xref: /sqlite-3.40.0/test/lock.test (revision 1d64fc1a)
1# 2001 September 15
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.  The
12# focus of this script is database locks.
13#
14# $Id: lock.test,v 1.27 2004/08/07 23:54:48 drh Exp $
15
16
17set testdir [file dirname $argv0]
18source $testdir/tester.tcl
19
20# Create an alternative connection to the database
21#
22do_test lock-1.0 {
23  sqlite3 db2 ./test.db
24  set dummy {}
25} {}
26do_test lock-1.1 {
27  execsql {SELECT name FROM sqlite_master WHERE type='table' ORDER BY name}
28} {}
29do_test lock-1.2 {
30  execsql {SELECT name FROM sqlite_master WHERE type='table' ORDER BY name} db2
31} {}
32do_test lock-1.3 {
33  execsql {CREATE TABLE t1(a int, b int)}
34  execsql {SELECT name FROM sqlite_master WHERE type='table' ORDER BY name}
35} {t1}
36do_test lock-1.5 {
37  catchsql {
38     SELECT name FROM sqlite_master WHERE type='table' ORDER BY name
39  } db2
40} {0 t1}
41
42do_test lock-1.6 {
43  execsql {INSERT INTO t1 VALUES(1,2)}
44  execsql {SELECT * FROM t1}
45} {1 2}
46# Update: The schema is now brought up to date by test lock-1.5.
47# do_test lock-1.7.1 {
48#   catchsql {SELECT * FROM t1} db2
49# } {1 {no such table: t1}}
50do_test lock-1.7.2 {
51  catchsql {SELECT * FROM t1} db2
52} {0 {1 2}}
53do_test lock-1.8 {
54  execsql {UPDATE t1 SET a=b, b=a} db2
55  execsql {SELECT * FROM t1} db2
56} {2 1}
57do_test lock-1.9 {
58  execsql {SELECT * FROM t1}
59} {2 1}
60do_test lock-1.10 {
61  execsql {BEGIN TRANSACTION}
62  execsql {UPDATE t1 SET a = 0 WHERE 0}
63  execsql {SELECT * FROM t1}
64} {2 1}
65do_test lock-1.11 {
66  catchsql {SELECT * FROM t1} db2
67} {0 {2 1}}
68do_test lock-1.12 {
69  execsql {ROLLBACK}
70  catchsql {SELECT * FROM t1}
71} {0 {2 1}}
72
73do_test lock-1.13 {
74  execsql {CREATE TABLE t2(x int, y int)}
75  execsql {INSERT INTO t2 VALUES(8,9)}
76  execsql {SELECT * FROM t2}
77} {8 9}
78do_test lock-1.14.1 {
79  catchsql {SELECT * FROM t2} db2
80} {1 {no such table: t2}}
81do_test lock-1.14.2 {
82  catchsql {SELECT * FROM t1} db2
83} {0 {2 1}}
84do_test lock-1.15 {
85  catchsql {SELECT * FROM t2} db2
86} {0 {8 9}}
87
88do_test lock-1.16 {
89  db eval {SELECT * FROM t1} qv {
90    set x [db eval {SELECT * FROM t1}]
91  }
92  set x
93} {2 1}
94do_test lock-1.17 {
95  db eval {SELECT * FROM t1} qv {
96    set x [db eval {SELECT * FROM t2}]
97  }
98  set x
99} {8 9}
100
101# You cannot UPDATE a table from within the callback of a SELECT
102# on that same table because the SELECT has the table locked.
103#
104do_test lock-1.18 {
105  db eval {SELECT * FROM t1} qv {
106    set r [catch {db eval {UPDATE t1 SET a=b, b=a}} msg]
107    lappend r $msg
108  }
109  set r
110} {1 {database table is locked}}
111
112# But you can UPDATE a different table from the one that is used in
113# the SELECT.
114#
115do_test lock-1.19 {
116  db eval {SELECT * FROM t1} qv {
117    set r [catch {db eval {UPDATE t2 SET x=y, y=x}} msg]
118    lappend r $msg
119  }
120  set r
121} {0 {}}
122do_test lock-1.20 {
123  execsql {SELECT * FROM t2}
124} {9 8}
125
126# It is possible to do a SELECT of the same table within the
127# callback of another SELECT on that same table because two
128# or more read-only cursors can be open at once.
129#
130do_test lock-1.21 {
131  db eval {SELECT * FROM t1} qv {
132    set r [catch {db eval {SELECT a FROM t1}} msg]
133    lappend r $msg
134  }
135  set r
136} {0 2}
137
138# Under UNIX you can do two SELECTs at once with different database
139# connections, because UNIX supports reader/writer locks.  Under windows,
140# this is not possible.
141#
142if {$::tcl_platform(platform)=="unix"} {
143  do_test lock-1.22 {
144    db eval {SELECT * FROM t1} qv {
145      set r [catch {db2 eval {SELECT a FROM t1}} msg]
146      lappend r $msg
147    }
148    set r
149  } {0 2}
150}
151integrity_check lock-1.23
152
153# If one thread has a transaction another thread cannot start
154# a transaction.  -> Not true in version 3.0.  But if one thread
155# as a RESERVED lock another thread cannot acquire one.
