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3d14c5d2 1#include <linux/ceph/ceph_debug.h>
31b8006e
SW
2
3#include <linux/crc32c.h>
4#include <linux/ctype.h>
5#include <linux/highmem.h>
6#include <linux/inet.h>
7#include <linux/kthread.h>
8#include <linux/net.h>
5a0e3ad6 9#include <linux/slab.h>
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SW
10#include <linux/socket.h>
11#include <linux/string.h>
68b4476b
YS
12#include <linux/bio.h>
13#include <linux/blkdev.h>
ee3b56f2 14#include <linux/dns_resolver.h>
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SW
15#include <net/tcp.h>
16
3d14c5d2
YS
17#include <linux/ceph/libceph.h>
18#include <linux/ceph/messenger.h>
19#include <linux/ceph/decode.h>
20#include <linux/ceph/pagelist.h>
bc3b2d7f 21#include <linux/export.h>
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SW
22
23/*
24 * Ceph uses the messenger to exchange ceph_msg messages with other
25 * hosts in the system. The messenger provides ordered and reliable
26 * delivery. We tolerate TCP disconnects by reconnecting (with
27 * exponential backoff) in the case of a fault (disconnection, bad
28 * crc, protocol error). Acks allow sent messages to be discarded by
29 * the sender.
30 */
31
32/* static tag bytes (protocol control messages) */
33static char tag_msg = CEPH_MSGR_TAG_MSG;
34static char tag_ack = CEPH_MSGR_TAG_ACK;
35static char tag_keepalive = CEPH_MSGR_TAG_KEEPALIVE;
36
a6a5349d
SW
37#ifdef CONFIG_LOCKDEP
38static struct lock_class_key socket_class;
39#endif
40
84495f49
AE
41/*
42 * When skipping (ignoring) a block of input we read it into a "skip
43 * buffer," which is this many bytes in size.
44 */
45#define SKIP_BUF_SIZE 1024
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46
47static void queue_con(struct ceph_connection *con);
48static void con_work(struct work_struct *);
49static void ceph_fault(struct ceph_connection *con);
50
31b8006e 51/*
f64a9317
AE
52 * Nicely render a sockaddr as a string. An array of formatted
53 * strings is used, to approximate reentrancy.
31b8006e 54 */
f64a9317
AE
55#define ADDR_STR_COUNT_LOG 5 /* log2(# address strings in array) */
56#define ADDR_STR_COUNT (1 << ADDR_STR_COUNT_LOG)
57#define ADDR_STR_COUNT_MASK (ADDR_STR_COUNT - 1)
58#define MAX_ADDR_STR_LEN 64 /* 54 is enough */
59
60static char addr_str[ADDR_STR_COUNT][MAX_ADDR_STR_LEN];
61static atomic_t addr_str_seq = ATOMIC_INIT(0);
31b8006e 62
57666519 63static struct page *zero_page; /* used in certain error cases */
57666519 64
3d14c5d2 65const char *ceph_pr_addr(const struct sockaddr_storage *ss)
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SW
66{
67 int i;
68 char *s;
99f0f3b2
AE
69 struct sockaddr_in *in4 = (struct sockaddr_in *) ss;
70 struct sockaddr_in6 *in6 = (struct sockaddr_in6 *) ss;
31b8006e 71
f64a9317 72 i = atomic_inc_return(&addr_str_seq) & ADDR_STR_COUNT_MASK;
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SW
73 s = addr_str[i];
74
75 switch (ss->ss_family) {
76 case AF_INET:
bd406145
AE
77 snprintf(s, MAX_ADDR_STR_LEN, "%pI4:%hu", &in4->sin_addr,
78 ntohs(in4->sin_port));
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SW
79 break;
80
81 case AF_INET6:
bd406145
AE
82 snprintf(s, MAX_ADDR_STR_LEN, "[%pI6c]:%hu", &in6->sin6_addr,
83 ntohs(in6->sin6_port));
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SW
84 break;
85
86 default:
d3002b97
AE
87 snprintf(s, MAX_ADDR_STR_LEN, "(unknown sockaddr family %hu)",
88 ss->ss_family);
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SW
89 }
90
91 return s;
92}
3d14c5d2 93EXPORT_SYMBOL(ceph_pr_addr);
31b8006e 94
63f2d211
SW
95static void encode_my_addr(struct ceph_messenger *msgr)
96{
97 memcpy(&msgr->my_enc_addr, &msgr->inst.addr, sizeof(msgr->my_enc_addr));
98 ceph_encode_addr(&msgr->my_enc_addr);
99}
100
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SW
101/*
102 * work queue for all reading and writing to/from the socket.
103 */
e0f43c94 104static struct workqueue_struct *ceph_msgr_wq;
31b8006e 105
6173d1f0
AE
106void _ceph_msgr_exit(void)
107{
d3002b97 108 if (ceph_msgr_wq) {
6173d1f0 109 destroy_workqueue(ceph_msgr_wq);
d3002b97
AE
110 ceph_msgr_wq = NULL;
111 }
6173d1f0 112
6173d1f0
AE
113 BUG_ON(zero_page == NULL);
114 kunmap(zero_page);
115 page_cache_release(zero_page);
116 zero_page = NULL;
117}
118
3d14c5d2 119int ceph_msgr_init(void)
31b8006e 120{
57666519
AE
121 BUG_ON(zero_page != NULL);
122 zero_page = ZERO_PAGE(0);
123 page_cache_get(zero_page);
124
f363e45f 125 ceph_msgr_wq = alloc_workqueue("ceph-msgr", WQ_NON_REENTRANT, 0);
6173d1f0
AE
126 if (ceph_msgr_wq)
127 return 0;
57666519 128
6173d1f0
AE
129 pr_err("msgr_init failed to create workqueue\n");
130 _ceph_msgr_exit();
57666519 131
6173d1f0 132 return -ENOMEM;
31b8006e 133}
3d14c5d2 134EXPORT_SYMBOL(ceph_msgr_init);
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135
136void ceph_msgr_exit(void)
137{
57666519 138 BUG_ON(ceph_msgr_wq == NULL);
57666519 139
6173d1f0 140 _ceph_msgr_exit();
31b8006e 141}
3d14c5d2 142EXPORT_SYMBOL(ceph_msgr_exit);
31b8006e 143
cd84db6e 144void ceph_msgr_flush(void)
a922d38f
SW
145{
146 flush_workqueue(ceph_msgr_wq);
147}
3d14c5d2 148EXPORT_SYMBOL(ceph_msgr_flush);
a922d38f
SW
149
150
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151/*
152 * socket callback functions
153 */
154
155/* data available on socket, or listen socket received a connect */
156static void ceph_data_ready(struct sock *sk, int count_unused)
157{
bd406145
AE
158 struct ceph_connection *con = sk->sk_user_data;
159
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SW
160 if (sk->sk_state != TCP_CLOSE_WAIT) {
161 dout("ceph_data_ready on %p state = %lu, queueing work\n",
162 con, con->state);
163 queue_con(con);
164 }
165}
166
167/* socket has buffer space for writing */
168static void ceph_write_space(struct sock *sk)
169{
d3002b97 170 struct ceph_connection *con = sk->sk_user_data;
31b8006e 171
182fac26
JS
172 /* only queue to workqueue if there is data we want to write,
173 * and there is sufficient space in the socket buffer to accept
174 * more data. clear SOCK_NOSPACE so that ceph_write_space()
175 * doesn't get called again until try_write() fills the socket
176 * buffer. See net/ipv4/tcp_input.c:tcp_check_space()
177 * and net/core/stream.c:sk_stream_write_space().
178 */
31b8006e 179 if (test_bit(WRITE_PENDING, &con->state)) {
182fac26
JS
180 if (sk_stream_wspace(sk) >= sk_stream_min_wspace(sk)) {
181 dout("ceph_write_space %p queueing write work\n", con);
182 clear_bit(SOCK_NOSPACE, &sk->sk_socket->flags);
183 queue_con(con);
184 }
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SW
185 } else {
186 dout("ceph_write_space %p nothing to write\n", con);
187 }
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SW
188}
189
190/* socket's state has changed */
191static void ceph_state_change(struct sock *sk)
192{
bd406145 193 struct ceph_connection *con = sk->sk_user_data;
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194
195 dout("ceph_state_change %p state = %lu sk_state = %u\n",
196 con, con->state, sk->sk_state);
197
198 if (test_bit(CLOSED, &con->state))
199 return;
200
201 switch (sk->sk_state) {
202 case TCP_CLOSE:
203 dout("ceph_state_change TCP_CLOSE\n");
204 case TCP_CLOSE_WAIT:
205 dout("ceph_state_change TCP_CLOSE_WAIT\n");
206 if (test_and_set_bit(SOCK_CLOSED, &con->state) == 0) {
207 if (test_bit(CONNECTING, &con->state))
208 con->error_msg = "connection failed";
209 else
210 con->error_msg = "socket closed";
211 queue_con(con);
212 }
213 break;
214 case TCP_ESTABLISHED:
215 dout("ceph_state_change TCP_ESTABLISHED\n");
216 queue_con(con);
217 break;
d3002b97
AE
218 default: /* Everything else is uninteresting */
219 break;
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SW
220 }
221}
222
223/*
224 * set up socket callbacks
225 */
226static void set_sock_callbacks(struct socket *sock,
227 struct ceph_connection *con)
228{
229 struct sock *sk = sock->sk;
bd406145 230 sk->sk_user_data = con;
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SW
231 sk->sk_data_ready = ceph_data_ready;
232 sk->sk_write_space = ceph_write_space;
233 sk->sk_state_change = ceph_state_change;
234}
235
236
237/*
238 * socket helpers
239 */
240
241/*
242 * initiate connection to a remote socket.
243 */
41617d0c 244static int ceph_tcp_connect(struct ceph_connection *con)
31b8006e 245{
f91d3471 246 struct sockaddr_storage *paddr = &con->peer_addr.in_addr;
31b8006e
SW
247 struct socket *sock;
248 int ret;
249
250 BUG_ON(con->sock);
f91d3471
SW
251 ret = sock_create_kern(con->peer_addr.in_addr.ss_family, SOCK_STREAM,
252 IPPROTO_TCP, &sock);
31b8006e 253 if (ret)
41617d0c 254 return ret;
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SW
255 sock->sk->sk_allocation = GFP_NOFS;
256
a6a5349d
SW
257#ifdef CONFIG_LOCKDEP
258 lockdep_set_class(&sock->sk->sk_lock, &socket_class);
259#endif
260
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SW
261 set_sock_callbacks(sock, con);
262
3d14c5d2 263 dout("connect %s\n", ceph_pr_addr(&con->peer_addr.in_addr));
31b8006e 264
f91d3471
SW
265 ret = sock->ops->connect(sock, (struct sockaddr *)paddr, sizeof(*paddr),
266 O_NONBLOCK);
31b8006e
SW
267 if (ret == -EINPROGRESS) {
268 dout("connect %s EINPROGRESS sk_state = %u\n",
3d14c5d2 269 ceph_pr_addr(&con->peer_addr.in_addr),
31b8006e 270 sock->sk->sk_state);
a5bc3129 271 } else if (ret < 0) {
31b8006e 272 pr_err("connect %s error %d\n",
3d14c5d2 273 ceph_pr_addr(&con->peer_addr.in_addr), ret);
31b8006e 274 sock_release(sock);
31b8006e 275 con->error_msg = "connect error";
31b8006e 276
41617d0c 277 return ret;
a5bc3129
AE
278 }
279 con->sock = sock;
280
41617d0c 281 return 0;
31b8006e
SW
282}
283
284static int ceph_tcp_recvmsg(struct socket *sock, void *buf, size_t len)
285{
286 struct kvec iov = {buf, len};
287 struct msghdr msg = { .msg_flags = MSG_DONTWAIT | MSG_NOSIGNAL };
98bdb0aa 288 int r;
31b8006e 289
98bdb0aa
SW
290 r = kernel_recvmsg(sock, &msg, &iov, 1, len, msg.msg_flags);
291 if (r == -EAGAIN)
292 r = 0;
293 return r;
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SW
294}
295
296/*
297 * write something. @more is true if caller will be sending more data
298 * shortly.
299 */
300static int ceph_tcp_sendmsg(struct socket *sock, struct kvec *iov,
301 size_t kvlen, size_t len, int more)
302{
303 struct msghdr msg = { .msg_flags = MSG_DONTWAIT | MSG_NOSIGNAL };
42961d23 304 int r;
31b8006e
SW
305
306 if (more)
307 msg.msg_flags |= MSG_MORE;
308 else
309 msg.msg_flags |= MSG_EOR; /* superfluous, but what the hell */
310
42961d23
SW
311 r = kernel_sendmsg(sock, &msg, iov, kvlen, len);
312 if (r == -EAGAIN)
313 r = 0;
314 return r;
31b8006e
SW
315}
316
31739139
AE
317static int ceph_tcp_sendpage(struct socket *sock, struct page *page,
318 int offset, size_t size, int more)
319{
320 int flags = MSG_DONTWAIT | MSG_NOSIGNAL | (more ? MSG_MORE : MSG_EOR);
321 int ret;
322
323 ret = kernel_sendpage(sock, page, offset, size, flags);
324 if (ret == -EAGAIN)
325 ret = 0;
326
327 return ret;
328}
329
31b8006e
SW
330
331/*
332 * Shutdown/close the socket for the given connection.
