xprtrdma: Clean up rpcrdma_ia_open()
[linux-2.6-block.git] / net / sunrpc / xprtrdma / xprt_rdma.h
CommitLineData
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1/*
2 * Copyright (c) 2003-2007 Network Appliance, Inc. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the BSD-type
8 * license below:
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 *
14 * Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
16 *
17 * Redistributions in binary form must reproduce the above
18 * copyright notice, this list of conditions and the following
19 * disclaimer in the documentation and/or other materials provided
20 * with the distribution.
21 *
22 * Neither the name of the Network Appliance, Inc. nor the names of
23 * its contributors may be used to endorse or promote products
24 * derived from this software without specific prior written
25 * permission.
26 *
27 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
28 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
29 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
30 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
31 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
32 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
33 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
34 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
35 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
36 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
37 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
38 */
39
40#ifndef _LINUX_SUNRPC_XPRT_RDMA_H
41#define _LINUX_SUNRPC_XPRT_RDMA_H
42
43#include <linux/wait.h> /* wait_queue_head_t, etc */
44#include <linux/spinlock.h> /* spinlock_t, etc */
60063497 45#include <linux/atomic.h> /* atomic_t, etc */
254f91e2 46#include <linux/workqueue.h> /* struct work_struct */
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47
48#include <rdma/rdma_cm.h> /* RDMA connection api */
49#include <rdma/ib_verbs.h> /* RDMA verbs api */
50
51#include <linux/sunrpc/clnt.h> /* rpc_xprt */
52#include <linux/sunrpc/rpc_rdma.h> /* RPC/RDMA protocol */
53#include <linux/sunrpc/xprtrdma.h> /* xprt parameters */
7e5be288 54#include <linux/sunrpc/svc.h> /* RPCSVC_MAXPAYLOAD */
f58851e6 55
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56#define RDMA_RESOLVE_TIMEOUT (5000) /* 5 seconds */
57#define RDMA_CONNECT_RETRY_MAX (2) /* retries if no listener backlog */
58
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59/*
60 * Interface Adapter -- one per transport instance
61 */
62struct rpcrdma_ia {
a0ce85f5 63 const struct rpcrdma_memreg_ops *ri_ops;
73806c88 64 rwlock_t ri_qplock;
89e0d112 65 struct ib_device *ri_device;
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66 struct rdma_cm_id *ri_id;
67 struct ib_pd *ri_pd;
d1ed857e 68 struct ib_mr *ri_dma_mr;
fe9053b3 69 u32 ri_dma_lkey;
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70 struct completion ri_done;
71 int ri_async_rc;
0fc6c4e7 72 unsigned int ri_max_frmr_depth;
7bc7972c 73 struct ib_device_attr ri_devattr;
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74 struct ib_qp_attr ri_qp_attr;
75 struct ib_qp_init_attr ri_qp_init_attr;
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76};
77
78/*
79 * RDMA Endpoint -- one per transport instance
80 */
81
8301a2c0 82#define RPCRDMA_WC_BUDGET (128)
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83#define RPCRDMA_POLLSIZE (16)
84
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85struct rpcrdma_ep {
86 atomic_t rep_cqcount;
87 int rep_cqinit;
88 int rep_connected;
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89 struct ib_qp_init_attr rep_attr;
90 wait_queue_head_t rep_connect_wait;
c05fbb5a 91 struct rpcrdma_regbuf *rep_padbuf;
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92 struct rdma_conn_param rep_remote_cma;
93 struct sockaddr_storage rep_remote_addr;
254f91e2 94 struct delayed_work rep_connect_worker;
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95 struct ib_wc rep_send_wcs[RPCRDMA_POLLSIZE];
96 struct ib_wc rep_recv_wcs[RPCRDMA_POLLSIZE];
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97};
98
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99/*
100 * Force a signaled SEND Work Request every so often,
101 * in case the provider needs to do some housekeeping.
102 */
103#define RPCRDMA_MAX_UNSIGNALED_SENDS (32)
104
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105#define INIT_CQCOUNT(ep) atomic_set(&(ep)->rep_cqcount, (ep)->rep_cqinit)
106#define DECR_CQCOUNT(ep) atomic_sub_return(1, &(ep)->rep_cqcount)
107
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108/* Force completion handler to ignore the signal
109 */
110#define RPCRDMA_IGNORE_COMPLETION (0ULL)
111
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112/* Registered buffer -- registered kmalloc'd memory for RDMA SEND/RECV
113 *
114 * The below structure appears at the front of a large region of kmalloc'd
115 * memory, which always starts on a good alignment boundary.
