linux32.c 39 KB

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  1. /*
  2. * Conversion between 32-bit and 64-bit native system calls.
  3. *
  4. * Copyright (C) 2000 Silicon Graphics, Inc.
  5. * Written by Ulf Carlsson (ulfc@engr.sgi.com)
  6. * sys32_execve from ia64/ia32 code, Feb 2000, Kanoj Sarcar (kanoj@sgi.com)
  7. */
  8. #include <linux/config.h>
  9. #include <linux/compiler.h>
  10. #include <linux/mm.h>
  11. #include <linux/errno.h>
  12. #include <linux/file.h>
  13. #include <linux/smp_lock.h>
  14. #include <linux/highuid.h>
  15. #include <linux/dirent.h>
  16. #include <linux/resource.h>
  17. #include <linux/highmem.h>
  18. #include <linux/time.h>
  19. #include <linux/times.h>
  20. #include <linux/poll.h>
  21. #include <linux/slab.h>
  22. #include <linux/skbuff.h>
  23. #include <linux/filter.h>
  24. #include <linux/shm.h>
  25. #include <linux/sem.h>
  26. #include <linux/msg.h>
  27. #include <linux/icmpv6.h>
  28. #include <linux/syscalls.h>
  29. #include <linux/sysctl.h>
  30. #include <linux/utime.h>
  31. #include <linux/utsname.h>
  32. #include <linux/personality.h>
  33. #include <linux/timex.h>
  34. #include <linux/dnotify.h>
  35. #include <linux/module.h>
  36. #include <linux/binfmts.h>
  37. #include <linux/security.h>
  38. #include <linux/compat.h>
  39. #include <linux/vfs.h>
  40. #include <net/sock.h>
  41. #include <net/scm.h>
  42. #include <asm/ipc.h>
  43. #include <asm/sim.h>
  44. #include <asm/uaccess.h>
  45. #include <asm/mmu_context.h>
  46. #include <asm/mman.h>
  47. /* Use this to get at 32-bit user passed pointers. */
  48. /* A() macro should be used for places where you e.g.
  49. have some internal variable u32 and just want to get
  50. rid of a compiler warning. AA() has to be used in
  51. places where you want to convert a function argument
  52. to 32bit pointer or when you e.g. access pt_regs
  53. structure and want to consider 32bit registers only.
  54. */
  55. #define A(__x) ((unsigned long)(__x))
  56. #define AA(__x) ((unsigned long)((int)__x))
  57. #ifdef __MIPSEB__
  58. #define merge_64(r1,r2) ((((r1) & 0xffffffffUL) << 32) + ((r2) & 0xffffffffUL))
  59. #endif
  60. #ifdef __MIPSEL__
  61. #define merge_64(r1,r2) ((((r2) & 0xffffffffUL) << 32) + ((r1) & 0xffffffffUL))
  62. #endif
  63. /*
  64. * Revalidate the inode. This is required for proper NFS attribute caching.
  65. */
  66. int cp_compat_stat(struct kstat *stat, struct compat_stat __user *statbuf)
  67. {
  68. struct compat_stat tmp;
  69. if (!new_valid_dev(stat->dev) || !new_valid_dev(stat->rdev))
  70. return -EOVERFLOW;
  71. memset(&tmp, 0, sizeof(tmp));
  72. tmp.st_dev = new_encode_dev(stat->dev);
  73. tmp.st_ino = stat->ino;
  74. tmp.st_mode = stat->mode;
  75. tmp.st_nlink = stat->nlink;
  76. SET_UID(tmp.st_uid, stat->uid);
  77. SET_GID(tmp.st_gid, stat->gid);
  78. tmp.st_rdev = new_encode_dev(stat->rdev);
  79. tmp.st_size = stat->size;
  80. tmp.st_atime = stat->atime.tv_sec;
  81. tmp.st_mtime = stat->mtime.tv_sec;
  82. tmp.st_ctime = stat->ctime.tv_sec;
  83. #ifdef STAT_HAVE_NSEC
  84. tmp.st_atime_nsec = stat->atime.tv_nsec;
  85. tmp.st_mtime_nsec = stat->mtime.tv_nsec;
  86. tmp.st_ctime_nsec = stat->ctime.tv_nsec;
  87. #endif
  88. tmp.st_blocks = stat->blocks;
  89. tmp.st_blksize = stat->blksize;
  90. return copy_to_user(statbuf,&tmp,sizeof(tmp)) ? -EFAULT : 0;
  91. }
  92. asmlinkage unsigned long
  93. sys32_mmap2(unsigned long addr, unsigned long len, unsigned long prot,
  94. unsigned long flags, unsigned long fd, unsigned long pgoff)
  95. {
  96. struct file * file = NULL;
  97. unsigned long error;
  98. error = -EINVAL;
  99. if (pgoff & (~PAGE_MASK >> 12))
  100. goto out;
  101. pgoff >>= PAGE_SHIFT-12;
  102. if (!(flags & MAP_ANONYMOUS)) {
  103. error = -EBADF;
  104. file = fget(fd);
  105. if (!file)
  106. goto out;
  107. }
  108. flags &= ~(MAP_EXECUTABLE | MAP_DENYWRITE);
  109. down_write(&current->mm->mmap_sem);
  110. error = do_mmap_pgoff(file, addr, len, prot, flags, pgoff);
  111. up_write(&current->mm->mmap_sem);
  112. if (file)
  113. fput(file);
  114. out:
  115. return error;
  116. }
  117. asmlinkage int sys_truncate64(const char __user *path, unsigned int high,
  118. unsigned int low)
  119. {
  120. if ((int)high < 0)
  121. return -EINVAL;
  122. return sys_truncate(path, ((long) high << 32) | low);
  123. }
  124. asmlinkage int sys_ftruncate64(unsigned int fd, unsigned int high,
  125. unsigned int low)
  126. {
  127. if ((int)high < 0)
  128. return -EINVAL;
  129. return sys_ftruncate(fd, ((long) high << 32) | low);
  130. }
  131. /*
  132. * sys_execve() executes a new program.
