66560adab3
implementations instead of the more complicated virtual function table. Omit the asynchronous I/O demo. (CVS 2870) FossilOrigin-Name: 2529c2e11fa1d345ec61f647e4f6fae20a7133d6
436 lines
14 KiB
Plaintext
436 lines
14 KiB
Plaintext
# 2001 September 15
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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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# This file implements regression tests for SQLite library.
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#
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# The focus of this file is testing the ability of the database to
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# uses its rollback journal to recover intact (no database corruption)
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# from a power failure during the middle of a COMMIT. The OS interface
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# modules are overloaded in a separate instance of testfixture using
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# the modified I/O routines found in test6.c. These routines allow us
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# to simulate the kind of file damage that occurs after a power failure.
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#
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# $Id: crash.test,v 1.21 2006/01/06 14:32:20 drh Exp $
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set testdir [file dirname $argv0]
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source $testdir/tester.tcl
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ifcapable !crashtest {
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finish_test
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return
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}
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# set repeats 100
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set repeats 10
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# This proc execs a seperate process that crashes midway through executing
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# the SQL script $sql on database test.db.
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#
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# The crash occurs during a sync() of file $crashfile. When the crash
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# occurs a random subset of all unsynced writes made by the process are
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# written into the files on disk. Argument $crashdelay indicates the
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# number of file syncs to wait before crashing.
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#
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# The return value is a list of two elements. The first element is a
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# boolean, indicating whether or not the process actually crashed or
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# reported some other error. The second element in the returned list is the
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# error message. This is "child process exited abnormally" if the crash
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# occured.
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proc crashsql {crashdelay crashfile sql} {
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set cfile [file join [pwd] $crashfile]
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set f [open crash.tcl w]
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puts $f "sqlite3_crashparams $crashdelay $cfile"
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puts $f "set sqlite_pending_byte $::sqlite_pending_byte"
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puts $f {sqlite3 db test.db}
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# This block sets the cache size of the main database to 10
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# pages. This is done in case the build is configured to omit
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# "PRAGMA cache_size".
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puts $f {db eval {SELECT * FROM sqlite_master;}}
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puts $f {set bt [btree_from_db db]}
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puts $f {btree_set_cache_size $bt 10}
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puts $f "db eval {"
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puts $f "$sql"
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puts $f "}"
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close $f
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set r [catch {
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exec [info nameofexec] crash.tcl >@stdout
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} msg]
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lappend r $msg
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}
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# The following procedure computes a "signature" for table "abc". If
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# abc changes in any way, the signature should change.
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proc signature {} {
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return [db eval {SELECT count(*), md5sum(a), md5sum(b), md5sum(c) FROM abc}]
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}
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proc signature2 {} {
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return [db eval {SELECT count(*), md5sum(a), md5sum(b), md5sum(c) FROM abc2}]
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}
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#--------------------------------------------------------------------------
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# Simple crash test:
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#
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# crash-1.1: Create a database with a table with two rows.
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# crash-1.2: Run a 'DELETE FROM abc WHERE a = 1' that crashes during
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# the first journal-sync.
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# crash-1.3: Ensure the database is in the same state as after crash-1.1.
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# crash-1.4: Run a 'DELETE FROM abc WHERE a = 1' that crashes during
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# the first database-sync.
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# crash-1.5: Ensure the database is in the same state as after crash-1.1.
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# crash-1.6: Run a 'DELETE FROM abc WHERE a = 1' that crashes during
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# the second journal-sync.
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# crash-1.7: Ensure the database is in the same state as after crash-1.1.
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#
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# Tests 1.8 through 1.11 test for crashes on the third journal sync and
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# second database sync. Neither of these is required in such a small test
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# case, so these tests are just to verify that the test infrastructure
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# operates as expected.
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#
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do_test crash-1.1 {
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execsql {
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CREATE TABLE abc(a, b, c);
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INSERT INTO abc VALUES(1, 2, 3);
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INSERT INTO abc VALUES(4, 5, 6);
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}
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set ::sig [signature]
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expr 0
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} {0}
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do_test crash-1.2 {
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crashsql 1 test.db-journal {
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DELETE FROM abc WHERE a = 1;
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}
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} {1 {child process exited abnormally}}
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do_test crash-1.3 {
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signature
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} $::sig
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do_test crash-1.4 {
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crashsql 1 test.db {
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DELETE FROM abc WHERE a = 1;
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}
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} {1 {child process exited abnormally}}
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do_test crash-1.5 {
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signature
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} $::sig
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do_test crash-1.6 {
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crashsql 2 test.db-journal {
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DELETE FROM abc WHERE a = 1;
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}
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} {1 {child process exited abnormally}}
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do_test crash-1.7 {
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catchsql {
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SELECT * FROM abc;
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}
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} {0 {1 2 3 4 5 6}}
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do_test crash-1.8 {
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crashsql 3 test.db-journal {
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DELETE FROM abc WHERE a = 1;
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}
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} {0 {}}
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do_test crash-1.9 {
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catchsql {
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SELECT * FROM abc;
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}
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} {0 {4 5 6}}
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do_test crash-1.10 {
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crashsql 2 test.db {
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DELETE FROM abc WHERE a = 4;
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}
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} {0 {}}
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do_test crash-1.11 {
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catchsql {
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SELECT * FROM abc;
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}
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} {0 {}}
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#--------------------------------------------------------------------------
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# The following tests test recovery when both the database file and the the
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# journal file contain corrupt data. This can happen after pages are
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# written to the database file before a transaction is committed due to
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# cache-pressure.
