ptrace.c 35 KB

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  1. /* By Ross Biro 1/23/92 */
  2. /*
  3. * Pentium III FXSR, SSE support
  4. * Gareth Hughes <gareth@valinux.com>, May 2000
  5. *
  6. * BTS tracing
  7. * Markus Metzger <markus.t.metzger@intel.com>, Dec 2007
  8. */
  9. #include <linux/kernel.h>
  10. #include <linux/sched.h>
  11. #include <linux/mm.h>
  12. #include <linux/smp.h>
  13. #include <linux/errno.h>
  14. #include <linux/ptrace.h>
  15. #include <linux/regset.h>
  16. #include <linux/tracehook.h>
  17. #include <linux/user.h>
  18. #include <linux/elf.h>
  19. #include <linux/security.h>
  20. #include <linux/audit.h>
  21. #include <linux/seccomp.h>
  22. #include <linux/signal.h>
  23. #include <asm/uaccess.h>
  24. #include <asm/pgtable.h>
  25. #include <asm/system.h>
  26. #include <asm/processor.h>
  27. #include <asm/i387.h>
  28. #include <asm/debugreg.h>
  29. #include <asm/ldt.h>
  30. #include <asm/desc.h>
  31. #include <asm/prctl.h>
  32. #include <asm/proto.h>
  33. #include <asm/ds.h>
  34. #include "tls.h"
  35. enum x86_regset {
  36. REGSET_GENERAL,
  37. REGSET_FP,
  38. REGSET_XFP,
  39. REGSET_IOPERM64 = REGSET_XFP,
  40. REGSET_TLS,
  41. REGSET_IOPERM32,
  42. };
  43. /*
  44. * does not yet catch signals sent when the child dies.
  45. * in exit.c or in signal.c.
  46. */
  47. /*
  48. * Determines which flags the user has access to [1 = access, 0 = no access].
  49. */
  50. #define FLAG_MASK_32 ((unsigned long) \
  51. (X86_EFLAGS_CF | X86_EFLAGS_PF | \
  52. X86_EFLAGS_AF | X86_EFLAGS_ZF | \
  53. X86_EFLAGS_SF | X86_EFLAGS_TF | \
  54. X86_EFLAGS_DF | X86_EFLAGS_OF | \
  55. X86_EFLAGS_RF | X86_EFLAGS_AC))
  56. /*
  57. * Determines whether a value may be installed in a segment register.
  58. */
  59. static inline bool invalid_selector(u16 value)
  60. {
  61. return unlikely(value != 0 && (value & SEGMENT_RPL_MASK) != USER_RPL);
  62. }
  63. #ifdef CONFIG_X86_32
  64. #define FLAG_MASK FLAG_MASK_32
  65. static unsigned long *pt_regs_access(struct pt_regs *regs, unsigned long regno)
  66. {
  67. BUILD_BUG_ON(offsetof(struct pt_regs, bx) != 0);
  68. regno >>= 2;
  69. if (regno > FS)
  70. --regno;
  71. return &regs->bx + regno;
  72. }
  73. static u16 get_segment_reg(struct task_struct *task, unsigned long offset)
  74. {
  75. /*
  76. * Returning the value truncates it to 16 bits.
  77. */
  78. unsigned int retval;
  79. if (offset != offsetof(struct user_regs_struct, gs))
  80. retval = *pt_regs_access(task_pt_regs(task), offset);
  81. else {
  82. retval = task->thread.gs;
  83. if (task == current)
  84. savesegment(gs, retval);
  85. }
  86. return retval;
  87. }
  88. static int set_segment_reg(struct task_struct *task,
  89. unsigned long offset, u16 value)
  90. {
  91. /*
  92. * The value argument was already truncated to 16 bits.
  93. */
  94. if (invalid_selector(value))
  95. return -EIO;
  96. /*
  97. * For %cs and %ss we cannot permit a null selector.
  98. * We can permit a bogus selector as long as it has USER_RPL.
  99. * Null selectors are fine for other segment registers, but
  100. * we will never get back to user mode with invalid %cs or %ss
  101. * and will take the trap in iret instead. Much code relies
  102. * on user_mode() to distinguish a user trap frame (which can
  103. * safely use invalid selectors) from a kernel trap frame.
  104. */
  105. switch (offset) {
  106. case offsetof(struct user_regs_struct, cs):
  107. case offsetof(struct user_regs_struct, ss):
  108. if (unlikely(value == 0))
  109. return -EIO;
  110. default:
  111. *pt_regs_access(task_pt_regs(task), offset) = value;
  112. break;
  113. case offsetof(struct user_regs_struct, gs):
  114. task->thread.gs = value;
  115. if (task == current)
  116. /*
  117. * The user-mode %gs is not affected by
  118. * kernel entry, so we must update the CPU.
  119. */
  120. loadsegment(gs, value);
  121. }
  122. return 0;
  123. }
  124. static unsigned long debugreg_addr_limit(struct task_struct *task)
  125. {
  126. return TASK_SIZE - 3;
  127. }
  128. #else /* CONFIG_X86_64 */
  129. #define FLAG_MASK (FLAG_MASK_32 | X86_EFLAGS_NT)
  130. static unsigned long *pt_regs_access(struct pt_regs *regs, unsigned long offset)
  131. {
  132. BUILD_BUG_ON(offsetof(struct pt_regs, r15) != 0);
  133. return &regs->r15 + (offset / sizeof(regs->r15));
  134. }
  135. static u16 get_segment_reg(struct task_struct *task, unsigned long offset)
  136. {
  137. /*
  138. * Returning the value truncates it to 16 bits.
  139. */
  140. unsigned int seg;
  141. switch (offset) {
  142. case offsetof(struct user_regs_struct, fs):
  143. if (task == current) {
  144. /* Older gas can't assemble movq %?s,%r?? */
  145. asm("movl %%fs,%0" : "=r" (seg));
  146. return seg;
  147. }
  148. return task->thread.fsindex;
  149. case offsetof(struct user_regs_struct, gs):
  150. if (task == current) {
  151. asm("movl %%gs,%0" : "=r" (seg));
  152. return seg;
  153. }
  154. return task->thread.gsindex;
  155. case offsetof(struct user_regs_struct, ds):
  156. if (task == current) {
  157. asm("movl %%ds,%0" : "=r" (seg));
  158. return seg;
  159. }
  160. return task->thread.ds;
  161. case offsetof(struct user_regs_struct, es):
  162. if (task == current) {
  163. asm("movl %%es,%0" : "=r" (seg));
  164. return seg;
  165. }
  166. return task->thread.es;
  167. case offsetof(struct user_regs_struct, cs):
  168. case offsetof(struct user_regs_struct, ss):
  169. break;
  170. }
  171. return *pt_regs_access(task_pt_regs(task), offset);
  172. }
  173. static int set_segment_reg(struct task_struct *task,
  174. unsigned long offset, u16 value)
  175. {
  176. /*
  177. * The value argument was already truncated to 16 bits.
