1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Arm Statistical Profiling Extensions (SPE) support 4 * Copyright (c) 2017-2018, Arm Ltd. 5 */ 6 7 #include <linux/kernel.h> 8 #include <linux/types.h> 9 #include <linux/bitops.h> 10 #include <linux/log2.h> 11 #include <linux/zalloc.h> 12 #include <time.h> 13 14 #include "../../../util/cpumap.h" 15 #include "../../../util/event.h" 16 #include "../../../util/evsel.h" 17 #include "../../../util/evsel_config.h" 18 #include "../../../util/evlist.h" 19 #include "../../../util/session.h" 20 #include <internal/lib.h> // page_size 21 #include "../../../util/pmu.h" 22 #include "../../../util/debug.h" 23 #include "../../../util/auxtrace.h" 24 #include "../../../util/record.h" 25 #include "../../../util/arm-spe.h" 26 #include <tools/libc_compat.h> // reallocarray 27 28 #define KiB(x) ((x) * 1024) 29 #define MiB(x) ((x) * 1024 * 1024) 30 31 struct arm_spe_recording { 32 struct auxtrace_record itr; 33 struct perf_pmu *arm_spe_pmu; 34 struct evlist *evlist; 35 int wrapped_cnt; 36 bool *wrapped; 37 }; 38 39 static size_t 40 arm_spe_info_priv_size(struct auxtrace_record *itr __maybe_unused, 41 struct evlist *evlist __maybe_unused) 42 { 43 return ARM_SPE_AUXTRACE_PRIV_SIZE; 44 } 45 46 static int arm_spe_info_fill(struct auxtrace_record *itr, 47 struct perf_session *session, 48 struct perf_record_auxtrace_info *auxtrace_info, 49 size_t priv_size) 50 { 51 struct arm_spe_recording *sper = 52 container_of(itr, struct arm_spe_recording, itr); 53 struct perf_pmu *arm_spe_pmu = sper->arm_spe_pmu; 54 55 if (priv_size != ARM_SPE_AUXTRACE_PRIV_SIZE) 56 return -EINVAL; 57 58 if (!session->evlist->core.nr_mmaps) 59 return -EINVAL; 60 61 auxtrace_info->type = PERF_AUXTRACE_ARM_SPE; 62 auxtrace_info->priv[ARM_SPE_PMU_TYPE] = arm_spe_pmu->type; 63 64 return 0; 65 } 66 67 static void 68 arm_spe_snapshot_resolve_auxtrace_defaults(struct record_opts *opts, 69 bool privileged) 70 { 71 /* 72 * The default snapshot size is the auxtrace mmap size. If neither auxtrace mmap size nor 73 * snapshot size is specified, then the default is 4MiB for privileged users, 128KiB for 74 * unprivileged users. 75 * 76 * The default auxtrace mmap size is 4MiB/page_size for privileged users, 128KiB for 77 * unprivileged users. If an unprivileged user does not specify mmap pages, the mmap pages 78 * will be reduced from the default 512KiB/page_size to 256KiB/page_size, otherwise the 79 * user is likely to get an error as they exceed their mlock limmit. 80 */ 81 82 /* 83 * No size were given to '-S' or '-m,', so go with the default 84 */ 85 if (!opts->auxtrace_snapshot_size && !opts->auxtrace_mmap_pages) { 86 if (privileged) { 87 opts->auxtrace_mmap_pages = MiB(4) / page_size; 88 } else { 89 opts->auxtrace_mmap_pages = KiB(128) / page_size; 90 if (opts->mmap_pages == UINT_MAX) 91 opts->mmap_pages = KiB(256) / page_size; 92 } 93 } else if (!opts->auxtrace_mmap_pages && !privileged && opts->mmap_pages == UINT_MAX) { 94 opts->mmap_pages = KiB(256) / page_size; 95 } 96 97 /* 98 * '-m,xyz' was specified but no snapshot size, so make the snapshot size