verbs.c 37.6 KB
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// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
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/*
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 * Copyright (c) 2014-2017 Oracle.  All rights reserved.
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 * Copyright (c) 2003-2007 Network Appliance, Inc. All rights reserved.
 *
 * This software is available to you under a choice of one of two
 * licenses.  You may choose to be licensed under the terms of the GNU
 * General Public License (GPL) Version 2, available from the file
 * COPYING in the main directory of this source tree, or the BSD-type
 * license below:
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 *
 *      Redistributions of source code must retain the above copyright
 *      notice, this list of conditions and the following disclaimer.
 *
 *      Redistributions in binary form must reproduce the above
 *      copyright notice, this list of conditions and the following
 *      disclaimer in the documentation and/or other materials provided
 *      with the distribution.
 *
 *      Neither the name of the Network Appliance, Inc. nor the names of
 *      its contributors may be used to endorse or promote products
 *      derived from this software without specific prior written
 *      permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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 */

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/*
 * verbs.c
 *
 * Encapsulates the major functions managing:
 *  o adapters
 *  o endpoints
 *  o connections
 *  o buffer memory
 */

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#include <linux/interrupt.h>
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#include <linux/slab.h>
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#include <linux/sunrpc/addr.h>
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#include <linux/sunrpc/svc_rdma.h>
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#include <linux/log2.h>
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#include <asm-generic/barrier.h>
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#include <asm/bitops.h>
60

61
#include <rdma/ib_cm.h>
62

63
#include "xprt_rdma.h"
64
#include <trace/events/rpcrdma.h>
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/*
 * Globals/Macros
 */

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#if IS_ENABLED(CONFIG_SUNRPC_DEBUG)
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# define RPCDBG_FACILITY	RPCDBG_TRANS
#endif

/*
 * internal functions
 */
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static int rpcrdma_sendctxs_create(struct rpcrdma_xprt *r_xprt);
static void rpcrdma_sendctxs_destroy(struct rpcrdma_xprt *r_xprt);
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static void rpcrdma_sendctx_put_locked(struct rpcrdma_xprt *r_xprt,
				       struct rpcrdma_sendctx *sc);
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static int rpcrdma_reqs_setup(struct rpcrdma_xprt *r_xprt);
82
static void rpcrdma_reqs_reset(struct rpcrdma_xprt *r_xprt);
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static void rpcrdma_rep_put(struct rpcrdma_buffer *buf,
			    struct rpcrdma_rep *rep);
85
static void rpcrdma_rep_destroy(struct rpcrdma_rep *rep);
86
static void rpcrdma_reps_unmap(struct rpcrdma_xprt *r_xprt);
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static void rpcrdma_mrs_create(struct rpcrdma_xprt *r_xprt);
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static void rpcrdma_mrs_destroy(struct rpcrdma_xprt *r_xprt);
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static void rpcrdma_ep_get(struct rpcrdma_ep *ep);
static int rpcrdma_ep_put(struct rpcrdma_ep *ep);
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static struct rpcrdma_regbuf *
rpcrdma_regbuf_alloc(size_t size, enum dma_data_direction direction,
		     gfp_t flags);
static void rpcrdma_regbuf_dma_unmap(struct rpcrdma_regbuf *rb);
static void rpcrdma_regbuf_free(struct rpcrdma_regbuf *rb);
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/* Wait for outstanding transport work to finish. ib_drain_qp
 * handles the drains in the wrong order for us, so open code
 * them here.
100 101
 */
static void rpcrdma_xprt_drain(struct rpcrdma_xprt *r_xprt)
102
{
103 104
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
	struct rdma_cm_id *id = ep->re_id;
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	/* Wait for rpcrdma_post_recvs() to leave its critical
	 * section.
	 */
	if (atomic_inc_return(&ep->re_receiving) > 1)
		wait_for_completion(&ep->re_done);

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	/* Flush Receives, then wait for deferred Reply work
	 * to complete.
	 */
115
	ib_drain_rq(id->qp);
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117 118 119
	/* Deferred Reply processing might have scheduled
	 * local invalidations.
	 */
120
	ib_drain_sq(id->qp);
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	rpcrdma_ep_put(ep);
123 124
}

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/**
 * rpcrdma_qp_event_handler - Handle one QP event (error notification)
 * @event: details of the event
 * @context: ep that owns QP where event occurred
 *
 * Called from the RDMA provider (device driver) possibly in an interrupt
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 * context. The QP is always destroyed before the ID, so the ID will be
 * reliably available when this handler is invoked.
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 */
134
static void rpcrdma_qp_event_handler(struct ib_event *event, void *context)
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{
	struct rpcrdma_ep *ep = context;

138
	trace_xprtrdma_qp_event(ep, event);
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}

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/* Ensure xprt_force_disconnect() is invoked exactly once when a
 * connection is closed or lost. (The important thing is it needs
 * to be invoked "at least" once).
 */
static void rpcrdma_force_disconnect(struct rpcrdma_ep *ep)
{
	if (atomic_add_unless(&ep->re_force_disconnect, 1, 1))
		xprt_force_disconnect(ep->re_xprt);
}

151 152
/**
 * rpcrdma_flush_disconnect - Disconnect on flushed completion
153
 * @r_xprt: transport to disconnect
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 * @wc: work completion entry
 *
 * Must be called in process context.
 */
158
void rpcrdma_flush_disconnect(struct rpcrdma_xprt *r_xprt, struct ib_wc *wc)
159
{
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	if (wc->status != IB_WC_SUCCESS)
		rpcrdma_force_disconnect(r_xprt->rx_ep);
162 163
}

164 165
/**
 * rpcrdma_wc_send - Invoked by RDMA provider for each polled Send WC
166
 * @cq:	completion queue
167
 * @wc:	WCE for a completed Send WR
168
 *
169
 */
170
static void rpcrdma_wc_send(struct ib_cq *cq, struct ib_wc *wc)
171
{
172 173 174
	struct ib_cqe *cqe = wc->wr_cqe;
	struct rpcrdma_sendctx *sc =
		container_of(cqe, struct rpcrdma_sendctx, sc_cqe);
175
	struct rpcrdma_xprt *r_xprt = cq->cq_context;
176

177
	/* WARNING: Only wr_cqe and status are reliable at this point */
178
	trace_xprtrdma_wc_send(wc, &sc->sc_cid);
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	rpcrdma_sendctx_put_locked(r_xprt, sc);
	rpcrdma_flush_disconnect(r_xprt, wc);
181
}
182

183
/**
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 * rpcrdma_wc_receive - Invoked by RDMA provider for each polled Receive WC
185 186
 * @cq:	completion queue
 * @wc:	WCE for a completed Receive WR
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 *
 */
189
static void rpcrdma_wc_receive(struct ib_cq *cq, struct ib_wc *wc)
190
{
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	struct ib_cqe *cqe = wc->wr_cqe;
	struct rpcrdma_rep *rep = container_of(cqe, struct rpcrdma_rep,
					       rr_cqe);
194
	struct rpcrdma_xprt *r_xprt = cq->cq_context;
195

196
	/* WARNING: Only wr_cqe and status are reliable at this point */
197
	trace_xprtrdma_wc_receive(wc, &rep->rr_cid);
198
	--r_xprt->rx_ep->re_receive_count;
199
	if (wc->status != IB_WC_SUCCESS)
200
		goto out_flushed;
201

