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authorAl Viro <viro@zeniv.linux.org.uk>2016-09-22 16:33:12 -0400
committerAl Viro <viro@zeniv.linux.org.uk>2016-10-05 18:23:36 -0400
commit241699cd72a8489c9446ae3910ddd243e9b9061b (patch)
treeefcd8d62f5788ab843cd3457cf2e85f3be7b5296 /lib/iov_iter.c
parentd82718e348fee15dbce8f578ff2588982b7cc7ca (diff)
new iov_iter flavour: pipe-backed
iov_iter variant for passing data into pipe. copy_to_iter() copies data into page(s) it has allocated and stuffs them into the pipe; copy_page_to_iter() stuffs there a reference to the page given to it. Both will try to coalesce if possible. iov_iter_zero() is similar to copy_to_iter(); iov_iter_get_pages() and friends will do as copy_to_iter() would have and return the pages where the data would've been copied. iov_iter_advance() will truncate everything past the spot it has advanced to. New primitive: iov_iter_pipe(), used for initializing those. pipe should be locked all along. Running out of space acts as fault would for iovec-backed ones; in other words, giving it to ->read_iter() may result in short read if the pipe overflows, or -EFAULT if it happens with nothing copied there. In other words, ->read_iter() on those acts pretty much like ->splice_read(). Moreover, all generic_file_splice_read() users, as well as many other ->splice_read() instances can be switched to that scheme - that'll happen in the next commit. Signed-off-by: Al Viro <viro@zeniv.linux.org.uk>
Diffstat (limited to 'lib/iov_iter.c')
-rw-r--r--lib/iov_iter.c397
1 files changed, 395 insertions, 2 deletions
diff --git a/lib/iov_iter.c b/lib/iov_iter.c
index 7e3138cfc8c9..659eaafcde65 100644
--- a/lib/iov_iter.c
+++ b/lib/iov_iter.c
@@ -3,8 +3,11 @@
3#include <linux/pagemap.h> 3#include <linux/pagemap.h>
4#include <linux/slab.h> 4#include <linux/slab.h>
5#include <linux/vmalloc.h> 5#include <linux/vmalloc.h>
6#include <linux/splice.h>
6#include <net/checksum.h> 7#include <net/checksum.h>
7 8
9#define PIPE_PARANOIA /* for now */
10
8#define iterate_iovec(i, n, __v, __p, skip, STEP) { \ 11#define iterate_iovec(i, n, __v, __p, skip, STEP) { \
9 size_t left; \ 12 size_t left; \
10 size_t wanted = n; \ 13 size_t wanted = n; \
@@ -290,6 +293,93 @@ done:
290 return wanted - bytes; 293 return wanted - bytes;
291} 294}
292 295
296#ifdef PIPE_PARANOIA
297static bool sanity(const struct iov_iter *i)
298{
299 struct pipe_inode_info *pipe = i->pipe;
300 int idx = i->idx;
301 int next = pipe->curbuf + pipe->nrbufs;
302 if (i->iov_offset) {
303 struct pipe_buffer *p;
304 if (unlikely(!pipe->nrbufs))
305 goto Bad; // pipe must be non-empty
306 if (unlikely(idx != ((next - 1) & (pipe->buffers - 1))))
307 goto Bad; // must be at the last buffer...
