1 // SPDX-License-Identifier: GPL-2.0
2 #include <math.h>
3 #include <stdio.h>
4 #include "evsel.h"
5 #include "stat.h"
6 #include "color.h"
7 #include "debug.h"
8 #include "pmu.h"
9 #include "rblist.h"
10 #include "evlist.h"
11 #include "expr.h"
12 #include "metricgroup.h"
13 #include "cgroup.h"
14 #include "units.h"
15 #include <linux/zalloc.h>
16 #include "iostat.h"
17 #include "util/hashmap.h"
18 #include "tool_pmu.h"
19 
20 struct stats walltime_nsecs_stats;
21 struct rusage_stats ru_stats;
22 
23 enum {
24 	CTX_BIT_USER	= 1 << 0,
25 	CTX_BIT_KERNEL	= 1 << 1,
26 	CTX_BIT_HV	= 1 << 2,
27 	CTX_BIT_HOST	= 1 << 3,
28 	CTX_BIT_IDLE	= 1 << 4,
29 	CTX_BIT_MAX	= 1 << 5,
30 };
31 
32 enum stat_type {
33 	STAT_NONE = 0,
34 	STAT_NSECS,
35 	STAT_CYCLES,
36 	STAT_INSTRUCTIONS,
37 	STAT_STALLED_CYCLES_FRONT,
38 	STAT_STALLED_CYCLES_BACK,
39 	STAT_BRANCHES,
40 	STAT_BRANCH_MISS,
41 	STAT_CACHE_REFS,
42 	STAT_CACHE_MISSES,
43 	STAT_L1_DCACHE,
44 	STAT_L1_ICACHE,
45 	STAT_LL_CACHE,
46 	STAT_ITLB_CACHE,
47 	STAT_DTLB_CACHE,
48 	STAT_L1D_MISS,
49 	STAT_L1I_MISS,
50 	STAT_LL_MISS,
51 	STAT_DTLB_MISS,
52 	STAT_ITLB_MISS,
53 	STAT_MAX
54 };
55 
evsel_context(const struct evsel * evsel)56 static int evsel_context(const struct evsel *evsel)
57 {
58 	int ctx = 0;
59 
60 	if (evsel->core.attr.exclude_kernel)
61 		ctx |= CTX_BIT_KERNEL;
62 	if (evsel->core.attr.exclude_user)
63 		ctx |= CTX_BIT_USER;
64 	if (evsel->core.attr.exclude_hv)
65 		ctx |= CTX_BIT_HV;
66 	if (evsel->core.attr.exclude_host)
67 		ctx |= CTX_BIT_HOST;
68 	if (evsel->core.attr.exclude_idle)
69 		ctx |= CTX_BIT_IDLE;
70 
71 	return ctx;
72 }
73 
perf_stat__reset_shadow_stats(void)74 void perf_stat__reset_shadow_stats(void)
75 {
76 	memset(&walltime_nsecs_stats, 0, sizeof(walltime_nsecs_stats));
77 	memset(&ru_stats, 0, sizeof(ru_stats));
78 }
79 
evsel__stat_type(struct evsel * evsel)80 static enum stat_type evsel__stat_type(struct evsel *evsel)
81 {
82 	/* Fake perf_hw_cache_op_id values for use with evsel__match. */
83 	u64 PERF_COUNT_hw_cache_l1d_miss = PERF_COUNT_HW_CACHE_L1D |
84 		((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
85 		((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16);
86 	u64 PERF_COUNT_hw_cache_l1i_miss = PERF_COUNT_HW_CACHE_L1I |
87 		((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
88 		((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16);
89 	u64 PERF_COUNT_hw_cache_ll_miss = PERF_COUNT_HW_CACHE_LL |
90 		((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
91 		((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16);
92 	u64 PERF_COUNT_hw_cache_dtlb_miss = PERF_COUNT_HW_CACHE_DTLB |
93 		((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
94 		((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16);
95 	u64 PERF_COUNT_hw_cache_itlb_miss = PERF_COUNT_HW_CACHE_ITLB |
96 		((PERF_COUNT_HW_CACHE_OP_READ) << 8) |
97 		((PERF_COUNT_HW_CACHE_RESULT_MISS) << 16);
98 
99 	if (evsel__is_clock(evsel))
100 		return STAT_NSECS;
101 	else if (evsel__match(evsel, HARDWARE, HW_CPU_CYCLES))
102 		return STAT_CYCLES;
103 	else if (evsel__match(evsel, HARDWARE, HW_INSTRUCTIONS))
