
* Benchmark lifecycle features Signed-off-by: Stephen Brawner <brawner@gmail.com> * Cleanup Signed-off-by: Stephen Brawner <brawner@gmail.com>
307 lines
11 KiB
C++
307 lines
11 KiB
C++
// Copyright 2020 Open Source Robotics Foundation, Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include <benchmark/benchmark.h>
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#include <memory>
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#include <string>
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#include <vector>
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#include "lifecycle_msgs/msg/state.hpp"
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#include "lifecycle_msgs/srv/change_state.hpp"
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#include "lifecycle_msgs/srv/get_available_states.hpp"
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#include "lifecycle_msgs/srv/get_available_transitions.hpp"
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#include "lifecycle_msgs/srv/get_state.hpp"
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#include "performance_test_fixture/performance_test_fixture.hpp"
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#include "rclcpp/rclcpp.hpp"
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#include "rclcpp_lifecycle/lifecycle_node.hpp"
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/**
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* Benchmarks for measuring performance of a lifecycle_node client.
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*
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* A service client of a lifecycle node is not a class that's explicitly part of ros2 core,
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* but it is the expected interface for interacting with a lifecycle node, so for that reason
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* this benchmark exists.
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*/
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using namespace std::chrono_literals;
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constexpr char const * lifecycle_node_name = "lc_talker";
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constexpr char const * node_get_state_topic = "/lc_talker/get_state";
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constexpr char const * node_change_state_topic = "/lc_talker/change_state";
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constexpr char const * node_get_available_states_topic = "/lc_talker/get_available_states";
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constexpr char const * node_get_available_transitions_topic =
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"/lc_talker/get_available_transitions";
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constexpr char const * node_get_transition_graph_topic =
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"/lc_talker/get_transition_graph";
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const lifecycle_msgs::msg::State unknown_state = lifecycle_msgs::msg::State();
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class LifecycleServiceClient : public rclcpp::Node
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{
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public:
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explicit LifecycleServiceClient(std::string node_name)
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: Node(node_name)
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{
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client_get_available_states_ = this->create_client<lifecycle_msgs::srv::GetAvailableStates>(
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node_get_available_states_topic);
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client_get_available_transitions_ =
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this->create_client<lifecycle_msgs::srv::GetAvailableTransitions>(
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node_get_available_transitions_topic);
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client_get_transition_graph_ =
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this->create_client<lifecycle_msgs::srv::GetAvailableTransitions>(
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node_get_transition_graph_topic);
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client_get_state_ = this->create_client<lifecycle_msgs::srv::GetState>(
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node_get_state_topic);
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client_change_state_ = this->create_client<lifecycle_msgs::srv::ChangeState>(
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node_change_state_topic);
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}
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lifecycle_msgs::msg::State
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get_state(std::chrono::seconds time_out = 1s)
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{
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auto request = std::make_shared<lifecycle_msgs::srv::GetState::Request>();
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if (!client_get_state_->wait_for_service(time_out)) {
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throw std::runtime_error("Wait for service timed out");
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}
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auto future_result = client_get_state_->async_send_request(request);
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auto future_status = future_result.wait_for(time_out);
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if (future_status != std::future_status::ready) {
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throw std::runtime_error("Get state request failed");
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}
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if (!future_result.valid()) {
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throw std::runtime_error("Future result was not valid");
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}
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return future_result.get()->current_state;
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}
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bool
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change_state(std::uint8_t transition, std::chrono::seconds time_out = 1s)
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{
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auto request = std::make_shared<lifecycle_msgs::srv::ChangeState::Request>();
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request->transition.id = transition;
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if (!client_change_state_->wait_for_service(time_out)) {
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throw std::runtime_error("Wait for service timed out");
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}
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auto future_result = client_change_state_->async_send_request(request);
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auto future_status = future_result.wait_for(time_out);
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if (future_status != std::future_status::ready) {
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throw std::runtime_error("Change state request failed");
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}
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if (!future_result.valid()) {
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throw std::runtime_error("Future result was not valid");
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}
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return future_result.get()->success;
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}
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std::vector<lifecycle_msgs::msg::State>
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get_available_states(std::chrono::seconds time_out = 1s)
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{
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auto request = std::make_shared<lifecycle_msgs::srv::GetAvailableStates::Request>();
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if (!client_get_available_states_->wait_for_service(time_out)) {
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throw std::runtime_error("Wait for service timed out");
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}
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auto future_result = client_get_available_states_->async_send_request(request);
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auto future_status = future_result.wait_for(time_out);
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if (future_status != std::future_status::ready) {
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throw std::runtime_error("Get available states request failed");
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}
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if (!future_result.valid()) {
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throw std::runtime_error("Future result was not valid");
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}
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return future_result.get()->available_states;
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}
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std::vector<lifecycle_msgs::msg::TransitionDescription>
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get_available_transitions(std::chrono::seconds time_out = 1s)
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{
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auto request = std::make_shared<lifecycle_msgs::srv::GetAvailableTransitions::Request>();
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if (!client_get_available_transitions_->wait_for_service(time_out)) {
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throw std::runtime_error("Wait for service timed out");
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}
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auto future_result = client_get_available_transitions_->async_send_request(request);
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auto future_status = future_result.wait_for(time_out);
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if (future_status != std::future_status::ready) {
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throw std::runtime_error("Get available transitions request failed");
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}
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if (!future_result.valid()) {
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throw std::runtime_error("Future result was not valid");
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}
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return future_result.get()->available_transitions;
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}
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std::vector<lifecycle_msgs::msg::TransitionDescription>
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get_transition_graph(std::chrono::seconds time_out = 1s)
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{
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auto request = std::make_shared<lifecycle_msgs::srv::GetAvailableTransitions::Request>();
