uffd-unit-tests.c 48 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Userfaultfd unit tests.
  4. *
  5. * Copyright (C) 2015-2023 Red Hat, Inc.
  6. */
  7. #include "uffd-common.h"
  8. #include "../../../../mm/gup_test.h"
  9. #ifdef __NR_userfaultfd
  10. /* The unit test doesn't need a large or random size, make it 32MB for now */
  11. #define UFFD_TEST_MEM_SIZE (32UL << 20)
  12. #define MEM_ANON BIT_ULL(0)
  13. #define MEM_SHMEM BIT_ULL(1)
  14. #define MEM_SHMEM_PRIVATE BIT_ULL(2)
  15. #define MEM_HUGETLB BIT_ULL(3)
  16. #define MEM_HUGETLB_PRIVATE BIT_ULL(4)
  17. #define MEM_ALL (MEM_ANON | MEM_SHMEM | MEM_SHMEM_PRIVATE | \
  18. MEM_HUGETLB | MEM_HUGETLB_PRIVATE)
  19. #define ALIGN_UP(x, align_to) \
  20. ((__typeof__(x))((((unsigned long)(x)) + ((align_to)-1)) & ~((align_to)-1)))
  21. #define MAX(a, b) (((a) > (b)) ? (a) : (b))
  22. struct mem_type {
  23. const char *name;
  24. unsigned int mem_flag;
  25. uffd_test_ops_t *mem_ops;
  26. bool shared;
  27. };
  28. typedef struct mem_type mem_type_t;
  29. mem_type_t mem_types[] = {
  30. {
  31. .name = "anon",
  32. .mem_flag = MEM_ANON,
  33. .mem_ops = &anon_uffd_test_ops,
  34. .shared = false,
  35. },
  36. {
  37. .name = "shmem",
  38. .mem_flag = MEM_SHMEM,
  39. .mem_ops = &shmem_uffd_test_ops,
  40. .shared = true,
  41. },
  42. {
  43. .name = "shmem-private",
  44. .mem_flag = MEM_SHMEM_PRIVATE,
  45. .mem_ops = &shmem_uffd_test_ops,
  46. .shared = false,
  47. },
  48. {
  49. .name = "hugetlb",
  50. .mem_flag = MEM_HUGETLB,
  51. .mem_ops = &hugetlb_uffd_test_ops,
  52. .shared = true,
  53. },
  54. {
  55. .name = "hugetlb-private",
  56. .mem_flag = MEM_HUGETLB_PRIVATE,
  57. .mem_ops = &hugetlb_uffd_test_ops,
  58. .shared = false,
  59. },
  60. };
  61. /* Arguments to be passed over to each uffd unit test */
  62. struct uffd_test_args {
  63. mem_type_t *mem_type;
  64. };
  65. typedef struct uffd_test_args uffd_test_args_t;
  66. /* Returns: UFFD_TEST_* */
  67. typedef void (*uffd_test_fn)(uffd_global_test_opts_t *, uffd_test_args_t *);
  68. typedef struct {
  69. const char *name;
  70. uffd_test_fn uffd_fn;
  71. unsigned int mem_targets;
  72. uint64_t uffd_feature_required;
  73. uffd_test_case_ops_t *test_case_ops;
  74. } uffd_test_case_t;
  75. static void uffd_test_report(void)
  76. {
  77. printf("Userfaults unit tests: pass=%u, skip=%u, fail=%u (total=%u)\n",
  78. ksft_get_pass_cnt(),
  79. ksft_get_xskip_cnt(),
  80. ksft_get_fail_cnt(),
  81. ksft_test_num());
  82. }
  83. static void uffd_test_pass(void)
  84. {
  85. printf("done\n");
  86. ksft_inc_pass_cnt();
  87. }
  88. #define uffd_test_start(...) do { \
  89. printf("Testing "); \
  90. printf(__VA_ARGS__); \
  91. printf("... "); \
  92. fflush(stdout); \
  93. } while (0)
  94. #define uffd_test_fail(...) do { \
  95. printf("failed [reason: "); \
  96. printf(__VA_ARGS__); \
  97. printf("]\n"); \
  98. ksft_inc_fail_cnt(); \
  99. } while (0)
  100. static void uffd_test_skip(const char *message)
  101. {
  102. printf("skipped [reason: %s]\n", message);
  103. ksft_inc_xskip_cnt();
  104. }
  105. /*
  106. * Returns 1 if specific userfaultfd supported, 0 otherwise. Note, we'll
  107. * return 1 even if some test failed as long as uffd supported, because in
  108. * that case we still want to proceed with the rest uffd unit tests.
  109. */
  110. static int test_uffd_api(bool use_dev)
  111. {
  112. struct uffdio_api uffdio_api;
  113. int uffd;
  114. uffd_test_start("UFFDIO_API (with %s)",
  115. use_dev ? "/dev/userfaultfd" : "syscall");
  116. if (use_dev)
  117. uffd = uffd_open_dev(UFFD_FLAGS);
  118. else
  119. uffd = uffd_open_sys(UFFD_FLAGS);
  120. if (uffd < 0) {
  121. uffd_test_skip("cannot open userfaultfd handle");
  122. return 0;
  123. }
  124. /* Test wrong UFFD_API */
  125. uffdio_api.api = 0xab;
  126. uffdio_api.features = 0;
  127. if (ioctl(uffd, UFFDIO_API, &uffdio_api) == 0) {
  128. uffd_test_fail("UFFDIO_API should fail with wrong api but didn't");
  129. goto out;
  130. }
  131. /* Test wrong feature bit */
  132. uffdio_api.api = UFFD_API;
  133. uffdio_api.features = BIT_ULL(63);
  134. if (ioctl(uffd, UFFDIO_API, &uffdio_api) == 0) {
  135. uffd_test_fail("UFFDIO_API should fail with wrong feature but didn't");
  136. goto out;
  137. }
  138. /* Test normal UFFDIO_API */
  139. uffdio_api.api = UFFD_API;
  140. uffdio_api.features = 0;
  141. if (ioctl(uffd, UFFDIO_API, &uffdio_api)) {
  142. uffd_test_fail("UFFDIO_API should succeed but failed");
  143. goto out;
  144. }
  145. /* Test double requests of UFFDIO_API with a random feature set */
  146. uffdio_api.features = BIT_ULL(0);
  147. if (ioctl(uffd, UFFDIO_API, &uffdio_api) == 0) {
  148. uffd_test_fail("UFFDIO_API should reject initialized uffd");
  149. goto out;
  150. }
  151. uffd_test_pass();
  152. out:
  153. close(uffd);
  154. /* We have a valid uffd handle */
  155. return 1;
  156. }
  157. static bool uffd_feature_supported(uffd_test_case_t *test)
  158. {
  159. uint64_t features;
  160. if (uffd_get_features(&features))
  161. return false;
  162. return (features & test->uffd_feature_required) ==
  163. test->uffd_feature_required;
  164. }
  165. static int pagemap_open(void)
  166. {
  167. int fd = open("/proc/self/pagemap", O_RDONLY);
  168. if (fd < 0)
  169. err("open pagemap");
  170. return fd;
  171. }
  172. /* This macro let __LINE__ works in err() */
  173. #define pagemap_check_wp(value, wp) do { \
  174. if (!!(value & PM_UFFD_WP) != wp) \
  175. err("pagemap uffd-wp bit error: 0x%"PRIx64, value); \
  176. } while (0)
  177. typedef struct {
  178. uffd_global_test_opts_t *gopts;
  179. int child_uffd;
  180. } fork_event_args;
  181. static void *fork_event_consumer(void *data)
  182. {
  183. fork_event_args *args = data;
  184. struct uffd_msg msg = { 0 };
  185. args->gopts->ready_for_fork = true;
  186. /* Read until a full msg received */
  187. while (uffd_read_msg(args->gopts, &msg));
  188. if (msg.event != UFFD_EVENT_FORK)
  189. err("wrong message: %u\n", msg.event);
  190. /* Just to be properly freed later */
  191. args->child_uffd = msg.arg.fork.ufd;
  192. return NULL;
  193. }
  194. typedef struct {
  195. int gup_fd;
  196. bool pinned;
  197. } pin_args;
  198. /*
  199. * Returns 0 if succeed, <0 for errors. pin_pages() needs to be paired
  200. * with unpin_pages(). Currently it needs to be RO longterm pin to satisfy
  201. * all needs of the test cases (e.g., trigger unshare, trigger fork() early
  202. * CoW, etc.).
