misc.c 21 KB

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  1. /* $Id: misc.c,v 1.36 2002/02/09 19:49:31 davem Exp $
  2. * misc.c: Miscellaneous syscall emulation for Solaris
  3. *
  4. * Copyright (C) 1997,1998 Jakub Jelinek (jj@sunsite.mff.cuni.cz)
  5. */
  6. #include <linux/module.h>
  7. #include <linux/types.h>
  8. #include <linux/smp_lock.h>
  9. #include <linux/utsname.h>
  10. #include <linux/limits.h>
  11. #include <linux/mm.h>
  12. #include <linux/smp.h>
  13. #include <linux/mman.h>
  14. #include <linux/file.h>
  15. #include <linux/timex.h>
  16. #include <linux/major.h>
  17. #include <linux/compat.h>
  18. #include <asm/uaccess.h>
  19. #include <asm/string.h>
  20. #include <asm/oplib.h>
  21. #include <asm/idprom.h>
  22. #include <asm/smp.h>
  23. #include <asm/prom.h>
  24. #include "conv.h"
  25. /* Conversion from Linux to Solaris errnos. 0-34 are identity mapped.
  26. Some Linux errnos (EPROCLIM, EDOTDOT, ERREMOTE, EUCLEAN, ENOTNAM,
  27. ENAVAIL, EISNAM, EREMOTEIO, ENOMEDIUM, EMEDIUMTYPE) have no Solaris
  28. equivalents. I return EINVAL in that case, which is very wrong. If
  29. someone suggest a better value for them, you're welcomed.
  30. On the other side, Solaris ECANCELED and ENOTSUP have no Linux equivalents,
  31. but that doesn't matter here. --jj */
  32. int solaris_err_table[] = {
  33. /* 0 */ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,
  34. /* 10 */ 10, 11, 12, 13, 14, 15, 16, 17, 18, 19,
  35. /* 20 */ 20, 21, 22, 23, 24, 25, 26, 27, 28, 29,
  36. /* 30 */ 30, 31, 32, 33, 34, 22, 150, 149, 95, 96,
  37. /* 40 */ 97, 98, 99, 120, 121, 122, 123, 124, 125, 126,
  38. /* 50 */ 127, 128, 129, 130, 131, 132, 133, 134, 143, 144,
  39. /* 60 */ 145, 146, 90, 78, 147, 148, 93, 22, 94, 49,
  40. /* 70 */ 151, 66, 60, 62, 63, 35, 77, 36, 45, 46,
  41. /* 80 */ 64, 22, 67, 68, 69, 70, 71, 74, 22, 82,
  42. /* 90 */ 89, 92, 79, 81, 37, 38, 39, 40, 41, 42,
  43. /* 100 */ 43, 44, 50, 51, 52, 53, 54, 55, 56, 57,
  44. /* 110 */ 87, 61, 84, 65, 83, 80, 91, 22, 22, 22,
  45. /* 120 */ 22, 22, 88, 86, 85, 22, 22,
  46. };
  47. #define SOLARIS_NR_OPEN 256
  48. static u32 do_solaris_mmap(u32 addr, u32 len, u32 prot, u32 flags, u32 fd, u64 off)
  49. {
  50. struct file *file = NULL;
  51. unsigned long retval, ret_type;
  52. /* Do we need it here? */
  53. set_personality(PER_SVR4);
  54. if (flags & MAP_NORESERVE) {
  55. static int cnt;
  56. if (cnt < 5) {
  57. printk("%s: unimplemented Solaris MAP_NORESERVE mmap() flag\n",
  58. current->comm);
  59. cnt++;
  60. }
  61. flags &= ~MAP_NORESERVE;
  62. }
  63. retval = -EBADF;
  64. if(!(flags & MAP_ANONYMOUS)) {
  65. if(fd >= SOLARIS_NR_OPEN)
  66. goto out;
  67. file = fget(fd);
  68. if (!file)
  69. goto out;
  70. else {
  71. struct inode * inode = file->f_dentry->d_inode;
  72. if(imajor(inode) == MEM_MAJOR &&
  73. iminor(inode) == 5) {
  74. flags |= MAP_ANONYMOUS;
  75. fput(file);
  76. file = NULL;
  77. }
  78. }
  79. }
  80. retval = -EINVAL;
  81. len = PAGE_ALIGN(len);
  82. if(!(flags & MAP_FIXED))
  83. addr = 0;
  84. else if (len > STACK_TOP32 || addr > STACK_TOP32 - len)
  85. goto out_putf;
