compat.c 56 KB

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  1. /*
  2. * linux/fs/compat.c
  3. *
  4. * Kernel compatibililty routines for e.g. 32 bit syscall support
  5. * on 64 bit kernels.
  6. *
  7. * Copyright (C) 2002 Stephen Rothwell, IBM Corporation
  8. * Copyright (C) 1997-2000 Jakub Jelinek (jakub@redhat.com)
  9. * Copyright (C) 1998 Eddie C. Dost (ecd@skynet.be)
  10. * Copyright (C) 2001,2002 Andi Kleen, SuSE Labs
  11. * Copyright (C) 2003 Pavel Machek (pavel@suse.cz)
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License version 2 as
  15. * published by the Free Software Foundation.
  16. */
  17. #include <linux/linkage.h>
  18. #include <linux/compat.h>
  19. #include <linux/errno.h>
  20. #include <linux/time.h>
  21. #include <linux/fs.h>
  22. #include <linux/fcntl.h>
  23. #include <linux/namei.h>
  24. #include <linux/file.h>
  25. #include <linux/vfs.h>
  26. #include <linux/ioctl32.h>
  27. #include <linux/ioctl.h>
  28. #include <linux/init.h>
  29. #include <linux/sockios.h> /* for SIOCDEVPRIVATE */
  30. #include <linux/smb.h>
  31. #include <linux/smb_mount.h>
  32. #include <linux/ncp_mount.h>
  33. #include <linux/nfs4_mount.h>
  34. #include <linux/smp_lock.h>
  35. #include <linux/syscalls.h>
  36. #include <linux/ctype.h>
  37. #include <linux/module.h>
  38. #include <linux/dirent.h>
  39. #include <linux/fsnotify.h>
  40. #include <linux/highuid.h>
  41. #include <linux/sunrpc/svc.h>
  42. #include <linux/nfsd/nfsd.h>
  43. #include <linux/nfsd/syscall.h>
  44. #include <linux/personality.h>
  45. #include <linux/rwsem.h>
  46. #include <linux/tsacct_kern.h>
  47. #include <linux/highmem.h>
  48. #include <linux/poll.h>
  49. #include <linux/mm.h>
  50. #include <linux/eventpoll.h>
  51. #include <net/sock.h> /* siocdevprivate_ioctl */
  52. #include <asm/uaccess.h>
  53. #include <asm/mmu_context.h>
  54. #include <asm/ioctls.h>
  55. #include "internal.h"
  56. int compat_log = 1;
  57. int compat_printk(const char *fmt, ...)
  58. {
  59. va_list ap;
  60. int ret;
  61. if (!compat_log)
  62. return 0;
  63. va_start(ap, fmt);
  64. ret = vprintk(fmt, ap);
  65. va_end(ap);
  66. return ret;
  67. }
  68. #include "read_write.h"
  69. /*
  70. * Not all architectures have sys_utime, so implement this in terms
  71. * of sys_utimes.
  72. */
  73. asmlinkage long compat_sys_utime(char __user *filename, struct compat_utimbuf __user *t)
  74. {
  75. struct timeval tv[2];
  76. if (t) {
  77. if (get_user(tv[0].tv_sec, &t->actime) ||
  78. get_user(tv[1].tv_sec, &t->modtime))
  79. return -EFAULT;
  80. tv[0].tv_usec = 0;
  81. tv[1].tv_usec = 0;
  82. }
  83. return do_utimes(AT_FDCWD, filename, t ? tv : NULL);
  84. }
  85. asmlinkage long compat_sys_futimesat(unsigned int dfd, char __user *filename, struct compat_timeval __user *t)
  86. {
  87. struct timeval tv[2];
  88. if (t) {
  89. if (get_user(tv[0].tv_sec, &t[0].tv_sec) ||
  90. get_user(tv[0].tv_usec, &t[0].tv_usec) ||
  91. get_user(tv[1].tv_sec, &t[1].tv_sec) ||
  92. get_user(tv[1].tv_usec, &t[1].tv_usec))
  93. return -EFAULT;
  94. }
  95. return do_utimes(dfd, filename, t ? tv : NULL);
  96. }
  97. asmlinkage long compat_sys_utimes(char __user *filename, struct compat_timeval __user *t)
  98. {
  99. return compat_sys_futimesat(AT_FDCWD, filename, t);
  100. }
  101. asmlinkage long compat_sys_newstat(char __user * filename,
  102. struct compat_stat __user *statbuf)
  103. {
  104. struct kstat stat;
  105. int error = vfs_stat_fd(AT_FDCWD, filename, &stat);
  106. if (!error)
  107. error = cp_compat_stat(&stat, statbuf);
  108. return error;
  109. }
  110. asmlinkage long compat_sys_newlstat(char __user * filename,
  111. struct compat_stat __user *statbuf)
  112. {
  113. struct kstat stat;
  114. int error = vfs_lstat_fd(AT_FDCWD, filename, &stat);
  115. if (!error)
  116. error = cp_compat_stat(&stat, statbuf);
  117. return error;
  118. }
  119. #ifndef __ARCH_WANT_STAT64
  120. asmlinkage long compat_sys_newfstatat(unsigned int dfd, char __user *filename,
  121. struct compat_stat __user *statbuf, int flag)
  122. {
  123. struct kstat stat;
  124. int error = -EINVAL;
  125. if ((flag & ~AT_SYMLINK_NOFOLLOW) != 0)
  126. goto out;
  127. if (flag & AT_SYMLINK_NOFOLLOW)
  128. error = vfs_lstat_fd(dfd, filename, &stat);
  129. else
  130. error = vfs_stat_fd(dfd, filename, &stat);
  131. if (!error)
  132. error = cp_compat_stat(&stat, statbuf);
  133. out:
  134. return error;
  135. }
  136. #endif
  137. asmlinkage long compat_sys_newfstat(unsigned int fd,
  138. struct compat_stat __user * statbuf)
  139. {
  140. struct kstat stat;
  141. int error = vfs_fstat(fd, &stat);
  142. if (!error)
  143. error = cp_compat_stat(&stat, statbuf);
  144. return error;
  145. }
  146. static int put_compat_statfs(struct compat_statfs __user *ubuf, struct kstatfs *kbuf)
  147. {
  148. if (sizeof ubuf->f_blocks == 4) {
  149. if ((kbuf->f_blocks | kbuf->f_bfree | kbuf->f_bavail) &
  150. 0xffffffff00000000ULL)
  151. return -EOVERFLOW;
  152. /* f_files and f_ffree may be -1; it's okay
  153. * to stuff that into 32 bits */
  154. if (kbuf->f_files != 0xffffffffffffffffULL
  155. && (kbuf->f_files & 0xffffffff00000000ULL))
  156. return -EOVERFLOW;
  157. if (kbuf->f_ffree != 0xffffffffffffffffULL
  158. && (kbuf->f_ffree & 0xffffffff00000000ULL))
  159. return -EOVERFLOW;
  160. }
  161. if (!access_ok(VERIFY_WRITE, ubuf, sizeof(*ubuf)) ||
  162. __put_user(kbuf->f_type, &ubuf->f_type) ||
  163. __put_user(kbuf->f_bsize, &ubuf->f_bsize) ||
  164. __put_user(kbuf->f_blocks, &ubuf->f_blocks) ||
  165. __put_user(kbuf->f_bfree, &ubuf->f_bfree) ||
  166. __put_user(kbuf->f_bavail, &ubuf->f_bavail) ||
  167. __put_user(kbuf->f_files, &ubuf->f_files) ||
  168. __put_user(kbuf->f_ffree, &ubuf->f_ffree) ||
  169. __put_user(kbuf->f_namelen, &ubuf->f_namelen) ||
  170. __put_user(kbuf->f_fsid.val[0], &ubuf->f_fsid.val[0]) ||
  171. __put_user(kbuf->f_fsid.val[1], &ubuf->f_fsid.val[1]) ||
  172. __put_user(kbuf->f_frsize, &ubuf->f_frsize) ||
  173. __put_user(0, &ubuf->f_spare[0]) ||
  174. __put_user(0, &ubuf->f_spare[1]) ||
  175. __put_user(0, &ubuf->f_spare[2]) ||
  176. __put_user(0, &ubuf->f_spare[3]) ||
  177. __put_user(0, &ubuf->f_spare[4]))
  178. return -EFAULT;
  179. return 0;
  180. }
  181. /*
  182. * The following statfs calls are copies of code from fs/open.c and
  183. * should be checked against those from time to time
  184. */
  185. asmlinkage long compat_sys_statfs(const char __user *path, struct compat_statfs __user *buf)
  186. {
  187. struct nameidata nd;
  188. int error;
  189. error = user_path_walk(path, &nd);
  190. if (!error) {
  191. struct kstatfs tmp;
  192. error = vfs_statfs(nd.dentry, &tmp);
  193. if (!error)
  194. error = put_compat_statfs(buf, &tmp);
  195. path_release(&nd);
  196. }
  197. return error;
  198. }
  199. asmlinkage long compat_sys_fstatfs(unsigned int fd, struct compat_statfs __user *buf)
  200. {
  201. struct file * file;
  202. struct kstatfs tmp;
  203. int error;
  204. error = -EBADF;
  205. file = fget(fd);
  206. if (!file)
  207. goto out;
  208. error = vfs_statfs(file->f_path.dentry, &tmp);
  209. if (!error)
  210. error = put_compat_statfs(buf, &tmp);
  211. fput(file);
  212. out:
  213. return error;
  214. }
  215. static int put_compat_statfs64(struct compat_statfs64 __user *ubuf, struct kstatfs *kbuf)
  216. {
  217. if (sizeof ubuf->f_blocks == 4) {
  218. if ((kbuf->f_blocks | kbuf->f_bfree | kbuf->f_bavail) &
  219. 0xffffffff00000000ULL)
  220. return -EOVERFLOW;
  221. /* f_files and f_ffree may be -1; it's okay
  222. * to stuff that into 32 bits */
  223. if (kbuf->f_files != 0xffffffffffffffffULL
  224. && (kbuf->f_files & 0xffffffff00000000ULL))
  225. return -EOVERFLOW;
  226. if (kbuf->f_ffree != 0xffffffffffffffffULL
  227. && (kbuf->f_ffree & 0xffffffff00000000ULL))
  228. return -EOVERFLOW;
  229. }
  230. if (!access_ok(VERIFY_WRITE, ubuf, sizeof(*ubuf)) ||
  231. __put_user(kbuf->f_type, &ubuf->f_type) ||
  232. __put_user(kbuf->f_bsize, &ubuf->f_bsize) ||
  233. __put_user(kbuf->f_blocks, &ubuf->f_blocks) ||
  234. __put_user(kbuf->f_bfree, &ubuf->f_bfree) ||
  235. __put_user(kbuf->f_bavail, &ubuf->f_bavail) ||
