node_bindings.cc 35 KB

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  1. // Copyright (c) 2013 GitHub, Inc.
  2. // Use of this source code is governed by the MIT license that can be
  3. // found in the LICENSE file.
  4. #include "shell/common/node_bindings.h"
  5. #include <algorithm>
  6. #include <string>
  7. #include <string_view>
  8. #include <utility>
  9. #include <vector>
  10. #include "base/base_paths.h"
  11. #include "base/command_line.h"
  12. #include "base/containers/fixed_flat_set.h"
  13. #include "base/environment.h"
  14. #include "base/path_service.h"
  15. #include "base/run_loop.h"
  16. #include "base/strings/string_split.h"
  17. #include "base/strings/utf_string_conversions.h"
  18. #include "base/task/single_thread_task_runner.h"
  19. #include "base/trace_event/trace_event.h"
  20. #include "chrome/common/chrome_version.h"
  21. #include "content/public/browser/browser_thread.h"
  22. #include "content/public/common/content_paths.h"
  23. #include "electron/buildflags/buildflags.h"
  24. #include "electron/electron_version.h"
  25. #include "electron/fuses.h"
  26. #include "shell/browser/api/electron_api_app.h"
  27. #include "shell/common/api/electron_bindings.h"
  28. #include "shell/common/electron_command_line.h"
  29. #include "shell/common/gin_converters/callback_converter.h"
  30. #include "shell/common/gin_converters/file_path_converter.h"
  31. #include "shell/common/gin_helper/dictionary.h"
  32. #include "shell/common/gin_helper/event.h"
  33. #include "shell/common/gin_helper/event_emitter_caller.h"
  34. #include "shell/common/gin_helper/microtasks_scope.h"
  35. #include "shell/common/mac/main_application_bundle.h"
  36. #include "shell/common/node_util.h"
  37. #include "shell/common/world_ids.h"
  38. #include "third_party/blink/public/web/web_local_frame.h"
  39. #include "third_party/blink/renderer/bindings/core/v8/v8_initializer.h" // nogncheck
  40. #include "third_party/electron_node/src/debug_utils.h"
  41. #include "third_party/electron_node/src/module_wrap.h"
  42. #if !IS_MAS_BUILD()
  43. #include "shell/common/crash_keys.h"
  44. #endif
  45. #define ELECTRON_BROWSER_BINDINGS(V) \
  46. V(electron_browser_app) \
  47. V(electron_browser_auto_updater) \
  48. V(electron_browser_content_tracing) \
  49. V(electron_browser_crash_reporter) \
  50. V(electron_browser_desktop_capturer) \
  51. V(electron_browser_dialog) \
  52. V(electron_browser_event_emitter) \
  53. V(electron_browser_global_shortcut) \
  54. V(electron_browser_image_view) \
  55. V(electron_browser_in_app_purchase) \
  56. V(electron_browser_menu) \
  57. V(electron_browser_message_port) \
  58. V(electron_browser_native_theme) \
  59. V(electron_browser_notification) \
  60. V(electron_browser_power_monitor) \
  61. V(electron_browser_power_save_blocker) \
  62. V(electron_browser_protocol) \
  63. V(electron_browser_printing) \
  64. V(electron_browser_push_notifications) \
  65. V(electron_browser_safe_storage) \
  66. V(electron_browser_session) \
  67. V(electron_browser_screen) \
  68. V(electron_browser_system_preferences) \
  69. V(electron_browser_base_window) \
  70. V(electron_browser_tray) \
  71. V(electron_browser_utility_process) \
  72. V(electron_browser_view) \
  73. V(electron_browser_web_contents) \
  74. V(electron_browser_web_contents_view) \
  75. V(electron_browser_web_frame_main) \
  76. V(electron_browser_web_view_manager) \
  77. V(electron_browser_window) \
  78. V(electron_common_net)
  79. #define ELECTRON_COMMON_BINDINGS(V) \
  80. V(electron_common_asar) \
  81. V(electron_common_clipboard) \
  82. V(electron_common_command_line) \
  83. V(electron_common_crashpad_support) \
  84. V(electron_common_environment) \
  85. V(electron_common_features) \
  86. V(electron_common_native_image) \
  87. V(electron_common_shell) \
  88. V(electron_common_v8_util)
  89. #define ELECTRON_RENDERER_BINDINGS(V) \
  90. V(electron_renderer_web_utils) \
  91. V(electron_renderer_context_bridge) \
  92. V(electron_renderer_crash_reporter) \
  93. V(electron_renderer_ipc) \
  94. V(electron_renderer_web_frame)
  95. #define ELECTRON_UTILITY_BINDINGS(V) \
  96. V(electron_browser_event_emitter) \
  97. V(electron_browser_system_preferences) \
  98. V(electron_common_net) \
  99. V(electron_utility_parent_port)
  100. #define ELECTRON_TESTING_BINDINGS(V) V(electron_common_testing)
  101. // This is used to load built-in bindings. Instead of using
  102. // __attribute__((constructor)), we call the _register_<modname>
  103. // function for each built-in bindings explicitly. This is only
  104. // forward declaration. The definitions are in each binding's
  105. // implementation when calling the NODE_LINKED_BINDING_CONTEXT_AWARE.
