trans_fd.c 24 KB

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  1. /*
  2. * linux/fs/9p/trans_fd.c
  3. *
  4. * Fd transport layer. Includes deprecated socket layer.
  5. *
  6. * Copyright (C) 2006 by Russ Cox <rsc@swtch.com>
  7. * Copyright (C) 2004-2005 by Latchesar Ionkov <lucho@ionkov.net>
  8. * Copyright (C) 2004-2008 by Eric Van Hensbergen <ericvh@gmail.com>
  9. * Copyright (C) 1997-2002 by Ron Minnich <rminnich@sarnoff.com>
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License version 2
  13. * as published by the Free Software Foundation.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to:
  22. * Free Software Foundation
  23. * 51 Franklin Street, Fifth Floor
  24. * Boston, MA 02111-1301 USA
  25. *
  26. */
  27. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  28. #include <linux/in.h>
  29. #include <linux/module.h>
  30. #include <linux/net.h>
  31. #include <linux/ipv6.h>
  32. #include <linux/kthread.h>
  33. #include <linux/errno.h>
  34. #include <linux/kernel.h>
  35. #include <linux/un.h>
  36. #include <linux/uaccess.h>
  37. #include <linux/inet.h>
  38. #include <linux/idr.h>
  39. #include <linux/file.h>
  40. #include <linux/parser.h>
  41. #include <linux/slab.h>
  42. #include <net/9p/9p.h>
  43. #include <net/9p/client.h>
  44. #include <net/9p/transport.h>
  45. #include <linux/syscalls.h> /* killme */
  46. #define P9_PORT 564
  47. #define MAX_SOCK_BUF (64*1024)
  48. #define MAXPOLLWADDR 2
  49. /**
  50. * struct p9_fd_opts - per-transport options
  51. * @rfd: file descriptor for reading (trans=fd)
  52. * @wfd: file descriptor for writing (trans=fd)
  53. * @port: port to connect to (trans=tcp)
  54. *
  55. */
  56. struct p9_fd_opts {
  57. int rfd;
  58. int wfd;
  59. u16 port;
  60. };
  61. /**
  62. * struct p9_trans_fd - transport state
  63. * @rd: reference to file to read from
  64. * @wr: reference of file to write to
  65. * @conn: connection state reference
  66. *
  67. */
  68. struct p9_trans_fd {
  69. struct file *rd;
  70. struct file *wr;
  71. struct p9_conn *conn;
  72. };
  73. /*
  74. * Option Parsing (code inspired by NFS code)
  75. * - a little lazy - parse all fd-transport options
  76. */
  77. enum {
  78. /* Options that take integer arguments */
  79. Opt_port, Opt_rfdno, Opt_wfdno, Opt_err,
  80. };
  81. static const match_table_t tokens = {
  82. {Opt_port, "port=%u"},
  83. {Opt_rfdno, "rfdno=%u"},
  84. {Opt_wfdno, "wfdno=%u"},
  85. {Opt_err, NULL},
  86. };
  87. enum {
  88. Rworksched = 1, /* read work scheduled or running */
  89. Rpending = 2, /* can read */
  90. Wworksched = 4, /* write work scheduled or running */
  91. Wpending = 8, /* can write */
  92. };
  93. struct p9_poll_wait {
  94. struct p9_conn *conn;
  95. wait_queue_t wait;
  96. wait_queue_head_t *wait_addr;
  97. };
  98. /**
  99. * struct p9_conn - fd mux connection state information
  100. * @mux_list: list link for mux to manage multiple connections (?)
  101. * @client: reference to client instance for this connection
  102. * @err: error state
  103. * @req_list: accounting for requests which have been sent
  104. * @unsent_req_list: accounting for requests that haven't been sent
  105. * @req: current request being processed (if any)
  106. * @tmp_buf: temporary buffer to read in header
  107. * @rsize: amount to read for current frame
  108. * @rpos: read position in current frame
  109. * @rbuf: current read buffer
  110. * @wpos: write position for current frame
  111. * @wsize: amount of data to write for current frame
  112. * @wbuf: current write buffer
  113. * @poll_pending_link: pending links to be polled per conn
  114. * @poll_wait: array of wait_q's for various worker threads
  115. * @pt: poll state
  116. * @rq: current read work
  117. * @wq: current write work
  118. * @wsched: ????