as big as the 99 * auxtrace mmap area. 100 */ 101 if (!opts->auxtrace_snapshot_size) 102 opts->auxtrace_snapshot_size = opts->auxtrace_mmap_pages * (size_t)page_size; 103 104 /* 105 * '-Sxyz' was specified but no auxtrace mmap area, so make the auxtrace mmap area big 106 * enough to fit the requested snapshot size. 107 */ 108 if (!opts->auxtrace_mmap_pages) { 109 size_t sz = opts->auxtrace_snapshot_size; 110 111 sz = round_up(sz, page_size) / page_size; 112 opts->auxtrace_mmap_pages = roundup_pow_of_two(sz); 113 } 114 } 115 116 static __u64 arm_spe_pmu__sample_period(const struct perf_pmu *arm_spe_pmu) 117 { 118 static __u64 sample_period; 119 120 if (sample_period) 121 return sample_period; 122 123 /* 124 * If kernel driver doesn't advertise a minimum, 125 * use max allowable by PMSIDR_EL1.INTERVAL 126 */ 127 if (perf_pmu__scan_file(arm_spe_pmu, "caps/min_interval", "%llu", 128 &sample_period) != 1) { 129 pr_debug("arm_spe driver doesn't advertise a min. interval. Using 4096\n"); 130 sample_period = 4096; 131 } 132 return sample_period; 133 } 134 135 static int arm_spe_recording_options(struct auxtrace_record *itr, 136 struct evlist *evlist, 137 struct record_opts *opts) 138 { 139 struct arm_spe_recording *sper = 140 container_of(itr, struct arm_spe_recording, itr); 141 struct perf_pmu *arm_spe_pmu = sper->arm_spe_pmu; 142 struct evsel *evsel, *arm_spe_evsel = NULL; 143 struct perf_cpu_map *cpus = evlist->core.user_requested_cpus; 144 bool privileged = perf_event_paranoid_check(-1); 145 struct evsel *tracking_evsel; 146 int err; 147 u64 bit; 148 149 sper->evlist = evlist; 150 151 evlist__for_each_entry(evlist, evsel) { 152 if (evsel->core.attr.type == arm_spe_pmu->type) { 153 if (arm_spe_evsel) { 154 pr_err("There may be only one " ARM_SPE_PMU_NAME "x event\n"); 155 return -EINVAL; 156 } 157 evsel->core.attr.freq = 0; 158 evsel->core.attr.sample_period = arm_spe_pmu__sample_period(arm_spe_pmu); 159 evsel->needs_auxtrace_mmap = true; 160 arm_spe_evsel = evsel; 161 opts->full_auxtrace = true; 162 } 163 } 164 165 if (!opts->full_auxtrace) 166 return 0; 167 168 /* 169 * we are in snapshot mode. 170 */ 171 if (opts->auxtrace_snapshot_mode) { 172 /* 173 * Command arguments '-Sxyz' and/or '-m,xyz' are missing, so fill those in with 174 * default values. 175 */ 176 if (!opts->auxtrace_snapshot_size || !opts->auxtrace_mmap_pages) 177 arm_spe_snapshot_resolve_auxtrace_defaults(opts, privileged); 178 179 /* 180 * Snapshot size can't be bigger than the auxtrace area. 181 */ 182 if (opts->auxtrace_snapshot_size > opts->auxtrace_mmap_pages * (size_t)page_size) { 183 pr_err("Snapshot size %zu must not be greater than AUX area tracing mmap size %zu\n", 184 opts->auxtrace_snapshot_size, 185 opts->auxtrace_mmap_pages * (size_t)page_size); 186 return -EINVAL; 187 } 188 189 /* 190 * Something went wrong somewhere - this shouldn't happen. 