vserver 1.9.3
[linux-2.6.git] / include / asm-x86_64 / uaccess.h
1 #ifndef __X86_64_UACCESS_H
2 #define __X86_64_UACCESS_H
3
4 /*
5  * User space memory access functions
6  */
7 #include <linux/config.h>
8 #include <linux/compiler.h>
9 #include <linux/errno.h>
10 #include <linux/sched.h>
11 #include <linux/prefetch.h>
12 #include <asm/page.h>
13
14 #define VERIFY_READ 0
15 #define VERIFY_WRITE 1
16
17 /*
18  * The fs value determines whether argument validity checking should be
19  * performed or not.  If get_fs() == USER_DS, checking is performed, with
20  * get_fs() == KERNEL_DS, checking is bypassed.
21  *
22  * For historical reasons, these macros are grossly misnamed.
23  */
24
25 #define MAKE_MM_SEG(s)  ((mm_segment_t) { (s) })
26
27 #define KERNEL_DS       MAKE_MM_SEG(0xFFFFFFFFFFFFFFFFUL)
28 #define USER_DS         MAKE_MM_SEG(PAGE_OFFSET)
29
30 #define get_ds()        (KERNEL_DS)
31 #define get_fs()        (current_thread_info()->addr_limit)
32 #define set_fs(x)       (current_thread_info()->addr_limit = (x))
33
34 #define segment_eq(a,b) ((a).seg == (b).seg)
35
36 #define __addr_ok(addr) (!((unsigned long)(addr) & (current_thread_info()->addr_limit.seg)))
37
38 /*
39  * Uhhuh, this needs 65-bit arithmetic. We have a carry..
40  */
41 #define __range_not_ok(addr,size) ({ \
42         unsigned long flag,sum; \
43         __chk_user_ptr(addr); \
44         asm("# range_ok\n\r" \
45                 "addq %3,%1 ; sbbq %0,%0 ; cmpq %1,%4 ; sbbq $0,%0"  \
46                 :"=&r" (flag), "=r" (sum) \
47                 :"1" (addr),"g" ((long)(size)),"g" (current_thread_info()->addr_limit.seg)); \
48         flag; })
49
50 #define access_ok(type, addr, size) (__range_not_ok(addr,size) == 0)
51
52 extern inline int verify_area(int type, const void __user * addr, unsigned long size)
53 {
54         return access_ok(type,addr,size) ? 0 : -EFAULT;
55 }
56
57
58 /*
59  * The exception table consists of pairs of addresses: the first is the
60  * address of an instruction that is allowed to fault, and the second is
61  * the address at which the program should continue.  No registers are
62  * modified, so it is entirely up to the continuation code to figure out
63  * what to do.
64  *
65  * All the routines below use bits of fixup code that are out of line
66  * with the main instruction path.  This means when everything is well,
67  * we don't even have to jump over them.  Further, they do not intrude
68  * on our cache or tlb entries.
69  */
70
71 struct exception_table_entry
72 {
73         unsigned long insn, fixup;
74 };
75
76
77 /*
78  * These are the main single-value transfer routines.  They automatically
79  * use the right size if we just have the right pointer type.
80  *
81  * This gets kind of ugly. We want to return _two_ values in "get_user()"
82  * and yet we don't want to do any pointers, because that is too much
83  * of a performance impact. Thus we have a few rather ugly macros here,
84  * and hide all the ugliness from the user.
85  *
86  * The "__xxx" versions of the user access functions are versions that
87  * do not verify the address space, that must have been done previously
88  * with a separate "access_ok()" call (this is used when we do multiple
89  * accesses to the same area of user memory).
