1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/hw_breakpoint.h>
3 #include <linux/err.h>
4 #include <linux/zalloc.h>
5 #include <dirent.h>
6 #include <errno.h>
7 #include <sys/ioctl.h>
8 #include <sys/param.h>
9 #include "term.h"
10 #include "evlist.h"
11 #include "evsel.h"
12 #include <subcmd/parse-options.h>
13 #include "parse-events.h"
14 #include "string2.h"
15 #include "strlist.h"
16 #include "bpf-loader.h"
17 #include "debug.h"
18 #include <api/fs/tracing_path.h>
19 #include <perf/cpumap.h>
20 #include "parse-events-bison.h"
21 #include "parse-events-flex.h"
22 #include "pmu.h"
23 #include "asm/bug.h"
24 #include "util/parse-branch-options.h"
25 #include "util/evsel_config.h"
26 #include "util/event.h"
27 #include "perf.h"
28 #include "util/parse-events-hybrid.h"
29 #include "util/pmu-hybrid.h"
30 #include "tracepoint.h"
31 #include "thread_map.h"
32
33 #define MAX_NAME_LEN 100
34
35 struct perf_pmu_event_symbol {
36 char *symbol;
37 enum perf_pmu_event_symbol_type type;
38 };
39
40 #ifdef PARSER_DEBUG
41 extern int parse_events_debug;
42 #endif
43 int parse_events_parse(void *parse_state, void *scanner);
44 static int get_config_terms(struct list_head *head_config,
45 struct list_head *head_terms __maybe_unused);
46 static int parse_events__with_hybrid_pmu(struct parse_events_state *parse_state,
47 const char *str, char *pmu_name,
48 struct list_head *list);
49
50 static struct perf_pmu_event_symbol *perf_pmu_events_list;
51 /*
52 * The variable indicates the number of supported pmu event symbols.
53 * 0 means not initialized and ready to init
54 * -1 means failed to init, don't try anymore
55 * >0 is the number of supported pmu event symbols
56 */
57 static int perf_pmu_events_list_num;
58
59 struct event_symbol event_symbols_hw[PERF_COUNT_HW_MAX] = {
60 [PERF_COUNT_HW_CPU_CYCLES] = {
61 .symbol = "cpu-cycles",
62 .alias = "cycles",
63 },
64 [PERF_COUNT_HW_INSTRUCTIONS] = {
65 .symbol = "instructions",
66 .alias = "",
67 },
68 [PERF_COUNT_HW_CACHE_REFERENCES] = {
69 .symbol = "cache-references",
70 .alias = "",
71 },
72 [PERF_COUNT_HW_CACHE_MISSES] = {
73 .symbol = "cache-misses",
74 .alias = "",
75 },
76 [PERF_COUNT_HW_BRANCH_INSTRUCTIONS] = {
77 .symbol = "branch-instructions",
78 .alias = "branches",
79 },
80 [PERF_COUNT_HW_BRANCH_MISSES] = {
81 .symbol = "branch-misses",
82 .alias = "",
83 },
84 [PERF_COUNT_HW_BUS_CYCLES] = {
85 .symbol = "bus-cycles",
86 .alias = "",
87 },
88 [PERF_COUNT_HW_STALLED_CYCLES_FRONTEND] = {
89 .symbol = "stalled-cycles-frontend",
90 .alias = "idle-cycles-frontend",
91 },
92 [PERF_COUNT_HW_STALLED_CYCLES_BACKEND] = {
93 .symbol = "stalled-cycles-backend",
94 .alias = "idle-cycles-backend",
95 },
96 [PERF_COUNT_HW_REF_CPU_CYCLES] = {
97 .symbol = "ref-cycles",
98 .alias = "",
99 },
100 };
101
102 struct event_symbol event_symbols_sw[PERF_COUNT_SW_MAX] = {
103 [PERF_COUNT_SW_CPU_CLOCK] = {
104 .symbol = "cpu-clock",
105 .alias = "",
106 },
107 [PERF_COUNT_SW_TASK_CLOCK] = {
108 .symbol = "task-clock",
109 .alias = "",
110 },
111 [PERF_COUNT_SW_PAGE_FAULTS] = {
112 .symbol = "page-faults",
113 .alias = "faults",
114 },
115 [PERF_COUNT_SW_CONTEXT_SWITCHES] = {
116 .symbol = "context-switches",
117 .alias = "cs",
118 },
119 [PERF_COUNT_SW_CPU_MIGRATIONS] = {
120 .symbol = "cpu-migrations",
121 .alias = "migrations",
122 },
123 [PERF_COUNT_SW_PAGE_FAULTS_MIN] = {
124 .symbol = "minor-faults",
125 .alias = "",
126 },
127 [PERF_COUNT_SW_PAGE_FAULTS_MAJ] = {
128 .symbol = "major-faults",
129 .alias = "",
130 },
131 [PERF_COUNT_SW_ALIGNMENT_FAULTS] = {
132 .symbol = "alignment-faults",
133 .alias = "",
134 },
135 [PERF_COUNT_SW_EMULATION_FAULTS] = {
136 .symbol = "emulation-faults",
137 .alias = "",
138 },
139 [PERF_COUNT_SW_DUMMY] = {
140 .symbol = "dummy",
141 .alias = "",
142 },
143 [PERF_COUNT_SW_BPF_OUTPUT] = {
144 .symbol = "bpf-output",
145 .alias = "",
146 },
147 [PERF_COUNT_SW_CGROUP_SWITCHES] = {
148 .symbol = "cgroup-switches",
149 .alias = "",
150 },
151 };
152
is_event_supported(u8 type,u64 config)153 bool is_event_supported(u8 type, u64 config)
154 {
155 bool ret = true;
156 int open_return;
157 struct evsel *evsel;
158 struct perf_event_attr attr = {
159 .type = type,
160 .config = config,
161 .disabled = 1,
162 };
163 struct perf_thread_map *tmap = thread_map__new_by_tid(0);
164
165 if (tmap == NULL)
166 return false;
167
168 evsel = evsel__new(&attr);
169 if (evsel) {
170 open_return = evsel__open(evsel, NULL, tmap);
171 ret = open_return >= 0;
172
173 if (open_return == -EACCES) {
174 /*
175 * This happens if the paranoid value
176 * /proc/sys/kernel/perf_event_paranoid is set to 2
177 * Re-run with exclude_kernel set; we don't do that
178 * by default as some ARM machines do not support it.
179 *
180 */
181 evsel->core.attr.exclude_kernel = 1;
182 ret = evsel__open(evsel, NULL, tmap) >= 0;
183 }
184 evsel__delete(evsel);
185 }
186
187 perf_thread_map__put(tmap);
188 return ret;
189 }
190
event_type(int type)191 const char *event_type(int type)
192 {
193 switch (type) {
194 case PERF_TYPE_HARDWARE:
195 return "hardware";
196
197 case PERF_TYPE_SOFTWARE:
198 return "software";
199
200 case PERF_TYPE_TRACEPOINT:
201 return "tracepoint";
202
203 case PERF_TYPE_HW_CACHE:
204 return "hardware-cache";
205
206 default:
207 break;
208 }
209
210 return "unknown";
211 }
212
get_config_str(struct list_head * head_terms,int type_term)213 static char *get_config_str(struct list_head *head_terms, int type_term)
214 {
215 struct parse_events_term *term;
216
217 if (!head_terms)
218 return NULL;
219
220 list_for_each_entry(term, head_terms, list)
221 if (term->type_term == type_term)
222 return term->val.str;
223
224 return NULL;
225 }
226
get_config_metric_id(struct list_head * head_terms)227 static char *get_config_metric_id(struct list_head *head_terms)
228 {
229 return get_config_str(head_terms, PARSE_EVENTS__TERM_TYPE_METRIC_ID);
230 }
231
get_config_name(struct list_head * head_terms)232 static char *get_config_name(struct list_head *head_terms)
233 {
234 return get_config_str(head_terms, PARSE_EVENTS__TERM_TYPE_NAME);
235 }
236
237 static struct evsel *
__add_event(struct list_head * list,int * idx,struct perf_event_attr * attr,bool init_attr,const char * name,const char * metric_id,struct perf_pmu * pmu,struct list_head * config_terms,bool auto_merge_stats,const char * cpu_list)238 __add_event(struct list_head *list, int *idx,
239 struct perf_event_attr *attr,
240 bool init_attr,
241 const char *name, const char *metric_id, struct perf_pmu *pmu,
242 struct list_head *config_terms, bool auto_merge_stats,
243 const char *cpu_list)
244 {
245 struct evsel *evsel;
246 struct perf_cpu_map *cpus = pmu ? perf_cpu_map__get(pmu->cpus) :
247 cpu_list ? perf_cpu_map__new(cpu_list) : NULL;
248
249 if (pmu)
250 perf_pmu__warn_invalid_formats(pmu);
251
252 if (pmu && attr->type == PERF_TYPE_RAW)
253 perf_pmu__warn_invalid_config(pmu, attr->config, name);
254
255 if (init_attr)
256 event_attr_init(attr);
257
258 evsel = evsel__new_idx(attr, *idx);
259 if (!evsel) {
260 perf_cpu_map__put(cpus);
261 return NULL;
262 }
263
264 (*idx)++;
265 evsel->core.cpus = cpus;
266 evsel->core.own_cpus = perf_cpu_map__get(cpus);
267 evsel->core.requires_cpu = pmu ? pmu->is_uncore : false;
268 evsel->auto_merge_stats = auto_merge_stats;
269 evsel->pmu = pmu;
270
271 if (name)
272 evsel->name = strdup(name);
273
274 if (metric_id)
275 evsel->metric_id = strdup(metric_id);
276
277 if (config_terms)
278 list_splice_init(config_terms, &evsel->config_terms);
279
280 if (list)
281 list_add_tail(&evsel->core.node, list);
282
283 return evsel;
284 }
285
parse_events__add_event(int idx,struct perf_event_attr * attr,const char * name,const char * metric_id,struct perf_pmu * pmu)286 struct evsel *parse_events__add_event(int idx, struct perf_event_attr *attr,
287 const char *name, const char *metric_id,
288 struct perf_pmu *pmu)
289 {
290 return __add_event(/*list=*/NULL, &idx, attr, /*init_attr=*/false, name,
291 metric_id, pmu, /*config_terms=*/NULL,
292 /*auto_merge_stats=*/false, /*cpu_list=*/NULL);
293 }
294
add_event(struct list_head * list,int * idx,struct perf_event_attr * attr,const char * name,const char * metric_id,struct list_head * config_terms)295 static int add_event(struct list_head *list, int *idx,
296 struct perf_event_attr *attr, const char *name,
297 const char *metric_id, struct list_head *config_terms)
298 {
299 return __add_event(list, idx, attr, /*init_attr*/true, name, metric_id,
300 /*pmu=*/NULL, config_terms,
301 /*auto_merge_stats=*/false, /*cpu_list=*/NULL) ? 0 : -ENOMEM;
302 }
303
add_event_tool(struct list_head * list,int * idx,enum perf_tool_event tool_event)304 static int add_event_tool(struct list_head *list, int *idx,
305 enum perf_tool_event tool_event)
306 {
307 struct evsel *evsel;
308 struct perf_event_attr attr = {
309 .type = PERF_TYPE_SOFTWARE,
310 .config = PERF_COUNT_SW_DUMMY,
311 };
312
313 evsel = __add_event(list, idx, &attr, /*init_attr=*/true, /*name=*/NULL,
314 /*metric_id=*/NULL, /*pmu=*/NULL,
315 /*config_terms=*/NULL, /*auto_merge_stats=*/false,
316 /*cpu_list=*/"0");
317 if (!evsel)
318 return -ENOMEM;
319 evsel->tool_event = tool_event;
320 if (tool_event == PERF_TOOL_DURATION_TIME
321 || tool_event == PERF_TOOL_USER_TIME
322 || tool_event == PERF_TOOL_SYSTEM_TIME) {
323 free((char *)evsel->unit);
324 evsel->unit = strdup("ns");
325 }
326 return 0;
327 }
328
parse_aliases(char * str,const char * const names[][EVSEL__MAX_ALIASES],int size)329 static int parse_aliases(char *str, const char *const names[][EVSEL__MAX_ALIASES], int size)
330 {
331 int i, j;
332 int n, longest = -1;
333
334 for (i = 0; i < size; i++) {
335 for (j = 0; j < EVSEL__MAX_ALIASES && names[i][j]; j++) {
336 n = strlen(names[i][j]);
337 if (n > longest && !strncasecmp(str, names[i][j], n))
338 longest = n;
339 }
340 if (longest > 0)
341 return i;
342 }
343
344 return -1;
345 }
346
347 typedef int config_term_func_t(struct perf_event_attr *attr,
348 struct parse_events_term *term,
349 struct parse_events_error *err);
350 static int config_term_common(struct perf_event_attr *attr,
351 struct parse_events_term *term,
352 struct parse_events_error *err);
353 static int config_attr(struct perf_event_attr *attr,
354 struct list_head *head,
355 struct parse_events_error *err,
356 config_term_func_t config_term);
357
parse_events_add_cache(struct list_head * list,int * idx,char * type,char * op_result1,char * op_result2,struct parse_events_error * err,struct list_head * head_config,struct parse_events_state * parse_state)358 int parse_events_add_cache(struct list_head *list, int *idx,
359 char *type, char *op_result1, char *op_result2,
360 struct parse_events_error *err,
361 struct list_head *head_config,
362 struct parse_events_state *parse_state)
363 {
364 struct perf_event_attr attr;
365 LIST_HEAD(config_terms);
366 char name[MAX_NAME_LEN];
367 const char *config_name, *metric_id;
368 int cache_type = -1, cache_op = -1, cache_result = -1;
369 char *op_result[2] = { op_result1, op_result2 };
370 int i, n, ret;
371 bool hybrid;
372
373 /*
374 * No fallback - if we cannot get a clear cache type
375 * then bail out:
376 */
377 cache_type = parse_aliases(type, evsel__hw_cache, PERF_COUNT_HW_CACHE_MAX);
378 if (cache_type == -1)
379 return -EINVAL;
380
381 config_name = get_config_name(head_config);
382 n = snprintf(name, MAX_NAME_LEN, "%s", type);
383
384 for (i = 0; (i < 2) && (op_result[i]); i++) {
385 char *str = op_result[i];
386
387 n += snprintf(name + n, MAX_NAME_LEN - n, "-%s", str);
388
389 if (cache_op == -1) {
390 cache_op = parse_aliases(str, evsel__hw_cache_op,
391 PERF_COUNT_HW_CACHE_OP_MAX);
392 if (cache_op >= 0) {
393 if (!evsel__is_cache_op_valid(cache_type, cache_op))
394 return -EINVAL;
395 continue;
396 }
397 }
398
399 if (cache_result == -1) {
400 cache_result = parse_aliases(str, evsel__hw_cache_result,
401 PERF_COUNT_HW_CACHE_RESULT_MAX);
402 if (cache_result >= 0)
403 continue;
404 }
405 }
406
407 /*
408 * Fall back to reads:
409 */
410 if (cache_op == -1)
411 cache_op = PERF_COUNT_HW_CACHE_OP_READ;
412
413 /*
414 * Fall back to accesses:
415 */
416 if (cache_result == -1)
417 cache_result = PERF_COUNT_HW_CACHE_RESULT_ACCESS;
418
419 memset(&attr, 0, sizeof(attr));
420 attr.config = cache_type | (cache_op << 8) | (cache_result << 16);
421 attr.type = PERF_TYPE_HW_CACHE;
422
423 if (head_config) {
424 if (config_attr(&attr, head_config, err,
425 config_term_common))
426 return -EINVAL;
427
428 if (get_config_terms(head_config, &config_terms))
429 return -ENOMEM;
430 }
431
432 metric_id = get_config_metric_id(head_config);
433 ret = parse_events__add_cache_hybrid(list, idx, &attr,
434 config_name ? : name,
435 metric_id,
436 &config_terms,
437 &hybrid, parse_state);
438 if (hybrid)
439 goto out_free_terms;
440
441 ret = add_event(list, idx, &attr, config_name ? : name, metric_id,
442 &config_terms);
443 out_free_terms:
444 free_config_terms(&config_terms);
445 return ret;
446 }
447
448 #ifdef HAVE_LIBTRACEEVENT
tracepoint_error(struct parse_events_error * e,int err,const char * sys,const char * name)449 static void tracepoint_error(struct parse_events_error *e, int err,
450 const char *sys, const char *name)
451 {
452 const char *str;
453 char help[BUFSIZ];
454
455 if (!e)
456 return;
457
458 /*
459 * We get error directly from syscall errno ( > 0),
460 * or from encoded pointer's error ( < 0).
