164 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			164 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| // Copyright 2022 Haute école d'ingénierie et d'architecture de Fribourg
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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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| 
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| /****************************************************************************
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|  * @file main.cpp
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|  * @author Serge Ayer <serge.ayer@hefr.ch>
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|  *
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|  * @brief Bike computer test suite: scheduling
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|  *
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|  * @date 2023-08-26
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|  * @version 0.1.0
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|  ***************************************************************************/
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| 
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| #include <chrono>
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| 
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| #include "greentea-client/test_env.h"
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| #include "mbed.h"
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| #include "static_scheduling/bike_system.hpp"
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| #include "static_scheduling_with_event/bike_system.hpp"
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| #include "task_logger.hpp"
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| #include "unity/unity.h"
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| #include "utest/utest.h"
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| 
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| namespace utest {
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| namespace v1 {
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| 
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| // test_bike_system handler function
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| static void test_bike_system() {
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|     // create the BikeSystem instance
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|     static_scheduling::BikeSystem bikeSystem;
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| 
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|     // run the bike system in a separate thread
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|     Thread thread;
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|     thread.start(callback(&bikeSystem, &static_scheduling::BikeSystem::start));
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| 
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|     // let the bike system run for 20 secs
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|     ThisThread::sleep_for(20s);
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| 
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|     // stop the bike system
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|     bikeSystem.stop();
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| 
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|     // check whether scheduling was correct
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|     // Order is kGearTaskIndex, kSpeedTaskIndex, kTemperatureTaskIndex,
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|     //          kResetTaskIndex, kDisplayTask1Index, kDisplayTask2Index
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|     constexpr std::chrono::microseconds taskComputationTimes[] = {
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|         100000us, 200000us, 100000us, 100000us, 200000us, 100000us};
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|     constexpr std::chrono::microseconds taskPeriods[] = {
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|         800000us, 400000us, 1600000us, 800000us, 1600000us, 1600000us};
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| 
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|     // allow for 2 msecs offset
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|     uint64_t deltaUs = 3000;
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|     for (uint8_t taskIndex = 0; taskIndex < advembsof::TaskLogger::kNbrOfTasks;
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|          taskIndex++) {
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|         TEST_ASSERT_UINT64_WITHIN(
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|             deltaUs,
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|             taskPeriods[taskIndex].count(),
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|             bikeSystem.getTaskLogger().getPeriod(taskIndex).count());
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|         TEST_ASSERT_UINT64_WITHIN(
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|             deltaUs,
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|             taskComputationTimes[taskIndex].count(),
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|             bikeSystem.getTaskLogger().getComputationTime(taskIndex).count());
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|     }
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| }
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| 
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| // test_bike_system_event_queue handler function
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| static void test_bike_system_event_queue() {
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|     // create the BikeSystem instance
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|     static_scheduling::BikeSystem bikeSystem;
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| 
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|     // run the bike system in a separate thread
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|     Thread thread;
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|     thread.start(
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|         callback(&bikeSystem, &static_scheduling::BikeSystem::startWithEventQueue));
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| 
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|     // let the bike system run for 20 secs
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|     ThisThread::sleep_for(20s);
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| 
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|     // stop the bike system
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|     bikeSystem.stop();
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| 
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|     // check whether scheduling was correct
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|     // Order is kGearTaskIndex, kSpeedTaskIndex, kTemperatureTaskIndex,
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|     //          kResetTaskIndex, kDisplayTask1Index, kDisplayTask2Index
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|     // When we use the event queue, we do not check the computation time
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|     constexpr std::chrono::microseconds taskPeriods[] = {
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|         800000us, 400000us, 1600000us, 800000us, 1600000us, 1600000us};
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| 
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|     // allow for 2 msecs offset (with EventQueue)
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|     uint64_t deltaUs = 3000;
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|     for (uint8_t taskIndex = 0; taskIndex < advembsof::TaskLogger::kNbrOfTasks;
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|          taskIndex++) {
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|         TEST_ASSERT_UINT64_WITHIN(
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|             deltaUs,
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|             taskPeriods[taskIndex].count(),
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|             bikeSystem.getTaskLogger().getPeriod(taskIndex).count());
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|     }
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| }
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| 
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| // test_bike_system_with_event handler function
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| static void test_bike_system_with_event() {
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|     // create the BikeSystem instance
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|     static_scheduling_with_event::BikeSystem bikeSystem;
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| 
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|     // run the bike system in a separate thread
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|     Thread thread;
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|     thread.start(callback(&bikeSystem, &static_scheduling_with_event::BikeSystem::start));
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| 
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|     // let the bike system run for 20 secs
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|     ThisThread::sleep_for(20s);
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| 
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|     // stop the bike system
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|     bikeSystem.stop();
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| 
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|     // check whether scheduling was correct
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|     // Order is kGearTaskIndex, kSpeedTaskIndex, kTemperatureTaskIndex,
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|     //          kResetTaskIndex, kDisplayTask1Index, kDisplayTask2Index
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|     // When we use event handling, we do not check the computation time
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|     constexpr std::chrono::microseconds taskPeriods[] = {
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|         800000us, 400000us, 1600000us, 800000us, 1600000us, 1600000us};
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| 
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|     // allow for 2 msecs offset (with EventQueue)
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|     uint64_t deltaUs = 3000;
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|     for (uint8_t taskIndex = 0; taskIndex < advembsof::TaskLogger::kNbrOfTasks;
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|          taskIndex++) {
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|         TEST_ASSERT_UINT64_WITHIN(
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|             deltaUs,
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|             taskPeriods[taskIndex].count(),
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|             bikeSystem.getTaskLogger().getPeriod(taskIndex).count());
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|     }
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| }
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| 
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| static status_t greentea_setup(const size_t number_of_cases) {
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|     // Here, we specify the timeout (60s) and the host test (a built-in host test
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|     // or the name of our Python file)
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|     GREENTEA_SETUP(180, "default_auto");
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| 
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|     return greentea_test_setup_handler(number_of_cases);
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| }
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| 
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| // List of test cases in this file
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| static Case cases[] = {
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|     Case("test bike system", test_bike_system),
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|     Case("test bike system with event queue", test_bike_system_event_queue),
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|     Case("test bike system with event handling", test_bike_system_with_event),
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| };
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| 
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| static Specification specification(greentea_setup, cases);
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| 
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| };  // namespace v1
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| };  // namespace utest
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| 
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| int main() { return !utest::v1::Harness::run(utest::v1::specification); }
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