  86. ret_type = flags & _MAP_NEW;
  87. flags &= ~_MAP_NEW;
  88. down_write(&current->mm->mmap_sem);
  89. flags &= ~(MAP_EXECUTABLE | MAP_DENYWRITE);
  90. retval = do_mmap(file,
  91. (unsigned long) addr, (unsigned long) len,
  92. (unsigned long) prot, (unsigned long) flags, off);
  93. up_write(&current->mm->mmap_sem);
  94. if(!ret_type)
  95. retval = ((retval < STACK_TOP32) ? 0 : retval);
  96. out_putf:
  97. if (file)
  98. fput(file);
  99. out:
  100. return (u32) retval;
  101. }
  102. asmlinkage u32 solaris_mmap(u32 addr, u32 len, u32 prot, u32 flags, u32 fd, u32 off)
  103. {
  104. return do_solaris_mmap(addr, len, prot, flags, fd, (u64) off);
  105. }
  106. asmlinkage u32 solaris_mmap64(struct pt_regs *regs, u32 len, u32 prot, u32 flags, u32 fd, u32 offhi)
  107. {
  108. u32 offlo;
  109. if (regs->u_regs[UREG_G1]) {
  110. if (get_user (offlo, (u32 __user *)(long)((u32)regs->u_regs[UREG_I6] + 0x5c)))
  111. return -EFAULT;
  112. } else {
  113. if (get_user (offlo, (u32 __user *)(long)((u32)regs->u_regs[UREG_I6] + 0x60)))
  114. return -EFAULT;
  115. }
  116. return do_solaris_mmap((u32)regs->u_regs[UREG_I0], len, prot, flags, fd, (((u64)offhi)<<32)|offlo);
  117. }
  118. asmlinkage int solaris_brk(u32 brk)
  119. {
  120. int (*sunos_brk)(u32) = (int (*)(u32))SUNOS(17);
  121. return sunos_brk(brk);
  122. }
  123. static int __set_utsfield(char __user *to, int to_size,
  124. const char *from, int from_size,
  125. int dotchop, int countfrom)
  126. {
  127. int len = countfrom ? (to_size > from_size ?
  128. from_size : to_size) : to_size;
  129. int off;
  130. if (copy_to_user(to, from, len))
  131. return -EFAULT;
  132. off = len < to_size? len: len - 1;
  133. if (dotchop) {
  134. const char *p = strnchr(from, len, '.');
  135. if (p) off = p - from;
  136. }
  137. if (__put_user('\0', to + off))
  138. return -EFAULT;
  139. return 0;
  140. }
  141. #define set_utsfield(to, from, dotchop, countfrom) \
  142. __set_utsfield((to), sizeof(to), \
  143. (from), sizeof(from), \
  144. (dotchop), (countfrom))
  145. struct sol_uname {
  146. char sysname[9];
  147. char nodename[9];
  148. char release[9];
  149. char version[9];
  150. char machine[9];
  151. };
  152. struct sol_utsname {
  153. char sysname[257];
  154. char nodename[257];
  155. char release[257];
  156. char version[257];
  157. char machine[257];
  158. };
  159. static char *machine(void)
  160. {
  161. switch (sparc_cpu_model) {
  162. case sun4: return "sun4";
  163. case sun4c: return "sun4c";
  164. case sun4e: return "sun4e";
  165. case sun4m: return "sun4m";
  166. case sun4d: return "sun4d";
  167. case sun4u: return "sun4u";
  168. default: return "sparc";
  169. }
  170. }
  171. static char *platform(char *buffer, int sz)
  172. {
  173. struct device_node *dp = of_find_node_by_path("/");
  174. int len;
  175. *buffer = 0;
  176. len = strlen(dp->name);
  177. if (len > sz)
  178. len = sz;
  179. memcpy(buffer, dp->name, len);
  180. buffer[len] = 0;
  181. if (*buffer) {
  182. char *p;
  183. for (p = buffer; *p; p++)
  184. if (*p == '/' || *p == ' ') *p = '_';
  185. return buffer;
