xref: /linux/tools/perf/util/metricgroup.c (revision 9e906a9dead17d81d6c2687f65e159231d0e3286)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (c) 2017, Intel Corporation.
4  */
5 
6 /* Manage metrics and groups of metrics from JSON files */
7 
8 #include "metricgroup.h"
9 #include "debug.h"
10 #include "evlist.h"
11 #include "evsel.h"
12 #include "strbuf.h"
13 #include "pmu.h"
14 #include "pmus.h"
15 #include "print-events.h"
16 #include "smt.h"
17 #include "tool_pmu.h"
18 #include "expr.h"
19 #include "rblist.h"
20 #include <string.h>
21 #include <errno.h>
22 #include "strlist.h"
23 #include <assert.h>
24 #include <linux/ctype.h>
25 #include <linux/list_sort.h>
26 #include <linux/string.h>
27 #include <linux/zalloc.h>
28 #include <perf/cpumap.h>
29 #include <subcmd/parse-options.h>
30 #include <api/fs/fs.h>
31 #include "util.h"
32 #include <asm/bug.h>
33 #include "cgroup.h"
34 #include "util/hashmap.h"
35 
metricgroup__lookup(struct rblist * metric_events,struct evsel * evsel,bool create)36 struct metric_event *metricgroup__lookup(struct rblist *metric_events,
37 					 struct evsel *evsel,
38 					 bool create)
39 {
40 	struct rb_node *nd;
41 	struct metric_event me = {
42 		.evsel = evsel
43 	};
44 
45 	if (!metric_events)
46 		return NULL;
47 
48 	if (evsel && evsel->metric_leader)
49 		me.evsel = evsel->metric_leader;
50 	nd = rblist__find(metric_events, &me);
51 	if (nd)
52 		return container_of(nd, struct metric_event, nd);
53 	if (create) {
54 		rblist__add_node(metric_events, &me);
55 		nd = rblist__find(metric_events, &me);
56 		if (nd)
57 			return container_of(nd, struct metric_event, nd);
58 	}
59 	return NULL;
60 }
61 
metric_event_cmp(struct rb_node * rb_node,const void * entry)62 static int metric_event_cmp(struct rb_node *rb_node, const void *entry)
63 {
64 	struct metric_event *a = container_of(rb_node,
65 					      struct metric_event,
66 					      nd);
67 	const struct metric_event *b = entry;
68 
69 	if (a->evsel == b->evsel)
70 		return 0;
71 	if ((char *)a->evsel < (char *)b->evsel)
72 		return -1;
73 	return +1;
74 }
75 
metric_event_new(struct rblist * rblist __maybe_unused,const void * entry)76 static struct rb_node *metric_event_new(struct rblist *rblist __maybe_unused,
77 					const void *entry)
78 {
79 	struct metric_event *me = malloc(sizeof(struct metric_event));
80 
81 	if (!me)
82 		return NULL;
83 	memcpy(me, entry, sizeof(struct metric_event));
84 	me->evsel = ((struct metric_event *)entry)->evsel;
85 	me->is_default = false;
86 	INIT_LIST_HEAD(&me->head);
87 	return &me->nd;
88 }
89 
metric_event_delete(struct rblist * rblist __maybe_unused,struct rb_node * rb_node)90 static void metric_event_delete(struct rblist *rblist __maybe_unused,
91 				struct rb_node *rb_node)
92 {
93 	struct metric_event *me = container_of(rb_node, struct metric_event, nd);
94 	struct metric_expr *expr, *tmp;
95 
96 	list_for_each_entry_safe(expr, tmp, &me->head, nd) {
97 		zfree(&expr->metric_name);
98 		zfree(&expr->metric_refs);
99 		zfree(&expr->metric_events);
100 		free(expr);
101 	}
102 
103 	free(me);
104 }
105 
metricgroup__rblist_init(struct rblist * metric_events)106 void metricgroup__rblist_init(struct rblist *metric_events)
107 {
108 	rblist__init(metric_events);
109 	metric_events->node_cmp = metric_event_cmp;
110 	metric_events->node_new = metric_event_new;
111 	metric_events->node_delete = metric_event_delete;
112 }
113 
metricgroup__rblist_exit(struct rblist * metric_events)114 void metricgroup__rblist_exit(struct rblist *metric_events)
115 {
116 	rblist__exit(metric_events);
117 }
118 
119 /**
120  * The metric under construction. The data held here will be placed in a
121  * metric_expr.
122  */
123 struct metric {
124 	struct list_head nd;
125 	/**
126 	 * The expression parse context importantly holding the IDs contained
127 	 * within the expression.
128 	 */
129 	struct expr_parse_ctx *pctx;
130 	const char *pmu;
131 	/** The name of the metric such as "IPC". */
132 	const char *metric_name;
133 	/** Modifier on the metric such as "u" or NULL for none. */
134 	const char *modifier;
135 	/** The expression to parse, for example, "instructions/cycles". */
136 	const char *metric_expr;
137 	/** Optional threshold expression where zero value is green, otherwise red. */
138 	const char *metric_threshold;
139 	/**
140 	 * The "ScaleUnit" that scales and adds a unit to the metric during
141 	 * output.
142 	 */
143 	const char *metric_unit;
144 	/**
145 	 * Optional name of the metric group reported
146 	 * if the Default metric group is being processed.
147 	 */
148 	const char *default_metricgroup_name;
149 	/** Optional null terminated array of referenced metrics. */
150 	struct metric_ref *metric_refs;
151 	/**
152 	 * Should events of the metric be grouped?
153 	 */
154 	bool group_events;
155 	/** Show events even if in the Default metric group. */
156 	bool default_show_events;
157 	/**
158 	 * Parsed events for the metric. Optional as events may be taken from a
159 	 * different metric whose group contains all the IDs necessary for this
160 	 * one.
161 	 */
162 	struct evlist *evlist;
163 };
164 
metric__watchdog_constraint_hint(const char * name,bool foot)165 static void metric__watchdog_constraint_hint(const char *name, bool foot)
166 {
167 	static bool violate_nmi_constraint;
168 
169 	if (!foot) {
170 		pr_warning("Not grouping metric %s's events.\n", name);
171 		violate_nmi_constraint = true;
172 		return;
173 	}
174 
175 	if (!violate_nmi_constraint)
176 		return;
177 
178 	pr_warning("Try disabling the NMI watchdog to comply NO_NMI_WATCHDOG metric constraint:\n"
179 		   "    echo 0 > /proc/sys/kernel/nmi_watchdog\n"
180 		   "    perf stat ...\n"
181 		   "    echo 1 > /proc/sys/kernel/nmi_watchdog\n");
182 }
183 
metric__group_events(const struct pmu_metric * pm,bool metric_no_threshold)184 static bool metric__group_events(const struct pmu_metric *pm, bool metric_no_threshold)
185 {
186 	switch (pm->event_grouping) {
187 	case MetricNoGroupEvents:
188 		return false;
189 	case MetricNoGroupEventsNmi:
190 		if (!sysctl__nmi_watchdog_enabled())
191 			return true;
192 		metric__watchdog_constraint_hint(pm->metric_name, /*foot=*/false);
193 		return false;
194 	case MetricNoGroupEventsSmt:
195 		return !smt_on();
196 	case MetricNoGroupEventsThresholdAndNmi:
197 		if (metric_no_threshold)
198 			return true;
199 		if (!sysctl__nmi_watchdog_enabled())
200 			return true;
201 		metric__watchdog_constraint_hint(pm->metric_name, /*foot=*/false);
202 		return false;
203 	case MetricGroupEvents:
204 	default:
205 		return true;
206 	}
207 }
208 
metric__free(struct metric * m)209 static void metric__free(struct metric *m)
210 {
211 	if (!m)
212 		return;
213 
214 	zfree(&m->metric_refs);
215 	expr__ctx_free(m->pctx);
216 	zfree(&m->modifier);
217 	evlist__delete(m->evlist);
218 	free(m);
219 }
220 
metric__new(const struct pmu_metric * pm,const char * modifier,bool metric_no_group,bool metric_no_threshold,int runtime,const char * user_requested_cpu_list,bool system_wide)221 static struct metric *metric__new(const struct pmu_metric *pm,
222 				  const char *modifier,
223 				  bool metric_no_group,
224 				  bool metric_no_threshold,
225 				  int runtime,
226 				  const char *user_requested_cpu_list,
227 				  bool system_wide)
228 {
229 	struct metric *m;
230 
231 	m = zalloc(sizeof(*m));
232 	if (!m)
233 		return NULL;
234 
235 	m->pctx = expr__ctx_new();
236 	if (!m->pctx)
237 		goto out_err;
238 
239 	m->pmu = pm->pmu ?: "cpu";
240 	m->metric_name = pm->metric_name;
241 	m->default_metricgroup_name = pm->default_metricgroup_name ?: "";
242 	m->modifier = NULL;
243 	if (modifier) {
244 		m->modifier = strdup(modifier);
245 		if (!m->modifier)
246 			goto out_err;
247 	}
248 	m->metric_expr = pm->metric_expr;
249 	m->metric_threshold = pm->metric_threshold;
250 	m->metric_unit = pm->unit;
251 	m->pctx->sctx.user_requested_cpu_list = NULL;
252 	if (user_requested_cpu_list) {
253 		m->pctx->sctx.user_requested_cpu_list = strdup(user_requested_cpu_list);
254 		if (!m->pctx->sctx.user_requested_cpu_list)
255 			goto out_err;
256 	}
257 	m->pctx->sctx.runtime = runtime;
258 	m->pctx->sctx.system_wide = system_wide;
259 	m->group_events = !metric_no_group && metric__group_events(pm, metric_no_threshold);
260 	m->default_show_events = pm->default_show_events;
261 	m->metric_refs = NULL;
262 	m->evlist = NULL;
263 
264 	return m;
265 out_err:
266 	metric__free(m);
267 	return NULL;
268 }
269 
contains_metric_id(struct evsel ** metric_events,int num_events,const char * metric_id)270 static bool contains_metric_id(struct evsel **metric_events, int num_events,
271 			       const char *metric_id)
272 {
273 	int i;
274 
275 	for (i = 0; i < num_events; i++) {
276 		if (!strcmp(evsel__metric_id(metric_events[i]), metric_id))
277 			return true;
278 	}
279 	return false;
280 }
281 
282 /**
283  * setup_metric_events - Find a group of events in metric_evlist that correspond
284  *                       to the IDs from a parsed metric expression.
