2 * Copyright (c) 2005-2007 Network Appliance, Inc. All rights reserved.
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
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
14 * Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
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.
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
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.
39 * Author: Tom Tucker <tom@opengridcomputing.com>
42 #include <linux/sunrpc/svc_xprt.h>
43 #include <linux/sunrpc/debug.h>
44 #include <linux/sunrpc/rpc_rdma.h>
45 #include <linux/spinlock.h>
46 #include <rdma/ib_verbs.h>
47 #include <rdma/rdma_cm.h>
48 #include <linux/sunrpc/svc_rdma.h>
50 #define RPCDBG_FACILITY RPCDBG_SVCXPRT
52 static struct svc_xprt
*svc_rdma_create(struct svc_serv
*serv
,
53 struct sockaddr
*sa
, int salen
,
55 static struct svc_xprt
*svc_rdma_accept(struct svc_xprt
*xprt
);
56 static void svc_rdma_release_rqst(struct svc_rqst
*);
57 static void dto_tasklet_func(unsigned long data
);
58 static void svc_rdma_detach(struct svc_xprt
*xprt
);
59 static void svc_rdma_free(struct svc_xprt
*xprt
);
60 static int svc_rdma_has_wspace(struct svc_xprt
*xprt
);
61 static void rq_cq_reap(struct svcxprt_rdma
*xprt
);
62 static void sq_cq_reap(struct svcxprt_rdma
*xprt
);
64 static DECLARE_TASKLET(dto_tasklet
, dto_tasklet_func
, 0UL);
65 static DEFINE_SPINLOCK(dto_lock
);
66 static LIST_HEAD(dto_xprt_q
);
68 static struct svc_xprt_ops svc_rdma_ops
= {
69 .xpo_create
= svc_rdma_create
,
70 .xpo_recvfrom
= svc_rdma_recvfrom
,
71 .xpo_sendto
= svc_rdma_sendto
,
72 .xpo_release_rqst
= svc_rdma_release_rqst
,
73 .xpo_detach
= svc_rdma_detach
,
74 .xpo_free
= svc_rdma_free
,
75 .xpo_prep_reply_hdr
= svc_rdma_prep_reply_hdr
,
76 .xpo_has_wspace
= svc_rdma_has_wspace
,
77 .xpo_accept
= svc_rdma_accept
,
80 struct svc_xprt_class svc_rdma_class
= {
82 .xcl_owner
= THIS_MODULE
,
83 .xcl_ops
= &svc_rdma_ops
,
84 .xcl_max_payload
= RPCSVC_MAXPAYLOAD_TCP
,
87 /* WR context cache. Created in svc_rdma.c */
88 extern struct kmem_cache
*svc_rdma_ctxt_cachep
;
90 struct svc_rdma_op_ctxt
*svc_rdma_get_context(struct svcxprt_rdma
*xprt
)
92 struct svc_rdma_op_ctxt
*ctxt
;
95 ctxt
= kmem_cache_alloc(svc_rdma_ctxt_cachep
, GFP_KERNEL
);
98 schedule_timeout_uninterruptible(msecs_to_jiffies(500));
101 INIT_LIST_HEAD(&ctxt
->dto_q
);
104 atomic_inc(&xprt
->sc_ctxt_used
);
108 void svc_rdma_unmap_dma(struct svc_rdma_op_ctxt
*ctxt
)
110 struct svcxprt_rdma
*xprt
= ctxt
->xprt
;
112 for (i
= 0; i
< ctxt
->count
&& ctxt
->sge
[i
].length
; i
++) {
114 * Unmap the DMA addr in the SGE if the lkey matches
115 * the sc_dma_lkey, otherwise, ignore it since it is
116 * an FRMR lkey and will be unmapped later when the
117 * last WR that uses it completes.
119 if (ctxt
->sge
[i
].lkey
== xprt
->sc_dma_lkey
) {
120 atomic_dec(&xprt
->sc_dma_used
);
121 ib_dma_unmap_single(xprt
->sc_cm_id
->device
,
129 void svc_rdma_put_context(struct svc_rdma_op_ctxt
*ctxt
, int free_pages
)
131 struct svcxprt_rdma
*xprt
;
137 for (i
= 0; i
< ctxt
->count
; i
++)
138 put_page(ctxt
->pages
[i
]);
140 kmem_cache_free(svc_rdma_ctxt_cachep
, ctxt
);
141 atomic_dec(&xprt
->sc_ctxt_used
);
144 /* Temporary NFS request map cache. Created in svc_rdma.c */
145 extern struct kmem_cache
*svc_rdma_map_cachep
;
148 * Temporary NFS req mappings are shared across all transport
149 * instances. These are short lived and should be bounded by the number
150 * of concurrent server threads * depth of the SQ.
152 struct svc_rdma_req_map
*svc_rdma_get_req_map(void)
154 struct svc_rdma_req_map
*map
;
156 map
= kmem_cache_alloc(svc_rdma_map_cachep
, GFP_KERNEL
);
159 schedule_timeout_uninterruptible(msecs_to_jiffies(500));
166 void svc_rdma_put_req_map(struct svc_rdma_req_map
*map
)
168 kmem_cache_free(svc_rdma_map_cachep
, map
);
171 /* ib_cq event handler */
172 static void cq_event_handler(struct ib_event
*event
, void *context
)
174 struct svc_xprt
*xprt
= context
;
175 dprintk("svcrdma: received CQ event id=%d, context=%p\n",
176 event
->event
, context
);
177 set_bit(XPT_CLOSE
, &xprt
->xpt_flags
);
180 /* QP event handler */
181 static void qp_event_handler(struct ib_event
*event
, void *context
)
183 struct svc_xprt
*xprt
= context
;
185 switch (event
->event
) {
186 /* These are considered benign events */
187 case IB_EVENT_PATH_MIG
:
188 case IB_EVENT_COMM_EST
:
189 case IB_EVENT_SQ_DRAINED
:
190 case IB_EVENT_QP_LAST_WQE_REACHED
:
191 dprintk("svcrdma: QP event %d received for QP=%p\n",
192 event
->event
, event
->element
.qp
);
194 /* These are considered fatal events */
195 case IB_EVENT_PATH_MIG_ERR
:
196 case IB_EVENT_QP_FATAL
:
197 case IB_EVENT_QP_REQ_ERR
:
198 case IB_EVENT_QP_ACCESS_ERR
:
199 case IB_EVENT_DEVICE_FATAL
:
201 dprintk("svcrdma: QP ERROR event %d received for QP=%p, "
202 "closing transport\n",
203 event
->event
, event
->element
.qp
);
204 set_bit(XPT_CLOSE
, &xprt
->xpt_flags
);
210 * Data Transfer Operation Tasklet
212 * Walks a list of transports with I/O pending, removing entries as
213 * they are added to the server's I/O pending list. Two bits indicate
214 * if SQ, RQ, or both have I/O pending. The dto_lock is an irqsave
215 * spinlock that serializes access to the transport list with the RQ
216 * and SQ interrupt handlers.