  133. */
  134. asmlinkage int sys32_execve(nabi_no_regargs struct pt_regs regs)
  135. {
  136. int error;
  137. char * filename;
  138. filename = getname(compat_ptr(regs.regs[4]));
  139. error = PTR_ERR(filename);
  140. if (IS_ERR(filename))
  141. goto out;
  142. error = compat_do_execve(filename, compat_ptr(regs.regs[5]),
  143. compat_ptr(regs.regs[6]), &regs);
  144. putname(filename);
  145. out:
  146. return error;
  147. }
  148. asmlinkage long
  149. sysn32_waitid(int which, compat_pid_t pid,
  150. siginfo_t __user *uinfo, int options,
  151. struct compat_rusage __user *uru)
  152. {
  153. struct rusage ru;
  154. long ret;
  155. mm_segment_t old_fs = get_fs();
  156. int si_signo;
  157. if (!access_ok(VERIFY_WRITE, uinfo, sizeof(*uinfo)))
  158. return -EFAULT;
  159. set_fs (KERNEL_DS);
  160. ret = sys_waitid(which, pid, uinfo, options,
  161. uru ? (struct rusage __user *) &ru : NULL);
  162. set_fs (old_fs);
  163. if (__get_user(si_signo, &uinfo->si_signo))
  164. return -EFAULT;
  165. if (ret < 0 || si_signo == 0)
  166. return ret;
  167. if (uru)
  168. ret = put_compat_rusage(&ru, uru);
  169. return ret;
  170. }
  171. struct sysinfo32 {
  172. s32 uptime;
  173. u32 loads[3];
  174. u32 totalram;
  175. u32 freeram;
  176. u32 sharedram;
  177. u32 bufferram;
  178. u32 totalswap;
  179. u32 freeswap;
  180. u16 procs;
  181. u32 totalhigh;
  182. u32 freehigh;
  183. u32 mem_unit;
  184. char _f[8];
  185. };
  186. asmlinkage int sys32_sysinfo(struct sysinfo32 __user *info)
  187. {
  188. struct sysinfo s;
  189. int ret, err;
  190. mm_segment_t old_fs = get_fs ();
  191. set_fs (KERNEL_DS);
  192. ret = sys_sysinfo((struct sysinfo __user *)&s);
  193. set_fs (old_fs);
  194. err = put_user (s.uptime, &info->uptime);
  195. err |= __put_user (s.loads[0], &info->loads[0]);
  196. err |= __put_user (s.loads[1], &info->loads[1]);
  197. err |= __put_user (s.loads[2], &info->loads[2]);
  198. err |= __put_user (s.totalram, &info->totalram);
  199. err |= __put_user (s.freeram, &info->freeram);
  200. err |= __put_user (s.sharedram, &info->sharedram);
  201. err |= __put_user (s.bufferram, &info->bufferram);
  202. err |= __put_user (s.totalswap, &info->totalswap);
  203. err |= __put_user (s.freeswap, &info->freeswap);
  204. err |= __put_user (s.procs, &info->procs);
  205. err |= __put_user (s.totalhigh, &info->totalhigh);
  206. err |= __put_user (s.freehigh, &info->freehigh);
  207. err |= __put_user (s.mem_unit, &info->mem_unit);
  208. if (err)
  209. return -EFAULT;
  210. return ret;
  211. }
  212. #define RLIM_INFINITY32 0x7fffffff
  213. #define RESOURCE32(x) ((x > RLIM_INFINITY32) ? RLIM_INFINITY32 : x)
  214. struct rlimit32 {
  215. int rlim_cur;
  216. int rlim_max;
  217. };
  218. #ifdef __MIPSEB__
  219. asmlinkage long sys32_truncate64(const char __user * path, unsigned long __dummy,
  220. int length_hi, int length_lo)
  221. #endif
  222. #ifdef __MIPSEL__
  223. asmlinkage long sys32_truncate64(const char __user * path, unsigned long __dummy,
  224. int length_lo, int length_hi)
  225. #endif
  226. {
  227. loff_t length;
  228. length = ((unsigned long) length_hi << 32) | (unsigned int) length_lo;
  229. return sys_truncate(path, length);
  230. }
  231. #ifdef __MIPSEB__
  232. asmlinkage long sys32_ftruncate64(unsigned int fd, unsigned long __dummy,
  233. int length_hi, int length_lo)
  234. #endif
  235. #ifdef __MIPSEL__
  236. asmlinkage long sys32_ftruncate64(unsigned int fd, unsigned long __dummy,
  237. int length_lo, int length_hi)
  238. #endif
  239. {
  240. loff_t length;
  241. length = ((unsigned long) length_hi << 32) | (unsigned int) length_lo;
  242. return sys_ftruncate(fd, length);
  243. }
  244. static inline long
  245. get_tv32(struct timeval *o, struct compat_timeval __user *i)
  246. {
  247. return (!access_ok(VERIFY_READ, i, sizeof(*i)) ||
  248. (__get_user(o->tv_sec, &i->tv_sec) |
  249. __get_user(o->tv_usec, &i->tv_usec)));
  250. }
  251. static inline long
  252. put_tv32(struct compat_timeval __user *o, struct timeval *i)
  253. {
  254. return (!access_ok(VERIFY_WRITE, o, sizeof(*o)) ||
  255. (__put_user(i->tv_sec, &o->tv_sec) |
  256. __put_user(i->tv_usec, &o->tv_usec)));
  257. }
  258. extern struct timezone sys_tz;
  259. asmlinkage int
  260. sys32_gettimeofday(struct compat_timeval __user *tv, struct timezone __user *tz)
  261. {
  262. if (tv) {
  263. struct timeval ktv;
  264. do_gettimeofday(&ktv);
  265. if (put_tv32(tv, &ktv))
  266. return -EFAULT;
  267. }
  268. if (tz) {
  269. if (copy_to_user(tz, &sys_tz, sizeof(sys_tz)))
  270. return -EFAULT;
  271. }
  272. return 0;
  273. }
  274. static inline long get_ts32(struct timespec *o, struct compat_timeval __user *i)
  275. {
  276. long usec;
  277. if (!access_ok(VERIFY_READ, i, sizeof(*i)))
  278. return -EFAULT;
  279. if (__get_user(o->tv_sec, &i->tv_sec))
  280. return -EFAULT;
  281. if (__get_user(usec, &i->tv_usec))
  282. return -EFAULT;
  283. o->tv_nsec = usec * 1000;
  284. return 0;
  285. }
  286. asmlinkage int
  287. sys32_settimeofday(struct compat_timeval __user *tv, struct timezone __user *tz)
  288. {
  289. struct timespec kts;
  290. struct timezone ktz;
  291. if (tv) {
  292. if (get_ts32(&kts, tv))
  293. return -EFAULT;
  294. }
  295. if (tz) {
  296. if (copy_from_user(&ktz, tz, sizeof(ktz)))
  297. return -EFAULT;
  298. }
  299. return do_sys_settimeofday(tv ? &kts : NULL, tz ? &ktz : NULL);
  300. }
  301. asmlinkage int sys32_llseek(unsigned int fd, unsigned int offset_high,
  302. unsigned int offset_low, loff_t __user * result,
  303. unsigned int origin)
  304. {
  305. return sys_llseek(fd, offset_high, offset_low, result, origin);
  306. }
  307. /* From the Single Unix Spec: pread & pwrite act like lseek to pos + op +