202
	/* status == SUCCESS means all fields in wc are trustworthy */
203
	rpcrdma_set_xdrlen(&rep->rr_hdrbuf, wc->byte_len);
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	rep->rr_wc_flags = wc->wc_flags;
	rep->rr_inv_rkey = wc->ex.invalidate_rkey;

207
	ib_dma_sync_single_for_cpu(rdmab_device(rep->rr_rdmabuf),
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				   rdmab_addr(rep->rr_rdmabuf),
209
				   wc->byte_len, DMA_FROM_DEVICE);
210

211
	rpcrdma_reply_handler(rep);
212
	return;
213

214
out_flushed:
215
	rpcrdma_flush_disconnect(r_xprt, wc);
216
	rpcrdma_rep_put(&r_xprt->rx_buf, rep);
217 218
}

219
static void rpcrdma_update_cm_private(struct rpcrdma_ep *ep,
220
				      struct rdma_conn_param *param)
221 222 223 224
{
	const struct rpcrdma_connect_private *pmsg = param->private_data;
	unsigned int rsize, wsize;

225
	/* Default settings for RPC-over-RDMA Version One */
226
	ep->re_implicit_roundup = xprt_rdma_pad_optimize;
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	rsize = RPCRDMA_V1_DEF_INLINE_SIZE;
	wsize = RPCRDMA_V1_DEF_INLINE_SIZE;

	if (pmsg &&
	    pmsg->cp_magic == rpcrdma_cmp_magic &&
	    pmsg->cp_version == RPCRDMA_CMP_VERSION) {
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		ep->re_implicit_roundup = true;
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		rsize = rpcrdma_decode_buffer_size(pmsg->cp_send_size);
		wsize = rpcrdma_decode_buffer_size(pmsg->cp_recv_size);
	}

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	if (rsize < ep->re_inline_recv)
		ep->re_inline_recv = rsize;
	if (wsize < ep->re_inline_send)
		ep->re_inline_send = wsize;
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243
	rpcrdma_set_max_header_sizes(ep);
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}

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/**
 * rpcrdma_cm_event_handler - Handle RDMA CM events
 * @id: rdma_cm_id on which an event has occurred
 * @event: details of the event
 *
 * Called with @id's mutex held. Returns 1 if caller should
 * destroy @id, otherwise 0.
 */
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static int
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rpcrdma_cm_event_handler(struct rdma_cm_id *id, struct rdma_cm_event *event)
256
{
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	struct sockaddr *sap = (struct sockaddr *)&id->route.addr.dst_addr;
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	struct rpcrdma_ep *ep = id->context;
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	might_sleep();

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	switch (event->event) {
	case RDMA_CM_EVENT_ADDR_RESOLVED:
	case RDMA_CM_EVENT_ROUTE_RESOLVED:
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		ep->re_async_rc = 0;
		complete(&ep->re_done);
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		return 0;
268
	case RDMA_CM_EVENT_ADDR_ERROR:
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		ep->re_async_rc = -EPROTO;
		complete(&ep->re_done);
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		return 0;
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	case RDMA_CM_EVENT_ROUTE_ERROR:
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		ep->re_async_rc = -ENETUNREACH;
		complete(&ep->re_done);
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		return 0;
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	case RDMA_CM_EVENT_DEVICE_REMOVAL:
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		pr_info("rpcrdma: removing device %s for %pISpc\n",
			ep->re_id->device->name, sap);
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		fallthrough;
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	case RDMA_CM_EVENT_ADDR_CHANGE:
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		ep->re_connect_status = -ENODEV;
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		goto disconnected;
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	case RDMA_CM_EVENT_ESTABLISHED:
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		rpcrdma_ep_get(ep);
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		ep->re_connect_status = 1;
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		rpcrdma_update_cm_private(ep, &event->param.conn);
		trace_xprtrdma_inline_thresh(ep);
288
		wake_up_all(&ep->re_connect_wait);
289
		break;
290
	case RDMA_CM_EVENT_CONNECT_ERROR:
291
		ep->re_connect_status = -ENOTCONN;
292
		goto wake_connect_worker;
293
	case RDMA_CM_EVENT_UNREACHABLE:
294
		ep->re_connect_status = -ENETUNREACH;
295
		goto wake_connect_worker;
296
	case RDMA_CM_EVENT_REJECTED:
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		dprintk("rpcrdma: connection to %pISpc rejected: %s\n",
			sap, rdma_reject_msg(id, event->status));
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		ep->re_connect_status = -ECONNREFUSED;
300
		if (event->status == IB_CM_REJ_STALE_CONN)
301
			ep->re_connect_status = -ENOTCONN;
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wake_connect_worker:
		wake_up_all(&ep->re_connect_wait);
		return 0;
305
	case RDMA_CM_EVENT_DISCONNECTED:
306
		ep->re_connect_status = -ECONNABORTED;
307
disconnected:
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		rpcrdma_force_disconnect(ep);
309
		return rpcrdma_ep_put(ep);
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	default:
		break;
	}

314
	dprintk("RPC:       %s: %pISpc on %s/frwr: %s\n", __func__, sap,
315
		ep->re_id->device->name, rdma_event_msg(event->event));
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	return 0;
}

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static struct rdma_cm_id *rpcrdma_create_id(struct rpcrdma_xprt *r_xprt,
					    struct rpcrdma_ep *ep)
321
{
322
	unsigned long wtimeout = msecs_to_jiffies(RDMA_RESOLVE_TIMEOUT) + 1;
323
	struct rpc_xprt *xprt = &r_xprt->rx_xprt;
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	struct rdma_cm_id *id;
	int rc;

327
	init_completion(&ep->re_done);
328

329
	id = rdma_create_id(xprt->xprt_net, rpcrdma_cm_event_handler, ep,
330
			    RDMA_PS_TCP, IB_QPT_RC);
331
	if (IS_ERR(id))
332 333
		return id;

334 335
	ep->re_async_rc = -ETIMEDOUT;
	rc = rdma_resolve_addr(id, NULL, (struct sockaddr *)&xprt->addr,
336
			       RDMA_RESOLVE_TIMEOUT);
337
	if (rc)
338
		goto out;
339
	rc = wait_for_completion_interruptible_timeout(&ep->re_done, wtimeout);
340
	if (rc < 0)
341
		goto out;
342

343
	rc = ep->re_async_rc;
344 345 346
	if (rc)
		goto out;

347
	ep->re_async_rc = -ETIMEDOUT;
348
	rc = rdma_resolve_route(id, RDMA_RESOLVE_TIMEOUT);
349
	if (rc)
350
		goto out;
351
	rc = wait_for_completion_interruptible_timeout(&ep->re_done, wtimeout);
352
	if (rc < 0)
353
		goto out;
354
	rc = ep->re_async_rc;
355
	if (rc)
356
		goto out;
357 358

	return id;
359

360 361 362 363 364
out:
	rdma_destroy_id(id);
	return ERR_PTR(rc);
}

365
static void rpcrdma_ep_destroy(struct kref *kref)
366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388
{
	struct rpcrdma_ep *ep = container_of(kref, struct rpcrdma_ep, re_kref);

	if (ep->re_id->qp) {
		rdma_destroy_qp(ep->re_id);
		ep->re_id->qp = NULL;
	}

	if (ep->re_attr.recv_cq)
		ib_free_cq(ep->re_attr.recv_cq);
	ep->re_attr.recv_cq = NULL;
	if (ep->re_attr.send_cq)
		ib_free_cq(ep->re_attr.send_cq);
	ep->re_attr.send_cq = NULL;

	if (ep->re_pd)
		ib_dealloc_pd(ep->re_pd);
	ep->re_pd = NULL;

	kfree(ep);
	module_put(THIS_MODULE);
}

389 390 391 392 393
static noinline void rpcrdma_ep_get(struct rpcrdma_ep *ep)
{
	kref_get(&ep->re_kref);
}