333 */
334static int con_close_socket(struct ceph_connection *con)
335{
336 int rc;
337
338 dout("con_close_socket on %p sock %p\n", con, con->sock);
339 if (!con->sock)
340 return 0;
341 set_bit(SOCK_CLOSED, &con->state);
342 rc = con->sock->ops->shutdown(con->sock, SHUT_RDWR);
343 sock_release(con->sock);
344 con->sock = NULL;
345 clear_bit(SOCK_CLOSED, &con->state);
346 return rc;
347}
348
349/*
350 * Reset a connection. Discard all incoming and outgoing messages
351 * and clear *_seq state.
352 */
353static void ceph_msg_remove(struct ceph_msg *msg)
354{
355 list_del_init(&msg->list_head);
356 ceph_msg_put(msg);
357}
358static void ceph_msg_remove_list(struct list_head *head)
359{
360 while (!list_empty(head)) {
361 struct ceph_msg *msg = list_first_entry(head, struct ceph_msg,
362 list_head);
363 ceph_msg_remove(msg);
364 }
365}
366
367static void reset_connection(struct ceph_connection *con)
368{
369 /* reset connection, out_queue, msg_ and connect_seq */
370 /* discard existing out_queue and msg_seq */
31b8006e
SW
371 ceph_msg_remove_list(&con->out_queue);
372 ceph_msg_remove_list(&con->out_sent);
373
cf3e5c40
SW
374 if (con->in_msg) {
375 ceph_msg_put(con->in_msg);
376 con->in_msg = NULL;
377 }
378
31b8006e
SW
379 con->connect_seq = 0;
380 con->out_seq = 0;
c86a2930
SW
381 if (con->out_msg) {
382 ceph_msg_put(con->out_msg);
383 con->out_msg = NULL;
384 }
31b8006e 385 con->in_seq = 0;
0e0d5e0c 386 con->in_seq_acked = 0;
31b8006e
SW
387}
388
389/*
390 * mark a peer down. drop any open connections.
391 */
392void ceph_con_close(struct ceph_connection *con)
393{
3d14c5d2
YS
394 dout("con_close %p peer %s\n", con,
395 ceph_pr_addr(&con->peer_addr.in_addr));
31b8006e
SW
396 set_bit(CLOSED, &con->state); /* in case there's queued work */
397 clear_bit(STANDBY, &con->state); /* avoid connect_seq bump */
1679f876
SW
398 clear_bit(LOSSYTX, &con->state); /* so we retry next connect */
399 clear_bit(KEEPALIVE_PENDING, &con->state);
400 clear_bit(WRITE_PENDING, &con->state);
ec302645 401 mutex_lock(&con->mutex);
31b8006e 402 reset_connection(con);
6f2bc3ff 403 con->peer_global_seq = 0;
91e45ce3 404 cancel_delayed_work(&con->work);
ec302645 405 mutex_unlock(&con->mutex);
31b8006e
SW
406 queue_con(con);
407}
3d14c5d2 408EXPORT_SYMBOL(ceph_con_close);
31b8006e 409
31b8006e
SW
410/*
411 * Reopen a closed connection, with a new peer address.
412 */
413void ceph_con_open(struct ceph_connection *con, struct ceph_entity_addr *addr)
414{
3d14c5d2 415 dout("con_open %p %s\n", con, ceph_pr_addr(&addr->in_addr));
31b8006e
SW
416 set_bit(OPENING, &con->state);
417 clear_bit(CLOSED, &con->state);
418 memcpy(&con->peer_addr, addr, sizeof(*addr));
03c677e1 419 con->delay = 0; /* reset backoff memory */
31b8006e
SW
420 queue_con(con);
421}
3d14c5d2 422EXPORT_SYMBOL(ceph_con_open);
31b8006e 423
87b315a5
SW
424/*
425 * return true if this connection ever successfully opened
426 */
427bool ceph_con_opened(struct ceph_connection *con)
428{
429 return con->connect_seq > 0;
430}
431
31b8006e
SW
432/*
433 * generic get/put
434 */
435struct ceph_connection *ceph_con_get(struct ceph_connection *con)
436{
d3002b97
AE
437 int nref = __atomic_add_unless(&con->nref, 1, 0);
438
439 dout("con_get %p nref = %d -> %d\n", con, nref, nref + 1);
440
441 return nref ? con : NULL;
31b8006e
SW
442}
443
444void ceph_con_put(struct ceph_connection *con)
445{
d3002b97
AE
446 int nref = atomic_dec_return(&con->nref);
447
448 BUG_ON(nref < 0);
449 if (nref == 0) {
71ececda 450 BUG_ON(con->sock);
31b8006e
SW
451 kfree(con);
452 }
d3002b97 453 dout("con_put %p nref = %d -> %d\n", con, nref + 1, nref);
31b8006e
SW
454}
455
456/*
457 * initialize a new connection.
458 */
459void ceph_con_init(struct ceph_messenger *msgr, struct ceph_connection *con)
460{
461 dout("con_init %p\n", con);
462 memset(con, 0, sizeof(*con));
463 atomic_set(&con->nref, 1);
464 con->msgr = msgr;
ec302645 465 mutex_init(&con->mutex);
31b8006e
SW
466 INIT_LIST_HEAD(&con->out_queue);
467 INIT_LIST_HEAD(&con->out_sent);
468 INIT_DELAYED_WORK(&con->work, con_work);
469}
3d14c5d2 470EXPORT_SYMBOL(ceph_con_init);
31b8006e
SW
471
472
473/*
474 * We maintain a global counter to order connection attempts. Get
475 * a unique seq greater than @gt.
476 */
477static u32 get_global_seq(struct ceph_messenger *msgr, u32 gt)
478{
479 u32 ret;
480
481 spin_lock(&msgr->global_seq_lock);
482 if (msgr->global_seq < gt)
483 msgr->global_seq = gt;
484 ret = ++msgr->global_seq;
485 spin_unlock(&msgr->global_seq_lock);
486 return ret;
487}
488
859eb799
AE
489static void ceph_con_out_kvec_reset(struct ceph_connection *con)
490{
491 con->out_kvec_left = 0;
492 con->out_kvec_bytes = 0;
493 con->out_kvec_cur = &con->out_kvec[0];
494}
495
496static void ceph_con_out_kvec_add(struct ceph_connection *con,
497 size_t size, void *data)
498{
499 int index;
500
501 index = con->out_kvec_left;
502 BUG_ON(index >= ARRAY_SIZE(con->out_kvec));
503
504 con->out_kvec[index].iov_len = size;
505 con->out_kvec[index].iov_base = data;
506 con->out_kvec_left++;
507 con->out_kvec_bytes += size;
508}
31b8006e
SW
509
510/*
511 * Prepare footer for currently outgoing message, and finish things
512 * off. Assumes out_kvec* are already valid.. we just add on to the end.
513 */
859eb799 514static void prepare_write_message_footer(struct ceph_connection *con)
31b8006e
SW
515{
516 struct ceph_msg *m = con->out_msg;
859eb799 517 int v = con->out_kvec_left;
31b8006e
SW
518
519 dout("prepare_write_message_footer %p\n", con);
520 con->out_kvec_is_msg = true;
521 con->out_kvec[v].iov_base = &m->footer;
522 con->out_kvec[v].iov_len = sizeof(m->footer);
523 con->out_kvec_bytes += sizeof(m->footer);
524 con->out_kvec_left++;
525 con->out_more = m->more_to_follow;
c86a2930 526 con->out_msg_done = true;
31b8006e
SW
527}
528
529/*
530 * Prepare headers for the next outgoing message.
531 */
532static void prepare_write_message(struct ceph_connection *con)
533{
534 struct ceph_msg *m;
a9a0c51a 535 u32 crc;
31b8006e 536
859eb799 537 ceph_con_out_kvec_reset(con);
31b8006e 538 con->out_kvec_is_msg = true;
c86a2930 539 con->out_msg_done = false;
31b8006e
SW
540
541 /* Sneak an ack in there first? If we can get it into the same
542 * TCP packet that's a good thing. */
543 if (con->in_seq > con->in_seq_acked) {
544 con->in_seq_acked = con->in_seq;
859eb799 545 ceph_con_out_kvec_add(con, sizeof (tag_ack), &tag_ack);
31b8006e 546 con->out_temp_ack = cpu_to_le64(con->in_seq_acked);
859eb799
AE
547 ceph_con_out_kvec_add(con, sizeof (con->out_temp_ack),
548 &con->out_temp_ack);
31b8006e
SW
549 }
550
859eb799 551 m = list_first_entry(&con->out_queue, struct ceph_msg, list_head);
c86a2930 552 con->out_msg = m;
4cf9d544
SW
553
554 /* put message on sent list */
555 ceph_msg_get(m);
556 list_move_tail(&m->list_head, &con->out_sent);
31b8006e 557
e84346b7
SW
558 /*
559 * only assign outgoing seq # if we haven't sent this message
560 * yet. if it is requeued, resend with it's original seq.
561 */
562 if (m->needs_out_seq) {
563 m->hdr.seq = cpu_to_le64(++con->out_seq);
564 m->needs_out_seq = false;
565 }
31b8006e
SW
566
567 dout("prepare_write_message %p seq %lld type %d len %d+%d+%d %d pgs\n",
568 m, con->out_seq, le16_to_cpu(m->hdr.type),
569 le32_to_cpu(m->hdr.front_len), le32_to_cpu(m->hdr.middle_len),
570 le32_to_cpu(m->hdr.data_len),
571 m->nr_pages);
572 BUG_ON(le32_to_cpu(m->hdr.front_len) != m->front.iov_len);
573
574 /* tag + hdr + front + middle */
859eb799
AE
575 ceph_con_out_kvec_add(con, sizeof (tag_msg), &tag_msg);
576 ceph_con_out_kvec_add(con, sizeof (m->hdr), &m->hdr);
577 ceph_con_out_kvec_add(con, m->front.iov_len, m->front.iov_base);
578
31b8006e 579 if (m->middle)
859eb799
AE
580 ceph_con_out_kvec_add(con, m->middle->vec.iov_len,
581 m->middle->vec.iov_base);
31b8006e
SW
582
583 /* fill in crc (except data pages), footer */
a9a0c51a
AE
584 crc = crc32c(0, &m->hdr, offsetof(struct ceph_msg_header, crc));
585 con->out_msg->hdr.crc = cpu_to_le32(crc);
31b8006e 586 con->out_msg->footer.flags = CEPH_MSG_FOOTER_COMPLETE;
a9a0c51a
AE
587
588 crc = crc32c(0, m->front.iov_base, m->front.iov_len);
589 con->out_msg->footer.front_crc = cpu_to_le32(crc);
590 if (m->middle) {
591 crc = crc32c(0, m->middle->vec.iov_base,
592 m->middle->vec.iov_len);
593 con->out_msg->footer.middle_crc = cpu_to_le32(crc);
594 } else
31b8006e
SW
595 con->out_msg->footer.middle_crc = 0;
596 con->out_msg->footer.data_crc = 0;
597 dout("prepare_write_message front_crc %u data_crc %u\n",
598 le32_to_cpu(con->out_msg->footer.front_crc),
599 le32_to_cpu(con->out_msg->footer.middle_crc));
600
601 /* is there a data payload? */
602 if (le32_to_cpu(m->hdr.data_len) > 0) {
603 /* initialize page iterator */
604 con->out_msg_pos.page = 0;
68b4476b 605 if (m->pages)
c5c6b19d 606 con->out_msg_pos.page_pos = m->page_alignment;
68b4476b
YS
607 else
608 con->out_msg_pos.page_pos = 0;
31b8006e 609 con->out_msg_pos.data_pos = 0;
bca064d2 610 con->out_msg_pos.did_page_crc = false;
31b8006e
SW
611 con->out_more = 1; /* data + footer will follow */
612 } else {
613 /* no, queue up footer too and be done */
859eb799 614 prepare_write_message_footer(con);
31b8006e
SW
615 }
616
617 set_bit(WRITE_PENDING, &con->state);
618}
619
620/*
621 * Prepare an ack.
622 */
623static void prepare_write_ack(struct ceph_connection *con)
624{
625 dout("prepare_write_ack %p %llu -> %llu\n", con,
626 con->in_seq_acked, con->in_seq);
627 con->in_seq_acked = con->in_seq;
628
859eb799
AE
629 ceph_con_out_kvec_reset(con);
630
631 ceph_con_out_kvec_add(con, sizeof (tag_ack), &tag_ack);
632
31b8006e 633 con->out_temp_ack = cpu_to_le64(con->in_seq_acked);
859eb799
AE
634 ceph_con_out_kvec_add(con, sizeof (con->out_temp_ack),
635 &con->out_temp_ack);
636
31b8006e
SW
637 con->out_more = 1; /* more will follow.. eventually.. */
638 set_bit(WRITE_PENDING, &con->state);
639}
640
641/*
642 * Prepare to write keepalive byte.
643 */
644static void prepare_write_keepalive(struct ceph_connection *con)
645{
646 dout("prepare_write_keepalive %p\n", con);
859eb799
AE
647 ceph_con_out_kvec_reset(con);
648 ceph_con_out_kvec_add(con, sizeof (tag_keepalive), &tag_keepalive);
31b8006e
SW
649 set_bit(WRITE_PENDING, &con->state);
650}
651
652/*
653 * Connection negotiation.
