[DLM] Fix memory leak in dlm_add_member() when dlm_node_weight() returns less than...
[deliverable/linux.git] / fs / dlm / lowcomms.c
CommitLineData
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1/******************************************************************************
2*******************************************************************************
3**
4** Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved.
a34fbc63 5** Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
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6**
7** This copyrighted material is made available to anyone wishing to use,
8** modify, copy, or redistribute it subject to the terms and conditions
9** of the GNU General Public License v.2.
10**
11*******************************************************************************
12******************************************************************************/
13
14/*
15 * lowcomms.c
16 *
17 * This is the "low-level" comms layer.
18 *
19 * It is responsible for sending/receiving messages
20 * from other nodes in the cluster.
21 *
22 * Cluster nodes are referred to by their nodeids. nodeids are
23 * simply 32 bit numbers to the locking module - if they need to
24 * be expanded for the cluster infrastructure then that is it's
25 * responsibility. It is this layer's
26 * responsibility to resolve these into IP address or
27 * whatever it needs for inter-node communication.
28 *
29 * The comms level is two kernel threads that deal mainly with
30 * the receiving of messages from other nodes and passing them
31 * up to the mid-level comms layer (which understands the
32 * message format) for execution by the locking core, and
33 * a send thread which does all the setting up of connections
34 * to remote nodes and the sending of data. Threads are not allowed
35 * to send their own data because it may cause them to wait in times
36 * of high load. Also, this way, the sending thread can collect together
37 * messages bound for one node and send them in one block.
38 *
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39 * lowcomms will choose to use wither TCP or SCTP as its transport layer
40 * depending on the configuration variable 'protocol'. This should be set
41 * to 0 (default) for TCP or 1 for SCTP. It shouldbe configured using a
42 * cluster-wide mechanism as it must be the same on all nodes of the cluster
43 * for the DLM to function.
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44 *
45 */
46
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47#include <asm/ioctls.h>
48#include <net/sock.h>
49#include <net/tcp.h>
50#include <linux/pagemap.h>
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51#include <linux/idr.h>
52#include <linux/file.h>
53#include <linux/sctp.h>
54#include <net/sctp/user.h>
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55
56#include "dlm_internal.h"
57#include "lowcomms.h"
58#include "midcomms.h"
59#include "config.h"
60
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61#define NEEDED_RMEM (4*1024*1024)
62
fdda387f 63struct cbuf {
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64 unsigned int base;
65 unsigned int len;
66 unsigned int mask;
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67};
68
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69static void cbuf_add(struct cbuf *cb, int n)
70{
71 cb->len += n;
72}
fdda387f 73
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74static int cbuf_data(struct cbuf *cb)
75{
76 return ((cb->base + cb->len) & cb->mask);
77}
78
79static void cbuf_init(struct cbuf *cb, int size)
80{
81 cb->base = cb->len = 0;
82 cb->mask = size-1;
83}
84
85static void cbuf_eat(struct cbuf *cb, int n)
86{
87 cb->len -= n;
88 cb->base += n;
89 cb->base &= cb->mask;
90}
91
92static bool cbuf_empty(struct cbuf *cb)
93{
94 return cb->len == 0;
95}
fdda387f 96
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97struct connection {
98 struct socket *sock; /* NULL if not connected */
99 uint32_t nodeid; /* So we know who we are in the list */
f1f1c1cc 100 struct mutex sock_mutex;
6ed7257b 101 unsigned long flags;
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102#define CF_READ_PENDING 1
103#define CF_WRITE_PENDING 2
104#define CF_CONNECT_PENDING 3
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105#define CF_INIT_PENDING 4
106#define CF_IS_OTHERCON 5
ac33d071 107 struct list_head writequeue; /* List of outgoing writequeue_entries */
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108 spinlock_t writequeue_lock;
109 int (*rx_action) (struct connection *); /* What to do when active */
6ed7257b 110 void (*connect_action) (struct connection *); /* What to do to connect */
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111 struct page *rx_page;
112 struct cbuf cb;
113 int retries;
fdda387f 114#define MAX_CONNECT_RETRIES 3
6ed7257b 115 int sctp_assoc;
fdda387f 116 struct connection *othercon;
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117 struct work_struct rwork; /* Receive workqueue */
118 struct work_struct swork; /* Send workqueue */
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119};
120#define sock2con(x) ((struct connection *)(x)->sk_user_data)
121
122/* An entry waiting to be sent */
123struct writequeue_entry {
124 struct list_head list;
125 struct page *page;
126 int offset;
127 int len;
128 int end;
129 int users;
130 struct connection *con;
131};
132
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133static struct sockaddr_storage *dlm_local_addr[DLM_MAX_ADDR_COUNT];
134static int dlm_local_count;
fdda387f 135
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136/* Work queues */
137static struct workqueue_struct *recv_workqueue;
138static struct workqueue_struct *send_workqueue;
fdda387f 139
6ed7257b 140static DEFINE_IDR(connections_idr);
ac33d071 141static DECLARE_MUTEX(connections_lock);
6ed7257b 142static int max_nodeid;
c80e7c83 143static struct kmem_cache *con_cache;
fdda387f 144
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145static void process_recv_sockets(struct work_struct *work);
146static void process_send_sockets(struct work_struct *work);
fdda387f 147
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148/*
149 * If 'allocation' is zero then we don't attempt to create a new
150 * connection structure for this node.
