cmt_test.c 4.6 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Cache Monitoring Technology (CMT) test
  4. *
  5. * Copyright (C) 2018 Intel Corporation
  6. *
  7. * Authors:
  8. * Sai Praneeth Prakhya <sai.praneeth.prakhya@intel.com>,
  9. * Fenghua Yu <fenghua.yu@intel.com>
  10. */
  11. #include "resctrl.h"
  12. #include <unistd.h>
  13. #define RESULT_FILE_NAME "result_cmt"
  14. #define NUM_OF_RUNS 5
  15. #define MAX_DIFF 2000000
  16. #define MAX_DIFF_PERCENT 15
  17. #define CON_MON_LCC_OCCUP_PATH \
  18. "%s/%s/mon_data/mon_L3_%02d/llc_occupancy"
  19. static int cmt_init(const struct resctrl_val_param *param, int domain_id)
  20. {
  21. sprintf(llc_occup_path, CON_MON_LCC_OCCUP_PATH, RESCTRL_PATH,
  22. param->ctrlgrp, domain_id);
  23. return 0;
  24. }
  25. static int cmt_setup(const struct resctrl_test *test,
  26. const struct user_params *uparams,
  27. struct resctrl_val_param *p)
  28. {
  29. /* Run NUM_OF_RUNS times */
  30. if (p->num_of_runs >= NUM_OF_RUNS)
  31. return END_OF_TESTS;
  32. p->num_of_runs++;
  33. return 0;
  34. }
  35. static int cmt_measure(const struct user_params *uparams,
  36. struct resctrl_val_param *param, pid_t bm_pid)
  37. {
  38. sleep(1);
  39. return measure_llc_resctrl(param->filename, bm_pid);
  40. }
  41. static int show_results_info(unsigned long sum_llc_val, int no_of_bits,
  42. unsigned long cache_span, unsigned long max_diff,
  43. unsigned long max_diff_percent, unsigned long num_of_runs,
  44. bool platform)
  45. {
  46. unsigned long avg_llc_val = 0;
  47. float diff_percent;
  48. long avg_diff = 0;
  49. int ret;
  50. avg_llc_val = sum_llc_val / num_of_runs;
  51. avg_diff = (long)(cache_span - avg_llc_val);
  52. diff_percent = ((float)cache_span - avg_llc_val) / cache_span * 100;
  53. ret = platform && abs((int)diff_percent) > max_diff_percent &&
  54. labs(avg_diff) > max_diff;
  55. ksft_print_msg("%s Check cache miss rate within %lu%%\n",
  56. ret ? "Fail:" : "Pass:", max_diff_percent);
  57. ksft_print_msg("Percent diff=%d\n", abs((int)diff_percent));
  58. show_cache_info(no_of_bits, avg_llc_val, cache_span, false);
  59. return ret;
  60. }
  61. static int check_results(struct resctrl_val_param *param, size_t span, int no_of_bits)
  62. {
  63. char *token_array[8], temp[512];
  64. unsigned long sum_llc_occu_resc = 0;
  65. int runs = 0;
  66. FILE *fp;
  67. ksft_print_msg("Checking for pass/fail\n");
  68. fp = fopen(param->filename, "r");
  69. if (!fp) {
  70. ksft_perror("Error in opening file");
  71. return -1;
  72. }
  73. while (fgets(temp, sizeof(temp), fp)) {
  74. char *token = strtok(temp, ":\t");
  75. int fields = 0;
  76. while (token) {
  77. token_array[fields++] = token;
  78. token = strtok(NULL, ":\t");
  79. }
  80. /* Field 3 is llc occ resc value */
  81. sum_llc_occu_resc += strtoul(token_array[3], NULL, 0);
  82. runs++;
  83. }
  84. fclose(fp);
  85. return show_results_info(sum_llc_occu_resc, no_of_bits, span,
  86. MAX_DIFF, MAX_DIFF_PERCENT, runs, true);
  87. }
  88. static void cmt_test_cleanup(void)
  89. {
  90. remove(RESULT_FILE_NAME);
  91. }
  92. static int cmt_run_test(const struct resctrl_test *test, const struct user_params *uparams)
  93. {
  94. struct fill_buf_param fill_buf = {};
  95. unsigned long cache_total_size = 0;
  96. int n = uparams->bits ? : 5;
  97. unsigned long long_mask;
  98. int count_of_bits;
  99. size_t span;
  100. int ret;
  101. ret = get_full_cbm("L3", &long_mask);
  102. if (ret)
  103. return ret;
  104. ret = get_cache_size(uparams->cpu, "L3", &cache_total_size);
  105. if (ret)
  106. return ret;
  107. ksft_print_msg("Cache size :%lu\n", cache_total_size);
  108. count_of_bits = count_bits(long_mask);
  109. if (n < 1 || n > count_of_bits) {
  110. ksft_print_msg("Invalid input value for numbr_of_bits n!\n");
  111. ksft_print_msg("Please enter value in range 1 to %d\n", count_of_bits);
  112. return -1;
  113. }
  114. struct resctrl_val_param param = {
  115. .ctrlgrp = "c1",
  116. .filename = RESULT_FILE_NAME,
  117. .mask = ~(long_mask << n) & long_mask,
  118. .num_of_runs = 0,
  119. .init = cmt_init,
  120. .setup = cmt_setup,
  121. .measure = cmt_measure,
  122. };
  123. span = cache_portion_size(cache_total_size, param.mask, long_mask);
  124. if (uparams->fill_buf) {
  125. fill_buf.buf_size = span;
  126. fill_buf.memflush = uparams->fill_buf->memflush;
  127. param.fill_buf = &fill_buf;
  128. } else if (!uparams->benchmark_cmd[0]) {
  129. fill_buf.buf_size = span;
  130. fill_buf.memflush = true;
  131. param.fill_buf = &fill_buf;
  132. }
  133. remove(RESULT_FILE_NAME);
  134. ret = resctrl_val(test, uparams, &param);
  135. if (ret)
  136. return ret;
  137. ret = check_results(&param, span, n);
  138. if (ret && (get_vendor() == ARCH_INTEL) && !snc_kernel_support())
  139. ksft_print_msg("Kernel doesn't support Sub-NUMA Clustering but it is enabled on the system.\n");
  140. return ret;
  141. }
  142. static bool cmt_feature_check(const struct resctrl_test *test)
  143. {
  144. return test_resource_feature_check(test) &&
  145. resctrl_mon_feature_exists("L3_MON", "llc_occupancy");
  146. }
  147. struct resctrl_test cmt_test = {
  148. .name = "CMT",
  149. .resource = "L3",
  150. .feature_check = cmt_feature_check,
  151. .run_test = cmt_run_test,
  152. .cleanup = cmt_test_cleanup,
  153. };