We forward-ported a handful of tests from the previous parser
which relied on LIMIT clauses, but then we didn't support that.
Now that we do, we uncomment most of these tests, and actually
give them the correct data structures to compare with.
We leave two tests commented out. One was using `limit 10, 5` to
express a limit plus offset, and the other is using `not fld = 1`
as a WHERE clause, but we don't support unary-not to negate
other expressions.
In the process, we discover that converting a SELECT with a
LIMIT clause back to a string has a missing space, and fix that.
analyzeExpression - tupleLiteralExpression was covered by something
else between the ticket getting filed and me starting on it.
(*ExecutionPlanner).analyzeBinaryExpression now has increased
coverage for IN / NOT IN. Several bugs got revealed by adding tests;
those tests are commented out but can be re-enabled by whoever ends
up working on the bugs. Tickets are filed.
The attempt to set the TrackExistence option for fields
happened before checking whether the field was created
successfully or not. Credit to Rachith for spotting this.
Bug was introduced with the TrackExistence stuff, but
we apparently never had a test case for invalid min/max
values.
parseOperand was assuming that any reference to MIN in a place
where an operand was expected was a call, which it should be,
but it might not be. parseCallExpression panics if it doesn't
find a parenthesis, because it's never supposed to be called
when we don't know we have one.
The test for this is in with MinMaxColumnConstraints, even though it's
actually a test of MinMaxFunctionCalls, because that's where the other
tests involving the special MIN/MAX tokens live.
We also stop checking whether MIN or MAX might actually be QIDENT.
If you use a quoted identifier, we're over in the QIDENT case,
not the MIN/MAX case. If the token was MIN or MAX, it's always
unquoted.
* Add test coverage for executionplanner.go
*ExecutionPlanner.mapper does not get tested in the case where its
context gets cancelled. In order to make testing this possible,
I've added a context argument to sql_test.MustQueryRow. If it's
nil, MustQueryRow creates a context for itself just like it always
has, but if a context is provided, it uses that.
* Adds test coverage for ExecutionPlanner.mapper in executionplanner.go
The case where the context gets cancelled mid-query is now covered.
The test is timing-dependent - the cancel call has to happen after
the query has been started but before it finishes, and in just the
right part of MustRunQuery, in order to actually produce a context
cancelled error, and not, say, a query cancelled error. May have to
adjust timing if the current delays don't work in CI testing.
* Addressed review notes
-reordered arguments for MustRunQuery
-moved MustRunQuery out of a goroutine, put the cancel in one
*Tests are added to extend coverage for statement, expression and source types and many of the ast helper functions
*For those SQL language elements where ast exists but parsing is not implemented, test coverage is added to test only the ast correctness
*Also, removed timestamp EPOCH related compiler code as they become unreachable after their ast equivalent were removed in a previous PR.
Assignment compatibility checking in analyzeBulkInsertStatement is
now tested. This isn't checking the values themselves, it's there
to make sure the structure is correct for mapping values to columns.
It turns out that the problem with nested joins was that we were
trying to cleverly invert them, but that seems to be incorrect and
resulted in incorrect nesting.
The test case for this is
SELECT * FROM X INNER JOIN Y ON true INNER JOIN Z ON false
this is now parsed as
(X inner join Y on true) inner join z on false
Which, as it turns out, is the structure that stringizes back to the
original statement.
We were previously parsing it as
X inner join (y inner join z on false) on true
which stringizes out to a different form, and is also, I think,
just straightforwardly not what we want.
So basically, we had special case code to recognize that we
were doing a join on top of another join, and invert them in
some way, and I have no idea why because that seems not to be
correct, or at least, it produces nonsensical stringizing that
we can't then parse.
We now test the tuple-assignment at all, although it's
perhaps confusing because we expect a ()-list of columns
to go with a {}-list of values. We also test a lot more
errors and some more successes, and additional literal types
in mustParseLiteral.
FB-2045
aggregate{Avg,Min,Max}->Update now tested for DataTypeDecimal.
{avg,min,max}PlanExpression->WithChildren now tested.
percentilePlanExpression->{Evaluate,Plan,WithChildren} is not
tested because percentile gets sent directly to PQL rather than
getting planned and evaluated in SQL.
aggregateLast->everything is not tested because Last is not yet
completely implemented.
There's a lot going on here. First, we were treating "the test is
a Condition" as implying BSI, which it doesn't anymore. Second, the
behavior of conditions was weird and BSI-specific. Third, we had
to propagate these changes and features throughout a bunch of code,
including both the core featurebase code and the DAX replacements/copies
of it, plus the SQL3 layer.
We refactor this so that tests for equality and inequality work for
non-BSI fields, so now if you accidentally use `==` in a Row call
on a non-BSI field, it still works; that's not specific to BSI
fields anymore.
We add a TrackExistence flag to fields, and propagate it through
things like our protobuf code, etcetera, so that we can successfully
create fields. Newly-created fields get this by default, because
we add it unconditionally to them, but the paths that are being
called with existing fields don't add it. So, when we "create"
(really, just load the definition of) a field from something stored
in the schema, we don't add TrackExistence to it, but any path to
creating a new field should.
