linux/fs/nfs/direct.c
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   1// SPDX-License-Identifier: GPL-2.0-only
   2/*
   3 * linux/fs/nfs/direct.c
   4 *
   5 * Copyright (C) 2003 by Chuck Lever <cel@netapp.com>
   6 *
   7 * High-performance uncached I/O for the Linux NFS client
   8 *
   9 * There are important applications whose performance or correctness
  10 * depends on uncached access to file data.  Database clusters
  11 * (multiple copies of the same instance running on separate hosts)
  12 * implement their own cache coherency protocol that subsumes file
  13 * system cache protocols.  Applications that process datasets
  14 * considerably larger than the client's memory do not always benefit
  15 * from a local cache.  A streaming video server, for instance, has no
  16 * need to cache the contents of a file.
  17 *
  18 * When an application requests uncached I/O, all read and write requests
  19 * are made directly to the server; data stored or fetched via these
  20 * requests is not cached in the Linux page cache.  The client does not
  21 * correct unaligned requests from applications.  All requested bytes are
  22 * held on permanent storage before a direct write system call returns to
  23 * an application.
  24 *
  25 * Solaris implements an uncached I/O facility called directio() that
  26 * is used for backups and sequential I/O to very large files.  Solaris
  27 * also supports uncaching whole NFS partitions with "-o forcedirectio,"
  28 * an undocumented mount option.
  29 *
  30 * Designed by Jeff Kimmel, Chuck Lever, and Trond Myklebust, with
  31 * help from Andrew Morton.
  32 *
  33 * 18 Dec 2001  Initial implementation for 2.4  --cel
  34 * 08 Jul 2002  Version for 2.4.19, with bug fixes --trondmy
  35 * 08 Jun 2003  Port to 2.5 APIs  --cel
  36 * 31 Mar 2004  Handle direct I/O without VFS support  --cel
  37 * 15 Sep 2004  Parallel async reads  --cel
  38 * 04 May 2005  support O_DIRECT with aio  --cel
  39 *
  40 */
  41
  42#include <linux/errno.h>
  43#include <linux/sched.h>
  44#include <linux/kernel.h>
  45#include <linux/file.h>
  46#include <linux/pagemap.h>
  47#include <linux/kref.h>
  48#include <linux/slab.h>
  49#include <linux/task_io_accounting_ops.h>
  50#include <linux/module.h>
  51
  52#include <linux/nfs_fs.h>
  53#include <linux/nfs_page.h>
  54#include <linux/sunrpc/clnt.h>
  55
  56#include <linux/uaccess.h>
  57#include <linux/atomic.h>
  58
  59#include "internal.h"
  60#include "iostat.h"
  61#include "pnfs.h"
  62
  63#define NFSDBG_FACILITY         NFSDBG_VFS
  64
  65static struct kmem_cache *nfs_direct_cachep;
  66
  67/*
  68 * This represents a set of asynchronous requests that we're waiting on
  69 */
  70struct nfs_direct_mirror {
  71        ssize_t count;
  72};
  73
  74struct nfs_direct_req {
  75        struct kref             kref;           /* release manager */
  76
  77        /* I/O parameters */
  78        struct nfs_open_context *ctx;           /* file open context info */
  79        struct nfs_lock_context *l_ctx;         /* Lock context info */
  80        struct kiocb *          iocb;           /* controlling i/o request */
  81        struct inode *          inode;          /* target file of i/o */
  82
  83        /* completion state */
  84        atomic_t                io_count;       /* i/os we're waiting for */
  85        spinlock_t              lock;           /* protect completion state */
  86
  87        struct nfs_direct_mirror mirrors[NFS_PAGEIO_DESCRIPTOR_MIRROR_MAX];
  88        int                     mirror_count;
  89
  90        loff_t                  io_start;       /* Start offset for I/O */
  91        ssize_t                 count,          /* bytes actually processed */
  92                                max_count,      /* max expected count */
  93                                bytes_left,     /* bytes left to be sent */
  94                                error;          /* any reported error */
  95        struct completion       completion;     /* wait for i/o completion */
  96
  97        /* commit state */
  98        struct nfs_mds_commit_info mds_cinfo;   /* Storage for cinfo */
  99        struct pnfs_ds_commit_info ds_cinfo;    /* Storage for cinfo */
 100        struct work_struct      work;
 101        int                     flags;
 102        /* for write */
 103#define NFS_ODIRECT_DO_COMMIT           (1)     /* an unstable reply was received */
 104#define NFS_ODIRECT_RESCHED_WRITES      (2)     /* write verification failed */
 105        /* for read */
 106#define NFS_ODIRECT_SHOULD_DIRTY        (3)     /* dirty user-space page after read */
 107        struct nfs_writeverf    verf;           /* unstable write verifier */
 108};
 109
 110static const struct nfs_pgio_completion_ops nfs_direct_write_completion_ops;
 111static const struct nfs_commit_completion_ops nfs_direct_commit_completion_ops;
 112static void nfs_direct_write_complete(struct nfs_direct_req *dreq);
 113static void nfs_direct_write_schedule_work(struct work_struct *work);
 114
 115static inline void get_dreq(struct nfs_direct_req *dreq)
 116{
 117        atomic_inc(&dreq->io_count);
 118}
 119
 120static inline int put_dreq(struct nfs_direct_req *dreq)
 121{
 122        return atomic_dec_and_test(&dreq->io_count);
 123}
 124
 125static void
 126nfs_direct_good_bytes(struct nfs_direct_req *dreq, struct nfs_pgio_header *hdr)
