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perf tools: Handle * as typecast in trace parsing
[net-next-2.6.git] / tools / perf / util / trace-event-parse.c
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1/*
2 * Copyright (C) 2009, Steven Rostedt <srostedt@redhat.com>
3 *
4 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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; version 2 of the License (not later!)
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 *
19 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
20 *
21 * The parts for function graph printing was taken and modified from the
22 * Linux Kernel that were written by Frederic Weisbecker.
23 */
24#define _GNU_SOURCE
25#include <stdio.h>
26#include <stdlib.h>
27#include <string.h>
28#include <ctype.h>
29#include <errno.h>
30
31#undef _GNU_SOURCE
1ef2ed10 32#include "../perf.h"
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33#include "util.h"
34#include "trace-event.h"
35
36int header_page_ts_offset;
37int header_page_ts_size;
38int header_page_size_offset;
39int header_page_size_size;
40int header_page_data_offset;
41int header_page_data_size;
42
43static char *input_buf;
44static unsigned long long input_buf_ptr;
45static unsigned long long input_buf_siz;
46
47static int cpus;
48static int long_size;
49
50static void init_input_buf(char *buf, unsigned long long size)
51{
52 input_buf = buf;
53 input_buf_siz = size;
54 input_buf_ptr = 0;
55}
56
57struct cmdline {
58 char *comm;
59 int pid;
60};
61
62static struct cmdline *cmdlines;
63static int cmdline_count;
64
65static int cmdline_cmp(const void *a, const void *b)
66{
67 const struct cmdline *ca = a;
68 const struct cmdline *cb = b;
69
70 if (ca->pid < cb->pid)
71 return -1;
72 if (ca->pid > cb->pid)
73 return 1;
74
75 return 0;
76}
77
78void parse_cmdlines(char *file, int size __unused)
79{
80 struct cmdline_list {
81 struct cmdline_list *next;
82 char *comm;
83 int pid;
84 } *list = NULL, *item;
85 char *line;
86 char *next = NULL;
87 int i;
88
89 line = strtok_r(file, "\n", &next);
90 while (line) {
91 item = malloc_or_die(sizeof(*item));
92 sscanf(line, "%d %as", &item->pid,
65014ab3 93 (float *)(void *)&item->comm); /* workaround gcc warning */
ea4010d1
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94 item->next = list;
95 list = item;
96 line = strtok_r(NULL, "\n", &next);
97 cmdline_count++;
98 }
99
100 cmdlines = malloc_or_die(sizeof(*cmdlines) * cmdline_count);
101
102 i = 0;
103 while (list) {
104 cmdlines[i].pid = list->pid;
105 cmdlines[i].comm = list->comm;
106 i++;
107 item = list;
108 list = list->next;
109 free(item);
110 }
111
112 qsort(cmdlines, cmdline_count, sizeof(*cmdlines), cmdline_cmp);
113}
114
115static struct func_map {
116 unsigned long long addr;
117 char *func;
118 char *mod;
119} *func_list;
120static unsigned int func_count;
121
122static int func_cmp(const void *a, const void *b)
123{
124 const struct func_map *fa = a;
125 const struct func_map *fb = b;
126
127 if (fa->addr < fb->addr)
128 return -1;
129 if (fa->addr > fb->addr)
130 return 1;
131
132 return 0;
133}
134
135void parse_proc_kallsyms(char *file, unsigned int size __unused)
136{
137 struct func_list {
138 struct func_list *next;
139 unsigned long long addr;
140 char *func;
141 char *mod;
142 } *list = NULL, *item;
143 char *line;
144 char *next = NULL;
145 char *addr_str;
146 char ch;
147 int ret;
148 int i;
149
150 line = strtok_r(file, "\n", &next);
151 while (line) {
152 item = malloc_or_die(sizeof(*item));
153 item->mod = NULL;
154 ret = sscanf(line, "%as %c %as\t[%as",
65014ab3 155 (float *)(void *)&addr_str, /* workaround gcc warning */
ea4010d1 156 &ch,
65014ab3
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157 (float *)(void *)&item->func,
158 (float *)(void *)&item->mod);
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159 item->addr = strtoull(addr_str, NULL, 16);
160 free(addr_str);
161
162 /* truncate the extra ']' */
163 if (item->mod)
164 item->mod[strlen(item->mod) - 1] = 0;
165
166
167 item->next = list;
168 list = item;
169 line = strtok_r(NULL, "\n", &next);
170 func_count++;
171 }
172
173 func_list = malloc_or_die(sizeof(*func_list) * func_count + 1);
174
175 i = 0;
176 while (list) {
177 func_list[i].func = list->func;
178 func_list[i].addr = list->addr;
179 func_list[i].mod = list->mod;
180 i++;
181 item = list;
182 list = list->next;
183 free(item);
184 }
185
186 qsort(func_list, func_count, sizeof(*func_list), func_cmp);
187
188 /*
189 * Add a special record at the end.
190 */
191 func_list[func_count].func = NULL;
192 func_list[func_count].addr = 0;
193 func_list[func_count].mod = NULL;
194}
195
196/*
197 * We are searching for a record in between, not an exact
198 * match.
199 */
200static int func_bcmp(const void *a, const void *b)
201{
202 const struct func_map *fa = a;
203 const struct func_map *fb = b;
204
205 if ((fa->addr == fb->addr) ||
206
207 (fa->addr > fb->addr &&
208 fa->addr < (fb+1)->addr))
209 return 0;
210
211 if (fa->addr < fb->addr)
212 return -1;
213
214 return 1;
215}
216
217static struct func_map *find_func(unsigned long long addr)
218{
219 struct func_map *func;
220 struct func_map key;
221
222 key.addr = addr;
223
224 func = bsearch(&key, func_list, func_count, sizeof(*func_list),
225 func_bcmp);
226
227 return func;
228}
229
230void print_funcs(void)
231{
232 int i;
233
234 for (i = 0; i < (int)func_count; i++) {
235 printf("%016llx %s",
236 func_list[i].addr,
237 func_list[i].func);
238 if (func_list[i].mod)
239 printf(" [%s]\n", func_list[i].mod);
240 else
241 printf("\n");
242 }
243}
244
245static struct printk_map {
246 unsigned long long addr;
247 char *printk;
248} *printk_list;
249static unsigned int printk_count;
250
251static int printk_cmp(const void *a, const void *b)
252{
253 const struct func_map *fa = a;
254 const struct func_map *fb = b;
255
256 if (fa->addr < fb->addr)
257 return -1;
258 if (fa->addr > fb->addr)
259 return 1;
260
261 return 0;
262}
263
264static struct printk_map *find_printk(unsigned long long addr)
265{
266 struct printk_map *printk;
267 struct printk_map key;
268
269 key.addr = addr;
270
271 printk = bsearch(&key, printk_list, printk_count, sizeof(*printk_list),
272 printk_cmp);
273
274 return printk;
275}
276
277void parse_ftrace_printk(char *file, unsigned int size __unused)
278{
279 struct printk_list {
280 struct printk_list *next;
281 unsigned long long addr;
282 char *printk;
283 } *list = NULL, *item;
284 char *line;
285 char *next = NULL;
286 char *addr_str;
287 int ret;
288 int i;
289
290 line = strtok_r(file, "\n", &next);
291 while (line) {
292 item = malloc_or_die(sizeof(*item));
293 ret = sscanf(line, "%as : %as",
65014ab3
IM
294 (float *)(void *)&addr_str, /* workaround gcc warning */
295 (float *)(void *)&item->printk);
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296 item->addr = strtoull(addr_str, NULL, 16);
297 free(addr_str);
298
299 item->next = list;
300 list = item;
301 line = strtok_r(NULL, "\n", &next);
302 printk_count++;
303 }
304
305 printk_list = malloc_or_die(sizeof(*printk_list) * printk_count + 1);
306
307 i = 0;
308 while (list) {
309 printk_list[i].printk = list->printk;
310 printk_list[i].addr = list->addr;
311 i++;
312 item = list;
313 list = list->next;
314 free(item);
315 }
316
317 qsort(printk_list, printk_count, sizeof(*printk_list), printk_cmp);
318}
319
320void print_printk(void)
321{
322 int i;
323
324 for (i = 0; i < (int)printk_count; i++) {
325 printf("%016llx %s\n",
326 printk_list[i].addr,
327 printk_list[i].printk);
328 }
329}
330
331static struct event *alloc_event(void)
332{
333 struct event *event;
334
335 event = malloc_or_die(sizeof(*event));
336 memset(event, 0, sizeof(*event));
337
338 return event;
339}
340
341enum event_type {
342 EVENT_ERROR,
343 EVENT_NONE,
344 EVENT_SPACE,
345 EVENT_NEWLINE,
346 EVENT_OP,
347 EVENT_DELIM,
348 EVENT_ITEM,
349 EVENT_DQUOTE,
350 EVENT_SQUOTE,
351};
352
353static struct event *event_list;
354
355static void add_event(struct event *event)
356{
357 event->next = event_list;
358 event_list = event;
359}
360
361static int event_item_type(enum event_type type)
362{
363 switch (type) {
364 case EVENT_ITEM ... EVENT_SQUOTE:
365 return 1;
366 case EVENT_ERROR ... EVENT_DELIM:
367 default:
368 return 0;
369 }
370}
371
372static void free_arg(struct print_arg *arg)
373{
374 if (!arg)
375 return;
376
377 switch (arg->type) {
378 case PRINT_ATOM:
379 if (arg->atom.atom)
