linux/net/sunrpc/xprtrdma/svc_rdma_transport.c
<<
>>
Prefs
   1/*
   2 * Copyright (c) 2005-2007 Network Appliance, Inc. All rights reserved.
   3 *
   4 * This software is available to you under a choice of one of two
   5 * licenses.  You may choose to be licensed under the terms of the GNU
   6 * General Public License (GPL) Version 2, available from the file
   7 * COPYING in the main directory of this source tree, or the BSD-type
   8 * license below:
   9 *
  10 * Redistribution and use in source and binary forms, with or without
  11 * modification, are permitted provided that the following conditions
  12 * are met:
  13 *
  14 *      Redistributions of source code must retain the above copyright
  15 *      notice, this list of conditions and the following disclaimer.
  16 *
  17 *      Redistributions in binary form must reproduce the above
  18 *      copyright notice, this list of conditions and the following
  19 *      disclaimer in the documentation and/or other materials provided
  20 *      with the distribution.
  21 *
  22 *      Neither the name of the Network Appliance, Inc. nor the names of
  23 *      its contributors may be used to endorse or promote products
  24 *      derived from this software without specific prior written
  25 *      permission.
  26 *
  27 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  28 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  29 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  30 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  31 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  32 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  33 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  34 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  35 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  36 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  37 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  38 *
  39 * Author: Tom Tucker <tom@opengridcomputing.com>
  40 */
  41
  42#include <linux/sunrpc/svc_xprt.h>
  43#include <linux/sunrpc/debug.h>
  44#include <linux/sunrpc/rpc_rdma.h>
  45#include <linux/sched.h>
  46#include <linux/slab.h>
  47#include <linux/spinlock.h>
  48#include <rdma/ib_verbs.h>
  49#include <rdma/rdma_cm.h>
  50#include <linux/sunrpc/svc_rdma.h>
  51
  52#define RPCDBG_FACILITY RPCDBG_SVCXPRT
  53
  54static struct svc_xprt *svc_rdma_create(struct svc_serv *serv,
  55                                        struct sockaddr *sa, int salen,
  56                                        int flags);
  57static struct svc_xprt *svc_rdma_accept(struct svc_xprt *xprt);
  58static void svc_rdma_release_rqst(struct svc_rqst *);
  59static void dto_tasklet_func(unsigned long data);
  60static void svc_rdma_detach(struct svc_xprt *xprt);
  61static void svc_rdma_free(struct svc_xprt *xprt);
  62static int svc_rdma_has_wspace(struct svc_xprt *xprt);
  63static void rq_cq_reap(struct svcxprt_rdma *xprt);
  64static void sq_cq_reap(struct svcxprt_rdma *xprt);
  65
  66static DECLARE_TASKLET(dto_tasklet, dto_tasklet_func, 0UL);
  67static DEFINE_SPINLOCK(dto_lock);
  68static LIST_HEAD(dto_xprt_q);
  69
  70static struct svc_xprt_ops svc_rdma_ops = {
  71        .xpo_create = svc_rdma_create,
  72        .xpo_recvfrom = svc_rdma_recvfrom,
  73        .xpo_sendto = svc_rdma_sendto,
  74        .xpo_release_rqst = svc_rdma_release_rqst,
  75        .xpo_detach = svc_rdma_detach,
  76        .xpo_free = svc_rdma_free,
  77        .xpo_prep_reply_hdr = svc_rdma_prep_reply_hdr,
  78        .xpo_has_wspace = svc_rdma_has_wspace,
  79        .xpo_accept = svc_rdma_accept,
  80};
  81
  82struct svc_xprt_class svc_rdma_class = {
  83        .xcl_name = "rdma",
  84        .xcl_owner = THIS_MODULE,
  85        .xcl_ops = &svc_rdma_ops,
  86        .xcl_max_payload = RPCSVC_MAXPAYLOAD_TCP,
  87};
  88
  89/* WR context cache. Created in svc_rdma.c  */
  90extern struct kmem_cache *svc_rdma_ctxt_cachep;
  91
  92struct svc_rdma_op_ctxt *svc_rdma_get_context(struct svcxprt_rdma *xprt)
  93{
  94        struct svc_rdma_op_ctxt *ctxt;
  95
  96        while (1) {
  97                ctxt = kmem_cache_alloc(svc_rdma_ctxt_cachep, GFP_KERNEL);
  98                if (ctxt)
  99                        break;
 100                schedule_timeout_uninterruptible(msecs_to_jiffies(500));
 101        }
 102        ctxt->xprt = xprt;
 103        INIT_LIST_HEAD(&ctxt->dto_q);
 104        ctxt->count = 0;
 105        ctxt->frmr = NULL;
 106        atomic_inc(&xprt->sc_ctxt_used);
 107        return ctxt;
 108}
 109
 110void svc_rdma_unmap_dma(struct svc_rdma_op_ctxt *ctxt)
 111{
 112        struct svcxprt_rdma *xprt = ctxt->xprt;
 113        int i;
 114        for (i = 0; i < ctxt->count && ctxt->sge[i].length; i++) {
 115                /*
 116                 * Unmap the DMA addr in the SGE if the lkey matches
 117                 * the sc_dma_lkey, otherwise, ignore it since it is
 118                 * an FRMR lkey and will be unmapped later when the
 119                 * last WR that uses it completes.
 120                 */
 121                if (ctxt->sge[i].lkey == xprt->sc_dma_lkey) {
 122                        atomic_dec(&xprt->sc_dma_used);
 123                        ib_dma_unmap_single(xprt->sc_cm_id->device,
 124                                            ctxt->sge[i].addr,
 125                                            ctxt->sge[i].length,
 126                                            ctxt->direction);
 127                }
 128        }
 129}
 130
 131void svc_rdma_put_context(struct svc_rdma_op_ctxt *ctxt, int free_pages)
 132{
 133        struct svcxprt_rdma *xprt;
 134        int i;
 135
 136        BUG_ON(!ctxt);
 137        xprt = ctxt->xprt;
 138        if (free_pages)
 139                for (i = 0; i < ctxt->count; i++)
 140                        put_page(ctxt->pages[i]);
 141
 142        kmem_cache_free(svc_rdma_ctxt_cachep, ctxt);
 143        atomic_dec(&xprt->sc_ctxt_used);
 144}
 145
 146/* Temporary NFS request map cache. Created in svc_rdma.c  */
 147extern struct kmem_cache *svc_rdma_map_cachep;
 148
 149/*
 150 * Temporary NFS req mappings are shared across all transport
 151 * instances. These are short lived and should be bounded by the number
 152 * of concurrent server threads * depth of the SQ.
