RDS: Rename data op members prefix from m_ to op_
[deliverable/linux.git] / net / rds / rds.h
1 #ifndef _RDS_RDS_H
2 #define _RDS_RDS_H
3
4 #include <net/sock.h>
5 #include <linux/scatterlist.h>
6 #include <linux/highmem.h>
7 #include <rdma/rdma_cm.h>
8 #include <linux/mutex.h>
9 #include <linux/rds.h>
10
11 #include "info.h"
12
13 /*
14 * RDS Network protocol version
15 */
16 #define RDS_PROTOCOL_3_0 0x0300
17 #define RDS_PROTOCOL_3_1 0x0301
18 #define RDS_PROTOCOL_VERSION RDS_PROTOCOL_3_1
19 #define RDS_PROTOCOL_MAJOR(v) ((v) >> 8)
20 #define RDS_PROTOCOL_MINOR(v) ((v) & 255)
21 #define RDS_PROTOCOL(maj, min) (((maj) << 8) | min)
22
23 /*
24 * XXX randomly chosen, but at least seems to be unused:
25 * # 18464-18768 Unassigned
26 * We should do better. We want a reserved port to discourage unpriv'ed
27 * userspace from listening.
28 */
29 #define RDS_PORT 18634
30
31 #ifdef ATOMIC64_INIT
32 #define KERNEL_HAS_ATOMIC64
33 #endif
34
35 #ifdef DEBUG
36 #define rdsdebug(fmt, args...) pr_debug("%s(): " fmt, __func__ , ##args)
37 #else
38 /* sigh, pr_debug() causes unused variable warnings */
39 static inline void __attribute__ ((format (printf, 1, 2)))
40 rdsdebug(char *fmt, ...)
41 {
42 }
43 #endif
44
45 /* XXX is there one of these somewhere? */
46 #define ceil(x, y) \
47 ({ unsigned long __x = (x), __y = (y); (__x + __y - 1) / __y; })
48
49 #define RDS_FRAG_SHIFT 12
50 #define RDS_FRAG_SIZE ((unsigned int)(1 << RDS_FRAG_SHIFT))
51
52 #define RDS_CONG_MAP_BYTES (65536 / 8)
53 #define RDS_CONG_MAP_LONGS (RDS_CONG_MAP_BYTES / sizeof(unsigned long))
54 #define RDS_CONG_MAP_PAGES (PAGE_ALIGN(RDS_CONG_MAP_BYTES) / PAGE_SIZE)
55 #define RDS_CONG_MAP_PAGE_BITS (PAGE_SIZE * 8)
56
57 struct rds_cong_map {
58 struct rb_node m_rb_node;
59 __be32 m_addr;
60 wait_queue_head_t m_waitq;
61 struct list_head m_conn_list;
62 unsigned long m_page_addrs[RDS_CONG_MAP_PAGES];
63 };
64
65
66 /*
67 * This is how we will track the connection state:
68 * A connection is always in one of the following
69 * states. Updates to the state are atomic and imply
70 * a memory barrier.
71 */
72 enum {
73 RDS_CONN_DOWN = 0,
74 RDS_CONN_CONNECTING,
75 RDS_CONN_DISCONNECTING,
76 RDS_CONN_UP,
77 RDS_CONN_ERROR,
78 };
79
80 /* Bits for c_flags */
81 #define RDS_LL_SEND_FULL 0
82 #define RDS_RECONNECT_PENDING 1
83
84 struct rds_connection {
85 struct hlist_node c_hash_node;
86 __be32 c_laddr;
87 __be32 c_faddr;
88 unsigned int c_loopback:1;
89 struct rds_connection *c_passive;
90
91 struct rds_cong_map *c_lcong;
92 struct rds_cong_map *c_fcong;
93
94 struct mutex c_send_lock; /* protect send ring */
95 struct rds_message *c_xmit_rm;
96 unsigned long c_xmit_sg;
97 unsigned int c_xmit_hdr_off;
98 unsigned int c_xmit_data_off;
99 unsigned int c_xmit_rdma_sent;
100 unsigned int c_xmit_atomic_sent;
101
102 spinlock_t c_lock; /* protect msg queues */
103 u64 c_next_tx_seq;
104 struct list_head c_send_queue;
105 struct list_head c_retrans;
106
107 u64 c_next_rx_seq;
108
109 struct rds_transport *c_trans;
110 void *c_transport_data;
111
112 atomic_t c_state;
113 unsigned long c_flags;
114 unsigned long c_reconnect_jiffies;
115 struct delayed_work c_send_w;
116 struct delayed_work c_recv_w;
117 struct delayed_work c_conn_w;
118 struct work_struct c_down_w;
119 struct mutex c_cm_lock; /* protect conn state & cm */
120
121 struct list_head c_map_item;
122 unsigned long c_map_queued;
123 unsigned long c_map_offset;
124 unsigned long c_map_bytes;
125
126 unsigned int c_unacked_packets;
127 unsigned int c_unacked_bytes;
128
129 /* Protocol version */
130 unsigned int c_version;
131 };
132
133 #define RDS_FLAG_CONG_BITMAP 0x01
134 #define RDS_FLAG_ACK_REQUIRED 0x02
135 #define RDS_FLAG_RETRANSMITTED 0x04
136 #define RDS_MAX_ADV_CREDIT 255
137
138 /*
139 * Maximum space available for extension headers.
