feat(Zigbee): Support for sleepy device + Power Source and battery level + Humidity sensor cluster (#10551)
* feat(zigbee): Add power source and battery level * fix(zigbee): Make sure Indentify callback in not null * fix(zigbee): Remove leftovers and use workaround for mac capabilities * feat(zigbee) Add humidity optional cluster + fixes * feat(zigbee): Add common Zigbee.h header file * fix(zigbee): remove leftover code * ci(pre-commit): Apply automatic fixes * fix(zigbee): Fix codespell issues --------- Co-authored-by: pre-commit-ci-lite[bot] <117423508+pre-commit-ci-lite[bot]@users.noreply.github.com>
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20 changed files with 406 additions and 35 deletions
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@ -31,8 +31,7 @@
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#error "Zigbee end device mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeColorDimmableLight.h"
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#include "Zigbee.h"
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#define LED_PIN RGB_BUILTIN
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#define BUTTON_PIN 9 // C6/H2 Boot button
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@ -35,8 +35,7 @@
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#error "Zigbee coordinator mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeColorDimmerSwitch.h"
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#include "Zigbee.h"
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/* Switch configuration */
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#define SWITCH_PIN 9 // ESP32-C6/H2 Boot button
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@ -30,8 +30,7 @@
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#error "Zigbee end device mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeLight.h"
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#include "Zigbee.h"
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#define LED_PIN RGB_BUILTIN
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#define BUTTON_PIN 9 // ESP32-C6/H2 Boot button
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@ -31,8 +31,7 @@
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#error "Zigbee coordinator mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeSwitch.h"
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#include "Zigbee.h"
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#define SWITCH_ENDPOINT_NUMBER 5
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@ -29,7 +29,7 @@
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#error "Zigbee device mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "Zigbee.h"
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#ifdef ZIGBEE_MODE_ZCZR
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zigbee_role_t role = ZIGBEE_ROUTER; // or can be ZIGBEE_COORDINATOR, but it wont scan itself
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@ -0,0 +1,75 @@
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# Arduino-ESP32 Zigbee Temperature and Humidity Sensor Sleepy Device Example
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This example demonstrates how to use the Zigbee library to create an end device temperature/humidity sensor and use it as a Home Automation (HA) extended temperature sensor.
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# Supported Targets
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Currently, this example supports the following targets.
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| Supported Targets | ESP32-C6 | ESP32-H2 |
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| ----------------- | -------- | -------- |
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## Temperature Sensor Functions
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1. Initialize a Zigbee temperature and humidity sensor.
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2. Measure temperature and humidity values.
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3. Report the measured values to the Zigbee network.
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4. Put the device to sleep to save power.
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## Hardware Required
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* ESP32-H2 or ESP32-C6 development board
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* A USB cable for power supply and programming
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### Configure the Project
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In this example, to demonstrate the functionality the chip temperature is used and reported as temperature and humidity.
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Set the Button GPIO by changing the `BUTTON_PIN` definition. By default, it's the pin `9` (BOOT button on ESP32-C6 and ESP32-H2).
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#### Using Arduino IDE
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To get more information about the Espressif boards see [Espressif Development Kits](https://www.espressif.com/en/products/devkits).
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* Before Compile/Verify, select the correct board: `Tools -> Board`.
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* Select the End device Zigbee mode: `Tools -> Zigbee mode: Zigbee ED (end device)`
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* Select Partition Scheme for Zigbee: `Tools -> Partition Scheme: Zigbee 4MB with spiffs`
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* Select the COM port: `Tools -> Port: xxx` where the `xxx` is the detected COM port.
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* Optional: Set debug level to verbose to see all logs from Zigbee stack: `Tools -> Core Debug Level: Verbose`.
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## Troubleshooting
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If the End device flashed with this example is not connecting to the coordinator, erase the flash of the End device before flashing the example to the board. It is recommended to do this if you re-flash the coordinator.
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You can do the following:
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* In the Arduino IDE go to the Tools menu and set `Erase All Flash Before Sketch Upload` to `Enabled`.
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* Add to the sketch `Zigbee.factoryReset();` to reset the device and Zigbee stack.
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By default, the coordinator network is closed after rebooting or flashing new firmware.
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To open the network you have 2 options:
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* Open network after reboot by setting `Zigbee.setRebootOpenNetwork(time);` before calling `Zigbee.begin();`.
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* In application you can anytime call `Zigbee.openNetwork(time);` to open the network for devices to join.
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***Important: Make sure you are using a good quality USB cable and that you have a reliable power source***
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* **LED not blinking:** Check the wiring connection and the IO selection.
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* **Programming Fail:** If the programming/flash procedure fails, try reducing the serial connection speed.
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* **COM port not detected:** Check the USB cable and the USB to Serial driver installation.
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If the error persists, you can ask for help at the official [ESP32 forum](https://esp32.com) or see [Contribute](#contribute).