  203. */
  204. static int pin_pages(pin_args *args, void *buffer, size_t size)
  205. {
  206. struct pin_longterm_test test = {
  207. .addr = (uintptr_t)buffer,
  208. .size = size,
  209. /* Read-only pins */
  210. .flags = 0,
  211. };
  212. if (args->pinned)
  213. err("already pinned");
  214. args->gup_fd = open("/sys/kernel/debug/gup_test", O_RDWR);
  215. if (args->gup_fd < 0)
  216. return -errno;
  217. if (ioctl(args->gup_fd, PIN_LONGTERM_TEST_START, &test)) {
  218. /* Even if gup_test existed, can be an old gup_test / kernel */
  219. close(args->gup_fd);
  220. return -errno;
  221. }
  222. args->pinned = true;
  223. return 0;
  224. }
  225. static void unpin_pages(pin_args *args)
  226. {
  227. if (!args->pinned)
  228. err("unpin without pin first");
  229. if (ioctl(args->gup_fd, PIN_LONGTERM_TEST_STOP))
  230. err("PIN_LONGTERM_TEST_STOP");
  231. close(args->gup_fd);
  232. args->pinned = false;
  233. }
  234. static int pagemap_test_fork(uffd_global_test_opts_t *gopts, bool with_event, bool test_pin)
  235. {
  236. fork_event_args args = { .gopts = gopts, .child_uffd = -1 };
  237. pthread_t thread;
  238. pid_t child;
  239. uint64_t value;
  240. int fd, result;
  241. /* Prepare a thread to resolve EVENT_FORK */
  242. if (with_event) {
  243. gopts->ready_for_fork = false;
  244. if (pthread_create(&thread, NULL, fork_event_consumer, &args))
  245. err("pthread_create()");
  246. while (!gopts->ready_for_fork)
  247. ; /* Wait for the poll_thread to start executing before forking */
  248. }
  249. child = fork();
  250. if (!child) {
  251. /* Open the pagemap fd of the child itself */
  252. pin_args args = {};
  253. fd = pagemap_open();
  254. if (test_pin && pin_pages(&args, gopts->area_dst, gopts->page_size))
  255. /*
  256. * Normally when reach here we have pinned in
  257. * previous tests, so shouldn't fail anymore
  258. */
  259. err("pin page failed in child");
  260. value = pagemap_get_entry(fd, gopts->area_dst);
  261. /*
  262. * After fork(), we should handle uffd-wp bit differently:
  263. *
  264. * (1) when with EVENT_FORK, it should persist
  265. * (2) when without EVENT_FORK, it should be dropped
  266. */
  267. pagemap_check_wp(value, with_event);
  268. if (test_pin)
  269. unpin_pages(&args);
  270. /* Succeed */
  271. exit(0);
  272. }
  273. waitpid(child, &result, 0);
  274. if (with_event) {
  275. if (pthread_join(thread, NULL))
  276. err("pthread_join()");
  277. if (args.child_uffd < 0)
  278. err("Didn't receive child uffd");
  279. close(args.child_uffd);
  280. }
  281. return result;
  282. }
  283. static void uffd_wp_unpopulated_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  284. {
  285. uint64_t value;
  286. int pagemap_fd;
  287. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  288. false, true, false))
  289. err("register failed");
  290. pagemap_fd = pagemap_open();
  291. /* Test applying pte marker to anon unpopulated */
  292. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, true);
  293. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  294. pagemap_check_wp(value, true);
  295. /* Test unprotect on anon pte marker */
  296. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, false);
  297. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  298. pagemap_check_wp(value, false);
  299. /* Test zap on anon marker */
  300. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, true);
  301. if (madvise(gopts->area_dst, gopts->page_size, MADV_DONTNEED))
  302. err("madvise(MADV_DONTNEED) failed");
  303. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  304. pagemap_check_wp(value, false);
  305. /* Test fault in after marker removed */
  306. *gopts->area_dst = 1;
  307. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  308. pagemap_check_wp(value, false);
  309. /* Drop it to make pte none again */
  310. if (madvise(gopts->area_dst, gopts->page_size, MADV_DONTNEED))
  311. err("madvise(MADV_DONTNEED) failed");
  312. /* Test read-zero-page upon pte marker */
  313. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, true);
  314. *(volatile char *)gopts->area_dst;
  315. /* Drop it to make pte none again */
  316. if (madvise(gopts->area_dst, gopts->page_size, MADV_DONTNEED))
  317. err("madvise(MADV_DONTNEED) failed");
  318. uffd_test_pass();
  319. }
  320. static void uffd_wp_fork_test_common(uffd_global_test_opts_t *gopts, uffd_test_args_t *args,
  321. bool with_event)
  322. {
  323. int pagemap_fd;
  324. uint64_t value;
  325. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  326. false, true, false))
  327. err("register failed");
  328. pagemap_fd = pagemap_open();
  329. /* Touch the page */
  330. *gopts->area_dst = 1;
  331. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, true);
  332. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  333. pagemap_check_wp(value, true);
  334. if (pagemap_test_fork(gopts, with_event, false)) {
  335. uffd_test_fail("Detected %s uffd-wp bit in child in present pte",
  336. with_event ? "missing" : "stall");
  337. goto out;
  338. }
  339. /*
  340. * This is an attempt for zapping the pgtable so as to test the
  341. * markers.
  342. *
  343. * For private mappings, PAGEOUT will only work on exclusive ptes
  344. * (PM_MMAP_EXCLUSIVE) which we should satisfy.
  345. *
  346. * For shared, PAGEOUT may not work. Use DONTNEED instead which
  347. * plays a similar role of zapping (rather than freeing the page)
  348. * to expose pte markers.
  349. */
  350. if (args->mem_type->shared) {
  351. if (madvise(gopts->area_dst, gopts->page_size, MADV_DONTNEED))
  352. err("MADV_DONTNEED");
  353. } else {
  354. /*
  355. * NOTE: ignore retval because private-hugetlb doesn't yet
  356. * support swapping, so it could fail.
  357. */
  358. madvise(gopts->area_dst, gopts->page_size, MADV_PAGEOUT);
  359. }
  360. /* Uffd-wp should persist even swapped out */
  361. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  362. pagemap_check_wp(value, true);
  363. if (pagemap_test_fork(gopts, with_event, false)) {
  364. uffd_test_fail("Detected %s uffd-wp bit in child in zapped pte",
  365. with_event ? "missing" : "stall");
  366. goto out;
  367. }
  368. /* Unprotect; this tests swap pte modifications */
  369. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, false);
  370. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  371. pagemap_check_wp(value, false);
  372. /* Fault in the page from disk */
  373. *gopts->area_dst = 2;
  374. value = pagemap_get_entry(pagemap_fd, gopts->area_dst);
  375. pagemap_check_wp(value, false);
  376. uffd_test_pass();
  377. out:
  378. if (uffd_unregister(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size))
  379. err("unregister failed");
  380. close(pagemap_fd);
  381. }
  382. static void uffd_wp_fork_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  383. {
  384. uffd_wp_fork_test_common(gopts, args, false);
  385. }
  386. static void uffd_wp_fork_with_event_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  387. {
  388. uffd_wp_fork_test_common(gopts, args, true);
  389. }
  390. static void uffd_wp_fork_pin_test_common(uffd_global_test_opts_t *gopts,
  391. uffd_test_args_t *args,
  392. bool with_event)
  393. {
  394. int pagemap_fd;
  395. pin_args pin_args = {};
  396. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->page_size, false, true, false))
  397. err("register failed");
  398. pagemap_fd = pagemap_open();
  399. /* Touch the page */
  400. *gopts->area_dst = 1;
  401. wp_range(gopts->uffd, (uint64_t)gopts->area_dst, gopts->page_size, true);
  402. /*
  403. * 1. First pin, then fork(). This tests fork() special path when
  404. * doing early CoW if the page is private.
  405. */
  406. if (pin_pages(&pin_args, gopts->area_dst, gopts->page_size)) {
  407. uffd_test_skip("Possibly CONFIG_GUP_TEST missing "
  408. "or unprivileged");
  409. close(pagemap_fd);
  410. uffd_unregister(gopts->uffd, gopts->area_dst, gopts->page_size);
  411. return;
  412. }
  413. if (pagemap_test_fork(gopts, with_event, false)) {
  414. uffd_test_fail("Detected %s uffd-wp bit in early CoW of fork()",
  415. with_event ? "missing" : "stall");
  416. unpin_pages(&pin_args);
  417. goto out;
  418. }
  419. unpin_pages(&pin_args);
  420. /*
  421. * 2. First fork(), then pin (in the child, where test_pin==true).
  422. * This tests COR, aka, page unsharing on private memories.
