ff4cf9dab8d226a74ce360c4a1ac7b91265ae96b
[pandora-kernel.git] / arch / parisc / include / asm / uaccess.h
1 #ifndef __PARISC_UACCESS_H
2 #define __PARISC_UACCESS_H
3
4 /*
5  * User space memory access functions
6  */
7 #include <asm/page.h>
8 #include <asm/system.h>
9 #include <asm/cache.h>
10 #include <asm/errno.h>
11 #include <asm-generic/uaccess-unaligned.h>
12
13 #define VERIFY_READ 0
14 #define VERIFY_WRITE 1
15
16 #define KERNEL_DS       ((mm_segment_t){0})
17 #define USER_DS         ((mm_segment_t){1})
18
19 #define segment_eq(a,b) ((a).seg == (b).seg)
20
21 #define get_ds()        (KERNEL_DS)
22 #define get_fs()        (current_thread_info()->addr_limit)
23 #define set_fs(x)       (current_thread_info()->addr_limit = (x))
24
25 /*
26  * Note that since kernel addresses are in a separate address space on
27  * parisc, we don't need to do anything for access_ok().
28  * We just let the page fault handler do the right thing. This also means
29  * that put_user is the same as __put_user, etc.
30  */
31
32 extern int __get_kernel_bad(void);
33 extern int __get_user_bad(void);
34 extern int __put_kernel_bad(void);
35 extern int __put_user_bad(void);
36
37 static inline long access_ok(int type, const void __user * addr,
38                 unsigned long size)
39 {
40         return 1;
41 }
42
43 #define put_user __put_user
44 #define get_user __get_user
45
46 #if !defined(CONFIG_64BIT)
47 #define LDD_KERNEL(ptr)         __get_kernel_bad();
48 #define LDD_USER(ptr)           __get_user_bad();
49 #define STD_KERNEL(x, ptr)      __put_kernel_asm64(x,ptr)
50 #define STD_USER(x, ptr)        __put_user_asm64(x,ptr)
51 #define ASM_WORD_INSN           ".word\t"
52 #else
53 #define LDD_KERNEL(ptr)         __get_kernel_asm("ldd",ptr)
54 #define LDD_USER(ptr)           __get_user_asm("ldd",ptr)
55 #define STD_KERNEL(x, ptr)      __put_kernel_asm("std",x,ptr)
56 #define STD_USER(x, ptr)        __put_user_asm("std",x,ptr)
57 #define ASM_WORD_INSN           ".dword\t"
58 #endif
59
60 /*
61  * The exception table contains two values: the first is an address
62  * for an instruction that is allowed to fault, and the second is
63  * the address to the fixup routine. 
64  */
65
66 struct exception_table_entry {
67         unsigned long insn;  /* address of insn that is allowed to fault.   */
68         long fixup;          /* fixup routine */
69 };
70
71 #define ASM_EXCEPTIONTABLE_ENTRY( fault_addr, except_addr )\
72         ".section __ex_table,\"aw\"\n"                     \
73         ASM_WORD_INSN #fault_addr ", " #except_addr "\n\t" \
74         ".previous\n"
75
76 /*
77  * The page fault handler stores, in a per-cpu area, the following information
78  * if a fixup routine is available.