380 free(arg->atom.atom);
381 break;
382 case PRINT_NULL:
383 case PRINT_FIELD ... PRINT_OP:
384 default:
385 /* todo */
386 break;
387 }
388
389 free(arg);
390}
391
392static enum event_type get_type(int ch)
393{
394 if (ch == '\n')
395 return EVENT_NEWLINE;
396 if (isspace(ch))
397 return EVENT_SPACE;
398 if (isalnum(ch) || ch == '_')
399 return EVENT_ITEM;
400 if (ch == '\'')
401 return EVENT_SQUOTE;
402 if (ch == '"')
403 return EVENT_DQUOTE;
404 if (!isprint(ch))
405 return EVENT_NONE;
406 if (ch == '(' || ch == ')' || ch == ',')
407 return EVENT_DELIM;
408
409 return EVENT_OP;
410}
411
412static int __read_char(void)
413{
414 if (input_buf_ptr >= input_buf_siz)
415 return -1;
416
417 return input_buf[input_buf_ptr++];
418}
419
420static int __peek_char(void)
421{
422 if (input_buf_ptr >= input_buf_siz)
423 return -1;
424
425 return input_buf[input_buf_ptr];
426}
427
428static enum event_type __read_token(char **tok)
429{
430 char buf[BUFSIZ];
431 int ch, last_ch, quote_ch, next_ch;
432 int i = 0;
433 int tok_size = 0;
434 enum event_type type;
435
436 *tok = NULL;
437
438
439 ch = __read_char();
440 if (ch < 0)
441 return EVENT_NONE;
442
443 type = get_type(ch);
444 if (type == EVENT_NONE)
445 return type;
446
447 buf[i++] = ch;
448
449 switch (type) {
450 case EVENT_NEWLINE:
451 case EVENT_DELIM:
452 *tok = malloc_or_die(2);
453 (*tok)[0] = ch;
454 (*tok)[1] = 0;
455 return type;
456
457 case EVENT_OP:
458 switch (ch) {
459 case '-':
460 next_ch = __peek_char();
461 if (next_ch == '>') {
462 buf[i++] = __read_char();
463 break;
464 }
465 /* fall through */
466 case '+':
467 case '|':
468 case '&':
469 case '>':
470 case '<':
471 last_ch = ch;
472 ch = __peek_char();
473 if (ch != last_ch)
474 goto test_equal;
475 buf[i++] = __read_char();
476 switch (last_ch) {
477 case '>':
478 case '<':
479 goto test_equal;
480 default:
481 break;
482 }
483 break;
484 case '!':
485 case '=':
486 goto test_equal;
487 default: /* what should we do instead? */
488 break;
489 }
490 buf[i] = 0;
491 *tok = strdup(buf);
492 return type;
493
494 test_equal:
495 ch = __peek_char();
496 if (ch == '=')
497 buf[i++] = __read_char();
498 break;
499
500 case EVENT_DQUOTE:
501 case EVENT_SQUOTE:
502 /* don't keep quotes */
503 i--;
504 quote_ch = ch;
505 last_ch = 0;
506 do {
507 if (i == (BUFSIZ - 1)) {
508 buf[i] = 0;
509 if (*tok) {
510 *tok = realloc(*tok, tok_size + BUFSIZ);
511 if (!*tok)
512 return EVENT_NONE;
513 strcat(*tok, buf);
514 } else
515 *tok = strdup(buf);
516
517 if (!*tok)
518 return EVENT_NONE;
519 tok_size += BUFSIZ;
520 i = 0;
521 }
522 last_ch = ch;
523 ch = __read_char();
524 buf[i++] = ch;
91ff2bc1
SR
525 /* the '\' '\' will cancel itself */
526 if (ch == '\\' && last_ch == '\\')
527 last_ch = 0;
528 } while (ch != quote_ch || last_ch == '\\');
ea4010d1
SR
529 /* remove the last quote */
530 i--;
531 goto out;
532
533 case EVENT_ERROR ... EVENT_SPACE:
534 case EVENT_ITEM:
535 default:
536 break;
537 }
538
539 while (get_type(__peek_char()) == type) {
540 if (i == (BUFSIZ - 1)) {
541 buf[i] = 0;
542 if (*tok) {
543 *tok = realloc(*tok, tok_size + BUFSIZ);
544 if (!*tok)
545 return EVENT_NONE;
546 strcat(*tok, buf);
547 } else
548 *tok = strdup(buf);
549
550 if (!*tok)
551 return EVENT_NONE;
552 tok_size += BUFSIZ;
553 i = 0;
554 }
555 ch = __read_char();
556 buf[i++] = ch;
557 }
558
559 out:
560 buf[i] = 0;
561 if (*tok) {
562 *tok = realloc(*tok, tok_size + i);
563 if (!*tok)
564 return EVENT_NONE;
565 strcat(*tok, buf);
566 } else
567 *tok = strdup(buf);
568 if (!*tok)
569 return EVENT_NONE;
570
571 return type;
572}
573
574static void free_token(char *tok)
575{
576 if (tok)
577 free(tok);
578}
579
580static enum event_type read_token(char **tok)
581{
582 enum event_type type;
583
584 for (;;) {
585 type = __read_token(tok);
586 if (type != EVENT_SPACE)
587 return type;
588
589 free_token(*tok);
590 }
591
592 /* not reached */
593 return EVENT_NONE;
594}
595
596/* no newline */
597static enum event_type read_token_item(char **tok)
598{
599 enum event_type type;
600
601 for (;;) {
602 type = __read_token(tok);
603 if (type != EVENT_SPACE && type != EVENT_NEWLINE)
604 return type;
605
606 free_token(*tok);
607 }
608
609 /* not reached */
610 return EVENT_NONE;
611}
612
613static int test_type(enum event_type type, enum event_type expect)
614{
615 if (type != expect) {
616 die("Error: expected type %d but read %d",
617 expect, type);
618 return -1;
619 }
620 return 0;
621}
622
623static int test_type_token(enum event_type type, char *token,
cbef79a8 624 enum event_type expect, const char *expect_tok)
ea4010d1
SR
625{
626 if (type != expect) {
627 die("Error: expected type %d but read %d",
628 expect, type);
629 return -1;
630 }
631
632 if (strcmp(token, expect_tok) != 0) {
633 die("Error: expected '%s' but read '%s'",
634 expect_tok, token);
635 return -1;
636 }
637 return 0;
638}
639
640static int __read_expect_type(enum event_type expect, char **tok, int newline_ok)
641{
642 enum event_type type;
643
644 if (newline_ok)
645 type = read_token(tok);
646 else
647 type = read_token_item(tok);
648 return test_type(type, expect);
649}
650
651static int read_expect_type(enum event_type expect, char **tok)
652{
653 return __read_expect_type(expect, tok, 1);
654}
655
cbef79a8 656static int __read_expected(enum event_type expect, const char *str, int newline_ok)
ea4010d1
SR
657{
658 enum event_type type;
659 char *token;
660 int ret;
661
662 if (newline_ok)
663 type = read_token(&token);
664 else
665 type = read_token_item(&token);
666
667 ret = test_type_token(type, token, expect, str);
668
669 free_token(token);
670
671 return 0;
672}
673
cbef79a8 674static int read_expected(enum event_type expect, const char *str)
ea4010d1
SR
675{
676 return __read_expected(expect, str, 1);
677}
678
cbef79a8 679static int read_expected_item(enum event_type expect, const char *str)
ea4010d1
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680{
681 return __read_expected(expect, str, 0);
682}
683
684static char *event_read_name(void)
685{
686 char *token;
687
688 if (read_expected(EVENT_ITEM, (char *)"name") < 0)
689 return NULL;
690
691 if (read_expected(EVENT_OP, (char *)":") < 0)
692 return NULL;
693
694 if (read_expect_type(EVENT_ITEM, &token) < 0)
695 goto fail;
696
697 return token;
698
699 fail:
700 free_token(token);
701 return NULL;
702}
703
704static int event_read_id(void)
705{
706 char *token;
707 int id;
708
709 if (read_expected_item(EVENT_ITEM, (char *)"ID") < 0)
710 return -1;
711
712 if (read_expected(EVENT_OP, (char *)":") < 0)
713 return -1;
714
715 if (read_expect_type(EVENT_ITEM, &token) < 0)
716 goto fail;
717
718 id = strtoul(token, NULL, 0);
719 free_token(token);
720 return id;
721
722 fail:
723 free_token(token);
724 return -1;
725}
726
064739bc
TZ
727static int field_is_string(struct format_field *field)
728{
729 if ((field->flags & FIELD_IS_ARRAY) &&
730 (!strstr(field->type, "char") || !strstr(field->type, "u8") ||
731 !strstr(field->type, "s8")))
732 return 1;
733
734 return 0;
735}
736
737static int field_is_dynamic(struct format_field *field)
738{
739 if (!strcmp(field->type, "__data_loc"))
740 return 1;
741
742 return 0;
743}
744
ea4010d1
SR
745static int event_read_fields(struct event *event, struct format_field **fields)
746{
747 struct format_field *field = NULL;
748 enum event_type type;
749 char *token;
750 char *last_token;
751 int count = 0;
752
753 do {
754 type = read_token(&token);
755 if (type == EVENT_NEWLINE) {
756 free_token(token);
757 return count;
758 }
759
760 count++;
761
762 if (test_type_token(type, token, EVENT_ITEM, (char *)"field"))
763 goto fail;
764 free_token(token);
765
766 type = read_token(&token);
767 /*
768 * The ftrace fields may still use the "special" name.
769 * Just ignore it.
770 */
771 if (event->flags & EVENT_FL_ISFTRACE &&
772 type == EVENT_ITEM && strcmp(token, "special") == 0) {
773 free_token(token);
774 type = read_token(&token);
775 }
776
777 if (test_type_token(type, token, EVENT_OP, (char *)":") < 0)
778 return -1;
779
780 if (read_expect_type(EVENT_ITEM, &token) < 0)
781 goto fail;
782
783 last_token = token;
784
785 field = malloc_or_die(sizeof(*field));
786 memset(field, 0, sizeof(*field));
787
788 /* read the rest of the type */
789 for (;;) {
790 type = read_token(&token);
791 if (type == EVENT_ITEM ||
792 (type == EVENT_OP && strcmp(token, "*") == 0) ||
793 /*
794 * Some of the ftrace fields are broken and have
795 * an illegal "." in them.