394 395 396
/* Returns:
 *     %0 if @ep still has a positive kref count, or
 *     %1 if @ep was destroyed successfully.
397
 */
398
static noinline int rpcrdma_ep_put(struct rpcrdma_ep *ep)
399
{
400
	return kref_put(&ep->re_kref, rpcrdma_ep_destroy);
401
}
402

403
static int rpcrdma_ep_create(struct rpcrdma_xprt *r_xprt)
404
{
405 406
	struct rpcrdma_connect_private *pmsg;
	struct ib_device *device;
407
	struct rdma_cm_id *id;
408
	struct rpcrdma_ep *ep;
409
	int rc;
410

411 412
	ep = kzalloc(sizeof(*ep), GFP_NOFS);
	if (!ep)
413
		return -ENOTCONN;
414 415 416
	ep->re_xprt = &r_xprt->rx_xprt;
	kref_init(&ep->re_kref);

417
	id = rpcrdma_create_id(r_xprt, ep);
418
	if (IS_ERR(id)) {
419 420
		kfree(ep);
		return PTR_ERR(id);
421 422 423 424
	}
	__module_get(THIS_MODULE);
	device = id->device;
	ep->re_id = id;
425
	reinit_completion(&ep->re_done);
426

427 428 429
	ep->re_max_requests = r_xprt->rx_xprt.max_reqs;
	ep->re_inline_send = xprt_rdma_max_inline_write;
	ep->re_inline_recv = xprt_rdma_max_inline_read;
430
	rc = frwr_query_device(ep, device);
431
	if (rc)
432 433
		goto out_destroy;

434
	r_xprt->rx_buf.rb_max_requests = cpu_to_be32(ep->re_max_requests);
435

436 437 438 439 440 441 442
	ep->re_attr.event_handler = rpcrdma_qp_event_handler;
	ep->re_attr.qp_context = ep;
	ep->re_attr.srq = NULL;
	ep->re_attr.cap.max_inline_data = 0;
	ep->re_attr.sq_sig_type = IB_SIGNAL_REQ_WR;
	ep->re_attr.qp_type = IB_QPT_RC;
	ep->re_attr.port_num = ~0;
443 444 445 446

	dprintk("RPC:       %s: requested max: dtos: send %d recv %d; "
		"iovs: send %d recv %d\n",
		__func__,
447 448 449 450 451 452 453 454 455
		ep->re_attr.cap.max_send_wr,
		ep->re_attr.cap.max_recv_wr,
		ep->re_attr.cap.max_send_sge,
		ep->re_attr.cap.max_recv_sge);

	ep->re_send_batch = ep->re_max_requests >> 3;
	ep->re_send_count = ep->re_send_batch;
	init_waitqueue_head(&ep->re_connect_wait);

456
	ep->re_attr.send_cq = ib_alloc_cq_any(device, r_xprt,
457 458 459 460
					      ep->re_attr.cap.max_send_wr,
					      IB_POLL_WORKQUEUE);
	if (IS_ERR(ep->re_attr.send_cq)) {
		rc = PTR_ERR(ep->re_attr.send_cq);
461
		goto out_destroy;
462 463
	}

464
	ep->re_attr.recv_cq = ib_alloc_cq_any(device, r_xprt,
465 466 467 468
					      ep->re_attr.cap.max_recv_wr,
					      IB_POLL_WORKQUEUE);
	if (IS_ERR(ep->re_attr.recv_cq)) {
		rc = PTR_ERR(ep->re_attr.recv_cq);
469
		goto out_destroy;
470
	}
471
	ep->re_receive_count = 0;
472

473
	/* Initialize cma parameters */
474
	memset(&ep->re_remote_cma, 0, sizeof(ep->re_remote_cma));
475

476
	/* Prepare RDMA-CM private message */
477
	pmsg = &ep->re_cm_private;
478 479
	pmsg->cp_magic = rpcrdma_cmp_magic;
	pmsg->cp_version = RPCRDMA_CMP_VERSION;
480
	pmsg->cp_flags |= RPCRDMA_CMP_F_SND_W_INV_OK;
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	pmsg->cp_send_size = rpcrdma_encode_buffer_size(ep->re_inline_send);
	pmsg->cp_recv_size = rpcrdma_encode_buffer_size(ep->re_inline_recv);
	ep->re_remote_cma.private_data = pmsg;
	ep->re_remote_cma.private_data_len = sizeof(*pmsg);
485 486

	/* Client offers RDMA Read but does not initiate */
487 488
	ep->re_remote_cma.initiator_depth = 0;
	ep->re_remote_cma.responder_resources =
489
		min_t(int, U8_MAX, device->attrs.max_qp_rd_atom);
490

491 492 493 494
	/* Limit transport retries so client can detect server
	 * GID changes quickly. RPC layer handles re-establishing
	 * transport connection and retransmission.
	 */
495
	ep->re_remote_cma.retry_count = 6;
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	/* RPC-over-RDMA handles its own flow control. In addition,
	 * make all RNR NAKs visible so we know that RPC-over-RDMA
	 * flow control is working correctly (no NAKs should be seen).
	 */
501 502
	ep->re_remote_cma.flow_control = 0;
	ep->re_remote_cma.rnr_retry_count = 0;
503

504
	ep->re_pd = ib_alloc_pd(device, 0);
505 506
	if (IS_ERR(ep->re_pd)) {
		rc = PTR_ERR(ep->re_pd);
507 508 509
		goto out_destroy;
	}

510
	rc = rdma_create_qp(id, ep->re_pd, &ep->re_attr);
511 512
	if (rc)
		goto out_destroy;
513

514
	r_xprt->rx_ep = ep;
515 516
	return 0;

517
out_destroy:
518
	rpcrdma_ep_put(ep);
519
	rdma_destroy_id(id);
520 521 522
	return rc;
}

523 524 525 526 527
/**
 * rpcrdma_xprt_connect - Connect an unconnected transport
 * @r_xprt: controlling transport instance
 *
 * Returns 0 on success or a negative errno.
528
 */
529
int rpcrdma_xprt_connect(struct rpcrdma_xprt *r_xprt)
530
{
531
	struct rpc_xprt *xprt = &r_xprt->rx_xprt;
532
	struct rpcrdma_ep *ep;
533
	int rc;
534

535 536
	rc = rpcrdma_ep_create(r_xprt);
	if (rc)
537 538
		return rc;
	ep = r_xprt->rx_ep;
539

540
	xprt_clear_connected(xprt);
541
	rpcrdma_reset_cwnd(r_xprt);
542 543 544 545 546

	/* Bump the ep's reference count while there are
	 * outstanding Receives.
	 */
	rpcrdma_ep_get(ep);
547
	rpcrdma_post_recvs(r_xprt, true);
548

549
	rc = rdma_connect(ep->re_id, &ep->re_remote_cma);
550
	if (rc)
551 552
		goto out;

