where3.test 15 KB

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  1. # 2006 January 31
  2. #
  3. # The author disclaims copyright to this source code. In place of
  4. # a legal notice, here is a blessing:
  5. #
  6. # May you do good and not evil.
  7. # May you find forgiveness for yourself and forgive others.
  8. # May you share freely, never taking more than you give.
  9. #
  10. #***********************************************************************
  11. # This file implements regression tests for SQLite library. The
  12. # focus of this file is testing the join reordering optimization
  13. # in cases that include a LEFT JOIN.
  14. #
  15. # $Id: where3.test,v 1.4 2008/04/17 19:14:02 drh Exp $
  16. set testdir [file dirname $argv0]
  17. source $testdir/tester.tcl
  18. # The following is from ticket #1652.
  19. #
  20. # A comma join then a left outer join: A,B left join C.
  21. # Arrange indices so that the B table is chosen to go first.
  22. # Also put an index on C, but make sure that A is chosen before C.
  23. #
  24. do_test where3-1.1 {
  25. execsql {
  26. CREATE TABLE t1(a, b);
  27. CREATE TABLE t2(p, q);
  28. CREATE TABLE t3(x, y);
  29. INSERT INTO t1 VALUES(111,'one');
  30. INSERT INTO t1 VALUES(222,'two');
  31. INSERT INTO t1 VALUES(333,'three');
  32. INSERT INTO t2 VALUES(1,111);
  33. INSERT INTO t2 VALUES(2,222);
  34. INSERT INTO t2 VALUES(4,444);
  35. CREATE INDEX t2i1 ON t2(p);
  36. INSERT INTO t3 VALUES(999,'nine');
  37. CREATE INDEX t3i1 ON t3(x);
  38. SELECT * FROM t1, t2 LEFT JOIN t3 ON q=x WHERE p=2 AND a=q;
  39. }
  40. } {222 two 2 222 {} {}}
  41. ifcapable explain {
  42. do_test where3-1.1.1 {
  43. explain_no_trace {SELECT * FROM t1, t2 LEFT JOIN t3 ON q=x
  44. WHERE p=2 AND a=q}
  45. } [explain_no_trace {SELECT * FROM t1, t2 LEFT JOIN t3 ON x=q
  46. WHERE p=2 AND a=q}]
  47. }
  48. # Ticket #1830
  49. #
  50. # This is similar to the above but with the LEFT JOIN on the
  51. # other side.
  52. #
  53. do_test where3-1.2 {
  54. execsql {
  55. CREATE TABLE parent1(parent1key, child1key, Child2key, child3key);
  56. CREATE TABLE child1 ( child1key NVARCHAR, value NVARCHAR );
  57. CREATE UNIQUE INDEX PKIDXChild1 ON child1 ( child1key );
  58. CREATE TABLE child2 ( child2key NVARCHAR, value NVARCHAR );
  59. INSERT INTO parent1(parent1key,child1key,child2key)
  60. VALUES ( 1, 'C1.1', 'C2.1' );
  61. INSERT INTO child1 ( child1key, value ) VALUES ( 'C1.1', 'Value for C1.1' );
  62. INSERT INTO child2 ( child2key, value ) VALUES ( 'C2.1', 'Value for C2.1' );
  63. INSERT INTO parent1 ( parent1key, child1key, child2key )
  64. VALUES ( 2, 'C1.2', 'C2.2' );
  65. INSERT INTO child2 ( child2key, value ) VALUES ( 'C2.2', 'Value for C2.2' );
  66. INSERT INTO parent1 ( parent1key, child1key, child2key )
  67. VALUES ( 3, 'C1.3', 'C2.3' );
  68. INSERT INTO child1 ( child1key, value ) VALUES ( 'C1.3', 'Value for C1.3' );
  69. INSERT INTO child2 ( child2key, value ) VALUES ( 'C2.3', 'Value for C2.3' );