  186. }
  187. return "sun4u";
  188. }
  189. static char *serial(char *buffer, int sz)
  190. {
  191. struct device_node *dp = of_find_node_by_path("/options");
  192. int len;
  193. *buffer = 0;
  194. if (dp) {
  195. char *val = of_get_property(dp, "system-board-serial#", &len);
  196. if (val && len > 0) {
  197. if (len > sz)
  198. len = sz;
  199. memcpy(buffer, val, len);
  200. buffer[len] = 0;
  201. }
  202. }
  203. if (!*buffer)
  204. return "4512348717234";
  205. else
  206. return buffer;
  207. }
  208. asmlinkage int solaris_utssys(u32 buf, u32 flags, int which, u32 buf2)
  209. {
  210. struct sol_uname __user *v = A(buf);
  211. int err;
  212. switch (which) {
  213. case 0: /* old uname */
  214. /* Let's cheat */
  215. err = set_utsfield(v->sysname, "SunOS", 1, 0);
  216. down_read(&uts_sem);
  217. err |= set_utsfield(v->nodename, system_utsname.nodename,
  218. 1, 1);
  219. up_read(&uts_sem);
  220. err |= set_utsfield(v->release, "2.6", 0, 0);
  221. err |= set_utsfield(v->version, "Generic", 0, 0);
  222. err |= set_utsfield(v->machine, machine(), 0, 0);
  223. return (err ? -EFAULT : 0);
  224. case 2: /* ustat */
  225. return -ENOSYS;
  226. case 3: /* fusers */
  227. return -ENOSYS;
  228. default:
  229. return -ENOSYS;
  230. }
  231. }
  232. asmlinkage int solaris_utsname(u32 buf)
  233. {
  234. struct sol_utsname __user *v = A(buf);
  235. int err;
  236. /* Why should we not lie a bit? */
  237. down_read(&uts_sem);
  238. err = set_utsfield(v->sysname, "SunOS", 0, 0);
  239. err |= set_utsfield(v->nodename, system_utsname.nodename, 1, 1);
  240. err |= set_utsfield(v->release, "5.6", 0, 0);
  241. err |= set_utsfield(v->version, "Generic", 0, 0);
  242. err |= set_utsfield(v->machine, machine(), 0, 0);
  243. up_read(&uts_sem);
  244. return (err ? -EFAULT : 0);
  245. }
  246. #define SI_SYSNAME 1 /* return name of operating system */
  247. #define SI_HOSTNAME 2 /* return name of node */
  248. #define SI_RELEASE 3 /* return release of operating system */
  249. #define SI_VERSION 4 /* return version field of utsname */
  250. #define SI_MACHINE 5 /* return kind of machine */
  251. #define SI_ARCHITECTURE 6 /* return instruction set arch */
  252. #define SI_HW_SERIAL 7 /* return hardware serial number */
  253. #define SI_HW_PROVIDER 8 /* return hardware manufacturer */
  254. #define SI_SRPC_DOMAIN 9 /* return secure RPC domain */
  255. #define SI_PLATFORM 513 /* return platform identifier */
  256. asmlinkage int solaris_sysinfo(int cmd, u32 buf, s32 count)
  257. {
  258. char *p, *q, *r;
  259. char buffer[256];
  260. int len;
  261. /* Again, we cheat :)) */
  262. switch (cmd) {
  263. case SI_SYSNAME: r = "SunOS"; break;
  264. case SI_HOSTNAME:
  265. r = buffer + 256;
  266. down_read(&uts_sem);
  267. for (p = system_utsname.nodename, q = buffer;
  268. q < r && *p && *p != '.'; *q++ = *p++);
  269. up_read(&uts_sem);
  270. *q = 0;
  271. r = buffer;
  272. break;
  273. case SI_RELEASE: r = "5.6"; break;
  274. case SI_MACHINE: r = machine(); break;
  275. case SI_ARCHITECTURE: r = "sparc"; break;
  276. case SI_HW_PROVIDER: r = "Sun_Microsystems"; break;