  119. *
  120. */
  121. struct p9_conn {
  122. struct list_head mux_list;
  123. struct p9_client *client;
  124. int err;
  125. struct list_head req_list;
  126. struct list_head unsent_req_list;
  127. struct p9_req_t *req;
  128. char tmp_buf[7];
  129. int rsize;
  130. int rpos;
  131. char *rbuf;
  132. int wpos;
  133. int wsize;
  134. char *wbuf;
  135. struct list_head poll_pending_link;
  136. struct p9_poll_wait poll_wait[MAXPOLLWADDR];
  137. poll_table pt;
  138. struct work_struct rq;
  139. struct work_struct wq;
  140. unsigned long wsched;
  141. };
  142. static void p9_poll_workfn(struct work_struct *work);
  143. static DEFINE_SPINLOCK(p9_poll_lock);
  144. static LIST_HEAD(p9_poll_pending_list);
  145. static DECLARE_WORK(p9_poll_work, p9_poll_workfn);
  146. static void p9_mux_poll_stop(struct p9_conn *m)
  147. {
  148. unsigned long flags;
  149. int i;
  150. for (i = 0; i < ARRAY_SIZE(m->poll_wait); i++) {
  151. struct p9_poll_wait *pwait = &m->poll_wait[i];
  152. if (pwait->wait_addr) {
  153. remove_wait_queue(pwait->wait_addr, &pwait->wait);
  154. pwait->wait_addr = NULL;
  155. }
  156. }
  157. spin_lock_irqsave(&p9_poll_lock, flags);
  158. list_del_init(&m->poll_pending_link);
  159. spin_unlock_irqrestore(&p9_poll_lock, flags);
  160. }
  161. /**
  162. * p9_conn_cancel - cancel all pending requests with error
  163. * @m: mux data
  164. * @err: error code
  165. *
  166. */
  167. static void p9_conn_cancel(struct p9_conn *m, int err)
  168. {
  169. struct p9_req_t *req, *rtmp;
  170. unsigned long flags;
  171. LIST_HEAD(cancel_list);
  172. p9_debug(P9_DEBUG_ERROR, "mux %p err %d\n", m, err);
  173. spin_lock_irqsave(&m->client->lock, flags);
  174. if (m->err) {
  175. spin_unlock_irqrestore(&m->client->lock, flags);
  176. return;
  177. }
  178. m->err = err;
  179. list_for_each_entry_safe(req, rtmp, &m->req_list, req_list) {
  180. req->status = REQ_STATUS_ERROR;
  181. if (!req->t_err)
  182. req->t_err = err;
  183. list_move(&req->req_list, &cancel_list);
  184. }
  185. list_for_each_entry_safe(req, rtmp, &m->unsent_req_list, req_list) {
  186. req->status = REQ_STATUS_ERROR;
  187. if (!req->t_err)
  188. req->t_err = err;
  189. list_move(&req->req_list, &cancel_list);
  190. }
  191. spin_unlock_irqrestore(&m->client->lock, flags);
  192. list_for_each_entry_safe(req, rtmp, &cancel_list, req_list) {
  193. p9_debug(P9_DEBUG_ERROR, "call back req %p\n", req);
  194. list_del(&req->req_list);
  195. p9_client_cb(m->client, req);
  196. }
  197. }
  198. static int
  199. p9_fd_poll(struct p9_client *client, struct poll_table_struct *pt)
  200. {
  201. int ret, n;
  202. struct p9_trans_fd *ts = NULL;
  203. if (client && client->status == Connected)
  204. ts = client->trans;
  205. if (!ts)
  206. return -EREMOTEIO;
  207. if (!ts->rd->f_op || !ts->rd->f_op->poll)
  208. return -EIO;
  209. if (!ts->wr->f_op || !ts->wr->f_op->poll)
  210. return -EIO;
  211. ret = ts->rd->f_op->poll(ts->rd, pt);
  212. if (ret < 0)
  213. return ret;
  214. if (ts->rd != ts->wr) {
  215. n = ts->wr->f_op->poll(ts->wr, pt);
  216. if (n < 0)
  217. return n;
  218. ret = (ret & ~POLLOUT) | (n & ~POLLIN);
  219. }
  220. return ret;
  221. }
  222. /**
  223. * p9_fd_read- read from a fd
  224. * @client: client instance
  225. * @v: buffer to receive data into
  226. * @len: size of receive buffer
  227. *
  228. */
  229. static int p9_fd_read(struct p9_client *client, void *v, int len)
  230. {
  231. int ret;
  232. struct p9_trans_fd *ts = NULL;
  233. if (client && client->status != Disconnected)
  234. ts = client->trans;
  235. if (!ts)
  236. return -EREMOTEIO;
  237. if (!(ts->rd->f_flags & O_NONBLOCK))
  238. p9_debug(P9_DEBUG_ERROR, "blocking read ...\n");
  239. ret = kernel_read(ts->rd, ts->rd->f_pos, v, len);
  240. if (ret <= 0 && ret != -ERESTARTSYS && ret != -EAGAIN)
  241. client->status = Disconnected;