140 */
141 #define RDS_HEADER_EXT_SPACE 16
142
143 struct rds_header {
144 __be64 h_sequence;
145 __be64 h_ack;
146 __be32 h_len;
147 __be16 h_sport;
148 __be16 h_dport;
149 u8 h_flags;
150 u8 h_credit;
151 u8 h_padding[4];
152 __sum16 h_csum;
153
154 u8 h_exthdr[RDS_HEADER_EXT_SPACE];
155 };
156
157 /*
158 * Reserved - indicates end of extensions
159 */
160 #define RDS_EXTHDR_NONE 0
161
162 /*
163 * This extension header is included in the very
164 * first message that is sent on a new connection,
165 * and identifies the protocol level. This will help
166 * rolling updates if a future change requires breaking
167 * the protocol.
168 * NB: This is no longer true for IB, where we do a version
169 * negotiation during the connection setup phase (protocol
170 * version information is included in the RDMA CM private data).
171 */
172 #define RDS_EXTHDR_VERSION 1
173 struct rds_ext_header_version {
174 __be32 h_version;
175 };
176
177 /*
178 * This extension header is included in the RDS message
179 * chasing an RDMA operation.
180 */
181 #define RDS_EXTHDR_RDMA 2
182 struct rds_ext_header_rdma {
183 __be32 h_rdma_rkey;
184 };
185
186 /*
187 * This extension header tells the peer about the
188 * destination <R_Key,offset> of the requested RDMA
189 * operation.
190 */
191 #define RDS_EXTHDR_RDMA_DEST 3
192 struct rds_ext_header_rdma_dest {
193 __be32 h_rdma_rkey;
194 __be32 h_rdma_offset;
195 };
196
197 #define __RDS_EXTHDR_MAX 16 /* for now */
198
199 struct rds_incoming {
200 atomic_t i_refcount;
201 struct list_head i_item;
202 struct rds_connection *i_conn;
203 struct rds_header i_hdr;
204 unsigned long i_rx_jiffies;
205 __be32 i_saddr;
206
207 rds_rdma_cookie_t i_rdma_cookie;
208 };
209
210 struct rds_mr {
211 struct rb_node r_rb_node;
212 atomic_t r_refcount;
213 u32 r_key;
214
215 /* A copy of the creation flags */
216 unsigned int r_use_once:1;
217 unsigned int r_invalidate:1;
218 unsigned int r_write:1;
219
220 /* This is for RDS_MR_DEAD.
221 * It would be nice & consistent to make this part of the above
222 * bit field here, but we need to use test_and_set_bit.
223 */
224 unsigned long r_state;
225 struct rds_sock *r_sock; /* back pointer to the socket that owns us */
226 struct rds_transport *r_trans;
227 void *r_trans_private;
228 };
229
230 /* Flags for mr->r_state */
231 #define RDS_MR_DEAD 0
232
233 static inline rds_rdma_cookie_t rds_rdma_make_cookie(u32 r_key, u32 offset)
234 {
235 return r_key | (((u64) offset) << 32);
236 }
237
238 static inline u32 rds_rdma_cookie_key(rds_rdma_cookie_t cookie)
239 {
240 return cookie;
241 }
242
243 static inline u32 rds_rdma_cookie_offset(rds_rdma_cookie_t cookie)
244 {
245 return cookie >> 32;
246 }
247
248 /* atomic operation types */
249 #define RDS_ATOMIC_TYPE_CSWP 0
250 #define RDS_ATOMIC_TYPE_FADD 1
251
252 /*
253 * m_sock_item and m_conn_item are on lists that are serialized under
254 * conn->c_lock. m_sock_item has additional meaning in that once it is empty
255 * the message will not be put back on the retransmit list after being sent.
