first functional product
This commit is contained in:
parent
8c64463b46
commit
e88760c299
5 changed files with 121 additions and 26 deletions
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@ -12,5 +12,6 @@
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platform = espressif32
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board = wt32-eth01
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framework = arduino
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lib_deps = siwats/ESPMegaProR3@^2.0.4
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monitor_speed = 115200
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lib_deps = siwats/ESPMegaProR3@^2.0.7
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monitor_speed = 115200
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;build_flags = -DCORE_DEBUG_LEVEL=5
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@ -15,9 +15,11 @@ void CUDDisplay::begin(std::function<rtctime_t()> getTime, DigitalInputCard *inp
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auto bindedHandlePWMChange = std::bind(&CUDDisplay::handlePWMChange, this, std::placeholders::_1, std::placeholders::_2);
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auto bindedHandleACChange = std::bind(&CUDDisplay::handleACChange, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3);
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auto bindedHandleTouch = std::bind(&CUDDisplay::handleTouch, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3);
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auto bindedHandlePayload = std::bind(&CUDDisplay::handlePayload, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3);
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this->outputCallbackHandle = this->outputCard->registerChangeCallback(bindedHandlePWMChange);
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this->climateCallbackHandle = this->climateCard->registerChangeCallback(bindedHandleACChange);
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this->registerTouchCallback(bindedHandleTouch);
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this->registerPayloadCallback(bindedHandlePayload);
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this->reset();
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delay(1000);
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this->jumpToPage(1);
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@ -91,7 +93,7 @@ void CUDDisplay::handleTouch(uint8_t page, uint8_t component, uint8_t event)
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if (!ac_control_enabled) break;
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if (event != TOUCH_TYPE_RELEASE)
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break;
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this->climateCard->setFanSpeed(1);
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this->climateCard->setFanSpeed(3);
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break;
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case COMPONENT_AC_FAN_MODE_MEDIUM_BUTTON:
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if (!ac_control_enabled) break;
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@ -103,7 +105,7 @@ void CUDDisplay::handleTouch(uint8_t page, uint8_t component, uint8_t event)
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if (!ac_control_enabled) break;
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if (event != TOUCH_TYPE_RELEASE)
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break;
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this->climateCard->setFanSpeed(3);
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this->climateCard->setFanSpeed(1);
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break;
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default:
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break;
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@ -165,7 +167,7 @@ bool CUDDisplay::calculateFanGroupState() {
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// Check if all fans are on
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bool fanOn = false;
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for (uint8_t i = 4; i < 7; i++) {
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if (this->outputCard->getState(i) == 0) {
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if (this->outputCard->getState(i)) {
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fanOn = true;
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break;
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}
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@ -243,13 +245,13 @@ void CUDDisplay::updateACState() {
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this->displayAdapter->print(fan_speed == 0 ? COMPONENT_AC_FAN_MODE_AUTO_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_AUTO_PIC_INACTIVE);
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this->sendStopBytes();
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this->displayAdapter->print("fan_1_btn.pic=");
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this->displayAdapter->print(fan_speed == 1 ? COMPONENT_AC_FAN_MODE_HIGH_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_HIGH_PIC_INACTIVE);
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this->displayAdapter->print(fan_speed == 3 ? COMPONENT_AC_FAN_MODE_HIGH_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_HIGH_PIC_INACTIVE);
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this->sendStopBytes();
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this->displayAdapter->print("fan_2_btn.pic=");
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this->displayAdapter->print(fan_speed == 2 ? COMPONENT_AC_FAN_MODE_MEDIUM_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_MEDIUM_PIC_INACTIVE);
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this->sendStopBytes();
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this->displayAdapter->print("fan_3_btn.pic=");
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this->displayAdapter->print(fan_speed == 3 ? COMPONENT_AC_FAN_MODE_LOW_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_LOW_PIC_INACTIVE);
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this->displayAdapter->print(fan_speed == 1 ? COMPONENT_AC_FAN_MODE_LOW_PIC_ACTIVE : COMPONENT_AC_FAN_MODE_LOW_PIC_INACTIVE);
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this->sendStopBytes();
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this->displayAdapter->print("temp_txt.txt=\"");
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this->displayAdapter->print(temperature);
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@ -265,4 +267,9 @@ void CUDDisplay::setACControlEnabled(bool enabled) {
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}
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bool CUDDisplay::getACControlEnabled() {
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return ac_control_enabled;
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}
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void CUDDisplay::handlePayload(uint8_t payload_type, uint8_t *payload, uint8_t length)
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{
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}
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@ -47,14 +47,14 @@ Pin Mapping
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#define COMPONENT_AC_FAN_MODE_AUTO_PIC_ACTIVE 20
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#define COMPONENT_AC_FAN_MODE_AUTO_PIC_INACTIVE 19
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#define COMPONENT_AC_FAN_MODE_LOW_BUTTON 8
