1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright (c) 2020 Facebook */
3 #define _GNU_SOURCE
4 #include <argp.h>
5 #include <linux/compiler.h>
6 #include <sys/time.h>
7 #include <sched.h>
8 #include <fcntl.h>
9 #include <pthread.h>
10 #include <sys/sysinfo.h>
11 #include <signal.h>
12 #include "bench.h"
13 #include "bpf_util.h"
14 #include "testing_helpers.h"
15
16 struct env env = {
17 .warmup_sec = 1,
18 .duration_sec = 5,
19 .affinity = false,
20 .quiet = false,
21 .consumer_cnt = 0,
22 .producer_cnt = 1,
23 };
24
libbpf_print_fn(enum libbpf_print_level level,const char * format,va_list args)25 static int libbpf_print_fn(enum libbpf_print_level level,
26 const char *format, va_list args)
27 {
28 if (level == LIBBPF_DEBUG && !env.verbose)
29 return 0;
30 return vfprintf(stderr, format, args);
31 }
32
setup_libbpf(void)33 void setup_libbpf(void)
34 {
35 libbpf_set_strict_mode(LIBBPF_STRICT_ALL);
36 libbpf_set_print(libbpf_print_fn);
37 }
38
false_hits_report_progress(int iter,struct bench_res * res,long delta_ns)39 void false_hits_report_progress(int iter, struct bench_res *res, long delta_ns)
40 {
41 long total = res->false_hits + res->hits + res->drops;
42
43 printf("Iter %3d (%7.3lfus): ",
44 iter, (delta_ns - 1000000000) / 1000.0);
45
46 printf("%ld false hits of %ld total operations. Percentage = %2.2f %%\n",
47 res->false_hits, total, ((float)res->false_hits / total) * 100);
48 }
49
false_hits_report_final(struct bench_res res[],int res_cnt)50 void false_hits_report_final(struct bench_res res[], int res_cnt)
51 {
52 long total_hits = 0, total_drops = 0, total_false_hits = 0, total_ops = 0;
53 int i;
54
55 for (i = 0; i < res_cnt; i++) {
56 total_hits += res[i].hits;
57 total_false_hits += res[i].false_hits;
58 total_drops += res[i].drops;
59 }
60 total_ops = total_hits + total_false_hits + total_drops;
61
62 printf("Summary: %ld false hits of %ld total operations. ",
63 total_false_hits, total_ops);
64 printf("Percentage = %2.2f %%\n",
65 ((float)total_false_hits / total_ops) * 100);
66 }
67
hits_drops_report_progress(int iter,struct bench_res * res,long delta_ns)68 void hits_drops_report_progress(int iter, struct bench_res *res, long delta_ns)
69 {
70 double hits_per_sec, drops_per_sec;
71 double hits_per_prod;
72
73 hits_per_sec = res->hits / 1000000.0 / (delta_ns / 1000000000.0);
74 hits_per_prod = hits_per_sec / env.producer_cnt;
75 drops_per_sec = res->drops / 1000000.0 / (delta_ns / 1000000000.0);
76
77 printf("Iter %3d (%7.3lfus): ",
78 iter, (delta_ns - 1000000000) / 1000.0);
79
80 printf("hits %8.3lfM/s (%7.3lfM/prod), drops %8.3lfM/s, total operations %8.3lfM/s\n",
81 hits_per_sec, hits_per_prod, drops_per_sec, hits_per_sec + drops_per_sec);
82 }
83
84 void
grace_period_latency_basic_stats(struct bench_res res[],int res_cnt,struct basic_stats * gp_stat)85 grace_period_latency_basic_stats(struct bench_res res[], int res_cnt, struct basic_stats *gp_stat)
86 {
87 int i;
88
89 memset(gp_stat, 0, sizeof(struct basic_stats));
90
91 for (i = 0; i < res_cnt; i++)
92 gp_stat->mean += res[i].gp_ns / 1000.0 / (double)res[i].gp_ct / (0.0 + res_cnt);
93
94 #define IT_MEAN_DIFF (res[i].gp_ns / 1000.0 / (double)res[i].gp_ct - gp_stat->mean)
95 if (res_cnt > 1) {
96 for (i = 0; i < res_cnt; i++)
97 gp_stat->stddev += (IT_MEAN_DIFF * IT_MEAN_DIFF) / (res_cnt - 1.0);
98 }
99 gp_stat->stddev = sqrt(gp_stat->stddev);
100 #undef IT_MEAN_DIFF
101 }
102
103 void
