xref: /sqlite-3.40.0/test/expr.test (revision c56fac74)
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 file is testing expressions.
13#
14# $Id: expr.test,v 1.67 2009/02/04 03:59:25 shane Exp $
15
16set testdir [file dirname $argv0]
17source $testdir/tester.tcl
18
19# Create a table to work with.
20#
21ifcapable floatingpoint {
22  execsql {CREATE TABLE test1(i1 int, i2 int, r1 real, r2 real, t1 text, t2 text)}
23  execsql {INSERT INTO test1 VALUES(1,2,1.1,2.2,'hello','world')}
24}
25ifcapable !floatingpoint {
26  execsql {CREATE TABLE test1(i1 int, i2 int, t1 text, t2 text)}
27  execsql {INSERT INTO test1 VALUES(1,2,'hello','world')}
28}
29
30proc test_expr {name settings expr result} {
31  do_test $name [format {
32    execsql {BEGIN; UPDATE test1 SET %s; SELECT %s FROM test1; ROLLBACK;}
33  } $settings $expr] $result
34}
35proc test_realnum_expr {name settings expr result} {
36  do_realnum_test $name [format {
37    execsql {BEGIN; UPDATE test1 SET %s; SELECT %s FROM test1; ROLLBACK;}
38  } $settings $expr] $result
39}
40
41test_expr expr-1.1 {i1=10, i2=20} {i1+i2} 30
42test_expr expr-1.2 {i1=10, i2=20} {i1-i2} -10
43test_expr expr-1.3 {i1=10, i2=20} {i1*i2} 200
44test_expr expr-1.4 {i1=10, i2=20} {i1/i2} 0
45test_expr expr-1.5 {i1=10, i2=20} {i2/i1} 2
46test_expr expr-1.6 {i1=10, i2=20} {i2<i1} 0
47test_expr expr-1.7 {i1=10, i2=20} {i2<=i1} 0
48test_expr expr-1.8 {i1=10, i2=20} {i2>i1} 1
49test_expr expr-1.9 {i1=10, i2=20} {i2>=i1} 1
50test_expr expr-1.10 {i1=10, i2=20} {i2!=i1} 1
51test_expr expr-1.11 {i1=10, i2=20} {i2=i1} 0
52test_expr expr-1.12 {i1=10, i2=20} {i2<>i1} 1
53test_expr expr-1.13 {i1=10, i2=20} {i2==i1} 0
54test_expr expr-1.14 {i1=20, i2=20} {i2<i1} 0
55test_expr expr-1.15 {i1=20, i2=20} {i2<=i1} 1
56test_expr expr-1.16 {i1=20, i2=20} {i2>i1} 0
57test_expr expr-1.17 {i1=20, i2=20} {i2>=i1} 1
58test_expr expr-1.18 {i1=20, i2=20} {i2!=i1} 0
59test_expr expr-1.19 {i1=20, i2=20} {i2=i1} 1
60test_expr expr-1.20 {i1=20, i2=20} {i2<>i1} 0
61test_expr expr-1.21 {i1=20, i2=20} {i2==i1} 1
62ifcapable floatingpoint {
63  test_expr expr-1.22 {i1=1, i2=2, r1=3.0} {i1+i2*r1} {7.0}
64  test_expr expr-1.23 {i1=1, i2=2, r1=3.0} {(i1+i2)*r1} {9.0}
65}
66test_expr expr-1.24 {i1=1, i2=2} {min(i1,i2,i1+i2,i1-i2)} {-1}
67test_expr expr-1.25 {i1=1, i2=2} {max(i1,i2,i1+i2,i1-i2)} {3}
68test_expr expr-1.26 {i1=1, i2=2} {max(i1,i2,i1+i2,i1-i2)} {3}
69test_expr expr-1.27 {i1=1, i2=2} {i1==1 AND i2=2} {1}
70test_expr expr-1.28 {i1=1, i2=2} {i1=2 AND i2=1} {0}
71test_expr expr-1.29 {i1=1, i2=2} {i1=1 AND i2=1} {0}
72test_expr expr-1.30 {i1=1, i2=2} {i1=2 AND i2=2} {0}
73test_expr expr-1.31 {i1=1, i2=2} {i1==1 OR i2=2} {1}
74test_expr expr-1.32 {i1=1, i2=2} {i1=2 OR i2=1} {0}
75test_expr expr-1.33 {i1=1, i2=2} {i1=1 OR i2=1} {1}
76test_expr expr-1.34 {i1=1, i2=2} {i1=2 OR i2=2} {1}
77test_expr expr-1.35 {i1=1, i2=2} {i1-i2=-1} {1}
78test_expr expr-1.36 {i1=1, i2=0} {not i1} {0}
79test_expr expr-1.37 {i1=1, i2=0} {not i2} {1}
80test_expr expr-1.38 {i1=1} {-i1} {-1}
81test_expr expr-1.39 {i1=1} {+i1} {1}
82test_expr expr-1.40 {i1=1, i2=2} {+(i2+i1)} {3}
83test_expr expr-1.41 {i1=1, i2=2} {-(i2+i1)} {-3}
84test_expr expr-1.42 {i1=1, i2=2} {i1|i2} {3}
85test_expr expr-1.42b {i1=1, i2=2} {4|2} {6}
86test_expr expr-1.43 {i1=1, i2=2} {i1&i2} {0}
87test_expr expr-1.43b {i1=1, i2=2} {4&5} {4}
88test_expr expr-1.44 {i1=1} {~i1} {-2}
89test_expr expr-1.44b {i1=NULL} {~i1} {{}}
90test_expr expr-1.45a {i1=1, i2=3} {i1<<i2} {8}
91test_expr expr-1.45b {i1=1, i2=-3} {i1>>i2} {8}
92test_expr expr-1.45c {i1=1, i2=0} {i1<<i2} {1}
93test_expr expr-1.45d {i1=1, i2=62} {i1<<i2} {4611686018427387904}
94test_expr expr-1.45e {i1=1, i2=63} {i1<<i2} {-9223372036854775808}
95test_expr expr-1.45f {i1=1, i2=64} {i1<<i2} {0}
96test_expr expr-1.45g {i1=32, i2=-9223372036854775808} {i1>>i2} {0}
97test_expr expr-1.46a {i1=32, i2=3} {i1>>i2} {4}
98test_expr expr-1.46b {i1=32, i2=6} {i1>>i2} {0}
99test_expr expr-1.46c {i1=-32, i2=3} {i1>>i2} {-4}
100test_expr expr-1.46d {i1=-32, i2=100} {i1>>i2} {-1}
101test_expr expr-1.46e {i1=32, i2=-3} {i1>>i2} {256}
102test_expr expr-1.47 {i1=9999999999, i2=8888888888} {i1<i2} 0
103test_expr expr-1.48 {i1=9999999999, i2=8888888888} {i1=i2} 0
104test_expr expr-1.49 {i1=9999999999, i2=8888888888} {i1>i2} 1
105test_expr expr-1.50 {i1=99999999999, i2=99999999998} {i1<i2} 0
106test_expr expr-1.51 {i1=99999999999, i2=99999999998} {i1=i2} 0
107test_expr expr-1.52 {i1=99999999999, i2=99999999998} {i1>i2} 1
108test_expr expr-1.53 {i1=099999999999, i2=99999999999} {i1<i2} 0
109test_expr expr-1.54 {i1=099999999999, i2=99999999999} {i1=i2} 1
110test_expr expr-1.55 {i1=099999999999, i2=99999999999} {i1>i2} 0
111test_expr expr-1.56 {i1=25, i2=11} {i1%i2} 3
112test_expr expr-1.58 {i1=NULL, i2=1} {coalesce(i1+i2,99)} 99
113test_expr expr-1.59 {i1=1, i2=NULL} {coalesce(i1+i2,99)} 99
114test_expr expr-1.60 {i1=NULL, i2=NULL} {coalesce(i1+i2,99)} 99
115test_expr expr-1.61 {i1=NULL, i2=1} {coalesce(i1-i2,99)} 99
116test_expr expr-1.62 {i1=1, i2=NULL} {coalesce(i1-i2,99)} 99
117test_expr expr-1.63 {i1=NULL, i2=NULL} {coalesce(i1-i2,99)} 99
118test_expr expr-1.64 {i1=NULL, i2=1} {coalesce(i1*i2,99)} 99
119test_expr expr-1.65 {i1=1, i2=NULL} {coalesce(i1*i2,99)} 99
120test_expr expr-1.66 {i1=NULL, i2=NULL} {coalesce(i1*i2,99)} 99
