1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Intel Speed Select -- Enumerate and control features 4 * Copyright (c) 2019 Intel Corporation. 5 */ 6 7 #include <ctype.h> 8 #include <linux/isst_if.h> 9 10 #include "isst.h" 11 12 struct process_cmd_struct { 13 char *feature; 14 char *command; 15 void (*process_fn)(int arg); 16 int arg; 17 }; 18 19 static const char *version_str = "v1.26"; 20 21 static const int supported_api_ver = 3; 22 static struct isst_if_platform_info isst_platform_info; 23 static char *progname; 24 static int debug_flag; 25 static FILE *outf; 26 27 static int cpu_model; 28 static int cpu_stepping; 29 static int cpu_family; 30 31 #define MAX_CPUS_IN_ONE_REQ 512 32 static short max_target_cpus; 33 static unsigned short target_cpus[MAX_CPUS_IN_ONE_REQ]; 34 35 static int topo_max_cpus; 36 static size_t present_cpumask_size; 37 static cpu_set_t *present_cpumask; 38 static size_t target_cpumask_size; 39 static cpu_set_t *target_cpumask; 40 static int tdp_level = 0xFF; 41 static int fact_bucket = 0xFF; 42 static int fact_avx = 0xFF; 43 static unsigned long long fact_trl; 44 static int out_format_json; 45 static int cmd_help; 46 static int force_online_offline; 47 static int auto_mode; 48 static int fact_enable_fail; 49 static int cgroupv2; 50 static int max_pkg_id; 51 static int max_die_id; 52 static int max_die_id_package_0; 53 54 /* clos related */ 55 static int current_clos = -1; 56 static int clos_epp = -1; 57 static int clos_prop_prio = -1; 58 static int clos_min = -1; 59 static int clos_max = -1; 60 static int clos_desired = -1; 61 static int clos_priority_type; 62 static int cpu_0_cgroupv2; 63 static int cpu_0_workaround(int isolate); 64 65 struct _cpu_map { 66 unsigned short core_id; 67 unsigned short pkg_id; 68 unsigned short die_id; 69 unsigned short punit_id; 70 unsigned short punit_cpu; 71 unsigned short punit_cpu_core; 72 unsigned short initialized; 73 }; 74 struct _cpu_map *cpu_map; 75 76 struct cpu_topology { 77 short cpu; 78 short core_id; 79 short pkg_id; 80 short die_id; 81 }; 82 83 static int read_only; 84 85 static void print_version(void) 86 { 87 fprintf(outf, "Version %s\n", version_str); 88 } 89 90 static void check_privilege(void) 91 { 92 if (!read_only) 93 return; 94 95 isst_display_error_info_message(1, "Insufficient privileges", 0, 0); 96 isst_ctdp_display_information_end(outf); 97 exit(1); 98 } 99 100 FILE *get_output_file(void) 101 { 102 return outf; 103 } 104 105 int is_debug_enabled(void) 106 { 107 return debug_flag; 108 } 109 110 void debug_printf(const char *format, ...) 111 { 112 va_list args; 113 114 va_start(args, format); 115 116 if (debug_flag) 117 vprintf(format, args); 118 119 va_end(args); 120 } 121 122 123 int is_clx_n_platform(void) 124 { 125 if (cpu_model == 0x55) 126 if (cpu_stepping == 0x6 || cpu_stepping == 0x7) 127 return 1; 128 return 0; 129 } 130 131 int is_skx_based_platform(void) 132 { 133 if (cpu_model == 0x55) 134 return 1; 135 136 return 0; 137 } 138 139 int is_spr_platform(void) 140 { 141 if (cpu_model == 0x8F) 142 return 1; 143 144 return 0; 145 } 146 147 int is_emr_platform(void) 148 { 149 if (cpu_model == 0xCF) 150 return 1; 151 152 return 0; 153 } 154 155 156 int is_icx_platform(void) 157 { 158 if (cpu_model == 0x6A || cpu_model == 0x6C) 159 return 1; 160 161 return 0; 162 } 163 164 static int is_dmr_plus_platform(void) 165 { 166 if (cpu_family == 19) 167 return 1; 168 169 return 0; 170 } 171 172 static int update_cpu_model(void) 173 { 174 unsigned int ebx, ecx, edx; 175 unsigned int fms; 176 177 __cpuid(1, fms, ebx, ecx, edx); 178 cpu_family = (fms >> 8) & 0xf; 179 if (cpu_family == 0xf) 180 cpu_family += (fms >> 20) & 0xff; 181 cpu_model = (fms >> 4) & 0xf; 182 if (cpu_family == 6 || cpu_family == 0xf) 183 cpu_model += ((fms >> 16) & 0xf) << 4; 184 185 cpu_stepping = fms & 0xf; 186 /* only three CascadeLake-N models are supported */ 187 if (is_clx_n_platform()) { 188 FILE *fp; 189 size_t n = 0; 190 char *line = NULL; 191 int ret = 1; 192 193 fp = fopen("/proc/cpuinfo", "r"); 194 if (!fp) 195 err(-1, "cannot open /proc/cpuinfo\n"); 196 197 while (getline(&line, &n, fp) > 0) { 198 if (strstr(line, "model name")) { 199 if (strstr(line, "6252N") || 200 strstr(line, "6230N") || 201 strstr(line, "5218N")) 202 ret = 0; 203 break; 204 } 205 } 206 free(line); 207 fclose(fp); 208 return ret; 209 } 210 return 0; 211 } 212 213 int api_version(void) 214 { 215 return isst_platform_info.api_version; 216 } 217 218 /* Open a file, and exit on failure */ 219 static FILE *fopen_or_exit(const char *path, const char *mode) 220 { 221 FILE *filep = fopen(path, mode); 222 223 if (!filep) 224 err(1, "%s: open failed", path); 225 226 return filep; 227 } 228 229 /* Parse a file containing a single int */ 230 static int parse_int_file(int fatal, const char *fmt, ...) 231 { 232 va_list args; 233 char path[PATH_MAX]; 234 FILE *filep; 235 int value; 236 237 va_start(args, fmt); 238 vsnprintf(path, sizeof(path), fmt, args); 239 va_end(args); 240 if (fatal) { 241 filep = fopen_or_exit(path, "r"); 242 } else { 243 filep = fopen(path, "r"); 244 if (!filep) 245 return -1; 246 } 247 if (fscanf(filep, "%d", &value) != 1) 248 err(1, "%s: failed to parse number from file", path); 249 fclose(filep); 250 251 return value; 252 } 253 254 int cpufreq_sysfs_present(void) 255 { 256 DIR *dir; 257 258 dir = opendir("/sys/devices/system/cpu/cpu0/cpufreq"); 259 if (dir) { 260 closedir(dir); 261 return 1; 262 } 263 264 return 0; 265 } 266 267 int out_format_is_json(void) 268 { 269 return out_format_json; 270 } 271 272 static int get_stored_topology_info(int cpu, int *core_id, int *pkg_id, int *die_id) 273 { 274 const char *pathname = "/var/run/isst_cpu_topology.dat"; 275 struct cpu_topology cpu_top; 276 FILE *fp; 277 int ret; 278 279 fp = fopen(pathname, "rb"); 280 if (!fp) 281 return -1; 282 283 ret = fseek(fp, cpu * sizeof(cpu_top), SEEK_SET); 284 if (ret) 285 goto err_ret; 286 287 ret = fread(&cpu_top, sizeof(cpu_top), 1, fp); 288 if (ret != 1) { 289 ret = -1; 290 goto err_ret; 291 } 292 293 *pkg_id = cpu_top.pkg_id; 294 *core_id = cpu_top.core_id; 295 *die_id = cpu_top.die_id; 296 ret = 0; 297 298 err_ret: 299 fclose(fp); 300 301 return ret; 302 } 303 304 static void store_cpu_topology(void) 305 { 306 const char *pathname = "/var/run/isst_cpu_topology.dat"; 307 FILE *fp; 308 int i; 309 310 fp = fopen(pathname, "rb"); 311 if (fp) { 312 /* Mapping already exists */ 313 fclose(fp); 314 return; 315 } 316 317 fp = fopen(pathname, "wb"); 318 if (!fp) { 319 fprintf(stderr, "Can't create file:%s\n", pathname); 320 return; 321 } 322 323 fprintf(stderr, "Caching topology information\n"); 324 325 for (i = 0; i < topo_max_cpus; ++i) { 326 struct cpu_topology cpu_top; 327 328 cpu_top.core_id = parse_int_file(0, 329 "/sys/devices/system/cpu/cpu%d/topology/core_id", i); 330 if (cpu_top.core_id < 0) 331 cpu_top.core_id = -1; 332 333 cpu_top.pkg_id = parse_int_file(0, 334 "/sys/devices/system/cpu/cpu%d/topology/physical_package_id", i); 335 if (cpu_top.pkg_id < 0) 336 cpu_top.pkg_id = -1; 337 338 cpu_top.die_id = parse_int_file(0, 339 "/sys/devices/system/cpu/cpu%d/topology/die_id", i); 340 if (cpu_top.die_id < 0) 341 cpu_top.die_id = -1; 342 343 cpu_top.cpu = i; 344 345 if (fwrite(&cpu_top, sizeof(cpu_top), 1, fp) != 1) { 346 fprintf(stderr, "Can't write to:%s\n", pathname); 347 break; 348 } 349 } 350 351 fclose(fp); 352 } 353 354 static int get_physical_package_id(int cpu) 355 { 356 int ret; 357 358 if (cpu < 0) 359 return -1; 360 361 if (cpu_map && cpu_map[cpu].initialized) 362 return cpu_map[cpu].pkg_id; 363 364 ret = parse_int_file(0, 365 "/sys/devices/system/cpu/cpu%d/topology/physical_package_id", 366 cpu); 367 if (ret < 0) { 368 int core_id, pkg_id, die_id; 369 370 ret = get_stored_topology_info(cpu, &core_id, &pkg_id, &die_id); 371 if (!ret) 372 return pkg_id; 373 } 374 375 return ret; 376 } 377 378 static int get_physical_core_id(int cpu) 379 { 380 int ret; 381 382 if (cpu < 0) 383 return -1; 384 385 if (cpu_map && cpu_map[cpu].initialized) 386 return cpu_map[cpu].core_id; 387 388 ret = parse_int_file(0, 389 "/sys/devices/system/cpu/cpu%d/topology/core_id", 390 cpu); 391 if (ret < 0) { 392 int core_id, pkg_id, die_id; 393 394 ret = get_stored_topology_info(cpu, &core_id, &pkg_id, &die_id); 395 if (!ret) 396 return core_id; 397 } 398 399 return ret; 400 } 401 402 static int get_physical_die_id(int cpu) 403 { 404 int ret; 405 406 if (cpu < 0) 407 return -1; 408 409 if (cpu_map && cpu_map[cpu].initialized) 410 return cpu_map[cpu].die_id; 411 412 ret = parse_int_file(0, 413 "/sys/devices/system/cpu/cpu%d/topology/die_id", 414 cpu); 415 if (ret < 0) { 416 int core_id, pkg_id, die_id; 417 418 ret = get_stored_topology_info(cpu, &core_id, &pkg_id, &die_id); 419 if (!ret) { 420 if (die_id < 0) 421 die_id = 0; 422 423 return die_id; 424 } 425 } 426 427 if (ret < 0) 428 ret = 0; 429 430 return ret; 431 } 432 433 static int get_physical_punit_id(int cpu) 434 { 435 if (cpu < 0) 436 return -1; 437 438 if (cpu_map && cpu_map[cpu].initialized) 439 return cpu_map[cpu].punit_id; 440 441 return -1; 442 } 443 444 void set_isst_id(struct isst_id *id, int cpu) 445 { 446 id->cpu = cpu; 447 448 id->pkg = get_physical_package_id(cpu); 449 if (id->pkg >= MAX_PACKAGE_COUNT) 450 id->pkg = -1; 451 452 id->die = get_physical_die_id(cpu); 453 if (id->die >= MAX_DIE_PER_PACKAGE) 454 id->die = -1; 455 456 id->punit = get_physical_punit_id(cpu); 457 if (id->punit >= MAX_PUNIT_PER_DIE) 458 id->punit = -1; 459 } 460 461 int is_cpu_in_power_domain(int cpu, struct isst_id *id) 462 { 463 struct isst_id tid; 464 465 set_isst_id(&tid, cpu); 466 467 if (id->pkg == tid.pkg && id->die == tid.die && id->punit == tid.punit) 468 return 1; 469 470 return 0; 471 } 472 473 int get_cpufreq_base_freq(int cpu) 474 { 475 return parse_int_file(0, "/sys/devices/system/cpu/cpu%d/cpufreq/base_frequency", cpu); 476 } 477 478 int get_topo_max_cpus(void) 479 { 480 return topo_max_cpus; 481 } 482 483 static unsigned int is_cpu_online(int cpu) 484 { 485 char buffer[128]; 486 int fd, ret; 487 unsigned char online; 488 489 snprintf(buffer, sizeof(buffer), 490 "/sys/devices/system/cpu/cpu%d/online", cpu); 491 492 fd = open(buffer, O_RDONLY); 493 if (fd < 0) 494 return fd; 495 496 ret = read(fd, &online, sizeof(online)); 497 close(fd); 498 499 if (ret == -1) 500 return ret; 501 502 if (online == '1') 503 online = 1; 504 else 505 online = 0; 506 507 return online; 508 } 509 510 void set_cpu_online_offline(int cpu, int state) 511 { 512 char buffer[128]; 513 int fd, ret; 514 515 if (cpu_0_cgroupv2 && !cpu) { 516 fprintf(stderr, "Will use cgroup v2 for CPU 0\n"); 517 cpu_0_workaround(!state); 518 return; 519 } 520 521 snprintf(buffer, sizeof(buffer), 522 "/sys/devices/system/cpu/cpu%d/online", cpu); 523 524 fd = open(buffer, O_WRONLY); 525 if (fd < 0) { 526 if (!cpu) { 527 fprintf(stderr, "This system is not configured for CPU 0 online/offline\n"); 528 fprintf(stderr, "Will use cgroup v2\n"); 529 cpu_0_workaround(!state); 530 return; 531 } 532 err(-1, "%s open failed", buffer); 533 } 534 535 if (state) 536 ret = write(fd, "1\n", 2); 537 else 538 ret = write(fd, "0\n", 2); 539 540 if (ret == -1) 541 perror("Online/Offline: Operation failed\n"); 542 543 close(fd); 544 } 545 546 static void force_all_cpus_online(void) 547 { 548 int i; 549 550 fprintf(stderr, "Forcing all CPUs online\n"); 551 552 for (i = 0; i < topo_max_cpus; ++i) 553 set_cpu_online_offline(i, 1); 554 555 unlink("/var/run/isst_cpu_topology.dat"); 556 } 557 558 void for_each_online_power_domain_in_set(void (*callback)(struct isst_id *, void *, void *, 559 void *, void *), 560 void *arg1, void *arg2, void *arg3, 561 void *arg4) 562 { 563 struct isst_id id; 564 int cpus[MAX_PACKAGE_COUNT][MAX_DIE_PER_PACKAGE][MAX_PUNIT_PER_DIE]; 565 int valid_mask[MAX_PACKAGE_COUNT][MAX_DIE_PER_PACKAGE] = {0}; 566 int i, j, k; 567 568 memset(cpus, -1, sizeof(cpus)); 569 570 for (i = 0; i < topo_max_cpus; ++i) { 571 int online; 572 573 if (!CPU_ISSET_S(i, present_cpumask_size, present_cpumask)) 574 continue; 575 576 online = parse_int_file( 577 i != 0, "/sys/devices/system/cpu/cpu%d/online", i); 578 if (online < 0) 579 online = 1; /* online entry for CPU 0 needs some special configs */ 580 581 if (!online) 582 continue; 583 584 set_isst_id(&id, i); 585 586 if (id.pkg < 0 || id.die < 0 || id.punit < 0) 587 continue; 588 589 id.die = id.die % (max_die_id_package_0 + 1); 590 591 valid_mask[id.pkg][id.die] = 1; 592 593 if (cpus[id.pkg][id.die][id.punit] == -1) 594 cpus[id.pkg][id.die][id.punit] = i; 595 } 596 597 for (i = 0; i < MAX_PACKAGE_COUNT; i++) { 598 if (max_die_id > max_pkg_id) { 599 for (k = 0; k < MAX_PUNIT_PER_DIE && k < MAX_DIE_PER_PACKAGE; k++) { 600 id.cpu = cpus[i][k][k]; 601 id.pkg = i; 602 id.die = get_physical_die_id(id.cpu); 603 id.punit = k; 604 if (isst_is_punit_valid(&id)) 605 callback(&id, arg1, arg2, arg3, arg4); 606 } 607 continue; 608 } 609 610 for (j = 0; j < MAX_DIE_PER_PACKAGE; j++) { 611 /* 612 * Fix me: 613 * How to check a non-cpu die for a package/die with all cpu offlined? 