thread_manager.c 44 KB

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  1. /*
  2. * Copyright (C) 2019 Intel Corporation. All rights reserved.
  3. * SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. */
  5. #include "thread_manager.h"
  6. #include "../common/wasm_c_api_internal.h"
  7. #if WASM_ENABLE_INTERP != 0
  8. #include "../interpreter/wasm_runtime.h"
  9. #endif
  10. #if WASM_ENABLE_AOT != 0
  11. #include "../aot/aot_runtime.h"
  12. #endif
  13. #if WASM_ENABLE_DEBUG_INTERP != 0
  14. #include "debug_engine.h"
  15. #endif
  16. typedef struct {
  17. bh_list_link l;
  18. void (*destroy_cb)(WASMCluster *);
  19. } DestroyCallBackNode;
  20. static bh_list destroy_callback_list_head;
  21. static bh_list *const destroy_callback_list = &destroy_callback_list_head;
  22. static bh_list cluster_list_head;
  23. static bh_list *const cluster_list = &cluster_list_head;
  24. static korp_mutex cluster_list_lock;
  25. static korp_mutex _exception_lock;
  26. typedef void (*list_visitor)(void *, void *);
  27. static uint32 cluster_max_thread_num = CLUSTER_MAX_THREAD_NUM;
  28. /* Set the maximum thread number, if this function is not called,
  29. the max thread num is defined by CLUSTER_MAX_THREAD_NUM */
  30. void
  31. wasm_cluster_set_max_thread_num(uint32 num)
  32. {
  33. if (num > 0)
  34. cluster_max_thread_num = num;
  35. }
  36. bool
  37. thread_manager_init()
  38. {
  39. if (bh_list_init(cluster_list) != 0)
  40. return false;
  41. if (os_mutex_init(&cluster_list_lock) != 0)
  42. return false;
  43. if (os_mutex_init(&_exception_lock) != 0) {
  44. os_mutex_destroy(&cluster_list_lock);
  45. return false;
  46. }
  47. return true;
  48. }
  49. void
  50. thread_manager_destroy()
  51. {
  52. WASMCluster *cluster = bh_list_first_elem(cluster_list);
  53. WASMCluster *next;
  54. while (cluster) {
  55. next = bh_list_elem_next(cluster);
  56. wasm_cluster_destroy(cluster);
  57. cluster = next;
  58. }
  59. wasm_cluster_cancel_all_callbacks();
  60. os_mutex_destroy(&_exception_lock);
  61. os_mutex_destroy(&cluster_list_lock);
  62. }
  63. static void
  64. traverse_list(bh_list *l, list_visitor visitor, void *user_data)
  65. {
  66. void *next, *node = bh_list_first_elem(l);
  67. while (node) {
  68. next = bh_list_elem_next(node);
  69. visitor(node, user_data);
  70. node = next;
  71. }
  72. }
  73. /* Assumes cluster->lock is locked */
  74. static bool
  75. safe_traverse_exec_env_list(WASMCluster *cluster, list_visitor visitor,
  76. void *user_data)
  77. {
  78. Vector proc_nodes;
  79. void *node;
  80. bool ret = true;
  81. if (!bh_vector_init(&proc_nodes, cluster->exec_env_list.len, sizeof(void *),
  82. false)) {
  83. ret = false;
  84. goto final;
  85. }
  86. node = bh_list_first_elem(&cluster->exec_env_list);
  87. while (node) {
  88. bool already_processed = false;
  89. void *proc_node;
  90. uint32 i;
  91. for (i = 0; i < (uint32)bh_vector_size(&proc_nodes); i++) {
  92. if (!bh_vector_get(&proc_nodes, i, &proc_node)) {
  93. ret = false;
  94. goto final;
  95. }
  96. if (proc_node == node) {
  97. already_processed = true;
  98. break;
  99. }
  100. }
  101. if (already_processed) {
  102. node = bh_list_elem_next(node);
  103. continue;
  104. }
  105. os_mutex_unlock(&cluster->lock);
  106. visitor(node, user_data);
  107. os_mutex_lock(&cluster->lock);
  108. if (!bh_vector_append(&proc_nodes, &node)) {
  109. ret = false;
  110. goto final;
  111. }
  112. node = bh_list_first_elem(&cluster->exec_env_list);
  113. }
  114. final:
  115. bh_vector_destroy(&proc_nodes);
  116. return ret;
  117. }
  118. /* The caller must not have any locks */
  119. bool
  120. wasm_cluster_allocate_aux_stack(WASMExecEnv *exec_env, uint64 *p_start,
  121. uint32 *p_size)
  122. {
  123. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  124. #if WASM_ENABLE_HEAP_AUX_STACK_ALLOCATION != 0
  125. WASMModuleInstanceCommon *module_inst =
  126. wasm_exec_env_get_module_inst(exec_env);
  127. uint64 stack_end;
  128. stack_end = wasm_runtime_module_malloc_internal(module_inst, exec_env,
  129. cluster->stack_size, NULL);
  130. *p_start = stack_end + cluster->stack_size;
  131. *p_size = cluster->stack_size;
  132. return stack_end != 0;
  133. #else
  134. uint32 i;
  135. /* If the module doesn't have aux stack info,
  136. it can't create any threads */
  137. os_mutex_lock(&cluster->lock);
  138. if (!cluster->stack_segment_occupied) {
  139. os_mutex_unlock(&cluster->lock);
  140. return false;
  141. }
  142. for (i = 0; i < cluster_max_thread_num; i++) {
  143. if (!cluster->stack_segment_occupied[i]) {
  144. if (p_start)
  145. *p_start = cluster->stack_tops[i];
  146. if (p_size)
  147. *p_size = cluster->stack_size;
  148. cluster->stack_segment_occupied[i] = true;
  149. os_mutex_unlock(&cluster->lock);
  150. return true;
  151. }
  152. }
  153. os_mutex_unlock(&cluster->lock);
  154. return false;
  155. #endif
  156. }
  157. /* The caller must not have any locks */
  158. bool
  159. wasm_cluster_free_aux_stack(WASMExecEnv *exec_env, uint64 start)
  160. {
  161. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  162. #if WASM_ENABLE_HEAP_AUX_STACK_ALLOCATION != 0
  163. WASMModuleInstanceCommon *module_inst =
  164. wasm_exec_env_get_module_inst(exec_env);
  165. if (!wasm_exec_env_is_aux_stack_managed_by_runtime(exec_env)) {
  166. return true;
  167. }
  168. bh_assert(start >= cluster->stack_size);
  169. wasm_runtime_module_free_internal(module_inst, exec_env,
  170. start - cluster->stack_size);
  171. return true;
  172. #else
  173. uint32 i;
  174. os_mutex_lock(&cluster->lock);
  175. for (i = 0; i < cluster_max_thread_num; i++) {
  176. if (start == cluster->stack_tops[i]) {
  177. cluster->stack_segment_occupied[i] = false;
  178. os_mutex_unlock(&cluster->lock);
  179. return true;