654 */
655
0da5d703 656static int prepare_connect_authorizer(struct ceph_connection *con)
4e7a5dcd
SW
657{
658 void *auth_buf;
659 int auth_len = 0;
660 int auth_protocol = 0;
661
ec302645 662 mutex_unlock(&con->mutex);
4e7a5dcd
SW
663 if (con->ops->get_authorizer)
664 con->ops->get_authorizer(con, &auth_buf, &auth_len,
665 &auth_protocol, &con->auth_reply_buf,
666 &con->auth_reply_buf_len,
667 con->auth_retry);
ec302645 668 mutex_lock(&con->mutex);
4e7a5dcd 669
0da5d703
SW
670 if (test_bit(CLOSED, &con->state) ||
671 test_bit(OPENING, &con->state))
672 return -EAGAIN;
673
4e7a5dcd
SW
674 con->out_connect.authorizer_protocol = cpu_to_le32(auth_protocol);
675 con->out_connect.authorizer_len = cpu_to_le32(auth_len);
676
859eb799
AE
677 if (auth_len)
678 ceph_con_out_kvec_add(con, auth_len, auth_buf);
679
0da5d703 680 return 0;
4e7a5dcd
SW
681}
682
31b8006e
SW
683/*
684 * We connected to a peer and are saying hello.
685 */
eed0ef2c
SW
686static void prepare_write_banner(struct ceph_messenger *msgr,
687 struct ceph_connection *con)
31b8006e 688{
859eb799
AE
689 ceph_con_out_kvec_reset(con);
690 ceph_con_out_kvec_add(con, strlen(CEPH_BANNER), CEPH_BANNER);
691 ceph_con_out_kvec_add(con, sizeof (msgr->my_enc_addr),
692 &msgr->my_enc_addr);
eed0ef2c 693
eed0ef2c
SW
694 con->out_more = 0;
695 set_bit(WRITE_PENDING, &con->state);
696}
697
0da5d703
SW
698static int prepare_write_connect(struct ceph_messenger *msgr,
699 struct ceph_connection *con,
963be4d7 700 int include_banner)
eed0ef2c 701{
31b8006e
SW
702 unsigned global_seq = get_global_seq(con->msgr, 0);
703 int proto;
704
705 switch (con->peer_name.type) {
706 case CEPH_ENTITY_TYPE_MON:
707 proto = CEPH_MONC_PROTOCOL;
708 break;
709 case CEPH_ENTITY_TYPE_OSD:
710 proto = CEPH_OSDC_PROTOCOL;
711 break;
712 case CEPH_ENTITY_TYPE_MDS:
713 proto = CEPH_MDSC_PROTOCOL;
714 break;
715 default:
716 BUG();
717 }
718
719 dout("prepare_write_connect %p cseq=%d gseq=%d proto=%d\n", con,
720 con->connect_seq, global_seq, proto);
4e7a5dcd 721
3d14c5d2 722 con->out_connect.features = cpu_to_le64(msgr->supported_features);
31b8006e
SW
723 con->out_connect.host_type = cpu_to_le32(CEPH_ENTITY_TYPE_CLIENT);
724 con->out_connect.connect_seq = cpu_to_le32(con->connect_seq);
725 con->out_connect.global_seq = cpu_to_le32(global_seq);
726 con->out_connect.protocol_version = cpu_to_le32(proto);
727 con->out_connect.flags = 0;
31b8006e 728
963be4d7
AE
729 if (include_banner)
730 prepare_write_banner(msgr, con);
859eb799
AE
731 else
732 ceph_con_out_kvec_reset(con);
733 ceph_con_out_kvec_add(con, sizeof (con->out_connect), &con->out_connect);
734
31b8006e
SW
735 con->out_more = 0;
736 set_bit(WRITE_PENDING, &con->state);
4e7a5dcd 737
0da5d703 738 return prepare_connect_authorizer(con);
31b8006e
SW
739}
740
31b8006e
SW
741/*
742 * write as much of pending kvecs to the socket as we can.
743 * 1 -> done
744 * 0 -> socket full, but more to do
745 * <0 -> error
746 */
747static int write_partial_kvec(struct ceph_connection *con)
748{
749 int ret;
750
751 dout("write_partial_kvec %p %d left\n", con, con->out_kvec_bytes);
752 while (con->out_kvec_bytes > 0) {
753 ret = ceph_tcp_sendmsg(con->sock, con->out_kvec_cur,
754 con->out_kvec_left, con->out_kvec_bytes,
755 con->out_more);
756 if (ret <= 0)
757 goto out;
758 con->out_kvec_bytes -= ret;
759 if (con->out_kvec_bytes == 0)
760 break; /* done */
f42299e6
AE
761
762 /* account for full iov entries consumed */
763 while (ret >= con->out_kvec_cur->iov_len) {
764 BUG_ON(!con->out_kvec_left);
765 ret -= con->out_kvec_cur->iov_len;
766 con->out_kvec_cur++;
767 con->out_kvec_left--;
768 }
769 /* and for a partially-consumed entry */
770 if (ret) {
771 con->out_kvec_cur->iov_len -= ret;
772 con->out_kvec_cur->iov_base += ret;
31b8006e
SW
773 }
774 }
775 con->out_kvec_left = 0;
776 con->out_kvec_is_msg = false;
777 ret = 1;
778out:
779 dout("write_partial_kvec %p %d left in %d kvecs ret = %d\n", con,
780 con->out_kvec_bytes, con->out_kvec_left, ret);
781 return ret; /* done! */
782}
783
68b4476b
YS
784#ifdef CONFIG_BLOCK
785static void init_bio_iter(struct bio *bio, struct bio **iter, int *seg)
786{
787 if (!bio) {
788 *iter = NULL;
789 *seg = 0;
790 return;
791 }
792 *iter = bio;
793 *seg = bio->bi_idx;
794}
795
796static void iter_bio_next(struct bio **bio_iter, int *seg)
797{
798 if (*bio_iter == NULL)
799 return;
800
801 BUG_ON(*seg >= (*bio_iter)->bi_vcnt);
802
803 (*seg)++;
804 if (*seg == (*bio_iter)->bi_vcnt)
805 init_bio_iter((*bio_iter)->bi_next, bio_iter, seg);
806}
807#endif
808
31b8006e
SW
809/*
810 * Write as much message data payload as we can. If we finish, queue
811 * up the footer.
812 * 1 -> done, footer is now queued in out_kvec[].
813 * 0 -> socket full, but more to do
814 * <0 -> error
815 */
816static int write_partial_msg_pages(struct ceph_connection *con)
817{
818 struct ceph_msg *msg = con->out_msg;
819 unsigned data_len = le32_to_cpu(msg->hdr.data_len);
820 size_t len;
37675b0f 821 bool do_datacrc = !con->msgr->nocrc;
31b8006e 822 int ret;
68b4476b
YS
823 int total_max_write;
824 int in_trail = 0;
825 size_t trail_len = (msg->trail ? msg->trail->length : 0);
31b8006e
SW
826
827 dout("write_partial_msg_pages %p msg %p page %d/%d offset %d\n",
828 con, con->out_msg, con->out_msg_pos.page, con->out_msg->nr_pages,
829 con->out_msg_pos.page_pos);
830
68b4476b
YS
831#ifdef CONFIG_BLOCK
832 if (msg->bio && !msg->bio_iter)
833 init_bio_iter(msg->bio, &msg->bio_iter, &msg->bio_seg);
834#endif
835
836 while (data_len > con->out_msg_pos.data_pos) {
31b8006e 837 struct page *page = NULL;
68b4476b 838 int max_write = PAGE_SIZE;
9bd19663 839 int bio_offset = 0;
68b4476b
YS
840
841 total_max_write = data_len - trail_len -
842 con->out_msg_pos.data_pos;
31b8006e
SW
843
844 /*
845 * if we are calculating the data crc (the default), we need
846 * to map the page. if our pages[] has been revoked, use the
847 * zero page.
848 */
68b4476b
YS
849
850 /* have we reached the trail part of the data? */
851 if (con->out_msg_pos.data_pos >= data_len - trail_len) {
852 in_trail = 1;
853
854 total_max_write = data_len - con->out_msg_pos.data_pos;
855
856 page = list_first_entry(&msg->trail->head,
857 struct page, lru);
68b4476b
YS
858 max_write = PAGE_SIZE;
859 } else if (msg->pages) {
31b8006e 860 page = msg->pages[con->out_msg_pos.page];
58bb3b37
SW
861 } else if (msg->pagelist) {
862 page = list_first_entry(&msg->pagelist->head,
863 struct page, lru);
68b4476b
YS
864#ifdef CONFIG_BLOCK
865 } else if (msg->bio) {
866 struct bio_vec *bv;
867
868 bv = bio_iovec_idx(msg->bio_iter, msg->bio_seg);
869 page = bv->bv_page;
9bd19663 870 bio_offset = bv->bv_offset;
68b4476b
YS
871 max_write = bv->bv_len;
872#endif
31b8006e 873 } else {
57666519 874 page = zero_page;
31b8006e 875 }
68b4476b
YS
876 len = min_t(int, max_write - con->out_msg_pos.page_pos,
877 total_max_write);
878
37675b0f 879 if (do_datacrc && !con->out_msg_pos.did_page_crc) {
9bd19663 880 void *base;
a9a0c51a 881 u32 crc;
31b8006e 882 u32 tmpcrc = le32_to_cpu(con->out_msg->footer.data_crc);
8d63e318 883 char *kaddr;
31b8006e 884
8d63e318 885 kaddr = kmap(page);
31b8006e 886 BUG_ON(kaddr == NULL);
9bd19663 887 base = kaddr + con->out_msg_pos.page_pos + bio_offset;
a9a0c51a
AE
888 crc = crc32c(tmpcrc, base, len);
889 con->out_msg->footer.data_crc = cpu_to_le32(crc);
bca064d2 890 con->out_msg_pos.did_page_crc = true;
31b8006e 891 }
e36b13cc 892 ret = ceph_tcp_sendpage(con->sock, page,
9bd19663 893 con->out_msg_pos.page_pos + bio_offset,
e36b13cc 894 len, 1);
31b8006e 895
0cdf9e60 896 if (do_datacrc)
31b8006e
SW
897 kunmap(page);
898
899 if (ret <= 0)
900 goto out;
901
902 con->out_msg_pos.data_pos += ret;
903 con->out_msg_pos.page_pos += ret;
904 if (ret == len) {
905 con->out_msg_pos.page_pos = 0;
906 con->out_msg_pos.page++;
bca064d2 907 con->out_msg_pos.did_page_crc = false;
68b4476b
YS
908 if (in_trail)
909 list_move_tail(&page->lru,
910 &msg->trail->head);
911 else if (msg->pagelist)
58bb3b37
SW
912 list_move_tail(&page->lru,
913 &msg->pagelist->head);
68b4476b
YS
914#ifdef CONFIG_BLOCK
915 else if (msg->bio)
916 iter_bio_next(&msg->bio_iter, &msg->bio_seg);
917#endif
31b8006e
SW
918 }
919 }
920
921 dout("write_partial_msg_pages %p msg %p done\n", con, msg);
922
923 /* prepare and queue up footer, too */
37675b0f 924 if (!do_datacrc)
31b8006e 925 con->out_msg->footer.flags |= CEPH_MSG_FOOTER_NOCRC;
859eb799
AE
926 ceph_con_out_kvec_reset(con);
927 prepare_write_message_footer(con);
31b8006e
SW
928 ret = 1;
929out:
930 return ret;
931}
932
933/*
934 * write some zeros
935 */
936static int write_partial_skip(struct ceph_connection *con)
937{
938 int ret;
939
940 while (con->out_skip > 0) {
31739139 941 size_t size = min(con->out_skip, (int) PAGE_CACHE_SIZE);
31b8006e 942
31739139 943 ret = ceph_tcp_sendpage(con->sock, zero_page, 0, size, 1);
31b8006e
SW
944 if (ret <= 0)
945 goto out;
946 con->out_skip -= ret;
947 }
948 ret = 1;
949out:
950 return ret;
951}
952
953/*
954 * Prepare to read connection handshake, or an ack.
955 */
eed0ef2c
SW
956static void prepare_read_banner(struct ceph_connection *con)
957{
958 dout("prepare_read_banner %p\n", con);
959 con->in_base_pos = 0;
960}
961
31b8006e
SW
962static void prepare_read_connect(struct ceph_connection *con)
963{
964 dout("prepare_read_connect %p\n", con);
965 con->in_base_pos = 0;
966}
967
968static void prepare_read_ack(struct ceph_connection *con)
969{
970 dout("prepare_read_ack %p\n", con);
971 con->in_base_pos = 0;
972}
973
974static void prepare_read_tag(struct ceph_connection *con)
975{
976 dout("prepare_read_tag %p\n", con);
977 con->in_base_pos = 0;
978 con->in_tag = CEPH_MSGR_TAG_READY;
979}
980
981/*
982 * Prepare to read a message.