461 */
462 err = abs(err);
463
464 switch (err) {
465 case EACCES:
466 str = "can't access trace events";
467 break;
468 case ENOENT:
469 str = "unknown tracepoint";
470 break;
471 default:
472 str = "failed to add tracepoint";
473 break;
474 }
475
476 tracing_path__strerror_open_tp(err, help, sizeof(help), sys, name);
477 parse_events_error__handle(e, 0, strdup(str), strdup(help));
478 }
479
add_tracepoint(struct list_head * list,int * idx,const char * sys_name,const char * evt_name,struct parse_events_error * err,struct list_head * head_config)480 static int add_tracepoint(struct list_head *list, int *idx,
481 const char *sys_name, const char *evt_name,
482 struct parse_events_error *err,
483 struct list_head *head_config)
484 {
485 struct evsel *evsel = evsel__newtp_idx(sys_name, evt_name, (*idx)++);
486
487 if (IS_ERR(evsel)) {
488 tracepoint_error(err, PTR_ERR(evsel), sys_name, evt_name);
489 return PTR_ERR(evsel);
490 }
491
492 if (head_config) {
493 LIST_HEAD(config_terms);
494
495 if (get_config_terms(head_config, &config_terms))
496 return -ENOMEM;
497 list_splice(&config_terms, &evsel->config_terms);
498 }
499
500 list_add_tail(&evsel->core.node, list);
501 return 0;
502 }
503
add_tracepoint_multi_event(struct list_head * list,int * idx,const char * sys_name,const char * evt_name,struct parse_events_error * err,struct list_head * head_config)504 static int add_tracepoint_multi_event(struct list_head *list, int *idx,
505 const char *sys_name, const char *evt_name,
506 struct parse_events_error *err,
507 struct list_head *head_config)
508 {
509 char *evt_path;
510 struct dirent *evt_ent;
511 DIR *evt_dir;
512 int ret = 0, found = 0;
513
514 evt_path = get_events_file(sys_name);
515 if (!evt_path) {
516 tracepoint_error(err, errno, sys_name, evt_name);
517 return -1;
518 }
519 evt_dir = opendir(evt_path);
520 if (!evt_dir) {
521 put_events_file(evt_path);
522 tracepoint_error(err, errno, sys_name, evt_name);
523 return -1;
524 }
525
526 while (!ret && (evt_ent = readdir(evt_dir))) {
527 if (!strcmp(evt_ent->d_name, ".")
528 || !strcmp(evt_ent->d_name, "..")
529 || !strcmp(evt_ent->d_name, "enable")
530 || !strcmp(evt_ent->d_name, "filter"))
531 continue;
532
533 if (!strglobmatch(evt_ent->d_name, evt_name))
534 continue;
535
536 found++;
537
538 ret = add_tracepoint(list, idx, sys_name, evt_ent->d_name,
539 err, head_config);
540 }
541
542 if (!found) {
543 tracepoint_error(err, ENOENT, sys_name, evt_name);
544 ret = -1;
545 }
546
547 put_events_file(evt_path);
548 closedir(evt_dir);
549 return ret;
550 }
551
add_tracepoint_event(struct list_head * list,int * idx,const char * sys_name,const char * evt_name,struct parse_events_error * err,struct list_head * head_config)552 static int add_tracepoint_event(struct list_head *list, int *idx,
553 const char *sys_name, const char *evt_name,
554 struct parse_events_error *err,
555 struct list_head *head_config)
556 {
557 return strpbrk(evt_name, "*?") ?
558 add_tracepoint_multi_event(list, idx, sys_name, evt_name,
559 err, head_config) :
560 add_tracepoint(list, idx, sys_name, evt_name,
561 err, head_config);
562 }
563
add_tracepoint_multi_sys(struct list_head * list,int * idx,const char * sys_name,const char * evt_name,struct parse_events_error * err,struct list_head * head_config)564 static int add_tracepoint_multi_sys(struct list_head *list, int *idx,
565 const char *sys_name, const char *evt_name,
566 struct parse_events_error *err,
567 struct list_head *head_config)
568 {
569 struct dirent *events_ent;
570 DIR *events_dir;
571 int ret = 0;
572
573 events_dir = tracing_events__opendir();
574 if (!events_dir) {
575 tracepoint_error(err, errno, sys_name, evt_name);
576 return -1;
577 }
578
579 while (!ret && (events_ent = readdir(events_dir))) {
580 if (!strcmp(events_ent->d_name, ".")
581 || !strcmp(events_ent->d_name, "..")
582 || !strcmp(events_ent->d_name, "enable")
583 || !strcmp(events_ent->d_name, "header_event")
584 || !strcmp(events_ent->d_name, "header_page"))
585 continue;
586
587 if (!strglobmatch(events_ent->d_name, sys_name))
588 continue;
589
590 ret = add_tracepoint_event(list, idx, events_ent->d_name,
591 evt_name, err, head_config);
592 }
593
594 closedir(events_dir);
595 return ret;
596 }
597 #endif /* HAVE_LIBTRACEEVENT */
598
599 #ifdef HAVE_LIBBPF_SUPPORT
600 struct __add_bpf_event_param {
601 struct parse_events_state *parse_state;
602 struct list_head *list;
603 struct list_head *head_config;
604 };
605
add_bpf_event(const char * group,const char * event,int fd,struct bpf_object * obj,void * _param)606 static int add_bpf_event(const char *group, const char *event, int fd, struct bpf_object *obj,
607 void *_param)
608 {
609 LIST_HEAD(new_evsels);
610 struct __add_bpf_event_param *param = _param;
611 struct parse_events_state *parse_state = param->parse_state;
612 struct list_head *list = param->list;
613 struct evsel *pos;
614 int err;
615 /*
616 * Check if we should add the event, i.e. if it is a TP but starts with a '!',
617 * then don't add the tracepoint, this will be used for something else, like
618 * adding to a BPF_MAP_TYPE_PROG_ARRAY.
619 *
620 * See tools/perf/examples/bpf/augmented_raw_syscalls.c
621 */
622 if (group[0] == '!')
623 return 0;
624
625 pr_debug("add bpf event %s:%s and attach bpf program %d\n",
626 group, event, fd);
627
628 err = parse_events_add_tracepoint(&new_evsels, &parse_state->idx, group,
629 event, parse_state->error,
630 param->head_config);
631 if (err) {
632 struct evsel *evsel, *tmp;
633
634 pr_debug("Failed to add BPF event %s:%s\n",
635 group, event);
636 list_for_each_entry_safe(evsel, tmp, &new_evsels, core.node) {
637 list_del_init(&evsel->core.node);
638 evsel__delete(evsel);
639 }
640 return err;
641 }
642 pr_debug("adding %s:%s\n", group, event);
643
644 list_for_each_entry(pos, &new_evsels, core.node) {
645 pr_debug("adding %s:%s to %p\n",
646 group, event, pos);
647 pos->bpf_fd = fd;
648 pos->bpf_obj = obj;
649 }
650 list_splice(&new_evsels, list);
651 return 0;
652 }
653
parse_events_load_bpf_obj(struct parse_events_state * parse_state,struct list_head * list,struct bpf_object * obj,struct list_head * head_config)654 int parse_events_load_bpf_obj(struct parse_events_state *parse_state,
655 struct list_head *list,
656 struct bpf_object *obj,
657 struct list_head *head_config)
658 {
659 int err;
660 char errbuf[BUFSIZ];
661 struct __add_bpf_event_param param = {parse_state, list, head_config};
662 static bool registered_unprobe_atexit = false;
663
664 if (IS_ERR(obj) || !obj) {
665 snprintf(errbuf, sizeof(errbuf),
666 "Internal error: load bpf obj with NULL");
667 err = -EINVAL;
668 goto errout;
669 }
670
671 /*
672 * Register atexit handler before calling bpf__probe() so
673 * bpf__probe() don't need to unprobe probe points its already
674 * created when failure.
675 */
676 if (!registered_unprobe_atexit) {
677 atexit(bpf__clear);
678 registered_unprobe_atexit = true;
679 }
680
681 err = bpf__probe(obj);
682 if (err) {
683 bpf__strerror_probe(obj, err, errbuf, sizeof(errbuf));
684 goto errout;
685 }
686
687 err = bpf__load(obj);
688 if (err) {
689 bpf__strerror_load(obj, err, errbuf, sizeof(errbuf));
690 goto errout;
691 }
692
693 err = bpf__foreach_event(obj, add_bpf_event, ¶m);
694 if (err) {
695 snprintf(errbuf, sizeof(errbuf),
696 "Attach events in BPF object failed");
697 goto errout;
698 }
699
700 return 0;
701 errout:
702 parse_events_error__handle(parse_state->error, 0,
703 strdup(errbuf), strdup("(add -v to see detail)"));
704 return err;
705 }
706
707 static int
parse_events_config_bpf(struct parse_events_state * parse_state,struct bpf_object * obj,struct list_head * head_config)708 parse_events_config_bpf(struct parse_events_state *parse_state,
709 struct bpf_object *obj,
710 struct list_head *head_config)
711 {
712 struct parse_events_term *term;
713 int error_pos;
714
715 if (!head_config || list_empty(head_config))
716 return 0;
717
718 list_for_each_entry(term, head_config, list) {
719 int err;
720
721 if (term->type_term != PARSE_EVENTS__TERM_TYPE_USER) {
722 parse_events_error__handle(parse_state->error, term->err_term,
723 strdup("Invalid config term for BPF object"),
724 NULL);
725 return -EINVAL;
726 }
727
728 err = bpf__config_obj(obj, term, parse_state->evlist, &error_pos);
729 if (err) {
730 char errbuf[BUFSIZ];
731 int idx;
732
733 bpf__strerror_config_obj(obj, term, parse_state->evlist,
734 &error_pos, err, errbuf,
735 sizeof(errbuf));
736
737 if (err == -BPF_LOADER_ERRNO__OBJCONF_MAP_VALUE)
738 idx = term->err_val;
739 else
740 idx = term->err_term + error_pos;
741
742 parse_events_error__handle(parse_state->error, idx,
743 strdup(errbuf),
744 strdup(
745 "Hint:\tValid config terms:\n"
746 " \tmap:[<arraymap>].value<indices>=[value]\n"
747 " \tmap:[<eventmap>].event<indices>=[event]\n"
748 "\n"
749 " \twhere <indices> is something like [0,3...5] or [all]\n"
750 " \t(add -v to see detail)"));
751 return err;
752 }
753 }
754 return 0;
755 }
756
757 /*
758 * Split config terms:
759 * perf record -e bpf.c/call-graph=fp,map:array.value[0]=1/ ...
