1 /*---------------------------------------------------------------------------+
4 | Get the effective address from an FPU instruction. |
6 | Copyright (C) 1992,1993,1994,1997 |
7 | W. Metzenthen, 22 Parker St, Ormond, Vic 3163, |
8 | Australia. E-mail billm@suburbia.net |
11 +---------------------------------------------------------------------------*/
13 /*---------------------------------------------------------------------------+
15 | The file contains code which accesses user memory. |
16 | Emulator static data may change when user memory is accessed, due to |
17 | other processes using the emulator while swapping is in progress. |
18 +---------------------------------------------------------------------------*/
21 #include <linux/stddef.h>
23 #include <asm/uaccess.h>
26 #include "fpu_system.h"
27 #include "exception.h"
31 #define FPU_WRITE_BIT 0x10
33 static int reg_offset
[] = {
34 offsetof(struct info
,___eax
),
35 offsetof(struct info
,___ecx
),
36 offsetof(struct info
,___edx
),
37 offsetof(struct info
,___ebx
),
38 offsetof(struct info
,___esp
),
39 offsetof(struct info
,___ebp
),
40 offsetof(struct info
,___esi
),
41 offsetof(struct info
,___edi
)
44 #define REG_(x) (*(long *)(reg_offset[(x)]+(u_char *) FPU_info))
46 static int reg_offset_vm86
[] = {
47 offsetof(struct info
,___cs
),
48 offsetof(struct info
,___vm86_ds
),
49 offsetof(struct info
,___vm86_es
),
50 offsetof(struct info
,___vm86_fs
),
51 offsetof(struct info
,___vm86_gs
),
52 offsetof(struct info
,___ss
),
53 offsetof(struct info
,___vm86_ds
)
56 #define VM86_REG_(x) (*(unsigned short *) \
57 (reg_offset_vm86[((unsigned)x)]+(u_char *) FPU_info))
59 /* This dummy, gs is not saved on the stack. */
62 static int reg_offset_pm
[] = {
63 offsetof(struct info
,___cs
),
64 offsetof(struct info
,___ds
),
65 offsetof(struct info
,___es
),
66 offsetof(struct info
,___fs
),
67 offsetof(struct info
,___GS
),
68 offsetof(struct info
,___ss
),
69 offsetof(struct info
,___ds
)
72 #define PM_REG_(x) (*(unsigned short *) \
73 (reg_offset_pm[((unsigned)x)]+(u_char *) FPU_info))
76 /* Decode the SIB byte. This function assumes mod != 0 */
77 static int sib(int mod
, unsigned long *fpu_eip
)
83 FPU_code_access_ok(1);
84 FPU_get_user(base
, (u_char __user
*) (*fpu_eip
)); /* The SIB byte */
88 index
= (base
>> 3) & 7;
91 if ((mod
== 0) && (base
== 5))
92 offset
= 0; /* No base register */
98 /* No index register */
99 /* A non-zero ss is illegal */
101 EXCEPTION(EX_Invalid
);
105 offset
+= (REG_(index
)) << ss
;
110 /* 8 bit signed displacement */
112 RE_ENTRANT_CHECK_OFF
;
113 FPU_code_access_ok(1);
114 FPU_get_user(displacement
, (signed char __user
*) (*fpu_eip
));
115 offset
+= displacement
;
119 else if (mod
== 2 || base
== 5) /* The second condition also has mod==0 */
121 /* 32 bit displacement */
123 RE_ENTRANT_CHECK_OFF
;
124 FPU_code_access_ok(4);
125 FPU_get_user(displacement
, (long __user
*) (*fpu_eip
));
126 offset
+= displacement
;
135 static unsigned long vm86_segment(u_char segment
,
136 struct address
*addr
)
140 if ( segment
> PREFIX_SS_
)
142 EXCEPTION(EX_INTERNAL
|0x130);
143 math_abort(FPU_info
,SIGSEGV
);
145 #endif /* PARANOID */
146 addr
->selector
= VM86_REG_(segment
);
147 return (unsigned long)VM86_REG_(segment
) << 4;
151 /* This should work for 16 and 32 bit protected mode. */
152 static long pm_address(u_char FPU_modrm
, u_char segment
,
153 struct address
*addr
, long offset
)
155 struct desc_struct descriptor
;
156 unsigned long base_address
, limit
, address
, seg_top
;
161 /* segment is unsigned, so this also detects if segment was 0: */
162 if ( segment
> PREFIX_SS_
)
164 EXCEPTION(EX_INTERNAL
|0x132);
165 math_abort(FPU_info
,SIGSEGV
);
167 #endif /* PARANOID */
171 /* gs isn't used by the kernel, so it still has its
174 /* N.B. - movl %seg, mem is a 2 byte write regardless of prefix */
175 savesegment(gs
, addr
->selector
);
178 addr
->selector
= PM_REG_(segment
);
181 descriptor
= LDT_DESCRIPTOR(PM_REG_(segment
));
182 base_address
= SEG_BASE_ADDR(descriptor
);
183 address
= base_address
+ offset
;
185 + (SEG_LIMIT(descriptor
)+1) * SEG_GRANULARITY(descriptor
) - 1;
186 if ( limit
< base_address
) limit
= 0xffffffff;
188 if ( SEG_EXPAND_DOWN(descriptor
) )
190 if ( SEG_G_BIT(descriptor
) )
191 seg_top
= 0xffffffff;
194 seg_top
= base_address
+ (1 << 20);
195 if ( seg_top
< base_address
) seg_top
= 0xffffffff;
198 (address
<= limit
) || (address
>= seg_top
) ? 0 :
199 ((seg_top
-address
) >= 255 ? 255 : seg_top
-address
);
204 (address
> limit
) || (address
< base_address
) ? 0 :
205 ((limit
-address
) >= 254 ? 255 : limit
-address
+1);
207 if ( SEG_EXECUTE_ONLY(descriptor
) ||
208 (!SEG_WRITE_PERM(descriptor
) && (FPU_modrm
& FPU_WRITE_BIT
)) )
217 MOD R/M byte: MOD == 3 has a special use for the FPU
218 SIB byte used iff R/M = 100b
221 ..... ......... .........