  236. __put_user(kbuf->f_files, &ubuf->f_files) ||
  237. __put_user(kbuf->f_ffree, &ubuf->f_ffree) ||
  238. __put_user(kbuf->f_namelen, &ubuf->f_namelen) ||
  239. __put_user(kbuf->f_fsid.val[0], &ubuf->f_fsid.val[0]) ||
  240. __put_user(kbuf->f_fsid.val[1], &ubuf->f_fsid.val[1]) ||
  241. __put_user(kbuf->f_frsize, &ubuf->f_frsize))
  242. return -EFAULT;
  243. return 0;
  244. }
  245. asmlinkage long compat_sys_statfs64(const char __user *path, compat_size_t sz, struct compat_statfs64 __user *buf)
  246. {
  247. struct nameidata nd;
  248. int error;
  249. if (sz != sizeof(*buf))
  250. return -EINVAL;
  251. error = user_path_walk(path, &nd);
  252. if (!error) {
  253. struct kstatfs tmp;
  254. error = vfs_statfs(nd.dentry, &tmp);
  255. if (!error)
  256. error = put_compat_statfs64(buf, &tmp);
  257. path_release(&nd);
  258. }
  259. return error;
  260. }
  261. asmlinkage long compat_sys_fstatfs64(unsigned int fd, compat_size_t sz, struct compat_statfs64 __user *buf)
  262. {
  263. struct file * file;
  264. struct kstatfs tmp;
  265. int error;
  266. if (sz != sizeof(*buf))
  267. return -EINVAL;
  268. error = -EBADF;
  269. file = fget(fd);
  270. if (!file)
  271. goto out;
  272. error = vfs_statfs(file->f_path.dentry, &tmp);
  273. if (!error)
  274. error = put_compat_statfs64(buf, &tmp);
  275. fput(file);
  276. out:
  277. return error;
  278. }
  279. /* ioctl32 stuff, used by sparc64, parisc, s390x, ppc64, x86_64, MIPS */
  280. #define IOCTL_HASHSIZE 256
  281. static struct ioctl_trans *ioctl32_hash_table[IOCTL_HASHSIZE];
  282. static inline unsigned long ioctl32_hash(unsigned long cmd)
  283. {
  284. return (((cmd >> 6) ^ (cmd >> 4) ^ cmd)) % IOCTL_HASHSIZE;
  285. }
  286. static void ioctl32_insert_translation(struct ioctl_trans *trans)
  287. {
  288. unsigned long hash;
  289. struct ioctl_trans *t;
  290. hash = ioctl32_hash (trans->cmd);
  291. if (!ioctl32_hash_table[hash])
  292. ioctl32_hash_table[hash] = trans;
  293. else {
  294. t = ioctl32_hash_table[hash];
  295. while (t->next)
  296. t = t->next;
  297. trans->next = NULL;
  298. t->next = trans;
  299. }
  300. }
  301. static int __init init_sys32_ioctl(void)
  302. {
  303. int i;
  304. for (i = 0; i < ioctl_table_size; i++) {
  305. if (ioctl_start[i].next != 0) {
  306. printk("ioctl translation %d bad\n",i);
  307. return -1;
  308. }
  309. ioctl32_insert_translation(&ioctl_start[i]);
  310. }
  311. return 0;
  312. }
  313. __initcall(init_sys32_ioctl);
  314. static void compat_ioctl_error(struct file *filp, unsigned int fd,
  315. unsigned int cmd, unsigned long arg)
  316. {
  317. char buf[10];
  318. char *fn = "?";
  319. char *path;
  320. /* find the name of the device. */
  321. path = (char *)__get_free_page(GFP_KERNEL);
  322. if (path) {
  323. fn = d_path(filp->f_path.dentry, filp->f_path.mnt, path, PAGE_SIZE);
  324. if (IS_ERR(fn))
  325. fn = "?";
  326. }
  327. sprintf(buf,"'%c'", (cmd>>_IOC_TYPESHIFT) & _IOC_TYPEMASK);
  328. if (!isprint(buf[1]))
  329. sprintf(buf, "%02x", buf[1]);
  330. compat_printk("ioctl32(%s:%d): Unknown cmd fd(%d) "
  331. "cmd(%08x){t:%s;sz:%u} arg(%08x) on %s\n",
  332. current->comm, current->pid,
  333. (int)fd, (unsigned int)cmd, buf,
  334. (cmd >> _IOC_SIZESHIFT) & _IOC_SIZEMASK,
  335. (unsigned int)arg, fn);
  336. if (path)
  337. free_page((unsigned long)path);
  338. }
  339. asmlinkage long compat_sys_ioctl(unsigned int fd, unsigned int cmd,
  340. unsigned long arg)
  341. {
  342. struct file *filp;
  343. int error = -EBADF;
  344. struct ioctl_trans *t;
  345. int fput_needed;
  346. filp = fget_light(fd, &fput_needed);
  347. if (!filp)
  348. goto out;
  349. /* RED-PEN how should LSM module know it's handling 32bit? */
  350. error = security_file_ioctl(filp, cmd, arg);
  351. if (error)
  352. goto out_fput;
  353. /*
  354. * To allow the compat_ioctl handlers to be self contained
  355. * we need to check the common ioctls here first.
  356. * Just handle them with the standard handlers below.
  357. */
  358. switch (cmd) {
  359. case FIOCLEX:
  360. case FIONCLEX:
  361. case FIONBIO:
  362. case FIOASYNC:
  363. case FIOQSIZE:
  364. break;
  365. case FIBMAP:
  366. case FIGETBSZ:
  367. case FIONREAD:
  368. if (S_ISREG(filp->f_path.dentry->d_inode->i_mode))
  369. break;
  370. /*FALL THROUGH*/
  371. default:
  372. if (filp->f_op && filp->f_op->compat_ioctl) {
  373. error = filp->f_op->compat_ioctl(filp, cmd, arg);
  374. if (error != -ENOIOCTLCMD)
  375. goto out_fput;
  376. }
  377. if (!filp->f_op ||
  378. (!filp->f_op->ioctl && !filp->f_op->unlocked_ioctl))
  379. goto do_ioctl;
  380. break;
  381. }
  382. for (t = ioctl32_hash_table[ioctl32_hash(cmd)]; t; t = t->next) {
  383. if (t->cmd == cmd)
  384. goto found_handler;
  385. }
  386. if (S_ISSOCK(filp->f_path.dentry->d_inode->i_mode) &&
  387. cmd >= SIOCDEVPRIVATE && cmd <= (SIOCDEVPRIVATE + 15)) {
  388. error = siocdevprivate_ioctl(fd, cmd, arg);
  389. } else {
  390. static int count;
  391. if (++count <= 50)
  392. compat_ioctl_error(filp, fd, cmd, arg);
  393. error = -EINVAL;
  394. }
  395. goto out_fput;
  396. found_handler:
  397. if (t->handler) {
  398. lock_kernel();
  399. error = t->handler(fd, cmd, arg, filp);
  400. unlock_kernel();
  401. goto out_fput;
  402. }
  403. do_ioctl:
  404. error = vfs_ioctl(filp, fd, cmd, arg);
  405. out_fput:
  406. fput_light(filp, fput_needed);
  407. out:
  408. return error;
  409. }
  410. static int get_compat_flock(struct flock *kfl, struct compat_flock __user *ufl)
  411. {
  412. if (!access_ok(VERIFY_READ, ufl, sizeof(*ufl)) ||
  413. __get_user(kfl->l_type, &ufl->l_type) ||
  414. __get_user(kfl->l_whence, &ufl->l_whence) ||
  415. __get_user(kfl->l_start, &ufl->l_start) ||
  416. __get_user(kfl->l_len, &ufl->l_len) ||
  417. __get_user(kfl->l_pid, &ufl->l_pid))
  418. return -EFAULT;
  419. return 0;
  420. }
  421. static int put_compat_flock(struct flock *kfl, struct compat_flock __user *ufl)
  422. {
  423. if (!access_ok(VERIFY_WRITE, ufl, sizeof(*ufl)) ||
  424. __put_user(kfl->l_type, &ufl->l_type) ||
  425. __put_user(kfl->l_whence, &ufl->l_whence) ||
  426. __put_user(kfl->l_start, &ufl->l_start) ||
  427. __put_user(kfl->l_len, &ufl->l_len) ||
  428. __put_user(kfl->l_pid, &ufl->l_pid))
  429. return -EFAULT;
  430. return 0;
  431. }
  432. #ifndef HAVE_ARCH_GET_COMPAT_FLOCK64
  433. static int get_compat_flock64(struct flock *kfl, struct compat_flock64 __user *ufl)
  434. {
  435. if (!access_ok(VERIFY_READ, ufl, sizeof(*ufl)) ||
  436. __get_user(kfl->l_type, &ufl->l_type) ||
  437. __get_user(kfl->l_whence, &ufl->l_whence) ||
  438. __get_user(kfl->l_start, &ufl->l_start) ||
  439. __get_user(kfl->l_len, &ufl->l_len) ||
  440. __get_user(kfl->l_pid, &ufl->l_pid))
  441. return -EFAULT;
  442. return 0;
  443. }
  444. #endif
  445. #ifndef HAVE_ARCH_PUT_COMPAT_FLOCK64
  446. static int put_compat_flock64(struct flock *kfl, struct compat_flock64 __user *ufl)
  447. {
  448. if (!access_ok(VERIFY_WRITE, ufl, sizeof(*ufl)) ||
  449. __put_user(kfl->l_type, &ufl->l_type) ||
  450. __put_user(kfl->l_whence, &ufl->l_whence) ||
  451. __put_user(kfl->l_start, &ufl->l_start) ||
  452. __put_user(kfl->l_len, &ufl->l_len) ||
  453. __put_user(kfl->l_pid, &ufl->l_pid))
  454. return -EFAULT;
  455. return 0;
  456. }
  457. #endif
  458. asmlinkage long compat_sys_fcntl64(unsigned int fd, unsigned int cmd,
  459. unsigned long arg)
  460. {
  461. mm_segment_t old_fs;
  462. struct flock f;
  463. long ret;
  464. switch (cmd) {
  465. case F_GETLK:
  466. case F_SETLK:
  467. case F_SETLKW:
  468. ret = get_compat_flock(&f, compat_ptr(arg));
  469. if (ret != 0)
  470. break;
  471. old_fs = get_fs();
  472. set_fs(KERNEL_DS);
  473. ret = sys_fcntl(fd, cmd, (unsigned long)&f);
  474. set_fs(old_fs);
  475. if (cmd == F_GETLK && ret == 0) {
  476. /* GETLK was successfule and we need to return the data...
  477. * but it needs to fit in the compat structure.
  478. * l_start shouldn't be too big, unless the original
  479. * start + end is greater than COMPAT_OFF_T_MAX, in which
  480. * case the app was asking for trouble, so we return
  481. * -EOVERFLOW in that case.
