Implement lcd_display_text
This commit is contained in:
@@ -7,39 +7,49 @@
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#ifndef INC_LCD_API_H_
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#define INC_LCD_API_H_
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#include <stdbool.h>
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#include <string.h>
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#include <ctype.h>
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#include "../../Drivers/BSP/STM32746G-Discovery/stm32746g_discovery_lcd.h"
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#define BLUE LCD_COLOR_BLUE
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#define GREEN LCD_COLOR_GREEN
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#define RED LCD_COLOR_RED
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#define CYAN LCD_COLOR_CYAN
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#define MAGENTA LCD_COLOR_MAGENTA
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#define YELLOW LCD_COLOR_YELLOW
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#define LIGHTBLUE LCD_COLOR_LIGHTBLUE
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#define LIGHTGREEN LCD_COLOR_LIGHTGREEN
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#define LIGHTRED LCD_COLOR_LIGHTRED
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#define LIGHTCYAN LCD_COLOR_LIGHTCYAN
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#define LIGHTMAGENTA LCD_COLOR_LIGHTMAGENTA
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#define LIGHTYELLOW LCD_COLOR_LIGHTYELLOW
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#define DARKBLUE LCD_COLOR_DARKBLUE
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#define DARKGREEN LCD_COLOR_DARKGREEN
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#define DARKRED LCD_COLOR_DARKRED
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#define DARKCYAN LCD_COLOR_DARKCYAN
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#define DARKMAGENTA LCD_COLOR_DARKMAGENTA
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#define DARKYELLOW LCD_COLOR_DARKYELLOW
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#define WHITE LCD_COLOR_WHITE
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#define LIGHTGRAY LCD_COLOR_LIGHTGRAY
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#define GRAY LCD_COLOR_GRAY
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#define DARKGRAY LCD_COLOR_DARKGRAY
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#define BLACK LCD_COLOR_BLACK
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#define BROWN LCD_COLOR_BROWN
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#define ORANGE LCD_COLOR_ORANGE
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#define TRANSPARENT LCD_COLOR_TRANSPARENT
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#define LCD_BLUE LCD_COLOR_BLUE
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#define LCD_GREEN LCD_COLOR_GREEN
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#define LCD_RED LCD_COLOR_RED
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#define LCD_CYAN LCD_COLOR_CYAN
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#define LCD_MAGENTA LCD_COLOR_MAGENTA
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#define LCD_YELLOW LCD_COLOR_YELLOW
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#define LCD_LIGHTBLUE LCD_COLOR_LIGHTBLUE
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#define LCD_LIGHTGREEN LCD_COLOR_LIGHTGREEN
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#define LCD_LIGHTRED LCD_COLOR_LIGHTRED
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#define LCD_LIGHTCYAN LCD_COLOR_LIGHTCYAN
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#define LCD_LIGHTMAGENTA LCD_COLOR_LIGHTMAGENTA
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#define LCD_LIGHTYELLOW LCD_COLOR_LIGHTYELLOW
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#define LCD_DARKBLUE LCD_COLOR_DARKBLUE
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#define LCD_DARKGREEN LCD_COLOR_DARKGREEN
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#define LCD_DARKRED LCD_COLOR_DARKRED
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#define LCD_DARKCYAN LCD_COLOR_DARKCYAN
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#define LCD_DARKMAGENTA LCD_COLOR_DARKMAGENTA
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#define LCD_DARKYELLOW LCD_COLOR_DARKYELLOW
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#define LCD_WHITE LCD_COLOR_WHITE
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#define LCD_LIGHTGRAY LCD_COLOR_LIGHTGRAY
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#define LCD_GRAY LCD_COLOR_GRAY
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#define LCD_DARKGRAY LCD_COLOR_DARKGRAY
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#define LCD_BLACK LCD_COLOR_BLACK
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#define LCD_BROWN LCD_COLOR_BROWN
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#define LCD_ORANGE LCD_COLOR_ORANGE
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#define LCD_TRANSPARENT LCD_COLOR_TRANSPARENT
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#define LCD_ARGB8888 0x00000000U
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#define LCD_RGB888 0x00000001U
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#define LCD_RGB565 0x00000002U
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#define LCD_ARGB1555 0x00000003U
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#define LCD_FONT8 &Font8
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#define LCD_FONT12 &Font12
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#define LCD_FONT16 &Font16
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#define LCD_FONT20 &Font20
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#define LCD_FONT24 &Font24
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#define ARGB8888 0x00000000U
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#define RGB888 0x00000001U
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#define RGB565 0x00000002U
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#define ARGB1555 0x00000003U
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extern LTDC_HandleTypeDef hLtdcHandler;
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@@ -47,35 +57,40 @@ extern LTDC_HandleTypeDef hLtdcHandler;
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* @brief Initialise LCD
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* Initialise the LCD screen with BackLight on or not
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*
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* @param[in] Bool to enable or disable the LCD backlight
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* @param[in] bl_on Bool to enable or disable the LCD backlight
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*
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*/
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void lcd_init(bool BL_on);
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void lcd_init(bool bl_on);
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/**
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* @brief Display text
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* Display text on the LCD screen in a certain color
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* Display text on the LCD screen in a certain color. When text width exceeds BSP_LCD_GetXSize(),
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* a text wrap will be performed. If the text wrap is between two letters in a word, the '-' character
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* will be injected.