  70. SELECT parent1.parent1key, child1.value, child2.value
  71. FROM parent1
  72. LEFT OUTER JOIN child1 ON child1.child1key = parent1.child1key
  73. INNER JOIN child2 ON child2.child2key = parent1.child2key;
  74. }
  75. } {1 {Value for C1.1} {Value for C2.1} 2 {} {Value for C2.2} 3 {Value for C1.3} {Value for C2.3}}
  76. ifcapable explain {
  77. do_test where3-1.2.1 {
  78. explain_no_trace {
  79. SELECT parent1.parent1key, child1.value, child2.value
  80. FROM parent1
  81. LEFT OUTER JOIN child1 ON child1.child1key = parent1.child1key
  82. INNER JOIN child2 ON child2.child2key = parent1.child2key;
  83. }
  84. } [explain_no_trace {
  85. SELECT parent1.parent1key, child1.value, child2.value
  86. FROM parent1
  87. LEFT OUTER JOIN child1 ON parent1.child1key = child1.child1key
  88. INNER JOIN child2 ON child2.child2key = parent1.child2key;
  89. }]
  90. }
  91. # This procedure executes the SQL. Then it appends
  92. # the names of the table and index used
  93. #
  94. proc queryplan {sql} {
  95. set ::sqlite_sort_count 0
  96. set data [execsql $sql]
  97. set eqp [execsql "EXPLAIN QUERY PLAN $sql"]
  98. # puts eqp=$eqp
  99. foreach {a b c x} $eqp {
  100. if {[regexp { TABLE (\w+ AS )?(\w+) USING.* INDEX (\w+)\y} \
  101. $x all as tab idx]} {
  102. lappend data $tab $idx
  103. } elseif {[regexp { TABLE (\w+ AS )?(\w+)\y} $x all as tab]} {
  104. lappend data $tab *
  105. }
  106. }
  107. return $data
  108. }
  109. # If you have a from clause of the form: A B C left join D
  110. # then make sure the query optimizer is able to reorder the
  111. # A B C part anyway it wants.
  112. #
  113. # Following the fix to ticket #1652, there was a time when
  114. # the C table would not reorder. So the following reorderings
  115. # were possible:
  116. #
  117. # A B C left join D
  118. # B A C left join D
  119. #
  120. # But these reorders were not allowed
  121. #
  122. # C A B left join D
  123. # A C B left join D
  124. # C B A left join D
  125. # B C A left join D
  126. #
  127. # The following tests are here to verify that the latter four
  128. # reorderings are allowed again.
  129. #
  130. do_test where3-2.1 {
  131. execsql {
  132. CREATE TABLE tA(apk integer primary key, ax);
  133. CREATE TABLE tB(bpk integer primary key, bx);
  134. CREATE TABLE tC(cpk integer primary key, cx);
  135. CREATE TABLE tD(dpk integer primary key, dx);
  136. }
  137. queryplan {
  138. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  139. WHERE cpk=bx AND bpk=ax
  140. }
  141. } {tA * tB * tC * tD *}
  142. do_test where3-2.1.1 {
  143. queryplan {
  144. SELECT * FROM tA, tB, tC LEFT JOIN tD ON cx=dpk
  145. WHERE cpk=bx AND bpk=ax
  146. }
  147. } {tA * tB * tC * tD *}
  148. do_test where3-2.1.2 {
  149. queryplan {
  150. SELECT * FROM tA, tB, tC LEFT JOIN tD ON cx=dpk
  151. WHERE bx=cpk AND bpk=ax
  152. }
  153. } {tA * tB * tC * tD *}
  154. do_test where3-2.1.3 {
