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[deliverable/binutils-gdb.git] / gdb / eval.c
CommitLineData
c906108c 1/* Evaluate expressions for GDB.
1bac305b 2
88b9d363 3 Copyright (C) 1986-2022 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
4de283e4
TT
21#include "symtab.h"
22#include "gdbtypes.h"
23#include "value.h"
c906108c 24#include "expression.h"
4de283e4 25#include "target.h"
c906108c 26#include "frame.h"
6c659fc2 27#include "gdbthread.h"
4de283e4 28#include "language.h" /* For CAST_IS_CONVERSION. */
4de283e4 29#include "cp-abi.h"
04714b91 30#include "infcall.h"
a9fa03de 31#include "objc-lang.h"
4de283e4 32#include "block.h"
5f9769d1 33#include "parser-defs.h"
4de283e4 34#include "cp-support.h"
d55e5aa6 35#include "ui-out.h"
4de283e4 36#include "regcache.h"
029a67e4 37#include "user-regs.h"
79a45b7d 38#include "valprint.h"
4de283e4
TT
39#include "gdb_obstack.h"
40#include "objfiles.h"
41#include "typeprint.h"
42#include <ctype.h>
e2803273 43#include "expop.h"
06dc61b9 44#include "c-exp.h"
328d42d8 45#include "inferior.h"
bc3b79fd 46
c906108c
SS
47\f
48/* Parse the string EXP as a C expression, evaluate it,
49 and return the result as a number. */
50
51CORE_ADDR
bbc13ae3 52parse_and_eval_address (const char *exp)
c906108c 53{
4d01a485
PA
54 expression_up expr = parse_expression (exp);
55
56 return value_as_address (evaluate_expression (expr.get ()));
c906108c
SS
57}
58
bb518678 59/* Like parse_and_eval_address, but treats the value of the expression
0963b4bd 60 as an integer, not an address, returns a LONGEST, not a CORE_ADDR. */
bb518678 61LONGEST
a1b8c4cc 62parse_and_eval_long (const char *exp)
bb518678 63{
4d01a485
PA
64 expression_up expr = parse_expression (exp);
65
66 return value_as_long (evaluate_expression (expr.get ()));
bb518678
DT
67}
68
61051030 69struct value *
bbc13ae3 70parse_and_eval (const char *exp)
c906108c 71{
4d01a485 72 expression_up expr = parse_expression (exp);
c906108c 73
4d01a485 74 return evaluate_expression (expr.get ());
c906108c
SS
75}
76
77/* Parse up to a comma (or to a closeparen)
78 in the string EXPP as an expression, evaluate it, and return the value.
79 EXPP is advanced to point to the comma. */
80
61051030 81struct value *
bbc13ae3 82parse_to_comma_and_eval (const char **expp)
c906108c 83{
582942f4 84 expression_up expr = parse_exp_1 (expp, 0, nullptr, 1);
c906108c 85
4d01a485 86 return evaluate_expression (expr.get ());
c906108c
SS
87}
88\f
c906108c 89
26f53cd3
TT
90/* See expression.h. */
91
92struct value *
93expression::evaluate (struct type *expect_type, enum noside noside)
94{
95 gdb::optional<enable_thread_stack_temporaries> stack_temporaries;
df5bc734 96 if (target_has_execution () && inferior_ptid != null_ptid
26f53cd3
TT
97 && language_defn->la_language == language_cplus
98 && !thread_stack_temporaries_enabled_p (inferior_thread ()))
99 stack_temporaries.emplace (inferior_thread ());
100
1eaebe02 101 struct value *retval = op->evaluate (expect_type, this, noside);
26f53cd3
TT
102
103 if (stack_temporaries.has_value ()
104 && value_in_thread_stack_temporaries (retval, inferior_thread ()))
105 retval = value_non_lval (retval);
106
107 return retval;
108}
109
efd7ff14 110/* See value.h. */
c906108c 111
61051030 112struct value *
efd7ff14 113evaluate_expression (struct expression *exp, struct type *expect_type)
c906108c 114{
26f53cd3 115 return exp->evaluate (expect_type, EVAL_NORMAL);
c906108c
SS
116}
117
118/* Evaluate an expression, avoiding all memory references
119 and getting a value whose type alone is correct. */
120
61051030 121struct value *
fba45db2 122evaluate_type (struct expression *exp)
c906108c 123{
26f53cd3 124 return exp->evaluate (nullptr, EVAL_AVOID_SIDE_EFFECTS);
c906108c
SS
125}
126
0cf6dd15
TJB
127/* Find the current value of a watchpoint on EXP. Return the value in
128 *VALP and *RESULTP and the chain of intermediate and final values
129 in *VAL_CHAIN. RESULTP and VAL_CHAIN may be NULL if the caller does
130 not need them.
131
3a1115a0
TT
132 If PRESERVE_ERRORS is true, then exceptions are passed through.
133 Otherwise, if PRESERVE_ERRORS is false, then if a memory error
134 occurs while evaluating the expression, *RESULTP will be set to
135 NULL. *RESULTP may be a lazy value, if the result could not be
136 read from memory. It is used to determine whether a value is
137 user-specified (we should watch the whole value) or intermediate
0cf6dd15
TJB
138 (we should watch only the bit used to locate the final value).
139
140 If the final value, or any intermediate value, could not be read
141 from memory, *VALP will be set to NULL. *VAL_CHAIN will still be
142 set to any referenced values. *VALP will never be a lazy value.
143 This is the value which we store in struct breakpoint.
144
a6535de1
TT
145 If VAL_CHAIN is non-NULL, the values put into *VAL_CHAIN will be
146 released from the value chain. If VAL_CHAIN is NULL, all generated
147 values will be left on the value chain. */
0cf6dd15
TJB
148
149void
1eaebe02 150fetch_subexp_value (struct expression *exp,
413403fc
TT
151 expr::operation *op,
152 struct value **valp, struct value **resultp,
a6535de1 153 std::vector<value_ref_ptr> *val_chain,
2e362716 154 bool preserve_errors)
0cf6dd15
TJB
155{
156 struct value *mark, *new_mark, *result;
0cf6dd15
TJB
157
158 *valp = NULL;
159 if (resultp)
160 *resultp = NULL;
161 if (val_chain)
a6535de1 162 val_chain->clear ();
0cf6dd15
TJB
163
164 /* Evaluate the expression. */
165 mark = value_mark ();
166 result = NULL;
167
a70b8144 168 try
0cf6dd15 169 {
1eaebe02 170 result = op->evaluate (nullptr, exp, EVAL_NORMAL);
0cf6dd15 171 }
230d2906 172 catch (const gdb_exception &ex)
0cf6dd15 173 {
3a1115a0 174 /* Ignore memory errors if we want watchpoints pointing at
0cf6dd15
TJB
175 inaccessible memory to still be created; otherwise, throw the
176 error to some higher catcher. */
177 switch (ex.error)
178 {
179 case MEMORY_ERROR:
3a1115a0
TT
180 if (!preserve_errors)
181 break;
565e0eda 182 /* Fall through. */
0cf6dd15 183 default:
eedc3f4f 184 throw;
0cf6dd15
TJB
185 break;
186 }
187 }
188
189 new_mark = value_mark ();
190 if (mark == new_mark)
191 return;
192 if (resultp)
193 *resultp = result;
194
195 /* Make sure it's not lazy, so that after the target stops again we
196 have a non-lazy previous value to compare with. */
8e7b59a5
KS
197 if (result != NULL)
198 {
199 if (!value_lazy (result))
200 *valp = result;
201 else
202 {
8e7b59a5 203
a70b8144 204 try
8e7b59a5
KS
205 {
206 value_fetch_lazy (result);
207 *valp = result;
208 }
230d2906 209 catch (const gdb_exception_error &except)
492d29ea
PA
210 {
211 }
8e7b59a5
KS
212 }
213 }
0cf6dd15
TJB
214
215 if (val_chain)
216 {
217 /* Return the chain of intermediate values. We use this to
218 decide which addresses to watch. */
a6535de1 219 *val_chain = value_release_to_mark (mark);
0cf6dd15
TJB
220 }
221}
222
4066e646
UW
223/* Promote value ARG1 as appropriate before performing a unary operation
224 on this argument.
225 If the result is not appropriate for any particular language then it
226 needs to patch this function. */
227
228void
229unop_promote (const struct language_defn *language, struct gdbarch *gdbarch,
230 struct value **arg1)
231{
232 struct type *type1;
233
234 *arg1 = coerce_ref (*arg1);
235 type1 = check_typedef (value_type (*arg1));
236
237 if (is_integral_type (type1))
238 {
239 switch (language->la_language)
240 {
241 default:
242 /* Perform integral promotion for ANSI C/C++.
85102364 243 If not appropriate for any particular language
4066e646
UW
244 it needs to modify this function. */
245 {
246 struct type *builtin_int = builtin_type (gdbarch)->builtin_int;
d7f9d729 247
4066e646
UW
248 if (TYPE_LENGTH (type1) < TYPE_LENGTH (builtin_int))
249 *arg1 = value_cast (builtin_int, *arg1);
250 }
251 break;
252 }
253 }
254}
255
256/* Promote values ARG1 and ARG2 as appropriate before performing a binary
257 operation on those two operands.
258 If the result is not appropriate for any particular language then it
259 needs to patch this function. */
260
261void
262binop_promote (const struct language_defn *language, struct gdbarch *gdbarch,
263 struct value **arg1, struct value **arg2)
264{
265 struct type *promoted_type = NULL;
266 struct type *type1;
267 struct type *type2;
268
269 *arg1 = coerce_ref (*arg1);
270 *arg2 = coerce_ref (*arg2);
271
272 type1 = check_typedef (value_type (*arg1));
273 type2 = check_typedef (value_type (*arg2));
274
78134374
SM
275 if ((type1->code () != TYPE_CODE_FLT
276 && type1->code () != TYPE_CODE_DECFLOAT
4066e646 277 && !is_integral_type (type1))
78134374
SM
278 || (type2->code () != TYPE_CODE_FLT
279 && type2->code () != TYPE_CODE_DECFLOAT
4066e646
UW
280 && !is_integral_type (type2)))
281 return;
282
0a12719e
JB
283 if (is_fixed_point_type (type1) || is_fixed_point_type (type2))
284 return;
285
78134374
SM
286 if (type1->code () == TYPE_CODE_DECFLOAT
287 || type2->code () == TYPE_CODE_DECFLOAT)
4066e646
UW
288 {
289 /* No promotion required. */
290 }
78134374
SM
291 else if (type1->code () == TYPE_CODE_FLT
292 || type2->code () == TYPE_CODE_FLT)
4066e646
UW
293 {
294 switch (language->la_language)
295 {
296 case language_c:
297 case language_cplus:
298 case language_asm:
299 case language_objc:
f4b8a18d 300 case language_opencl:
4066e646
UW
301 /* No promotion required. */
302 break;
303
304 default:
305 /* For other languages the result type is unchanged from gdb
306 version 6.7 for backward compatibility.
307 If either arg was long double, make sure that value is also long
308 double. Otherwise use double. */
309 if (TYPE_LENGTH (type1) * 8 > gdbarch_double_bit (gdbarch)
310 || TYPE_LENGTH (type2) * 8 > gdbarch_double_bit (gdbarch))
311 promoted_type = builtin_type (gdbarch)->builtin_long_double;
312 else
313 promoted_type = builtin_type (gdbarch)->builtin_double;
314 break;
315 }
316 }
78134374
SM
317 else if (type1->code () == TYPE_CODE_BOOL
318 && type2->code () == TYPE_CODE_BOOL)
4066e646
UW
319 {
320 /* No promotion required. */
321 }
322 else
323 /* Integral operations here. */
324 /* FIXME: Also mixed integral/booleans, with result an integer. */
325 {
326 const struct builtin_type *builtin = builtin_type (gdbarch);
327 unsigned int promoted_len1 = TYPE_LENGTH (type1);
328 unsigned int promoted_len2 = TYPE_LENGTH (type2);
c6d940a9
SM
329 int is_unsigned1 = type1->is_unsigned ();
330 int is_unsigned2 = type2->is_unsigned ();
4066e646
UW
331 unsigned int result_len;
332 int unsigned_operation;
333
334 /* Determine type length and signedness after promotion for
dda83cd7 335 both operands. */
4066e646
UW
336 if (promoted_len1 < TYPE_LENGTH (builtin->builtin_int))
337 {
338 is_unsigned1 = 0;
339 promoted_len1 = TYPE_LENGTH (builtin->builtin_int);
340 }
341 if (promoted_len2 < TYPE_LENGTH (builtin->builtin_int))
342 {
343 is_unsigned2 = 0;
344 promoted_len2 = TYPE_LENGTH (builtin->builtin_int);
345 }
346
347 if (promoted_len1 > promoted_len2)
348 {
349 unsigned_operation = is_unsigned1;
350 result_len = promoted_len1;
351 }
352 else if (promoted_len2 > promoted_len1)
353 {
354 unsigned_operation = is_unsigned2;
355 result_len = promoted_len2;
356 }
357 else
358 {
359 unsigned_operation = is_unsigned1 || is_unsigned2;
360 result_len = promoted_len1;
361 }
362
363 switch (language->la_language)
364 {
365 case language_c:
366 case language_cplus:
367 case language_asm:
368 case language_objc:
369 if (result_len <= TYPE_LENGTH (builtin->builtin_int))
370 {
371 promoted_type = (unsigned_operation
372 ? builtin->builtin_unsigned_int
373 : builtin->builtin_int);
374 }
375 else if (result_len <= TYPE_LENGTH (builtin->builtin_long))
376 {
377 promoted_type = (unsigned_operation
378 ? builtin->builtin_unsigned_long
379 : builtin->builtin_long);
380 }
381 else
382 {
383 promoted_type = (unsigned_operation
384 ? builtin->builtin_unsigned_long_long
385 : builtin->builtin_long_long);
386 }
387 break;
f4b8a18d
KW
388 case language_opencl:
389 if (result_len <= TYPE_LENGTH (lookup_signed_typename
b858499d 390 (language, "int")))
f4b8a18d
KW
391 {
392 promoted_type =
393 (unsigned_operation
b858499d
SM
394 ? lookup_unsigned_typename (language, "int")
395 : lookup_signed_typename (language, "int"));
f4b8a18d
KW
396 }
397 else if (result_len <= TYPE_LENGTH (lookup_signed_typename
b858499d 398 (language, "long")))
f4b8a18d
KW
399 {
400 promoted_type =
401 (unsigned_operation
b858499d
SM
402 ? lookup_unsigned_typename (language, "long")
403 : lookup_signed_typename (language,"long"));
f4b8a18d
KW
404 }
405 break;
4066e646
UW
406 default:
407 /* For other languages the result type is unchanged from gdb
408 version 6.7 for backward compatibility.
