Fix MKS Nano v1.2 FSMC display (#18901)
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5823ebb446
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04c10eda92
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@ -819,7 +819,7 @@ static_assert(Y_MAX_LENGTH >= Y_BED_SIZE, "Movement bounds (Y_MIN_POS, Y_MAX_POS
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*/
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#if ENABLED(ADVANCED_PAUSE_FEATURE)
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#if !HAS_RESUME_CONTINUE
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#error "ADVANCED_PAUSE_FEATURE currently requires an LCD controller or EMERGENCY_PARSER."
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#error "ADVANCED_PAUSE_FEATURE requires a supported LCD controller (or EMERGENCY_PARSER)."
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#elif DISABLED(NOZZLE_PARK_FEATURE)
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#error "ADVANCED_PAUSE_FEATURE requires NOZZLE_PARK_FEATURE."
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#elif !defined(FILAMENT_UNLOAD_PURGE_FEEDRATE)
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@ -242,6 +242,7 @@ void (*setWindow)(u8g_t *u8g, u8g_dev_t *dev, uint16_t Xmin, uint16_t Ymin, uint
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}
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}
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#define WRITE_ESC_SEQUENCE(V) writeEscSequence(V)
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#define WRITE_ESC_SEQUENCE16(V) writeEscSequence(V)
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#else
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void writeEscSequence8(u8g_t *u8g, u8g_dev_t *dev, const uint16_t *sequence) {
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uint16_t data;
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@ -289,6 +290,8 @@ void (*setWindow)(u8g_t *u8g, u8g_dev_t *dev, uint16_t Xmin, uint16_t Ymin, uint
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}
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u8g_SetAddress(u8g, dev, 1);
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}
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#define WRITE_ESC_SEQUENCE16(V) writeEscSequence16(u8g, dev, V)
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#endif
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static const uint16_t st7789v_init[] = {
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@ -378,7 +381,28 @@ static const uint16_t ili9341_init[] = {
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ESC_END
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};
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static const uint16_t st9677_init[] = {
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static const uint16_t ili9488_init[] = {
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ESC_REG(0x00E0), 0x0000, 0x0007, 0x000F, 0x000D, 0x001B, 0x000A, 0x003C, 0x0078, 0x004A, 0x0007, 0x000E, 0x0009, 0x001B, 0x001E, 0x000F,
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ESC_REG(0x00E1), 0x0000, 0x0022, 0x0024, 0x0006, 0x0012, 0x0007, 0x0036, 0x0047, 0x0047, 0x0006, 0x000A, 0x0007, 0x0030, 0x0037, 0x000F,
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ESC_REG(0x00C0), 0x0010, 0x0010,
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ESC_REG(0x00C1), 0x0041,
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ESC_REG(0x00C5), 0x0000, 0x0022, 0x0080,
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ESC_REG(0x0036), TERN(GRAPHICAL_TFT_ROTATE_180, 0x00A8, 0x0068),
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ESC_REG(0x003A), 0x0055,
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ESC_REG(0x00B0), 0x0000,
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ESC_REG(0x00B1), 0x00B0, 0x0011,
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ESC_REG(0x00B4), 0x0002,
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ESC_REG(0x00B6), 0x0002, 0x0042,
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ESC_REG(0x00B7), 0x00C6,
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ESC_REG(0x00E9), 0x0000,
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ESC_REG(0x00F0), 0x00A9, 0x0051, 0x002C, 0x0082,
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ESC_REG(0x0029),
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ESC_REG(0x0011),
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ESC_DELAY(100),
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ESC_END
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};
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static const uint16_t st7796_init[] = {
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ESC_REG(0x0010), ESC_DELAY(120),
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ESC_REG(0x0001), ESC_DELAY(120),
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ESC_REG(0x0011), ESC_DELAY(120),
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@ -588,8 +612,8 @@ static const uint16_t st9677_init[] = {
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LCD_IO_WriteSequence(buffer, length * sq(FSMC_UPSCALE));
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#else
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u8g_WriteSequence(u8g, dev, k << 1, (uint8_t*)buffer);
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u8g_WriteSequence(u8g, dev, k << 1, (uint8_t*)buffer);
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for (uint8_t i = FSMC_UPSCALE; i--;)
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u8g_WriteSequence(u8g, dev, k << 1, (uint8_t*)buffer);
