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@ -54,7 +54,7 @@ static struct {
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} cursorPosition;
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#if defined GRAPHICMODE
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#include <stdlib.h>
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static uint8_t displayBuffer[DISPLAYSIZE];
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static uint8_t displayBuffer[DISPLAY_HEIGHT/8][DISPLAY_WIDTH];
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#endif
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@ -128,27 +128,18 @@ void lcd_gotoxy(uint8_t x, uint8_t y){
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}
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void lcd_clrscr(void){
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#ifdef GRAPHICMODE
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memset(displayBuffer, 0x00, sizeof(displayBuffer));
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#if defined SSD1306
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lcd_data(displayBuffer, sizeof(displayBuffer));
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#elif defined SH1106
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for (uint8_t i=0; i <= DISPLAY_HEIGHT/8; i++) {
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uint8_t actualLine[DISPLAY_WIDTH];
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for (uint8_t j=0; j< DISPLAY_WIDTH; j++) {
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actualLine[j]=displayBuffer[i*DISPLAY_WIDTH+j];
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}
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lcd_data(actualLine, sizeof(actualLine));
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for (uint8_t i = 0; i < DISPLAY_HEIGHT/8; i++){
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memset(displayBuffer[i], 0x00, sizeof(displayBuffer[i]));
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lcd_gotoxy(0,i);
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lcd_data(displayBuffer[i], sizeof(displayBuffer[i]));
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}
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#endif
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#elif defined TEXTMODE
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uint8_t clearLine[DISPLAY_WIDTH];
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memset(clearLine, 0x00, DISPLAY_WIDTH);
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for (uint8_t j = 0; j < DISPLAY_HEIGHT/8; j++){
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lcd_gotoxy(0,j);
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lcd_data(clearLine, sizeof(clearLine));
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uint8_t displayBuffer[DISPLAY_WIDTH];
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memset(displayBuffer, 0x00, sizeof(displayBuffer));
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for (uint8_t i = 0; i < DISPLAY_HEIGHT/8; i++){
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lcd_gotoxy(0,i);
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lcd_data(displayBuffer, sizeof(displayBuffer));
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}
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lcd_home();
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#endif
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lcd_home();
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}
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@ -226,7 +217,7 @@ void lcd_putc(char c){
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for (uint8_t i = 0; i < sizeof(FONT[0]); i++)
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{
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// load bit-pattern from flash
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displayBuffer[cursorPosition.x+i+(cursorPosition.x*(sizeof(FONT[0])-1)+(cursorPosition.y*DISPLAY_WIDTH))] =pgm_read_byte(&(FONT[(uint8_t)c][i]));;
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displayBuffer[cursorPosition.y][cursorPosition.x+i] =pgm_read_byte(&(FONT[(uint8_t)c][i]));
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}
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#elif defined TEXTMODE
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i2c_start(LCD_I2C_ADR << 1);
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@ -238,7 +229,7 @@ void lcd_putc(char c){
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}
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i2c_stop();
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#endif
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cursorPosition.x++;
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cursorPosition.x += sizeof(FONT[0]);
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break;
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}
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@ -260,9 +251,9 @@ void lcd_puts_p(const char* progmem_s){
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void lcd_drawPixel(uint8_t x, uint8_t y, uint8_t color){
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if( x > DISPLAY_WIDTH-1 || y > (DISPLAY_HEIGHT-1)) return; // out of Display
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if( color == WHITE){
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displayBuffer[(uint8_t)(y / (DISPLAY_HEIGHT/8)) * DISPLAY_WIDTH +x] |= (1 << (y % (DISPLAY_HEIGHT/8)));
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displayBuffer[(y / (DISPLAY_HEIGHT/8))][x] |= (1 << (y % (DISPLAY_HEIGHT/8)));
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} else {
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displayBuffer[(uint8_t)(y / (DISPLAY_HEIGHT/8)) * DISPLAY_WIDTH +x] &= ~(1 << (y % (DISPLAY_HEIGHT/8)));
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displayBuffer[(y / (DISPLAY_HEIGHT/8))][x] &= ~(1 << (y % (DISPLAY_HEIGHT/8)));
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}
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}
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void lcd_drawLine(uint8_t x1, uint8_t y1, uint8_t x2, uint8_t y2, uint8_t color){
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@ -357,18 +348,10 @@ void lcd_drawBitmap(uint8_t x, uint8_t y, const uint8_t *picture, uint8_t width,
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}
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}
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void lcd_display() {
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#if defined SSD1306
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lcd_gotoxy(0,0);
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lcd_data(displayBuffer, sizeof(displayBuffer));
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#elif defined SH1106
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for (uint8_t i = 0; i < DISPLAY_HEIGHT/8; i++){
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lcd_gotoxy(0,i);
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uint8_t actualLine[DISPLAY_WIDTH];
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for (uint8_t j=0; j < DISPLAY_WIDTH; j++) {
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actualLine[j]=displayBuffer[i*DISPLAY_WIDTH+j];
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}
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lcd_data(actualLine, sizeof(actualLine));
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lcd_data(displayBuffer[i], sizeof(displayBuffer[i]));
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}
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#endif
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lcd_home();
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}
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#endif
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