gdb/testsuite/
[deliverable/binutils-gdb.git] / gdb / testsuite / gdb.base / dfp-test.exp
CommitLineData
0b302171 1# Copyright (C) 2007-2012 Free Software Foundation, Inc.
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2
3# This program is free software; you can redistribute it and/or modify
4# it under the terms of the GNU General Public License as published by
5# the Free Software Foundation; either version 3 of the License, or
6# (at your option) any later version.
7#
8# This program is distributed in the hope that it will be useful,
9# but WITHOUT ANY WARRANTY; without even the implied warranty of
10# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11# GNU General Public License for more details.
12#
13# You should have received a copy of the GNU General Public License
14# along with this program. If not, see <http://www.gnu.org/licenses/>.
15
16# This file was written by Wu Zhou. (woodzltc@cn.ibm.com)
17
18# This file is part of the gdb testsuite. It is intended to test that
19# gdb could correctly handle decimal floating point introduced in IEEE 754R.
20
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21set testfile "dfp-test"
22set srcfile ${testfile}.c
23set binfile ${objdir}/${subdir}/${testfile}
24
25# Try to compile the test case. If we can't, assume the
26# toolchain does not yet provide DFP support and bail out.
27if { [gdb_compile "${srcdir}/${subdir}/${srcfile}" "${binfile}" executable {quiet debug}] != "" } {
28 verbose "Skipping DFP tests."
29 return -1
30}
31
32gdb_exit
33gdb_start
34gdb_reinitialize_dir $srcdir/$subdir
35gdb_load ${binfile}
36
37if ![runto_main] then {
38 perror "couldn't run to breakpoint"
39 continue
40}
41
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42set sizeof_long [get_sizeof "long" 4]
43
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44proc d32_set_tests {} {
45
46 gdb_test "p d32=123.45df" " = 123.45"
47 gdb_test "p d32=12345.df" " = 12345"
48 gdb_test "p d32=12345.67df" " = 12345.67"
49 gdb_test "p d32=1234567.df" " = 1234567"
50
51 gdb_test "p d32=1.234567E0df" " = 1.234567"
52 gdb_test "p d32=1.234567E10df" " = 1.234567E\\+10"
53 gdb_test "p d32=1.234567E+96df" " = 1.234567E\\+96"
54
55 # Test that gdb could handle the max, normalized min and subnormalized min.
56 gdb_test "p d32=9.999999E96df" " = 9.999999E\\+96"
57 gdb_test "p d32=1.0E-95df" " = 1.0E\\-95"
58 gdb_test "p d32=1.E-101df" " = 1E\\-101"
59 gdb_test "p d32=0.000001E-95df" " = 1E\\-101"
60
61 # Test that gdb could detect coefficient/exponent out of range.
62 # The coefficient out of range will be rounded to its nearest value.
63 # And the exponent out of range will be handled as infinity.
64 gdb_test "p d32=1.2345678df" " = 1.234568" "1.2345678 is rounded to 1.234568"
65 gdb_test "p d32=1.0E-101df" " = 1E-101" "1.0E-101 is rounded to 1E-101"
66 gdb_test "p d32=1.234567E+97df" " = Infinity" "1.234567E+97 is Infinity"
67
68 # Test that gdb could detect the errors in the string representation of _Decimal32
f6867ce0 69 gdb_test "p d32=12345.df" " = 12345" "12345. is a valid number"
93004d61 70 gdb_test "p d32=12345df" ".*Invalid number.*" "12345 is an invalid number"
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71 gdb_test "p d32=1.23Edf" ".*Conversion syntax.*" "1.23E is an invalid number"
72 gdb_test "p d32=1.23E45Adf" ".*Conversion syntax.*" "1.23E45A is an invalid number"
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73}
74
75proc d64_set_tests {} {
76
77 gdb_test "p d64=123.45dd" " = 123.45"
78 gdb_test "p d64=12345.dd" " = 12345"
79 gdb_test "p d64=12345.67dd" " = 12345.67"
80 gdb_test "p d64=1.234567890123456dd" " = 1.234567890123456"
81
82 gdb_test "p d64=1.234567890123456E10dd" " = 12345678901.23456"
83 gdb_test "p d64=1.234567890123456E100dd" " = 1.234567890123456E\\+100"
84 gdb_test "p d64=1.234567890123456E384dd" " = 1.234567890123456E\\+384"
85
86 # Test that gdb could handle the max, normalized min and subnormalized min.
