xref: /sqlite-3.40.0/test/ioerr2.test (revision 58f95c43)
18d96eb0fSdanielk1977# 2007 April 2
28d96eb0fSdanielk1977#
38d96eb0fSdanielk1977# The author disclaims copyright to this source code.  In place of
48d96eb0fSdanielk1977# a legal notice, here is a blessing:
58d96eb0fSdanielk1977#
68d96eb0fSdanielk1977#    May you do good and not evil.
78d96eb0fSdanielk1977#    May you find forgiveness for yourself and forgive others.
88d96eb0fSdanielk1977#    May you share freely, never taking more than you give.
98d96eb0fSdanielk1977#
108d96eb0fSdanielk1977#***********************************************************************
118d96eb0fSdanielk1977# This file implements regression tests for SQLite library.  The
128d96eb0fSdanielk1977# focus of this file is testing for correct handling of I/O errors
138d96eb0fSdanielk1977# such as writes failing because the disk is full.
148d96eb0fSdanielk1977#
158d96eb0fSdanielk1977# The tests in this file use special facilities that are only
168d96eb0fSdanielk1977# available in the SQLite test fixture.
178d96eb0fSdanielk1977#
18dda70fe3Sdrh# $Id: ioerr2.test,v 1.12 2009/06/05 17:09:12 drh Exp $
198d96eb0fSdanielk1977
208d96eb0fSdanielk1977set testdir [file dirname $argv0]
218d96eb0fSdanielk1977source $testdir/tester.tcl
228d96eb0fSdanielk1977
234152e677Sdanielk1977ifcapable !integrityck {
244152e677Sdanielk1977  finish_test
254152e677Sdanielk1977  return
264152e677Sdanielk1977}
274152e677Sdanielk1977
288d96eb0fSdanielk1977do_test ioerr2-1.1 {
298d96eb0fSdanielk1977  execsql {
308d96eb0fSdanielk1977    PRAGMA cache_size = 10;
318d96eb0fSdanielk1977    PRAGMA default_cache_size = 10;
328d96eb0fSdanielk1977    CREATE TABLE t1(a, b, PRIMARY KEY(a, b));
338d96eb0fSdanielk1977    INSERT INTO t1 VALUES(randstr(400,400),randstr(400,400));
348d96eb0fSdanielk1977    INSERT INTO t1 SELECT randstr(400,400), randstr(400,400) FROM t1; -- 2
358d96eb0fSdanielk1977    INSERT INTO t1 SELECT randstr(400,400), randstr(400,400) FROM t1; -- 4
368d96eb0fSdanielk1977    INSERT INTO t1 SELECT randstr(400,400), randstr(400,400) FROM t1; -- 8
378d96eb0fSdanielk1977    INSERT INTO t1 SELECT randstr(400,400), randstr(400,400) FROM t1; -- 16
388d96eb0fSdanielk1977    INSERT INTO t1 SELECT randstr(400,400), randstr(400,400) FROM t1; -- 32
398d96eb0fSdanielk1977  }
408d96eb0fSdanielk1977} {}
418d96eb0fSdanielk1977
428d96eb0fSdanielk1977set ::cksum [execsql {SELECT md5sum(a, b) FROM t1}]
438d96eb0fSdanielk1977proc check_db {testname} {
448d96eb0fSdanielk1977
458d96eb0fSdanielk1977  # Make sure no I/O errors are simulated in this proc.
468d96eb0fSdanielk1977  set ::sqlite_io_error_hit 0
478d96eb0fSdanielk1977  set ::sqlite_io_error_persist 0
488d96eb0fSdanielk1977  set ::sqlite_io_error_pending 0
498d96eb0fSdanielk1977
508d96eb0fSdanielk1977  # Run an integrity-check. If "disk I/O error" is returned, the
518d96eb0fSdanielk1977  # pager must be in error state. In this case open a new database
528d96eb0fSdanielk1977  # connection. Otherwise, try a ROLLBACK, in case a transaction
538d96eb0fSdanielk1977  # is still active.