983 */
984static int prepare_read_message(struct ceph_connection *con)
985{
986 dout("prepare_read_message %p\n", con);
987 BUG_ON(con->in_msg != NULL);
988 con->in_base_pos = 0;
989 con->in_front_crc = con->in_middle_crc = con->in_data_crc = 0;
990 return 0;
991}
992
993
994static int read_partial(struct ceph_connection *con,
e6cee71f 995 int to, int size, void *object)
31b8006e 996{
e6cee71f
AE
997 int end = to + size;
998
999 while (con->in_base_pos < end) {
1000 int left = end - con->in_base_pos;
31b8006e
SW
1001 int have = size - left;
1002 int ret = ceph_tcp_recvmsg(con->sock, object + have, left);
1003 if (ret <= 0)
1004 return ret;
1005 con->in_base_pos += ret;
1006 }
1007 return 1;
1008}
1009
1010
1011/*
1012 * Read all or part of the connect-side handshake on a new connection
1013 */
eed0ef2c 1014static int read_partial_banner(struct ceph_connection *con)
31b8006e
SW
1015{
1016 int ret, to = 0;
1017
eed0ef2c 1018 dout("read_partial_banner %p at %d\n", con, con->in_base_pos);
31b8006e
SW
1019
1020 /* peer's banner */
e6cee71f 1021 ret = read_partial(con, to, strlen(CEPH_BANNER), con->in_banner);
31b8006e
SW
1022 if (ret <= 0)
1023 goto out;
e6cee71f
AE
1024 to += strlen(CEPH_BANNER);
1025 ret = read_partial(con, to, sizeof(con->actual_peer_addr),
31b8006e
SW
1026 &con->actual_peer_addr);
1027 if (ret <= 0)
1028 goto out;
e6cee71f
AE
1029 to += sizeof(con->actual_peer_addr);
1030 ret = read_partial(con, to, sizeof(con->peer_addr_for_me),
31b8006e
SW
1031 &con->peer_addr_for_me);
1032 if (ret <= 0)
1033 goto out;
eed0ef2c
SW
1034out:
1035 return ret;
1036}
1037
1038static int read_partial_connect(struct ceph_connection *con)
1039{
1040 int ret, to = 0;
1041
1042 dout("read_partial_connect %p at %d\n", con, con->in_base_pos);
1043
e6cee71f 1044 ret = read_partial(con, to, sizeof(con->in_reply), &con->in_reply);
31b8006e
SW
1045 if (ret <= 0)
1046 goto out;
e6cee71f
AE
1047 to += sizeof(con->in_reply);
1048 ret = read_partial(con, to, le32_to_cpu(con->in_reply.authorizer_len),
4e7a5dcd
SW
1049 con->auth_reply_buf);
1050 if (ret <= 0)
1051 goto out;
31b8006e 1052
4e7a5dcd
SW
1053 dout("read_partial_connect %p tag %d, con_seq = %u, g_seq = %u\n",
1054 con, (int)con->in_reply.tag,
1055 le32_to_cpu(con->in_reply.connect_seq),
31b8006e
SW
1056 le32_to_cpu(con->in_reply.global_seq));
1057out:
1058 return ret;
eed0ef2c 1059
31b8006e
SW
1060}
1061
1062/*
1063 * Verify the hello banner looks okay.
1064 */
1065static int verify_hello(struct ceph_connection *con)
1066{
1067 if (memcmp(con->in_banner, CEPH_BANNER, strlen(CEPH_BANNER))) {
13e38c8a 1068 pr_err("connect to %s got bad banner\n",
3d14c5d2 1069 ceph_pr_addr(&con->peer_addr.in_addr));
31b8006e
SW
1070 con->error_msg = "protocol error, bad banner";
1071 return -1;
1072 }
1073 return 0;
1074}
1075
1076static bool addr_is_blank(struct sockaddr_storage *ss)
1077{
1078 switch (ss->ss_family) {
1079 case AF_INET:
1080 return ((struct sockaddr_in *)ss)->sin_addr.s_addr == 0;
1081 case AF_INET6:
1082 return
1083 ((struct sockaddr_in6 *)ss)->sin6_addr.s6_addr32[0] == 0 &&
1084 ((struct sockaddr_in6 *)ss)->sin6_addr.s6_addr32[1] == 0 &&
1085 ((struct sockaddr_in6 *)ss)->sin6_addr.s6_addr32[2] == 0 &&
1086 ((struct sockaddr_in6 *)ss)->sin6_addr.s6_addr32[3] == 0;
1087 }
1088 return false;
1089}
1090
1091static int addr_port(struct sockaddr_storage *ss)
1092{
1093 switch (ss->ss_family) {
1094 case AF_INET:
f28bcfbe 1095 return ntohs(((struct sockaddr_in *)ss)->sin_port);
31b8006e 1096 case AF_INET6:
f28bcfbe 1097 return ntohs(((struct sockaddr_in6 *)ss)->sin6_port);
31b8006e
SW
1098 }
1099 return 0;
1100}
1101
1102static void addr_set_port(struct sockaddr_storage *ss, int p)
1103{
1104 switch (ss->ss_family) {
1105 case AF_INET:
1106 ((struct sockaddr_in *)ss)->sin_port = htons(p);
a2a79609 1107 break;
31b8006e
SW
1108 case AF_INET6:
1109 ((struct sockaddr_in6 *)ss)->sin6_port = htons(p);
a2a79609 1110 break;
31b8006e
SW
1111 }
1112}
1113
ee3b56f2
NW
1114/*
1115 * Unlike other *_pton function semantics, zero indicates success.
1116 */
1117static int ceph_pton(const char *str, size_t len, struct sockaddr_storage *ss,
1118 char delim, const char **ipend)
1119{
99f0f3b2
AE
1120 struct sockaddr_in *in4 = (struct sockaddr_in *) ss;
1121 struct sockaddr_in6 *in6 = (struct sockaddr_in6 *) ss;
ee3b56f2
NW
1122
1123 memset(ss, 0, sizeof(*ss));
1124
1125 if (in4_pton(str, len, (u8 *)&in4->sin_addr.s_addr, delim, ipend)) {
1126 ss->ss_family = AF_INET;
1127 return 0;
1128 }
1129
1130 if (in6_pton(str, len, (u8 *)&in6->sin6_addr.s6_addr, delim, ipend)) {
1131 ss->ss_family = AF_INET6;
1132 return 0;
1133 }
1134
1135 return -EINVAL;
1136}
1137
1138/*
1139 * Extract hostname string and resolve using kernel DNS facility.
1140 */
1141#ifdef CONFIG_CEPH_LIB_USE_DNS_RESOLVER
1142static int ceph_dns_resolve_name(const char *name, size_t namelen,
1143 struct sockaddr_storage *ss, char delim, const char **ipend)
1144{
1145 const char *end, *delim_p;
1146 char *colon_p, *ip_addr = NULL;
1147 int ip_len, ret;
1148
1149 /*
1150 * The end of the hostname occurs immediately preceding the delimiter or
1151 * the port marker (':') where the delimiter takes precedence.
1152 */
1153 delim_p = memchr(name, delim, namelen);
1154 colon_p = memchr(name, ':', namelen);
1155
1156 if (delim_p && colon_p)
1157 end = delim_p < colon_p ? delim_p : colon_p;
1158 else if (!delim_p && colon_p)
1159 end = colon_p;
1160 else {
1161 end = delim_p;
1162 if (!end) /* case: hostname:/ */
1163 end = name + namelen;
1164 }
1165
1166 if (end <= name)
1167 return -EINVAL;
1168
1169 /* do dns_resolve upcall */
1170 ip_len = dns_query(NULL, name, end - name, NULL, &ip_addr, NULL);
1171 if (ip_len > 0)
1172 ret = ceph_pton(ip_addr, ip_len, ss, -1, NULL);
1173 else
1174 ret = -ESRCH;
1175
1176 kfree(ip_addr);
1177
1178 *ipend = end;
1179
1180 pr_info("resolve '%.*s' (ret=%d): %s\n", (int)(end - name), name,
1181 ret, ret ? "failed" : ceph_pr_addr(ss));
1182
1183 return ret;
1184}
1185#else
1186static inline int ceph_dns_resolve_name(const char *name, size_t namelen,
1187 struct sockaddr_storage *ss, char delim, const char **ipend)
1188{
1189 return -EINVAL;
1190}
1191#endif
1192
1193/*
1194 * Parse a server name (IP or hostname). If a valid IP address is not found
1195 * then try to extract a hostname to resolve using userspace DNS upcall.
1196 */
1197static int ceph_parse_server_name(const char *name, size_t namelen,
1198 struct sockaddr_storage *ss, char delim, const char **ipend)
1199{
1200 int ret;
1201
1202 ret = ceph_pton(name, namelen, ss, delim, ipend);
1203 if (ret)
1204 ret = ceph_dns_resolve_name(name, namelen, ss, delim, ipend);
1205
1206 return ret;
1207}
1208
31b8006e
SW
1209/*
1210 * Parse an ip[:port] list into an addr array. Use the default
1211 * monitor port if a port isn't specified.
1212 */
1213int ceph_parse_ips(const char *c, const char *end,
1214 struct ceph_entity_addr *addr,
1215 int max_count, int *count)
1216{
ee3b56f2 1217 int i, ret = -EINVAL;
31b8006e
SW
1218 const char *p = c;
1219
1220 dout("parse_ips on '%.*s'\n", (int)(end-c), c);
1221 for (i = 0; i < max_count; i++) {
1222 const char *ipend;
1223 struct sockaddr_storage *ss = &addr[i].in_addr;
31b8006e 1224 int port;
39139f64
SW
1225 char delim = ',';
1226
1227 if (*p == '[') {
1228 delim = ']';
1229 p++;
1230 }
31b8006e 1231
ee3b56f2
NW
1232 ret = ceph_parse_server_name(p, end - p, ss, delim, &ipend);
1233 if (ret)
31b8006e 1234 goto bad;
ee3b56f2
NW
1235 ret = -EINVAL;
1236
31b8006e
SW
1237 p = ipend;
1238
39139f64
SW
1239 if (delim == ']') {
1240 if (*p != ']') {
1241 dout("missing matching ']'\n");
1242 goto bad;
1243 }
1244 p++;
1245 }
1246
31b8006e
SW
1247 /* port? */
1248 if (p < end && *p == ':') {
1249 port = 0;
1250 p++;
1251 while (p < end && *p >= '0' && *p <= '9') {
1252 port = (port * 10) + (*p - '0');
1253 p++;
1254 }
1255 if (port > 65535 || port == 0)
1256 goto bad;
1257 } else {
1258 port = CEPH_MON_PORT;
1259 }
1260
1261 addr_set_port(ss, port);
1262
3d14c5d2 1263 dout("parse_ips got %s\n", ceph_pr_addr(ss));
31b8006e
SW
1264
1265 if (p == end)
1266 break;
1267 if (*p != ',')
1268 goto bad;
1269 p++;
1270 }
1271
1272 if (p != end)
1273 goto bad;
1274
1275 if (count)
1276 *count = i + 1;
1277 return 0;
1278
1279bad:
39139f64 1280 pr_err("parse_ips bad ip '%.*s'\n", (int)(end - c), c);
ee3b56f2 1281 return ret;
31b8006e 1282}
3d14c5d2 1283EXPORT_SYMBOL(ceph_parse_ips);
31b8006e 1284
eed0ef2c 1285static int process_banner(struct ceph_connection *con)
31b8006e 1286{
eed0ef2c 1287 dout("process_banner on %p\n", con);
31b8006e
SW
1288
1289 if (verify_hello(con) < 0)
1290 return -1;
1291
63f2d211
SW
1292 ceph_decode_addr(&con->actual_peer_addr);
1293 ceph_decode_addr(&con->peer_addr_for_me);
1294
31b8006e
SW
1295 /*
1296 * Make sure the other end is who we wanted. note that the other
1297 * end may not yet know their ip address, so if it's 0.0.0.0, give
1298 * them the benefit of the doubt.
1299 */
103e2d3a
SW
1300 if (memcmp(&con->peer_addr, &con->actual_peer_addr,
1301 sizeof(con->peer_addr)) != 0 &&
31b8006e
SW
1302 !(addr_is_blank(&con->actual_peer_addr.in_addr) &&
1303 con->actual_peer_addr.nonce == con->peer_addr.nonce)) {
cd84db6e 1304 pr_warning("wrong peer, want %s/%d, got %s/%d\n",
3d14c5d2 1305 ceph_pr_addr(&con->peer_addr.in_addr),
cd84db6e 1306 (int)le32_to_cpu(con->peer_addr.nonce),
3d14c5d2 1307 ceph_pr_addr(&con->actual_peer_addr.in_addr),
cd84db6e 1308 (int)le32_to_cpu(con->actual_peer_addr.nonce));
58bb3b37 1309 con->error_msg = "wrong peer at address";
31b8006e
SW
1310 return -1;
1311 }
1312
1313 /*
1314 * did we learn our address?