151 */
152static struct connection *__nodeid2con(int nodeid, gfp_t alloc)
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153{
154 struct connection *con = NULL;
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155 int r;
156 int n;
fdda387f 157
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158 con = idr_find(&connections_idr, nodeid);
159 if (con || !alloc)
160 return con;
fdda387f 161
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162 r = idr_pre_get(&connections_idr, alloc);
163 if (!r)
164 return NULL;
165
166 con = kmem_cache_zalloc(con_cache, alloc);
167 if (!con)
168 return NULL;
fdda387f 169
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170 r = idr_get_new_above(&connections_idr, con, nodeid, &n);
171 if (r) {
172 kmem_cache_free(con_cache, con);
173 return NULL;
174 }
fdda387f 175
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176 if (n != nodeid) {
177 idr_remove(&connections_idr, n);
178 kmem_cache_free(con_cache, con);
179 return NULL;
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180 }
181
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182 con->nodeid = nodeid;
183 mutex_init(&con->sock_mutex);
184 INIT_LIST_HEAD(&con->writequeue);
185 spin_lock_init(&con->writequeue_lock);
186 INIT_WORK(&con->swork, process_send_sockets);
187 INIT_WORK(&con->rwork, process_recv_sockets);
fdda387f 188
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189 /* Setup action pointers for child sockets */
190 if (con->nodeid) {
191 struct connection *zerocon = idr_find(&connections_idr, 0);
fdda387f 192
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193 con->connect_action = zerocon->connect_action;
194 if (!con->rx_action)
195 con->rx_action = zerocon->rx_action;
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196 }
197
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198 if (nodeid > max_nodeid)
199 max_nodeid = nodeid;
200
201 return con;
202}
203
204static struct connection *nodeid2con(int nodeid, gfp_t allocation)
205{
206 struct connection *con;
207
208 down(&connections_lock);
209 con = __nodeid2con(nodeid, allocation);
fdda387f 210 up(&connections_lock);
6ed7257b 211
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212 return con;
213}
214
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215/* This is a bit drastic, but only called when things go wrong */
216static struct connection *assoc2con(int assoc_id)
217{
218 int i;
219 struct connection *con;
220
221 down(&connections_lock);
30d3a237 222 for (i=0; i<=max_nodeid; i++) {
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223 con = __nodeid2con(i, 0);
224 if (con && con->sctp_assoc == assoc_id) {
225 up(&connections_lock);
226 return con;
227 }
228 }
229 up(&connections_lock);
230 return NULL;
231}
232
233static int nodeid_to_addr(int nodeid, struct sockaddr *retaddr)
234{
235 struct sockaddr_storage addr;
236 int error;
237
238 if (!dlm_local_count)
239 return -1;
240
241 error = dlm_nodeid_to_addr(nodeid, &addr);
242 if (error)
243 return error;
244
245 if (dlm_local_addr[0]->ss_family == AF_INET) {
246 struct sockaddr_in *in4 = (struct sockaddr_in *) &addr;
247 struct sockaddr_in *ret4 = (struct sockaddr_in *) retaddr;
248 ret4->sin_addr.s_addr = in4->sin_addr.s_addr;
249 } else {
250 struct sockaddr_in6 *in6 = (struct sockaddr_in6 *) &addr;
251 struct sockaddr_in6 *ret6 = (struct sockaddr_in6 *) retaddr;
252 memcpy(&ret6->sin6_addr, &in6->sin6_addr,
253 sizeof(in6->sin6_addr));
254 }
255
256 return 0;
257}
258
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259/* Data available on socket or listen socket received a connect */
260static void lowcomms_data_ready(struct sock *sk, int count_unused)
261{
262 struct connection *con = sock2con(sk);
afb853fb 263 if (con && !test_and_set_bit(CF_READ_PENDING, &con->flags))
1d6e8131 264 queue_work(recv_workqueue, &con->rwork);
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265}
266
267static void lowcomms_write_space(struct sock *sk)
268{
269 struct connection *con = sock2con(sk);
270
afb853fb 271 if (con && !test_and_set_bit(CF_WRITE_PENDING, &con->flags))
1d6e8131 272 queue_work(send_workqueue, &con->swork);
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273}
274
275static inline void lowcomms_connect_sock(struct connection *con)
276{
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277 if (!test_and_set_bit(CF_CONNECT_PENDING, &con->flags))
278 queue_work(send_workqueue, &con->swork);
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279}
280
281static void lowcomms_state_change(struct sock *sk)
282{
ac33d071 283 if (sk->sk_state == TCP_ESTABLISHED)
fdda387f 284 lowcomms_write_space(sk);
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285}
286
287/* Make a socket active */
288static int add_sock(struct socket *sock, struct connection *con)
289{
290 con->sock = sock;
291
292 /* Install a data_ready callback */
293 con->sock->sk->sk_data_ready = lowcomms_data_ready;
294 con->sock->sk->sk_write_space = lowcomms_write_space;
295 con->sock->sk->sk_state_change = lowcomms_state_change;
6ed7257b 296 con->sock->sk->sk_user_data = con;
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297 return 0;
298}
299
6ed7257b 300/* Add the port number to an IPv6 or 4 sockaddr and return the address
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301 length */
302static void make_sockaddr(struct sockaddr_storage *saddr, uint16_t port,
303 int *addr_len)
304{
6ed7257b 305 saddr->ss_family = dlm_local_addr[0]->ss_family;
ac33d071 306 if (saddr->ss_family == AF_INET) {
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307 struct sockaddr_in *in4_addr = (struct sockaddr_in *)saddr;
308 in4_addr->sin_port = cpu_to_be16(port);
309 *addr_len = sizeof(struct sockaddr_in);
6ed7257b 310 memset(&in4_addr->sin_zero, 0, sizeof(in4_addr->sin_zero));
ac33d071 311 } else {
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312 struct sockaddr_in6 *in6_addr = (struct sockaddr_in6 *)saddr;
313 in6_addr->sin6_port = cpu_to_be16(port);
314 *addr_len = sizeof(struct sockaddr_in6);
315 }
01c8cab2 316 memset((char *)saddr + *addr_len, 0, sizeof(struct sockaddr_storage) - *addr_len);
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317}
318
319/* Close a remote connection and tidy up */
ac33d071 320static void close_connection(struct connection *con, bool and_other)
fdda387f 321{
f1f1c1cc 322 mutex_lock(&con->sock_mutex);
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323
324 if (con->sock) {
325 sock_release(con->sock);
326 con->sock = NULL;
327 }
328 if (con->othercon && and_other) {
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329 /* Will only re-enter once. */
330 close_connection(con->othercon, false);
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331 kmem_cache_free(con_cache, con->othercon);
332 con->othercon = NULL;
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333 }
334 if (con->rx_page) {
335 __free_page(con->rx_page);
336 con->rx_page = NULL;
337 }
338 con->retries = 0;
f1f1c1cc 339 mutex_unlock(&con->sock_mutex);
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340}
341
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342/* We only send shutdown messages to nodes that are not part of the cluster */
343static void sctp_send_shutdown(sctp_assoc_t associd)
344{
345 static char outcmsg[CMSG_SPACE(sizeof(struct sctp_sndrcvinfo))];
346 struct msghdr outmessage;
347 struct cmsghdr *cmsg;
348 struct sctp_sndrcvinfo *sinfo;
349 int ret;
350 struct connection *con;
351
352 con = nodeid2con(0,0);
353 BUG_ON(con == NULL);
354
355 outmessage.msg_name = NULL;
356 outmessage.msg_namelen = 0;
357 outmessage.msg_control = outcmsg;
358 outmessage.msg_controllen = sizeof(outcmsg);
359 outmessage.msg_flags = MSG_EOR;
360
361 cmsg = CMSG_FIRSTHDR(&outmessage);
362 cmsg->cmsg_level = IPPROTO_SCTP;
363 cmsg->cmsg_type = SCTP_SNDRCV;
364 cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_sndrcvinfo));
365 outmessage.msg_controllen = cmsg->cmsg_len;
366 sinfo = CMSG_DATA(cmsg);
367 memset(sinfo, 0x00, sizeof(struct sctp_sndrcvinfo));
368
369 sinfo->sinfo_flags |= MSG_EOF;
370 sinfo->sinfo_assoc_id = associd;
371
372 ret = kernel_sendmsg(con->sock, &outmessage, NULL, 0, 0);
373
374 if (ret != 0)
375 log_print("send EOF to node failed: %d", ret);
376}
377
378/* INIT failed but we don't know which node...
