Commit Graph

101 Commits

Author SHA1 Message Date
Tom Lane 7e3bf99baa Fix handling of PlaceHolderVars in nestloop parameter management.
If we use a PlaceHolderVar from the outer relation in an inner indexscan,
we need to reference the PlaceHolderVar as such as the value to be passed
in from the outer relation.  The previous code effectively tried to
reconstruct the PHV from its component expression, which doesn't work since
(a) the Vars therein aren't necessarily bubbled up far enough, and (b) it
would be the wrong semantics anyway because of the possibility that the PHV
is supposed to have gone to null at some point before the current join.
Point (a) led to "variable not found in subplan target list" planner
errors, but point (b) would have led to silently wrong answers.
Per report from Roger Niederland.
2011-11-03 00:50:58 -04:00
Tom Lane 77ba232564 Fix nested PlaceHolderVar expressions that appear only in targetlists.
A PlaceHolderVar's expression might contain another, lower-level
PlaceHolderVar.  If the outer PlaceHolderVar is used, the inner one
certainly will be also, and so we have to make sure that both of them get
into the placeholder_list with correct ph_may_need values during the
initial pre-scan of the query (before deconstruct_jointree starts).
We did this correctly for PlaceHolderVars appearing in the query quals,
but overlooked the issue for those appearing in the top-level targetlist;
with the result that nested placeholders referenced only in the targetlist
did not work correctly, as illustrated in bug #6154.

While at it, add some error checking to find_placeholder_info to ensure
that we don't try to create new placeholders after it's too late to do so;
they have to all be created before deconstruct_jointree starts.

Back-patch to 8.4 where the PlaceHolderVar mechanism was introduced.
2011-08-09 00:50:07 -04:00
Tom Lane eb22950510 Fix PlaceHolderVar mechanism's interaction with outer joins.
The point of a PlaceHolderVar is to allow a non-strict expression to be
evaluated below an outer join, after which its value bubbles up like a Var
and can be forced to NULL when the outer join's semantics require that.
However, there was a serious design oversight in that, namely that we
didn't ensure that there was actually a correct place in the plan tree
to evaluate the placeholder :-(.  It may be necessary to delay evaluation
of an outer join to ensure that a placeholder that should be evaluated
below the join can be evaluated there.  Per recent bug report from Kirill
Simonov.

Back-patch to 8.4 where the PlaceHolderVar mechanism was introduced.
2010-09-28 14:19:00 -04:00
Tom Lane c8c03d72e1 Fix another join removal bug: the check on PlaceHolderVars was wrong.
The previous coding would decide that join removal was unsafe upon finding
a PlaceHolderVar that needed to be evaluated at the inner rel and then used
above the join.  However, this fails to cover the case of PlaceHolderVars
that refer to both the inner rel and some other rels.  Per bug report from
Andrus.
2010-09-25 19:03:50 -04:00
Tom Lane 4e97631e6a Fix join-removal logic for pseudoconstant and outerjoin-delayed quals.
In these cases a qual can get marked with the removable rel in its
required_relids, but this is just to schedule its evaluation correctly, not
because it really depends on the rel.  We were assuming that, in effect,
we could throw away *all* quals so marked, which is nonsense.  Tighten up
the logic to be a little more paranoid about which quals belong to the
outer join being considered for removal, and arrange for all quals that
don't belong to be updated so they will still get evaluated correctly.

Also fix another problem that happened to be exposed by this test case,
which was that make_join_rel() was failing to notice some cases where
a constant-false qual could be used to prove a join relation empty.  If it's
a pushed-down constant false, then the relation is empty even if it's an
outer join, because the qual applies after the outer join expansion.