104 		return STAT_INSTRUCTIONS;
105 	else if (evsel__match(evsel, HARDWARE, HW_STALLED_CYCLES_FRONTEND))
106 		return STAT_STALLED_CYCLES_FRONT;
107 	else if (evsel__match(evsel, HARDWARE, HW_STALLED_CYCLES_BACKEND))
108 		return STAT_STALLED_CYCLES_BACK;
109 	else if (evsel__match(evsel, HARDWARE, HW_BRANCH_INSTRUCTIONS))
110 		return STAT_BRANCHES;
111 	else if (evsel__match(evsel, HARDWARE, HW_BRANCH_MISSES))
112 		return STAT_BRANCH_MISS;
113 	else if (evsel__match(evsel, HARDWARE, HW_CACHE_REFERENCES))
114 		return STAT_CACHE_REFS;
115 	else if (evsel__match(evsel, HARDWARE, HW_CACHE_MISSES))
116 		return STAT_CACHE_MISSES;
117 	else if (evsel__match(evsel, HW_CACHE, HW_CACHE_L1D))
118 		return STAT_L1_DCACHE;
119 	else if (evsel__match(evsel, HW_CACHE, HW_CACHE_L1I))
120 		return STAT_L1_ICACHE;
121 	else if (evsel__match(evsel, HW_CACHE, HW_CACHE_LL))
122 		return STAT_LL_CACHE;
123 	else if (evsel__match(evsel, HW_CACHE, HW_CACHE_DTLB))
124 		return STAT_DTLB_CACHE;
125 	else if (evsel__match(evsel, HW_CACHE, HW_CACHE_ITLB))
126 		return STAT_ITLB_CACHE;
127 	else if (evsel__match(evsel, HW_CACHE, hw_cache_l1d_miss))
128 		return STAT_L1D_MISS;
129 	else if (evsel__match(evsel, HW_CACHE, hw_cache_l1i_miss))
130 		return STAT_L1I_MISS;
131 	else if (evsel__match(evsel, HW_CACHE, hw_cache_ll_miss))
132 		return STAT_LL_MISS;
133 	else if (evsel__match(evsel, HW_CACHE, hw_cache_dtlb_miss))
134 		return STAT_DTLB_MISS;
135 	else if (evsel__match(evsel, HW_CACHE, hw_cache_itlb_miss))
136 		return STAT_ITLB_MISS;
137 	return STAT_NONE;
138 }
139 
get_ratio_thresh(const double ratios[3],double val)140 static enum metric_threshold_classify get_ratio_thresh(const double ratios[3], double val)
141 {
142 	assert(ratios[0] > ratios[1]);
143 	assert(ratios[1] > ratios[2]);
144 
145 	return val > ratios[1]
146 		? (val > ratios[0] ? METRIC_THRESHOLD_BAD : METRIC_THRESHOLD_NEARLY_BAD)
147 		: (val > ratios[2] ? METRIC_THRESHOLD_LESS_GOOD : METRIC_THRESHOLD_GOOD);
148 }
149 
find_stat(const struct evsel * evsel,int aggr_idx,enum stat_type type)150 static double find_stat(const struct evsel *evsel, int aggr_idx, enum stat_type type)
151 {
152 	struct evsel *cur;
153 	int evsel_ctx = evsel_context(evsel);
154 	struct perf_pmu *evsel_pmu = evsel__find_pmu(evsel);
155 
156 	evlist__for_each_entry(evsel->evlist, cur) {
157 		struct perf_stat_aggr *aggr;
158 
159 		/* Ignore the evsel that is being searched from. */
160 		if (evsel == cur)
161 			continue;
162 
163 		/* Ignore evsels that are part of different groups. */
164 		if (evsel->core.leader->nr_members > 1 &&
165 		    evsel->core.leader != cur->core.leader)
166 			continue;
167 		/* Ignore evsels with mismatched modifiers. */
168 		if (evsel_ctx != evsel_context(cur))
169 			continue;
170 		/* Ignore if not the cgroup we're looking for. */
171 		if (evsel->cgrp != cur->cgrp)
172 			continue;
173 		/* Ignore if not the stat we're looking for. */
174 		if (type != evsel__stat_type(cur))
175 			continue;
176 
177 		/*
178 		 * Except the SW CLOCK events,
179 		 * ignore if not the PMU we're looking for.
