uaccess_32.h 8.3 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*
  3. * uaccess.h: User space memore access functions.
  4. *
  5. * Copyright (C) 1996 David S. Miller (davem@caip.rutgers.edu)
  6. * Copyright (C) 1996,1997 Jakub Jelinek (jj@sunsite.mff.cuni.cz)
  7. */
  8. #ifndef _ASM_UACCESS_H
  9. #define _ASM_UACCESS_H
  10. #include <linux/compiler.h>
  11. #include <linux/string.h>
  12. #include <asm/processor.h>
  13. #define ARCH_HAS_SORT_EXTABLE
  14. #define ARCH_HAS_SEARCH_EXTABLE
  15. /* Sparc is not segmented, however we need to be able to fool access_ok()
  16. * when doing system calls from kernel mode legitimately.
  17. *
  18. * "For historical reasons, these macros are grossly misnamed." -Linus
  19. */
  20. #define KERNEL_DS ((mm_segment_t) { 0 })
  21. #define USER_DS ((mm_segment_t) { -1 })
  22. #define get_ds() (KERNEL_DS)
  23. #define get_fs() (current->thread.current_ds)
  24. #define set_fs(val) ((current->thread.current_ds) = (val))
  25. #define segment_eq(a, b) ((a).seg == (b).seg)
  26. /* We have there a nice not-mapped page at PAGE_OFFSET - PAGE_SIZE, so that this test
  27. * can be fairly lightweight.
  28. * No one can read/write anything from userland in the kernel space by setting
  29. * large size and address near to PAGE_OFFSET - a fault will break his intentions.
  30. */
  31. #define __user_ok(addr, size) ({ (void)(size); (addr) < STACK_TOP; })
  32. #define __kernel_ok (uaccess_kernel())
  33. #define __access_ok(addr, size) (__user_ok((addr) & get_fs().seg, (size)))
  34. #define access_ok(type, addr, size) \
  35. ({ (void)(type); __access_ok((unsigned long)(addr), size); })
  36. /*
  37. * The exception table consists of pairs of addresses: the first is the
  38. * address of an instruction that is allowed to fault, and the second is
  39. * the address at which the program should continue. No registers are
  40. * modified, so it is entirely up to the continuation code to figure out
  41. * what to do.
  42. *
  43. * All the routines below use bits of fixup code that are out of line
  44. * with the main instruction path. This means when everything is well,
  45. * we don't even have to jump over them. Further, they do not intrude
  46. * on our cache or tlb entries.
  47. *
  48. * There is a special way how to put a range of potentially faulting
  49. * insns (like twenty ldd/std's with now intervening other instructions)
  50. * You specify address of first in insn and 0 in fixup and in the next
  51. * exception_table_entry you specify last potentially faulting insn + 1
  52. * and in fixup the routine which should handle the fault.
  53. * That fixup code will get
  54. * (faulting_insn_address - first_insn_in_the_range_address)/4
  55. * in %g2 (ie. index of the faulting instruction in the range).
  56. */
  57. struct exception_table_entry
  58. {
  59. unsigned long insn, fixup;
  60. };
  61. /* Returns 0 if exception not found and fixup otherwise. */
  62. unsigned long search_extables_range(unsigned long addr, unsigned long *g2);
  63. /* Uh, these should become the main single-value transfer routines..
  64. * They automatically use the right size if we just have the right
  65. * pointer type..
  66. *
  67. * This gets kind of ugly. We want to return _two_ values in "get_user()"
  68. * and yet we don't want to do any pointers, because that is too much
  69. * of a performance impact. Thus we have a few rather ugly macros here,
  70. * and hide all the ugliness from the user.
