Refactor string_to_event_location for legacy linespec support.
[deliverable/binutils-gdb.git] / gdb / testsuite / gdb.python / py-value.exp
1 # Copyright (C) 2008-2016 Free Software Foundation, Inc.
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 is part of the GDB testsuite. It tests the mechanism
17 # exposing values to Python.
18
19 load_lib gdb-python.exp
20
21 standard_testfile
22
23 set has_argv0 [gdb_has_argv0]
24
25 # Build inferior to language specification.
26 # LANG is one of "c" or "c++".
27 proc build_inferior {exefile lang} {
28 global srcdir subdir srcfile testfile hex
29
30 # Use different names for .o files based on the language.
31 # For Fission, the debug info goes in foo.dwo and we don't want,
32 # for example, a C++ compile to clobber the dwo of a C compile.
33 # ref: http://gcc.gnu.org/wiki/DebugFission
34 switch ${lang} {
35 "c" { set filename ${testfile}.o }
36 "c++" { set filename ${testfile}-cxx.o }
37 }
38 set objfile [standard_output_file $filename]
39
40 if { [gdb_compile "${srcdir}/${subdir}/${srcfile}" "${objfile}" object "debug $lang"] != ""
41 || [gdb_compile "${objfile}" "${exefile}" executable "debug $lang"] != "" } {
42 untested "Couldn't compile ${srcfile} in $lang mode"
43 return -1
44 }
45 return 0
46 }
47
48 proc test_value_creation {} {
49 global gdb_prompt
50 global gdb_py_is_py3k
51
52 gdb_py_test_silent_cmd "python i = gdb.Value (True)" "create boolean value" 1
53 gdb_py_test_silent_cmd "python i = gdb.Value (5)" "create integer value" 1
54 if { $gdb_py_is_py3k == 0 } {
55 gdb_py_test_silent_cmd "python i = gdb.Value (5L)" "create long value" 1
56 }
57 gdb_py_test_silent_cmd "python f = gdb.Value (1.25)" "create double value" 1
58 gdb_py_test_silent_cmd "python a = gdb.Value ('string test')" "create 8-bit string value" 1
59 gdb_test "python print (a)" "\"string test\"" "print 8-bit string"
60 gdb_test "python print (a.__class__)" "<(type|class) 'gdb.Value'>" "verify type of 8-bit string"
61 if { $gdb_py_is_py3k == 0 } {
62 gdb_py_test_silent_cmd "python a = gdb.Value (u'unicode test')" "create unicode value" 1
63 gdb_test "python print (a)" "\"unicode test\"" "print Unicode string"
64 gdb_test "python print (a.__class__)" "<(type|class) 'gdb.Value'>" "verify type of unicode string"
65 }
66
67 # Test address attribute is None in a non-addressable value
68 gdb_test "python print ('result = %s' % i.address)" "= None" "Test address attribute in non-addressable value"
69 }
70
71 proc test_value_numeric_ops {} {
72 global gdb_prompt
73
74 gdb_py_test_silent_cmd "python i = gdb.Value (5)" "create first integer value" 0
75 gdb_py_test_silent_cmd "python j = gdb.Value (2)" "create second integer value" 0
76 gdb_py_test_silent_cmd "python f = gdb.Value (1.25)" "create first double value" 0
77 gdb_py_test_silent_cmd "python g = gdb.Value (2.5)" "create second double value" 0
78 gdb_test "python print ('result = ' + str(i+j))" " = 7" "add two integer values"
79 gdb_test "python print ((i+j).__class__)" "<(type|class) 'gdb.Value'>" "verify type of integer add result"
80
81 gdb_test "python print ('result = ' + str(f+g))" " = 3.75" "add two double values"
82 gdb_test "python print ('result = ' + str(i-j))" " = 3" "subtract two integer values"
83 gdb_test "python print ('result = ' + str(f-g))" " = -1.25" "subtract two double values"
84 gdb_test "python print ('result = ' + str(i*j))" " = 10" "multiply two integer values"
85 gdb_test "python print ('result = ' + str(f*g))" " = 3.125" "multiply two double values"
86 gdb_test "python print ('result = ' + str(i/j))" " = 2" "divide two integer values"
87 gdb_test "python print ('result = ' + str(f/g))" " = 0.5" "divide two double values"
88 gdb_test "python print ('result = ' + str(i%j))" " = 1" "take remainder of two integer values"
89 # Remainder of float is implemented in Python but not in GDB's value system.