 153 */
 154struct svc_rdma_req_map *svc_rdma_get_req_map(void)
 155{
 156        struct svc_rdma_req_map *map;
 157        while (1) {
 158                map = kmem_cache_alloc(svc_rdma_map_cachep, GFP_KERNEL);
 159                if (map)
 160                        break;
 161                schedule_timeout_uninterruptible(msecs_to_jiffies(500));
 162        }
 163        map->count = 0;
 164        map->frmr = NULL;
 165        return map;
 166}
 167
 168void svc_rdma_put_req_map(struct svc_rdma_req_map *map)
 169{
 170        kmem_cache_free(svc_rdma_map_cachep, map);
 171}
 172
 173/* ib_cq event handler */
 174static void cq_event_handler(struct ib_event *event, void *context)
 175{
 176        struct svc_xprt *xprt = context;
 177        dprintk("svcrdma: received CQ event id=%d, context=%p\n",
 178                event->event, context);
 179        set_bit(XPT_CLOSE, &xprt->xpt_flags);
 180}
 181
 182/* QP event handler */
 183static void qp_event_handler(struct ib_event *event, void *context)
 184{
 185        struct svc_xprt *xprt = context;
 186
 187        switch (event->event) {
 188        /* These are considered benign events */
 189        case IB_EVENT_PATH_MIG:
 190        case IB_EVENT_COMM_EST:
 191        case IB_EVENT_SQ_DRAINED:
 192        case IB_EVENT_QP_LAST_WQE_REACHED:
 193                dprintk("svcrdma: QP event %d received for QP=%p\n",
 194                        event->event, event->element.qp);
 195                break;
 196        /* These are considered fatal events */
 197        case IB_EVENT_PATH_MIG_ERR:
 198        case IB_EVENT_QP_FATAL:
 199        case IB_EVENT_QP_REQ_ERR:
 200        case IB_EVENT_QP_ACCESS_ERR:
 201        case IB_EVENT_DEVICE_FATAL:
 202        default:
 203                dprintk("svcrdma: QP ERROR event %d received for QP=%p, "
 204                        "closing transport\n",
 205                        event->event, event->element.qp);
 206                set_bit(XPT_CLOSE, &xprt->xpt_flags);
 207                break;
 208        }
 209}
 210
 211/*
 212 * Data Transfer Operation Tasklet
 213 *
 214 * Walks a list of transports with I/O pending, removing entries as
 215 * they are added to the server's I/O pending list. Two bits indicate
 216 * if SQ, RQ, or both have I/O pending. The dto_lock is an irqsave
 217 * spinlock that serializes access to the transport list with the RQ
 218 * and SQ interrupt handlers.
 219 */
 220static void dto_tasklet_func(unsigned long data)
 221{
 222        struct svcxprt_rdma *xprt;
 223        unsigned long flags;
 224
 225        spin_lock_irqsave(&dto_lock, flags);
 226        while (!list_empty(&dto_xprt_q)) {
 227                xprt = list_entry(dto_xprt_q.next,
 228                                  struct svcxprt_rdma, sc_dto_q);
 229                list_del_init(&xprt->sc_dto_q);
 230                spin_unlock_irqrestore(&dto_lock, flags);
 231
 232                rq_cq_reap(xprt);
 233                sq_cq_reap(xprt);
 234
 235                svc_xprt_put(&xprt->sc_xprt);
 236                spin_lock_irqsave(&dto_lock, flags);
 237        }
 238        spin_unlock_irqrestore(&dto_lock, flags);
 239}
 240
 241/*
 242 * Receive Queue Completion Handler
 243 *
 244 * Since an RQ completion handler is called on interrupt context, we
 245 * need to defer the handling of the I/O to a tasklet
 246 */
 247static void rq_comp_handler(struct ib_cq *cq, void *cq_context)
 248{
 249        struct svcxprt_rdma *xprt = cq_context;
 250        unsigned long flags;
 251
 252        /* Guard against unconditional flush call for destroyed QP */
 253        if (atomic_read(&xprt->sc_xprt.xpt_ref.refcount)==0)
 254                return;
 255
 256        /*
 257         * Set the bit regardless of whether or not it's on the list
 258         * because it may be on the list already due to an SQ
 259         * completion.
 260         */
 261        set_bit(RDMAXPRT_RQ_PENDING, &xprt->sc_flags);
 262
 263        /*
 264         * If this transport is not already on the DTO transport queue,
 265         * add it
 266         */
 267        spin_lock_irqsave(&dto_lock, flags);
 268        if (list_empty(&xprt->sc_dto_q)) {
 269                svc_xprt_get(&xprt->sc_xprt);
 270                list_add_tail(&xprt->sc_dto_q, &dto_xprt_q);
 271        }
 272        spin_unlock_irqrestore(&dto_lock, flags);
 273
 274        /* Tasklet does all the work to avoid irqsave locks. */
 275        tasklet_schedule(&dto_tasklet);
 276}
 277
 278/*
 279 * rq_cq_reap - Process the RQ CQ.
 280 *
 281 * Take all completing WC off the CQE and enqueue the associated DTO
 282 * context on the dto_q for the transport.
 283 *
 284 * Note that caller must hold a transport reference.
 285 */
 286static void rq_cq_reap(struct svcxprt_rdma *xprt)
 287{
 288        int ret;
 289        struct ib_wc wc;
 290        struct svc_rdma_op_ctxt *ctxt = NULL;
 291
 292        if (!test_and_clear_bit(RDMAXPRT_RQ_PENDING, &xprt->sc_flags))
 293                return;
 294
 295        ib_req_notify_cq(xprt->sc_rq_cq, IB_CQ_NEXT_COMP);
 296        atomic_inc(&rdma_stat_rq_poll);
 297
 298        while ((ret = ib_poll_cq(xprt->sc_rq_cq, 1, &wc)) > 0) {
 299                ctxt = (struct svc_rdma_op_ctxt *)(unsigned long)wc.wr_id;
 300                ctxt->wc_status = wc.status;
 301                ctxt->byte_len = wc.byte_len;
 302                svc_rdma_unmap_dma(ctxt);
 303                if (wc.status != IB_WC_SUCCESS) {
 304                        /* Close the transport */
 305                        dprintk("svcrdma: transport closing putting ctxt %p\n", ctxt);
 306                        set_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags);
 307                        svc_rdma_put_context(ctxt, 1);
 308                        svc_xprt_put(&xprt->sc_xprt);
 309                        continue;
 310                }
 311                spin_lock_bh(&xprt->sc_rq_dto_lock);
 312                list_add_tail(&ctxt->dto_q, &xprt->sc_rq_dto_q);
 313                spin_unlock_bh(&xprt->sc_rq_dto_lock);
 314                svc_xprt_put(&xprt->sc_xprt);
 315        }
 316
 317        if (ctxt)
 318                atomic_inc(&rdma_stat_rq_prod);
 319
 320        set_bit(XPT_DATA, &xprt->sc_xprt.xpt_flags);
 321        /*
 322         * If data arrived before established event,
 323         * don't enqueue. This defers RPC I/O until the
 324         * RDMA connection is complete.
 325         */
 326        if (!test_bit(RDMAXPRT_CONN_PENDING, &xprt->sc_flags))
 327                svc_xprt_enqueue(&xprt->sc_xprt);
 328}
 329
 330/*
 331 * Processs a completion context
 332 */
 333static void process_context(struct svcxprt_rdma *xprt,
 334                            struct svc_rdma_op_ctxt *ctxt)
 335{
 336        svc_rdma_unmap_dma(ctxt);
 337
 338        switch (ctxt->wr_op) {
 339        case IB_WR_SEND:
 340                if (test_bit(RDMACTXT_F_FAST_UNREG, &ctxt->flags))
 341                        svc_rdma_put_frmr(xprt, ctxt->frmr);
 342                svc_rdma_put_context(ctxt, 1);
 343                break;
 344
 345        case IB_WR_RDMA_WRITE:
 346                svc_rdma_put_context(ctxt, 0);
 347                break;
 348
 349        case IB_WR_RDMA_READ:
 350        case IB_WR_RDMA_READ_WITH_INV:
 351                if (test_bit(RDMACTXT_F_LAST_CTXT, &ctxt->flags)) {
 352                        struct svc_rdma_op_ctxt *read_hdr = ctxt->read_hdr;
 353                        BUG_ON(!read_hdr);
 354                        if (test_bit(RDMACTXT_F_FAST_UNREG, &ctxt->flags))
 355                                svc_rdma_put_frmr(xprt, ctxt->frmr);
 356                        spin_lock_bh(&xprt->sc_rq_dto_lock);
 357                        set_bit(XPT_DATA, &xprt->sc_xprt.xpt_flags);
 358                        list_add_tail(&read_hdr->dto_q,
 359                                      &xprt->sc_read_complete_q);
 360                        spin_unlock_bh(&xprt->sc_rq_dto_lock);
 361                        svc_xprt_enqueue(&xprt->sc_xprt);
 362                }
 363                svc_rdma_put_context(ctxt, 0);
 364                break;
 365
 366        default:
 367                printk(KERN_ERR "svcrdma: unexpected completion type, "
 368                       "opcode=%d\n",
 369                       ctxt->wr_op);
 370                break;
 371        }
 372}
 373
 374/*
 375 * Send Queue Completion Handler - potentially called on interrupt context.