614 */ 615 if (!valid_mask[i][j]) 616 continue; 617 for (k = 0; k < MAX_PUNIT_PER_DIE; k++) { 618 id.cpu = cpus[i][j][k]; 619 id.pkg = i; 620 if (id.cpu >= 0) 621 id.die = get_physical_die_id(id.cpu); 622 else 623 id.die = id.pkg; 624 id.punit = k; 625 if (isst_is_punit_valid(&id)) 626 callback(&id, arg1, arg2, arg3, arg4); 627 } 628 } 629 } 630 } 631 632 static void for_each_online_target_cpu_in_set( 633 void (*callback)(struct isst_id *, void *, void *, void *, void *), void *arg1, 634 void *arg2, void *arg3, void *arg4) 635 { 636 int i, found = 0; 637 struct isst_id id; 638 639 for (i = 0; i < topo_max_cpus; ++i) { 640 int online; 641 642 if (!CPU_ISSET_S(i, target_cpumask_size, target_cpumask)) 643 continue; 644 if (i) 645 online = parse_int_file( 646 1, "/sys/devices/system/cpu/cpu%d/online", i); 647 else 648 online = 649 1; /* online entry for CPU 0 needs some special configs */ 650 651 set_isst_id(&id, i); 652 if (online && callback) { 653 callback(&id, arg1, arg2, arg3, arg4); 654 found = 1; 655 } 656 } 657 658 if (!found) 659 fprintf(stderr, "No valid CPU in the list\n"); 660 } 661 662 #define BITMASK_SIZE 32 663 static void set_max_cpu_num(void) 664 { 665 FILE *filep; 666 unsigned long dummy; 667 int i; 668 669 topo_max_cpus = 0; 670 for (i = 0; i < 256; ++i) { 671 char path[256]; 672 673 snprintf(path, sizeof(path), 674 "/sys/devices/system/cpu/cpu%d/topology/thread_siblings", i); 675 filep = fopen(path, "r"); 676 if (filep) 677 break; 678 } 679 680 if (!filep) { 681 fprintf(stderr, "Can't get max cpu number\n"); 682 exit(0); 683 } 684 685 while (fscanf(filep, "%lx,", &dummy) == 1) 686 topo_max_cpus += BITMASK_SIZE; 687 fclose(filep); 688 689 debug_printf("max cpus %d\n", topo_max_cpus); 690 } 691 692 size_t alloc_cpu_set(cpu_set_t **cpu_set) 693 { 694 cpu_set_t *_cpu_set; 695 size_t size; 696 697 _cpu_set = CPU_ALLOC((topo_max_cpus + 1)); 698 if (_cpu_set == NULL) 699 err(3, "CPU_ALLOC"); 700 size = CPU_ALLOC_SIZE((topo_max_cpus + 1)); 701 CPU_ZERO_S(size, _cpu_set); 702 703 *cpu_set = _cpu_set; 704 return size; 705 } 706 707 void free_cpu_set(cpu_set_t *cpu_set) 708 { 709 CPU_FREE(cpu_set); 710 } 711 712 static int cpu_cnt[MAX_PACKAGE_COUNT][MAX_DIE_PER_PACKAGE][MAX_PUNIT_PER_DIE]; 713 714 int get_max_punit_core_id(struct isst_id *id) 715 { 716 int max_id = 0; 717 int i; 718 719 for (i = 0; i < topo_max_cpus; ++i) 720 { 721 if (!CPU_ISSET_S(i, present_cpumask_size, present_cpumask)) 722 continue; 723 724 if (is_cpu_in_power_domain(i, id) && 725 cpu_map[i].punit_cpu_core > max_id) 726 max_id = cpu_map[i].punit_cpu_core; 727 } 728 729 return max_id; 730 } 731 732 int get_cpu_count(struct isst_id *id) 733 { 734 if (id->pkg < 0 || id->die < 0 || id->punit < 0) 735 return 0; 736 737 return cpu_cnt[id->pkg][id->die][id->punit]; 738 } 739 740 static void update_punit_cpu_info(__u32 physical_cpu, struct _cpu_map *cpu_map) 741 { 742 if (api_version() > 1) { 743 /* 744 * MSR 0x54 format 745 * [15:11] PM_DOMAIN_ID 746 * [10:3] MODULE_ID (aka IDI_AGENT_ID) 747 * [2:0] LP_ID (We don't care about these bits we only 748 * care die and core id 749 * For Atom: 750 * [2] Always 0 751 * [1:0] core ID within module 752 * For Core 753 * [2:1] Always 0 754 * [0] thread ID 755 */ 756 cpu_map->punit_id = (physical_cpu >> 11) & 0x1f; 757 cpu_map->punit_cpu_core = (physical_cpu >> 3) & 0xff; 758 cpu_map->punit_cpu = physical_cpu & 0x7ff; 759 } else { 760 int punit_id; 761 762 /* 763 * MSR 0x53 format 764 * Format 765 * Bit 0 – thread ID 766 * Bit 8:1 – core ID 767 * Bit 13:9 – punit ID 768 */ 769 cpu_map->punit_cpu = physical_cpu & 0x1ff; 770 cpu_map->punit_cpu_core = (cpu_map->punit_cpu >> 1); // shift to get core id 771 punit_id = (physical_cpu >> 9) & 0x1f; 772 773 if (punit_id >= MAX_PUNIT_PER_DIE) 774 punit_id = 0; 775 776 cpu_map->punit_id = punit_id; 777 } 778 } 779 780 static void create_cpu_map(void) 781 { 782 const char *pathname = "/dev/isst_interface"; 783 size_t size; 784 DIR *dir; 785 int i, fd = 0; 786 struct isst_if_cpu_maps map; 787 788 /* Use calloc to make sure the memory is initialized to Zero */ 789 cpu_map = calloc(topo_max_cpus, sizeof(*cpu_map)); 790 if (!cpu_map) 791 err(3, "cpumap"); 792 793 fd = open(pathname, O_RDWR); 794 if (fd < 0 && !is_clx_n_platform()) 795 err(-1, "%s open failed", pathname); 796 797 size = alloc_cpu_set(&present_cpumask); 798 present_cpumask_size = size; 799 800 for (i = 0; i < topo_max_cpus; ++i) { 801 char buffer[256]; 802 int pkg_id, die_id, core_id, punit_id; 803 804 /* check if CPU is online */ 805 snprintf(buffer, sizeof(buffer), 806 "/sys/devices/system/cpu/cpu%d", i); 807 dir = opendir(buffer); 808 if (!dir) 809 continue; 810 closedir(dir); 811 812 CPU_SET_S(i, size, present_cpumask); 813 814 pkg_id = get_physical_package_id(i); 815 die_id = get_physical_die_id(i); 816 core_id = get_physical_core_id(i); 817 818 if (pkg_id < 0 || die_id < 0 || core_id < 0) 819 continue; 820 821 cpu_map[i].pkg_id = pkg_id; 822 cpu_map[i].die_id = die_id; 823 cpu_map[i].core_id = core_id; 824 825 if (max_pkg_id < pkg_id) 826 max_pkg_id = pkg_id; 827 828 punit_id = 0; 829 830 if (fd >= 0) { 831 map.cmd_count = 1; 832 map.cpu_map[0].logical_cpu = i; 833 debug_printf(" map logical_cpu:%d\n", 834 map.cpu_map[0].logical_cpu); 835 if (ioctl(fd, ISST_IF_GET_PHY_ID, &map) == -1) { 836 perror("ISST_IF_GET_PHY_ID"); 837 fprintf(outf, "Error: map logical_cpu:%d\n", 838 map.cpu_map[0].logical_cpu); 839 } else { 840 update_punit_cpu_info(map.cpu_map[0].physical_cpu, &cpu_map[i]); 841 punit_id = cpu_map[i].punit_id; 842 } 843 } 844 cpu_map[i].initialized = 1; 845 846 cpu_cnt[pkg_id][die_id][punit_id]++; 847 848 if (max_die_id < die_id) 849 max_die_id = die_id; 850 851 if (!pkg_id && max_die_id_package_0 < die_id) 852 max_die_id_package_0 = die_id; 853 854 debug_printf( 855 "map logical_cpu:%d core: %d die:%d pkg:%d punit:%d punit_cpu:%d punit_core:%d\n", 856 i, cpu_map[i].core_id, cpu_map[i].die_id, 857 cpu_map[i].pkg_id, cpu_map[i].punit_id, 858 cpu_map[i].punit_cpu, cpu_map[i].punit_cpu_core); 859 } 860 if (fd >= 0) 861 close(fd); 862 863 size = alloc_cpu_set(&target_cpumask); 864 target_cpumask_size = size; 865 for (i = 0; i < max_target_cpus; ++i) { 866 if (!CPU_ISSET_S(target_cpus[i], present_cpumask_size, 867 present_cpumask)) 868 continue; 869 870 CPU_SET_S(target_cpus[i], size, target_cpumask); 871 } 872 } 873 874 void set_cpu_mask_from_punit_coremask(struct isst_id *id, unsigned long long core_mask, 875 size_t core_cpumask_size, 876 cpu_set_t *core_cpumask, int *cpu_cnt) 877 { 878 int i, cnt = 0; 879 880 if (id->cpu < 0) 881 return; 882 883 *cpu_cnt = 0; 884 885 for (i = 0; i < 64; ++i) { 886 if (core_mask & BIT_ULL(i)) { 887 int j; 888 889 for (j = 0; j < topo_max_cpus; ++j) { 890 if (!CPU_ISSET_S(j, present_cpumask_size, present_cpumask)) 891 continue; 892 893 if (is_cpu_in_power_domain(j, id) && 894 cpu_map[j].punit_cpu_core == i) { 895 CPU_SET_S(j, core_cpumask_size, 896 core_cpumask); 897 ++cnt; 898 } 899 } 900 } 901 } 902 903 *cpu_cnt = cnt; 904 } 905 906 int find_phy_core_num(int logical_cpu) 907 { 908 if (logical_cpu < topo_max_cpus) 909 return cpu_map[logical_cpu].punit_cpu_core; 910 911 return -EINVAL; 912 } 913 914 int use_cgroupv2(void) 915 { 916 return cgroupv2; 917 } 918 919 int enable_cpuset_controller(void) 920 { 921 int fd, ret; 922 923 fd = open("/sys/fs/cgroup/cgroup.subtree_control", O_RDWR, 0); 924 if (fd < 0) { 925 debug_printf("Can't activate cpuset controller\n"); 926 debug_printf("Either you are not root user or CGroup v2 is not supported\n"); 927 return fd; 928 } 929 930 ret = write(fd, " +cpuset", strlen(" +cpuset")); 931 close(fd); 932 933 if (ret == -1) { 934 debug_printf("Can't activate cpuset controller: Write failed\n"); 935 return ret; 936 } 937 938 return 0; 939 } 940 941 int isolate_cpus(struct isst_id *id, int mask_size, cpu_set_t *cpu_mask, int level, int cpu_0_only) 942 { 943 int i, first, curr_index, index, ret, fd; 944 static char str[512], dir_name[64]; 945 static char cpuset_cpus[128]; 946 int str_len = sizeof(str); 947 DIR *dir; 948 949 snprintf(dir_name, sizeof(dir_name), "/sys/fs/cgroup/%d-%d-%d", id->pkg, id->die, id->punit); 950 dir = opendir(dir_name); 951 if (!dir) { 952 ret = mkdir(dir_name, 0744); 953 if (ret) { 954 debug_printf("Can't create dir:%s errno:%d\n", dir_name, errno); 955 return ret; 956 } 957 } 958 closedir(dir); 959 960 if (!level) { 961 sprintf(cpuset_cpus, "%s/cpuset.cpus.partition", dir_name); 962 963 fd = open(cpuset_cpus, O_RDWR, 0); 964 if (fd < 0) { 965 return fd; 966 } 967 968 ret = write(fd, "member", strlen("member")); 969 if (ret == -1) { 970 printf("Can't update to member\n"); 971 close(fd); 972 return ret; 973 } 974 975 close(fd); 976 return 0; 977 } 978 979 if (!CPU_COUNT_S(mask_size, cpu_mask)) { 980 return -1; 981 } 982 983 curr_index = 0; 984 first = 1; 985 str[0] = '\0'; 986 987 if (cpu_0_only) { 988 snprintf(str, str_len, "0"); 989 goto create_partition; 990 } 991 992 for (i = 0; i < get_topo_max_cpus(); ++i) { 993 if (!is_cpu_in_power_domain(i, id)) 994 continue; 995 996 if (CPU_ISSET_S(i, mask_size, cpu_mask)) 997 continue; 998 999 if (!first) { 1000 index = snprintf(&str[curr_index], 1001 str_len - curr_index, ","); 1002 curr_index += index; 1003 if (curr_index >= str_len) 1004 break; 1005 } 1006 index = snprintf(&str[curr_index], str_len - curr_index, "%d", 1007 i); 1008 curr_index += index; 1009 if (curr_index >= str_len) 1010 break; 1011 first = 0; 1012 } 1013 1014 create_partition: 1015 debug_printf("isolated CPUs list: package:%d curr_index:%d [%s]\n", id->pkg, curr_index ,str); 1016 1017 snprintf(cpuset_cpus, sizeof(cpuset_cpus), "%s/cpuset.cpus", dir_name); 1018 1019 fd = open(cpuset_cpus, O_RDWR, 0); 1020 if (fd < 0) { 1021 return fd; 1022 } 1023 1024 ret = write(fd, str, strlen(str)); 1025 close(fd); 1026 1027 if (ret == -1) { 1028 debug_printf("Can't activate cpuset controller: Write failed\n"); 1029 return ret; 1030 } 1031 1032 snprintf(cpuset_cpus, sizeof(cpuset_cpus), "%s/cpuset.cpus.partition", dir_name); 1033 1034 fd = open(cpuset_cpus, O_RDWR, 0); 1035 if (fd < 0) { 1036 return fd; 1037 } 1038 1039 ret = write(fd, "isolated", strlen("isolated")); 1040 if (ret == -1) { 1041 debug_printf("Can't update to isolated\n"); 1042 ret = write(fd, "root", strlen("root")); 1043 if (ret == -1) 1044 debug_printf("Can't update to root\n"); 1045 } 1046 1047 close(fd); 1048 1049 if (ret < 0) 1050 return ret; 1051 1052 return 0; 1053 } 1054 1055 static int cpu_0_workaround(int isolate) 1056 { 1057 int fd, fd1, len, ret; 1058 cpu_set_t cpu_mask; 1059 struct isst_id id; 1060 char str[2]; 1061 1062 debug_printf("isolate CPU 0 state: %d\n", isolate); 1063 1064 if (isolate) 1065 goto isolate; 1066 1067 /* First check if CPU 0 was isolated to remove isolation. */ 1068 1069 /* If the cpuset.cpus doesn't exist, that means that none of the CPUs are isolated*/ 1070 fd = open("/sys/fs/cgroup/0-0-0/cpuset.cpus", O_RDONLY, 0); 1071 if (fd < 0) 1072 return 0; 1073 1074 len = read(fd, str, sizeof(str)); 1075 /* Error check, but unlikely to fail. If fails that means that not isolated */ 1076 if (len == -1) 1077 return 0; 1078 1079 1080 /* Is CPU 0 is in isolate list, the display is sorted so first element will be CPU 0*/ 1081 if (str[0] != '0') { 1082 close(fd); 1083 return 0; 1084 } 1085 1086 fd1 = open("/sys/fs/cgroup/0-0-0/cpuset.cpus.partition", O_RDONLY, 0); 1087 /* Unlikely that, this attribute is not present, but handle error */ 1088 if (fd1 < 0) { 1089 close(fd); 1090 return 0; 1091 } 1092 1093 /* Is CPU 0 already changed partition to "member" */ 1094 len = read(fd1, str, sizeof(str)); 1095 if (len != -1 && str[0] == 'm') { 1096 close(fd1); 1097 close(fd); 1098 return 0; 1099 } 1100 1101 close(fd1); 1102 close(fd); 1103 1104 debug_printf("CPU 0 was isolated before, so remove isolation\n"); 1105 1106 isolate: 1107 ret = enable_cpuset_controller(); 1108 if (ret) 1109 goto isolate_fail; 1110 1111 CPU_ZERO(&cpu_mask); 1112 memset(&id, 0, sizeof(struct isst_id)); 1113 CPU_SET(0, &cpu_mask); 1114 1115 ret = isolate_cpus(&id, sizeof(cpu_mask), &cpu_mask, isolate, 1); 1116 isolate_fail: 1117 if (ret) 1118 fprintf(stderr, "Can't isolate CPU 0\n"); 1119 1120 return ret; 1121 } 1122 1123 static int isst_fill_platform_info(void) 1124 { 1125 const char *pathname = "/dev/isst_interface"; 1126 int fd; 1127 1128 if (is_clx_n_platform()) { 1129 isst_platform_info.api_version = 1; 1130 goto set_platform_ops; 1131 } 1132 1133 fd = open(pathname, O_RDWR); 1134 if (fd < 0) 1135 err(-1, "%s open failed", pathname); 1136 1137 if (ioctl(fd, ISST_IF_GET_PLATFORM_INFO, &isst_platform_info) == -1) { 1138 perror("ISST_IF_GET_PLATFORM_INFO"); 1139 close(fd); 1140 return -1; 1141 } 1142 1143 close(fd); 1144 1145 if (isst_platform_info.api_version > supported_api_ver) { 1146 print_version(); 1147 printf("Incompatible API versions; Upgrade of tool is required\n"); 1148 exit(1); 1149 } 1150 1151 set_platform_ops: 1152 if (isst_set_platform_ops(isst_platform_info.api_version)) { 1153 fprintf(stderr, "Failed to set platform callbacks\n"); 1154 exit(0); 1155 } 1156 return 0; 1157 } 1158 1159 void get_isst_status(struct isst_id *id, void *arg1, void *arg2, void *arg3, void *arg4) 1160 { 1161 struct isst_pkg_ctdp pkg_dev; 1162 struct isst_id *tid = (struct isst_id *)arg2; 1163 int *mask = (int *)arg3; 1164 int *max_level = (int *)arg4; 1165 int j, ret; 1166 1167 /* Only check the first cpu power domain */ 1168 if (id->cpu < 0 || tid->cpu >= 0) 1169 return; 1170 1171 ret = isst_get_ctdp_levels(id, &pkg_dev); 1172 if (ret) 1173 return; 1174 1175 if (pkg_dev.enabled) 1176 *mask |= BIT(0); 1177 1178 if (pkg_dev.locked) 1179 *mask |= BIT(1); 1180 1181 if (*max_level < pkg_dev.levels) 1182 *max_level = pkg_dev.levels; 1183 1184 for (j = 0; j <= pkg_dev.levels; ++j) { 1185 struct isst_pkg_ctdp_level_info ctdp_level; 1186 1187 ret = isst_get_ctdp_control(id, j, &ctdp_level); 1188 if (ret) 1189 continue; 1190 1191 if (ctdp_level.fact_support) 1192 *mask |= BIT(2); 1193 1194 if (ctdp_level.pbf_support) 1195 *mask |= BIT(3); 1196 } 1197 1198 tid->cpu = id->cpu; 1199 tid->pkg = id->pkg; 1200 tid->die = id->die; 1201 tid->punit = id->punit; 1202 } 1203 1204 static void isst_print_extended_platform_info(void) 1205 { 1206 int cp_state, cp_cap; 1207 struct isst_id id; 1208 int mask = 0, max_level = 0; 1209 1210 id.cpu = -1; 1211 for_each_online_power_domain_in_set(get_isst_status, NULL, &id, &mask, &max_level); 1212 1213 if (mask & BIT(0)) { 1214 fprintf(outf, "Intel(R) SST-PP (feature perf-profile) is supported\n"); 1215 } else { 1216 fprintf(outf, "Intel(R) SST-PP (feature perf-profile) is not supported\n"); 1217 fprintf(outf, "Only performance level 0 (base level) is present\n"); 1218 } 1219 1220 if (mask & BIT(1)) 1221 fprintf(outf, "TDP level change control is locked\n"); 1222 else 1223 fprintf(outf, "TDP level change control is unlocked, max level: %d\n", max_level); 1224 1225 if (mask & BIT(2)) 1226 fprintf(outf, "Intel(R) SST-TF (feature turbo-freq) is supported\n"); 1227 else 1228 fprintf(outf, "Intel(R) SST-TF (feature turbo-freq) is not supported\n"); 1229 1230 if (mask & BIT(3)) 1231 fprintf(outf, "Intel(R) SST-BF (feature base-freq) is supported\n"); 1232 else 1233 fprintf(outf, "Intel(R) SST-BF (feature base-freq) is not supported\n"); 1234 1235 if (isst_read_pm_config(&id, &cp_state, &cp_cap)) { 1236 fprintf(outf, "Intel(R) SST-CP (feature core-power) status is unknown\n"); 1237 return; 1238 } 1239 1240 if (cp_cap) 1241 fprintf(outf, "Intel(R) SST-CP (feature core-power) is supported\n"); 1242 else 1243 fprintf(outf, "Intel(R) SST-CP (feature core-power) is not supported\n"); 1244 } 1245 1246 static void isst_print_platform_information(void) 1247 { 1248 if (is_clx_n_platform()) { 1249 fprintf(stderr, "\nThis option in not supported on this platform\n"); 1250 exit(0); 1251 } 1252 1253 /* Early initialization to create working cpu_map */ 1254 set_max_cpu_num(); 1255 create_cpu_map(); 1256 1257 fprintf(outf, "Platform: API version : %d\n", 1258 isst_platform_info.api_version); 1259 fprintf(outf, "Platform: Driver version : %d\n", 1260 isst_platform_info.driver_version); 1261 fprintf(outf, "Platform: mbox supported : %d\n", 1262 isst_platform_info.mbox_supported); 1263 fprintf(outf, "Platform: mmio supported : %d\n", 1264 isst_platform_info.mmio_supported); 1265 isst_print_extended_platform_info(); 1266 1267 exit(0); 1268 } 1269 1270 static char *local_str0, *local_str1; 1271 static void exec_on_get_ctdp_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 1272 void *arg4) 1273 { 1274 int (*fn_ptr)(struct isst_id *id, void *arg); 1275 int ret; 1276 1277 fn_ptr = arg1; 1278 ret = fn_ptr(id, arg2); 1279 if (ret) 1280 isst_display_error_info_message(1, "get_tdp_* failed", 0, 0); 1281 else 1282 isst_ctdp_display_core_info(id, outf, arg3, 1283 *(unsigned int *)arg4, 1284 local_str0, local_str1); 1285 } 1286 1287 #define _get_tdp_level(desc, suffix, object, help, str0, str1) \ 1288 static void get_tdp_##object(int arg) \ 1289 { \ 1290 struct isst_pkg_ctdp ctdp; \ 1291 \ 1292 if (cmd_help) { \ 1293 fprintf(stderr, \ 1294 "Print %s [No command arguments are required]\n", \ 1295 help); \ 1296 exit(0); \ 1297 } \ 1298 local_str0 = str0; \ 1299 local_str1 = str1; \ 1300 isst_ctdp_display_information_start(outf); \ 1301 if (max_target_cpus) \ 1302 for_each_online_target_cpu_in_set( \ 1303 exec_on_get_ctdp_cpu, isst_get_ctdp_##suffix, \ 1304 &ctdp, desc, &ctdp.object); \ 1305 else \ 1306 for_each_online_power_domain_in_set(exec_on_get_ctdp_cpu, \ 1307 isst_get_ctdp_##suffix, \ 1308 &ctdp, desc, \ 1309 &ctdp.object); \ 1310 isst_ctdp_display_information_end(outf); \ 1311 } 1312 1313 _get_tdp_level("get-config-levels", levels, levels, "Max TDP level", NULL, NULL); 1314 _get_tdp_level("get-config-version", levels, version, "TDP version", NULL, NULL); 1315 _get_tdp_level("get-config-enabled", levels, enabled, "perf-profile enable status", "disabled", "enabled"); 1316 _get_tdp_level("get-config-current_level", levels, current_level, 1317 "Current TDP Level", NULL, NULL); 1318 _get_tdp_level("get-lock-status", levels, locked, "TDP lock status", "unlocked", "locked"); 1319 1320 struct isst_pkg_ctdp clx_n_pkg_dev; 1321 1322 static int clx_n_get_base_ratio(void) 1323 { 1324 FILE *fp; 1325 char *begin, *end, *line = NULL; 1326 char number[5]; 1327 float value = 0; 1328 size_t n = 0; 1329 1330 fp = fopen("/proc/cpuinfo", "r"); 1331 if (!fp) 1332 err(-1, "cannot open /proc/cpuinfo\n"); 1333 1334 while (getline(&line, &n, fp) > 0) { 1335 if (strstr(line, "model name")) { 1336 /* this is true for CascadeLake-N */ 1337 begin = strstr(line, "@ ") + 2; 1338 end = strstr(line, "GHz"); 1339 strncpy(number, begin, end - begin); 1340 value = atof(number) * 10; 1341 break; 1342 } 1343 } 1344 free(line); 1345 fclose(fp); 1346 1347 return (int)(value); 1348 } 1349 1350 static int clx_n_config(struct isst_id *id) 1351 { 1352 int i, ret; 1353 unsigned long cpu_bf; 1354 struct isst_pkg_ctdp_level_info *ctdp_level; 1355 struct isst_pbf_info *pbf_info; 1356 1357 ctdp_level = &clx_n_pkg_dev.ctdp_level[0]; 1358 pbf_info = &ctdp_level->pbf_info; 1359 ctdp_level->core_cpumask_size = 1360 alloc_cpu_set(&ctdp_level->core_cpumask); 1361 1362 /* find the frequency base ratio */ 1363 ctdp_level->tdp_ratio = clx_n_get_base_ratio(); 1364 if (ctdp_level->tdp_ratio == 0) { 1365 debug_printf("CLX: cn base ratio is zero\n"); 1366 ret = -1; 1367 goto error_ret; 1368 } 1369 1370 /* find the high and low priority frequencies */ 1371 pbf_info->p1_high = 0; 1372 pbf_info->p1_low = ~0; 1373 1374 for (i = 0; i < topo_max_cpus; i++) { 1375 if (!CPU_ISSET_S(i, present_cpumask_size, present_cpumask)) 1376 continue; 1377 1378 if (!is_cpu_in_power_domain(i, id)) 1379 continue; 1380 1381 CPU_SET_S(i, ctdp_level->core_cpumask_size, 1382 ctdp_level->core_cpumask); 1383 1384 cpu_bf = parse_int_file(1, 1385 "/sys/devices/system/cpu/cpu%d/cpufreq/base_frequency", 1386 i); 1387 if (cpu_bf > pbf_info->p1_high) 1388 pbf_info->p1_high = cpu_bf; 1389 if (cpu_bf < pbf_info->p1_low) 1390 pbf_info->p1_low = cpu_bf; 1391 } 1392 1393 if (pbf_info->p1_high == ~0UL) { 1394 debug_printf("CLX: maximum base frequency not set\n"); 1395 ret = -1; 1396 goto error_ret; 1397 } 1398 1399 if (pbf_info->p1_low == 0) { 1400 debug_printf("CLX: minimum base frequency not set\n"); 1401 ret = -1; 1402 goto error_ret; 1403 } 1404 1405 /* convert frequencies back to ratios */ 1406 pbf_info->p1_high = pbf_info->p1_high / 100000; 1407 pbf_info->p1_low = pbf_info->p1_low / 100000; 1408 1409 /* create high priority cpu mask */ 1410 pbf_info->core_cpumask_size = alloc_cpu_set(&pbf_info->core_cpumask); 1411 for (i = 0; i < topo_max_cpus; i++) { 1412 if (!CPU_ISSET_S(i, present_cpumask_size, present_cpumask)) 1413 continue; 1414 1415 if (!is_cpu_in_power_domain(i, id)) 1416 continue; 1417 1418 cpu_bf = parse_int_file(1, 1419 "/sys/devices/system/cpu/cpu%d/cpufreq/base_frequency", 1420 i); 1421 cpu_bf = cpu_bf / 100000; 1422 if (cpu_bf == pbf_info->p1_high) 1423 CPU_SET_S(i, pbf_info->core_cpumask_size, 