90
91 gdb_test "python print ('result = ' + str(i**j))" " = 25" "integer value raised to the power of another integer value"
92 gdb_test "python print ('result = ' + str(g**j))" " = 6.25" "double value raised to the power of integer value"
93
94 gdb_test "python print ('result = ' + str(-i))" " = -5" "negated integer value"
95 gdb_test "python print ('result = ' + str(+i))" " = 5" "positive integer value"
96 gdb_test "python print ('result = ' + str(-f))" " = -1.25" "negated double value"
97 gdb_test "python print ('result = ' + str(+f))" " = 1.25" "positive double value"
98 gdb_test "python print ('result = ' + str(abs(j-i)))" " = 3" "absolute of integer value"
99 gdb_test "python print ('result = ' + str(abs(f-g)))" " = 1.25" "absolute of double value"
100
101 # Test gdb.Value mixed with Python types.
102
103 gdb_test "python print ('result = ' + str(i-1))" " = 4" "subtract integer value from python integer"
104 gdb_test "python print ((i-1).__class__)" "<(type|class) 'gdb.Value'>" "verify type of mixed integer subtraction result"
105 gdb_test "python print ('result = ' + str(f+1.5))" " = 2.75" "add double value with python float"
106
107 gdb_test "python print ('result = ' + str(1-i))" " = -4" "subtract python integer from integer value"
108 gdb_test "python print ('result = ' + str(1.5+f))" " = 2.75" "add python float with double value"
109
110 # Conversion test.
111 gdb_test "print evalue" " = TWO"
112 gdb_test_no_output "python evalue = gdb.history (0)"
113 gdb_test "python print (int (evalue))" "2"
114
115 # Test pointer arithmethic
116
117 # First, obtain the pointers
118 gdb_test "print (void *) 2" ".*" ""
119 gdb_test_no_output "python a = gdb.history (0)" ""
120 gdb_test "print (void *) 5" ".*" ""
121 gdb_test_no_output "python b = gdb.history (0)" ""
122
123 gdb_test "python print ('result = ' + str(a+5))" " = 0x7( <.*>)?" "add pointer value with python integer"
124 gdb_test "python print ('result = ' + str(b-2))" " = 0x3( <.*>)?" "subtract python integer from pointer value"
125 gdb_test "python print ('result = ' + str(b-a))" " = 3" "subtract two pointer values"
126
127 # Test some invalid operations.
128
129 gdb_test_multiple "python print ('result = ' + str(i+'foo'))" "catch error in python type conversion" {
130 -re "Argument to arithmetic operation not a number or boolean.*$gdb_prompt $" {pass "catch error in python type conversion"}
131 -re "result = .*$gdb_prompt $" {fail "catch error in python type conversion"}
132 -re "$gdb_prompt $" {fail "catch error in python type conversion"}
133 }
134
135 gdb_test_multiple "python print ('result = ' + str(i+gdb.Value('foo')))" "catch throw of GDB error" {
136 -re "Traceback.*$gdb_prompt $" {pass "catch throw of GDB error"}
137 -re "result = .*$gdb_prompt $" {fail "catch throw of GDB error"}
138 -re "$gdb_prompt $" {fail "catch throw of GDB error"}
139 }
140 }
141
142 proc test_value_boolean {} {
143 # First, define a useful function to test booleans.
