NFS: Add nfs_client behavior flags
[linux-2.6-block.git] / fs / nfs / direct.c
CommitLineData
1da177e4
LT
1/*
2 * linux/fs/nfs/direct.c
3 *
4 * Copyright (C) 2003 by Chuck Lever <cel@netapp.com>
5 *
6 * High-performance uncached I/O for the Linux NFS client
7 *
8 * There are important applications whose performance or correctness
9 * depends on uncached access to file data. Database clusters
88467055 10 * (multiple copies of the same instance running on separate hosts)
1da177e4 11 * implement their own cache coherency protocol that subsumes file
88467055
CL
12 * system cache protocols. Applications that process datasets
13 * considerably larger than the client's memory do not always benefit
14 * from a local cache. A streaming video server, for instance, has no
1da177e4
LT
15 * need to cache the contents of a file.
16 *
17 * When an application requests uncached I/O, all read and write requests
18 * are made directly to the server; data stored or fetched via these
19 * requests is not cached in the Linux page cache. The client does not
20 * correct unaligned requests from applications. All requested bytes are
21 * held on permanent storage before a direct write system call returns to
22 * an application.
23 *
24 * Solaris implements an uncached I/O facility called directio() that
25 * is used for backups and sequential I/O to very large files. Solaris
26 * also supports uncaching whole NFS partitions with "-o forcedirectio,"
27 * an undocumented mount option.
28 *
29 * Designed by Jeff Kimmel, Chuck Lever, and Trond Myklebust, with
30 * help from Andrew Morton.
31 *
32 * 18 Dec 2001 Initial implementation for 2.4 --cel
33 * 08 Jul 2002 Version for 2.4.19, with bug fixes --trondmy
34 * 08 Jun 2003 Port to 2.5 APIs --cel
35 * 31 Mar 2004 Handle direct I/O without VFS support --cel
36 * 15 Sep 2004 Parallel async reads --cel
88467055 37 * 04 May 2005 support O_DIRECT with aio --cel
1da177e4
LT
38 *
39 */
40
1da177e4
LT
41#include <linux/errno.h>
42#include <linux/sched.h>
43#include <linux/kernel.h>
1da177e4
LT
44#include <linux/file.h>
45#include <linux/pagemap.h>
46#include <linux/kref.h>
5a0e3ad6 47#include <linux/slab.h>
7ec10f26 48#include <linux/task_io_accounting_ops.h>
1da177e4
LT
49
50#include <linux/nfs_fs.h>
51#include <linux/nfs_page.h>
52#include <linux/sunrpc/clnt.h>
53
1da177e4 54#include <asm/uaccess.h>
60063497 55#include <linux/atomic.h>
1da177e4 56
8d5658c9 57#include "internal.h"
91d5b470 58#include "iostat.h"
1763da12 59#include "pnfs.h"
91d5b470 60
1da177e4 61#define NFSDBG_FACILITY NFSDBG_VFS
1da177e4 62
e18b890b 63static struct kmem_cache *nfs_direct_cachep;
1da177e4
LT
64
65/*
66 * This represents a set of asynchronous requests that we're waiting on
67 */
68struct nfs_direct_req {
69 struct kref kref; /* release manager */
15ce4a0c
CL
70
71 /* I/O parameters */
a8881f5a 72 struct nfs_open_context *ctx; /* file open context info */
f11ac8db 73 struct nfs_lock_context *l_ctx; /* Lock context info */
99514f8f 74 struct kiocb * iocb; /* controlling i/o request */
88467055 75 struct inode * inode; /* target file of i/o */
15ce4a0c
CL
76
77 /* completion state */
607f31e8 78 atomic_t io_count; /* i/os we're waiting for */
15ce4a0c 79 spinlock_t lock; /* protect completion state */
15ce4a0c 80 ssize_t count, /* bytes actually processed */
1da177e4 81 error; /* any reported error */
d72b7a6b 82 struct completion completion; /* wait for i/o completion */
fad61490
TM
83
84 /* commit state */
1763da12
FI
85 struct nfs_mds_commit_info mds_cinfo; /* Storage for cinfo */
86 struct pnfs_ds_commit_info ds_cinfo; /* Storage for cinfo */
87 struct work_struct work;
fad61490
TM
88 int flags;
89#define NFS_ODIRECT_DO_COMMIT (1) /* an unstable reply was received */
90#define NFS_ODIRECT_RESCHED_WRITES (2) /* write verification failed */
91 struct nfs_writeverf verf; /* unstable write verifier */
1da177e4
LT
92};
93
1763da12
FI
94static const struct nfs_pgio_completion_ops nfs_direct_write_completion_ops;
95static const struct nfs_commit_completion_ops nfs_direct_commit_completion_ops;
fad61490 96static void nfs_direct_write_complete(struct nfs_direct_req *dreq, struct inode *inode);
1763da12 97static void nfs_direct_write_schedule_work(struct work_struct *work);
607f31e8
TM
98
99static inline void get_dreq(struct nfs_direct_req *dreq)
100{
101 atomic_inc(&dreq->io_count);
102}
103
104static inline int put_dreq(struct nfs_direct_req *dreq)
105{
106 return atomic_dec_and_test(&dreq->io_count);
107}
108
1da177e4 109/**
b8a32e2b
CL
110 * nfs_direct_IO - NFS address space operation for direct I/O
111 * @rw: direction (read or write)
112 * @iocb: target I/O control block
113 * @iov: array of vectors that define I/O buffer
114 * @pos: offset in file to begin the operation
115 * @nr_segs: size of iovec array
116 *
117 * The presence of this routine in the address space ops vector means
118 * the NFS client supports direct I/O. However, we shunt off direct
119 * read and write requests before the VFS gets them, so this method
120 * should never be called.
