Update wifi.ino

This commit is contained in:
Ghassan Yusuf 2025-06-10 22:24:46 +03:00
parent 9666c3ef44
commit a2e8efc215

422
wifi.ino
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@ -1,177 +1,267 @@
#include <Wire.h>
#include <Adafruit_GFX.h>
#include <Adafruit_SSD1306.h>
#include <FS.h>
#include <SPIFFS.h>
#include <WiFiManager.h>
#include <ArduinoJson.h>
#include <Wire.h>
#include <Adafruit_GFX.h>
#include <Adafruit_SSD1306.h>
#include <FS.h>
#include <SPIFFS.h>
#include <WiFiManager.h>
#include <ArduinoJson.h>
#include <PubSubClient.h> // <-- Add this
#define PRODUCT_NAME "TAKEONE"
#define PRODUCT_NAME "TAKEONE"
// OLED display setup (on I2C bus 0)
#define OLED_SDA 18
#define OLED_SCL 19
#define SCREEN_WIDTH 128
#define SCREEN_HEIGHT 32
#define OLED_RESET -1
// OLED display setup (on I2C bus 0)
#define OLED_SDA 18
#define OLED_SCL 19
#define SCREEN_WIDTH 128
#define SCREEN_HEIGHT 32
#define OLED_RESET -1
Adafruit_SSD1306 display(SCREEN_WIDTH, SCREEN_HEIGHT, &Wire, OLED_RESET);
Adafruit_SSD1306 display(SCREEN_WIDTH, SCREEN_HEIGHT, &Wire, OLED_RESET);
// Second I2C bus for other sensors/devices
#define I2C2_SDA 1
#define I2C2_SCL 2
TwoWire I2C_Two = TwoWire(1);
// Second I2C bus for other sensors/devices
#define I2C2_SDA 1
#define I2C2_SCL 2
TwoWire I2C_Two = TwoWire(1);
// MQTT/WiFi config
char mqtt_server[40] = "";
char mqtt_port[6] = "8080";
char api_token[34] = "YOUR_API_TOKEN";
bool shouldSaveConfig = false;
// WiFi loss detection
unsigned long wifiLostTime = 0;
bool portalOpened = false;
// Button reset
#define BOOT_BUTTON 0 // Usually GPIO 0 on ESP32
void saveConfigCallback() {
shouldSaveConfig = true;
display.clearDisplay();
display.setCursor(0, 0);
display.println("Saving config...");
display.display();
}
void showStatus(const String& line1, const String& line2 = "", const String& line3 = "") {
display.clearDisplay();
display.setCursor(0, 0);
display.println(line1);
if (!line2.isEmpty()) display.println(line2);
if (!line3.isEmpty()) display.println(line3);
display.display();
}
void setup() {
Serial.begin(115200);
// Start both I2C buses
Wire.begin(OLED_SDA, OLED_SCL);
I2C_Two.begin(I2C2_SDA, I2C2_SCL);
// OLED init
if (!display.begin(SSD1306_SWITCHCAPVCC, 0x3C)) {
Serial.println("SSD1306 allocation failed");
while (1);
}
display.setTextSize(1);
display.setTextColor(WHITE);
showStatus("Booting...");
// Mount SPIFFS
if (!SPIFFS.begin(true)) {
showStatus("SPIFFS mount", "failed!");
delay(2000);
} else if (SPIFFS.exists("/config.json")) {
File configFile = SPIFFS.open("/config.json", "r");
if (configFile) {
DynamicJsonDocument json(256);
DeserializationError err = deserializeJson(json, configFile);
if (!err) {
strlcpy(mqtt_server, json["mqtt_server"] | "", sizeof(mqtt_server));
strlcpy(mqtt_port, json["mqtt_port"] | "8080", sizeof(mqtt_port));
strlcpy(api_token, json["api_token"] | "YOUR_API_TOKEN", sizeof(api_token));
}
configFile.close();
}
}
// WiFiManager parameters
WiFiManagerParameter custom_mqtt_server("server", "MQTT Server", mqtt_server, 40);
WiFiManagerParameter custom_mqtt_port("port", "MQTT Port", mqtt_port, 6);
WiFiManagerParameter custom_api_token("apikey", "API Token", api_token, 33);
WiFiManager wifiManager;
wifiManager.setSaveConfigCallback(saveConfigCallback);
wifiManager.addParameter(&custom_mqtt_server);
wifiManager.addParameter(&custom_mqtt_port);
wifiManager.addParameter(&custom_api_token);
showStatus("Connecting WiFi...");
if (!wifiManager.autoConnect(PRODUCT_NAME)) {
showStatus("WiFi Connect", "Failed!", "Restarting...");
delay(3000);
ESP.restart();
}
// Update config values
strlcpy(mqtt_server, custom_mqtt_server.getValue(), sizeof(mqtt_server));
strlcpy(mqtt_port, custom_mqtt_port.getValue(), sizeof(mqtt_port));
strlcpy(api_token, custom_api_token.getValue(), sizeof(api_token));
// Save config if needed
if (shouldSaveConfig) {
DynamicJsonDocument json(256);
json["mqtt_server"] = mqtt_server;
