xref: /sqlite-3.40.0/test/capi3c.test (revision 2bd2cfc2)
1# 2006 November 08
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.
12#
13# This is a copy of the capi3.test file that has been adapted to
14# test the new sqlite3_prepare_v2 interface.
15#
16# $Id: capi3c.test,v 1.23 2009/07/22 07:27:57 danielk1977 Exp $
17#
18
19set testdir [file dirname $argv0]
20source $testdir/tester.tcl
21
22# Do not use a codec for tests in this file, as the database file is
23# manipulated directly using tcl scripts (using the [hexio_write] command).
24#
25do_not_use_codec
26
27# Return the UTF-16 representation of the supplied UTF-8 string $str.
28# If $nt is true, append two 0x00 bytes as a nul terminator.
29proc utf16 {str {nt 1}} {
30  set r [encoding convertto unicode $str]
31  if {$nt} {
32    append r "\x00\x00"
33  }
34  return $r
35}
36
37# Return the UTF-8 representation of the supplied UTF-16 string $str.
38proc utf8 {str} {
39  # If $str ends in two 0x00 0x00 bytes, knock these off before
40  # converting to UTF-8 using TCL.
41  binary scan $str \c* vals
42  if {[lindex $vals end]==0 && [lindex $vals end-1]==0} {
43    set str [binary format \c* [lrange $vals 0 end-2]]
44  }
45
46  set r [encoding convertfrom unicode $str]
47  return $r
48}
49
50# These tests complement those in capi2.test. They are organized
51# as follows:
52#
53# capi3c-1.*: Test sqlite3_prepare_v2
54# capi3c-2.*: Test sqlite3_prepare16_v2
55# capi3c-3.*: Test sqlite3_open
56# capi3c-4.*: Test sqlite3_open16
57# capi3c-5.*: Test the various sqlite3_result_* APIs
58# capi3c-6.*: Test that sqlite3_close fails if there are outstanding VMs.
59#
60
61set DB [sqlite3_connection_pointer db]
62
63do_test capi3c-1.0 {
64  sqlite3_get_autocommit $DB
65} 1
66do_test capi3c-1.1 {
67  set STMT [sqlite3_prepare_v2 $DB {SELECT name FROM sqlite_master} -1 TAIL]
68  sqlite3_finalize $STMT
69  set TAIL
70} {}
71do_test capi3c-1.2.1 {
72  sqlite3_errcode $DB
73} {SQLITE_OK}
74do_test capi3c-1.2.2 {
75  sqlite3_extended_errcode $DB
76} {SQLITE_OK}
77do_test capi3c-1.3 {
78  sqlite3_errmsg $DB
79} {not an error}
80do_test capi3c-1.4 {
81  set sql {SELECT name FROM sqlite_master;SELECT 10}
82  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
83  sqlite3_finalize $STMT
84  set TAIL
85} {SELECT 10}
86do_test capi3c-1.5 {
87  set sql {SELECT namex FROM sqlite_master}
88  catch {
89    set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
90  }
91} {1}
92do_test capi3c-1.6.1 {
93  sqlite3_errcode $DB
94} {SQLITE_ERROR}
95do_test capi3c-1.6.2 {
96  sqlite3_extended_errcode $DB
97} {SQLITE_ERROR}
98do_test capi3c-1.7 {
99  sqlite3_errmsg $DB
100} {no such column: namex}
101
102
103ifcapable {utf16} {
104  do_test capi3c-2.1 {
105    set sql16 [utf16 {SELECT name FROM sqlite_master}]
106    set STMT [sqlite3_prepare16_v2  $DB $sql16 -1 ::TAIL]
107    sqlite3_finalize $STMT
108    utf8 $::TAIL
109  } {}
110  do_test capi3c-2.2 {
111    set sql [utf16 {SELECT name FROM sqlite_master;SELECT 10}]
112    set STMT [sqlite3_prepare16_v2  $DB $sql -1 TAIL]
113    sqlite3_finalize $STMT
114    utf8 $TAIL
115  } {SELECT 10}
116  do_test capi3c-2.3 {
117    set sql [utf16 {SELECT namex FROM sqlite_master}]
118    catch {
119      set STMT [sqlite3_prepare16_v2  $DB $sql -1 TAIL]
120    }
121  } {1}
122  do_test capi3c-2.4.1 {
123    sqlite3_errcode $DB
124  } {SQLITE_ERROR}
125  do_test capi3c-2.4.2 {
126    sqlite3_extended_errcode $DB
127  } {SQLITE_ERROR}
128  do_test capi3c-2.5 {
129    sqlite3_errmsg $DB
130  } {no such column: namex}
131
132  ifcapable schema_pragmas {
133    do_test capi3c-2.6 {
134      execsql {CREATE TABLE tablename(x)}
135      set sql16 [utf16 {PRAGMA table_info("TableName")}]
136      set STMT [sqlite3_prepare16_v2  $DB $sql16 -1 TAIL]
137      sqlite3_step $STMT
138    } SQLITE_ROW
139    do_test capi3c-2.7 {
140      sqlite3_step $STMT
141    } SQLITE_DONE
142    do_test capi3c-2.8 {
143      sqlite3_finalize $STMT
144    } SQLITE_OK
145  }
146
147} ;# endif utf16
148
149# rename sqlite3_open sqlite3_open_old
150# proc sqlite3_open {fname options} {sqlite3_open_new $fname $options}
151
152do_test capi3c-3.1 {
153  set db2 [sqlite3_open test.db {}]
154  sqlite3_errcode $db2
155} {SQLITE_OK}
156# FIX ME: Should test the db handle works.
157do_test capi3c-3.2 {
158  sqlite3_close $db2
159} {SQLITE_OK}
160do_test capi3c-3.3 {
161  catch {
162    set db2 [sqlite3_open /bogus/path/test.db {}]
163  }
164  sqlite3_errcode $db2
165} {SQLITE_CANTOPEN}
166do_test capi3c-3.4 {
167  sqlite3_errmsg $db2
168} {unable to open database file}
169do_test capi3c-3.5 {
170  sqlite3_close $db2
171} {SQLITE_OK}
172do_test capi3c-3.6.1-misuse {
173  sqlite3_close $db2
174} {SQLITE_MISUSE}
175do_test capi3c-3.6.2-misuse {
176  sqlite3_errmsg $db2
177} {library routine called out of sequence}
178ifcapable {utf16} {
179  do_test capi3c-3.6.3-misuse {
180    utf8 [sqlite3_errmsg16 $db2]
181  } {library routine called out of sequence}
182}
183
184# rename sqlite3_open ""
185# rename sqlite3_open_old sqlite3_open
186
187ifcapable {utf16} {
188do_test capi3c-4.1 {
189  set db2 [sqlite3_open16 [utf16 test.db] {}]
190  sqlite3_errcode $db2
191} {SQLITE_OK}
192# FIX ME: Should test the db handle works.