285  * @pmu: The PMU for the IDs.
286  * @ids: the metric IDs to match.
287  * @metric_evlist: the list of perf events.
288  * @out_metric_events: holds the created metric events array.
289  */
setup_metric_events(const char * pmu,struct hashmap * ids,struct evlist * metric_evlist,struct evsel *** out_metric_events)290 static int setup_metric_events(const char *pmu, struct hashmap *ids,
291 			       struct evlist *metric_evlist,
292 			       struct evsel ***out_metric_events)
293 {
294 	struct evsel **metric_events;
295 	const char *metric_id;
296 	struct evsel *ev;
297 	size_t ids_size, matched_events, i;
298 	bool all_pmus = !strcmp(pmu, "all") || perf_pmus__num_core_pmus() == 1 || !is_pmu_core(pmu);
299 
300 	*out_metric_events = NULL;
301 	ids_size = hashmap__size(ids);
302 
303 	metric_events = calloc(ids_size + 1, sizeof(void *));
304 	if (!metric_events)
305 		return -ENOMEM;
306 
307 	matched_events = 0;
308 	evlist__for_each_entry(metric_evlist, ev) {
309 		struct expr_id_data *val_ptr;
310 
311 		/* Don't match events for the wrong hybrid PMU. */
312 		if (!all_pmus && ev->pmu && evsel__is_hybrid(ev) &&
313 		    strcmp(ev->pmu->name, pmu))
314 			continue;
315 		/*
316 		 * Check for duplicate events with the same name. For
317 		 * example, uncore_imc/cas_count_read/ will turn into 6
318 		 * events per socket on skylakex. Only the first such
319 		 * event is placed in metric_events.
320 		 */
321 		metric_id = evsel__metric_id(ev);
322 		if (contains_metric_id(metric_events, matched_events, metric_id))
323 			continue;
324 		/*
325 		 * Does this event belong to the parse context? For
326 		 * combined or shared groups, this metric may not care
327 		 * about this event.
328 		 */
329 		if (hashmap__find(ids, metric_id, &val_ptr)) {
330 			pr_debug("Matched metric-id %s to %s\n", metric_id, evsel__name(ev));
331 			metric_events[matched_events++] = ev;
332 
333 			if (matched_events >= ids_size)
334 				break;
335 		}
336 	}
337 	if (matched_events < ids_size) {
338 		free(metric_events);
339 		return -EINVAL;
340 	}
341 	for (i = 0; i < ids_size; i++) {
342 		ev = metric_events[i];
343 		ev->collect_stat = true;
344 
345 		/*
346 		 * The metric leader points to the identically named
347 		 * event in metric_events.
348 		 */
349 		ev->metric_leader = ev;
350 		/*
351 		 * Mark two events with identical names in the same
352 		 * group (or globally) as being in use as uncore events
353 		 * may be duplicated for each pmu. Set the metric leader
354 		 * of such events to be the event that appears in
355 		 * metric_events.
356 		 */
357 		metric_id = evsel__metric_id(ev);
358 		evlist__for_each_entry_continue(metric_evlist, ev) {
359 			if (!strcmp(evsel__metric_id(ev), metric_id))
360 				ev->metric_leader = metric_events[i];
361 		}
362 	}
363 	*out_metric_events = metric_events;
364 	return 0;
365 }
366 
match_metric_or_groups(const char * metric_or_groups,const char * sought)367 static bool match_metric_or_groups(const char *metric_or_groups, const char *sought)
368 {
369 	int len;
370 	char *m;
371 
372 	if (!sought)
373 		return false;
374 	if (!strcmp(sought, "all"))
375 		return true;
376 	if (!metric_or_groups)
377 		return !strcasecmp(sought, "No_group");
378 	len = strlen(sought);
379 	if (!strncasecmp(metric_or_groups, sought, len) &&
380 	    (metric_or_groups[len] == 0 || metric_or_groups[len] == ';'))
381 		return true;
382 	m = strchr(metric_or_groups, ';');
383 	return m && match_metric_or_groups(m + 1, sought);
384 }
385 
match_pm_metric_or_groups(const struct pmu_metric * pm,const char * pmu,const char * metric_or_groups)386 static bool match_pm_metric_or_groups(const struct pmu_metric *pm, const char *pmu,
387 				      const char *metric_or_groups)
388 {
389 	const char *pm_pmu = pm->pmu ?: "cpu";
390 
391 	if (strcmp(pmu, "all") && strcmp(pm_pmu, pmu))
392 		return false;
393 
394 	return match_metric_or_groups(pm->metric_group, metric_or_groups) ||
395 	       match_metric_or_groups(pm->metric_name, metric_or_groups);
396 }
397 
398 struct metricgroup_iter_data {
399 	pmu_metric_iter_fn fn;
400 	void *data;
401 };
402 
metricgroup__sys_event_iter(const struct pmu_metric * pm,const struct pmu_metrics_table * table,void * data)403 static int metricgroup__sys_event_iter(const struct pmu_metric *pm,
404 				       const struct pmu_metrics_table *table,
405 				       void *data)
406 {
407 	struct metricgroup_iter_data *d = data;
408 	struct perf_pmu *pmu = NULL;
409 
410 	if (!pm->metric_expr || !pm->compat)
411 		return 0;
412 
413 	while ((pmu = perf_pmus__scan(pmu))) {
414 
415 		if (!pmu->id || !pmu_uncore_identifier_match(pm->compat, pmu->id))
416 			continue;
417 
418 		return d->fn(pm, table, d->data);
419 	}
420 	return 0;
421 }
422 
metricgroup__for_each_metric(const struct pmu_metrics_table * table,pmu_metric_iter_fn fn,void * data)423 int metricgroup__for_each_metric(const struct pmu_metrics_table *table, pmu_metric_iter_fn fn,
424 				 void *data)
425 {
426 	struct metricgroup_iter_data sys_data = {
427 		.fn = fn,
428 		.data = data,
429 	};
430 	const struct pmu_metrics_table *tables[2] = {
431 		table,
432 		pmu_metrics_table__default(),
433 	};
434 
435 	for (size_t i = 0; i < ARRAY_SIZE(tables); i++) {
436 		int ret;
437 
438 		if (!tables[i])
439 			continue;
440 
441 		ret = pmu_metrics_table__for_each_metric(tables[i], fn, data);
442 		if (ret)
443 			return ret;
444 	}
445 
446 	return pmu_for_each_sys_metric(metricgroup__sys_event_iter, &sys_data);
447 }
448 
449 static const char *code_characters = ",-=@";
450 
encode_metric_id(struct strbuf * sb,const char * x)451 static int encode_metric_id(struct strbuf *sb, const char *x)
452 {
453 	char *c;
454 	int ret = 0;
455 
456 	for (; *x; x++) {
457 		c = strchr(code_characters, *x);
458 		if (c) {
459 			ret = strbuf_addch(sb, '!');
460 			if (ret)
461 				break;
462 
463 			ret = strbuf_addch(sb, '0' + (c - code_characters));
464 			if (ret)
465 				break;
466 		} else {
467 			ret = strbuf_addch(sb, *x);
468 			if (ret)
469 				break;
470 		}
471 	}
472 	return ret;
473 }
474 
decode_metric_id(struct strbuf * sb,const char * x)475 static int decode_metric_id(struct strbuf *sb, const char *x)
476 {
477 	const char *orig = x;
478 	size_t i;
479 	char c;
480 	int ret;
481 
482 	for (; *x; x++) {
483 		c = *x;
484 		if (*x == '!') {
485 			x++;
486 			i = *x - '0';
487 			if (i > strlen(code_characters)) {
488 				pr_err("Bad metric-id encoding in: '%s'", orig);
489 				return -1;
490 			}
491 			c = code_characters[i];
492 		}
493 		ret = strbuf_addch(sb, c);
494 		if (ret)
495 			return ret;
496 	}
497 	return 0;
498 }
499 
decode_all_metric_ids(struct evlist * perf_evlist,const char * modifier)500 static int decode_all_metric_ids(struct evlist *perf_evlist, const char *modifier)
501 {
502 	struct evsel *ev;
503 	struct strbuf sb = STRBUF_INIT;
504 	char *cur;
505 	int ret = 0;
506 
507 	evlist__for_each_entry(perf_evlist, ev) {
508 		if (!ev->metric_id)
509 			continue;
510 
511 		ret = strbuf_setlen(&sb, 0);
512 		if (ret)
513 			break;
514 
515 		ret = decode_metric_id(&sb, ev->metric_id);
516 		if (ret)
517 			break;
518 
519 		free((char *)ev->metric_id);
520 		ev->metric_id = strdup(sb.buf);
521 		if (!ev->metric_id) {
522 			ret = -ENOMEM;
523 			break;
524 		}
525 		/*
526 		 * If the name is just the parsed event, use the metric-id to
527 		 * give a more friendly display version.