121test_expr expr-1.67 {i1=NULL, i2=1} {coalesce(i1/i2,99)} 99
122test_expr expr-1.68 {i1=1, i2=NULL} {coalesce(i1/i2,99)} 99
123test_expr expr-1.69 {i1=NULL, i2=NULL} {coalesce(i1/i2,99)} 99
124test_expr expr-1.70 {i1=NULL, i2=1} {coalesce(i1<i2,99)} 99
125test_expr expr-1.71 {i1=1, i2=NULL} {coalesce(i1>i2,99)} 99
126test_expr expr-1.72 {i1=NULL, i2=NULL} {coalesce(i1<=i2,99)} 99
127test_expr expr-1.73 {i1=NULL, i2=1} {coalesce(i1>=i2,99)} 99
128test_expr expr-1.74 {i1=1, i2=NULL} {coalesce(i1!=i2,99)} 99
129test_expr expr-1.75 {i1=NULL, i2=NULL} {coalesce(i1==i2,99)} 99
130test_expr expr-1.76 {i1=NULL, i2=NULL} {coalesce(not i1,99)} 99
131test_expr expr-1.77 {i1=NULL, i2=NULL} {coalesce(-i1,99)} 99
132test_expr expr-1.78 {i1=NULL, i2=NULL} {coalesce(i1 IS NULL AND i2=5,99)} 99
133test_expr expr-1.79 {i1=NULL, i2=NULL} {coalesce(i1 IS NULL OR i2=5,99)} 1
134test_expr expr-1.80 {i1=NULL, i2=NULL} {coalesce(i1=5 AND i2 IS NULL,99)} 99
135test_expr expr-1.81 {i1=NULL, i2=NULL} {coalesce(i1=5 OR i2 IS NULL,99)} 1
136test_expr expr-1.82 {i1=NULL, i2=3} {coalesce(min(i1,i2,1),99)} 99
137test_expr expr-1.83 {i1=NULL, i2=3} {coalesce(max(i1,i2,1),99)} 99
138test_expr expr-1.84 {i1=3, i2=NULL} {coalesce(min(i1,i2,1),99)} 99
139test_expr expr-1.85 {i1=3, i2=NULL} {coalesce(max(i1,i2,1),99)} 99
140test_expr expr-1.86 {i1=3, i2=8} {5 between i1 and i2} 1
141test_expr expr-1.87 {i1=3, i2=8} {5 not between i1 and i2} 0
142test_expr expr-1.88 {i1=3, i2=8} {55 between i1 and i2} 0
143test_expr expr-1.89 {i1=3, i2=8} {55 not between i1 and i2} 1
144test_expr expr-1.90 {i1=3, i2=NULL} {5 between i1 and i2} {{}}
145test_expr expr-1.91 {i1=3, i2=NULL} {5 not between i1 and i2} {{}}
146test_expr expr-1.92 {i1=3, i2=NULL} {2 between i1 and i2} 0
147test_expr expr-1.93 {i1=3, i2=NULL} {2 not between i1 and i2} 1
148test_expr expr-1.94 {i1=NULL, i2=8} {2 between i1 and i2} {{}}
149test_expr expr-1.95 {i1=NULL, i2=8} {2 not between i1 and i2} {{}}
150test_expr expr-1.94 {i1=NULL, i2=8} {55 between i1 and i2} 0
151test_expr expr-1.95 {i1=NULL, i2=8} {55 not between i1 and i2} 1
152test_expr expr-1.96 {i1=NULL, i2=3} {coalesce(i1<<i2,99)} 99
153test_expr expr-1.97 {i1=32, i2=NULL} {coalesce(i1>>i2,99)} 99
154test_expr expr-1.98 {i1=NULL, i2=NULL} {coalesce(i1|i2,99)} 99
155test_expr expr-1.99 {i1=32, i2=NULL} {coalesce(i1&i2,99)} 99
156test_expr expr-1.100 {i1=1, i2=''} {i1=i2} 0
157test_expr expr-1.101 {i1=0, i2=''} {i1=i2} 0
158
159# Check for proper handling of 64-bit integer values.
160#
161if {[working_64bit_int]} {
162  test_expr expr-1.102 {i1=40, i2=1} {i2<<i1} 1099511627776
163}
164
165ifcapable floatingpoint {
166  test_expr expr-1.103 {i1=0} {(-2147483648.0 % -1)} 0.0
167  test_expr expr-1.104 {i1=0} {(-9223372036854775808.0 % -1)} 0.0
168  test_expr expr-1.105 {i1=0} {(-9223372036854775808.0 / -1)>1} 1
169}
170
171if {[working_64bit_int]} {
172  test_realnum_expr expr-1.106 {i1=0} {-9223372036854775808/-1} 9.22337203685478e+18
173}
174
175test_expr expr-1.107 {i1=0} {-9223372036854775808%-1} 0
176test_expr expr-1.108 {i1=0} {1%0} {{}}
177test_expr expr-1.109 {i1=0} {1/0} {{}}
178
179if {[working_64bit_int]} {
180  test_expr expr-1.110 {i1=0} {-9223372036854775807/-1} 9223372036854775807
181}
182
183test_expr expr-1.111 {i1=NULL, i2=8} {i1 IS i2} 0
184test_expr expr-1.112 {i1=NULL, i2=NULL} {i1 IS i2} 1
185test_expr expr-1.113 {i1=6, i2=NULL} {i1 IS i2} 0
186test_expr expr-1.114 {i1=6, i2=6} {i1 IS i2} 1
187test_expr expr-1.115 {i1=NULL, i2=8} \
188  {CASE WHEN i1 IS i2 THEN 'yes' ELSE 'no' END} no
189test_expr expr-1.116 {i1=NULL, i2=NULL} \
190  {CASE WHEN i1 IS i2 THEN 'yes' ELSE 'no' END} yes
191test_expr expr-1.117 {i1=6, i2=NULL} \
192  {CASE WHEN i1 IS i2 THEN 'yes' ELSE 'no' END} no
193test_expr expr-1.118 {i1=8, i2=8} \
194  {CASE WHEN i1 IS i2 THEN 'yes' ELSE 'no' END} yes
195test_expr expr-1.119 {i1=NULL, i2=8} {i1 IS NOT i2} 1
196test_expr expr-1.120 {i1=NULL, i2=NULL} {i1 IS NOT i2} 0
197test_expr expr-1.121 {i1=6, i2=NULL} {i1 IS NOT i2} 1
198test_expr expr-1.122 {i1=6, i2=6} {i1 IS NOT i2} 0
199test_expr expr-1.123 {i1=NULL, i2=8} \
200  {CASE WHEN i1 IS NOT i2 THEN 'yes' ELSE 'no' END} yes
201test_expr expr-1.124 {i1=NULL, i2=NULL} \
202  {CASE WHEN i1 IS NOT i2 THEN 'yes' ELSE 'no' END} no
203test_expr expr-1.125 {i1=6, i2=NULL} \
204  {CASE WHEN i1 IS NOT i2 THEN 'yes' ELSE 'no' END} yes
205test_expr expr-1.126 {i1=8, i2=8} \
206  {CASE WHEN i1 IS NOT i2 THEN 'yes' ELSE 'no' END} no
207
208do_catchsql_test expr-1.127 {
209  SELECT 1 IS #1;
210} {1 {near "#1": syntax error}}
211
212ifcapable floatingpoint {if {[working_64bit_int]} {
213  test_expr expr-1.200\
214      {i1=9223372036854775806, i2=1} {i1+i2}      9223372036854775807
215  test_realnum_expr expr-1.201\
216      {i1=9223372036854775806, i2=2} {i1+i2}      9.22337203685478e+18
217  test_realnum_expr expr-1.202\
218      {i1=9223372036854775806, i2=100000} {i1+i2} 9.22337203685488e+18
219  test_realnum_expr expr-1.203\
220      {i1=9223372036854775807, i2=0} {i1+i2}      9223372036854775807
221  test_realnum_expr expr-1.204\
222      {i1=9223372036854775807, i2=1} {i1+i2}      9.22337203685478e+18
223  test_realnum_expr expr-1.205\
224      {i2=9223372036854775806, i1=1} {i1+i2}      9223372036854775807
225  test_realnum_expr expr-1.206\