  106. #define V(modname) void _register_##modname();
  107. ELECTRON_BROWSER_BINDINGS(V)
  108. ELECTRON_COMMON_BINDINGS(V)
  109. ELECTRON_RENDERER_BINDINGS(V)
  110. ELECTRON_UTILITY_BINDINGS(V)
  111. #if DCHECK_IS_ON()
  112. ELECTRON_TESTING_BINDINGS(V)
  113. #endif
  114. #undef V
  115. using node::loader::ModuleWrap;
  116. namespace {
  117. void stop_and_close_uv_loop(uv_loop_t* loop) {
  118. uv_stop(loop);
  119. auto const ensure_closing = [](uv_handle_t* handle, void*) {
  120. // We should be using the UvHandle wrapper everywhere, in which case
  121. // all handles should already be in a closing state...
  122. DCHECK(uv_is_closing(handle));
  123. // ...but if a raw handle got through, through, do the right thing anyway
  124. if (!uv_is_closing(handle)) {
  125. uv_close(handle, nullptr);
  126. }
  127. };
  128. uv_walk(loop, ensure_closing, nullptr);
  129. // All remaining handles are in a closing state now.
  130. // Pump the event loop so that they can finish closing.
  131. for (;;)
  132. if (uv_run(loop, UV_RUN_DEFAULT) == 0)
  133. break;
  134. DCHECK_EQ(0, uv_loop_alive(loop));
  135. node::CheckedUvLoopClose(loop);
  136. }
  137. bool g_is_initialized = false;
  138. void V8FatalErrorCallback(const char* location, const char* message) {
  139. LOG(ERROR) << "Fatal error in V8: " << location << " " << message;
  140. #if !IS_MAS_BUILD()
  141. electron::crash_keys::SetCrashKey("electron.v8-fatal.message", message);
  142. electron::crash_keys::SetCrashKey("electron.v8-fatal.location", location);
  143. #endif
  144. volatile int* zero = nullptr;
  145. *zero = 0;
  146. }
  147. bool AllowWasmCodeGenerationCallback(v8::Local<v8::Context> context,
  148. v8::Local<v8::String> source) {
  149. // If we're running with contextIsolation enabled in the renderer process,
  150. // fall back to Blink's logic.
  151. if (node::Environment::GetCurrent(context) == nullptr) {
  152. if (!electron::IsRendererProcess())
  153. return false;
  154. return blink::V8Initializer::WasmCodeGenerationCheckCallbackInMainThread(
  155. context, source);
  156. }
  157. return node::AllowWasmCodeGenerationCallback(context, source);
  158. }
  159. v8::MaybeLocal<v8::Promise> HostImportModuleDynamically(
  160. v8::Local<v8::Context> context,
  161. v8::Local<v8::Data> v8_host_defined_options,
  162. v8::Local<v8::Value> v8_referrer_resource_url,
  163. v8::Local<v8::String> v8_specifier,
  164. v8::Local<v8::FixedArray> v8_import_assertions) {
  165. if (node::Environment::GetCurrent(context) == nullptr) {
  166. if (electron::IsBrowserProcess() || electron::IsUtilityProcess())
  167. return v8::MaybeLocal<v8::Promise>();
  168. return blink::V8Initializer::HostImportModuleDynamically(
  169. context, v8_host_defined_options, v8_referrer_resource_url,
  170. v8_specifier, v8_import_assertions);
  171. }
  172. // If we're running with contextIsolation enabled in the renderer process,
  173. // fall back to Blink's logic.
  174. if (electron::IsRendererProcess()) {
  175. blink::WebLocalFrame* frame =
  176. blink::WebLocalFrame::FrameForContext(context);
  177. if (!frame || frame->GetScriptContextWorldId(context) !=
  178. electron::WorldIDs::ISOLATED_WORLD_ID) {
  179. return blink::V8Initializer::HostImportModuleDynamically(
  180. context, v8_host_defined_options, v8_referrer_resource_url,
  181. v8_specifier, v8_import_assertions);
  182. }
  183. }
  184. return node::loader::ImportModuleDynamically(
  185. context, v8_host_defined_options, v8_referrer_resource_url, v8_specifier,
  186. v8_import_assertions);
  187. }
  188. void HostInitializeImportMetaObject(v8::Local<v8::Context> context,
  189. v8::Local<v8::Module> module,
  190. v8::Local<v8::Object> meta) {
  191. node::Environment* env = node::Environment::GetCurrent(context);
  192. if (env == nullptr) {
  193. if (electron::IsBrowserProcess() || electron::IsUtilityProcess())
  194. return;
  195. return blink::V8Initializer::HostGetImportMetaProperties(context, module,
  196. meta);
  197. }
  198. if (electron::IsRendererProcess()) {
  199. // If the module is created by Node.js, use Node.js' handling.
  200. if (env != nullptr) {
  201. ModuleWrap* wrap = ModuleWrap::GetFromModule(env, module);
  202. if (wrap)
  203. return ModuleWrap::HostInitializeImportMetaObjectCallback(context,
  204. module, meta);
  205. }
  206. // If contextIsolation is enabled, fall back to Blink's handling.