  308. lseek back to original location. They fail just like lseek does on
  309. non-seekable files. */
  310. asmlinkage ssize_t sys32_pread(unsigned int fd, char __user * buf,
  311. size_t count, u32 unused, u64 a4, u64 a5)
  312. {
  313. ssize_t ret;
  314. struct file * file;
  315. ssize_t (*read)(struct file *, char __user *, size_t, loff_t *);
  316. loff_t pos;
  317. ret = -EBADF;
  318. file = fget(fd);
  319. if (!file)
  320. goto bad_file;
  321. if (!(file->f_mode & FMODE_READ))
  322. goto out;
  323. pos = merge_64(a4, a5);
  324. ret = rw_verify_area(READ, file, &pos, count);
  325. if (ret < 0)
  326. goto out;
  327. ret = -EINVAL;
  328. if (!file->f_op || !(read = file->f_op->read))
  329. goto out;
  330. if (pos < 0)
  331. goto out;
  332. ret = -ESPIPE;
  333. if (!(file->f_mode & FMODE_PREAD))
  334. goto out;
  335. ret = read(file, buf, count, &pos);
  336. if (ret > 0)
  337. dnotify_parent(file->f_dentry, DN_ACCESS);
  338. out:
  339. fput(file);
  340. bad_file:
  341. return ret;
  342. }
  343. asmlinkage ssize_t sys32_pwrite(unsigned int fd, const char __user * buf,
  344. size_t count, u32 unused, u64 a4, u64 a5)
  345. {
  346. ssize_t ret;
  347. struct file * file;
  348. ssize_t (*write)(struct file *, const char __user *, size_t, loff_t *);
  349. loff_t pos;
  350. ret = -EBADF;
  351. file = fget(fd);
  352. if (!file)
  353. goto bad_file;
  354. if (!(file->f_mode & FMODE_WRITE))
  355. goto out;
  356. pos = merge_64(a4, a5);
  357. ret = rw_verify_area(WRITE, file, &pos, count);
  358. if (ret < 0)
  359. goto out;
  360. ret = -EINVAL;
  361. if (!file->f_op || !(write = file->f_op->write))
  362. goto out;
  363. if (pos < 0)
  364. goto out;
  365. ret = -ESPIPE;
  366. if (!(file->f_mode & FMODE_PWRITE))
  367. goto out;
  368. ret = write(file, buf, count, &pos);
  369. if (ret > 0)
  370. dnotify_parent(file->f_dentry, DN_MODIFY);
  371. out:
  372. fput(file);
  373. bad_file:
  374. return ret;
  375. }
  376. asmlinkage int sys32_sched_rr_get_interval(compat_pid_t pid,
  377. struct compat_timespec __user *interval)
  378. {
  379. struct timespec t;
  380. int ret;
  381. mm_segment_t old_fs = get_fs ();
  382. set_fs (KERNEL_DS);
  383. ret = sys_sched_rr_get_interval(pid, (struct timespec __user *)&t);
  384. set_fs (old_fs);
  385. if (put_user (t.tv_sec, &interval->tv_sec) ||
  386. __put_user (t.tv_nsec, &interval->tv_nsec))
  387. return -EFAULT;
  388. return ret;
  389. }
  390. struct msgbuf32 { s32 mtype; char mtext[1]; };
  391. struct ipc_perm32
  392. {
  393. key_t key;
  394. __compat_uid_t uid;
  395. __compat_gid_t gid;
  396. __compat_uid_t cuid;
  397. __compat_gid_t cgid;
  398. compat_mode_t mode;
  399. unsigned short seq;
  400. };
  401. struct ipc64_perm32 {
  402. key_t key;
  403. __compat_uid_t uid;
  404. __compat_gid_t gid;
  405. __compat_uid_t cuid;
  406. __compat_gid_t cgid;
  407. compat_mode_t mode;
  408. unsigned short seq;
  409. unsigned short __pad1;
  410. unsigned int __unused1;
  411. unsigned int __unused2;
  412. };
  413. struct semid_ds32 {
  414. struct ipc_perm32 sem_perm; /* permissions .. see ipc.h */
  415. compat_time_t sem_otime; /* last semop time */
  416. compat_time_t sem_ctime; /* last change time */
  417. u32 sem_base; /* ptr to first semaphore in array */
  418. u32 sem_pending; /* pending operations to be processed */
  419. u32 sem_pending_last; /* last pending operation */
  420. u32 undo; /* undo requests on this array */
  421. unsigned short sem_nsems; /* no. of semaphores in array */
  422. };
  423. struct semid64_ds32 {
  424. struct ipc64_perm32 sem_perm;
  425. compat_time_t sem_otime;
  426. compat_time_t sem_ctime;
  427. unsigned int sem_nsems;
  428. unsigned int __unused1;
  429. unsigned int __unused2;
  430. };
  431. struct msqid_ds32
  432. {
  433. struct ipc_perm32 msg_perm;
  434. u32 msg_first;
  435. u32 msg_last;
  436. compat_time_t msg_stime;
  437. compat_time_t msg_rtime;
  438. compat_time_t msg_ctime;
  439. u32 wwait;
  440. u32 rwait;
  441. unsigned short msg_cbytes;
  442. unsigned short msg_qnum;
  443. unsigned short msg_qbytes;
  444. compat_ipc_pid_t msg_lspid;
  445. compat_ipc_pid_t msg_lrpid;
  446. };
  447. struct msqid64_ds32 {
  448. struct ipc64_perm32 msg_perm;
  449. compat_time_t msg_stime;
  450. unsigned int __unused1;
  451. compat_time_t msg_rtime;
  452. unsigned int __unused2;
  453. compat_time_t msg_ctime;
  454. unsigned int __unused3;
  455. unsigned int msg_cbytes;
  456. unsigned int msg_qnum;
  457. unsigned int msg_qbytes;
  458. compat_pid_t msg_lspid;
  459. compat_pid_t msg_lrpid;
  460. unsigned int __unused4;
  461. unsigned int __unused5;
  462. };
  463. struct shmid_ds32 {
  464. struct ipc_perm32 shm_perm;
  465. int shm_segsz;
  466. compat_time_t shm_atime;
  467. compat_time_t shm_dtime;
  468. compat_time_t shm_ctime;
  469. compat_ipc_pid_t shm_cpid;
  470. compat_ipc_pid_t shm_lpid;
  471. unsigned short shm_nattch;
  472. };
  473. struct shmid64_ds32 {
  474. struct ipc64_perm32 shm_perm;
  475. compat_size_t shm_segsz;
  476. compat_time_t shm_atime;
  477. compat_time_t shm_dtime;
  478. compat_time_t shm_ctime;
  479. compat_pid_t shm_cpid;
  480. compat_pid_t shm_lpid;
  481. unsigned int shm_nattch;
  482. unsigned int __unused1;
  483. unsigned int __unused2;
  484. };
  485. struct ipc_kludge32 {
  486. u32 msgp;
  487. s32 msgtyp;
  488. };
  489. static int
  490. do_sys32_semctl(int first, int second, int third, void __user *uptr)
  491. {
  492. union semun fourth;
  493. u32 pad;
  494. int err, err2;
  495. struct semid64_ds s;
  496. mm_segment_t old_fs;
  497. if (!uptr)
  498. return -EINVAL;
  499. err = -EFAULT;
  500. if (get_user (pad, (u32 __user *)uptr))
  501. return err;
