osf_sys.c 34 KB

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  1. /*
  2. * linux/arch/alpha/kernel/osf_sys.c
  3. *
  4. * Copyright (C) 1995 Linus Torvalds
  5. */
  6. /*
  7. * This file handles some of the stranger OSF/1 system call interfaces.
  8. * Some of the system calls expect a non-C calling standard, others have
  9. * special parameter blocks..
  10. */
  11. #include <linux/errno.h>
  12. #include <linux/sched.h>
  13. #include <linux/kernel.h>
  14. #include <linux/mm.h>
  15. #include <linux/smp.h>
  16. #include <linux/stddef.h>
  17. #include <linux/syscalls.h>
  18. #include <linux/unistd.h>
  19. #include <linux/ptrace.h>
  20. #include <linux/user.h>
  21. #include <linux/utsname.h>
  22. #include <linux/time.h>
  23. #include <linux/timex.h>
  24. #include <linux/major.h>
  25. #include <linux/stat.h>
  26. #include <linux/mman.h>
  27. #include <linux/shm.h>
  28. #include <linux/poll.h>
  29. #include <linux/file.h>
  30. #include <linux/types.h>
  31. #include <linux/ipc.h>
  32. #include <linux/namei.h>
  33. #include <linux/uio.h>
  34. #include <linux/vfs.h>
  35. #include <linux/rcupdate.h>
  36. #include <linux/slab.h>
  37. #include <asm/fpu.h>
  38. #include <asm/io.h>
  39. #include <asm/uaccess.h>
  40. #include <asm/sysinfo.h>
  41. #include <asm/thread_info.h>
  42. #include <asm/hwrpb.h>
  43. #include <asm/processor.h>
  44. /*
  45. * Brk needs to return an error. Still support Linux's brk(0) query idiom,
  46. * which OSF programs just shouldn't be doing. We're still not quite
  47. * identical to OSF as we don't return 0 on success, but doing otherwise
  48. * would require changes to libc. Hopefully this is good enough.
  49. */
  50. SYSCALL_DEFINE1(osf_brk, unsigned long, brk)
  51. {
  52. unsigned long retval = sys_brk(brk);
  53. if (brk && brk != retval)
  54. retval = -ENOMEM;
  55. return retval;
  56. }
  57. /*
  58. * This is pure guess-work..
  59. */
  60. SYSCALL_DEFINE4(osf_set_program_attributes, unsigned long, text_start,
  61. unsigned long, text_len, unsigned long, bss_start,
  62. unsigned long, bss_len)
  63. {
  64. struct mm_struct *mm;
  65. mm = current->mm;
  66. mm->end_code = bss_start + bss_len;
  67. mm->start_brk = bss_start + bss_len;
  68. mm->brk = bss_start + bss_len;
  69. #if 0
  70. printk("set_program_attributes(%lx %lx %lx %lx)\n",
  71. text_start, text_len, bss_start, bss_len);
  72. #endif
  73. return 0;
  74. }
  75. /*
  76. * OSF/1 directory handling functions...
  77. *
  78. * The "getdents()" interface is much more sane: the "basep" stuff is
  79. * braindamage (it can't really handle filesystems where the directory
  80. * offset differences aren't the same as "d_reclen").
  81. */
  82. #define NAME_OFFSET offsetof (struct osf_dirent, d_name)
  83. struct osf_dirent {
  84. unsigned int d_ino;
  85. unsigned short d_reclen;
  86. unsigned short d_namlen;
  87. char d_name[1];
  88. };
  89. struct osf_dirent_callback {
  90. struct osf_dirent __user *dirent;
  91. long __user *basep;
  92. unsigned int count;
  93. int error;
  94. };
  95. static int
  96. osf_filldir(void *__buf, const char *name, int namlen, loff_t offset,
  97. u64 ino, unsigned int d_type)
  98. {
  99. struct osf_dirent __user *dirent;
  100. struct osf_dirent_callback *buf = (struct osf_dirent_callback *) __buf;
  101. unsigned int reclen = ALIGN(NAME_OFFSET + namlen + 1, sizeof(u32));
  102. unsigned int d_ino;
  103. buf->error = -EINVAL; /* only used if we fail */
  104. if (reclen > buf->count)
  105. return -EINVAL;
  106. d_ino = ino;
  107. if (sizeof(d_ino) < sizeof(ino) && d_ino != ino) {
  108. buf->error = -EOVERFLOW;
  109. return -EOVERFLOW;
  110. }
  111. if (buf->basep) {
  112. if (put_user(offset, buf->basep))
  113. goto Efault;
  114. buf->basep = NULL;
  115. }
  116. dirent = buf->dirent;
  117. if (put_user(d_ino, &dirent->d_ino) ||
  118. put_user(namlen, &dirent->d_namlen) ||
  119. put_user(reclen, &dirent->d_reclen) ||
  120. copy_to_user(dirent->d_name, name, namlen) ||
  121. put_user(0, dirent->d_name + namlen))
  122. goto Efault;
  123. dirent = (void __user *)dirent + reclen;
  124. buf->dirent = dirent;
  125. buf->count -= reclen;
  126. return 0;
  127. Efault:
  128. buf->error = -EFAULT;
  129. return -EFAULT;
  130. }
  131. SYSCALL_DEFINE4(osf_getdirentries, unsigned int, fd,
  132. struct osf_dirent __user *, dirent, unsigned int, count,
  133. long __user *, basep)
  134. {
  135. int error;
  136. struct fd arg = fdget(fd);
  137. struct osf_dirent_callback buf;
  138. if (!arg.file)
  139. return -EBADF;
  140. buf.dirent = dirent;
  141. buf.basep = basep;
  142. buf.count = count;
  143. buf.error = 0;
  144. error = vfs_readdir(arg.file, osf_filldir, &buf);
  145. if (error >= 0)
  146. error = buf.error;
  147. if (count != buf.count)
  148. error = count - buf.count;
  149. fdput(arg);
  150. return error;
  151. }
  152. #undef NAME_OFFSET
  153. SYSCALL_DEFINE6(osf_mmap, unsigned long, addr, unsigned long, len,
  154. unsigned long, prot, unsigned long, flags, unsigned long, fd,
  155. unsigned long, off)
  156. {
  157. unsigned long ret = -EINVAL;
  158. #if 0
  159. if (flags & (_MAP_HASSEMAPHORE | _MAP_INHERIT | _MAP_UNALIGNED))
  160. printk("%s: unimplemented OSF mmap flags %04lx\n",
  161. current->comm, flags);
  162. #endif
  163. if ((off + PAGE_ALIGN(len)) < off)
  164. goto out;
  165. if (off & ~PAGE_MASK)
  166. goto out;
  167. ret = sys_mmap_pgoff(addr, len, prot, flags, fd, off >> PAGE_SHIFT);
  168. out:
  169. return ret;
  170. }
  171. struct osf_stat {
  172. int st_dev;
  173. int st_pad1;
  174. unsigned st_mode;
  175. unsigned short st_nlink;
  176. short st_nlink_reserved;
  177. unsigned st_uid;
  178. unsigned st_gid;
  179. int st_rdev;
  180. int st_ldev;
  181. long st_size;
  182. int st_pad2;
  183. int st_uatime;
  184. int st_pad3;
  185. int st_umtime;
  186. int st_pad4;
  187. int st_uctime;
  188. int st_pad5;
  189. int st_pad6;
  190. unsigned st_flags;
  191. unsigned st_gen;
  192. long st_spare[4];
  193. unsigned st_ino;
  194. int st_ino_reserved;
  195. int st_atime;
  196. int st_atime_reserved;
  197. int st_mtime;
  198. int st_mtime_reserved;
  199. int st_ctime;
  200. int st_ctime_reserved;
  201. long st_blksize;
  202. long st_blocks;
  203. };
  204. /*
  205. * The OSF/1 statfs structure is much larger, but this should
  206. * match the beginning, at least.