  423. */
  424. if (pagemap_test_fork(gopts, with_event, true)) {
  425. uffd_test_fail("Detected %s uffd-wp bit when RO pin",
  426. with_event ? "missing" : "stall");
  427. goto out;
  428. }
  429. uffd_test_pass();
  430. out:
  431. if (uffd_unregister(gopts->uffd, gopts->area_dst, gopts->page_size))
  432. err("register failed");
  433. close(pagemap_fd);
  434. }
  435. static void uffd_wp_fork_pin_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  436. {
  437. uffd_wp_fork_pin_test_common(gopts, args, false);
  438. }
  439. static void uffd_wp_fork_pin_with_event_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  440. {
  441. uffd_wp_fork_pin_test_common(gopts, args, true);
  442. }
  443. static void check_memory_contents(uffd_global_test_opts_t *gopts, char *p)
  444. {
  445. unsigned long i, j;
  446. uint8_t expected_byte;
  447. for (i = 0; i < gopts->nr_pages; ++i) {
  448. expected_byte = ~((uint8_t)(i % ((uint8_t)-1)));
  449. for (j = 0; j < gopts->page_size; j++) {
  450. uint8_t v = *(uint8_t *)(p + (i * gopts->page_size) + j);
  451. if (v != expected_byte)
  452. err("unexpected page contents");
  453. }
  454. }
  455. }
  456. static void uffd_minor_test_common(uffd_global_test_opts_t *gopts, bool test_collapse, bool test_wp)
  457. {
  458. unsigned long p;
  459. pthread_t uffd_mon;
  460. char c = '\0';
  461. struct uffd_args args = { 0 };
  462. args.gopts = gopts;
  463. /*
  464. * NOTE: MADV_COLLAPSE is not yet compatible with WP, so testing
  465. * both do not make much sense.
  466. */
  467. assert(!(test_collapse && test_wp));
  468. if (uffd_register(gopts->uffd, gopts->area_dst_alias, gopts->nr_pages * gopts->page_size,
  469. /* NOTE! MADV_COLLAPSE may not work with uffd-wp */
  470. false, test_wp, true))
  471. err("register failure");
  472. /*
  473. * After registering with UFFD, populate the non-UFFD-registered side of
  474. * the shared mapping. This should *not* trigger any UFFD minor faults.
  475. */
  476. for (p = 0; p < gopts->nr_pages; ++p)
  477. memset(gopts->area_dst + (p * gopts->page_size), p % ((uint8_t)-1),
  478. gopts->page_size);
  479. args.apply_wp = test_wp;
  480. if (pthread_create(&uffd_mon, NULL, uffd_poll_thread, &args))
  481. err("uffd_poll_thread create");
  482. /*
  483. * Read each of the pages back using the UFFD-registered mapping. We
  484. * expect that the first time we touch a page, it will result in a minor
  485. * fault. uffd_poll_thread will resolve the fault by bit-flipping the
  486. * page's contents, and then issuing a CONTINUE ioctl.
  487. */
  488. check_memory_contents(gopts, gopts->area_dst_alias);
  489. if (write(gopts->pipefd[1], &c, sizeof(c)) != sizeof(c))
  490. err("pipe write");
  491. if (pthread_join(uffd_mon, NULL))
  492. err("join() failed");
  493. if (test_collapse) {
  494. if (madvise(gopts->area_dst_alias, gopts->nr_pages * gopts->page_size,
  495. MADV_COLLAPSE)) {
  496. /* It's fine to fail for this one... */
  497. uffd_test_skip("MADV_COLLAPSE failed");
  498. return;
  499. }
  500. uffd_test_ops->check_pmd_mapping(gopts,
  501. gopts->area_dst,
  502. gopts->nr_pages * gopts->page_size /
  503. read_pmd_pagesize());
  504. /*
  505. * This won't cause uffd-fault - it purely just makes sure there
  506. * was no corruption.
  507. */
  508. check_memory_contents(gopts, gopts->area_dst_alias);
  509. }
  510. if (args.missing_faults != 0 || args.minor_faults != gopts->nr_pages)
  511. uffd_test_fail("stats check error");
  512. else
  513. uffd_test_pass();
  514. }
  515. void uffd_minor_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  516. {
  517. uffd_minor_test_common(gopts, false, false);
  518. }
  519. void uffd_minor_wp_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  520. {
  521. uffd_minor_test_common(gopts, false, true);
  522. }
  523. void uffd_minor_collapse_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  524. {
  525. uffd_minor_test_common(gopts, true, false);
  526. }
  527. static sigjmp_buf jbuf, *sigbuf;
  528. static void sighndl(int sig, siginfo_t *siginfo, void *ptr)
  529. {
  530. if (sig == SIGBUS) {
  531. if (sigbuf)
  532. siglongjmp(*sigbuf, 1);
  533. abort();
  534. }
  535. }
  536. /*
  537. * For non-cooperative userfaultfd test we fork() a process that will
  538. * generate pagefaults, will mremap the area monitored by the
  539. * userfaultfd and at last this process will release the monitored
  540. * area.
  541. * For the anonymous and shared memory the area is divided into two
  542. * parts, the first part is accessed before mremap, and the second
  543. * part is accessed after mremap. Since hugetlbfs does not support
  544. * mremap, the entire monitored area is accessed in a single pass for
  545. * HUGETLB_TEST.
  546. * The release of the pages currently generates event for shmem and
  547. * anonymous memory (UFFD_EVENT_REMOVE), hence it is not checked
  548. * for hugetlb.
  549. * For signal test(UFFD_FEATURE_SIGBUS), signal_test = 1, we register
  550. * monitored area, generate pagefaults and test that signal is delivered.
  551. * Use UFFDIO_COPY to allocate missing page and retry. For signal_test = 2
  552. * test robustness use case - we release monitored area, fork a process
  553. * that will generate pagefaults and verify signal is generated.
  554. * This also tests UFFD_FEATURE_EVENT_FORK event along with the signal
  555. * feature. Using monitor thread, verify no userfault events are generated.
  556. */
  557. static int faulting_process(uffd_global_test_opts_t *gopts, int signal_test, bool wp)
  558. {
  559. unsigned long nr, i;
  560. unsigned long long count;
  561. unsigned long split_nr_pages;
  562. unsigned long lastnr;
  563. struct sigaction act;
  564. volatile unsigned long signalled = 0;
  565. split_nr_pages = (gopts->nr_pages + 1) / 2;
  566. if (signal_test) {
  567. sigbuf = &jbuf;
  568. memset(&act, 0, sizeof(act));
  569. act.sa_sigaction = sighndl;
  570. act.sa_flags = SA_SIGINFO;
  571. if (sigaction(SIGBUS, &act, 0))
  572. err("sigaction");
  573. lastnr = (unsigned long)-1;
  574. }
  575. for (nr = 0; nr < split_nr_pages; nr++) {
  576. volatile int steps = 1;
  577. unsigned long offset = nr * gopts->page_size;
  578. if (signal_test) {
  579. if (sigsetjmp(*sigbuf, 1) != 0) {
  580. if (steps == 1 && nr == lastnr)
  581. err("Signal repeated");
  582. lastnr = nr;
  583. if (signal_test == 1) {
  584. if (steps == 1) {
  585. /* This is a MISSING request */
  586. steps++;
  587. if (copy_page(gopts, offset, wp))
  588. signalled++;
  589. } else {
  590. /* This is a WP request */
  591. assert(steps == 2);
  592. wp_range(gopts->uffd,
  593. (__u64)gopts->area_dst +
  594. offset,
  595. gopts->page_size, false);
  596. }
  597. } else {
  598. signalled++;
  599. continue;
  600. }
  601. }
  602. }
  603. count = *area_count(gopts->area_dst, nr, gopts);
  604. if (count != gopts->count_verify[nr])
  605. err("nr %lu memory corruption %llu %llu\n",
  606. nr, count, gopts->count_verify[nr]);
  607. /*
  608. * Trigger write protection if there is by writing
  609. * the same value back.
  610. */
  611. *area_count(gopts->area_dst, nr, gopts) = count;
  612. }
  613. if (signal_test)
  614. return signalled != split_nr_pages;
  615. gopts->area_dst = mremap(gopts->area_dst, gopts->nr_pages * gopts->page_size,
  616. gopts->nr_pages * gopts->page_size,
  617. MREMAP_MAYMOVE | MREMAP_FIXED,
  618. gopts->area_src);
  619. if (gopts->area_dst == MAP_FAILED)
  620. err("mremap");
  621. /* Reset area_src since we just clobbered it */
  622. gopts->area_src = NULL;
  623. for (; nr < gopts->nr_pages; nr++) {
  624. count = *area_count(gopts->area_dst, nr, gopts);
  625. if (count != gopts->count_verify[nr]) {
  626. err("nr %lu memory corruption %llu %llu\n",
  627. nr, count, gopts->count_verify[nr]);
  628. }
  629. /*
  630. * Trigger write protection if there is by writing
  631. * the same value back.
