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327 lines
10 KiB
C++
327 lines
10 KiB
C++
#include "SPIFFS.h"
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#include <JPEGDecoder.h>
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#include <Adafruit_GFX.h>
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#include <Adafruit_SSD1351.h>
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#include <Adafruit_Sensor.h>
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#include <DHT.h>
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#include <DHT_U.h>
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#define DHTPIN 19
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#define DHTTYPE DHT11
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DHT_Unified dht(DHTPIN, DHTTYPE);
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uint32_t delayMS;
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#define SCREEN_WIDTH 128
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#define SCREEN_HEIGHT 128
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#define SCLK_PIN 18
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#define MOSI_PIN 23
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#define DC_PIN 17
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#define CS_PIN 5
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#define RST_PIN 4
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// Color definitions
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#define BLACK 0x0000
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#define BLUE 0x001F
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#define RED 0xF800
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#define GREEN 0x07E0
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#define CYAN 0x07FF
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#define MAGENTA 0xF81F
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#define YELLOW 0xFFE0
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#define WHITE 0xFFFF
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const String fileTemperature = "/temperature.jpg";
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const String fileHumidity = "/humidity.jpg";
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Adafruit_SSD1351 tft = Adafruit_SSD1351(SCREEN_WIDTH, SCREEN_HEIGHT, CS_PIN, DC_PIN, MOSI_PIN, SCLK_PIN, RST_PIN);
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int prev_temp;
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int prev_humidity;
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void setup() {
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Serial.begin(115200);
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// Initialize device.
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tft.begin();
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tft.fillRect(0,0,128,128,WHITE);
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dht.begin();
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// Print temperature sensor details.
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sensor_t sensor;
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dht.temperature().getSensor(&sensor);
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// Print humidity sensor details.
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dht.humidity().getSensor(&sensor);
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// Set delay between sensor readings based on sensor details.
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delayMS = sensor.min_delay / 1000;
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if(!SPIFFS.begin()){
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while(1) yield();
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}
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initScreen();
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}
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void initScreen(){
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drawFSJpeg(fileTemperature.c_str(), 0, 0);
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drawFSJpeg(fileHumidity.c_str(), 0, 64);
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tft.setCursor(72, 24);
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tft.setTextColor(BLACK);
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tft.setTextSize(3);
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tft.print("?");
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tft.setCursor(72, 88);
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tft.setTextColor(BLACK);
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tft.setTextSize(3);
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tft.print("?");
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}
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void loop() {
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// Delay between measurements.
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delay(delayMS);
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// Get temperature event and print its value.
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sensors_event_t event;
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dht.temperature().getEvent(&event);
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if (isnan(event.temperature)) {
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Serial.println(F("Error reading temperature!"));
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}
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else {
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Serial.print(F("Temperature: "));
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Serial.print(event.temperature);
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Serial.println(F("°C"));
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updateTemp((int)event.temperature);
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}
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// Get humidity event and print its value.
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dht.humidity().getEvent(&event);
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if (isnan(event.relative_humidity)) {
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Serial.println(F("Error reading humidity!"));
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}
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else {
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Serial.print(F("Humidity: "));
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Serial.print(event.relative_humidity);
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Serial.println(F("%"));
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updateHumidity((int)event.relative_humidity);
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}
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}
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void updateTemp(int temp){
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if(prev_temp != temp){
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tft.fillRect(64, 0, 128, 64, WHITE);
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tft.setCursor(70, 24);
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tft.setTextColor(BLACK);
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tft.setTextSize(3);
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String tempString = "";
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tempString += temp;
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tempString += "C";
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tft.print(tempString);
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prev_temp = temp;
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}
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}
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void updateHumidity(int humidity){
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if(prev_humidity != humidity){
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tft.fillRect(64, 64, 128, 128, WHITE);
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tft.setCursor(70, 88);
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tft.setTextColor(BLACK);
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tft.setTextSize(3);
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String humidityString = "";
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humidityString += humidity;
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humidityString += "%";
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tft.print(humidityString);
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prev_humidity = humidity;
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}
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}
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/*====================================================================================
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This sketch contains support functions to render the Jpeg images.