180 		 */
181 		if ((type != STAT_NSECS) && (evsel_pmu != evsel__find_pmu(cur)))
182 			continue;
183 
184 		aggr = &cur->stats->aggr[aggr_idx];
185 		if (type == STAT_NSECS)
186 			return aggr->counts.val;
187 		return aggr->counts.val * cur->scale;
188 	}
189 	return 0.0;
190 }
191 
print_ratio(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double numerator,struct perf_stat_output_ctx * out,enum stat_type denominator_type,const double thresh_ratios[3],const char * _unit)192 static void print_ratio(struct perf_stat_config *config,
193 			const struct evsel *evsel, int aggr_idx,
194 			double numerator, struct perf_stat_output_ctx *out,
195 			enum stat_type denominator_type,
196 			const double thresh_ratios[3], const char *_unit)
197 {
198 	double denominator = find_stat(evsel, aggr_idx, denominator_type);
199 	double ratio = 0;
200 	enum metric_threshold_classify thresh = METRIC_THRESHOLD_UNKNOWN;
201 	const char *fmt = NULL;
202 	const char *unit = NULL;
203 
204 	if (numerator && denominator) {
205 		ratio = numerator / denominator * 100.0;
206 		thresh = get_ratio_thresh(thresh_ratios, ratio);
207 		fmt = "%7.2f%%";
208 		unit = _unit;
209 	}
210 	out->print_metric(config, out->ctx, thresh, fmt, unit, ratio);
211 }
212 
print_stalled_cycles_front(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double stalled,struct perf_stat_output_ctx * out)213 static void print_stalled_cycles_front(struct perf_stat_config *config,
214 				const struct evsel *evsel,
215 				int aggr_idx, double stalled,
216 				struct perf_stat_output_ctx *out)
217 {
218 	const double thresh_ratios[3] = {50.0, 30.0, 10.0};
219 
220 	print_ratio(config, evsel, aggr_idx, stalled, out, STAT_CYCLES, thresh_ratios,
221 		    "frontend cycles idle");
222 }
223 
print_stalled_cycles_back(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double stalled,struct perf_stat_output_ctx * out)224 static void print_stalled_cycles_back(struct perf_stat_config *config,
225 				const struct evsel *evsel,
226 				int aggr_idx, double stalled,
227 				struct perf_stat_output_ctx *out)
228 {
229 	const double thresh_ratios[3] = {75.0, 50.0, 20.0};
230 
231 	print_ratio(config, evsel, aggr_idx, stalled, out, STAT_CYCLES, thresh_ratios,
232 		    "backend cycles idle");
233 }
234 
print_branch_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)235 static void print_branch_miss(struct perf_stat_config *config,
236 			const struct evsel *evsel,
237 			int aggr_idx, double misses,
238 			struct perf_stat_output_ctx *out)
239 {
240 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
241 
242 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_BRANCHES, thresh_ratios,
243 		    "of all branches");
244 }
245 
print_l1d_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)246 static void print_l1d_miss(struct perf_stat_config *config,
247 			const struct evsel *evsel,
248 			int aggr_idx, double misses,
249 			struct perf_stat_output_ctx *out)
250 {
251 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
252 
253 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_L1_DCACHE, thresh_ratios,
254 		    "of all L1-dcache accesses");
255 }
256 
print_l1i_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)257 static void print_l1i_miss(struct perf_stat_config *config,
258 			const struct evsel *evsel,
259 			int aggr_idx, double misses,
260 			struct perf_stat_output_ctx *out)
261 {
262 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
263 
264 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_L1_ICACHE, thresh_ratios,
265 		    "of all L1-icache accesses");
266 }
267 