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## Contribute
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To know how to contribute to this project, see [How to contribute.](https://github.com/espressif/arduino-esp32/blob/master/CONTRIBUTING.rst)
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If you have any **feedback** or **issue** to report on this example/library, please open an issue or fix it by creating a new PR. Contributions are more than welcome!
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Before creating a new issue, be sure to try Troubleshooting and check if the same issue was already created by someone else.
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## Resources
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* Official ESP32 Forum: [Link](https://esp32.com)
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* Arduino-ESP32 Official Repository: [espressif/arduino-esp32](https://github.com/espressif/arduino-esp32)
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* ESP32-C6 Datasheet: [Link to datasheet](https://www.espressif.com/sites/default/files/documentation/esp32-c6_datasheet_en.pdf)
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* ESP32-H2 Datasheet: [Link to datasheet](https://www.espressif.com/sites/default/files/documentation/esp32-h2_datasheet_en.pdf)
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* Official ESP-IDF documentation: [ESP-IDF](https://idf.espressif.com)
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@ -0,0 +1,125 @@
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// Copyright 2024 Espressif Systems (Shanghai) PTE LTD
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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/**
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* @brief This example demonstrates Zigbee temperature and humidity sensor Sleepy device.
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*
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* The example demonstrates how to use Zigbee library to create an end device temperature and humidity sensor.
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* The sensor is a Zigbee end device, which is reporting data to the Zigbee network.
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*
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* Proper Zigbee mode must be selected in Tools->Zigbee mode
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* and also the correct partition scheme must be selected in Tools->Partition Scheme.
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*
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* Please check the README.md for instructions and more detailed description.
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*
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* Created by Jan Procházka (https://github.com/P-R-O-C-H-Y/)
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*/
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#ifndef ZIGBEE_MODE_ED
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#error "Zigbee coordinator mode is not selected in Tools->Zigbee mode"
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#endif
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#include "Zigbee.h"
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#define BUTTON_PIN 9 //Boot button for C6/H2
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#define TEMP_SENSOR_ENDPOINT_NUMBER 10
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#define uS_TO_S_FACTOR 1000000ULL /* Conversion factor for micro seconds to seconds */
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#define TIME_TO_SLEEP 55 /* Sleep for 55s will + 5s delay for establishing connection => data reported every 1 minute */
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ZigbeeTempSensor zbTempSensor = ZigbeeTempSensor(TEMP_SENSOR_ENDPOINT_NUMBER);
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/************************ Temp sensor *****************************/
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void meausureAndSleep() {
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// Measure temperature sensor value
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float temperature = temperatureRead();
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// Use temparture value as humidity value to demonstrate both temperature and humidity
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float humidity = temperature;
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// Update temperature and humidity values in Temperature sensor EP
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zbTempSensor.setTemperature(temperature);
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zbTempSensor.setHumidity(humidity);
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// Report temperature and humidity values
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zbTempSensor.reportTemperature();
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zbTempSensor.reportHumidity();