  242. return ret;
  243. }
  244. /**
  245. * p9_read_work - called when there is some data to be read from a transport
  246. * @work: container of work to be done
  247. *
  248. */
  249. static void p9_read_work(struct work_struct *work)
  250. {
  251. int n, err;
  252. struct p9_conn *m;
  253. m = container_of(work, struct p9_conn, rq);
  254. if (m->err < 0)
  255. return;
  256. p9_debug(P9_DEBUG_TRANS, "start mux %p pos %d\n", m, m->rpos);
  257. if (!m->rbuf) {
  258. m->rbuf = m->tmp_buf;
  259. m->rpos = 0;
  260. m->rsize = 7; /* start by reading header */
  261. }
  262. clear_bit(Rpending, &m->wsched);
  263. p9_debug(P9_DEBUG_TRANS, "read mux %p pos %d size: %d = %d\n",
  264. m, m->rpos, m->rsize, m->rsize-m->rpos);
  265. err = p9_fd_read(m->client, m->rbuf + m->rpos,
  266. m->rsize - m->rpos);
  267. p9_debug(P9_DEBUG_TRANS, "mux %p got %d bytes\n", m, err);
  268. if (err == -EAGAIN) {
  269. goto end_clear;
  270. }
  271. if (err <= 0)
  272. goto error;
  273. m->rpos += err;
  274. if ((!m->req) && (m->rpos == m->rsize)) { /* header read in */
  275. u16 tag;
  276. p9_debug(P9_DEBUG_TRANS, "got new header\n");
  277. n = le32_to_cpu(*(__le32 *) m->rbuf); /* read packet size */
  278. if (n >= m->client->msize) {
  279. p9_debug(P9_DEBUG_ERROR,
  280. "requested packet size too big: %d\n", n);
  281. err = -EIO;
  282. goto error;
  283. }
  284. tag = le16_to_cpu(*(__le16 *) (m->rbuf+5)); /* read tag */
  285. p9_debug(P9_DEBUG_TRANS,
  286. "mux %p pkt: size: %d bytes tag: %d\n", m, n, tag);
  287. m->req = p9_tag_lookup(m->client, tag);
  288. if (!m->req || (m->req->status != REQ_STATUS_SENT &&
  289. m->req->status != REQ_STATUS_FLSH)) {
  290. p9_debug(P9_DEBUG_ERROR, "Unexpected packet tag %d\n",
  291. tag);
  292. err = -EIO;
  293. goto error;
  294. }
  295. if (m->req->rc == NULL) {
  296. m->req->rc = kmalloc(sizeof(struct p9_fcall) +
  297. m->client->msize, GFP_NOFS);
  298. if (!m->req->rc) {
  299. m->req = NULL;
  300. err = -ENOMEM;
  301. goto error;
  302. }
  303. }
  304. m->rbuf = (char *)m->req->rc + sizeof(struct p9_fcall);
  305. memcpy(m->rbuf, m->tmp_buf, m->rsize);
  306. m->rsize = n;
  307. }
  308. /* not an else because some packets (like clunk) have no payload */
  309. if ((m->req) && (m->rpos == m->rsize)) { /* packet is read in */
  310. p9_debug(P9_DEBUG_TRANS, "got new packet\n");
  311. spin_lock(&m->client->lock);
  312. if (m->req->status != REQ_STATUS_ERROR)
  313. m->req->status = REQ_STATUS_RCVD;
  314. list_del(&m->req->req_list);
  315. spin_unlock(&m->client->lock);
  316. p9_client_cb(m->client, m->req);
  317. m->rbuf = NULL;
  318. m->rpos = 0;
  319. m->rsize = 0;
  320. m->req = NULL;
  321. }
  322. end_clear:
  323. clear_bit(Rworksched, &m->wsched);
  324. if (!list_empty(&m->req_list)) {
  325. if (test_and_clear_bit(Rpending, &m->wsched))
  326. n = POLLIN;
  327. else
  328. n = p9_fd_poll(m->client, NULL);
  329. if ((n & POLLIN) && !test_and_set_bit(Rworksched, &m->wsched)) {
  330. p9_debug(P9_DEBUG_TRANS, "sched read work %p\n", m);
  331. schedule_work(&m->rq);
  332. }
  333. }
  334. return;
  335. error:
  336. p9_conn_cancel(m, err);
  337. clear_bit(Rworksched, &m->wsched);
  338. }
  339. /**
  340. * p9_fd_write - write to a socket
  341. * @client: client instance
  342. * @v: buffer to send data from
  343. * @len: size of send buffer
  344. *
  345. */
  346. static int p9_fd_write(struct p9_client *client, void *v, int len)
  347. {
  348. int ret;
  349. mm_segment_t oldfs;
  350. struct p9_trans_fd *ts = NULL;
  351. if (client && client->status != Disconnected)
  352. ts = client->trans;
  353. if (!ts)
  354. return -EREMOTEIO;
  355. if (!(ts->wr->f_flags & O_NONBLOCK))
  356. p9_debug(P9_DEBUG_ERROR, "blocking write ...\n");
  357. oldfs = get_fs();
  358. set_fs(get_ds());
  359. /* The cast to a user pointer is valid due to the set_fs() */