256 * messages that are canceled while being sent rely on this.
257 *
258 * m_inc is used by loopback so that it can pass an incoming message straight
259 * back up into the rx path. It embeds a wire header which is also used by
260 * the send path, which is kind of awkward.
261 *
262 * m_sock_item indicates the message's presence on a socket's send or receive
263 * queue. m_rs will point to that socket.
264 *
265 * m_daddr is used by cancellation to prune messages to a given destination.
266 *
267 * The RDS_MSG_ON_SOCK and RDS_MSG_ON_CONN flags are used to avoid lock
268 * nesting. As paths iterate over messages on a sock, or conn, they must
269 * also lock the conn, or sock, to remove the message from those lists too.
270 * Testing the flag to determine if the message is still on the lists lets
271 * us avoid testing the list_head directly. That means each path can use
272 * the message's list_head to keep it on a local list while juggling locks
273 * without confusing the other path.
274 *
275 * m_ack_seq is an optional field set by transports who need a different
276 * sequence number range to invalidate. They can use this in a callback
277 * that they pass to rds_send_drop_acked() to see if each message has been
278 * acked. The HAS_ACK_SEQ flag can be used to detect messages which haven't
279 * had ack_seq set yet.
280 */
281 #define RDS_MSG_ON_SOCK 1
282 #define RDS_MSG_ON_CONN 2
283 #define RDS_MSG_HAS_ACK_SEQ 3
284 #define RDS_MSG_ACK_REQUIRED 4
285 #define RDS_MSG_RETRANSMITTED 5
286 #define RDS_MSG_MAPPED 6
287 #define RDS_MSG_PAGEVEC 7
288
289 struct rds_message {
290 atomic_t m_refcount;
291 struct list_head m_sock_item;
292 struct list_head m_conn_item;
293 struct rds_incoming m_inc;
294 u64 m_ack_seq;
295 __be32 m_daddr;
296 unsigned long m_flags;
297
298 /* Never access m_rs without holding m_rs_lock.
299 * Lock nesting is
300 * rm->m_rs_lock
301 * -> rs->rs_lock
302 */
303 spinlock_t m_rs_lock;
304 struct rds_sock *m_rs;
305 rds_rdma_cookie_t m_rdma_cookie;
306 struct {
307 struct rm_atomic_op {
308 int op_type;
309 uint64_t op_swap_add;
310 uint64_t op_compare;
311
312 u32 op_rkey;
313 u64 op_remote_addr;
314 unsigned int op_notify:1;
315 unsigned int op_recverr:1;
316 unsigned int op_mapped:1;
317 unsigned int op_active:1;
318 struct scatterlist *op_sg;
319 struct rds_notifier *op_notifier;
320
321 struct rds_mr *op_rdma_mr;
322 } atomic;
323 struct rm_rdma_op {
324 u32 op_rkey;
325 u64 op_remote_addr;
326 unsigned int op_write:1;
327 unsigned int op_fence:1;
328 unsigned int op_notify:1;
329 unsigned int op_recverr:1;
330 unsigned int op_mapped:1;
331 unsigned int op_active:1;
332 unsigned int op_bytes;
333 unsigned int op_nents;
334 unsigned int op_count;
335 struct scatterlist *op_sg;
336 struct rds_notifier *op_notifier;
337
338 struct rds_mr *op_rdma_mr;
339 } rdma;
340 struct rm_data_op {
341 unsigned int op_active:1;
342 unsigned int op_nents;
343 unsigned int op_count;
344 struct scatterlist *op_sg;
345 } data;
346 };
347 unsigned int m_used_sgs;
348 unsigned int m_total_sgs;
349 };
350
351 /*
352 * The RDS notifier is used (optionally) to tell the application about
353 * completed RDMA operations. Rather than keeping the whole rds message
354 * around on the queue, we allocate a small notifier that is put on the
355 * socket's notifier_list. Notifications are delivered to the application
356 * through control messages.