760 * 'call-graph=fp' is 'evt config', should be applied to each
761 * events in bpf.c.
762 * 'map:array.value[0]=1' is 'obj config', should be processed
763 * with parse_events_config_bpf.
764 *
765 * Move object config terms from the first list to obj_head_config.
766 */
767 static void
split_bpf_config_terms(struct list_head * evt_head_config,struct list_head * obj_head_config)768 split_bpf_config_terms(struct list_head *evt_head_config,
769 struct list_head *obj_head_config)
770 {
771 struct parse_events_term *term, *temp;
772
773 /*
774 * Currently, all possible user config term
775 * belong to bpf object. parse_events__is_hardcoded_term()
776 * happens to be a good flag.
777 *
778 * See parse_events_config_bpf() and
779 * config_term_tracepoint().
780 */
781 list_for_each_entry_safe(term, temp, evt_head_config, list)
782 if (!parse_events__is_hardcoded_term(term))
783 list_move_tail(&term->list, obj_head_config);
784 }
785
parse_events_load_bpf(struct parse_events_state * parse_state,struct list_head * list,char * bpf_file_name,bool source,struct list_head * head_config)786 int parse_events_load_bpf(struct parse_events_state *parse_state,
787 struct list_head *list,
788 char *bpf_file_name,
789 bool source,
790 struct list_head *head_config)
791 {
792 int err;
793 struct bpf_object *obj;
794 LIST_HEAD(obj_head_config);
795
796 if (head_config)
797 split_bpf_config_terms(head_config, &obj_head_config);
798
799 obj = bpf__prepare_load(bpf_file_name, source);
800 if (IS_ERR(obj)) {
801 char errbuf[BUFSIZ];
802
803 err = PTR_ERR(obj);
804
805 if (err == -ENOTSUP)
806 snprintf(errbuf, sizeof(errbuf),
807 "BPF support is not compiled");
808 else
809 bpf__strerror_prepare_load(bpf_file_name,
810 source,
811 -err, errbuf,
812 sizeof(errbuf));
813
814 parse_events_error__handle(parse_state->error, 0,
815 strdup(errbuf), strdup("(add -v to see detail)"));
816 return err;
817 }
818
819 err = parse_events_load_bpf_obj(parse_state, list, obj, head_config);
820 if (err)
821 return err;
822 err = parse_events_config_bpf(parse_state, obj, &obj_head_config);
823
824 /*
825 * Caller doesn't know anything about obj_head_config,
826 * so combine them together again before returning.
827 */
828 if (head_config)
829 list_splice_tail(&obj_head_config, head_config);
830 return err;
831 }
832 #else // HAVE_LIBBPF_SUPPORT
parse_events_load_bpf_obj(struct parse_events_state * parse_state,struct list_head * list __maybe_unused,struct bpf_object * obj __maybe_unused,struct list_head * head_config __maybe_unused)833 int parse_events_load_bpf_obj(struct parse_events_state *parse_state,
834 struct list_head *list __maybe_unused,
835 struct bpf_object *obj __maybe_unused,
836 struct list_head *head_config __maybe_unused)
837 {
838 parse_events_error__handle(parse_state->error, 0,
839 strdup("BPF support is not compiled"),
840 strdup("Make sure libbpf-devel is available at build time."));
841 return -ENOTSUP;
842 }
843
parse_events_load_bpf(struct parse_events_state * parse_state,struct list_head * list __maybe_unused,char * bpf_file_name __maybe_unused,bool source __maybe_unused,struct list_head * head_config __maybe_unused)844 int parse_events_load_bpf(struct parse_events_state *parse_state,
845 struct list_head *list __maybe_unused,
846 char *bpf_file_name __maybe_unused,
847 bool source __maybe_unused,
848 struct list_head *head_config __maybe_unused)
849 {
850 parse_events_error__handle(parse_state->error, 0,
851 strdup("BPF support is not compiled"),
852 strdup("Make sure libbpf-devel is available at build time."));
853 return -ENOTSUP;
854 }
855 #endif // HAVE_LIBBPF_SUPPORT
856
857 static int
parse_breakpoint_type(const char * type,struct perf_event_attr * attr)858 parse_breakpoint_type(const char *type, struct perf_event_attr *attr)
859 {
860 int i;
861
862 for (i = 0; i < 3; i++) {
863 if (!type || !type[i])
864 break;
865
866 #define CHECK_SET_TYPE(bit) \
867 do { \
868 if (attr->bp_type & bit) \
869 return -EINVAL; \
870 else \
871 attr->bp_type |= bit; \
872 } while (0)
873
874 switch (type[i]) {
875 case 'r':
876 CHECK_SET_TYPE(HW_BREAKPOINT_R);
877 break;
878 case 'w':
879 CHECK_SET_TYPE(HW_BREAKPOINT_W);
880 break;
881 case 'x':
882 CHECK_SET_TYPE(HW_BREAKPOINT_X);
883 break;
884 default:
885 return -EINVAL;
886 }
887 }
888
889 #undef CHECK_SET_TYPE
890
891 if (!attr->bp_type) /* Default */
892 attr->bp_type = HW_BREAKPOINT_R | HW_BREAKPOINT_W;
893
894 return 0;
895 }
896
parse_events_add_breakpoint(struct list_head * list,int * idx,u64 addr,char * type,u64 len)897 int parse_events_add_breakpoint(struct list_head *list, int *idx,
898 u64 addr, char *type, u64 len)
899 {
900 struct perf_event_attr attr;
901
902 memset(&attr, 0, sizeof(attr));
903 attr.bp_addr = addr;
904
905 if (parse_breakpoint_type(type, &attr))
906 return -EINVAL;
907
908 /* Provide some defaults if len is not specified */
909 if (!len) {
910 if (attr.bp_type == HW_BREAKPOINT_X)
911 len = sizeof(long);
912 else
913 len = HW_BREAKPOINT_LEN_4;
914 }
915
916 attr.bp_len = len;
917
918 attr.type = PERF_TYPE_BREAKPOINT;
919 attr.sample_period = 1;
920
921 return add_event(list, idx, &attr, /*name=*/NULL, /*mertic_id=*/NULL,
922 /*config_terms=*/NULL);
923 }
924
check_type_val(struct parse_events_term * term,struct parse_events_error * err,int type)925 static int check_type_val(struct parse_events_term *term,
926 struct parse_events_error *err,
927 int type)
928 {
929 if (type == term->type_val)
930 return 0;
931
932 if (err) {
933 parse_events_error__handle(err, term->err_val,
934 type == PARSE_EVENTS__TERM_TYPE_NUM
935 ? strdup("expected numeric value")
936 : strdup("expected string value"),
937 NULL);
938 }
939 return -EINVAL;
940 }
941
942 /*
943 * Update according to parse-events.l
944 */
945 static const char *config_term_names[__PARSE_EVENTS__TERM_TYPE_NR] = {
946 [PARSE_EVENTS__TERM_TYPE_USER] = "<sysfs term>",
947 [PARSE_EVENTS__TERM_TYPE_CONFIG] = "config",
948 [PARSE_EVENTS__TERM_TYPE_CONFIG1] = "config1",
949 [PARSE_EVENTS__TERM_TYPE_CONFIG2] = "config2",
950 [PARSE_EVENTS__TERM_TYPE_NAME] = "name",
951 [PARSE_EVENTS__TERM_TYPE_SAMPLE_PERIOD] = "period",
952 [PARSE_EVENTS__TERM_TYPE_SAMPLE_FREQ] = "freq",
953 [PARSE_EVENTS__TERM_TYPE_BRANCH_SAMPLE_TYPE] = "branch_type",
954 [PARSE_EVENTS__TERM_TYPE_TIME] = "time",
955 [PARSE_EVENTS__TERM_TYPE_CALLGRAPH] = "call-graph",
956 [PARSE_EVENTS__TERM_TYPE_STACKSIZE] = "stack-size",
957 [PARSE_EVENTS__TERM_TYPE_NOINHERIT] = "no-inherit",
958 [PARSE_EVENTS__TERM_TYPE_INHERIT] = "inherit",
959 [PARSE_EVENTS__TERM_TYPE_MAX_STACK] = "max-stack",
960 [PARSE_EVENTS__TERM_TYPE_MAX_EVENTS] = "nr",
961 [PARSE_EVENTS__TERM_TYPE_OVERWRITE] = "overwrite",
962 [PARSE_EVENTS__TERM_TYPE_NOOVERWRITE] = "no-overwrite",
963 [PARSE_EVENTS__TERM_TYPE_DRV_CFG] = "driver-config",
964 [PARSE_EVENTS__TERM_TYPE_PERCORE] = "percore",
965 [PARSE_EVENTS__TERM_TYPE_AUX_OUTPUT] = "aux-output",
966 [PARSE_EVENTS__TERM_TYPE_AUX_SAMPLE_SIZE] = "aux-sample-size",
967 [PARSE_EVENTS__TERM_TYPE_METRIC_ID] = "metric-id",
968 };
969
970 static bool config_term_shrinked;
971
972 static bool
config_term_avail(int term_type,struct parse_events_error * err)973 config_term_avail(int term_type, struct parse_events_error *err)
974 {
975 char *err_str;
976
977 if (term_type < 0 || term_type >= __PARSE_EVENTS__TERM_TYPE_NR) {
978 parse_events_error__handle(err, -1,
979 strdup("Invalid term_type"), NULL);
980 return false;
981 }
982 if (!config_term_shrinked)
983 return true;
984
985 switch (term_type) {
986 case PARSE_EVENTS__TERM_TYPE_CONFIG:
987 case PARSE_EVENTS__TERM_TYPE_CONFIG1:
988 case PARSE_EVENTS__TERM_TYPE_CONFIG2:
989 case PARSE_EVENTS__TERM_TYPE_NAME:
990 case PARSE_EVENTS__TERM_TYPE_METRIC_ID:
991 case PARSE_EVENTS__TERM_TYPE_SAMPLE_PERIOD:
992 case PARSE_EVENTS__TERM_TYPE_PERCORE:
993 return true;
994 default:
995 if (!err)
996 return false;
997
998 /* term_type is validated so indexing is safe */
999 if (asprintf(&err_str, "'%s' is not usable in 'perf stat'",
1000 config_term_names[term_type]) >= 0)
1001 parse_events_error__handle(err, -1, err_str, NULL);
1002 return false;
1003 }
1004 }
1005
parse_events__shrink_config_terms(void)1006 void parse_events__shrink_config_terms(void)
1007 {
1008 config_term_shrinked = true;
1009 }
1010
config_term_common(struct perf_event_attr * attr,struct parse_events_term * term,struct parse_events_error * err)1011 static int config_term_common(struct perf_event_attr *attr,
1012 struct parse_events_term *term,
1013 struct parse_events_error *err)
1014 {
1015 #define CHECK_TYPE_VAL(type) \
1016 do { \
1017 if (check_type_val(term, err, PARSE_EVENTS__TERM_TYPE_ ## type)) \
1018 return -EINVAL; \
1019 } while (0)
1020
1021 switch (term->type_term) {
1022 case PARSE_EVENTS__TERM_TYPE_CONFIG:
1023 CHECK_TYPE_VAL(NUM);
1024 attr->config = term->val.num;
1025 break;
1026 case PARSE_EVENTS__TERM_TYPE_CONFIG1:
1027 CHECK_TYPE_VAL(NUM);
1028 attr->config1 = term->val.num;
1029 break;
1030 case PARSE_EVENTS__TERM_TYPE_CONFIG2:
1031 CHECK_TYPE_VAL(NUM);
1032 attr->config2 = term->val.num;
1033 break;
1034 case PARSE_EVENTS__TERM_TYPE_SAMPLE_PERIOD:
1035 CHECK_TYPE_VAL(NUM);
1036 break;
1037 case PARSE_EVENTS__TERM_TYPE_SAMPLE_FREQ:
1038 CHECK_TYPE_VAL(NUM);
1039 break;
1040 case PARSE_EVENTS__TERM_TYPE_BRANCH_SAMPLE_TYPE:
1041 CHECK_TYPE_VAL(STR);
1042 if (strcmp(term->val.str, "no") &&
1043 parse_branch_str(term->val.str,
1044 &attr->branch_sample_type)) {
1045 parse_events_error__handle(err, term->err_val,
1046 strdup("invalid branch sample type"),
1047 NULL);
1048 return -EINVAL;
1049 }
1050 break;
1051 case PARSE_EVENTS__TERM_TYPE_TIME:
1052 CHECK_TYPE_VAL(NUM);
1053 if (term->val.num > 1) {
1054 parse_events_error__handle(err, term->err_val,
1055 strdup("expected 0 or 1"),
1056 NULL);
1057 return -EINVAL;
1058 }
1059 break;
1060 case PARSE_EVENTS__TERM_TYPE_CALLGRAPH:
1061 CHECK_TYPE_VAL(STR);
1062 break;
1063 case PARSE_EVENTS__TERM_TYPE_STACKSIZE:
1064 CHECK_TYPE_VAL(NUM);
1065 break;
1066 case PARSE_EVENTS__TERM_TYPE_INHERIT:
1067 CHECK_TYPE_VAL(NUM);
1068 break;
1069 case PARSE_EVENTS__TERM_TYPE_NOINHERIT:
1070 CHECK_TYPE_VAL(NUM);
1071 break;
1072 case PARSE_EVENTS__TERM_TYPE_OVERWRITE:
1073 CHECK_TYPE_VAL(NUM);
1074 break;
1075 case PARSE_EVENTS__TERM_TYPE_NOOVERWRITE:
1076 CHECK_TYPE_VAL(NUM);
1077 break;
1078 case PARSE_EVENTS__TERM_TYPE_NAME:
1079 CHECK_TYPE_VAL(STR);
1080 break;
1081 case PARSE_EVENTS__TERM_TYPE_METRIC_ID:
1082 CHECK_TYPE_VAL(STR);
1083 break;
1084 case PARSE_EVENTS__TERM_TYPE_MAX_STACK:
1085 CHECK_TYPE_VAL(NUM);
1086 break;
1087 case PARSE_EVENTS__TERM_TYPE_MAX_EVENTS:
1088 CHECK_TYPE_VAL(NUM);
1089 break;
1090 case PARSE_EVENTS__TERM_TYPE_PERCORE:
1091 CHECK_TYPE_VAL(NUM);
1092 if ((unsigned int)term->val.num > 1) {
1093 parse_events_error__handle(err, term->err_val,
1094 strdup("expected 0 or 1"),
1095 NULL);
1096 return -EINVAL;
1097 }
1098 break;
1099 case PARSE_EVENTS__TERM_TYPE_AUX_OUTPUT:
1100 CHECK_TYPE_VAL(NUM);
1101 break;
1102 case PARSE_EVENTS__TERM_TYPE_AUX_SAMPLE_SIZE:
1103 CHECK_TYPE_VAL(NUM);
1104 if (term->val.num > UINT_MAX) {
1105 parse_events_error__handle(err, term->err_val,
1106 strdup("too big"),
1107 NULL);
1108 return -EINVAL;
1109 }
1110 break;
1111 default:
1112 parse_events_error__handle(err, term->err_term,
1113 strdup("unknown term"),
1114 parse_events_formats_error_string(NULL));
1115 return -EINVAL;
1116 }
1117
1118 /*
1119 * Check term availability after basic checking so
1120 * PARSE_EVENTS__TERM_TYPE_USER can be found and filtered.