193do_test capi3c-4.2 {
194  sqlite3_close $db2
195} {SQLITE_OK}
196do_test capi3c-4.3 {
197  catch {
198    set db2 [sqlite3_open16 [utf16 /bogus/path/test.db] {}]
199  }
200  sqlite3_errcode $db2
201} {SQLITE_CANTOPEN}
202do_test capi3c-4.4 {
203  utf8 [sqlite3_errmsg16 $db2]
204} {unable to open database file}
205do_test capi3c-4.5 {
206  sqlite3_close $db2
207} {SQLITE_OK}
208} ;# utf16
209
210# This proc is used to test the following API calls:
211#
212# sqlite3_column_count
213# sqlite3_column_name
214# sqlite3_column_name16
215# sqlite3_column_decltype
216# sqlite3_column_decltype16
217#
218# $STMT is a compiled SQL statement. $test is a prefix
219# to use for test names within this proc. $names is a list
220# of the column names that should be returned by $STMT.
221# $decltypes is a list of column declaration types for $STMT.
222#
223# Example:
224#
225# set STMT [sqlite3_prepare_v2 "SELECT 1, 2, 2;" -1 DUMMY]
226# check_header test1.1 {1 2 3} {"" "" ""}
227#
228proc check_header {STMT test names decltypes} {
229
230  # Use the return value of sqlite3_column_count() to build
231  # a list of column indexes. i.e. If sqlite3_column_count
232  # is 3, build the list {0 1 2}.
233  set ::idxlist [list]
234  set ::numcols [sqlite3_column_count $STMT]
235  for {set i 0} {$i < $::numcols} {incr i} {lappend ::idxlist $i}
236
237  # Column names in UTF-8
238  do_test $test.1 {
239    set cnamelist [list]
240    foreach i $idxlist {lappend cnamelist [sqlite3_column_name $STMT $i]}
241    set cnamelist
242  } $names
243
244  # Column names in UTF-16
245  ifcapable {utf16} {
246    do_test $test.2 {
247      set cnamelist [list]
248      foreach i $idxlist {
249        lappend cnamelist [utf8 [sqlite3_column_name16 $STMT $i]]
250      }
251      set cnamelist
252    } $names
253  }
254
255  # Column names in UTF-8
256  do_test $test.3 {
257    set cnamelist [list]
258    foreach i $idxlist {lappend cnamelist [sqlite3_column_name $STMT $i]}
259    set cnamelist
260  } $names
261
262  # Column names in UTF-16
263  ifcapable {utf16} {
264    do_test $test.4 {
265      set cnamelist [list]
266      foreach i $idxlist {
267        lappend cnamelist [utf8 [sqlite3_column_name16 $STMT $i]]
268      }
269      set cnamelist
270    } $names
271  }
272
273  # Column names in UTF-8
274  do_test $test.5 {
275    set cnamelist [list]
276    foreach i $idxlist {lappend cnamelist [sqlite3_column_decltype $STMT $i]}
277    set cnamelist
278  } $decltypes
279
280  # Column declaration types in UTF-16
281  ifcapable {utf16} {
282    do_test $test.6 {
283      set cnamelist [list]
284      foreach i $idxlist {
285        lappend cnamelist [utf8 [sqlite3_column_decltype16 $STMT $i]]
286      }
287      set cnamelist
288    } $decltypes
289  }
290
291
292  # Test some out of range conditions:
293  ifcapable {utf16} {
294    do_test $test.7 {
295      list \
296        [sqlite3_column_name $STMT -1] \
297        [sqlite3_column_name16 $STMT -1] \
298        [sqlite3_column_decltype $STMT -1] \
299        [sqlite3_column_decltype16 $STMT -1] \
300        [sqlite3_column_name $STMT $numcols] \
301        [sqlite3_column_name16 $STMT $numcols] \
302        [sqlite3_column_decltype $STMT $numcols] \
303        [sqlite3_column_decltype16 $STMT $numcols]
304    } {{} {} {} {} {} {} {} {}}
305  }
306}
307
308# This proc is used to test the following API calls:
309#
310# sqlite3_column_origin_name
311# sqlite3_column_origin_name16
312# sqlite3_column_table_name
313# sqlite3_column_table_name16
314# sqlite3_column_database_name
315# sqlite3_column_database_name16
316#
317# $STMT is a compiled SQL statement. $test is a prefix
318# to use for test names within this proc. $names is a list
319# of the column names that should be returned by $STMT.
320# $decltypes is a list of column declaration types for $STMT.
321#
322# Example:
323#
324# set STMT [sqlite3_prepare_v2 "SELECT 1, 2, 2;" -1 DUMMY]
325# check_header test1.1 {1 2 3} {"" "" ""}
326#
327proc check_origin_header {STMT test dbs tables cols} {
328  # If sqlite3_column_origin_name() and friends are not compiled into
329  # this build, this proc is a no-op.
330ifcapable columnmetadata {
331
332    # Use the return value of sqlite3_column_count() to build
333    # a list of column indexes. i.e. If sqlite3_column_count
334    # is 3, build the list {0 1 2}.
