mirror of
https://github.com/adafruit/Adafruit-GFX-Library.git
synced 2024-10-03 18:18:46 -04:00
423 lines
15 KiB
C++
423 lines
15 KiB
C++
/*!
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* @file Adafruit_GrayOLED.cpp
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*
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* This is documentation for Adafruit's generic library for grayscale
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* OLED displays: http://www.adafruit.com/category/63_98
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*
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* These displays use I2C or SPI to communicate. I2C requires 2 pins
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* (SCL+SDA) and optionally a RESET pin. SPI requires 4 pins (MOSI, SCK,
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* select, data/command) and optionally a reset pin. Hardware SPI or
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* 'bitbang' software SPI are both supported.
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*
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* Adafruit invests time and resources providing this open source code,
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* please support Adafruit and open-source hardware by purchasing
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* products from Adafruit!
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*
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*/
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// Not for ATtiny, at all
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#if !defined(__AVR_ATtiny85__) && !defined(__AVR_ATtiny84__)
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#include "Adafruit_GrayOLED.h"
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#include <Adafruit_GFX.h>
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// SOME DEFINES AND STATIC VARIABLES USED INTERNALLY -----------------------
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#define grayoled_swap(a, b) \
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(((a) ^= (b)), ((b) ^= (a)), ((a) ^= (b))) ///< No-temp-var swap operation
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// CONSTRUCTORS, DESTRUCTOR ------------------------------------------------
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/*!
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@brief Constructor for I2C-interfaced OLED displays.
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@param bpp Bits per pixel, 1 for monochrome, 4 for 16-gray
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@param w
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Display width in pixels
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@param h
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Display height in pixels
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@param twi
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Pointer to an existing TwoWire instance (e.g. &Wire, the
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microcontroller's primary I2C bus).
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@param rst_pin
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Reset pin (using Arduino pin numbering), or -1 if not used
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(some displays might be wired to share the microcontroller's
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reset pin).
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@param clkDuring
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Speed (in Hz) for Wire transmissions in library calls.
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Defaults to 400000 (400 KHz), a known 'safe' value for most
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microcontrollers, and meets the OLED datasheet spec.
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Some systems can operate I2C faster (800 KHz for ESP32, 1 MHz
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for many other 32-bit MCUs), and some (perhaps not all)
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Many OLED's can work with this -- so it's optionally be specified
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here and is not a default behavior. (Ignored if using pre-1.5.7
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Arduino software, which operates I2C at a fixed 100 KHz.)
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@param clkAfter
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Speed (in Hz) for Wire transmissions following library
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calls. Defaults to 100000 (100 KHz), the default Arduino Wire
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speed. This is done rather than leaving it at the 'during' speed
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because other devices on the I2C bus might not be compatible
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with the faster rate. (Ignored if using pre-1.5.7 Arduino
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software, which operates I2C at a fixed 100 KHz.)
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@note Call the object's begin() function before use -- buffer
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allocation is performed there!
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*/
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Adafruit_GrayOLED::Adafruit_GrayOLED(uint8_t bpp, uint16_t w, uint16_t h,
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TwoWire *twi, int8_t rst_pin,
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uint32_t clkDuring, uint32_t clkAfter)
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: Adafruit_GFX(w, h), i2c_preclk(clkDuring), i2c_postclk(clkAfter),
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buffer(NULL), dcPin(-1), csPin(-1), rstPin(rst_pin), _bpp(bpp) {
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i2c_dev = NULL;
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_theWire = twi;
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}
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/*!
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@brief Constructor for SPI GrayOLED displays, using software (bitbang)
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SPI.
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@param bpp Bits per pixel, 1 for monochrome, 4 for 16-gray
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@param w
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Display width in pixels
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@param h
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Display height in pixels
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@param mosi_pin
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MOSI (master out, slave in) pin (using Arduino pin numbering).
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This transfers serial data from microcontroller to display.
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@param sclk_pin
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SCLK (serial clock) pin (using Arduino pin numbering).
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This clocks each bit from MOSI.
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@param dc_pin
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Data/command pin (using Arduino pin numbering), selects whether
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display is receiving commands (low) or data (high).