  632. */
  633. *area_count(gopts->area_dst, nr, gopts) = count;
  634. }
  635. uffd_test_ops->release_pages(gopts, gopts->area_dst);
  636. for (nr = 0; nr < gopts->nr_pages; nr++)
  637. for (i = 0; i < gopts->page_size; i++)
  638. if (*(gopts->area_dst + nr * gopts->page_size + i) != 0)
  639. err("page %lu offset %lu is not zero", nr, i);
  640. return 0;
  641. }
  642. static void uffd_sigbus_test_common(uffd_global_test_opts_t *gopts, bool wp)
  643. {
  644. unsigned long userfaults;
  645. pthread_t uffd_mon;
  646. pid_t pid;
  647. int err;
  648. char c = '\0';
  649. struct uffd_args args = { 0 };
  650. args.gopts = gopts;
  651. gopts->ready_for_fork = false;
  652. fcntl(gopts->uffd, F_SETFL, gopts->uffd_flags | O_NONBLOCK);
  653. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  654. true, wp, false))
  655. err("register failure");
  656. if (faulting_process(gopts, 1, wp))
  657. err("faulting process failed");
  658. uffd_test_ops->release_pages(gopts, gopts->area_dst);
  659. args.apply_wp = wp;
  660. if (pthread_create(&uffd_mon, NULL, uffd_poll_thread, &args))
  661. err("uffd_poll_thread create");
  662. while (!gopts->ready_for_fork)
  663. ; /* Wait for the poll_thread to start executing before forking */
  664. pid = fork();
  665. if (pid < 0)
  666. err("fork");
  667. if (!pid)
  668. exit(faulting_process(gopts, 2, wp));
  669. waitpid(pid, &err, 0);
  670. if (err)
  671. err("faulting process failed");
  672. if (write(gopts->pipefd[1], &c, sizeof(c)) != sizeof(c))
  673. err("pipe write");
  674. if (pthread_join(uffd_mon, (void **)&userfaults))
  675. err("pthread_join()");
  676. if (userfaults)
  677. uffd_test_fail("Signal test failed, userfaults: %ld", userfaults);
  678. else
  679. uffd_test_pass();
  680. }
  681. static void uffd_sigbus_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  682. {
  683. uffd_sigbus_test_common(gopts, false);
  684. }
  685. static void uffd_sigbus_wp_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  686. {
  687. uffd_sigbus_test_common(gopts, true);
  688. }
  689. static void uffd_events_test_common(uffd_global_test_opts_t *gopts, bool wp)
  690. {
  691. pthread_t uffd_mon;
  692. pid_t pid;
  693. int err;
  694. char c = '\0';
  695. struct uffd_args args = { 0 };
  696. args.gopts = gopts;
  697. gopts->ready_for_fork = false;
  698. fcntl(gopts->uffd, F_SETFL, gopts->uffd_flags | O_NONBLOCK);
  699. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  700. true, wp, false))
  701. err("register failure");
  702. args.apply_wp = wp;
  703. if (pthread_create(&uffd_mon, NULL, uffd_poll_thread, &args))
  704. err("uffd_poll_thread create");
  705. while (!gopts->ready_for_fork)
  706. ; /* Wait for the poll_thread to start executing before forking */
  707. pid = fork();
  708. if (pid < 0)
  709. err("fork");
  710. if (!pid)
  711. exit(faulting_process(gopts, 0, wp));
  712. waitpid(pid, &err, 0);
  713. if (err)
  714. err("faulting process failed");
  715. if (write(gopts->pipefd[1], &c, sizeof(c)) != sizeof(c))
  716. err("pipe write");
  717. if (pthread_join(uffd_mon, NULL))
  718. err("pthread_join()");
  719. if (args.missing_faults != gopts->nr_pages)
  720. uffd_test_fail("Fault counts wrong");
  721. else
  722. uffd_test_pass();
  723. }
  724. static void uffd_events_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  725. {
  726. uffd_events_test_common(gopts, false);
  727. }
  728. static void uffd_events_wp_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  729. {
  730. uffd_events_test_common(gopts, true);
  731. }
  732. static void retry_uffdio_zeropage(uffd_global_test_opts_t *gopts,
  733. struct uffdio_zeropage *uffdio_zeropage)
  734. {
  735. uffd_test_ops->alias_mapping(gopts, &uffdio_zeropage->range.start,
  736. uffdio_zeropage->range.len,
  737. 0);
  738. if (ioctl(gopts->uffd, UFFDIO_ZEROPAGE, uffdio_zeropage)) {
  739. if (uffdio_zeropage->zeropage != -EEXIST)
  740. err("UFFDIO_ZEROPAGE error: %"PRId64,
  741. (int64_t)uffdio_zeropage->zeropage);
  742. } else {
  743. err("UFFDIO_ZEROPAGE error: %"PRId64,
  744. (int64_t)uffdio_zeropage->zeropage);
  745. }
  746. }
  747. static bool do_uffdio_zeropage(uffd_global_test_opts_t *gopts, bool has_zeropage)
  748. {
  749. struct uffdio_zeropage uffdio_zeropage = { 0 };
  750. int ret;
  751. __s64 res;
  752. uffdio_zeropage.range.start = (unsigned long) gopts->area_dst;
  753. uffdio_zeropage.range.len = gopts->page_size;
  754. uffdio_zeropage.mode = 0;
  755. ret = ioctl(gopts->uffd, UFFDIO_ZEROPAGE, &uffdio_zeropage);
  756. res = uffdio_zeropage.zeropage;
  757. if (ret) {
  758. /* real retval in ufdio_zeropage.zeropage */
  759. if (has_zeropage)
  760. err("UFFDIO_ZEROPAGE error: %"PRId64, (int64_t)res);
  761. else if (res != -EINVAL)
  762. err("UFFDIO_ZEROPAGE not -EINVAL");
  763. } else if (has_zeropage) {
  764. if (res != gopts->page_size)
  765. err("UFFDIO_ZEROPAGE unexpected size");
  766. else
  767. retry_uffdio_zeropage(gopts, &uffdio_zeropage);
  768. return true;
  769. } else
  770. err("UFFDIO_ZEROPAGE succeeded");
  771. return false;
  772. }
  773. /*
  774. * Registers a range with MISSING mode only for zeropage test. Return true
  775. * if UFFDIO_ZEROPAGE supported, false otherwise. Can't use uffd_register()
  776. * because we want to detect .ioctls along the way.