335    set ::idxlist [list]
336    set ::numcols [sqlite3_column_count $STMT]
337    for {set i 0} {$i < $::numcols} {incr i} {lappend ::idxlist $i}
338
339    # Database names in UTF-8
340    do_test $test.8 {
341      set cnamelist [list]
342      foreach i $idxlist {
343        lappend cnamelist [sqlite3_column_database_name $STMT $i]
344      }
345      set cnamelist
346    } $dbs
347
348    # Database names in UTF-16
349    ifcapable {utf16} {
350      do_test $test.9 {
351        set cnamelist [list]
352        foreach i $idxlist {
353          lappend cnamelist [utf8 [sqlite3_column_database_name16 $STMT $i]]
354        }
355        set cnamelist
356      } $dbs
357    }
358
359    # Table names in UTF-8
360    do_test $test.10 {
361      set cnamelist [list]
362      foreach i $idxlist {
363        lappend cnamelist [sqlite3_column_table_name $STMT $i]
364      }
365      set cnamelist
366    } $tables
367
368    # Table names in UTF-16
369    ifcapable {utf16} {
370      do_test $test.11 {
371        set cnamelist [list]
372        foreach i $idxlist {
373          lappend cnamelist [utf8 [sqlite3_column_table_name16 $STMT $i]]
374        }
375        set cnamelist
376      } $tables
377    }
378
379    # Origin names in UTF-8
380    do_test $test.12 {
381      set cnamelist [list]
382      foreach i $idxlist {
383        lappend cnamelist [sqlite3_column_origin_name $STMT $i]
384      }
385      set cnamelist
386    } $cols
387
388    # Origin declaration types in UTF-16
389    ifcapable {utf16} {
390      do_test $test.13 {
391        set cnamelist [list]
392        foreach i $idxlist {
393          lappend cnamelist [utf8 [sqlite3_column_origin_name16 $STMT $i]]
394        }
395        set cnamelist
396      } $cols
397    }
398  }
399}
400
401# This proc is used to test the following APIs:
402#
403# sqlite3_data_count
404# sqlite3_column_type
405# sqlite3_column_int
406# sqlite3_column_text
407# sqlite3_column_text16
408# sqlite3_column_double
409#
410# $STMT is a compiled SQL statement for which the previous call
411# to sqlite3_step returned SQLITE_ROW. $test is a prefix to use
412# for test names within this proc. $types is a list of the
413# manifest types for the current row. $ints, $doubles and $strings
414# are lists of the integer, real and string representations of
415# the values in the current row.
416#
417# Example:
418#
419# set STMT [sqlite3_prepare_v2 "SELECT 'hello', 1.1, NULL" -1 DUMMY]
420# sqlite3_step $STMT
421# check_data test1.2 {TEXT REAL NULL} {0 1 0} {0 1.1 0} {hello 1.1 {}}
422#
423proc check_data {STMT test types ints doubles strings} {
424
425  # Use the return value of sqlite3_column_count() to build
426  # a list of column indexes. i.e. If sqlite3_column_count
427  # is 3, build the list {0 1 2}.
428  set ::idxlist [list]
429  set numcols [sqlite3_data_count $STMT]
430  for {set i 0} {$i < $numcols} {incr i} {lappend ::idxlist $i}
431
432# types
433do_test $test.1 {
434  set types [list]
435  foreach i $idxlist {lappend types [sqlite3_column_type $STMT $i]}
436  set types
437} $types
438
439# Integers
440do_test $test.2 {
441  set ints [list]
442  foreach i $idxlist {lappend ints [sqlite3_column_int64 $STMT $i]}
443  set ints
444} $ints
445
446# bytes
447set lens [list]
448foreach i $::idxlist {
449  lappend lens [string length [lindex $strings $i]]
450}
451do_test $test.3 {
452  set bytes [list]
453  set lens [list]
454  foreach i $idxlist {
455    lappend bytes [sqlite3_column_bytes $STMT $i]
456  }
457  set bytes
458} $lens
459
460# bytes16
461ifcapable {utf16} {
462  set lens [list]
463  foreach i $::idxlist {
464    lappend lens [expr 2 * [string length [lindex $strings $i]]]
465  }
466  do_test $test.4 {
467    set bytes [list]
468    set lens [list]
469    foreach i $idxlist {
470      lappend bytes [sqlite3_column_bytes16 $STMT $i]
471    }
472    set bytes
473  } $lens
474}
475
476# Blob
477do_test $test.5 {
478  set utf8 [list]
479  foreach i $idxlist {lappend utf8 [sqlite3_column_blob $STMT $i]}
480  set utf8
481} $strings
482
483# UTF-8
484do_test $test.6 {
485  set utf8 [list]
486  foreach i $idxlist {lappend utf8 [sqlite3_column_text $STMT $i]}
487  set utf8
488} $strings
489
490# Floats
491do_test $test.7 {
492  set utf8 [list]
493  foreach i $idxlist {lappend utf8 [sqlite3_column_double $STMT $i]}
494  set utf8
495} $doubles
496
497# UTF-16
498ifcapable {utf16} {
499  do_test $test.8 {
500    set utf8 [list]
501    foreach i $idxlist {lappend utf8 [utf8 [sqlite3_column_text16 $STMT $i]]}
502    set utf8
503  } $strings
504}
505
506# Integers
507do_test $test.9 {
508  set ints [list]
509  foreach i $idxlist {lappend ints [sqlite3_column_int $STMT $i]}
510  set ints
511} $ints
512
513# Floats
514do_test $test.10 {
515  set utf8 [list]
516  foreach i $idxlist {lappend utf8 [sqlite3_column_double $STMT $i]}
517  set utf8
518} $doubles
519
520# UTF-8
521do_test $test.11 {
522  set utf8 [list]
523  foreach i $idxlist {lappend utf8 [sqlite3_column_text $STMT $i]}