796 */
797 (event->flags & EVENT_FL_ISFTRACE &&
798 type == EVENT_OP && strcmp(token, ".") == 0)) {
799
800 if (strcmp(token, "*") == 0)
801 field->flags |= FIELD_IS_POINTER;
802
803 if (field->type) {
804 field->type = realloc(field->type,
805 strlen(field->type) +
806 strlen(last_token) + 2);
807 strcat(field->type, " ");
808 strcat(field->type, last_token);
809 } else
810 field->type = last_token;
811 last_token = token;
812 continue;
813 }
814
815 break;
816 }
817
818 if (!field->type) {
819 die("no type found");
820 goto fail;
821 }
822 field->name = last_token;
823
824 if (test_type(type, EVENT_OP))
825 goto fail;
826
827 if (strcmp(token, "[") == 0) {
828 enum event_type last_type = type;
829 char *brackets = token;
830 int len;
831
832 field->flags |= FIELD_IS_ARRAY;
833
834 type = read_token(&token);
835 while (strcmp(token, "]") != 0) {
836 if (last_type == EVENT_ITEM &&
837 type == EVENT_ITEM)
838 len = 2;
839 else
840 len = 1;
841 last_type = type;
842
843 brackets = realloc(brackets,
844 strlen(brackets) +
845 strlen(token) + len);
846 if (len == 2)
847 strcat(brackets, " ");
848 strcat(brackets, token);
849 free_token(token);
850 type = read_token(&token);
851 if (type == EVENT_NONE) {
852 die("failed to find token");
853 goto fail;
854 }
855 }
856
857 free_token(token);
858
859 brackets = realloc(brackets, strlen(brackets) + 2);
860 strcat(brackets, "]");
861
862 /* add brackets to type */
863
864 type = read_token(&token);
865 /*
866 * If the next token is not an OP, then it is of
867 * the format: type [] item;
868 */
869 if (type == EVENT_ITEM) {
870 field->type = realloc(field->type,
871 strlen(field->type) +
872 strlen(field->name) +
873 strlen(brackets) + 2);
874 strcat(field->type, " ");
875 strcat(field->type, field->name);
876 free_token(field->name);
877 strcat(field->type, brackets);
878 field->name = token;
879 type = read_token(&token);
880 } else {
881 field->type = realloc(field->type,
882 strlen(field->type) +
883 strlen(brackets) + 1);
884 strcat(field->type, brackets);
885 }
886 free(brackets);
887 }
888
064739bc
TZ
889 if (field_is_string(field)) {
890 field->flags |= FIELD_IS_STRING;
891 if (field_is_dynamic(field))
892 field->flags |= FIELD_IS_DYNAMIC;
893 }
894
ea4010d1
SR
895 if (test_type_token(type, token, EVENT_OP, (char *)";"))
896 goto fail;
897 free_token(token);
898
899 if (read_expected(EVENT_ITEM, (char *)"offset") < 0)
900 goto fail_expect;
901
902 if (read_expected(EVENT_OP, (char *)":") < 0)
903 goto fail_expect;
904
905 if (read_expect_type(EVENT_ITEM, &token))
906 goto fail;
907 field->offset = strtoul(token, NULL, 0);
908 free_token(token);
909
910 if (read_expected(EVENT_OP, (char *)";") < 0)
911 goto fail_expect;
912
913 if (read_expected(EVENT_ITEM, (char *)"size") < 0)
914 goto fail_expect;
915
916 if (read_expected(EVENT_OP, (char *)":") < 0)
917 goto fail_expect;
918
919 if (read_expect_type(EVENT_ITEM, &token))
920 goto fail;
921 field->size = strtoul(token, NULL, 0);
922 free_token(token);
923
26a50744
TZ
924 if (read_expected(EVENT_OP, (char *)";") < 0)
925 goto fail_expect;
926
927 if (read_expected(EVENT_ITEM, (char *)"signed") < 0)
928 goto fail_expect;
929
930 if (read_expected(EVENT_OP, (char *)":") < 0)
931 goto fail_expect;
932
933 if (read_expect_type(EVENT_ITEM, &token))
934 goto fail;
935 if (strtoul(token, NULL, 0))
936 field->flags |= FIELD_IS_SIGNED;
937 free_token(token);
938
ea4010d1
SR
939 if (read_expected(EVENT_OP, (char *)";") < 0)
940 goto fail_expect;
941
942 if (read_expect_type(EVENT_NEWLINE, &token) < 0)
943 goto fail;
944 free_token(token);
945
946 *fields = field;
947 fields = &field->next;
948
949 } while (1);
950
951 return 0;
952
953fail:
954 free_token(token);
955fail_expect:
956 if (field)
957 free(field);
958 return -1;
959}
960
961static int event_read_format(struct event *event)
962{
963 char *token;
964 int ret;
965
966 if (read_expected_item(EVENT_ITEM, (char *)"format") < 0)
967 return -1;
968
969 if (read_expected(EVENT_OP, (char *)":") < 0)
970 return -1;
971
972 if (read_expect_type(EVENT_NEWLINE, &token))
973 goto fail;
974 free_token(token);
975
976 ret = event_read_fields(event, &event->format.common_fields);
977 if (ret < 0)
978 return ret;
979 event->format.nr_common = ret;
980
981 ret = event_read_fields(event, &event->format.fields);
982 if (ret < 0)
983 return ret;
984 event->format.nr_fields = ret;
985
986 return 0;
987
988 fail:
989 free_token(token);
990 return -1;
991}
992
993enum event_type
994process_arg_token(struct event *event, struct print_arg *arg,
995 char **tok, enum event_type type);
996
997static enum event_type
998process_arg(struct event *event, struct print_arg *arg, char **tok)
999{
1000 enum event_type type;
1001 char *token;
1002
1003 type = read_token(&token);
1004 *tok = token;
1005
1006 return process_arg_token(event, arg, tok, type);
1007}
1008
1009static enum event_type
1010process_cond(struct event *event, struct print_arg *top, char **tok)
1011{
1012 struct print_arg *arg, *left, *right;
1013 enum event_type type;
1014 char *token = NULL;
1015
1016 arg = malloc_or_die(sizeof(*arg));
1017 memset(arg, 0, sizeof(*arg));
1018
1019 left = malloc_or_die(sizeof(*left));
1020
1021 right = malloc_or_die(sizeof(*right));
1022
1023 arg->type = PRINT_OP;
1024 arg->op.left = left;
1025 arg->op.right = right;
1026
1027 *tok = NULL;
1028 type = process_arg(event, left, &token);
1029 if (test_type_token(type, token, EVENT_OP, (char *)":"))
1030 goto out_free;
1031
1032 arg->op.op = token;
1033
1034 type = process_arg(event, right, &token);
1035
1036 top->op.right = arg;
1037
1038 *tok = token;
1039 return type;
1040
1041out_free:
1042 free_token(*tok);
1043 free(right);
1044 free(left);
1045 free_arg(arg);
1046 return EVENT_ERROR;
1047}
1048
0959b8d6
SR
1049static enum event_type
1050process_array(struct event *event, struct print_arg *top, char **tok)
1051{
1052 struct print_arg *arg;
1053 enum event_type type;
1054 char *token = NULL;
1055
1056 arg = malloc_or_die(sizeof(*arg));
1057 memset(arg, 0, sizeof(*arg));
1058
1059 *tok = NULL;
1060 type = process_arg(event, arg, &token);
1061 if (test_type_token(type, token, EVENT_OP, (char *)"]"))
1062 goto out_free;
1063
1064 top->op.right = arg;
1065
1066 free_token(token);
1067 type = read_token_item(&token);
1068 *tok = token;
1069
1070 return type;
1071
1072out_free:
1073 free_token(*tok);
1074 free_arg(arg);
1075 return EVENT_ERROR;
1076}
1077
ea4010d1
SR
1078static int get_op_prio(char *op)
1079{
1080 if (!op[1]) {
1081 switch (op[0]) {
1082 case '*':
1083 case '/':
1084 case '%':
1085 return 6;
1086 case '+':
1087 case '-':
1088 return 7;
1089 /* '>>' and '<<' are 8 */
1090 case '<':
1091 case '>':
1092 return 9;
1093 /* '==' and '!=' are 10 */
1094 case '&':
1095 return 11;
1096 case '^':
1097 return 12;
1098 case '|':
1099 return 13;
1100 case '?':
1101 return 16;
1102 default:
1103 die("unknown op '%c'", op[0]);
1104 return -1;
1105 }
1106 } else {
1107 if (strcmp(op, "++") == 0 ||
1108 strcmp(op, "--") == 0) {
1109 return 3;
1110 } else if (strcmp(op, ">>") == 0 ||
1111 strcmp(op, "<<") == 0) {
1112 return 8;
1113 } else if (strcmp(op, ">=") == 0 ||
1114 strcmp(op, "<=") == 0) {
1115 return 9;
1116 } else if (strcmp(op, "==") == 0 ||
1117 strcmp(op, "!=") == 0) {
1118 return 10;
1119 } else if (strcmp(op, "&&") == 0) {
1120 return 14;
1121 } else if (strcmp(op, "||") == 0) {
1122 return 15;
1123 } else {
1124 die("unknown op '%s'", op);
1125 return -1;
1126 }
1127 }
1128}
1129
1130static void set_op_prio(struct print_arg *arg)
1131{
1132
1133 /* single ops are the greatest */
1134 if (!arg->op.left || arg->op.left->type == PRINT_NULL) {
1135 arg->op.prio = 0;
1136 return;
1137 }
1138
1139 arg->op.prio = get_op_prio(arg->op.op);
1140}
1141
1142static enum event_type
1143process_op(struct event *event, struct print_arg *arg, char **tok)
1144{
1145 struct print_arg *left, *right = NULL;
1146 enum event_type type;
1147 char *token;
1148
1149 /* the op is passed in via tok */
1150 token = *tok;
1151
1152 if (arg->type == PRINT_OP && !arg->op.left) {
1153 /* handle single op */
1154 if (token[1]) {
1155 die("bad op token %s", token);
1156 return EVENT_ERROR;
1157 }
1158 switch (token[0]) {
1159 case '!':
1160 case '+':
1161 case '-':
1162 break;
1163 default:
1164 die("bad op token %s", token);
1165 return EVENT_ERROR;
1166 }
1167
1168 /* make an empty left */
1169 left = malloc_or_die(sizeof(*left));
1170 left->type = PRINT_NULL;
1171 arg->op.left = left;
1172
1173 right = malloc_or_die(sizeof(*right));
1174 arg->op.right = right;
1175
1176 type = process_arg(event, right, tok);
1177
1178 } else if (strcmp(token, "?") == 0) {
1179
1180 left = malloc_or_die(sizeof(*left));
1181 /* copy the top arg to the left */
1182 *left = *arg;
1183
1184 arg->type = PRINT_OP;
1185 arg->op.op = token;
1186 arg->op.left = left;
1187 arg->op.prio = 0;
1188
1189 type = process_cond(event, arg, tok);
1190
1191 } else if (strcmp(token, ">>") == 0 ||
1192 strcmp(token, "<<") == 0 ||
1193 strcmp(token, "&") == 0 ||
1194 strcmp(token, "|") == 0 ||
1195 strcmp(token, "&&") == 0 ||
1196 strcmp(token, "||") == 0 ||
1197 strcmp(token, "-") == 0 ||
1198 strcmp(token, "+") == 0 ||
1199 strcmp(token, "*") == 0 ||
1200 strcmp(token, "^") == 0 ||