1da177e4 121 */
b8a32e2b
CL
122ssize_t nfs_direct_IO(int rw, struct kiocb *iocb, const struct iovec *iov, loff_t pos, unsigned long nr_segs)
123{
b8a32e2b 124 dprintk("NFS: nfs_direct_IO (%s) off/no(%Ld/%lu) EINVAL\n",
01cce933 125 iocb->ki_filp->f_path.dentry->d_name.name,
e99170ff 126 (long long) pos, nr_segs);
b8a32e2b
CL
127
128 return -EINVAL;
129}
130
749e146e 131static void nfs_direct_release_pages(struct page **pages, unsigned int npages)
9c93ab7d 132{
749e146e 133 unsigned int i;
607f31e8
TM
134 for (i = 0; i < npages; i++)
135 page_cache_release(pages[i]);
6b45d858
TM
136}
137
1763da12
FI
138void nfs_init_cinfo_from_dreq(struct nfs_commit_info *cinfo,
139 struct nfs_direct_req *dreq)
140{
141 cinfo->lock = &dreq->lock;
142 cinfo->mds = &dreq->mds_cinfo;
143 cinfo->ds = &dreq->ds_cinfo;
144 cinfo->dreq = dreq;
145 cinfo->completion_ops = &nfs_direct_commit_completion_ops;
146}
147
93619e59 148static inline struct nfs_direct_req *nfs_direct_req_alloc(void)
1da177e4 149{
93619e59
CL
150 struct nfs_direct_req *dreq;
151
292f3eee 152 dreq = kmem_cache_zalloc(nfs_direct_cachep, GFP_KERNEL);
93619e59
CL
153 if (!dreq)
154 return NULL;
155
156 kref_init(&dreq->kref);
607f31e8 157 kref_get(&dreq->kref);
d72b7a6b 158 init_completion(&dreq->completion);
1763da12
FI
159 INIT_LIST_HEAD(&dreq->mds_cinfo.list);
160 INIT_WORK(&dreq->work, nfs_direct_write_schedule_work);
15ce4a0c 161 spin_lock_init(&dreq->lock);
93619e59
CL
162
163 return dreq;
1da177e4
LT
164}
165
b4946ffb 166static void nfs_direct_req_free(struct kref *kref)
1da177e4
LT
167{
168 struct nfs_direct_req *dreq = container_of(kref, struct nfs_direct_req, kref);
a8881f5a 169
f11ac8db
TM
170 if (dreq->l_ctx != NULL)
171 nfs_put_lock_context(dreq->l_ctx);
a8881f5a
TM
172 if (dreq->ctx != NULL)
173 put_nfs_open_context(dreq->ctx);
1da177e4
LT
174 kmem_cache_free(nfs_direct_cachep, dreq);
175}
176
b4946ffb
TM
177static void nfs_direct_req_release(struct nfs_direct_req *dreq)
178{
179 kref_put(&dreq->kref, nfs_direct_req_free);
180}
181
bc0fb201
CL
182/*
183 * Collects and returns the final error value/byte-count.
184 */
185static ssize_t nfs_direct_wait(struct nfs_direct_req *dreq)
186{
15ce4a0c 187 ssize_t result = -EIOCBQUEUED;
bc0fb201
CL
188
189 /* Async requests don't wait here */
190 if (dreq->iocb)
191 goto out;
192
150030b7 193 result = wait_for_completion_killable(&dreq->completion);
bc0fb201
CL
194
195 if (!result)
15ce4a0c 196 result = dreq->error;
bc0fb201 197 if (!result)
15ce4a0c 198 result = dreq->count;
bc0fb201
CL
199
200out:
bc0fb201
CL
201 return (ssize_t) result;
202}
203
63ab46ab 204/*
607f31e8
TM
205 * Synchronous I/O uses a stack-allocated iocb. Thus we can't trust
206 * the iocb is still valid here if this is a synchronous request.
