155 lines
5 KiB
C++
155 lines
5 KiB
C++
// Copyright (c) 2019 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 "shell/browser/net/node_stream_loader.h"
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#include <utility>
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#include "mojo/public/cpp/system/string_data_source.h"
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#include "shell/common/gin_converters/callback_converter.h"
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#include "shell/common/node_includes.h"
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namespace electron {
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NodeStreamLoader::NodeStreamLoader(
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network::mojom::URLResponseHeadPtr head,
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network::mojom::URLLoaderRequest loader,
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mojo::PendingRemote<network::mojom::URLLoaderClient> client,
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v8::Isolate* isolate,
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v8::Local<v8::Object> emitter)
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: binding_(this, std::move(loader)),
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client_(std::move(client)),
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isolate_(isolate),
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emitter_(isolate, emitter),
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weak_factory_(this) {
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binding_.set_connection_error_handler(
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base::BindOnce(&NodeStreamLoader::NotifyComplete,
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weak_factory_.GetWeakPtr(), net::ERR_FAILED));
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Start(std::move(head));
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}
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NodeStreamLoader::~NodeStreamLoader() {
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v8::Locker locker(isolate_);
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v8::Isolate::Scope isolate_scope(isolate_);
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v8::HandleScope handle_scope(isolate_);
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// Unsubscribe all handlers.
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for (const auto& it : handlers_) {
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v8::Local<v8::Value> args[] = {gin::StringToV8(isolate_, it.first),
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it.second.Get(isolate_)};
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node::MakeCallback(isolate_, emitter_.Get(isolate_), "removeListener",
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node::arraysize(args), args, {0, 0});
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}
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}
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void NodeStreamLoader::Start(network::mojom::URLResponseHeadPtr head) {
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mojo::ScopedDataPipeProducerHandle producer;
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mojo::ScopedDataPipeConsumerHandle consumer;
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MojoResult rv = mojo::CreateDataPipe(nullptr, &producer, &consumer);
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if (rv != MOJO_RESULT_OK) {
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NotifyComplete(net::ERR_INSUFFICIENT_RESOURCES);
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return;
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}
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producer_ = std::make_unique<mojo::DataPipeProducer>(std::move(producer));
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client_->OnReceiveResponse(std::move(head));
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client_->OnStartLoadingResponseBody(std::move(consumer));
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auto weak = weak_factory_.GetWeakPtr();
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On("end",
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base::BindRepeating(&NodeStreamLoader::NotifyComplete, weak, net::OK));
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On("error", base::BindRepeating(&NodeStreamLoader::NotifyComplete, weak,
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net::ERR_FAILED));
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On("readable", base::BindRepeating(&NodeStreamLoader::NotifyReadable, weak));
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}
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void NodeStreamLoader::NotifyReadable() {
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if (!readable_)
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ReadMore();
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readable_ = true;
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}
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void NodeStreamLoader::NotifyComplete(int result) {
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// Wait until write finishes or fails.
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if (is_reading_ || is_writing_) {
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ended_ = true;
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result_ = result;
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return;
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}
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client_->OnComplete(network::URLLoaderCompletionStatus(result));
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delete this;
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}
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void NodeStreamLoader::ReadMore() {
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if (is_reading_) {
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// Calling read() can trigger the "readable" event again, making this
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// function re-entrant. If we're already reading, we don't want to start
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// a nested read, so short-circuit.
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return;
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}
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is_reading_ = true;
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auto weak = weak_factory_.GetWeakPtr();
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// buffer = emitter.read()
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v8::MaybeLocal<v8::Value> ret = node::MakeCallback(
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isolate_, emitter_.Get(isolate_), "read", 0, nullptr, {0, 0});
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DCHECK(weak) << "We shouldn't have been destroyed when calling read()";
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// If there is no buffer read, wait until |readable| is emitted again.
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v8::Local<v8::Value> buffer;
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if (!ret.ToLocal(&buffer) || !node::Buffer::HasInstance(buffer)) {
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readable_ = false;
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is_reading_ = false;
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if (ended_) {
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NotifyComplete(result_);
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}
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return;
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}
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// Hold the buffer until the write is done.
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buffer_.Reset(isolate_, buffer);
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// Write buffer to mojo pipe asyncronously.
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is_reading_ = false;
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is_writing_ = true;
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producer_->Write(std::make_unique<mojo::StringDataSource>(
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base::StringPiece(node::Buffer::Data(buffer),
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node::Buffer::Length(buffer)),
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mojo::StringDataSource::AsyncWritingMode::
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STRING_STAYS_VALID_UNTIL_COMPLETION),
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base::BindOnce(&NodeStreamLoader::DidWrite, weak));
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}
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void NodeStreamLoader::DidWrite(MojoResult result) {
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is_writing_ = false;
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// We were told to end streaming.
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if (ended_) {
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NotifyComplete(result_);
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return;
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}
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if (result == MOJO_RESULT_OK && readable_)
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ReadMore();
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else
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NotifyComplete(net::ERR_FAILED);
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}
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void NodeStreamLoader::On(const char* event, EventCallback callback) {
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v8::Locker locker(isolate_);
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v8::Isolate::Scope isolate_scope(isolate_);
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v8::HandleScope handle_scope(isolate_);
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// emitter.on(event, callback)
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v8::Local<v8::Value> args[] = {
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gin::StringToV8(isolate_, event),
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gin_helper::CallbackToV8Leaked(isolate_, std::move(callback)),
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};
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handlers_[event].Reset(isolate_, args[1]);
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node::MakeCallback(isolate_, emitter_.Get(isolate_), "on",
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node::arraysize(args), args, {0, 0});
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// No more code bellow, as this class may destruct when subscribing.
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}
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} // namespace electron
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