409 If either arg was long long, make sure that value is also long
410 long. Otherwise use long. */
411 if (unsigned_operation)
412 {
413 if (result_len > gdbarch_long_bit (gdbarch) / HOST_CHAR_BIT)
414 promoted_type = builtin->builtin_unsigned_long_long;
415 else
416 promoted_type = builtin->builtin_unsigned_long;
417 }
418 else
419 {
420 if (result_len > gdbarch_long_bit (gdbarch) / HOST_CHAR_BIT)
421 promoted_type = builtin->builtin_long_long;
422 else
423 promoted_type = builtin->builtin_long;
424 }
425 break;
426 }
427 }
428
429 if (promoted_type)
430 {
431 /* Promote both operands to common type. */
432 *arg1 = value_cast (promoted_type, *arg1);
433 *arg2 = value_cast (promoted_type, *arg2);
434 }
435}
436
89eef114 437static int
cc73bb8c 438ptrmath_type_p (const struct language_defn *lang, struct type *type)
89eef114
UW
439{
440 type = check_typedef (type);
aa006118 441 if (TYPE_IS_REFERENCE (type))
89eef114
UW
442 type = TYPE_TARGET_TYPE (type);
443
78134374 444 switch (type->code ())
89eef114
UW
445 {
446 case TYPE_CODE_PTR:
447 case TYPE_CODE_FUNC:
448 return 1;
449
450 case TYPE_CODE_ARRAY:
67bd3fd5 451 return type->is_vector () ? 0 : lang->c_style_arrays_p ();
89eef114
UW
452
453 default:
454 return 0;
455 }
456}
457
c83833f4
PA
458/* Represents a fake method with the given parameter types. This is
459 used by the parser to construct a temporary "expected" type for
3693fdb3
PA
460 method overload resolution. FLAGS is used as instance flags of the
461 new type, in order to be able to make the new type represent a
462 const/volatile overload. */
072bba3b 463
c83833f4 464class fake_method
072bba3b 465{
c83833f4
PA
466public:
467 fake_method (type_instance_flags flags,
468 int num_types, struct type **param_types);
469 ~fake_method ();
470
471 /* The constructed type. */
472 struct type *type () { return &m_type; }
473
474private:
475 struct type m_type {};
476 main_type m_main_type {};
477};
478
479fake_method::fake_method (type_instance_flags flags,
480 int num_types, struct type **param_types)
481{
482 struct type *type = &m_type;
483
484 TYPE_MAIN_TYPE (type) = &m_main_type;
072bba3b 485 TYPE_LENGTH (type) = 1;
67607e24 486 type->set_code (TYPE_CODE_METHOD);
072bba3b 487 TYPE_CHAIN (type) = type;
314ad88d 488 type->set_instance_flags (flags);
e314d629 489 if (num_types > 0)
a6fb9c08 490 {
e314d629
TT
491 if (param_types[num_types - 1] == NULL)
492 {
493 --num_types;
1d6286ed 494 type->set_has_varargs (true);
e314d629 495 }
78134374 496 else if (check_typedef (param_types[num_types - 1])->code ()
e314d629
TT
497 == TYPE_CODE_VOID)
498 {
499 --num_types;
500 /* Caller should have ensured this. */
501 gdb_assert (num_types == 0);
27e69b7a 502 type->set_is_prototyped (true);
e314d629 503 }
a6fb9c08 504 }
e314d629 505
2fabdf33
AB
506 /* We don't use TYPE_ZALLOC here to allocate space as TYPE is owned by
507 neither an objfile nor a gdbarch. As a result we must manually
508 allocate memory for auxiliary fields, and free the memory ourselves
509 when we are done with it. */
5e33d5f4 510 type->set_num_fields (num_types);
3cabb6b0
SM
511 type->set_fields
512 ((struct field *) xzalloc (sizeof (struct field) * num_types));
072bba3b
KS
513
514 while (num_types-- > 0)
5d14b6e5 515 type->field (num_types).set_type (param_types[num_types]);
c83833f4 516}
072bba3b 517
c83833f4
PA
518fake_method::~fake_method ()
519{
80fc5e77 520 xfree (m_type.fields ());
072bba3b
KS
521}
522
44b675c8
TT
523namespace expr
524{
525
526value *
527type_instance_operation::evaluate (struct type *expect_type,
528 struct expression *exp,
529 enum noside noside)
530{
531 type_instance_flags flags = std::get<0> (m_storage);
532 std::vector<type *> &types = std::get<1> (m_storage);
533
534 fake_method fake_expect_type (flags, types.size (), types.data ());
535 return std::get<2> (m_storage)->evaluate (fake_expect_type.type (),
536 exp, noside);
537}
538
539}
540
fe13dfec
PA
541/* Helper for evaluating an OP_VAR_VALUE. */
542
ced9779b 543value *
fe13dfec
PA
544evaluate_var_value (enum noside noside, const block *blk, symbol *var)
545{
546 /* JYG: We used to just return value_zero of the symbol type if
547 we're asked to avoid side effects. Otherwise we return
548 value_of_variable (...). However I'm not sure if
549 value_of_variable () has any side effect. We need a full value
550 object returned here for whatis_exp () to call evaluate_type ()
551 and then pass the full value to value_rtti_target_type () if we
552 are dealing with a pointer or reference to a base class and print
553 object is on. */
554
555 struct value *ret = NULL;
556
a70b8144 557 try
fe13dfec
PA
558 {
559 ret = value_of_variable (var, blk);
560 }
561
230d2906 562 catch (const gdb_exception_error &except)
fe13dfec
PA
563 {
564 if (noside != EVAL_AVOID_SIDE_EFFECTS)
eedc3f4f 565 throw;
fe13dfec
PA
566
567 ret = value_zero (SYMBOL_TYPE (var), not_lval);
568 }
fe13dfec
PA
569
570 return ret;
571}
572
e82a5afc
TT
573namespace expr
574
575{
576
577value *
578var_value_operation::evaluate (struct type *expect_type,
579 struct expression *exp,
580 enum noside noside)
581{
9e5e03df 582 symbol *var = std::get<0> (m_storage).symbol;
e82a5afc
TT
583 if (SYMBOL_TYPE (var)->code () == TYPE_CODE_ERROR)
584 error_unknown_type (var->print_name ());
9e5e03df 585 return evaluate_var_value (noside, std::get<0> (m_storage).block, var);
e82a5afc
TT
586}
587
588} /* namespace expr */
589
74ea4be4
PA
590/* Helper for evaluating an OP_VAR_MSYM_VALUE. */
591
ced9779b 592value *
74ea4be4
PA
593evaluate_var_msym_value (enum noside noside,
594 struct objfile *objfile, minimal_symbol *msymbol)
595{
8388016d
PA
596 CORE_ADDR address;
597 type *the_type = find_minsym_type_and_address (msymbol, objfile, &address);
598
0becda7a 599 if (noside == EVAL_AVOID_SIDE_EFFECTS && !the_type->is_gnu_ifunc ())
8388016d 600 return value_zero (the_type, not_lval);
74ea4be4 601 else
8388016d 602 return value_at_lazy (the_type, address);
74ea4be4
PA
603}
604
6d816919 605/* See expression.h. */
e69570ee 606
6d816919
AB
607value *
608evaluate_subexp_do_call (expression *exp, enum noside noside,
1ab8280d
TT
609 value *callee,
610 gdb::array_view<value *> argvec,
6d816919
AB
611 const char *function_name,
612 type *default_return_type)
e69570ee 613{
1ab8280d 614 if (callee == NULL)
e69570ee
PA
615 error (_("Cannot evaluate function -- may be inlined"));
616 if (noside == EVAL_AVOID_SIDE_EFFECTS)
617 {
618 /* If the return type doesn't look like a function type,
619 call an error. This can happen if somebody tries to turn
620 a variable into a function call. */
621
1ab8280d 622 type *ftype = value_type (callee);
e69570ee 623
78134374 624 if (ftype->code () == TYPE_CODE_INTERNAL_FUNCTION)
e69570ee
PA
625 {
626 /* We don't know anything about what the internal
627 function might return, but we have to return
628 something. */
629 return value_zero (builtin_type (exp->gdbarch)->builtin_int,
630 not_lval);
631 }
78134374 632 else if (ftype->code () == TYPE_CODE_XMETHOD)
e69570ee 633 {
1ab8280d 634 type *return_type = result_type_of_xmethod (callee, argvec);
e69570ee
PA
635
636 if (return_type == NULL)
637 error (_("Xmethod is missing return type."));
638 return value_zero (return_type, not_lval);
639 }
78134374
SM
640 else if (ftype->code () == TYPE_CODE_FUNC
641 || ftype->code () == TYPE_CODE_METHOD)
e69570ee 642 {
0becda7a 643 if (ftype->is_gnu_ifunc ())
8388016d 644 {
1ab8280d 645 CORE_ADDR address = value_address (callee);
8388016d
PA
646 type *resolved_type = find_gnu_ifunc_target_type (address);
647
648 if (resolved_type != NULL)
649 ftype = resolved_type;
650 }
651
e69570ee
PA
652 type *return_type = TYPE_TARGET_TYPE (ftype);
653
654 if (return_type == NULL)
655 return_type = default_return_type;
656
657 if (return_type == NULL)
658 error_call_unknown_return_type (function_name);
659
660 return allocate_value (return_type);
661 }
662 else
663 error (_("Expression of type other than "
664 "\"Function returning ...\" used as function"));
665 }
1ab8280d 666 switch (value_type (callee)->code ())
e69570ee
PA
667 {
668 case TYPE_CODE_INTERNAL_FUNCTION:
669 return call_internal_function (exp->gdbarch, exp->language_defn,
1ab8280d 670 callee, argvec.size (), argvec.data ());
e69570ee 671 case TYPE_CODE_XMETHOD:
1ab8280d 672 return call_xmethod (callee, argvec);
e69570ee 673 default:
1ab8280d 674 return call_function_by_hand (callee, default_return_type, argvec);
e69570ee
PA
675 }
676}
677
a00b7254
TT
678namespace expr
679{
680
681value *
682operation::evaluate_funcall (struct type *expect_type,
683 struct expression *exp,
684 enum noside noside,
685 const char *function_name,
686 const std::vector<operation_up> &args)
687{
688 std::vector<value *> vals (args.size ());
689
690 value *callee = evaluate_with_coercion (exp, noside);
ccdc02ed
TT
691 struct type *type = value_type (callee);
692 if (type->code () == TYPE_CODE_PTR)
693 type = TYPE_TARGET_TYPE (type);
a00b7254 694 for (int i = 0; i < args.size (); ++i)
ccdc02ed
TT
695 {
696 if (i < type->num_fields ())
697 vals[i] = args[i]->evaluate (type->field (i).type (), exp, noside);
698 else
699 vals[i] = args[i]->evaluate_with_coercion (exp, noside);
700 }
a00b7254
TT
701
702 return evaluate_subexp_do_call (exp, noside, callee, vals,
703 function_name, expect_type);
704}
705
706value *
707var_value_operation::evaluate_funcall (struct type *expect_type,
708 struct expression *exp,
709 enum noside noside,
710 const std::vector<operation_up> &args)
711{
712 if (!overload_resolution
713 || exp->language_defn->la_language != language_cplus)
714 return operation::evaluate_funcall (expect_type, exp, noside, args);
715
716 std::vector<value *> argvec (args.size ());
717 for (int i = 0; i < args.size (); ++i)
718 argvec[i] = args[i]->evaluate_with_coercion (exp, noside);
719
720 struct symbol *symp;
721 find_overload_match (argvec, NULL, NON_METHOD,
9e5e03df 722 NULL, std::get<0> (m_storage).symbol,
a00b7254
TT
723 NULL, &symp, NULL, 0, noside);
724
725 if (SYMBOL_TYPE (symp)->code () == TYPE_CODE_ERROR)
726 error_unknown_type (symp->print_name ());
9e5e03df
TT
727 value *callee = evaluate_var_value (noside, std::get<0> (m_storage).block,
728 symp);
a00b7254
TT
729
730 return evaluate_subexp_do_call (exp, noside, callee, argvec,
731 nullptr, expect_type);
732}
733
734value *
735scope_operation::evaluate_funcall (struct type *expect_type,
736 struct expression *exp,
737 enum noside noside,
738 const std::vector<operation_up> &args)
739{
740 if (!overload_resolution
741 || exp->language_defn->la_language != language_cplus)
742 return operation::evaluate_funcall (expect_type, exp, noside, args);
743
744 /* Unpack it locally so we can properly handle overload
745 resolution. */
746 const std::string &name = std::get<1> (m_storage);