A time quantum field with NoStandardView will *effectively*
lack TrackExistence.
For sets, mutexes, and time quantums with a standard view, anything
that sets bits will also set a corresponding bit for the record in
a new "existence" view. This allows us to distinguish between an
empty set and a null, and also allows null checks to be constant-time.
When clearing bits, we don't clear existence bits EXCEPT that if
you clear a bit in a mutex, *and the bit actually existed*, we clear
the existence bit. For sets and time quantums, clearing bits never
clears the existence bit.
Deleting records clears the existence bit.
We also add code to the `batch` subpackage to generate suitable
existence field bitmaps and import them. This logic correctly handles
empty sets and nils. The `batch` package does not allow specification
of anything equivalent to clearing a single bit from an existing
record, so we don't have to deal with the mutex complexity in that
case, which is good because it would be impossible.
This requires a number of other subtle changes, such as allowing
new fields to have more than one FieldOption specified for them.
We also drop the handful of implementation bits relating to the
"fullySorted" internal-use-only import flag, which existed only to
support the JSON ingest API, which we've removed.
The most dangerous part of this is that the mutex semantics are
impossible to implement on top of our existing API, because they
require us to know, not how *many* bits we cleared, but which
*specific* bits we cleared. I've implemented this as a new Tx method,
which is almost certainly going to be tech debt one day; if we some
day drop the Import API, we should remove that.
The testing for this is only currently covering the Set/Clear
behavior of PQL, and the Import API. The batch tests haven't been
written yet.
Fields that don't have existence tracking enabled refuse to perform
null/not-null tests. They should also report themselves as having
no null values -- if a record exists, sets in it are considered
empty rather than null.
The SQL3 support requires a number of subtle modifications to both
featurebase and some addon tooling. The essential thing is dropping
the unconditional translation of nil slices to non-nil empty slices
in translateResult, both in the executor and the orchestrator. We
also modify the logic that handles generating results from Extract
calls, to ensure that non-null sets get an empty slice created for
them even if they never have any values assigned.
The expected results for some tests are different now; we expect to
get nil slices, rather than 0-length non-nil slices, for fields which
were never written for a given record. Most tests were not changed.
(In every case, if a test was failing, I actually checked the logic
before changing expected results. This required a lot of tracking down
of edge cases.)
The batch package now rejects as an error attempts to clear single
bits from mutex fields, because so far as I can tell it's simply
impossible to have a roaring import that specifies the correct semantics
there; you can't tell whether to clear an existence bit without
access to the currently-set bits, which the batch API doesn't have.
We already supported the special case of specifying a clear value
of nil for clearing a mutex field; now that is the only allowed
value for a mutex field to have in row.Clears.
We change the logic for fixing up incoming view names (in two places)
to stop assuming that any view in a time field other than "" that does
not have viewStandard as a prefix is a partial time quantum name that
should have "standard_" prepended to it. This allows us to submit
bitmaps for "existence" to time quantum fields and not have them
silently transformed into "standard_existence" because that's what we'd
do with "202203".
We drop the field ClearBits method, which was totally unused.
We drop the sliceDifference function, which was used in a previous
mutex implementation and hasn't been used in ages, and the test
case for it, and the helper function used only by that test case.
FB-2041
Added tests for typeIsTimeQuantum and typeIsSet and made them pass.
Added tests for DataTypeTuple cases in typesAreAssignmentCompatible.
Timestamp conversion checking is handled before it gets to that
point but I left those branches in as a backstop.
Checking to see if DataType[String,ID]SetQuantum can be assigned
to themselves doesn't appear to be reachable currently but left
those branches in, because something may use them in future.
Added one test to the DAX skip list since it's the IDSetQ version
of a StringSetQ test that was already on there, changed skip list
to refer to both tests by name instead of by number.
For on-prem serverless, if we restart the process containing the
controller and computer(s), when they come back up, the controller
doesn't know that the computers have been restarted, so it doesn't send
them a directive. This change forces the controller to send a directive
upon startup by a computer.
* renamed 2 system tables
* adding table column for types
* added a type field to fb_database_nodes system table
* updated ClusterNode struct
* adding backwards compatibility
this commit also adds support for ordering systemTables and implements the method
* fixed linting
---------
Co-authored-by: Travis Turner <travis@molecula.com>
* Enable linter: stylecheck
This enabled the stylecheck linter, but excludes some staticchecks for
now. The following are ignored because they will take a bit of time to
address, but the intention is to address them and remove them from the
exclusion list.
ST1000: at least one file in a package should have a package comment
ST1003: golang naming standards
ST1008: error should be returned as the last argument
ST1016: methods on the same type should have the same receiver name
ST1020: comment on exported function
* Address ST1015
For some reason this failed in CI but not locally. I can't figure out
why that check isn't happening locally. This just moves the switch
statements around so that the `default` is the first (or last) item.
