2024-03-20 07:41:14 +01:00
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/*
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* keyboard.c
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*
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* This file is part of Emu48
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*
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* Copyright (C) 1995 Sebastien Carlier
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*
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*/
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#include "pch.h"
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#include "Emu48.h"
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#include "io.h" // I/O definitions
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2024-03-20 07:46:28 +01:00
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DWORD dwKeyMinDelay = 50; // minimum time for key hold
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2024-03-20 07:41:14 +01:00
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static WORD Keyboard_GetIR(VOID)
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{
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WORD r = 0;
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// OR[0:8] are wired on Clarke/Yorke chip
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if (Chipset.out==0) return 0;
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if (Chipset.out&0x001) r|=Chipset.Keyboard_Row[0];
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if (Chipset.out&0x002) r|=Chipset.Keyboard_Row[1];
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if (Chipset.out&0x004) r|=Chipset.Keyboard_Row[2];
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if (Chipset.out&0x008) r|=Chipset.Keyboard_Row[3];
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if (Chipset.out&0x010) r|=Chipset.Keyboard_Row[4];
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if (Chipset.out&0x020) r|=Chipset.Keyboard_Row[5];
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if (Chipset.out&0x040) r|=Chipset.Keyboard_Row[6];
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if (Chipset.out&0x080) r|=Chipset.Keyboard_Row[7];
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if (Chipset.out&0x100) r|=Chipset.Keyboard_Row[8];
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return r;
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}
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VOID ScanKeyboard(BOOL bActive, BOOL bReset)
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{
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// bActive = TRUE -> function called by direct read (A=IN, C=IN, RSI)
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// FALSE -> function called by 1ms keyboard poll simulation
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// bReset = TRUE -> Reset Chipset.in interrupt state register
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// FALSE -> generate interrupt only for new pressed keys
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// keyboard read not active?
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if (!( bActive || Chipset.Shutdn || Chipset.IR15X
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|| (Chipset.intk && (Chipset.IORam[TIMER2_CTRL]&RUN) != 0)))
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{
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EnterCriticalSection(&csKeyLock);
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{
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Chipset.in &= ~0x8000; // remove ON key
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}
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LeaveCriticalSection(&csKeyLock);
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return;
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}
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EnterCriticalSection(&csKeyLock); // synchronize
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{
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BOOL bKbdInt;
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WORD wOldIn = Chipset.in; // save old Chipset.in state
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UpdateKdnBit(); // update KDN bit
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Chipset.dwKdnCycles = (DWORD) (Chipset.cycles & 0xFFFFFFFF);
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Chipset.in = Keyboard_GetIR(); // update Chipset.in register
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Chipset.in |= Chipset.IR15X; // add ON key
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// interrupt for any new pressed keys?
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bKbdInt = (Chipset.in && (wOldIn & 0x1FF) == 0) || Chipset.IR15X || bReset;
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// update keyboard interrupt pending flag when 1ms keyboard scan is disabled
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Chipset.intd = Chipset.intd || (bKbdInt && !Chipset.intk);
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// keyboard interrupt enabled?
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bKbdInt = bKbdInt && Chipset.intk;
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// interrupt at ON key pressed
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bKbdInt = bKbdInt || Chipset.IR15X != 0;
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// no interrupt if still inside interrupt service routine
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bKbdInt = bKbdInt && Chipset.inte;
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if (Chipset.in != 0) // any key pressed
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{
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if (bKbdInt) // interrupt enabled
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{
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Chipset.SoftInt = TRUE; // interrupt request
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bInterrupt = TRUE; // exit emulation loop
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}
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if (Chipset.Shutdn) // cpu sleeping
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{
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Chipset.bShutdnWake = TRUE; // wake up from SHUTDN mode
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SetEvent(hEventShutdn); // wake up emulation thread
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}
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}
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else
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{
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Chipset.intd = FALSE; // no keyboard interrupt pending
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}
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}
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LeaveCriticalSection(&csKeyLock);
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return;
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}
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VOID KeyboardEvent(BOOL bPress, UINT out, UINT in)
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{
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if (nState != SM_RUN) // not in running state
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return; // ignore key
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KeyMacroRecord(bPress,out,in); // save all keyboard events
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if (in == 0x8000) // ON key ?
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{
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Chipset.IR15X = bPress?0x8000:0x0000; // refresh special ON key flag
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}
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else
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{
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// "out" is outside Keyboard_Row
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if (out >= ARRAYSIZEOF(Chipset.Keyboard_Row)) return;
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// in &= 0x1FF; // only IR[0:8] are wired on Clarke/Yorke chip
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_ASSERT(out < ARRAYSIZEOF(Chipset.Keyboard_Row));
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if (bPress) // key pressed
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Chipset.Keyboard_Row[out] |= in; // set key marker in keyboard row
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else
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Chipset.Keyboard_Row[out] &= (~in); // clear key marker in keyboard row
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}
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AdjKeySpeed(); // adjust key repeat speed
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ScanKeyboard(FALSE,FALSE); // update Chipset.in register by 1ms keyboard poll
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2024-03-20 07:46:28 +01:00
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Sleep(dwKeyMinDelay); // hold key state for a definite time
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2024-03-20 07:41:14 +01:00
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return;
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}
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