308
309 p = &pipe->bufs[idx];
310 if (unlikely(p->offset + p->len != i->iov_offset))
311 goto Bad; // ... at the end of segment
312 } else {
313 if (idx != (next & (pipe->buffers - 1)))
314 goto Bad; // must be right after the last buffer
315 }
316 return true;
317Bad:
318 printk(KERN_ERR "idx = %d, offset = %zd\n", i->idx, i->iov_offset);
319 printk(KERN_ERR "curbuf = %d, nrbufs = %d, buffers = %d\n",
320 pipe->curbuf, pipe->nrbufs, pipe->buffers);
321 for (idx = 0; idx < pipe->buffers; idx++)
322 printk(KERN_ERR "[%p %p %d %d]\n",
323 pipe->bufs[idx].ops,
324 pipe->bufs[idx].page,
325 pipe->bufs[idx].offset,
326 pipe->bufs[idx].len);
327 WARN_ON(1);
328 return false;
329}
330#else
331#define sanity(i) true
332#endif
333
334static inline int next_idx(int idx, struct pipe_inode_info *pipe)
335{
336 return (idx + 1) & (pipe->buffers - 1);
337}
338
339static size_t copy_page_to_iter_pipe(struct page *page, size_t offset, size_t bytes,
340 struct iov_iter *i)
341{
342 struct pipe_inode_info *pipe = i->pipe;
343 struct pipe_buffer *buf;
344 size_t off;
345 int idx;
346
347 if (unlikely(bytes > i->count))
348 bytes = i->count;
349
350 if (unlikely(!bytes))
351 return 0;
352
353 if (!sanity(i))
354 return 0;
355
356 off = i->iov_offset;
357 idx = i->idx;
358 buf = &pipe->bufs[idx];
359 if (off) {
360 if (offset == off && buf->page == page) {
361 /* merge with the last one */
362 buf->len += bytes;
363 i->iov_offset += bytes;
364 goto out;
365 }
366 idx = next_idx(idx, pipe);
367 buf = &pipe->bufs[idx];
368 }
369 if (idx == pipe->curbuf && pipe->nrbufs)
370 return 0;
371 pipe->nrbufs++;
372 buf->ops = &page_cache_pipe_buf_ops;
373 get_page(buf->page = page);
374 buf->offset = offset;
375 buf->len = bytes;
376 i->iov_offset = offset + bytes;
377 i->idx = idx;
378out:
379 i->count -= bytes;
380 return bytes;
381}
382
293/* 383/*
294 * Fault in one or more iovecs of the given iov_iter, to a maximum length of 384 * Fault in one or more iovecs of the given iov_iter, to a maximum length of
295 * bytes. For each iovec, fault in each page that constitutes the iovec. 385 * bytes. For each iovec, fault in each page that constitutes the iovec.
@@ -356,9 +446,98 @@ static void memzero_page(struct page *page, size_t offset, size_t len)
356 kunmap_atomic(addr); 446 kunmap_atomic(addr);
357} 447}
358 448
449static inline bool allocated(struct pipe_buffer *buf)
450{
451 return buf->ops == &default_pipe_buf_ops;
452}
453
454static inline void data_start(const struct iov_iter *i, int *idxp, size_t *offp)
455{
456 size_t off = i->iov_offset;
457 int idx = i->idx;
458 if (off && (!allocated(&i->pipe->bufs[idx]) || off == PAGE_SIZE)) {
459 idx = next_idx(idx, i->pipe);
460 off = 0;
461 }
462 *idxp = idx;
463 *offp = off;
464}
465
466static size_t push_pipe(struct iov_iter *i, size_t size,
467 int *idxp, size_t *offp)
468{
469 struct pipe_inode_info *pipe = i->pipe;
470 size_t off;
471 int idx;
472 ssize_t left;
473
474 if (unlikely(size > i->count))
475 size = i->count;
476 if (unlikely(!size))
477 return 0;
478
479 left = size;
480 data_start(i, &idx, &off);
481 *idxp = idx;
482 *offp = off;
483 if (off) {
484 left -= PAGE_SIZE - off;
