ptrace.c 12 KB

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  1. /*
  2. * File: arch/blackfin/kernel/ptrace.c
  3. * Based on: Taken from linux/kernel/ptrace.c
  4. * Author: linux/kernel/ptrace.c is by Ross Biro 1/23/92, edited by Linus Torvalds
  5. *
  6. * Created: 1/23/92
  7. * Description:
  8. *
  9. * Modified:
  10. * Copyright 2004-2006 Analog Devices Inc.
  11. *
  12. * Bugs: Enter bugs at http://blackfin.uclinux.org/
  13. *
  14. * This program is free software; you can redistribute it and/or modify
  15. * it under the terms of the GNU General Public License as published by
  16. * the Free Software Foundation; either version 2 of the License, or
  17. * (at your option) any later version.
  18. *
  19. * This program is distributed in the hope that it will be useful,
  20. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  21. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  22. * GNU General Public License for more details.
  23. *
  24. * You should have received a copy of the GNU General Public License
  25. * along with this program; if not, see the file COPYING, or write
  26. * to the Free Software Foundation, Inc.,
  27. * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  28. */
  29. #include <linux/kernel.h>
  30. #include <linux/sched.h>
  31. #include <linux/mm.h>
  32. #include <linux/smp.h>
  33. #include <linux/smp_lock.h>
  34. #include <linux/errno.h>
  35. #include <linux/ptrace.h>
  36. #include <linux/user.h>
  37. #include <linux/signal.h>
  38. #include <linux/uaccess.h>
  39. #include <asm/page.h>
  40. #include <asm/pgtable.h>
  41. #include <asm/system.h>
  42. #include <asm/processor.h>
  43. #include <asm/asm-offsets.h>
  44. #include <asm/dma.h>
  45. #include <asm/fixed_code.h>
  46. #define TEXT_OFFSET 0
  47. /*
  48. * does not yet catch signals sent when the child dies.
  49. * in exit.c or in signal.c.
  50. */
  51. /* determines which bits in the SYSCFG reg the user has access to. */
  52. /* 1 = access 0 = no access */
  53. #define SYSCFG_MASK 0x0007 /* SYSCFG reg */
  54. /* sets the trace bits. */
  55. #define TRACE_BITS 0x0001
  56. /* Find the stack offset for a register, relative to thread.esp0. */
  57. #define PT_REG(reg) ((long)&((struct pt_regs *)0)->reg)
  58. /*
  59. * Get the address of the live pt_regs for the specified task.
  60. * These are saved onto the top kernel stack when the process
  61. * is not running.
  62. *
  63. * Note: if a user thread is execve'd from kernel space, the
  64. * kernel stack will not be empty on entry to the kernel, so
  65. * ptracing these tasks will fail.
  66. */
  67. static inline struct pt_regs *get_user_regs(struct task_struct *task)
  68. {
  69. return (struct pt_regs *)
  70. ((unsigned long)task_stack_page(task) +
  71. (THREAD_SIZE - sizeof(struct pt_regs)));
  72. }
  73. /*
  74. * Get all user integer registers.
  75. */
  76. static inline int ptrace_getregs(struct task_struct *tsk, void __user * uregs)
  77. {
  78. struct pt_regs *regs = get_user_regs(tsk);
  79. return copy_to_user(uregs, regs, sizeof(struct pt_regs)) ? -EFAULT : 0;
  80. }
  81. /* Mapping from PT_xxx to the stack offset at which the register is
  82. * saved. Notice that usp has no stack-slot and needs to be treated
  83. * specially (see get_reg/put_reg below).
  84. */
  85. /*
  86. * Get contents of register REGNO in task TASK.
  87. */
  88. static inline long get_reg(struct task_struct *task, int regno)
  89. {
  90. unsigned char *reg_ptr;
  91. struct pt_regs *regs =
  92. (struct pt_regs *)((unsigned long)task_stack_page(task) +
  93. (THREAD_SIZE - sizeof(struct pt_regs)));
  94. reg_ptr = (char *)regs;
  95. switch (regno) {
  96. case PT_USP:
  97. return task->thread.usp;
  98. default:
  99. if (regno <= 216)
  100. return *(long *)(reg_ptr + regno);
  101. }
  102. /* slight mystery ... never seems to come here but kernel misbehaves without this code! */
  103. printk(KERN_WARNING "Request to get for unknown register %d\n", regno);
  104. return 0;
  105. }
  106. /*
  107. * Write contents of register REGNO in task TASK.