 376 *
 377 * Note that caller must hold a transport reference.
 378 */
 379static void sq_cq_reap(struct svcxprt_rdma *xprt)
 380{
 381        struct svc_rdma_op_ctxt *ctxt = NULL;
 382        struct ib_wc wc;
 383        struct ib_cq *cq = xprt->sc_sq_cq;
 384        int ret;
 385
 386        if (!test_and_clear_bit(RDMAXPRT_SQ_PENDING, &xprt->sc_flags))
 387                return;
 388
 389        ib_req_notify_cq(xprt->sc_sq_cq, IB_CQ_NEXT_COMP);
 390        atomic_inc(&rdma_stat_sq_poll);
 391        while ((ret = ib_poll_cq(cq, 1, &wc)) > 0) {
 392                if (wc.status != IB_WC_SUCCESS)
 393                        /* Close the transport */
 394                        set_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags);
 395
 396                /* Decrement used SQ WR count */
 397                atomic_dec(&xprt->sc_sq_count);
 398                wake_up(&xprt->sc_send_wait);
 399
 400                ctxt = (struct svc_rdma_op_ctxt *)(unsigned long)wc.wr_id;
 401                if (ctxt)
 402                        process_context(xprt, ctxt);
 403
 404                svc_xprt_put(&xprt->sc_xprt);
 405        }
 406
 407        if (ctxt)
 408                atomic_inc(&rdma_stat_sq_prod);
 409}
 410
 411static void sq_comp_handler(struct ib_cq *cq, void *cq_context)
 412{
 413        struct svcxprt_rdma *xprt = cq_context;
 414        unsigned long flags;
 415
 416        /* Guard against unconditional flush call for destroyed QP */
 417        if (atomic_read(&xprt->sc_xprt.xpt_ref.refcount)==0)
 418                return;
 419
 420        /*
 421         * Set the bit regardless of whether or not it's on the list
 422         * because it may be on the list already due to an RQ
 423         * completion.
 424         */
 425        set_bit(RDMAXPRT_SQ_PENDING, &xprt->sc_flags);
 426
 427        /*
 428         * If this transport is not already on the DTO transport queue,
 429         * add it
 430         */
 431        spin_lock_irqsave(&dto_lock, flags);
 432        if (list_empty(&xprt->sc_dto_q)) {
 433                svc_xprt_get(&xprt->sc_xprt);
 434                list_add_tail(&xprt->sc_dto_q, &dto_xprt_q);
 435        }
 436        spin_unlock_irqrestore(&dto_lock, flags);
 437
 438        /* Tasklet does all the work to avoid irqsave locks. */
 439        tasklet_schedule(&dto_tasklet);
 440}
 441
 442static struct svcxprt_rdma *rdma_create_xprt(struct svc_serv *serv,
 443                                             int listener)
 444{
 445        struct svcxprt_rdma *cma_xprt = kzalloc(sizeof *cma_xprt, GFP_KERNEL);
 446
 447        if (!cma_xprt)
 448                return NULL;
 449        svc_xprt_init(&svc_rdma_class, &cma_xprt->sc_xprt, serv);
 450        INIT_LIST_HEAD(&cma_xprt->sc_accept_q);
 451        INIT_LIST_HEAD(&cma_xprt->sc_dto_q);
 452        INIT_LIST_HEAD(&cma_xprt->sc_rq_dto_q);
 453        INIT_LIST_HEAD(&cma_xprt->sc_read_complete_q);
 454        INIT_LIST_HEAD(&cma_xprt->sc_frmr_q);
 455        init_waitqueue_head(&cma_xprt->sc_send_wait);
 456
 457        spin_lock_init(&cma_xprt->sc_lock);
 458        spin_lock_init(&cma_xprt->sc_rq_dto_lock);
 459        spin_lock_init(&cma_xprt->sc_frmr_q_lock);
 460
 461        cma_xprt->sc_ord = svcrdma_ord;
 462
 463        cma_xprt->sc_max_req_size = svcrdma_max_req_size;
 464        cma_xprt->sc_max_requests = svcrdma_max_requests;
 465        cma_xprt->sc_sq_depth = svcrdma_max_requests * RPCRDMA_SQ_DEPTH_MULT;
 466        atomic_set(&cma_xprt->sc_sq_count, 0);
 467        atomic_set(&cma_xprt->sc_ctxt_used, 0);
 468
 469        if (listener)
 470                set_bit(XPT_LISTENER, &cma_xprt->sc_xprt.xpt_flags);
 471
 472        return cma_xprt;
 473}
 474
 475struct page *svc_rdma_get_page(void)
 476{
 477        struct page *page;
 478
 479        while ((page = alloc_page(GFP_KERNEL)) == NULL) {
 480                /* If we can't get memory, wait a bit and try again */
 481                printk(KERN_INFO "svcrdma: out of memory...retrying in 1000 "
 482                       "jiffies.\n");
 483                schedule_timeout_uninterruptible(msecs_to_jiffies(1000));
 484        }
 485        return page;
 486}
 487
 488int svc_rdma_post_recv(struct svcxprt_rdma *xprt)
 489{
 490        struct ib_recv_wr recv_wr, *bad_recv_wr;
 491        struct svc_rdma_op_ctxt *ctxt;
 492        struct page *page;
 493        dma_addr_t pa;
 494        int sge_no;
 495        int buflen;
 496        int ret;
 497
 498        ctxt = svc_rdma_get_context(xprt);
 499        buflen = 0;
 500        ctxt->direction = DMA_FROM_DEVICE;
 501        for (sge_no = 0; buflen < xprt->sc_max_req_size; sge_no++) {
 502                BUG_ON(sge_no >= xprt->sc_max_sge);
 503                page = svc_rdma_get_page();
 504                ctxt->pages[sge_no] = page;
 505                pa = ib_dma_map_single(xprt->sc_cm_id->device,
 506                                     page_address(page), PAGE_SIZE,
 507                                     DMA_FROM_DEVICE);
 508                if (ib_dma_mapping_error(xprt->sc_cm_id->device, pa))
 509                        goto err_put_ctxt;
 510                atomic_inc(&xprt->sc_dma_used);
 511                ctxt->sge[sge_no].addr = pa;
 512                ctxt->sge[sge_no].length = PAGE_SIZE;
 513                ctxt->sge[sge_no].lkey = xprt->sc_dma_lkey;
 514                buflen += PAGE_SIZE;
 515        }
 516        ctxt->count = sge_no;
 517        recv_wr.next = NULL;
 518        recv_wr.sg_list = &ctxt->sge[0];
 519        recv_wr.num_sge = ctxt->count;
 520        recv_wr.wr_id = (u64)(unsigned long)ctxt;
 521
 522        svc_xprt_get(&xprt->sc_xprt);
 523        ret = ib_post_recv(xprt->sc_qp, &recv_wr, &bad_recv_wr);
 524        if (ret) {
 525                svc_rdma_unmap_dma(ctxt);
 526                svc_rdma_put_context(ctxt, 1);
 527                svc_xprt_put(&xprt->sc_xprt);
 528        }
 529        return ret;
 530
 531 err_put_ctxt:
 532        svc_rdma_put_context(ctxt, 1);
 533        return -ENOMEM;
 534}
 535
 536/*
 537 * This function handles the CONNECT_REQUEST event on a listening
 538 * endpoint. It is passed the cma_id for the _new_ connection. The context in
 539 * this cma_id is inherited from the listening cma_id and is the svc_xprt
 540 * structure for the listening endpoint.