191 */ 192 if (!opts->auxtrace_snapshot_size || !opts->auxtrace_mmap_pages) { 193 pr_err("Failed to calculate default snapshot size and/or AUX area tracing mmap pages\n"); 194 return -EINVAL; 195 } 196 } 197 198 /* We are in full trace mode but '-m,xyz' wasn't specified */ 199 if (!opts->auxtrace_mmap_pages) { 200 if (privileged) { 201 opts->auxtrace_mmap_pages = MiB(4) / page_size; 202 } else { 203 opts->auxtrace_mmap_pages = KiB(128) / page_size; 204 if (opts->mmap_pages == UINT_MAX) 205 opts->mmap_pages = KiB(256) / page_size; 206 } 207 } 208 209 /* Validate auxtrace_mmap_pages */ 210 if (opts->auxtrace_mmap_pages) { 211 size_t sz = opts->auxtrace_mmap_pages * (size_t)page_size; 212 size_t min_sz = KiB(8); 213 214 if (sz < min_sz || !is_power_of_2(sz)) { 215 pr_err("Invalid mmap size for ARM SPE: must be at least %zuKiB and a power of 2\n", 216 min_sz / 1024); 217 return -EINVAL; 218 } 219 } 220 221 if (opts->auxtrace_snapshot_mode) 222 pr_debug2("%sx snapshot size: %zu\n", ARM_SPE_PMU_NAME, 223 opts->auxtrace_snapshot_size); 224 225 /* 226 * To obtain the auxtrace buffer file descriptor, the auxtrace event 227 * must come first. 228 */ 229 evlist__to_front(evlist, arm_spe_evsel); 230 231 /* 232 * In the case of per-cpu mmaps, sample CPU for AUX event; 233 * also enable the timestamp tracing for samples correlation. 234 */ 235 if (!perf_cpu_map__is_any_cpu_or_is_empty(cpus)) { 236 evsel__set_sample_bit(arm_spe_evsel, CPU); 237 evsel__set_config_if_unset(arm_spe_pmu, arm_spe_evsel, 238 "ts_enable", 1); 239 } 240 241 /* 242 * Set this only so that perf report knows that SPE generates memory info. It has no effect 243 * on the opening of the event or the SPE data produced. 244 */ 245 evsel__set_sample_bit(arm_spe_evsel, DATA_SRC); 246 247 /* 248 * The PHYS_ADDR flag does not affect the driver behaviour, it is used to 249 * inform that the resulting output's SPE samples contain physical addresses 250 * where applicable. 251 */ 252 bit = perf_pmu__format_bits(arm_spe_pmu, "pa_enable"); 253 if (arm_spe_evsel->core.attr.config & bit) 254 evsel__set_sample_bit(arm_spe_evsel, PHYS_ADDR); 255 256 /* Add dummy event to keep tracking */ 257 err = parse_event(evlist, "dummy:u"); 258 if (err) 259 return err; 260 261 tracking_evsel = evlist__last(evlist); 262 evlist__set_tracking_event(evlist, tracking_evsel); 263 264 tracking_evsel->core.attr.freq = 0; 265 tracking_evsel->core.attr.sample_period = 1; 266 267 /* In per-cpu case, always need the time of mmap events etc */ 268 if (!perf_cpu_map__is_any_cpu_or_is_empty(cpus)) { 269 evsel__set_sample_bit(tracking_evsel, TIME); 270 evsel__set_sample_bit(tracking_evsel, CPU); 271 272 /* also track task context switch */ 273 if (!record_opts__no_switch_events(opts)) 274 tracking_evsel->core.attr.context_switch = 1; 275 } 276 277 return 0; 278 } 279 280 static int arm_spe_parse_snapshot_options(struct auxtrace_record *itr __maybe_unused, 281 struct record_opts *opts, 282 const char *str) 283 { 284 unsigned long long snapshot_size = 0; 285 char *endptr; 286 287 if (str) { 288 snapshot_size = strtoull(str, &endptr, 0); 289 if (*endptr || snapshot_size > SIZE_MAX) 290 return -1; 291 } 292 293 opts->auxtrace_snapshot_mode = true; 294 opts->auxtrace_snapshot_size = snapshot_size; 295 296 return 0; 297 } 298 299 static int arm_spe_snapshot_start(struct