  108. */
  109. static inline int
  110. put_reg(struct task_struct *task, int regno, unsigned long data)
  111. {
  112. char *reg_ptr;
  113. struct pt_regs *regs =
  114. (struct pt_regs *)((unsigned long)task_stack_page(task) +
  115. (THREAD_SIZE - sizeof(struct pt_regs)));
  116. reg_ptr = (char *)regs;
  117. switch (regno) {
  118. case PT_PC:
  119. /*********************************************************************/
  120. /* At this point the kernel is most likely in exception. */
  121. /* The RETX register will be used to populate the pc of the process. */
  122. /*********************************************************************/
  123. regs->retx = data;
  124. regs->pc = data;
  125. break;
  126. case PT_RETX:
  127. break; /* regs->retx = data; break; */
  128. case PT_USP:
  129. regs->usp = data;
  130. task->thread.usp = data;
  131. break;
  132. default:
  133. if (regno <= 216)
  134. *(long *)(reg_ptr + regno) = data;
  135. }
  136. return 0;
  137. }
  138. /*
  139. * check that an address falls within the bounds of the target process's memory mappings
  140. */
  141. static inline int is_user_addr_valid(struct task_struct *child,
  142. unsigned long start, unsigned long len)
  143. {
  144. struct vm_list_struct *vml;
  145. struct sram_list_struct *sraml;
  146. /* overflow */
  147. if (start + len < start)
  148. return -EIO;
  149. for (vml = child->mm->context.vmlist; vml; vml = vml->next)
  150. if (start >= vml->vma->vm_start && start + len < vml->vma->vm_end)
  151. return 0;
  152. for (sraml = child->mm->context.sram_list; sraml; sraml = sraml->next)
  153. if (start >= (unsigned long)sraml->addr
  154. && start + len < (unsigned long)sraml->addr + sraml->length)
  155. return 0;
  156. if (start >= FIXED_CODE_START && start + len < FIXED_CODE_END)
  157. return 0;
  158. return -EIO;
  159. }
  160. void ptrace_enable(struct task_struct *child)
  161. {
  162. unsigned long tmp;
  163. tmp = get_reg(child, PT_SYSCFG) | (TRACE_BITS);
  164. put_reg(child, PT_SYSCFG, tmp);
  165. }
  166. /*
  167. * Called by kernel/ptrace.c when detaching..
  168. *
  169. * Make sure the single step bit is not set.
  170. */
  171. void ptrace_disable(struct task_struct *child)
  172. {
  173. unsigned long tmp;
  174. /* make sure the single step bit is not set. */
  175. tmp = get_reg(child, PT_SYSCFG) & ~TRACE_BITS;
  176. put_reg(child, PT_SYSCFG, tmp);
  177. }
  178. long arch_ptrace(struct task_struct *child, long request, long addr, long data)
  179. {
  180. int ret;
  181. unsigned long __user *datap = (unsigned long __user *)data;
  182. switch (request) {
  183. /* when I and D space are separate, these will need to be fixed. */
  184. case PTRACE_PEEKDATA:
  185. pr_debug("ptrace: PEEKDATA\n");
  186. /* fall through */
  187. case PTRACE_PEEKTEXT: /* read word at location addr. */
  188. {
  189. unsigned long tmp = 0;
  190. int copied;
  191. ret = -EIO;
  192. pr_debug("ptrace: PEEKTEXT at addr 0x%08lx + %ld\n", addr, sizeof(data));
  193. if (is_user_addr_valid(child, addr, sizeof(tmp)) < 0)
  194. break;
  195. pr_debug("ptrace: user address is valid\n");
  196. if (L1_CODE_LENGTH != 0 && addr >= L1_CODE_START
  197. && addr + sizeof(tmp) <= L1_CODE_START + L1_CODE_LENGTH) {
  198. safe_dma_memcpy (&tmp, (const void *)(addr), sizeof(tmp));