Per report from Nathan Grange.  Back-patch into 9.0.
2010-09-14 23:15:29 +00:00
Tom Lane 7df4cf7fd3 Fix oversight in join removal patch: we have to delete the removed relation
from SpecialJoinInfo relid sets as well.  Per example from Vaclav Novotny.
2010-05-23 16:34:38 +00:00
Tom Lane b78f6264eb Rework join-removal logic as per recent discussion. In particular this
fixes things so that it works for cases where nested removals are possible.
The overhead of the optimization should be significantly less, as well.
2010-03-28 22:59:34 +00:00
Tom Lane 8d3c4aa614 Fix an oversight in join-removal optimization: we have to check not only for
plain Vars that are generated in the inner rel and used above the join, but
also for PlaceHolderVars.  Per report from Oleg K.
2010-03-22 13:57:16 +00:00
Tom Lane 90f4c2d960 Add support for doing FULL JOIN ON FALSE. While this is really a rather
peculiar variant of UNION ALL, and so wouldn't likely get written directly
as-is, it's possible for it to arise as a result of simplification of
less-obviously-silly queries.  In particular, now that we can do flattening
of subqueries that have constant outputs and are underneath an outer join,
it's possible for the case to result from simplification of queries of the
type exhibited in bug #5263.  Back-patch to 8.4 to avoid a functionality
regression for this type of query.
2010-01-05 23:25:36 +00:00
Tom Lane 1a95f12702 Eliminate a lot of list-management overhead within join_search_one_level
by adding a requirement that build_join_rel add new join RelOptInfos to the
appropriate list immediately at creation.  Per report from Robert Haas,
the list_concat_unique_ptr() calls that this change eliminates were taking
the lion's share of the runtime in larger join problems.  This doesn't do
anything to fix the fundamental combinatorial explosion in large join
problems, but it should push out the threshold of pain a bit further.

Note: because this changes the order in which joinrel lists are built,
it might result in changes in selected plans in cases where different
alternatives have exactly the same costs.  There is one example in the
regression tests.
2009-11-28 00:46:19 +00:00
Tom Lane 9bb342811b Rewrite the planner's handling of materialized plan types so that there is
an explicit model of rescan costs being different from first-time costs.
The costing of Material nodes in particular now has some visible relationship
to the actual runtime behavior, where before it was essentially fantasy.
This also fixes up a couple of places where different materialized plan types
were treated differently for no very good reason (probably just oversights).

A couple of the regression tests are affected, because the planner now chooses
to put the other relation on the inside of a nestloop-with-materialize.
So far as I can see both changes are sane, and the planner is now more
consistently following the expectation that it should prefer to materialize
the smaller of two relations.

Per a recent discussion with Robert Haas.
2009-09-12 22:12:09 +00:00
Tom Lane 57c9dff9d1 Fix subquery pullup to wrap a PlaceHolderVar around the entire RowExpr
that's generated for a whole-row Var referencing the subquery, when the
subquery is in the nullable side of an outer join.  The previous coding
instead put PlaceHolderVars around the elements of the RowExpr.  The effect
was that when the outer join made the subquery outputs go to null, the
whole-row Var produced ROW(NULL,NULL,...) rather than just NULL.  There
are arguments afoot about whether those things ought to be semantically
indistinguishable, but for the moment they are not entirely so, and the
planner needs to take care that its machinations preserve the difference.
Per bug #5025.

Making this feasible required refactoring ResolveNew() to allow more caller
control over what is substituted for a Var.  I chose to make ResolveNew()
a wrapper around a new general-purpose function replace_rte_variables().
I also fixed the ancient bogosity that ResolveNew might fail to set
a query's hasSubLinks field after inserting a SubLink in it.  Although
all current callers make sure that happens anyway, we've had bugs of that
sort before, and it seemed like a good time to install a proper solution.

Back-patch to 8.4.  The problem can be demonstrated clear back to 8.0,
but the fix would be too invasive in earlier branches; not to mention
that people may be depending on the subtly-incorrect behavior.  The
8.4 series is new enough that fixing this probably won't cause complaints,
but it might in older branches.  Also, 8.4 shows the incorrect behavior
in more cases than older branches do, because it is able to flatten
subqueries in more cases.
2009-09-02 17:52:24 +00:00
Tom Lane 501255114d Add a simple test case covering a join against an inheritance tree,
since we're evidently not testing that at all right now :-(
2009-08-13 17:14:38 +00:00
Tom Lane a43b190e3c Fix a thinko in join_is_legal: when we decide we can implement a semijoin
by unique-ifying the RHS and then inner-joining to some other relation,
that is not grounds for violating the RHS of some other outer join.
Noticed while regression-testing new GEQO code, which will blindly follow
any path that join_is_legal says is legal, and then complain later if that
leads to a dead end.