1315 */
1316 if (addr_is_blank(&con->msgr->inst.addr.in_addr)) {
1317 int port = addr_port(&con->msgr->inst.addr.in_addr);
1318
1319 memcpy(&con->msgr->inst.addr.in_addr,
1320 &con->peer_addr_for_me.in_addr,
1321 sizeof(con->peer_addr_for_me.in_addr));
1322 addr_set_port(&con->msgr->inst.addr.in_addr, port);
63f2d211 1323 encode_my_addr(con->msgr);
eed0ef2c 1324 dout("process_banner learned my addr is %s\n",
3d14c5d2 1325 ceph_pr_addr(&con->msgr->inst.addr.in_addr));
31b8006e
SW
1326 }
1327
eed0ef2c
SW
1328 set_bit(NEGOTIATING, &con->state);
1329 prepare_read_connect(con);
1330 return 0;
1331}
1332
04a419f9
SW
1333static void fail_protocol(struct ceph_connection *con)
1334{
1335 reset_connection(con);
1336 set_bit(CLOSED, &con->state); /* in case there's queued work */
1337
1338 mutex_unlock(&con->mutex);
1339 if (con->ops->bad_proto)
1340 con->ops->bad_proto(con);
1341 mutex_lock(&con->mutex);
1342}
1343
eed0ef2c
SW
1344static int process_connect(struct ceph_connection *con)
1345{
3d14c5d2
YS
1346 u64 sup_feat = con->msgr->supported_features;
1347 u64 req_feat = con->msgr->required_features;
04a419f9 1348 u64 server_feat = le64_to_cpu(con->in_reply.features);
0da5d703 1349 int ret;
04a419f9 1350
eed0ef2c
SW
1351 dout("process_connect on %p tag %d\n", con, (int)con->in_tag);
1352
31b8006e 1353 switch (con->in_reply.tag) {
04a419f9
SW
1354 case CEPH_MSGR_TAG_FEATURES:
1355 pr_err("%s%lld %s feature set mismatch,"
1356 " my %llx < server's %llx, missing %llx\n",
1357 ENTITY_NAME(con->peer_name),
3d14c5d2 1358 ceph_pr_addr(&con->peer_addr.in_addr),
04a419f9
SW
1359 sup_feat, server_feat, server_feat & ~sup_feat);
1360 con->error_msg = "missing required protocol features";
1361 fail_protocol(con);
1362 return -1;
1363
31b8006e 1364 case CEPH_MSGR_TAG_BADPROTOVER:
31b8006e
SW
1365 pr_err("%s%lld %s protocol version mismatch,"
1366 " my %d != server's %d\n",
1367 ENTITY_NAME(con->peer_name),
3d14c5d2 1368 ceph_pr_addr(&con->peer_addr.in_addr),
31b8006e
SW
1369 le32_to_cpu(con->out_connect.protocol_version),
1370 le32_to_cpu(con->in_reply.protocol_version));
1371 con->error_msg = "protocol version mismatch";
04a419f9 1372 fail_protocol(con);
31b8006e
SW
1373 return -1;
1374
4e7a5dcd
SW
1375 case CEPH_MSGR_TAG_BADAUTHORIZER:
1376 con->auth_retry++;
1377 dout("process_connect %p got BADAUTHORIZER attempt %d\n", con,
1378 con->auth_retry);
1379 if (con->auth_retry == 2) {
1380 con->error_msg = "connect authorization failure";
4e7a5dcd
SW
1381 return -1;
1382 }
1383 con->auth_retry = 1;
0da5d703
SW
1384 ret = prepare_write_connect(con->msgr, con, 0);
1385 if (ret < 0)
1386 return ret;
63733a0f 1387 prepare_read_connect(con);
4e7a5dcd 1388 break;
31b8006e
SW
1389
1390 case CEPH_MSGR_TAG_RESETSESSION:
1391 /*
1392 * If we connected with a large connect_seq but the peer
1393 * has no record of a session with us (no connection, or
1394 * connect_seq == 0), they will send RESETSESION to indicate
1395 * that they must have reset their session, and may have
1396 * dropped messages.
1397 */
1398 dout("process_connect got RESET peer seq %u\n",
1399 le32_to_cpu(con->in_connect.connect_seq));
1400 pr_err("%s%lld %s connection reset\n",
1401 ENTITY_NAME(con->peer_name),
3d14c5d2 1402 ceph_pr_addr(&con->peer_addr.in_addr));
31b8006e 1403 reset_connection(con);
eed0ef2c 1404 prepare_write_connect(con->msgr, con, 0);
31b8006e
SW
1405 prepare_read_connect(con);
1406
1407 /* Tell ceph about it. */
ec302645 1408 mutex_unlock(&con->mutex);
31b8006e
SW
1409 pr_info("reset on %s%lld\n", ENTITY_NAME(con->peer_name));
1410 if (con->ops->peer_reset)
1411 con->ops->peer_reset(con);
ec302645 1412 mutex_lock(&con->mutex);
0da5d703
SW
1413 if (test_bit(CLOSED, &con->state) ||
1414 test_bit(OPENING, &con->state))
1415 return -EAGAIN;
31b8006e
SW
1416 break;
1417
1418 case CEPH_MSGR_TAG_RETRY_SESSION:
1419 /*
1420 * If we sent a smaller connect_seq than the peer has, try
1421 * again with a larger value.
1422 */
1423 dout("process_connect got RETRY my seq = %u, peer_seq = %u\n",
1424 le32_to_cpu(con->out_connect.connect_seq),
1425 le32_to_cpu(con->in_connect.connect_seq));
1426 con->connect_seq = le32_to_cpu(con->in_connect.connect_seq);
eed0ef2c 1427 prepare_write_connect(con->msgr, con, 0);
31b8006e
SW
1428 prepare_read_connect(con);
1429 break;
1430
1431 case CEPH_MSGR_TAG_RETRY_GLOBAL:
1432 /*
1433 * If we sent a smaller global_seq than the peer has, try
1434 * again with a larger value.
1435 */
eed0ef2c 1436 dout("process_connect got RETRY_GLOBAL my %u peer_gseq %u\n",
31b8006e
SW
1437 con->peer_global_seq,
1438 le32_to_cpu(con->in_connect.global_seq));
1439 get_global_seq(con->msgr,
1440 le32_to_cpu(con->in_connect.global_seq));
eed0ef2c 1441 prepare_write_connect(con->msgr, con, 0);
31b8006e
SW
1442 prepare_read_connect(con);
1443 break;
1444
1445 case CEPH_MSGR_TAG_READY:
04a419f9
SW
1446 if (req_feat & ~server_feat) {
1447 pr_err("%s%lld %s protocol feature mismatch,"
1448 " my required %llx > server's %llx, need %llx\n",
1449 ENTITY_NAME(con->peer_name),
3d14c5d2 1450 ceph_pr_addr(&con->peer_addr.in_addr),
04a419f9
SW
1451 req_feat, server_feat, req_feat & ~server_feat);
1452 con->error_msg = "missing required protocol features";
1453 fail_protocol(con);
1454 return -1;
1455 }
31b8006e 1456 clear_bit(CONNECTING, &con->state);
31b8006e
SW
1457 con->peer_global_seq = le32_to_cpu(con->in_reply.global_seq);
1458 con->connect_seq++;
aba558e2 1459 con->peer_features = server_feat;
31b8006e
SW
1460 dout("process_connect got READY gseq %d cseq %d (%d)\n",
1461 con->peer_global_seq,
1462 le32_to_cpu(con->in_reply.connect_seq),
1463 con->connect_seq);
1464 WARN_ON(con->connect_seq !=
1465 le32_to_cpu(con->in_reply.connect_seq));
92ac41d0
SW
1466
1467 if (con->in_reply.flags & CEPH_MSG_CONNECT_LOSSY)
1468 set_bit(LOSSYTX, &con->state);
1469
31b8006e
SW
1470 prepare_read_tag(con);
1471 break;
1472
1473 case CEPH_MSGR_TAG_WAIT:
1474 /*
1475 * If there is a connection race (we are opening
1476 * connections to each other), one of us may just have
1477 * to WAIT. This shouldn't happen if we are the
1478 * client.
1479 */
04177882
SW
1480 pr_err("process_connect got WAIT as client\n");
1481 con->error_msg = "protocol error, got WAIT as client";
1482 return -1;
31b8006e
SW
1483
1484 default:
1485 pr_err("connect protocol error, will retry\n");
1486 con->error_msg = "protocol error, garbage tag during connect";
1487 return -1;
1488 }
1489 return 0;
1490}
1491
1492
1493/*
1494 * read (part of) an ack
1495 */
1496static int read_partial_ack(struct ceph_connection *con)
1497{
e6cee71f 1498 return read_partial(con, 0, sizeof(con->in_temp_ack),
31b8006e
SW
1499 &con->in_temp_ack);
1500}
1501
1502
1503/*
1504 * We can finally discard anything that's been acked.
1505 */
1506static void process_ack(struct ceph_connection *con)
1507{
1508 struct ceph_msg *m;
1509 u64 ack = le64_to_cpu(con->in_temp_ack);
1510 u64 seq;
1511
31b8006e
SW
1512 while (!list_empty(&con->out_sent)) {
1513 m = list_first_entry(&con->out_sent, struct ceph_msg,
1514 list_head);
1515 seq = le64_to_cpu(m->hdr.seq);
1516 if (seq > ack)
1517 break;
1518 dout("got ack for seq %llu type %d at %p\n", seq,
1519 le16_to_cpu(m->hdr.type), m);
4cf9d544 1520 m->ack_stamp = jiffies;
31b8006e
SW
1521 ceph_msg_remove(m);
1522 }
31b8006e
SW
1523 prepare_read_tag(con);
1524}
1525
1526
1527
1528
2450418c 1529static int read_partial_message_section(struct ceph_connection *con,
213c99ee
SW
1530 struct kvec *section,
1531 unsigned int sec_len, u32 *crc)
2450418c 1532{
68b4476b 1533 int ret, left;
2450418c
YS
1534
1535 BUG_ON(!section);
1536
1537 while (section->iov_len < sec_len) {
1538 BUG_ON(section->iov_base == NULL);
1539 left = sec_len - section->iov_len;
1540 ret = ceph_tcp_recvmsg(con->sock, (char *)section->iov_base +
1541 section->iov_len, left);
1542 if (ret <= 0)
1543 return ret;
1544 section->iov_len += ret;
2450418c 1545 }
fe3ad593
AE
1546 if (section->iov_len == sec_len)
1547 *crc = crc32c(0, section->iov_base, section->iov_len);
31b8006e 1548
2450418c
YS
1549 return 1;
1550}
31b8006e 1551
2450418c
YS
1552static struct ceph_msg *ceph_alloc_msg(struct ceph_connection *con,
1553 struct ceph_msg_header *hdr,
1554 int *skip);
68b4476b
YS
1555
1556
1557static int read_partial_message_pages(struct ceph_connection *con,
1558 struct page **pages,
bca064d2 1559 unsigned data_len, bool do_datacrc)
68b4476b
YS
1560{
1561 void *p;
1562 int ret;
1563 int left;
1564
1565 left = min((int)(data_len - con->in_msg_pos.data_pos),
1566 (int)(PAGE_SIZE - con->in_msg_pos.page_pos));
1567 /* (page) data */
1568 BUG_ON(pages == NULL);
1569 p = kmap(pages[con->in_msg_pos.page]);
1570 ret = ceph_tcp_recvmsg(con->sock, p + con->in_msg_pos.page_pos,
1571 left);
bca064d2 1572 if (ret > 0 && do_datacrc)
68b4476b
YS
1573 con->in_data_crc =
1574 crc32c(con->in_data_crc,
1575 p + con->in_msg_pos.page_pos, ret);
1576 kunmap(pages[con->in_msg_pos.page]);
1577 if (ret <= 0)
1578 return ret;
1579 con->in_msg_pos.data_pos += ret;
1580 con->in_msg_pos.page_pos += ret;
1581 if (con->in_msg_pos.page_pos == PAGE_SIZE) {
1582 con->in_msg_pos.page_pos = 0;
1583 con->in_msg_pos.page++;
1584 }
1585
1586 return ret;
1587}
1588
1589#ifdef CONFIG_BLOCK
1590static int read_partial_message_bio(struct ceph_connection *con,
1591 struct bio **bio_iter, int *bio_seg,
bca064d2 1592 unsigned data_len, bool do_datacrc)
68b4476b
YS
1593{
1594 struct bio_vec *bv = bio_iovec_idx(*bio_iter, *bio_seg);
1595 void *p;
1596 int ret, left;
1597
1598 if (IS_ERR(bv))
1599 return PTR_ERR(bv);
1600
1601 left = min((int)(data_len - con->in_msg_pos.data_pos),
1602 (int)(bv->bv_len - con->in_msg_pos.page_pos));
1603
1604 p = kmap(bv->bv_page) + bv->bv_offset;
1605
1606 ret = ceph_tcp_recvmsg(con->sock, p + con->in_msg_pos.page_pos,
1607 left);
bca064d2 1608 if (ret > 0 && do_datacrc)
68b4476b
YS
1609 con->in_data_crc =
1610 crc32c(con->in_data_crc,
1611 p + con->in_msg_pos.page_pos, ret);
1612 kunmap(bv->bv_page);
1613 if (ret <= 0)
1614 return ret;
1615 con->in_msg_pos.data_pos += ret;
1616 con->in_msg_pos.page_pos += ret;
1617 if (con->in_msg_pos.page_pos == bv->bv_len) {
1618 con->in_msg_pos.page_pos = 0;
1619 iter_bio_next(bio_iter, bio_seg);
1620 }
1621
1622 return ret;
1623}
1624#endif
1625
31b8006e
SW
1626/*
1627 * read (part of) a message.
