);
  1689. } else if (ret < 0 && sc->fmt->errmsg) {
  1690. char bf[STRERR_BUFSIZE];
  1691. const char *emsg = strerror_r(-ret, bf, sizeof(bf)),
  1692. *e = audit_errno_to_name(-ret);
  1693. fprintf(trace->output, ") = -1 %s %s", e, emsg);
  1694. } else if (ret == 0 && sc->fmt->timeout)
  1695. fprintf(trace->output, ") = 0 Timeout");
  1696. else if (sc->fmt->hexret)
  1697. fprintf(trace->output, ") = %#lx", ret);
  1698. else
  1699. goto signed_print;
  1700. fputc('\n', trace->output);
  1701. out:
  1702. ttrace->entry_pending = false;
  1703. err = 0;
  1704. out_put:
  1705. thread__put(thread);
  1706. return err;
  1707. }
  1708. static int trace__vfs_getname(struct trace *trace, struct perf_evsel *evsel,
  1709. union perf_event *event __maybe_unused,
  1710. struct perf_sample *sample)
  1711. {
  1712. struct thread *thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
  1713. struct thread_trace *ttrace;
  1714. size_t filename_len, entry_str_len, to_move;
  1715. ssize_t remaining_space;
  1716. char *pos;
  1717. const char *filename;
  1718. trace->last_vfs_getname = perf_evsel__rawptr(evsel, sample, "pathname");
  1719. if (!thread)
  1720. goto out;
  1721. ttrace = thread__priv(thread);
  1722. if (!ttrace)
  1723. goto out;
  1724. if (!ttrace->filename.ptr)
  1725. goto out;
  1726. entry_str_len = strlen(ttrace->entry_str);
  1727. remaining_space = trace__entry_str_size - entry_str_len - 1; /* \0 */
  1728. if (remaining_space <= 0)
  1729. goto out;
  1730. filename = trace->last_vfs_getname;
  1731. filename_len = strlen(filename);
  1732. if (filename_len > (size_t)remaining_space) {
  1733. filename += filename_len - remaining_space;
  1734. filename_len = remaining_space;
  1735. }
  1736. to_move = entry_str_len - ttrace->filename.entry_str_pos + 1; /* \0 */
  1737. pos = ttrace->entry_str + ttrace->filename.entry_str_pos;
  1738. memmove(pos + filename_len, pos, to_move);
  1739. memcpy(pos, filename, filename_len);
  1740. ttrace->filename.ptr = 0;
  1741. ttrace->filename.entry_str_pos = 0;
  1742. out:
  1743. return 0;
  1744. }
  1745. static int trace__sched_stat_runtime(struct trace *trace, struct perf_evsel *evsel,
  1746. union perf_event *event __maybe_unused,
  1747. struct perf_sample *sample)
  1748. {
  1749. u64 runtime = perf_evsel__intval(evsel, sample, "runtime");
  1750. double runtime_ms = (double)runtime / NSEC_PER_MSEC;
  1751. struct thread *thread = machine__findnew_thread(trace->host,
  1752. sample->pid,
  1753. sample->tid);
  1754. struct thread_trace *ttrace = thread__trace(thread, trace->output);
  1755. if (ttrace == NULL)
  1756. goto out_dump;
  1757. ttrace->runtime_ms += runtime_ms;
  1758. trace->runtime_ms += runtime_ms;
  1759. thread__put(thread);
  1760. return 0;
  1761. out_dump:
  1762. fprintf(trace->output, "%s: comm=%s,pid=%u,runtime=%" PRIu64 ",vruntime=%" PRIu64 ")\n",
  1763. evsel->name,
  1764. perf_evsel__strval(evsel, sample, "comm"),
  1765. (pid_t)perf_evsel__intval(evsel, sample, "pid"),
  1766. runtime,
  1767. perf_evsel__intval(evsel, sample, "vruntime"));
  1768. thread__put(thread);
  1769. return 0;
  1770. }
  1771. static int trace__event_handler(struct trace *trace, struct perf_evsel *evsel,
  1772. union perf_event *event __maybe_unused,
  1773. struct perf_sample *sample)
  1774. {
  1775. trace__printf_interrupted_entry(trace, sample);
  1776. trace__fprintf_tstamp(trace, sample->time, trace->output);
  1777. if (trace->trace_syscalls)
  1778. fprintf(trace->output, "( ): ");
  1779. fprintf(trace->output, "%s:", evsel->name);
  1780. if (evsel->tp_format) {
  1781. event_format__fprintf(evsel->tp_format, sample->cpu,
  1782. sample->raw_data, sample->raw_size,
  1783. trace->output);
  1784. }
  1785. fprintf(trace->output, ")\n");
  1786. return 0;
  1787. }
  1788. static void print_location(FILE *f, struct perf_sample *sample,
  1789. struct addr_location *al,
  1790. bool print_dso, bool print_sym)
  1791. {
  1792. if ((verbose || print_dso) && al->map)
  1793. fprintf(f, "%s@", al->map->dso->long_name);
  1794. if ((verbose || print_sym) && al->sym)
  1795. fprintf(f, "%s+0x%" PRIx64, al->sym->name,
  1796. al->addr - al->sym->start);
  1797. else if (al->map)
  1798. fprintf(f, "0x%" PRIx64, al->addr);
  1799. else
  1800. fprintf(f, "0x%" PRIx64, sample->addr);
  1801. }
  1802. static int trace__pgfault(struct trace *trace,
  1803. struct perf_evsel *evsel,
  1804. union perf_event *event,
  1805. struct perf_sample *sample)
  1806. {
  1807. struct thread *thread;
  1808. u8 cpumode = event->header.misc & PERF_RECORD_MISC_CPUMODE_MASK;
  1809. struct addr_location al;
  1810. char map_type = 'd';
  1811. struct thread_trace *ttrace;
  1812. int err = -1;
  1813. thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
  1814. ttrace = thread__trace(thread, trace->output);
  1815. if (ttrace == NULL)
  1816. goto out_put;
  1817. if (evsel->attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ)
  1818. ttrace->pfmaj++;
  1819. else
  1820. ttrace->pfmin++;
  1821. if (trace->summary_only)
  1822. goto out;
  1823. thread__find_addr_location(thread, cpumode, MAP__FUNCTION,
  1824. sample->ip, &al);
  1825. trace__fprintf_entry_head(trace, thread, 0, sample->time, trace->output);
  1826. fprintf(trace->output, "%sfault [",
  1827. evsel->attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ ?
