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b088c714ee
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c7610f9475
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@ -47,7 +47,6 @@ uint8_t utc_offset = 7;
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float current_room_temp = 0;
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float current_room_humid = 0;
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#endif
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bool pwm_report_enable = true;
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// Inputs
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#define VINT_COUNT 16
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@ -70,7 +69,6 @@ const float pwm_linear_scaling_c[PWM_COUNT] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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const int PWM_CYCLE_VALUES[PWM_CYCLE_VALUES_COUNT] = {50, 125, 255};
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char PWM_SET_STATE_TOPIC[70];
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char PWM_SET_VALUE_TOPIC[70];
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char PWM_REPORT_ENABLE_TOPIC[70];
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#ifdef ENABLE_INTERNAL_LCD
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// LCD
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@ -251,20 +249,18 @@ void loop()
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*/
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void fram_retrieve_init()
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{
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#ifdef ENABLE_WEBUI
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#ifdef ENABLE_WEBUI
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ESPMega_FRAM.read(FRAM_ADDRESS_WEBUI_USERNAME, (uint8_t *)WEBUI_USERNAME, 32);
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ESPMega_FRAM.read(FRAM_ADDRESS_WEBUI_PASSWORD, (uint8_t *)WEBUI_PASSWORD, 32);
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if (strlen(WEBUI_USERNAME) == 0)
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{
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strcpy(WEBUI_USERNAME, "admin");
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if(strlen(WEBUI_USERNAME)==0) {
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strcpy(WEBUI_USERNAME,"admin");
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ESPMega_FRAM.write(FRAM_ADDRESS_WEBUI_USERNAME, (uint8_t *)WEBUI_USERNAME, 32);
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}
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if (strlen(WEBUI_PASSWORD) == 0)
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{
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strcpy(WEBUI_PASSWORD, "admin");
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if(strlen(WEBUI_PASSWORD)==0) {
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strcpy(WEBUI_PASSWORD,"admin");
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ESPMega_FRAM.write(FRAM_ADDRESS_WEBUI_PASSWORD, (uint8_t *)WEBUI_PASSWORD, 32);
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}
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#endif
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#endif
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// FRAM Data Retrival
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#ifdef ENABLE_CLIMATE_MODULE
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ac_mode = ESPMega_FRAM.read8(FRAM_ADDRESS_AC_MODE);
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@ -324,8 +320,6 @@ void fram_retrieve_init()
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strcat(PWM_SET_STATE_TOPIC, "/pwm/00/set/state");
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memcpy(PWM_SET_VALUE_TOPIC, MQTT_BASE_TOPIC, 20);
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strcat(PWM_SET_VALUE_TOPIC, "/pwm/00/set/value");
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memcpy(PWM_REPORT_ENABLE_TOPIC, MQTT_BASE_TOPIC, 20);
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strcat(PWM_REPORT_ENABLE_TOPIC, "/pwm/report_enable");
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#ifdef ENABLE_CLIMATE_MODULE
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memcpy(AC_SET_MODE_TOPIC, MQTT_BASE_TOPIC, 20);
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strcat(AC_SET_MODE_TOPIC, "/ac/set/mode");
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@ -401,11 +395,11 @@ void ota_begin()
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otabuffer+=ota_part2_1+"IP Address"+ota_part2_2+IP.toString()+ota_part2_3;
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otabuffer+=ota_part2_1+"MAC Address"+ota_part2_2+ETH.macAddress()+ota_part2_3;
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otabuffer+=ota_part2_1+"Device"+ota_part2_2+ESPMEGA_REV+ota_part2_3;
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#ifdef FW_VERSION
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#ifdef FW_VERSION
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otabuffer+=ota_part2_1+"Firmware"+ota_part2_2+FW_VERSION+ota_part2_3;
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#else
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#else
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otabuffer+=ota_part2_1+"Firmware"+ota_part2_2+"Out of Tree"+ota_part2_3;
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#endif
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#endif
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otabuffer+=ota_part2_1+"BMS Server"+ota_part2_2+MQTT_SERVER.toString()+ota_part2_3;
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otabuffer+=ota_part2_1+"BMS Endpoint"+ota_part2_2+String(MQTT_BASE_TOPIC)+ota_part2_3;
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otabuffer+=ota_part2_1+"Centrally Managed"+ota_part2_2;
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@ -671,7 +665,6 @@ void mqtt_subscribe()
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mqtt.subscribe(PWM_SET_STATE_TOPIC);
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mqtt.subscribe(PWM_SET_VALUE_TOPIC);
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}
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mqtt.subscribe(PWM_REPORT_ENABLE_TOPIC);
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#ifdef ENABLE_CLIMATE_MODULE
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mqtt.subscribe(AC_SET_FAN_TOPIC);
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mqtt.subscribe(AC_SET_TEMPERATURE_TOPIC);
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@ -720,10 +713,6 @@ void mqtt_callback(char *topic, byte *payload, unsigned int length)
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{
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pwm_value_callback(topic_trim, topic_length, payload_nt, length);
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}