  178. */
  179. if (invalid_selector(value))
  180. return -EIO;
  181. switch (offset) {
  182. case offsetof(struct user_regs_struct,fs):
  183. /*
  184. * If this is setting fs as for normal 64-bit use but
  185. * setting fs_base has implicitly changed it, leave it.
  186. */
  187. if ((value == FS_TLS_SEL && task->thread.fsindex == 0 &&
  188. task->thread.fs != 0) ||
  189. (value == 0 && task->thread.fsindex == FS_TLS_SEL &&
  190. task->thread.fs == 0))
  191. break;
  192. task->thread.fsindex = value;
  193. if (task == current)
  194. loadsegment(fs, task->thread.fsindex);
  195. break;
  196. case offsetof(struct user_regs_struct,gs):
  197. /*
  198. * If this is setting gs as for normal 64-bit use but
  199. * setting gs_base has implicitly changed it, leave it.
  200. */
  201. if ((value == GS_TLS_SEL && task->thread.gsindex == 0 &&
  202. task->thread.gs != 0) ||
  203. (value == 0 && task->thread.gsindex == GS_TLS_SEL &&
  204. task->thread.gs == 0))
  205. break;
  206. task->thread.gsindex = value;
  207. if (task == current)
  208. load_gs_index(task->thread.gsindex);
  209. break;
  210. case offsetof(struct user_regs_struct,ds):
  211. task->thread.ds = value;
  212. if (task == current)
  213. loadsegment(ds, task->thread.ds);
  214. break;
  215. case offsetof(struct user_regs_struct,es):
  216. task->thread.es = value;
  217. if (task == current)
  218. loadsegment(es, task->thread.es);
  219. break;
  220. /*
  221. * Can't actually change these in 64-bit mode.
  222. */
  223. case offsetof(struct user_regs_struct,cs):
  224. if (unlikely(value == 0))
  225. return -EIO;
  226. #ifdef CONFIG_IA32_EMULATION
  227. if (test_tsk_thread_flag(task, TIF_IA32))
  228. task_pt_regs(task)->cs = value;
  229. #endif
  230. break;
  231. case offsetof(struct user_regs_struct,ss):
  232. if (unlikely(value == 0))
  233. return -EIO;
  234. #ifdef CONFIG_IA32_EMULATION
  235. if (test_tsk_thread_flag(task, TIF_IA32))
  236. task_pt_regs(task)->ss = value;
  237. #endif
  238. break;
  239. }
  240. return 0;
  241. }
  242. static unsigned long debugreg_addr_limit(struct task_struct *task)
  243. {
  244. #ifdef CONFIG_IA32_EMULATION
  245. if (test_tsk_thread_flag(task, TIF_IA32))
  246. return IA32_PAGE_OFFSET - 3;
  247. #endif
  248. return TASK_SIZE64 - 7;
  249. }
  250. #endif /* CONFIG_X86_32 */
  251. static unsigned long get_flags(struct task_struct *task)
  252. {
  253. unsigned long retval = task_pt_regs(task)->flags;
  254. /*
  255. * If the debugger set TF, hide it from the readout.
  256. */
  257. if (test_tsk_thread_flag(task, TIF_FORCED_TF))
  258. retval &= ~X86_EFLAGS_TF;
  259. return retval;
  260. }
  261. static int set_flags(struct task_struct *task, unsigned long value)
  262. {
  263. struct pt_regs *regs = task_pt_regs(task);
  264. /*
  265. * If the user value contains TF, mark that
  266. * it was not "us" (the debugger) that set it.
  267. * If not, make sure it stays set if we had.
  268. */
  269. if (value & X86_EFLAGS_TF)
  270. clear_tsk_thread_flag(task, TIF_FORCED_TF);
  271. else if (test_tsk_thread_flag(task, TIF_FORCED_TF))
  272. value |= X86_EFLAGS_TF;
  273. regs->flags = (regs->flags & ~FLAG_MASK) | (value & FLAG_MASK);
  274. return 0;
  275. }
  276. static int putreg(struct task_struct *child,
  277. unsigned long offset, unsigned long value)
  278. {
  279. switch (offset) {
  280. case offsetof(struct user_regs_struct, cs):
  281. case offsetof(struct user_regs_struct, ds):
  282. case offsetof(struct user_regs_struct, es):
  283. case offsetof(struct user_regs_struct, fs):
  284. case offsetof(struct user_regs_struct, gs):
  285. case offsetof(struct user_regs_struct, ss):
  286. return set_segment_reg(child, offset, value);
  287. case offsetof(struct user_regs_struct, flags):
  288. return set_flags(child, value);
  289. #ifdef CONFIG_X86_64
  290. /*
  291. * Orig_ax is really just a flag with small positive and
  292. * negative values, so make sure to always sign-extend it
  293. * from 32 bits so that it works correctly regardless of
  294. * whether we come from a 32-bit environment or not.
  295. */
  296. case offsetof(struct user_regs_struct, orig_ax):
  297. value = (long) (s32) value;
  298. break;
  299. case offsetof(struct user_regs_struct,fs_base):
  300. if (value >= TASK_SIZE_OF(child))
  301. return -EIO;
  302. /*
  303. * When changing the segment base, use do_arch_prctl
  304. * to set either thread.fs or thread.fsindex and the
  305. * corresponding GDT slot.
  306. */
  307. if (child->thread.fs != value)
  308. return do_arch_prctl(child, ARCH_SET_FS, value);
  309. return 0;
  310. case offsetof(struct user_regs_struct,gs_base):
  311. /*
  312. * Exactly the same here as the %fs handling above.