116 */
117
118struct rpcrdma_regbuf {
119 size_t rg_size;
120 struct rpcrdma_req *rg_owner;
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121 struct ib_sge rg_iov;
122 __be32 rg_base[0] __attribute__ ((aligned(256)));
123};
124
125static inline u64
126rdmab_addr(struct rpcrdma_regbuf *rb)
127{
128 return rb->rg_iov.addr;
129}
130
131static inline u32
132rdmab_length(struct rpcrdma_regbuf *rb)
133{
134 return rb->rg_iov.length;
135}
136
137static inline u32
138rdmab_lkey(struct rpcrdma_regbuf *rb)
139{
140 return rb->rg_iov.lkey;
141}
142
143static inline struct rpcrdma_msg *
144rdmab_to_msg(struct rpcrdma_regbuf *rb)
145{
146 return (struct rpcrdma_msg *)rb->rg_base;
147}
148
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149/*
150 * struct rpcrdma_rep -- this structure encapsulates state required to recv
151 * and complete a reply, asychronously. It needs several pieces of
152 * state:
153 * o recv buffer (posted to provider)
154 * o ib_sge (also donated to provider)
155 * o status of reply (length, success or not)
156 * o bookkeeping state to get run by tasklet (list, etc)
157 *
158 * These are allocated during initialization, per-transport instance;
159 * however, the tasklet execution list itself is global, as it should
160 * always be pretty short.
161 *
162 * N of these are associated with a transport instance, and stored in
163 * struct rpcrdma_buffer. N is the max number of outstanding requests.
164 */
165
864be126 166#define RPCRDMA_MAX_DATA_SEGS ((1 * 1024 * 1024) / PAGE_SIZE)
f58851e6 167#define RPCRDMA_MAX_SEGS (RPCRDMA_MAX_DATA_SEGS + 2) /* head+tail = 2 */
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168
169struct rpcrdma_buffer;
170
171struct rpcrdma_rep {
6b1184cd 172 unsigned int rr_len;
89e0d112 173 struct ib_device *rr_device;
fed171b3 174 struct rpcrdma_xprt *rr_rxprt;
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175 struct list_head rr_list;
176 struct rpcrdma_regbuf *rr_rdmabuf;
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177};
178
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179/*
180 * struct rpcrdma_mw - external memory region metadata
181 *
182 * An external memory region is any buffer or page that is registered
183 * on the fly (ie, not pre-registered).
184 *
3111d72c 185 * Each rpcrdma_buffer has a list of free MWs anchored in rb_mws. During
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186 * call_allocate, rpcrdma_buffer_get() assigns one to each segment in
187 * an rpcrdma_req. Then rpcrdma_register_external() grabs these to keep
188 * track of registration metadata while each RPC is pending.
189 * rpcrdma_deregister_external() uses this metadata to unmap and
190 * release these resources when an RPC is complete.
191 */
192enum rpcrdma_frmr_state {
193 FRMR_IS_INVALID, /* ready to be used */
194 FRMR_IS_VALID, /* in use */
9f9d802a 195 FRMR_IS_STALE, /* failed completion */
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196};
197
198struct rpcrdma_frmr {
199 struct ib_fast_reg_page_list *fr_pgl;
200 struct ib_mr *fr_mr;
201 enum rpcrdma_frmr_state fr_state;
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202 struct work_struct fr_work;
203 struct rpcrdma_xprt *fr_xprt;
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204};
205
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206struct rpcrdma_fmr {
207 struct ib_fmr *fmr;
208 u64 *physaddrs;
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209};
210
211struct rpcrdma_mw {
212 union {
acb9da7a 213 struct rpcrdma_fmr fmr;
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214 struct rpcrdma_frmr frmr;
215 } r;
e46ac34c 216 void (*mw_sendcompletion)(struct ib_wc *);
0dbb4108 217 struct list_head mw_list;
3111d72c 218 struct list_head mw_all;
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219};
220
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221/*
222 * struct rpcrdma_req -- structure central to the request/reply sequence.