auxtrace_record *itr) 300 { 301 struct arm_spe_recording *ptr = 302 container_of(itr, struct arm_spe_recording, itr); 303 struct evsel *evsel; 304 305 evlist__for_each_entry(ptr->evlist, evsel) { 306 if (evsel->core.attr.type == ptr->arm_spe_pmu->type) 307 return evsel__disable(evsel); 308 } 309 return -EINVAL; 310 } 311 312 static int arm_spe_snapshot_finish(struct auxtrace_record *itr) 313 { 314 struct arm_spe_recording *ptr = 315 container_of(itr, struct arm_spe_recording, itr); 316 struct evsel *evsel; 317 318 evlist__for_each_entry(ptr->evlist, evsel) { 319 if (evsel->core.attr.type == ptr->arm_spe_pmu->type) 320 return evsel__enable(evsel); 321 } 322 return -EINVAL; 323 } 324 325 static int arm_spe_alloc_wrapped_array(struct arm_spe_recording *ptr, int idx) 326 { 327 bool *wrapped; 328 int cnt = ptr->wrapped_cnt, new_cnt, i; 329 330 /* 331 * No need to allocate, so return early. 332 */ 333 if (idx < cnt) 334 return 0; 335 336 /* 337 * Make ptr->wrapped as big as idx. 338 */ 339 new_cnt = idx + 1; 340 341 /* 342 * Free'ed in arm_spe_recording_free(). 343 */ 344 wrapped = reallocarray(ptr->wrapped, new_cnt, sizeof(bool)); 345 if (!wrapped) 346 return -ENOMEM; 347 348 /* 349 * init new allocated values. 350 */ 351 for (i = cnt; i < new_cnt; i++) 352 wrapped[i] = false; 353 354 ptr->wrapped_cnt = new_cnt; 355 ptr->wrapped = wrapped; 356 357 return 0; 358 } 359 360 static bool arm_spe_buffer_has_wrapped(unsigned char *buffer, 361 size_t buffer_size, u64 head) 362 { 363 u64 i, watermark; 364 u64 *buf = (u64 *)buffer; 365 size_t buf_size = buffer_size; 366 367 /* 368 * Defensively handle the case where head might be continually increasing - if its value is 369 * equal or greater than the size of the ring buffer, then we can safely determine it has 370 * wrapped around. Otherwise, continue to detect if head might have wrapped. 371 */ 372 if (head >= buffer_size) 373 return true; 374 375 /* 376 * We want to look the very last 512 byte (chosen arbitrarily) in the ring buffer. 377 */ 378 watermark = buf_size - 512; 379 380 /* 381 * The value of head is somewhere within the size of the ring buffer. This can be that there 382 * hasn't been enough data to fill the ring buffer yet or the trace time was so long that 383 * head has numerically wrapped around. To find we need to check if we have data at the 384 * very end of the ring buffer. We can reliably do this because mmap'ed pages are zeroed 385 * out and there is a fresh mapping with every new session. 386 */ 387 388 /* 389 * head is less than 512 byte from the end of the ring buffer. 390 */ 391 if (head > watermark) 392 watermark = head; 393 394 /* 395 * Speed things up by using 64 bit transactions (see "u64 *buf" above) 396 */ 397 watermark /= sizeof(u64); 398 buf_size /= sizeof(u64); 399 400 /* 401 * If we find trace data at the end of the ring buffer, head has been there and has 402 * numerically wrapped around at least once. 403 */ 404 for (i = watermark; i < buf_size; i++) 405 if (buf[i]) 406 return true; 407 408 return false; 409 } 410 411 static int arm_spe_find_snapshot(struct