63ab46ab
CL
207 */
208static void nfs_direct_complete(struct nfs_direct_req *dreq)
209{
63ab46ab 210 if (dreq->iocb) {
15ce4a0c 211 long res = (long) dreq->error;
63ab46ab 212 if (!res)
15ce4a0c 213 res = (long) dreq->count;
63ab46ab 214 aio_complete(dreq->iocb, res, 0);
d72b7a6b
TM
215 }
216 complete_all(&dreq->completion);
63ab46ab 217
b4946ffb 218 nfs_direct_req_release(dreq);
63ab46ab
CL
219}
220
1385b811 221static void nfs_direct_readpage_release(struct nfs_page *req)
1da177e4 222{
584aa810
FI
223 dprintk("NFS: direct read done (%s/%lld %d@%lld)\n",
224 req->wb_context->dentry->d_inode->i_sb->s_id,
225 (long long)NFS_FILEID(req->wb_context->dentry->d_inode),
226 req->wb_bytes,
227 (long long)req_offset(req));
228 nfs_release_request(req);
fdd1e74c
TM
229}
230
584aa810 231static void nfs_direct_read_completion(struct nfs_pgio_header *hdr)
fdd1e74c 232{
584aa810
FI
233 unsigned long bytes = 0;
234 struct nfs_direct_req *dreq = hdr->dreq;
fdd1e74c 235
584aa810
FI
236 if (test_bit(NFS_IOHDR_REDO, &hdr->flags))
237 goto out_put;
15ce4a0c
CL
238
239 spin_lock(&dreq->lock);
584aa810
FI
240 if (test_bit(NFS_IOHDR_ERROR, &hdr->flags) && (hdr->good_bytes == 0))
241 dreq->error = hdr->error;
242 else
243 dreq->count += hdr->good_bytes;
244 spin_unlock(&dreq->lock);
245
4bd8b010
TM
246 while (!list_empty(&hdr->pages)) {
247 struct nfs_page *req = nfs_list_entry(hdr->pages.next);
248 struct page *page = req->wb_page;
249
250 if (test_bit(NFS_IOHDR_EOF, &hdr->flags)) {
251 if (bytes > hdr->good_bytes)
252 zero_user(page, 0, PAGE_SIZE);
253 else if (hdr->good_bytes - bytes < PAGE_SIZE)
254 zero_user_segment(page,
255 hdr->good_bytes & ~PAGE_MASK,
256 PAGE_SIZE);
584aa810 257 }
4bd8b010
TM
258 if (!PageCompound(page)) {
259 if (test_bit(NFS_IOHDR_ERROR, &hdr->flags)) {
260 if (bytes < hdr->good_bytes)
261 set_page_dirty(page);
262 } else
263 set_page_dirty(page);
584aa810 264 }
4bd8b010
TM
265 bytes += req->wb_bytes;
266 nfs_list_remove_request(req);
267 nfs_direct_readpage_release(req);
d4a8f367 268 }
584aa810 269out_put:
607f31e8
TM
270 if (put_dreq(dreq))
271 nfs_direct_complete(dreq);
584aa810 272 hdr->release(hdr);
1da177e4
LT
273}
274
3e9e0ca3 275static void nfs_read_sync_pgio_error(struct list_head *head)
cd841605 276{
584aa810 277 struct nfs_page *req;
cd841605 278
584aa810
FI
279 while (!list_empty(head)) {
280 req = nfs_list_entry(head->next);
281 nfs_list_remove_request(req);
282 nfs_release_request(req);
283 }
cd841605
FI
284}
285
584aa810
FI
286static void nfs_direct_pgio_init(struct nfs_pgio_header *hdr)
287{
288 get_dreq(hdr->dreq);
289}
290
291static const struct nfs_pgio_completion_ops nfs_direct_read_completion_ops = {
3e9e0ca3 292 .error_cleanup = nfs_read_sync_pgio_error,
584aa810
FI
293 .init_hdr = nfs_direct_pgio_init,
294 .completion = nfs_direct_read_completion,
295};
296
d4cc948b 297/*
607f31e8
TM
298 * For each rsize'd chunk of the user's buffer, dispatch an NFS READ
299 * operation. If nfs_readdata_alloc() or get_user_pages() fails,
300 * bail and stop sending more reads. Read length accounting is
301 * handled automatically by nfs_direct_read_result(). Otherwise, if
302 * no requests have been sent, just return an error.
1da177e4 303 */
584aa810 304static ssize_t nfs_direct_read_schedule_segment(struct nfs_pageio_descriptor *desc,
02fe4946
CL
305 const struct iovec *iov,
306 loff_t pos)
1da177e4 307{
584aa810 308 struct nfs_direct_req *dreq = desc->pg_dreq;
a8881f5a 309 struct nfs_open_context *ctx = dreq->ctx;
3d4ff43d 310 struct inode *inode = ctx->dentry->d_inode;
02fe4946
CL
311 unsigned long user_addr = (unsigned long)iov->iov_base;
312 size_t count = iov->iov_len;
5dd602f2 313 size_t rsize = NFS_SERVER(inode)->rsize;
607f31e8
TM
314 unsigned int pgbase;
315 int result;
316 ssize_t started = 0;
584aa810
FI
317 struct page **pagevec = NULL;
318 unsigned int npages;
607f31e8 319
1da177e4 320 do {
5dd602f2 321 size_t bytes;
584aa810 322 int i;
1da177e4 323
e9f7bee1 324 pgbase = user_addr & ~PAGE_MASK;
bf5fc402 325 bytes = min(max_t(size_t, rsize, PAGE_SIZE), count);
e9f7bee1 326
607f31e8 327 result = -ENOMEM;
584aa810
FI
328 npages = nfs_page_array_len(pgbase, bytes);
329 if (!pagevec)
330 pagevec = kmalloc(npages * sizeof(struct page *),
331 GFP_KERNEL);
332 if (!pagevec)
4db6e0b7 333 break;
607f31e8
TM
334 down_read(&current->mm->mmap_sem);
335 result = get_user_pages(current, current->mm, user_addr,
584aa810 336 npages, 1, 0, pagevec, NULL);
