xprtsock.c 57 KB

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  1. /*
  2. * linux/net/sunrpc/xprtsock.c
  3. *
  4. * Client-side transport implementation for sockets.
  5. *
  6. * TCP callback races fixes (C) 1998 Red Hat
  7. * TCP send fixes (C) 1998 Red Hat
  8. * TCP NFS related read + write fixes
  9. * (C) 1999 Dave Airlie, University of Limerick, Ireland <airlied@linux.ie>
  10. *
  11. * Rewrite of larges part of the code in order to stabilize TCP stuff.
  12. * Fix behaviour when socket buffer is full.
  13. * (C) 1999 Trond Myklebust <trond.myklebust@fys.uio.no>
  14. *
  15. * IP socket transport implementation, (C) 2005 Chuck Lever <cel@netapp.com>
  16. *
  17. * IPv6 support contributed by Gilles Quillard, Bull Open Source, 2005.
  18. * <gilles.quillard@bull.net>
  19. */
  20. #include <linux/types.h>
  21. #include <linux/slab.h>
  22. #include <linux/module.h>
  23. #include <linux/capability.h>
  24. #include <linux/pagemap.h>
  25. #include <linux/errno.h>
  26. #include <linux/socket.h>
  27. #include <linux/in.h>
  28. #include <linux/net.h>
  29. #include <linux/mm.h>
  30. #include <linux/udp.h>
  31. #include <linux/tcp.h>
  32. #include <linux/sunrpc/clnt.h>
  33. #include <linux/sunrpc/sched.h>
  34. #include <linux/sunrpc/xprtsock.h>
  35. #include <linux/file.h>
  36. #include <net/sock.h>
  37. #include <net/checksum.h>
  38. #include <net/udp.h>
  39. #include <net/tcp.h>
  40. /*
  41. * xprtsock tunables
  42. */
  43. unsigned int xprt_udp_slot_table_entries = RPC_DEF_SLOT_TABLE;
  44. unsigned int xprt_tcp_slot_table_entries = RPC_DEF_SLOT_TABLE;
  45. unsigned int xprt_min_resvport = RPC_DEF_MIN_RESVPORT;
  46. unsigned int xprt_max_resvport = RPC_DEF_MAX_RESVPORT;
  47. #define XS_TCP_LINGER_TO (15U * HZ)
  48. /*
  49. * We can register our own files under /proc/sys/sunrpc by
  50. * calling register_sysctl_table() again. The files in that
  51. * directory become the union of all files registered there.
  52. *
  53. * We simply need to make sure that we don't collide with
  54. * someone else's file names!
  55. */
  56. #ifdef RPC_DEBUG
  57. static unsigned int min_slot_table_size = RPC_MIN_SLOT_TABLE;
  58. static unsigned int max_slot_table_size = RPC_MAX_SLOT_TABLE;
  59. static unsigned int xprt_min_resvport_limit = RPC_MIN_RESVPORT;
  60. static unsigned int xprt_max_resvport_limit = RPC_MAX_RESVPORT;
  61. static struct ctl_table_header *sunrpc_table_header;
  62. /*
  63. * FIXME: changing the UDP slot table size should also resize the UDP
  64. * socket buffers for existing UDP transports
  65. */
  66. static ctl_table xs_tunables_table[] = {
  67. {
  68. .ctl_name = CTL_SLOTTABLE_UDP,
  69. .procname = "udp_slot_table_entries",
  70. .data = &xprt_udp_slot_table_entries,
  71. .maxlen = sizeof(unsigned int),
  72. .mode = 0644,
  73. .proc_handler = &proc_dointvec_minmax,
  74. .strategy = &sysctl_intvec,
  75. .extra1 = &min_slot_table_size,
  76. .extra2 = &max_slot_table_size
  77. },
  78. {
  79. .ctl_name = CTL_SLOTTABLE_TCP,
  80. .procname = "tcp_slot_table_entries",
  81. .data = &xprt_tcp_slot_table_entries,
  82. .maxlen = sizeof(unsigned int),
  83. .mode = 0644,
  84. .proc_handler = &proc_dointvec_minmax,
  85. .strategy = &sysctl_intvec,
  86. .extra1 = &min_slot_table_size,
  87. .extra2 = &max_slot_table_size
  88. },
  89. {
  90. .ctl_name = CTL_MIN_RESVPORT,
  91. .procname = "min_resvport",
  92. .data = &xprt_min_resvport,
  93. .maxlen = sizeof(unsigned int),
  94. .mode = 0644,
  95. .proc_handler = &proc_dointvec_minmax,
  96. .strategy = &sysctl_intvec,
  97. .extra1 = &xprt_min_resvport_limit,
  98. .extra2 = &xprt_max_resvport_limit
  99. },
  100. {
  101. .ctl_name = CTL_MAX_RESVPORT,
  102. .procname = "max_resvport",
  103. .data = &xprt_max_resvport,
  104. .maxlen = sizeof(unsigned int),
  105. .mode = 0644,
  106. .proc_handler = &proc_dointvec_minmax,
  107. .strategy = &sysctl_intvec,
  108. .extra1 = &xprt_min_resvport_limit,
  109. .extra2 = &xprt_max_resvport_limit
  110. },
  111. {
  112. .ctl_name = 0,
  113. },
  114. };
  115. static ctl_table sunrpc_table[] = {
  116. {
  117. .ctl_name = CTL_SUNRPC,
  118. .procname = "sunrpc",
  119. .mode = 0555,
  120. .child = xs_tunables_table
  121. },
  122. {
  123. .ctl_name = 0,
  124. },
  125. };
  126. #endif
  127. /*
  128. * Time out for an RPC UDP socket connect. UDP socket connects are
  129. * synchronous, but we set a timeout anyway in case of resource
  130. * exhaustion on the local host.
  131. */
  132. #define XS_UDP_CONN_TO (5U * HZ)
  133. /*
  134. * Wait duration for an RPC TCP connection to be established. Solaris
  135. * NFS over TCP uses 60 seconds, for example, which is in line with how
  136. * long a server takes to reboot.
  137. */
  138. #define XS_TCP_CONN_TO (60U * HZ)
  139. /*
  140. * Wait duration for a reply from the RPC portmapper.
  141. */
  142. #define XS_BIND_TO (60U * HZ)
  143. /*
  144. * Delay if a UDP socket connect error occurs. This is most likely some
  145. * kind of resource problem on the local host.
  146. */
  147. #define XS_UDP_REEST_TO (2U * HZ)
  148. /*
  149. * The reestablish timeout allows clients to delay for a bit before attempting
  150. * to reconnect to a server that just dropped our connection.
  151. *
  152. * We implement an exponential backoff when trying to reestablish a TCP
  153. * transport connection with the server. Some servers like to drop a TCP
  154. * connection when they are overworked, so we start with a short timeout and
  155. * increase over time if the server is down or not responding.
  156. */
  157. #define XS_TCP_INIT_REEST_TO (3U * HZ)
  158. #define XS_TCP_MAX_REEST_TO (5U * 60 * HZ)
  159. /*
  160. * TCP idle timeout; client drops the transport socket if it is idle
  161. * for this long. Note that we also timeout UDP sockets to prevent
  162. * holding port numbers when there is no RPC traffic.
  163. */
  164. #define XS_IDLE_DISC_TO (5U * 60 * HZ)
  165. #ifdef RPC_DEBUG
  166. # undef RPC_DEBUG_DATA
  167. # define RPCDBG_FACILITY RPCDBG_TRANS
  168. #endif
  169. #ifdef RPC_DEBUG_DATA
  170. static void xs_pktdump(char *msg, u32 *packet, unsigned int count)
  171. {
  172. u8 *buf = (u8 *) packet;
  173. int j;
  174. dprintk("RPC: %s\n", msg);
  175. for (j = 0; j < count && j < 128; j += 4) {
  176. if (!(j & 31)) {
  177. if (j)
  178. dprintk("\n");
  179. dprintk("0x%04x ", j);
  180. }
  181. dprintk("%02x%02x%02x%02x ",
  182. buf[j], buf[j+1], buf[j+2], buf[j+3]);
  183. }
  184. dprintk("\n");
  185. }
  186. #else
  187. static inline void xs_pktdump(char *msg, u32 *packet, unsigned int count)
  188. {
  189. /* NOP */
  190. }
  191. #endif
  192. struct sock_xprt {
  193. struct rpc_xprt xprt;
  194. /*
  195. * Network layer
  196. */
  197. struct socket * sock;
  198. struct sock * inet;
  199. /*
  200. * State of TCP reply receive
  201. */
  202. __be32 tcp_fraghdr,
  203. tcp_xid;
  204. u32 tcp_offset,
  205. tcp_reclen;
  206. unsigned long tcp_copied,
  207. tcp_flags;
  208. /*
  209. * Connection of transports
  210. */
  211. struct delayed_work connect_worker;
  212. struct sockaddr_storage addr;
  213. unsigned short port;
  214. /*
  215. * UDP socket buffer size parameters
  216. */
  217. size_t rcvsize,
  218. sndsize;
  219. /*
  220. * Saved socket callback addresses
  221. */
  222. void (*old_data_ready)(struct sock *, int);
  223. void (*old_state_change)(struct sock *);
  224. void (*old_write_space)(struct sock *);
  225. void (*old_error_report)(struct sock *);
  226. };
  227. /*
  228. * TCP receive state flags
  229. */
  230. #define TCP_RCV_LAST_FRAG (1UL << 0)
  231. #define TCP_RCV_COPY_FRAGHDR (1UL << 1)
  232. #define TCP_RCV_COPY_XID (1UL << 2)
  233. #define TCP_RCV_COPY_DATA (1UL << 3)
  234. static inline struct sockaddr *xs_addr(struct rpc_xprt *xprt)
  235. {
  236. return (struct sockaddr *) &xprt->addr;
  237. }
  238. static inline struct sockaddr_in *xs_addr_in(struct rpc_xprt *xprt)
  239. {
  240. return (struct sockaddr_in *) &xprt->addr;
  241. }
  242. static inline struct sockaddr_in6 *xs_addr_in6(struct rpc_xprt *xprt)
  243. {
  244. return (struct sockaddr_in6 *) &xprt->addr;
  245. }
  246. static void xs_format_ipv4_peer_addresses(struct rpc_xprt *xprt,
  247. const char *protocol,
  248. const char *netid)
  249. {
  250. struct sockaddr_in *addr = xs_addr_in(xprt);
  251. char *buf;
  252. buf = kzalloc(20, GFP_KERNEL);
  253. if (buf) {
  254. snprintf(buf, 20, "%pI4", &addr->sin_addr.s_addr);
  255. }
  256. xprt->address_strings[RPC_DISPLAY_ADDR] = buf;
  257. buf = kzalloc(8, GFP_KERNEL);
  258. if (buf) {
  259. snprintf(buf, 8, "%u",
  260. ntohs(addr->sin_port));
  261. }
  262. xprt->address_strings[RPC_DISPLAY_PORT] = buf;
  263. xprt->address_strings[RPC_DISPLAY_PROTO] = protocol;
  264. buf = kzalloc(48, GFP_KERNEL);
  265. if (buf) {
  266. snprintf(buf, 48, "addr=%pI4 port=%u proto=%s",
  267. &addr->sin_addr.s_addr,
  268. ntohs(addr->sin_port),
  269. protocol);
  270. }
  271. xprt->address_strings[RPC_DISPLAY_ALL] = buf;
  272. buf = kzalloc(10, GFP_KERNEL);
  273. if (buf) {
  274. snprintf(buf, 10, "%02x%02x%02x%02x",
  275. NIPQUAD(addr->sin_addr.s_addr));
  276. }
  277. xprt->address_strings[RPC_DISPLAY_HEX_ADDR] = buf;
  278. buf = kzalloc(8, GFP_KERNEL);
  279. if (buf) {
  280. snprintf(buf, 8, "%4hx",
  281. ntohs(addr->sin_port));
  282. }
  283. xprt->address_strings[RPC_DISPLAY_HEX_PORT] = buf;
  284. buf = kzalloc(30, GFP_KERNEL);
  285. if (buf) {
  286. snprintf(buf, 30, "%pI4.%u.%u",
  287. &addr->sin_addr.s_addr,
  288. ntohs(addr->sin_port) >> 8,
  289. ntohs(addr->sin_port) & 0xff);
  290. }
  291. xprt->address_strings[RPC_DISPLAY_UNIVERSAL_ADDR] = buf;
  292. xprt->address_strings[RPC_DISPLAY_NETID] = netid;
  293. }