553 554
	if (xprt->reestablish_timeout < RPCRDMA_INIT_REEST_TO)
		xprt->reestablish_timeout = RPCRDMA_INIT_REEST_TO;
555 556 557 558
	wait_event_interruptible(ep->re_connect_wait,
				 ep->re_connect_status != 0);
	if (ep->re_connect_status <= 0) {
		rc = ep->re_connect_status;
559
		goto out;
560 561
	}

562 563 564 565 566 567
	rc = rpcrdma_sendctxs_create(r_xprt);
	if (rc) {
		rc = -ENOTCONN;
		goto out;
	}

568
	rc = rpcrdma_reqs_setup(r_xprt);
569 570
	if (rc) {
		rc = -ENOTCONN;
571
		goto out;
572
	}
573
	rpcrdma_mrs_create(r_xprt);
574

575
out:
576
	trace_xprtrdma_connect(r_xprt, rc);
577 578 579
	return rc;
}

580
/**
581 582
 * rpcrdma_xprt_disconnect - Disconnect underlying transport
 * @r_xprt: controlling transport instance
583
 *
584 585
 * Caller serializes. Either the transport send lock is held,
 * or we're being called to destroy the transport.
586 587 588
 *
 * On return, @r_xprt is completely divested of all hardware
 * resources and prepared for the next ->connect operation.
589
 */
590
void rpcrdma_xprt_disconnect(struct rpcrdma_xprt *r_xprt)
591
{
592 593 594
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
	struct rdma_cm_id *id;
	int rc;
595

596
	if (!ep)
597
		return;
598

599
	id = ep->re_id;
600
	rc = rdma_disconnect(id);
601
	trace_xprtrdma_disconnect(r_xprt, rc);
602

603
	rpcrdma_xprt_drain(r_xprt);
604
	rpcrdma_reps_unmap(r_xprt);
605
	rpcrdma_reqs_reset(r_xprt);
606
	rpcrdma_mrs_destroy(r_xprt);
607
	rpcrdma_sendctxs_destroy(r_xprt);
608

609
	if (rpcrdma_ep_put(ep))
610
		rdma_destroy_id(id);
611 612

	r_xprt->rx_ep = NULL;
613 614
}

615 616 617 618 619 620 621 622 623 624 625 626 627 628
/* Fixed-size circular FIFO queue. This implementation is wait-free and
 * lock-free.
 *
 * Consumer is the code path that posts Sends. This path dequeues a
 * sendctx for use by a Send operation. Multiple consumer threads
 * are serialized by the RPC transport lock, which allows only one
 * ->send_request call at a time.
 *
 * Producer is the code path that handles Send completions. This path
 * enqueues a sendctx that has been completed. Multiple producer
 * threads are serialized by the ib_poll_cq() function.
 */

/* rpcrdma_sendctxs_destroy() assumes caller has already quiesced
629 630
 * queue activity, and rpcrdma_xprt_drain has flushed all remaining
 * Send requests.
631
 */
632
static void rpcrdma_sendctxs_destroy(struct rpcrdma_xprt *r_xprt)
633
{
634
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
635 636
	unsigned long i;

637 638
	if (!buf->rb_sc_ctxs)
		return;
639 640 641
	for (i = 0; i <= buf->rb_sc_last; i++)
		kfree(buf->rb_sc_ctxs[i]);
	kfree(buf->rb_sc_ctxs);
642
	buf->rb_sc_ctxs = NULL;
643 644
}

645
static struct rpcrdma_sendctx *rpcrdma_sendctx_create(struct rpcrdma_ep *ep)
646 647 648
{
	struct rpcrdma_sendctx *sc;

649
	sc = kzalloc(struct_size(sc, sc_sges, ep->re_attr.cap.max_send_sge),
650 651 652 653 654
		     GFP_KERNEL);
	if (!sc)
		return NULL;

	sc->sc_cqe.done = rpcrdma_wc_send;
655 656 657
	sc->sc_cid.ci_queue_id = ep->re_attr.send_cq->res.id;
	sc->sc_cid.ci_completion_id =
		atomic_inc_return(&ep->re_completion_ids);
658 659 660 661 662 663 664 665 666 667 668 669 670 671
	return sc;
}

static int rpcrdma_sendctxs_create(struct rpcrdma_xprt *r_xprt)
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_sendctx *sc;
	unsigned long i;

	/* Maximum number of concurrent outstanding Send WRs. Capping
	 * the circular queue size stops Send Queue overflow by causing
	 * the ->send_request call to fail temporarily before too many
	 * Sends are posted.
	 */
672
	i = r_xprt->rx_ep->re_max_requests + RPCRDMA_MAX_BC_REQUESTS;
673 674 675 676 677 678
	buf->rb_sc_ctxs = kcalloc(i, sizeof(sc), GFP_KERNEL);
	if (!buf->rb_sc_ctxs)
		return -ENOMEM;

	buf->rb_sc_last = i - 1;
	for (i = 0; i <= buf->rb_sc_last; i++) {
679
		sc = rpcrdma_sendctx_create(r_xprt->rx_ep);
680
		if (!sc)
681
			return -ENOMEM;
682 683 684 685

		buf->rb_sc_ctxs[i] = sc;
	}

686 687
	buf->rb_sc_head = 0;
	buf->rb_sc_tail = 0;
688 689 690 691 692 693 694 695 696 697 698 699 700 701 702
	return 0;
}

/* The sendctx queue is not guaranteed to have a size that is a
 * power of two, thus the helpers in circ_buf.h cannot be used.
 * The other option is to use modulus (%), which can be expensive.
 */
static unsigned long rpcrdma_sendctx_next(struct rpcrdma_buffer *buf,
					  unsigned long item)
{
	return likely(item < buf->rb_sc_last) ? item + 1 : 0;
}

/**
 * rpcrdma_sendctx_get_locked - Acquire a send context
703
 * @r_xprt: controlling transport instance
704 705 706 707 708 709
 *
 * Returns pointer to a free send completion context; or NULL if
 * the queue is empty.
 *
 * Usage: Called to acquire an SGE array before preparing a Send WR.
 *
710 711
 * The caller serializes calls to this function (per transport), and
 * provides an effective memory barrier that flushes the new value
712 713
 * of rb_sc_head.
 */
714
struct rpcrdma_sendctx *rpcrdma_sendctx_get_locked(struct rpcrdma_xprt *r_xprt)
715
{
716
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739
	struct rpcrdma_sendctx *sc;
	unsigned long next_head;

	next_head = rpcrdma_sendctx_next(buf, buf->rb_sc_head);

	if (next_head == READ_ONCE(buf->rb_sc_tail))
		goto out_emptyq;

	/* ORDER: item must be accessed _before_ head is updated */
	sc = buf->rb_sc_ctxs[next_head];

	/* Releasing the lock in the caller acts as a memory
	 * barrier that flushes rb_sc_head.
	 */
	buf->rb_sc_head = next_head;

	return sc;

out_emptyq:
	/* The queue is "empty" if there have not been enough Send
	 * completions recently. This is a sign the Send Queue is
	 * backing up. Cause the caller to pause and try again.
	 */
740
	xprt_wait_for_buffer_space(&r_xprt->rx_xprt);
741 742 743 744 745 746
	r_xprt->rx_stats.empty_sendctx_q++;
	return NULL;
}