  1828. "maj" : "min");
  1829. print_location(trace->output, sample, &al, false, true);
  1830. fprintf(trace->output, "] => ");
  1831. thread__find_addr_location(thread, cpumode, MAP__VARIABLE,
  1832. sample->addr, &al);
  1833. if (!al.map) {
  1834. thread__find_addr_location(thread, cpumode,
  1835. MAP__FUNCTION, sample->addr, &al);
  1836. if (al.map)
  1837. map_type = 'x';
  1838. else
  1839. map_type = '?';
  1840. }
  1841. print_location(trace->output, sample, &al, true, false);
  1842. fprintf(trace->output, " (%c%c)\n", map_type, al.level);
  1843. out:
  1844. err = 0;
  1845. out_put:
  1846. thread__put(thread);
  1847. return err;
  1848. }
  1849. static bool skip_sample(struct trace *trace, struct perf_sample *sample)
  1850. {
  1851. if ((trace->pid_list && intlist__find(trace->pid_list, sample->pid)) ||
  1852. (trace->tid_list && intlist__find(trace->tid_list, sample->tid)))
  1853. return false;
  1854. if (trace->pid_list || trace->tid_list)
  1855. return true;
  1856. return false;
  1857. }
  1858. static int trace__process_sample(struct perf_tool *tool,
  1859. union perf_event *event,
  1860. struct perf_sample *sample,
  1861. struct perf_evsel *evsel,
  1862. struct machine *machine __maybe_unused)
  1863. {
  1864. struct trace *trace = container_of(tool, struct trace, tool);
  1865. int err = 0;
  1866. tracepoint_handler handler = evsel->handler;
  1867. if (skip_sample(trace, sample))
  1868. return 0;
  1869. if (!trace->full_time && trace->base_time == 0)
  1870. trace->base_time = sample->time;
  1871. if (handler) {
  1872. ++trace->nr_events;
  1873. handler(trace, evsel, event, sample);
  1874. }
  1875. return err;
  1876. }
  1877. static int parse_target_str(struct trace *trace)
  1878. {
  1879. if (trace->opts.target.pid) {
  1880. trace->pid_list = intlist__new(trace->opts.target.pid);
  1881. if (trace->pid_list == NULL) {
  1882. pr_err("Error parsing process id string\n");
  1883. return -EINVAL;
  1884. }
  1885. }
  1886. if (trace->opts.target.tid) {
  1887. trace->tid_list = intlist__new(trace->opts.target.tid);
  1888. if (trace->tid_list == NULL) {
  1889. pr_err("Error parsing thread id string\n");
  1890. return -EINVAL;
  1891. }
  1892. }
  1893. return 0;
  1894. }
  1895. static int trace__record(struct trace *trace, int argc, const char **argv)
  1896. {
  1897. unsigned int rec_argc, i, j;
  1898. const char **rec_argv;
  1899. const char * const record_args[] = {
  1900. "record",
  1901. "-R",
  1902. "-m", "1024",
  1903. "-c", "1",
  1904. };
  1905. const char * const sc_args[] = { "-e", };
  1906. unsigned int sc_args_nr = ARRAY_SIZE(sc_args);
  1907. const char * const majpf_args[] = { "-e", "major-faults" };
  1908. unsigned int majpf_args_nr = ARRAY_SIZE(majpf_args);
  1909. const char * const minpf_args[] = { "-e", "minor-faults" };
  1910. unsigned int minpf_args_nr = ARRAY_SIZE(minpf_args);
  1911. /* +1 is for the event string below */
  1912. rec_argc = ARRAY_SIZE(record_args) + sc_args_nr + 1 +
  1913. majpf_args_nr + minpf_args_nr + argc;
  1914. rec_argv = calloc(rec_argc + 1, sizeof(char *));
  1915. if (rec_argv == NULL)
  1916. return -ENOMEM;
  1917. j = 0;
  1918. for (i = 0; i < ARRAY_SIZE(record_args); i++)
  1919. rec_argv[j++] = record_args[i];
  1920. if (trace->trace_syscalls) {
  1921. for (i = 0; i < sc_args_nr; i++)
  1922. rec_argv[j++] = sc_args[i];
  1923. /* event string may be different for older kernels - e.g., RHEL6 */
  1924. if (is_valid_tracepoint("raw_syscalls:sys_enter"))
  1925. rec_argv[j++] = "raw_syscalls:sys_enter,raw_syscalls:sys_exit";
  1926. else if (is_valid_tracepoint("syscalls:sys_enter"))
  1927. rec_argv[j++] = "syscalls:sys_enter,syscalls:sys_exit";
  1928. else {
  1929. pr_err("Neither raw_syscalls nor syscalls events exist.\n");
  1930. return -1;
  1931. }
  1932. }
  1933. if (trace->trace_pgfaults & TRACE_PFMAJ)
  1934. for (i = 0; i < majpf_args_nr; i++)
  1935. rec_argv[j++] = majpf_args[i];
  1936. if (trace->trace_pgfaults & TRACE_PFMIN)
  1937. for (i = 0; i < minpf_args_nr; i++)
  1938. rec_argv[j++] = minpf_args[i];
  1939. for (i = 0; i < (unsigned int)argc; i++)
  1940. rec_argv[j++] = argv[i];
  1941. return cmd_record(j, rec_argv, NULL);