226      {i2=9223372036854775806, i1=2} {i1+i2}      9.22337203685478e+18
227  test_realnum_expr expr-1.207\
228      {i2=9223372036854775806, i1=100000} {i1+i2} 9.22337203685488e+18
229  test_realnum_expr expr-1.208\
230      {i2=9223372036854775807, i1=0} {i1+i2}      9223372036854775807
231  test_realnum_expr expr-1.209\
232      {i2=9223372036854775807, i1=1} {i1+i2}      9.22337203685478e+18
233  test_realnum_expr expr-1.210\
234      {i1=-9223372036854775807, i2=-1} {i1+i2}    -9223372036854775808
235  test_realnum_expr expr-1.211\
236      {i1=-9223372036854775807, i2=-2} {i1+i2}    -9.22337203685478e+18
237  test_realnum_expr expr-1.212\
238      {i1=-9223372036854775807, i2=-100000} {i1+i2} -9.22337203685488e+18
239  test_realnum_expr expr-1.213\
240      {i1=-9223372036854775808, i2=0} {i1+i2}     -9223372036854775808
241  test_realnum_expr expr-1.214\
242      {i1=-9223372036854775808, i2=-1} {i1+i2}    -9.22337203685478e+18
243  test_realnum_expr expr-1.215\
244      {i2=-9223372036854775807, i1=-1} {i1+i2}    -9223372036854775808
245  test_realnum_expr expr-1.216\
246      {i2=-9223372036854775807, i1=-2} {i1+i2}    -9.22337203685478e+18
247  test_realnum_expr expr-1.217\
248      {i2=-9223372036854775807, i1=-100000} {i1+i2} -9.22337203685488e+18
249  test_realnum_expr expr-1.218\
250      {i2=-9223372036854775808, i1=0} {i1+i2}     -9223372036854775808
251  test_realnum_expr expr-1.219\
252      {i2=-9223372036854775808, i1=-1} {i1+i2}    -9.22337203685478e+18
253  test_realnum_expr expr-1.220\
254      {i1=9223372036854775806, i2=-1} {i1-i2}     9223372036854775807
255  test_realnum_expr expr-1.221\
256      {i1=9223372036854775806, i2=-2} {i1-i2}      9.22337203685478e+18
257  test_realnum_expr expr-1.222\
258      {i1=9223372036854775806, i2=-100000} {i1-i2} 9.22337203685488e+18
259  test_realnum_expr expr-1.223\
260      {i1=9223372036854775807, i2=0} {i1-i2}      9223372036854775807
261  test_realnum_expr expr-1.224\
262      {i1=9223372036854775807, i2=-1} {i1-i2}      9.22337203685478e+18
263  test_realnum_expr expr-1.225\
264      {i2=-9223372036854775806, i1=1} {i1-i2}      9223372036854775807
265  test_realnum_expr expr-1.226\
266      {i2=-9223372036854775806, i1=2} {i1-i2}      9.22337203685478e+18
267  test_realnum_expr expr-1.227\
268      {i2=-9223372036854775806, i1=100000} {i1-i2} 9.22337203685488e+18
269  test_realnum_expr expr-1.228\
270      {i2=-9223372036854775807, i1=0} {i1-i2}      9223372036854775807
271  test_realnum_expr expr-1.229\
272      {i2=-9223372036854775807, i1=1} {i1-i2}      9.22337203685478e+18
273  test_realnum_expr expr-1.230\
274      {i1=-9223372036854775807, i2=1} {i1-i2}    -9223372036854775808
275  test_realnum_expr expr-1.231\
276      {i1=-9223372036854775807, i2=2} {i1-i2}    -9.22337203685478e+18
277  test_realnum_expr expr-1.232\
278      {i1=-9223372036854775807, i2=100000} {i1-i2} -9.22337203685488e+18
279  test_realnum_expr expr-1.233\
280      {i1=-9223372036854775808, i2=0} {i1-i2}     -9223372036854775808
281  test_realnum_expr expr-1.234\
282      {i1=-9223372036854775808, i2=1} {i1-i2}    -9.22337203685478e+18
283  test_realnum_expr expr-1.235\
284      {i2=9223372036854775807, i1=-1} {i1-i2}    -9223372036854775808
285  test_realnum_expr expr-1.236\
286      {i2=9223372036854775807, i1=-2} {i1-i2}    -9.22337203685478e+18
287  test_realnum_expr expr-1.237\
288      {i2=9223372036854775807, i1=-100000} {i1-i2} -9.22337203685488e+18
289  test_realnum_expr expr-1.238\
290      {i2=9223372036854775807, i1=0} {i1-i2}     -9223372036854775807
291  test_realnum_expr expr-1.239\
292      {i2=9223372036854775807, i1=-1} {i1-i2}    -9223372036854775808
293
294  test_realnum_expr expr-1.250\
295      {i1=4294967296, i2=2147483648} {i1*i2}      9.22337203685478e+18
296  test_realnum_expr expr-1.251\
297      {i1=4294967296, i2=2147483647} {i1*i2}      9223372032559808512
298  test_realnum_expr expr-1.252\
299      {i1=-4294967296, i2=2147483648} {i1*i2}     -9223372036854775808
300  test_realnum_expr expr-1.253\
301      {i1=-4294967296, i2=2147483647} {i1*i2}     -9223372032559808512
302  test_realnum_expr expr-1.254\
303      {i1=4294967296, i2=-2147483648} {i1*i2}     -9223372036854775808
304  test_realnum_expr expr-1.255\
305      {i1=4294967296, i2=-2147483647} {i1*i2}     -9223372032559808512
306  test_realnum_expr expr-1.256\
307      {i1=-4294967296, i2=-2147483648} {i1*i2}    9.22337203685478e+18
308  test_realnum_expr expr-1.257\
309      {i1=-4294967296, i2=-2147483647} {i1*i2}    9223372032559808512
310
311}}
312
313ifcapable floatingpoint {
314  test_expr expr-2.1 {r1=1.23, r2=2.34} {r1+r2} 3.57
315  test_expr expr-2.2 {r1=1.23, r2=2.34} {r1-r2} -1.11
316  test_expr expr-2.3 {r1=1.23, r2=2.34} {r1*r2} 2.8782
317}
318set tcl_precision 15
319ifcapable floatingpoint {
320  test_expr expr-2.4 {r1=1.23, r2=2.34} {r1/r2} 0.525641025641026
321  test_expr expr-2.5 {r1=1.23, r2=2.34} {r2/r1} 1.90243902439024
322  test_expr expr-2.6 {r1=1.23, r2=2.34} {r2<r1} 0
323  test_expr expr-2.7 {r1=1.23, r2=2.34} {r2<=r1} 0
324  test_expr expr-2.8 {r1=1.23, r2=2.34} {r2>r1} 1
325  test_expr expr-2.9 {r1=1.23, r2=2.34} {r2>=r1} 1
326  test_expr expr-2.10 {r1=1.23, r2=2.34} {r2!=r1} 1
327  test_expr expr-2.11 {r1=1.23, r2=2.34} {r2=r1} 0
328  test_expr expr-2.12 {r1=1.23, r2=2.34} {r2<>r1} 1