/**
 * rpcrdma_sendctx_put_locked - Release a send context
747
 * @r_xprt: controlling transport instance
748 749 750 751 752
 * @sc: send context to release
 *
 * Usage: Called from Send completion to return a sendctxt
 * to the queue.
 *
753
 * The caller serializes calls to this function (per transport).
754
 */
755 756
static void rpcrdma_sendctx_put_locked(struct rpcrdma_xprt *r_xprt,
				       struct rpcrdma_sendctx *sc)
757
{
758
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
759 760
	unsigned long next_tail;

761
	/* Unmap SGEs of previously completed but unsignaled
762 763 764 765 766 767 768
	 * Sends by walking up the queue until @sc is found.
	 */
	next_tail = buf->rb_sc_tail;
	do {
		next_tail = rpcrdma_sendctx_next(buf, next_tail);

		/* ORDER: item must be accessed _before_ tail is updated */
769
		rpcrdma_sendctx_unmap(buf->rb_sc_ctxs[next_tail]);
770 771 772 773 774

	} while (buf->rb_sc_ctxs[next_tail] != sc);

	/* Paired with READ_ONCE */
	smp_store_release(&buf->rb_sc_tail, next_tail);
775

776
	xprt_write_space(&r_xprt->rx_xprt);
777 778
}

C
Chuck Lever 已提交
779
static void
C
Chuck Lever 已提交
780
rpcrdma_mrs_create(struct rpcrdma_xprt *r_xprt)
C
Chuck Lever 已提交
781 782
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
783
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
C
Chuck Lever 已提交
784 785
	unsigned int count;

786
	for (count = 0; count < ep->re_max_rdma_segs; count++) {
C
Chuck Lever 已提交
787
		struct rpcrdma_mr *mr;
C
Chuck Lever 已提交
788 789
		int rc;

790
		mr = kzalloc(sizeof(*mr), GFP_NOFS);
C
Chuck Lever 已提交
791
		if (!mr)
C
Chuck Lever 已提交
792 793
			break;

C
Chuck Lever 已提交
794
		rc = frwr_mr_init(r_xprt, mr);
C
Chuck Lever 已提交
795
		if (rc) {
C
Chuck Lever 已提交
796
			kfree(mr);
C
Chuck Lever 已提交
797 798 799
			break;
		}

800
		spin_lock(&buf->rb_lock);
C
Chuck Lever 已提交
801
		rpcrdma_mr_push(mr, &buf->rb_mrs);
802
		list_add(&mr->mr_all, &buf->rb_all_mrs);
803
		spin_unlock(&buf->rb_lock);
C
Chuck Lever 已提交
804 805 806
	}

	r_xprt->rx_stats.mrs_allocated += count;
807
	trace_xprtrdma_createmrs(r_xprt, count);
C
Chuck Lever 已提交
808 809 810 811 812 813
}

static void
rpcrdma_mr_refresh_worker(struct work_struct *work)
{
	struct rpcrdma_buffer *buf = container_of(work, struct rpcrdma_buffer,
814
						  rb_refresh_worker);
C
Chuck Lever 已提交
815 816 817
	struct rpcrdma_xprt *r_xprt = container_of(buf, struct rpcrdma_xprt,
						   rx_buf);

C
Chuck Lever 已提交
818
	rpcrdma_mrs_create(r_xprt);
819
	xprt_write_space(&r_xprt->rx_xprt);
C
Chuck Lever 已提交
820 821
}

822 823 824 825 826 827 828 829
/**
 * rpcrdma_mrs_refresh - Wake the MR refresh worker
 * @r_xprt: controlling transport instance
 *
 */
void rpcrdma_mrs_refresh(struct rpcrdma_xprt *r_xprt)
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
830
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
831

832 833
	/* If there is no underlying connection, it's no use
	 * to wake the refresh worker.
834
	 */
835
	if (ep->re_connect_status == 1) {
836 837 838 839 840 841 842 843
		/* The work is scheduled on a WQ_MEM_RECLAIM
		 * workqueue in order to prevent MR allocation
		 * from recursing into NFS during direct reclaim.
		 */
		queue_work(xprtiod_workqueue, &buf->rb_refresh_worker);
	}
}

844 845 846
/**
 * rpcrdma_req_create - Allocate an rpcrdma_req object
 * @r_xprt: controlling r_xprt
847
 * @size: initial size, in bytes, of send and receive buffers
848 849 850 851
 * @flags: GFP flags passed to memory allocators
 *
 * Returns an allocated and fully initialized rpcrdma_req or NULL.
 */
852 853
struct rpcrdma_req *rpcrdma_req_create(struct rpcrdma_xprt *r_xprt, size_t size,
				       gfp_t flags)
854
{
855
	struct rpcrdma_buffer *buffer = &r_xprt->rx_buf;
856 857
	struct rpcrdma_req *req;

858
	req = kzalloc(sizeof(*req), flags);
859
	if (req == NULL)
860
		goto out1;
861

C
Chuck Lever 已提交
862
	req->rl_sendbuf = rpcrdma_regbuf_alloc(size, DMA_TO_DEVICE, flags);
863
	if (!req->rl_sendbuf)
864
		goto out2;
865

C
Chuck Lever 已提交
866
	req->rl_recvbuf = rpcrdma_regbuf_alloc(size, DMA_NONE, flags);
867
	if (!req->rl_recvbuf)
868
		goto out3;
869

870
	INIT_LIST_HEAD(&req->rl_free_mrs);
871
	INIT_LIST_HEAD(&req->rl_registered);
872
	spin_lock(&buffer->rb_lock);
873
	list_add(&req->rl_all, &buffer->rb_allreqs);
874
	spin_unlock(&buffer->rb_lock);
875
	return req;
876 877

out3:
878
	kfree(req->rl_sendbuf);
879 880 881 882
out2:
	kfree(req);
out1:
	return NULL;
883 884
}

885
/**
886
 * rpcrdma_req_setup - Per-connection instance setup of an rpcrdma_req object
887
 * @r_xprt: controlling transport instance
888
 * @req: rpcrdma_req object to set up
889
 *
890 891 892 893 894 895 896 897 898
 * Returns zero on success, and a negative errno on failure.
 */
int rpcrdma_req_setup(struct rpcrdma_xprt *r_xprt, struct rpcrdma_req *req)
{
	struct rpcrdma_regbuf *rb;
	size_t maxhdrsize;

	/* Compute maximum header buffer size in bytes */
	maxhdrsize = rpcrdma_fixed_maxsz + 3 +
899
		     r_xprt->rx_ep->re_max_rdma_segs * rpcrdma_readchunk_maxsz;
900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919
	maxhdrsize *= sizeof(__be32);
	rb = rpcrdma_regbuf_alloc(__roundup_pow_of_two(maxhdrsize),
				  DMA_TO_DEVICE, GFP_KERNEL);
	if (!rb)
		goto out;

	if (!__rpcrdma_regbuf_dma_map(r_xprt, rb))
		goto out_free;

	req->rl_rdmabuf = rb;
	xdr_buf_init(&req->rl_hdrbuf, rdmab_data(rb), rdmab_length(rb));
	return 0;

out_free:
	rpcrdma_regbuf_free(rb);
out:
	return -ENOMEM;
}

/* ASSUMPTION: the rb_allreqs list is stable for the duration,
920 921 922 923
 * and thus can be walked without holding rb_lock. Eg. the
 * caller is holding the transport send lock to exclude
 * device removal or disconnection.
 */
924
static int rpcrdma_reqs_setup(struct rpcrdma_xprt *r_xprt)
925 926 927
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_req *req;
928
	int rc;
929 930

