2020-09-10 15:22:56 +02:00
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#include "Inkplate.h"
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#include "SdFat.h"
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#include "sample1bit.h"
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#include "sample3bit.h"
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Inkplate display(INKPLATE_1BIT);
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#define DELAYMS 1000
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2020-09-18 10:16:14 +02:00
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const char *imagesBmp[] = {"1bit.bmp", "4bit.bmp", "8bit.bmp", "16bit.bmp",
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"24bit.bmp", "32bit.bmp", "Lenna.jpg", "Lenna.jpg"};
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const char *imagesBmpUrls[] = {
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2020-09-10 15:22:56 +02:00
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/1bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/4bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/8bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/16bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/24bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/bitmaps/32bit.bmp",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/jpegs/Lenna.jpg",
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"https://raw.githubusercontent.com/nitko12/Inkplate-revision/master/test/jpegs/Lenna.jpg",
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};
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const bool depth[] = {INKPLATE_1BIT, INKPLATE_3BIT, INKPLATE_3BIT, INKPLATE_3BIT,
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INKPLATE_3BIT, INKPLATE_3BIT, INKPLATE_1BIT, INKPLATE_3BIT};
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void setup()
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{
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Serial.begin(115200);
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display.begin();
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2020-09-21 15:23:30 +02:00
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display.joinAP("", "");
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2020-09-10 15:22:56 +02:00
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Serial.println();
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delay(500);
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}
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void loop()
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{
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display.clearDisplay();
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display.display();
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display.selectDisplayMode(INKPLATE_1BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying 1 bit flash image.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage(sample1bit, 0, 0, sample1bit_w, sample1bit_h, WHITE, BLACK);
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display.display();
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display.clearDisplay();
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delay(5000);
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display.selectDisplayMode(INKPLATE_3BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(90, 100);
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display.print("Displaying 3 bit flash image.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage(sample3bit, 0, 0, sample3bit_w, sample3bit_h);
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display.display();
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display.clearDisplay();
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delay(5000);
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if (!display.sdCardInit())
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{
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display.println("Sd card error!");
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delay(1000);
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return;
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}
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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2020-09-18 10:16:14 +02:00
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for (int i = 0; i < 4; ++i)
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2020-09-10 15:22:56 +02:00
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{
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2020-09-18 10:16:14 +02:00
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_1BIT);
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2020-09-10 15:22:56 +02:00
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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2020-09-18 10:16:14 +02:00
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display.print("Displaying Lenna.jpg 1bit");
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2020-09-10 15:22:56 +02:00
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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2020-09-18 10:16:14 +02:00
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display.drawImage("Lenna.jpg", 0, 0, dither, invert);
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2020-09-10 15:22:56 +02:00
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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2020-09-18 10:16:14 +02:00
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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2020-09-10 15:22:56 +02:00
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2020-09-18 10:16:14 +02:00
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display.selectDisplayMode(INKPLATE_3BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying Lenna.jpg 3bit");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage("Lenna.jpg", 0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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for (int i = 0; i < 4; ++i)
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2020-09-10 15:22:56 +02:00
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{
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2020-09-18 10:16:14 +02:00
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_1BIT);
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2020-09-10 15:22:56 +02:00
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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2020-09-18 10:16:14 +02:00
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display.print("Displaying png.png 1bit");
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2020-09-10 15:22:56 +02:00
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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2020-09-18 10:29:20 +02:00
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display.drawImage("png.png", 0, 0, dither, invert);
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2020-09-10 15:22:56 +02:00
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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2020-09-18 10:16:14 +02:00
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_3BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying png.png 3bit");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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2020-09-18 10:29:20 +02:00
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display.drawImage("png.png", 0, 0, dither, invert);
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2020-09-18 10:16:14 +02:00
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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2020-09-18 10:29:20 +02:00
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// web
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display.selectDisplayMode(INKPLATE_1BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying Lenna.jpg 1bit from web");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage("https://raw.githubusercontent.com/e-radionicacom/Inkplate-6-Arduino-library/revision/test/"
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"drawImage/Lenna.jpg",
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0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_3BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying Lenna.jpg 3bit from web");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage("https://raw.githubusercontent.com/e-radionicacom/Inkplate-6-Arduino-library/revision/test/"
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"drawImage/Lenna.jpg",
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0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_1BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying png.png 1bit from web");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage("https://raw.githubusercontent.com/e-radionicacom/Inkplate-6-Arduino-library/revision/test/"
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"drawImage/png.png",
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0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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display.selectDisplayMode(INKPLATE_3BIT);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying png.png 3bit from web");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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display.drawImage("https://raw.githubusercontent.com/e-radionicacom/Inkplate-6-Arduino-library/revision/test/"
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"drawImage/png.png",
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0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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}
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for (int i = 0; i < 4; ++i)
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{
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bool dither = i & 1;
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bool invert = i >> 1;
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for (int j = 0; j < 6; ++j)
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2020-09-18 10:16:14 +02:00
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{
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2020-09-18 10:29:20 +02:00
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display.selectDisplayMode(depth[j]);
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display.setTextSize(2);
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display.setTextColor(1);
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display.setCursor(100, 100);
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display.print("Displaying ");
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display.print(imagesBmp[j]);
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display.print(" from web");
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if (!dither)
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display.print(" non");
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display.print(" dithered and");
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if (!invert)
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display.print(" non");
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display.print(" inverted.");
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display.display();
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display.clearDisplay();
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delay(5000);
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2020-09-18 10:16:14 +02:00
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2020-09-18 10:29:20 +02:00
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display.drawImage(imagesBmpUrls[j], 0, 0, dither, invert);
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display.display();
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display.clearDisplay();
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delay(5000);
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2020-09-18 10:16:14 +02:00
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}
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2020-09-18 10:29:20 +02:00
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}
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2020-09-18 10:16:14 +02:00
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2020-09-18 10:29:20 +02:00
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delay(5000);
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}
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