print_ll_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)268 static void print_ll_miss(struct perf_stat_config *config,
269 			const struct evsel *evsel,
270 			int aggr_idx, double misses,
271 			struct perf_stat_output_ctx *out)
272 {
273 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
274 
275 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_LL_CACHE, thresh_ratios,
276 		    "of all LL-cache accesses");
277 }
278 
print_dtlb_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)279 static void print_dtlb_miss(struct perf_stat_config *config,
280 			const struct evsel *evsel,
281 			int aggr_idx, double misses,
282 			struct perf_stat_output_ctx *out)
283 {
284 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
285 
286 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_DTLB_CACHE, thresh_ratios,
287 		    "of all dTLB cache accesses");
288 }
289 
print_itlb_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)290 static void print_itlb_miss(struct perf_stat_config *config,
291 			const struct evsel *evsel,
292 			int aggr_idx, double misses,
293 			struct perf_stat_output_ctx *out)
294 {
295 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
296 
297 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_ITLB_CACHE, thresh_ratios,
298 		    "of all iTLB cache accesses");
299 }
300 
print_cache_miss(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double misses,struct perf_stat_output_ctx * out)301 static void print_cache_miss(struct perf_stat_config *config,
302 			const struct evsel *evsel,
303 			int aggr_idx, double misses,
304 			struct perf_stat_output_ctx *out)
305 {
306 	const double thresh_ratios[3] = {20.0, 10.0, 5.0};
307 
308 	print_ratio(config, evsel, aggr_idx, misses, out, STAT_CACHE_REFS, thresh_ratios,
309 		    "of all cache refs");
310 }
311 
print_instructions(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double instructions,struct perf_stat_output_ctx * out)312 static void print_instructions(struct perf_stat_config *config,
313 			const struct evsel *evsel,
314 			int aggr_idx, double instructions,
315 			struct perf_stat_output_ctx *out)
316 {
317 	print_metric_t print_metric = out->print_metric;
318 	void *ctxp = out->ctx;
319 	double cycles = find_stat(evsel, aggr_idx, STAT_CYCLES);
320 	double max_stalled = max(find_stat(evsel, aggr_idx, STAT_STALLED_CYCLES_FRONT),
321 				find_stat(evsel, aggr_idx, STAT_STALLED_CYCLES_BACK));
322 
323 	if (cycles) {
324 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, "%7.2f ",
325 			     "insn per cycle", instructions / cycles);
326 	} else {
327 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, /*fmt=*/NULL,
328 			     "insn per cycle", 0);
329 	}
330 	if (max_stalled && instructions) {
331 		if (out->new_line)
332 			out->new_line(config, ctxp);
333 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, "%7.2f ",
334 			     "stalled cycles per insn", max_stalled / instructions);
335 	}
336 }
337 
print_cycles(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx,double cycles,struct perf_stat_output_ctx * out)338 static void print_cycles(struct perf_stat_config *config,
339 			const struct evsel *evsel,
340 			int aggr_idx, double cycles,
341 			struct perf_stat_output_ctx *out)
342 {
343 	double nsecs = find_stat(evsel, aggr_idx, STAT_NSECS);
344 
345 	if (cycles && nsecs) {
346 		double ratio = cycles / nsecs;
347 
348 		out->print_metric(config, out->ctx, METRIC_THRESHOLD_UNKNOWN, "%8.3f",
349 				  "GHz", ratio);
350 	} else {
351 		out->print_metric(config, out->ctx, METRIC_THRESHOLD_UNKNOWN, /*fmt=*/NULL,
352 				  "GHz", 0);
353 	}
354 }
355 