548d96eb0fSdanielk1977  set rc [catch {execsql {PRAGMA integrity_check}} msg]
551aa5af11Sdrh  if {$rc && ($msg eq "disk I/O error" || $msg eq "database is locked")} {
568d96eb0fSdanielk1977    db close
578d96eb0fSdanielk1977    sqlite3 db test.db
58f5345443Sdrh    set refcnt 0
598d96eb0fSdanielk1977  } else {
609038bb64Sdanielk1977    if {$rc || $msg ne "ok"} {
619038bb64Sdanielk1977      error $msg
629038bb64Sdanielk1977    }
638d96eb0fSdanielk1977    catch {execsql ROLLBACK}
648d96eb0fSdanielk1977  }
658d96eb0fSdanielk1977
668d96eb0fSdanielk1977  # Check that the database checksum is still $::cksum, and that
678d96eb0fSdanielk1977  # the integrity-check passes.
688d96eb0fSdanielk1977  set ck [execsql {SELECT md5sum(a, b) FROM t1}]
698d96eb0fSdanielk1977  do_test ${testname}.cksum [list set ck $ck] $::cksum
708d96eb0fSdanielk1977  integrity_check ${testname}.integrity
71f5345443Sdrh  do_test ${testname}.refcnt {
72f5345443Sdrh    lindex [sqlite3_pager_refcounts db] 0
73f5345443Sdrh  } 0
748d96eb0fSdanielk1977}
758d96eb0fSdanielk1977
768d96eb0fSdanielk1977check_db ioerr2-2
778d96eb0fSdanielk1977
788d96eb0fSdanielk1977set sql {
798d96eb0fSdanielk1977  PRAGMA cache_size = 10;
808d96eb0fSdanielk1977  PRAGMA default_cache_size = 10;
818d96eb0fSdanielk1977  BEGIN;
828d96eb0fSdanielk1977  DELETE FROM t1 WHERE (oid%7)==0;
838d96eb0fSdanielk1977  INSERT INTO t1 SELECT randstr(400,400), randstr(400,400)
848d96eb0fSdanielk1977    WHERE (random()%7)==0;
858d96eb0fSdanielk1977  UPDATE t1 SET a = randstr(400,400), b = randstr(400,400)
868d96eb0fSdanielk1977    WHERE (random()%7)==0;
878d96eb0fSdanielk1977  ROLLBACK;
888d96eb0fSdanielk1977}
898d96eb0fSdanielk1977
90538f570cSdrhforeach bPersist [list 0 1] {
91538f570cSdrh  set ::go 1
92538f570cSdrh  for {set ::N 1} {$::go} {incr ::N} {
93538f570cSdrh    db close
94538f570cSdrh    sqlite3 db test.db
95538f570cSdrh    set ::sqlite_io_error_hit 0
96538f570cSdrh    set ::sqlite_io_error_persist $bPersist
97538f570cSdrh    set ::sqlite_io_error_pending $::N
98538f570cSdrh
99538f570cSdrh    foreach {::go res} [catchsql $sql] {}
100538f570cSdrh    check_db ioerr2-3.$bPersist.$::N
101538f570cSdrh  }
102538f570cSdrh}
1038d96eb0fSdanielk1977foreach bPersist [list 0 1] {
1048d96eb0fSdanielk1977  set ::go 1
1058d96eb0fSdanielk1977  for {set ::N 1} {$::go} {incr ::N} {
1068d96eb0fSdanielk1977    set ::sqlite_io_error_hit 0
1078d96eb0fSdanielk1977    set ::sqlite_io_error_persist $bPersist
1088d96eb0fSdanielk1977    set ::sqlite_io_error_pending $::N
1098d96eb0fSdanielk1977
1108d96eb0fSdanielk1977    foreach {::go res} [catchsql $sql] {}
1117677c0ccSdanielk1977    check_db ioerr2-4.[expr {$bPersist+2}].$::N
1128d96eb0fSdanielk1977  }
1138d96eb0fSdanielk1977}
1148d96eb0fSdanielk1977
115*58f95c43Sdrh# When this test was written, an IO error within the UPDATE statement caused
116*58f95c43Sdrh# a rollback, which tripped all read-cursors, causing the outer SELECT to
117*58f95c43Sdrh# fail with "abort due to ROLLBACK". Now, the loop continues until the UPDATE
118*58f95c43Sdrh# is run successfully. At this point the next IO error occurs within the
119*58f95c43Sdrh# SELECT - throwing the "disk I/O error" that the test case now expects.
