1168 lines
28 KiB
C++
1168 lines
28 KiB
C++
// IMPORTANT: LIBRARY MUST BE SPECIFICALLY CONFIGURED FOR EITHER TFT SHIELD
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// OR BREAKOUT BOARD USAGE. SEE RELEVANT COMMENTS IN Adafruit_TFTLCD.h
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// Graphics library by ladyada/adafruit with init code from Rossum
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// MIT license
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#if defined(__SAM3X8E__)
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#include <include/pio.h>
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#define PROGMEM
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#define pgm_read_byte(addr) (*(const unsigned char *)(addr))
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#define pgm_read_word(addr) (*(const unsigned short *)(addr))
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#endif
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#ifdef __AVR__
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#include <avr/pgmspace.h>
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#endif
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#include "Adafruit_TFTLCD.h"
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#include "pin_magic.h"
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#include "pins_arduino.h"
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#include "wiring_private.h"
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//#define TFTWIDTH 320
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//#define TFTHEIGHT 480
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#define TFTWIDTH 240
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#define TFTHEIGHT 320
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// LCD controller chip identifiers
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#define ID_932X 0
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#define ID_7575 1
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#define ID_9341 2
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#define ID_HX8357D 3
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#define ID_UNKNOWN 0xFF
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#include "registers.h"
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// Constructor for breakout board (configurable LCD control lines).
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// Can still use this w/shield, but parameters are ignored.
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Adafruit_TFTLCD::Adafruit_TFTLCD(uint8_t cs, uint8_t cd, uint8_t wr, uint8_t rd,
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uint8_t reset)
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: Adafruit_GFX(TFTWIDTH, TFTHEIGHT) {
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#ifndef USE_ADAFRUIT_SHIELD_PINOUT
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// Convert pin numbers to registers and bitmasks
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_reset = reset;
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#ifdef __AVR__
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csPort = portOutputRegister(digitalPinToPort(cs));
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cdPort = portOutputRegister(digitalPinToPort(cd));
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wrPort = portOutputRegister(digitalPinToPort(wr));
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rdPort = portOutputRegister(digitalPinToPort(rd));
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#endif
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#if defined(__SAM3X8E__)
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csPort = digitalPinToPort(cs);
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cdPort = digitalPinToPort(cd);
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wrPort = digitalPinToPort(wr);
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rdPort = digitalPinToPort(rd);
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#endif
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csPinSet = digitalPinToBitMask(cs);
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cdPinSet = digitalPinToBitMask(cd);
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wrPinSet = digitalPinToBitMask(wr);
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rdPinSet = digitalPinToBitMask(rd);
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csPinUnset = ~csPinSet;
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cdPinUnset = ~cdPinSet;
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wrPinUnset = ~wrPinSet;
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rdPinUnset = ~rdPinSet;
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#ifdef __AVR__
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*csPort |= csPinSet; // Set all control bits to HIGH (idle)
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*cdPort |= cdPinSet; // Signals are ACTIVE LOW
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*wrPort |= wrPinSet;
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*rdPort |= rdPinSet;
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#endif
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#if defined(__SAM3X8E__)
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csPort->PIO_SODR |= csPinSet; // Set all control bits to HIGH (idle)
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cdPort->PIO_SODR |= cdPinSet; // Signals are ACTIVE LOW
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wrPort->PIO_SODR |= wrPinSet;
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rdPort->PIO_SODR |= rdPinSet;
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#endif
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pinMode(cs, OUTPUT); // Enable outputs
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pinMode(cd, OUTPUT);
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pinMode(wr, OUTPUT);
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pinMode(rd, OUTPUT);
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if (reset) {
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digitalWrite(reset, HIGH);
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pinMode(reset, OUTPUT);
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}
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#endif
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init();
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}
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// Constructor for shield (fixed LCD control lines)
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Adafruit_TFTLCD::Adafruit_TFTLCD(void) : Adafruit_GFX(TFTWIDTH, TFTHEIGHT) {
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init();
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}
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// Initialization common to both shield & breakout configs
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void Adafruit_TFTLCD::init(void) {
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#ifdef USE_ADAFRUIT_SHIELD_PINOUT
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CS_IDLE; // Set all control bits to idle state
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WR_IDLE;
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RD_IDLE;
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CD_DATA;
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digitalWrite(5, HIGH); // Reset line
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pinMode(A3, OUTPUT); // Enable outputs
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pinMode(A2, OUTPUT);
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pinMode(A1, OUTPUT);
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pinMode(A0, OUTPUT);
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pinMode(5, OUTPUT);
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#endif
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setWriteDir(); // Set up LCD data port(s) for WRITE operations
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rotation = 0;
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cursor_y = cursor_x = 0;
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textsize = 1;
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textcolor = 0xFFFF;
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_width = TFTWIDTH;
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_height = TFTHEIGHT;
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}
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// Initialization command tables for different LCD controllers
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#define TFTLCD_DELAY 0xFF
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static const uint8_t HX8347G_regValues[] PROGMEM = {
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0x2E, 0x89, 0x29, 0x8F, 0x2B, 0x02, 0xE2, 0x00, 0xE4, 0x01, 0xE5, 0x10,
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0xE6, 0x01, 0xE7, 0x10, 0xE8, 0x70, 0xF2, 0x00, 0xEA, 0x00, 0xEB, 0x20,
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0xEC, 0x3C, 0xED, 0xC8, 0xE9, 0x38, 0xF1, 0x01,
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// skip gamma, do later
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0x1B, 0x1A, 0x1A, 0x02, 0x24, 0x61, 0x25, 0x5C,
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0x18, 0x36, 0x19, 0x01, 0x1F, 0x88, TFTLCD_DELAY, 5, // delay 5 ms
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0x1F, 0x80, TFTLCD_DELAY, 5, 0x1F, 0x90, TFTLCD_DELAY, 5, 0x1F, 0xD4,
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TFTLCD_DELAY, 5, 0x17, 0x05,
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0x36, 0x09, 0x28, 0x38, TFTLCD_DELAY, 40, 0x28, 0x3C,
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0x02, 0x00, 0x03, 0x00, 0x04, 0x00, 0x05, 0xEF, 0x06, 0x00, 0x07, 0x00,
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0x08, 0x01, 0x09, 0x3F};
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static const uint8_t HX8357D_regValues[] PROGMEM = {
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HX8357_SWRESET,
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0,
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HX8357D_SETC,
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3,