223 *
224 * N of these are associated with a transport instance, and stored in
225 * struct rpcrdma_buffer. N is the max number of outstanding requests.
226 *
227 * It includes pre-registered buffer memory for send AND recv.
228 * The recv buffer, however, is not owned by this structure, and
229 * is "donated" to the hardware when a recv is posted. When a
230 * reply is handled, the recv buffer used is given back to the
231 * struct rpcrdma_req associated with the request.
232 *
233 * In addition to the basic memory, this structure includes an array
234 * of iovs for send operations. The reason is that the iovs passed to
235 * ib_post_{send,recv} must not be modified until the work request
236 * completes.
237 *
238 * NOTES:
239 * o RPCRDMA_MAX_SEGS is the max number of addressible chunk elements we
240 * marshal. The number needed varies depending on the iov lists that
241 * are passed to us, the memory registration mode we are in, and if
242 * physical addressing is used, the layout.
243 */
244
245struct rpcrdma_mr_seg { /* chunk descriptors */
3eb35810 246 struct rpcrdma_mw *rl_mw; /* registered MR */
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247 u64 mr_base; /* registration result */
248 u32 mr_rkey; /* registration result */
249 u32 mr_len; /* length of chunk or segment */
250 int mr_nsegs; /* number of segments in chunk or 0 */
251 enum dma_data_direction mr_dir; /* segment mapping direction */
252 dma_addr_t mr_dma; /* segment mapping address */
253 size_t mr_dmalen; /* segment mapping length */
254 struct page *mr_page; /* owning page, if any */
255 char *mr_offset; /* kva if no page, else offset */
256};
257
258struct rpcrdma_req {
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259 unsigned int rl_niovs; /* 0, 2 or 4 */
260 unsigned int rl_nchunks; /* non-zero if chunks */
575448bd 261 unsigned int rl_connect_cookie; /* retry detection */
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262 struct rpcrdma_buffer *rl_buffer; /* home base for this structure */
263 struct rpcrdma_rep *rl_reply;/* holder for reply buffer */
f58851e6 264 struct ib_sge rl_send_iov[4]; /* for active requests */
85275c87 265 struct rpcrdma_regbuf *rl_rdmabuf;
0ca77dc3 266 struct rpcrdma_regbuf *rl_sendbuf;
85275c87 267 struct rpcrdma_mr_seg rl_segments[RPCRDMA_MAX_SEGS];
f58851e6 268};
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269
270static inline struct rpcrdma_req *
271rpcr_to_rdmar(struct rpc_rqst *rqst)
272{
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273 void *buffer = rqst->rq_buffer;
274 struct rpcrdma_regbuf *rb;
275
276 rb = container_of(buffer, struct rpcrdma_regbuf, rg_base);
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277 return rb->rg_owner;
278}
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279
280/*
281 * struct rpcrdma_buffer -- holds list/queue of pre-registered memory for
282 * inline requests/replies, and client/server credits.
283 *
284 * One of these is associated with a transport instance
285 */
286struct rpcrdma_buffer {
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287 spinlock_t rb_mwlock; /* protect rb_mws list */
288 struct list_head rb_mws;
289 struct list_head rb_all;
290 char *rb_pool;
291
292 spinlock_t rb_lock; /* protect buf arrays */
293 u32 rb_max_requests;
294 int rb_send_index;
295 int rb_recv_index;
f58851e6 296 struct rpcrdma_req **rb_send_bufs;
f58851e6 297 struct rpcrdma_rep **rb_recv_bufs;
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298};
299#define rdmab_to_ia(b) (&container_of((b), struct rpcrdma_xprt, rx_buf)->rx_ia)
300
301/*
302 * Internal structure for transport instance creation. This
303 * exists primarily for modularity.
