gdb/testsuite/
[deliverable/binutils-gdb.git] / gdb / valops.c
CommitLineData
c906108c 1/* Perform non-arithmetic operations on values, for GDB.
990a07ab 2
c5a57081 3 Copyright (C) 1986-2012 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"
21#include "symtab.h"
22#include "gdbtypes.h"
23#include "value.h"
24#include "frame.h"
25#include "inferior.h"
26#include "gdbcore.h"
27#include "target.h"
28#include "demangle.h"
29#include "language.h"
30#include "gdbcmd.h"
4e052eda 31#include "regcache.h"
015a42b4 32#include "cp-abi.h"
fe898f56 33#include "block.h"
04714b91 34#include "infcall.h"
de4f826b 35#include "dictionary.h"
b6429628 36#include "cp-support.h"
4ef30785 37#include "dfp.h"
029a67e4 38#include "user-regs.h"
e6ca34fc 39#include "tracepoint.h"
c906108c
SS
40#include <errno.h>
41#include "gdb_string.h"
4a1970e4 42#include "gdb_assert.h"
79c2c32d 43#include "cp-support.h"
f4c5303c 44#include "observer.h"
3e3b026f
UW
45#include "objfiles.h"
46#include "symtab.h"
79afc5ef 47#include "exceptions.h"
c906108c 48
070ad9f0 49extern int overload_debug;
c906108c
SS
50/* Local functions. */
51
ad2f7632
DJ
52static int typecmp (int staticp, int varargs, int nargs,
53 struct field t1[], struct value *t2[]);
c906108c 54
714f19d5 55static struct value *search_struct_field (const char *, struct value *,
ac3eeb49 56 int, struct type *, int);
c906108c 57
714f19d5
TT
58static struct value *search_struct_method (const char *, struct value **,
59 struct value **,
60 int, int *, struct type *);
c906108c 61
da096638 62static int find_oload_champ_namespace (struct value **, int,
ac3eeb49
MS
63 const char *, const char *,
64 struct symbol ***,
7322dca9
SW
65 struct badness_vector **,
66 const int no_adl);
8d577d32
DC
67
68static
da096638 69int find_oload_champ_namespace_loop (struct value **, int,
ac3eeb49
MS
70 const char *, const char *,
71 int, struct symbol ***,
7322dca9
SW
72 struct badness_vector **, int *,
73 const int no_adl);
ac3eeb49 74
da096638 75static int find_oload_champ (struct value **, int, int, int,
ac3eeb49
MS
76 struct fn_field *, struct symbol **,
77 struct badness_vector **);
78
79static int oload_method_static (int, struct fn_field *, int);
8d577d32
DC
80
81enum oload_classification { STANDARD, NON_STANDARD, INCOMPATIBLE };
82
83static enum
ac3eeb49
MS
84oload_classification classify_oload_match (struct badness_vector *,
85 int, int);
8d577d32 86
ac3eeb49
MS
87static struct value *value_struct_elt_for_reference (struct type *,
88 int, struct type *,
89 char *,
90 struct type *,
91 int, enum noside);
79c2c32d 92
ac3eeb49
MS
93static struct value *value_namespace_elt (const struct type *,
94 char *, int , enum noside);
79c2c32d 95
ac3eeb49
MS
96static struct value *value_maybe_namespace_elt (const struct type *,
97 char *, int,
98 enum noside);
63d06c5c 99
a14ed312 100static CORE_ADDR allocate_space_in_inferior (int);
c906108c 101
f23631e4 102static struct value *cast_into_complex (struct type *, struct value *);
c906108c 103
714f19d5 104static struct fn_field *find_method_list (struct value **, const char *,
ac3eeb49
MS
105 int, struct type *, int *,
106 struct type **, int *);
7a292a7a 107
a14ed312 108void _initialize_valops (void);
c906108c 109
c906108c 110#if 0
ac3eeb49
MS
111/* Flag for whether we want to abandon failed expression evals by
112 default. */
113
c906108c
SS
114static int auto_abandon = 0;
115#endif
116
117int overload_resolution = 0;
920d2a44
AC
118static void
