msg.c 18 KB

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  1. /*
  2. * linux/ipc/msg.c
  3. * Copyright (C) 1992 Krishna Balasubramanian
  4. *
  5. * Removed all the remaining kerneld mess
  6. * Catch the -EFAULT stuff properly
  7. * Use GFP_KERNEL for messages as in 1.2
  8. * Fixed up the unchecked user space derefs
  9. * Copyright (C) 1998 Alan Cox & Andi Kleen
  10. *
  11. * /proc/sysvipc/msg support (c) 1999 Dragos Acostachioaie <dragos@iname.com>
  12. *
  13. * mostly rewritten, threaded and wake-one semantics added
  14. * MSGMAX limit removed, sysctl's added
  15. * (c) 1999 Manfred Spraul <manfreds@colorfullife.com>
  16. */
  17. #include <linux/config.h>
  18. #include <linux/slab.h>
  19. #include <linux/msg.h>
  20. #include <linux/spinlock.h>
  21. #include <linux/init.h>
  22. #include <linux/proc_fs.h>
  23. #include <linux/list.h>
  24. #include <linux/security.h>
  25. #include <linux/sched.h>
  26. #include <linux/syscalls.h>
  27. #include <linux/audit.h>
  28. #include <linux/seq_file.h>
  29. #include <asm/current.h>
  30. #include <asm/uaccess.h>
  31. #include "util.h"
  32. /* sysctl: */
  33. int msg_ctlmax = MSGMAX;
  34. int msg_ctlmnb = MSGMNB;
  35. int msg_ctlmni = MSGMNI;
  36. /* one msg_receiver structure for each sleeping receiver */
  37. struct msg_receiver {
  38. struct list_head r_list;
  39. struct task_struct* r_tsk;
  40. int r_mode;
  41. long r_msgtype;
  42. long r_maxsize;
  43. struct msg_msg* volatile r_msg;
  44. };
  45. /* one msg_sender for each sleeping sender */
  46. struct msg_sender {
  47. struct list_head list;
  48. struct task_struct* tsk;
  49. };
  50. #define SEARCH_ANY 1
  51. #define SEARCH_EQUAL 2
  52. #define SEARCH_NOTEQUAL 3
  53. #define SEARCH_LESSEQUAL 4
  54. static atomic_t msg_bytes = ATOMIC_INIT(0);
  55. static atomic_t msg_hdrs = ATOMIC_INIT(0);
  56. static struct ipc_ids msg_ids;
  57. #define msg_lock(id) ((struct msg_queue*)ipc_lock(&msg_ids,id))
  58. #define msg_unlock(msq) ipc_unlock(&(msq)->q_perm)
  59. #define msg_rmid(id) ((struct msg_queue*)ipc_rmid(&msg_ids,id))
  60. #define msg_checkid(msq, msgid) \
  61. ipc_checkid(&msg_ids,&msq->q_perm,msgid)
  62. #define msg_buildid(id, seq) \
  63. ipc_buildid(&msg_ids, id, seq)
  64. static void freeque (struct msg_queue *msq, int id);
  65. static int newque (key_t key, int msgflg);
  66. #ifdef CONFIG_PROC_FS
  67. static int sysvipc_msg_proc_show(struct seq_file *s, void *it);
  68. #endif
  69. void __init msg_init (void)
  70. {
  71. ipc_init_ids(&msg_ids,msg_ctlmni);
  72. ipc_init_proc_interface("sysvipc/msg",
  73. " key msqid perms cbytes qnum lspid lrpid uid gid cuid cgid stime rtime ctime\n",
  74. &msg_ids,
  75. sysvipc_msg_proc_show);
  76. }
  77. static int newque (key_t key, int msgflg)
  78. {
  79. int id;
  80. int retval;
  81. struct msg_queue *msq;
  82. msq = ipc_rcu_alloc(sizeof(*msq));
  83. if (!msq)
  84. return -ENOMEM;
  85. msq->q_perm.mode = (msgflg & S_IRWXUGO);
  86. msq->q_perm.key = key;
  87. msq->q_perm.security = NULL;
  88. retval = security_msg_queue_alloc(msq);
  89. if (retval) {
  90. ipc_rcu_putref(msq);
  91. return retval;