357 */
358 struct rds_notifier {
359 struct list_head n_list;
360 uint64_t n_user_token;
361 int n_status;
362 };
363
364 /**
365 * struct rds_transport - transport specific behavioural hooks
366 *
367 * @xmit: .xmit is called by rds_send_xmit() to tell the transport to send
368 * part of a message. The caller serializes on the send_sem so this
369 * doesn't need to be reentrant for a given conn. The header must be
370 * sent before the data payload. .xmit must be prepared to send a
371 * message with no data payload. .xmit should return the number of
372 * bytes that were sent down the connection, including header bytes.
373 * Returning 0 tells the caller that it doesn't need to perform any
374 * additional work now. This is usually the case when the transport has
375 * filled the sending queue for its connection and will handle
376 * triggering the rds thread to continue the send when space becomes
377 * available. Returning -EAGAIN tells the caller to retry the send
378 * immediately. Returning -ENOMEM tells the caller to retry the send at
379 * some point in the future.
380 *
381 * @conn_shutdown: conn_shutdown stops traffic on the given connection. Once
382 * it returns the connection can not call rds_recv_incoming().
383 * This will only be called once after conn_connect returns
384 * non-zero success and will The caller serializes this with
385 * the send and connecting paths (xmit_* and conn_*). The
386 * transport is responsible for other serialization, including
387 * rds_recv_incoming(). This is called in process context but
388 * should try hard not to block.
389 *
390 * @xmit_cong_map: This asks the transport to send the local bitmap down the
391 * given connection. XXX get a better story about the bitmap
392 * flag and header.
393 */
394
395 #define RDS_TRANS_IB 0
396 #define RDS_TRANS_IWARP 1
397 #define RDS_TRANS_TCP 2
398 #define RDS_TRANS_COUNT 3
399
400 struct rds_transport {
401 char t_name[TRANSNAMSIZ];
402 struct list_head t_item;
403 struct module *t_owner;
404 unsigned int t_prefer_loopback:1;
405 unsigned int t_type;
406
407 int (*laddr_check)(__be32 addr);
408 int (*conn_alloc)(struct rds_connection *conn, gfp_t gfp);
409 void (*conn_free)(void *data);
410 int (*conn_connect)(struct rds_connection *conn);
411 void (*conn_shutdown)(struct rds_connection *conn);
412 void (*xmit_prepare)(struct rds_connection *conn);
413 void (*xmit_complete)(struct rds_connection *conn);
414 int (*xmit)(struct rds_connection *conn, struct rds_message *rm,
415 unsigned int hdr_off, unsigned int sg, unsigned int off);
416 int (*xmit_cong_map)(struct rds_connection *conn,
417 struct rds_cong_map *map, unsigned long offset);
418 int (*xmit_rdma)(struct rds_connection *conn, struct rm_rdma_op *op);
419 int (*xmit_atomic)(struct rds_connection *conn, struct rds_message *rm);
420 int (*recv)(struct rds_connection *conn);
421 int (*inc_copy_to_user)(struct rds_incoming *inc, struct iovec *iov,
422 size_t size);
423 void (*inc_free)(struct rds_incoming *inc);
424
425 int (*cm_handle_connect)(struct rdma_cm_id *cm_id,
426 struct rdma_cm_event *event);
427 int (*cm_initiate_connect)(struct rdma_cm_id *cm_id);
428 void (*cm_connect_complete)(struct rds_connection *conn,
429 struct rdma_cm_event *event);
430
431 unsigned int (*stats_info_copy)(struct rds_info_iterator *iter,
432 unsigned int avail);
433 void (*exit)(void);
434 void *(*get_mr)(struct scatterlist *sg, unsigned long nr_sg,
435 struct rds_sock *rs, u32 *key_ret);
436 void (*sync_mr)(void *trans_private, int direction);
437 void (*free_mr)(void *trans_private, int invalidate);
438 void (*flush_mrs)(void);
439 };
440
441 struct rds_sock {
442 struct sock rs_sk;
443
444 u64 rs_user_addr;
445 u64 rs_user_bytes;
446
447 /*
448 * bound_addr used for both incoming and outgoing, no INADDR_ANY
449 * support.