 127{
 128        int i;
 129        ssize_t count;
 130
 131        WARN_ON_ONCE(dreq->count >= dreq->max_count);
 132
 133        if (dreq->mirror_count == 1) {
 134                dreq->mirrors[hdr->pgio_mirror_idx].count += hdr->good_bytes;
 135                dreq->count += hdr->good_bytes;
 136        } else {
 137                /* mirrored writes */
 138                count = dreq->mirrors[hdr->pgio_mirror_idx].count;
 139                if (count + dreq->io_start < hdr->io_start + hdr->good_bytes) {
 140                        count = hdr->io_start + hdr->good_bytes - dreq->io_start;
 141                        dreq->mirrors[hdr->pgio_mirror_idx].count = count;
 142                }
 143                /* update the dreq->count by finding the minimum agreed count from all
 144                 * mirrors */
 145                count = dreq->mirrors[0].count;
 146
 147                for (i = 1; i < dreq->mirror_count; i++)
 148                        count = min(count, dreq->mirrors[i].count);
 149
 150                dreq->count = count;
 151        }
 152}
 153
 154/*
 155 * nfs_direct_select_verf - select the right verifier
 156 * @dreq - direct request possibly spanning multiple servers
 157 * @ds_clp - nfs_client of data server or NULL if MDS / non-pnfs
 158 * @commit_idx - commit bucket index for the DS
 159 *
 160 * returns the correct verifier to use given the role of the server
 161 */
 162static struct nfs_writeverf *
 163nfs_direct_select_verf(struct nfs_direct_req *dreq,
 164                       struct nfs_client *ds_clp,
 165                       int commit_idx)
 166{
 167        struct nfs_writeverf *verfp = &dreq->verf;
 168
 169#ifdef CONFIG_NFS_V4_1
 170        /*
 171         * pNFS is in use, use the DS verf except commit_through_mds is set
 172         * for layout segment where nbuckets is zero.
 173         */
 174        if (ds_clp && dreq->ds_cinfo.nbuckets > 0) {
 175                if (commit_idx >= 0 && commit_idx < dreq->ds_cinfo.nbuckets)
 176                        verfp = &dreq->ds_cinfo.buckets[commit_idx].direct_verf;
 177                else
 178                        WARN_ON_ONCE(1);
 179        }
 180#endif
 181        return verfp;
 182}
 183
 184
 185/*
 186 * nfs_direct_set_hdr_verf - set the write/commit verifier
 187 * @dreq - direct request possibly spanning multiple servers
 188 * @hdr - pageio header to validate against previously seen verfs
 189 *
 190 * Set the server's (MDS or DS) "seen" verifier
 191 */
 192static void nfs_direct_set_hdr_verf(struct nfs_direct_req *dreq,
 193                                    struct nfs_pgio_header *hdr)
 194{
 195        struct nfs_writeverf *verfp;
 196
 197        verfp = nfs_direct_select_verf(dreq, hdr->ds_clp, hdr->ds_commit_idx);
 198        WARN_ON_ONCE(verfp->committed >= 0);
 199        memcpy(verfp, &hdr->verf, sizeof(struct nfs_writeverf));
 200        WARN_ON_ONCE(verfp->committed < 0);
 201}
 202
 203static int nfs_direct_cmp_verf(const struct nfs_writeverf *v1,
 204                const struct nfs_writeverf *v2)
 205{
 206        return nfs_write_verifier_cmp(&v1->verifier, &v2->verifier);
 207}
 208
 209/*
 210 * nfs_direct_cmp_hdr_verf - compare verifier for pgio header
 211 * @dreq - direct request possibly spanning multiple servers
 212 * @hdr - pageio header to validate against previously seen verf
 213 *
 214 * set the server's "seen" verf if not initialized.
 215 * returns result of comparison between @hdr->verf and the "seen"
 216 * verf of the server used by @hdr (DS or MDS)
 217 */
 218static int nfs_direct_set_or_cmp_hdr_verf(struct nfs_direct_req *dreq,
 219                                          struct nfs_pgio_header *hdr)
 220{
 221        struct nfs_writeverf *verfp;
 222
 223        verfp = nfs_direct_select_verf(dreq, hdr->ds_clp, hdr->ds_commit_idx);
 224        if (verfp->committed < 0) {
 225                nfs_direct_set_hdr_verf(dreq, hdr);
 226                return 0;
 227        }
 228        return nfs_direct_cmp_verf(verfp, &hdr->verf);
 229}
 230
 231/*
 232 * nfs_direct_cmp_commit_data_verf - compare verifier for commit data
 233 * @dreq - direct request possibly spanning multiple servers
 234 * @data - commit data to validate against previously seen verf
 235 *
 236 * returns result of comparison between @data->verf and the verf of
 237 * the server used by @data (DS or MDS)
 238 */
 239static int nfs_direct_cmp_commit_data_verf(struct nfs_direct_req *dreq,
 240                                           struct nfs_commit_data *data)
 241{
 242        struct nfs_writeverf *verfp;
 243
 244        verfp = nfs_direct_select_verf(dreq, data->ds_clp,
 245                                         data->ds_commit_index);
 246
 247        /* verifier not set so always fail */
 248        if (verfp->committed < 0)
 249                return 1;
 250
 251        return nfs_direct_cmp_verf(verfp, &data->verf);
 252}
 253
 254/**
 255 * nfs_direct_IO - NFS address space operation for direct I/O
 256 * @iocb: target I/O control block
 257 * @iter: I/O buffer
 258 *
 259 * The presence of this routine in the address space ops vector means
 260 * the NFS client supports direct I/O. However, for most direct IO, we
 261 * shunt off direct read and write requests before the VFS gets them,
 262 * so this method is only ever called for swap.