87 gdb_test "p d64=9.999999999999999E384dd" " = 9.999999999999999E\\+384"
88 gdb_test "p d64=1.E-383dd" " = 1E\\-383"
89 gdb_test "p d64=1.E-398dd" " = 1E\\-398"
90 gdb_test "p d64=0.000000000000001E-383dd" " = 1E\\-398"
91
92 # Test that gdb could detect coefficient/exponent out of range.
93 # The coefficient out of range will be rounded to its nearest value.
94 # And the exponent out of range will be handled as infinity.
95 gdb_test "p d64=1.2345678901234567dd" " = 1.234567890123457" "1.2345678901234567 is rounded to 1.234567890123457"
96 gdb_test "p d64=9.9999999999999999E384dd" " = Infinity" "d64=9.9999999999999999E384 is Infinity"
97 gdb_test "p d64=1.234567890123456E385dd" " = Infinity" "d64=1.234567890123456E385 is Infinity"
98
99 # Test that gdb could detect the errors in the string representation of _Decimal64
100 gdb_test "p d64=12345dd" ".*Invalid number.*" "12345dd is an invalid number"
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101 gdb_test "p d64=1.23Edd" ".*Conversion syntax.*" "1.23E is an invalid number"
102 gdb_test "p d64=1.23E45Add" ".*Conversion syntax.*" "1.23E45A is an invalid number"
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103}
104
105proc d128_set_tests {} {
106
107 gdb_test "p d128=123.45dl" " = 123.45"
108 gdb_test "p d128=12345.dl" " = 12345"
109 gdb_test "p d128=12345.67dl" " = 12345.67"
110 gdb_test "p d128=1.234567890123456789012345678901234dl" " = 1.234567890123456789012345678901234"
111
112 gdb_test "p d128=1.234567890123456E10dl" " = 12345678901.23456"
113 gdb_test "p d128=1.234567890123456E100dl" " = 1.234567890123456E\\+100"
114 gdb_test "p d128=1.234567890123456E1000dl" " = 1.234567890123456E\\+1000"
115
116 # Test that gdb could handle the max, normalized min and subnormalized min.
117 gdb_test "p d128=9.999999999999999999999999999999999E6144dl" " = 9.999999999999999999999999999999999E\\+6144"
118 gdb_test "p d128=1.E-6143dl" " = 1E\\-6143"
119 gdb_test "p d128=1.E-6176dl" " = 1E\\-6176"
120 gdb_test "p d128=0.000000000000000000000000000000001E-6143dl" " = 1E\\-6176"
121
122 # Test that gdb could detect coefficient/exponent out of range.
123 # The coefficient out of range will be rounded to its nearest value.
124 # And the exponent out of range will be handled as infinity.
125 gdb_test "p d128=1.2345678901234567890123456789012345dl" "1.234567890123456789012345678901234" "1.2345678901234567890123456789012345 is rounded to 1.234567890123456789012345678901234"
126 gdb_test "p d128=1.234567890123456E6145dl" "Infinity" "d128=1.234567890123456E6145 is Infinity"
127
128 # Test that gdb could detect the errors in the string representation of _Decimal128
129 gdb_test "p d128=12345dl" ".*Invalid number.*" "12345dl is an invalid number"
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130 gdb_test "p d128=1.23Edl" ".*Conversion syntax.*" "1.23E is an invalid number"
131 gdb_test "p d128=1.23E45Adl" ".*Conversion syntax.*" "1.23E45A is an invalid number"
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132}
133
134# Different tests on 32-bits decimal floating point, including the printing
135# of finite numbers, infinite and NaN, and also the setting of different
136# decimal value.