  92. }
  93. id = ipc_addid(&msg_ids, &msq->q_perm, msg_ctlmni);
  94. if(id == -1) {
  95. security_msg_queue_free(msq);
  96. ipc_rcu_putref(msq);
  97. return -ENOSPC;
  98. }
  99. msq->q_id = msg_buildid(id,msq->q_perm.seq);
  100. msq->q_stime = msq->q_rtime = 0;
  101. msq->q_ctime = get_seconds();
  102. msq->q_cbytes = msq->q_qnum = 0;
  103. msq->q_qbytes = msg_ctlmnb;
  104. msq->q_lspid = msq->q_lrpid = 0;
  105. INIT_LIST_HEAD(&msq->q_messages);
  106. INIT_LIST_HEAD(&msq->q_receivers);
  107. INIT_LIST_HEAD(&msq->q_senders);
  108. msg_unlock(msq);
  109. return msq->q_id;
  110. }
  111. static inline void ss_add(struct msg_queue* msq, struct msg_sender* mss)
  112. {
  113. mss->tsk=current;
  114. current->state=TASK_INTERRUPTIBLE;
  115. list_add_tail(&mss->list,&msq->q_senders);
  116. }
  117. static inline void ss_del(struct msg_sender* mss)
  118. {
  119. if(mss->list.next != NULL)
  120. list_del(&mss->list);
  121. }
  122. static void ss_wakeup(struct list_head* h, int kill)
  123. {
  124. struct list_head *tmp;
  125. tmp = h->next;
  126. while (tmp != h) {
  127. struct msg_sender* mss;
  128. mss = list_entry(tmp,struct msg_sender,list);
  129. tmp = tmp->next;
  130. if(kill)
  131. mss->list.next=NULL;
  132. wake_up_process(mss->tsk);
  133. }
  134. }
  135. static void expunge_all(struct msg_queue* msq, int res)
  136. {
  137. struct list_head *tmp;
  138. tmp = msq->q_receivers.next;
  139. while (tmp != &msq->q_receivers) {
  140. struct msg_receiver* msr;
  141. msr = list_entry(tmp,struct msg_receiver,r_list);
  142. tmp = tmp->next;
  143. msr->r_msg = NULL;
  144. wake_up_process(msr->r_tsk);
  145. smp_mb();
  146. msr->r_msg = ERR_PTR(res);
  147. }
  148. }
  149. /*
  150. * freeque() wakes up waiters on the sender and receiver waiting queue,
  151. * removes the message queue from message queue ID
  152. * array, and cleans up all the messages associated with this queue.
  153. *
  154. * msg_ids.sem and the spinlock for this message queue is hold
  155. * before freeque() is called. msg_ids.sem remains locked on exit.
  156. */
  157. static void freeque (struct msg_queue *msq, int id)
  158. {
  159. struct list_head *tmp;
  160. expunge_all(msq,-EIDRM);
  161. ss_wakeup(&msq->q_senders,1);
  162. msq = msg_rmid(id);
  163. msg_unlock(msq);
  164. tmp = msq->q_messages.next;
  165. while(tmp != &msq->q_messages) {
  166. struct msg_msg* msg = list_entry(tmp,struct msg_msg,m_list);
  167. tmp = tmp->next;
  168. atomic_dec(&msg_hdrs);
  169. free_msg(msg);
  170. }
  171. atomic_sub(msq->q_cbytes, &msg_bytes);
  172. security_msg_queue_free(msq);
  173. ipc_rcu_putref(msq);
  174. }
  175. asmlinkage long sys_msgget (key_t key, int msgflg)
  176. {
  177. int id, ret = -EPERM;
  178. struct msg_queue *msq;
  179. down(&msg_ids.sem);
  180. if (key == IPC_PRIVATE)
  181. ret = newque(key, msgflg);
  182. else if ((id = ipc_findkey(&msg_ids, key)) == -1) { /* key not used */
  183. if (!(msgflg & IPC_CREAT))
  184. ret = -ENOENT;
  185. else
  186. ret = newque(key, msgflg);
  187. } else if (msgflg & IPC_CREAT && msgflg & IPC_EXCL) {
  188. ret = -EEXIST;
  189. } else {