119show_overload_resolution (struct ui_file *file, int from_tty,
ac3eeb49
MS
120 struct cmd_list_element *c,
121 const char *value)
920d2a44 122{
3e43a32a
MS
123 fprintf_filtered (file, _("Overload resolution in evaluating "
124 "C++ functions is %s.\n"),
920d2a44
AC
125 value);
126}
242bfc55 127
3e3b026f
UW
128/* Find the address of function name NAME in the inferior. If OBJF_P
129 is non-NULL, *OBJF_P will be set to the OBJFILE where the function
130 is defined. */
c906108c 131
f23631e4 132struct value *
3e3b026f 133find_function_in_inferior (const char *name, struct objfile **objf_p)
c906108c 134{
52f0bd74 135 struct symbol *sym;
a109c7c1 136
2570f2b7 137 sym = lookup_symbol (name, 0, VAR_DOMAIN, 0);
c906108c
SS
138 if (sym != NULL)
139 {
140 if (SYMBOL_CLASS (sym) != LOC_BLOCK)
141 {
8a3fe4f8 142 error (_("\"%s\" exists in this program but is not a function."),
c906108c
SS
143 name);
144 }
3e3b026f
UW
145
146 if (objf_p)
147 *objf_p = SYMBOL_SYMTAB (sym)->objfile;
148
c906108c
SS
149 return value_of_variable (sym, NULL);
150 }
151 else
152 {
ac3eeb49
MS
153 struct minimal_symbol *msymbol =
154 lookup_minimal_symbol (name, NULL, NULL);
a109c7c1 155
c906108c
SS
156 if (msymbol != NULL)
157 {
3e3b026f
UW
158 struct objfile *objfile = msymbol_objfile (msymbol);
159 struct gdbarch *gdbarch = get_objfile_arch (objfile);
160
c906108c 161 struct type *type;
4478b372 162 CORE_ADDR maddr;
3e3b026f 163 type = lookup_pointer_type (builtin_type (gdbarch)->builtin_char);
c906108c
SS
164 type = lookup_function_type (type);
165 type = lookup_pointer_type (type);
4478b372 166 maddr = SYMBOL_VALUE_ADDRESS (msymbol);
3e3b026f
UW
167
168 if (objf_p)
169 *objf_p = objfile;
170
4478b372 171 return value_from_pointer (type, maddr);
c906108c
SS
172 }
173 else
174 {
c5aa993b 175 if (!target_has_execution)
3e43a32a
MS
176 error (_("evaluation of this expression "
177 "requires the target program to be active"));
c5aa993b 178 else
3e43a32a
MS
179 error (_("evaluation of this expression requires the "
180 "program to have a function \"%s\"."),
181 name);
c906108c
SS
182 }
183 }
184}
185
ac3eeb49
MS
186/* Allocate NBYTES of space in the inferior using the inferior's
187 malloc and return a value that is a pointer to the allocated
188 space. */
c906108c 189
f23631e4 190struct value *
fba45db2 191value_allocate_space_in_inferior (int len)
c906108c 192{
3e3b026f
UW
193 struct objfile *objf;
194 struct value *val = find_function_in_inferior ("malloc", &objf);
195 struct gdbarch *gdbarch = get_objfile_arch (objf);
f23631e4 196 struct value *blocklen;
c906108c 197
3e3b026f 198 blocklen = value_from_longest (builtin_type (gdbarch)->builtin_int, len);
c906108c
SS
199 val = call_function_by_hand (val, 1, &blocklen);
200 if (value_logical_not (val))
201 {
202 if (!target_has_execution)
3e43a32a
MS
203 error (_("No memory available to program now: "
204 "you need to start the target first"));
c5aa993b 205 else
8a3fe4f8 206 error (_("No memory available to program: call to malloc failed"));
c906108c
SS
207 }
208 return val;
209}
210
211static CORE_ADDR
fba45db2 212allocate_space_in_inferior (int len)
c906108c
SS
213{
214 return value_as_long (value_allocate_space_in_inferior (len));
215}
216
6af87b03
AR
217/* Cast struct value VAL to type TYPE and return as a value.
218 Both type and val must be of TYPE_CODE_STRUCT or TYPE_CODE_UNION
694182d2
DJ
219 for this to work. Typedef to one of the codes is permitted.