485 if (left <= 0) {
486 pipe->bufs[idx].len += size;
487 return size;
488 }
489 pipe->bufs[idx].len = PAGE_SIZE;
490 idx = next_idx(idx, pipe);
491 }
492 while (idx != pipe->curbuf || !pipe->nrbufs) {
493 struct page *page = alloc_page(GFP_USER);
494 if (!page)
495 break;
496 pipe->nrbufs++;
497 pipe->bufs[idx].ops = &default_pipe_buf_ops;
498 pipe->bufs[idx].page = page;
499 pipe->bufs[idx].offset = 0;
500 if (left <= PAGE_SIZE) {
501 pipe->bufs[idx].len = left;
502 return size;
503 }
504 pipe->bufs[idx].len = PAGE_SIZE;
505 left -= PAGE_SIZE;
506 idx = next_idx(idx, pipe);
507 }
508 return size - left;
509}
510
511static size_t copy_pipe_to_iter(const void *addr, size_t bytes,
512 struct iov_iter *i)
513{
514 struct pipe_inode_info *pipe = i->pipe;
515 size_t n, off;
516 int idx;
517
518 if (!sanity(i))
519 return 0;
520
521 bytes = n = push_pipe(i, bytes, &idx, &off);
522 if (unlikely(!n))
523 return 0;
524 for ( ; n; idx = next_idx(idx, pipe), off = 0) {
525 size_t chunk = min_t(size_t, n, PAGE_SIZE - off);
526 memcpy_to_page(pipe->bufs[idx].page, off, addr, chunk);
527 i->idx = idx;
528 i->iov_offset = off + chunk;
529 n -= chunk;
530 addr += chunk;
531 }
532 i->count -= bytes;
533 return bytes;
534}
535
359size_t copy_to_iter(const void *addr, size_t bytes, struct iov_iter *i) 536size_t copy_to_iter(const void *addr, size_t bytes, struct iov_iter *i)
360{ 537{
361 const char *from = addr; 538 const char *from = addr;
539 if (unlikely(i->type & ITER_PIPE))
540 return copy_pipe_to_iter(addr, bytes, i);
362 iterate_and_advance(i, bytes, v, 541 iterate_and_advance(i, bytes, v,
363 __copy_to_user(v.iov_base, (from += v.iov_len) - v.iov_len, 542 __copy_to_user(v.iov_base, (from += v.iov_len) - v.iov_len,
364 v.iov_len), 543 v.iov_len),
@@ -374,6 +553,10 @@ EXPORT_SYMBOL(copy_to_iter);
374size_t copy_from_iter(void *addr, size_t bytes, struct iov_iter *i) 553size_t copy_from_iter(void *addr, size_t bytes, struct iov_iter *i)
375{ 554{
376 char *to = addr; 555 char *to = addr;
556 if (unlikely(i->type & ITER_PIPE)) {
557 WARN_ON(1);
558 return 0;
559 }
377 iterate_and_advance(i, bytes, v, 560 iterate_and_advance(i, bytes, v,
378 __copy_from_user((to += v.iov_len) - v.iov_len, v.iov_base, 561 __copy_from_user((to += v.iov_len) - v.iov_len, v.iov_base,
379 v.iov_len), 562 v.iov_len),
@@ -389,6 +572,10 @@ EXPORT_SYMBOL(copy_from_iter);
389size_t copy_from_iter_nocache(void *addr, size_t bytes, struct iov_iter *i) 572size_t copy_from_iter_nocache(void *addr, size_t bytes, struct iov_iter *i)
390{ 573{
391 char *to = addr; 574 char *to = addr;
575 if (unlikely(i->type & ITER_PIPE)) {
576 WARN_ON(1);
577 return 0;
578 }
392 iterate_and_advance(i, bytes, v, 579 iterate_and_advance(i, bytes, v,
393 __copy_from_user_nocache((to += v.iov_len) - v.iov_len, 580 __copy_from_user_nocache((to += v.iov_len) - v.iov_len,
394 v.iov_base, v.iov_len), 581 v.iov_base, v.iov_len),
@@ -409,14 +596,20 @@ size_t copy_page_to_iter(struct page *page, size_t offset, size_t bytes,
409 size_t wanted = copy_to_iter(kaddr + offset, bytes, i); 596 size_t wanted = copy_to_iter(kaddr + offset, bytes, i);
410 kunmap_atomic(kaddr); 597 kunmap_atomic(kaddr);