  360. ret = vfs_write(ts->wr, (__force void __user *)v, len, &ts->wr->f_pos);
  361. set_fs(oldfs);
  362. if (ret <= 0 && ret != -ERESTARTSYS && ret != -EAGAIN)
  363. client->status = Disconnected;
  364. return ret;
  365. }
  366. /**
  367. * p9_write_work - called when a transport can send some data
  368. * @work: container for work to be done
  369. *
  370. */
  371. static void p9_write_work(struct work_struct *work)
  372. {
  373. int n, err;
  374. struct p9_conn *m;
  375. struct p9_req_t *req;
  376. m = container_of(work, struct p9_conn, wq);
  377. if (m->err < 0) {
  378. clear_bit(Wworksched, &m->wsched);
  379. return;
  380. }
  381. if (!m->wsize) {
  382. if (list_empty(&m->unsent_req_list)) {
  383. clear_bit(Wworksched, &m->wsched);
  384. return;
  385. }
  386. spin_lock(&m->client->lock);
  387. req = list_entry(m->unsent_req_list.next, struct p9_req_t,
  388. req_list);
  389. req->status = REQ_STATUS_SENT;
  390. p9_debug(P9_DEBUG_TRANS, "move req %p\n", req);
  391. list_move_tail(&req->req_list, &m->req_list);
  392. m->wbuf = req->tc->sdata;
  393. m->wsize = req->tc->size;
  394. m->wpos = 0;
  395. spin_unlock(&m->client->lock);
  396. }
  397. p9_debug(P9_DEBUG_TRANS, "mux %p pos %d size %d\n",
  398. m, m->wpos, m->wsize);
  399. clear_bit(Wpending, &m->wsched);
  400. err = p9_fd_write(m->client, m->wbuf + m->wpos, m->wsize - m->wpos);
  401. p9_debug(P9_DEBUG_TRANS, "mux %p sent %d bytes\n", m, err);
  402. if (err == -EAGAIN)
  403. goto end_clear;
  404. if (err < 0)
  405. goto error;
  406. else if (err == 0) {
  407. err = -EREMOTEIO;
  408. goto error;
  409. }
  410. m->wpos += err;
  411. if (m->wpos == m->wsize)
  412. m->wpos = m->wsize = 0;
  413. end_clear:
  414. clear_bit(Wworksched, &m->wsched);
  415. if (m->wsize || !list_empty(&m->unsent_req_list)) {
  416. if (test_and_clear_bit(Wpending, &m->wsched))
  417. n = POLLOUT;
  418. else
  419. n = p9_fd_poll(m->client, NULL);
  420. if ((n & POLLOUT) &&
  421. !test_and_set_bit(Wworksched, &m->wsched)) {
  422. p9_debug(P9_DEBUG_TRANS, "sched write work %p\n", m);
  423. schedule_work(&m->wq);
  424. }
  425. }
  426. return;
  427. error:
  428. p9_conn_cancel(m, err);
  429. clear_bit(Wworksched, &m->wsched);
  430. }
  431. static int p9_pollwake(wait_queue_t *wait, unsigned int mode, int sync, void *key)
  432. {
  433. struct p9_poll_wait *pwait =
  434. container_of(wait, struct p9_poll_wait, wait);
  435. struct p9_conn *m = pwait->conn;
  436. unsigned long flags;
  437. spin_lock_irqsave(&p9_poll_lock, flags);
  438. if (list_empty(&m->poll_pending_link))
  439. list_add_tail(&m->poll_pending_link, &p9_poll_pending_list);
  440. spin_unlock_irqrestore(&p9_poll_lock, flags);
  441. schedule_work(&p9_poll_work);
  442. return 1;
  443. }
  444. /**
  445. * p9_pollwait - add poll task to the wait queue
  446. * @filp: file pointer being polled
  447. * @wait_address: wait_q to block on
  448. * @p: poll state
  449. *
  450. * called by files poll operation to add v9fs-poll task to files wait queue
  451. */
  452. static void
  453. p9_pollwait(struct file *filp, wait_queue_head_t *wait_address, poll_table *p)
  454. {
  455. struct p9_conn *m = container_of(p, struct p9_conn, pt);
  456. struct p9_poll_wait *pwait = NULL;
  457. int i;
  458. for (i = 0; i < ARRAY_SIZE(m->poll_wait); i++) {
  459. if (m->poll_wait[i].wait_addr == NULL) {
  460. pwait = &m->poll_wait[i];
  461. break;
  462. }
  463. }
  464. if (!pwait) {
  465. p9_debug(P9_DEBUG_ERROR, "not enough wait_address slots\n");
  466. return;
  467. }
  468. pwait->conn = m;
  469. pwait->wait_addr = wait_address;
  470. init_waitqueue_func_entry(&pwait->wait, p9_pollwake);
  471. add_wait_queue(wait_address, &pwait->wait);
  472. }
  473. /**
  474. * p9_conn_create - allocate and initialize the per-session mux data
  475. * @client: client instance
  476. *
  477. * Note: Creates the polling task if this is the first session.