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@param rst_pin
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Reset pin (using Arduino pin numbering), or -1 if not used
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(some displays might be wired to share the microcontroller's
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reset pin).
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@param cs_pin
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Chip-select pin (using Arduino pin numbering) for sharing the
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bus with other devices. Active low.
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@note Call the object's begin() function before use -- buffer
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allocation is performed there!
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*/
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Adafruit_GrayOLED::Adafruit_GrayOLED(uint8_t bpp, uint16_t w, uint16_t h,
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int8_t mosi_pin, int8_t sclk_pin,
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int8_t dc_pin, int8_t rst_pin,
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int8_t cs_pin)
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: Adafruit_GFX(w, h), dcPin(dc_pin), csPin(cs_pin), rstPin(rst_pin),
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_bpp(bpp) {
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spi_dev = new Adafruit_SPIDevice(cs_pin, sclk_pin, -1, mosi_pin, 1000000);
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}
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/*!
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@brief Constructor for SPI GrayOLED displays, using native hardware SPI.
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@param bpp Bits per pixel, 1 for monochrome, 4 for 16-gray
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@param w
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Display width in pixels
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@param h
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Display height in pixels
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@param spi
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Pointer to an existing SPIClass instance (e.g. &SPI, the
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microcontroller's primary SPI bus).
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@param dc_pin
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Data/command pin (using Arduino pin numbering), selects whether
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display is receiving commands (low) or data (high).
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@param rst_pin
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Reset pin (using Arduino pin numbering), or -1 if not used
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(some displays might be wired to share the microcontroller's
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reset pin).
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@param cs_pin
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Chip-select pin (using Arduino pin numbering) for sharing the
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bus with other devices. Active low.
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@param bitrate
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SPI clock rate for transfers to this display. Default if
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unspecified is 8000000UL (8 MHz).
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@note Call the object's begin() function before use -- buffer
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allocation is performed there!
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*/
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Adafruit_GrayOLED::Adafruit_GrayOLED(uint8_t bpp, uint16_t w, uint16_t h,
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SPIClass *spi, int8_t dc_pin,
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int8_t rst_pin, int8_t cs_pin,
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uint32_t bitrate)
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: Adafruit_GFX(w, h), dcPin(dc_pin), csPin(cs_pin), rstPin(rst_pin),
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_bpp(bpp) {
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spi_dev = new Adafruit_SPIDevice(cs_pin, bitrate, SPI_BITORDER_MSBFIRST,
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SPI_MODE0, spi);
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}
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/*!
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@brief Destructor for Adafruit_GrayOLED object.
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*/
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Adafruit_GrayOLED::~Adafruit_GrayOLED(void) {
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if (buffer) {
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free(buffer);
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buffer = NULL;
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}
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if (spi_dev)
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delete spi_dev;
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if (i2c_dev)
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delete i2c_dev;
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}
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// LOW-LEVEL UTILS ---------------------------------------------------------
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/*!
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@brief Issue single command byte to OLED, using I2C or hard/soft SPI as
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needed.
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@param c The single byte command
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*/
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void Adafruit_GrayOLED::oled_command(uint8_t c) {
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if (i2c_dev) { // I2C
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uint8_t buf[2] = {0x00, c}; // Co = 0, D/C = 0
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i2c_dev->write(buf, 2);
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} else { // SPI (hw or soft) -- transaction started in calling function
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digitalWrite(dcPin, LOW);
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spi_dev->write(&c, 1);
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}
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}
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// Issue list of commands to GrayOLED
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/*!
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@brief Issue multiple bytes of commands OLED, using I2C or hard/soft SPI as
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needed.
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@param c Pointer to the command array
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@param n The number of bytes in the command array
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@returns True for success on ability to write the data in I2C.
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*/
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bool Adafruit_GrayOLED::oled_commandList(const uint8_t *c, uint8_t n) {
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if (i2c_dev) { // I2C
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uint8_t dc_byte = 0x00; // Co = 0, D/C = 0
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if (!i2c_dev->write((uint8_t *)c, n, true, &dc_byte, 1)) {
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return false;
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}
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} else { // SPI -- transaction started in calling function
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digitalWrite(dcPin, LOW);
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if (!spi_dev->write((uint8_t *)c, n)) {
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return false;
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}
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}
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return true;
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}
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// ALLOCATE & INIT DISPLAY -------------------------------------------------
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/*!