	list_for_each_entry(req, &buf->rb_allreqs, rl_all) {
931 932 933
		rc = rpcrdma_req_setup(r_xprt, req);
		if (rc)
			return rc;
934
	}
935 936 937 938 939 940 941 942 943 944 945 946 947
	return 0;
}

static void rpcrdma_req_reset(struct rpcrdma_req *req)
{
	/* Credits are valid for only one connection */
	req->rl_slot.rq_cong = 0;

	rpcrdma_regbuf_free(req->rl_rdmabuf);
	req->rl_rdmabuf = NULL;

	rpcrdma_regbuf_dma_unmap(req->rl_sendbuf);
	rpcrdma_regbuf_dma_unmap(req->rl_recvbuf);
948 949

	frwr_reset(req);
950 951 952 953 954 955 956 957 958 959 960 961 962 963
}

/* ASSUMPTION: the rb_allreqs list is stable for the duration,
 * and thus can be walked without holding rb_lock. Eg. the
 * caller is holding the transport send lock to exclude
 * device removal or disconnection.
 */
static void rpcrdma_reqs_reset(struct rpcrdma_xprt *r_xprt)
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_req *req;

	list_for_each_entry(req, &buf->rb_allreqs, rl_all)
		rpcrdma_req_reset(req);
964 965
}

966 967 968
static noinline
struct rpcrdma_rep *rpcrdma_rep_create(struct rpcrdma_xprt *r_xprt,
				       bool temp)
969
{
970
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
971 972
	struct rpcrdma_rep *rep;

973
	rep = kzalloc(sizeof(*rep), GFP_KERNEL);
974 975 976
	if (rep == NULL)
		goto out;

977
	rep->rr_rdmabuf = rpcrdma_regbuf_alloc(r_xprt->rx_ep->re_inline_recv,
978
					       DMA_FROM_DEVICE, GFP_KERNEL);
C
Chuck Lever 已提交
979
	if (!rep->rr_rdmabuf)
980
		goto out_free;
981

982 983 984
	if (!rpcrdma_regbuf_dma_map(r_xprt, rep->rr_rdmabuf))
		goto out_free_regbuf;

985 986 987
	rep->rr_cid.ci_completion_id =
		atomic_inc_return(&r_xprt->rx_ep->re_completion_ids);

C
Chuck Lever 已提交
988
	xdr_buf_init(&rep->rr_hdrbuf, rdmab_data(rep->rr_rdmabuf),
989
		     rdmab_length(rep->rr_rdmabuf));
990
	rep->rr_cqe.done = rpcrdma_wc_receive;
991
	rep->rr_rxprt = r_xprt;
992 993 994 995
	rep->rr_recv_wr.next = NULL;
	rep->rr_recv_wr.wr_cqe = &rep->rr_cqe;
	rep->rr_recv_wr.sg_list = &rep->rr_rdmabuf->rg_iov;
	rep->rr_recv_wr.num_sge = 1;
996
	rep->rr_temp = temp;
997 998 999 1000

	spin_lock(&buf->rb_lock);
	list_add(&rep->rr_all, &buf->rb_all_reps);
	spin_unlock(&buf->rb_lock);
1001
	return rep;
1002

1003 1004
out_free_regbuf:
	rpcrdma_regbuf_free(rep->rr_rdmabuf);
1005 1006 1007
out_free:
	kfree(rep);
out:
1008
	return NULL;
1009 1010
}

1011
static void rpcrdma_rep_free(struct rpcrdma_rep *rep)
1012 1013 1014 1015 1016
{
	rpcrdma_regbuf_free(rep->rr_rdmabuf);
	kfree(rep);
}

1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027
static void rpcrdma_rep_destroy(struct rpcrdma_rep *rep)
{
	struct rpcrdma_buffer *buf = &rep->rr_rxprt->rx_buf;

	spin_lock(&buf->rb_lock);
	list_del(&rep->rr_all);
	spin_unlock(&buf->rb_lock);

	rpcrdma_rep_free(rep);
}

1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041
static struct rpcrdma_rep *rpcrdma_rep_get_locked(struct rpcrdma_buffer *buf)
{
	struct llist_node *node;

	/* Calls to llist_del_first are required to be serialized */
	node = llist_del_first(&buf->rb_free_reps);
	if (!node)
		return NULL;
	return llist_entry(node, struct rpcrdma_rep, rr_node);
}

static void rpcrdma_rep_put(struct rpcrdma_buffer *buf,
			    struct rpcrdma_rep *rep)
{
1042 1043 1044
	llist_add(&rep->rr_node, &buf->rb_free_reps);
}

1045 1046 1047 1048
/* Caller must ensure the QP is quiescent (RQ is drained) before
 * invoking this function, to guarantee rb_all_reps is not
 * changing.
 */
1049 1050 1051 1052 1053
static void rpcrdma_reps_unmap(struct rpcrdma_xprt *r_xprt)
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_rep *rep;

1054
	list_for_each_entry(rep, &buf->rb_all_reps, rr_all) {
1055
		rpcrdma_regbuf_dma_unmap(rep->rr_rdmabuf);
1056
		rep->rr_temp = true;	/* Mark this rep for destruction */
1057
	}
1058 1059 1060 1061 1062 1063
}

static void rpcrdma_reps_destroy(struct rpcrdma_buffer *buf)
{
	struct rpcrdma_rep *rep;

1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075
	spin_lock(&buf->rb_lock);
	while ((rep = list_first_entry_or_null(&buf->rb_all_reps,
					       struct rpcrdma_rep,
					       rr_all)) != NULL) {
		list_del(&rep->rr_all);
		spin_unlock(&buf->rb_lock);

		rpcrdma_rep_free(rep);

		spin_lock(&buf->rb_lock);
	}
	spin_unlock(&buf->rb_lock);
1076 1077
}

1078 1079 1080 1081 1082 1083 1084
/**
 * rpcrdma_buffer_create - Create initial set of req/rep objects
 * @r_xprt: transport instance to (re)initialize
 *
 * Returns zero on success, otherwise a negative errno.
 */
int rpcrdma_buffer_create(struct rpcrdma_xprt *r_xprt)
1085
{
1086
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
1087 1088
	int i, rc;

1089
	buf->rb_bc_srv_max_requests = 0;
1090
	spin_lock_init(&buf->rb_lock);
C
Chuck Lever 已提交
1091
	INIT_LIST_HEAD(&buf->rb_mrs);
1092
	INIT_LIST_HEAD(&buf->rb_all_mrs);
1093
	INIT_WORK(&buf->rb_refresh_worker, rpcrdma_mr_refresh_worker);
1094

1095
	INIT_LIST_HEAD(&buf->rb_send_bufs);
1096
	INIT_LIST_HEAD(&buf->rb_allreqs);
1097
	INIT_LIST_HEAD(&buf->rb_all_reps);
1098 1099

	rc = -ENOMEM;
1100
	for (i = 0; i < r_xprt->rx_xprt.max_reqs; i++) {
1101 1102
		struct rpcrdma_req *req;

C
Chuck Lever 已提交
1103
		req = rpcrdma_req_create(r_xprt, RPCRDMA_V1_DEF_INLINE_SIZE * 2,
1104
					 GFP_KERNEL);
1105
		if (!req)
1106
			goto out;
1107
		list_add(&req->rl_list, &buf->rb_send_bufs);
1108 1109
	}