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Created by Bodmer 15th Jan 2017
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==================================================================================*/
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// Return the minimum of two values a and b
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#define minimum(a,b) (((a) < (b)) ? (a) : (b))
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//====================================================================================
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// This function opens the Filing System Jpeg image file and primes the decoder
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//====================================================================================
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void drawFSJpeg(const char *filename, int xpos, int ypos) {
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Serial.println("=====================================");
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Serial.print("Drawing file: "); Serial.println(filename);
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Serial.println("=====================================");
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// Open the file (the Jpeg decoder library will close it)
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fs::File jpgFile = SPIFFS.open( filename, "r"); // File handle reference for SPIFFS
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// File jpgFile = SD.open( filename, FILE_READ); // or, file handle reference for SD library
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if ( !jpgFile ) {
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Serial.print("ERROR: File \""); Serial.print(filename); Serial.println ("\" not found!");
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return;
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}
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// To initialise the decoder and provide the file, we can use one of the three following methods:
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//boolean decoded = JpegDec.decodeFsFile(jpgFile); // We can pass the SPIFFS file handle to the decoder,
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//boolean decoded = JpegDec.decodeSdFile(jpgFile); // or we can pass the SD file handle to the decoder,
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boolean decoded = JpegDec.decodeFsFile(filename); // or we can pass the filename (leading / distinguishes SPIFFS files)
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// The filename can be a String or character array
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if (decoded) {
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// print information about the image to the serial port
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jpegInfo();
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// render the image onto the screen at given coordinates
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jpegRender(xpos, ypos);
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}
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else {
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Serial.println("Jpeg file format not supported!");
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}
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}
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//====================================================================================
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// Decode and paint onto the TFT screen
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//====================================================================================
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void jpegRender(int xpos, int ypos) {
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// retrieve infomration about the image
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uint16_t *pImg;
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uint16_t mcu_w = JpegDec.MCUWidth;
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uint16_t mcu_h = JpegDec.MCUHeight;
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uint32_t max_x = JpegDec.width;
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uint32_t max_y = JpegDec.height;
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// Jpeg images are draw as a set of image block (tiles) called Minimum Coding Units (MCUs)
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// Typically these MCUs are 16x16 pixel blocks
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// Determine the width and height of the right and bottom edge image blocks
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uint32_t min_w = minimum(mcu_w, max_x % mcu_w);
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uint32_t min_h = minimum(mcu_h, max_y % mcu_h);
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// save the current image block size
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uint32_t win_w = mcu_w;
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uint32_t win_h = mcu_h;
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// record the current time so we can measure how long it takes to draw an image
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uint32_t drawTime = millis();
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// save the coordinate of the right and bottom edges to assist image cropping
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// to the screen size
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max_x += xpos;
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max_y += ypos;
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// read each MCU block until there are no more
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while ( JpegDec.read()) {
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// save a pointer to the image block
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pImg = JpegDec.pImage;
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// calculate where the image block should be drawn on the screen
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int mcu_x = JpegDec.MCUx * mcu_w + xpos;
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int mcu_y = JpegDec.MCUy * mcu_h + ypos;
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// check if the image block size needs to be changed for the right edge
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if (mcu_x + mcu_w <= max_x) win_w = mcu_w;
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else win_w = min_w;
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// check if the image block size needs to be changed for the bottom edge
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if (mcu_y + mcu_h <= max_y) win_h = mcu_h;
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else win_h = min_h;
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// copy pixels into a contiguous block
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if (win_w != mcu_w)
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{
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for (int h = 1; h < win_h-1; h++)
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{
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memcpy(pImg + h * win_w, pImg + (h + 1) * mcu_w, win_w << 1);
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}
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}
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// draw image MCU block only if it will fit on the screen
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if ( ( mcu_x + win_w) <= tft.width() && ( mcu_y + win_h) <= tft.height())
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{
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tft.drawRGBBitmap(mcu_x, mcu_y, pImg, win_w, win_h);
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}
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// Stop drawing blocks if the bottom of the screen has been reached,
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// the abort function will close the file
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else if ( ( mcu_y + win_h) >= tft.height()) JpegDec.abort();
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}
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// calculate how long it took to draw the image
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drawTime = millis() - drawTime;
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// print the results to the serial port
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Serial.print ("Total render time was : "); Serial.print(drawTime); Serial.println(" ms");
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Serial.println("=====================================");
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}
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//====================================================================================
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// Send time taken to Serial port
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//====================================================================================
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void jpegInfo() {
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Serial.println(F("==============="));
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Serial.println(F("JPEG image info"));
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Serial.println(F("==============="));
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Serial.print(F( "Width :")); Serial.println(JpegDec.width);
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Serial.print(F( "Height :")); Serial.println(JpegDec.height);
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Serial.print(F( "Components :")); Serial.println(JpegDec.comps);
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Serial.print(F( "MCU / row :")); Serial.println(JpegDec.MCUSPerRow);
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Serial.print(F( "MCU / col :")); Serial.println(JpegDec.MCUSPerCol);
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Serial.print(F( "Scan type :")); Serial.println(JpegDec.scanType);
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Serial.print(F( "MCU width :")); Serial.println(JpegDec.MCUWidth);
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Serial.print(F( "MCU height :")); Serial.println(JpegDec.MCUHeight);
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Serial.println(F("==============="));
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}
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//====================================================================================
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// Open a Jpeg file and dump it to the Serial port as a C array
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//====================================================================================
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void createArray(const char *filename) {
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fs::File jpgFile; // File handle reference for SPIFFS
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// File jpgFile; // File handle reference For SD library
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if ( !( jpgFile = SPIFFS.open( filename, "r"))) {
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Serial.println(F("JPEG file not found"));
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return;
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}
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uint8_t data;
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byte line_len = 0;
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Serial.println("// Generated by a JPEGDecoder library example sketch:");
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Serial.println("// https://github.com/Bodmer/JPEGDecoder");
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Serial.println("");
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Serial.println("#if defined(__AVR__)");
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Serial.println(" #include <avr/pgmspace.h>");
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Serial.println("#endif");
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Serial.println("");
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Serial.print("const uint8_t ");
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while (*filename != '.') Serial.print(*filename++);
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Serial.println("[] PROGMEM = {"); // PROGMEM added for AVR processors, it is ignored by Due
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while ( jpgFile.available()) {
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data = jpgFile.read();
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Serial.print("0x"); if (abs(data) < 16) Serial.print("0");
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Serial.print(data, HEX); Serial.print(",");// Add value and comma
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line_len++;
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if ( line_len >= 32) {
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line_len = 0;
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Serial.println();
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}
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}
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Serial.println("};\r\n");
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// jpgFile.seek( 0, SeekEnd);
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jpgFile.close();
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}
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//====================================================================================
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