411 return wanted; 598 return wanted;
412 } else 599 } else if (likely(!(i->type & ITER_PIPE)))
413 return copy_page_to_iter_iovec(page, offset, bytes, i); 600 return copy_page_to_iter_iovec(page, offset, bytes, i);
601 else
602 return copy_page_to_iter_pipe(page, offset, bytes, i);
414} 603}
415EXPORT_SYMBOL(copy_page_to_iter); 604EXPORT_SYMBOL(copy_page_to_iter);
416 605
417size_t copy_page_from_iter(struct page *page, size_t offset, size_t bytes, 606size_t copy_page_from_iter(struct page *page, size_t offset, size_t bytes,
418 struct iov_iter *i) 607 struct iov_iter *i)
419{ 608{
609 if (unlikely(i->type & ITER_PIPE)) {
610 WARN_ON(1);
611 return 0;
612 }
420 if (i->type & (ITER_BVEC|ITER_KVEC)) { 613 if (i->type & (ITER_BVEC|ITER_KVEC)) {
421 void *kaddr = kmap_atomic(page); 614 void *kaddr = kmap_atomic(page);
422 size_t wanted = copy_from_iter(kaddr + offset, bytes, i); 615 size_t wanted = copy_from_iter(kaddr + offset, bytes, i);
@@ -427,8 +620,34 @@ size_t copy_page_from_iter(struct page *page, size_t offset, size_t bytes,
427} 620}
428EXPORT_SYMBOL(copy_page_from_iter); 621EXPORT_SYMBOL(copy_page_from_iter);
429 622
623static size_t pipe_zero(size_t bytes, struct iov_iter *i)
624{
625 struct pipe_inode_info *pipe = i->pipe;
626 size_t n, off;
627 int idx;
628
629 if (!sanity(i))
630 return 0;
631
632 bytes = n = push_pipe(i, bytes, &idx, &off);
633 if (unlikely(!n))
634 return 0;
635
636 for ( ; n; idx = next_idx(idx, pipe), off = 0) {
637 size_t chunk = min_t(size_t, n, PAGE_SIZE - off);
638 memzero_page(pipe->bufs[idx].page, off, chunk);
639 i->idx = idx;
640 i->iov_offset = off + chunk;
641 n -= chunk;
642 }
643 i->count -= bytes;
644 return bytes;
645}
646
430size_t iov_iter_zero(size_t bytes, struct iov_iter *i) 647size_t iov_iter_zero(size_t bytes, struct iov_iter *i)
431{ 648{
649 if (unlikely(i->type & ITER_PIPE))
650 return pipe_zero(bytes, i);
432 iterate_and_advance(i, bytes, v, 651 iterate_and_advance(i, bytes, v,
433 __clear_user(v.iov_base, v.iov_len), 652 __clear_user(v.iov_base, v.iov_len),
434 memzero_page(v.bv_page, v.bv_offset, v.bv_len), 653 memzero_page(v.bv_page, v.bv_offset, v.bv_len),
@@ -443,6 +662,11 @@ size_t iov_iter_copy_from_user_atomic(struct page *page,
443 struct iov_iter *i, unsigned long offset, size_t bytes) 662 struct iov_iter *i, unsigned long offset, size_t bytes)
444{ 663{
445 char *kaddr = kmap_atomic(page), *p = kaddr + offset; 664 char *kaddr = kmap_atomic(page), *p = kaddr + offset;
665 if (unlikely(i->type & ITER_PIPE)) {
666 kunmap_atomic(kaddr);
667 WARN_ON(1);
668 return 0;
669 }
446 iterate_all_kinds(i, bytes, v, 670 iterate_all_kinds(i, bytes, v,
447 __copy_from_user_inatomic((p += v.iov_len) - v.iov_len, 671 __copy_from_user_inatomic((p += v.iov_len) - v.iov_len,
448 v.iov_base, v.iov_len), 672 v.iov_base, v.iov_len),
@@ -455,8 +679,51 @@ size_t iov_iter_copy_from_user_atomic(struct page *page,
455} 679}
456EXPORT_SYMBOL(iov_iter_copy_from_user_atomic); 680EXPORT_SYMBOL(iov_iter_copy_from_user_atomic);
457 681
682static void pipe_advance(struct iov_iter *i, size_t size)
683{
684 struct pipe_inode_info *pipe = i->pipe;
685 struct pipe_buffer *buf;
686 int idx = i->idx;
