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LibJS: Implement await properly for async functions
Fixes #20275 ``` Summary: Diff Tests: +4 ✅ -4 ❌ Diff Tests: test/built-ins/Array/fromAsync/non-iterable-input-with-thenable -async-mapped-awaits-callback-result-once.js ❌ -> ✅ test/language/expressions/await/async-await-interleaved.js ❌ -> ✅ test/language/expressions/await/await-awaits-thenables-that- throw.js ❌ -> ✅ test/language/expressions/await/await-awaits-thenables.js ❌ -> ✅ ```
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5003b1a421
commit
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5 changed files with 175 additions and 69 deletions
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@ -1582,12 +1582,39 @@ Bytecode::CodeGenerationErrorOr<void> CallExpression::generate_bytecode(Bytecode
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return {};
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}
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static void generate_await(Bytecode::Generator& generator, Bytecode::Register received_completion_register, Bytecode::Register received_completion_type_register, Bytecode::Register received_completion_value_register, Bytecode::IdentifierTableIndex type_identifier, Bytecode::IdentifierTableIndex value_identifier);
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// https://tc39.es/ecma262/#sec-return-statement-runtime-semantics-evaluation
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Bytecode::CodeGenerationErrorOr<void> ReturnStatement::generate_bytecode(Bytecode::Generator& generator) const
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{
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if (m_argument)
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if (m_argument) {
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// ReturnStatement : return Expression ;
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// 1. Let exprRef be ? Evaluation of Expression.
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// 2. Let exprValue be ? GetValue(exprRef).
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TRY(m_argument->generate_bytecode(generator));
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else
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// 3. If GetGeneratorKind() is async, set exprValue to ? Await(exprValue).
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// Spec Issue?: The spec doesn't seem to do implicit await on explicit return for async functions, but does for
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// async generators. However, the major engines do so, and this is observable via constructor lookups
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// on Promise objects and custom thenables.
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// See: https://tc39.es/ecma262/#sec-asyncblockstart
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// c. Assert: If we return here, the async function either threw an exception or performed an implicit or explicit return; all awaiting is done.
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if (generator.is_in_async_function()) {
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auto received_completion_register = generator.allocate_register();
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auto received_completion_type_register = generator.allocate_register();
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auto received_completion_value_register = generator.allocate_register();
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auto type_identifier = generator.intern_identifier("type");
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auto value_identifier = generator.intern_identifier("value");
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generate_await(generator, received_completion_register, received_completion_type_register, received_completion_value_register, type_identifier, value_identifier);
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}
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// 4. Return Completion Record { [[Type]]: return, [[Value]]: exprValue, [[Target]]: empty }.
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} else {
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// ReturnStatement : return ;
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// 1. Return Completion Record { [[Type]]: return, [[Value]]: undefined, [[Target]]: empty }.
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generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
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}
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if (generator.is_in_generator_or_async_function()) {
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generator.perform_needed_unwinds<Bytecode::Op::Yield>();
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@ -1613,8 +1640,6 @@ static void get_received_completion_type_and_value(Bytecode::Generator& generato
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generator.emit<Bytecode::Op::Store>(received_completion_value_register);
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}
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static void generate_await(Bytecode::Generator& generator, Bytecode::Register received_completion_register, Bytecode::Register received_completion_type_register, Bytecode::Register received_completion_value_register, Bytecode::IdentifierTableIndex type_identifier, Bytecode::IdentifierTableIndex value_identifier);
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enum class AwaitBeforeYield {
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No,
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Yes,
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@ -9,6 +9,7 @@
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/NativeFunction.h>
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#include <LibJS/Runtime/PromiseCapability.h>
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#include <LibJS/Runtime/PromiseConstructor.h>
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#include <LibJS/Runtime/VM.h>
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namespace JS {
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@ -21,7 +22,7 @@ ThrowCompletionOr<Value> AsyncFunctionDriverWrapper::create(Realm& realm, Genera
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auto wrapper = MUST_OR_THROW_OOM(realm.heap().allocate<AsyncFunctionDriverWrapper>(realm, realm, *generator_object, *top_level_promise));
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// Prime the generator:
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// This runs until the first `await value;`
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wrapper->continue_async_execution(realm.vm(), js_undefined(), true);
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wrapper->continue_async_execution(realm.vm(), js_undefined(), true, IsInitialExecution::Yes);
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return top_level_promise;
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}
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@ -29,39 +30,102 @@ ThrowCompletionOr<Value> AsyncFunctionDriverWrapper::create(Realm& realm, Genera
