327 lines
11 KiB
C++
327 lines
11 KiB
C++
// Copyright (c) 2013 GitHub, Inc.
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// Use of this source code is governed by the MIT license that can be
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// found in the LICENSE file.
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#include "atom/common/node_bindings.h"
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#include <string>
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#include <vector>
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#include "atom/common/api/event_emitter_caller.h"
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#include "atom/common/api/locker.h"
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#include "atom/common/atom_command_line.h"
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#include "atom/common/native_mate_converters/file_path_converter.h"
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#include "base/base_paths.h"
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#include "base/command_line.h"
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#include "base/environment.h"
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#include "base/files/file_path.h"
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#include "base/path_service.h"
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#include "base/run_loop.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "base/trace_event/trace_event.h"
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#include "content/public/browser/browser_thread.h"
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#include "content/public/common/content_paths.h"
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#include "native_mate/dictionary.h"
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#include "atom/common/node_includes.h"
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// Force all builtin modules to be referenced so they can actually run their
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// DSO constructors, see http://git.io/DRIqCg.
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#define REFERENCE_MODULE(name) \
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extern "C" void _register_ ## name(void); \
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void (*fp_register_ ## name)(void) = _register_ ## name
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// Electron's builtin modules.
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REFERENCE_MODULE(atom_browser_app);
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REFERENCE_MODULE(atom_browser_auto_updater);
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REFERENCE_MODULE(atom_browser_browser_view);
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REFERENCE_MODULE(atom_browser_content_tracing);
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REFERENCE_MODULE(atom_browser_debugger);
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REFERENCE_MODULE(atom_browser_desktop_capturer);
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REFERENCE_MODULE(atom_browser_dialog);
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REFERENCE_MODULE(atom_browser_download_item);
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REFERENCE_MODULE(atom_browser_global_shortcut);
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REFERENCE_MODULE(atom_browser_in_app_purchase);
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REFERENCE_MODULE(atom_browser_menu);
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REFERENCE_MODULE(atom_browser_net);
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REFERENCE_MODULE(atom_browser_power_monitor);
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REFERENCE_MODULE(atom_browser_power_save_blocker);
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REFERENCE_MODULE(atom_browser_protocol);
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REFERENCE_MODULE(atom_browser_render_process_preferences);
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REFERENCE_MODULE(atom_browser_session);
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REFERENCE_MODULE(atom_browser_system_preferences);
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REFERENCE_MODULE(atom_browser_tray);
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REFERENCE_MODULE(atom_browser_web_contents);
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REFERENCE_MODULE(atom_browser_web_view_manager);
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REFERENCE_MODULE(atom_browser_window);
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REFERENCE_MODULE(atom_common_asar);
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REFERENCE_MODULE(atom_common_clipboard);
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REFERENCE_MODULE(atom_common_crash_reporter);
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REFERENCE_MODULE(atom_common_native_image);
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REFERENCE_MODULE(atom_common_notification);
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REFERENCE_MODULE(atom_common_screen);
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REFERENCE_MODULE(atom_common_shell);
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REFERENCE_MODULE(atom_common_v8_util);
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REFERENCE_MODULE(atom_renderer_ipc);
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REFERENCE_MODULE(atom_renderer_web_frame);
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#undef REFERENCE_MODULE
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namespace {
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void stop_and_close_uv_loop(uv_loop_t* loop) {
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// Close any active handles
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uv_stop(loop);
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uv_walk(loop, [](uv_handle_t* handle, void*){
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if (!uv_is_closing(handle)) {
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uv_close(handle, nullptr);
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}
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}, nullptr);
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// Run the loop to let it finish all the closing handles
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// NB: after uv_stop(), uv_run(UV_RUN_DEFAULT) returns 0 when that's done
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for (;;)
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if (!uv_run(loop, UV_RUN_DEFAULT))
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break;
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DCHECK(!uv_loop_alive(loop));
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uv_loop_close(loop);
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}
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} // namespace
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namespace atom {
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namespace {
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// Convert the given vector to an array of C-strings. The strings in the
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// returned vector are only guaranteed valid so long as the vector of strings
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// is not modified.