grace_period_ticks_basic_stats(struct bench_res res[],int res_cnt,struct basic_stats * gp_stat)104 grace_period_ticks_basic_stats(struct bench_res res[], int res_cnt, struct basic_stats *gp_stat)
105 {
106 int i;
107
108 memset(gp_stat, 0, sizeof(struct basic_stats));
109 for (i = 0; i < res_cnt; i++)
110 gp_stat->mean += res[i].stime / (double)res[i].gp_ct / (0.0 + res_cnt);
111
112 #define IT_MEAN_DIFF (res[i].stime / (double)res[i].gp_ct - gp_stat->mean)
113 if (res_cnt > 1) {
114 for (i = 0; i < res_cnt; i++)
115 gp_stat->stddev += (IT_MEAN_DIFF * IT_MEAN_DIFF) / (res_cnt - 1.0);
116 }
117 gp_stat->stddev = sqrt(gp_stat->stddev);
118 #undef IT_MEAN_DIFF
119 }
120
hits_drops_report_final(struct bench_res res[],int res_cnt)121 void hits_drops_report_final(struct bench_res res[], int res_cnt)
122 {
123 int i;
124 double hits_mean = 0.0, drops_mean = 0.0, total_ops_mean = 0.0;
125 double hits_stddev = 0.0, drops_stddev = 0.0, total_ops_stddev = 0.0;
126 double total_ops;
127
128 for (i = 0; i < res_cnt; i++) {
129 hits_mean += res[i].hits / 1000000.0 / (0.0 + res_cnt);
130 drops_mean += res[i].drops / 1000000.0 / (0.0 + res_cnt);
131 }
132 total_ops_mean = hits_mean + drops_mean;
133
134 if (res_cnt > 1) {
135 for (i = 0; i < res_cnt; i++) {
136 hits_stddev += (hits_mean - res[i].hits / 1000000.0) *
137 (hits_mean - res[i].hits / 1000000.0) /
138 (res_cnt - 1.0);
139 drops_stddev += (drops_mean - res[i].drops / 1000000.0) *
140 (drops_mean - res[i].drops / 1000000.0) /
141 (res_cnt - 1.0);
142 total_ops = res[i].hits + res[i].drops;
143 total_ops_stddev += (total_ops_mean - total_ops / 1000000.0) *
144 (total_ops_mean - total_ops / 1000000.0) /
145 (res_cnt - 1.0);
146 }
147 hits_stddev = sqrt(hits_stddev);
148 drops_stddev = sqrt(drops_stddev);
149 total_ops_stddev = sqrt(total_ops_stddev);
150 }
151 printf("Summary: hits %8.3lf \u00B1 %5.3lfM/s (%7.3lfM/prod), ",
152 hits_mean, hits_stddev, hits_mean / env.producer_cnt);
153 printf("drops %8.3lf \u00B1 %5.3lfM/s, ",
154 drops_mean, drops_stddev);
155 printf("total operations %8.3lf \u00B1 %5.3lfM/s\n",
156 total_ops_mean, total_ops_stddev);
157 }
158
ops_report_progress(int iter,struct bench_res * res,long delta_ns)159 void ops_report_progress(int iter, struct bench_res *res, long delta_ns)
160 {
161 double hits_per_sec, hits_per_prod;
162
163 hits_per_sec = res->hits / 1000000.0 / (delta_ns / 1000000000.0);
164 hits_per_prod = hits_per_sec / env.producer_cnt;
165
166 printf("Iter %3d (%7.3lfus): ", iter, (delta_ns - 1000000000) / 1000.0);
167
168 printf("hits %8.3lfM/s (%7.3lfM/prod)\n", hits_per_sec, hits_per_prod);
169 }
170
ops_report_final(struct bench_res res[],int res_cnt)171 void ops_report_final(struct bench_res res[], int res_cnt)
172 {
173 double hits_mean = 0.0, hits_stddev = 0.0;
174 int i;
175
176 for (i = 0; i < res_cnt; i++)
177 hits_mean += res[i].hits / 1000000.0 / (0.0 + res_cnt);
178
179 if (res_cnt > 1) {
180 for (i = 0; i < res_cnt; i++)
181 hits_stddev += (hits_mean - res[i].hits / 1000000.0) *
182 (hits_mean - res[i].hits / 1000000.0) /
183 (res_cnt - 1.0);
184
185 hits_stddev = sqrt(hits_stddev);
186 }
187 printf("Summary: throughput %8.3lf \u00B1 %5.3lf M ops/s (%7.3lfM ops/prod), ",
188 hits_mean, hits_stddev, hits_mean / env.producer_cnt);
189 printf("latency %8.3lf ns/op\n", 1000.0 / hits_mean * env.producer_cnt);
190 }
191
local_storage_report_progress(int iter,struct bench_res * res,long delta_ns)192 void local_storage_report_progress(int iter, struct bench_res *res,
