327 lines
6.7 KiB
HolyC
Executable File
327 lines
6.7 KiB
HolyC
Executable File
U0 PortNop()
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{//Innoculous (reads IRQ Mask) which should take fixed time
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//because it's an ISA-bus standard. It takes 1.0uS-2.0uS.
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InU8(0x21);
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}
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U16 EndianU16(U16 d)
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{//Swap big<-->little endian.
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I64 res=0;
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res.u8[1]=d.u8[0];
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res.u8[0]=d.u8[1];
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return res;
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}
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U32 EndianU32(U32 d)
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{//Swap big<-->little endian.
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I64 res=0;
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res.u8[3]=d.u8[0];
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res.u8[2]=d.u8[1];
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res.u8[1]=d.u8[2];
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res.u8[0]=d.u8[3];
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return res;
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}
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I64 EndianI64(I64 d)
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{//Swap big<-->little endian.
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U64 res;
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res.u8[7]=d.u8[0];
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res.u8[6]=d.u8[1];
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res.u8[5]=d.u8[2];
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res.u8[4]=d.u8[3];
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res.u8[3]=d.u8[4];
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res.u8[2]=d.u8[5];
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res.u8[1]=d.u8[6];
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res.u8[0]=d.u8[7];
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return res;
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}
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I64 BCnt(I64 d)
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{//Count set bits in I64.
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I64 res=0,i;
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for (i=0;i<8;i++)
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res+=set_bits_table[d.u8[i]];
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return res;
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}
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U0 IntCore0TimerHndlr(CTask *)
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{//Called from $LK,"IntCore0TimerHndlr",A="FF:::/Kernel/KInts.HC,IntCore0TimerHndlr"$
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I64 i;
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if (mp_cnt>1)
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while (LBts(&sys_semas[SEMA_SYS_TIMER],0))
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PAUSE
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lock cnts.jiffies++;
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cnts.timer+=SYS_TIMER0_PERIOD+1;
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LBtr(&sys_semas[SEMA_SYS_TIMER],0);
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for (i=1;i<mp_cnt;i++)
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MPInt(I_TIMER,i);
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OutU8(0x20,0x20); //Acknowledge PIC Interrupt
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}
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I64 SysTimerRead()
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{//System timer count with overflow already handled.
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I64 i,res;
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PUSHFD
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CLI
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if (mp_cnt>1)
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while (LBts(&sys_semas[SEMA_SYS_TIMER],0))
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PAUSE
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OutU8(0x43,0); //Latch Timer0
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if ((i=InU8(0x40)+InU8(0x40)<<8)==SYS_TIMER0_PERIOD) {
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if (InU8(0x20) & 1)
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i=-1;
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}
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res=cnts.timer+SYS_TIMER0_PERIOD-i;
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LBtr(&sys_semas[SEMA_SYS_TIMER],0);
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POPFD
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return res;
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}
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I64 HPET()
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{ //Get high precision event timer.
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return *(dev.uncached_alias+HPET_MAIN_CNT)(I64 *);
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}
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I64 TimeCal()
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{
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static I64 time_stamp_start=0,timer_start=0,HPET_start=0;
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I64 i;
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if (time_stamp_start) {
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PUSHFD
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CLI
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if (HPET_start) {
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cnts.time_stamp_freq=cnts.HPET_freq*(GetTSC-time_stamp_start);
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i=HPET-HPET_start;
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} else {
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cnts.time_stamp_freq=SYS_TIMER_FREQ*(GetTSC-time_stamp_start);
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i=SysTimerRead-timer_start;
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}
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if (!i)
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AdamErr("Timer Cal Error");
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else {
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cnts.time_stamp_freq/=i;
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cnts.time_stamp_kHz_freq=cnts.time_stamp_freq/1000;
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cnts.time_stamp_calibrated=TRUE;
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}
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POPFD
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}
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PUSHFD
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CLI
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if (cnts.HPET_freq) {
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timer_start=0;
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HPET_start=HPET;
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} else {
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timer_start=SysTimerRead;
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HPET_start=0;
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}
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time_stamp_start=GetTSC;
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POPFD
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return cnts.time_stamp_freq;
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}
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F64 tS()
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{//Time since boot in seconds as a float.
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if (cnts.HPET_freq)
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return ToF64(HPET-cnts.HPET_initial)/cnts.HPET_freq;
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else
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return SysTimerRead/ToF64(SYS_TIMER_FREQ);
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}
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Bool Blink(F64 Hz=2.5)
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{//Return TRUE, then FALSE, then TRUE at given frequency.
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if (!Hz) return 0;
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return ToI64(cnts.jiffies*2*Hz/JIFFY_FREQ)&1;
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}
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U0 Busy(I64 <EFBFBD>S)
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{//Loosely timed.
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I64 i;
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if (cnts.HPET_freq) {
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i=HPET+cnts.HPET_freq*<EFBFBD>S/1000000;
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while (HPET<i);
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} else
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for (i=0;i<<EFBFBD>S;i++)
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PortNop;
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}
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U0 SleepUntil(I64 wake_jiffy)
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{//Not for power-saving.It is to make a program pause without hogging the CPU.
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Bool old_idle=LBts(&Fs->task_flags,TASKf_IDLE);
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Fs->wake_jiffy=wake_jiffy;
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Yield;
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LBEqu(&Fs->task_flags,TASKf_IDLE,old_idle);
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}
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U0 Sleep(I64 mS)
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{//Not for power-saving.It is to make a program pause without hogging the CPU.
