mirror of
https://github.com/sle118/squeezelite-esp32.git
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222 lines
7.0 KiB
C
222 lines
7.0 KiB
C
/*
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* (c) Philippe G. 2019, philippe_44@outlook.com
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*
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* This software is released under the MIT License.
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* https://opensource.org/licenses/MIT
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*
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*/
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#ifndef _GDS_PRIVATE_H_
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#define _GDS_PRIVATE_H_
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#include <stdint.h>
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#include <stdbool.h>
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#include "esp_attr.h"
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#include "gds.h"
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#include "gds_err.h"
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#define GDS_ALLOC_NONE 0x80
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#define GDS_ALLOC_IRAM 0x01
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#define GDS_ALLOC_IRAM_SPI 0x02
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#define GDS_CLIPDEBUG_NONE 0
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#define GDS_CLIPDEBUG_WARNING 1
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#define GDS_CLIPDEBUG_ERROR 2
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#if CONFIG_GDS_CLIPDEBUG == GDS_CLIPDEBUG_NONE
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/*
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* Clip silently with no console output.
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*/
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#define ClipDebug( x, y )
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#elif CONFIG_GDS_CLIPDEBUG == GDS_CLIPDEBUG_WARNING
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/*
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* Log clipping to the console as a warning.
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*/
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#define ClipDebug( x, y ) { \
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ESP_LOGW( __FUNCTION__, "Line %d: Pixel at %d, %d CLIPPED", __LINE__, x, y ); \
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}
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#elif CONFIG_GDS_CLIPDEBUG == GDS_CLIPDEBUG_ERROR
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/*
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* Log clipping as an error to the console.
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* Also invokes an abort with stack trace.
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*/
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#define ClipDebug( x, y ) { \
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ESP_LOGE( __FUNCTION__, "Line %d: Pixel at %d, %d CLIPPED, ABORT", __LINE__, x, y ); \
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abort( ); \
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}
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#endif
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#define GDS_ALWAYS_INLINE __attribute__( ( always_inline ) )
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#define MAX_LINES 8
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#if ! defined BIT
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#define BIT( n ) ( 1 << ( n ) )
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#endif
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struct GDS_Device;
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struct GDS_FontDef;
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/*
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* These can optionally return a succeed/fail but are as of yet unused in the driver.
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*/
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typedef bool ( *WriteCommandProc ) ( struct GDS_Device* Device, uint8_t Command );
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typedef bool ( *WriteDataProc ) ( struct GDS_Device* Device, const uint8_t* Data, size_t DataLength );
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struct spi_device_t;
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typedef struct spi_device_t* spi_device_handle_t;
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#define GDS_IF_SPI 0
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#define GDS_IF_I2C 1
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struct GDS_Device {
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uint8_t IF;
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int8_t RSTPin;
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struct {
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int8_t Pin, Channel;
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int PWM;
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} Backlight;
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union {
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// I2C Specific
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struct {
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uint8_t Address;
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};
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// SPI specific
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struct {
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spi_device_handle_t SPIHandle;
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int8_t CSPin;
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};
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};
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// cooked text mode
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struct {
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int16_t Y, Space;
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const struct GDS_FontDef* Font;
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} Lines[MAX_LINES];
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uint16_t Width;
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uint16_t Height;
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uint8_t Depth, Mode;
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uint8_t Alloc;
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uint8_t* Framebuffer;
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uint32_t FramebufferSize;
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bool Dirty;
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// default fonts when using direct draw
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const struct GDS_FontDef* Font;
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bool FontForceProportional;
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bool FontForceMonospace;
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// various driver-specific method
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// must always provide
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bool (*Init)( struct GDS_Device* Device);
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void (*Update)( struct GDS_Device* Device );
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// may provide if supported
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void (*SetContrast)( struct GDS_Device* Device, uint8_t Contrast );
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void (*DisplayOn)( struct GDS_Device* Device );
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void (*DisplayOff)( struct GDS_Device* Device );
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void (*SetLayout)( struct GDS_Device* Device, bool HFlip, bool VFlip, bool Rotate );
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// must provide for depth other than 1 (vertical) and 4 (may provide for optimization)
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void (*DrawPixelFast)( struct GDS_Device* Device, int X, int Y, int Color );
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void (*DrawBitmapCBR)(struct GDS_Device* Device, uint8_t *Data, int Width, int Height, int Color );
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// may provide for optimization
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void (*DrawRGB)( struct GDS_Device* Device, uint8_t *Image,int x, int y, int Width, int Height, int RGB_Mode );
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void (*ClearWindow)( struct GDS_Device* Device, int x1, int y1, int x2, int y2, int Color );
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// interface-specific methods
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WriteCommandProc WriteCommand;
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WriteDataProc WriteData;
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// 32 bytes for whatever the driver wants (should be aligned as it's 32 bits)
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uint32_t Private[8];
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};
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bool GDS_Reset( struct GDS_Device* Device );
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bool GDS_Init( struct GDS_Device* Device );
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static inline bool IsPixelVisible( struct GDS_Device* Device, int x, int y ) {
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bool Result = (
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( x >= 0 ) &&
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( x < Device->Width ) &&
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( y >= 0 ) &&
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( y < Device->Height )
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) ? true : false;
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#if CONFIG_GDS_CLIPDEBUG > 0
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if ( Result == false ) {
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ClipDebug( x, y );
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}
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#endif
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return Result;
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}
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static inline void DrawPixel1Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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uint32_t YBit = ( Y & 0x07 );
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uint8_t* FBOffset;
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/*
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* We only need to modify the Y coordinate since the pitch
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* of the screen is the same as the width.