1121 *
1122 * If check availability at the entry of this function,
1123 * user will see "'<sysfs term>' is not usable in 'perf stat'"
1124 * if an invalid config term is provided for legacy events
1125 * (for example, instructions/badterm/...), which is confusing.
1126 */
1127 if (!config_term_avail(term->type_term, err))
1128 return -EINVAL;
1129 return 0;
1130 #undef CHECK_TYPE_VAL
1131 }
1132
config_term_pmu(struct perf_event_attr * attr,struct parse_events_term * term,struct parse_events_error * err)1133 static int config_term_pmu(struct perf_event_attr *attr,
1134 struct parse_events_term *term,
1135 struct parse_events_error *err)
1136 {
1137 if (term->type_term == PARSE_EVENTS__TERM_TYPE_USER ||
1138 term->type_term == PARSE_EVENTS__TERM_TYPE_DRV_CFG)
1139 /*
1140 * Always succeed for sysfs terms, as we dont know
1141 * at this point what type they need to have.
1142 */
1143 return 0;
1144 else
1145 return config_term_common(attr, term, err);
1146 }
1147
1148 #ifdef HAVE_LIBTRACEEVENT
config_term_tracepoint(struct perf_event_attr * attr,struct parse_events_term * term,struct parse_events_error * err)1149 static int config_term_tracepoint(struct perf_event_attr *attr,
1150 struct parse_events_term *term,
1151 struct parse_events_error *err)
1152 {
1153 switch (term->type_term) {
1154 case PARSE_EVENTS__TERM_TYPE_CALLGRAPH:
1155 case PARSE_EVENTS__TERM_TYPE_STACKSIZE:
1156 case PARSE_EVENTS__TERM_TYPE_INHERIT:
1157 case PARSE_EVENTS__TERM_TYPE_NOINHERIT:
1158 case PARSE_EVENTS__TERM_TYPE_MAX_STACK:
1159 case PARSE_EVENTS__TERM_TYPE_MAX_EVENTS:
1160 case PARSE_EVENTS__TERM_TYPE_OVERWRITE:
1161 case PARSE_EVENTS__TERM_TYPE_NOOVERWRITE:
1162 case PARSE_EVENTS__TERM_TYPE_AUX_OUTPUT:
1163 case PARSE_EVENTS__TERM_TYPE_AUX_SAMPLE_SIZE:
1164 return config_term_common(attr, term, err);
1165 default:
1166 if (err) {
1167 parse_events_error__handle(err, term->err_term,
1168 strdup("unknown term"),
1169 strdup("valid terms: call-graph,stack-size\n"));
1170 }
1171 return -EINVAL;
1172 }
1173
1174 return 0;
1175 }
1176 #endif
1177
config_attr(struct perf_event_attr * attr,struct list_head * head,struct parse_events_error * err,config_term_func_t config_term)1178 static int config_attr(struct perf_event_attr *attr,
1179 struct list_head *head,
1180 struct parse_events_error *err,
1181 config_term_func_t config_term)
1182 {
1183 struct parse_events_term *term;
1184
1185 list_for_each_entry(term, head, list)
1186 if (config_term(attr, term, err))
1187 return -EINVAL;
1188
1189 return 0;
1190 }
1191
get_config_terms(struct list_head * head_config,struct list_head * head_terms __maybe_unused)1192 static int get_config_terms(struct list_head *head_config,
1193 struct list_head *head_terms __maybe_unused)
1194 {
1195 #define ADD_CONFIG_TERM(__type, __weak) \
1196 struct evsel_config_term *__t; \
1197 \
1198 __t = zalloc(sizeof(*__t)); \
1199 if (!__t) \
1200 return -ENOMEM; \
1201 \
1202 INIT_LIST_HEAD(&__t->list); \
1203 __t->type = EVSEL__CONFIG_TERM_ ## __type; \
1204 __t->weak = __weak; \
1205 list_add_tail(&__t->list, head_terms)
1206
1207 #define ADD_CONFIG_TERM_VAL(__type, __name, __val, __weak) \
1208 do { \
1209 ADD_CONFIG_TERM(__type, __weak); \
1210 __t->val.__name = __val; \
1211 } while (0)
1212
1213 #define ADD_CONFIG_TERM_STR(__type, __val, __weak) \
1214 do { \
1215 ADD_CONFIG_TERM(__type, __weak); \
1216 __t->val.str = strdup(__val); \
1217 if (!__t->val.str) { \
1218 zfree(&__t); \
1219 return -ENOMEM; \
1220 } \
1221 __t->free_str = true; \
1222 } while (0)
1223
1224 struct parse_events_term *term;
1225
1226 list_for_each_entry(term, head_config, list) {
1227 switch (term->type_term) {
1228 case PARSE_EVENTS__TERM_TYPE_SAMPLE_PERIOD:
1229 ADD_CONFIG_TERM_VAL(PERIOD, period, term->val.num, term->weak);
1230 break;
1231 case PARSE_EVENTS__TERM_TYPE_SAMPLE_FREQ:
1232 ADD_CONFIG_TERM_VAL(FREQ, freq, term->val.num, term->weak);
1233 break;
1234 case PARSE_EVENTS__TERM_TYPE_TIME:
1235 ADD_CONFIG_TERM_VAL(TIME, time, term->val.num, term->weak);
1236 break;
1237 case PARSE_EVENTS__TERM_TYPE_CALLGRAPH:
1238 ADD_CONFIG_TERM_STR(CALLGRAPH, term->val.str, term->weak);
1239 break;
1240 case PARSE_EVENTS__TERM_TYPE_BRANCH_SAMPLE_TYPE:
1241 ADD_CONFIG_TERM_STR(BRANCH, term->val.str, term->weak);
1242 break;
1243 case PARSE_EVENTS__TERM_TYPE_STACKSIZE:
1244 ADD_CONFIG_TERM_VAL(STACK_USER, stack_user,
1245 term->val.num, term->weak);
1246 break;
1247 case PARSE_EVENTS__TERM_TYPE_INHERIT:
1248 ADD_CONFIG_TERM_VAL(INHERIT, inherit,
1249 term->val.num ? 1 : 0, term->weak);
1250 break;
1251 case PARSE_EVENTS__TERM_TYPE_NOINHERIT:
1252 ADD_CONFIG_TERM_VAL(INHERIT, inherit,
1253 term->val.num ? 0 : 1, term->weak);
1254 break;
1255 case PARSE_EVENTS__TERM_TYPE_MAX_STACK:
1256 ADD_CONFIG_TERM_VAL(MAX_STACK, max_stack,
1257 term->val.num, term->weak);
1258 break;
1259 case PARSE_EVENTS__TERM_TYPE_MAX_EVENTS:
1260 ADD_CONFIG_TERM_VAL(MAX_EVENTS, max_events,
1261 term->val.num, term->weak);
1262 break;
1263 case PARSE_EVENTS__TERM_TYPE_OVERWRITE:
1264 ADD_CONFIG_TERM_VAL(OVERWRITE, overwrite,
1265 term->val.num ? 1 : 0, term->weak);
1266 break;
1267 case PARSE_EVENTS__TERM_TYPE_NOOVERWRITE:
1268 ADD_CONFIG_TERM_VAL(OVERWRITE, overwrite,
1269 term->val.num ? 0 : 1, term->weak);
1270 break;
1271 case PARSE_EVENTS__TERM_TYPE_DRV_CFG:
1272 ADD_CONFIG_TERM_STR(DRV_CFG, term->val.str, term->weak);
1273 break;
1274 case PARSE_EVENTS__TERM_TYPE_PERCORE:
1275 ADD_CONFIG_TERM_VAL(PERCORE, percore,
1276 term->val.num ? true : false, term->weak);
1277 break;
1278 case PARSE_EVENTS__TERM_TYPE_AUX_OUTPUT:
1279 ADD_CONFIG_TERM_VAL(AUX_OUTPUT, aux_output,
1280 term->val.num ? 1 : 0, term->weak);
1281 break;
1282 case PARSE_EVENTS__TERM_TYPE_AUX_SAMPLE_SIZE:
1283 ADD_CONFIG_TERM_VAL(AUX_SAMPLE_SIZE, aux_sample_size,
1284 term->val.num, term->weak);
1285 break;
1286 default:
1287 break;
1288 }
1289 }
1290 return 0;
1291 }
1292
1293 /*
1294 * Add EVSEL__CONFIG_TERM_CFG_CHG where cfg_chg will have a bit set for
1295 * each bit of attr->config that the user has changed.
1296 */
get_config_chgs(struct perf_pmu * pmu,struct list_head * head_config,struct list_head * head_terms)1297 static int get_config_chgs(struct perf_pmu *pmu, struct list_head *head_config,
1298 struct list_head *head_terms)
1299 {
1300 struct parse_events_term *term;
1301 u64 bits = 0;
1302 int type;
1303
1304 list_for_each_entry(term, head_config, list) {
1305 switch (term->type_term) {
1306 case PARSE_EVENTS__TERM_TYPE_USER:
1307 type = perf_pmu__format_type(&pmu->format, term->config);
1308 if (type != PERF_PMU_FORMAT_VALUE_CONFIG)
1309 continue;
1310 bits |= perf_pmu__format_bits(&pmu->format, term->config);
1311 break;
1312 case PARSE_EVENTS__TERM_TYPE_CONFIG:
1313 bits = ~(u64)0;
1314 break;
1315 default:
1316 break;
1317 }
1318 }
1319
1320 if (bits)
1321 ADD_CONFIG_TERM_VAL(CFG_CHG, cfg_chg, bits, false);
1322
1323 #undef ADD_CONFIG_TERM
1324 return 0;
1325 }
1326
parse_events_add_tracepoint(struct list_head * list,int * idx,const char * sys,const char * event,struct parse_events_error * err,struct list_head * head_config)1327 int parse_events_add_tracepoint(struct list_head *list, int *idx,
1328 const char *sys, const char *event,
1329 struct parse_events_error *err,
1330 struct list_head *head_config)
1331 {
1332 #ifdef HAVE_LIBTRACEEVENT
1333 if (head_config) {
1334 struct perf_event_attr attr;
1335
1336 if (config_attr(&attr, head_config, err,
1337 config_term_tracepoint))
1338 return -EINVAL;
1339 }
1340
1341 if (strpbrk(sys, "*?"))