  1942. }
  1943. static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp);
  1944. static bool perf_evlist__add_vfs_getname(struct perf_evlist *evlist)
  1945. {
  1946. struct perf_evsel *evsel = perf_evsel__newtp("probe", "vfs_getname");
  1947. if (evsel == NULL)
  1948. return false;
  1949. if (perf_evsel__field(evsel, "pathname") == NULL) {
  1950. perf_evsel__delete(evsel);
  1951. return false;
  1952. }
  1953. evsel->handler = trace__vfs_getname;
  1954. perf_evlist__add(evlist, evsel);
  1955. return true;
  1956. }
  1957. static int perf_evlist__add_pgfault(struct perf_evlist *evlist,
  1958. u64 config)
  1959. {
  1960. struct perf_evsel *evsel;
  1961. struct perf_event_attr attr = {
  1962. .type = PERF_TYPE_SOFTWARE,
  1963. .mmap_data = 1,
  1964. };
  1965. attr.config = config;
  1966. attr.sample_period = 1;
  1967. event_attr_init(&attr);
  1968. evsel = perf_evsel__new(&attr);
  1969. if (!evsel)
  1970. return -ENOMEM;
  1971. evsel->handler = trace__pgfault;
  1972. perf_evlist__add(evlist, evsel);
  1973. return 0;
  1974. }
  1975. static void trace__handle_event(struct trace *trace, union perf_event *event, struct perf_sample *sample)
  1976. {
  1977. const u32 type = event->header.type;
  1978. struct perf_evsel *evsel;
  1979. if (!trace->full_time && trace->base_time == 0)
  1980. trace->base_time = sample->time;
  1981. if (type != PERF_RECORD_SAMPLE) {
  1982. trace__process_event(trace, trace->host, event, sample);
  1983. return;
  1984. }
  1985. evsel = perf_evlist__id2evsel(trace->evlist, sample->id);
  1986. if (evsel == NULL) {
  1987. fprintf(trace->output, "Unknown tp ID %" PRIu64 ", skipping...\n", sample->id);
  1988. return;
  1989. }
  1990. if (evsel->attr.type == PERF_TYPE_TRACEPOINT &&
  1991. sample->raw_data == NULL) {
  1992. fprintf(trace->output, "%s sample with no payload for tid: %d, cpu %d, raw_size=%d, skipping...\n",
  1993. perf_evsel__name(evsel), sample->tid,
  1994. sample->cpu, sample->raw_size);
  1995. } else {
  1996. tracepoint_handler handler = evsel->handler;
  1997. handler(trace, evsel, event, sample);
  1998. }
  1999. }
  2000. static int trace__add_syscall_newtp(struct trace *trace)
  2001. {
  2002. int ret = -1;
  2003. struct perf_evlist *evlist = trace->evlist;
  2004. struct perf_evsel *sys_enter, *sys_exit;
  2005. sys_enter = perf_evsel__syscall_newtp("sys_enter", trace__sys_enter);
  2006. if (sys_enter == NULL)
  2007. goto out;
  2008. if (perf_evsel__init_sc_tp_ptr_field(sys_enter, args))
  2009. goto out_delete_sys_enter;
  2010. sys_exit = perf_evsel__syscall_newtp("sys_exit", trace__sys_exit);
  2011. if (sys_exit == NULL)
  2012. goto out_delete_sys_enter;
  2013. if (perf_evsel__init_sc_tp_uint_field(sys_exit, ret))
  2014. goto out_delete_sys_exit;
  2015. perf_evlist__add(evlist, sys_enter);
  2016. perf_evlist__add(evlist, sys_exit);
  2017. trace->syscalls.events.sys_enter = sys_enter;
  2018. trace->syscalls.events.sys_exit = sys_exit;
  2019. ret = 0;
  2020. out:
  2021. return ret;
  2022. out_delete_sys_exit:
  2023. perf_evsel__delete_priv(sys_exit);
  2024. out_delete_sys_enter:
  2025. perf_evsel__delete_priv(sys_enter);
  2026. goto out;
  2027. }
  2028. static int trace__set_ev_qualifier_filter(struct trace *trace)
  2029. {
  2030. int err = -1;
  2031. char *filter = asprintf_expr_inout_ints("id", !trace->not_ev_qualifier,
  2032. trace->ev_qualifier_ids.nr,
  2033. trace->ev_qualifier_ids.entries);
  2034. if (filter == NULL)
  2035. goto out_enomem;
  2036. if (!perf_evsel__append_filter(trace->syscalls.events.sys_enter, "&&", filter))
  2037. err = perf_evsel__append_filter(trace->syscalls.events.sys_exit, "&&", filter);
  2038. free(filter);
  2039. out:
  2040. return err;
  2041. out_enomem:
  2042. errno = ENOMEM;
  2043. goto out;
  2044. }
  2045. static int trace__run(struct trace *trace, int argc, const char **argv)
  2046. {
  2047. struct perf_evlist *evlist = trace->evlist;
  2048. struct perf_evsel *evsel;
  2049. int err = -1, i;
  2050. unsigned long before;
  2051. const bool forks = argc > 0;
  2052. bool draining = false;
  2053. trace->live = true;
  2054. if (trace->trace_syscalls && trace__add_syscall_newtp(trace))