144 gdb_py_test_multiple "define function to test booleans" \
145 "python" "" \
146 "def test_bool (val):" "" \
147 " if val:" "" \
148 " print ('yay')" "" \
149 " else:" "" \
150 " print ('nay')" "" \
151 "end" ""
152
153 gdb_test "py test_bool (gdb.Value (True))" "yay" "check evaluation of true boolean value in expression"
154
155 gdb_test "py test_bool (gdb.Value (False))" "nay" "check evaluation of false boolean value in expression"
156
157 gdb_test "py test_bool (gdb.Value (5))" "yay" "check evaluation of true integer value in expression"
158
159 gdb_test "py test_bool (gdb.Value (0))" "nay" "check evaluation of false integer value in expression"
160
161 gdb_test "py test_bool (gdb.Value (5.2))" "yay" "check evaluation of true integer value in expression"
162
163 gdb_test "py test_bool (gdb.Value (0.0))" "nay" "check evaluation of false integer value in expression"
164 }
165
166 proc test_value_compare {} {
167 gdb_test "py print (gdb.Value (1) < gdb.Value (1))" "False" "less than, equal"
168 gdb_test "py print (gdb.Value (1) < gdb.Value (2))" "True" "less than, less"
169 gdb_test "py print (gdb.Value (2) < gdb.Value (1))" "False" "less than, greater"
170 gdb_test "py print (gdb.Value (2) < None)" "False" "less than, None"
171
172 gdb_test "py print (gdb.Value (1) <= gdb.Value (1))" "True" "less or equal, equal"
173 gdb_test "py print (gdb.Value (1) <= gdb.Value (2))" "True" "less or equal, less"
174 gdb_test "py print (gdb.Value (2) <= gdb.Value (1))" "False" "less or equal, greater"
175 gdb_test "py print (gdb.Value (2) <= None)" "False" "less or equal, None"
176
177 gdb_test "py print (gdb.Value (1) == gdb.Value (1))" "True" "equality of gdb.Values"
178 gdb_test "py print (gdb.Value (1) == gdb.Value (2))" "False" "inequality of gdb.Values"
179 gdb_test "py print (gdb.Value (1) == 1.0)" "True" "equality of gdb.Value with Python value"
180 gdb_test "py print (gdb.Value (1) == 2)" "False" "inequality of gdb.Value with Python value"
181 gdb_test "py print (gdb.Value (1) == None)" "False" "inequality of gdb.Value with None"
182
183 gdb_test "py print (gdb.Value (1) != gdb.Value (1))" "False" "inequality, false"
184 gdb_test "py print (gdb.Value (1) != gdb.Value (2))" "True" "inequality, true"
185 gdb_test "py print (gdb.Value (1) != None)" "True" "inequality, None"
186
187 gdb_test "py print (gdb.Value (1) > gdb.Value (1))" "False" "greater than, equal"
188 gdb_test "py print (gdb.Value (1) > gdb.Value (2))" "False" "greater than, less"
189 gdb_test "py print (gdb.Value (2) > gdb.Value (1))" "True" "greater than, greater"
190 gdb_test "py print (gdb.Value (2) > None)" "True" "greater than, None"
191
192 gdb_test "py print (gdb.Value (1) >= gdb.Value (1))" "True" "greater or equal, equal"
193 gdb_test "py print (gdb.Value (1) >= gdb.Value (2))" "False" "greater or equal, less"
194 gdb_test "py print (gdb.Value (2) >= gdb.Value (1))" "True" "greater or equal, greater"
195 gdb_test "py print (gdb.Value (2) >= None)" "True" "greater or equal, None"
196 }
197
198 proc test_value_in_inferior {} {
199 global gdb_prompt
200 global testfile
201 global gdb_py_is_py3k
202
203 gdb_breakpoint [gdb_get_line_number "break to inspect struct and union"]
204
205 gdb_continue_to_breakpoint "break to inspect struct and union"
206
207 # Just get inferior variable s in the value history, available to python.