218 static void dto_tasklet_func(unsigned long data
)
220 struct svcxprt_rdma
*xprt
;
223 spin_lock_irqsave(&dto_lock
, flags
);
224 while (!list_empty(&dto_xprt_q
)) {
225 xprt
= list_entry(dto_xprt_q
.next
,
226 struct svcxprt_rdma
, sc_dto_q
);
227 list_del_init(&xprt
->sc_dto_q
);
228 spin_unlock_irqrestore(&dto_lock
, flags
);
233 svc_xprt_put(&xprt
->sc_xprt
);
234 spin_lock_irqsave(&dto_lock
, flags
);
236 spin_unlock_irqrestore(&dto_lock
, flags
);
240 * Receive Queue Completion Handler
242 * Since an RQ completion handler is called on interrupt context, we
243 * need to defer the handling of the I/O to a tasklet
245 static void rq_comp_handler(struct ib_cq
*cq
, void *cq_context
)
247 struct svcxprt_rdma
*xprt
= cq_context
;
250 /* Guard against unconditional flush call for destroyed QP */
251 if (atomic_read(&xprt
->sc_xprt
.xpt_ref
.refcount
)==0)
255 * Set the bit regardless of whether or not it's on the list
256 * because it may be on the list already due to an SQ
259 set_bit(RDMAXPRT_RQ_PENDING
, &xprt
->sc_flags
);
262 * If this transport is not already on the DTO transport queue,
265 spin_lock_irqsave(&dto_lock
, flags
);
266 if (list_empty(&xprt
->sc_dto_q
)) {
267 svc_xprt_get(&xprt
->sc_xprt
);
268 list_add_tail(&xprt
->sc_dto_q
, &dto_xprt_q
);
270 spin_unlock_irqrestore(&dto_lock
, flags
);
272 /* Tasklet does all the work to avoid irqsave locks. */
273 tasklet_schedule(&dto_tasklet
);
277 * rq_cq_reap - Process the RQ CQ.
279 * Take all completing WC off the CQE and enqueue the associated DTO
280 * context on the dto_q for the transport.
282 * Note that caller must hold a transport reference.
284 static void rq_cq_reap(struct svcxprt_rdma
*xprt
)
288 struct svc_rdma_op_ctxt
*ctxt
= NULL
;
290 if (!test_and_clear_bit(RDMAXPRT_RQ_PENDING
, &xprt
->sc_flags
))
293 ib_req_notify_cq(xprt
->sc_rq_cq
, IB_CQ_NEXT_COMP
);
294 atomic_inc(&rdma_stat_rq_poll
);
296 while ((ret
= ib_poll_cq(xprt
->sc_rq_cq
, 1, &wc
)) > 0) {
297 ctxt
= (struct svc_rdma_op_ctxt
*)(unsigned long)wc
.wr_id
;
298 ctxt
->wc_status
= wc
.status
;
299 ctxt
->byte_len
= wc
.byte_len
;
300 svc_rdma_unmap_dma(ctxt
);
301 if (wc
.status
!= IB_WC_SUCCESS
) {
302 /* Close the transport */
303 dprintk("svcrdma: transport closing putting ctxt %p\n", ctxt
);
304 set_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
);
305 svc_rdma_put_context(ctxt
, 1);
306 svc_xprt_put(&xprt
->sc_xprt
);
309 spin_lock_bh(&xprt
->sc_rq_dto_lock
);
310 list_add_tail(&ctxt
->dto_q
, &xprt
->sc_rq_dto_q
);
311 spin_unlock_bh(&xprt
->sc_rq_dto_lock
);
312 svc_xprt_put(&xprt
->sc_xprt
);
316 atomic_inc(&rdma_stat_rq_prod
);
318 set_bit(XPT_DATA
, &xprt
->sc_xprt
.xpt_flags
);
320 * If data arrived before established event,
321 * don't enqueue. This defers RPC I/O until the
322 * RDMA connection is complete.
324 if (!test_bit(RDMAXPRT_CONN_PENDING
, &xprt
->sc_flags
))
325 svc_xprt_enqueue(&xprt
->sc_xprt
);
329 * Processs a completion context
331 static void process_context(struct svcxprt_rdma
*xprt
,
332 struct svc_rdma_op_ctxt
*ctxt
)
334 svc_rdma_unmap_dma(ctxt
);
336 switch (ctxt
->wr_op
) {
338 if (test_bit(RDMACTXT_F_FAST_UNREG
, &ctxt
->flags
))
339 svc_rdma_put_frmr(xprt
, ctxt
->frmr
);
340 svc_rdma_put_context(ctxt
, 1);
343 case IB_WR_RDMA_WRITE
:
344 svc_rdma_put_context(ctxt
, 0);
347 case IB_WR_RDMA_READ
:
348 case IB_WR_RDMA_READ_WITH_INV
:
349 if (test_bit(RDMACTXT_F_LAST_CTXT
, &ctxt
->flags
)) {
350 struct svc_rdma_op_ctxt
*read_hdr
= ctxt
->read_hdr
;
352 if (test_bit(RDMACTXT_F_FAST_UNREG
, &ctxt
->flags
))
353 svc_rdma_put_frmr(xprt
, ctxt
->frmr
);
354 spin_lock_bh(&xprt
->sc_rq_dto_lock
);
355 set_bit(XPT_DATA
, &xprt
->sc_xprt
.xpt_flags
);
356 list_add_tail(&read_hdr
->dto_q
,
357 &xprt
->sc_read_complete_q
);
358 spin_unlock_bh(&xprt
->sc_rq_dto_lock
);
359 svc_xprt_enqueue(&xprt
->sc_xprt
);
361 svc_rdma_put_context(ctxt
, 0);
365 printk(KERN_ERR
"svcrdma: unexpected completion type, "
373 * Send Queue Completion Handler - potentially called on interrupt context.