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#
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# crash-2.1: Insert 18 pages of data into the database.
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# crash-2.2: Check the database file size looks ok.
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# crash-2.3: Delete 15 or so pages (with a 10 page page-cache), then crash.
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# crash-2.4: Ensure the database is in the same state as after crash-2.1.
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#
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# Test cases crash-2.5 and crash-2.6 check that the database is OK if the
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# crash occurs during the main database file sync. But this isn't really
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# different from the crash-1.* cases.
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#
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do_test crash-2.1 {
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execsql { BEGIN }
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for {set n 0} {$n < 1000} {incr n} {
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execsql "INSERT INTO abc VALUES($n, [expr 2*$n], [expr 3*$n])"
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}
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execsql { COMMIT }
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set ::sig [signature]
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execsql { SELECT sum(a), sum(b), sum(c) from abc }
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} {499500 999000 1498500}
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do_test crash-2.2 {
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expr ([file size test.db] / 1024)>16
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} {1}
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do_test crash-2.3 {
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crashsql 2 test.db-journal {
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DELETE FROM abc WHERE a < 800;
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}
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} {1 {child process exited abnormally}}
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do_test crash-2.4 {
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signature
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} $sig
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do_test crash-2.5 {
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crashsql 1 test.db {
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DELETE FROM abc WHERE a<800;
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}
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} {1 {child process exited abnormally}}
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do_test crash-2.6 {
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signature
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} $sig
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#--------------------------------------------------------------------------
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# The crash-3.* test cases are essentially the same test as test case
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# crash-2.*, but with a more complicated data set.
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#
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# The test is repeated a few times with different seeds for the random
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# number generator in the crashing executable. Because there is no way to
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# seed the random number generator directly, some SQL is added to the test
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# case to 'use up' a different quantity random numbers before the test SQL
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# is executed.
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#
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# Make sure the file is much bigger than the pager-cache (10 pages). This
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# ensures that cache-spills happen regularly.
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do_test crash-3.0 {
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execsql {
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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}
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expr ([file size test.db] / 1024) > 450
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} {1}
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for {set i 1} {$i < $repeats} {incr i} {
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set sig [signature]
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do_test crash-3.$i.1 {
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crashsql [expr $i%5 + 1] test.db-journal "
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BEGIN;
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SELECT random() FROM abc LIMIT $i;
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INSERT INTO abc VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc WHERE random()%10!=0;
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COMMIT;
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"
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} {1 {child process exited abnormally}}
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do_test crash-3.$i.2 {
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signature
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} $sig
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}
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#--------------------------------------------------------------------------
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# The following test cases - crash-4.* - test the correct recovery of the
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# database when a crash occurs during a multi-file transaction.
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#
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# crash-4.1.*: Test recovery when crash occurs during sync() of the
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# main database journal file.
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# crash-4.2.*: Test recovery when crash occurs during sync() of an
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# attached database journal file.
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# crash-4.3.*: Test recovery when crash occurs during sync() of the master
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# journal file.