  199. copied = sizeof(tmp);
  200. } else if (L1_DATA_A_LENGTH != 0 && addr >= L1_DATA_A_START
  201. && addr + sizeof(tmp) <= L1_DATA_A_START + L1_DATA_A_LENGTH) {
  202. memcpy(&tmp, (const void *)(addr), sizeof(tmp));
  203. copied = sizeof(tmp);
  204. } else if (L1_DATA_B_LENGTH != 0 && addr >= L1_DATA_B_START
  205. && addr + sizeof(tmp) <= L1_DATA_B_START + L1_DATA_B_LENGTH) {
  206. memcpy(&tmp, (const void *)(addr), sizeof(tmp));
  207. copied = sizeof(tmp);
  208. } else if (addr >= FIXED_CODE_START
  209. && addr + sizeof(tmp) <= FIXED_CODE_END) {
  210. memcpy(&tmp, (const void *)(addr), sizeof(tmp));
  211. copied = sizeof(tmp);
  212. } else
  213. copied = access_process_vm(child, addr, &tmp,
  214. sizeof(tmp), 0);
  215. pr_debug("ptrace: copied size %d [0x%08lx]\n", copied, tmp);
  216. if (copied != sizeof(tmp))
  217. break;
  218. ret = put_user(tmp, datap);
  219. break;
  220. }
  221. /* read the word at location addr in the USER area. */
  222. case PTRACE_PEEKUSR:
  223. {
  224. unsigned long tmp;
  225. ret = -EIO;
  226. tmp = 0;
  227. if ((addr & 3) || (addr > (sizeof(struct pt_regs) + 16))) {
  228. printk(KERN_WARNING "ptrace error : PEEKUSR : temporarily returning "
  229. "0 - %x sizeof(pt_regs) is %lx\n",
  230. (int)addr, sizeof(struct pt_regs));
  231. break;
  232. }
  233. if (addr == sizeof(struct pt_regs)) {
  234. /* PT_TEXT_ADDR */
  235. tmp = child->mm->start_code + TEXT_OFFSET;
  236. } else if (addr == (sizeof(struct pt_regs) + 4)) {
  237. /* PT_TEXT_END_ADDR */
  238. tmp = child->mm->end_code;
  239. } else if (addr == (sizeof(struct pt_regs) + 8)) {
  240. /* PT_DATA_ADDR */
  241. tmp = child->mm->start_data;
  242. #ifdef CONFIG_BINFMT_ELF_FDPIC
  243. } else if (addr == (sizeof(struct pt_regs) + 12)) {
  244. tmp = child->mm->context.exec_fdpic_loadmap;
  245. } else if (addr == (sizeof(struct pt_regs) + 16)) {
  246. tmp = child->mm->context.interp_fdpic_loadmap;
  247. #endif
  248. } else {
  249. tmp = get_reg(child, addr);
  250. }
  251. ret = put_user(tmp, datap);
  252. break;
  253. }
  254. /* when I and D space are separate, this will have to be fixed. */
  255. case PTRACE_POKEDATA:
  256. pr_debug("ptrace: PTRACE_PEEKDATA\n");
  257. /* fall through */
  258. case PTRACE_POKETEXT: /* write the word at location addr. */
  259. {
  260. int copied;
  261. ret = -EIO;
  262. pr_debug("ptrace: POKETEXT at addr 0x%08lx + %ld bytes %lx\n",
  263. addr, sizeof(data), data);
  264. if (is_user_addr_valid(child, addr, sizeof(data)) < 0)
  265. break;
  266. pr_debug("ptrace: user address is valid\n");
  267. if (L1_CODE_LENGTH != 0 && addr >= L1_CODE_START
  268. && addr + sizeof(data) <= L1_CODE_START + L1_CODE_LENGTH) {
  269. safe_dma_memcpy ((void *)(addr), &data, sizeof(data));
  270. copied = sizeof(data);
  271. } else if (L1_DATA_A_LENGTH != 0 && addr >= L1_DATA_A_START
  272. && addr + sizeof(data) <= L1_DATA_A_START + L1_DATA_A_LENGTH) {
  273. memcpy((void *)(addr), &data, sizeof(data));
  274. copied = sizeof(data);
  275. } else if (L1_DATA_B_LENGTH != 0 && addr >= L1_DATA_B_START
  276. && addr + sizeof(data) <= L1_DATA_B_START + L1_DATA_B_LENGTH) {
  277. memcpy((void *)(addr), &data, sizeof(data));
  278. copied = sizeof(data);
  279. } else if (addr >= FIXED_CODE_START
  280. && addr + sizeof(data) <= FIXED_CODE_END) {