607f31e8 337 up_read(&current->mm->mmap_sem);
584aa810 338 if (result < 0)
749e146e 339 break;
584aa810 340 if ((unsigned)result < npages) {
d9df8d6b
TM
341 bytes = result * PAGE_SIZE;
342 if (bytes <= pgbase) {
584aa810 343 nfs_direct_release_pages(pagevec, result);
d9df8d6b
TM
344 break;
345 }
346 bytes -= pgbase;
584aa810 347 npages = result;
607f31e8
TM
348 }
349
584aa810
FI
350 for (i = 0; i < npages; i++) {
351 struct nfs_page *req;
bf5fc402 352 unsigned int req_len = min_t(size_t, bytes, PAGE_SIZE - pgbase);
584aa810
FI
353 /* XXX do we need to do the eof zeroing found in async_filler? */
354 req = nfs_create_request(dreq->ctx, dreq->inode,
355 pagevec[i],
356 pgbase, req_len);
357 if (IS_ERR(req)) {
584aa810
FI
358 result = PTR_ERR(req);
359 break;
360 }
361 req->wb_index = pos >> PAGE_SHIFT;
362 req->wb_offset = pos & ~PAGE_MASK;
363 if (!nfs_pageio_add_request(desc, req)) {
364 result = desc->pg_error;
365 nfs_release_request(req);
584aa810
FI
366 break;
367 }
368 pgbase = 0;
369 bytes -= req_len;
370 started += req_len;
371 user_addr += req_len;
372 pos += req_len;
373 count -= req_len;
374 }
6d74743b
TM
375 /* The nfs_page now hold references to these pages */
376 nfs_direct_release_pages(pagevec, npages);
71e8cc00 377 } while (count != 0 && result >= 0);
607f31e8 378
584aa810
FI
379 kfree(pagevec);
380
607f31e8 381 if (started)
c216fd70 382 return started;
607f31e8 383 return result < 0 ? (ssize_t) result : -EFAULT;
1da177e4
LT
384}
385
19f73787
CL
386static ssize_t nfs_direct_read_schedule_iovec(struct nfs_direct_req *dreq,
387 const struct iovec *iov,
388 unsigned long nr_segs,
389 loff_t pos)
390{
584aa810 391 struct nfs_pageio_descriptor desc;
19f73787
CL
392 ssize_t result = -EINVAL;
393 size_t requested_bytes = 0;
394 unsigned long seg;
395
584aa810
FI
396 nfs_pageio_init_read(&desc, dreq->inode,
397 &nfs_direct_read_completion_ops);
19f73787 398 get_dreq(dreq);
584aa810 399 desc.pg_dreq = dreq;
19f73787
CL
400
401 for (seg = 0; seg < nr_segs; seg++) {
402 const struct iovec *vec = &iov[seg];
584aa810 403 result = nfs_direct_read_schedule_segment(&desc, vec, pos);
19f73787
CL
404 if (result < 0)
405 break;
406 requested_bytes += result;
407 if ((size_t)result < vec->iov_len)
408 break;
409 pos += vec->iov_len;
410 }
411
584aa810
FI
412 nfs_pageio_complete(&desc);
413
839f7ad6
CL
414 /*
415 * If no bytes were started, return the error, and let the
416 * generic layer handle the completion.
417 */
418 if (requested_bytes == 0) {
419 nfs_direct_req_release(dreq);
420 return result < 0 ? result : -EIO;
421 }
422
19f73787
CL
423 if (put_dreq(dreq))
424 nfs_direct_complete(dreq);
839f7ad6 425 return 0;
19f73787
CL
426}
427
c216fd70
CL
428static ssize_t nfs_direct_read(struct kiocb *iocb, const struct iovec *iov,
429 unsigned long nr_segs, loff_t pos)
1da177e4 430{
f11ac8db 431 ssize_t result = -ENOMEM;
99514f8f 432 struct inode *inode = iocb->ki_filp->f_mapping->host;
1da177e4
LT
433 struct nfs_direct_req *dreq;
434
607f31e8 435 dreq = nfs_direct_req_alloc();
f11ac8db
TM
436 if (dreq == NULL)
437 goto out;
1da177e4 438
91d5b470 439 dreq->inode = inode;
cd3758e3 440 dreq->ctx = get_nfs_open_context(nfs_file_open_context(iocb->ki_filp));
f11ac8db
TM
441 dreq->l_ctx = nfs_get_lock_context(dreq->ctx);
442 if (dreq->l_ctx == NULL)
443 goto out_release;
487b8372
CL
444 if (!is_sync_kiocb(iocb))
445 dreq->iocb = iocb;
1da177e4 446
c216fd70 447 result = nfs_direct_read_schedule_iovec(dreq, iov, nr_segs, pos);
607f31e8
TM
448 if (!result)
449 result = nfs_direct_wait(dreq);
f11ac8db 450out_release:
b4946ffb 451 nfs_direct_req_release(dreq);
f11ac8db 452out:
1da177e4
LT
453 return result;
454}
455
fad61490
TM
456#if defined(CONFIG_NFS_V3) || defined(CONFIG_NFS_V4)
457static void nfs_direct_write_reschedule(struct nfs_direct_req *dreq)
458{
1763da12
FI
459 struct nfs_pageio_descriptor desc;
460 struct nfs_page *req, *tmp;
461 LIST_HEAD(reqs);
462 struct nfs_commit_info cinfo;
463 LIST_HEAD(failed);
464
465 nfs_init_cinfo_from_dreq(&cinfo, dreq);
466 pnfs_recover_commit_reqs(dreq->inode, &reqs, &cinfo);
467 spin_lock(cinfo.lock);
468 nfs_scan_commit_list(&cinfo.mds->list, &reqs, &cinfo, 0);
469 spin_unlock(cinfo.lock);
1da177e4 470
fad61490 471 dreq->count = 0;
607f31e8
TM
472 get_dreq(dreq);
473
1763da12
FI
474 nfs_pageio_init_write(&desc, dreq->inode, FLUSH_STABLE,
475 &nfs_direct_write_completion_ops);
476 desc.pg_dreq = dreq;
