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https://github.com/fail0verflow/mini.git
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209 lines
3.7 KiB
C
209 lines
3.7 KiB
C
#include "types.h"
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#include "lcd.h"
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#include "start.h"
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#include "vsprintf.h"
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#include "string.h"
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#include "utils.h"
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#include "hollywood.h"
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void lcdinit(void);
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char ddram[0x80];
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u8 ddaddr = 0;
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u32 chardelay = 0;
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#define WIDTH 16
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#define HEIGHT 2
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u8 linestarts[HEIGHT] = { 0x00, 0x40 };
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u8 cx, cy;
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// for 4x20
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//u8 linestarts[HEIGHT] = { 0x00, 0x40, 0x14, 0x54 };
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#define LCD_HOME_CLEAR 0x01
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#define LCD_HOME 0x02
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#define LCD_ENTRY_MODE 0x04
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# define EM_INC 0x02
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# define EM_DEC 0x00
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# define EM_SHIFT 0x01
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#define LCD_DISPLAY_ONOFF 0x08
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# define D_DISPLAY 0x04
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# define D_CURSOR 0x02
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# define D_BLINK 0x01
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#define LCD_SHIFT 0x10
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# define SH_SHIFT 0x08
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# define SH_CURSOR 0x00
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# define SH_RIGHT 0x04
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# define SH_LEFT 0x00
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#define LCD_FUNCTION_SET 0x20
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# define FS_8BIT 0x10
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# define FS_4BIT 0x00
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# define FS_2LINE 0x08
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# define FS_1LINE 0x00
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# define FS_5X10 0x04
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# define FS_5X8 0x00
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#define LCD_CGRAM 0x40
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#define LCD_DDRAM 0x80
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#define LCD_PORT HW_GPIO1OUT
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#define LCD_MASK 0x00FC0000
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#define LCD_E 0x00040000
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#define LCD_RS 0x00080000
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#define LCD_DSHIFT 20
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static void _lcdnybble(char rs, char n)
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{
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if(rs)
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mask32(LCD_PORT, LCD_MASK, ((n&0xF) << LCD_DSHIFT) | LCD_RS);
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else
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mask32(LCD_PORT, LCD_MASK, ((n&0xF) << LCD_DSHIFT));
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udelay(4);
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set32(LCD_PORT, LCD_E);
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udelay(4);
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clear32(LCD_PORT, LCD_E);
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udelay(4);
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}
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static void _lcdcmd(char c)
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{
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_lcdnybble(0, c>>4);
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_lcdnybble(0, c&0x0F);
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udelay(50);
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}
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static void _lcdwrite(char c)
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{
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_lcdnybble(1, c>>4);
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_lcdnybble(1, c&0x0F);
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ddram[ddaddr] = c;
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ddaddr = (ddaddr+1)&0x7F;
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udelay(50);
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}
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static void _lcdgoto(u8 addr)
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{
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_lcdcmd(LCD_DDRAM | addr);
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ddaddr = addr;
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}
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static void _lcdgotoxy(u8 x, u8 y)
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{
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u8 addr = (x + linestarts[y]);
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_lcdcmd(LCD_DDRAM | addr);
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ddaddr = addr;
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}
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static void _lcdclear(void)
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{
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int i;
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_lcdcmd(LCD_HOME_CLEAR);
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udelay(2000);
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for(i=0;i<0x80;i++) {
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ddram[i] = ' ';
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}
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}
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static void _lcdscroll(u8 count)
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{
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int x,y;
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_lcdcmd(LCD_HOME_CLEAR);
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udelay(2000);
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for(y=0;y<(HEIGHT-count);y++) {
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_lcdgotoxy(0,y);
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for(x=0;x<WIDTH;x++) {
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_lcdwrite(ddram[x + linestarts[y+count]]);
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}
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}
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for(;y<HEIGHT;y++) {
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for(x=0;x<WIDTH;x++) {
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ddram[linestarts[y] + x] = ' ';
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}
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}
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_lcdgoto(linestarts[HEIGHT-1]);
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}
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void lcd_init(void)
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{
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cx = cy = 0;
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ddaddr = 0;
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memset(ddram, ' ', 0x80);
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clear32(LCD_PORT, LCD_MASK);
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udelay(100000);
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_lcdnybble(0, (LCD_FUNCTION_SET | FS_8BIT)>>4);
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udelay(10000);
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_lcdnybble(0, (LCD_FUNCTION_SET | FS_8BIT)>>4);
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udelay(1000);
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_lcdnybble(0, (LCD_FUNCTION_SET | FS_8BIT)>>4);
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udelay(1000);
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_lcdnybble(0, (LCD_FUNCTION_SET | FS_4BIT)>>4);
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udelay(1000);
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_lcdcmd(LCD_FUNCTION_SET | FS_4BIT | FS_2LINE | FS_5X8);
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_lcdcmd(LCD_DISPLAY_ONOFF);
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_lcdcmd(LCD_HOME_CLEAR);
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udelay(2000);
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_lcdcmd(LCD_ENTRY_MODE | EM_INC);
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_lcdcmd(LCD_DISPLAY_ONOFF | D_DISPLAY | D_CURSOR);
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}
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int lcd_putchar(int ic)
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{
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char c = ic;
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// defer newlines to keep last line of LCD full
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if(c == '\n') {
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cx = 0;
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cy++;
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if(cy < HEIGHT)
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_lcdgotoxy(cx,cy);
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} else {
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if(cx >= 16) {
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cx = 0;
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cy++;
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if(cy < HEIGHT)
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_lcdgotoxy(cx,cy);
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}
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if(cy >= (2*HEIGHT-1)) {
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_lcdclear();
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_lcdgoto(linestarts[HEIGHT-1]);
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cy = HEIGHT - 1;
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cx = 0;
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} else if(cy >= HEIGHT) {
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_lcdscroll(cy - HEIGHT + 1);
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cy = HEIGHT - 1;
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cx = 0;
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}
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_lcdwrite(c);
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cx++;
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}
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return (u8)c;
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}
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void lcd_setdelay(u32 delay)
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{
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chardelay = delay;
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}
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int lcd_puts(const char *s)
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{
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while(*s) {
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lcd_putchar(*s++);
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udelay(chardelay);
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}
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return 0;
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}
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int lcd_printf( const char *fmt, ...)
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{
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va_list args;
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char buffer[1024];
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int i;
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va_start(args, fmt);
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i = vsprintf(buffer, fmt, args);
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va_end(args);
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lcd_puts(buffer);
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return i;
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}
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