2 * Misc. emulation definitions
4 * Copyright 1995 Alexandre Julliard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #ifndef __WINE_MISCEMU_H
22 #define __WINE_MISCEMU_H
25 #include "selectors.h"
26 #include "wine/windef16.h"
29 extern int DOSCONF_ReadConfig(void);
36 WORD Com1Addr
; /* 00: COM1 I/O address */
37 WORD Com2Addr
; /* 02: COM2 I/O address */
38 WORD Com3Addr
; /* 04: COM3 I/O address */
39 WORD Com4Addr
; /* 06: COM4 I/O address */
40 WORD Lpt1Addr
; /* 08: LPT1 I/O address */
41 WORD Lpt2Addr
; /* 0a: LPT2 I/O address */
42 WORD Lpt3Addr
; /* 0c: LPT3 I/O address */
43 WORD Lpt4Addr
; /* 0e: LPT4 I/O address */
44 WORD InstalledHardware
; /* 10: Installed hardware flags */
45 BYTE POSTstatus
; /* 12: Power-On Self Test status */
46 WORD MemSize WINE_PACKED
; /* 13: Base memory size in Kb */
47 WORD unused1 WINE_PACKED
; /* 15: Manufacturing test scratch pad */
48 BYTE KbdFlags1
; /* 17: Keyboard flags 1 */
49 BYTE KbdFlags2
; /* 18: Keyboard flags 2 */
50 BYTE unused2
; /* 19: Keyboard driver workspace */
51 WORD NextKbdCharPtr
; /* 1a: Next character in kbd buffer */
52 WORD FirstKbdCharPtr
; /* 1c: First character in kbd buffer */
53 WORD KbdBuffer
[16]; /* 1e: Keyboard buffer */
54 BYTE DisketteStatus1
; /* 3e: Diskette recalibrate status */
55 BYTE DisketteStatus2
; /* 3f: Diskette motor status */
56 BYTE DisketteStatus3
; /* 40: Diskette motor timeout */
57 BYTE DisketteStatus4
; /* 41: Diskette last operation status */
58 BYTE DiskStatus
[7]; /* 42: Disk status/command bytes */
59 BYTE VideoMode
; /* 49: Video mode */
60 WORD VideoColumns
; /* 4a: Number of columns */
61 WORD VideoPageSize
; /* 4c: Video page size in bytes */
62 WORD VideoPageStartAddr
; /* 4e: Video page start address */
63 BYTE VideoCursorPos
[16]; /* 50: Cursor position for 8 pages, column/row order */
64 WORD VideoCursorType
; /* 60: Video cursor type */
65 BYTE VideoCurPage
; /* 62: Video current page */
66 WORD VideoCtrlAddr WINE_PACKED
; /* 63: Video controller address */
67 BYTE VideoReg1
; /* 65: Video mode select register */
68 BYTE VideoReg2
; /* 66: Video CGA palette register */
69 DWORD ResetEntry WINE_PACKED
; /* 67: Warm reset entry point */
70 BYTE LastIRQ
; /* 6b: Last unexpected interrupt */
71 DWORD Ticks
; /* 6c: Ticks since midnight */
72 BYTE TicksOverflow
; /* 70: Timer overflow if past midnight */
73 BYTE CtrlBreakFlag
; /* 71: Ctrl-Break flag */
74 WORD ResetFlag
; /* 72: POST Reset flag */
75 BYTE DiskOpStatus
; /* 74: Last hard-disk operation status */
76 BYTE NbHardDisks
; /* 75: Number of hard disks */
77 BYTE DiskCtrlByte
; /* 76: Disk control byte */
78 BYTE DiskIOPort
; /* 77: Disk I/O port offset */
79 BYTE LptTimeout
[4]; /* 78: Timeouts for parallel ports */
80 BYTE ComTimeout