  482. * l_len could be too big, in which case we just truncate it,
  483. * and only allow the app to see that part of the conflicting
  484. * lock that might make sense to it anyway
  485. */
  486. if (f.l_start > COMPAT_OFF_T_MAX)
  487. ret = -EOVERFLOW;
  488. if (f.l_len > COMPAT_OFF_T_MAX)
  489. f.l_len = COMPAT_OFF_T_MAX;
  490. if (ret == 0)
  491. ret = put_compat_flock(&f, compat_ptr(arg));
  492. }
  493. break;
  494. case F_GETLK64:
  495. case F_SETLK64:
  496. case F_SETLKW64:
  497. ret = get_compat_flock64(&f, compat_ptr(arg));
  498. if (ret != 0)
  499. break;
  500. old_fs = get_fs();
  501. set_fs(KERNEL_DS);
  502. ret = sys_fcntl(fd, (cmd == F_GETLK64) ? F_GETLK :
  503. ((cmd == F_SETLK64) ? F_SETLK : F_SETLKW),
  504. (unsigned long)&f);
  505. set_fs(old_fs);
  506. if (cmd == F_GETLK64 && ret == 0) {
  507. /* need to return lock information - see above for commentary */
  508. if (f.l_start > COMPAT_LOFF_T_MAX)
  509. ret = -EOVERFLOW;
  510. if (f.l_len > COMPAT_LOFF_T_MAX)
  511. f.l_len = COMPAT_LOFF_T_MAX;
  512. if (ret == 0)
  513. ret = put_compat_flock64(&f, compat_ptr(arg));
  514. }
  515. break;
  516. default:
  517. ret = sys_fcntl(fd, cmd, arg);
  518. break;
  519. }
  520. return ret;
  521. }
  522. asmlinkage long compat_sys_fcntl(unsigned int fd, unsigned int cmd,
  523. unsigned long arg)
  524. {
  525. if ((cmd == F_GETLK64) || (cmd == F_SETLK64) || (cmd == F_SETLKW64))
  526. return -EINVAL;
  527. return compat_sys_fcntl64(fd, cmd, arg);
  528. }
  529. asmlinkage long
  530. compat_sys_io_setup(unsigned nr_reqs, u32 __user *ctx32p)
  531. {
  532. long ret;
  533. aio_context_t ctx64;
  534. mm_segment_t oldfs = get_fs();
  535. if (unlikely(get_user(ctx64, ctx32p)))
  536. return -EFAULT;
  537. set_fs(KERNEL_DS);
  538. /* The __user pointer cast is valid because of the set_fs() */
  539. ret = sys_io_setup(nr_reqs, (aio_context_t __user *) &ctx64);
  540. set_fs(oldfs);
  541. /* truncating is ok because it's a user address */
  542. if (!ret)
  543. ret = put_user((u32) ctx64, ctx32p);
  544. return ret;
  545. }
  546. asmlinkage long
  547. compat_sys_io_getevents(aio_context_t ctx_id,
  548. unsigned long min_nr,
  549. unsigned long nr,
  550. struct io_event __user *events,
  551. struct compat_timespec __user *timeout)
  552. {
  553. long ret;
  554. struct timespec t;
  555. struct timespec __user *ut = NULL;
  556. ret = -EFAULT;
  557. if (unlikely(!access_ok(VERIFY_WRITE, events,
  558. nr * sizeof(struct io_event))))
  559. goto out;
  560. if (timeout) {
  561. if (get_compat_timespec(&t, timeout))
  562. goto out;
  563. ut = compat_alloc_user_space(sizeof(*ut));
  564. if (copy_to_user(ut, &t, sizeof(t)) )
  565. goto out;
  566. }
  567. ret = sys_io_getevents(ctx_id, min_nr, nr, events, ut);
  568. out:
  569. return ret;
  570. }
  571. static inline long
  572. copy_iocb(long nr, u32 __user *ptr32, struct iocb __user * __user *ptr64)
  573. {
  574. compat_uptr_t uptr;
  575. int i;
  576. for (i = 0; i < nr; ++i) {
  577. if (get_user(uptr, ptr32 + i))
  578. return -EFAULT;
  579. if (put_user(compat_ptr(uptr), ptr64 + i))
  580. return -EFAULT;
  581. }
  582. return 0;
  583. }
  584. #define MAX_AIO_SUBMITS (PAGE_SIZE/sizeof(struct iocb *))
  585. asmlinkage long
  586. compat_sys_io_submit(aio_context_t ctx_id, int nr, u32 __user *iocb)
  587. {
  588. struct iocb __user * __user *iocb64;
  589. long ret;
  590. if (unlikely(nr < 0))
  591. return -EINVAL;
  592. if (nr > MAX_AIO_SUBMITS)
  593. nr = MAX_AIO_SUBMITS;
  594. iocb64 = compat_alloc_user_space(nr * sizeof(*iocb64));
  595. ret = copy_iocb(nr, iocb, iocb64);
  596. if (!ret)
  597. ret = sys_io_submit(ctx_id, nr, iocb64);
  598. return ret;
  599. }
  600. struct compat_ncp_mount_data {
  601. compat_int_t version;
  602. compat_uint_t ncp_fd;
  603. __compat_uid_t mounted_uid;
  604. compat_pid_t wdog_pid;
  605. unsigned char mounted_vol[NCP_VOLNAME_LEN + 1];
  606. compat_uint_t time_out;
  607. compat_uint_t retry_count;
  608. compat_uint_t flags;
  609. __compat_uid_t uid;
  610. __compat_gid_t gid;
  611. compat_mode_t file_mode;
  612. compat_mode_t dir_mode;
  613. };
  614. struct compat_ncp_mount_data_v4 {
  615. compat_int_t version;
  616. compat_ulong_t flags;
  617. compat_ulong_t mounted_uid;
  618. compat_long_t wdog_pid;
  619. compat_uint_t ncp_fd;
  620. compat_uint_t time_out;
  621. compat_uint_t retry_count;
  622. compat_ulong_t uid;
  623. compat_ulong_t gid;
  624. compat_ulong_t file_mode;
  625. compat_ulong_t dir_mode;
  626. };
  627. static void *do_ncp_super_data_conv(void *raw_data)
  628. {
  629. int version = *(unsigned int *)raw_data;
  630. if (version == 3) {
  631. struct compat_ncp_mount_data *c_n = raw_data;
  632. struct ncp_mount_data *n = raw_data;
  633. n->dir_mode = c_n->dir_mode;
  634. n->file_mode = c_n->file_mode;
  635. n->gid = c_n->gid;
  636. n->uid = c_n->uid;
  637. memmove (n->mounted_vol, c_n->mounted_vol, (sizeof (c_n->mounted_vol) + 3 * sizeof (unsigned int)));
  638. n->wdog_pid = c_n->wdog_pid;
  639. n->mounted_uid = c_n->mounted_uid;
  640. } else if (version == 4) {
  641. struct compat_ncp_mount_data_v4 *c_n = raw_data;
  642. struct ncp_mount_data_v4 *n = raw_data;
  643. n->dir_mode = c_n->dir_mode;
  644. n->file_mode = c_n->file_mode;
  645. n->gid = c_n->gid;
  646. n->uid = c_n->uid;
  647. n->retry_count = c_n->retry_count;
  648. n->time_out = c_n->time_out;
  649. n->ncp_fd = c_n->ncp_fd;
  650. n->wdog_pid = c_n->wdog_pid;
  651. n->mounted_uid = c_n->mounted_uid;
  652. n->flags = c_n->flags;
  653. } else if (version != 5) {
  654. return NULL;
  655. }
  656. return raw_data;
  657. }
  658. struct compat_smb_mount_data {
  659. compat_int_t version;
  660. __compat_uid_t mounted_uid;
  661. __compat_uid_t uid;
  662. __compat_gid_t gid;
  663. compat_mode_t file_mode;
  664. compat_mode_t dir_mode;
  665. };
  666. static void *do_smb_super_data_conv(void *raw_data)
  667. {
  668. struct smb_mount_data *s = raw_data;
  669. struct compat_smb_mount_data *c_s = raw_data;
  670. if (c_s->version != SMB_MOUNT_OLDVERSION)
  671. goto out;
  672. s->dir_mode = c_s->dir_mode;
  673. s->file_mode = c_s->file_mode;
  674. s->gid = c_s->gid;
  675. s->uid = c_s->uid;
  676. s->mounted_uid = c_s->mounted_uid;
  677. out:
  678. return raw_data;
  679. }
  680. struct compat_nfs_string {
  681. compat_uint_t len;
  682. compat_uptr_t data;
  683. };
  684. static inline void compat_nfs_string(struct nfs_string *dst,
  685. struct compat_nfs_string *src)
  686. {
  687. dst->data = compat_ptr(src->data);
  688. dst->len = src->len;
  689. }
  690. struct compat_nfs4_mount_data_v1 {
  691. compat_int_t version;
  692. compat_int_t flags;
  693. compat_int_t rsize;
  694. compat_int_t wsize;
  695. compat_int_t timeo;
  696. compat_int_t retrans;
  697. compat_int_t acregmin;
  698. compat_int_t acregmax;
  699. compat_int_t acdirmin;
  700. compat_int_t acdirmax;
  701. struct compat_nfs_string client_addr;
  702. struct compat_nfs_string mnt_path;
  703. struct compat_nfs_string hostname;
  704. compat_uint_t host_addrlen;
  705. compat_uptr_t host_addr;
  706. compat_int_t proto;
  707. compat_int_t auth_flavourlen;
  708. compat_uptr_t auth_flavours;
  709. };
  710. static int do_nfs4_super_data_conv(void *raw_data)
  711. {
  712. int version = *(compat_uint_t *) raw_data;
  713. if (version == 1) {
  714. struct compat_nfs4_mount_data_v1 *raw = raw_data;
  715. struct nfs4_mount_data *real = raw_data;
  716. /* copy the fields backwards */
  717. real->auth_flavours = compat_ptr(raw->auth_flavours);
  718. real->auth_flavourlen = raw->auth_flavourlen;
  719. real->proto = raw->proto;
  720. real->host_addr = compat_ptr(raw->host_addr);
  721. real->host_addrlen = raw->host_addrlen;
  722. compat_nfs_string(&real->hostname, &raw->hostname);
  723. compat_nfs_string(&real->mnt_path, &raw->mnt_path);
  724. compat_nfs_string(&real->client_addr, &raw->client_addr);
  725. real->acdirmax = raw->acdirmax;
  726. real->acdirmin = raw->acdirmin;
  727. real->acregmax = raw->acregmax;
  728. real->acregmin = raw->acregmin;
  729. real->retrans = raw->retrans;
  730. real->timeo = raw->timeo;
  731. real->wsize = raw->wsize;
  732. real->rsize = raw->rsize;
  733. real->flags = raw->flags;
  734. real->version = raw->version;
  735. }
  736. else {
  737. return -EINVAL;
  738. }
  739. return 0;
  740. }
  741. #define SMBFS_NAME "smbfs"
  742. #define NCPFS_NAME "ncpfs"
  743. #define NFS4_NAME "nfs4"
  744. asmlinkage long compat_sys_mount(char __user * dev_name, char __user * dir_name,
  745. char __user * type, unsigned long flags,
  746. void __user * data)
  747. {
  748. unsigned long type_page;
  749. unsigned long data_page;
  750. unsigned long dev_page;
  751. char *dir_page;
  752. int retval;
  753. retval = copy_mount_options (type, &type_page);
  754. if (retval < 0)
  755. goto out;
  756. dir_page = getname(dir_name);
