core-kunit.h 15 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*
  3. * Data Access Monitor Unit Tests
  4. *
  5. * Copyright 2019 Amazon.com, Inc. or its affiliates. All rights reserved.
  6. *
  7. * Author: SeongJae Park <sj@kernel.org>
  8. */
  9. #ifdef CONFIG_DAMON_KUNIT_TEST
  10. #ifndef _DAMON_CORE_TEST_H
  11. #define _DAMON_CORE_TEST_H
  12. #include <kunit/test.h>
  13. static void damon_test_regions(struct kunit *test)
  14. {
  15. struct damon_region *r;
  16. struct damon_target *t;
  17. r = damon_new_region(1, 2);
  18. KUNIT_EXPECT_EQ(test, 1ul, r->ar.start);
  19. KUNIT_EXPECT_EQ(test, 2ul, r->ar.end);
  20. KUNIT_EXPECT_EQ(test, 0u, r->nr_accesses);
  21. t = damon_new_target();
  22. KUNIT_EXPECT_EQ(test, 0u, damon_nr_regions(t));
  23. damon_add_region(r, t);
  24. KUNIT_EXPECT_EQ(test, 1u, damon_nr_regions(t));
  25. damon_destroy_region(r, t);
  26. KUNIT_EXPECT_EQ(test, 0u, damon_nr_regions(t));
  27. damon_free_target(t);
  28. }
  29. static unsigned int nr_damon_targets(struct damon_ctx *ctx)
  30. {
  31. struct damon_target *t;
  32. unsigned int nr_targets = 0;
  33. damon_for_each_target(t, ctx)
  34. nr_targets++;
  35. return nr_targets;
  36. }
  37. static void damon_test_target(struct kunit *test)
  38. {
  39. struct damon_ctx *c = damon_new_ctx();
  40. struct damon_target *t;
  41. t = damon_new_target();
  42. KUNIT_EXPECT_EQ(test, 0u, nr_damon_targets(c));
  43. damon_add_target(c, t);
  44. KUNIT_EXPECT_EQ(test, 1u, nr_damon_targets(c));
  45. damon_destroy_target(t);
  46. KUNIT_EXPECT_EQ(test, 0u, nr_damon_targets(c));
  47. damon_destroy_ctx(c);
  48. }
  49. /*
  50. * Test kdamond_reset_aggregated()
  51. *
  52. * DAMON checks access to each region and aggregates this information as the
  53. * access frequency of each region. In detail, it increases '->nr_accesses' of
  54. * regions that an access has confirmed. 'kdamond_reset_aggregated()' flushes
  55. * the aggregated information ('->nr_accesses' of each regions) to the result
  56. * buffer. As a result of the flushing, the '->nr_accesses' of regions are
  57. * initialized to zero.
  58. */
  59. static void damon_test_aggregate(struct kunit *test)
  60. {
  61. struct damon_ctx *ctx = damon_new_ctx();
  62. unsigned long saddr[][3] = {{10, 20, 30}, {5, 42, 49}, {13, 33, 55} };
  63. unsigned long eaddr[][3] = {{15, 27, 40}, {31, 45, 55}, {23, 44, 66} };
  64. unsigned long accesses[][3] = {{42, 95, 84}, {10, 20, 30}, {0, 1, 2} };
  65. struct damon_target *t;
  66. struct damon_region *r;
  67. int it, ir;
  68. for (it = 0; it < 3; it++) {
  69. t = damon_new_target();
  70. damon_add_target(ctx, t);
  71. }
  72. it = 0;
  73. damon_for_each_target(t, ctx) {
  74. for (ir = 0; ir < 3; ir++) {
  75. r = damon_new_region(saddr[it][ir], eaddr[it][ir]);
  76. r->nr_accesses = accesses[it][ir];
  77. r->nr_accesses_bp = accesses[it][ir] * 10000;
  78. damon_add_region(r, t);
  79. }
  80. it++;
  81. }
  82. kdamond_reset_aggregated(ctx);
  83. it = 0;