  207. blink::WebLocalFrame* frame =
  208. blink::WebLocalFrame::FrameForContext(context);
  209. if (!frame || frame->GetScriptContextWorldId(context) !=
  210. electron::WorldIDs::ISOLATED_WORLD_ID) {
  211. return blink::V8Initializer::HostGetImportMetaProperties(context, module,
  212. meta);
  213. }
  214. }
  215. return ModuleWrap::HostInitializeImportMetaObjectCallback(context, module,
  216. meta);
  217. }
  218. v8::ModifyCodeGenerationFromStringsResult ModifyCodeGenerationFromStrings(
  219. v8::Local<v8::Context> context,
  220. v8::Local<v8::Value> source,
  221. bool is_code_like) {
  222. if (node::Environment::GetCurrent(context) == nullptr) {
  223. // No node environment means we're in the renderer process, either in a
  224. // sandboxed renderer or in an unsandboxed renderer with context isolation
  225. // enabled.
  226. if (!electron::IsRendererProcess()) {
  227. NOTREACHED();
  228. return {false, {}};
  229. }
  230. return blink::V8Initializer::CodeGenerationCheckCallbackInMainThread(
  231. context, source, is_code_like);
  232. }
  233. // If we get here then we have a node environment, so either a) we're in the
  234. // non-renderer process, or b) we're in the renderer process in a context that
  235. // has both node and blink, i.e. contextIsolation disabled.
  236. // If we're in the renderer with contextIsolation disabled, ask blink first
  237. // (for CSP), and iff that allows codegen, delegate to node.
  238. if (electron::IsRendererProcess()) {
  239. v8::ModifyCodeGenerationFromStringsResult result =
  240. blink::V8Initializer::CodeGenerationCheckCallbackInMainThread(
  241. context, source, is_code_like);
  242. if (!result.codegen_allowed)
  243. return result;
  244. }
  245. // If we're in the main process or utility process, delegate to node.
  246. return node::ModifyCodeGenerationFromStrings(context, source, is_code_like);
  247. }
  248. void ErrorMessageListener(v8::Local<v8::Message> message,
  249. v8::Local<v8::Value> data) {
  250. v8::Isolate* isolate = v8::Isolate::GetCurrent();
  251. node::Environment* env = node::Environment::GetCurrent(isolate);
  252. if (env) {
  253. gin_helper::MicrotasksScope microtasks_scope(
  254. isolate, env->context()->GetMicrotaskQueue(), false,
  255. v8::MicrotasksScope::kDoNotRunMicrotasks);
  256. // Emit the after() hooks now that the exception has been handled.
  257. // Analogous to node/lib/internal/process/execution.js#L176-L180
  258. if (env->async_hooks()->fields()[node::AsyncHooks::kAfter]) {
  259. while (env->async_hooks()->fields()[node::AsyncHooks::kStackLength]) {
  260. double id = env->execution_async_id();
  261. // Do not call EmitAfter for asyncId 0.
  262. if (id != 0)
  263. node::AsyncWrap::EmitAfter(env, id);
  264. env->async_hooks()->pop_async_context(id);
  265. }
  266. }
  267. // Ensure that the async id stack is properly cleared so the async
  268. // hook stack does not become corrupted.
  269. env->async_hooks()->clear_async_id_stack();
  270. }
  271. }
  272. // Only allow a specific subset of options in non-ELECTRON_RUN_AS_NODE mode.
  273. // If node CLI inspect support is disabled, allow no debug options.
  274. bool IsAllowedOption(const std::string_view option) {
  275. static constexpr auto debug_options =
  276. base::MakeFixedFlatSet<std::string_view>({
  277. "--debug",
  278. "--debug-brk",
  279. "--debug-port",
  280. "--inspect",
  281. "--inspect-brk",
  282. "--inspect-brk-node",
  283. "--inspect-port",
  284. "--inspect-publish-uid",
  285. });
  286. // This should be aligned with what's possible to set via the process object.
  287. static constexpr auto options = base::MakeFixedFlatSet<std::string_view>({
  288. "--dns-result-order",
  289. "--no-deprecation",
  290. "--throw-deprecation",
  291. "--trace-deprecation",
  292. "--trace-warnings",
  293. });
  294. if (debug_options.contains(option))
  295. return electron::fuses::IsNodeCliInspectEnabled();
  296. return options.contains(option);
  297. }
  298. // Initialize NODE_OPTIONS to pass to Node.js
  299. // See https://nodejs.org/api/cli.html#cli_node_options_options
  300. void SetNodeOptions(base::Environment* env) {
  301. // Options that are expressly disallowed
  302. static constexpr auto disallowed = base::MakeFixedFlatSet<std::string_view>({
  303. "--enable-fips",
  304. "--experimental-policy",
  305. "--force-fips",
  306. "--openssl-config",
  307. "--use-bundled-ca",
  308. "--use-openssl-ca",
  309. });
  310. static constexpr auto pkg_opts = base::MakeFixedFlatSet<std::string_view>({
  311. "--http-parser",
  312. "--max-http-header-size",
  313. });
  314. if (env->HasVar("NODE_EXTRA_CA_CERTS")) {
  315. if (!electron::fuses::IsNodeOptionsEnabled()) {
  316. LOG(WARNING) << "NODE_OPTIONS ignored due to disabled nodeOptions fuse.";
  317. env->UnSetVar("NODE_EXTRA_CA_CERTS");
  318. }
  319. }
  320. if (env->HasVar("NODE_OPTIONS")) {
  321. if (electron::fuses::IsNodeOptionsEnabled()) {
  322. std::string options;
  323. env->GetVar("NODE_OPTIONS", &options);
  324. std::vector<std::string> parts = base::SplitString(
  325. options, " ", base::TRIM_WHITESPACE, base::SPLIT_WANT_NONEMPTY);
  326. bool is_packaged_app = electron::api::App::IsPackaged();
  327. for (const auto& part : parts) {
  328. // Strip off values passed to individual NODE_OPTIONs
  329. std::string option = part.substr(0, part.find('='));