  502. if ((third & ~IPC_64) == SETVAL)
  503. fourth.val = (int)pad;
  504. else
  505. fourth.__pad = (void __user *)A(pad);
  506. switch (third & ~IPC_64) {
  507. case IPC_INFO:
  508. case IPC_RMID:
  509. case IPC_SET:
  510. case SEM_INFO:
  511. case GETVAL:
  512. case GETPID:
  513. case GETNCNT:
  514. case GETZCNT:
  515. case GETALL:
  516. case SETVAL:
  517. case SETALL:
  518. err = sys_semctl (first, second, third, fourth);
  519. break;
  520. case IPC_STAT:
  521. case SEM_STAT:
  522. fourth.__pad = (struct semid64_ds __user *)&s;
  523. old_fs = get_fs();
  524. set_fs(KERNEL_DS);
  525. err = sys_semctl(first, second, third | IPC_64, fourth);
  526. set_fs(old_fs);
  527. if (third & IPC_64) {
  528. struct semid64_ds32 __user *usp64 = (struct semid64_ds32 __user *) A(pad);
  529. if (!access_ok(VERIFY_WRITE, usp64, sizeof(*usp64))) {
  530. err = -EFAULT;
  531. break;
  532. }
  533. err2 = __put_user(s.sem_perm.key, &usp64->sem_perm.key);
  534. err2 |= __put_user(s.sem_perm.uid, &usp64->sem_perm.uid);
  535. err2 |= __put_user(s.sem_perm.gid, &usp64->sem_perm.gid);
  536. err2 |= __put_user(s.sem_perm.cuid, &usp64->sem_perm.cuid);
  537. err2 |= __put_user(s.sem_perm.cgid, &usp64->sem_perm.cgid);
  538. err2 |= __put_user(s.sem_perm.mode, &usp64->sem_perm.mode);
  539. err2 |= __put_user(s.sem_perm.seq, &usp64->sem_perm.seq);
  540. err2 |= __put_user(s.sem_otime, &usp64->sem_otime);
  541. err2 |= __put_user(s.sem_ctime, &usp64->sem_ctime);
  542. err2 |= __put_user(s.sem_nsems, &usp64->sem_nsems);
  543. } else {
  544. struct semid_ds32 __user *usp32 = (struct semid_ds32 __user *) A(pad);
  545. if (!access_ok(VERIFY_WRITE, usp32, sizeof(*usp32))) {
  546. err = -EFAULT;
  547. break;
  548. }
  549. err2 = __put_user(s.sem_perm.key, &usp32->sem_perm.key);
  550. err2 |= __put_user(s.sem_perm.uid, &usp32->sem_perm.uid);
  551. err2 |= __put_user(s.sem_perm.gid, &usp32->sem_perm.gid);
  552. err2 |= __put_user(s.sem_perm.cuid, &usp32->sem_perm.cuid);
  553. err2 |= __put_user(s.sem_perm.cgid, &usp32->sem_perm.cgid);
  554. err2 |= __put_user(s.sem_perm.mode, &usp32->sem_perm.mode);
  555. err2 |= __put_user(s.sem_perm.seq, &usp32->sem_perm.seq);
  556. err2 |= __put_user(s.sem_otime, &usp32->sem_otime);
  557. err2 |= __put_user(s.sem_ctime, &usp32->sem_ctime);
  558. err2 |= __put_user(s.sem_nsems, &usp32->sem_nsems);
  559. }
  560. if (err2)
  561. err = -EFAULT;
  562. break;
  563. default:
  564. err = - EINVAL;
  565. break;
  566. }
  567. return err;
  568. }
  569. static int
  570. do_sys32_msgsnd (int first, int second, int third, void __user *uptr)
  571. {
  572. struct msgbuf32 __user *up = (struct msgbuf32 __user *)uptr;
  573. struct msgbuf *p;
  574. mm_segment_t old_fs;
  575. int err;
  576. if (second < 0)
  577. return -EINVAL;
  578. p = kmalloc (second + sizeof (struct msgbuf)
  579. + 4, GFP_USER);
  580. if (!p)
  581. return -ENOMEM;
  582. err = get_user (p->mtype, &up->mtype);
  583. if (err)
  584. goto out;
  585. err |= __copy_from_user (p->mtext, &up->mtext, second);
  586. if (err)
  587. goto out;
  588. old_fs = get_fs ();
  589. set_fs (KERNEL_DS);
  590. err = sys_msgsnd (first, (struct msgbuf __user *)p, second, third);
  591. set_fs (old_fs);
  592. out:
  593. kfree (p);
  594. return err;
  595. }
  596. static int
  597. do_sys32_msgrcv (int first, int second, int msgtyp, int third,
  598. int version, void __user *uptr)
  599. {
  600. struct msgbuf32 __user *up;
  601. struct msgbuf *p;
  602. mm_segment_t old_fs;
  603. int err;
  604. if (!version) {
  605. struct ipc_kludge32 __user *uipck = (struct ipc_kludge32 __user *)uptr;
  606. struct ipc_kludge32 ipck;
  607. err = -EINVAL;
  608. if (!uptr)
  609. goto out;
  610. err = -EFAULT;
  611. if (copy_from_user (&ipck, uipck, sizeof (struct ipc_kludge32)))
  612. goto out;
  613. uptr = (void __user *)AA(ipck.msgp);
  614. msgtyp = ipck.msgtyp;
  615. }
  616. if (second < 0)
  617. return -EINVAL;
  618. err = -ENOMEM;
  619. p = kmalloc (second + sizeof (struct msgbuf) + 4, GFP_USER);
  620. if (!p)
  621. goto out;
  622. old_fs = get_fs ();
  623. set_fs (KERNEL_DS);
  624. err = sys_msgrcv (first, (struct msgbuf __user *)p, second + 4, msgtyp, third);
  625. set_fs (old_fs);
  626. if (err < 0)
  627. goto free_then_out;
  628. up = (struct msgbuf32 __user *)uptr;
  629. if (put_user (p->mtype, &up->mtype) ||
  630. __copy_to_user (&up->mtext, p->mtext, err))
  631. err = -EFAULT;
  632. free_then_out:
  633. kfree (p);
  634. out:
  635. return err;
  636. }
  637. static int
  638. do_sys32_msgctl (int first, int second, void __user *uptr)
  639. {
  640. int err = -EINVAL, err2;
  641. struct msqid64_ds m;
  642. struct msqid_ds32 __user *up32 = (struct msqid_ds32 __user *)uptr;
  643. struct msqid64_ds32 __user *up64 = (struct msqid64_ds32 __user *)uptr;
  644. mm_segment_t old_fs;
  645. switch (second & ~IPC_64) {
  646. case IPC_INFO:
  647. case IPC_RMID:
  648. case MSG_INFO:
  649. err = sys_msgctl (first, second, (struct msqid_ds __user *)uptr);
  650. break;
  651. case IPC_SET:
  652. if (second & IPC_64) {
  653. if (!access_ok(VERIFY_READ, up64, sizeof(*up64))) {
  654. err = -EFAULT;
  655. break;
  656. }
  657. err = __get_user(m.msg_perm.uid, &up64->msg_perm.uid);
  658. err |= __get_user(m.msg_perm.gid, &up64->msg_perm.gid);
  659. err |= __get_user(m.msg_perm.mode, &up64->msg_perm.mode);
  660. err |= __get_user(m.msg_qbytes, &up64->msg_qbytes);
  661. } else {
  662. if (!access_ok(VERIFY_READ, up32, sizeof(*up32))) {
  663. err = -EFAULT;
  664. break;
  665. }
  666. err = __get_user(m.msg_perm.uid, &up32->msg_perm.uid);
  667. err |= __get_user(m.msg_perm.gid, &up32->msg_perm.gid);
  668. err |= __get_user(m.msg_perm.mode, &up32->msg_perm.mode);