  2055. goto out_error_raw_syscalls;
  2056. if (trace->trace_syscalls)
  2057. trace->vfs_getname = perf_evlist__add_vfs_getname(evlist);
  2058. if ((trace->trace_pgfaults & TRACE_PFMAJ) &&
  2059. perf_evlist__add_pgfault(evlist, PERF_COUNT_SW_PAGE_FAULTS_MAJ)) {
  2060. goto out_error_mem;
  2061. }
  2062. if ((trace->trace_pgfaults & TRACE_PFMIN) &&
  2063. perf_evlist__add_pgfault(evlist, PERF_COUNT_SW_PAGE_FAULTS_MIN))
  2064. goto out_error_mem;
  2065. if (trace->sched &&
  2066. perf_evlist__add_newtp(evlist, "sched", "sched_stat_runtime",
  2067. trace__sched_stat_runtime))
  2068. goto out_error_sched_stat_runtime;
  2069. err = perf_evlist__create_maps(evlist, &trace->opts.target);
  2070. if (err < 0) {
  2071. fprintf(trace->output, "Problems parsing the target to trace, check your options!\n");
  2072. goto out_delete_evlist;
  2073. }
  2074. err = trace__symbols_init(trace, evlist);
  2075. if (err < 0) {
  2076. fprintf(trace->output, "Problems initializing symbol libraries!\n");
  2077. goto out_delete_evlist;
  2078. }
  2079. perf_evlist__config(evlist, &trace->opts);
  2080. signal(SIGCHLD, sig_handler);
  2081. signal(SIGINT, sig_handler);
  2082. if (forks) {
  2083. err = perf_evlist__prepare_workload(evlist, &trace->opts.target,
  2084. argv, false, NULL);
  2085. if (err < 0) {
  2086. fprintf(trace->output, "Couldn't run the workload!\n");
  2087. goto out_delete_evlist;
  2088. }
  2089. }
  2090. err = perf_evlist__open(evlist);
  2091. if (err < 0)
  2092. goto out_error_open;
  2093. /*
  2094. * Better not use !target__has_task() here because we need to cover the
  2095. * case where no threads were specified in the command line, but a
  2096. * workload was, and in that case we will fill in the thread_map when
  2097. * we fork the workload in perf_evlist__prepare_workload.
  2098. */
  2099. if (trace->filter_pids.nr > 0)
  2100. err = perf_evlist__set_filter_pids(evlist, trace->filter_pids.nr, trace->filter_pids.entries);
  2101. else if (thread_map__pid(evlist->threads, 0) == -1)
  2102. err = perf_evlist__set_filter_pid(evlist, getpid());
  2103. if (err < 0)
  2104. goto out_error_mem;
  2105. if (trace->ev_qualifier_ids.nr > 0) {
  2106. err = trace__set_ev_qualifier_filter(trace);
  2107. if (err < 0)
  2108. goto out_errno;
  2109. pr_debug("event qualifier tracepoint filter: %s\n",
  2110. trace->syscalls.events.sys_exit->filter);
  2111. }
  2112. err = perf_evlist__apply_filters(evlist, &evsel);
  2113. if (err < 0)
  2114. goto out_error_apply_filters;
  2115. err = perf_evlist__mmap(evlist, trace->opts.mmap_pages, false);
  2116. if (err < 0)
  2117. goto out_error_mmap;
  2118. if (!target__none(&trace->opts.target))
  2119. perf_evlist__enable(evlist);
  2120. if (forks)
  2121. perf_evlist__start_workload(evlist);
  2122. trace->multiple_threads = thread_map__pid(evlist->threads, 0) == -1 ||
  2123. evlist->threads->nr > 1 ||
  2124. perf_evlist__first(evlist)->attr.inherit;
  2125. again:
  2126. before = trace->nr_events;
  2127. for (i = 0; i < evlist->nr_mmaps; i++) {
  2128. union perf_event *event;
  2129. while ((event = perf_evlist__mmap_read(evlist, i)) != NULL) {
  2130. struct perf_sample sample;
  2131. ++trace->nr_events;
  2132. err = perf_evlist__parse_sample(evlist, event, &sample);
  2133. if (err) {
  2134. fprintf(trace->output, "Can't parse sample, err = %d, skipping...\n", err);
  2135. goto next_event;
  2136. }
  2137. trace__handle_event(trace, event, &sample);
  2138. next_event:
  2139. perf_evlist__mmap_consume(evlist, i);
  2140. if (interrupted)
  2141. goto out_disable;
  2142. if (done && !draining) {
  2143. perf_evlist__disable(evlist);
  2144. draining = true;
  2145. }
  2146. }
  2147. }
  2148. if (trace->nr_events == before) {
  2149. int timeout = done ? 100 : -1;
  2150. if (!draining && perf_evlist__poll(evlist, timeout) > 0) {
  2151. if (perf_evlist__filter_pollfd(evlist, POLLERR | POLLHUP) == 0)
  2152. draining = true;
  2153. goto again;
  2154. }
  2155. } else {
  2156. goto again;
  2157. }
  2158. out_disable:
  2159. thread__zput(trace->current);
  2160. perf_evlist__disable(evlist);
  2161. if (!err) {
  2162. if (trace->summary)
  2163. trace__fprintf_thread_summary(trace, trace->output);