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* Dividing Y by 8 gives us which row the pixel is in but not
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* the bit position.
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*/
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Y>>= 3;
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FBOffset = Device->Framebuffer + ( ( Y * Device->Width ) + X );
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if ( Color == GDS_COLOR_XOR ) {
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*FBOffset ^= BIT( YBit );
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} else {
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*FBOffset = ( Color == GDS_COLOR_BLACK ) ? *FBOffset & ~BIT( YBit ) : *FBOffset | BIT( YBit );
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}
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}
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static inline void DrawPixel4Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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uint8_t* FBOffset = Device->Framebuffer + ( (Y * Device->Width >> 1) + (X >> 1));
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*FBOffset = X & 0x01 ? (*FBOffset & 0x0f) | ((Color & 0x0f) << 4) : ((*FBOffset & 0xf0) | (Color & 0x0f));
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}
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static inline void DrawPixel8Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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Device->Framebuffer[Y * Device->Width + X] = Color;
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}
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// assumes that Color is 16 bits R..RG..GB..B from MSB to LSB and FB wants 1st serialized byte to start with R
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static inline void DrawPixel16Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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uint16_t* FBOffset = (uint16_t*) Device->Framebuffer + Y * Device->Width + X;
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*FBOffset = __builtin_bswap16(Color);
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}
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// assumes that Color is 18 bits RGB from MSB to LSB RRRRRRGGGGGGBBBBBB, so byte[0] is B
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// FB is 3-bytes packets and starts with R for serialization so 0,1,2 ... = xxRRRRRR xxGGGGGG xxBBBBBB
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static inline void DrawPixel18Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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uint8_t* FBOffset = Device->Framebuffer + (Y * Device->Width + X) * 3;
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*FBOffset++ = Color >> 12; *FBOffset++ = (Color >> 6) & 0x3f; *FBOffset = Color & 0x3f;
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}
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// assumes that Color is 24 bits RGB from MSB to LSB RRRRRRRRGGGGGGGGBBBBBBBB, so byte[0] is B
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// FB is 3-bytes packets and starts with R for serialization so 0,1,2 ... = RRRRRRRR GGGGGGGG BBBBBBBB
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static inline void DrawPixel24Fast( struct GDS_Device* Device, int X, int Y, int Color ) {
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uint8_t* FBOffset = Device->Framebuffer + (Y * Device->Width + X) * 3;
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*FBOffset++ = Color >> 16; *FBOffset++ = Color >> 8; *FBOffset = Color;
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}
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static inline void IRAM_ATTR DrawPixelFast( struct GDS_Device* Device, int X, int Y, int Color ) {
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if (Device->DrawPixelFast) Device->DrawPixelFast( Device, X, Y, Color );
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else if (Device->Depth == 4) DrawPixel4Fast( Device, X, Y, Color );
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else if (Device->Depth == 1) DrawPixel1Fast( Device, X, Y, Color );
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else if (Device->Depth == 16) DrawPixel16Fast( Device, X, Y, Color );
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else if (Device->Depth == 24 && Device->Mode == GDS_RGB666) DrawPixel18Fast( Device, X, Y, Color );
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else if (Device->Depth == 24 && Device->Mode == GDS_RGB888) DrawPixel24Fast( Device, X, Y, Color );
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else if (Device->Depth == 8) DrawPixel8Fast( Device, X, Y, Color );
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}
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static inline void IRAM_ATTR DrawPixel( struct GDS_Device* Device, int x, int y, int Color ) {
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if ( IsPixelVisible( Device, x, y ) == true ) {
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DrawPixelFast( Device, x, y, Color );
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}
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}
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#endif |