193 long delta_ns)
194 {
195 double important_hits_per_sec, hits_per_sec;
196 double delta_sec = delta_ns / 1000000000.0;
197
198 hits_per_sec = res->hits / 1000000.0 / delta_sec;
199 important_hits_per_sec = res->important_hits / 1000000.0 / delta_sec;
200
201 printf("Iter %3d (%7.3lfus): ", iter, (delta_ns - 1000000000) / 1000.0);
202
203 printf("hits %8.3lfM/s ", hits_per_sec);
204 printf("important_hits %8.3lfM/s\n", important_hits_per_sec);
205 }
206
local_storage_report_final(struct bench_res res[],int res_cnt)207 void local_storage_report_final(struct bench_res res[], int res_cnt)
208 {
209 double important_hits_mean = 0.0, important_hits_stddev = 0.0;
210 double hits_mean = 0.0, hits_stddev = 0.0;
211 int i;
212
213 for (i = 0; i < res_cnt; i++) {
214 hits_mean += res[i].hits / 1000000.0 / (0.0 + res_cnt);
215 important_hits_mean += res[i].important_hits / 1000000.0 / (0.0 + res_cnt);
216 }
217
218 if (res_cnt > 1) {
219 for (i = 0; i < res_cnt; i++) {
220 hits_stddev += (hits_mean - res[i].hits / 1000000.0) *
221 (hits_mean - res[i].hits / 1000000.0) /
222 (res_cnt - 1.0);
223 important_hits_stddev +=
224 (important_hits_mean - res[i].important_hits / 1000000.0) *
225 (important_hits_mean - res[i].important_hits / 1000000.0) /
226 (res_cnt - 1.0);
227 }
228
229 hits_stddev = sqrt(hits_stddev);
230 important_hits_stddev = sqrt(important_hits_stddev);
231 }
232 printf("Summary: hits throughput %8.3lf \u00B1 %5.3lf M ops/s, ",
233 hits_mean, hits_stddev);
234 printf("hits latency %8.3lf ns/op, ", 1000.0 / hits_mean);
235 printf("important_hits throughput %8.3lf \u00B1 %5.3lf M ops/s\n",
236 important_hits_mean, important_hits_stddev);
237 }
238
239 const char *argp_program_version = "benchmark";
240 const char *argp_program_bug_address = "<bpf@vger.kernel.org>";
241 const char argp_program_doc[] =
242 "benchmark Generic benchmarking framework.\n"
243 "\n"
244 "This tool runs benchmarks.\n"
245 "\n"
246 "USAGE: benchmark <bench-name>\n"
247 "\n"
248 "EXAMPLES:\n"
249 " # run 'count-local' benchmark with 1 producer and 1 consumer\n"
250 " benchmark count-local\n"
251 " # run 'count-local' with 16 producer and 8 consumer thread, pinned to CPUs\n"
252 " benchmark -p16 -c8 -a count-local\n";
253
254 enum {
255 ARG_PROD_AFFINITY_SET = 1000,
256 ARG_CONS_AFFINITY_SET = 1001,
257 };
258
259 static const struct argp_option opts[] = {
260 { "list", 'l', NULL, 0, "List available benchmarks"},
261 { "duration", 'd', "SEC", 0, "Duration of benchmark, seconds"},
262 { "warmup", 'w', "SEC", 0, "Warm-up period, seconds"},
263 { "producers", 'p', "NUM", 0, "Number of producer threads"},
264 { "consumers", 'c', "NUM", 0, "Number of consumer threads"},
265 { "verbose", 'v', NULL, 0, "Verbose debug output"},
266 { "affinity", 'a', NULL, 0, "Set consumer/producer thread affinity"},
267 { "quiet", 'q', NULL, 0, "Be more quiet"},
268 { "stacktrace", 's', NULL, 0, "Get stack trace"},
269 { "prod-affinity", ARG_PROD_AFFINITY_SET, "CPUSET", 0,
270 "Set of CPUs for producer threads; implies --affinity"},
271 { "cons-affinity", ARG_CONS_AFFINITY_SET, "CPUSET", 0,
272 "Set of CPUs for consumer threads; implies --affinity"},
273 {},
274 };
275
276 extern struct argp bench_ringbufs_argp;
277 extern struct argp bench_bloom_map_argp;
278 extern struct argp bench_bpf_loop_argp;
279 extern struct argp bench_bpf_for_argp;