  71. */
  72. #define put_user(x, ptr) ({ \
  73. unsigned long __pu_addr = (unsigned long)(ptr); \
  74. __chk_user_ptr(ptr); \
  75. __put_user_check((__typeof__(*(ptr)))(x), __pu_addr, sizeof(*(ptr))); \
  76. })
  77. #define get_user(x, ptr) ({ \
  78. unsigned long __gu_addr = (unsigned long)(ptr); \
  79. __chk_user_ptr(ptr); \
  80. __get_user_check((x), __gu_addr, sizeof(*(ptr)), __typeof__(*(ptr))); \
  81. })
  82. /*
  83. * The "__xxx" versions do not do address space checking, useful when
  84. * doing multiple accesses to the same area (the user has to do the
  85. * checks by hand with "access_ok()")
  86. */
  87. #define __put_user(x, ptr) \
  88. __put_user_nocheck((__typeof__(*(ptr)))(x), (ptr), sizeof(*(ptr)))
  89. #define __get_user(x, ptr) \
  90. __get_user_nocheck((x), (ptr), sizeof(*(ptr)), __typeof__(*(ptr)))
  91. struct __large_struct { unsigned long buf[100]; };
  92. #define __m(x) ((struct __large_struct __user *)(x))
  93. #define __put_user_check(x, addr, size) ({ \
  94. register int __pu_ret; \
  95. if (__access_ok(addr, size)) { \
  96. switch (size) { \
  97. case 1: \
  98. __put_user_asm(x, b, addr, __pu_ret); \
  99. break; \
  100. case 2: \
  101. __put_user_asm(x, h, addr, __pu_ret); \
  102. break; \
  103. case 4: \
  104. __put_user_asm(x, , addr, __pu_ret); \
  105. break; \
  106. case 8: \
  107. __put_user_asm(x, d, addr, __pu_ret); \
  108. break; \
  109. default: \
  110. __pu_ret = __put_user_bad(); \
  111. break; \
  112. } \
  113. } else { \
  114. __pu_ret = -EFAULT; \
  115. } \
  116. __pu_ret; \
  117. })
  118. #define __put_user_nocheck(x, addr, size) ({ \
  119. register int __pu_ret; \
  120. switch (size) { \
  121. case 1: __put_user_asm(x, b, addr, __pu_ret); break; \
  122. case 2: __put_user_asm(x, h, addr, __pu_ret); break; \
  123. case 4: __put_user_asm(x, , addr, __pu_ret); break; \
  124. case 8: __put_user_asm(x, d, addr, __pu_ret); break; \
  125. default: __pu_ret = __put_user_bad(); break; \
  126. } \
  127. __pu_ret; \
  128. })
  129. #define __put_user_asm(x, size, addr, ret) \
  130. __asm__ __volatile__( \
  131. "/* Put user asm, inline. */\n" \
  132. "1:\t" "st"#size " %1, %2\n\t" \
  133. "clr %0\n" \
  134. "2:\n\n\t" \
  135. ".section .fixup,#alloc,#execinstr\n\t" \
  136. ".align 4\n" \
  137. "3:\n\t" \
  138. "b 2b\n\t" \
  139. " mov %3, %0\n\t" \
  140. ".previous\n\n\t" \
  141. ".section __ex_table,#alloc\n\t" \
  142. ".align 4\n\t" \
  143. ".word 1b, 3b\n\t" \
  144. ".previous\n\n\t" \
  145. : "=&r" (ret) : "r" (x), "m" (*__m(addr)), \
  146. "i" (-EFAULT))
  147. int __put_user_bad(void);
  148. #define __get_user_check(x, addr, size, type) ({ \
  149. register int __gu_ret; \
  150. register unsigned long __gu_val; \
  151. if (__access_ok(addr, size)) { \
  152. switch (size) { \
  153. case 1: \
  154. __get_user_asm(__gu_val, ub, addr, __gu_ret); \
  155. break; \
  156. case 2: \
  157. __get_user_asm(__gu_val, uh, addr, __gu_ret); \
  158. break; \
  159. case 4: \