90  */
91
92 extern void __get_user_1(void);
93 extern void __get_user_2(void);
94 extern void __get_user_4(void);
95 extern void __get_user_8(void);
96
97 #define __get_user_x(size,ret,x,ptr) \
98         __asm__ __volatile__("call __get_user_" #size \
99                 :"=a" (ret),"=d" (x) \
100                 :"0" (ptr) \
101                 :"rbx")
102
103 /* Careful: we have to cast the result to the type of the pointer for sign reasons */
104 #define get_user(x,ptr)                                                 \
105 ({      long __val_gu;                                                  \
106         int __ret_gu;                                                   \
107         __chk_user_ptr(ptr);                                            \
108         switch(sizeof (*(ptr))) {                                       \
109         case 1:  __get_user_x(1,__ret_gu,__val_gu,ptr); break;          \
110         case 2:  __get_user_x(2,__ret_gu,__val_gu,ptr); break;          \
111         case 4:  __get_user_x(4,__ret_gu,__val_gu,ptr); break;          \
112         case 8:  __get_user_x(8,__ret_gu,__val_gu,ptr); break;          \
113         default: __get_user_bad(); break;                               \
114         }                                                               \
115         (x) = (__typeof__(*(ptr)))__val_gu;                             \
116         __ret_gu;                                                       \
117 })
118
119 extern void __put_user_1(void);
120 extern void __put_user_2(void);
121 extern void __put_user_4(void);
122 extern void __put_user_8(void);
123
124 extern void __put_user_bad(void);
125
126 #define __put_user_x(size,ret,x,ptr)                                    \
127         __asm__ __volatile__("call __put_user_" #size                   \
128                 :"=a" (ret)                                             \
129                 :"0" (ptr),"d" (x)                                      \
130                 :"rbx")
131
132 #define put_user(x,ptr)                                                 \
133   __put_user_check((__typeof__(*(ptr)))(x),(ptr),sizeof(*(ptr)))
134
135 #define __get_user(x,ptr) \
136   __get_user_nocheck((x),(ptr),sizeof(*(ptr)))
137 #define __put_user(x,ptr) \
138   __put_user_nocheck((__typeof__(*(ptr)))(x),(ptr),sizeof(*(ptr)))
139
140 #define __get_user_unaligned __get_user
141 #define __put_user_unaligned __put_user
142
143 #define __put_user_nocheck(x,ptr,size)                  \
144 ({                                                      \
145         int __pu_err;                                   \
146         __put_user_size((x),(ptr),(size),__pu_err);     \
147         __pu_err;                                       \
148 })
149
150
151 #define __put_user_check(x,ptr,size)                    \
152 ({                                                      \
153         int __pu_err = -EFAULT;                         \
154         __typeof__(*(ptr)) __user *__pu_addr = (ptr);   \
155         if (likely(access_ok(VERIFY_WRITE,__pu_addr,size)))     \
156                 __put_user_size((x),__pu_addr,(size),__pu_err); \
157         __pu_err;                                       \
158 })
159
160 #define __put_user_size(x,ptr,size,retval)                              \
161 do {                                                                    \
162         retval = 0;                                                     \
163         __chk_user_ptr(ptr);                                            \
164         switch (size) {                                                 \
165           case 1: __put_user_asm(x,ptr,retval,"b","b","iq",-EFAULT); break;\
166           case 2: __put_user_asm(x,ptr,retval,"w","w","ir",-EFAULT); break;\
167           case 4: __put_user_asm(x,ptr,retval,"l","k","ir",-EFAULT); break;\
168           case 8: __put_user_asm(x,ptr,retval,"q","","ir",-EFAULT); break;\
169           default: __put_user_bad();                                    \
170         }                                                               \
171 } while (0)
172
173 /* FIXME: this hack is definitely wrong -AK */
174 struct __large_struct { unsigned long buf[100]; };
175 #define __m(x) (*(struct __large_struct *)(x))
176
177 /*
178  * Tell gcc we read from memory instead of writing: this is because
179  * we do not write to any memory gcc knows about, so there are no
180  * aliasing issues.
