verbs.c 38.6 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 <asm-generic/barrier.h>
58
#include <asm/bitops.h>
59

60
#include <rdma/ib_cm.h>
61

62
#include "xprt_rdma.h"
63
#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 void rpcrdma_sendctx_put_locked(struct rpcrdma_sendctx *sc);
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static void rpcrdma_mrs_create(struct rpcrdma_xprt *r_xprt);
static void rpcrdma_mrs_destroy(struct rpcrdma_buffer *buf);
79
static void rpcrdma_dma_unmap_regbuf(struct rpcrdma_regbuf *rb);
80
static void rpcrdma_post_recvs(struct rpcrdma_xprt *r_xprt, bool temp);
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82 83 84
/* Wait for outstanding transport work to finish.
 */
static void rpcrdma_xprt_drain(struct rpcrdma_xprt *r_xprt)
85
{
86 87
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_ia *ia = &r_xprt->rx_ia;
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89 90 91
	/* Flush Receives, then wait for deferred Reply work
	 * to complete.
	 */
92
	ib_drain_rq(ia->ri_id->qp);
93
	drain_workqueue(buf->rb_completion_wq);
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95 96 97 98
	/* Deferred Reply processing might have scheduled
	 * local invalidations.
	 */
	ib_drain_sq(ia->ri_id->qp);
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}

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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
 * context.
 */
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static void
110
rpcrdma_qp_event_handler(struct ib_event *event, void *context)
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{
	struct rpcrdma_ep *ep = context;
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	struct rpcrdma_xprt *r_xprt = container_of(ep, struct rpcrdma_xprt,
						   rx_ep);
115

116
	trace_xprtrdma_qp_event(r_xprt, event);
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}

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/**
 * rpcrdma_wc_send - Invoked by RDMA provider for each polled Send WC
 * @cq:	completion queue (ignored)
 * @wc:	completed WR
 *
124 125
 */
static void
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rpcrdma_wc_send(struct ib_cq *cq, struct ib_wc *wc)
127
{
128 129 130 131
	struct ib_cqe *cqe = wc->wr_cqe;
	struct rpcrdma_sendctx *sc =
		container_of(cqe, struct rpcrdma_sendctx, sc_cqe);

132
	/* WARNING: Only wr_cqe and status are reliable at this point */
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	trace_xprtrdma_wc_send(sc, wc);
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	if (wc->status != IB_WC_SUCCESS && wc->status != IB_WC_WR_FLUSH_ERR)
		pr_err("rpcrdma: Send: %s (%u/0x%x)\n",
		       ib_wc_status_msg(wc->status),
		       wc->status, wc->vendor_err);
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	rpcrdma_sendctx_put_locked(sc);
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}
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142
/**
143
 * rpcrdma_wc_receive - Invoked by RDMA provider for each polled Receive WC
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 * @cq:	completion queue (ignored)
 * @wc:	completed WR
 *
 */
148
static void
149
rpcrdma_wc_receive(struct ib_cq *cq, struct ib_wc *wc)
150
{
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	struct ib_cqe *cqe = wc->wr_cqe;
	struct rpcrdma_rep *rep = container_of(cqe, struct rpcrdma_rep,
					       rr_cqe);
154
	struct rpcrdma_xprt *r_xprt = rep->rr_rxprt;
155

156
	/* WARNING: Only wr_cqe and status are reliable at this point */
157
	trace_xprtrdma_wc_receive(wc);
158
	--r_xprt->rx_ep.rep_receive_count;
159
	if (wc->status != IB_WC_SUCCESS)
160
		goto out_flushed;
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162
	/* status == SUCCESS means all fields in wc are trustworthy */
163
	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;

167
	ib_dma_sync_single_for_cpu(rdmab_device(rep->rr_rdmabuf),
168
				   rdmab_addr(rep->rr_rdmabuf),
169
				   wc->byte_len, DMA_FROM_DEVICE);
170

171
	rpcrdma_post_recvs(r_xprt, false);
172
	rpcrdma_reply_handler(rep);
173
	return;
174

175
out_flushed:
176
	if (wc->status != IB_WC_WR_FLUSH_ERR)
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		pr_err("rpcrdma: Recv: %s (%u/0x%x)\n",
		       ib_wc_status_msg(wc->status),
		       wc->status, wc->vendor_err);
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	rpcrdma_recv_buffer_put(rep);
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}

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static void
rpcrdma_update_connect_private(struct rpcrdma_xprt *r_xprt,
			       struct rdma_conn_param *param)
{
	struct rpcrdma_create_data_internal *cdata = &r_xprt->rx_data;
	const struct rpcrdma_connect_private *pmsg = param->private_data;
	unsigned int rsize, wsize;

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	/* Default settings for RPC-over-RDMA Version One */
192
	r_xprt->rx_ia.ri_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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		r_xprt->rx_ia.ri_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);
	}

	if (rsize < cdata->inline_rsize)
		cdata->inline_rsize = rsize;
	if (wsize < cdata->inline_wsize)
		cdata->inline_wsize = wsize;
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	dprintk("RPC:       %s: max send %u, max recv %u\n",
		__func__, cdata->inline_wsize, cdata->inline_rsize);
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	rpcrdma_set_max_header_sizes(r_xprt);
}

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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)
223
{
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	struct rpcrdma_xprt *r_xprt = id->context;
	struct rpcrdma_ia *ia = &r_xprt->rx_ia;
	struct rpcrdma_ep *ep = &r_xprt->rx_ep;
	struct rpc_xprt *xprt = &r_xprt->rx_xprt;
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	might_sleep();

231
	trace_xprtrdma_cm_event(r_xprt, event);
232 233 234
	switch (event->event) {
	case RDMA_CM_EVENT_ADDR_RESOLVED:
	case RDMA_CM_EVENT_ROUTE_RESOLVED:
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		ia->ri_async_rc = 0;
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		complete(&ia->ri_done);
237
		return 0;
238
	case RDMA_CM_EVENT_ADDR_ERROR:
239
		ia->ri_async_rc = -EPROTO;
240
		complete(&ia->ri_done);
241
		return 0;
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	case RDMA_CM_EVENT_ROUTE_ERROR:
		ia->ri_async_rc = -ENETUNREACH;
		complete(&ia->ri_done);
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		return 0;
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	case RDMA_CM_EVENT_DEVICE_REMOVAL:
#if IS_ENABLED(CONFIG_SUNRPC_DEBUG)
248
		pr_info("rpcrdma: removing device %s for %s:%s\n",
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			ia->ri_device->name,
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			rpcrdma_addrstr(r_xprt), rpcrdma_portstr(r_xprt));
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#endif
		set_bit(RPCRDMA_IAF_REMOVING, &ia->ri_flags);
		ep->rep_connected = -ENODEV;
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		xprt_force_disconnect(xprt);
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		wait_for_completion(&ia->ri_remove_done);