  294. static void xs_format_ipv6_peer_addresses(struct rpc_xprt *xprt,
  295. const char *protocol,
  296. const char *netid)
  297. {
  298. struct sockaddr_in6 *addr = xs_addr_in6(xprt);
  299. char *buf;
  300. buf = kzalloc(40, GFP_KERNEL);
  301. if (buf) {
  302. snprintf(buf, 40, "%pI6",&addr->sin6_addr);
  303. }
  304. xprt->address_strings[RPC_DISPLAY_ADDR] = buf;
  305. buf = kzalloc(8, GFP_KERNEL);
  306. if (buf) {
  307. snprintf(buf, 8, "%u",
  308. ntohs(addr->sin6_port));
  309. }
  310. xprt->address_strings[RPC_DISPLAY_PORT] = buf;
  311. xprt->address_strings[RPC_DISPLAY_PROTO] = protocol;
  312. buf = kzalloc(64, GFP_KERNEL);
  313. if (buf) {
  314. snprintf(buf, 64, "addr=%pI6 port=%u proto=%s",
  315. &addr->sin6_addr,
  316. ntohs(addr->sin6_port),
  317. protocol);
  318. }
  319. xprt->address_strings[RPC_DISPLAY_ALL] = buf;
  320. buf = kzalloc(36, GFP_KERNEL);
  321. if (buf)
  322. snprintf(buf, 36, "%pi6", &addr->sin6_addr);
  323. xprt->address_strings[RPC_DISPLAY_HEX_ADDR] = buf;
  324. buf = kzalloc(8, GFP_KERNEL);
  325. if (buf) {
  326. snprintf(buf, 8, "%4hx",
  327. ntohs(addr->sin6_port));
  328. }
  329. xprt->address_strings[RPC_DISPLAY_HEX_PORT] = buf;
  330. buf = kzalloc(50, GFP_KERNEL);
  331. if (buf) {
  332. snprintf(buf, 50, "%pI6.%u.%u",
  333. &addr->sin6_addr,
  334. ntohs(addr->sin6_port) >> 8,
  335. ntohs(addr->sin6_port) & 0xff);
  336. }
  337. xprt->address_strings[RPC_DISPLAY_UNIVERSAL_ADDR] = buf;
  338. xprt->address_strings[RPC_DISPLAY_NETID] = netid;
  339. }
  340. static void xs_free_peer_addresses(struct rpc_xprt *xprt)
  341. {
  342. unsigned int i;
  343. for (i = 0; i < RPC_DISPLAY_MAX; i++)
  344. switch (i) {
  345. case RPC_DISPLAY_PROTO:
  346. case RPC_DISPLAY_NETID:
  347. continue;
  348. default:
  349. kfree(xprt->address_strings[i]);
  350. }
  351. }
  352. #define XS_SENDMSG_FLAGS (MSG_DONTWAIT | MSG_NOSIGNAL)
  353. static int xs_send_kvec(struct socket *sock, struct sockaddr *addr, int addrlen, struct kvec *vec, unsigned int base, int more)
  354. {
  355. struct msghdr msg = {
  356. .msg_name = addr,
  357. .msg_namelen = addrlen,
  358. .msg_flags = XS_SENDMSG_FLAGS | (more ? MSG_MORE : 0),
  359. };
  360. struct kvec iov = {
  361. .iov_base = vec->iov_base + base,
  362. .iov_len = vec->iov_len - base,
  363. };
  364. if (iov.iov_len != 0)
  365. return kernel_sendmsg(sock, &msg, &iov, 1, iov.iov_len);
  366. return kernel_sendmsg(sock, &msg, NULL, 0, 0);
  367. }
  368. static int xs_send_pagedata(struct socket *sock, struct xdr_buf *xdr, unsigned int base, int more)
  369. {
  370. struct page **ppage;
  371. unsigned int remainder;
  372. int err, sent = 0;
  373. remainder = xdr->page_len - base;
  374. base += xdr->page_base;
  375. ppage = xdr->pages + (base >> PAGE_SHIFT);
  376. base &= ~PAGE_MASK;
  377. for(;;) {
  378. unsigned int len = min_t(unsigned int, PAGE_SIZE - base, remainder);
  379. int flags = XS_SENDMSG_FLAGS;
  380. remainder -= len;
  381. if (remainder != 0 || more)
  382. flags |= MSG_MORE;
  383. err = sock->ops->sendpage(sock, *ppage, base, len, flags);
  384. if (remainder == 0 || err != len)
  385. break;
  386. sent += err;
  387. ppage++;
  388. base = 0;
  389. }
  390. if (sent == 0)
  391. return err;
  392. if (err > 0)
  393. sent += err;
  394. return sent;
  395. }
  396. /**
  397. * xs_sendpages - write pages directly to a socket
  398. * @sock: socket to send on
  399. * @addr: UDP only -- address of destination
  400. * @addrlen: UDP only -- length of destination address
  401. * @xdr: buffer containing this request
  402. * @base: starting position in the buffer
  403. *
  404. */
  405. static int xs_sendpages(struct socket *sock, struct sockaddr *addr, int addrlen, struct xdr_buf *xdr, unsigned int base)
  406. {
  407. unsigned int remainder = xdr->len - base;
  408. int err, sent = 0;
  409. if (unlikely(!sock))
  410. return -ENOTSOCK;
  411. clear_bit(SOCK_ASYNC_NOSPACE, &sock->flags);
  412. if (base != 0) {
  413. addr = NULL;
  414. addrlen = 0;
  415. }
  416. if (base < xdr->head[0].iov_len || addr != NULL) {
  417. unsigned int len = xdr->head[0].iov_len - base;
  418. remainder -= len;
  419. err = xs_send_kvec(sock, addr, addrlen, &xdr->head[0], base, remainder != 0);
  420. if (remainder == 0 || err != len)
  421. goto out;
  422. sent += err;
  423. base = 0;
  424. } else
  425. base -= xdr->head[0].iov_len;
  426. if (base < xdr->page_len) {
  427. unsigned int len = xdr->page_len - base;
  428. remainder -= len;
  429. err = xs_send_pagedata(sock, xdr, base, remainder != 0);
  430. if (remainder == 0 || err != len)
  431. goto out;
  432. sent += err;
  433. base = 0;
  434. } else
  435. base -= xdr->page_len;
  436. if (base >= xdr->tail[0].iov_len)
  437. return sent;
  438. err = xs_send_kvec(sock, NULL, 0, &xdr->tail[0], base, 0);
  439. out:
  440. if (sent == 0)
  441. return err;
  442. if (err > 0)
  443. sent += err;
  444. return sent;
  445. }
  446. static void xs_nospace_callback(struct rpc_task *task)
  447. {
  448. struct sock_xprt *transport = container_of(task->tk_rqstp->rq_xprt, struct sock_xprt, xprt);
  449. transport->inet->sk_write_pending--;
  450. clear_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags);
  451. }
  452. /**
  453. * xs_nospace - place task on wait queue if transmit was incomplete
  454. * @task: task to put to sleep
  455. *
  456. */
  457. static int xs_nospace(struct rpc_task *task)
  458. {
  459. struct rpc_rqst *req = task->tk_rqstp;
  460. struct rpc_xprt *xprt = req->rq_xprt;
  461. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  462. int ret = 0;
  463. dprintk("RPC: %5u xmit incomplete (%u left of %u)\n",
  464. task->tk_pid, req->rq_slen - req->rq_bytes_sent,
  465. req->rq_slen);
  466. /* Protect against races with write_space */
  467. spin_lock_bh(&xprt->transport_lock);
  468. /* Don't race with disconnect */
  469. if (xprt_connected(xprt)) {
  470. if (test_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags)) {
  471. ret = -EAGAIN;
  472. /*
  473. * Notify TCP that we're limited by the application
  474. * window size
  475. */
  476. set_bit(SOCK_NOSPACE, &transport->sock->flags);
  477. transport->inet->sk_write_pending++;
  478. /* ...and wait for more buffer space */
  479. xprt_wait_for_buffer_space(task, xs_nospace_callback);
  480. }
  481. } else {
  482. clear_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags);
  483. ret = -ENOTCONN;
  484. }
  485. spin_unlock_bh(&xprt->transport_lock);
  486. return ret;
  487. }
  488. /**
  489. * xs_udp_send_request - write an RPC request to a UDP socket
  490. * @task: address of RPC task that manages the state of an RPC request
  491. *
  492. * Return values:
  493. * 0: The request has been sent
  494. * EAGAIN: The socket was blocked, please call again later to
  495. * complete the request
  496. * ENOTCONN: Caller needs to invoke connect logic then call again
  497. * other: Some other error occured, the request was not sent
  498. */
  499. static int xs_udp_send_request(struct rpc_task *task)
  500. {
  501. struct rpc_rqst *req = task->tk_rqstp;
  502. struct rpc_xprt *xprt = req->rq_xprt;
  503. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  504. struct xdr_buf *xdr = &req->rq_snd_buf;
  505. int status;
  506. xs_pktdump("packet data:",
  507. req->rq_svec->iov_base,
  508. req->rq_svec->iov_len);
  509. if (!xprt_bound(xprt))
  510. return -ENOTCONN;
  511. status = xs_sendpages(transport->sock,
  512. xs_addr(xprt),
  513. xprt->addrlen, xdr,
  514. req->rq_bytes_sent);
  515. dprintk("RPC: xs_udp_send_request(%u) = %d\n",
  516. xdr->len - req->rq_bytes_sent, status);
  517. if (status >= 0) {
  518. task->tk_bytes_sent += status;
  519. if (status >= req->rq_slen)
  520. return 0;
  521. /* Still some bytes left; set up for a retry later. */
  522. status = -EAGAIN;
  523. }
  524. if (!transport->sock)
  525. goto out;
  526. switch (status) {
  527. case -ENOTSOCK:
  528. status = -ENOTCONN;
  529. /* Should we call xs_close() here? */
  530. break;
  531. case -EAGAIN:
  532. status = xs_nospace(task);
  533. break;
  534. default:
  535. dprintk("RPC: sendmsg returned unrecognized error %d\n",
  536. -status);
  537. case -ENETUNREACH:
  538. case -EPIPE:
  539. case -ECONNREFUSED:
  540. /* When the server has died, an ICMP port unreachable message
  541. * prompts ECONNREFUSED. */
  542. clear_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags);
  543. }
  544. out:
  545. return status;
  546. }
  547. /**
  548. * xs_tcp_shutdown - gracefully shut down a TCP socket
  549. * @xprt: transport
  550. *
  551. * Initiates a graceful shutdown of the TCP socket by calling the
  552. * equivalent of shutdown(SHUT_WR);
  553. */
  554. static void xs_tcp_shutdown(struct rpc_xprt *xprt)
  555. {
  556. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  557. struct socket *sock = transport->sock;
  558. if (sock != NULL)
  559. kernel_sock_shutdown(sock, SHUT_WR);
  560. }
  561. static inline void xs_encode_tcp_record_marker(struct xdr_buf *buf)
  562. {
  563. u32 reclen = buf->len - sizeof(rpc_fraghdr);
  564. rpc_fraghdr *base = buf->head[0].iov_base;
  565. *base = htonl(RPC_LAST_STREAM_FRAGMENT | reclen);
  566. }
  567. /**
  568. * xs_tcp_send_request - write an RPC request to a TCP socket
  569. * @task: address of RPC task that manages the state of an RPC request
  570. *
  571. * Return values:
  572. * 0: The request has been sent
  573. * EAGAIN: The socket was blocked, please call again later to
  574. * complete the request
  575. * ENOTCONN: Caller needs to invoke connect logic then call again
  576. * other: Some other error occured, the request was not sent
  577. *
  578. * XXX: In the case of soft timeouts, should we eventually give up
  579. * if sendmsg is not able to make progress?