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log_d("Temperature: %.2f°C, Humidity: %.2f%", temperature, humidity);
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// Put device to deep sleep
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esp_deep_sleep_start();
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}
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/********************* Arduino functions **************************/
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void setup() {
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// Init button switch
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pinMode(BUTTON_PIN, INPUT_PULLUP);
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// Configure the wake up source and set to wake up every 5 seconds
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esp_sleep_enable_timer_wakeup(TIME_TO_SLEEP * uS_TO_S_FACTOR);
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// Optional: set Zigbee device name and model
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zbTempSensor.setManufacturerAndModel("Espressif", "SleepyZigbeeTempSensorTest");
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// Set minimum and maximum temperature measurement value (10-50°C is default range for chip temperature measurement)
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zbTempSensor.setMinMaxValue(10, 50);
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// Set tolerance for temperature measurement in °C (lowest possible value is 0.01°C)
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zbTempSensor.setTolerance(1);
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// Set power source to battery and set battery percentage to measured value (now 100% for demonstration)
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// The value can be also updated by calling zbTempSensor.setBatteryPercentage(percentage) anytime
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zbTempSensor.setPowerSource(ZB_POWER_SOURCE_BATTERY, 100);
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// Add humidity cluster to the temperature sensor device with min, max and tolerance values
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zbTempSensor.addHumiditySensor(0, 100, 1);
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// Add endpoint to Zigbee Core
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Zigbee.addEndpoint(&zbTempSensor);
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// Create a custom Zigbee configuration for End Device with keep alive 10s to avoid interference with reporting data
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esp_zb_cfg_t zigbeeConfig = ZIGBEE_DEFAULT_ED_CONFIG();
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zigbeeConfig.nwk_cfg.zed_cfg.keep_alive = 10000;
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// When all EPs are registered, start Zigbee in End Device mode
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Zigbee.begin(&zigbeeConfig, false);
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// Wait for Zigbee to start
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while (!Zigbee.isStarted()) {
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delay(100);
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}
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// Delay 5s to allow establishing connection with coordinator, needed for sleepy devices
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delay(5000);
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}
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void loop() {
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// Checking button for factory reset
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if (digitalRead(BUTTON_PIN) == LOW) { // Push button pressed
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// Key debounce handling
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delay(100);
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int startTime = millis();
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while (digitalRead(BUTTON_PIN) == LOW) {
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delay(50);
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if ((millis() - startTime) > 3000) {
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// If key pressed for more than 3secs, factory reset Zigbee and reboot
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Zigbee.factoryReset();
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}
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}
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}
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// Call the function to measure temperature and put the device to sleep
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meausureAndSleep();
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}
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{
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"fqbn_append": "PartitionScheme=zigbee,ZigbeeMode=ed",