379 restart INIT on all pending nodes */
380static void sctp_init_failed(void)
381{
382 int i;
383 struct connection *con;
384
385 down(&connections_lock);
386 for (i=1; i<=max_nodeid; i++) {
387 con = __nodeid2con(i, 0);
388 if (!con)
389 continue;
390 con->sctp_assoc = 0;
391 if (test_and_clear_bit(CF_CONNECT_PENDING, &con->flags)) {
392 if (!test_and_set_bit(CF_WRITE_PENDING, &con->flags)) {
393 queue_work(send_workqueue, &con->swork);
394 }
395 }
396 }
397 up(&connections_lock);
398}
399
400/* Something happened to an association */
617e82e1
DT
401static void process_sctp_notification(struct connection *con,
402 struct msghdr *msg, char *buf)
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403{
404 union sctp_notification *sn = (union sctp_notification *)buf;
405
406 if (sn->sn_header.sn_type == SCTP_ASSOC_CHANGE) {
407 switch (sn->sn_assoc_change.sac_state) {
408
409 case SCTP_COMM_UP:
410 case SCTP_RESTART:
411 {
412 /* Check that the new node is in the lockspace */
413 struct sctp_prim prim;
414 int nodeid;
415 int prim_len, ret;
416 int addr_len;
417 struct connection *new_con;
418 struct file *file;
419 sctp_peeloff_arg_t parg;
420 int parglen = sizeof(parg);
421
422 /*
423 * We get this before any data for an association.
424 * We verify that the node is in the cluster and
425 * then peel off a socket for it.
426 */
427 if ((int)sn->sn_assoc_change.sac_assoc_id <= 0) {
428 log_print("COMM_UP for invalid assoc ID %d",
617e82e1 429 (int)sn->sn_assoc_change.sac_assoc_id);
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430 sctp_init_failed();
431 return;
432 }
433 memset(&prim, 0, sizeof(struct sctp_prim));
434 prim_len = sizeof(struct sctp_prim);
435 prim.ssp_assoc_id = sn->sn_assoc_change.sac_assoc_id;
436
437 ret = kernel_getsockopt(con->sock,
438 IPPROTO_SCTP,
439 SCTP_PRIMARY_ADDR,
440 (char*)&prim,
441 &prim_len);
442 if (ret < 0) {
443 log_print("getsockopt/sctp_primary_addr on "
444 "new assoc %d failed : %d",
445 (int)sn->sn_assoc_change.sac_assoc_id,
446 ret);
447
448 /* Retry INIT later */
449 new_con = assoc2con(sn->sn_assoc_change.sac_assoc_id);
450 if (new_con)
451 clear_bit(CF_CONNECT_PENDING, &con->flags);
452 return;
453 }
454 make_sockaddr(&prim.ssp_addr, 0, &addr_len);
455 if (dlm_addr_to_nodeid(&prim.ssp_addr, &nodeid)) {
456 int i;
457 unsigned char *b=(unsigned char *)&prim.ssp_addr;
458 log_print("reject connect from unknown addr");
459 for (i=0; i<sizeof(struct sockaddr_storage);i++)
460 printk("%02x ", b[i]);
461 printk("\n");
462 sctp_send_shutdown(prim.ssp_assoc_id);
463 return;
464 }
465
466 new_con = nodeid2con(nodeid, GFP_KERNEL);
467 if (!new_con)
468 return;
469
470 /* Peel off a new sock */
471 parg.associd = sn->sn_assoc_change.sac_assoc_id;
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DT
472 ret = kernel_getsockopt(con->sock, IPPROTO_SCTP,
473 SCTP_SOCKOPT_PEELOFF,
6ed7257b 474 (void *)&parg, &parglen);
30d3a237 475 if (ret) {
617e82e1
DT
476 log_print("Can't peel off a socket for "
477 "connection %d to node %d: err=%d\n",
6ed7257b 478 parg.associd, nodeid, ret);
6ed7257b 479 }
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480 file = fget(parg.sd);
481 new_con->sock = SOCKET_I(file->f_dentry->d_inode);
482 add_sock(new_con->sock, new_con);
483 fput(file);
484 put_unused_fd(parg.sd);
485
486 log_print("got new/restarted association %d nodeid %d",
617e82e1 487 (int)sn->sn_assoc_change.sac_assoc_id, nodeid);
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488
489 /* Send any pending writes */
490 clear_bit(CF_CONNECT_PENDING, &new_con->flags);
491 clear_bit(CF_INIT_PENDING, &con->flags);
492 if (!test_and_set_bit(CF_WRITE_PENDING, &new_con->flags)) {
493 queue_work(send_workqueue, &new_con->swork);
494 }
495 if (!test_and_set_bit(CF_READ_PENDING, &new_con->flags))
496 queue_work(recv_workqueue, &new_con->rwork);
497 }
498 break;
499
500 case SCTP_COMM_LOST:
501 case SCTP_SHUTDOWN_COMP:
502 {
503 con = assoc2con(sn->sn_assoc_change.sac_assoc_id);
504 if (con) {
505 con->sctp_assoc = 0;
506 }
507 }
508 break;
509
510 /* We don't know which INIT failed, so clear the PENDING flags
511 * on them all. if assoc_id is zero then it will then try
512 * again */
513
514 case SCTP_CANT_STR_ASSOC:
515 {
516 log_print("Can't start SCTP association - retrying");
517 sctp_init_failed();
518 }
519 break;
520
521 default:
522 log_print("unexpected SCTP assoc change id=%d state=%d",
523 (int)sn->sn_assoc_change.sac_assoc_id,
524 sn->sn_assoc_change.sac_state);
525 }
526 }
527}
528
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529/* Data received from remote end */
530static int receive_from_sock(struct connection *con)
531{
532 int ret = 0;
58addbff
AV
533 struct msghdr msg = {};
534 struct kvec iov[2];
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535 unsigned len;
536 int r;
537 int call_again_soon = 0;
58addbff 538 int nvec;
6ed7257b 539 char incmsg[CMSG_SPACE(sizeof(struct sctp_sndrcvinfo))];
fdda387f 540
f1f1c1cc 541 mutex_lock(&con->sock_mutex);
fdda387f 542
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PC
543 if (con->sock == NULL) {
544 ret = -EAGAIN;
545 goto out_close;
546 }
547
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548 if (con->rx_page == NULL) {
549 /*
550 * This doesn't need to be atomic, but I think it should
551 * improve performance if it is.
552 */
553 con->rx_page = alloc_page(GFP_ATOMIC);
554 if (con->rx_page == NULL)
555 goto out_resched;
ac33d071 556 cbuf_init(&con->cb, PAGE_CACHE_SIZE);
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PC
557 }
558
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559 /* Only SCTP needs these really */
560 memset(&incmsg, 0, sizeof(incmsg));
561 msg.msg_control = incmsg;
562 msg.msg_controllen = sizeof(incmsg);
563
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564 /*
565 * iov[0] is the bit of the circular buffer between the current end
566 * point (cb.base + cb.len) and the end of the buffer.