375 * Note that caller must hold a transport reference.
377 static void sq_cq_reap(struct svcxprt_rdma
*xprt
)
379 struct svc_rdma_op_ctxt
*ctxt
= NULL
;
381 struct ib_cq
*cq
= xprt
->sc_sq_cq
;
384 if (!test_and_clear_bit(RDMAXPRT_SQ_PENDING
, &xprt
->sc_flags
))
387 ib_req_notify_cq(xprt
->sc_sq_cq
, IB_CQ_NEXT_COMP
);
388 atomic_inc(&rdma_stat_sq_poll
);
389 while ((ret
= ib_poll_cq(cq
, 1, &wc
)) > 0) {
390 if (wc
.status
!= IB_WC_SUCCESS
)
391 /* Close the transport */
392 set_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
);
394 /* Decrement used SQ WR count */
395 atomic_dec(&xprt
->sc_sq_count
);
396 wake_up(&xprt
->sc_send_wait
);
398 ctxt
= (struct svc_rdma_op_ctxt
*)(unsigned long)wc
.wr_id
;
400 process_context(xprt
, ctxt
);
402 svc_xprt_put(&xprt
->sc_xprt
);
406 atomic_inc(&rdma_stat_sq_prod
);
409 static void sq_comp_handler(struct ib_cq
*cq
, void *cq_context
)
411 struct svcxprt_rdma
*xprt
= cq_context
;
414 /* Guard against unconditional flush call for destroyed QP */
415 if (atomic_read(&xprt
->sc_xprt
.xpt_ref
.refcount
)==0)
419 * Set the bit regardless of whether or not it's on the list
420 * because it may be on the list already due to an RQ
423 set_bit(RDMAXPRT_SQ_PENDING
, &xprt
->sc_flags
);
426 * If this transport is not already on the DTO transport queue,
429 spin_lock_irqsave(&dto_lock
, flags
);
430 if (list_empty(&xprt
->sc_dto_q
)) {
431 svc_xprt_get(&xprt
->sc_xprt
);
432 list_add_tail(&xprt
->sc_dto_q
, &dto_xprt_q
);
434 spin_unlock_irqrestore(&dto_lock
, flags
);
436 /* Tasklet does all the work to avoid irqsave locks. */
437 tasklet_schedule(&dto_tasklet
);
440 static struct svcxprt_rdma
*rdma_create_xprt(struct svc_serv
*serv
,
443 struct svcxprt_rdma
*cma_xprt
= kzalloc(sizeof *cma_xprt
, GFP_KERNEL
);
447 svc_xprt_init(&svc_rdma_class
, &cma_xprt
->sc_xprt
, serv
);
448 INIT_LIST_HEAD(&cma_xprt
->sc_accept_q
);
449 INIT_LIST_HEAD(&cma_xprt
->sc_dto_q
);
450 INIT_LIST_HEAD(&cma_xprt
->sc_rq_dto_q
);
451 INIT_LIST_HEAD(&cma_xprt
->sc_read_complete_q
);
452 INIT_LIST_HEAD(&cma_xprt
->sc_frmr_q
);
453 init_waitqueue_head(&cma_xprt
->sc_send_wait
);
455 spin_lock_init(&cma_xprt
->sc_lock
);
456 spin_lock_init(&cma_xprt
->sc_rq_dto_lock
);
457 spin_lock_init(&cma_xprt
->sc_frmr_q_lock
);
459 cma_xprt
->sc_ord
= svcrdma_ord
;
461 cma_xprt
->sc_max_req_size
= svcrdma_max_req_size
;
462 cma_xprt
->sc_max_requests
= svcrdma_max_requests
;
463 cma_xprt
->sc_sq_depth
= svcrdma_max_requests
* RPCRDMA_SQ_DEPTH_MULT
;
464 atomic_set(&cma_xprt
->sc_sq_count
, 0);
465 atomic_set(&cma_xprt
->sc_ctxt_used
, 0);
468 set_bit(XPT_LISTENER
, &cma_xprt
->sc_xprt
.xpt_flags
);
473 struct page
*svc_rdma_get_page(void)
477 while ((page
= alloc_page(GFP_KERNEL
)) == NULL
) {
478 /* If we can't get memory, wait a bit and try again */
479 printk(KERN_INFO
"svcrdma: out of memory...retrying in 1000 "
481 schedule_timeout_uninterruptible(msecs_to_jiffies(1000));
486 int svc_rdma_post_recv(struct svcxprt_rdma
*xprt
)
488 struct ib_recv_wr recv_wr
, *bad_recv_wr
;
489 struct svc_rdma_op_ctxt
*ctxt
;
496 ctxt
= svc_rdma_get_context(xprt
);
498 ctxt
->direction
= DMA_FROM_DEVICE
;
499 for (sge_no
= 0; buflen
< xprt
->sc_max_req_size
; sge_no
++) {
500 BUG_ON(sge_no
>= xprt
->sc_max_sge
);
501 page
= svc_rdma_get_page();
502 ctxt
->pages
[sge_no
] = page
;
503 pa
= ib_dma_map_single(xprt
->sc_cm_id
->device
,
504 page_address(page
), PAGE_SIZE
,
506 if (ib_dma_mapping_error(xprt
->sc_cm_id
->device
, pa
))
508 atomic_inc(&xprt
->sc_dma_used
);
509 ctxt
->sge
[sge_no
].addr
= pa
;
510 ctxt
->sge
[sge_no
].length
= PAGE_SIZE
;
511 ctxt
->sge
[sge_no
].lkey
= xprt
->sc_dma_lkey
;
514 ctxt
->count
= sge_no
;
516 recv_wr
.sg_list
= &ctxt
->sge
[0];
517 recv_wr
.num_sge
= ctxt
->count
;
518 recv_wr
.wr_id
= (u64
)(unsigned long)ctxt
;
520 svc_xprt_get(&xprt
->sc_xprt
);
521 ret
= ib_post_recv(xprt
->sc_qp
, &recv_wr
, &bad_recv_wr
);
523 svc_rdma_unmap_dma(ctxt
);
524 svc_rdma_put_context(ctxt
, 1);
525 svc_xprt_put(&xprt
->sc_xprt
);
530 svc_rdma_put_context(ctxt
, 1);
535 * This function handles the CONNECT_REQUEST event on a listening
536 * endpoint. It is passed the cma_id for the _new_ connection. The context in
537 * this cma_id is inherited from the listening cma_id and is the svc_xprt
538 * structure for the listening endpoint.