1628 */
1629static int read_partial_message(struct ceph_connection *con)
1630{
1631 struct ceph_msg *m = con->in_msg;
31b8006e 1632 int ret;
57dac9d1 1633 int to;
c5c6b19d 1634 unsigned front_len, middle_len, data_len;
37675b0f 1635 bool do_datacrc = !con->msgr->nocrc;
2450418c 1636 int skip;
ae18756b 1637 u64 seq;
fe3ad593 1638 u32 crc;
31b8006e
SW
1639
1640 dout("read_partial_message con %p msg %p\n", con, m);
1641
1642 /* header */
e6cee71f 1643 ret = read_partial(con, 0, sizeof (con->in_hdr), &con->in_hdr);
57dac9d1
AE
1644 if (ret <= 0)
1645 return ret;
fe3ad593
AE
1646
1647 crc = crc32c(0, &con->in_hdr, offsetof(struct ceph_msg_header, crc));
1648 if (cpu_to_le32(crc) != con->in_hdr.crc) {
1649 pr_err("read_partial_message bad hdr "
1650 " crc %u != expected %u\n",
1651 crc, con->in_hdr.crc);
1652 return -EBADMSG;
1653 }
1654
31b8006e
SW
1655 front_len = le32_to_cpu(con->in_hdr.front_len);
1656 if (front_len > CEPH_MSG_MAX_FRONT_LEN)
1657 return -EIO;
1658 middle_len = le32_to_cpu(con->in_hdr.middle_len);
1659 if (middle_len > CEPH_MSG_MAX_DATA_LEN)
1660 return -EIO;
1661 data_len = le32_to_cpu(con->in_hdr.data_len);
1662 if (data_len > CEPH_MSG_MAX_DATA_LEN)
1663 return -EIO;
1664
ae18756b
SW
1665 /* verify seq# */
1666 seq = le64_to_cpu(con->in_hdr.seq);
1667 if ((s64)seq - (s64)con->in_seq < 1) {
df9f86fa 1668 pr_info("skipping %s%lld %s seq %lld expected %lld\n",
ae18756b 1669 ENTITY_NAME(con->peer_name),
3d14c5d2 1670 ceph_pr_addr(&con->peer_addr.in_addr),
ae18756b
SW
1671 seq, con->in_seq + 1);
1672 con->in_base_pos = -front_len - middle_len - data_len -
1673 sizeof(m->footer);
1674 con->in_tag = CEPH_MSGR_TAG_READY;
ae18756b
SW
1675 return 0;
1676 } else if ((s64)seq - (s64)con->in_seq > 1) {
1677 pr_err("read_partial_message bad seq %lld expected %lld\n",
1678 seq, con->in_seq + 1);
1679 con->error_msg = "bad message sequence # for incoming message";
1680 return -EBADMSG;
1681 }
1682
31b8006e
SW
1683 /* allocate message? */
1684 if (!con->in_msg) {
1685 dout("got hdr type %d front %d data %d\n", con->in_hdr.type,
1686 con->in_hdr.front_len, con->in_hdr.data_len);
ae32be31 1687 skip = 0;
2450418c
YS
1688 con->in_msg = ceph_alloc_msg(con, &con->in_hdr, &skip);
1689 if (skip) {
31b8006e 1690 /* skip this message */
a79832f2 1691 dout("alloc_msg said skip message\n");
ae32be31 1692 BUG_ON(con->in_msg);
31b8006e
SW
1693 con->in_base_pos = -front_len - middle_len - data_len -
1694 sizeof(m->footer);
1695 con->in_tag = CEPH_MSGR_TAG_READY;
684be25c 1696 con->in_seq++;
31b8006e
SW
1697 return 0;
1698 }
a79832f2 1699 if (!con->in_msg) {
5b3a4db3
SW
1700 con->error_msg =
1701 "error allocating memory for incoming message";
a79832f2 1702 return -ENOMEM;
31b8006e
SW
1703 }
1704 m = con->in_msg;
1705 m->front.iov_len = 0; /* haven't read it yet */
2450418c
YS
1706 if (m->middle)
1707 m->middle->vec.iov_len = 0;
9d7f0f13
YS
1708
1709 con->in_msg_pos.page = 0;
68b4476b 1710 if (m->pages)
c5c6b19d 1711 con->in_msg_pos.page_pos = m->page_alignment;
68b4476b
YS
1712 else
1713 con->in_msg_pos.page_pos = 0;
9d7f0f13 1714 con->in_msg_pos.data_pos = 0;
31b8006e
SW
1715 }
1716
1717 /* front */
2450418c
YS
1718 ret = read_partial_message_section(con, &m->front, front_len,
1719 &con->in_front_crc);
1720 if (ret <= 0)
1721 return ret;
31b8006e
SW
1722
1723 /* middle */
2450418c 1724 if (m->middle) {
213c99ee
SW
1725 ret = read_partial_message_section(con, &m->middle->vec,
1726 middle_len,
2450418c 1727 &con->in_middle_crc);
31b8006e
SW
1728 if (ret <= 0)
1729 return ret;
31b8006e 1730 }
68b4476b
YS
1731#ifdef CONFIG_BLOCK
1732 if (m->bio && !m->bio_iter)
1733 init_bio_iter(m->bio, &m->bio_iter, &m->bio_seg);
1734#endif
31b8006e
SW
1735
1736 /* (page) data */
31b8006e 1737 while (con->in_msg_pos.data_pos < data_len) {
68b4476b
YS
1738 if (m->pages) {
1739 ret = read_partial_message_pages(con, m->pages,
bca064d2 1740 data_len, do_datacrc);
68b4476b
YS
1741 if (ret <= 0)
1742 return ret;
1743#ifdef CONFIG_BLOCK
1744 } else if (m->bio) {
1745
1746 ret = read_partial_message_bio(con,
1747 &m->bio_iter, &m->bio_seg,
bca064d2 1748 data_len, do_datacrc);
68b4476b
YS
1749 if (ret <= 0)
1750 return ret;
1751#endif
1752 } else {
1753 BUG_ON(1);
31b8006e
SW
1754 }
1755 }
1756
31b8006e 1757 /* footer */
57dac9d1 1758 to = sizeof (m->hdr);
e6cee71f 1759 ret = read_partial(con, to, sizeof (m->footer), &m->footer);
57dac9d1
AE
1760 if (ret <= 0)
1761 return ret;
1762
31b8006e
SW
1763 dout("read_partial_message got msg %p %d (%u) + %d (%u) + %d (%u)\n",
1764 m, front_len, m->footer.front_crc, middle_len,
1765 m->footer.middle_crc, data_len, m->footer.data_crc);
1766
1767 /* crc ok? */
1768 if (con->in_front_crc != le32_to_cpu(m->footer.front_crc)) {
1769 pr_err("read_partial_message %p front crc %u != exp. %u\n",
1770 m, con->in_front_crc, m->footer.front_crc);
1771 return -EBADMSG;
1772 }
1773 if (con->in_middle_crc != le32_to_cpu(m->footer.middle_crc)) {
1774 pr_err("read_partial_message %p middle crc %u != exp %u\n",
1775 m, con->in_middle_crc, m->footer.middle_crc);
1776 return -EBADMSG;
1777 }
bca064d2 1778 if (do_datacrc &&
31b8006e
SW
1779 (m->footer.flags & CEPH_MSG_FOOTER_NOCRC) == 0 &&
1780 con->in_data_crc != le32_to_cpu(m->footer.data_crc)) {
1781 pr_err("read_partial_message %p data crc %u != exp. %u\n", m,
1782 con->in_data_crc, le32_to_cpu(m->footer.data_crc));
1783 return -EBADMSG;
1784 }
1785
1786 return 1; /* done! */
1787}
1788
1789/*
1790 * Process message. This happens in the worker thread. The callback should
1791 * be careful not to do anything that waits on other incoming messages or it
1792 * may deadlock.
1793 */
1794static void process_message(struct ceph_connection *con)
1795{
5e095e8b 1796 struct ceph_msg *msg;
31b8006e 1797
5e095e8b 1798 msg = con->in_msg;
31b8006e
SW
1799 con->in_msg = NULL;
1800
1801 /* if first message, set peer_name */
1802 if (con->peer_name.type == 0)
dbad185d 1803 con->peer_name = msg->hdr.src;
31b8006e 1804
31b8006e 1805 con->in_seq++;
ec302645 1806 mutex_unlock(&con->mutex);
31b8006e
SW
1807
1808 dout("===== %p %llu from %s%lld %d=%s len %d+%d (%u %u %u) =====\n",
1809 msg, le64_to_cpu(msg->hdr.seq),
dbad185d 1810 ENTITY_NAME(msg->hdr.src),
31b8006e
SW
1811 le16_to_cpu(msg->hdr.type),
1812 ceph_msg_type_name(le16_to_cpu(msg->hdr.type)),
1813 le32_to_cpu(msg->hdr.front_len),
1814 le32_to_cpu(msg->hdr.data_len),
1815 con->in_front_crc, con->in_middle_crc, con->in_data_crc);
1816 con->ops->dispatch(con, msg);
ec302645
SW
1817
1818 mutex_lock(&con->mutex);
31b8006e
SW
1819 prepare_read_tag(con);
1820}
1821
1822
1823/*
1824 * Write something to the socket. Called in a worker thread when the
1825 * socket appears to be writeable and we have something ready to send.
1826 */
1827static int try_write(struct ceph_connection *con)
1828{
1829 struct ceph_messenger *msgr = con->msgr;
1830 int ret = 1;
1831
1832 dout("try_write start %p state %lu nref %d\n", con, con->state,
1833 atomic_read(&con->nref));
1834
31b8006e
SW
1835more:
1836 dout("try_write out_kvec_bytes %d\n", con->out_kvec_bytes);
1837
1838 /* open the socket first? */
1839 if (con->sock == NULL) {
eed0ef2c
SW
1840 prepare_write_connect(msgr, con, 1);
1841 prepare_read_banner(con);
31b8006e 1842 set_bit(CONNECTING, &con->state);
eed0ef2c 1843 clear_bit(NEGOTIATING, &con->state);
31b8006e 1844
cf3e5c40 1845 BUG_ON(con->in_msg);
31b8006e
SW
1846 con->in_tag = CEPH_MSGR_TAG_READY;
1847 dout("try_write initiating connect on %p new state %lu\n",
1848 con, con->state);
41617d0c
AE
1849 ret = ceph_tcp_connect(con);
1850 if (ret < 0) {
31b8006e 1851 con->error_msg = "connect error";
31b8006e
SW
1852 goto out;
1853 }
1854 }
1855
1856more_kvec:
1857 /* kvec data queued? */
1858 if (con->out_skip) {
1859 ret = write_partial_skip(con);
1860 if (ret <= 0)
42961d23 1861 goto out;
31b8006e
SW
1862 }
1863 if (con->out_kvec_left) {
1864 ret = write_partial_kvec(con);
1865 if (ret <= 0)
42961d23 1866 goto out;
31b8006e
SW
1867 }
1868
1869 /* msg pages? */
1870 if (con->out_msg) {
c86a2930
SW
1871 if (con->out_msg_done) {
1872 ceph_msg_put(con->out_msg);
1873 con->out_msg = NULL; /* we're done with this one */
1874 goto do_next;
1875 }
1876
31b8006e
SW
1877 ret = write_partial_msg_pages(con);
1878 if (ret == 1)
1879 goto more_kvec; /* we need to send the footer, too! */
1880 if (ret == 0)
42961d23 1881 goto out;
31b8006e
SW
1882 if (ret < 0) {
1883 dout("try_write write_partial_msg_pages err %d\n",
1884 ret);
42961d23 1885 goto out;
31b8006e
SW
1886 }
1887 }
1888
c86a2930 1889do_next:
31b8006e
SW
1890 if (!test_bit(CONNECTING, &con->state)) {
1891 /* is anything else pending? */
1892 if (!list_empty(&con->out_queue)) {
1893 prepare_write_message(con);
1894 goto more;
1895 }
1896 if (con->in_seq > con->in_seq_acked) {
1897 prepare_write_ack(con);
1898 goto more;
1899 }
1900 if (test_and_clear_bit(KEEPALIVE_PENDING, &con->state)) {
1901 prepare_write_keepalive(con);
1902 goto more;
1903 }
1904 }
1905
1906 /* Nothing to do! */
1907 clear_bit(WRITE_PENDING, &con->state);
1908 dout("try_write nothing else to write.\n");
31b8006e
SW
1909 ret = 0;
1910out:
42961d23 1911 dout("try_write done on %p ret %d\n", con, ret);
31b8006e
SW
1912 return ret;
1913}
1914
1915
1916
1917/*
1918 * Read what we can from the socket.
1919 */
1920static int try_read(struct ceph_connection *con)
1921{
31b8006e
SW
1922 int ret = -1;
1923
1924 if (!con->sock)
1925 return 0;
1926
1927 if (test_bit(STANDBY, &con->state))
1928 return 0;
1929
1930 dout("try_read start on %p\n", con);
ec302645 1931
31b8006e
SW
1932more:
1933 dout("try_read tag %d in_base_pos %d\n", (int)con->in_tag,
1934 con->in_base_pos);
0da5d703
SW
1935
1936 /*
1937 * process_connect and process_message drop and re-take
1938 * con->mutex. make sure we handle a racing close or reopen.
1939 */
1940 if (test_bit(CLOSED, &con->state) ||
1941 test_bit(OPENING, &con->state)) {
1942 ret = -EAGAIN;
1943 goto out;
1944 }
1945
31b8006e 1946 if (test_bit(CONNECTING, &con->state)) {
eed0ef2c
SW
1947 if (!test_bit(NEGOTIATING, &con->state)) {
1948 dout("try_read connecting\n");
1949 ret = read_partial_banner(con);
1950 if (ret <= 0)
eed0ef2c 1951 goto out;
98bdb0aa
SW
1952 ret = process_banner(con);
1953 if (ret < 0)
1954 goto out;
eed0ef2c 1955 }
31b8006e
SW
1956 ret = read_partial_connect(con);
1957 if (ret <= 0)
31b8006e 1958 goto out;
98bdb0aa
SW
1959 ret = process_connect(con);
1960 if (ret < 0)
1961 goto out;
31b8006e
SW
1962 goto more;
1963 }
1964
1965 if (con->in_base_pos < 0) {
1966 /*
1967 * skipping + discarding content.