  160. __get_user_asm(__gu_val, , addr, __gu_ret); \
  161. break; \
  162. case 8: \
  163. __get_user_asm(__gu_val, d, addr, __gu_ret); \
  164. break; \
  165. default: \
  166. __gu_val = 0; \
  167. __gu_ret = __get_user_bad(); \
  168. break; \
  169. } \
  170. } else { \
  171. __gu_val = 0; \
  172. __gu_ret = -EFAULT; \
  173. } \
  174. x = (__force type) __gu_val; \
  175. __gu_ret; \
  176. })
  177. #define __get_user_nocheck(x, addr, size, type) ({ \
  178. register int __gu_ret; \
  179. register unsigned long __gu_val; \
  180. switch (size) { \
  181. case 1: __get_user_asm(__gu_val, ub, addr, __gu_ret); break; \
  182. case 2: __get_user_asm(__gu_val, uh, addr, __gu_ret); break; \
  183. case 4: __get_user_asm(__gu_val, , addr, __gu_ret); break; \
  184. case 8: __get_user_asm(__gu_val, d, addr, __gu_ret); break; \
  185. default: \
  186. __gu_val = 0; \
  187. __gu_ret = __get_user_bad(); \
  188. break; \
  189. } \
  190. x = (__force type) __gu_val; \
  191. __gu_ret; \
  192. })
  193. #define __get_user_asm(x, size, addr, ret) \
  194. __asm__ __volatile__( \
  195. "/* Get user asm, inline. */\n" \
  196. "1:\t" "ld"#size " %2, %1\n\t" \
  197. "clr %0\n" \
  198. "2:\n\n\t" \
  199. ".section .fixup,#alloc,#execinstr\n\t" \
  200. ".align 4\n" \
  201. "3:\n\t" \
  202. "clr %1\n\t" \
  203. "b 2b\n\t" \
  204. " mov %3, %0\n\n\t" \
  205. ".previous\n\t" \
  206. ".section __ex_table,#alloc\n\t" \
  207. ".align 4\n\t" \
  208. ".word 1b, 3b\n\n\t" \
  209. ".previous\n\t" \
  210. : "=&r" (ret), "=&r" (x) : "m" (*__m(addr)), \
  211. "i" (-EFAULT))
  212. int __get_user_bad(void);
  213. unsigned long __copy_user(void __user *to, const void __user *from, unsigned long size);
  214. static inline unsigned long raw_copy_to_user(void __user *to, const void *from, unsigned long n)
  215. {
  216. return __copy_user(to, (__force void __user *) from, n);
  217. }
  218. static inline unsigned long raw_copy_from_user(void *to, const void __user *from, unsigned long n)
  219. {
  220. return __copy_user((__force void __user *) to, from, n);
  221. }
  222. #define INLINE_COPY_FROM_USER
  223. #define INLINE_COPY_TO_USER
  224. static inline unsigned long __clear_user(void __user *addr, unsigned long size)
  225. {
  226. unsigned long ret;
  227. __asm__ __volatile__ (
  228. ".section __ex_table,#alloc\n\t"
  229. ".align 4\n\t"
  230. ".word 1f,3\n\t"
  231. ".previous\n\t"
  232. "mov %2, %%o1\n"
  233. "1:\n\t"
  234. "call __bzero\n\t"
  235. " mov %1, %%o0\n\t"
  236. "mov %%o0, %0\n"
  237. : "=r" (ret) : "r" (addr), "r" (size) :
  238. "o0", "o1", "o2", "o3", "o4", "o5", "o7",
  239. "g1", "g2", "g3", "g4", "g5", "g7", "cc");
  240. return ret;
  241. }
  242. static inline unsigned long clear_user(void __user *addr, unsigned long n)
  243. {
  244. if (n && __access_ok((unsigned long) addr, n))
  245. return __clear_user(addr, n);
  246. else
  247. return n;
  248. }
  249. __must_check long strnlen_user(const char __user *str, long n);
  250. #endif /* _ASM_UACCESS_H */