cud_iot_cpp
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39a08fadce
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@ -1,5 +1,10 @@
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#include <user_code.hpp>
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#include <user_code.hpp>
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// AC Control Locking
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char AC_LOCK_TOPIC[75];
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#define AC_LOCK_ADDRESS 15002
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bool ac_lock = false;
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// Display Componets
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// Display Componets
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NexText clock_txt = NexText(1, 2, "clock");
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NexText clock_txt = NexText(1, 2, "clock");
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NexDSButton lt_bt = NexDSButton(1, 3, "lt_bt");
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NexDSButton lt_bt = NexDSButton(1, 3, "lt_bt");
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@ -14,6 +19,8 @@ NexButton fan_auto_btn = NexButton(1, 11, "fan_auto_btn");
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NexButton fan_1_btn = NexButton(1, 12, "fan_1_btn");
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NexButton fan_1_btn = NexButton(1, 12, "fan_1_btn");
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NexButton fan_2_btn = NexButton(1, 13, "fan_2_btn");
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NexButton fan_2_btn = NexButton(1, 13, "fan_2_btn");
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NexButton fan_3_btn = NexButton(1, 14, "fan_3_btn");
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NexButton fan_3_btn = NexButton(1, 14, "fan_3_btn");
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NexText temperature_txt = NexText(1, 15, "temperature");
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NexPage dashboard_page = NexPage(1, 0, "dashboard");
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// List of Component ID Message to listen to
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// List of Component ID Message to listen to
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NexTouch *nex_listen_list[] =
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NexTouch *nex_listen_list[] =
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@ -50,6 +57,16 @@ void user_init()
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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memcpy(AC_LOCK_TOPIC, MQTT_BASE_TOPIC, 20);
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strcat(AC_LOCK_TOPIC, "/ac/lock");
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ac_lock = ESPMega_FRAM.read8(AC_LOCK_ADDRESS);
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ac_lock = ac_lock > 1 ? 0 : ac_lock;
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ESPMega_EXTLCD.print("dashboard.pic=");
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ESPMega_EXTLCD.print(ac_lock ? "2" : "1");
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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mqtt.subscribe(AC_LOCK_TOPIC, ac_lock_callback);
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lt_bt.attachPop(lt_btn_cb, <_bt);
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lt_bt.attachPop(lt_btn_cb, <_bt);
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fan_bt.attachPop(fan_btn_cb, &fan_bt);
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fan_bt.attachPop(fan_btn_cb, &fan_bt);
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puri_bt.attachPop(puri_btn_cb, &puri_bt);
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puri_bt.attachPop(puri_btn_cb, &puri_bt);
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@ -77,6 +94,9 @@ This code will run when an input pin changed state
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*/
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*/
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void virtual_interrupt_user_callback(int pin, int state)
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void virtual_interrupt_user_callback(int pin, int state)
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{
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{
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if (pin>=0&pin<=7){
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pwm_toggle(pin);
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}
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}
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}
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void pwm_changed_user_callback(int pin)
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void pwm_changed_user_callback(int pin)
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@ -120,12 +140,40 @@ void puri_btn_cb(void *comp)
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}
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}
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void ac_temp_adj_btn_cb(void *comp)
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void ac_temp_adj_btn_cb(void *comp)
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{
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{
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if (!ac_lock)
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{
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uint8_t new_temp = ac_get_temperature();
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if (comp == &up_bt)
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ac_set_state(ac_get_mode(), ac_get_temperature() + 1, ac_get_fan_speed());
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else if (comp == &down_bt)
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ac_set_state(ac_get_mode(), ac_get_temperature() - 1, ac_get_fan_speed());
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}
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}
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}
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void ac_mode_adj_btn_cb(void *comp)
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void ac_mode_adj_btn_cb(void *comp)
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{
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{
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if (!ac_lock)
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{
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if (comp == &mode_off_btn)
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ac_set_state(0, ac_get_temperature(), ac_get_fan_speed());
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else if (comp == &mode_fan_btn)
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ac_set_state(1, ac_get_temperature(), ac_get_fan_speed());