528 		 */
529 		if (strstr(ev->name, "metric-id=")) {
530 			bool has_slash = false;
531 
532 			zfree(&ev->name);
533 			for (cur = strchr(sb.buf, '@') ; cur; cur = strchr(++cur, '@')) {
534 				*cur = '/';
535 				has_slash = true;
536 			}
537 
538 			if (modifier) {
539 				if (!has_slash && !strchr(sb.buf, ':')) {
540 					ret = strbuf_addch(&sb, ':');
541 					if (ret)
542 						break;
543 				}
544 				ret = strbuf_addstr(&sb, modifier);
545 				if (ret)
546 					break;
547 			}
548 			ev->name = strdup(sb.buf);
549 			if (!ev->name) {
550 				ret = -ENOMEM;
551 				break;
552 			}
553 		}
554 	}
555 	strbuf_release(&sb);
556 	return ret;
557 }
558 
metricgroup__build_event_string(struct strbuf * events,const struct expr_parse_ctx * ctx,const char * modifier,bool group_events)559 static int metricgroup__build_event_string(struct strbuf *events,
560 					   const struct expr_parse_ctx *ctx,
561 					   const char *modifier,
562 					   bool group_events)
563 {
564 	struct hashmap_entry *cur;
565 	size_t bkt;
566 	bool no_group = true, has_tool_events = false;
567 	bool tool_events[TOOL_PMU__EVENT_MAX] = {false};
568 	int ret = 0;
569 
570 #define RETURN_IF_NON_ZERO(x) do { if (x) return x; } while (0)
571 
572 	hashmap__for_each_entry(ctx->ids, cur, bkt) {
573 		const char *sep, *rsep, *id = cur->pkey;
574 		enum tool_pmu_event ev;
575 
576 		pr_debug("found event %s\n", id);
577 
578 		/* Always move tool events outside of the group. */
579 		ev = tool_pmu__str_to_event(id);
580 		if (ev != TOOL_PMU__EVENT_NONE) {
581 			has_tool_events = true;
582 			tool_events[ev] = true;
583 			continue;
584 		}
585 		/* Separate events with commas and open the group if necessary. */
586 		if (no_group) {
587 			if (group_events) {
588 				ret = strbuf_addch(events, '{');
589 				RETURN_IF_NON_ZERO(ret);
590 			}
591 
592 			no_group = false;
593 		} else {
594 			ret = strbuf_addch(events, ',');
595 			RETURN_IF_NON_ZERO(ret);
596 		}
597 		/*
598 		 * Encode the ID as an event string. Add a qualifier for
599 		 * metric_id that is the original name except with characters
600 		 * that parse-events can't parse replaced. For example,
601 		 * 'msr@tsc@' gets added as msr/tsc,metric-id=msr!3tsc!3/
602 		 */
603 		sep = strchr(id, '@');
604 		if (sep != NULL) {
605 			ret = strbuf_add(events, id, sep - id);
606 			RETURN_IF_NON_ZERO(ret);
607 			ret = strbuf_addch(events, '/');
608 			RETURN_IF_NON_ZERO(ret);
609 			rsep = strrchr(sep, '@');
610 			ret = strbuf_add(events, sep + 1, rsep - sep - 1);
611 			RETURN_IF_NON_ZERO(ret);
612 			ret = strbuf_addstr(events, ",metric-id=");
613 			RETURN_IF_NON_ZERO(ret);
614 			sep = rsep;
615 		} else {
616 			sep = strchr(id, ':');
617 			if (sep != NULL) {
618 				ret = strbuf_add(events, id, sep - id);
619 				RETURN_IF_NON_ZERO(ret);
620 			} else {
621 				ret = strbuf_addstr(events, id);
622 				RETURN_IF_NON_ZERO(ret);
623 			}
624 			ret = strbuf_addstr(events, "/metric-id=");
625 			RETURN_IF_NON_ZERO(ret);
626 		}
627 		ret = encode_metric_id(events, id);
628 		RETURN_IF_NON_ZERO(ret);
629 		ret = strbuf_addstr(events, "/");
630 		RETURN_IF_NON_ZERO(ret);
631 
632 		if (sep != NULL) {
633 			ret = strbuf_addstr(events, sep + 1);
634 			RETURN_IF_NON_ZERO(ret);
635 		}
636 		if (modifier) {
637 			ret = strbuf_addstr(events, modifier);
638 			RETURN_IF_NON_ZERO(ret);
639 		}
640 	}
641 	if (!no_group && group_events) {
642 		ret = strbuf_addf(events, "}:W");
643 		RETURN_IF_NON_ZERO(ret);
644 	}
645 	if (has_tool_events) {
646 		int i;
647 
648 		tool_pmu__for_each_event(i) {
649 			if (tool_events[i]) {
650 				if (!no_group) {
651 					ret = strbuf_addch(events, ',');
652 					RETURN_IF_NON_ZERO(ret);
653 				}
654 				no_group = false;
655 				ret = strbuf_addstr(events, tool_pmu__event_to_str(i));
656 				RETURN_IF_NON_ZERO(ret);
657 			}
658 		}
659 	}
660 
661 	return ret;
662 #undef RETURN_IF_NON_ZERO
663 }
664 
arch_get_runtimeparam(const struct pmu_metric * pm __maybe_unused)665 int __weak arch_get_runtimeparam(const struct pmu_metric *pm __maybe_unused)
666 {
667 	return 1;
668 }
669 
670 /*
671  * A singly linked list on the stack of the names of metrics being
672  * processed. Used to identify recursion.
673  */
674 struct visited_metric {
675 	const char *name;
676 	const struct visited_metric *parent;
677 };
678 
679 struct metricgroup_add_iter_data {
680 	struct list_head *metric_list;
681 	const char *pmu;
682 	const char *metric_name;
683 	const char *modifier;
684 	int *ret;
685 	bool *has_match;
686 	bool metric_no_group;
687 	bool metric_no_threshold;
688 	const char *user_requested_cpu_list;
689 	bool system_wide;
690 	struct metric *root_metric;
691 	const struct visited_metric *visited;
692 	const struct pmu_metrics_table *table;
693 };
694 
695 static int add_metric(struct list_head *metric_list,
696 		      const struct pmu_metric *pm,
697 		      const char *modifier,
698 		      bool metric_no_group,
699 		      bool metric_no_threshold,
700 		      const char *user_requested_cpu_list,
701 		      bool system_wide,
702 		      struct metric *root_metric,
703 		      const struct visited_metric *visited,
704 		      const struct pmu_metrics_table *table);
705 
metricgroup__find_metric_callback(const struct pmu_metric * pm,const struct pmu_metrics_table * table __maybe_unused,void * vdata)706 static int metricgroup__find_metric_callback(const struct pmu_metric *pm,
707 					     const struct pmu_metrics_table *table  __maybe_unused,
708 					     void *vdata)
709 {
710 	struct pmu_metric *copied_pm = vdata;
711 
712 	memcpy(copied_pm, pm, sizeof(*pm));
713 	return 0;
714 }
715 
716 /**
717  * resolve_metric - Locate metrics within the root metric and recursively add
718  *                    references to them.