1342 return add_tracepoint_multi_sys(list, idx, sys, event,
1343 err, head_config);
1344 else
1345 return add_tracepoint_event(list, idx, sys, event,
1346 err, head_config);
1347 #else
1348 (void)list;
1349 (void)idx;
1350 (void)sys;
1351 (void)event;
1352 (void)head_config;
1353 parse_events_error__handle(err, 0, strdup("unsupported tracepoint"),
1354 strdup("libtraceevent is necessary for tracepoint support"));
1355 return -1;
1356 #endif
1357 }
1358
parse_events_add_numeric(struct parse_events_state * parse_state,struct list_head * list,u32 type,u64 config,struct list_head * head_config)1359 int parse_events_add_numeric(struct parse_events_state *parse_state,
1360 struct list_head *list,
1361 u32 type, u64 config,
1362 struct list_head *head_config)
1363 {
1364 struct perf_event_attr attr;
1365 LIST_HEAD(config_terms);
1366 const char *name, *metric_id;
1367 bool hybrid;
1368 int ret;
1369
1370 memset(&attr, 0, sizeof(attr));
1371 attr.type = type;
1372 attr.config = config;
1373
1374 if (head_config) {
1375 if (config_attr(&attr, head_config, parse_state->error,
1376 config_term_common))
1377 return -EINVAL;
1378
1379 if (get_config_terms(head_config, &config_terms))
1380 return -ENOMEM;
1381 }
1382
1383 name = get_config_name(head_config);
1384 metric_id = get_config_metric_id(head_config);
1385 ret = parse_events__add_numeric_hybrid(parse_state, list, &attr,
1386 name, metric_id,
1387 &config_terms, &hybrid);
1388 if (hybrid)
1389 goto out_free_terms;
1390
1391 ret = add_event(list, &parse_state->idx, &attr, name, metric_id,
1392 &config_terms);
1393 out_free_terms:
1394 free_config_terms(&config_terms);
1395 return ret;
1396 }
1397
parse_events_add_tool(struct parse_events_state * parse_state,struct list_head * list,int tool_event)1398 int parse_events_add_tool(struct parse_events_state *parse_state,
1399 struct list_head *list,
1400 int tool_event)
1401 {
1402 return add_event_tool(list, &parse_state->idx, tool_event);
1403 }
1404
config_term_percore(struct list_head * config_terms)1405 static bool config_term_percore(struct list_head *config_terms)
1406 {
1407 struct evsel_config_term *term;
1408
1409 list_for_each_entry(term, config_terms, list) {
1410 if (term->type == EVSEL__CONFIG_TERM_PERCORE)
1411 return term->val.percore;
1412 }
1413
1414 return false;
1415 }
1416
parse_events__inside_hybrid_pmu(struct parse_events_state * parse_state,struct list_head * list,char * name,struct list_head * head_config)1417 static int parse_events__inside_hybrid_pmu(struct parse_events_state *parse_state,
1418 struct list_head *list, char *name,
1419 struct list_head *head_config)
1420 {
1421 struct parse_events_term *term;
1422 int ret = -1;
1423
1424 if (parse_state->fake_pmu || !head_config || list_empty(head_config) ||
1425 !perf_pmu__is_hybrid(name)) {
1426 return -1;
1427 }
1428
1429 /*
1430 * More than one term in list.
1431 */
1432 if (head_config->next && head_config->next->next != head_config)
1433 return -1;
1434
1435 term = list_first_entry(head_config, struct parse_events_term, list);
1436 if (term && term->config && strcmp(term->config, "event")) {
1437 ret = parse_events__with_hybrid_pmu(parse_state, term->config,
1438 name, list);
1439 }
1440
1441 return ret;
1442 }
1443
parse_events_add_pmu(struct parse_events_state * parse_state,struct list_head * list,char * name,struct list_head * head_config,bool auto_merge_stats,bool use_alias)1444 int parse_events_add_pmu(struct parse_events_state *parse_state,
1445 struct list_head *list, char *name,
1446 struct list_head *head_config,
1447 bool auto_merge_stats,
1448 bool use_alias)
1449 {
1450 struct perf_event_attr attr;
1451 struct perf_pmu_info info;
1452 struct perf_pmu *pmu;
1453 struct evsel *evsel;
1454 struct parse_events_error *err = parse_state->error;
1455 bool use_uncore_alias;
1456 LIST_HEAD(config_terms);
1457
1458 pmu = parse_state->fake_pmu ?: perf_pmu__find(name);
1459
1460 if (verbose > 1 && !(pmu && pmu->selectable)) {
1461 fprintf(stderr, "Attempting to add event pmu '%s' with '",
1462 name);
1463 if (head_config) {
1464 struct parse_events_term *term;
1465
1466 list_for_each_entry(term, head_config, list) {
1467 fprintf(stderr, "%s,", term->config);
1468 }
1469 }
1470 fprintf(stderr, "' that may result in non-fatal errors\n");
1471 }
1472
1473 if (!pmu) {
1474 char *err_str;
1475
1476 if (asprintf(&err_str,
1477 "Cannot find PMU `%s'. Missing kernel support?",
1478 name) >= 0)
1479 parse_events_error__handle(err, 0, err_str, NULL);
1480 return -EINVAL;
1481 }
1482
1483 if (pmu->default_config) {
1484 memcpy(&attr, pmu->default_config,
1485 sizeof(struct perf_event_attr));
1486 } else {
1487 memset(&attr, 0, sizeof(attr));
1488 }
1489
1490 use_uncore_alias = (pmu->is_uncore && use_alias);
1491
1492 if (!head_config) {
1493 attr.type = pmu->type;
1494 evsel = __add_event(list, &parse_state->idx, &attr,
1495 /*init_attr=*/true, /*name=*/NULL,
1496 /*metric_id=*/NULL, pmu,
1497 /*config_terms=*/NULL, auto_merge_stats,
1498 /*cpu_list=*/NULL);
1499 if (evsel) {
1500 evsel->pmu_name = name ? strdup(name) : NULL;
1501 evsel->use_uncore_alias = use_uncore_alias;
1502 return 0;
1503 } else {
1504 return -ENOMEM;
1505 }
1506 }
1507
1508 if (!parse_state->fake_pmu && perf_pmu__check_alias(pmu, head_config, &info))
1509 return -EINVAL;
1510
1511 if (verbose > 1) {
1512 fprintf(stderr, "After aliases, add event pmu '%s' with '",
1513 name);
1514 if (head_config) {
1515 struct parse_events_term *term;
1516
1517 list_for_each_entry(term, head_config, list) {
1518 fprintf(stderr, "%s,", term->config);
1519 }
1520 }
1521 fprintf(stderr, "' that may result in non-fatal errors\n");
1522 }
1523
1524 /*
1525 * Configure hardcoded terms first, no need to check
1526 * return value when called with fail == 0 ;)
1527 */
1528 if (config_attr(&attr, head_config, parse_state->error, config_term_pmu))
1529 return -EINVAL;
1530
1531 if (get_config_terms(head_config, &config_terms))
1532 return -ENOMEM;
1533
1534 /*
1535 * When using default config, record which bits of attr->config were
1536 * changed by the user.
1537 */
1538 if (pmu->default_config && get_config_chgs(pmu, head_config, &config_terms))
1539 return -ENOMEM;
1540
1541 if (!parse_events__inside_hybrid_pmu(parse_state, list, name,
1542 head_config)) {
1543 return 0;
1544 }
1545
1546 if (!parse_state->fake_pmu && perf_pmu__config(pmu, &attr, head_config, parse_state->error)) {
1547 free_config_terms(&config_terms);
1548 return -EINVAL;
1549 }
1550
1551 evsel = __add_event(list, &parse_state->idx, &attr, /*init_attr=*/true,
1552 get_config_name(head_config),
1553 get_config_metric_id(head_config), pmu,
1554 &config_terms, auto_merge_stats, /*cpu_list=*/NULL);
1555 if (!evsel)
1556 return -ENOMEM;
1557
1558 if (evsel->name)
1559 evsel->use_config_name = true;
1560
1561 evsel->pmu_name = name ? strdup(name) : NULL;
1562 evsel->use_uncore_alias = use_uncore_alias;
1563 evsel->percore = config_term_percore(&evsel->config_terms);
1564
1565 if (parse_state->fake_pmu)
1566 return 0;
1567
1568 free((char *)evsel->unit);
1569 evsel->unit = strdup(info.unit);
1570 evsel->scale = info.scale;
1571 evsel->per_pkg = info.per_pkg;
1572 evsel->snapshot = info.snapshot;
1573 return 0;
1574 }
1575
parse_events_multi_pmu_add(struct parse_events_state * parse_state,char * str,struct list_head * head,struct list_head ** listp)1576 int parse_events_multi_pmu_add(struct parse_events_state *parse_state,
1577 char *str, struct list_head *head,
1578 struct list_head **listp)
1579 {
1580 struct parse_events_term *term;
1581 struct list_head *list = NULL;
1582 struct list_head *orig_head = NULL;
1583 struct perf_pmu *pmu = NULL;
1584 int ok = 0;
1585 char *config;
1586
1587 *listp = NULL;
1588
1589 if (!head) {
1590 head = malloc(sizeof(struct list_head));
1591 if (!head)
1592 goto out_err;
1593
1594 INIT_LIST_HEAD(head);
1595 }
1596 config = strdup(str);
1597 if (!config)
1598 goto out_err;
1599
1600 if (parse_events_term__num(&term,
1601 PARSE_EVENTS__TERM_TYPE_USER,
1602 config, 1, false, &config,
1603 NULL) < 0) {
1604 free(config);
1605 goto out_err;
1606 }
1607 list_add_tail(&term->list, head);
1608
1609 /* Add it for all PMUs that support the alias */
1610 list = malloc(sizeof(struct list_head));
1611 if (!list)
1612 goto out_err;
1613
1614 INIT_LIST_HEAD(list);
1615
1616 while ((pmu = perf_pmu__scan(pmu)) != NULL) {
1617 struct perf_pmu_alias *alias;
1618
1619 list_for_each_entry(alias, &pmu->aliases, list) {
1620 if (!strcasecmp(alias->name, str)) {
1621 parse_events_copy_term_list(head, &orig_head);
1622 if (!parse_events_add_pmu(parse_state, list,
1623 pmu->name, orig_head,
1624 true, true)) {
1625 pr_debug("%s -> %s/%s/\n", str,
1626 pmu->name, alias->str);
1627 ok++;
1628 }
1629 parse_events_terms__delete(orig_head);
1630 }
1631 }
1632 }
1633
1634 if (parse_state->fake_pmu) {
1635 if (!parse_events_add_pmu(parse_state, list, str, head,
1636 true, true)) {
1637 pr_debug("%s -> %s/%s/\n", str, "fake_pmu", str);
1638 ok++;
1639 }
1640 }
1641
1642 out_err:
1643 if (ok)
1644 *listp = list;
1645 else
1646 free(list);
1647
1648 parse_events_terms__delete(head);
1649 return ok ? 0 : -1;
1650 }
1651
parse_events__modifier_group(struct list_head * list,char * event_mod)1652 int parse_events__modifier_group(struct list_head *list,
1653 char *event_mod)
1654 {
1655 return parse_events__modifier_event(list, event_mod, true);
1656 }
1657
1658 /*
1659 * Check if the two uncore PMUs are from the same uncore block
1660 * The format of the uncore PMU name is uncore_#blockname_#pmuidx
1661 */
is_same_uncore_block(const char * pmu_name_a,const char * pmu_name_b)1662 static bool is_same_uncore_block(const char *pmu_name_a, const char *pmu_name_b)
1663 {
1664 char *end_a, *end_b;
1665
1666 end_a = strrchr(pmu_name_a, '_');
1667 end_b = strrchr(pmu_name_b, '_');
1668
1669 if (!end_a || !end_b)
1670 return false;
1671
1672 if ((end_a - pmu_name_a) != (end_b - pmu_name_b))
1673 return false;
1674
1675 return (strncmp(pmu_name_a, pmu_name_b, end_a - pmu_name_a) == 0);
1676 }
1677
1678 static int
parse_events__set_leader_for_uncore_aliase(char * name,struct list_head * list,struct parse_events_state * parse_state)1679 parse_events__set_leader_for_uncore_aliase(char *name, struct list_head *list,
1680 struct parse_events_state *parse_state)
1681 {
1682 struct evsel *evsel, *leader;
1683 uintptr_t *leaders;
1684 bool is_leader = true;
1685 int i, nr_pmu = 0, total_members, ret = 0;
1686
1687 leader = list_first_entry(list, struct evsel, core.node);
1688 evsel = list_last_entry(list, struct evsel, core.node);
1689 total_members = evsel->core.idx - leader->core.idx + 1;
1690
1691 leaders = calloc(total_members, sizeof(uintptr_t));
1692 if (WARN_ON(!leaders))
1693 return 0;
1694
1695 /*
1696 * Going through the whole group and doing sanity check.
1697 * All members must use alias, and be from the same uncore block.
1698 * Also, storing the leader events in an array.
1699 */
1700 __evlist__for_each_entry(list, evsel) {
1701
1702 /* Only split the uncore group which members use alias */
1703 if (!evsel->use_uncore_alias)
1704 goto out;
1705
1706 /* The events must be from the same uncore block */
1707 if (!is_same_uncore_block(leader->pmu_name, evsel->pmu_name))
1708 goto out;
1709
1710 if (!is_leader)
1711 continue;
1712 /*
1713 * If the event's PMU name starts to repeat, it must be a new
1714 * event. That can be used to distinguish the leader from
1715 * other members, even they have the same event name.
1716 */
1717 if ((leader != evsel) &&
1718 !strcmp(leader->pmu_name, evsel->pmu_name)) {
1719 is_leader = false;
1720 continue;
1721 }
1722
1723 /* Store the leader event for each PMU */
1724 leaders[nr_pmu++] = (uintptr_t) evsel;
1725 }
1726
1727 /* only one event alias */
1728 if (nr_pmu == total_members) {
1729 parse_state->nr_groups--;
1730 goto handled;
1731 }
1732
1733 /*
1734 * An uncore event alias is a joint name which means the same event
1735 * runs on all PMUs of a block.