747 struct type *type = std::get<0> (m_storage);
748
749 symbol *function = NULL;
750 const char *function_name = NULL;
751 std::vector<value *> argvec (1 + args.size ());
752 if (type->code () == TYPE_CODE_NAMESPACE)
753 {
754 function = cp_lookup_symbol_namespace (type->name (),
755 name.c_str (),
756 get_selected_block (0),
757 VAR_DOMAIN).symbol;
758 if (function == NULL)
759 error (_("No symbol \"%s\" in namespace \"%s\"."),
760 name.c_str (), type->name ());
761 }
762 else
763 {
764 gdb_assert (type->code () == TYPE_CODE_STRUCT
765 || type->code () == TYPE_CODE_UNION);
766 function_name = name.c_str ();
767
768 /* We need a properly typed value for method lookup. */
769 argvec[0] = value_zero (type, lval_memory);
770 }
771
772 for (int i = 0; i < args.size (); ++i)
773 argvec[i + 1] = args[i]->evaluate_with_coercion (exp, noside);
774 gdb::array_view<value *> arg_view = argvec;
775
776 value *callee = nullptr;
777 if (function_name != nullptr)
778 {
779 int static_memfuncp;
780
781 find_overload_match (arg_view, function_name, METHOD,
782 &argvec[0], nullptr, &callee, nullptr,
783 &static_memfuncp, 0, noside);
784 if (!static_memfuncp)
785 {
786 /* For the time being, we don't handle this. */
787 error (_("Call to overloaded function %s requires "
788 "`this' pointer"),
789 function_name);
790 }
791
792 arg_view = arg_view.slice (1);
793 }
794 else
795 {
796 symbol *symp;
797 arg_view = arg_view.slice (1);
798 find_overload_match (arg_view, nullptr,
799 NON_METHOD, nullptr, function,
800 nullptr, &symp, nullptr, 1, noside);
801 callee = value_of_variable (symp, get_selected_block (0));
802 }
803
804 return evaluate_subexp_do_call (exp, noside, callee, arg_view,
805 nullptr, expect_type);
806}
807
808value *
809structop_member_base::evaluate_funcall (struct type *expect_type,
810 struct expression *exp,
811 enum noside noside,
812 const std::vector<operation_up> &args)
813{
814 /* First, evaluate the structure into lhs. */
815 value *lhs;
816 if (opcode () == STRUCTOP_MEMBER)
817 lhs = std::get<0> (m_storage)->evaluate_for_address (exp, noside);
818 else
819 lhs = std::get<0> (m_storage)->evaluate (nullptr, exp, noside);
820
821 std::vector<value *> vals (args.size () + 1);
822 gdb::array_view<value *> val_view = vals;
823 /* If the function is a virtual function, then the aggregate
824 value (providing the structure) plays its part by providing
825 the vtable. Otherwise, it is just along for the ride: call
826 the function directly. */
827 value *rhs = std::get<1> (m_storage)->evaluate (nullptr, exp, noside);
828 value *callee;
829
830 type *a1_type = check_typedef (value_type (rhs));
831 if (a1_type->code () == TYPE_CODE_METHODPTR)
832 {
833 if (noside == EVAL_AVOID_SIDE_EFFECTS)
834 callee = value_zero (TYPE_TARGET_TYPE (a1_type), not_lval);
835 else
836 callee = cplus_method_ptr_to_value (&lhs, rhs);
837
838 vals[0] = lhs;
839 }
840 else if (a1_type->code () == TYPE_CODE_MEMBERPTR)
841 {
842 struct type *type_ptr
843 = lookup_pointer_type (TYPE_SELF_TYPE (a1_type));
844 struct type *target_type_ptr
845 = lookup_pointer_type (TYPE_TARGET_TYPE (a1_type));
846
847 /* Now, convert this value to an address. */
848 lhs = value_cast (type_ptr, lhs);
849
850 long mem_offset = value_as_long (rhs);
851
852 callee = value_from_pointer (target_type_ptr,
853 value_as_long (lhs) + mem_offset);
854 callee = value_ind (callee);
855
856 val_view = val_view.slice (1);
857 }
858 else
859 error (_("Non-pointer-to-member value used in pointer-to-member "
860 "construct"));
861
862 for (int i = 0; i < args.size (); ++i)
863 vals[i + 1] = args[i]->evaluate_with_coercion (exp, noside);
864
865 return evaluate_subexp_do_call (exp, noside, callee, val_view,
866 nullptr, expect_type);
867
868}
869
870value *
871structop_base_operation::evaluate_funcall
872 (struct type *expect_type, struct expression *exp, enum noside noside,
873 const std::vector<operation_up> &args)
874{
13221aec
AB
875 /* Allocate space for the function call arguments, Including space for a
876 `this' pointer at the start. */
877 std::vector<value *> vals (args.size () + 1);
a00b7254
TT
878 /* First, evaluate the structure into vals[0]. */
879 enum exp_opcode op = opcode ();
880 if (op == STRUCTOP_STRUCT)
881 {
882 /* If v is a variable in a register, and the user types
883 v.method (), this will produce an error, because v has no
884 address.
885
886 A possible way around this would be to allocate a copy of
887 the variable on the stack, copy in the contents, call the
888 function, and copy out the contents. I.e. convert this
889 from call by reference to call by copy-return (or
890 whatever it's called). However, this does not work
891 because it is not the same: the method being called could
892 stash a copy of the address, and then future uses through
893 that address (after the method returns) would be expected
894 to use the variable itself, not some copy of it. */
895 vals[0] = std::get<0> (m_storage)->evaluate_for_address (exp, noside);
896 }
897 else
898 {
899 vals[0] = std::get<0> (m_storage)->evaluate (nullptr, exp, noside);
900 /* Check to see if the operator '->' has been overloaded.
901 If the operator has been overloaded replace vals[0] with the
902 value returned by the custom operator and continue
903 evaluation. */
904 while (unop_user_defined_p (op, vals[0]))
905 {
906 struct value *value = nullptr;
907 try
908 {
909 value = value_x_unop (vals[0], op, noside);
910 }
911 catch (const gdb_exception_error &except)
912 {
913 if (except.error == NOT_FOUND_ERROR)
914 break;
915 else
916 throw;
917 }
918
919 vals[0] = value;
920 }
921 }
922
13221aec
AB
923 /* Evaluate the arguments. The '+ 1' here is to allow for the `this'
924 pointer we placed into vals[0]. */
a00b7254
TT
925 for (int i = 0; i < args.size (); ++i)
926 vals[i + 1] = args[i]->evaluate_with_coercion (exp, noside);
79bd4d34 927
13221aec
AB
928 /* The array view includes the `this' pointer. */
929 gdb::array_view<value *> arg_view (vals);
a00b7254
TT
930
931 int static_memfuncp;
932 value *callee;
933 const char *tstr = std::get<1> (m_storage).c_str ();
934 if (overload_resolution
935 && exp->language_defn->la_language == language_cplus)
936 {
937 /* Language is C++, do some overload resolution before
938 evaluation. */
939 value *val0 = vals[0];
940 find_overload_match (arg_view, tstr, METHOD,
941 &val0, nullptr, &callee, nullptr,
942 &static_memfuncp, 0, noside);
943 vals[0] = val0;
944 }
945 else
946 /* Non-C++ case -- or no overload resolution. */
947 {
948 struct value *temp = vals[0];
949
158cc4fe 950 callee = value_struct_elt (&temp, arg_view, tstr,
a00b7254
TT
951 &static_memfuncp,
952 op == STRUCTOP_STRUCT
953 ? "structure" : "structure pointer");
954 /* value_struct_elt updates temp with the correct value of the
955 ``this'' pointer if necessary, so modify it to reflect any
956 ``this'' changes. */
957 vals[0] = value_from_longest (lookup_pointer_type (value_type (temp)),
958 value_address (temp)
959 + value_embedded_offset (temp));
960 }
961
962 /* Take out `this' if needed. */
963 if (static_memfuncp)
964 arg_view = arg_view.slice (1);
965
966 return evaluate_subexp_do_call (exp, noside, callee, arg_view,
967 nullptr, expect_type);
968}
969
970
971} /* namespace expr */
972
60e22c1e
HD
973/* Return true if type is integral or reference to integral */
974
975static bool
976is_integral_or_integral_reference (struct type *type)
977{
978 if (is_integral_type (type))
979 return true;
980
981 type = check_typedef (type);
982 return (type != nullptr
983 && TYPE_IS_REFERENCE (type)
984 && is_integral_type (TYPE_TARGET_TYPE (type)));
985}
986
ea2d29f7
TT
987/* Helper function that implements the body of OP_SCOPE. */
988
d5ab122c 989struct value *
ea2d29f7
TT
990eval_op_scope (struct type *expect_type, struct expression *exp,
991 enum noside noside,
992 struct type *type, const char *string)
993{
ea2d29f7
TT
994 struct value *arg1 = value_aggregate_elt (type, string, expect_type,
995 0, noside);
996 if (arg1 == NULL)
997 error (_("There is no field named %s"), string);
998 return arg1;
999}
1000
50b98adc
TT
1001/* Helper function that implements the body of OP_VAR_ENTRY_VALUE. */
1002
b5cc3923 1003struct value *
50b98adc
TT
1004eval_op_var_entry_value (struct type *expect_type, struct expression *exp,
1005 enum noside noside, symbol *sym)
1006{
50b98adc
TT
1007 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1008 return value_zero (SYMBOL_TYPE (sym), not_lval);
1009
1010 if (SYMBOL_COMPUTED_OPS (sym) == NULL
1011 || SYMBOL_COMPUTED_OPS (sym)->read_variable_at_entry == NULL)
1012 error (_("Symbol \"%s\" does not have any specific entry value"),
1013 sym->print_name ());
1014
1015 struct frame_info *frame = get_selected_frame (NULL);
1016 return SYMBOL_COMPUTED_OPS (sym)->read_variable_at_entry (sym, frame);
1017}
1018
c0df9289
TT
1019/* Helper function that implements the body of OP_VAR_MSYM_VALUE. */
1020
0c8effa3 1021struct value *
c0df9289
TT
1022eval_op_var_msym_value (struct type *expect_type, struct expression *exp,
1023 enum noside noside, bool outermost_p,
9c79936b 1024 bound_minimal_symbol msymbol)
c0df9289 1025{
9c79936b
TT
1026 value *val = evaluate_var_msym_value (noside, msymbol.objfile,
1027 msymbol.minsym);
c0df9289
TT
1028
1029 struct type *type = value_type (val);
1030 if (type->code () == TYPE_CODE_ERROR
1031 && (noside != EVAL_AVOID_SIDE_EFFECTS || !outermost_p))
9c79936b 1032 error_unknown_type (msymbol.minsym->print_name ());
c0df9289
TT
1033 return val;
1034}
1035
9b1d8af6
TT
1036/* Helper function that implements the body of OP_FUNC_STATIC_VAR. */
1037
17679395 1038struct value *
9b1d8af6
TT
1039eval_op_func_static_var (struct type *expect_type, struct expression *exp,
1040 enum noside noside,
1041 value *func, const char *var)
1042{
9b1d8af6
TT
1043 CORE_ADDR addr = value_address (func);
1044 const block *blk = block_for_pc (addr);
1045 struct block_symbol sym = lookup_symbol (var, blk, VAR_DOMAIN, NULL);
1046 if (sym.symbol == NULL)
1047 error (_("No symbol \"%s\" in specified context."), var);
1048 return evaluate_var_value (noside, sym.block, sym.symbol);
1049}
1050
ffff730b
TT
1051/* Helper function that implements the body of OP_REGISTER. */
1052
55bdbff8 1053struct value *
ffff730b
TT
1054eval_op_register (struct type *expect_type, struct expression *exp,
1055 enum noside noside, const char *name)
1056{
1057 int regno;
1058 struct value *val;
1059
1060 regno = user_reg_map_name_to_regnum (exp->gdbarch,
1061 name, strlen (name));
1062 if (regno == -1)
1063 error (_("Register $%s not available."), name);
1064
1065 /* In EVAL_AVOID_SIDE_EFFECTS mode, we only need to return
1066 a value with the appropriate register type. Unfortunately,
1067 we don't have easy access to the type of user registers.