  190. msq = msg_lock(id);
  191. if(msq==NULL)
  192. BUG();
  193. if (ipcperms(&msq->q_perm, msgflg))
  194. ret = -EACCES;
  195. else {
  196. int qid = msg_buildid(id, msq->q_perm.seq);
  197. ret = security_msg_queue_associate(msq, msgflg);
  198. if (!ret)
  199. ret = qid;
  200. }
  201. msg_unlock(msq);
  202. }
  203. up(&msg_ids.sem);
  204. return ret;
  205. }
  206. static inline unsigned long copy_msqid_to_user(void __user *buf, struct msqid64_ds *in, int version)
  207. {
  208. switch(version) {
  209. case IPC_64:
  210. return copy_to_user (buf, in, sizeof(*in));
  211. case IPC_OLD:
  212. {
  213. struct msqid_ds out;
  214. memset(&out,0,sizeof(out));
  215. ipc64_perm_to_ipc_perm(&in->msg_perm, &out.msg_perm);
  216. out.msg_stime = in->msg_stime;
  217. out.msg_rtime = in->msg_rtime;
  218. out.msg_ctime = in->msg_ctime;
  219. if(in->msg_cbytes > USHRT_MAX)
  220. out.msg_cbytes = USHRT_MAX;
  221. else
  222. out.msg_cbytes = in->msg_cbytes;
  223. out.msg_lcbytes = in->msg_cbytes;
  224. if(in->msg_qnum > USHRT_MAX)
  225. out.msg_qnum = USHRT_MAX;
  226. else
  227. out.msg_qnum = in->msg_qnum;
  228. if(in->msg_qbytes > USHRT_MAX)
  229. out.msg_qbytes = USHRT_MAX;
  230. else
  231. out.msg_qbytes = in->msg_qbytes;
  232. out.msg_lqbytes = in->msg_qbytes;
  233. out.msg_lspid = in->msg_lspid;
  234. out.msg_lrpid = in->msg_lrpid;
  235. return copy_to_user (buf, &out, sizeof(out));
  236. }
  237. default:
  238. return -EINVAL;
  239. }
  240. }
  241. struct msq_setbuf {
  242. unsigned long qbytes;
  243. uid_t uid;
  244. gid_t gid;
  245. mode_t mode;
  246. };
  247. static inline unsigned long copy_msqid_from_user(struct msq_setbuf *out, void __user *buf, int version)
  248. {
  249. switch(version) {
  250. case IPC_64:
  251. {
  252. struct msqid64_ds tbuf;
  253. if (copy_from_user (&tbuf, buf, sizeof (tbuf)))
  254. return -EFAULT;
  255. out->qbytes = tbuf.msg_qbytes;
  256. out->uid = tbuf.msg_perm.uid;
  257. out->gid = tbuf.msg_perm.gid;
  258. out->mode = tbuf.msg_perm.mode;
  259. return 0;
  260. }
  261. case IPC_OLD:
  262. {
  263. struct msqid_ds tbuf_old;
  264. if (copy_from_user (&tbuf_old, buf, sizeof (tbuf_old)))
  265. return -EFAULT;
  266. out->uid = tbuf_old.msg_perm.uid;
  267. out->gid = tbuf_old.msg_perm.gid;
  268. out->mode = tbuf_old.msg_perm.mode;
  269. if(tbuf_old.msg_qbytes == 0)
  270. out->qbytes = tbuf_old.msg_lqbytes;
  271. else
  272. out->qbytes = tbuf_old.msg_qbytes;
  273. return 0;
  274. }
  275. default:
  276. return -EINVAL;
  277. }
  278. }
  279. asmlinkage long sys_msgctl (int msqid, int cmd, struct msqid_ds __user *buf)
  280. {
  281. int err, version;
  282. struct msg_queue *msq;
  283. struct msq_setbuf setbuf;
  284. struct kern_ipc_perm *ipcp;
  285. if (msqid < 0 || cmd < 0)
  286. return -EINVAL;
  287. version = ipc_parse_version(&cmd);
  288. switch (cmd) {
  289. case IPC_INFO:
  290. case MSG_INFO:
  291. {
  292. struct msginfo msginfo;
  293. int max_id;
  294. if (!buf)
  295. return -EFAULT;
  296. /* We must not return kernel stack data.
  297. * due to padding, it's not enough
  298. * to set all member fields.