220 Returns NULL if the cast is neither an upcast nor a downcast. */
6af87b03
AR
221
222static struct value *
223value_cast_structs (struct type *type, struct value *v2)
224{
225 struct type *t1;
226 struct type *t2;
227 struct value *v;
228
229 gdb_assert (type != NULL && v2 != NULL);
230
231 t1 = check_typedef (type);
232 t2 = check_typedef (value_type (v2));
233
234 /* Check preconditions. */
235 gdb_assert ((TYPE_CODE (t1) == TYPE_CODE_STRUCT
236 || TYPE_CODE (t1) == TYPE_CODE_UNION)
237 && !!"Precondition is that type is of STRUCT or UNION kind.");
238 gdb_assert ((TYPE_CODE (t2) == TYPE_CODE_STRUCT
239 || TYPE_CODE (t2) == TYPE_CODE_UNION)
240 && !!"Precondition is that value is of STRUCT or UNION kind");
241
191ca0a1
CM
242 if (TYPE_NAME (t1) != NULL
243 && TYPE_NAME (t2) != NULL
244 && !strcmp (TYPE_NAME (t1), TYPE_NAME (t2)))
245 return NULL;
246
6af87b03
AR
247 /* Upcasting: look in the type of the source to see if it contains the
248 type of the target as a superclass. If so, we'll need to
249 offset the pointer rather than just change its type. */
250 if (TYPE_NAME (t1) != NULL)
251 {
252 v = search_struct_field (type_name_no_tag (t1),
253 v2, 0, t2, 1);
254 if (v)
255 return v;
256 }
257
258 /* Downcasting: look in the type of the target to see if it contains the
259 type of the source as a superclass. If so, we'll need to
9c3c02fd 260 offset the pointer rather than just change its type. */
6af87b03
AR
261 if (TYPE_NAME (t2) != NULL)
262 {
9c3c02fd
TT
263 /* Try downcasting using the run-time type of the value. */
264 int full, top, using_enc;
265 struct type *real_type;
266
267 real_type = value_rtti_type (v2, &full, &top, &using_enc);
268 if (real_type)
269 {
270 v = value_full_object (v2, real_type, full, top, using_enc);
271 v = value_at_lazy (real_type, value_address (v));
272
273 /* We might be trying to cast to the outermost enclosing
274 type, in which case search_struct_field won't work. */
275 if (TYPE_NAME (real_type) != NULL
276 && !strcmp (TYPE_NAME (real_type), TYPE_NAME (t1)))
277 return v;
278
279 v = search_struct_field (type_name_no_tag (t2), v, 0, real_type, 1);
280 if (v)
281 return v;
282 }
283
284 /* Try downcasting using information from the destination type
285 T2. This wouldn't work properly for classes with virtual
286 bases, but those were handled above. */
6af87b03
AR
287 v = search_struct_field (type_name_no_tag (t2),
288 value_zero (t1, not_lval), 0, t1, 1);
289 if (v)
290 {
291 /* Downcasting is possible (t1 is superclass of v2). */
42ae5230 292 CORE_ADDR addr2 = value_address (v2);
a109c7c1 293
42ae5230 294 addr2 -= value_address (v) + value_embedded_offset (v);
6af87b03
AR
295 return value_at (type, addr2);
296 }
297 }
694182d2
DJ
298
299 return NULL;
6af87b03
AR
300}
301
fb933624
DJ
302/* Cast one pointer or reference type to another. Both TYPE and
303 the type of ARG2 should be pointer types, or else both should be
b1af9e97
TT
304 reference types. If SUBCLASS_CHECK is non-zero, this will force a
305 check to see whether TYPE is a superclass of ARG2's type. If
306 SUBCLASS_CHECK is zero, then the subclass check is done only when
307 ARG2 is itself non-zero. Returns the new pointer or reference. */
fb933624
DJ
308
309struct value *
b1af9e97
TT
310value_cast_pointers (struct type *type, struct value *arg2,
311 int subclass_check)
fb933624 312{
d160942f 313 struct type *type1 = check_typedef (type);
fb933624 314 struct type *type2 = check_typedef (value_type (arg2));
d160942f 315 struct type *t1 = check_typedef (TYPE_TARGET_TYPE (type1));
fb933624
DJ