719  * @metric_list: The list the metric is added to.
720  * @pmu: The PMU name to resolve metrics on, or "all" for all PMUs.
721  * @modifier: if non-null event modifiers like "u".
722  * @metric_no_group: Should events written to events be grouped "{}" or
723  *                   global. Grouping is the default but due to multiplexing the
724  *                   user may override.
725  * @user_requested_cpu_list: Command line specified CPUs to record on.
726  * @system_wide: Are events for all processes recorded.
727  * @root_metric: Metrics may reference other metrics to form a tree. In this
728  *               case the root_metric holds all the IDs and a list of referenced
729  *               metrics. When adding a root this argument is NULL.
730  * @visited: A singly linked list of metric names being added that is used to
731  *           detect recursion.
732  * @table: The table that is searched for metrics, most commonly the table for the
733  *       architecture perf is running upon.
734  */
resolve_metric(struct list_head * metric_list,struct perf_pmu * pmu,const char * modifier,bool metric_no_group,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,struct metric * root_metric,const struct visited_metric * visited,const struct pmu_metrics_table * table)735 static int resolve_metric(struct list_head *metric_list,
736 			  struct perf_pmu *pmu,
737 			  const char *modifier,
738 			  bool metric_no_group,
739 			  bool metric_no_threshold,
740 			  const char *user_requested_cpu_list,
741 			  bool system_wide,
742 			  struct metric *root_metric,
743 			  const struct visited_metric *visited,
744 			  const struct pmu_metrics_table *table)
745 {
746 	struct hashmap_entry *cur;
747 	size_t bkt;
748 	struct to_resolve {
749 		/* The metric to resolve. */
750 		struct pmu_metric pm;
751 		/*
752 		 * The key in the IDs map, this may differ from in case,
753 		 * etc. from pm->metric_name.
754 		 */
755 		const char *key;
756 	} *pending = NULL;
757 	int i, ret = 0, pending_cnt = 0;
758 
759 	/*
760 	 * Iterate all the parsed IDs and if there's a matching metric and it to
761 	 * the pending array.
762 	 */
763 	hashmap__for_each_entry(root_metric->pctx->ids, cur, bkt) {
764 		struct pmu_metric pm;
765 
766 		if (pmu_metrics_table__find_metric(table, pmu, cur->pkey,
767 						   metricgroup__find_metric_callback,
768 						   &pm) != PMU_METRICS__NOT_FOUND) {
769 			pending = realloc(pending,
770 					(pending_cnt + 1) * sizeof(struct to_resolve));
771 			if (!pending)
772 				return -ENOMEM;
773 
774 			memcpy(&pending[pending_cnt].pm, &pm, sizeof(pm));
775 			pending[pending_cnt].key = cur->pkey;
776 			pending_cnt++;
777 		}
778 	}
779 
780 	/* Remove the metric IDs from the context. */
781 	for (i = 0; i < pending_cnt; i++)
782 		expr__del_id(root_metric->pctx, pending[i].key);
783 
784 	/*
785 	 * Recursively add all the metrics, IDs are added to the root metric's
786 	 * context.
787 	 */
788 	for (i = 0; i < pending_cnt; i++) {
789 		ret = add_metric(metric_list, &pending[i].pm, modifier, metric_no_group,
790 				 metric_no_threshold, user_requested_cpu_list, system_wide,
791 				 root_metric, visited, table);
792 		if (ret)
793 			break;
794 	}
795 
796 	free(pending);
797 	return ret;
798 }
799 
800 /**
801  * __add_metric - Add a metric to metric_list.
802  * @metric_list: The list the metric is added to.
803  * @pm: The pmu_metric containing the metric to be added.
804  * @modifier: if non-null event modifiers like "u".
805  * @metric_no_group: Should events written to events be grouped "{}" or
806  *                   global. Grouping is the default but due to multiplexing the
807  *                   user may override.
808  * @metric_no_threshold: Should threshold expressions be ignored?
809  * @runtime: A special argument for the parser only known at runtime.
810  * @user_requested_cpu_list: Command line specified CPUs to record on.
811  * @system_wide: Are events for all processes recorded.
812  * @root_metric: Metrics may reference other metrics to form a tree. In this
813  *               case the root_metric holds all the IDs and a list of referenced
814  *               metrics. When adding a root this argument is NULL.
815  * @visited: A singly linked list of metric names being added that is used to
816  *           detect recursion.
817  * @table: The table that is searched for metrics, most commonly the table for the
818  *       architecture perf is running upon.
819  */
__add_metric(struct list_head * metric_list,const struct pmu_metric * pm,const char * modifier,bool metric_no_group,bool metric_no_threshold,int runtime,const char * user_requested_cpu_list,bool system_wide,struct metric * root_metric,const struct visited_metric * visited,const struct pmu_metrics_table * table)820 static int __add_metric(struct list_head *metric_list,
821 			const struct pmu_metric *pm,
822 			const char *modifier,
823 			bool metric_no_group,
824 			bool metric_no_threshold,
825 			int runtime,
826 			const char *user_requested_cpu_list,
827 			bool system_wide,
828 			struct metric *root_metric,
829 			const struct visited_metric *visited,
830 			const struct pmu_metrics_table *table)
831 {
832 	const struct visited_metric *vm;
833 	int ret;
834 	bool is_root = !root_metric;
835 	const char *expr;
836 	struct visited_metric visited_node = {
837 		.name = pm->metric_name,
838 		.parent = visited,
839 	};
840 
841 	for (vm = visited; vm; vm = vm->parent) {
842 		if (!strcmp(pm->metric_name, vm->name)) {
843 			pr_err("failed: recursion detected for %s\n", pm->metric_name);
844 			return -1;
845 		}
846 	}
847 
848 	if (is_root) {
849 		/*
850 		 * This metric is the root of a tree and may reference other
851 		 * metrics that are added recursively.
852 		 */
853 		root_metric = metric__new(pm, modifier, metric_no_group, metric_no_threshold,
854 					  runtime, user_requested_cpu_list, system_wide);
855 		if (!root_metric)
856 			return -ENOMEM;
857 
858 	} else {
859 		int cnt = 0;
860 
861 		/*
862 		 * This metric was referenced in a metric higher in the
863 		 * tree. Check if the same metric is already resolved in the
864 		 * metric_refs list.
865 		 */
866 		if (root_metric->metric_refs) {
867 			for (; root_metric->metric_refs[cnt].metric_name; cnt++) {
868 				if (!strcmp(pm->metric_name,
869 					    root_metric->metric_refs[cnt].metric_name))
870 					return 0;
871 			}
872 		}
873 
874 		/* Create reference. Need space for the entry and the terminator. */
875 		root_metric->metric_refs = realloc(root_metric->metric_refs,
876 						(cnt + 2) * sizeof(struct metric_ref));
877 		if (!root_metric->metric_refs)
878 			return -ENOMEM;
879 
880 		/*
881 		 * Intentionally passing just const char pointers,
882 		 * from 'pe' object, so they never go away. We don't
883 		 * need to change them, so there's no need to create
884 		 * our own copy.
885 		 */
886 		root_metric->metric_refs[cnt].metric_name = pm->metric_name;
887 		root_metric->metric_refs[cnt].metric_expr = pm->metric_expr;
888 
889 		/* Null terminate array. */
890 		root_metric->metric_refs[cnt+1].metric_name = NULL;
891 		root_metric->metric_refs[cnt+1].metric_expr = NULL;
892 	}
893 
894 	/*
895 	 * For both the parent and referenced metrics, we parse
896 	 * all the metric's IDs and add it to the root context.
897 	 */
898 	ret = 0;
899 	expr = pm->metric_expr;
900 	if (is_root && pm->metric_threshold) {
901 		/*
902 		 * Threshold expressions are built off the actual metric. Switch
903 		 * to use that in case of additional necessary events. Change
904 		 * the visited node name to avoid this being flagged as
905 		 * recursion. If the threshold events are disabled, just use the
906 		 * metric's name as a reference. This allows metric threshold
907 		 * computation if there are sufficient events.