1424 pbf_info->core_cpumask); 1425 } 1426 1427 /* extra ctdp & pbf struct parameters */ 1428 ctdp_level->processed = 1; 1429 ctdp_level->pbf_support = 1; /* PBF is always supported and enabled */ 1430 ctdp_level->pbf_enabled = 1; 1431 ctdp_level->fact_support = 0; /* FACT is never supported */ 1432 ctdp_level->fact_enabled = 0; 1433 1434 return 0; 1435 1436 error_ret: 1437 free_cpu_set(ctdp_level->core_cpumask); 1438 return ret; 1439 } 1440 1441 static void dump_clx_n_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, 1442 void *arg3, void *arg4) 1443 { 1444 int ret; 1445 1446 if (tdp_level != 0xff && tdp_level != 0) { 1447 isst_display_error_info_message(1, "Invalid level", 1, tdp_level); 1448 exit(0); 1449 } 1450 1451 ret = clx_n_config(id); 1452 if (ret) { 1453 debug_printf("clx_n_config failed"); 1454 } else { 1455 struct isst_pkg_ctdp_level_info *ctdp_level; 1456 struct isst_pbf_info *pbf_info; 1457 1458 ctdp_level = &clx_n_pkg_dev.ctdp_level[0]; 1459 pbf_info = &ctdp_level->pbf_info; 1460 clx_n_pkg_dev.processed = 1; 1461 isst_ctdp_display_information(id, outf, tdp_level, &clx_n_pkg_dev); 1462 free_cpu_set(ctdp_level->core_cpumask); 1463 free_cpu_set(pbf_info->core_cpumask); 1464 } 1465 } 1466 1467 static void dump_isst_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, 1468 void *arg3, void *arg4) 1469 { 1470 struct isst_pkg_ctdp pkg_dev; 1471 int ret; 1472 1473 memset(&pkg_dev, 0, sizeof(pkg_dev)); 1474 ret = isst_get_process_ctdp(id, tdp_level, &pkg_dev); 1475 if (ret) { 1476 isst_display_error_info_message(1, "Failed to get perf-profile info on cpu", 1, id->cpu); 1477 isst_ctdp_display_information_end(outf); 1478 exit(1); 1479 } else { 1480 isst_ctdp_display_information(id, outf, tdp_level, &pkg_dev); 1481 isst_get_process_ctdp_complete(id, &pkg_dev); 1482 } 1483 } 1484 1485 static void dump_isst_config(int arg) 1486 { 1487 void *fn; 1488 1489 if (cmd_help) { 1490 fprintf(stderr, 1491 "Print Intel(R) Speed Select Technology Performance profile configuration\n"); 1492 fprintf(stderr, 1493 "including base frequency and turbo frequency configurations\n"); 1494 fprintf(stderr, "Optional: -l|--level : Specify tdp level\n"); 1495 fprintf(stderr, 1496 "\tIf no arguments, dump information for all TDP levels\n"); 1497 exit(0); 1498 } 1499 1500 if (!is_clx_n_platform()) 1501 fn = dump_isst_config_for_cpu; 1502 else 1503 fn = dump_clx_n_config_for_cpu; 1504 1505 isst_ctdp_display_information_start(outf); 1506 1507 if (max_target_cpus) 1508 for_each_online_target_cpu_in_set(fn, NULL, NULL, NULL, NULL); 1509 else 1510 for_each_online_power_domain_in_set(fn, NULL, NULL, NULL, NULL); 1511 1512 isst_ctdp_display_information_end(outf); 1513 } 1514 1515 static void adjust_scaling_max_from_base_freq(int cpu); 1516 1517 static void set_tdp_level_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 1518 void *arg4) 1519 { 1520 struct isst_pkg_ctdp pkg_dev; 1521 int ret; 1522 1523 ret = isst_get_ctdp_levels(id, &pkg_dev); 1524 if (ret) { 1525 isst_display_error_info_message(1, "Get TDP level failed", 0, 0); 1526 isst_ctdp_display_information_end(outf); 1527 exit(1); 1528 } 1529 1530 if (pkg_dev.current_level == tdp_level) { 1531 debug_printf("TDP level already set. Skipped\n"); 1532 goto display_result; 1533 } 1534 1535 ret = isst_set_tdp_level(id, tdp_level); 1536 if (ret) { 1537 isst_display_error_info_message(1, "Set TDP level failed", 0, 0); 1538 isst_ctdp_display_information_end(outf); 1539 exit(1); 1540 } 1541 1542 display_result: 1543 isst_display_result(id, outf, "perf-profile", "set_tdp_level", ret); 1544 if (force_online_offline && id->cpu >= 0) { 1545 struct isst_pkg_ctdp_level_info ctdp_level; 1546 1547 /* Wait for updated base frequencies */ 1548 usleep(2000); 1549 1550 /* Adjusting uncore freq */ 1551 if (!is_dmr_plus_platform()) 1552 isst_adjust_uncore_freq(id, tdp_level, &ctdp_level); 1553 1554 fprintf(stderr, "Option is set to online/offline\n"); 1555 ctdp_level.core_cpumask_size = 1556 alloc_cpu_set(&ctdp_level.core_cpumask); 1557 ret = isst_get_coremask_info(id, tdp_level, &ctdp_level); 1558 if (ret) { 1559 isst_display_error_info_message(1, "Can't get coremask, online/offline option is ignored", 0, 0); 1560 goto free_mask; 1561 } 1562 1563 if (use_cgroupv2()) { 1564 int ret; 1565 1566 fprintf(stderr, "Using cgroup v2 in lieu of online/offline\n"); 1567 ret = enable_cpuset_controller(); 1568 if (ret) 1569 goto use_offline; 1570 1571 ret = isolate_cpus(id, ctdp_level.core_cpumask_size, 1572 ctdp_level.core_cpumask, tdp_level, 0); 1573 if (ret) 1574 goto use_offline; 1575 1576 goto free_mask; 1577 } 1578 1579 use_offline: 1580 if (ctdp_level.cpu_count) { 1581 int i, max_cpus = get_topo_max_cpus(); 1582 for (i = 0; i < max_cpus; ++i) { 1583 if (!is_cpu_in_power_domain(i, id)) 1584 continue; 1585 if (CPU_ISSET_S(i, ctdp_level.core_cpumask_size, ctdp_level.core_cpumask)) { 1586 fprintf(stderr, "online cpu %d\n", i); 1587 set_cpu_online_offline(i, 1); 1588 adjust_scaling_max_from_base_freq(i); 1589 } else { 1590 fprintf(stderr, "offline cpu %d\n", i); 1591 set_cpu_online_offline(i, 0); 1592 } 1593 } 1594 } 1595 free_mask: 1596 free_cpu_set(ctdp_level.core_cpumask); 1597 } 1598 } 1599 1600 static void set_tdp_level(int arg) 1601 { 1602 check_privilege(); 1603 1604 if (cmd_help) { 1605 fprintf(stderr, "Set Config TDP level\n"); 1606 fprintf(stderr, 1607 "\t Arguments: -l|--level : Specify tdp level\n"); 1608 fprintf(stderr, 1609 "\t Optional Arguments: -o | online : online/offline for the tdp level\n"); 1610 fprintf(stderr, 1611 "\t online/offline operation has limitations, refer to Linux hotplug documentation\n"); 1612 exit(0); 1613 } 1614 1615 if (tdp_level == 0xff) { 1616 isst_display_error_info_message(1, "Invalid command: specify tdp_level", 0, 0); 1617 exit(1); 1618 } 1619 isst_ctdp_display_information_start(outf); 1620 if (max_target_cpus) 1621 for_each_online_target_cpu_in_set(set_tdp_level_for_cpu, NULL, 1622 NULL, NULL, NULL); 1623 else 1624 for_each_online_power_domain_in_set(set_tdp_level_for_cpu, NULL, 1625 NULL, NULL, NULL); 1626 isst_ctdp_display_information_end(outf); 1627 } 1628 1629 static void clx_n_dump_pbf_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, 1630 void *arg3, void *arg4) 1631 { 1632 int ret; 1633 1634 ret = clx_n_config(id); 1635 if (ret) { 1636 isst_display_error_info_message(1, "clx_n_config failed", 0, 0); 1637 } else { 1638 struct isst_pkg_ctdp_level_info *ctdp_level; 1639 struct isst_pbf_info *pbf_info; 1640 1641 ctdp_level = &clx_n_pkg_dev.ctdp_level[0]; 1642 pbf_info = &ctdp_level->pbf_info; 1643 isst_pbf_display_information(id, outf, tdp_level, pbf_info); 1644 free_cpu_set(ctdp_level->core_cpumask); 1645 free_cpu_set(pbf_info->core_cpumask); 1646 } 1647 } 1648 1649 static void dump_pbf_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 1650 void *arg4) 1651 { 1652 struct isst_pbf_info pbf_info; 1653 int ret; 1654 1655 ret = isst_get_pbf_info(id, tdp_level, &pbf_info); 1656 if (ret) { 1657 isst_display_error_info_message(1, "Failed to get base-freq info at this level", 1, tdp_level); 1658 isst_ctdp_display_information_end(outf); 1659 exit(1); 1660 } else { 1661 isst_pbf_display_information(id, outf, tdp_level, &pbf_info); 1662 free_cpu_set(pbf_info.core_cpumask); 1663 } 1664 } 1665 1666 static void dump_pbf_config(int arg) 1667 { 1668 void *fn; 1669 1670 if (cmd_help) { 1671 fprintf(stderr, 1672 "Print Intel(R) Speed Select Technology base frequency configuration for a TDP level\n"); 1673 fprintf(stderr, 1674 "\tArguments: -l|--level : Specify tdp level\n"); 1675 exit(0); 1676 } 1677 1678 if (tdp_level == 0xff) { 1679 isst_display_error_info_message(1, "Invalid command: specify tdp_level", 0, 0); 1680 exit(1); 1681 } 1682 1683 if (!is_clx_n_platform()) 1684 fn = dump_pbf_config_for_cpu; 1685 else 1686 fn = clx_n_dump_pbf_config_for_cpu; 1687 1688 isst_ctdp_display_information_start(outf); 1689 1690 if (max_target_cpus) 1691 for_each_online_target_cpu_in_set(fn, NULL, NULL, NULL, NULL); 1692 else 1693 for_each_online_power_domain_in_set(fn, NULL, NULL, NULL, NULL); 1694 1695 isst_ctdp_display_information_end(outf); 1696 } 1697 1698 static int set_clos_param(struct isst_id *id, int clos, int epp, int wt, int min, int max) 1699 { 1700 struct isst_clos_config clos_config; 1701 int ret; 1702 1703 ret = isst_pm_get_clos(id, clos, &clos_config); 1704 if (ret) { 1705 isst_display_error_info_message(1, "isst_pm_get_clos failed", 0, 0); 1706 return ret; 1707 } 1708 clos_config.clos_min = min; 1709 clos_config.clos_max = max; 1710 clos_config.epp = epp; 1711 clos_config.clos_prop_prio = wt; 1712 ret = isst_set_clos(id, clos, &clos_config); 1713 if (ret) { 1714 isst_display_error_info_message(1, "isst_set_clos failed", 0, 0); 1715 return ret; 1716 } 1717 1718 return 0; 1719 } 1720 1721 static int set_cpufreq_scaling_min_max(int cpu, int max, int freq) 1722 { 1723 char buffer[128], freq_str[16]; 1724 int fd, ret, len; 1725 1726 if (max) 1727 snprintf(buffer, sizeof(buffer), 1728 "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_max_freq", cpu); 1729 else 1730 snprintf(buffer, sizeof(buffer), 1731 "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_min_freq", cpu); 1732 1733 fd = open(buffer, O_WRONLY); 1734 if (fd < 0) 1735 return fd; 1736 1737 snprintf(freq_str, sizeof(freq_str), "%d", freq); 1738 len = strlen(freq_str); 1739 ret = write(fd, freq_str, len); 1740 if (ret == -1) { 1741 close(fd); 1742 return ret; 1743 } 1744 close(fd); 1745 1746 return 0; 1747 } 1748 1749 static int no_turbo(void) 1750 { 1751 return parse_int_file(0, "/sys/devices/system/cpu/intel_pstate/no_turbo"); 1752 } 1753 1754 #define U32_MAX ((unsigned int)~0U) 1755 #define S32_MAX ((int)(U32_MAX >> 1)) 1756 1757 static void adjust_scaling_max_from_base_freq(int cpu) 1758 { 1759 int base_freq, scaling_max_freq; 1760 1761 scaling_max_freq = parse_int_file(0, "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_max_freq", cpu); 1762 base_freq = get_cpufreq_base_freq(cpu); 1763 if (scaling_max_freq < base_freq || no_turbo()) 1764 set_cpufreq_scaling_min_max(cpu, 1, S32_MAX); 1765 } 1766 1767 static void adjust_scaling_min_from_base_freq(int cpu) 1768 { 1769 int base_freq, scaling_min_freq; 1770 1771 scaling_min_freq = parse_int_file(0, "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_min_freq", cpu); 1772 base_freq = get_cpufreq_base_freq(cpu); 1773 if (scaling_min_freq < base_freq) 1774 set_cpufreq_scaling_min_max(cpu, 0, base_freq); 1775 } 1776 1777 static int set_clx_pbf_cpufreq_scaling_min_max(struct isst_id *id) 1778 { 1779 struct isst_pkg_ctdp_level_info *ctdp_level; 1780 struct isst_pbf_info *pbf_info; 1781 int i, freq, freq_high, freq_low; 1782 int ret; 1783 1784 ret = clx_n_config(id); 1785 if (ret) { 1786 debug_printf("cpufreq_scaling_min_max failed for CLX"); 1787 return ret; 1788 } 1789 1790 ctdp_level = &clx_n_pkg_dev.ctdp_level[0]; 1791 pbf_info = &ctdp_level->pbf_info; 1792 freq_high = pbf_info->p1_high * 100000; 1793 freq_low = pbf_info->p1_low * 100000; 1794 1795 for (i = 0; i < get_topo_max_cpus(); ++i) { 1796 if (!is_cpu_in_power_domain(i, id)) 1797 continue; 1798 1799 if (CPU_ISSET_S(i, pbf_info->core_cpumask_size, 1800 pbf_info->core_cpumask)) 1801 freq = freq_high; 1802 else 1803 freq = freq_low; 1804 1805 set_cpufreq_scaling_min_max(i, 1, freq); 1806 set_cpufreq_scaling_min_max(i, 