auxtrace_record *itr, int idx, 412 struct auxtrace_mmap *mm, unsigned char *data, 413 u64 *head, u64 *old) 414 { 415 int err; 416 bool wrapped; 417 struct arm_spe_recording *ptr = 418 container_of(itr, struct arm_spe_recording, itr); 419 420 /* 421 * Allocate memory to keep track of wrapping if this is the first 422 * time we deal with this *mm. 423 */ 424 if (idx >= ptr->wrapped_cnt) { 425 err = arm_spe_alloc_wrapped_array(ptr, idx); 426 if (err) 427 return err; 428 } 429 430 /* 431 * Check to see if *head has wrapped around. If it hasn't only the 432 * amount of data between *head and *old is snapshot'ed to avoid 433 * bloating the perf.data file with zeros. But as soon as *head has 434 * wrapped around the entire size of the AUX ring buffer it taken. 435 */ 436 wrapped = ptr->wrapped[idx]; 437 if (!wrapped && arm_spe_buffer_has_wrapped(data, mm->len, *head)) { 438 wrapped = true; 439 ptr->wrapped[idx] = true; 440 } 441 442 pr_debug3("%s: mmap index %d old head %zu new head %zu size %zu\n", 443 __func__, idx, (size_t)*old, (size_t)*head, mm->len); 444 445 /* 446 * No wrap has occurred, we can just use *head and *old. 447 */ 448 if (!wrapped) 449 return 0; 450 451 /* 452 * *head has wrapped around - adjust *head and *old to pickup the 453 * entire content of the AUX buffer. 454 */ 455 if (*head >= mm->len) { 456 *old = *head - mm->len; 457 } else { 458 *head += mm->len; 459 *old = *head - mm->len; 460 } 461 462 return 0; 463 } 464 465 static u64 arm_spe_reference(struct auxtrace_record *itr __maybe_unused) 466 { 467 struct timespec ts; 468 469 clock_gettime(CLOCK_MONOTONIC_RAW, &ts); 470 471 return ts.tv_sec ^ ts.tv_nsec; 472 } 473 474 static void arm_spe_recording_free(struct auxtrace_record *itr) 475 { 476 struct arm_spe_recording *sper = 477 container_of(itr, struct arm_spe_recording, itr); 478 479 zfree(&sper->wrapped); 480 free(sper); 481 } 482 483 struct auxtrace_record *arm_spe_recording_init(int *err, 484 struct perf_pmu *arm_spe_pmu) 485 { 486 struct arm_spe_recording *sper; 487 488 if (!arm_spe_pmu) { 489 *err = -ENODEV; 490 return NULL; 491 } 492 493 sper = zalloc(sizeof(struct arm_spe_recording)); 494 if (!sper) { 495 *err = -ENOMEM; 496 return NULL; 497 } 498 499 sper->arm_spe_pmu = arm_spe_pmu; 500 sper->itr.pmu = arm_spe_pmu; 501 sper->itr.snapshot_start = arm_spe_snapshot_start; 502 sper->itr.snapshot_finish = arm_spe_snapshot_finish; 503 sper->itr.find_snapshot = arm_spe_find_snapshot; 504 sper->itr.parse_snapshot_options = arm_spe_parse_snapshot_options; 505 sper->itr.recording_options = arm_spe_recording_options; 506 sper->itr.info_priv_size = arm_spe_info_priv_size; 507 sper->itr.info_fill = arm_spe_info_fill; 508 sper->itr.free = arm_spe_recording_free; 509 sper->itr.reference = arm_spe_reference; 510 sper->itr.read_finish = auxtrace_record__read_finish; 511 sper->itr.alignment = 0; 512 513 *err = 0; 514 return &sper->itr; 515 } 516 517 void 518 arm_spe_pmu_default_config(const struct perf_pmu *arm_spe_pmu, struct perf_event_attr *attr) 519 { 520 attr->sample_period = arm_spe_pmu__sample_period(arm_spe_pmu); 521 } 522