  757. retval = PTR_ERR(dir_page);
  758. if (IS_ERR(dir_page))
  759. goto out1;
  760. retval = copy_mount_options (dev_name, &dev_page);
  761. if (retval < 0)
  762. goto out2;
  763. retval = copy_mount_options (data, &data_page);
  764. if (retval < 0)
  765. goto out3;
  766. retval = -EINVAL;
  767. if (type_page && data_page) {
  768. if (!strcmp((char *)type_page, SMBFS_NAME)) {
  769. do_smb_super_data_conv((void *)data_page);
  770. } else if (!strcmp((char *)type_page, NCPFS_NAME)) {
  771. do_ncp_super_data_conv((void *)data_page);
  772. } else if (!strcmp((char *)type_page, NFS4_NAME)) {
  773. if (do_nfs4_super_data_conv((void *) data_page))
  774. goto out4;
  775. }
  776. }
  777. lock_kernel();
  778. retval = do_mount((char*)dev_page, dir_page, (char*)type_page,
  779. flags, (void*)data_page);
  780. unlock_kernel();
  781. out4:
  782. free_page(data_page);
  783. out3:
  784. free_page(dev_page);
  785. out2:
  786. putname(dir_page);
  787. out1:
  788. free_page(type_page);
  789. out:
  790. return retval;
  791. }
  792. #define NAME_OFFSET(de) ((int) ((de)->d_name - (char __user *) (de)))
  793. #define COMPAT_ROUND_UP(x) (((x)+sizeof(compat_long_t)-1) & \
  794. ~(sizeof(compat_long_t)-1))
  795. struct compat_old_linux_dirent {
  796. compat_ulong_t d_ino;
  797. compat_ulong_t d_offset;
  798. unsigned short d_namlen;
  799. char d_name[1];
  800. };
  801. struct compat_readdir_callback {
  802. struct compat_old_linux_dirent __user *dirent;
  803. int result;
  804. };
  805. static int compat_fillonedir(void *__buf, const char *name, int namlen,
  806. loff_t offset, u64 ino, unsigned int d_type)
  807. {
  808. struct compat_readdir_callback *buf = __buf;
  809. struct compat_old_linux_dirent __user *dirent;
  810. compat_ulong_t d_ino;
  811. if (buf->result)
  812. return -EINVAL;
  813. d_ino = ino;
  814. if (sizeof(d_ino) < sizeof(ino) && d_ino != ino)
  815. return -EOVERFLOW;
  816. buf->result++;
  817. dirent = buf->dirent;
  818. if (!access_ok(VERIFY_WRITE, dirent,
  819. (unsigned long)(dirent->d_name + namlen + 1) -
  820. (unsigned long)dirent))
  821. goto efault;
  822. if ( __put_user(d_ino, &dirent->d_ino) ||
  823. __put_user(offset, &dirent->d_offset) ||
  824. __put_user(namlen, &dirent->d_namlen) ||
  825. __copy_to_user(dirent->d_name, name, namlen) ||
  826. __put_user(0, dirent->d_name + namlen))
  827. goto efault;
  828. return 0;
  829. efault:
  830. buf->result = -EFAULT;
  831. return -EFAULT;
  832. }
  833. asmlinkage long compat_sys_old_readdir(unsigned int fd,
  834. struct compat_old_linux_dirent __user *dirent, unsigned int count)
  835. {
  836. int error;
  837. struct file *file;
  838. struct compat_readdir_callback buf;
  839. error = -EBADF;
  840. file = fget(fd);
  841. if (!file)
  842. goto out;
  843. buf.result = 0;
  844. buf.dirent = dirent;
  845. error = vfs_readdir(file, compat_fillonedir, &buf);
  846. if (error >= 0)
  847. error = buf.result;
  848. fput(file);
  849. out:
  850. return error;
  851. }
  852. struct compat_linux_dirent {
  853. compat_ulong_t d_ino;
  854. compat_ulong_t d_off;
  855. unsigned short d_reclen;
  856. char d_name[1];
  857. };
  858. struct compat_getdents_callback {
  859. struct compat_linux_dirent __user *current_dir;
  860. struct compat_linux_dirent __user *previous;
  861. int count;
  862. int error;
  863. };
  864. static int compat_filldir(void *__buf, const char *name, int namlen,
  865. loff_t offset, u64 ino, unsigned int d_type)
  866. {
  867. struct compat_linux_dirent __user * dirent;
  868. struct compat_getdents_callback *buf = __buf;
  869. compat_ulong_t d_ino;
  870. int reclen = COMPAT_ROUND_UP(NAME_OFFSET(dirent) + namlen + 2);
  871. buf->error = -EINVAL; /* only used if we fail.. */
  872. if (reclen > buf->count)
  873. return -EINVAL;
  874. d_ino = ino;
  875. if (sizeof(d_ino) < sizeof(ino) && d_ino != ino)
  876. return -EOVERFLOW;
  877. dirent = buf->previous;
  878. if (dirent) {
  879. if (__put_user(offset, &dirent->d_off))
  880. goto efault;
  881. }
  882. dirent = buf->current_dir;
  883. if (__put_user(d_ino, &dirent->d_ino))
  884. goto efault;
  885. if (__put_user(reclen, &dirent->d_reclen))
  886. goto efault;
  887. if (copy_to_user(dirent->d_name, name, namlen))
  888. goto efault;
  889. if (__put_user(0, dirent->d_name + namlen))
  890. goto efault;
  891. if (__put_user(d_type, (char __user *) dirent + reclen - 1))
  892. goto efault;
  893. buf->previous = dirent;
  894. dirent = (void __user *)dirent + reclen;
  895. buf->current_dir = dirent;
  896. buf->count -= reclen;
  897. return 0;
  898. efault:
  899. buf->error = -EFAULT;
  900. return -EFAULT;
  901. }
  902. asmlinkage long compat_sys_getdents(unsigned int fd,
  903. struct compat_linux_dirent __user *dirent, unsigned int count)
  904. {
  905. struct file * file;
  906. struct compat_linux_dirent __user * lastdirent;
  907. struct compat_getdents_callback buf;
  908. int error;
  909. error = -EFAULT;
  910. if (!access_ok(VERIFY_WRITE, dirent, count))
  911. goto out;
  912. error = -EBADF;
  913. file = fget(fd);
  914. if (!file)
  915. goto out;
  916. buf.current_dir = dirent;
  917. buf.previous = NULL;
  918. buf.count = count;
  919. buf.error = 0;
  920. error = vfs_readdir(file, compat_filldir, &buf);
  921. if (error < 0)
  922. goto out_putf;
  923. error = buf.error;
  924. lastdirent = buf.previous;
  925. if (lastdirent) {
  926. if (put_user(file->f_pos, &lastdirent->d_off))
  927. error = -EFAULT;
  928. else
  929. error = count - buf.count;
  930. }
  931. out_putf:
  932. fput(file);
  933. out:
  934. return error;
  935. }
  936. #ifndef __ARCH_OMIT_COMPAT_SYS_GETDENTS64
  937. #define COMPAT_ROUND_UP64(x) (((x)+sizeof(u64)-1) & ~(sizeof(u64)-1))
  938. struct compat_getdents_callback64 {
  939. struct linux_dirent64 __user *current_dir;
  940. struct linux_dirent64 __user *previous;
  941. int count;
  942. int error;
  943. };
  944. static int compat_filldir64(void * __buf, const char * name, int namlen, loff_t offset,
  945. u64 ino, unsigned int d_type)
  946. {
  947. struct linux_dirent64 __user *dirent;
  948. struct compat_getdents_callback64 *buf = __buf;
  949. int jj = NAME_OFFSET(dirent);
  950. int reclen = COMPAT_ROUND_UP64(jj + namlen + 1);
  951. u64 off;
  952. buf->error = -EINVAL; /* only used if we fail.. */
  953. if (reclen > buf->count)
  954. return -EINVAL;
  955. dirent = buf->previous;
  956. if (dirent) {
  957. if (__put_user_unaligned(offset, &dirent->d_off))
  958. goto efault;
  959. }
  960. dirent = buf->current_dir;
  961. if (__put_user_unaligned(ino, &dirent->d_ino))
  962. goto efault;
  963. off = 0;
  964. if (__put_user_unaligned(off, &dirent->d_off))
  965. goto efault;
  966. if (__put_user(reclen, &dirent->d_reclen))
  967. goto efault;
  968. if (__put_user(d_type, &dirent->d_type))
  969. goto efault;
  970. if (copy_to_user(dirent->d_name, name, namlen))
  971. goto efault;
  972. if (__put_user(0, dirent->d_name + namlen))
  973. goto efault;
  974. buf->previous = dirent;
  975. dirent = (void __user *)dirent + reclen;
  976. buf->current_dir = dirent;
  977. buf->count -= reclen;
  978. return 0;
  979. efault:
  980. buf->error = -EFAULT;
  981. return -EFAULT;
  982. }
  983. asmlinkage long compat_sys_getdents64(unsigned int fd,
  984. struct linux_dirent64 __user * dirent, unsigned int count)
  985. {
  986. struct file * file;
  987. struct linux_dirent64 __user * lastdirent;
  988. struct compat_getdents_callback64 buf;
  989. int error;
  990. error = -EFAULT;
  991. if (!access_ok(VERIFY_WRITE, dirent, count))
  992. goto out;
  993. error = -EBADF;
  994. file = fget(fd);
  995. if (!file)
  996. goto out;
  997. buf.current_dir = dirent;
  998. buf.previous = NULL;
  999. buf.count = count;
  1000. buf.error = 0;
  1001. error = vfs_readdir(file, compat_filldir64, &buf);
  1002. if (error < 0)
  1003. goto out_putf;
  1004. error = buf.error;
  1005. lastdirent = buf.previous;
  1006. if (lastdirent) {
  1007. typeof(lastdirent->d_off) d_off = file->f_pos;
  1008. error = -EFAULT;
  1009. if (__put_user_unaligned(d_off, &lastdirent->d_off))
  1010. goto out_putf;
  1011. error = count - buf.count;
  1012. }
  1013. out_putf:
  1014. fput(file);
  1015. out:
  1016. return error;
  1017. }
  1018. #endif /* ! __ARCH_OMIT_COMPAT_SYS_GETDENTS64 */
  1019. static ssize_t compat_do_readv_writev(int type, struct file *file,
  1020. const struct compat_iovec __user *uvector,
  1021. unsigned long nr_segs, loff_t *pos)
  1022. {
  1023. compat_ssize_t tot_len;
  1024. struct iovec iovstack[UIO_FASTIOV];
  1025. struct iovec *iov=iovstack, *vector;
  1026. ssize_t ret;
  1027. int seg;
  1028. io_fn_t fn;
  1029. iov_fn_t fnv;
  1030. /*
  1031. * SuS says "The readv() function *may* fail if the iovcnt argument
  1032. * was less than or equal to 0, or greater than {IOV_MAX}. Linux has
  1033. * traditionally returned zero for zero segments, so...
