trace-event-perl.c 15 KB

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  1. /*
  2. * trace-event-perl. Feed perf script events to an embedded Perl interpreter.
  3. *
  4. * Copyright (C) 2009 Tom Zanussi <tzanussi@gmail.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  19. *
  20. */
  21. #include <stdio.h>
  22. #include <stdlib.h>
  23. #include <string.h>
  24. #include <ctype.h>
  25. #include <errno.h>
  26. #include <linux/bitmap.h>
  27. #include "../util.h"
  28. #include <EXTERN.h>
  29. #include <perl.h>
  30. #include "../../perf.h"
  31. #include "../thread.h"
  32. #include "../event.h"
  33. #include "../trace-event.h"
  34. #include "../evsel.h"
  35. #include "../debug.h"
  36. void boot_Perf__Trace__Context(pTHX_ CV *cv);
  37. void boot_DynaLoader(pTHX_ CV *cv);
  38. typedef PerlInterpreter * INTERP;
  39. void xs_init(pTHX);
  40. void xs_init(pTHX)
  41. {
  42. const char *file = __FILE__;
  43. dXSUB_SYS;
  44. newXS("Perf::Trace::Context::bootstrap", boot_Perf__Trace__Context,
  45. file);
  46. newXS("DynaLoader::boot_DynaLoader", boot_DynaLoader, file);
  47. }
  48. INTERP my_perl;
  49. #define FTRACE_MAX_EVENT \
  50. ((1 << (sizeof(unsigned short) * 8)) - 1)
  51. static DECLARE_BITMAP(events_defined, FTRACE_MAX_EVENT);
  52. extern struct scripting_context *scripting_context;
  53. static char *cur_field_name;
  54. static int zero_flag_atom;
  55. static void define_symbolic_value(const char *ev_name,
  56. const char *field_name,
  57. const char *field_value,
  58. const char *field_str)
  59. {
  60. unsigned long long value;
  61. dSP;
  62. value = eval_flag(field_value);
  63. ENTER;
  64. SAVETMPS;
  65. PUSHMARK(SP);
  66. XPUSHs(sv_2mortal(newSVpv(ev_name, 0)));
  67. XPUSHs(sv_2mortal(newSVpv(field_name, 0)));
  68. XPUSHs(sv_2mortal(newSVuv(value)));
  69. XPUSHs(sv_2mortal(newSVpv(field_str, 0)));
  70. PUTBACK;
  71. if (get_cv("main::define_symbolic_value", 0))
  72. call_pv("main::define_symbolic_value", G_SCALAR);
  73. SPAGAIN;
  74. PUTBACK;
  75. FREETMPS;
  76. LEAVE;
  77. }
  78. static void define_symbolic_values(struct print_flag_sym *field,
  79. const char *ev_name,
  80. const char *field_name)
  81. {
  82. define_symbolic_value(ev_name, field_name, field->value, field->str);
  83. if (field->next)
  84. define_symbolic_values(field->next, ev_name, field_name);
  85. }
  86. static void define_symbolic_field(const char *ev_name,
  87. const char *field_name)
  88. {
  89. dSP;
  90. ENTER;
  91. SAVETMPS;
  92. PUSHMARK(SP);
  93. XPUSHs(sv_2mortal(newSVpv(ev_name, 0)));
  94. XPUSHs(sv_2mortal(newSVpv(field_name, 0)));
  95. PUTBACK;
  96. if (get_cv("main::define_symbolic_field", 0))
  97. call_pv("main::define_symbolic_field", G_SCALAR);
  98. SPAGAIN;
  99. PUTBACK;
  100. FREETMPS;
  101. LEAVE;
  102. }
  103. static void define_flag_value(const char *ev_name,
  104. const char *field_name,
  105. const char *field_value,
  106. const char *field_str)
  107. {
  108. unsigned long long value;
  109. dSP;
  110. value = eval_flag(field_value);
  111. ENTER;
  112. SAVETMPS;
  113. PUSHMARK(SP);
  114. XPUSHs(sv_2mortal(newSVpv(ev_name, 0)));
  115. XPUSHs(sv_2mortal(newSVpv(field_name, 0)));
  116. XPUSHs(sv_2mortal(newSVuv(value)));
  117. XPUSHs(sv_2mortal(newSVpv(field_str, 0)));
  118. PUTBACK;
  119. if (get_cv("main::define_flag_value", 0))
  120. call_pv("main::define_flag_value", G_SCALAR);
  121. SPAGAIN;