  180. }
  181. }
  182. os_mutex_unlock(&cluster->lock);
  183. return false;
  184. #endif
  185. }
  186. WASMCluster *
  187. wasm_cluster_create(WASMExecEnv *exec_env)
  188. {
  189. WASMCluster *cluster;
  190. uint32 aux_stack_size;
  191. uint64 aux_stack_start;
  192. bh_assert(exec_env->cluster == NULL);
  193. if (!(cluster = wasm_runtime_malloc(sizeof(WASMCluster)))) {
  194. LOG_ERROR("thread manager error: failed to allocate memory");
  195. return NULL;
  196. }
  197. memset(cluster, 0, sizeof(WASMCluster));
  198. exec_env->cluster = cluster;
  199. bh_list_init(&cluster->exec_env_list);
  200. bh_list_insert(&cluster->exec_env_list, exec_env);
  201. if (os_mutex_init(&cluster->lock) != 0) {
  202. wasm_runtime_free(cluster);
  203. LOG_ERROR("thread manager error: failed to init mutex");
  204. return NULL;
  205. }
  206. /* Prepare the aux stack top and size for every thread */
  207. if (!wasm_exec_env_get_aux_stack(exec_env, &aux_stack_start,
  208. &aux_stack_size)) {
  209. #if WASM_ENABLE_LIB_WASI_THREADS == 0
  210. LOG_VERBOSE("No aux stack info for this module, can't create thread");
  211. #endif
  212. /* If the module don't have aux stack info, don't throw error here,
  213. but remain stack_tops and stack_segment_occupied as NULL */
  214. os_mutex_lock(&cluster_list_lock);
  215. if (bh_list_insert(cluster_list, cluster) != 0) {
  216. os_mutex_unlock(&cluster_list_lock);
  217. goto fail;
  218. }
  219. os_mutex_unlock(&cluster_list_lock);
  220. return cluster;
  221. }
  222. #if WASM_ENABLE_HEAP_AUX_STACK_ALLOCATION != 0
  223. cluster->stack_size = aux_stack_size;
  224. #else
  225. cluster->stack_size = aux_stack_size / (cluster_max_thread_num + 1);
  226. if (cluster->stack_size < WASM_THREAD_AUX_STACK_SIZE_MIN) {
  227. goto fail;
  228. }
  229. /* Make stack size 16-byte aligned */
  230. cluster->stack_size = cluster->stack_size & (~15);
  231. #endif
  232. /* Set initial aux stack top to the instance and
  233. aux stack boundary to the main exec_env */
  234. if (!wasm_exec_env_set_aux_stack(exec_env, aux_stack_start,
  235. cluster->stack_size))
  236. goto fail;
  237. #if WASM_ENABLE_HEAP_AUX_STACK_ALLOCATION == 0
  238. if (cluster_max_thread_num != 0) {
  239. uint64 total_size = cluster_max_thread_num * sizeof(uint64);
  240. uint32 i;
  241. if (total_size >= UINT32_MAX
  242. || !(cluster->stack_tops =
  243. wasm_runtime_malloc((uint32)total_size))) {
  244. goto fail;
  245. }
  246. memset(cluster->stack_tops, 0, (uint32)total_size);
  247. if (!(cluster->stack_segment_occupied =
  248. wasm_runtime_malloc(cluster_max_thread_num * sizeof(bool)))) {
  249. goto fail;
  250. }
  251. memset(cluster->stack_segment_occupied, 0,
  252. cluster_max_thread_num * sizeof(bool));
  253. /* Reserve space for main instance */
  254. aux_stack_start -= cluster->stack_size;
  255. for (i = 0; i < cluster_max_thread_num; i++) {
  256. cluster->stack_tops[i] =
  257. aux_stack_start - (uint64)cluster->stack_size * i;
  258. }
  259. }
  260. #endif
  261. os_mutex_lock(&cluster_list_lock);
  262. if (bh_list_insert(cluster_list, cluster) != 0) {
  263. os_mutex_unlock(&cluster_list_lock);
  264. goto fail;
  265. }
  266. os_mutex_unlock(&cluster_list_lock);
  267. return cluster;
  268. fail:
  269. if (cluster)
  270. wasm_cluster_destroy(cluster);
  271. return NULL;
  272. }
  273. static void
  274. destroy_cluster_visitor(void *node, void *user_data)
  275. {
  276. DestroyCallBackNode *destroy_node = (DestroyCallBackNode *)node;
  277. WASMCluster *cluster = (WASMCluster *)user_data;
  278. destroy_node->destroy_cb(cluster);
  279. }
  280. void
  281. wasm_cluster_destroy(WASMCluster *cluster)
  282. {
  283. traverse_list(destroy_callback_list, destroy_cluster_visitor,
  284. (void *)cluster);
  285. /* Remove the cluster from the cluster list */
  286. os_mutex_lock(&cluster_list_lock);
  287. bh_list_remove(cluster_list, cluster);
  288. os_mutex_unlock(&cluster_list_lock);
  289. os_mutex_destroy(&cluster->lock);
  290. #if WASM_ENABLE_HEAP_AUX_STACK_ALLOCATION == 0
  291. if (cluster->stack_tops)
  292. wasm_runtime_free(cluster->stack_tops);
  293. if (cluster->stack_segment_occupied)
  294. wasm_runtime_free(cluster->stack_segment_occupied);
  295. #endif
  296. #if WASM_ENABLE_DEBUG_INTERP != 0
  297. wasm_debug_instance_destroy(cluster);
  298. #endif
  299. #if WASM_ENABLE_DUMP_CALL_STACK != 0
  300. bh_vector_destroy(&cluster->exception_frames);
  301. #endif
  302. wasm_runtime_free(cluster);
  303. }
  304. static void
  305. free_node_visitor(void *node, void *user_data)
  306. {
  307. wasm_runtime_free(node);
  308. }
  309. void
  310. wasm_cluster_cancel_all_callbacks()
  311. {
  312. traverse_list(destroy_callback_list, free_node_visitor, NULL);
  313. bh_list_init(destroy_callback_list);
  314. }
  315. WASMCluster *
  316. wasm_exec_env_get_cluster(WASMExecEnv *exec_env)
  317. {
  318. return exec_env->cluster;
  319. }
  320. /* The caller must lock cluster->lock */
  321. static bool
  322. wasm_cluster_add_exec_env(WASMCluster *cluster, WASMExecEnv *exec_env)
  323. {
  324. bool ret = true;
  325. exec_env->cluster = cluster;
  326. if (cluster->exec_env_list.len == cluster_max_thread_num + 1) {
  327. LOG_ERROR("thread manager error: "
  328. "maximum number of threads exceeded");
  329. ret = false;
  330. }
  331. if (ret && bh_list_insert(&cluster->exec_env_list, exec_env) != 0)
  332. ret = false;
  333. return ret;
  334. }
  335. static bool
  336. wasm_cluster_del_exec_env_internal(WASMCluster *cluster, WASMExecEnv *exec_env,
  337. bool can_destroy_cluster)
  338. {
  339. bool ret = true;
  340. bh_assert(exec_env->cluster == cluster);
  341. #if WASM_ENABLE_DEBUG_INTERP != 0
  342. /* Wait for debugger control thread to process the
  343. stop event of this thread */