print_nsecs(struct perf_stat_config * config,const struct evsel * evsel,int aggr_idx __maybe_unused,double nsecs,struct perf_stat_output_ctx * out)356 static void print_nsecs(struct perf_stat_config *config,
357 			const struct evsel *evsel,
358 			int aggr_idx __maybe_unused, double nsecs,
359 			struct perf_stat_output_ctx *out)
360 {
361 	print_metric_t print_metric = out->print_metric;
362 	void *ctxp = out->ctx;
363 	double wall_time = avg_stats(&walltime_nsecs_stats);
364 
365 	if (wall_time) {
366 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, "%8.3f", "CPUs utilized",
367 			nsecs / (wall_time * evsel->scale));
368 	} else {
369 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, /*fmt=*/NULL,
370 			     "CPUs utilized", 0);
371 	}
372 }
373 
prepare_metric(const struct metric_expr * mexp,const struct evsel * evsel,struct expr_parse_ctx * pctx,int aggr_idx)374 static int prepare_metric(const struct metric_expr *mexp,
375 			  const struct evsel *evsel,
376 			  struct expr_parse_ctx *pctx,
377 			  int aggr_idx)
378 {
379 	struct evsel * const *metric_events = mexp->metric_events;
380 	struct metric_ref *metric_refs = mexp->metric_refs;
381 	int i;
382 
383 	for (i = 0; metric_events[i]; i++) {
384 		char *n;
385 		double val;
386 		int source_count = 0;
387 
388 		if (evsel__is_tool(metric_events[i])) {
389 			struct stats *stats;
390 			double scale;
391 
392 			switch (evsel__tool_event(metric_events[i])) {
393 			case TOOL_PMU__EVENT_DURATION_TIME:
394 				stats = &walltime_nsecs_stats;
395 				scale = 1e-9;
396 				break;
397 			case TOOL_PMU__EVENT_USER_TIME:
398 				stats = &ru_stats.ru_utime_usec_stat;
399 				scale = 1e-6;
400 				break;
401 			case TOOL_PMU__EVENT_SYSTEM_TIME:
402 				stats = &ru_stats.ru_stime_usec_stat;
403 				scale = 1e-6;
404 				break;
405 			case TOOL_PMU__EVENT_NONE:
406 				pr_err("Invalid tool event 'none'");
407 				abort();
408 			case TOOL_PMU__EVENT_MAX:
409 				pr_err("Invalid tool event 'max'");
410 				abort();
411 			case TOOL_PMU__EVENT_HAS_PMEM:
412 			case TOOL_PMU__EVENT_NUM_CORES:
413 			case TOOL_PMU__EVENT_NUM_CPUS:
414 			case TOOL_PMU__EVENT_NUM_CPUS_ONLINE:
415 			case TOOL_PMU__EVENT_NUM_DIES:
416 			case TOOL_PMU__EVENT_NUM_PACKAGES:
417 			case TOOL_PMU__EVENT_SLOTS:
418 			case TOOL_PMU__EVENT_SMT_ON:
419 			case TOOL_PMU__EVENT_SYSTEM_TSC_FREQ:
420 			default:
421 				pr_err("Unexpected tool event '%s'", evsel__name(metric_events[i]));
422 				abort();
423 			}
424 			val = avg_stats(stats) * scale;
425 			source_count = 1;
426 		} else {
427 			struct perf_stat_evsel *ps = metric_events[i]->stats;
428 			struct perf_stat_aggr *aggr;
429 
430 			/*
431 			 * If there are multiple uncore PMUs and we're not
432 			 * reading the leader's stats, determine the stats for
433 			 * the appropriate uncore PMU.
434 			 */
435 			if (evsel && evsel->metric_leader &&
436 			    evsel->pmu != evsel->metric_leader->pmu &&
437 			    mexp->metric_events[i]->pmu == evsel->metric_leader->pmu) {
438 				struct evsel *pos;
439 
440 				evlist__for_each_entry(evsel->evlist, pos) {
441 					if (pos->pmu != evsel->pmu)
442 						continue;
443 					if (pos->metric_leader != mexp->metric_events[i])
444 						continue;
445 					ps = pos->stats;
446 					source_count = 1;
447 					break;
448 				}
449 			}
450 			aggr = &ps->aggr[aggr_idx];
451 			if (!aggr)
452 				break;
453 
454 			if (!metric_events[i]->supported) {
455 				/*
456 				 * Not supported events will have a count of 0,
457 				 * which can be confusing in a
458 				 * metric. Explicitly set the value to NAN. Not
459 				 * counted events (enable time of 0) are read as
460 				 * 0.