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*
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* @param[in] C-style text string to display on the LCD screen
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* @param[in] X-position
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* @param[in] Y-position
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* @param[in] Color in which the text will be displayed, see preset colors in defines above
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* @param[in] text C-style text string to display on the LCD screen
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* @param[in] x_pos X-position
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* @param[in] y_pos Y-position
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* @param[in] color Color in which the text will be displayed, see preset colors in defines above
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* @param[in] bg_color Background color for the text
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* @param[in] font Font size, see defines above in file
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*/
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void lcd_display_text(const char* text, uint16_t x_pos, uint16_t y_pos, uint32_t color);
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void lcd_display_text(const char* text, uint16_t x_pos, uint16_t y_pos, uint32_t color, uint32_t bg_color, sFONT *font);
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/**
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* @brief Draw BMP image on screen
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* Draw BMP image from C array to the LCD screen at position X, Y. In color mode ARGB8888, RGB888, RGB565 or ARGB1555
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* Supports ARGB8888, RGB565, RGB888
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*
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* @author Wim Dams
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*
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* @param[in] * pSrc - C array containing the image data
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* @param[in] X-position
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* @param[in] Y-position
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* @param[in] Width of image
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* @param[in] Height of image
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* @param[in] Color mode (see defined color modes above in file)
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* @param[in] p_src C array containing the image data
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* @param[in] x_pos X-position
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* @param[in] y_pos Y-position
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* @param[in] x_size Width of image
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* @param[in] y_size Height of image
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* @param[in] color_mode Color mode (see defined color modes above in file)
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*/
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void lcd_draw_bmp(const void* pSrc, uint32_t xPos, uint32_t yPos, uint32_t xSize, uint32_t ySize, uint32_t ColorMode);
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void lcd_draw_bmp(const void* p_src, uint32_t x_pos, uint32_t y_pos, uint32_t x_size, uint32_t y_size, uint32_t color_mode);
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#endif /* INC_LCD_API_H_ */
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@@ -2,7 +2,6 @@
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* @file lcd_api.c
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* @brief LCD API implementation
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* @author Tim S.
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* @todo Implement lcd_display_text(...)
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* @todo Implement function to read images from fs
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*/
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@@ -11,7 +10,7 @@
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static DMA2D_HandleTypeDef hDma2dHandler2;
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void lcd_init(bool BL_On) {
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void lcd_init(bool bl_on) {
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BSP_LCD_Init();
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BSP_LCD_LayerDefaultInit(1, LCD_FB_START_ADDRESS);
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BSP_LCD_LayerDefaultInit(0, LCD_FB_START_ADDRESS + (BSP_LCD_GetXSize()*BSP_LCD_GetYSize()*4));
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@@ -19,40 +18,77 @@ void lcd_init(bool BL_On) {
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BSP_LCD_Clear(LCD_COLOR_BLACK);
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BSP_LCD_SelectLayer(1);
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BSP_LCD_Clear(LCD_COLOR_BLACK);
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if (BL_On) {
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if (bl_on) {
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HAL_GPIO_WritePin(GPIOK, GPIO_PIN_3, GPIO_PIN_SET);
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HAL_GPIO_WritePin(GPIOI, GPIO_PIN_12, GPIO_PIN_SET);
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}else{
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} else {
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HAL_GPIO_WritePin(GPIOK, GPIO_PIN_3, GPIO_PIN_RESET);
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HAL_GPIO_WritePin(GPIOI, GPIO_PIN_12, GPIO_PIN_RESET);
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}
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}
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// TODO: implement this function
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void lcd_display_text(const char* text, uint16_t x_pos, uint16_t y_pos, uint32_t color) {
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void lcd_display_text(const char* text, uint16_t x_pos, uint16_t y_pos, uint32_t color, uint32_t bg_color, sFONT *font) {
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uint16_t tot_length = x_pos + (strlen(text) * font->Width);
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if ((x_pos % font->Width) != 0) {
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x_pos -= (x_pos % font->Width);
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}
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BSP_LCD_SetTextColor(color);
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BSP_LCD_SetBackColor(bg_color);
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BSP_LCD_SetFont(font);