280 extern struct argp bench_local_storage_argp;
281 extern struct argp bench_local_storage_rcu_tasks_trace_argp;
282 extern struct argp bench_strncmp_argp;
283 extern struct argp bench_hashmap_lookup_argp;
284 extern struct argp bench_local_storage_create_argp;
285 extern struct argp bench_htab_mem_argp;
286 extern struct argp bench_trigger_batch_argp;
287 extern struct argp bench_crypto_argp;
288 extern struct argp bench_sockmap_argp;
289 extern struct argp bench_lpm_trie_map_argp;
290 extern struct argp bench_xdp_lb_argp;
291
292 static const struct argp_child bench_parsers[] = {
293 { &bench_ringbufs_argp, 0, "Ring buffers benchmark", 0 },
294 { &bench_bloom_map_argp, 0, "Bloom filter map benchmark", 0 },
295 { &bench_bpf_loop_argp, 0, "bpf_loop helper benchmark", 0 },
296 { &bench_bpf_for_argp, 0, "bpf_for loop benchmark", 0 },
297 { &bench_local_storage_argp, 0, "local_storage benchmark", 0 },
298 { &bench_strncmp_argp, 0, "bpf_strncmp helper benchmark", 0 },
299 { &bench_local_storage_rcu_tasks_trace_argp, 0,
300 "local_storage RCU Tasks Trace slowdown benchmark", 0 },
301 { &bench_hashmap_lookup_argp, 0, "Hashmap lookup benchmark", 0 },
302 { &bench_local_storage_create_argp, 0, "local-storage-create benchmark", 0 },
303 { &bench_htab_mem_argp, 0, "hash map memory benchmark", 0 },
304 { &bench_trigger_batch_argp, 0, "BPF triggering benchmark", 0 },
305 { &bench_crypto_argp, 0, "bpf crypto benchmark", 0 },
306 { &bench_sockmap_argp, 0, "bpf sockmap benchmark", 0 },
307 { &bench_lpm_trie_map_argp, 0, "LPM trie map benchmark", 0 },
308 { &bench_xdp_lb_argp, 0, "XDP load-balancer benchmark", 0 },
309 {},
310 };
311
312 /* Make pos_args global, so that we can run argp_parse twice, if necessary */
313 static int pos_args;
314
parse_arg(int key,char * arg,struct argp_state * state)315 static error_t parse_arg(int key, char *arg, struct argp_state *state)
316 {
317 switch (key) {
318 case 'v':
319 env.verbose = true;
320 break;
321 case 'l':
322 env.list = true;
323 break;
324 case 'd':
325 env.duration_sec = strtol(arg, NULL, 10);
326 if (env.duration_sec <= 0) {
327 fprintf(stderr, "Invalid duration: %s\n", arg);
328 argp_usage(state);
329 }
330 break;
331 case 'w':
332 env.warmup_sec = strtol(arg, NULL, 10);
333 if (env.warmup_sec <= 0) {
334 fprintf(stderr, "Invalid warm-up duration: %s\n", arg);
335 argp_usage(state);
336 }
337 break;
338 case 'p':
339 env.producer_cnt = strtol(arg, NULL, 10);
340 if (env.producer_cnt < 0) {
341 fprintf(stderr, "Invalid producer count: %s\n", arg);
342 argp_usage(state);
343 }
344 break;
345 case 'c':
346 env.consumer_cnt = strtol(arg, NULL, 10);
347 if (env.consumer_cnt < 0) {
348 fprintf(stderr, "Invalid consumer count: %s\n", arg);
349 argp_usage(state);
350 }
351 break;
352 case 'a':
353 env.affinity = true;
354 break;
355 case 'q':
356 env.quiet = true;
357 break;
358 case 's':
359 env.stacktrace = true;
360 break;
361 case ARG_PROD_AFFINITY_SET:
362 env.affinity = true;
363 if (parse_num_list(arg, &env.prod_cpus.cpus,
364 &env.prod_cpus.cpus_len)) {
365 fprintf(stderr, "Invalid format of CPU set for producers.");
366 argp_usage(state);
367 }
368 break;
369 case ARG_CONS_AFFINITY_SET:
370 env.affinity = true;
371 if (parse_num_list(arg, &env.cons_cpus.cpus,
372 &env.cons_cpus.cpus_len)) {
373 fprintf(stderr, "Invalid format of CPU set for consumers.");
374 argp_usage(state);
375 }
376 break;
377 case ARGP_KEY_ARG:
378 if (pos_args++) {
379 fprintf(stderr,