  122. PUTBACK;
  123. FREETMPS;
  124. LEAVE;
  125. }
  126. static void define_flag_values(struct print_flag_sym *field,
  127. const char *ev_name,
  128. const char *field_name)
  129. {
  130. define_flag_value(ev_name, field_name, field->value, field->str);
  131. if (field->next)
  132. define_flag_values(field->next, ev_name, field_name);
  133. }
  134. static void define_flag_field(const char *ev_name,
  135. const char *field_name,
  136. const char *delim)
  137. {
  138. dSP;
  139. ENTER;
  140. SAVETMPS;
  141. PUSHMARK(SP);
  142. XPUSHs(sv_2mortal(newSVpv(ev_name, 0)));
  143. XPUSHs(sv_2mortal(newSVpv(field_name, 0)));
  144. XPUSHs(sv_2mortal(newSVpv(delim, 0)));
  145. PUTBACK;
  146. if (get_cv("main::define_flag_field", 0))
  147. call_pv("main::define_flag_field", G_SCALAR);
  148. SPAGAIN;
  149. PUTBACK;
  150. FREETMPS;
  151. LEAVE;
  152. }
  153. static void define_event_symbols(struct event_format *event,
  154. const char *ev_name,
  155. struct print_arg *args)
  156. {
  157. switch (args->type) {
  158. case PRINT_NULL:
  159. break;
  160. case PRINT_ATOM:
  161. define_flag_value(ev_name, cur_field_name, "0",
  162. args->atom.atom);
  163. zero_flag_atom = 0;
  164. break;
  165. case PRINT_FIELD:
  166. free(cur_field_name);
  167. cur_field_name = strdup(args->field.name);
  168. break;
  169. case PRINT_FLAGS:
  170. define_event_symbols(event, ev_name, args->flags.field);
  171. define_flag_field(ev_name, cur_field_name, args->flags.delim);
  172. define_flag_values(args->flags.flags, ev_name, cur_field_name);
  173. break;
  174. case PRINT_SYMBOL:
  175. define_event_symbols(event, ev_name, args->symbol.field);
  176. define_symbolic_field(ev_name, cur_field_name);
  177. define_symbolic_values(args->symbol.symbols, ev_name,
  178. cur_field_name);
  179. break;
  180. case PRINT_HEX:
  181. define_event_symbols(event, ev_name, args->hex.field);
  182. define_event_symbols(event, ev_name, args->hex.size);
  183. break;
  184. case PRINT_BSTRING:
  185. case PRINT_DYNAMIC_ARRAY:
  186. case PRINT_STRING:
  187. case PRINT_BITMASK:
  188. break;
  189. case PRINT_TYPE:
  190. define_event_symbols(event, ev_name, args->typecast.item);
  191. break;
  192. case PRINT_OP:
  193. if (strcmp(args->op.op, ":") == 0)
  194. zero_flag_atom = 1;
  195. define_event_symbols(event, ev_name, args->op.left);
  196. define_event_symbols(event, ev_name, args->op.right);
  197. break;
  198. case PRINT_FUNC:
  199. default:
  200. pr_err("Unsupported print arg type\n");
  201. /* we should warn... */
  202. return;
  203. }
  204. if (args->next)
  205. define_event_symbols(event, ev_name, args->next);
  206. }
  207. static void perl_process_tracepoint(struct perf_sample *sample,
  208. struct perf_evsel *evsel,
  209. struct thread *thread)
  210. {
  211. struct event_format *event = evsel->tp_format;
  212. struct format_field *field;
  213. static char handler[256];
  214. unsigned long long val;
  215. unsigned long s, ns;
  216. int pid;
  217. int cpu = sample->cpu;
  218. void *data = sample->raw_data;
  219. unsigned long long nsecs = sample->time;
  220. const char *comm = thread__comm_str(thread);
  221. dSP;
  222. if (evsel->attr.type != PERF_TYPE_TRACEPOINT)
  223. return;
  224. if (!event)
  225. die("ug! no event found for type %" PRIu64, (u64)evsel->attr.config);
  226. pid = raw_field_value(event, "common_pid", data);
  227. sprintf(handler, "%s::%s", event->system, event->name);