1068 So for these registers, we fetch the register value regardless
1069 of the evaluation mode. */
1070 if (noside == EVAL_AVOID_SIDE_EFFECTS
1071 && regno < gdbarch_num_cooked_regs (exp->gdbarch))
1072 val = value_zero (register_type (exp->gdbarch, regno), not_lval);
1073 else
1074 val = value_of_register (regno, get_selected_frame (NULL));
1075 if (val == NULL)
1076 error (_("Value of register %s not available."), name);
1077 else
1078 return val;
1079}
1080
14a1c64a
TT
1081/* Helper function that implements the body of OP_STRING. */
1082
b50db09f 1083struct value *
14a1c64a
TT
1084eval_op_string (struct type *expect_type, struct expression *exp,
1085 enum noside noside, int len, const char *string)
1086{
14a1c64a
TT
1087 struct type *type = language_string_char_type (exp->language_defn,
1088 exp->gdbarch);
1089 return value_string (string, len, type);
1090}
1091
f871bae1
TT
1092/* Helper function that implements the body of OP_OBJC_SELECTOR. */
1093
09db3700 1094struct value *
f871bae1
TT
1095eval_op_objc_selector (struct type *expect_type, struct expression *exp,
1096 enum noside noside,
1097 const char *sel)
1098{
f871bae1
TT
1099 struct type *selector_type = builtin_type (exp->gdbarch)->builtin_data_ptr;
1100 return value_from_longest (selector_type,
1101 lookup_child_selector (exp->gdbarch, sel));
1102}
1103
5c2f201e
TT
1104/* Helper function that implements the body of BINOP_CONCAT. */
1105
e51e26a0 1106struct value *
5c2f201e 1107eval_op_concat (struct type *expect_type, struct expression *exp,
e51e26a0 1108 enum noside noside, struct value *arg1, struct value *arg2)
5c2f201e 1109{
e51e26a0
TT
1110 if (binop_user_defined_p (BINOP_CONCAT, arg1, arg2))
1111 return value_x_binop (arg1, arg2, BINOP_CONCAT, OP_NULL, noside);
5c2f201e
TT
1112 else
1113 return value_concat (arg1, arg2);
1114}
1115
f960a617
TT
1116/* A helper function for TERNOP_SLICE. */
1117
1594e0bb 1118struct value *
f960a617
TT
1119eval_op_ternop (struct type *expect_type, struct expression *exp,
1120 enum noside noside,
1121 struct value *array, struct value *low, struct value *upper)
1122{
f960a617
TT
1123 int lowbound = value_as_long (low);
1124 int upperbound = value_as_long (upper);
1125 return value_slice (array, lowbound, upperbound - lowbound + 1);
1126}
1127
3e96c4fc
TT
1128/* A helper function for STRUCTOP_STRUCT. */
1129
808b22cf 1130struct value *
3e96c4fc
TT
1131eval_op_structop_struct (struct type *expect_type, struct expression *exp,
1132 enum noside noside,
1133 struct value *arg1, const char *string)
1134{
158cc4fe 1135 struct value *arg3 = value_struct_elt (&arg1, {}, string,
3e96c4fc
TT
1136 NULL, "structure");
1137 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1138 arg3 = value_zero (value_type (arg3), VALUE_LVAL (arg3));
1139 return arg3;
1140}
1141
fb461aa3
TT
1142/* A helper function for STRUCTOP_PTR. */
1143
ab0609be 1144struct value *
fb461aa3 1145eval_op_structop_ptr (struct type *expect_type, struct expression *exp,
ab0609be 1146 enum noside noside,
fb461aa3
TT
1147 struct value *arg1, const char *string)
1148{
fb461aa3
TT
1149 /* Check to see if operator '->' has been overloaded. If so replace
1150 arg1 with the value returned by evaluating operator->(). */
ab0609be 1151 while (unop_user_defined_p (STRUCTOP_PTR, arg1))
fb461aa3
TT
1152 {
1153 struct value *value = NULL;
1154 try
1155 {
ab0609be 1156 value = value_x_unop (arg1, STRUCTOP_PTR, noside);
fb461aa3
TT
1157 }
1158
1159 catch (const gdb_exception_error &except)
1160 {
1161 if (except.error == NOT_FOUND_ERROR)
1162 break;
1163 else
1164 throw;
1165 }
1166
1167 arg1 = value;
1168 }
1169
1170 /* JYG: if print object is on we need to replace the base type
1171 with rtti type in order to continue on with successful
1172 lookup of member / method only available in the rtti type. */
1173 {
1174 struct type *arg_type = value_type (arg1);
1175 struct type *real_type;
1176 int full, using_enc;
1177 LONGEST top;
1178 struct value_print_options opts;
1179
1180 get_user_print_options (&opts);
1181 if (opts.objectprint && TYPE_TARGET_TYPE (arg_type)
1182 && (TYPE_TARGET_TYPE (arg_type)->code () == TYPE_CODE_STRUCT))
1183 {
1184 real_type = value_rtti_indirect_type (arg1, &full, &top,
1185 &using_enc);
1186 if (real_type)
1187 arg1 = value_cast (real_type, arg1);
1188 }
1189 }
1190
158cc4fe 1191 struct value *arg3 = value_struct_elt (&arg1, {}, string,
fb461aa3
TT
1192 NULL, "structure pointer");
1193 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1194 arg3 = value_zero (value_type (arg3), VALUE_LVAL (arg3));
1195 return arg3;
1196}
1197
b7a96ed2
TT
1198/* A helper function for STRUCTOP_MEMBER. */
1199
07f724a8 1200struct value *
b7a96ed2
TT
1201eval_op_member (struct type *expect_type, struct expression *exp,
1202 enum noside noside,
1203 struct value *arg1, struct value *arg2)
1204{
1205 long mem_offset;
1206
b7a96ed2
TT
1207 struct value *arg3;
1208 struct type *type = check_typedef (value_type (arg2));
1209 switch (type->code ())
1210 {
1211 case TYPE_CODE_METHODPTR:
1212 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1213 return value_zero (TYPE_TARGET_TYPE (type), not_lval);
1214 else
1215 {
1216 arg2 = cplus_method_ptr_to_value (&arg1, arg2);
1217 gdb_assert (value_type (arg2)->code () == TYPE_CODE_PTR);
1218 return value_ind (arg2);
1219 }
1220
1221 case TYPE_CODE_MEMBERPTR:
1222 /* Now, convert these values to an address. */
1223 arg1 = value_cast_pointers (lookup_pointer_type (TYPE_SELF_TYPE (type)),
1224 arg1, 1);
1225
1226 mem_offset = value_as_long (arg2);
1227
1228 arg3 = value_from_pointer (lookup_pointer_type (TYPE_TARGET_TYPE (type)),
1229 value_as_long (arg1) + mem_offset);
1230 return value_ind (arg3);
1231
1232 default:
1233 error (_("non-pointer-to-member value used "
1234 "in pointer-to-member construct"));
1235 }
1236}
1237
aedaf9ac
TT
1238/* A helper function for BINOP_ADD. */
1239
a94323b6 1240struct value *
aedaf9ac 1241eval_op_add (struct type *expect_type, struct expression *exp,
a94323b6 1242 enum noside noside,
aedaf9ac
TT
1243 struct value *arg1, struct value *arg2)
1244{
a94323b6
TT
1245 if (binop_user_defined_p (BINOP_ADD, arg1, arg2))
1246 return value_x_binop (arg1, arg2, BINOP_ADD, OP_NULL, noside);
aedaf9ac
TT
1247 else if (ptrmath_type_p (exp->language_defn, value_type (arg1))
1248 && is_integral_or_integral_reference (value_type (arg2)))
1249 return value_ptradd (arg1, value_as_long (arg2));
1250 else if (ptrmath_type_p (exp->language_defn, value_type (arg2))
1251 && is_integral_or_integral_reference (value_type (arg1)))
1252 return value_ptradd (arg2, value_as_long (arg1));
1253 else
1254 {
1255 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1256 return value_binop (arg1, arg2, BINOP_ADD);
1257 }
1258}
1259
d9790e22
TT
1260/* A helper function for BINOP_SUB. */
1261
5133d78b 1262struct value *
d9790e22 1263eval_op_sub (struct type *expect_type, struct expression *exp,
5133d78b 1264 enum noside noside,
d9790e22
TT
1265 struct value *arg1, struct value *arg2)
1266{
5133d78b
TT
1267 if (binop_user_defined_p (BINOP_SUB, arg1, arg2))
1268 return value_x_binop (arg1, arg2, BINOP_SUB, OP_NULL, noside);
d9790e22
TT
1269 else if (ptrmath_type_p (exp->language_defn, value_type (arg1))
1270 && ptrmath_type_p (exp->language_defn, value_type (arg2)))
1271 {
1272 /* FIXME -- should be ptrdiff_t */
1273 struct type *type = builtin_type (exp->gdbarch)->builtin_long;
1274 return value_from_longest (type, value_ptrdiff (arg1, arg2));
1275 }
1276 else if (ptrmath_type_p (exp->language_defn, value_type (arg1))
1277 && is_integral_or_integral_reference (value_type (arg2)))
1278 return value_ptradd (arg1, - value_as_long (arg2));
1279 else
1280 {
1281 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1282 return value_binop (arg1, arg2, BINOP_SUB);
1283 }
1284}
1285
7cdcdd02
TT
1286/* Helper function for several different binary operations. */
1287
373907ff 1288struct value *
7cdcdd02
TT
1289eval_op_binary (struct type *expect_type, struct expression *exp,
1290 enum noside noside, enum exp_opcode op,
1291 struct value *arg1, struct value *arg2)
1292{
7cdcdd02
TT
1293 if (binop_user_defined_p (op, arg1, arg2))
1294 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1295 else
1296 {
1297 /* If EVAL_AVOID_SIDE_EFFECTS and we're dividing by zero,
1298 fudge arg2 to avoid division-by-zero, the caller is
1299 (theoretically) only looking for the type of the result. */
1300 if (noside == EVAL_AVOID_SIDE_EFFECTS
1301 /* ??? Do we really want to test for BINOP_MOD here?
1302 The implementation of value_binop gives it a well-defined
1303 value. */
1304 && (op == BINOP_DIV
1305 || op == BINOP_INTDIV
1306 || op == BINOP_REM
1307 || op == BINOP_MOD)
1308 && value_logical_not (arg2))
1309 {
1310 struct value *v_one;
1311
1312 v_one = value_one (value_type (arg2));
1313 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &v_one);
1314 return value_binop (arg1, v_one, op);
1315 }
1316 else
1317 {
1318 /* For shift and integer exponentiation operations,
1319 only promote the first argument. */
1320 if ((op == BINOP_LSH || op == BINOP_RSH || op == BINOP_EXP)
1321 && is_integral_type (value_type (arg2)))
1322 unop_promote (exp->language_defn, exp->gdbarch, &arg1);
1323 else
1324 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1325
1326 return value_binop (arg1, arg2, op);
1327 }
1328 }
1329}
1330
288d26bc
TT
1331/* A helper function for BINOP_SUBSCRIPT. */
1332
224d6424 1333struct value *
288d26bc
TT
1334eval_op_subscript (struct type *expect_type, struct expression *exp,
1335 enum noside noside, enum exp_opcode op,
1336 struct value *arg1, struct value *arg2)
1337{
288d26bc
TT
1338 if (binop_user_defined_p (op, arg1, arg2))
1339 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1340 else
1341 {
1342 /* If the user attempts to subscript something that is not an
1343 array or pointer type (like a plain int variable for example),
1344 then report this as an error. */
1345
1346 arg1 = coerce_ref (arg1);
1347 struct type *type = check_typedef (value_type (arg1));
1348 if (type->code () != TYPE_CODE_ARRAY
1349 && type->code () != TYPE_CODE_PTR)
1350 {
1351 if (type->name ())
1352 error (_("cannot subscript something of type `%s'"),
1353 type->name ());
1354 else
1355 error (_("cannot subscript requested type"));
1356 }
1357
1358 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1359 return value_zero (TYPE_TARGET_TYPE (type), VALUE_LVAL (arg1));
1360 else
1361 return value_subscript (arg1, value_as_long (arg2));
1362 }
1363}
1364
0cc96de8
TT
1365/* A helper function for BINOP_EQUAL. */
1366
46916f2b 1367struct value *
0cc96de8
TT
1368eval_op_equal (struct type *expect_type, struct expression *exp,
1369 enum noside noside, enum exp_opcode op,
1370 struct value *arg1, struct value *arg2)
1371{
0cc96de8
TT
1372 if (binop_user_defined_p (op, arg1, arg2))
1373 {
1374 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1375 }
1376 else
1377 {
1378 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1379 int tem = value_equal (arg1, arg2);
1380 struct type *type = language_bool_type (exp->language_defn,
1381 exp->gdbarch);
1382 return value_from_longest (type, (LONGEST) tem);
1383 }
1384}
1385
1fcb3559
TT
1386/* A helper function for BINOP_NOTEQUAL. */
1387
46916f2b 1388struct value *
1fcb3559
TT
1389eval_op_notequal (struct type *expect_type, struct expression *exp,
1390 enum noside noside, enum exp_opcode op,
1391 struct value *arg1, struct value *arg2)
1392{
1fcb3559
TT
1393 if (binop_user_defined_p (op, arg1, arg2))
1394 {
1395 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1396 }
1397 else
1398 {
1399 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1400 int tem = value_equal (arg1, arg2);
1401 struct type *type = language_bool_type (exp->language_defn,
1402 exp->gdbarch);
1403 return value_from_longest (type, (LONGEST) ! tem);
1404 }
1405}
1406
6cad1349
TT
1407/* A helper function for BINOP_LESS. */