  277. case SI_HW_SERIAL: r = serial(buffer, sizeof(buffer)); break;
  278. case SI_PLATFORM: r = platform(buffer, sizeof(buffer)); break;
  279. case SI_SRPC_DOMAIN: r = ""; break;
  280. case SI_VERSION: r = "Generic"; break;
  281. default: return -EINVAL;
  282. }
  283. len = strlen(r) + 1;
  284. if (count < len) {
  285. if (copy_to_user(A(buf), r, count - 1) ||
  286. __put_user(0, (char __user *)A(buf) + count - 1))
  287. return -EFAULT;
  288. } else {
  289. if (copy_to_user(A(buf), r, len))
  290. return -EFAULT;
  291. }
  292. return len;
  293. }
  294. #define SOLARIS_CONFIG_NGROUPS 2
  295. #define SOLARIS_CONFIG_CHILD_MAX 3
  296. #define SOLARIS_CONFIG_OPEN_FILES 4
  297. #define SOLARIS_CONFIG_POSIX_VER 5
  298. #define SOLARIS_CONFIG_PAGESIZE 6
  299. #define SOLARIS_CONFIG_CLK_TCK 7
  300. #define SOLARIS_CONFIG_XOPEN_VER 8
  301. #define SOLARIS_CONFIG_PROF_TCK 10
  302. #define SOLARIS_CONFIG_NPROC_CONF 11
  303. #define SOLARIS_CONFIG_NPROC_ONLN 12
  304. #define SOLARIS_CONFIG_AIO_LISTIO_MAX 13
  305. #define SOLARIS_CONFIG_AIO_MAX 14
  306. #define SOLARIS_CONFIG_AIO_PRIO_DELTA_MAX 15
  307. #define SOLARIS_CONFIG_DELAYTIMER_MAX 16
  308. #define SOLARIS_CONFIG_MQ_OPEN_MAX 17
  309. #define SOLARIS_CONFIG_MQ_PRIO_MAX 18
  310. #define SOLARIS_CONFIG_RTSIG_MAX 19
  311. #define SOLARIS_CONFIG_SEM_NSEMS_MAX 20
  312. #define SOLARIS_CONFIG_SEM_VALUE_MAX 21
  313. #define SOLARIS_CONFIG_SIGQUEUE_MAX 22
  314. #define SOLARIS_CONFIG_SIGRT_MIN 23
  315. #define SOLARIS_CONFIG_SIGRT_MAX 24
  316. #define SOLARIS_CONFIG_TIMER_MAX 25
  317. #define SOLARIS_CONFIG_PHYS_PAGES 26
  318. #define SOLARIS_CONFIG_AVPHYS_PAGES 27
  319. asmlinkage int solaris_sysconf(int id)
  320. {
  321. switch (id) {
  322. case SOLARIS_CONFIG_NGROUPS: return NGROUPS_MAX;
  323. case SOLARIS_CONFIG_CHILD_MAX: return -1; /* no limit */
  324. case SOLARIS_CONFIG_OPEN_FILES: return OPEN_MAX;
  325. case SOLARIS_CONFIG_POSIX_VER: return 199309;
  326. case SOLARIS_CONFIG_PAGESIZE: return PAGE_SIZE;
  327. case SOLARIS_CONFIG_XOPEN_VER: return 3;
  328. case SOLARIS_CONFIG_CLK_TCK:
  329. case SOLARIS_CONFIG_PROF_TCK:
  330. return sparc64_get_clock_tick(smp_processor_id());
  331. #ifdef CONFIG_SMP
  332. case SOLARIS_CONFIG_NPROC_CONF: return NR_CPUS;
  333. case SOLARIS_CONFIG_NPROC_ONLN: return num_online_cpus();
  334. #else
  335. case SOLARIS_CONFIG_NPROC_CONF: return 1;
  336. case SOLARIS_CONFIG_NPROC_ONLN: return 1;
  337. #endif
  338. case SOLARIS_CONFIG_SIGRT_MIN: return 37;
  339. case SOLARIS_CONFIG_SIGRT_MAX: return 44;
  340. case SOLARIS_CONFIG_PHYS_PAGES:
  341. case SOLARIS_CONFIG_AVPHYS_PAGES:
  342. {
  343. struct sysinfo s;
  344. si_meminfo(&s);
  345. if (id == SOLARIS_CONFIG_PHYS_PAGES)
  346. return s.totalram >>= PAGE_SHIFT;
  347. else
  348. return s.freeram >>= PAGE_SHIFT;
  349. }
  350. /* XXX support these as well -jj */
  351. case SOLARIS_CONFIG_AIO_LISTIO_MAX: return -EINVAL;
  352. case SOLARIS_CONFIG_AIO_MAX: return -EINVAL;
  353. case SOLARIS_CONFIG_AIO_PRIO_DELTA_MAX: return -EINVAL;
  354. case SOLARIS_CONFIG_DELAYTIMER_MAX: return -EINVAL;
  355. case SOLARIS_CONFIG_MQ_OPEN_MAX: return -EINVAL;