fedb595c 477
1763da12
FI
478 list_for_each_entry_safe(req, tmp, &reqs, wb_list) {
479 if (!nfs_pageio_add_request(&desc, req)) {
480 nfs_list_add_request(req, &failed);
481 spin_lock(cinfo.lock);
482 dreq->flags = 0;
483 dreq->error = -EIO;
484 spin_unlock(cinfo.lock);
485 }
486 }
487 nfs_pageio_complete(&desc);
fad61490 488
04277086 489 while (!list_empty(&failed))
1d1afcbc 490 nfs_unlock_and_release_request(req);
fad61490 491
1763da12
FI
492 if (put_dreq(dreq))
493 nfs_direct_write_complete(dreq, dreq->inode);
c9d8f89d
TM
494}
495
1763da12 496static void nfs_direct_commit_complete(struct nfs_commit_data *data)
c9d8f89d 497{
0b7c0153 498 struct nfs_direct_req *dreq = data->dreq;
1763da12
FI
499 struct nfs_commit_info cinfo;
500 struct nfs_page *req;
c9d8f89d
TM
501 int status = data->task.tk_status;
502
1763da12 503 nfs_init_cinfo_from_dreq(&cinfo, dreq);
c9d8f89d 504 if (status < 0) {
60fa3f76 505 dprintk("NFS: %5u commit failed with error %d.\n",
1763da12 506 data->task.tk_pid, status);
fad61490 507 dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
60fa3f76 508 } else if (memcmp(&dreq->verf, &data->verf, sizeof(data->verf))) {
c9d8f89d 509 dprintk("NFS: %5u commit verify failed\n", data->task.tk_pid);
fad61490 510 dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
1da177e4
LT
511 }
512
c9d8f89d 513 dprintk("NFS: %5u commit returned %d\n", data->task.tk_pid, status);
1763da12
FI
514 while (!list_empty(&data->pages)) {
515 req = nfs_list_entry(data->pages.next);
516 nfs_list_remove_request(req);
517 if (dreq->flags == NFS_ODIRECT_RESCHED_WRITES) {
518 /* Note the rewrite will go through mds */
04277086 519 kref_get(&req->wb_kref);
1763da12 520 nfs_mark_request_commit(req, NULL, &cinfo);
04277086 521 }
1d1afcbc 522 nfs_unlock_and_release_request(req);
1763da12
FI
523 }
524
525 if (atomic_dec_and_test(&cinfo.mds->rpcs_out))
526 nfs_direct_write_complete(dreq, data->inode);
1da177e4
LT
527}
528
1763da12
FI
529static void nfs_direct_error_cleanup(struct nfs_inode *nfsi)
530{
531 /* There is no lock to clear */
532}
533
534static const struct nfs_commit_completion_ops nfs_direct_commit_completion_ops = {
535 .completion = nfs_direct_commit_complete,
536 .error_cleanup = nfs_direct_error_cleanup,
fad61490
TM
537};
538
539static void nfs_direct_commit_schedule(struct nfs_direct_req *dreq)
1da177e4 540{
1763da12
FI
541 int res;
542 struct nfs_commit_info cinfo;
543 LIST_HEAD(mds_list);
544
545 nfs_init_cinfo_from_dreq(&cinfo, dreq);
546 nfs_scan_commit(dreq->inode, &mds_list, &cinfo);
547 res = nfs_generic_commit_list(dreq->inode, &mds_list, 0, &cinfo);
548 if (res < 0) /* res == -ENOMEM */
549 nfs_direct_write_reschedule(dreq);
fad61490 550}
1da177e4 551
1763da12 552static void nfs_direct_write_schedule_work(struct work_struct *work)
fad61490 553{
1763da12 554 struct nfs_direct_req *dreq = container_of(work, struct nfs_direct_req, work);
fad61490 555 int flags = dreq->flags;
1da177e4 556
fad61490
TM
557 dreq->flags = 0;
558 switch (flags) {
559 case NFS_ODIRECT_DO_COMMIT:
560 nfs_direct_commit_schedule(dreq);
1da177e4 561 break;
fad61490
TM
562 case NFS_ODIRECT_RESCHED_WRITES:
563 nfs_direct_write_reschedule(dreq);
564 break;
565 default:
1763da12 566 nfs_zap_mapping(dreq->inode, dreq->inode->i_mapping);
fad61490
TM
567 nfs_direct_complete(dreq);
568 }
569}
1da177e4 570
1763da12 571static void nfs_direct_write_complete(struct nfs_direct_req *dreq, struct inode *inode)
fad61490 572{
1763da12 573 schedule_work(&dreq->work); /* Calls nfs_direct_write_schedule_work */
fad61490 574}
1763da12 575
fad61490 576#else
24fc9211
BS
577static void nfs_direct_write_schedule_work(struct work_struct *work)
578{
579}
1da177e4 580
fad61490
TM
581static void nfs_direct_write_complete(struct nfs_direct_req *dreq, struct inode *inode)
582{
cd9ae2b6 583 nfs_zap_mapping(inode, inode->i_mapping);
fad61490
TM
584 nfs_direct_complete(dreq);
585}
586#endif
1da177e4 587
c9d8f89d
TM
588/*
589 * NB: Return the value of the first error return code. Subsequent
590 * errors after the first one are ignored.
591 */
462d5b32 592/*
607f31e8
TM
593 * For each wsize'd chunk of the user's buffer, dispatch an NFS WRITE
594 * operation. If nfs_writedata_alloc() or get_user_pages() fails,
595 * bail and stop sending more writes. Write length accounting is
596 * handled automatically by nfs_direct_write_result(). Otherwise, if
597 * no requests have been sent, just return an error.