 263 */
 264ssize_t nfs_direct_IO(struct kiocb *iocb, struct iov_iter *iter)
 265{
 266        struct inode *inode = iocb->ki_filp->f_mapping->host;
 267
 268        /* we only support swap file calling nfs_direct_IO */
 269        if (!IS_SWAPFILE(inode))
 270                return 0;
 271
 272        VM_BUG_ON(iov_iter_count(iter) != PAGE_SIZE);
 273
 274        if (iov_iter_rw(iter) == READ)
 275                return nfs_file_direct_read(iocb, iter);
 276        return nfs_file_direct_write(iocb, iter);
 277}
 278
 279static void nfs_direct_release_pages(struct page **pages, unsigned int npages)
 280{
 281        unsigned int i;
 282        for (i = 0; i < npages; i++)
 283                put_page(pages[i]);
 284}
 285
 286void nfs_init_cinfo_from_dreq(struct nfs_commit_info *cinfo,
 287                              struct nfs_direct_req *dreq)
 288{
 289        cinfo->inode = dreq->inode;
 290        cinfo->mds = &dreq->mds_cinfo;
 291        cinfo->ds = &dreq->ds_cinfo;
 292        cinfo->dreq = dreq;
 293        cinfo->completion_ops = &nfs_direct_commit_completion_ops;
 294}
 295
 296static inline void nfs_direct_setup_mirroring(struct nfs_direct_req *dreq,
 297                                             struct nfs_pageio_descriptor *pgio,
 298                                             struct nfs_page *req)
 299{
 300        int mirror_count = 1;
 301
 302        if (pgio->pg_ops->pg_get_mirror_count)
 303                mirror_count = pgio->pg_ops->pg_get_mirror_count(pgio, req);
 304
 305        dreq->mirror_count = mirror_count;
 306}
 307
 308static inline struct nfs_direct_req *nfs_direct_req_alloc(void)
 309{
 310        struct nfs_direct_req *dreq;
 311
 312        dreq = kmem_cache_zalloc(nfs_direct_cachep, GFP_KERNEL);
 313        if (!dreq)
 314                return NULL;
 315
 316        kref_init(&dreq->kref);
 317        kref_get(&dreq->kref);
 318        init_completion(&dreq->completion);
 319        INIT_LIST_HEAD(&dreq->mds_cinfo.list);
 320        dreq->verf.committed = NFS_INVALID_STABLE_HOW;  /* not set yet */
 321        INIT_WORK(&dreq->work, nfs_direct_write_schedule_work);
 322        dreq->mirror_count = 1;
 323        spin_lock_init(&dreq->lock);
 324
 325        return dreq;
 326}
 327
 328static void nfs_direct_req_free(struct kref *kref)
 329{
 330        struct nfs_direct_req *dreq = container_of(kref, struct nfs_direct_req, kref);
 331
 332        nfs_free_pnfs_ds_cinfo(&dreq->ds_cinfo);
 333        if (dreq->l_ctx != NULL)
 334                nfs_put_lock_context(dreq->l_ctx);
 335        if (dreq->ctx != NULL)
 336                put_nfs_open_context(dreq->ctx);
 337        kmem_cache_free(nfs_direct_cachep, dreq);
 338}
 339
 340static void nfs_direct_req_release(struct nfs_direct_req *dreq)
 341{
 342        kref_put(&dreq->kref, nfs_direct_req_free);
 343}
 344
 345ssize_t nfs_dreq_bytes_left(struct nfs_direct_req *dreq)
 346{
 347        return dreq->bytes_left;
 348}
 349EXPORT_SYMBOL_GPL(nfs_dreq_bytes_left);
 350
 351/*
 352 * Collects and returns the final error value/byte-count.
 353 */
 354static ssize_t nfs_direct_wait(struct nfs_direct_req *dreq)
 355{
 356        ssize_t result = -EIOCBQUEUED;
 357
 358        /* Async requests don't wait here */
 359        if (dreq->iocb)
 360                goto out;
 361
 362        result = wait_for_completion_killable(&dreq->completion);
 363
 364        if (!result) {
 365                result = dreq->count;
 366                WARN_ON_ONCE(dreq->count < 0);
 367        }
 368        if (!result)
 369                result = dreq->error;
 370
 371out:
 372        return (ssize_t) result;
 373}
 374
 375/*
 376 * Synchronous I/O uses a stack-allocated iocb.  Thus we can't trust
 377 * the iocb is still valid here if this is a synchronous request.