687 size_t off = i->iov_offset;
688
689 if (unlikely(i->count < size))
690 size = i->count;
691
692 if (size) {
693 if (off) /* make it relative to the beginning of buffer */
694 size += off - pipe->bufs[idx].offset;
695 while (1) {
696 buf = &pipe->bufs[idx];
697 if (size <= buf->len)
698 break;
699 size -= buf->len;
700 idx = next_idx(idx, pipe);
701 }
702 buf->len = size;
703 i->idx = idx;
704 off = i->iov_offset = buf->offset + size;
705 }
706 if (off)
707 idx = next_idx(idx, pipe);
708 if (pipe->nrbufs) {
709 int unused = (pipe->curbuf + pipe->nrbufs) & (pipe->buffers - 1);
710 /* [curbuf,unused) is in use. Free [idx,unused) */
711 while (idx != unused) {
712 buf = &pipe->bufs[idx];
713 buf->ops->release(pipe, buf);
714 buf->ops = NULL;
715 idx = next_idx(idx, pipe);
716 pipe->nrbufs--;
717 }
718 }
719}
720
458void iov_iter_advance(struct iov_iter *i, size_t size) 721void iov_iter_advance(struct iov_iter *i, size_t size)
459{ 722{
723 if (unlikely(i->type & ITER_PIPE)) {
724 pipe_advance(i, size);
725 return;
726 }
460 iterate_and_advance(i, size, v, 0, 0, 0) 727 iterate_and_advance(i, size, v, 0, 0, 0)
461} 728}
462EXPORT_SYMBOL(iov_iter_advance); 729EXPORT_SYMBOL(iov_iter_advance);
@@ -466,6 +733,8 @@ EXPORT_SYMBOL(iov_iter_advance);
466 */ 733 */
467size_t iov_iter_single_seg_count(const struct iov_iter *i) 734size_t iov_iter_single_seg_count(const struct iov_iter *i)
468{ 735{
736 if (unlikely(i->type & ITER_PIPE))
737 return i->count; // it is a silly place, anyway
469 if (i->nr_segs == 1) 738 if (i->nr_segs == 1)
470 return i->count; 739 return i->count;
471 else if (i->type & ITER_BVEC) 740 else if (i->type & ITER_BVEC)
@@ -501,6 +770,19 @@ void iov_iter_bvec(struct iov_iter *i, int direction,
501} 770}
502EXPORT_SYMBOL(iov_iter_bvec); 771EXPORT_SYMBOL(iov_iter_bvec);
503 772
773void iov_iter_pipe(struct iov_iter *i, int direction,
774 struct pipe_inode_info *pipe,
775 size_t count)
776{
777 BUG_ON(direction != ITER_PIPE);
778 i->type = direction;
779 i->pipe = pipe;
780 i->idx = (pipe->curbuf + pipe->nrbufs) & (pipe->buffers - 1);
781 i->iov_offset = 0;
782 i->count = count;
783}
784EXPORT_SYMBOL(iov_iter_pipe);
785
504unsigned long iov_iter_alignment(const struct iov_iter *i) 786unsigned long iov_iter_alignment(const struct iov_iter *i)
505{ 787{
506 unsigned long res = 0; 788 unsigned long res = 0;
@@ -509,6 +791,11 @@ unsigned long iov_iter_alignment(const struct iov_iter *i)
509 if (!size) 791 if (!size)
510 return 0; 792 return 0;
511 793
794 if (unlikely(i->type & ITER_PIPE)) {
795 if (i->iov_offset && allocated(&i->pipe->bufs[i->idx]))
796 return size | i->iov_offset;
797 return size;
798 }
512 iterate_all_kinds(i, size, v, 799 iterate_all_kinds(i, size, v,
513 (res |= (unsigned long)v.iov_base | v.iov_len, 0), 800 (res |= (unsigned long)v.iov_base | v.iov_len, 0),
514 res |= v.bv_offset | v.bv_len, 801 res |= v.bv_offset | v.bv_len,
@@ -525,6 +812,11 @@ unsigned long iov_iter_gap_alignment(const struct iov_iter *i)
525 if (!size) 812 if (!size)
526 return 0; 813 return 0;
527 814
815 if (unlikely(i->type & ITER_PIPE)) {
816 WARN_ON(1);
817 return ~0U;
818 }
819
528 iterate_all_kinds(i, size, v, 820 iterate_all_kinds(i, size, v,