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std::unique_ptr<const char*[]> StringVectorToArgArray(
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const std::vector<std::string>& vector) {
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std::unique_ptr<const char*[]> array(new const char*[vector.size()]);
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for (size_t i = 0; i < vector.size(); ++i) {
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array[i] = vector[i].c_str();
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}
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return array;
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}
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base::FilePath GetResourcesPath(bool is_browser) {
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auto command_line = base::CommandLine::ForCurrentProcess();
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base::FilePath exec_path(command_line->GetProgram());
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PathService::Get(base::FILE_EXE, &exec_path);
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base::FilePath resources_path =
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#if defined(OS_MACOSX)
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is_browser ? exec_path.DirName().DirName().Append("Resources") :
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exec_path.DirName().DirName().DirName().DirName().DirName()
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.Append("Resources");
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#else
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exec_path.DirName().Append(FILE_PATH_LITERAL("resources"));
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#endif
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return resources_path;
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}
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} // namespace
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NodeBindings::NodeBindings(BrowserEnvironment browser_env)
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: browser_env_(browser_env),
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embed_closed_(false),
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uv_env_(nullptr),
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weak_factory_(this) {
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if (browser_env == WORKER) {
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uv_loop_init(&worker_loop_);
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uv_loop_ = &worker_loop_;
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} else {
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uv_loop_ = uv_default_loop();
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}
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}
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NodeBindings::~NodeBindings() {
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// Quit the embed thread.
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embed_closed_ = true;
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uv_sem_post(&embed_sem_);
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WakeupEmbedThread();
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// Wait for everything to be done.
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uv_thread_join(&embed_thread_);
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// Clear uv.
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uv_sem_destroy(&embed_sem_);
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uv_close(reinterpret_cast<uv_handle_t*>(&dummy_uv_handle_), nullptr);
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// Clean up worker loop
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if (uv_loop_ == &worker_loop_)
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stop_and_close_uv_loop(uv_loop_);
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}
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void NodeBindings::Initialize() {
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// Open node's error reporting system for browser process.
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node::g_standalone_mode = browser_env_ == BROWSER;
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node::g_upstream_node_mode = false;
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#if defined(OS_LINUX)
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// Get real command line in renderer process forked by zygote.
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if (browser_env_ != BROWSER)
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AtomCommandLine::InitializeFromCommandLine();
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#endif
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// Init node.
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// (we assume node::Init would not modify the parameters under embedded mode).
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node::Init(nullptr, nullptr, nullptr, nullptr);
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#if defined(OS_WIN)
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// uv_init overrides error mode to suppress the default crash dialog, bring
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// it back if user wants to show it.
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std::unique_ptr<base::Environment> env(base::Environment::Create());
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if (browser_env_ == BROWSER || env->HasVar("ELECTRON_DEFAULT_ERROR_MODE"))
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SetErrorMode(GetErrorMode() & ~SEM_NOGPFAULTERRORBOX);
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#endif
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}
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node::Environment* NodeBindings::CreateEnvironment(
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v8::Handle<v8::Context> context) {
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auto args = AtomCommandLine::argv();
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// Feed node the path to initialization script.
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base::FilePath::StringType process_type;
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switch (browser_env_) {
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case BROWSER:
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process_type = FILE_PATH_LITERAL("browser");
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break;
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case RENDERER:
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process_type = FILE_PATH_LITERAL("renderer");
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break;
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case WORKER:
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process_type = FILE_PATH_LITERAL("worker");
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break;
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}
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base::FilePath resources_path = GetResourcesPath(browser_env_ == BROWSER);
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base::FilePath script_path =
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resources_path.Append(FILE_PATH_LITERAL("electron.asar"))
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.Append(process_type)
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.Append(FILE_PATH_LITERAL("init.js"));
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std::string script_path_str = script_path.AsUTF8Unsafe();
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args.insert(args.begin() + 1, script_path_str.c_str());
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std::unique_ptr<const char*[]> c_argv = StringVectorToArgArray(args);
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node::Environment* env = node::CreateEnvironment(
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new node::IsolateData(context->GetIsolate(), uv_loop_), context,
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args.size(), c_argv.get(), 0, nullptr);
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if (browser_env_ == BROWSER) {
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// SetAutorunMicrotasks is no longer called in node::CreateEnvironment
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// so instead call it here to match expected node behavior
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context->GetIsolate()->SetMicrotasksPolicy(v8::MicrotasksPolicy::kExplicit);
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} else {
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// Node uses the deprecated SetAutorunMicrotasks(false) mode, we should
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// switch to use the scoped policy to match blink's behavior.