  669. err |= __get_user(m.msg_qbytes, &up32->msg_qbytes);
  670. }
  671. if (err)
  672. break;
  673. old_fs = get_fs();
  674. set_fs(KERNEL_DS);
  675. err = sys_msgctl(first, second | IPC_64, (struct msqid_ds __user *)&m);
  676. set_fs(old_fs);
  677. break;
  678. case IPC_STAT:
  679. case MSG_STAT:
  680. old_fs = get_fs();
  681. set_fs(KERNEL_DS);
  682. err = sys_msgctl(first, second | IPC_64, (struct msqid_ds __user *)&m);
  683. set_fs(old_fs);
  684. if (second & IPC_64) {
  685. if (!access_ok(VERIFY_WRITE, up64, sizeof(*up64))) {
  686. err = -EFAULT;
  687. break;
  688. }
  689. err2 = __put_user(m.msg_perm.key, &up64->msg_perm.key);
  690. err2 |= __put_user(m.msg_perm.uid, &up64->msg_perm.uid);
  691. err2 |= __put_user(m.msg_perm.gid, &up64->msg_perm.gid);
  692. err2 |= __put_user(m.msg_perm.cuid, &up64->msg_perm.cuid);
  693. err2 |= __put_user(m.msg_perm.cgid, &up64->msg_perm.cgid);
  694. err2 |= __put_user(m.msg_perm.mode, &up64->msg_perm.mode);
  695. err2 |= __put_user(m.msg_perm.seq, &up64->msg_perm.seq);
  696. err2 |= __put_user(m.msg_stime, &up64->msg_stime);
  697. err2 |= __put_user(m.msg_rtime, &up64->msg_rtime);
  698. err2 |= __put_user(m.msg_ctime, &up64->msg_ctime);
  699. err2 |= __put_user(m.msg_cbytes, &up64->msg_cbytes);
  700. err2 |= __put_user(m.msg_qnum, &up64->msg_qnum);
  701. err2 |= __put_user(m.msg_qbytes, &up64->msg_qbytes);
  702. err2 |= __put_user(m.msg_lspid, &up64->msg_lspid);
  703. err2 |= __put_user(m.msg_lrpid, &up64->msg_lrpid);
  704. if (err2)
  705. err = -EFAULT;
  706. } else {
  707. if (!access_ok(VERIFY_WRITE, up32, sizeof(*up32))) {
  708. err = -EFAULT;
  709. break;
  710. }
  711. err2 = __put_user(m.msg_perm.key, &up32->msg_perm.key);
  712. err2 |= __put_user(m.msg_perm.uid, &up32->msg_perm.uid);
  713. err2 |= __put_user(m.msg_perm.gid, &up32->msg_perm.gid);
  714. err2 |= __put_user(m.msg_perm.cuid, &up32->msg_perm.cuid);
  715. err2 |= __put_user(m.msg_perm.cgid, &up32->msg_perm.cgid);
  716. err2 |= __put_user(m.msg_perm.mode, &up32->msg_perm.mode);
  717. err2 |= __put_user(m.msg_perm.seq, &up32->msg_perm.seq);
  718. err2 |= __put_user(m.msg_stime, &up32->msg_stime);
  719. err2 |= __put_user(m.msg_rtime, &up32->msg_rtime);
  720. err2 |= __put_user(m.msg_ctime, &up32->msg_ctime);
  721. err2 |= __put_user(m.msg_cbytes, &up32->msg_cbytes);
  722. err2 |= __put_user(m.msg_qnum, &up32->msg_qnum);
  723. err2 |= __put_user(m.msg_qbytes, &up32->msg_qbytes);
  724. err2 |= __put_user(m.msg_lspid, &up32->msg_lspid);
  725. err2 |= __put_user(m.msg_lrpid, &up32->msg_lrpid);
  726. if (err2)
  727. err = -EFAULT;
  728. }
  729. break;
  730. }
  731. return err;
  732. }
  733. static int
  734. do_sys32_shmat (int first, int second, int third, int version, void __user *uptr)
  735. {
  736. unsigned long raddr;
  737. u32 __user *uaddr = (u32 __user *)A((u32)third);
  738. int err = -EINVAL;
  739. if (version == 1)
  740. return err;
  741. err = do_shmat (first, uptr, second, &raddr);
  742. if (err)
  743. return err;
  744. err = put_user (raddr, uaddr);
  745. return err;
  746. }
  747. struct shm_info32 {
  748. int used_ids;
  749. u32 shm_tot, shm_rss, shm_swp;
  750. u32 swap_attempts, swap_successes;
  751. };
  752. static int
  753. do_sys32_shmctl (int first, int second, void __user *uptr)
  754. {
  755. struct shmid64_ds32 __user *up64 = (struct shmid64_ds32 __user *)uptr;
  756. struct shmid_ds32 __user *up32 = (struct shmid_ds32 __user *)uptr;
  757. struct shm_info32 __user *uip = (struct shm_info32 __user *)uptr;
  758. int err = -EFAULT, err2;
  759. struct shmid64_ds s64;
  760. mm_segment_t old_fs;
  761. struct shm_info si;
  762. struct shmid_ds s;
  763. switch (second & ~IPC_64) {
  764. case IPC_INFO:
  765. second = IPC_INFO; /* So that we don't have to translate it */
  766. case IPC_RMID:
  767. case SHM_LOCK:
  768. case SHM_UNLOCK:
  769. err = sys_shmctl(first, second, (struct shmid_ds __user *)uptr);
  770. break;
  771. case IPC_SET:
  772. if (second & IPC_64) {
  773. err = get_user(s.shm_perm.uid, &up64->shm_perm.uid);
  774. err |= get_user(s.shm_perm.gid, &up64->shm_perm.gid);
  775. err |= get_user(s.shm_perm.mode, &up64->shm_perm.mode);
  776. } else {
  777. err = get_user(s.shm_perm.uid, &up32->shm_perm.uid);
  778. err |= get_user(s.shm_perm.gid, &up32->shm_perm.gid);
  779. err |= get_user(s.shm_perm.mode, &up32->shm_perm.mode);
  780. }
  781. if (err)
  782. break;
  783. old_fs = get_fs();
  784. set_fs(KERNEL_DS);
  785. err = sys_shmctl(first, second & ~IPC_64, (struct shmid_ds __user *)&s);
  786. set_fs(old_fs);
  787. break;
  788. case IPC_STAT:
  789. case SHM_STAT:
  790. old_fs = get_fs();
  791. set_fs(KERNEL_DS);
  792. err = sys_shmctl(first, second | IPC_64, (void __user *) &s64);
  793. set_fs(old_fs);
  794. if (err < 0)
  795. break;
  796. if (second & IPC_64) {
  797. if (!access_ok(VERIFY_WRITE, up64, sizeof(*up64))) {
  798. err = -EFAULT;
  799. break;
  800. }
  801. err2 = __put_user(s64.shm_perm.key, &up64->shm_perm.key);
  802. err2 |= __put_user(s64.shm_perm.uid, &up64->shm_perm.uid);
  803. err2 |= __put_user(s64.shm_perm.gid, &up64->shm_perm.gid);
  804. err2 |= __put_user(s64.shm_perm.cuid, &up64->shm_perm.cuid);
  805. err2 |= __put_user(s64.shm_perm.cgid, &up64->shm_perm.cgid);
  806. err2 |= __put_user(s64.shm_perm.mode, &up64->shm_perm.mode);
  807. err2 |= __put_user(s64.shm_perm.seq, &up64->shm_perm.seq);
  808. err2 |= __put_user(s64.shm_atime, &up64->shm_atime);
  809. err2 |= __put_user(s64.shm_dtime, &up64->shm_dtime);
  810. err2 |= __put_user(s64.shm_ctime, &up64->shm_ctime);
  811. err2 |= __put_user(s64.shm_segsz, &up64->shm_segsz);
  812. err2 |= __put_user(s64.shm_nattch, &up64->shm_nattch);
  813. err2 |= __put_user(s64.shm_cpid, &up64->shm_cpid);