  207. */
  208. struct osf_statfs {
  209. short f_type;
  210. short f_flags;
  211. int f_fsize;
  212. int f_bsize;
  213. int f_blocks;
  214. int f_bfree;
  215. int f_bavail;
  216. int f_files;
  217. int f_ffree;
  218. __kernel_fsid_t f_fsid;
  219. };
  220. struct osf_statfs64 {
  221. short f_type;
  222. short f_flags;
  223. int f_pad1;
  224. int f_pad2;
  225. int f_pad3;
  226. int f_pad4;
  227. int f_pad5;
  228. int f_pad6;
  229. int f_pad7;
  230. __kernel_fsid_t f_fsid;
  231. u_short f_namemax;
  232. short f_reserved1;
  233. int f_spare[8];
  234. char f_pad8[90];
  235. char f_pad9[90];
  236. long mount_info[10];
  237. u_long f_flags2;
  238. long f_spare2[14];
  239. long f_fsize;
  240. long f_bsize;
  241. long f_blocks;
  242. long f_bfree;
  243. long f_bavail;
  244. long f_files;
  245. long f_ffree;
  246. };
  247. static int
  248. linux_to_osf_stat(struct kstat *lstat, struct osf_stat __user *osf_stat)
  249. {
  250. struct osf_stat tmp = { 0 };
  251. tmp.st_dev = lstat->dev;
  252. tmp.st_mode = lstat->mode;
  253. tmp.st_nlink = lstat->nlink;
  254. tmp.st_uid = from_kuid_munged(current_user_ns(), lstat->uid);
  255. tmp.st_gid = from_kgid_munged(current_user_ns(), lstat->gid);
  256. tmp.st_rdev = lstat->rdev;
  257. tmp.st_ldev = lstat->rdev;
  258. tmp.st_size = lstat->size;
  259. tmp.st_uatime = lstat->atime.tv_nsec / 1000;
  260. tmp.st_umtime = lstat->mtime.tv_nsec / 1000;
  261. tmp.st_uctime = lstat->ctime.tv_nsec / 1000;
  262. tmp.st_ino = lstat->ino;
  263. tmp.st_atime = lstat->atime.tv_sec;
  264. tmp.st_mtime = lstat->mtime.tv_sec;
  265. tmp.st_ctime = lstat->ctime.tv_sec;
  266. tmp.st_blksize = lstat->blksize;
  267. tmp.st_blocks = lstat->blocks;
  268. return copy_to_user(osf_stat, &tmp, sizeof(tmp)) ? -EFAULT : 0;
  269. }
  270. static int
  271. linux_to_osf_statfs(struct kstatfs *linux_stat, struct osf_statfs __user *osf_stat,
  272. unsigned long bufsiz)
  273. {
  274. struct osf_statfs tmp_stat;
  275. tmp_stat.f_type = linux_stat->f_type;
  276. tmp_stat.f_flags = 0; /* mount flags */
  277. tmp_stat.f_fsize = linux_stat->f_frsize;
  278. tmp_stat.f_bsize = linux_stat->f_bsize;
  279. tmp_stat.f_blocks = linux_stat->f_blocks;
  280. tmp_stat.f_bfree = linux_stat->f_bfree;
  281. tmp_stat.f_bavail = linux_stat->f_bavail;
  282. tmp_stat.f_files = linux_stat->f_files;
  283. tmp_stat.f_ffree = linux_stat->f_ffree;
  284. tmp_stat.f_fsid = linux_stat->f_fsid;
  285. if (bufsiz > sizeof(tmp_stat))
  286. bufsiz = sizeof(tmp_stat);
  287. return copy_to_user(osf_stat, &tmp_stat, bufsiz) ? -EFAULT : 0;
  288. }
  289. static int
  290. linux_to_osf_statfs64(struct kstatfs *linux_stat, struct osf_statfs64 __user *osf_stat,
  291. unsigned long bufsiz)
  292. {
  293. struct osf_statfs64 tmp_stat = { 0 };
  294. tmp_stat.f_type = linux_stat->f_type;
  295. tmp_stat.f_fsize = linux_stat->f_frsize;
  296. tmp_stat.f_bsize = linux_stat->f_bsize;
  297. tmp_stat.f_blocks = linux_stat->f_blocks;
  298. tmp_stat.f_bfree = linux_stat->f_bfree;
  299. tmp_stat.f_bavail = linux_stat->f_bavail;
  300. tmp_stat.f_files = linux_stat->f_files;
  301. tmp_stat.f_ffree = linux_stat->f_ffree;
  302. tmp_stat.f_fsid = linux_stat->f_fsid;
  303. if (bufsiz > sizeof(tmp_stat))
  304. bufsiz = sizeof(tmp_stat);
  305. return copy_to_user(osf_stat, &tmp_stat, bufsiz) ? -EFAULT : 0;
  306. }
  307. SYSCALL_DEFINE3(osf_statfs, const char __user *, pathname,
  308. struct osf_statfs __user *, buffer, unsigned long, bufsiz)
  309. {
  310. struct kstatfs linux_stat;
  311. int error = user_statfs(pathname, &linux_stat);
  312. if (!error)
  313. error = linux_to_osf_statfs(&linux_stat, buffer, bufsiz);
  314. return error;
  315. }
  316. SYSCALL_DEFINE2(osf_stat, char __user *, name, struct osf_stat __user *, buf)
  317. {
  318. struct kstat stat;
  319. int error;
  320. error = vfs_stat(name, &stat);
  321. if (error)
  322. return error;
  323. return linux_to_osf_stat(&stat, buf);
  324. }
  325. SYSCALL_DEFINE2(osf_lstat, char __user *, name, struct osf_stat __user *, buf)
  326. {
  327. struct kstat stat;
  328. int error;
  329. error = vfs_lstat(name, &stat);
  330. if (error)
  331. return error;
  332. return linux_to_osf_stat(&stat, buf);
  333. }
  334. SYSCALL_DEFINE2(osf_fstat, int, fd, struct osf_stat __user *, buf)
  335. {
  336. struct kstat stat;
  337. int error;
  338. error = vfs_fstat(fd, &stat);
  339. if (error)
  340. return error;
  341. return linux_to_osf_stat(&stat, buf);
  342. }
  343. SYSCALL_DEFINE3(osf_fstatfs, unsigned long, fd,
  344. struct osf_statfs __user *, buffer, unsigned long, bufsiz)
  345. {
  346. struct kstatfs linux_stat;
  347. int error = fd_statfs(fd, &linux_stat);
