get_address.c 11 KB

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  1. /*---------------------------------------------------------------------------+
  2. | get_address.c |
  3. | |
  4. | Get the effective address from an FPU instruction. |
  5. | |
  6. | Copyright (C) 1992,1993,1994,1997 |
  7. | W. Metzenthen, 22 Parker St, Ormond, Vic 3163, |
  8. | Australia. E-mail billm@suburbia.net |
  9. | |
  10. | |
  11. +---------------------------------------------------------------------------*/
  12. /*---------------------------------------------------------------------------+
  13. | Note: |
  14. | The file contains code which accesses user memory. |
  15. | Emulator static data may change when user memory is accessed, due to |
  16. | other processes using the emulator while swapping is in progress. |
  17. +---------------------------------------------------------------------------*/
  18. #include <linux/stddef.h>
  19. #include <asm/uaccess.h>
  20. #include <asm/desc.h>
  21. #include "fpu_system.h"
  22. #include "exception.h"
  23. #include "fpu_emu.h"
  24. #define FPU_WRITE_BIT 0x10
  25. static int reg_offset[] = {
  26. offsetof(struct info,___eax),
  27. offsetof(struct info,___ecx),
  28. offsetof(struct info,___edx),
  29. offsetof(struct info,___ebx),
  30. offsetof(struct info,___esp),
  31. offsetof(struct info,___ebp),
  32. offsetof(struct info,___esi),
  33. offsetof(struct info,___edi)
  34. };
  35. #define REG_(x) (*(long *)(reg_offset[(x)]+(u_char *) FPU_info))
  36. static int reg_offset_vm86[] = {
  37. offsetof(struct info,___cs),
  38. offsetof(struct info,___vm86_ds),
  39. offsetof(struct info,___vm86_es),
  40. offsetof(struct info,___vm86_fs),
  41. offsetof(struct info,___vm86_gs),
  42. offsetof(struct info,___ss),
  43. offsetof(struct info,___vm86_ds)
  44. };
  45. #define VM86_REG_(x) (*(unsigned short *) \
  46. (reg_offset_vm86[((unsigned)x)]+(u_char *) FPU_info))
  47. /* These are dummy, fs and gs are not saved on the stack. */
  48. #define ___FS ___ds
  49. #define ___GS ___ds
  50. static int reg_offset_pm[] = {
  51. offsetof(struct info,___cs),
  52. offsetof(struct info,___ds),
  53. offsetof(struct info,___es),
  54. offsetof(struct info,___FS),
  55. offsetof(struct info,___GS),
  56. offsetof(struct info,___ss),
  57. offsetof(struct info,___ds)
  58. };
  59. #define PM_REG_(x) (*(unsigned short *) \
  60. (reg_offset_pm[((unsigned)x)]+(u_char *) FPU_info))
  61. /* Decode the SIB byte. This function assumes mod != 0 */
  62. static int sib(int mod, unsigned long *fpu_eip)
  63. {
  64. u_char ss,index,base;
  65. long offset;
  66. RE_ENTRANT_CHECK_OFF;
  67. FPU_code_access_ok(1);
  68. FPU_get_user(base, (u_char __user *) (*fpu_eip)); /* The SIB byte */
  69. RE_ENTRANT_CHECK_ON;
  70. (*fpu_eip)++;
  71. ss = base >> 6;
  72. index = (base >> 3) & 7;
  73. base &= 7;
  74. if ((mod == 0) && (base == 5))
  75. offset = 0; /* No base register */
  76. else
  77. offset = REG_(base);
  78. if (index == 4)
  79. {
  80. /* No index register */
  81. /* A non-zero ss is illegal */
  82. if ( ss )
  83. EXCEPTION(EX_Invalid);
  84. }
  85. else
  86. {
  87. offset += (REG_(index)) << ss;
  88. }
  89. if (mod == 1)
  90. {
  91. /* 8 bit signed displacement */
  92. long displacement;
  93. RE_ENTRANT_CHECK_OFF;
  94. FPU_code_access_ok(1);
  95. FPU_get_user(displacement, (signed char __user *) (*fpu_eip));
  96. offset += displacement;
  97. RE_ENTRANT_CHECK_ON;
  98. (*fpu_eip)++;
  99. }
  100. else if (mod == 2 || base == 5) /* The second condition also has mod==0 */
  101. {
  102. /* 32 bit displacement */
  103. long displacement;
  104. RE_ENTRANT_CHECK_OFF;
  105. FPU_code_access_ok(4);
  106. FPU_get_user(displacement, (long __user *) (*fpu_eip));
  107. offset += displacement;
  108. RE_ENTRANT_CHECK_ON;
  109. (*fpu_eip) += 4;
  110. }
  111. return offset;
  112. }
  113. static unsigned long vm86_segment(u_char segment,
  114. struct address *addr)
  115. {
  116. segment--;
  117. #ifdef PARANOID