		ia->ri_id = NULL;
		ia->ri_device = NULL;
		/* Return 1 to ensure the core destroys the id. */
		return 1;
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	case RDMA_CM_EVENT_ESTABLISHED:
262
		++xprt->connect_cookie;
263
		ep->rep_connected = 1;
264
		rpcrdma_update_connect_private(r_xprt, &event->param.conn);
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		wake_up_all(&ep->rep_connect_wait);
		break;
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	case RDMA_CM_EVENT_CONNECT_ERROR:
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		ep->rep_connected = -ENOTCONN;
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		goto disconnected;
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	case RDMA_CM_EVENT_UNREACHABLE:
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		ep->rep_connected = -ENETUNREACH;
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		goto disconnected;
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	case RDMA_CM_EVENT_REJECTED:
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		dprintk("rpcrdma: connection to %s:%s rejected: %s\n",
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			rpcrdma_addrstr(r_xprt), rpcrdma_portstr(r_xprt),
276
			rdma_reject_msg(id, event->status));
277
		ep->rep_connected = -ECONNREFUSED;
278
		if (event->status == IB_CM_REJ_STALE_CONN)
279
			ep->rep_connected = -EAGAIN;
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		goto disconnected;
281
	case RDMA_CM_EVENT_DISCONNECTED:
282
		ep->rep_connected = -ECONNABORTED;
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disconnected:
		xprt_force_disconnect(xprt);
285
		wake_up_all(&ep->rep_connect_wait);
286
		break;
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	default:
		break;
	}

291
	dprintk("RPC:       %s: %s:%s on %s/frwr: %s\n", __func__,
292
		rpcrdma_addrstr(r_xprt), rpcrdma_portstr(r_xprt),
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		ia->ri_device->name, rdma_event_msg(event->event));
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	return 0;
}

static struct rdma_cm_id *
298
rpcrdma_create_id(struct rpcrdma_xprt *xprt, struct rpcrdma_ia *ia)
299
{
300
	unsigned long wtimeout = msecs_to_jiffies(RDMA_RESOLVE_TIMEOUT) + 1;
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	struct rdma_cm_id *id;
	int rc;

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	trace_xprtrdma_conn_start(xprt);

306
	init_completion(&ia->ri_done);
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	init_completion(&ia->ri_remove_done);
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	id = rdma_create_id(xprt->rx_xprt.xprt_net, rpcrdma_cm_event_handler,
310
			    xprt, RDMA_PS_TCP, IB_QPT_RC);
311
	if (IS_ERR(id))
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		return id;

314
	ia->ri_async_rc = -ETIMEDOUT;
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	rc = rdma_resolve_addr(id, NULL,
			       (struct sockaddr *)&xprt->rx_xprt.addr,
			       RDMA_RESOLVE_TIMEOUT);
318
	if (rc)
319
		goto out;
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	rc = wait_for_completion_interruptible_timeout(&ia->ri_done, wtimeout);
	if (rc < 0) {
322
		trace_xprtrdma_conn_tout(xprt);
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		goto out;
	}
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	rc = ia->ri_async_rc;
	if (rc)
		goto out;

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	ia->ri_async_rc = -ETIMEDOUT;
331
	rc = rdma_resolve_route(id, RDMA_RESOLVE_TIMEOUT);
332
	if (rc)
333
		goto out;
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	rc = wait_for_completion_interruptible_timeout(&ia->ri_done, wtimeout);
	if (rc < 0) {
336
		trace_xprtrdma_conn_tout(xprt);
337
		goto out;
338
	}
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	rc = ia->ri_async_rc;
	if (rc)
341
		goto out;
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	return id;
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out:
	rdma_destroy_id(id);
	return ERR_PTR(rc);
}

/*
 * Exported functions.
 */

354 355
/**
 * rpcrdma_ia_open - Open and initialize an Interface Adapter.
356
 * @xprt: transport with IA to (re)initialize
357 358 359
 *
 * Returns 0 on success, negative errno if an appropriate
 * Interface Adapter could not be found and opened.
360 361
 */
int
362
rpcrdma_ia_open(struct rpcrdma_xprt *xprt)
363 364
{
	struct rpcrdma_ia *ia = &xprt->rx_ia;
365 366
	int rc;

367
	ia->ri_id = rpcrdma_create_id(xprt, ia);
368 369
	if (IS_ERR(ia->ri_id)) {
		rc = PTR_ERR(ia->ri_id);
370
		goto out_err;
371
	}
372
	ia->ri_device = ia->ri_id->device;
373

374
	ia->ri_pd = ib_alloc_pd(ia->ri_device, 0);
375 376
	if (IS_ERR(ia->ri_pd)) {
		rc = PTR_ERR(ia->ri_pd);
377
		pr_err("rpcrdma: ib_alloc_pd() returned %d\n", rc);
378
		goto out_err;
379 380
	}

381
	switch (xprt_rdma_memreg_strategy) {
382
	case RPCRDMA_FRWR:
383
		if (frwr_is_supported(ia))
384 385
			break;
		/*FALLTHROUGH*/
386
	default:
387 388
		pr_err("rpcrdma: Device %s does not support memreg mode %d\n",
		       ia->ri_device->name, xprt_rdma_memreg_strategy);
389
		rc = -EINVAL;
390
		goto out_err;
391 392 393
	}

	return 0;
394

395 396
out_err:
	rpcrdma_ia_close(ia);
397 398 399
	return rc;
}

400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426
/**
 * rpcrdma_ia_remove - Handle device driver unload
 * @ia: interface adapter being removed
 *
 * Divest transport H/W resources associated with this adapter,
 * but allow it to be restored later.
 */
void
rpcrdma_ia_remove(struct rpcrdma_ia *ia)
{
	struct rpcrdma_xprt *r_xprt = container_of(ia, struct rpcrdma_xprt,
						   rx_ia);
	struct rpcrdma_ep *ep = &r_xprt->rx_ep;
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_req *req;
	struct rpcrdma_rep *rep;

	cancel_delayed_work_sync(&buf->rb_refresh_worker);

	/* This is similar to rpcrdma_ep_destroy, but:
	 * - Don't cancel the connect worker.
	 * - Don't call rpcrdma_ep_disconnect, which waits
	 *   for another conn upcall, which will deadlock.
	 * - rdma_disconnect is unneeded, the underlying
	 *   connection is already gone.
	 */
	if (ia->ri_id->qp) {
427
		rpcrdma_xprt_drain(r_xprt);
428 429 430 431
		rdma_destroy_qp(ia->ri_id);
		ia->ri_id->qp = NULL;
	}
	ib_free_cq(ep->rep_attr.recv_cq);
432
	ep->rep_attr.recv_cq = NULL;
433
	ib_free_cq(ep->rep_attr.send_cq);
434
	ep->rep_attr.send_cq = NULL;
435 436 437 438 439 440 441 442 443 444 445

	/* The ULP is responsible for ensuring all DMA
	 * mappings and MRs are gone.
	 */
	list_for_each_entry(rep, &buf->rb_recv_bufs, rr_list)
		rpcrdma_dma_unmap_regbuf(rep->rr_rdmabuf);
	list_for_each_entry(req, &buf->rb_allreqs, rl_all) {
		rpcrdma_dma_unmap_regbuf(req->rl_rdmabuf);
		rpcrdma_dma_unmap_regbuf(req->rl_sendbuf);
		rpcrdma_dma_unmap_regbuf(req->rl_recvbuf);
	}
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	rpcrdma_mrs_destroy(buf);
447 448
	ib_dealloc_pd(ia->ri_pd);
	ia->ri_pd = NULL;
449 450 451

