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192 lines
4.2 KiB
192 lines
4.2 KiB
#include "WebServer.h"
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#define LED_PIN 13
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int8_t blinking = 0;
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int8_t frequency = 10;
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uint8_t pattern = 2;
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uint16_t elapse = 100;
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uint16_t elapse_delta = 200;
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uint32_t next_ts = 0;
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#define MAX_LOGS 5
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uint32_t log_ts[MAX_LOGS];
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uint8_t log_msg[MAX_LOGS];
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uint8_t log_ptr = 0;
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void ledInit()
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{
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pinMode(LED_PIN, OUTPUT);
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digitalWrite(LED_PIN, false);
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}
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void ledLoop()
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{
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if( blinking )
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{
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if( next_ts <= millis() )
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{
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digitalWrite(LED_PIN, !digitalRead(LED_PIN));
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next_ts += elapse;
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elapse = elapse_delta - elapse;
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}
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}
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}
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void ledAddLog(uint8_t msg)
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{
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if( log_ptr >= MAX_LOGS )
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log_ptr = MAX_LOGS - 1;
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for(int8_t i=log_ptr-1; i >= 0; i--)
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{
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log_ts[i+1] = log_ts[i];
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log_msg[i+1] = log_msg[i];
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}
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log_msg[0] = msg;
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log_ts[0] = millis();
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log_ptr++;
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}
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void ledHistoryToLog(char * buf)
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{
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buf[0] = 0;
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strcat(buf, "[");
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for(uint8_t i=0; i < log_ptr; i++)
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{
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if( i != 0 )
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strcat(buf, ",");
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char bf[20];
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sprintf(bf, "\"%lds: ", log_ts[i] / 1000);
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strcat(buf, bf);
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uint8_t msg = log_msg[i];
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if( msg == 0xE1 )
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{
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strcat_P(buf, PSTR("set pattern to 25%-75%"));
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}
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else if( msg == 0xE2 )
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{
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strcat_P(buf, PSTR("set pattern to 50%-50%"));
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}
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else if( msg == 0xE3 )
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{
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strcat_P(buf, PSTR("set pattern to 75%-25%"));
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}
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else if( msg == 0xF0 )
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{
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strcat_P(buf, PSTR("set led on"));
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}
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else if( msg == 0xF1 )
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{
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strcat_P(buf, PSTR("set led blinking"));
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}
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else if( msg == 0xF2 )
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{
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strcat_P(buf, PSTR("set led off"));
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}
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else
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{
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strcat_P(buf, PSTR("set frequency to "));
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sprintf(bf, "%d Hz", msg);
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strcat(buf, bf);
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}
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strcat(buf, "\"");
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}
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strcat(buf, "]");
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}
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void ledHtmlCallback(WebServerCommand command, char * data, int dataLen)
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{
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switch(command)
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{
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case BUTTON_PRESS:
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if( strcmp_P(data, PSTR("btn_on") ) == 0 )
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{
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if( blinking || digitalRead(LED_PIN) == false )
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ledAddLog(0xF0);
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blinking = 0;
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digitalWrite(LED_PIN, true);
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} else if( strcmp_P(data, PSTR("btn_off") ) == 0 )
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{
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if( blinking || digitalRead(LED_PIN) == true )
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ledAddLog(0xF2);
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blinking = 0;
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digitalWrite(LED_PIN, false);
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} else if( strcmp_P(data, PSTR("btn_blink") ) == 0 )
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{
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if( !blinking )
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ledAddLog(0xF1);
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blinking = 1;
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next_ts = millis() + elapse;
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}
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break;
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case SET_FIELD:
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if( strcmp_P(data, PSTR("frequency") ) == 0 )
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{
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int8_t oldf = frequency;
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frequency = webServer.getArgInt();
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digitalWrite(LED_PIN, false);
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elapse_delta = 2000 / frequency;
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elapse = pattern * elapse_delta / 4;
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if( oldf != frequency )
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ledAddLog(frequency);
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}
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else if( strcmp_P(data, PSTR("pattern") ) == 0 )
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{
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int8_t oldp = pattern;
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char * arg = webServer.getArgString();
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if( strcmp_P(arg, PSTR("25_75")) == 0 )
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pattern = 1;
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else if( strcmp_P(arg, PSTR("50_50")) == 0 )
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pattern = 2;
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else if( strcmp_P(arg, PSTR("75_25")) == 0 )
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pattern = 3;
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digitalWrite(LED_PIN, false);
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elapse = pattern * elapse_delta / 4;
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if( oldp != pattern )
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ledAddLog(0xE0 + pattern);
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}
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break;
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case LOAD:
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webServer.setArgNum(4);
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webServer.setArgInt("frequency", frequency);
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switch(pattern)
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{
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case 1:
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webServer.setArgStringP("pattern", PSTR("25_75"));
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break;
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case 2:
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webServer.setArgStringP("pattern", PSTR("50_50"));
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break;
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case 3:
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webServer.setArgStringP("pattern", PSTR("75_25"));
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break;
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}
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case REFRESH:
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{
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if( command == REFRESH )
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webServer.setArgNum(2);
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if( blinking )
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webServer.setArgStringP("text", PSTR("LED is blinking"));
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else
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webServer.setArgStringP("text", digitalRead(LED_PIN) ? PSTR("LED is turned on") : PSTR("LED is turned off"));
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char buf[255];
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ledHistoryToLog(buf);
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webServer.setArgJson("led_history", buf);
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}
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break;
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default:
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break;
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}
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}
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