  313. */
  314. if (value >= TASK_SIZE_OF(child))
  315. return -EIO;
  316. if (child->thread.gs != value)
  317. return do_arch_prctl(child, ARCH_SET_GS, value);
  318. return 0;
  319. #endif
  320. }
  321. *pt_regs_access(task_pt_regs(child), offset) = value;
  322. return 0;
  323. }
  324. static unsigned long getreg(struct task_struct *task, unsigned long offset)
  325. {
  326. switch (offset) {
  327. case offsetof(struct user_regs_struct, cs):
  328. case offsetof(struct user_regs_struct, ds):
  329. case offsetof(struct user_regs_struct, es):
  330. case offsetof(struct user_regs_struct, fs):
  331. case offsetof(struct user_regs_struct, gs):
  332. case offsetof(struct user_regs_struct, ss):
  333. return get_segment_reg(task, offset);
  334. case offsetof(struct user_regs_struct, flags):
  335. return get_flags(task);
  336. #ifdef CONFIG_X86_64
  337. case offsetof(struct user_regs_struct, fs_base): {
  338. /*
  339. * do_arch_prctl may have used a GDT slot instead of
  340. * the MSR. To userland, it appears the same either
  341. * way, except the %fs segment selector might not be 0.
  342. */
  343. unsigned int seg = task->thread.fsindex;
  344. if (task->thread.fs != 0)
  345. return task->thread.fs;
  346. if (task == current)
  347. asm("movl %%fs,%0" : "=r" (seg));
  348. if (seg != FS_TLS_SEL)
  349. return 0;
  350. return get_desc_base(&task->thread.tls_array[FS_TLS]);
  351. }
  352. case offsetof(struct user_regs_struct, gs_base): {
  353. /*
  354. * Exactly the same here as the %fs handling above.
  355. */
  356. unsigned int seg = task->thread.gsindex;
  357. if (task->thread.gs != 0)
  358. return task->thread.gs;
  359. if (task == current)
  360. asm("movl %%gs,%0" : "=r" (seg));
  361. if (seg != GS_TLS_SEL)
  362. return 0;
  363. return get_desc_base(&task->thread.tls_array[GS_TLS]);
  364. }
  365. #endif
  366. }
  367. return *pt_regs_access(task_pt_regs(task), offset);
  368. }
  369. static int genregs_get(struct task_struct *target,
  370. const struct user_regset *regset,
  371. unsigned int pos, unsigned int count,
  372. void *kbuf, void __user *ubuf)
  373. {
  374. if (kbuf) {
  375. unsigned long *k = kbuf;
  376. while (count > 0) {
  377. *k++ = getreg(target, pos);
  378. count -= sizeof(*k);
  379. pos += sizeof(*k);
  380. }
  381. } else {
  382. unsigned long __user *u = ubuf;
  383. while (count > 0) {
  384. if (__put_user(getreg(target, pos), u++))
  385. return -EFAULT;
  386. count -= sizeof(*u);
  387. pos += sizeof(*u);
  388. }
  389. }
  390. return 0;
  391. }
  392. static int genregs_set(struct task_struct *target,
  393. const struct user_regset *regset,
  394. unsigned int pos, unsigned int count,
  395. const void *kbuf, const void __user *ubuf)
  396. {
  397. int ret = 0;
  398. if (kbuf) {
  399. const unsigned long *k = kbuf;
  400. while (count > 0 && !ret) {
  401. ret = putreg(target, pos, *k++);
  402. count -= sizeof(*k);
  403. pos += sizeof(*k);
  404. }
  405. } else {
  406. const unsigned long __user *u = ubuf;
  407. while (count > 0 && !ret) {
  408. unsigned long word;
  409. ret = __get_user(word, u++);
  410. if (ret)
  411. break;
  412. ret = putreg(target, pos, word);
  413. count -= sizeof(*u);
  414. pos += sizeof(*u);
  415. }
  416. }
  417. return ret;
  418. }
  419. /*
  420. * This function is trivial and will be inlined by the compiler.
  421. * Having it separates the implementation details of debug
  422. * registers from the interface details of ptrace.
  423. */
  424. static unsigned long ptrace_get_debugreg(struct task_struct *child, int n)
  425. {
  426. switch (n) {
  427. case 0: return child->thread.debugreg0;
  428. case 1: return child->thread.debugreg1;
  429. case 2: return child->thread.debugreg2;
  430. case 3: return child->thread.debugreg3;
  431. case 6: return child->thread.debugreg6;
  432. case 7: return child->thread.debugreg7;
  433. }
  434. return 0;
  435. }
  436. static int ptrace_set_debugreg(struct task_struct *child,
  437. int n, unsigned long data)
  438. {
  439. int i;
  440. if (unlikely(n == 4 || n == 5))
  441. return -EIO;
  442. if (n < 4 && unlikely(data >= debugreg_addr_limit(child)))
  443. return -EIO;
  444. switch (n) {
  445. case 0: child->thread.debugreg0 = data; break;
  446. case 1: child->thread.debugreg1 = data; break;
  447. case 2: child->thread.debugreg2 = data; break;
  448. case 3: child->thread.debugreg3 = data; break;
  449. case 6:
  450. if ((data & ~0xffffffffUL) != 0)
  451. return -EIO;
  452. child->thread.debugreg6 = data;
  453. break;
  454. case 7:
  455. /*
  456. * Sanity-check data. Take one half-byte at once with
  457. * check = (val >> (16 + 4*i)) & 0xf. It contains the
  458. * R/Wi and LENi bits; bits 0 and 1 are R/Wi, and bits
  459. * 2 and 3 are LENi. Given a list of invalid values,
  460. * we do mask |= 1 << invalid_value, so that
  461. * (mask >> check) & 1 is a correct test for invalid
  462. * values.
  463. *
  464. * R/Wi contains the type of the breakpoint /
  465. * watchpoint, LENi contains the length of the watched
  466. * data in the watchpoint case.
  467. *
  468. * The invalid values are:
  469. * - LENi == 0x10 (undefined), so mask |= 0x0f00. [32-bit]
  470. * - R/Wi == 0x10 (break on I/O reads or writes), so
  471. * mask |= 0x4444.
  472. * - R/Wi == 0x00 && LENi != 0x00, so we have mask |=
  473. * 0x1110.
  474. *
  475. * Finally, mask = 0x0f00 | 0x4444 | 0x1110 == 0x5f54.
  476. *
  477. * See the Intel Manual "System Programming Guide",
  478. * 15.2.4
  479. *
  480. * Note that LENi == 0x10 is defined on x86_64 in long
  481. * mode (i.e. even for 32-bit userspace software, but
  482. * 64-bit kernel), so the x86_64 mask value is 0x5454.