567 */
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568 iov[0].iov_len = con->cb.base - cbuf_data(&con->cb);
569 iov[0].iov_base = page_address(con->rx_page) + cbuf_data(&con->cb);
89adc934 570 iov[1].iov_len = 0;
58addbff 571 nvec = 1;
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572
573 /*
574 * iov[1] is the bit of the circular buffer between the start of the
575 * buffer and the start of the currently used section (cb.base)
576 */
ac33d071
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577 if (cbuf_data(&con->cb) >= con->cb.base) {
578 iov[0].iov_len = PAGE_CACHE_SIZE - cbuf_data(&con->cb);
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579 iov[1].iov_len = con->cb.base;
580 iov[1].iov_base = page_address(con->rx_page);
58addbff 581 nvec = 2;
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PC
582 }
583 len = iov[0].iov_len + iov[1].iov_len;
584
58addbff 585 r = ret = kernel_recvmsg(con->sock, &msg, iov, nvec, len,
fdda387f 586 MSG_DONTWAIT | MSG_NOSIGNAL);
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587 if (ret <= 0)
588 goto out_close;
bd44e2b0 589
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590 /* Process SCTP notifications */
591 if (msg.msg_flags & MSG_NOTIFICATION) {
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PC
592 msg.msg_control = incmsg;
593 msg.msg_controllen = sizeof(incmsg);
594
595 process_sctp_notification(con, &msg,
617e82e1 596 page_address(con->rx_page) + con->cb.base);
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597 mutex_unlock(&con->sock_mutex);
598 return 0;
599 }
600 BUG_ON(con->nodeid == 0);
601
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PC
602 if (ret == len)
603 call_again_soon = 1;
ac33d071 604 cbuf_add(&con->cb, ret);
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605 ret = dlm_process_incoming_buffer(con->nodeid,
606 page_address(con->rx_page),
607 con->cb.base, con->cb.len,
608 PAGE_CACHE_SIZE);
609 if (ret == -EBADMSG) {
617e82e1
DT
610 log_print("lowcomms: addr=%p, base=%u, len=%u, "
611 "iov_len=%u, iov_base[0]=%p, read=%d",
612 page_address(con->rx_page), con->cb.base, con->cb.len,
613 len, iov[0].iov_base, r);
fdda387f
PC
614 }
615 if (ret < 0)
616 goto out_close;
ac33d071 617 cbuf_eat(&con->cb, ret);
fdda387f 618
ac33d071 619 if (cbuf_empty(&con->cb) && !call_again_soon) {
fdda387f
PC
620 __free_page(con->rx_page);
621 con->rx_page = NULL;
622 }
623
fdda387f
PC
624 if (call_again_soon)
625 goto out_resched;
f1f1c1cc 626 mutex_unlock(&con->sock_mutex);
ac33d071 627 return 0;
fdda387f 628
ac33d071 629out_resched:
1d6e8131
PC
630 if (!test_and_set_bit(CF_READ_PENDING, &con->flags))
631 queue_work(recv_workqueue, &con->rwork);
f1f1c1cc 632 mutex_unlock(&con->sock_mutex);
bd44e2b0 633 return -EAGAIN;
fdda387f 634
ac33d071 635out_close:
f1f1c1cc 636 mutex_unlock(&con->sock_mutex);
fdda387f 637 if (ret != -EAGAIN && !test_bit(CF_IS_OTHERCON, &con->flags)) {
ac33d071 638 close_connection(con, false);
fdda387f
PC
639 /* Reconnect when there is something to send */
640 }
a34fbc63
PC
641 /* Don't return success if we really got EOF */
642 if (ret == 0)
643 ret = -EAGAIN;
fdda387f 644
fdda387f
PC
645 return ret;
646}
647
648/* Listening socket is busy, accept a connection */
6ed7257b 649static int tcp_accept_from_sock(struct connection *con)
fdda387f
PC
650{
651 int result;
652 struct sockaddr_storage peeraddr;
653 struct socket *newsock;
654 int len;
655 int nodeid;
656 struct connection *newcon;
bd44e2b0 657 struct connection *addcon;
fdda387f
PC
658
659 memset(&peeraddr, 0, sizeof(peeraddr));
6ed7257b 660 result = sock_create_kern(dlm_local_addr[0]->ss_family, SOCK_STREAM,
ac33d071 661 IPPROTO_TCP, &newsock);
fdda387f
PC
662 if (result < 0)
663 return -ENOMEM;
664
f1f1c1cc 665 mutex_lock_nested(&con->sock_mutex, 0);
fdda387f
PC
666
667 result = -ENOTCONN;
668 if (con->sock == NULL)
669 goto accept_err;
670
671 newsock->type = con->sock->type;
672 newsock->ops = con->sock->ops;
673
674 result = con->sock->ops->accept(con->sock, newsock, O_NONBLOCK);
675 if (result < 0)
676 goto accept_err;
677
678 /* Get the connected socket's peer */
679 memset(&peeraddr, 0, sizeof(peeraddr));
680 if (newsock->ops->getname(newsock, (struct sockaddr *)&peeraddr,
681 &len, 2)) {
682 result = -ECONNABORTED;
683 goto accept_err;
684 }
685
686 /* Get the new node's NODEID */
687 make_sockaddr(&peeraddr, 0, &len);
688 if (dlm_addr_to_nodeid(&peeraddr, &nodeid)) {
617e82e1 689 log_print("connect from non cluster node");
fdda387f 690 sock_release(newsock);
f1f1c1cc 691 mutex_unlock(&con->sock_mutex);
fdda387f
PC
692 return -1;
693 }
694
695 log_print("got connection from %d", nodeid);
696
697 /* Check to see if we already have a connection to this node. This
698 * could happen if the two nodes initiate a connection at roughly
699 * the same time and the connections cross on the wire.
fdda387f
PC
700 * In this case we store the incoming one in "othercon"
701 */
702 newcon = nodeid2con(nodeid, GFP_KERNEL);
703 if (!newcon) {
704 result = -ENOMEM;
705 goto accept_err;
706 }
f1f1c1cc 707 mutex_lock_nested(&newcon->sock_mutex, 1);
fdda387f 708 if (newcon->sock) {
ac33d071 709 struct connection *othercon = newcon->othercon;
fdda387f
PC
710
711 if (!othercon) {
ac33d071 712 othercon = kmem_cache_zalloc(con_cache, GFP_KERNEL);
fdda387f 713 if (!othercon) {
617e82e1 714 log_print("failed to allocate incoming socket");
f1f1c1cc 715 mutex_unlock(&newcon->sock_mutex);
fdda387f
PC
716 result = -ENOMEM;
717 goto accept_err;
718 }
fdda387f
PC
719 othercon->nodeid = nodeid;
720 othercon->rx_action = receive_from_sock;
f1f1c1cc 721 mutex_init(&othercon->sock_mutex);
1d6e8131
PC
722 INIT_WORK(&othercon->swork, process_send_sockets);
723 INIT_WORK(&othercon->rwork, process_recv_sockets);
fdda387f
PC
724 set_bit(CF_IS_OTHERCON, &othercon->flags);
725 newcon->othercon = othercon;
97d84836
PC
726 othercon->sock = newsock;
727 newsock->sk->sk_user_data = othercon;
728 add_sock(newsock, othercon);
729 addcon = othercon;
730 }
731 else {
732 printk("Extra connection from node %d attempted\n", nodeid);
733 result = -EAGAIN;
f4fadb23 734 mutex_unlock(&newcon->sock_mutex);
97d84836 735 goto accept_err;
fdda387f 736 }
fdda387f
PC
737 }
738 else {
739 newsock->sk->sk_user_data = newcon;
740 newcon->rx_action = receive_from_sock;
741 add_sock(newsock, newcon);
bd44e2b0 742 addcon = newcon;
fdda387f
PC
743 }
744
f1f1c1cc 745 mutex_unlock(&newcon->sock_mutex);
fdda387f
PC
746
747 /*
748 * Add it to the active queue in case we got data
749 * beween processing the accept adding the socket
750 * to the read_sockets list
751 */
bd44e2b0
PC
752 if (!test_and_set_bit(CF_READ_PENDING, &addcon->flags))
753 queue_work(recv_workqueue, &addcon->rwork);
f1f1c1cc 754 mutex_unlock(&con->sock_mutex);
fdda387f
PC
755
756 return 0;
757
ac33d071 758accept_err:
f1f1c1cc 759 mutex_unlock(&con->sock_mutex);
fdda387f
PC
760 sock_release(newsock);
761
762 if (result != -EAGAIN)
617e82e1 763 log_print("error accepting connection from node: %d", result);
fdda387f
PC
764 return result;
765}
766
6ed7257b
PC
767static void free_entry(struct writequeue_entry *e)
768{
769 __free_page(e->page);
770 kfree(e);
771}
772
773/* Initiate an SCTP association.