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0xFF,
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0x83,
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0x57,
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TFTLCD_DELAY,
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250,
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HX8357_SETRGB,
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4,
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0x00,
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0x00,
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0x06,
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0x06,
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HX8357D_SETCOM,
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1,
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0x25, // -1.52V
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HX8357_SETOSC,
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1,
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0x68, // Normal mode 70Hz, Idle mode 55 Hz
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HX8357_SETPANEL,
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1,
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0x05, // BGR, Gate direction swapped
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HX8357_SETPWR1,
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6,
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0x00,
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0x15,
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0x1C,
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0x1C,
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0x83,
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0xAA,
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HX8357D_SETSTBA,
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6,
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0x50,
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0x50,
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0x01,
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0x3C,
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0x1E,
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0x08,
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// MEME GAMMA HERE
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HX8357D_SETCYC,
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7,
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0x02,
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0x40,
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0x00,
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0x2A,
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0x2A,
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0x0D,
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0x78,
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HX8357_COLMOD,
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1,
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0x55,
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HX8357_MADCTL,
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1,
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0xC0,
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HX8357_TEON,
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1,
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0x00,
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HX8357_TEARLINE,
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2,
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0x00,
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0x02,
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HX8357_SLPOUT,
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0,
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TFTLCD_DELAY,
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150,
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HX8357_DISPON,
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0,
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TFTLCD_DELAY,
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50,
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};
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static const uint16_t ILI932x_regValues[] PROGMEM = {
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ILI932X_START_OSC,
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0x0001, // Start oscillator
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TFTLCD_DELAY,
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50, // 50 millisecond delay
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ILI932X_DRIV_OUT_CTRL,
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0x0100,
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ILI932X_DRIV_WAV_CTRL,
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0x0700,
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ILI932X_ENTRY_MOD,
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0x1030,
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ILI932X_RESIZE_CTRL,
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0x0000,
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ILI932X_DISP_CTRL2,
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0x0202,
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ILI932X_DISP_CTRL3,
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0x0000,
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ILI932X_DISP_CTRL4,
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0x0000,
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ILI932X_RGB_DISP_IF_CTRL1,
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0x0,
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ILI932X_FRM_MARKER_POS,
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0x0,
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ILI932X_RGB_DISP_IF_CTRL2,
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0x0,
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ILI932X_POW_CTRL1,
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0x0000,
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ILI932X_POW_CTRL2,
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0x0007,
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ILI932X_POW_CTRL3,
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0x0000,
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ILI932X_POW_CTRL4,
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0x0000,
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TFTLCD_DELAY,
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200,
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ILI932X_POW_CTRL1,
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0x1690,
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ILI932X_POW_CTRL2,
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0x0227,
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TFTLCD_DELAY,
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50,
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ILI932X_POW_CTRL3,
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0x001A,
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TFTLCD_DELAY,
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50,
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ILI932X_POW_CTRL4,
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0x1800,
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ILI932X_POW_CTRL7,
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0x002A,
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TFTLCD_DELAY,
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50,
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ILI932X_GAMMA_CTRL1,
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0x0000,
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ILI932X_GAMMA_CTRL2,
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0x0000,
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ILI932X_GAMMA_CTRL3,
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0x0000,
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ILI932X_GAMMA_CTRL4,
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0x0206,
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ILI932X_GAMMA_CTRL5,
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0x0808,
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ILI932X_GAMMA_CTRL6,
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0x0007,
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ILI932X_GAMMA_CTRL7,
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0x0201,
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ILI932X_GAMMA_CTRL8,
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0x0000,
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ILI932X_GAMMA_CTRL9,
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0x0000,
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ILI932X_GAMMA_CTRL10,
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0x0000,
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ILI932X_GRAM_HOR_AD,
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0x0000,
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ILI932X_GRAM_VER_AD,
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0x0000,
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ILI932X_HOR_START_AD,
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0x0000,
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ILI932X_HOR_END_AD,
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0x00EF,
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ILI932X_VER_START_AD,
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0X0000,
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ILI932X_VER_END_AD,
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0x013F,
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ILI932X_GATE_SCAN_CTRL1,
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0xA700, // Driver Output Control (R60h)
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ILI932X_GATE_SCAN_CTRL2,
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0x0003, // Driver Output Control (R61h)
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ILI932X_GATE_SCAN_CTRL3,
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0x0000, // Driver Output Control (R62h)
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ILI932X_PANEL_IF_CTRL1,
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0X0010, // Panel Interface Control 1 (R90h)
