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146 lines
4.7 KiB
Plaintext
146 lines
4.7 KiB
Plaintext
# 2009 June 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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# $Id: corruptD.test,v 1.2 2009/06/05 17:09:12 drh Exp $
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set testdir [file dirname $argv0]
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source $testdir/tester.tcl
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# Do not use a codec for tests in this file, as the database file is
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# manipulated directly using tcl scripts (using the [hexio_write] command).
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#
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do_not_use_codec
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# These tests deal with corrupt database files
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#
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database_may_be_corrupt
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#--------------------------------------------------------------------------
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# OVERVIEW
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#
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# This test file attempts to verify that SQLite does not read past the
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# end of any in-memory buffers as a result of corrupted database page
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# images. Usually this happens because a field within a database page
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# that contains an offset to some other structure within the same page
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# is set to too large a value. A database page contains the following
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# such fields:
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#
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# 1. The page header field that contains the offset to the first
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# free block of space.
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#
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# 2. The first two bytes of all but the last free block on the free-block
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# list (the offset to the next free block).
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#
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# 3. The page header field containing the number of cells on the page
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# (implicitly defines the offset to the final element in the cell offset
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# array, which could potentially be off the end of the page).
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#
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# 4. The page header field containing the offset to the start of the cell
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# content area.
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#
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# 5. The contents of the cell offset array.
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#
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# 6. The first few bytes of each cell determine the size of the cell
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# stored within the page, and hence the offset to the final byte of
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# the cell.
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#
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# If any of the above fields are set to too large a value, then a buffer
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# overread may occur. This test script creates and operates on various
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# strategically corrupted database files to attempt to provoke such buffer
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# overreads.
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#
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# Very often, a buffer overread passes unnoticed, particularly in workstation
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# environments. For this reason, this test script should be run using valgrind
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# (or similar) in order to verify that no overreads occur.
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#
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# TEST PLAN
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#
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# Test cases corruptD-1.* are white-box tests. They attempt to corrupt
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# one of the above fields, then exercise each part of the code in btree.c
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# that uses said field.
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#
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# Offset variables 1, 2, 3 and 4 are all checked to make sure they
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# will not result in buffer overruns as part of page initialization in
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# sqlite3BtreeInitPage(). Offsets 5 and 6 cannot be tested as part of
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# page initialization, as trying to do so causes a performance hit.
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#
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do_test corruptD-1.0 {
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execsql {
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PRAGMA auto_vacuum = 0;
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PRAGMA page_size = 1024;
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CREATE TABLE t1(a, b);
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CREATE INDEX i1 ON t1(a, b);
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}
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for {set ii 1} {$ii < 50} {incr ii} {
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execsql { INSERT INTO t1 VALUES($ii, $ii * $ii) }
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}
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execsql {
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DELETE FROM t1 WHERE a = 10;
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DELETE FROM t1 WHERE a = 20;
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DELETE FROM t1 WHERE a = 30;
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DELETE FROM t1 WHERE a = 40;
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}
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forcecopy test.db test.bu
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} {}
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proc incr_change_counter {} {
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hexio_write test.db 24 [
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hexio_render_int32 [expr [hexio_get_int [hexio_read test.db 24 4]] + 1]
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]
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}
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proc restore_file {} {
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db close
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forcecopy test.bu test.db
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sqlite3 db test.db
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}
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#-------------------------------------------------------------------------
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# The following tests, corruptD-1.1.*, focus on the page header field
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# containing the offset of the first free block in a page.
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#
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do_test corruptD-1.1.1 {
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incr_change_counter
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hexio_write test.db [expr 1024+1] FFFF
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catchsql { PRAGMA quick_check }
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} {0 {{*** in database main ***
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Page 2: free space corruption}}}
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do_test corruptD-1.1.2 {
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incr_change_counter
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hexio_write test.db [expr 1024+1] [hexio_render_int32 1021]
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catchsql { SELECT * FROM t1 ORDER BY rowid }
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} {1 {database disk image is malformed}}
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#-------------------------------------------------------------------------
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# The following tests, corruptD-1.2.*, focus on the offsets contained
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# in the first 2 byte of each free-block on the free-list.
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#
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do_test corruptD-1.2.1 {
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restore_file
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} {}
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do_test corruptD-1.2.2 {
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} {}
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#-------------------------------------------------------------------------
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# The following tests, corruptD-1.4.*, ...
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#
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#-------------------------------------------------------------------------
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# The following tests, corruptD-1.5.*, focus on the offsets contained
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# in the cell offset array.
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#
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# defragmentPage
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#
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finish_test
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