  483. * See the AMD manual no. 24593 (AMD64 System Programming)
  484. */
  485. #ifdef CONFIG_X86_32
  486. #define DR7_MASK 0x5f54
  487. #else
  488. #define DR7_MASK 0x5554
  489. #endif
  490. data &= ~DR_CONTROL_RESERVED;
  491. for (i = 0; i < 4; i++)
  492. if ((DR7_MASK >> ((data >> (16 + 4*i)) & 0xf)) & 1)
  493. return -EIO;
  494. child->thread.debugreg7 = data;
  495. if (data)
  496. set_tsk_thread_flag(child, TIF_DEBUG);
  497. else
  498. clear_tsk_thread_flag(child, TIF_DEBUG);
  499. break;
  500. }
  501. return 0;
  502. }
  503. /*
  504. * These access the current or another (stopped) task's io permission
  505. * bitmap for debugging or core dump.
  506. */
  507. static int ioperm_active(struct task_struct *target,
  508. const struct user_regset *regset)
  509. {
  510. return target->thread.io_bitmap_max / regset->size;
  511. }
  512. static int ioperm_get(struct task_struct *target,
  513. const struct user_regset *regset,
  514. unsigned int pos, unsigned int count,
  515. void *kbuf, void __user *ubuf)
  516. {
  517. if (!target->thread.io_bitmap_ptr)
  518. return -ENXIO;
  519. return user_regset_copyout(&pos, &count, &kbuf, &ubuf,
  520. target->thread.io_bitmap_ptr,
  521. 0, IO_BITMAP_BYTES);
  522. }
  523. #ifdef CONFIG_X86_PTRACE_BTS
  524. static int ptrace_bts_read_record(struct task_struct *child, size_t index,
  525. struct bts_struct __user *out)
  526. {
  527. const struct bts_trace *trace;
  528. struct bts_struct bts;
  529. const unsigned char *at;
  530. int error;
  531. trace = ds_read_bts(child->bts);
  532. if (!trace)
  533. return -EPERM;
  534. at = trace->ds.top - ((index + 1) * trace->ds.size);
  535. if ((void *)at < trace->ds.begin)
  536. at += (trace->ds.n * trace->ds.size);
  537. if (!trace->read)
  538. return -EOPNOTSUPP;
  539. error = trace->read(child->bts, at, &bts);
  540. if (error < 0)
  541. return error;
  542. if (copy_to_user(out, &bts, sizeof(bts)))
  543. return -EFAULT;
  544. return sizeof(bts);
  545. }
  546. static int ptrace_bts_drain(struct task_struct *child,
  547. long size,
  548. struct bts_struct __user *out)
  549. {
  550. const struct bts_trace *trace;
  551. const unsigned char *at;
  552. int error, drained = 0;
  553. trace = ds_read_bts(child->bts);
  554. if (!trace)
  555. return -EPERM;
  556. if (!trace->read)
  557. return -EOPNOTSUPP;
  558. if (size < (trace->ds.top - trace->ds.begin))
  559. return -EIO;
  560. for (at = trace->ds.begin; (void *)at < trace->ds.top;
  561. out++, drained++, at += trace->ds.size) {
  562. struct bts_struct bts;
  563. int error;
  564. error = trace->read(child->bts, at, &bts);
  565. if (error < 0)
  566. return error;
  567. if (copy_to_user(out, &bts, sizeof(bts)))
  568. return -EFAULT;
  569. }
  570. memset(trace->ds.begin, 0, trace->ds.n * trace->ds.size);
  571. error = ds_reset_bts(child->bts);
  572. if (error < 0)
  573. return error;
  574. return drained;
  575. }
  576. static int ptrace_bts_allocate_buffer(struct task_struct *child, size_t size)
  577. {
  578. child->bts_buffer = alloc_locked_buffer(size);
  579. if (!child->bts_buffer)
  580. return -ENOMEM;
  581. child->bts_size = size;
  582. return 0;
  583. }
  584. static void ptrace_bts_free_buffer(struct task_struct *child)
  585. {
  586. free_locked_buffer(child->bts_buffer, child->bts_size);
  587. child->bts_buffer = NULL;
  588. child->bts_size = 0;
  589. }
  590. static int ptrace_bts_config(struct task_struct *child,
  591. long cfg_size,
  592. const struct ptrace_bts_config __user *ucfg)
  593. {
  594. struct ptrace_bts_config cfg;
  595. unsigned int flags = 0;
  596. if (cfg_size < sizeof(cfg))
  597. return -EIO;
  598. if (copy_from_user(&cfg, ucfg, sizeof(cfg)))
  599. return -EFAULT;
  600. if (child->bts) {
  601. ds_release_bts(child->bts);
  602. child->bts = NULL;
  603. }
  604. if (cfg.flags & PTRACE_BTS_O_SIGNAL) {
  605. if (!cfg.signal)
  606. return -EINVAL;
  607. return -EOPNOTSUPP;
  608. child->thread.bts_ovfl_signal = cfg.signal;
  609. }
  610. if ((cfg.flags & PTRACE_BTS_O_ALLOC) &&
  611. (cfg.size != child->bts_size)) {
  612. int error;
  613. ptrace_bts_free_buffer(child);
  614. error = ptrace_bts_allocate_buffer(child, cfg.size);
  615. if (error < 0)
  616. return error;
  617. }
  618. if (cfg.flags & PTRACE_BTS_O_TRACE)
  619. flags |= BTS_USER;
  620. if (cfg.flags & PTRACE_BTS_O_SCHED)
  621. flags |= BTS_TIMESTAMPS;
  622. child->bts = ds_request_bts(child, child->bts_buffer, child->bts_size,
  623. /* ovfl = */ NULL, /* th = */ (size_t)-1,
  624. flags);
  625. if (IS_ERR(child->bts)) {
  626. int error = PTR_ERR(child->bts);
  627. ptrace_bts_free_buffer(child);
  628. child->bts = NULL;
  629. return error;
  630. }
  631. return sizeof(cfg);
  632. }
  633. static int ptrace_bts_status(struct task_struct *child,
  634. long cfg_size,
  635. struct ptrace_bts_config __user *ucfg)
  636. {
  637. const struct bts_trace *trace;
  638. struct ptrace_bts_config cfg;
  639. if (cfg_size < sizeof(cfg))
  640. return -EIO;
  641. trace = ds_read_bts(child->bts);
  642. if (!trace)
  643. return -EPERM;
  644. memset(&cfg, 0, sizeof(cfg));
  645. cfg.size = trace->ds.end - trace->ds.begin;
  646. cfg.signal = child->thread.bts_ovfl_signal;
  647. cfg.bts_size = sizeof(struct bts_struct);
  648. if (cfg.signal)
  649. cfg.flags |= PTRACE_BTS_O_SIGNAL;
  650. if (trace->ds.flags & BTS_USER)
  651. cfg.flags |= PTRACE_BTS_O_TRACE;
  652. if (trace->ds.flags & BTS_TIMESTAMPS)
  653. cfg.flags |= PTRACE_BTS_O_SCHED;
  654. if (copy_to_user(ucfg, &cfg, sizeof(cfg)))
  655. return -EFAULT;
  656. return sizeof(cfg);
  657. }
  658. static int ptrace_bts_clear(struct task_struct *child)
