/*
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BUTTON MODULE
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Copyright (C) 2016-2018 by Xose Pérez <xose dot perez at gmail dot com>
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Module key prefix: btn
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*/
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// -----------------------------------------------------------------------------
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// BUTTON
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// -----------------------------------------------------------------------------
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#if BUTTON_SUPPORT
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#include <DebounceEvent.h>
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#include <vector>
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typedef struct {
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DebounceEvent * button;
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unsigned long actions;
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unsigned int relayID;
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} button_t;
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std::vector<button_t> _buttons;
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#if MQTT_SUPPORT
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void buttonMQTT(unsigned char id, uint8_t event) {
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if (id >= _buttons.size()) return;
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char payload[2];
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itoa(event, payload, 10);
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mqttSend(MQTT_TOPIC_BUTTON, id, payload, false, false); // 1st bool = force, 2nd = retain
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}
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#endif
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#if WEB_SUPPORT
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void _buttonWebSocketOnSend(JsonObject& root) {
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root["btnDelay"] = getSetting("btnDelay", BUTTON_DBLCLICK_DELAY).toInt();
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}
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#endif
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bool _buttonKeyCheck(const char * key) {
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return (strncmp(key, "btn", 3) == 0);
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}
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unsigned char _buttonGetAction(unsigned char id, unsigned char event) {
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if (id >= _buttons.size()) return BUTTON_MODE_NONE;
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unsigned long actions = _buttons[id].actions;
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if (event == BUTTON_EVENT_PRESSED) return (actions) & 0x0F;
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if (event == BUTTON_EVENT_CLICK) return (actions >> 4) & 0x0F;
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if (event == BUTTON_EVENT_DBLCLICK) return (actions >> 8) & 0x0F;
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if (event == BUTTON_EVENT_LNGCLICK) return (actions >> 12) & 0x0F;
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if (event == BUTTON_EVENT_LNGLNGCLICK) return (actions >> 16) & 0x0F;
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if (event == BUTTON_EVENT_TRIPLECLICK) return (actions >> 20) & 0x0F;
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return BUTTON_MODE_NONE;
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}
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unsigned long _buttonGetActionMask(unsigned char id) {
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unsigned long pressAction = getSetting("btnPress", id, BUTTON_MODE_NONE).toInt();
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unsigned long clickAction = getSetting("btnClick", id, BUTTON_MODE_TOGGLE).toInt();
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unsigned long dblClickAction = getSetting("btnDblClick", id, (id == 0) ? BUTTON_MODE_AP : BUTTON_MODE_NONE).toInt();
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unsigned long lngClickAction = getSetting("btnLngClick", id, (id == 0) ? BUTTON_MODE_RESET : BUTTON_MODE_NONE).toInt();
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unsigned long lnglngClickAction = getSetting("btnLngLngClick", id, (id == 0) ? BUTTON_MODE_FACTORY : BUTTON_MODE_NONE).toInt();
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unsigned long tripleClickAction = getSetting("btnTripleClick", id, (id == 0) ? BUTTON_MODE_NONE : BUTTON_MODE_NONE).toInt();
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unsigned long value;
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value = pressAction;
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value += clickAction << 4;
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value += dblClickAction << 8;
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value += lngClickAction << 12;
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value += lnglngClickAction << 16;
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value += tripleClickAction << 20;
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return value;
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}
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uint8_t _buttonGetEvent(uint8_t event, uint8_t count, uint16_t length) {
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if (event == EVENT_PRESSED) return BUTTON_EVENT_PRESSED;
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if (event == EVENT_CHANGED) return BUTTON_EVENT_CLICK;
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if (event == EVENT_RELEASED) {
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if (1 == count) {
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if (length > BUTTON_LNGLNGCLICK_DELAY) return BUTTON_EVENT_LNGLNGCLICK;
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if (length > BUTTON_LNGCLICK_DELAY) return BUTTON_EVENT_LNGCLICK;
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return BUTTON_EVENT_CLICK;
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}
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if (2 == count) return BUTTON_EVENT_DBLCLICK;
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if (3 == count) return BUTTON_EVENT_TRIPLECLICK;
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}
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return BUTTON_EVENT_NONE;
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}
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void _buttonExecuteEvent(unsigned int id, unsigned char event) {
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DEBUG_MSG_P(PSTR("[BUTTON] Button #%u event %u\n"), id, event);
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if (event == 0) return;
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unsigned char action = _buttonGetAction(id, event);
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#if MQTT_SUPPORT
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if (action != BUTTON_MODE_NONE || BUTTON_MQTT_SEND_ALL_EVENTS) {
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buttonMQTT(id, event);
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}
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#endif
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if (action == BUTTON_MODE_TOGGLE) {
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if (RELAY_NONE != _buttons[id].relayID) {
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relayToggle(_buttons[id].relayID);
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}
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}
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if (action == BUTTON_MODE_ON) {
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if (RELAY_NONE != _buttons[id].relayID) {
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relayStatus(_buttons[id].relayID, true);
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}
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}
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if (action == BUTTON_MODE_OFF) {
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if (RELAY_NONE != _buttons[id].relayID) {
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relayStatus(_buttons[id].relayID, false);
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}
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}
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if (action == BUTTON_MODE_AP) wifiStartAP();
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#if defined(JUSTWIFI_ENABLE_WPS)
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if (action == BUTTON_MODE_WPS) wifiStartWPS();
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#endif // defined(JUSTWIFI_ENABLE_WPS)