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#
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do_test crash-4.0 {
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file delete -force test2.db
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file delete -force test2.db-journal
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execsql {
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ATTACH 'test2.db' AS aux;
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PRAGMA aux.default_cache_size = 10;
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CREATE TABLE aux.abc2 AS SELECT 2*a as a, 2*b as b, 2*c as c FROM abc;
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}
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expr ([file size test2.db] / 1024) > 450
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} {1}
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for {set i 1} {$i<$repeats} {incr i} {
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set sig [signature]
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set sig2 [signature2]
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do_test crash-4.1.$i.1 {
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set c [crashsql $i test.db-journal "
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ATTACH 'test2.db' AS aux;
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BEGIN;
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SELECT random() FROM abc LIMIT $i;
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INSERT INTO abc VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc WHERE random()%10!=0;
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INSERT INTO abc2 VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc2 WHERE random()%10!=0;
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COMMIT;
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"]
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set c
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} {1 {child process exited abnormally}}
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do_test crash-4.1.$i.2 {
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signature
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} $sig
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do_test crash-4.1.$i.3 {
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signature2
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} $sig2
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}
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set i 0
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while {[incr i]} {
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set sig [signature]
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set sig2 [signature2]
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set ::fin 0
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do_test crash-4.2.$i.1 {
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set c [crashsql $i test2.db-journal "
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ATTACH 'test2.db' AS aux;
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BEGIN;
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SELECT random() FROM abc LIMIT $i;
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INSERT INTO abc VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc WHERE random()%10!=0;
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INSERT INTO abc2 VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc2 WHERE random()%10!=0;
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COMMIT;
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"]
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if { $c == {0 {}} } {
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set ::fin 1
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set c {1 {child process exited abnormally}}
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}
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set c
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} {1 {child process exited abnormally}}
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if { $::fin } break
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do_test crash-4.2.$i.2 {
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signature
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} $sig
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do_test crash-4.2.$i.3 {
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signature2
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} $sig2
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}
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for {set i 1} {$i < 5} {incr i} {
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set sig [signature]
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set sig2 [signature2]
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do_test crash-4.3.$i.1 {
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crashsql 1 test.db-mj* "
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ATTACH 'test2.db' AS aux;
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BEGIN;
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SELECT random() FROM abc LIMIT $i;
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INSERT INTO abc VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc WHERE random()%10!=0;
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INSERT INTO abc2 VALUES(randstr(10,10), 0, 0);
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DELETE FROM abc2 WHERE random()%10!=0;
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COMMIT;
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"
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} {1 {child process exited abnormally}}
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do_test crash-4.3.$i.2 {
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signature
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} $sig
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do_test crash-4.3.$i.3 {
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signature2
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} $sig2
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}
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#--------------------------------------------------------------------------
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# The following test cases - crash-5.* - exposes a bug that existed in the
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# sqlite3pager_movepage() API used by auto-vacuum databases.
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# database when a crash occurs during a multi-file transaction. See comments
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# in test crash-5.3 for details.
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#
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db close
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file delete -force test.db
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sqlite3 db test.db
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do_test crash-5.1 {
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execsql {
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CREATE TABLE abc(a, b, c); -- Root page 3
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INSERT INTO abc VALUES(randstr(1500,1500), 0, 0); -- Overflow page 4
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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INSERT INTO abc SELECT * FROM abc;
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}
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} {}
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do_test crash-5.2 {
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expr [file size test.db] / 1024
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} [expr [string match [execsql {pragma auto_vacuum}] 1] ? 11 : 10]
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set sig [signature]
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do_test crash-5.3 {
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# The SQL below is used to expose a bug that existed in
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# sqlite3pager_movepage() during development of the auto-vacuum feature. It
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# functions as follows:
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#
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# 1: Begin a transaction.
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# 2: Put page 4 on the free-list (was the overflow page for the row deleted).
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# 3: Write data to page 4 (it becomes the overflow page for the row inserted).
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# The old page 4 data has been written to the journal file, but the
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# journal file has not been sync()hronized.
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# 4: Create a table, which calls sqlite3pager_movepage() to move page 4
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# to the end of the database (page 12) to make room for the new root-page.
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# 5: Put pressure on the pager-cache. This results in page 4 being written
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# to the database file to make space in the cache to load a new page. The
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# bug was that page 4 was written to the database file before the journal
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# is sync()hronized.
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# 6: Commit. A crash occurs during the sync of the journal file.
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#
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# End result: Before the bug was fixed, data has been written to page 4 of the
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# database file and the journal file does not contain trustworthy rollback
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# data for this page.
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#
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crashsql 1 test.db-journal {
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BEGIN; -- 1
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DELETE FROM abc WHERE oid = 1; -- 2
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INSERT INTO abc VALUES(randstr(1500,1500), 0, 0); -- 3
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CREATE TABLE abc2(a, b, c); -- 4
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SELECT * FROM abc; -- 5
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COMMIT; -- 6
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}
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} {1 {child process exited abnormally}}
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integrity_check crash-5.4
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do_test crash-5.5 {
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signature
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} $sig
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#--------------------------------------------------------------------------
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# The following test cases - crash-6.* - test that a DROP TABLE operation
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# is correctly rolled back in the event of a crash while the database file
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# is being written. This is mainly to test that all pages are written to the
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# journal file before truncation in an auto-vacuum database.
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#
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do_test crash-6.1 {
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crashsql 1 test.db {
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DROP TABLE abc;
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}
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} {1 {child process exited abnormally}}
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do_test crash-6.2 {
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signature
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} $sig
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#--------------------------------------------------------------------------
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# These test cases test the case where the master journal file name is
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# corrupted slightly so that the corruption has to be detected by the
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# checksum.
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do_test crash-7.1 {
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crashsql 1 test.db {
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ATTACH 'test2.db' AS aux;
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BEGIN;
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INSERT INTO abc VALUES(randstr(1500,1500), 0, 0);
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INSERT INTO abc2 VALUES(randstr(1500,1500), 0, 0);
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COMMIT;
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}
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# Change the checksum value for the master journal name.
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set f [open test.db-journal a]
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fconfigure $f -encoding binary
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seek $f [expr [file size test.db-journal] - 12]
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puts -nonewline $f "\00\00\00\00"
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close $f
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} {}
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do_test crash-7.2 {
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signature
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} $sig
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finish_test
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