  580. */
  581. static int xs_tcp_send_request(struct rpc_task *task)
  582. {
  583. struct rpc_rqst *req = task->tk_rqstp;
  584. struct rpc_xprt *xprt = req->rq_xprt;
  585. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  586. struct xdr_buf *xdr = &req->rq_snd_buf;
  587. int status;
  588. xs_encode_tcp_record_marker(&req->rq_snd_buf);
  589. xs_pktdump("packet data:",
  590. req->rq_svec->iov_base,
  591. req->rq_svec->iov_len);
  592. /* Continue transmitting the packet/record. We must be careful
  593. * to cope with writespace callbacks arriving _after_ we have
  594. * called sendmsg(). */
  595. while (1) {
  596. status = xs_sendpages(transport->sock,
  597. NULL, 0, xdr, req->rq_bytes_sent);
  598. dprintk("RPC: xs_tcp_send_request(%u) = %d\n",
  599. xdr->len - req->rq_bytes_sent, status);
  600. if (unlikely(status < 0))
  601. break;
  602. /* If we've sent the entire packet, immediately
  603. * reset the count of bytes sent. */
  604. req->rq_bytes_sent += status;
  605. task->tk_bytes_sent += status;
  606. if (likely(req->rq_bytes_sent >= req->rq_slen)) {
  607. req->rq_bytes_sent = 0;
  608. return 0;
  609. }
  610. if (status != 0)
  611. continue;
  612. status = -EAGAIN;
  613. break;
  614. }
  615. if (!transport->sock)
  616. goto out;
  617. switch (status) {
  618. case -ENOTSOCK:
  619. status = -ENOTCONN;
  620. /* Should we call xs_close() here? */
  621. break;
  622. case -EAGAIN:
  623. status = xs_nospace(task);
  624. break;
  625. default:
  626. dprintk("RPC: sendmsg returned unrecognized error %d\n",
  627. -status);
  628. case -ECONNRESET:
  629. xs_tcp_shutdown(xprt);
  630. case -ECONNREFUSED:
  631. case -ENOTCONN:
  632. case -EPIPE:
  633. clear_bit(SOCK_ASYNC_NOSPACE, &transport->sock->flags);
  634. }
  635. out:
  636. return status;
  637. }
  638. /**
  639. * xs_tcp_release_xprt - clean up after a tcp transmission
  640. * @xprt: transport
  641. * @task: rpc task
  642. *
  643. * This cleans up if an error causes us to abort the transmission of a request.
  644. * In this case, the socket may need to be reset in order to avoid confusing
  645. * the server.
  646. */
  647. static void xs_tcp_release_xprt(struct rpc_xprt *xprt, struct rpc_task *task)
  648. {
  649. struct rpc_rqst *req;
  650. if (task != xprt->snd_task)
  651. return;
  652. if (task == NULL)
  653. goto out_release;
  654. req = task->tk_rqstp;
  655. if (req->rq_bytes_sent == 0)
  656. goto out_release;
  657. if (req->rq_bytes_sent == req->rq_snd_buf.len)
  658. goto out_release;
  659. set_bit(XPRT_CLOSE_WAIT, &task->tk_xprt->state);
  660. out_release:
  661. xprt_release_xprt(xprt, task);
  662. }
  663. static void xs_save_old_callbacks(struct sock_xprt *transport, struct sock *sk)
  664. {
  665. transport->old_data_ready = sk->sk_data_ready;
  666. transport->old_state_change = sk->sk_state_change;
  667. transport->old_write_space = sk->sk_write_space;
  668. transport->old_error_report = sk->sk_error_report;
  669. }
  670. static void xs_restore_old_callbacks(struct sock_xprt *transport, struct sock *sk)
  671. {
  672. sk->sk_data_ready = transport->old_data_ready;
  673. sk->sk_state_change = transport->old_state_change;
  674. sk->sk_write_space = transport->old_write_space;
  675. sk->sk_error_report = transport->old_error_report;
  676. }
  677. static void xs_reset_transport(struct sock_xprt *transport)
  678. {
  679. struct socket *sock = transport->sock;
  680. struct sock *sk = transport->inet;
  681. if (sk == NULL)
  682. return;
  683. write_lock_bh(&sk->sk_callback_lock);
  684. transport->inet = NULL;
  685. transport->sock = NULL;
  686. sk->sk_user_data = NULL;
  687. xs_restore_old_callbacks(transport, sk);
  688. write_unlock_bh(&sk->sk_callback_lock);
  689. sk->sk_no_check = 0;
  690. sock_release(sock);
  691. }
  692. /**
  693. * xs_close - close a socket
  694. * @xprt: transport
  695. *
  696. * This is used when all requests are complete; ie, no DRC state remains
  697. * on the server we want to save.