  155. queryplan {
  156. SELECT * FROM tA, tB, tC LEFT JOIN tD ON cx=dpk
  157. WHERE bx=cpk AND ax=bpk
  158. }
  159. } {tA * tB * tC * tD *}
  160. do_test where3-2.1.4 {
  161. queryplan {
  162. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  163. WHERE bx=cpk AND ax=bpk
  164. }
  165. } {tA * tB * tC * tD *}
  166. do_test where3-2.1.5 {
  167. queryplan {
  168. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  169. WHERE cpk=bx AND ax=bpk
  170. }
  171. } {tA * tB * tC * tD *}
  172. do_test where3-2.2 {
  173. queryplan {
  174. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  175. WHERE cpk=bx AND apk=bx
  176. }
  177. } {tB * tA * tC * tD *}
  178. do_test where3-2.3 {
  179. queryplan {
  180. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  181. WHERE cpk=bx AND apk=bx
  182. }
  183. } {tB * tA * tC * tD *}
  184. do_test where3-2.4 {
  185. queryplan {
  186. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  187. WHERE apk=cx AND bpk=ax
  188. }
  189. } {tC * tA * tB * tD *}
  190. do_test where3-2.5 {
  191. queryplan {
  192. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  193. WHERE cpk=ax AND bpk=cx
  194. }
  195. } {tA * tC * tB * tD *}
  196. do_test where3-2.6 {
  197. queryplan {
  198. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  199. WHERE bpk=cx AND apk=bx
  200. }
  201. } {tC * tB * tA * tD *}
  202. do_test where3-2.7 {
  203. queryplan {
  204. SELECT * FROM tA, tB, tC LEFT JOIN tD ON dpk=cx
  205. WHERE cpk=bx AND apk=cx
  206. }
  207. } {tB * tC * tA * tD *}
  208. # Ticket [13f033c865f878953]
  209. # If the outer loop must be a full table scan, do not let ANALYZE trick
  210. # the planner into use a table for the outer loop that might be indexable
  211. # if held until an inner loop.
  212. #
  213. do_execsql_test where3-3.0 {
  214. CREATE TABLE t301(a INTEGER PRIMARY KEY,b,c);
  215. CREATE INDEX t301c ON t301(c);
  216. INSERT INTO t301 VALUES(1,2,3);
  217. CREATE TABLE t302(x, y);
  218. INSERT INTO t302 VALUES(4,5);
  219. ANALYZE;
  220. explain query plan SELECT * FROM t302, t301 WHERE t302.x=5 AND t301.a=t302.y;
  221. } {
  222. 0 0 0 {SCAN TABLE t302}
  223. 0 1 1 {SEARCH TABLE t301 USING INTEGER PRIMARY KEY (rowid=?)}
  224. }
  225. do_execsql_test where3-3.1 {
  226. explain query plan
  227. SELECT * FROM t301, t302 WHERE t302.x=5 AND t301.a=t302.y;
  228. } {
  229. 0 0 1 {SCAN TABLE t302}
  230. 0 1 0 {SEARCH TABLE t301 USING INTEGER PRIMARY KEY (rowid=?)}
  231. }
  232. do_execsql_test where3-3.2 {
  233. SELECT * FROM t301 WHERE c=3 AND a IS NULL;
  234. } {}
  235. do_execsql_test where3-3.3 {
  236. SELECT * FROM t301 WHERE c=3 AND a IS NOT NULL;
  237. } {1 2 3}
  238. if 0 { # Query planner no longer does this
  239. # Verify that when there are multiple tables in a join which must be
  240. # full table scans that the query planner attempts put the table with
  241. # the fewest number of output rows as the outer loop.