208 gdb_test "print s" " = {a = 3, b = 5}" ""
209
210 gdb_py_test_silent_cmd "python s = gdb.history (0)" "get value from history" 1
211
212 gdb_test "python print ('result = ' + str(s\['a'\]))" " = 3" "access element inside struct using 8-bit string name"
213 if { $gdb_py_is_py3k == 0 } {
214 gdb_test "python print ('result = ' + str(s\[u'a'\]))" " = 3" "access element inside struct using unicode name"
215 }
216
217 # Test dereferencing the argv pointer
218
219 # Just get inferior variable argv the value history, available to python.
220 gdb_test "print argv" " = \\(char \\*\\*\\) 0x.*" ""
221
222 gdb_py_test_silent_cmd "python argv = gdb.history (0)" "" 0
223 gdb_py_test_silent_cmd "python arg0 = argv.dereference ()" "dereference value" 1
224
225 # Check that the dereferenced value is sane
226 global has_argv0
227 set test "verify dereferenced value"
228 if { $has_argv0 } {
229 gdb_test_no_output "set print elements unlimited" ""
230 gdb_test_no_output "set print repeats unlimited" ""
231 gdb_test "python print (arg0)" "0x.*$testfile\"" $test
232 } else {
233 unsupported $test
234 }
235
236 # Smoke-test is_optimized_out attribute
237 gdb_test "python print ('result = %s' % arg0.is_optimized_out)" "= False" "Test is_optimized_out attribute"
238
239 # Test address attribute
240 gdb_test "python print ('result = %s' % arg0.address)" "= 0x\[\[:xdigit:\]\]+" "Test address attribute"
241
242 # Test displaying a variable that is temporarily at a bad address.
243 # But if we can examine what's at memory address 0, then we'll also be
244 # able to display it without error. Don't run the test in that case.
245 set can_read_0 [is_address_zero_readable]
246
247 # Test memory error.
248 set test "parse_and_eval with memory error"
249 if {$can_read_0} {
250 untested $test
251 } else {
252 gdb_test "python print (gdb.parse_and_eval('*(int*)0'))" "gdb.MemoryError: Cannot access memory at address 0x0.*" $test
253 }
254
255 # Test Python lazy value handling
256 set test "memory error and lazy values"
257 if {$can_read_0} {
258 untested $test
259 } else {
260 gdb_test "python inval = gdb.parse_and_eval('*(int*)0')"
261 gdb_test "python print (inval.is_lazy)" "True"
262 gdb_test "python inval2 = inval+1" "gdb.MemoryError: Cannot access memory at address 0x0.*" $test
263 gdb_test "python inval.fetch_lazy ()" "gdb.MemoryError: Cannot access memory at address 0x0.*" $test
264 }
265 gdb_test "python argc_lazy = gdb.parse_and_eval('argc')"
266 gdb_test "python argc_notlazy = gdb.parse_and_eval('argc')"
267 gdb_test "python argc_notlazy.fetch_lazy()"
268 gdb_test "python print (argc_lazy.is_lazy)" "True"
269 gdb_test "python print (argc_notlazy.is_lazy)" "False"
270 gdb_test "print argc" " = 1" "sanity check argc"
271 gdb_test "python print (argc_lazy.is_lazy)" "\r\nTrue"
272 gdb_test_no_output "set argc=2"
273 gdb_test "python print (argc_notlazy)" "\r\n1"
274 gdb_test "python print (argc_lazy)" "\r\n2"
275 gdb_test "python print (argc_lazy.is_lazy)" "False"
276
277 # Test string fetches, both partial and whole.