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AsyncFunctionDriverWrapper::AsyncFunctionDriverWrapper(Realm& realm, NonnullGCPtr<GeneratorObject> generator_object, NonnullGCPtr<Promise> top_level_promise)
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: Promise(realm.intrinsics().promise_prototype())
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, m_generator_object(generator_object)
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, m_on_fulfillment(*NativeFunction::create(realm, "async.on_fulfillment"sv, [this](VM& vm) -> ThrowCompletionOr<Value> {
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auto arg = vm.argument(0);
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if (m_expect_promise) {
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continue_async_execution(vm, arg, true);
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m_expect_promise = false;
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return js_undefined();
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}
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return arg;
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}))
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, m_on_rejection(*NativeFunction::create(realm, "async.on_rejection"sv, [this](VM& vm) -> ThrowCompletionOr<Value> {
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auto arg = vm.argument(0);
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if (m_expect_promise) {
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continue_async_execution(vm, arg, false);
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m_expect_promise = false;
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return js_undefined();
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}
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return throw_completion(arg);
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}))
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, m_top_level_promise(top_level_promise)
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, m_self_handle(make_handle(*this))
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{
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}
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void AsyncFunctionDriverWrapper::continue_async_execution(VM& vm, Value value, bool is_successful)
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// 27.7.5.3 Await ( value ), https://tc39.es/ecma262/#await
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ThrowCompletionOr<void> AsyncFunctionDriverWrapper::await(JS::Value value)
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{
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auto& vm = this->vm();
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auto& realm = *vm.current_realm();
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// 1. Let asyncContext be the running execution context.
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m_suspended_execution_context = vm.running_execution_context().copy();
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// 2. Let promise be ? PromiseResolve(%Promise%, value).
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auto* promise_object = TRY(promise_resolve(vm, realm.intrinsics().promise_constructor(), value));
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// 3. Let fulfilledClosure be a new Abstract Closure with parameters (v) that captures asyncContext and performs the
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// following steps when called:
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auto fulfilled_closure = [this](VM& vm) -> ThrowCompletionOr<Value> {
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auto value = vm.argument(0);
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// a. Let prevContext be the running execution context.
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auto& prev_context = vm.running_execution_context();
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// FIXME: b. Suspend prevContext.
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// c. Push asyncContext onto the execution context stack; asyncContext is now the running execution context.
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TRY(vm.push_execution_context(m_suspended_execution_context.value(), {}));
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// d. Resume the suspended evaluation of asyncContext using NormalCompletion(v) as the result of the operation that
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// suspended it.
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continue_async_execution(vm, value, true);
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// e. Assert: When we reach this step, asyncContext has already been removed from the execution context stack and
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// prevContext is the currently running execution context.
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VERIFY(&vm.running_execution_context() == &prev_context);
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// f. Return undefined.
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return js_undefined();
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};
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// 4. Let onFulfilled be CreateBuiltinFunction(fulfilledClosure, 1, "", « »).
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auto on_fulfilled = NativeFunction::create(realm, move(fulfilled_closure), 1, "");
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// 5. Let rejectedClosure be a new Abstract Closure with parameters (reason) that captures asyncContext and performs the
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// following steps when called:
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auto rejected_closure = [this](VM& vm) -> ThrowCompletionOr<Value> {
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auto reason = vm.argument(0);
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// a. Let prevContext be the running execution context.
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auto& prev_context = vm.running_execution_context();
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// FIXME: b. Suspend prevContext.
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// c. Push asyncContext onto the execution context stack; asyncContext is now the running execution context.
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TRY(vm.push_execution_context(m_suspended_execution_context.value(), {}));
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// d. Resume the suspended evaluation of asyncContext using ThrowCompletion(reason) as the result of the operation that
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// suspended it.
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continue_async_execution(vm, reason, false);
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// e. Assert: When we reach this step, asyncContext has already been removed from the execution context stack and
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// prevContext is the currently running execution context.
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VERIFY(&vm.running_execution_context() == &prev_context);
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// f. Return undefined.