  281. memcpy((void *)(addr), &data, sizeof(data));
  282. copied = sizeof(data);
  283. } else
  284. copied = access_process_vm(child, addr, &data,
  285. sizeof(data), 1);
  286. pr_debug("ptrace: copied size %d\n", copied);
  287. if (copied != sizeof(data))
  288. break;
  289. ret = 0;
  290. break;
  291. }
  292. case PTRACE_POKEUSR: /* write the word at location addr in the USER area */
  293. ret = -EIO;
  294. if ((addr & 3) || (addr > (sizeof(struct pt_regs) + 16))) {
  295. printk(KERN_WARNING "ptrace error : POKEUSR: temporarily returning 0\n");
  296. break;
  297. }
  298. if (addr >= (sizeof(struct pt_regs))) {
  299. ret = 0;
  300. break;
  301. }
  302. if (addr == PT_SYSCFG) {
  303. data &= SYSCFG_MASK;
  304. data |= get_reg(child, PT_SYSCFG);
  305. }
  306. ret = put_reg(child, addr, data);
  307. break;
  308. case PTRACE_SYSCALL: /* continue and stop at next (return from) syscall */
  309. case PTRACE_CONT: /* restart after signal. */
  310. pr_debug("ptrace: syscall/cont\n");
  311. ret = -EIO;
  312. if (!valid_signal(data))
  313. break;
  314. if (request == PTRACE_SYSCALL)
  315. set_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
  316. else
  317. clear_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
  318. child->exit_code = data;
  319. ptrace_disable(child);
  320. pr_debug("ptrace: before wake_up_process\n");
  321. wake_up_process(child);
  322. ret = 0;
  323. break;
  324. /*
  325. * make the child exit. Best I can do is send it a sigkill.
  326. * perhaps it should be put in the status that it wants to
  327. * exit.
  328. */
  329. case PTRACE_KILL:
  330. ret = 0;
  331. if (child->exit_state == EXIT_ZOMBIE) /* already dead */
  332. break;
  333. child->exit_code = SIGKILL;
  334. ptrace_disable(child);
  335. wake_up_process(child);
  336. break;
  337. case PTRACE_SINGLESTEP: /* set the trap flag. */
  338. pr_debug("ptrace: single step\n");
  339. ret = -EIO;
  340. if (!valid_signal(data))
  341. break;
  342. clear_tsk_thread_flag(child, TIF_SYSCALL_TRACE);
  343. ptrace_enable(child);
  344. child->exit_code = data;
  345. wake_up_process(child);
  346. ret = 0;
  347. break;
  348. case PTRACE_GETREGS:
  349. /* Get all gp regs from the child. */
  350. ret = ptrace_getregs(child, datap);
  351. break;
  352. case PTRACE_SETREGS:
  353. printk(KERN_WARNING "ptrace: SETREGS: **** NOT IMPLEMENTED ***\n");
  354. /* Set all gp regs in the child. */
  355. ret = 0;
  356. break;
  357. default:
  358. ret = ptrace_request(child, request, addr, data);
  359. break;
  360. }
  361. return ret;
  362. }
  363. asmlinkage void syscall_trace(void)
  364. {
  365. if (!test_thread_flag(TIF_SYSCALL_TRACE))
  366. return;
  367. if (!(current->ptrace & PT_PTRACED))
  368. return;
  369. /* the 0x80 provides a way for the tracing parent to distinguish
  370. * between a syscall stop and SIGTRAP delivery
  371. */
  372. ptrace_notify(SIGTRAP | ((current->ptrace & PT_TRACESYSGOOD)
  373. ? 0x80 : 0));
  374. /*
  375. * this isn't the same as continuing with a signal, but it will do
  376. * for normal use. strace only continues with a signal if the
  377. * stopping signal is not SIGTRAP. -brl
  378. */
  379. if (current->exit_code) {
  380. send_sig(current->exit_code, current, 1);
  381. current->exit_code = 0;
  382. }
  383. }