79  */
80 struct exception_data {
81         unsigned long fault_ip;
82         unsigned long fault_space;
83         unsigned long fault_addr;
84 };
85
86 #define __get_user(x,ptr)                               \
87 ({                                                      \
88         register long __gu_err __asm__ ("r8") = 0;      \
89         register long __gu_val __asm__ ("r9") = 0;      \
90                                                         \
91         if (segment_eq(get_fs(),KERNEL_DS)) {           \
92             switch (sizeof(*(ptr))) {                   \
93             case 1: __get_kernel_asm("ldb",ptr); break; \
94             case 2: __get_kernel_asm("ldh",ptr); break; \
95             case 4: __get_kernel_asm("ldw",ptr); break; \
96             case 8: LDD_KERNEL(ptr); break;             \
97             default: __get_kernel_bad(); break;         \
98             }                                           \
99         }                                               \
100         else {                                          \
101             switch (sizeof(*(ptr))) {                   \
102             case 1: __get_user_asm("ldb",ptr); break;   \
103             case 2: __get_user_asm("ldh",ptr); break;   \
104             case 4: __get_user_asm("ldw",ptr); break;   \
105             case 8: LDD_USER(ptr);  break;              \
106             default: __get_user_bad(); break;           \
107             }                                           \
108         }                                               \
109                                                         \
110         (x) = (__typeof__(*(ptr))) __gu_val;            \
111         __gu_err;                                       \
112 })
113
114 #define __get_kernel_asm(ldx,ptr)                       \
115         __asm__("\n1:\t" ldx "\t0(%2),%0\n\t"           \
116                 ASM_EXCEPTIONTABLE_ENTRY(1b, fixup_get_user_skip_1)\
117                 : "=r"(__gu_val), "=r"(__gu_err)        \
118                 : "r"(ptr), "1"(__gu_err)               \
119                 : "r1");
120
121 #define __get_user_asm(ldx,ptr)                         \
122         __asm__("\n1:\t" ldx "\t0(%%sr3,%2),%0\n\t"     \
123                 ASM_EXCEPTIONTABLE_ENTRY(1b,fixup_get_user_skip_1)\
124                 : "=r"(__gu_val), "=r"(__gu_err)        \
125                 : "r"(ptr), "1"(__gu_err)               \
126                 : "r1");
127
128 #define __put_user(x,ptr)                                       \
129 ({                                                              \
130         register long __pu_err __asm__ ("r8") = 0;              \
131         __typeof__(*(ptr)) __x = (__typeof__(*(ptr)))(x);       \
132                                                                 \
133         if (segment_eq(get_fs(),KERNEL_DS)) {                   \
134             switch (sizeof(*(ptr))) {                           \
135             case 1: __put_kernel_asm("stb",__x,ptr); break;     \
136             case 2: __put_kernel_asm("sth",__x,ptr); break;     \
137             case 4: __put_kernel_asm("stw",__x,ptr); break;     \
138             case 8: STD_KERNEL(__x,ptr); break;                 \
139             default: __put_kernel_bad(); break;                 \
140             }                                                   \
141         }                                                       \
142         else {                                                  \
143             switch (sizeof(*(ptr))) {                           \
144             case 1: __put_user_asm("stb",__x,ptr); break;       \
145             case 2: __put_user_asm("sth",__x,ptr); break;       \
146             case 4: __put_user_asm("stw",__x,ptr); break;       \
147             case 8: STD_USER(__x,ptr); break;                   \
148             default: __put_user_bad(); break;                   \
149             }                                                   \
150         }                                                       \
151                                                                 \
152         __pu_err;                                               \
153 })
154
155 /*
156  * The "__put_user/kernel_asm()" macros tell gcc they read from memory
157  * instead of writing. This is because they do not write to any memory
158  * gcc knows about, so there are no aliasing issues. These macros must
159  * also be aware that "fixup_put_user_skip_[12]" are executed in the
160  * context of the fault, and any registers used there must be listed
161  * as clobbers. In this case only "r1" is used by the current routines.
162  * r8/r9 are already listed as err/val.