  84. damon_for_each_target(t, ctx) {
  85. ir = 0;
  86. /* '->nr_accesses' should be zeroed */
  87. damon_for_each_region(r, t) {
  88. KUNIT_EXPECT_EQ(test, 0u, r->nr_accesses);
  89. ir++;
  90. }
  91. /* regions should be preserved */
  92. KUNIT_EXPECT_EQ(test, 3, ir);
  93. it++;
  94. }
  95. /* targets also should be preserved */
  96. KUNIT_EXPECT_EQ(test, 3, it);
  97. damon_destroy_ctx(ctx);
  98. }
  99. static void damon_test_split_at(struct kunit *test)
  100. {
  101. struct damon_ctx *c = damon_new_ctx();
  102. struct damon_target *t;
  103. struct damon_region *r, *r_new;
  104. t = damon_new_target();
  105. r = damon_new_region(0, 100);
  106. r->nr_accesses_bp = 420000;
  107. r->nr_accesses = 42;
  108. r->last_nr_accesses = 15;
  109. damon_add_region(r, t);
  110. damon_split_region_at(t, r, 25);
  111. KUNIT_EXPECT_EQ(test, r->ar.start, 0ul);
  112. KUNIT_EXPECT_EQ(test, r->ar.end, 25ul);
  113. r_new = damon_next_region(r);
  114. KUNIT_EXPECT_EQ(test, r_new->ar.start, 25ul);
  115. KUNIT_EXPECT_EQ(test, r_new->ar.end, 100ul);
  116. KUNIT_EXPECT_EQ(test, r->nr_accesses_bp, r_new->nr_accesses_bp);
  117. KUNIT_EXPECT_EQ(test, r->nr_accesses, r_new->nr_accesses);
  118. KUNIT_EXPECT_EQ(test, r->last_nr_accesses, r_new->last_nr_accesses);
  119. damon_free_target(t);
  120. damon_destroy_ctx(c);
  121. }
  122. static void damon_test_merge_two(struct kunit *test)
  123. {
  124. struct damon_target *t;
  125. struct damon_region *r, *r2, *r3;
  126. int i;
  127. t = damon_new_target();
  128. r = damon_new_region(0, 100);
  129. r->nr_accesses = 10;
  130. r->nr_accesses_bp = 100000;
  131. damon_add_region(r, t);
  132. r2 = damon_new_region(100, 300);
  133. r2->nr_accesses = 20;
  134. r2->nr_accesses_bp = 200000;
  135. damon_add_region(r2, t);
  136. damon_merge_two_regions(t, r, r2);
  137. KUNIT_EXPECT_EQ(test, r->ar.start, 0ul);
  138. KUNIT_EXPECT_EQ(test, r->ar.end, 300ul);
  139. KUNIT_EXPECT_EQ(test, r->nr_accesses, 16u);
  140. i = 0;
  141. damon_for_each_region(r3, t) {
  142. KUNIT_EXPECT_PTR_EQ(test, r, r3);
  143. i++;
  144. }
  145. KUNIT_EXPECT_EQ(test, i, 1);
  146. damon_free_target(t);
  147. }
  148. static struct damon_region *__nth_region_of(struct damon_target *t, int idx)
  149. {
  150. struct damon_region *r;
  151. unsigned int i = 0;
  152. damon_for_each_region(r, t) {
  153. if (i++ == idx)
  154. return r;
  155. }
  156. return NULL;
  157. }
  158. static void damon_test_merge_regions_of(struct kunit *test)
  159. {
  160. struct damon_target *t;
  161. struct damon_region *r;
  162. unsigned long sa[] = {0, 100, 114, 122, 130, 156, 170, 184};
  163. unsigned long ea[] = {100, 112, 122, 130, 156, 170, 184, 230};
  164. unsigned int nrs[] = {0, 0, 10, 10, 20, 30, 1, 2};
  165. unsigned long saddrs[] = {0, 114, 130, 156, 170};
  166. unsigned long eaddrs[] = {112, 130, 156, 170, 230};
  167. int i;
  168. t = damon_new_target();
  169. for (i = 0; i < ARRAY_SIZE(sa); i++) {
  170. r = damon_new_region(sa[i], ea[i]);