  242. #
  243. do_execsql_test where3-4.0 {
  244. CREATE TABLE t400(a INTEGER PRIMARY KEY, b, c);
  245. CREATE TABLE t401(p INTEGER PRIMARY KEY, q, r);
  246. CREATE TABLE t402(x INTEGER PRIMARY KEY, y, z);
  247. EXPLAIN QUERY PLAN
  248. SELECT * FROM t400, t401, t402 WHERE t402.z GLOB 'abc*';
  249. } {
  250. 0 0 2 {SCAN TABLE t402}
  251. 0 1 0 {SCAN TABLE t400}
  252. 0 2 1 {SCAN TABLE t401}
  253. }
  254. do_execsql_test where3-4.1 {
  255. EXPLAIN QUERY PLAN
  256. SELECT * FROM t400, t401, t402 WHERE t401.r GLOB 'abc*';
  257. } {
  258. 0 0 1 {SCAN TABLE t401}
  259. 0 1 0 {SCAN TABLE t400}
  260. 0 2 2 {SCAN TABLE t402}
  261. }
  262. do_execsql_test where3-4.2 {
  263. EXPLAIN QUERY PLAN
  264. SELECT * FROM t400, t401, t402 WHERE t400.c GLOB 'abc*';
  265. } {
  266. 0 0 0 {SCAN TABLE t400}
  267. 0 1 1 {SCAN TABLE t401}
  268. 0 2 2 {SCAN TABLE t402}
  269. }
  270. } ;# endif
  271. # Verify that a performance regression encountered by firefox
  272. # has been fixed.
  273. #
  274. do_execsql_test where3-5.0 {
  275. CREATE TABLE aaa (id INTEGER PRIMARY KEY, type INTEGER,
  276. fk INTEGER DEFAULT NULL, parent INTEGER,
  277. position INTEGER, title LONGVARCHAR,
  278. keyword_id INTEGER, folder_type TEXT,
  279. dateAdded INTEGER, lastModified INTEGER);
  280. CREATE INDEX aaa_111 ON aaa (fk, type);
  281. CREATE INDEX aaa_222 ON aaa (parent, position);
  282. CREATE INDEX aaa_333 ON aaa (fk, lastModified);
  283. CREATE TABLE bbb (id INTEGER PRIMARY KEY, type INTEGER,
  284. fk INTEGER DEFAULT NULL, parent INTEGER,
  285. position INTEGER, title LONGVARCHAR,
  286. keyword_id INTEGER, folder_type TEXT,
  287. dateAdded INTEGER, lastModified INTEGER);
  288. CREATE INDEX bbb_111 ON bbb (fk, type);
  289. CREATE INDEX bbb_222 ON bbb (parent, position);
  290. CREATE INDEX bbb_333 ON bbb (fk, lastModified);
  291. EXPLAIN QUERY PLAN
  292. SELECT bbb.title AS tag_title
  293. FROM aaa JOIN bbb ON bbb.id = aaa.parent
  294. WHERE aaa.fk = 'constant'
  295. AND LENGTH(bbb.title) > 0
  296. AND bbb.parent = 4
  297. ORDER BY bbb.title COLLATE NOCASE ASC;
  298. } {
  299. 0 0 0 {SEARCH TABLE aaa USING INDEX aaa_333 (fk=?)}
  300. 0 1 1 {SEARCH TABLE bbb USING INTEGER PRIMARY KEY (rowid=?)}
  301. 0 0 0 {USE TEMP B-TREE FOR ORDER BY}
  302. }
  303. do_execsql_test where3-5.1 {
  304. EXPLAIN QUERY PLAN
  305. SELECT bbb.title AS tag_title
  306. FROM aaa JOIN aaa AS bbb ON bbb.id = aaa.parent
  307. WHERE aaa.fk = 'constant'
  308. AND LENGTH(bbb.title) > 0
  309. AND bbb.parent = 4
  310. ORDER BY bbb.title COLLATE NOCASE ASC;
  311. } {
  312. 0 0 0 {SEARCH TABLE aaa USING INDEX aaa_333 (fk=?)}
  313. 0 1 1 {SEARCH TABLE aaa AS bbb USING INTEGER PRIMARY KEY (rowid=?)}
  314. 0 0 0 {USE TEMP B-TREE FOR ORDER BY}
  315. }
  316. do_execsql_test where3-5.2 {