329  test_expr expr-2.13 {r1=1.23, r2=2.34} {r2==r1} 0
330  test_expr expr-2.14 {r1=2.34, r2=2.34} {r2<r1} 0
331  test_expr expr-2.15 {r1=2.34, r2=2.34} {r2<=r1} 1
332  test_expr expr-2.16 {r1=2.34, r2=2.34} {r2>r1} 0
333  test_expr expr-2.17 {r1=2.34, r2=2.34} {r2>=r1} 1
334  test_expr expr-2.18 {r1=2.34, r2=2.34} {r2!=r1} 0
335  test_expr expr-2.19 {r1=2.34, r2=2.34} {r2=r1} 1
336  test_expr expr-2.20 {r1=2.34, r2=2.34} {r2<>r1} 0
337  test_expr expr-2.21 {r1=2.34, r2=2.34} {r2==r1} 1
338  test_expr expr-2.22 {r1=1.23, r2=2.34} {min(r1,r2,r1+r2,r1-r2)} {-1.11}
339  test_expr expr-2.23 {r1=1.23, r2=2.34} {max(r1,r2,r1+r2,r1-r2)} {3.57}
340  test_expr expr-2.24 {r1=25.0, r2=11.0} {r1%r2} 3.0
341  test_expr expr-2.25 {r1=1.23, r2=NULL} {coalesce(r1+r2,99.0)} 99.0
342  test_expr expr-2.26 {r1=1e300, r2=1e300} {coalesce((r1*r2)*0.0,99.0)} 99.0
343  test_expr expr-2.26b {r1=1e300, r2=-1e300} {coalesce((r1*r2)*0.0,99.0)} 99.0
344  test_expr expr-2.27 {r1=1.1, r2=0.0} {r1/r2} {{}}
345  test_expr expr-2.28 {r1=1.1, r2=0.0} {r1%r2} {{}}
346}
347
348test_expr expr-3.1 {t1='abc', t2='xyz'} {t1<t2} 1
349test_expr expr-3.2 {t1='xyz', t2='abc'} {t1<t2} 0
350test_expr expr-3.3 {t1='abc', t2='abc'} {t1<t2} 0
351test_expr expr-3.4 {t1='abc', t2='xyz'} {t1<=t2} 1
352test_expr expr-3.5 {t1='xyz', t2='abc'} {t1<=t2} 0
353test_expr expr-3.6 {t1='abc', t2='abc'} {t1<=t2} 1
354test_expr expr-3.7 {t1='abc', t2='xyz'} {t1>t2} 0
355test_expr expr-3.8 {t1='xyz', t2='abc'} {t1>t2} 1
356test_expr expr-3.9 {t1='abc', t2='abc'} {t1>t2} 0
357test_expr expr-3.10 {t1='abc', t2='xyz'} {t1>=t2} 0
358test_expr expr-3.11 {t1='xyz', t2='abc'} {t1>=t2} 1
359test_expr expr-3.12 {t1='abc', t2='abc'} {t1>=t2} 1
360test_expr expr-3.13 {t1='abc', t2='xyz'} {t1=t2} 0
361test_expr expr-3.14 {t1='xyz', t2='abc'} {t1=t2} 0
362test_expr expr-3.15 {t1='abc', t2='abc'} {t1=t2} 1
363test_expr expr-3.16 {t1='abc', t2='xyz'} {t1==t2} 0
364test_expr expr-3.17 {t1='xyz', t2='abc'} {t1==t2} 0
365test_expr expr-3.18 {t1='abc', t2='abc'} {t1==t2} 1
366test_expr expr-3.19 {t1='abc', t2='xyz'} {t1<>t2} 1
367test_expr expr-3.20 {t1='xyz', t2='abc'} {t1<>t2} 1
368test_expr expr-3.21 {t1='abc', t2='abc'} {t1<>t2} 0
369test_expr expr-3.22 {t1='abc', t2='xyz'} {t1!=t2} 1
370test_expr expr-3.23 {t1='xyz', t2='abc'} {t1!=t2} 1
371test_expr expr-3.24 {t1='abc', t2='abc'} {t1!=t2} 0
372test_expr expr-3.25 {t1=NULL, t2='hi'} {t1 isnull} 1
373test_expr expr-3.25b {t1=NULL, t2='hi'} {t1 is null} 1
374test_expr expr-3.26 {t1=NULL, t2='hi'} {t2 isnull} 0
375test_expr expr-3.27 {t1=NULL, t2='hi'} {t1 notnull} 0
376test_expr expr-3.28 {t1=NULL, t2='hi'} {t2 notnull} 1
377test_expr expr-3.28b {t1=NULL, t2='hi'} {t2 is not null} 1
378test_expr expr-3.29 {t1='xyz', t2='abc'} {t1||t2} {xyzabc}
379test_expr expr-3.30 {t1=NULL, t2='abc'} {t1||t2} {{}}
380test_expr expr-3.31 {t1='xyz', t2=NULL} {t1||t2} {{}}
381test_expr expr-3.32 {t1='xyz', t2='abc'} {t1||' hi '||t2} {{xyz hi abc}}
382test_expr epxr-3.33 {t1='abc', t2=NULL} {coalesce(t1<t2,99)} 99
383test_expr epxr-3.34 {t1='abc', t2=NULL} {coalesce(t2<t1,99)} 99
384test_expr epxr-3.35 {t1='abc', t2=NULL} {coalesce(t1>t2,99)} 99
385test_expr epxr-3.36 {t1='abc', t2=NULL} {coalesce(t2>t1,99)} 99
386test_expr epxr-3.37 {t1='abc', t2=NULL} {coalesce(t1<=t2,99)} 99
387test_expr epxr-3.38 {t1='abc', t2=NULL} {coalesce(t2<=t1,99)} 99
388test_expr epxr-3.39 {t1='abc', t2=NULL} {coalesce(t1>=t2,99)} 99
389test_expr epxr-3.40 {t1='abc', t2=NULL} {coalesce(t2>=t1,99)} 99
390test_expr epxr-3.41 {t1='abc', t2=NULL} {coalesce(t1==t2,99)} 99
391test_expr epxr-3.42 {t1='abc', t2=NULL} {coalesce(t2==t1,99)} 99
392test_expr epxr-3.43 {t1='abc', t2=NULL} {coalesce(t1!=t2,99)} 99
393test_expr epxr-3.44 {t1='abc', t2=NULL} {coalesce(t2!=t1,99)} 99
394
395test_expr expr-4.1 {t1='abc', t2='Abc'} {t1<t2} 0
396test_expr expr-4.2 {t1='abc', t2='Abc'} {t1>t2} 1
397test_expr expr-4.3 {t1='abc', t2='Bbc'} {t1<t2} 0
398test_expr expr-4.4 {t1='abc', t2='Bbc'} {t1>t2} 1
399test_expr expr-4.5 {t1='0', t2='0.0'} {t1==t2} 0
400test_expr expr-4.6 {t1='0.000', t2='0.0'} {t1==t2} 0
401test_expr expr-4.7 {t1=' 0.000', t2=' 0.0'} {t1==t2} 0
402test_expr expr-4.8 {t1='0.0', t2='abc'} {t1<t2} 1
403test_expr expr-4.9 {t1='0.0', t2='abc'} {t1==t2} 0
404
405ifcapable floatingpoint {
406  test_expr expr-4.10 {r1='0.0', r2='abc'} {r1>r2} 0
407  test_expr expr-4.11 {r1='abc', r2='Abc'} {r1<r2} 0
408  test_expr expr-4.12 {r1='abc', r2='Abc'} {r1>r2} 1
409  test_expr expr-4.13 {r1='abc', r2='Bbc'} {r1<r2} 0
410  test_expr expr-4.14 {r1='abc', r2='Bbc'} {r1>r2} 1
411  test_expr expr-4.15 {r1='0', r2='0.0'} {r1==r2} 1
412  test_expr expr-4.16 {r1='0.000', r2='0.0'} {r1==r2} 1
413  test_expr expr-4.17 {r1=' 0.000', r2=' 0.0'} {r1==r2} 1
414  test_expr expr-4.18 {r1='0.0', r2='abc'} {r1<r2} 1
415  test_expr expr-4.19 {r1='0.0', r2='abc'} {r1==r2} 0
416  test_expr expr-4.20 {r1='0.0', r2='abc'} {r1>r2} 0
417}
418
419# CSL is true if LIKE is case sensitive and false if not.
420# NCSL is the opposite.  Use these variables as the result
421# on operations where case makes a difference.
422set CSL $sqlite_options(casesensitivelike)
423set NCSL [expr {!$CSL}]
424
425test_expr expr-5.1 {t1='abc', t2='xyz'} {t1 LIKE t2} 0
426test_expr expr-5.2a {t1='abc', t2='abc'} {t1 LIKE t2} 1