529 (res |= (!res ? 0 : (unsigned long)v.iov_base) | 821 (res |= (!res ? 0 : (unsigned long)v.iov_base) |
530 (size != v.iov_len ? size : 0), 0), 822 (size != v.iov_len ? size : 0), 0),
@@ -537,6 +829,47 @@ unsigned long iov_iter_gap_alignment(const struct iov_iter *i)
537} 829}
538EXPORT_SYMBOL(iov_iter_gap_alignment); 830EXPORT_SYMBOL(iov_iter_gap_alignment);
539 831
832static inline size_t __pipe_get_pages(struct iov_iter *i,
833 size_t maxsize,
834 struct page **pages,
835 int idx,
836 size_t *start)
837{
838 struct pipe_inode_info *pipe = i->pipe;
839 size_t n = push_pipe(i, maxsize, &idx, start);
840 if (!n)
841 return -EFAULT;
842
843 maxsize = n;
844 n += *start;
845 while (n >= PAGE_SIZE) {
846 get_page(*pages++ = pipe->bufs[idx].page);
847 idx = next_idx(idx, pipe);
848 n -= PAGE_SIZE;
849 }
850
851 return maxsize;
852}
853
854static ssize_t pipe_get_pages(struct iov_iter *i,
855 struct page **pages, size_t maxsize, unsigned maxpages,
856 size_t *start)
857{
858 unsigned npages;
859 size_t capacity;
860 int idx;
861
862 if (!sanity(i))
863 return -EFAULT;
864
865 data_start(i, &idx, start);
866 /* some of this one + all after this one */
867 npages = ((i->pipe->curbuf - idx - 1) & (i->pipe->buffers - 1)) + 1;
868 capacity = min(npages,maxpages) * PAGE_SIZE - *start;
869
870 return __pipe_get_pages(i, min(maxsize, capacity), pages, idx, start);
871}
872
540ssize_t iov_iter_get_pages(struct iov_iter *i, 873ssize_t iov_iter_get_pages(struct iov_iter *i,
541 struct page **pages, size_t maxsize, unsigned maxpages, 874 struct page **pages, size_t maxsize, unsigned maxpages,
542 size_t *start) 875 size_t *start)
@@ -547,6 +880,8 @@ ssize_t iov_iter_get_pages(struct iov_iter *i,
547 if (!maxsize) 880 if (!maxsize)
548 return 0; 881 return 0;
549 882
883 if (unlikely(i->type & ITER_PIPE))
884 return pipe_get_pages(i, pages, maxsize, maxpages, start);
550 iterate_all_kinds(i, maxsize, v, ({ 885 iterate_all_kinds(i, maxsize, v, ({
551 unsigned long addr = (unsigned long)v.iov_base; 886 unsigned long addr = (unsigned long)v.iov_base;
552 size_t len = v.iov_len + (*start = addr & (PAGE_SIZE - 1)); 887 size_t len = v.iov_len + (*start = addr & (PAGE_SIZE - 1));
@@ -582,6 +917,37 @@ static struct page **get_pages_array(size_t n)
582 return p; 917 return p;
583} 918}
584 919
920static ssize_t pipe_get_pages_alloc(struct iov_iter *i,
921 struct page ***pages, size_t maxsize,
922 size_t *start)
923{
924 struct page **p;
925 size_t n;
926 int idx;
927 int npages;
928
929 if (!sanity(i))
930 return -EFAULT;
931
932 data_start(i, &idx, start);
933 /* some of this one + all after this one */
934 npages = ((i->pipe->curbuf - idx - 1) & (i->pipe->buffers - 1)) + 1;
935 n = npages * PAGE_SIZE - *start;
936 if (maxsize > n)
937 maxsize = n;
938 else
939 npages = DIV_ROUND_UP(maxsize + *start, PAGE_SIZE);
940 p = get_pages_array(npages);
941 if (!p)
942 return -ENOMEM;
943 n = __pipe_get_pages(i, maxsize, p, idx, start);
944 if (n > 0)
945 *pages = p;
946 else
947 kvfree(p);
948 return n;
949}
950
585ssize_t iov_iter_get_pages_alloc(struct iov_iter *i, 951ssize_t iov_iter_get_pages_alloc(struct iov_iter *i,