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context->GetIsolate()->SetMicrotasksPolicy(v8::MicrotasksPolicy::kScoped);
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}
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mate::Dictionary process(context->GetIsolate(), env->process_object());
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process.Set("type", process_type);
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process.Set("resourcesPath", resources_path);
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// Do not set DOM globals for renderer process.
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if (browser_env_ != BROWSER)
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process.Set("_noBrowserGlobals", resources_path);
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// The path to helper app.
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base::FilePath helper_exec_path;
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PathService::Get(content::CHILD_PROCESS_EXE, &helper_exec_path);
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process.Set("helperExecPath", helper_exec_path);
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return env;
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}
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void NodeBindings::LoadEnvironment(node::Environment* env) {
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node::LoadEnvironment(env);
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mate::EmitEvent(env->isolate(), env->process_object(), "loaded");
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}
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void NodeBindings::PrepareMessageLoop() {
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// Add dummy handle for libuv, otherwise libuv would quit when there is
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// nothing to do.
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uv_async_init(uv_loop_, &dummy_uv_handle_, nullptr);
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// Start worker that will interrupt main loop when having uv events.
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uv_sem_init(&embed_sem_, 0);
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uv_thread_create(&embed_thread_, EmbedThreadRunner, this);
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}
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void NodeBindings::RunMessageLoop() {
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// The MessageLoop should have been created, remember the one in main thread.
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task_runner_ = base::ThreadTaskRunnerHandle::Get();
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// Run uv loop for once to give the uv__io_poll a chance to add all events.
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UvRunOnce();
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}
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void NodeBindings::UvRunOnce() {
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node::Environment* env = uv_env();
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// When doing navigation without restarting renderer process, it may happen
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// that the node environment is destroyed but the message loop is still there.
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// In this case we should not run uv loop.
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if (!env)
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return;
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// Use Locker in browser process.
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mate::Locker locker(env->isolate());
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v8::HandleScope handle_scope(env->isolate());
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// Enter node context while dealing with uv events.
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v8::Context::Scope context_scope(env->context());
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// Perform microtask checkpoint after running JavaScript.
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v8::MicrotasksScope script_scope(env->isolate(),
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v8::MicrotasksScope::kRunMicrotasks);
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if (browser_env_ != BROWSER)
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TRACE_EVENT_BEGIN0("devtools.timeline", "FunctionCall");
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// Deal with uv events.
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int r = uv_run(uv_loop_, UV_RUN_NOWAIT);
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if (browser_env_ != BROWSER)
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TRACE_EVENT_END0("devtools.timeline", "FunctionCall");
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if (r == 0)
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base::RunLoop().QuitWhenIdle(); // Quit from uv.
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// Tell the worker thread to continue polling.
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uv_sem_post(&embed_sem_);
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}
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void NodeBindings::WakeupMainThread() {
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DCHECK(task_runner_);
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task_runner_->PostTask(FROM_HERE, base::Bind(&NodeBindings::UvRunOnce,
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weak_factory_.GetWeakPtr()));
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}
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void NodeBindings::WakeupEmbedThread() {
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uv_async_send(&dummy_uv_handle_);
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}
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// static
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void NodeBindings::EmbedThreadRunner(void *arg) {
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NodeBindings* self = static_cast<NodeBindings*>(arg);
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while (true) {
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// Wait for the main loop to deal with events.
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uv_sem_wait(&self->embed_sem_);
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if (self->embed_closed_)
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break;
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// Wait for something to happen in uv loop.
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// Note that the PollEvents() is implemented by derived classes, so when
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// this class is being destructed the PollEvents() would not be available
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// anymore. Because of it we must make sure we only invoke PollEvents()
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// when this class is alive.
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self->PollEvents();
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if (self->embed_closed_)
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break;
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// Deal with event in main thread.
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self->WakeupMainThread();
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}
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}
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} // namespace atom
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