I'm not certain that this can result in any visible failure in 8.4: the
mistake may always be masked by the fact that subsequent attempts to join
the rest of the RHS of the other join will fail.  But I'm not certain it
can't, either, and it's definitely not operating as intended.  So back-patch.

The added regression test depends on the new no-failures-allowed logic
that I'm about to commit in GEQO, so no point back-patching that.
2009-07-19 20:32:48 +00:00
Tom Lane fb18055998 Repair bug #4926 "too few pathkeys for mergeclauses". This example shows
that the sanity checking I added to create_mergejoin_plan() in 8.3 was a
few bricks shy of a load: the mergeclauses could reference pathkeys in a
noncanonical order such as x,y,x, not only cases like x,x,y which is all
that the code had allowed for.  The odd cases only turn up when using
redundant clauses in an outer join condition, which is why no one had
noticed before.
2009-07-17 23:19:34 +00:00
Tom Lane e549722a8b Get rid of the rather fuzzily defined FlattenedSubLink node type in favor of
making pull_up_sublinks() construct a full-blown JoinExpr tree representation
of IN/EXISTS SubLinks that it is able to convert to semi or anti joins.
This makes pull_up_sublinks() a shade more complex, but the gain in semantic
clarity is worth it.  I still have more to do in this area to address the
previously-discussed problems, but this commit in itself fixes at least one
bug in HEAD, as shown by added regression test case.
2009-02-25 03:30:38 +00:00
Peter Eisentraut 8987c115f1 Alter regression test cases that rely on the sort order of "aa". Some
locales (da_DK, fo_FO, kl_GL, nb_NO, nn_NO in glibc) sort "aa" after "z".
2009-01-19 13:38:47 +00:00
Tom Lane dcc2334736 Consider a clause to be outerjoin_delayed if it references the nullable side
of any lower outer join, even if it also references the non-nullable side and
so could not get pushed below the outer join anyway.  We need this in case
the clause is an OR clause: if it doesn't get marked outerjoin_delayed,
create_or_index_quals() could pull an indexable restriction for the nullable
side out of it, leading to wrong results as demonstrated by today's bug
report from toruvinn.  (See added regression test case for an example.)

In principle this has been wrong for quite a while.  In practice I don't
think any branch before 8.3 can really show the failure, because
create_or_index_quals() will only pull out indexable conditions, and before
8.3 those were always strict.  So though we might have improperly generated
null-extended rows in the outer join, they'd get discarded from the result
anyway.  The gating factor that makes the failure visible is that 8.3
considers "col IS NULL" to be indexable.  Hence I'm not going to risk
back-patching further than 8.3.
2008-06-27 20:54:37 +00:00
Tom Lane 6a6522529f Fix some planner issues found while investigating Kevin Grittner's report
of poorer planning in 8.3 than 8.2:

1. After pushing a constant across an outer join --- ie, given
"a LEFT JOIN b ON (a.x = b.y) WHERE a.x = 42", we can deduce that b.y is
sort of equal to 42, in the sense that we needn't fetch any b rows where
it isn't 42 --- loop to see if any additional deductions can be made.
Previous releases did that by recursing, but I had mistakenly thought that
this was no longer necessary given the EquivalenceClass machinery.

2. Allow pushing constants across outer join conditions even if the
condition is outerjoin_delayed due to a lower outer join.  This is safe
as long as the condition is strict and we re-test it at the upper join.

3. Keep the outer-join clause even if we successfully push a constant
across it.  This is *necessary* in the outerjoin_delayed case, but
even in the simple case, it seems better to do this to ensure that the
join search order heuristics will consider the join as reasonable to
make.  Mark such a clause as having selectivity 1.0, though, since it's
not going to eliminate very many rows after application of the constant
condition.