427test_expr expr-5.2b {t1='abc', t2='ABC'} {t1 LIKE t2} $NCSL
428test_expr expr-5.3a {t1='abc', t2='a_c'} {t1 LIKE t2} 1
429test_expr expr-5.3b {t1='abc', t2='A_C'} {t1 LIKE t2} $NCSL
430test_expr expr-5.4 {t1='abc', t2='abc_'} {t1 LIKE t2} 0
431test_expr expr-5.5a {t1='abc', t2='a%c'} {t1 LIKE t2} 1
432test_expr expr-5.5b {t1='abc', t2='A%C'} {t1 LIKE t2} $NCSL
433test_expr expr-5.5c {t1='abdc', t2='a%c'} {t1 LIKE t2} 1
434test_expr expr-5.5d {t1='ac', t2='a%c'} {t1 LIKE t2} 1
435test_expr expr-5.5e {t1='ac', t2='A%C'} {t1 LIKE t2} $NCSL
436test_expr expr-5.6a {t1='abxyzzyc', t2='a%c'} {t1 LIKE t2} 1
437test_expr expr-5.6b {t1='abxyzzyc', t2='A%C'} {t1 LIKE t2} $NCSL
438test_expr expr-5.7a {t1='abxyzzy', t2='a%c'} {t1 LIKE t2} 0
439test_expr expr-5.7b {t1='abxyzzy', t2='A%C'} {t1 LIKE t2} 0
440test_expr expr-5.8a {t1='abxyzzycx', t2='a%c'} {t1 LIKE t2} 0
441test_expr expr-5.8b {t1='abxyzzycy', t2='a%cx'} {t1 LIKE t2} 0
442test_expr expr-5.8c {t1='abxyzzycx', t2='A%C'} {t1 LIKE t2} 0
443test_expr expr-5.8d {t1='abxyzzycy', t2='A%CX'} {t1 LIKE t2} 0
444test_expr expr-5.9a {t1='abc', t2='a%_c'} {t1 LIKE t2} 1
445test_expr expr-5.9b {t1='ac', t2='a%_c'} {t1 LIKE t2} 0
446test_expr expr-5.9c {t1='abc', t2='A%_C'} {t1 LIKE t2} $NCSL
447test_expr expr-5.9d {t1='ac', t2='A%_C'} {t1 LIKE t2} 0
448test_expr expr-5.10a {t1='abxyzzyc', t2='a%_c'} {t1 LIKE t2} 1
449test_expr expr-5.10b {t1='abxyzzyc', t2='A%_C'} {t1 LIKE t2} $NCSL
450test_expr expr-5.11 {t1='abc', t2='xyz'} {t1 NOT LIKE t2} 1
451test_expr expr-5.12a {t1='abc', t2='abc'} {t1 NOT LIKE t2} 0
452test_expr expr-5.12b {t1='abc', t2='ABC'} {t1 NOT LIKE t2} $CSL
453test_expr expr-5.13  {t1='A'}  {t1 LIKE 'A%_'} 0
454test_expr expr-5.14  {t1='AB'} {t1 LIKE 'A%b' ESCAPE 'b'} 0
455
456# The following tests only work on versions of TCL that support Unicode
457#
458if {"\u1234"!="u1234"} {
459  test_expr expr-5.13a "t1='a\u0080c', t2='a_c'" {t1 LIKE t2} 1
460  test_expr expr-5.13b "t1='a\u0080c', t2='A_C'" {t1 LIKE t2} $NCSL
461  test_expr expr-5.14a "t1='a\u07FFc', t2='a_c'" {t1 LIKE t2} 1
462  test_expr expr-5.14b "t1='a\u07FFc', t2='A_C'" {t1 LIKE t2} $NCSL
463  test_expr expr-5.15a "t1='a\u0800c', t2='a_c'" {t1 LIKE t2} 1
464  test_expr expr-5.15b "t1='a\u0800c', t2='A_C'" {t1 LIKE t2} $NCSL
465  test_expr expr-5.16a "t1='a\uFFFFc', t2='a_c'" {t1 LIKE t2} 1
466  test_expr expr-5.16b "t1='a\uFFFFc', t2='A_C'" {t1 LIKE t2} $NCSL
467  test_expr expr-5.17 "t1='a\u0080', t2='A__'" {t1 LIKE t2} 0
468  test_expr expr-5.18 "t1='a\u07FF', t2='A__'" {t1 LIKE t2} 0
469  test_expr expr-5.19 "t1='a\u0800', t2='A__'" {t1 LIKE t2} 0
470  test_expr expr-5.20 "t1='a\uFFFF', t2='A__'" {t1 LIKE t2} 0
471  test_expr expr-5.21a "t1='ax\uABCD', t2='a_\uABCD'" {t1 LIKE t2} 1
472  test_expr expr-5.21b "t1='ax\uABCD', t2='A_\uABCD'" {t1 LIKE t2} $NCSL
473  test_expr expr-5.22a "t1='ax\u1234', t2='a%\u1234'" {t1 LIKE t2} 1
474  test_expr expr-5.22b "t1='ax\u1234', t2='A%\u1234'" {t1 LIKE t2} $NCSL
475  test_expr expr-5.23a "t1='ax\uFEDC', t2='a_%'" {t1 LIKE t2} 1
476  test_expr expr-5.23b "t1='ax\uFEDC', t2='A_%'" {t1 LIKE t2} $NCSL
477  test_expr expr-5.24a "t1='ax\uFEDCy\uFEDC', t2='a%\uFEDC'" {t1 LIKE t2} 1
478  test_expr expr-5.24b "t1='ax\uFEDCy\uFEDC', t2='A%\uFEDC'" {t1 LIKE t2} $NCSL
479}
480
481test_expr expr-5.54 {t1='abc', t2=NULL} {t1 LIKE t2} {{}}
482test_expr expr-5.55 {t1='abc', t2=NULL} {t1 NOT LIKE t2} {{}}
483test_expr expr-5.56 {t1='abc', t2=NULL} {t2 LIKE t1} {{}}
484test_expr expr-5.57 {t1='abc', t2=NULL} {t2 NOT LIKE t1} {{}}
485
486# LIKE expressions that use ESCAPE characters.
487test_expr expr-5.58a {t1='abc', t2='a_c'}   {t1 LIKE t2 ESCAPE '7'} 1
488test_expr expr-5.58b {t1='abc', t2='A_C'}   {t1 LIKE t2 ESCAPE '7'} $NCSL
489test_expr expr-5.59a {t1='a_c', t2='a7_c'}  {t1 LIKE t2 ESCAPE '7'} 1
490test_expr expr-5.59b {t1='a_c', t2='A7_C'}  {t1 LIKE t2 ESCAPE '7'} $NCSL
491test_expr expr-5.60a {t1='abc', t2='a7_c'}  {t1 LIKE t2 ESCAPE '7'} 0
492test_expr expr-5.60b {t1='abc', t2='A7_C'}  {t1 LIKE t2 ESCAPE '7'} 0
493test_expr expr-5.61a {t1='a7Xc', t2='a7_c'} {t1 LIKE t2 ESCAPE '7'} 0
494test_expr expr-5.61b {t1='a7Xc', t2='A7_C'} {t1 LIKE t2 ESCAPE '7'} 0
495test_expr expr-5.62a {t1='abcde', t2='a%e'} {t1 LIKE t2 ESCAPE '7'} 1
496test_expr expr-5.62b {t1='abcde', t2='A%E'} {t1 LIKE t2 ESCAPE '7'} $NCSL
497test_expr expr-5.63a {t1='abcde', t2='a7%e'} {t1 LIKE t2 ESCAPE '7'} 0
498test_expr expr-5.63b {t1='abcde', t2='A7%E'} {t1 LIKE t2 ESCAPE '7'} 0
499test_expr expr-5.64a {t1='a7cde', t2='a7%e'} {t1 LIKE t2 ESCAPE '7'} 0
500test_expr expr-5.64b {t1='a7cde', t2='A7%E'} {t1 LIKE t2 ESCAPE '7'} 0
501test_expr expr-5.65a {t1='a7cde', t2='a77%e'} {t1 LIKE t2 ESCAPE '7'} 1
502test_expr expr-5.65b {t1='a7cde', t2='A77%E'} {t1 LIKE t2 ESCAPE '7'} $NCSL
503test_expr expr-5.66a {t1='abc7', t2='a%77'} {t1 LIKE t2 ESCAPE '7'} 1
504test_expr expr-5.66b {t1='abc7', t2='A%77'} {t1 LIKE t2 ESCAPE '7'} $NCSL
505test_expr expr-5.67a {t1='abc_', t2='a%7_'} {t1 LIKE t2 ESCAPE '7'} 1
506test_expr expr-5.67b {t1='abc_', t2='A%7_'} {t1 LIKE t2 ESCAPE '7'} $NCSL
507test_expr expr-5.68a {t1='abc7', t2='a%7_'} {t1 LIKE t2 ESCAPE '7'} 0
508test_expr expr-5.68b {t1='abc7', t2='A%7_'} {t1 LIKE t2 ESCAPE '7'} 0
509
510# These are the same test as the block above, but using a multi-byte
511# character as the escape character.