  171. r->nr_accesses = nrs[i];
  172. r->nr_accesses_bp = nrs[i] * 10000;
  173. damon_add_region(r, t);
  174. }
  175. damon_merge_regions_of(t, 9, 9999);
  176. /* 0-112, 114-130, 130-156, 156-170 */
  177. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 5u);
  178. for (i = 0; i < 5; i++) {
  179. r = __nth_region_of(t, i);
  180. KUNIT_EXPECT_EQ(test, r->ar.start, saddrs[i]);
  181. KUNIT_EXPECT_EQ(test, r->ar.end, eaddrs[i]);
  182. }
  183. damon_free_target(t);
  184. }
  185. static void damon_test_split_regions_of(struct kunit *test)
  186. {
  187. struct damon_ctx *c = damon_new_ctx();
  188. struct damon_target *t;
  189. struct damon_region *r;
  190. t = damon_new_target();
  191. r = damon_new_region(0, 22);
  192. damon_add_region(r, t);
  193. damon_split_regions_of(t, 2);
  194. KUNIT_EXPECT_LE(test, damon_nr_regions(t), 2u);
  195. damon_free_target(t);
  196. t = damon_new_target();
  197. r = damon_new_region(0, 220);
  198. damon_add_region(r, t);
  199. damon_split_regions_of(t, 4);
  200. KUNIT_EXPECT_LE(test, damon_nr_regions(t), 4u);
  201. damon_free_target(t);
  202. damon_destroy_ctx(c);
  203. }
  204. static void damon_test_ops_registration(struct kunit *test)
  205. {
  206. struct damon_ctx *c = damon_new_ctx();
  207. struct damon_operations ops = {.id = DAMON_OPS_VADDR}, bak;
  208. bool need_cleanup = false;
  209. /* DAMON_OPS_VADDR is registered only if CONFIG_DAMON_VADDR is set */
  210. if (!damon_is_registered_ops(DAMON_OPS_VADDR)) {
  211. bak.id = DAMON_OPS_VADDR;
  212. KUNIT_EXPECT_EQ(test, damon_register_ops(&bak), 0);
  213. need_cleanup = true;
  214. }
  215. /* DAMON_OPS_VADDR is ensured to be registered */
  216. KUNIT_EXPECT_EQ(test, damon_select_ops(c, DAMON_OPS_VADDR), 0);
  217. /* Double-registration is prohibited */
  218. KUNIT_EXPECT_EQ(test, damon_register_ops(&ops), -EINVAL);
  219. /* Unknown ops id cannot be registered */
  220. KUNIT_EXPECT_EQ(test, damon_select_ops(c, NR_DAMON_OPS), -EINVAL);
  221. /* Registration should success after unregistration */
  222. mutex_lock(&damon_ops_lock);
  223. bak = damon_registered_ops[DAMON_OPS_VADDR];
  224. damon_registered_ops[DAMON_OPS_VADDR] = (struct damon_operations){};
  225. mutex_unlock(&damon_ops_lock);
  226. ops.id = DAMON_OPS_VADDR;
  227. KUNIT_EXPECT_EQ(test, damon_register_ops(&ops), 0);
  228. mutex_lock(&damon_ops_lock);
  229. damon_registered_ops[DAMON_OPS_VADDR] = bak;
  230. mutex_unlock(&damon_ops_lock);
  231. /* Check double-registration failure again */
  232. KUNIT_EXPECT_EQ(test, damon_register_ops(&ops), -EINVAL);
  233. damon_destroy_ctx(c);
  234. if (need_cleanup) {
  235. mutex_lock(&damon_ops_lock);
  236. damon_registered_ops[DAMON_OPS_VADDR] =
  237. (struct damon_operations){};
  238. mutex_unlock(&damon_ops_lock);
  239. }
  240. }
  241. static void damon_test_set_regions(struct kunit *test)
  242. {
  243. struct damon_target *t = damon_new_target();
  244. struct damon_region *r1 = damon_new_region(4, 16);