540 * This function creates a new xprt for the new connection and enqueues it on
541 * the accept queue for the listent xprt. When the listen thread is kicked, it
542 * will call the recvfrom method on the listen xprt which will accept the new
545 static void handle_connect_req(struct rdma_cm_id
*new_cma_id
, size_t client_ird
)
547 struct svcxprt_rdma
*listen_xprt
= new_cma_id
->context
;
548 struct svcxprt_rdma
*newxprt
;
551 /* Create a new transport */
552 newxprt
= rdma_create_xprt(listen_xprt
->sc_xprt
.xpt_server
, 0);
554 dprintk("svcrdma: failed to create new transport\n");
557 newxprt
->sc_cm_id
= new_cma_id
;
558 new_cma_id
->context
= newxprt
;
559 dprintk("svcrdma: Creating newxprt=%p, cm_id=%p, listenxprt=%p\n",
560 newxprt
, newxprt
->sc_cm_id
, listen_xprt
);
562 /* Save client advertised inbound read limit for use later in accept. */
563 newxprt
->sc_ord
= client_ird
;
565 /* Set the local and remote addresses in the transport */
566 sa
= (struct sockaddr
*)&newxprt
->sc_cm_id
->route
.addr
.dst_addr
;
567 svc_xprt_set_remote(&newxprt
->sc_xprt
, sa
, svc_addr_len(sa
));
568 sa
= (struct sockaddr
*)&newxprt
->sc_cm_id
->route
.addr
.src_addr
;
569 svc_xprt_set_local(&newxprt
->sc_xprt
, sa
, svc_addr_len(sa
));
572 * Enqueue the new transport on the accept queue of the listening
575 spin_lock_bh(&listen_xprt
->sc_lock
);
576 list_add_tail(&newxprt
->sc_accept_q
, &listen_xprt
->sc_accept_q
);
577 spin_unlock_bh(&listen_xprt
->sc_lock
);
580 * Can't use svc_xprt_received here because we are not on a
583 set_bit(XPT_CONN
, &listen_xprt
->sc_xprt
.xpt_flags
);
584 svc_xprt_enqueue(&listen_xprt
->sc_xprt
);
588 * Handles events generated on the listening endpoint. These events will be
589 * either be incoming connect requests or adapter removal events.
591 static int rdma_listen_handler(struct rdma_cm_id
*cma_id
,
592 struct rdma_cm_event
*event
)
594 struct svcxprt_rdma
*xprt
= cma_id
->context
;
597 switch (event
->event
) {
598 case RDMA_CM_EVENT_CONNECT_REQUEST
:
599 dprintk("svcrdma: Connect request on cma_id=%p, xprt = %p, "
600 "event=%d\n", cma_id
, cma_id
->context
, event
->event
);
601 handle_connect_req(cma_id
,
602 event
->param
.conn
.initiator_depth
);
605 case RDMA_CM_EVENT_ESTABLISHED
:
606 /* Accept complete */
607 dprintk("svcrdma: Connection completed on LISTEN xprt=%p, "
608 "cm_id=%p\n", xprt
, cma_id
);
611 case RDMA_CM_EVENT_DEVICE_REMOVAL
:
612 dprintk("svcrdma: Device removal xprt=%p, cm_id=%p\n",
615 set_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
);
619 dprintk("svcrdma: Unexpected event on listening endpoint %p, "
620 "event=%d\n", cma_id
, event
->event
);
627 static int rdma_cma_handler(struct rdma_cm_id
*cma_id
,
628 struct rdma_cm_event
*event
)
630 struct svc_xprt
*xprt
= cma_id
->context
;
631 struct svcxprt_rdma
*rdma
=
632 container_of(xprt
, struct svcxprt_rdma
, sc_xprt
);
633 switch (event
->event
) {
634 case RDMA_CM_EVENT_ESTABLISHED
:
635 /* Accept complete */
637 dprintk("svcrdma: Connection completed on DTO xprt=%p, "
638 "cm_id=%p\n", xprt
, cma_id
);
639 clear_bit(RDMAXPRT_CONN_PENDING
, &rdma
->sc_flags
);
640 svc_xprt_enqueue(xprt
);
642 case RDMA_CM_EVENT_DISCONNECTED
:
643 dprintk("svcrdma: Disconnect on DTO xprt=%p, cm_id=%p\n",
646 set_bit(XPT_CLOSE
, &xprt
->xpt_flags
);
647 svc_xprt_enqueue(xprt
);
651 case RDMA_CM_EVENT_DEVICE_REMOVAL
:
652 dprintk("svcrdma: Device removal cma_id=%p, xprt = %p, "
653 "event=%d\n", cma_id
, xprt
, event
->event
);
655 set_bit(XPT_CLOSE
, &xprt
->xpt_flags
);
656 svc_xprt_enqueue(xprt
);
660 dprintk("svcrdma: Unexpected event on DTO endpoint %p, "
661 "event=%d\n", cma_id
, event
->event
);
668 * Create a listening RDMA service endpoint.
670 static struct svc_xprt
*svc_rdma_create(struct svc_serv
*serv
,
671 struct sockaddr
*sa
, int salen
,
674 struct rdma_cm_id
*listen_id
;
675 struct svcxprt_rdma
*cma_xprt
;
676 struct svc_xprt
*xprt
;
679 dprintk("svcrdma: Creating RDMA socket\n");
681 cma_xprt
= rdma_create_xprt(serv
, 1);
683 return ERR_PTR(-ENOMEM
);
684 xprt
= &cma_xprt
->sc_xprt
;
686 listen_id
= rdma_create_id(rdma_listen_handler
, cma_xprt
, RDMA_PS_TCP
);
687 if (IS_ERR(listen_id
)) {
688 ret
= PTR_ERR(listen_id
);
689 dprintk("svcrdma: rdma_create_id failed = %d\n", ret
);
693 ret
= rdma_bind_addr(listen_id
, sa
);
695 dprintk("svcrdma: rdma_bind_addr failed = %d\n", ret
);
698 cma_xprt
->sc_cm_id
= listen_id
;
700 ret
= rdma_listen(listen_id
, RPCRDMA_LISTEN_BACKLOG
);
702 dprintk("svcrdma: rdma_listen failed = %d\n", ret
);
707 * We need to use the address from the cm_id in case the
708 * caller specified 0 for the port number.