380 "Unrecognized positional argument: %s\n", arg);
381 argp_usage(state);
382 }
383 env.bench_name = strdup(arg);
384 break;
385 default:
386 return ARGP_ERR_UNKNOWN;
387 }
388 return 0;
389 }
390
parse_cmdline_args_init(int argc,char ** argv)391 static void parse_cmdline_args_init(int argc, char **argv)
392 {
393 static const struct argp argp = {
394 .options = opts,
395 .parser = parse_arg,
396 .doc = argp_program_doc,
397 .children = bench_parsers,
398 };
399 if (argp_parse(&argp, argc, argv, 0, NULL, NULL))
400 exit(1);
401 }
402
parse_cmdline_args_final(int argc,char ** argv)403 static void parse_cmdline_args_final(int argc, char **argv)
404 {
405 struct argp_child bench_parsers[2] = {};
406 const struct argp argp = {
407 .options = opts,
408 .parser = parse_arg,
409 .doc = argp_program_doc,
410 .children = bench_parsers,
411 };
412
413 /* Parse arguments the second time with the correct set of parsers */
414 if (bench->argp) {
415 bench_parsers[0].argp = bench->argp;
416 bench_parsers[0].header = bench->name;
417 pos_args = 0;
418 if (argp_parse(&argp, argc, argv, 0, NULL, NULL))
419 exit(1);
420 }
421 }
422
423 static void collect_measurements(long delta_ns);
424
425 static __u64 last_time_ns;
sigalarm_handler(int signo)426 static void sigalarm_handler(int signo)
427 {
428 long new_time_ns = get_time_ns();
429 long delta_ns = new_time_ns - last_time_ns;
430
431 collect_measurements(delta_ns);
432
433 last_time_ns = new_time_ns;
434 }
435
436 /* set up periodic 1-second timer */
setup_timer()437 static void setup_timer()
438 {
439 static struct sigaction sigalarm_action = {
440 .sa_handler = sigalarm_handler,
441 };
442 struct itimerval timer_settings = {};
443 int err;
444
445 last_time_ns = get_time_ns();
446 err = sigaction(SIGALRM, &sigalarm_action, NULL);
447 if (err < 0) {
448 fprintf(stderr, "failed to install SIGALRM handler: %d\n", -errno);
449 exit(1);
450 }
451 timer_settings.it_interval.tv_sec = 1;
452 timer_settings.it_value.tv_sec = 1;
453 err = setitimer(ITIMER_REAL, &timer_settings, NULL);
454 if (err < 0) {
455 fprintf(stderr, "failed to arm interval timer: %d\n", -errno);
456 exit(1);
457 }
458 }
459
set_thread_affinity(pthread_t thread,int cpu)460 static void set_thread_affinity(pthread_t thread, int cpu)
461 {
462 cpu_set_t cpuset;
463 int err;
464
465 CPU_ZERO(&cpuset);
466 CPU_SET(cpu, &cpuset);
467 err = pthread_setaffinity_np(thread, sizeof(cpuset), &cpuset);
468 if (err) {
469 fprintf(stderr, "setting affinity to CPU #%d failed: %d\n",
470 cpu, -err);
471 exit(1);
472 }
473 }
474
next_cpu(struct cpu_set * cpu_set)475 static int next_cpu(struct cpu_set *cpu_set)
476 {
477 if (cpu_set->cpus) {
478 int i;
479
480 /* find next available CPU */
481 for (i = cpu_set->next_cpu; i < cpu_set->cpus_len; i++) {
482 if (cpu_set->cpus[i]) {
483 cpu_set->next_cpu = i + 1;
484 return i;
485 }
486 }
487 fprintf(stderr, "Not enough CPUs specified, need CPU #%d or higher.\n", i);
488 exit(1);
489 }
490
491 return cpu_set->next_cpu++ % env.nr_cpus;
492 }
493
494 static struct bench_state {
495 int res_cnt;
496 struct bench_res *results;
497 pthread_t *consumers;
498 pthread_t *producers;
499 } state;
500
501 const struct bench *bench = NULL;
502
503 extern const struct bench bench_count_global;
504 extern const struct bench bench_count_local;
505 extern const struct bench bench_rename_base;
506 extern const struct bench bench_rename_kprobe;
