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646 lines
21 KiB
646 lines
21 KiB
// Copyright (c) 2012 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 <stddef.h>
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#include <algorithm>
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#include <memory>
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#include <string>
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#include <vector>
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#include "base/bind.h"
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#include "base/bind_helpers.h"
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#include "base/macros.h"
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#include "base/message_loop/message_loop.h"
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#include "base/run_loop.h"
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#include "base/single_thread_task_runner.h"
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#include "base/stl_util.h"
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#include "base/test/test_timeouts.h"
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#include "base/threading/thread.h"
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#include "base/threading/thread_restrictions.h"
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#include "dbus/bus.h"
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#include "dbus/message.h"
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#include "dbus/object_path.h"
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#include "dbus/object_proxy.h"
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#include "dbus/test_service.h"
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#include "testing/gtest/include/gtest/gtest.h"
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namespace dbus {
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namespace {
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// See comments in ObjectProxy::RunResponseCallback() for why the number was
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// chosen.
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const int kHugePayloadSize = 64 << 20; // 64 MB
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} // namespace
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// The end-to-end test exercises the asynchronous APIs in ObjectProxy and
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// ExportedObject.
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class EndToEndAsyncTest : public testing::Test {
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public:
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void SetUp() override {
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// Make the main thread not to allow IO.
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base::ThreadRestrictions::SetIOAllowed(false);
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// Start the D-Bus thread.
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dbus_thread_.reset(new base::Thread("D-Bus Thread"));
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base::Thread::Options thread_options;
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thread_options.message_loop_type = base::MessageLoop::TYPE_IO;
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ASSERT_TRUE(dbus_thread_->StartWithOptions(thread_options));
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// Start the test service, using the D-Bus thread.
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TestService::Options options;
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options.dbus_task_runner = dbus_thread_->task_runner();
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test_service_.reset(new TestService(options));
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ASSERT_TRUE(test_service_->StartService());
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ASSERT_TRUE(test_service_->WaitUntilServiceIsStarted());
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ASSERT_TRUE(test_service_->HasDBusThread());
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// Create the client, using the D-Bus thread.
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Bus::Options bus_options;
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bus_options.bus_type = Bus::SESSION;
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bus_options.connection_type = Bus::PRIVATE;
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bus_options.dbus_task_runner = dbus_thread_->task_runner();
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bus_ = new Bus(bus_options);
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object_proxy_ = bus_->GetObjectProxy(
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test_service_->service_name(),
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ObjectPath("/org/chromium/TestObject"));
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ASSERT_TRUE(bus_->HasDBusThread());
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// Connect to the "Test" signal of "org.chromium.TestInterface" from
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// the remote object.
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object_proxy_->ConnectToSignal(
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"org.chromium.TestInterface",
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"Test",
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base::Bind(&EndToEndAsyncTest::OnTestSignal,
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base::Unretained(this)),
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base::Bind(&EndToEndAsyncTest::OnConnected,
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base::Unretained(this)));
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// Wait until the object proxy is connected to the signal.
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run_loop_.reset(new base::RunLoop());
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run_loop_->Run();
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// Connect to the "Test2" signal of "org.chromium.TestInterface" from
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// the remote object. There was a bug where we were emitting error
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// messages like "Requested to remove an unknown match rule: ..." at
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// the shutdown of Bus when an object proxy is connected to more than
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// one signal of the same interface. See crosbug.com/23382 for details.
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object_proxy_->ConnectToSignal(
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"org.chromium.TestInterface",
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"Test2",
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base::Bind(&EndToEndAsyncTest::OnTest2Signal,
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base::Unretained(this)),
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base::Bind(&EndToEndAsyncTest::OnConnected,
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base::Unretained(this)));
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// Wait until the object proxy is connected to the signal.
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run_loop_.reset(new base::RunLoop());
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run_loop_->Run();
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// Create a second object proxy for the root object.
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root_object_proxy_ = bus_->GetObjectProxy(test_service_->service_name(),
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ObjectPath("/"));
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ASSERT_TRUE(bus_->HasDBusThread());
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// Connect to the "Test" signal of "org.chromium.TestInterface" from
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// the root remote object too.