908 		 */
909 		assert(strstr(pm->metric_threshold, pm->metric_name));
910 		expr = metric_no_threshold ? pm->metric_name : pm->metric_threshold;
911 		visited_node.name = "__threshold__";
912 	}
913 	if (expr__find_ids(expr, NULL, root_metric->pctx) < 0) {
914 		/* Broken metric. */
915 		ret = -EINVAL;
916 	}
917 	if (!ret) {
918 		/* Resolve referenced metrics. */
919 		struct perf_pmu *pmu;
920 
921 		if (pm->pmu && pm->pmu[0] != '\0')
922 			pmu = perf_pmus__find(pm->pmu);
923 		else
924 			pmu = perf_pmus__scan_core(/*pmu=*/ NULL);
925 
926 		ret = resolve_metric(metric_list, pmu, modifier, metric_no_group,
927 				     metric_no_threshold, user_requested_cpu_list,
928 				     system_wide, root_metric, &visited_node,
929 				     table);
930 	}
931 	if (ret) {
932 		if (is_root)
933 			metric__free(root_metric);
934 
935 	} else if (is_root)
936 		list_add(&root_metric->nd, metric_list);
937 
938 	return ret;
939 }
940 
add_metric(struct list_head * metric_list,const struct pmu_metric * pm,const char * modifier,bool metric_no_group,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,struct metric * root_metric,const struct visited_metric * visited,const struct pmu_metrics_table * table)941 static int add_metric(struct list_head *metric_list,
942 		      const struct pmu_metric *pm,
943 		      const char *modifier,
944 		      bool metric_no_group,
945 		      bool metric_no_threshold,
946 		      const char *user_requested_cpu_list,
947 		      bool system_wide,
948 		      struct metric *root_metric,
949 		      const struct visited_metric *visited,
950 		      const struct pmu_metrics_table *table)
951 {
952 	int ret = 0;
953 
954 	pr_debug("metric expr %s for %s\n", pm->metric_expr, pm->metric_name);
955 
956 	if (!strstr(pm->metric_expr, "?")) {
957 		ret = __add_metric(metric_list, pm, modifier, metric_no_group,
958 				   metric_no_threshold, 0, user_requested_cpu_list,
959 				   system_wide, root_metric, visited, table);
960 	} else {
961 		int j, count;
962 
963 		count = arch_get_runtimeparam(pm);
964 
965 		/* This loop is added to create multiple
966 		 * events depend on count value and add
967 		 * those events to metric_list.
968 		 */
969 
970 		for (j = 0; j < count && !ret; j++)
971 			ret = __add_metric(metric_list, pm, modifier, metric_no_group,
972 					   metric_no_threshold, j, user_requested_cpu_list,
973 					   system_wide, root_metric, visited, table);
974 	}
975 
976 	return ret;
977 }
978 
979 /**
980  * metric_list_cmp - list_sort comparator that sorts metrics with more events to
981  *                   the front. tool events are excluded from the count.
982  */
metric_list_cmp(void * priv __maybe_unused,const struct list_head * l,const struct list_head * r)983 static int metric_list_cmp(void *priv __maybe_unused, const struct list_head *l,
984 			   const struct list_head *r)
985 {
986 	const struct metric *left = container_of(l, struct metric, nd);
987 	const struct metric *right = container_of(r, struct metric, nd);
988 	struct expr_id_data *data;
989 	int i, left_count, right_count;
990 
991 	left_count = hashmap__size(left->pctx->ids);
992 	tool_pmu__for_each_event(i) {
993 		if (!expr__get_id(left->pctx, tool_pmu__event_to_str(i), &data))
994 			left_count--;
995 	}
996 
997 	right_count = hashmap__size(right->pctx->ids);
998 	tool_pmu__for_each_event(i) {
999 		if (!expr__get_id(right->pctx, tool_pmu__event_to_str(i), &data))
1000 			right_count--;
1001 	}
1002 
1003 	return right_count - left_count;
1004 }
1005 
1006 /**
1007  * default_metricgroup_cmp - Implements complex key for the Default metricgroup
1008  *			     that first sorts by default_metricgroup_name, then
1009  *			     metric_name.
1010  */
default_metricgroup_cmp(void * priv __maybe_unused,const struct list_head * l,const struct list_head * r)1011 static int default_metricgroup_cmp(void *priv __maybe_unused,
1012 				   const struct list_head *l,
1013 				   const struct list_head *r)
1014 {
1015 	const struct metric *left = container_of(l, struct metric, nd);
1016 	const struct metric *right = container_of(r, struct metric, nd);
1017 	int diff = strcmp(right->default_metricgroup_name, left->default_metricgroup_name);
1018 
1019 	if (diff)
1020 		return diff;
1021 
1022 	return strcmp(right->metric_name, left->metric_name);
1023 }
1024 
1025 struct metricgroup__add_metric_data {
1026 	struct list_head *list;
1027 	const char *pmu;
1028 	const char *metric_name;
1029 	const char *modifier;
1030 	const char *user_requested_cpu_list;
1031 	bool metric_no_group;
1032 	bool metric_no_threshold;
1033 	bool system_wide;
1034 	bool has_match;
1035 };
1036 
metricgroup__add_metric_callback(const struct pmu_metric * pm,const struct pmu_metrics_table * table,void * vdata)1037 static int metricgroup__add_metric_callback(const struct pmu_metric *pm,
1038 					    const struct pmu_metrics_table *table,
1039 					    void *vdata)
1040 {
1041 	struct metricgroup__add_metric_data *data = vdata;
1042 	int ret = 0;
1043 
1044 	if (pm->metric_expr && match_pm_metric_or_groups(pm, data->pmu, data->metric_name)) {
1045 		bool metric_no_group = data->metric_no_group ||
1046 			match_metric_or_groups(pm->metricgroup_no_group, data->metric_name);
1047 
1048 		data->has_match = true;
1049 		ret = add_metric(data->list, pm, data->modifier, metric_no_group,
1050 				 data->metric_no_threshold, data->user_requested_cpu_list,
1051 				 data->system_wide, /*root_metric=*/NULL,
1052 				 /*visited_metrics=*/NULL, table);
1053 	}
1054 	return ret;
1055 }
1056 
1057 /**
1058  * metricgroup__add_metric - Find and add a metric, or a metric group.
1059  * @pmu: The PMU name to search for metrics on, or "all" for all PMUs.
1060  * @metric_name: The name of the metric or metric group. For example, "IPC"
1061  *               could be the name of a metric and "TopDownL1" the name of a
1062  *               metric group.
1063  * @modifier: if non-null event modifiers like "u".
1064  * @metric_no_group: Should events written to events be grouped "{}" or
1065  *                   global. Grouping is the default but due to multiplexing the
1066  *                   user may override.
1067  * @user_requested_cpu_list: Command line specified CPUs to record on.
1068  * @system_wide: Are events for all processes recorded.
1069  * @metric_list: The list that the metric or metric group are added to.
1070  * @table: The table that is searched for metrics, most commonly the table for the
1071  *       architecture perf is running upon.
1072  */
metricgroup__add_metric(const char * pmu,const char * metric_name,const char * modifier,bool metric_no_group,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,struct list_head * metric_list,const struct pmu_metrics_table * table)1073 static int metricgroup__add_metric(const char *pmu, const char *metric_name, const char *modifier,
1074 				   bool metric_no_group, bool metric_no_threshold,
1075 				   const char *user_requested_cpu_list,
1076 				   bool system_wide,
1077 				   struct list_head *metric_list,
1078 				   const struct pmu_metrics_table *table)
1079 {
1080 	LIST_HEAD(list);
1081 	int ret;
1082 	struct metricgroup__add_metric_data data = {
1083 		.list = &list,
1084 		.pmu = pmu,
1085 		.metric_name = metric_name,
1086 		.modifier = modifier,
1087 		.metric_no_group = metric_no_group,
1088 		.metric_no_threshold = metric_no_threshold,
1089 		.user_requested_cpu_list = user_requested_cpu_list,
1090 		.system_wide = system_wide,
1091 		.has_match = false,
1092 	};
1093 
1094 	/*
1095 	 * Iterate over all metrics seeing if metric matches either the
1096 	 * name or group. When it does add the metric to the list.
1097 	 */
1098 	ret = metricgroup__for_each_metric(table, metricgroup__add_metric_callback, &data);
1099 	if (!ret && !data.has_match)
1100 		ret = -EINVAL;
1101 
1102 	/*
1103 	 * add to metric_list so that they can be released
1104 	 * even if it's failed
1105 	 */
1106 	list_splice(&list, metric_list);
1107 	return ret;
1108 }
1109 
1110 /**
1111  * metricgroup__add_metric_list - Find and add metrics, or metric groups,
1112  *                                specified in a list.
1113  * @pmu: A pmu to restrict the metrics to, or "all" for all PMUS.
1114  * @list: the list of metrics or metric groups. For example, "IPC,CPI,TopDownL1"
1115  *        would match the IPC and CPI metrics, and TopDownL1 would match all
1116  *        the metrics in the TopDownL1 group.
1117  * @metric_no_group: Should events written to events be grouped "{}" or
1118  *                   global. Grouping is the default but due to multiplexing the
1119  *                   user may override.