 541 *
 542 * This function creates a new xprt for the new connection and enqueues it on
 543 * the accept queue for the listent xprt. When the listen thread is kicked, it
 544 * will call the recvfrom method on the listen xprt which will accept the new
 545 * connection.
 546 */
 547static void handle_connect_req(struct rdma_cm_id *new_cma_id, size_t client_ird)
 548{
 549        struct svcxprt_rdma *listen_xprt = new_cma_id->context;
 550        struct svcxprt_rdma *newxprt;
 551        struct sockaddr *sa;
 552
 553        /* Create a new transport */
 554        newxprt = rdma_create_xprt(listen_xprt->sc_xprt.xpt_server, 0);
 555        if (!newxprt) {
 556                dprintk("svcrdma: failed to create new transport\n");
 557                return;
 558        }
 559        newxprt->sc_cm_id = new_cma_id;
 560        new_cma_id->context = newxprt;
 561        dprintk("svcrdma: Creating newxprt=%p, cm_id=%p, listenxprt=%p\n",
 562                newxprt, newxprt->sc_cm_id, listen_xprt);
 563
 564        /* Save client advertised inbound read limit for use later in accept. */
 565        newxprt->sc_ord = client_ird;
 566
 567        /* Set the local and remote addresses in the transport */
 568        sa = (struct sockaddr *)&newxprt->sc_cm_id->route.addr.dst_addr;
 569        svc_xprt_set_remote(&newxprt->sc_xprt, sa, svc_addr_len(sa));
 570        sa = (struct sockaddr *)&newxprt->sc_cm_id->route.addr.src_addr;
 571        svc_xprt_set_local(&newxprt->sc_xprt, sa, svc_addr_len(sa));
 572
 573        /*
 574         * Enqueue the new transport on the accept queue of the listening
 575         * transport
 576         */
 577        spin_lock_bh(&listen_xprt->sc_lock);
 578        list_add_tail(&newxprt->sc_accept_q, &listen_xprt->sc_accept_q);
 579        spin_unlock_bh(&listen_xprt->sc_lock);
 580
 581        /*
 582         * Can't use svc_xprt_received here because we are not on a
 583         * rqstp thread
 584        */
 585        set_bit(XPT_CONN, &listen_xprt->sc_xprt.xpt_flags);
 586        svc_xprt_enqueue(&listen_xprt->sc_xprt);
 587}
 588
 589/*
 590 * Handles events generated on the listening endpoint. These events will be
 591 * either be incoming connect requests or adapter removal  events.
 592 */
 593static int rdma_listen_handler(struct rdma_cm_id *cma_id,
 594                               struct rdma_cm_event *event)
 595{
 596        struct svcxprt_rdma *xprt = cma_id->context;
 597        int ret = 0;
 598
 599        switch (event->event) {
 600        case RDMA_CM_EVENT_CONNECT_REQUEST:
 601                dprintk("svcrdma: Connect request on cma_id=%p, xprt = %p, "
 602                        "event=%d\n", cma_id, cma_id->context, event->event);
 603                handle_connect_req(cma_id,
 604                                   event->param.conn.initiator_depth);
 605                break;
 606
 607        case RDMA_CM_EVENT_ESTABLISHED:
 608                /* Accept complete */
 609                dprintk("svcrdma: Connection completed on LISTEN xprt=%p, "
 610                        "cm_id=%p\n", xprt, cma_id);
 611                break;
 612
 613        case RDMA_CM_EVENT_DEVICE_REMOVAL:
 614                dprintk("svcrdma: Device removal xprt=%p, cm_id=%p\n",
 615                        xprt, cma_id);
 616                if (xprt)
 617                        set_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags);
 618                break;
 619
 620        default:
 621                dprintk("svcrdma: Unexpected event on listening endpoint %p, "
 622                        "event=%d\n", cma_id, event->event);
 623                break;
 624        }
 625
 626        return ret;
 627}
 628
 629static int rdma_cma_handler(struct rdma_cm_id *cma_id,
 630                            struct rdma_cm_event *event)
 631{
 632        struct svc_xprt *xprt = cma_id->context;
 633        struct svcxprt_rdma *rdma =
 634                container_of(xprt, struct svcxprt_rdma, sc_xprt);
 635        switch (event->event) {
 636        case RDMA_CM_EVENT_ESTABLISHED:
 637                /* Accept complete */
 638                svc_xprt_get(xprt);
 639                dprintk("svcrdma: Connection completed on DTO xprt=%p, "
 640                        "cm_id=%p\n", xprt, cma_id);
 641                clear_bit(RDMAXPRT_CONN_PENDING, &rdma->sc_flags);
 642                svc_xprt_enqueue(xprt);
 643                break;
 644        case RDMA_CM_EVENT_DISCONNECTED:
 645                dprintk("svcrdma: Disconnect on DTO xprt=%p, cm_id=%p\n",
 646                        xprt, cma_id);
 647                if (xprt) {
 648                        set_bit(XPT_CLOSE, &xprt->xpt_flags);
 649                        svc_xprt_enqueue(xprt);
 650                        svc_xprt_put(xprt);
 651                }
 652                break;
 653        case RDMA_CM_EVENT_DEVICE_REMOVAL:
 654                dprintk("svcrdma: Device removal cma_id=%p, xprt = %p, "
 655                        "event=%d\n", cma_id, xprt, event->event);
 656                if (xprt) {
 657                        set_bit(XPT_CLOSE, &xprt->xpt_flags);
 658                        svc_xprt_enqueue(xprt);
 659                }
 660                break;
 661        default:
 662                dprintk("svcrdma: Unexpected event on DTO endpoint %p, "
 663                        "event=%d\n", cma_id, event->event);
 664                break;
 665        }
 666        return 0;
 667}
 668
 669/*
 670 * Create a listening RDMA service endpoint.
 671 */
 672static struct svc_xprt *svc_rdma_create(struct svc_serv *serv,
 673                                        struct sockaddr *sa, int salen,
 674                                        int flags)
 675{
 676        struct rdma_cm_id *listen_id;
 677        struct svcxprt_rdma *cma_xprt;
 678        struct svc_xprt *xprt;
 679        int ret;
 680
 681        dprintk("svcrdma: Creating RDMA socket\n");
 682        if (sa->sa_family != AF_INET) {
 683                dprintk("svcrdma: Address family %d is not supported.\n", sa->sa_family);
 684                return ERR_PTR(-EAFNOSUPPORT);
 685        }
 686        cma_xprt = rdma_create_xprt(serv, 1);
 687        if (!cma_xprt)
 688                return ERR_PTR(-ENOMEM);
 689        xprt = &cma_xprt->sc_xprt;
 690
 691        listen_id = rdma_create_id(rdma_listen_handler, cma_xprt, RDMA_PS_TCP);
 692        if (IS_ERR(listen_id)) {
 693                ret = PTR_ERR(listen_id);
 694                dprintk("svcrdma: rdma_create_id failed = %d\n", ret);
 695                goto err0;
 696        }
 697
 698        ret = rdma_bind_addr(listen_id, sa);
 699        if (ret) {
 700                dprintk("svcrdma: rdma_bind_addr failed = %d\n", ret);
 701                goto err1;
 702        }
 703        cma_xprt->sc_cm_id = listen_id;
 704
 705        ret = rdma_listen(listen_id, RPCRDMA_LISTEN_BACKLOG);
 706        if (ret) {
 707                dprintk("svcrdma: rdma_listen failed = %d\n", ret);
 708                goto err1;
 709        }
 710
 711        /*
 712         * We need to use the address from the cm_id in case the
 713         * caller specified 0 for the port number.