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ILI932X_PANEL_IF_CTRL2,
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0X0000,
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ILI932X_PANEL_IF_CTRL3,
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0X0003,
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ILI932X_PANEL_IF_CTRL4,
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0X1100,
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ILI932X_PANEL_IF_CTRL5,
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0X0000,
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ILI932X_PANEL_IF_CTRL6,
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0X0000,
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ILI932X_DISP_CTRL1,
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0x0133, // Main screen turn on
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};
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void Adafruit_TFTLCD::begin(uint16_t id) {
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uint8_t i = 0;
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reset();
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delay(200);
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if ((id == 0x9325) || (id == 0x9328)) {
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uint16_t a, d;
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driver = ID_932X;
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CS_ACTIVE;
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while (i < sizeof(ILI932x_regValues) / sizeof(uint16_t)) {
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a = pgm_read_word(&ILI932x_regValues[i++]);
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d = pgm_read_word(&ILI932x_regValues[i++]);
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if (a == TFTLCD_DELAY)
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delay(d);
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else
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writeRegister16(a, d);
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}
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setRotation(rotation);
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setAddrWindow(0, 0, TFTWIDTH - 1, TFTHEIGHT - 1);
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} else if (id == 0x9341) {
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uint16_t a, d;
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driver = ID_9341;
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CS_ACTIVE;
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writeRegister8(ILI9341_SOFTRESET, 0);
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delay(50);
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writeRegister8(ILI9341_DISPLAYOFF, 0);
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writeRegister8(ILI9341_POWERCONTROL1, 0x23);
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writeRegister8(ILI9341_POWERCONTROL2, 0x10);
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writeRegister16(ILI9341_VCOMCONTROL1, 0x2B2B);
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writeRegister8(ILI9341_VCOMCONTROL2, 0xC0);
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writeRegister8(ILI9341_MEMCONTROL, ILI9341_MADCTL_MY | ILI9341_MADCTL_BGR);
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writeRegister8(ILI9341_PIXELFORMAT, 0x55);
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writeRegister16(ILI9341_FRAMECONTROL, 0x001B);
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writeRegister8(ILI9341_ENTRYMODE, 0x07);
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/* writeRegister32(ILI9341_DISPLAYFUNC, 0x0A822700);*/
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writeRegister8(ILI9341_SLEEPOUT, 0);
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delay(150);
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writeRegister8(ILI9341_DISPLAYON, 0);
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delay(500);
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setAddrWindow(0, 0, TFTWIDTH - 1, TFTHEIGHT - 1);
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return;
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} else if (id == 0x8357) {
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// HX8357D
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driver = ID_HX8357D;
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CS_ACTIVE;
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while (i < sizeof(HX8357D_regValues)) {
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uint8_t r = pgm_read_byte(&HX8357D_regValues[i++]);
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uint8_t len = pgm_read_byte(&HX8357D_regValues[i++]);
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if (r == TFTLCD_DELAY) {
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delay(len);
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} else {
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// Serial.print("Register $"); Serial.print(r, HEX);
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// Serial.print(" datalen "); Serial.println(len);
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CS_ACTIVE;
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CD_COMMAND;
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write8(r);
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CD_DATA;
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for (uint8_t d = 0; d < len; d++) {
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uint8_t x = pgm_read_byte(&HX8357D_regValues[i++]);
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write8(x);
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}
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CS_IDLE;
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}
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}
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return;
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} else if (id == 0x7575) {
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uint8_t a, d;
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driver = ID_7575;
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CS_ACTIVE;
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while (i < sizeof(HX8347G_regValues)) {
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a = pgm_read_byte(&HX8347G_regValues[i++]);
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d = pgm_read_byte(&HX8347G_regValues[i++]);
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if (a == TFTLCD_DELAY)
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delay(d);
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else
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writeRegister8(a, d);
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}
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setRotation(rotation);
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setLR(); // Lower-right corner of address window
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} else {
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driver = ID_UNKNOWN;
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return;
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}
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}
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void Adafruit_TFTLCD::reset(void) {
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CS_IDLE;
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// CD_DATA;
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WR_IDLE;
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RD_IDLE;
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#ifdef USE_ADAFRUIT_SHIELD_PINOUT
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digitalWrite(5, LOW);
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delay(2);
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digitalWrite(5, HIGH);
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#else
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if (_reset) {
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digitalWrite(_reset, LOW);
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delay(2);
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digitalWrite(_reset, HIGH);
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}
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#endif
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// Data transfer sync
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CS_ACTIVE;
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CD_COMMAND;
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write8(0x00);
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for (uint8_t i = 0; i < 3; i++)
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WR_STROBE; // Three extra 0x00s
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CS_IDLE;
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}
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// Sets the LCD address window (and address counter, on 932X).
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// Relevant to rect/screen fills and H/V lines. Input coordinates are
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// assumed pre-sorted (e.g. x2 >= x1).
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void Adafruit_TFTLCD::setAddrWindow(int x1, int y1, int x2, int y2) {
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CS_ACTIVE;
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if (driver == ID_932X) {
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// Values passed are in current (possibly rotated) coordinate
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// system. 932X requires hardware-native coords regardless of
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// MADCTL, so rotate inputs as needed. The address counter is
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// set to the top-left corner -- although fill operations can be
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// done in any direction, the current screen rotation is applied
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// because some users find it disconcerting when a fill does not
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// occur top-to-bottom.
