bounce: Refactor __blk_queue_bounce to not use bi_io_vec
A bunch of what __blk_queue_bounce() was doing was problematic for the immutable bvec work; this cleans that up and the code is quite a bit smaller, too. The __bio_for_each_segment() in copy_to_high_bio_irq() was changed because that one's looping over the original bio, not the bounce bio - a later patch renames __bio_for_each_segment() -> bio_for_each_segment_all(), and documents that bio_for_each_segment_all() is only for code that owns the bio. Signed-off-by: Kent Overstreet <koverstreet@google.com> CC: Jens Axboe <axboe@kernel.dk>
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parent
d3b45c2a05
commit
6bc454d150
73
mm/bounce.c
73
mm/bounce.c
@ -101,7 +101,7 @@ static void copy_to_high_bio_irq(struct bio *to, struct bio *from)
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struct bio_vec *tovec, *fromvec;
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int i;
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__bio_for_each_segment(tovec, to, i, 0) {
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bio_for_each_segment(tovec, to, i) {
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fromvec = from->bi_io_vec + i;
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/*
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@ -218,78 +218,43 @@ static int must_snapshot_stable_pages(struct request_queue *q, struct bio *bio)
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static void __blk_queue_bounce(struct request_queue *q, struct bio **bio_orig,
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mempool_t *pool, int force)
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{
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struct page *page;
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struct bio *bio = NULL;
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int i, rw = bio_data_dir(*bio_orig);
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struct bio *bio;
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int rw = bio_data_dir(*bio_orig);
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struct bio_vec *to, *from;
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unsigned i;
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bio_for_each_segment(from, *bio_orig, i) {
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page = from->bv_page;
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bio_for_each_segment(from, *bio_orig, i)
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if (page_to_pfn(from->bv_page) > queue_bounce_pfn(q))
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goto bounce;
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return;
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bounce:
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bio = bio_clone_bioset(*bio_orig, GFP_NOIO, fs_bio_set);
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bio_for_each_segment(to, bio, i) {
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struct page *page = to->bv_page;
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/*
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* is destination page below bounce pfn?
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*/
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if (page_to_pfn(page) <= queue_bounce_pfn(q) && !force)
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continue;
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/*
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* irk, bounce it
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*/
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if (!bio) {
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unsigned int cnt = (*bio_orig)->bi_vcnt;
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bio = bio_alloc(GFP_NOIO, cnt);
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memset(bio->bi_io_vec, 0, cnt * sizeof(struct bio_vec));
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}
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to = bio->bi_io_vec + i;
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to->bv_page = mempool_alloc(pool, q->bounce_gfp);
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to->bv_len = from->bv_len;
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to->bv_offset = from->bv_offset;
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inc_zone_page_state(to->bv_page, NR_BOUNCE);
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to->bv_page = mempool_alloc(pool, q->bounce_gfp);
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if (rw == WRITE) {
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char *vto, *vfrom;
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flush_dcache_page(from->bv_page);
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flush_dcache_page(page);
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vto = page_address(to->bv_page) + to->bv_offset;
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vfrom = kmap(from->bv_page) + from->bv_offset;
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vfrom = kmap_atomic(page) + to->bv_offset;
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memcpy(vto, vfrom, to->bv_len);
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kunmap(from->bv_page);
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kunmap_atomic(vfrom);
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}
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}
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/*
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* no pages bounced
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*/
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if (!bio)
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return;
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trace_block_bio_bounce(q, *bio_orig);
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/*
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* at least one page was bounced, fill in possible non-highmem
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* pages
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*/
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__bio_for_each_segment(from, *bio_orig, i, 0) {
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to = bio_iovec_idx(bio, i);
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if (!to->bv_page) {
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to->bv_page = from->bv_page;
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to->bv_len = from->bv_len;
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to->bv_offset = from->bv_offset;
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}
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}
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bio->bi_bdev = (*bio_orig)->bi_bdev;
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bio->bi_flags |= (1 << BIO_BOUNCED);
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bio->bi_sector = (*bio_orig)->bi_sector;
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bio->bi_rw = (*bio_orig)->bi_rw;
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bio->bi_vcnt = (*bio_orig)->bi_vcnt;
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bio->bi_idx = (*bio_orig)->bi_idx;
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bio->bi_size = (*bio_orig)->bi_size;
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if (pool == page_pool) {
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bio->bi_end_io = bounce_end_io_write;
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