  2164. if (trace->show_tool_stats) {
  2165. fprintf(trace->output, "Stats:\n "
  2166. " vfs_getname : %" PRIu64 "\n"
  2167. " proc_getname: %" PRIu64 "\n",
  2168. trace->stats.vfs_getname,
  2169. trace->stats.proc_getname);
  2170. }
  2171. }
  2172. out_delete_evlist:
  2173. perf_evlist__delete(evlist);
  2174. trace->evlist = NULL;
  2175. trace->live = false;
  2176. return err;
  2177. {
  2178. char errbuf[BUFSIZ];
  2179. out_error_sched_stat_runtime:
  2180. debugfs__strerror_open_tp(errno, errbuf, sizeof(errbuf), "sched", "sched_stat_runtime");
  2181. goto out_error;
  2182. out_error_raw_syscalls:
  2183. debugfs__strerror_open_tp(errno, errbuf, sizeof(errbuf), "raw_syscalls", "sys_(enter|exit)");
  2184. goto out_error;
  2185. out_error_mmap:
  2186. perf_evlist__strerror_mmap(evlist, errno, errbuf, sizeof(errbuf));
  2187. goto out_error;
  2188. out_error_open:
  2189. perf_evlist__strerror_open(evlist, errno, errbuf, sizeof(errbuf));
  2190. out_error:
  2191. fprintf(trace->output, "%s\n", errbuf);
  2192. goto out_delete_evlist;
  2193. out_error_apply_filters:
  2194. fprintf(trace->output,
  2195. "Failed to set filter \"%s\" on event %s with %d (%s)\n",
  2196. evsel->filter, perf_evsel__name(evsel), errno,
  2197. strerror_r(errno, errbuf, sizeof(errbuf)));
  2198. goto out_delete_evlist;
  2199. }
  2200. out_error_mem:
  2201. fprintf(trace->output, "Not enough memory to run!\n");
  2202. goto out_delete_evlist;
  2203. out_errno:
  2204. fprintf(trace->output, "errno=%d,%s\n", errno, strerror(errno));
  2205. goto out_delete_evlist;
  2206. }
  2207. static int trace__replay(struct trace *trace)
  2208. {
  2209. const struct perf_evsel_str_handler handlers[] = {
  2210. { "probe:vfs_getname", trace__vfs_getname, },
  2211. };
  2212. struct perf_data_file file = {
  2213. .path = input_name,
  2214. .mode = PERF_DATA_MODE_READ,
  2215. .force = trace->force,
  2216. };
  2217. struct perf_session *session;
  2218. struct perf_evsel *evsel;
  2219. int err = -1;
  2220. trace->tool.sample = trace__process_sample;
  2221. trace->tool.mmap = perf_event__process_mmap;
  2222. trace->tool.mmap2 = perf_event__process_mmap2;
  2223. trace->tool.comm = perf_event__process_comm;
  2224. trace->tool.exit = perf_event__process_exit;
  2225. trace->tool.fork = perf_event__process_fork;
  2226. trace->tool.attr = perf_event__process_attr;
  2227. trace->tool.tracing_data = perf_event__process_tracing_data;
  2228. trace->tool.build_id = perf_event__process_build_id;
  2229. trace->tool.ordered_events = true;
  2230. trace->tool.ordering_requires_timestamps = true;
  2231. /* add tid to output */
  2232. trace->multiple_threads = true;
  2233. session = perf_session__new(&file, false, &trace->tool);
  2234. if (session == NULL)
  2235. return -1;
  2236. if (symbol__init(&session->header.env) < 0)
  2237. goto out;
  2238. trace->host = &session->machines.host;
  2239. err = perf_session__set_tracepoints_handlers(session, handlers);
  2240. if (err)
  2241. goto out;
  2242. evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
  2243. "raw_syscalls:sys_enter");
  2244. /* older kernels have syscalls tp versus raw_syscalls */
  2245. if (evsel == NULL)
  2246. evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
  2247. "syscalls:sys_enter");
  2248. if (evsel &&
  2249. (perf_evsel__init_syscall_tp(evsel, trace__sys_enter) < 0 ||
  2250. perf_evsel__init_sc_tp_ptr_field(evsel, args))) {
  2251. pr_err("Error during initialize raw_syscalls:sys_enter event\n");
  2252. goto out;
  2253. }
  2254. evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
  2255. "raw_syscalls:sys_exit");
  2256. if (evsel == NULL)
  2257. evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
  2258. "syscalls:sys_exit");
  2259. if (evsel &&
  2260. (perf_evsel__init_syscall_tp(evsel, trace__sys_exit) < 0 ||
  2261. perf_evsel__init_sc_tp_uint_field(evsel, ret))) {
  2262. pr_err("Error during initialize raw_syscalls:sys_exit event\n");
  2263. goto out;
  2264. }
  2265. evlist__for_each(session->evlist, evsel) {
  2266. if (evsel->attr.type == PERF_TYPE_SOFTWARE &&
  2267. (evsel->attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ ||