316 struct type *t2 = check_typedef (TYPE_TARGET_TYPE (type2));
317
318 if (TYPE_CODE (t1) == TYPE_CODE_STRUCT
319 && TYPE_CODE (t2) == TYPE_CODE_STRUCT
b1af9e97 320 && (subclass_check || !value_logical_not (arg2)))
fb933624 321 {
6af87b03 322 struct value *v2;
fb933624 323
6af87b03
AR
324 if (TYPE_CODE (type2) == TYPE_CODE_REF)
325 v2 = coerce_ref (arg2);
326 else
327 v2 = value_ind (arg2);
3e43a32a
MS
328 gdb_assert (TYPE_CODE (check_typedef (value_type (v2)))
329 == TYPE_CODE_STRUCT && !!"Why did coercion fail?");
6af87b03
AR
330 v2 = value_cast_structs (t1, v2);
331 /* At this point we have what we can have, un-dereference if needed. */
332 if (v2)
fb933624 333 {
6af87b03 334 struct value *v = value_addr (v2);
a109c7c1 335
6af87b03
AR
336 deprecated_set_value_type (v, type);
337 return v;
fb933624 338 }
6af87b03 339 }
fb933624
DJ
340
341 /* No superclass found, just change the pointer type. */
0d5de010 342 arg2 = value_copy (arg2);
fb933624 343 deprecated_set_value_type (arg2, type);
4dfea560 344 set_value_enclosing_type (arg2, type);
fb933624
DJ
345 set_value_pointed_to_offset (arg2, 0); /* pai: chk_val */
346 return arg2;
347}
348
c906108c
SS
349/* Cast value ARG2 to type TYPE and return as a value.
350 More general than a C cast: accepts any two types of the same length,
351 and if ARG2 is an lvalue it can be cast into anything at all. */
352/* In C++, casts may change pointer or object representations. */
353
f23631e4
AC
354struct value *
355value_cast (struct type *type, struct value *arg2)
c906108c 356{
52f0bd74
AC
357 enum type_code code1;
358 enum type_code code2;
359 int scalar;
c906108c
SS
360 struct type *type2;
361
362 int convert_to_boolean = 0;
c5aa993b 363
df407dfe 364 if (value_type (arg2) == type)
c906108c
SS
365 return arg2;
366
6af87b03
AR
367 code1 = TYPE_CODE (check_typedef (type));
368
369 /* Check if we are casting struct reference to struct reference. */
370 if (code1 == TYPE_CODE_REF)
371 {
372 /* We dereference type; then we recurse and finally
581e13c1 373 we generate value of the given reference. Nothing wrong with
6af87b03
AR
374 that. */
375 struct type *t1 = check_typedef (type);
376 struct type *dereftype = check_typedef (TYPE_TARGET_TYPE (t1));
377 struct value *val = value_cast (dereftype, arg2);
a109c7c1 378
6af87b03
AR
379 return value_ref (val);
380 }
381
382 code2 = TYPE_CODE (check_typedef (value_type (arg2)));
383
384 if (code2 == TYPE_CODE_REF)
385 /* We deref the value and then do the cast. */
386 return value_cast (type, coerce_ref (arg2));
387
c906108c
SS
388 CHECK_TYPEDEF (type);
389 code1 = TYPE_CODE (type);
994b9211 390 arg2 = coerce_ref (arg2);
df407dfe 391 type2 = check_typedef (value_type (arg2));
c906108c 392
fb933624
DJ
393 /* You can't cast to a reference type. See value_cast_pointers
394 instead. */
395 gdb_assert (code1 != TYPE_CODE_REF);
396
ac3eeb49
MS
397 /* A cast to an undetermined-length array_type, such as
398 (TYPE [])OBJECT, is treated like a cast to (TYPE [N])OBJECT,
399 where N is sizeof(OBJECT)/sizeof(TYPE). */
c906108c
SS
400 if (code1 == TYPE_CODE_ARRAY)
401 {
402 struct type *element_type = TYPE_TARGET_TYPE (type);
403 unsigned element_length = TYPE_LENGTH (check_typedef (element_type));
a109c7c1 404
d78df370 405 if (element_length > 0 && TYPE_ARRAY_UPPER_BOUND_IS_UNDEFINED (type))
c906108c
SS
406 {
407 struct type *range_type = TYPE_INDEX_TYPE (type);
408 int val_length = TYPE_LENGTH (type2);
409 LONGEST low_bound, high_bound, new_length;
a109c7c1 410
c906108c
SS
411 if (get_discrete_bounds (range_type, &low_bound, &high_bound) < 0)