163  */
164
165 #define __put_kernel_asm(stx,x,ptr)                         \
166         __asm__ __volatile__ (                              \
167                 "\n1:\t" stx "\t%2,0(%1)\n\t"               \
168                 ASM_EXCEPTIONTABLE_ENTRY(1b,fixup_put_user_skip_1)\
169                 : "=r"(__pu_err)                            \
170                 : "r"(ptr), "r"(x), "0"(__pu_err)           \
171                 : "r1")
172
173 #define __put_user_asm(stx,x,ptr)                           \
174         __asm__ __volatile__ (                              \
175                 "\n1:\t" stx "\t%2,0(%%sr3,%1)\n\t"         \
176                 ASM_EXCEPTIONTABLE_ENTRY(1b,fixup_put_user_skip_1)\
177                 : "=r"(__pu_err)                            \
178                 : "r"(ptr), "r"(x), "0"(__pu_err)           \
179                 : "r1")
180
181
182 #if !defined(CONFIG_64BIT)
183
184 #define __put_kernel_asm64(__val,ptr) do {                  \
185         u64 __val64 = (u64)(__val);                         \
186         u32 hi = (__val64) >> 32;                           \
187         u32 lo = (__val64) & 0xffffffff;                    \
188         __asm__ __volatile__ (                              \
189                 "\n1:\tstw %2,0(%1)"                        \
190                 "\n2:\tstw %3,4(%1)\n\t"                    \
191                 ASM_EXCEPTIONTABLE_ENTRY(1b,fixup_put_user_skip_2)\
192                 ASM_EXCEPTIONTABLE_ENTRY(2b,fixup_put_user_skip_1)\
193                 : "=r"(__pu_err)                            \
194                 : "r"(ptr), "r"(hi), "r"(lo), "0"(__pu_err) \
195                 : "r1");                                    \
196 } while (0)
197
198 #define __put_user_asm64(__val,ptr) do {                    \
199         u64 __val64 = (u64)(__val);                         \
200         u32 hi = (__val64) >> 32;                           \
201         u32 lo = (__val64) & 0xffffffff;                    \
202         __asm__ __volatile__ (                              \
203                 "\n1:\tstw %2,0(%%sr3,%1)"                  \
204                 "\n2:\tstw %3,4(%%sr3,%1)\n\t"              \
205                 ASM_EXCEPTIONTABLE_ENTRY(1b,fixup_put_user_skip_2)\
206                 ASM_EXCEPTIONTABLE_ENTRY(2b,fixup_put_user_skip_1)\
207                 : "=r"(__pu_err)                            \
208                 : "r"(ptr), "r"(hi), "r"(lo), "0"(__pu_err) \
209                 : "r1");                                    \
210 } while (0)
211
212 #endif /* !defined(CONFIG_64BIT) */
213
214
215 /*
216  * Complex access routines -- external declarations
217  */
218
219 extern unsigned long lcopy_to_user(void __user *, const void *, unsigned long);
220 extern unsigned long lcopy_from_user(void *, const void __user *, unsigned long);
221 extern unsigned long lcopy_in_user(void __user *, const void __user *, unsigned long);
222 extern long lstrncpy_from_user(char *, const char __user *, long);
223 extern unsigned lclear_user(void __user *,unsigned long);
224 extern long lstrnlen_user(const char __user *,long);
225
226 /*
227  * Complex access routines -- macros
228  */
229
230 #define strncpy_from_user lstrncpy_from_user
231 #define strnlen_user lstrnlen_user
232 #define strlen_user(str) lstrnlen_user(str, 0x7fffffffL)
233 #define clear_user lclear_user
234 #define __clear_user lclear_user
235
236 unsigned long copy_to_user(void __user *dst, const void *src, unsigned long len);
237 #define __copy_to_user copy_to_user
238 unsigned long __copy_from_user(void *dst, const void __user *src, unsigned long len);
239 unsigned long copy_in_user(void __user *dst, const void __user *src, unsigned long len);
240 #define __copy_in_user copy_in_user
241 #define __copy_to_user_inatomic __copy_to_user
242 #define __copy_from_user_inatomic __copy_from_user
243
244 extern void copy_from_user_overflow(void)
245 #ifdef CONFIG_DEBUG_STRICT_USER_COPY_CHECKS
246         __compiletime_error("copy_from_user() buffer size is not provably correct")
247 #else
248         __compiletime_warning("copy_from_user() buffer size is not provably correct")
249 #endif
250 ;
251
252 static inline unsigned long __must_check copy_from_user(void *to,
253                                           const void __user *from,
254                                           unsigned long n)
255 {
256         int sz = __compiletime_object_size(to);
257         int ret = -EFAULT;
258
259         if (likely(sz == -1 || !__builtin_constant_p(n) || sz >= n))
260                 ret = __copy_from_user(to, from, n);
261         else
262                 copy_from_user_overflow();
263
264         return ret;
265 }
266
267 struct pt_regs;
268 int fixup_exception(struct pt_regs *regs);
269
270 #endif /* __PARISC_UACCESS_H */