137
138if [gdb_test "next" \
139 ".*Positive infd32.*" \
140 "next after initializing d32"] then { gdb_suppress_tests }
141gdb_test "print d32" "1.2345" "d32 is initialized to 1.2345"
142
143if [gdb_test "next" \
144 ".*Negative infd32.*" \
145 "next after assigning builtin infinity to d32"] then { gdb_suppress_tests }
146gdb_test "print d32" "Infinity" "d32 is positive Infinity"
147
148if [gdb_test "next" \
149 ".*__builtin_nand32.*" \
150 "next after assigning negative builtin infinity to d32"] then { gdb_suppress_tests }
151gdb_test "print d32" "-Infinity" "d32 is negative Infinity"
152
153if [gdb_test "next" \
154 ".*d64 = 1.2345.*" \
155 "next after assigning builtin NaN to d32"] then { gdb_suppress_tests }
156gdb_test "print d32" "NaN" "d32 is NaN"
157
158d32_set_tests
159
160
161# Different tests on 64-bits decimal floating point, including the display
162# of finite number, infinite and NaN, and also the setting of different
163# decimal value.
164
165if [gdb_test "next" \
166 ".*Positive infd64.*" \
167 "next after initializing d64"] then { gdb_suppress_tests }
168gdb_test "print d64" "1.2345" "d64 is initialized to 1.2345"
169
170if [gdb_test "next" \
171 ".*Negative infd64.*" \
172 "next after assigning builtin infinity to d64"] then { gdb_suppress_tests }
173gdb_test "print d64" "Infinity" "d64 is positive Infinity"
174
175if [gdb_test "next" \
176 ".*__builtin_nand64.*" \
177 "next after assigning negative builtin infinity to d64"] then { gdb_suppress_tests }
178gdb_test "print d64" "-Infinity" "d64 is negative Infinity"
179
180if [gdb_test "next" \
181 ".*d128 = 1.2345.*" \
182 "next after assigning builtin NaN to d64"] then { gdb_suppress_tests }
183gdb_test "print d64" "NaN" "d64 is NaN"
184
185d64_set_tests
186
187
188# Different tests on 128-bits decimal floating point, including the display
189# of finite number, infinite and NaN, and also the setting of different
190# decimal value.
191
192if [gdb_test "next" \
193 ".*Positive infd128.*" \
194 "next after initializing d128"] then { gdb_suppress_tests }
195gdb_test "print d128" "1.2345" "d128 is initialized to 1.2345"
196
197d128_set_tests
198
199if [gdb_test "next" \
200 ".*Negative infd128.*" \
201 "next after assigning builtin infinity to d128"] then { gdb_suppress_tests }
202gdb_test "print d128" "Infinity" "d128 is positive Infinity"
203
204if [gdb_test "next" \
205 ".*__builtin_nand128.*" \
206 "next after assigning negative builtin infinity to d128"] then { gdb_suppress_tests }
207gdb_test "print d128" "-Infinity" "d128 is negative Infinity"
208
209if [gdb_test "next" \
210 ".*arg0_32.*" \
211 "next after assigning builtin NaN to d128"] then { gdb_suppress_tests }
212gdb_test "print d128" "NaN" "d128 is NaN"
213
214# The following tests are intended to verify that gdb can correctly handle
215# DFP types in function arguments.
216
217gdb_breakpoint arg0_32
218gdb_continue_to_breakpoint "entry to arg0_32"
219gdb_test "backtrace" ".*arg0_32 \\(arg0=0.1, arg1=1.0, arg2=2.0, arg3=3.0, arg4=4.0, arg5=5.0\\).*" "backtrace at arg0_32"
220
221gdb_breakpoint arg0_64
222gdb_continue_to_breakpoint "entry to arg0_64"
223gdb_test "backtrace" ".*arg0_64 \\(arg0=0.1, arg1=1.0, arg2=2.0, arg3=3.0, arg4=4.0, arg5=5.0\\).*" "backtrace at arg0_64"
224
225gdb_breakpoint arg0_128
226gdb_continue_to_breakpoint "entry to arg0_128"
227gdb_test "backtrace" ".*arg0_128 \\(arg0=0.1, arg1=1.0, arg2=2.0, arg3=3.0, arg4=4.0, arg5=5.0\\).*" "backtrace at arg0_128"
228
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229# Test calling inferior function with DFP arguments or return value.
