
This is analogous to GenericPendingReceiver but for associated interfaces. It's needed for layering associated interfaces on GpuChannel, but will also be useful for cleaning up legacy Channel-associated interface support and for building whatever replaces that in the future of browser-renderer IPC. Bug: 1196476 Change-Id: I1380d1e47e3dc66c1364c82a938a7d30f4b4cf3d Reviewed-on: https://chromium-review.googlesource.com/c/chromium/src/+/2903727 Commit-Queue: Ken Rockot <rockot@google.com> Reviewed-by: Robert Sesek <rsesek@chromium.org> Cr-Commit-Position: refs/heads/master@{#889485}
216 lines
6.9 KiB
C++
216 lines
6.9 KiB
C++
// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "ipc/ipc_mojo_bootstrap.h"
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#include <cstdint>
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#include <memory>
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#include <utility>
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#include "base/run_loop.h"
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#include "base/test/task_environment.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "ipc/ipc.mojom.h"
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#include "ipc/ipc_test_base.h"
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#include "mojo/core/test/multiprocess_test_helper.h"
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#include "mojo/public/cpp/bindings/associated_receiver.h"
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namespace {
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constexpr int32_t kTestServerPid = 42;
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constexpr int32_t kTestClientPid = 4242;
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class Connection {
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public:
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explicit Connection(std::unique_ptr<IPC::MojoBootstrap> bootstrap,
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int32_t sender_id)
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: bootstrap_(std::move(bootstrap)) {
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mojo::PendingAssociatedRemote<IPC::mojom::Channel> sender;
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bootstrap_->Connect(&sender, &receiver_);
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sender_.Bind(std::move(sender));
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sender_->SetPeerPid(sender_id);
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// It's OK to start receiving right away even though `receiver_` isn't
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// bound, because all of these tests are single-threaded and it will be
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// bound before any incoming messages can be scheduled for processing.
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bootstrap_->StartReceiving();
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}
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void TakeReceiver(
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel>* receiver) {
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*receiver = std::move(receiver_);
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}
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mojo::AssociatedRemote<IPC::mojom::Channel>& GetSender() { return sender_; }
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private:
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mojo::AssociatedRemote<IPC::mojom::Channel> sender_;
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver_;
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std::unique_ptr<IPC::MojoBootstrap> bootstrap_;
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};
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class PeerPidReceiver : public IPC::mojom::Channel {
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public:
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enum class MessageExpectation {
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kNotExpected,
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kExpectedValid,
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kExpectedInvalid
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};
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PeerPidReceiver(
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver,
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base::OnceClosure on_peer_pid_set,
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MessageExpectation message_expectation = MessageExpectation::kNotExpected)
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: receiver_(this, std::move(receiver)),
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on_peer_pid_set_(std::move(on_peer_pid_set)),
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message_expectation_(message_expectation) {
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receiver_.set_disconnect_handler(disconnect_run_loop_.QuitClosure());
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}
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~PeerPidReceiver() override {
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bool expected_message =
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message_expectation_ != MessageExpectation::kNotExpected;
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EXPECT_EQ(expected_message, received_message_);
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}
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// mojom::Channel:
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void SetPeerPid(int32_t pid) override {
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peer_pid_ = pid;
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std::move(on_peer_pid_set_).Run();
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}
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void Receive(IPC::MessageView message_view) override {
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ASSERT_NE(MessageExpectation::kNotExpected, message_expectation_);
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received_message_ = true;
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IPC::Message message(
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reinterpret_cast<const char*>(message_view.bytes().data()),
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message_view.bytes().size());
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bool expected_valid =
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message_expectation_ == MessageExpectation::kExpectedValid;
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EXPECT_EQ(expected_valid, message.IsValid());
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}
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void GetAssociatedInterface(
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mojo::GenericPendingAssociatedReceiver receiver) override {}
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int32_t peer_pid() const { return peer_pid_; }
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void RunUntilDisconnect() { disconnect_run_loop_.Run(); }
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private:
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mojo::AssociatedReceiver<IPC::mojom::Channel> receiver_;
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base::OnceClosure on_peer_pid_set_;
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MessageExpectation message_expectation_;
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int32_t peer_pid_ = -1;
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bool received_message_ = false;
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base::RunLoop disconnect_run_loop_;
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DISALLOW_COPY_AND_ASSIGN(PeerPidReceiver);
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};
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class IPCMojoBootstrapTest : public testing::Test {
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protected:
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mojo::core::test::MultiprocessTestHelper helper_;
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};
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TEST_F(IPCMojoBootstrapTest, Connect) {
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base::test::SingleThreadTaskEnvironment task_environment;
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Connection connection(
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IPC::MojoBootstrap::Create(
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helper_.StartChild("IPCMojoBootstrapTestClient"),
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IPC::Channel::MODE_SERVER, base::ThreadTaskRunnerHandle::Get(),
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base::ThreadTaskRunnerHandle::Get(), nullptr),
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kTestServerPid);
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver;
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connection.TakeReceiver(&receiver);
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base::RunLoop run_loop;
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PeerPidReceiver impl(std::move(receiver), run_loop.QuitClosure());
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run_loop.Run();
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EXPECT_EQ(kTestClientPid, impl.peer_pid());
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impl.RunUntilDisconnect();
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EXPECT_TRUE(helper_.WaitForChildTestShutdown());
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}
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// A long running process that connects to us.