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int x, y, t;
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switch (rotation) {
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default:
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x = x1;
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y = y1;
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break;
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case 1:
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t = y1;
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y1 = x1;
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x1 = TFTWIDTH - 1 - y2;
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y2 = x2;
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x2 = TFTWIDTH - 1 - t;
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x = x2;
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y = y1;
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break;
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case 2:
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t = x1;
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x1 = TFTWIDTH - 1 - x2;
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x2 = TFTWIDTH - 1 - t;
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t = y1;
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y1 = TFTHEIGHT - 1 - y2;
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y2 = TFTHEIGHT - 1 - t;
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x = x2;
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y = y2;
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break;
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case 3:
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t = x1;
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x1 = y1;
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y1 = TFTHEIGHT - 1 - x2;
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x2 = y2;
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y2 = TFTHEIGHT - 1 - t;
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x = x1;
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y = y2;
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break;
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}
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writeRegister16(0x0050, x1); // Set address window
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writeRegister16(0x0051, x2);
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writeRegister16(0x0052, y1);
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writeRegister16(0x0053, y2);
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writeRegister16(0x0020, x); // Set address counter to top left
|
|
writeRegister16(0x0021, y);
|
|
|
|
} else if (driver == ID_7575) {
|
|
|
|
writeRegisterPair(HX8347G_COLADDRSTART_HI, HX8347G_COLADDRSTART_LO, x1);
|
|
writeRegisterPair(HX8347G_ROWADDRSTART_HI, HX8347G_ROWADDRSTART_LO, y1);
|
|
writeRegisterPair(HX8347G_COLADDREND_HI, HX8347G_COLADDREND_LO, x2);
|
|
writeRegisterPair(HX8347G_ROWADDREND_HI, HX8347G_ROWADDREND_LO, y2);
|
|
|
|
} else if ((driver == ID_9341) || (driver == ID_HX8357D)) {
|
|
uint32_t t;
|
|
|
|
t = x1;
|
|
t <<= 16;
|
|
t |= x2;
|
|
writeRegister32(ILI9341_COLADDRSET, t); // HX8357D uses same registers!
|
|
t = y1;
|
|
t <<= 16;
|
|
t |= y2;
|
|
writeRegister32(ILI9341_PAGEADDRSET, t); // HX8357D uses same registers!
|
|
}
|
|
CS_IDLE;
|
|
}
|
|
|
|
// Unlike the 932X drivers that set the address window to the full screen
|
|
// by default (using the address counter for drawPixel operations), the
|
|
// 7575 needs the address window set on all graphics operations. In order
|
|
// to save a few register writes on each pixel drawn, the lower-right
|
|
// corner of the address window is reset after most fill operations, so
|
|
// that drawPixel only needs to change the upper left each time.
|
|
void Adafruit_TFTLCD::setLR(void) {
|
|
CS_ACTIVE;
|
|
writeRegisterPair(HX8347G_COLADDREND_HI, HX8347G_COLADDREND_LO, _width - 1);
|
|
writeRegisterPair(HX8347G_ROWADDREND_HI, HX8347G_ROWADDREND_LO, _height - 1);
|
|
CS_IDLE;
|
|
}
|
|
|
|
// Fast block fill operation for fillScreen, fillRect, H/V line, etc.
|
|
// Requires setAddrWindow() has previously been called to set the fill
|
|
// bounds. 'len' is inclusive, MUST be >= 1.
|
|
void Adafruit_TFTLCD::flood(uint16_t color, uint32_t len) {
|
|
uint16_t blocks;
|
|
uint8_t i, hi = color >> 8, lo = color;
|
|
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
if (driver == ID_9341) {
|
|
write8(0x2C);
|
|
} else if (driver == ID_932X) {
|
|
write8(0x00); // High byte of GRAM register...
|
|
write8(0x22); // Write data to GRAM
|
|
} else if (driver == ID_HX8357D) {
|
|
write8(HX8357_RAMWR);
|
|
} else {
|
|
write8(0x22); // Write data to GRAM
|
|
}
|
|
|
|
// Write first pixel normally, decrement counter by 1
|
|
CD_DATA;
|
|
write8(hi);
|
|
write8(lo);
|
|
len--;
|
|
|
|
blocks = (uint16_t)(len / 64); // 64 pixels/block
|
|
if (hi == lo) {
|
|
// High and low bytes are identical. Leave prior data
|
|
// on the port(s) and just toggle the write strobe.