230
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231gdb_test "call arg0_32 (1.2df, 2.2df, 3.2df, 4.2df, 5.2df, 6.2df)" "Breakpoint.*arg0_32.*" "Call function with correct _Decimal32 arguments."
232gdb_test "backtrace 1" "\n#\[0-9\]+ arg0_32 \\(arg0=1.2, arg1=2.2, arg2=3.2, arg3=4.2, arg4=5.2, arg5=6.2\\).*" "Backtrace function with correct _Decimal32 arguments."
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233gdb_test "finish" " = 1.2" "Correct _Decimal32 return value from called function."
234
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235gdb_test "call arg0_64 (1.2dd, 2.2dd, 3.2dd, 4.2dd, 5.2dd, 6.2dd)" "Breakpoint.*arg0_64.*" "Call function with correct _Decimal64 arguments."
236gdb_test "backtrace 1" "\n#\[0-9\]+ arg0_64 \\(arg0=1.2, arg1=2.2, arg2=3.2, arg3=4.2, arg4=5.2, arg5=6.2\\).*" "Backtrace function with correct _Decimal64 arguments."
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237gdb_test "finish" " = 1.2" "Correct _Decimal64 return value from called function."
238
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239gdb_test "call arg0_128 (1.2dl, 2.2dl, 3.2dl, 4.2dl, 5.2dl, 6.2dl)" "Breakpoint.*arg0_128.*" "Call function with correct _Decimal128 arguments."
240gdb_test "backtrace 1" "\n#\[0-9\]+ arg0_128 \\(arg0=1.2, arg1=2.2, arg2=3.2, arg3=4.2, arg4=5.2, arg5=6.2\\).*" "Backtrace function with correct _Decimal128 arguments."
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241gdb_test "finish" " = 1.2" "Correct _Decimal128 return value from called function."
242
243gdb_test "call decimal_dec128_align (double_val1, dec128_val2, double_val3, double_val4, double_val5, double_val6, double_val7, double_val8, double_val9, double_val10, double_val11, double_val12, double_val13, double_val14)" " = 1" \
244 "Call function with mixed decimal float arguments TEST."
245
246gdb_test "call decimal_mixed (dec32_val1, dec64_val1, dec128_val1)" " = 1" \
247 "Call function with mixed decimal float arguments."
248
249gdb_test "call decimal_many_args_dec32 (dec32_val1, dec32_val2, dec32_val3, dec32_val4, dec32_val5, dec32_val6, dec32_val7, dec32_val8, dec32_val9, dec32_val10, dec32_val11, dec32_val12, dec32_val13, dec32_val14, dec32_val15, dec32_val16)" " = 1" \
250 "Call function with many _Decimal32 arguments."
251
252gdb_test "call decimal_many_args_dec64 (dec64_val1, dec64_val2, dec64_val3, dec64_val4, dec64_val5, dec64_val6, dec64_val7, dec64_val8, dec64_val9, dec64_val10, dec64_val11, dec64_val12, dec64_val13, dec64_val14, dec64_val15, dec64_val16)" " = 1" \
253 "Call function with many _Decimal64 arguments."
254
255gdb_test "call decimal_many_args_dec128 (dec128_val1, dec128_val2, dec128_val3, dec128_val4, dec128_val5, dec128_val6, dec128_val7, dec128_val8, dec128_val9, dec128_val10, dec128_val11, dec128_val12, dec128_val13, dec128_val14, dec128_val15, dec128_val16)" " = 1" \
256 "Call function with many _Decimal128 arguments."
257
258gdb_test "call decimal_many_args_mixed (dec32_val1, dec32_val2, dec32_val3, dec64_val4, dec64_val5, dec64_val6, dec64_val7, dec128_val8, dec128_val9, dec128_val10, dec32_val11, dec64_val12, dec32_val13, dec64_val14, dec128_val15)" " = 1" \
259 "Call function with many mixed decimal float arguments."
260
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261# The following tests are intended to verify that gdb can handle DFP types
262# correctly in struct.