1201 strcmp(token, "/") == 0 ||
298ebc3e
SR
1202 strcmp(token, "<") == 0 ||
1203 strcmp(token, ">") == 0 ||
ea4010d1
SR
1204 strcmp(token, "==") == 0 ||
1205 strcmp(token, "!=") == 0) {
1206
1207 left = malloc_or_die(sizeof(*left));
1208
1209 /* copy the top arg to the left */
1210 *left = *arg;
1211
1212 arg->type = PRINT_OP;
1213 arg->op.op = token;
1214 arg->op.left = left;
1215
1216 set_op_prio(arg);
1217
1218 right = malloc_or_die(sizeof(*right));
1219
b99af874
SR
1220 type = read_token_item(&token);
1221 *tok = token;
1222
1223 /* could just be a type pointer */
1224 if ((strcmp(arg->op.op, "*") == 0) &&
1225 type == EVENT_DELIM && (strcmp(token, ")") == 0)) {
1226 if (left->type != PRINT_ATOM)
1227 die("bad pointer type");
1228 left->atom.atom = realloc(left->atom.atom,
1229 sizeof(left->atom.atom) + 3);
1230 strcat(left->atom.atom, " *");
1231 *arg = *left;
1232 free(arg);
1233
1234 return type;
1235 }
1236
1237 type = process_arg_token(event, right, tok, type);
ea4010d1
SR
1238
1239 arg->op.right = right;
1240
0959b8d6
SR
1241 } else if (strcmp(token, "[") == 0) {
1242
1243 left = malloc_or_die(sizeof(*left));
1244 *left = *arg;
1245
1246 arg->type = PRINT_OP;
1247 arg->op.op = token;
1248 arg->op.left = left;
1249
1250 arg->op.prio = 0;
1251 type = process_array(event, arg, tok);
1252
ea4010d1
SR
1253 } else {
1254 die("unknown op '%s'", token);
1255 /* the arg is now the left side */
1256 return EVENT_NONE;
1257 }
1258
1259
1260 if (type == EVENT_OP) {
1261 int prio;
1262
1263 /* higher prios need to be closer to the root */
1264 prio = get_op_prio(*tok);
1265
1266 if (prio > arg->op.prio)
1267 return process_op(event, arg, tok);
1268
1269 return process_op(event, right, tok);
1270 }
1271
1272 return type;
1273}
1274
1275static enum event_type
1276process_entry(struct event *event __unused, struct print_arg *arg,
1277 char **tok)
1278{
1279 enum event_type type;
1280 char *field;
1281 char *token;
1282
1283 if (read_expected(EVENT_OP, (char *)"->") < 0)
1284 return EVENT_ERROR;
1285
1286 if (read_expect_type(EVENT_ITEM, &token) < 0)
1287 goto fail;
1288 field = token;
1289
1290 arg->type = PRINT_FIELD;
1291 arg->field.name = field;
1292
1293 type = read_token(&token);
1294 *tok = token;
1295
1296 return type;
1297
1298fail:
1299 free_token(token);
1300 return EVENT_ERROR;
1301}
1302
1303static char *arg_eval (struct print_arg *arg);
1304
1305static long long arg_num_eval(struct print_arg *arg)
1306{
1307 long long left, right;
1308 long long val = 0;
1309
1310 switch (arg->type) {
1311 case PRINT_ATOM:
1312 val = strtoll(arg->atom.atom, NULL, 0);
1313 break;
1314 case PRINT_TYPE:
1315 val = arg_num_eval(arg->typecast.item);
1316 break;
1317 case PRINT_OP:
1318 switch (arg->op.op[0]) {
1319 case '|':
1320 left = arg_num_eval(arg->op.left);
1321 right = arg_num_eval(arg->op.right);
1322 if (arg->op.op[1])
1323 val = left || right;
1324 else
1325 val = left | right;
1326 break;
1327 case '&':
1328 left = arg_num_eval(arg->op.left);
1329 right = arg_num_eval(arg->op.right);
1330 if (arg->op.op[1])
1331 val = left && right;
1332 else
1333 val = left & right;
1334 break;
1335 case '<':
1336 left = arg_num_eval(arg->op.left);
1337 right = arg_num_eval(arg->op.right);
1338 switch (arg->op.op[1]) {
1339 case 0:
1340 val = left < right;
1341 break;
1342 case '<':
1343 val = left << right;
1344 break;
1345 case '=':
1346 val = left <= right;
1347 break;
1348 default:
1349 die("unknown op '%s'", arg->op.op);
1350 }
1351 break;
1352 case '>':
1353 left = arg_num_eval(arg->op.left);
1354 right = arg_num_eval(arg->op.right);
1355 switch (arg->op.op[1]) {
1356 case 0:
1357 val = left > right;
1358 break;
1359 case '>':
1360 val = left >> right;
1361 break;
1362 case '=':
1363 val = left >= right;
1364 break;
1365 default:
1366 die("unknown op '%s'", arg->op.op);
1367 }
1368 break;
1369 case '=':
1370 left = arg_num_eval(arg->op.left);
1371 right = arg_num_eval(arg->op.right);
1372
1373 if (arg->op.op[1] != '=')
1374 die("unknown op '%s'", arg->op.op);
1375
1376 val = left == right;
1377 break;
1378 case '!':
1379 left = arg_num_eval(arg->op.left);
1380 right = arg_num_eval(arg->op.right);
1381
1382 switch (arg->op.op[1]) {
1383 case '=':
1384 val = left != right;
1385 break;
1386 default:
1387 die("unknown op '%s'", arg->op.op);
1388 }
1389 break;
1390 default:
1391 die("unknown op '%s'", arg->op.op);
1392 }
1393 break;
1394
1395 case PRINT_NULL:
1396 case PRINT_FIELD ... PRINT_SYMBOL:
1397 case PRINT_STRING:
1398 default:
1399 die("invalid eval type %d", arg->type);
1400
1401 }
1402 return val;
1403}
1404
1405static char *arg_eval (struct print_arg *arg)
1406{
1407 long long val;
1408 static char buf[20];
1409
1410 switch (arg->type) {
1411 case PRINT_ATOM:
1412 return arg->atom.atom;
1413 case PRINT_TYPE:
1414 return arg_eval(arg->typecast.item);
1415 case PRINT_OP:
1416 val = arg_num_eval(arg);
1417 sprintf(buf, "%lld", val);
1418 return buf;
1419
1420 case PRINT_NULL:
1421 case PRINT_FIELD ... PRINT_SYMBOL:
1422 case PRINT_STRING:
1423 default:
1424 die("invalid eval type %d", arg->type);
1425 break;
1426 }
1427
1428 return NULL;
1429}
1430
1431static enum event_type
1432process_fields(struct event *event, struct print_flag_sym **list, char **tok)
1433{
1434 enum event_type type;
1435 struct print_arg *arg = NULL;
1436 struct print_flag_sym *field;
1437 char *token = NULL;
1438 char *value;
1439
1440 do {
1441 free_token(token);
1442 type = read_token_item(&token);
1443 if (test_type_token(type, token, EVENT_OP, (char *)"{"))
1444 break;
1445
1446 arg = malloc_or_die(sizeof(*arg));
1447
1448 free_token(token);
1449 type = process_arg(event, arg, &token);
1450 if (test_type_token(type, token, EVENT_DELIM, (char *)","))
1451 goto out_free;
1452
1453 field = malloc_or_die(sizeof(*field));
1454 memset(field, 0, sizeof(field));
1455
1456 value = arg_eval(arg);
1457 field->value = strdup(value);
1458
1459 free_token(token);
1460 type = process_arg(event, arg, &token);
1461 if (test_type_token(type, token, EVENT_OP, (char *)"}"))
1462 goto out_free;
1463
1464 value = arg_eval(arg);
1465 field->str = strdup(value);
1466 free_arg(arg);
1467 arg = NULL;
1468
1469 *list = field;
1470 list = &field->next;
1471
1472 free_token(token);
1473 type = read_token_item(&token);
1474 } while (type == EVENT_DELIM && strcmp(token, ",") == 0);
1475
1476 *tok = token;
1477 return type;
1478
1479out_free:
1480 free_arg(arg);
1481 free_token(token);
1482
1483 return EVENT_ERROR;
1484}
1485
1486static enum event_type
1487process_flags(struct event *event, struct print_arg *arg, char **tok)
1488{
1489 struct print_arg *field;
1490 enum event_type type;
1491 char *token;
1492
1493 memset(arg, 0, sizeof(*arg));
1494 arg->type = PRINT_FLAGS;
1495
1496 if (read_expected_item(EVENT_DELIM, (char *)"(") < 0)
1497 return EVENT_ERROR;
1498
1499 field = malloc_or_die(sizeof(*field));
1500
1501 type = process_arg(event, field, &token);
1502 if (test_type_token(type, token, EVENT_DELIM, (char *)","))
1503 goto out_free;
1504
1505 arg->flags.field = field;
1506
1507 type = read_token_item(&token);
1508 if (event_item_type(type)) {
1509 arg->flags.delim = token;
1510 type = read_token_item(&token);
1511 }
1512
1513 if (test_type_token(type, token, EVENT_DELIM, (char *)","))
1514 goto out_free;
1515
1516 type = process_fields(event, &arg->flags.flags, &token);
1517 if (test_type_token(type, token, EVENT_DELIM, (char *)")"))
1518 goto out_free;
1519
1520 free_token(token);
1521 type = read_token_item(tok);
1522 return type;
1523
1524out_free:
1525 free_token(token);
1526 return EVENT_ERROR;
1527}
1528
1529static enum event_type
1530process_symbols(struct event *event, struct print_arg *arg, char **tok)
1531{
1532 struct print_arg *field;
1533 enum event_type type;
1534 char *token;
1535
1536 memset(arg, 0, sizeof(*arg));
1537 arg->type = PRINT_SYMBOL;
1538
1539 if (read_expected_item(EVENT_DELIM, (char *)"(") < 0)
1540 return EVENT_ERROR;
1541
1542 field = malloc_or_die(sizeof(*field));
1543
1544 type = process_arg(event, field, &token);
1545 if (test_type_token(type, token, EVENT_DELIM, (char *)","))
1546 goto out_free;
1547
1548 arg->symbol.field = field;
1549
1550 type = process_fields(event, &arg->symbol.symbols, &token);
1551 if (test_type_token(type, token, EVENT_DELIM, (char *)")"))
1552 goto out_free;
1553
1554 free_token(token);
1555 type = read_token_item(tok);
1556 return type;
1557
1558out_free:
1559 free_token(token);
1560 return EVENT_ERROR;
1561}
1562
1563static enum event_type
1564process_paren(struct event *event, struct print_arg *arg, char **tok)
1565{
1566 struct print_arg *item_arg;
1567 enum event_type type;
1568 char *token;
1569
1570 type = process_arg(event, arg, &token);
1571
1572 if (type == EVENT_ERROR)
1573 return EVENT_ERROR;
1574
b99af874
SR
1575 if (type == EVENT_OP)
1576 type = process_op(event, arg, &token);
ea4010d1 1577
b99af874
SR
1578 if (type == EVENT_ERROR)
1579 return EVENT_ERROR;
ea4010d1
SR
1580
1581 if (test_type_token(type, token, EVENT_DELIM, (char *)")")) {
1582 free_token(token);
1583 return EVENT_ERROR;
1584 }
1585
1586 free_token(token);
1587 type = read_token_item(&token);
1588
1589 /*
1590 * If the next token is an item or another open paren, then
1591 * this was a typecast.
