2020-06-12 15:28:35 +02:00
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#include "WifiInterface.h"
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#include "Config.h"
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#include "DIAG.h"
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2020-06-12 20:56:40 +02:00
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#include "StringFormatter.h"
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2020-06-27 16:36:32 +02:00
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#include "WiThrottle.h"
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2020-06-28 13:45:31 +02:00
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#include "HTTPParser.h"
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2020-06-13 16:53:46 +02:00
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const char PROGMEM READY_SEARCH[] ="\r\nready\r\n";
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const char PROGMEM OK_SEARCH[] ="\r\nOK\r\n";
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const char PROGMEM END_DETAIL_SEARCH[] ="@ 1000";
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const char PROGMEM PROMPT_SEARCH[] =">";
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const char PROGMEM SEND_OK_SEARCH[] ="\r\nSEND OK\r\n";
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2020-06-12 15:28:35 +02:00
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bool WifiInterface::connected=false;
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2020-06-13 10:36:10 +02:00
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DCCEXParser WifiInterface::parser;
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byte WifiInterface::loopstate=0;
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int WifiInterface::datalength=0;
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int WifiInterface::connectionId;
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byte WifiInterface::buffer[MAX_WIFI_BUFFER];
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MemStream WifiInterface::streamer(buffer,sizeof(buffer));
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2020-06-12 15:28:35 +02:00
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2020-06-28 11:21:27 +02:00
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void WifiInterface::setup(Stream & wifiStream, const __FlashStringHelper* SSid, const __FlashStringHelper* password, int port) {
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2020-06-12 20:56:40 +02:00
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DIAG(F("\n++++++ Wifi Setup In Progress ++++++++\n"));
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2020-06-28 11:21:27 +02:00
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connected=setup2(wifiStream, SSid, password,port);
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2020-06-13 10:36:10 +02:00
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// TODO calloc the buffer and streamer and parser etc
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2020-06-13 16:53:46 +02:00
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DIAG(F("\n++++++ Wifi Setup %S ++++++++\n"), connected?F("OK"):F("FAILED"));
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2020-06-12 20:56:40 +02:00
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}
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2020-06-28 11:21:27 +02:00
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bool WifiInterface::setup2(Stream & wifiStream, const __FlashStringHelper* SSid, const __FlashStringHelper* password, int port)
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{
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delay(1000);
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2020-06-12 15:28:35 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+RST\r\n")); // reset module
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checkForOK(wifiStream,5000,END_DETAIL_SEARCH,true); // Show startup but ignore unreadable upto ready
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if (!checkForOK(wifiStream,5000,READY_SEARCH,false)) return false;
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2020-06-12 15:28:35 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+CWMODE=1\r\n")); // configure as access point
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if (!checkForOK(wifiStream,10000,OK_SEARCH,true)) return false;
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2020-06-12 20:56:40 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+CWJAP=\"%S\",\"%S\"\r\n"),SSid,password);
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if (!checkForOK(wifiStream,20000,OK_SEARCH,true)) return false;
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2020-06-12 15:28:35 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+CIFSR\r\n")); // get ip address //192.168.4.1
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if (!checkForOK(wifiStream,10000,OK_SEARCH,true)) return false;
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2020-06-12 20:56:40 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+CIPMUX=1\r\n")); // configure for multiple connections
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if (!checkForOK(wifiStream,10000,OK_SEARCH,true)) return false;
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2020-06-12 20:56:40 +02:00
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2020-06-28 11:21:27 +02:00
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StringFormatter::send(wifiStream,F("AT+CIPSERVER=1,%d\r\n"),port); // turn on server on port 80
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if (!checkForOK(wifiStream,10000,OK_SEARCH,true)) return false;
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2020-06-12 20:56:40 +02:00
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return true;
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2020-06-12 15:28:35 +02:00
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}
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2020-06-29 12:37:05 +02:00
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bool WifiInterface::checkForOK(Stream & wifiStream, const unsigned int timeout, const char * waitfor, bool echo) {
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unsigned long startTime = millis();
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char const *locator=waitfor;
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DIAG(F("\nWifi setup Check: %S\n"),waitfor);
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while( millis()-startTime < timeout) {
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while(wifiStream.available()) {
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int ch=wifiStream.read();
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if (echo) Serial.write(ch);
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if (ch!=pgm_read_byte_near(locator)) locator=waitfor;
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if (ch==pgm_read_byte_near(locator)) {
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locator++;
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if (!pgm_read_byte_near(locator)) {
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DIAG(F("\nOK after %dms\n"),millis()-startTime);
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2020-06-12 20:56:40 +02:00
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return true;
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}
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}
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}
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}
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DIAG(F("\nTIMEOUT after %dms\n"),timeout);
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return false;
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}
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2020-06-12 15:28:35 +02:00
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2020-06-29 12:37:05 +02:00
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bool WifiInterface::isHTML() {
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// POST GET PUT PATCH DELETE
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// You may think a simple strstr() is better... but not when ram & time is in short supply
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switch (buffer[0]) {
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case 'P':
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if (buffer[1]=='U' && buffer[2]=='T' && buffer[3]==' ' ) return true;
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if (buffer[1]=='O' && buffer[2]=='S' && buffer[3]=='T' && buffer[4]==' ') return true;