  299. */
  300. err = security_msg_queue_msgctl(NULL, cmd);
  301. if (err)
  302. return err;
  303. memset(&msginfo,0,sizeof(msginfo));
  304. msginfo.msgmni = msg_ctlmni;
  305. msginfo.msgmax = msg_ctlmax;
  306. msginfo.msgmnb = msg_ctlmnb;
  307. msginfo.msgssz = MSGSSZ;
  308. msginfo.msgseg = MSGSEG;
  309. down(&msg_ids.sem);
  310. if (cmd == MSG_INFO) {
  311. msginfo.msgpool = msg_ids.in_use;
  312. msginfo.msgmap = atomic_read(&msg_hdrs);
  313. msginfo.msgtql = atomic_read(&msg_bytes);
  314. } else {
  315. msginfo.msgmap = MSGMAP;
  316. msginfo.msgpool = MSGPOOL;
  317. msginfo.msgtql = MSGTQL;
  318. }
  319. max_id = msg_ids.max_id;
  320. up(&msg_ids.sem);
  321. if (copy_to_user (buf, &msginfo, sizeof(struct msginfo)))
  322. return -EFAULT;
  323. return (max_id < 0) ? 0: max_id;
  324. }
  325. case MSG_STAT:
  326. case IPC_STAT:
  327. {
  328. struct msqid64_ds tbuf;
  329. int success_return;
  330. if (!buf)
  331. return -EFAULT;
  332. if(cmd == MSG_STAT && msqid >= msg_ids.entries->size)
  333. return -EINVAL;
  334. memset(&tbuf,0,sizeof(tbuf));
  335. msq = msg_lock(msqid);
  336. if (msq == NULL)
  337. return -EINVAL;
  338. if(cmd == MSG_STAT) {
  339. success_return = msg_buildid(msqid, msq->q_perm.seq);
  340. } else {
  341. err = -EIDRM;
  342. if (msg_checkid(msq,msqid))
  343. goto out_unlock;
  344. success_return = 0;
  345. }
  346. err = -EACCES;
  347. if (ipcperms (&msq->q_perm, S_IRUGO))
  348. goto out_unlock;
  349. err = security_msg_queue_msgctl(msq, cmd);
  350. if (err)
  351. goto out_unlock;
  352. kernel_to_ipc64_perm(&msq->q_perm, &tbuf.msg_perm);
  353. tbuf.msg_stime = msq->q_stime;
  354. tbuf.msg_rtime = msq->q_rtime;
  355. tbuf.msg_ctime = msq->q_ctime;
  356. tbuf.msg_cbytes = msq->q_cbytes;
  357. tbuf.msg_qnum = msq->q_qnum;
  358. tbuf.msg_qbytes = msq->q_qbytes;
  359. tbuf.msg_lspid = msq->q_lspid;
  360. tbuf.msg_lrpid = msq->q_lrpid;
  361. msg_unlock(msq);
  362. if (copy_msqid_to_user(buf, &tbuf, version))
  363. return -EFAULT;
  364. return success_return;
  365. }
  366. case IPC_SET:
  367. if (!buf)
  368. return -EFAULT;
  369. if (copy_msqid_from_user (&setbuf, buf, version))
  370. return -EFAULT;
  371. if ((err = audit_ipc_perms(setbuf.qbytes, setbuf.uid, setbuf.gid, setbuf.mode)))
  372. return err;
  373. break;
  374. case IPC_RMID:
  375. break;
  376. default:
  377. return -EINVAL;
  378. }
  379. down(&msg_ids.sem);
  380. msq = msg_lock(msqid);
  381. err=-EINVAL;
  382. if (msq == NULL)
  383. goto out_up;
  384. err = -EIDRM;
  385. if (msg_checkid(msq,msqid))
  386. goto out_unlock_up;
  387. ipcp = &msq->q_perm;
  388. err = -EPERM;
  389. if (current->euid != ipcp->cuid &&
  390. current->euid != ipcp->uid && !capable(CAP_SYS_ADMIN))
  391. /* We _could_ check for CAP_CHOWN above, but we don't */
  392. goto out_unlock_up;
  393. err = security_msg_queue_msgctl(msq, cmd);
  394. if (err)
  395. goto out_unlock_up;
  396. switch (cmd) {
  397. case IPC_SET:
  398. {
  399. err = -EPERM;
  400. if (setbuf.qbytes > msg_ctlmnb && !capable(CAP_SYS_RESOURCE))
  401. goto out_unlock_up;
  402. msq->q_qbytes = setbuf.qbytes;
  403. ipcp->uid = setbuf.uid;
  404. ipcp->gid = setbuf.gid;
  405. ipcp->mode = (ipcp->mode & ~S_IRWXUGO) |
  406. (S_IRWXUGO & setbuf.mode);
  407. msq->q_ctime = get_seconds();
  408. /* sleeping receivers might be excluded by
  409. * stricter permissions.