  317. EXPLAIN QUERY PLAN
  318. SELECT bbb.title AS tag_title
  319. FROM bbb JOIN aaa ON bbb.id = aaa.parent
  320. WHERE aaa.fk = 'constant'
  321. AND LENGTH(bbb.title) > 0
  322. AND bbb.parent = 4
  323. ORDER BY bbb.title COLLATE NOCASE ASC;
  324. } {
  325. 0 0 1 {SEARCH TABLE aaa USING INDEX aaa_333 (fk=?)}
  326. 0 1 0 {SEARCH TABLE bbb USING INTEGER PRIMARY KEY (rowid=?)}
  327. 0 0 0 {USE TEMP B-TREE FOR ORDER BY}
  328. }
  329. do_execsql_test where3-5.3 {
  330. EXPLAIN QUERY PLAN
  331. SELECT bbb.title AS tag_title
  332. FROM aaa AS bbb JOIN aaa ON bbb.id = aaa.parent
  333. WHERE aaa.fk = 'constant'
  334. AND LENGTH(bbb.title) > 0
  335. AND bbb.parent = 4
  336. ORDER BY bbb.title COLLATE NOCASE ASC;
  337. } {
  338. 0 0 1 {SEARCH TABLE aaa USING INDEX aaa_333 (fk=?)}
  339. 0 1 0 {SEARCH TABLE aaa AS bbb USING INTEGER PRIMARY KEY (rowid=?)}
  340. 0 0 0 {USE TEMP B-TREE FOR ORDER BY}
  341. }
  342. # Name resolution with NATURAL JOIN and USING
  343. #
  344. do_test where3-6.setup {
  345. db eval {
  346. CREATE TABLE t6w(a, w);
  347. INSERT INTO t6w VALUES(1, 'w-one');
  348. INSERT INTO t6w VALUES(2, 'w-two');
  349. INSERT INTO t6w VALUES(9, 'w-nine');
  350. CREATE TABLE t6x(a, x);
  351. INSERT INTO t6x VALUES(1, 'x-one');
  352. INSERT INTO t6x VALUES(3, 'x-three');
  353. INSERT INTO t6x VALUES(9, 'x-nine');
  354. CREATE TABLE t6y(a, y);
  355. INSERT INTO t6y VALUES(1, 'y-one');
  356. INSERT INTO t6y VALUES(4, 'y-four');
  357. INSERT INTO t6y VALUES(9, 'y-nine');
  358. CREATE TABLE t6z(a, z);
  359. INSERT INTO t6z VALUES(1, 'z-one');
  360. INSERT INTO t6z VALUES(5, 'z-five');
  361. INSERT INTO t6z VALUES(9, 'z-nine');
  362. }
  363. } {}
  364. set cnt 0
  365. foreach predicate {
  366. {}
  367. {ORDER BY a}
  368. {ORDER BY t6w.a}
  369. {WHERE a>0}
  370. {WHERE t6y.a>0}
  371. {WHERE a>0 ORDER BY a}
  372. } {
  373. incr cnt
  374. do_test where3-6.$cnt.1 {
  375. set sql "SELECT * FROM t6w NATURAL JOIN t6x NATURAL JOIN t6y"
  376. append sql " NATURAL JOIN t6z "
  377. append sql $::predicate
  378. db eval $sql
  379. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  380. do_test where3-6.$cnt.2 {
  381. set sql "SELECT * FROM t6w JOIN t6x USING(a) JOIN t6y USING(a)"
  382. append sql " JOIN t6z USING(a) "
  383. append sql $::predicate
  384. db eval $sql
  385. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  386. do_test where3-6.$cnt.3 {
  387. set sql "SELECT * FROM t6w NATURAL JOIN t6x JOIN t6y USING(a)"
  388. append sql " JOIN t6z USING(a) "
  389. append sql $::predicate
  390. db eval $sql
  391. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  392. do_test where3-6.$cnt.4 {
  393. set sql "SELECT * FROM t6w JOIN t6x USING(a) NATURAL JOIN t6y"
  394. append sql " JOIN t6z USING(a) "
  395. append sql $::predicate