710 sa
= (struct sockaddr
*)&cma_xprt
->sc_cm_id
->route
.addr
.src_addr
;
711 svc_xprt_set_local(&cma_xprt
->sc_xprt
, sa
, salen
);
713 return &cma_xprt
->sc_xprt
;
716 rdma_destroy_id(listen_id
);
722 static struct svc_rdma_fastreg_mr
*rdma_alloc_frmr(struct svcxprt_rdma
*xprt
)
725 struct ib_fast_reg_page_list
*pl
;
726 struct svc_rdma_fastreg_mr
*frmr
;
728 frmr
= kmalloc(sizeof(*frmr
), GFP_KERNEL
);
732 mr
= ib_alloc_fast_reg_mr(xprt
->sc_pd
, RPCSVC_MAXPAGES
);
736 pl
= ib_alloc_fast_reg_page_list(xprt
->sc_cm_id
->device
,
742 frmr
->page_list
= pl
;
743 INIT_LIST_HEAD(&frmr
->frmr_list
);
751 return ERR_PTR(-ENOMEM
);
754 static void rdma_dealloc_frmr_q(struct svcxprt_rdma
*xprt
)
756 struct svc_rdma_fastreg_mr
*frmr
;
758 while (!list_empty(&xprt
->sc_frmr_q
)) {
759 frmr
= list_entry(xprt
->sc_frmr_q
.next
,
760 struct svc_rdma_fastreg_mr
, frmr_list
);
761 list_del_init(&frmr
->frmr_list
);
762 ib_dereg_mr(frmr
->mr
);
763 ib_free_fast_reg_page_list(frmr
->page_list
);
768 struct svc_rdma_fastreg_mr
*svc_rdma_get_frmr(struct svcxprt_rdma
*rdma
)
770 struct svc_rdma_fastreg_mr
*frmr
= NULL
;
772 spin_lock_bh(&rdma
->sc_frmr_q_lock
);
773 if (!list_empty(&rdma
->sc_frmr_q
)) {
774 frmr
= list_entry(rdma
->sc_frmr_q
.next
,
775 struct svc_rdma_fastreg_mr
, frmr_list
);
776 list_del_init(&frmr
->frmr_list
);
778 frmr
->page_list_len
= 0;
780 spin_unlock_bh(&rdma
->sc_frmr_q_lock
);
784 return rdma_alloc_frmr(rdma
);
787 static void frmr_unmap_dma(struct svcxprt_rdma
*xprt
,
788 struct svc_rdma_fastreg_mr
*frmr
)
791 for (page_no
= 0; page_no
< frmr
->page_list_len
; page_no
++) {
792 dma_addr_t addr
= frmr
->page_list
->page_list
[page_no
];
793 if (ib_dma_mapping_error(frmr
->mr
->device
, addr
))
795 atomic_dec(&xprt
->sc_dma_used
);
796 ib_dma_unmap_single(frmr
->mr
->device
, addr
, PAGE_SIZE
,
801 void svc_rdma_put_frmr(struct svcxprt_rdma
*rdma
,
802 struct svc_rdma_fastreg_mr
*frmr
)
805 frmr_unmap_dma(rdma
, frmr
);
806 spin_lock_bh(&rdma
->sc_frmr_q_lock
);
807 BUG_ON(!list_empty(&frmr
->frmr_list
));
808 list_add(&frmr
->frmr_list
, &rdma
->sc_frmr_q
);
809 spin_unlock_bh(&rdma
->sc_frmr_q_lock
);
814 * This is the xpo_recvfrom function for listening endpoints. Its
815 * purpose is to accept incoming connections. The CMA callback handler
816 * has already created a new transport and attached it to the new CMA
819 * There is a queue of pending connections hung on the listening
820 * transport. This queue contains the new svc_xprt structure. This
821 * function takes svc_xprt structures off the accept_q and completes
824 static struct svc_xprt
*svc_rdma_accept(struct svc_xprt
*xprt
)
826 struct svcxprt_rdma
*listen_rdma
;
827 struct svcxprt_rdma
*newxprt
= NULL
;
828 struct rdma_conn_param conn_param
;
829 struct ib_qp_init_attr qp_attr
;
830 struct ib_device_attr devattr
;
831 int uninitialized_var(dma_mr_acc
);
836 listen_rdma
= container_of(xprt
, struct svcxprt_rdma
, sc_xprt
);
837 clear_bit(XPT_CONN
, &xprt
->xpt_flags
);
838 /* Get the next entry off the accept list */
839 spin_lock_bh(&listen_rdma
->sc_lock
);
840 if (!list_empty(&listen_rdma
->sc_accept_q
)) {
841 newxprt
= list_entry(listen_rdma
->sc_accept_q
.next
,
842 struct svcxprt_rdma
, sc_accept_q
);
843 list_del_init(&newxprt
->sc_accept_q
);
845 if (!list_empty(&listen_rdma
->sc_accept_q
))
846 set_bit(XPT_CONN
, &listen_rdma
->sc_xprt
.xpt_flags
);
847 spin_unlock_bh(&listen_rdma
->sc_lock
);
851 dprintk("svcrdma: newxprt from accept queue = %p, cm_id=%p\n",
852 newxprt
, newxprt
->sc_cm_id
);
854 ret
= ib_query_device(newxprt
->sc_cm_id
->device
, &devattr
);
856 dprintk("svcrdma: could not query device attributes on "
857 "device %p, rc=%d\n", newxprt
->sc_cm_id
->device
, ret
);
861 /* Qualify the transport resource defaults with the
862 * capabilities of this particular device */
863 newxprt
->sc_max_sge
= min((size_t)devattr
.max_sge
,
864 (size_t)RPCSVC_MAXPAGES
);
865 newxprt
->sc_max_requests
= min((size_t)devattr
.max_qp_wr
,
866 (size_t)svcrdma_max_requests
);
867 newxprt
->sc_sq_depth
= RPCRDMA_SQ_DEPTH_MULT
* newxprt
->sc_max_requests
;
870 * Limit ORD based on client limit, local device limit, and
871 * configured svcrdma limit.