  410. */
  411. expunge_all(msq,-EAGAIN);
  412. /* sleeping senders might be able to send
  413. * due to a larger queue size.
  414. */
  415. ss_wakeup(&msq->q_senders,0);
  416. msg_unlock(msq);
  417. break;
  418. }
  419. case IPC_RMID:
  420. freeque (msq, msqid);
  421. break;
  422. }
  423. err = 0;
  424. out_up:
  425. up(&msg_ids.sem);
  426. return err;
  427. out_unlock_up:
  428. msg_unlock(msq);
  429. goto out_up;
  430. out_unlock:
  431. msg_unlock(msq);
  432. return err;
  433. }
  434. static int testmsg(struct msg_msg* msg,long type,int mode)
  435. {
  436. switch(mode)
  437. {
  438. case SEARCH_ANY:
  439. return 1;
  440. case SEARCH_LESSEQUAL:
  441. if(msg->m_type <=type)
  442. return 1;
  443. break;
  444. case SEARCH_EQUAL:
  445. if(msg->m_type == type)
  446. return 1;
  447. break;
  448. case SEARCH_NOTEQUAL:
  449. if(msg->m_type != type)
  450. return 1;
  451. break;
  452. }
  453. return 0;
  454. }
  455. static inline int pipelined_send(struct msg_queue* msq, struct msg_msg* msg)
  456. {
  457. struct list_head* tmp;
  458. tmp = msq->q_receivers.next;
  459. while (tmp != &msq->q_receivers) {
  460. struct msg_receiver* msr;
  461. msr = list_entry(tmp,struct msg_receiver,r_list);
  462. tmp = tmp->next;
  463. if(testmsg(msg,msr->r_msgtype,msr->r_mode) &&
  464. !security_msg_queue_msgrcv(msq, msg, msr->r_tsk, msr->r_msgtype, msr->r_mode)) {
  465. list_del(&msr->r_list);
  466. if(msr->r_maxsize < msg->m_ts) {
  467. msr->r_msg = NULL;
  468. wake_up_process(msr->r_tsk);
  469. smp_mb();
  470. msr->r_msg = ERR_PTR(-E2BIG);
  471. } else {
  472. msr->r_msg = NULL;
  473. msq->q_lrpid = msr->r_tsk->pid;
  474. msq->q_rtime = get_seconds();
  475. wake_up_process(msr->r_tsk);
  476. smp_mb();
  477. msr->r_msg = msg;
  478. return 1;
  479. }
  480. }
  481. }
  482. return 0;
  483. }
  484. asmlinkage long sys_msgsnd (int msqid, struct msgbuf __user *msgp, size_t msgsz, int msgflg)
  485. {
  486. struct msg_queue *msq;
  487. struct msg_msg *msg;
  488. long mtype;
  489. int err;
  490. if (msgsz > msg_ctlmax || (long) msgsz < 0 || msqid < 0)
  491. return -EINVAL;
  492. if (get_user(mtype, &msgp->mtype))
  493. return -EFAULT;
  494. if (mtype < 1)
  495. return -EINVAL;
  496. msg = load_msg(msgp->mtext, msgsz);
  497. if(IS_ERR(msg))
  498. return PTR_ERR(msg);
  499. msg->m_type = mtype;
  500. msg->m_ts = msgsz;
  501. msq = msg_lock(msqid);
  502. err=-EINVAL;
  503. if(msq==NULL)
  504. goto out_free;
  505. err= -EIDRM;
  506. if (msg_checkid(msq,msqid))
  507. goto out_unlock_free;
  508. for (;;) {
  509. struct msg_sender s;
  510. err=-EACCES;
  511. if (ipcperms(&msq->q_perm, S_IWUGO))
  512. goto out_unlock_free;
  513. err = security_msg_queue_msgsnd(msq, msg, msgflg);
  514. if (err)
  515. goto out_unlock_free;
  516. if(msgsz + msq->q_cbytes <= msq->q_qbytes &&
  517. 1 + msq->q_qnum <= msq->q_qbytes) {
  518. break;
  519. }
  520. /* queue full, wait: */
  521. if(msgflg&IPC_NOWAIT) {
  522. err=-EAGAIN;
  523. goto out_unlock_free;
  524. }
  525. ss_add(msq, &s);
  526. ipc_rcu_getref(msq);