 378 */
 379static void nfs_direct_complete(struct nfs_direct_req *dreq)
 380{
 381        struct inode *inode = dreq->inode;
 382
 383        inode_dio_end(inode);
 384
 385        if (dreq->iocb) {
 386                long res = (long) dreq->error;
 387                if (dreq->count != 0) {
 388                        res = (long) dreq->count;
 389                        WARN_ON_ONCE(dreq->count < 0);
 390                }
 391                dreq->iocb->ki_complete(dreq->iocb, res, 0);
 392        }
 393
 394        complete(&dreq->completion);
 395
 396        nfs_direct_req_release(dreq);
 397}
 398
 399static void nfs_direct_read_completion(struct nfs_pgio_header *hdr)
 400{
 401        unsigned long bytes = 0;
 402        struct nfs_direct_req *dreq = hdr->dreq;
 403
 404        spin_lock(&dreq->lock);
 405        if (test_bit(NFS_IOHDR_ERROR, &hdr->flags))
 406                dreq->error = hdr->error;
 407
 408        if (test_bit(NFS_IOHDR_REDO, &hdr->flags)) {
 409                spin_unlock(&dreq->lock);
 410                goto out_put;
 411        }
 412
 413        if (hdr->good_bytes != 0)
 414                nfs_direct_good_bytes(dreq, hdr);
 415
 416        if (test_bit(NFS_IOHDR_EOF, &hdr->flags))
 417                dreq->error = 0;
 418
 419        spin_unlock(&dreq->lock);
 420
 421        while (!list_empty(&hdr->pages)) {
 422                struct nfs_page *req = nfs_list_entry(hdr->pages.next);
 423                struct page *page = req->wb_page;
 424
 425                if (!PageCompound(page) && bytes < hdr->good_bytes &&
 426                    (dreq->flags == NFS_ODIRECT_SHOULD_DIRTY))
 427                        set_page_dirty(page);
 428                bytes += req->wb_bytes;
 429                nfs_list_remove_request(req);
 430                nfs_release_request(req);
 431        }
 432out_put:
 433        if (put_dreq(dreq))
 434                nfs_direct_complete(dreq);
 435        hdr->release(hdr);
 436}
 437
 438static void nfs_read_sync_pgio_error(struct list_head *head, int error)
 439{
 440        struct nfs_page *req;
 441
 442        while (!list_empty(head)) {
 443                req = nfs_list_entry(head->next);
 444                nfs_list_remove_request(req);
 445                nfs_release_request(req);
 446        }
 447}
 448
 449static void nfs_direct_pgio_init(struct nfs_pgio_header *hdr)
 450{
 451        get_dreq(hdr->dreq);
 452}
 453
 454static const struct nfs_pgio_completion_ops nfs_direct_read_completion_ops = {
 455        .error_cleanup = nfs_read_sync_pgio_error,
 456        .init_hdr = nfs_direct_pgio_init,
 457        .completion = nfs_direct_read_completion,
 458};
 459
 460/*
 461 * For each rsize'd chunk of the user's buffer, dispatch an NFS READ
 462 * operation.  If nfs_readdata_alloc() or get_user_pages() fails,
 463 * bail and stop sending more reads.  Read length accounting is
 464 * handled automatically by nfs_direct_read_result().  Otherwise, if
 465 * no requests have been sent, just return an error.
 466 */
 467
 468static ssize_t nfs_direct_read_schedule_iovec(struct nfs_direct_req *dreq,
 469                                              struct iov_iter *iter,
 470                                              loff_t pos)
 471{
 472        struct nfs_pageio_descriptor desc;
 473        struct inode *inode = dreq->inode;
 474        ssize_t result = -EINVAL;
 475        size_t requested_bytes = 0;
 476        size_t rsize = max_t(size_t, NFS_SERVER(inode)->rsize, PAGE_SIZE);
 477
 478        nfs_pageio_init_read(&desc, dreq->inode, false,
 479                             &nfs_direct_read_completion_ops);
 480        get_dreq(dreq);
 481        desc.pg_dreq = dreq;
 482        inode_dio_begin(inode);
 483
 484        while (iov_iter_count(iter)) {
 485                struct page **pagevec;
 486                size_t bytes;
 487                size_t pgbase;
 488                unsigned npages, i;
 489
 490                result = iov_iter_get_pages_alloc(iter, &pagevec, 
 491                                                  rsize, &pgbase);
 492                if (result < 0)
 493                        break;
 494        
 495                bytes = result;
 496                iov_iter_advance(iter, bytes);
 497                npages = (result + pgbase + PAGE_SIZE - 1) / PAGE_SIZE;
 498                for (i = 0; i < npages; i++) {
 499                        struct nfs_page *req;
 500                        unsigned int req_len = min_t(size_t, bytes, PAGE_SIZE - pgbase);
 501                        /* XXX do we need to do the eof zeroing found in async_filler? */
 502                        req = nfs_create_request(dreq->ctx, pagevec[i],
 503                                                 pgbase, req_len);
 504                        if (IS_ERR(req)) {
 505                                result = PTR_ERR(req);
 506                                break;
 507                        }
 508                        req->wb_index = pos >> PAGE_SHIFT;
 509                        req->wb_offset = pos & ~PAGE_MASK;
 510                        if (!nfs_pageio_add_request(&desc, req)) {
 511                                result = desc.pg_error;
 512                                nfs_release_request(req);
 513                                break;
 514                        }
 515                        pgbase = 0;
 516                        bytes -= req_len;
 517                        requested_bytes += req_len;
 518                        pos += req_len;
 519                        dreq->bytes_left -= req_len;
 520                }
 521                nfs_direct_release_pages(pagevec, npages);
 522                kvfree(pagevec);
 523                if (result < 0)
 524                        break;
 525        }
 526
 527        nfs_pageio_complete(&desc);
 528
 529        /*
 530         * If no bytes were started, return the error, and let the
 531         * generic layer handle the completion.