  356. case SOLARIS_CONFIG_MQ_PRIO_MAX: return -EINVAL;
  357. case SOLARIS_CONFIG_RTSIG_MAX: return -EINVAL;
  358. case SOLARIS_CONFIG_SEM_NSEMS_MAX: return -EINVAL;
  359. case SOLARIS_CONFIG_SEM_VALUE_MAX: return -EINVAL;
  360. case SOLARIS_CONFIG_SIGQUEUE_MAX: return -EINVAL;
  361. case SOLARIS_CONFIG_TIMER_MAX: return -EINVAL;
  362. default: return -EINVAL;
  363. }
  364. }
  365. asmlinkage int solaris_procids(int cmd, s32 pid, s32 pgid)
  366. {
  367. int ret;
  368. switch (cmd) {
  369. case 0: /* getpgrp */
  370. return process_group(current);
  371. case 1: /* setpgrp */
  372. {
  373. int (*sys_setpgid)(pid_t,pid_t) =
  374. (int (*)(pid_t,pid_t))SYS(setpgid);
  375. /* can anyone explain me the difference between
  376. Solaris setpgrp and setsid? */
  377. ret = sys_setpgid(0, 0);
  378. if (ret) return ret;
  379. current->signal->tty = NULL;
  380. return process_group(current);
  381. }
  382. case 2: /* getsid */
  383. {
  384. int (*sys_getsid)(pid_t) = (int (*)(pid_t))SYS(getsid);
  385. return sys_getsid(pid);
  386. }
  387. case 3: /* setsid */
  388. {
  389. int (*sys_setsid)(void) = (int (*)(void))SYS(setsid);
  390. return sys_setsid();
  391. }
  392. case 4: /* getpgid */
  393. {
  394. int (*sys_getpgid)(pid_t) = (int (*)(pid_t))SYS(getpgid);
  395. return sys_getpgid(pid);
  396. }
  397. case 5: /* setpgid */
  398. {
  399. int (*sys_setpgid)(pid_t,pid_t) =
  400. (int (*)(pid_t,pid_t))SYS(setpgid);
  401. return sys_setpgid(pid,pgid);
  402. }
  403. }
  404. return -EINVAL;
  405. }
  406. asmlinkage int solaris_gettimeofday(u32 tim)
  407. {
  408. int (*sys_gettimeofday)(struct timeval *, struct timezone *) =
  409. (int (*)(struct timeval *, struct timezone *))SYS(gettimeofday);
  410. return sys_gettimeofday((struct timeval *)(u64)tim, NULL);
  411. }
  412. #define RLIM_SOL_INFINITY32 0x7fffffff
  413. #define RLIM_SOL_SAVED_MAX32 0x7ffffffe
  414. #define RLIM_SOL_SAVED_CUR32 0x7ffffffd
  415. #define RLIM_SOL_INFINITY ((u64)-3)
  416. #define RLIM_SOL_SAVED_MAX ((u64)-2)
  417. #define RLIM_SOL_SAVED_CUR ((u64)-1)
  418. #define RESOURCE32(x) ((x > RLIM_INFINITY32) ? RLIM_INFINITY32 : x)
  419. #define RLIMIT_SOL_NOFILE 5
  420. #define RLIMIT_SOL_VMEM 6
  421. struct rlimit32 {
  422. u32 rlim_cur;
  423. u32 rlim_max;
  424. };
  425. asmlinkage int solaris_getrlimit(unsigned int resource, struct rlimit32 __user *rlim)
  426. {
  427. struct rlimit r;
  428. int ret;
  429. mm_segment_t old_fs = get_fs ();
  430. int (*sys_getrlimit)(unsigned int, struct rlimit *) =
  431. (int (*)(unsigned int, struct rlimit *))SYS(getrlimit);
  432. if (resource > RLIMIT_SOL_VMEM)
  433. return -EINVAL;
  434. switch (resource) {
  435. case RLIMIT_SOL_NOFILE: resource = RLIMIT_NOFILE; break;
  436. case RLIMIT_SOL_VMEM: resource = RLIMIT_AS; break;
  437. default: break;
  438. }
  439. set_fs (KERNEL_DS);
  440. ret = sys_getrlimit(resource, &r);
  441. set_fs (old_fs);
  442. if (!ret) {
  443. if (r.rlim_cur == RLIM_INFINITY)
  444. r.rlim_cur = RLIM_SOL_INFINITY32;
  445. else if ((u64)r.rlim_cur > RLIM_SOL_INFINITY32)
  446. r.rlim_cur = RLIM_SOL_SAVED_CUR32;
