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esp32-core/libraries/Matter/examples/MatterDimmablePlugin/MatterDimmablePlugin.ino
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2026-05-22 21:52:50 +03:00

187 lines
7.4 KiB
Arduino

// Copyright 2025 Espressif Systems (Shanghai) PTE LTD
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// Matter Manager
#include <Matter.h>
#if !CONFIG_ENABLE_CHIPOBLE
// if the device can be commissioned using BLE, WiFi is not used - save flash space
#include <WiFi.h>
#endif
#include <Preferences.h>
// List of Matter Endpoints for this Node
// Dimmable Plugin Endpoint
MatterDimmablePlugin DimmablePlugin;
// CONFIG_ENABLE_CHIPOBLE is enabled when BLE is used to commission the Matter Network
#if !CONFIG_ENABLE_CHIPOBLE
// WiFi is manually set and started
const char *ssid = "your-ssid"; // Change this to your WiFi SSID
const char *password = "your-password"; // Change this to your WiFi password
#endif
// it will keep last OnOff & Level state stored, using Preferences
Preferences matterPref;
const char *onOffPrefKey = "OnOff";
const char *levelPrefKey = "Level";
// set your board RGB LED pin here
#ifdef RGB_BUILTIN
const uint8_t pluginPin = RGB_BUILTIN; // Using built-in RGB LED for visualization
#else
const uint8_t pluginPin = 2; // Set your pin here if your board has not defined RGB_BUILTIN
#warning "Do not forget to set the RGB LED pin"
#endif
// set your board USER BUTTON pin here
const uint8_t buttonPin = BOOT_PIN; // Set your pin here. Using BOOT Button.
// Button control
uint32_t button_time_stamp = 0; // debouncing control
bool button_state = false; // false = released | true = pressed
const uint32_t debounceTime = 250; // button debouncing time (ms)
const uint32_t decommissioningTimeout = 5000; // keep the button pressed for 5s, or longer, to decommission
// Set the RGB LED Plugin output based on the current state and level
bool setPluginState(bool state, uint8_t level) {
Serial.printf("User Callback :: New Plugin State = %s, Level = %d\r\n", state ? "ON" : "OFF", level);
if (state) {
// Plugin is ON - set RGB LED level (0-255 maps to 0-100% power)
#ifdef RGB_BUILTIN
rgbLedWrite(pluginPin, level, level, level);
#else
analogWrite(pluginPin, level);
#endif
} else {
// Plugin is OFF - turn off output
#ifndef RGB_BUILTIN
// After analogWrite(), it is necessary to set the GPIO to digital mode first
pinMode(pluginPin, OUTPUT);
#endif
digitalWrite(pluginPin, LOW);
}
// store last Level and OnOff state for when the Plugin is restarted / power goes off
matterPref.putUChar(levelPrefKey, level);
matterPref.putBool(onOffPrefKey, state);
// This callback must return the success state to Matter core
return true;
}
void setup() {
// Initialize the USER BUTTON (Boot button) GPIO that will act as a toggle switch
pinMode(buttonPin, INPUT_PULLUP);
// Initialize the RGB LED (plugin) GPIO
pinMode(pluginPin, OUTPUT);
digitalWrite(pluginPin, LOW); // Start with plugin off
Serial.begin(115200);
// CONFIG_ENABLE_CHIPOBLE is enabled when BLE is used to commission the Matter Network
#if !CONFIG_ENABLE_CHIPOBLE
// We start by connecting to a WiFi network
Serial.print("Connecting to ");
Serial.println(ssid);
// Manually connect to WiFi
WiFi.begin(ssid, password);
// Wait for connection
while (WiFi.status() != WL_CONNECTED) {
delay(500);
Serial.print(".");
}
Serial.println("\r\nWiFi connected");
Serial.println("IP address: ");
Serial.println(WiFi.localIP());
delay(500);
#endif
// Initialize Matter EndPoint
matterPref.begin("MatterPrefs", false);
// default OnOff state is OFF if not stored before
bool lastOnOffState = matterPref.getBool(onOffPrefKey, false);
// default level ~= 25% (64/255)
uint8_t lastLevel = matterPref.getUChar(levelPrefKey, 64);
DimmablePlugin.begin(lastOnOffState, lastLevel);
// set the callback function to handle the Plugin state change
DimmablePlugin.onChange(setPluginState);
// lambda functions are used to set the attribute change callbacks
DimmablePlugin.onChangeOnOff([](bool state) {
Serial.printf("Plugin OnOff changed to %s\r\n", state ? "ON" : "OFF");
return true;
});
DimmablePlugin.onChangeLevel([](uint8_t level) {
Serial.printf("Plugin Level changed to %d\r\n", level);
return true;
});
// Matter beginning - Last step, after all EndPoints are initialized
Matter.begin();
// This may be a restart of a already commissioned Matter accessory
if (Matter.isDeviceCommissioned()) {
Serial.println("Matter Node is commissioned and connected to the network. Ready for use.");
Serial.printf("Initial state: %s | level: %d\r\n", DimmablePlugin ? "ON" : "OFF", DimmablePlugin.getLevel());
// configure the Plugin based on initial on-off state and level
DimmablePlugin.updateAccessory();
}
}
void loop() {
// Check Matter Plugin Commissioning state, which may change during execution of loop()
if (!Matter.isDeviceCommissioned()) {
Serial.println("");
Serial.println("Matter Node is not commissioned yet.");
Serial.println("Initiate the device discovery in your Matter environment.");
Serial.println("Commission it to your Matter hub with the manual pairing code or QR code");
Serial.printf("Manual pairing code: %s\r\n", Matter.getManualPairingCode().c_str());
Serial.printf("QR code URL: %s\r\n", Matter.getOnboardingQRCodeUrl().c_str());
// waits for Matter Plugin Commissioning.
uint32_t timeCount = 0;
while (!Matter.isDeviceCommissioned()) {
delay(100);
if ((timeCount++ % 50) == 0) { // 50*100ms = 5 sec
Serial.println("Matter Node not commissioned yet. Waiting for commissioning.");
}
}
Serial.printf("Initial state: %s | level: %d\r\n", DimmablePlugin ? "ON" : "OFF", DimmablePlugin.getLevel());
// configure the Plugin based on initial on-off state and level
DimmablePlugin.updateAccessory();
Serial.println("Matter Node is commissioned and connected to the network. Ready for use.");
}
// A button is also used to control the plugin
// Check if the button has been pressed
if (digitalRead(buttonPin) == LOW && !button_state) {
// deals with button debouncing
button_time_stamp = millis(); // record the time while the button is pressed.
button_state = true; // pressed.
}
// Onboard User Button is used as a Plugin toggle switch or to decommission it
uint32_t time_diff = millis() - button_time_stamp;
if (digitalRead(buttonPin) == HIGH && button_state && time_diff > debounceTime) {
// Toggle button is released - toggle the plugin
Serial.println("User button released. Toggling Plugin!");
DimmablePlugin.toggle(); // Matter Controller also can see the change
button_state = false; // released
}
// Onboard User Button is kept pressed for longer than 5 seconds in order to decommission matter node
if (button_state && time_diff > decommissioningTimeout) {
Serial.println("Decommissioning the Plugin Matter Accessory. It shall be commissioned again.");
DimmablePlugin = false; // turn the plugin off
Matter.decommission();
button_time_stamp = millis(); // avoid running decommissioning again, reboot takes a second or so
}
}