  330. if (is_packaged_app && !pkg_opts.contains(option)) {
  331. // Explicitly disallow majority of NODE_OPTIONS in packaged apps
  332. LOG(ERROR) << "Most NODE_OPTIONs are not supported in packaged apps."
  333. << " See documentation for more details.";
  334. options.erase(options.find(option), part.length());
  335. } else if (disallowed.contains(option)) {
  336. // Remove NODE_OPTIONS specifically disallowed for use in Node.js
  337. // through Electron owing to constraints like BoringSSL.
  338. LOG(ERROR) << "The NODE_OPTION " << option
  339. << " is not supported in Electron";
  340. options.erase(options.find(option), part.length());
  341. }
  342. }
  343. // overwrite new NODE_OPTIONS without unsupported variables
  344. env->SetVar("NODE_OPTIONS", options);
  345. } else {
  346. LOG(WARNING) << "NODE_OPTIONS ignored due to disabled nodeOptions fuse.";
  347. env->UnSetVar("NODE_OPTIONS");
  348. }
  349. }
  350. }
  351. } // namespace
  352. namespace electron {
  353. namespace {
  354. base::FilePath GetResourcesPath() {
  355. #if BUILDFLAG(IS_MAC)
  356. return MainApplicationBundlePath().Append("Contents").Append("Resources");
  357. #else
  358. auto* command_line = base::CommandLine::ForCurrentProcess();
  359. base::FilePath exec_path(command_line->GetProgram());
  360. base::PathService::Get(base::FILE_EXE, &exec_path);
  361. return exec_path.DirName().Append(FILE_PATH_LITERAL("resources"));
  362. #endif
  363. }
  364. } // namespace
  365. NodeBindings::NodeBindings(BrowserEnvironment browser_env)
  366. : browser_env_{browser_env},
  367. uv_loop_{InitEventLoop(browser_env, &worker_loop_)} {}
  368. NodeBindings::~NodeBindings() {
  369. // Quit the embed thread.
  370. embed_closed_ = true;
  371. uv_sem_post(&embed_sem_);
  372. WakeupEmbedThread();
  373. // Wait for everything to be done.
  374. uv_thread_join(&embed_thread_);
  375. // Clear uv.
  376. uv_sem_destroy(&embed_sem_);
  377. dummy_uv_handle_.reset();
  378. // Clean up worker loop
  379. if (in_worker_loop())
  380. stop_and_close_uv_loop(uv_loop_);
  381. }
  382. // static
  383. uv_loop_t* NodeBindings::InitEventLoop(BrowserEnvironment browser_env,
  384. uv_loop_t* worker_loop) {
  385. uv_loop_t* event_loop = nullptr;
  386. if (browser_env == BrowserEnvironment::kWorker) {
  387. uv_loop_init(worker_loop);
  388. event_loop = worker_loop;
  389. } else {
  390. event_loop = uv_default_loop();
  391. }
  392. // Interrupt embed polling when a handle is started.
  393. uv_loop_configure(event_loop, UV_LOOP_INTERRUPT_ON_IO_CHANGE);
  394. return event_loop;
  395. }
  396. void NodeBindings::RegisterBuiltinBindings() {
  397. #define V(modname) _register_##modname();
  398. if (IsBrowserProcess()) {
  399. ELECTRON_BROWSER_BINDINGS(V)
  400. }
  401. ELECTRON_COMMON_BINDINGS(V)
  402. if (IsRendererProcess()) {
  403. ELECTRON_RENDERER_BINDINGS(V)
  404. }
  405. if (IsUtilityProcess()) {
  406. ELECTRON_UTILITY_BINDINGS(V)
  407. }
  408. #if DCHECK_IS_ON()
  409. ELECTRON_TESTING_BINDINGS(V)
  410. #endif
  411. #undef V
  412. }
  413. bool NodeBindings::IsInitialized() {
  414. return g_is_initialized;
  415. }
  416. // Initialize Node.js cli options to pass to Node.js
  417. // See https://nodejs.org/api/cli.html#cli_options
  418. std::vector<std::string> NodeBindings::ParseNodeCliFlags() {
  419. const auto argv = base::CommandLine::ForCurrentProcess()->argv();
  420. std::vector<std::string> args;
  421. // TODO(codebytere): We need to set the first entry in args to the
  422. // process name owing to src/node_options-inl.h#L286-L290 but this is
  423. // redundant and so should be refactored upstream.
  424. args.reserve(argv.size() + 1);
  425. args.emplace_back("electron");
  426. for (const auto& arg : argv) {
  427. #if BUILDFLAG(IS_WIN)
  428. const auto& option = base::WideToUTF8(arg);
  429. #else
  430. const auto& option = arg;
  431. #endif
  432. const auto stripped = std::string_view{option}.substr(0, option.find('='));
  433. // Only allow no-op or a small set of debug/trace related options.