  527. msg_unlock(msq);
  528. schedule();
  529. ipc_lock_by_ptr(&msq->q_perm);
  530. ipc_rcu_putref(msq);
  531. if (msq->q_perm.deleted) {
  532. err = -EIDRM;
  533. goto out_unlock_free;
  534. }
  535. ss_del(&s);
  536. if (signal_pending(current)) {
  537. err=-ERESTARTNOHAND;
  538. goto out_unlock_free;
  539. }
  540. }
  541. msq->q_lspid = current->tgid;
  542. msq->q_stime = get_seconds();
  543. if(!pipelined_send(msq,msg)) {
  544. /* noone is waiting for this message, enqueue it */
  545. list_add_tail(&msg->m_list,&msq->q_messages);
  546. msq->q_cbytes += msgsz;
  547. msq->q_qnum++;
  548. atomic_add(msgsz,&msg_bytes);
  549. atomic_inc(&msg_hdrs);
  550. }
  551. err = 0;
  552. msg = NULL;
  553. out_unlock_free:
  554. msg_unlock(msq);
  555. out_free:
  556. if(msg!=NULL)
  557. free_msg(msg);
  558. return err;
  559. }
  560. static inline int convert_mode(long* msgtyp, int msgflg)
  561. {
  562. /*
  563. * find message of correct type.
  564. * msgtyp = 0 => get first.
  565. * msgtyp > 0 => get first message of matching type.
  566. * msgtyp < 0 => get message with least type must be < abs(msgtype).
  567. */
  568. if(*msgtyp==0)
  569. return SEARCH_ANY;
  570. if(*msgtyp<0) {
  571. *msgtyp=-(*msgtyp);
  572. return SEARCH_LESSEQUAL;
  573. }
  574. if(msgflg & MSG_EXCEPT)
  575. return SEARCH_NOTEQUAL;
  576. return SEARCH_EQUAL;
  577. }
  578. asmlinkage long sys_msgrcv (int msqid, struct msgbuf __user *msgp, size_t msgsz,
  579. long msgtyp, int msgflg)
  580. {
  581. struct msg_queue *msq;
  582. struct msg_msg *msg;
  583. int mode;
  584. if (msqid < 0 || (long) msgsz < 0)
  585. return -EINVAL;
  586. mode = convert_mode(&msgtyp,msgflg);
  587. msq = msg_lock(msqid);
  588. if(msq==NULL)
  589. return -EINVAL;
  590. msg = ERR_PTR(-EIDRM);
  591. if (msg_checkid(msq,msqid))
  592. goto out_unlock;
  593. for (;;) {
  594. struct msg_receiver msr_d;
  595. struct list_head* tmp;
  596. msg = ERR_PTR(-EACCES);
  597. if (ipcperms (&msq->q_perm, S_IRUGO))
  598. goto out_unlock;
  599. msg = ERR_PTR(-EAGAIN);
  600. tmp = msq->q_messages.next;
  601. while (tmp != &msq->q_messages) {
  602. struct msg_msg *walk_msg;
  603. walk_msg = list_entry(tmp,struct msg_msg,m_list);
  604. if(testmsg(walk_msg,msgtyp,mode) &&
  605. !security_msg_queue_msgrcv(msq, walk_msg, current, msgtyp, mode)) {
  606. msg = walk_msg;
  607. if(mode == SEARCH_LESSEQUAL && walk_msg->m_type != 1) {
  608. msg=walk_msg;
  609. msgtyp=walk_msg->m_type-1;
  610. } else {
  611. msg=walk_msg;
  612. break;
  613. }
  614. }
  615. tmp = tmp->next;
  616. }
  617. if(!IS_ERR(msg)) {
  618. /* Found a suitable message. Unlink it from the queue. */
  619. if ((msgsz < msg->m_ts) && !(msgflg & MSG_NOERROR)) {
  620. msg = ERR_PTR(-E2BIG);
  621. goto out_unlock;
  622. }
  623. list_del(&msg->m_list);
  624. msq->q_qnum--;
  625. msq->q_rtime = get_seconds();
  626. msq->q_lrpid = current->tgid;
  627. msq->q_cbytes -= msg->m_ts;
  628. atomic_sub(msg->m_ts,&msg_bytes);
  629. atomic_dec(&msg_hdrs);
  630. ss_wakeup(&msq->q_senders,0);
