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PlatformIO_ESP32_ServoWebSe…/MyIRemote/src/IRBedroom.cpp

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2020-09-21 17:57:22 -05:00
#include <Arduino.h>
#include <IRrecv.h>
#include <IRsend.h>
#include <IRremoteESP8266.h>
#include <IRac.h>
#include <IRtext.h>
#include <IRutils.h>
#include <WiFi.h>
#include <PubSubClient.h>
const uint16_t kIrLed = 4; // ESP8266 GPIO pin to use. Recommended: 4 (D2).
IRsend irsend(kIrLed); // Set the GPIO to be used to sending the message.
// IR Receiver connected to PIN D5 (14)
const uint16_t kRecvPin = 14;
const uint32_t kBaudRate = 115200;
const uint16_t kCaptureBufferSize = 1024;
#if DECODE_AC
// Some A/C units have gaps in their protocols of ~40ms. e.g. Kelvinator
// A value this large may swallow repeats of some protocols
const uint8_t kTimeout = 50;
#else // DECODE_AC
// Suits most messages, while not swallowing many repeats.
const uint8_t kTimeout = 15;
#endif // DECODE_AC
const uint16_t kMinUnknownSize = 12;
#define LEGACY_TIMING_INFO false
IRrecv irrecv(kRecvPin, kCaptureBufferSize, kTimeout, true);
decode_results results; // Somewhere to store the results
// Update these with values suitable for your network.
const char* ssid = "JoeNelsDarlings";
const char* password = "Paris2016";
const char* mqtt_server = "mqtt.ddns.kawomi.com";
const String room_name = "IRBedroom";
//const String room_name = "IRBedroom";
WiFiClient espClient;
PubSubClient client(espClient);
unsigned long lastMsg = 0;
#define MSG_BUFFER_SIZE (50)
char msg[MSG_BUFFER_SIZE];
int value = 0;
void setup_wifi() {
delay(10);
// We start by connecting to a WiFi network
Serial.println();
Serial.print("Connecting to ");
Serial.println(ssid);
WiFi.mode(WIFI_STA);
WiFi.begin(ssid, password);
while (WiFi.status() != WL_CONNECTED) {
delay(500);
Serial.print(".");
}
randomSeed(micros());
Serial.println("X");
Serial.println("WiFi connected");
Serial.println("IP address: ");
Serial.println(WiFi.localIP());
}
void callback(char* topic, byte* payload, unsigned int length) {
Serial.print("Message arrived [");
Serial.print(topic);
String recBuf="";
Serial.print("] ");
for (int i = 0; i < length; i++) {
recBuf += (char)payload[i];
}
Serial.println(recBuf);
int numEle=1;
for (int i=0; i<recBuf.length() ; i++){
if (recBuf.charAt(i) == ',') {
numEle++;
}
}
recBuf+=",";
Serial.print("NumEle ");
Serial.println(numEle);
int rawPos=0;
uint16_t rawData[numEle];
String bufSingleNum="";
for (int i=0;i<recBuf.length();i++){
if (recBuf.charAt(i) != ',') {
bufSingleNum+=recBuf.charAt(i);
} else {
bufSingleNum.trim();
rawData[rawPos++]=bufSingleNum.toInt();
bufSingleNum="";
}
}
irrecv.disableIRIn(); // Stop the receiver
irsend.sendRaw(rawData, numEle, 38);
irrecv.enableIRIn(); // Start the receiver
}
void reconnect() {
// Loop until we're reconnected
while (!client.connected()) {
Serial.print("Attempting MQTT connection...");
// Create a random client ID
String clientId = String("ESP8266" + room_name);
//clientId += String(random(0xffff), HEX);
// Attempt to connect
if (client.connect(clientId.c_str())) {
Serial.println("connected");
// Once connected, publish an announcement...
client.publish(room_name.c_str(), "Connected");
// ... and resubscribe
client.subscribe(String(room_name + "/SendIR").c_str());
} else {
Serial.print("failed, rc=");
Serial.print(client.state());
Serial.println(" try again in 5 seconds");
// Wait 5 seconds before retrying
delay(5000);
}
}
}
void setup() {
pinMode(BUILTIN_LED, OUTPUT); // Initialize the BUILTIN_LED pin as an output
Serial.begin(kBaudRate);
setup_wifi();
client.setBufferSize(4096);
client.setServer(mqtt_server, 1883);
client.setCallback(callback);
// OTAwifi(); // start default wifi (previously saved on the ESP) for OTA
#if defined(ESP8266)
Serial.begin(kBaudRate, SERIAL_8N1, SERIAL_TX_ONLY);
#else // ESP8266
Serial.begin(kBaudRate, SERIAL_8N1);
#endif // ESP8266
while (!Serial) // Wait for the serial connection to be establised.
delay(50);
Serial.printf("\n" D_STR_IRRECVDUMP_STARTUP "\n", kRecvPin);
// OTAinit(); // setup OTA handlers and show IP
#if DECODE_HASH
// Ignore messages with less than minimum on or off pulses.
irrecv.setUnknownThreshold(kMinUnknownSize);
#endif // DECODE_HASH
irrecv.enableIRIn(); // Start the receiver
irsend.begin();
}
void loop() {
if (!client.connected()) {
reconnect();
}
client.loop();
/* unsigned long now = millis();
if (now - lastMsg > 2000) {
lastMsg = now;
++value;
snprintf (msg, MSG_BUFFER_SIZE, "hello world #%ld", value);
Serial.print("Publish message: ");
Serial.println(msg);
client.publish("IRBedroomReceivedIR", msg);
}
*/
// Check if the IR code has been received.
if (irrecv.decode(&results)) {
// Display a crude timestamp.
uint32_t now = millis();
Serial.printf(D_STR_TIMESTAMP " : %06u.%03u\n", now / 1000, now % 1000);
// Check if we got an IR message that was to big for our capture buffer.
if (results.overflow)
Serial.printf(D_WARN_BUFFERFULL "\n", kCaptureBufferSize);
// Display the library version the message was captured with.
Serial.println(D_STR_LIBRARY " : v" _IRREMOTEESP8266_VERSION_ "\n");
// Display the basic output of what we found.
String theResult,theSrc;
theResult=resultToHumanReadableBasic(&results);
theSrc=resultToSourceCode(&results);
Serial.println(theSrc.c_str());
bool isPub = client.publish(String(room_name + "/ReceivedIR").c_str(), theSrc.c_str());
if (isPub)
Serial.println("PUBLISHED");
else
Serial.println("PUBLISH FAILED");
}
}