  348. if (!error)
  349. error = linux_to_osf_statfs(&linux_stat, buffer, bufsiz);
  350. return error;
  351. }
  352. SYSCALL_DEFINE3(osf_statfs64, char __user *, pathname,
  353. struct osf_statfs64 __user *, buffer, unsigned long, bufsiz)
  354. {
  355. struct kstatfs linux_stat;
  356. int error = user_statfs(pathname, &linux_stat);
  357. if (!error)
  358. error = linux_to_osf_statfs64(&linux_stat, buffer, bufsiz);
  359. return error;
  360. }
  361. SYSCALL_DEFINE3(osf_fstatfs64, unsigned long, fd,
  362. struct osf_statfs64 __user *, buffer, unsigned long, bufsiz)
  363. {
  364. struct kstatfs linux_stat;
  365. int error = fd_statfs(fd, &linux_stat);
  366. if (!error)
  367. error = linux_to_osf_statfs64(&linux_stat, buffer, bufsiz);
  368. return error;
  369. }
  370. /*
  371. * Uhh.. OSF/1 mount parameters aren't exactly obvious..
  372. *
  373. * Although to be frank, neither are the native Linux/i386 ones..
  374. */
  375. struct ufs_args {
  376. char __user *devname;
  377. int flags;
  378. uid_t exroot;
  379. };
  380. struct cdfs_args {
  381. char __user *devname;
  382. int flags;
  383. uid_t exroot;
  384. /* This has lots more here, which Linux handles with the option block
  385. but I'm too lazy to do the translation into ASCII. */
  386. };
  387. struct procfs_args {
  388. char __user *devname;
  389. int flags;
  390. uid_t exroot;
  391. };
  392. /*
  393. * We can't actually handle ufs yet, so we translate UFS mounts to
  394. * ext2fs mounts. I wouldn't mind a UFS filesystem, but the UFS
  395. * layout is so braindead it's a major headache doing it.
  396. *
  397. * Just how long ago was it written? OTOH our UFS driver may be still
  398. * unhappy with OSF UFS. [CHECKME]
  399. */
  400. static int
  401. osf_ufs_mount(const char *dirname, struct ufs_args __user *args, int flags)
  402. {
  403. int retval;
  404. struct cdfs_args tmp;
  405. struct filename *devname;
  406. retval = -EFAULT;
  407. if (copy_from_user(&tmp, args, sizeof(tmp)))
  408. goto out;
  409. devname = getname(tmp.devname);
  410. retval = PTR_ERR(devname);
  411. if (IS_ERR(devname))
  412. goto out;
  413. retval = do_mount(devname->name, dirname, "ext2", flags, NULL);
  414. putname(devname);
  415. out:
  416. return retval;
  417. }
  418. static int
  419. osf_cdfs_mount(const char *dirname, struct cdfs_args __user *args, int flags)
  420. {
  421. int retval;
  422. struct cdfs_args tmp;
  423. struct filename *devname;
  424. retval = -EFAULT;
  425. if (copy_from_user(&tmp, args, sizeof(tmp)))
  426. goto out;
  427. devname = getname(tmp.devname);
  428. retval = PTR_ERR(devname);
  429. if (IS_ERR(devname))
  430. goto out;
  431. retval = do_mount(devname->name, dirname, "iso9660", flags, NULL);
  432. putname(devname);
  433. out:
  434. return retval;
  435. }
  436. static int
  437. osf_procfs_mount(const char *dirname, struct procfs_args __user *args, int flags)
  438. {
  439. struct procfs_args tmp;
  440. if (copy_from_user(&tmp, args, sizeof(tmp)))
  441. return -EFAULT;
  442. return do_mount("", dirname, "proc", flags, NULL);
  443. }
  444. SYSCALL_DEFINE4(osf_mount, unsigned long, typenr, const char __user *, path,
  445. int, flag, void __user *, data)
  446. {
  447. int retval;
  448. struct filename *name;
  449. name = getname(path);
  450. retval = PTR_ERR(name);
  451. if (IS_ERR(name))
  452. goto out;
  453. switch (typenr) {
  454. case 1:
  455. retval = osf_ufs_mount(name->name, data, flag);
  456. break;
  457. case 6:
  458. retval = osf_cdfs_mount(name->name, data, flag);
  459. break;
  460. case 9:
  461. retval = osf_procfs_mount(name->name, data, flag);
  462. break;
  463. default:
  464. retval = -EINVAL;
  465. printk("osf_mount(%ld, %x)\n", typenr, flag);
  466. }
  467. putname(name);
  468. out:
  469. return retval;
  470. }
  471. SYSCALL_DEFINE1(osf_utsname, char __user *, name)
  472. {
  473. int error;
  474. down_read(&uts_sem);
  475. error = -EFAULT;
  476. if (copy_to_user(name + 0, utsname()->sysname, 32))
  477. goto out;
  478. if (copy_to_user(name + 32, utsname()->nodename, 32))
  479. goto out;
  480. if (copy_to_user(name + 64, utsname()->release, 32))
  481. goto out;
  482. if (copy_to_user(name + 96, utsname()->version, 32))
  483. goto out;
  484. if (copy_to_user(name + 128, utsname()->machine, 32))
  485. goto out;
  486. error = 0;
  487. out:
  488. up_read(&uts_sem);
  489. return error;
  490. }
  491. SYSCALL_DEFINE0(getpagesize)
  492. {
  493. return PAGE_SIZE;
  494. }
  495. SYSCALL_DEFINE0(getdtablesize)
  496. {
  497. return sysctl_nr_open;
  498. }
  499. /*
  500. * For compatibility with OSF/1 only. Use utsname(2) instead.