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#endif
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}
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}
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@ -617,7 +641,7 @@ uint8_t u8g_dev_tft_320x240_upscale_from_128x64_fn(u8g_t *u8g, u8g_dev_t *dev, u
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uint16_t* buffer = &bufferA[0];
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bool allow_async = DISABLED(SPI_GRAPHICAL_TFT);
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#else
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uint16_t buffer[WIDTH*2]; // 16-bit RGB 565 pixel line buffer
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uint16_t buffer[WIDTH * FSMC_UPSCALE]; // 16-bit RGB 565 pixel line buffer
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#endif
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switch (msg) {
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@ -630,18 +654,21 @@ uint8_t u8g_dev_tft_320x240_upscale_from_128x64_fn(u8g_t *u8g, u8g_dev_t *dev, u
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setWindow = setWindow_st7789v;
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break;
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case 0x9328: // ILI9328
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WRITE_ESC_SEQUENCE(ili9328_init);
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WRITE_ESC_SEQUENCE16(ili9328_init);
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setWindow = setWindow_ili9328;
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break;
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case 0x9341: // ILI9341
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case 0x8066: // Anycubic / TronXY TFTs (480x320)
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WRITE_ESC_SEQUENCE(ili9341_init);
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WRITE_ESC_SEQUENCE(ili9488_init);
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setWindow = setWindow_st7789v;
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break;
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case 0x7796:
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WRITE_ESC_SEQUENCE(TERN(HAS_LCD_IO, st9677_init, ili9341_init));
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WRITE_ESC_SEQUENCE(st7796_init);
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setWindow = setWindow_st7789v;
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break;
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case 0x9488:
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WRITE_ESC_SEQUENCE(ili9488_init);
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setWindow = setWindow_st7789v;
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case 0x0404: // No connected display on FSMC
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lcd_id = 0;
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return 0;
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@ -664,8 +691,8 @@ uint8_t u8g_dev_tft_320x240_upscale_from_128x64_fn(u8g_t *u8g, u8g_dev_t *dev, u
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LCD_IO_WriteMultiple(TFT_MARLINBG_COLOR, (LCD_FULL_PIXEL_WIDTH) * (LCD_FULL_PIXEL_HEIGHT));
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#else
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memset2(buffer, TFT_MARLINBG_COLOR, (LCD_FULL_PIXEL_WIDTH) / 2);
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for (uint16_t i = 0; i < (LCD_FULL_PIXEL_WIDTH) * 3; i++)
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u8g_WriteSequence(u8g, dev, (LCD_FULL_PIXEL_WIDTH) / 2, (uint8_t *)buffer);
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for (uint16_t i = 0; i < (LCD_FULL_PIXEL_HEIGHT) * sq(FSMC_UPSCALE); i++)
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u8g_WriteSequence(u8g, dev, LCD_FULL_PIXEL_WIDTH / 2, (uint8_t *)buffer);
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#endif
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// Bottom buttons
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@ -721,11 +748,10 @@ uint8_t u8g_dev_tft_320x240_upscale_from_128x64_fn(u8g_t *u8g, u8g_dev_t *dev, u
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LCD_IO_WriteSequence(buffer, COUNT(bufferA));
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#else
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uint8_t* bufptr = (uint8_t*) buffer;
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for (uint8_t i = 2; i--;) {
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u8g_WriteSequence(u8g, dev, WIDTH, &bufptr[0]);
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u8g_WriteSequence(u8g, dev, WIDTH, &bufptr[WIDTH]);
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u8g_WriteSequence(u8g, dev, WIDTH, &bufptr[WIDTH*2]);
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u8g_WriteSequence(u8g, dev, WIDTH, &bufptr[WIDTH*3]);
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for (uint8_t i = FSMC_UPSCALE; i--;) {
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LOOP_S_L_N(n, 0, FSMC_UPSCALE * 2) {
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u8g_WriteSequence(u8g, dev, WIDTH, &bufptr[WIDTH * n]);
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}
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}
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#endif
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}
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@ -165,28 +165,7 @@
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* to let the bootloader init the screen.