461 				 */
462 				val = NAN;
463 				source_count = 0;
464 			} else {
465 				val = aggr->counts.val;
466 				if (!source_count)
467 					source_count = evsel__source_count(metric_events[i]);
468 			}
469 		}
470 		n = strdup(evsel__metric_id(metric_events[i]));
471 		if (!n)
472 			return -ENOMEM;
473 
474 		expr__add_id_val_source_count(pctx, n, val, source_count);
475 	}
476 
477 	for (int j = 0; metric_refs && metric_refs[j].metric_name; j++) {
478 		int ret = expr__add_ref(pctx, &metric_refs[j]);
479 
480 		if (ret)
481 			return ret;
482 	}
483 
484 	return i;
485 }
486 
generic_metric(struct perf_stat_config * config,struct metric_expr * mexp,struct evsel * evsel,int aggr_idx,struct perf_stat_output_ctx * out)487 static void generic_metric(struct perf_stat_config *config,
488 			   struct metric_expr *mexp,
489 			   struct evsel *evsel,
490 			   int aggr_idx,
491 			   struct perf_stat_output_ctx *out)
492 {
493 	print_metric_t print_metric = out->print_metric;
494 	const char *metric_name = mexp->metric_name;
495 	const char *metric_expr = mexp->metric_expr;
496 	const char *metric_threshold = mexp->metric_threshold;
497 	const char *metric_unit = mexp->metric_unit;
498 	struct evsel * const *metric_events = mexp->metric_events;
499 	int runtime = mexp->runtime;
500 	struct expr_parse_ctx *pctx;
501 	double ratio, scale, threshold;
502 	int i;
503 	void *ctxp = out->ctx;
504 	enum metric_threshold_classify thresh = METRIC_THRESHOLD_UNKNOWN;
505 
506 	pctx = expr__ctx_new();
507 	if (!pctx)
508 		return;
509 
510 	if (config->user_requested_cpu_list)
511 		pctx->sctx.user_requested_cpu_list = strdup(config->user_requested_cpu_list);
512 	pctx->sctx.runtime = runtime;
513 	pctx->sctx.system_wide = config->system_wide;
514 	i = prepare_metric(mexp, evsel, pctx, aggr_idx);
515 	if (i < 0) {
516 		expr__ctx_free(pctx);
517 		return;
518 	}
519 	if (!metric_events[i]) {
520 		if (expr__parse(&ratio, pctx, metric_expr) == 0) {
521 			char *unit;
522 			char metric_bf[128];
523 
524 			if (metric_threshold &&
525 			    expr__parse(&threshold, pctx, metric_threshold) == 0 &&
526 			    !isnan(threshold)) {
527 				thresh = fpclassify(threshold) == FP_ZERO
528 					? METRIC_THRESHOLD_GOOD : METRIC_THRESHOLD_BAD;
529 			}
530 
531 			if (metric_unit && metric_name) {
532 				if (perf_pmu__convert_scale(metric_unit,
533 					&unit, &scale) >= 0) {
534 					ratio *= scale;
535 				}
536 				if (strstr(metric_expr, "?"))
537 					scnprintf(metric_bf, sizeof(metric_bf),
538 					  "%s  %s_%d", unit, metric_name, runtime);
539 				else
540 					scnprintf(metric_bf, sizeof(metric_bf),
541 					  "%s  %s", unit, metric_name);
542 
543 				print_metric(config, ctxp, thresh, "%8.1f",
544 					     metric_bf, ratio);
545 			} else {
546 				print_metric(config, ctxp, thresh, "%8.2f",
547 					metric_name ?
548 					metric_name :
549 					out->force_header ?  evsel->name : "",
550 					ratio);
551 			}
552 		} else {
553 			print_metric(config, ctxp, thresh, /*fmt=*/NULL,
554 				     out->force_header ?
555 				     (metric_name ?: evsel->name) : "", 0);
556 		}
557 	} else {
558 		print_metric(config, ctxp, thresh, /*fmt=*/NULL,
559 			     out->force_header ?
