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After BIO's io operation is complete the data are verified against fs-verity's Merkle tree. Verification work is done in a separate workqueue. The read path ioend iomap_read_ioend are stored side by side with BIOs if FS_VERITY is enabled. Signed-off-by: Andrey Albershteyn Signed-off-by: Christoph Hellwig --- fs/iomap/buffered-io.c | 92 +++++++++++++++++++++++++++++++++++++----- 1 file changed, 83 insertions(+), 9 deletions(-) diff --git a/fs/iomap/buffered-io.c b/fs/iomap/buffered-io.c index 093c4515b22a..e27a8af4b351 100644 --- a/fs/iomap/buffered-io.c +++ b/fs/iomap/buffered-io.c @@ -6,6 +6,7 @@ #include #include #include +#include #include #include #include @@ -330,6 +331,56 @@ static inline bool iomap_block_needs_zeroing(const struct iomap_iter *iter, pos >= i_size_read(iter->inode); } +#ifdef CONFIG_FS_VERITY +struct iomap_fsverity_bio { + struct work_struct work; + struct bio bio; +}; +static struct bio_set iomap_fsverity_bioset; + +static void +iomap_read_fsverify_end_io_work(struct work_struct *work) +{ + struct iomap_fsverity_bio *fbio = + container_of(work, struct iomap_fsverity_bio, work); + + fsverity_verify_bio(&fbio->bio); + iomap_read_end_io(&fbio->bio); +} + +static void +iomap_read_fsverity_end_io(struct bio *bio) +{ + struct iomap_fsverity_bio *fbio = + container_of(bio, struct iomap_fsverity_bio, bio); + + INIT_WORK(&fbio->work, iomap_read_fsverify_end_io_work); + queue_work(bio->bi_private, &fbio->work); +} +#endif /* CONFIG_FS_VERITY */ + +static struct bio *iomap_read_bio_alloc(struct inode *inode, + struct block_device *bdev, int nr_vecs, gfp_t gfp) +{ + struct bio *bio; + +#ifdef CONFIG_FS_VERITY + if (fsverity_active(inode)) { + bio = bio_alloc_bioset(bdev, nr_vecs, REQ_OP_READ, gfp, + &iomap_fsverity_bioset); + if (bio) { + bio->bi_private = inode->i_sb->s_read_done_wq; + bio->bi_end_io = iomap_read_fsverity_end_io; + } + return bio; + } +#endif + bio = bio_alloc(bdev, nr_vecs, REQ_OP_READ, gfp); + if (bio) + bio->bi_end_io = iomap_read_end_io; + return bio; +} + static loff_t iomap_readpage_iter(const struct iomap_iter *iter, struct iomap_readpage_ctx *ctx, loff_t offset) { @@ -353,6 +404,12 @@ static loff_t iomap_readpage_iter(const struct iomap_iter *iter, if (iomap_block_needs_zeroing(iter, pos)) { folio_zero_range(folio, poff, plen); + if (fsverity_active(iter->inode) && + !fsverity_verify_blocks(folio, plen, poff)) { + folio_set_error(folio); + goto done; + } + iomap_set_range_uptodate(folio, poff, plen); goto done; } @@ -370,28 +427,29 @@ static loff_t iomap_readpage_iter(const struct iomap_iter *iter, !bio_add_folio(ctx->bio, folio, plen, poff)) { gfp_t gfp = mapping_gfp_constraint(folio->mapping, GFP_KERNEL); gfp_t orig_gfp = gfp; - unsigned int nr_vecs = DIV_ROUND_UP(length, PAGE_SIZE); if (ctx->bio) submit_bio(ctx->bio); if (ctx->rac) /* same as readahead_gfp_mask */ gfp |= __GFP_NORETRY | __GFP_NOWARN; - ctx->bio = bio_alloc(iomap->bdev, bio_max_segs(nr_vecs), - REQ_OP_READ, gfp); + + ctx->bio = iomap_read_bio_alloc(iter->inode, iomap->bdev, + bio_max_segs(DIV_ROUND_UP(length, PAGE_SIZE)), + gfp); + /* * If the bio_alloc fails, try it again for a single page to * avoid having to deal with partial page reads. This emulates * what do_mpage_read_folio does. */ if (!ctx->bio) { - ctx->bio = bio_alloc(iomap->bdev, 1, REQ_OP_READ, - orig_gfp); + ctx->bio = iomap_read_bio_alloc(iter->inode, + iomap->bdev, 1, orig_gfp); } if (ctx->rac) ctx->bio->bi_opf |= REQ_RAHEAD; ctx->bio->bi_iter.bi_sector = sector; - ctx->bio->bi_end_io = iomap_read_end_io; bio_add_folio_nofail(ctx->bio, folio, plen, poff); } @@ -471,6 +529,7 @@ static loff_t iomap_readahead_iter(const struct iomap_iter *iter, * iomap_readahead - Attempt to read pages from a file. * @rac: Describes the pages to be read. * @ops: The operations vector for the filesystem. + * @wq: Workqueue for post-I/O processing (only need for fsverity) * * This function is for filesystems to call to implement their readahead * address_space operation. @@ -1996,10 +2055,25 @@ iomap_writepages(struct address_space *mapping, struct writeback_control *wbc, } EXPORT_SYMBOL_GPL(iomap_writepages); +#define IOMAP_POOL_SIZE (4 * (PAGE_SIZE / SECTOR_SIZE)) + static int __init iomap_init(void) { - return bioset_init(&iomap_ioend_bioset, 4 * (PAGE_SIZE / SECTOR_SIZE), - offsetof(struct iomap_ioend, io_inline_bio), - BIOSET_NEED_BVECS); + int error; + + error = bioset_init(&iomap_ioend_bioset, IOMAP_POOL_SIZE, + offsetof(struct iomap_ioend, io_inline_bio), + BIOSET_NEED_BVECS); +#ifdef CONFIG_FS_VERITY + if (error) + return error; + + error = bioset_init(&iomap_fsverity_bioset, IOMAP_POOL_SIZE, + offsetof(struct iomap_fsverity_bio, bio), + BIOSET_NEED_BVECS); + if (error) + bioset_exit(&iomap_ioend_bioset); +#endif + return error; } fs_initcall(iomap_init);