1736 * Perf doesn't support mixed events from different PMUs in the same
1737 * group. The big group has to be split into multiple small groups
1738 * which only include the events from the same PMU.
1739 *
1740 * Here the uncore event aliases must be from the same uncore block.
1741 * The number of PMUs must be same for each alias. The number of new
1742 * small groups equals to the number of PMUs.
1743 * Setting the leader event for corresponding members in each group.
1744 */
1745 i = 0;
1746 __evlist__for_each_entry(list, evsel) {
1747 if (i >= nr_pmu)
1748 i = 0;
1749 evsel__set_leader(evsel, (struct evsel *) leaders[i++]);
1750 }
1751
1752 /* The number of members and group name are same for each group */
1753 for (i = 0; i < nr_pmu; i++) {
1754 evsel = (struct evsel *) leaders[i];
1755 evsel->core.nr_members = total_members / nr_pmu;
1756 evsel->group_name = name ? strdup(name) : NULL;
1757 }
1758
1759 /* Take the new small groups into account */
1760 parse_state->nr_groups += nr_pmu - 1;
1761
1762 handled:
1763 ret = 1;
1764 out:
1765 free(leaders);
1766 return ret;
1767 }
1768
arch_evlist__leader(struct list_head * list)1769 __weak struct evsel *arch_evlist__leader(struct list_head *list)
1770 {
1771 return list_first_entry(list, struct evsel, core.node);
1772 }
1773
parse_events__set_leader(char * name,struct list_head * list,struct parse_events_state * parse_state)1774 void parse_events__set_leader(char *name, struct list_head *list,
1775 struct parse_events_state *parse_state)
1776 {
1777 struct evsel *leader;
1778
1779 if (list_empty(list)) {
1780 WARN_ONCE(true, "WARNING: failed to set leader: empty list");
1781 return;
1782 }
1783
1784 if (parse_events__set_leader_for_uncore_aliase(name, list, parse_state))
1785 return;
1786
1787 leader = arch_evlist__leader(list);
1788 __perf_evlist__set_leader(list, &leader->core);
1789 leader->group_name = name ? strdup(name) : NULL;
1790 list_move(&leader->core.node, list);
1791 }
1792
1793 /* list_event is assumed to point to malloc'ed memory */
parse_events_update_lists(struct list_head * list_event,struct list_head * list_all)1794 void parse_events_update_lists(struct list_head *list_event,
1795 struct list_head *list_all)
1796 {
1797 /*
1798 * Called for single event definition. Update the
1799 * 'all event' list, and reinit the 'single event'
1800 * list, for next event definition.
1801 */
1802 list_splice_tail(list_event, list_all);
1803 free(list_event);
1804 }
1805
1806 struct event_modifier {
1807 int eu;
1808 int ek;
1809 int eh;
1810 int eH;
1811 int eG;
1812 int eI;
1813 int precise;
1814 int precise_max;
1815 int exclude_GH;
1816 int sample_read;
1817 int pinned;
1818 int weak;
1819 int exclusive;
1820 int bpf_counter;
1821 };
1822
get_event_modifier(struct event_modifier * mod,char * str,struct evsel * evsel)1823 static int get_event_modifier(struct event_modifier *mod, char *str,
1824 struct evsel *evsel)
1825 {
1826 int eu = evsel ? evsel->core.attr.exclude_user : 0;
1827 int ek = evsel ? evsel->core.attr.exclude_kernel : 0;
1828 int eh = evsel ? evsel->core.attr.exclude_hv : 0;
1829 int eH = evsel ? evsel->core.attr.exclude_host : 0;
1830 int eG = evsel ? evsel->core.attr.exclude_guest : 0;
1831 int eI = evsel ? evsel->core.attr.exclude_idle : 0;
1832 int precise = evsel ? evsel->core.attr.precise_ip : 0;
1833 int precise_max = 0;
1834 int sample_read = 0;
1835 int pinned = evsel ? evsel->core.attr.pinned : 0;
1836 int exclusive = evsel ? evsel->core.attr.exclusive : 0;
1837
1838 int exclude = eu | ek | eh;
1839 int exclude_GH = evsel ? evsel->exclude_GH : 0;
1840 int weak = 0;
1841 int bpf_counter = 0;
1842
1843 memset(mod, 0, sizeof(*mod));
1844
1845 while (*str) {
1846 if (*str == 'u') {
1847 if (!exclude)
1848 exclude = eu = ek = eh = 1;
1849 if (!exclude_GH && !perf_guest)
1850 eG = 1;
1851 eu = 0;
1852 } else if (*str == 'k') {
1853 if (!exclude)
1854 exclude = eu = ek = eh = 1;
1855 ek = 0;
1856 } else if (*str == 'h') {
1857 if (!exclude)
1858 exclude = eu = ek = eh = 1;
1859 eh = 0;
1860 } else if (*str == 'G') {
1861 if (!exclude_GH)
1862 exclude_GH = eG = eH = 1;
1863 eG = 0;
1864 } else if (*str == 'H') {
1865 if (!exclude_GH)
1866 exclude_GH = eG = eH = 1;
1867 eH = 0;
1868 } else if (*str == 'I') {
1869 eI = 1;
1870 } else if (*str == 'p') {
1871 precise++;
1872 /* use of precise requires exclude_guest */
1873 if (!exclude_GH)
1874 eG = 1;
1875 } else if (*str == 'P') {
1876 precise_max = 1;
1877 } else if (*str == 'S') {
1878 sample_read = 1;
1879 } else if (*str == 'D') {
1880 pinned = 1;
1881 } else if (*str == 'e') {
1882 exclusive = 1;
1883 } else if (*str == 'W') {
1884 weak = 1;
1885 } else if (*str == 'b') {
1886 bpf_counter = 1;
1887 } else
1888 break;
1889
1890 ++str;
1891 }
1892
1893 /*
1894 * precise ip:
1895 *
1896 * 0 - SAMPLE_IP can have arbitrary skid
1897 * 1 - SAMPLE_IP must have constant skid
1898 * 2 - SAMPLE_IP requested to have 0 skid
1899 * 3 - SAMPLE_IP must have 0 skid
1900 *
1901 * See also PERF_RECORD_MISC_EXACT_IP
1902 */
1903 if (precise > 3)
1904 return -EINVAL;
1905
1906 mod->eu = eu;
1907 mod->ek = ek;
1908 mod->eh = eh;
1909 mod->eH = eH;
1910 mod->eG = eG;
1911 mod->eI = eI;
1912 mod->precise = precise;
1913 mod->precise_max = precise_max;
1914 mod->exclude_GH = exclude_GH;
1915 mod->sample_read = sample_read;
1916 mod->pinned = pinned;
1917 mod->weak = weak;
1918 mod->bpf_counter = bpf_counter;
1919 mod->exclusive = exclusive;
1920
1921 return 0;
1922 }
1923
1924 /*
1925 * Basic modifier sanity check to validate it contains only one
1926 * instance of any modifier (apart from 'p') present.
1927 */
check_modifier(char * str)1928 static int check_modifier(char *str)
1929 {
1930 char *p = str;
1931
1932 /* The sizeof includes 0 byte as well. */
1933 if (strlen(str) > (sizeof("ukhGHpppPSDIWeb") - 1))
1934 return -1;
1935
1936 while (*p) {
1937 if (*p != 'p' && strchr(p + 1, *p))
1938 return -1;
1939 p++;
1940 }
1941
1942 return 0;
1943 }
1944
parse_events__modifier_event(struct list_head * list,char * str,bool add)1945 int parse_events__modifier_event(struct list_head *list, char *str, bool add)
1946 {
1947 struct evsel *evsel;
1948 struct event_modifier mod;
1949
1950 if (str == NULL)
1951 return 0;
1952
1953 if (check_modifier(str))
1954 return -EINVAL;
1955
1956 if (!add && get_event_modifier(&mod, str, NULL))
1957 return -EINVAL;
1958
1959 __evlist__for_each_entry(list, evsel) {
1960 if (add && get_event_modifier(&mod, str, evsel))
1961 return -EINVAL;
1962
1963 evsel->core.attr.exclude_user = mod.eu;
1964 evsel->core.attr.exclude_kernel = mod.ek;
1965 evsel->core.attr.exclude_hv = mod.eh;
1966 evsel->core.attr.precise_ip = mod.precise;
1967 evsel->core.attr.exclude_host = mod.eH;
1968 evsel->core.attr.exclude_guest = mod.eG;
1969 evsel->core.attr.exclude_idle = mod.eI;
1970 evsel->exclude_GH = mod.exclude_GH;
1971 evsel->sample_read = mod.sample_read;
1972 evsel->precise_max = mod.precise_max;
1973 evsel->weak_group = mod.weak;
1974 evsel->bpf_counter = mod.bpf_counter;
1975
1976 if (evsel__is_group_leader(evsel)) {
1977 evsel->core.attr.pinned = mod.pinned;
1978 evsel->core.attr.exclusive = mod.exclusive;
1979 }
1980 }
1981
1982 return 0;
1983 }
1984
parse_events_name(struct list_head * list,const char * name)1985 int parse_events_name(struct list_head *list, const char *name)
1986 {
1987 struct evsel *evsel;
1988
1989 __evlist__for_each_entry(list, evsel) {
1990 if (!evsel->name)
1991 evsel->name = strdup(name);
1992 }
1993
1994 return 0;
1995 }
1996
1997 static int
comp_pmu(const void * p1,const void * p2)1998 comp_pmu(const void *p1, const void *p2)
1999 {
2000 struct perf_pmu_event_symbol *pmu1 = (struct perf_pmu_event_symbol *) p1;
2001 struct perf_pmu_event_symbol *pmu2 = (struct perf_pmu_event_symbol *) p2;
2002
2003 return strcasecmp(pmu1->symbol, pmu2->symbol);
2004 }
2005
perf_pmu__parse_cleanup(void)2006 static void perf_pmu__parse_cleanup(void)
2007 {
2008 if (perf_pmu_events_list_num > 0) {
2009 struct perf_pmu_event_symbol *p;
2010 int i;
2011
2012 for (i = 0; i < perf_pmu_events_list_num; i++) {
2013 p = perf_pmu_events_list + i;
2014 zfree(&p->symbol);
2015 }
2016 zfree(&perf_pmu_events_list);
2017 perf_pmu_events_list_num = 0;
2018 }
2019 }
2020
2021 #define SET_SYMBOL(str, stype) \
2022 do { \
2023 p->symbol = str; \
2024 if (!p->symbol) \
2025 goto err; \
2026 p->type = stype; \
2027 } while (0)
2028
2029 /*
2030 * Read the pmu events list from sysfs
2031 * Save it into perf_pmu_events_list
2032 */
perf_pmu__parse_init(void)2033 static void perf_pmu__parse_init(void)
2034 {
2035
2036 struct perf_pmu *pmu = NULL;
2037 struct perf_pmu_alias *alias;
2038 int len = 0;
2039
2040 pmu = NULL;
2041 while ((pmu = perf_pmu__scan(pmu)) != NULL) {
2042 list_for_each_entry(alias, &pmu->aliases, list) {
2043 char *tmp = strchr(alias->name, '-');
2044
2045 if (tmp) {
2046 char *tmp2 = NULL;
2047
2048 tmp2 = strchr(tmp + 1, '-');
2049 len++;
2050 if (tmp2)
2051 len++;
2052 }
2053
2054 len++;
2055 }
2056 }
2057
2058 if (len == 0) {
2059 perf_pmu_events_list_num = -1;
2060 return;
2061 }
2062 perf_pmu_events_list = malloc(sizeof(struct perf_pmu_event_symbol) * len);
2063 if (!perf_pmu_events_list)
2064 return;
2065 perf_pmu_events_list_num = len;
2066
2067 len = 0;
2068 pmu = NULL;
2069 while ((pmu = perf_pmu__scan(pmu)) != NULL) {
2070 list_for_each_entry(alias, &pmu->aliases, list) {
2071 struct perf_pmu_event_symbol *p = perf_pmu_events_list + len;
2072 char *tmp = strchr(alias->name, '-');
2073 char *tmp2 = NULL;
2074
2075 if (tmp)
2076 tmp2 = strchr(tmp + 1, '-');
2077 if (tmp2) {
2078 SET_SYMBOL(strndup(alias->name, tmp - alias->name),
2079 PMU_EVENT_SYMBOL_PREFIX);
2080 p++;
2081 tmp++;
2082 SET_SYMBOL(strndup(tmp, tmp2 - tmp), PMU_EVENT_SYMBOL_SUFFIX);
2083 p++;
2084 SET_SYMBOL(strdup(++tmp2), PMU_EVENT_SYMBOL_SUFFIX2);
2085 len += 3;
2086 } else if (tmp) {
2087 SET_SYMBOL(strndup(alias->name, tmp - alias->name),
2088 PMU_EVENT_SYMBOL_PREFIX);
2089 p++;
2090 SET_SYMBOL(strdup(++tmp), PMU_EVENT_SYMBOL_SUFFIX);
2091 len += 2;
2092 } else {
2093 SET_SYMBOL(strdup(alias->name), PMU_EVENT_SYMBOL);
2094 len++;
2095 }
2096 }
2097 }
2098 qsort(perf_pmu_events_list, len,
2099 sizeof(struct perf_pmu_event_symbol), comp_pmu);
2100
2101 return;
2102 err:
2103 perf_pmu__parse_cleanup();
2104 }
2105
2106 /*
2107 * This function injects special term in
2108 * perf_pmu_events_list so the test code
2109 * can check on this functionality.
