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129 lines
5.5 KiB
129 lines
5.5 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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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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#include <gtest/gtest.h> |
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#include "vehicle_test_fixtures.h" |
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#include "hardware/vehicle.h" |
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namespace tests { |
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// Check if list_properties command exists. |
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TEST_F(VehicleDevice, isThereListProperties) { |
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ASSERT_TRUE(NULL != vehicle_device()->list_properties) |
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<< "list_properties() function is not implemented"; |
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std::cout << "Test succeeds.\n"; |
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} |
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// HAL should provide atleast one property. The output of this command should be |
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// used to verify the vailidity of the function. |
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TEST_F(VehicleDevice, listPropertiesMoreThanOne) { |
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vehicle_prop_config_t const* config; |
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int num_configs = -1; |
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config = vehicle_device()->list_properties(vehicle_device(), &num_configs); |
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ASSERT_TRUE(num_configs > -1) << "list_properties() call failed."; |
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ASSERT_TRUE(num_configs > 0) << "list_properties() returned zero items."; |
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std::cout << "Number of properties reported: " << num_configs << "\n"; |
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for (int i = 0; i < num_configs; i++) { |
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// Print each of the properties. |
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const vehicle_prop_config_t& config_temp = config[i]; |
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std::cout << "Property ID: " << config_temp.prop << "\n"; |
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std::cout << "Property flags: " << config_temp.config_flags << "\n"; |
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std::cout << "Property change mode: " << config_temp.change_mode << "\n"; |
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std::cout << "Property min sample rate: " << config_temp.min_sample_rate << "\n"; |
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std::cout << "Property max sample rate: " << config_temp.max_sample_rate << "\n\n"; |
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} |
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} |
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// Test get() command. |
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// The fields are hardcoded in the dummy implementation and here. |
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TEST_F(VehicleDevice, getDriveState) { |
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vehicle_prop_value_t data; |
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data.prop = VEHICLE_PROPERTY_DRIVING_STATUS; |
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// Set drive_state field to EINVAL so that we can check that its valid when |
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// it comes back. |
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data.value_type = -EINVAL; |
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data.value.driving_status = -EINVAL; |
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vehicle_device()->get(vehicle_device(), &data); |
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// Check that retured values are not invalid. |
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ASSERT_NE(data.value_type, -EINVAL) << "Drive state value type should be integer."; |
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ASSERT_NE(data.value.driving_status, -EINVAL) << "Driving status should be positive."; |
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std::cout << "Driving status value type: " << data.value_type << "\n" |
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<< "Driving status: " << data.value.driving_status << "\n"; |
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} |
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// Test the workflows for subscribe and init/release. |
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// Subscribe will return error before init() is called or after release() is |
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// called. |
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TEST_F(VehicleDevice, initTest) { |
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// Test that init on a new device works. When getting an instance, we are |
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// already calling 'open' on the device. |
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int ret_code = |
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vehicle_device()->init(vehicle_device(), callback_fn(), error_fn()); |
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ASSERT_EQ(ret_code, 0) << "ret code: " << ret_code; |
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// Trying to init again should return an error. |
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ret_code = vehicle_device()->init(vehicle_device(), callback_fn(), error_fn()); |
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ASSERT_EQ(ret_code, -EEXIST) << "ret code: " << ret_code; |
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// Uninit should always return 0. |
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ret_code = vehicle_device()->release(vehicle_device()); |
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ASSERT_EQ(ret_code, 0) << "ret code: " << ret_code; |
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// We should be able to init again. |
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ret_code = vehicle_device()->init(vehicle_device(), callback_fn(), error_fn()); |
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ASSERT_EQ(ret_code, 0) << "ret code: " << ret_code; |
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// Finally release. |
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ret_code = vehicle_device()->release(vehicle_device()); |
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ASSERT_EQ(ret_code, 0) << "ret_code: " << ret_code; |
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} |
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// Test that subscribe works. |
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// We wait for 10 seconds while which the vehicle.c can post messages from |
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// within it's own thread. |
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TEST_F(VehicleDevice, subscribeTest) { |
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// If the device is not init subscribe should fail off the bat. |
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int ret_code = vehicle_device()->subscribe(vehicle_device(), VEHICLE_PROPERTY_DRIVING_STATUS, |
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0, 0); |
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ASSERT_EQ(ret_code, -EINVAL) << "Return code is: " << ret_code; |
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// Let's init the device. |
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ret_code = vehicle_device()->init(vehicle_device(), callback_fn(), error_fn()); |
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ASSERT_EQ(ret_code, 0) << "Return code is: " << ret_code; |
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// Subscribe should now go through. |
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ret_code = vehicle_device()->subscribe(vehicle_device(), VEHICLE_PROPERTY_DRIVING_STATUS, 0, 0); |
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ASSERT_EQ(ret_code, 0) << "Return code is: " << ret_code; |
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// We should start getting some messages thrown from the callback. Let's |
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// wait for 20 seconds before unsubscribing. |
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std::cout << "Sleeping for 20 seconds."; |
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sleep(20); |
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std::cout << "Waking from sleep."; |
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// This property does not exist, so we should get -EINVAL. |
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ret_code = vehicle_device()->unsubscribe(vehicle_device(), VEHICLE_PROPERTY_INFO_VIN); |
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ASSERT_EQ(ret_code, -EINVAL) << "Return code is: " << ret_code; |
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// This property exists, so we should get a success return code - also this |
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// will be a blocking call. |
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ret_code = vehicle_device()->unsubscribe(vehicle_device(), VEHICLE_PROPERTY_DRIVING_STATUS); |
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ASSERT_EQ(ret_code, 0) << "Return code is: " << ret_code; |
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} |
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} // namespace tests
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