	/* Allow waiters to continue */
	complete(&ia->ri_remove_done);
452 453

	trace_xprtrdma_remove(r_xprt);
454 455
}

456 457 458 459
/**
 * rpcrdma_ia_close - Clean up/close an IA.
 * @ia: interface adapter to close
 *
460 461 462 463
 */
void
rpcrdma_ia_close(struct rpcrdma_ia *ia)
{
464 465 466
	if (ia->ri_id != NULL && !IS_ERR(ia->ri_id)) {
		if (ia->ri_id->qp)
			rdma_destroy_qp(ia->ri_id);
467
		rdma_destroy_id(ia->ri_id);
468
	}
469 470
	ia->ri_id = NULL;
	ia->ri_device = NULL;
471 472 473

	/* If the pd is still busy, xprtrdma missed freeing a resource */
	if (ia->ri_pd && !IS_ERR(ia->ri_pd))
474
		ib_dealloc_pd(ia->ri_pd);
475
	ia->ri_pd = NULL;
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}

/*
 * Create unconnected endpoint.
 */
int
rpcrdma_ep_create(struct rpcrdma_ep *ep, struct rpcrdma_ia *ia,
483
		  struct rpcrdma_create_data_internal *cdata)
484
{
485
	struct rpcrdma_connect_private *pmsg = &ep->rep_cm_private;
486
	struct ib_cq *sendcq, *recvcq;
487
	unsigned int max_sge;
488
	int rc;
489

490
	max_sge = min_t(unsigned int, ia->ri_device->attrs.max_send_sge,
491
			RPCRDMA_MAX_SEND_SGES);
492 493
	if (max_sge < RPCRDMA_MIN_SEND_SGES) {
		pr_warn("rpcrdma: HCA provides only %d send SGEs\n", max_sge);
494 495
		return -ENOMEM;
	}
496
	ia->ri_max_send_sges = max_sge;
497

498
	rc = frwr_open(ia, ep, cdata);
499 500
	if (rc)
		return rc;
501

502
	ep->rep_attr.event_handler = rpcrdma_qp_event_handler;
503 504
	ep->rep_attr.qp_context = ep;
	ep->rep_attr.srq = NULL;
505
	ep->rep_attr.cap.max_send_sge = max_sge;
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	ep->rep_attr.cap.max_recv_sge = 1;
	ep->rep_attr.cap.max_inline_data = 0;
	ep->rep_attr.sq_sig_type = IB_SIGNAL_REQ_WR;
	ep->rep_attr.qp_type = IB_QPT_RC;
	ep->rep_attr.port_num = ~0;

	dprintk("RPC:       %s: requested max: dtos: send %d recv %d; "
		"iovs: send %d recv %d\n",
		__func__,
		ep->rep_attr.cap.max_send_wr,
		ep->rep_attr.cap.max_recv_wr,
		ep->rep_attr.cap.max_send_sge,
		ep->rep_attr.cap.max_recv_sge);

	/* set trigger for requesting send completion */
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	ep->rep_send_batch = min_t(unsigned int, RPCRDMA_MAX_SEND_BATCH,
				   cdata->max_requests >> 2);
	ep->rep_send_count = ep->rep_send_batch;
524
	init_waitqueue_head(&ep->rep_connect_wait);
525
	ep->rep_receive_count = 0;
526

527 528
	sendcq = ib_alloc_cq(ia->ri_device, NULL,
			     ep->rep_attr.cap.max_send_wr + 1,
529 530
			     ia->ri_device->num_comp_vectors > 1 ? 1 : 0,
			     IB_POLL_WORKQUEUE);
531 532
	if (IS_ERR(sendcq)) {
		rc = PTR_ERR(sendcq);
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		goto out1;
	}

536 537
	recvcq = ib_alloc_cq(ia->ri_device, NULL,
			     ep->rep_attr.cap.max_recv_wr + 1,
538
			     0, IB_POLL_WORKQUEUE);
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	if (IS_ERR(recvcq)) {
		rc = PTR_ERR(recvcq);
		goto out2;
	}

	ep->rep_attr.send_cq = sendcq;
	ep->rep_attr.recv_cq = recvcq;
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	/* Initialize cma parameters */
548
	memset(&ep->rep_remote_cma, 0, sizeof(ep->rep_remote_cma));
549

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	/* Prepare RDMA-CM private message */
	pmsg->cp_magic = rpcrdma_cmp_magic;
	pmsg->cp_version = RPCRDMA_CMP_VERSION;
553
	pmsg->cp_flags |= RPCRDMA_CMP_F_SND_W_INV_OK;
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	pmsg->cp_send_size = rpcrdma_encode_buffer_size(cdata->inline_wsize);
	pmsg->cp_recv_size = rpcrdma_encode_buffer_size(cdata->inline_rsize);
	ep->rep_remote_cma.private_data = pmsg;
	ep->rep_remote_cma.private_data_len = sizeof(*pmsg);
558 559

	/* Client offers RDMA Read but does not initiate */
560
	ep->rep_remote_cma.initiator_depth = 0;
561 562
	ep->rep_remote_cma.responder_resources =
		min_t(int, U8_MAX, ia->ri_device->attrs.max_qp_rd_atom);
563

564 565 566 567 568 569 570 571 572 573
	/* Limit transport retries so client can detect server
	 * GID changes quickly. RPC layer handles re-establishing
	 * transport connection and retransmission.
	 */
	ep->rep_remote_cma.retry_count = 6;

	/* 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).
	 */
574 575 576 577 578 579
	ep->rep_remote_cma.flow_control = 0;
	ep->rep_remote_cma.rnr_retry_count = 0;

	return 0;

out2:
580
	ib_free_cq(sendcq);
581 582 583 584 585 586 587 588 589 590 591
out1:
	return rc;
}

/*
 * rpcrdma_ep_destroy
 *
 * Disconnect and destroy endpoint. After this, the only
 * valid operations on the ep are to free it (if dynamically
 * allocated) or re-create it.
 */
592
void
593 594
rpcrdma_ep_destroy(struct rpcrdma_ep *ep, struct rpcrdma_ia *ia)
{
595
	if (ia->ri_id && ia->ri_id->qp) {
596
		rpcrdma_ep_disconnect(ep, ia);
597 598
		rdma_destroy_qp(ia->ri_id);
		ia->ri_id->qp = NULL;
599 600
	}

601 602 603 604
	if (ep->rep_attr.recv_cq)
		ib_free_cq(ep->rep_attr.recv_cq);
	if (ep->rep_attr.send_cq)
		ib_free_cq(ep->rep_attr.send_cq);
605 606
}