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"requires": [
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"CONFIG_SOC_IEEE802154_SUPPORTED=y"
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]
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}
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#error "Zigbee coordinator mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeTempSensor.h"
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#include "Zigbee.h"
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#define BUTTON_PIN 9 //Boot button for C6/H2
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#define TEMP_SENSOR_ENDPOINT_NUMBER 10
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#error "Zigbee coordinator mode is not selected in Tools->Zigbee mode"
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#endif
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#include "ZigbeeCore.h"
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#include "ep/ZigbeeThermostat.h"
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#include "Zigbee.h"
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#define BUTTON_PIN 9 // Boot button for C6/H2
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#define THERMOSTAT_ENDPOINT_NUMBER 5
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15
libraries/Zigbee/src/Zigbee.h
Normal file
15
libraries/Zigbee/src/Zigbee.h
Normal file
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// Zigbee library header file for includes of all Zigbee library headers.
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#pragma once
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// Core
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#include "ZigbeeCore.h"
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#include "ZigbeeEP.h"
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// Endpoints
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#include "ep/ZigbeeLight.h"
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#include "ep/ZigbeeSwitch.h"
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#include "ep/ZigbeeColorDimmableLight.h"
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#include "ep/ZigbeeColorDimmerSwitch.h"
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#include "ep/ZigbeeTempSensor.h"
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#include "ep/ZigbeeThermostat.h"
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#include "ZigbeeHandlers.cpp"
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#include "Arduino.h"
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extern "C" void zb_set_ed_node_descriptor(bool power_src, bool rx_on_when_idle, bool alloc_addr);
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static bool edBatteryPowered = false;
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ZigbeeCore::ZigbeeCore() {
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_radio_config.radio_mode = ZB_RADIO_MODE_NATIVE; // Use the native 15.4 radio
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_host_config.host_connection_mode = ZB_HOST_CONNECTION_MODE_NONE; // Disable host connection
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static void esp_zb_task(void *pvParameters) {
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/* initialize Zigbee stack */
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ESP_ERROR_CHECK(esp_zb_start(false));
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//NOTE: This is a workaround to make battery powered devices to be discovered as battery powered
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if (((zigbee_role_t)Zigbee.getRole() == ZIGBEE_END_DEVICE) && edBatteryPowered) {
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zb_set_ed_node_descriptor(0, 0, 0);
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}
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esp_zb_stack_main_loop();
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}
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log_i("List of registered Zigbee EPs:");
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for (std::list<ZigbeeEP *>::iterator it = ep_objects.begin(); it != ep_objects.end(); ++it) {
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log_i("Device type: %s, Endpoint: %d, Device ID: 0x%04x", getDeviceTypeString((*it)->_device_id), (*it)->_endpoint, (*it)->_device_id);
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if ((*it)->_power_source == ZB_POWER_SOURCE_BATTERY) {
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edBatteryPowered = true;
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}
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}
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}
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// Register Zigbee action handler
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}
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void ZigbeeCore::openNetwork(uint8_t time) {
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if (_started) {
