b3b42b93c7
git-svn-id: svn://kolibrios.org@8505 a494cfbc-eb01-0410-851d-a64ba20cac60
504 lines
8.6 KiB
C
504 lines
8.6 KiB
C
#include "kolibri.h"
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#include "string.h"
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#include <stdlib.h>
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extern char KOL_PATH[256];
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extern char KOL_PARAM[256];
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extern char KOL_DIR[256];
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void kol_exit()
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{
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asm volatile ("int $0x40"::"a"(-1));
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}
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void kol_sleep(unsigned d)
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{
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asm volatile ("int $0x40"::"a"(5), "b"(d));
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}
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// define a window
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// x, y - position; w, h - size; cs - color and style; c - caption; b - boder
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void kol_wnd_define(unsigned x, unsigned y, unsigned w, unsigned h, unsigned cs, unsigned b, char *t)
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{
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asm volatile ("int $0x40"::"a"(0), "b"(x*65536+w), "c"(y*65536+h), "d"(cs), "D"(t), "S"(b) );
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}
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void kol_event_mask(unsigned e)
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{
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asm volatile ("int $0x40"::"a"(40), "b"(e));
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}
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unsigned kol_event_wait()
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{
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asm volatile ("int $0x40"::"a"(10));
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}
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unsigned kol_event_wait_time(unsigned time)
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{
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asm volatile ("int $0x40"::"a"(23), "b"(time));
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}
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unsigned kol_event_check()
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{
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asm volatile ("int $0x40"::"a"(11));
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}
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inline void __attribute__((__always_inline__)) kol_paint_start()
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{
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asm volatile ("int $0x40"::"a"(12), "b"(1));
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}
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inline void __attribute__((__always_inline__)) kol_paint_end()
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{
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asm volatile ("int $0x40"::"a"(12), "b"(2));
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}
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void kol_paint_pixel(unsigned x, unsigned y, unsigned c)
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{
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asm volatile ("int $0x40"::"a"(1), "b"(x), "c"(y), "d"(c));
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}
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void kol_paint_bar(unsigned x, unsigned y, unsigned w, unsigned h, unsigned c)
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{
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asm volatile ("int $0x40"::"a"(13), "b"(x*65536+w), "c"(y*65536+h), "d"(c));
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}
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void kol_paint_line(unsigned x1, unsigned y1, unsigned x2, unsigned y2, unsigned c)
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{
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asm volatile ("int $0x40"::"a"(38), "b"(x1*65536+x2), "c"(y1*65536+y2), "d"(c));
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}
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void kol_paint_string(unsigned x, unsigned y, char *s, unsigned c)
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{
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asm volatile ("int $0x40"::"a"(4), "b"(x*65536+y), "c"(c), "d"(s));
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}
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void kol_paint_image(unsigned x, unsigned y, unsigned w, unsigned h, char *d)
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{
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asm volatile ("int $0x40"::"a"(7), "c"(w*65536+h), "d"(x*65536+y), "b"(d));
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}
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void kol_paint_image_24(unsigned x, unsigned y, unsigned w, unsigned h, char *d)
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{
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asm volatile ("int $0x40"::"a"(65), "b"(d), "c"(w*65536+h), "d"(x*65536+y), "S"(32));
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}
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unsigned kol_key_get()
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{
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asm volatile ("int $0x40"::"a"(2));
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}
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unsigned kol_key_control()
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{
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asm volatile ("int $0x40"::"a"(66), "b"(3));
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}
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void kol_key_lang_set(unsigned lang)
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{
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asm volatile ("int $0x40"::"a"(21), "b"(2), "c"(9), "d"(lang));
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}
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unsigned kol_key_lang_get()
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{
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asm volatile ("int $0x40"::"a"(26), "b"(2), "c"(9));
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}
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void kol_key_mode_set(unsigned mode)
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{
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asm volatile ("int $0x40"::"a"(66), "b"(1), "c"(mode));
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}
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unsigned kol_key_mode_get()
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{
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asm volatile ("int $0x40"::"a"(66), "b"(2));
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}
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unsigned kol_btn_get()
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{
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asm volatile ("int $0x40"::"a"(17));
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}
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void kol_btn_define(unsigned x, unsigned y, unsigned w, unsigned h, unsigned d, unsigned c)
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{
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asm volatile ("int $0x40"::"a"(8), "b"(x*65536+w), "c"(y*65536+h), "d"(d), "S"(c));
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}
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void kol_btn_type(unsigned t)
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{
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asm volatile ("int $0x40"::"a"(48), "b"(1), "c"(t));
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}
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void kol_wnd_caption(char *s)
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{
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asm volatile ("int $0x40"::"a"(71), "b"(1), "c"(s));
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}
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unsigned kol_mouse_pos()
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{
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asm volatile ("int $0x40"::"a"(37), "b"(0));
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}
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unsigned kol_mouse_posw()