  501. */
  502. SYSCALL_DEFINE2(osf_getdomainname, char __user *, name, int, namelen)
  503. {
  504. unsigned len;
  505. int i;
  506. if (!access_ok(VERIFY_WRITE, name, namelen))
  507. return -EFAULT;
  508. len = namelen;
  509. if (len > 32)
  510. len = 32;
  511. down_read(&uts_sem);
  512. for (i = 0; i < len; ++i) {
  513. __put_user(utsname()->domainname[i], name + i);
  514. if (utsname()->domainname[i] == '\0')
  515. break;
  516. }
  517. up_read(&uts_sem);
  518. return 0;
  519. }
  520. /*
  521. * The following stuff should move into a header file should it ever
  522. * be labeled "officially supported." Right now, there is just enough
  523. * support to avoid applications (such as tar) printing error
  524. * messages. The attributes are not really implemented.
  525. */
  526. /*
  527. * Values for Property list entry flag
  528. */
  529. #define PLE_PROPAGATE_ON_COPY 0x1 /* cp(1) will copy entry
  530. by default */
  531. #define PLE_FLAG_MASK 0x1 /* Valid flag values */
  532. #define PLE_FLAG_ALL -1 /* All flag value */
  533. struct proplistname_args {
  534. unsigned int pl_mask;
  535. unsigned int pl_numnames;
  536. char **pl_names;
  537. };
  538. union pl_args {
  539. struct setargs {
  540. char __user *path;
  541. long follow;
  542. long nbytes;
  543. char __user *buf;
  544. } set;
  545. struct fsetargs {
  546. long fd;
  547. long nbytes;
  548. char __user *buf;
  549. } fset;
  550. struct getargs {
  551. char __user *path;
  552. long follow;
  553. struct proplistname_args __user *name_args;
  554. long nbytes;
  555. char __user *buf;
  556. int __user *min_buf_size;
  557. } get;
  558. struct fgetargs {
  559. long fd;
  560. struct proplistname_args __user *name_args;
  561. long nbytes;
  562. char __user *buf;
  563. int __user *min_buf_size;
  564. } fget;
  565. struct delargs {
  566. char __user *path;
  567. long follow;
  568. struct proplistname_args __user *name_args;
  569. } del;
  570. struct fdelargs {
  571. long fd;
  572. struct proplistname_args __user *name_args;
  573. } fdel;
  574. };
  575. enum pl_code {
  576. PL_SET = 1, PL_FSET = 2,
  577. PL_GET = 3, PL_FGET = 4,
  578. PL_DEL = 5, PL_FDEL = 6
  579. };
  580. SYSCALL_DEFINE2(osf_proplist_syscall, enum pl_code, code,
  581. union pl_args __user *, args)
  582. {
  583. long error;
  584. int __user *min_buf_size_ptr;
  585. switch (code) {
  586. case PL_SET:
  587. if (get_user(error, &args->set.nbytes))
  588. error = -EFAULT;
  589. break;
  590. case PL_FSET:
  591. if (get_user(error, &args->fset.nbytes))
  592. error = -EFAULT;
  593. break;
  594. case PL_GET:
  595. error = get_user(min_buf_size_ptr, &args->get.min_buf_size);
  596. if (error)
  597. break;
  598. error = put_user(0, min_buf_size_ptr);
  599. break;
  600. case PL_FGET:
  601. error = get_user(min_buf_size_ptr, &args->fget.min_buf_size);
  602. if (error)
  603. break;
  604. error = put_user(0, min_buf_size_ptr);
  605. break;
  606. case PL_DEL:
  607. case PL_FDEL:
  608. error = 0;
  609. break;
  610. default:
  611. error = -EOPNOTSUPP;
  612. break;
  613. };
  614. return error;
  615. }
  616. SYSCALL_DEFINE2(osf_sigstack, struct sigstack __user *, uss,
  617. struct sigstack __user *, uoss)
  618. {
  619. unsigned long usp = rdusp();
  620. unsigned long oss_sp = current->sas_ss_sp + current->sas_ss_size;
  621. unsigned long oss_os = on_sig_stack(usp);
  622. int error;
  623. if (uss) {
  624. void __user *ss_sp;
  625. error = -EFAULT;
  626. if (get_user(ss_sp, &uss->ss_sp))
  627. goto out;
  628. /* If the current stack was set with sigaltstack, don't
  629. swap stacks while we are on it. */
  630. error = -EPERM;
  631. if (current->sas_ss_sp && on_sig_stack(usp))
  632. goto out;
  633. /* Since we don't know the extent of the stack, and we don't
  634. track onstack-ness, but rather calculate it, we must
  635. presume a size. Ho hum this interface is lossy. */
  636. current->sas_ss_sp = (unsigned long)ss_sp - SIGSTKSZ;
  637. current->sas_ss_size = SIGSTKSZ;
  638. }
  639. if (uoss) {
  640. error = -EFAULT;
  641. if (! access_ok(VERIFY_WRITE, uoss, sizeof(*uoss))
  642. || __put_user(oss_sp, &uoss->ss_sp)
  643. || __put_user(oss_os, &uoss->ss_onstack))
  644. goto out;
  645. }
  646. error = 0;
  647. out:
  648. return error;
  649. }
  650. SYSCALL_DEFINE3(osf_sysinfo, int, command, char __user *, buf, long, count)
  651. {
  652. const char *sysinfo_table[] = {
  653. utsname()->sysname,
  654. utsname()->nodename,
  655. utsname()->release,
  656. utsname()->version,
  657. utsname()->machine,
  658. "alpha", /* instruction set architecture */
  659. "dummy", /* hardware serial number */
  660. "dummy", /* hardware manufacturer */
  661. "dummy", /* secure RPC domain */
  662. };
  663. unsigned long offset;
  664. const char *res;
  665. long len, err = -EINVAL;
  666. offset = command-1;
  667. if (offset >= ARRAY_SIZE(sysinfo_table)) {
  668. /* Digital UNIX has a few unpublished interfaces here */
  669. printk("sysinfo(%d)", command);
  670. goto out;
  671. }
  672. down_read(&uts_sem);
  673. res = sysinfo_table[offset];
  674. len = strlen(res)+1;
  675. if ((unsigned long)len > (unsigned long)count)
  676. len = count;
  677. if (copy_to_user(buf, res, len))
  678. err = -EFAULT;
  679. else
  680. err = 0;
  681. up_read(&uts_sem);
  682. out:
  683. return err;
  684. }
  685. SYSCALL_DEFINE5(osf_getsysinfo, unsigned long, op, void __user *, buffer,
  686. unsigned long, nbytes, int __user *, start, void __user *, arg)
  687. {
  688. unsigned long w;
  689. struct percpu_struct *cpu;
  690. switch (op) {
  691. case GSI_IEEE_FP_CONTROL:
  692. /* Return current software fp control & status bits. */
  693. /* Note that DU doesn't verify available space here. */
  694. w = current_thread_info()->ieee_state & IEEE_SW_MASK;
  695. w = swcr_update_status(w, rdfpcr());
  696. if (put_user(w, (unsigned long __user *) buffer))
  697. return -EFAULT;
  698. return 0;
  699. case GSI_IEEE_STATE_AT_SIGNAL:
  700. /*
  701. * Not sure anybody will ever use this weird stuff. These
  702. * ops can be used (under OSF/1) to set the fpcr that should
  703. * be used when a signal handler starts executing.