278 gdb_test "print st" "\"divide et impera\""
279 gdb_py_test_silent_cmd "python st = gdb.history (0)" "get value from history" 1
280 gdb_test "python print (st.string ())" "divide et impera" "Test string with no length"
281 gdb_test "python print (st.string (length = -1))" "divide et impera" "Test string (length = -1) is all of the string"
282 gdb_test "python print (st.string (length = 6))" "divide"
283 gdb_test "python print (\"---\"+st.string (length = 0)+\"---\")" "------" "Test string (length = 0) is empty"
284 gdb_test "python print (len(st.string (length = 0)))" "0" "Test length is 0"
285
286
287 # Fetch a string that has embedded nulls.
288 gdb_test "print nullst" "\"divide\\\\000et\\\\000impera\".*"
289 gdb_py_test_silent_cmd "python nullst = gdb.history (0)" "get value from history" 1
290 gdb_test "python print (nullst.string ())" "divide" "Test string to first null"
291 # Python cannot print strings that contain the null (\0) character.
292 # For the purposes of this test, use repr()
293 gdb_py_test_silent_cmd "python nullst = nullst.string (length = 9)" "get string beyond null" 1
294 gdb_test "python print (repr(nullst))" "u?'divide\\\\x00et'"
295
296 # Test fetching a string longer than its declared (in C) size.
297 # PR 16286
298 gdb_py_test_silent_cmd "python xstr = gdb.parse_and_eval('xstr')" "get xstr" 1
299 gdb_test "python print(xstr\['text'\].string (length = xstr\['length'\]))" "x{100}" \
300 "read string beyond declared size"
301 }
302
303 proc test_lazy_strings {} {
304
305 global hex
306
307 gdb_test "print sptr" "\"pointer\""
308 gdb_py_test_silent_cmd "python sptr = gdb.history (0)" "Get value from history" 1
309
310 gdb_py_test_silent_cmd "python lstr = sptr.lazy_string()" "Aquire lazy string" 1
311 gdb_test "python print (lstr.type)" "const char \*." "Test lazy-string type name equality"
312 gdb_test "python print (sptr.type)" "const char \*." "Test string type name equality"
313
314 # Prevent symbol on address 0x0 being printed.
315 gdb_test_no_output "set print symbol off"
316 gdb_test "print sn" "0x0"
317
318 gdb_py_test_silent_cmd "python snptr = gdb.history (0)" "Get value from history" 1
319 gdb_test "python snstr = snptr.lazy_string(length=5)" ".*Cannot create a lazy string with address.*" "Test lazy string"
320 gdb_py_test_silent_cmd "python snstr = snptr.lazy_string(length=0)" "Succesfully create a lazy string" 1
321 gdb_test "python print (snstr.length)" "0" "Test lazy string length"
322 gdb_test "python print (snstr.address)" "0" "Test lazy string address"
323 }
324
325
326 proc test_inferior_function_call {} {
327 global gdb_prompt hex decimal
328
329 # Correct inferior call without arguments.
330 gdb_test "p/x fp1" " = $hex.*"
331 gdb_py_test_silent_cmd "python fp1 = gdb.history (0)" "get value from history" 1
332 gdb_test "python fp1 = fp1.dereference()" ""
333 gdb_test "python result = fp1()" ""
334 gdb_test "python print (result)" "void"
335
336 # Correct inferior call with arguments.
337 gdb_test "p/x fp2" " = $hex.*"
338 gdb_py_test_silent_cmd "python fp2 = gdb.history (0)" "get value from history" 1
339 gdb_test "python fp2 = fp2.dereference()" ""
340 gdb_test "python result2 = fp2(10,20)" ""
341 gdb_test "python print (result2)" "30"
342
343 # Incorrect to call an int value.
344 gdb_test "p i" " = $decimal.*"
345 gdb_py_test_silent_cmd "python i = gdb.history (0)" "get value from history" 1
346 gdb_test "python result3 = i()" ".*Value is not callable.*"
347
348 # Incorrect number of arguments.
349 gdb_test "p/x fp2" " = $hex.*"
350 gdb_py_test_silent_cmd "python fp3 = gdb.history (0)" "get value from history" 1
351 gdb_test "python fp3 = fp3.dereference()" ""
352 gdb_test "python result2 = fp3(10)" ".*Too few arguments in function call.*"
353 }
354
355 # A few objfile tests.
