obey the following 5 meanings of terminology _cluster_ in Patroni.
1. PostgreSQL cluster: a cluster of postgresql instances which have the same system identifier.
2. MPP cluster: a cluster of PostgreSQL clusters that one of them acts as Coodinator and others act as workers.
3. Coordinator cluster: a PostgreSQL cluster which act the role of 'coordinator' within a MPP cluster.
4. Worker cluster: a PostgreSQL cluster which act the role 'worker' within a MPP cluster.
5. Patroni cluster: all cluster managed by Patroni can be called Patroni cluster, but we usually use this term to refering a single PostgreSQL cluster or an MPP cluster.
the main issue was that the configuration for Citus handler and for DCS existed in two places, while ideally AbstractDCS should not know many details about what kind of MPP is in use.
To solve the problem we first dynamically create an object implementing AbstractMPP interfaces, which is a configuration for DCS. Later this object is used to instantiate the class implementing AbstractMPPHandler interface.
This is just a starting point, which does some heavy lifting. As a next steps all kind of variables named after Citus in files different from patroni/postgres/mpp/citus.py should be renamed.
In other words this commit takes over the most complex part of #2940, which was never implemented.
Co-authored-by: zhjwpku <[email protected]>
pass reference to a last known leader object in order to avoid obtaining it from the `AbstractDCS.cluster` cache.
This change is useful for Consul, Etcd3 and Zookeeper implementations.
Make it return the new `SyncState` object in order to avoid reading the new cluster state in the Ha.process_sync_replication().
Now it is a small optimization, but it will become very handy in the quorum commit feature.
* Ignore D401 in flake8-docstrings
* Fix newly reported flake8 issues, ignore the old W503 rule
* rely on concatenation of adjecent strings
* Format behave scripts
* Reformat ha.py according to new rules
Co-authored-by: Alexander Kukushkin <[email protected]>
Citus cluster (coordinator and workers) will be stored in DCS as a fleet of Patroni logically grouped together:
```
/service/batman/
/service/batman/0/
/service/batman/0/initialize
/service/batman/0/leader
/service/batman/0/members/
/service/batman/0/members/m1
/service/batman/0/members/m2
/service/batman/
/service/batman/1/
/service/batman/1/initialize
/service/batman/1/leader
/service/batman/1/members/
/service/batman/1/members/m1
/service/batman/1/members/m2
...
```
Where 0 is a Citus group for coordinator and 1, 2, etc are worker groups.
Such hierarchy allows reading the entire Citus cluster with a single call to DCS (except Zookeeper).
The get_cluster() method will be reading the entire Citus cluster on the coordinator because it needs to discover workers. For the worker cluster it will be reading the subtree of its own group.
Besides that we introduce a new method get_citus_coordinator(). It will be used only by worker clusters.
Since there is no hierarchical structures on K8s we will use the citus group suffix on all objects that Patroni creates.
E.g.
```
batman-0-leader # the leader config map for the coordinator
batman-0-config # the config map holding initialize, config, and history "keys"
...
batman-1-leader # the leader config map for worker group 1
batman-1-config
...
```
Citus integration is enabled from patroni.yaml:
```yaml
citus:
database: citus
group: 0 # 0 is for coordinator, 1, 2, etc are for workers
```
If enabled, Patroni will create the database, citus extension in it, and INSERTs INTO `pg_dist_authinfo` information required for Citus nodes to communicate between each other, i.e. 'password', 'sslcert', 'sslkey' for superuser if they are defined in the Patroni configuration file.
When the new Citus coordinator/worker is bootstrapped, Patroni adds `synchronous_mode: on` to the `bootstrap.dcs` section.
Besides that, Patroni takes over management of some Postgres GUCs:
- `shared_preload_libraries` - Patroni ensures that the "citus" is added to the first place
- `max_prepared_transactions` - if not set or set to 0, Patroni changes the value to `max_connections*2`
- wal_level - automatically set to logical. It is used by Citus to move/split shards. Under the hood Citus is creating/removing replication slots and they are automatically added by Patroni to the `ignore_slots` configuration to avoid accidental removal.
The coordinator primary actively discovers worker primary nodes and registers/updates them in the `pg_dist_node` table using
citus_add_node() and citus_update_node() functions.
Patroni running on the coordinator provides the new REST API endpoint: `POST /citus`. It is used by workers to facilitate controlled switchovers and restarts of worker primaries.
When the worker primary needs to shut down Postgres because of restart or switchover, it calls the `POST /citus` endpoint on the coordinator and the Patroni on the coordinator starts a transaction and calls `citus_update_node(nodeid, 'host-demoted', port)` in order to pause client connections that work with the given worker.