  777. */
  778. static bool
  779. uffd_register_detect_zeropage(int uffd, void *addr, uint64_t len)
  780. {
  781. uint64_t ioctls = 0;
  782. if (uffd_register_with_ioctls(uffd, addr, len, true,
  783. false, false, &ioctls))
  784. err("zeropage register fail");
  785. return ioctls & (1 << _UFFDIO_ZEROPAGE);
  786. }
  787. /* exercise UFFDIO_ZEROPAGE */
  788. static void uffd_zeropage_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  789. {
  790. bool has_zeropage;
  791. int i;
  792. has_zeropage = uffd_register_detect_zeropage(gopts->uffd,
  793. gopts->area_dst,
  794. gopts->page_size);
  795. if (gopts->area_dst_alias)
  796. /* Ignore the retval; we already have it */
  797. uffd_register_detect_zeropage(gopts->uffd, gopts->area_dst_alias, gopts->page_size);
  798. if (do_uffdio_zeropage(gopts, has_zeropage))
  799. for (i = 0; i < gopts->page_size; i++)
  800. if (gopts->area_dst[i] != 0)
  801. err("data non-zero at offset %d\n", i);
  802. if (uffd_unregister(gopts->uffd, gopts->area_dst, gopts->page_size))
  803. err("unregister");
  804. if (gopts->area_dst_alias && uffd_unregister(gopts->uffd,
  805. gopts->area_dst_alias,
  806. gopts->page_size))
  807. err("unregister");
  808. uffd_test_pass();
  809. }
  810. static void uffd_register_poison(int uffd, void *addr, uint64_t len)
  811. {
  812. uint64_t ioctls = 0;
  813. uint64_t expected = (1 << _UFFDIO_COPY) | (1 << _UFFDIO_POISON);
  814. if (uffd_register_with_ioctls(uffd, addr, len, true,
  815. false, false, &ioctls))
  816. err("poison register fail");
  817. if ((ioctls & expected) != expected)
  818. err("registered area doesn't support COPY and POISON ioctls");
  819. }
  820. static void do_uffdio_poison(uffd_global_test_opts_t *gopts, unsigned long offset)
  821. {
  822. struct uffdio_poison uffdio_poison = { 0 };
  823. int ret;
  824. __s64 res;
  825. uffdio_poison.range.start = (unsigned long) gopts->area_dst + offset;
  826. uffdio_poison.range.len = gopts->page_size;
  827. uffdio_poison.mode = 0;
  828. ret = ioctl(gopts->uffd, UFFDIO_POISON, &uffdio_poison);
  829. res = uffdio_poison.updated;
  830. if (ret)
  831. err("UFFDIO_POISON error: %"PRId64, (int64_t)res);
  832. else if (res != gopts->page_size)
  833. err("UFFDIO_POISON unexpected size: %"PRId64, (int64_t)res);
  834. }
  835. static void uffd_poison_handle_fault(uffd_global_test_opts_t *gopts,
  836. struct uffd_msg *msg,
  837. struct uffd_args *args)
  838. {
  839. unsigned long offset;
  840. if (msg->event != UFFD_EVENT_PAGEFAULT)
  841. err("unexpected msg event %u", msg->event);
  842. if (msg->arg.pagefault.flags &
  843. (UFFD_PAGEFAULT_FLAG_WP | UFFD_PAGEFAULT_FLAG_MINOR))
  844. err("unexpected fault type %llu", msg->arg.pagefault.flags);
  845. offset = (char *)(unsigned long)msg->arg.pagefault.address - gopts->area_dst;
  846. offset &= ~(gopts->page_size-1);
  847. /* Odd pages -> copy zeroed page; even pages -> poison. */
  848. if (offset & gopts->page_size)
  849. copy_page(gopts, offset, false);
  850. else
  851. do_uffdio_poison(gopts, offset);
  852. }
  853. /* Make sure to cover odd/even, and minimum duplications */
  854. #define UFFD_POISON_TEST_NPAGES 4
  855. static void uffd_poison_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *targs)
  856. {
  857. pthread_t uffd_mon;
  858. char c;
  859. struct uffd_args args = { 0 };
  860. struct sigaction act = { 0 };
  861. unsigned long nr_sigbus = 0;
  862. unsigned long nr, poison_pages = UFFD_POISON_TEST_NPAGES;
  863. if (gopts->nr_pages < poison_pages) {
  864. uffd_test_skip("Too less pages for POISON test");
  865. return;
  866. }
  867. args.gopts = gopts;
  868. fcntl(gopts->uffd, F_SETFL, gopts->uffd_flags | O_NONBLOCK);
  869. uffd_register_poison(gopts->uffd, gopts->area_dst, poison_pages * gopts->page_size);
  870. memset(gopts->area_src, 0, poison_pages * gopts->page_size);
  871. args.handle_fault = uffd_poison_handle_fault;
  872. if (pthread_create(&uffd_mon, NULL, uffd_poll_thread, &args))
  873. err("uffd_poll_thread create");
  874. sigbuf = &jbuf;
  875. act.sa_sigaction = sighndl;
  876. act.sa_flags = SA_SIGINFO;
  877. if (sigaction(SIGBUS, &act, 0))
  878. err("sigaction");
  879. for (nr = 0; nr < poison_pages; ++nr) {
  880. unsigned long offset = nr * gopts->page_size;
  881. const char *bytes = (const char *) gopts->area_dst + offset;
  882. const char *i;
  883. if (sigsetjmp(*sigbuf, 1)) {
  884. /*
  885. * Access below triggered a SIGBUS, which was caught by
  886. * sighndl, which then jumped here. Count this SIGBUS,
  887. * and move on to next page.
  888. */
  889. ++nr_sigbus;
  890. continue;
  891. }
  892. for (i = bytes; i < bytes + gopts->page_size; ++i) {
  893. if (*i)
  894. err("nonzero byte in area_dst (%p) at %p: %u",
  895. gopts->area_dst, i, *i);
  896. }
  897. }
  898. if (write(gopts->pipefd[1], &c, sizeof(c)) != sizeof(c))
  899. err("pipe write");
  900. if (pthread_join(uffd_mon, NULL))
  901. err("pthread_join()");
  902. if (nr_sigbus != poison_pages / 2)
  903. err("expected to receive %lu SIGBUS, actually received %lu",
  904. poison_pages / 2, nr_sigbus);
  905. uffd_test_pass();
  906. }
  907. static void
  908. uffd_move_handle_fault_common(uffd_global_test_opts_t *gopts,
  909. struct uffd_msg *msg,
  910. struct uffd_args *args,
  911. unsigned long len)
  912. {
  913. unsigned long offset;
  914. if (msg->event != UFFD_EVENT_PAGEFAULT)
  915. err("unexpected msg event %u", msg->event);
  916. if (msg->arg.pagefault.flags &
  917. (UFFD_PAGEFAULT_FLAG_WP | UFFD_PAGEFAULT_FLAG_MINOR | UFFD_PAGEFAULT_FLAG_WRITE))
  918. err("unexpected fault type %llu", msg->arg.pagefault.flags);
  919. offset = (char *)(unsigned long)msg->arg.pagefault.address - gopts->area_dst;
  920. offset &= ~(len-1);
  921. if (move_page(gopts, offset, len))
  922. args->missing_faults++;
  923. }
  924. static void uffd_move_handle_fault(uffd_global_test_opts_t *gopts, struct uffd_msg *msg,
  925. struct uffd_args *args)
  926. {
  927. uffd_move_handle_fault_common(gopts, msg, args, gopts->page_size);
  928. }
  929. static void uffd_move_pmd_handle_fault(uffd_global_test_opts_t *gopts, struct uffd_msg *msg,
  930. struct uffd_args *args)
  931. {
  932. uffd_move_handle_fault_common(gopts, msg, args, read_pmd_pagesize());
  933. }
  934. static void
  935. uffd_move_test_common(uffd_global_test_opts_t *gopts,
  936. uffd_test_args_t *targs,
  937. unsigned long chunk_size,
  938. void (*handle_fault)(struct uffd_global_test_opts *gopts,
  939. struct uffd_msg *msg, struct uffd_args *args)
  940. )
  941. {
  942. unsigned long nr;
  943. pthread_t uffd_mon;
  944. char c = '\0';
  945. unsigned long long count;
  946. struct uffd_args args = { 0 };
  947. char *orig_area_src = NULL, *orig_area_dst = NULL;
  948. unsigned long step_size, step_count;
  949. unsigned long src_offs = 0;
  950. unsigned long dst_offs = 0;
  951. args.gopts = gopts;
  952. /* Prevent source pages from being mapped more than once */
  953. if (madvise(gopts->area_src, gopts->nr_pages * gopts->page_size, MADV_DONTFORK))
  954. err("madvise(MADV_DONTFORK) failure");
  955. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  956. true, false, false))
  957. err("register failure");
  958. args.handle_fault = handle_fault;
  959. if (pthread_create(&uffd_mon, NULL, uffd_poll_thread, &args))
  960. err("uffd_poll_thread create");
  961. step_size = chunk_size / gopts->page_size;
  962. step_count = gopts->nr_pages / step_size;
  963. if (chunk_size > gopts->page_size) {
  964. char *aligned_src = ALIGN_UP(gopts->area_src, chunk_size);
  965. char *aligned_dst = ALIGN_UP(gopts->area_dst, chunk_size);
  966. if (aligned_src != gopts->area_src || aligned_dst != gopts->area_dst) {
  967. src_offs = (aligned_src - gopts->area_src) / gopts->page_size;
  968. dst_offs = (aligned_dst - gopts->area_dst) / gopts->page_size;
  969. step_count--;
  970. }
  971. orig_area_src = gopts->area_src;
  972. orig_area_dst = gopts->area_dst;
  973. gopts->area_src = aligned_src;
  974. gopts->area_dst = aligned_dst;
  975. }
  976. /*
  977. * Read each of the pages back using the UFFD-registered mapping. We
  978. * expect that the first time we touch a page, it will result in a missing
  979. * fault. uffd_poll_thread will resolve the fault by moving source
  980. * page to destination.