  478. */
  479. static struct p9_conn *p9_conn_create(struct p9_client *client)
  480. {
  481. int n;
  482. struct p9_conn *m;
  483. p9_debug(P9_DEBUG_TRANS, "client %p msize %d\n", client, client->msize);
  484. m = kzalloc(sizeof(struct p9_conn), GFP_KERNEL);
  485. if (!m)
  486. return ERR_PTR(-ENOMEM);
  487. INIT_LIST_HEAD(&m->mux_list);
  488. m->client = client;
  489. INIT_LIST_HEAD(&m->req_list);
  490. INIT_LIST_HEAD(&m->unsent_req_list);
  491. INIT_WORK(&m->rq, p9_read_work);
  492. INIT_WORK(&m->wq, p9_write_work);
  493. INIT_LIST_HEAD(&m->poll_pending_link);
  494. init_poll_funcptr(&m->pt, p9_pollwait);
  495. n = p9_fd_poll(client, &m->pt);
  496. if (n & POLLIN) {
  497. p9_debug(P9_DEBUG_TRANS, "mux %p can read\n", m);
  498. set_bit(Rpending, &m->wsched);
  499. }
  500. if (n & POLLOUT) {
  501. p9_debug(P9_DEBUG_TRANS, "mux %p can write\n", m);
  502. set_bit(Wpending, &m->wsched);
  503. }
  504. return m;
  505. }
  506. /**
  507. * p9_poll_mux - polls a mux and schedules read or write works if necessary
  508. * @m: connection to poll
  509. *
  510. */
  511. static void p9_poll_mux(struct p9_conn *m)
  512. {
  513. int n;
  514. if (m->err < 0)
  515. return;
  516. n = p9_fd_poll(m->client, NULL);
  517. if (n < 0 || n & (POLLERR | POLLHUP | POLLNVAL)) {
  518. p9_debug(P9_DEBUG_TRANS, "error mux %p err %d\n", m, n);
  519. if (n >= 0)
  520. n = -ECONNRESET;
  521. p9_conn_cancel(m, n);
  522. }
  523. if (n & POLLIN) {
  524. set_bit(Rpending, &m->wsched);
  525. p9_debug(P9_DEBUG_TRANS, "mux %p can read\n", m);
  526. if (!test_and_set_bit(Rworksched, &m->wsched)) {
  527. p9_debug(P9_DEBUG_TRANS, "sched read work %p\n", m);
  528. schedule_work(&m->rq);
  529. }
  530. }
  531. if (n & POLLOUT) {
  532. set_bit(Wpending, &m->wsched);
  533. p9_debug(P9_DEBUG_TRANS, "mux %p can write\n", m);
  534. if ((m->wsize || !list_empty(&m->unsent_req_list)) &&
  535. !test_and_set_bit(Wworksched, &m->wsched)) {
  536. p9_debug(P9_DEBUG_TRANS, "sched write work %p\n", m);
  537. schedule_work(&m->wq);
  538. }
  539. }
  540. }
  541. /**
  542. * p9_fd_request - send 9P request
  543. * The function can sleep until the request is scheduled for sending.
  544. * The function can be interrupted. Return from the function is not
  545. * a guarantee that the request is sent successfully.