4. Tweak have_relevant_eclass_joinclause to report that two relations
are joinable when they have vars that are equated to the same constant.
We won't actually generate any joinclause from such an EquivalenceClass,
but again it seems that in such a case it's a good idea to consider
the join as worth costing out.

5. Fix a bug in select_mergejoin_clauses that was exposed by these
changes: we have to reject candidate mergejoin clauses if either side was
equated to a constant, because we can't construct a canonical pathkey list
for such a clause.  This is an implementation restriction that might be
worth fixing someday, but it doesn't seem critical to get it done for 8.3.
2008-01-09 20:42:29 +00:00
Tom Lane b4c806faa8 Rewrite make_outerjoininfo's construction of min_lefthand and min_righthand
sets for outer joins, in the light of bug #3588 and additional thought and
experimentation.  The original methodology was fatally flawed for nests of
more than two outer joins: it got the relationships between adjacent joins
right, but didn't always come to the right conclusions about whether a join
could be interchanged with one two or more levels below it.  This was largely
caused by a mistaken idea that we should use the min_lefthand + min_righthand
sets of a sub-join as the minimum left or right input set of an upper join
when we conclude that the sub-join can't commute with the upper one.  If
there's a still-lower join that the sub-join *can* commute with, this method
led us to think that that one could commute with the topmost join; which it
can't.  Another problem (not directly connected to bug #3588) was that
make_outerjoininfo's processing-order-dependent method for enforcing outer
join identity #3 didn't work right: if we decided that join A could safely
commute with lower join B, we dropped all information about sub-joins under B
that join A could perhaps not safely commute with, because we removed B's
entire min_righthand from A's.

To fix, make an explicit computation of all inner join combinations that occur
below an outer join, and add to that the full syntactic relsets of any lower
outer joins that we determine it can't commute with.  This method gives much
more direct enforcement of the outer join rearrangement identities, and it
turns out not to cost a lot of additional bookkeeping.

Thanks to Richard Harris for the bug report and test case.
2007-08-31 01:44:06 +00:00
Tom Lane ed5d55dafe Fix a bug in the original implementation of redundant-join-clause removal:
clauses in which one side or the other references both sides of the join
cannot be removed as redundant, because that expression won't have been
constrained below the join.  Per report from Sergey Burladyan.

CVS HEAD does not contain this bug due to EquivalenceClass rewrite, but it
seems wise to include the regression test for it anyway.
2007-07-31 19:53:37 +00:00
Tom Lane 11086f2f2b Repair planner bug introduced in 8.2 by ability to rearrange outer joins:
in cases where a sub-SELECT inserts a WHERE clause between two outer joins,
that clause may prevent us from re-ordering the two outer joins.  The code
was considering only the joins' own ON-conditions in determining reordering
safety, which is not good enough.  Add a "delay_upper_joins" flag to
OuterJoinInfo to flag that we have detected such a clause and higher-level
outer joins shouldn't be permitted to commute with this one.  (This might
seem overly coarse, but given the current rules for OJ reordering, it's
sufficient AFAICT.)

The failure case is actually pretty narrow: it needs a WHERE clause within
the RHS of a left join that checks the RHS of a lower left join, but is not
strict for that RHS (else we'd have simplified the lower join to a plain
join).  Even then no failure will be manifest unless the planner chooses to
rearrange the join order.