 714         */
 715        sa = (struct sockaddr *)&cma_xprt->sc_cm_id->route.addr.src_addr;
 716        svc_xprt_set_local(&cma_xprt->sc_xprt, sa, salen);
 717
 718        return &cma_xprt->sc_xprt;
 719
 720 err1:
 721        rdma_destroy_id(listen_id);
 722 err0:
 723        kfree(cma_xprt);
 724        return ERR_PTR(ret);
 725}
 726
 727static struct svc_rdma_fastreg_mr *rdma_alloc_frmr(struct svcxprt_rdma *xprt)
 728{
 729        struct ib_mr *mr;
 730        struct ib_fast_reg_page_list *pl;
 731        struct svc_rdma_fastreg_mr *frmr;
 732
 733        frmr = kmalloc(sizeof(*frmr), GFP_KERNEL);
 734        if (!frmr)
 735                goto err;
 736
 737        mr = ib_alloc_fast_reg_mr(xprt->sc_pd, RPCSVC_MAXPAGES);
 738        if (IS_ERR(mr))
 739                goto err_free_frmr;
 740
 741        pl = ib_alloc_fast_reg_page_list(xprt->sc_cm_id->device,
 742                                         RPCSVC_MAXPAGES);
 743        if (IS_ERR(pl))
 744                goto err_free_mr;
 745
 746        frmr->mr = mr;
 747        frmr->page_list = pl;
 748        INIT_LIST_HEAD(&frmr->frmr_list);
 749        return frmr;
 750
 751 err_free_mr:
 752        ib_dereg_mr(mr);
 753 err_free_frmr:
 754        kfree(frmr);
 755 err:
 756        return ERR_PTR(-ENOMEM);
 757}
 758
 759static void rdma_dealloc_frmr_q(struct svcxprt_rdma *xprt)
 760{
 761        struct svc_rdma_fastreg_mr *frmr;
 762
 763        while (!list_empty(&xprt->sc_frmr_q)) {
 764                frmr = list_entry(xprt->sc_frmr_q.next,
 765                                  struct svc_rdma_fastreg_mr, frmr_list);
 766                list_del_init(&frmr->frmr_list);
 767                ib_dereg_mr(frmr->mr);
 768                ib_free_fast_reg_page_list(frmr->page_list);
 769                kfree(frmr);
 770        }
 771}
 772
 773struct svc_rdma_fastreg_mr *svc_rdma_get_frmr(struct svcxprt_rdma *rdma)
 774{
 775        struct svc_rdma_fastreg_mr *frmr = NULL;
 776
 777        spin_lock_bh(&rdma->sc_frmr_q_lock);
 778        if (!list_empty(&rdma->sc_frmr_q)) {
 779                frmr = list_entry(rdma->sc_frmr_q.next,
 780                                  struct svc_rdma_fastreg_mr, frmr_list);
 781                list_del_init(&frmr->frmr_list);
 782                frmr->map_len = 0;
 783                frmr->page_list_len = 0;
 784        }
 785        spin_unlock_bh(&rdma->sc_frmr_q_lock);
 786        if (frmr)
 787                return frmr;
 788
 789        return rdma_alloc_frmr(rdma);
 790}
 791
 792static void frmr_unmap_dma(struct svcxprt_rdma *xprt,
 793                           struct svc_rdma_fastreg_mr *frmr)
 794{
 795        int page_no;
 796        for (page_no = 0; page_no < frmr->page_list_len; page_no++) {
 797                dma_addr_t addr = frmr->page_list->page_list[page_no];
 798                if (ib_dma_mapping_error(frmr->mr->device, addr))
 799                        continue;
 800                atomic_dec(&xprt->sc_dma_used);
 801                ib_dma_unmap_single(frmr->mr->device, addr, PAGE_SIZE,
 802                                    frmr->direction);
 803        }
 804}
 805
 806void svc_rdma_put_frmr(struct svcxprt_rdma *rdma,
 807                       struct svc_rdma_fastreg_mr *frmr)
 808{
 809        if (frmr) {
 810                frmr_unmap_dma(rdma, frmr);
 811                spin_lock_bh(&rdma->sc_frmr_q_lock);
 812                BUG_ON(!list_empty(&frmr->frmr_list));
 813                list_add(&frmr->frmr_list, &rdma->sc_frmr_q);
 814                spin_unlock_bh(&rdma->sc_frmr_q_lock);
 815        }
 816}
 817
 818/*
 819 * This is the xpo_recvfrom function for listening endpoints. Its
 820 * purpose is to accept incoming connections. The CMA callback handler
 821 * has already created a new transport and attached it to the new CMA
 822 * ID.
 823 *
 824 * There is a queue of pending connections hung on the listening
 825 * transport. This queue contains the new svc_xprt structure. This
 826 * function takes svc_xprt structures off the accept_q and completes
 827 * the connection.
 828 */
 829static struct svc_xprt *svc_rdma_accept(struct svc_xprt *xprt)
 830{
 831        struct svcxprt_rdma *listen_rdma;
 832        struct svcxprt_rdma *newxprt = NULL;
 833        struct rdma_conn_param conn_param;
 834        struct ib_qp_init_attr qp_attr;
 835        struct ib_device_attr devattr;
 836        int uninitialized_var(dma_mr_acc);
 837        int need_dma_mr;
 838        int ret;
 839        int i;
 840
 841        listen_rdma = container_of(xprt, struct svcxprt_rdma, sc_xprt);
 842        clear_bit(XPT_CONN, &xprt->xpt_flags);
 843        /* Get the next entry off the accept list */
 844        spin_lock_bh(&listen_rdma->sc_lock);
 845        if (!list_empty(&listen_rdma->sc_accept_q)) {
 846                newxprt = list_entry(listen_rdma->sc_accept_q.next,
 847                                     struct svcxprt_rdma, sc_accept_q);
 848                list_del_init(&newxprt->sc_accept_q);
 849        }
 850        if (!list_empty(&listen_rdma->sc_accept_q))
 851                set_bit(XPT_CONN, &listen_rdma->sc_xprt.xpt_flags);
 852        spin_unlock_bh(&listen_rdma->sc_lock);
 853        if (!newxprt)
 854                return NULL;
 855
 856        dprintk("svcrdma: newxprt from accept queue = %p, cm_id=%p\n",
 857                newxprt, newxprt->sc_cm_id);
 858
 859        ret = ib_query_device(newxprt->sc_cm_id->device, &devattr);
 860        if (ret) {
 861                dprintk("svcrdma: could not query device attributes on "
 862                        "device %p, rc=%d\n", newxprt->sc_cm_id->device, ret);
 863                goto errout;
 864        }
 865
 866        /* Qualify the transport resource defaults with the
 867         * capabilities of this particular device */
 868        newxprt->sc_max_sge = min((size_t)devattr.max_sge,
 869                                  (size_t)RPCSVC_MAXPAGES);
 870        newxprt->sc_max_requests = min((size_t)devattr.max_qp_wr,
 871                                   (size_t)svcrdma_max_requests);
 872        newxprt->sc_sq_depth = RPCRDMA_SQ_DEPTH_MULT * newxprt->sc_max_requests;
 873
 874        /*
 875         * Limit ORD based on client limit, local device limit, and
 876         * configured svcrdma limit.