524  set utf8
525} $strings
526
527# Types
528do_test $test.12 {
529  set types [list]
530  foreach i $idxlist {lappend types [sqlite3_column_type $STMT $i]}
531  set types
532} $types
533
534# Test that an out of range request returns the equivalent of NULL
535do_test $test.13 {
536  sqlite3_column_int $STMT -1
537} {0}
538do_test $test.13 {
539  sqlite3_column_text $STMT -1
540} {}
541
542}
543
544ifcapable !floatingpoint {
545  finish_test
546  return
547}
548
549do_test capi3c-5.0 {
550  execsql {
551    CREATE TABLE t1(a VARINT, b BLOB, c VARCHAR(16));
552    INSERT INTO t1 VALUES(1, 2, 3);
553    INSERT INTO t1 VALUES('one', 'two', NULL);
554    INSERT INTO t1 VALUES(1.2, 1.3, 1.4);
555  }
556  set sql "SELECT * FROM t1"
557  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
558  sqlite3_column_count $STMT
559} 3
560
561check_header $STMT capi3c-5.1 {a b c} {VARINT BLOB VARCHAR(16)}
562check_origin_header $STMT capi3c-5.1 {main main main} {t1 t1 t1} {a b c}
563do_test capi3c-5.2 {
564  sqlite3_step $STMT
565} SQLITE_ROW
566
567check_header $STMT capi3c-5.3 {a b c} {VARINT BLOB VARCHAR(16)}
568check_origin_header $STMT capi3c-5.3 {main main main} {t1 t1 t1} {a b c}
569check_data $STMT capi3c-5.4 {INTEGER INTEGER TEXT} {1 2 3} {1.0 2.0 3.0} {1 2 3}
570
571do_test capi3c-5.5 {
572  sqlite3_step $STMT
573} SQLITE_ROW
574
575check_header $STMT capi3c-5.6 {a b c} {VARINT BLOB VARCHAR(16)}
576check_origin_header $STMT capi3c-5.6 {main main main} {t1 t1 t1} {a b c}
577check_data $STMT capi3c-5.7 {TEXT TEXT NULL} {0 0 0} {0.0 0.0 0.0} {one two {}}
578
579do_test capi3c-5.8 {
580  sqlite3_step $STMT
581} SQLITE_ROW
582
583check_header $STMT capi3c-5.9 {a b c} {VARINT BLOB VARCHAR(16)}
584check_origin_header $STMT capi3c-5.9 {main main main} {t1 t1 t1} {a b c}
585check_data $STMT capi3c-5.10 {FLOAT FLOAT TEXT} {1 1 1} {1.2 1.3 1.4} {1.2 1.3 1.4}
586
587do_test capi3c-5.11 {
588  sqlite3_step $STMT
589} SQLITE_DONE
590
591do_test capi3c-5.12 {
592  sqlite3_finalize $STMT
593} SQLITE_OK
594
595do_test capi3c-5.20 {
596  set sql "SELECT a, sum(b), max(c) FROM t1 GROUP BY a"
597  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
598  sqlite3_column_count $STMT
599} 3
600
601check_header $STMT capi3c-5.21 {a sum(b) max(c)} {VARINT {} {}}
602check_origin_header $STMT capi3c-5.22 {main {} {}} {t1 {} {}} {a {} {}}
603do_test capi3c-5.23 {
604  sqlite3_finalize $STMT
605} SQLITE_OK
606
607
608set ::ENC [execsql {pragma encoding}]
609db close
610
611do_test capi3c-6.0 {
612  sqlite3 db test.db
613  set DB [sqlite3_connection_pointer db]
614  if {[sqlite3 -has-codec]==0} { sqlite3_key $DB xyzzy }
615  set sql {SELECT a FROM t1 order by rowid}
616  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
617  expr 0
618} {0}
619do_test capi3c-6.1 {
620  db cache flush
621  sqlite3_close $DB
622} {SQLITE_BUSY}
623do_test capi3c-6.2 {
624  sqlite3_step $STMT
625} {SQLITE_ROW}
626check_data $STMT capi3c-6.3 {INTEGER} {1} {1.0} {1}
627do_test capi3c-6.3 {
628  sqlite3_finalize $STMT
629} {SQLITE_OK}
630do_test capi3c-6.4 {
631  db cache flush
632  sqlite3_close $DB
633} {SQLITE_OK}
634do_test capi3c-6.99-misuse {
635  db close
636} {}
637
638# This procedure sets the value of the file-format in file 'test.db'
639# to $newval. Also, the schema cookie is incremented.
640#
641proc set_file_format {newval} {
642  hexio_write test.db 44 [hexio_render_int32 $newval]
643  set schemacookie [hexio_get_int [hexio_read test.db 40 4]]
644  incr schemacookie
645  hexio_write test.db 40 [hexio_render_int32 $schemacookie]
646  return {}
647}
648
649# This procedure returns the value of the file-format in file 'test.db'.
650#
651proc get_file_format {{fname test.db}} {
652  return [hexio_get_int [hexio_read $fname 44 4]]
653}
654
655if {![sqlite3 -has-codec]} {
656  # Test what happens when the library encounters a newer file format.
657  do_test capi3c-7.1 {
658    set_file_format 5
659  } {}
660  do_test capi3c-7.2 {
661    catch { sqlite3 db test.db }
662    catchsql {
663      SELECT * FROM sqlite_master;
664    }
665  } {1 {unsupported file format}}
666  db close
667}
668
669if {![sqlite3 -has-codec]} {
670  # Now test that the library correctly handles bogus entries in the
671  # sqlite_master table (schema corruption).
672  do_test capi3c-8.1 {
673    forcedelete test.db test.db-journal
674    sqlite3 db test.db
675    execsql {
676      CREATE TABLE t1(a);
677    }
678    db close
679  } {}
680  do_test capi3c-8.2 {
681    sqlite3 db test.db
682    execsql {
683      PRAGMA writable_schema=ON;
684      INSERT INTO sqlite_master VALUES(NULL,NULL,NULL,NULL,NULL);
685    }
686    db close
687  } {}
688  do_test capi3c-8.3 {
689    catch { sqlite3 db test.db }
690    catchsql {
691      SELECT * FROM sqlite_master;
692    }
693  } {1 {malformed database schema (?)}}
694  do_test capi3c-8.4 {
695    # Build a 5-field row record. The first field is a string 'table', and
696    # subsequent fields are all NULL.