  1034. */
  1035. ret = 0;
  1036. if (nr_segs == 0)
  1037. goto out;
  1038. /*
  1039. * First get the "struct iovec" from user memory and
  1040. * verify all the pointers
  1041. */
  1042. ret = -EINVAL;
  1043. if ((nr_segs > UIO_MAXIOV) || (nr_segs <= 0))
  1044. goto out;
  1045. if (!file->f_op)
  1046. goto out;
  1047. if (nr_segs > UIO_FASTIOV) {
  1048. ret = -ENOMEM;
  1049. iov = kmalloc(nr_segs*sizeof(struct iovec), GFP_KERNEL);
  1050. if (!iov)
  1051. goto out;
  1052. }
  1053. ret = -EFAULT;
  1054. if (!access_ok(VERIFY_READ, uvector, nr_segs*sizeof(*uvector)))
  1055. goto out;
  1056. /*
  1057. * Single unix specification:
  1058. * We should -EINVAL if an element length is not >= 0 and fitting an
  1059. * ssize_t. The total length is fitting an ssize_t
  1060. *
  1061. * Be careful here because iov_len is a size_t not an ssize_t
  1062. */
  1063. tot_len = 0;
  1064. vector = iov;
  1065. ret = -EINVAL;
  1066. for (seg = 0 ; seg < nr_segs; seg++) {
  1067. compat_ssize_t tmp = tot_len;
  1068. compat_ssize_t len;
  1069. compat_uptr_t buf;
  1070. if (__get_user(len, &uvector->iov_len) ||
  1071. __get_user(buf, &uvector->iov_base)) {
  1072. ret = -EFAULT;
  1073. goto out;
  1074. }
  1075. if (len < 0) /* size_t not fitting an compat_ssize_t .. */
  1076. goto out;
  1077. tot_len += len;
  1078. if (tot_len < tmp) /* maths overflow on the compat_ssize_t */
  1079. goto out;
  1080. vector->iov_base = compat_ptr(buf);
  1081. vector->iov_len = (compat_size_t) len;
  1082. uvector++;
  1083. vector++;
  1084. }
  1085. if (tot_len == 0) {
  1086. ret = 0;
  1087. goto out;
  1088. }
  1089. ret = rw_verify_area(type, file, pos, tot_len);
  1090. if (ret < 0)
  1091. goto out;
  1092. ret = security_file_permission(file, type == READ ? MAY_READ:MAY_WRITE);
  1093. if (ret)
  1094. goto out;
  1095. fnv = NULL;
  1096. if (type == READ) {
  1097. fn = file->f_op->read;
  1098. fnv = file->f_op->aio_read;
  1099. } else {
  1100. fn = (io_fn_t)file->f_op->write;
  1101. fnv = file->f_op->aio_write;
  1102. }
  1103. if (fnv)
  1104. ret = do_sync_readv_writev(file, iov, nr_segs, tot_len,
  1105. pos, fnv);
  1106. else
  1107. ret = do_loop_readv_writev(file, iov, nr_segs, pos, fn);
  1108. out:
  1109. if (iov != iovstack)
  1110. kfree(iov);
  1111. if ((ret + (type == READ)) > 0) {
  1112. struct dentry *dentry = file->f_path.dentry;
  1113. if (type == READ)
  1114. fsnotify_access(dentry);
  1115. else
  1116. fsnotify_modify(dentry);
  1117. }
  1118. return ret;
  1119. }
  1120. asmlinkage ssize_t
  1121. compat_sys_readv(unsigned long fd, const struct compat_iovec __user *vec, unsigned long vlen)
  1122. {
  1123. struct file *file;
  1124. ssize_t ret = -EBADF;
  1125. file = fget(fd);
  1126. if (!file)
  1127. return -EBADF;
  1128. if (!(file->f_mode & FMODE_READ))
  1129. goto out;
  1130. ret = -EINVAL;
  1131. if (!file->f_op || (!file->f_op->aio_read && !file->f_op->read))
  1132. goto out;
  1133. ret = compat_do_readv_writev(READ, file, vec, vlen, &file->f_pos);
  1134. out:
  1135. fput(file);
  1136. return ret;
  1137. }
  1138. asmlinkage ssize_t
  1139. compat_sys_writev(unsigned long fd, const struct compat_iovec __user *vec, unsigned long vlen)
  1140. {
  1141. struct file *file;
  1142. ssize_t ret = -EBADF;
  1143. file = fget(fd);
  1144. if (!file)
  1145. return -EBADF;
  1146. if (!(file->f_mode & FMODE_WRITE))
  1147. goto out;
  1148. ret = -EINVAL;
  1149. if (!file->f_op || (!file->f_op->aio_write && !file->f_op->write))
  1150. goto out;
  1151. ret = compat_do_readv_writev(WRITE, file, vec, vlen, &file->f_pos);
  1152. out:
  1153. fput(file);
  1154. return ret;
  1155. }
  1156. asmlinkage long
  1157. compat_sys_vmsplice(int fd, const struct compat_iovec __user *iov32,
  1158. unsigned int nr_segs, unsigned int flags)
  1159. {
  1160. unsigned i;
  1161. struct iovec __user *iov;
  1162. if (nr_segs > UIO_MAXIOV)
  1163. return -EINVAL;
  1164. iov = compat_alloc_user_space(nr_segs * sizeof(struct iovec));
  1165. for (i = 0; i < nr_segs; i++) {
  1166. struct compat_iovec v;
  1167. if (get_user(v.iov_base, &iov32[i].iov_base) ||
  1168. get_user(v.iov_len, &iov32[i].iov_len) ||
  1169. put_user(compat_ptr(v.iov_base), &iov[i].iov_base) ||
  1170. put_user(v.iov_len, &iov[i].iov_len))
  1171. return -EFAULT;
  1172. }
  1173. return sys_vmsplice(fd, iov, nr_segs, flags);
  1174. }
  1175. /*
  1176. * Exactly like fs/open.c:sys_open(), except that it doesn't set the
  1177. * O_LARGEFILE flag.
  1178. */
  1179. asmlinkage long
  1180. compat_sys_open(const char __user *filename, int flags, int mode)
  1181. {
  1182. return do_sys_open(AT_FDCWD, filename, flags, mode);
  1183. }
  1184. /*
  1185. * Exactly like fs/open.c:sys_openat(), except that it doesn't set the
  1186. * O_LARGEFILE flag.
  1187. */
  1188. asmlinkage long
  1189. compat_sys_openat(unsigned int dfd, const char __user *filename, int flags, int mode)
  1190. {
  1191. return do_sys_open(dfd, filename, flags, mode);
  1192. }
  1193. /*
  1194. * compat_count() counts the number of arguments/envelopes. It is basically
  1195. * a copy of count() from fs/exec.c, except that it works with 32 bit argv
  1196. * and envp pointers.
  1197. */
  1198. static int compat_count(compat_uptr_t __user *argv, int max)
  1199. {
  1200. int i = 0;
  1201. if (argv != NULL) {
  1202. for (;;) {
  1203. compat_uptr_t p;
  1204. if (get_user(p, argv))
  1205. return -EFAULT;
  1206. if (!p)
  1207. break;
  1208. argv++;
  1209. if(++i > max)
  1210. return -E2BIG;
  1211. }
  1212. }
  1213. return i;
  1214. }
  1215. /*
  1216. * compat_copy_strings() is basically a copy of copy_strings() from fs/exec.c
  1217. * except that it works with 32 bit argv and envp pointers.
  1218. */
  1219. static int compat_copy_strings(int argc, compat_uptr_t __user *argv,
  1220. struct linux_binprm *bprm)
  1221. {
  1222. struct page *kmapped_page = NULL;
  1223. char *kaddr = NULL;
  1224. int ret;
  1225. while (argc-- > 0) {
  1226. compat_uptr_t str;
  1227. int len;
  1228. unsigned long pos;
  1229. if (get_user(str, argv+argc) ||
  1230. !(len = strnlen_user(compat_ptr(str), bprm->p))) {
  1231. ret = -EFAULT;
  1232. goto out;
  1233. }
  1234. if (bprm->p < len) {
  1235. ret = -E2BIG;
  1236. goto out;
  1237. }
  1238. bprm->p -= len;
  1239. /* XXX: add architecture specific overflow check here. */
  1240. pos = bprm->p;
  1241. while (len > 0) {
  1242. int i, new, err;
  1243. int offset, bytes_to_copy;
  1244. struct page *page;
  1245. offset = pos % PAGE_SIZE;
  1246. i = pos/PAGE_SIZE;
  1247. page = bprm->page[i];
  1248. new = 0;
  1249. if (!page) {
  1250. page = alloc_page(GFP_HIGHUSER);
  1251. bprm->page[i] = page;
  1252. if (!page) {
  1253. ret = -ENOMEM;
  1254. goto out;
  1255. }
  1256. new = 1;
  1257. }
  1258. if (page != kmapped_page) {
  1259. if (kmapped_page)
  1260. kunmap(kmapped_page);
  1261. kmapped_page = page;
  1262. kaddr = kmap(kmapped_page);
  1263. }
  1264. if (new && offset)
  1265. memset(kaddr, 0, offset);
  1266. bytes_to_copy = PAGE_SIZE - offset;
  1267. if (bytes_to_copy > len) {
  1268. bytes_to_copy = len;
  1269. if (new)
  1270. memset(kaddr+offset+len, 0,
  1271. PAGE_SIZE-offset-len);
  1272. }
  1273. err = copy_from_user(kaddr+offset, compat_ptr(str),
  1274. bytes_to_copy);
  1275. if (err) {
  1276. ret = -EFAULT;
  1277. goto out;
  1278. }
  1279. pos += bytes_to_copy;
  1280. str += bytes_to_copy;
  1281. len -= bytes_to_copy;
  1282. }
  1283. }
  1284. ret = 0;
  1285. out:
  1286. if (kmapped_page)
  1287. kunmap(kmapped_page);
  1288. return ret;
  1289. }
  1290. #ifdef CONFIG_MMU
  1291. #define free_arg_pages(bprm) do { } while (0)
  1292. #else
  1293. static inline void free_arg_pages(struct linux_binprm *bprm)
  1294. {
  1295. int i;
  1296. for (i = 0; i < MAX_ARG_PAGES; i++) {
  1297. if (bprm->page[i])
  1298. __free_page(bprm->page[i]);
  1299. bprm->page[i] = NULL;
  1300. }
  1301. }
  1302. #endif /* CONFIG_MMU */
  1303. /*
  1304. * compat_do_execve() is mostly a copy of do_execve(), with the exception
  1305. * that it processes 32 bit argv and envp pointers.