 532         */
 533        if (requested_bytes == 0) {
 534                inode_dio_end(inode);
 535                nfs_direct_req_release(dreq);
 536                return result < 0 ? result : -EIO;
 537        }
 538
 539        if (put_dreq(dreq))
 540                nfs_direct_complete(dreq);
 541        return requested_bytes;
 542}
 543
 544/**
 545 * nfs_file_direct_read - file direct read operation for NFS files
 546 * @iocb: target I/O control block
 547 * @iter: vector of user buffers into which to read data
 548 *
 549 * We use this function for direct reads instead of calling
 550 * generic_file_aio_read() in order to avoid gfar's check to see if
 551 * the request starts before the end of the file.  For that check
 552 * to work, we must generate a GETATTR before each direct read, and
 553 * even then there is a window between the GETATTR and the subsequent
 554 * READ where the file size could change.  Our preference is simply
 555 * to do all reads the application wants, and the server will take
 556 * care of managing the end of file boundary.
 557 *
 558 * This function also eliminates unnecessarily updating the file's
 559 * atime locally, as the NFS server sets the file's atime, and this
 560 * client must read the updated atime from the server back into its
 561 * cache.
 562 */
 563ssize_t nfs_file_direct_read(struct kiocb *iocb, struct iov_iter *iter)
 564{
 565        struct file *file = iocb->ki_filp;
 566        struct address_space *mapping = file->f_mapping;
 567        struct inode *inode = mapping->host;
 568        struct nfs_direct_req *dreq;
 569        struct nfs_lock_context *l_ctx;
 570        ssize_t result = -EINVAL, requested;
 571        size_t count = iov_iter_count(iter);
 572        nfs_add_stats(mapping->host, NFSIOS_DIRECTREADBYTES, count);
 573
 574        dfprintk(FILE, "NFS: direct read(%pD2, %zd@%Ld)\n",
 575                file, count, (long long) iocb->ki_pos);
 576
 577        result = 0;
 578        if (!count)
 579                goto out;
 580
 581        task_io_account_read(count);
 582
 583        result = -ENOMEM;
 584        dreq = nfs_direct_req_alloc();
 585        if (dreq == NULL)
 586                goto out;
 587
 588        dreq->inode = inode;
 589        dreq->bytes_left = dreq->max_count = count;
 590        dreq->io_start = iocb->ki_pos;
 591        dreq->ctx = get_nfs_open_context(nfs_file_open_context(iocb->ki_filp));
 592        l_ctx = nfs_get_lock_context(dreq->ctx);
 593        if (IS_ERR(l_ctx)) {
 594                result = PTR_ERR(l_ctx);
 595                goto out_release;
 596        }
 597        dreq->l_ctx = l_ctx;
 598        if (!is_sync_kiocb(iocb))
 599                dreq->iocb = iocb;
 600
 601        if (iter_is_iovec(iter))
 602                dreq->flags = NFS_ODIRECT_SHOULD_DIRTY;
 603
 604        nfs_start_io_direct(inode);
 605
 606        NFS_I(inode)->read_io += count;
 607        requested = nfs_direct_read_schedule_iovec(dreq, iter, iocb->ki_pos);
 608
 609        nfs_end_io_direct(inode);
 610
 611        if (requested > 0) {
 612                result = nfs_direct_wait(dreq);
 613                if (result > 0) {
 614                        requested -= result;
 615                        iocb->ki_pos += result;
 616                }
 617                iov_iter_revert(iter, requested);
 618        } else {
 619                result = requested;
 620        }
 621
 622out_release:
 623        nfs_direct_req_release(dreq);
 624out:
 625        return result;
 626}
 627
 628static void
 629nfs_direct_write_scan_commit_list(struct inode *inode,
 630                                  struct list_head *list,
 631                                  struct nfs_commit_info *cinfo)
 632{
 633        mutex_lock(&NFS_I(cinfo->inode)->commit_mutex);
 634#ifdef CONFIG_NFS_V4_1
 635        if (cinfo->ds != NULL && cinfo->ds->nwritten != 0)
 636                NFS_SERVER(inode)->pnfs_curr_ld->recover_commit_reqs(list, cinfo);
 637#endif
 638        nfs_scan_commit_list(&cinfo->mds->list, list, cinfo, 0);
 639        mutex_unlock(&NFS_I(cinfo->inode)->commit_mutex);
 640}
 641
 642static void nfs_direct_write_reschedule(struct nfs_direct_req *dreq)
 643{
 644        struct nfs_pageio_descriptor desc;
 645        struct nfs_page *req, *tmp;
 646        LIST_HEAD(reqs);
 647        struct nfs_commit_info cinfo;
 648        LIST_HEAD(failed);
 649        int i;
 650
 651        nfs_init_cinfo_from_dreq(&cinfo, dreq);
 652        nfs_direct_write_scan_commit_list(dreq->inode, &reqs, &cinfo);
 653
 654        dreq->count = 0;
 655        dreq->verf.committed = NFS_INVALID_STABLE_HOW;
 656        nfs_clear_pnfs_ds_commit_verifiers(&dreq->ds_cinfo);
 657        for (i = 0; i < dreq->mirror_count; i++)
 658                dreq->mirrors[i].count = 0;
 659        get_dreq(dreq);
 660
 661        nfs_pageio_init_write(&desc, dreq->inode, FLUSH_STABLE, false,
 662                              &nfs_direct_write_completion_ops);
 663        desc.pg_dreq = dreq;
 664
 665        req = nfs_list_entry(reqs.next);
 666        nfs_direct_setup_mirroring(dreq, &desc, req);
 667        if (desc.pg_error < 0) {
 668                list_splice_init(&reqs, &failed);
 669                goto out_failed;
 670        }
 671
 672        list_for_each_entry_safe(req, tmp, &reqs, wb_list) {
 673                /* Bump the transmission count */
 674                req->wb_nio++;
 675                if (!nfs_pageio_add_request(&desc, req)) {
 676                        nfs_list_move_request(req, &failed);
 677                        spin_lock(&cinfo.inode->i_lock);
 678                        dreq->flags = 0;