|
|
while (blocks--) {
|
|
i = 16; // 64 pixels/block / 4 pixels/pass
|
|
do {
|
|
WR_STROBE;
|
|
WR_STROBE;
|
|
WR_STROBE;
|
|
WR_STROBE; // 2 bytes/pixel
|
|
WR_STROBE;
|
|
WR_STROBE;
|
|
WR_STROBE;
|
|
WR_STROBE; // x 4 pixels
|
|
} while (--i);
|
|
}
|
|
// Fill any remaining pixels (1 to 64)
|
|
for (i = (uint8_t)len & 63; i--;) {
|
|
WR_STROBE;
|
|
WR_STROBE;
|
|
}
|
|
} else {
|
|
while (blocks--) {
|
|
i = 16; // 64 pixels/block / 4 pixels/pass
|
|
do {
|
|
write8(hi);
|
|
write8(lo);
|
|
write8(hi);
|
|
write8(lo);
|
|
write8(hi);
|
|
write8(lo);
|
|
write8(hi);
|
|
write8(lo);
|
|
} while (--i);
|
|
}
|
|
for (i = (uint8_t)len & 63; i--;) {
|
|
write8(hi);
|
|
write8(lo);
|
|
}
|
|
}
|
|
CS_IDLE;
|
|
}
|
|
|
|
void Adafruit_TFTLCD::drawFastHLine(int16_t x, int16_t y, int16_t length,
|
|
uint16_t color) {
|
|
int16_t x2;
|
|
|
|
// Initial off-screen clipping
|
|
if ((length <= 0) || (y < 0) || (y >= _height) || (x >= _width) ||
|
|
((x2 = (x + length - 1)) < 0))
|
|
return;
|
|
|
|
if (x < 0) { // Clip left
|
|
length += x;
|
|
x = 0;
|
|
}
|
|
if (x2 >= _width) { // Clip right
|
|
x2 = _width - 1;
|
|
length = x2 - x + 1;
|
|
}
|
|
|
|
setAddrWindow(x, y, x2, y);
|
|
flood(color, length);
|
|
if (driver == ID_932X)
|
|
setAddrWindow(0, 0, _width - 1, _height - 1);
|
|
else
|
|
setLR();
|
|
}
|
|
|
|
void Adafruit_TFTLCD::drawFastVLine(int16_t x, int16_t y, int16_t length,
|
|
uint16_t color) {
|
|
int16_t y2;
|
|
|
|
// Initial off-screen clipping
|
|
if ((length <= 0) || (x < 0) || (x >= _width) || (y >= _height) ||
|
|
((y2 = (y + length - 1)) < 0))
|
|
return;
|
|
if (y < 0) { // Clip top
|
|
length += y;
|
|
y = 0;
|
|
}
|
|
if (y2 >= _height) { // Clip bottom
|
|
y2 = _height - 1;
|
|
length = y2 - y + 1;
|
|
}
|
|
|
|
setAddrWindow(x, y, x, y2);
|
|
flood(color, length);
|
|
if (driver == ID_932X)
|
|
setAddrWindow(0, 0, _width - 1, _height - 1);
|
|
else
|
|
setLR();
|
|
}
|
|
|
|
void Adafruit_TFTLCD::fillRect(int16_t x1, int16_t y1, int16_t w, int16_t h,
|
|
uint16_t fillcolor) {
|
|
int16_t x2, y2;
|
|
|
|
// Initial off-screen clipping
|
|
if ((w <= 0) || (h <= 0) || (x1 >= _width) || (y1 >= _height) ||
|
|
((x2 = x1 + w - 1) < 0) || ((y2 = y1 + h - 1) < 0))
|
|
return;
|
|
if (x1 < 0) { // Clip left
|
|
w += x1;
|
|
x1 = 0;
|
|
}
|
|
if (y1 < 0) { // Clip top
|
|
h += y1;
|
|
y1 = 0;
|
|
}
|
|
if (x2 >= _width) { // Clip right
|
|
x2 = _width - 1;
|
|
w = x2 - x1 + 1;
|
|
}
|
|
if (y2 >= _height) { // Clip bottom
|
|
y2 = _height - 1;
|
|
h = y2 - y1 + 1;
|
|
}
|
|
|
|
setAddrWindow(x1, y1, x2, y2);
|
|
flood(fillcolor, (uint32_t)w * (uint32_t)h);
|
|
if (driver == ID_932X)
|
|
setAddrWindow(0, 0, _width - 1, _height - 1);
|
|
else
|
|
setLR();
|
|
}
|
|
|
|
void Adafruit_TFTLCD::fillScreen(uint16_t color) {
|
|
|
|
if (driver == ID_932X) {
|
|
|
|
// For the 932X, a full-screen address window is already the default
|
|
// state, just need to set the address pointer to the top-left corner.
|
|
// Although we could fill in any direction, the code uses the current
|
|
// screen rotation because some users find it disconcerting when a
|
|
// fill does not occur top-to-bottom.
|
|
uint16_t x, y;
|
|
switch (rotation) {
|
|
default:
|
|
x = 0;
|
|
y = 0;
|
|
break;
|
|
case 1:
|
|
x = TFTWIDTH - 1;
|
|
y = 0;
|
|
break;
|
|
case 2:
|
|
x = TFTWIDTH - 1;
|
|
y = TFTHEIGHT - 1;
|
|
break;
|
|
case 3:
|
|
x = 0;
|
|
y = TFTHEIGHT - 1;
|
|
break;
|
|
}
|
|
CS_ACTIVE;
|
|
writeRegister16(0x0020, x);
|
|
writeRegister16(0x0021, y);
|
|
|
|
} else if ((driver == ID_9341) || (driver == ID_7575) ||
|
|
(driver == ID_HX8357D)) {
|
|
// For these, there is no settable address pointer, instead the
|
|
// address window must be set for each drawing operation. However,
|
|
// this display takes rotation into account for the parameters, no
|
|
// need to do extra rotation math here.
