uaccess.h 14 KB

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  1. /*
  2. * arch/arm/include/asm/uaccess.h
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License version 2 as
  6. * published by the Free Software Foundation.
  7. */
  8. #ifndef _ASMARM_UACCESS_H
  9. #define _ASMARM_UACCESS_H
  10. /*
  11. * User space memory access functions
  12. */
  13. #include <linux/string.h>
  14. #include <linux/thread_info.h>
  15. #include <asm/errno.h>
  16. #include <asm/memory.h>
  17. #include <asm/domain.h>
  18. #include <asm/unified.h>
  19. #include <asm/compiler.h>
  20. #ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS
  21. #include <asm-generic/uaccess-unaligned.h>
  22. #else
  23. #define __get_user_unaligned __get_user
  24. #define __put_user_unaligned __put_user
  25. #endif
  26. #define VERIFY_READ 0
  27. #define VERIFY_WRITE 1
  28. /*
  29. * The exception table consists of pairs of addresses: the first is the
  30. * address of an instruction that is allowed to fault, and the second is
  31. * the address at which the program should continue. No registers are
  32. * modified, so it is entirely up to the continuation code to figure out
  33. * what to do.
  34. *
  35. * All the routines below use bits of fixup code that are out of line
  36. * with the main instruction path. This means when everything is well,
  37. * we don't even have to jump over them. Further, they do not intrude
  38. * on our cache or tlb entries.
  39. */
  40. struct exception_table_entry
  41. {
  42. unsigned long insn, fixup;
  43. };
  44. extern int fixup_exception(struct pt_regs *regs);
  45. /*
  46. * These two are intentionally not defined anywhere - if the kernel
  47. * code generates any references to them, that's a bug.
  48. */
  49. extern int __get_user_bad(void);
  50. extern int __put_user_bad(void);
  51. /*
  52. * Note that this is actually 0x1,0000,0000
  53. */
  54. #define KERNEL_DS 0x00000000
  55. #define get_ds() (KERNEL_DS)
  56. #ifdef CONFIG_MMU
  57. #define USER_DS TASK_SIZE
  58. #define get_fs() (current_thread_info()->addr_limit)
  59. static inline void set_fs(mm_segment_t fs)
  60. {
  61. current_thread_info()->addr_limit = fs;
  62. modify_domain(DOMAIN_KERNEL, fs ? DOMAIN_CLIENT : DOMAIN_MANAGER);
  63. }
  64. #define segment_eq(a,b) ((a) == (b))
  65. #define __addr_ok(addr) ({ \
  66. unsigned long flag; \
  67. __asm__("cmp %2, %0; movlo %0, #0" \
  68. : "=&r" (flag) \
  69. : "0" (current_thread_info()->addr_limit), "r" (addr) \
  70. : "cc"); \
  71. (flag == 0); })
  72. /* We use 33-bit arithmetic here... */
  73. #define __range_ok(addr,size) ({ \
  74. unsigned long flag, roksum; \
  75. __chk_user_ptr(addr); \
  76. __asm__("adds %1, %2, %3; sbcccs %1, %1, %0; movcc %0, #0" \
  77. : "=&r" (flag), "=&r" (roksum) \
  78. : "r" (addr), "Ir" (size), "0" (current_thread_info()->addr_limit) \
  79. : "cc"); \
  80. flag; })
  81. /*
  82. * Single-value transfer routines. They automatically use the right
  83. * size if we just have the right pointer type. Note that the functions
  84. * which read from user space (*get_*) need to take care not to leak
  85. * kernel data even if the calling code is buggy and fails to check
  86. * the return value. This means zeroing out the destination variable
  87. * or buffer on error. Normally this is done out of line by the
  88. * fixup code, but there are a few places where it intrudes on the
  89. * main code path. When we only write to user space, there is no
  90. * problem.
