Commit Graph

5 Commits (ceba81ce354e0fe4dafcb1f8d3ba704d740178a7)

Author SHA1 Message Date
velioglu ceba81ce35 Move physical planner checks to logical planner 2017-08-11 10:09:47 +03:00
velioglu 45717dd013 Check equivalence on reference tables for subquery pushdown 2017-08-11 10:09:47 +03:00
Jason Petersen 2204da19f0 Support PostgreSQL 10 (#1379)
Adds support for PostgreSQL 10 by copying in the requisite ruleutils
and updating all API usages to conform with changes in PostgreSQL 10.
Most changes are fairly minor but they are numerous. One particular
obstacle was the change in \d behavior in PostgreSQL 10's psql; I had
to add SQL implementations (views, mostly) to mimic the pre-10 output.
2017-06-26 02:35:46 -06:00
Önder Kalacı ad5cd326a4 Subquery pushdown - main branch (#1323)
* Enabling physical planner for subquery pushdown changes

This commit applies the logic that exists in INSERT .. SELECT
planning to the subquery pushdown changes.

The main algorithm is followed as :
   - pick an anchor relation (i.e., target relation)
   - per each target shard interval
       - add the target shard interval's shard range
         as a restriction to the relations (if all relations
         joined on the partition keys)
        - Check whether the query is router plannable per
          target shard interval.
        - If router plannable, create a task

* Add union support within the JOINS

This commit adds support for UNION/UNION ALL subqueries that are
in the following form:

     .... (Q1 UNION Q2 UNION ...) as union_query JOIN (QN) ...

In other words, we currently do NOT support the queries that are
in the following form where union query is not JOINed with
other relations/subqueries :

     .... (Q1 UNION Q2 UNION ...) as union_query ....

* Subquery pushdown planner uses original query

With this commit, we change the input to the logical planner for
subquery pushdown. Before this commit, the planner was relying
on the query tree that is transformed by the postgresql planner.
After this commit, the planner uses the original query. The main
motivation behind this change is the simplify deparsing of
subqueries.

* Enable top level subquery join queries

This work enables
- Top level subquery joins
- Joins between subqueries and relations
- Joins involving more than 2 range table entries

A new regression test file is added to reflect enabled test cases

* Add top level union support

This commit adds support for UNION/UNION ALL subqueries that are
in the following form:

     .... (Q1 UNION Q2 UNION ...) as union_query ....

In other words, Citus supports allow top level
unions being wrapped into aggregations queries
and/or simple projection queries that only selects
some fields from the lower level queries.

* Disallow subqueries without a relation in the range table list for subquery pushdown

This commit disallows subqueries without relation in the range table
list. This commit is only applied for subquery pushdown. In other words,
we do not add this limitation for single table re-partition subqueries.

The reasoning behind this limitation is that if we allow pushing down
such queries, the result would include (shardCount * expectedResults)
where in a non distributed world the result would be (expectedResult)
only.

* Disallow subqueries without a relation in the range table list for INSERT .. SELECT

This commit disallows subqueries without relation in the range table
list. This commit is only applied for INSERT.. SELECT queries.

The reasoning behind this limitation is that if we allow pushing down
such queries, the result would include (shardCount * expectedResults)
where in a non distributed world the result would be (expectedResult)
only.

* Change behaviour of subquery pushdown flag (#1315)

This commit changes the behaviour of the citus.subquery_pushdown flag.
Before this commit, the flag is used to enable subquery pushdown logic. But,
with this commit, that behaviour is enabled by default. In other words, the
flag is now useless. We prefer to keep the flag since we don't want to break
the backward compatibility. Also, we may consider using that flag for other
purposes in the next commits.

* Require subquery_pushdown when limit is used in subquery

Using limit in subqueries may cause returning incorrect
results. Therefore we allow limits in subqueries only
if user explicitly set subquery_pushdown flag.

* Evaluate expressions on the LIMIT clause (#1333)

Subquery pushdown uses orignal query, the LIMIT and OFFSET clauses
are not evaluated. However, logical optimizer expects these expressions
are already evaluated by the standard planner. This commit manually
evaluates the functions on the logical planner for subquery pushdown.

* Better format subquery regression tests (#1340)

* Style fix for subquery pushdown regression tests

With this commit we intented a more consistent style for the
regression tests we've added in the
  - multi_subquery_union.sql
  - multi_subquery_complex_queries.sql
  - multi_subquery_behavioral_analytics.sql

* Enable the tests that are temporarily commented

This commit enables some of the regression tests that were commented
out until all the development is done.

* Fix merge conflicts (#1347)

 - Update regression tests to meet the changes in the regression
   test output.
 - Replace Ifs with Asserts given that the check is already done
 - Update shard pruning outputs

* Add view regression tests for increased subquery coverage (#1348)

- joins between views and tables
- joins between views
- union/union all queries involving views
- views with limit
- explain queries with view

* Improve btree operators for the subquery tests

This commit adds the missing comprasion for subquery composite key
btree comparator.
2017-04-29 04:09:48 +03:00
Onder Kalaci 1cb6a34ba8 Remove uninstantiated qual logic, use attribute equivalences
In this PR, we aim to deduce whether each of the RTE_RELATION
is joined with at least on another RTE_RELATION on their partition keys. If each
RTE_RELATION follows the above rule, we can conclude that all RTE_RELATIONs are
joined on their partition keys.

In order to do that, we invented a new equivalence class namely:
AttributeEquivalenceClass. In very simple words, a AttributeEquivalenceClass is
identified by an unique id and consists of a list of AttributeEquivalenceMembers.

Each AttributeEquivalenceMember is designed to identify attributes uniquely within the
whole query. The necessity of this arise since varno attributes are defined within
a single level of a query. Instead, here we want to identify each RTE_RELATION uniquely
and try to find equality among each RTE_RELATION's partition key.

Whenever we find an equality clause A = B, where both A and B originates from
relation attributes (i.e., not random expressions), we create an
AttributeEquivalenceClass to record this knowledge. If we later find another
equivalence B = C, we create another AttributeEquivalenceClass. Finally, we can
apply transitity rules and generate a new AttributeEquivalenceClass which includes
A, B and C.

Note that equality among the members are identified by the varattno and rteIdentity.

Each equality among RTE_RELATION is saved using an AttributeEquivalenceClass where
each member attribute is identified by a AttributeEquivalenceMember. In the final
step, we try generate a common attribute equivalence class that holds as much as
AttributeEquivalenceMembers whose attributes are a partition keys.
2017-04-13 11:51:26 +03:00