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if (isStarted()) {
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log_v("Opening network for joining for %d seconds", time);
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esp_zb_bdb_open_network(time);
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}
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} else {
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/* commissioning failed */
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log_e("Failed to initialize Zigbee stack (status: %s)", esp_err_to_name(err_status));
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esp_restart();
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}
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break;
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case ESP_ZB_BDB_SIGNAL_FORMATION: // Coordinator
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@ -225,11 +238,11 @@ void esp_zb_app_signal_handler(esp_zb_app_signal_t *signal_struct) {
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}
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break;
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case ESP_ZB_BDB_SIGNAL_STEERING: // Router and End Device
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Zigbee._started = true;
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if ((zigbee_role_t)Zigbee.getRole() == ZIGBEE_COORDINATOR) {
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if (err_status == ESP_OK) {
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log_i("Network steering started");
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}
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Zigbee._started = true;
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} else {
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if (err_status == ESP_OK) {
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esp_zb_ieee_addr_t extended_pan_id;
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@ -239,6 +252,7 @@ void esp_zb_app_signal_handler(esp_zb_app_signal_t *signal_struct) {
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extended_pan_id[7], extended_pan_id[6], extended_pan_id[5], extended_pan_id[4], extended_pan_id[3], extended_pan_id[2], extended_pan_id[1],
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extended_pan_id[0], esp_zb_get_pan_id(), esp_zb_get_current_channel(), esp_zb_get_short_address()
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);
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Zigbee._started = true;
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} else {
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log_i("Network steering was not successful (status: %s)", esp_err_to_name(err_status));
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esp_zb_scheduler_alarm((esp_zb_callback_t)bdb_start_top_level_commissioning_cb, ESP_ZB_BDB_MODE_NETWORK_STEERING, 1000);
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@ -321,7 +335,7 @@ void ZigbeeCore::scanCompleteCallback(esp_zb_zdp_status_t zdo_status, uint8_t co
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}
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void ZigbeeCore::scanNetworks(u_int32_t channel_mask, u_int8_t scan_duration) {
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if (!_started) {
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if (!isStarted()) {
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log_e("Zigbee stack is not started, cannot scan networks");
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return;
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}
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#if SOC_IEEE802154_SUPPORTED
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#include "esp_zigbee_cluster.h"
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#include "zcl/esp_zigbee_zcl_power_config.h"
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uint8_t ZigbeeEP::_endpoint = 0;
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bool ZigbeeEP::_is_bound = false;
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bool ZigbeeEP::_allow_multiple_binding = false;
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//TODO: is_bound and allow_multiple_binding to make not static
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/* Zigbee End Device Class */
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ZigbeeEP::ZigbeeEP(uint8_t endpoint) {
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_endpoint = endpoint;
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log_v("Endpoint: %d", _endpoint);
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_ep_config.endpoint = 0;
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_cluster_list = nullptr;
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_on_identify = nullptr;
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#if !CONFIG_DISABLE_HAL_LOCKS
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if (!lock) {
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||||
lock = xSemaphoreCreateBinary();