156#
157do_test lock-2.1 {
158  execsql {BEGIN TRANSACTION}
159  execsql {UPDATE t1 SET a = 0 WHERE 0}
160  execsql {BEGIN TRANSACTION} db2
161  set r [catch {execsql {UPDATE t1 SET a = 0 WHERE 0} db2} msg]
162  execsql {ROLLBACK} db2
163  lappend r $msg
164} {1 {database is locked}}
165
166# A thread can read when another has a RESERVED lock.
167#
168do_test lock-2.2 {
169  catchsql {SELECT * FROM t2} db2
170} {0 {9 8}}
171
172# If the other thread (the one that does not hold the transaction with
173# a RESERVED lock) tries to get a RESERVED lock, we do not get a busy callback.
174#
175do_test lock-2.3 {
176  proc callback {count} {
177    set ::callback_value $count
178    break
179  }
180  set ::callback_value {}
181  db2 busy callback
182  set r [catch {execsql {UPDATE t1 SET a=b, b=a} db2} msg]
183  lappend r $msg
184  lappend r $::callback_value
185} {1 {database is locked} {}}
186do_test lock-2.4 {
187  proc callback {count} {
188    lappend ::callback_value $count
189    if {$count>4} break
190  }
191  set ::callback_value {}
192  db2 busy callback
193  set r [catch {execsql {UPDATE t1 SET a=b, b=a} db2} msg]
194  lappend r $msg
195  lappend r $::callback_value
196} {1 {database is locked} {}}
197do_test lock-2.5 {
198  proc callback {count} {
199    lappend ::callback_value $count
200    if {$count>4} break
201  }
202  set ::callback_value {}
203  db2 busy callback
204  set r [catch {execsql {SELECT * FROM t1} db2} msg]
205  lappend r $msg
206  lappend r $::callback_value
207} {0 {2 1} {}}
208execsql {ROLLBACK}
209
210# Test the built-in busy timeout handler
211#
212do_test lock-2.8 {
213  db2 timeout 400
214  execsql BEGIN
215  execsql {UPDATE t1 SET a = 0 WHERE 0}
216  # catchsql BEGIN db2
217  catchsql {UPDATE t1 SET a = 0 WHERE 0} db2
218} {1 {database is locked}}
219do_test lock-2.9 {
220  db2 timeout 0
221  execsql COMMIT
222} {}
223integrity_check lock-2.10
224
225# Try to start two transactions in a row
226#
227do_test lock-3.1 {
228  execsql {BEGIN TRANSACTION}
229  set r [catch {execsql {BEGIN TRANSACTION}} msg]
230  execsql {ROLLBACK}
231  lappend r $msg
232} {1 {cannot start a transaction within a transaction}}
233integrity_check lock-3.2
234
235# Make sure the busy handler and error messages work when
236# opening a new pointer to the database while another pointer
237# has the database locked.
238#
239do_test lock-4.1 {
240  db2 close
241  catch {db eval ROLLBACK}
242  db eval BEGIN
243  db eval {UPDATE t1 SET a=0 WHERE 0}
244  sqlite3 db2 ./test.db
245  catchsql {UPDATE t1 SET a=0} db2
246} {1 {database is locked}}
247do_test lock-4.2 {
248  set ::callback_value {}
249  set rc [catch {db2 eval {UPDATE t1 SET a=0}} msg]
250  lappend rc $msg $::callback_value
251} {1 {database is locked} {}}
252do_test lock-4.3 {
253  proc callback {count} {
254    lappend ::callback_value $count
255    if {$count>4} break
256  }
257  db2 busy callback
258  set rc [catch {db2 eval {UPDATE t1 SET a=0}} msg]
259  lappend rc $msg $::callback_value
260} {1 {database is locked} {}}
261execsql {ROLLBACK}
262
263# When one thread is writing, other threads cannot read.  Except if the
264# writing thread is writing to its temporary tables, the other threads
265# can still read.  -> Not so in 3.0.  One thread can read while another
266# holds a RESERVED lock.
267#
268proc tx_exec {sql} {
269  db2 eval $sql
270}
271do_test lock-5.1 {
272  execsql {
273    SELECT * FROM t1
274  }
275} {2 1}
276do_test lock-5.2 {
277  db function tx_exec tx_exec
278  catchsql {
279    INSERT INTO t1(a,b) SELECT 3, tx_exec('SELECT y FROM t2 LIMIT 1');
280  }
281} {0 {}}
282do_test lock-5.3 {
283  execsql {
284    CREATE TEMP TABLE t3(x);
285    SELECT * FROM t3;
286  }
287} {}
288do_test lock-5.4 {
289  catchsql {
290    INSERT INTO t3 SELECT tx_exec('SELECT y FROM t2 LIMIT 1');
291  }
292} {0 {}}
293do_test lock-5.5 {
294  execsql {
295    SELECT * FROM t3;
296  }
297} {8}
298do_test lock-5.6 {
299  catchsql {
300    UPDATE t1 SET a=tx_exec('SELECT x FROM t2');
301  }
302} {0 {}}
303do_test lock-5.7 {
304  execsql {
305    SELECT * FROM t1;
306  }
307} {9 1 9 8}
308do_test lock-5.8 {
309  catchsql {
310    UPDATE t3 SET x=tx_exec('SELECT x FROM t2');
311  }
312} {0 {}}
313do_test lock-5.9 {
314  execsql {
315    SELECT * FROM t3;
316  }
317} {9}
318
319do_test lock-999.1 {
320  rename db2 {}
321} {}
322
323finish_test
324