  814. err2 |= __put_user(s64.shm_lpid, &up64->shm_lpid);
  815. } else {
  816. if (!access_ok(VERIFY_WRITE, up32, sizeof(*up32))) {
  817. err = -EFAULT;
  818. break;
  819. }
  820. err2 = __put_user(s64.shm_perm.key, &up32->shm_perm.key);
  821. err2 |= __put_user(s64.shm_perm.uid, &up32->shm_perm.uid);
  822. err2 |= __put_user(s64.shm_perm.gid, &up32->shm_perm.gid);
  823. err2 |= __put_user(s64.shm_perm.cuid, &up32->shm_perm.cuid);
  824. err2 |= __put_user(s64.shm_perm.cgid, &up32->shm_perm.cgid);
  825. err2 |= __put_user(s64.shm_perm.mode, &up32->shm_perm.mode);
  826. err2 |= __put_user(s64.shm_perm.seq, &up32->shm_perm.seq);
  827. err2 |= __put_user(s64.shm_atime, &up32->shm_atime);
  828. err2 |= __put_user(s64.shm_dtime, &up32->shm_dtime);
  829. err2 |= __put_user(s64.shm_ctime, &up32->shm_ctime);
  830. err2 |= __put_user(s64.shm_segsz, &up32->shm_segsz);
  831. err2 |= __put_user(s64.shm_nattch, &up32->shm_nattch);
  832. err2 |= __put_user(s64.shm_cpid, &up32->shm_cpid);
  833. err2 |= __put_user(s64.shm_lpid, &up32->shm_lpid);
  834. }
  835. if (err2)
  836. err = -EFAULT;
  837. break;
  838. case SHM_INFO:
  839. old_fs = get_fs();
  840. set_fs(KERNEL_DS);
  841. err = sys_shmctl(first, second, (void __user *)&si);
  842. set_fs(old_fs);
  843. if (err < 0)
  844. break;
  845. err2 = put_user(si.used_ids, &uip->used_ids);
  846. err2 |= __put_user(si.shm_tot, &uip->shm_tot);
  847. err2 |= __put_user(si.shm_rss, &uip->shm_rss);
  848. err2 |= __put_user(si.shm_swp, &uip->shm_swp);
  849. err2 |= __put_user(si.swap_attempts, &uip->swap_attempts);
  850. err2 |= __put_user (si.swap_successes, &uip->swap_successes);
  851. if (err2)
  852. err = -EFAULT;
  853. break;
  854. default:
  855. err = -EINVAL;
  856. break;
  857. }
  858. return err;
  859. }
  860. static int sys32_semtimedop(int semid, struct sembuf __user *tsems, int nsems,
  861. const struct compat_timespec __user *timeout32)
  862. {
  863. struct compat_timespec t32;
  864. struct timespec __user *t64 = compat_alloc_user_space(sizeof(*t64));
  865. if (copy_from_user(&t32, timeout32, sizeof(t32)))
  866. return -EFAULT;
  867. if (put_user(t32.tv_sec, &t64->tv_sec) ||
  868. put_user(t32.tv_nsec, &t64->tv_nsec))
  869. return -EFAULT;
  870. return sys_semtimedop(semid, tsems, nsems, t64);
  871. }
  872. asmlinkage long
  873. sys32_ipc (u32 call, int first, int second, int third, u32 ptr, u32 fifth)
  874. {
  875. int version, err;
  876. version = call >> 16; /* hack for backward compatibility */
  877. call &= 0xffff;
  878. switch (call) {
  879. case SEMOP:
  880. /* struct sembuf is the same on 32 and 64bit :)) */
  881. err = sys_semtimedop (first, (struct sembuf __user *)AA(ptr), second,
  882. NULL);
  883. break;
  884. case SEMTIMEDOP:
  885. err = sys32_semtimedop (first, (struct sembuf __user *)AA(ptr), second,
  886. (const struct compat_timespec __user *)AA(fifth));
  887. break;
  888. case SEMGET:
  889. err = sys_semget (first, second, third);
  890. break;
  891. case SEMCTL:
  892. err = do_sys32_semctl (first, second, third,
  893. (void __user *)AA(ptr));
  894. break;
  895. case MSGSND:
  896. err = do_sys32_msgsnd (first, second, third,
  897. (void __user *)AA(ptr));
  898. break;
  899. case MSGRCV:
  900. err = do_sys32_msgrcv (first, second, fifth, third,
  901. version, (void __user *)AA(ptr));
  902. break;
  903. case MSGGET:
  904. err = sys_msgget ((key_t) first, second);
  905. break;
  906. case MSGCTL:
  907. err = do_sys32_msgctl (first, second, (void __user *)AA(ptr));
  908. break;
  909. case SHMAT:
  910. err = do_sys32_shmat (first, second, third,
  911. version, (void __user *)AA(ptr));
  912. break;
  913. case SHMDT:
  914. err = sys_shmdt ((char __user *)A(ptr));
  915. break;
  916. case SHMGET:
  917. err = sys_shmget (first, (unsigned)second, third);
  918. break;
  919. case SHMCTL:
  920. err = do_sys32_shmctl (first, second, (void __user *)AA(ptr));
  921. break;
  922. default:
  923. err = -EINVAL;
  924. break;
  925. }
  926. return err;
  927. }
  928. asmlinkage long sys32_shmat(int shmid, char __user *shmaddr,
  929. int shmflg, int32_t __user *addr)
  930. {
  931. unsigned long raddr;
  932. int err;
  933. err = do_shmat(shmid, shmaddr, shmflg, &raddr);
  934. if (err)
  935. return err;
  936. return put_user(raddr, addr);
  937. }
  938. struct sysctl_args32
  939. {
  940. compat_caddr_t name;
  941. int nlen;
  942. compat_caddr_t oldval;
  943. compat_caddr_t oldlenp;
  944. compat_caddr_t newval;
  945. compat_size_t newlen;
  946. unsigned int __unused[4];
  947. };
  948. #ifdef CONFIG_SYSCTL
  949. asmlinkage long sys32_sysctl(struct sysctl_args32 __user *args)
  950. {
  951. struct sysctl_args32 tmp;
  952. int error;
  953. size_t oldlen;
  954. size_t __user *oldlenp = NULL;
  955. unsigned long addr = (((unsigned long)&args->__unused[0]) + 7) & ~7;
  956. if (copy_from_user(&tmp, args, sizeof(tmp)))
  957. return -EFAULT;
  958. if (tmp.oldval && tmp.oldlenp) {
  959. /* Duh, this is ugly and might not work if sysctl_args
  960. is in read-only memory, but do_sysctl does indirectly
  961. a lot of uaccess in both directions and we'd have to
  962. basically copy the whole sysctl.c here, and
  963. glibc's __sysctl uses rw memory for the structure
  964. anyway. */
  965. if (get_user(oldlen, (u32 __user *)A(tmp.oldlenp)) ||
  966. put_user(oldlen, (size_t __user *)addr))
  967. return -EFAULT;
  968. oldlenp = (size_t __user *)addr;
  969. }
  970. lock_kernel();
  971. error = do_sysctl((int __user *)A(tmp.name), tmp.nlen, (void __user *)A(tmp.oldval),
  972. oldlenp, (void __user *)A(tmp.newval), tmp.newlen);
  973. unlock_kernel();
  974. if (oldlenp) {
  975. if (!error) {
  976. if (get_user(oldlen, (size_t __user *)addr) ||