1110
	init_llist_head(&buf->rb_free_reps);
1111

1112 1113 1114 1115 1116 1117
	return 0;
out:
	rpcrdma_buffer_destroy(buf);
	return rc;
}

1118 1119 1120 1121
/**
 * rpcrdma_req_destroy - Destroy an rpcrdma_req object
 * @req: unused object to be destroyed
 *
1122 1123
 * Relies on caller holding the transport send lock to protect
 * removing req->rl_all from buf->rb_all_reqs safely.
1124
 */
1125
void rpcrdma_req_destroy(struct rpcrdma_req *req)
1126
{
C
Chuck Lever 已提交
1127 1128
	struct rpcrdma_mr *mr;

1129 1130
	list_del(&req->rl_all);

C
Chuck Lever 已提交
1131 1132 1133 1134 1135 1136 1137 1138 1139
	while ((mr = rpcrdma_mr_pop(&req->rl_free_mrs))) {
		struct rpcrdma_buffer *buf = &mr->mr_xprt->rx_buf;

		spin_lock(&buf->rb_lock);
		list_del(&mr->mr_all);
		spin_unlock(&buf->rb_lock);

		frwr_release_mr(mr);
	}
1140

C
Chuck Lever 已提交
1141 1142 1143
	rpcrdma_regbuf_free(req->rl_recvbuf);
	rpcrdma_regbuf_free(req->rl_sendbuf);
	rpcrdma_regbuf_free(req->rl_rdmabuf);
1144 1145 1146
	kfree(req);
}

C
Chuck Lever 已提交
1147 1148
/**
 * rpcrdma_mrs_destroy - Release all of a transport's MRs
1149
 * @r_xprt: controlling transport instance
C
Chuck Lever 已提交
1150 1151 1152 1153
 *
 * Relies on caller holding the transport send lock to protect
 * removing mr->mr_list from req->rl_free_mrs safely.
 */
1154
static void rpcrdma_mrs_destroy(struct rpcrdma_xprt *r_xprt)
C
Chuck Lever 已提交
1155
{
1156
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
C
Chuck Lever 已提交
1157
	struct rpcrdma_mr *mr;
C
Chuck Lever 已提交
1158

1159 1160
	cancel_work_sync(&buf->rb_refresh_worker);

1161
	spin_lock(&buf->rb_lock);
1162 1163 1164
	while ((mr = list_first_entry_or_null(&buf->rb_all_mrs,
					      struct rpcrdma_mr,
					      mr_all)) != NULL) {
C
Chuck Lever 已提交
1165
		list_del(&mr->mr_list);
C
Chuck Lever 已提交
1166
		list_del(&mr->mr_all);
1167
		spin_unlock(&buf->rb_lock);
1168

1169
		frwr_release_mr(mr);
1170

1171
		spin_lock(&buf->rb_lock);
C
Chuck Lever 已提交
1172
	}
1173
	spin_unlock(&buf->rb_lock);
C
Chuck Lever 已提交
1174 1175
}

1176 1177 1178 1179
/**
 * rpcrdma_buffer_destroy - Release all hw resources
 * @buf: root control block for resources
 *
1180
 * ORDERING: relies on a prior rpcrdma_xprt_drain :
1181 1182 1183
 * - No more Send or Receive completions can occur
 * - All MRs, reps, and reqs are returned to their free lists
 */
1184 1185 1186
void
rpcrdma_buffer_destroy(struct rpcrdma_buffer *buf)
{
1187
	rpcrdma_reps_destroy(buf);
1188

1189
	while (!list_empty(&buf->rb_send_bufs)) {
1190
		struct rpcrdma_req *req;
A
Allen Andrews 已提交
1191

1192 1193 1194 1195
		req = list_first_entry(&buf->rb_send_bufs,
				       struct rpcrdma_req, rl_list);
		list_del(&req->rl_list);
		rpcrdma_req_destroy(req);
1196
	}
1197 1198
}

C
Chuck Lever 已提交
1199 1200 1201 1202 1203 1204 1205 1206 1207
/**
 * rpcrdma_mr_get - Allocate an rpcrdma_mr object
 * @r_xprt: controlling transport
 *
 * Returns an initialized rpcrdma_mr or NULL if no free
 * rpcrdma_mr objects are available.
 */
struct rpcrdma_mr *
rpcrdma_mr_get(struct rpcrdma_xprt *r_xprt)
1208
{
1209
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
C
Chuck Lever 已提交
1210
	struct rpcrdma_mr *mr;
1211

1212
	spin_lock(&buf->rb_lock);
C
Chuck Lever 已提交
1213
	mr = rpcrdma_mr_pop(&buf->rb_mrs);
1214
	spin_unlock(&buf->rb_lock);
C
Chuck Lever 已提交
1215
	return mr;
1216 1217
}

1218 1219 1220
/**
 * rpcrdma_buffer_get - Get a request buffer
 * @buffers: Buffer pool from which to obtain a buffer
1221
 *
1222
 * Returns a fresh rpcrdma_req, or NULL if none are available.
1223 1224 1225 1226 1227
 */
struct rpcrdma_req *
rpcrdma_buffer_get(struct rpcrdma_buffer *buffers)
{
	struct rpcrdma_req *req;
1228

1229
	spin_lock(&buffers->rb_lock);
1230 1231 1232 1233
	req = list_first_entry_or_null(&buffers->rb_send_bufs,
				       struct rpcrdma_req, rl_list);
	if (req)
		list_del_init(&req->rl_list);
1234
	spin_unlock(&buffers->rb_lock);
1235
	return req;
1236 1237
}

1238 1239
/**
 * rpcrdma_buffer_put - Put request/reply buffers back into pool
1240
 * @buffers: buffer pool
1241 1242
 * @req: object to return
 *
1243
 */
1244
void rpcrdma_buffer_put(struct rpcrdma_buffer *buffers, struct rpcrdma_req *req)
1245
{
1246 1247
	if (req->rl_reply)
		rpcrdma_rep_put(buffers, req->rl_reply);
1248 1249
	req->rl_reply = NULL;

1250
	spin_lock(&buffers->rb_lock);
1251
	list_add(&req->rl_list, &buffers->rb_send_bufs);
1252
	spin_unlock(&buffers->rb_lock);
1253 1254
}

1255 1256 1257 1258 1259
/**
 * rpcrdma_recv_buffer_put - Release rpcrdma_rep back to free list
 * @rep: rep to release
 *
 * Used after error conditions.
1260
 */
1261
void rpcrdma_recv_buffer_put(struct rpcrdma_rep *rep)
1262
{
1263
	rpcrdma_rep_put(&rep->rr_rxprt->rx_buf, rep);
1264 1265
}

C
Chuck Lever 已提交
1266
/* Returns a pointer to a rpcrdma_regbuf object, or NULL.
1267 1268
 *
 * xprtrdma uses a regbuf for posting an outgoing RDMA SEND, or for
1269
 * receiving the payload of RDMA RECV operations. During Long Calls
1270
 * or Replies they may be registered externally via frwr_map.
1271
 */
C
Chuck Lever 已提交
1272 1273
static struct rpcrdma_regbuf *
rpcrdma_regbuf_alloc(size_t size, enum dma_data_direction direction,
1274
		     gfp_t flags)
1275 1276 1277
{
	struct rpcrdma_regbuf *rb;

