256 lines
7.6 KiB
C++
256 lines
7.6 KiB
C++
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#include "env-inl.h"
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#include "node_internals.h"
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#include "node_process-inl.h"
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#include "async_wrap.h"
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namespace node {
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using v8::Context;
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using v8::HandleScope;
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using v8::Integer;
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using v8::Isolate;
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using v8::Just;
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using v8::Local;
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using v8::Maybe;
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using v8::NewStringType;
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using v8::Nothing;
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using v8::Object;
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using v8::String;
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void RunAtExit(Environment* env) {
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env->RunAtExitCallbacks();
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}
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void AtExit(Environment* env, void (*cb)(void* arg), void* arg) {
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CHECK_NOT_NULL(env);
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env->AtExit(cb, arg);
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}
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void EmitBeforeExit(Environment* env) {
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USE(EmitProcessBeforeExit(env));
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}
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Maybe<bool> EmitProcessBeforeExit(Environment* env) {
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TRACE_EVENT0(TRACING_CATEGORY_NODE1(environment), "BeforeExit");
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if (!env->destroy_async_id_list()->empty())
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AsyncWrap::DestroyAsyncIdsCallback(env);
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Isolate* isolate = env->isolate();
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HandleScope handle_scope(isolate);
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Context::Scope context_scope(env->context());
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if (!env->can_call_into_js()) {
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return Nothing<bool>();
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}
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Local<Integer> exit_code = Integer::New(
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isolate, static_cast<int32_t>(env->exit_code(ExitCode::kNoFailure)));
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return ProcessEmit(env, "beforeExit", exit_code).IsEmpty() ? Nothing<bool>()
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: Just(true);
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}
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static ExitCode EmitExitInternal(Environment* env) {
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return EmitProcessExitInternal(env).FromMaybe(ExitCode::kGenericUserError);
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}
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int EmitExit(Environment* env) {
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return static_cast<int>(EmitExitInternal(env));
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}
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Maybe<ExitCode> EmitProcessExitInternal(Environment* env) {
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// process.emit('exit')
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Isolate* isolate = env->isolate();
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HandleScope handle_scope(isolate);
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Context::Scope context_scope(env->context());
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env->set_exiting(true);
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if (!env->can_call_into_js()) {
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return Nothing<ExitCode>();
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}
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ExitCode exit_code = env->exit_code(ExitCode::kNoFailure);
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// the exit code wasn't already set, so let's check for unsettled tlas
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if (exit_code == ExitCode::kNoFailure) {
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auto unsettled_tla = env->CheckUnsettledTopLevelAwait();
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if (!unsettled_tla.FromJust()) {
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exit_code = ExitCode::kUnsettledTopLevelAwait;
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env->set_exit_code(exit_code);
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}
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}
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Local<Integer> exit_code_int =
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Integer::New(isolate, static_cast<int32_t>(exit_code));
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if (ProcessEmit(env, "exit", exit_code_int).IsEmpty()) {
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return Nothing<ExitCode>();
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}
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// Reload exit code, it may be changed by `emit('exit')`
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return Just(env->exit_code(exit_code));
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}
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Maybe<int> EmitProcessExit(Environment* env) {
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Maybe<ExitCode> result = EmitProcessExitInternal(env);
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if (result.IsNothing()) {
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return Nothing<int>();
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}
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return Just(static_cast<int>(result.FromJust()));
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}
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typedef void (*CleanupHook)(void* arg);
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typedef void (*AsyncCleanupHook)(void* arg, void(*)(void*), void*);
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struct AsyncCleanupHookInfo final {
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Environment* env;
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AsyncCleanupHook fun;
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void* arg;
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bool started = false;
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// Use a self-reference to make sure the storage is kept alive while the
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// cleanup hook is registered but not yet finished.
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std::shared_ptr<AsyncCleanupHookInfo> self;
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};
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// Opaque type that is basically an alias for `shared_ptr<AsyncCleanupHookInfo>`
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// (but not publicly so for easier ABI/API changes). In particular,
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// std::shared_ptr does not generally maintain a consistent ABI even on a
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// specific platform.
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struct ACHHandle final {
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std::shared_ptr<AsyncCleanupHookInfo> info;
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};
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// This is implemented as an operator on a struct because otherwise you can't
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// default-initialize AsyncCleanupHookHandle, because in C++ for a
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// std::unique_ptr to be default-initializable the deleter type also needs
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// to be default-initializable; in particular, function types don't satisfy
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// this.