  704. */
  705. break;
  706. case GSI_UACPROC:
  707. if (nbytes < sizeof(unsigned int))
  708. return -EINVAL;
  709. w = current_thread_info()->status & UAC_BITMASK;
  710. if (put_user(w, (unsigned int __user *)buffer))
  711. return -EFAULT;
  712. return 1;
  713. case GSI_PROC_TYPE:
  714. if (nbytes < sizeof(unsigned long))
  715. return -EINVAL;
  716. cpu = (struct percpu_struct*)
  717. ((char*)hwrpb + hwrpb->processor_offset);
  718. w = cpu->type;
  719. if (put_user(w, (unsigned long __user*)buffer))
  720. return -EFAULT;
  721. return 1;
  722. case GSI_GET_HWRPB:
  723. if (nbytes > sizeof(*hwrpb))
  724. return -EINVAL;
  725. if (copy_to_user(buffer, hwrpb, nbytes) != 0)
  726. return -EFAULT;
  727. return 1;
  728. default:
  729. break;
  730. }
  731. return -EOPNOTSUPP;
  732. }
  733. SYSCALL_DEFINE5(osf_setsysinfo, unsigned long, op, void __user *, buffer,
  734. unsigned long, nbytes, int __user *, start, void __user *, arg)
  735. {
  736. switch (op) {
  737. case SSI_IEEE_FP_CONTROL: {
  738. unsigned long swcr, fpcr;
  739. unsigned int *state;
  740. /*
  741. * Alpha Architecture Handbook 4.7.7.3:
  742. * To be fully IEEE compiant, we must track the current IEEE
  743. * exception state in software, because spurious bits can be
  744. * set in the trap shadow of a software-complete insn.
  745. */
  746. if (get_user(swcr, (unsigned long __user *)buffer))
  747. return -EFAULT;
  748. state = &current_thread_info()->ieee_state;
  749. /* Update softare trap enable bits. */
  750. *state = (*state & ~IEEE_SW_MASK) | (swcr & IEEE_SW_MASK);
  751. /* Update the real fpcr. */
  752. fpcr = rdfpcr() & FPCR_DYN_MASK;
  753. fpcr |= ieee_swcr_to_fpcr(swcr);
  754. wrfpcr(fpcr);
  755. return 0;
  756. }
  757. case SSI_IEEE_RAISE_EXCEPTION: {
  758. unsigned long exc, swcr, fpcr, fex;
  759. unsigned int *state;
  760. if (get_user(exc, (unsigned long __user *)buffer))
  761. return -EFAULT;
  762. state = &current_thread_info()->ieee_state;
  763. exc &= IEEE_STATUS_MASK;
  764. /* Update softare trap enable bits. */
  765. swcr = (*state & IEEE_SW_MASK) | exc;
  766. *state |= exc;
  767. /* Update the real fpcr. */
  768. fpcr = rdfpcr();
  769. fpcr |= ieee_swcr_to_fpcr(swcr);
  770. wrfpcr(fpcr);
  771. /* If any exceptions set by this call, and are unmasked,
  772. send a signal. Old exceptions are not signaled. */
  773. fex = (exc >> IEEE_STATUS_TO_EXCSUM_SHIFT) & swcr;
  774. if (fex) {
  775. siginfo_t info;
  776. int si_code = 0;
  777. if (fex & IEEE_TRAP_ENABLE_DNO) si_code = FPE_FLTUND;
  778. if (fex & IEEE_TRAP_ENABLE_INE) si_code = FPE_FLTRES;
  779. if (fex & IEEE_TRAP_ENABLE_UNF) si_code = FPE_FLTUND;
  780. if (fex & IEEE_TRAP_ENABLE_OVF) si_code = FPE_FLTOVF;
  781. if (fex & IEEE_TRAP_ENABLE_DZE) si_code = FPE_FLTDIV;
  782. if (fex & IEEE_TRAP_ENABLE_INV) si_code = FPE_FLTINV;
  783. info.si_signo = SIGFPE;
  784. info.si_errno = 0;
  785. info.si_code = si_code;
  786. info.si_addr = NULL; /* FIXME */
  787. send_sig_info(SIGFPE, &info, current);
  788. }
  789. return 0;
  790. }
  791. case SSI_IEEE_STATE_AT_SIGNAL:
  792. case SSI_IEEE_IGNORE_STATE_AT_SIGNAL:
  793. /*
  794. * Not sure anybody will ever use this weird stuff. These
  795. * ops can be used (under OSF/1) to set the fpcr that should
  796. * be used when a signal handler starts executing.
