3a09daeab2
- [x] Move project to platformIO - [x] Bug rectangle on screen when 1milion shares - [x] Bug memory leaks - [x] Bug Reboots when received JSON contains some null values - Readme update with build troubleshooting TODO - [ ] Improve hashrate using Blockstream Jade miner code - [ ] Add blockHeight to screen - [ ] Add new screen with global mining stats - [ ] Add support to control BM1397
189 lines
7.7 KiB
C++
189 lines
7.7 KiB
C++
// Display grey-scale images on a Monchrome ePaper display using
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// Floyd-Steinberg dithering
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// https://en.wikipedia.org/wiki/Floyd%E2%80%93Steinberg_dithering
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// Example created by Bodmer 31/3/18 for TFT_eSPI library:
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// https://github.com/Bodmer/TFT_eSPI
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// Select the ePaper setup in library's "User_Setup_Select.h" file
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// This sketch supports Waveshare 2 colour ePaper displays
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// https://www.waveshare.com/product/modules/oleds-lcds/e-paper.htm
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// Test images are in the Data folder with sketch (press Ctrl+k)
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// Upload using the Tools menu "ESP8266 Sketch Data Upload" option
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///////////////////////////////////////////////////////////////////
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// For ESP8266 connect as follows: //
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// Display 3.3V to NodeMCU 3V3 //
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// Display GND to NodeMCU GND //
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// //
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// Display GPIO NodeMCU pin //
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// BUSY 5 D1 //
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// RESET 4 D2 //
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// DC 0 D3 //
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// CS 2 D4 //
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// CLK 14 D5 //
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// D6 (MISO not connected to display) //
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// DIN 13 D7 //
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// //
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// Note: Pin allocations for the ePaper signals are defined in //
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// ePaper library's epdif.h file, above are the default pins //
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///////////////////////////////////////////////////////////////////
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// READ THIS READ THIS READ THIS READ THIS READ THIS READ THIS
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// Install the ePaper library for your own display size and type
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// from here:
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// https://github.com/Bodmer/EPD_Libraries
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// The following is for the Waveshare 2.7" colour ePaper display
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// include <epd?in?.h> where ?.?? is screen size in inches
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#include <epd2in7.h> // Screen specific library
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//#include <epd2in13.h>
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Epd ePaper; // Create an instance ePaper
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#include <TFT_eSPI.h> // Graphics library and Sprite class
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TFT_eSPI glc = TFT_eSPI(); // Invoke the graphics library class
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TFT_eSprite frame = TFT_eSprite(&glc); // Invoke the Sprite class for the image frame buffer
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#define INK COLORED // Black ink
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#define PAPER UNCOLORED // 'paper' background colour
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uint16_t epd_width = EPD_WIDTH; // Set the initial values, these are swapped
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uint16_t epd_height = EPD_HEIGHT; // in different landscape/portrait rotations
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// so call frame.width() or frame.height() to get new values
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#define EPD_BUFFER 1 // Label for the black frame buffer 1
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uint8_t* framePtr = NULL; // Pointer for the black frame buffer
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#include "EPD_Support.h" // Include sketch EPD support functions last!
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int8_t limit = 5; // Limit the number of loops before halting
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//------------------------------------------------------------------------------------
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// Setup
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//------------------------------------------------------------------------------------
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void setup() {
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Serial.begin(250000); // Used for messages
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// Initialise the ePaper library
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if (ePaper.Init(INIT_LUT) != 0) {
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Serial.print("ePaper init failed");
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while (1) yield(); // Wait here until re-boot
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}
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Serial.println("\r\n ePaper initialisation OK");
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// Initialise the SPIFFS filing system
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if (!SPIFFS.begin()) {
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Serial.println("SPIFFS initialisation failed!");
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while (1) yield(); // Stay here twiddling thumbs
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}
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Serial.println(" SPIFFS initialisation OK");
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frame.setColorDepth(1); // Must set the bits per pixel to 1 for ePaper displays
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// Set bit depth BEFORE creating Sprite, default is 16!