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root_object_proxy_->ConnectToSignal(
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"org.chromium.TestInterface",
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"Test",
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base::Bind(&EndToEndAsyncTest::OnRootTestSignal,
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base::Unretained(this)),
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base::Bind(&EndToEndAsyncTest::OnConnected,
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base::Unretained(this)));
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// Wait until the root object proxy is connected to the signal.
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run_loop_.reset(new base::RunLoop());
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run_loop_->Run();
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}
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void TearDown() override {
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bus_->ShutdownOnDBusThreadAndBlock();
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// Shut down the service.
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test_service_->ShutdownAndBlock();
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// Reset to the default.
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base::ThreadRestrictions::SetIOAllowed(true);
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// Stopping a thread is considered an IO operation, so do this after
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// allowing IO.
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test_service_->Stop();
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}
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protected:
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// Replaces the bus with a broken one.
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void SetUpBrokenBus() {
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// Shut down the existing bus.
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bus_->ShutdownOnDBusThreadAndBlock();
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// Create new bus with invalid address.
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const char kInvalidAddress[] = "";
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Bus::Options bus_options;
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bus_options.bus_type = Bus::CUSTOM_ADDRESS;
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bus_options.address = kInvalidAddress;
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bus_options.connection_type = Bus::PRIVATE;
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bus_options.dbus_task_runner = dbus_thread_->task_runner();
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bus_ = new Bus(bus_options);
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ASSERT_TRUE(bus_->HasDBusThread());
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// Create new object proxy.
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object_proxy_ = bus_->GetObjectProxy(
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test_service_->service_name(),
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ObjectPath("/org/chromium/TestObject"));
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}
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// Calls the method asynchronously. OnResponse() will be called once the
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// response is received.
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void CallMethod(MethodCall* method_call,
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int timeout_ms) {
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object_proxy_->CallMethod(method_call,
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timeout_ms,
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base::Bind(&EndToEndAsyncTest::OnResponse,
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base::Unretained(this)));
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}
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// Calls the method asynchronously. OnResponse() will be called once the
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// response is received without error, otherwise OnError() will be called.
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void CallMethodWithErrorCallback(MethodCall* method_call,
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int timeout_ms) {
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object_proxy_->CallMethodWithErrorCallback(
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method_call,
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timeout_ms,
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base::Bind(&EndToEndAsyncTest::OnResponse, base::Unretained(this)),
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base::Bind(&EndToEndAsyncTest::OnError, base::Unretained(this)));
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}
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// Wait for the give number of responses.
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void WaitForResponses(size_t num_responses) {
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while (response_strings_.size() < num_responses) {
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run_loop_.reset(new base::RunLoop);
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run_loop_->Run();
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}
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}
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// Called when the response is received.
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void OnResponse(Response* response) {
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// |response| will be deleted on exit of the function. Copy the
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// payload to |response_strings_|.
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if (response) {
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MessageReader reader(response);
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std::string response_string;
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ASSERT_TRUE(reader.PopString(&response_string));
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response_strings_.push_back(response_string);
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} else {
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response_strings_.push_back(std::string());
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}
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run_loop_->Quit();
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};
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// Wait for the given number of errors.
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void WaitForErrors(size_t num_errors) {
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while (error_names_.size() < num_errors) {
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run_loop_.reset(new base::RunLoop);
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run_loop_->Run();
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}
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}
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// Called when an error is received.
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void OnError(ErrorResponse* error) {
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// |error| will be deleted on exit of the function. Copy the payload to
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// |error_names_|.
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if (error) {
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ASSERT_NE("", error->GetErrorName());
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error_names_.push_back(error->GetErrorName());
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} else {
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error_names_.push_back(std::string());
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}
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run_loop_->Quit();
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}
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// Called when the "Test" signal is received, in the main thread.
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// Copy the string payload to |test_signal_string_|.
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void OnTestSignal(Signal* signal) {
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MessageReader reader(signal);
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ASSERT_TRUE(reader.PopString(&test_signal_string_));
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run_loop_->Quit();
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}
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// Called when the "Test" signal is received, in the main thread, by
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// the root object proxy. Copy the string payload to
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// |root_test_signal_string_|.
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void OnRootTestSignal(Signal* signal) {
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MessageReader reader(signal);
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ASSERT_TRUE(reader.PopString(&root_test_signal_string_));
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run_loop_->Quit();
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}
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// Called when the "Test2" signal is received, in the main thread.