  698. */
  699. static void xs_close(struct rpc_xprt *xprt)
  700. {
  701. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  702. dprintk("RPC: xs_close xprt %p\n", xprt);
  703. xs_reset_transport(transport);
  704. smp_mb__before_clear_bit();
  705. clear_bit(XPRT_CONNECTION_ABORT, &xprt->state);
  706. clear_bit(XPRT_CLOSE_WAIT, &xprt->state);
  707. clear_bit(XPRT_CLOSING, &xprt->state);
  708. smp_mb__after_clear_bit();
  709. xprt_disconnect_done(xprt);
  710. }
  711. /**
  712. * xs_destroy - prepare to shutdown a transport
  713. * @xprt: doomed transport
  714. *
  715. */
  716. static void xs_destroy(struct rpc_xprt *xprt)
  717. {
  718. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  719. dprintk("RPC: xs_destroy xprt %p\n", xprt);
  720. cancel_rearming_delayed_work(&transport->connect_worker);
  721. xs_close(xprt);
  722. xs_free_peer_addresses(xprt);
  723. kfree(xprt->slot);
  724. kfree(xprt);
  725. module_put(THIS_MODULE);
  726. }
  727. static inline struct rpc_xprt *xprt_from_sock(struct sock *sk)
  728. {
  729. return (struct rpc_xprt *) sk->sk_user_data;
  730. }
  731. /**
  732. * xs_udp_data_ready - "data ready" callback for UDP sockets
  733. * @sk: socket with data to read
  734. * @len: how much data to read
  735. *
  736. */
  737. static void xs_udp_data_ready(struct sock *sk, int len)
  738. {
  739. struct rpc_task *task;
  740. struct rpc_xprt *xprt;
  741. struct rpc_rqst *rovr;
  742. struct sk_buff *skb;
  743. int err, repsize, copied;
  744. u32 _xid;
  745. __be32 *xp;
  746. read_lock(&sk->sk_callback_lock);
  747. dprintk("RPC: xs_udp_data_ready...\n");
  748. if (!(xprt = xprt_from_sock(sk)))
  749. goto out;
  750. if ((skb = skb_recv_datagram(sk, 0, 1, &err)) == NULL)
  751. goto out;
  752. if (xprt->shutdown)
  753. goto dropit;
  754. repsize = skb->len - sizeof(struct udphdr);
  755. if (repsize < 4) {
  756. dprintk("RPC: impossible RPC reply size %d!\n", repsize);
  757. goto dropit;
  758. }
  759. /* Copy the XID from the skb... */
  760. xp = skb_header_pointer(skb, sizeof(struct udphdr),
  761. sizeof(_xid), &_xid);
  762. if (xp == NULL)
  763. goto dropit;
  764. /* Look up and lock the request corresponding to the given XID */
  765. spin_lock(&xprt->transport_lock);
  766. rovr = xprt_lookup_rqst(xprt, *xp);
  767. if (!rovr)
  768. goto out_unlock;
  769. task = rovr->rq_task;
  770. if ((copied = rovr->rq_private_buf.buflen) > repsize)
  771. copied = repsize;
  772. /* Suck it into the iovec, verify checksum if not done by hw. */
  773. if (csum_partial_copy_to_xdr(&rovr->rq_private_buf, skb)) {
  774. UDPX_INC_STATS_BH(sk, UDP_MIB_INERRORS);
  775. goto out_unlock;
  776. }
  777. UDPX_INC_STATS_BH(sk, UDP_MIB_INDATAGRAMS);
  778. /* Something worked... */
  779. dst_confirm(skb->dst);
  780. xprt_adjust_cwnd(task, copied);
  781. xprt_update_rtt(task);
  782. xprt_complete_rqst(task, copied);
  783. out_unlock:
  784. spin_unlock(&xprt->transport_lock);
  785. dropit:
  786. skb_free_datagram(sk, skb);
  787. out:
  788. read_unlock(&sk->sk_callback_lock);
  789. }
  790. static inline void xs_tcp_read_fraghdr(struct rpc_xprt *xprt, struct xdr_skb_reader *desc)
  791. {
  792. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  793. size_t len, used;
  794. char *p;
  795. p = ((char *) &transport->tcp_fraghdr) + transport->tcp_offset;
  796. len = sizeof(transport->tcp_fraghdr) - transport->tcp_offset;
  797. used = xdr_skb_read_bits(desc, p, len);
  798. transport->tcp_offset += used;
  799. if (used != len)
  800. return;
  801. transport->tcp_reclen = ntohl(transport->tcp_fraghdr);
  802. if (transport->tcp_reclen & RPC_LAST_STREAM_FRAGMENT)
  803. transport->tcp_flags |= TCP_RCV_LAST_FRAG;
  804. else
  805. transport->tcp_flags &= ~TCP_RCV_LAST_FRAG;
  806. transport->tcp_reclen &= RPC_FRAGMENT_SIZE_MASK;
  807. transport->tcp_flags &= ~TCP_RCV_COPY_FRAGHDR;
  808. transport->tcp_offset = 0;
  809. /* Sanity check of the record length */
  810. if (unlikely(transport->tcp_reclen < 4)) {
  811. dprintk("RPC: invalid TCP record fragment length\n");
  812. xprt_force_disconnect(xprt);
  813. return;
  814. }
  815. dprintk("RPC: reading TCP record fragment of length %d\n",
  816. transport->tcp_reclen);
  817. }
  818. static void xs_tcp_check_fraghdr(struct sock_xprt *transport)
  819. {
  820. if (transport->tcp_offset == transport->tcp_reclen) {
  821. transport->tcp_flags |= TCP_RCV_COPY_FRAGHDR;
  822. transport->tcp_offset = 0;
  823. if (transport->tcp_flags & TCP_RCV_LAST_FRAG) {
  824. transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
  825. transport->tcp_flags |= TCP_RCV_COPY_XID;
  826. transport->tcp_copied = 0;
  827. }
  828. }
  829. }
  830. static inline void xs_tcp_read_xid(struct sock_xprt *transport, struct xdr_skb_reader *desc)
  831. {
  832. size_t len, used;
  833. char *p;
  834. len = sizeof(transport->tcp_xid) - transport->tcp_offset;
  835. dprintk("RPC: reading XID (%Zu bytes)\n", len);
  836. p = ((char *) &transport->tcp_xid) + transport->tcp_offset;
  837. used = xdr_skb_read_bits(desc, p, len);
  838. transport->tcp_offset += used;
  839. if (used != len)
  840. return;
  841. transport->tcp_flags &= ~TCP_RCV_COPY_XID;
  842. transport->tcp_flags |= TCP_RCV_COPY_DATA;
  843. transport->tcp_copied = 4;
  844. dprintk("RPC: reading reply for XID %08x\n",
  845. ntohl(transport->tcp_xid));
  846. xs_tcp_check_fraghdr(transport);
  847. }
  848. static inline void xs_tcp_read_request(struct rpc_xprt *xprt, struct xdr_skb_reader *desc)
  849. {
  850. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  851. struct rpc_rqst *req;
  852. struct xdr_buf *rcvbuf;
  853. size_t len;
  854. ssize_t r;
  855. /* Find and lock the request corresponding to this xid */
  856. spin_lock(&xprt->transport_lock);
  857. req = xprt_lookup_rqst(xprt, transport->tcp_xid);
  858. if (!req) {
  859. transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
  860. dprintk("RPC: XID %08x request not found!\n",
  861. ntohl(transport->tcp_xid));
  862. spin_unlock(&xprt->transport_lock);
  863. return;
  864. }
  865. rcvbuf = &req->rq_private_buf;
  866. len = desc->count;
  867. if (len > transport->tcp_reclen - transport->tcp_offset) {
  868. struct xdr_skb_reader my_desc;
  869. len = transport->tcp_reclen - transport->tcp_offset;
  870. memcpy(&my_desc, desc, sizeof(my_desc));
  871. my_desc.count = len;
  872. r = xdr_partial_copy_from_skb(rcvbuf, transport->tcp_copied,
  873. &my_desc, xdr_skb_read_bits);
  874. desc->count -= r;
  875. desc->offset += r;
  876. } else
  877. r = xdr_partial_copy_from_skb(rcvbuf, transport->tcp_copied,
  878. desc, xdr_skb_read_bits);
  879. if (r > 0) {
  880. transport->tcp_copied += r;
  881. transport->tcp_offset += r;
  882. }
  883. if (r != len) {
  884. /* Error when copying to the receive buffer,
  885. * usually because we weren't able to allocate
  886. * additional buffer pages. All we can do now
  887. * is turn off TCP_RCV_COPY_DATA, so the request
  888. * will not receive any additional updates,
  889. * and time out.
  890. * Any remaining data from this record will
  891. * be discarded.
  892. */
  893. transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
  894. dprintk("RPC: XID %08x truncated request\n",
  895. ntohl(transport->tcp_xid));
  896. dprintk("RPC: xprt = %p, tcp_copied = %lu, "
  897. "tcp_offset = %u, tcp_reclen = %u\n",
  898. xprt, transport->tcp_copied,
  899. transport->tcp_offset, transport->tcp_reclen);
  900. goto out;
  901. }
  902. dprintk("RPC: XID %08x read %Zd bytes\n",
  903. ntohl(transport->tcp_xid), r);
  904. dprintk("RPC: xprt = %p, tcp_copied = %lu, tcp_offset = %u, "
  905. "tcp_reclen = %u\n", xprt, transport->tcp_copied,
  906. transport->tcp_offset, transport->tcp_reclen);
  907. if (transport->tcp_copied == req->rq_private_buf.buflen)
  908. transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
  909. else if (transport->tcp_offset == transport->tcp_reclen) {
  910. if (transport->tcp_flags & TCP_RCV_LAST_FRAG)
  911. transport->tcp_flags &= ~TCP_RCV_COPY_DATA;
  912. }
  913. out:
  914. if (!(transport->tcp_flags & TCP_RCV_COPY_DATA))
  915. xprt_complete_rqst(req->rq_task, transport->tcp_copied);
  916. spin_unlock(&xprt->transport_lock);
  917. xs_tcp_check_fraghdr(transport);
  918. }
  919. static inline void xs_tcp_read_discard(struct sock_xprt *transport, struct xdr_skb_reader *desc)
  920. {
  921. size_t len;
  922. len = transport->tcp_reclen - transport->tcp_offset;
  923. if (len > desc->count)
  924. len = desc->count;
  925. desc->count -= len;
  926. desc->offset += len;
  927. transport->tcp_offset += len;
  928. dprintk("RPC: discarded %Zu bytes\n", len);
  929. xs_tcp_check_fraghdr(transport);
  930. }
  931. static int xs_tcp_data_recv(read_descriptor_t *rd_desc, struct sk_buff *skb, unsigned int offset, size_t len)
  932. {
  933. struct rpc_xprt *xprt = rd_desc->arg.data;
  934. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  935. struct xdr_skb_reader desc = {
  936. .skb = skb,
  937. .offset = offset,
  938. .count = len,
  939. };
  940. dprintk("RPC: xs_tcp_data_recv started\n");
  941. do {
  942. /* Read in a new fragment marker if necessary */
  943. /* Can we ever really expect to get completely empty fragments? */
  944. if (transport->tcp_flags & TCP_RCV_COPY_FRAGHDR) {
  945. xs_tcp_read_fraghdr(xprt, &desc);
  946. continue;
  947. }
  948. /* Read in the xid if necessary */