  228. if (!test_and_set_bit(event->id, events_defined))
  229. define_event_symbols(event, handler, event->print_fmt.args);
  230. s = nsecs / NSECS_PER_SEC;
  231. ns = nsecs - s * NSECS_PER_SEC;
  232. scripting_context->event_data = data;
  233. scripting_context->pevent = evsel->tp_format->pevent;
  234. ENTER;
  235. SAVETMPS;
  236. PUSHMARK(SP);
  237. XPUSHs(sv_2mortal(newSVpv(handler, 0)));
  238. XPUSHs(sv_2mortal(newSViv(PTR2IV(scripting_context))));
  239. XPUSHs(sv_2mortal(newSVuv(cpu)));
  240. XPUSHs(sv_2mortal(newSVuv(s)));
  241. XPUSHs(sv_2mortal(newSVuv(ns)));
  242. XPUSHs(sv_2mortal(newSViv(pid)));
  243. XPUSHs(sv_2mortal(newSVpv(comm, 0)));
  244. /* common fields other than pid can be accessed via xsub fns */
  245. for (field = event->format.fields; field; field = field->next) {
  246. if (field->flags & FIELD_IS_STRING) {
  247. int offset;
  248. if (field->flags & FIELD_IS_DYNAMIC) {
  249. offset = *(int *)(data + field->offset);
  250. offset &= 0xffff;
  251. } else
  252. offset = field->offset;
  253. XPUSHs(sv_2mortal(newSVpv((char *)data + offset, 0)));
  254. } else { /* FIELD_IS_NUMERIC */
  255. val = read_size(event, data + field->offset,
  256. field->size);
  257. if (field->flags & FIELD_IS_SIGNED) {
  258. XPUSHs(sv_2mortal(newSViv(val)));
  259. } else {
  260. XPUSHs(sv_2mortal(newSVuv(val)));
  261. }
  262. }
  263. }
  264. PUTBACK;
  265. if (get_cv(handler, 0))
  266. call_pv(handler, G_SCALAR);
  267. else if (get_cv("main::trace_unhandled", 0)) {
  268. XPUSHs(sv_2mortal(newSVpv(handler, 0)));
  269. XPUSHs(sv_2mortal(newSViv(PTR2IV(scripting_context))));
  270. XPUSHs(sv_2mortal(newSVuv(cpu)));
  271. XPUSHs(sv_2mortal(newSVuv(nsecs)));
  272. XPUSHs(sv_2mortal(newSViv(pid)));
  273. XPUSHs(sv_2mortal(newSVpv(comm, 0)));
  274. call_pv("main::trace_unhandled", G_SCALAR);
  275. }
  276. SPAGAIN;
  277. PUTBACK;
  278. FREETMPS;
  279. LEAVE;
  280. }
  281. static void perl_process_event_generic(union perf_event *event,
  282. struct perf_sample *sample,
  283. struct perf_evsel *evsel)
  284. {
  285. dSP;
  286. if (!get_cv("process_event", 0))
  287. return;
  288. ENTER;
  289. SAVETMPS;
  290. PUSHMARK(SP);
  291. XPUSHs(sv_2mortal(newSVpvn((const char *)event, event->header.size)));
  292. XPUSHs(sv_2mortal(newSVpvn((const char *)&evsel->attr, sizeof(evsel->attr))));
  293. XPUSHs(sv_2mortal(newSVpvn((const char *)sample, sizeof(*sample))));
  294. XPUSHs(sv_2mortal(newSVpvn((const char *)sample->raw_data, sample->raw_size)));
  295. PUTBACK;
  296. call_pv("process_event", G_SCALAR);
  297. SPAGAIN;
  298. PUTBACK;
  299. FREETMPS;
  300. LEAVE;
  301. }
  302. static void perl_process_event(union perf_event *event,
  303. struct perf_sample *sample,
  304. struct perf_evsel *evsel,
  305. struct thread *thread,
  306. struct addr_location *al __maybe_unused)
  307. {
  308. perl_process_tracepoint(sample, evsel, thread);
  309. perl_process_event_generic(event, sample, evsel);
  310. }
  311. static void run_start_sub(void)
  312. {
  313. dSP; /* access to Perl stack */
  314. PUSHMARK(SP);
  315. if (get_cv("main::trace_begin", 0))
  316. call_pv("main::trace_begin", G_DISCARD | G_NOARGS);
  317. }
  318. /*
  319. * Start trace script
  320. */
  321. static int perl_start_script(const char *script, int argc, const char **argv)
  322. {
  323. const char **command_line;
  324. int i, err = 0;