2110 */
perf_pmu__test_parse_init(void)2111 int perf_pmu__test_parse_init(void)
2112 {
2113 struct perf_pmu_event_symbol *list, *tmp, symbols[] = {
2114 {(char *)"read", PMU_EVENT_SYMBOL},
2115 {(char *)"event", PMU_EVENT_SYMBOL_PREFIX},
2116 {(char *)"two", PMU_EVENT_SYMBOL_SUFFIX},
2117 {(char *)"hyphen", PMU_EVENT_SYMBOL_SUFFIX},
2118 {(char *)"hyph", PMU_EVENT_SYMBOL_SUFFIX2},
2119 };
2120 unsigned long i, j;
2121
2122 tmp = list = malloc(sizeof(*list) * ARRAY_SIZE(symbols));
2123 if (!list)
2124 return -ENOMEM;
2125
2126 for (i = 0; i < ARRAY_SIZE(symbols); i++, tmp++) {
2127 tmp->type = symbols[i].type;
2128 tmp->symbol = strdup(symbols[i].symbol);
2129 if (!tmp->symbol)
2130 goto err_free;
2131 }
2132
2133 perf_pmu_events_list = list;
2134 perf_pmu_events_list_num = ARRAY_SIZE(symbols);
2135
2136 qsort(perf_pmu_events_list, ARRAY_SIZE(symbols),
2137 sizeof(struct perf_pmu_event_symbol), comp_pmu);
2138 return 0;
2139
2140 err_free:
2141 for (j = 0, tmp = list; j < i; j++, tmp++)
2142 free(tmp->symbol);
2143 free(list);
2144 return -ENOMEM;
2145 }
2146
2147 enum perf_pmu_event_symbol_type
perf_pmu__parse_check(const char * name)2148 perf_pmu__parse_check(const char *name)
2149 {
2150 struct perf_pmu_event_symbol p, *r;
2151
2152 /* scan kernel pmu events from sysfs if needed */
2153 if (perf_pmu_events_list_num == 0)
2154 perf_pmu__parse_init();
2155 /*
2156 * name "cpu" could be prefix of cpu-cycles or cpu// events.
2157 * cpu-cycles has been handled by hardcode.
2158 * So it must be cpu// events, not kernel pmu event.
2159 */
2160 if ((perf_pmu_events_list_num <= 0) || !strcmp(name, "cpu"))
2161 return PMU_EVENT_SYMBOL_ERR;
2162
2163 p.symbol = strdup(name);
2164 r = bsearch(&p, perf_pmu_events_list,
2165 (size_t) perf_pmu_events_list_num,
2166 sizeof(struct perf_pmu_event_symbol), comp_pmu);
2167 zfree(&p.symbol);
2168 return r ? r->type : PMU_EVENT_SYMBOL_ERR;
2169 }
2170
parse_events__scanner(const char * str,struct parse_events_state * parse_state)2171 static int parse_events__scanner(const char *str,
2172 struct parse_events_state *parse_state)
2173 {
2174 YY_BUFFER_STATE buffer;
2175 void *scanner;
2176 int ret;
2177
2178 ret = parse_events_lex_init_extra(parse_state, &scanner);
2179 if (ret)
2180 return ret;
2181
2182 buffer = parse_events__scan_string(str, scanner);
2183
2184 #ifdef PARSER_DEBUG
2185 parse_events_debug = 1;
2186 parse_events_set_debug(1, scanner);
2187 #endif
2188 ret = parse_events_parse(parse_state, scanner);
2189
2190 parse_events__flush_buffer(buffer, scanner);
2191 parse_events__delete_buffer(buffer, scanner);
2192 parse_events_lex_destroy(scanner);
2193 return ret;
2194 }
2195
2196 /*
2197 * parse event config string, return a list of event terms.
2198 */
parse_events_terms(struct list_head * terms,const char * str)2199 int parse_events_terms(struct list_head *terms, const char *str)
2200 {
2201 struct parse_events_state parse_state = {
2202 .terms = NULL,
2203 .stoken = PE_START_TERMS,
2204 };
2205 int ret;
2206
2207 ret = parse_events__scanner(str, &parse_state);
2208 perf_pmu__parse_cleanup();
2209
2210 if (!ret) {
2211 list_splice(parse_state.terms, terms);
2212 zfree(&parse_state.terms);
2213 return 0;
2214 }
2215
2216 parse_events_terms__delete(parse_state.terms);
2217 return ret;
2218 }
2219
parse_events__with_hybrid_pmu(struct parse_events_state * parse_state,const char * str,char * pmu_name,struct list_head * list)2220 static int parse_events__with_hybrid_pmu(struct parse_events_state *parse_state,
2221 const char *str, char *pmu_name,
2222 struct list_head *list)
2223 {
2224 struct parse_events_state ps = {
2225 .list = LIST_HEAD_INIT(ps.list),
2226 .stoken = PE_START_EVENTS,
2227 .hybrid_pmu_name = pmu_name,
2228 .idx = parse_state->idx,
2229 };
2230 int ret;
2231
2232 ret = parse_events__scanner(str, &ps);
2233 perf_pmu__parse_cleanup();
2234
2235 if (!ret) {
2236 if (!list_empty(&ps.list)) {
2237 list_splice(&ps.list, list);
2238 parse_state->idx = ps.idx;
2239 return 0;
2240 } else
2241 return -1;
2242 }
2243
2244 return ret;
2245 }
2246
__parse_events(struct evlist * evlist,const char * str,struct parse_events_error * err,struct perf_pmu * fake_pmu)2247 int __parse_events(struct evlist *evlist, const char *str,
2248 struct parse_events_error *err, struct perf_pmu *fake_pmu)
2249 {
2250 struct parse_events_state parse_state = {
2251 .list = LIST_HEAD_INIT(parse_state.list),
2252 .idx = evlist->core.nr_entries,
2253 .error = err,
2254 .evlist = evlist,
2255 .stoken = PE_START_EVENTS,
2256 .fake_pmu = fake_pmu,
2257 };
2258 int ret;
2259
2260 ret = parse_events__scanner(str, &parse_state);
2261 perf_pmu__parse_cleanup();
2262
2263 if (!ret && list_empty(&parse_state.list)) {
2264 WARN_ONCE(true, "WARNING: event parser found nothing\n");
2265 return -1;
2266 }
2267
2268 /*
2269 * Add list to the evlist even with errors to allow callers to clean up.
2270 */
2271 evlist__splice_list_tail(evlist, &parse_state.list);
2272
2273 if (!ret) {
2274 struct evsel *last;
2275
2276 evlist->core.nr_groups += parse_state.nr_groups;
2277 last = evlist__last(evlist);
2278 last->cmdline_group_boundary = true;
2279
2280 return 0;
2281 }
2282
2283 /*
2284 * There are 2 users - builtin-record and builtin-test objects.
2285 * Both call evlist__delete in case of error, so we dont
2286 * need to bother.
2287 */
2288 return ret;
2289 }
2290
parse_event(struct evlist * evlist,const char * str)2291 int parse_event(struct evlist *evlist, const char *str)
2292 {
2293 struct parse_events_error err;
2294 int ret;
2295
2296 parse_events_error__init(&err);
2297 ret = parse_events(evlist, str, &err);
2298 parse_events_error__exit(&err);
2299 return ret;
2300 }
2301
parse_events_error__init(struct parse_events_error * err)2302 void parse_events_error__init(struct parse_events_error *err)
2303 {
2304 bzero(err, sizeof(*err));
2305 }
2306
parse_events_error__exit(struct parse_events_error * err)2307 void parse_events_error__exit(struct parse_events_error *err)
2308 {
2309 zfree(&err->str);
2310 zfree(&err->help);
2311 zfree(&err->first_str);
2312 zfree(&err->first_help);
2313 }
2314
parse_events_error__handle(struct parse_events_error * err,int idx,char * str,char * help)2315 void parse_events_error__handle(struct parse_events_error *err, int idx,
2316 char *str, char *help)
2317 {
2318 if (WARN(!str || !err, "WARNING: failed to provide error string or struct\n"))
2319 goto out_free;
2320 switch (err->num_errors) {
2321 case 0:
2322 err->idx = idx;
2323 err->str = str;
2324 err->help = help;
2325 break;
2326 case 1:
2327 err->first_idx = err->idx;
2328 err->idx = idx;
2329 err->first_str = err->str;
2330 err->str = str;
2331 err->first_help = err->help;
2332 err->help = help;
2333 break;
2334 default:
2335 pr_debug("Multiple errors dropping message: %s (%s)\n",
2336 err->str, err->help);
2337 free(err->str);
2338 err->str = str;
2339 free(err->help);
2340 err->help = help;
2341 break;
2342 }
2343 err->num_errors++;
2344 return;
2345
2346 out_free:
2347 free(str);
2348 free(help);
2349 }
2350
2351 #define MAX_WIDTH 1000
get_term_width(void)2352 static int get_term_width(void)
2353 {
2354 struct winsize ws;
2355
2356 get_term_dimensions(&ws);
2357 return ws.ws_col > MAX_WIDTH ? MAX_WIDTH : ws.ws_col;
2358 }
2359
__parse_events_error__print(int err_idx,const char * err_str,const char * err_help,const char * event)2360 static void __parse_events_error__print(int err_idx, const char *err_str,
2361 const char *err_help, const char *event)
2362 {
2363 const char *str = "invalid or unsupported event: ";
2364 char _buf[MAX_WIDTH];
2365 char *buf = (char *) event;
2366 int idx = 0;
2367 if (err_str) {
2368 /* -2 for extra '' in the final fprintf */
2369 int width = get_term_width() - 2;
2370 int len_event = strlen(event);
2371 int len_str, max_len, cut = 0;
2372
2373 /*
2374 * Maximum error index indent, we will cut
2375 * the event string if it's bigger.
2376 */
2377 int max_err_idx = 13;
2378
2379 /*
2380 * Let's be specific with the message when
2381 * we have the precise error.
2382 */
2383 str = "event syntax error: ";
2384 len_str = strlen(str);
2385 max_len = width - len_str;
2386
2387 buf = _buf;
2388
2389 /* We're cutting from the beginning. */
2390 if (err_idx > max_err_idx)
2391 cut = err_idx - max_err_idx;
2392
2393 strncpy(buf, event + cut, max_len);
2394
2395 /* Mark cut parts with '..' on both sides. */
2396 if (cut)
2397 buf[0] = buf[1] = '.';
2398
2399 if ((len_event - cut) > max_len) {
2400 buf[max_len - 1] = buf[max_len - 2] = '.';
2401 buf[max_len] = 0;
2402 }
2403
2404 idx = len_str + err_idx - cut;
2405 }
2406
2407 fprintf(stderr, "%s'%s'\n", str, buf);
2408 if (idx) {
2409 fprintf(stderr, "%*s\\___ %s\n", idx + 1, "", err_str);
2410 if (err_help)
2411 fprintf(stderr, "\n%s\n", err_help);
2412 }
2413 }
2414
parse_events_error__print(struct parse_events_error * err,const char * event)2415 void parse_events_error__print(struct parse_events_error *err,
2416 const char *event)
2417 {
2418 if (!err->num_errors)
2419 return;
2420
2421 __parse_events_error__print(err->idx, err->str, err->help, event);
2422
2423 if (err->num_errors > 1) {
2424 fputs("\nInitial error:\n", stderr);
2425 __parse_events_error__print(err->first_idx, err->first_str,
2426 err->first_help, event);
2427 }
2428 }
2429
2430 #undef MAX_WIDTH
2431
parse_events_option(const struct option * opt,const char * str,int unset __maybe_unused)2432 int parse_events_option(const struct option *opt, const char *str,
2433 int unset __maybe_unused)
2434 {
2435 struct evlist *evlist = *(struct evlist **)opt->value;
2436 struct parse_events_error err;
2437 int ret;
2438
2439 parse_events_error__init(&err);
2440 ret = parse_events(evlist, str, &err);
2441
2442 if (ret) {
2443 parse_events_error__print(&err, str);
2444 fprintf(stderr, "Run 'perf list' for a list of valid events\n");
2445 }
2446 parse_events_error__exit(&err);
2447
2448 return ret;
2449 }
2450
parse_events_option_new_evlist(const struct option * opt,const char * str,int unset)2451 int parse_events_option_new_evlist(const struct option *opt, const char *str, int unset)
2452 {
2453 struct evlist **evlistp = opt->value;
2454 int ret;
2455
2456 if (*evlistp == NULL) {
2457 *evlistp = evlist__new();
2458
2459 if (*evlistp == NULL) {
2460 fprintf(stderr, "Not enough memory to create evlist\n");
2461 return -1;
2462 }
2463 }
2464
2465 ret = parse_events_option(opt, str, unset);
2466 if (ret) {
2467 evlist__delete(*evlistp);
2468 *evlistp = NULL;
2469 }
2470
2471 return ret;
2472 }
2473
2474 static int
foreach_evsel_in_last_glob(struct evlist * evlist,int (* func)(struct evsel * evsel,const void * arg),const void * arg)2475 foreach_evsel_in_last_glob(struct evlist *evlist,
2476 int (*func)(struct evsel *evsel,
2477 const void *arg),
2478 const void *arg)
2479 {
2480 struct evsel *last = NULL;
2481 int err;
2482
2483 /*
2484 * Don't return when list_empty, give func a chance to report
2485 * error when it found last == NULL.