  2268. evsel->attr.config == PERF_COUNT_SW_PAGE_FAULTS_MIN ||
  2269. evsel->attr.config == PERF_COUNT_SW_PAGE_FAULTS))
  2270. evsel->handler = trace__pgfault;
  2271. }
  2272. err = parse_target_str(trace);
  2273. if (err != 0)
  2274. goto out;
  2275. setup_pager();
  2276. err = perf_session__process_events(session);
  2277. if (err)
  2278. pr_err("Failed to process events, error %d", err);
  2279. else if (trace->summary)
  2280. trace__fprintf_thread_summary(trace, trace->output);
  2281. out:
  2282. perf_session__delete(session);
  2283. return err;
  2284. }
  2285. static size_t trace__fprintf_threads_header(FILE *fp)
  2286. {
  2287. size_t printed;
  2288. printed = fprintf(fp, "\n Summary of events:\n\n");
  2289. return printed;
  2290. }
  2291. static size_t thread__dump_stats(struct thread_trace *ttrace,
  2292. struct trace *trace, FILE *fp)
  2293. {
  2294. struct stats *stats;
  2295. size_t printed = 0;
  2296. struct syscall *sc;
  2297. struct int_node *inode = intlist__first(ttrace->syscall_stats);
  2298. if (inode == NULL)
  2299. return 0;
  2300. printed += fprintf(fp, "\n");
  2301. printed += fprintf(fp, " syscall calls min avg max stddev\n");
  2302. printed += fprintf(fp, " (msec) (msec) (msec) (%%)\n");
  2303. printed += fprintf(fp, " --------------- -------- --------- --------- --------- ------\n");
  2304. /* each int_node is a syscall */
  2305. while (inode) {
  2306. stats = inode->priv;
  2307. if (stats) {
  2308. double min = (double)(stats->min) / NSEC_PER_MSEC;
  2309. double max = (double)(stats->max) / NSEC_PER_MSEC;
  2310. double avg = avg_stats(stats);
  2311. double pct;
  2312. u64 n = (u64) stats->n;
  2313. pct = avg ? 100.0 * stddev_stats(stats)/avg : 0.0;
  2314. avg /= NSEC_PER_MSEC;
  2315. sc = &trace->syscalls.table[inode->i];
  2316. printed += fprintf(fp, " %-15s", sc->name);
  2317. printed += fprintf(fp, " %8" PRIu64 " %9.3f %9.3f",
  2318. n, min, avg);
  2319. printed += fprintf(fp, " %9.3f %9.2f%%\n", max, pct);
  2320. }
  2321. inode = intlist__next(inode);
  2322. }
  2323. printed += fprintf(fp, "\n\n");
  2324. return printed;
  2325. }
  2326. /* struct used to pass data to per-thread function */
  2327. struct summary_data {
  2328. FILE *fp;
  2329. struct trace *trace;
  2330. size_t printed;
  2331. };
  2332. static int trace__fprintf_one_thread(struct thread *thread, void *priv)
  2333. {
  2334. struct summary_data *data = priv;
  2335. FILE *fp = data->fp;
  2336. size_t printed = data->printed;
  2337. struct trace *trace = data->trace;
  2338. struct thread_trace *ttrace = thread__priv(thread);
  2339. double ratio;
  2340. if (ttrace == NULL)
  2341. return 0;
  2342. ratio = (double)ttrace->nr_events / trace->nr_events * 100.0;
  2343. printed += fprintf(fp, " %s (%d), ", thread__comm_str(thread), thread->tid);
  2344. printed += fprintf(fp, "%lu events, ", ttrace->nr_events);
  2345. printed += fprintf(fp, "%.1f%%", ratio);
  2346. if (ttrace->pfmaj)
  2347. printed += fprintf(fp, ", %lu majfaults", ttrace->pfmaj);
  2348. if (ttrace->pfmin)
  2349. printed += fprintf(fp, ", %lu minfaults", ttrace->pfmin);
  2350. printed += fprintf(fp, ", %.3f msec\n", ttrace->runtime_ms);
  2351. printed += thread__dump_stats(ttrace, trace, fp);
  2352. data->printed += printed;
  2353. return 0;
  2354. }
  2355. static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp)
  2356. {
  2357. struct summary_data data = {
  2358. .fp = fp,
  2359. .trace = trace
  2360. };
  2361. data.printed = trace__fprintf_threads_header(fp);
  2362. machine__for_each_thread(trace->host, trace__fprintf_one_thread, &data);
  2363. return data.printed;
  2364. }
  2365. static int trace__set_duration(const struct option *opt, const char *str,
  2366. int unset __maybe_unused)
  2367. {
  2368. struct trace *trace = opt->value;
  2369. trace->duration_filter = atof(str);
  2370. return 0;
  2371. }
  2372. static int trace__set_filter_pids(const struct option *opt, const char *str,
  2373. int unset __maybe_unused)
  2374. {
  2375. int ret = -1;
  2376. size_t i;
  2377. struct trace *trace = opt->value;
  2378. /*
  2379. * FIXME: introduce a intarray class, plain parse csv and create a
  2380. * { int nr, int entries[] } struct...