774 This is a special case of send_to_sock() in that we don't yet have a
775 peeled-off socket for this association, so we use the listening socket
776 and add the primary IP address of the remote node.
777 */
778static void sctp_init_assoc(struct connection *con)
779{
780 struct sockaddr_storage rem_addr;
781 char outcmsg[CMSG_SPACE(sizeof(struct sctp_sndrcvinfo))];
782 struct msghdr outmessage;
783 struct cmsghdr *cmsg;
784 struct sctp_sndrcvinfo *sinfo;
785 struct connection *base_con;
786 struct writequeue_entry *e;
787 int len, offset;
788 int ret;
789 int addrlen;
790 struct kvec iov[1];
791
792 if (test_and_set_bit(CF_INIT_PENDING, &con->flags))
793 return;
794
795 if (con->retries++ > MAX_CONNECT_RETRIES)
796 return;
797
798 log_print("Initiating association with node %d", con->nodeid);
799
800 if (nodeid_to_addr(con->nodeid, (struct sockaddr *)&rem_addr)) {
801 log_print("no address for nodeid %d", con->nodeid);
802 return;
803 }
804 base_con = nodeid2con(0, 0);
805 BUG_ON(base_con == NULL);
806
807 make_sockaddr(&rem_addr, dlm_config.ci_tcp_port, &addrlen);
808
809 outmessage.msg_name = &rem_addr;
810 outmessage.msg_namelen = addrlen;
811 outmessage.msg_control = outcmsg;
812 outmessage.msg_controllen = sizeof(outcmsg);
813 outmessage.msg_flags = MSG_EOR;
814
815 spin_lock(&con->writequeue_lock);
816 e = list_entry(con->writequeue.next, struct writequeue_entry,
817 list);
818
819 BUG_ON((struct list_head *) e == &con->writequeue);
820
821 len = e->len;
822 offset = e->offset;
823 spin_unlock(&con->writequeue_lock);
824 kmap(e->page);
825
826 /* Send the first block off the write queue */
827 iov[0].iov_base = page_address(e->page)+offset;
828 iov[0].iov_len = len;
829
830 cmsg = CMSG_FIRSTHDR(&outmessage);
831 cmsg->cmsg_level = IPPROTO_SCTP;
832 cmsg->cmsg_type = SCTP_SNDRCV;
833 cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_sndrcvinfo));
834 sinfo = CMSG_DATA(cmsg);
835 memset(sinfo, 0x00, sizeof(struct sctp_sndrcvinfo));
836 sinfo->sinfo_ppid = cpu_to_le32(dlm_our_nodeid());
837 outmessage.msg_controllen = cmsg->cmsg_len;
838
839 ret = kernel_sendmsg(base_con->sock, &outmessage, iov, 1, len);
840 if (ret < 0) {
617e82e1
DT
841 log_print("Send first packet to node %d failed: %d",
842 con->nodeid, ret);
6ed7257b
PC
843
844 /* Try again later */
845 clear_bit(CF_CONNECT_PENDING, &con->flags);
846 clear_bit(CF_INIT_PENDING, &con->flags);
847 }
848 else {
849 spin_lock(&con->writequeue_lock);
850 e->offset += ret;
851 e->len -= ret;
852
853 if (e->len == 0 && e->users == 0) {
854 list_del(&e->list);
855 kunmap(e->page);
856 free_entry(e);
857 }
858 spin_unlock(&con->writequeue_lock);
859 }
860}
861
fdda387f 862/* Connect a new socket to its peer */
6ed7257b 863static void tcp_connect_to_sock(struct connection *con)
fdda387f
PC
864{
865 int result = -EHOSTUNREACH;
866 struct sockaddr_storage saddr;
867 int addr_len;
868 struct socket *sock;
869
870 if (con->nodeid == 0) {
871 log_print("attempt to connect sock 0 foiled");
ac33d071 872 return;
fdda387f
PC
873 }
874
f1f1c1cc 875 mutex_lock(&con->sock_mutex);
fdda387f
PC
876 if (con->retries++ > MAX_CONNECT_RETRIES)
877 goto out;
878
879 /* Some odd races can cause double-connects, ignore them */
880 if (con->sock) {
881 result = 0;
882 goto out;
883 }
884
885 /* Create a socket to communicate with */
6ed7257b 886 result = sock_create_kern(dlm_local_addr[0]->ss_family, SOCK_STREAM,
ac33d071 887 IPPROTO_TCP, &sock);
fdda387f
PC
888 if (result < 0)
889 goto out_err;
890
891 memset(&saddr, 0, sizeof(saddr));
892 if (dlm_nodeid_to_addr(con->nodeid, &saddr))
ac33d071 893 goto out_err;
fdda387f
PC
894
895 sock->sk->sk_user_data = con;
896 con->rx_action = receive_from_sock;
6ed7257b
PC
897 con->connect_action = tcp_connect_to_sock;
898 add_sock(sock, con);
fdda387f 899
68c817a1 900 make_sockaddr(&saddr, dlm_config.ci_tcp_port, &addr_len);
fdda387f 901
fdda387f
PC
902 log_print("connecting to %d", con->nodeid);
903 result =
904 sock->ops->connect(sock, (struct sockaddr *)&saddr, addr_len,
ac33d071 905 O_NONBLOCK);
fdda387f
PC
906 if (result == -EINPROGRESS)
907 result = 0;
ac33d071
PC
908 if (result == 0)
909 goto out;
fdda387f 910
ac33d071 911out_err:
fdda387f
PC
912 if (con->sock) {
913 sock_release(con->sock);
914 con->sock = NULL;
915 }
916 /*
917 * Some errors are fatal and this list might need adjusting. For other
918 * errors we try again until the max number of retries is reached.