1120  * @user_requested_cpu_list: Command line specified CPUs to record on.
1121  * @system_wide: Are events for all processes recorded.
1122  * @metric_list: The list that metrics are added to.
1123  * @table: The table that is searched for metrics, most commonly the table for the
1124  *       architecture perf is running upon.
1125  */
metricgroup__add_metric_list(const char * pmu,const char * list,bool metric_no_group,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,struct list_head * metric_list,const struct pmu_metrics_table * table)1126 static int metricgroup__add_metric_list(const char *pmu, const char *list,
1127 					bool metric_no_group,
1128 					bool metric_no_threshold,
1129 					const char *user_requested_cpu_list,
1130 					bool system_wide, struct list_head *metric_list,
1131 					const struct pmu_metrics_table *table)
1132 {
1133 	char *list_itr, *list_copy, *metric_name, *modifier;
1134 	int ret, count = 0;
1135 
1136 	list_copy = strdup(list);
1137 	if (!list_copy)
1138 		return -ENOMEM;
1139 	list_itr = list_copy;
1140 
1141 	while ((metric_name = strsep(&list_itr, ",")) != NULL) {
1142 		modifier = strchr(metric_name, ':');
1143 		if (modifier)
1144 			*modifier++ = '\0';
1145 
1146 		ret = metricgroup__add_metric(pmu, metric_name, modifier,
1147 					      metric_no_group, metric_no_threshold,
1148 					      user_requested_cpu_list,
1149 					      system_wide, metric_list, table);
1150 		if (ret == -EINVAL)
1151 			pr_err("Cannot find metric or group `%s'\n", metric_name);
1152 
1153 		if (ret)
1154 			break;
1155 
1156 		count++;
1157 	}
1158 	free(list_copy);
1159 
1160 	if (!ret) {
1161 		/*
1162 		 * Warn about nmi_watchdog if any parsed metrics had the
1163 		 * NO_NMI_WATCHDOG constraint.
1164 		 */
1165 		metric__watchdog_constraint_hint(NULL, /*foot=*/true);
1166 		/* No metrics. */
1167 		if (count == 0)
1168 			return -EINVAL;
1169 	}
1170 	return ret;
1171 }
1172 
metricgroup__free_metrics(struct list_head * metric_list)1173 static void metricgroup__free_metrics(struct list_head *metric_list)
1174 {
1175 	struct metric *m, *tmp;
1176 
1177 	list_for_each_entry_safe (m, tmp, metric_list, nd) {
1178 		list_del_init(&m->nd);
1179 		metric__free(m);
1180 	}
1181 }
1182 
1183 /**
1184  * find_tool_events - Search for the pressence of tool events in metric_list.
1185  * @metric_list: List to take metrics from.
1186  * @tool_events: Array of false values, indices corresponding to tool events set
1187  *               to true if tool event is found.
1188  */
find_tool_events(const struct list_head * metric_list,bool tool_events[TOOL_PMU__EVENT_MAX])1189 static void find_tool_events(const struct list_head *metric_list,
1190 			     bool tool_events[TOOL_PMU__EVENT_MAX])
1191 {
1192 	struct metric *m;
1193 
1194 	list_for_each_entry(m, metric_list, nd) {
1195 		int i;
1196 
1197 		tool_pmu__for_each_event(i) {
1198 			struct expr_id_data *data;
1199 
1200 			if (!tool_events[i] &&
1201 			    !expr__get_id(m->pctx, tool_pmu__event_to_str(i), &data))
1202 				tool_events[i] = true;
1203 		}
1204 	}
1205 }
1206 
1207 /**
1208  * build_combined_expr_ctx - Make an expr_parse_ctx with all !group_events
1209  *                           metric IDs, as the IDs are held in a set,
1210  *                           duplicates will be removed.
1211  * @metric_list: List to take metrics from.
1212  * @combined: Out argument for result.
1213  */
build_combined_expr_ctx(const struct list_head * metric_list,struct expr_parse_ctx ** combined)1214 static int build_combined_expr_ctx(const struct list_head *metric_list,
1215 				   struct expr_parse_ctx **combined)
1216 {
1217 	struct hashmap_entry *cur;
1218 	size_t bkt;
1219 	struct metric *m;
1220 	char *dup;
1221 	int ret;
1222 
1223 	*combined = expr__ctx_new();
1224 	if (!*combined)
1225 		return -ENOMEM;
1226 
1227 	list_for_each_entry(m, metric_list, nd) {
1228 		if (!m->group_events && !m->modifier) {
1229 			hashmap__for_each_entry(m->pctx->ids, cur, bkt) {
1230 				dup = strdup(cur->pkey);
1231 				if (!dup) {
1232 					ret = -ENOMEM;
1233 					goto err_out;
1234 				}
1235 				ret = expr__add_id(*combined, dup);
1236 				if (ret)
1237 					goto err_out;
1238 			}
1239 		}
1240 	}
1241 	return 0;
1242 err_out:
1243 	expr__ctx_free(*combined);
1244 	*combined = NULL;
1245 	return ret;
1246 }
1247 
1248 /**
1249  * parse_ids - Build the event string for the ids and parse them creating an
1250  *             evlist. The encoded metric_ids are decoded.
1251  * @metric_no_merge: is metric sharing explicitly disabled.
1252  * @fake_pmu: use a fake PMU when testing metrics not supported by the current CPU.
1253  * @ids: the event identifiers parsed from a metric.
1254  * @modifier: any modifiers added to the events.
1255  * @group_events: should events be placed in a weak group.
1256  * @tool_events: entries set true if the tool event of index could be present in
1257  *               the overall list of metrics.
1258  * @out_evlist: the created list of events.
1259  */
parse_ids(bool metric_no_merge,bool fake_pmu,struct expr_parse_ctx * ids,const char * modifier,bool group_events,const bool tool_events[TOOL_PMU__EVENT_MAX],struct evlist ** out_evlist)1260 static int parse_ids(bool metric_no_merge, bool fake_pmu,
1261 		     struct expr_parse_ctx *ids, const char *modifier,
1262 		     bool group_events, const bool tool_events[TOOL_PMU__EVENT_MAX],
1263 		     struct evlist **out_evlist)
1264 {
1265 	struct parse_events_error parse_error;
1266 	struct evlist *parsed_evlist;
1267 	struct strbuf events = STRBUF_INIT;
1268 	int ret;
1269 
1270 	*out_evlist = NULL;
1271 	if (!metric_no_merge || hashmap__size(ids->ids) == 0) {
1272 		bool added_event = false;
1273 		int i;
1274 		/*
1275 		 * We may fail to share events between metrics because a tool
1276 		 * event isn't present in one metric. For example, a ratio of
1277 		 * cache misses doesn't need duration_time but the same events
1278 		 * may be used for a misses per second. Events without sharing
1279 		 * implies multiplexing, that is best avoided, so place
1280 		 * all tool events in every group.
1281 		 *
1282 		 * Also, there may be no ids/events in the expression parsing
1283 		 * context because of constant evaluation, e.g.:
1284 		 *    event1 if #smt_on else 0
1285 		 * Add a tool event to avoid a parse error on an empty string.
1286 		 */
1287 		tool_pmu__for_each_event(i) {
1288 			if (tool_events[i]) {
1289 				char *tmp = strdup(tool_pmu__event_to_str(i));
1290 
1291 				if (!tmp)
1292 					return -ENOMEM;
1293 				ids__insert(ids->ids, tmp);
1294 				added_event = true;
1295 			}
1296 		}
1297 		if (!added_event && hashmap__size(ids->ids) == 0) {
1298 			char *tmp = strdup("duration_time");
1299 
1300 			if (!tmp)
1301 				return -ENOMEM;
1302 			ids__insert(ids->ids, tmp);
1303 		}
1304 	}
1305 	ret = metricgroup__build_event_string(&events, ids, modifier,
1306 					      group_events);
1307 	if (ret)
1308 		return ret;
1309 
1310 	parsed_evlist = evlist__new();
1311 	if (!parsed_evlist) {
1312 		ret = -ENOMEM;
1313 		goto err_out;
1314 	}
1315 	pr_debug("Parsing metric events '%s'\n", events.buf);
1316 	parse_events_error__init(&parse_error);
1317 	ret = __parse_events(parsed_evlist, events.buf, /*pmu_filter=*/NULL,
1318 			     &parse_error, fake_pmu, /*warn_if_reordered=*/false,
1319 			     /*fake_tp=*/false);
1320 	if (ret) {
1321 		parse_events_error__print(&parse_error, events.buf);
1322 		goto err_out;
1323 	}
1324 	ret = decode_all_metric_ids(parsed_evlist, modifier);
1325 	if (ret)
1326 		goto err_out;
1327 
1328 	*out_evlist = parsed_evlist;
1329 	parsed_evlist = NULL;
1330 err_out:
1331 	parse_events_error__exit(&parse_error);
1332 	evlist__delete(parsed_evlist);
1333 	strbuf_release(&events);
1334 	return ret;
1335 }
1336 
1337 /* How many times will a given evsel be used in a set of metrics? */
count_uses(struct list_head * metric_list,struct evsel * evsel)1338 static int count_uses(struct list_head *metric_list, struct evsel *evsel)
1339 {
1340 	const char *metric_id = evsel__metric_id(evsel);
1341 	struct metric *m;
1342 	int uses = 0;
1343 
1344 	list_for_each_entry(m, metric_list, nd) {
1345 		if (hashmap__find(m->pctx->ids, metric_id, NULL))
1346 			uses++;
1347 	}
1348 	return uses;
1349 }
1350 
1351 /*
1352  * Select the evsel that stat-display will use to trigger shadow/metric
1353  * printing. Pick the least shared non-tool evsel, encouraging metrics to be
1354  * with a hardware counter that is specific to them.