* Adjust error string in test to match case-adjusted error
* Remove TestCloseTimeout
* Add (commented out) linters that we should introduce
I went through the available linters and added (commented out) the ones
I think we should work on in the near term. In other words, fix them,
then uncomment them so they are enabled in CI.
* linter: errchkjson
* linter: ineffassign
* linter: gosimple
* linter: errname
FB-1897
The specs for the datetimepart function are, as far as i can tell,
identical to the existing datepart function. Per Pat, replaced the
datepart function with datetimepart rather than just adding
datetimepart as an alias. Made sure existing tests that were using
datepart got switched over.
Second go at this after sorting out weirdness with git.
FB-1896
Added the datetimename function, which returns parts of a timestamp
as strings. Month and day of the week are named ("January", "Monday")
while others are returned as a string of digits ("2023").
Added tests to the test definitions.
* first time quantum queries working
* implement select from timequantum columns
* skip a dax test
* make linter happy
* addressed review feedback
* reverted over eager test elimination
* correct reference for `having count(*)`
It turns out that `having count(*) ...` was always treating
the count(*) as exactly 1. After studying this a lot, I noticed
that in fact, we correctly handle other counts. The reason is
that there's already code to recognize aggregates in `having`
clauses as matching aggregates that are being computed -- but
it only covers the other aggregate clause types, not the newly
added `countStarPlanExpression` from making `count(*)` work even
if there's no `_id` field.
We add several corresponding test cases.
* fix sum(a_decimal) type conversion
Added a test case for this, and also added a fix for it.
Underlying issue: qualifiedRefPlanExpression could end up
producing an int64 instead of a pql.Decimal, even though it
had expected type Decimal.
Originally this worked by politely converting an int64 to
a pql.Decimal in the Evaluate phase, but this was not ideal;
the real question is why it was coming out as an int64 at
that step. Showed this to Pat, who spent a while studying it
and produced a better fix.
* temporarily comment out test which fails in DAX
This forward-ports a number of tests from the previous SQL
implementation. The porting is approximate in a number of ways,
and not all tests are implemented/tested yet.
In particular, several tests are currently disabled because
we don't support `limit n` constructs.
The tests that were primarily tests of the parser have been
brought forward as parser tests. One of them has been altered
to add parentheses, because our parser interprets
fld1 between 1 and 3 and fld2 = 2
as:
fld1 between (1 and 3) and (fld2 = 2)
which is invalid, while the old parser apparently interpreted it
as:
(fld1 between 1 and 3) and (fld2 = 2)
We have not yet verified the SQL spec's requirements here, but
sqlite agrees with our old parser, not our new parser, so this
may be a regression.
The old tests expected an INNER JOIN to suppress duplicate
values. Our new code does not, which is consistent with other
SQL implementations. This is a change, but the old behavior
appears to have been wrong. (You can still suppress duplicate
values by specifying DISTINCT.)
In the previous implementations, a value like `count(*)` had
`count(*)` as its column name. In the new implementation,
it has an empty string as its column name.
Related to this, the prior implementation allowed you to
write
select age, count(*) from grouper group by age having count > 1
but the new implementationt requires that to be spelled as
having count(*) > 1
This is consistent with other SQL implementations, so I think
the new behavior is correct.
The behavior of SHOW COLUMNS and SHOW TABLES has changed, in
that the specific results returned are significantly different.
Perhaps more significantly, the old system spelled the former
query as SHOW FIELDS, rather than SHOW COLUMNS. This may be
considered a regression, in that `SHOW FIELDS` no longer works,
and we should consider whether any hypothetical users might
have been relying on the output of either of these. (I hope
not, the new output is much better.)
Some of the old tests (the ones in handler_test) were accommodated
by adding a couple of specific test cases to existing tests,
specifically:
* handling timestamp values with `Z` rather than `+00:00`
* a join with a WHERE clause referring to fields in both
source tables
We introduce a new "partial" comparison type, because there's
no way for a test of `SHOW TABLES` to contain a correct table
row, because `SHOW TABLES` includes timestamps from when tables
were created. I'm not sure this is the right way to do this.
We add corresponding changes to dax_test, because the DAX tree
tests against the SQL tests.
We change the returned types of field names and field types to
plain strings, ironically because DAX needs this -- the test code
in the DAX tree is getting them back as plain strings, rather
than as dax.FieldName and dax.BaseType.
The tests using `having` are commented out because they don't
seem to be working, a ticket has been filed for this.
Two of the tests that should return strings are instead returning
untranslated integer IDs, but only for DAX, not for the regular
SQL tests, and the `delete` test has been commented out for
DAX-specific errors. If we merge this, the next step is to
ticket those and address them separately.
* Removed support for EPOCH column constraint from TIMESTAMP SQL data type.
* Implicit conversion of integers to timestamp will treat the integer value as seconds since unix epoch.
* Add new ToTimeStamp(num, timeunit) SQL scalar function to help convert integer values to timestamp.