3f4d1d1b02
that the index will be smaller and require less disk I/O and thus be faster. FossilOrigin-Name: cfaa7bc12847a7006ccc93815f2395ad5259744a
123 lines
4.0 KiB
Plaintext
123 lines
4.0 KiB
Plaintext
# 2011 March 3
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#
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# The author disclaims copyright to this source code. In place of
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# a legal notice, here is a blessing:
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#
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# May you do good and not evil.
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# May you find forgiveness for yourself and forgive others.
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# May you share freely, never taking more than you give.
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#
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#***********************************************************************
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#
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# This file implements tests for SQLite library. The focus of the tests
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# in this file a corner-case query planner optimization involving the
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# join order of two tables of different sizes.
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#
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set testdir [file dirname $argv0]
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source $testdir/tester.tcl
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ifcapable !stat3 {
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finish_test
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return
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}
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set testprefix analyze6
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proc eqp {sql {db db}} {
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uplevel execsql [list "EXPLAIN QUERY PLAN $sql"] $db
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}
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do_test analyze6-1.0 {
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db eval {
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CREATE TABLE cat(x INT);
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CREATE UNIQUE INDEX catx ON cat(x);
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/* Give cat 16 unique integers */
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INSERT INTO cat VALUES(1);
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INSERT INTO cat VALUES(2);
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INSERT INTO cat SELECT x+2 FROM cat;
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INSERT INTO cat SELECT x+4 FROM cat;
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INSERT INTO cat SELECT x+8 FROM cat;
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CREATE TABLE ev(y INT);
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CREATE INDEX evy ON ev(y);
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/* ev will hold 32 copies of 16 integers found in cat */
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INSERT INTO ev SELECT x FROM cat;
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INSERT INTO ev SELECT x FROM cat;
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INSERT INTO ev SELECT y FROM ev;
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INSERT INTO ev SELECT y FROM ev;
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INSERT INTO ev SELECT y FROM ev;
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INSERT INTO ev SELECT y FROM ev;
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ANALYZE;
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SELECT count(*) FROM cat;
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SELECT count(*) FROM ev;
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}
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} {16 512}
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# The lowest cost plan is to scan CAT and for each integer there, do a single
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# lookup of the first corresponding entry in EV then read off the equal values
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# in EV. (Prior to the 2011-03-04 enhancement to where.c, this query would
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# have used EV for the outer loop instead of CAT - which was about 3x slower.)
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#
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do_test analyze6-1.1 {
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eqp {SELECT count(*) FROM ev, cat WHERE x=y}
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} {0 0 1 {SCAN TABLE cat USING COVERING INDEX catx (~16 rows)} 0 1 0 {SEARCH TABLE ev USING COVERING INDEX evy (y=?) (~32 rows)}}
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# The same plan is chosen regardless of the order of the tables in the
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# FROM clause.
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#
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do_test analyze6-1.2 {
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eqp {SELECT count(*) FROM cat, ev WHERE x=y}
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} {0 0 0 {SCAN TABLE cat USING COVERING INDEX catx (~16 rows)} 0 1 1 {SEARCH TABLE ev USING COVERING INDEX evy (y=?) (~32 rows)}}
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# Ticket [83ea97620bd3101645138b7b0e71c12c5498fe3d] 2011-03-30
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# If ANALYZE is run on an empty table, make sure indices are used
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# on the table.
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#
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do_test analyze6-2.1 {
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execsql {
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CREATE TABLE t201(x INTEGER PRIMARY KEY, y UNIQUE, z);
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CREATE INDEX t201z ON t201(z);
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ANALYZE;
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}
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eqp {SELECT * FROM t201 WHERE z=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX t201z (z=?) (~10 rows)}}
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do_test analyze6-2.2 {
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eqp {SELECT * FROM t201 WHERE y=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX sqlite_autoindex_t201_1 (y=?) (~1 rows)}}
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do_test analyze6-2.3 {
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eqp {SELECT * FROM t201 WHERE x=5}
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} {0 0 0 {SEARCH TABLE t201 USING INTEGER PRIMARY KEY (rowid=?) (~1 rows)}}
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do_test analyze6-2.4 {
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execsql {
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INSERT INTO t201 VALUES(1,2,3);
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ANALYZE t201;
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}
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eqp {SELECT * FROM t201 WHERE z=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX t201z (z=?) (~10 rows)}}
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do_test analyze6-2.5 {
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eqp {SELECT * FROM t201 WHERE y=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX sqlite_autoindex_t201_1 (y=?) (~1 rows)}}
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do_test analyze6-2.6 {
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eqp {SELECT * FROM t201 WHERE x=5}
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} {0 0 0 {SEARCH TABLE t201 USING INTEGER PRIMARY KEY (rowid=?) (~1 rows)}}
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do_test analyze6-2.7 {
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execsql {
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INSERT INTO t201 VALUES(4,5,7);
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INSERT INTO t201 SELECT x+100, y+100, z+100 FROM t201;
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INSERT INTO t201 SELECT x+200, y+200, z+200 FROM t201;
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INSERT INTO t201 SELECT x+400, y+400, z+400 FROM t201;
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ANALYZE t201;
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}
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eqp {SELECT * FROM t201 WHERE z=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX t201z (z=?) (~10 rows)}}
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do_test analyze6-2.8 {
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eqp {SELECT * FROM t201 WHERE y=5}
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} {0 0 0 {SEARCH TABLE t201 USING INDEX sqlite_autoindex_t201_1 (y=?) (~1 rows)}}
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do_test analyze6-2.9 {
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eqp {SELECT * FROM t201 WHERE x=5}
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} {0 0 0 {SEARCH TABLE t201 USING INTEGER PRIMARY KEY (rowid=?) (~1 rows)}}
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finish_test
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