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return js_undefined();
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};
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// 6. Let onRejected be CreateBuiltinFunction(rejectedClosure, 1, "", « »).
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auto on_rejected = NativeFunction::create(realm, move(rejected_closure), 1, "");
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// 7. Perform PerformPromiseThen(promise, onFulfilled, onRejected).
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m_current_promise = verify_cast<Promise>(promise_object);
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m_current_promise->perform_then(on_fulfilled, on_rejected, {});
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// 8. Remove asyncContext from the execution context stack and restore the execution context that is at the top of the
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// execution context stack as the running execution context.
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// NOTE: This is done later on for us in continue_async_execution.
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// NOTE: None of these are necessary. 10-12 are handled by step d of the above lambdas.
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// 9. Let callerContext be the running execution context.
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// 10. Resume callerContext passing empty. If asyncContext is ever resumed again, let completion be the Completion Record with which it is resumed.
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// 11. Assert: If control reaches here, then asyncContext is the running execution context again.
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// 12. Return completion.
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return {};
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}
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void AsyncFunctionDriverWrapper::continue_async_execution(VM& vm, Value value, bool is_successful, IsInitialExecution is_initial_execution)
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{
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auto generator_result = is_successful
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? m_generator_object->resume(vm, value, {})
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: m_generator_object->resume_abrupt(vm, throw_completion(value), {});
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auto result = [&, this]() -> ThrowCompletionOr<void> {
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// This loop is for the trivial case of awaiting a non-Promise value,
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// and pseudo promises, that are actually resolved in a synchronous manner
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// It's either this, a goto, or a needles indirection
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while (true) {
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if (generator_result.is_throw_completion())
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return generator_result.throw_completion();
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@ -95,39 +159,12 @@ void AsyncFunctionDriverWrapper::continue_async_execution(VM& vm, Value value, b
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return {};
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}
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if (!promise_value.is_object() || !is<Promise>(promise_value.as_object())) {
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// We hit the trivial case of `await value`, where value is not a
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// Promise, so we can just continue the execution
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generator_result = m_generator_object->resume(vm, promise_value, {});
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continue;
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}
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// We hit `await Promise`
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m_current_promise = static_cast<Promise*>(&promise_value.as_object());
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// FIXME: We need to be a bit explicit here,
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// because for non async promises we arrive late to register us as handlers,
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// so we need to just pretend we are early and do the main logic ourselves,
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// Boon: This allows us to short-circuit to immediately continuing the execution
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// FIXME: This then causes a warning to be printed to the console, that we supposedly did not handle the promise
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if (m_current_promise->state() == Promise::State::Fulfilled) {
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generator_result = m_generator_object->resume(vm, m_current_promise->result(), {});
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auto await_result = this->await(promise_value);
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if (await_result.is_throw_completion()) {
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generator_result = m_generator_object->resume_abrupt(vm, await_result.release_error(), {});
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continue;
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}
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if (m_current_promise->state() == Promise::State::Rejected) {
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generator_result = m_generator_object->resume_abrupt(vm, throw_completion(m_current_promise->result()), {});
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continue;
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}
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// Due to the nature of promise capabilities we might get called on either one path,
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// so we use a flag to make sure only accept one call
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// FIXME: There might be a cleaner way to accomplish this
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m_expect_promise = true;
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auto promise_capability = PromiseCapability::create(vm, *m_current_promise,
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m_on_fulfillment,
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m_on_rejection);
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m_current_promise->perform_then(
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m_on_fulfillment,
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m_on_rejection,
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promise_capability);
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return {};
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}
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}();
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// We should not execute anymore, so we are safe to allow our selfs to be GC'd
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m_self_handle = {};
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}
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// For the initial execution, the execution context will be popped for us later on by ECMAScriptFunctionObject.