304 *
305 * This data should be set with mount options
306 */
307struct rpcrdma_create_data_internal {
308 struct sockaddr_storage addr; /* RDMA server address */
309 unsigned int max_requests; /* max requests (slots) in flight */
310 unsigned int rsize; /* mount rsize - max read hdr+data */
311 unsigned int wsize; /* mount wsize - max write hdr+data */
312 unsigned int inline_rsize; /* max non-rdma read data payload */
313 unsigned int inline_wsize; /* max non-rdma write data payload */
314 unsigned int padding; /* non-rdma write header padding */
315};
316
317#define RPCRDMA_INLINE_READ_THRESHOLD(rq) \
a4f0835c 318 (rpcx_to_rdmad(rq->rq_xprt).inline_rsize)
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319
320#define RPCRDMA_INLINE_WRITE_THRESHOLD(rq)\
a4f0835c 321 (rpcx_to_rdmad(rq->rq_xprt).inline_wsize)
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322
323#define RPCRDMA_INLINE_PAD_VALUE(rq)\
a4f0835c 324 rpcx_to_rdmad(rq->rq_xprt).padding
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325
326/*
327 * Statistics for RPCRDMA
328 */
329struct rpcrdma_stats {
330 unsigned long read_chunk_count;
331 unsigned long write_chunk_count;
332 unsigned long reply_chunk_count;
333
334 unsigned long long total_rdma_request;
335 unsigned long long total_rdma_reply;
336
337 unsigned long long pullup_copy_count;
338 unsigned long long fixup_copy_count;
339 unsigned long hardway_register_count;
340 unsigned long failed_marshal_count;
341 unsigned long bad_reply_count;
342};
343
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344/*
345 * Per-registration mode operations
346 */
1c9351ee 347struct rpcrdma_xprt;
a0ce85f5 348struct rpcrdma_memreg_ops {
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349 int (*ro_map)(struct rpcrdma_xprt *,
350 struct rpcrdma_mr_seg *, int, bool);
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351 int (*ro_unmap)(struct rpcrdma_xprt *,
352 struct rpcrdma_mr_seg *);
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353 int (*ro_open)(struct rpcrdma_ia *,
354 struct rpcrdma_ep *,
355 struct rpcrdma_create_data_internal *);
1c9351ee 356 size_t (*ro_maxpages)(struct rpcrdma_xprt *);
91e70e70 357 int (*ro_init)(struct rpcrdma_xprt *);
4561f347 358 void (*ro_destroy)(struct rpcrdma_buffer *);
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359 const char *ro_displayname;
360};
361
362extern const struct rpcrdma_memreg_ops rpcrdma_fmr_memreg_ops;
363extern const struct rpcrdma_memreg_ops rpcrdma_frwr_memreg_ops;
364extern const struct rpcrdma_memreg_ops rpcrdma_physical_memreg_ops;
365
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366/*
367 * RPCRDMA transport -- encapsulates the structures above for
368 * integration with RPC.
369 *
370 * The contained structures are embedded, not pointers,
371 * for convenience. This structure need not be visible externally.
372 *
373 * It is allocated and initialized during mount, and released
374 * during unmount.
375 */
376struct rpcrdma_xprt {
5abefb86 377 struct rpc_xprt rx_xprt;
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378 struct rpcrdma_ia rx_ia;
379 struct rpcrdma_ep rx_ep;
380 struct rpcrdma_buffer rx_buf;
381 struct rpcrdma_create_data_internal rx_data;
5abefb86 382 struct delayed_work rx_connect_worker;
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383 struct rpcrdma_stats rx_stats;
384};
385
5abefb86 386#define rpcx_to_rdmax(x) container_of(x, struct rpcrdma_xprt, rx_xprt)
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387#define rpcx_to_rdmad(x) (rpcx_to_rdmax(x)->rx_data)
388
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389/* Setting this to 0 ensures interoperability with early servers.
390 * Setting this to 1 enhances certain unaligned read/write performance.