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*/
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#if ENABLED(TFT_LVGL_UI_SPI)
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#define SPI_TFT_CS_PIN PD11
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#define SPI_TFT_SCK_PIN PA5
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#define SPI_TFT_MISO_PIN PA6
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#define SPI_TFT_MOSI_PIN PA7
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#define SPI_TFT_DC_PIN PD10
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#define SPI_TFT_RST_PIN PC6
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#define LCD_BACKLIGHT_PIN PD13
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#define TOUCH_CS_PIN PE14 // SPI1_NSS
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#define TOUCH_SCK_PIN PA5 // SPI1_SCK
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#define TOUCH_MISO_PIN PA6 // SPI1_MISO
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#define TOUCH_MOSI_PIN PA7 // SPI1_MOSI
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#define BTN_EN1 PE8
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#define BTN_EN2 PE11
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#define BEEPER_PIN PC5
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#define BTN_ENC PE13
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#elif ENABLED(TFT_LVGL_UI_FSMC)
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#if ENABLED(TFT_LVGL_UI_FSMC)
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#define FSMC_CS_PIN PD7 // NE4
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#define FSMC_RS_PIN PD11 // A0
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@ -198,15 +177,34 @@
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#define LCD_BACKLIGHT_PIN PD13
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#endif
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#elif ENABLED(FSMC_GRAPHICAL_TFT)
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#if ENABLED(FSMC_GRAPHICAL_TFT)
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//#define DOGLCD_MOSI -1 // prevent redefine Conditionals_post.h
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//#define DOGLCD_SCK -1
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#define DOGLCD_MOSI -1 // prevent redefine Conditionals_post.h
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#define DOGLCD_SCK -1
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#ifndef FSMC_UPSCALE
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#define FSMC_UPSCALE 3
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#endif
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#ifndef LCD_FULL_PIXEL_WIDTH
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#define LCD_FULL_PIXEL_WIDTH 480
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#endif
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#ifndef LCD_PIXEL_OFFSET_X
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#define LCD_PIXEL_OFFSET_X 48
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#endif
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#ifndef LCD_FULL_PIXEL_HEIGHT
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#define LCD_FULL_PIXEL_HEIGHT 320
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#endif
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#ifndef LCD_PIXEL_OFFSET_Y
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#define LCD_PIXEL_OFFSET_Y 32
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#endif
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#define FSMC_CS_PIN PD7 // NE4
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#define FSMC_RS_PIN PD11 // A0
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#define LCD_USE_DMA_FSMC // Use DMA transfers to send data to the TFT
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#define FSMC_DMA_DEV DMA2
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#define FSMC_DMA_CHANNEL DMA_CH5
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#define LCD_RESET_PIN PC6 // FSMC_RST
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#define LCD_BACKLIGHT_PIN PD13
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@ -216,54 +214,9 @@
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#define TOUCH_MISO_PIN PB14 // SPI2_MISO
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#define TOUCH_MOSI_PIN PB15 // SPI2_MOSI
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#endif
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#endif
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#if HAS_SPI_LCD
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#define BEEPER_PIN PC5
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#define BTN_ENC PE13
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#define LCD_PINS_ENABLE PD13
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#define LCD_PINS_RS PC6
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#define BTN_EN1 PE8
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#define BTN_EN2 PE11
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#define LCD_BACKLIGHT_PIN -1
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// MKS MINI12864 and MKS LCD12864B; If using MKS LCD12864A (Need to remove RPK2 resistor)
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#if ENABLED(MKS_MINI_12864)
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#define LCD_BACKLIGHT_PIN -1
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#define LCD_RESET_PIN -1
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#define DOGLCD_A0 PD11
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#define DOGLCD_CS PE15
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#define DOGLCD_SCK PA5
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#define DOGLCD_MOSI PA7
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// Required for MKS_MINI_12864 with this board
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#define MKS_LCD12864B
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#undef SHOW_BOOTSCREEN
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#else // !MKS_MINI_12864
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#define LCD_PINS_D4 PE14
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#if ENABLED(ULTIPANEL)
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#define LCD_PINS_D5 PE15
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#define LCD_PINS_D6 PD11
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#define LCD_PINS_D7 PD10
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#endif
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#ifndef BOARD_ST7920_DELAY_1
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#define BOARD_ST7920_DELAY_1 DELAY_NS(125)
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#endif
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#ifndef BOARD_ST7920_DELAY_2
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#define BOARD_ST7920_DELAY_2 DELAY_NS(125)
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#endif
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#ifndef BOARD_ST7920_DELAY_3
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#define BOARD_ST7920_DELAY_3 DELAY_NS(125)
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#endif
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#endif // !MKS_MINI_12864
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#endif // HAS_SPI_LCD
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#define SPI_FLASH
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#if ENABLED(SPI_FLASH)
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#define W25QXX_CS_PIN PB12
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