  949. if (transport->tcp_flags & TCP_RCV_COPY_XID) {
  950. xs_tcp_read_xid(transport, &desc);
  951. continue;
  952. }
  953. /* Read in the request data */
  954. if (transport->tcp_flags & TCP_RCV_COPY_DATA) {
  955. xs_tcp_read_request(xprt, &desc);
  956. continue;
  957. }
  958. /* Skip over any trailing bytes on short reads */
  959. xs_tcp_read_discard(transport, &desc);
  960. } while (desc.count);
  961. dprintk("RPC: xs_tcp_data_recv done\n");
  962. return len - desc.count;
  963. }
  964. /**
  965. * xs_tcp_data_ready - "data ready" callback for TCP sockets
  966. * @sk: socket with data to read
  967. * @bytes: how much data to read
  968. *
  969. */
  970. static void xs_tcp_data_ready(struct sock *sk, int bytes)
  971. {
  972. struct rpc_xprt *xprt;
  973. read_descriptor_t rd_desc;
  974. int read;
  975. dprintk("RPC: xs_tcp_data_ready...\n");
  976. read_lock(&sk->sk_callback_lock);
  977. if (!(xprt = xprt_from_sock(sk)))
  978. goto out;
  979. if (xprt->shutdown)
  980. goto out;
  981. /* We use rd_desc to pass struct xprt to xs_tcp_data_recv */
  982. rd_desc.arg.data = xprt;
  983. do {
  984. rd_desc.count = 65536;
  985. read = tcp_read_sock(sk, &rd_desc, xs_tcp_data_recv);
  986. } while (read > 0);
  987. out:
  988. read_unlock(&sk->sk_callback_lock);
  989. }
  990. /*
  991. * Do the equivalent of linger/linger2 handling for dealing with
  992. * broken servers that don't close the socket in a timely
  993. * fashion
  994. */
  995. static void xs_tcp_schedule_linger_timeout(struct rpc_xprt *xprt,
  996. unsigned long timeout)
  997. {
  998. struct sock_xprt *transport;
  999. if (xprt_test_and_set_connecting(xprt))
  1000. return;
  1001. set_bit(XPRT_CONNECTION_ABORT, &xprt->state);
  1002. transport = container_of(xprt, struct sock_xprt, xprt);
  1003. queue_delayed_work(rpciod_workqueue, &transport->connect_worker,
  1004. timeout);
  1005. }
  1006. static void xs_tcp_cancel_linger_timeout(struct rpc_xprt *xprt)
  1007. {
  1008. struct sock_xprt *transport;
  1009. transport = container_of(xprt, struct sock_xprt, xprt);
  1010. if (!test_bit(XPRT_CONNECTION_ABORT, &xprt->state) ||
  1011. !cancel_delayed_work(&transport->connect_worker))
  1012. return;
  1013. clear_bit(XPRT_CONNECTION_ABORT, &xprt->state);
  1014. xprt_clear_connecting(xprt);
  1015. }
  1016. static void xs_sock_mark_closed(struct rpc_xprt *xprt)
  1017. {
  1018. smp_mb__before_clear_bit();
  1019. clear_bit(XPRT_CLOSE_WAIT, &xprt->state);
  1020. clear_bit(XPRT_CLOSING, &xprt->state);
  1021. smp_mb__after_clear_bit();
  1022. /* Mark transport as closed and wake up all pending tasks */
  1023. xprt_disconnect_done(xprt);
  1024. }
  1025. /**
  1026. * xs_tcp_state_change - callback to handle TCP socket state changes
  1027. * @sk: socket whose state has changed
  1028. *
  1029. */
  1030. static void xs_tcp_state_change(struct sock *sk)
  1031. {
  1032. struct rpc_xprt *xprt;
  1033. read_lock(&sk->sk_callback_lock);
  1034. if (!(xprt = xprt_from_sock(sk)))
  1035. goto out;
  1036. dprintk("RPC: xs_tcp_state_change client %p...\n", xprt);
  1037. dprintk("RPC: state %x conn %d dead %d zapped %d\n",
  1038. sk->sk_state, xprt_connected(xprt),
  1039. sock_flag(sk, SOCK_DEAD),
  1040. sock_flag(sk, SOCK_ZAPPED));
  1041. switch (sk->sk_state) {
  1042. case TCP_ESTABLISHED:
  1043. spin_lock_bh(&xprt->transport_lock);
  1044. if (!xprt_test_and_set_connected(xprt)) {
  1045. struct sock_xprt *transport = container_of(xprt,
  1046. struct sock_xprt, xprt);
  1047. /* Reset TCP record info */
  1048. transport->tcp_offset = 0;
  1049. transport->tcp_reclen = 0;
  1050. transport->tcp_copied = 0;
  1051. transport->tcp_flags =
  1052. TCP_RCV_COPY_FRAGHDR | TCP_RCV_COPY_XID;
  1053. xprt_wake_pending_tasks(xprt, -EAGAIN);
  1054. }
  1055. spin_unlock_bh(&xprt->transport_lock);
  1056. break;
  1057. case TCP_FIN_WAIT1:
  1058. /* The client initiated a shutdown of the socket */
  1059. xprt->connect_cookie++;
  1060. xprt->reestablish_timeout = 0;
  1061. set_bit(XPRT_CLOSING, &xprt->state);
  1062. smp_mb__before_clear_bit();
  1063. clear_bit(XPRT_CONNECTED, &xprt->state);
  1064. clear_bit(XPRT_CLOSE_WAIT, &xprt->state);
  1065. smp_mb__after_clear_bit();
  1066. xs_tcp_schedule_linger_timeout(xprt, XS_TCP_LINGER_TO);
  1067. break;
  1068. case TCP_CLOSE_WAIT:
  1069. /* The server initiated a shutdown of the socket */
  1070. xprt_force_disconnect(xprt);
  1071. case TCP_SYN_SENT:
  1072. xprt->connect_cookie++;
  1073. case TCP_CLOSING:
  1074. /*
  1075. * If the server closed down the connection, make sure that
  1076. * we back off before reconnecting
  1077. */
  1078. if (xprt->reestablish_timeout < XS_TCP_INIT_REEST_TO)
  1079. xprt->reestablish_timeout = XS_TCP_INIT_REEST_TO;
  1080. break;
  1081. case TCP_LAST_ACK:
  1082. set_bit(XPRT_CLOSING, &xprt->state);
  1083. xs_tcp_schedule_linger_timeout(xprt, XS_TCP_LINGER_TO);
  1084. smp_mb__before_clear_bit();
  1085. clear_bit(XPRT_CONNECTED, &xprt->state);
  1086. smp_mb__after_clear_bit();
  1087. break;
  1088. case TCP_CLOSE:
  1089. xs_tcp_cancel_linger_timeout(xprt);
  1090. xs_sock_mark_closed(xprt);
  1091. }
  1092. out:
  1093. read_unlock(&sk->sk_callback_lock);
  1094. }
  1095. /**
  1096. * xs_error_report - callback mainly for catching socket errors
  1097. * @sk: socket
  1098. */
  1099. static void xs_error_report(struct sock *sk)
  1100. {
  1101. struct rpc_xprt *xprt;
  1102. read_lock(&sk->sk_callback_lock);
  1103. if (!(xprt = xprt_from_sock(sk)))
  1104. goto out;
  1105. dprintk("RPC: %s client %p...\n"
  1106. "RPC: error %d\n",
  1107. __func__, xprt, sk->sk_err);
  1108. xprt_wake_pending_tasks(xprt, -EAGAIN);
  1109. out:
  1110. read_unlock(&sk->sk_callback_lock);
  1111. }
  1112. /**
  1113. * xs_udp_write_space - callback invoked when socket buffer space
  1114. * becomes available
  1115. * @sk: socket whose state has changed
  1116. *
  1117. * Called when more output buffer space is available for this socket.
  1118. * We try not to wake our writers until they can make "significant"
  1119. * progress, otherwise we'll waste resources thrashing kernel_sendmsg
  1120. * with a bunch of small requests.
  1121. */
  1122. static void xs_udp_write_space(struct sock *sk)
  1123. {
  1124. read_lock(&sk->sk_callback_lock);
  1125. /* from net/core/sock.c:sock_def_write_space */
  1126. if (sock_writeable(sk)) {
  1127. struct socket *sock;
  1128. struct rpc_xprt *xprt;
  1129. if (unlikely(!(sock = sk->sk_socket)))
  1130. goto out;
  1131. clear_bit(SOCK_NOSPACE, &sock->flags);
  1132. if (unlikely(!(xprt = xprt_from_sock(sk))))
  1133. goto out;
  1134. if (test_and_clear_bit(SOCK_ASYNC_NOSPACE, &sock->flags) == 0)
  1135. goto out;
  1136. xprt_write_space(xprt);
  1137. }
  1138. out:
  1139. read_unlock(&sk->sk_callback_lock);
  1140. }
  1141. /**
  1142. * xs_tcp_write_space - callback invoked when socket buffer space
  1143. * becomes available
  1144. * @sk: socket whose state has changed
  1145. *
  1146. * Called when more output buffer space is available for this socket.
  1147. * We try not to wake our writers until they can make "significant"
  1148. * progress, otherwise we'll waste resources thrashing kernel_sendmsg
  1149. * with a bunch of small requests.
  1150. */
  1151. static void xs_tcp_write_space(struct sock *sk)
  1152. {
  1153. read_lock(&sk->sk_callback_lock);
  1154. /* from net/core/stream.c:sk_stream_write_space */
  1155. if (sk_stream_wspace(sk) >= sk_stream_min_wspace(sk)) {
  1156. struct socket *sock;
  1157. struct rpc_xprt *xprt;
  1158. if (unlikely(!(sock = sk->sk_socket)))
  1159. goto out;
  1160. clear_bit(SOCK_NOSPACE, &sock->flags);
  1161. if (unlikely(!(xprt = xprt_from_sock(sk))))
  1162. goto out;
  1163. if (test_and_clear_bit(SOCK_ASYNC_NOSPACE, &sock->flags) == 0)
  1164. goto out;
  1165. xprt_write_space(xprt);
  1166. }
  1167. out:
  1168. read_unlock(&sk->sk_callback_lock);
  1169. }
  1170. static void xs_udp_do_set_buffer_size(struct rpc_xprt *xprt)
  1171. {
  1172. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1173. struct sock *sk = transport->inet;
  1174. if (transport->rcvsize) {
  1175. sk->sk_userlocks |= SOCK_RCVBUF_LOCK;
  1176. sk->sk_rcvbuf = transport->rcvsize * xprt->max_reqs * 2;
  1177. }
  1178. if (transport->sndsize) {
  1179. sk->sk_userlocks |= SOCK_SNDBUF_LOCK;
  1180. sk->sk_sndbuf = transport->sndsize * xprt->max_reqs * 2;
  1181. sk->sk_write_space(sk);
  1182. }
  1183. }
  1184. /**
  1185. * xs_udp_set_buffer_size - set send and receive limits
  1186. * @xprt: generic transport
  1187. * @sndsize: requested size of send buffer, in bytes
  1188. * @rcvsize: requested size of receive buffer, in bytes
  1189. *
  1190. * Set socket send and receive buffer size limits.
  1191. */
  1192. static void xs_udp_set_buffer_size(struct rpc_xprt *xprt, size_t sndsize, size_t rcvsize)
  1193. {
  1194. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1195. transport->sndsize = 0;
  1196. if (sndsize)
  1197. transport->sndsize = sndsize + 1024;
  1198. transport->rcvsize = 0;
  1199. if (rcvsize)
  1200. transport->rcvsize = rcvsize + 1024;
  1201. xs_udp_do_set_buffer_size(xprt);
  1202. }
  1203. /**
  1204. * xs_udp_timer - called when a retransmit timeout occurs on a UDP transport
  1205. * @task: task that timed out
  1206. *
  1207. * Adjust the congestion window after a retransmit timeout has occurred.
