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#include <WiFi.h> |
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#include <ESPmDNS.h> |
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#include <WiFiUdp.h> |
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#include <ArduinoOTA.h> |
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#include <Adafruit_GFX.h> |
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#include <Adafruit_ILI9341.h> |
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#include <math.h> |
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#include "secrets.h" |
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const char* ssid = STASSID; |
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const char* password = STAPSK; |
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/*__Pin definitions for the Arduino MKR__*/ |
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#define TFT_CS 5 |
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#define TFT_DC 4 |
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#define TFT_MOSI 23 |
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#define TFT_CLK 18 |
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#define TFT_RST 22 |
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#define TFT_MISO 19 |
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#define TFT_LED 15 |
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#define HAVE_TOUCHPAD |
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#define TOUCH_CS 14 |
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#define TOUCH_IRQ 2 |
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/*_______End of definitions______*/ |
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/*____Calibrate Touchscreen_____*/ |
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#define MINPRESSURE 10 // minimum required force for touch event
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#define TS_MINX 370 |
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#define TS_MINY 470 |
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#define TS_MAXX 3700 |
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#define TS_MAXY 3600 |
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/*______End of Calibration______*/ |
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Adafruit_ILI9341 tft = Adafruit_ILI9341(TFT_CS, TFT_DC, TFT_RST); |
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int old_sec=0; |
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int old_sec_x=0; |
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int old_sec_y=0; |
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int old_min_x=0; |
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int old_min_y=0; |
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int old_hour_x=0; |
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int old_hour_y=0; |
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void setup() { |
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pinMode(TFT_LED, OUTPUT); // define as output for backlight control
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tft.begin();
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tft.setRotation(3); // landscape mode
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tft.fillScreen(ILI9341_BLACK);// clear screen
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tft.setCursor(50,110); |
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tft.setTextColor(ILI9341_WHITE); |
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tft.setTextSize(3); |
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tft.print("Connecting..."); |
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digitalWrite(TFT_LED, LOW); // LOW to turn backlight on;
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WiFi.mode(WIFI_STA); |
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WiFi.begin(ssid, password); |
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while (WiFi.waitForConnectResult() != WL_CONNECTED) { |
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delay(5000); |
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ESP.restart(); |
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} |
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configTzTime("CET-1CEST-2,M3.5.0/02,M10.5.0/03","at.pool.ntp.org", "time.nist.gov"); |
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ArduinoOTA.begin(); |
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tft.fillScreen(ILI9341_BLACK);// clear screen
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} |
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void loop() { |
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// put your main code here, to run repeatedly:
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ArduinoOTA.handle(); |
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time_t now = time(nullptr); |
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struct tm* p_tm = localtime(&now); |
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if (old_sec != p_tm->tm_sec) |
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{ |
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tft.drawLine(160,120,old_sec_x,old_sec_y, ILI9341_BLACK); |
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if (p_tm->tm_sec==0) { |
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tft.drawLine(160,120,old_min_x,old_min_y,ILI9341_BLACK); |
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tft.drawLine(160,120,old_hour_x,old_hour_y,ILI9341_BLACK); |
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} |
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//tft.fillScreen(ILI9341_BLACK);
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//tft.drawCircle(160, 120, 80, ILI9341_GREEN);
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for (int i=0; i<12; i++) { |
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float angle=M_PI*i/6; |
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int x1 = (160+sin(angle)*80); |
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int y1 = (120-cos(angle)*80); |
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int x2 = (160+sin(angle)*(i%3?70:65)); |
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int y2 = (120-cos(angle)*(i%3?70:65)); |
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tft.drawLine(x1,y1,x2,y2,ILI9341_WHITE);
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} |
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float angle=((p_tm->tm_hour%12)+(p_tm->tm_min/60.0))*M_PI/6; |
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int x = 160+sin(angle)*50; |
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int y = 120-cos(angle)*50; |
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tft.drawLine(160,120,x,y,ILI9341_WHITE); |
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old_hour_x=x; |
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old_hour_y=y; |
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angle= (p_tm->tm_min/30.0)*M_PI; |
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x = 160+sin(angle)*75; |
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y = 120-cos(angle)*75; |
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tft.drawLine(160,120,x,y,ILI9341_WHITE); |
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old_min_x=x; |
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old_min_y=y; |
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angle= (p_tm->tm_sec/30.0)*M_PI; |
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x = 160+sin(angle)*80; |
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y = 120-cos(angle)*80; |
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tft.drawLine(160,120,x,y,ILI9341_RED); |
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old_sec_x=x; |
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old_sec_y=y; |
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} |
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old_sec=p_tm->tm_sec; |
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} |
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