  797. */
  798. break;
  799. case SSI_NVPAIRS: {
  800. unsigned __user *p = buffer;
  801. unsigned i;
  802. for (i = 0, p = buffer; i < nbytes; ++i, p += 2) {
  803. unsigned v, w, status;
  804. if (get_user(v, p) || get_user(w, p + 1))
  805. return -EFAULT;
  806. switch (v) {
  807. case SSIN_UACPROC:
  808. w &= UAC_BITMASK;
  809. status = current_thread_info()->status;
  810. status = (status & ~UAC_BITMASK) | w;
  811. current_thread_info()->status = status;
  812. break;
  813. default:
  814. return -EOPNOTSUPP;
  815. }
  816. }
  817. return 0;
  818. }
  819. case SSI_LMF:
  820. return 0;
  821. default:
  822. break;
  823. }
  824. return -EOPNOTSUPP;
  825. }
  826. /* Translations due to the fact that OSF's time_t is an int. Which
  827. affects all sorts of things, like timeval and itimerval. */
  828. extern struct timezone sys_tz;
  829. struct timeval32
  830. {
  831. int tv_sec, tv_usec;
  832. };
  833. struct itimerval32
  834. {
  835. struct timeval32 it_interval;
  836. struct timeval32 it_value;
  837. };
  838. static inline long
  839. get_tv32(struct timeval *o, struct timeval32 __user *i)
  840. {
  841. return (!access_ok(VERIFY_READ, i, sizeof(*i)) ||
  842. (__get_user(o->tv_sec, &i->tv_sec) |
  843. __get_user(o->tv_usec, &i->tv_usec)));
  844. }
  845. static inline long
  846. put_tv32(struct timeval32 __user *o, struct timeval *i)
  847. {
  848. return (!access_ok(VERIFY_WRITE, o, sizeof(*o)) ||
  849. (__put_user(i->tv_sec, &o->tv_sec) |
  850. __put_user(i->tv_usec, &o->tv_usec)));
  851. }
  852. static inline long
  853. get_it32(struct itimerval *o, struct itimerval32 __user *i)
  854. {
  855. return (!access_ok(VERIFY_READ, i, sizeof(*i)) ||
  856. (__get_user(o->it_interval.tv_sec, &i->it_interval.tv_sec) |
  857. __get_user(o->it_interval.tv_usec, &i->it_interval.tv_usec) |
  858. __get_user(o->it_value.tv_sec, &i->it_value.tv_sec) |
  859. __get_user(o->it_value.tv_usec, &i->it_value.tv_usec)));
  860. }
  861. static inline long
  862. put_it32(struct itimerval32 __user *o, struct itimerval *i)
  863. {
  864. return (!access_ok(VERIFY_WRITE, o, sizeof(*o)) ||
  865. (__put_user(i->it_interval.tv_sec, &o->it_interval.tv_sec) |
  866. __put_user(i->it_interval.tv_usec, &o->it_interval.tv_usec) |
  867. __put_user(i->it_value.tv_sec, &o->it_value.tv_sec) |
  868. __put_user(i->it_value.tv_usec, &o->it_value.tv_usec)));
  869. }
  870. static inline void
  871. jiffies_to_timeval32(unsigned long jiffies, struct timeval32 *value)
  872. {
  873. value->tv_usec = (jiffies % HZ) * (1000000L / HZ);
  874. value->tv_sec = jiffies / HZ;
  875. }
  876. SYSCALL_DEFINE2(osf_gettimeofday, struct timeval32 __user *, tv,
  877. struct timezone __user *, tz)
  878. {
  879. if (tv) {
  880. struct timeval ktv;
  881. do_gettimeofday(&ktv);
  882. if (put_tv32(tv, &ktv))
  883. return -EFAULT;
  884. }
  885. if (tz) {
  886. if (copy_to_user(tz, &sys_tz, sizeof(sys_tz)))
  887. return -EFAULT;
  888. }
  889. return 0;
  890. }
  891. SYSCALL_DEFINE2(osf_settimeofday, struct timeval32 __user *, tv,
  892. struct timezone __user *, tz)
  893. {
  894. struct timespec kts;
  895. struct timezone ktz;
  896. if (tv) {
  897. if (get_tv32((struct timeval *)&kts, tv))
  898. return -EFAULT;
  899. }
  900. if (tz) {
  901. if (copy_from_user(&ktz, tz, sizeof(*tz)))
  902. return -EFAULT;
  903. }
  904. kts.tv_nsec *= 1000;
  905. return do_sys_settimeofday(tv ? &kts : NULL, tz ? &ktz : NULL);
  906. }
  907. SYSCALL_DEFINE2(osf_getitimer, int, which, struct itimerval32 __user *, it)
  908. {
  909. struct itimerval kit;
  910. int error;
  911. error = do_getitimer(which, &kit);
  912. if (!error && put_it32(it, &kit))
  913. error = -EFAULT;
  914. return error;
  915. }
  916. SYSCALL_DEFINE3(osf_setitimer, int, which, struct itimerval32 __user *, in,
  917. struct itimerval32 __user *, out)
  918. {
  919. struct itimerval kin, kout;
  920. int error;
  921. if (in) {
  922. if (get_it32(&kin, in))
  923. return -EFAULT;
  924. } else
  925. memset(&kin, 0, sizeof(kin));
  926. error = do_setitimer(which, &kin, out ? &kout : NULL);
  927. if (error || !out)
  928. return error;
  929. if (put_it32(out, &kout))
  930. return -EFAULT;
  931. return 0;
  932. }
  933. SYSCALL_DEFINE2(osf_utimes, const char __user *, filename,
  934. struct timeval32 __user *, tvs)
  935. {
  936. struct timespec tv[2];
  937. if (tvs) {
  938. struct timeval ktvs[2];
  939. if (get_tv32(&ktvs[0], &tvs[0]) ||
  940. get_tv32(&ktvs[1], &tvs[1]))
  941. return -EFAULT;
  942. if (ktvs[0].tv_usec < 0 || ktvs[0].tv_usec >= 1000000 ||
  943. ktvs[1].tv_usec < 0 || ktvs[1].tv_usec >= 1000000)
