
* Increase test coverage of rclcpp_lifecycle to 96% Signed-off-by: Stephen Brawner <brawner@gmail.com> * PR Fixup Signed-off-by: Stephen Brawner <brawner@gmail.com> * test_depend Signed-off-by: Stephen Brawner <brawner@gmail.com> * rcutils test_depend Signed-off-by: Stephen Brawner <brawner@gmail.com> * More windows warnings Signed-off-by: Stephen Brawner <brawner@gmail.com>
686 lines
26 KiB
C++
686 lines
26 KiB
C++
// Copyright 2015 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 <gtest/gtest.h>
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#include <map>
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#include <memory>
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#include <set>
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#include <string>
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#include <vector>
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#include <utility>
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#include "lifecycle_msgs/msg/state.hpp"
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#include "lifecycle_msgs/msg/transition.hpp"
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#include "rcl_lifecycle/rcl_lifecycle.h"
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#include "rclcpp/rclcpp.hpp"
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#include "rclcpp_lifecycle/lifecycle_node.hpp"
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#include "./mocking_utils/patch.hpp"
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using lifecycle_msgs::msg::State;
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using lifecycle_msgs::msg::Transition;
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class TestDefaultStateMachine : public ::testing::Test
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{
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protected:
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static void SetUpTestCase()
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{
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rclcpp::init(0, nullptr);
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}
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static void TearDownTestCase()
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{
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rclcpp::shutdown();
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}
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};
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class EmptyLifecycleNode : public rclcpp_lifecycle::LifecycleNode
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{
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public:
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explicit EmptyLifecycleNode(const std::string & node_name)
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: rclcpp_lifecycle::LifecycleNode(node_name)
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{}
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};
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struct GoodMood
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{
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using CallbackReturnT =
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn;
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static constexpr CallbackReturnT cb_ret = static_cast<CallbackReturnT>(
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lifecycle_msgs::msg::Transition::TRANSITION_CALLBACK_SUCCESS);
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};
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struct BadMood
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{
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using CallbackReturnT =
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn;
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static constexpr CallbackReturnT cb_ret = static_cast<CallbackReturnT>(
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lifecycle_msgs::msg::Transition::TRANSITION_CALLBACK_FAILURE);
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};
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template<class Mood = GoodMood>
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class MoodyLifecycleNode : public rclcpp_lifecycle::LifecycleNode
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{
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public:
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explicit MoodyLifecycleNode(std::string node_name)
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: rclcpp_lifecycle::LifecycleNode(std::move(node_name))
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{}
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size_t number_of_callbacks = 0;
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protected:
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_configure(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_CONFIGURING, get_current_state().id());
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++number_of_callbacks;
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return Mood::cb_ret;
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}
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_activate(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_ACTIVATING, get_current_state().id());
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++number_of_callbacks;
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return Mood::cb_ret;
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}
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_deactivate(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_DEACTIVATING, get_current_state().id());
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++number_of_callbacks;
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return Mood::cb_ret;
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}
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_cleanup(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_CLEANINGUP, get_current_state().id());
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++number_of_callbacks;
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return Mood::cb_ret;
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}
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_shutdown(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_SHUTTINGDOWN, get_current_state().id());
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++number_of_callbacks;
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return Mood::cb_ret;
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}
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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on_error(const rclcpp_lifecycle::State &);
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};
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template<>
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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MoodyLifecycleNode<GoodMood>::on_error(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_ERRORPROCESSING, get_current_state().id());
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ADD_FAILURE();
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return rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::SUCCESS;
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}
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template<>
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rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn
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MoodyLifecycleNode<BadMood>::on_error(const rclcpp_lifecycle::State &)
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{