json["mqtt_port"] = mqtt_port;
json["api_token"] = api_token;
File configFile = SPIFFS.open("/config.json", "w");
if (configFile) {
serializeJson(json, configFile);
configFile.close();
}
}
// Show final info (truncate to fit OLED)
String ipStr = WiFi.localIP().toString();
if (ipStr.length() > 15) ipStr = ipStr.substring(0, 15);
showStatus("IPAD: " + ipStr, "MQTT: " + String(mqtt_server), "Port: " + String(mqtt_port));
// Button setup
pinMode(BOOT_BUTTON, INPUT_PULLUP);
}
void loop() {
// MQTT/WiFi config
char mqtt_server[40] = "";
char mqtt_port[6] = "8080";
char api_token[34] = "YOUR_API_TOKEN";
bool shouldSaveConfig = false;
// WiFi loss detection
if (WiFi.status() != WL_CONNECTED) {
if (wifiLostTime == 0) {
wifiLostTime = millis();
} else if (millis() - wifiLostTime > 10000 && !portalOpened) {
showStatus("WiFi lost", "Opening portal...");
WiFiManager wifiManager;
portalOpened = true;
wifiManager.startConfigPortal(PRODUCT_NAME);
portalOpened = false;
unsigned long wifiLostTime = 0;
bool portalOpened = false;
// Button reset
#define BOOT_BUTTON 0 // Usually GPIO 0 on ESP32
// MQTT client setup
WiFiClient espClient;
PubSubClient mqttClient(espClient);
// MQTT topics
#define MQTT_TOPIC_SUB "takeone/in"
#define MQTT_TOPIC_PUB "takeone/out"
//================================================================
// SETUP
//================================================================
void saveConfigCallback() {
shouldSaveConfig = true;
display.clearDisplay();
display.setCursor(0, 0);
display.println("Saving config...");
display.display();
}
//================================================================
// SETUP
//================================================================
void showStatus(const String& line1, const String& line2 = "", const String& line3 = "") {
display.clearDisplay();
display.setCursor(0, 0);
display.println(line1);
if (!line2.isEmpty()) display.println(line2);
if (!line3.isEmpty()) display.println(line3);
display.display();
}
//================================================================
// SETUP
//================================================================
// MQTT message received callback
void mqttCallback(char* topic, byte* payload, unsigned int length) {
char message[length + 1];
memcpy(message, payload, length);
message[length] = '\0';
Serial.print("Message received: ");
Serial.println(message);
showStatus("MQTT:", "RX: " + String(message));
}
//================================================================
// SETUP
//================================================================
// Connect to MQTT broker
bool mqttConnect() {
if (!mqttClient.connected()) {
Serial.println("Connecting to MQTT broker...");
showStatus("MQTT:", "Connecting...");
if (mqttClient.connect("ESP32Client", "", "")) {
Serial.println("Connected to MQTT broker");
mqttClient.subscribe(MQTT_TOPIC_SUB);
showStatus("MQTT:", "Connected!");
return true;
} else {
Serial.println("Failed to connect to MQTT broker");
showStatus("MQTT:", "Failed!");
return false;
}
}
return true;
}
//================================================================
// SETUP
//================================================================
void setup() {
Serial.begin(115200);
// Start both I2C buses
Wire.begin(OLED_SDA, OLED_SCL);
I2C_Two.begin(I2C2_SDA, I2C2_SCL);
// OLED init
if (!display.begin(SSD1306_SWITCHCAPVCC, 0x3C)) {
Serial.println("SSD1306 allocation failed");
while (1);
}
display.setTextSize(1);
display.setTextColor(WHITE);
showStatus("Booting...");
// Mount SPIFFS
if (!SPIFFS.begin(true)) {
showStatus("SPIFFS mount", "failed!");
delay(2000);
} else if (SPIFFS.exists("/config.json")) {
File configFile = SPIFFS.open("/config.json", "r");
if (configFile) {
DynamicJsonDocument json(256);
DeserializationError err = deserializeJson(json, configFile);
if (!err) {
strlcpy(mqtt_server, json["mqtt_server"] | "", sizeof(mqtt_server));