  659. {
  660. const struct bts_trace *trace;
  661. trace = ds_read_bts(child->bts);
  662. if (!trace)
  663. return -EPERM;
  664. memset(trace->ds.begin, 0, trace->ds.n * trace->ds.size);
  665. return ds_reset_bts(child->bts);
  666. }
  667. static int ptrace_bts_size(struct task_struct *child)
  668. {
  669. const struct bts_trace *trace;
  670. trace = ds_read_bts(child->bts);
  671. if (!trace)
  672. return -EPERM;
  673. return (trace->ds.top - trace->ds.begin) / trace->ds.size;
  674. }
  675. static void ptrace_bts_fork(struct task_struct *tsk)
  676. {
  677. tsk->bts = NULL;
  678. tsk->bts_buffer = NULL;
  679. tsk->bts_size = 0;
  680. tsk->thread.bts_ovfl_signal = 0;
  681. }
  682. static void ptrace_bts_untrace(struct task_struct *child)
  683. {
  684. if (unlikely(child->bts)) {
  685. ds_release_bts(child->bts);
  686. child->bts = NULL;
  687. /* We cannot update total_vm and locked_vm since
  688. child's mm is already gone. But we can reclaim the
  689. memory. */
  690. kfree(child->bts_buffer);
  691. child->bts_buffer = NULL;
  692. child->bts_size = 0;
  693. }
  694. }
  695. static void ptrace_bts_detach(struct task_struct *child)
  696. {
  697. if (unlikely(child->bts)) {
  698. ds_release_bts(child->bts);
  699. child->bts = NULL;
  700. ptrace_bts_free_buffer(child);
  701. }
  702. }
  703. #else
  704. static inline void ptrace_bts_fork(struct task_struct *tsk) {}
  705. static inline void ptrace_bts_detach(struct task_struct *child) {}
  706. static inline void ptrace_bts_untrace(struct task_struct *child) {}
  707. #endif /* CONFIG_X86_PTRACE_BTS */
  708. void x86_ptrace_fork(struct task_struct *child, unsigned long clone_flags)
  709. {
  710. ptrace_bts_fork(child);
  711. }
  712. void x86_ptrace_untrace(struct task_struct *child)
  713. {
  714. ptrace_bts_untrace(child);
  715. }
  716. /*
  717. * Called by kernel/ptrace.c when detaching..
  718. *
  719. * Make sure the single step bit is not set.
  720. */
  721. void ptrace_disable(struct task_struct *child)
  722. {
  723. user_disable_single_step(child);
  724. #ifdef TIF_SYSCALL_EMU
  725. clear_tsk_thread_flag(child, TIF_SYSCALL_EMU);
  726. #endif
  727. ptrace_bts_detach(child);
  728. }
  729. #if defined CONFIG_X86_32 || defined CONFIG_IA32_EMULATION
  730. static const struct user_regset_view user_x86_32_view; /* Initialized below. */
  731. #endif
  732. long arch_ptrace(struct task_struct *child, long request, long addr, long data)
  733. {
  734. int ret;
  735. unsigned long __user *datap = (unsigned long __user *)data;
  736. switch (request) {
  737. /* read the word at location addr in the USER area. */
  738. case PTRACE_PEEKUSR: {
  739. unsigned long tmp;
  740. ret = -EIO;
  741. if ((addr & (sizeof(data) - 1)) || addr < 0 ||
  742. addr >= sizeof(struct user))
  743. break;
  744. tmp = 0; /* Default return condition */
  745. if (addr < sizeof(struct user_regs_struct))
  746. tmp = getreg(child, addr);
  747. else if (addr >= offsetof(struct user, u_debugreg[0]) &&
  748. addr <= offsetof(struct user, u_debugreg[7])) {
  749. addr -= offsetof(struct user, u_debugreg[0]);
  750. tmp = ptrace_get_debugreg(child, addr / sizeof(data));
  751. }
  752. ret = put_user(tmp, datap);
  753. break;
  754. }
  755. case PTRACE_POKEUSR: /* write the word at location addr in the USER area */
  756. ret = -EIO;
  757. if ((addr & (sizeof(data) - 1)) || addr < 0 ||
  758. addr >= sizeof(struct user))
  759. break;
  760. if (addr < sizeof(struct user_regs_struct))
  761. ret = putreg(child, addr, data);
  762. else if (addr >= offsetof(struct user, u_debugreg[0]) &&
  763. addr <= offsetof(struct user, u_debugreg[7])) {
  764. addr -= offsetof(struct user, u_debugreg[0]);
  765. ret = ptrace_set_debugreg(child,
  766. addr / sizeof(data), data);
  767. }
  768. break;
  769. case PTRACE_GETREGS: /* Get all gp regs from the child. */
  770. return copy_regset_to_user(child,
  771. task_user_regset_view(current),
  772. REGSET_GENERAL,
  773. 0, sizeof(struct user_regs_struct),
  774. datap);
  775. case PTRACE_SETREGS: /* Set all gp regs in the child. */
  776. return copy_regset_from_user(child,
  777. task_user_regset_view(current),
  778. REGSET_GENERAL,
  779. 0, sizeof(struct user_regs_struct),
  780. datap);
  781. case PTRACE_GETFPREGS: /* Get the child FPU state. */
  782. return copy_regset_to_user(child,
  783. task_user_regset_view(current),
  784. REGSET_FP,
  785. 0, sizeof(struct user_i387_struct),
  786. datap);
  787. case PTRACE_SETFPREGS: /* Set the child FPU state. */
  788. return copy_regset_from_user(child,
  789. task_user_regset_view(current),
  790. REGSET_FP,
  791. 0, sizeof(struct user_i387_struct),
  792. datap);
  793. #ifdef CONFIG_X86_32
  794. case PTRACE_GETFPXREGS: /* Get the child extended FPU state. */
  795. return copy_regset_to_user(child, &user_x86_32_view,
  796. REGSET_XFP,
  797. 0, sizeof(struct user_fxsr_struct),
  798. datap) ? -EIO : 0;
  799. case PTRACE_SETFPXREGS: /* Set the child extended FPU state. */
  800. return copy_regset_from_user(child, &user_x86_32_view,
  801. REGSET_XFP,
  802. 0, sizeof(struct user_fxsr_struct),
  803. datap) ? -EIO : 0;
  804. #endif
  805. #if defined CONFIG_X86_32 || defined CONFIG_IA32_EMULATION
  806. case PTRACE_GET_THREAD_AREA:
  807. if (addr < 0)
  808. return -EIO;
  809. ret = do_get_thread_area(child, addr,
  810. (struct user_desc __user *) data);
  811. break;
  812. case PTRACE_SET_THREAD_AREA:
  813. if (addr < 0)
  814. return -EIO;
  815. ret = do_set_thread_area(child, addr,
  816. (struct user_desc __user *) data, 0);
  817. break;
  818. #endif
  819. #ifdef CONFIG_X86_64
  820. /* normal 64bit interface to access TLS data.