263
264gdb_breakpoint [gdb_get_line_number "Exit point"]
265gdb_continue_to_breakpoint "Setting a decimal struct"
266gdb_test "print ds.dec32" " = 1.2345"
267gdb_test "print ds.dec64" " = 1.2345"
268gdb_test "print ds.dec128" " = 1.2345"
269
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270# Test expressions with DFP variables.
271
272gdb_test "print d32 + ds.dec32" " = 1.3345"
273gdb_test "print d64 + ds.dec64" " = 1.3345"
274gdb_test "print d128 + ds.dec128" " = 1.3345"
275
276# Test conversion between different _Decimal sizes.
277
278gdb_test "ptype d64 + ds.dec32" " = volatile _Decimal64"
279gdb_test "ptype d128 + ds.dec32" " = volatile _Decimal128"
280gdb_test "ptype d128 + ds.dec64" " = volatile _Decimal128"
281
282# Mixture of Decimal and integral operands
283gdb_test "p d32 + 1" " = 1.1"
284gdb_test "p 2 + d64" " = 2.1"
285gdb_test "p ds.int4 + d128" " = 1.1"
286gdb_test "ptype d32 + 1" " = volatile _Decimal32"
287gdb_test "ptype ds.int4 + d128" " = volatile _Decimal128"
288
289# Test other operations with DFP operands
290gdb_test "p !d32" " = 0"
291gdb_test "p !d64" " = 0"
292gdb_test "p !d128" " = 0"
293gdb_test "p +d32" " = 0.1"
294gdb_test "p +d64" " = 0.1"
295gdb_test "p +d128" " = 0.1"
296gdb_test "p d64 == d128" " = 1"
297gdb_test "p d128 == ds.dec32" " = 0"
298gdb_test "p d128 == d32" " = 1"
299gdb_test "p ds.dec32 == ds.dec64" " = 1"
300gdb_test "p d32 < ds.dec32" " = 1"
301gdb_test "p d64 < ds.dec64" " = 1"
302gdb_test "p d128 < ds.dec128" " = 1"
303gdb_test "p ds.dec32 < d32" " = 0"
304gdb_test "p d64 > ds.dec64" " = 0"
305gdb_test "p ds.dec128 > d128 " " = 1"
306gdb_test "p d32 < ds.int4" " = 1"
307gdb_test "p ds.int4 > d32" " = 1"
308gdb_test "p ds.dec32 < ds.int4" " = 0"
309gdb_test "p ds.int4 > ds.dec64" " = 0"
310gdb_test "p ds.dec128 > ds.int4" " = 1"
311
312# Reject operation with integral larger than 32-bits
313if { ${sizeof_long} > 4 } {
314 gdb_test "p d32 + ds.long8" "Conversion of large integer to a decimal floating type is not supported."
315}
316
317# Reject operation with DFP and Binary FP
318gdb_test "p d64 + ds.float4" "Mixing decimal floating types with other floating types is not allowed."
319gdb_test "p ds.double8 + d128" "Mixing decimal floating types with other floating types is not allowed."
320
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321# The following tests are intended to verify that gdb can handle "d1=d2"
322# and "d1=-d2" correctly.
323
324gdb_test "print ds.dec32=d32" " = 0.1"
325gdb_test "print ds.dec64=d64" " = 0.1"
326gdb_test "print ds.dec128=d128" " = 0.1"
327gdb_test "print ds.dec32 = -d32" " = -0.1"
328gdb_test "print ds.dec64 = -d64" " = -0.1"
329gdb_test "print ds.dec128 = -d128" " = -0.1"
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330
331# Test cast to and from DFP values
332
333gdb_test "print ds.double8 = ds.dec64" " = -0.(0999.*|1000.*)"
334gdb_test "print ds.dec64 = ds.float4" " = 3.(0999.*|1000.*)"
335gdb_test "print ds.dec128 = -ds.double8" " = 0.(0999.*|1000.*)"
336gdb_test "print ds.dec128 = ds.dec32" " = -0.1"
337gdb_test "print ds.dec32 = ds.int4" " = 1"
338gdb_test "print ds.int4 = 7.3dl" " = 7"
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