0, freq); 1807 } 1808 1809 return 0; 1810 } 1811 1812 static int set_cpufreq_scaling_min_max_from_cpuinfo(int cpu, int cpuinfo_max, int scaling_max) 1813 { 1814 char buffer[128], min_freq[16]; 1815 int fd, ret, len; 1816 1817 if (!CPU_ISSET_S(cpu, present_cpumask_size, present_cpumask)) 1818 return -1; 1819 1820 if (cpuinfo_max) 1821 snprintf(buffer, sizeof(buffer), 1822 "/sys/devices/system/cpu/cpu%d/cpufreq/cpuinfo_max_freq", cpu); 1823 else 1824 snprintf(buffer, sizeof(buffer), 1825 "/sys/devices/system/cpu/cpu%d/cpufreq/cpuinfo_min_freq", cpu); 1826 1827 fd = open(buffer, O_RDONLY); 1828 if (fd < 0) 1829 return fd; 1830 1831 len = read(fd, min_freq, sizeof(min_freq)); 1832 close(fd); 1833 1834 if (len < 0) 1835 return len; 1836 1837 if (scaling_max) 1838 snprintf(buffer, sizeof(buffer), 1839 "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_max_freq", cpu); 1840 else 1841 snprintf(buffer, sizeof(buffer), 1842 "/sys/devices/system/cpu/cpu%d/cpufreq/scaling_min_freq", cpu); 1843 1844 fd = open(buffer, O_WRONLY); 1845 if (fd < 0) 1846 return fd; 1847 1848 min_freq[15] = '\0'; 1849 len = strlen(min_freq); 1850 ret = write(fd, min_freq, len); 1851 if (ret == -1) { 1852 close(fd); 1853 return ret; 1854 } 1855 close(fd); 1856 1857 return 0; 1858 } 1859 1860 static void set_scaling_min_to_cpuinfo_max(struct isst_id *id) 1861 { 1862 int i; 1863 1864 if (id->cpu < 0) 1865 return; 1866 1867 for (i = 0; i < get_topo_max_cpus(); ++i) { 1868 if (!is_cpu_in_power_domain(i, id)) 1869 continue; 1870 1871 if (is_cpu_online(i) != 1) 1872 continue; 1873 1874 adjust_scaling_max_from_base_freq(i); 1875 set_cpufreq_scaling_min_max_from_cpuinfo(i, 1, 0); 1876 adjust_scaling_min_from_base_freq(i); 1877 } 1878 } 1879 1880 static void set_scaling_min_to_cpuinfo_min(struct isst_id *id) 1881 { 1882 int i; 1883 1884 if (id->cpu < 0) 1885 return; 1886 1887 for (i = 0; i < get_topo_max_cpus(); ++i) { 1888 if (!is_cpu_in_power_domain(i, id)) 1889 continue; 1890 1891 if (is_cpu_online(i) != 1) 1892 continue; 1893 1894 adjust_scaling_max_from_base_freq(i); 1895 set_cpufreq_scaling_min_max_from_cpuinfo(i, 0, 0); 1896 } 1897 } 1898 1899 static void set_scaling_max_to_cpuinfo_max(struct isst_id *id) 1900 { 1901 int i; 1902 1903 for (i = 0; i < get_topo_max_cpus(); ++i) { 1904 if (!is_cpu_in_power_domain(i, id)) 1905 continue; 1906 1907 set_cpufreq_scaling_min_max_from_cpuinfo(i, 1, 1); 1908 } 1909 } 1910 1911 static int set_core_priority_and_min(struct isst_id *id, int mask_size, 1912 cpu_set_t *cpu_mask, int min_high, 1913 int min_low) 1914 { 1915 int ret, i; 1916 1917 if (!CPU_COUNT_S(mask_size, cpu_mask)) 1918 return -1; 1919 1920 ret = set_clos_param(id, 0, 0, 0, min_high, 0xff); 1921 if (ret) 1922 return ret; 1923 1924 ret = set_clos_param(id, 1, 15, 15, min_low, 0xff); 1925 if (ret) 1926 return ret; 1927 1928 ret = set_clos_param(id, 2, 15, 15, min_low, 0xff); 1929 if (ret) 1930 return ret; 1931 1932 ret = set_clos_param(id, 3, 15, 15, min_low, 0xff); 1933 if (ret) 1934 return ret; 1935 1936 for (i = 0; i < get_topo_max_cpus(); ++i) { 1937 int clos; 1938 struct isst_id tid; 1939 1940 if (!is_cpu_in_power_domain(i, id)) 1941 continue; 1942 1943 if (CPU_ISSET_S(i, mask_size, cpu_mask)) 1944 clos = 0; 1945 else 1946 clos = 3; 1947 1948 debug_printf("Associate cpu: %d clos: %d\n", i, clos); 1949 set_isst_id(&tid, i); 1950 ret = isst_clos_associate(&tid, clos); 1951 if (ret) { 1952 isst_display_error_info_message(1, "isst_clos_associate failed", 0, 0); 1953 return ret; 1954 } 1955 } 1956 1957 return 0; 1958 } 1959 1960 static int set_pbf_core_power(struct isst_id *id) 1961 { 1962 struct isst_pbf_info pbf_info; 1963 struct isst_pkg_ctdp pkg_dev; 1964 int ret; 1965 1966 if (id->cpu < 0) 1967 return 0; 1968 1969 ret = isst_get_ctdp_levels(id, &pkg_dev); 1970 if (ret) { 1971 debug_printf("isst_get_ctdp_levels failed"); 1972 return ret; 1973 } 1974 debug_printf("Current_level: %d\n", pkg_dev.current_level); 1975 1976 ret = isst_get_pbf_info(id, pkg_dev.current_level, &pbf_info); 1977 if (ret) { 1978 debug_printf("isst_get_pbf_info failed"); 1979 return ret; 1980 } 1981 debug_printf("p1_high: %d p1_low: %d\n", pbf_info.p1_high, 1982 pbf_info.p1_low); 1983 1984 ret = set_core_priority_and_min(id, pbf_info.core_cpumask_size, 1985 pbf_info.core_cpumask, 1986 pbf_info.p1_high, pbf_info.p1_low); 1987 if (ret) { 1988 debug_printf("set_core_priority_and_min failed"); 1989 return ret; 1990 } 1991 1992 ret = isst_pm_qos_config(id, 1, 1); 1993 if (ret) { 1994 debug_printf("isst_pm_qos_config failed"); 1995 return ret; 1996 } 1997 1998 return 0; 1999 } 2000 2001 static void set_pbf_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2002 void *arg4) 2003 { 2004 struct isst_pkg_ctdp_level_info ctdp_level; 2005 struct isst_pkg_ctdp pkg_dev; 2006 int ret; 2007 int status = *(int *)arg4; 2008 2009 if (is_clx_n_platform()) { 2010 ret = 0; 2011 if (status) { 2012 set_clx_pbf_cpufreq_scaling_min_max(id); 2013 2014 } else { 2015 set_scaling_max_to_cpuinfo_max(id); 2016 set_scaling_min_to_cpuinfo_min(id); 2017 } 2018 goto disp_result; 2019 } 2020 2021 ret = isst_get_ctdp_levels(id, &pkg_dev); 2022 if (ret) { 2023 isst_display_error_info_message(1, "Failed to get number of levels", 0, 0); 2024 goto disp_result; 2025 } 2026 2027 ret = isst_get_ctdp_control(id, pkg_dev.current_level, &ctdp_level); 2028 if (ret) { 2029 isst_display_error_info_message(1, "Failed to get current level", 0, 0); 2030 goto disp_result; 2031 } 2032 2033 if (!ctdp_level.pbf_support) { 2034 isst_display_error_info_message(1, "base-freq feature is not present at this level", 1, pkg_dev.current_level); 2035 ret = -1; 2036 goto disp_result; 2037 } 2038 2039 if (auto_mode && status) { 2040 ret = set_pbf_core_power(id); 2041 if (ret) 2042 goto disp_result; 2043 } 2044 2045 ret = isst_set_pbf_fact_status(id, 1, status); 2046 if (ret) { 2047 debug_printf("isst_set_pbf_fact_status failed"); 2048 if (auto_mode) 2049 isst_pm_qos_config(id, 0, 0); 2050 } else { 2051 if (auto_mode) { 2052 if (status) 2053 set_scaling_min_to_cpuinfo_max(id); 2054 else 2055 set_scaling_min_to_cpuinfo_min(id); 2056 } 2057 } 2058 2059 if (auto_mode && !status) 2060 isst_pm_qos_config(id, 0, 1); 2061 2062 disp_result: 2063 if (status) 2064 isst_display_result(id, outf, "base-freq", "enable", 2065 ret); 2066 else 2067 isst_display_result(id, outf, "base-freq", "disable", 2068 ret); 2069 } 2070 2071 static void set_pbf_enable(int arg) 2072 { 2073 int enable = arg; 2074 2075 check_privilege(); 2076 2077 if (cmd_help) { 2078 if (enable) { 2079 fprintf(stderr, 2080 "Enable Intel Speed Select Technology base frequency feature\n"); 2081 if (is_clx_n_platform()) { 2082 fprintf(stderr, 2083 "\tOn this platform this command doesn't enable feature in the hardware.\n"); 2084 fprintf(stderr, 2085 "\tIt updates the cpufreq scaling_min_freq to match cpufreq base_frequency.\n"); 2086 exit(0); 2087 2088 } 2089 fprintf(stderr, 2090 "\tOptional Arguments: -a|--auto : Use priority of cores to set core-power associations\n"); 2091 } else { 2092 2093 if (is_clx_n_platform()) { 2094 fprintf(stderr, 2095 "\tOn this platform this command doesn't disable feature in the hardware.\n"); 2096 fprintf(stderr, 2097 "\tIt updates the cpufreq scaling_min_freq to match cpuinfo_min_freq\n"); 2098 exit(0); 2099 } 2100 fprintf(stderr, 2101 "Disable Intel Speed Select Technology base frequency feature\n"); 2102 fprintf(stderr, 2103 "\tOptional Arguments: -a|--auto : Also disable core-power associations\n"); 2104 } 2105 exit(0); 2106 } 2107 2108 isst_ctdp_display_information_start(outf); 2109 if (max_target_cpus) 2110 for_each_online_target_cpu_in_set(set_pbf_for_cpu, NULL, NULL, 2111 NULL, &enable); 2112 else 2113 for_each_online_power_domain_in_set(set_pbf_for_cpu, NULL, NULL, 2114 NULL, &enable); 2115 isst_ctdp_display_information_end(outf); 2116 } 2117 2118 static void dump_fact_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, 2119 void *arg3, void *arg4) 2120 { 2121 struct isst_fact_info fact_info; 2122 int ret; 2123 2124 memset(&fact_info, 0, sizeof(fact_info)); 2125 ret = isst_get_fact_info(id, tdp_level, fact_bucket, &fact_info); 2126 if (ret) { 2127 isst_display_error_info_message(1, "Failed to get turbo-freq info at this level", 1, tdp_level); 2128 isst_ctdp_display_information_end(outf); 2129 exit(1); 2130 } else { 2131 isst_fact_display_information(id, outf, tdp_level, fact_bucket, 2132 fact_avx, &fact_info); 2133 } 2134 } 2135 2136 static void dump_fact_config(int arg) 2137 { 2138 if (cmd_help) { 2139 fprintf(stderr, 2140 "Print complete Intel Speed Select Technology turbo frequency configuration for a TDP level. Other arguments are optional.\n"); 2141 fprintf(stderr, 2142 "\tArguments: -l|--level : Specify tdp level\n"); 2143 fprintf(stderr, 2144 "\tArguments: -b|--bucket : Bucket index to dump\n"); 2145 fprintf(stderr, 2146 "\tArguments: -r|--trl-type : Specify trl type: sse|avx2|avx512\n"); 2147 exit(0); 2148 } 2149 2150 if (tdp_level == 0xff) { 2151 isst_display_error_info_message(1, "Invalid command: specify tdp_level\n", 0, 0); 2152 exit(1); 2153 } 2154 2155 isst_ctdp_display_information_start(outf); 2156 if (max_target_cpus) 2157 for_each_online_target_cpu_in_set(dump_fact_config_for_cpu, 2158 NULL, NULL, NULL, NULL); 2159 else 2160 for_each_online_power_domain_in_set(dump_fact_config_for_cpu, NULL, 2161 NULL, NULL, NULL); 2162 isst_ctdp_display_information_end(outf); 2163 } 2164 2165 static void set_fact_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2166 void *arg4) 2167 { 2168 struct isst_pkg_ctdp_level_info ctdp_level; 2169 struct isst_pkg_ctdp pkg_dev; 2170 int ret; 2171 int status = *(int *)arg4; 2172 2173 if (status && no_turbo()) { 2174 isst_display_error_info_message(1, "Turbo mode is disabled", 0, 0); 2175 ret = -1; 2176 goto disp_results; 2177 } 2178 2179 ret = isst_get_ctdp_levels(id, &pkg_dev); 2180 if (ret) { 2181 isst_display_error_info_message(1, "Failed to get number of levels", 0, 0); 2182 goto disp_results; 2183 } 2184 2185 ret = isst_get_ctdp_control(id, pkg_dev.current_level, &ctdp_level); 2186 if (ret) { 2187 isst_display_error_info_message(1, "Failed to get current level", 0, 0); 2188 goto disp_results; 2189 } 2190 2191 if (!ctdp_level.fact_support) { 2192 isst_display_error_info_message(1, "turbo-freq feature is not present at this level", 1, pkg_dev.current_level); 2193 ret = -1; 2194 goto disp_results; 2195 } 2196 2197 if (status) { 2198 ret = isst_pm_qos_config(id, 1, 1); 2199 if (ret) 2200 goto disp_results; 2201 } 2202 2203 ret = isst_set_pbf_fact_status(id, 0, status); 2204 if (ret) { 2205 debug_printf("isst_set_pbf_fact_status failed"); 2206 if (auto_mode) 2207 isst_pm_qos_config(id, 0, 0); 2208 2209 goto disp_results; 2210 } 2211 2212 /* Set TRL */ 2213 if (status) { 2214 struct isst_pkg_ctdp pkg_dev; 2215 2216 ret = isst_get_ctdp_levels(id, &pkg_dev); 2217 if (!ret && id->cpu >= 0) 2218 ret = isst_set_trl(id, fact_trl); 2219 if (ret && auto_mode) 2220 isst_pm_qos_config(id, 0, 0); 2221 } else { 2222 if (auto_mode) 2223 isst_pm_qos_config(id, 0, 0); 2224 } 2225 2226 disp_results: 2227 if (status) { 2228 isst_display_result(id, outf, "turbo-freq", "enable", ret); 2229 if (ret) 2230 fact_enable_fail = ret; 2231 } else { 2232 /* Since we modified TRL during Fact enable, restore it */ 2233 isst_set_trl_from_current_tdp(id, fact_trl); 2234 