  2381. */
  2382. struct intlist *list = intlist__new(str);
  2383. if (list == NULL)
  2384. return -1;
  2385. i = trace->filter_pids.nr = intlist__nr_entries(list) + 1;
  2386. trace->filter_pids.entries = calloc(i, sizeof(pid_t));
  2387. if (trace->filter_pids.entries == NULL)
  2388. goto out;
  2389. trace->filter_pids.entries[0] = getpid();
  2390. for (i = 1; i < trace->filter_pids.nr; ++i)
  2391. trace->filter_pids.entries[i] = intlist__entry(list, i - 1)->i;
  2392. intlist__delete(list);
  2393. ret = 0;
  2394. out:
  2395. return ret;
  2396. }
  2397. static int trace__open_output(struct trace *trace, const char *filename)
  2398. {
  2399. struct stat st;
  2400. if (!stat(filename, &st) && st.st_size) {
  2401. char oldname[PATH_MAX];
  2402. scnprintf(oldname, sizeof(oldname), "%s.old", filename);
  2403. unlink(oldname);
  2404. rename(filename, oldname);
  2405. }
  2406. trace->output = fopen(filename, "w");
  2407. return trace->output == NULL ? -errno : 0;
  2408. }
  2409. static int parse_pagefaults(const struct option *opt, const char *str,
  2410. int unset __maybe_unused)
  2411. {
  2412. int *trace_pgfaults = opt->value;
  2413. if (strcmp(str, "all") == 0)
  2414. *trace_pgfaults |= TRACE_PFMAJ | TRACE_PFMIN;
  2415. else if (strcmp(str, "maj") == 0)
  2416. *trace_pgfaults |= TRACE_PFMAJ;
  2417. else if (strcmp(str, "min") == 0)
  2418. *trace_pgfaults |= TRACE_PFMIN;
  2419. else
  2420. return -1;
  2421. return 0;
  2422. }
  2423. static void evlist__set_evsel_handler(struct perf_evlist *evlist, void *handler)
  2424. {
  2425. struct perf_evsel *evsel;
  2426. evlist__for_each(evlist, evsel)
  2427. evsel->handler = handler;
  2428. }
  2429. int cmd_trace(int argc, const char **argv, const char *prefix __maybe_unused)
  2430. {
  2431. const char *trace_usage[] = {
  2432. "perf trace [<options>] [<command>]",
  2433. "perf trace [<options>] -- <command> [<options>]",
  2434. "perf trace record [<options>] [<command>]",
  2435. "perf trace record [<options>] -- <command> [<options>]",
  2436. NULL
  2437. };
  2438. struct trace trace = {
  2439. .audit = {
  2440. .machine = audit_detect_machine(),
  2441. .open_id = audit_name_to_syscall("open", trace.audit.machine),
  2442. },
  2443. .syscalls = {
  2444. . max = -1,
  2445. },
  2446. .opts = {
  2447. .target = {
  2448. .uid = UINT_MAX,
  2449. .uses_mmap = true,
  2450. },
  2451. .user_freq = UINT_MAX,
  2452. .user_interval = ULLONG_MAX,
  2453. .no_buffering = true,
  2454. .mmap_pages = UINT_MAX,
  2455. .proc_map_timeout = 500,
  2456. },
  2457. .output = stderr,
  2458. .show_comm = true,
  2459. .trace_syscalls = true,
  2460. };
  2461. const char *output_name = NULL;
  2462. const char *ev_qualifier_str = NULL;
  2463. const struct option trace_options[] = {
  2464. OPT_CALLBACK(0, "event", &trace.evlist, "event",
  2465. "event selector. use 'perf list' to list available events",
  2466. parse_events_option),
  2467. OPT_BOOLEAN(0, "comm", &trace.show_comm,
  2468. "show the thread COMM next to its id"),
  2469. OPT_BOOLEAN(0, "tool_stats", &trace.show_tool_stats, "show tool stats"),
  2470. OPT_STRING('e', "expr", &ev_qualifier_str, "expr", "list of syscalls to trace"),
  2471. OPT_STRING('o', "output", &output_name, "file", "output file name"),
  2472. OPT_STRING('i', "input", &input_name, "file", "Analyze events in file"),
  2473. OPT_STRING('p', "pid", &trace.opts.target.pid, "pid",
  2474. "trace events on existing process id"),
  2475. OPT_STRING('t', "tid", &trace.opts.target.tid, "tid",
  2476. "trace events on existing thread id"),
  2477. OPT_CALLBACK(0, "filter-pids", &trace, "CSV list of pids",
  2478. "pids to filter (by the kernel)", trace__set_filter_pids),
  2479. OPT_BOOLEAN('a', "all-cpus", &trace.opts.target.system_wide,
  2480. "system-wide collection from all CPUs"),
  2481. OPT_STRING('C', "cpu", &trace.opts.target.cpu_list, "cpu",
  2482. "list of cpus to monitor"),
  2483. OPT_BOOLEAN(0, "no-inherit", &trace.opts.no_inherit,
  2484. "child tasks do not inherit counters"),
  2485. OPT_CALLBACK('m', "mmap-pages", &trace.opts.mmap_pages, "pages",