462d5b32 598 */
1763da12 599static ssize_t nfs_direct_write_schedule_segment(struct nfs_pageio_descriptor *desc,
02fe4946 600 const struct iovec *iov,
1763da12 601 loff_t pos)
462d5b32 602{
1763da12 603 struct nfs_direct_req *dreq = desc->pg_dreq;
a8881f5a 604 struct nfs_open_context *ctx = dreq->ctx;
3d4ff43d 605 struct inode *inode = ctx->dentry->d_inode;
02fe4946
CL
606 unsigned long user_addr = (unsigned long)iov->iov_base;
607 size_t count = iov->iov_len;
462d5b32 608 size_t wsize = NFS_SERVER(inode)->wsize;
607f31e8
TM
609 unsigned int pgbase;
610 int result;
611 ssize_t started = 0;
1763da12
FI
612 struct page **pagevec = NULL;
613 unsigned int npages;
82b145c5 614
1da177e4 615 do {
462d5b32 616 size_t bytes;
1763da12 617 int i;
462d5b32 618
e9f7bee1 619 pgbase = user_addr & ~PAGE_MASK;
bf5fc402 620 bytes = min(max_t(size_t, wsize, PAGE_SIZE), count);
e9f7bee1 621
607f31e8 622 result = -ENOMEM;
1763da12
FI
623 npages = nfs_page_array_len(pgbase, bytes);
624 if (!pagevec)
625 pagevec = kmalloc(npages * sizeof(struct page *), GFP_KERNEL);
626 if (!pagevec)
607f31e8
TM
627 break;
628
607f31e8
TM
629 down_read(&current->mm->mmap_sem);
630 result = get_user_pages(current, current->mm, user_addr,
1763da12 631 npages, 0, 0, pagevec, NULL);
607f31e8 632 up_read(&current->mm->mmap_sem);
1763da12 633 if (result < 0)
749e146e 634 break;
1763da12
FI
635
636 if ((unsigned)result < npages) {
d9df8d6b
TM
637 bytes = result * PAGE_SIZE;
638 if (bytes <= pgbase) {
1763da12 639 nfs_direct_release_pages(pagevec, result);
d9df8d6b
TM
640 break;
641 }
642 bytes -= pgbase;
1763da12 643 npages = result;
607f31e8
TM
644 }
645
1763da12
FI
646 for (i = 0; i < npages; i++) {
647 struct nfs_page *req;
bf5fc402 648 unsigned int req_len = min_t(size_t, bytes, PAGE_SIZE - pgbase);
1da177e4 649
1763da12
FI
650 req = nfs_create_request(dreq->ctx, dreq->inode,
651 pagevec[i],
652 pgbase, req_len);
653 if (IS_ERR(req)) {
1763da12
FI
654 result = PTR_ERR(req);
655 break;
656 }
657 nfs_lock_request(req);
658 req->wb_index = pos >> PAGE_SHIFT;
659 req->wb_offset = pos & ~PAGE_MASK;
660 if (!nfs_pageio_add_request(desc, req)) {
661 result = desc->pg_error;
1d1afcbc 662 nfs_unlock_and_release_request(req);
71e8cc00 663 break;
1763da12
FI
664 }
665 pgbase = 0;
666 bytes -= req_len;
667 started += req_len;
668 user_addr += req_len;
669 pos += req_len;
670 count -= req_len;
671 }
6d74743b
TM
672 /* The nfs_page now hold references to these pages */
673 nfs_direct_release_pages(pagevec, npages);
71e8cc00 674 } while (count != 0 && result >= 0);
607f31e8 675
1763da12
FI
676 kfree(pagevec);
677
607f31e8 678 if (started)
c216fd70 679 return started;
607f31e8 680 return result < 0 ? (ssize_t) result : -EFAULT;
462d5b32 681}
1da177e4 682
1763da12
FI
683static void nfs_direct_write_completion(struct nfs_pgio_header *hdr)
684{
685 struct nfs_direct_req *dreq = hdr->dreq;
686 struct nfs_commit_info cinfo;
687 int bit = -1;
688 struct nfs_page *req = nfs_list_entry(hdr->pages.next);
689
690 if (test_bit(NFS_IOHDR_REDO, &hdr->flags))
691 goto out_put;
692
693 nfs_init_cinfo_from_dreq(&cinfo, dreq);
694
695 spin_lock(&dreq->lock);
696
697 if (test_bit(NFS_IOHDR_ERROR, &hdr->flags)) {
698 dreq->flags = 0;
699 dreq->error = hdr->error;
700 }
701 if (dreq->error != 0)
702 bit = NFS_IOHDR_ERROR;
703 else {
704 dreq->count += hdr->good_bytes;
705 if (test_bit(NFS_IOHDR_NEED_RESCHED, &hdr->flags)) {
706 dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
707 bit = NFS_IOHDR_NEED_RESCHED;
708 } else if (test_bit(NFS_IOHDR_NEED_COMMIT, &hdr->flags)) {
709 if (dreq->flags == NFS_ODIRECT_RESCHED_WRITES)
710 bit = NFS_IOHDR_NEED_RESCHED;
711 else if (dreq->flags == 0) {
712 memcpy(&dreq->verf, &req->wb_verf,
713 sizeof(dreq->verf));
714 bit = NFS_IOHDR_NEED_COMMIT;
715 dreq->flags = NFS_ODIRECT_DO_COMMIT;
716 } else if (dreq->flags == NFS_ODIRECT_DO_COMMIT) {
717 if (memcmp(&dreq->verf, &req->wb_verf, sizeof(dreq->verf))) {
718 dreq->flags = NFS_ODIRECT_RESCHED_WRITES;
719 bit = NFS_IOHDR_NEED_RESCHED;
720 } else
721 bit = NFS_IOHDR_NEED_COMMIT;
722 }
723 }
724 }
725 spin_unlock(&dreq->lock);
726
727 while (!list_empty(&hdr->pages)) {
728 req = nfs_list_entry(hdr->pages.next);
729 nfs_list_remove_request(req);
730 switch (bit) {
731 case NFS_IOHDR_NEED_RESCHED:
732 case NFS_IOHDR_NEED_COMMIT:
04277086 733 kref_get(&req->wb_kref);
1763da12 734 nfs_mark_request_commit(req, hdr->lseg, &cinfo);
1763da12 735 }
1d1afcbc 736 nfs_unlock_and_release_request(req);
1763da12
FI
737 }
738
739out_put:
740 if (put_dreq(dreq))
741 nfs_direct_write_complete(dreq, hdr->inode);
742 hdr->release(hdr);
743}
744
3e9e0ca3
TM
745static void nfs_write_sync_pgio_error(struct list_head *head)
746{
747 struct nfs_page *req;
748
749 while (!list_empty(head)) {
750 req = nfs_list_entry(head->next);
751 nfs_list_remove_request(req);
1d1afcbc 752 nfs_unlock_and_release_request(req);
3e9e0ca3
TM
753 }
754}
755
1763da12 756static const struct nfs_pgio_completion_ops nfs_direct_write_completion_ops = {
3e9e0ca3 757 .error_cleanup = nfs_write_sync_pgio_error,
1763da12
FI
758 .init_hdr = nfs_direct_pgio_init,
759 .completion = nfs_direct_write_completion,
760};
761
19f73787
CL
762static ssize_t nfs_direct_write_schedule_iovec(struct nfs_direct_req *dreq,
763 const struct iovec *iov,
764 unsigned long nr_segs,
1763da12 765 loff_t pos)
19f73787 766{
1763da12 767 struct nfs_pageio_descriptor desc;
19f73787
CL
768 ssize_t result = 0;
769 size_t requested_bytes = 0;
770 unsigned long seg;
771
1763da12
FI
772 nfs_pageio_init_write(&desc, dreq->inode, FLUSH_COND_STABLE,
773 &nfs_direct_write_completion_ops);
774 desc.pg_dreq = dreq;
19f73787
CL
775 get_dreq(dreq);
776
777 for (seg = 0; seg < nr_segs; seg++) {
778 const struct iovec *vec = &iov[seg];
1763da12 779 result = nfs_direct_write_schedule_segment(&desc, vec, pos);
19f73787
CL
780 if (result < 0)
781 break;
782 requested_bytes += result;
783 if ((size_t)result < vec->iov_len)
784 break;
785 pos += vec->iov_len;
786 }
1763da12 787 nfs_pageio_complete(&desc);
19f73787 788
839f7ad6
CL
789 /*
790 * If no bytes were started, return the error, and let the
791 * generic layer handle the completion.
792 */
793 if (requested_bytes == 0) {
794 nfs_direct_req_release(dreq);
795 return result < 0 ? result : -EIO;
796 }
797
19f73787
CL
798 if (put_dreq(dreq))
799 nfs_direct_write_complete(dreq, dreq->inode);
839f7ad6 800 return 0;
19f73787
CL
801}
802
c216fd70
CL
803static ssize_t nfs_direct_write(struct kiocb *iocb, const struct iovec *iov,
804 unsigned long nr_segs, loff_t pos,
805 size_t count)
462d5b32 806{
f11ac8db 807 ssize_t result = -ENOMEM;
c89f2ee5 808 struct inode *inode = iocb->ki_filp->f_mapping->host;
462d5b32 809 struct nfs_direct_req *dreq;
1da177e4 810
607f31e8 811 dreq = nfs_direct_req_alloc();
462d5b32 812 if (!dreq)
f11ac8db 813 goto out;
1da177e4 814
c89f2ee5 815 dreq->inode = inode;
cd3758e3 816 dreq->ctx = get_nfs_open_context(nfs_file_open_context(iocb->ki_filp));
f11ac8db 817 dreq->l_ctx = nfs_get_lock_context(dreq->ctx);
568a810d 818 if (dreq->l_ctx == NULL)
f11ac8db 819 goto out_release;
c89f2ee5
CL
820 if (!is_sync_kiocb(iocb))
821 dreq->iocb = iocb;
1da177e4 822
1763da12 823 result = nfs_direct_write_schedule_iovec(dreq, iov, nr_segs, pos);
607f31e8
TM
824 if (!result)
825 result = nfs_direct_wait(dreq);
f11ac8db 826out_release:
b4946ffb 827 nfs_direct_req_release(dreq);
f11ac8db 828out:
1da177e4
LT
829 return result;
830}
831
832/**
833 * nfs_file_direct_read - file direct read operation for NFS files
834 * @iocb: target I/O control block
027445c3
BP
835 * @iov: vector of user buffers into which to read data
836 * @nr_segs: size of iov vector
88467055 837 * @pos: byte offset in file where reading starts
1da177e4
LT
838 *
839 * We use this function for direct reads instead of calling
840 * generic_file_aio_read() in order to avoid gfar's check to see if
841 * the request starts before the end of the file. For that check
842 * to work, we must generate a GETATTR before each direct read, and
843 * even then there is a window between the GETATTR and the subsequent
88467055 844 * READ where the file size could change. Our preference is simply
1da177e4
LT
845 * to do all reads the application wants, and the server will take
846 * care of managing the end of file boundary.
88467055 847 *
1da177e4
LT
848 * This function also eliminates unnecessarily updating the file's
849 * atime locally, as the NFS server sets the file's atime, and this
850 * client must read the updated atime from the server back into its
851 * cache.