  447. if (r.rlim_max == RLIM_INFINITY)
  448. r.rlim_max = RLIM_SOL_INFINITY32;
  449. else if ((u64)r.rlim_max > RLIM_SOL_INFINITY32)
  450. r.rlim_max = RLIM_SOL_SAVED_MAX32;
  451. ret = put_user (r.rlim_cur, &rlim->rlim_cur);
  452. ret |= __put_user (r.rlim_max, &rlim->rlim_max);
  453. }
  454. return ret;
  455. }
  456. asmlinkage int solaris_setrlimit(unsigned int resource, struct rlimit32 __user *rlim)
  457. {
  458. struct rlimit r, rold;
  459. int ret;
  460. mm_segment_t old_fs = get_fs ();
  461. int (*sys_getrlimit)(unsigned int, struct rlimit __user *) =
  462. (int (*)(unsigned int, struct rlimit __user *))SYS(getrlimit);
  463. int (*sys_setrlimit)(unsigned int, struct rlimit __user *) =
  464. (int (*)(unsigned int, struct rlimit __user *))SYS(setrlimit);
  465. if (resource > RLIMIT_SOL_VMEM)
  466. return -EINVAL;
  467. switch (resource) {
  468. case RLIMIT_SOL_NOFILE: resource = RLIMIT_NOFILE; break;
  469. case RLIMIT_SOL_VMEM: resource = RLIMIT_AS; break;
  470. default: break;
  471. }
  472. if (get_user (r.rlim_cur, &rlim->rlim_cur) ||
  473. __get_user (r.rlim_max, &rlim->rlim_max))
  474. return -EFAULT;
  475. set_fs (KERNEL_DS);
  476. ret = sys_getrlimit(resource, &rold);
  477. if (!ret) {
  478. if (r.rlim_cur == RLIM_SOL_INFINITY32)
  479. r.rlim_cur = RLIM_INFINITY;
  480. else if (r.rlim_cur == RLIM_SOL_SAVED_CUR32)
  481. r.rlim_cur = rold.rlim_cur;
  482. else if (r.rlim_cur == RLIM_SOL_SAVED_MAX32)
  483. r.rlim_cur = rold.rlim_max;
  484. if (r.rlim_max == RLIM_SOL_INFINITY32)
  485. r.rlim_max = RLIM_INFINITY;
  486. else if (r.rlim_max == RLIM_SOL_SAVED_CUR32)
  487. r.rlim_max = rold.rlim_cur;
  488. else if (r.rlim_max == RLIM_SOL_SAVED_MAX32)
  489. r.rlim_max = rold.rlim_max;
  490. ret = sys_setrlimit(resource, &r);
  491. }
  492. set_fs (old_fs);
  493. return ret;
  494. }
  495. asmlinkage int solaris_getrlimit64(unsigned int resource, struct rlimit __user *rlim)
  496. {
  497. struct rlimit r;
  498. int ret;
  499. mm_segment_t old_fs = get_fs ();
  500. int (*sys_getrlimit)(unsigned int, struct rlimit __user *) =
  501. (int (*)(unsigned int, struct rlimit __user *))SYS(getrlimit);
  502. if (resource > RLIMIT_SOL_VMEM)
  503. return -EINVAL;
  504. switch (resource) {
  505. case RLIMIT_SOL_NOFILE: resource = RLIMIT_NOFILE; break;
  506. case RLIMIT_SOL_VMEM: resource = RLIMIT_AS; break;
  507. default: break;
  508. }
  509. set_fs (KERNEL_DS);
  510. ret = sys_getrlimit(resource, &r);
  511. set_fs (old_fs);
  512. if (!ret) {
  513. if (r.rlim_cur == RLIM_INFINITY)
  514. r.rlim_cur = RLIM_SOL_INFINITY;
  515. if (r.rlim_max == RLIM_INFINITY)
  516. r.rlim_max = RLIM_SOL_INFINITY;
  517. ret = put_user (r.rlim_cur, &rlim->rlim_cur);
  518. ret |= __put_user (r.rlim_max, &rlim->rlim_max);
  519. }
  520. return ret;
  521. }
  522. asmlinkage int solaris_setrlimit64(unsigned int resource, struct rlimit __user *rlim)
  523. {
  524. struct rlimit r, rold;
  525. int ret;
  526. mm_segment_t old_fs = get_fs ();
  527. int (*sys_getrlimit)(unsigned int, struct rlimit __user *) =
  528. (int (*)(unsigned int, struct rlimit __user *))SYS(getrlimit);