512if {"\u1234"!="u1234"} {
513  test_expr expr-5.69a "t1='abc', t2='a_c'" \
514      "t1 LIKE t2 ESCAPE '\u1234'" 1
515  test_expr expr-5.69b "t1='abc', t2='A_C'" \
516      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
517  test_expr expr-5.70a "t1='a_c', t2='a\u1234_c'" \
518      "t1 LIKE t2 ESCAPE '\u1234'" 1
519  test_expr expr-5.70b "t1='a_c', t2='A\u1234_C'" \
520      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
521  test_expr expr-5.71a "t1='abc', t2='a\u1234_c'" \
522       "t1 LIKE t2 ESCAPE '\u1234'" 0
523  test_expr expr-5.71b "t1='abc', t2='A\u1234_C'" \
524       "t1 LIKE t2 ESCAPE '\u1234'" 0
525  test_expr expr-5.72a "t1='a\u1234Xc', t2='a\u1234_c'" \
526      "t1 LIKE t2 ESCAPE '\u1234'" 0
527  test_expr expr-5.72b "t1='a\u1234Xc', t2='A\u1234_C'" \
528      "t1 LIKE t2 ESCAPE '\u1234'" 0
529  test_expr expr-5.73a "t1='abcde', t2='a%e'" \
530      "t1 LIKE t2 ESCAPE '\u1234'" 1
531  test_expr expr-5.73b "t1='abcde', t2='A%E'" \
532      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
533  test_expr expr-5.74a "t1='abcde', t2='a\u1234%e'" \
534      "t1 LIKE t2 ESCAPE '\u1234'" 0
535  test_expr expr-5.74b "t1='abcde', t2='A\u1234%E'" \
536      "t1 LIKE t2 ESCAPE '\u1234'" 0
537  test_expr expr-5.75a "t1='a\u1234cde', t2='a\u1234%e'" \
538      "t1 LIKE t2 ESCAPE '\u1234'" 0
539  test_expr expr-5.75b "t1='a\u1234cde', t2='A\u1234%E'" \
540      "t1 LIKE t2 ESCAPE '\u1234'" 0
541  test_expr expr-5.76a "t1='a\u1234cde', t2='a\u1234\u1234%e'" \
542      "t1 LIKE t2 ESCAPE '\u1234'" 1
543  test_expr expr-5.76b "t1='a\u1234cde', t2='A\u1234\u1234%E'" \
544      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
545  test_expr expr-5.77a "t1='abc\u1234', t2='a%\u1234\u1234'" \
546      "t1 LIKE t2 ESCAPE '\u1234'" 1
547  test_expr expr-5.77b "t1='abc\u1234', t2='A%\u1234\u1234'" \
548      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
549  test_expr expr-5.78a "t1='abc_', t2='a%\u1234_'" \
550      "t1 LIKE t2 ESCAPE '\u1234'" 1
551  test_expr expr-5.78b "t1='abc_', t2='A%\u1234_'" \
552      "t1 LIKE t2 ESCAPE '\u1234'" $NCSL
553  test_expr expr-5.79a "t1='abc\u1234', t2='a%\u1234_'" \
554      "t1 LIKE t2 ESCAPE '\u1234'" 0
555  test_expr expr-5.79b "t1='abc\u1234', t2='A%\u1234_'" \
556      "t1 LIKE t2 ESCAPE '\u1234'" 0
557}
558
559test_expr expr-6.1 {t1='abc', t2='xyz'} {t1 GLOB t2} 0
560test_expr expr-6.2 {t1='abc', t2='ABC'} {t1 GLOB t2} 0
561test_expr expr-6.3 {t1='abc', t2='A?C'} {t1 GLOB t2} 0
562test_expr expr-6.4 {t1='abc', t2='a?c'} {t1 GLOB t2} 1
563test_expr expr-6.5 {t1='abc', t2='abc?'} {t1 GLOB t2} 0
564test_expr expr-6.6 {t1='abc', t2='A*C'} {t1 GLOB t2} 0
565test_expr expr-6.7 {t1='abc', t2='a*c'} {t1 GLOB t2} 1
566test_expr expr-6.8 {t1='abxyzzyc', t2='a*c'} {t1 GLOB t2} 1
567test_expr expr-6.9 {t1='abxyzzy', t2='a*c'} {t1 GLOB t2} 0
568test_expr expr-6.10 {t1='abxyzzycx', t2='a*c'} {t1 GLOB t2} 0
569test_expr expr-6.11 {t1='abc', t2='xyz'} {t1 NOT GLOB t2} 1
570test_expr expr-6.12 {t1='abc', t2='abc'} {t1 NOT GLOB t2} 0
571test_expr expr-6.13 {t1='abc', t2='a[bx]c'} {t1 GLOB t2} 1
572test_expr expr-6.14 {t1='abc', t2='a[cx]c'} {t1 GLOB t2} 0
573test_expr expr-6.15 {t1='abc', t2='a[a-d]c'} {t1 GLOB t2} 1
574test_expr expr-6.16 {t1='abc', t2='a[^a-d]c'} {t1 GLOB t2} 0
575test_expr expr-6.17 {t1='abc', t2='a[A-Dc]c'} {t1 GLOB t2} 0
576test_expr expr-6.18 {t1='abc', t2='a[^A-Dc]c'} {t1 GLOB t2} 1
577test_expr expr-6.19 {t1='abc', t2='a[]b]c'} {t1 GLOB t2} 1
578test_expr expr-6.20 {t1='abc', t2='a[^]b]c'} {t1 GLOB t2} 0
579test_expr expr-6.21a {t1='abcdefg', t2='a*[de]g'} {t1 GLOB t2} 0
580test_expr expr-6.21b {t1='abcdefg', t2='a*[df]g'} {t1 GLOB t2} 1
581test_expr expr-6.21c {t1='abcdefg', t2='a*[d-h]g'} {t1 GLOB t2} 1
582test_expr expr-6.21d {t1='abcdefg', t2='a*[b-e]g'} {t1 GLOB t2} 0
583test_expr expr-6.22a {t1='abcdefg', t2='a*[^de]g'} {t1 GLOB t2} 1
584test_expr expr-6.22b {t1='abcdefg', t2='a*[^def]g'} {t1 GLOB t2} 0
585test_expr expr-6.23 {t1='abcdefg', t2='a*?g'} {t1 GLOB t2} 1
586test_expr expr-6.24 {t1='ac', t2='a*c'} {t1 GLOB t2} 1
587test_expr expr-6.25 {t1='ac', t2='a*?c'} {t1 GLOB t2} 0
588test_expr expr-6.26 {t1='a*c', t2='a[*]c'} {t1 GLOB t2} 1
589test_expr expr-6.27 {t1='a?c', t2='a[?]c'} {t1 GLOB t2} 1
590test_expr expr-6.28 {t1='a[c', t2='a[[]c'} {t1 GLOB t2} 1
591
592
593# These tests only work on versions of TCL that support Unicode
594#
595if {"\u1234"!="u1234"} {
596  test_expr expr-6.26 "t1='a\u0080c', t2='a?c'" {t1 GLOB t2} 1
597  test_expr expr-6.27 "t1='a\u07ffc', t2='a?c'" {t1 GLOB t2} 1
598  test_expr expr-6.28 "t1='a\u0800c', t2='a?c'" {t1 GLOB t2} 1
599  test_expr expr-6.29 "t1='a\uffffc', t2='a?c'" {t1 GLOB t2} 1
600  test_expr expr-6.30 "t1='a\u1234', t2='a?'" {t1 GLOB t2} 1
601  test_expr expr-6.31 "t1='a\u1234', t2='a??'" {t1 GLOB t2} 0
602  test_expr expr-6.32 "t1='ax\u1234', t2='a?\u1234'" {t1 GLOB t2} 1
603  test_expr expr-6.33 "t1='ax\u1234', t2='a*\u1234'" {t1 GLOB t2} 1
604  test_expr expr-6.34 "t1='ax\u1234y\u1234', t2='a*\u1234'" {t1 GLOB t2} 1
605  test_expr expr-6.35 "t1='a\u1234b', t2='a\[x\u1234y\]b'" {t1 GLOB t2} 1
606  test_expr expr-6.36 "t1='a\u1234b', t2='a\[\u1233-\u1235\]b'" {t1 GLOB t2} 1
607  test_expr expr-6.37 "t1='a\u1234b', t2='a\[\u1234-\u124f\]b'" {t1 GLOB t2} 1
608  test_expr expr-6.38 "t1='a\u1234b', t2='a\[\u1235-\u124f\]b'" {t1 GLOB t2} 0
609  test_expr expr-6.39 "t1='a\u1234b', t2='a\[a-\u1235\]b'" {t1 GLOB t2} 1
610  test_expr expr-6.40 "t1='a\u1234b', t2='a\[a-\u1234\]b'" {t1 GLOB t2} 1
611  test_expr expr-6.41 "t1='a\u1234b', t2='a\[a-\u1233\]b'" {t1 GLOB t2} 0
612}
613
614test_expr expr-6.51 {t1='ABC', t2='xyz'} {t1 GLOB t2} 0
615test_expr expr-6.52 {t1='ABC', t2='abc'} {t1 GLOB t2} 0
616test_expr expr-6.53 {t1='ABC', t2='a?c'} {t1 GLOB t2} 0
617test_expr expr-6.54 {t1='ABC', t2='A?C'} {t1 GLOB t2} 1
618test_expr expr-6.55 {t1='ABC', t2='abc?'} {t1 GLOB t2} 0
619test_expr expr-6.56 {t1='ABC', t2='a*c'} {t1 GLOB t2} 0
620test_expr expr-6.57 {t1='ABC', t2='A*C'} {t1 GLOB t2} 1
621test_expr expr-6.58 {t1='ABxyzzyC', t2='A*C'} {t1 GLOB t2} 1
622test_expr expr-6.59 {t1='ABxyzzy', t2='A*C'} {t1 GLOB t2} 0
623test_expr expr-6.60 {t1='ABxyzzyCx', t2='A*C'} {t1 GLOB t2} 0
624test_expr expr-6.61 {t1='ABC', t2='xyz'} {t1 NOT GLOB t2} 1
625test_expr expr-6.62 {t1='ABC', t2='ABC'} {t1 NOT GLOB t2} 0
626test_expr expr-6.63 {t1='ABC', t2='A[Bx]C'} {t1 GLOB t2} 1
627test_expr expr-6.64 {t1='ABC', t2='A[Cx]C'} {t1 GLOB t2} 0
628test_expr expr-6.65 {t1='ABC', t2='A[A-D]C'} {t1 GLOB t2} 1
629test_expr expr-6.66 {t1='ABC', t2='A[^A-D]C'} {t1 GLOB t2} 0
630test_expr expr-6.67 {t1='ABC', t2='A[a-dC]C'} {t1 GLOB t2} 0
631test_expr expr-6.68 {t1='ABC', t2='A[^a-dC]C'} {t1 GLOB t2} 1
632test_expr expr-6.69a {t1='ABC', t2='A[]B]C'} {t1 GLOB t2} 1
633test_expr expr-6.69b {t1='A]C', t2='A[]B]C'} {t1 GLOB t2} 1
634test_expr expr-6.70a {t1='ABC', t2='A[^]B]C'} {t1 GLOB t2} 0
635test_expr expr-6.70b {t1='AxC', t2='A[^]B]C'} {t1 GLOB t2} 1
636test_expr expr-6.70c {t1='A]C', t2='A[^]B]C'} {t1 GLOB t2} 0
637test_expr expr-6.71 {t1='ABCDEFG', t2='A*[DE]G'} {t1 GLOB t2} 0
638test_expr expr-6.72 {t1='ABCDEFG', t2='A*[^DE]G'} {t1 GLOB t2} 1
639test_expr expr-6.73 {t1='ABCDEFG', t2='A*?G'} {t1 GLOB t2} 1
640test_expr expr-6.74 {t1='AC', t2='A*C'} {t1 GLOB t2} 1
641test_expr expr-6.75 {t1='AC', t2='A*?C'} {t1 GLOB t2} 0
642
643test_expr expr-6.63 {t1=NULL, t2='a*?c'} {t1 GLOB t2} {{}}
644test_expr expr-6.64 {t1='ac', t2=NULL} {t1 GLOB t2} {{}}
645test_expr expr-6.65 {t1=NULL, t2='a*?c'} {t1 NOT GLOB t2} {{}}
646test_expr expr-6.66 {t1='ac', t2=NULL} {t1 NOT GLOB t2} {{}}
647
648# Check that the affinity of a CAST expression is calculated correctly.