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#define COMPONENT_AC_FAN_MODE_LOW_PIC_ACTIVE 22
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#define COMPONENT_AC_FAN_MODE_LOW_PIC_INACTIVE 21
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#define COMPONENT_AC_FAN_MODE_LOW_PIC_ACTIVE 26
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#define COMPONENT_AC_FAN_MODE_LOW_PIC_INACTIVE 25
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#define COMPONENT_AC_FAN_MODE_MEDIUM_BUTTON 9
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#define COMPONENT_AC_FAN_MODE_MEDIUM_PIC_ACTIVE 24
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#define COMPONENT_AC_FAN_MODE_MEDIUM_PIC_INACTIVE 23
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#define COMPONENT_AC_FAN_MODE_HIGH_BUTTON 10
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#define COMPONENT_AC_FAN_MODE_HIGH_PIC_ACTIVE 26
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#define COMPONENT_AC_FAN_MODE_HIGH_PIC_INACTIVE 25
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#define COMPONENT_AC_FAN_MODE_HIGH_PIC_ACTIVE 22
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#define COMPONENT_AC_FAN_MODE_HIGH_PIC_INACTIVE 21
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#define COMPONENT_BACKGROUND_AC_LOCK 2
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#define COMPONENT_BACKGROUND_AC_UNLOCK 1
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@ -71,6 +71,7 @@ class CUDDisplay : public ESPMegaDisplay {
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void handleTouch(uint8_t page, uint8_t component, uint8_t event);
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void handlePWMChange(uint8_t pin, uint8_t value);
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void handleACChange(uint8_t mode, uint8_t fan_speed, uint8_t temperature);
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void handlePayload(uint8_t payload_type, uint8_t* payload, uint8_t length);
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void sendClock();
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void setACControlEnabled(bool enabled);
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bool getACControlEnabled();
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109
src/main.cpp
109
src/main.cpp
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@ -2,8 +2,8 @@
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#include <cud_display.hpp>
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/***********************************************
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* Begin Configuration *
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************************************************/
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* Begin Configuration *
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************************************************/
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// Display Configuration
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#define cudDisplayAdapter Serial2
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@ -11,7 +11,10 @@
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#define CUD_DISPLAY_TX_PIN 4
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#define CUD_DISPLAY_RX_PIN 17
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//Air Conditioner Configuration
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// Air Conditioner Configuration
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#define AIR_CONDITIONER_LOCK_FRAM_ADDRESS 4900
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#define AIR_CONDITIONER_LOCK_RELATIVE_TOPIC "ac_lock"
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#define AIR_CONDITIONER_LOCK_SET_RELATIVE_TOPIC "ac_lock/set"
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#define AIR_CONDITIONER_SENSOR_TYPE AC_SENSOR_TYPE_DHT22
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#define AIR_CONDITIONER_SENSOR_PIN 32
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#define AIR_CONDITIONER_IR_PIN 5
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@ -27,8 +30,7 @@ AirConditioner ac = {
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.mode_names = mode_names,
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.fan_speeds = 4,
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.fan_speed_names = fan_speed_names,
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.getInfraredCode = &getInfraredCode
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};
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.getInfraredCode = &getInfraredCode};
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/***********************************************
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* End Configuration *
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@ -37,42 +39,119 @@ AirConditioner ac = {
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ESPMegaPRO espmega = ESPMegaPRO();
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CUDDisplay cudDisplay = CUDDisplay(&cudDisplayAdapter);
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ClimateCard climateCard = ClimateCard(AIR_CONDITIONER_IR_PIN, ac,
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AIR_CONDITIONER_SENSOR_TYPE, AIR_CONDITIONER_SENSOR_PIN,
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AIR_CONDITIONER_RMT_CHANNEL);
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ClimateCard climateCard = ClimateCard(AIR_CONDITIONER_IR_PIN, ac,
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AIR_CONDITIONER_SENSOR_TYPE, AIR_CONDITIONER_SENSOR_PIN,
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AIR_CONDITIONER_RMT_CHANNEL);
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void setup() {
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void handleMqttMessage(char *topic, char *payload)
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{
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Serial.printf("MQTT Message: %s %s\n", topic, payload);
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if (!strcmp(topic, AIR_CONDITIONER_LOCK_SET_RELATIVE_TOPIC))
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{
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if (!strcmp(payload, "lock"))
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{
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lockAC();
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espmega.iot->publishRelative(AIR_CONDITIONER_LOCK_RELATIVE_TOPIC, "lock");
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}
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else if (!strcmp(payload, "unlock"))
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{
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unlockAC();
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espmega.iot->publishRelative(AIR_CONDITIONER_LOCK_RELATIVE_TOPIC, "unlock");
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}
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}
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}
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void lockAC()
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{
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espmega.fram.write8(AIR_CONDITIONER_LOCK_FRAM_ADDRESS, 0);
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cudDisplay.setACControlEnabled(false);
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}
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void unlockAC()
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{
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espmega.fram.write8(AIR_CONDITIONER_LOCK_FRAM_ADDRESS, 1);
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cudDisplay.setACControlEnabled(true);