450 */
451 struct rb_node rs_bound_node;
452 __be32 rs_bound_addr;
453 __be32 rs_conn_addr;
454 __be16 rs_bound_port;
455 __be16 rs_conn_port;
456
457 /*
458 * This is only used to communicate the transport between bind and
459 * initiating connections. All other trans use is referenced through
460 * the connection.
461 */
462 struct rds_transport *rs_transport;
463
464 /*
465 * rds_sendmsg caches the conn it used the last time around.
466 * This helps avoid costly lookups.
467 */
468 struct rds_connection *rs_conn;
469
470 /* flag indicating we were congested or not */
471 int rs_congested;
472 /* seen congestion (ENOBUFS) when sending? */
473 int rs_seen_congestion;
474
475 /* rs_lock protects all these adjacent members before the newline */
476 spinlock_t rs_lock;
477 struct list_head rs_send_queue;
478 u32 rs_snd_bytes;
479 int rs_rcv_bytes;
480 struct list_head rs_notify_queue; /* currently used for failed RDMAs */
481
482 /* Congestion wake_up. If rs_cong_monitor is set, we use cong_mask
483 * to decide whether the application should be woken up.
484 * If not set, we use rs_cong_track to find out whether a cong map
485 * update arrived.
486 */
487 uint64_t rs_cong_mask;
488 uint64_t rs_cong_notify;
489 struct list_head rs_cong_list;
490 unsigned long rs_cong_track;
491
492 /*
493 * rs_recv_lock protects the receive queue, and is
494 * used to serialize with rds_release.
495 */
496 rwlock_t rs_recv_lock;
497 struct list_head rs_recv_queue;
498
499 /* just for stats reporting */
500 struct list_head rs_item;
501
502 /* these have their own lock */
503 spinlock_t rs_rdma_lock;
504 struct rb_root rs_rdma_keys;
505
506 /* Socket options - in case there will be more */
507 unsigned char rs_recverr,
508 rs_cong_monitor;
509 };
510
511 static inline struct rds_sock *rds_sk_to_rs(const struct sock *sk)
512 {
513 return container_of(sk, struct rds_sock, rs_sk);
514 }
515 static inline struct sock *rds_rs_to_sk(struct rds_sock *rs)
516 {
517 return &rs->rs_sk;
518 }
519
520 /*
521 * The stack assigns sk_sndbuf and sk_rcvbuf to twice the specified value
522 * to account for overhead. We don't account for overhead, we just apply
523 * the number of payload bytes to the specified value.
524 */
525 static inline int rds_sk_sndbuf(struct rds_sock *rs)
526 {
527 return rds_rs_to_sk(rs)->sk_sndbuf / 2;
528 }
529 static inline int rds_sk_rcvbuf(struct rds_sock *rs)
530 {
531 return rds_rs_to_sk(rs)->sk_rcvbuf / 2;
532 }
533
534 struct rds_statistics {
535 uint64_t s_conn_reset;
536 uint64_t s_recv_drop_bad_checksum;
537 uint64_t s_recv_drop_old_seq;
538 uint64_t s_recv_drop_no_sock;
539 uint64_t s_recv_drop_dead_sock;
540 uint64_t s_recv_deliver_raced;
541 uint64_t s_recv_delivered;
542 uint64_t s_recv_queued;
543 uint64_t s_recv_immediate_retry;
544 uint64_t s_recv_delayed_retry;
545 uint64_t s_recv_ack_required;
546 uint64_t s_recv_rdma_bytes;
547 uint64_t s_recv_ping;
548 uint64_t s_send_queue_empty;