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else if (comp == &mode_cool_btn)
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ac_set_state(2, ac_get_temperature(), ac_get_fan_speed());
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}
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}
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}
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void ac_fan_adj_btn_cb(void *comp)
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void ac_fan_adj_btn_cb(void *comp)
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{
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{
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if (!ac_lock)
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{
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if (comp == &fan_auto_btn)
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ac_set_state(ac_get_mode(), ac_get_temperature(), 0);
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else if (comp == &fan_1_btn)
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ac_set_state(ac_get_mode(), ac_get_temperature(), 1);
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else if (comp == &fan_2_btn)
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ac_set_state(ac_get_mode(), ac_get_temperature(), 2);
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else if (comp == &fan_3_btn)
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ac_set_state(ac_get_mode(), ac_get_temperature(), 3);
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}
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}
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}
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void cud_light_toggle()
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void cud_light_toggle()
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@ -150,4 +198,41 @@ void cud_fan_toggle()
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bool cud_fan_group_state()
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bool cud_fan_group_state()
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{
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{
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return pwm_get_state(FAN1_PIN) || pwm_get_state(FAN2_PIN) || pwm_get_state(FAN3_PIN);
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return pwm_get_state(FAN1_PIN) || pwm_get_state(FAN2_PIN) || pwm_get_state(FAN3_PIN);
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}
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void ac_changed_user_callback(int mode, int temperature, int fan_speed)
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{
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char temp_text[3] = {(temperature - temperature % 10) + '0', (temperature % 10) + '0', 'C'};
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temperature_txt.setText(temp_text);
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mode_off_btn.Set_background_image_pic(mode == 0 ? 1 : 0);
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mode_fan_btn.Set_background_image_pic(mode == 1 ? 1 : 0);
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mode_cool_btn.Set_background_image_pic(mode == 2 ? 1 : 0);
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fan_auto_btn.Set_background_image_pic(fan_speed == 0 ? 1 : 0);
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fan_1_btn.Set_background_image_pic(fan_speed == 1 ? 1 : 0);
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fan_2_btn.Set_background_image_pic(fan_speed == 2 ? 1 : 0);
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fan_3_btn.Set_background_image_pic(fan_speed == 3 ? 1 : 0);
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}
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void ac_lock_callback(String topic, String payload)
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{
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if (payload.equals("lock"))
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{
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ac_lock = true;
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ESPMega_FRAM.write8(AC_LOCK_ADDRESS, ac_lock);
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ESPMega_EXTLCD.print("dashboard.pic=");
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ESPMega_EXTLCD.print(ac_lock ? "2" : "1");
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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}
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else if (payload.equals("unlock"))
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{
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ac_lock = false;
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ESPMega_FRAM.write8(AC_LOCK_ADDRESS, ac_lock);
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ESPMega_EXTLCD.print("dashboard.pic=");
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ESPMega_EXTLCD.print(ac_lock ? "2" : "1");
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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ESPMega_EXTLCD.write(0xFF);
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}
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}
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}
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@ -59,6 +59,7 @@ void cud_light_toggle();
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bool cud_light_group_state();
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bool cud_light_group_state();
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void cud_fan_toggle();
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void cud_fan_toggle();
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bool cud_fan_group_state();
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bool cud_fan_group_state();
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void ac_lock_callback(String topic, String payload);
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// ESPMega IoT Core Build-in Functions
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// ESPMega IoT Core Build-in Functions
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extern uint8_t ac_get_fan_speed();
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extern uint8_t ac_get_fan_speed();
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extern bool standalone;
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extern bool standalone;
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extern PubSubClient mqtt_client;
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extern PubSubClient mqtt_client;
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extern PubSubClientTools mqtt;
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extern PubSubClientTools mqtt;
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extern char MQTT_BASE_TOPIC[];
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