[4]; /* 7c: Timeouts for serial ports */
81 WORD KbdBufferStart
; /* 80: Keyboard buffer start */
82 WORD KbdBufferEnd
; /* 82: Keyboard buffer end */
83 BYTE RowsOnScreenMinus1
; /* 84: EGA only */
84 WORD BytesPerChar WINE_PACKED
; /* 85: EGA only */
85 BYTE ModeOptions
; /* 87: EGA only */
86 BYTE FeatureBitsSwitches
; /* 88: EGA only */
87 BYTE VGASettings
; /* 89: VGA misc settings */
88 BYTE DisplayCombination
; /* 8A: VGA display combinations */
89 BYTE DiskDataRate
; /* 8B: Last disk data rate selected */
94 extern WORD DOSMEM_0000H
;
95 extern WORD DOSMEM_BiosDataSeg
;
96 extern WORD DOSMEM_BiosSysSeg
;
99 extern BOOL
DOSMEM_Init(BOOL
);
100 extern void DOSMEM_Tick(WORD timer
);
101 extern WORD
DOSMEM_AllocSelector(WORD
);
102 extern LPVOID
DOSMEM_GetBlock(UINT size
, WORD
* p
);
103 extern BOOL
DOSMEM_FreeBlock(void* ptr
);
104 extern UINT
DOSMEM_ResizeBlock(void* ptr
, UINT size
, BOOL exact
);
105 extern UINT
DOSMEM_Available(void);
106 extern LPVOID
DOSMEM_MapRealToLinear(DWORD
); /* real-mode to linear */
107 extern LPVOID
DOSMEM_MapDosToLinear(UINT
); /* linear DOS to Wine */
108 extern UINT
DOSMEM_MapLinearToDos(LPVOID
); /* linear Wine to DOS */
111 extern BOOL
INSTR_EmulateInstruction( CONTEXT86
*context
);
113 /* msdos/ioports.c */
114 extern DWORD
IO_inport( int port
, int count
);
115 extern void IO_outport( int port
, int count
, DWORD value
);
118 extern BOOL
DPMI_LoadDosSystem(void);
121 extern BOOL
IO_pp_outp(int port
, DWORD
* res
);
122 extern int IO_pp_inp(int port
, DWORD
* res
);
123 extern char IO_pp_init(void);
125 #define PTR_REAL_TO_LIN(seg,off) \
126 ((void*)(((unsigned int)(seg) << 4) + LOWORD(off)))
128 /* NOTE: Interrupts might get called from four modes: real mode, 16-bit,
129 * 32-bit segmented (DPMI32) and 32-bit linear (via DeviceIoControl).
130 * For automatic conversion of pointer
131 * parameters, interrupt handlers should use CTX_SEG_OFF_TO_LIN with
132 * the contents of a segment register as second and the contents of
133 * a *32-bit* general register as third parameter, e.g.
134 * CTX_SEG_OFF_TO_LIN( context, DS_reg(context), EDX_reg(context) )
135 * This will generate a linear pointer in all three cases:
136 * Real-Mode: Seg*16 + LOWORD(Offset)
137 * 16-bit: convert (Seg, LOWORD(Offset)) to linear
138 * 32-bit segmented: convert (Seg, Offset) to linear
139 * 32-bit linear: use Offset as linear address (DeviceIoControl!)
141 * Real-mode is recognized by checking the V86 bit in the flags register,
142 * 32-bit linear mode is recognized by checking whether 'seg' is
143 * a system selector (0 counts also as 32-bit segment) and 32-bit
144 * segmented mode is recognized by checking whether 'seg' is 32-bit
145 * selector which is neither system selector nor zero.