228 ..... ......... .........
233 void __user
*FPU_get_address(u_char FPU_modrm
, unsigned long *fpu_eip
,
234 struct address
*addr
,
235 fpu_addr_modes addr_modes
)
238 unsigned rm
= FPU_modrm
& 7;
240 int address
= 0; /* Initialized just to stop compiler warnings. */
242 /* Memory accessed via the cs selector is write protected
243 in `non-segmented' 32 bit protected mode. */
244 if ( !addr_modes
.default_mode
&& (FPU_modrm
& FPU_WRITE_BIT
)
245 && (addr_modes
.override
.segment
== PREFIX_CS_
) )
247 math_abort(FPU_info
,SIGSEGV
);
250 addr
->selector
= FPU_DS
; /* Default, for 32 bit non-segmented mode. */
252 mod
= (FPU_modrm
>> 6) & 3;
254 if (rm
== 4 && mod
!= 3)
256 address
= sib(mod
, fpu_eip
);
260 cpu_reg_ptr
= & REG_(rm
);
266 /* Special case: disp32 */
267 RE_ENTRANT_CHECK_OFF
;
268 FPU_code_access_ok(4);
269 FPU_get_user(address
, (unsigned long __user
*) (*fpu_eip
));
272 addr
->offset
= address
;
273 return (void __user
*) address
;
277 address
= *cpu_reg_ptr
; /* Just return the contents
278 of the cpu register */
279 addr
->offset
= address
;
280 return (void __user
*) address
;
283 /* 8 bit signed displacement */
284 RE_ENTRANT_CHECK_OFF
;
285 FPU_code_access_ok(1);
286 FPU_get_user(address
, (signed char __user
*) (*fpu_eip
));
291 /* 32 bit displacement */
292 RE_ENTRANT_CHECK_OFF
;
293 FPU_code_access_ok(4);
294 FPU_get_user(address
, (long __user
*) (*fpu_eip
));
299 /* Not legal for the FPU */
300 EXCEPTION(EX_Invalid
);
302 address
+= *cpu_reg_ptr
;
305 addr
->offset
= address
;
307 switch ( addr_modes
.default_mode
)
312 address
+= vm86_segment(addr_modes
.override
.segment
, addr
);
316 address
= pm_address(FPU_modrm
, addr_modes
.override
.segment
,
320 EXCEPTION(EX_INTERNAL
|0x133);
323 return (void __user
*)address
;
327 void __user
*FPU_get_address_16(u_char FPU_modrm
, unsigned long *fpu_eip
,
328 struct address
*addr
,
329 fpu_addr_modes addr_modes
)
332 unsigned rm
= FPU_modrm
& 7;
333 int address
= 0; /* Default used for mod == 0 */
335 /* Memory accessed via the cs selector is write protected
336 in `non-segmented' 32 bit protected mode. */
337 if ( !addr_modes
.default_mode
&& (FPU_modrm
& FPU_WRITE_BIT
)
338 && (addr_modes
.override
.segment
== PREFIX_CS_
) )
340 math_abort(FPU_info
,SIGSEGV
);
343 addr
->selector
= FPU_DS
; /* Default, for 32 bit non-segmented mode. */
345 mod
= (FPU_modrm
>> 6) & 3;
352 /* Special case: disp16 */
353 RE_ENTRANT_CHECK_OFF
;
354 FPU_code_access_ok(2);
355 FPU_get_user(address
, (unsigned short __user
*) (*fpu_eip
));
362 /* 8 bit signed displacement */
363 RE_ENTRANT_CHECK_OFF
;
364 FPU_code_access_ok(1);
365 FPU_get_user(address
, (signed char __user
*) (*fpu_eip
));
370 /* 16 bit displacement */
371 RE_ENTRANT_CHECK_OFF
;
372 FPU_code_access_ok(2);
373 FPU_get_user(address
, (unsigned short __user
*) (*fpu_eip
));
378 /* Not legal for the FPU */
379 EXCEPTION(EX_Invalid
);
385 address
+= FPU_info
->___ebx
+ FPU_info
->___esi
;
388 address
+= FPU_info
->___ebx
+ FPU_info
->___edi
;
391 address
+= FPU_info
->___ebp
+ FPU_info
->___esi
;
392 if ( addr_modes
.override
.segment
== PREFIX_DEFAULT
)
393 addr_modes
.override
.segment
= PREFIX_SS_
;
396 address
+= FPU_info
->___ebp
+ FPU_info
->___edi
;
397 if ( addr_modes
.override
.segment
== PREFIX_DEFAULT
)
398 addr_modes
.override
.segment
= PREFIX_SS_
;
401 address
+= FPU_info
->___esi
;
404 address
+= FPU_info
->___edi
;
407 address
+= FPU_info
->___ebp
;
408 if ( addr_modes
.override
.segment
== PREFIX_DEFAULT
)
409 addr_modes
.override
.segment
= PREFIX_SS_
;
412 address
+= FPU_info
->___ebx
;
419 addr
->offset
= address
;
421 switch ( addr_modes
.default_mode
)
426 address
+= vm86_segment(addr_modes
.override
.segment
, addr
);
430 address
= pm_address(FPU_modrm
, addr_modes
.override
.segment
,
434 EXCEPTION(EX_INTERNAL
|0x131);
437 return (void __user
*)address
;