873 newxprt
->sc_ord
= min_t(size_t, devattr
.max_qp_rd_atom
, newxprt
->sc_ord
);
874 newxprt
->sc_ord
= min_t(size_t, svcrdma_ord
, newxprt
->sc_ord
);
876 newxprt
->sc_pd
= ib_alloc_pd(newxprt
->sc_cm_id
->device
);
877 if (IS_ERR(newxprt
->sc_pd
)) {
878 dprintk("svcrdma: error creating PD for connect request\n");
881 newxprt
->sc_sq_cq
= ib_create_cq(newxprt
->sc_cm_id
->device
,
885 newxprt
->sc_sq_depth
,
887 if (IS_ERR(newxprt
->sc_sq_cq
)) {
888 dprintk("svcrdma: error creating SQ CQ for connect request\n");
891 newxprt
->sc_rq_cq
= ib_create_cq(newxprt
->sc_cm_id
->device
,
895 newxprt
->sc_max_requests
,
897 if (IS_ERR(newxprt
->sc_rq_cq
)) {
898 dprintk("svcrdma: error creating RQ CQ for connect request\n");
902 memset(&qp_attr
, 0, sizeof qp_attr
);
903 qp_attr
.event_handler
= qp_event_handler
;
904 qp_attr
.qp_context
= &newxprt
->sc_xprt
;
905 qp_attr
.cap
.max_send_wr
= newxprt
->sc_sq_depth
;
906 qp_attr
.cap
.max_recv_wr
= newxprt
->sc_max_requests
;
907 qp_attr
.cap
.max_send_sge
= newxprt
->sc_max_sge
;
908 qp_attr
.cap
.max_recv_sge
= newxprt
->sc_max_sge
;
909 qp_attr
.sq_sig_type
= IB_SIGNAL_REQ_WR
;
910 qp_attr
.qp_type
= IB_QPT_RC
;
911 qp_attr
.send_cq
= newxprt
->sc_sq_cq
;
912 qp_attr
.recv_cq
= newxprt
->sc_rq_cq
;
913 dprintk("svcrdma: newxprt->sc_cm_id=%p, newxprt->sc_pd=%p\n"
914 " cm_id->device=%p, sc_pd->device=%p\n"
915 " cap.max_send_wr = %d\n"
916 " cap.max_recv_wr = %d\n"
917 " cap.max_send_sge = %d\n"
918 " cap.max_recv_sge = %d\n",
919 newxprt
->sc_cm_id
, newxprt
->sc_pd
,
920 newxprt
->sc_cm_id
->device
, newxprt
->sc_pd
->device
,
921 qp_attr
.cap
.max_send_wr
,
922 qp_attr
.cap
.max_recv_wr
,
923 qp_attr
.cap
.max_send_sge
,
924 qp_attr
.cap
.max_recv_sge
);
926 ret
= rdma_create_qp(newxprt
->sc_cm_id
, newxprt
->sc_pd
, &qp_attr
);
929 * XXX: This is a hack. We need a xx_request_qp interface
930 * that will adjust the qp_attr's with a best-effort
933 qp_attr
.cap
.max_send_sge
-= 2;
934 qp_attr
.cap
.max_recv_sge
-= 2;
935 ret
= rdma_create_qp(newxprt
->sc_cm_id
, newxprt
->sc_pd
,
938 dprintk("svcrdma: failed to create QP, ret=%d\n", ret
);
941 newxprt
->sc_max_sge
= qp_attr
.cap
.max_send_sge
;
942 newxprt
->sc_max_sge
= qp_attr
.cap
.max_recv_sge
;
943 newxprt
->sc_sq_depth
= qp_attr
.cap
.max_send_wr
;
944 newxprt
->sc_max_requests
= qp_attr
.cap
.max_recv_wr
;
946 newxprt
->sc_qp
= newxprt
->sc_cm_id
->qp
;
949 * Use the most secure set of MR resources based on the
950 * transport type and available memory management features in
951 * the device. Here's the table implemented below:
953 * Fast Global DMA Remote WR
955 * Sup'd Sup'd Needed Needed
967 * NB: iWARP requires remote write access for the data sink
968 * of an RDMA_READ. IB does not.
970 if (devattr
.device_cap_flags
& IB_DEVICE_MEM_MGT_EXTENSIONS
) {
971 newxprt
->sc_frmr_pg_list_len
=
972 devattr
.max_fast_reg_page_list_len
;
973 newxprt
->sc_dev_caps
|= SVCRDMA_DEVCAP_FAST_REG
;
977 * Determine if a DMA MR is required and if so, what privs are required
979 switch (rdma_node_get_transport(newxprt
->sc_cm_id
->device
->node_type
)) {
980 case RDMA_TRANSPORT_IWARP
:
981 newxprt
->sc_dev_caps
|= SVCRDMA_DEVCAP_READ_W_INV
;
982 if (!(newxprt
->sc_dev_caps
& SVCRDMA_DEVCAP_FAST_REG
)) {
985 (IB_ACCESS_LOCAL_WRITE
|
986 IB_ACCESS_REMOTE_WRITE
);
987 } else if (!(devattr
.device_cap_flags
& IB_DEVICE_LOCAL_DMA_LKEY
)) {
989 dma_mr_acc
= IB_ACCESS_LOCAL_WRITE
;
993 case RDMA_TRANSPORT_IB
:
994 if (!(devattr
.device_cap_flags
& IB_DEVICE_LOCAL_DMA_LKEY
)) {
996 dma_mr_acc
= IB_ACCESS_LOCAL_WRITE
;
1004 /* Create the DMA MR if needed, otherwise, use the DMA LKEY */
1006 /* Register all of physical memory */
1007 newxprt
->sc_phys_mr
=
1008 ib_get_dma_mr(newxprt
->sc_pd
, dma_mr_acc
);
1009 if (IS_ERR(newxprt
->sc_phys_mr
)) {
1010 dprintk("svcrdma: Failed to create DMA MR ret=%d\n",
1014 newxprt
->sc_dma_lkey
= newxprt
->sc_phys_mr
->lkey
;
1016 newxprt
->sc_dma_lkey
=
1017 newxprt
->sc_cm_id
->device
->local_dma_lkey
;
1019 /* Post receive buffers */
1020 for (i
= 0; i
< newxprt
->sc_max_requests
; i
++) {
1021 ret
= svc_rdma_post_recv(newxprt
);
1023 dprintk("svcrdma: failure posting receive buffers\n");
1028 /* Swap out the handler */
1029 newxprt
->sc_cm_id
->event_handler
= rdma_cma_handler
;
1032 * Arm the CQs for the SQ and RQ before accepting so we can't
1033 * miss the first message
1035 ib_req_notify_cq(newxprt
->sc_sq_cq
, IB_CQ_NEXT_COMP
);
1036 ib_req_notify_cq(newxprt
->sc_rq_cq
, IB_CQ_NEXT_COMP
);
1038 /* Accept Connection */
1039 set_bit(RDMAXPRT_CONN_PENDING
, &newxprt