C
Chuck Lever 已提交
1278 1279 1280 1281 1282 1283 1284 1285
	rb = kmalloc(sizeof(*rb), flags);
	if (!rb)
		return NULL;
	rb->rg_data = kmalloc(size, flags);
	if (!rb->rg_data) {
		kfree(rb);
		return NULL;
	}
1286

1287
	rb->rg_device = NULL;
1288
	rb->rg_direction = direction;
1289
	rb->rg_iov.length = size;
1290
	return rb;
1291
}
1292

1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309
/**
 * rpcrdma_regbuf_realloc - re-allocate a SEND/RECV buffer
 * @rb: regbuf to reallocate
 * @size: size of buffer to be allocated, in bytes
 * @flags: GFP flags
 *
 * Returns true if reallocation was successful. If false is
 * returned, @rb is left untouched.
 */
bool rpcrdma_regbuf_realloc(struct rpcrdma_regbuf *rb, size_t size, gfp_t flags)
{
	void *buf;

	buf = kmalloc(size, flags);
	if (!buf)
		return false;

C
Chuck Lever 已提交
1310
	rpcrdma_regbuf_dma_unmap(rb);
1311 1312 1313 1314 1315 1316 1317
	kfree(rb->rg_data);

	rb->rg_data = buf;
	rb->rg_iov.length = size;
	return true;
}

1318
/**
C
Chuck Lever 已提交
1319 1320
 * __rpcrdma_regbuf_dma_map - DMA-map a regbuf
 * @r_xprt: controlling transport instance
1321
 * @rb: regbuf to be mapped
C
Chuck Lever 已提交
1322 1323
 *
 * Returns true if the buffer is now DMA mapped to @r_xprt's device
1324
 */
C
Chuck Lever 已提交
1325 1326
bool __rpcrdma_regbuf_dma_map(struct rpcrdma_xprt *r_xprt,
			      struct rpcrdma_regbuf *rb)
1327
{
1328
	struct ib_device *device = r_xprt->rx_ep->re_id->device;
1329

1330 1331 1332
	if (rb->rg_direction == DMA_NONE)
		return false;

C
Chuck Lever 已提交
1333 1334
	rb->rg_iov.addr = ib_dma_map_single(device, rdmab_data(rb),
					    rdmab_length(rb), rb->rg_direction);
1335 1336
	if (ib_dma_mapping_error(device, rdmab_addr(rb))) {
		trace_xprtrdma_dma_maperr(rdmab_addr(rb));
1337
		return false;
1338
	}
1339

1340
	rb->rg_device = device;
1341
	rb->rg_iov.lkey = r_xprt->rx_ep->re_pd->local_dma_lkey;
1342 1343 1344
	return true;
}

C
Chuck Lever 已提交
1345
static void rpcrdma_regbuf_dma_unmap(struct rpcrdma_regbuf *rb)
1346
{
1347 1348 1349
	if (!rb)
		return;

1350 1351 1352
	if (!rpcrdma_regbuf_is_mapped(rb))
		return;

C
Chuck Lever 已提交
1353 1354
	ib_dma_unmap_single(rb->rg_device, rdmab_addr(rb), rdmab_length(rb),
			    rb->rg_direction);
1355
	rb->rg_device = NULL;
1356 1357
}

C
Chuck Lever 已提交
1358
static void rpcrdma_regbuf_free(struct rpcrdma_regbuf *rb)
1359
{
C
Chuck Lever 已提交
1360
	rpcrdma_regbuf_dma_unmap(rb);
C
Chuck Lever 已提交
1361 1362
	if (rb)
		kfree(rb->rg_data);
1363
	kfree(rb);
1364 1365
}

1366
/**
1367 1368
 * rpcrdma_post_sends - Post WRs to a transport's Send Queue
 * @r_xprt: controlling transport instance
1369
 * @req: rpcrdma_req containing the Send WR to post
1370
 *
1371 1372
 * Returns 0 if the post was successful, otherwise -ENOTCONN
 * is returned.
1373
 */
1374
int rpcrdma_post_sends(struct rpcrdma_xprt *r_xprt, struct rpcrdma_req *req)
1375
{
1376
	struct ib_send_wr *send_wr = &req->rl_wr;
1377
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
1378
	int rc;
1379

1380
	if (!ep->re_send_count || kref_read(&req->rl_kref) > 1) {
1381
		send_wr->send_flags |= IB_SEND_SIGNALED;
1382
		ep->re_send_count = ep->re_send_batch;
1383 1384
	} else {
		send_wr->send_flags &= ~IB_SEND_SIGNALED;
1385
		--ep->re_send_count;
1386
	}
1387

1388
	trace_xprtrdma_post_send(req);
1389
	rc = frwr_send(r_xprt, req);
1390
	if (rc)
1391
		return -ENOTCONN;
1392
	return 0;
1393 1394
}

1395 1396 1397 1398 1399 1400 1401
/**
 * rpcrdma_post_recvs - Refill the Receive Queue
 * @r_xprt: controlling transport instance
 * @temp: mark Receive buffers to be deleted after use
 *
 */
void rpcrdma_post_recvs(struct rpcrdma_xprt *r_xprt, bool temp)
1402
{
1403
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
1404
	struct rpcrdma_ep *ep = r_xprt->rx_ep;
1405
	struct ib_recv_wr *wr, *bad_wr;
1406
	struct rpcrdma_rep *rep;
1407
	int needed, count, rc;
1408

1409 1410
	rc = 0;
	count = 0;
1411

1412
	needed = buf->rb_credits + (buf->rb_bc_srv_max_requests << 1);
1413
	if (likely(ep->re_receive_count > needed))
1414
		goto out;
1415
	needed -= ep->re_receive_count;
1416 1417
	if (!temp)
		needed += RPCRDMA_MAX_RECV_BATCH;
1418

1419 1420 1421
	if (atomic_inc_return(&ep->re_receiving) > 1)
		goto out;

1422
	/* fast path: all needed reps can be found on the free list */
1423 1424
	wr = NULL;
	while (needed) {
1425
		rep = rpcrdma_rep_get_locked(buf);
1426 1427 1428 1429
		if (rep && rep->rr_temp) {
			rpcrdma_rep_destroy(rep);
			continue;
		}
1430
		if (!rep)
1431
			rep = rpcrdma_rep_create(r_xprt, temp);
1432
		if (!rep)
C
Chuck Lever 已提交
1433
			break;
1434

1435
		rep->rr_cid.ci_queue_id = ep->re_attr.recv_cq->res.id;
1436
		trace_xprtrdma_post_recv(rep);
1437 1438 1439
		rep->rr_recv_wr.next = wr;
		wr = &rep->rr_recv_wr;
		--needed;
1440
		++count;
1441
	}
1442
	if (!wr)
1443
		goto out;
1444

1445
	rc = ib_post_recv(ep->re_id->qp, wr,
1446
			  (const struct ib_recv_wr **)&bad_wr);
1447 1448 1449
	if (atomic_dec_return(&ep->re_receiving) > 0)
		complete(&ep->re_done);

1450 1451
out:
	trace_xprtrdma_post_recvs(r_xprt, count, rc);
1452
	if (rc) {
1453
		for (wr = bad_wr; wr;) {
1454 1455 1456
			struct rpcrdma_rep *rep;

			rep = container_of(wr, struct rpcrdma_rep, rr_recv_wr);
1457
			wr = wr->next;
1458 1459 1460 1461
			rpcrdma_recv_buffer_put(rep);
			--count;
		}
	}
1462
	ep->re_receive_count += count;
1463
	return;
1464
}