  1306. */
  1307. int compat_do_execve(char * filename,
  1308. compat_uptr_t __user *argv,
  1309. compat_uptr_t __user *envp,
  1310. struct pt_regs * regs)
  1311. {
  1312. struct linux_binprm *bprm;
  1313. struct file *file;
  1314. int retval;
  1315. int i;
  1316. retval = -ENOMEM;
  1317. bprm = kzalloc(sizeof(*bprm), GFP_KERNEL);
  1318. if (!bprm)
  1319. goto out_ret;
  1320. file = open_exec(filename);
  1321. retval = PTR_ERR(file);
  1322. if (IS_ERR(file))
  1323. goto out_kfree;
  1324. sched_exec();
  1325. bprm->p = PAGE_SIZE*MAX_ARG_PAGES-sizeof(void *);
  1326. bprm->file = file;
  1327. bprm->filename = filename;
  1328. bprm->interp = filename;
  1329. bprm->mm = mm_alloc();
  1330. retval = -ENOMEM;
  1331. if (!bprm->mm)
  1332. goto out_file;
  1333. retval = init_new_context(current, bprm->mm);
  1334. if (retval < 0)
  1335. goto out_mm;
  1336. bprm->argc = compat_count(argv, bprm->p / sizeof(compat_uptr_t));
  1337. if ((retval = bprm->argc) < 0)
  1338. goto out_mm;
  1339. bprm->envc = compat_count(envp, bprm->p / sizeof(compat_uptr_t));
  1340. if ((retval = bprm->envc) < 0)
  1341. goto out_mm;
  1342. retval = security_bprm_alloc(bprm);
  1343. if (retval)
  1344. goto out;
  1345. retval = prepare_binprm(bprm);
  1346. if (retval < 0)
  1347. goto out;
  1348. retval = copy_strings_kernel(1, &bprm->filename, bprm);
  1349. if (retval < 0)
  1350. goto out;
  1351. bprm->exec = bprm->p;
  1352. retval = compat_copy_strings(bprm->envc, envp, bprm);
  1353. if (retval < 0)
  1354. goto out;
  1355. retval = compat_copy_strings(bprm->argc, argv, bprm);
  1356. if (retval < 0)
  1357. goto out;
  1358. retval = search_binary_handler(bprm, regs);
  1359. if (retval >= 0) {
  1360. free_arg_pages(bprm);
  1361. /* execve success */
  1362. security_bprm_free(bprm);
  1363. acct_update_integrals(current);
  1364. kfree(bprm);
  1365. return retval;
  1366. }
  1367. out:
  1368. /* Something went wrong, return the inode and free the argument pages*/
  1369. for (i = 0 ; i < MAX_ARG_PAGES ; i++) {
  1370. struct page * page = bprm->page[i];
  1371. if (page)
  1372. __free_page(page);
  1373. }
  1374. if (bprm->security)
  1375. security_bprm_free(bprm);
  1376. out_mm:
  1377. if (bprm->mm)
  1378. mmdrop(bprm->mm);
  1379. out_file:
  1380. if (bprm->file) {
  1381. allow_write_access(bprm->file);
  1382. fput(bprm->file);
  1383. }
  1384. out_kfree:
  1385. kfree(bprm);
  1386. out_ret:
  1387. return retval;
  1388. }
  1389. #define __COMPAT_NFDBITS (8 * sizeof(compat_ulong_t))
  1390. #define ROUND_UP(x,y) (((x)+(y)-1)/(y))
  1391. /*
  1392. * Ooo, nasty. We need here to frob 32-bit unsigned longs to
  1393. * 64-bit unsigned longs.
  1394. */
  1395. static
  1396. int compat_get_fd_set(unsigned long nr, compat_ulong_t __user *ufdset,
  1397. unsigned long *fdset)
  1398. {
  1399. nr = ROUND_UP(nr, __COMPAT_NFDBITS);
  1400. if (ufdset) {
  1401. unsigned long odd;
  1402. if (!access_ok(VERIFY_WRITE, ufdset, nr*sizeof(compat_ulong_t)))
  1403. return -EFAULT;
  1404. odd = nr & 1UL;
  1405. nr &= ~1UL;
  1406. while (nr) {
  1407. unsigned long h, l;
  1408. if (__get_user(l, ufdset) || __get_user(h, ufdset+1))
  1409. return -EFAULT;
  1410. ufdset += 2;
  1411. *fdset++ = h << 32 | l;
  1412. nr -= 2;
  1413. }
  1414. if (odd && __get_user(*fdset, ufdset))
  1415. return -EFAULT;
  1416. } else {
  1417. /* Tricky, must clear full unsigned long in the
  1418. * kernel fdset at the end, this makes sure that
  1419. * actually happens.
  1420. */
  1421. memset(fdset, 0, ((nr + 1) & ~1)*sizeof(compat_ulong_t));
  1422. }
  1423. return 0;
  1424. }
  1425. static
  1426. int compat_set_fd_set(unsigned long nr, compat_ulong_t __user *ufdset,
  1427. unsigned long *fdset)
  1428. {
  1429. unsigned long odd;
  1430. nr = ROUND_UP(nr, __COMPAT_NFDBITS);
  1431. if (!ufdset)
  1432. return 0;
  1433. odd = nr & 1UL;
  1434. nr &= ~1UL;
  1435. while (nr) {
  1436. unsigned long h, l;
  1437. l = *fdset++;
  1438. h = l >> 32;
  1439. if (__put_user(l, ufdset) || __put_user(h, ufdset+1))
  1440. return -EFAULT;
  1441. ufdset += 2;
  1442. nr -= 2;
  1443. }
  1444. if (odd && __put_user(*fdset, ufdset))
  1445. return -EFAULT;
  1446. return 0;
  1447. }
  1448. /*
  1449. * This is a virtual copy of sys_select from fs/select.c and probably
  1450. * should be compared to it from time to time
  1451. */
  1452. /*
  1453. * We can actually return ERESTARTSYS instead of EINTR, but I'd
  1454. * like to be certain this leads to no problems. So I return
  1455. * EINTR just for safety.
  1456. *
  1457. * Update: ERESTARTSYS breaks at least the xview clock binary, so
  1458. * I'm trying ERESTARTNOHAND which restart only when you want to.
  1459. */
  1460. #define MAX_SELECT_SECONDS \
  1461. ((unsigned long) (MAX_SCHEDULE_TIMEOUT / HZ)-1)
  1462. int compat_core_sys_select(int n, compat_ulong_t __user *inp,
  1463. compat_ulong_t __user *outp, compat_ulong_t __user *exp, s64 *timeout)
  1464. {
  1465. fd_set_bits fds;
  1466. char *bits;
  1467. int size, max_fds, ret = -EINVAL;
  1468. struct fdtable *fdt;
  1469. if (n < 0)
  1470. goto out_nofds;
  1471. /* max_fds can increase, so grab it once to avoid race */
  1472. rcu_read_lock();
  1473. fdt = files_fdtable(current->files);
  1474. max_fds = fdt->max_fds;
  1475. rcu_read_unlock();
  1476. if (n > max_fds)
  1477. n = max_fds;
  1478. /*
  1479. * We need 6 bitmaps (in/out/ex for both incoming and outgoing),
  1480. * since we used fdset we need to allocate memory in units of
  1481. * long-words.
  1482. */
  1483. ret = -ENOMEM;
  1484. size = FDS_BYTES(n);
  1485. bits = kmalloc(6 * size, GFP_KERNEL);
  1486. if (!bits)
  1487. goto out_nofds;
  1488. fds.in = (unsigned long *) bits;
  1489. fds.out = (unsigned long *) (bits + size);
  1490. fds.ex = (unsigned long *) (bits + 2*size);
  1491. fds.res_in = (unsigned long *) (bits + 3*size);
  1492. fds.res_out = (unsigned long *) (bits + 4*size);
  1493. fds.res_ex = (unsigned long *) (bits + 5*size);
  1494. if ((ret = compat_get_fd_set(n, inp, fds.in)) ||
  1495. (ret = compat_get_fd_set(n, outp, fds.out)) ||
  1496. (ret = compat_get_fd_set(n, exp, fds.ex)))
  1497. goto out;
  1498. zero_fd_set(n, fds.res_in);
  1499. zero_fd_set(n, fds.res_out);
  1500. zero_fd_set(n, fds.res_ex);
  1501. ret = do_select(n, &fds, timeout);
  1502. if (ret < 0)
  1503. goto out;
  1504. if (!ret) {
  1505. ret = -ERESTARTNOHAND;
  1506. if (signal_pending(current))
  1507. goto out;
  1508. ret = 0;
  1509. }
  1510. if (compat_set_fd_set(n, inp, fds.res_in) ||
  1511. compat_set_fd_set(n, outp, fds.res_out) ||
  1512. compat_set_fd_set(n, exp, fds.res_ex))
  1513. ret = -EFAULT;
  1514. out:
  1515. kfree(bits);
  1516. out_nofds:
  1517. return ret;
  1518. }
  1519. asmlinkage long compat_sys_select(int n, compat_ulong_t __user *inp,
  1520. compat_ulong_t __user *outp, compat_ulong_t __user *exp,
  1521. struct compat_timeval __user *tvp)
  1522. {
  1523. s64 timeout = -1;
  1524. struct compat_timeval tv;
  1525. int ret;
  1526. if (tvp) {
  1527. if (copy_from_user(&tv, tvp, sizeof(tv)))
  1528. return -EFAULT;
  1529. if (tv.tv_sec < 0 || tv.tv_usec < 0)
  1530. return -EINVAL;
  1531. /* Cast to u64 to make GCC stop complaining */
  1532. if ((u64)tv.tv_sec >= (u64)MAX_INT64_SECONDS)
  1533. timeout = -1; /* infinite */
  1534. else {
  1535. timeout = ROUND_UP(tv.tv_usec, 1000000/HZ);
  1536. timeout += tv.tv_sec * HZ;
  1537. }
  1538. }
  1539. ret = compat_core_sys_select(n, inp, outp, exp, &timeout);
  1540. if (tvp) {
  1541. struct compat_timeval rtv;
  1542. if (current->personality & STICKY_TIMEOUTS)
  1543. goto sticky;
  1544. rtv.tv_usec = jiffies_to_usecs(do_div((*(u64*)&timeout), HZ));
  1545. rtv.tv_sec = timeout;
  1546. if (compat_timeval_compare(&rtv, &tv) >= 0)
  1547. rtv = tv;
  1548. if (copy_to_user(tvp, &rtv, sizeof(rtv))) {
  1549. sticky:
  1550. /*
  1551. * If an application puts its timeval in read-only
  1552. * memory, we don't want the Linux-specific update to
  1553. * the timeval to cause a fault after the select has
  1554. * completed successfully. However, because we're not
  1555. * updating the timeval, we can't restart the system
  1556. * call.