  981. */
  982. for (nr = 0; nr < step_count * step_size; nr += step_size) {
  983. unsigned long i;
  984. /* Check area_src content */
  985. for (i = 0; i < step_size; i++) {
  986. count = *area_count(gopts->area_src, nr + i, gopts);
  987. if (count != gopts->count_verify[src_offs + nr + i])
  988. err("nr %lu source memory invalid %llu %llu\n",
  989. nr + i, count, gopts->count_verify[src_offs + nr + i]);
  990. }
  991. /* Faulting into area_dst should move the page or the huge page */
  992. for (i = 0; i < step_size; i++) {
  993. count = *area_count(gopts->area_dst, nr + i, gopts);
  994. if (count != gopts->count_verify[dst_offs + nr + i])
  995. err("nr %lu memory corruption %llu %llu\n",
  996. nr, count, gopts->count_verify[dst_offs + nr + i]);
  997. }
  998. /* Re-check area_src content which should be empty */
  999. for (i = 0; i < step_size; i++) {
  1000. count = *area_count(gopts->area_src, nr + i, gopts);
  1001. if (count != 0)
  1002. err("nr %lu move failed %llu %llu\n",
  1003. nr, count, gopts->count_verify[src_offs + nr + i]);
  1004. }
  1005. }
  1006. if (chunk_size > gopts->page_size) {
  1007. gopts->area_src = orig_area_src;
  1008. gopts->area_dst = orig_area_dst;
  1009. }
  1010. if (write(gopts->pipefd[1], &c, sizeof(c)) != sizeof(c))
  1011. err("pipe write");
  1012. if (pthread_join(uffd_mon, NULL))
  1013. err("join() failed");
  1014. if (args.missing_faults != step_count || args.minor_faults != 0)
  1015. uffd_test_fail("stats check error");
  1016. else
  1017. uffd_test_pass();
  1018. }
  1019. static void uffd_move_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *targs)
  1020. {
  1021. uffd_move_test_common(gopts, targs, gopts->page_size, uffd_move_handle_fault);
  1022. }
  1023. static void uffd_move_pmd_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *targs)
  1024. {
  1025. if (madvise(gopts->area_dst, gopts->nr_pages * gopts->page_size, MADV_HUGEPAGE))
  1026. err("madvise(MADV_HUGEPAGE) failure");
  1027. uffd_move_test_common(gopts, targs, read_pmd_pagesize(),
  1028. uffd_move_pmd_handle_fault);
  1029. }
  1030. static void uffd_move_pmd_split_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *targs)
  1031. {
  1032. if (madvise(gopts->area_dst, gopts->nr_pages * gopts->page_size, MADV_NOHUGEPAGE))
  1033. err("madvise(MADV_NOHUGEPAGE) failure");
  1034. uffd_move_test_common(gopts, targs, read_pmd_pagesize(),
  1035. uffd_move_pmd_handle_fault);
  1036. }
  1037. static bool
  1038. uffdio_verify_results(const char *name, int ret, int error, long result)
  1039. {
  1040. /*
  1041. * Should always return -1 with errno=EAGAIN, with corresponding
  1042. * result field updated in ioctl() args to be -EAGAIN too
  1043. * (e.g. copy.copy field for UFFDIO_COPY).
  1044. */
  1045. if (ret != -1) {
  1046. uffd_test_fail("%s should have returned -1", name);
  1047. return false;
  1048. }
  1049. if (error != EAGAIN) {
  1050. uffd_test_fail("%s should have errno==EAGAIN", name);
  1051. return false;
  1052. }
  1053. if (result != -EAGAIN) {
  1054. uffd_test_fail("%s should have been updated for -EAGAIN",
  1055. name);
  1056. return false;
  1057. }
  1058. return true;
  1059. }
  1060. /*
  1061. * This defines a function to test one ioctl. Note that here "field" can
  1062. * be 1 or anything not -EAGAIN. With that initial value set, we can
  1063. * verify later that it should be updated by kernel (when -EAGAIN
  1064. * returned), by checking whether it is also updated to -EAGAIN.
  1065. */
  1066. #define DEFINE_MMAP_CHANGING_TEST(name, ioctl_name, field) \
  1067. static bool uffdio_mmap_changing_test_##name(int fd) \
  1068. { \
  1069. int ret; \
  1070. struct uffdio_##name args = { \
  1071. .field = 1, \
  1072. }; \
  1073. ret = ioctl(fd, ioctl_name, &args); \
  1074. return uffdio_verify_results(#ioctl_name, ret, errno, args.field); \
  1075. }
  1076. DEFINE_MMAP_CHANGING_TEST(zeropage, UFFDIO_ZEROPAGE, zeropage)
  1077. DEFINE_MMAP_CHANGING_TEST(copy, UFFDIO_COPY, copy)
  1078. DEFINE_MMAP_CHANGING_TEST(move, UFFDIO_MOVE, move)
  1079. DEFINE_MMAP_CHANGING_TEST(poison, UFFDIO_POISON, updated)
  1080. DEFINE_MMAP_CHANGING_TEST(continue, UFFDIO_CONTINUE, mapped)
  1081. typedef enum {
  1082. /* We actually do not care about any state except UNINTERRUPTIBLE.. */
  1083. THR_STATE_UNKNOWN = 0,
  1084. THR_STATE_UNINTERRUPTIBLE,
  1085. } thread_state;
  1086. typedef struct {
  1087. uffd_global_test_opts_t *gopts;
  1088. volatile pid_t *pid;
  1089. } mmap_changing_thread_args;
  1090. static void sleep_short(void)
  1091. {
  1092. usleep(1000);
  1093. }
  1094. static thread_state thread_state_get(pid_t tid)
  1095. {
  1096. const char *header = "State:\t";
  1097. char tmp[256], *p, c;
  1098. FILE *fp;
  1099. snprintf(tmp, sizeof(tmp), "/proc/%d/status", tid);
  1100. fp = fopen(tmp, "r");
  1101. if (!fp)
  1102. return THR_STATE_UNKNOWN;
  1103. while (fgets(tmp, sizeof(tmp), fp)) {
  1104. p = strstr(tmp, header);
  1105. if (p) {
  1106. /* For example, "State:\tD (disk sleep)" */
  1107. c = *(p + strlen(header));
  1108. return c == 'D' ?
  1109. THR_STATE_UNINTERRUPTIBLE : THR_STATE_UNKNOWN;
  1110. }
  1111. }
  1112. return THR_STATE_UNKNOWN;
  1113. }
  1114. static void thread_state_until(pid_t tid, thread_state state)
  1115. {
  1116. thread_state s;
  1117. do {
  1118. s = thread_state_get(tid);
  1119. sleep_short();
  1120. } while (s != state);
  1121. }
  1122. static void *uffd_mmap_changing_thread(void *opaque)
  1123. {
  1124. mmap_changing_thread_args *args = opaque;
  1125. uffd_global_test_opts_t *gopts = args->gopts;
  1126. volatile pid_t *pid = args->pid;
  1127. int ret;
  1128. /* Unfortunately, it's only fetch-able from the thread itself.. */
  1129. assert(*pid == 0);
  1130. *pid = syscall(SYS_gettid);
  1131. /* Inject an event, this will hang solid until the event read */
  1132. ret = madvise(gopts->area_dst, gopts->page_size, MADV_REMOVE);
  1133. if (ret)
  1134. err("madvise(MADV_REMOVE) failed");
  1135. return NULL;
  1136. }
  1137. static void uffd_consume_message(uffd_global_test_opts_t *gopts)
  1138. {
  1139. struct uffd_msg msg = { 0 };
  1140. while (uffd_read_msg(gopts, &msg));
  1141. }
  1142. static void uffd_mmap_changing_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *targs)
  1143. {
  1144. /*
  1145. * This stores the real PID (which can be different from how tid is
  1146. * defined..) for the child thread, 0 means not initialized.
  1147. */
  1148. pid_t pid = 0;
  1149. pthread_t tid;
  1150. int ret;
  1151. mmap_changing_thread_args args = { gopts, &pid };
  1152. if (uffd_register(gopts->uffd, gopts->area_dst, gopts->nr_pages * gopts->page_size,
  1153. true, false, false))
  1154. err("uffd_register() failed");
  1155. /* Create a thread to generate the racy event */
  1156. ret = pthread_create(&tid, NULL, uffd_mmap_changing_thread, &args);
  1157. if (ret)
  1158. err("pthread_create() failed");
  1159. /*
  1160. * Wait until the thread setup the pid. Use volatile to make sure
  1161. * it reads from RAM not regs.
  1162. */
  1163. while (!(volatile pid_t)pid)
  1164. sleep_short();
  1165. /* Wait until the thread hangs at REMOVE event */
  1166. thread_state_until(pid, THR_STATE_UNINTERRUPTIBLE);
  1167. if (!uffdio_mmap_changing_test_copy(gopts->uffd))
  1168. return;
  1169. if (!uffdio_mmap_changing_test_zeropage(gopts->uffd))
  1170. return;
  1171. if (!uffdio_mmap_changing_test_move(gopts->uffd))
  1172. return;
  1173. if (!uffdio_mmap_changing_test_poison(gopts->uffd))
  1174. return;
  1175. if (!uffdio_mmap_changing_test_continue(gopts->uffd))
  1176. return;
  1177. /*
  1178. * All succeeded above! Recycle everything. Start by reading the
  1179. * event so as to kick the thread roll again..