356 proc test_objfiles {} {
357 gdb_test "python\nok=False\nfor file in gdb.objfiles():\n if 'py-value' in file.filename:\n ok=True\nprint (ok)\nend" "True" \
358 "py-value in file.filename"
359
360 gdb_test "python print (gdb.objfiles()\[0\].pretty_printers)" "\\\[\\\]"
361
362 gdb_test "python gdb.objfiles()\[0\].pretty_printers = 0" \
363 "pretty_printers attribute must be a list.*Error while executing Python code."
364 }
365
366 proc test_value_after_death {} {
367 # Construct a type while the inferior is still running.
368 gdb_py_test_silent_cmd "python ptrtype = gdb.lookup_type('PTR')" \
369 "create PTR type" 1
370
371 # Kill the inferior and remove the symbols.
372 gdb_test "kill" "" "kill the inferior" \
373 "Kill the program being debugged. .y or n. $" \
374 "y"
375 gdb_test "file" "" "Discard the symbols" \
376 "Discard symbol table from.*y or n. $" \
377 "y"
378
379 # Now create a value using that type. Relies on arg0, created by
380 # test_value_in_inferior.
381 gdb_py_test_silent_cmd "python castval = arg0.cast(ptrtype.pointer())" \
382 "cast arg0 to PTR" 1
383
384 # Make sure the type is deleted.
385 gdb_py_test_silent_cmd "python ptrtype = None" \
386 "delete PTR type" 1
387
388 # Now see if the value's type is still valid.
389 gdb_test "python print (castval.type)" "PTR ." \
390 "print value's type"
391 }
392
393 # Regression test for invalid subscript operations. The bug was that
394 # the type of the value was not being checked before allowing a
395 # subscript operation to proceed.
396
397 proc test_subscript_regression {exefile lang} {
398 # Start with a fresh gdb.
399 clean_restart ${exefile}
400
401 if ![runto_main ] then {
402 perror "couldn't run to breakpoint"
403 return
404 }
405
406 if {$lang == "c++"} {
407 gdb_breakpoint [gdb_get_line_number "break to inspect pointer by reference"]
408 gdb_continue_to_breakpoint "break to inspect pointer by reference"
409
410 gdb_py_test_silent_cmd "print rptr_int" \
411 "Obtain address" 1
412 gdb_py_test_silent_cmd "python rptr = gdb.history(0)" \
413 "Obtains value from GDB" 1
414 gdb_test "python print (rptr\[0\])" "2" "Check pointer passed as reference"
415
416 # Just the most basic test of dynamic_cast -- it is checked in
417 # the C++ tests.
418 gdb_test "python print (bool(gdb.parse_and_eval('base').dynamic_cast(gdb.lookup_type('Derived').pointer())))" \
419 True
420
421 # Likewise.
422 gdb_test "python print (gdb.parse_and_eval('base').dynamic_type)" \
423 "Derived \[*\]"
424 gdb_test "python print (gdb.parse_and_eval('base_ref').dynamic_type)" \
425 "Derived \[&\]"
426 # A static type case.
427 gdb_test "python print (gdb.parse_and_eval('5').dynamic_type)" \
428 "int"
429 }
430
431 gdb_breakpoint [gdb_get_line_number "break to inspect struct and union"]
432 gdb_continue_to_breakpoint "break to inspect struct and union"
433
434 gdb_py_test_silent_cmd "python intv = gdb.Value(1)" \
435 "Create a value for subscript test" 1
436 gdb_py_test_silent_cmd "python stringv = gdb.Value(\"foo\")" \
437 "Create a value for subscript test" 1
438
439 # Try to access an int with a subscript. This should fail.
440 gdb_test "python print (intv)" "1" "Baseline print of an int Python value"
441 gdb_test "python print (intv\[0\])" "gdb.error: Cannot subscript requested type.*" \
442 "Attempt to access an integer with a subscript"
443
444 # Try to access a string with a subscript. This should pass.