1968 *
1969 * FIXME: there must be a better way to do this!
1970 */
84495f49
AE
1971 static char buf[SKIP_BUF_SIZE];
1972 int skip = min((int) sizeof (buf), -con->in_base_pos);
1973
31b8006e
SW
1974 dout("skipping %d / %d bytes\n", skip, -con->in_base_pos);
1975 ret = ceph_tcp_recvmsg(con->sock, buf, skip);
1976 if (ret <= 0)
98bdb0aa 1977 goto out;
31b8006e
SW
1978 con->in_base_pos += ret;
1979 if (con->in_base_pos)
1980 goto more;
1981 }
1982 if (con->in_tag == CEPH_MSGR_TAG_READY) {
1983 /*
1984 * what's next?
1985 */
1986 ret = ceph_tcp_recvmsg(con->sock, &con->in_tag, 1);
1987 if (ret <= 0)
98bdb0aa 1988 goto out;
31b8006e
SW
1989 dout("try_read got tag %d\n", (int)con->in_tag);
1990 switch (con->in_tag) {
1991 case CEPH_MSGR_TAG_MSG:
1992 prepare_read_message(con);
1993 break;
1994 case CEPH_MSGR_TAG_ACK:
1995 prepare_read_ack(con);
1996 break;
1997 case CEPH_MSGR_TAG_CLOSE:
1998 set_bit(CLOSED, &con->state); /* fixme */
98bdb0aa 1999 goto out;
31b8006e
SW
2000 default:
2001 goto bad_tag;
2002 }
2003 }
2004 if (con->in_tag == CEPH_MSGR_TAG_MSG) {
2005 ret = read_partial_message(con);
2006 if (ret <= 0) {
2007 switch (ret) {
2008 case -EBADMSG:
2009 con->error_msg = "bad crc";
2010 ret = -EIO;
98bdb0aa 2011 break;
31b8006e
SW
2012 case -EIO:
2013 con->error_msg = "io error";
98bdb0aa 2014 break;
31b8006e 2015 }
98bdb0aa 2016 goto out;
31b8006e
SW
2017 }
2018 if (con->in_tag == CEPH_MSGR_TAG_READY)
2019 goto more;
2020 process_message(con);
2021 goto more;
2022 }
2023 if (con->in_tag == CEPH_MSGR_TAG_ACK) {
2024 ret = read_partial_ack(con);
2025 if (ret <= 0)
98bdb0aa 2026 goto out;
31b8006e
SW
2027 process_ack(con);
2028 goto more;
2029 }
2030
31b8006e 2031out:
98bdb0aa 2032 dout("try_read done on %p ret %d\n", con, ret);
31b8006e
SW
2033 return ret;
2034
2035bad_tag:
2036 pr_err("try_read bad con->in_tag = %d\n", (int)con->in_tag);
2037 con->error_msg = "protocol error, garbage tag";
2038 ret = -1;
2039 goto out;
2040}
2041
2042
2043/*
2044 * Atomically queue work on a connection. Bump @con reference to
2045 * avoid races with connection teardown.
31b8006e
SW
2046 */
2047static void queue_con(struct ceph_connection *con)
2048{
2049 if (test_bit(DEAD, &con->state)) {
2050 dout("queue_con %p ignoring: DEAD\n",
2051 con);
2052 return;
2053 }
2054
2055 if (!con->ops->get(con)) {
2056 dout("queue_con %p ref count 0\n", con);
2057 return;
2058 }
2059
f363e45f 2060 if (!queue_delayed_work(ceph_msgr_wq, &con->work, 0)) {
31b8006e
SW
2061 dout("queue_con %p - already queued\n", con);
2062 con->ops->put(con);
2063 } else {
2064 dout("queue_con %p\n", con);
2065 }
2066}
2067
2068/*
2069 * Do some work on a connection. Drop a connection ref when we're done.
2070 */
2071static void con_work(struct work_struct *work)
2072{
2073 struct ceph_connection *con = container_of(work, struct ceph_connection,
2074 work.work);
0da5d703 2075 int ret;
31b8006e 2076
9dd4658d 2077 mutex_lock(&con->mutex);
0da5d703 2078restart:
60bf8bf8
SW
2079 if (test_and_clear_bit(BACKOFF, &con->state)) {
2080 dout("con_work %p backing off\n", con);
2081 if (queue_delayed_work(ceph_msgr_wq, &con->work,
2082 round_jiffies_relative(con->delay))) {
2083 dout("con_work %p backoff %lu\n", con, con->delay);
2084 mutex_unlock(&con->mutex);
2085 return;
2086 } else {
2087 con->ops->put(con);
2088 dout("con_work %p FAILED to back off %lu\n", con,
2089 con->delay);
2090 }
2091 }
9dd4658d 2092
e00de341
SW
2093 if (test_bit(STANDBY, &con->state)) {
2094 dout("con_work %p STANDBY\n", con);
2095 goto done;
2096 }
31b8006e
SW
2097 if (test_bit(CLOSED, &con->state)) { /* e.g. if we are replaced */
2098 dout("con_work CLOSED\n");
2099 con_close_socket(con);
2100 goto done;
2101 }
2102 if (test_and_clear_bit(OPENING, &con->state)) {
2103 /* reopen w/ new peer */
2104 dout("con_work OPENING\n");
2105 con_close_socket(con);
2106 }
2107
0da5d703
SW
2108 if (test_and_clear_bit(SOCK_CLOSED, &con->state))
2109 goto fault;
2110
2111 ret = try_read(con);
2112 if (ret == -EAGAIN)
2113 goto restart;
2114 if (ret < 0)
2115 goto fault;
2116
2117 ret = try_write(con);
2118 if (ret == -EAGAIN)
2119 goto restart;
2120 if (ret < 0)
2121 goto fault;
31b8006e
SW
2122
2123done:
9dd4658d 2124 mutex_unlock(&con->mutex);
9dd4658d 2125done_unlocked:
31b8006e 2126 con->ops->put(con);
0da5d703
SW
2127 return;
2128
2129fault:
2130 mutex_unlock(&con->mutex);
2131 ceph_fault(con); /* error/fault path */
2132 goto done_unlocked;
31b8006e
SW
2133}
2134
2135
2136/*
2137 * Generic error/fault handler. A retry mechanism is used with
2138 * exponential backoff
2139 */
2140static void ceph_fault(struct ceph_connection *con)
2141{
2142 pr_err("%s%lld %s %s\n", ENTITY_NAME(con->peer_name),
3d14c5d2 2143 ceph_pr_addr(&con->peer_addr.in_addr), con->error_msg);
31b8006e 2144 dout("fault %p state %lu to peer %s\n",
3d14c5d2 2145 con, con->state, ceph_pr_addr(&con->peer_addr.in_addr));
31b8006e
SW
2146
2147 if (test_bit(LOSSYTX, &con->state)) {
2148 dout("fault on LOSSYTX channel\n");
2149 goto out;
2150 }
2151
ec302645 2152 mutex_lock(&con->mutex);
91e45ce3
SW
2153 if (test_bit(CLOSED, &con->state))
2154 goto out_unlock;
ec302645 2155
31b8006e 2156 con_close_socket(con);
5e095e8b
SW
2157
2158 if (con->in_msg) {
2159 ceph_msg_put(con->in_msg);
2160 con->in_msg = NULL;
2161 }
31b8006e 2162
e80a52d1
SW
2163 /* Requeue anything that hasn't been acked */
2164 list_splice_init(&con->out_sent, &con->out_queue);
9bd2e6f8 2165
e76661d0
SW
2166 /* If there are no messages queued or keepalive pending, place
2167 * the connection in a STANDBY state */
2168 if (list_empty(&con->out_queue) &&
2169 !test_bit(KEEPALIVE_PENDING, &con->state)) {
e00de341
SW
2170 dout("fault %p setting STANDBY clearing WRITE_PENDING\n", con);
2171 clear_bit(WRITE_PENDING, &con->state);
31b8006e 2172 set_bit(STANDBY, &con->state);
e80a52d1
SW
2173 } else {
2174 /* retry after a delay. */
2175 if (con->delay == 0)
2176 con->delay = BASE_DELAY_INTERVAL;
2177 else if (con->delay < MAX_DELAY_INTERVAL)
2178 con->delay *= 2;
e80a52d1
SW
2179 con->ops->get(con);
2180 if (queue_delayed_work(ceph_msgr_wq, &con->work,
60bf8bf8
SW
2181 round_jiffies_relative(con->delay))) {
2182 dout("fault queued %p delay %lu\n", con, con->delay);
2183 } else {
e80a52d1 2184 con->ops->put(con);
60bf8bf8
SW
2185 dout("fault failed to queue %p delay %lu, backoff\n",
2186 con, con->delay);
2187 /*
2188 * In many cases we see a socket state change
2189 * while con_work is running and end up
2190 * queuing (non-delayed) work, such that we
2191 * can't backoff with a delay. Set a flag so
2192 * that when con_work restarts we schedule the
2193 * delay then.
2194 */
2195 set_bit(BACKOFF, &con->state);
2196 }
31b8006e
SW
2197 }
2198
91e45ce3
SW
2199out_unlock:
2200 mutex_unlock(&con->mutex);
31b8006e 2201out:
161fd65a
SW
2202 /*
2203 * in case we faulted due to authentication, invalidate our
2204 * current tickets so that we can get new ones.
213c99ee 2205 */
161fd65a
SW
2206 if (con->auth_retry && con->ops->invalidate_authorizer) {
2207 dout("calling invalidate_authorizer()\n");
2208 con->ops->invalidate_authorizer(con);
2209 }
2210
31b8006e
SW
2211 if (con->ops->fault)
2212 con->ops->fault(con);
2213}
2214
2215
2216
2217/*
2218 * create a new messenger instance
2219 */
3d14c5d2
YS
2220struct ceph_messenger *ceph_messenger_create(struct ceph_entity_addr *myaddr,
2221 u32 supported_features,
2222 u32 required_features)
31b8006e
SW
2223{
2224 struct ceph_messenger *msgr;
2225
2226 msgr = kzalloc(sizeof(*msgr), GFP_KERNEL);
2227 if (msgr == NULL)
2228 return ERR_PTR(-ENOMEM);
2229
3d14c5d2
YS
2230 msgr->supported_features = supported_features;
2231 msgr->required_features = required_features;
2232
31b8006e
SW
2233 spin_lock_init(&msgr->global_seq_lock);
2234
31b8006e
SW
2235 if (myaddr)
2236 msgr->inst.addr = *myaddr;
2237
2238 /* select a random nonce */
ac8839d7 2239 msgr->inst.addr.type = 0;
103e2d3a 2240 get_random_bytes(&msgr->inst.addr.nonce, sizeof(msgr->inst.addr.nonce));
63f2d211 2241 encode_my_addr(msgr);
31b8006e
SW
2242
2243 dout("messenger_create %p\n", msgr);
2244 return msgr;
2245}
3d14c5d2 2246EXPORT_SYMBOL(ceph_messenger_create);
31b8006e
SW
2247
2248void ceph_messenger_destroy(struct ceph_messenger *msgr)
2249{
2250 dout("destroy %p\n", msgr);
31b8006e
SW
2251 kfree(msgr);
2252 dout("destroyed messenger %p\n", msgr);
2253}
3d14c5d2 2254EXPORT_SYMBOL(ceph_messenger_destroy);
31b8006e 2255
e00de341
SW
2256static void clear_standby(struct ceph_connection *con)
2257{
2258 /* come back from STANDBY? */
2259 if (test_and_clear_bit(STANDBY, &con->state)) {
2260 mutex_lock(&con->mutex);
2261 dout("clear_standby %p and ++connect_seq\n", con);
2262 con->connect_seq++;
2263 WARN_ON(test_bit(WRITE_PENDING, &con->state));
2264 WARN_ON(test_bit(KEEPALIVE_PENDING, &con->state));
2265 mutex_unlock(&con->mutex);
2266 }
2267}
2268
31b8006e
SW
2269/*
2270 * Queue up an outgoing message on the given connection.