  944. return -EINVAL;
  945. tv[0].tv_sec = ktvs[0].tv_sec;
  946. tv[0].tv_nsec = 1000 * ktvs[0].tv_usec;
  947. tv[1].tv_sec = ktvs[1].tv_sec;
  948. tv[1].tv_nsec = 1000 * ktvs[1].tv_usec;
  949. }
  950. return do_utimes(AT_FDCWD, filename, tvs ? tv : NULL, 0);
  951. }
  952. SYSCALL_DEFINE5(osf_select, int, n, fd_set __user *, inp, fd_set __user *, outp,
  953. fd_set __user *, exp, struct timeval32 __user *, tvp)
  954. {
  955. struct timespec end_time, *to = NULL;
  956. if (tvp) {
  957. time_t sec, usec;
  958. to = &end_time;
  959. if (!access_ok(VERIFY_READ, tvp, sizeof(*tvp))
  960. || __get_user(sec, &tvp->tv_sec)
  961. || __get_user(usec, &tvp->tv_usec)) {
  962. return -EFAULT;
  963. }
  964. if (sec < 0 || usec < 0)
  965. return -EINVAL;
  966. if (poll_select_set_timeout(to, sec, usec * NSEC_PER_USEC))
  967. return -EINVAL;
  968. }
  969. /* OSF does not copy back the remaining time. */
  970. return core_sys_select(n, inp, outp, exp, to);
  971. }
  972. struct rusage32 {
  973. struct timeval32 ru_utime; /* user time used */
  974. struct timeval32 ru_stime; /* system time used */
  975. long ru_maxrss; /* maximum resident set size */
  976. long ru_ixrss; /* integral shared memory size */
  977. long ru_idrss; /* integral unshared data size */
  978. long ru_isrss; /* integral unshared stack size */
  979. long ru_minflt; /* page reclaims */
  980. long ru_majflt; /* page faults */
  981. long ru_nswap; /* swaps */
  982. long ru_inblock; /* block input operations */
  983. long ru_oublock; /* block output operations */
  984. long ru_msgsnd; /* messages sent */
  985. long ru_msgrcv; /* messages received */
  986. long ru_nsignals; /* signals received */
  987. long ru_nvcsw; /* voluntary context switches */
  988. long ru_nivcsw; /* involuntary " */
  989. };
  990. SYSCALL_DEFINE2(osf_getrusage, int, who, struct rusage32 __user *, ru)
  991. {
  992. struct rusage32 r;
  993. cputime_t utime, stime;
  994. if (who != RUSAGE_SELF && who != RUSAGE_CHILDREN)
  995. return -EINVAL;
  996. memset(&r, 0, sizeof(r));
  997. switch (who) {
  998. case RUSAGE_SELF:
  999. task_cputime(current, &utime, &stime);
  1000. jiffies_to_timeval32(utime, &r.ru_utime);
  1001. jiffies_to_timeval32(stime, &r.ru_stime);
  1002. r.ru_minflt = current->min_flt;
  1003. r.ru_majflt = current->maj_flt;
  1004. break;
  1005. case RUSAGE_CHILDREN:
  1006. jiffies_to_timeval32(current->signal->cutime, &r.ru_utime);
  1007. jiffies_to_timeval32(current->signal->cstime, &r.ru_stime);
  1008. r.ru_minflt = current->signal->cmin_flt;
  1009. r.ru_majflt = current->signal->cmaj_flt;
  1010. break;
  1011. }
  1012. return copy_to_user(ru, &r, sizeof(r)) ? -EFAULT : 0;
  1013. }
  1014. SYSCALL_DEFINE4(osf_wait4, pid_t, pid, int __user *, ustatus, int, options,
  1015. struct rusage32 __user *, ur)
  1016. {
  1017. struct rusage r;
  1018. long ret, err;
  1019. unsigned int status = 0;
  1020. mm_segment_t old_fs;
  1021. if (!ur)
  1022. return sys_wait4(pid, ustatus, options, NULL);
  1023. old_fs = get_fs();
  1024. set_fs (KERNEL_DS);
  1025. ret = sys_wait4(pid, (unsigned int __user *) &status, options,
  1026. (struct rusage __user *) &r);
  1027. set_fs (old_fs);
  1028. if (!access_ok(VERIFY_WRITE, ur, sizeof(*ur)))
  1029. return -EFAULT;
  1030. err = 0;
  1031. err |= put_user(status, ustatus);
  1032. err |= __put_user(r.ru_utime.tv_sec, &ur->ru_utime.tv_sec);
  1033. err |= __put_user(r.ru_utime.tv_usec, &ur->ru_utime.tv_usec);
  1034. err |= __put_user(r.ru_stime.tv_sec, &ur->ru_stime.tv_sec);
  1035. err |= __put_user(r.ru_stime.tv_usec, &ur->ru_stime.tv_usec);
  1036. err |= __put_user(r.ru_maxrss, &ur->ru_maxrss);
  1037. err |= __put_user(r.ru_ixrss, &ur->ru_ixrss);
  1038. err |= __put_user(r.ru_idrss, &ur->ru_idrss);
  1039. err |= __put_user(r.ru_isrss, &ur->ru_isrss);
  1040. err |= __put_user(r.ru_minflt, &ur->ru_minflt);
  1041. err |= __put_user(r.ru_majflt, &ur->ru_majflt);
  1042. err |= __put_user(r.ru_nswap, &ur->ru_nswap);
  1043. err |= __put_user(r.ru_inblock, &ur->ru_inblock);
  1044. err |= __put_user(r.ru_oublock, &ur->ru_oublock);
  1045. err |= __put_user(r.ru_msgsnd, &ur->ru_msgsnd);
  1046. err |= __put_user(r.ru_msgrcv, &ur->ru_msgrcv);
  1047. err |= __put_user(r.ru_nsignals, &ur->ru_nsignals);
  1048. err |= __put_user(r.ru_nvcsw, &ur->ru_nvcsw);
  1049. err |= __put_user(r.ru_nivcsw, &ur->ru_nivcsw);
  1050. return err ? err : ret;
  1051. }
  1052. /*
  1053. * I don't know what the parameters are: the first one
  1054. * seems to be a timeval pointer, and I suspect the second
  1055. * one is the time remaining.. Ho humm.. No documentation.