560 			     (metric_name ?: evsel->name) : "", 0);
561 	}
562 
563 	expr__ctx_free(pctx);
564 }
565 
test_generic_metric(struct metric_expr * mexp,int aggr_idx)566 double test_generic_metric(struct metric_expr *mexp, int aggr_idx)
567 {
568 	struct expr_parse_ctx *pctx;
569 	double ratio = 0.0;
570 
571 	pctx = expr__ctx_new();
572 	if (!pctx)
573 		return NAN;
574 
575 	if (prepare_metric(mexp, /*evsel=*/NULL, pctx, aggr_idx) < 0)
576 		goto out;
577 
578 	if (expr__parse(&ratio, pctx, mexp->metric_expr))
579 		ratio = 0.0;
580 
581 out:
582 	expr__ctx_free(pctx);
583 	return ratio;
584 }
585 
perf_stat__print_metricgroup_header(struct perf_stat_config * config,struct evsel * evsel,void * ctxp,const char * name,struct perf_stat_output_ctx * out)586 static void perf_stat__print_metricgroup_header(struct perf_stat_config *config,
587 						struct evsel *evsel,
588 						void *ctxp,
589 						const char *name,
590 						struct perf_stat_output_ctx *out)
591 {
592 	bool need_full_name = perf_pmus__num_core_pmus() > 1;
593 	static const char *last_name;
594 	static const struct perf_pmu *last_pmu;
595 	char full_name[64];
596 
597 	/*
598 	 * A metricgroup may have several metric events,
599 	 * e.g.,TopdownL1 on e-core of ADL.
600 	 * The name has been output by the first metric
601 	 * event. Only align with other metics from
602 	 * different metric events.
603 	 */
604 	if (last_name && !strcmp(last_name, name)) {
605 		if (!need_full_name || last_pmu != evsel->pmu) {
606 			out->print_metricgroup_header(config, ctxp, NULL);
607 			return;
608 		}
609 	}
610 
611 	if (need_full_name && evsel->pmu)
612 		scnprintf(full_name, sizeof(full_name), "%s (%s)", name, evsel->pmu->name);
613 	else
614 		scnprintf(full_name, sizeof(full_name), "%s", name);
615 
616 	out->print_metricgroup_header(config, ctxp, full_name);
617 
618 	last_name = name;
619 	last_pmu = evsel->pmu;
620 }
621 
622 /**
623  * perf_stat__print_shadow_stats_metricgroup - Print out metrics associated with the evsel
624  *					       For the non-default, all metrics associated
625  *					       with the evsel are printed.
626  *					       For the default mode, only the metrics from
627  *					       the same metricgroup and the name of the
628  *					       metricgroup are printed. To print the metrics
629  *					       from the next metricgroup (if available),
630  *					       invoke the function with correspoinding
631  *					       metric_expr.
632  */
perf_stat__print_shadow_stats_metricgroup(struct perf_stat_config * config,struct evsel * evsel,int aggr_idx,int * num,void * from,struct perf_stat_output_ctx * out,struct rblist * metric_events)633 void *perf_stat__print_shadow_stats_metricgroup(struct perf_stat_config *config,
634 						struct evsel *evsel,
635 						int aggr_idx,
636 						int *num,
637 						void *from,
638 						struct perf_stat_output_ctx *out,
639 						struct rblist *metric_events)
640 {
641 	struct metric_event *me;
642 	struct metric_expr *mexp = from;
643 	void *ctxp = out->ctx;
644 	bool header_printed = false;
645 	const char *name = NULL;
646 
647 	me = metricgroup__lookup(metric_events, evsel, false);
648 	if (me == NULL)
649 		return NULL;
650 
651 	if (!mexp)
652 		mexp = list_first_entry(&me->head, typeof(*mexp), nd);
653 
654 	list_for_each_entry_from(mexp, &me->head, nd) {
655 		/* Print the display name of the Default metricgroup */
656 		if (!config->metric_only && me->is_default) {
657 			if (!name)
658 				name = mexp->default_metricgroup_name;
659 			/*
660 			 * Two or more metricgroup may share the same metric
661 			 * event, e.g., TopdownL1 and TopdownL2 on SPR.
662 			 * Return and print the prefix, e.g., noise, running
663 			 * for the next metricgroup.