isst_display_result(id, outf, "turbo-freq", "disable", ret); 2235 } 2236 } 2237 2238 static void set_fact_enable(int arg) 2239 { 2240 int i, ret, enable = arg; 2241 struct isst_id id; 2242 2243 check_privilege(); 2244 2245 if (cmd_help) { 2246 if (enable) { 2247 fprintf(stderr, 2248 "Enable Intel Speed Select Technology Turbo frequency feature\n"); 2249 fprintf(stderr, 2250 "Optional: -t|--trl : Specify turbo ratio limit in hex starting with 0x\n"); 2251 fprintf(stderr, 2252 "\tOptional Arguments: -a|--auto : Designate specified target CPUs with"); 2253 fprintf(stderr, 2254 "-C|--cpu option as as high priority using core-power feature\n"); 2255 } else { 2256 fprintf(stderr, 2257 "Disable Intel Speed Select Technology turbo frequency feature\n"); 2258 fprintf(stderr, 2259 "Optional: -t|--trl : Specify turbo ratio limit in hex starting with 0x\n"); 2260 fprintf(stderr, 2261 "\tOptional Arguments: -a|--auto : Also disable core-power associations\n"); 2262 } 2263 exit(0); 2264 } 2265 2266 isst_ctdp_display_information_start(outf); 2267 if (max_target_cpus) 2268 for_each_online_target_cpu_in_set(set_fact_for_cpu, NULL, NULL, 2269 NULL, &enable); 2270 else 2271 for_each_online_power_domain_in_set(set_fact_for_cpu, NULL, NULL, 2272 NULL, &enable); 2273 2274 if (!fact_enable_fail && enable && auto_mode) { 2275 /* 2276 * When we adjust CLOS param, we have to set for siblings also. 2277 * So for the each user specified CPU, also add the sibling 2278 * in the present_cpu_mask. 2279 */ 2280 for (i = 0; i < get_topo_max_cpus(); ++i) { 2281 char buffer[128], sibling_list[128], *cpu_str; 2282 int fd, len; 2283 2284 if (!CPU_ISSET_S(i, target_cpumask_size, target_cpumask)) 2285 continue; 2286 2287 snprintf(buffer, sizeof(buffer), 2288 "/sys/devices/system/cpu/cpu%d/topology/thread_siblings_list", i); 2289 2290 fd = open(buffer, O_RDONLY); 2291 if (fd < 0) 2292 continue; 2293 2294 len = read(fd, sibling_list, sizeof(sibling_list)); 2295 close(fd); 2296 2297 if (len < 0) 2298 continue; 2299 2300 sibling_list[127] = '\0'; 2301 cpu_str = strtok(sibling_list, ","); 2302 while (cpu_str != NULL) { 2303 int cpu; 2304 2305 sscanf(cpu_str, "%d", &cpu); 2306 CPU_SET_S(cpu, target_cpumask_size, target_cpumask); 2307 cpu_str = strtok(NULL, ","); 2308 } 2309 } 2310 2311 for (i = 0; i < get_topo_max_cpus(); ++i) { 2312 int clos; 2313 2314 if (!CPU_ISSET_S(i, present_cpumask_size, present_cpumask)) 2315 continue; 2316 2317 if (is_cpu_online(i) != 1) 2318 continue; 2319 2320 set_isst_id(&id, i); 2321 ret = set_clos_param(&id, 0, 0, 0, 0, 0xff); 2322 if (ret) 2323 goto error_disp; 2324 2325 ret = set_clos_param(&id, 1, 15, 15, 0, 0xff); 2326 if (ret) 2327 goto error_disp; 2328 2329 ret = set_clos_param(&id, 2, 15, 15, 0, 0xff); 2330 if (ret) 2331 goto error_disp; 2332 2333 ret = set_clos_param(&id, 3, 15, 15, 0, 0xff); 2334 if (ret) 2335 goto error_disp; 2336 2337 if (CPU_ISSET_S(i, target_cpumask_size, target_cpumask)) 2338 clos = 0; 2339 else 2340 clos = 3; 2341 2342 debug_printf("Associate cpu: %d clos: %d\n", i, clos); 2343 ret = isst_clos_associate(&id, clos); 2344 if (ret) 2345 goto error_disp; 2346 } 2347 set_isst_id(&id, -1); 2348 isst_display_result(&id, outf, "turbo-freq --auto", "enable", 0); 2349 } 2350 2351 isst_ctdp_display_information_end(outf); 2352 2353 return; 2354 2355 error_disp: 2356 isst_display_result(&id, outf, "turbo-freq --auto", "enable", ret); 2357 isst_ctdp_display_information_end(outf); 2358 2359 } 2360 2361 static void enable_clos_qos_config(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2362 void *arg4) 2363 { 2364 int ret; 2365 int status = *(int *)arg4; 2366 int cp_state, cp_cap; 2367 2368 if (!isst_read_pm_config(id, &cp_state, &cp_cap)) { 2369 if (!cp_cap) { 2370 isst_display_error_info_message(1, "core-power not supported", 0, 0); 2371 return; 2372 } 2373 } 2374 2375 if (is_skx_based_platform()) 2376 clos_priority_type = 1; 2377 2378 ret = isst_pm_qos_config(id, status, clos_priority_type); 2379 if (ret) 2380 isst_display_error_info_message(1, "isst_pm_qos_config failed", 0, 0); 2381 2382 if (status) 2383 isst_display_result(id, outf, "core-power", "enable", 2384 ret); 2385 else 2386 isst_display_result(id, outf, "core-power", "disable", 2387 ret); 2388 } 2389 2390 static void set_clos_enable(int arg) 2391 { 2392 int enable = arg; 2393 2394 check_privilege(); 2395 2396 if (cmd_help) { 2397 if (enable) { 2398 fprintf(stderr, 2399 "Enable core-power for a package/die\n"); 2400 if (!is_skx_based_platform()) { 2401 fprintf(stderr, 2402 "\tClos Enable: Specify priority type with [--priority|-p]\n"); 2403 fprintf(stderr, "\t\t 0: Proportional, 1: Ordered\n"); 2404 } 2405 } else { 2406 fprintf(stderr, 2407 "Disable core-power: [No command arguments are required]\n"); 2408 } 2409 exit(0); 2410 } 2411 2412 if (enable && cpufreq_sysfs_present()) { 2413 fprintf(stderr, 2414 "cpufreq subsystem and core-power enable will interfere with each other!\n"); 2415 } 2416 2417 isst_ctdp_display_information_start(outf); 2418 if (max_target_cpus) 2419 for_each_online_target_cpu_in_set(enable_clos_qos_config, NULL, 2420 NULL, NULL, &enable); 2421 else 2422 for_each_online_power_domain_in_set(enable_clos_qos_config, NULL, 2423 NULL, NULL, &enable); 2424 isst_ctdp_display_information_end(outf); 2425 } 2426 2427 static void dump_clos_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, 2428 void *arg3, void *arg4) 2429 { 2430 struct isst_clos_config clos_config; 2431 int ret; 2432 2433 ret = isst_pm_get_clos(id, current_clos, &clos_config); 2434 if (ret) 2435 isst_display_error_info_message(1, "isst_pm_get_clos failed", 0, 0); 2436 else 2437 isst_clos_display_information(id, outf, current_clos, 2438 &clos_config); 2439 } 2440 2441 static void dump_clos_config(int arg) 2442 { 2443 if (cmd_help) { 2444 fprintf(stderr, 2445 "Print Intel Speed Select Technology core power configuration\n"); 2446 fprintf(stderr, 2447 "\tArguments: [-c | --clos]: Specify clos id\n"); 2448 exit(0); 2449 } 2450 if (current_clos < 0 || current_clos > 3) { 2451 isst_display_error_info_message(1, "Invalid clos id\n", 0, 0); 2452 isst_ctdp_display_information_end(outf); 2453 exit(0); 2454 } 2455 2456 isst_ctdp_display_information_start(outf); 2457 if (max_target_cpus) 2458 for_each_online_target_cpu_in_set(dump_clos_config_for_cpu, 2459 NULL, NULL, NULL, NULL); 2460 else 2461 for_each_online_power_domain_in_set(dump_clos_config_for_cpu, NULL, 2462 NULL, NULL, NULL); 2463 isst_ctdp_display_information_end(outf); 2464 } 2465 2466 static void get_clos_info_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2467 void *arg4) 2468 { 2469 int enable, ret, prio_type; 2470 2471 ret = isst_clos_get_clos_information(id, &enable, &prio_type); 2472 if (ret) 2473 isst_display_error_info_message(1, "isst_clos_get_info failed", 0, 0); 2474 else { 2475 int cp_state, cp_cap; 2476 2477 isst_read_pm_config(id, &cp_state, &cp_cap); 2478 isst_clos_display_clos_information(id, outf, enable, prio_type, 2479 cp_state, cp_cap); 2480 } 2481 } 2482 2483 static void dump_clos_info(int arg) 2484 { 2485 if (cmd_help) { 2486 fprintf(stderr, 2487 "Print Intel Speed Select Technology core power information\n"); 2488 fprintf(stderr, "\t Optionally specify targeted cpu id with [--cpu|-c]\n"); 2489 exit(0); 2490 } 2491 2492 isst_ctdp_display_information_start(outf); 2493 if (max_target_cpus) 2494 for_each_online_target_cpu_in_set(get_clos_info_for_cpu, NULL, 2495 NULL, NULL, NULL); 2496 else 2497 for_each_online_power_domain_in_set(get_clos_info_for_cpu, NULL, 2498 NULL, NULL, NULL); 2499 isst_ctdp_display_information_end(outf); 2500 2501 } 2502 2503 static void set_clos_config_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2504 void *arg4) 2505 { 2506 struct isst_clos_config clos_config; 2507 int ret; 2508 2509 if (id->cpu < 0) 2510 return; 2511 2512 clos_config.epp = clos_epp; 2513 clos_config.clos_prop_prio = clos_prop_prio; 2514 clos_config.clos_min = clos_min; 2515 clos_config.clos_max = clos_max; 2516 clos_config.clos_desired = clos_desired; 2517 ret = isst_set_clos(id, current_clos, &clos_config); 2518 if (ret) 2519 isst_display_error_info_message(1, "isst_set_clos failed", 0, 0); 2520 else 2521 isst_display_result(id, outf, "core-power", "config", ret); 2522 } 2523 2524 static void set_clos_config(int arg) 2525 { 2526 check_privilege(); 2527 2528 if (cmd_help) { 2529 fprintf(stderr, 2530 "Set core-power configuration for one of the four clos ids\n"); 2531 fprintf(stderr, 2532 "\tSpecify targeted clos id with [--clos|-c]\n"); 2533 if (!is_skx_based_platform()) { 2534 fprintf(stderr, "\tSpecify clos EPP with [--epp|-e]\n"); 2535 fprintf(stderr, 2536 "\tSpecify clos Proportional Priority [--weight|-w]\n"); 2537 } 2538 fprintf(stderr, "\tSpecify clos min in MHz with [--min|-n]\n"); 2539 fprintf(stderr, "\tSpecify clos max in MHz with [--max|-m]\n"); 2540 exit(0); 2541 } 2542 2543 if (current_clos < 0 || current_clos > 3) { 2544 isst_display_error_info_message(1, "Invalid clos id\n", 0, 0); 2545 exit(0); 2546 } 2547 if (!is_skx_based_platform() && (clos_epp < 0 || clos_epp > 0x0F)) { 2548 fprintf(stderr, "clos epp is not specified or invalid, default: 0\n"); 2549 clos_epp = 0; 2550 } 2551 if (!is_skx_based_platform() && (clos_prop_prio < 0 || clos_prop_prio > 0x0F)) { 2552 fprintf(stderr, 2553 "clos frequency weight is not specified or invalid, default: 0\n"); 2554 clos_prop_prio = 0; 2555 } 2556 if (clos_min < 0) { 2557 fprintf(stderr, "clos min is not specified, default: 0\n"); 2558 clos_min = 0; 2559 } 2560 if (clos_max < 0) { 2561 fprintf(stderr, "clos max is not specified, default: Max frequency (ratio 0xff)\n"); 2562 clos_max = 0xff; 2563 } 2564 if (clos_desired) { 2565 fprintf(stderr, "clos desired is not supported on this platform\n"); 2566 clos_desired = 0x00; 2567 } 2568 2569 isst_ctdp_display_information_start(outf); 2570 if (max_target_cpus) 2571 for_each_online_target_cpu_in_set(set_clos_config_for_cpu, NULL, 2572 NULL, NULL, NULL); 2573 else 2574 for_each_online_power_domain_in_set(set_clos_config_for_cpu, NULL, 2575 NULL, NULL, NULL); 2576 isst_ctdp_display_information_end(outf); 2577 } 2578 2579 static void set_clos_assoc_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2580 void *arg4) 2581 { 2582 int ret; 2583 2584 ret = isst_clos_associate(id, current_clos); 2585 if (ret) 2586 debug_printf("isst_clos_associate failed"); 2587 else 2588 isst_display_result(id, outf, "core-power", "assoc", ret); 2589 } 2590 2591 static void set_clos_assoc(int arg) 2592 { 2593 check_privilege(); 2594 2595 if (cmd_help) { 2596 fprintf(stderr, "Associate a clos id to a CPU\n"); 2597 fprintf(stderr, 2598 "\tSpecify targeted clos id with [--clos|-c]\n"); 2599 fprintf(stderr, 2600 "\tFor example to associate clos 1 to CPU 0: issue\n"); 2601 fprintf(stderr, 2602 "\tintel-speed-select --cpu 0 core-power assoc --clos 1\n"); 2603 exit(0); 2604 } 2605 2606 if (current_clos < 0 || current_clos > 3) { 2607 isst_display_error_info_message(1, "Invalid clos id\n", 0, 0); 2608 exit(0); 2609 } 2610 2611 isst_ctdp_display_information_start(outf); 2612 2613 if (max_target_cpus) 2614 for_each_online_target_cpu_in_set(set_clos_assoc_for_cpu, NULL, 2615 NULL, NULL, NULL); 2616 else { 2617 isst_display_error_info_message(1, "Invalid target cpu. Specify with [-c|--cpu]", 0, 0); 2618 } 2619 isst_ctdp_display_information_end(outf); 2620 } 