 679                        if (desc.pg_error < 0)
 680                                dreq->error = desc.pg_error;
 681                        else
 682                                dreq->error = -EIO;
 683                        spin_unlock(&cinfo.inode->i_lock);
 684                }
 685                nfs_release_request(req);
 686        }
 687        nfs_pageio_complete(&desc);
 688
 689out_failed:
 690        while (!list_empty(&failed)) {
 691                req = nfs_list_entry(failed.next);
 692                nfs_list_remove_request(req);
 693                nfs_unlock_and_release_request(req);
 694        }
 695
 696        if (put_dreq(dreq))
 697                nfs_direct_write_complete(dreq);
 698}
 699
 700static void nfs_direct_commit_complete(struct nfs_commit_data *data)
 701{
 702        struct nfs_direct_req *dreq = data->dreq;
 703        struct nfs_commit_info cinfo;
 704        struct nfs_page *req;
 705        int status = data->task.tk_status;
 706
 707        nfs_init_cinfo_from_dreq(&cinfo, dreq);
 708        if (status < 0 || nfs_direct_cmp_commit_data_verf(dreq, data))
 709                dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
 710
 711        while (!list_empty(&data->pages)) {
 712                req = nfs_list_entry(data->pages.next);
 713                nfs_list_remove_request(req);
 714                if (dreq->flags == NFS_ODIRECT_RESCHED_WRITES) {
 715                        /*
 716                         * Despite the reboot, the write was successful,
 717                         * so reset wb_nio.
 718                         */
 719                        req->wb_nio = 0;
 720                        /* Note the rewrite will go through mds */
 721                        nfs_mark_request_commit(req, NULL, &cinfo, 0);
 722                } else
 723                        nfs_release_request(req);
 724                nfs_unlock_and_release_request(req);
 725        }
 726
 727        if (atomic_dec_and_test(&cinfo.mds->rpcs_out))
 728                nfs_direct_write_complete(dreq);
 729}
 730
 731static void nfs_direct_resched_write(struct nfs_commit_info *cinfo,
 732                struct nfs_page *req)
 733{
 734        struct nfs_direct_req *dreq = cinfo->dreq;
 735
 736        spin_lock(&dreq->lock);
 737        dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
 738        spin_unlock(&dreq->lock);
 739        nfs_mark_request_commit(req, NULL, cinfo, 0);
 740}
 741
 742static const struct nfs_commit_completion_ops nfs_direct_commit_completion_ops = {
 743        .completion = nfs_direct_commit_complete,
 744        .resched_write = nfs_direct_resched_write,
 745};
 746
 747static void nfs_direct_commit_schedule(struct nfs_direct_req *dreq)
 748{
 749        int res;
 750        struct nfs_commit_info cinfo;
 751        LIST_HEAD(mds_list);
 752
 753        nfs_init_cinfo_from_dreq(&cinfo, dreq);
 754        nfs_scan_commit(dreq->inode, &mds_list, &cinfo);
 755        res = nfs_generic_commit_list(dreq->inode, &mds_list, 0, &cinfo);
 756        if (res < 0) /* res == -ENOMEM */
 757                nfs_direct_write_reschedule(dreq);
 758}
 759
 760static void nfs_direct_write_schedule_work(struct work_struct *work)
 761{
 762        struct nfs_direct_req *dreq = container_of(work, struct nfs_direct_req, work);
 763        int flags = dreq->flags;
 764
 765        dreq->flags = 0;
 766        switch (flags) {
 767                case NFS_ODIRECT_DO_COMMIT:
 768                        nfs_direct_commit_schedule(dreq);
 769                        break;
 770                case NFS_ODIRECT_RESCHED_WRITES:
 771                        nfs_direct_write_reschedule(dreq);
 772                        break;
 773                default:
 774                        nfs_zap_mapping(dreq->inode, dreq->inode->i_mapping);
 775                        nfs_direct_complete(dreq);
 776        }
 777}
 778
 779static void nfs_direct_write_complete(struct nfs_direct_req *dreq)
 780{
 781        queue_work(nfsiod_workqueue, &dreq->work); /* Calls nfs_direct_write_schedule_work */
 782}
 783
 784static void nfs_direct_write_completion(struct nfs_pgio_header *hdr)
 785{
 786        struct nfs_direct_req *dreq = hdr->dreq;
 787        struct nfs_commit_info cinfo;
 788        bool request_commit = false;
 789        struct nfs_page *req = nfs_list_entry(hdr->pages.next);
 790
 791        nfs_init_cinfo_from_dreq(&cinfo, dreq);
 792
 793        spin_lock(&dreq->lock);
 794
 795        if (test_bit(NFS_IOHDR_ERROR, &hdr->flags))
 796                dreq->error = hdr->error;
 797
 798        if (test_bit(NFS_IOHDR_REDO, &hdr->flags)) {
 799                spin_unlock(&dreq->lock);
 800                goto out_put;
 801        }
 802
 803        if (hdr->good_bytes != 0) {
 804                nfs_direct_good_bytes(dreq, hdr);
 805                if (nfs_write_need_commit(hdr)) {
 806                        if (dreq->flags == NFS_ODIRECT_RESCHED_WRITES)
 807                                request_commit = true;
 808                        else if (dreq->flags == 0) {
 809                                nfs_direct_set_hdr_verf(dreq, hdr);
 810                                request_commit = true;
 811                                dreq->flags = NFS_ODIRECT_DO_COMMIT;
 812                        } else if (dreq->flags == NFS_ODIRECT_DO_COMMIT) {
 813                                request_commit = true;
 814                                if (nfs_direct_set_or_cmp_hdr_verf(dreq, hdr))
 815                                        dreq->flags =
 816                                                NFS_ODIRECT_RESCHED_WRITES;
 817                        }
 818                }