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{
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asm volatile ("int $0x40"::"a"(37), "b"(1));
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}
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unsigned kol_mouse_btn()
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{
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asm volatile ("int $0x40"::"a"(37), "b"(2));
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}
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void kol_board_putc(char c)
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{
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asm volatile ("int $0x40"::"a"(63), "b"(1), "c"(c));
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}
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void kol_board_puts(char *s)
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{
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unsigned i;
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i = 0;
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while (*(s+i))
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{
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asm volatile ("int $0x40"::"a"(63), "b"(1), "c"(*(s+i)));
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i++;
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}
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}
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void kol_board_puti(int n)
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{
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char c;
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if ( n > 1 )
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kol_board_puti(n / 10);
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c = n % 10 + '0';
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asm volatile ("int $0x40"::"a"(63), "b"(1), "c"(c));
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}
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int kol_file_70(kol_struct70 *k)
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{
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asm volatile ("int $0x40"::"a"(70), "b"(k));
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}
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kol_struct_import* kol_cofflib_load(char *name)
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{
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asm volatile ("int $0x40"::"a"(68), "b"(19), "c"(name));
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}
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void* kol_cofflib_procload (kol_struct_import *imp, char *name)
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{
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int i;
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for (i=0;;i++)
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if ( NULL == ((imp+i) -> name))
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break;
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else
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if ( 0 == strcmp(name, (imp+i)->name) )
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return (imp+i)->data;
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return NULL;
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}
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unsigned kol_cofflib_procnum (kol_struct_import *imp)
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{
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unsigned i, n;
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for (i=n=0;;i++)
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if ( NULL == ((imp+i) -> name))
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break;
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else
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n++;
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return n;
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}
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void kol_cofflib_procname (kol_struct_import *imp, char *name, unsigned n)
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{
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unsigned i;
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*name = 0;
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for (i=0;;i++)
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if ( NULL == ((imp+i) -> name))
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break;
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else
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if ( i == n )
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{
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strcpy(name, ((imp+i)->name));
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break;
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}
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}
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unsigned kol_system_cpufreq()
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{
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asm volatile ("int $0x40"::"a"(18), "b"(5));
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}
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unsigned kol_system_mem()
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{
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asm volatile ("int $0x40"::"a"(18), "b"(17));
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}
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unsigned kol_system_memfree()
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{
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asm volatile ("int $0x40"::"a"(18), "b"(16));
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}
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unsigned kol_system_time_get()
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{
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asm volatile ("int $0x40"::"a"(3));
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}
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unsigned kol_system_date_get()
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{
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asm volatile ("int $0x40"::"a"(29));
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}
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unsigned kol_system_end(unsigned param)
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{
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asm volatile ("int $0x40"::"a"(18), "b"(9), "c"(param));
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}
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void kol_path_file2dir(char *dir, char *fname)
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{
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unsigned i;
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strcpy (dir, fname);
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for ( i = strlen(dir);; --i)
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if ( '/' == dir[i])
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{
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dir[i] = '\0';
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return;
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}
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}
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void kol_path_full(char *full, char *fname)
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{
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char temp[256];
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switch (*fname)
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{
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case '/':
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strncpy(temp, fname+1, 2);
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temp[2]=0;
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if ( (!strcmp("rd", temp)) || (!strcmp("hd", temp)) || (!strcmp("cd", temp)) )
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strcpy (full, fname);
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break;
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case '.':
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break;
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default:
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break;
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};
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}
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inline void __attribute__((__always_inline__)) kol_screen_wait_rr()
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{
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asm volatile ("int $0x40"::"a"(18), "b"(14));
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}
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void kol_screen_get_size(unsigned *w, unsigned *h)