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if (is_initial_execution == IsInitialExecution::No)
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vm.pop_execution_context();
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}
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void AsyncFunctionDriverWrapper::visit_edges(Cell::Visitor& visitor)
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{
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Base::visit_edges(visitor);
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visitor.visit(m_generator_object);
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visitor.visit(m_on_fulfillment);
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visitor.visit(m_on_rejection);
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visitor.visit(m_top_level_promise);
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if (m_current_promise)
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visitor.visit(m_current_promise);
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if (m_suspended_execution_context.has_value())
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m_suspended_execution_context->visit_edges(visitor);
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}
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}
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@ -18,23 +18,27 @@ class AsyncFunctionDriverWrapper final : public Promise {
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JS_OBJECT(AsyncFunctionDriverWrapper, Promise);
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public:
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enum class IsInitialExecution {
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No,
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Yes,
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};
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static ThrowCompletionOr<Value> create(Realm&, GeneratorObject*);
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virtual ~AsyncFunctionDriverWrapper() override = default;
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void visit_edges(Cell::Visitor&) override;
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void continue_async_execution(VM&, Value, bool is_successful);
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void continue_async_execution(VM&, Value, bool is_successful, IsInitialExecution is_initial_execution = IsInitialExecution::No);
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private:
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AsyncFunctionDriverWrapper(Realm&, NonnullGCPtr<GeneratorObject>, NonnullGCPtr<Promise> top_level_promise);
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ThrowCompletionOr<void> await(Value);
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bool m_expect_promise { false };
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NonnullGCPtr<GeneratorObject> m_generator_object;
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NonnullGCPtr<NativeFunction> m_on_fulfillment;
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NonnullGCPtr<NativeFunction> m_on_rejection;
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NonnullGCPtr<Promise> m_top_level_promise;
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GCPtr<Promise> m_current_promise { nullptr };
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Handle<AsyncFunctionDriverWrapper> m_self_handle;
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Optional<ExecutionContext> m_suspended_execution_context;
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};
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}
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@ -7,7 +7,7 @@ describe("correct behaviour", () => {
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yield b + 1;
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yield Promise.resolve(b + 2);
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yield* [Promise.resolve(b + 3), Promise.resolve(b + 4), Promise.resolve(b + 5)];
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return b + 6;
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return Promise.resolve(b + 6);
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}
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test("length is 1", () => {
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expect(seventhRunResult).toBe(9);
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});
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test("can return a value", () => {
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test("can return a value and return implicitly awaits", () => {
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const eighthRunResult = runGenerator("bad7", false);
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expect(eighthRunResult.value).toBe(10);
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expect(eighthRunResult.done).toBeTrue();
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@ -202,7 +202,7 @@ describe("await cannot be used in class static init blocks", () => {
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});
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describe("await thenables", () => {
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test.xfail("async returning a thanable variable without fulfilling", () => {
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test("async returning a thanable variable without fulfilling", () => {
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let isCalled = false;
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const obj = {
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then() {
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@ -216,7 +216,7 @@ describe("await thenables", () => {
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expect(isCalled).toBe(true);
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});
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test.xfail("async returning a thanable variable that fulfills", () => {
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test("async returning a thanable variable that fulfills", () => {
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let isCalled = false;
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const obj = {
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then(fulfill) {
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@ -231,7 +231,7 @@ describe("await thenables", () => {
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expect(isCalled).toBe(true);
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});
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test.xfail("async returning a thenable directly without fulfilling", () => {
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test("async returning a thenable directly without fulfilling", () => {
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let isCalled = false;
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const f = async () => ({
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then() {
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@ -243,7 +243,7 @@ describe("await thenables", () => {
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expect(isCalled).toBe(true);
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});
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test.xfail("async returning a thenable directly that fulfills", () => {
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test("async returning a thenable directly that fulfills", () => {
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let isCalled = false;
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const f = async () => ({
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then(fulfill) {
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@ -256,3 +256,39 @@ describe("await thenables", () => {
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expect(isCalled).toBe(true);
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});
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});
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describe("await observably looks up constructor of Promise objects", () => {
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let calls = 0;
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function makeConstructorObservable(promise) {
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Object.defineProperty(promise, "constructor", {
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get() {
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calls++;
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return Promise;
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},
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});
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return promise;
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}
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async function test() {
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await makeConstructorObservable(Promise.resolve(1));
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await makeConstructorObservable(
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new Promise(resolve => {
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resolve();
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})
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);
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await makeConstructorObservable(new Boolean(true));
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await makeConstructorObservable({});
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await makeConstructorObservable(new Number(2));
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try {
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await makeConstructorObservable(Promise.reject(3));
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} catch {}
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try {
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return makeConstructorObservable(Promise.reject(1));
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} catch {
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return 2;
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}
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}
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test();
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runQueuedPromiseJobs();
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expect(calls).toBe(4);
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});
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