607 608 609 610 611 612 613 614 615 616
/* Re-establish a connection after a device removal event.
 * Unlike a normal reconnection, a fresh PD and a new set
 * of MRs and buffers is needed.
 */
static int
rpcrdma_ep_recreate_xprt(struct rpcrdma_xprt *r_xprt,
			 struct rpcrdma_ep *ep, struct rpcrdma_ia *ia)
{
	int rc, err;

617
	trace_xprtrdma_reinsert(r_xprt);
618 619

	rc = -EHOSTUNREACH;
620
	if (rpcrdma_ia_open(r_xprt))
621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636
		goto out1;

	rc = -ENOMEM;
	err = rpcrdma_ep_create(ep, ia, &r_xprt->rx_data);
	if (err) {
		pr_err("rpcrdma: rpcrdma_ep_create returned %d\n", err);
		goto out2;
	}

	rc = -ENETUNREACH;
	err = rdma_create_qp(ia->ri_id, ia->ri_pd, &ep->rep_attr);
	if (err) {
		pr_err("rpcrdma: rdma_create_qp returned %d\n", err);
		goto out3;
	}

C
Chuck Lever 已提交
637
	rpcrdma_mrs_create(r_xprt);
638 639 640 641 642 643 644 645 646 647
	return 0;

out3:
	rpcrdma_ep_destroy(ep, ia);
out2:
	rpcrdma_ia_close(ia);
out1:
	return rc;
}

648 649 650 651 652 653 654
static int
rpcrdma_ep_reconnect(struct rpcrdma_xprt *r_xprt, struct rpcrdma_ep *ep,
		     struct rpcrdma_ia *ia)
{
	struct rdma_cm_id *id, *old;
	int err, rc;

655
	trace_xprtrdma_reconnect(r_xprt);
656 657 658 659

	rpcrdma_ep_disconnect(ep, ia);

	rc = -EHOSTUNREACH;
660
	id = rpcrdma_create_id(r_xprt, ia);
661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679
	if (IS_ERR(id))
		goto out;

	/* As long as the new ID points to the same device as the
	 * old ID, we can reuse the transport's existing PD and all
	 * previously allocated MRs. Also, the same device means
	 * the transport's previous DMA mappings are still valid.
	 *
	 * This is a sanity check only. There should be no way these
	 * point to two different devices here.
	 */
	old = id;
	rc = -ENETUNREACH;
	if (ia->ri_device != id->device) {
		pr_err("rpcrdma: can't reconnect on different device!\n");
		goto out_destroy;
	}

	err = rdma_create_qp(id, ia->ri_pd, &ep->rep_attr);
680
	if (err)
681 682 683 684 685 686 687 688 689
		goto out_destroy;

	/* Atomically replace the transport's ID and QP. */
	rc = 0;
	old = ia->ri_id;
	ia->ri_id = id;
	rdma_destroy_qp(old);

out_destroy:
690
	rdma_destroy_id(old);
691 692 693 694
out:
	return rc;
}

695 696 697 698 699 700
/*
 * Connect unconnected endpoint.
 */
int
rpcrdma_ep_connect(struct rpcrdma_ep *ep, struct rpcrdma_ia *ia)
{
701 702
	struct rpcrdma_xprt *r_xprt = container_of(ia, struct rpcrdma_xprt,
						   rx_ia);
703
	struct rpc_xprt *xprt = &r_xprt->rx_xprt;
704
	int rc;
705 706

retry:
707 708
	switch (ep->rep_connected) {
	case 0:
709 710 711
		dprintk("RPC:       %s: connecting...\n", __func__);
		rc = rdma_create_qp(ia->ri_id, ia->ri_pd, &ep->rep_attr);
		if (rc) {
712 713
			rc = -ENETUNREACH;
			goto out_noupdate;
714
		}
715
		break;
716 717 718 719 720
	case -ENODEV:
		rc = rpcrdma_ep_recreate_xprt(r_xprt, ep, ia);
		if (rc)
			goto out_noupdate;
		break;
721 722 723 724
	default:
		rc = rpcrdma_ep_reconnect(r_xprt, ep, ia);
		if (rc)
			goto out;
725 726 727
	}

	ep->rep_connected = 0;
728 729
	xprt_clear_connected(xprt);

730
	rpcrdma_post_recvs(r_xprt, true);
731 732

	rc = rdma_connect(ia->ri_id, &ep->rep_remote_cma);
733
	if (rc)
734 735 736 737
		goto out;

	wait_event_interruptible(ep->rep_connect_wait, ep->rep_connected != 0);
	if (ep->rep_connected <= 0) {
738
		if (ep->rep_connected == -EAGAIN)
739 740
			goto retry;
		rc = ep->rep_connected;
741
		goto out;
742 743
	}

744
	dprintk("RPC:       %s: connected\n", __func__);
745

746 747 748
out:
	if (rc)
		ep->rep_connected = rc;
749 750

out_noupdate:
751 752 753
	return rc;
}

754 755 756 757
/**
 * rpcrdma_ep_disconnect - Disconnect underlying transport
 * @ep: endpoint to disconnect
 * @ia: associated interface adapter
758 759 760 761 762 763 764
 *
 * This is separate from destroy to facilitate the ability
 * to reconnect without recreating the endpoint.
 *
 * This call is not reentrant, and must not be made in parallel
 * on the same endpoint.
 */
765
void
766 767
rpcrdma_ep_disconnect(struct rpcrdma_ep *ep, struct rpcrdma_ia *ia)
{
768 769
	struct rpcrdma_xprt *r_xprt = container_of(ep, struct rpcrdma_xprt,
						   rx_ep);
770 771
	int rc;

772
	/* returns without wait if ID is not connected */
773
	rc = rdma_disconnect(ia->ri_id);
774
	if (!rc)
775 776
		wait_event_interruptible(ep->rep_connect_wait,
							ep->rep_connected != 1);
777
	else
778
		ep->rep_connected = rc;
779
	trace_xprtrdma_disconnect(r_xprt, rc);
780

781
	rpcrdma_xprt_drain(r_xprt);
782 783
}

784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847
/* 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
 * queue activity, and ib_drain_qp has flushed all remaining Send
 * requests.
 */
static void rpcrdma_sendctxs_destroy(struct rpcrdma_buffer *buf)
{
	unsigned long i;

	for (i = 0; i <= buf->rb_sc_last; i++)
		kfree(buf->rb_sc_ctxs[i]);
	kfree(buf->rb_sc_ctxs);
}

static struct rpcrdma_sendctx *rpcrdma_sendctx_create(struct rpcrdma_ia *ia)
{
	struct rpcrdma_sendctx *sc;

	sc = kzalloc(sizeof(*sc) +
		     ia->ri_max_send_sges * sizeof(struct ib_sge),
		     GFP_KERNEL);
	if (!sc)
		return NULL;

	sc->sc_wr.wr_cqe = &sc->sc_cqe;
	sc->sc_wr.sg_list = sc->sc_sges;
	sc->sc_wr.opcode = IB_WR_SEND;
	sc->sc_cqe.done = rpcrdma_wc_send;
	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.
	 */
	i = buf->rb_max_requests + RPCRDMA_MAX_BC_REQUESTS;
	dprintk("RPC:       %s: allocating %lu send_ctxs\n", __func__, i);
	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++) {
		sc = rpcrdma_sendctx_create(&r_xprt->rx_ia);
		if (!sc)
848
			return -ENOMEM;
849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905