|
|
setAddrWindow(0, 0, _width - 1, _height - 1);
|
|
}
|
|
flood(color, (long)TFTWIDTH * (long)TFTHEIGHT);
|
|
}
|
|
|
|
void Adafruit_TFTLCD::drawPixel(int16_t x, int16_t y, uint16_t color) {
|
|
|
|
// Clip
|
|
if ((x < 0) || (y < 0) || (x >= _width) || (y >= _height))
|
|
return;
|
|
|
|
CS_ACTIVE;
|
|
if (driver == ID_932X) {
|
|
int16_t t;
|
|
switch (rotation) {
|
|
case 1:
|
|
t = x;
|
|
x = TFTWIDTH - 1 - y;
|
|
y = t;
|
|
break;
|
|
case 2:
|
|
x = TFTWIDTH - 1 - x;
|
|
y = TFTHEIGHT - 1 - y;
|
|
break;
|
|
case 3:
|
|
t = x;
|
|
x = y;
|
|
y = TFTHEIGHT - 1 - t;
|
|
break;
|
|
}
|
|
writeRegister16(0x0020, x);
|
|
writeRegister16(0x0021, y);
|
|
writeRegister16(0x0022, color);
|
|
|
|
} else if (driver == ID_7575) {
|
|
|
|
uint8_t hi, lo;
|
|
switch (rotation) {
|
|
default:
|
|
lo = 0;
|
|
break;
|
|
case 1:
|
|
lo = 0x60;
|
|
break;
|
|
case 2:
|
|
lo = 0xc0;
|
|
break;
|
|
case 3:
|
|
lo = 0xa0;
|
|
break;
|
|
}
|
|
writeRegister8(HX8347G_MEMACCESS, lo);
|
|
// Only upper-left is set -- bottom-right is full screen default
|
|
writeRegisterPair(HX8347G_COLADDRSTART_HI, HX8347G_COLADDRSTART_LO, x);
|
|
writeRegisterPair(HX8347G_ROWADDRSTART_HI, HX8347G_ROWADDRSTART_LO, y);
|
|
hi = color >> 8;
|
|
lo = color;
|
|
CD_COMMAND;
|
|
write8(0x22);
|
|
CD_DATA;
|
|
write8(hi);
|
|
write8(lo);
|
|
|
|
} else if ((driver == ID_9341) || (driver == ID_HX8357D)) {
|
|
setAddrWindow(x, y, _width - 1, _height - 1);
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
write8(0x2C);
|
|
CD_DATA;
|
|
write8(color >> 8);
|
|
write8(color);
|
|
}
|
|
|
|
CS_IDLE;
|
|
}
|
|
|
|
// Issues 'raw' an array of 16-bit color values to the LCD; used
|
|
// externally by BMP examples. Assumes that setWindowAddr() has
|
|
// previously been set to define the bounds. Max 255 pixels at
|
|
// a time (BMP examples read in small chunks due to limited RAM).
|
|
void Adafruit_TFTLCD::pushColors(uint16_t *data, uint8_t len, boolean first) {
|
|
uint16_t color;
|
|
uint8_t hi, lo;
|
|
CS_ACTIVE;
|
|
if (first == true) { // Issue GRAM write command only on first call
|
|
CD_COMMAND;
|
|
if (driver == ID_932X)
|
|
write8(0x00);
|
|
if ((driver == ID_9341) || (driver == ID_HX8357D)) {
|
|
write8(0x2C);
|
|
} else {
|
|
write8(0x22);
|
|
}
|
|
}
|
|
CD_DATA;
|
|
while (len--) {
|
|
color = *data++;
|
|
hi = color >> 8; // Don't simplify or merge these
|
|
lo = color; // lines, there's macro shenanigans
|
|
write8(hi); // going on.
|
|
write8(lo);
|
|
}
|
|
CS_IDLE;
|
|
}
|
|
|
|
void Adafruit_TFTLCD::setRotation(uint8_t x) {
|
|
|
|
// Call parent rotation func first -- sets up rotation flags, etc.
|
|
Adafruit_GFX::setRotation(x);
|
|
// Then perform hardware-specific rotation operations...
|
|
|
|
CS_ACTIVE;
|
|
if (driver == ID_932X) {
|
|
|
|
uint16_t t;
|
|
switch (rotation) {
|
|
default:
|
|
t = 0x1030;
|
|
break;
|
|
case 1:
|
|
t = 0x1028;
|
|
break;
|
|
case 2:
|
|
t = 0x1000;
|
|
break;
|
|
case 3:
|
|
t = 0x1018;
|
|
break;
|
|
}
|
|
writeRegister16(0x0003, t); // MADCTL
|
|
// For 932X, init default full-screen address window:
|
|
setAddrWindow(0, 0, _width - 1, _height - 1); // CS_IDLE happens here
|
|
}
|
|
if (driver == ID_7575) {
|
|
|
|
uint8_t t;
|
|
switch (rotation) {
|
|
default:
|
|
t = 0;
|
|
break;
|
|
case 1:
|
|
t = 0x60;
|
|
break;
|
|
case 2:
|
|
t = 0xc0;
|
|
break;
|
|
case 3:
|
|
t = 0xa0;
|
|
break;
|
|
}
|
|
writeRegister8(HX8347G_MEMACCESS, t);
|
|
// 7575 has to set the address window on most drawing operations.
|
|
// drawPixel() cheats by setting only the top left...by default,
|
|
// the lower right is always reset to the corner.