649ifcapable cast {
650  test_expr expr-6.67 {t1='01', t2=1} {t1 = t2} 0
651  test_expr expr-6.68 {t1='1', t2=1} {t1 = t2} 1
652  test_expr expr-6.69 {t1='01', t2=1} {CAST(t1 AS INTEGER) = t2} 1
653}
654
655test_expr expr-case.1 {i1=1, i2=2} \
656	{CASE WHEN i1 = i2 THEN 'eq' ELSE 'ne' END} ne
657test_expr expr-case.2 {i1=2, i2=2} \
658	{CASE WHEN i1 = i2 THEN 'eq' ELSE 'ne' END} eq
659test_expr expr-case.3 {i1=NULL, i2=2} \
660	{CASE WHEN i1 = i2 THEN 'eq' ELSE 'ne' END} ne
661test_expr expr-case.4 {i1=2, i2=NULL} \
662	{CASE WHEN i1 = i2 THEN 'eq' ELSE 'ne' END} ne
663test_expr expr-case.5 {i1=2} \
664	{CASE i1 WHEN 1 THEN 'one' WHEN 2 THEN 'two' ELSE 'error' END} two
665test_expr expr-case.6 {i1=1} \
666	{CASE i1 WHEN 1 THEN 'one' WHEN NULL THEN 'two' ELSE 'error' END} one
667test_expr expr-case.7 {i1=2} \
668	{CASE i1 WHEN 1 THEN 'one' WHEN NULL THEN 'two' ELSE 'error' END} error
669test_expr expr-case.8 {i1=3} \
670	{CASE i1 WHEN 1 THEN 'one' WHEN NULL THEN 'two' ELSE 'error' END} error
671test_expr expr-case.9 {i1=3} \
672	{CASE i1 WHEN 1 THEN 'one' WHEN 2 THEN 'two' ELSE 'error' END} error
673test_expr expr-case.10 {i1=3} \
674	{CASE i1 WHEN 1 THEN 'one' WHEN 2 THEN 'two' END} {{}}
675test_expr expr-case.11 {i1=null} \
676	{CASE i1 WHEN 1 THEN 'one' WHEN 2 THEN 'two' ELSE 3 END} 3
677test_expr expr-case.12 {i1=1} \
678	{CASE i1 WHEN 1 THEN null WHEN 2 THEN 'two' ELSE 3 END} {{}}
679test_expr expr-case.13 {i1=7} \
680	{ CASE WHEN i1 < 5 THEN 'low'
681	       WHEN i1 < 10 THEN 'medium'
682               WHEN i1 < 15 THEN 'high' ELSE 'error' END} medium
683
684
685# The sqliteExprIfFalse and sqliteExprIfTrue routines are only
686# executed as part of a WHERE clause.  Create a table suitable
687# for testing these functions.
688#
689execsql {DROP TABLE test1}
690execsql {CREATE TABLE test1(a int, b int);}
691for {set i 1} {$i<=20} {incr i} {
692  execsql "INSERT INTO test1 VALUES($i,[expr {1<<$i}])"
693}
694execsql "INSERT INTO test1 VALUES(NULL,0)"
695do_test expr-7.1 {
696  execsql {SELECT * FROM test1 ORDER BY a}
697} {{} 0 1 2 2 4 3 8 4 16 5 32 6 64 7 128 8 256 9 512 10 1024 11 2048 12 4096 13 8192 14 16384 15 32768 16 65536 17 131072 18 262144 19 524288 20 1048576}
698
699proc test_expr2 {name expr result} {
700  do_test $name [format {
701    execsql {SELECT a FROM test1 WHERE %s ORDER BY a}
702  } $expr] $result
703}
704
705test_expr2 expr-7.2  {a<10 AND a>8}                  {9}
706test_expr2 expr-7.3  {a<=10 AND a>=8}                {8 9 10}
707test_expr2 expr-7.4  {a>=8 AND a<=10}                {8 9 10}
708test_expr2 expr-7.5  {a>=20 OR a<=1}                 {1 20}
709test_expr2 expr-7.6  {b!=4 AND a<=3}                 {1 3}
710test_expr2 expr-7.7  {b==8 OR b==16 OR b==32}        {3 4 5}
711test_expr2 expr-7.8  {NOT b<>8 OR b==1024}           {3 10}
712test_expr2 expr-7.9  {b LIKE '10%'}                  {10 20}
713test_expr2 expr-7.10 {b LIKE '_4'}                   {6}
714test_expr2 expr-7.11 {a GLOB '1?'}            {10 11 12 13 14 15 16 17 18 19}
715test_expr2 expr-7.12 {b GLOB '1*4'}                  {10 14}
716test_expr2 expr-7.13 {b GLOB '*1[456]'}              {4}
717test_expr2 expr-7.14 {a ISNULL}                      {{}}
718test_expr2 expr-7.15 {a NOTNULL AND a<3}             {1 2}
719test_expr2 expr-7.16 {a AND a<3}                     {1 2}
720test_expr2 expr-7.17 {NOT a}                         {}
721test_expr2 expr-7.18 {a==11 OR (b>1000 AND b<2000)}  {10 11}
722test_expr2 expr-7.19 {a<=1 OR a>=20}                 {1 20}
723test_expr2 expr-7.20 {a<1 OR a>20}                   {}
724test_expr2 expr-7.21 {a>19 OR a<1}                   {20}
725test_expr2 expr-7.22 {a!=1 OR a=100} \
726                         {2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20}
727test_expr2 expr-7.23 {(a notnull AND a<4) OR a==8}   {1 2 3 8}
728test_expr2 expr-7.24 {a LIKE '2_' OR a==8}           {8 20}
729test_expr2 expr-7.25 {a GLOB '2?' OR a==8}           {8 20}
730test_expr2 expr-7.26 {a isnull OR a=8}               {{} 8}
731test_expr2 expr-7.27 {a notnull OR a=8} \
732                          {1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20}
733test_expr2 expr-7.28 {a<0 OR b=0} {{}}
734test_expr2 expr-7.29 {b=0 OR a<0} {{}}
735test_expr2 expr-7.30 {a<0 AND b=0} {}
736test_expr2 expr-7.31 {b=0 AND a<0} {}
737test_expr2 expr-7.32 {a IS NULL AND (a<0 OR b=0)} {{}}
738test_expr2 expr-7.33 {a IS NULL AND (b=0 OR a<0)} {{}}
739test_expr2 expr-7.34 {a IS NULL AND (a<0 AND b=0)} {}
740test_expr2 expr-7.35 {a IS NULL AND (b=0 AND a<0)} {}
741test_expr2 expr-7.32 {(a<0 OR b=0) AND a IS NULL} {{}}
742test_expr2 expr-7.33 {(b=0 OR a<0) AND a IS NULL} {{}}
743test_expr2 expr-7.34 {(a<0 AND b=0) AND a IS NULL} {}
744test_expr2 expr-7.35 {(b=0 AND a<0) AND a IS NULL} {}
745test_expr2 expr-7.36 {a<2 OR (a<0 OR b=0)} {{} 1}
746test_expr2 expr-7.37 {a<2 OR (b=0 OR a<0)} {{} 1}
747test_expr2 expr-7.38 {a<2 OR (a<0 AND b=0)} {1}
748test_expr2 expr-7.39 {a<2 OR (b=0 AND a<0)} {1}
749ifcapable floatingpoint {
750  test_expr2 expr-7.40 {((a<2 OR a IS NULL) AND b<3) OR b>1e10} {{} 1}
751}
752test_expr2 expr-7.41 {a BETWEEN -1 AND 1} {1}
753test_expr2 expr-7.42 {a NOT BETWEEN 2 AND 100} {1}
754test_expr2 expr-7.43 {(b+1234)||'this is a string that is at least 32 characters long' BETWEEN 1 AND 2} {}
755test_expr2 expr-7.44 {123||'xabcdefghijklmnopqrstuvwyxz01234567890'||a BETWEEN '123a' AND '123b'} {}
756test_expr2 expr-7.45 {((123||'xabcdefghijklmnopqrstuvwyxz01234567890'||a) BETWEEN '123a' AND '123b')<0} {}
757test_expr2 expr-7.46 {((123||'xabcdefghijklmnopqrstuvwyxz01234567890'||a) BETWEEN '123a' AND '123z')>0} {1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20}
758
759test_expr2 expr-7.50 {((a between 1 and 2 OR 0) AND 1) OR 0} {1 2}
760test_expr2 expr-7.51 {((a not between 3 and 100 OR 0) AND 1) OR 0} {1 2}
761
762ifcapable subquery {