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if (!mS)
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Yield;
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else
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SleepUntil(cnts.jiffies+mS*JIFFY_FREQ/1000);
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}
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F64 Ona2Freq(I8 ona)
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{//Ona to freq. Ona=60 is 440.0Hz.
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if (!ona)
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return 0;
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else
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return 440.0/32*2.0`(ona/12.0);
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}
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I8 Freq2Ona(F64 freq)
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{//Freq to Ona. 440.0Hz is Ona=60.
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if (freq>0)
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return ClampI64(12*Log2(32.0/440.0*freq),1,I8_MAX);
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else
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return 0;
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}
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U0 Snd(I8 ona=0)
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{//Play ona, a piano key num. 0 means rest.
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I64 period;
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CSndData *d;
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if (!Bt(&sys_semas[SEMA_MUTE],0) &&
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!LBts(&sys_semas[SEMA_SND],0)) { //Mutex. Just throw-out if in use
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if (!ona) {
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scrncast.ona=ona;
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OutU8(0x61,InU8(0x61)&~3);
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} else if (ona!=scrncast.ona) {
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scrncast.ona=ona;
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period=ClampI64(SYS_TIMER_FREQ/Ona2Freq(ona),1,U16_MAX);
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OutU8(0x43,0xB6);
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OutU8(0x42,period);
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OutU8(0x42,period.u8[1]);
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OutU8(0x61,3|InU8(0x61));
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}
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if (!IsDbgMode && scrncast.record) {
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d=ACAlloc(sizeof(CSndData));
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d->ona=ona;
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d->tS=tS;
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QueIns(d,scrncast.snd_head.last);
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}
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LBtr(&sys_semas[SEMA_SND],0);
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}
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}
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Bool ScrnCast(Bool val=ON,Bool just_audio=FALSE,U8 *print_fmt="B:/Tmp/%X.GR")
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{//WinMgr saves GR files to a dir.
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Bool old_val;
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scrncast.just_audio=just_audio;
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if (val) {
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if (!(old_val=LBtr(&scrncast.record,0))) {
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Free(scrncast.print_fmt);
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scrncast.print_fmt=AStrNew(print_fmt);
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scrncast.t0_now=Now;
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scrncast.snd_head.tS=scrncast.t0_tS=tS;
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scrncast.snd_head.ona=scrncast.ona;
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LBts(&scrncast.record,0);
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}
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} else
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old_val=LBtr(&scrncast.record,0);
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Snd;
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return old_val;
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}
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U0 SndRst()
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{//Fix stuck sound.
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if (Bt(&sys_semas[SEMA_SND],0)) {
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Sleep(1);
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if (Bt(&sys_semas[SEMA_SND],0)) {
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Sleep(1);
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LBtr(&sys_semas[SEMA_SND],0);
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}
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}
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Snd;
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}
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U0 Beep(I8 ona=62,Bool busy=FALSE)
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{//Make beep at given ona freq.
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Snd(ona);
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if (busy)
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Busy(500000);
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else
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Sleep(500);
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Snd;
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if (busy)
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Busy(200000);
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else
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Sleep(200);
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}
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Bool Mute(Bool val)
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{//Turn-off sound.
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Bool res;
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if (val) {
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PUSHFD
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CLI
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Snd;
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res=LBts(&sys_semas[SEMA_MUTE],0);
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POPFD
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} else
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res=LBtr(&sys_semas[SEMA_MUTE],0);
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return res;
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}
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Bool IsMute()
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{//Return is-mute flag.
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return Bt(&sys_semas[SEMA_MUTE],0);
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}
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Bool Silent(Bool val=ON)
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{//Turn-off StdOut console text. (Not sound.)
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return LBEqu(&Fs->display_flags,DISPLAYf_SILENT,val);
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}
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Bool IsSilent()
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{//Return StdOut turned-off?
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return Bt(&Fs->display_flags,DISPLAYf_SILENT);
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}
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Bool SysDbg(Bool val)
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{//Set SysDbg bit you can use while debugging.
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return LBEqu(&sys_semas[SEMA_DEBUG],0,val);
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}
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Bool IsSysDbg()
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{//Return SysDbg bit.
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return Bt(&sys_semas[SEMA_DEBUG],0);
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}
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Bool Raw(Bool val)
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{//Set to direct scrn, BLACK & WHITE, non-windowed output mode.
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if (!val)
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VGAFlush;
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return !LBEqu(&Fs->display_flags,DISPLAYf_NOT_RAW,!val);
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}
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Bool IsRaw()
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{//Are we in BLACK & WHITE raw scrn mode?
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return !Bt(&Fs->display_flags,DISPLAYf_NOT_RAW);
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}
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Bool SingleUser(Bool val)
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{//Set single-user mode.
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return LBEqu(&sys_semas[SEMA_SINGLE_USER],0,val);
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}
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Bool IsSingleUser()
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{//Return single-user mode.
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return Bt(&sys_semas[SEMA_SINGLE_USER],0);
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}
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Bool DbgMode(Bool val)
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{//Set dbg-mode.
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return LBEqu(&sys_semas[SEMA_DBG_MODE],0,val);
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}
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Bool IsDbgMode()
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{//Return dbg-mode.
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return Bt(&sys_semas[SEMA_DBG_MODE],0);
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}
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U0 ProgressBarsRst(U8 *path=NULL)
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{//Reset all progress bars to zero.
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CallExtStr("ProgressBarsRegTf",path);
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MemSet(sys_progresses,0,sizeof(sys_progresses));
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}
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