  245. struct damon_region *r2 = damon_new_region(24, 32);
  246. struct damon_addr_range range = {.start = 8, .end = 28};
  247. unsigned long expects[] = {8, 16, 16, 24, 24, 28};
  248. int expect_idx = 0;
  249. struct damon_region *r;
  250. damon_add_region(r1, t);
  251. damon_add_region(r2, t);
  252. damon_set_regions(t, &range, 1);
  253. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 3);
  254. damon_for_each_region(r, t) {
  255. KUNIT_EXPECT_EQ(test, r->ar.start, expects[expect_idx++]);
  256. KUNIT_EXPECT_EQ(test, r->ar.end, expects[expect_idx++]);
  257. }
  258. damon_destroy_target(t);
  259. }
  260. static void damon_test_nr_accesses_to_accesses_bp(struct kunit *test)
  261. {
  262. struct damon_attrs attrs = {
  263. .sample_interval = 10,
  264. .aggr_interval = ((unsigned long)UINT_MAX + 1) * 10
  265. };
  266. /*
  267. * In some cases such as 32bit architectures where UINT_MAX is
  268. * ULONG_MAX, attrs.aggr_interval becomes zero. Calling
  269. * damon_nr_accesses_to_accesses_bp() in the case will cause
  270. * divide-by-zero. Such case is prohibited in normal execution since
  271. * the caution is documented on the comment for the function, and
  272. * damon_update_monitoring_results() does the check. Skip the test in
  273. * the case.
  274. */
  275. if (!attrs.aggr_interval)
  276. kunit_skip(test, "aggr_interval is zero.");
  277. KUNIT_EXPECT_EQ(test, damon_nr_accesses_to_accesses_bp(123, &attrs), 0);
  278. }
  279. static void damon_test_update_monitoring_result(struct kunit *test)
  280. {
  281. struct damon_attrs old_attrs = {
  282. .sample_interval = 10, .aggr_interval = 1000,};
  283. struct damon_attrs new_attrs;
  284. struct damon_region *r = damon_new_region(3, 7);
  285. r->nr_accesses = 15;
  286. r->nr_accesses_bp = 150000;
  287. r->age = 20;
  288. new_attrs = (struct damon_attrs){
  289. .sample_interval = 100, .aggr_interval = 10000,};
  290. damon_update_monitoring_result(r, &old_attrs, &new_attrs);
  291. KUNIT_EXPECT_EQ(test, r->nr_accesses, 15);
  292. KUNIT_EXPECT_EQ(test, r->age, 2);
  293. new_attrs = (struct damon_attrs){
  294. .sample_interval = 1, .aggr_interval = 1000};
  295. damon_update_monitoring_result(r, &old_attrs, &new_attrs);
  296. KUNIT_EXPECT_EQ(test, r->nr_accesses, 150);
  297. KUNIT_EXPECT_EQ(test, r->age, 2);
  298. new_attrs = (struct damon_attrs){
  299. .sample_interval = 1, .aggr_interval = 100};
  300. damon_update_monitoring_result(r, &old_attrs, &new_attrs);
  301. KUNIT_EXPECT_EQ(test, r->nr_accesses, 150);
  302. KUNIT_EXPECT_EQ(test, r->age, 20);
  303. damon_free_region(r);
  304. }
  305. static void damon_test_set_attrs(struct kunit *test)
  306. {
  307. struct damon_ctx *c = damon_new_ctx();
  308. struct damon_attrs valid_attrs = {
  309. .min_nr_regions = 10, .max_nr_regions = 1000,
  310. .sample_interval = 5000, .aggr_interval = 100000,};
  311. struct damon_attrs invalid_attrs;
  312. KUNIT_EXPECT_EQ(test, damon_set_attrs(c, &valid_attrs), 0);
