Fix 'zfs recv' of non large_dnode send streams
Currently, there is a bug where older send streams without the DMU_BACKUP_FEATURE_LARGE_DNODE flag are not handled correctly. The code in receive_object() fails to handle cases where drro->drr_dn_slots is set to 0, which is always the case when the sending code does not support this feature flag. This patch fixes the issue by ensuring that that a value of 0 is treated as DNODE_MIN_SLOTS. Tested-by: DHE <git@dehacked.net> Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Signed-off-by: Tom Caputi <tcaputi@datto.com> Closes #7617 Closes #7662
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@ -261,6 +261,9 @@ dmu_object_reclaim_dnsize(objset_t *os, uint64_t object, dmu_object_type_t ot,
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int dn_slots = dnodesize >> DNODE_SHIFT;
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int err;
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if (dn_slots == 0)
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dn_slots = DNODE_MIN_SLOTS;
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if (object == DMU_META_DNODE_OBJECT)
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return (SET_ERROR(EBADF));
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@ -2454,6 +2454,8 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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dmu_tx_t *tx;
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uint64_t object;
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int err;
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uint8_t dn_slots = drro->drr_dn_slots != 0 ?
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drro->drr_dn_slots : DNODE_MIN_SLOTS;
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if (drro->drr_type == DMU_OT_NONE ||
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!DMU_OT_IS_VALID(drro->drr_type) ||
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@ -2465,7 +2467,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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drro->drr_blksz > spa_maxblocksize(dmu_objset_spa(rwa->os)) ||
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drro->drr_bonuslen >
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DN_BONUS_SIZE(spa_maxdnodesize(dmu_objset_spa(rwa->os))) ||
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drro->drr_dn_slots >
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dn_slots >
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(spa_maxdnodesize(dmu_objset_spa(rwa->os)) >> DNODE_SHIFT)) {
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return (SET_ERROR(EINVAL));
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}
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@ -2481,7 +2483,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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drro->drr_indblkshift > SPA_MAXBLOCKSHIFT ||
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drro->drr_nlevels > DN_MAX_LEVELS ||
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drro->drr_nblkptr > DN_MAX_NBLKPTR ||
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DN_SLOTS_TO_BONUSLEN(drro->drr_dn_slots) <
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DN_SLOTS_TO_BONUSLEN(dn_slots) <
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drro->drr_raw_bonuslen)
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return (SET_ERROR(EINVAL));
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} else {
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@ -2519,7 +2521,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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if (drro->drr_blksz != doi.doi_data_block_size ||
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nblkptr < doi.doi_nblkptr ||
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drro->drr_dn_slots != doi.doi_dnodesize >> DNODE_SHIFT ||
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dn_slots != doi.doi_dnodesize >> DNODE_SHIFT ||
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(rwa->raw &&
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(indblksz != doi.doi_metadata_block_size ||
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drro->drr_nlevels < doi.doi_indirection))) {
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@ -2540,7 +2542,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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* instead.
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*/
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if ((rwa->raw && drro->drr_nlevels < doi.doi_indirection) ||
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drro->drr_dn_slots != doi.doi_dnodesize >> DNODE_SHIFT) {
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dn_slots != doi.doi_dnodesize >> DNODE_SHIFT) {
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err = dmu_free_long_object(rwa->os, drro->drr_object);
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if (err != 0)
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return (SET_ERROR(EINVAL));
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@ -2569,11 +2571,11 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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* another object from the previous snapshot. We must free
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* these objects before we attempt to allocate the new dnode.
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*/
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if (drro->drr_dn_slots > 1) {
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if (dn_slots > 1) {
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boolean_t need_sync = B_FALSE;
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for (uint64_t slot = drro->drr_object + 1;
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slot < drro->drr_object + drro->drr_dn_slots;
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slot < drro->drr_object + dn_slots;
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slot++) {
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dmu_object_info_t slot_doi;
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@ -2609,7 +2611,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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err = dmu_object_claim_dnsize(rwa->os, drro->drr_object,
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drro->drr_type, drro->drr_blksz,
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drro->drr_bonustype, drro->drr_bonuslen,
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drro->drr_dn_slots << DNODE_SHIFT, tx);
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dn_slots << DNODE_SHIFT, tx);
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} else if (drro->drr_type != doi.doi_type ||
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drro->drr_blksz != doi.doi_data_block_size ||
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drro->drr_bonustype != doi.doi_bonus_type ||
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@ -2618,7 +2620,7 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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err = dmu_object_reclaim_dnsize(rwa->os, drro->drr_object,
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drro->drr_type, drro->drr_blksz,
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drro->drr_bonustype, drro->drr_bonuslen,
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drro->drr_dn_slots << DNODE_SHIFT, tx);
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dn_slots << DNODE_SHIFT, tx);
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}
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if (err != 0) {
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dmu_tx_commit(tx);
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