strlcpy(mqtt_port, json["mqtt_port"] | "8080", sizeof(mqtt_port));
strlcpy(api_token, json["api_token"] | "YOUR_API_TOKEN", sizeof(api_token));
}
configFile.close();
}
}
// WiFiManager parameters
WiFiManagerParameter custom_mqtt_server("server", "MQTT Server", mqtt_server, 40);
WiFiManagerParameter custom_mqtt_port("port", "MQTT Port", mqtt_port, 6);
WiFiManagerParameter custom_api_token("apikey", "API Token", api_token, 33);
WiFiManager wifiManager;
wifiManager.setSaveConfigCallback(saveConfigCallback);
wifiManager.addParameter(&custom_mqtt_server);
wifiManager.addParameter(&custom_mqtt_port);
wifiManager.addParameter(&custom_api_token);
showStatus("Connecting WiFi...");
if (!wifiManager.autoConnect(PRODUCT_NAME)) {
showStatus("WiFi Connect", "Failed!", "Restarting...");
delay(3000);
ESP.restart();
}
// Update config values
strlcpy(mqtt_server, custom_mqtt_server.getValue(), sizeof(mqtt_server));
strlcpy(mqtt_port, custom_mqtt_port.getValue(), sizeof(mqtt_port));
strlcpy(api_token, custom_api_token.getValue(), sizeof(api_token));
// Save config if needed
if (shouldSaveConfig) {
DynamicJsonDocument json(256);
json["mqtt_server"] = mqtt_server;
json["mqtt_port"] = mqtt_port;
json["api_token"] = api_token;
File configFile = SPIFFS.open("/config.json", "w");
if (configFile) {
serializeJson(json, configFile);
configFile.close();
}
}
// Show final info (truncate to fit OLED)
String ipStr = WiFi.localIP().toString();
if (ipStr.length() > 15) ipStr = ipStr.substring(0, 15);
showStatus("IPAD: " + ipStr, "MQTT: " + String(mqtt_server), "Port: " + String(mqtt_port));
// Button setup
pinMode(BOOT_BUTTON, INPUT_PULLUP);
// MQTT setup
mqttClient.setServer(mqtt_server, atoi(mqtt_port));
mqttClient.setCallback(mqttCallback);
}
//================================================================
// SETUP
//================================================================
void loop() {
// WiFi loss detection
if (WiFi.status() != WL_CONNECTED) {
if (wifiLostTime == 0) {
wifiLostTime = millis();
} else if (millis() - wifiLostTime > 10000 && !portalOpened) {
showStatus("WiFi lost", "Opening portal...");
WiFiManager wifiManager;
portalOpened = true;
wifiManager.startConfigPortal(PRODUCT_NAME);
portalOpened = false;
wifiLostTime = 0;
}
} else {
wifiLostTime = 0;
// MQTT keepalive and reconnect
if (!mqttClient.connected()) {
mqttConnect();
}
mqttClient.loop();
}
} else {
wifiLostTime = 0;
// Button hold check
static unsigned long buttonPressedTime = 0;
static bool buttonActionTaken = false;
if (digitalRead(BOOT_BUTTON) == LOW) {
if (buttonPressedTime == 0) {
buttonPressedTime = millis();
} else if (millis() - buttonPressedTime > 5000 && !buttonActionTaken) {
showStatus("Erasing WiFi", "Opening portal...");
WiFi.disconnect(true);
WiFiManager wifiManager;
wifiManager.resetSettings();
wifiManager.startConfigPortal(PRODUCT_NAME);
buttonActionTaken = true;
}
} else {
buttonPressedTime = 0;
buttonActionTaken = false;
}
// Example: Publish a message every 5 seconds
static unsigned long lastPublish = 0;
if (millis() - lastPublish > 5000) {
lastPublish = millis();
if (mqttClient.connected()) {
String msg = "Hello from " + String(PRODUCT_NAME);
mqttClient.publish(MQTT_TOPIC_PUB, msg.c_str());
}
}
}
// Button hold check
static unsigned long buttonPressedTime = 0;
static bool buttonActionTaken = false;
if (digitalRead(BOOT_BUTTON) == LOW) {
if (buttonPressedTime == 0) {
buttonPressedTime = millis();
} else if (millis() - buttonPressedTime > 5000 && !buttonActionTaken) {
showStatus("Erasing WiFi", "Opening portal...");
WiFi.disconnect(true);
WiFiManager wifiManager;
wifiManager.resetSettings();
wifiManager.startConfigPortal("AutoConnectAP", "12345678");
buttonActionTaken = true;
}
} else {
buttonPressedTime = 0;
buttonActionTaken = false;
}
}
//================================================================
// SETUP
//================================================================