  344. if (cluster->debug_inst) {
  345. /* lock the debug_inst->wait_lock so
  346. other threads can't fire stop events */
  347. os_mutex_lock(&cluster->debug_inst->wait_lock);
  348. while (cluster->debug_inst->stopped_thread == exec_env) {
  349. /* either wakes up by signal or by 1-second timeout */
  350. os_cond_reltimedwait(&cluster->debug_inst->wait_cond,
  351. &cluster->debug_inst->wait_lock, 1000000);
  352. }
  353. os_mutex_unlock(&cluster->debug_inst->wait_lock);
  354. }
  355. #endif
  356. if (bh_list_remove(&cluster->exec_env_list, exec_env) != 0)
  357. ret = false;
  358. if (can_destroy_cluster) {
  359. if (cluster->exec_env_list.len == 0) {
  360. /* exec_env_list empty, destroy the cluster */
  361. wasm_cluster_destroy(cluster);
  362. }
  363. }
  364. else {
  365. /* Don't destroy cluster as cluster->lock is being used */
  366. }
  367. return ret;
  368. }
  369. /* The caller should lock cluster->lock for thread safety */
  370. bool
  371. wasm_cluster_del_exec_env(WASMCluster *cluster, WASMExecEnv *exec_env)
  372. {
  373. return wasm_cluster_del_exec_env_internal(cluster, exec_env, true);
  374. }
  375. static WASMExecEnv *
  376. wasm_cluster_search_exec_env(WASMCluster *cluster,
  377. WASMModuleInstanceCommon *module_inst)
  378. {
  379. WASMExecEnv *node = NULL;
  380. os_mutex_lock(&cluster->lock);
  381. node = bh_list_first_elem(&cluster->exec_env_list);
  382. while (node) {
  383. if (node->module_inst == module_inst) {
  384. os_mutex_unlock(&cluster->lock);
  385. return node;
  386. }
  387. node = bh_list_elem_next(node);
  388. }
  389. os_mutex_unlock(&cluster->lock);
  390. return NULL;
  391. }
  392. /* search the global cluster list to find if the given
  393. module instance have a corresponding exec_env */
  394. WASMExecEnv *
  395. wasm_clusters_search_exec_env(WASMModuleInstanceCommon *module_inst)
  396. {
  397. WASMCluster *cluster = NULL;
  398. WASMExecEnv *exec_env = NULL;
  399. os_mutex_lock(&cluster_list_lock);
  400. cluster = bh_list_first_elem(cluster_list);
  401. while (cluster) {
  402. exec_env = wasm_cluster_search_exec_env(cluster, module_inst);
  403. if (exec_env) {
  404. os_mutex_unlock(&cluster_list_lock);
  405. return exec_env;
  406. }
  407. cluster = bh_list_elem_next(cluster);
  408. }
  409. os_mutex_unlock(&cluster_list_lock);
  410. return NULL;
  411. }
  412. WASMExecEnv *
  413. wasm_cluster_spawn_exec_env(WASMExecEnv *exec_env)
  414. {
  415. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  416. wasm_module_inst_t module_inst = get_module_inst(exec_env);
  417. wasm_module_t module;
  418. wasm_module_inst_t new_module_inst;
  419. WASMExecEnv *new_exec_env;
  420. uint32 aux_stack_size;
  421. uint64 aux_stack_start;
  422. uint32 stack_size = 8192;
  423. if (!module_inst || !(module = wasm_exec_env_get_module(exec_env))) {
  424. return NULL;
  425. }
  426. if (!(new_module_inst = wasm_runtime_instantiate_internal(
  427. module, module_inst, exec_env, stack_size, 0, 0, NULL, 0))) {
  428. return NULL;
  429. }
  430. /* Set custom_data to new module instance */
  431. wasm_runtime_set_custom_data_internal(
  432. new_module_inst, wasm_runtime_get_custom_data(module_inst));
  433. wasm_native_inherit_contexts(new_module_inst, module_inst);
  434. if (!(wasm_cluster_dup_c_api_imports(new_module_inst, module_inst))) {
  435. goto fail1;
  436. }
  437. if (!wasm_cluster_allocate_aux_stack(exec_env, &aux_stack_start,
  438. &aux_stack_size)) {
  439. LOG_ERROR("thread manager error: "
  440. "failed to allocate aux stack space for new thread");
  441. goto fail1;
  442. }
  443. os_mutex_lock(&cluster->lock);
  444. if (cluster->has_exception || cluster->processing) {
  445. goto fail2;
  446. }
  447. #if WASM_ENABLE_INTERP != 0
  448. if (module_inst->module_type == Wasm_Module_Bytecode) {
  449. stack_size =
  450. ((WASMModuleInstance *)module_inst)->default_wasm_stack_size;
  451. }
  452. #endif
  453. #if WASM_ENABLE_AOT != 0
  454. if (module_inst->module_type == Wasm_Module_AoT) {
  455. stack_size =
  456. ((AOTModuleInstance *)module_inst)->default_wasm_stack_size;
  457. }
  458. #endif
  459. new_exec_env = wasm_exec_env_create_internal(new_module_inst,
  460. exec_env->wasm_stack_size);
  461. if (!new_exec_env) {
  462. goto fail2;
  463. }
  464. /* Set aux stack for current thread */
  465. if (!wasm_exec_env_set_aux_stack(new_exec_env, aux_stack_start,
  466. aux_stack_size)) {
  467. goto fail3;
  468. }
  469. new_exec_env->is_aux_stack_allocated = true;
  470. /* Inherit suspend_flags of parent thread */
  471. new_exec_env->suspend_flags.flags =
  472. (exec_env->suspend_flags.flags & WASM_SUSPEND_FLAG_INHERIT_MASK);
  473. if (!wasm_cluster_add_exec_env(cluster, new_exec_env)) {
  474. goto fail3;
  475. }
  476. os_mutex_unlock(&cluster->lock);
  477. return new_exec_env;
  478. fail3:
  479. wasm_exec_env_destroy_internal(new_exec_env);
  480. fail2:
  481. os_mutex_unlock(&cluster->lock);
  482. /* free the allocated aux stack space */
  483. wasm_cluster_free_aux_stack(exec_env, aux_stack_start);
  484. fail1:
  485. wasm_runtime_deinstantiate_internal(new_module_inst, true);
  486. return NULL;
  487. }
  488. void
  489. wasm_cluster_destroy_spawned_exec_env(WASMExecEnv *exec_env)
  490. {
  491. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  492. wasm_module_inst_t module_inst = wasm_runtime_get_module_inst(exec_env);
  493. bh_assert(cluster != NULL);
  494. WASMExecEnv *exec_env_tls = NULL;
  495. #ifdef OS_ENABLE_HW_BOUND_CHECK
  496. /* Note: free_aux_stack can execute the module's "free" function
  497. * using the specified exec_env. In case of OS_ENABLE_HW_BOUND_CHECK,
  498. * it needs to match the TLS exec_env if available. (Consider a native
  499. * function which calls wasm_cluster_destroy_spawned_exec_env.)