919 */
920 if (result != -EHOSTUNREACH && result != -ENETUNREACH &&
921 result != -ENETDOWN && result != EINVAL
922 && result != -EPROTONOSUPPORT) {
923 lowcomms_connect_sock(con);
924 result = 0;
925 }
ac33d071 926out:
f1f1c1cc 927 mutex_unlock(&con->sock_mutex);
ac33d071 928 return;
fdda387f
PC
929}
930
6ed7257b
PC
931static struct socket *tcp_create_listen_sock(struct connection *con,
932 struct sockaddr_storage *saddr)
fdda387f 933{
ac33d071 934 struct socket *sock = NULL;
fdda387f
PC
935 int result = 0;
936 int one = 1;
937 int addr_len;
938
6ed7257b 939 if (dlm_local_addr[0]->ss_family == AF_INET)
fdda387f
PC
940 addr_len = sizeof(struct sockaddr_in);
941 else
942 addr_len = sizeof(struct sockaddr_in6);
943
944 /* Create a socket to communicate with */
617e82e1
DT
945 result = sock_create_kern(dlm_local_addr[0]->ss_family, SOCK_STREAM,
946 IPPROTO_TCP, &sock);
fdda387f 947 if (result < 0) {
617e82e1 948 log_print("Can't create listening comms socket");
fdda387f
PC
949 goto create_out;
950 }
951
6ed7257b
PC
952 result = kernel_setsockopt(sock, SOL_SOCKET, SO_REUSEADDR,
953 (char *)&one, sizeof(one));
954
fdda387f 955 if (result < 0) {
617e82e1 956 log_print("Failed to set SO_REUSEADDR on socket: %d", result);
fdda387f
PC
957 }
958 sock->sk->sk_user_data = con;
6ed7257b
PC
959 con->rx_action = tcp_accept_from_sock;
960 con->connect_action = tcp_connect_to_sock;
fdda387f
PC
961 con->sock = sock;
962
963 /* Bind to our port */
68c817a1 964 make_sockaddr(saddr, dlm_config.ci_tcp_port, &addr_len);
fdda387f
PC
965 result = sock->ops->bind(sock, (struct sockaddr *) saddr, addr_len);
966 if (result < 0) {
617e82e1 967 log_print("Can't bind to port %d", dlm_config.ci_tcp_port);
fdda387f
PC
968 sock_release(sock);
969 sock = NULL;
970 con->sock = NULL;
971 goto create_out;
972 }
6ed7257b 973 result = kernel_setsockopt(sock, SOL_SOCKET, SO_KEEPALIVE,
ac33d071 974 (char *)&one, sizeof(one));
fdda387f 975 if (result < 0) {
617e82e1 976 log_print("Set keepalive failed: %d", result);
fdda387f
PC
977 }
978
979 result = sock->ops->listen(sock, 5);
980 if (result < 0) {
617e82e1 981 log_print("Can't listen on port %d", dlm_config.ci_tcp_port);
fdda387f
PC
982 sock_release(sock);
983 sock = NULL;
984 goto create_out;
985 }
986
ac33d071 987create_out:
fdda387f
PC
988 return sock;
989}
990
6ed7257b
PC
991/* Get local addresses */
992static void init_local(void)
993{
994 struct sockaddr_storage sas, *addr;
995 int i;
996
30d3a237 997 dlm_local_count = 0;
6ed7257b
PC
998 for (i = 0; i < DLM_MAX_ADDR_COUNT - 1; i++) {
999 if (dlm_our_addr(&sas, i))
1000 break;
1001
1002 addr = kmalloc(sizeof(*addr), GFP_KERNEL);
1003 if (!addr)
1004 break;
1005 memcpy(addr, &sas, sizeof(*addr));
1006 dlm_local_addr[dlm_local_count++] = addr;
1007 }
1008}
1009
617e82e1
DT
1010/* Bind to an IP address. SCTP allows multiple address so it can do
1011 multi-homing */
1012static int add_sctp_bind_addr(struct connection *sctp_con,
1013 struct sockaddr_storage *addr,
1014 int addr_len, int num)
6ed7257b
PC
1015{
1016 int result = 0;
1017
1018 if (num == 1)
1019 result = kernel_bind(sctp_con->sock,
1020 (struct sockaddr *) addr,
1021 addr_len);
1022 else
1023 result = kernel_setsockopt(sctp_con->sock, SOL_SCTP,
1024 SCTP_SOCKOPT_BINDX_ADD,
1025 (char *)addr, addr_len);
1026
1027 if (result < 0)
1028 log_print("Can't bind to port %d addr number %d",
1029 dlm_config.ci_tcp_port, num);
1030
1031 return result;
1032}
fdda387f 1033
6ed7257b
PC
1034/* Initialise SCTP socket and bind to all interfaces */
1035static int sctp_listen_for_all(void)
1036{
1037 struct socket *sock = NULL;
1038 struct sockaddr_storage localaddr;
1039 struct sctp_event_subscribe subscribe;
1040 int result = -EINVAL, num = 1, i, addr_len;
1041 struct connection *con = nodeid2con(0, GFP_KERNEL);
1042 int bufsize = NEEDED_RMEM;
1043
1044 if (!con)
1045 return -ENOMEM;
1046
1047 log_print("Using SCTP for communications");
1048
1049 result = sock_create_kern(dlm_local_addr[0]->ss_family, SOCK_SEQPACKET,
1050 IPPROTO_SCTP, &sock);
1051 if (result < 0) {
1052 log_print("Can't create comms socket, check SCTP is loaded");
1053 goto out;
1054 }
1055
1056 /* Listen for events */
1057 memset(&subscribe, 0, sizeof(subscribe));
1058 subscribe.sctp_data_io_event = 1;
1059 subscribe.sctp_association_event = 1;
1060 subscribe.sctp_send_failure_event = 1;
1061 subscribe.sctp_shutdown_event = 1;
1062 subscribe.sctp_partial_delivery_event = 1;
1063
1064 result = kernel_setsockopt(sock, SOL_SOCKET, SO_RCVBUF,
1065 (char *)&bufsize, sizeof(bufsize));
1066 if (result)
617e82e1 1067 log_print("Error increasing buffer space on socket %d", result);
6ed7257b
PC
1068
1069 result = kernel_setsockopt(sock, SOL_SCTP, SCTP_EVENTS,
617e82e1 1070 (char *)&subscribe, sizeof(subscribe));
6ed7257b
PC
1071 if (result < 0) {
1072 log_print("Failed to set SCTP_EVENTS on socket: result=%d",
1073 result);
1074 goto create_delsock;
1075 }
1076
1077 /* Init con struct */
1078 sock->sk->sk_user_data = con;
1079 con->sock = sock;
1080 con->sock->sk->sk_data_ready = lowcomms_data_ready;
1081 con->rx_action = receive_from_sock;
1082 con->connect_action = sctp_init_assoc;
1083
1084 /* Bind to all interfaces. */
1085 for (i = 0; i < dlm_local_count; i++) {
1086 memcpy(&localaddr, dlm_local_addr[i], sizeof(localaddr));
1087 make_sockaddr(&localaddr, dlm_config.ci_tcp_port, &addr_len);
1088
1089 result = add_sctp_bind_addr(con, &localaddr, addr_len, num);