  546. *
  547. * @client: client instance
  548. * @req: request to be sent
  549. *
  550. */
  551. static int p9_fd_request(struct p9_client *client, struct p9_req_t *req)
  552. {
  553. int n;
  554. struct p9_trans_fd *ts = client->trans;
  555. struct p9_conn *m = ts->conn;
  556. p9_debug(P9_DEBUG_TRANS, "mux %p task %p tcall %p id %d\n",
  557. m, current, req->tc, req->tc->id);
  558. if (m->err < 0)
  559. return m->err;
  560. spin_lock(&client->lock);
  561. req->status = REQ_STATUS_UNSENT;
  562. list_add_tail(&req->req_list, &m->unsent_req_list);
  563. spin_unlock(&client->lock);
  564. if (test_and_clear_bit(Wpending, &m->wsched))
  565. n = POLLOUT;
  566. else
  567. n = p9_fd_poll(m->client, NULL);
  568. if (n & POLLOUT && !test_and_set_bit(Wworksched, &m->wsched))
  569. schedule_work(&m->wq);
  570. return 0;
  571. }
  572. static int p9_fd_cancel(struct p9_client *client, struct p9_req_t *req)
  573. {
  574. int ret = 1;
  575. p9_debug(P9_DEBUG_TRANS, "client %p req %p\n", client, req);
  576. spin_lock(&client->lock);
  577. if (req->status == REQ_STATUS_UNSENT) {
  578. list_del(&req->req_list);
  579. req->status = REQ_STATUS_FLSHD;
  580. ret = 0;
  581. } else if (req->status == REQ_STATUS_SENT)
  582. req->status = REQ_STATUS_FLSH;
  583. spin_unlock(&client->lock);
  584. return ret;
  585. }
  586. /**
  587. * parse_opts - parse mount options into p9_fd_opts structure
  588. * @params: options string passed from mount
  589. * @opts: fd transport-specific structure to parse options into
  590. *
  591. * Returns 0 upon success, -ERRNO upon failure
  592. */
  593. static int parse_opts(char *params, struct p9_fd_opts *opts)
  594. {
  595. char *p;
  596. substring_t args[MAX_OPT_ARGS];
  597. int option;
  598. char *options, *tmp_options;
  599. opts->port = P9_PORT;
  600. opts->rfd = ~0;
  601. opts->wfd = ~0;
  602. if (!params)
  603. return 0;
  604. tmp_options = kstrdup(params, GFP_KERNEL);
  605. if (!tmp_options) {
  606. p9_debug(P9_DEBUG_ERROR,
  607. "failed to allocate copy of option string\n");
  608. return -ENOMEM;
  609. }
  610. options = tmp_options;
  611. while ((p = strsep(&options, ",")) != NULL) {
  612. int token;
  613. int r;
  614. if (!*p)
  615. continue;
  616. token = match_token(p, tokens, args);
  617. if (token != Opt_err) {
  618. r = match_int(&args[0], &option);
  619. if (r < 0) {
  620. p9_debug(P9_DEBUG_ERROR,
  621. "integer field, but no integer?\n");
  622. continue;
  623. }
  624. }
  625. switch (token) {
  626. case Opt_port:
  627. opts->port = option;
  628. break;
  629. case Opt_rfdno:
  630. opts->rfd = option;
  631. break;
  632. case Opt_wfdno:
  633. opts->wfd = option;
  634. break;
  635. default:
  636. continue;
  637. }
  638. }
  639. kfree(tmp_options);
  640. return 0;
  641. }
  642. static int p9_fd_open(struct p9_client *client, int rfd, int wfd)
  643. {
  644. struct p9_trans_fd *ts = kmalloc(sizeof(struct p9_trans_fd),
  645. GFP_KERNEL);
  646. if (!ts)
  647. return -ENOMEM;
  648. ts->rd = fget(rfd);
  649. ts->wr = fget(wfd);
  650. if (!ts->rd || !ts->wr) {
  651. if (ts->rd)
  652. fput(ts->rd);
  653. if (ts->wr)
  654. fput(ts->wr);
  655. kfree(ts);
  656. return -EIO;
  657. }
  658. client->trans = ts;
  659. client->status = Connected;
  660. return 0;
  661. }
  662. static int p9_socket_open(struct p9_client *client, struct socket *csocket)
  663. {
  664. struct p9_trans_fd *p;
  665. int ret, fd;
  666. p = kmalloc(sizeof(struct p9_trans_fd), GFP_KERNEL);
  667. if (!p)
  668. return -ENOMEM;
  669. csocket->sk->sk_allocation = GFP_NOIO;