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void OnTest2Signal(Signal* signal) {
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MessageReader reader(signal);
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run_loop_->Quit();
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}
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// Called when connected to the signal.
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void OnConnected(const std::string& interface_name,
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const std::string& signal_name,
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bool success) {
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ASSERT_TRUE(success);
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run_loop_->Quit();
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}
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// Wait for the hey signal to be received.
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void WaitForTestSignal() {
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// OnTestSignal() will quit the message loop.
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run_loop_.reset(new base::RunLoop);
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run_loop_->Run();
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}
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base::MessageLoop message_loop_;
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std::unique_ptr<base::RunLoop> run_loop_;
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std::vector<std::string> response_strings_;
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std::vector<std::string> error_names_;
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std::unique_ptr<base::Thread> dbus_thread_;
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scoped_refptr<Bus> bus_;
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ObjectProxy* object_proxy_;
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ObjectProxy* root_object_proxy_;
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std::unique_ptr<TestService> test_service_;
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// Text message from "Test" signal.
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std::string test_signal_string_;
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// Text message from "Test" signal delivered to root.
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std::string root_test_signal_string_;
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};
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TEST_F(EndToEndAsyncTest, Echo) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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// Check the response.
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WaitForResponses(1);
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EXPECT_EQ(kHello, response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, EchoWithErrorCallback) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethodWithErrorCallback(&method_call, timeout_ms);
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// Check the response.
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WaitForResponses(1);
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EXPECT_EQ(kHello, response_strings_[0]);
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EXPECT_TRUE(error_names_.empty());
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}
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// Call Echo method three times.
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TEST_F(EndToEndAsyncTest, EchoThreeTimes) {
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const char* kMessages[] = { "foo", "bar", "baz" };
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for (size_t i = 0; i < arraysize(kMessages); ++i) {
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kMessages[i]);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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}
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// Check the responses.
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WaitForResponses(3);
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// Sort as the order of the returned messages is not deterministic.
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std::sort(response_strings_.begin(), response_strings_.end());
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EXPECT_EQ("bar", response_strings_[0]);
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EXPECT_EQ("baz", response_strings_[1]);
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EXPECT_EQ("foo", response_strings_[2]);
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}
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TEST_F(EndToEndAsyncTest, Echo_HugePayload) {
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const std::string kHugePayload(kHugePayloadSize, 'o');
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// Create the method call with a huge payload.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHugePayload);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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// This caused a DCHECK failure before. Ensure that the issue is fixed.
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WaitForResponses(1);
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EXPECT_EQ(kHugePayload, response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, BrokenBus) {
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const char* kHello = "hello";
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// Set up a broken bus.
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SetUpBrokenBus();
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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WaitForResponses(1);
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// Should fail because of the broken bus.
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ASSERT_EQ("", response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, BrokenBusWithErrorCallback) {
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const char* kHello = "hello";
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// Set up a broken bus.
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SetUpBrokenBus();
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethodWithErrorCallback(&method_call, timeout_ms);
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WaitForErrors(1);
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// Should fail because of the broken bus.
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ASSERT_TRUE(response_strings_.empty());
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ASSERT_EQ("", error_names_[0]);
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}
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TEST_F(EndToEndAsyncTest, Timeout) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "SlowEcho");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method with timeout of 0ms.
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const int timeout_ms = 0;
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CallMethod(&method_call, timeout_ms);
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WaitForResponses(1);
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// Should fail because of timeout.
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ASSERT_EQ("", response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, TimeoutWithErrorCallback) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "SlowEcho");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method with timeout of 0ms.
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const int timeout_ms = 0;
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CallMethodWithErrorCallback(&method_call, timeout_ms);
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WaitForErrors(1);
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// Should fail because of timeout.
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ASSERT_TRUE(response_strings_.empty());
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ASSERT_EQ(DBUS_ERROR_NO_REPLY, error_names_[0]);
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}
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TEST_F(EndToEndAsyncTest, CancelPendingCalls) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "Echo");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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// Remove the object proxy before receiving the result.
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// This results in cancelling the pending method call.
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bus_->RemoveObjectProxy(test_service_->service_name(),
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ObjectPath("/org/chromium/TestObject"),
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base::DoNothing());
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// We shouldn't receive any responses. Wait for a while just to make sure.