1408
46916f2b 1409struct value *
6cad1349
TT
1410eval_op_less (struct type *expect_type, struct expression *exp,
1411 enum noside noside, enum exp_opcode op,
1412 struct value *arg1, struct value *arg2)
1413{
6cad1349
TT
1414 if (binop_user_defined_p (op, arg1, arg2))
1415 {
1416 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1417 }
1418 else
1419 {
1420 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1421 int tem = value_less (arg1, arg2);
1422 struct type *type = language_bool_type (exp->language_defn,
1423 exp->gdbarch);
1424 return value_from_longest (type, (LONGEST) tem);
1425 }
1426}
1427
1f78d732
TT
1428/* A helper function for BINOP_GTR. */
1429
46916f2b 1430struct value *
1f78d732
TT
1431eval_op_gtr (struct type *expect_type, struct expression *exp,
1432 enum noside noside, enum exp_opcode op,
1433 struct value *arg1, struct value *arg2)
1434{
1f78d732
TT
1435 if (binop_user_defined_p (op, arg1, arg2))
1436 {
1437 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1438 }
1439 else
1440 {
1441 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1442 int tem = value_less (arg2, arg1);
1443 struct type *type = language_bool_type (exp->language_defn,
1444 exp->gdbarch);
1445 return value_from_longest (type, (LONGEST) tem);
1446 }
1447}
1448
96e3efd9
TT
1449/* A helper function for BINOP_GEQ. */
1450
46916f2b 1451struct value *
96e3efd9
TT
1452eval_op_geq (struct type *expect_type, struct expression *exp,
1453 enum noside noside, enum exp_opcode op,
1454 struct value *arg1, struct value *arg2)
1455{
96e3efd9
TT
1456 if (binop_user_defined_p (op, arg1, arg2))
1457 {
1458 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1459 }
1460 else
1461 {
1462 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1463 int tem = value_less (arg2, arg1) || value_equal (arg1, arg2);
1464 struct type *type = language_bool_type (exp->language_defn,
1465 exp->gdbarch);
1466 return value_from_longest (type, (LONGEST) tem);
1467 }
1468}
1469
60cdd487
TT
1470/* A helper function for BINOP_LEQ. */
1471
46916f2b 1472struct value *
60cdd487
TT
1473eval_op_leq (struct type *expect_type, struct expression *exp,
1474 enum noside noside, enum exp_opcode op,
1475 struct value *arg1, struct value *arg2)
1476{
60cdd487
TT
1477 if (binop_user_defined_p (op, arg1, arg2))
1478 {
1479 return value_x_binop (arg1, arg2, op, OP_NULL, noside);
1480 }
1481 else
1482 {
1483 binop_promote (exp->language_defn, exp->gdbarch, &arg1, &arg2);
1484 int tem = value_less (arg1, arg2) || value_equal (arg1, arg2);
1485 struct type *type = language_bool_type (exp->language_defn,
1486 exp->gdbarch);
1487 return value_from_longest (type, (LONGEST) tem);
1488 }
1489}
1490
eed70b1c
TT
1491/* A helper function for BINOP_REPEAT. */
1492
d4eff4c1 1493struct value *
eed70b1c 1494eval_op_repeat (struct type *expect_type, struct expression *exp,
d4eff4c1 1495 enum noside noside, enum exp_opcode op,
eed70b1c
TT
1496 struct value *arg1, struct value *arg2)
1497{
eed70b1c
TT
1498 struct type *type = check_typedef (value_type (arg2));
1499 if (type->code () != TYPE_CODE_INT
1500 && type->code () != TYPE_CODE_ENUM)
1501 error (_("Non-integral right operand for \"@\" operator."));
1502 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1503 {
1504 return allocate_repeat_value (value_type (arg1),
1505 longest_to_int (value_as_long (arg2)));
1506 }
1507 else
1508 return value_repeat (arg1, longest_to_int (value_as_long (arg2)));
1509}
1510
39f288be
TT
1511/* A helper function for UNOP_PLUS. */
1512
9307d17b 1513struct value *
39f288be
TT
1514eval_op_plus (struct type *expect_type, struct expression *exp,
1515 enum noside noside, enum exp_opcode op,
1516 struct value *arg1)
1517{
39f288be
TT
1518 if (unop_user_defined_p (op, arg1))
1519 return value_x_unop (arg1, op, noside);
1520 else
1521 {
1522 unop_promote (exp->language_defn, exp->gdbarch, &arg1);
1523 return value_pos (arg1);
1524 }
1525}
1526
606d105f
TT
1527/* A helper function for UNOP_NEG. */
1528
9307d17b 1529struct value *
606d105f
TT
1530eval_op_neg (struct type *expect_type, struct expression *exp,
1531 enum noside noside, enum exp_opcode op,
1532 struct value *arg1)
1533{
606d105f
TT
1534 if (unop_user_defined_p (op, arg1))
1535 return value_x_unop (arg1, op, noside);
1536 else
1537 {
1538 unop_promote (exp->language_defn, exp->gdbarch, &arg1);
1539 return value_neg (arg1);
1540 }
1541}
1542
1f09ec81
TT
1543/* A helper function for UNOP_COMPLEMENT. */
1544
9307d17b 1545struct value *
1f09ec81
TT
1546eval_op_complement (struct type *expect_type, struct expression *exp,
1547 enum noside noside, enum exp_opcode op,
1548 struct value *arg1)
1549{
1f09ec81
TT
1550 if (unop_user_defined_p (UNOP_COMPLEMENT, arg1))
1551 return value_x_unop (arg1, UNOP_COMPLEMENT, noside);
1552 else
1553 {
1554 unop_promote (exp->language_defn, exp->gdbarch, &arg1);
1555 return value_complement (arg1);
1556 }
1557}
1558
24338fb9
TT
1559/* A helper function for UNOP_LOGICAL_NOT. */
1560
9307d17b 1561struct value *
24338fb9
TT
1562eval_op_lognot (struct type *expect_type, struct expression *exp,
1563 enum noside noside, enum exp_opcode op,
1564 struct value *arg1)
1565{
24338fb9
TT
1566 if (unop_user_defined_p (op, arg1))
1567 return value_x_unop (arg1, op, noside);
1568 else
1569 {
1570 struct type *type = language_bool_type (exp->language_defn,
1571 exp->gdbarch);
1572 return value_from_longest (type, (LONGEST) value_logical_not (arg1));
1573 }
1574}
1575
786f70ee
TT
1576/* A helper function for UNOP_IND. */
1577
876469ff 1578struct value *
786f70ee 1579eval_op_ind (struct type *expect_type, struct expression *exp,
876469ff 1580 enum noside noside,
786f70ee
TT
1581 struct value *arg1)
1582{
1583 struct type *type = check_typedef (value_type (arg1));
1584 if (type->code () == TYPE_CODE_METHODPTR
1585 || type->code () == TYPE_CODE_MEMBERPTR)
1586 error (_("Attempt to dereference pointer "
1587 "to member without an object"));
876469ff
TT
1588 if (unop_user_defined_p (UNOP_IND, arg1))
1589 return value_x_unop (arg1, UNOP_IND, noside);
786f70ee
TT
1590 else if (noside == EVAL_AVOID_SIDE_EFFECTS)
1591 {
1592 type = check_typedef (value_type (arg1));
1593
1594 /* If the type pointed to is dynamic then in order to resolve the
1595 dynamic properties we must actually dereference the pointer.
1596 There is a risk that this dereference will have side-effects
1597 in the inferior, but being able to print accurate type
1598 information seems worth the risk. */
1599 if ((type->code () != TYPE_CODE_PTR
1600 && !TYPE_IS_REFERENCE (type))
1601 || !is_dynamic_type (TYPE_TARGET_TYPE (type)))
1602 {
1603 if (type->code () == TYPE_CODE_PTR
1604 || TYPE_IS_REFERENCE (type)
1605 /* In C you can dereference an array to get the 1st elt. */
1606 || type->code () == TYPE_CODE_ARRAY)
1607 return value_zero (TYPE_TARGET_TYPE (type),
1608 lval_memory);
1609 else if (type->code () == TYPE_CODE_INT)
1610 /* GDB allows dereferencing an int. */
1611 return value_zero (builtin_type (exp->gdbarch)->builtin_int,
1612 lval_memory);
1613 else
1614 error (_("Attempt to take contents of a non-pointer value."));
1615 }
1616 }
1617
1618 /* Allow * on an integer so we can cast it to whatever we want.
1619 This returns an int, which seems like the most C-like thing to
1620 do. "long long" variables are rare enough that
1621 BUILTIN_TYPE_LONGEST would seem to be a mistake. */
1622 if (type->code () == TYPE_CODE_INT)
1623 return value_at_lazy (builtin_type (exp->gdbarch)->builtin_int,
1624 (CORE_ADDR) value_as_address (arg1));
1625 return value_ind (arg1);
1626}
1627
acee9468
TT
1628/* A helper function for UNOP_ALIGNOF. */
1629
ae4bb61e 1630struct value *
acee9468
TT
1631eval_op_alignof (struct type *expect_type, struct expression *exp,
1632 enum noside noside,
1633 struct value *arg1)
1634{
1635 struct type *type = value_type (arg1);
1636 /* FIXME: This should be size_t. */
1637 struct type *size_type = builtin_type (exp->gdbarch)->builtin_int;
1638 ULONGEST align = type_align (type);
1639 if (align == 0)
1640 error (_("could not determine alignment of type"));
1641 return value_from_longest (size_type, align);
1642}
1643
3aef2a07
TT
1644/* A helper function for UNOP_MEMVAL. */
1645
cbc18219 1646struct value *
3aef2a07
TT
1647eval_op_memval (struct type *expect_type, struct expression *exp,
1648 enum noside noside,
1649 struct value *arg1, struct type *type)
1650{
3aef2a07
TT
1651 if (noside == EVAL_AVOID_SIDE_EFFECTS)
1652 return value_zero (type, lval_memory);
1653 else
1654 return value_at_lazy (type, value_as_address (arg1));
1655}
1656
00f50884
TT
1657/* A helper function for UNOP_PREINCREMENT. */
1658
6d89e296 1659struct value *
00f50884
TT
1660eval_op_preinc (struct type *expect_type, struct expression *exp,
1661 enum noside noside, enum exp_opcode op,
1662 struct value *arg1)
1663{
0b2b0b82 1664 if (noside == EVAL_AVOID_SIDE_EFFECTS)
00f50884
TT
1665 return arg1;
1666 else if (unop_user_defined_p (op, arg1))
1667 {
1668 return value_x_unop (arg1, op, noside);
1669 }
1670 else
1671 {
1672 struct value *arg2;
1673 if (ptrmath_type_p (exp->language_defn, value_type (arg1)))
1674 arg2 = value_ptradd (arg1, 1);
1675 else
1676 {
1677 struct value *tmp = arg1;
1678
1679 arg2 = value_one (value_type (arg1));
1680 binop_promote (exp->language_defn, exp->gdbarch, &tmp, &arg2);
1681 arg2 = value_binop (tmp, arg2, BINOP_ADD);
1682 }
1683
1684 return value_assign (arg1, arg2);
1685 }
1686}
1687
9e1361b7
TT
1688/* A helper function for UNOP_PREDECREMENT. */
1689
6d89e296 1690struct value *
9e1361b7
TT
1691eval_op_predec (struct type *expect_type, struct expression *exp,
1692 enum noside noside, enum exp_opcode op,
1693 struct value *arg1)
1694{
0b2b0b82 1695 if (noside == EVAL_AVOID_SIDE_EFFECTS)
9e1361b7
TT
1696 return arg1;
1697 else if (unop_user_defined_p (op, arg1))
1698 {
1699 return value_x_unop (arg1, op, noside);
1700 }
1701 else
1702 {
1703 struct value *arg2;
1704 if (ptrmath_type_p (exp->language_defn, value_type (arg1)))
1705 arg2 = value_ptradd (arg1, -1);
1706 else
1707 {
1708 struct value *tmp = arg1;
1709
1710 arg2 = value_one (value_type (arg1));
1711 binop_promote (exp->language_defn, exp->gdbarch, &tmp, &arg2);
1712 arg2 = value_binop (tmp, arg2, BINOP_SUB);
1713 }
1714
1715 return value_assign (arg1, arg2);
1716 }
1717}
1718
abffe116
TT
1719/* A helper function for UNOP_POSTINCREMENT. */
1720
6d89e296 1721struct value *
abffe116
TT
1722eval_op_postinc (struct type *expect_type, struct expression *exp,
1723 enum noside noside, enum exp_opcode op,
1724 struct value *arg1)
1725{
0b2b0b82 1726 if (noside == EVAL_AVOID_SIDE_EFFECTS)
abffe116
TT
1727 return arg1;
1728 else if (unop_user_defined_p (op, arg1))
1729 {
1730 return value_x_unop (arg1, op, noside);
1731 }
1732 else
1733 {
1734 struct value *arg3 = value_non_lval (arg1);
1735 struct value *arg2;
1736
1737 if (ptrmath_type_p (exp->language_defn, value_type (arg1)))
1738 arg2 = value_ptradd (arg1, 1);
1739 else
1740 {
1741 struct value *tmp = arg1;
1742
1743 arg2 = value_one (value_type (arg1));
1744 binop_promote (exp->language_defn, exp->gdbarch, &tmp, &arg2);
1745 arg2 = value_binop (tmp, arg2, BINOP_ADD);
1746 }
1747
1748 value_assign (arg1, arg2);
1749 return arg3;
1750 }
1751}
1752
a220ead5
TT
1753/* A helper function for UNOP_POSTDECREMENT. */
1754
6d89e296 1755struct value *
a220ead5
TT
1756eval_op_postdec (struct type *expect_type, struct expression *exp,
1757 enum noside noside, enum exp_opcode op,
1758 struct value *arg1)
1759{
0b2b0b82 1760 if (noside == EVAL_AVOID_SIDE_EFFECTS)
a220ead5
TT
1761 return arg1;
1762 else if (unop_user_defined_p (op, arg1))
1763 {
1764 return value_x_unop (arg1, op, noside);
1765 }
1766 else
1767 {
1768 struct value *arg3 = value_non_lval (arg1);
1769 struct value *arg2;
1770
1771 if (ptrmath_type_p (exp->language_defn, value_type (arg1)))
1772 arg2 = value_ptradd (arg1, -1);
1773 else
1774 {