  118. if ( segment > PREFIX_SS_ )
  119. {
  120. EXCEPTION(EX_INTERNAL|0x130);
  121. math_abort(FPU_info,SIGSEGV);
  122. }
  123. #endif /* PARANOID */
  124. addr->selector = VM86_REG_(segment);
  125. return (unsigned long)VM86_REG_(segment) << 4;
  126. }
  127. /* This should work for 16 and 32 bit protected mode. */
  128. static long pm_address(u_char FPU_modrm, u_char segment,
  129. struct address *addr, long offset)
  130. {
  131. struct desc_struct descriptor;
  132. unsigned long base_address, limit, address, seg_top;
  133. segment--;
  134. #ifdef PARANOID
  135. /* segment is unsigned, so this also detects if segment was 0: */
  136. if ( segment > PREFIX_SS_ )
  137. {
  138. EXCEPTION(EX_INTERNAL|0x132);
  139. math_abort(FPU_info,SIGSEGV);
  140. }
  141. #endif /* PARANOID */
  142. switch ( segment )
  143. {
  144. /* fs and gs aren't used by the kernel, so they still have their
  145. user-space values. */
  146. case PREFIX_FS_-1:
  147. /* N.B. - movl %seg, mem is a 2 byte write regardless of prefix */
  148. savesegment(fs, addr->selector);
  149. break;
  150. case PREFIX_GS_-1:
  151. savesegment(gs, addr->selector);
  152. break;
  153. default:
  154. addr->selector = PM_REG_(segment);
  155. }
  156. descriptor = LDT_DESCRIPTOR(PM_REG_(segment));
  157. base_address = SEG_BASE_ADDR(descriptor);
  158. address = base_address + offset;
  159. limit = base_address
  160. + (SEG_LIMIT(descriptor)+1) * SEG_GRANULARITY(descriptor) - 1;
  161. if ( limit < base_address ) limit = 0xffffffff;
  162. if ( SEG_EXPAND_DOWN(descriptor) )
  163. {
  164. if ( SEG_G_BIT(descriptor) )
  165. seg_top = 0xffffffff;
  166. else
  167. {
  168. seg_top = base_address + (1 << 20);
  169. if ( seg_top < base_address ) seg_top = 0xffffffff;
  170. }
  171. access_limit =
  172. (address <= limit) || (address >= seg_top) ? 0 :
  173. ((seg_top-address) >= 255 ? 255 : seg_top-address);
  174. }
  175. else
  176. {
  177. access_limit =
  178. (address > limit) || (address < base_address) ? 0 :
  179. ((limit-address) >= 254 ? 255 : limit-address+1);
  180. }
  181. if ( SEG_EXECUTE_ONLY(descriptor) ||
  182. (!SEG_WRITE_PERM(descriptor) && (FPU_modrm & FPU_WRITE_BIT)) )
  183. {
  184. access_limit = 0;
  185. }
  186. return address;
  187. }
  188. /*
  189. MOD R/M byte: MOD == 3 has a special use for the FPU
  190. SIB byte used iff R/M = 100b
  191. 7 6 5 4 3 2 1 0
  192. ..... ......... .........
  193. MOD OPCODE(2) R/M
  194. SIB byte
  195. 7 6 5 4 3 2 1 0
  196. ..... ......... .........
  197. SS INDEX BASE
  198. */
  199. void __user *FPU_get_address(u_char FPU_modrm, unsigned long *fpu_eip,
  200. struct address *addr,
  201. fpu_addr_modes addr_modes)
  202. {
  203. u_char mod;
  204. unsigned rm = FPU_modrm & 7;
  205. long *cpu_reg_ptr;
  206. int address = 0; /* Initialized just to stop compiler warnings. */
  207. /* Memory accessed via the cs selector is write protected
  208. in `non-segmented' 32 bit protected mode. */
  209. if ( !addr_modes.default_mode && (FPU_modrm & FPU_WRITE_BIT)
  210. && (addr_modes.override.segment == PREFIX_CS_) )
  211. {
  212. math_abort(FPU_info,SIGSEGV);
  213. }
  214. addr->selector = FPU_DS; /* Default, for 32 bit non-segmented mode. */
  215. mod = (FPU_modrm >> 6) & 3;
  216. if (rm == 4 && mod != 3)
  217. {
  218. address = sib(mod, fpu_eip);
  219. }
  220. else
  221. {
  222. cpu_reg_ptr = & REG_(rm);
  223. switch (mod)
  224. {
  225. case 0:
  226. if (rm == 5)
  227. {
  228. /* Special case: disp32 */
  229. RE_ENTRANT_CHECK_OFF;
  230. FPU_code_access_ok(4);
  231. FPU_get_user(address, (unsigned long __user *) (*fpu_eip));
  232. (*fpu_eip) += 4;
  233. RE_ENTRANT_CHECK_ON;
  234. addr->offset = address;
  235. return (void __user *) address;
  236. }
  237. else
  238. {
  239. address = *cpu_reg_ptr; /* Just return the contents
  240. of the cpu register */
  241. addr->offset = address;
  242. return (void __user *) address;
  243. }
  244. case 1:
  245. /* 8 bit signed displacement */
  246. RE_ENTRANT_CHECK_OFF;