  529. int (*sys_setrlimit)(unsigned int, struct rlimit __user *) =
  530. (int (*)(unsigned int, struct rlimit __user *))SYS(setrlimit);
  531. if (resource > RLIMIT_SOL_VMEM)
  532. return -EINVAL;
  533. switch (resource) {
  534. case RLIMIT_SOL_NOFILE: resource = RLIMIT_NOFILE; break;
  535. case RLIMIT_SOL_VMEM: resource = RLIMIT_AS; break;
  536. default: break;
  537. }
  538. if (get_user (r.rlim_cur, &rlim->rlim_cur) ||
  539. __get_user (r.rlim_max, &rlim->rlim_max))
  540. return -EFAULT;
  541. set_fs (KERNEL_DS);
  542. ret = sys_getrlimit(resource, &rold);
  543. if (!ret) {
  544. if (r.rlim_cur == RLIM_SOL_INFINITY)
  545. r.rlim_cur = RLIM_INFINITY;
  546. else if (r.rlim_cur == RLIM_SOL_SAVED_CUR)
  547. r.rlim_cur = rold.rlim_cur;
  548. else if (r.rlim_cur == RLIM_SOL_SAVED_MAX)
  549. r.rlim_cur = rold.rlim_max;
  550. if (r.rlim_max == RLIM_SOL_INFINITY)
  551. r.rlim_max = RLIM_INFINITY;
  552. else if (r.rlim_max == RLIM_SOL_SAVED_CUR)
  553. r.rlim_max = rold.rlim_cur;
  554. else if (r.rlim_max == RLIM_SOL_SAVED_MAX)
  555. r.rlim_max = rold.rlim_max;
  556. ret = sys_setrlimit(resource, &r);
  557. }
  558. set_fs (old_fs);
  559. return ret;
  560. }
  561. struct sol_ntptimeval {
  562. struct compat_timeval time;
  563. s32 maxerror;
  564. s32 esterror;
  565. };
  566. struct sol_timex {
  567. u32 modes;
  568. s32 offset;
  569. s32 freq;
  570. s32 maxerror;
  571. s32 esterror;
  572. s32 status;
  573. s32 constant;
  574. s32 precision;
  575. s32 tolerance;
  576. s32 ppsfreq;
  577. s32 jitter;
  578. s32 shift;
  579. s32 stabil;
  580. s32 jitcnt;
  581. s32 calcnt;
  582. s32 errcnt;
  583. s32 stbcnt;
  584. };
  585. asmlinkage int solaris_ntp_gettime(struct sol_ntptimeval __user *ntp)
  586. {
  587. int (*sys_adjtimex)(struct timex __user *) =
  588. (int (*)(struct timex __user *))SYS(adjtimex);
  589. struct timex t;
  590. int ret;
  591. mm_segment_t old_fs = get_fs();
  592. set_fs(KERNEL_DS);
  593. t.modes = 0;
  594. ret = sys_adjtimex(&t);
  595. set_fs(old_fs);
  596. if (ret < 0)
  597. return ret;
  598. ret = put_user (t.time.tv_sec, &ntp->time.tv_sec);
  599. ret |= __put_user (t.time.tv_usec, &ntp->time.tv_usec);
  600. ret |= __put_user (t.maxerror, &ntp->maxerror);
  601. ret |= __put_user (t.esterror, &ntp->esterror);
  602. return ret;
  603. }
  604. asmlinkage int solaris_ntp_adjtime(struct sol_timex __user *txp)
  605. {
  606. int (*sys_adjtimex)(struct timex __user *) =
  607. (int (*)(struct timex __user *))SYS(adjtimex);
  608. struct timex t;
  609. int ret, err;
  610. mm_segment_t old_fs = get_fs();
  611. ret = get_user (t.modes, &txp->modes);
  612. ret |= __get_user (t.offset, &txp->offset);
  613. ret |= __get_user (t.freq, &txp->freq);
  614. ret |= __get_user (t.maxerror, &txp->maxerror);
  615. ret |= __get_user (t.esterror, &txp->esterror);
  616. ret |= __get_user (t.status, &txp->status);
  617. ret |= __get_user (t.constant, &txp->constant);
  618. set_fs(KERNEL_DS);
  619. ret = sys_adjtimex(&t);
  620. set_fs(old_fs);
  621. if (ret < 0)
  622. return ret;
  623. err = put_user (t.offset, &txp->offset);