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}
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void sendStopBytes()
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{
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Serial.write(0xFF);
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Serial.write(0xFF);
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Serial.write(0xFF);
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}
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void sendExtStopBytes()
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{
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cudDisplayAdapter.write(0xFF);
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cudDisplayAdapter.write(0xFF);
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cudDisplayAdapter.write(0xFF);
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}
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void setup()
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{
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Serial.begin(115200);
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cudDisplayAdapter.begin(CUD_DISPLAY_BAUD_RATE, SERIAL_8N1, CUD_DISPLAY_RX_PIN, CUD_DISPLAY_TX_PIN);
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sendExtStopBytes();
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cudDisplayAdapter.print("rest");
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sendExtStopBytes();
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sendStopBytes();
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Serial.print("rest");
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sendStopBytes();
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Serial.print("boot_state.txt=\"Core Initializing . . .\"");
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sendStopBytes();
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espmega.begin();
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Serial.print("boot_state.txt=\"IoT Initializing . . .\"");
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sendStopBytes();
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espmega.enableIotModule();
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ETH.begin();
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espmega.iot->bindEthernetInterface(Ð);
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Serial.print("boot_state.txt=\"Network Initializing . . .\"");
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sendStopBytes();
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espmega.iot->loadNetworkConfig();
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espmega.iot->connectNetwork();
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Serial.print("boot_state.txt=\"MQTT Initializing . . .\"");
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sendStopBytes();
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espmega.iot->loadMqttConfig();
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espmega.iot->connectToMqtt();
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Serial.print("boot_state.txt=\"Display Initializing . . .\"");
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espmega.enableInternalDisplay(&Serial);
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espmega.enableWebServer(80);
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espmega.inputs.registerCallback(on_pin_change);
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espmega.outputs.setAutoSaveToFRAM(true);
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espmega.installCard(3, &climateCard);
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espmega.installCard(2, &climateCard);
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climateCard.bindFRAM(&espmega.fram, 5000);
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climateCard.loadStateFromFRAM();
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climateCard.setFRAMAutoSave(true);
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espmega.display->bindClimateCard(&climateCard);
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espmega.iot->registerCard(3);
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cudDisplayAdapter.begin(CUD_DISPLAY_BAUD_RATE, SERIAL_8N1, CUD_DISPLAY_RX_PIN, CUD_DISPLAY_TX_PIN);
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espmega.iot->registerCard(0); // Register the Input Card
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espmega.iot->registerCard(1); // Register the Output Card
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espmega.iot->registerCard(2); // Register the Climate Card
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auto bindedGetTime = std::bind(&ESPMegaPRO::getTime, &espmega);
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cudDisplay.begin(bindedGetTime, &espmega.inputs, &espmega.outputs, &climateCard);
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if (espmega.fram.read8(AIR_CONDITIONER_LOCK_FRAM_ADDRESS))
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{
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lockAC();
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}
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else
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{
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// AC is unlocked
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unlockAC();
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}
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espmega.iot->subscribeRelative(AIR_CONDITIONER_LOCK_SET_RELATIVE_TOPIC);
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espmega.iot->registerRelativeMqttCallback(&handleMqttMessage);
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}
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void loop() {
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void loop()
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{
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espmega.loop();
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cudDisplay.loop();
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}
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void on_pin_change(uint8_t pin, uint8_t value) {
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void on_pin_change(uint8_t pin, uint8_t value)
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{
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// For pin 0-6, when the pin value changes, toggle the corresponding PWM pin
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if (pin < 7) {
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if (pin < 7)
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{
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bool new_value = !espmega.outputs.getState(pin);
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espmega.outputs.digitalWrite(pin, new_value);
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}
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@ -3,6 +3,13 @@
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#include <cud_display.hpp>
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#include <ir_codes.hpp>
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void handleMqttMessage(char *topic, char *payload);
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void lockAC();
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void unlockAC();
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void sendStopBytes();
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void sendExtStopBytes();
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void setup();
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void loop();
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