586 struct page ***pages, size_t maxsize, 952 struct page ***pages, size_t maxsize,
587 size_t *start) 953 size_t *start)
@@ -594,6 +960,8 @@ ssize_t iov_iter_get_pages_alloc(struct iov_iter *i,
594 if (!maxsize) 960 if (!maxsize)
595 return 0; 961 return 0;
596 962
963 if (unlikely(i->type & ITER_PIPE))
964 return pipe_get_pages_alloc(i, pages, maxsize, start);
597 iterate_all_kinds(i, maxsize, v, ({ 965 iterate_all_kinds(i, maxsize, v, ({
598 unsigned long addr = (unsigned long)v.iov_base; 966 unsigned long addr = (unsigned long)v.iov_base;
599 size_t len = v.iov_len + (*start = addr & (PAGE_SIZE - 1)); 967 size_t len = v.iov_len + (*start = addr & (PAGE_SIZE - 1));
@@ -635,6 +1003,10 @@ size_t csum_and_copy_from_iter(void *addr, size_t bytes, __wsum *csum,
635 __wsum sum, next; 1003 __wsum sum, next;
636 size_t off = 0; 1004 size_t off = 0;
637 sum = *csum; 1005 sum = *csum;
1006 if (unlikely(i->type & ITER_PIPE)) {
1007 WARN_ON(1);
1008 return 0;
1009 }
638 iterate_and_advance(i, bytes, v, ({ 1010 iterate_and_advance(i, bytes, v, ({
639 int err = 0; 1011 int err = 0;
640 next = csum_and_copy_from_user(v.iov_base, 1012 next = csum_and_copy_from_user(v.iov_base,
@@ -673,6 +1045,10 @@ size_t csum_and_copy_to_iter(const void *addr, size_t bytes, __wsum *csum,
673 __wsum sum, next; 1045 __wsum sum, next;
674 size_t off = 0; 1046 size_t off = 0;
675 sum = *csum; 1047 sum = *csum;
1048 if (unlikely(i->type & ITER_PIPE)) {
1049 WARN_ON(1); /* for now */
1050 return 0;
1051 }
676 iterate_and_advance(i, bytes, v, ({ 1052 iterate_and_advance(i, bytes, v, ({
677 int err = 0; 1053 int err = 0;
678 next = csum_and_copy_to_user((from += v.iov_len) - v.iov_len, 1054 next = csum_and_copy_to_user((from += v.iov_len) - v.iov_len,
@@ -712,7 +1088,20 @@ int iov_iter_npages(const struct iov_iter *i, int maxpages)
712 if (!size) 1088 if (!size)
713 return 0; 1089 return 0;
714 1090
715 iterate_all_kinds(i, size, v, ({ 1091 if (unlikely(i->type & ITER_PIPE)) {
1092 struct pipe_inode_info *pipe = i->pipe;
1093 size_t off;
1094 int idx;
1095
1096 if (!sanity(i))
1097 return 0;
1098
1099 data_start(i, &idx, &off);
1100 /* some of this one + all after this one */
1101 npages = ((pipe->curbuf - idx - 1) & (pipe->buffers - 1)) + 1;
1102 if (npages >= maxpages)
1103 return maxpages;
1104 } else iterate_all_kinds(i, size, v, ({
716 unsigned long p = (unsigned long)v.iov_base; 1105 unsigned long p = (unsigned long)v.iov_base;
717 npages += DIV_ROUND_UP(p + v.iov_len, PAGE_SIZE) 1106 npages += DIV_ROUND_UP(p + v.iov_len, PAGE_SIZE)
718 - p / PAGE_SIZE; 1107 - p / PAGE_SIZE;
@@ -737,6 +1126,10 @@ EXPORT_SYMBOL(iov_iter_npages);
737const void *dup_iter(struct iov_iter *new, struct iov_iter *old, gfp_t flags) 1126const void *dup_iter(struct iov_iter *new, struct iov_iter *old, gfp_t flags)
738{ 1127{
739 *new = *old; 1128 *new = *old;
1129 if (unlikely(new->type & ITER_PIPE)) {
1130 WARN_ON(1);
1131 return NULL;
1132 }
740 if (new->type & ITER_BVEC) 1133 if (new->type & ITER_BVEC)
741 return new->bvec = kmemdup(new->bvec, 1134 return new->bvec = kmemdup(new->bvec,
742 new->nr_segs * sizeof(struct bio_vec), 1135 new->nr_segs * sizeof(struct bio_vec),