Once the new leader is elected or postgres started back, they perform another call to the `POST/citus` endpoint, that does another `citus_update_node()` call with actual hostname and port and commits a transaction. After transaction is committed, coordinator reestablishes connections to the worker node and client connections are unblocked.
If clients don't run long transaction the operation finishes without client visible errors, but only a short latency spike.
All operations on the `pg_dist_node` are serialized by Patroni on the coordinator. It allows to have more control and ROLLBACK transaction in progress if its lifetime exceeding a certain threshold and there are other worker nodes should be updated.
Previously such an exception was raised only from the `get_cluster()` method, and now we will to do the same from the `update_leader()` and `attempt_to_acquire_leader()` methods.
These methods influence Postgres promotion and demotion and we want to make a difference between different types of failures. Specifically, if calls have failed because DCS isn't accessible or due to a timeout.
This commit is extracted from the #2379
- Simplify setup.py: remove unneeded features and get rid of deprecation warnings
- Compatibility with Python 3.10: handle `threading.Event.isSet()` deprecation
- Make sure setup.py could run without `six`: move Patroni class and main function to the `__main__.py`. The `__init__.py` will have only a few functions used by the Patroni class and from the setup.py
- Resolve Node IP for every connection attempt
- Handle exception with connection failures due to failed resolve
- Set PySyncObj DNS Cache timeouts aligned with `loop_wait` and `ttl`
In addition to that, postpone the leader race for freshly started Raft nodes. It will help with the situation when the leader node was alone and demoted the Postgres and after that, the replica arrives, and quickly takes the leader lock without really performing the leader race.
Close https://github.com/zalando/patroni/issues/1930, https://github.com/zalando/patroni/issues/1931
and run raft behave tests with encryption enabled.
Using the new `pysyncobj` release allowed us to get rid of a lot of hacks with accessing private properties and methods of the parent class and reduce the size of the `raft.py`.
Close https://github.com/zalando/patroni/issues/1746
Effectively, this PR consists of a few changes:
1. The easy part:
In case of permanent logical slots are defined in the global configuration, Patroni on the primary will not only create them, but also periodically update DCS with the current values of `confirmed_flush_lsn` for all these slots.
In order to reduce the number of interactions with DCS the new `/status` key was introduced. It will contain the json object with `optime` and `slots` keys. For backward compatibility the `/optime/leader` will be updated if there are members with old Patroni in the cluster.
2. The tricky part:
On replicas that are eligible for a failover, Patroni creates the logical replication slot by copying the slot file from the primary and restarting the replica. In order to copy the slot file Patroni opens a connection to the primary with `rewind` or `superuser` credentials and calls `pg_read_binary_file()` function.
When the logical slot already exists on the replica Patroni periodically calls `pg_replication_slot_advance()` function, which allows moving the slot forward.
3. Additional requirements:
In order to ensure that primary doesn't cleanup tuples from pg_catalog that are required for logical decoding, Patroni enables `hot_standby_feedback` on replicas with logical slots and on cascading replicas if they are used for streaming by replicas with logical slots.
4. When logical slots are copied from to the replica there is a timeframe when it could be not safe to use them after promotion. Right now there is no protection from promoting such a replica. But, Patroni will show the warning with names of the slots that might be not safe to use.
Compatibility.
The `pg_replication_slot_advance()` function is only available starting from PostgreSQL 11. For older Postgres versions Patroni will refuse to create the logical slot on the primary.
The old "permanent slots" feature, which creates logical slots right after promotion and before allowing connections, was removed.
Close: https://github.com/zalando/patroni/issues/1749
1. Fix flaky behave tests with zookeeper. First, install/start binaries (zookeeper/localkube) and only after that continue with installing requirements and running behave. Previously zookeeper didn't had enough time to start and tests sometimes were failing.
2. Fix flaky raft tests. Despite observations of MacOS slowness, for some unknown reason the delete test with a very small timeout was not timing out, but succeeding, causing unit-tests to fail. The solution - do not rely on the actual timeout, but mock it.
* pg_rewind error messages contain '/' as directory separator
* fix Raft unit tests on win
* fix validator unit tests on win
* fix keepalive unit tests on win
* make standby cluster behave tests less shaky
* new node can join the cluster dynamically and become a part of consensus
* it is also possible to join only Patroni cluster (without adding the node to the raft), just comment or remove `raft.self_addr` for that
* when the node joins the cluster it is using values from `raft.partner_addrs` only for initial discovery.
* It is possible to run Patroni and Postgres on two nodes plus one node with `patroni_raft_controller` (without Patroni and Postgres). In such setup one can temporarily lose one node without affecting the primary.