		sc->sc_xprt = r_xprt;
		buf->rb_sc_ctxs[i] = sc;
	}

	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
 * @buf: transport buffers from which to acquire an unused context
 *
 * 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.
 *
 * The caller serializes calls to this function (per rpcrdma_buffer),
 * and provides an effective memory barrier that flushes the new value
 * of rb_sc_head.
 */
struct rpcrdma_sendctx *rpcrdma_sendctx_get_locked(struct rpcrdma_buffer *buf)
{
	struct rpcrdma_xprt *r_xprt;
	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.
	 */
906
	set_bit(RPCRDMA_BUF_F_EMPTY_SCQ, &buf->rb_flags);
907 908 909 910 911 912 913 914 915 916 917 918 919 920
	r_xprt = container_of(buf, struct rpcrdma_xprt, rx_buf);
	r_xprt->rx_stats.empty_sendctx_q++;
	return NULL;
}

/**
 * rpcrdma_sendctx_put_locked - Release a send context
 * @sc: send context to release
 *
 * Usage: Called from Send completion to return a sendctxt
 * to the queue.
 *
 * The caller serializes calls to this function (per rpcrdma_buffer).
 */
921 922
static void
rpcrdma_sendctx_put_locked(struct rpcrdma_sendctx *sc)
923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940
{
	struct rpcrdma_buffer *buf = &sc->sc_xprt->rx_buf;
	unsigned long next_tail;

	/* Unmap SGEs of previously completed by unsignaled
	 * 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 */
		rpcrdma_unmap_sendctx(buf->rb_sc_ctxs[next_tail]);

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

	/* Paired with READ_ONCE */
	smp_store_release(&buf->rb_sc_tail, next_tail);
941 942 943 944 945

	if (test_and_clear_bit(RPCRDMA_BUF_F_EMPTY_SCQ, &buf->rb_flags)) {
		smp_mb__after_atomic();
		xprt_write_space(&sc->sc_xprt->rx_xprt);
	}
946 947
}

C
Chuck Lever 已提交
948
static void
C
Chuck Lever 已提交
949
rpcrdma_mrs_create(struct rpcrdma_xprt *r_xprt)
C
Chuck Lever 已提交
950 951 952 953 954 955 956
{
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
	struct rpcrdma_ia *ia = &r_xprt->rx_ia;
	unsigned int count;
	LIST_HEAD(free);
	LIST_HEAD(all);

C
Chuck Lever 已提交
957
	for (count = 0; count < ia->ri_max_segs; count++) {
C
Chuck Lever 已提交
958
		struct rpcrdma_mr *mr;
C
Chuck Lever 已提交
959 960
		int rc;

C
Chuck Lever 已提交
961 962
		mr = kzalloc(sizeof(*mr), GFP_KERNEL);
		if (!mr)
C
Chuck Lever 已提交
963 964
			break;

965
		rc = frwr_init_mr(ia, mr);
C
Chuck Lever 已提交
966
		if (rc) {
C
Chuck Lever 已提交
967
			kfree(mr);
C
Chuck Lever 已提交
968 969 970
			break;
		}

C
Chuck Lever 已提交
971
		mr->mr_xprt = r_xprt;
C
Chuck Lever 已提交
972

C
Chuck Lever 已提交
973 974
		list_add(&mr->mr_list, &free);
		list_add(&mr->mr_all, &all);
C
Chuck Lever 已提交
975 976
	}

C
Chuck Lever 已提交
977 978
	spin_lock(&buf->rb_mrlock);
	list_splice(&free, &buf->rb_mrs);
C
Chuck Lever 已提交
979 980
	list_splice(&all, &buf->rb_all);
	r_xprt->rx_stats.mrs_allocated += count;
C
Chuck Lever 已提交
981
	spin_unlock(&buf->rb_mrlock);
982
	trace_xprtrdma_createmrs(r_xprt, count);
983 984

	xprt_write_space(&r_xprt->rx_xprt);
C
Chuck Lever 已提交
985 986 987 988 989 990 991 992 993 994
}

static void
rpcrdma_mr_refresh_worker(struct work_struct *work)
{
	struct rpcrdma_buffer *buf = container_of(work, struct rpcrdma_buffer,
						  rb_refresh_worker.work);
	struct rpcrdma_xprt *r_xprt = container_of(buf, struct rpcrdma_xprt,
						   rx_buf);

C
Chuck Lever 已提交
995
	rpcrdma_mrs_create(r_xprt);
C
Chuck Lever 已提交
996 997
}

998 999 1000
/**
 * rpcrdma_req_create - Allocate an rpcrdma_req object
 * @r_xprt: controlling r_xprt
1001
 * @size: initial size, in bytes, of send and receive buffers
1002 1003 1004 1005
 * @flags: GFP flags passed to memory allocators
 *
 * Returns an allocated and fully initialized rpcrdma_req or NULL.
 */
1006 1007
struct rpcrdma_req *rpcrdma_req_create(struct rpcrdma_xprt *r_xprt, size_t size,
				       gfp_t flags)
1008
{
1009
	struct rpcrdma_buffer *buffer = &r_xprt->rx_buf;
1010
	struct rpcrdma_regbuf *rb;
1011 1012
	struct rpcrdma_req *req;

1013
	req = kzalloc(sizeof(*req), flags);
1014
	if (req == NULL)
1015
		goto out1;
1016

1017
	rb = rpcrdma_alloc_regbuf(RPCRDMA_HDRBUF_SIZE, DMA_TO_DEVICE, flags);
1018 1019
	if (!rb)
		goto out2;
1020
	req->rl_rdmabuf = rb;
C
Chuck Lever 已提交
1021
	xdr_buf_init(&req->rl_hdrbuf, rdmab_data(rb), rdmab_length(rb));
1022 1023 1024 1025 1026 1027 1028 1029 1030

	req->rl_sendbuf = rpcrdma_alloc_regbuf(size, DMA_TO_DEVICE, flags);
	if (!req->rl_sendbuf)
		goto out3;

	req->rl_recvbuf = rpcrdma_alloc_regbuf(size, DMA_NONE, flags);
	if (!req->rl_recvbuf)
		goto out4;

1031 1032
	req->rl_buffer = buffer;
	INIT_LIST_HEAD(&req->rl_registered);
1033
	spin_lock(&buffer->rb_lock);
1034
	list_add(&req->rl_all, &buffer->rb_allreqs);
1035
	spin_unlock(&buffer->rb_lock);
1036
	return req;
1037 1038 1039 1040 1041 1042 1043 1044 1045

out4:
	kfree(req->rl_sendbuf);
out3:
	kfree(req->rl_rdmabuf);
out2:
	kfree(req);
out1:
	return NULL;
1046 1047
}