147 #define CTX_SEG_OFF_TO_LIN(context,seg,off) \
148 (ISV86(context) ? PTR_REAL_TO_LIN((seg),(off)) : wine_ldt_get_ptr((seg),(off)))
150 #define INT_BARF(context,num) \
151 ERR( "int%x: unknown/not implemented parameters:\n" \
152 "int%x: AX %04x, BX %04x, CX %04x, DX %04x, " \
153 "SI %04x, DI %04x, DS %04x, ES %04x\n", \
154 (num), (num), LOWORD((context)->Eax), LOWORD((context)->Ebx), \
155 LOWORD((context)->Ecx), LOWORD((context)->Edx), LOWORD((context)->Esi), \
156 LOWORD((context)->Edi), (WORD)(context)->SegDs, (WORD)(context)->SegEs )
158 /* Macros for easier access to i386 context registers */
160 #define AX_reg(context) ((WORD)(context)->Eax)
161 #define BX_reg(context) ((WORD)(context)->Ebx)
162 #define CX_reg(context) ((WORD)(context)->Ecx)
163 #define DX_reg(context) ((WORD)(context)->Edx)
164 #define SI_reg(context) ((WORD)(context)->Esi)
165 #define DI_reg(context) ((WORD)(context)->Edi)
167 #define AL_reg(context) ((BYTE)(context)->Eax)
168 #define AH_reg(context) ((BYTE)((context)->Eax >> 8))
169 #define BL_reg(context) ((BYTE)(context)->Ebx)
170 #define BH_reg(context) ((BYTE)((context)->Ebx >> 8))
171 #define CL_reg(context) ((BYTE)(context)->Ecx)
172 #define CH_reg(context) ((BYTE)((context)->Ecx >> 8))
173 #define DL_reg(context) ((BYTE)(context)->Edx)
174 #define DH_reg(context) ((BYTE)((context)->Edx >> 8))
176 #define SET_CFLAG(context) ((context)->EFlags |= 0x0001)
177 #define RESET_CFLAG(context) ((context)->EFlags &= ~0x0001)
178 #define SET_ZFLAG(context) ((context)->EFlags |= 0x0040)
179 #define RESET_ZFLAG(context) ((context)->EFlags &= ~0x0040)
180 #define ISV86(context) ((context)->EFlags & 0x00020000)
182 #define SET_AX(context,val) ((void)((context)->Eax = ((context)->Eax & ~0xffff) | (WORD)(val)))
183 #define SET_BX(context,val) ((void)((context)->Ebx = ((context)->Ebx & ~0xffff) | (WORD)(val)))
184 #define SET_CX(context,val) ((void)((context)->Ecx = ((context)->Ecx & ~0xffff) | (WORD)(val)))
185 #define SET_DX(context,val) ((void)((context)->Edx = ((context)->Edx & ~0xffff) | (WORD)(val)))
186 #define SET_SI(context,val) ((void)((context)->Esi = ((context)->Esi & ~0xffff) | (WORD)(val)))
187 #define SET_DI(context,val) ((void)((context)->Edi = ((context)->Edi & ~0xffff) | (WORD)(val)))
189 #define SET_AL(context,val) ((void)((context)->Eax = ((context)->Eax & ~0xff) | (BYTE)(val)))
190 #define SET_BL(context,val) ((void)((context)->Ebx = ((context)->Ebx & ~0xff) | (BYTE)(val)))
191 #define SET_CL(context,val) ((void)((context)->Ecx = ((context)->Ecx & ~0xff) | (BYTE)(val)))
192 #define SET_DL(context,val) ((void)((context)->Edx = ((context)->Edx & ~0xff) | (BYTE)(val)))
194 #define SET_AH(context,val) ((void)((context)->Eax = ((context)->Eax & ~0xff00) | (((BYTE)(val)) << 8)))
195 #define SET_BH(context,val) ((void)((context)->Ebx = ((context)->Ebx & ~0xff00) | (((BYTE)(val)) << 8)))
196 #define SET_CH(context,val) ((void)((context)->Ecx = ((context)->Ecx & ~0xff00) | (((BYTE)(val)) << 8)))
197 #define SET_DH(context,val) ((void)((context)->Edx = ((context)->Edx & ~0xff00) | (((BYTE)(val)) << 8)))
199 #endif /* __WINE_MISCEMU_H */