1592 */
1593 if (event_item_type(type) ||
1594 (type == EVENT_DELIM && strcmp(token, "(") == 0)) {
1595
1596 /* make this a typecast and contine */
1597
1598 /* prevous must be an atom */
1599 if (arg->type != PRINT_ATOM)
1600 die("previous needed to be PRINT_ATOM");
1601
1602 item_arg = malloc_or_die(sizeof(*item_arg));
1603
1604 arg->type = PRINT_TYPE;
1605 arg->typecast.type = arg->atom.atom;
1606 arg->typecast.item = item_arg;
1607 type = process_arg_token(event, item_arg, &token, type);
1608
1609 }
1610
1611 *tok = token;
1612 return type;
1613}
1614
1615
1616static enum event_type
1617process_str(struct event *event __unused, struct print_arg *arg, char **tok)
1618{
1619 enum event_type type;
1620 char *token;
1621
1622 if (read_expected(EVENT_DELIM, (char *)"(") < 0)
1623 return EVENT_ERROR;
1624
1625 if (read_expect_type(EVENT_ITEM, &token) < 0)
1626 goto fail;
1627
1628 arg->type = PRINT_STRING;
1629 arg->string.string = token;
561f732c 1630 arg->string.offset = -1;
ea4010d1
SR
1631
1632 if (read_expected(EVENT_DELIM, (char *)")") < 0)
1633 return EVENT_ERROR;
1634
1635 type = read_token(&token);
1636 *tok = token;
1637
1638 return type;
1639fail:
1640 free_token(token);
1641 return EVENT_ERROR;
1642}
1643
1644enum event_type
1645process_arg_token(struct event *event, struct print_arg *arg,
1646 char **tok, enum event_type type)
1647{
1648 char *token;
1649 char *atom;
1650
1651 token = *tok;
1652
1653 switch (type) {
1654 case EVENT_ITEM:
1655 if (strcmp(token, "REC") == 0) {
1656 free_token(token);
1657 type = process_entry(event, arg, &token);
1658 } else if (strcmp(token, "__print_flags") == 0) {
1659 free_token(token);
1660 type = process_flags(event, arg, &token);
1661 } else if (strcmp(token, "__print_symbolic") == 0) {
1662 free_token(token);
1663 type = process_symbols(event, arg, &token);
1664 } else if (strcmp(token, "__get_str") == 0) {
1665 free_token(token);
1666 type = process_str(event, arg, &token);
1667 } else {
1668 atom = token;
1669 /* test the next token */
1670 type = read_token_item(&token);
1671
1672 /* atoms can be more than one token long */
1673 while (type == EVENT_ITEM) {
1674 atom = realloc(atom, strlen(atom) + strlen(token) + 2);
1675 strcat(atom, " ");
1676 strcat(atom, token);
1677 free_token(token);
1678 type = read_token_item(&token);
1679 }
1680
1681 /* todo, test for function */
1682
1683 arg->type = PRINT_ATOM;
1684 arg->atom.atom = atom;
1685 }
1686 break;
1687 case EVENT_DQUOTE:
1688 case EVENT_SQUOTE:
1689 arg->type = PRINT_ATOM;
1690 arg->atom.atom = token;
1691 type = read_token_item(&token);
1692 break;
1693 case EVENT_DELIM:
1694 if (strcmp(token, "(") == 0) {
1695 free_token(token);
1696 type = process_paren(event, arg, &token);
1697 break;
1698 }
1699 case EVENT_OP:
1700 /* handle single ops */
1701 arg->type = PRINT_OP;
1702 arg->op.op = token;
1703 arg->op.left = NULL;
1704 type = process_op(event, arg, &token);
1705
1706 break;
1707
1708 case EVENT_ERROR ... EVENT_NEWLINE:
1709 default:
1710 die("unexpected type %d", type);
1711 }
1712 *tok = token;
1713
1714 return type;
1715}
1716
1717static int event_read_print_args(struct event *event, struct print_arg **list)
1718{
1719 enum event_type type;
1720 struct print_arg *arg;
1721 char *token;
1722 int args = 0;
1723
1724 do {
1725 arg = malloc_or_die(sizeof(*arg));
1726 memset(arg, 0, sizeof(*arg));
1727
1728 type = process_arg(event, arg, &token);
1729
1730 if (type == EVENT_ERROR) {
1731 free_arg(arg);
1732 return -1;
1733 }
1734
1735 *list = arg;
1736 args++;
1737
1738 if (type == EVENT_OP) {
1739 type = process_op(event, arg, &token);
1740 list = &arg->next;
1741 continue;
1742 }
1743
1744 if (type == EVENT_DELIM && strcmp(token, ",") == 0) {
1745 free_token(token);
1746 *list = arg;
1747 list = &arg->next;
1748 continue;
1749 }
1750 break;
1751 } while (type != EVENT_NONE);
1752
1753 if (type != EVENT_NONE)
1754 free_token(token);
1755
1756 return args;
1757}
1758
1759static int event_read_print(struct event *event)
1760{
1761 enum event_type type;
1762 char *token;
1763 int ret;
1764
1765 if (read_expected_item(EVENT_ITEM, (char *)"print") < 0)
1766 return -1;
1767
1768 if (read_expected(EVENT_ITEM, (char *)"fmt") < 0)
1769 return -1;
1770
1771 if (read_expected(EVENT_OP, (char *)":") < 0)
1772 return -1;
1773
1774 if (read_expect_type(EVENT_DQUOTE, &token) < 0)
1775 goto fail;
1776
924a79af 1777 concat:
ea4010d1
SR
1778 event->print_fmt.format = token;
1779 event->print_fmt.args = NULL;
1780
1781 /* ok to have no arg */
1782 type = read_token_item(&token);
1783
1784 if (type == EVENT_NONE)
1785 return 0;
1786
924a79af
SR
1787 /* Handle concatination of print lines */
1788 if (type == EVENT_DQUOTE) {
1789 char *cat;
1790
1791 cat = malloc_or_die(strlen(event->print_fmt.format) +
1792 strlen(token) + 1);
1793 strcpy(cat, event->print_fmt.format);
1794 strcat(cat, token);
1795 free_token(token);
1796 free_token(event->print_fmt.format);
1797 event->print_fmt.format = NULL;
1798 token = cat;
1799 goto concat;
1800 }
1801
ea4010d1
SR
1802 if (test_type_token(type, token, EVENT_DELIM, (char *)","))
1803 goto fail;
1804
1805 free_token(token);
1806
1807 ret = event_read_print_args(event, &event->print_fmt.args);
1808 if (ret < 0)
1809 return -1;
1810
1811 return 0;
1812
1813 fail:
1814 free_token(token);
1815 return -1;
1816}
1817
1818static struct format_field *
1819find_common_field(struct event *event, const char *name)
1820{
1821 struct format_field *format;
1822
1823 for (format = event->format.common_fields;
1824 format; format = format->next) {
1825 if (strcmp(format->name, name) == 0)
1826 break;
1827 }
1828
1829 return format;
1830}
1831
1832static struct format_field *
1833find_field(struct event *event, const char *name)
1834{
1835 struct format_field *format;
1836
1837 for (format = event->format.fields;
1838 format; format = format->next) {
1839 if (strcmp(format->name, name) == 0)
1840 break;
1841 }
1842
1843 return format;
1844}
1845
1846static struct format_field *
1847find_any_field(struct event *event, const char *name)
1848{
1849 struct format_field *format;
1850
1851 format = find_common_field(event, name);
1852 if (format)
1853 return format;
1854 return find_field(event, name);
1855}
1856
1857static unsigned long long read_size(void *ptr, int size)
1858{
1859 switch (size) {
1860 case 1:
1861 return *(unsigned char *)ptr;
1862 case 2:
1863 return data2host2(ptr);
1864 case 4:
1865 return data2host4(ptr);
1866 case 8:
1867 return data2host8(ptr);
1868 default:
1869 /* BUG! */
1870 return 0;
1871 }
1872}
1873
46538818
FW
1874unsigned long long
1875raw_field_value(struct event *event, const char *name, void *data)
1876{
1877 struct format_field *field;
1878
1879 field = find_any_field(event, name);
1880 if (!field)
1881 return 0ULL;
1882
1883 return read_size(data + field->offset, field->size);
1884}
1885
1886void *raw_field_ptr(struct event *event, const char *name, void *data)
1887{
1888 struct format_field *field;
1889
1890 field = find_any_field(event, name);
1891 if (!field)
1892 return NULL;
1893
1894 return data + field->offset;
1895}
1896
ea4010d1
SR
1897static int get_common_info(const char *type, int *offset, int *size)
1898{
1899 struct event *event;
1900 struct format_field *field;
1901
1902 /*
1903 * All events should have the same common elements.
1904 * Pick any event to find where the type is;
1905 */
1906 if (!event_list)
1907 die("no event_list!");
1908
1909 event = event_list;
1910 field = find_common_field(event, type);
1911 if (!field)
1912 die("field '%s' not found", type);
1913
1914 *offset = field->offset;
1915 *size = field->size;
1916
1917 return 0;
1918}
1919
ec156764 1920int trace_parse_common_type(void *data)
ea4010d1
SR
1921{
1922 static int type_offset;
1923 static int type_size;
1924 int ret;
1925
1926 if (!type_size) {
1927 ret = get_common_info("common_type",
1928 &type_offset,
1929 &type_size);
1930 if (ret < 0)
1931 return ret;
1932 }
1933 return read_size(data + type_offset, type_size);
1934}
1935
1936static int parse_common_pid(void *data)
1937{
1938 static int pid_offset;
1939 static int pid_size;
1940 int ret;
1941
1942 if (!pid_size) {
1943 ret = get_common_info("common_pid",
1944 &pid_offset,
1945 &pid_size);
1946 if (ret < 0)
1947 return ret;
1948 }
1949
1950 return read_size(data + pid_offset, pid_size);
1951}
1952
ec156764 1953struct event *trace_find_event(int id)
ea4010d1
SR
1954{
1955 struct event *event;
1956
1957 for (event = event_list; event; event = event->next) {
1958 if (event->id == id)
1959 break;
1960 }
1961 return event;
1962}
1963
1964static unsigned long long eval_num_arg(void *data, int size,
1965 struct event *event, struct print_arg *arg)
1966{
1967 unsigned long long val = 0;
1968 unsigned long long left, right;
0959b8d6 1969 struct print_arg *larg;
ea4010d1
SR
1970
1971 switch (arg->type) {
1972 case PRINT_NULL:
1973 /* ?? */
1974 return 0;
1975 case PRINT_ATOM:
1976 return strtoull(arg->atom.atom, NULL, 0);
1977 case PRINT_FIELD:
1978 if (!arg->field.field) {
1979 arg->field.field = find_any_field(event, arg->field.name);
1980 if (!arg->field.field)
1981 die("field %s not found", arg->field.name);
1982 }
1983 /* must be a number */
1984 val = read_size(data + arg->field.field->offset,
1985 arg->field.field->size);
1986 break;
1987 case PRINT_FLAGS:
1988 case PRINT_SYMBOL:
1989 break;
1990 case PRINT_TYPE:
1991 return eval_num_arg(data, size, event, arg->typecast.item);
1992 case PRINT_STRING:
1993 return 0;
1994 break;
1995 case PRINT_OP:
0959b8d6
SR
1996 if (strcmp(arg->op.op, "[") == 0) {
1997 /*
1998 * Arrays are special, since we don't want
1999 * to read the arg as is.