391 * Default is 0, see sysctl entry and rpc_rdma.c rpcrdma_convert_iovs() */
392extern int xprt_rdma_pad_optimize;
393
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394/*
395 * Interface Adapter calls - xprtrdma/verbs.c
396 */
397int rpcrdma_ia_open(struct rpcrdma_xprt *, struct sockaddr *, int);
398void rpcrdma_ia_close(struct rpcrdma_ia *);
399
400/*
401 * Endpoint calls - xprtrdma/verbs.c
402 */
403int rpcrdma_ep_create(struct rpcrdma_ep *, struct rpcrdma_ia *,
404 struct rpcrdma_create_data_internal *);
7f1d5419 405void rpcrdma_ep_destroy(struct rpcrdma_ep *, struct rpcrdma_ia *);
f58851e6 406int rpcrdma_ep_connect(struct rpcrdma_ep *, struct rpcrdma_ia *);
282191cb 407void rpcrdma_ep_disconnect(struct rpcrdma_ep *, struct rpcrdma_ia *);
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408
409int rpcrdma_ep_post(struct rpcrdma_ia *, struct rpcrdma_ep *,
410 struct rpcrdma_req *);
411int rpcrdma_ep_post_recv(struct rpcrdma_ia *, struct rpcrdma_ep *,
412 struct rpcrdma_rep *);
413
414/*
415 * Buffer calls - xprtrdma/verbs.c
416 */
ac920d04 417int rpcrdma_buffer_create(struct rpcrdma_xprt *);
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418void rpcrdma_buffer_destroy(struct rpcrdma_buffer *);
419
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420struct rpcrdma_mw *rpcrdma_get_mw(struct rpcrdma_xprt *);
421void rpcrdma_put_mw(struct rpcrdma_xprt *, struct rpcrdma_mw *);
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422struct rpcrdma_req *rpcrdma_buffer_get(struct rpcrdma_buffer *);
423void rpcrdma_buffer_put(struct rpcrdma_req *);
424void rpcrdma_recv_buffer_get(struct rpcrdma_req *);
425void rpcrdma_recv_buffer_put(struct rpcrdma_rep *);
426
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427struct rpcrdma_regbuf *rpcrdma_alloc_regbuf(struct rpcrdma_ia *,
428 size_t, gfp_t);
429void rpcrdma_free_regbuf(struct rpcrdma_ia *,
430 struct rpcrdma_regbuf *);
431
1c9351ee 432unsigned int rpcrdma_max_segments(struct rpcrdma_xprt *);
d654788e 433
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434int frwr_alloc_recovery_wq(void);
435void frwr_destroy_recovery_wq(void);
436
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437/*
438 * Wrappers for chunk registration, shared by read/write chunk code.
439 */
440
441void rpcrdma_mapping_error(struct rpcrdma_mr_seg *);
442
443static inline enum dma_data_direction
444rpcrdma_data_dir(bool writing)
445{
446 return writing ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
447}
448
449static inline void
450rpcrdma_map_one(struct ib_device *device, struct rpcrdma_mr_seg *seg,
451 enum dma_data_direction direction)
452{
453 seg->mr_dir = direction;
454 seg->mr_dmalen = seg->mr_len;
455
456 if (seg->mr_page)
457 seg->mr_dma = ib_dma_map_page(device,
458 seg->mr_page, offset_in_page(seg->mr_offset),
459 seg->mr_dmalen, seg->mr_dir);
460 else
461 seg->mr_dma = ib_dma_map_single(device,
462 seg->mr_offset,
463 seg->mr_dmalen, seg->mr_dir);
464
465 if (ib_dma_mapping_error(device, seg->mr_dma))
466 rpcrdma_mapping_error(seg);
467}
468
469static inline void
470rpcrdma_unmap_one(struct ib_device *device, struct rpcrdma_mr_seg *seg)
471{
472 if (seg->mr_page)
473 ib_dma_unmap_page(device,
474 seg->mr_dma, seg->mr_dmalen, seg->mr_dir);
475 else
476 ib_dma_unmap_single(device,
477 seg->mr_dma, seg->mr_dmalen, seg->mr_dir);
478}
1c9351ee 479
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480/*
481 * RPC/RDMA connection management calls - xprtrdma/rpc_rdma.c
482 */
254f91e2 483void rpcrdma_connect_worker(struct work_struct *);
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484void rpcrdma_conn_func(struct rpcrdma_ep *);
485void rpcrdma_reply_handler(struct rpcrdma_rep *);
486
487/*
488 * RPC/RDMA protocol calls - xprtrdma/rpc_rdma.c
489 */
490int rpcrdma_marshal_req(struct rpc_rqst *);
491
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492/* RPC/RDMA module init - xprtrdma/transport.c
493 */
494int xprt_rdma_init(void);
495void xprt_rdma_cleanup(void);
496
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497/* Temporary NFS request map cache. Created in svc_rdma.c */
498extern struct kmem_cache *svc_rdma_map_cachep;
499/* WR context cache. Created in svc_rdma.c */
500extern struct kmem_cache *svc_rdma_ctxt_cachep;
501/* Workqueue created in svc_rdma.c */
502extern struct workqueue_struct *svc_rdma_wq;
503
f58851e6 504#endif /* _LINUX_SUNRPC_XPRT_RDMA_H */