|
||||
|
|
@ -65,6 +69,51 @@ void ZigbeeEP::setManufacturerAndModel(const char *name, const char *model) {
|
|||
esp_zb_basic_cluster_add_attr(basic_cluster, ESP_ZB_ZCL_ATTR_BASIC_MODEL_IDENTIFIER_ID, (void *)zb_model);
|
||||
}
|
||||
|
||||
void ZigbeeEP::setPowerSource(zb_power_source_t power_source, uint8_t battery_percentage) {
|
||||
esp_zb_attribute_list_t *basic_cluster = esp_zb_cluster_list_get_cluster(_cluster_list, ESP_ZB_ZCL_CLUSTER_ID_BASIC, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE);
|
||||
esp_zb_cluster_update_attr(basic_cluster, ESP_ZB_ZCL_ATTR_BASIC_POWER_SOURCE_ID, (void *)&power_source);
|
||||
|
||||
if (power_source == ZB_POWER_SOURCE_BATTERY) {
|
||||
// Add power config cluster and battery percentage attribute
|
||||
battery_percentage = battery_percentage * 2;
|
||||
esp_zb_attribute_list_t *power_config_cluster = esp_zb_zcl_attr_list_create(ESP_ZB_ZCL_CLUSTER_ID_POWER_CONFIG);
|
||||
esp_zb_power_config_cluster_add_attr(power_config_cluster, ESP_ZB_ZCL_ATTR_POWER_CONFIG_BATTERY_PERCENTAGE_REMAINING_ID, (void *)&battery_percentage);
|
||||
esp_zb_cluster_list_add_power_config_cluster(_cluster_list, power_config_cluster, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE);
|
||||
}
|
||||
_power_source = power_source;
|
||||
}
|
||||
|
||||
void ZigbeeEP::setBatteryPercentage(uint8_t percentage) {
|
||||
// 100% = 200 in decimal, 0% = 0
|
||||
// Convert percentage to 0-200 range
|
||||
if (percentage > 100) {
|
||||
percentage = 100;
|
||||
}
|
||||
percentage = percentage * 2;
|
||||
esp_zb_lock_acquire(portMAX_DELAY);
|
||||
esp_zb_zcl_set_attribute_val(
|
||||
_endpoint, ESP_ZB_ZCL_CLUSTER_ID_POWER_CONFIG, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE, ESP_ZB_ZCL_ATTR_POWER_CONFIG_BATTERY_PERCENTAGE_REMAINING_ID, &percentage,
|
||||
false
|
||||
);
|
||||
esp_zb_lock_release();
|
||||
log_v("Battery percentage updated");
|
||||
}
|
||||
|
||||
void ZigbeeEP::reportBatteryPercentage() {
|
||||
/* Send report attributes command */
|
||||
esp_zb_zcl_report_attr_cmd_t report_attr_cmd;
|
||||
report_attr_cmd.address_mode = ESP_ZB_APS_ADDR_MODE_DST_ADDR_ENDP_NOT_PRESENT;
|
||||
report_attr_cmd.attributeID = ESP_ZB_ZCL_ATTR_POWER_CONFIG_BATTERY_PERCENTAGE_REMAINING_ID;
|
||||
report_attr_cmd.cluster_role = ESP_ZB_ZCL_CLUSTER_SERVER_ROLE;
|
||||
report_attr_cmd.clusterID = ESP_ZB_ZCL_CLUSTER_ID_POWER_CONFIG;
|
||||
report_attr_cmd.zcl_basic_cmd.src_endpoint = _endpoint;
|
||||
|
||||
esp_zb_lock_acquire(portMAX_DELAY);
|
||||
esp_zb_zcl_report_attr_cmd_req(&report_attr_cmd);
|
||||
esp_zb_lock_release();
|
||||
log_v("Battery percentage reported");
|
||||
}
|
||||
|
||||
char *ZigbeeEP::readManufacturer(uint8_t endpoint, uint16_t short_addr) {
|
||||
/* Read peer Manufacture Name & Model Identifier */
|
||||
esp_zb_zcl_read_attr_cmd_t read_req;
|
||||
|
|
@ -153,7 +202,9 @@ void ZigbeeEP::zbReadBasicCluster(const esp_zb_zcl_attribute_t *attribute) {
|
|||
|
||||
void ZigbeeEP::zbIdentify(const esp_zb_zcl_set_attr_value_message_t *message) {
|
||||
if (message->attribute.id == ESP_ZB_ZCL_CMD_IDENTIFY_IDENTIFY_ID && message->attribute.data.type == ESP_ZB_ZCL_ATTR_TYPE_U16) {
|
||||
_on_identify(*(uint16_t *)message->attribute.data.value);
|
||||
if (_on_identify != NULL) {
|
||||
_on_identify(*(uint16_t *)message->attribute.data.value);
|
||||
}
|
||||
} else {
|
||||
log_w("Other identify commands are not implemented yet.");
|
||||
}
|
||||
|
|
|
|||
|
|
@ -46,9 +46,10 @@ typedef struct zb_device_params_s {
|
|||
} zb_device_params_t;
|
||||
|
||||
typedef enum {
|
||||
SINGLE_COLOR = 0,
|
||||
RGB = 1
|
||||
} zb_identify_led_type_t;
|
||||
ZB_POWER_SOURCE_UNKNOWN = 0x00,
|
||||
ZB_POWER_SOURCE_MAINS = 0x01,
|
||||
ZB_POWER_SOURCE_BATTERY = 0x03,
|
||||
} zb_power_source_t;
|
||||
|
||||
/* Zigbee End Device Class */
|
||||
class ZigbeeEP {
|
||||
|
|
@ -81,6 +82,9 @@ public:
|
|||
|
||||
// Manufacturer name and model implemented
|
||||
void setManufacturerAndModel(const char *name, const char *model);
|
||||
void setPowerSource(zb_power_source_t power_source, uint8_t percentage = 255);
|
||||
void setBatteryPercentage(uint8_t percentage);
|
||||
void reportBatteryPercentage();
|
||||
|
||||
// Methods to read manufacturer and model name from selected endpoint and short address
|
||||
char *readManufacturer(uint8_t endpoint, uint16_t short_addr);
|
||||
|
|
@ -110,13 +114,14 @@ private:
|
|||
void (*_on_identify)(uint16_t time);
|
||||
|
||||
protected:
|
||||
static uint8_t _endpoint;
|
||||
uint8_t _endpoint;
|
||||
esp_zb_ha_standard_devices_t _device_id;
|
||||
esp_zb_endpoint_config_t _ep_config;
|
||||
esp_zb_cluster_list_t *_cluster_list;
|
||||
static bool _is_bound;
|
||||
std::list<zb_device_params_t *> _bound_devices;
|
||||
SemaphoreHandle_t lock;
|
||||
zb_power_source_t _power_source;
|
||||
|
||||
friend class ZigbeeCore;
|
||||
};
|
||||
|
|
|
|||
|
|
@ -57,7 +57,7 @@ void ZigbeeColorDimmerSwitch::findCb(esp_zb_zdp_status_t zdo_status, uint16_t ad
|
|||
light->short_addr = addr;
|
||||
esp_zb_ieee_address_by_short(light->short_addr, light->ieee_addr);
|
||||