->sc_flags
);
1040 memset(&conn_param
, 0, sizeof conn_param
);
1041 conn_param
.responder_resources
= 0;
1042 conn_param
.initiator_depth
= newxprt
->sc_ord
;
1043 ret
= rdma_accept(newxprt
->sc_cm_id
, &conn_param
);
1045 dprintk("svcrdma: failed to accept new connection, ret=%d\n",
1050 dprintk("svcrdma: new connection %p accepted with the following "
1052 " local_ip : %pI4\n"
1053 " local_port : %d\n"
1054 " remote_ip : %pI4\n"
1055 " remote_port : %d\n"
1058 " max_requests : %d\n"
1061 &((struct sockaddr_in
*)&newxprt
->sc_cm_id
->
1062 route
.addr
.src_addr
)->sin_addr
.s_addr
,
1063 ntohs(((struct sockaddr_in
*)&newxprt
->sc_cm_id
->
1064 route
.addr
.src_addr
)->sin_port
),
1065 &((struct sockaddr_in
*)&newxprt
->sc_cm_id
->
1066 route
.addr
.dst_addr
)->sin_addr
.s_addr
,
1067 ntohs(((struct sockaddr_in
*)&newxprt
->sc_cm_id
->
1068 route
.addr
.dst_addr
)->sin_port
),
1069 newxprt
->sc_max_sge
,
1070 newxprt
->sc_sq_depth
,
1071 newxprt
->sc_max_requests
,
1074 return &newxprt
->sc_xprt
;
1077 dprintk("svcrdma: failure accepting new connection rc=%d.\n", ret
);
1078 /* Take a reference in case the DTO handler runs */
1079 svc_xprt_get(&newxprt
->sc_xprt
);
1080 if (newxprt
->sc_qp
&& !IS_ERR(newxprt
->sc_qp
))
1081 ib_destroy_qp(newxprt
->sc_qp
);
1082 rdma_destroy_id(newxprt
->sc_cm_id
);
1083 /* This call to put will destroy the transport */
1084 svc_xprt_put(&newxprt
->sc_xprt
);
1088 static void svc_rdma_release_rqst(struct svc_rqst
*rqstp
)
1093 * When connected, an svc_xprt has at least two references:
1095 * - A reference held by the cm_id between the ESTABLISHED and
1096 * DISCONNECTED events. If the remote peer disconnected first, this
1097 * reference could be gone.
1099 * - A reference held by the svc_recv code that called this function
1100 * as part of close processing.
1102 * At a minimum one references should still be held.
1104 static void svc_rdma_detach(struct svc_xprt
*xprt
)
1106 struct svcxprt_rdma
*rdma
=
1107 container_of(xprt
, struct svcxprt_rdma
, sc_xprt
);
1108 dprintk("svc: svc_rdma_detach(%p)\n", xprt
);
1110 /* Disconnect and flush posted WQE */
1111 rdma_disconnect(rdma
->sc_cm_id
);
1114 static void __svc_rdma_free(struct work_struct
*work
)
1116 struct svcxprt_rdma
*rdma
=
1117 container_of(work
, struct svcxprt_rdma
, sc_work
);
1118 dprintk("svcrdma: svc_rdma_free(%p)\n", rdma
);
1120 /* We should only be called from kref_put */
1121 BUG_ON(atomic_read(&rdma
->sc_xprt
.xpt_ref
.refcount
) != 0);
1124 * Destroy queued, but not processed read completions. Note
1125 * that this cleanup has to be done before destroying the
1126 * cm_id because the device ptr is needed to unmap the dma in
1127 * svc_rdma_put_context.
1129 while (!list_empty(&rdma
->sc_read_complete_q
)) {
1130 struct svc_rdma_op_ctxt
*ctxt
;
1131 ctxt
= list_entry(rdma
->sc_read_complete_q
.next
,
1132 struct svc_rdma_op_ctxt
,
1134 list_del_init(&ctxt
->dto_q
);
1135 svc_rdma_put_context(ctxt
, 1);
1138 /* Destroy queued, but not processed recv completions */
1139 while (!list_empty(&rdma
->sc_rq_dto_q
)) {
1140 struct svc_rdma_op_ctxt
*ctxt
;
1141 ctxt
= list_entry(rdma
->sc_rq_dto_q
.next
,
1142 struct svc_rdma_op_ctxt
,
1144 list_del_init(&ctxt
->dto_q
);
1145 svc_rdma_put_context(ctxt
, 1);
1148 /* Warn if we leaked a resource or under-referenced */
1149 WARN_ON(atomic_read(&rdma
->sc_ctxt_used
) != 0);
1150 WARN_ON(atomic_read(&rdma
->sc_dma_used
) != 0);
1152 /* De-allocate fastreg mr */
1153 rdma_dealloc_frmr_q(rdma
);
1155 /* Destroy the QP if present (not a listener) */
1156 if (rdma
->sc_qp
&& !IS_ERR(rdma
->sc_qp
))
1157 ib_destroy_qp(rdma
->sc_qp
);
1159 if (rdma
->sc_sq_cq
&& !IS_ERR(rdma
->sc_sq_cq
))
1160 ib_destroy_cq(rdma
->sc_sq_cq
);
1162 if (rdma
->sc_rq_cq
&& !IS_ERR(rdma
->sc_rq_cq
))
1163 ib_destroy_cq(rdma
->sc_rq_cq
);
1165 if (rdma
->sc_phys_mr
&& !IS_ERR(rdma
->sc_phys_mr
))
1166 ib_dereg_mr(rdma
->sc_phys_mr
);
1168 if (rdma
->sc_pd
&& !IS_ERR(rdma
->sc_pd
))
1169 ib_dealloc_pd(rdma
->sc_pd
);
1171 /* Destroy the CM ID */
1172 rdma_destroy_id(rdma
->sc_cm_id
);
1177 static void svc_rdma_free(struct svc_xprt
*xprt
)
1179 struct svcxprt_rdma
*rdma
=
1180 container_of(xprt
, struct svcxprt_rdma
, sc_xprt
);
1181 INIT_WORK(&rdma
->sc_work
, __svc_rdma_free
);
1182 schedule_work(&rdma
->sc_work
);
1185 static int svc_rdma_has_wspace(struct svc_xprt
*xprt
)
1187 struct svcxprt_rdma
*rdma
=
1188 container_of(xprt
, struct svcxprt_rdma
, sc_xprt
);
1191 * If there are fewer SQ WR available than required to send a
1192 * simple response, return false.