2000 */
2001 if (arg->op.left->type != PRINT_FIELD)
2002 goto default_op; /* oops, all bets off */
2003 larg = arg->op.left;
2004 if (!larg->field.field) {
2005 larg->field.field =
2006 find_any_field(event, larg->field.name);
2007 if (!larg->field.field)
2008 die("field %s not found", larg->field.name);
2009 }
2010 right = eval_num_arg(data, size, event, arg->op.right);
2011 val = read_size(data + larg->field.field->offset +
2012 right * long_size, long_size);
2013 break;
2014 }
2015 default_op:
ea4010d1
SR
2016 left = eval_num_arg(data, size, event, arg->op.left);
2017 right = eval_num_arg(data, size, event, arg->op.right);
2018 switch (arg->op.op[0]) {
2019 case '|':
2020 if (arg->op.op[1])
2021 val = left || right;
2022 else
2023 val = left | right;
2024 break;
2025 case '&':
2026 if (arg->op.op[1])
2027 val = left && right;
2028 else
2029 val = left & right;
2030 break;
2031 case '<':
2032 switch (arg->op.op[1]) {
2033 case 0:
2034 val = left < right;
2035 break;
2036 case '<':
2037 val = left << right;
2038 break;
2039 case '=':
2040 val = left <= right;
2041 break;
2042 default:
2043 die("unknown op '%s'", arg->op.op);
2044 }
2045 break;
2046 case '>':
2047 switch (arg->op.op[1]) {
2048 case 0:
2049 val = left > right;
2050 break;
2051 case '>':
2052 val = left >> right;
2053 break;
2054 case '=':
2055 val = left >= right;
2056 break;
2057 default:
2058 die("unknown op '%s'", arg->op.op);
2059 }
2060 break;
2061 case '=':
2062 if (arg->op.op[1] != '=')
2063 die("unknown op '%s'", arg->op.op);
2064 val = left == right;
2065 break;
2066 default:
2067 die("unknown op '%s'", arg->op.op);
2068 }
2069 break;
2070 default: /* not sure what to do there */
2071 return 0;
2072 }
2073 return val;
2074}
2075
2076struct flag {
2077 const char *name;
2078 unsigned long long value;
2079};
2080
2081static const struct flag flags[] = {
2082 { "HI_SOFTIRQ", 0 },
2083 { "TIMER_SOFTIRQ", 1 },
2084 { "NET_TX_SOFTIRQ", 2 },
2085 { "NET_RX_SOFTIRQ", 3 },
2086 { "BLOCK_SOFTIRQ", 4 },
b934cdd5
TZ
2087 { "BLOCK_IOPOLL_SOFTIRQ", 5 },
2088 { "TASKLET_SOFTIRQ", 6 },
2089 { "SCHED_SOFTIRQ", 7 },
2090 { "HRTIMER_SOFTIRQ", 8 },
2091 { "RCU_SOFTIRQ", 9 },
ea4010d1
SR
2092
2093 { "HRTIMER_NORESTART", 0 },
2094 { "HRTIMER_RESTART", 1 },
2095};
2096
2097static unsigned long long eval_flag(const char *flag)
2098{
2099 int i;
2100
2101 /*
2102 * Some flags in the format files do not get converted.
2103 * If the flag is not numeric, see if it is something that
2104 * we already know about.
2105 */
2106 if (isdigit(flag[0]))
2107 return strtoull(flag, NULL, 0);
2108
2109 for (i = 0; i < (int)(sizeof(flags)/sizeof(flags[0])); i++)
2110 if (strcmp(flags[i].name, flag) == 0)
2111 return flags[i].value;
2112
2113 return 0;
2114}
2115
2116static void print_str_arg(void *data, int size,
2117 struct event *event, struct print_arg *arg)
2118{
2119 struct print_flag_sym *flag;
2120 unsigned long long val, fval;
2121 char *str;
2122 int print;
2123
2124 switch (arg->type) {
2125 case PRINT_NULL:
2126 /* ?? */
2127 return;
2128 case PRINT_ATOM:
2129 printf("%s", arg->atom.atom);
2130 return;
2131 case PRINT_FIELD:
2132 if (!arg->field.field) {
2133 arg->field.field = find_any_field(event, arg->field.name);
2134 if (!arg->field.field)
2135 die("field %s not found", arg->field.name);
2136 }
2137 str = malloc_or_die(arg->field.field->size + 1);
2138 memcpy(str, data + arg->field.field->offset,
2139 arg->field.field->size);
2140 str[arg->field.field->size] = 0;
d498bc1f 2141 printf("%s", str);
ea4010d1
SR
2142 free(str);
2143 break;
2144 case PRINT_FLAGS:
2145 val = eval_num_arg(data, size, event, arg->flags.field);
2146 print = 0;
2147 for (flag = arg->flags.flags; flag; flag = flag->next) {
2148 fval = eval_flag(flag->value);
2149 if (!val && !fval) {
2150 printf("%s", flag->str);
2151 break;
2152 }
2153 if (fval && (val & fval) == fval) {
2154 if (print && arg->flags.delim)
2155 printf("%s", arg->flags.delim);
2156 printf("%s", flag->str);
2157 print = 1;
2158 val &= ~fval;
2159 }
2160 }
2161 break;
2162 case PRINT_SYMBOL:
2163 val = eval_num_arg(data, size, event, arg->symbol.field);
2164 for (flag = arg->symbol.symbols; flag; flag = flag->next) {
2165 fval = eval_flag(flag->value);
2166 if (val == fval) {
2167 printf("%s", flag->str);
2168 break;
2169 }
2170 }
2171 break;
2172
2173 case PRINT_TYPE:
2174 break;
561f732c
FW
2175 case PRINT_STRING: {
2176 int str_offset;
2177
2178 if (arg->string.offset == -1) {
2179 struct format_field *f;
2180
2181 f = find_any_field(event, arg->string.string);
2182 arg->string.offset = f->offset;
2183 }
2184 str_offset = *(int *)(data + arg->string.offset);
2185 str_offset &= 0xffff;
2186 printf("%s", ((char *)data) + str_offset);
ea4010d1 2187 break;
561f732c 2188 }
ea4010d1
SR
2189 case PRINT_OP:
2190 /*
2191 * The only op for string should be ? :
2192 */
2193 if (arg->op.op[0] != '?')
2194 return;
2195 val = eval_num_arg(data, size, event, arg->op.left);
2196 if (val)
2197 print_str_arg(data, size, event, arg->op.right->op.left);
2198 else
2199 print_str_arg(data, size, event, arg->op.right->op.right);
2200 break;
2201 default:
2202 /* well... */
2203 break;
2204 }
2205}
2206
2207static struct print_arg *make_bprint_args(char *fmt, void *data, int size, struct event *event)
2208{
2209 static struct format_field *field, *ip_field;
2210 struct print_arg *args, *arg, **next;
2211 unsigned long long ip, val;
2212 char *ptr;
2213 void *bptr;
2214
2215 if (!field) {
2216 field = find_field(event, "buf");
2217 if (!field)
2218 die("can't find buffer field for binary printk");
2219 ip_field = find_field(event, "ip");
2220 if (!ip_field)
2221 die("can't find ip field for binary printk");
2222 }
2223
2224 ip = read_size(data + ip_field->offset, ip_field->size);
2225
2226 /*
2227 * The first arg is the IP pointer.
2228 */
2229 args = malloc_or_die(sizeof(*args));
2230 arg = args;
2231 arg->next = NULL;
2232 next = &arg->next;
2233
2234 arg->type = PRINT_ATOM;
2235 arg->atom.atom = malloc_or_die(32);
2236 sprintf(arg->atom.atom, "%lld", ip);
2237
2238 /* skip the first "%pf : " */
2239 for (ptr = fmt + 6, bptr = data + field->offset;
2240 bptr < data + size && *ptr; ptr++) {
2241 int ls = 0;
2242
2243 if (*ptr == '%') {
2244 process_again:
2245 ptr++;
2246 switch (*ptr) {
2247 case '%':
2248 break;
2249 case 'l':
2250 ls++;
2251 goto process_again;
2252 case 'L':
2253 ls = 2;
2254 goto process_again;
2255 case '0' ... '9':
2256 goto process_again;
2257 case 'p':
2258 ls = 1;
2259 /* fall through */
2260 case 'd':
2261 case 'u':
2262 case 'x':
2263 case 'i':
2264 bptr = (void *)(((unsigned long)bptr + (long_size - 1)) &
2265 ~(long_size - 1));
2266 switch (ls) {
2267 case 0:
2268 case 1:
2269 ls = long_size;
2270 break;
2271 case 2:
2272 ls = 8;
2273 default:
2274 break;
2275 }
2276 val = read_size(bptr, ls);
2277 bptr += ls;
2278 arg = malloc_or_die(sizeof(*arg));
2279 arg->next = NULL;
2280 arg->type = PRINT_ATOM;
2281 arg->atom.atom = malloc_or_die(32);
2282 sprintf(arg->atom.atom, "%lld", val);
2283 *next = arg;
2284 next = &arg->next;
2285 break;
2286 case 's':
2287 arg = malloc_or_die(sizeof(*arg));
2288 arg->next = NULL;
2289 arg->type = PRINT_STRING;
2290 arg->string.string = strdup(bptr);
2291 bptr += strlen(bptr) + 1;
2292 *next = arg;
2293 next = &arg->next;
2294 default:
2295 break;
2296 }
2297 }
2298 }
2299
2300 return args;
2301}
2302
2303static void free_args(struct print_arg *args)
2304{
2305 struct print_arg *next;
2306
2307 while (args) {
2308 next = args->next;
2309
2310 if (args->type == PRINT_ATOM)
2311 free(args->atom.atom);
2312 else
2313 free(args->string.string);
2314 free(args);
2315 args = next;
2316 }
2317}
2318
2319static char *get_bprint_format(void *data, int size __unused, struct event *event)
2320{
2321 unsigned long long addr;
2322 static struct format_field *field;
2323 struct printk_map *printk;
2324 char *format;
2325 char *p;
2326
2327 if (!field) {
2328 field = find_field(event, "fmt");
2329 if (!field)
2330 die("can't find format field for binary printk");
2331 printf("field->offset = %d size=%d\n", field->offset, field->size);
2332 }
2333
2334 addr = read_size(data + field->offset, field->size);
2335
2336 printk = find_printk(addr);
2337 if (!printk) {
2338 format = malloc_or_die(45);
2339 sprintf(format, "%%pf : (NO FORMAT FOUND at %llx)\n",
2340 addr);
2341 return format;
2342 }
2343
2344 p = printk->printk;
2345 /* Remove any quotes. */
2346 if (*p == '"')
2347 p++;
2348 format = malloc_or_die(strlen(p) + 10);
2349 sprintf(format, "%s : %s", "%pf", p);
2350 /* remove ending quotes and new line since we will add one too */
2351 p = format + strlen(format) - 1;
2352 if (*p == '"')
2353 *p = 0;
2354
2355 p -= 2;
2356 if (strcmp(p, "\\n") == 0)
2357 *p = 0;
2358
2359 return format;
2360}
2361
2362static void pretty_print(void *data, int size, struct event *event)
2363{
2364 struct print_fmt *print_fmt = &event->print_fmt;
2365 struct print_arg *arg = print_fmt->args;
2366 struct print_arg *args = NULL;
2367 const char *ptr = print_fmt->format;
2368 unsigned long long val;
2369 struct func_map *func;
2370 const char *saveptr;
2371 char *bprint_fmt = NULL;
2372 char format[32];
2373 int show_func;
2374 int len;