esp_zb_get_long_address(bind_req.src_address);
|
||||
bind_req.src_endp = _endpoint;
|
||||
bind_req.src_endp = *((uint8_t *)user_ctx); //_endpoint;
|
||||
bind_req.cluster_id = ESP_ZB_ZCL_CLUSTER_ID_ON_OFF;
|
||||
bind_req.dst_addr_mode = ESP_ZB_ZDO_BIND_DST_ADDR_MODE_64_BIT_EXTENDED;
|
||||
memcpy(bind_req.dst_address_u.addr_long, light->ieee_addr, sizeof(esp_zb_ieee_addr_t));
|
||||
|
|
@ -88,7 +88,7 @@ void ZigbeeColorDimmerSwitch::findEndpoint(esp_zb_zdo_match_desc_req_param_t *cm
|
|||
.num_out_clusters = 3,
|
||||
.cluster_list = cluster_list,
|
||||
};
|
||||
esp_zb_zdo_match_cluster(&color_dimmable_light_req, findCb, NULL);
|
||||
esp_zb_zdo_match_cluster(&color_dimmable_light_req, findCb, &_endpoint);
|
||||
}
|
||||
|
||||
// Methods to control the light
|
||||
|
|
|
|||
|
|
@ -6,7 +6,8 @@ ZigbeeLight::ZigbeeLight(uint8_t endpoint) : ZigbeeEP(endpoint) {
|
|||
|
||||
esp_zb_on_off_light_cfg_t light_cfg = ESP_ZB_DEFAULT_ON_OFF_LIGHT_CONFIG();
|
||||
_cluster_list = esp_zb_on_off_light_clusters_create(&light_cfg); // use esp_zb_zcl_cluster_list_create() instead of esp_zb_on_off_light_clusters_create()
|
||||
_ep_config = {.endpoint = _endpoint, .app_profile_id = ESP_ZB_AF_HA_PROFILE_ID, .app_device_id = ESP_ZB_HA_ON_OFF_LIGHT_DEVICE_ID, .app_device_version = 0};
|
||||
_ep_config = {.endpoint = endpoint, .app_profile_id = ESP_ZB_AF_HA_PROFILE_ID, .app_device_id = ESP_ZB_HA_ON_OFF_LIGHT_DEVICE_ID, .app_device_version = 0};
|
||||
log_v("Light endpoint created %d", _endpoint);
|
||||
}
|
||||
|
||||
//set attribute method -> method overridden in child class
|
||||
|
|
|
|||
|
|
@ -35,7 +35,7 @@ void ZigbeeSwitch::findCb(esp_zb_zdp_status_t zdo_status, uint16_t addr, uint8_t
|
|||
light->short_addr = addr;
|
||||
esp_zb_ieee_address_by_short(light->short_addr, light->ieee_addr);
|
||||
esp_zb_get_long_address(bind_req.src_address);
|
||||
bind_req.src_endp = _endpoint; //_dev_endpoint;
|
||||
bind_req.src_endp = *((uint8_t *)user_ctx); //_endpoint;
|
||||
bind_req.cluster_id = ESP_ZB_ZCL_CLUSTER_ID_ON_OFF;
|
||||
bind_req.dst_addr_mode = ESP_ZB_ZDO_BIND_DST_ADDR_MODE_64_BIT_EXTENDED;
|
||||
memcpy(bind_req.dst_address_u.addr_long, light->ieee_addr, sizeof(esp_zb_ieee_addr_t));
|
||||
|
|
@ -60,7 +60,7 @@ void ZigbeeSwitch::findEndpoint(esp_zb_zdo_match_desc_req_param_t *cmd_req) {
|
|||
.cluster_list = cluster_list,
|
||||
};
|
||||
|
||||
esp_zb_zdo_match_cluster(&on_off_req, findCb, NULL);
|
||||
esp_zb_zdo_match_cluster(&on_off_req, findCb, &_endpoint);
|
||||
}
|
||||
|
||||
// Methods to control the light
|
||||
|
|
|
|||
|
|
@ -12,13 +12,13 @@ ZigbeeTempSensor::ZigbeeTempSensor(uint8_t endpoint) : ZigbeeEP(endpoint) {
|
|||
};
|
||||
}
|
||||
|
||||
static int16_t zb_temperature_to_s16(float temp) {
|
||||
static int16_t zb_float_to_s16(float temp) {
|
||||
return (int16_t)(temp * 100);
|
||||
}
|
||||
|
||||
void ZigbeeTempSensor::setMinMaxValue(float min, float max) {
|
||||
int16_t zb_min = zb_temperature_to_s16(min);
|
||||
int16_t zb_max = zb_temperature_to_s16(max);
|
||||
int16_t zb_min = zb_float_to_s16(min);
|
||||
int16_t zb_max = zb_float_to_s16(max);
|
||||
esp_zb_attribute_list_t *temp_measure_cluster =
|
||||
esp_zb_cluster_list_get_cluster(_cluster_list, ESP_ZB_ZCL_CLUSTER_ID_TEMP_MEASUREMENT, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE);
|
||||
esp_zb_cluster_update_attr(temp_measure_cluster, ESP_ZB_ZCL_ATTR_TEMP_MEASUREMENT_MIN_VALUE_ID, (void *)&zb_min);
|
||||
|
|
@ -64,7 +64,7 @@ void ZigbeeTempSensor::setReporting(uint16_t min_interval, uint16_t max_interval
|
|||
}
|
||||
|
||||
void ZigbeeTempSensor::setTemperature(float temperature) {
|
||||
int16_t zb_temperature = zb_temperature_to_s16(temperature);
|
||||
int16_t zb_temperature = zb_float_to_s16(temperature);
|
||||
log_v("Updating temperature sensor value...");
|
||||
/* Update temperature sensor measured value */
|
||||
log_d("Setting temperature to %d", zb_temperature);
|
||||
|
|
@ -90,4 +90,75 @@ void ZigbeeTempSensor::reportTemperature() {
|
|||
log_v("Temperature report sent");
|
||||
}
|
||||
|
||||
void ZigbeeTempSensor::addHumiditySensor(float min, float max, float tolerance) {
|
||||
int16_t zb_min = zb_float_to_s16(min);
|
||||
int16_t zb_max = zb_float_to_s16(max);
|
||||
uint16_t zb_tolerance = (uint16_t)(tolerance * 100);
|
||||
int16_t default_hum = ESP_ZB_ZCL_REL_HUMIDITY_MEASUREMENT_MEASURED_VALUE_DEFAULT;
|
||||
esp_zb_attribute_list_t *humidity_cluster = esp_zb_zcl_attr_list_create(ESP_ZB_ZCL_CLUSTER_ID_REL_HUMIDITY_MEASUREMENT);
|
||||
esp_zb_humidity_meas_cluster_add_attr(humidity_cluster, ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_VALUE_ID, &default_hum);
|
||||
esp_zb_humidity_meas_cluster_add_attr(humidity_cluster, ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_MIN_VALUE_ID, &zb_min);
|
||||
esp_zb_humidity_meas_cluster_add_attr(humidity_cluster, ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_MAX_VALUE_ID, &zb_max);
|
||||
esp_zb_humidity_meas_cluster_add_attr(humidity_cluster, ESP_ZB_ZCL_ATTR_REL_HUMIDITY_TOLERANCE_ID, &zb_tolerance);
|
||||