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EXPECT_EQ(State::TRANSITION_STATE_ERRORPROCESSING, get_current_state().id());
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++number_of_callbacks;
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return rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::SUCCESS;
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}
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TEST_F(TestDefaultStateMachine, empty_initializer) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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EXPECT_STREQ("testnode", test_node->get_name());
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EXPECT_STREQ("/", test_node->get_namespace());
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EXPECT_EQ(State::PRIMARY_STATE_UNCONFIGURED, test_node->get_current_state().id());
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}
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TEST_F(TestDefaultStateMachine, empty_initializer_rcl_errors) {
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{
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auto patch = mocking_utils::patch_and_return(
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"lib:rclcpp_lifecycle", rcl_lifecycle_state_machine_init, RCL_RET_ERROR);
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EXPECT_THROW(
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std::make_shared<EmptyLifecycleNode>("testnode").reset(),
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std::runtime_error);
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}
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{
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto patch = mocking_utils::inject_on_return(
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"lib:rclcpp_lifecycle", rcl_lifecycle_state_machine_fini, RCL_RET_ERROR);
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EXPECT_NO_THROW(test_node.reset());
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}
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}
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TEST_F(TestDefaultStateMachine, trigger_transition) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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EXPECT_EQ(State::PRIMARY_STATE_UNCONFIGURED, test_node->get_current_state().id());
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ASSERT_EQ(
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State::PRIMARY_STATE_INACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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ASSERT_EQ(
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State::PRIMARY_STATE_ACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_ACTIVATE)).id());
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ASSERT_EQ(
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State::PRIMARY_STATE_INACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_DEACTIVATE)).id());
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ASSERT_EQ(
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State::PRIMARY_STATE_UNCONFIGURED, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CLEANUP)).id());
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ASSERT_EQ(
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State::PRIMARY_STATE_FINALIZED, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_UNCONFIGURED_SHUTDOWN)).id());
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}
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TEST_F(TestDefaultStateMachine, trigger_transition_rcl_errors) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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{
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auto mock = mocking_utils::patch_and_return(
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"lib:rclcpp_lifecycle", rcl_lifecycle_state_machine_is_initialized, RCL_RET_ERROR);
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EXPECT_EQ(
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State::PRIMARY_STATE_UNCONFIGURED,
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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}
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{
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auto mock = mocking_utils::patch_and_return(
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"lib:rclcpp_lifecycle", rcl_lifecycle_trigger_transition_by_id, RCL_RET_ERROR);
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EXPECT_EQ(
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State::PRIMARY_STATE_UNCONFIGURED,
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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}
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{
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auto mock = mocking_utils::patch_and_return(
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"lib:rclcpp_lifecycle", rcl_lifecycle_trigger_transition_by_label, RCL_RET_ERROR);
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EXPECT_EQ(
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State::TRANSITION_STATE_CONFIGURING,
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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}
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}
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TEST_F(TestDefaultStateMachine, trigger_transition_with_error_code) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto success = rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::SUCCESS;
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auto reset_key = rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::ERROR;
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auto ret = reset_key;
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EXPECT_EQ(State::PRIMARY_STATE_UNCONFIGURED, test_node->get_current_state().id());
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE), ret);
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ASSERT_EQ(success, ret);
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ret = reset_key;
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_ACTIVATE), ret);
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ASSERT_EQ(success, ret);
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ret = reset_key;
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_DEACTIVATE), ret);
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ASSERT_EQ(success, ret);
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ret = reset_key;
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CLEANUP), ret);
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ASSERT_EQ(success, ret);
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ret = reset_key;
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test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_UNCONFIGURED_SHUTDOWN), ret);
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ASSERT_EQ(success, ret);
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}
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TEST_F(TestDefaultStateMachine, call_transitions_with_error_code) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto success = rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::SUCCESS;
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auto reset_key = rclcpp_lifecycle::node_interfaces::LifecycleNodeInterface::CallbackReturn::ERROR;
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auto ret = reset_key;
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test_node->configure(ret);
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EXPECT_EQ(success, ret);
