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Fix old bug in get_loop_count().
While poking at David Kubečka's issue I noticed an ancient logic error in get_loop_count(): it used 1.0 as a "no data yet" indicator, but since that is actually a valid rowcount estimate, this doesn't work. If we have one input relation with 1.0 as rowcount and then another one with a larger rowcount, we should use 1.0 as the result, but we picked the larger rowcount instead. (I think when I coded this, I recognized the conflict, but mistakenly thought that the logic would pick the desired count anyway.) Fixing this changed the plan for one existing regression test case. Since the point of that test is to exercise creation of a particular shape of nestloop plan, I tweaked the query a little bit so it still results in the same plan choice. This is definitely a bug, but I'm hesitant to back-patch since it might change plan choices unexpectedly, and anyway failure to implement a heuristic precisely as intended is a pretty low-grade bug.
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@ -1886,7 +1886,7 @@ get_loop_count(PlannerInfo *root, Index cur_relid, Relids outer_relids)
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if (outer_relids == NULL)
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return 1.0;
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result = 1.0;
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result = 0.0;
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outer_relid = -1;
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while ((outer_relid = bms_next_member(outer_relids, outer_relid)) >= 0)
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{
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@ -1915,10 +1915,11 @@ get_loop_count(PlannerInfo *root, Index cur_relid, Relids outer_relids)
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outer_rel->rows);
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/* Remember smallest row count estimate among the outer rels */
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if (result == 1.0 || result > rowcount)
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if (result == 0.0 || result > rowcount)
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result = rowcount;
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}
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return result;
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/* Return 1.0 if we found no valid relations (shouldn't happen) */
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return (result > 0.0) ? result : 1.0;
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}
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/*
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@ -3074,14 +3074,14 @@ select f1, unique2, case when unique2 is null then f1 else 0 end
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explain (costs off)
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select a.unique1, b.unique1, c.unique1, coalesce(b.twothousand, a.twothousand)
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from tenk1 a left join tenk1 b on b.thousand = a.unique1 left join tenk1 c on c.unique2 = coalesce(b.twothousand, a.twothousand)
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where a.unique2 = 5530 and coalesce(b.twothousand, a.twothousand) = 44;
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where a.unique2 < 10 and coalesce(b.twothousand, a.twothousand) = 44;
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QUERY PLAN
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---------------------------------------------------------------------------------------------
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Nested Loop Left Join
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-> Nested Loop Left Join
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Filter: (COALESCE(b.twothousand, a.twothousand) = 44)
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-> Index Scan using tenk1_unique2 on tenk1 a
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Index Cond: (unique2 = 5530)
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Index Cond: (unique2 < 10)
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-> Bitmap Heap Scan on tenk1 b
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Recheck Cond: (thousand = a.unique1)
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-> Bitmap Index Scan on tenk1_thous_tenthous
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@ -3092,7 +3092,7 @@ select a.unique1, b.unique1, c.unique1, coalesce(b.twothousand, a.twothousand)
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select a.unique1, b.unique1, c.unique1, coalesce(b.twothousand, a.twothousand)
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from tenk1 a left join tenk1 b on b.thousand = a.unique1 left join tenk1 c on c.unique2 = coalesce(b.twothousand, a.twothousand)
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where a.unique2 = 5530 and coalesce(b.twothousand, a.twothousand) = 44;
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where a.unique2 < 10 and coalesce(b.twothousand, a.twothousand) = 44;
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unique1 | unique1 | unique1 | coalesce
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---------+---------+---------+----------
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(0 rows)
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@ -880,11 +880,11 @@ select f1, unique2, case when unique2 is null then f1 else 0 end
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explain (costs off)
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select a.unique1, b.unique1, c.unique1, coalesce(b.twothousand, a.twothousand)
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from tenk1 a left join tenk1 b on b.thousand = a.unique1 left join tenk1 c on c.unique2 = coalesce(b.twothousand, a.twothousand)
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where a.unique2 = 5530 and coalesce(b.twothousand, a.twothousand) = 44;
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where a.unique2 < 10 and coalesce(b.twothousand, a.twothousand) = 44;
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select a.unique1, b.unique1, c.unique1, coalesce(b.twothousand, a.twothousand)
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from tenk1 a left join tenk1 b on b.thousand = a.unique1 left join tenk1 c on c.unique2 = coalesce(b.twothousand, a.twothousand)
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where a.unique2 = 5530 and coalesce(b.twothousand, a.twothousand) = 44;
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where a.unique2 < 10 and coalesce(b.twothousand, a.twothousand) = 44;
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--
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-- check handling of join aliases when flattening multiple levels of subquery
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