  325. command_line = malloc((argc + 2) * sizeof(const char *));
  326. command_line[0] = "";
  327. command_line[1] = script;
  328. for (i = 2; i < argc + 2; i++)
  329. command_line[i] = argv[i - 2];
  330. my_perl = perl_alloc();
  331. perl_construct(my_perl);
  332. if (perl_parse(my_perl, xs_init, argc + 2, (char **)command_line,
  333. (char **)NULL)) {
  334. err = -1;
  335. goto error;
  336. }
  337. if (perl_run(my_perl)) {
  338. err = -1;
  339. goto error;
  340. }
  341. if (SvTRUE(ERRSV)) {
  342. err = -1;
  343. goto error;
  344. }
  345. run_start_sub();
  346. free(command_line);
  347. return 0;
  348. error:
  349. perl_free(my_perl);
  350. free(command_line);
  351. return err;
  352. }
  353. static int perl_flush_script(void)
  354. {
  355. return 0;
  356. }
  357. /*
  358. * Stop trace script
  359. */
  360. static int perl_stop_script(void)
  361. {
  362. dSP; /* access to Perl stack */
  363. PUSHMARK(SP);
  364. if (get_cv("main::trace_end", 0))
  365. call_pv("main::trace_end", G_DISCARD | G_NOARGS);
  366. perl_destruct(my_perl);
  367. perl_free(my_perl);
  368. return 0;
  369. }
  370. static int perl_generate_script(struct pevent *pevent, const char *outfile)
  371. {
  372. struct event_format *event = NULL;
  373. struct format_field *f;
  374. char fname[PATH_MAX];
  375. int not_first, count;
  376. FILE *ofp;
  377. sprintf(fname, "%s.pl", outfile);
  378. ofp = fopen(fname, "w");
  379. if (ofp == NULL) {
  380. fprintf(stderr, "couldn't open %s\n", fname);
  381. return -1;
  382. }
  383. fprintf(ofp, "# perf script event handlers, "
  384. "generated by perf script -g perl\n");
  385. fprintf(ofp, "# Licensed under the terms of the GNU GPL"
  386. " License version 2\n\n");
  387. fprintf(ofp, "# The common_* event handler fields are the most useful "
  388. "fields common to\n");
  389. fprintf(ofp, "# all events. They don't necessarily correspond to "
  390. "the 'common_*' fields\n");
  391. fprintf(ofp, "# in the format files. Those fields not available as "
  392. "handler params can\n");
  393. fprintf(ofp, "# be retrieved using Perl functions of the form "
  394. "common_*($context).\n");
  395. fprintf(ofp, "# See Context.pm for the list of available "
  396. "functions.\n\n");
  397. fprintf(ofp, "use lib \"$ENV{'PERF_EXEC_PATH'}/scripts/perl/"
  398. "Perf-Trace-Util/lib\";\n");
  399. fprintf(ofp, "use lib \"./Perf-Trace-Util/lib\";\n");
  400. fprintf(ofp, "use Perf::Trace::Core;\n");
  401. fprintf(ofp, "use Perf::Trace::Context;\n");
  402. fprintf(ofp, "use Perf::Trace::Util;\n\n");
  403. fprintf(ofp, "sub trace_begin\n{\n\t# optional\n}\n\n");
  404. fprintf(ofp, "sub trace_end\n{\n\t# optional\n}\n\n");
  405. while ((event = trace_find_next_event(pevent, event))) {
  406. fprintf(ofp, "sub %s::%s\n{\n", event->system, event->name);
  407. fprintf(ofp, "\tmy (");
  408. fprintf(ofp, "$event_name, ");
  409. fprintf(ofp, "$context, ");
  410. fprintf(ofp, "$common_cpu, ");
  411. fprintf(ofp, "$common_secs, ");
  412. fprintf(ofp, "$common_nsecs,\n");
  413. fprintf(ofp, "\t $common_pid, ");
  414. fprintf(ofp, "$common_comm,\n\t ");
  415. not_first = 0;
  416. count = 0;
  417. for (f = event->format.fields; f; f = f->next) {
  418. if (not_first++)
  419. fprintf(ofp, ", ");
  420. if (++count % 5 == 0)
  421. fprintf(ofp, "\n\t ");
  422. fprintf(ofp, "$%s", f->name);
  423. }
  424. fprintf(ofp, ") = @_;\n\n");
  425. fprintf(ofp, "\tprint_header($event_name, $common_cpu, "