697    db close
698    forcedelete test.db test.db-journal
699    sqlite3 db test.db
700    execsql {
701      CREATE TABLE t1(a);
702      PRAGMA writable_schema=ON;
703      INSERT INTO sqlite_master VALUES('table',NULL,NULL,NULL,NULL);
704    }
705    db close
706  } {};
707  do_test capi3c-8.5 {
708    catch { sqlite3 db test.db }
709    catchsql {
710      SELECT * FROM sqlite_master;
711    }
712  } {1 {malformed database schema (?)}}
713  db close
714}
715forcedelete test.db
716forcedelete test.db-journal
717
718
719# Test the english language string equivalents for sqlite error codes
720set code2english [list \
721SQLITE_OK         {not an error} \
722SQLITE_ERROR      {SQL logic error or missing database} \
723SQLITE_PERM       {access permission denied} \
724SQLITE_ABORT      {callback requested query abort} \
725SQLITE_BUSY       {database is locked} \
726SQLITE_LOCKED     {database table is locked} \
727SQLITE_NOMEM      {out of memory} \
728SQLITE_READONLY   {attempt to write a readonly database} \
729SQLITE_INTERRUPT  {interrupted} \
730SQLITE_IOERR      {disk I/O error} \
731SQLITE_CORRUPT    {database disk image is malformed} \
732SQLITE_FULL       {database or disk is full} \
733SQLITE_CANTOPEN   {unable to open database file} \
734SQLITE_EMPTY      {table contains no data} \
735SQLITE_SCHEMA     {database schema has changed} \
736SQLITE_CONSTRAINT {constraint failed} \
737SQLITE_MISMATCH   {datatype mismatch} \
738SQLITE_MISUSE     {library routine called out of sequence} \
739SQLITE_NOLFS      {large file support is disabled} \
740SQLITE_AUTH       {authorization denied} \
741SQLITE_FORMAT     {auxiliary database format error} \
742SQLITE_RANGE      {bind or column index out of range} \
743SQLITE_NOTADB     {file is encrypted or is not a database} \
744unknownerror      {unknown error} \
745]
746
747set test_number 1
748foreach {code english} $code2english {
749  do_test capi3c-9.$test_number "sqlite3_test_errstr $code" $english
750  incr test_number
751}
752
753# Test the error message when a "real" out of memory occurs.
754ifcapable memdebug {
755  do_test capi3c-10-1 {
756    sqlite3 db test.db
757    set DB [sqlite3_connection_pointer db]
758    sqlite3_memdebug_fail 0
759    catchsql {
760      select * from sqlite_master;
761    }
762  } {1 {out of memory}}
763  do_test capi3c-10-2 {
764    sqlite3_errmsg $::DB
765  } {out of memory}
766  ifcapable {utf16} {
767    do_test capi3c-10-3 {
768      utf8 [sqlite3_errmsg16 $::DB]
769    } {out of memory}
770  }
771  db close
772  sqlite3_memdebug_fail -1
773}
774
775# The following tests - capi3c-11.* - test that a COMMIT or ROLLBACK
776# statement issued while there are still outstanding VMs that are part of
777# the transaction fails.
778sqlite3 db test.db
779set DB [sqlite3_connection_pointer db]
780sqlite_register_test_function $DB func
781do_test capi3c-11.1 {
782  execsql {
783    BEGIN;
784    CREATE TABLE t1(a, b);
785    INSERT INTO t1 VALUES(1, 'int');
786    INSERT INTO t1 VALUES(2, 'notatype');
787  }
788} {}
789do_test capi3c-11.1.1 {
790  sqlite3_get_autocommit $DB
791} 0
792do_test capi3c-11.2 {
793  set STMT [sqlite3_prepare_v2 $DB "SELECT func(b, a) FROM t1" -1 TAIL]
794  sqlite3_step $STMT
795} {SQLITE_ROW}
796
797# As of 3.6.5 a COMMIT is OK during while a query is still running -
798# as long as it is a read-only query and not an incremental BLOB write.
799#
800do_test capi3-11.3.1 {
801  catchsql {
802    COMMIT;
803  }
804} {0 {}}
805do_test capi3-11.3.2 {
806  sqlite3_extended_errcode $DB
807} {SQLITE_OK}
808do_test capi3-11.3.3 {
809  sqlite3_get_autocommit $DB
810} 1
811do_test capi3-11.3.4 {
812  db eval {PRAGMA lock_status}
813} {main shared temp closed}
814
815do_test capi3c-11.4 {
816  sqlite3_step $STMT
817} {SQLITE_ERROR}
818do_test capi3c-11.5 {
819  sqlite3_finalize $STMT
820} {SQLITE_ERROR}
821do_test capi3c-11.6 {
822  catchsql {
823    SELECT * FROM t1;
824  }
825} {0 {1 int 2 notatype}}
826do_test capi3c-11.7 {
827  sqlite3_get_autocommit $DB
828} 1
829do_test capi3c-11.8 {
830  execsql {
831    CREATE TABLE t2(a);
832    INSERT INTO t2 VALUES(1);
833    INSERT INTO t2 VALUES(2);
834    BEGIN;
835    INSERT INTO t2 VALUES(3);
836  }
837} {}
838do_test capi3c-11.8.1 {
839  sqlite3_get_autocommit $DB
840} 0
841do_test capi3c-11.9 {
842  set STMT [sqlite3_prepare_v2 $DB "SELECT a FROM t2" -1 TAIL]
843  sqlite3_step $STMT
844} {SQLITE_ROW}
845do_test capi3c-11.9.1 {
846  sqlite3_get_autocommit $DB
847} 0
848do_test capi3c-11.9.2 {
849  catchsql {
850    ROLLBACK;
851  }
852} {0 {}}
853do_test capi3c-11.9.3 {
854  sqlite3_get_autocommit $DB
855} 1
856do_test capi3c-11.10 {
857  sqlite3_step $STMT
858} {SQLITE_ABORT}
859ifcapable !autoreset {
860  # If SQLITE_OMIT_AUTORESET is defined, then the statement must be
861  # reset() before it can be passed to step() again.
862  do_test capi3-11.11a { sqlite3_step $STMT } {SQLITE_MISUSE}
863  do_test capi3-11.11b { sqlite3_reset $STMT } {SQLITE_ABORT}
864}
865do_test capi3c-11.11 {
866  sqlite3_step $STMT
867} {SQLITE_ROW}
868do_test capi3c-11.12 {
869  sqlite3_step $STMT
870  sqlite3_step $STMT
871} {SQLITE_DONE}
872do_test capi3c-11.13 {
873  sqlite3_finalize $STMT
874} {SQLITE_OK}
875do_test capi3c-11.14 {
876  execsql {
877    SELECT a FROM t2;
878  }
879} {1 2}
880do_test capi3c-11.14.1 {
881  sqlite3_get_autocommit $DB
882} 1
883do_test capi3c-11.15 {
884  catchsql {
885    ROLLBACK;
886  }
887} {1 {cannot rollback - no transaction is active}}
888do_test capi3c-11.15.1 {
889  sqlite3_get_autocommit $DB
890} 1
891do_test capi3c-11.16 {
892  execsql {
893    SELECT a FROM t2;
894  }
895} {1 2}
896
897# Sanity check on the definition of 'outstanding VM'. This means any VM
898# that has had sqlite3_step() called more recently than sqlite3_finalize() or
899# sqlite3_reset(). So a VM that has just been prepared or reset does not
900# count as an active VM.