  670. fd = sock_map_fd(csocket, 0);
  671. if (fd < 0) {
  672. pr_err("%s (%d): failed to map fd\n",
  673. __func__, task_pid_nr(current));
  674. sock_release(csocket);
  675. kfree(p);
  676. return fd;
  677. }
  678. get_file(csocket->file);
  679. get_file(csocket->file);
  680. p->wr = p->rd = csocket->file;
  681. client->trans = p;
  682. client->status = Connected;
  683. sys_close(fd); /* still racy */
  684. p->rd->f_flags |= O_NONBLOCK;
  685. p->conn = p9_conn_create(client);
  686. if (IS_ERR(p->conn)) {
  687. ret = PTR_ERR(p->conn);
  688. p->conn = NULL;
  689. kfree(p);
  690. sockfd_put(csocket);
  691. sockfd_put(csocket);
  692. return ret;
  693. }
  694. return 0;
  695. }
  696. /**
  697. * p9_mux_destroy - cancels all pending requests and frees mux resources
  698. * @m: mux to destroy
  699. *
  700. */
  701. static void p9_conn_destroy(struct p9_conn *m)
  702. {
  703. p9_debug(P9_DEBUG_TRANS, "mux %p prev %p next %p\n",
  704. m, m->mux_list.prev, m->mux_list.next);
  705. p9_mux_poll_stop(m);
  706. cancel_work_sync(&m->rq);
  707. cancel_work_sync(&m->wq);
  708. p9_conn_cancel(m, -ECONNRESET);
  709. m->client = NULL;
  710. kfree(m);
  711. }
  712. /**
  713. * p9_fd_close - shutdown file descriptor transport
  714. * @client: client instance
  715. *
  716. */
  717. static void p9_fd_close(struct p9_client *client)
  718. {
  719. struct p9_trans_fd *ts;
  720. if (!client)
  721. return;
  722. ts = client->trans;
  723. if (!ts)
  724. return;
  725. client->status = Disconnected;
  726. p9_conn_destroy(ts->conn);
  727. if (ts->rd)
  728. fput(ts->rd);
  729. if (ts->wr)
  730. fput(ts->wr);
  731. kfree(ts);
  732. }
  733. /*
  734. * stolen from NFS - maybe should be made a generic function?
  735. */
  736. static inline int valid_ipaddr4(const char *buf)
  737. {
  738. int rc, count, in[4];
  739. rc = sscanf(buf, "%d.%d.%d.%d", &in[0], &in[1], &in[2], &in[3]);
  740. if (rc != 4)
  741. return -EINVAL;
  742. for (count = 0; count < 4; count++) {
  743. if (in[count] > 255)
  744. return -EINVAL;
  745. }
  746. return 0;
  747. }
  748. static int
  749. p9_fd_create_tcp(struct p9_client *client, const char *addr, char *args)
  750. {
  751. int err;
  752. struct socket *csocket;
  753. struct sockaddr_in sin_server;
  754. struct p9_fd_opts opts;
  755. err = parse_opts(args, &opts);
  756. if (err < 0)
  757. return err;
  758. if (valid_ipaddr4(addr) < 0)
  759. return -EINVAL;
  760. csocket = NULL;
  761. sin_server.sin_family = AF_INET;
  762. sin_server.sin_addr.s_addr = in_aton(addr);
  763. sin_server.sin_port = htons(opts.port);
  764. err = __sock_create(read_pnet(&current->nsproxy->net_ns), PF_INET,
  765. SOCK_STREAM, IPPROTO_TCP, &csocket, 1);
  766. if (err) {
  767. pr_err("%s (%d): problem creating socket\n",
  768. __func__, task_pid_nr(current));
  769. return err;
  770. }
  771. err = csocket->ops->connect(csocket,
  772. (struct sockaddr *)&sin_server,
  773. sizeof(struct sockaddr_in), 0);
  774. if (err < 0) {
  775. pr_err("%s (%d): problem connecting socket to %s\n",
  776. __func__, task_pid_nr(current), addr);
  777. sock_release(csocket);
  778. return err;
  779. }
  780. return p9_socket_open(client, csocket);
  781. }
  782. static int
  783. p9_fd_create_unix(struct p9_client *client, const char *addr, char *args)
  784. {
  785. int err;
  786. struct socket *csocket;
  787. struct sockaddr_un sun_server;
  788. csocket = NULL;
  789. if (strlen(addr) >= UNIX_PATH_MAX) {
  790. pr_err("%s (%d): address too long: %s\n",
  791. __func__, task_pid_nr(current), addr);