1090 if (result)
1091 goto create_delsock;
1092 ++num;
1093 }
1094
1095 result = sock->ops->listen(sock, 5);
1096 if (result < 0) {
1097 log_print("Can't set socket listening");
1098 goto create_delsock;
1099 }
1100
1101 return 0;
1102
1103create_delsock:
1104 sock_release(sock);
1105 con->sock = NULL;
1106out:
1107 return result;
1108}
1109
1110static int tcp_listen_for_all(void)
fdda387f
PC
1111{
1112 struct socket *sock = NULL;
1113 struct connection *con = nodeid2con(0, GFP_KERNEL);
1114 int result = -EINVAL;
1115
6ed7257b
PC
1116 if (!con)
1117 return -ENOMEM;
1118
fdda387f 1119 /* We don't support multi-homed hosts */
6ed7257b 1120 if (dlm_local_addr[1] != NULL) {
617e82e1
DT
1121 log_print("TCP protocol can't handle multi-homed hosts, "
1122 "try SCTP");
6ed7257b
PC
1123 return -EINVAL;
1124 }
1125
1126 log_print("Using TCP for communications");
1127
fdda387f
PC
1128 set_bit(CF_IS_OTHERCON, &con->flags);
1129
6ed7257b 1130 sock = tcp_create_listen_sock(con, dlm_local_addr[0]);
fdda387f
PC
1131 if (sock) {
1132 add_sock(sock, con);
1133 result = 0;
1134 }
1135 else {
1136 result = -EADDRINUSE;
1137 }
1138
1139 return result;
1140}
1141
1142
1143
1144static struct writequeue_entry *new_writequeue_entry(struct connection *con,
1145 gfp_t allocation)
1146{
1147 struct writequeue_entry *entry;
1148
1149 entry = kmalloc(sizeof(struct writequeue_entry), allocation);
1150 if (!entry)
1151 return NULL;
1152
1153 entry->page = alloc_page(allocation);
1154 if (!entry->page) {
1155 kfree(entry);
1156 return NULL;
1157 }
1158
1159 entry->offset = 0;
1160 entry->len = 0;
1161 entry->end = 0;
1162 entry->users = 0;
1163 entry->con = con;
1164
1165 return entry;
1166}
1167
617e82e1 1168void *dlm_lowcomms_get_buffer(int nodeid, int len, gfp_t allocation, char **ppc)
fdda387f
PC
1169{
1170 struct connection *con;
1171 struct writequeue_entry *e;
1172 int offset = 0;
1173 int users = 0;
1174
fdda387f
PC
1175 con = nodeid2con(nodeid, allocation);
1176 if (!con)
1177 return NULL;
1178
4edde74e 1179 spin_lock(&con->writequeue_lock);
fdda387f 1180 e = list_entry(con->writequeue.prev, struct writequeue_entry, list);
ac33d071 1181 if ((&e->list == &con->writequeue) ||
fdda387f
PC
1182 (PAGE_CACHE_SIZE - e->end < len)) {
1183 e = NULL;
1184 } else {
1185 offset = e->end;
1186 e->end += len;
1187 users = e->users++;
1188 }
1189 spin_unlock(&con->writequeue_lock);
1190
1191 if (e) {
ac33d071 1192 got_one:
fdda387f
PC
1193 if (users == 0)
1194 kmap(e->page);
1195 *ppc = page_address(e->page) + offset;
1196 return e;
1197 }
1198
1199 e = new_writequeue_entry(con, allocation);
1200 if (e) {
1201 spin_lock(&con->writequeue_lock);
1202 offset = e->end;
1203 e->end += len;
1204 users = e->users++;
1205 list_add_tail(&e->list, &con->writequeue);
1206 spin_unlock(&con->writequeue_lock);
1207 goto got_one;
1208 }
1209 return NULL;
1210}
1211
1212void dlm_lowcomms_commit_buffer(void *mh)
1213{
1214 struct writequeue_entry *e = (struct writequeue_entry *)mh;
1215 struct connection *con = e->con;
1216 int users;
1217
4edde74e 1218 spin_lock(&con->writequeue_lock);
fdda387f
PC
1219 users = --e->users;
1220 if (users)
1221 goto out;
1222 e->len = e->end - e->offset;
1223 kunmap(e->page);
1224 spin_unlock(&con->writequeue_lock);
1225
1d6e8131
PC
1226 if (!test_and_set_bit(CF_WRITE_PENDING, &con->flags)) {
1227 queue_work(send_workqueue, &con->swork);
fdda387f
PC
1228 }
1229 return;
1230
ac33d071 1231out:
fdda387f
PC
1232 spin_unlock(&con->writequeue_lock);
1233 return;
1234}
1235
fdda387f 1236/* Send a message */
ac33d071 1237static void send_to_sock(struct connection *con)
fdda387f
PC
1238{
1239 int ret = 0;
1240 ssize_t(*sendpage) (struct socket *, struct page *, int, size_t, int);
1241 const int msg_flags = MSG_DONTWAIT | MSG_NOSIGNAL;
1242 struct writequeue_entry *e;
1243 int len, offset;
1244
f1f1c1cc 1245 mutex_lock(&con->sock_mutex);
fdda387f
PC
1246 if (con->sock == NULL)
1247 goto out_connect;
1248
1249 sendpage = con->sock->ops->sendpage;
1250
1251 spin_lock(&con->writequeue_lock);
1252 for (;;) {
1253 e = list_entry(con->writequeue.next, struct writequeue_entry,
1254 list);
1255 if ((struct list_head *) e == &con->writequeue)
1256 break;
1257
1258 len = e->len;
1259 offset = e->offset;
1260 BUG_ON(len == 0 && e->users == 0);
1261 spin_unlock(&con->writequeue_lock);
1d6e8131 1262 kmap(e->page);
fdda387f
PC
1263
1264 ret = 0;
1265 if (len) {
1266 ret = sendpage(con->sock, e->page, offset, len,
1267 msg_flags);
1268 if (ret == -EAGAIN || ret == 0)
1269 goto out;
1270 if (ret <= 0)
1271 goto send_error;
617e82e1 1272 } else {
fdda387f 1273 /* Don't starve people filling buffers */
ac33d071 1274 cond_resched();
fdda387f
PC
1275 }
1276
1277 spin_lock(&con->writequeue_lock);
1278 e->offset += ret;
1279 e->len -= ret;
1280
1281 if (e->len == 0 && e->users == 0) {
1282 list_del(&e->list);
ac33d071 1283 kunmap(e->page);
fdda387f
PC
1284 free_entry(e);
1285 continue;
1286 }
1287 }
1288 spin_unlock(&con->writequeue_lock);
ac33d071 1289out:
f1f1c1cc 1290 mutex_unlock(&con->sock_mutex);
ac33d071 1291 return;
fdda387f 1292
ac33d071 1293send_error:
f1f1c1cc 1294 mutex_unlock(&con->sock_mutex);
ac33d071 1295 close_connection(con, false);
fdda387f 1296 lowcomms_connect_sock(con);
ac33d071 1297 return;
fdda387f 1298
ac33d071 1299out_connect:
f1f1c1cc 1300 mutex_unlock(&con->sock_mutex);
6ed7257b
PC
1301 if (!test_bit(CF_INIT_PENDING, &con->flags))