  2486. "number of mmap data pages",
  2487. perf_evlist__parse_mmap_pages),
  2488. OPT_STRING('u', "uid", &trace.opts.target.uid_str, "user",
  2489. "user to profile"),
  2490. OPT_CALLBACK(0, "duration", &trace, "float",
  2491. "show only events with duration > N.M ms",
  2492. trace__set_duration),
  2493. OPT_BOOLEAN(0, "sched", &trace.sched, "show blocking scheduler events"),
  2494. OPT_INCR('v', "verbose", &verbose, "be more verbose"),
  2495. OPT_BOOLEAN('T', "time", &trace.full_time,
  2496. "Show full timestamp, not time relative to first start"),
  2497. OPT_BOOLEAN('s', "summary", &trace.summary_only,
  2498. "Show only syscall summary with statistics"),
  2499. OPT_BOOLEAN('S', "with-summary", &trace.summary,
  2500. "Show all syscalls and summary with statistics"),
  2501. OPT_CALLBACK_DEFAULT('F', "pf", &trace.trace_pgfaults, "all|maj|min",
  2502. "Trace pagefaults", parse_pagefaults, "maj"),
  2503. OPT_BOOLEAN(0, "syscalls", &trace.trace_syscalls, "Trace syscalls"),
  2504. OPT_BOOLEAN('f', "force", &trace.force, "don't complain, do it"),
  2505. OPT_UINTEGER(0, "proc-map-timeout", &trace.opts.proc_map_timeout,
  2506. "per thread proc mmap processing timeout in ms"),
  2507. OPT_END()
  2508. };
  2509. const char * const trace_subcommands[] = { "record", NULL };
  2510. int err;
  2511. char bf[BUFSIZ];
  2512. signal(SIGSEGV, sighandler_dump_stack);
  2513. signal(SIGFPE, sighandler_dump_stack);
  2514. trace.evlist = perf_evlist__new();
  2515. if (trace.evlist == NULL) {
  2516. pr_err("Not enough memory to run!\n");
  2517. err = -ENOMEM;
  2518. goto out;
  2519. }
  2520. argc = parse_options_subcommand(argc, argv, trace_options, trace_subcommands,
  2521. trace_usage, PARSE_OPT_STOP_AT_NON_OPTION);
  2522. if (trace.trace_pgfaults) {
  2523. trace.opts.sample_address = true;
  2524. trace.opts.sample_time = true;
  2525. }
  2526. if (trace.evlist->nr_entries > 0)
  2527. evlist__set_evsel_handler(trace.evlist, trace__event_handler);
  2528. if ((argc >= 1) && (strcmp(argv[0], "record") == 0))
  2529. return trace__record(&trace, argc-1, &argv[1]);
  2530. /* summary_only implies summary option, but don't overwrite summary if set */
  2531. if (trace.summary_only)
  2532. trace.summary = trace.summary_only;
  2533. if (!trace.trace_syscalls && !trace.trace_pgfaults &&
  2534. trace.evlist->nr_entries == 0 /* Was --events used? */) {
  2535. pr_err("Please specify something to trace.\n");
  2536. return -1;
  2537. }
  2538. if (output_name != NULL) {
  2539. err = trace__open_output(&trace, output_name);
  2540. if (err < 0) {
  2541. perror("failed to create output file");
  2542. goto out;
  2543. }
  2544. }
  2545. if (ev_qualifier_str != NULL) {
  2546. const char *s = ev_qualifier_str;
  2547. struct strlist_config slist_config = {
  2548. .dirname = system_path(STRACE_GROUPS_DIR),
  2549. };
  2550. trace.not_ev_qualifier = *s == '!';
  2551. if (trace.not_ev_qualifier)
  2552. ++s;
  2553. trace.ev_qualifier = strlist__new(s, &slist_config);
  2554. if (trace.ev_qualifier == NULL) {
  2555. fputs("Not enough memory to parse event qualifier",
  2556. trace.output);
  2557. err = -ENOMEM;
  2558. goto out_close;
  2559. }
  2560. err = trace__validate_ev_qualifier(&trace);
  2561. if (err)
  2562. goto out_close;
  2563. }
  2564. err = target__validate(&trace.opts.target);
  2565. if (err) {
  2566. target__strerror(&trace.opts.target, err, bf, sizeof(bf));
  2567. fprintf(trace.output, "%s", bf);
  2568. goto out_close;
  2569. }
  2570. err = target__parse_uid(&trace.opts.target);
  2571. if (err) {
  2572. target__strerror(&trace.opts.target, err, bf, sizeof(bf));
  2573. fprintf(trace.output, "%s", bf);
  2574. goto out_close;
  2575. }
  2576. if (!argc && target__none(&trace.opts.target))
  2577. trace.opts.target.system_wide = true;
  2578. if (input_name)
  2579. err = trace__replay(&trace);
  2580. else
  2581. err = trace__run(&trace, argc, argv);
  2582. out_close:
  2583. if (output_name != NULL)
  2584. fclose(trace.output);
  2585. out:
  2586. return err;
  2587. }