  1208. */
  1209. static void xs_udp_timer(struct rpc_task *task)
  1210. {
  1211. xprt_adjust_cwnd(task, -ETIMEDOUT);
  1212. }
  1213. static unsigned short xs_get_random_port(void)
  1214. {
  1215. unsigned short range = xprt_max_resvport - xprt_min_resvport;
  1216. unsigned short rand = (unsigned short) net_random() % range;
  1217. return rand + xprt_min_resvport;
  1218. }
  1219. /**
  1220. * xs_set_port - reset the port number in the remote endpoint address
  1221. * @xprt: generic transport
  1222. * @port: new port number
  1223. *
  1224. */
  1225. static void xs_set_port(struct rpc_xprt *xprt, unsigned short port)
  1226. {
  1227. struct sockaddr *addr = xs_addr(xprt);
  1228. dprintk("RPC: setting port for xprt %p to %u\n", xprt, port);
  1229. switch (addr->sa_family) {
  1230. case AF_INET:
  1231. ((struct sockaddr_in *)addr)->sin_port = htons(port);
  1232. break;
  1233. case AF_INET6:
  1234. ((struct sockaddr_in6 *)addr)->sin6_port = htons(port);
  1235. break;
  1236. default:
  1237. BUG();
  1238. }
  1239. }
  1240. static unsigned short xs_get_srcport(struct sock_xprt *transport, struct socket *sock)
  1241. {
  1242. unsigned short port = transport->port;
  1243. if (port == 0 && transport->xprt.resvport)
  1244. port = xs_get_random_port();
  1245. return port;
  1246. }
  1247. static unsigned short xs_next_srcport(struct sock_xprt *transport, struct socket *sock, unsigned short port)
  1248. {
  1249. if (transport->port != 0)
  1250. transport->port = 0;
  1251. if (!transport->xprt.resvport)
  1252. return 0;
  1253. if (port <= xprt_min_resvport || port > xprt_max_resvport)
  1254. return xprt_max_resvport;
  1255. return --port;
  1256. }
  1257. static int xs_bind4(struct sock_xprt *transport, struct socket *sock)
  1258. {
  1259. struct sockaddr_in myaddr = {
  1260. .sin_family = AF_INET,
  1261. };
  1262. struct sockaddr_in *sa;
  1263. int err, nloop = 0;
  1264. unsigned short port = xs_get_srcport(transport, sock);
  1265. unsigned short last;
  1266. sa = (struct sockaddr_in *)&transport->addr;
  1267. myaddr.sin_addr = sa->sin_addr;
  1268. do {
  1269. myaddr.sin_port = htons(port);
  1270. err = kernel_bind(sock, (struct sockaddr *) &myaddr,
  1271. sizeof(myaddr));
  1272. if (port == 0)
  1273. break;
  1274. if (err == 0) {
  1275. transport->port = port;
  1276. break;
  1277. }
  1278. last = port;
  1279. port = xs_next_srcport(transport, sock, port);
  1280. if (port > last)
  1281. nloop++;
  1282. } while (err == -EADDRINUSE && nloop != 2);
  1283. dprintk("RPC: %s %pI4:%u: %s (%d)\n",
  1284. __func__, &myaddr.sin_addr,
  1285. port, err ? "failed" : "ok", err);
  1286. return err;
  1287. }
  1288. static int xs_bind6(struct sock_xprt *transport, struct socket *sock)
  1289. {
  1290. struct sockaddr_in6 myaddr = {
  1291. .sin6_family = AF_INET6,
  1292. };
  1293. struct sockaddr_in6 *sa;
  1294. int err, nloop = 0;
  1295. unsigned short port = xs_get_srcport(transport, sock);
  1296. unsigned short last;
  1297. sa = (struct sockaddr_in6 *)&transport->addr;
  1298. myaddr.sin6_addr = sa->sin6_addr;
  1299. do {
  1300. myaddr.sin6_port = htons(port);
  1301. err = kernel_bind(sock, (struct sockaddr *) &myaddr,
  1302. sizeof(myaddr));
  1303. if (port == 0)
  1304. break;
  1305. if (err == 0) {
  1306. transport->port = port;
  1307. break;
  1308. }
  1309. last = port;
  1310. port = xs_next_srcport(transport, sock, port);
  1311. if (port > last)
  1312. nloop++;
  1313. } while (err == -EADDRINUSE && nloop != 2);
  1314. dprintk("RPC: xs_bind6 %pI6:%u: %s (%d)\n",
  1315. &myaddr.sin6_addr, port, err ? "failed" : "ok", err);
  1316. return err;
  1317. }
  1318. #ifdef CONFIG_DEBUG_LOCK_ALLOC
  1319. static struct lock_class_key xs_key[2];
  1320. static struct lock_class_key xs_slock_key[2];
  1321. static inline void xs_reclassify_socket4(struct socket *sock)
  1322. {
  1323. struct sock *sk = sock->sk;
  1324. BUG_ON(sock_owned_by_user(sk));
  1325. sock_lock_init_class_and_name(sk, "slock-AF_INET-RPC",
  1326. &xs_slock_key[0], "sk_lock-AF_INET-RPC", &xs_key[0]);
  1327. }
  1328. static inline void xs_reclassify_socket6(struct socket *sock)
  1329. {
  1330. struct sock *sk = sock->sk;
  1331. BUG_ON(sock_owned_by_user(sk));
  1332. sock_lock_init_class_and_name(sk, "slock-AF_INET6-RPC",
  1333. &xs_slock_key[1], "sk_lock-AF_INET6-RPC", &xs_key[1]);
  1334. }
  1335. #else
  1336. static inline void xs_reclassify_socket4(struct socket *sock)
  1337. {
  1338. }
  1339. static inline void xs_reclassify_socket6(struct socket *sock)
  1340. {
  1341. }
  1342. #endif
  1343. static void xs_udp_finish_connecting(struct rpc_xprt *xprt, struct socket *sock)
  1344. {
  1345. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1346. if (!transport->inet) {
  1347. struct sock *sk = sock->sk;
  1348. write_lock_bh(&sk->sk_callback_lock);
  1349. xs_save_old_callbacks(transport, sk);
  1350. sk->sk_user_data = xprt;
  1351. sk->sk_data_ready = xs_udp_data_ready;
  1352. sk->sk_write_space = xs_udp_write_space;
  1353. sk->sk_error_report = xs_error_report;
  1354. sk->sk_no_check = UDP_CSUM_NORCV;
  1355. sk->sk_allocation = GFP_ATOMIC;
  1356. xprt_set_connected(xprt);
  1357. /* Reset to new socket */
  1358. transport->sock = sock;
  1359. transport->inet = sk;
  1360. write_unlock_bh(&sk->sk_callback_lock);
  1361. }
  1362. xs_udp_do_set_buffer_size(xprt);
  1363. }
  1364. /**
  1365. * xs_udp_connect_worker4 - set up a UDP socket
  1366. * @work: RPC transport to connect
  1367. *
  1368. * Invoked by a work queue tasklet.
  1369. */
  1370. static void xs_udp_connect_worker4(struct work_struct *work)
  1371. {
  1372. struct sock_xprt *transport =
  1373. container_of(work, struct sock_xprt, connect_worker.work);
  1374. struct rpc_xprt *xprt = &transport->xprt;
  1375. struct socket *sock = transport->sock;
  1376. int err, status = -EIO;
  1377. if (xprt->shutdown)
  1378. goto out;
  1379. /* Start by resetting any existing state */
  1380. xs_reset_transport(transport);
  1381. err = sock_create_kern(PF_INET, SOCK_DGRAM, IPPROTO_UDP, &sock);
  1382. if (err < 0) {
  1383. dprintk("RPC: can't create UDP transport socket (%d).\n", -err);
  1384. goto out;
  1385. }
  1386. xs_reclassify_socket4(sock);
  1387. if (xs_bind4(transport, sock)) {
  1388. sock_release(sock);
  1389. goto out;
  1390. }
  1391. dprintk("RPC: worker connecting xprt %p to address: %s\n",
  1392. xprt, xprt->address_strings[RPC_DISPLAY_ALL]);
  1393. xs_udp_finish_connecting(xprt, sock);
  1394. status = 0;
  1395. out:
  1396. xprt_clear_connecting(xprt);
  1397. xprt_wake_pending_tasks(xprt, status);
  1398. }
  1399. /**
  1400. * xs_udp_connect_worker6 - set up a UDP socket
  1401. * @work: RPC transport to connect
  1402. *
  1403. * Invoked by a work queue tasklet.
  1404. */
  1405. static void xs_udp_connect_worker6(struct work_struct *work)
  1406. {
  1407. struct sock_xprt *transport =
  1408. container_of(work, struct sock_xprt, connect_worker.work);
  1409. struct rpc_xprt *xprt = &transport->xprt;
  1410. struct socket *sock = transport->sock;
  1411. int err, status = -EIO;
  1412. if (xprt->shutdown)
  1413. goto out;
  1414. /* Start by resetting any existing state */
  1415. xs_reset_transport(transport);
  1416. err = sock_create_kern(PF_INET6, SOCK_DGRAM, IPPROTO_UDP, &sock);
  1417. if (err < 0) {
  1418. dprintk("RPC: can't create UDP transport socket (%d).\n", -err);
  1419. goto out;
  1420. }
  1421. xs_reclassify_socket6(sock);
  1422. if (xs_bind6(transport, sock) < 0) {
  1423. sock_release(sock);
  1424. goto out;
  1425. }
  1426. dprintk("RPC: worker connecting xprt %p to address: %s\n",
  1427. xprt, xprt->address_strings[RPC_DISPLAY_ALL]);
  1428. xs_udp_finish_connecting(xprt, sock);
  1429. status = 0;
  1430. out:
  1431. xprt_clear_connecting(xprt);
  1432. xprt_wake_pending_tasks(xprt, status);
  1433. }
  1434. /*
  1435. * We need to preserve the port number so the reply cache on the server can
  1436. * find our cached RPC replies when we get around to reconnecting.
  1437. */
  1438. static void xs_abort_connection(struct rpc_xprt *xprt, struct sock_xprt *transport)
  1439. {
  1440. int result;
  1441. struct sockaddr any;
  1442. dprintk("RPC: disconnecting xprt %p to reuse port\n", xprt);
  1443. /*
  1444. * Disconnect the transport socket by doing a connect operation
  1445. * with AF_UNSPEC. This should return immediately...