  977. put_user(oldlen, (u32 __user *)A(tmp.oldlenp)))
  978. error = -EFAULT;
  979. }
  980. copy_to_user(args->__unused, tmp.__unused, sizeof(tmp.__unused));
  981. }
  982. return error;
  983. }
  984. #endif /* CONFIG_SYSCTL */
  985. asmlinkage long sys32_newuname(struct new_utsname __user * name)
  986. {
  987. int ret = 0;
  988. down_read(&uts_sem);
  989. if (copy_to_user(name,&system_utsname,sizeof *name))
  990. ret = -EFAULT;
  991. up_read(&uts_sem);
  992. if (current->personality == PER_LINUX32 && !ret)
  993. if (copy_to_user(name->machine, "mips\0\0\0", 8))
  994. ret = -EFAULT;
  995. return ret;
  996. }
  997. asmlinkage int sys32_personality(unsigned long personality)
  998. {
  999. int ret;
  1000. if (current->personality == PER_LINUX32 && personality == PER_LINUX)
  1001. personality = PER_LINUX32;
  1002. ret = sys_personality(personality);
  1003. if (ret == PER_LINUX32)
  1004. ret = PER_LINUX;
  1005. return ret;
  1006. }
  1007. /* ustat compatibility */
  1008. struct ustat32 {
  1009. compat_daddr_t f_tfree;
  1010. compat_ino_t f_tinode;
  1011. char f_fname[6];
  1012. char f_fpack[6];
  1013. };
  1014. extern asmlinkage long sys_ustat(dev_t dev, struct ustat __user * ubuf);
  1015. asmlinkage int sys32_ustat(dev_t dev, struct ustat32 __user * ubuf32)
  1016. {
  1017. int err;
  1018. struct ustat tmp;
  1019. struct ustat32 tmp32;
  1020. mm_segment_t old_fs = get_fs();
  1021. set_fs(KERNEL_DS);
  1022. err = sys_ustat(dev, (struct ustat __user *)&tmp);
  1023. set_fs (old_fs);
  1024. if (err)
  1025. goto out;
  1026. memset(&tmp32,0,sizeof(struct ustat32));
  1027. tmp32.f_tfree = tmp.f_tfree;
  1028. tmp32.f_tinode = tmp.f_tinode;
  1029. err = copy_to_user(ubuf32,&tmp32,sizeof(struct ustat32)) ? -EFAULT : 0;
  1030. out:
  1031. return err;
  1032. }
  1033. /* Handle adjtimex compatibility. */
  1034. struct timex32 {
  1035. u32 modes;
  1036. s32 offset, freq, maxerror, esterror;
  1037. s32 status, constant, precision, tolerance;
  1038. struct compat_timeval time;
  1039. s32 tick;
  1040. s32 ppsfreq, jitter, shift, stabil;
  1041. s32 jitcnt, calcnt, errcnt, stbcnt;
  1042. s32 :32; s32 :32; s32 :32; s32 :32;
  1043. s32 :32; s32 :32; s32 :32; s32 :32;
  1044. s32 :32; s32 :32; s32 :32; s32 :32;
  1045. };
  1046. extern int do_adjtimex(struct timex *);
  1047. asmlinkage int sys32_adjtimex(struct timex32 __user *utp)
  1048. {
  1049. struct timex txc;
  1050. int ret;
  1051. memset(&txc, 0, sizeof(struct timex));
  1052. if (get_user(txc.modes, &utp->modes) ||
  1053. __get_user(txc.offset, &utp->offset) ||
  1054. __get_user(txc.freq, &utp->freq) ||
  1055. __get_user(txc.maxerror, &utp->maxerror) ||
  1056. __get_user(txc.esterror, &utp->esterror) ||
  1057. __get_user(txc.status, &utp->status) ||
  1058. __get_user(txc.constant, &utp->constant) ||
  1059. __get_user(txc.precision, &utp->precision) ||
  1060. __get_user(txc.tolerance, &utp->tolerance) ||
  1061. __get_user(txc.time.tv_sec, &utp->time.tv_sec) ||
  1062. __get_user(txc.time.tv_usec, &utp->time.tv_usec) ||
  1063. __get_user(txc.tick, &utp->tick) ||
  1064. __get_user(txc.ppsfreq, &utp->ppsfreq) ||
  1065. __get_user(txc.jitter, &utp->jitter) ||
  1066. __get_user(txc.shift, &utp->shift) ||
  1067. __get_user(txc.stabil, &utp->stabil) ||
  1068. __get_user(txc.jitcnt, &utp->jitcnt) ||
  1069. __get_user(txc.calcnt, &utp->calcnt) ||
  1070. __get_user(txc.errcnt, &utp->errcnt) ||
  1071. __get_user(txc.stbcnt, &utp->stbcnt))
  1072. return -EFAULT;
  1073. ret = do_adjtimex(&txc);
  1074. if (put_user(txc.modes, &utp->modes) ||
  1075. __put_user(txc.offset, &utp->offset) ||
  1076. __put_user(txc.freq, &utp->freq) ||
  1077. __put_user(txc.maxerror, &utp->maxerror) ||
  1078. __put_user(txc.esterror, &utp->esterror) ||
  1079. __put_user(txc.status, &utp->status) ||
  1080. __put_user(txc.constant, &utp->constant) ||
  1081. __put_user(txc.precision, &utp->precision) ||
  1082. __put_user(txc.tolerance, &utp->tolerance) ||
  1083. __put_user(txc.time.tv_sec, &utp->time.tv_sec) ||
  1084. __put_user(txc.time.tv_usec, &utp->time.tv_usec) ||
  1085. __put_user(txc.tick, &utp->tick) ||
  1086. __put_user(txc.ppsfreq, &utp->ppsfreq) ||
  1087. __put_user(txc.jitter, &utp->jitter) ||
  1088. __put_user(txc.shift, &utp->shift) ||
  1089. __put_user(txc.stabil, &utp->stabil) ||
  1090. __put_user(txc.jitcnt, &utp->jitcnt) ||
  1091. __put_user(txc.calcnt, &utp->calcnt) ||
  1092. __put_user(txc.errcnt, &utp->errcnt) ||
  1093. __put_user(txc.stbcnt, &utp->stbcnt))
  1094. ret = -EFAULT;
  1095. return ret;
  1096. }
  1097. asmlinkage int sys32_sendfile(int out_fd, int in_fd, compat_off_t __user *offset,
  1098. s32 count)
  1099. {
  1100. mm_segment_t old_fs = get_fs();
  1101. int ret;
  1102. off_t of;
  1103. if (offset && get_user(of, offset))
  1104. return -EFAULT;
  1105. set_fs(KERNEL_DS);
  1106. ret = sys_sendfile(out_fd, in_fd, offset ? (off_t __user *)&of : NULL, count);
  1107. set_fs(old_fs);
  1108. if (offset && put_user(of, offset))
  1109. return -EFAULT;
  1110. return ret;
  1111. }
  1112. asmlinkage ssize_t sys32_readahead(int fd, u32 pad0, u64 a2, u64 a3,
  1113. size_t count)
  1114. {
  1115. return sys_readahead(fd, merge_64(a2, a3), count);
  1116. }
  1117. /* Argument list sizes for sys_socketcall */
  1118. #define AL(x) ((x) * sizeof(unsigned int))
  1119. static unsigned char socketcall_nargs[18]={AL(0),AL(3),AL(3),AL(3),AL(2),AL(3),
  1120. AL(3),AL(3),AL(4),AL(4),AL(4),AL(6),
  1121. AL(6),AL(2),AL(5),AL(5),AL(3),AL(3)};
  1122. #undef AL
  1123. /*
  1124. * System call vectors.
  1125. *
  1126. * Argument checking cleaned up. Saved 20% in size.
  1127. * This function doesn't need to set the kernel lock because
  1128. * it is set by the callees.