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ret = reset_key;
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test_node->activate(ret);
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EXPECT_EQ(success, ret);
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ret = reset_key;
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test_node->deactivate(ret);
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EXPECT_EQ(success, ret);
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ret = reset_key;
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test_node->cleanup(ret);
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EXPECT_EQ(success, ret);
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ret = reset_key;
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test_node->shutdown(ret);
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EXPECT_EQ(success, ret);
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}
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TEST_F(TestDefaultStateMachine, call_transitions_without_code) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto configured = test_node->configure();
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EXPECT_EQ(configured.id(), State::PRIMARY_STATE_INACTIVE);
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auto activated = test_node->activate();
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EXPECT_EQ(activated.id(), State::PRIMARY_STATE_ACTIVE);
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auto deactivated = test_node->deactivate();
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EXPECT_EQ(deactivated.id(), State::PRIMARY_STATE_INACTIVE);
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auto unconfigured = test_node->cleanup();
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EXPECT_EQ(unconfigured.id(), State::PRIMARY_STATE_UNCONFIGURED);
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auto finalized = test_node->shutdown();
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EXPECT_EQ(finalized.id(), State::PRIMARY_STATE_FINALIZED);
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}
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TEST_F(TestDefaultStateMachine, good_mood) {
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auto test_node = std::make_shared<MoodyLifecycleNode<GoodMood>>("testnode");
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EXPECT_EQ(State::PRIMARY_STATE_UNCONFIGURED, test_node->get_current_state().id());
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EXPECT_EQ(
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State::PRIMARY_STATE_INACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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EXPECT_EQ(
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State::PRIMARY_STATE_ACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_ACTIVATE)).id());
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EXPECT_EQ(
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State::PRIMARY_STATE_INACTIVE, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_DEACTIVATE)).id());
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EXPECT_EQ(
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State::PRIMARY_STATE_UNCONFIGURED, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CLEANUP)).id());
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EXPECT_EQ(
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State::PRIMARY_STATE_FINALIZED, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_UNCONFIGURED_SHUTDOWN)).id());
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// check if all callbacks were successfully overwritten
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EXPECT_EQ(5u, test_node->number_of_callbacks);
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}
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TEST_F(TestDefaultStateMachine, bad_mood) {
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auto test_node = std::make_shared<MoodyLifecycleNode<BadMood>>("testnode");
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EXPECT_EQ(State::PRIMARY_STATE_UNCONFIGURED, test_node->get_current_state().id());
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EXPECT_EQ(
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State::PRIMARY_STATE_UNCONFIGURED, test_node->trigger_transition(
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rclcpp_lifecycle::Transition(Transition::TRANSITION_CONFIGURE)).id());
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// check if all callbacks were successfully overwritten
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EXPECT_EQ(1u, test_node->number_of_callbacks);
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}
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TEST_F(TestDefaultStateMachine, lifecycle_subscriber) {
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auto test_node = std::make_shared<MoodyLifecycleNode<GoodMood>>("testnode");
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auto cb = [](const std::shared_ptr<lifecycle_msgs::msg::State> msg) {(void) msg;};
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auto lifecycle_sub =
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test_node->create_subscription<lifecycle_msgs::msg::State>("~/empty", 10, cb);
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SUCCEED();
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}
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// Parameters are tested more thoroughly in rclcpp's test_node.cpp
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// These are provided for coverage of lifecycle node's API
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TEST_F(TestDefaultStateMachine, declare_parameters) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto list_result = test_node->list_parameters({}, 0u);
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EXPECT_EQ(list_result.names.size(), 1u);
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EXPECT_STREQ(list_result.names[0].c_str(), "use_sim_time");
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const std::string bool_name = "test_boolean";
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const std::string int_name = "test_int";
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// Default descriptor overload
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test_node->declare_parameter(bool_name, rclcpp::ParameterValue(false));
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// Explicit descriptor overload
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rcl_interfaces::msg::ParameterDescriptor int_descriptor;
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int_descriptor.name = int_name;
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int_descriptor.type = rcl_interfaces::msg::ParameterType::PARAMETER_INTEGER;
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int_descriptor.description = "Example integer parameter";
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test_node->declare_parameter(int_name, rclcpp::ParameterValue(42), int_descriptor);
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std::map<std::string, std::string> str_parameters;
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str_parameters["str_one"] = "stringy_string";
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str_parameters["str_two"] = "stringy_string_string";
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// Default descriptor overload
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test_node->declare_parameters("test_string", str_parameters);
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std::map<std::string,