1355  */
pick_display_evsel(struct list_head * metric_list,struct evsel ** metric_events)1356 static struct evsel *pick_display_evsel(struct list_head *metric_list,
1357 					struct evsel **metric_events)
1358 {
1359 	struct evsel *selected = metric_events[0];
1360 	size_t selected_uses;
1361 	bool selected_is_tool;
1362 
1363 	if (!selected)
1364 		return NULL;
1365 
1366 	selected_uses = count_uses(metric_list, selected);
1367 	selected_is_tool = evsel__is_tool(selected);
1368 	for (int i = 1; metric_events[i]; i++) {
1369 		struct evsel *candidate = metric_events[i];
1370 		size_t candidate_uses = count_uses(metric_list, candidate);
1371 
1372 		if ((selected_is_tool && !evsel__is_tool(candidate)) ||
1373 		    (candidate_uses < selected_uses)) {
1374 			selected = candidate;
1375 			selected_uses = candidate_uses;
1376 			selected_is_tool = evsel__is_tool(selected);
1377 		}
1378 	}
1379 	return selected;
1380 }
1381 
parse_groups(struct evlist * perf_evlist,const char * pmu,const char * str,bool metric_no_group,bool metric_no_merge,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,bool fake_pmu,const struct pmu_metrics_table * table)1382 static int parse_groups(struct evlist *perf_evlist,
1383 			const char *pmu, const char *str,
1384 			bool metric_no_group,
1385 			bool metric_no_merge,
1386 			bool metric_no_threshold,
1387 			const char *user_requested_cpu_list,
1388 			bool system_wide,
1389 			bool fake_pmu,
1390 			const struct pmu_metrics_table *table)
1391 {
1392 	struct evlist *combined_evlist = NULL;
1393 	LIST_HEAD(metric_list);
1394 	struct metric *m;
1395 	bool tool_events[TOOL_PMU__EVENT_MAX] = {false};
1396 	bool is_default = !strcmp(str, "Default");
1397 	int ret;
1398 
1399 	ret = metricgroup__add_metric_list(pmu, str, metric_no_group, metric_no_threshold,
1400 					   user_requested_cpu_list,
1401 					   system_wide, &metric_list, table);
1402 	if (ret)
1403 		goto out;
1404 
1405 	/* Sort metrics from largest to smallest. */
1406 	list_sort(NULL, &metric_list, metric_list_cmp);
1407 
1408 	if (!metric_no_merge) {
1409 		struct expr_parse_ctx *combined = NULL;
1410 
1411 		find_tool_events(&metric_list, tool_events);
1412 
1413 		ret = build_combined_expr_ctx(&metric_list, &combined);
1414 
1415 		if (!ret && combined && hashmap__size(combined->ids)) {
1416 			ret = parse_ids(metric_no_merge, fake_pmu, combined,
1417 					/*modifier=*/NULL,
1418 					/*group_events=*/false,
1419 					tool_events,
1420 					&combined_evlist);
1421 		}
1422 		if (combined)
1423 			expr__ctx_free(combined);
1424 
1425 		if (ret)
1426 			goto out;
1427 	}
1428 
1429 	if (is_default)
1430 		list_sort(NULL, &metric_list, default_metricgroup_cmp);
1431 
1432 	list_for_each_entry(m, &metric_list, nd) {
1433 		struct metric_event *me;
1434 		struct evsel **metric_events;
1435 		struct evlist *metric_evlist = NULL;
1436 		struct metric *n;
1437 		struct metric_expr *expr;
1438 
1439 		if (combined_evlist && !m->group_events) {
1440 			metric_evlist = combined_evlist;
1441 		} else if (!metric_no_merge) {
1442 			/*
1443 			 * See if the IDs for this metric are a subset of an
1444 			 * earlier metric.
1445 			 */
1446 			list_for_each_entry(n, &metric_list, nd) {
1447 				if (m == n)
1448 					break;
1449 
1450 				if (n->evlist == NULL)
1451 					continue;
1452 
1453 				if ((!m->modifier && n->modifier) ||
1454 				    (m->modifier && !n->modifier) ||
1455 				    (m->modifier && n->modifier &&
1456 					    strcmp(m->modifier, n->modifier)))
1457 					continue;
1458 
1459 				if ((!m->pmu && n->pmu) ||
1460 				    (m->pmu && !n->pmu) ||
1461 				    (m->pmu && n->pmu && strcmp(m->pmu, n->pmu)))
1462 					continue;
1463 
1464 				if (expr__subset_of_ids(n->pctx, m->pctx)) {
1465 					pr_debug("Events in '%s' fully contained within '%s'\n",
1466 						 m->metric_name, n->metric_name);
1467 					metric_evlist = n->evlist;
1468 					break;
1469 				}
1470 
1471 			}
1472 		}
1473 		if (!metric_evlist) {
1474 			ret = parse_ids(metric_no_merge, fake_pmu, m->pctx, m->modifier,
1475 					m->group_events, tool_events, &m->evlist);
1476 			if (ret)
1477 				goto out;
1478 
1479 			metric_evlist = m->evlist;
1480 		}
1481 		ret = setup_metric_events(fake_pmu ? "all" : m->pmu, m->pctx->ids,
1482 					  metric_evlist, &metric_events);
1483 		if (ret) {
1484 			pr_err("Cannot resolve IDs for %s: %s\n",
1485 				m->metric_name, m->metric_expr);
1486 			goto out;
1487 		}
1488 
1489 		me = metricgroup__lookup(&perf_evlist->metric_events,
1490 					 pick_display_evsel(&metric_list, metric_events),
1491 					 /*create=*/true);
1492 
1493 		expr = malloc(sizeof(struct metric_expr));
1494 		if (!expr) {
1495 			ret = -ENOMEM;
1496 			free(metric_events);
1497 			goto out;
1498 		}
1499 
1500 		expr->metric_refs = m->metric_refs;
1501 		m->metric_refs = NULL;
1502 		expr->metric_expr = m->metric_expr;
1503 		if (m->modifier) {
1504 			char *tmp;
1505 
1506 			if (asprintf(&tmp, "%s:%s", m->metric_name, m->modifier) < 0)
1507 				expr->metric_name = NULL;
1508 			else
1509 				expr->metric_name = tmp;
1510 		} else
1511 			expr->metric_name = strdup(m->metric_name);
1512 
1513 		if (!expr->metric_name) {
1514 			ret = -ENOMEM;
1515 			free(expr);
1516 			free(metric_events);
1517 			goto out;
1518 		}
1519 		if (m->default_show_events) {
1520 			struct evsel *pos;
1521 
1522 			for (int i = 0; metric_events[i]; i++)
1523 				metric_events[i]->default_show_events = true;
1524 			evlist__for_each_entry(metric_evlist, pos) {
1525 				if (pos->metric_leader && pos->metric_leader->default_show_events)
1526 					pos->default_show_events = true;
1527 			}
1528 		}
1529 		expr->metric_threshold = m->metric_threshold;
1530 		expr->metric_unit = m->metric_unit;
1531 		expr->metric_events = metric_events;
1532 		expr->runtime = m->pctx->sctx.runtime;
1533 		expr->default_metricgroup_name = m->default_metricgroup_name;
1534 		me->is_default = is_default;
1535 		list_add(&expr->nd, &me->head);
1536 	}
1537 
1538 
1539 	if (combined_evlist) {
1540 		evlist__splice_list_tail(perf_evlist, &combined_evlist->core.entries);
1541 		evlist__delete(combined_evlist);
1542 	}
1543 
1544 	list_for_each_entry(m, &metric_list, nd) {
1545 		if (m->evlist)
1546 			evlist__splice_list_tail(perf_evlist, &m->evlist->core.entries);
1547 	}
1548 
1549 out:
1550 	metricgroup__free_metrics(&metric_list);
1551 	return ret;
1552 }
1553 
metricgroup__parse_groups(struct evlist * perf_evlist,const char * pmu,const char * str,bool metric_no_group,bool metric_no_merge,bool metric_no_threshold,const char * user_requested_cpu_list,bool system_wide,bool hardware_aware_grouping)1554 int metricgroup__parse_groups(struct evlist *perf_evlist,
1555 			      const char *pmu,
1556 			      const char *str,
1557 			      bool metric_no_group,