  1557. */
  1558. if (ret == -ERESTARTNOHAND)
  1559. ret = -EINTR;
  1560. }
  1561. }
  1562. return ret;
  1563. }
  1564. #ifdef TIF_RESTORE_SIGMASK
  1565. asmlinkage long compat_sys_pselect7(int n, compat_ulong_t __user *inp,
  1566. compat_ulong_t __user *outp, compat_ulong_t __user *exp,
  1567. struct compat_timespec __user *tsp, compat_sigset_t __user *sigmask,
  1568. compat_size_t sigsetsize)
  1569. {
  1570. compat_sigset_t ss32;
  1571. sigset_t ksigmask, sigsaved;
  1572. s64 timeout = MAX_SCHEDULE_TIMEOUT;
  1573. struct compat_timespec ts;
  1574. int ret;
  1575. if (tsp) {
  1576. if (copy_from_user(&ts, tsp, sizeof(ts)))
  1577. return -EFAULT;
  1578. if (ts.tv_sec < 0 || ts.tv_nsec < 0)
  1579. return -EINVAL;
  1580. }
  1581. if (sigmask) {
  1582. if (sigsetsize != sizeof(compat_sigset_t))
  1583. return -EINVAL;
  1584. if (copy_from_user(&ss32, sigmask, sizeof(ss32)))
  1585. return -EFAULT;
  1586. sigset_from_compat(&ksigmask, &ss32);
  1587. sigdelsetmask(&ksigmask, sigmask(SIGKILL)|sigmask(SIGSTOP));
  1588. sigprocmask(SIG_SETMASK, &ksigmask, &sigsaved);
  1589. }
  1590. do {
  1591. if (tsp) {
  1592. if ((unsigned long)ts.tv_sec < MAX_SELECT_SECONDS) {
  1593. timeout = ROUND_UP(ts.tv_nsec, 1000000000/HZ);
  1594. timeout += ts.tv_sec * (unsigned long)HZ;
  1595. ts.tv_sec = 0;
  1596. ts.tv_nsec = 0;
  1597. } else {
  1598. ts.tv_sec -= MAX_SELECT_SECONDS;
  1599. timeout = MAX_SELECT_SECONDS * HZ;
  1600. }
  1601. }
  1602. ret = compat_core_sys_select(n, inp, outp, exp, &timeout);
  1603. } while (!ret && !timeout && tsp && (ts.tv_sec || ts.tv_nsec));
  1604. if (tsp) {
  1605. struct compat_timespec rts;
  1606. if (current->personality & STICKY_TIMEOUTS)
  1607. goto sticky;
  1608. rts.tv_sec = timeout / HZ;
  1609. rts.tv_nsec = (timeout % HZ) * (NSEC_PER_SEC/HZ);
  1610. if (rts.tv_nsec >= NSEC_PER_SEC) {
  1611. rts.tv_sec++;
  1612. rts.tv_nsec -= NSEC_PER_SEC;
  1613. }
  1614. if (compat_timespec_compare(&rts, &ts) >= 0)
  1615. rts = ts;
  1616. if (copy_to_user(tsp, &rts, sizeof(rts))) {
  1617. sticky:
  1618. /*
  1619. * If an application puts its timeval in read-only
  1620. * memory, we don't want the Linux-specific update to
  1621. * the timeval to cause a fault after the select has
  1622. * completed successfully. However, because we're not
  1623. * updating the timeval, we can't restart the system
  1624. * call.
  1625. */
  1626. if (ret == -ERESTARTNOHAND)
  1627. ret = -EINTR;
  1628. }
  1629. }
  1630. if (ret == -ERESTARTNOHAND) {
  1631. /*
  1632. * Don't restore the signal mask yet. Let do_signal() deliver
  1633. * the signal on the way back to userspace, before the signal
  1634. * mask is restored.
  1635. */
  1636. if (sigmask) {
  1637. memcpy(&current->saved_sigmask, &sigsaved,
  1638. sizeof(sigsaved));
  1639. set_thread_flag(TIF_RESTORE_SIGMASK);
  1640. }
  1641. } else if (sigmask)
  1642. sigprocmask(SIG_SETMASK, &sigsaved, NULL);
  1643. return ret;
  1644. }
  1645. asmlinkage long compat_sys_pselect6(int n, compat_ulong_t __user *inp,
  1646. compat_ulong_t __user *outp, compat_ulong_t __user *exp,
  1647. struct compat_timespec __user *tsp, void __user *sig)
  1648. {
  1649. compat_size_t sigsetsize = 0;
  1650. compat_uptr_t up = 0;
  1651. if (sig) {
  1652. if (!access_ok(VERIFY_READ, sig,
  1653. sizeof(compat_uptr_t)+sizeof(compat_size_t)) ||
  1654. __get_user(up, (compat_uptr_t __user *)sig) ||
  1655. __get_user(sigsetsize,
  1656. (compat_size_t __user *)(sig+sizeof(up))))
  1657. return -EFAULT;
  1658. }
  1659. return compat_sys_pselect7(n, inp, outp, exp, tsp, compat_ptr(up),
  1660. sigsetsize);
  1661. }
  1662. asmlinkage long compat_sys_ppoll(struct pollfd __user *ufds,
  1663. unsigned int nfds, struct compat_timespec __user *tsp,
  1664. const compat_sigset_t __user *sigmask, compat_size_t sigsetsize)
  1665. {
  1666. compat_sigset_t ss32;
  1667. sigset_t ksigmask, sigsaved;
  1668. struct compat_timespec ts;
  1669. s64 timeout = -1;
  1670. int ret;
  1671. if (tsp) {
  1672. if (copy_from_user(&ts, tsp, sizeof(ts)))
  1673. return -EFAULT;
  1674. /* We assume that ts.tv_sec is always lower than
  1675. the number of seconds that can be expressed in
  1676. an s64. Otherwise the compiler bitches at us */
  1677. timeout = ROUND_UP(ts.tv_nsec, 1000000000/HZ);
  1678. timeout += ts.tv_sec * HZ;
  1679. }
  1680. if (sigmask) {
  1681. if (sigsetsize != sizeof(compat_sigset_t))
  1682. return -EINVAL;
  1683. if (copy_from_user(&ss32, sigmask, sizeof(ss32)))
  1684. return -EFAULT;
  1685. sigset_from_compat(&ksigmask, &ss32);
  1686. sigdelsetmask(&ksigmask, sigmask(SIGKILL)|sigmask(SIGSTOP));
  1687. sigprocmask(SIG_SETMASK, &ksigmask, &sigsaved);
  1688. }
  1689. ret = do_sys_poll(ufds, nfds, &timeout);
  1690. /* We can restart this syscall, usually */
  1691. if (ret == -EINTR) {
  1692. /*
  1693. * Don't restore the signal mask yet. Let do_signal() deliver
  1694. * the signal on the way back to userspace, before the signal
  1695. * mask is restored.
  1696. */
  1697. if (sigmask) {
  1698. memcpy(&current->saved_sigmask, &sigsaved,
  1699. sizeof(sigsaved));
  1700. set_thread_flag(TIF_RESTORE_SIGMASK);
  1701. }
  1702. ret = -ERESTARTNOHAND;
  1703. } else if (sigmask)
  1704. sigprocmask(SIG_SETMASK, &sigsaved, NULL);
  1705. if (tsp && timeout >= 0) {
  1706. struct compat_timespec rts;
  1707. if (current->personality & STICKY_TIMEOUTS)
  1708. goto sticky;
  1709. /* Yes, we know it's actually an s64, but it's also positive. */
  1710. rts.tv_nsec = jiffies_to_usecs(do_div((*(u64*)&timeout), HZ)) *
  1711. 1000;
  1712. rts.tv_sec = timeout;
  1713. if (compat_timespec_compare(&rts, &ts) >= 0)
  1714. rts = ts;
  1715. if (copy_to_user(tsp, &rts, sizeof(rts))) {
  1716. sticky:
  1717. /*
  1718. * If an application puts its timeval in read-only
  1719. * memory, we don't want the Linux-specific update to
  1720. * the timeval to cause a fault after the select has
  1721. * completed successfully. However, because we're not
  1722. * updating the timeval, we can't restart the system
  1723. * call.
  1724. */
  1725. if (ret == -ERESTARTNOHAND && timeout >= 0)
  1726. ret = -EINTR;
  1727. }
  1728. }
  1729. return ret;
  1730. }
  1731. #endif /* TIF_RESTORE_SIGMASK */
  1732. #if defined(CONFIG_NFSD) || defined(CONFIG_NFSD_MODULE)
  1733. /* Stuff for NFS server syscalls... */
  1734. struct compat_nfsctl_svc {
  1735. u16 svc32_port;
  1736. s32 svc32_nthreads;
  1737. };
  1738. struct compat_nfsctl_client {
  1739. s8 cl32_ident[NFSCLNT_IDMAX+1];
  1740. s32 cl32_naddr;
  1741. struct in_addr cl32_addrlist[NFSCLNT_ADDRMAX];
  1742. s32 cl32_fhkeytype;
  1743. s32 cl32_fhkeylen;
  1744. u8 cl32_fhkey[NFSCLNT_KEYMAX];
  1745. };
  1746. struct compat_nfsctl_export {
  1747. char ex32_client[NFSCLNT_IDMAX+1];
  1748. char ex32_path[NFS_MAXPATHLEN+1];
  1749. compat_dev_t ex32_dev;
  1750. compat_ino_t ex32_ino;
  1751. compat_int_t ex32_flags;
  1752. __compat_uid_t ex32_anon_uid;
  1753. __compat_gid_t ex32_anon_gid;
  1754. };
  1755. struct compat_nfsctl_fdparm {
  1756. struct sockaddr gd32_addr;
  1757. s8 gd32_path[NFS_MAXPATHLEN+1];
  1758. compat_int_t gd32_version;
  1759. };
  1760. struct compat_nfsctl_fsparm {
  1761. struct sockaddr gd32_addr;
  1762. s8 gd32_path[NFS_MAXPATHLEN+1];
  1763. compat_int_t gd32_maxlen;
  1764. };
  1765. struct compat_nfsctl_arg {
  1766. compat_int_t ca32_version; /* safeguard */
  1767. union {
  1768. struct compat_nfsctl_svc u32_svc;
  1769. struct compat_nfsctl_client u32_client;
  1770. struct compat_nfsctl_export u32_export;
  1771. struct compat_nfsctl_fdparm u32_getfd;
  1772. struct compat_nfsctl_fsparm u32_getfs;
  1773. } u;
  1774. #define ca32_svc u.u32_svc
  1775. #define ca32_client u.u32_client
  1776. #define ca32_export u.u32_export
  1777. #define ca32_getfd u.u32_getfd
  1778. #define ca32_getfs u.u32_getfs
  1779. };
  1780. union compat_nfsctl_res {
  1781. __u8 cr32_getfh[NFS_FHSIZE];
  1782. struct knfsd_fh cr32_getfs;
  1783. };
  1784. static int compat_nfs_svc_trans(struct nfsctl_arg *karg,
  1785. struct compat_nfsctl_arg __user *arg)
  1786. {
  1787. if (!access_ok(VERIFY_READ, &arg->ca32_svc, sizeof(arg->ca32_svc)) ||
  1788. get_user(karg->ca_version, &arg->ca32_version) ||
  1789. __get_user(karg->ca_svc.svc_port, &arg->ca32_svc.svc32_port) ||
  1790. __get_user(karg->ca_svc.svc_nthreads,
  1791. &arg->ca32_svc.svc32_nthreads))
  1792. return -EFAULT;
  1793. return 0;
  1794. }
  1795. static int compat_nfs_clnt_trans(struct nfsctl_arg *karg,
  1796. struct compat_nfsctl_arg __user *arg)
  1797. {
  1798. if (!access_ok(VERIFY_READ, &arg->ca32_client,
  1799. sizeof(arg->ca32_client)) ||