901do_test capi3c-11.17 {
902  execsql {
903    BEGIN;
904  }
905} {}
906do_test capi3c-11.18 {
907  set STMT [sqlite3_prepare_v2 $DB "SELECT a FROM t1" -1 TAIL]
908  catchsql {
909    COMMIT;
910  }
911} {0 {}}
912do_test capi3c-11.19 {
913  sqlite3_step $STMT
914} {SQLITE_ROW}
915do_test capi3c-11.20 {
916  catchsql {
917    BEGIN;
918    COMMIT;
919  }
920} {0 {}}
921do_test capi3c-11.20 {
922  sqlite3_reset $STMT
923  catchsql {
924    COMMIT;
925  }
926} {1 {cannot commit - no transaction is active}}
927do_test capi3c-11.21 {
928  sqlite3_finalize $STMT
929} {SQLITE_OK}
930
931# The following tests - capi3c-12.* - check that its Ok to start a
932# transaction while other VMs are active, and that its Ok to execute
933# atomic updates in the same situation
934#
935do_test capi3c-12.1 {
936  set STMT [sqlite3_prepare_v2 $DB "SELECT a FROM t2" -1 TAIL]
937  sqlite3_step $STMT
938} {SQLITE_ROW}
939do_test capi3c-12.2 {
940  catchsql {
941    INSERT INTO t1 VALUES(3, NULL);
942  }
943} {0 {}}
944do_test capi3c-12.3 {
945  catchsql {
946    INSERT INTO t2 VALUES(4);
947  }
948} {0 {}}
949do_test capi3c-12.4 {
950  catchsql {
951    BEGIN;
952    INSERT INTO t1 VALUES(4, NULL);
953  }
954} {0 {}}
955do_test capi3c-12.5 {
956  sqlite3_step $STMT
957} {SQLITE_ROW}
958do_test capi3c-12.5.1 {
959  sqlite3_step $STMT
960} {SQLITE_ROW}
961do_test capi3c-12.6 {
962  sqlite3_step $STMT
963} {SQLITE_DONE}
964do_test capi3c-12.7 {
965  sqlite3_finalize $STMT
966} {SQLITE_OK}
967do_test capi3c-12.8 {
968  execsql {
969    COMMIT;
970    SELECT a FROM t1;
971  }
972} {1 2 3 4}
973
974# Test cases capi3c-13.* test the sqlite3_clear_bindings() and
975# sqlite3_sleep APIs.
976#
977if {[llength [info commands sqlite3_clear_bindings]]>0} {
978  do_test capi3c-13.1 {
979    execsql {
980      DELETE FROM t1;
981    }
982    set STMT [sqlite3_prepare_v2 $DB "INSERT INTO t1 VALUES(?, ?)" -1 TAIL]
983    sqlite3_step $STMT
984  } {SQLITE_DONE}
985  do_test capi3c-13.2 {
986    sqlite3_reset $STMT
987    sqlite3_bind_text $STMT 1 hello 5
988    sqlite3_bind_text $STMT 2 world 5
989    sqlite3_step $STMT
990  } {SQLITE_DONE}
991  do_test capi3c-13.3 {
992    sqlite3_reset $STMT
993    sqlite3_clear_bindings $STMT
994    sqlite3_step $STMT
995  } {SQLITE_DONE}
996  do_test capi3c-13-4 {
997    sqlite3_finalize $STMT
998    execsql {
999      SELECT * FROM t1;
1000    }
1001  } {{} {} hello world {} {}}
1002}
1003if {[llength [info commands sqlite3_sleep]]>0} {
1004  do_test capi3c-13-5 {
1005    set ms [sqlite3_sleep 80]
1006    expr {$ms==80 || $ms==1000}
1007  } {1}
1008}
1009
1010# Ticket #1219:  Make sure binding APIs can handle a NULL pointer.
1011#
1012do_test capi3c-14.1 {
1013  set rc [catch {sqlite3_bind_text 0 1 hello 5} msg]
1014  lappend rc $msg
1015} {1 SQLITE_MISUSE}
1016
1017# Ticket #1650:  Honor the nBytes parameter to sqlite3_prepare.
1018#
1019do_test capi3c-15.1 {
1020  set sql {SELECT * FROM t2}
1021  set nbytes [string length $sql]
1022  append sql { WHERE a==1}
1023  set STMT [sqlite3_prepare_v2 $DB $sql $nbytes TAIL]
1024  sqlite3_step $STMT
1025  sqlite3_column_int $STMT 0
1026} {1}
1027do_test capi3c-15.2 {
1028  sqlite3_step $STMT
1029  sqlite3_column_int $STMT 0
1030} {2}
1031do_test capi3c-15.3 {
1032  sqlite3_finalize $STMT
1033} {SQLITE_OK}
1034
1035# Make sure code is always generated even if an IF EXISTS or
1036# IF NOT EXISTS clause is present that the table does not or
1037# does exists.  That way we will always have a prepared statement
1038# to expire when the schema changes.
1039#
1040do_test capi3c-16.1 {
1041  set sql {DROP TABLE IF EXISTS t3}
1042  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
1043  sqlite3_finalize $STMT
1044  expr {$STMT!=""}
1045} {1}
1046do_test capi3c-16.2 {
1047  set sql {CREATE TABLE IF NOT EXISTS t1(x,y)}
1048  set STMT [sqlite3_prepare_v2 $DB $sql -1 TAIL]
1049  sqlite3_finalize $STMT
1050  expr {$STMT!=""}
1051} {1}
1052
1053# But still we do not generate code if there is no SQL
1054#
1055do_test capi3c-16.3 {
1056  set STMT [sqlite3_prepare_v2 $DB {} -1 TAIL]
1057  sqlite3_finalize $STMT
1058  expr {$STMT==""}
1059} {1}
1060do_test capi3c-16.4 {
1061  set STMT [sqlite3_prepare_v2 $DB {;} -1 TAIL]
1062  sqlite3_finalize $STMT
1063  expr {$STMT==""}
1064} {1}
1065
1066# Ticket #2154.