412 low_bound = 0, high_bound = 0;
413 new_length = val_length / element_length;
414 if (val_length % element_length != 0)
3e43a32a
MS
415 warning (_("array element type size does not "
416 "divide object size in cast"));
ac3eeb49
MS
417 /* FIXME-type-allocation: need a way to free this type when
418 we are done with it. */
c906108c
SS
419 range_type = create_range_type ((struct type *) NULL,
420 TYPE_TARGET_TYPE (range_type),
421 low_bound,
422 new_length + low_bound - 1);
ac3eeb49
MS
423 deprecated_set_value_type (arg2,
424 create_array_type ((struct type *) NULL,
425 element_type,
426 range_type));
c906108c
SS
427 return arg2;
428 }
429 }
430
431 if (current_language->c_style_arrays
3bdf2bbd
KW
432 && TYPE_CODE (type2) == TYPE_CODE_ARRAY
433 && !TYPE_VECTOR (type2))
c906108c
SS
434 arg2 = value_coerce_array (arg2);
435
436 if (TYPE_CODE (type2) == TYPE_CODE_FUNC)
437 arg2 = value_coerce_function (arg2);
438
df407dfe 439 type2 = check_typedef (value_type (arg2));
c906108c
SS
440 code2 = TYPE_CODE (type2);
441
442 if (code1 == TYPE_CODE_COMPLEX)
443 return cast_into_complex (type, arg2);
444 if (code1 == TYPE_CODE_BOOL)
445 {
446 code1 = TYPE_CODE_INT;
447 convert_to_boolean = 1;
448 }
449 if (code1 == TYPE_CODE_CHAR)
450 code1 = TYPE_CODE_INT;
451 if (code2 == TYPE_CODE_BOOL || code2 == TYPE_CODE_CHAR)
452 code2 = TYPE_CODE_INT;
453
454 scalar = (code2 == TYPE_CODE_INT || code2 == TYPE_CODE_FLT
4ef30785
TJB
455 || code2 == TYPE_CODE_DECFLOAT || code2 == TYPE_CODE_ENUM
456 || code2 == TYPE_CODE_RANGE);
c906108c 457
6af87b03
AR
458 if ((code1 == TYPE_CODE_STRUCT || code1 == TYPE_CODE_UNION)
459 && (code2 == TYPE_CODE_STRUCT || code2 == TYPE_CODE_UNION)
c906108c 460 && TYPE_NAME (type) != 0)
694182d2
DJ
461 {
462 struct value *v = value_cast_structs (type, arg2);
a109c7c1 463
694182d2
DJ
464 if (v)
465 return v;
466 }
467
c906108c
SS
468 if (code1 == TYPE_CODE_FLT && scalar)
469 return value_from_double (type, value_as_double (arg2));
4ef30785
TJB
470 else if (code1 == TYPE_CODE_DECFLOAT && scalar)
471 {
e17a4113 472 enum bfd_endian byte_order = gdbarch_byte_order (get_type_arch (type));
4ef30785
TJB
473 int dec_len = TYPE_LENGTH (type);
474 gdb_byte dec[16];
475
476 if (code2 == TYPE_CODE_FLT)
e17a4113 477 decimal_from_floating (arg2, dec, dec_len, byte_order);
4ef30785
TJB
478 else if (code2 == TYPE_CODE_DECFLOAT)
479 decimal_convert (value_contents (arg2), TYPE_LENGTH (type2),
e17a4113 480 byte_order, dec, dec_len, byte_order);
4ef30785
TJB
481 else
482 /* The only option left is an integral type. */
e17a4113 483 decimal_from_integral (arg2, dec, dec_len, byte_order);
4ef30785
TJB
484
485 return value_from_decfloat (type, dec);
486 }
c906108c
SS
487 else if ((code1 == TYPE_CODE_INT || code1 == TYPE_CODE_ENUM
488 || code1 == TYPE_CODE_RANGE)
0d5de010
DJ
489 && (scalar || code2 == TYPE_CODE_PTR
490 || code2 == TYPE_CODE_MEMBERPTR))
c906108c
SS
491 {
492 LONGEST longest;
c5aa993b 493
2bf1f4a1 494 /* When we cast pointers to integers, we mustn't use
76e71323 495 gdbarch_pointer_to_address to find the address the pointer
2bf1f4a1
JB
496 represents, as value_as_long would. GDB should evaluate
497 expressions just as the compiler would --- and the compiler
498 sees a cast as a simple reinterpretation of the pointer's
499 bits. */
500 if (code2 == TYPE_CODE_PTR)
e17a4113
UW
501 longest = extract_unsigned_integer
502 (value_contents (arg2), TYPE_LENGTH (type2),
503 gdbarch_byte_order (get_type_arch (type2)));
2bf1f4a1
JB
504 else
505 longest = value_as_long (arg2);
802db21b 506 return value_from_longest (type, convert_to_boolean ?