549 uint64_t s_send_queue_full;
550 uint64_t s_send_sem_contention;
551 uint64_t s_send_sem_queue_raced;
552 uint64_t s_send_immediate_retry;
553 uint64_t s_send_delayed_retry;
554 uint64_t s_send_drop_acked;
555 uint64_t s_send_ack_required;
556 uint64_t s_send_queued;
557 uint64_t s_send_rdma;
558 uint64_t s_send_rdma_bytes;
559 uint64_t s_send_pong;
560 uint64_t s_page_remainder_hit;
561 uint64_t s_page_remainder_miss;
562 uint64_t s_copy_to_user;
563 uint64_t s_copy_from_user;
564 uint64_t s_cong_update_queued;
565 uint64_t s_cong_update_received;
566 uint64_t s_cong_send_error;
567 uint64_t s_cong_send_blocked;
568 uint64_t s_atomic_cswp;
569 uint64_t s_atomic_fadd;
570 };
571
572 /* af_rds.c */
573 void rds_sock_addref(struct rds_sock *rs);
574 void rds_sock_put(struct rds_sock *rs);
575 void rds_wake_sk_sleep(struct rds_sock *rs);
576 static inline void __rds_wake_sk_sleep(struct sock *sk)
577 {
578 wait_queue_head_t *waitq = sk_sleep(sk);
579
580 if (!sock_flag(sk, SOCK_DEAD) && waitq)
581 wake_up(waitq);
582 }
583 extern wait_queue_head_t rds_poll_waitq;
584
585
586 /* bind.c */
587 int rds_bind(struct socket *sock, struct sockaddr *uaddr, int addr_len);
588 void rds_remove_bound(struct rds_sock *rs);
589 struct rds_sock *rds_find_bound(__be32 addr, __be16 port);
590
591 /* cong.c */
592 int rds_cong_get_maps(struct rds_connection *conn);
593 void rds_cong_add_conn(struct rds_connection *conn);
594 void rds_cong_remove_conn(struct rds_connection *conn);
595 void rds_cong_set_bit(struct rds_cong_map *map, __be16 port);
596 void rds_cong_clear_bit(struct rds_cong_map *map, __be16 port);
597 int rds_cong_wait(struct rds_cong_map *map, __be16 port, int nonblock, struct rds_sock *rs);
598 void rds_cong_queue_updates(struct rds_cong_map *map);
599 void rds_cong_map_updated(struct rds_cong_map *map, uint64_t);
600 int rds_cong_updated_since(unsigned long *recent);
601 void rds_cong_add_socket(struct rds_sock *);
602 void rds_cong_remove_socket(struct rds_sock *);
603 void rds_cong_exit(void);
604 struct rds_message *rds_cong_update_alloc(struct rds_connection *conn);
605
606 /* conn.c */
607 int __init rds_conn_init(void);
608 void rds_conn_exit(void);
609 struct rds_connection *rds_conn_create(__be32 laddr, __be32 faddr,
610 struct rds_transport *trans, gfp_t gfp);
611 struct rds_connection *rds_conn_create_outgoing(__be32 laddr, __be32 faddr,
612 struct rds_transport *trans, gfp_t gfp);
613 void rds_conn_shutdown(struct rds_connection *conn);
614 void rds_conn_destroy(struct rds_connection *conn);
615 void rds_conn_reset(struct rds_connection *conn);
616 void rds_conn_drop(struct rds_connection *conn);
617 void rds_for_each_conn_info(struct socket *sock, unsigned int len,
618 struct rds_info_iterator *iter,
619 struct rds_info_lengths *lens,
620 int (*visitor)(struct rds_connection *, void *),
621 size_t item_len);
622 void __rds_conn_error(struct rds_connection *conn, const char *, ...)