  500. */
  501. exec_env_tls = wasm_runtime_get_exec_env_tls();
  502. #endif
  503. if (exec_env_tls == NULL) {
  504. exec_env_tls = exec_env;
  505. }
  506. /* Free aux stack space which was allocated in
  507. wasm_cluster_spawn_exec_env */
  508. bh_assert(exec_env_tls->is_aux_stack_allocated);
  509. wasm_cluster_free_aux_stack(exec_env_tls,
  510. (uint64)exec_env->aux_stack_bottom);
  511. os_mutex_lock(&cluster->lock);
  512. /* Remove exec_env */
  513. wasm_cluster_del_exec_env_internal(cluster, exec_env, false);
  514. /* Destroy exec_env */
  515. wasm_exec_env_destroy_internal(exec_env);
  516. /* Routine exit, destroy instance */
  517. wasm_runtime_deinstantiate_internal(module_inst, true);
  518. os_mutex_unlock(&cluster->lock);
  519. }
  520. /* start routine of thread manager */
  521. static void *
  522. thread_manager_start_routine(void *arg)
  523. {
  524. void *ret;
  525. WASMExecEnv *exec_env = (WASMExecEnv *)arg;
  526. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  527. WASMModuleInstanceCommon *module_inst =
  528. wasm_exec_env_get_module_inst(exec_env);
  529. bh_assert(cluster != NULL);
  530. bh_assert(module_inst != NULL);
  531. os_mutex_lock(&exec_env->wait_lock);
  532. exec_env->handle = os_self_thread();
  533. /* Notify the parent thread to continue running */
  534. os_cond_signal(&exec_env->wait_cond);
  535. os_mutex_unlock(&exec_env->wait_lock);
  536. ret = exec_env->thread_start_routine(exec_env);
  537. #ifdef OS_ENABLE_HW_BOUND_CHECK
  538. os_mutex_lock(&exec_env->wait_lock);
  539. if (WASM_SUSPEND_FLAGS_GET(exec_env->suspend_flags)
  540. & WASM_SUSPEND_FLAG_EXIT)
  541. ret = exec_env->thread_ret_value;
  542. os_mutex_unlock(&exec_env->wait_lock);
  543. #endif
  544. /* Routine exit */
  545. #if WASM_ENABLE_DEBUG_INTERP != 0
  546. wasm_cluster_thread_exited(exec_env);
  547. #endif
  548. /* Free aux stack space */
  549. if (exec_env->is_aux_stack_allocated)
  550. wasm_cluster_free_aux_stack(exec_env,
  551. (uint64)exec_env->aux_stack_bottom);
  552. os_mutex_lock(&cluster_list_lock);
  553. os_mutex_lock(&cluster->lock);
  554. /* Detach the native thread here to ensure the resources are freed */
  555. if (exec_env->wait_count == 0 && !exec_env->thread_is_detached) {
  556. /* Only detach current thread when there is no other thread
  557. joining it, otherwise let the system resources for the
  558. thread be released after joining */
  559. os_thread_detach(exec_env->handle);
  560. /* No need to set exec_env->thread_is_detached to true here
  561. since we will exit soon */
  562. }
  563. #if WASM_ENABLE_PERF_PROFILING != 0
  564. os_printf("============= Spawned thread ===========\n");
  565. wasm_runtime_dump_perf_profiling(module_inst);
  566. os_printf("========================================\n");
  567. #endif
  568. /* Remove exec_env */
  569. wasm_cluster_del_exec_env_internal(cluster, exec_env, false);
  570. /* Destroy exec_env */
  571. wasm_exec_env_destroy_internal(exec_env);
  572. /* Routine exit, destroy instance */
  573. wasm_runtime_deinstantiate_internal(module_inst, true);
  574. os_mutex_unlock(&cluster->lock);
  575. os_mutex_unlock(&cluster_list_lock);
  576. os_thread_exit(ret);
  577. return ret;
  578. }
  579. int32
  580. wasm_cluster_create_thread(WASMExecEnv *exec_env,
  581. wasm_module_inst_t module_inst,
  582. bool is_aux_stack_allocated, uint64 aux_stack_start,
  583. uint32 aux_stack_size,
  584. void *(*thread_routine)(void *), void *arg)
  585. {
  586. WASMCluster *cluster;
  587. WASMExecEnv *new_exec_env;
  588. korp_tid tid;
  589. cluster = wasm_exec_env_get_cluster(exec_env);
  590. bh_assert(cluster);
  591. os_mutex_lock(&cluster->lock);
  592. if (cluster->has_exception || cluster->processing) {
  593. goto fail1;
  594. }
  595. new_exec_env =
  596. wasm_exec_env_create_internal(module_inst, exec_env->wasm_stack_size);
  597. if (!new_exec_env)
  598. goto fail1;
  599. if (is_aux_stack_allocated) {
  600. /* Set aux stack for current thread */
  601. if (!wasm_exec_env_set_aux_stack(new_exec_env, aux_stack_start,
  602. aux_stack_size)) {
  603. goto fail2;
  604. }
  605. new_exec_env->is_aux_stack_allocated = true;
  606. }
  607. else {
  608. /* Disable aux stack */
  609. new_exec_env->aux_stack_boundary = 0;
  610. new_exec_env->aux_stack_bottom = UINTPTR_MAX;
  611. new_exec_env->is_aux_stack_allocated = false;
  612. }
  613. /* Inherit suspend_flags of parent thread */
  614. new_exec_env->suspend_flags.flags =
  615. (exec_env->suspend_flags.flags & WASM_SUSPEND_FLAG_INHERIT_MASK);
  616. if (!wasm_cluster_add_exec_env(cluster, new_exec_env))
  617. goto fail2;
  618. new_exec_env->thread_start_routine = thread_routine;
  619. new_exec_env->thread_arg = arg;
  620. os_mutex_lock(&new_exec_env->wait_lock);
  621. if (0
  622. != os_thread_create(&tid, thread_manager_start_routine,
  623. (void *)new_exec_env,
  624. APP_THREAD_STACK_SIZE_DEFAULT)) {
  625. os_mutex_unlock(&new_exec_env->wait_lock);
  626. goto fail3;
  627. }
  628. /* Wait until the new_exec_env->handle is set to avoid it is
  629. illegally accessed after unlocking cluster->lock */
  630. os_cond_wait(&new_exec_env->wait_cond, &new_exec_env->wait_lock);
  631. os_mutex_unlock(&new_exec_env->wait_lock);
  632. os_mutex_unlock(&cluster->lock);
  633. return 0;
  634. fail3:
  635. wasm_cluster_del_exec_env_internal(cluster, new_exec_env, false);
  636. fail2:
  637. wasm_exec_env_destroy_internal(new_exec_env);
  638. fail1:
  639. os_mutex_unlock(&cluster->lock);
  640. return -1;
  641. }
  642. bool
  643. wasm_cluster_dup_c_api_imports(WASMModuleInstanceCommon *module_inst_dst,
  644. const WASMModuleInstanceCommon *module_inst_src)
  645. {
  646. /* workaround about passing instantiate-linking information */