esp_zb_cluster_list_add_humidity_meas_cluster(_cluster_list, humidity_cluster, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE);
|
||||
}
|
||||
|
||||
void ZigbeeTempSensor::setHumidity(float humidity) {
|
||||
int16_t zb_humidity = zb_float_to_s16(humidity);
|
||||
log_v("Updating humidity sensor value...");
|
||||
/* Update humidity sensor measured value */
|
||||
log_d("Setting humidity to %d", zb_humidity);
|
||||
esp_zb_lock_acquire(portMAX_DELAY);
|
||||
esp_zb_zcl_set_attribute_val(
|
||||
_endpoint, ESP_ZB_ZCL_CLUSTER_ID_REL_HUMIDITY_MEASUREMENT, ESP_ZB_ZCL_CLUSTER_SERVER_ROLE, ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_VALUE_ID, &zb_humidity,
|
||||
false
|
||||
);
|
||||
esp_zb_lock_release();
|
||||
}
|
||||
|
||||
void ZigbeeTempSensor::reportHumidity() {
|
||||
/* Send report attributes command */
|
||||
esp_zb_zcl_report_attr_cmd_t report_attr_cmd;
|
||||
report_attr_cmd.address_mode = ESP_ZB_APS_ADDR_MODE_DST_ADDR_ENDP_NOT_PRESENT;
|
||||
report_attr_cmd.attributeID = ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_VALUE_ID;
|
||||
report_attr_cmd.cluster_role = ESP_ZB_ZCL_CLUSTER_SERVER_ROLE;
|
||||
report_attr_cmd.clusterID = ESP_ZB_ZCL_CLUSTER_ID_REL_HUMIDITY_MEASUREMENT;
|
||||
report_attr_cmd.zcl_basic_cmd.src_endpoint = _endpoint;
|
||||
|
||||
esp_zb_lock_acquire(portMAX_DELAY);
|
||||
esp_zb_zcl_report_attr_cmd_req(&report_attr_cmd);
|
||||
esp_zb_lock_release();
|
||||
log_v("Humidity report sent");
|
||||
}
|
||||
|
||||
void ZigbeeTempSensor::setHumidityReporting(uint16_t min_interval, uint16_t max_interval, float delta) {
|
||||
esp_zb_zcl_reporting_info_t reporting_info = {
|
||||
.direction = ESP_ZB_ZCL_CMD_DIRECTION_TO_SRV,
|
||||
.ep = _endpoint,
|
||||
.cluster_id = ESP_ZB_ZCL_CLUSTER_ID_REL_HUMIDITY_MEASUREMENT,
|
||||
.cluster_role = ESP_ZB_ZCL_CLUSTER_SERVER_ROLE,
|
||||
.attr_id = ESP_ZB_ZCL_ATTR_REL_HUMIDITY_MEASUREMENT_VALUE_ID,
|
||||
.u =
|
||||
{
|
||||
.send_info =
|
||||
{
|
||||
.min_interval = min_interval,
|
||||
.max_interval = max_interval,
|
||||
.delta =
|
||||
{
|
||||
.u16 = (uint16_t)(delta * 100), // Convert delta to ZCL uint16_t
|
||||
},
|
||||
.def_min_interval = min_interval,
|
||||
.def_max_interval = max_interval,
|
||||
},
|
||||
},
|
||||
.dst =
|
||||
{
|
||||
.profile_id = ESP_ZB_AF_HA_PROFILE_ID,
|
||||
},
|
||||
.manuf_code = ESP_ZB_ZCL_ATTR_NON_MANUFACTURER_SPECIFIC,
|
||||
};
|
||||
esp_zb_zcl_update_reporting_info(&reporting_info);
|
||||
}
|
||||
|
||||
#endif //SOC_IEEE802154_SUPPORTED
|
||||
|
|
|
|||
|
|
@ -1,4 +1,4 @@
|
|||
/* Class of Zigbee Temperature sensor endpoint inherited from common EP class */
|
||||
/* Class of Zigbee Temperature + Humidity sensor endpoint inherited from common EP class */
|
||||
|
||||
#pragma once
|
||||
|
||||
|
|
@ -24,7 +24,21 @@ public:
|
|||
|
||||
// Set the reporting interval for temperature measurement in seconds and delta (temp change in 0,01 °C)
|
||||
void setReporting(uint16_t min_interval, uint16_t max_interval, float delta);
|
||||
|
||||
// Report the temperature value
|
||||
void reportTemperature();
|
||||
|
||||
// Add humidity cluster to the temperature sensor device
|
||||
void addHumiditySensor(float min, float max, float tolerance);
|
||||
|
||||
// Set the humidity value in 0,01%
|
||||
void setHumidity(float value);
|
||||
|
||||
// Set the reporting interval for humidity measurement in seconds and delta (humidity change in 0,01%)
|
||||
void setHumidityReporting(uint16_t min_interval, uint16_t max_interval, float delta);
|
||||
|
||||
// Report the humidity value
|
||||
void reportHumidity();
|
||||
};
|
||||
|
||||
#endif //SOC_IEEE802154_SUPPORTED
|
||||
|
|
|
|||
|
|
@ -67,7 +67,7 @@ void ZigbeeThermostat::findCb(esp_zb_zdp_status_t zdo_status, uint16_t addr, uin
|
|||
/* populate the dst information of the binding */
|
||||
bind_req.dst_addr_mode = ESP_ZB_ZDO_BIND_DST_ADDR_MODE_64_BIT_EXTENDED;
|
||||
esp_zb_get_long_address(bind_req.dst_address_u.addr_long);
|
||||
bind_req.dst_endp = _endpoint;
|
||||
bind_req.dst_endp = *((uint8_t *)user_ctx); //_endpoint;
|
||||
|
||||
log_i("Request temperature sensor to bind us");
|
||||
esp_zb_zdo_device_bind_req(&bind_req, bindCb, NULL);
|
||||
|
|
@ -77,7 +77,7 @@ void ZigbeeThermostat::findCb(esp_zb_zdp_status_t zdo_status, uint16_t addr, uin
|
|||
|
||||
/* populate the src information of the binding */
|
||||
esp_zb_get_long_address(bind_req.src_address);
|
||||
bind_req.src_endp = _endpoint;
|
||||
bind_req.src_endp = *((uint8_t *)user_ctx); //_endpoint;
|
||||
bind_req.cluster_id = ESP_ZB_ZCL_CLUSTER_ID_TEMP_MEASUREMENT;
|
||||
|
||||
/* populate the dst information of the binding */
|
||||
|
|
@ -96,7 +96,7 @@ void ZigbeeThermostat::findEndpoint(esp_zb_zdo_match_desc_req_param_t *param) {
|
|||
param->num_in_clusters = 1;
|
||||
param->num_out_clusters = 0;
|
||||
param->cluster_list = cluster_list;
|
||||
esp_zb_zdo_match_cluster(param, findCb, NULL);
|
||||
esp_zb_zdo_match_cluster(param, findCb, &_endpoint);
|
||||
}
|
||||
|
||||
void ZigbeeThermostat::zbAttributeRead(uint16_t cluster_id, const esp_zb_zcl_attribute_t *attribute) {
|
||||
|
|
|
|||
Loading…
Reference in a new issue