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else if (!strcmp(topic_trim, "/pwm/report_enable"))
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{
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pwm_set_publish_callback(topic_trim, topic_length, payload_nt, length);
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}
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#ifdef ENABLE_ANALOG_MODULE
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else if ((!strncmp(topic_trim, "/adc/", 5)) && !strncmp(topic_trim + 7, "/set/state", 10))
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{
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@ -741,14 +730,13 @@ void mqtt_callback(char *topic, byte *payload, unsigned int length)
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#ifdef ENABLE_IR_MODULE
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else if (!strcmp(topic_trim, "/ir/send"))
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{
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const char *delimiter = ",";
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char *token = strtok(const_cast<char *>(payload_nt), delimiter);
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while (token != nullptr && ir_buffer_length < IR_RAW_BUFFER_LENGTH)
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{
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ir_buffer[ir_buffer_length++] = atoi(token);
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token = strtok(nullptr, delimiter);
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const char* delimiter = ",";
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char* token = strtok(const_cast<char*>(payload_nt), delimiter);
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while (token != nullptr && ir_buffer_length < IR_RAW_BUFFER_LENGTH) {
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ir_buffer[ir_buffer_length++] = atoi(token);
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token = strtok(nullptr, delimiter);
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}
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IrSender.sendRaw(ir_buffer, ir_buffer_length, NEC_KHZ);
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IrSender.sendRaw(ir_buffer,ir_buffer_length ,NEC_KHZ);
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}
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#endif
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else if (!strcmp(topic, STATE_REQUEST_TOPIC))
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@ -881,7 +869,6 @@ void publish_pwm_states()
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for (int i = 0; i < PWM_COUNT; i++)
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{
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publish_pwm_state(i);
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publish_pwm_value(i);
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}
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}
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@ -892,11 +879,12 @@ void publish_pwm_states()
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*/
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void publish_pwm_state(int id)
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{
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if (!pwm_report_enable)
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return;
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int state = pwm_states[id];
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int value = pwm_values[id];
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PWM_STATE_TOPIC[base_topic_length + 4] = ((id - id % 10) / 10) + '0';
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PWM_STATE_TOPIC[base_topic_length + 5] = (id % 10) + '0';
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PWM_VALUE_TOPIC[base_topic_length + 4] = ((id - id % 10) / 10) + '0';
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PWM_VALUE_TOPIC[base_topic_length + 5] = (id % 10) + '0';
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if (state == 1)
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{
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mqtt.publish(PWM_STATE_TOPIC, "on");
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@ -905,15 +893,6 @@ void publish_pwm_state(int id)
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{
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mqtt.publish(PWM_STATE_TOPIC, "off");
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}
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}
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void publish_pwm_value(int id)
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{
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if (!pwm_report_enable)
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return;
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int value = pwm_values[id];
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PWM_VALUE_TOPIC[base_topic_length + 4] = ((id - id % 10) / 10) + '0';
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PWM_VALUE_TOPIC[base_topic_length + 5] = (id % 10) + '0';
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char temp[6];
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itoa(value, temp, DEC);
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mqtt.publish(PWM_VALUE_TOPIC, temp);
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@ -960,7 +939,7 @@ void pwm_set_value(int id, int value)
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else if (lcd_current_page == 5 && id == lcd_pwmAdj_id)
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panel.writeNum("pwm_value.val", pwm_values[lcd_pwmAdj_id]);
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#endif
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publish_pwm_value(id);
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publish_pwm_state(id);
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pwm_changed_user_callback(id);
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}
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@ -1076,11 +1055,6 @@ void publish_input_state(int id, int state)
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mqtt.publish(INPUTS_TOPIC, state ? "1" : "0");
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}
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void pwm_set_publish_callback(char *topic, uint8_t topic_length, char *payload, unsigned int payload_length)
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{
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pwm_report_enable = !strcmp(payload, "on");
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}
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/**
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* @brief Callback function to request the current state of the device.
