* fix(query): follow timestamp insert assignment lineage Signed-off-by: Dennis Zhuang <killme2008@gmail.com> * fix(query): fold constant insert timestamp literals at the assignment Following lineage by retyping the source column changed every output column that reads it: a string column sharing the literal was silently rewritten to a formatted timestamp, and a nanosecond column was truncated to the precision of whichever column was converted first. Resolve the constant read-only and fold it into the assignment expression instead, which leaves the source query untouched and also covers literals behind WHERE, ORDER BY and DISTINCT. VALUES rows and UNION branches carry per-row values, so they keep the in-place rewrite, now guarded against columns with more than one consumer. Signed-off-by: Dennis Zhuang <killme2008@gmail.com> * test(query): strengthen insert lineage regression Signed-off-by: Dennis Zhuang <killme2008@gmail.com> * test(query): trim redundant insert coverage Signed-off-by: Dennis Zhuang <killme2008@gmail.com> * fix(query): rebuild insert unions loosely and cover UNION distinct Per review: rebuilding a rewritten union with the strict constructor rejected legal pre-coercion plans whose untouched columns still differ across branches. Use try_new_with_loose_types, matching the SQL planner. Distinct::All joins the rewrite passthrough so UNION (distinct) literals get session-timezone parsing like UNION ALL; deduplication then keys on parsed instants instead of raw strings. The top-level rewrite path gains the same single-consumer guard as rewrite_projection for hand-built DML plans that share a source column between targets. Signed-off-by: Dennis Zhuang <killme2008@gmail.com> * style(query): tighten insert assignment comments Signed-off-by: Dennis Zhuang <killme2008@gmail.com> --------- Signed-off-by: Dennis Zhuang <killme2008@gmail.com> (cherry picked from commit b2fc4b9cba4c0e137cc6f704d88dfe7f187b57aa) (cherry picked from commit 1775e31a7916cf09a7da8238cebea5e3d74817f7)
Sqlness Test
Sqlness manual
Case file
Sqlness has two types of file:
.sql: test input, SQL only.result: expected test output, SQL and its results
.result is the output (execution result) file. If you see .result files is changed,
it means this test gets a different result and indicates it fails. You should
check change logs to solve the problem.
You only need to write test SQL in .sql file, and run the test.
Case organization
The root dir of input cases is tests/cases. It contains several subdirectories stand for different test
modes. E.g., standalone/ contains all the tests to run under greptimedb standalone start mode.
Under the first level of subdirectory (e.g. the cases/standalone), you can organize your cases as you like.
Sqlness walks through every file recursively and runs them.
Kafka WAL
Sqlness supports Kafka WAL. You can either provide a Kafka cluster or let sqlness to start one for you.
To run test with kafka, you need to pass the option -w kafka. If no other options are provided, sqlness will use conf/kafka-cluster.yml to start a Kafka cluster. This requires docker and docker-compose commands in your environment.
Otherwise, you can additionally pass the your existing kafka environment to sqlness with -k option. E.g.:
cargo sqlness bare -w kafka -k localhost:9092
In this case, sqlness will not start its own kafka cluster and the one you provided instead.
Run the test
Unlike other tests, this harness is in a binary target form. You can run it with:
cargo sqlness bare
It automatically finishes the following procedures: compile GreptimeDB, start it, grab tests and feed it to
the server, then collect and compare the results. You only need to check if the .result files are changed.
If not, congratulations, the test is passed 🥳!