|
|
setLR(); // CS_IDLE happens here
|
|
}
|
|
|
|
if (driver == ID_9341) {
|
|
// MEME, HX8357D uses same registers as 9341 but different values
|
|
uint16_t t;
|
|
|
|
switch (rotation) {
|
|
case 2:
|
|
t = ILI9341_MADCTL_MX | ILI9341_MADCTL_BGR;
|
|
break;
|
|
case 3:
|
|
t = ILI9341_MADCTL_MV | ILI9341_MADCTL_BGR;
|
|
break;
|
|
case 0:
|
|
t = ILI9341_MADCTL_MY | ILI9341_MADCTL_BGR;
|
|
break;
|
|
case 1:
|
|
t = ILI9341_MADCTL_MX | ILI9341_MADCTL_MY | ILI9341_MADCTL_MV |
|
|
ILI9341_MADCTL_BGR;
|
|
break;
|
|
}
|
|
writeRegister8(ILI9341_MADCTL, t); // MADCTL
|
|
// For 9341, init default full-screen address window:
|
|
setAddrWindow(0, 0, _width - 1, _height - 1); // CS_IDLE happens here
|
|
}
|
|
|
|
if (driver == ID_HX8357D) {
|
|
// MEME, HX8357D uses same registers as 9341 but different values
|
|
uint16_t t;
|
|
|
|
switch (rotation) {
|
|
case 2:
|
|
t = HX8357B_MADCTL_RGB;
|
|
break;
|
|
case 3:
|
|
t = HX8357B_MADCTL_MX | HX8357B_MADCTL_MV | HX8357B_MADCTL_RGB;
|
|
break;
|
|
case 0:
|
|
t = HX8357B_MADCTL_MX | HX8357B_MADCTL_MY | HX8357B_MADCTL_RGB;
|
|
break;
|
|
case 1:
|
|
t = HX8357B_MADCTL_MY | HX8357B_MADCTL_MV | HX8357B_MADCTL_RGB;
|
|
break;
|
|
}
|
|
writeRegister8(ILI9341_MADCTL, t); // MADCTL
|
|
// For 8357, init default full-screen address window:
|
|
setAddrWindow(0, 0, _width - 1, _height - 1); // CS_IDLE happens here
|
|
}
|
|
}
|
|
|
|
#ifdef read8isFunctionalized
|
|
#define read8(x) x = read8fn()
|
|
#endif
|
|
|
|
// Because this function is used infrequently, it configures the ports for
|
|
// the read operation, reads the data, then restores the ports to the write
|
|
// configuration. Write operations happen a LOT, so it's advantageous to
|
|
// leave the ports in that state as a default.
|
|
uint16_t Adafruit_TFTLCD::readPixel(int16_t x, int16_t y) {
|
|
|
|
if ((x < 0) || (y < 0) || (x >= _width) || (y >= _height))
|
|
return 0;
|
|
|
|
CS_ACTIVE;
|
|
if (driver == ID_932X) {
|
|
|
|
uint8_t hi, lo;
|
|
int16_t t;
|
|
switch (rotation) {
|
|
case 1:
|
|
t = x;
|
|
x = TFTWIDTH - 1 - y;
|
|
y = t;
|
|
break;
|
|
case 2:
|
|
x = TFTWIDTH - 1 - x;
|
|
y = TFTHEIGHT - 1 - y;
|
|
break;
|
|
case 3:
|
|
t = x;
|
|
x = y;
|
|
y = TFTHEIGHT - 1 - t;
|
|
break;
|
|
}
|
|
writeRegister16(0x0020, x);
|
|
writeRegister16(0x0021, y);
|
|
// Inexplicable thing: sometimes pixel read has high/low bytes
|
|
// reversed. A second read fixes this. Unsure of reason. Have
|
|
// tried adjusting timing in read8() etc. to no avail.
|
|
for (uint8_t pass = 0; pass < 2; pass++) {
|
|
CD_COMMAND;
|
|
write8(0x00);
|
|
write8(0x22); // Read data from GRAM
|
|
CD_DATA;
|
|
setReadDir(); // Set up LCD data port(s) for READ operations
|
|
read8(hi); // First 2 bytes back are a dummy read
|
|
read8(hi);
|
|
read8(hi); // Bytes 3, 4 are actual pixel value
|
|
read8(lo);
|
|
setWriteDir(); // Restore LCD data port(s) to WRITE configuration
|
|
}
|
|
CS_IDLE;
|
|
return ((uint16_t)hi << 8) | lo;
|
|
|
|
} else if (driver == ID_7575) {
|
|
|
|
uint8_t r, g, b;
|
|
writeRegisterPair(HX8347G_COLADDRSTART_HI, HX8347G_COLADDRSTART_LO, x);
|
|
writeRegisterPair(HX8347G_ROWADDRSTART_HI, HX8347G_ROWADDRSTART_LO, y);
|
|
CD_COMMAND;
|
|
write8(0x22); // Read data from GRAM
|
|
setReadDir(); // Set up LCD data port(s) for READ operations
|
|
CD_DATA;
|
|
read8(r); // First byte back is a dummy read
|
|
read8(r);
|
|
read8(g);
|
|
read8(b);
|
|
setWriteDir(); // Restore LCD data port(s) to WRITE configuration
|
|
CS_IDLE;
|
|
return (((uint16_t)r & B11111000) << 8) | (((uint16_t)g & B11111100) << 3) |
|
|
(b >> 3);
|
|
} else
|
|
return 0;
|
|
}
|
|
|
|
// Ditto with the read/write port directions, as above.
|
|
uint16_t Adafruit_TFTLCD::readID(void) {
|
|
uint16_t id;
|
|
|
|
// retry a bunch!
|
|
for (int i = 0; i < 5; i++) {
|
|
id = readReg(0xD3);
|
|
if (id == 0x9341) {
|
|
return id;
|
|
}
|
|
}
|
|
|
|
uint8_t hi, lo;
|
|
|
|
/*
|
|
for (uint8_t i=0; i<128; i++) {
|
|
Serial.print("$"); Serial.print(i, HEX);
|
|
Serial.print(" = 0x"); Serial.println(readReg(i), HEX);
|
|
}
|
|
*/
|
|
|
|
if (readReg(0x04) == 0x8000) { // eh close enough
|
|
// setc!