  821. Works just like arch_prctl, except that the arguments
  822. are reversed. */
  823. case PTRACE_ARCH_PRCTL:
  824. ret = do_arch_prctl(child, data, addr);
  825. break;
  826. #endif
  827. /*
  828. * These bits need more cooking - not enabled yet:
  829. */
  830. #ifdef CONFIG_X86_PTRACE_BTS
  831. case PTRACE_BTS_CONFIG:
  832. ret = ptrace_bts_config
  833. (child, data, (struct ptrace_bts_config __user *)addr);
  834. break;
  835. case PTRACE_BTS_STATUS:
  836. ret = ptrace_bts_status
  837. (child, data, (struct ptrace_bts_config __user *)addr);
  838. break;
  839. case PTRACE_BTS_SIZE:
  840. ret = ptrace_bts_size(child);
  841. break;
  842. case PTRACE_BTS_GET:
  843. ret = ptrace_bts_read_record
  844. (child, data, (struct bts_struct __user *) addr);
  845. break;
  846. case PTRACE_BTS_CLEAR:
  847. ret = ptrace_bts_clear(child);
  848. break;
  849. case PTRACE_BTS_DRAIN:
  850. ret = ptrace_bts_drain
  851. (child, data, (struct bts_struct __user *) addr);
  852. break;
  853. #endif /* CONFIG_X86_PTRACE_BTS */
  854. default:
  855. ret = ptrace_request(child, request, addr, data);
  856. break;
  857. }
  858. return ret;
  859. }
  860. #ifdef CONFIG_IA32_EMULATION
  861. #include <linux/compat.h>
  862. #include <linux/syscalls.h>
  863. #include <asm/ia32.h>
  864. #include <asm/user32.h>
  865. #define R32(l,q) \
  866. case offsetof(struct user32, regs.l): \
  867. regs->q = value; break
  868. #define SEG32(rs) \
  869. case offsetof(struct user32, regs.rs): \
  870. return set_segment_reg(child, \
  871. offsetof(struct user_regs_struct, rs), \
  872. value); \
  873. break
  874. static int putreg32(struct task_struct *child, unsigned regno, u32 value)
  875. {
  876. struct pt_regs *regs = task_pt_regs(child);
  877. switch (regno) {
  878. SEG32(cs);
  879. SEG32(ds);
  880. SEG32(es);
  881. SEG32(fs);
  882. SEG32(gs);
  883. SEG32(ss);
  884. R32(ebx, bx);
  885. R32(ecx, cx);
  886. R32(edx, dx);
  887. R32(edi, di);
  888. R32(esi, si);
  889. R32(ebp, bp);
  890. R32(eax, ax);
  891. R32(eip, ip);
  892. R32(esp, sp);
  893. case offsetof(struct user32, regs.orig_eax):
  894. /*
  895. * Sign-extend the value so that orig_eax = -1
  896. * causes (long)orig_ax < 0 tests to fire correctly.
  897. */
  898. regs->orig_ax = (long) (s32) value;
  899. break;
  900. case offsetof(struct user32, regs.eflags):
  901. return set_flags(child, value);
  902. case offsetof(struct user32, u_debugreg[0]) ...
  903. offsetof(struct user32, u_debugreg[7]):
  904. regno -= offsetof(struct user32, u_debugreg[0]);
  905. return ptrace_set_debugreg(child, regno / 4, value);
  906. default:
  907. if (regno > sizeof(struct user32) || (regno & 3))
  908. return -EIO;
  909. /*
  910. * Other dummy fields in the virtual user structure
  911. * are ignored
  912. */
  913. break;
  914. }
  915. return 0;
  916. }
  917. #undef R32
  918. #undef SEG32
  919. #define R32(l,q) \
  920. case offsetof(struct user32, regs.l): \
  921. *val = regs->q; break
  922. #define SEG32(rs) \
  923. case offsetof(struct user32, regs.rs): \
  924. *val = get_segment_reg(child, \
  925. offsetof(struct user_regs_struct, rs)); \
  926. break
  927. static int getreg32(struct task_struct *child, unsigned regno, u32 *val)
  928. {
  929. struct pt_regs *regs = task_pt_regs(child);
  930. switch (regno) {
  931. SEG32(ds);
  932. SEG32(es);
  933. SEG32(fs);
  934. SEG32(gs);
  935. R32(cs, cs);
  936. R32(ss, ss);
  937. R32(ebx, bx);
  938. R32(ecx, cx);
  939. R32(edx, dx);
  940. R32(edi, di);
  941. R32(esi, si);
  942. R32(ebp, bp);
  943. R32(eax, ax);
  944. R32(orig_eax, orig_ax);
  945. R32(eip, ip);
  946. R32(esp, sp);
  947. case offsetof(struct user32, regs.eflags):
  948. *val = get_flags(child);
  949. break;
  950. case offsetof(struct user32, u_debugreg[0]) ...