  91. */
  92. extern int __get_user_1(void *);
  93. extern int __get_user_2(void *);
  94. extern int __get_user_4(void *);
  95. extern int __get_user_lo8(void *);
  96. extern int __get_user_8(void *);
  97. #define __GUP_CLOBBER_1 "lr", "cc"
  98. #ifdef CONFIG_CPU_USE_DOMAINS
  99. #define __GUP_CLOBBER_2 "ip", "lr", "cc"
  100. #else
  101. #define __GUP_CLOBBER_2 "lr", "cc"
  102. #endif
  103. #define __GUP_CLOBBER_4 "lr", "cc"
  104. #define __GUP_CLOBBER_lo8 "lr", "cc"
  105. #define __GUP_CLOBBER_8 "lr", "cc"
  106. #define __get_user_x(__r2,__p,__e,__l,__s) \
  107. __asm__ __volatile__ ( \
  108. __asmeq("%0", "r0") __asmeq("%1", "r2") \
  109. __asmeq("%3", "r1") \
  110. "bl __get_user_" #__s \
  111. : "=&r" (__e), "=r" (__r2) \
  112. : "0" (__p), "r" (__l) \
  113. : __GUP_CLOBBER_##__s)
  114. /* narrowing a double-word get into a single 32bit word register: */
  115. #ifdef __ARMEB__
  116. #define __get_user_xb(__r2, __p, __e, __l, __s) \
  117. __get_user_x(__r2, __p, __e, __l, lo8)
  118. #else
  119. #define __get_user_xb __get_user_x
  120. #endif
  121. #define __get_user_check(x,p) \
  122. ({ \
  123. unsigned long __limit = current_thread_info()->addr_limit - 1; \
  124. register const typeof(*(p)) __user *__p asm("r0") = (p);\
  125. register typeof(x) __r2 asm("r2"); \
  126. register unsigned long __l asm("r1") = __limit; \
  127. register int __e asm("r0"); \
  128. switch (sizeof(*(__p))) { \
  129. case 1: \
  130. __get_user_x(__r2, __p, __e, __l, 1); \
  131. break; \
  132. case 2: \
  133. __get_user_x(__r2, __p, __e, __l, 2); \
  134. break; \
  135. case 4: \
  136. __get_user_x(__r2, __p, __e, __l, 4); \
  137. break; \
  138. case 8: \
  139. if (sizeof((x)) < 8) \
  140. __get_user_xb(__r2, __p, __e, __l, 4); \
  141. else \
  142. __get_user_x(__r2, __p, __e, __l, 8); \
  143. break; \
  144. default: __e = __get_user_bad(); break; \
  145. } \
  146. x = (typeof(*(p))) __r2; \
  147. __e; \
  148. })
  149. #define get_user(x,p) \
  150. ({ \
  151. might_fault(); \
  152. __get_user_check(x,p); \
  153. })
  154. extern int __put_user_1(void *, unsigned int);
  155. extern int __put_user_2(void *, unsigned int);
  156. extern int __put_user_4(void *, unsigned int);
  157. extern int __put_user_8(void *, unsigned long long);
  158. #define __put_user_x(__r2,__p,__e,__l,__s) \
  159. __asm__ __volatile__ ( \
  160. __asmeq("%0", "r0") __asmeq("%2", "r2") \
  161. __asmeq("%3", "r1") \
  162. "bl __put_user_" #__s \
  163. : "=&r" (__e) \
  164. : "0" (__p), "r" (__r2), "r" (__l) \
  165. : "ip", "lr", "cc")
  166. #define __put_user_check(x,p) \
  167. ({ \
  168. unsigned long __limit = current_thread_info()->addr_limit - 1; \
  169. const typeof(*(p)) __user *__tmp_p = (p); \
  170. register const typeof(*(p)) __r2 asm("r2") = (x); \
  171. register const typeof(*(p)) __user *__p asm("r0") = __tmp_p; \
  172. register unsigned long __l asm("r1") = __limit; \
  173. register int __e asm("r0"); \
  174. switch (sizeof(*(__p))) { \
  175. case 1: \
  176. __put_user_x(__r2, __p, __e, __l, 1); \
  177. break; \
  178. case 2: \
  179. __put_user_x(__r2, __p, __e, __l, 2); \
  180. break; \
  181. case 4: \
  182. __put_user_x(__r2, __p, __e, __l, 4); \
  183. break; \
  184. case 8: \
  185. __put_user_x(__r2, __p, __e, __l, 8); \
  186. break; \
  187. default: __e = __put_user_bad(); break; \
  188. } \
  189. __e; \
  190. })
  191. #define put_user(x,p) \
  192. ({ \
  193. might_fault(); \
  194. __put_user_check(x,p); \
  195. })
  196. #else /* CONFIG_MMU */
  197. /*
  198. * uClinux has only one addr space, so has simplified address limits.
