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18 Commits
abbf6a8546
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ota-builds
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140
.gitea/workflows/ota-build.yml
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140
.gitea/workflows/ota-build.yml
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@@ -0,0 +1,140 @@
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name: OTA build
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on:
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push:
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branches:
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- '**'
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workflow_dispatch:
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jobs:
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build-ota:
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runs-on: ubuntu-latest
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timeout-minutes: 45
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steps:
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- name: Checkout
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uses: actions/checkout@v4
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- name: Set up Python
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uses: actions/setup-python@v5
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with:
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python-version: "3.11"
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- name: Install PlatformIO
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run: |
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python -m pip install --upgrade pip
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pip install platformio
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- name: Build OTA firmware binaries
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run: pio run
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- name: Prepare direct OTA files
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run: |
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set -eu
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rm -rf dist/ota
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project_name="${GITHUB_REPOSITORY#*/}"
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project_name="${project_name#PlatformIO_}"
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timestamp="$(date -u +%Y-%m-%dT%H-%M-%SZ)"
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mkdir -p dist/ota
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found=0
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for fw in .pio/build/*/firmware.bin .pio/build/*/firmware.hex; do
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[ -f "$fw" ] || continue
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env_name="$(basename "$(dirname "$fw")")"
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ext="${fw##*.}"
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cp "$fw" "dist/ota/${project_name}_${env_name}_${timestamp}.${ext}"
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found=1
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done
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if [ "$found" -eq 0 ]; then
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echo 'No firmware.bin or firmware.hex artifacts were produced.' >&2
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exit 1
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fi
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find dist/ota -maxdepth 1 -type f | sort
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- name: Upload backup OTA artifact ZIP
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uses: actions/upload-artifact@v3
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with:
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name: ota-files
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path: dist/ota/*
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if-no-files-found: error
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- name: Publish raw OTA files to rolling release
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env:
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GITEA_TOKEN: ${{ secrets.GITEA_TOKEN }}
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run: |
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python - <<'PY'
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import json
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import mimetypes
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import os
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import sys
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from pathlib import Path
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from urllib.request import Request, urlopen
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from urllib.error import HTTPError
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server = os.environ['GITHUB_SERVER_URL']
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repo = os.environ['GITHUB_REPOSITORY']
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token = os.environ.get('GITEA_TOKEN')
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if not token:
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print('GITEA_TOKEN missing', file=sys.stderr)
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sys.exit(1)
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api = f"{server}/api/v1/repos/{repo}"
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headers = {
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'Authorization': f'token {token}',
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'Accept': 'application/json',
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'Content-Type': 'application/json',
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'User-Agent': 'Hermes-Agent'
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}
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tag = 'ota-builds'
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release_name = 'OTA Builds'
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body = 'Rolling OTA files from the latest successful push build.'
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def req(url, method='GET', data=None, extra_headers=None):
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h = dict(headers)
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if extra_headers:
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h.update(extra_headers)
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payload = None if data is None else json.dumps(data).encode()
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r = Request(url, data=payload, headers=h, method=method)
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with urlopen(r, timeout=120) as resp:
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body = resp.read()
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if not body:
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return None
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text = body.decode()
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try:
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return json.loads(text)
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except json.JSONDecodeError:
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return text
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try:
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release = req(f"{api}/releases/tags/{tag}")
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except HTTPError as e:
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if e.code != 404:
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raise
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release = req(f"{api}/releases", method='POST', data={
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'tag_name': tag,
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'target': os.environ.get('GITHUB_SHA', ''),
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'name': release_name,
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'body': body,
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'draft': False,
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'prerelease': True,
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})
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release_id = release['id']
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existing = req(f"{api}/releases/{release_id}/assets") or []
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for asset in existing:
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rid = asset['id']
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req(f"{api}/releases/{release_id}/assets/{rid}", method='DELETE')
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for path in sorted(Path('dist/ota').glob('*')):
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if not path.is_file():
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continue
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mime = mimetypes.guess_type(path.name)[0] or 'application/octet-stream'
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upload_headers = {
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'Authorization': f'token {token}',
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'Content-Type': mime,
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'Accept': 'application/json',
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'User-Agent': 'Hermes-Agent'
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}
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url = f"{api}/releases/{release_id}/assets?name={path.name}"
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data = path.read_bytes()
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r = Request(url, data=data, headers=upload_headers, method='POST')
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with urlopen(r, timeout=240) as resp:
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print(resp.read().decode())
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PY
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3
.vscode/settings.json
vendored
Normal file
3
.vscode/settings.json
vendored
Normal file
@@ -0,0 +1,3 @@
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{
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"CodeGPT.apiKey": "CodeGPT Plus Beta"
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}
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@@ -11,6 +11,7 @@
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[env:esp32doit-devkit-v1]
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[env:esp32doit-devkit-v1]
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platform = espressif32
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platform = espressif32
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board = esp32doit-devkit-v1
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board = esp32doit-devkit-v1
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monitor_speed = 115200
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framework = arduino
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framework = arduino
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lib_deps =
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lib_deps =
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knolleary/PubSubClient@^2.8
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knolleary/PubSubClient@^2.8
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115
src/main.cpp
115
src/main.cpp
@@ -6,8 +6,7 @@
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const int PIR_PIN=23;
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const int PIR_PIN=23;
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const char* ssid = "JoNelsDarlings";
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const char* ssid = "JoNelsDarlings";
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const char* password = "Paris2016";
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const char* password = "Paris2016";
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const char* mqtt_server = "mqtt.ddns.kawomi.com";
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const char* mqttServerName = "mqtt.ddns.kawomi.com";
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WiFiClient espClient;
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WiFiClient espClient;
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PubSubClient mqttClient(espClient);
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PubSubClient mqttClient(espClient);
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@@ -16,7 +15,6 @@ unsigned long lastMsg = 0;
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char msg[MSG_BUFFER_SIZE];
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char msg[MSG_BUFFER_SIZE];
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void setup_wifi() {
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void setup_wifi() {
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delay(10);
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delay(10);
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// We start by connecting to a WiFi network
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// We start by connecting to a WiFi network
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Serial.println();
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Serial.println();
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@@ -39,37 +37,19 @@ void setup_wifi() {
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Serial.println(WiFi.localIP());
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Serial.println(WiFi.localIP());
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}
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}
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void send_mqtt(String status, long minutes=0) {
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Serial.print("MQTT Send status ");
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Serial.print(status);
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Serial.print(" mins ");
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Serial.println(minutes);
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void reconnect() {
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JsonDocument doc;
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// Loop until we're reconnected
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while (!mqttClient.connected()) {
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Serial.print("Attempting MQTT connection...");
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// Create a random client ID
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String clientId = "ESP32Client-";
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clientId += String(random(0xffff), HEX);
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// Attempt to connect
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if (mqttClient.connect(clientId.c_str())) {
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Serial.println("MQTT connected");
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// Once connected, publish an announcement...