  951. offsetof(struct user32, u_debugreg[7]):
  952. regno -= offsetof(struct user32, u_debugreg[0]);
  953. *val = ptrace_get_debugreg(child, regno / 4);
  954. break;
  955. default:
  956. if (regno > sizeof(struct user32) || (regno & 3))
  957. return -EIO;
  958. /*
  959. * Other dummy fields in the virtual user structure
  960. * are ignored
  961. */
  962. *val = 0;
  963. break;
  964. }
  965. return 0;
  966. }
  967. #undef R32
  968. #undef SEG32
  969. static int genregs32_get(struct task_struct *target,
  970. const struct user_regset *regset,
  971. unsigned int pos, unsigned int count,
  972. void *kbuf, void __user *ubuf)
  973. {
  974. if (kbuf) {
  975. compat_ulong_t *k = kbuf;
  976. while (count > 0) {
  977. getreg32(target, pos, k++);
  978. count -= sizeof(*k);
  979. pos += sizeof(*k);
  980. }
  981. } else {
  982. compat_ulong_t __user *u = ubuf;
  983. while (count > 0) {
  984. compat_ulong_t word;
  985. getreg32(target, pos, &word);
  986. if (__put_user(word, u++))
  987. return -EFAULT;
  988. count -= sizeof(*u);
  989. pos += sizeof(*u);
  990. }
  991. }
  992. return 0;
  993. }
  994. static int genregs32_set(struct task_struct *target,
  995. const struct user_regset *regset,
  996. unsigned int pos, unsigned int count,
  997. const void *kbuf, const void __user *ubuf)
  998. {
  999. int ret = 0;
  1000. if (kbuf) {
  1001. const compat_ulong_t *k = kbuf;
  1002. while (count > 0 && !ret) {
  1003. ret = putreg32(target, pos, *k++);
  1004. count -= sizeof(*k);
  1005. pos += sizeof(*k);
  1006. }
  1007. } else {
  1008. const compat_ulong_t __user *u = ubuf;
  1009. while (count > 0 && !ret) {
  1010. compat_ulong_t word;
  1011. ret = __get_user(word, u++);
  1012. if (ret)
  1013. break;
  1014. ret = putreg32(target, pos, word);
  1015. count -= sizeof(*u);
  1016. pos += sizeof(*u);
  1017. }
  1018. }
  1019. return ret;
  1020. }
  1021. long compat_arch_ptrace(struct task_struct *child, compat_long_t request,
  1022. compat_ulong_t caddr, compat_ulong_t cdata)
  1023. {
  1024. unsigned long addr = caddr;
  1025. unsigned long data = cdata;
  1026. void __user *datap = compat_ptr(data);
  1027. int ret;
  1028. __u32 val;
  1029. switch (request) {
  1030. case PTRACE_PEEKUSR:
  1031. ret = getreg32(child, addr, &val);
  1032. if (ret == 0)
  1033. ret = put_user(val, (__u32 __user *)datap);
  1034. break;
  1035. case PTRACE_POKEUSR:
  1036. ret = putreg32(child, addr, data);
  1037. break;
  1038. case PTRACE_GETREGS: /* Get all gp regs from the child. */
  1039. return copy_regset_to_user(child, &user_x86_32_view,
  1040. REGSET_GENERAL,
  1041. 0, sizeof(struct user_regs_struct32),
  1042. datap);
  1043. case PTRACE_SETREGS: /* Set all gp regs in the child. */
  1044. return copy_regset_from_user(child, &user_x86_32_view,
  1045. REGSET_GENERAL, 0,
  1046. sizeof(struct user_regs_struct32),
  1047. datap);
  1048. case PTRACE_GETFPREGS: /* Get the child FPU state. */
  1049. return copy_regset_to_user(child, &user_x86_32_view,
  1050. REGSET_FP, 0,
  1051. sizeof(struct user_i387_ia32_struct),
  1052. datap);
  1053. case PTRACE_SETFPREGS: /* Set the child FPU state. */
  1054. return copy_regset_from_user(
  1055. child, &user_x86_32_view, REGSET_FP,
  1056. 0, sizeof(struct user_i387_ia32_struct), datap);
  1057. case PTRACE_GETFPXREGS: /* Get the child extended FPU state. */
  1058. return copy_regset_to_user(child, &user_x86_32_view,
  1059. REGSET_XFP, 0,
  1060. sizeof(struct user32_fxsr_struct),
  1061. datap);
  1062. case PTRACE_SETFPXREGS: /* Set the child extended FPU state. */
  1063. return copy_regset_from_user(child, &user_x86_32_view,
  1064. REGSET_XFP, 0,
  1065. sizeof(struct user32_fxsr_struct),
  1066. datap);
  1067. case PTRACE_GET_THREAD_AREA:
  1068. case PTRACE_SET_THREAD_AREA:
  1069. #ifdef CONFIG_X86_PTRACE_BTS
  1070. case PTRACE_BTS_CONFIG:
  1071. case PTRACE_BTS_STATUS:
  1072. case PTRACE_BTS_SIZE:
  1073. case PTRACE_BTS_GET:
  1074. case PTRACE_BTS_CLEAR:
  1075. case PTRACE_BTS_DRAIN:
  1076. #endif /* CONFIG_X86_PTRACE_BTS */
  1077. return arch_ptrace(child, request, addr, data);
  1078. default:
  1079. return compat_ptrace_request(child, request, addr, data);
  1080. }
  1081. return ret;
  1082. }
  1083. #endif /* CONFIG_IA32_EMULATION */
  1084. #ifdef CONFIG_X86_64
  1085. static const struct user_regset x86_64_regsets[] = {
  1086. [REGSET_GENERAL] = {
  1087. .core_note_type = NT_PRSTATUS,
  1088. .n = sizeof(struct user_regs_struct) / sizeof(long),
  1089. .size = sizeof(long), .align = sizeof(long),
  1090. .get = genregs_get, .set = genregs_set
  1091. },
  1092. [REGSET_FP] = {
  1093. .core_note_type = NT_PRFPREG,
  1094. .n = sizeof(struct user_i387_struct) / sizeof(long),
  1095. .size = sizeof(long), .align = sizeof(long),
  1096. .active = xfpregs_active, .get = xfpregs_get, .set = xfpregs_set
  1097. },
  1098. [REGSET_IOPERM64] = {
  1099. .core_note_type = NT_386_IOPERM,
  1100. .n = IO_BITMAP_LONGS,
  1101. .size = sizeof(long), .align = sizeof(long),
  1102. .active = ioperm_active, .get = ioperm_get
  1103. },
  1104. };
  1105. static const struct user_regset_view user_x86_64_view = {
  1106. .name = "x86_64", .e_machine = EM_X86_64,
  1107. .regsets = x86_64_regsets, .n = ARRAY_SIZE(x86_64_regsets)
  1108. };
  1109. #else /* CONFIG_X86_32 */
  1110. #define user_regs_struct32 user_regs_struct