  199. */
  200. #define USER_DS KERNEL_DS
  201. #define segment_eq(a,b) (1)
  202. #define __addr_ok(addr) ((void)(addr),1)
  203. #define __range_ok(addr,size) ((void)(addr),0)
  204. #define get_fs() (KERNEL_DS)
  205. static inline void set_fs(mm_segment_t fs)
  206. {
  207. }
  208. #define get_user(x,p) __get_user(x,p)
  209. #define put_user(x,p) __put_user(x,p)
  210. #endif /* CONFIG_MMU */
  211. #define access_ok(type,addr,size) (__range_ok(addr,size) == 0)
  212. #define user_addr_max() \
  213. (segment_eq(get_fs(), KERNEL_DS) ? ~0UL : get_fs())
  214. /*
  215. * The "__xxx" versions of the user access functions do not verify the
  216. * address space - it must have been done previously with a separate
  217. * "access_ok()" call.
  218. *
  219. * The "xxx_error" versions set the third argument to EFAULT if an
  220. * error occurs, and leave it unchanged on success. Note that these
  221. * versions are void (ie, don't return a value as such).
  222. */
  223. #define __get_user(x,ptr) \
  224. ({ \
  225. long __gu_err = 0; \
  226. __get_user_err((x),(ptr),__gu_err); \
  227. __gu_err; \
  228. })
  229. #define __get_user_error(x,ptr,err) \
  230. ({ \
  231. __get_user_err((x),(ptr),err); \
  232. (void) 0; \
  233. })
  234. #define __get_user_err(x,ptr,err) \
  235. do { \
  236. unsigned long __gu_addr = (unsigned long)(ptr); \
  237. unsigned long __gu_val; \
  238. __chk_user_ptr(ptr); \
  239. might_fault(); \
  240. switch (sizeof(*(ptr))) { \
  241. case 1: __get_user_asm_byte(__gu_val,__gu_addr,err); break; \
  242. case 2: __get_user_asm_half(__gu_val,__gu_addr,err); break; \
  243. case 4: __get_user_asm_word(__gu_val,__gu_addr,err); break; \
  244. default: (__gu_val) = __get_user_bad(); \
  245. } \
  246. (x) = (__typeof__(*(ptr)))__gu_val; \
  247. } while (0)
  248. #define __get_user_asm_byte(x,addr,err) \
  249. __asm__ __volatile__( \
  250. "1: " TUSER(ldrb) " %1,[%2],#0\n" \
  251. "2:\n" \
  252. " .pushsection .fixup,\"ax\"\n" \
  253. " .align 2\n" \
  254. "3: mov %0, %3\n" \
  255. " mov %1, #0\n" \
  256. " b 2b\n" \
  257. " .popsection\n" \
  258. " .pushsection __ex_table,\"a\"\n" \
  259. " .align 3\n" \
  260. " .long 1b, 3b\n" \
  261. " .popsection" \
  262. : "+r" (err), "=&r" (x) \
  263. : "r" (addr), "i" (-EFAULT) \
  264. : "cc")
  265. #ifndef __ARMEB__
  266. #define __get_user_asm_half(x,__gu_addr,err) \
  267. ({ \
  268. unsigned long __b1, __b2; \
  269. __get_user_asm_byte(__b1, __gu_addr, err); \
  270. __get_user_asm_byte(__b2, __gu_addr + 1, err); \
  271. (x) = __b1 | (__b2 << 8); \
  272. })
  273. #else
  274. #define __get_user_asm_half(x,__gu_addr,err) \
  275. ({ \
  276. unsigned long __b1, __b2; \
  277. __get_user_asm_byte(__b1, __gu_addr, err); \
  278. __get_user_asm_byte(__b2, __gu_addr + 1, err); \
  279. (x) = (__b1 << 8) | __b2; \