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void DeleteACHHandle::operator ()(ACHHandle* handle) const { delete handle; }
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void AddEnvironmentCleanupHook(Isolate* isolate,
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CleanupHook fun,
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void* arg) {
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Environment* env = Environment::GetCurrent(isolate);
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CHECK_NOT_NULL(env);
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env->AddCleanupHook(fun, arg);
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}
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void RemoveEnvironmentCleanupHook(Isolate* isolate,
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CleanupHook fun,
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void* arg) {
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Environment* env = Environment::GetCurrent(isolate);
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CHECK_NOT_NULL(env);
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env->RemoveCleanupHook(fun, arg);
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}
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static void FinishAsyncCleanupHook(void* arg) {
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AsyncCleanupHookInfo* info = static_cast<AsyncCleanupHookInfo*>(arg);
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std::shared_ptr<AsyncCleanupHookInfo> keep_alive = info->self;
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info->env->DecreaseWaitingRequestCounter();
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info->self.reset();
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}
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static void RunAsyncCleanupHook(void* arg) {
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AsyncCleanupHookInfo* info = static_cast<AsyncCleanupHookInfo*>(arg);
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info->env->IncreaseWaitingRequestCounter();
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info->started = true;
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info->fun(info->arg, FinishAsyncCleanupHook, info);
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}
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ACHHandle* AddEnvironmentCleanupHookInternal(
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Isolate* isolate,
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AsyncCleanupHook fun,
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void* arg) {
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Environment* env = Environment::GetCurrent(isolate);
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CHECK_NOT_NULL(env);
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auto info = std::make_shared<AsyncCleanupHookInfo>();
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info->env = env;
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info->fun = fun;
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info->arg = arg;
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info->self = info;
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env->AddCleanupHook(RunAsyncCleanupHook, info.get());
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return new ACHHandle { info };
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}
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void RemoveEnvironmentCleanupHookInternal(
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ACHHandle* handle) {
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if (handle->info->started) return;
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handle->info->self.reset();
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handle->info->env->RemoveCleanupHook(RunAsyncCleanupHook, handle->info.get());
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}
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void RequestInterrupt(Environment* env, void (*fun)(void* arg), void* arg) {
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env->RequestInterrupt([fun, arg](Environment* env) {
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// Disallow JavaScript execution during interrupt.
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Isolate::DisallowJavascriptExecutionScope scope(
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env->isolate(),
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Isolate::DisallowJavascriptExecutionScope::CRASH_ON_FAILURE);
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fun(arg);
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});
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}
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async_id AsyncHooksGetExecutionAsyncId(Isolate* isolate) {
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Environment* env = Environment::GetCurrent(isolate);
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if (env == nullptr) return -1;
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return env->execution_async_id();
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}
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async_id AsyncHooksGetExecutionAsyncId(Local<Context> context) {
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Environment* env = Environment::GetCurrent(context);
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if (env == nullptr) return -1;
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return env->execution_async_id();
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}
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async_id AsyncHooksGetTriggerAsyncId(Isolate* isolate) {
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Environment* env = Environment::GetCurrent(isolate);
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if (env == nullptr) return -1;
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return env->trigger_async_id();
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}
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async_context EmitAsyncInit(Isolate* isolate,
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Local<Object> resource,
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const char* name,
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async_id trigger_async_id) {
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HandleScope handle_scope(isolate);
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Local<String> type =
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String::NewFromUtf8(isolate, name, NewStringType::kInternalized)
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.ToLocalChecked();
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return EmitAsyncInit(isolate, resource, type, trigger_async_id);
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}
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async_context EmitAsyncInit(Isolate* isolate,
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Local<Object> resource,
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Local<String> name,
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async_id trigger_async_id) {
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DebugSealHandleScope handle_scope(isolate);
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Environment* env = Environment::GetCurrent(isolate);
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CHECK_NOT_NULL(env);
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// Initialize async context struct
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if (trigger_async_id == -1)
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trigger_async_id = env->get_default_trigger_async_id();
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async_context context = {
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env->new_async_id(), // async_id_
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trigger_async_id // trigger_async_id_
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};
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// Run init hooks
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AsyncWrap::EmitAsyncInit(env, resource, name, context.async_id,
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context.trigger_async_id);
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return context;
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}
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void EmitAsyncDestroy(Isolate* isolate, async_context asyncContext) {
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EmitAsyncDestroy(Environment::GetCurrent(isolate), asyncContext);
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}
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void EmitAsyncDestroy(Environment* env, async_context asyncContext) {
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AsyncWrap::EmitDestroy(env, asyncContext.async_id);
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}
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} // namespace node
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