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run_loop_.reset(new base::RunLoop);
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message_loop_.task_runner()->PostDelayedTask(
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FROM_HERE, run_loop_->QuitClosure(), TestTimeouts::tiny_timeout());
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run_loop_->Run();
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EXPECT_TRUE(response_strings_.empty());
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}
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// Tests calling a method that sends its reply asynchronously.
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TEST_F(EndToEndAsyncTest, AsyncEcho) {
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const char* kHello = "hello";
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// Create the method call.
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MethodCall method_call("org.chromium.TestInterface", "AsyncEcho");
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MessageWriter writer(&method_call);
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writer.AppendString(kHello);
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// Call the method.
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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// Check the response.
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WaitForResponses(1);
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EXPECT_EQ(kHello, response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, NonexistentMethod) {
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MethodCall method_call("org.chromium.TestInterface", "Nonexistent");
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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WaitForResponses(1);
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// Should fail because the method is nonexistent.
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ASSERT_EQ("", response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, NonexistentMethodWithErrorCallback) {
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MethodCall method_call("org.chromium.TestInterface", "Nonexistent");
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethodWithErrorCallback(&method_call, timeout_ms);
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WaitForErrors(1);
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// Should fail because the method is nonexistent.
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ASSERT_TRUE(response_strings_.empty());
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ASSERT_EQ(DBUS_ERROR_UNKNOWN_METHOD, error_names_[0]);
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}
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TEST_F(EndToEndAsyncTest, BrokenMethod) {
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MethodCall method_call("org.chromium.TestInterface", "BrokenMethod");
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethod(&method_call, timeout_ms);
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WaitForResponses(1);
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// Should fail because the method is broken.
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ASSERT_EQ("", response_strings_[0]);
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}
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TEST_F(EndToEndAsyncTest, BrokenMethodWithErrorCallback) {
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MethodCall method_call("org.chromium.TestInterface", "BrokenMethod");
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const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
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CallMethodWithErrorCallback(&method_call, timeout_ms);
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WaitForErrors(1);
|
|
|
|
// Should fail because the method is broken.
|
|
ASSERT_TRUE(response_strings_.empty());
|
|
ASSERT_EQ(DBUS_ERROR_FAILED, error_names_[0]);
|
|
}
|
|
|
|
TEST_F(EndToEndAsyncTest, InvalidServiceName) {
|
|
// Bus name cannot contain '/'.
|
|
const std::string invalid_service_name = ":1/2";
|
|
|
|
// Replace object proxy with new one.
|
|
object_proxy_ = bus_->GetObjectProxy(invalid_service_name,
|
|
ObjectPath("/org/chromium/TestObject"));
|
|
|
|
MethodCall method_call("org.chromium.TestInterface", "Echo");
|
|
|
|
const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
|
|
CallMethodWithErrorCallback(&method_call, timeout_ms);
|
|
WaitForErrors(1);
|
|
|
|
// Should fail because of the invalid bus name.
|
|
ASSERT_TRUE(response_strings_.empty());
|
|
ASSERT_EQ("", error_names_[0]);
|
|
}
|
|
|
|
TEST_F(EndToEndAsyncTest, EmptyResponseCallback) {
|
|
const char* kHello = "hello";
|
|
|
|
// Create the method call.
|
|
MethodCall method_call("org.chromium.TestInterface", "Echo");
|
|
MessageWriter writer(&method_call);
|
|
writer.AppendString(kHello);
|
|
|
|
// Call the method with an empty callback.
|
|
const int timeout_ms = ObjectProxy::TIMEOUT_USE_DEFAULT;
|
|
object_proxy_->CallMethod(&method_call, timeout_ms, base::DoNothing());
|
|
// Post a delayed task to quit the message loop.
|
|
run_loop_.reset(new base::RunLoop);
|
|
message_loop_.task_runner()->PostDelayedTask(
|
|
FROM_HERE, run_loop_->QuitClosure(), TestTimeouts::tiny_timeout());
|
|
run_loop_->Run();
|
|
// We cannot tell if the empty callback is called, but at least we can
|
|
// check if the test does not crash.