  280. })
  281. #endif
  282. #define __get_user_asm_word(x,addr,err) \
  283. __asm__ __volatile__( \
  284. "1: " TUSER(ldr) " %1,[%2],#0\n" \
  285. "2:\n" \
  286. " .pushsection .fixup,\"ax\"\n" \
  287. " .align 2\n" \
  288. "3: mov %0, %3\n" \
  289. " mov %1, #0\n" \
  290. " b 2b\n" \
  291. " .popsection\n" \
  292. " .pushsection __ex_table,\"a\"\n" \
  293. " .align 3\n" \
  294. " .long 1b, 3b\n" \
  295. " .popsection" \
  296. : "+r" (err), "=&r" (x) \
  297. : "r" (addr), "i" (-EFAULT) \
  298. : "cc")
  299. #define __put_user(x,ptr) \
  300. ({ \
  301. long __pu_err = 0; \
  302. __put_user_err((x),(ptr),__pu_err); \
  303. __pu_err; \
  304. })
  305. #define __put_user_error(x,ptr,err) \
  306. ({ \
  307. __put_user_err((x),(ptr),err); \
  308. (void) 0; \
  309. })
  310. #define __put_user_err(x,ptr,err) \
  311. do { \
  312. unsigned long __pu_addr = (unsigned long)(ptr); \
  313. __typeof__(*(ptr)) __pu_val = (x); \
  314. __chk_user_ptr(ptr); \
  315. might_fault(); \
  316. switch (sizeof(*(ptr))) { \
  317. case 1: __put_user_asm_byte(__pu_val,__pu_addr,err); break; \
  318. case 2: __put_user_asm_half(__pu_val,__pu_addr,err); break; \
  319. case 4: __put_user_asm_word(__pu_val,__pu_addr,err); break; \
  320. case 8: __put_user_asm_dword(__pu_val,__pu_addr,err); break; \
  321. default: __put_user_bad(); \
  322. } \
  323. } while (0)
  324. #define __put_user_asm_byte(x,__pu_addr,err) \
  325. __asm__ __volatile__( \
  326. "1: " TUSER(strb) " %1,[%2],#0\n" \
  327. "2:\n" \
  328. " .pushsection .fixup,\"ax\"\n" \
  329. " .align 2\n" \
  330. "3: mov %0, %3\n" \
  331. " b 2b\n" \
  332. " .popsection\n" \
  333. " .pushsection __ex_table,\"a\"\n" \
  334. " .align 3\n" \
  335. " .long 1b, 3b\n" \
  336. " .popsection" \
  337. : "+r" (err) \
  338. : "r" (x), "r" (__pu_addr), "i" (-EFAULT) \
  339. : "cc")
  340. #ifndef __ARMEB__
  341. #define __put_user_asm_half(x,__pu_addr,err) \
  342. ({ \
  343. unsigned long __temp = (unsigned long)(x); \
  344. __put_user_asm_byte(__temp, __pu_addr, err); \
  345. __put_user_asm_byte(__temp >> 8, __pu_addr + 1, err); \
  346. })
  347. #else
  348. #define __put_user_asm_half(x,__pu_addr,err) \
  349. ({ \
  350. unsigned long __temp = (unsigned long)(x); \
  351. __put_user_asm_byte(__temp >> 8, __pu_addr, err); \
  352. __put_user_asm_byte(__temp, __pu_addr + 1, err); \
  353. })
  354. #endif
  355. #define __put_user_asm_word(x,__pu_addr,err) \
  356. __asm__ __volatile__( \
  357. "1: " TUSER(str) " %1,[%2],#0\n" \
  358. "2:\n" \
  359. " .pushsection .fixup,\"ax\"\n" \
  360. " .align 2\n" \
  361. "3: mov %0, %3\n" \
  362. " b 2b\n" \
  363. " .popsection\n" \
  364. " .pushsection __ex_table,\"a\"\n" \
  365. " .align 3\n" \
  366. " .long 1b, 3b\n" \
  367. " .popsection" \
  368. : "+r" (err) \
  369. : "r" (x), "r" (__pu_addr), "i" (-EFAULT) \