507 extern const struct bench bench_rename_kretprobe;
508 extern const struct bench bench_rename_rawtp;
509 extern const struct bench bench_rename_fentry;
510 extern const struct bench bench_rename_fexit;
511
512 /* pure counting benchmarks to establish theoretical limits */
513 extern const struct bench bench_trig_usermode_count;
514 extern const struct bench bench_trig_syscall_count;
515 extern const struct bench bench_trig_kernel_count;
516
517 /* batched, staying mostly in-kernel benchmarks */
518 extern const struct bench bench_trig_kprobe;
519 extern const struct bench bench_trig_kretprobe;
520 extern const struct bench bench_trig_kprobe_multi;
521 extern const struct bench bench_trig_kretprobe_multi;
522 extern const struct bench bench_trig_fentry;
523 extern const struct bench bench_trig_kprobe_multi_all;
524 extern const struct bench bench_trig_kretprobe_multi_all;
525 extern const struct bench bench_trig_fexit;
526 extern const struct bench bench_trig_fmodret;
527 extern const struct bench bench_trig_tp;
528 extern const struct bench bench_trig_rawtp;
529
530 /* uprobe/uretprobe benchmarks */
531 extern const struct bench bench_trig_uprobe_nop;
532 extern const struct bench bench_trig_uretprobe_nop;
533 extern const struct bench bench_trig_uprobe_push;
534 extern const struct bench bench_trig_uretprobe_push;
535 extern const struct bench bench_trig_uprobe_ret;
536 extern const struct bench bench_trig_uretprobe_ret;
537 extern const struct bench bench_trig_uprobe_multi_nop;
538 extern const struct bench bench_trig_uretprobe_multi_nop;
539 extern const struct bench bench_trig_uprobe_multi_push;
540 extern const struct bench bench_trig_uretprobe_multi_push;
541 extern const struct bench bench_trig_uprobe_multi_ret;
542 extern const struct bench bench_trig_uretprobe_multi_ret;
543 #ifdef __x86_64__
544 extern const struct bench bench_trig_uprobe_nop10;
545 extern const struct bench bench_trig_uretprobe_nop10;
546 extern const struct bench bench_trig_uprobe_multi_nop10;
547 extern const struct bench bench_trig_uretprobe_multi_nop10;
548 extern const struct bench bench_trig_usdt_nop;
549 extern const struct bench bench_trig_usdt_nop10;
550 #endif
551
552 extern const struct bench bench_rb_libbpf;
553 extern const struct bench bench_rb_custom;
554 extern const struct bench bench_pb_libbpf;
555 extern const struct bench bench_pb_custom;
556 extern const struct bench bench_bloom_lookup;
557 extern const struct bench bench_bloom_update;
558 extern const struct bench bench_bloom_false_positive;
559 extern const struct bench bench_hashmap_without_bloom;
560 extern const struct bench bench_hashmap_with_bloom;
561 extern const struct bench bench_bpf_loop;
562 extern const struct bench bench_bpf_for;
563 extern const struct bench bench_strncmp_no_helper;
564 extern const struct bench bench_strncmp_helper;
565 extern const struct bench bench_bpf_hashmap_full_update;
566 extern const struct bench bench_bpf_rhashmap_full_update;
567 extern const struct bench bench_local_storage_cache_seq_get;
568 extern const struct bench bench_local_storage_cache_interleaved_get;
569 extern const struct bench bench_local_storage_cache_hashmap_control;
570 extern const struct bench bench_local_storage_tasks_trace;
571 extern const struct bench bench_bpf_hashmap_lookup;
572 extern const struct bench bench_bpf_rhashmap_lookup;
573 extern const struct bench bench_local_storage_create;
574 extern const struct bench bench_htab_mem;