1048
static bool rpcrdma_rep_create(struct rpcrdma_xprt *r_xprt, bool temp)
1049 1050
{
	struct rpcrdma_create_data_internal *cdata = &r_xprt->rx_data;
1051
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
1052 1053
	struct rpcrdma_rep *rep;

1054
	rep = kzalloc(sizeof(*rep), GFP_KERNEL);
1055 1056 1057
	if (rep == NULL)
		goto out;

1058
	rep->rr_rdmabuf = rpcrdma_alloc_regbuf(cdata->inline_rsize,
1059
					       DMA_FROM_DEVICE, GFP_KERNEL);
C
Chuck Lever 已提交
1060
	if (!rep->rr_rdmabuf)
1061
		goto out_free;
C
Chuck Lever 已提交
1062
	xdr_buf_init(&rep->rr_hdrbuf, rdmab_data(rep->rr_rdmabuf),
1063
		     rdmab_length(rep->rr_rdmabuf));
1064

1065
	rep->rr_cqe.done = rpcrdma_wc_receive;
1066
	rep->rr_rxprt = r_xprt;
1067
	INIT_WORK(&rep->rr_work, rpcrdma_deferred_completion);
1068 1069 1070 1071
	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;
1072
	rep->rr_temp = temp;
1073 1074 1075 1076

	spin_lock(&buf->rb_lock);
	list_add(&rep->rr_list, &buf->rb_recv_bufs);
	spin_unlock(&buf->rb_lock);
1077
	return true;
1078 1079 1080 1081

out_free:
	kfree(rep);
out:
1082
	return false;
1083 1084
}

1085
int
1086
rpcrdma_buffer_create(struct rpcrdma_xprt *r_xprt)
1087
{
1088
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
1089 1090
	int i, rc;

1091
	buf->rb_flags = 0;
1092
	buf->rb_max_requests = r_xprt->rx_data.max_requests;
1093
	buf->rb_bc_srv_max_requests = 0;
C
Chuck Lever 已提交
1094
	spin_lock_init(&buf->rb_mrlock);
1095
	spin_lock_init(&buf->rb_lock);
C
Chuck Lever 已提交
1096
	INIT_LIST_HEAD(&buf->rb_mrs);
C
Chuck Lever 已提交
1097 1098 1099
	INIT_LIST_HEAD(&buf->rb_all);
	INIT_DELAYED_WORK(&buf->rb_refresh_worker,
			  rpcrdma_mr_refresh_worker);
1100

C
Chuck Lever 已提交
1101
	rpcrdma_mrs_create(r_xprt);
1102

1103
	INIT_LIST_HEAD(&buf->rb_send_bufs);
1104
	INIT_LIST_HEAD(&buf->rb_allreqs);
1105 1106

	rc = -ENOMEM;
1107 1108 1109
	for (i = 0; i < buf->rb_max_requests; i++) {
		struct rpcrdma_req *req;

1110 1111
		req = rpcrdma_req_create(r_xprt, RPCRDMA_V1_DEF_INLINE_SIZE,
					 GFP_KERNEL);
1112
		if (!req)
1113
			goto out;
1114
		list_add(&req->rl_list, &buf->rb_send_bufs);
1115 1116
	}

1117
	buf->rb_credits = 1;
1118
	INIT_LIST_HEAD(&buf->rb_recv_bufs);
1119

1120 1121 1122 1123
	rc = rpcrdma_sendctxs_create(r_xprt);
	if (rc)
		goto out;

1124 1125 1126 1127
	buf->rb_completion_wq = alloc_workqueue("rpcrdma-%s",
						WQ_MEM_RECLAIM | WQ_HIGHPRI,
						0,
			r_xprt->rx_xprt.address_strings[RPC_DISPLAY_ADDR]);
1128 1129
	if (!buf->rb_completion_wq) {
		rc = -ENOMEM;
1130
		goto out;
1131
	}
1132

1133 1134 1135 1136 1137 1138
	return 0;
out:
	rpcrdma_buffer_destroy(buf);
	return rc;
}

1139
static void rpcrdma_rep_destroy(struct rpcrdma_rep *rep)
1140
{
1141
	rpcrdma_free_regbuf(rep->rr_rdmabuf);
1142 1143 1144
	kfree(rep);
}

1145 1146 1147 1148 1149 1150 1151
/**
 * rpcrdma_req_destroy - Destroy an rpcrdma_req object
 * @req: unused object to be destroyed
 *
 * This function assumes that the caller prevents concurrent device
 * unload and transport tear-down.
 */
1152
void
1153
rpcrdma_req_destroy(struct rpcrdma_req *req)
1154
{
1155 1156
	list_del(&req->rl_all);

1157 1158 1159
	rpcrdma_free_regbuf(req->rl_recvbuf);
	rpcrdma_free_regbuf(req->rl_sendbuf);
	rpcrdma_free_regbuf(req->rl_rdmabuf);
1160 1161 1162
	kfree(req);
}

C
Chuck Lever 已提交
1163
static void
C
Chuck Lever 已提交
1164
rpcrdma_mrs_destroy(struct rpcrdma_buffer *buf)
C
Chuck Lever 已提交
1165 1166 1167
{
	struct rpcrdma_xprt *r_xprt = container_of(buf, struct rpcrdma_xprt,
						   rx_buf);
C
Chuck Lever 已提交
1168
	struct rpcrdma_mr *mr;
C
Chuck Lever 已提交
1169 1170 1171
	unsigned int count;

	count = 0;
C
Chuck Lever 已提交
1172
	spin_lock(&buf->rb_mrlock);
C
Chuck Lever 已提交
1173
	while (!list_empty(&buf->rb_all)) {
C
Chuck Lever 已提交
1174 1175
		mr = list_entry(buf->rb_all.next, struct rpcrdma_mr, mr_all);
		list_del(&mr->mr_all);
C
Chuck Lever 已提交
1176

C
Chuck Lever 已提交
1177
		spin_unlock(&buf->rb_mrlock);
1178 1179 1180 1181 1182

		/* Ensure MW is not on any rl_registered list */
		if (!list_empty(&mr->mr_list))
			list_del(&mr->mr_list);

1183
		frwr_release_mr(mr);
C
Chuck Lever 已提交
1184
		count++;
C
Chuck Lever 已提交
1185
		spin_lock(&buf->rb_mrlock);
C
Chuck Lever 已提交
1186
	}
C
Chuck Lever 已提交
1187
	spin_unlock(&buf->rb_mrlock);
C
Chuck Lever 已提交
1188 1189 1190 1191 1192
	r_xprt->rx_stats.mrs_allocated = 0;

	dprintk("RPC:       %s: released %u MRs\n", __func__, count);
}

1193 1194 1195 1196 1197 1198 1199 1200
/**
 * rpcrdma_buffer_destroy - Release all hw resources
 * @buf: root control block for resources
 *
 * ORDERING: relies on a prior ib_drain_qp :
 * - No more Send or Receive completions can occur
 * - All MRs, reps, and reqs are returned to their free lists
 */
1201 1202 1203
void
rpcrdma_buffer_destroy(struct rpcrdma_buffer *buf)
{
1204
	cancel_delayed_work_sync(&buf->rb_refresh_worker);
1205