  1129. */
  1130. asmlinkage long sys32_socketcall(int call, unsigned int __user *args32)
  1131. {
  1132. unsigned int a[6];
  1133. unsigned int a0,a1;
  1134. int err;
  1135. extern asmlinkage long sys_socket(int family, int type, int protocol);
  1136. extern asmlinkage long sys_bind(int fd, struct sockaddr __user *umyaddr, int addrlen);
  1137. extern asmlinkage long sys_connect(int fd, struct sockaddr __user *uservaddr, int addrlen);
  1138. extern asmlinkage long sys_listen(int fd, int backlog);
  1139. extern asmlinkage long sys_accept(int fd, struct sockaddr __user *upeer_sockaddr, int __user *upeer_addrlen);
  1140. extern asmlinkage long sys_getsockname(int fd, struct sockaddr __user *usockaddr, int __user *usockaddr_len);
  1141. extern asmlinkage long sys_getpeername(int fd, struct sockaddr __user *usockaddr, int __user *usockaddr_len);
  1142. extern asmlinkage long sys_socketpair(int family, int type, int protocol, int __user *usockvec);
  1143. extern asmlinkage long sys_send(int fd, void __user * buff, size_t len, unsigned flags);
  1144. extern asmlinkage long sys_sendto(int fd, void __user * buff, size_t len, unsigned flags,
  1145. struct sockaddr __user *addr, int addr_len);
  1146. extern asmlinkage long sys_recv(int fd, void __user * ubuf, size_t size, unsigned flags);
  1147. extern asmlinkage long sys_recvfrom(int fd, void __user * ubuf, size_t size, unsigned flags,
  1148. struct sockaddr __user *addr, int __user *addr_len);
  1149. extern asmlinkage long sys_shutdown(int fd, int how);
  1150. extern asmlinkage long sys_setsockopt(int fd, int level, int optname, char __user *optval, int optlen);
  1151. extern asmlinkage long sys_getsockopt(int fd, int level, int optname, char __user *optval, int __user *optlen);
  1152. extern asmlinkage long sys_sendmsg(int fd, struct msghdr __user *msg, unsigned flags);
  1153. extern asmlinkage long sys_recvmsg(int fd, struct msghdr __user *msg, unsigned int flags);
  1154. if(call<1||call>SYS_RECVMSG)
  1155. return -EINVAL;
  1156. /* copy_from_user should be SMP safe. */
  1157. if (copy_from_user(a, args32, socketcall_nargs[call]))
  1158. return -EFAULT;
  1159. a0=a[0];
  1160. a1=a[1];
  1161. switch(call)
  1162. {
  1163. case SYS_SOCKET:
  1164. err = sys_socket(a0,a1,a[2]);
  1165. break;
  1166. case SYS_BIND:
  1167. err = sys_bind(a0,(struct sockaddr __user *)A(a1), a[2]);
  1168. break;
  1169. case SYS_CONNECT:
  1170. err = sys_connect(a0, (struct sockaddr __user *)A(a1), a[2]);
  1171. break;
  1172. case SYS_LISTEN:
  1173. err = sys_listen(a0,a1);
  1174. break;
  1175. case SYS_ACCEPT:
  1176. err = sys_accept(a0,(struct sockaddr __user *)A(a1), (int __user *)A(a[2]));
  1177. break;
  1178. case SYS_GETSOCKNAME:
  1179. err = sys_getsockname(a0,(struct sockaddr __user *)A(a1), (int __user *)A(a[2]));
  1180. break;
  1181. case SYS_GETPEERNAME:
  1182. err = sys_getpeername(a0, (struct sockaddr __user *)A(a1), (int __user *)A(a[2]));
  1183. break;
  1184. case SYS_SOCKETPAIR:
  1185. err = sys_socketpair(a0,a1, a[2], (int __user *)A(a[3]));
  1186. break;
  1187. case SYS_SEND:
  1188. err = sys_send(a0, (void __user *)A(a1), a[2], a[3]);
  1189. break;
  1190. case SYS_SENDTO:
  1191. err = sys_sendto(a0,(void __user *)A(a1), a[2], a[3],
  1192. (struct sockaddr __user *)A(a[4]), a[5]);
  1193. break;
  1194. case SYS_RECV:
  1195. err = sys_recv(a0, (void __user *)A(a1), a[2], a[3]);
  1196. break;
  1197. case SYS_RECVFROM:
  1198. err = sys_recvfrom(a0, (void __user *)A(a1), a[2], a[3],
  1199. (struct sockaddr __user *)A(a[4]), (int __user *)A(a[5]));
  1200. break;
  1201. case SYS_SHUTDOWN:
  1202. err = sys_shutdown(a0,a1);
  1203. break;
  1204. case SYS_SETSOCKOPT:
  1205. err = sys_setsockopt(a0, a1, a[2], (char __user *)A(a[3]), a[4]);
  1206. break;
  1207. case SYS_GETSOCKOPT:
  1208. err = sys_getsockopt(a0, a1, a[2], (char __user *)A(a[3]), (int __user *)A(a[4]));
  1209. break;
  1210. case SYS_SENDMSG:
  1211. err = sys_sendmsg(a0, (struct msghdr __user *) A(a1), a[2]);
  1212. break;
  1213. case SYS_RECVMSG:
  1214. err = sys_recvmsg(a0, (struct msghdr __user *) A(a1), a[2]);
  1215. break;
  1216. default:
  1217. err = -EINVAL;
  1218. break;
  1219. }
  1220. return err;
  1221. }
  1222. struct sigevent32 {
  1223. u32 sigev_value;
  1224. u32 sigev_signo;
  1225. u32 sigev_notify;
  1226. u32 payload[(64 / 4) - 3];
  1227. };
  1228. extern asmlinkage long
  1229. sys_timer_create(clockid_t which_clock,
  1230. struct sigevent __user *timer_event_spec,
  1231. timer_t __user * created_timer_id);
  1232. long
  1233. sys32_timer_create(u32 clock, struct sigevent32 __user *se32, timer_t __user *timer_id)
  1234. {
  1235. struct sigevent __user *p = NULL;
  1236. if (se32) {
  1237. struct sigevent se;
  1238. p = compat_alloc_user_space(sizeof(struct sigevent));
  1239. memset(&se, 0, sizeof(struct sigevent));
  1240. if (get_user(se.sigev_value.sival_int, &se32->sigev_value) ||
  1241. __get_user(se.sigev_signo, &se32->sigev_signo) ||
  1242. __get_user(se.sigev_notify, &se32->sigev_notify) ||
  1243. __copy_from_user(&se._sigev_un._pad, &se32->payload,
  1244. sizeof(se32->payload)) ||
  1245. copy_to_user(p, &se, sizeof(se)))
  1246. return -EFAULT;
  1247. }
  1248. return sys_timer_create(clock, p, timer_id);
  1249. }
  1250. save_static_function(sys32_clone);
  1251. __attribute_used__ noinline static int
  1252. _sys32_clone(nabi_no_regargs struct pt_regs regs)
  1253. {
  1254. unsigned long clone_flags;
  1255. unsigned long newsp;
  1256. int __user *parent_tidptr, *child_tidptr;
  1257. clone_flags = regs.regs[4];
  1258. newsp = regs.regs[5];
  1259. if (!newsp)
  1260. newsp = regs.regs[29];
  1261. parent_tidptr = (int __user *) regs.regs[6];
  1262. /* Use __dummy4 instead of getting it off the stack, so that
  1263. syscall() works. */
  1264. child_tidptr = (int __user *) __dummy4;
  1265. return do_fork(clone_flags, newsp, &regs, 0,
  1266. parent_tidptr, child_tidptr);
  1267. }
  1268. extern asmlinkage void sys_set_thread_area(u32 addr);
  1269. asmlinkage void sys32_set_thread_area(u32 addr)
  1270. {
  1271. sys_set_thread_area(AA(addr));
  1272. }