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			333 lines
		
	
	
		
			8.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			333 lines
		
	
	
		
			8.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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  Graph - A web-based Graph display of ESP8266 data
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  This file is part of the ESP8266WebServer library for Arduino environment.
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  This library is free software; you can redistribute it and/or
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  modify it under the terms of the GNU Lesser General Public
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  License as published by the Free Software Foundation; either
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  version 2.1 of the License, or (at your option) any later version.
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  This library is distributed in the hope that it will be useful,
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  but WITHOUT ANY WARRANTY; without even the implied warranty of
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  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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  Lesser General Public License for more details.
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  You should have received a copy of the GNU Lesser General Public
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  License along with this library; if not, write to the Free Software
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  Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
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  See readme.md for more information.
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*/
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////////////////////////////////
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// Select the FileSystem by uncommenting one of the lines below
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//#define USE_SPIFFS
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#define USE_LITTLEFS
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//#define USE_SDFS
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////////////////////////////////
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#include <ESP8266WiFi.h>
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#include <WiFiClient.h>
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#include <ESP8266WebServer.h>
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#include <ESP8266mDNS.h>
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#include <SPI.h>
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#if defined USE_SPIFFS
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#include <FS.h>
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FS* fileSystem = &SPIFFS;
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SPIFFSConfig fileSystemConfig = SPIFFSConfig();
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#elif defined USE_LITTLEFS
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#include <LittleFS.h>
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FS* fileSystem = &LittleFS;
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LittleFSConfig fileSystemConfig = LittleFSConfig();
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#elif defined USE_SDFS
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#include <SDFS.h>
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FS* fileSystem = &SDFS;
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SDFSConfig fileSystemConfig = SDFSConfig();
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// fileSystemConfig.setCSPin(chipSelectPin);
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#else
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#error Please select a filesystem first by uncommenting one of the "#define USE_xxx" lines at the beginning of the sketch.
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#endif
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#define DBG_OUTPUT_PORT Serial
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#ifndef STASSID
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#define STASSID "your-ssid"
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#define STAPSK  "your-password"
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#endif
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// Indicate which digital I/Os should be displayed on the chart.
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// From GPIO16 to GPIO0, a '1' means the corresponding GPIO will be shown
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// e.g. 0b11111000000111111
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unsigned int gpioMask;
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const char* ssid = STASSID;
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const char* password = STAPSK;
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const char* host = "graph";
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ESP8266WebServer server(80);
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static const char TEXT_PLAIN[] PROGMEM = "text/plain";
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static const char FS_INIT_ERROR[] PROGMEM = "FS INIT ERROR";
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static const char FILE_NOT_FOUND[] PROGMEM = "FileNotFound";
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////////////////////////////////
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// Utils to return HTTP codes
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void replyOK() {
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  server.send(200, FPSTR(TEXT_PLAIN), "");
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}
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void replyOKWithMsg(String msg) {
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  server.send(200, FPSTR(TEXT_PLAIN), msg);
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}
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void replyNotFound(String msg) {
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  server.send(404, FPSTR(TEXT_PLAIN), msg);
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}
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void replyBadRequest(String msg) {
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  DBG_OUTPUT_PORT.println(msg);
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  server.send(400, FPSTR(TEXT_PLAIN), msg + "\r\n");
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}
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void replyServerError(String msg) {
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  DBG_OUTPUT_PORT.println(msg);
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  server.send(500, FPSTR(TEXT_PLAIN), msg + "\r\n");
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}
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////////////////////////////////
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// Request handlers
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/*
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   Read the given file from the filesystem and stream it back to the client
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*/
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bool handleFileRead(String path) {
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  DBG_OUTPUT_PORT.println(String("handleFileRead: ") + path);
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  if (path.endsWith("/")) {
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    path += "index.htm";
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  }
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  String contentType = mime::getContentType(path);
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  if (!fileSystem->exists(path)) {
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    // File not found, try gzip version
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    path = path + ".gz";
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  }
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  if (fileSystem->exists(path)) {
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    File file = fileSystem->open(path, "r");
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    if (server.streamFile(file, contentType) != file.size()) {
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      DBG_OUTPUT_PORT.println("Sent less data than expected!");
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    }
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    file.close();
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    return true;
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  }
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  return false;
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}
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/*
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   The "Not Found" handler catches all URI not explicitly declared in code
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   First try to find and return the requested file from the filesystem,
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   and if it fails, return a 404 page with debug information
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*/
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void handleNotFound() {
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  String uri = ESP8266WebServer::urlDecode(server.uri()); // required to read paths with blanks
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  if (handleFileRead(uri)) {
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    return;
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  }
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  // Dump debug data
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  String message;
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  message.reserve(100);
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  message = F("Error: File not found\n\nURI: ");
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  message += uri;
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  message += F("\nMethod: ");
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  message += (server.method() == HTTP_GET) ? "GET" : "POST";
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  message += F("\nArguments: ");
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  message += server.args();
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  message += '\n';
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  for (uint8_t i = 0; i < server.args(); i++) {
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    message += F(" NAME:");
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    message += server.argName(i);
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    message += F("\n VALUE:");
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    message += server.arg(i);
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    message += '\n';
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  }
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  message += "path=";