  313. invalid_attrs = valid_attrs;
  314. invalid_attrs.min_nr_regions = 1;
  315. KUNIT_EXPECT_EQ(test, damon_set_attrs(c, &invalid_attrs), -EINVAL);
  316. invalid_attrs = valid_attrs;
  317. invalid_attrs.max_nr_regions = 9;
  318. KUNIT_EXPECT_EQ(test, damon_set_attrs(c, &invalid_attrs), -EINVAL);
  319. invalid_attrs = valid_attrs;
  320. invalid_attrs.aggr_interval = 4999;
  321. KUNIT_EXPECT_EQ(test, damon_set_attrs(c, &invalid_attrs), -EINVAL);
  322. damon_destroy_ctx(c);
  323. }
  324. static void damon_test_moving_sum(struct kunit *test)
  325. {
  326. unsigned int mvsum = 50000, nomvsum = 50000, len_window = 10;
  327. unsigned int new_values[] = {10000, 0, 10000, 0, 0, 0, 10000, 0, 0, 0};
  328. unsigned int expects[] = {55000, 50000, 55000, 50000, 45000, 40000,
  329. 45000, 40000, 35000, 30000};
  330. int i;
  331. for (i = 0; i < ARRAY_SIZE(new_values); i++) {
  332. mvsum = damon_moving_sum(mvsum, nomvsum, len_window,
  333. new_values[i]);
  334. KUNIT_EXPECT_EQ(test, mvsum, expects[i]);
  335. }
  336. }
  337. static void damos_test_new_filter(struct kunit *test)
  338. {
  339. struct damos_filter *filter;
  340. filter = damos_new_filter(DAMOS_FILTER_TYPE_ANON, true);
  341. KUNIT_EXPECT_EQ(test, filter->type, DAMOS_FILTER_TYPE_ANON);
  342. KUNIT_EXPECT_EQ(test, filter->matching, true);
  343. KUNIT_EXPECT_PTR_EQ(test, filter->list.prev, &filter->list);
  344. KUNIT_EXPECT_PTR_EQ(test, filter->list.next, &filter->list);
  345. damos_destroy_filter(filter);
  346. }
  347. static void damos_test_filter_out(struct kunit *test)
  348. {
  349. struct damon_target *t;
  350. struct damon_region *r, *r2;
  351. struct damos_filter *f;
  352. f = damos_new_filter(DAMOS_FILTER_TYPE_ADDR, true);
  353. f->addr_range = (struct damon_addr_range){
  354. .start = DAMON_MIN_REGION * 2, .end = DAMON_MIN_REGION * 6};
  355. t = damon_new_target();
  356. r = damon_new_region(DAMON_MIN_REGION * 3, DAMON_MIN_REGION * 5);
  357. damon_add_region(r, t);
  358. /* region in the range */
  359. KUNIT_EXPECT_TRUE(test, __damos_filter_out(NULL, t, r, f));
  360. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 1);
  361. /* region before the range */
  362. r->ar.start = DAMON_MIN_REGION * 1;
  363. r->ar.end = DAMON_MIN_REGION * 2;
  364. KUNIT_EXPECT_FALSE(test, __damos_filter_out(NULL, t, r, f));
  365. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 1);
  366. /* region after the range */
  367. r->ar.start = DAMON_MIN_REGION * 6;
  368. r->ar.end = DAMON_MIN_REGION * 8;
  369. KUNIT_EXPECT_FALSE(test, __damos_filter_out(NULL, t, r, f));
  370. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 1);
  371. /* region started before the range */
  372. r->ar.start = DAMON_MIN_REGION * 1;
  373. r->ar.end = DAMON_MIN_REGION * 4;
  374. KUNIT_EXPECT_FALSE(test, __damos_filter_out(NULL, t, r, f));
  375. /* filter should have split the region */
  376. KUNIT_EXPECT_EQ(test, r->ar.start, DAMON_MIN_REGION * 1);
  377. KUNIT_EXPECT_EQ(test, r->ar.end, DAMON_MIN_REGION * 2);
