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Fix for MDEV-4140
Analysis: Range analysis detects that the subquery is expensive and doesn't build a range access method. Later, the applicability test for loose scan doesn't take that into account, and builds a loose scan method without a range scan on the min/max column. As a result loose scan fetches the first key in each group, rather than the first key that satisfies the condition on the min/max column. Solution: Since there is no SEL_ARG tree to be used for the min/max column, it is not possible to use loose scan if the min/max column is compared with an expensive scalar subquery. Make the test for loose scan applicability to be in sync with the range analysis code by testing if the min/max argument is compared with an expensive predicate.
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@ -3243,4 +3243,40 @@ d 4
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f 7
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f 7
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g 8
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g 8
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drop table t1;
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drop table t1;
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#
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# MDEV-4140 Wrong result with GROUP BY + multipart key + MIN/MAX loose scan and a subquery
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#
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CREATE TABLE t1 (a int, b int, KEY (b, a)) ;
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INSERT INTO t1 VALUES (0,99),(9,99),(4,0),(7,0),(99,0),(7,0),(8,0),(99,0),(1,0);
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CREATE TABLE t2 (c int) ;
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INSERT INTO t2 VALUES (0),(1);
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > 0 GROUP BY b;
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id select_type table type possible_keys key key_len ref rows Extra
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1 SIMPLE t1 range NULL b 10 NULL 10 Using where; Using index for group-by
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SELECT MIN(a), b FROM t1 WHERE a > 0 GROUP BY b;
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MIN(a) b
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1 0
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9 99
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT c FROM t2 WHERE c = 0 ) GROUP BY b;
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id select_type table type possible_keys key key_len ref rows Extra
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1 PRIMARY t1 index NULL b 10 NULL 9 Using where; Using index
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2 SUBQUERY t2 ALL NULL NULL NULL NULL 2 Using where
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT c FROM t2 WHERE c = 0 ) GROUP BY b;
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MIN(a) b
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1 0
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9 99
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT min(c) FROM t2, t1 t1a, t1 t1b WHERE c = 0 ) GROUP BY b;
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id select_type table type possible_keys key key_len ref rows Extra
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1 PRIMARY t1 index NULL b 10 NULL 9 Using where; Using index
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2 SUBQUERY t2 ALL NULL NULL NULL NULL 2 Using where
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2 SUBQUERY t1a index NULL b 10 NULL 9 Using index; Using join buffer (flat, BNL join)
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2 SUBQUERY t1b index NULL b 10 NULL 9 Using index; Using join buffer (incremental, BNL join)
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT min(c) FROM t2, t1 t1a, t1 t1b WHERE c = 0 ) GROUP BY b;
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MIN(a) b
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1 0
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9 99
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drop table t1, t2;
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End of 5.3 tests
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End of 5.3 tests
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@ -1239,4 +1239,26 @@ SELECT b, min(a) FROM t1 WHERE (a > '0' AND (a > '1' OR b = 'd')) GROUP BY b;
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drop table t1;
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drop table t1;
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--echo #
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--echo # MDEV-4140 Wrong result with GROUP BY + multipart key + MIN/MAX loose scan and a subquery
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--echo #
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CREATE TABLE t1 (a int, b int, KEY (b, a)) ;
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INSERT INTO t1 VALUES (0,99),(9,99),(4,0),(7,0),(99,0),(7,0),(8,0),(99,0),(1,0);
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CREATE TABLE t2 (c int) ;
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INSERT INTO t2 VALUES (0),(1);
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > 0 GROUP BY b;
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SELECT MIN(a), b FROM t1 WHERE a > 0 GROUP BY b;
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT c FROM t2 WHERE c = 0 ) GROUP BY b;
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT c FROM t2 WHERE c = 0 ) GROUP BY b;
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# this test is for 5.5 to ensure that the subquery is expensive
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EXPLAIN
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT min(c) FROM t2, t1 t1a, t1 t1b WHERE c = 0 ) GROUP BY b;
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SELECT MIN(a), b FROM t1 WHERE a > ( SELECT min(c) FROM t2, t1 t1a, t1 t1b WHERE c = 0 ) GROUP BY b;
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drop table t1, t2;
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--echo End of 5.3 tests
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--echo End of 5.3 tests
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@ -12236,7 +12236,7 @@ check_group_min_max_predicates(Item *cond, Item_field *min_max_arg_item,
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&has_min_max, &has_other))
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&has_min_max, &has_other))
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DBUG_RETURN(FALSE);
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DBUG_RETURN(FALSE);
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}
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}
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else if (cur_arg->const_item())
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else if (cur_arg->const_item() && !cur_arg->is_expensive())
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{
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{
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/*
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/*
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For predicates of the form "const OP expr" we also have to check 'expr'
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For predicates of the form "const OP expr" we also have to check 'expr'
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