  426. "$common_secs, $common_nsecs,\n\t "
  427. "$common_pid, $common_comm);\n\n");
  428. fprintf(ofp, "\tprintf(\"");
  429. not_first = 0;
  430. count = 0;
  431. for (f = event->format.fields; f; f = f->next) {
  432. if (not_first++)
  433. fprintf(ofp, ", ");
  434. if (count && count % 4 == 0) {
  435. fprintf(ofp, "\".\n\t \"");
  436. }
  437. count++;
  438. fprintf(ofp, "%s=", f->name);
  439. if (f->flags & FIELD_IS_STRING ||
  440. f->flags & FIELD_IS_FLAG ||
  441. f->flags & FIELD_IS_SYMBOLIC)
  442. fprintf(ofp, "%%s");
  443. else if (f->flags & FIELD_IS_SIGNED)
  444. fprintf(ofp, "%%d");
  445. else
  446. fprintf(ofp, "%%u");
  447. }
  448. fprintf(ofp, "\\n\",\n\t ");
  449. not_first = 0;
  450. count = 0;
  451. for (f = event->format.fields; f; f = f->next) {
  452. if (not_first++)
  453. fprintf(ofp, ", ");
  454. if (++count % 5 == 0)
  455. fprintf(ofp, "\n\t ");
  456. if (f->flags & FIELD_IS_FLAG) {
  457. if ((count - 1) % 5 != 0) {
  458. fprintf(ofp, "\n\t ");
  459. count = 4;
  460. }
  461. fprintf(ofp, "flag_str(\"");
  462. fprintf(ofp, "%s::%s\", ", event->system,
  463. event->name);
  464. fprintf(ofp, "\"%s\", $%s)", f->name,
  465. f->name);
  466. } else if (f->flags & FIELD_IS_SYMBOLIC) {
  467. if ((count - 1) % 5 != 0) {
  468. fprintf(ofp, "\n\t ");
  469. count = 4;
  470. }
  471. fprintf(ofp, "symbol_str(\"");
  472. fprintf(ofp, "%s::%s\", ", event->system,
  473. event->name);
  474. fprintf(ofp, "\"%s\", $%s)", f->name,
  475. f->name);
  476. } else
  477. fprintf(ofp, "$%s", f->name);
  478. }
  479. fprintf(ofp, ");\n");
  480. fprintf(ofp, "}\n\n");
  481. }
  482. fprintf(ofp, "sub trace_unhandled\n{\n\tmy ($event_name, $context, "
  483. "$common_cpu, $common_secs, $common_nsecs,\n\t "
  484. "$common_pid, $common_comm) = @_;\n\n");
  485. fprintf(ofp, "\tprint_header($event_name, $common_cpu, "
  486. "$common_secs, $common_nsecs,\n\t $common_pid, "
  487. "$common_comm);\n}\n\n");
  488. fprintf(ofp, "sub print_header\n{\n"
  489. "\tmy ($event_name, $cpu, $secs, $nsecs, $pid, $comm) = @_;\n\n"
  490. "\tprintf(\"%%-20s %%5u %%05u.%%09u %%8u %%-20s \",\n\t "
  491. "$event_name, $cpu, $secs, $nsecs, $pid, $comm);\n}\n");
  492. fprintf(ofp,
  493. "\n# Packed byte string args of process_event():\n"
  494. "#\n"
  495. "# $event:\tunion perf_event\tutil/event.h\n"
  496. "# $attr:\tstruct perf_event_attr\tlinux/perf_event.h\n"
  497. "# $sample:\tstruct perf_sample\tutil/event.h\n"
  498. "# $raw_data:\tperf_sample->raw_data\tutil/event.h\n"
  499. "\n"
  500. "sub process_event\n"
  501. "{\n"
  502. "\tmy ($event, $attr, $sample, $raw_data) = @_;\n"
  503. "\n"
  504. "\tmy @event\t= unpack(\"LSS\", $event);\n"
  505. "\tmy @attr\t= unpack(\"LLQQQQQLLQQ\", $attr);\n"
  506. "\tmy @sample\t= unpack(\"QLLQQQQQLL\", $sample);\n"
  507. "\tmy @raw_data\t= unpack(\"C*\", $raw_data);\n"
  508. "\n"
  509. "\tuse Data::Dumper;\n"
  510. "\tprint Dumper \\@event, \\@attr, \\@sample, \\@raw_data;\n"
  511. "}\n");
  512. fclose(ofp);
  513. fprintf(stderr, "generated Perl script: %s\n", fname);
  514. return 0;
  515. }
  516. struct scripting_ops perl_scripting_ops = {
  517. .name = "Perl",
  518. .start_script = perl_start_script,
  519. .flush_script = perl_flush_script,
  520. .stop_script = perl_stop_script,
  521. .process_event = perl_process_event,
  522. .generate_script = perl_generate_script,
  523. };