2375 int ls;
2376
2377 if (event->flags & EVENT_FL_ISFUNC)
2378 ptr = " %pF <-- %pF";
2379
2380 if (event->flags & EVENT_FL_ISBPRINT) {
2381 bprint_fmt = get_bprint_format(data, size, event);
2382 args = make_bprint_args(bprint_fmt, data, size, event);
2383 arg = args;
2384 ptr = bprint_fmt;
2385 }
2386
2387 for (; *ptr; ptr++) {
2388 ls = 0;
91ff2bc1
SR
2389 if (*ptr == '\\') {
2390 ptr++;
2391 switch (*ptr) {
2392 case 'n':
2393 printf("\n");
2394 break;
2395 case 't':
2396 printf("\t");
2397 break;
2398 case 'r':
2399 printf("\r");
2400 break;
2401 case '\\':
2402 printf("\\");
2403 break;
2404 default:
2405 printf("%c", *ptr);
2406 break;
2407 }
2408
2409 } else if (*ptr == '%') {
ea4010d1
SR
2410 saveptr = ptr;
2411 show_func = 0;
2412 cont_process:
2413 ptr++;
2414 switch (*ptr) {
2415 case '%':
2416 printf("%%");
2417 break;
2418 case 'l':
2419 ls++;
2420 goto cont_process;
2421 case 'L':
2422 ls = 2;
2423 goto cont_process;
2424 case 'z':
2425 case 'Z':
2426 case '0' ... '9':
2427 goto cont_process;
2428 case 'p':
2429 if (long_size == 4)
2430 ls = 1;
2431 else
2432 ls = 2;
2433
2434 if (*(ptr+1) == 'F' ||
2435 *(ptr+1) == 'f') {
2436 ptr++;
2437 show_func = *ptr;
2438 }
2439
2440 /* fall through */
2441 case 'd':
2442 case 'i':
2443 case 'x':
2444 case 'X':
2445 case 'u':
2446 if (!arg)
2447 die("no argument match");
2448
2449 len = ((unsigned long)ptr + 1) -
2450 (unsigned long)saveptr;
2451
2452 /* should never happen */
2453 if (len > 32)
2454 die("bad format!");
2455
2456 memcpy(format, saveptr, len);
2457 format[len] = 0;
2458
2459 val = eval_num_arg(data, size, event, arg);
2460 arg = arg->next;
2461
2462 if (show_func) {
2463 func = find_func(val);
2464 if (func) {
2465 printf("%s", func->func);
2466 if (show_func == 'F')
2467 printf("+0x%llx",
2468 val - func->addr);
2469 break;
2470 }
2471 }
2472 switch (ls) {
2473 case 0:
2474 printf(format, (int)val);
2475 break;
2476 case 1:
2477 printf(format, (long)val);
2478 break;
2479 case 2:
2480 printf(format, (long long)val);
2481 break;
2482 default:
2483 die("bad count (%d)", ls);
2484 }
2485 break;
2486 case 's':
2487 if (!arg)
2488 die("no matching argument");
2489
2490 print_str_arg(data, size, event, arg);
2491 arg = arg->next;
2492 break;
2493 default:
2494 printf(">%c<", *ptr);
2495
2496 }
2497 } else
2498 printf("%c", *ptr);
2499 }
2500
2501 if (args) {
2502 free_args(args);
2503 free(bprint_fmt);
2504 }
2505}
2506
2507static inline int log10_cpu(int nb)
2508{
2509 if (nb / 100)
2510 return 3;
2511 if (nb / 10)
2512 return 2;
2513 return 1;
2514}
2515
2516/* taken from Linux, written by Frederic Weisbecker */
2517static void print_graph_cpu(int cpu)
2518{
2519 int i;
2520 int log10_this = log10_cpu(cpu);
2521 int log10_all = log10_cpu(cpus);
2522
2523
2524 /*
2525 * Start with a space character - to make it stand out
2526 * to the right a bit when trace output is pasted into
2527 * email:
2528 */
2529 printf(" ");
2530
2531 /*
2532 * Tricky - we space the CPU field according to the max
2533 * number of online CPUs. On a 2-cpu system it would take
2534 * a maximum of 1 digit - on a 128 cpu system it would
2535 * take up to 3 digits:
2536 */
2537 for (i = 0; i < log10_all - log10_this; i++)
2538 printf(" ");
2539
2540 printf("%d) ", cpu);
2541}
2542
2543#define TRACE_GRAPH_PROCINFO_LENGTH 14
2544#define TRACE_GRAPH_INDENT 2
2545
2546static void print_graph_proc(int pid, const char *comm)
2547{
2548 /* sign + log10(MAX_INT) + '\0' */
2549 char pid_str[11];
2550 int spaces = 0;
2551 int len;
2552 int i;
2553
2554 sprintf(pid_str, "%d", pid);
2555
2556 /* 1 stands for the "-" character */
2557 len = strlen(comm) + strlen(pid_str) + 1;
2558
2559 if (len < TRACE_GRAPH_PROCINFO_LENGTH)
2560 spaces = TRACE_GRAPH_PROCINFO_LENGTH - len;
2561
2562 /* First spaces to align center */
2563 for (i = 0; i < spaces / 2; i++)
2564 printf(" ");
2565
2566 printf("%s-%s", comm, pid_str);
2567
2568 /* Last spaces to align center */
2569 for (i = 0; i < spaces - (spaces / 2); i++)
2570 printf(" ");
2571}
2572
2573static struct record *
2574get_return_for_leaf(int cpu, int cur_pid, unsigned long long cur_func,
2575 struct record *next)
2576{
2577 struct format_field *field;
2578 struct event *event;
2579 unsigned long val;
2580 int type;
2581 int pid;
2582
ec156764
IM
2583 type = trace_parse_common_type(next->data);
2584 event = trace_find_event(type);
ea4010d1
SR
2585 if (!event)
2586 return NULL;
2587
2588 if (!(event->flags & EVENT_FL_ISFUNCRET))
2589 return NULL;
2590
2591 pid = parse_common_pid(next->data);
2592 field = find_field(event, "func");
2593 if (!field)
2594 die("function return does not have field func");
2595
2596 val = read_size(next->data + field->offset, field->size);
2597
2598 if (cur_pid != pid || cur_func != val)
2599 return NULL;
2600
2601 /* this is a leaf, now advance the iterator */
2602 return trace_read_data(cpu);
2603}
2604
2605/* Signal a overhead of time execution to the output */
2606static void print_graph_overhead(unsigned long long duration)
2607{
2608 /* Non nested entry or return */
2609 if (duration == ~0ULL)
2610 return (void)printf(" ");
2611
2612 /* Duration exceeded 100 msecs */
2613 if (duration > 100000ULL)
2614 return (void)printf("! ");
2615
2616 /* Duration exceeded 10 msecs */
2617 if (duration > 10000ULL)
2618 return (void)printf("+ ");
2619
2620 printf(" ");
2621}
2622
2623static void print_graph_duration(unsigned long long duration)
2624{
2625 unsigned long usecs = duration / 1000;
2626 unsigned long nsecs_rem = duration % 1000;
2627 /* log10(ULONG_MAX) + '\0' */
2628 char msecs_str[21];
2629 char nsecs_str[5];
2630 int len;
2631 int i;
2632
2633 sprintf(msecs_str, "%lu", usecs);
2634
2635 /* Print msecs */
2636 len = printf("%lu", usecs);
2637
2638 /* Print nsecs (we don't want to exceed 7 numbers) */
2639 if (len < 7) {
2640 snprintf(nsecs_str, 8 - len, "%03lu", nsecs_rem);
2641 len += printf(".%s", nsecs_str);
2642 }
2643
2644 printf(" us ");
2645
2646 /* Print remaining spaces to fit the row's width */
2647 for (i = len; i < 7; i++)
2648 printf(" ");
2649
2650 printf("| ");
2651}
2652
2653static void
2654print_graph_entry_leaf(struct event *event, void *data, struct record *ret_rec)
2655{
2656 unsigned long long rettime, calltime;
2657 unsigned long long duration, depth;
2658 unsigned long long val;
2659 struct format_field *field;
2660 struct func_map *func;
2661 struct event *ret_event;
2662 int type;
2663 int i;
2664
ec156764
IM
2665 type = trace_parse_common_type(ret_rec->data);
2666 ret_event = trace_find_event(type);
ea4010d1
SR
2667
2668 field = find_field(ret_event, "rettime");
2669 if (!field)
2670 die("can't find rettime in return graph");
2671 rettime = read_size(ret_rec->data + field->offset, field->size);
2672
2673 field = find_field(ret_event, "calltime");
2674 if (!field)
2675 die("can't find rettime in return graph");
2676 calltime = read_size(ret_rec->data + field->offset, field->size);
2677
2678 duration = rettime - calltime;
2679
2680 /* Overhead */
2681 print_graph_overhead(duration);
2682
2683 /* Duration */
2684 print_graph_duration(duration);
2685
2686 field = find_field(event, "depth");
2687 if (!field)
2688 die("can't find depth in entry graph");
2689 depth = read_size(data + field->offset, field->size);
2690
2691 /* Function */
2692 for (i = 0; i < (int)(depth * TRACE_GRAPH_INDENT); i++)
2693 printf(" ");
2694
2695 field = find_field(event, "func");
2696 if (!field)
2697 die("can't find func in entry graph");
2698 val = read_size(data + field->offset, field->size);
2699 func = find_func(val);
2700
2701 if (func)
2702 printf("%s();", func->func);
2703 else
2704 printf("%llx();", val);
2705}
2706
2707static void print_graph_nested(struct event *event, void *data)
2708{
2709 struct format_field *field;
2710 unsigned long long depth;
2711 unsigned long long val;
2712 struct func_map *func;
2713 int i;
2714
2715 /* No overhead */
2716 print_graph_overhead(-1);
2717
2718 /* No time */
2719 printf(" | ");
2720
2721 field = find_field(event, "depth");
2722 if (!field)
2723 die("can't find depth in entry graph");
2724 depth = read_size(data + field->offset, field->size);
2725
2726 /* Function */
2727 for (i = 0; i < (int)(depth * TRACE_GRAPH_INDENT); i++)
2728 printf(" ");
2729
2730 field = find_field(event, "func");
2731 if (!field)
2732 die("can't find func in entry graph");
2733 val = read_size(data + field->offset, field->size);
2734 func = find_func(val);
2735
2736 if (func)
2737 printf("%s() {", func->func);
2738 else
2739 printf("%llx() {", val);
2740}
2741
2742static void
2743pretty_print_func_ent(void *data, int size, struct event *event,
2744 int cpu, int pid, const char *comm,
2745 unsigned long secs, unsigned long usecs)
2746{
2747 struct format_field *field;
2748 struct record *rec;
2749 void *copy_data;
2750 unsigned long val;
2751
2752 printf("%5lu.%06lu | ", secs, usecs);
2753
2754 print_graph_cpu(cpu);
2755 print_graph_proc(pid, comm);
2756
2757 printf(" | ");
2758
2759 field = find_field(event, "func");
2760 if (!field)
2761 die("function entry does not have func field");
2762
2763 val = read_size(data + field->offset, field->size);
2764
2765 /*
2766 * peek_data may unmap the data pointer. Copy it first.