  1111. #define genregs32_get genregs_get
  1112. #define genregs32_set genregs_set
  1113. #define user_i387_ia32_struct user_i387_struct
  1114. #define user32_fxsr_struct user_fxsr_struct
  1115. #endif /* CONFIG_X86_64 */
  1116. #if defined CONFIG_X86_32 || defined CONFIG_IA32_EMULATION
  1117. static const struct user_regset x86_32_regsets[] = {
  1118. [REGSET_GENERAL] = {
  1119. .core_note_type = NT_PRSTATUS,
  1120. .n = sizeof(struct user_regs_struct32) / sizeof(u32),
  1121. .size = sizeof(u32), .align = sizeof(u32),
  1122. .get = genregs32_get, .set = genregs32_set
  1123. },
  1124. [REGSET_FP] = {
  1125. .core_note_type = NT_PRFPREG,
  1126. .n = sizeof(struct user_i387_ia32_struct) / sizeof(u32),
  1127. .size = sizeof(u32), .align = sizeof(u32),
  1128. .active = fpregs_active, .get = fpregs_get, .set = fpregs_set
  1129. },
  1130. [REGSET_XFP] = {
  1131. .core_note_type = NT_PRXFPREG,
  1132. .n = sizeof(struct user32_fxsr_struct) / sizeof(u32),
  1133. .size = sizeof(u32), .align = sizeof(u32),
  1134. .active = xfpregs_active, .get = xfpregs_get, .set = xfpregs_set
  1135. },
  1136. [REGSET_TLS] = {
  1137. .core_note_type = NT_386_TLS,
  1138. .n = GDT_ENTRY_TLS_ENTRIES, .bias = GDT_ENTRY_TLS_MIN,
  1139. .size = sizeof(struct user_desc),
  1140. .align = sizeof(struct user_desc),
  1141. .active = regset_tls_active,
  1142. .get = regset_tls_get, .set = regset_tls_set
  1143. },
  1144. [REGSET_IOPERM32] = {
  1145. .core_note_type = NT_386_IOPERM,
  1146. .n = IO_BITMAP_BYTES / sizeof(u32),
  1147. .size = sizeof(u32), .align = sizeof(u32),
  1148. .active = ioperm_active, .get = ioperm_get
  1149. },
  1150. };
  1151. static const struct user_regset_view user_x86_32_view = {
  1152. .name = "i386", .e_machine = EM_386,
  1153. .regsets = x86_32_regsets, .n = ARRAY_SIZE(x86_32_regsets)
  1154. };
  1155. #endif
  1156. const struct user_regset_view *task_user_regset_view(struct task_struct *task)
  1157. {
  1158. #ifdef CONFIG_IA32_EMULATION
  1159. if (test_tsk_thread_flag(task, TIF_IA32))
  1160. #endif
  1161. #if defined CONFIG_X86_32 || defined CONFIG_IA32_EMULATION
  1162. return &user_x86_32_view;
  1163. #endif
  1164. #ifdef CONFIG_X86_64
  1165. return &user_x86_64_view;
  1166. #endif
  1167. }
  1168. void send_sigtrap(struct task_struct *tsk, struct pt_regs *regs,
  1169. int error_code, int si_code)
  1170. {
  1171. struct siginfo info;
  1172. tsk->thread.trap_no = 1;
  1173. tsk->thread.error_code = error_code;
  1174. memset(&info, 0, sizeof(info));
  1175. info.si_signo = SIGTRAP;
  1176. info.si_code = si_code;
  1177. /* User-mode ip? */
  1178. info.si_addr = user_mode_vm(regs) ? (void __user *) regs->ip : NULL;
  1179. /* Send us the fake SIGTRAP */
  1180. force_sig_info(SIGTRAP, &info, tsk);
  1181. }
  1182. #ifdef CONFIG_X86_32
  1183. # define IS_IA32 1
  1184. #elif defined CONFIG_IA32_EMULATION
  1185. # define IS_IA32 test_thread_flag(TIF_IA32)
  1186. #else
  1187. # define IS_IA32 0
  1188. #endif
  1189. /*
  1190. * We must return the syscall number to actually look up in the table.
  1191. * This can be -1L to skip running any syscall at all.
  1192. */
  1193. asmregparm long syscall_trace_enter(struct pt_regs *regs)
  1194. {
  1195. long ret = 0;
  1196. /*
  1197. * If we stepped into a sysenter/syscall insn, it trapped in
  1198. * kernel mode; do_debug() cleared TF and set TIF_SINGLESTEP.
  1199. * If user-mode had set TF itself, then it's still clear from
  1200. * do_debug() and we need to set it again to restore the user
  1201. * state. If we entered on the slow path, TF was already set.
  1202. */
  1203. if (test_thread_flag(TIF_SINGLESTEP))
  1204. regs->flags |= X86_EFLAGS_TF;
  1205. /* do the secure computing check first */
  1206. secure_computing(regs->orig_ax);
  1207. if (unlikely(test_thread_flag(TIF_SYSCALL_EMU)))
  1208. ret = -1L;
  1209. if ((ret || test_thread_flag(TIF_SYSCALL_TRACE)) &&
  1210. tracehook_report_syscall_entry(regs))
  1211. ret = -1L;
  1212. if (unlikely(current->audit_context)) {
  1213. if (IS_IA32)
  1214. audit_syscall_entry(AUDIT_ARCH_I386,
  1215. regs->orig_ax,
  1216. regs->bx, regs->cx,
  1217. regs->dx, regs->si);
  1218. #ifdef CONFIG_X86_64
  1219. else
  1220. audit_syscall_entry(AUDIT_ARCH_X86_64,
  1221. regs->orig_ax,
  1222. regs->di, regs->si,
  1223. regs->dx, regs->r10);
  1224. #endif
  1225. }
  1226. return ret ?: regs->orig_ax;
  1227. }
  1228. asmregparm void syscall_trace_leave(struct pt_regs *regs)
  1229. {
  1230. if (unlikely(current->audit_context))
  1231. audit_syscall_exit(AUDITSC_RESULT(regs->ax), regs->ax);
  1232. if (test_thread_flag(TIF_SYSCALL_TRACE))
  1233. tracehook_report_syscall_exit(regs, 0);
  1234. /*
  1235. * If TIF_SYSCALL_EMU is set, we only get here because of
  1236. * TIF_SINGLESTEP (i.e. this is PTRACE_SYSEMU_SINGLESTEP).
  1237. * We already reported this syscall instruction in
  1238. * syscall_trace_enter(), so don't do any more now.
  1239. */
  1240. if (unlikely(test_thread_flag(TIF_SYSCALL_EMU)))
  1241. return;
  1242. /*
  1243. * If we are single-stepping, synthesize a trap to follow the
  1244. * system call instruction.
  1245. */
  1246. if (test_thread_flag(TIF_SINGLESTEP) &&
  1247. tracehook_consider_fatal_signal(current, SIGTRAP, SIG_DFL))
  1248. send_sigtrap(current, regs, 0, TRAP_BRKPT);
  1249. }