1206 1207 1208 1209 1210
	if (buf->rb_completion_wq) {
		destroy_workqueue(buf->rb_completion_wq);
		buf->rb_completion_wq = NULL;
	}

1211 1212
	rpcrdma_sendctxs_destroy(buf);

1213 1214
	while (!list_empty(&buf->rb_recv_bufs)) {
		struct rpcrdma_rep *rep;
1215

1216 1217 1218
		rep = list_first_entry(&buf->rb_recv_bufs,
				       struct rpcrdma_rep, rr_list);
		list_del(&rep->rr_list);
1219
		rpcrdma_rep_destroy(rep);
1220 1221
	}

1222
	while (!list_empty(&buf->rb_send_bufs)) {
1223
		struct rpcrdma_req *req;
A
Allen Andrews 已提交
1224

1225 1226 1227 1228
		req = list_first_entry(&buf->rb_send_bufs,
				       struct rpcrdma_req, rl_list);
		list_del(&req->rl_list);
		rpcrdma_req_destroy(req);
1229
	}
A
Allen Andrews 已提交
1230

C
Chuck Lever 已提交
1231
	rpcrdma_mrs_destroy(buf);
1232 1233
}

C
Chuck Lever 已提交
1234 1235 1236 1237 1238 1239 1240 1241 1242
/**
 * 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)
1243
{
1244
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
C
Chuck Lever 已提交
1245
	struct rpcrdma_mr *mr = NULL;
1246

C
Chuck Lever 已提交
1247 1248 1249 1250
	spin_lock(&buf->rb_mrlock);
	if (!list_empty(&buf->rb_mrs))
		mr = rpcrdma_mr_pop(&buf->rb_mrs);
	spin_unlock(&buf->rb_mrlock);
1251

C
Chuck Lever 已提交
1252 1253 1254
	if (!mr)
		goto out_nomrs;
	return mr;
C
Chuck Lever 已提交
1255

C
Chuck Lever 已提交
1256
out_nomrs:
1257
	trace_xprtrdma_nomrs(r_xprt);
1258 1259
	if (r_xprt->rx_ep.rep_connected != -ENODEV)
		schedule_delayed_work(&buf->rb_refresh_worker, 0);
C
Chuck Lever 已提交
1260 1261 1262 1263 1264

	/* Allow the reply handler and refresh worker to run */
	cond_resched();

	return NULL;
1265 1266
}

1267 1268 1269 1270 1271 1272 1273 1274
static void
__rpcrdma_mr_put(struct rpcrdma_buffer *buf, struct rpcrdma_mr *mr)
{
	spin_lock(&buf->rb_mrlock);
	rpcrdma_mr_push(mr, &buf->rb_mrs);
	spin_unlock(&buf->rb_mrlock);
}

C
Chuck Lever 已提交
1275 1276 1277 1278 1279
/**
 * rpcrdma_mr_put - Release an rpcrdma_mr object
 * @mr: object to release
 *
 */
1280
void
C
Chuck Lever 已提交
1281
rpcrdma_mr_put(struct rpcrdma_mr *mr)
1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292
{
	__rpcrdma_mr_put(&mr->mr_xprt->rx_buf, mr);
}

/**
 * rpcrdma_mr_unmap_and_put - DMA unmap an MR and release it
 * @mr: object to release
 *
 */
void
rpcrdma_mr_unmap_and_put(struct rpcrdma_mr *mr)
1293
{
C
Chuck Lever 已提交
1294
	struct rpcrdma_xprt *r_xprt = mr->mr_xprt;
1295

1296 1297 1298 1299 1300 1301
	if (mr->mr_dir != DMA_NONE) {
		trace_xprtrdma_mr_unmap(mr);
		ib_dma_unmap_sg(r_xprt->rx_ia.ri_device,
				mr->mr_sg, mr->mr_nents, mr->mr_dir);
		mr->mr_dir = DMA_NONE;
	}
1302
	__rpcrdma_mr_put(&r_xprt->rx_buf, mr);
1303 1304
}

1305 1306 1307
/**
 * rpcrdma_buffer_get - Get a request buffer
 * @buffers: Buffer pool from which to obtain a buffer
1308
 *
1309
 * Returns a fresh rpcrdma_req, or NULL if none are available.
1310 1311 1312 1313 1314
 */
struct rpcrdma_req *
rpcrdma_buffer_get(struct rpcrdma_buffer *buffers)
{
	struct rpcrdma_req *req;
1315

1316
	spin_lock(&buffers->rb_lock);
1317 1318 1319 1320
	req = list_first_entry_or_null(&buffers->rb_send_bufs,
				       struct rpcrdma_req, rl_list);
	if (req)
		list_del_init(&req->rl_list);
1321
	spin_unlock(&buffers->rb_lock);
1322
	return req;
1323 1324
}

1325 1326 1327 1328
/**
 * rpcrdma_buffer_put - Put request/reply buffers back into pool
 * @req: object to return
 *
1329 1330 1331 1332 1333
 */
void
rpcrdma_buffer_put(struct rpcrdma_req *req)
{
	struct rpcrdma_buffer *buffers = req->rl_buffer;
1334
	struct rpcrdma_rep *rep = req->rl_reply;
1335

1336 1337
	req->rl_reply = NULL;

1338
	spin_lock(&buffers->rb_lock);
1339
	list_add(&req->rl_list, &buffers->rb_send_bufs);
1340
	if (rep) {
1341 1342 1343 1344
		if (!rep->rr_temp) {
			list_add(&rep->rr_list, &buffers->rb_recv_bufs);
			rep = NULL;
		}
1345
	}
1346
	spin_unlock(&buffers->rb_lock);
1347
	if (rep)
1348
		rpcrdma_rep_destroy(rep);
1349 1350 1351 1352
}

/*
 * Put reply buffers back into pool when not attached to
1353
 * request. This happens in error conditions.
1354 1355 1356 1357
 */
void
rpcrdma_recv_buffer_put(struct rpcrdma_rep *rep)
{
1358
	struct rpcrdma_buffer *buffers = &rep->rr_rxprt->rx_buf;
1359

1360 1361 1362 1363 1364
	if (!rep->rr_temp) {
		spin_lock(&buffers->rb_lock);
		list_add(&rep->rr_list, &buffers->rb_recv_bufs);
		spin_unlock(&buffers->rb_lock);
	} else {
1365
		rpcrdma_rep_destroy(rep);
1366
	}
1367 1368
}

1369
/**
1370
 * rpcrdma_alloc_regbuf - allocate and DMA-map memory for SEND/RECV buffers
1371
 * @size: size of buffer to be allocated, in bytes
1372
 * @direction: direction of data movement
1373 1374
 * @flags: GFP flags
 *
C
Chuck Lever 已提交
1375
 * Returns a pointer to a rpcrdma_regbuf object, or NULL.
1376 1377
 *
 * xprtrdma uses a regbuf for posting an outgoing RDMA SEND, or for
1378
 * receiving the payload of RDMA RECV operations. During Long Calls
1379
 * or Replies they may be registered externally via frwr_map.
1380 1381
 */
struct rpcrdma_regbuf *
1382 1383
rpcrdma_alloc_regbuf(size_t size, enum dma_data_direction direction,
		     gfp_t flags)
1384 1385 1386
{
	struct rpcrdma_regbuf *rb;