  647. CApiFuncImport **new_c_api_func_imports = NULL;
  648. CApiFuncImport *c_api_func_imports = NULL;
  649. uint32 import_func_count = 0;
  650. uint32 size_in_bytes = 0;
  651. #if WASM_ENABLE_INTERP != 0
  652. if (module_inst_src->module_type == Wasm_Module_Bytecode) {
  653. new_c_api_func_imports =
  654. &(((WASMModuleInstance *)module_inst_dst)->c_api_func_imports);
  655. c_api_func_imports =
  656. ((const WASMModuleInstance *)module_inst_src)->c_api_func_imports;
  657. import_func_count =
  658. ((WASMModule *)(((const WASMModuleInstance *)module_inst_src)
  659. ->module))
  660. ->import_function_count;
  661. }
  662. #endif
  663. #if WASM_ENABLE_AOT != 0
  664. if (module_inst_src->module_type == Wasm_Module_AoT) {
  665. new_c_api_func_imports =
  666. &(((AOTModuleInstance *)module_inst_dst)->c_api_func_imports);
  667. c_api_func_imports =
  668. ((const AOTModuleInstance *)module_inst_src)->c_api_func_imports;
  669. import_func_count =
  670. ((AOTModule *)(((AOTModuleInstance *)module_inst_src)->module))
  671. ->import_func_count;
  672. }
  673. #endif
  674. if (import_func_count != 0 && c_api_func_imports) {
  675. size_in_bytes = sizeof(CApiFuncImport) * import_func_count;
  676. *new_c_api_func_imports = wasm_runtime_malloc(size_in_bytes);
  677. if (!(*new_c_api_func_imports))
  678. return false;
  679. bh_memcpy_s(*new_c_api_func_imports, size_in_bytes, c_api_func_imports,
  680. size_in_bytes);
  681. }
  682. return true;
  683. }
  684. #if WASM_ENABLE_DEBUG_INTERP != 0
  685. WASMCurrentEnvStatus *
  686. wasm_cluster_create_exenv_status()
  687. {
  688. WASMCurrentEnvStatus *status;
  689. if (!(status = wasm_runtime_malloc(sizeof(WASMCurrentEnvStatus)))) {
  690. return NULL;
  691. }
  692. status->step_count = 0;
  693. status->signal_flag = 0;
  694. status->running_status = 0;
  695. return status;
  696. }
  697. void
  698. wasm_cluster_destroy_exenv_status(WASMCurrentEnvStatus *status)
  699. {
  700. wasm_runtime_free(status);
  701. }
  702. inline static bool
  703. wasm_cluster_thread_is_running(WASMExecEnv *exec_env)
  704. {
  705. return exec_env->current_status->running_status == STATUS_RUNNING
  706. || exec_env->current_status->running_status == STATUS_STEP;
  707. }
  708. void
  709. wasm_cluster_clear_thread_signal(WASMExecEnv *exec_env)
  710. {
  711. exec_env->current_status->signal_flag = 0;
  712. }
  713. void
  714. wasm_cluster_thread_send_signal(WASMExecEnv *exec_env, uint32 signo)
  715. {
  716. exec_env->current_status->signal_flag = signo;
  717. }
  718. static void
  719. notify_debug_instance(WASMExecEnv *exec_env)
  720. {
  721. WASMCluster *cluster;
  722. cluster = wasm_exec_env_get_cluster(exec_env);
  723. bh_assert(cluster);
  724. if (!cluster->debug_inst) {
  725. return;
  726. }
  727. on_thread_stop_event(cluster->debug_inst, exec_env);
  728. }
  729. static void
  730. notify_debug_instance_exit(WASMExecEnv *exec_env)
  731. {
  732. WASMCluster *cluster;
  733. cluster = wasm_exec_env_get_cluster(exec_env);
  734. bh_assert(cluster);
  735. if (!cluster->debug_inst) {
  736. return;
  737. }
  738. on_thread_exit_event(cluster->debug_inst, exec_env);
  739. }
  740. void
  741. wasm_cluster_thread_waiting_run(WASMExecEnv *exec_env)
  742. {
  743. exec_env->current_status->running_status = STATUS_STOP;
  744. notify_debug_instance(exec_env);
  745. while (!wasm_cluster_thread_is_running(exec_env)) {
  746. os_cond_wait(&exec_env->wait_cond, &exec_env->wait_lock);
  747. }
  748. }
  749. void
  750. wasm_cluster_send_signal_all(WASMCluster *cluster, uint32 signo)
  751. {
  752. WASMExecEnv *exec_env = bh_list_first_elem(&cluster->exec_env_list);
  753. while (exec_env) {
  754. wasm_cluster_thread_send_signal(exec_env, signo);
  755. exec_env = bh_list_elem_next(exec_env);
  756. }
  757. }
  758. void
  759. wasm_cluster_thread_exited(WASMExecEnv *exec_env)
  760. {
  761. exec_env->current_status->running_status = STATUS_EXIT;
  762. notify_debug_instance_exit(exec_env);
  763. }
  764. void
  765. wasm_cluster_thread_continue(WASMExecEnv *exec_env)
  766. {
  767. os_mutex_lock(&exec_env->wait_lock);
  768. wasm_cluster_clear_thread_signal(exec_env);
  769. exec_env->current_status->running_status = STATUS_RUNNING;
  770. os_cond_signal(&exec_env->wait_cond);
  771. os_mutex_unlock(&exec_env->wait_lock);
  772. }
  773. void
  774. wasm_cluster_thread_step(WASMExecEnv *exec_env)
  775. {
  776. os_mutex_lock(&exec_env->wait_lock);
  777. exec_env->current_status->running_status = STATUS_STEP;
  778. os_cond_signal(&exec_env->wait_cond);
  779. os_mutex_unlock(&exec_env->wait_lock);
  780. }
  781. void
  782. wasm_cluster_set_debug_inst(WASMCluster *cluster, WASMDebugInstance *inst)
  783. {
  784. cluster->debug_inst = inst;
  785. }
  786. #endif /* end of WASM_ENABLE_DEBUG_INTERP */
  787. /* Check whether the exec_env is in one of all clusters, the caller
  788. should add lock to the cluster list before calling us */
  789. static bool
  790. clusters_have_exec_env(WASMExecEnv *exec_env)
  791. {
  792. WASMCluster *cluster = bh_list_first_elem(cluster_list);
  793. WASMExecEnv *node;
  794. while (cluster) {
  795. os_mutex_lock(&cluster->lock);
  796. node = bh_list_first_elem(&cluster->exec_env_list);
  797. while (node) {
  798. if (node == exec_env) {
  799. bh_assert(exec_env->cluster == cluster);
  800. os_mutex_unlock(&cluster->lock);
  801. return true;
  802. }
  803. node = bh_list_elem_next(node);
  804. }
  805. os_mutex_unlock(&cluster->lock);
  806. cluster = bh_list_elem_next(cluster);
  807. }
  808. return false;
  809. }
  810. int32
  811. wasm_cluster_join_thread(WASMExecEnv *exec_env, void **ret_val)
  812. {
  813. korp_tid handle;
  814. os_mutex_lock(&cluster_list_lock);
  815. if (!clusters_have_exec_env(exec_env) || exec_env->thread_is_detached) {