2621 2622 static void get_clos_assoc_for_cpu(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2623 void *arg4) 2624 { 2625 int clos, ret; 2626 2627 ret = isst_clos_get_assoc_status(id, &clos); 2628 if (ret) 2629 isst_display_error_info_message(1, "isst_clos_get_assoc_status failed", 0, 0); 2630 else 2631 isst_clos_display_assoc_information(id, outf, clos); 2632 } 2633 2634 static void get_clos_assoc(int arg) 2635 { 2636 if (cmd_help) { 2637 fprintf(stderr, "Get associate clos id to a CPU\n"); 2638 fprintf(stderr, "\tSpecify targeted cpu id with [--cpu|-c]\n"); 2639 exit(0); 2640 } 2641 2642 if (!max_target_cpus) { 2643 isst_display_error_info_message(1, "Invalid target cpu. Specify with [-c|--cpu]", 0, 0); 2644 exit(0); 2645 } 2646 2647 isst_ctdp_display_information_start(outf); 2648 for_each_online_target_cpu_in_set(get_clos_assoc_for_cpu, NULL, 2649 NULL, NULL, NULL); 2650 isst_ctdp_display_information_end(outf); 2651 } 2652 2653 static void set_turbo_mode_for_cpu(struct isst_id *id, int status) 2654 { 2655 int base_freq; 2656 2657 if (status) { 2658 base_freq = get_cpufreq_base_freq(id->cpu); 2659 set_cpufreq_scaling_min_max(id->cpu, 1, base_freq); 2660 } else { 2661 set_scaling_max_to_cpuinfo_max(id); 2662 } 2663 2664 if (status) { 2665 isst_display_result(id, outf, "turbo-mode", "disable", 0); 2666 } else { 2667 isst_display_result(id, outf, "turbo-mode", "enable", 0); 2668 } 2669 } 2670 2671 static void set_turbo_mode(int arg) 2672 { 2673 int i, disable = arg; 2674 struct isst_id id; 2675 2676 check_privilege(); 2677 2678 if (cmd_help) { 2679 if (disable) 2680 fprintf(stderr, "Set turbo mode disable\n"); 2681 else 2682 fprintf(stderr, "Set turbo mode enable\n"); 2683 exit(0); 2684 } 2685 2686 isst_ctdp_display_information_start(outf); 2687 2688 for (i = 0; i < topo_max_cpus; ++i) { 2689 int online; 2690 2691 if (i) 2692 online = parse_int_file( 2693 1, "/sys/devices/system/cpu/cpu%d/online", i); 2694 else 2695 online = 2696 1; /* online entry for CPU 0 needs some special configs */ 2697 2698 if (online) { 2699 set_isst_id(&id, i); 2700 set_turbo_mode_for_cpu(&id, disable); 2701 } 2702 2703 } 2704 isst_ctdp_display_information_end(outf); 2705 } 2706 2707 static void get_set_trl(struct isst_id *id, void *arg1, void *arg2, void *arg3, 2708 void *arg4) 2709 { 2710 unsigned long long trl; 2711 int set = *(int *)arg4; 2712 int ret; 2713 2714 if (id->cpu < 0) 2715 return; 2716 2717 if (set && !fact_trl) { 2718 isst_display_error_info_message(1, "Invalid TRL. Specify with [-t|--trl]", 0, 0); 2719 exit(0); 2720 } 2721 2722 if (set) { 2723 check_privilege(); 2724 ret = isst_set_trl(id, fact_trl); 2725 isst_display_result(id, outf, "turbo-mode", "set-trl", ret); 2726 return; 2727 } 2728 2729 ret = isst_get_trl(id, &trl); 2730 if (ret) 2731 isst_display_result(id, outf, "turbo-mode", "get-trl", ret); 2732 else 2733 isst_trl_display_information(id, outf, trl); 2734 } 2735 2736 static void process_trl(int arg) 2737 { 2738 if (cmd_help) { 2739 if (arg) { 2740 fprintf(stderr, "Set TRL (turbo ratio limits)\n"); 2741 fprintf(stderr, "\t t|--trl: Specify turbo ratio limit for setting TRL in hex starting with 0x\n"); 2742 } else { 2743 fprintf(stderr, "Get TRL (turbo ratio limits)\n"); 2744 } 2745 exit(0); 2746 } 2747 2748 isst_ctdp_display_information_start(outf); 2749 if (max_target_cpus) 2750 for_each_online_target_cpu_in_set(get_set_trl, NULL, 2751 NULL, NULL, &arg); 2752 else 2753 for_each_online_power_domain_in_set(get_set_trl, NULL, 2754 NULL, NULL, &arg); 2755 isst_ctdp_display_information_end(outf); 2756 } 2757 2758 static struct process_cmd_struct clx_n_cmds[] = { 2759 { "perf-profile", "info", dump_isst_config, 0 }, 2760 { "base-freq", "info", dump_pbf_config, 0 }, 2761 { "base-freq", "enable", set_pbf_enable, 1 }, 2762 { "base-freq", "disable", set_pbf_enable, 0 }, 2763 { NULL, NULL, NULL, 0 } 2764 }; 2765 2766 static struct process_cmd_struct isst_cmds[] = { 2767 { "perf-profile", "get-lock-status", get_tdp_locked, 0 }, 2768 { "perf-profile", "get-config-levels", get_tdp_levels, 0 }, 2769 { "perf-profile", "get-config-version", get_tdp_version, 0 }, 2770 { "perf-profile", "get-config-enabled", get_tdp_enabled, 0 }, 2771 { "perf-profile", "get-config-current-level", get_tdp_current_level, 2772 0 }, 2773 { "perf-profile", "set-config-level", set_tdp_level, 0 }, 2774 { "perf-profile", "info", dump_isst_config, 0 }, 2775 { "base-freq", "info", dump_pbf_config, 0 }, 2776 { "base-freq", "enable", set_pbf_enable, 1 }, 2777 { "base-freq", "disable", set_pbf_enable, 0 }, 2778 { "turbo-freq", "info", dump_fact_config, 0 }, 2779 { "turbo-freq", "enable", set_fact_enable, 1 }, 2780 { "turbo-freq", "disable", set_fact_enable, 0 }, 2781 { "core-power", "info", dump_clos_info, 0 }, 2782 { "core-power", "enable", set_clos_enable, 1 }, 2783 { "core-power", "disable", set_clos_enable, 0 }, 2784 { "core-power", "config", set_clos_config, 0 }, 2785 { "core-power", "get-config", dump_clos_config, 0 }, 2786 { "core-power", "assoc", set_clos_assoc, 0 }, 2787 { "core-power", "get-assoc", get_clos_assoc, 0 }, 2788 { "turbo-mode", "enable", set_turbo_mode, 0 }, 2789 { "turbo-mode", "disable", set_turbo_mode, 1 }, 2790 { "turbo-mode", "get-trl", process_trl, 0 }, 2791 { "turbo-mode", "set-trl", process_trl, 1 }, 2792 { NULL, NULL, NULL } 2793 }; 2794 2795 /* 2796 * parse cpuset with following syntax 2797 * 1,2,4..6,8-10 and set bits in cpu_subset 2798 */ 2799 void parse_cpu_command(char *optarg) 2800 { 2801 unsigned int start, end, invalid_count; 2802 char *next; 2803 2804 next = optarg; 2805 invalid_count = 0; 2806 2807 while (next && *next) { 2808 if (*next == '-') /* no negative cpu numbers */ 2809 goto error; 2810 2811 start = strtoul(next, &next, 10); 2812 2813 if (max_target_cpus < MAX_CPUS_IN_ONE_REQ) 2814 target_cpus[max_target_cpus++] = start; 2815 else 2816 invalid_count = 1; 2817 2818 if (*next == '\0') 2819 break; 2820 2821 if (*next == ',') { 2822 next += 1; 2823 continue; 2824 } 2825 2826 if (*next == '-') { 2827 next += 1; /* start range */ 2828 } else if (*next == '.') { 2829 next += 1; 2830 if (*next == '.') 2831 next += 1; /* start range */ 2832 else 2833 goto error; 2834 } 2835 2836 end = strtoul(next, &next, 10); 2837 if (end <= start) 2838 goto error; 2839 2840 while (++start <= end) { 2841 if (max_target_cpus < MAX_CPUS_IN_ONE_REQ) 2842 target_cpus[max_target_cpus++] = start; 2843 else 2844 invalid_count = 1; 2845 } 2846 2847 if (*next == ',') 2848 next += 1; 2849 else if (*next != '\0') 2850 goto error; 2851 } 2852 2853 if (invalid_count) { 2854 isst_ctdp_display_information_start(outf); 2855 isst_display_error_info_message(1, "Too many CPUs in one request: max is", 1, MAX_CPUS_IN_ONE_REQ - 1); 2856 isst_ctdp_display_information_end(outf); 2857 exit(-1); 2858 } 2859 2860 #ifdef DEBUG 2861 { 2862 int i; 2863 2864 for (i = 0; i < max_target_cpus; ++i) 2865 printf("cpu [%d] in arg\n", target_cpus[i]); 2866 } 2867 #endif 2868 return; 2869 2870 error: 2871 fprintf(stderr, "\"--cpu %s\" malformed\n", optarg); 2872 exit(-1); 2873 } 2874 2875 static void check_optarg(char *option, int hex) 2876 { 2877 if (optarg) { 2878 char *start = optarg; 2879 int i; 2880 2881 if (hex && strlen(optarg) < 3) { 2882 /* At least 0x plus one character must be present */ 2883 fprintf(stderr, "malformed arguments for:%s [%s]\n", option, optarg); 2884 exit(0); 2885 } 2886 2887 if (hex) { 2888 if (optarg[0] != '0' || tolower(optarg[1]) != 'x') { 2889 fprintf(stderr, "malformed arguments for:%s [%s]\n", 2890 option, optarg); 2891 exit(0); 2892 } 2893 start = &optarg[2]; 2894 } 2895 2896 for (i = 0; i < strlen(start); ++i) { 2897 if (hex) { 2898 if (!isxdigit(start[i])) { 2899 fprintf(stderr, "malformed arguments for:%s [%s]\n", 2900 option, optarg); 2901 exit(0); 2902 } 2903 } else if (!isdigit(start[i])) { 2904 fprintf(stderr, "malformed arguments for:%s [%s]\n", 2905 option, optarg); 2906 exit(0); 2907 } 2908 } 2909 } 2910 } 2911 2912 static void parse_cmd_args(int argc, int start, char **argv) 2913 { 2914 int opt; 2915 int option_index; 2916 2917 static struct option long_options[] = { 2918 { "bucket", required_argument, 0, 'b' }, 2919 { "level", required_argument, 0, 'l' }, 2920 { "online", required_argument, 0, 'o' }, 2921 { "trl-type", required_argument, 0, 'r' }, 2922 { "trl", required_argument, 0, 't' }, 2923 { "help", no_argument, 0, 'h' }, 2924 { "clos", required_argument, 0, 'c' }, 2925 { "desired", required_argument, 0, 'd' }, 2926 { "epp", required_argument, 0, 'e' }, 2927 { "min", required_argument, 0, 'n' }, 2928 { "max", required_argument, 0, 'm' }, 2929 { "priority", required_argument, 0, 'p' }, 2930 { "weight", required_argument, 0, 'w' }, 2931 { "auto", no_argument, 0, 'a' }, 2932 { 0, 0, 0, 0 } 2933 }; 2934 2935 option_index = start; 2936 2937 optind = start + 1; 2938 while ((opt = getopt_long(argc, argv, "b:l:t:c:d:e:n:m:p:w:r:hoa", 2939 long_options, &option_index)) != -1) { 2940 switch (opt) { 2941 case 'a': 2942 auto_mode = 1; 2943 break; 2944 case 'b': 2945 check_optarg("bucket", 0); 2946 fact_bucket = atoi(optarg); 2947 break; 2948 case 'h': 2949 cmd_help = 1; 2950 break; 2951 case 'l': 2952 check_optarg("level", 0); 2953 tdp_level = atoi(optarg); 2954 break; 2955 case 'o': 2956 force_online_offline = 1; 2957 break; 2958 case 't': 2959 check_optarg("trl", 1); 2960 sscanf(optarg, "0x%llx", &fact_trl); 2961 break; 2962 case 'r': 2963 if (!strncmp(optarg, "sse", 3)) { 2964 fact_avx = 0x01; 2965 } else if (!strncmp(optarg, "avx2", 4)) { 2966 fact_avx = 0x02; 2967 } else if (!strncmp(optarg, "avx512", 6)) { 2968 fact_avx = 0x04; 2969 } else { 2970 fprintf(outf, "Invalid sse,avx options\n"); 2971 exit(1); 2972 } 2973 break; 2974 /* CLOS related */ 2975 case 'c': 2976 check_optarg("clos", 0); 2977 current_clos = atoi(optarg); 2978 break; 2979 case 'd': 2980 check_optarg("desired", 0); 2981 clos_desired = atoi(optarg); 2982 clos_desired /= isst_get_disp_freq_multiplier(); 2983 break; 2984 case 'e': 2985 check_optarg("epp", 0); 2986 clos_epp = atoi(optarg); 2987 if (is_skx_based_platform()) { 2988 isst_display_error_info_message(1, "epp can't be specified on this platform", 0, 0); 2989 exit(0); 2990 } 2991 break; 2992 case 'n': 2993 check_optarg("min", 0); 2994 clos_min = atoi(optarg); 2995 clos_min /= isst_get_disp_freq_multiplier(); 2996 break; 2997 case 'm': 2998 check_optarg("max", 0); 2999 clos_max = atoi(optarg); 3000 clos_max /= isst_get_disp_freq_multiplier(); 3001 break; 3002 case 'p': 3003 check_optarg("priority", 0); 3004 clos_priority_type = atoi(optarg); 3005 if (is_skx_based_platform() && !clos_priority_type) { 3006 isst_display_error_info_message(1, "Invalid clos priority type: proportional for this platform", 0, 0); 3007 exit(0); 3008 } 3009 break; 3010 case 'w': 3011 check_optarg("weight", 0); 3012 clos_prop_prio = atoi(optarg); 3013 if (is_skx_based_platform()) { 3014 isst_display_error_info_message(1, "weight can't be specified on this platform", 0, 0); 3015 exit(0); 3016 } 3017 break; 3018 default: 3019 printf("Unknown option: ignore\n"); 3020 } 3021 } 3022 3023 if (argv[optind]) 3024 printf("Garbage at the end of command: ignore\n"); 3025 } 3026 3027 static void isst_help(void) 3028 { 3029 printf("perf-profile:\tAn architectural mechanism that allows multiple optimized \n\ 3030 performance profiles per system via static and/or dynamic\n\ 3031 adjustment of core count, workload, Tjmax, and\n\ 3032 TDP, etc.