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if (buffer[1]=='A' && buffer[2]=='T' && buffer[3]=='C' && buffer[4]=='H' && buffer[5]==' ') return true;
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return false;
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case 'G':
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if (buffer[1]=='E' && buffer[2]=='T' && buffer[3]==' ' ) return true;
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return false;
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case 'D':
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if (buffer[1]=='E' && buffer[2]=='L' && buffer[3]=='E' && buffer[4]=='T' && buffer[5]=='E' && buffer[6]==' ') return true;
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return false;
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default:
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return false;
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}
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}
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2020-06-28 11:21:27 +02:00
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void WifiInterface::loop(Stream & wifiStream) {
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if (!connected) return;
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2020-06-27 16:36:32 +02:00
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WiThrottle::loop(); // check heartbeats
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2020-06-13 10:36:10 +02:00
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// read anything into a buffer, collecting info on the way
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2020-06-28 11:21:27 +02:00
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while (loopstate!=99 && wifiStream.available()) {
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int ch=wifiStream.read();
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2020-06-13 10:36:10 +02:00
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switch (loopstate) {
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case 0: // looking for +
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connectionId=0;
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if (ch=='+') loopstate=1;
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break;
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case 1: // Looking for I
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loopstate= (ch=='I')?2:0;
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break;
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case 2: // Looking for P
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loopstate= (ch=='P')?3:0;
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break;
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case 3: // Looking for D
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loopstate= (ch=='D')?4:0;
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break;
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case 4: // Looking for ,
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loopstate= (ch==',')?5:0;
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break;
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case 5: // reading connection id
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if (ch==',') loopstate=6;
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else connectionId=10*connectionId+(ch-'0');
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break;
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case 6: // reading for length
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if (ch==':') loopstate=(datalength==0)?99:7; // 99 is getout without reading next char
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else datalength=datalength*10 + (ch-'0');
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2020-07-02 13:49:35 +02:00
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streamer.flush();
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2020-06-13 10:36:10 +02:00
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break;
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case 7: // reading data
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streamer.write(ch);
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2020-06-13 10:36:10 +02:00
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datalength--;
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if (datalength==0) loopstate=99;
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break;
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} // switch
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} // while
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if (loopstate!=99) return;
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streamer.write('\0');
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2020-06-13 12:17:06 +02:00
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DIAG(F("\nWifiRead:%d:%s\n"),connectionId,buffer);
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streamer.setBufferContentPosition(0,0); // reset write position to start of buffer
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2020-06-13 10:36:10 +02:00
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// SIDE EFFECT WARNING:::
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// We know that parser will read the entire buffer before starting to write to it.
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// Otherwise we would have to copy the buffer elsewhere and RAM is in short supply.
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2020-06-28 13:45:31 +02:00
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bool closeAfter=false;
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// Intercept HTTP requests
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2020-06-29 12:37:05 +02:00
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if (isHTML()) {
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2020-06-28 13:45:31 +02:00
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HTTPParser::parse(streamer,buffer);
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closeAfter=true;
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}
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2020-07-02 00:02:45 +02:00
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else if (buffer[0]=='<') parser.parse(streamer,buffer, true); // tell JMRI parser that callbacks are diallowed because we dont want to handle the async
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2020-06-27 16:36:32 +02:00
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else WiThrottle::getThrottle(streamer, connectionId)->parse(streamer, buffer);
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2020-06-13 12:17:06 +02:00
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if (streamer.available()) { // there is a reply to send
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streamer.write('\0');
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2020-06-28 13:45:31 +02:00
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DIAG(F("WiFiInterface Responding client (%d) l(%d) %s\n"),connectionId,streamer.available()-1,buffer);
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StringFormatter::send(wifiStream,F("AT+CIPSEND=%d,%d\r\n"),connectionId,streamer.available()-1);
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2020-06-28 11:21:27 +02:00
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if (checkForOK(wifiStream,1000,PROMPT_SEARCH,true)) wifiStream.print((char *) buffer);
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2020-06-28 13:45:31 +02:00
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checkForOK(wifiStream,3000,SEND_OK_SEARCH,true);
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}
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if (closeAfter) {
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StringFormatter::send(wifiStream,F("AT+CIPCLOSE=%d\r\n"),connectionId);
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checkForOK(wifiStream,2000,OK_SEARCH,true);
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2020-06-13 12:17:06 +02:00
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}
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2020-06-28 13:45:31 +02:00
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2020-06-13 12:17:06 +02:00
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loopstate=0; // go back to looking for +IPD
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2020-06-13 10:36:10 +02:00
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}
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