  816. /* Invalid thread, thread has exited or thread has been detached */
  817. if (ret_val)
  818. *ret_val = NULL;
  819. os_mutex_unlock(&cluster_list_lock);
  820. return 0;
  821. }
  822. os_mutex_lock(&exec_env->wait_lock);
  823. exec_env->wait_count++;
  824. handle = exec_env->handle;
  825. os_mutex_unlock(&exec_env->wait_lock);
  826. os_mutex_unlock(&cluster_list_lock);
  827. return os_thread_join(handle, ret_val);
  828. }
  829. int32
  830. wasm_cluster_detach_thread(WASMExecEnv *exec_env)
  831. {
  832. int32 ret = 0;
  833. os_mutex_lock(&cluster_list_lock);
  834. if (!clusters_have_exec_env(exec_env)) {
  835. /* Invalid thread or the thread has exited */
  836. os_mutex_unlock(&cluster_list_lock);
  837. return 0;
  838. }
  839. if (exec_env->wait_count == 0 && !exec_env->thread_is_detached) {
  840. /* Only detach current thread when there is no other thread
  841. joining it, otherwise let the system resources for the
  842. thread be released after joining */
  843. ret = os_thread_detach(exec_env->handle);
  844. exec_env->thread_is_detached = true;
  845. }
  846. os_mutex_unlock(&cluster_list_lock);
  847. return ret;
  848. }
  849. void
  850. wasm_cluster_exit_thread(WASMExecEnv *exec_env, void *retval)
  851. {
  852. WASMCluster *cluster;
  853. WASMModuleInstanceCommon *module_inst;
  854. #ifdef OS_ENABLE_HW_BOUND_CHECK
  855. if (exec_env->jmpbuf_stack_top) {
  856. /* Store the return value in exec_env */
  857. exec_env->thread_ret_value = retval;
  858. WASM_SUSPEND_FLAGS_FETCH_OR(exec_env->suspend_flags,
  859. WASM_SUSPEND_FLAG_EXIT);
  860. #ifndef BH_PLATFORM_WINDOWS
  861. /* Pop all jmpbuf_node except the last one */
  862. while (exec_env->jmpbuf_stack_top->prev) {
  863. wasm_exec_env_pop_jmpbuf(exec_env);
  864. }
  865. os_longjmp(exec_env->jmpbuf_stack_top->jmpbuf, 1);
  866. return;
  867. #endif
  868. }
  869. #endif
  870. cluster = wasm_exec_env_get_cluster(exec_env);
  871. bh_assert(cluster);
  872. #if WASM_ENABLE_DEBUG_INTERP != 0
  873. wasm_cluster_clear_thread_signal(exec_env);
  874. wasm_cluster_thread_exited(exec_env);
  875. #endif
  876. /* Free aux stack space */
  877. if (exec_env->is_aux_stack_allocated)
  878. wasm_cluster_free_aux_stack(exec_env,
  879. (uint64)exec_env->aux_stack_bottom);
  880. /* App exit the thread, free the resources before exit native thread */
  881. os_mutex_lock(&cluster_list_lock);
  882. os_mutex_lock(&cluster->lock);
  883. /* Detach the native thread here to ensure the resources are freed */
  884. if (exec_env->wait_count == 0 && !exec_env->thread_is_detached) {
  885. /* Only detach current thread when there is no other thread
  886. joining it, otherwise let the system resources for the
  887. thread be released after joining */
  888. os_thread_detach(exec_env->handle);
  889. /* No need to set exec_env->thread_is_detached to true here
  890. since we will exit soon */
  891. }
  892. module_inst = exec_env->module_inst;
  893. /* Remove exec_env */
  894. wasm_cluster_del_exec_env_internal(cluster, exec_env, false);
  895. /* Destroy exec_env */
  896. wasm_exec_env_destroy_internal(exec_env);
  897. /* Routine exit, destroy instance */
  898. wasm_runtime_deinstantiate_internal(module_inst, true);
  899. os_mutex_unlock(&cluster->lock);
  900. os_mutex_unlock(&cluster_list_lock);
  901. os_thread_exit(retval);
  902. }
  903. static void
  904. set_thread_cancel_flags(WASMExecEnv *exec_env)
  905. {
  906. os_mutex_lock(&exec_env->wait_lock);
  907. #if WASM_ENABLE_DEBUG_INTERP != 0
  908. wasm_cluster_thread_send_signal(exec_env, WAMR_SIG_TERM);
  909. #endif
  910. WASM_SUSPEND_FLAGS_FETCH_OR(exec_env->suspend_flags,
  911. WASM_SUSPEND_FLAG_TERMINATE);
  912. os_mutex_unlock(&exec_env->wait_lock);
  913. #ifdef OS_ENABLE_WAKEUP_BLOCKING_OP
  914. wasm_runtime_interrupt_blocking_op(exec_env);
  915. #endif
  916. }
  917. static void
  918. clear_thread_cancel_flags(WASMExecEnv *exec_env)
  919. {
  920. os_mutex_lock(&exec_env->wait_lock);
  921. WASM_SUSPEND_FLAGS_FETCH_AND(exec_env->suspend_flags,
  922. ~WASM_SUSPEND_FLAG_TERMINATE);
  923. os_mutex_unlock(&exec_env->wait_lock);
  924. }
  925. int32
  926. wasm_cluster_cancel_thread(WASMExecEnv *exec_env)
  927. {
  928. os_mutex_lock(&cluster_list_lock);
  929. if (!exec_env->cluster) {
  930. os_mutex_unlock(&cluster_list_lock);
  931. return 0;
  932. }
  933. if (!clusters_have_exec_env(exec_env)) {
  934. /* Invalid thread or the thread has exited */
  935. goto final;
  936. }
  937. set_thread_cancel_flags(exec_env);
  938. final:
  939. os_mutex_unlock(&cluster_list_lock);
  940. return 0;
  941. }
  942. static void
  943. terminate_thread_visitor(void *node, void *user_data)
  944. {
  945. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  946. WASMExecEnv *exec_env = (WASMExecEnv *)user_data;
  947. if (curr_exec_env == exec_env)
  948. return;
  949. wasm_cluster_cancel_thread(curr_exec_env);
  950. wasm_cluster_join_thread(curr_exec_env, NULL);
  951. }
  952. void
  953. wasm_cluster_terminate_all(WASMCluster *cluster)
  954. {
  955. os_mutex_lock(&cluster->lock);
  956. cluster->processing = true;
  957. safe_traverse_exec_env_list(cluster, terminate_thread_visitor, NULL);
  958. cluster->processing = false;
  959. os_mutex_unlock(&cluster->lock);
  960. }
  961. void
  962. wasm_cluster_terminate_all_except_self(WASMCluster *cluster,
  963. WASMExecEnv *exec_env)
  964. {
  965. os_mutex_lock(&cluster->lock);
  966. cluster->processing = true;
  967. safe_traverse_exec_env_list(cluster, terminate_thread_visitor,
  968. (void *)exec_env);
  969. cluster->processing = false;
  970. os_mutex_unlock(&cluster->lock);
  971. }
  972. static void
  973. wait_for_thread_visitor(void *node, void *user_data)
  974. {