  1180. */
  1181. uffd_consume_message(gopts);
  1182. ret = pthread_join(tid, NULL);
  1183. assert(ret == 0);
  1184. uffd_test_pass();
  1185. }
  1186. static int prevent_hugepages(uffd_global_test_opts_t *gopts, const char **errmsg)
  1187. {
  1188. /* This should be done before source area is populated */
  1189. if (madvise(gopts->area_src, gopts->nr_pages * gopts->page_size, MADV_NOHUGEPAGE)) {
  1190. /* Ignore only if CONFIG_TRANSPARENT_HUGEPAGE=n */
  1191. if (errno != EINVAL) {
  1192. if (errmsg)
  1193. *errmsg = "madvise(MADV_NOHUGEPAGE) failed";
  1194. return -errno;
  1195. }
  1196. }
  1197. return 0;
  1198. }
  1199. static int request_hugepages(uffd_global_test_opts_t *gopts, const char **errmsg)
  1200. {
  1201. /* This should be done before source area is populated */
  1202. if (madvise(gopts->area_src, gopts->nr_pages * gopts->page_size, MADV_HUGEPAGE)) {
  1203. if (errmsg) {
  1204. *errmsg = (errno == EINVAL) ?
  1205. "CONFIG_TRANSPARENT_HUGEPAGE is not set" :
  1206. "madvise(MADV_HUGEPAGE) failed";
  1207. }
  1208. return -errno;
  1209. }
  1210. return 0;
  1211. }
  1212. struct uffd_test_case_ops uffd_move_test_case_ops = {
  1213. .post_alloc = prevent_hugepages,
  1214. };
  1215. struct uffd_test_case_ops uffd_move_test_pmd_case_ops = {
  1216. .post_alloc = request_hugepages,
  1217. };
  1218. /*
  1219. * Test the returned uffdio_register.ioctls with different register modes.
  1220. * Note that _UFFDIO_ZEROPAGE is tested separately in the zeropage test.
  1221. */
  1222. static void
  1223. do_register_ioctls_test(uffd_global_test_opts_t *gopts,
  1224. uffd_test_args_t *args,
  1225. bool miss,
  1226. bool wp,
  1227. bool minor)
  1228. {
  1229. uint64_t ioctls = 0, expected = BIT_ULL(_UFFDIO_WAKE);
  1230. mem_type_t *mem_type = args->mem_type;
  1231. int ret;
  1232. ret = uffd_register_with_ioctls(gopts->uffd, gopts->area_dst, gopts->page_size,
  1233. miss, wp, minor, &ioctls);
  1234. /*
  1235. * Handle special cases of UFFDIO_REGISTER here where it should
  1236. * just fail with -EINVAL first..
  1237. *
  1238. * Case 1: register MINOR on anon
  1239. * Case 2: register with no mode selected
  1240. */
  1241. if ((minor && (mem_type->mem_flag == MEM_ANON)) ||
  1242. (!miss && !wp && !minor)) {
  1243. if (ret != -EINVAL)
  1244. err("register (miss=%d, wp=%d, minor=%d) failed "
  1245. "with wrong errno=%d", miss, wp, minor, ret);
  1246. return;
  1247. }
  1248. /* UFFDIO_REGISTER should succeed, then check ioctls returned */
  1249. if (miss)
  1250. expected |= BIT_ULL(_UFFDIO_COPY);
  1251. if (wp)
  1252. expected |= BIT_ULL(_UFFDIO_WRITEPROTECT);
  1253. if (minor)
  1254. expected |= BIT_ULL(_UFFDIO_CONTINUE);
  1255. if ((ioctls & expected) != expected)
  1256. err("unexpected uffdio_register.ioctls "
  1257. "(miss=%d, wp=%d, minor=%d): expected=0x%"PRIx64", "
  1258. "returned=0x%"PRIx64, miss, wp, minor, expected, ioctls);
  1259. if (uffd_unregister(gopts->uffd, gopts->area_dst, gopts->page_size))
  1260. err("unregister");
  1261. }
  1262. static void uffd_register_ioctls_test(uffd_global_test_opts_t *gopts, uffd_test_args_t *args)
  1263. {
  1264. int miss, wp, minor;
  1265. for (miss = 0; miss <= 1; miss++)
  1266. for (wp = 0; wp <= 1; wp++)
  1267. for (minor = 0; minor <= 1; minor++)
  1268. do_register_ioctls_test(gopts, args, miss, wp, minor);
  1269. uffd_test_pass();
  1270. }
  1271. uffd_test_case_t uffd_tests[] = {
  1272. {
  1273. /* Test returned uffdio_register.ioctls. */
  1274. .name = "register-ioctls",
  1275. .uffd_fn = uffd_register_ioctls_test,
  1276. .mem_targets = MEM_ALL,
  1277. .uffd_feature_required = UFFD_FEATURE_MISSING_HUGETLBFS |
  1278. UFFD_FEATURE_MISSING_SHMEM |
  1279. UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1280. UFFD_FEATURE_WP_HUGETLBFS_SHMEM |
  1281. UFFD_FEATURE_MINOR_HUGETLBFS |
  1282. UFFD_FEATURE_MINOR_SHMEM,
  1283. },
  1284. {
  1285. .name = "zeropage",
  1286. .uffd_fn = uffd_zeropage_test,
  1287. .mem_targets = MEM_ALL,
  1288. .uffd_feature_required = 0,
  1289. },
  1290. {
  1291. .name = "move",
  1292. .uffd_fn = uffd_move_test,
  1293. .mem_targets = MEM_ANON,
  1294. .uffd_feature_required = UFFD_FEATURE_MOVE,
  1295. .test_case_ops = &uffd_move_test_case_ops,
  1296. },
  1297. {
  1298. .name = "move-pmd",
  1299. .uffd_fn = uffd_move_pmd_test,
  1300. .mem_targets = MEM_ANON,
  1301. .uffd_feature_required = UFFD_FEATURE_MOVE,
  1302. .test_case_ops = &uffd_move_test_pmd_case_ops,
  1303. },
  1304. {
  1305. .name = "move-pmd-split",
  1306. .uffd_fn = uffd_move_pmd_split_test,
  1307. .mem_targets = MEM_ANON,
  1308. .uffd_feature_required = UFFD_FEATURE_MOVE,
  1309. .test_case_ops = &uffd_move_test_pmd_case_ops,
  1310. },
  1311. {
  1312. .name = "wp-fork",
  1313. .uffd_fn = uffd_wp_fork_test,
  1314. .mem_targets = MEM_ALL,
  1315. .uffd_feature_required = UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1316. UFFD_FEATURE_WP_HUGETLBFS_SHMEM,
  1317. },
  1318. {
  1319. .name = "wp-fork-with-event",
  1320. .uffd_fn = uffd_wp_fork_with_event_test,
  1321. .mem_targets = MEM_ALL,
  1322. .uffd_feature_required = UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1323. UFFD_FEATURE_WP_HUGETLBFS_SHMEM |
  1324. /* when set, child process should inherit uffd-wp bits */
  1325. UFFD_FEATURE_EVENT_FORK,
  1326. },
  1327. {
  1328. .name = "wp-fork-pin",
  1329. .uffd_fn = uffd_wp_fork_pin_test,
  1330. .mem_targets = MEM_ALL,
  1331. .uffd_feature_required = UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1332. UFFD_FEATURE_WP_HUGETLBFS_SHMEM,
  1333. },
  1334. {
  1335. .name = "wp-fork-pin-with-event",
  1336. .uffd_fn = uffd_wp_fork_pin_with_event_test,
  1337. .mem_targets = MEM_ALL,
  1338. .uffd_feature_required = UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1339. UFFD_FEATURE_WP_HUGETLBFS_SHMEM |
  1340. /* when set, child process should inherit uffd-wp bits */
  1341. UFFD_FEATURE_EVENT_FORK,
  1342. },
  1343. {
  1344. .name = "wp-unpopulated",
  1345. .uffd_fn = uffd_wp_unpopulated_test,
  1346. .mem_targets = MEM_ANON,
  1347. .uffd_feature_required =
  1348. UFFD_FEATURE_PAGEFAULT_FLAG_WP | UFFD_FEATURE_WP_UNPOPULATED,
  1349. },
  1350. {
  1351. .name = "minor",
  1352. .uffd_fn = uffd_minor_test,
  1353. .mem_targets = MEM_SHMEM | MEM_HUGETLB,
  1354. .uffd_feature_required =
  1355. UFFD_FEATURE_MINOR_HUGETLBFS | UFFD_FEATURE_MINOR_SHMEM,
  1356. },
  1357. {
  1358. .name = "minor-wp",
  1359. .uffd_fn = uffd_minor_wp_test,
  1360. .mem_targets = MEM_SHMEM | MEM_HUGETLB,
  1361. .uffd_feature_required =
  1362. UFFD_FEATURE_MINOR_HUGETLBFS | UFFD_FEATURE_MINOR_SHMEM |
  1363. UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1364. /*
  1365. * HACK: here we leveraged WP_UNPOPULATED to detect whether
  1366. * minor mode supports wr-protect. There's no feature flag
  1367. * for it so this is the best we can test against.