  434. if (IsAllowedOption(stripped) || stripped == "--")
  435. args.push_back(option);
  436. }
  437. // We need to disable Node.js' fetch implementation to prevent
  438. // conflict with Blink's in renderer and worker processes.
  439. if (browser_env_ == BrowserEnvironment::kRenderer ||
  440. browser_env_ == BrowserEnvironment::kWorker) {
  441. args.push_back("--no-experimental-fetch");
  442. }
  443. return args;
  444. }
  445. void NodeBindings::Initialize(v8::Local<v8::Context> context) {
  446. TRACE_EVENT0("electron", "NodeBindings::Initialize");
  447. // Open node's error reporting system for browser process.
  448. #if BUILDFLAG(IS_LINUX)
  449. // Get real command line in renderer process forked by zygote.
  450. if (browser_env_ != BrowserEnvironment::kBrowser)
  451. ElectronCommandLine::InitializeFromCommandLine();
  452. #endif
  453. // Explicitly register electron's builtin bindings.
  454. RegisterBuiltinBindings();
  455. auto env = base::Environment::Create();
  456. SetNodeOptions(env.get());
  457. // Parse and set Node.js cli flags.
  458. std::vector<std::string> args = ParseNodeCliFlags();
  459. // V8::EnableWebAssemblyTrapHandler can be called only once or it will
  460. // hard crash. We need to prevent Node.js calling it in the event it has
  461. // already been called.
  462. node::per_process::cli_options->disable_wasm_trap_handler = true;
  463. uint64_t process_flags =
  464. node::ProcessInitializationFlags::kNoInitializeV8 |
  465. node::ProcessInitializationFlags::kNoInitializeNodeV8Platform;
  466. // We do not want the child processes spawned from the utility process
  467. // to inherit the custom stdio handles created for the parent.
  468. if (browser_env_ != BrowserEnvironment::kUtility)
  469. process_flags |= node::ProcessInitializationFlags::kEnableStdioInheritance;
  470. if (browser_env_ == BrowserEnvironment::kRenderer)
  471. process_flags |= node::ProcessInitializationFlags::kNoInitializeCppgc |
  472. node::ProcessInitializationFlags::kNoDefaultSignalHandling;
  473. if (!fuses::IsNodeOptionsEnabled())
  474. process_flags |= node::ProcessInitializationFlags::kDisableNodeOptionsEnv;
  475. std::unique_ptr<node::InitializationResult> result =
  476. node::InitializeOncePerProcess(
  477. args,
  478. static_cast<node::ProcessInitializationFlags::Flags>(process_flags));
  479. for (const std::string& error : result->errors()) {
  480. fprintf(stderr, "%s: %s\n", args[0].c_str(), error.c_str());
  481. }
  482. if (result->early_return() != 0)
  483. exit(result->exit_code());
  484. #if BUILDFLAG(IS_WIN)
  485. // uv_init overrides error mode to suppress the default crash dialog, bring
  486. // it back if user wants to show it.
  487. if (browser_env_ == BrowserEnvironment::kBrowser ||
  488. env->HasVar("ELECTRON_DEFAULT_ERROR_MODE"))
  489. SetErrorMode(GetErrorMode() & ~SEM_NOGPFAULTERRORBOX);
  490. #endif
  491. gin_helper::internal::Event::GetConstructor(context);
  492. g_is_initialized = true;
  493. }
  494. std::shared_ptr<node::Environment> NodeBindings::CreateEnvironment(
  495. v8::Local<v8::Context> context,
  496. node::MultiIsolatePlatform* platform,
  497. std::vector<std::string> args,
  498. std::vector<std::string> exec_args,
  499. std::optional<base::RepeatingCallback<void()>> on_app_code_ready) {
  500. // Feed node the path to initialization script.
  501. std::string process_type;
  502. switch (browser_env_) {
  503. case BrowserEnvironment::kBrowser:
  504. process_type = "browser";
  505. break;
  506. case BrowserEnvironment::kRenderer:
  507. process_type = "renderer";
  508. break;
  509. case BrowserEnvironment::kWorker:
  510. process_type = "worker";
  511. break;
  512. case BrowserEnvironment::kUtility:
  513. process_type = "utility";
  514. break;
  515. }
  516. v8::Isolate* isolate = context->GetIsolate();
  517. gin_helper::Dictionary global(isolate, context->Global());
  518. if (browser_env_ == BrowserEnvironment::kBrowser) {
  519. const std::vector<std::string> search_paths = {"app.asar", "app",
  520. "default_app.asar"};
  521. const std::vector<std::string> app_asar_search_paths = {"app.asar"};
  522. context->Global()->SetPrivate(
  523. context,
  524. v8::Private::ForApi(
  525. isolate,
  526. gin::ConvertToV8(isolate, "appSearchPaths").As<v8::String>()),
  527. gin::ConvertToV8(isolate,
  528. electron::fuses::IsOnlyLoadAppFromAsarEnabled()
  529. ? app_asar_search_paths
  530. : search_paths));
  531. context->Global()->SetPrivate(
  532. context,
  533. v8::Private::ForApi(
  534. isolate, gin::ConvertToV8(isolate, "appSearchPathsOnlyLoadASAR")
  535. .As<v8::String>()),
  536. gin::ConvertToV8(isolate,
  537. electron::fuses::IsOnlyLoadAppFromAsarEnabled()));
  538. }
  539. std::string init_script = "electron/js2c/" + process_type + "_init";
  540. args.insert(args.begin() + 1, init_script);
  541. auto* isolate_data = node::CreateIsolateData(isolate, uv_loop_, platform);
  542. context->SetAlignedPointerInEmbedderData(kElectronContextEmbedderDataIndex,
  543. static_cast<void*>(isolate_data));
  544. node::Environment* env;
  545. uint64_t env_flags = node::EnvironmentFlags::kDefaultFlags |
  546. node::EnvironmentFlags::kHideConsoleWindows |
  547. node::EnvironmentFlags::kNoGlobalSearchPaths |
  548. node::EnvironmentFlags::kNoRegisterESMLoader;
  549. if (browser_env_ == BrowserEnvironment::kRenderer ||
  550. browser_env_ == BrowserEnvironment::kWorker) {
  551. // Only one ESM loader can be registered per isolate -
  552. // in renderer processes this should be blink. We need to tell Node.js
  553. // not to register its handler (overriding blinks) in non-browser processes.