  975. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  976. WASMExecEnv *exec_env = (WASMExecEnv *)user_data;
  977. if (curr_exec_env == exec_env)
  978. return;
  979. wasm_cluster_join_thread(curr_exec_env, NULL);
  980. }
  981. void
  982. wasm_cluster_wait_for_all(WASMCluster *cluster)
  983. {
  984. os_mutex_lock(&cluster->lock);
  985. cluster->processing = true;
  986. safe_traverse_exec_env_list(cluster, wait_for_thread_visitor, NULL);
  987. cluster->processing = false;
  988. os_mutex_unlock(&cluster->lock);
  989. }
  990. void
  991. wasm_cluster_wait_for_all_except_self(WASMCluster *cluster,
  992. WASMExecEnv *exec_env)
  993. {
  994. os_mutex_lock(&cluster->lock);
  995. cluster->processing = true;
  996. safe_traverse_exec_env_list(cluster, wait_for_thread_visitor,
  997. (void *)exec_env);
  998. cluster->processing = false;
  999. os_mutex_unlock(&cluster->lock);
  1000. }
  1001. bool
  1002. wasm_cluster_register_destroy_callback(void (*callback)(WASMCluster *))
  1003. {
  1004. DestroyCallBackNode *node;
  1005. if (!(node = wasm_runtime_malloc(sizeof(DestroyCallBackNode)))) {
  1006. LOG_ERROR("thread manager error: failed to allocate memory");
  1007. return false;
  1008. }
  1009. node->destroy_cb = callback;
  1010. bh_list_insert(destroy_callback_list, node);
  1011. return true;
  1012. }
  1013. void
  1014. wasm_cluster_suspend_thread(WASMExecEnv *exec_env)
  1015. {
  1016. /* Set the suspend flag */
  1017. WASM_SUSPEND_FLAGS_FETCH_OR(exec_env->suspend_flags,
  1018. WASM_SUSPEND_FLAG_SUSPEND);
  1019. }
  1020. static void
  1021. suspend_thread_visitor(void *node, void *user_data)
  1022. {
  1023. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1024. WASMExecEnv *exec_env = (WASMExecEnv *)user_data;
  1025. if (curr_exec_env == exec_env)
  1026. return;
  1027. wasm_cluster_suspend_thread(curr_exec_env);
  1028. }
  1029. void
  1030. wasm_cluster_suspend_all(WASMCluster *cluster)
  1031. {
  1032. os_mutex_lock(&cluster->lock);
  1033. traverse_list(&cluster->exec_env_list, suspend_thread_visitor, NULL);
  1034. os_mutex_unlock(&cluster->lock);
  1035. }
  1036. void
  1037. wasm_cluster_suspend_all_except_self(WASMCluster *cluster,
  1038. WASMExecEnv *exec_env)
  1039. {
  1040. os_mutex_lock(&cluster->lock);
  1041. traverse_list(&cluster->exec_env_list, suspend_thread_visitor,
  1042. (void *)exec_env);
  1043. os_mutex_unlock(&cluster->lock);
  1044. }
  1045. void
  1046. wasm_cluster_resume_thread(WASMExecEnv *exec_env)
  1047. {
  1048. WASM_SUSPEND_FLAGS_FETCH_AND(exec_env->suspend_flags,
  1049. ~WASM_SUSPEND_FLAG_SUSPEND);
  1050. os_cond_signal(&exec_env->wait_cond);
  1051. }
  1052. static void
  1053. resume_thread_visitor(void *node, void *user_data)
  1054. {
  1055. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1056. wasm_cluster_resume_thread(curr_exec_env);
  1057. }
  1058. void
  1059. wasm_cluster_resume_all(WASMCluster *cluster)
  1060. {
  1061. os_mutex_lock(&cluster->lock);
  1062. traverse_list(&cluster->exec_env_list, resume_thread_visitor, NULL);
  1063. os_mutex_unlock(&cluster->lock);
  1064. }
  1065. struct spread_exception_data {
  1066. WASMExecEnv *skip;
  1067. const char *exception;
  1068. };
  1069. static void
  1070. set_exception_visitor(void *node, void *user_data)
  1071. {
  1072. const struct spread_exception_data *data = user_data;
  1073. WASMExecEnv *exec_env = (WASMExecEnv *)node;
  1074. if (exec_env != data->skip) {
  1075. WASMModuleInstance *wasm_inst =
  1076. (WASMModuleInstance *)get_module_inst(exec_env);
  1077. exception_lock(wasm_inst);
  1078. if (data->exception != NULL) {
  1079. snprintf(wasm_inst->cur_exception, sizeof(wasm_inst->cur_exception),
  1080. "Exception: %s", data->exception);
  1081. }
  1082. else {
  1083. wasm_inst->cur_exception[0] = '\0';
  1084. }
  1085. exception_unlock(wasm_inst);
  1086. /* Terminate the thread so it can exit from dead loops */
  1087. if (data->exception != NULL) {
  1088. set_thread_cancel_flags(exec_env);
  1089. }
  1090. else {
  1091. clear_thread_cancel_flags(exec_env);
  1092. }
  1093. }
  1094. }
  1095. void
  1096. wasm_cluster_set_exception(WASMExecEnv *exec_env, const char *exception)
  1097. {
  1098. const bool has_exception = exception != NULL;
  1099. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  1100. bh_assert(cluster);
  1101. struct spread_exception_data data;
  1102. data.skip = NULL;
  1103. data.exception = exception;
  1104. os_mutex_lock(&cluster->lock);
  1105. #if WASM_ENABLE_DUMP_CALL_STACK != 0
  1106. if (has_exception) {
  1107. /* Save the stack frames of the crashed thread into the cluster */
  1108. WASMModuleInstance *module_inst =
  1109. (WASMModuleInstance *)get_module_inst(exec_env);
  1110. #if WASM_ENABLE_INTERP != 0
  1111. if (module_inst->module_type == Wasm_Module_Bytecode
  1112. && wasm_interp_create_call_stack(exec_env)) {
  1113. wasm_frame_vec_clone_internal(module_inst->frames,
  1114. &cluster->exception_frames);
  1115. }
  1116. #endif
  1117. #if WASM_ENABLE_AOT != 0
  1118. if (module_inst->module_type == Wasm_Module_AoT
  1119. && aot_create_call_stack(exec_env)) {
  1120. wasm_frame_vec_clone_internal(module_inst->frames,
  1121. &cluster->exception_frames);
  1122. }
  1123. #endif
  1124. }
  1125. #endif /* WASM_ENABLE_DUMP_CALL_STACK != 0 */
  1126. cluster->has_exception = has_exception;
  1127. traverse_list(&cluster->exec_env_list, set_exception_visitor, &data);
  1128. os_mutex_unlock(&cluster->lock);
  1129. }
  1130. static void
  1131. set_custom_data_visitor(void *node, void *user_data)
  1132. {
  1133. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1134. WASMModuleInstanceCommon *module_inst = get_module_inst(curr_exec_env);
  1135. wasm_runtime_set_custom_data_internal(module_inst, user_data);
  1136. }