763  test_expr2 expr-7.52 {((a in (1,2) OR 0) AND 1) OR 0} {1 2}
764  test_expr2 expr-7.53 \
765      {((a not in (3,4,5,6,7,8,9,10) OR 0) AND a<11) OR 0} {1 2}
766}
767test_expr2 expr-7.54 {((a>0 OR 0) AND a<3) OR 0} {1 2}
768ifcapable subquery {
769  test_expr2 expr-7.55 {((a in (1,2) OR 0) IS NULL AND 1) OR 0} {{}}
770  test_expr2 expr-7.56 \
771      {((a not in (3,4,5,6,7,8,9,10) IS NULL OR 0) AND 1) OR 0} {{}}
772}
773test_expr2 expr-7.57 {((a>0 IS NULL OR 0) AND 1) OR 0} {{}}
774
775test_expr2 expr-7.58  {(a||'')<='1'}                  {1}
776
777test_expr2 expr-7.59 {LIKE('10%',b)}                  {10 20}
778test_expr2 expr-7.60 {LIKE('_4',b)}                   {6}
779test_expr2 expr-7.61 {GLOB('1?',a)}            {10 11 12 13 14 15 16 17 18 19}
780test_expr2 expr-7.62 {GLOB('1*4',b)}                  {10 14}
781test_expr2 expr-7.63 {GLOB('*1[456]',b)}              {4}
782test_expr2 expr-7.64 {b = abs(-2)}                    {1}
783test_expr2 expr-7.65 {b = abs(+-2)}                   {1}
784test_expr2 expr-7.66 {b = abs(++-2)}                  {1}
785test_expr2 expr-7.67 {b = abs(+-+-2)}                 {1}
786test_expr2 expr-7.68 {b = abs(+-++-2)}                {1}
787test_expr2 expr-7.69 {b = abs(++++-2)}                {1}
788test_expr2 expr-7.70 {b = 5 - abs(+3)}                {1}
789test_expr2 expr-7.71 {b = 5 - abs(-3)}                {1}
790ifcapable floatingpoint {
791  test_expr2 expr-7.72 {b = abs(-2.0)}                  {1}
792}
793test_expr2 expr-7.73 {b = 6 - abs(-a)}                {2}
794ifcapable floatingpoint {
795  test_expr2 expr-7.74 {b = abs(8.0)}                   {3}
796}
797
798# Test the CURRENT_TIME, CURRENT_DATE, and CURRENT_TIMESTAMP expressions.
799#
800ifcapable {floatingpoint} {
801  set sqlite_current_time 1157124849
802  do_test expr-8.1 {
803    execsql {SELECT CURRENT_TIME}
804  } {15:34:09}
805  do_test expr-8.2 {
806    execsql {SELECT CURRENT_DATE}
807  } {2006-09-01}
808  do_test expr-8.3 {
809    execsql {SELECT CURRENT_TIMESTAMP}
810  } {{2006-09-01 15:34:09}}
811}
812ifcapable datetime {
813  do_test expr-8.4 {
814    execsql {SELECT CURRENT_TIME==time('now');}
815  } 1
816  do_test expr-8.5 {
817    execsql {SELECT CURRENT_DATE==date('now');}
818  } 1
819  do_test expr-8.6 {
820    execsql {SELECT CURRENT_TIMESTAMP==datetime('now');}
821  } 1
822}
823set sqlite_current_time 0
824
825ifcapable floatingpoint {
826  do_test expr-9.1 {
827    execsql {SELECT round(-('-'||'123'))}
828  } 123.0
829}
830
831# Test an error message that can be generated by the LIKE expression
832do_test expr-10.1 {
833  catchsql {SELECT 'abc' LIKE 'abc' ESCAPE ''}
834} {1 {ESCAPE expression must be a single character}}
835do_test expr-10.2 {
836  catchsql {SELECT 'abc' LIKE 'abc' ESCAPE 'ab'}
837} {1 {ESCAPE expression must be a single character}}
838
839# If we specify an integer constant that is bigger than the largest
840# possible integer, code the integer as a real number.
841#
842do_test expr-11.1 {
843  execsql {SELECT typeof(9223372036854775807)}
844} {integer}
845do_test expr-11.2 {
846  execsql {SELECT typeof(00000009223372036854775807)}
847} {integer}
848do_test expr-11.3 {
849  execsql {SELECT typeof(+9223372036854775807)}
850} {integer}
851do_test expr-11.4 {
852  execsql {SELECT typeof(+000000009223372036854775807)}
853} {integer}
854do_test expr-11.5 {
855  execsql {SELECT typeof(9223372036854775808)}
856} {real}
857do_test expr-11.6 {
858  execsql {SELECT typeof(00000009223372036854775808)}
859} {real}
860do_test expr-11.7 {
861  execsql {SELECT typeof(+9223372036854775808)}
862} {real}
863do_test expr-11.8 {
864  execsql {SELECT typeof(+0000009223372036854775808)}
865} {real}
866do_test expr-11.11 {
867  execsql {SELECT typeof(-9223372036854775808)}
868} {integer}
869do_test expr-11.12 {
870  execsql {SELECT typeof(-00000009223372036854775808)}
871} {integer}
872ifcapable floatingpoint {
873  do_test expr-11.13 {
874    execsql {SELECT typeof(-9223372036854775809)}
875  } {real}
876  do_test expr-11.14 {
877    execsql {SELECT typeof(-00000009223372036854775809)}
878  } {real}
879}
880
881# These two statements used to leak memory (because of missing %destructor
882# directives in parse.y).
883do_test expr-12.1 {
884  catchsql {
885    SELECT (CASE a>4 THEN 1 ELSE 0 END) FROM test1;
886  }
887} {1 {near "THEN": syntax error}}
888do_test expr-12.2 {
889  catchsql {
890    SELECT (CASE WHEN a>4 THEN 1 ELSE 0) FROM test1;
891  }
892} {1 {near ")": syntax error}}
893
894ifcapable floatingpoint {
895  do_realnum_test expr-13.1 {
896    execsql {
897      SELECT 12345678901234567890;
898    }
899  } {1.23456789012346e+19}
900}
901
902# Implicit String->Integer conversion is used when possible.
903#
904if {[working_64bit_int]} {
905  do_test expr-13.2 {
906    execsql {
907      SELECT 0+'9223372036854775807'
908    }
909  } {9223372036854775807}
910  do_test expr-13.3 {
911    execsql {
912      SELECT '9223372036854775807'+0
913    }
914  } {9223372036854775807}
915}
916
917# If the value is too large, use String->Float conversion.
918#
919ifcapable floatingpoint {
920  do_realnum_test expr-13.4 {
921    execsql {
922      SELECT 0+'9223372036854775808'
923    }
924  } {9.22337203685478e+18}
925  do_realnum_test expr-13.5 {
926    execsql {
927      SELECT '9223372036854775808'+0
928    }
929  } {9.22337203685478e+18}
930}
931
932# Use String->float conversion if the value is explicitly a floating
933# point value.
934#
935do_realnum_test expr-13.6 {
936  execsql {
937    SELECT 0+'9223372036854775807.0'
938  }
939} {9.22337203685478e+18}
940do_realnum_test expr-13.7 {
941  execsql {
942    SELECT '9223372036854775807.0'+0
943  }
944} {9.22337203685478e+18}
945
946do_execsql_test expr-13.8 {
947  SELECT "" <= '';
948} {1}
949do_execsql_test expr-13.9 {
950  SELECT '' <= "";
951} {1}
952
953
954
955finish_test
956