 877         */
 878        newxprt->sc_ord = min_t(size_t, devattr.max_qp_rd_atom, newxprt->sc_ord);
 879        newxprt->sc_ord = min_t(size_t, svcrdma_ord, newxprt->sc_ord);
 880
 881        newxprt->sc_pd = ib_alloc_pd(newxprt->sc_cm_id->device);
 882        if (IS_ERR(newxprt->sc_pd)) {
 883                dprintk("svcrdma: error creating PD for connect request\n");
 884                goto errout;
 885        }
 886        newxprt->sc_sq_cq = ib_create_cq(newxprt->sc_cm_id->device,
 887                                         sq_comp_handler,
 888                                         cq_event_handler,
 889                                         newxprt,
 890                                         newxprt->sc_sq_depth,
 891                                         0);
 892        if (IS_ERR(newxprt->sc_sq_cq)) {
 893                dprintk("svcrdma: error creating SQ CQ for connect request\n");
 894                goto errout;
 895        }
 896        newxprt->sc_rq_cq = ib_create_cq(newxprt->sc_cm_id->device,
 897                                         rq_comp_handler,
 898                                         cq_event_handler,
 899                                         newxprt,
 900                                         newxprt->sc_max_requests,
 901                                         0);
 902        if (IS_ERR(newxprt->sc_rq_cq)) {
 903                dprintk("svcrdma: error creating RQ CQ for connect request\n");
 904                goto errout;
 905        }
 906
 907        memset(&qp_attr, 0, sizeof qp_attr);
 908        qp_attr.event_handler = qp_event_handler;
 909        qp_attr.qp_context = &newxprt->sc_xprt;
 910        qp_attr.cap.max_send_wr = newxprt->sc_sq_depth;
 911        qp_attr.cap.max_recv_wr = newxprt->sc_max_requests;
 912        qp_attr.cap.max_send_sge = newxprt->sc_max_sge;
 913        qp_attr.cap.max_recv_sge = newxprt->sc_max_sge;
 914        qp_attr.sq_sig_type = IB_SIGNAL_REQ_WR;
 915        qp_attr.qp_type = IB_QPT_RC;
 916        qp_attr.send_cq = newxprt->sc_sq_cq;
 917        qp_attr.recv_cq = newxprt->sc_rq_cq;
 918        dprintk("svcrdma: newxprt->sc_cm_id=%p, newxprt->sc_pd=%p\n"
 919                "    cm_id->device=%p, sc_pd->device=%p\n"
 920                "    cap.max_send_wr = %d\n"
 921                "    cap.max_recv_wr = %d\n"
 922                "    cap.max_send_sge = %d\n"
 923                "    cap.max_recv_sge = %d\n",
 924                newxprt->sc_cm_id, newxprt->sc_pd,
 925                newxprt->sc_cm_id->device, newxprt->sc_pd->device,
 926                qp_attr.cap.max_send_wr,
 927                qp_attr.cap.max_recv_wr,
 928                qp_attr.cap.max_send_sge,
 929                qp_attr.cap.max_recv_sge);
 930
 931        ret = rdma_create_qp(newxprt->sc_cm_id, newxprt->sc_pd, &qp_attr);
 932        if (ret) {
 933                /*
 934                 * XXX: This is a hack. We need a xx_request_qp interface
 935                 * that will adjust the qp_attr's with a best-effort
 936                 * number
 937                 */
 938                qp_attr.cap.max_send_sge -= 2;
 939                qp_attr.cap.max_recv_sge -= 2;
 940                ret = rdma_create_qp(newxprt->sc_cm_id, newxprt->sc_pd,
 941                                     &qp_attr);
 942                if (ret) {
 943                        dprintk("svcrdma: failed to create QP, ret=%d\n", ret);
 944                        goto errout;
 945                }
 946                newxprt->sc_max_sge = qp_attr.cap.max_send_sge;
 947                newxprt->sc_max_sge = qp_attr.cap.max_recv_sge;
 948                newxprt->sc_sq_depth = qp_attr.cap.max_send_wr;
 949                newxprt->sc_max_requests = qp_attr.cap.max_recv_wr;
 950        }
 951        newxprt->sc_qp = newxprt->sc_cm_id->qp;
 952
 953        /*
 954         * Use the most secure set of MR resources based on the
 955         * transport type and available memory management features in
 956         * the device. Here's the table implemented below:
 957         *
 958         *              Fast    Global  DMA     Remote WR
 959         *              Reg     LKEY    MR      Access
 960         *              Sup'd   Sup'd   Needed  Needed
 961         *
 962         * IWARP        N       N       Y       Y
 963         *              N       Y       Y       Y
 964         *              Y       N       Y       N
 965         *              Y       Y       N       -
 966         *
 967         * IB           N       N       Y       N
 968         *              N       Y       N       -
 969         *              Y       N       Y       N
 970         *              Y       Y       N       -
 971         *
 972         * NB:  iWARP requires remote write access for the data sink
 973         *      of an RDMA_READ. IB does not.
