mirror of
https://github.com/reactos/reactos.git
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e5c0c7185e
svn path=/trunk/; revision=2456
261 lines
5.2 KiB
C
261 lines
5.2 KiB
C
/* Copyright (c) 1992, 1995 John E. Davis
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* All rights reserved.
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*
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* You may distribute under the terms of either the GNU General Public
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* License or the Perl Artistic License.
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*/
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#include "config.h"
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#include <stdio.h>
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#include "slang.h"
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#include "_slang.h"
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#define INCL_BASE
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#define INCL_NOPM
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#define INCL_VIO
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#define INCL_KBD
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#define INCL_DOS
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#if 0
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# define INCL_DOSSEMAPHORES
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#endif
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#ifdef LONG
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#undef LONG
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#endif
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#ifdef VOID
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#undef VOID
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#endif
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#include <os2.h>
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#include <signal.h>
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#include <process.h>
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KBDINFO initialKbdInfo; /* keyboard info */
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/* Code to read keystrokes in a separate thread */
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typedef struct kbdcodes {
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UCHAR ascii;
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UCHAR scan;
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/* USHORT shift; */
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} KBDCODES;
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#define BUFFER_LEN 4096
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static KBDCODES threadKeys[BUFFER_LEN];
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static int atEnd = 0;
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static int startBuf;
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static int endBuf;
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/* Original code used semaphores to control access to threadKeys.
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* It is expected that the semaphore code will be deleted after 0.97.
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*/
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#if 0
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#ifdef __os2_16__
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typedef USHORT APIRET;
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static HSEM Hmtx;
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#define DosRequestMutexSem(hmtx,timeout) DosSemRequest(hmtx,timeout)
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#define DosReleaseMutexSem(hmtx) DosSemClear(hmtx)
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#define DosCloseMutexSem(hmtx) DosCloseSem(hmtx)
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#else /* !defined(__os2_16__) */
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static HMTX Hmtx; /* Mutex Semaphore */
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#endif
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static APIRET CreateSem(void)
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{
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#ifdef __os2_16__
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char SemName[32];
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sprintf(SemName, "\\SEM\\jed\\%u", getpid());
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return ( DosCreateSem (0, &Hmtx, SemName) );
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#else
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return ( DosCreateMutexSem (NULL, &Hmtx, 0, 0) );
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#endif
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}
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static APIRET RequestSem(void)
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{
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return ( DosRequestMutexSem (Hmtx, -1) );
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}
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static APIRET ReleaseSem(void)
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{
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return ( DosReleaseMutexSem (Hmtx) );
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}
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static APIRET CloseSem(void)
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{
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return( DosCloseMutexSem (Hmtx) );
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}
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#else
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#define CreateSem()
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#define RequestSem()
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#define ReleaseSem()
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#define CloseSem()
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#endif
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static void set_kbd(void)
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{
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KBDINFO kbdInfo;
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kbdInfo = initialKbdInfo;
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kbdInfo.fsMask &= ~0x0001; /* not echo on */
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kbdInfo.fsMask |= 0x0002; /* echo off */
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kbdInfo.fsMask &= ~0x0008; /* cooked mode off */
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kbdInfo.fsMask |= 0x0004; /* raw mode */
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kbdInfo.fsMask &= ~0x0100; /* shift report off */
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KbdSetStatus(&kbdInfo, 0);
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}
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static void thread_getkey ()
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{
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KBDKEYINFO keyInfo;
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int n;
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while (!atEnd) { /* at end is a flag */
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set_kbd();
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KbdCharIn(&keyInfo, IO_NOWAIT, 0); /* get a character */
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if (keyInfo.fbStatus & 0x040) { /* found a char process it */
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if (keyInfo.chChar == SLang_Abort_Char) {
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if (SLang_Ignore_User_Abort == 0) SLang_Error = USER_BREAK;
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SLKeyBoard_Quit = 1;
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}
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n = (endBuf + 1) % BUFFER_LEN;
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if (n == startBuf) {
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DosBeep (500, 20);
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KbdFlushBuffer(0);
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continue;
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}
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RequestSem();
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threadKeys [n].ascii = keyInfo.chChar;
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threadKeys [n].scan = keyInfo.chScan;
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/* threadKeys [n].shift = keyInfo.fsState; */
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endBuf = n;
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ReleaseSem();
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} else /* no char available*/
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DosSleep (20);
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}
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}
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static void thread_code (void *Args)
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{
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(void) Args;
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startBuf = -1; /* initialize the buffer pointers */
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endBuf = -1;
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thread_getkey ();
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atEnd = 0; /* reset the flag */
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_endthread();
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}
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/* The code below is in the main thread */
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int SLang_init_tty(int abort_char, int dum2, int dum3)
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{
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VIOCURSORINFO cursorInfo, OldcursorInfo;
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(void) dum2; (void) dum3;
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if (abort_char == -1) abort_char = 3; /* ^C */
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SLang_Abort_Char = abort_char;
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/* set ^C off */
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signal (SIGINT, SIG_IGN);
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signal (SIGBREAK, SIG_IGN);
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/* set up the keyboard */
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initialKbdInfo.cb = sizeof(initialKbdInfo);
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KbdGetStatus(&initialKbdInfo, 0);
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set_kbd();
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/* open a semaphore */
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CreateSem();
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/* start a separate thread to read the keyboard */
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#if defined(__BORLANDC__)
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_beginthread (thread_code, 8096, NULL);
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#else
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_beginthread (thread_code, NULL, 8096, NULL);
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#endif
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VioGetCurType (&OldcursorInfo, 0);
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cursorInfo.yStart = 1;
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cursorInfo.cEnd = 15;
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cursorInfo.cx = 1;
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cursorInfo.attr = 1;
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if (VioSetCurType (&cursorInfo, 0))
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VioSetCurType (&OldcursorInfo, 0); /* reset to previous value */
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return 0;
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}
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void SLang_reset_tty (void)
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{
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atEnd = 1; /* set flag and wait until thread ends */
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while (atEnd) {DosSleep (0);}
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CloseSem();
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/* close the keyboard */
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KbdSetStatus(&initialKbdInfo, 0); /* restore original state */
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}
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#define keyWaiting() (endBuf != startBuf)
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/* sleep for *tsecs tenths of a sec waiting for input */
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int SLsys_input_pending(int tsecs)
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{
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int count = tsecs * 5;
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if (count)
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{
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while(count > 0)
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{
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DosSleep(20); /* 20 ms or 1/50 sec */
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if (keyWaiting ()) break;
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count--;
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}
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return(count);
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}
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else return(keyWaiting ());
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}
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unsigned int SLsys_getkey ()
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{
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unsigned int c;
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unsigned char scan;
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int tsecs = 300;
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if (!keyWaiting())
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while (!SLsys_input_pending(tsecs));
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/* read codes from buffer */
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RequestSem();
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startBuf = (startBuf + 1) % BUFFER_LEN;
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c = threadKeys [startBuf].ascii;
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scan = threadKeys [startBuf].scan;
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ReleaseSem();
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if ((c == 8) && (scan == 0x0e)) c = 127;
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if (c == 0xE0) c = 0;
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if (c == 0) SLang_ungetkey (scan);
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return (c);
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}
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void SLang_set_abort_signal (void (*dum)(int))
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{
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(void) dum;
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}
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