1067#
1068do_test capi3c-17.1 {
1069  set STMT [sqlite3_prepare_v2 $DB {SELECT max(a) FROM t2} -1 TAIL]
1070  sqlite3_step $STMT
1071} SQLITE_ROW
1072do_test capi3c-17.2 {
1073  sqlite3_column_int $STMT 0
1074} 4
1075do_test capi3c-17.3 {
1076  sqlite3_step $STMT
1077} SQLITE_DONE
1078do_test capi3c-17.4 {
1079  sqlite3_reset $STMT
1080  db eval {CREATE INDEX i2 ON t2(a)}
1081  sqlite3_step $STMT
1082} SQLITE_ROW
1083do_test capi3c-17.5 {
1084  sqlite3_column_int $STMT 0
1085} 4
1086do_test capi3c-17.6 {
1087  sqlite3_step $STMT
1088} SQLITE_DONE
1089do_test capi3c-17.7 {
1090  sqlite3_reset $STMT
1091  db eval {DROP INDEX i2}
1092  sqlite3_step $STMT
1093} SQLITE_ROW
1094do_test capi3c-17.8 {
1095  sqlite3_column_int $STMT 0
1096} 4
1097do_test capi3c-17.9 {
1098  sqlite3_step $STMT
1099} SQLITE_DONE
1100do_test capi3c-17.10 {
1101  sqlite3_finalize $STMT
1102  set STMT [sqlite3_prepare_v2 $DB {SELECT b FROM t1 WHERE a=?} -1 TAIL]
1103  sqlite3_bind_int $STMT 1 2
1104  db eval {
1105    DELETE FROM t1;
1106    INSERT INTO t1 VALUES(1,'one');
1107    INSERT INTO t1 VALUES(2,'two');
1108    INSERT INTO t1 VALUES(3,'three');
1109    INSERT INTO t1 VALUES(4,'four');
1110  }
1111  sqlite3_step $STMT
1112} SQLITE_ROW
1113do_test capi3c-17.11 {
1114  sqlite3_column_text $STMT 0
1115} two
1116do_test capi3c-17.12 {
1117  sqlite3_step $STMT
1118} SQLITE_DONE
1119do_test capi3c-17.13 {
1120  sqlite3_reset $STMT
1121  db eval {CREATE INDEX i1 ON t1(a)}
1122  sqlite3_step $STMT
1123} SQLITE_ROW
1124do_test capi3c-17.14 {
1125  sqlite3_column_text $STMT 0
1126} two
1127do_test capi3c-17.15 {
1128  sqlite3_step $STMT
1129} SQLITE_DONE
1130do_test capi3c-17.16 {
1131  sqlite3_reset $STMT
1132  db eval {DROP INDEX i1}
1133  sqlite3_step $STMT
1134} SQLITE_ROW
1135do_test capi3c-17.17 {
1136  sqlite3_column_text $STMT 0
1137} two
1138do_test capi3c-17.18 {
1139  sqlite3_step $STMT
1140} SQLITE_DONE
1141do_test capi3c-17.99 {
1142  sqlite3_finalize $STMT
1143} SQLITE_OK
1144
1145# On the mailing list it has been reported that finalizing after
1146# an SQLITE_BUSY return leads to a segfault.  Here we test that case.
1147#
1148do_test capi3c-18.1 {
1149  sqlite3 db2 test.db
1150  set STMT [sqlite3_prepare_v2 $DB {SELECT max(a) FROM t1} -1 TAIL]
1151  sqlite3_step $STMT
1152} SQLITE_ROW
1153do_test capi3c-18.2 {
1154  sqlite3_column_int $STMT 0
1155} 4
1156do_test capi3c-18.3 {
1157  sqlite3_reset $STMT
1158  db2 eval {BEGIN EXCLUSIVE}
1159  sqlite3_step $STMT
1160} SQLITE_BUSY
1161do_test capi3c-18.4 {
1162  sqlite3_finalize $STMT
1163} SQLITE_BUSY
1164do_test capi3c-18.5 {
1165  db2 eval {COMMIT}
1166  db2 close
1167} {}
1168
1169# Ticket #2158.  The sqlite3_step() will still return SQLITE_SCHEMA
1170# if the database schema changes in a way that makes the statement
1171# no longer valid.
1172#
1173do_test capi3c-19.1 {
1174  db eval {
1175     CREATE TABLE t3(x,y);
1176     INSERT INTO t3 VALUES(1,2);
1177  }
1178  set STMT [sqlite3_prepare_v2 $DB {SELECT * FROM t3} -1 TAIL]
1179  sqlite3_step $STMT
1180} SQLITE_ROW
1181do_test capi3c-19.2 {
1182  sqlite3_column_int $STMT 0
1183} 1
1184do_test capi3c-19.3 {
1185  sqlite3_step $STMT
1186} SQLITE_DONE
1187do_test capi3c-19.4 {
1188  sqlite3_reset $STMT
1189  db eval {DROP TABLE t3}
1190  sqlite3_step $STMT
1191} SQLITE_ERROR
1192do_test capi3c-19.4.1 {
1193  sqlite3_errmsg $DB
1194} {no such table: t3}
1195ifcapable deprecated {
1196  do_test capi3c-19.4.2 {
1197    sqlite3_expired $STMT
1198  } 1
1199}
1200do_test capi3c-19.4.3 {
1201  sqlite3_errmsg $DB
1202} {no such table: t3}
1203ifcapable deprecated {
1204  do_test capi3c-19.4.4 {
1205    sqlite3_expired 0
1206  } 1
1207}
1208do_test capi3c-19.5 {
1209  sqlite3_reset $STMT
1210  db eval {
1211     CREATE TABLE t3(x,y);
1212     INSERT INTO t3 VALUES(1,2);
1213  }
1214  sqlite3_step $STMT
1215} SQLITE_ROW
1216ifcapable deprecated {
1217  do_test capi3c-19.5.2 {
1218    sqlite3_expired $STMT
1219  } 0
1220}
1221do_test capi3c-19.6 {
1222  sqlite3_column_int $STMT 1
1223} 2
1224do_test capi3c-19.99 {
1225  sqlite3_finalize $STMT
1226} SQLITE_OK
1227
1228# Make sure a change in a separate database connection does not
1229# cause an SQLITE_SCHEMA return.