Per bug report from Adam Terrey.
2007-05-22 23:23:58 +00:00
Tom Lane 6bef118b01 Restructure code that is responsible for ensuring that clauseless joins are
considered when it is necessary to do so because of a join-order restriction
(that is, an outer-join or IN-subselect construct).  The former coding was a
bit ad-hoc and inconsistent, and it missed some cases, as exposed by Mario
Weilguni's recent bug report.  His specific problem was that an IN could be
turned into a "clauseless" join due to constant-propagation removing the IN's
joinclause, and if the IN's subselect involved more than one relation and
there was more than one such IN linking to the same upper relation, then the
only valid join orders involve "bushy" plans but we would fail to consider the
specific paths needed to get there.  (See the example case added to the join
regression test.)  On examining the code I wonder if there weren't some other
problem cases too; in particular it seems that GEQO was defending against a
different set of corner cases than the main planner was.  There was also an
efficiency problem, in that when we did realize we needed a clauseless join
because of an IN, we'd consider clauseless joins against every other relation
whether this was sensible or not.  It seems a better design is to use the
outer-join and in-clause lists as a backup heuristic, just as the rule of
joining only where there are joinclauses is a heuristic: we'll join two
relations if they have a usable joinclause *or* this might be necessary to
satisfy an outer-join or IN-clause join order restriction.  I refactored the
code to have just one place considering this instead of three, and made sure
that it covered all the cases that any of them had been considering.

Backpatch as far as 8.1 (which has only the IN-clause form of the disease).
By rights 8.0 and 7.4 should have the bug too, but they accidentally fail
to fail, because the joininfo structure used in those releases preserves some
memory of there having once been a joinclause between the inner and outer
sides of an IN, and so it leads the code in the right direction anyway.
I'll be conservative and not touch them.
2007-02-16 00:14:01 +00:00
Tom Lane b3358e2642 Fix bug introduced into mergejoin logic by performance improvement patch of
2005-05-13.  When we find that a new inner tuple can't possibly match any
outer tuple (because it contains a NULL), we can't immediately skip the
tuple when we are in NEXTINNER state.  Doing so can lead to emitting
multiple copies of the tuple in FillInner mode, because we may rescan the
tuple after returning to a previous marked tuple.  Instead, proceed to
NEXTOUTER state the same as we used to do.  After we've found that there's
no need to return to the marked position, we can go to SKIPINNER_ADVANCE
state instead of SKIP_TEST when the inner tuple is unmatchable; this
preserves the performance improvement.  Per bug report from Bruce.
I also made a couple of cosmetic code rearrangements and added a regression
test for the problem.
2006-03-17 19:38:12 +00:00
Tom Lane 20ab467d76 Improve parser so that we can show an error cursor position for errors
during parse analysis, not only errors detected in the flex/bison stages.
This is per my earlier proposal.  This commit includes all the basic
infrastructure, but locations are only tracked and reported for errors
involving column references, function calls, and operators.  More could
be done later but this seems like a good set to start with.  I've also
moved the ReportSyntaxErrorPosition logic out of psql and into libpq,
which should make it available to more people --- even within psql this
is an improvement because warnings weren't handled by ReportSyntaxErrorPosition.
2006-03-14 22:48:25 +00:00
Tom Lane 012abebab1 Remove the stub support we had for UNION JOIN; per discussion, this is
not likely ever to be implemented seeing it's been removed from SQL2003.
This allows getting rid of the 'filter' version of yylex() that we had in
parser.c, which should save at least a few microseconds in parsing.
2006-03-07 01:00:19 +00:00
Tom Lane 37c443eefd Fix compare_fuzzy_path_costs() to behave a bit more sanely. The original
coding would ignore startup cost differences of less than 1% of the
estimated total cost; which was OK for normal planning but highly not OK
if a very small LIMIT was applied afterwards, so that startup cost becomes
the name of the game.  Instead, compare startup and total costs fuzzily
but independently.  This changes the plan selected for two queries in the
regression tests; adjust expected-output files for resulting changes in
row order.  Per reports from Dawid Kuroczko and Sam Mason.
2005-07-22 19:12:02 +00:00
Neil Conway f5ab0a14ea Add a "USING" clause to DELETE, which is equivalent to the FROM clause
in UPDATE. We also now issue a NOTICE if a query has _any_ implicit
range table entries -- in the past, we would only warn about implicit
RTEs in SELECTs with at least one explicit RTE.