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} else {
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Serial.print("MQTT failed, rc=");
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Serial.print(mqttClient.state());
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Serial.println(" try again in 5 seconds");
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// Wait 5 seconds before retrying
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delay(5000);
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}
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}
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}
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void send_mqtt(String value) {
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const size_t CAPACITY = JSON_OBJECT_SIZE(1);
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StaticJsonDocument<CAPACITY> doc;
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// create an object
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JsonObject object = doc.to<JsonObject>();
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JsonObject object = doc.to<JsonObject>();
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object["status"] = value.c_str();
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object["status"] = status.c_str();
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if (minutes > 0) {
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object["minutes"] = minutes;
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}
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// serialize the object and send the result to Serial
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static char sensorStatus[150];
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static char sensorStatus[150];
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serializeJson(doc, sensorStatus);
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serializeJson(doc, sensorStatus);
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Serial.println(sensorStatus);
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Serial.println(sensorStatus);
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@@ -77,28 +57,89 @@ void send_mqtt(String value) {
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mqttClient.publish("Address/Livorno/Kitchen/PIR", sensorStatus, true);
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mqttClient.publish("Address/Livorno/Kitchen/PIR", sensorStatus, true);
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}
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}
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void reconnect() {
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int numRetries=0;
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while (!mqttClient.connected()) {
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numRetries++;
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Serial.print("Attempting MQTT connection...");
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// Create a random client ID
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String clientId = "ESP32Client-";
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clientId += String(random(0xffff), HEX);
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if (mqttClient.connect(clientId.c_str())) {
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Serial.println("MQTT connected");
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} else {
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Serial.print("MQTT failed, rc=");
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Serial.print(mqttClient.state());
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Serial.println(" try again in 5 seconds");
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if (numRetries>5){
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Serial.println("Too many retries, restarting the ESP...");
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ESP.restart();
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}
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delay(5000);
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}
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}
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send_mqtt("ready");
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}
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void setup() {
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void setup() {
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pinMode(LED_BUILTIN,OUTPUT);
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pinMode(LED_BUILTIN,OUTPUT);
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pinMode(PIR_PIN,INPUT);
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pinMode(PIR_PIN,INPUT_PULLUP);
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Serial.begin(115200);
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Serial.begin(115200);
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setup_wifi();
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setup_wifi();
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mqttClient.setServer(mqtt_server, 1883);
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const int mqttPort=1883;
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mqttClient.setServer(mqttServerName, mqttPort);
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}
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}
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const int millisPerSecond=1000;
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long previousMotionMillis=millis();
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short previousState=-1;
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long previousNoMoNotifyMinutes=0;
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void loop() {
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void loop() {
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if (!mqttClient.connected()) {
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if (!mqttClient.connected()) {
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reconnect();
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reconnect();
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}
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}
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mqttClient.loop();
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mqttClient.loop();
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int pir = digitalRead(PIR_PIN);
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short currentState = digitalRead(PIR_PIN);
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if (pir == HIGH) {
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// This out pin triggering is dependent not only on movement, but also on light levels which can be configured in the app.
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// I set it to 255 and "below" - this triggered it for me.....
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//send_mqtt("occupancy_state_debug", currentState);
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// When occupancy is detected, reset the timer
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if (currentState == HIGH) {
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previousMotionMillis=millis();
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}
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// Send messages only on status change, we don't want to flood the network...
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if (currentState != previousState) {
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Serial.print("Status changed; currentState: ");
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Serial.print(currentState);
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Serial.print(" previousState: ");
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Serial.println(previousState);
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if (currentState == HIGH) {
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send_mqtt("motion");
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send_mqtt("motion");
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digitalWrite(LED_BUILTIN,HIGH);
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digitalWrite(LED_BUILTIN,HIGH);
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delay(1000);
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} else {
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send_mqtt("no_motion_immediate");
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digitalWrite(LED_BUILTIN,LOW);
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digitalWrite(LED_BUILTIN,LOW);
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}
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}
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previousState = currentState;
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}
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// Send no_motion messages every minute, indicating how long we didn't see occupancy
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const int secondsPerMinute=60;
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long minutesSinceLastMotion=(millis()-previousMotionMillis)/(millisPerSecond*secondsPerMinute);
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if ((previousNoMoNotifyMinutes != minutesSinceLastMotion) && (0 != minutesSinceLastMotion)) {
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send_mqtt("no_motion", minutesSinceLastMotion);
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previousNoMoNotifyMinutes = minutesSinceLastMotion;
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}
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delay(50);
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}
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}
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Reference in New Issue
Block a user