  378. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 2);
  379. r2 = damon_next_region(r);
  380. KUNIT_EXPECT_EQ(test, r2->ar.start, DAMON_MIN_REGION * 2);
  381. KUNIT_EXPECT_EQ(test, r2->ar.end, DAMON_MIN_REGION * 4);
  382. damon_destroy_region(r2, t);
  383. /* region started in the range */
  384. r->ar.start = DAMON_MIN_REGION * 2;
  385. r->ar.end = DAMON_MIN_REGION * 8;
  386. KUNIT_EXPECT_TRUE(test, __damos_filter_out(NULL, t, r, f));
  387. /* filter should have split the region */
  388. KUNIT_EXPECT_EQ(test, r->ar.start, DAMON_MIN_REGION * 2);
  389. KUNIT_EXPECT_EQ(test, r->ar.end, DAMON_MIN_REGION * 6);
  390. KUNIT_EXPECT_EQ(test, damon_nr_regions(t), 2);
  391. r2 = damon_next_region(r);
  392. KUNIT_EXPECT_EQ(test, r2->ar.start, DAMON_MIN_REGION * 6);
  393. KUNIT_EXPECT_EQ(test, r2->ar.end, DAMON_MIN_REGION * 8);
  394. damon_destroy_region(r2, t);
  395. damon_free_target(t);
  396. damos_free_filter(f);
  397. }
  398. static void damon_test_feed_loop_next_input(struct kunit *test)
  399. {
  400. unsigned long last_input = 900000, current_score = 200;
  401. /*
  402. * If current score is lower than the goal, which is always 10,000
  403. * (read the comment on damon_feed_loop_next_input()'s comment), next
  404. * input should be higher than the last input.
  405. */
  406. KUNIT_EXPECT_GT(test,
  407. damon_feed_loop_next_input(last_input, current_score),
  408. last_input);
  409. /*
  410. * If current score is higher than the goal, next input should be lower
  411. * than the last input.
  412. */
  413. current_score = 250000000;
  414. KUNIT_EXPECT_LT(test,
  415. damon_feed_loop_next_input(last_input, current_score),
  416. last_input);
  417. /*
  418. * The next input depends on the distance between the current score and
  419. * the goal
  420. */
  421. KUNIT_EXPECT_GT(test,
  422. damon_feed_loop_next_input(last_input, 200),
  423. damon_feed_loop_next_input(last_input, 2000));
  424. }
  425. static struct kunit_case damon_test_cases[] = {
  426. KUNIT_CASE(damon_test_target),
  427. KUNIT_CASE(damon_test_regions),
  428. KUNIT_CASE(damon_test_aggregate),
  429. KUNIT_CASE(damon_test_split_at),
  430. KUNIT_CASE(damon_test_merge_two),
  431. KUNIT_CASE(damon_test_merge_regions_of),
  432. KUNIT_CASE(damon_test_split_regions_of),
  433. KUNIT_CASE(damon_test_ops_registration),
  434. KUNIT_CASE(damon_test_set_regions),
  435. KUNIT_CASE(damon_test_nr_accesses_to_accesses_bp),
  436. KUNIT_CASE(damon_test_update_monitoring_result),
  437. KUNIT_CASE(damon_test_set_attrs),
  438. KUNIT_CASE(damon_test_moving_sum),
  439. KUNIT_CASE(damos_test_new_filter),
  440. KUNIT_CASE(damos_test_filter_out),
  441. KUNIT_CASE(damon_test_feed_loop_next_input),
  442. {},
  443. };
  444. static struct kunit_suite damon_test_suite = {
  445. .name = "damon",
  446. .test_cases = damon_test_cases,
  447. };
  448. kunit_test_suite(damon_test_suite);
  449. #endif /* _DAMON_CORE_TEST_H */
  450. #endif /* CONFIG_DAMON_KUNIT_TEST */