  554. // We also avoid overriding globals like setImmediate, clearImmediate
  555. // queueMicrotask etc during the bootstrap phase of Node.js
  556. // for processes that already have these defined by DOM.
  557. // Check //third_party/electron_node/lib/internal/bootstrap/node.js
  558. // for the list of overrides on globalThis.
  559. env_flags |= node::EnvironmentFlags::kNoBrowserGlobals |
  560. node::EnvironmentFlags::kNoCreateInspector;
  561. }
  562. if (!electron::fuses::IsNodeCliInspectEnabled()) {
  563. // If --inspect and friends are disabled we also shouldn't listen for
  564. // SIGUSR1
  565. env_flags |= node::EnvironmentFlags::kNoStartDebugSignalHandler;
  566. }
  567. {
  568. v8::TryCatch try_catch(isolate);
  569. env = node::CreateEnvironment(
  570. static_cast<node::IsolateData*>(isolate_data), context, args, exec_args,
  571. static_cast<node::EnvironmentFlags::Flags>(env_flags));
  572. if (try_catch.HasCaught()) {
  573. std::string err_msg =
  574. "Failed to initialize node environment in process: " + process_type;
  575. v8::Local<v8::Message> message = try_catch.Message();
  576. std::string msg;
  577. if (!message.IsEmpty() &&
  578. gin::ConvertFromV8(isolate, message->Get(), &msg))
  579. err_msg += " , with error: " + msg;
  580. LOG(ERROR) << err_msg;
  581. }
  582. }
  583. DCHECK(env);
  584. node::IsolateSettings is;
  585. // Use a custom fatal error callback to allow us to add
  586. // crash message and location to CrashReports.
  587. is.fatal_error_callback = V8FatalErrorCallback;
  588. // We don't want to abort either in the renderer or browser processes.
  589. // We already listen for uncaught exceptions and handle them there.
  590. // For utility process we expect the process to behave as standard
  591. // Node.js runtime and abort the process with appropriate exit
  592. // code depending on a handler being set for `uncaughtException` event.
  593. if (browser_env_ != BrowserEnvironment::kUtility) {
  594. is.should_abort_on_uncaught_exception_callback = [](v8::Isolate*) {
  595. return false;
  596. };
  597. }
  598. // Use a custom callback here to allow us to leverage Blink's logic in the
  599. // renderer process.
  600. is.allow_wasm_code_generation_callback = AllowWasmCodeGenerationCallback;
  601. is.flags |= node::IsolateSettingsFlags::
  602. ALLOW_MODIFY_CODE_GENERATION_FROM_STRINGS_CALLBACK;
  603. is.modify_code_generation_from_strings_callback =
  604. ModifyCodeGenerationFromStrings;
  605. if (browser_env_ == BrowserEnvironment::kBrowser ||
  606. browser_env_ == BrowserEnvironment::kUtility) {
  607. // Node.js requires that microtask checkpoints be explicitly invoked.
  608. is.policy = v8::MicrotasksPolicy::kExplicit;
  609. } else {
  610. // Blink expects the microtasks policy to be kScoped, but Node.js expects it
  611. // to be kExplicit. In the renderer, there can be many contexts within the
  612. // same isolate, so we don't want to change the existing policy here, which
  613. // could be either kExplicit or kScoped depending on whether we're executing
  614. // from within a Node.js or a Blink entrypoint. Instead, the policy is
  615. // toggled to kExplicit when entering Node.js through UvRunOnce.
  616. is.policy = context->GetIsolate()->GetMicrotasksPolicy();
  617. // We do not want to use Node.js' message listener as it interferes with
  618. // Blink's.
  619. is.flags &= ~node::IsolateSettingsFlags::MESSAGE_LISTENER_WITH_ERROR_LEVEL;
  620. // Isolate message listeners are additive (you can add multiple), so instead
  621. // we add an extra one here to ensure that the async hook stack is properly
  622. // cleared when errors are thrown.
  623. context->GetIsolate()->AddMessageListenerWithErrorLevel(
  624. ErrorMessageListener, v8::Isolate::kMessageError);
  625. // We do not want to use the promise rejection callback that Node.js uses,
  626. // because it does not send PromiseRejectionEvents to the global script
  627. // context. We need to use the one Blink already provides.