 974         */
 975        if (devattr.device_cap_flags & IB_DEVICE_MEM_MGT_EXTENSIONS) {
 976                newxprt->sc_frmr_pg_list_len =
 977                        devattr.max_fast_reg_page_list_len;
 978                newxprt->sc_dev_caps |= SVCRDMA_DEVCAP_FAST_REG;
 979        }
 980
 981        /*
 982         * Determine if a DMA MR is required and if so, what privs are required
 983         */
 984        switch (rdma_node_get_transport(newxprt->sc_cm_id->device->node_type)) {
 985        case RDMA_TRANSPORT_IWARP:
 986                newxprt->sc_dev_caps |= SVCRDMA_DEVCAP_READ_W_INV;
 987                if (!(newxprt->sc_dev_caps & SVCRDMA_DEVCAP_FAST_REG)) {
 988                        need_dma_mr = 1;
 989                        dma_mr_acc =
 990                                (IB_ACCESS_LOCAL_WRITE |
 991                                 IB_ACCESS_REMOTE_WRITE);
 992                } else if (!(devattr.device_cap_flags & IB_DEVICE_LOCAL_DMA_LKEY)) {
 993                        need_dma_mr = 1;
 994                        dma_mr_acc = IB_ACCESS_LOCAL_WRITE;
 995                } else
 996                        need_dma_mr = 0;
 997                break;
 998        case RDMA_TRANSPORT_IB:
 999                if (!(devattr.device_cap_flags & IB_DEVICE_LOCAL_DMA_LKEY)) {
1000                        need_dma_mr = 1;
1001                        dma_mr_acc = IB_ACCESS_LOCAL_WRITE;
1002                } else
1003                        need_dma_mr = 0;
1004                break;
1005        default:
1006                goto errout;
1007        }
1008
1009        /* Create the DMA MR if needed, otherwise, use the DMA LKEY */
1010        if (need_dma_mr) {
1011                /* Register all of physical memory */
1012                newxprt->sc_phys_mr =
1013                        ib_get_dma_mr(newxprt->sc_pd, dma_mr_acc);
1014                if (IS_ERR(newxprt->sc_phys_mr)) {
1015                        dprintk("svcrdma: Failed to create DMA MR ret=%d\n",
1016                                ret);
1017                        goto errout;
1018                }
1019                newxprt->sc_dma_lkey = newxprt->sc_phys_mr->lkey;
1020        } else
1021                newxprt->sc_dma_lkey =
1022                        newxprt->sc_cm_id->device->local_dma_lkey;
1023
1024        /* Post receive buffers */
1025        for (i = 0; i < newxprt->sc_max_requests; i++) {
1026                ret = svc_rdma_post_recv(newxprt);
1027                if (ret) {
1028                        dprintk("svcrdma: failure posting receive buffers\n");
1029                        goto errout;
1030                }
1031        }
1032
1033        /* Swap out the handler */
1034        newxprt->sc_cm_id->event_handler = rdma_cma_handler;
1035
1036        /*
1037         * Arm the CQs for the SQ and RQ before accepting so we can't
1038         * miss the first message
1039         */
1040        ib_req_notify_cq(newxprt->sc_sq_cq, IB_CQ_NEXT_COMP);
1041        ib_req_notify_cq(newxprt->sc_rq_cq, IB_CQ_NEXT_COMP);
1042
1043        /* Accept Connection */
1044        set_bit(RDMAXPRT_CONN_PENDING, &newxprt->sc_flags);
1045        memset(&conn_param, 0, sizeof conn_param);
1046        conn_param.responder_resources = 0;
1047        conn_param.initiator_depth = newxprt->sc_ord;
1048        ret = rdma_accept(newxprt->sc_cm_id, &conn_param);
1049        if (ret) {
1050                dprintk("svcrdma: failed to accept new connection, ret=%d\n",
1051                       ret);
1052                goto errout;
1053        }
1054
1055        dprintk("svcrdma: new connection %p accepted with the following "
1056                "attributes:\n"
1057                "    local_ip        : %pI4\n"
1058                "    local_port      : %d\n"
1059                "    remote_ip       : %pI4\n"
1060                "    remote_port     : %d\n"
1061                "    max_sge         : %d\n"
1062                "    sq_depth        : %d\n"
1063                "    max_requests    : %d\n"
1064                "    ord             : %d\n",
1065                newxprt,
1066                &((struct sockaddr_in *)&newxprt->sc_cm_id->
1067                         route.addr.src_addr)->sin_addr.s_addr,
1068                ntohs(((struct sockaddr_in *)&newxprt->sc_cm_id->
1069                       route.addr.src_addr)->sin_port),
1070                &((struct sockaddr_in *)&newxprt->sc_cm_id->
1071                         route.addr.dst_addr)->sin_addr.s_addr,
1072                ntohs(((struct sockaddr_in *)&newxprt->sc_cm_id->
1073                       route.addr.dst_addr)->sin_port),
1074                newxprt->sc_max_sge,
1075                newxprt->sc_sq_depth,
1076                newxprt->sc_max_requests,
1077                newxprt->sc_ord);
1078
1079        return &newxprt->sc_xprt;
1080
1081 errout:
1082        dprintk("svcrdma: failure accepting new connection rc=%d.\n", ret);
1083        /* Take a reference in case the DTO handler runs */
1084        svc_xprt_get(&newxprt->sc_xprt);
1085        if (newxprt->sc_qp && !IS_ERR(newxprt->sc_qp))
1086                ib_destroy_qp(newxprt->sc_qp);
1087        rdma_destroy_id(newxprt->sc_cm_id);
1088        /* This call to put will destroy the transport */
1089        svc_xprt_put(&newxprt->sc_xprt);
1090        return NULL;
1091}
1092
1093static void svc_rdma_release_rqst(struct svc_rqst *rqstp)
1094{
1095}
1096
1097/*
1098 * When connected, an svc_xprt has at least two references:
1099 *
1100 * - A reference held by the cm_id between the ESTABLISHED and
1101 *   DISCONNECTED events. If the remote peer disconnected first, this
1102 *   reference could be gone.
1103 *
1104 * - A reference held by the svc_recv code that called this function
1105 *   as part of close processing.
1106 *
1107 * At a minimum one references should still be held.
1108 */
1109static void svc_rdma_detach(struct svc_xprt *xprt)
1110{
1111        struct svcxprt_rdma *rdma =
1112                container_of(xprt, struct svcxprt_rdma, sc_xprt);
1113        dprintk("svc: svc_rdma_detach(%p)\n", xprt);
1114
1115        /* Disconnect and flush posted WQE */
1116        rdma_disconnect(rdma->sc_cm_id);
1117}
1118
1119static void __svc_rdma_free(struct work_struct *work)
1120{
1121        struct svcxprt_rdma *rdma =
1122                container_of(work, struct svcxprt_rdma, sc_work);
1123        dprintk("svcrdma: svc_rdma_free(%p)\n", rdma);
1124
1125        /* We should only be called from kref_put */
1126        BUG_ON(atomic_read(&rdma->sc_xprt.xpt_ref.refcount) != 0);
1127
1128        /*
1129         * Destroy queued, but not processed read completions. Note
1130         * that this cleanup has to be done before destroying the
1131         * cm_id because the device ptr is needed to unmap the dma in
1132         * svc_rdma_put_context.
1133         */
1134        while (!list_empty(&rdma->sc_read_complete_q)) {
1135                struct svc_rdma_op_ctxt *ctxt;
1136                ctxt = list_entry(rdma->sc_read_complete_q.next,
1137                                  struct svc_rdma_op_ctxt,
1138                                  dto_q);
1139                list_del_init(&ctxt->dto_q);
1140                svc_rdma_put_context(ctxt, 1);
1141        }
1142
1143        /* Destroy queued, but not processed recv completions */
1144        while (!list_empty(&rdma->sc_rq_dto_q)) {
1145                struct svc_rdma_op_ctxt *ctxt;
1146                ctxt = list_entry(rdma->sc_rq_dto_q.next,
1147                                  struct svc_rdma_op_ctxt,
1148                                  dto_q);
1149                list_del_init(&ctxt->dto_q);
1150                svc_rdma_put_context(ctxt, 1);
1151        }
1152
1153        /* Warn if we leaked a resource or under-referenced */
1154        WARN_ON(atomic_read(&rdma->sc_ctxt_used) != 0);
1155        WARN_ON(atomic_read(&rdma->sc_dma_used) != 0);
1156
1157        /* De-allocate fastreg mr */
1158        rdma_dealloc_frmr_q(rdma);
1159
1160        /* Destroy the QP if present (not a listener) */
1161        if (rdma->sc_qp && !IS_ERR(rdma->sc_qp))
1162                ib_destroy_qp(rdma->sc_qp);
1163
1164        if (rdma->sc_sq_cq && !IS_ERR(rdma->sc_sq_cq))
1165                ib_destroy_cq(rdma->sc_sq_cq);
1166
1167        if (rdma->sc_rq_cq && !IS_ERR(rdma->sc_rq_cq))
1168                ib_destroy_cq(rdma->sc_rq_cq);
1169
1170        if (rdma->sc_phys_mr && !IS_ERR(rdma->sc_phys_mr))
1171                ib_dereg_mr(rdma->sc_phys_mr);
1172
1173        if (rdma->sc_pd && !IS_ERR(rdma->sc_pd))
1174                ib_dealloc_pd(rdma->sc_pd);
1175
1176        /* Destroy the CM ID */
1177        rdma_destroy_id(rdma->sc_cm_id);
1178
1179        kfree(rdma);
1180}
1181
1182static void svc_rdma_free(struct svc_xprt *xprt)
1183{
1184        struct svcxprt_rdma *rdma =
1185                container_of(xprt, struct svcxprt_rdma, sc_xprt);
1186        INIT_WORK(&rdma->sc_work, __svc_rdma_free);
1187        schedule_work(&rdma->sc_work);
1188}
1189
1190static int svc_rdma_has_wspace(struct svc_xprt *xprt)
1191{
1192        struct svcxprt_rdma *rdma =
1193                container_of(xprt, struct svcxprt_rdma, sc_xprt);
1194
1195        /*
1196         * If there are fewer SQ WR available than required to send a
1197         * simple response, return false.