 819        }
 820        spin_unlock(&dreq->lock);
 821
 822        while (!list_empty(&hdr->pages)) {
 823
 824                req = nfs_list_entry(hdr->pages.next);
 825                nfs_list_remove_request(req);
 826                if (request_commit) {
 827                        kref_get(&req->wb_kref);
 828                        nfs_mark_request_commit(req, hdr->lseg, &cinfo,
 829                                hdr->ds_commit_idx);
 830                }
 831                nfs_unlock_and_release_request(req);
 832        }
 833
 834out_put:
 835        if (put_dreq(dreq))
 836                nfs_direct_write_complete(dreq);
 837        hdr->release(hdr);
 838}
 839
 840static void nfs_write_sync_pgio_error(struct list_head *head, int error)
 841{
 842        struct nfs_page *req;
 843
 844        while (!list_empty(head)) {
 845                req = nfs_list_entry(head->next);
 846                nfs_list_remove_request(req);
 847                nfs_unlock_and_release_request(req);
 848        }
 849}
 850
 851static void nfs_direct_write_reschedule_io(struct nfs_pgio_header *hdr)
 852{
 853        struct nfs_direct_req *dreq = hdr->dreq;
 854
 855        spin_lock(&dreq->lock);
 856        if (dreq->error == 0) {
 857                dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
 858                /* fake unstable write to let common nfs resend pages */
 859                hdr->verf.committed = NFS_UNSTABLE;
 860                hdr->good_bytes = hdr->args.count;
 861        }
 862        spin_unlock(&dreq->lock);
 863}
 864
 865static const struct nfs_pgio_completion_ops nfs_direct_write_completion_ops = {
 866        .error_cleanup = nfs_write_sync_pgio_error,
 867        .init_hdr = nfs_direct_pgio_init,
 868        .completion = nfs_direct_write_completion,
 869        .reschedule_io = nfs_direct_write_reschedule_io,
 870};
 871
 872
 873/*
 874 * NB: Return the value of the first error return code.  Subsequent
 875 *     errors after the first one are ignored.
 876 */
 877/*
 878 * For each wsize'd chunk of the user's buffer, dispatch an NFS WRITE
 879 * operation.  If nfs_writedata_alloc() or get_user_pages() fails,
 880 * bail and stop sending more writes.  Write length accounting is
 881 * handled automatically by nfs_direct_write_result().  Otherwise, if
 882 * no requests have been sent, just return an error.
 883 */
 884static ssize_t nfs_direct_write_schedule_iovec(struct nfs_direct_req *dreq,
 885                                               struct iov_iter *iter,
 886                                               loff_t pos)
 887{
 888        struct nfs_pageio_descriptor desc;
 889        struct inode *inode = dreq->inode;
 890        ssize_t result = 0;
 891        size_t requested_bytes = 0;
 892        size_t wsize = max_t(size_t, NFS_SERVER(inode)->wsize, PAGE_SIZE);
 893
 894        nfs_pageio_init_write(&desc, inode, FLUSH_COND_STABLE, false,
 895                              &nfs_direct_write_completion_ops);
 896        desc.pg_dreq = dreq;
 897        get_dreq(dreq);
 898        inode_dio_begin(inode);
 899
 900        NFS_I(inode)->write_io += iov_iter_count(iter);
 901        while (iov_iter_count(iter)) {
 902                struct page **pagevec;
 903                size_t bytes;
 904                size_t pgbase;
 905                unsigned npages, i;
 906
 907                result = iov_iter_get_pages_alloc(iter, &pagevec, 
 908                                                  wsize, &pgbase);
 909                if (result < 0)
 910                        break;
 911
 912                bytes = result;
 913                iov_iter_advance(iter, bytes);
 914                npages = (result + pgbase + PAGE_SIZE - 1) / PAGE_SIZE;
 915                for (i = 0; i < npages; i++) {
 916                        struct nfs_page *req;
 917                        unsigned int req_len = min_t(size_t, bytes, PAGE_SIZE - pgbase);
 918
 919                        req = nfs_create_request(dreq->ctx, pagevec[i],
 920                                                 pgbase, req_len);
 921                        if (IS_ERR(req)) {
 922                                result = PTR_ERR(req);
 923                                break;
 924                        }
 925
 926                        nfs_direct_setup_mirroring(dreq, &desc, req);
 927                        if (desc.pg_error < 0) {
 928                                nfs_free_request(req);
 929                                result = desc.pg_error;
 930                                break;
 931                        }
 932
 933                        nfs_lock_request(req);
 934                        req->wb_index = pos >> PAGE_SHIFT;
 935                        req->wb_offset = pos & ~PAGE_MASK;
 936                        if (!nfs_pageio_add_request(&desc, req)) {
 937                                result = desc.pg_error;
 938                                nfs_unlock_and_release_request(req);
 939                                break;
 940                        }
 941                        pgbase = 0;
 942                        bytes -= req_len;
 943                        requested_bytes += req_len;
 944                        pos += req_len;
 945                        dreq->bytes_left -= req_len;
 946                }
 947                nfs_direct_release_pages(pagevec, npages);
 948                kvfree(pagevec);
 949                if (result < 0)
 950                        break;
 951        }
 952        nfs_pageio_complete(&desc);
 953
 954        /*
 955         * If no bytes were started, return the error, and let the
 956         * generic layer handle the completion.