C
Chuck Lever 已提交
1387 1388 1389 1390 1391 1392 1393 1394
	rb = kmalloc(sizeof(*rb), flags);
	if (!rb)
		return NULL;
	rb->rg_data = kmalloc(size, flags);
	if (!rb->rg_data) {
		kfree(rb);
		return NULL;
	}
1395

1396
	rb->rg_device = NULL;
1397
	rb->rg_direction = direction;
1398
	rb->rg_iov.length = size;
1399
	return rb;
1400
}
1401

1402 1403 1404 1405 1406 1407 1408 1409
/**
 * __rpcrdma_map_regbuf - DMA-map a regbuf
 * @ia: controlling rpcrdma_ia
 * @rb: regbuf to be mapped
 */
bool
__rpcrdma_dma_map_regbuf(struct rpcrdma_ia *ia, struct rpcrdma_regbuf *rb)
{
1410 1411
	struct ib_device *device = ia->ri_device;

1412 1413 1414
	if (rb->rg_direction == DMA_NONE)
		return false;

1415
	rb->rg_iov.addr = ib_dma_map_single(device,
C
Chuck Lever 已提交
1416
					    rdmab_data(rb),
1417 1418
					    rdmab_length(rb),
					    rb->rg_direction);
1419 1420
	if (ib_dma_mapping_error(device, rdmab_addr(rb))) {
		trace_xprtrdma_dma_maperr(rdmab_addr(rb));
1421
		return false;
1422
	}
1423

1424
	rb->rg_device = device;
1425 1426 1427 1428 1429 1430 1431
	rb->rg_iov.lkey = ia->ri_pd->local_dma_lkey;
	return true;
}

static void
rpcrdma_dma_unmap_regbuf(struct rpcrdma_regbuf *rb)
{
1432 1433 1434
	if (!rb)
		return;

1435 1436 1437 1438 1439 1440
	if (!rpcrdma_regbuf_is_mapped(rb))
		return;

	ib_dma_unmap_single(rb->rg_device, rdmab_addr(rb),
			    rdmab_length(rb), rb->rg_direction);
	rb->rg_device = NULL;
1441 1442 1443 1444 1445 1446 1447
}

/**
 * rpcrdma_free_regbuf - deregister and free registered buffer
 * @rb: regbuf to be deregistered and freed
 */
void
1448
rpcrdma_free_regbuf(struct rpcrdma_regbuf *rb)
1449
{
1450
	rpcrdma_dma_unmap_regbuf(rb);
C
Chuck Lever 已提交
1451 1452
	if (rb)
		kfree(rb->rg_data);
1453
	kfree(rb);
1454 1455
}

1456 1457 1458 1459 1460
/**
 * rpcrdma_ep_post - Post WRs to a transport's Send Queue
 * @ia: transport's device information
 * @ep: transport's RDMA endpoint information
 * @req: rpcrdma_req containing the Send WR to post
1461
 *
1462 1463
 * Returns 0 if the post was successful, otherwise -ENOTCONN
 * is returned.
1464 1465 1466 1467 1468 1469
 */
int
rpcrdma_ep_post(struct rpcrdma_ia *ia,
		struct rpcrdma_ep *ep,
		struct rpcrdma_req *req)
{
1470
	struct ib_send_wr *send_wr = &req->rl_sendctx->sc_wr;
1471
	int rc;
1472

1473 1474
	if (!ep->rep_send_count ||
	    test_bit(RPCRDMA_REQ_F_TX_RESOURCES, &req->rl_flags)) {
1475 1476 1477 1478 1479 1480
		send_wr->send_flags |= IB_SEND_SIGNALED;
		ep->rep_send_count = ep->rep_send_batch;
	} else {
		send_wr->send_flags &= ~IB_SEND_SIGNALED;
		--ep->rep_send_count;
	}
1481

1482
	rc = frwr_send(ia, req);
1483
	trace_xprtrdma_post_send(req, rc);
1484
	if (rc)
1485
		return -ENOTCONN;
1486
	return 0;
1487 1488
}

1489
static void
1490
rpcrdma_post_recvs(struct rpcrdma_xprt *r_xprt, bool temp)
1491
{
1492
	struct rpcrdma_buffer *buf = &r_xprt->rx_buf;
1493
	struct rpcrdma_ep *ep = &r_xprt->rx_ep;
1494 1495
	struct ib_recv_wr *wr, *bad_wr;
	int needed, count, rc;
1496

1497 1498
	rc = 0;
	count = 0;
1499
	needed = buf->rb_credits + (buf->rb_bc_srv_max_requests << 1);
1500
	if (ep->rep_receive_count > needed)
1501
		goto out;
1502
	needed -= ep->rep_receive_count;
1503 1504
	if (!temp)
		needed += RPCRDMA_MAX_RECV_BATCH;
1505

1506 1507 1508 1509 1510
	count = 0;
	wr = NULL;
	while (needed) {
		struct rpcrdma_regbuf *rb;
		struct rpcrdma_rep *rep;
1511

1512 1513 1514 1515 1516 1517 1518
		spin_lock(&buf->rb_lock);
		rep = list_first_entry_or_null(&buf->rb_recv_bufs,
					       struct rpcrdma_rep, rr_list);
		if (likely(rep))
			list_del(&rep->rr_list);
		spin_unlock(&buf->rb_lock);
		if (!rep) {
1519
			if (!rpcrdma_rep_create(r_xprt, temp))
1520 1521 1522
				break;
			continue;
		}
1523

1524 1525 1526 1527 1528 1529 1530
		rb = rep->rr_rdmabuf;
		if (!rpcrdma_regbuf_is_mapped(rb)) {
			if (!__rpcrdma_dma_map_regbuf(&r_xprt->rx_ia, rb)) {
				rpcrdma_recv_buffer_put(rep);
				break;
			}
		}
1531

1532 1533 1534 1535 1536 1537 1538
		trace_xprtrdma_post_recv(rep->rr_recv_wr.wr_cqe);
		rep->rr_recv_wr.next = wr;
		wr = &rep->rr_recv_wr;
		++count;
		--needed;
	}
	if (!count)
1539
		goto out;
1540

1541 1542
	rc = ib_post_recv(r_xprt->rx_ia.ri_id->qp, wr,
			  (const struct ib_recv_wr **)&bad_wr);
1543 1544 1545 1546 1547 1548 1549 1550 1551
	if (rc) {
		for (wr = bad_wr; wr; wr = wr->next) {
			struct rpcrdma_rep *rep;

			rep = container_of(wr, struct rpcrdma_rep, rr_recv_wr);
			rpcrdma_recv_buffer_put(rep);
			--count;
		}
	}
1552
	ep->rep_receive_count += count;
1553
out:
1554
	trace_xprtrdma_post_recvs(r_xprt, count, rc);
1555
}