2023-05-12 22:19:31 +02:00
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//********************************//
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#define TEST_PWM_STATE_INIT 0
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#define TEST_PWM_STATE_CH1_INC 1
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#define TEST_PWM_STATE_CH1_DEC 2
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#define TEST_PWM_STATE_CH2_INC 3
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#define TEST_PWM_STATE_CH2_DEC 4
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#define TEST_PWM_STATE_CH3_INC 5
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#define TEST_PWM_STATE_CH3_DEC 6
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#define TEST_PWM_STATE_CH4_INC 7
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#define TEST_PWM_STATE_CH4_DEC 8
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//********************************//
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bool test_pwm = false;
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uint32_t test_pwm_lastcheck_ms = 0;
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uint8_t test_pwm_state = TEST_PWM_STATE_INIT;
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//********************************//
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void test_pwm_main()
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{
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if (test_pwm == false)
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{
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return;
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} else if ((test_pwm_lastcheck_ms + PWM_TEST_INTERVA_MS) <= millis())
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{
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test_pwm_lastcheck_ms = millis();
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switch (test_pwm_state)
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{
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// ----------------------- //
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case TEST_PWM_STATE_INIT:
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// disable the lights
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for (uint8_t i = 0; i < LIGHTS_COUNT; i++)
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{
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light_state[i] = false;
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bri[i] = 0;
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current_bri[i] = 0;
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current_pwm[i] = 0;
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transitiontime[i] = 0;
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process_lightdata(i, transitiontime[i]);
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}
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light_state[0] = true;
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test_pwm_state = TEST_PWM_STATE_CH1_INC;
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break;
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// ----------------------- //
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case TEST_PWM_STATE_CH1_INC:
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if (bri[0] < 255)
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{
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bri[0] += TEST_PWM_CHG_CNT;
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transitiontime[0] = 1;
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process_lightdata(0, transitiontime[0]);
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} else {
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test_pwm_state = TEST_PWM_STATE_CH1_DEC;
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}
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break;
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case TEST_PWM_STATE_CH1_DEC:
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if (bri[0] > 0)
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{
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bri[0] -= TEST_PWM_CHG_CNT;
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transitiontime[0] = 1;
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process_lightdata(0, transitiontime[0]);
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} else {
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light_state[0] = false;
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bri[0] = 0;
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current_bri[0] = 0;
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current_pwm[0] = 0;
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2023-05-13 23:01:27 +02:00
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transitiontime[0] = default_transitiontime;
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2023-05-12 22:19:31 +02:00
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process_lightdata(0, transitiontime[0]);
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light_state[1] = true;
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test_pwm_state = TEST_PWM_STATE_CH2_INC;
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}
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break;
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// ----------------------- //
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case TEST_PWM_STATE_CH2_INC:
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if (bri[1] < 255)
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{
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bri[1] += TEST_PWM_CHG_CNT;
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transitiontime[1] = 1;
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process_lightdata(1, transitiontime[1]);
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} else {
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test_pwm_state = TEST_PWM_STATE_CH2_DEC;
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}
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break;
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case TEST_PWM_STATE_CH2_DEC:
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if (bri[1] > 0)
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{
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bri[1] -= TEST_PWM_CHG_CNT;
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transitiontime[1] = 1;
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process_lightdata(1, transitiontime[1]);
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} else {
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light_state[1] = false;
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bri[1] = 0;
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current_bri[1] = 0;
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current_pwm[1] = 0;
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2023-05-13 23:01:27 +02:00
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transitiontime[1] = default_transitiontime;
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2023-05-12 22:19:31 +02:00
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process_lightdata(1, transitiontime[1]);
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light_state[2] = true;
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test_pwm_state = TEST_PWM_STATE_CH3_INC;
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}
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break;
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// ----------------------- //
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case TEST_PWM_STATE_CH3_INC:
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if (bri[2] < 255)
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{
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bri[2] += TEST_PWM_CHG_CNT;
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transitiontime[2] = 1;
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process_lightdata(2, transitiontime[2]);
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} else {
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test_pwm_state = TEST_PWM_STATE_CH3_DEC;
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}
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break;
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case TEST_PWM_STATE_CH3_DEC:
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if (bri[2] > 0)
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{
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bri[2] -= TEST_PWM_CHG_CNT;
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transitiontime[2] = 1;
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process_lightdata(2, transitiontime[2]);
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} else {
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light_state[2] = false;
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bri[2] = 0;
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current_bri[2] = 0;
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current_pwm[2] = 0;
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2023-05-13 23:01:27 +02:00
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transitiontime[2] = default_transitiontime;
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2023-05-12 22:19:31 +02:00
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process_lightdata(2, transitiontime[2]);
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light_state[3] = true;
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test_pwm_state = TEST_PWM_STATE_CH4_INC;
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}
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break;
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// ----------------------- //
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case TEST_PWM_STATE_CH4_INC:
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if (bri[3] < 255)
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{
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bri[3] += TEST_PWM_CHG_CNT;
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transitiontime[3] = 1;
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process_lightdata(3, transitiontime[3]);
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} else {
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test_pwm_state = TEST_PWM_STATE_CH4_DEC;
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}
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break;
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case TEST_PWM_STATE_CH4_DEC:
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if (bri[3] > 0)
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{
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bri[3] -= TEST_PWM_CHG_CNT;
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transitiontime[3] = 1;
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process_lightdata(3, transitiontime[3]);
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} else {
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test_pwm = false;
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tc_enabled = tc_enabled_old;
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for (uint8_t i = 0; i < LIGHTS_COUNT; i++)
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{
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light_state[i] = false;
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bri[i] = 0;
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current_bri[i] = 0;
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current_pwm[i] = 0;
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2023-05-13 23:01:27 +02:00
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transitiontime[i] = default_transitiontime;
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2023-05-12 22:19:31 +02:00
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process_lightdata(i, transitiontime[i]);
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}
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tc_reset();
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tc_update_main(); // load the tc if required
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test_pwm_state = TEST_PWM_STATE_INIT;
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}
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break;
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// ----------------------- //
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default:
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test_pwm_state = TEST_PWM_STATE_INIT;
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}
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Serial.println("---");
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for (uint8_t i = 0; i < LIGHTS_COUNT; i++)
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{
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Serial.println("light_state[" + (String)i + "] = " + (String)light_state[i]);
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Serial.println("bri[" + (String)i + "] = " + (String)bri[i]);
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Serial.println("current_bri[" + (String)i + "] = " + (String)current_bri[i]);
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Serial.println("current_pwm[" + (String)i + "] = " + (String)current_pwm[i]);
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Serial.println("transitiontime[" + (String)i + "] = " + (String)transitiontime[i]);
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}
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}
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}
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//********************************//
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