\n"); 3033 printf("\nCommands : For feature=perf-profile\n"); 3034 printf("\tinfo\n"); 3035 3036 if (!is_clx_n_platform()) { 3037 printf("\tget-lock-status\n"); 3038 printf("\tget-config-levels\n"); 3039 printf("\tget-config-version\n"); 3040 printf("\tget-config-enabled\n"); 3041 printf("\tget-config-current-level\n"); 3042 printf("\tset-config-level\n"); 3043 } 3044 } 3045 3046 static void pbf_help(void) 3047 { 3048 printf("base-freq:\tEnables users to increase guaranteed base frequency\n\ 3049 on certain cores (high priority cores) in exchange for lower\n\ 3050 base frequency on remaining cores (low priority cores).\n"); 3051 printf("\tcommand : info\n"); 3052 printf("\tcommand : enable\n"); 3053 printf("\tcommand : disable\n"); 3054 } 3055 3056 static void fact_help(void) 3057 { 3058 printf("turbo-freq:\tEnables the ability to set different turbo ratio\n\ 3059 limits to cores based on priority.\n"); 3060 printf("\nCommand: For feature=turbo-freq\n"); 3061 printf("\tcommand : info\n"); 3062 printf("\tcommand : enable\n"); 3063 printf("\tcommand : disable\n"); 3064 } 3065 3066 static void turbo_mode_help(void) 3067 { 3068 printf("turbo-mode:\tEnables users to enable/disable turbo mode by adjusting frequency settings. Also allows to get and set turbo ratio limits (TRL).\n"); 3069 printf("\tcommand : enable\n"); 3070 printf("\tcommand : disable\n"); 3071 printf("\tcommand : get-trl\n"); 3072 printf("\tcommand : set-trl\n"); 3073 } 3074 3075 3076 static void core_power_help(void) 3077 { 3078 printf("core-power:\tInterface that allows user to define per core/tile\n\ 3079 priority.\n"); 3080 printf("\nCommands : For feature=core-power\n"); 3081 printf("\tinfo\n"); 3082 printf("\tenable\n"); 3083 printf("\tdisable\n"); 3084 printf("\tconfig\n"); 3085 printf("\tget-config\n"); 3086 printf("\tassoc\n"); 3087 printf("\tget-assoc\n"); 3088 } 3089 3090 struct process_cmd_help_struct { 3091 char *feature; 3092 void (*process_fn)(void); 3093 }; 3094 3095 static struct process_cmd_help_struct isst_help_cmds[] = { 3096 { "perf-profile", isst_help }, 3097 { "base-freq", pbf_help }, 3098 { "turbo-freq", fact_help }, 3099 { "core-power", core_power_help }, 3100 { "turbo-mode", turbo_mode_help }, 3101 { NULL, NULL } 3102 }; 3103 3104 static struct process_cmd_help_struct clx_n_help_cmds[] = { 3105 { "perf-profile", isst_help }, 3106 { "base-freq", pbf_help }, 3107 { NULL, NULL } 3108 }; 3109 3110 void process_command(int argc, char **argv, 3111 struct process_cmd_help_struct *help_cmds, 3112 struct process_cmd_struct *cmds) 3113 { 3114 int i = 0, matched = 0; 3115 char *feature = argv[optind]; 3116 char *cmd = argv[optind + 1]; 3117 3118 if (!feature || !cmd) 3119 return; 3120 3121 debug_printf("feature name [%s] command [%s]\n", feature, cmd); 3122 if (!strcmp(cmd, "-h") || !strcmp(cmd, "--help")) { 3123 while (help_cmds[i].feature) { 3124 if (!strcmp(help_cmds[i].feature, feature)) { 3125 help_cmds[i].process_fn(); 3126 exit(0); 3127 } 3128 ++i; 3129 } 3130 } 3131 3132 i = 0; 3133 while (cmds[i].feature) { 3134 if (!strcmp(cmds[i].feature, feature) && 3135 !strcmp(cmds[i].command, cmd)) { 3136 parse_cmd_args(argc, optind + 1, argv); 3137 cmds[i].process_fn(cmds[i].arg); 3138 matched = 1; 3139 break; 3140 } 3141 ++i; 3142 } 3143 3144 if (!matched) 3145 fprintf(stderr, "Invalid command\n"); 3146 } 3147 3148 static void usage(void) 3149 { 3150 if (is_clx_n_platform()) { 3151 fprintf(stderr, "\nThere is limited support of Intel Speed Select features on this platform.\n"); 3152 fprintf(stderr, "Everything is pre-configured using BIOS options, this tool can't enable any feature in the hardware.\n\n"); 3153 } 3154 3155 printf("\nUsage:\n"); 3156 printf("intel-speed-select [OPTIONS] FEATURE COMMAND COMMAND_ARGUMENTS\n"); 3157 printf("\nUse this tool to enumerate and control the Intel Speed Select Technology features:\n"); 3158 if (is_clx_n_platform()) 3159 printf("\nFEATURE : [perf-profile|base-freq]\n"); 3160 else 3161 printf("\nFEATURE : [perf-profile|base-freq|turbo-freq|core-power|turbo-mode]\n"); 3162 printf("\nFor help on each feature, use -h|--help\n"); 3163 printf("\tFor example: intel-speed-select perf-profile -h\n"); 3164 3165 printf("\nFor additional help on each command for a feature, use --h|--help\n"); 3166 printf("\tFor example: intel-speed-select perf-profile get-lock-status -h\n"); 3167 printf("\t\t This will print help for the command \"get-lock-status\" for the feature \"perf-profile\"\n"); 3168 3169 printf("\nOPTIONS\n"); 3170 printf("\t[-c|--cpu] : logical cpu number\n"); 3171 printf("\t\tDefault: Die scoped for all dies in the system with multiple dies/package\n"); 3172 printf("\t\t\t Or Package scoped for all Packages when each package contains one die\n"); 3173 printf("\t[-d|--debug] : Debug mode\n"); 3174 printf("\t[-f|--format] : output format [json|text]. Default: text\n"); 3175 printf("\t[-h|--help] : Print help\n"); 3176 printf("\t[-i|--info] : Print platform information\n"); 3177 printf("\t[-a|--all-cpus-online] : Force online every CPU in the system\n"); 3178 printf("\t[-o|--out] : Output file\n"); 3179 printf("\t\t\tDefault : stderr\n"); 3180 printf("\t[-p|--pause] : Delay between two mail box commands in milliseconds\n"); 3181 printf("\t[-r|--retry] : Retry count for mail box commands on failure, default 3\n"); 3182 printf("\t[-v|--version] : Print version\n"); 3183 printf("\t[-b|--oob : Start a daemon to process HFI events for perf profile change from Out of Band agent.\n"); 3184 printf("\t[-n|--no-daemon : Don't run as daemon. By default --oob will turn on daemon mode\n"); 3185 printf("\t[-w|--delay : Delay for reading config level state change in OOB poll mode.\n"); 3186 printf("\t[-g|--cgroupv2 : Try to use cgroup v2 CPU isolation instead of CPU online/offline.\n"); 3187 printf("\t[-u|--cpu0-workaround : Don't try to online/offline CPU0 instead use cgroup v2.\n"); 3188 printf("\nResult format\n"); 3189 printf("\tResult display uses a common format for each command:\n"); 3190 printf("\tResults are formatted in text/JSON with\n"); 3191 printf("\t\tPackage, Die, CPU, and command specific results.\n"); 3192 3193 printf("\nExamples\n"); 3194 printf("\tTo get platform information:\n"); 3195 printf("\t\tintel-speed-select --info\n"); 3196 printf("\tTo get full perf-profile information dump:\n"); 3197 printf("\t\tintel-speed-select perf-profile info\n"); 3198 printf("\tTo get full base-freq information dump:\n"); 3199 printf("\t\tintel-speed-select base-freq info -l 0\n"); 3200 if (!is_clx_n_platform()) { 3201 printf("\tTo get full turbo-freq information dump:\n"); 3202 printf("\t\tintel-speed-select turbo-freq info -l 0\n"); 3203 } 3204 exit(0); 3205 } 3206 3207 static void cmdline(int argc, char **argv) 3208 { 3209 const char *pathname = "/dev/isst_interface"; 3210 char *ptr; 3211 FILE *fp; 3212 int opt, force_cpus_online = 0; 3213 int option_index = 0; 3214 int ret; 3215 int oob_mode = 0; 3216 int poll_interval = -1; 3217 int no_daemon = 0; 3218 int mbox_delay = 0, mbox_retries = 3; 3219 3220 static struct option long_options[] = { 3221 { "all-cpus-online", no_argument, 0, 'a' }, 3222 { "cpu", required_argument, 0, 'c' }, 3223 { "debug", no_argument, 0, 'd' }, 3224 { "format", required_argument, 0, 'f' }, 3225 { "help", no_argument, 0, 'h' }, 3226 { "info", no_argument, 0, 'i' }, 3227 { "pause", required_argument, 0, 'p' }, 3228 { "out", required_argument, 0, 'o' }, 3229 { "retry", required_argument, 0, 'r' }, 3230 { "version", no_argument, 0, 'v' }, 3231 { "oob", no_argument, 0, 'b' }, 3232 { "no-daemon", no_argument, 0, 'n' }, 3233 { "poll-interval", required_argument, 0, 'w' }, 3234 { "cgroupv2", required_argument, 0, 'g' }, 3235 { "cpu0-workaround", required_argument, 0, 'u' }, 3236 { 0, 0, 0, 0 } 3237 }; 3238 3239 if (geteuid() != 0) { 3240 int fd; 3241 3242 fd = open(pathname, O_RDWR); 3243 if (fd < 0) { 3244 fprintf(stderr, "Must run as root\n"); 3245 exit(0); 3246 } 3247 fprintf(stderr, "\nNot running as root, Only read only operations are supported\n"); 3248 close(fd); 3249 read_only = 1; 3250 } 3251 3252 ret = update_cpu_model(); 3253 if (ret) { 3254 fprintf(stderr, "Invalid CPU model (%d)\n", cpu_model); 3255 exit(1); 3256 } 3257 printf("Intel(R) Speed Select Technology\n"); 3258 printf("Executing on CPU model:%d[0x%x]\n", cpu_model, cpu_model); 3259 3260 if (!is_clx_n_platform()) { 3261 fp = fopen(pathname, "rb"); 3262 if (!fp) { 3263 fprintf(stderr, "Intel speed select drivers are not loaded on this system.\n"); 3264 fprintf(stderr, "Verify that kernel config includes CONFIG_INTEL_SPEED_SELECT_INTERFACE.\n"); 3265 fprintf(stderr, "If the config is included then this is not a supported platform.\n"); 3266 exit(0); 3267 } 3268 fclose(fp); 3269 } 3270 3271 ret = isst_fill_platform_info(); 3272 if (ret) 3273 goto out; 3274 3275 progname = argv[0]; 3276 while ((opt = getopt_long_only(argc, argv, "+c:df:hio:vabw:ngu", long_options, 3277 &option_index)) != -1) { 3278 switch (opt) { 3279 case 'a': 3280 force_cpus_online = 1; 3281 break; 3282 case 'c': 3283 parse_cpu_command(optarg); 3284 break; 3285 case 'd': 3286 debug_flag = 1; 3287 printf("Debug Mode ON\n"); 3288 break; 3289 case 'f': 3290 if (!strncmp(optarg, "json", 4)) 3291 out_format_json = 1; 3292 break; 3293 case 'h': 3294 usage(); 3295 break; 3296 case 'i': 3297 isst_print_platform_information(); 3298 break; 3299 case 'o': 3300 if (outf) 3301 fclose(outf); 3302 outf = fopen_or_exit(optarg, "w"); 3303 break; 3304 case 'p': 3305 ret = strtol(optarg, &ptr, 10); 3306 if (!ret) 3307 fprintf(stderr, "Invalid pause interval, ignore\n"); 3308 else 3309 mbox_delay = ret; 3310 break; 3311 case 'r': 3312 ret = strtol(optarg, &ptr, 10); 3313 if (!ret) 3314 fprintf(stderr, "Invalid retry count, ignore\n"); 3315 else 3316 mbox_retries = ret; 3317 break; 3318 case 'v': 3319 print_version(); 3320 exit(0); 3321 break; 3322 case 'b': 3323 oob_mode = 1; 3324 break; 3325 case 'n': 3326 no_daemon = 1; 3327 break; 3328 case 'w': 3329 ret = strtol(optarg, &ptr, 10); 3330 if (!ret) { 3331 fprintf(stderr, "Invalid poll interval count\n"); 3332 exit(0); 3333 } 3334 poll_interval = ret; 3335 break; 3336 case 'g': 3337 cgroupv2 = 1; 3338 break; 3339 case 'u': 3340 cpu_0_cgroupv2 = 1; 3341 break; 3342 default: 3343 usage(); 3344 } 3345 } 3346 3347 if (optind > (argc - 2) && !oob_mode) { 3348 usage(); 3349 exit(0); 3350 } 3351 3352 isst_update_platform_param(ISST_PARAM_MBOX_DELAY, mbox_delay); 3353 isst_update_platform_param(ISST_PARAM_MBOX_RETRIES, mbox_retries); 3354 3355 set_max_cpu_num(); 3356 if (force_cpus_online) 3357 force_all_cpus_online(); 3358 store_cpu_topology(); 3359 create_cpu_map(); 3360 3361 if (oob_mode) { 3362 if (debug_flag) 3363 fprintf(stderr, "OOB mode is enabled in debug mode\n"); 3364 3365 ret = isst_daemon(debug_flag, poll_interval, no_daemon); 3366 if (ret) 3367 fprintf(stderr, "OOB mode enable failed\n"); 3368 goto out; 3369 } 3370 3371 if (!is_clx_n_platform()) { 3372 process_command(argc, argv, isst_help_cmds, isst_cmds); 3373 } else { 3374 process_command(argc, argv, clx_n_help_cmds, clx_n_cmds); 3375 } 3376 out: 3377 free_cpu_set(present_cpumask); 3378 free_cpu_set(target_cpumask); 3379 } 3380 3381 int main(int argc, char **argv) 3382 { 3383 outf = stderr; 3384 cmdline(argc, argv); 3385 return 0; 3386 } 3387