WLED/wled00/wled00.ino

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/*
* Main sketch
*/
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#include <Arduino.h>
#include <ESP8266WiFi.h>
#include <ESP8266WebServer.h>
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#include <ESP8266HTTPUpdateServer.h>
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#include <ESP8266mDNS.h>
#include <EEPROM.h>
#include <Hash.h>
#include "WS2812FX.h"
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#include <FS.h>
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#include <WiFiUDP.h>
#include <Time.h>
#include <TimeLib.h>
#include <Timezone.h>
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//to toggle usb serial debug (un)comment following line
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//#define DEBUG
#ifdef DEBUG
#define DEBUG_PRINT(x) Serial.print (x)
#define DEBUG_PRINTLN(x) Serial.println (x)
#define DEBUG_PRINTF(x) Serial.printf (x)
#else
#define DEBUG_PRINT(x)
#define DEBUG_PRINTLN(x)
#define DEBUG_PRINTF(x)
#endif
/*
* @title WLED project sketch
* @version 0.3pd
* @author Christian Schwinne
*/
//Hardware-settings (only changeble via code)
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#define LEDCOUNT 84
uint8_t buttonPin = 0; //needs pull-up
//AP and OTA default passwords (change them!)
String appass = "wled1234";
String otapass = "wledota";
TimeChangeRule CEST = {"CEST", Last, Sun, Mar, 2, 120}; //Central European Summer Time
TimeChangeRule CET = {"CET ", Last, Sun, Oct, 3, 60}; //Central European Standard Time
Timezone TZ(CEST, CET);
TimeChangeRule *tcr; //pointer to the time change rule, use to get the TZ abbrev
time_t local;
//Default CONFIG
String serverDescription = "WLED 0.3pd";
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String clientssid = "Your_Network_Here";
String clientpass = "Dummy_Pass";
String cmdns = "led";
String apssid = "WLED-AP";
uint8_t apchannel = 1;
uint8_t aphide = 0;
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boolean useap = true;
IPAddress staticip(0, 0, 0, 0);
IPAddress staticgateway(0, 0, 0, 0);
IPAddress staticsubnet(255, 255, 255, 0);
byte col_s[]{255, 127, 0};
byte bri_s = 127;
uint8_t bri_nl = 0;
boolean fadeTransition = true;
boolean seqTransition = false;
uint16_t transitionDelay = 1500;
boolean ota_lock = true;
boolean only_ap = false;
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boolean buttonEnabled = true;
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boolean notifyDirect = true, notifyButton = true, notifyNightlight = false, notifyMaster = true;
boolean receiveNotifications = true, receiveNotificationsDefault = true;
uint8_t bri_n = 100;
uint8_t nightlightDelayMins = 60;
boolean nightlightFade = true;
uint16_t udpPort = 21324;
uint8_t effectDefault = 0;
uint8_t effectSpeedDefault = 75;
boolean ntpEnabled = false;
const char* ntpServerName = "time.nist.gov";
long ntpRetryMs = 9600;
long ntpResyncMs = 72000000L;
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int overlayMin = 0, overlayMax = 9;
int analogClock12pixel = 25;
boolean analogClockSecondsTrail = false;
boolean analogClock5MinuteMarks = true;
boolean nixieClockDisplaySeconds = false;
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boolean nixieClock12HourFormat = false;
boolean overlayReverse = true;
uint8_t overlaySpeed = 200;
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double transitionResolution = 0.011;
//Internal vars
byte col[]{0, 0, 0};
byte col_old[]{0, 0, 0};
byte col_t[]{0, 0, 0};
byte col_it[]{0, 0, 0};
long transitionStartTime;
long nightlightStartTime;
float tper_last = 0;
byte bri = 0;
byte bri_old = 0;
byte bri_t = 0;
byte bri_it = 0;
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byte bri_last = 127;
boolean transitionActive = false;
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boolean buttonPressedBefore = false;
boolean nightlightActive = false;
boolean nightlightActive_old = false;
int transitionDelay_old;
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int nightlightDelayMs;
uint8_t effectCurrent = 0;
uint8_t effectSpeed = 75;
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boolean udpConnected = false;
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byte udpIn[LEDCOUNT*4+2];
IPAddress ntpIp;
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IPAddress ntpBackupIp(134,130,5,17);
byte ntpBuffer[48];
boolean ntpConnected = false;
boolean ntpSyncNeeded = true;
boolean ntpPacketSent = false;
long ntpPacketSentTime, ntpSyncTime;
uint8_t overlayCurrent = 0;
long overlayRefreshMs = 200;
long overlayRefreshedTime;
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int overlayArr[6];
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int overlayDur[6];
int overlayPauseDur[6];
int nixieClockI = -1;
boolean nixiePause;
long countdownTime = 1483225200L;
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boolean arlsTimeout = false;
long arlsTimeoutTime;
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ESP8266WebServer server(80);
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ESP8266HTTPUpdateServer httpUpdater;
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WiFiUDP notifierUdp;
WiFiUDP ntpUdp;
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WS2812FX strip = WS2812FX(LEDCOUNT, 2, NEO_GRB + NEO_KHZ800);
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File fsUploadFile;
#ifdef DEBUG
int debugIndex = 0;
int lastWifiState = 3;
long wifiStateChangedTime = 0;
#endif
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void down()
{
bri_t = 0;
setAllLeds();
DEBUG_PRINTLN("MODULE TERMINATED");
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while (1) {delay(1000);}
}
void reset()
{
bri_t = 0;
setAllLeds();
DEBUG_PRINTLN("MODULE RESET");
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ESP.reset();
}
uint8_t bool2int(boolean value)
{
if (value) return 1;
return 0;
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}
void setup() {
wledInit();
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}
void loop() {
server.handleClient();
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handleNotifications();
handleTransitions();
handleNightlight();
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handleButton();
handleNetworkTime();
handleOverlays();
strip.service();
//DEBUG
#ifdef DEBUG
debugIndex ++;
if (debugIndex > 99999)
{
debugIndex = 0;
DEBUG_PRINTLN("---MODULE DEBUG INFO---");
DEBUG_PRINT("Runtime: "); DEBUG_PRINTLN(millis());
DEBUG_PRINT("Unix time: "); DEBUG_PRINTLN(now());
DEBUG_PRINT("Wifi state: "); DEBUG_PRINTLN(WiFi.status());
if (WiFi.status() != lastWifiState)
{
wifiStateChangedTime = millis();
}
lastWifiState = WiFi.status();
DEBUG_PRINT("Wifi state: "); DEBUG_PRINTLN(wifiStateChangedTime);
DEBUG_PRINT("NTP sync needed: "); DEBUG_PRINTLN(ntpSyncNeeded);
DEBUG_PRINT("Client IP: "); DEBUG_PRINTLN(WiFi.localIP());
}
#endif
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}