  1137. void
  1138. wasm_cluster_spread_custom_data(WASMModuleInstanceCommon *module_inst,
  1139. void *custom_data)
  1140. {
  1141. WASMExecEnv *exec_env = wasm_clusters_search_exec_env(module_inst);
  1142. if (exec_env == NULL) {
  1143. /* Maybe threads have not been started yet. */
  1144. wasm_runtime_set_custom_data_internal(module_inst, custom_data);
  1145. }
  1146. else {
  1147. WASMCluster *cluster;
  1148. cluster = wasm_exec_env_get_cluster(exec_env);
  1149. bh_assert(cluster);
  1150. os_mutex_lock(&cluster->lock);
  1151. traverse_list(&cluster->exec_env_list, set_custom_data_visitor,
  1152. custom_data);
  1153. os_mutex_unlock(&cluster->lock);
  1154. }
  1155. }
  1156. #if WASM_ENABLE_SHARED_HEAP != 0
  1157. static void
  1158. attach_shared_heap_visitor(void *node, void *heap)
  1159. {
  1160. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1161. WASMModuleInstanceCommon *module_inst = get_module_inst(curr_exec_env);
  1162. wasm_runtime_attach_shared_heap_internal(module_inst, heap);
  1163. }
  1164. static void
  1165. detach_shared_heap_visitor(void *node, void *heap)
  1166. {
  1167. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1168. WASMModuleInstanceCommon *module_inst = get_module_inst(curr_exec_env);
  1169. (void)heap;
  1170. wasm_runtime_detach_shared_heap_internal(module_inst);
  1171. }
  1172. bool
  1173. wasm_cluster_attach_shared_heap(WASMModuleInstanceCommon *module_inst,
  1174. WASMSharedHeap *heap)
  1175. {
  1176. WASMExecEnv *exec_env = wasm_clusters_search_exec_env(module_inst);
  1177. if (exec_env == NULL) {
  1178. /* Maybe threads have not been started yet. */
  1179. return wasm_runtime_attach_shared_heap_internal(module_inst, heap);
  1180. }
  1181. else {
  1182. WASMCluster *cluster;
  1183. cluster = wasm_exec_env_get_cluster(exec_env);
  1184. bh_assert(cluster);
  1185. os_mutex_lock(&cluster->lock);
  1186. /* Try attaching shared heap to this module instance first
  1187. to ensure that we can attach it to all other instances. */
  1188. if (!wasm_runtime_attach_shared_heap_internal(module_inst, heap)) {
  1189. os_mutex_unlock(&cluster->lock);
  1190. return false;
  1191. }
  1192. /* Detach the shared heap so it can be attached again. */
  1193. wasm_runtime_detach_shared_heap_internal(module_inst);
  1194. traverse_list(&cluster->exec_env_list, attach_shared_heap_visitor,
  1195. heap);
  1196. os_mutex_unlock(&cluster->lock);
  1197. }
  1198. return true;
  1199. }
  1200. void
  1201. wasm_cluster_detach_shared_heap(WASMModuleInstanceCommon *module_inst)
  1202. {
  1203. WASMExecEnv *exec_env = wasm_clusters_search_exec_env(module_inst);
  1204. if (exec_env == NULL) {
  1205. /* Maybe threads have not been started yet. */
  1206. wasm_runtime_detach_shared_heap_internal(module_inst);
  1207. }
  1208. else {
  1209. WASMCluster *cluster;
  1210. cluster = wasm_exec_env_get_cluster(exec_env);
  1211. bh_assert(cluster);
  1212. os_mutex_lock(&cluster->lock);
  1213. traverse_list(&cluster->exec_env_list, detach_shared_heap_visitor,
  1214. NULL);
  1215. os_mutex_unlock(&cluster->lock);
  1216. }
  1217. }
  1218. #endif
  1219. #if WASM_ENABLE_MODULE_INST_CONTEXT != 0
  1220. struct inst_set_context_data {
  1221. void *key;
  1222. void *ctx;
  1223. };
  1224. static void
  1225. set_context_visitor(void *node, void *user_data)
  1226. {
  1227. WASMExecEnv *curr_exec_env = (WASMExecEnv *)node;
  1228. WASMModuleInstanceCommon *module_inst = get_module_inst(curr_exec_env);
  1229. const struct inst_set_context_data *data = user_data;
  1230. wasm_runtime_set_context(module_inst, data->key, data->ctx);
  1231. }
  1232. void
  1233. wasm_cluster_set_context(WASMModuleInstanceCommon *module_inst, void *key,
  1234. void *ctx)
  1235. {
  1236. WASMExecEnv *exec_env = wasm_clusters_search_exec_env(module_inst);
  1237. if (exec_env == NULL) {
  1238. /* Maybe threads have not been started yet. */
  1239. wasm_runtime_set_context(module_inst, key, ctx);
  1240. }
  1241. else {
  1242. WASMCluster *cluster;
  1243. struct inst_set_context_data data;
  1244. data.key = key;
  1245. data.ctx = ctx;
  1246. cluster = wasm_exec_env_get_cluster(exec_env);
  1247. bh_assert(cluster);
  1248. os_mutex_lock(&cluster->lock);
  1249. traverse_list(&cluster->exec_env_list, set_context_visitor, &data);
  1250. os_mutex_unlock(&cluster->lock);
  1251. }
  1252. }
  1253. #endif /* WASM_ENABLE_MODULE_INST_CONTEXT != 0 */
  1254. bool
  1255. wasm_cluster_is_thread_terminated(WASMExecEnv *exec_env)
  1256. {
  1257. os_mutex_lock(&exec_env->wait_lock);
  1258. bool is_thread_terminated = (WASM_SUSPEND_FLAGS_GET(exec_env->suspend_flags)
  1259. & WASM_SUSPEND_FLAG_TERMINATE)
  1260. ? true
  1261. : false;
  1262. os_mutex_unlock(&exec_env->wait_lock);
  1263. return is_thread_terminated;
  1264. }
  1265. void
  1266. exception_lock(WASMModuleInstance *module_inst)
  1267. {
  1268. /*
  1269. * Note: this lock could be per module instance if desirable.
  1270. * We can revisit on AOT version bump.
  1271. * It probably doesn't matter though because the exception handling
  1272. * logic should not be executed too frequently anyway.
  1273. */
  1274. os_mutex_lock(&_exception_lock);
  1275. }
  1276. void
  1277. exception_unlock(WASMModuleInstance *module_inst)
  1278. {
  1279. os_mutex_unlock(&_exception_lock);
  1280. }
  1281. void
  1282. wasm_cluster_traverse_lock(WASMExecEnv *exec_env)
  1283. {
  1284. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  1285. bh_assert(cluster);
  1286. os_mutex_lock(&cluster->lock);
  1287. }
  1288. void
  1289. wasm_cluster_traverse_unlock(WASMExecEnv *exec_env)
  1290. {
  1291. WASMCluster *cluster = wasm_exec_env_get_cluster(exec_env);
  1292. bh_assert(cluster);
  1293. os_mutex_unlock(&cluster->lock);
  1294. }