575 extern const struct bench bench_rhtab_mem;
576 extern const struct bench bench_crypto_encrypt;
577 extern const struct bench bench_crypto_decrypt;
578 extern const struct bench bench_sockmap;
579 extern const struct bench bench_lpm_trie_noop;
580 extern const struct bench bench_lpm_trie_baseline;
581 extern const struct bench bench_lpm_trie_lookup;
582 extern const struct bench bench_lpm_trie_insert;
583 extern const struct bench bench_lpm_trie_update;
584 extern const struct bench bench_lpm_trie_delete;
585 extern const struct bench bench_lpm_trie_free;
586 extern const struct bench bench_bpf_nop;
587 extern const struct bench bench_xdp_lb;
588
589 static const struct bench *benchs[] = {
590 &bench_count_global,
591 &bench_count_local,
592 &bench_rename_base,
593 &bench_rename_kprobe,
594 &bench_rename_kretprobe,
595 &bench_rename_rawtp,
596 &bench_rename_fentry,
597 &bench_rename_fexit,
598 /* pure counting benchmarks for establishing theoretical limits */
599 &bench_trig_usermode_count,
600 &bench_trig_kernel_count,
601 &bench_trig_syscall_count,
602 /* batched, staying mostly in-kernel triggers */
603 &bench_trig_kprobe,
604 &bench_trig_kretprobe,
605 &bench_trig_kprobe_multi,
606 &bench_trig_kretprobe_multi,
607 &bench_trig_fentry,
608 &bench_trig_kprobe_multi_all,
609 &bench_trig_kretprobe_multi_all,
610 &bench_trig_fexit,
611 &bench_trig_fmodret,
612 &bench_trig_tp,
613 &bench_trig_rawtp,
614 /* uprobes */
615 &bench_trig_uprobe_nop,
616 &bench_trig_uretprobe_nop,
617 &bench_trig_uprobe_push,
618 &bench_trig_uretprobe_push,
619 &bench_trig_uprobe_ret,
620 &bench_trig_uretprobe_ret,
621 &bench_trig_uprobe_multi_nop,
622 &bench_trig_uretprobe_multi_nop,
623 &bench_trig_uprobe_multi_push,
624 &bench_trig_uretprobe_multi_push,
625 &bench_trig_uprobe_multi_ret,
626 &bench_trig_uretprobe_multi_ret,
627 #ifdef __x86_64__
628 &bench_trig_uprobe_nop10,
629 &bench_trig_uretprobe_nop10,
630 &bench_trig_uprobe_multi_nop10,
631 &bench_trig_uretprobe_multi_nop10,
632 &bench_trig_usdt_nop,
633 &bench_trig_usdt_nop10,
634 #endif
635 /* ringbuf/perfbuf benchmarks */
636 &bench_rb_libbpf,
637 &bench_rb_custom,
638 &bench_pb_libbpf,
639 &bench_pb_custom,
640 &bench_bloom_lookup,
641 &bench_bloom_update,
642 &bench_bloom_false_positive,
643 &bench_hashmap_without_bloom,
644 &bench_hashmap_with_bloom,
645 &bench_bpf_loop,
646 &bench_bpf_for,
647 &bench_strncmp_no_helper,
648 &bench_strncmp_helper,
649 &bench_bpf_hashmap_full_update,
650 &bench_bpf_rhashmap_full_update,
651 &bench_local_storage_cache_seq_get,
652 &bench_local_storage_cache_interleaved_get,
653 &bench_local_storage_cache_hashmap_control,
654 &bench_local_storage_tasks_trace,
655 &bench_bpf_hashmap_lookup,
656 &bench_bpf_rhashmap_lookup,
657 &bench_local_storage_create,
658 &bench_htab_mem,
659 &bench_rhtab_mem,
660 &bench_crypto_encrypt,
661 &bench_crypto_decrypt,
662 &bench_sockmap,
663 &bench_lpm_trie_noop,
664 &bench_lpm_trie_baseline,
665 &bench_lpm_trie_lookup,
666 &bench_lpm_trie_insert,
667 &bench_lpm_trie_update,
668 &bench_lpm_trie_delete,
669 &bench_lpm_trie_free,
670 &bench_bpf_nop,
671 &bench_xdp_lb,
672 };
673
find_benchmark(void)674 static void find_benchmark(void)
675 {
676 int i;
677
678 if (!env.bench_name) {
679 fprintf(stderr, "benchmark name is not specified\n");
680 exit(1);
681 }
682 for (i = 0; i < ARRAY_SIZE(benchs); i++) {
683 if (strcmp(benchs[i]->name, env.bench_name) == 0) {
684 bench = benchs[i];