  628. is.flags |=
  629. node::IsolateSettingsFlags::SHOULD_NOT_SET_PROMISE_REJECTION_CALLBACK;
  630. // We do not want to use the stack trace callback that Node.js uses,
  631. // because it relies on Node.js being aware of the current Context and
  632. // that's not always the case. We need to use the one Blink already
  633. // provides.
  634. is.flags |=
  635. node::IsolateSettingsFlags::SHOULD_NOT_SET_PREPARE_STACK_TRACE_CALLBACK;
  636. }
  637. node::SetIsolateUpForNode(context->GetIsolate(), is);
  638. context->GetIsolate()->SetHostImportModuleDynamicallyCallback(
  639. HostImportModuleDynamically);
  640. context->GetIsolate()->SetHostInitializeImportMetaObjectCallback(
  641. HostInitializeImportMetaObject);
  642. gin_helper::Dictionary process(context->GetIsolate(), env->process_object());
  643. process.SetReadOnly("type", process_type);
  644. if (browser_env_ == BrowserEnvironment::kBrowser ||
  645. browser_env_ == BrowserEnvironment::kRenderer) {
  646. if (on_app_code_ready) {
  647. process.SetMethod("appCodeLoaded", std::move(*on_app_code_ready));
  648. } else {
  649. process.SetMethod("appCodeLoaded",
  650. base::BindRepeating(&NodeBindings::SetAppCodeLoaded,
  651. base::Unretained(this)));
  652. }
  653. }
  654. auto env_deleter = [isolate, isolate_data,
  655. context = v8::Global<v8::Context>{isolate, context}](
  656. node::Environment* nenv) mutable {
  657. // When `isolate_data` was created above, a pointer to it was kept
  658. // in context's embedder_data[kElectronContextEmbedderDataIndex].
  659. // Since we're about to free `isolate_data`, clear that entry
  660. v8::HandleScope handle_scope{isolate};
  661. context.Get(isolate)->SetAlignedPointerInEmbedderData(
  662. kElectronContextEmbedderDataIndex, nullptr);
  663. context.Reset();
  664. node::FreeEnvironment(nenv);
  665. node::FreeIsolateData(isolate_data);
  666. };
  667. return {env, std::move(env_deleter)};
  668. }
  669. std::shared_ptr<node::Environment> NodeBindings::CreateEnvironment(
  670. v8::Local<v8::Context> context,
  671. node::MultiIsolatePlatform* platform,
  672. std::optional<base::RepeatingCallback<void()>> on_app_code_ready) {
  673. #if BUILDFLAG(IS_WIN)
  674. auto& electron_args = ElectronCommandLine::argv();
  675. std::vector<std::string> args(electron_args.size());
  676. std::transform(electron_args.cbegin(), electron_args.cend(), args.begin(),
  677. [](auto& a) { return base::WideToUTF8(a); });
  678. #else
  679. auto args = ElectronCommandLine::argv();
  680. #endif
  681. return CreateEnvironment(context, platform, args, {}, on_app_code_ready);
  682. }
  683. void NodeBindings::LoadEnvironment(node::Environment* env) {
  684. node::LoadEnvironment(env, node::StartExecutionCallback{}, &OnNodePreload);
  685. gin_helper::EmitEvent(env->isolate(), env->process_object(), "loaded");
  686. }
  687. void NodeBindings::PrepareEmbedThread() {
  688. // IOCP does not change for the process until the loop is recreated,
  689. // we ensure that there is only a single polling thread satisfying
  690. // the concurrency limit set from CreateIoCompletionPort call by
  691. // uv_loop_init for the lifetime of this process.
  692. // More background can be found at:
  693. // https://github.com/microsoft/vscode/issues/142786#issuecomment-1061673400
  694. if (initialized_)
  695. return;
  696. // Add dummy handle for libuv, otherwise libuv would quit when there is
  697. // nothing to do.
  698. uv_async_init(uv_loop_, dummy_uv_handle_.get(), nullptr);
  699. // Start worker that will interrupt main loop when having uv events.
  700. uv_sem_init(&embed_sem_, 0);
  701. uv_thread_create(&embed_thread_, EmbedThreadRunner, this);
  702. }
  703. void NodeBindings::StartPolling() {
  704. // Avoid calling UvRunOnce if the loop is already active,
  705. // otherwise it can lead to situations were the number of active
  706. // threads processing on IOCP is greater than the concurrency limit.
  707. if (initialized_)
  708. return;
  709. initialized_ = true;
  710. // The MessageLoop should have been created, remember the one in main thread.
  711. task_runner_ = base::SingleThreadTaskRunner::GetCurrentDefault();
  712. // Run uv loop for once to give the uv__io_poll a chance to add all events.
  713. UvRunOnce();
  714. }
  715. void NodeBindings::SetAppCodeLoaded() {
  716. app_code_loaded_ = true;
  717. }
  718. void NodeBindings::JoinAppCode() {
  719. // We can only "join" app code to the main thread in the browser process
  720. if (browser_env_ != BrowserEnvironment::kBrowser) {
  721. return;
  722. }
  723. auto* browser = Browser::Get();
  724. node::Environment* env = uv_env();
  725. if (!env)
  726. return;
  727. v8::HandleScope handle_scope(env->isolate());
  728. // Enter node context while dealing with uv events.