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if (!client_get_transition_graph_->wait_for_service(time_out)) {
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throw std::runtime_error("Wait for service timed out");
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}
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auto future_result = client_get_transition_graph_->async_send_request(request);
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auto future_status = future_result.wait_for(time_out);
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if (future_status != std::future_status::ready) {
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throw std::runtime_error("Get transition graph request failed");
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}
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if (!future_result.valid()) {
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throw std::runtime_error("Future result was not valid");
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}
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return future_result.get()->available_transitions;
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}
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private:
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std::shared_ptr<rclcpp::Client<lifecycle_msgs::srv::GetAvailableStates>>
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client_get_available_states_;
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std::shared_ptr<rclcpp::Client<lifecycle_msgs::srv::GetAvailableTransitions>>
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client_get_available_transitions_;
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std::shared_ptr<rclcpp::Client<lifecycle_msgs::srv::GetAvailableTransitions>>
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client_get_transition_graph_;
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std::shared_ptr<rclcpp::Client<lifecycle_msgs::srv::GetState>> client_get_state_;
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std::shared_ptr<rclcpp::Client<lifecycle_msgs::srv::ChangeState>> client_change_state_;
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};
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class BenchmarkLifecycleClient : public performance_test_fixture::PerformanceTest
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{
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public:
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void SetUp(benchmark::State & state)
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{
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rclcpp::init(0, nullptr);
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lifecycle_node = std::make_shared<rclcpp_lifecycle::LifecycleNode>(lifecycle_node_name);
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lifecycle_client = std::make_shared<LifecycleServiceClient>("lifecycle_client");
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executor = std::make_shared<rclcpp::executors::SingleThreadedExecutor>();
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executor->add_node(lifecycle_node->get_node_base_interface());
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executor->add_node(lifecycle_client->get_node_base_interface());
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spinner_ = std::thread(&rclcpp::executors::SingleThreadedExecutor::spin, executor);
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performance_test_fixture::PerformanceTest::SetUp(state);
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}
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void TearDown(benchmark::State & state)
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{
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performance_test_fixture::PerformanceTest::TearDown(state);
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executor->cancel();
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spinner_.join();
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lifecycle_node.reset();
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lifecycle_client.reset();
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rclcpp::shutdown();
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}
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protected:
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std::shared_ptr<rclcpp_lifecycle::LifecycleNode> lifecycle_node;
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std::shared_ptr<LifecycleServiceClient> lifecycle_client;
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std::shared_ptr<rclcpp::executors::SingleThreadedExecutor> executor;
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std::thread spinner_;
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};
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BENCHMARK_F(BenchmarkLifecycleClient, get_state)(benchmark::State & state) {
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for (auto _ : state) {
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const auto lifecycle_state = lifecycle_client->get_state();
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if (lifecycle_state.id != lifecycle_msgs::msg::State::PRIMARY_STATE_UNCONFIGURED) {
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const std::string msg =
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std::string("Expected state did not match actual: ") +
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std::to_string(lifecycle_state.id);
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state.SkipWithError(msg.c_str());
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}
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benchmark::DoNotOptimize(lifecycle_state);
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benchmark::ClobberMemory();
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}
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}
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BENCHMARK_F(BenchmarkLifecycleClient, change_state)(benchmark::State & state) {
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bool success =
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lifecycle_client->change_state(lifecycle_msgs::msg::Transition::TRANSITION_CONFIGURE);
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if (!success) {
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state.SkipWithError("Transition to configured state failed");
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}
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reset_heap_counters();
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for (auto _ : state) {
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success =
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lifecycle_client->change_state(lifecycle_msgs::msg::Transition::TRANSITION_ACTIVATE);
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if (!success) {
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state.SkipWithError("Transition to active state failed");
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}
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success =
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lifecycle_client->change_state(lifecycle_msgs::msg::Transition::TRANSITION_DEACTIVATE);
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if (!success) {
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state.SkipWithError("Transition to inactive state failed");
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}
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}
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}
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BENCHMARK_F(BenchmarkLifecycleClient, get_available_states)(benchmark::State & state) {
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for (auto _ : state) {
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constexpr size_t expected_states = 11u;
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const auto states = lifecycle_client->get_available_states();
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if (states.size() != expected_states) {
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const std::string msg =
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std::string("Expected number of states did not match actual: ") +
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std::to_string(states.size());
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state.SkipWithError(msg.c_str());
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}
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benchmark::DoNotOptimize(states);
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benchmark::ClobberMemory();
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}
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}
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BENCHMARK_F(BenchmarkLifecycleClient, get_available_transitions)(benchmark::State & state) {
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for (auto _ : state) {
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constexpr size_t expected_transitions = 2u;
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const auto transitions = lifecycle_client->get_available_transitions();
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if (transitions.size() != expected_transitions) {
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const std::string msg =
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std::string("Expected number of transitions did not match actual: ") +
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std::to_string(transitions.size());
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state.SkipWithError(msg.c_str());
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}
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benchmark::DoNotOptimize(transitions);
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benchmark::ClobberMemory();
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}
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}
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BENCHMARK_F(BenchmarkLifecycleClient, get_transition_graph)(benchmark::State & state) {
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for (auto _ : state) {
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constexpr size_t expected_transitions = 25u;
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const auto transitions = lifecycle_client->get_transition_graph();
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if (transitions.size() != expected_transitions) {
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const std::string msg =
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std::string("Expected number of transitions did not match actual: ") +
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std::to_string(transitions.size());
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state.SkipWithError(msg.c_str());
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}
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benchmark::DoNotOptimize(transitions);
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benchmark::ClobberMemory();
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}
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}
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