As a result of the warning change, 25 of the regression tests had to
be updated. I also took the opportunity to remove some bogus whitespace
differences between some of the float4 and float8 variants. I believe
I have correctly updated all the platform-specific variants, but let
me know if that's not the case.

Original patch for DELETE ... USING from Euler Taveira de Oliveira,
reworked by Neil Conway.
2005-04-07 01:51:41 +00:00
Tom Lane 208ec47ba3 Tweak planner to use a minimum size estimate of 10 pages for a
never-yet-vacuumed relation.  This restores the pre-8.0 behavior of
avoiding seqscans during initial data loading, while still allowing
reasonable optimization after a table has been vacuumed.  Several
regression test cases revert to 7.4-like behavior, which is probably
a good sign.  Per gripes from Keith Browne and others.
2005-03-24 19:14:49 +00:00
Tom Lane 59b3b8014d As long as we're forcing an ORDER BY in these four join queries, we had
better make sure the sort order is totally specified; else we get burnt
by platform-specific behavior of qsort() with equal keys.  Per buildfarm
results.
2004-12-03 22:19:28 +00:00
Tom Lane 4e91824b94 Make some adjustments to reduce platform dependencies in plan selection.
In particular, there was a mathematical tie between the two possible
nestloop-with-materialized-inner-scan plans for a join (ie, we computed
the same cost with either input on the inside), resulting in a roundoff
error driven choice, if the relations were both small enough to fit in
sort_mem.  Add a small cost factor to ensure we prefer materializing the
smaller input.  This changes several regression test plans, but with any
luck we will now have more stability across platforms.
2004-12-02 01:34:18 +00:00
Tom Lane 5374d097de Change planner to use the current true disk file size as its estimate of
a relation's number of blocks, rather than the possibly-obsolete value
in pg_class.relpages.  Scale the value in pg_class.reltuples correspondingly
to arrive at a hopefully more accurate number of rows.  When pg_class
contains 0/0, estimate a tuple width from the column datatypes and divide
that into current file size to estimate number of rows.  This improved
methodology allows us to jettison the ancient hacks that put bogus default
values into pg_class when a table is first created.  Also, per a suggestion
from Simon, make VACUUM (but not VACUUM FULL or ANALYZE) adjust the value
it puts into pg_class.reltuples to try to represent the mean tuple density
instead of the minimal density that actually prevails just after VACUUM.
These changes alter the plans selected for certain regression tests, so
update the expected files accordingly.  (I removed join_1.out because
it's not clear if it still applies; we can add back any variant versions
as they are shown to be needed.)
2004-12-01 19:00:56 +00:00
Peter Eisentraut feb4f44d29 Message editing: remove gratuitous variations in message wording, standardize
terms, add some clarifications, fix some untranslatable attempts at dynamic
message building.
2003-09-25 06:58:07 +00:00
Tom Lane ecbed6e1b9 create_unique_plan() should not discard existing output columns of the
subplan it starts with, as they may be needed at upper join levels.
See comments added to code for the non-obvious reason why.  Per bug report
from Robert Creager.
2003-08-07 19:20:24 +00:00
Tom Lane a56ff9a0bd Another round of error message editing, covering backend/parser/. 2003-07-19 20:20:53 +00:00
Tom Lane 8a4fdce9f2 Fix thinko in new logic about pushing down non-nullability constraints:
constraints appearing in outer-join qualification clauses are restricted
as to when and where they can be pushed down.  Add regression test
to catch future errors in this area.
2003-02-10 17:08:50 +00:00
Tom Lane 9f5f212475 Allow the planner to collapse explicit inner JOINs together, rather than
necessarily following the JOIN syntax to develop the query plan.  The old
behavior is still available by setting GUC variable JOIN_COLLAPSE_LIMIT
to 1.  Also create a GUC variable FROM_COLLAPSE_LIMIT to control the
similar decision about when to collapse sub-SELECT lists into their parent