 957         */
 958        if (requested_bytes == 0) {
 959                inode_dio_end(inode);
 960                nfs_direct_req_release(dreq);
 961                return result < 0 ? result : -EIO;
 962        }
 963
 964        if (put_dreq(dreq))
 965                nfs_direct_write_complete(dreq);
 966        return requested_bytes;
 967}
 968
 969/**
 970 * nfs_file_direct_write - file direct write operation for NFS files
 971 * @iocb: target I/O control block
 972 * @iter: vector of user buffers from which to write data
 973 *
 974 * We use this function for direct writes instead of calling
 975 * generic_file_aio_write() in order to avoid taking the inode
 976 * semaphore and updating the i_size.  The NFS server will set
 977 * the new i_size and this client must read the updated size
 978 * back into its cache.  We let the server do generic write
 979 * parameter checking and report problems.
 980 *
 981 * We eliminate local atime updates, see direct read above.
 982 *
 983 * We avoid unnecessary page cache invalidations for normal cached
 984 * readers of this file.
 985 *
 986 * Note that O_APPEND is not supported for NFS direct writes, as there
 987 * is no atomic O_APPEND write facility in the NFS protocol.
 988 */
 989ssize_t nfs_file_direct_write(struct kiocb *iocb, struct iov_iter *iter)
 990{
 991        ssize_t result = -EINVAL, requested;
 992        size_t count;
 993        struct file *file = iocb->ki_filp;
 994        struct address_space *mapping = file->f_mapping;
 995        struct inode *inode = mapping->host;
 996        struct nfs_direct_req *dreq;
 997        struct nfs_lock_context *l_ctx;
 998        loff_t pos, end;
 999
1000        dfprintk(FILE, "NFS: direct write(%pD2, %zd@%Ld)\n",
1001                file, iov_iter_count(iter), (long long) iocb->ki_pos);
1002
1003        result = generic_write_checks(iocb, iter);
1004        if (result <= 0)
1005                return result;
1006        count = result;
1007        nfs_add_stats(mapping->host, NFSIOS_DIRECTWRITTENBYTES, count);
1008
1009        pos = iocb->ki_pos;
1010        end = (pos + iov_iter_count(iter) - 1) >> PAGE_SHIFT;
1011
1012        task_io_account_write(count);
1013
1014        result = -ENOMEM;
1015        dreq = nfs_direct_req_alloc();
1016        if (!dreq)
1017                goto out;
1018
1019        dreq->inode = inode;
1020        dreq->bytes_left = dreq->max_count = count;
1021        dreq->io_start = pos;
1022        dreq->ctx = get_nfs_open_context(nfs_file_open_context(iocb->ki_filp));
1023        l_ctx = nfs_get_lock_context(dreq->ctx);
1024        if (IS_ERR(l_ctx)) {
1025                result = PTR_ERR(l_ctx);
1026                goto out_release;
1027        }
1028        dreq->l_ctx = l_ctx;
1029        if (!is_sync_kiocb(iocb))
1030                dreq->iocb = iocb;
1031
1032        nfs_start_io_direct(inode);
1033
1034        requested = nfs_direct_write_schedule_iovec(dreq, iter, pos);
1035
1036        if (mapping->nrpages) {
1037                invalidate_inode_pages2_range(mapping,
1038                                              pos >> PAGE_SHIFT, end);
1039        }
1040
1041        nfs_end_io_direct(inode);
1042
1043        if (requested > 0) {
1044                result = nfs_direct_wait(dreq);
1045                if (result > 0) {
1046                        requested -= result;
1047                        iocb->ki_pos = pos + result;
1048                        /* XXX: should check the generic_write_sync retval */
1049                        generic_write_sync(iocb, result);
1050                }
1051                iov_iter_revert(iter, requested);
1052        } else {
1053                result = requested;
1054        }
1055out_release:
1056        nfs_direct_req_release(dreq);
1057out:
1058        return result;
1059}
1060
1061/**
1062 * nfs_init_directcache - create a slab cache for nfs_direct_req structures
1063 *
1064 */
1065int __init nfs_init_directcache(void)
1066{
1067        nfs_direct_cachep = kmem_cache_create("nfs_direct_cache",
1068                                                sizeof(struct nfs_direct_req),
1069                                                0, (SLAB_RECLAIM_ACCOUNT|
1070                                                        SLAB_MEM_SPREAD),
1071                                                NULL);
1072        if (nfs_direct_cachep == NULL)
1073                return -ENOMEM;
1074
1075        return 0;
1076}
1077
1078/**
1079 * nfs_destroy_directcache - destroy the slab cache for nfs_direct_req structures
1080 *
1081 */
1082void nfs_destroy_directcache(void)
1083{
1084        kmem_cache_destroy(nfs_direct_cachep);
1085}
1086