  370. : "cc")
  371. #ifndef __ARMEB__
  372. #define __reg_oper0 "%R2"
  373. #define __reg_oper1 "%Q2"
  374. #else
  375. #define __reg_oper0 "%Q2"
  376. #define __reg_oper1 "%R2"
  377. #endif
  378. #define __put_user_asm_dword(x,__pu_addr,err) \
  379. __asm__ __volatile__( \
  380. ARM( "1: " TUSER(str) " " __reg_oper1 ", [%1], #4\n" ) \
  381. ARM( "2: " TUSER(str) " " __reg_oper0 ", [%1]\n" ) \
  382. THUMB( "1: " TUSER(str) " " __reg_oper1 ", [%1]\n" ) \
  383. THUMB( "2: " TUSER(str) " " __reg_oper0 ", [%1, #4]\n" ) \
  384. "3:\n" \
  385. " .pushsection .fixup,\"ax\"\n" \
  386. " .align 2\n" \
  387. "4: mov %0, %3\n" \
  388. " b 3b\n" \
  389. " .popsection\n" \
  390. " .pushsection __ex_table,\"a\"\n" \
  391. " .align 3\n" \
  392. " .long 1b, 4b\n" \
  393. " .long 2b, 4b\n" \
  394. " .popsection" \
  395. : "+r" (err), "+r" (__pu_addr) \
  396. : "r" (x), "i" (-EFAULT) \
  397. : "cc")
  398. #ifdef CONFIG_MMU
  399. extern unsigned long __must_check __copy_from_user(void *to, const void __user *from, unsigned long n);
  400. extern unsigned long __must_check __copy_to_user(void __user *to, const void *from, unsigned long n);
  401. extern unsigned long __must_check __copy_to_user_std(void __user *to, const void *from, unsigned long n);
  402. extern unsigned long __must_check __clear_user(void __user *addr, unsigned long n);
  403. extern unsigned long __must_check __clear_user_std(void __user *addr, unsigned long n);
  404. #else
  405. #define __copy_from_user(to,from,n) (memcpy(to, (void __force *)from, n), 0)
  406. #define __copy_to_user(to,from,n) (memcpy((void __force *)to, from, n), 0)
  407. #define __clear_user(addr,n) (memset((void __force *)addr, 0, n), 0)
  408. #endif
  409. static inline unsigned long __must_check copy_from_user(void *to, const void __user *from, unsigned long n)
  410. {
  411. if (access_ok(VERIFY_READ, from, n))
  412. n = __copy_from_user(to, from, n);
  413. else /* security hole - plug it */
  414. memset(to, 0, n);
  415. return n;
  416. }
  417. static inline unsigned long __must_check copy_to_user(void __user *to, const void *from, unsigned long n)
  418. {
  419. if (access_ok(VERIFY_WRITE, to, n))
  420. n = __copy_to_user(to, from, n);
  421. return n;
  422. }
  423. #define __copy_to_user_inatomic __copy_to_user
  424. #define __copy_from_user_inatomic __copy_from_user
  425. static inline unsigned long __must_check clear_user(void __user *to, unsigned long n)
  426. {
  427. if (access_ok(VERIFY_WRITE, to, n))
  428. n = __clear_user(to, n);
  429. return n;
  430. }
  431. extern long strncpy_from_user(char *dest, const char __user *src, long count);
  432. extern __must_check long strlen_user(const char __user *str);
  433. extern __must_check long strnlen_user(const char __user *str, long n);
  434. #endif /* _ASMARM_UACCESS_H */