445 gdb_test "python print (stringv)" "foo." "Baseline print of a string Python value"
446 gdb_test "python print (stringv\[0\])" "f." "Attempt to access a string with a subscript"
447
448 # Try to access an int array via a pointer with a subscript. This should pass.
449 gdb_py_test_silent_cmd "print p" "Build pointer to array" 1
450 gdb_py_test_silent_cmd "python pointer = gdb.history(0)" "" 1
451 gdb_test "python print (pointer\[0\])" "1" "Access array via pointer with int subscript"
452 gdb_test "python print (pointer\[intv\])" "2" "Access array via pointer with value subscript"
453
454 # Try to access a single dimension array with a subscript to the
455 # result. This should fail.
456 gdb_test "python print (pointer\[intv\]\[0\])" "gdb.error: Cannot subscript requested type.*" \
457 "Attempt to access an integer with a subscript"
458
459 # Lastly, test subscript access to an array with multiple
460 # dimensions. This should pass.
461 gdb_py_test_silent_cmd "print {\"fu \",\"foo\",\"bar\"}" "Build array" 1
462 gdb_py_test_silent_cmd "python marray = gdb.history(0)" "" 1
463 gdb_test "python print (marray\[1\]\[2\])" "o." "Test multiple subscript"
464 }
465
466 # A few tests of gdb.parse_and_eval.
467 proc test_parse_and_eval {} {
468 gdb_test "python print (gdb.parse_and_eval ('23'))" "23" \
469 "parse_and_eval constant test"
470 gdb_test "python print (gdb.parse_and_eval ('5 + 7'))" "12" \
471 "parse_and_eval simple expression test"
472 gdb_test "python print (type(gdb.parse_and_eval ('5 + 7')))" \
473 ".(type|class) 'gdb.Value'."\
474 "parse_and_eval type test"
475 }
476
477 # Test that values are hashable.
478 proc test_value_hash {} {
479 gdb_py_test_multiple "Simple Python value dictionary" \
480 "python" "" \
481 "one = gdb.Value(1)" "" \
482 "two = gdb.Value(2)" "" \
483 "three = gdb.Value(3)" "" \
484 "vdict = {one:\"one str\",two:\"two str\",three:\"three str\"}" "" \
485 "end"
486 gdb_test "python print (vdict\[one\])" "one str" "Test dictionary hash"
487 gdb_test "python print (vdict\[two\])" "two str" "Test dictionary hash"
488 gdb_test "python print (vdict\[three\])" "three str" "Test dictionary hash"
489 gdb_test "python print (one.__hash__() == hash(one))" "True" "Test inbuilt hash"
490 }
491
492 # Build C version of executable. C++ is built later.
493 if { [build_inferior "${binfile}" "c"] < 0 } {
494 return -1
495 }
496
497 # Start with a fresh gdb.
498 clean_restart ${binfile}
499
500 # Skip all tests if Python scripting is not enabled.
501 if { [skip_python_tests] } { continue }
502
503 test_value_creation
504 test_value_numeric_ops
505 test_value_boolean
506 test_value_compare
507 test_objfiles
508 test_parse_and_eval
509 test_value_hash
510
511 # The following tests require execution.
512
513 if ![runto_main] then {
514 fail "Can't run to main"
515 return 0
516 }
517
518 test_value_in_inferior
519 test_inferior_function_call
520 test_lazy_strings
521 test_value_after_death
522
523 # Test either C or C++ values.
524
525 test_subscript_regression "${binfile}" "c"
526
527 if ![skip_cplus_tests] {
528 if { [build_inferior "${binfile}-cxx" "c++"] < 0 } {
529 return -1
530 }
531 with_test_prefix "c++" {
532 test_subscript_regression "${binfile}-cxx" "c++"
533 }
534 }
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