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  message += server.arg("path");
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  message += '\n';
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  DBG_OUTPUT_PORT.print(message);
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  return replyNotFound(message);
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}
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void setup(void) {
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  ////////////////////////////////
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  // SERIAL INIT
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  DBG_OUTPUT_PORT.begin(115200);
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  DBG_OUTPUT_PORT.setDebugOutput(true);
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  DBG_OUTPUT_PORT.print('\n');
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  ////////////////////////////////
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  // FILESYSTEM INIT
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  fileSystemConfig.setAutoFormat(false);
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  fileSystem->setConfig(fileSystemConfig);
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  bool fsOK = fileSystem->begin();
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  DBG_OUTPUT_PORT.println(fsOK ? F("Filesystem initialized.") : F("Filesystem init failed!"));
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  ////////////////////////////////
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  // PIN INIT
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  pinMode(4, INPUT);
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  pinMode(12, OUTPUT);
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  pinMode(13, OUTPUT);
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  pinMode(15, OUTPUT);
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  ////////////////////////////////
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  // WI-FI INIT
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  DBG_OUTPUT_PORT.printf("Connecting to %s\n", ssid);
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  WiFi.mode(WIFI_STA);
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  WiFi.begin(ssid, password);
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  // Wait for connection
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  while (WiFi.status() != WL_CONNECTED) {
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    delay(500);
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    DBG_OUTPUT_PORT.print(".");
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  }
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  DBG_OUTPUT_PORT.println("");
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  DBG_OUTPUT_PORT.print(F("Connected! IP address: "));
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  DBG_OUTPUT_PORT.println(WiFi.localIP());
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  ////////////////////////////////
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  // MDNS INIT
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  if (MDNS.begin(host)) {
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    MDNS.addService("http", "tcp", 80);
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    DBG_OUTPUT_PORT.print(F("Open http://"));
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    DBG_OUTPUT_PORT.print(host);
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    DBG_OUTPUT_PORT.println(F(".local to open the graph page"));
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  }
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  ////////////////////////////////
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  // WEB SERVER INIT
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  //get heap status, analog input value and all GPIO statuses in one json call
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  server.on("/espData", HTTP_GET, []() {
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    String json;
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    json.reserve(88);
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    json = "{\"time\":";
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    json += millis();
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    json += ", \"heap\":";
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    json += ESP.getFreeHeap();
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    json += ", \"analog\":";
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    json += analogRead(A0);
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    json += ", \"gpioMask\":";
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    json += gpioMask;
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    json += ", \"gpioData\":";
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    json += (uint32_t)(((GPI | GPO) & 0xFFFF) | ((GP16I & 0x01) << 16));
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    json += "}";
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    server.send(200, "text/json", json);
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  });
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  // Default handler for all URIs not defined above
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  // Use it to read files from filesystem
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  server.onNotFound(handleNotFound);
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  // Start server
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  server.begin();
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  DBG_OUTPUT_PORT.println("HTTP server started");
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  DBG_OUTPUT_PORT.println("Please pull GPIO4 low (e.g. press button) to switch output mode:");
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  DBG_OUTPUT_PORT.println(" 0 (OFF):    outputs are off and hidden from chart");
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  DBG_OUTPUT_PORT.println(" 1 (AUTO):   outputs are rotated automatically every second");
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  DBG_OUTPUT_PORT.println(" 2 (MANUAL): outputs can be toggled from the web page");
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}
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// Return default GPIO mask, that is all I/Os except SD card ones
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unsigned int defaultMask() {
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  unsigned int mask = 0b11111111111111111;
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  for (auto pin = 0; pin <= 16; pin++) {
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    if (isFlashInterfacePin(pin)) {
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      mask &= ~(1 << pin);
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    }
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  }
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  return mask;
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}
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int rgbMode = 1; // 0=off - 1=auto - 2=manual
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int rgbValue = 0;
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esp8266::polledTimeout::periodicMs timeToChange(1000);
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bool modeChangeRequested = false;
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void loop(void) {
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  server.handleClient();
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  MDNS.update();
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  if (digitalRead(4) == 0) {
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    // button pressed
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    modeChangeRequested = true;
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  }
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  // see if one second has passed since last change, otherwise stop here
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  if (!timeToChange) {
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    return;
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  }
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  // see if a mode change was requested
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  if (modeChangeRequested) {
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    // increment mode (reset after 2)
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    rgbMode++;
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    if (rgbMode > 2) {
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      rgbMode = 0;
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    }
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    modeChangeRequested = false;
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  }
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  // act according to mode
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  switch (rgbMode) {
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    case 0: // off
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      gpioMask = defaultMask();
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      gpioMask &= ~(1 << 12); // Hide GPIO 12
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      gpioMask &= ~(1 << 13); // Hide GPIO 13
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      gpioMask &= ~(1 << 15); // Hide GPIO 15
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      // reset outputs
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      digitalWrite(12, 0);
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      digitalWrite(13, 0);
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      digitalWrite(15, 0);
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      break;
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    case 1: // auto
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      gpioMask = defaultMask();
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      // increment value (reset after 7)
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      rgbValue++;
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      if (rgbValue > 7) {
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        rgbValue = 0;
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      }
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      // output new values
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      digitalWrite(12, rgbValue & 0b001);
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      digitalWrite(13, rgbValue & 0b010);
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      digitalWrite(15, rgbValue & 0b100);
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      break;
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    case 2: // manual
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      gpioMask = defaultMask();
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      // keep outputs unchanged
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      break;
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  }
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}
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