623 __attribute__ ((format (printf, 2, 3)));
624 #define rds_conn_error(conn, fmt...) \
625 __rds_conn_error(conn, KERN_WARNING "RDS: " fmt)
626
627 static inline int
628 rds_conn_transition(struct rds_connection *conn, int old, int new)
629 {
630 return atomic_cmpxchg(&conn->c_state, old, new) == old;
631 }
632
633 static inline int
634 rds_conn_state(struct rds_connection *conn)
635 {
636 return atomic_read(&conn->c_state);
637 }
638
639 static inline int
640 rds_conn_up(struct rds_connection *conn)
641 {
642 return atomic_read(&conn->c_state) == RDS_CONN_UP;
643 }
644
645 static inline int
646 rds_conn_connecting(struct rds_connection *conn)
647 {
648 return atomic_read(&conn->c_state) == RDS_CONN_CONNECTING;
649 }
650
651 /* message.c */
652 struct rds_message *rds_message_alloc(unsigned int nents, gfp_t gfp);
653 struct scatterlist *rds_message_alloc_sgs(struct rds_message *rm, int nents);
654 int rds_message_copy_from_user(struct rds_message *rm, struct iovec *first_iov,
655 size_t total_len);
656 struct rds_message *rds_message_map_pages(unsigned long *page_addrs, unsigned int total_len);
657 void rds_message_populate_header(struct rds_header *hdr, __be16 sport,
658 __be16 dport, u64 seq);
659 int rds_message_add_extension(struct rds_header *hdr,
660 unsigned int type, const void *data, unsigned int len);
661 int rds_message_next_extension(struct rds_header *hdr,
662 unsigned int *pos, void *buf, unsigned int *buflen);
663 int rds_message_add_version_extension(struct rds_header *hdr, unsigned int version);
664 int rds_message_get_version_extension(struct rds_header *hdr, unsigned int *version);
665 int rds_message_add_rdma_dest_extension(struct rds_header *hdr, u32 r_key, u32 offset);
666 int rds_message_inc_copy_to_user(struct rds_incoming *inc,
667 struct iovec *first_iov, size_t size);
668 void rds_message_inc_free(struct rds_incoming *inc);
669 void rds_message_addref(struct rds_message *rm);
670 void rds_message_put(struct rds_message *rm);
671 void rds_message_wait(struct rds_message *rm);
672 void rds_message_unmapped(struct rds_message *rm);
673
674 static inline void rds_message_make_checksum(struct rds_header *hdr)
675 {
676 hdr->h_csum = 0;
677 hdr->h_csum = ip_fast_csum((void *) hdr, sizeof(*hdr) >> 2);
678 }
679
680 static inline int rds_message_verify_checksum(const struct rds_header *hdr)
681 {
682 return !hdr->h_csum || ip_fast_csum((void *) hdr, sizeof(*hdr) >> 2) == 0;
683 }
684
685
686 /* page.c */
687 int rds_page_remainder_alloc(struct scatterlist *scat, unsigned long bytes,
688 gfp_t gfp);
689 int rds_page_copy_user(struct page *page, unsigned long offset,
690 void __user *ptr, unsigned long bytes,
691 int to_user);
692 #define rds_page_copy_to_user(page, offset, ptr, bytes) \
693 rds_page_copy_user(page, offset, ptr, bytes, 1)
694 #define rds_page_copy_from_user(page, offset, ptr, bytes) \
695 rds_page_copy_user(page, offset, ptr, bytes, 0)
696 void rds_page_exit(void);
697
698 /* recv.c */
699 void rds_inc_init(struct rds_incoming *inc, struct rds_connection *conn,
700 __be32 saddr);
701 void rds_inc_addref(struct rds_incoming *inc);
702 void rds_inc_put(struct rds_incoming *inc);
703 void rds_recv_incoming(struct rds_connection *conn, __be32 saddr, __be32 daddr,
704 struct rds_incoming *inc, gfp_t gfp, enum km_type km);
705 int rds_recvmsg(struct kiocb *iocb, struct socket *sock, struct msghdr *msg,
706 size_t size, int msg_flags);
707 void rds_clear_recv_queue(struct rds_sock *rs);
708 int rds_notify_queue_get(struct rds_sock *rs, struct msghdr *msg);
709 void rds_inc_info_copy(struct rds_incoming *inc,
710 struct rds_info_iterator *iter,
711 __be32 saddr, __be32 daddr, int flip);
712
713 /* send.c */
714 int rds_sendmsg(struct kiocb *iocb, struct socket *sock, struct msghdr *msg,
715 size_t payload_len);
716 void rds_send_reset(struct rds_connection *conn);
717 int rds_send_xmit(struct rds_connection *conn);
718 struct sockaddr_in;
719 void rds_send_drop_to(struct rds_sock *rs, struct sockaddr_in *dest);