1775 struct value *tmp = arg1;
1776
1777 arg2 = value_one (value_type (arg1));
1778 binop_promote (exp->language_defn, exp->gdbarch, &tmp, &arg2);
1779 arg2 = value_binop (tmp, arg2, BINOP_SUB);
1780 }
1781
1782 value_assign (arg1, arg2);
1783 return arg3;
1784 }
1785}
1786
aec95807
TT
1787/* A helper function for OP_TYPE. */
1788
5b5f5140 1789struct value *
aec95807
TT
1790eval_op_type (struct type *expect_type, struct expression *exp,
1791 enum noside noside, struct type *type)
1792{
0b2b0b82 1793 if (noside == EVAL_AVOID_SIDE_EFFECTS)
aec95807
TT
1794 return allocate_value (type);
1795 else
1796 error (_("Attempt to use a type name as an expression"));
1797}
1798
fb5ba2ab
TT
1799/* A helper function for BINOP_ASSIGN_MODIFY. */
1800
e5946e16 1801struct value *
fb5ba2ab
TT
1802eval_binop_assign_modify (struct type *expect_type, struct expression *exp,
1803 enum noside noside, enum exp_opcode op,
1804 struct value *arg1, struct value *arg2)
1805{
0b2b0b82 1806 if (noside == EVAL_AVOID_SIDE_EFFECTS)
fb5ba2ab
TT
1807 return arg1;
1808 if (binop_user_defined_p (op, arg1, arg2))
1809 return value_x_binop (arg1, arg2, BINOP_ASSIGN_MODIFY, op, noside);
1810 else if (op == BINOP_ADD && ptrmath_type_p (exp->language_defn,
1811 value_type (arg1))
1812 && is_integral_type (value_type (arg2)))
1813 arg2 = value_ptradd (arg1, value_as_long (arg2));
1814 else if (op == BINOP_SUB && ptrmath_type_p (exp->language_defn,
1815 value_type (arg1))
1816 && is_integral_type (value_type (arg2)))
1817 arg2 = value_ptradd (arg1, - value_as_long (arg2));
1818 else
1819 {
1820 struct value *tmp = arg1;
1821
1822 /* For shift and integer exponentiation operations,
1823 only promote the first argument. */
1824 if ((op == BINOP_LSH || op == BINOP_RSH || op == BINOP_EXP)
1825 && is_integral_type (value_type (arg2)))
1826 unop_promote (exp->language_defn, exp->gdbarch, &tmp);
1827 else
1828 binop_promote (exp->language_defn, exp->gdbarch, &tmp, &arg2);
1829
1830 arg2 = value_binop (tmp, arg2, op);
1831 }
1832 return value_assign (arg1, arg2);
1833}
1834
5e80600e
TT
1835/* Note that ARGS needs 2 empty slots up front and must end with a
1836 null pointer. */
1837static struct value *
1838eval_op_objc_msgcall (struct type *expect_type, struct expression *exp,
1839 enum noside noside, CORE_ADDR selector,
1840 value *target, gdb::array_view<value *> args)
1841{
1842 CORE_ADDR responds_selector = 0;
1843 CORE_ADDR method_selector = 0;
1844
1845 int struct_return = 0;
1846
1847 struct value *msg_send = NULL;
1848 struct value *msg_send_stret = NULL;
1849 int gnu_runtime = 0;
1850
1851 struct value *method = NULL;
1852 struct value *called_method = NULL;
1853
1854 struct type *selector_type = NULL;
1855 struct type *long_type;
1856 struct type *type;
1857
1858 struct value *ret = NULL;
1859 CORE_ADDR addr = 0;
1860
1861 value *argvec[5];
1862
1863 long_type = builtin_type (exp->gdbarch)->builtin_long;
1864 selector_type = builtin_type (exp->gdbarch)->builtin_data_ptr;
1865
1866 if (value_as_long (target) == 0)
1867 return value_from_longest (long_type, 0);
1868
1869 if (lookup_minimal_symbol ("objc_msg_lookup", 0, 0).minsym)
1870 gnu_runtime = 1;
1871
1872 /* Find the method dispatch (Apple runtime) or method lookup
1873 (GNU runtime) function for Objective-C. These will be used
1874 to lookup the symbol information for the method. If we
1875 can't find any symbol information, then we'll use these to
1876 call the method, otherwise we can call the method
1877 directly. The msg_send_stret function is used in the special
1878 case of a method that returns a structure (Apple runtime
1879 only). */
1880 if (gnu_runtime)
1881 {
1882 type = selector_type;
1883
1884 type = lookup_function_type (type);
1885 type = lookup_pointer_type (type);
1886 type = lookup_function_type (type);
1887 type = lookup_pointer_type (type);
1888
1889 msg_send = find_function_in_inferior ("objc_msg_lookup", NULL);
1890 msg_send_stret
1891 = find_function_in_inferior ("objc_msg_lookup", NULL);
1892
1893 msg_send = value_from_pointer (type, value_as_address (msg_send));
1894 msg_send_stret = value_from_pointer (type,
1895 value_as_address (msg_send_stret));
1896 }
1897 else
1898 {
1899 msg_send = find_function_in_inferior ("objc_msgSend", NULL);
1900 /* Special dispatcher for methods returning structs. */
1901 msg_send_stret
1902 = find_function_in_inferior ("objc_msgSend_stret", NULL);
1903 }
1904
1905 /* Verify the target object responds to this method. The
1906 standard top-level 'Object' class uses a different name for
1907 the verification method than the non-standard, but more
1908 often used, 'NSObject' class. Make sure we check for both. */
1909
1910 responds_selector
1911 = lookup_child_selector (exp->gdbarch, "respondsToSelector:");
1912 if (responds_selector == 0)
1913 responds_selector
1914 = lookup_child_selector (exp->gdbarch, "respondsTo:");
1915
1916 if (responds_selector == 0)
1917 error (_("no 'respondsTo:' or 'respondsToSelector:' method"));
1918
1919 method_selector
1920 = lookup_child_selector (exp->gdbarch, "methodForSelector:");
1921 if (method_selector == 0)
1922 method_selector
1923 = lookup_child_selector (exp->gdbarch, "methodFor:");
1924
1925 if (method_selector == 0)
1926 error (_("no 'methodFor:' or 'methodForSelector:' method"));
1927
1928 /* Call the verification method, to make sure that the target
1929 class implements the desired method. */
1930
1931 argvec[0] = msg_send;
1932 argvec[1] = target;
1933 argvec[2] = value_from_longest (long_type, responds_selector);
1934 argvec[3] = value_from_longest (long_type, selector);
1935 argvec[4] = 0;
1936
1937 ret = call_function_by_hand (argvec[0], NULL, {argvec + 1, 3});
1938 if (gnu_runtime)
1939 {
1940 /* Function objc_msg_lookup returns a pointer. */
1941 argvec[0] = ret;
1942 ret = call_function_by_hand (argvec[0], NULL, {argvec + 1, 3});
1943 }
1944 if (value_as_long (ret) == 0)
1945 error (_("Target does not respond to this message selector."));
1946
1947 /* Call "methodForSelector:" method, to get the address of a
1948 function method that implements this selector for this
1949 class. If we can find a symbol at that address, then we
1950 know the return type, parameter types etc. (that's a good
1951 thing). */
1952
1953 argvec[0] = msg_send;
1954 argvec[1] = target;
1955 argvec[2] = value_from_longest (long_type, method_selector);
1956 argvec[3] = value_from_longest (long_type, selector);
1957 argvec[4] = 0;
1958
1959 ret = call_function_by_hand (argvec[0], NULL, {argvec + 1, 3});
1960 if (gnu_runtime)
1961 {
1962 argvec[0] = ret;
1963 ret = call_function_by_hand (argvec[0], NULL, {argvec + 1, 3});
1964 }
1965
1966 /* ret should now be the selector. */
1967
1968 addr = value_as_long (ret);
1969 if (addr)
1970 {
1971 struct symbol *sym = NULL;
1972
1973 /* The address might point to a function descriptor;
1974 resolve it to the actual code address instead. */
328d42d8
SM
1975 addr = gdbarch_convert_from_func_ptr_addr
1976 (exp->gdbarch, addr, current_inferior ()->top_target ());
5e80600e
TT
1977
1978 /* Is it a high_level symbol? */
1979 sym = find_pc_function (addr);
1980 if (sym != NULL)
1981 method = value_of_variable (sym, 0);
1982 }
1983
1984 /* If we found a method with symbol information, check to see
1985 if it returns a struct. Otherwise assume it doesn't. */
1986
1987 if (method)
1988 {
1989 CORE_ADDR funaddr;
1990 struct type *val_type;
1991
1992 funaddr = find_function_addr (method, &val_type);
1993
1994 block_for_pc (funaddr);
1995
1996 val_type = check_typedef (val_type);
1997
1998 if ((val_type == NULL)
1999 || (val_type->code () == TYPE_CODE_ERROR))
2000 {
2001 if (expect_type != NULL)
2002 val_type = expect_type;
2003 }
2004
2005 struct_return = using_struct_return (exp->gdbarch, method,
2006 val_type);
2007 }
2008 else if (expect_type != NULL)
2009 {
2010 struct_return = using_struct_return (exp->gdbarch, NULL,
2011 check_typedef (expect_type));
2012 }
2013
2014 /* Found a function symbol. Now we will substitute its
2015 value in place of the message dispatcher (obj_msgSend),
2016 so that we call the method directly instead of thru
2017 the dispatcher. The main reason for doing this is that
2018 we can now evaluate the return value and parameter values
2019 according to their known data types, in case we need to
2020 do things like promotion, dereferencing, special handling
2021 of structs and doubles, etc.
2022
2023 We want to use the type signature of 'method', but still
2024 jump to objc_msgSend() or objc_msgSend_stret() to better
2025 mimic the behavior of the runtime. */
2026
2027 if (method)
2028 {
2029 if (value_type (method)->code () != TYPE_CODE_FUNC)
2030 error (_("method address has symbol information "
2031 "with non-function type; skipping"));
2032
2033 /* Create a function pointer of the appropriate type, and
2034 replace its value with the value of msg_send or
2035 msg_send_stret. We must use a pointer here, as
2036 msg_send and msg_send_stret are of pointer type, and
2037 the representation may be different on systems that use
2038 function descriptors. */
2039 if (struct_return)
2040 called_method
2041 = value_from_pointer (lookup_pointer_type (value_type (method)),
2042 value_as_address (msg_send_stret));
2043 else
2044 called_method
2045 = value_from_pointer (lookup_pointer_type (value_type (method)),
2046 value_as_address (msg_send));
2047 }
2048 else
2049 {
2050 if (struct_return)
2051 called_method = msg_send_stret;
2052 else
2053 called_method = msg_send;
2054 }
2055
5e80600e
TT
2056
2057 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2058 {
2059 /* If the return type doesn't look like a function type,
2060 call an error. This can happen if somebody tries to
2061 turn a variable into a function call. This is here
2062 because people often want to call, eg, strcmp, which
2063 gdb doesn't know is a function. If gdb isn't asked for
2064 it's opinion (ie. through "whatis"), it won't offer
2065 it. */
2066
2067 struct type *callee_type = value_type (called_method);
2068
2069 if (callee_type && callee_type->code () == TYPE_CODE_PTR)
2070 callee_type = TYPE_TARGET_TYPE (callee_type);
2071 callee_type = TYPE_TARGET_TYPE (callee_type);
2072
2073 if (callee_type)
2074 {
2075 if ((callee_type->code () == TYPE_CODE_ERROR) && expect_type)
2076 return allocate_value (expect_type);
2077 else
2078 return allocate_value (callee_type);
2079 }
2080 else
2081 error (_("Expression of type other than "
2082 "\"method returning ...\" used as a method"));
2083 }
2084
2085 /* Now depending on whether we found a symbol for the method,
2086 we will either call the runtime dispatcher or the method
2087 directly. */
2088
2089 args[0] = target;
2090 args[1] = value_from_longest (long_type, selector);
2091
2092 if (gnu_runtime && (method != NULL))
2093 {
2094 /* Function objc_msg_lookup returns a pointer. */
2095 struct type *tem_type = value_type (called_method);
2096 tem_type = lookup_pointer_type (lookup_function_type (tem_type));
2097 deprecated_set_value_type (called_method, tem_type);
2098 called_method = call_function_by_hand (called_method, NULL, args);
2099 }
2100
2101 return call_function_by_hand (called_method, NULL, args);
2102}
2103
c0d7ed8c
TT
2104/* Helper function for MULTI_SUBSCRIPT. */
2105
2106static struct value *
2107eval_multi_subscript (struct type *expect_type, struct expression *exp,
2108 enum noside noside, value *arg1,
2109 gdb::array_view<value *> args)
2110{
c0d7ed8c
TT
2111 for (value *arg2 : args)
2112 {
2113 if (binop_user_defined_p (MULTI_SUBSCRIPT, arg1, arg2))
2114 {
2115 arg1 = value_x_binop (arg1, arg2, MULTI_SUBSCRIPT, OP_NULL, noside);
2116 }
2117 else
2118 {
2119 arg1 = coerce_ref (arg1);
2120 struct type *type = check_typedef (value_type (arg1));
2121
2122 switch (type->code ())
2123 {
2124 case TYPE_CODE_PTR:
2125 case TYPE_CODE_ARRAY:
2126 case TYPE_CODE_STRING:
2127 arg1 = value_subscript (arg1, value_as_long (arg2));