1302 lowcomms_connect_sock(con);
ac33d071 1303 return;
fdda387f
PC
1304}
1305
1306static void clean_one_writequeue(struct connection *con)
1307{
1308 struct list_head *list;
1309 struct list_head *temp;
1310
1311 spin_lock(&con->writequeue_lock);
1312 list_for_each_safe(list, temp, &con->writequeue) {
1313 struct writequeue_entry *e =
1314 list_entry(list, struct writequeue_entry, list);
1315 list_del(&e->list);
1316 free_entry(e);
1317 }
1318 spin_unlock(&con->writequeue_lock);
1319}
1320
1321/* Called from recovery when it knows that a node has
1322 left the cluster */
1323int dlm_lowcomms_close(int nodeid)
1324{
1325 struct connection *con;
1326
fdda387f
PC
1327 log_print("closing connection to node %d", nodeid);
1328 con = nodeid2con(nodeid, 0);
1329 if (con) {
1330 clean_one_writequeue(con);
ac33d071 1331 close_connection(con, true);
fdda387f
PC
1332 }
1333 return 0;
fdda387f
PC
1334}
1335
6ed7257b 1336/* Receive workqueue function */
1d6e8131 1337static void process_recv_sockets(struct work_struct *work)
fdda387f 1338{
1d6e8131
PC
1339 struct connection *con = container_of(work, struct connection, rwork);
1340 int err;
fdda387f 1341
1d6e8131
PC
1342 clear_bit(CF_READ_PENDING, &con->flags);
1343 do {
1344 err = con->rx_action(con);
1345 } while (!err);
fdda387f
PC
1346}
1347
6ed7257b 1348/* Send workqueue function */
1d6e8131 1349static void process_send_sockets(struct work_struct *work)
fdda387f 1350{
1d6e8131 1351 struct connection *con = container_of(work, struct connection, swork);
fdda387f 1352
1d6e8131 1353 if (test_and_clear_bit(CF_CONNECT_PENDING, &con->flags)) {
6ed7257b 1354 con->connect_action(con);
fdda387f 1355 }
bd44e2b0
PC
1356 clear_bit(CF_WRITE_PENDING, &con->flags);
1357 send_to_sock(con);
fdda387f
PC
1358}
1359
1360
1361/* Discard all entries on the write queues */
1362static void clean_writequeues(void)
1363{
1364 int nodeid;
1365
30d3a237
PC
1366 for (nodeid = 1; nodeid <= max_nodeid; nodeid++) {
1367 struct connection *con = __nodeid2con(nodeid, 0);
fdda387f
PC
1368
1369 if (con)
1370 clean_one_writequeue(con);
1371 }
1372}
1373
1d6e8131 1374static void work_stop(void)
fdda387f 1375{
1d6e8131
PC
1376 destroy_workqueue(recv_workqueue);
1377 destroy_workqueue(send_workqueue);
fdda387f
PC
1378}
1379
1d6e8131 1380static int work_start(void)
fdda387f 1381{
fdda387f 1382 int error;
1d6e8131
PC
1383 recv_workqueue = create_workqueue("dlm_recv");
1384 error = IS_ERR(recv_workqueue);
ac33d071 1385 if (error) {
1d6e8131 1386 log_print("can't start dlm_recv %d", error);
fdda387f
PC
1387 return error;
1388 }
fdda387f 1389
1d6e8131
PC
1390 send_workqueue = create_singlethread_workqueue("dlm_send");
1391 error = IS_ERR(send_workqueue);
ac33d071 1392 if (error) {
1d6e8131
PC
1393 log_print("can't start dlm_send %d", error);
1394 destroy_workqueue(recv_workqueue);
fdda387f
PC
1395 return error;
1396 }
fdda387f
PC
1397
1398 return 0;
1399}
1400
fdda387f
PC
1401void dlm_lowcomms_stop(void)
1402{
1403 int i;
6ed7257b 1404 struct connection *con;
fdda387f 1405
ac33d071 1406 /* Set all the flags to prevent any
fdda387f
PC
1407 socket activity.
1408 */
6ed7257b 1409 down(&connections_lock);
30d3a237 1410 for (i = 0; i <= max_nodeid; i++) {
6ed7257b 1411 con = __nodeid2con(i, 0);
afb853fb 1412 if (con) {
6ed7257b 1413 con->flags |= 0xFF;
afb853fb
PC
1414 if (con->sock)
1415 con->sock->sk->sk_user_data = NULL;
1416 }
fdda387f 1417 }
6ed7257b 1418 up(&connections_lock);
ac33d071 1419
1d6e8131 1420 work_stop();
6ed7257b
PC
1421
1422 down(&connections_lock);
fdda387f
PC
1423 clean_writequeues();
1424
30d3a237 1425 for (i = 0; i <= max_nodeid; i++) {
2439fe50 1426 con = __nodeid2con(i, 0);
6ed7257b
PC
1427 if (con) {
1428 close_connection(con, true);
1429 if (con->othercon)
1430 kmem_cache_free(con_cache, con->othercon);
1431 kmem_cache_free(con_cache, con);
fdda387f
PC
1432 }
1433 }
30d3a237 1434 max_nodeid = 0;
6ed7257b 1435 up(&connections_lock);
fdda387f 1436 kmem_cache_destroy(con_cache);
30d3a237 1437 idr_init(&connections_idr);
fdda387f
PC
1438}
1439
fdda387f
PC
1440int dlm_lowcomms_start(void)
1441{
6ed7257b
PC
1442 int error = -EINVAL;
1443 struct connection *con;
fdda387f 1444
6ed7257b
PC
1445 init_local();
1446 if (!dlm_local_count) {
617e82e1 1447 error = -ENOTCONN;
fdda387f 1448 log_print("no local IP address has been set");
6ed7257b 1449 goto out;
fdda387f
PC
1450 }
1451
6ed7257b 1452 error = -ENOMEM;
fdda387f 1453 con_cache = kmem_cache_create("dlm_conn", sizeof(struct connection),
ac33d071 1454 __alignof__(struct connection), 0,
20c2df83 1455 NULL);
fdda387f 1456 if (!con_cache)
6ed7257b 1457 goto out;
fdda387f 1458
6ed7257b
PC
1459 /* Set some sysctl minima */
1460 if (sysctl_rmem_max < NEEDED_RMEM)
1461 sysctl_rmem_max = NEEDED_RMEM;
fdda387f
PC
1462
1463 /* Start listening */
6ed7257b
PC
1464 if (dlm_config.ci_protocol == 0)
1465 error = tcp_listen_for_all();
1466 else
1467 error = sctp_listen_for_all();
fdda387f
PC
1468 if (error)
1469 goto fail_unlisten;
1470
1d6e8131 1471 error = work_start();
fdda387f
PC
1472 if (error)
1473 goto fail_unlisten;
1474
fdda387f
PC
1475 return 0;
1476
ac33d071 1477fail_unlisten:
6ed7257b
PC
1478 con = nodeid2con(0,0);
1479 if (con) {
1480 close_connection(con, false);
1481 kmem_cache_free(con_cache, con);
1482 }
fdda387f
PC
1483 kmem_cache_destroy(con_cache);
1484
ac33d071 1485out:
fdda387f
PC
1486 return error;
1487}
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