1198         */
1199        if ((rdma->sc_sq_depth - atomic_read(&rdma->sc_sq_count) < 3))
1200                return 0;
1201
1202        /*
1203         * ...or there are already waiters on the SQ,
1204         * return false.
1205         */
1206        if (waitqueue_active(&rdma->sc_send_wait))
1207                return 0;
1208
1209        /* Otherwise return true. */
1210        return 1;
1211}
1212
1213/*
1214 * Attempt to register the kvec representing the RPC memory with the
1215 * device.
1216 *
1217 * Returns:
1218 *  NULL : The device does not support fastreg or there were no more
1219 *         fastreg mr.
1220 *  frmr : The kvec register request was successfully posted.
1221 *    <0 : An error was encountered attempting to register the kvec.
1222 */
1223int svc_rdma_fastreg(struct svcxprt_rdma *xprt,
1224                     struct svc_rdma_fastreg_mr *frmr)
1225{
1226        struct ib_send_wr fastreg_wr;
1227        u8 key;
1228
1229        /* Bump the key */
1230        key = (u8)(frmr->mr->lkey & 0x000000FF);
1231        ib_update_fast_reg_key(frmr->mr, ++key);
1232
1233        /* Prepare FASTREG WR */
1234        memset(&fastreg_wr, 0, sizeof fastreg_wr);
1235        fastreg_wr.opcode = IB_WR_FAST_REG_MR;
1236        fastreg_wr.send_flags = IB_SEND_SIGNALED;
1237        fastreg_wr.wr.fast_reg.iova_start = (unsigned long)frmr->kva;
1238        fastreg_wr.wr.fast_reg.page_list = frmr->page_list;
1239        fastreg_wr.wr.fast_reg.page_list_len = frmr->page_list_len;
1240        fastreg_wr.wr.fast_reg.page_shift = PAGE_SHIFT;
1241        fastreg_wr.wr.fast_reg.length = frmr->map_len;
1242        fastreg_wr.wr.fast_reg.access_flags = frmr->access_flags;
1243        fastreg_wr.wr.fast_reg.rkey = frmr->mr->lkey;
1244        return svc_rdma_send(xprt, &fastreg_wr);
1245}
1246
1247int svc_rdma_send(struct svcxprt_rdma *xprt, struct ib_send_wr *wr)
1248{
1249        struct ib_send_wr *bad_wr, *n_wr;
1250        int wr_count;
1251        int i;
1252        int ret;
1253
1254        if (test_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags))
1255                return -ENOTCONN;
1256
1257        BUG_ON(wr->send_flags != IB_SEND_SIGNALED);
1258        wr_count = 1;
1259        for (n_wr = wr->next; n_wr; n_wr = n_wr->next)
1260                wr_count++;
1261
1262        /* If the SQ is full, wait until an SQ entry is available */
1263        while (1) {
1264                spin_lock_bh(&xprt->sc_lock);
1265                if (xprt->sc_sq_depth < atomic_read(&xprt->sc_sq_count) + wr_count) {
1266                        spin_unlock_bh(&xprt->sc_lock);
1267                        atomic_inc(&rdma_stat_sq_starve);
1268
1269                        /* See if we can opportunistically reap SQ WR to make room */
1270                        sq_cq_reap(xprt);
1271
1272                        /* Wait until SQ WR available if SQ still full */
1273                        wait_event(xprt->sc_send_wait,
1274                                   atomic_read(&xprt->sc_sq_count) <
1275                                   xprt->sc_sq_depth);
1276                        if (test_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags))
1277                                return 0;
1278                        continue;
1279                }
1280                /* Take a transport ref for each WR posted */
1281                for (i = 0; i < wr_count; i++)
1282                        svc_xprt_get(&xprt->sc_xprt);
1283
1284                /* Bump used SQ WR count and post */
1285                atomic_add(wr_count, &xprt->sc_sq_count);
1286                ret = ib_post_send(xprt->sc_qp, wr, &bad_wr);
1287                if (ret) {
1288                        set_bit(XPT_CLOSE, &xprt->sc_xprt.xpt_flags);
1289                        atomic_sub(wr_count, &xprt->sc_sq_count);
1290                        for (i = 0; i < wr_count; i ++)
1291                                svc_xprt_put(&xprt->sc_xprt);
1292                        dprintk("svcrdma: failed to post SQ WR rc=%d, "
1293                               "sc_sq_count=%d, sc_sq_depth=%d\n",
1294                               ret, atomic_read(&xprt->sc_sq_count),
1295                               xprt->sc_sq_depth);
1296                }
1297                spin_unlock_bh(&xprt->sc_lock);
1298                if (ret)
1299                        wake_up(&xprt->sc_send_wait);
1300                break;
1301        }
1302        return ret;
1303}
1304
1305void svc_rdma_send_error(struct svcxprt_rdma *xprt, struct rpcrdma_msg *rmsgp,
1306                         enum rpcrdma_errcode err)
1307{
1308        struct ib_send_wr err_wr;
1309        struct ib_sge sge;
1310        struct page *p;
1311        struct svc_rdma_op_ctxt *ctxt;
1312        u32 *va;
1313        int length;
1314        int ret;
1315
1316        p = svc_rdma_get_page();
1317        va = page_address(p);
1318
1319        /* XDR encode error */
1320        length = svc_rdma_xdr_encode_error(xprt, rmsgp, err, va);
1321
1322        /* Prepare SGE for local address */
1323        sge.addr = ib_dma_map_single(xprt->sc_cm_id->device,
1324                                   page_address(p), PAGE_SIZE, DMA_FROM_DEVICE);
1325        if (ib_dma_mapping_error(xprt->sc_cm_id->device, sge.addr)) {
1326                put_page(p);
1327                return;
1328        }
1329        atomic_inc(&xprt->sc_dma_used);
1330        sge.lkey = xprt->sc_dma_lkey;
1331        sge.length = length;
1332
1333        ctxt = svc_rdma_get_context(xprt);
1334        ctxt->count = 1;
1335        ctxt->pages[0] = p;
1336
1337        /* Prepare SEND WR */
1338        memset(&err_wr, 0, sizeof err_wr);
1339        ctxt->wr_op = IB_WR_SEND;
1340        err_wr.wr_id = (unsigned long)ctxt;
1341        err_wr.sg_list = &sge;
1342        err_wr.num_sge = 1;
1343        err_wr.opcode = IB_WR_SEND;
1344        err_wr.send_flags = IB_SEND_SIGNALED;
1345
1346        /* Post It */
1347        ret = svc_rdma_send(xprt, &err_wr);
1348        if (ret) {
1349                dprintk("svcrdma: Error %d posting send for protocol error\n",
1350                        ret);
1351                ib_dma_unmap_single(xprt->sc_cm_id->device,
1352                                  sge.addr, PAGE_SIZE,
1353                                  DMA_FROM_DEVICE);
1354                svc_rdma_put_context(ctxt, 1);
1355        }
1356}
1357
lxr.linux.no kindly hosted by Redpill Linpro AS, provider of Linux consulting and operations services since 1995.