175 lines
5.4 KiB
Plaintext
175 lines
5.4 KiB
Plaintext
# 2007 June 21
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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. The focus
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# of this script is testing the pluggable tokeniser feature of the
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# FTS2 module.
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#
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# $Id: fts2token.test,v 1.3 2007/06/25 12:05:40 danielk1977 Exp $
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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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# If SQLITE_ENABLE_FTS2 is defined, omit this file.
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ifcapable !fts2 {
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finish_test
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return
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}
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proc escape_string {str} {
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set out ""
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foreach char [split $str ""] {
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scan $char %c i
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if {$i<=127} {
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append out $char
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} else {
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append out [format {\x%.4x} $i]
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}
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}
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set out
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}
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#--------------------------------------------------------------------------
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# Test cases fts2token-1.* are the warm-body test for the SQL scalar
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# function fts2_tokenizer(). The procedure is as follows:
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#
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# 1: Verify that there is no such fts2 tokenizer as 'blah'.
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#
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# 2: Query for the built-in tokenizer 'simple'. Insert a copy of the
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# retrieved value as tokenizer 'blah'.
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#
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# 3: Test that the value returned for tokenizer 'blah' is now the
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# same as that retrieved for 'simple'.
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#
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# 4: Test that it is now possible to create an fts2 table using
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# tokenizer 'blah' (it was not possible in step 1).
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#
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# 5: Test that the table created to use tokenizer 'blah' is usable.
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#
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do_test fts2token-1.1 {
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catchsql {
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CREATE VIRTUAL TABLE t1 USING fts2(content, tokenize blah);
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}
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} {1 {unknown tokenizer: blah}}
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do_test fts2token-1.2 {
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execsql {
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SELECT fts2_tokenizer('blah', fts2_tokenizer('simple')) IS NULL;
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}
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} {0}
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do_test fts2token-1.3 {
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execsql {
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SELECT fts2_tokenizer('blah') == fts2_tokenizer('simple');
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}
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} {1}
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do_test fts2token-1.4 {
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catchsql {
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CREATE VIRTUAL TABLE t1 USING fts2(content, tokenize blah);
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}
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} {0 {}}
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do_test fts2token-1.5 {
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execsql {
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INSERT INTO t1(content) VALUES('There was movement at the station');
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INSERT INTO t1(content) VALUES('For the word has passed around');
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INSERT INTO t1(content) VALUES('That the colt from ol regret had got away');
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SELECT content FROM t1 WHERE content MATCH 'movement'
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}
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} {{There was movement at the station}}
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#--------------------------------------------------------------------------
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# Test cases fts2token-2.* test error cases in the scalar function based
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# API for getting and setting tokenizers.
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#
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do_test fts2token-2.1 {
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catchsql {
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SELECT fts2_tokenizer('nosuchtokenizer');
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}
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} {1 {unknown tokenizer: nosuchtokenizer}}
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#--------------------------------------------------------------------------
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# Test cases fts2token-3.* test the three built-in tokenizers with a
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# simple input string via the built-in test function. This is as much
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# to test the test function as the tokenizer implementations.
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#
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do_test fts2token-3.1 {
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execsql {
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SELECT fts2_tokenizer_test('simple', 'I don''t see how');
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}
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} {{0 i I 1 don don 2 t t 3 see see 4 how how}}
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do_test fts2token-3.2 {
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execsql {
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SELECT fts2_tokenizer_test('porter', 'I don''t see how');
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}
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} {{0 i I 1 don don 2 t t 3 see see 4 how how}}
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ifcapable icu {
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do_test fts2token-3.3 {
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execsql {
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SELECT fts2_tokenizer_test('icu', 'I don''t see how');
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}
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} {{0 i I 1 don't don't 2 see see 3 how how}}
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}
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#--------------------------------------------------------------------------
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# Test cases fts2token-4.* test the ICU tokenizer. In practice, this
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# tokenizer only has two modes - "thai" and "everybody else". Some other
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# Asian languages (Lao, Khmer etc.) require the same special treatment as
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# Thai, but ICU doesn't support them yet.
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#
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ifcapable icu {
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proc do_icu_test {name locale input output} {
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set ::out [db eval { SELECT fts2_tokenizer_test('icu', $locale, $input) }]
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do_test $name {
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lindex $::out 0
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} $output
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}
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do_icu_test fts2token-4.1 en_US {} {}
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do_icu_test fts2token-4.2 en_US {Test cases fts2} [list \
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0 test Test 1 cases cases 2 fts2 fts2
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]
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# The following test shows that ICU is smart enough to recognise
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# Thai chararacters, even when the locale is set to English/United
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# States.
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#
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set input "\u0e2d\u0e30\u0e44\u0e23\u0e19\u0e30\u0e04\u0e23\u0e31\u0e1a"
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set output "0 \u0e2d\u0e30\u0e44\u0e23 \u0e2d\u0e30\u0e44\u0e23 "
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append output "1 \u0e19\u0e30 \u0e19\u0e30 "
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append output "2 \u0e04\u0e23\u0e31\u0e1a \u0e04\u0e23\u0e31\u0e1a"
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do_icu_test fts2token-4.3 th_TH $input $output
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do_icu_test fts2token-4.4 en_US $input $output
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# ICU handles an unknown locale by falling back to the default.
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# So this is not an error.
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do_icu_test fts2token-4.5 MiddleOfTheOcean $input $output
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set longtoken "AReallyReallyLongTokenOneThatWillSurelyRequire"
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append longtoken "AReallocInTheIcuTokenizerCode"
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set input "short tokens then "
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append input $longtoken
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set output "0 short short "
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append output "1 tokens tokens "
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append output "2 then then "
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append output "3 [string tolower $longtoken] $longtoken"
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do_icu_test fts2token-4.6 MiddleOfTheOcean $input $output
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do_icu_test fts2token-4.7 th_TH $input $output
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do_icu_test fts2token-4.8 en_US $input $output
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}
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do_test fts2token-internal {
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execsql { SELECT fts2_tokenizer_internal_test() }
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} {ok}
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finish_test
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