|
|
}
|
|
|
|
TEST_F(EndToEndAsyncTest, TestSignal) {
|
|
const char kMessage[] = "hello, world";
|
|
// Send the test signal from the exported object.
|
|
test_service_->SendTestSignal(kMessage);
|
|
// Receive the signal with the object proxy. The signal is handled in
|
|
// EndToEndAsyncTest::OnTestSignal() in the main thread.
|
|
WaitForTestSignal();
|
|
ASSERT_EQ(kMessage, test_signal_string_);
|
|
}
|
|
|
|
TEST_F(EndToEndAsyncTest, TestSignalFromRoot) {
|
|
const char kMessage[] = "hello, world";
|
|
// Object proxies are tied to a particular object path, if a signal
|
|
// arrives from a different object path like "/" the first object proxy
|
|
// |object_proxy_| should not handle it, and should leave it for the root
|
|
// object proxy |root_object_proxy_|.
|
|
test_service_->SendTestSignalFromRoot(kMessage);
|
|
WaitForTestSignal();
|
|
// Verify the signal was not received by the specific proxy.
|
|
ASSERT_TRUE(test_signal_string_.empty());
|
|
// Verify the string WAS received by the root proxy.
|
|
ASSERT_EQ(kMessage, root_test_signal_string_);
|
|
}
|
|
|
|
TEST_F(EndToEndAsyncTest, TestHugeSignal) {
|
|
const std::string kHugeMessage(kHugePayloadSize, 'o');
|
|
|
|
// Send the huge signal from the exported object.
|
|
test_service_->SendTestSignal(kHugeMessage);
|
|
// This caused a DCHECK failure before. Ensure that the issue is fixed.
|
|
WaitForTestSignal();
|
|
ASSERT_EQ(kHugeMessage, test_signal_string_);
|
|
}
|
|
|
|
class SignalMultipleHandlerTest : public EndToEndAsyncTest {
|
|
public:
|
|
SignalMultipleHandlerTest() = default;
|
|
|
|
void SetUp() override {
|
|
// Set up base class.
|
|
EndToEndAsyncTest::SetUp();
|
|
|
|
// Connect the root object proxy's signal handler to a new handler
|
|
// so that we can verify that a second call to ConnectSignal() delivers
|
|
// to both our new handler and the old.
|
|
object_proxy_->ConnectToSignal(
|
|
"org.chromium.TestInterface",
|
|
"Test",
|
|
base::Bind(&SignalMultipleHandlerTest::OnAdditionalTestSignal,
|
|
base::Unretained(this)),
|
|
base::Bind(&SignalMultipleHandlerTest::OnAdditionalConnected,
|
|
base::Unretained(this)));
|
|
// Wait until the object proxy is connected to the signal.
|
|
run_loop_.reset(new base::RunLoop);
|
|
run_loop_->Run();
|
|
}
|
|
|
|
protected:
|
|
// Called when the "Test" signal is received, in the main thread.
|
|
// Copy the string payload to |additional_test_signal_string_|.
|
|
void OnAdditionalTestSignal(Signal* signal) {
|
|
MessageReader reader(signal);
|
|
ASSERT_TRUE(reader.PopString(&additional_test_signal_string_));
|
|
run_loop_->Quit();
|
|
}
|
|
|
|
// Called when connected to the signal.
|
|
void OnAdditionalConnected(const std::string& interface_name,
|
|
const std::string& signal_name,
|
|
bool success) {
|
|
ASSERT_TRUE(success);
|
|
run_loop_->Quit();
|
|
}
|
|
|
|
// Text message from "Test" signal delivered to additional handler.
|
|
std::string additional_test_signal_string_;
|
|
};
|
|
|
|
TEST_F(SignalMultipleHandlerTest, TestMultipleHandlers) {
|
|
const char kMessage[] = "hello, world";
|
|
// Send the test signal from the exported object.
|
|
test_service_->SendTestSignal(kMessage);
|
|
// Receive the signal with the object proxy.
|
|
WaitForTestSignal();
|
|
// Verify the string WAS received by the original handler.
|
|
ASSERT_EQ(kMessage, test_signal_string_);
|
|
// Verify the signal WAS ALSO received by the additional handler.
|
|
ASSERT_EQ(kMessage, additional_test_signal_string_);
|
|
}
|
|
|
|
} // namespace dbus
|