|
|
/*
|
|
Serial.println("!");
|
|
for (uint8_t i=0; i<254; i++) {
|
|
Serial.print("$"); Serial.print(i, HEX);
|
|
Serial.print(" = 0x"); Serial.println(readReg(i), HEX);
|
|
}
|
|
*/
|
|
writeRegister24(HX8357D_SETC, 0xFF8357);
|
|
delay(300);
|
|
// Serial.println(readReg(0xD0), HEX);
|
|
if (readReg(0xD0) == 0x990000) {
|
|
return 0x8357;
|
|
}
|
|
}
|
|
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
write8(0x00);
|
|
WR_STROBE; // Repeat prior byte (0x00)
|
|
setReadDir(); // Set up LCD data port(s) for READ operations
|
|
CD_DATA;
|
|
read8(hi);
|
|
read8(lo);
|
|
setWriteDir(); // Restore LCD data port(s) to WRITE configuration
|
|
CS_IDLE;
|
|
|
|
id = hi;
|
|
id <<= 8;
|
|
id |= lo;
|
|
return id;
|
|
}
|
|
|
|
uint32_t Adafruit_TFTLCD::readReg(uint8_t r) {
|
|
uint32_t id;
|
|
uint8_t x;
|
|
|
|
// try reading register #4
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
write8(r);
|
|
setReadDir(); // Set up LCD data port(s) for READ operations
|
|
CD_DATA;
|
|
delayMicroseconds(50);
|
|
read8(x);
|
|
id = x; // Do not merge or otherwise simplify
|
|
id <<= 8; // these lines. It's an unfortunate
|
|
read8(x);
|
|
id |= x; // shenanigans that are going on.
|
|
id <<= 8; // these lines. It's an unfortunate
|
|
read8(x);
|
|
id |= x; // shenanigans that are going on.
|
|
id <<= 8; // these lines. It's an unfortunate
|
|
read8(x);
|
|
id |= x; // shenanigans that are going on.
|
|
CS_IDLE;
|
|
setWriteDir(); // Restore LCD data port(s) to WRITE configuration
|
|
|
|
// Serial.print("Read $"); Serial.print(r, HEX);
|
|
// Serial.print(":\t0x"); Serial.println(id, HEX);
|
|
return id;
|
|
}
|
|
|
|
// Pass 8-bit (each) R,G,B, get back 16-bit packed color
|
|
uint16_t Adafruit_TFTLCD::color565(uint8_t r, uint8_t g, uint8_t b) {
|
|
return ((r & 0xF8) << 8) | ((g & 0xFC) << 3) | (b >> 3);
|
|
}
|
|
|
|
// For I/O macros that were left undefined, declare function
|
|
// versions that reference the inline macros just once:
|
|
|
|
#ifndef write8
|
|
void Adafruit_TFTLCD::write8(uint8_t value) { write8inline(value); }
|
|
#endif
|
|
|
|
#ifdef read8isFunctionalized
|
|
uint8_t Adafruit_TFTLCD::read8fn(void) {
|
|
uint8_t result;
|
|
read8inline(result);
|
|
return result;
|
|
}
|
|
#endif
|
|
|
|
#ifndef setWriteDir
|
|
void Adafruit_TFTLCD::setWriteDir(void) { setWriteDirInline(); }
|
|
#endif
|
|
|
|
#ifndef setReadDir
|
|
void Adafruit_TFTLCD::setReadDir(void) { setReadDirInline(); }
|
|
#endif
|
|
|
|
#ifndef writeRegister8
|
|
void Adafruit_TFTLCD::writeRegister8(uint8_t a, uint8_t d) {
|
|
writeRegister8inline(a, d);
|
|
}
|
|
#endif
|
|
|
|
#ifndef writeRegister16
|
|
void Adafruit_TFTLCD::writeRegister16(uint16_t a, uint16_t d) {
|
|
writeRegister16inline(a, d);
|
|
}
|
|
#endif
|
|
|
|
#ifndef writeRegisterPair
|
|
void Adafruit_TFTLCD::writeRegisterPair(uint8_t aH, uint8_t aL, uint16_t d) {
|
|
writeRegisterPairInline(aH, aL, d);
|
|
}
|
|
#endif
|
|
|
|
void Adafruit_TFTLCD::writeRegister24(uint8_t r, uint32_t d) {
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
write8(r);
|
|
CD_DATA;
|
|
delayMicroseconds(10);
|
|
write8(d >> 16);
|
|
delayMicroseconds(10);
|
|
write8(d >> 8);
|
|
delayMicroseconds(10);
|
|
write8(d);
|
|
CS_IDLE;
|
|
}
|
|
|
|
void Adafruit_TFTLCD::writeRegister32(uint8_t r, uint32_t d) {
|
|
CS_ACTIVE;
|
|
CD_COMMAND;
|
|
write8(r);
|
|
CD_DATA;
|
|
delayMicroseconds(10);
|
|
write8(d >> 24);
|
|
delayMicroseconds(10);
|
|
write8(d >> 16);
|
|
delayMicroseconds(10);
|
|
write8(d >> 8);
|
|
delayMicroseconds(10);
|
|
write8(d);
|
|
CS_IDLE;
|
|
}
|