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*
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@ -1091,7 +1065,6 @@ void state_request_callback()
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{
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publish_input_states();
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publish_pwm_states();
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pwm_report_enable = true;
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#ifdef ENABLE_CLIMATE_MODULE
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publish_ac_state();
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publish_env_state();
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@ -1918,10 +1891,10 @@ void factory_reset()
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set_ip("192.168.0.10");
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set_gw("192.168.0.1");
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set_netmask("255.255.255.0");
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#ifdef ENABLE_WEBUI
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#ifdef ENABLE_WEBUI
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set_webui_username("admin");
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set_webui_password("admin");
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#endif
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#endif
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// Reboot
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#ifdef ENABLE_INTERNAL_LCD
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@ -1975,7 +1948,7 @@ void disable_adc(int id)
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/**
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* Publishes the state of an ADC (Analog-to-Digital Converter) to the MQTT broker.
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*
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*
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* @param id The ID of the ADC.
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*/
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void publish_adc_state(int id)
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@ -1987,7 +1960,7 @@ void publish_adc_state(int id)
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/**
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* @brief Publishes the ADC states.
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*
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*
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* This function iterates over the ADC channels and publishes the state of each channel.
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*/
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void publish_adc_states()
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@ -2077,7 +2050,7 @@ void publish_adc_values()
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/**
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* Publishes the state of a DAC (Digital-to-Analog Converter) to the MQTT broker.
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*
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*
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* @param id The ID of the DAC.
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*/
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void publish_dac_state(int id)
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@ -2089,7 +2062,7 @@ void publish_dac_state(int id)
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/**
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* Publishes the DAC value for a given ID.
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*
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*
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* @param id The ID of the DAC value to publish.
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*/
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void publish_dac_value(int id)
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@ -2181,9 +2154,9 @@ void dac_set_state(int id, bool state)
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/**
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* @brief Publishes the states of all DACs.
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*
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*
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* This function iterates through all DACs and publishes their states.
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*
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*
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* @return void
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*/
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void publish_dac_states()
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@ -2196,9 +2169,9 @@ void publish_dac_states()
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/**
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* @brief Publishes the DAC values.
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*
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*
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* This function iterates through all the DAC channels and publishes their values.
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*
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*
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* @return void
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*/
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void publish_dac_values()
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@ -2253,7 +2226,7 @@ void dac_set_state_callback(char *topic, uint8_t topic_length, char *payload, un
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/**
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* @brief Get the ADC value for the specified ID.
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*
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*
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* @param id The ID of the ADC channel.
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* @return The ADC value.
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*/
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@ -2263,7 +2236,7 @@ uint16_t adc_get_value(int id)
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}
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/**
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* @brief Get the state of the ADC with the specified ID.
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*
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*
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* @param id The ID of the ADC.
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* @return true if the ADC is enabled, false otherwise.
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*/
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@ -2273,7 +2246,7 @@ bool adc_get_state(int id)
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}
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/**
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* @brief Get the value of a DAC channel.
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*
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*
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* @param id The ID of the DAC channel.
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* @return The value of the DAC channel.
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*/
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@ -2283,7 +2256,7 @@ uint16_t dac_get_value(int id)
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}
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/**
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* @brief Get the state of the DAC with the specified ID.
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*
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*
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* @param id The ID of the DAC.
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* @return The state of the DAC.
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*/
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@ -2294,10 +2267,8 @@ bool dac_get_state(int id)
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#endif
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void virtual_interrupt_preload()
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{
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for (int i = 0; i < 16; i++)
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{
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void virtual_interrupt_preload() {
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for (int i = 0; i < 16; i++) {
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virtual_interupt_state[i] = ESPMega_digitalRead(virtual_interrupt_pins[i]);
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}
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}
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@ -61,7 +61,6 @@ void ota_begin();
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void publish_pwm_states();
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void publish_pwm_state(int id);
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void publish_pwm_value(int id);
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void pwm_set_state(int id, int state);
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void pwm_set_value(int id, int value);
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void pwm_toggle(int id);
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@ -158,6 +157,4 @@ void publish_adc_states();
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uint16_t adc_get_value(int id);
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bool adc_get_state(int id);
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uint16_t dac_get_value(int id);
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bool dac_get_state(int id);
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void pwm_set_publish_callback(char *topic, uint8_t topic_length, char *payload, unsigned int payload_length);
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bool dac_get_state(int id);
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