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// Create a frame buffer in RAM of defined size and save the pointer to it
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// RAM needed is about (EPD_WIDTH * EPD_HEIGHT)/8 , ~5000 bytes for 200 x 200 pixels
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// Note: always create the Sprite before setting the Sprite rotation
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framePtr = (uint8_t*) frame.createSprite(EPD_WIDTH, EPD_HEIGHT);
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Serial.println("\r\nInitialisation done.");
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listFiles(); // List all the files in the SPIFFS
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}
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//------------------------------------------------------------------------------------
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// Loop
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//------------------------------------------------------------------------------------
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void loop() {
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frame.setRotation(random(4)); // Set the rotation to 0, 1, 2 or 3 ( 1 & 3 = landscape)
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frame.fillSprite(PAPER);
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// Draw 8 bit grey-scale bitmap using Floyd-Steinberg dithering at x,y
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// /File name x y
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//drawFSBmp("/TestCard.bmp", 0, 0); // 176 x 264 pixels
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drawFSBmp("/Tiger.bmp", (frame.width()-176)/2, (frame.height()-234)/2); // 176 x 234 pixels
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updateDisplay(); // Send image to display and refresh
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delay(5000);
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frame.fillSprite(PAPER); // Fill frame with white
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// Draw circle in frame buffer (x, y, r, color) in centre of screen
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frame.drawCircle(frame.width()/2, frame.height()/2, frame.width()/6, INK);
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// Draw diagonal lines
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frame.drawLine(0 , 0, frame.width()-1, frame.height()-1, INK);
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frame.drawLine(0 , frame.height()-1, frame.width()-1, 0, INK);
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updateDisplay(); // Send image to display and refresh
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delay(3000);
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// Run a rotation test
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rotateTest();
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// Put screen to sleep to save power (if wanted)
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ePaper.Sleep();
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if (--limit <= 0) while(1) yield(); // Wait here
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delay(20000); // Wait here for 20s
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// Wake up ePaper display so we can talk to it
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Serial.println("Waking up!");
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ePaper.Init(INIT_LUT);
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} // end of loop()
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//------------------------------------------------------------------------------------
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// setRotation() actually rotates the drawing coordinates, not the whole display frame
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// buffer so we can use this to draw text at right angles or upside down
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//------------------------------------------------------------------------------------
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void rotateTest(void)
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{
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//frame.fillSprite(PAPER); // Fill buffer with white to clear old graphics
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// Draw some text in frame buffer
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frame.setTextFont(4); // Select font 4
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frame.setTextColor(INK); // Set colour to ink
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frame.setTextDatum(TC_DATUM); // Middle centre text datum
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frame.setRotation(0); // Set the display rotation to 0, 1, 2 or 3 ( 1 & 3 = landscape)
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epd_width = frame.width(); // Get the values for the current rotation
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epd_height = frame.height(); // epd_height is not used in this sketch
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frame.drawString("Rotation 0", epd_width / 2, 10);
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frame.setRotation(1); // Set the display rotation to 1
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epd_width = frame.width(); // Get the values for the current rotation
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epd_height = frame.height(); // epd_height is not used in this sketch
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frame.drawString("Rotation 1", epd_width / 2, 10);
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frame.setRotation(2); // Set the display rotation to 2
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epd_width = frame.width(); // Get the values for the current rotation
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epd_height = frame.height(); // epd_height is not used in this sketch
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frame.drawString("Rotation 2", epd_width / 2, 10);
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frame.setRotation(3); // Set the display rotation to 3
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epd_width = frame.width(); // Get the values for the current rotation
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epd_height = frame.height(); // epd_height is not used in this sketch
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frame.drawString("Rotation 3", epd_width / 2, 10);
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Serial.println("Updating display");
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updateDisplay(); // Update display
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}
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