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MULTIPROCESS_TEST_MAIN_WITH_SETUP(
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IPCMojoBootstrapTestClientTestChildMain,
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::mojo::core::test::MultiprocessTestHelper::ChildSetup) {
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base::test::SingleThreadTaskEnvironment task_environment;
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Connection connection(
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IPC::MojoBootstrap::Create(
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std::move(mojo::core::test::MultiprocessTestHelper::primordial_pipe),
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IPC::Channel::MODE_CLIENT, base::ThreadTaskRunnerHandle::Get(),
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base::ThreadTaskRunnerHandle::Get(), nullptr),
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kTestClientPid);
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver;
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connection.TakeReceiver(&receiver);
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base::RunLoop run_loop;
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PeerPidReceiver impl(std::move(receiver), run_loop.QuitClosure());
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run_loop.Run();
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EXPECT_EQ(kTestServerPid, impl.peer_pid());
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return 0;
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}
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TEST_F(IPCMojoBootstrapTest, ReceiveEmptyMessage) {
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base::test::SingleThreadTaskEnvironment task_environment;
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Connection connection(
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IPC::MojoBootstrap::Create(
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helper_.StartChild("IPCMojoBootstrapTestEmptyMessage"),
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IPC::Channel::MODE_SERVER, base::ThreadTaskRunnerHandle::Get(),
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base::ThreadTaskRunnerHandle::Get(), nullptr),
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kTestServerPid);
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver;
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connection.TakeReceiver(&receiver);
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base::RunLoop run_loop;
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PeerPidReceiver impl(std::move(receiver), run_loop.QuitClosure(),
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PeerPidReceiver::MessageExpectation::kExpectedInvalid);
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run_loop.Run();
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// Wait for the Channel to be disconnected so we can reasonably assert that
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// the child's empty message must have been received before we pass the test.
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impl.RunUntilDisconnect();
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EXPECT_TRUE(helper_.WaitForChildTestShutdown());
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}
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// A long running process that connects to us.
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MULTIPROCESS_TEST_MAIN_WITH_SETUP(
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IPCMojoBootstrapTestEmptyMessageTestChildMain,
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::mojo::core::test::MultiprocessTestHelper::ChildSetup) {
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base::test::SingleThreadTaskEnvironment task_environment;
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Connection connection(
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IPC::MojoBootstrap::Create(
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std::move(mojo::core::test::MultiprocessTestHelper::primordial_pipe),
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IPC::Channel::MODE_CLIENT, base::ThreadTaskRunnerHandle::Get(),
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base::ThreadTaskRunnerHandle::Get(), nullptr),
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kTestClientPid);
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mojo::PendingAssociatedReceiver<IPC::mojom::Channel> receiver;
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connection.TakeReceiver(&receiver);
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auto& sender = connection.GetSender();
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uint8_t data = 0;
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sender->Receive(
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IPC::MessageView(base::make_span(&data, 0), absl::nullopt /* handles */));
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base::RunLoop run_loop;
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PeerPidReceiver impl(std::move(receiver), run_loop.QuitClosure());
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run_loop.Run();
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return 0;
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}
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} // namespace
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