1558 			      bool metric_no_merge,
1559 			      bool metric_no_threshold,
1560 			      const char *user_requested_cpu_list,
1561 			      bool system_wide,
1562 			      bool hardware_aware_grouping)
1563 {
1564 	const struct pmu_metrics_table *table = pmu_metrics_table__find();
1565 
1566 	if (!table)
1567 		return -EINVAL;
1568 	if (hardware_aware_grouping)
1569 		pr_debug("Use hardware aware grouping instead of traditional metric grouping method\n");
1570 
1571 	return parse_groups(perf_evlist, pmu, str, metric_no_group, metric_no_merge,
1572 			    metric_no_threshold, user_requested_cpu_list, system_wide,
1573 			    /*fake_pmu=*/false, table);
1574 }
1575 
metricgroup__parse_groups_test(struct evlist * evlist,const struct pmu_metrics_table * table,const char * str)1576 int metricgroup__parse_groups_test(struct evlist *evlist,
1577 				   const struct pmu_metrics_table *table,
1578 				   const char *str)
1579 {
1580 	return parse_groups(evlist, "all", str,
1581 			    /*metric_no_group=*/false,
1582 			    /*metric_no_merge=*/false,
1583 			    /*metric_no_threshold=*/false,
1584 			    /*user_requested_cpu_list=*/NULL,
1585 			    /*system_wide=*/false,
1586 			    /*fake_pmu=*/true, table);
1587 }
1588 
1589 struct metricgroup__has_metric_data {
1590 	const char *pmu;
1591 	const char *metric_or_groups;
1592 };
metricgroup__has_metric_or_groups_callback(const struct pmu_metric * pm,const struct pmu_metrics_table * table __maybe_unused,void * vdata)1593 static int metricgroup__has_metric_or_groups_callback(const struct pmu_metric *pm,
1594 						      const struct pmu_metrics_table *table
1595 							__maybe_unused,
1596 						      void *vdata)
1597 {
1598 	struct metricgroup__has_metric_data *data = vdata;
1599 
1600 	return match_pm_metric_or_groups(pm, data->pmu, data->metric_or_groups) ? 1 : 0;
1601 }
1602 
metricgroup__has_metric_or_groups(const char * pmu,const char * metric_or_groups)1603 bool metricgroup__has_metric_or_groups(const char *pmu, const char *metric_or_groups)
1604 {
1605 	const struct pmu_metrics_table *tables[2] = {
1606 		pmu_metrics_table__find(),
1607 		pmu_metrics_table__default(),
1608 	};
1609 	struct metricgroup__has_metric_data data = {
1610 		.pmu = pmu,
1611 		.metric_or_groups = metric_or_groups,
1612 	};
1613 
1614 	for (size_t i = 0; i < ARRAY_SIZE(tables); i++) {
1615 		if (pmu_metrics_table__for_each_metric(tables[i],
1616 							metricgroup__has_metric_or_groups_callback,
1617 							&data))
1618 			return true;
1619 	}
1620 	return false;
1621 }
1622 
metricgroup__topdown_max_level_callback(const struct pmu_metric * pm,const struct pmu_metrics_table * table __maybe_unused,void * data)1623 static int metricgroup__topdown_max_level_callback(const struct pmu_metric *pm,
1624 					    const struct pmu_metrics_table *table __maybe_unused,
1625 					    void *data)
1626 {
1627 	unsigned int *max_level = data;
1628 	unsigned int level;
1629 	const char *p = strstr(pm->metric_group ?: "", "TopdownL");
1630 
1631 	if (!p || p[8] == '\0')
1632 		return 0;
1633 
1634 	level = p[8] - '0';
1635 	if (level > *max_level)
1636 		*max_level = level;
1637 
1638 	return 0;
1639 }
1640 
metricgroups__topdown_max_level(void)1641 unsigned int metricgroups__topdown_max_level(void)
1642 {
1643 	unsigned int max_level = 0;
1644 	const struct pmu_metrics_table *table = pmu_metrics_table__find();
1645 
1646 	if (!table)
1647 		return false;
1648 
1649 	pmu_metrics_table__for_each_metric(table, metricgroup__topdown_max_level_callback,
1650 					  &max_level);
1651 	return max_level;
1652 }
1653 
metricgroup__copy_metric_events(struct evlist * evlist,struct cgroup * cgrp,struct rblist * new_metric_events,struct rblist * old_metric_events)1654 int metricgroup__copy_metric_events(struct evlist *evlist, struct cgroup *cgrp,
1655 				    struct rblist *new_metric_events,
1656 				    struct rblist *old_metric_events)
1657 {
1658 	unsigned int i;
1659 
1660 	for (i = 0; i < rblist__nr_entries(old_metric_events); i++) {
1661 		struct rb_node *nd;
1662 		struct metric_event *old_me, *new_me;
1663 		struct metric_expr *old_expr, *new_expr;
1664 		struct evsel *evsel;
1665 		size_t alloc_size;
1666 		int idx, nr;
1667 
1668 		nd = rblist__entry(old_metric_events, i);
1669 		old_me = container_of(nd, struct metric_event, nd);
1670 
1671 		evsel = evlist__find_evsel(evlist, old_me->evsel->core.idx);
1672 		if (!evsel)
1673 			return -EINVAL;
1674 		new_me = metricgroup__lookup(new_metric_events, evsel, /*create=*/true);
1675 		if (!new_me)
1676 			return -ENOMEM;
1677 
1678 		pr_debug("copying metric event for cgroup '%s': %s (idx=%d)\n",
1679 			 cgrp ? cgrp->name : "root", evsel->name, evsel->core.idx);
1680 
1681 		new_me->is_default = old_me->is_default;
1682 		list_for_each_entry(old_expr, &old_me->head, nd) {
1683 			new_expr = malloc(sizeof(*new_expr));
1684 			if (!new_expr)
1685 				return -ENOMEM;
1686 
1687 			new_expr->metric_expr = old_expr->metric_expr;
1688 			new_expr->metric_threshold = old_expr->metric_threshold;
1689 			new_expr->metric_name = strdup(old_expr->metric_name);
1690 			if (!new_expr->metric_name)
1691 				return -ENOMEM;
1692 
1693 			new_expr->metric_unit = old_expr->metric_unit;
1694 			new_expr->runtime = old_expr->runtime;
1695 			new_expr->default_metricgroup_name = old_expr->default_metricgroup_name;
1696 
1697 			if (old_expr->metric_refs) {
1698 				/* calculate number of metric_events */
1699 				for (nr = 0; old_expr->metric_refs[nr].metric_name; nr++)
1700 					continue;
1701 				alloc_size = sizeof(*new_expr->metric_refs);
1702 				new_expr->metric_refs = calloc(nr + 1, alloc_size);
1703 				if (!new_expr->metric_refs) {
1704 					free(new_expr);
1705 					return -ENOMEM;
1706 				}
1707 
1708 				memcpy(new_expr->metric_refs, old_expr->metric_refs,
1709 				       nr * alloc_size);
1710 			} else {
1711 				new_expr->metric_refs = NULL;
1712 			}
1713 
1714 			/* calculate number of metric_events */
1715 			for (nr = 0; old_expr->metric_events[nr]; nr++)
1716 				continue;
1717 			alloc_size = sizeof(*new_expr->metric_events);
1718 			new_expr->metric_events = calloc(nr + 1, alloc_size);
1719 			if (!new_expr->metric_events) {
1720 				zfree(&new_expr->metric_refs);
1721 				free(new_expr);
1722 				return -ENOMEM;
1723 			}
1724 
1725 			/* copy evsel in the same position */
1726 			for (idx = 0; idx < nr; idx++) {
1727 				evsel = old_expr->metric_events[idx];
1728 				evsel = evlist__find_evsel(evlist, evsel->core.idx);
1729 				if (evsel == NULL) {
1730 					zfree(&new_expr->metric_events);
1731 					zfree(&new_expr->metric_refs);
1732 					free(new_expr);
1733 					return -EINVAL;
1734 				}
1735 				new_expr->metric_events[idx] = evsel;
1736 			}
1737 
1738 			list_add(&new_expr->nd, &new_me->head);
1739 		}
1740 	}
1741 	return 0;
1742 }
1743