2767 */
2768 copy_data = malloc_or_die(size);
2769 memcpy(copy_data, data, size);
2770 data = copy_data;
2771
2772 rec = trace_peek_data(cpu);
2773 if (rec) {
2774 rec = get_return_for_leaf(cpu, pid, val, rec);
2775 if (rec) {
2776 print_graph_entry_leaf(event, data, rec);
2777 goto out_free;
2778 }
2779 }
2780 print_graph_nested(event, data);
2781out_free:
2782 free(data);
2783}
2784
2785static void
2786pretty_print_func_ret(void *data, int size __unused, struct event *event,
2787 int cpu, int pid, const char *comm,
2788 unsigned long secs, unsigned long usecs)
2789{
2790 unsigned long long rettime, calltime;
2791 unsigned long long duration, depth;
2792 struct format_field *field;
2793 int i;
2794
2795 printf("%5lu.%06lu | ", secs, usecs);
2796
2797 print_graph_cpu(cpu);
2798 print_graph_proc(pid, comm);
2799
2800 printf(" | ");
2801
2802 field = find_field(event, "rettime");
2803 if (!field)
2804 die("can't find rettime in return graph");
2805 rettime = read_size(data + field->offset, field->size);
2806
2807 field = find_field(event, "calltime");
2808 if (!field)
2809 die("can't find calltime in return graph");
2810 calltime = read_size(data + field->offset, field->size);
2811
2812 duration = rettime - calltime;
2813
2814 /* Overhead */
2815 print_graph_overhead(duration);
2816
2817 /* Duration */
2818 print_graph_duration(duration);
2819
2820 field = find_field(event, "depth");
2821 if (!field)
2822 die("can't find depth in entry graph");
2823 depth = read_size(data + field->offset, field->size);
2824
2825 /* Function */
2826 for (i = 0; i < (int)(depth * TRACE_GRAPH_INDENT); i++)
2827 printf(" ");
2828
2829 printf("}");
2830}
2831
2832static void
2833pretty_print_func_graph(void *data, int size, struct event *event,
2834 int cpu, int pid, const char *comm,
2835 unsigned long secs, unsigned long usecs)
2836{
2837 if (event->flags & EVENT_FL_ISFUNCENT)
2838 pretty_print_func_ent(data, size, event,
2839 cpu, pid, comm, secs, usecs);
2840 else if (event->flags & EVENT_FL_ISFUNCRET)
2841 pretty_print_func_ret(data, size, event,
2842 cpu, pid, comm, secs, usecs);
2843 printf("\n");
2844}
2845
2846void print_event(int cpu, void *data, int size, unsigned long long nsecs,
2847 char *comm)
2848{
2849 struct event *event;
2850 unsigned long secs;
2851 unsigned long usecs;
2852 int type;
2853 int pid;
2854
2855 secs = nsecs / NSECS_PER_SEC;
2856 nsecs -= secs * NSECS_PER_SEC;
2857 usecs = nsecs / NSECS_PER_USEC;
2858
ec156764 2859 type = trace_parse_common_type(data);
ea4010d1 2860
ec156764 2861 event = trace_find_event(type);
ea57c4f5
IM
2862 if (!event) {
2863 printf("ug! no event found for type %d\n", type);
2864 return;
2865 }
ea4010d1
SR
2866
2867 pid = parse_common_pid(data);
2868
2869 if (event->flags & (EVENT_FL_ISFUNCENT | EVENT_FL_ISFUNCRET))
2870 return pretty_print_func_graph(data, size, event, cpu,
2871 pid, comm, secs, usecs);
2872
00fc9786 2873 printf("%16s-%-5d [%03d] %5lu.%09Lu: %s: ",
ea4010d1 2874 comm, pid, cpu,
00fc9786 2875 secs, nsecs, event->name);
ea4010d1
SR
2876
2877 pretty_print(data, size, event);
2878 printf("\n");
2879}
2880
2881static void print_fields(struct print_flag_sym *field)
2882{
2883 printf("{ %s, %s }", field->value, field->str);
2884 if (field->next) {
2885 printf(", ");
2886 print_fields(field->next);
2887 }
2888}
2889
2890static void print_args(struct print_arg *args)
2891{
2892 int print_paren = 1;
2893
2894 switch (args->type) {
2895 case PRINT_NULL:
2896 printf("null");
2897 break;
2898 case PRINT_ATOM:
2899 printf("%s", args->atom.atom);
2900 break;
2901 case PRINT_FIELD:
2902 printf("REC->%s", args->field.name);
2903 break;
2904 case PRINT_FLAGS:
2905 printf("__print_flags(");
2906 print_args(args->flags.field);
2907 printf(", %s, ", args->flags.delim);
2908 print_fields(args->flags.flags);
2909 printf(")");
2910 break;
2911 case PRINT_SYMBOL:
2912 printf("__print_symbolic(");
2913 print_args(args->symbol.field);
2914 printf(", ");
2915 print_fields(args->symbol.symbols);
2916 printf(")");
2917 break;
2918 case PRINT_STRING:
2919 printf("__get_str(%s)", args->string.string);
2920 break;
2921 case PRINT_TYPE:
2922 printf("(%s)", args->typecast.type);
2923 print_args(args->typecast.item);
2924 break;
2925 case PRINT_OP:
2926 if (strcmp(args->op.op, ":") == 0)
2927 print_paren = 0;
2928 if (print_paren)
2929 printf("(");
2930 print_args(args->op.left);
2931 printf(" %s ", args->op.op);
2932 print_args(args->op.right);
2933 if (print_paren)
2934 printf(")");
2935 break;
2936 default:
2937 /* we should warn... */
2938 return;
2939 }
2940 if (args->next) {
2941 printf("\n");
2942 print_args(args->next);
2943 }
2944}
2945
2946static void parse_header_field(char *type,
2947 int *offset, int *size)
2948{
2949 char *token;
2950
2951 if (read_expected(EVENT_ITEM, (char *)"field") < 0)
2952 return;
2953 if (read_expected(EVENT_OP, (char *)":") < 0)
2954 return;
2955 /* type */
2956 if (read_expect_type(EVENT_ITEM, &token) < 0)
2957 return;
2958 free_token(token);
2959
2960 if (read_expected(EVENT_ITEM, type) < 0)
2961 return;
2962 if (read_expected(EVENT_OP, (char *)";") < 0)
2963 return;
2964 if (read_expected(EVENT_ITEM, (char *)"offset") < 0)
2965 return;
2966 if (read_expected(EVENT_OP, (char *)":") < 0)
2967 return;
2968 if (read_expect_type(EVENT_ITEM, &token) < 0)
2969 return;
2970 *offset = atoi(token);
2971 free_token(token);
2972 if (read_expected(EVENT_OP, (char *)";") < 0)
2973 return;
2974 if (read_expected(EVENT_ITEM, (char *)"size") < 0)
2975 return;
2976 if (read_expected(EVENT_OP, (char *)":") < 0)
2977 return;
2978 if (read_expect_type(EVENT_ITEM, &token) < 0)
2979 return;
2980 *size = atoi(token);
2981 free_token(token);
26a50744
TZ
2982 if (read_expected(EVENT_OP, (char *)";") < 0)
2983 return;
2984 if (read_expected(EVENT_ITEM, (char *)"signed") < 0)
2985 return;
2986 if (read_expected(EVENT_OP, (char *)":") < 0)
2987 return;
2988 if (read_expect_type(EVENT_ITEM, &token) < 0)
2989 return;
2990 free_token(token);
ea4010d1
SR
2991 if (read_expected(EVENT_OP, (char *)";") < 0)
2992 return;
2993 if (read_expect_type(EVENT_NEWLINE, &token) < 0)
2994 return;
2995 free_token(token);
2996}
2997
2998int parse_header_page(char *buf, unsigned long size)
2999{
3000 init_input_buf(buf, size);
3001
3002 parse_header_field((char *)"timestamp", &header_page_ts_offset,
3003 &header_page_ts_size);
3004 parse_header_field((char *)"commit", &header_page_size_offset,
3005 &header_page_size_size);
3006 parse_header_field((char *)"data", &header_page_data_offset,
3007 &header_page_data_size);
3008
3009 return 0;
3010}
3011
3012int parse_ftrace_file(char *buf, unsigned long size)
3013{
3014 struct format_field *field;
3015 struct print_arg *arg, **list;
3016 struct event *event;
3017 int ret;
3018
3019 init_input_buf(buf, size);
3020
3021 event = alloc_event();
3022 if (!event)
3023 return -ENOMEM;
3024
3025 event->flags |= EVENT_FL_ISFTRACE;
3026
3027 event->name = event_read_name();
3028 if (!event->name)
3029 die("failed to read ftrace event name");
3030
3031 if (strcmp(event->name, "function") == 0)
3032 event->flags |= EVENT_FL_ISFUNC;
3033
3034 else if (strcmp(event->name, "funcgraph_entry") == 0)
3035 event->flags |= EVENT_FL_ISFUNCENT;
3036
3037 else if (strcmp(event->name, "funcgraph_exit") == 0)
3038 event->flags |= EVENT_FL_ISFUNCRET;
3039
3040 else if (strcmp(event->name, "bprint") == 0)
3041 event->flags |= EVENT_FL_ISBPRINT;
3042
3043 event->id = event_read_id();
3044 if (event->id < 0)
3045 die("failed to read ftrace event id");
3046
3047 add_event(event);
3048
3049 ret = event_read_format(event);
3050 if (ret < 0)
3051 die("failed to read ftrace event format");
3052
3053 ret = event_read_print(event);
3054 if (ret < 0)
3055 die("failed to read ftrace event print fmt");
3056
3057 /*
3058 * The arguments for ftrace files are parsed by the fields.
3059 * Set up the fields as their arguments.
3060 */
3061 list = &event->print_fmt.args;
3062 for (field = event->format.fields; field; field = field->next) {
3063 arg = malloc_or_die(sizeof(*arg));
3064 memset(arg, 0, sizeof(*arg));
3065 *list = arg;
3066 list = &arg->next;
3067 arg->type = PRINT_FIELD;
3068 arg->field.name = field->name;
3069 arg->field.field = field;
3070 }
3071 return 0;
3072}
3073
27746018 3074int parse_event_file(char *buf, unsigned long size, char *sys)
ea4010d1
SR
3075{
3076 struct event *event;
3077 int ret;
3078
3079 init_input_buf(buf, size);
3080
3081 event = alloc_event();
3082 if (!event)
3083 return -ENOMEM;
3084
3085 event->name = event_read_name();
3086 if (!event->name)
3087 die("failed to read event name");
3088
3089 event->id = event_read_id();
3090 if (event->id < 0)
3091 die("failed to read event id");
3092
3093 ret = event_read_format(event);
3094 if (ret < 0)
3095 die("failed to read event format");
3096
3097 ret = event_read_print(event);
3098 if (ret < 0)
3099 die("failed to read event print fmt");
3100
27746018
TZ
3101 event->system = strdup(sys);
3102
ea4010d1
SR
3103#define PRINT_ARGS 0
3104 if (PRINT_ARGS && event->print_fmt.args)
3105 print_args(event->print_fmt.args);
3106
3107 add_event(event);
3108 return 0;
3109}
3110
3111void parse_set_info(int nr_cpus, int long_sz)
3112{
3113 cpus = nr_cpus;
3114 long_size = long_sz;
3115}