716c501e 507 (LONGEST) (longest ? 1 : 0) : longest);
c906108c 508 }
ac3eeb49
MS
509 else if (code1 == TYPE_CODE_PTR && (code2 == TYPE_CODE_INT
510 || code2 == TYPE_CODE_ENUM
511 || code2 == TYPE_CODE_RANGE))
634acd5f 512 {
4603e466
DT
513 /* TYPE_LENGTH (type) is the length of a pointer, but we really
514 want the length of an address! -- we are really dealing with
515 addresses (i.e., gdb representations) not pointers (i.e.,
516 target representations) here.
517
518 This allows things like "print *(int *)0x01000234" to work
519 without printing a misleading message -- which would
520 otherwise occur when dealing with a target having two byte
521 pointers and four byte addresses. */
522
50810684 523 int addr_bit = gdbarch_addr_bit (get_type_arch (type2));
634acd5f 524 LONGEST longest = value_as_long (arg2);
a109c7c1 525
4603e466 526 if (addr_bit < sizeof (LONGEST) * HOST_CHAR_BIT)
634acd5f 527 {
4603e466
DT
528 if (longest >= ((LONGEST) 1 << addr_bit)
529 || longest <= -((LONGEST) 1 << addr_bit))
8a3fe4f8 530 warning (_("value truncated"));
634acd5f
AC
531 }
532 return value_from_longest (type, longest);
533 }
0d5de010
DJ
534 else if (code1 == TYPE_CODE_METHODPTR && code2 == TYPE_CODE_INT
535 && value_as_long (arg2) == 0)
536 {
537 struct value *result = allocate_value (type);
a109c7c1 538
ad4820ab 539 cplus_make_method_ptr (type, value_contents_writeable (result), 0, 0);
0d5de010
DJ
540 return result;
541 }
542 else if (code1 == TYPE_CODE_MEMBERPTR && code2 == TYPE_CODE_INT
543 && value_as_long (arg2) == 0)
544 {
545 /* The Itanium C++ ABI represents NULL pointers to members as
546 minus one, instead of biasing the normal case. */
547 return value_from_longest (type, -1);
548 }
3bdf2bbd
KW
549 else if (code1 == TYPE_CODE_ARRAY && TYPE_VECTOR (type) && scalar)
550 {
551 /* Widen the scalar to a vector. */
552 struct type *eltype;
553 struct value *val;
dbc98a8b
KW
554 LONGEST low_bound, high_bound;
555 int i;
556
557 if (!get_array_bounds (type, &low_bound, &high_bound))
558 error (_("Could not determine the vector bounds"));
3bdf2bbd
KW
559
560 eltype = check_typedef (TYPE_TARGET_TYPE (type));
561 arg2 = value_cast (eltype, arg2);
562 val = allocate_value (type);
3bdf2bbd 563
dbc98a8b 564 for (i = 0; i < high_bound - low_bound + 1; i++)
3bdf2bbd
KW
565 {
566 /* Duplicate the contents of arg2 into the destination vector. */
567 memcpy (value_contents_writeable (val) + (i * TYPE_LENGTH (eltype)),
568 value_contents_all (arg2), TYPE_LENGTH (eltype));
569 }
570 return val;
571 }
c906108c
SS
572 else if (TYPE_LENGTH (type) == TYPE_LENGTH (type2))
573 {
574 if (code1 == TYPE_CODE_PTR && code2 == TYPE_CODE_PTR)
b1af9e97 575 return value_cast_pointers (type, arg2, 0);
fb933624 576
0d5de010 577 arg2 = value_copy (arg2);
04624583 578 deprecated_set_value_type (arg2, type);
4dfea560 579 set_value_enclosing_type (arg2, type);
b44d461b 580 set_value_pointed_to_offset (arg2, 0); /* pai: chk_val */
c906108c
SS
581 return arg2;
582 }
c906108c 583 else if (VALUE_LVAL (arg2) == lval_memory)
42ae5230 584 return value_at_lazy (type, value_address (arg2));