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std::pair<double, rcl_interfaces::msg::ParameterDescriptor>> double_parameters;
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rcl_interfaces::msg::ParameterDescriptor double_descriptor_one;
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double_descriptor_one.name = "double_one";
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double_descriptor_one.type = rcl_interfaces::msg::ParameterType::PARAMETER_DOUBLE;
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double_parameters["double_one"] = std::make_pair(1.0, double_descriptor_one);
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rcl_interfaces::msg::ParameterDescriptor double_descriptor_two;
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double_descriptor_two.name = "double_two";
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double_descriptor_two.type = rcl_interfaces::msg::ParameterType::PARAMETER_DOUBLE;
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double_parameters["double_two"] = std::make_pair(2.0, double_descriptor_two);
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// Explicit descriptor overload
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test_node->declare_parameters("test_double", double_parameters);
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list_result = test_node->list_parameters({}, 0u);
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EXPECT_EQ(list_result.names.size(), 7u);
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// The order of these names is not controlled by lifecycle_node, doing set equality
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std::set<std::string> expected_names = {
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"test_boolean",
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"test_double.double_one",
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"test_double.double_two",
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"test_int",
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"test_string.str_one",
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"test_string.str_two",
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"use_sim_time",
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};
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std::set<std::string> actual_names(list_result.names.begin(), list_result.names.end());
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EXPECT_EQ(expected_names, actual_names);
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}
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TEST_F(TestDefaultStateMachine, check_parameters) {
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auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
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auto list_result = test_node->list_parameters({}, 0u);
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EXPECT_EQ(list_result.names.size(), 1u);
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EXPECT_STREQ(list_result.names[0].c_str(), "use_sim_time");
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const std::string bool_name = "test_boolean";
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const std::string int_name = "test_int";
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std::vector<std::string> parameter_names = {bool_name, int_name};
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EXPECT_FALSE(test_node->has_parameter(bool_name));
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EXPECT_FALSE(test_node->has_parameter(int_name));
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EXPECT_THROW(
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test_node->get_parameters(parameter_names),
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rclcpp::exceptions::ParameterNotDeclaredException);
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// Default descriptor overload
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test_node->declare_parameter(bool_name, rclcpp::ParameterValue(true));
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// Explicit descriptor overload
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rcl_interfaces::msg::ParameterDescriptor int_descriptor;
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int_descriptor.name = int_name;
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int_descriptor.type = rcl_interfaces::msg::ParameterType::PARAMETER_INTEGER;
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int_descriptor.description = "Example integer parameter";
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test_node->declare_parameter(int_name, rclcpp::ParameterValue(42), int_descriptor);
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// describe parameters
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auto descriptors = test_node->describe_parameters(parameter_names);
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EXPECT_EQ(descriptors.size(), parameter_names.size());
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// This actually throws inside NodeParameters::describe_parameters(), so it's not currently
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// possible to cover this method 100%.
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EXPECT_THROW(
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test_node->describe_parameter("not_a_real_parameter"),
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rclcpp::exceptions::ParameterNotDeclaredException);
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// describe parameter matches explicit descriptor
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auto descriptor = test_node->describe_parameter(int_name);
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EXPECT_STREQ(descriptor.name.c_str(), int_descriptor.name.c_str());
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EXPECT_EQ(descriptor.type, int_descriptor.type);
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EXPECT_STREQ(descriptor.description.c_str(), int_descriptor.description.c_str());
|
|
|
|
// bool parameter exists and value matches
|
|
EXPECT_TRUE(test_node->has_parameter(bool_name));
|
|
EXPECT_EQ(test_node->get_parameter(bool_name).as_bool(), true);
|
|
|
|
// int parameter exists and value matches
|
|
EXPECT_TRUE(test_node->has_parameter(int_name));
|
|
EXPECT_EQ(test_node->get_parameter(int_name).as_int(), 42);
|
|
|
|
// Get multiple parameters at a time
|
|
auto parameters = test_node->get_parameters(parameter_names);
|
|
EXPECT_EQ(parameters.size(), parameter_names.size());
|
|
EXPECT_EQ(parameters[0].as_bool(), true);
|
|
EXPECT_EQ(parameters[1].as_int(), 42);
|
|
|
|
// Get multiple parameters at a time with map
|
|
std::map<std::string, rclcpp::ParameterValue> parameter_map;
|
|
EXPECT_TRUE(test_node->get_parameters({}, parameter_map));
|
|
|
|
// int param, bool param, and use_sim_time
|
|
EXPECT_EQ(parameter_map.size(), 3u);
|
|
|
|
// Check parameter types
|
|
auto parameter_types = test_node->get_parameter_types(parameter_names);
|
|
EXPECT_EQ(parameter_types.size(), parameter_names.size());
|
|
EXPECT_EQ(parameter_types[0], rcl_interfaces::msg::ParameterType::PARAMETER_BOOL);
|
|
EXPECT_EQ(parameter_types[1], rcl_interfaces::msg::ParameterType::PARAMETER_INTEGER);
|
|
|
|
// Setting parameters
|
|
size_t parameters_set = 0;
|
|
auto callback = [¶meters_set](const std::vector<rclcpp::Parameter> & parameters) {
|
|
parameters_set += parameters.size();
|
|
rcl_interfaces::msg::SetParametersResult result;
|
|
result.successful = true;
|
|
return result;
|
|
};
|
|
|
|
// Hold callback handle. Callback is valid during the lifetime of this object.