2128 break;
2129
2130 default:
2131 if (type->name ())
2132 error (_("cannot subscript something of type `%s'"),
2133 type->name ());
2134 else
2135 error (_("cannot subscript requested type"));
2136 }
2137 }
2138 }
2139 return (arg1);
2140}
2141
085734dd
TT
2142namespace expr
2143{
2144
2145value *
2146objc_msgcall_operation::evaluate (struct type *expect_type,
2147 struct expression *exp,
2148 enum noside noside)
2149{
2150 enum noside sub_no_side = EVAL_NORMAL;
2151 struct type *selector_type = builtin_type (exp->gdbarch)->builtin_data_ptr;
2152
2153 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2154 sub_no_side = EVAL_NORMAL;
2155 else
2156 sub_no_side = noside;
2157 value *target
2158 = std::get<1> (m_storage)->evaluate (selector_type, exp, sub_no_side);
2159
2160 if (value_as_long (target) == 0)
2161 sub_no_side = EVAL_AVOID_SIDE_EFFECTS;
2162 else
2163 sub_no_side = noside;
2164 std::vector<operation_up> &args = std::get<2> (m_storage);
2165 value **argvec = XALLOCAVEC (struct value *, args.size () + 3);
2166 argvec[0] = nullptr;
2167 argvec[1] = nullptr;
2168 for (int i = 0; i < args.size (); ++i)
2169 argvec[i + 2] = args[i]->evaluate_with_coercion (exp, sub_no_side);
2170 argvec[args.size () + 2] = nullptr;
2171
2172 return eval_op_objc_msgcall (expect_type, exp, noside, std::
2173 get<0> (m_storage), target,
2174 gdb::make_array_view (argvec,
2175 args.size () + 3));
2176}
2177
821e72d7
TT
2178value *
2179multi_subscript_operation::evaluate (struct type *expect_type,
2180 struct expression *exp,
2181 enum noside noside)
2182{
2183 value *arg1 = std::get<0> (m_storage)->evaluate_with_coercion (exp, noside);
2184 std::vector<operation_up> &values = std::get<1> (m_storage);
2185 value **argvec = XALLOCAVEC (struct value *, values.size ());
2186 for (int ix = 0; ix < values.size (); ++ix)
2187 argvec[ix] = values[ix]->evaluate_with_coercion (exp, noside);
2188 return eval_multi_subscript (expect_type, exp, noside, arg1,
2189 gdb::make_array_view (argvec, values.size ()));
085734dd
TT
2190}
2191
5019124b
TT
2192value *
2193logical_and_operation::evaluate (struct type *expect_type,
2194 struct expression *exp,
2195 enum noside noside)
2196{
2197 value *arg1 = std::get<0> (m_storage)->evaluate (nullptr, exp, noside);
5019124b
TT
2198
2199 value *arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp,
2200 EVAL_AVOID_SIDE_EFFECTS);
2201
2202 if (binop_user_defined_p (BINOP_LOGICAL_AND, arg1, arg2))
2203 {
2204 arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp, noside);
2205 return value_x_binop (arg1, arg2, BINOP_LOGICAL_AND, OP_NULL, noside);
2206 }
2207 else
2208 {
2209 int tem = value_logical_not (arg1);
2210 if (!tem)
2211 {
2212 arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp, noside);
2213 tem = value_logical_not (arg2);
2214 }
2215 struct type *type = language_bool_type (exp->language_defn,
2216 exp->gdbarch);
2217 return value_from_longest (type, !tem);
2218 }
2219}
2220
2221value *
2222logical_or_operation::evaluate (struct type *expect_type,
2223 struct expression *exp,
2224 enum noside noside)
2225{
2226 value *arg1 = std::get<0> (m_storage)->evaluate (nullptr, exp, noside);
5019124b
TT
2227
2228 value *arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp,
2229 EVAL_AVOID_SIDE_EFFECTS);
2230
2231 if (binop_user_defined_p (BINOP_LOGICAL_OR, arg1, arg2))
2232 {
2233 arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp, noside);
2234 return value_x_binop (arg1, arg2, BINOP_LOGICAL_OR, OP_NULL, noside);
2235 }
2236 else
2237 {
2238 int tem = value_logical_not (arg1);
2239 if (tem)
2240 {
2241 arg2 = std::get<1> (m_storage)->evaluate (nullptr, exp, noside);
2242 tem = value_logical_not (arg2);
2243 }
2244
2245 struct type *type = language_bool_type (exp->language_defn,
2246 exp->gdbarch);
2247 return value_from_longest (type, !tem);
2248 }
2249}
2250
e4479080
TT
2251value *
2252adl_func_operation::evaluate (struct type *expect_type,
2253 struct expression *exp,
2254 enum noside noside)
2255{
2256 std::vector<operation_up> &arg_ops = std::get<2> (m_storage);
2257 std::vector<value *> args (arg_ops.size ());
2258 for (int i = 0; i < arg_ops.size (); ++i)
2259 args[i] = arg_ops[i]->evaluate_with_coercion (exp, noside);
2260
2261 struct symbol *symp;
2262 find_overload_match (args, std::get<0> (m_storage).c_str (),
2263 NON_METHOD,
2264 nullptr, nullptr,
2265 nullptr, &symp, nullptr, 0, noside);
2266 if (SYMBOL_TYPE (symp)->code () == TYPE_CODE_ERROR)
2267 error_unknown_type (symp->print_name ());
2268 value *callee = evaluate_var_value (noside, std::get<1> (m_storage), symp);
2269 return evaluate_subexp_do_call (exp, noside, callee, args,
2270 nullptr, expect_type);
2271
2272}
2273
1c02eb30
TT
2274/* This function evaluates brace-initializers (in C/C++) for
2275 structure types. */
2276
2277struct value *
2278array_operation::evaluate_struct_tuple (struct value *struct_val,
2279 struct expression *exp,
2280 enum noside noside, int nargs)
2281{
2282 const std::vector<operation_up> &in_args = std::get<2> (m_storage);
2283 struct type *struct_type = check_typedef (value_type (struct_val));
2284 struct type *field_type;
2285 int fieldno = -1;
2286
2287 int idx = 0;
2288 while (--nargs >= 0)
2289 {
2290 struct value *val = NULL;
2291 int bitpos, bitsize;
2292 bfd_byte *addr;
2293
2294 fieldno++;
2295 /* Skip static fields. */
2296 while (fieldno < struct_type->num_fields ()
2297 && field_is_static (&struct_type->field (fieldno)))
2298 fieldno++;
2299 if (fieldno >= struct_type->num_fields ())
2300 error (_("too many initializers"));
2301 field_type = struct_type->field (fieldno).type ();
2302 if (field_type->code () == TYPE_CODE_UNION
2303 && TYPE_FIELD_NAME (struct_type, fieldno)[0] == '0')
2304 error (_("don't know which variant you want to set"));
2305
2306 /* Here, struct_type is the type of the inner struct,
2307 while substruct_type is the type of the inner struct.
2308 These are the same for normal structures, but a variant struct
2309 contains anonymous union fields that contain substruct fields.
2310 The value fieldno is the index of the top-level (normal or
2311 anonymous union) field in struct_field, while the value
2312 subfieldno is the index of the actual real (named inner) field
2313 in substruct_type. */
2314
2315 field_type = struct_type->field (fieldno).type ();
2316 if (val == 0)
2317 val = in_args[idx++]->evaluate (field_type, exp, noside);
2318
2319 /* Now actually set the field in struct_val. */
2320
2321 /* Assign val to field fieldno. */
2322 if (value_type (val) != field_type)
2323 val = value_cast (field_type, val);
2324
2325 bitsize = TYPE_FIELD_BITSIZE (struct_type, fieldno);
2326 bitpos = TYPE_FIELD_BITPOS (struct_type, fieldno);
2327 addr = value_contents_writeable (struct_val) + bitpos / 8;
2328 if (bitsize)
2329 modify_field (struct_type, addr,
2330 value_as_long (val), bitpos % 8, bitsize);
2331 else
2332 memcpy (addr, value_contents (val),
2333 TYPE_LENGTH (value_type (val)));
2334
2335 }
2336 return struct_val;
2337}
2338
2339value *
2340array_operation::evaluate (struct type *expect_type,
2341 struct expression *exp,
2342 enum noside noside)
2343{
2344 int tem;
2345 int tem2 = std::get<0> (m_storage);
2346 int tem3 = std::get<1> (m_storage);
2347 const std::vector<operation_up> &in_args = std::get<2> (m_storage);
2348 int nargs = tem3 - tem2 + 1;
2349 struct type *type = expect_type ? check_typedef (expect_type) : nullptr;
2350
0b2b0b82 2351 if (expect_type != nullptr
1c02eb30
TT
2352 && type->code () == TYPE_CODE_STRUCT)
2353 {
2354 struct value *rec = allocate_value (expect_type);
2355
2356 memset (value_contents_raw (rec), '\0', TYPE_LENGTH (type));
2357 return evaluate_struct_tuple (rec, exp, noside, nargs);
2358 }
2359
0b2b0b82 2360 if (expect_type != nullptr
1c02eb30
TT
2361 && type->code () == TYPE_CODE_ARRAY)
2362 {
2363 struct type *range_type = type->index_type ();
2364 struct type *element_type = TYPE_TARGET_TYPE (type);
2365 struct value *array = allocate_value (expect_type);
2366 int element_size = TYPE_LENGTH (check_typedef (element_type));
2367 LONGEST low_bound, high_bound, index;
2368
2369 if (!get_discrete_bounds (range_type, &low_bound, &high_bound))
2370 {
2371 low_bound = 0;
2372 high_bound = (TYPE_LENGTH (type) / element_size) - 1;
2373 }
2374 index = low_bound;
2375 memset (value_contents_raw (array), 0, TYPE_LENGTH (expect_type));
2376 for (tem = nargs; --nargs >= 0;)
2377 {
2378 struct value *element;
2379
2380 element = in_args[index - low_bound]->evaluate (element_type,
2381 exp, noside);
2382 if (value_type (element) != element_type)
2383 element = value_cast (element_type, element);
2384 if (index > high_bound)
2385 /* To avoid memory corruption. */
2386 error (_("Too many array elements"));
2387 memcpy (value_contents_raw (array)
2388 + (index - low_bound) * element_size,
2389 value_contents (element),
2390 element_size);
2391 index++;
2392 }
2393 return array;
2394 }
2395
0b2b0b82 2396 if (expect_type != nullptr
1c02eb30
TT
2397 && type->code () == TYPE_CODE_SET)
2398 {
2399 struct value *set = allocate_value (expect_type);
2400 gdb_byte *valaddr = value_contents_raw (set);
2401 struct type *element_type = type->index_type ();
2402 struct type *check_type = element_type;
2403 LONGEST low_bound, high_bound;
2404
2405 /* Get targettype of elementtype. */
2406 while (check_type->code () == TYPE_CODE_RANGE
2407 || check_type->code () == TYPE_CODE_TYPEDEF)
2408 check_type = TYPE_TARGET_TYPE (check_type);
2409
2410 if (!get_discrete_bounds (element_type, &low_bound, &high_bound))
2411 error (_("(power)set type with unknown size"));
2412 memset (valaddr, '\0', TYPE_LENGTH (type));
2413 int idx = 0;
2414 for (tem = 0; tem < nargs; tem++)
2415 {
2416 LONGEST range_low, range_high;
2417 struct type *range_low_type, *range_high_type;
2418 struct value *elem_val;
2419
2420 elem_val = in_args[idx++]->evaluate (element_type, exp, noside);
2421 range_low_type = range_high_type = value_type (elem_val);
2422 range_low = range_high = value_as_long (elem_val);
2423
2424 /* Check types of elements to avoid mixture of elements from
2425 different types. Also check if type of element is "compatible"
2426 with element type of powerset. */
2427 if (range_low_type->code () == TYPE_CODE_RANGE)
2428 range_low_type = TYPE_TARGET_TYPE (range_low_type);
2429 if (range_high_type->code () == TYPE_CODE_RANGE)
2430 range_high_type = TYPE_TARGET_TYPE (range_high_type);
2431 if ((range_low_type->code () != range_high_type->code ())
2432 || (range_low_type->code () == TYPE_CODE_ENUM
2433 && (range_low_type != range_high_type)))
2434 /* different element modes. */
2435 error (_("POWERSET tuple elements of different mode"));
2436 if ((check_type->code () != range_low_type->code ())
2437 || (check_type->code () == TYPE_CODE_ENUM
2438 && range_low_type != check_type))
2439 error (_("incompatible POWERSET tuple elements"));
2440 if (range_low > range_high)
2441 {
2442 warning (_("empty POWERSET tuple range"));
2443 continue;
2444 }
2445 if (range_low < low_bound || range_high > high_bound)
2446 error (_("POWERSET tuple element out of range"));
2447 range_low -= low_bound;
2448 range_high -= low_bound;
2449 for (; range_low <= range_high; range_low++)
2450 {
2451 int bit_index = (unsigned) range_low % TARGET_CHAR_BIT;
2452
2453 if (gdbarch_byte_order (exp->gdbarch) == BFD_ENDIAN_BIG)
2454 bit_index = TARGET_CHAR_BIT - 1 - bit_index;
2455 valaddr[(unsigned) range_low / TARGET_CHAR_BIT]
2456 |= 1 << bit_index;
2457 }
2458 }
2459 return set;
2460 }
2461
2462 value **argvec = XALLOCAVEC (struct value *, nargs);
2463 for (tem = 0; tem < nargs; tem++)
2464 {
2465 /* Ensure that array expressions are coerced into pointer
2466 objects. */
2467 argvec[tem] = in_args[tem]->evaluate_with_coercion (exp, noside);
2468 }
1c02eb30
TT
2469 return value_array (tem2, tem3, argvec);
2470}
2471
821e72d7 2472}