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@brief Allocate RAM for image buffer, initialize peripherals and pins.
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Note that subclasses must call this before other begin() init
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@param addr
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I2C address of corresponding oled display.
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SPI displays (hardware or software) do not use addresses, but
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this argument is still required. Default if unspecified is 0x3C.
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@param reset
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If true, and if the reset pin passed to the constructor is
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valid, a hard reset will be performed before initializing the
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display. If using multiple oled displays on the same bus, and
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if they all share the same reset pin, you should only pass true
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on the first display being initialized, false on all others,
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else the already-initialized displays would be reset. Default if
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unspecified is true.
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@return true on successful allocation/init, false otherwise.
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Well-behaved code should check the return value before
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proceeding.
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@note MUST call this function before any drawing or updates!
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*/
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bool Adafruit_GrayOLED::_init(uint8_t addr, bool reset) {
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// attempt to malloc the bitmap framebuffer
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if ((!buffer) &&
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!(buffer = (uint8_t *)malloc(_bpp * WIDTH * ((HEIGHT + 7) / 8)))) {
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return false;
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}
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// Reset OLED if requested and reset pin specified in constructor
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if (reset && (rstPin >= 0)) {
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pinMode(rstPin, OUTPUT);
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digitalWrite(rstPin, HIGH);
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delay(10); // VDD goes high at start, pause
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digitalWrite(rstPin, LOW); // Bring reset low
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delay(10); // Wait 10 ms
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digitalWrite(rstPin, HIGH); // Bring out of reset
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delay(10);
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}
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// Setup pin directions
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if (_theWire) { // using I2C
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i2c_dev = new Adafruit_I2CDevice(addr, _theWire);
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// look for i2c address:
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if (!i2c_dev || !i2c_dev->begin()) {
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return false;
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}
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} else { // Using one of the SPI modes, either soft or hardware
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if (!spi_dev || !spi_dev->begin()) {
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return false;
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}
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pinMode(dcPin, OUTPUT); // Set data/command pin as output
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}
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clearDisplay();
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// set max dirty window
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window_x1 = 0;
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window_y1 = 0;
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window_x2 = WIDTH - 1;
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window_y2 = HEIGHT - 1;
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return true; // Success
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}
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// DRAWING FUNCTIONS -------------------------------------------------------
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/*!
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@brief Set/clear/invert a single pixel. This is also invoked by the
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Adafruit_GFX library in generating many higher-level graphics
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primitives.
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@param x
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Column of display -- 0 at left to (screen width - 1) at right.
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@param y
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Row of display -- 0 at top to (screen height -1) at bottom.
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@param color
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Pixel color, one of: MONOOLED_BLACK, MONOOLED_WHITE or
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MONOOLED_INVERT.
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@note Changes buffer contents only, no immediate effect on display.
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Follow up with a call to display(), or with other graphics
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commands as needed by one's own application.
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*/
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void Adafruit_GrayOLED::drawPixel(int16_t x, int16_t y, uint16_t color) {
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if ((x >= 0) && (x < width()) && (y >= 0) && (y < height())) {
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// Pixel is in-bounds. Rotate coordinates if needed.