852 */
027445c3
BP
853ssize_t nfs_file_direct_read(struct kiocb *iocb, const struct iovec *iov,
854 unsigned long nr_segs, loff_t pos)
1da177e4
LT
855{
856 ssize_t retval = -EINVAL;
1da177e4 857 struct file *file = iocb->ki_filp;
1da177e4 858 struct address_space *mapping = file->f_mapping;
c216fd70
CL
859 size_t count;
860
861 count = iov_length(iov, nr_segs);
862 nfs_add_stats(mapping->host, NFSIOS_DIRECTREADBYTES, count);
1da177e4 863
6da24bc9 864 dfprintk(FILE, "NFS: direct read(%s/%s, %zd@%Ld)\n",
01cce933
JJS
865 file->f_path.dentry->d_parent->d_name.name,
866 file->f_path.dentry->d_name.name,
c216fd70 867 count, (long long) pos);
1da177e4 868
1da177e4
LT
869 retval = 0;
870 if (!count)
871 goto out;
872
29884df0
TM
873 retval = nfs_sync_mapping(mapping);
874 if (retval)
875 goto out;
1da177e4 876
7ec10f26
KK
877 task_io_account_read(count);
878
c216fd70 879 retval = nfs_direct_read(iocb, iov, nr_segs, pos);
1da177e4 880 if (retval > 0)
0cdd80d0 881 iocb->ki_pos = pos + retval;
1da177e4
LT
882
883out:
884 return retval;
885}
886
887/**
888 * nfs_file_direct_write - file direct write operation for NFS files
889 * @iocb: target I/O control block
027445c3
BP
890 * @iov: vector of user buffers from which to write data
891 * @nr_segs: size of iov vector
88467055 892 * @pos: byte offset in file where writing starts
1da177e4
LT
893 *
894 * We use this function for direct writes instead of calling
895 * generic_file_aio_write() in order to avoid taking the inode
896 * semaphore and updating the i_size. The NFS server will set
897 * the new i_size and this client must read the updated size
898 * back into its cache. We let the server do generic write
899 * parameter checking and report problems.
900 *
1da177e4
LT
901 * We eliminate local atime updates, see direct read above.
902 *
903 * We avoid unnecessary page cache invalidations for normal cached
904 * readers of this file.
905 *
906 * Note that O_APPEND is not supported for NFS direct writes, as there
907 * is no atomic O_APPEND write facility in the NFS protocol.
908 */
027445c3
BP
909ssize_t nfs_file_direct_write(struct kiocb *iocb, const struct iovec *iov,
910 unsigned long nr_segs, loff_t pos)
1da177e4 911{
070ea602 912 ssize_t retval = -EINVAL;
1da177e4 913 struct file *file = iocb->ki_filp;
1da177e4 914 struct address_space *mapping = file->f_mapping;
c216fd70 915 size_t count;
1da177e4 916
c216fd70
CL
917 count = iov_length(iov, nr_segs);
918 nfs_add_stats(mapping->host, NFSIOS_DIRECTWRITTENBYTES, count);
919
6da24bc9 920 dfprintk(FILE, "NFS: direct write(%s/%s, %zd@%Ld)\n",
01cce933
JJS
921 file->f_path.dentry->d_parent->d_name.name,
922 file->f_path.dentry->d_name.name,
c216fd70 923 count, (long long) pos);
027445c3 924
ce1a8e67
CL
925 retval = generic_write_checks(file, &pos, &count, 0);
926 if (retval)
1da177e4 927 goto out;
ce1a8e67
CL
928
929 retval = -EINVAL;
930 if ((ssize_t) count < 0)
1da177e4 931 goto out;
1da177e4
LT
932 retval = 0;
933 if (!count)
934 goto out;
ce1a8e67 935
29884df0
TM
936 retval = nfs_sync_mapping(mapping);
937 if (retval)
938 goto out;
1da177e4 939
7ec10f26
KK
940 task_io_account_write(count);
941
c216fd70 942 retval = nfs_direct_write(iocb, iov, nr_segs, pos, count);
1763da12
FI
943 if (retval > 0) {
944 struct inode *inode = mapping->host;
9eafa8cc 945
ce1a8e67 946 iocb->ki_pos = pos + retval;
1763da12
FI
947 spin_lock(&inode->i_lock);
948 if (i_size_read(inode) < iocb->ki_pos)
949 i_size_write(inode, iocb->ki_pos);
950 spin_unlock(&inode->i_lock);
951 }
1da177e4
LT
952out:
953 return retval;
954}
955
88467055
CL
956/**
957 * nfs_init_directcache - create a slab cache for nfs_direct_req structures
958 *
959 */
f7b422b1 960int __init nfs_init_directcache(void)
1da177e4
LT
961{
962 nfs_direct_cachep = kmem_cache_create("nfs_direct_cache",
963 sizeof(struct nfs_direct_req),
fffb60f9
PJ
964 0, (SLAB_RECLAIM_ACCOUNT|
965 SLAB_MEM_SPREAD),
20c2df83 966 NULL);
1da177e4
LT
967 if (nfs_direct_cachep == NULL)
968 return -ENOMEM;
969
970 return 0;
971}
972
88467055 973/**
f7b422b1 974 * nfs_destroy_directcache - destroy the slab cache for nfs_direct_req structures
88467055
CL
975 *
976 */
266bee88 977void nfs_destroy_directcache(void)
1da177e4 978{
1a1d92c1 979 kmem_cache_destroy(nfs_direct_cachep);
1da177e4 980}