|
|
auto callback_handle = test_node->add_on_set_parameters_callback(callback);
|
|
rclcpp::Parameter bool_parameter(bool_name, rclcpp::ParameterValue(false));
|
|
EXPECT_TRUE(test_node->set_parameter(bool_parameter).successful);
|
|
EXPECT_EQ(parameters_set, 1u);
|
|
|
|
rclcpp::Parameter int_parameter(int_name, rclcpp::ParameterValue(7));
|
|
test_node->set_parameters({int_parameter});
|
|
EXPECT_EQ(parameters_set, 2u);
|
|
|
|
test_node->remove_on_set_parameters_callback(callback_handle.get());
|
|
rclcpp::Parameter bool_parameter2(bool_name, rclcpp::ParameterValue(true));
|
|
EXPECT_TRUE(test_node->set_parameter(bool_parameter2).successful);
|
|
EXPECT_EQ(parameters_set, 2u);
|
|
|
|
|
|
// List parameters
|
|
list_result = test_node->list_parameters({}, 0u);
|
|
EXPECT_EQ(list_result.names.size(), 3u);
|
|
EXPECT_STREQ(list_result.names[0].c_str(), parameter_names[0].c_str());
|
|
EXPECT_STREQ(list_result.names[1].c_str(), parameter_names[1].c_str());
|
|
EXPECT_STREQ(list_result.names[2].c_str(), "use_sim_time");
|
|
|
|
// Undeclare parameter
|
|
test_node->undeclare_parameter(bool_name);
|
|
EXPECT_FALSE(test_node->has_parameter(bool_name));
|
|
rclcpp::Parameter parameter;
|
|
EXPECT_FALSE(test_node->get_parameter(bool_name, parameter));
|
|
|
|
// Bool parameter has been undeclared, atomic setting should fail
|
|
parameters = {
|
|
rclcpp::Parameter(bool_name, rclcpp::ParameterValue(true)),
|
|
rclcpp::Parameter(int_name, rclcpp::ParameterValue(0))};
|
|
EXPECT_THROW(
|
|
test_node->set_parameters_atomically(parameters),
|
|
rclcpp::exceptions::ParameterNotDeclaredException);
|
|
|
|
// Since setting parameters failed, this should remain the same
|
|
EXPECT_EQ(test_node->get_parameter(int_name).as_int(), 7);
|
|
|
|
// Bool parameter no longer exists, using "or" value
|
|
EXPECT_FALSE(
|
|
test_node->get_parameter_or(
|
|
bool_name, parameter, rclcpp::Parameter(bool_name, rclcpp::ParameterValue(true))));
|
|
EXPECT_TRUE(parameter.as_bool());
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, test_getters) {
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
auto options = test_node->get_node_options();
|
|
EXPECT_EQ(0u, options.arguments().size());
|
|
EXPECT_NE(nullptr, test_node->get_node_base_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_clock_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_graph_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_logging_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_time_source_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_timers_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_topics_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_services_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_parameters_interface());
|
|
EXPECT_NE(nullptr, test_node->get_node_waitables_interface());
|
|
EXPECT_NE(nullptr, test_node->get_graph_event());
|
|
EXPECT_NE(nullptr, test_node->get_clock());
|
|
EXPECT_LT(0u, test_node->now().nanoseconds());
|
|
EXPECT_STREQ("testnode", test_node->get_logger().get_name());
|
|
EXPECT_NE(nullptr, const_cast<const EmptyLifecycleNode *>(test_node.get())->get_clock());
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, test_graph_topics) {
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
auto names = test_node->get_node_names();
|
|
|
|
ASSERT_NE(names.end(), std::find(names.begin(), names.end(), std::string("/testnode")));
|
|
|
|
// Other topics may exist for an rclcpp::Node, but just checking the lifecycle one exists
|
|
auto topic_names_and_types = test_node->get_topic_names_and_types();
|
|
ASSERT_NE(
|
|
topic_names_and_types.end(),
|
|
topic_names_and_types.find(std::string("/testnode/transition_event")));
|
|
EXPECT_STREQ(
|
|
topic_names_and_types["/testnode/transition_event"][0].c_str(),
|
|
"lifecycle_msgs/msg/TransitionEvent");
|
|
|
|
EXPECT_EQ(1u, test_node->count_publishers("/testnode/transition_event"));
|
|
EXPECT_EQ(0u, test_node->count_subscribers("/testnode/transition_event"));
|
|
|
|
auto publishers_info = test_node->get_publishers_info_by_topic("/testnode/transition_event");
|
|
EXPECT_EQ(1u, publishers_info.size());
|
|
auto subscriptions_info =
|
|
test_node->get_subscriptions_info_by_topic("/testnode/transition_event");
|
|
EXPECT_EQ(0u, subscriptions_info.size());
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, test_graph_services) {
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
|
|