2271 */
2272void ceph_con_send(struct ceph_connection *con, struct ceph_msg *msg)
2273{
2274 if (test_bit(CLOSED, &con->state)) {
2275 dout("con_send %p closed, dropping %p\n", con, msg);
2276 ceph_msg_put(msg);
2277 return;
2278 }
2279
2280 /* set src+dst */
dbad185d 2281 msg->hdr.src = con->msgr->inst.name;
31b8006e 2282
3ca02ef9
SW
2283 BUG_ON(msg->front.iov_len != le32_to_cpu(msg->hdr.front_len));
2284
e84346b7
SW
2285 msg->needs_out_seq = true;
2286
31b8006e 2287 /* queue */
ec302645 2288 mutex_lock(&con->mutex);
31b8006e
SW
2289 BUG_ON(!list_empty(&msg->list_head));
2290 list_add_tail(&msg->list_head, &con->out_queue);
2291 dout("----- %p to %s%lld %d=%s len %d+%d+%d -----\n", msg,
2292 ENTITY_NAME(con->peer_name), le16_to_cpu(msg->hdr.type),
2293 ceph_msg_type_name(le16_to_cpu(msg->hdr.type)),
2294 le32_to_cpu(msg->hdr.front_len),
2295 le32_to_cpu(msg->hdr.middle_len),
2296 le32_to_cpu(msg->hdr.data_len));
ec302645 2297 mutex_unlock(&con->mutex);
31b8006e
SW
2298
2299 /* if there wasn't anything waiting to send before, queue
2300 * new work */
e00de341 2301 clear_standby(con);
31b8006e
SW
2302 if (test_and_set_bit(WRITE_PENDING, &con->state) == 0)
2303 queue_con(con);
2304}
3d14c5d2 2305EXPORT_SYMBOL(ceph_con_send);
31b8006e
SW
2306
2307/*
2308 * Revoke a message that was previously queued for send
2309 */
2310void ceph_con_revoke(struct ceph_connection *con, struct ceph_msg *msg)
2311{
ec302645 2312 mutex_lock(&con->mutex);
31b8006e 2313 if (!list_empty(&msg->list_head)) {
ed98adad 2314 dout("con_revoke %p msg %p - was on queue\n", con, msg);
31b8006e
SW
2315 list_del_init(&msg->list_head);
2316 ceph_msg_put(msg);
2317 msg->hdr.seq = 0;
ed98adad
SW
2318 }
2319 if (con->out_msg == msg) {
2320 dout("con_revoke %p msg %p - was sending\n", con, msg);
2321 con->out_msg = NULL;
31b8006e
SW
2322 if (con->out_kvec_is_msg) {
2323 con->out_skip = con->out_kvec_bytes;
2324 con->out_kvec_is_msg = false;
2325 }
ed98adad
SW
2326 ceph_msg_put(msg);
2327 msg->hdr.seq = 0;
31b8006e 2328 }
ec302645 2329 mutex_unlock(&con->mutex);
31b8006e
SW
2330}
2331
350b1c32 2332/*
0d59ab81 2333 * Revoke a message that we may be reading data into
350b1c32 2334 */
0d59ab81 2335void ceph_con_revoke_message(struct ceph_connection *con, struct ceph_msg *msg)
350b1c32
SW
2336{
2337 mutex_lock(&con->mutex);
0d59ab81
YS
2338 if (con->in_msg && con->in_msg == msg) {
2339 unsigned front_len = le32_to_cpu(con->in_hdr.front_len);
2340 unsigned middle_len = le32_to_cpu(con->in_hdr.middle_len);
350b1c32
SW
2341 unsigned data_len = le32_to_cpu(con->in_hdr.data_len);
2342
2343 /* skip rest of message */
0d59ab81 2344 dout("con_revoke_pages %p msg %p revoked\n", con, msg);
350b1c32
SW
2345 con->in_base_pos = con->in_base_pos -
2346 sizeof(struct ceph_msg_header) -
0d59ab81
YS
2347 front_len -
2348 middle_len -
2349 data_len -
350b1c32 2350 sizeof(struct ceph_msg_footer);
350b1c32
SW
2351 ceph_msg_put(con->in_msg);
2352 con->in_msg = NULL;
2353 con->in_tag = CEPH_MSGR_TAG_READY;
684be25c 2354 con->in_seq++;
350b1c32
SW
2355 } else {
2356 dout("con_revoke_pages %p msg %p pages %p no-op\n",
0d59ab81 2357 con, con->in_msg, msg);
350b1c32
SW
2358 }
2359 mutex_unlock(&con->mutex);
2360}
2361
31b8006e
SW
2362/*
2363 * Queue a keepalive byte to ensure the tcp connection is alive.
2364 */
2365void ceph_con_keepalive(struct ceph_connection *con)
2366{
e00de341
SW
2367 dout("con_keepalive %p\n", con);
2368 clear_standby(con);
31b8006e
SW
2369 if (test_and_set_bit(KEEPALIVE_PENDING, &con->state) == 0 &&
2370 test_and_set_bit(WRITE_PENDING, &con->state) == 0)
2371 queue_con(con);
2372}
3d14c5d2 2373EXPORT_SYMBOL(ceph_con_keepalive);
31b8006e
SW
2374
2375
2376/*
2377 * construct a new message with given type, size
2378 * the new msg has a ref count of 1.
2379 */
b61c2763
SW
2380struct ceph_msg *ceph_msg_new(int type, int front_len, gfp_t flags,
2381 bool can_fail)
31b8006e
SW
2382{
2383 struct ceph_msg *m;
2384
34d23762 2385 m = kmalloc(sizeof(*m), flags);
31b8006e
SW
2386 if (m == NULL)
2387 goto out;
c2e552e7 2388 kref_init(&m->kref);
31b8006e
SW
2389 INIT_LIST_HEAD(&m->list_head);
2390
45c6ceb5 2391 m->hdr.tid = 0;
31b8006e 2392 m->hdr.type = cpu_to_le16(type);
45c6ceb5
SW
2393 m->hdr.priority = cpu_to_le16(CEPH_MSG_PRIO_DEFAULT);
2394 m->hdr.version = 0;
31b8006e
SW
2395 m->hdr.front_len = cpu_to_le32(front_len);
2396 m->hdr.middle_len = 0;
bb257664
SW
2397 m->hdr.data_len = 0;
2398 m->hdr.data_off = 0;
45c6ceb5 2399 m->hdr.reserved = 0;
31b8006e
SW
2400 m->footer.front_crc = 0;
2401 m->footer.middle_crc = 0;
2402 m->footer.data_crc = 0;
45c6ceb5 2403 m->footer.flags = 0;
31b8006e
SW
2404 m->front_max = front_len;
2405 m->front_is_vmalloc = false;
2406 m->more_to_follow = false;
c0d5f9db 2407 m->ack_stamp = 0;
31b8006e
SW
2408 m->pool = NULL;
2409
ca20892d
HC
2410 /* middle */
2411 m->middle = NULL;
2412
2413 /* data */
2414 m->nr_pages = 0;
2415 m->page_alignment = 0;
2416 m->pages = NULL;
2417 m->pagelist = NULL;
2418 m->bio = NULL;
2419 m->bio_iter = NULL;
2420 m->bio_seg = 0;
2421 m->trail = NULL;
2422
31b8006e
SW
2423 /* front */
2424 if (front_len) {
2425 if (front_len > PAGE_CACHE_SIZE) {
34d23762 2426 m->front.iov_base = __vmalloc(front_len, flags,
31b8006e
SW
2427 PAGE_KERNEL);
2428 m->front_is_vmalloc = true;
2429 } else {
34d23762 2430 m->front.iov_base = kmalloc(front_len, flags);
31b8006e
SW
2431 }
2432 if (m->front.iov_base == NULL) {
b61c2763 2433 dout("ceph_msg_new can't allocate %d bytes\n",
31b8006e
SW
2434 front_len);
2435 goto out2;
2436 }
2437 } else {
2438 m->front.iov_base = NULL;
2439 }
2440 m->front.iov_len = front_len;
2441
bb257664 2442 dout("ceph_msg_new %p front %d\n", m, front_len);
31b8006e
SW
2443 return m;
2444
2445out2:
2446 ceph_msg_put(m);
2447out:
b61c2763
SW
2448 if (!can_fail) {
2449 pr_err("msg_new can't create type %d front %d\n", type,
2450 front_len);
f0ed1b7c 2451 WARN_ON(1);
b61c2763
SW
2452 } else {
2453 dout("msg_new can't create type %d front %d\n", type,
2454 front_len);
2455 }
a79832f2 2456 return NULL;
31b8006e 2457}
3d14c5d2 2458EXPORT_SYMBOL(ceph_msg_new);
31b8006e 2459
31b8006e
SW
2460/*
2461 * Allocate "middle" portion of a message, if it is needed and wasn't
2462 * allocated by alloc_msg. This allows us to read a small fixed-size
2463 * per-type header in the front and then gracefully fail (i.e.,
2464 * propagate the error to the caller based on info in the front) when
2465 * the middle is too large.
2466 */
2450418c 2467static int ceph_alloc_middle(struct ceph_connection *con, struct ceph_msg *msg)
31b8006e
SW
2468{
2469 int type = le16_to_cpu(msg->hdr.type);
2470 int middle_len = le32_to_cpu(msg->hdr.middle_len);
2471
2472 dout("alloc_middle %p type %d %s middle_len %d\n", msg, type,
2473 ceph_msg_type_name(type), middle_len);
2474 BUG_ON(!middle_len);
2475 BUG_ON(msg->middle);
2476
b6c1d5b8 2477 msg->middle = ceph_buffer_new(middle_len, GFP_NOFS);
31b8006e
SW
2478 if (!msg->middle)
2479 return -ENOMEM;
2480 return 0;
2481}
2482
2450418c
YS
2483/*
2484 * Generic message allocator, for incoming messages.
2485 */
2486static struct ceph_msg *ceph_alloc_msg(struct ceph_connection *con,
2487 struct ceph_msg_header *hdr,
2488 int *skip)
2489{
2490 int type = le16_to_cpu(hdr->type);
2491 int front_len = le32_to_cpu(hdr->front_len);
2492 int middle_len = le32_to_cpu(hdr->middle_len);
2493 struct ceph_msg *msg = NULL;
2494 int ret;
2495
2496 if (con->ops->alloc_msg) {
0547a9b3 2497 mutex_unlock(&con->mutex);
2450418c 2498 msg = con->ops->alloc_msg(con, hdr, skip);
0547a9b3 2499 mutex_lock(&con->mutex);
a79832f2 2500 if (!msg || *skip)
2450418c
YS
2501 return NULL;
2502 }
2503 if (!msg) {
2504 *skip = 0;
b61c2763 2505 msg = ceph_msg_new(type, front_len, GFP_NOFS, false);
2450418c
YS
2506 if (!msg) {
2507 pr_err("unable to allocate msg type %d len %d\n",
2508 type, front_len);
a79832f2 2509 return NULL;
2450418c 2510 }
c5c6b19d 2511 msg->page_alignment = le16_to_cpu(hdr->data_off);
2450418c 2512 }
9d7f0f13 2513 memcpy(&msg->hdr, &con->in_hdr, sizeof(con->in_hdr));
2450418c 2514
bb257664 2515 if (middle_len && !msg->middle) {
2450418c 2516 ret = ceph_alloc_middle(con, msg);
2450418c
YS
2517 if (ret < 0) {
2518 ceph_msg_put(msg);
a79832f2 2519 return NULL;
2450418c
YS
2520 }
2521 }
9d7f0f13 2522
2450418c
YS
2523 return msg;
2524}
2525
31b8006e
SW
2526
2527/*
2528 * Free a generically kmalloc'd message.
2529 */
2530void ceph_msg_kfree(struct ceph_msg *m)
2531{
2532 dout("msg_kfree %p\n", m);
2533 if (m->front_is_vmalloc)
2534 vfree(m->front.iov_base);
2535 else
2536 kfree(m->front.iov_base);
2537 kfree(m);
2538}
2539
2540/*
2541 * Drop a msg ref. Destroy as needed.
2542 */
c2e552e7
SW
2543void ceph_msg_last_put(struct kref *kref)
2544{
2545 struct ceph_msg *m = container_of(kref, struct ceph_msg, kref);
31b8006e 2546
c2e552e7
SW
2547 dout("ceph_msg_put last one on %p\n", m);
2548 WARN_ON(!list_empty(&m->list_head));
2549
2550 /* drop middle, data, if any */
2551 if (m->middle) {
2552 ceph_buffer_put(m->middle);
2553 m->middle = NULL;
31b8006e 2554 }
c2e552e7
SW
2555 m->nr_pages = 0;
2556 m->pages = NULL;
2557
58bb3b37
SW
2558 if (m->pagelist) {
2559 ceph_pagelist_release(m->pagelist);
2560 kfree(m->pagelist);
2561 m->pagelist = NULL;
2562 }
2563
68b4476b
YS
2564 m->trail = NULL;
2565
c2e552e7
SW
2566 if (m->pool)
2567 ceph_msgpool_put(m->pool, m);
2568 else
2569 ceph_msg_kfree(m);
31b8006e 2570}
3d14c5d2 2571EXPORT_SYMBOL(ceph_msg_last_put);
9ec7cab1
SW
2572
2573void ceph_msg_dump(struct ceph_msg *msg)
2574{
2575 pr_debug("msg_dump %p (front_max %d nr_pages %d)\n", msg,
2576 msg->front_max, msg->nr_pages);
2577 print_hex_dump(KERN_DEBUG, "header: ",
2578 DUMP_PREFIX_OFFSET, 16, 1,
2579 &msg->hdr, sizeof(msg->hdr), true);
2580 print_hex_dump(KERN_DEBUG, " front: ",
2581 DUMP_PREFIX_OFFSET, 16, 1,
2582 msg->front.iov_base, msg->front.iov_len, true);
2583 if (msg->middle)
2584 print_hex_dump(KERN_DEBUG, "middle: ",
2585 DUMP_PREFIX_OFFSET, 16, 1,
2586 msg->middle->vec.iov_base,
2587 msg->middle->vec.iov_len, true);
2588 print_hex_dump(KERN_DEBUG, "footer: ",
2589 DUMP_PREFIX_OFFSET, 16, 1,
2590 &msg->footer, sizeof(msg->footer), true);
2591}
3d14c5d2 2592EXPORT_SYMBOL(ceph_msg_dump);