  1800. get_user(karg->ca_version, &arg->ca32_version) ||
  1801. __copy_from_user(&karg->ca_client.cl_ident[0],
  1802. &arg->ca32_client.cl32_ident[0],
  1803. NFSCLNT_IDMAX) ||
  1804. __get_user(karg->ca_client.cl_naddr,
  1805. &arg->ca32_client.cl32_naddr) ||
  1806. __copy_from_user(&karg->ca_client.cl_addrlist[0],
  1807. &arg->ca32_client.cl32_addrlist[0],
  1808. (sizeof(struct in_addr) * NFSCLNT_ADDRMAX)) ||
  1809. __get_user(karg->ca_client.cl_fhkeytype,
  1810. &arg->ca32_client.cl32_fhkeytype) ||
  1811. __get_user(karg->ca_client.cl_fhkeylen,
  1812. &arg->ca32_client.cl32_fhkeylen) ||
  1813. __copy_from_user(&karg->ca_client.cl_fhkey[0],
  1814. &arg->ca32_client.cl32_fhkey[0],
  1815. NFSCLNT_KEYMAX))
  1816. return -EFAULT;
  1817. return 0;
  1818. }
  1819. static int compat_nfs_exp_trans(struct nfsctl_arg *karg,
  1820. struct compat_nfsctl_arg __user *arg)
  1821. {
  1822. if (!access_ok(VERIFY_READ, &arg->ca32_export,
  1823. sizeof(arg->ca32_export)) ||
  1824. get_user(karg->ca_version, &arg->ca32_version) ||
  1825. __copy_from_user(&karg->ca_export.ex_client[0],
  1826. &arg->ca32_export.ex32_client[0],
  1827. NFSCLNT_IDMAX) ||
  1828. __copy_from_user(&karg->ca_export.ex_path[0],
  1829. &arg->ca32_export.ex32_path[0],
  1830. NFS_MAXPATHLEN) ||
  1831. __get_user(karg->ca_export.ex_dev,
  1832. &arg->ca32_export.ex32_dev) ||
  1833. __get_user(karg->ca_export.ex_ino,
  1834. &arg->ca32_export.ex32_ino) ||
  1835. __get_user(karg->ca_export.ex_flags,
  1836. &arg->ca32_export.ex32_flags) ||
  1837. __get_user(karg->ca_export.ex_anon_uid,
  1838. &arg->ca32_export.ex32_anon_uid) ||
  1839. __get_user(karg->ca_export.ex_anon_gid,
  1840. &arg->ca32_export.ex32_anon_gid))
  1841. return -EFAULT;
  1842. SET_UID(karg->ca_export.ex_anon_uid, karg->ca_export.ex_anon_uid);
  1843. SET_GID(karg->ca_export.ex_anon_gid, karg->ca_export.ex_anon_gid);
  1844. return 0;
  1845. }
  1846. static int compat_nfs_getfd_trans(struct nfsctl_arg *karg,
  1847. struct compat_nfsctl_arg __user *arg)
  1848. {
  1849. if (!access_ok(VERIFY_READ, &arg->ca32_getfd,
  1850. sizeof(arg->ca32_getfd)) ||
  1851. get_user(karg->ca_version, &arg->ca32_version) ||
  1852. __copy_from_user(&karg->ca_getfd.gd_addr,
  1853. &arg->ca32_getfd.gd32_addr,
  1854. (sizeof(struct sockaddr))) ||
  1855. __copy_from_user(&karg->ca_getfd.gd_path,
  1856. &arg->ca32_getfd.gd32_path,
  1857. (NFS_MAXPATHLEN+1)) ||
  1858. __get_user(karg->ca_getfd.gd_version,
  1859. &arg->ca32_getfd.gd32_version))
  1860. return -EFAULT;
  1861. return 0;
  1862. }
  1863. static int compat_nfs_getfs_trans(struct nfsctl_arg *karg,
  1864. struct compat_nfsctl_arg __user *arg)
  1865. {
  1866. if (!access_ok(VERIFY_READ,&arg->ca32_getfs,sizeof(arg->ca32_getfs)) ||
  1867. get_user(karg->ca_version, &arg->ca32_version) ||
  1868. __copy_from_user(&karg->ca_getfs.gd_addr,
  1869. &arg->ca32_getfs.gd32_addr,
  1870. (sizeof(struct sockaddr))) ||
  1871. __copy_from_user(&karg->ca_getfs.gd_path,
  1872. &arg->ca32_getfs.gd32_path,
  1873. (NFS_MAXPATHLEN+1)) ||
  1874. __get_user(karg->ca_getfs.gd_maxlen,
  1875. &arg->ca32_getfs.gd32_maxlen))
  1876. return -EFAULT;
  1877. return 0;
  1878. }
  1879. /* This really doesn't need translations, we are only passing
  1880. * back a union which contains opaque nfs file handle data.
  1881. */
  1882. static int compat_nfs_getfh_res_trans(union nfsctl_res *kres,
  1883. union compat_nfsctl_res __user *res)
  1884. {
  1885. int err;
  1886. err = copy_to_user(res, kres, sizeof(*res));
  1887. return (err) ? -EFAULT : 0;
  1888. }
  1889. asmlinkage long compat_sys_nfsservctl(int cmd,
  1890. struct compat_nfsctl_arg __user *arg,
  1891. union compat_nfsctl_res __user *res)
  1892. {
  1893. struct nfsctl_arg *karg;
  1894. union nfsctl_res *kres;
  1895. mm_segment_t oldfs;
  1896. int err;
  1897. karg = kmalloc(sizeof(*karg), GFP_USER);
  1898. kres = kmalloc(sizeof(*kres), GFP_USER);
  1899. if(!karg || !kres) {
  1900. err = -ENOMEM;
  1901. goto done;
  1902. }
  1903. switch(cmd) {
  1904. case NFSCTL_SVC:
  1905. err = compat_nfs_svc_trans(karg, arg);
  1906. break;
  1907. case NFSCTL_ADDCLIENT:
  1908. err = compat_nfs_clnt_trans(karg, arg);
  1909. break;
  1910. case NFSCTL_DELCLIENT:
  1911. err = compat_nfs_clnt_trans(karg, arg);
  1912. break;
  1913. case NFSCTL_EXPORT:
  1914. case NFSCTL_UNEXPORT:
  1915. err = compat_nfs_exp_trans(karg, arg);
  1916. break;
  1917. case NFSCTL_GETFD:
  1918. err = compat_nfs_getfd_trans(karg, arg);
  1919. break;
  1920. case NFSCTL_GETFS:
  1921. err = compat_nfs_getfs_trans(karg, arg);
  1922. break;
  1923. default:
  1924. err = -EINVAL;
  1925. break;
  1926. }
  1927. if (err)
  1928. goto done;
  1929. oldfs = get_fs();
  1930. set_fs(KERNEL_DS);
  1931. /* The __user pointer casts are valid because of the set_fs() */
  1932. err = sys_nfsservctl(cmd, (void __user *) karg, (void __user *) kres);
  1933. set_fs(oldfs);
  1934. if (err)
  1935. goto done;
  1936. if((cmd == NFSCTL_GETFD) ||
  1937. (cmd == NFSCTL_GETFS))
  1938. err = compat_nfs_getfh_res_trans(kres, res);
  1939. done:
  1940. kfree(karg);
  1941. kfree(kres);
  1942. return err;
  1943. }
  1944. #else /* !NFSD */
  1945. long asmlinkage compat_sys_nfsservctl(int cmd, void *notused, void *notused2)
  1946. {
  1947. return sys_ni_syscall();
  1948. }
  1949. #endif
  1950. #ifdef CONFIG_EPOLL
  1951. #ifdef CONFIG_HAS_COMPAT_EPOLL_EVENT
  1952. asmlinkage long compat_sys_epoll_ctl(int epfd, int op, int fd,
  1953. struct compat_epoll_event __user *event)
  1954. {
  1955. long err = 0;
  1956. struct compat_epoll_event user;
  1957. struct epoll_event __user *kernel = NULL;
  1958. if (event) {
  1959. if (copy_from_user(&user, event, sizeof(user)))
  1960. return -EFAULT;
  1961. kernel = compat_alloc_user_space(sizeof(struct epoll_event));
  1962. err |= __put_user(user.events, &kernel->events);
  1963. err |= __put_user(user.data, &kernel->data);
  1964. }
  1965. return err ? err : sys_epoll_ctl(epfd, op, fd, kernel);
  1966. }
  1967. asmlinkage long compat_sys_epoll_wait(int epfd,
  1968. struct compat_epoll_event __user *events,
  1969. int maxevents, int timeout)
  1970. {
  1971. long i, ret, err = 0;
  1972. struct epoll_event __user *kbuf;
  1973. struct epoll_event ev;
  1974. if ((maxevents <= 0) ||
  1975. (maxevents > (INT_MAX / sizeof(struct epoll_event))))
  1976. return -EINVAL;
  1977. kbuf = compat_alloc_user_space(sizeof(struct epoll_event) * maxevents);
  1978. ret = sys_epoll_wait(epfd, kbuf, maxevents, timeout);
  1979. for (i = 0; i < ret; i++) {
  1980. err |= __get_user(ev.events, &kbuf[i].events);
  1981. err |= __get_user(ev.data, &kbuf[i].data);
  1982. err |= __put_user(ev.events, &events->events);
  1983. err |= __put_user_unaligned(ev.data, &events->data);
  1984. events++;
  1985. }
  1986. return err ? -EFAULT: ret;
  1987. }
  1988. #endif /* CONFIG_HAS_COMPAT_EPOLL_EVENT */
  1989. #ifdef TIF_RESTORE_SIGMASK
  1990. asmlinkage long compat_sys_epoll_pwait(int epfd,
  1991. struct compat_epoll_event __user *events,
  1992. int maxevents, int timeout,
  1993. const compat_sigset_t __user *sigmask,
  1994. compat_size_t sigsetsize)
  1995. {
  1996. long err;
  1997. compat_sigset_t csigmask;
  1998. sigset_t ksigmask, sigsaved;
  1999. /*
  2000. * If the caller wants a certain signal mask to be set during the wait,
  2001. * we apply it here.
  2002. */
  2003. if (sigmask) {
  2004. if (sigsetsize != sizeof(compat_sigset_t))
  2005. return -EINVAL;
  2006. if (copy_from_user(&csigmask, sigmask, sizeof(csigmask)))
  2007. return -EFAULT;
  2008. sigset_from_compat(&ksigmask, &csigmask);
  2009. sigdelsetmask(&ksigmask, sigmask(SIGKILL) | sigmask(SIGSTOP));
  2010. sigprocmask(SIG_SETMASK, &ksigmask, &sigsaved);
  2011. }
  2012. #ifdef CONFIG_HAS_COMPAT_EPOLL_EVENT
  2013. err = compat_sys_epoll_wait(epfd, events, maxevents, timeout);
  2014. #else
  2015. err = sys_epoll_wait(epfd, events, maxevents, timeout);
  2016. #endif
  2017. /*
  2018. * If we changed the signal mask, we need to restore the original one.
  2019. * In case we've got a signal while waiting, we do not restore the
  2020. * signal mask yet, and we allow do_signal() to deliver the signal on
  2021. * the way back to userspace, before the signal mask is restored.
  2022. */
  2023. if (sigmask) {
  2024. if (err == -EINTR) {
  2025. memcpy(&current->saved_sigmask, &sigsaved,
  2026. sizeof(sigsaved));
  2027. set_thread_flag(TIF_RESTORE_SIGMASK);
  2028. } else
  2029. sigprocmask(SIG_SETMASK, &sigsaved, NULL);
  2030. }
  2031. return err;
  2032. }
  2033. #endif /* TIF_RESTORE_SIGMASK */
  2034. #endif /* CONFIG_EPOLL */