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if (tot_length > BSP_LCD_GetXSize()) {
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uint16_t wrap_idx = (BSP_LCD_GetXSize() - x_pos)/font->Width;
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if (isalpha(text[wrap_idx - 1]) && isalpha(text[wrap_idx])) {
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x_pos -= (font->Width-2);
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char part_one[wrap_idx+2];
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char part_two[(strlen(text) - wrap_idx)+1];
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strncpy(part_one, text, wrap_idx);
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part_one[wrap_idx] = '-';
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part_one[wrap_idx+1] = '\00';
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strncpy(part_two, &text[wrap_idx], (strlen(text) - wrap_idx));
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part_two[(strlen(text) - wrap_idx)] = '\00';
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BSP_LCD_DisplayStringAt(x_pos, y_pos, part_one, LEFT_MODE);
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y_pos += font->Height;
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x_pos = 0;
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BSP_LCD_DisplayStringAt(x_pos, y_pos, part_two, LEFT_MODE);
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} else {
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char part_one[wrap_idx+1];
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char part_two[(strlen(text) - wrap_idx)+1];
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strncpy(part_one, text, wrap_idx);
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part_one[wrap_idx] = '\00';
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strncpy(part_two, &text[wrap_idx], (strlen(text) - wrap_idx));
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part_two[(strlen(text) - wrap_idx)] = '\00';
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BSP_LCD_DisplayStringAt(x_pos, y_pos, part_one, LEFT_MODE);
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y_pos += font->Height;
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x_pos = 0;
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BSP_LCD_DisplayStringAt(x_pos, y_pos, part_two, LEFT_MODE);
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}
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} else {
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BSP_LCD_DisplayStringAt(x_pos, y_pos, text, LEFT_MODE);
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}
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}
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void lcd_draw_bmp(const void* pSrc, uint32_t xPos, uint32_t yPos, uint32_t xSize, uint32_t ySize, uint32_t ColorMode) {
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void lcd_draw_bmp(const void* p_src, uint32_t x_pos, uint32_t y_pos, uint32_t x_size, uint32_t y_size, uint32_t color_mode) {
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uint32_t address = hLtdcHandler.LayerCfg[1].FBStartAdress + (((BSP_LCD_GetXSize()*yPos) + xPos)*(4));
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void *pDst = (void *)address;
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uint32_t address = hLtdcHandler.LayerCfg[1].FBStartAdress + (((BSP_LCD_GetXSize()*y_pos) + x_pos)*(4));
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void *p_dst = (void *)address;
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hDma2dHandler2.Init.Mode = DMA2D_M2M_PFC;
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hDma2dHandler2.Init.ColorMode = DMA2D_ARGB8888;
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hDma2dHandler2.Init.OutputOffset = 480-xSize;
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hDma2dHandler2.Init.OutputOffset = BSP_LCD_GetXSize()-x_size;
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hDma2dHandler2.LayerCfg[1].AlphaMode = DMA2D_NO_MODIF_ALPHA;
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hDma2dHandler2.LayerCfg[1].InputAlpha = 0xFF;
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hDma2dHandler2.LayerCfg[1].InputColorMode = ColorMode;
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hDma2dHandler2.LayerCfg[1].InputColorMode = color_mode;
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hDma2dHandler2.LayerCfg[1].InputOffset = 0;
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hDma2dHandler2.Instance = DMA2D;
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if (HAL_DMA2D_Init(&hDma2dHandler2) == HAL_OK) {
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if (HAL_DMA2D_ConfigLayer(&hDma2dHandler2, 1) == HAL_OK) {
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if (HAL_DMA2D_Start(&hDma2dHandler2, (uint32_t)pSrc, (uint32_t)pDst, xSize, ySize) == HAL_OK) {
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if (HAL_DMA2D_Start(&hDma2dHandler2, (uint32_t)p_src, (uint32_t)p_dst, x_size, y_size) == HAL_OK) {
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HAL_DMA2D_PollForTransfer(&hDma2dHandler2, 10);
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}
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}
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@@ -25,8 +25,6 @@
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#define LOGGER_LEVEL_ALL
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#include "log.h"
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//#include "test_img.h"
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#include "stlogo.h"
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#include "lcd_api.h"
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/* USER CODE END Includes */
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@@ -113,12 +111,8 @@ int main(void)
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MX_LWIP_Init();
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MX_QUADSPI_Init();
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/* USER CODE BEGIN 2 */
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//BSP_LCD_Init();
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HAL_GPIO_WritePin(LCD_BL_CTRL_GPIO_Port,LCD_BL_CTRL_Pin,GPIO_PIN_SET);
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/* Assert display enable LCD_DISP pin */
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HAL_GPIO_WritePin(LCD_DISP_GPIO_Port, LCD_DISP_Pin, GPIO_PIN_SET);
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lcd_init(true);
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/* USER CODE END 2 */
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init_lcd();
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/* Infinite loop */
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/* USER CODE BEGIN WHILE */
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while (1)
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