lists.  (This behavior existed already, but the limit was always
GEQO_THRESHOLD/2; now it's separately adjustable.)
2003-01-25 23:10:30 +00:00
Bruce Momjian b1039e93d8 Add additional ORDER BY to join regression test, per Tatsuo. 2002-10-30 01:28:12 +00:00
Bruce Momjian 9e90d11810 Remove /src/utils. Is final cleanup of getopt.c resurection. 2002-10-30 01:15:51 +00:00
Bruce Momjian 13d7a689ec Add ORDER BY to join regression test. 2002-10-28 22:54:45 +00:00
Tom Lane 6c59886942 Second try at fixing join alias variables. Instead of attaching miscellaneous
lists to join RTEs, attach a list of Vars and COALESCE expressions that will
replace the join's alias variables during planning.  This simplifies
flatten_join_alias_vars while still making it easy to fix up varno references
when transforming the query tree.  Add regression test cases for interactions
of subqueries with outer joins.
2002-04-28 19:54:29 +00:00
Tom Lane 6eeb95f0f5 Restructure representation of join alias variables. An explicit JOIN
now has an RTE of its own, and references to its outputs now are Vars
referencing the JOIN RTE, rather than CASE-expressions.  This allows
reverse-listing in ruleutils.c to use the correct alias easily, rather
than painfully reverse-engineering the alias namespace as it used to do.
Also, nested FULL JOINs work correctly, because the result of the inner
joins are simple Vars that the planner can cope with.  This fixes a bug
reported a couple times now, notably by Tatsuo on 18-Nov-01.  The alias
Vars are expanded into COALESCE expressions where needed at the very end
of planning, rather than during parsing.
Also, beginnings of support for showing plan qualifier expressions in
EXPLAIN.  There are probably still cases that need work.
initdb forced due to change of stored-rule representation.
2002-03-12 00:52:10 +00:00
Tom Lane ea166f1146 Planner speedup hacking. Avoid saving useless pathkeys, so that path
comparison does not consider paths different when they differ only in
uninteresting aspects of sort order.  (We had a special case of this
consideration for indexscans already, but generalize it to apply to
ordered join paths too.)  Be stricter about what is a canonical pathkey
to allow faster pathkey comparison.  Cache canonical pathkeys and
dispersion stats for left and right sides of a RestrictInfo's clause,
to avoid repeated computation.  Total speedup will depend on number of
tables in a query, but I see about 4x speedup of planning phase for
a sample seven-table query.
2000-12-14 22:30:45 +00:00
Tom Lane db631de531 Add explicit ORDER BYs in a couple of cases --- seems to be necessary
to get platform-independent results.
2000-11-06 18:11:46 +00:00
Thomas G. Lockhart 07272c6f8b Add tests for more INTERVAL syntax.
Add more tests for JOIN syntax.
All tests pass on my Linux box (except for the usual couple of lines
 for geometry).
2000-11-06 16:03:47 +00:00
Tom Lane ed5003c584 First cut at full support for OUTER JOINs. There are still a few loose
ends to clean up (see my message of same date to pghackers), but mostly
it works.  INITDB REQUIRED!
2000-09-12 21:07:18 +00:00
Tom Lane 01911c98db Repair list-vs-node confusion that resulted in failure for INNER JOIN ON.
Make it behave correctly when there are more than two tables being
joined, also.  Update regression test expected outputs.
2000-05-12 01:33:56 +00:00
Thomas G. Lockhart 92c8437d8d Update "join syntax" test for new capabilities. 2000-02-15 03:31:33 +00:00
Tom Lane 5e6004135b Now that new psql is fflush()'ing properly, it emerges that several
regress test expected outputs were committed with NOTICEs appearing out
of order.  Update to correct results.
2000-01-15 19:18:24 +00:00
Tom Lane 260b6afc79 Update remaining tests for new psql, with the exception of 'arrays',
which is broken in some weird way that I don't understand.  I think it
may be exposing a bug in the new psql --- for one thing, I get different
results when I run psql by hand than the regress script gets.  What
the heck???
2000-01-09 03:48:39 +00:00
Thomas G. Lockhart 4aa0e645e2 First tests using JOIN syntax. 1999-02-23 07:27:13 +00:00