  396. db eval $sql
  397. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  398. do_test where3-6.$cnt.5 {
  399. set sql "SELECT * FROM t6w JOIN t6x USING(a) JOIN t6y USING(a)"
  400. append sql " NATURAL JOIN t6z "
  401. append sql $::predicate
  402. db eval $sql
  403. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  404. do_test where3-6.$cnt.6 {
  405. set sql "SELECT * FROM t6w JOIN t6x USING(a) NATURAL JOIN t6y"
  406. append sql " NATURAL JOIN t6z "
  407. append sql $::predicate
  408. db eval $sql
  409. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  410. do_test where3-6.$cnt.7 {
  411. set sql "SELECT * FROM t6w NATURAL JOIN t6x JOIN t6y USING(a)"
  412. append sql " NATURAL JOIN t6z "
  413. append sql $::predicate
  414. db eval $sql
  415. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  416. do_test where3-6.$cnt.8 {
  417. set sql "SELECT * FROM t6w NATURAL JOIN t6x NATURAL JOIN t6y"
  418. append sql " JOIN t6z USING(a) "
  419. append sql $::predicate
  420. db eval $sql
  421. } {1 w-one x-one y-one z-one 9 w-nine x-nine y-nine z-nine}
  422. }
  423. do_execsql_test where3-7-setup {
  424. CREATE TABLE t71(x1 INTEGER PRIMARY KEY, y1);
  425. CREATE TABLE t72(x2 INTEGER PRIMARY KEY, y2);
  426. CREATE TABLE t73(x3, y3);
  427. CREATE TABLE t74(x4, y4);
  428. INSERT INTO t71 VALUES(123,234);
  429. INSERT INTO t72 VALUES(234,345);
  430. INSERT INTO t73 VALUES(123,234);
  431. INSERT INTO t74 VALUES(234,345);
  432. INSERT INTO t74 VALUES(234,678);
  433. } {}
  434. foreach disabled_opt {none omit-noop-join all} {
  435. optimization_control db all 1
  436. optimization_control db $disabled_opt 0
  437. do_execsql_test where3-7.$disabled_opt.1 {
  438. SELECT x1 FROM t71 LEFT JOIN t72 ON x2=y1;
  439. } {123}
  440. do_execsql_test where3-7.$disabled_opt.2 {
  441. SELECT x1 FROM t71 LEFT JOIN t72 ON x2=y1 WHERE y2 IS NULL;
  442. } {}
  443. do_execsql_test where3-7.$disabled_opt.3 {
  444. SELECT x1 FROM t71 LEFT JOIN t72 ON x2=y1 WHERE y2 IS NOT NULL;
  445. } {123}
  446. do_execsql_test where3-7.$disabled_opt.4 {
  447. SELECT x1 FROM t71 LEFT JOIN t72 ON x2=y1 AND y2 IS NULL;
  448. } {123}
  449. do_execsql_test where3-7.$disabled_opt.5 {
  450. SELECT x1 FROM t71 LEFT JOIN t72 ON x2=y1 AND y2 IS NOT NULL;
  451. } {123}
  452. do_execsql_test where3-7.$disabled_opt.6 {
  453. SELECT x3 FROM t73 LEFT JOIN t72 ON x2=y3;
  454. } {123}
  455. do_execsql_test where3-7.$disabled_opt.7 {
  456. SELECT DISTINCT x3 FROM t73 LEFT JOIN t72 ON x2=y3;
  457. } {123}
  458. do_execsql_test where3-7.$disabled_opt.8 {
  459. SELECT x3 FROM t73 LEFT JOIN t74 ON x4=y3;
  460. } {123 123}
  461. do_execsql_test where3-7.$disabled_opt.9 {
  462. SELECT DISTINCT x3 FROM t73 LEFT JOIN t74 ON x4=y3;
  463. } {123}
  464. }
  465. finish_test