  1446. */
  1447. memset(&any, 0, sizeof(any));
  1448. any.sa_family = AF_UNSPEC;
  1449. result = kernel_connect(transport->sock, &any, sizeof(any), 0);
  1450. if (!result)
  1451. xs_sock_mark_closed(xprt);
  1452. else
  1453. dprintk("RPC: AF_UNSPEC connect return code %d\n",
  1454. result);
  1455. }
  1456. static void xs_tcp_reuse_connection(struct rpc_xprt *xprt, struct sock_xprt *transport)
  1457. {
  1458. unsigned int state = transport->inet->sk_state;
  1459. if (state == TCP_CLOSE && transport->sock->state == SS_UNCONNECTED)
  1460. return;
  1461. if ((1 << state) & (TCPF_ESTABLISHED|TCPF_SYN_SENT))
  1462. return;
  1463. xs_abort_connection(xprt, transport);
  1464. }
  1465. static int xs_tcp_finish_connecting(struct rpc_xprt *xprt, struct socket *sock)
  1466. {
  1467. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1468. if (!transport->inet) {
  1469. struct sock *sk = sock->sk;
  1470. write_lock_bh(&sk->sk_callback_lock);
  1471. xs_save_old_callbacks(transport, sk);
  1472. sk->sk_user_data = xprt;
  1473. sk->sk_data_ready = xs_tcp_data_ready;
  1474. sk->sk_state_change = xs_tcp_state_change;
  1475. sk->sk_write_space = xs_tcp_write_space;
  1476. sk->sk_error_report = xs_error_report;
  1477. sk->sk_allocation = GFP_ATOMIC;
  1478. /* socket options */
  1479. sk->sk_userlocks |= SOCK_BINDPORT_LOCK;
  1480. sock_reset_flag(sk, SOCK_LINGER);
  1481. tcp_sk(sk)->linger2 = 0;
  1482. tcp_sk(sk)->nonagle |= TCP_NAGLE_OFF;
  1483. xprt_clear_connected(xprt);
  1484. /* Reset to new socket */
  1485. transport->sock = sock;
  1486. transport->inet = sk;
  1487. write_unlock_bh(&sk->sk_callback_lock);
  1488. }
  1489. if (!xprt_bound(xprt))
  1490. return -ENOTCONN;
  1491. /* Tell the socket layer to start connecting... */
  1492. xprt->stat.connect_count++;
  1493. xprt->stat.connect_start = jiffies;
  1494. return kernel_connect(sock, xs_addr(xprt), xprt->addrlen, O_NONBLOCK);
  1495. }
  1496. /**
  1497. * xs_tcp_connect_worker4 - connect a TCP socket to a remote endpoint
  1498. * @work: RPC transport to connect
  1499. *
  1500. * Invoked by a work queue tasklet.
  1501. */
  1502. static void xs_tcp_connect_worker4(struct work_struct *work)
  1503. {
  1504. struct sock_xprt *transport =
  1505. container_of(work, struct sock_xprt, connect_worker.work);
  1506. struct rpc_xprt *xprt = &transport->xprt;
  1507. struct socket *sock = transport->sock;
  1508. int err, status = -EIO;
  1509. if (xprt->shutdown)
  1510. goto out;
  1511. if (!sock) {
  1512. clear_bit(XPRT_CONNECTION_ABORT, &xprt->state);
  1513. /* start from scratch */
  1514. if ((err = sock_create_kern(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock)) < 0) {
  1515. dprintk("RPC: can't create TCP transport socket (%d).\n", -err);
  1516. goto out;
  1517. }
  1518. xs_reclassify_socket4(sock);
  1519. if (xs_bind4(transport, sock) < 0) {
  1520. sock_release(sock);
  1521. goto out;
  1522. }
  1523. } else {
  1524. int abort_and_exit;
  1525. abort_and_exit = test_and_clear_bit(XPRT_CONNECTION_ABORT,
  1526. &xprt->state);
  1527. /* "close" the socket, preserving the local port */
  1528. xs_tcp_reuse_connection(xprt, transport);
  1529. if (abort_and_exit)
  1530. goto out_eagain;
  1531. }
  1532. dprintk("RPC: worker connecting xprt %p to address: %s\n",
  1533. xprt, xprt->address_strings[RPC_DISPLAY_ALL]);
  1534. status = xs_tcp_finish_connecting(xprt, sock);
  1535. dprintk("RPC: %p connect status %d connected %d sock state %d\n",
  1536. xprt, -status, xprt_connected(xprt),
  1537. sock->sk->sk_state);
  1538. switch (status) {
  1539. case -ECONNREFUSED:
  1540. case -ECONNRESET:
  1541. case -ENETUNREACH:
  1542. /* retry with existing socket, after a delay */
  1543. case 0:
  1544. case -EINPROGRESS:
  1545. case -EALREADY:
  1546. xprt_clear_connecting(xprt);
  1547. return;
  1548. }
  1549. /* get rid of existing socket, and retry */
  1550. xs_tcp_shutdown(xprt);
  1551. printk("%s: connect returned unhandled error %d\n",
  1552. __func__, status);
  1553. out_eagain:
  1554. status = -EAGAIN;
  1555. out:
  1556. xprt_clear_connecting(xprt);
  1557. xprt_wake_pending_tasks(xprt, status);
  1558. }
  1559. /**
  1560. * xs_tcp_connect_worker6 - connect a TCP socket to a remote endpoint
  1561. * @work: RPC transport to connect
  1562. *
  1563. * Invoked by a work queue tasklet.
  1564. */
  1565. static void xs_tcp_connect_worker6(struct work_struct *work)
  1566. {
  1567. struct sock_xprt *transport =
  1568. container_of(work, struct sock_xprt, connect_worker.work);
  1569. struct rpc_xprt *xprt = &transport->xprt;
  1570. struct socket *sock = transport->sock;
  1571. int err, status = -EIO;
  1572. if (xprt->shutdown)
  1573. goto out;
  1574. if (!sock) {
  1575. clear_bit(XPRT_CONNECTION_ABORT, &xprt->state);
  1576. /* start from scratch */
  1577. if ((err = sock_create_kern(PF_INET6, SOCK_STREAM, IPPROTO_TCP, &sock)) < 0) {
  1578. dprintk("RPC: can't create TCP transport socket (%d).\n", -err);
  1579. goto out;
  1580. }
  1581. xs_reclassify_socket6(sock);
  1582. if (xs_bind6(transport, sock) < 0) {
  1583. sock_release(sock);
  1584. goto out;
  1585. }
  1586. } else {
  1587. int abort_and_exit;
  1588. abort_and_exit = test_and_clear_bit(XPRT_CONNECTION_ABORT,
  1589. &xprt->state);
  1590. /* "close" the socket, preserving the local port */
  1591. xs_tcp_reuse_connection(xprt, transport);
  1592. if (abort_and_exit)
  1593. goto out_eagain;
  1594. }
  1595. dprintk("RPC: worker connecting xprt %p to address: %s\n",
  1596. xprt, xprt->address_strings[RPC_DISPLAY_ALL]);
  1597. status = xs_tcp_finish_connecting(xprt, sock);
  1598. dprintk("RPC: %p connect status %d connected %d sock state %d\n",
  1599. xprt, -status, xprt_connected(xprt), sock->sk->sk_state);
  1600. switch (status) {
  1601. case -ECONNREFUSED:
  1602. case -ECONNRESET:
  1603. case -ENETUNREACH:
  1604. /* retry with existing socket, after a delay */
  1605. case 0:
  1606. case -EINPROGRESS:
  1607. case -EALREADY:
  1608. xprt_clear_connecting(xprt);
  1609. return;
  1610. }
  1611. /* get rid of existing socket, and retry */
  1612. xs_tcp_shutdown(xprt);
  1613. printk("%s: connect returned unhandled error %d\n",
  1614. __func__, status);
  1615. out_eagain:
  1616. status = -EAGAIN;
  1617. out:
  1618. xprt_clear_connecting(xprt);
  1619. xprt_wake_pending_tasks(xprt, status);
  1620. }
  1621. /**
  1622. * xs_connect - connect a socket to a remote endpoint
  1623. * @task: address of RPC task that manages state of connect request
  1624. *
  1625. * TCP: If the remote end dropped the connection, delay reconnecting.
  1626. *
  1627. * UDP socket connects are synchronous, but we use a work queue anyway
  1628. * to guarantee that even unprivileged user processes can set up a
  1629. * socket on a privileged port.
  1630. *
  1631. * If a UDP socket connect fails, the delay behavior here prevents
  1632. * retry floods (hard mounts).
  1633. */
  1634. static void xs_connect(struct rpc_task *task)
  1635. {
  1636. struct rpc_xprt *xprt = task->tk_xprt;
  1637. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1638. if (xprt_test_and_set_connecting(xprt))
  1639. return;
  1640. if (transport->sock != NULL) {
  1641. dprintk("RPC: xs_connect delayed xprt %p for %lu "
  1642. "seconds\n",
  1643. xprt, xprt->reestablish_timeout / HZ);
  1644. queue_delayed_work(rpciod_workqueue,
  1645. &transport->connect_worker,
  1646. xprt->reestablish_timeout);
  1647. xprt->reestablish_timeout <<= 1;
  1648. if (xprt->reestablish_timeout > XS_TCP_MAX_REEST_TO)
  1649. xprt->reestablish_timeout = XS_TCP_MAX_REEST_TO;
  1650. } else {
  1651. dprintk("RPC: xs_connect scheduled xprt %p\n", xprt);
  1652. queue_delayed_work(rpciod_workqueue,
  1653. &transport->connect_worker, 0);
  1654. }
  1655. }
  1656. static void xs_tcp_connect(struct rpc_task *task)
  1657. {
  1658. struct rpc_xprt *xprt = task->tk_xprt;
  1659. /* Exit if we need to wait for socket shutdown to complete */
  1660. if (test_bit(XPRT_CLOSING, &xprt->state))
  1661. return;
  1662. xs_connect(task);
  1663. }
  1664. /**
  1665. * xs_udp_print_stats - display UDP socket-specifc stats
  1666. * @xprt: rpc_xprt struct containing statistics
  1667. * @seq: output file
  1668. *
  1669. */
  1670. static void xs_udp_print_stats(struct rpc_xprt *xprt, struct seq_file *seq)
  1671. {
  1672. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1673. seq_printf(seq, "\txprt:\tudp %u %lu %lu %lu %lu %Lu %Lu\n",
  1674. transport->port,
  1675. xprt->stat.bind_count,
  1676. xprt->stat.sends,
  1677. xprt->stat.recvs,
  1678. xprt->stat.bad_xids,