  1368. */
  1369. UFFD_FEATURE_WP_UNPOPULATED,
  1370. },
  1371. {
  1372. .name = "minor-collapse",
  1373. .uffd_fn = uffd_minor_collapse_test,
  1374. /* MADV_COLLAPSE only works with shmem */
  1375. .mem_targets = MEM_SHMEM,
  1376. /* We can't test MADV_COLLAPSE, so try our luck */
  1377. .uffd_feature_required = UFFD_FEATURE_MINOR_SHMEM,
  1378. },
  1379. {
  1380. .name = "sigbus",
  1381. .uffd_fn = uffd_sigbus_test,
  1382. .mem_targets = MEM_ALL,
  1383. .uffd_feature_required = UFFD_FEATURE_SIGBUS |
  1384. UFFD_FEATURE_EVENT_FORK,
  1385. },
  1386. {
  1387. .name = "sigbus-wp",
  1388. .uffd_fn = uffd_sigbus_wp_test,
  1389. .mem_targets = MEM_ALL,
  1390. .uffd_feature_required = UFFD_FEATURE_SIGBUS |
  1391. UFFD_FEATURE_EVENT_FORK | UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1392. UFFD_FEATURE_WP_HUGETLBFS_SHMEM,
  1393. },
  1394. {
  1395. .name = "events",
  1396. .uffd_fn = uffd_events_test,
  1397. .mem_targets = MEM_ALL,
  1398. .uffd_feature_required = UFFD_FEATURE_EVENT_FORK |
  1399. UFFD_FEATURE_EVENT_REMAP | UFFD_FEATURE_EVENT_REMOVE,
  1400. },
  1401. {
  1402. .name = "events-wp",
  1403. .uffd_fn = uffd_events_wp_test,
  1404. .mem_targets = MEM_ALL,
  1405. .uffd_feature_required = UFFD_FEATURE_EVENT_FORK |
  1406. UFFD_FEATURE_EVENT_REMAP | UFFD_FEATURE_EVENT_REMOVE |
  1407. UFFD_FEATURE_PAGEFAULT_FLAG_WP |
  1408. UFFD_FEATURE_WP_HUGETLBFS_SHMEM,
  1409. },
  1410. {
  1411. .name = "poison",
  1412. .uffd_fn = uffd_poison_test,
  1413. .mem_targets = MEM_ALL,
  1414. .uffd_feature_required = UFFD_FEATURE_POISON,
  1415. },
  1416. {
  1417. .name = "mmap-changing",
  1418. .uffd_fn = uffd_mmap_changing_test,
  1419. /*
  1420. * There's no point running this test over all mem types as
  1421. * they share the same code paths.
  1422. *
  1423. * Choose shmem for simplicity, because (1) shmem supports
  1424. * MINOR mode to cover UFFDIO_CONTINUE, and (2) shmem is
  1425. * almost always available (unlike hugetlb). Here we
  1426. * abused SHMEM for UFFDIO_MOVE, but the test we want to
  1427. * cover doesn't yet need the correct memory type..
  1428. */
  1429. .mem_targets = MEM_SHMEM,
  1430. /*
  1431. * Any UFFD_FEATURE_EVENT_* should work to trigger the
  1432. * race logically, but choose the simplest (REMOVE).
  1433. *
  1434. * Meanwhile, since we'll cover quite a few new ioctl()s
  1435. * (CONTINUE, POISON, MOVE), skip this test for old kernels
  1436. * by choosing all of them.
  1437. */
  1438. .uffd_feature_required = UFFD_FEATURE_EVENT_REMOVE |
  1439. UFFD_FEATURE_MOVE | UFFD_FEATURE_POISON |
  1440. UFFD_FEATURE_MINOR_SHMEM,
  1441. },
  1442. };
  1443. static void usage(const char *prog)
  1444. {
  1445. printf("usage: %s [-f TESTNAME]\n", prog);
  1446. puts("");
  1447. puts(" -f: test name to filter (e.g., event)");
  1448. puts(" -h: show the help msg");
  1449. puts(" -l: list tests only");
  1450. puts("");
  1451. exit(KSFT_FAIL);
  1452. }
  1453. int main(int argc, char *argv[])
  1454. {
  1455. int n_tests = sizeof(uffd_tests) / sizeof(uffd_test_case_t);
  1456. int n_mems = sizeof(mem_types) / sizeof(mem_type_t);
  1457. const char *test_filter = NULL;
  1458. bool list_only = false;
  1459. uffd_test_case_t *test;
  1460. mem_type_t *mem_type;
  1461. uffd_test_args_t args;
  1462. const char *errmsg;
  1463. int has_uffd, opt;
  1464. int i, j;
  1465. while ((opt = getopt(argc, argv, "f:hl")) != -1) {
  1466. switch (opt) {
  1467. case 'f':
  1468. test_filter = optarg;
  1469. break;
  1470. case 'l':
  1471. list_only = true;
  1472. break;
  1473. case 'h':
  1474. default:
  1475. /* Unknown */
  1476. usage(argv[0]);
  1477. break;
  1478. }
  1479. }
  1480. if (!test_filter && !list_only) {
  1481. has_uffd = test_uffd_api(false);
  1482. has_uffd |= test_uffd_api(true);
  1483. if (!has_uffd) {
  1484. printf("Userfaultfd not supported or unprivileged, skip all tests\n");
  1485. exit(KSFT_SKIP);
  1486. }
  1487. }
  1488. for (i = 0; i < n_tests; i++) {
  1489. test = &uffd_tests[i];
  1490. if (test_filter && !strstr(test->name, test_filter))
  1491. continue;
  1492. if (list_only) {
  1493. printf("%s\n", test->name);
  1494. continue;
  1495. }
  1496. for (j = 0; j < n_mems; j++) {
  1497. mem_type = &mem_types[j];
  1498. /* Initialize global test options */
  1499. uffd_global_test_opts_t gopts = { 0 };
  1500. gopts.map_shared = mem_type->shared;
  1501. uffd_test_ops = mem_type->mem_ops;
  1502. uffd_test_case_ops = test->test_case_ops;
  1503. if (mem_type->mem_flag & (MEM_HUGETLB_PRIVATE | MEM_HUGETLB)) {
  1504. gopts.page_size = default_huge_page_size();
  1505. if (gopts.page_size == 0) {
  1506. uffd_test_skip("huge page size is 0, feature missing?");
  1507. continue;
  1508. }
  1509. } else {
  1510. gopts.page_size = psize();
  1511. }
  1512. /* Ensure we have at least 2 pages */
  1513. gopts.nr_pages = MAX(UFFD_TEST_MEM_SIZE, gopts.page_size * 2)
  1514. / gopts.page_size;
  1515. gopts.nr_parallel = 1;
  1516. /* Initialize test arguments */
  1517. args.mem_type = mem_type;
  1518. if (!(test->mem_targets & mem_type->mem_flag))
  1519. continue;
  1520. uffd_test_start("%s on %s", test->name, mem_type->name);
  1521. if (!uffd_feature_supported(test)) {
  1522. uffd_test_skip("feature missing");
  1523. continue;
  1524. }
  1525. if (uffd_test_ctx_init(&gopts, test->uffd_feature_required, &errmsg)) {
  1526. uffd_test_skip(errmsg);
  1527. continue;
  1528. }
  1529. test->uffd_fn(&gopts, &args);
  1530. uffd_test_ctx_clear(&gopts);
  1531. }
  1532. }
  1533. if (!list_only)
  1534. uffd_test_report();
  1535. return ksft_get_fail_cnt() ? KSFT_FAIL : KSFT_PASS;
  1536. }
  1537. #else /* __NR_userfaultfd */
  1538. #warning "missing __NR_userfaultfd definition"
  1539. int main(void)
  1540. {
  1541. printf("Skipping %s (missing __NR_userfaultfd)\n", __file__);
  1542. return KSFT_SKIP;
  1543. }
  1544. #endif /* __NR_userfaultfd */