1194 if ((rdma
->sc_sq_depth
- atomic_read(&rdma
->sc_sq_count
) < 3))
1198 * ...or there are already waiters on the SQ,
1201 if (waitqueue_active(&rdma
->sc_send_wait
))
1204 /* Otherwise return true. */
1209 * Attempt to register the kvec representing the RPC memory with the
1213 * NULL : The device does not support fastreg or there were no more
1215 * frmr : The kvec register request was successfully posted.
1216 * <0 : An error was encountered attempting to register the kvec.
1218 int svc_rdma_fastreg(struct svcxprt_rdma
*xprt
,
1219 struct svc_rdma_fastreg_mr
*frmr
)
1221 struct ib_send_wr fastreg_wr
;
1225 key
= (u8
)(frmr
->mr
->lkey
& 0x000000FF);
1226 ib_update_fast_reg_key(frmr
->mr
, ++key
);
1228 /* Prepare FASTREG WR */
1229 memset(&fastreg_wr
, 0, sizeof fastreg_wr
);
1230 fastreg_wr
.opcode
= IB_WR_FAST_REG_MR
;
1231 fastreg_wr
.send_flags
= IB_SEND_SIGNALED
;
1232 fastreg_wr
.wr
.fast_reg
.iova_start
= (unsigned long)frmr
->kva
;
1233 fastreg_wr
.wr
.fast_reg
.page_list
= frmr
->page_list
;
1234 fastreg_wr
.wr
.fast_reg
.page_list_len
= frmr
->page_list_len
;
1235 fastreg_wr
.wr
.fast_reg
.page_shift
= PAGE_SHIFT
;
1236 fastreg_wr
.wr
.fast_reg
.length
= frmr
->map_len
;
1237 fastreg_wr
.wr
.fast_reg
.access_flags
= frmr
->access_flags
;
1238 fastreg_wr
.wr
.fast_reg
.rkey
= frmr
->mr
->lkey
;
1239 return svc_rdma_send(xprt
, &fastreg_wr
);
1242 int svc_rdma_send(struct svcxprt_rdma
*xprt
, struct ib_send_wr
*wr
)
1244 struct ib_send_wr
*bad_wr
, *n_wr
;
1249 if (test_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
))
1252 BUG_ON(wr
->send_flags
!= IB_SEND_SIGNALED
);
1254 for (n_wr
= wr
->next
; n_wr
; n_wr
= n_wr
->next
)
1257 /* If the SQ is full, wait until an SQ entry is available */
1259 spin_lock_bh(&xprt
->sc_lock
);
1260 if (xprt
->sc_sq_depth
< atomic_read(&xprt
->sc_sq_count
) + wr_count
) {
1261 spin_unlock_bh(&xprt
->sc_lock
);
1262 atomic_inc(&rdma_stat_sq_starve
);
1264 /* See if we can opportunistically reap SQ WR to make room */
1267 /* Wait until SQ WR available if SQ still full */
1268 wait_event(xprt
->sc_send_wait
,
1269 atomic_read(&xprt
->sc_sq_count
) <
1271 if (test_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
))
1275 /* Take a transport ref for each WR posted */
1276 for (i
= 0; i
< wr_count
; i
++)
1277 svc_xprt_get(&xprt
->sc_xprt
);
1279 /* Bump used SQ WR count and post */
1280 atomic_add(wr_count
, &xprt
->sc_sq_count
);
1281 ret
= ib_post_send(xprt
->sc_qp
, wr
, &bad_wr
);
1283 set_bit(XPT_CLOSE
, &xprt
->sc_xprt
.xpt_flags
);
1284 atomic_sub(wr_count
, &xprt
->sc_sq_count
);
1285 for (i
= 0; i
< wr_count
; i
++)
1286 svc_xprt_put(&xprt
->sc_xprt
);
1287 dprintk("svcrdma: failed to post SQ WR rc=%d, "
1288 "sc_sq_count=%d, sc_sq_depth=%d\n",
1289 ret
, atomic_read(&xprt
->sc_sq_count
),
1292 spin_unlock_bh(&xprt
->sc_lock
);
1294 wake_up(&xprt
->sc_send_wait
);
1300 void svc_rdma_send_error(struct svcxprt_rdma
*xprt
, struct rpcrdma_msg
*rmsgp
,
1301 enum rpcrdma_errcode err
)
1303 struct ib_send_wr err_wr
;
1306 struct svc_rdma_op_ctxt
*ctxt
;
1311 p
= svc_rdma_get_page();
1312 va
= page_address(p
);
1314 /* XDR encode error */
1315 length
= svc_rdma_xdr_encode_error(xprt
, rmsgp
, err
, va
);
1317 /* Prepare SGE for local address */
1318 sge
.addr
= ib_dma_map_single(xprt
->sc_cm_id
->device
,
1319 page_address(p
), PAGE_SIZE
, DMA_FROM_DEVICE
);
1320 if (ib_dma_mapping_error(xprt
->sc_cm_id
->device
, sge
.addr
)) {
1324 atomic_inc(&xprt
->sc_dma_used
);
1325 sge
.lkey
= xprt
->sc_dma_lkey
;
1326 sge
.length
= length
;
1328 ctxt
= svc_rdma_get_context(xprt
);
1332 /* Prepare SEND WR */
1333 memset(&err_wr
, 0, sizeof err_wr
);
1334 ctxt
->wr_op
= IB_WR_SEND
;
1335 err_wr
.wr_id
= (unsigned long)ctxt
;
1336 err_wr
.sg_list
= &sge
;
1338 err_wr
.opcode
= IB_WR_SEND
;
1339 err_wr
.send_flags
= IB_SEND_SIGNALED
;
1342 ret
= svc_rdma_send(xprt
, &err_wr
);
1344 dprintk("svcrdma: Error %d posting send for protocol error\n",
1346 ib_dma_unmap_single(xprt
->sc_cm_id
->device
,
1347 sge
.addr
, PAGE_SIZE
,
1349 svc_rdma_put_context(ctxt
, 1);