  792. return -ENAMETOOLONG;
  793. }
  794. sun_server.sun_family = PF_UNIX;
  795. strcpy(sun_server.sun_path, addr);
  796. err = __sock_create(read_pnet(&current->nsproxy->net_ns), PF_UNIX,
  797. SOCK_STREAM, 0, &csocket, 1);
  798. if (err < 0) {
  799. pr_err("%s (%d): problem creating socket\n",
  800. __func__, task_pid_nr(current));
  801. return err;
  802. }
  803. err = csocket->ops->connect(csocket, (struct sockaddr *)&sun_server,
  804. sizeof(struct sockaddr_un) - 1, 0);
  805. if (err < 0) {
  806. pr_err("%s (%d): problem connecting socket: %s: %d\n",
  807. __func__, task_pid_nr(current), addr, err);
  808. sock_release(csocket);
  809. return err;
  810. }
  811. return p9_socket_open(client, csocket);
  812. }
  813. static int
  814. p9_fd_create(struct p9_client *client, const char *addr, char *args)
  815. {
  816. int err;
  817. struct p9_fd_opts opts;
  818. struct p9_trans_fd *p;
  819. parse_opts(args, &opts);
  820. if (opts.rfd == ~0 || opts.wfd == ~0) {
  821. pr_err("Insufficient options for proto=fd\n");
  822. return -ENOPROTOOPT;
  823. }
  824. err = p9_fd_open(client, opts.rfd, opts.wfd);
  825. if (err < 0)
  826. return err;
  827. p = (struct p9_trans_fd *) client->trans;
  828. p->conn = p9_conn_create(client);
  829. if (IS_ERR(p->conn)) {
  830. err = PTR_ERR(p->conn);
  831. p->conn = NULL;
  832. fput(p->rd);
  833. fput(p->wr);
  834. return err;
  835. }
  836. return 0;
  837. }
  838. static struct p9_trans_module p9_tcp_trans = {
  839. .name = "tcp",
  840. .maxsize = MAX_SOCK_BUF,
  841. .def = 1,
  842. .create = p9_fd_create_tcp,
  843. .close = p9_fd_close,
  844. .request = p9_fd_request,
  845. .cancel = p9_fd_cancel,
  846. .owner = THIS_MODULE,
  847. };
  848. static struct p9_trans_module p9_unix_trans = {
  849. .name = "unix",
  850. .maxsize = MAX_SOCK_BUF,
  851. .def = 0,
  852. .create = p9_fd_create_unix,
  853. .close = p9_fd_close,
  854. .request = p9_fd_request,
  855. .cancel = p9_fd_cancel,
  856. .owner = THIS_MODULE,
  857. };
  858. static struct p9_trans_module p9_fd_trans = {
  859. .name = "fd",
  860. .maxsize = MAX_SOCK_BUF,
  861. .def = 0,
  862. .create = p9_fd_create,
  863. .close = p9_fd_close,
  864. .request = p9_fd_request,
  865. .cancel = p9_fd_cancel,
  866. .owner = THIS_MODULE,
  867. };
  868. /**
  869. * p9_poll_proc - poll worker thread
  870. * @a: thread state and arguments
  871. *
  872. * polls all v9fs transports for new events and queues the appropriate
  873. * work to the work queue
  874. *
  875. */
  876. static void p9_poll_workfn(struct work_struct *work)
  877. {
  878. unsigned long flags;
  879. p9_debug(P9_DEBUG_TRANS, "start %p\n", current);
  880. spin_lock_irqsave(&p9_poll_lock, flags);
  881. while (!list_empty(&p9_poll_pending_list)) {
  882. struct p9_conn *conn = list_first_entry(&p9_poll_pending_list,
  883. struct p9_conn,
  884. poll_pending_link);
  885. list_del_init(&conn->poll_pending_link);
  886. spin_unlock_irqrestore(&p9_poll_lock, flags);
  887. p9_poll_mux(conn);
  888. spin_lock_irqsave(&p9_poll_lock, flags);
  889. }
  890. spin_unlock_irqrestore(&p9_poll_lock, flags);
  891. p9_debug(P9_DEBUG_TRANS, "finish\n");
  892. }
  893. int p9_trans_fd_init(void)
  894. {
  895. v9fs_register_trans(&p9_tcp_trans);
  896. v9fs_register_trans(&p9_unix_trans);
  897. v9fs_register_trans(&p9_fd_trans);
  898. return 0;
  899. }
  900. void p9_trans_fd_exit(void)
  901. {
  902. flush_work_sync(&p9_poll_work);
  903. v9fs_unregister_trans(&p9_tcp_trans);
  904. v9fs_unregister_trans(&p9_unix_trans);
  905. v9fs_unregister_trans(&p9_fd_trans);
  906. }