1230#
1231do_test capi3c-20.1 {
1232  set STMT [sqlite3_prepare_v2 $DB {SELECT * FROM t3} -1 TAIL]
1233  sqlite3 db2 test.db
1234  db2 eval {CREATE TABLE t4(x)}
1235  sqlite3_step $STMT
1236} SQLITE_ROW
1237do_test capi3c-20.2 {
1238  sqlite3_column_int $STMT 1
1239} 2
1240do_test capi3c-20.3 {
1241  sqlite3_step $STMT
1242} SQLITE_DONE
1243do_test capi3c-20.4 {
1244  db2 close
1245  sqlite3_finalize $STMT
1246} SQLITE_OK
1247
1248# Test that sqlite3_step() sets the database error code correctly.
1249# See ticket #2497.
1250#
1251ifcapable progress {
1252  do_test capi3c-21.1 {
1253    set STMT [sqlite3_prepare_v2 $DB {SELECT * FROM t3} -1 TAIL]
1254    db progress 5 "expr 1"
1255    sqlite3_step $STMT
1256  } {SQLITE_INTERRUPT}
1257  do_test capi3c-21.2 {
1258    sqlite3_extended_errcode $DB
1259  } {SQLITE_INTERRUPT}
1260  do_test capi3c-21.3 {
1261    sqlite3_finalize $STMT
1262  } {SQLITE_INTERRUPT}
1263  do_test capi3c-21.4 {
1264    set STMT [sqlite3_prepare $DB {SELECT * FROM t3} -1 TAIL]
1265    db progress 5 "expr 1"
1266    sqlite3_step $STMT
1267  } {SQLITE_ERROR}
1268  do_test capi3c-21.5 {
1269    sqlite3_errcode $DB
1270  } {SQLITE_ERROR}
1271  do_test capi3c-21.6 {
1272    sqlite3_finalize $STMT
1273  } {SQLITE_INTERRUPT}
1274  do_test capi3c-21.7 {
1275    sqlite3_errcode $DB
1276  } {SQLITE_INTERRUPT}
1277  do_test capi3c-21.8 {
1278    sqlite3_extended_errcode $DB
1279  } {SQLITE_INTERRUPT}
1280}
1281
1282# Make sure sqlite3_result_error_code() returns the correct error code.
1283# See ticket #2940
1284#
1285do_test capi3c-22.1 {
1286  db progress 0 {}
1287  set STMT [sqlite3_prepare_v2 db {SELECT test_error('the message',3)} -1 TAIL]
1288  sqlite3_step $STMT
1289} {SQLITE_PERM}
1290sqlite3_finalize $STMT
1291do_test capi3c-22.2 {
1292  set STMT [sqlite3_prepare_v2 db {SELECT test_error('the message',4)} -1 TAIL]
1293  sqlite3_step $STMT
1294} {SQLITE_ABORT}
1295sqlite3_finalize $STMT
1296do_test capi3c-22.3 {
1297  set STMT [sqlite3_prepare_v2 db {SELECT test_error('the message',16)} -1 TAIL]
1298  sqlite3_step $STMT
1299} {SQLITE_EMPTY}
1300sqlite3_finalize $STMT
1301
1302# For a multi-column result set where the same table column is repeated
1303# in multiple columns of the output, verify that doing a UTF-8 to UTF-16
1304# conversion (or vice versa) on one column does not change the value of
1305# the second.
1306#
1307ifcapable utf16 {
1308  do_test capi3c-23.1 {
1309    set STMT [sqlite3_prepare_v2 db {SELECT b,b,b,b FROM t1} -1 TAIL]
1310    sqlite3_step $STMT
1311  } {SQLITE_ROW}
1312  do_test capi3c-23.2 {
1313    sqlite3_column_text16 $STMT 0
1314    sqlite3_column_text $STMT 1
1315  } {one}
1316  do_test capi3c-23.3 {
1317    sqlite3_column_text16 $STMT 2
1318    sqlite3_column_text $STMT 3
1319  } {one}
1320  sqlite3_finalize $STMT
1321  do_test capi3c-23.4 {
1322    set STMT [sqlite3_prepare_v2 db {SELECT b||'x',b,b,b FROM t1} -1 TAIL]
1323    sqlite3_step $STMT
1324  } {SQLITE_ROW}
1325  do_test capi3c-23.5 {
1326    sqlite3_column_text16 $STMT 0
1327    sqlite3_column_text $STMT 1
1328  } {one}
1329  do_test capi3c-23.6 {
1330    sqlite3_column_text16 $STMT 2
1331    sqlite3_column_text $STMT 3
1332  } {one}
1333  sqlite3_finalize $STMT
1334}
1335
1336# Test decltype on some SELECT statements that contain sub-selects.
1337#
1338proc decltype {zSql} {
1339  set ret [list]
1340  set STMT [sqlite3_prepare_v2 db $zSql -1 TAIL]
1341  for {set i 0} {$i < [sqlite3_column_count $STMT]} {incr i} {
1342    lappend ret [sqlite3_column_decltype $STMT $i]
1343  }
1344  sqlite3_finalize $STMT
1345  return $ret
1346}
1347do_test capi3c-24.1 {
1348  execsql { CREATE TABLE t5(a INTEGER, b STRING, c DATETIME) }
1349  decltype {SELECT * FROM t5}
1350} {INTEGER STRING DATETIME}
1351do_test capi3c-24.2 {
1352  decltype {SELECT (SELECT c) FROM t5}
1353} {DATETIME}
1354do_test capi3c-24.3 {
1355  decltype {SELECT (SELECT * FROM (SELECT c)) FROM t5}
1356} {DATETIME}
1357do_test capi3c-24.4 {
1358  decltype {SELECT * FROM (SELECT * FROM t5 ORDER BY c LIMIT 1) ORDER BY b}
1359} {INTEGER STRING DATETIME}
1360do_test capi3c-24.5 {
1361  decltype {
1362    SELECT (SELECT x FROM (SELECT c AS x))
1363    FROM (SELECT * FROM t5 ORDER BY c LIMIT 1) ORDER BY b
1364  }
1365} {DATETIME}
1366do_test capi3c-24.3 {
1367  decltype {SELECT (SELECT x FROM (SELECT t5.a AS x)) FROM t5}
1368} {INTEGER}
1369
1370finish_test
1371