664 			 */
665 			if (strcmp(name, mexp->default_metricgroup_name))
666 				return (void *)mexp;
667 			/* Only print the name of the metricgroup once */
668 			if (!header_printed) {
669 				header_printed = true;
670 				perf_stat__print_metricgroup_header(config, evsel, ctxp,
671 								    name, out);
672 			}
673 		}
674 
675 		if ((*num)++ > 0 && out->new_line)
676 			out->new_line(config, ctxp);
677 		generic_metric(config, mexp, evsel, aggr_idx, out);
678 	}
679 
680 	return NULL;
681 }
682 
perf_stat__print_shadow_stats(struct perf_stat_config * config,struct evsel * evsel,double avg,int aggr_idx,struct perf_stat_output_ctx * out,struct rblist * metric_events)683 void perf_stat__print_shadow_stats(struct perf_stat_config *config,
684 				   struct evsel *evsel,
685 				   double avg, int aggr_idx,
686 				   struct perf_stat_output_ctx *out,
687 				   struct rblist *metric_events)
688 {
689 	typedef void (*stat_print_function_t)(struct perf_stat_config *config,
690 					const struct evsel *evsel,
691 					int aggr_idx, double misses,
692 					struct perf_stat_output_ctx *out);
693 	static const stat_print_function_t stat_print_function[STAT_MAX] = {
694 		[STAT_INSTRUCTIONS] = print_instructions,
695 		[STAT_BRANCH_MISS] = print_branch_miss,
696 		[STAT_L1D_MISS] = print_l1d_miss,
697 		[STAT_L1I_MISS] = print_l1i_miss,
698 		[STAT_DTLB_MISS] = print_dtlb_miss,
699 		[STAT_ITLB_MISS] = print_itlb_miss,
700 		[STAT_LL_MISS] = print_ll_miss,
701 		[STAT_CACHE_MISSES] = print_cache_miss,
702 		[STAT_STALLED_CYCLES_FRONT] = print_stalled_cycles_front,
703 		[STAT_STALLED_CYCLES_BACK] = print_stalled_cycles_back,
704 		[STAT_CYCLES] = print_cycles,
705 		[STAT_NSECS] = print_nsecs,
706 	};
707 	print_metric_t print_metric = out->print_metric;
708 	void *ctxp = out->ctx;
709 	int num = 1;
710 
711 	if (config->iostat_run) {
712 		iostat_print_metric(config, evsel, out);
713 	} else {
714 		stat_print_function_t fn = stat_print_function[evsel__stat_type(evsel)];
715 
716 		if (fn)
717 			fn(config, evsel, aggr_idx, avg, out);
718 		else {
719 			double nsecs =	find_stat(evsel, aggr_idx, STAT_NSECS);
720 
721 			if (nsecs) {
722 				char unit = ' ';
723 				char unit_buf[10] = "/sec";
724 				double ratio = convert_unit_double(1000000000.0 * avg / nsecs,
725 								   &unit);
726 
727 				if (unit != ' ')
728 					snprintf(unit_buf, sizeof(unit_buf), "%c/sec", unit);
729 				print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN, "%8.3f",
730 					     unit_buf, ratio);
731 			} else {
732 				num = 0;
733 			}
734 		}
735 	}
736 
737 	perf_stat__print_shadow_stats_metricgroup(config, evsel, aggr_idx,
738 						  &num, NULL, out, metric_events);
739 
740 	if (num == 0) {
741 		print_metric(config, ctxp, METRIC_THRESHOLD_UNKNOWN,
742 			     /*fmt=*/NULL, /*unit=*/NULL, 0);
743 	}
744 }
745 
746 /**
747  * perf_stat__skip_metric_event - Skip the evsel in the Default metricgroup,
748  *				  if it's not running or not the metric event.
749  */
perf_stat__skip_metric_event(struct evsel * evsel,struct rblist * metric_events,u64 ena,u64 run)750 bool perf_stat__skip_metric_event(struct evsel *evsel,
751 				  struct rblist *metric_events,
752 				  u64 ena, u64 run)
753 {
754 	if (!evsel->default_metricgroup)
755 		return false;
756 
757 	if (!ena || !run)
758 		return true;
759 
760 	return !metricgroup__lookup(metric_events, evsel, false);
761 }
762