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Revert "Revert "dm verity: fix FEC for RS roots unaligned to blo..."
Revert submission 1672946 Reason for revert: getting back to mainline with a proper fix Reverted Changes: I96ee9a0a8:Revert "dm bufio: subtract the number of initial s... I23d4da47b:Revert "dm verity: fix FEC for RS roots unaligned ... Change-Id: I976307e4f85fc6e13286f4305ef0eb945d9467ce
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@@ -61,19 +61,18 @@ static int fec_decode_rs8(struct dm_verity *v, struct dm_verity_fec_io *fio,
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static u8 *fec_read_parity(struct dm_verity *v, u64 rsb, int index,
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unsigned *offset, struct dm_buffer **buf)
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{
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u64 position, block;
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u64 position, block, rem;
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u8 *res;
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position = (index + rsb) * v->fec->roots;
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block = position >> v->data_dev_block_bits;
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*offset = (unsigned)(position - (block << v->data_dev_block_bits));
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block = div64_u64_rem(position, v->fec->roots << SECTOR_SHIFT, &rem);
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*offset = (unsigned)rem;
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res = dm_bufio_read(v->fec->bufio, v->fec->start + block, buf);
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res = dm_bufio_read(v->fec->bufio, block, buf);
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if (IS_ERR(res)) {
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DMERR("%s: FEC %llu: parity read failed (block %llu): %ld",
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v->data_dev->name, (unsigned long long)rsb,
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(unsigned long long)(v->fec->start + block),
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PTR_ERR(res));
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(unsigned long long)block, PTR_ERR(res));
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*buf = NULL;
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}
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@@ -155,7 +154,7 @@ static int fec_decode_bufs(struct dm_verity *v, struct dm_verity_fec_io *fio,
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/* read the next block when we run out of parity bytes */
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offset += v->fec->roots;
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if (offset >= 1 << v->data_dev_block_bits) {
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if (offset >= v->fec->roots << SECTOR_SHIFT) {
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dm_bufio_release(buf);
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par = fec_read_parity(v, rsb, block_offset, &offset, &buf);
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@@ -674,7 +673,7 @@ int verity_fec_ctr(struct dm_verity *v)
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{
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struct dm_verity_fec *f = v->fec;
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struct dm_target *ti = v->ti;
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u64 hash_blocks;
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u64 hash_blocks, fec_blocks;
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int ret;
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if (!verity_fec_is_enabled(v)) {
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@@ -744,15 +743,17 @@ int verity_fec_ctr(struct dm_verity *v)
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}
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f->bufio = dm_bufio_client_create(f->dev->bdev,
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1 << v->data_dev_block_bits,
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f->roots << SECTOR_SHIFT,
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1, 0, NULL, NULL);
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if (IS_ERR(f->bufio)) {
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ti->error = "Cannot initialize FEC bufio client";
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return PTR_ERR(f->bufio);
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}
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if (dm_bufio_get_device_size(f->bufio) <
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((f->start + f->rounds * f->roots) >> v->data_dev_block_bits)) {
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dm_bufio_set_sector_offset(f->bufio, f->start << (v->data_dev_block_bits - SECTOR_SHIFT));
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fec_blocks = div64_u64(f->rounds * f->roots, v->fec->roots << SECTOR_SHIFT);
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if (dm_bufio_get_device_size(f->bufio) < fec_blocks) {
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ti->error = "FEC device is too small";
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return -E2BIG;
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}
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