#include #include "TinyComponent.h" void setUp(void) { // set stuff up here } void tearDown(void) { // clean stuff up here } void test_unknown_sensor_type(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = TYPE(0); TEST_ASSERT_FALSE(buildSensorJson(value, jsonDoc)); } void test_max_temp(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = TEMP(1023) | TYPE(SensorType::TEMPERATURE); TEST_ASSERT_EQUAL(true, buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(102.3, sensor["temperature"]); } void test_max_value(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = VALUE(1023) | TYPE(SensorType::GENERIC); TEST_ASSERT_EQUAL(true, buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(1023, sensor["value"]); } void test_overflow_value(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = VALUE(1024) | TYPE(SensorType::GENERIC); TEST_ASSERT_EQUAL(true, buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(0, sensor["value"]); } void test_max_voltage(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = VCC(8191) | TYPE(SensorType::GENERIC); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject diagnostic = jsonDoc["sensor"]["diagnostic"]; TEST_ASSERT_EQUAL(8.191, diagnostic["voltage"]); } void test_overflow_voltage(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = VCC(8192) | TYPE(SensorType::GENERIC); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject diagnostic = jsonDoc["sensor"]["diagnostic"]; TEST_ASSERT_EQUAL(0, diagnostic["voltage"]); } void test_temp_sensor(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(TEMP_SENSOR) | TEMP(210) | TYPE(SensorType::TEMPERATURE); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(TEMP_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL(21, sensor["temperature"]); } void test_temp_sensor_with_voltage(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(TEMP_SENSOR) | TEMP(320) | TYPE(SensorType::TEMPERATURE) | VCC(2847L); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(TEMP_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL(32, sensor["temperature"]); JsonObject diagnostic = sensor["diagnostic"]; TEST_ASSERT_EQUAL(2.847, diagnostic["voltage"]); } void test_oil_sensor(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(OIL_SENSOR) | VALUE(150) | TYPE(SensorType::GENERIC); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(OIL_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL(150, sensor["value"]); } void test_oil_sensor_with_voltage(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(OIL_SENSOR) | TEMP(200) | TYPE(SensorType::GENERIC) | VCC(2847L); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(OIL_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL(200, sensor["value"]); JsonObject diagnostic = sensor["diagnostic"]; TEST_ASSERT_EQUAL(2.847, diagnostic["voltage"]); } void test_presence_sensor(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(PRESENCE_SENSOR) | STATE(1) | TYPE(SensorType::CONTACT); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(PRESENCE_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL_STRING("ON", sensor["state"]); } void test_presence_sensor_with_voltage(void) { StaticJsonDocument<200> jsonDoc; uint32_t value = ID(PRESENCE_SENSOR) | STATE(0) | TYPE(SensorType::CONTACT) | VCC(3847L); TEST_ASSERT_TRUE(buildSensorJson(value, jsonDoc)); JsonObject sensor = jsonDoc["sensor"]; TEST_ASSERT_EQUAL(PRESENCE_SENSOR, sensor["id"]); TEST_ASSERT_EQUAL_STRING("OFF", sensor["state"]); JsonObject diagnostic = sensor["diagnostic"]; TEST_ASSERT_EQUAL(3.847, diagnostic["voltage"]); } int main(int argc, char **argv) { UNITY_BEGIN(); RUN_TEST(test_unknown_sensor_type); RUN_TEST(test_max_temp); RUN_TEST(test_max_value); RUN_TEST(test_overflow_value); RUN_TEST(test_max_voltage); RUN_TEST(test_overflow_voltage); RUN_TEST(test_temp_sensor); RUN_TEST(test_temp_sensor_with_voltage); RUN_TEST(test_oil_sensor); RUN_TEST(test_oil_sensor_with_voltage); RUN_TEST(test_presence_sensor); RUN_TEST(test_presence_sensor_with_voltage); UNITY_END(); return 0; }