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#if defined(JUSTWIFI_ENABLE_SMARTCONFIG)
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if (action == BUTTON_MODE_SMART_CONFIG) wifiStartSmartConfig();
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#endif // defined(JUSTWIFI_ENABLE_SMARTCONFIG)
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if (action == BUTTON_MODE_RESET) {
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deferredReset(100, CUSTOM_RESET_HARDWARE);
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}
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if (action == BUTTON_MODE_FACTORY) {
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DEBUG_MSG_P(PSTR("\n\nFACTORY RESET\n\n"));
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resetSettings();
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deferredReset(100, CUSTOM_RESET_FACTORY);
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}
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}
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void _buttonClear() {
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for (unsigned char i = 0; i < _buttons.size(); i++) {
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button_t element = _buttons[i];
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delete(element.button);
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}
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_buttons.clear();
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}
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void _buttonConfigure() {
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_buttonClear();
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#ifdef ITEAD_SONOFF_DUAL
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unsigned char relayId = getSetting("btnRelay", 2, RELAY_NONE).toInt();
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unsigned long actions = BUTTON_MODE_TOGGLE << 4;
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_buttons.push_back({new DebounceEvent(0, BUTTON_PUSHBUTTON), actions, 1});
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_buttons.push_back({new DebounceEvent(0, BUTTON_PUSHBUTTON), actions, 2});
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_buttons.push_back({new DebounceEvent(0, BUTTON_PUSHBUTTON), actions, relayId});
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#else
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// TODO: maybe this setting should be changed, btnDelay => btnClickDelay?
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unsigned long btnDelay = getSetting("btnDelay", BUTTON_DBLCLICK_DELAY).toInt();
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unsigned char index = 0;
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while (index < MAX_COMPONENTS) {
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unsigned char pin = getSetting("btnGPIO", index, GPIO_NONE).toInt();
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if (GPIO_NONE == pin) break;
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unsigned char relayId = getSetting("btnRelay", index, RELAY_NONE).toInt();
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unsigned char mode = getSetting("btnMode", index, BUTTON_PUSHBUTTON | BUTTON_DEFAULT_HIGH).toInt();
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unsigned long actions = _buttonGetActionMask(index);
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// DebounceEvent takes 4 parameters
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// * GPIO
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// * Button mode
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// * Debounce delay
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// * Wait delay for more clicks
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_buttons.push_back({new DebounceEvent(pin, mode, BUTTON_DEBOUNCE_DELAY, btnDelay), actions, relayId});
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++index;
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}
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#endif
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DEBUG_MSG_P(PSTR("[BUTTON] Buttons: %u\n"), _buttons.size());
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}
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void _buttonLoop() {
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#ifdef ITEAD_SONOFF_DUAL
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if (Serial.available() >= 4) {
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if (Serial.read() == 0xA0) {
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if (Serial.read() == 0x04) {
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unsigned char value = Serial.read();
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if (Serial.read() == 0xA1) {
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// RELAYs and BUTTONs are synchonized in the SIL F330
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// The on-board BUTTON2 should toggle RELAY0 value
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// Since we are not passing back RELAY2 value
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// (in the relayStatus method) it will only be present
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// here if it has actually been pressed
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if ((value & 4) == 4) {
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_buttonExecuteEvent(2, BUTTON_EVENT_CLICK);
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return;
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}
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// Otherwise check if any of the other two BUTTONs
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// (in the header) has been pressed, but we should
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// ensure that we only toggle one of them to avoid
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// the synchronization going mad
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// This loop is generic for any PSB-04 module
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for (unsigned int i=0; i<relayCount(); i++) {
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bool status = (value & (1 << i)) > 0;
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// Check if the status for that relay has changed
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if (relayStatus(i) != status) {
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_buttonExecuteEvent(i, BUTTON_EVENT_CLICK);
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break;
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}
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}
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}
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}
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}
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}
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#else
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for (unsigned int i=0; i < _buttons.size(); i++) {
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if (unsigned char event = _buttons[i].button->loop()) {
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unsigned char count = _buttons[i].button->getEventCount();
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unsigned long length = _buttons[i].button->getEventLength();
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unsigned char mapped = _buttonGetEvent(event, count, length);
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_buttonExecuteEvent(i, mapped);
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}
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}
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#endif
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}
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// -----------------------------------------------------------------------------
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void buttonSetup() {
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_buttonConfigure();
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// Websocket Callbacks
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#if WEB_SUPPORT
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wsOnSendRegister(_buttonWebSocketOnSend);
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#endif
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settingsRegisterKeyCheck(_buttonKeyCheck);
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// Register loop
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espurnaRegisterReload(_buttonConfigure);
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espurnaRegisterLoop(_buttonLoop);
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}
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#endif // BUTTON_SUPPORT
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