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switch (getRotation()) {
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case 1:
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grayoled_swap(x, y);
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x = WIDTH - x - 1;
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break;
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case 2:
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x = WIDTH - x - 1;
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y = HEIGHT - y - 1;
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break;
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case 3:
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grayoled_swap(x, y);
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y = HEIGHT - y - 1;
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break;
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}
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// adjust dirty window
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window_x1 = min(window_x1, x);
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window_y1 = min(window_y1, y);
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window_x2 = max(window_x2, x);
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window_y2 = max(window_y2, y);
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if (_bpp == 1) {
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switch (color) {
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case MONOOLED_WHITE:
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buffer[x + (y / 8) * WIDTH] |= (1 << (y & 7));
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break;
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case MONOOLED_BLACK:
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buffer[x + (y / 8) * WIDTH] &= ~(1 << (y & 7));
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break;
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case MONOOLED_INVERSE:
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buffer[x + (y / 8) * WIDTH] ^= (1 << (y & 7));
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break;
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}
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}
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if (_bpp == 4) {
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uint8_t *pixelptr = &buffer[x / 2 + (y * WIDTH / 2)];
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// Serial.printf("(%d, %d) -> offset %d\n", x, y, x/2 + (y * WIDTH / 2));
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if (x % 2 == 0) { // even, left nibble
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uint8_t t = pixelptr[0] & 0x0F;
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t |= (color & 0xF) << 4;
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pixelptr[0] = t;
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} else { // odd, right lower nibble
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uint8_t t = pixelptr[0] & 0xF0;
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t |= color & 0xF;
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pixelptr[0] = t;
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}
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}
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}
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}
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/*!
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@brief Clear contents of display buffer (set all pixels to off).
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@note Changes buffer contents only, no immediate effect on display.
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Follow up with a call to display(), or with other graphics
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commands as needed by one's own application.
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*/
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void Adafruit_GrayOLED::clearDisplay(void) {
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memset(buffer, 0, _bpp * WIDTH * ((HEIGHT + 7) / 8));
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// set max dirty window
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window_x1 = 0;
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window_y1 = 0;
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window_x2 = WIDTH - 1;
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window_y2 = HEIGHT - 1;
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}
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/*!
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@brief Return color of a single pixel in display buffer.
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@param x
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Column of display -- 0 at left to (screen width - 1) at right.
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@param y
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Row of display -- 0 at top to (screen height -1) at bottom.
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@return true if pixel is set (usually MONOOLED_WHITE, unless display invert
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mode is enabled), false if clear (MONOOLED_BLACK).
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@note Reads from buffer contents; may not reflect current contents of
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screen if display() has not been called.
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*/
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bool Adafruit_GrayOLED::getPixel(int16_t x, int16_t y) {
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if ((x >= 0) && (x < width()) && (y >= 0) && (y < height())) {
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// Pixel is in-bounds. Rotate coordinates if needed.
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switch (getRotation()) {
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case 1:
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grayoled_swap(x, y);
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x = WIDTH - x - 1;
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break;
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case 2:
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x = WIDTH - x - 1;
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y = HEIGHT - y - 1;
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break;
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case 3:
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grayoled_swap(x, y);
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y = HEIGHT - y - 1;
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break;
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}
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return (buffer[x + (y / 8) * WIDTH] & (1 << (y & 7)));
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}
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return false; // Pixel out of bounds
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}
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/*!
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@brief Get base address of display buffer for direct reading or writing.
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@return Pointer to an unsigned 8-bit array, column-major, columns padded
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to full byte boundary if needed.
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*/
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uint8_t *Adafruit_GrayOLED::getBuffer(void) { return buffer; }
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// OTHER HARDWARE SETTINGS -------------------------------------------------
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/*!
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@brief Enable or disable display invert mode (white-on-black vs
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black-on-white). Handy for testing!
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@param i
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If true, switch to invert mode (black-on-white), else normal
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mode (white-on-black).
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@note This has an immediate effect on the display, no need to call the
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display() function -- buffer contents are not changed, rather a
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different pixel mode of the display hardware is used. When
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enabled, drawing MONOOLED_BLACK (value 0) pixels will actually draw
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white, MONOOLED_WHITE (value 1) will draw black.
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*/
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void Adafruit_GrayOLED::invertDisplay(bool i) {
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oled_command(i ? GRAYOLED_INVERTDISPLAY : GRAYOLED_NORMALDISPLAY);
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}
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/*!
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@brief Adjust the display contrast.
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@param level The contrast level from 0 to 0x7F
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@note This has an immediate effect on the display, no need to call the
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display() function -- buffer contents are not changed.
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*/
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void Adafruit_GrayOLED::setContrast(uint8_t level) {
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uint8_t cmd[] = {GRAYOLED_SETCONTRAST, level};
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oled_commandList(cmd, 2);
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}
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#endif /* ATTIN85 not supported */
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