  247. FPU_code_access_ok(1);
  248. FPU_get_user(address, (signed char __user *) (*fpu_eip));
  249. RE_ENTRANT_CHECK_ON;
  250. (*fpu_eip)++;
  251. break;
  252. case 2:
  253. /* 32 bit displacement */
  254. RE_ENTRANT_CHECK_OFF;
  255. FPU_code_access_ok(4);
  256. FPU_get_user(address, (long __user *) (*fpu_eip));
  257. (*fpu_eip) += 4;
  258. RE_ENTRANT_CHECK_ON;
  259. break;
  260. case 3:
  261. /* Not legal for the FPU */
  262. EXCEPTION(EX_Invalid);
  263. }
  264. address += *cpu_reg_ptr;
  265. }
  266. addr->offset = address;
  267. switch ( addr_modes.default_mode )
  268. {
  269. case 0:
  270. break;
  271. case VM86:
  272. address += vm86_segment(addr_modes.override.segment, addr);
  273. break;
  274. case PM16:
  275. case SEG32:
  276. address = pm_address(FPU_modrm, addr_modes.override.segment,
  277. addr, address);
  278. break;
  279. default:
  280. EXCEPTION(EX_INTERNAL|0x133);
  281. }
  282. return (void __user *)address;
  283. }
  284. void __user *FPU_get_address_16(u_char FPU_modrm, unsigned long *fpu_eip,
  285. struct address *addr,
  286. fpu_addr_modes addr_modes)
  287. {
  288. u_char mod;
  289. unsigned rm = FPU_modrm & 7;
  290. int address = 0; /* Default used for mod == 0 */
  291. /* Memory accessed via the cs selector is write protected
  292. in `non-segmented' 32 bit protected mode. */
  293. if ( !addr_modes.default_mode && (FPU_modrm & FPU_WRITE_BIT)
  294. && (addr_modes.override.segment == PREFIX_CS_) )
  295. {
  296. math_abort(FPU_info,SIGSEGV);
  297. }
  298. addr->selector = FPU_DS; /* Default, for 32 bit non-segmented mode. */
  299. mod = (FPU_modrm >> 6) & 3;
  300. switch (mod)
  301. {
  302. case 0:
  303. if (rm == 6)
  304. {
  305. /* Special case: disp16 */
  306. RE_ENTRANT_CHECK_OFF;
  307. FPU_code_access_ok(2);
  308. FPU_get_user(address, (unsigned short __user *) (*fpu_eip));
  309. (*fpu_eip) += 2;
  310. RE_ENTRANT_CHECK_ON;
  311. goto add_segment;
  312. }
  313. break;
  314. case 1:
  315. /* 8 bit signed displacement */
  316. RE_ENTRANT_CHECK_OFF;
  317. FPU_code_access_ok(1);
  318. FPU_get_user(address, (signed char __user *) (*fpu_eip));
  319. RE_ENTRANT_CHECK_ON;
  320. (*fpu_eip)++;
  321. break;
  322. case 2:
  323. /* 16 bit displacement */
  324. RE_ENTRANT_CHECK_OFF;
  325. FPU_code_access_ok(2);
  326. FPU_get_user(address, (unsigned short __user *) (*fpu_eip));
  327. (*fpu_eip) += 2;
  328. RE_ENTRANT_CHECK_ON;
  329. break;
  330. case 3:
  331. /* Not legal for the FPU */
  332. EXCEPTION(EX_Invalid);
  333. break;
  334. }
  335. switch ( rm )
  336. {
  337. case 0:
  338. address += FPU_info->___ebx + FPU_info->___esi;
  339. break;
  340. case 1:
  341. address += FPU_info->___ebx + FPU_info->___edi;
  342. break;
  343. case 2:
  344. address += FPU_info->___ebp + FPU_info->___esi;
  345. if ( addr_modes.override.segment == PREFIX_DEFAULT )
  346. addr_modes.override.segment = PREFIX_SS_;
  347. break;
  348. case 3:
  349. address += FPU_info->___ebp + FPU_info->___edi;
  350. if ( addr_modes.override.segment == PREFIX_DEFAULT )
  351. addr_modes.override.segment = PREFIX_SS_;
  352. break;
  353. case 4:
  354. address += FPU_info->___esi;
  355. break;
  356. case 5:
  357. address += FPU_info->___edi;
  358. break;
  359. case 6:
  360. address += FPU_info->___ebp;
  361. if ( addr_modes.override.segment == PREFIX_DEFAULT )
  362. addr_modes.override.segment = PREFIX_SS_;
  363. break;
  364. case 7:
  365. address += FPU_info->___ebx;
  366. break;
  367. }
  368. add_segment:
  369. address &= 0xffff;
  370. addr->offset = address;
  371. switch ( addr_modes.default_mode )
  372. {
  373. case 0:
  374. break;
  375. case VM86:
  376. address += vm86_segment(addr_modes.override.segment, addr);
  377. break;
  378. case PM16:
  379. case SEG32:
  380. address = pm_address(FPU_modrm, addr_modes.override.segment,
  381. addr, address);
  382. break;
  383. default:
  384. EXCEPTION(EX_INTERNAL|0x131);
  385. }
  386. return (void __user *)address ;
  387. }