120*58f95c43Sdrh#
1219ffe5d72Sdanielk1977do_test ioerr2-5 {
1229ffe5d72Sdanielk1977  execsql {
1239ffe5d72Sdanielk1977    CREATE TABLE t2 AS SELECT * FROM t1;
1248c0a791aSdanielk1977    PRAGMA temp_store = memory;
1259ffe5d72Sdanielk1977  }
1269ffe5d72Sdanielk1977  set ::sqlite_io_error_persist 0
1279ffe5d72Sdanielk1977  set ::go 1
1289ffe5d72Sdanielk1977  set rc [catch {
1298c0a791aSdanielk1977    for {set ::N 2} {$::N<200} {incr ::N} {
1309ffe5d72Sdanielk1977      db eval {SELECT * FROM t1 WHERE rowid IN (1, 5, 10, 15, 20)} {
1319ffe5d72Sdanielk1977        set ::sqlite_io_error_hit 0
1329ffe5d72Sdanielk1977        set ::sqlite_io_error_pending $::N
1339ffe5d72Sdanielk1977        set sql {UPDATE t2 SET b = randstr(400,400)}
1349ffe5d72Sdanielk1977        foreach {::go res} [catchsql $sql] {}
1359ffe5d72Sdanielk1977      }
1369ffe5d72Sdanielk1977    }
1379ffe5d72Sdanielk1977  } msg]
1389ffe5d72Sdanielk1977  list $rc $msg
139*58f95c43Sdrh} {1 {disk I/O error}} ;# used to be "{1 {abort due to ROLLBACK}}"
1409ffe5d72Sdanielk1977
141fab1127bSdanielk1977if {$::tcl_platform(platform) == "unix"} {
142fab1127bSdanielk1977  # Cause the call to xAccess used by [pragma temp_store_directory] to
143fab1127bSdanielk1977  # determine if the specified directory is writable to fail. This causes
144fab1127bSdanielk1977  # SQLite to report "not a writable directory", which is probably the
145fab1127bSdanielk1977  # right answer.
146fab1127bSdanielk1977  #
147fab1127bSdanielk1977  do_test ioerr2-6 {
148fab1127bSdanielk1977    set ::sqlite_io_error_hit 0
149fab1127bSdanielk1977    set ::sqlite_io_error_pending 1
150fab1127bSdanielk1977    catchsql {PRAGMA temp_store_directory = '/tmp/'}
151fab1127bSdanielk1977  } {1 {not a writable directory}}
152fab1127bSdanielk1977}
153fab1127bSdanielk1977
154f7f33fb0Sdanielk1977do_ioerr_test ioerr2-7 -persist 0 -sqlprep {
155f7f33fb0Sdanielk1977  PRAGMA cache_size = 10;
156f7f33fb0Sdanielk1977  PRAGMA auto_vacuum = 1;
157f7f33fb0Sdanielk1977  CREATE TABLE ab(a, b);
158f7f33fb0Sdanielk1977  CREATE TABLE de(d, e);
159f7f33fb0Sdanielk1977  INSERT INTO ab VALUES(1, randstr(200,200));
160f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+1, randstr(200,200) FROM ab;
161f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+2, randstr(200,200) FROM ab;
162f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+4, randstr(200,200) FROM ab;
163f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+8, randstr(200,200) FROM ab;
164f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+16, randstr(200,200) FROM ab;
165f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+32, randstr(200,200) FROM ab;
166f7f33fb0Sdanielk1977  INSERT INTO ab SELECT a+64, randstr(200,200) FROM ab;
167f7f33fb0Sdanielk1977  INSERT INTO de SELECT * FROM ab;
168f7f33fb0Sdanielk1977} -sqlbody {
169f7f33fb0Sdanielk1977  BEGIN;
170f7f33fb0Sdanielk1977  UPDATE ab SET b = randstr(200,200);
171f7f33fb0Sdanielk1977  UPDATE de SET e = randstr(200,200) WHERE d = (SELECT max(d) FROM de);
172f7f33fb0Sdanielk1977  DELETE FROM ab;
173f7f33fb0Sdanielk1977  COMMIT;
174f7f33fb0Sdanielk1977}
175f7f33fb0Sdanielk1977
1768d96eb0fSdanielk1977finish_test
177