  1679. xprt->stat.req_u,
  1680. xprt->stat.bklog_u);
  1681. }
  1682. /**
  1683. * xs_tcp_print_stats - display TCP socket-specifc stats
  1684. * @xprt: rpc_xprt struct containing statistics
  1685. * @seq: output file
  1686. *
  1687. */
  1688. static void xs_tcp_print_stats(struct rpc_xprt *xprt, struct seq_file *seq)
  1689. {
  1690. struct sock_xprt *transport = container_of(xprt, struct sock_xprt, xprt);
  1691. long idle_time = 0;
  1692. if (xprt_connected(xprt))
  1693. idle_time = (long)(jiffies - xprt->last_used) / HZ;
  1694. seq_printf(seq, "\txprt:\ttcp %u %lu %lu %lu %ld %lu %lu %lu %Lu %Lu\n",
  1695. transport->port,
  1696. xprt->stat.bind_count,
  1697. xprt->stat.connect_count,
  1698. xprt->stat.connect_time,
  1699. idle_time,
  1700. xprt->stat.sends,
  1701. xprt->stat.recvs,
  1702. xprt->stat.bad_xids,
  1703. xprt->stat.req_u,
  1704. xprt->stat.bklog_u);
  1705. }
  1706. static struct rpc_xprt_ops xs_udp_ops = {
  1707. .set_buffer_size = xs_udp_set_buffer_size,
  1708. .reserve_xprt = xprt_reserve_xprt_cong,
  1709. .release_xprt = xprt_release_xprt_cong,
  1710. .rpcbind = rpcb_getport_async,
  1711. .set_port = xs_set_port,
  1712. .connect = xs_connect,
  1713. .buf_alloc = rpc_malloc,
  1714. .buf_free = rpc_free,
  1715. .send_request = xs_udp_send_request,
  1716. .set_retrans_timeout = xprt_set_retrans_timeout_rtt,
  1717. .timer = xs_udp_timer,
  1718. .release_request = xprt_release_rqst_cong,
  1719. .close = xs_close,
  1720. .destroy = xs_destroy,
  1721. .print_stats = xs_udp_print_stats,
  1722. };
  1723. static struct rpc_xprt_ops xs_tcp_ops = {
  1724. .reserve_xprt = xprt_reserve_xprt,
  1725. .release_xprt = xs_tcp_release_xprt,
  1726. .rpcbind = rpcb_getport_async,
  1727. .set_port = xs_set_port,
  1728. .connect = xs_tcp_connect,
  1729. .buf_alloc = rpc_malloc,
  1730. .buf_free = rpc_free,
  1731. .send_request = xs_tcp_send_request,
  1732. .set_retrans_timeout = xprt_set_retrans_timeout_def,
  1733. .close = xs_tcp_shutdown,
  1734. .destroy = xs_destroy,
  1735. .print_stats = xs_tcp_print_stats,
  1736. };
  1737. static struct rpc_xprt *xs_setup_xprt(struct xprt_create *args,
  1738. unsigned int slot_table_size)
  1739. {
  1740. struct rpc_xprt *xprt;
  1741. struct sock_xprt *new;
  1742. if (args->addrlen > sizeof(xprt->addr)) {
  1743. dprintk("RPC: xs_setup_xprt: address too large\n");
  1744. return ERR_PTR(-EBADF);
  1745. }
  1746. new = kzalloc(sizeof(*new), GFP_KERNEL);
  1747. if (new == NULL) {
  1748. dprintk("RPC: xs_setup_xprt: couldn't allocate "
  1749. "rpc_xprt\n");
  1750. return ERR_PTR(-ENOMEM);
  1751. }
  1752. xprt = &new->xprt;
  1753. xprt->max_reqs = slot_table_size;
  1754. xprt->slot = kcalloc(xprt->max_reqs, sizeof(struct rpc_rqst), GFP_KERNEL);
  1755. if (xprt->slot == NULL) {
  1756. kfree(xprt);
  1757. dprintk("RPC: xs_setup_xprt: couldn't allocate slot "
  1758. "table\n");
  1759. return ERR_PTR(-ENOMEM);
  1760. }
  1761. memcpy(&xprt->addr, args->dstaddr, args->addrlen);
  1762. xprt->addrlen = args->addrlen;
  1763. if (args->srcaddr)
  1764. memcpy(&new->addr, args->srcaddr, args->addrlen);
  1765. return xprt;
  1766. }
  1767. static const struct rpc_timeout xs_udp_default_timeout = {
  1768. .to_initval = 5 * HZ,
  1769. .to_maxval = 30 * HZ,
  1770. .to_increment = 5 * HZ,
  1771. .to_retries = 5,
  1772. };
  1773. /**
  1774. * xs_setup_udp - Set up transport to use a UDP socket
  1775. * @args: rpc transport creation arguments
  1776. *
  1777. */
  1778. static struct rpc_xprt *xs_setup_udp(struct xprt_create *args)
  1779. {
  1780. struct sockaddr *addr = args->dstaddr;
  1781. struct rpc_xprt *xprt;
  1782. struct sock_xprt *transport;
  1783. xprt = xs_setup_xprt(args, xprt_udp_slot_table_entries);
  1784. if (IS_ERR(xprt))
  1785. return xprt;
  1786. transport = container_of(xprt, struct sock_xprt, xprt);
  1787. xprt->prot = IPPROTO_UDP;
  1788. xprt->tsh_size = 0;
  1789. /* XXX: header size can vary due to auth type, IPv6, etc. */
  1790. xprt->max_payload = (1U << 16) - (MAX_HEADER << 3);
  1791. xprt->bind_timeout = XS_BIND_TO;
  1792. xprt->connect_timeout = XS_UDP_CONN_TO;
  1793. xprt->reestablish_timeout = XS_UDP_REEST_TO;
  1794. xprt->idle_timeout = XS_IDLE_DISC_TO;
  1795. xprt->ops = &xs_udp_ops;
  1796. xprt->timeout = &xs_udp_default_timeout;
  1797. switch (addr->sa_family) {
  1798. case AF_INET:
  1799. if (((struct sockaddr_in *)addr)->sin_port != htons(0))
  1800. xprt_set_bound(xprt);
  1801. INIT_DELAYED_WORK(&transport->connect_worker,
  1802. xs_udp_connect_worker4);
  1803. xs_format_ipv4_peer_addresses(xprt, "udp", RPCBIND_NETID_UDP);
  1804. break;
  1805. case AF_INET6:
  1806. if (((struct sockaddr_in6 *)addr)->sin6_port != htons(0))
  1807. xprt_set_bound(xprt);
  1808. INIT_DELAYED_WORK(&transport->connect_worker,
  1809. xs_udp_connect_worker6);
  1810. xs_format_ipv6_peer_addresses(xprt, "udp", RPCBIND_NETID_UDP6);
  1811. break;
  1812. default:
  1813. kfree(xprt);
  1814. return ERR_PTR(-EAFNOSUPPORT);
  1815. }
  1816. dprintk("RPC: set up transport to address %s\n",
  1817. xprt->address_strings[RPC_DISPLAY_ALL]);
  1818. if (try_module_get(THIS_MODULE))
  1819. return xprt;
  1820. kfree(xprt->slot);
  1821. kfree(xprt);
  1822. return ERR_PTR(-EINVAL);
  1823. }
  1824. static const struct rpc_timeout xs_tcp_default_timeout = {
  1825. .to_initval = 60 * HZ,
  1826. .to_maxval = 60 * HZ,
  1827. .to_retries = 2,
  1828. };
  1829. /**
  1830. * xs_setup_tcp - Set up transport to use a TCP socket
  1831. * @args: rpc transport creation arguments
  1832. *
  1833. */
  1834. static struct rpc_xprt *xs_setup_tcp(struct xprt_create *args)
  1835. {
  1836. struct sockaddr *addr = args->dstaddr;
  1837. struct rpc_xprt *xprt;
  1838. struct sock_xprt *transport;
  1839. xprt = xs_setup_xprt(args, xprt_tcp_slot_table_entries);
  1840. if (IS_ERR(xprt))
  1841. return xprt;
  1842. transport = container_of(xprt, struct sock_xprt, xprt);
  1843. xprt->prot = IPPROTO_TCP;
  1844. xprt->tsh_size = sizeof(rpc_fraghdr) / sizeof(u32);
  1845. xprt->max_payload = RPC_MAX_FRAGMENT_SIZE;
  1846. xprt->bind_timeout = XS_BIND_TO;
  1847. xprt->connect_timeout = XS_TCP_CONN_TO;
  1848. xprt->reestablish_timeout = XS_TCP_INIT_REEST_TO;
  1849. xprt->idle_timeout = XS_IDLE_DISC_TO;
  1850. xprt->ops = &xs_tcp_ops;
  1851. xprt->timeout = &xs_tcp_default_timeout;
  1852. switch (addr->sa_family) {
  1853. case AF_INET:
  1854. if (((struct sockaddr_in *)addr)->sin_port != htons(0))
  1855. xprt_set_bound(xprt);
  1856. INIT_DELAYED_WORK(&transport->connect_worker, xs_tcp_connect_worker4);
  1857. xs_format_ipv4_peer_addresses(xprt, "tcp", RPCBIND_NETID_TCP);
  1858. break;
  1859. case AF_INET6:
  1860. if (((struct sockaddr_in6 *)addr)->sin6_port != htons(0))
  1861. xprt_set_bound(xprt);
  1862. INIT_DELAYED_WORK(&transport->connect_worker, xs_tcp_connect_worker6);
  1863. xs_format_ipv6_peer_addresses(xprt, "tcp", RPCBIND_NETID_TCP6);
  1864. break;
  1865. default:
  1866. kfree(xprt);
  1867. return ERR_PTR(-EAFNOSUPPORT);
  1868. }
  1869. dprintk("RPC: set up transport to address %s\n",
  1870. xprt->address_strings[RPC_DISPLAY_ALL]);
  1871. if (try_module_get(THIS_MODULE))
  1872. return xprt;
  1873. kfree(xprt->slot);
  1874. kfree(xprt);
  1875. return ERR_PTR(-EINVAL);
  1876. }
  1877. static struct xprt_class xs_udp_transport = {
  1878. .list = LIST_HEAD_INIT(xs_udp_transport.list),
  1879. .name = "udp",
  1880. .owner = THIS_MODULE,
  1881. .ident = IPPROTO_UDP,
  1882. .setup = xs_setup_udp,
  1883. };
  1884. static struct xprt_class xs_tcp_transport = {
  1885. .list = LIST_HEAD_INIT(xs_tcp_transport.list),
  1886. .name = "tcp",
  1887. .owner = THIS_MODULE,
  1888. .ident = IPPROTO_TCP,
  1889. .setup = xs_setup_tcp,
  1890. };
  1891. /**
  1892. * init_socket_xprt - set up xprtsock's sysctls, register with RPC client
  1893. *
  1894. */
  1895. int init_socket_xprt(void)
  1896. {
  1897. #ifdef RPC_DEBUG
  1898. if (!sunrpc_table_header)
  1899. sunrpc_table_header = register_sysctl_table(sunrpc_table);
  1900. #endif
  1901. xprt_register_transport(&xs_udp_transport);
  1902. xprt_register_transport(&xs_tcp_transport);
  1903. return 0;
  1904. }
  1905. /**
  1906. * cleanup_socket_xprt - remove xprtsock's sysctls, unregister
  1907. *
  1908. */
  1909. void cleanup_socket_xprt(void)
  1910. {
  1911. #ifdef RPC_DEBUG
  1912. if (sunrpc_table_header) {
  1913. unregister_sysctl_table(sunrpc_table_header);
  1914. sunrpc_table_header = NULL;
  1915. }
  1916. #endif
  1917. xprt_unregister_transport(&xs_udp_transport);
  1918. xprt_unregister_transport(&xs_tcp_transport);
  1919. }