181  */
182 #define __put_user_asm(x, addr, err, itype, rtype, ltype, errno)        \
183         __asm__ __volatile__(                                   \
184                 "1:     mov"itype" %"rtype"1,%2\n"              \
185                 "2:\n"                                          \
186                 ".section .fixup,\"ax\"\n"                      \
187                 "3:     mov %3,%0\n"                            \
188                 "       jmp 2b\n"                               \
189                 ".previous\n"                                   \
190                 ".section __ex_table,\"a\"\n"                   \
191                 "       .align 8\n"                             \
192                 "       .quad 1b,3b\n"                          \
193                 ".previous"                                     \
194                 : "=r"(err)                                     \
195                 : ltype (x), "m"(__m(addr)), "i"(errno), "0"(err))
196
197
198 #define __get_user_nocheck(x,ptr,size)                          \
199 ({                                                              \
200         int __gu_err;                                           \
201         long __gu_val;                                          \
202         __get_user_size(__gu_val,(ptr),(size),__gu_err);        \
203         (x) = (__typeof__(*(ptr)))__gu_val;                     \
204         __gu_err;                                               \
205 })
206
207 extern int __get_user_bad(void);
208
209 #define __get_user_size(x,ptr,size,retval)                              \
210 do {                                                                    \
211         retval = 0;                                                     \
212         __chk_user_ptr(ptr);                                            \
213         switch (size) {                                                 \
214           case 1: __get_user_asm(x,ptr,retval,"b","b","=q",-EFAULT); break;\
215           case 2: __get_user_asm(x,ptr,retval,"w","w","=r",-EFAULT); break;\
216           case 4: __get_user_asm(x,ptr,retval,"l","k","=r",-EFAULT); break;\
217           case 8: __get_user_asm(x,ptr,retval,"q","","=r",-EFAULT); break;\
218           default: (x) = __get_user_bad();                              \
219         }                                                               \
220 } while (0)
221
222 #define __get_user_asm(x, addr, err, itype, rtype, ltype, errno)        \
223         __asm__ __volatile__(                                   \
224                 "1:     mov"itype" %2,%"rtype"1\n"              \
225                 "2:\n"                                          \
226                 ".section .fixup,\"ax\"\n"                      \
227                 "3:     mov %3,%0\n"                            \
228                 "       xor"itype" %"rtype"1,%"rtype"1\n"       \
229                 "       jmp 2b\n"                               \
230                 ".previous\n"                                   \
231                 ".section __ex_table,\"a\"\n"                   \
232                 "       .align 8\n"                             \
233                 "       .quad 1b,3b\n"                          \
234                 ".previous"                                     \
235                 : "=r"(err), ltype (x)                          \
236                 : "m"(__m(addr)), "i"(errno), "0"(err))
237
238 /*
239  * Copy To/From Userspace
240  */
241
242 /* Handles exceptions in both to and from, but doesn't do access_ok */
243 extern unsigned long copy_user_generic(void *to, const void *from, unsigned len); 
244
245 extern unsigned long copy_to_user(void __user *to, const void *from, unsigned len); 
246 extern unsigned long copy_from_user(void *to, const void __user *from, unsigned len); 
247 extern unsigned long copy_in_user(void __user *to, const void __user *from, unsigned len); 
248
249 static inline int __copy_from_user(void *dst, const void __user *src, unsigned size) 
250
251        int ret = 0;
252         if (!__builtin_constant_p(size))
253                 return copy_user_generic(dst,(__force void *)src,size);
254         switch (size) { 
255         case 1:__get_user_asm(*(u8*)dst,(u8 __user *)src,ret,"b","b","=q",1); 
256                 return ret;
257         case 2:__get_user_asm(*(u16*)dst,(u16 __user *)src,ret,"w","w","=r",2);
258                 return ret;
259         case 4:__get_user_asm(*(u32*)dst,(u32 __user *)src,ret,"l","k","=r",4);