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{
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unsigned size;
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asm volatile ("int $0x40":"=a"(size):"a"(14));
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*w = size / 65536;
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*h = size % 65536;
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}
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unsigned kol_skin_height()
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{
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asm volatile ("int $0x40"::"a"(48), "b"(4));
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}
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unsigned kol_thread_start(unsigned start, unsigned stack)
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{
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asm volatile ("int $0x40"::"a"(51), "b"(1), "c"(start), "d"(stack));
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}
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unsigned kol_time_tick()
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{
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asm volatile ("int $0x40"::"a"(26), "b"(9));
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}
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unsigned kol_sound_speaker(char data[])
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{
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asm volatile ("movl %0, %%esi"::"a"(data));
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asm volatile ("int $0x40"::"a"(55), "b"(55));
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}
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unsigned kol_process_info(unsigned slot, char buf1k[])
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{
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asm volatile ("int $0x40"::"a"(9), "b"(buf1k), "c"(slot));
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}
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int kol_process_kill_pid(unsigned process)
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{
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asm volatile ("int $0x40"::"a"(18), "b"(18), "c"(process));
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}
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int kol_kill_process(unsigned process)
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{
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asm volatile ("int $0x40"::"a"(18), "b"(2), "c"(process));
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}
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void kol_get_kernel_ver(char buff16b[])
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{
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asm volatile ("int $0x40"::"a"(18), "b"(13), "c"(buff16b));
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}
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int kol_buffer_open(char name[], int mode, int size, char **buf)
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{
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int error;
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asm volatile ("int $0x40":"=a"(*buf), "=d"(error):"a"(68), "b"(22), "c"(name), "d"(size), "S"(mode));
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return error;
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}
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void kol_buffer_close(char name[])
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{
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asm volatile ("int $0x40"::"a"(68), "b"(23), "c"(name));
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}
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int kol_clip_num()
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{
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asm volatile ("int $0x40"::"a"(54), "b"(0));
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}
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char* kol_clip_get(int n)
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{
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asm volatile ("int $0x40"::"a"(54), "b"(1), "c"(n));
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}
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int kol_clip_set(int n, char buffer[])
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{
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asm volatile ("int $0x40"::"a"(54), "b"(2), "c"(n), "d"(buffer));
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}
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int kos_random(int num)
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{
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srand(kol_time_tick());
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return rand() % num;
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}
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int kos_get_mouse_wheels(void)
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{
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int val;
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asm ("int $0x40":"=a"(val):"a"(37),"b"(7));
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return val;
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};
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struct blit_call
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{
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int dstx;
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int dsty;
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int w;
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int h;
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int srcx;
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int srcy;
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int srcw;
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int srch;
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unsigned char *d;
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int stride;
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};
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void kos_blit(int dstx, int dsty, int w, int h, int srcx,
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int srcy,int srcw, int srch, int stride, char *d)
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{
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volatile struct blit_call image;
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image.dstx=dstx;
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image.dsty=dsty;
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image.w=w;
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image.h=h;
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image.srcx=srcx;
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image.srcy=srcy;
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image.srcw=srcw;
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image.srch=srch;
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image.stride=stride;
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image.d=d;
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asm("int $0x40"::"a"(73),"b"(0),"c"(&image));
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}
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void kos_text(int x, int y, int color, const char* text, int len)
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{
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asm volatile ("int $0x40"::"a"(4),"b"((x<<16) | y),"c"(color),"d"((unsigned long)text),"S"(len));
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};
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void kos_screen_max(int* x, int* y)
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{
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unsigned long v;
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__asm__ __volatile__(
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"int $0x40"
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:"=a"(v)
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:"a"(14));
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if(x) *x = v >> 16;
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if(y) *y = v & 0xFFFF;
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};
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int kos_get_key()
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{
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unsigned short __ret;
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asm volatile("int $0x40":"=a"(__ret):"0"(2));
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if(!(__ret & 0xFF)) return (__ret>>8)&0xFF; else return 0;
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}
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