auto service_names_and_types = test_node->get_service_names_and_types();
|
|
// These are specific to lifecycle nodes, other services are provided by rclcpp::Node
|
|
ASSERT_NE(
|
|
service_names_and_types.end(),
|
|
service_names_and_types.find(std::string("/testnode/change_state")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types["/testnode/change_state"][0].c_str(),
|
|
"lifecycle_msgs/srv/ChangeState");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types.end(),
|
|
service_names_and_types.find(std::string("/testnode/get_available_states")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types["/testnode/get_available_states"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableStates");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types.end(),
|
|
service_names_and_types.find(std::string("/testnode/get_available_transitions")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types["/testnode/get_available_transitions"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableTransitions");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types.end(),
|
|
service_names_and_types.find(std::string("/testnode/get_state")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types["/testnode/get_state"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetState");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types.end(),
|
|
service_names_and_types.find(std::string("/testnode/get_transition_graph")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types["/testnode/get_transition_graph"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableTransitions");
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, test_graph_services_by_node) {
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
|
|
auto service_names_and_types_by_node =
|
|
test_node->get_service_names_and_types_by_node("testnode", "");
|
|
// These are specific to lifecycle nodes, other services are provided by rclcpp::Node
|
|
ASSERT_NE(
|
|
service_names_and_types_by_node.end(),
|
|
service_names_and_types_by_node.find(std::string("/testnode/change_state")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types_by_node["/testnode/change_state"][0].c_str(),
|
|
"lifecycle_msgs/srv/ChangeState");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types_by_node.end(),
|
|
service_names_and_types_by_node.find(std::string("/testnode/get_available_states")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types_by_node["/testnode/get_available_states"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableStates");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types_by_node.end(),
|
|
service_names_and_types_by_node.find(std::string("/testnode/get_available_transitions")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types_by_node["/testnode/get_available_transitions"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableTransitions");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types_by_node.end(),
|
|
service_names_and_types_by_node.find(std::string("/testnode/get_state")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types_by_node["/testnode/get_state"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetState");
|
|
|
|
ASSERT_NE(
|
|
service_names_and_types_by_node.end(),
|
|
service_names_and_types_by_node.find(std::string("/testnode/get_transition_graph")));
|
|
EXPECT_STREQ(
|
|
service_names_and_types_by_node["/testnode/get_transition_graph"][0].c_str(),
|
|
"lifecycle_msgs/srv/GetAvailableTransitions");
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, test_callback_groups) {
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
auto groups = test_node->get_callback_groups();
|
|
EXPECT_EQ(groups.size(), 1u);
|
|
|
|
auto group = test_node->create_callback_group(
|
|
rclcpp::CallbackGroupType::MutuallyExclusive);
|
|
EXPECT_NE(nullptr, group);
|
|
|
|
groups = test_node->get_callback_groups();
|
|
EXPECT_EQ(groups.size(), 2u);
|
|
EXPECT_EQ(groups[1].lock().get(), group.get());
|
|
}
|
|
|
|
TEST_F(TestDefaultStateMachine, wait_for_graph_change)
|
|
{
|
|
auto test_node = std::make_shared<EmptyLifecycleNode>("testnode");
|
|
EXPECT_THROW(
|
|
test_node->wait_for_graph_change(nullptr, std::chrono::milliseconds(1)),
|
|
rclcpp::exceptions::InvalidEventError);
|
|
|
|
auto event = std::make_shared<rclcpp::Event>();
|
|
EXPECT_THROW(
|
|
test_node->wait_for_graph_change(event, std::chrono::milliseconds(0)),
|
|
rclcpp::exceptions::EventNotRegisteredError);
|
|
}
|