  624. err |= __put_user (t.freq, &txp->freq);
  625. err |= __put_user (t.maxerror, &txp->maxerror);
  626. err |= __put_user (t.esterror, &txp->esterror);
  627. err |= __put_user (t.status, &txp->status);
  628. err |= __put_user (t.constant, &txp->constant);
  629. err |= __put_user (t.precision, &txp->precision);
  630. err |= __put_user (t.tolerance, &txp->tolerance);
  631. err |= __put_user (t.ppsfreq, &txp->ppsfreq);
  632. err |= __put_user (t.jitter, &txp->jitter);
  633. err |= __put_user (t.shift, &txp->shift);
  634. err |= __put_user (t.stabil, &txp->stabil);
  635. err |= __put_user (t.jitcnt, &txp->jitcnt);
  636. err |= __put_user (t.calcnt, &txp->calcnt);
  637. err |= __put_user (t.errcnt, &txp->errcnt);
  638. err |= __put_user (t.stbcnt, &txp->stbcnt);
  639. if (err)
  640. return -EFAULT;
  641. return ret;
  642. }
  643. asmlinkage int do_sol_unimplemented(struct pt_regs *regs)
  644. {
  645. printk ("Unimplemented Solaris syscall %d %08x %08x %08x %08x\n",
  646. (int)regs->u_regs[UREG_G1],
  647. (int)regs->u_regs[UREG_I0],
  648. (int)regs->u_regs[UREG_I1],
  649. (int)regs->u_regs[UREG_I2],
  650. (int)regs->u_regs[UREG_I3]);
  651. return -ENOSYS;
  652. }
  653. asmlinkage void solaris_register(void)
  654. {
  655. set_personality(PER_SVR4);
  656. }
  657. extern long solaris_to_linux_signals[], linux_to_solaris_signals[];
  658. struct exec_domain solaris_exec_domain = {
  659. .name = "Solaris",
  660. .handler = NULL,
  661. .pers_low = 1, /* PER_SVR4 personality */
  662. .pers_high = 1,
  663. .signal_map = solaris_to_linux_signals,
  664. .signal_invmap =linux_to_solaris_signals,
  665. .module = THIS_MODULE,
  666. .next = NULL
  667. };
  668. extern int init_socksys(void);
  669. MODULE_AUTHOR("Jakub Jelinek (jj@ultra.linux.cz), Patrik Rak (prak3264@ss1000.ms.mff.cuni.cz)");
  670. MODULE_DESCRIPTION("Solaris binary emulation module");
  671. MODULE_LICENSE("GPL");
  672. extern u32 tl0_solaris[8];
  673. #define update_ttable(x) \
  674. tl0_solaris[3] = (((long)(x) - (long)tl0_solaris - 3) >> 2) | 0x40000000; \
  675. wmb(); \
  676. __asm__ __volatile__ ("flush %0" : : "r" (&tl0_solaris[3]))
  677. extern u32 solaris_sparc_syscall[];
  678. extern u32 solaris_syscall[];
  679. extern void cleanup_socksys(void);
  680. extern u32 entry64_personality_patch;
  681. static int __init solaris_init(void)
  682. {
  683. int ret;
  684. SOLDD(("Solaris module at %p\n", solaris_sparc_syscall));
  685. register_exec_domain(&solaris_exec_domain);
  686. if ((ret = init_socksys())) {
  687. unregister_exec_domain(&solaris_exec_domain);
  688. return ret;
  689. }
  690. update_ttable(solaris_sparc_syscall);
  691. entry64_personality_patch |=
  692. (offsetof(struct task_struct, personality) +
  693. (sizeof(unsigned long) - 1));
  694. wmb();
  695. __asm__ __volatile__("flush %0"
  696. : : "r" (&entry64_personality_patch));
  697. return 0;
  698. }
  699. static void __exit solaris_exit(void)
  700. {
  701. update_ttable(solaris_syscall);
  702. cleanup_socksys();
  703. unregister_exec_domain(&solaris_exec_domain);
  704. }
  705. module_init(solaris_init);
  706. module_exit(solaris_exit);