085734dd 2473
c906108c 2474\f
13ea014a
TT
2475/* Helper for evaluate_subexp_for_address. */
2476
2477static value *
2478evaluate_subexp_for_address_base (struct expression *exp, enum noside noside,
2479 value *x)
2480{
2481 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2482 {
2483 struct type *type = check_typedef (value_type (x));
2484
2485 if (TYPE_IS_REFERENCE (type))
2486 return value_zero (lookup_pointer_type (TYPE_TARGET_TYPE (type)),
2487 not_lval);
2488 else if (VALUE_LVAL (x) == lval_memory || value_must_coerce_to_target (x))
2489 return value_zero (lookup_pointer_type (value_type (x)),
2490 not_lval);
2491 else
2492 error (_("Attempt to take address of "
2493 "value not located in memory."));
2494 }
2495 return value_addr (x);
2496}
2497
e2803273
TT
2498namespace expr
2499{
2500
2501value *
2502operation::evaluate_for_cast (struct type *expect_type,
2503 struct expression *exp,
2504 enum noside noside)
2505{
2506 value *val = evaluate (expect_type, exp, noside);
e2803273
TT
2507 return value_cast (expect_type, val);
2508}
2509
2510value *
2511operation::evaluate_for_address (struct expression *exp, enum noside noside)
2512{
2513 value *val = evaluate (nullptr, exp, noside);
2514 return evaluate_subexp_for_address_base (exp, noside, val);
2515}
2516
d5ab122c
TT
2517value *
2518scope_operation::evaluate_for_address (struct expression *exp,
2519 enum noside noside)
2520{
2521 value *x = value_aggregate_elt (std::get<0> (m_storage),
2522 std::get<1> (m_storage).c_str (),
2523 NULL, 1, noside);
2524 if (x == NULL)
2525 error (_("There is no field named %s"), std::get<1> (m_storage).c_str ());
2526 return x;
2527}
2528
876469ff
TT
2529value *
2530unop_ind_base_operation::evaluate_for_address (struct expression *exp,
2531 enum noside noside)
2532{
2533 value *x = std::get<0> (m_storage)->evaluate (nullptr, exp, noside);
2534
2535 /* We can't optimize out "&*" if there's a user-defined operator*. */
2536 if (unop_user_defined_p (UNOP_IND, x))
2537 {
2538 x = value_x_unop (x, UNOP_IND, noside);
2539 return evaluate_subexp_for_address_base (exp, noside, x);
2540 }
2541
2542 return coerce_array (x);
2543}
2544
0c8effa3
TT
2545value *
2546var_msym_value_operation::evaluate_for_address (struct expression *exp,
2547 enum noside noside)
2548{
9c79936b
TT
2549 const bound_minimal_symbol &b = std::get<0> (m_storage);
2550 value *val = evaluate_var_msym_value (noside, b.objfile, b.minsym);
0c8effa3
TT
2551 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2552 {
2553 struct type *type = lookup_pointer_type (value_type (val));
2554 return value_zero (type, not_lval);
2555 }
2556 else
2557 return value_addr (val);
2558}
2559
cbc18219
TT
2560value *
2561unop_memval_operation::evaluate_for_address (struct expression *exp,
2562 enum noside noside)
2563{
2564 return value_cast (lookup_pointer_type (std::get<1> (m_storage)),
2565 std::get<0> (m_storage)->evaluate (nullptr, exp, noside));
2566}
2567
2568value *
2569unop_memval_type_operation::evaluate_for_address (struct expression *exp,
2570 enum noside noside)
2571{
2572 value *typeval = std::get<0> (m_storage)->evaluate (nullptr, exp,
2573 EVAL_AVOID_SIDE_EFFECTS);
2574 struct type *type = value_type (typeval);
2575 return value_cast (lookup_pointer_type (type),
2576 std::get<1> (m_storage)->evaluate (nullptr, exp, noside));
2577}
2578
e82a5afc
TT
2579value *
2580var_value_operation::evaluate_for_address (struct expression *exp,
2581 enum noside noside)
2582{
9e5e03df 2583 symbol *var = std::get<0> (m_storage).symbol;
e82a5afc
TT
2584
2585 /* C++: The "address" of a reference should yield the address
2586 * of the object pointed to. Let value_addr() deal with it. */
2587 if (TYPE_IS_REFERENCE (SYMBOL_TYPE (var)))
2588 return operation::evaluate_for_address (exp, noside);
2589
2590 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2591 {
2592 struct type *type = lookup_pointer_type (SYMBOL_TYPE (var));
2593 enum address_class sym_class = SYMBOL_CLASS (var);
2594
2595 if (sym_class == LOC_CONST
2596 || sym_class == LOC_CONST_BYTES
2597 || sym_class == LOC_REGISTER)
2598 error (_("Attempt to take address of register or constant."));
2599
2600 return value_zero (type, not_lval);
2601 }
2602 else
9e5e03df 2603 return address_of_variable (var, std::get<0> (m_storage).block);
e82a5afc
TT
2604}
2605
2606value *
2607var_value_operation::evaluate_with_coercion (struct expression *exp,
2608 enum noside noside)
2609{
9e5e03df 2610 struct symbol *var = std::get<0> (m_storage).symbol;
e82a5afc
TT
2611 struct type *type = check_typedef (SYMBOL_TYPE (var));
2612 if (type->code () == TYPE_CODE_ARRAY
2613 && !type->is_vector ()
2614 && CAST_IS_CONVERSION (exp->language_defn))
2615 {
9e5e03df
TT
2616 struct value *val = address_of_variable (var,
2617 std::get<0> (m_storage).block);
e82a5afc
TT
2618 return value_cast (lookup_pointer_type (TYPE_TARGET_TYPE (type)), val);
2619 }
2620 return evaluate (nullptr, exp, noside);
2621}
2622
2623}
2624
13ea014a
TT
2625/* Helper function for evaluating the size of a type. */
2626
2627static value *
2628evaluate_subexp_for_sizeof_base (struct expression *exp, struct type *type)
2629{
2630 /* FIXME: This should be size_t. */
2631 struct type *size_type = builtin_type (exp->gdbarch)->builtin_int;
2632 /* $5.3.3/2 of the C++ Standard (n3290 draft) says of sizeof:
2633 "When applied to a reference or a reference type, the result is
2634 the size of the referenced type." */
2635 type = check_typedef (type);
2636 if (exp->language_defn->la_language == language_cplus
2637 && (TYPE_IS_REFERENCE (type)))
2638 type = check_typedef (TYPE_TARGET_TYPE (type));
2639 return value_from_longest (size_type, (LONGEST) TYPE_LENGTH (type));
2640}
2641
e2803273
TT
2642namespace expr
2643{
2644
2645value *
2646operation::evaluate_for_sizeof (struct expression *exp, enum noside noside)
2647{
2648 value *val = evaluate (nullptr, exp, EVAL_AVOID_SIDE_EFFECTS);
2649 return evaluate_subexp_for_sizeof_base (exp, value_type (val));
2650}
2651
0c8effa3
TT
2652value *
2653var_msym_value_operation::evaluate_for_sizeof (struct expression *exp,
2654 enum noside noside)
2655
2656{
9c79936b
TT
2657 const bound_minimal_symbol &b = std::get<0> (m_storage);
2658 value *mval = evaluate_var_msym_value (noside, b.objfile, b.minsym);
0c8effa3
TT
2659
2660 struct type *type = value_type (mval);
2661 if (type->code () == TYPE_CODE_ERROR)
9c79936b 2662 error_unknown_type (b.minsym->print_name ());
0c8effa3
TT
2663
2664 /* FIXME: This should be size_t. */
2665 struct type *size_type = builtin_type (exp->gdbarch)->builtin_int;
2666 return value_from_longest (size_type, TYPE_LENGTH (type));
2667}
2668
224d6424
TT
2669value *
2670subscript_operation::evaluate_for_sizeof (struct expression *exp,
2671 enum noside noside)
2672{
2673 if (noside == EVAL_NORMAL)
2674 {
2675 value *val = std::get<0> (m_storage)->evaluate (nullptr, exp,
2676 EVAL_AVOID_SIDE_EFFECTS);
2677 struct type *type = check_typedef (value_type (val));
2678 if (type->code () == TYPE_CODE_ARRAY)
2679 {
2680 type = check_typedef (TYPE_TARGET_TYPE (type));
2681 if (type->code () == TYPE_CODE_ARRAY)
2682 {
2683 type = type->index_type ();
2684 /* Only re-evaluate the right hand side if the resulting type
2685 is a variable length type. */
2686 if (type->bounds ()->flag_bound_evaluated)
2687 {
2688 val = evaluate (nullptr, exp, EVAL_NORMAL);
2689 /* FIXME: This should be size_t. */
2690 struct type *size_type
2691 = builtin_type (exp->gdbarch)->builtin_int;
2692 return value_from_longest
2693 (size_type, (LONGEST) TYPE_LENGTH (value_type (val)));
2694 }
2695 }
2696 }
2697 }
2698
2699 return operation::evaluate_for_sizeof (exp, noside);
2700}
2701
876469ff
TT
2702value *
2703unop_ind_base_operation::evaluate_for_sizeof (struct expression *exp,
2704 enum noside noside)
2705{
2706 value *val = std::get<0> (m_storage)->evaluate (nullptr, exp,
2707 EVAL_AVOID_SIDE_EFFECTS);
2708 struct type *type = check_typedef (value_type (val));
2709 if (type->code () != TYPE_CODE_PTR
2710 && !TYPE_IS_REFERENCE (type)
2711 && type->code () != TYPE_CODE_ARRAY)
2712 error (_("Attempt to take contents of a non-pointer value."));
2713 type = TYPE_TARGET_TYPE (type);
2714 if (is_dynamic_type (type))
2715 type = value_type (value_ind (val));
2716 /* FIXME: This should be size_t. */
2717 struct type *size_type = builtin_type (exp->gdbarch)->builtin_int;
2718 return value_from_longest (size_type, (LONGEST) TYPE_LENGTH (type));
2719}
2720
cbc18219
TT
2721value *
2722unop_memval_operation::evaluate_for_sizeof (struct expression *exp,
2723 enum noside noside)
2724{
2725 return evaluate_subexp_for_sizeof_base (exp, std::get<1> (m_storage));
2726}
2727
2728value *
2729unop_memval_type_operation::evaluate_for_sizeof (struct expression *exp,
2730 enum noside noside)
2731{
2732 value *typeval = std::get<0> (m_storage)->evaluate (nullptr, exp,
2733 EVAL_AVOID_SIDE_EFFECTS);
2734 return evaluate_subexp_for_sizeof_base (exp, value_type (typeval));
2735}
2736
e82a5afc
TT
2737value *
2738var_value_operation::evaluate_for_sizeof (struct expression *exp,
2739 enum noside noside)
2740{
9e5e03df 2741 struct type *type = SYMBOL_TYPE (std::get<0> (m_storage).symbol);
e82a5afc
TT
2742 if (is_dynamic_type (type))
2743 {
2744 value *val = evaluate (nullptr, exp, EVAL_NORMAL);
2745 type = value_type (val);
2746 if (type->code () == TYPE_CODE_ARRAY)
2747 {
2748 /* FIXME: This should be size_t. */
2749 struct type *size_type = builtin_type (exp->gdbarch)->builtin_int;
2750 if (type_not_allocated (type) || type_not_associated (type))
2751 return value_zero (size_type, not_lval);
2752 else if (is_dynamic_type (type->index_type ())
2753 && type->bounds ()->high.kind () == PROP_UNDEFINED)
2754 return allocate_optimized_out_value (size_type);
2755 }
2756 }
2757 return evaluate_subexp_for_sizeof_base (exp, type);
2758}
2759
0c8effa3
TT
2760value *
2761var_msym_value_operation::evaluate_for_cast (struct type *to_type,
2762 struct expression *exp,
2763 enum noside noside)
2764{
2765 if (noside == EVAL_AVOID_SIDE_EFFECTS)
2766 return value_zero (to_type, not_lval);
2767
9c79936b
TT
2768 const bound_minimal_symbol &b = std::get<0> (m_storage);
2769 value *val = evaluate_var_msym_value (noside, b.objfile, b.minsym);
0c8effa3 2770
0c8effa3
TT
2771 val = value_cast (to_type, val);
2772
2773 /* Don't allow e.g. '&(int)var_with_no_debug_info'. */
2774 if (VALUE_LVAL (val) == lval_memory)
2775 {
2776 if (value_lazy (val))
2777 value_fetch_lazy (val);
2778 VALUE_LVAL (val) = not_lval;
2779 }
2780 return val;
2781}
2782
e82a5afc
TT
2783value *
2784var_value_operation::evaluate_for_cast (struct type *to_type,
2785 struct expression *exp,
2786 enum noside noside)
2787{
2788 value *val = evaluate_var_value (noside,
9e5e03df
TT
2789 std::get<0> (m_storage).block,
2790 std::get<0> (m_storage).symbol);
e82a5afc 2791
e82a5afc
TT
2792 val = value_cast (to_type, val);
2793
2794 /* Don't allow e.g. '&(int)var_with_no_debug_info'. */
2795 if (VALUE_LVAL (val) == lval_memory)
2796 {
2797 if (value_lazy (val))
2798 value_fetch_lazy (val);
2799 VALUE_LVAL (val) = not_lval;
2800 }
2801 return val;
2802}
2803
0c8effa3
TT
2804}
2805
0963b4bd 2806/* Parse a type expression in the string [P..P+LENGTH). */
c906108c
SS
2807
2808struct type *
f5756acc 2809parse_and_eval_type (const char *p, int length)
c906108c 2810{
c5aa993b 2811 char *tmp = (char *) alloca (length + 4);
d7f9d729 2812
c5aa993b
JM
2813 tmp[0] = '(';
2814 memcpy (tmp + 1, p, length);
2815 tmp[length + 1] = ')';
2816 tmp[length + 2] = '0';
2817 tmp[length + 3] = '\0';
4d01a485 2818 expression_up expr = parse_expression (tmp);
1eaebe02
TT
2819 expr::unop_cast_operation *op
2820 = dynamic_cast<expr::unop_cast_operation *> (expr->op.get ());
2821 if (op == nullptr)
8a3fe4f8 2822 error (_("Internal error in eval_type."));
1eaebe02 2823 return op->get_type ();
c906108c 2824}
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