  1056. */
  1057. SYSCALL_DEFINE2(osf_usleep_thread, struct timeval32 __user *, sleep,
  1058. struct timeval32 __user *, remain)
  1059. {
  1060. struct timeval tmp;
  1061. unsigned long ticks;
  1062. if (get_tv32(&tmp, sleep))
  1063. goto fault;
  1064. ticks = timeval_to_jiffies(&tmp);
  1065. ticks = schedule_timeout_interruptible(ticks);
  1066. if (remain) {
  1067. jiffies_to_timeval(ticks, &tmp);
  1068. if (put_tv32(remain, &tmp))
  1069. goto fault;
  1070. }
  1071. return 0;
  1072. fault:
  1073. return -EFAULT;
  1074. }
  1075. struct timex32 {
  1076. unsigned int modes; /* mode selector */
  1077. long offset; /* time offset (usec) */
  1078. long freq; /* frequency offset (scaled ppm) */
  1079. long maxerror; /* maximum error (usec) */
  1080. long esterror; /* estimated error (usec) */
  1081. int status; /* clock command/status */
  1082. long constant; /* pll time constant */
  1083. long precision; /* clock precision (usec) (read only) */
  1084. long tolerance; /* clock frequency tolerance (ppm)
  1085. * (read only)
  1086. */
  1087. struct timeval32 time; /* (read only) */
  1088. long tick; /* (modified) usecs between clock ticks */
  1089. long ppsfreq; /* pps frequency (scaled ppm) (ro) */
  1090. long jitter; /* pps jitter (us) (ro) */
  1091. int shift; /* interval duration (s) (shift) (ro) */
  1092. long stabil; /* pps stability (scaled ppm) (ro) */
  1093. long jitcnt; /* jitter limit exceeded (ro) */
  1094. long calcnt; /* calibration intervals (ro) */
  1095. long errcnt; /* calibration errors (ro) */
  1096. long stbcnt; /* stability limit exceeded (ro) */
  1097. int :32; int :32; int :32; int :32;
  1098. int :32; int :32; int :32; int :32;
  1099. int :32; int :32; int :32; int :32;
  1100. };
  1101. SYSCALL_DEFINE1(old_adjtimex, struct timex32 __user *, txc_p)
  1102. {
  1103. struct timex txc;
  1104. int ret;
  1105. /* copy relevant bits of struct timex. */
  1106. if (copy_from_user(&txc, txc_p, offsetof(struct timex32, time)) ||
  1107. copy_from_user(&txc.tick, &txc_p->tick, sizeof(struct timex32) -
  1108. offsetof(struct timex32, time)))
  1109. return -EFAULT;
  1110. ret = do_adjtimex(&txc);
  1111. if (ret < 0)
  1112. return ret;
  1113. /* copy back to timex32 */
  1114. if (copy_to_user(txc_p, &txc, offsetof(struct timex32, time)) ||
  1115. (copy_to_user(&txc_p->tick, &txc.tick, sizeof(struct timex32) -
  1116. offsetof(struct timex32, tick))) ||
  1117. (put_tv32(&txc_p->time, &txc.time)))
  1118. return -EFAULT;
  1119. return ret;
  1120. }
  1121. /* Get an address range which is currently unmapped. Similar to the
  1122. generic version except that we know how to honor ADDR_LIMIT_32BIT. */
  1123. static unsigned long
  1124. arch_get_unmapped_area_1(unsigned long addr, unsigned long len,
  1125. unsigned long limit)
  1126. {
  1127. struct vm_unmapped_area_info info;
  1128. info.flags = 0;
  1129. info.length = len;
  1130. info.low_limit = addr;
  1131. info.high_limit = limit;
  1132. info.align_mask = 0;
  1133. info.align_offset = 0;
  1134. return vm_unmapped_area(&info);
  1135. }
  1136. unsigned long
  1137. arch_get_unmapped_area(struct file *filp, unsigned long addr,
  1138. unsigned long len, unsigned long pgoff,
  1139. unsigned long flags)
  1140. {
  1141. unsigned long limit;
  1142. /* "32 bit" actually means 31 bit, since pointers sign extend. */
  1143. if (current->personality & ADDR_LIMIT_32BIT)
  1144. limit = 0x80000000;
  1145. else
  1146. limit = TASK_SIZE;
  1147. if (len > limit)
  1148. return -ENOMEM;
  1149. if (flags & MAP_FIXED)
  1150. return addr;
  1151. /* First, see if the given suggestion fits.
  1152. The OSF/1 loader (/sbin/loader) relies on us returning an
  1153. address larger than the requested if one exists, which is
  1154. a terribly broken way to program.
  1155. That said, I can see the use in being able to suggest not
  1156. merely specific addresses, but regions of memory -- perhaps
  1157. this feature should be incorporated into all ports? */
  1158. if (addr) {
  1159. addr = arch_get_unmapped_area_1 (PAGE_ALIGN(addr), len, limit);
  1160. if (addr != (unsigned long) -ENOMEM)
  1161. return addr;
  1162. }
  1163. /* Next, try allocating at TASK_UNMAPPED_BASE. */
  1164. addr = arch_get_unmapped_area_1 (PAGE_ALIGN(TASK_UNMAPPED_BASE),
  1165. len, limit);
  1166. if (addr != (unsigned long) -ENOMEM)
  1167. return addr;
  1168. /* Finally, try allocating in low memory. */
  1169. addr = arch_get_unmapped_area_1 (PAGE_SIZE, len, limit);
  1170. return addr;
  1171. }
  1172. #ifdef CONFIG_OSF4_COMPAT
  1173. /* Clear top 32 bits of iov_len in the user's buffer for
  1174. compatibility with old versions of OSF/1 where iov_len
  1175. was defined as int. */
  1176. static int
  1177. osf_fix_iov_len(const struct iovec __user *iov, unsigned long count)
  1178. {
  1179. unsigned long i;
  1180. for (i = 0 ; i < count ; i++) {
  1181. int __user *iov_len_high = (int __user *)&iov[i].iov_len + 1;
  1182. if (put_user(0, iov_len_high))
  1183. return -EFAULT;
  1184. }
  1185. return 0;
  1186. }
  1187. SYSCALL_DEFINE3(osf_readv, unsigned long, fd,
  1188. const struct iovec __user *, vector, unsigned long, count)
  1189. {
  1190. if (unlikely(personality(current->personality) == PER_OSF4))
  1191. if (osf_fix_iov_len(vector, count))
  1192. return -EFAULT;
  1193. return sys_readv(fd, vector, count);
  1194. }
  1195. SYSCALL_DEFINE3(osf_writev, unsigned long, fd,
  1196. const struct iovec __user *, vector, unsigned long, count)
  1197. {
  1198. if (unlikely(personality(current->personality) == PER_OSF4))
  1199. if (osf_fix_iov_len(vector, count))
  1200. return -EFAULT;
  1201. return sys_writev(fd, vector, count);
  1202. }
  1203. #endif
  1204. SYSCALL_DEFINE2(osf_getpriority, int, which, int, who)
  1205. {
  1206. int prio = sys_getpriority(which, who);
  1207. if (prio >= 0) {
  1208. /* Return value is the unbiased priority, i.e. 20 - prio.
  1209. This does result in negative return values, so signal
  1210. no error */
  1211. force_successful_syscall_return();
  1212. prio = 20 - prio;
  1213. }
  1214. return prio;
  1215. }
  1216. SYSCALL_DEFINE0(getxuid)
  1217. {
  1218. current_pt_regs()->r20 = sys_geteuid();
  1219. return sys_getuid();
  1220. }
  1221. SYSCALL_DEFINE0(getxgid)
  1222. {
  1223. current_pt_regs()->r20 = sys_getegid();
  1224. return sys_getgid();
  1225. }
  1226. SYSCALL_DEFINE0(getxpid)
  1227. {
  1228. current_pt_regs()->r20 = sys_getppid();
  1229. return sys_getpid();
  1230. }
  1231. SYSCALL_DEFINE0(alpha_pipe)
  1232. {
  1233. int fd[2];
  1234. int res = do_pipe_flags(fd, 0);
  1235. if (!res) {
  1236. /* The return values are in $0 and $20. */
  1237. current_pt_regs()->r20 = fd[1];
  1238. res = fd[0];
  1239. }
  1240. return res;
  1241. }
  1242. SYSCALL_DEFINE1(sethae, unsigned long, val)
  1243. {
  1244. current_pt_regs()->hae = val;
  1245. return 0;
  1246. }