  631. msg_unlock(msq);
  632. break;
  633. }
  634. /* No message waiting. Wait for a message */
  635. if (msgflg & IPC_NOWAIT) {
  636. msg = ERR_PTR(-ENOMSG);
  637. goto out_unlock;
  638. }
  639. list_add_tail(&msr_d.r_list,&msq->q_receivers);
  640. msr_d.r_tsk = current;
  641. msr_d.r_msgtype = msgtyp;
  642. msr_d.r_mode = mode;
  643. if(msgflg & MSG_NOERROR)
  644. msr_d.r_maxsize = INT_MAX;
  645. else
  646. msr_d.r_maxsize = msgsz;
  647. msr_d.r_msg = ERR_PTR(-EAGAIN);
  648. current->state = TASK_INTERRUPTIBLE;
  649. msg_unlock(msq);
  650. schedule();
  651. /* Lockless receive, part 1:
  652. * Disable preemption. We don't hold a reference to the queue
  653. * and getting a reference would defeat the idea of a lockless
  654. * operation, thus the code relies on rcu to guarantee the
  655. * existance of msq:
  656. * Prior to destruction, expunge_all(-EIRDM) changes r_msg.
  657. * Thus if r_msg is -EAGAIN, then the queue not yet destroyed.
  658. * rcu_read_lock() prevents preemption between reading r_msg
  659. * and the spin_lock() inside ipc_lock_by_ptr().
  660. */
  661. rcu_read_lock();
  662. /* Lockless receive, part 2:
  663. * Wait until pipelined_send or expunge_all are outside of
  664. * wake_up_process(). There is a race with exit(), see
  665. * ipc/mqueue.c for the details.
  666. */
  667. msg = (struct msg_msg*) msr_d.r_msg;
  668. while (msg == NULL) {
  669. cpu_relax();
  670. msg = (struct msg_msg*) msr_d.r_msg;
  671. }
  672. /* Lockless receive, part 3:
  673. * If there is a message or an error then accept it without
  674. * locking.
  675. */
  676. if(msg != ERR_PTR(-EAGAIN)) {
  677. rcu_read_unlock();
  678. break;
  679. }
  680. /* Lockless receive, part 3:
  681. * Acquire the queue spinlock.
  682. */
  683. ipc_lock_by_ptr(&msq->q_perm);
  684. rcu_read_unlock();
  685. /* Lockless receive, part 4:
  686. * Repeat test after acquiring the spinlock.
  687. */
  688. msg = (struct msg_msg*)msr_d.r_msg;
  689. if(msg != ERR_PTR(-EAGAIN))
  690. goto out_unlock;
  691. list_del(&msr_d.r_list);
  692. if (signal_pending(current)) {
  693. msg = ERR_PTR(-ERESTARTNOHAND);
  694. out_unlock:
  695. msg_unlock(msq);
  696. break;
  697. }
  698. }
  699. if (IS_ERR(msg))
  700. return PTR_ERR(msg);
  701. msgsz = (msgsz > msg->m_ts) ? msg->m_ts : msgsz;
  702. if (put_user (msg->m_type, &msgp->mtype) ||
  703. store_msg(msgp->mtext, msg, msgsz)) {
  704. msgsz = -EFAULT;
  705. }
  706. free_msg(msg);
  707. return msgsz;
  708. }
  709. #ifdef CONFIG_PROC_FS
  710. static int sysvipc_msg_proc_show(struct seq_file *s, void *it)
  711. {
  712. struct msg_queue *msq = it;
  713. return seq_printf(s,
  714. "%10d %10d %4o %10lu %10lu %5u %5u %5u %5u %5u %5u %10lu %10lu %10lu\n",
  715. msq->q_perm.key,
  716. msq->q_id,
  717. msq->q_perm.mode,
  718. msq->q_cbytes,
  719. msq->q_qnum,
  720. msq->q_lspid,
  721. msq->q_lrpid,
  722. msq->q_perm.uid,
  723. msq->q_perm.gid,
  724. msq->q_perm.cuid,
  725. msq->q_perm.cgid,
  726. msq->q_stime,
  727. msq->q_rtime,
  728. msq->q_ctime);
  729. }
  730. #endif