260                 return ret;
261         case 8:__get_user_asm(*(u64*)dst,(u64 __user *)src,ret,"q","","=r",8);
262                 return ret; 
263         case 10:
264                 __get_user_asm(*(u64*)dst,(u64 __user *)src,ret,"q","","=r",16);
265                 if (unlikely(ret)) return ret;
266                 __get_user_asm(*(u16*)(8+(char*)dst),(u16 __user *)(8+(char __user *)src),ret,"w","w","=r",2);
267                 return ret; 
268         case 16:
269                 __get_user_asm(*(u64*)dst,(u64 __user *)src,ret,"q","","=r",16);
270                 if (unlikely(ret)) return ret;
271                 __get_user_asm(*(u64*)(8+(char*)dst),(u64 __user *)(8+(char __user *)src),ret,"q","","=r",8);
272                 return ret; 
273         default:
274                 return copy_user_generic(dst,(__force void *)src,size); 
275         }
276 }       
277
278 static inline int __copy_to_user(void __user *dst, const void *src, unsigned size) 
279
280        int ret = 0;
281         if (!__builtin_constant_p(size))
282                 return copy_user_generic((__force void *)dst,src,size);
283         switch (size) { 
284         case 1:__put_user_asm(*(u8*)src,(u8 __user *)dst,ret,"b","b","iq",1); 
285                 return ret;
286         case 2:__put_user_asm(*(u16*)src,(u16 __user *)dst,ret,"w","w","ir",2);
287                 return ret;
288         case 4:__put_user_asm(*(u32*)src,(u32 __user *)dst,ret,"l","k","ir",4);
289                 return ret;
290         case 8:__put_user_asm(*(u64*)src,(u64 __user *)dst,ret,"q","","ir",8);
291                 return ret; 
292         case 10:
293                 __put_user_asm(*(u64*)src,(u64 __user *)dst,ret,"q","","ir",10);
294                 if (unlikely(ret)) return ret;
295                 asm("":::"memory");
296                 __put_user_asm(4[(u16*)src],4+(u16 __user *)dst,ret,"w","w","ir",2);
297                 return ret; 
298         case 16:
299                 __put_user_asm(*(u64*)src,(u64 __user *)dst,ret,"q","","ir",16);
300                 if (unlikely(ret)) return ret;
301                 asm("":::"memory");
302                 __put_user_asm(1[(u64*)src],1+(u64 __user *)dst,ret,"q","","ir",8);
303                 return ret; 
304         default:
305                 return copy_user_generic((__force void *)dst,src,size); 
306         }
307 }       
308
309
310 static inline int __copy_in_user(void __user *dst, const void __user *src, unsigned size) 
311
312        int ret = 0;
313         if (!__builtin_constant_p(size))
314                 return copy_user_generic((__force void *)dst,(__force void *)src,size);
315         switch (size) { 
316         case 1: { 
317                 u8 tmp;
318                 __get_user_asm(tmp,(u8 __user *)src,ret,"b","b","=q",1); 
319                 if (likely(!ret))
320                         __put_user_asm(tmp,(u8 __user *)dst,ret,"b","b","iq",1); 
321                 return ret;
322         }
323         case 2: { 
324                 u16 tmp;
325                 __get_user_asm(tmp,(u16 __user *)src,ret,"w","w","=r",2); 
326                 if (likely(!ret))
327                         __put_user_asm(tmp,(u16 __user *)dst,ret,"w","w","ir",2); 
328                 return ret;
329         }
330
331         case 4: { 
332                 u32 tmp;
333                 __get_user_asm(tmp,(u32 __user *)src,ret,"l","k","=r",4); 
334                 if (likely(!ret))
335                         __put_user_asm(tmp,(u32 __user *)dst,ret,"l","k","ir",4); 
336                 return ret;
337         }
338         case 8: { 
339                 u64 tmp;
340                 __get_user_asm(tmp,(u64 __user *)src,ret,"q","","=r",8); 
341                 if (likely(!ret))
342                         __put_user_asm(tmp,(u64 __user *)dst,ret,"q","","ir",8); 
343                 return ret;
344         }
345         default:
346                 return copy_user_generic((__force void *)dst,(__force void *)src,size); 
347         }
348 }       
349
350 long strncpy_from_user(char *dst, const char __user *src, long count);
351 long __strncpy_from_user(char *dst, const char __user *src, long count);
352 long strnlen_user(const char __user *str, long n);
353 long strlen_user(const char __user *str);
354 unsigned long clear_user(void __user *mem, unsigned long len);
355 unsigned long __clear_user(void __user *mem, unsigned long len);
356
357 #define __copy_to_user_inatomic __copy_to_user
358 #define __copy_from_user_inatomic __copy_from_user
359
360 #endif /* __X86_64_UACCESS_H */