685 break;
686 }
687 }
688 if (!bench) {
689 fprintf(stderr, "benchmark '%s' not found\n", env.bench_name);
690 exit(1);
691 }
692 }
693
setup_benchmark(void)694 static void setup_benchmark(void)
695 {
696 int i, err;
697
698 if (!env.quiet)
699 printf("Setting up benchmark '%s'...\n", bench->name);
700
701 state.producers = calloc(env.producer_cnt, sizeof(*state.producers));
702 state.consumers = calloc(env.consumer_cnt, sizeof(*state.consumers));
703 state.results = calloc(env.duration_sec + env.warmup_sec + 2,
704 sizeof(*state.results));
705 if (!state.producers || !state.consumers || !state.results)
706 exit(1);
707
708 if (bench->validate)
709 bench->validate();
710 if (bench->setup)
711 bench->setup();
712
713 for (i = 0; i < env.consumer_cnt; i++) {
714 if (!bench->consumer_thread) {
715 fprintf(stderr, "benchmark doesn't support consumers!\n");
716 exit(1);
717 }
718 err = pthread_create(&state.consumers[i], NULL,
719 bench->consumer_thread, (void *)(long)i);
720 if (err) {
721 fprintf(stderr, "failed to create consumer thread #%d: %d\n",
722 i, -err);
723 exit(1);
724 }
725 if (env.affinity)
726 set_thread_affinity(state.consumers[i],
727 next_cpu(&env.cons_cpus));
728 }
729
730 /* unless explicit producer CPU list is specified, continue after
731 * last consumer CPU
732 */
733 if (!env.prod_cpus.cpus)
734 env.prod_cpus.next_cpu = env.cons_cpus.next_cpu;
735
736 for (i = 0; i < env.producer_cnt; i++) {
737 if (!bench->producer_thread) {
738 fprintf(stderr, "benchmark doesn't support producers!\n");
739 exit(1);
740 }
741 err = pthread_create(&state.producers[i], NULL,
742 bench->producer_thread, (void *)(long)i);
743 if (err) {
744 fprintf(stderr, "failed to create producer thread #%d: %d\n",
745 i, -err);
746 exit(1);
747 }
748 if (env.affinity)
749 set_thread_affinity(state.producers[i],
750 next_cpu(&env.prod_cpus));
751 }
752
753 if (!env.quiet)
754 printf("Benchmark '%s' started.\n", bench->name);
755 }
756
757 static pthread_mutex_t bench_done_mtx = PTHREAD_MUTEX_INITIALIZER;
758 static pthread_cond_t bench_done = PTHREAD_COND_INITIALIZER;
759
bench_force_done(void)760 void bench_force_done(void)
761 {
762 pthread_mutex_lock(&bench_done_mtx);
763 pthread_cond_signal(&bench_done);
764 pthread_mutex_unlock(&bench_done_mtx);
765 }
766
collect_measurements(long delta_ns)767 static void collect_measurements(long delta_ns) {
768 int iter = state.res_cnt++;
769 struct bench_res *res = &state.results[iter];
770
771 bench->measure(res);
772
773 if (bench->report_progress)
774 bench->report_progress(iter, res, delta_ns);
775
776 if (iter == env.duration_sec + env.warmup_sec)
777 bench_force_done();
778 }
779
main(int argc,char ** argv)780 int main(int argc, char **argv)
781 {
782 env.nr_cpus = get_nprocs();
783 parse_cmdline_args_init(argc, argv);
784
785 if (env.list) {
786 int i;
787
788 printf("Available benchmarks:\n");
789 for (i = 0; i < ARRAY_SIZE(benchs); i++) {
790 printf("- %s\n", benchs[i]->name);
791 }
792 return 0;
793 }
794
795 find_benchmark();
796 parse_cmdline_args_final(argc, argv);
797
798 setup_benchmark();
799
800 setup_timer();
801
802 pthread_mutex_lock(&bench_done_mtx);
803 pthread_cond_wait(&bench_done, &bench_done_mtx);
804 pthread_mutex_unlock(&bench_done_mtx);
805
806 if (bench->report_final)
807 /* skip first sample */
808 bench->report_final(state.results + env.warmup_sec,
809 state.res_cnt - env.warmup_sec);
810
811 return 0;
812 }
813