  729. v8::Context::Scope context_scope(env->context());
  730. // Pump the event loop until we get the signal that the app code has finished
  731. // loading
  732. while (!app_code_loaded_ && !browser->is_shutting_down()) {
  733. int r = uv_run(uv_loop_, UV_RUN_ONCE);
  734. if (r == 0) {
  735. base::RunLoop().QuitWhenIdle(); // Quit from uv.
  736. break;
  737. }
  738. }
  739. }
  740. void NodeBindings::UvRunOnce() {
  741. node::Environment* env = uv_env();
  742. // When doing navigation without restarting renderer process, it may happen
  743. // that the node environment is destroyed but the message loop is still there.
  744. // In this case we should not run uv loop.
  745. if (!env)
  746. return;
  747. v8::HandleScope handle_scope(env->isolate());
  748. // Enter node context while dealing with uv events.
  749. v8::Context::Scope context_scope(env->context());
  750. // Node.js expects `kExplicit` microtasks policy and will run microtasks
  751. // checkpoints after every call into JavaScript. Since we use a different
  752. // policy in the renderer - switch to `kExplicit` and then drop back to the
  753. // previous policy value.
  754. v8::MicrotaskQueue* microtask_queue = env->context()->GetMicrotaskQueue();
  755. auto old_policy = microtask_queue->microtasks_policy();
  756. DCHECK_EQ(microtask_queue->GetMicrotasksScopeDepth(), 0);
  757. microtask_queue->set_microtasks_policy(v8::MicrotasksPolicy::kExplicit);
  758. if (browser_env_ != BrowserEnvironment::kBrowser)
  759. TRACE_EVENT_BEGIN0("devtools.timeline", "FunctionCall");
  760. // Deal with uv events.
  761. int r = uv_run(uv_loop_, UV_RUN_NOWAIT);
  762. if (browser_env_ != BrowserEnvironment::kBrowser)
  763. TRACE_EVENT_END0("devtools.timeline", "FunctionCall");
  764. microtask_queue->set_microtasks_policy(old_policy);
  765. if (r == 0)
  766. base::RunLoop().QuitWhenIdle(); // Quit from uv.
  767. // Tell the worker thread to continue polling.
  768. uv_sem_post(&embed_sem_);
  769. }
  770. void NodeBindings::WakeupMainThread() {
  771. DCHECK(task_runner_);
  772. task_runner_->PostTask(FROM_HERE, base::BindOnce(&NodeBindings::UvRunOnce,
  773. weak_factory_.GetWeakPtr()));
  774. }
  775. void NodeBindings::WakeupEmbedThread() {
  776. uv_async_send(dummy_uv_handle_.get());
  777. }
  778. // static
  779. void NodeBindings::EmbedThreadRunner(void* arg) {
  780. auto* self = static_cast<NodeBindings*>(arg);
  781. while (true) {
  782. // Wait for the main loop to deal with events.
  783. uv_sem_wait(&self->embed_sem_);
  784. if (self->embed_closed_)
  785. break;
  786. // Wait for something to happen in uv loop.
  787. // Note that the PollEvents() is implemented by derived classes, so when
  788. // this class is being destructed the PollEvents() would not be available
  789. // anymore. Because of it we must make sure we only invoke PollEvents()
  790. // when this class is alive.
  791. self->PollEvents();
  792. if (self->embed_closed_)
  793. break;
  794. // Deal with event in main thread.
  795. self->WakeupMainThread();
  796. }
  797. }
  798. void OnNodePreload(node::Environment* env,
  799. v8::Local<v8::Value> process,
  800. v8::Local<v8::Value> require) {
  801. // Set custom process properties.
  802. gin_helper::Dictionary dict(env->isolate(), process.As<v8::Object>());
  803. dict.SetReadOnly("resourcesPath", GetResourcesPath());
  804. base::FilePath helper_exec_path; // path to the helper app.
  805. base::PathService::Get(content::CHILD_PROCESS_EXE, &helper_exec_path);
  806. dict.SetReadOnly("helperExecPath", helper_exec_path);
  807. gin_helper::Dictionary versions;
  808. if (dict.Get("versions", &versions)) {
  809. versions.SetReadOnly(ELECTRON_PROJECT_NAME, ELECTRON_VERSION_STRING);
  810. versions.SetReadOnly("chrome", CHROME_VERSION_STRING);
  811. #if BUILDFLAG(HAS_VENDOR_VERSION)
  812. versions.SetReadOnly(BUILDFLAG(VENDOR_VERSION_NAME),
  813. BUILDFLAG(VENDOR_VERSION_VALUE));
  814. #endif
  815. }
  816. // Execute lib/node/init.ts.
  817. std::vector<v8::Local<v8::String>> bundle_params = {
  818. node::FIXED_ONE_BYTE_STRING(env->isolate(), "process"),
  819. node::FIXED_ONE_BYTE_STRING(env->isolate(), "require"),
  820. };
  821. std::vector<v8::Local<v8::Value>> bundle_args = {process, require};
  822. electron::util::CompileAndCall(env->context(), "electron/js2c/node_init",
  823. &bundle_params, &bundle_args);
  824. }
  825. } // namespace electron