2486 *
2487 * So no need to WARN here, let *func do this.
2488 */
2489 if (evlist->core.nr_entries > 0)
2490 last = evlist__last(evlist);
2491
2492 do {
2493 err = (*func)(last, arg);
2494 if (err)
2495 return -1;
2496 if (!last)
2497 return 0;
2498
2499 if (last->core.node.prev == &evlist->core.entries)
2500 return 0;
2501 last = list_entry(last->core.node.prev, struct evsel, core.node);
2502 } while (!last->cmdline_group_boundary);
2503
2504 return 0;
2505 }
2506
set_filter(struct evsel * evsel,const void * arg)2507 static int set_filter(struct evsel *evsel, const void *arg)
2508 {
2509 const char *str = arg;
2510 bool found = false;
2511 int nr_addr_filters = 0;
2512 struct perf_pmu *pmu = NULL;
2513
2514 if (evsel == NULL) {
2515 fprintf(stderr,
2516 "--filter option should follow a -e tracepoint or HW tracer option\n");
2517 return -1;
2518 }
2519
2520 if (evsel->core.attr.type == PERF_TYPE_TRACEPOINT) {
2521 if (evsel__append_tp_filter(evsel, str) < 0) {
2522 fprintf(stderr,
2523 "not enough memory to hold filter string\n");
2524 return -1;
2525 }
2526
2527 return 0;
2528 }
2529
2530 while ((pmu = perf_pmu__scan(pmu)) != NULL)
2531 if (pmu->type == evsel->core.attr.type) {
2532 found = true;
2533 break;
2534 }
2535
2536 if (found)
2537 perf_pmu__scan_file(pmu, "nr_addr_filters",
2538 "%d", &nr_addr_filters);
2539
2540 if (!nr_addr_filters) {
2541 fprintf(stderr,
2542 "This CPU does not support address filtering\n");
2543 return -1;
2544 }
2545
2546 if (evsel__append_addr_filter(evsel, str) < 0) {
2547 fprintf(stderr,
2548 "not enough memory to hold filter string\n");
2549 return -1;
2550 }
2551
2552 return 0;
2553 }
2554
parse_filter(const struct option * opt,const char * str,int unset __maybe_unused)2555 int parse_filter(const struct option *opt, const char *str,
2556 int unset __maybe_unused)
2557 {
2558 struct evlist *evlist = *(struct evlist **)opt->value;
2559
2560 return foreach_evsel_in_last_glob(evlist, set_filter,
2561 (const void *)str);
2562 }
2563
add_exclude_perf_filter(struct evsel * evsel,const void * arg __maybe_unused)2564 static int add_exclude_perf_filter(struct evsel *evsel,
2565 const void *arg __maybe_unused)
2566 {
2567 char new_filter[64];
2568
2569 if (evsel == NULL || evsel->core.attr.type != PERF_TYPE_TRACEPOINT) {
2570 fprintf(stderr,
2571 "--exclude-perf option should follow a -e tracepoint option\n");
2572 return -1;
2573 }
2574
2575 snprintf(new_filter, sizeof(new_filter), "common_pid != %d", getpid());
2576
2577 if (evsel__append_tp_filter(evsel, new_filter) < 0) {
2578 fprintf(stderr,
2579 "not enough memory to hold filter string\n");
2580 return -1;
2581 }
2582
2583 return 0;
2584 }
2585
exclude_perf(const struct option * opt,const char * arg __maybe_unused,int unset __maybe_unused)2586 int exclude_perf(const struct option *opt,
2587 const char *arg __maybe_unused,
2588 int unset __maybe_unused)
2589 {
2590 struct evlist *evlist = *(struct evlist **)opt->value;
2591
2592 return foreach_evsel_in_last_glob(evlist, add_exclude_perf_filter,
2593 NULL);
2594 }
2595
parse_events__is_hardcoded_term(struct parse_events_term * term)2596 int parse_events__is_hardcoded_term(struct parse_events_term *term)
2597 {
2598 return term->type_term != PARSE_EVENTS__TERM_TYPE_USER;
2599 }
2600
new_term(struct parse_events_term ** _term,struct parse_events_term * temp,char * str,u64 num)2601 static int new_term(struct parse_events_term **_term,
2602 struct parse_events_term *temp,
2603 char *str, u64 num)
2604 {
2605 struct parse_events_term *term;
2606
2607 term = malloc(sizeof(*term));
2608 if (!term)
2609 return -ENOMEM;
2610
2611 *term = *temp;
2612 INIT_LIST_HEAD(&term->list);
2613 term->weak = false;
2614
2615 switch (term->type_val) {
2616 case PARSE_EVENTS__TERM_TYPE_NUM:
2617 term->val.num = num;
2618 break;
2619 case PARSE_EVENTS__TERM_TYPE_STR:
2620 term->val.str = str;
2621 break;
2622 default:
2623 free(term);
2624 return -EINVAL;
2625 }
2626
2627 *_term = term;
2628 return 0;
2629 }
2630
parse_events_term__num(struct parse_events_term ** term,int type_term,char * config,u64 num,bool no_value,void * loc_term_,void * loc_val_)2631 int parse_events_term__num(struct parse_events_term **term,
2632 int type_term, char *config, u64 num,
2633 bool no_value,
2634 void *loc_term_, void *loc_val_)
2635 {
2636 YYLTYPE *loc_term = loc_term_;
2637 YYLTYPE *loc_val = loc_val_;
2638
2639 struct parse_events_term temp = {
2640 .type_val = PARSE_EVENTS__TERM_TYPE_NUM,
2641 .type_term = type_term,
2642 .config = config ? : strdup(config_term_names[type_term]),
2643 .no_value = no_value,
2644 .err_term = loc_term ? loc_term->first_column : 0,
2645 .err_val = loc_val ? loc_val->first_column : 0,
2646 };
2647
2648 return new_term(term, &temp, NULL, num);
2649 }
2650
parse_events_term__str(struct parse_events_term ** term,int type_term,char * config,char * str,void * loc_term_,void * loc_val_)2651 int parse_events_term__str(struct parse_events_term **term,
2652 int type_term, char *config, char *str,
2653 void *loc_term_, void *loc_val_)
2654 {
2655 YYLTYPE *loc_term = loc_term_;
2656 YYLTYPE *loc_val = loc_val_;
2657
2658 struct parse_events_term temp = {
2659 .type_val = PARSE_EVENTS__TERM_TYPE_STR,
2660 .type_term = type_term,
2661 .config = config,
2662 .err_term = loc_term ? loc_term->first_column : 0,
2663 .err_val = loc_val ? loc_val->first_column : 0,
2664 };
2665
2666 return new_term(term, &temp, str, 0);
2667 }
2668
parse_events_term__sym_hw(struct parse_events_term ** term,char * config,unsigned idx)2669 int parse_events_term__sym_hw(struct parse_events_term **term,
2670 char *config, unsigned idx)
2671 {
2672 struct event_symbol *sym;
2673 char *str;
2674 struct parse_events_term temp = {
2675 .type_val = PARSE_EVENTS__TERM_TYPE_STR,
2676 .type_term = PARSE_EVENTS__TERM_TYPE_USER,
2677 .config = config,
2678 };
2679
2680 if (!temp.config) {
2681 temp.config = strdup("event");
2682 if (!temp.config)
2683 return -ENOMEM;
2684 }
2685 BUG_ON(idx >= PERF_COUNT_HW_MAX);
2686 sym = &event_symbols_hw[idx];
2687
2688 str = strdup(sym->symbol);
2689 if (!str)
2690 return -ENOMEM;
2691 return new_term(term, &temp, str, 0);
2692 }
2693
parse_events_term__clone(struct parse_events_term ** new,struct parse_events_term * term)2694 int parse_events_term__clone(struct parse_events_term **new,
2695 struct parse_events_term *term)
2696 {
2697 char *str;
2698 struct parse_events_term temp = {
2699 .type_val = term->type_val,
2700 .type_term = term->type_term,
2701 .config = NULL,
2702 .err_term = term->err_term,
2703 .err_val = term->err_val,
2704 };
2705
2706 if (term->config) {
2707 temp.config = strdup(term->config);
2708 if (!temp.config)
2709 return -ENOMEM;
2710 }
2711 if (term->type_val == PARSE_EVENTS__TERM_TYPE_NUM)
2712 return new_term(new, &temp, NULL, term->val.num);
2713
2714 str = strdup(term->val.str);
2715 if (!str)
2716 return -ENOMEM;
2717 return new_term(new, &temp, str, 0);
2718 }
2719
parse_events_term__delete(struct parse_events_term * term)2720 void parse_events_term__delete(struct parse_events_term *term)
2721 {
2722 if (term->array.nr_ranges)
2723 zfree(&term->array.ranges);
2724
2725 if (term->type_val != PARSE_EVENTS__TERM_TYPE_NUM)
2726 zfree(&term->val.str);
2727
2728 zfree(&term->config);
2729 free(term);
2730 }
2731
parse_events_copy_term_list(struct list_head * old,struct list_head ** new)2732 int parse_events_copy_term_list(struct list_head *old,
2733 struct list_head **new)
2734 {
2735 struct parse_events_term *term, *n;
2736 int ret;
2737
2738 if (!old) {
2739 *new = NULL;
2740 return 0;
2741 }
2742
2743 *new = malloc(sizeof(struct list_head));
2744 if (!*new)
2745 return -ENOMEM;
2746 INIT_LIST_HEAD(*new);
2747
2748 list_for_each_entry (term, old, list) {
2749 ret = parse_events_term__clone(&n, term);
2750 if (ret)
2751 return ret;
2752 list_add_tail(&n->list, *new);
2753 }
2754 return 0;
2755 }
2756
parse_events_terms__purge(struct list_head * terms)2757 void parse_events_terms__purge(struct list_head *terms)
2758 {
2759 struct parse_events_term *term, *h;
2760
2761 list_for_each_entry_safe(term, h, terms, list) {
2762 list_del_init(&term->list);
2763 parse_events_term__delete(term);
2764 }
2765 }
2766
parse_events_terms__delete(struct list_head * terms)2767 void parse_events_terms__delete(struct list_head *terms)
2768 {
2769 if (!terms)
2770 return;
2771 parse_events_terms__purge(terms);
2772 free(terms);
2773 }
2774
parse_events__clear_array(struct parse_events_array * a)2775 void parse_events__clear_array(struct parse_events_array *a)
2776 {
2777 zfree(&a->ranges);
2778 }
2779
parse_events_evlist_error(struct parse_events_state * parse_state,int idx,const char * str)2780 void parse_events_evlist_error(struct parse_events_state *parse_state,
2781 int idx, const char *str)
2782 {
2783 if (!parse_state->error)
2784 return;
2785
2786 parse_events_error__handle(parse_state->error, idx, strdup(str), NULL);
2787 }
2788
config_terms_list(char * buf,size_t buf_sz)2789 static void config_terms_list(char *buf, size_t buf_sz)
2790 {
2791 int i;
2792 bool first = true;
2793
2794 buf[0] = '\0';
2795 for (i = 0; i < __PARSE_EVENTS__TERM_TYPE_NR; i++) {
2796 const char *name = config_term_names[i];
2797
2798 if (!config_term_avail(i, NULL))
2799 continue;
2800 if (!name)
2801 continue;
2802 if (name[0] == '<')
2803 continue;
2804
2805 if (strlen(buf) + strlen(name) + 2 >= buf_sz)
2806 return;
2807
2808 if (!first)
2809 strcat(buf, ",");
2810 else
2811 first = false;
2812 strcat(buf, name);
2813 }
2814 }
2815
2816 /*
2817 * Return string contains valid config terms of an event.
2818 * @additional_terms: For terms such as PMU sysfs terms.
2819 */
parse_events_formats_error_string(char * additional_terms)2820 char *parse_events_formats_error_string(char *additional_terms)
2821 {
2822 char *str;
2823 /* "no-overwrite" is the longest name */
2824 char static_terms[__PARSE_EVENTS__TERM_TYPE_NR *
2825 (sizeof("no-overwrite") - 1)];
2826
2827 config_terms_list(static_terms, sizeof(static_terms));
2828 /* valid terms */
2829 if (additional_terms) {
2830 if (asprintf(&str, "valid terms: %s,%s",
2831 additional_terms, static_terms) < 0)
2832 goto fail;
2833 } else {
2834 if (asprintf(&str, "valid terms: %s", static_terms) < 0)
2835 goto fail;
2836 }
2837 return str;
2838
2839 fail:
2840 return NULL;
2841 }
2842
parse_events__add_event_hybrid(struct list_head * list,int * idx,struct perf_event_attr * attr,const char * name,const char * metric_id,struct perf_pmu * pmu,struct list_head * config_terms)2843 struct evsel *parse_events__add_event_hybrid(struct list_head *list, int *idx,
2844 struct perf_event_attr *attr,
2845 const char *name,
2846 const char *metric_id,
2847 struct perf_pmu *pmu,
2848 struct list_head *config_terms)
2849 {
2850 return __add_event(list, idx, attr, /*init_attr=*/true, name, metric_id,
2851 pmu, config_terms, /*auto_merge_stats=*/false,
2852 /*cpu_list=*/NULL);
2853 }
2854