720 typedef int (*is_acked_func)(struct rds_message *rm, uint64_t ack);
721 void rds_send_drop_acked(struct rds_connection *conn, u64 ack,
722 is_acked_func is_acked);
723 int rds_send_acked_before(struct rds_connection *conn, u64 seq);
724 void rds_send_remove_from_sock(struct list_head *messages, int status);
725 int rds_send_pong(struct rds_connection *conn, __be16 dport);
726 struct rds_message *rds_send_get_message(struct rds_connection *,
727 struct rm_rdma_op *);
728
729 /* rdma.c */
730 void rds_rdma_unuse(struct rds_sock *rs, u32 r_key, int force);
731 int rds_get_mr(struct rds_sock *rs, char __user *optval, int optlen);
732 int rds_get_mr_for_dest(struct rds_sock *rs, char __user *optval, int optlen);
733 int rds_free_mr(struct rds_sock *rs, char __user *optval, int optlen);
734 void rds_rdma_drop_keys(struct rds_sock *rs);
735 int rds_rdma_extra_size(struct rds_rdma_args *args);
736 int rds_cmsg_rdma_args(struct rds_sock *rs, struct rds_message *rm,
737 struct cmsghdr *cmsg);
738 int rds_cmsg_rdma_dest(struct rds_sock *rs, struct rds_message *rm,
739 struct cmsghdr *cmsg);
740 int rds_cmsg_rdma_args(struct rds_sock *rs, struct rds_message *rm,
741 struct cmsghdr *cmsg);
742 int rds_cmsg_rdma_map(struct rds_sock *rs, struct rds_message *rm,
743 struct cmsghdr *cmsg);
744 void rds_rdma_free_op(struct rm_rdma_op *ro);
745 void rds_atomic_free_op(struct rm_atomic_op *ao);
746 void rds_rdma_send_complete(struct rds_message *rm, int wc_status);
747 void rds_atomic_send_complete(struct rds_message *rm, int wc_status);
748 int rds_cmsg_atomic(struct rds_sock *rs, struct rds_message *rm,
749 struct cmsghdr *cmsg);
750
751 extern void __rds_put_mr_final(struct rds_mr *mr);
752 static inline void rds_mr_put(struct rds_mr *mr)
753 {
754 if (atomic_dec_and_test(&mr->r_refcount))
755 __rds_put_mr_final(mr);
756 }
757
758 /* stats.c */
759 DECLARE_PER_CPU_SHARED_ALIGNED(struct rds_statistics, rds_stats);
760 #define rds_stats_inc_which(which, member) do { \
761 per_cpu(which, get_cpu()).member++; \
762 put_cpu(); \
763 } while (0)
764 #define rds_stats_inc(member) rds_stats_inc_which(rds_stats, member)
765 #define rds_stats_add_which(which, member, count) do { \
766 per_cpu(which, get_cpu()).member += count; \
767 put_cpu(); \
768 } while (0)
769 #define rds_stats_add(member, count) rds_stats_add_which(rds_stats, member, count)
770 int __init rds_stats_init(void);
771 void rds_stats_exit(void);
772 void rds_stats_info_copy(struct rds_info_iterator *iter,
773 uint64_t *values, const char *const *names,
774 size_t nr);
775
776 /* sysctl.c */
777 int __init rds_sysctl_init(void);
778 void rds_sysctl_exit(void);
779 extern unsigned long rds_sysctl_sndbuf_min;
780 extern unsigned long rds_sysctl_sndbuf_default;
781 extern unsigned long rds_sysctl_sndbuf_max;
782 extern unsigned long rds_sysctl_reconnect_min_jiffies;
783 extern unsigned long rds_sysctl_reconnect_max_jiffies;
784 extern unsigned int rds_sysctl_max_unacked_packets;
785 extern unsigned int rds_sysctl_max_unacked_bytes;
786 extern unsigned int rds_sysctl_ping_enable;
787 extern unsigned long rds_sysctl_trace_flags;
788 extern unsigned int rds_sysctl_trace_level;
789
790 /* threads.c */
791 int __init rds_threads_init(void);
792 void rds_threads_exit(void);
793 extern struct workqueue_struct *rds_wq;
794 void rds_queue_reconnect(struct rds_connection *conn);
795 void rds_connect_worker(struct work_struct *);
796 void rds_shutdown_worker(struct work_struct *);
797 void rds_send_worker(struct work_struct *);
798 void rds_recv_worker(struct work_struct *);
799 void rds_connect_complete(struct rds_connection *conn);
800
801 /* transport.c */
802 int rds_trans_register(struct rds_transport *trans);
803 void rds_trans_unregister(struct rds_transport *trans);
804 struct rds_transport *rds_trans_get_preferred(__be32 addr);
805 unsigned int rds_trans_stats_info_copy(struct rds_info_iterator *iter,
806 unsigned int avail);
807 int __init rds_trans_init(void);
808 void rds_trans_exit(void);
809
810 #endif
This page took 0.046092 seconds and 5 git commands to generate.