c906108c
SS
585 else if (code1 == TYPE_CODE_VOID)
586 {
48319d1f 587 return value_zero (type, not_lval);
c906108c
SS
588 }
589 else
590 {
8a3fe4f8 591 error (_("Invalid cast."));
c906108c
SS
592 return 0;
593 }
594}
595
4e8f195d
TT
596/* The C++ reinterpret_cast operator. */
597
598struct value *
599value_reinterpret_cast (struct type *type, struct value *arg)
600{
601 struct value *result;
602 struct type *real_type = check_typedef (type);
603 struct type *arg_type, *dest_type;
604 int is_ref = 0;
605 enum type_code dest_code, arg_code;
606
607 /* Do reference, function, and array conversion. */
608 arg = coerce_array (arg);
609
610 /* Attempt to preserve the type the user asked for. */
611 dest_type = type;
612
613 /* If we are casting to a reference type, transform
614 reinterpret_cast<T&>(V) to *reinterpret_cast<T*>(&V). */
615 if (TYPE_CODE (real_type) == TYPE_CODE_REF)
616 {
617 is_ref = 1;
618 arg = value_addr (arg);
619 dest_type = lookup_pointer_type (TYPE_TARGET_TYPE (dest_type));
620 real_type = lookup_pointer_type (real_type);
621 }
622
623 arg_type = value_type (arg);
624
625 dest_code = TYPE_CODE (real_type);
626 arg_code = TYPE_CODE (arg_type);
627
628 /* We can convert pointer types, or any pointer type to int, or int
629 type to pointer. */
630 if ((dest_code == TYPE_CODE_PTR && arg_code == TYPE_CODE_INT)
631 || (dest_code == TYPE_CODE_INT && arg_code == TYPE_CODE_PTR)
632 || (dest_code == TYPE_CODE_METHODPTR && arg_code == TYPE_CODE_INT)
633 || (dest_code == TYPE_CODE_INT && arg_code == TYPE_CODE_METHODPTR)
634 || (dest_code == TYPE_CODE_MEMBERPTR && arg_code == TYPE_CODE_INT)
635 || (dest_code == TYPE_CODE_INT && arg_code == TYPE_CODE_MEMBERPTR)
636 || (dest_code == arg_code
637 && (dest_code == TYPE_CODE_PTR
638 || dest_code == TYPE_CODE_METHODPTR
639 || dest_code == TYPE_CODE_MEMBERPTR)))
640 result = value_cast (dest_type, arg);
641 else
642 error (_("Invalid reinterpret_cast"));
643
644 if (is_ref)
645 result = value_cast (type, value_ref (value_ind (result)));
646
647 return result;
648}
649
650/* A helper for value_dynamic_cast. This implements the first of two
651 runtime checks: we iterate over all the base classes of the value's
652 class which are equal to the desired class; if only one of these
653 holds the value, then it is the answer. */
654
655static int
656dynamic_cast_check_1 (struct type *desired_type,
8af8e3bc
PA
657 const gdb_byte *valaddr,
658 int embedded_offset,
4e8f195d 659 CORE_ADDR address,
8af8e3bc 660 struct value *val,
4e8f195d
TT
661 struct type *search_type,
662 CORE_ADDR arg_addr,
663 struct type *arg_type,
664 struct value **result)
665{
666 int i, result_count = 0;
667
668 for (i = 0; i < TYPE_N_BASECLASSES (search_type) && result_count < 2; ++i)
669 {
8af8e3bc
PA
670 int offset = baseclass_offset (search_type, i, valaddr, embedded_offset,
671 address, val);
a109c7c1 672
4e8f195d
TT
673 if (class_types_same_p (desired_type, TYPE_BASECLASS (search_type, i)))
674 {
8af8e3bc
PA
675 if (address + embedded_offset + offset >= arg_addr
676 && address + embedded_offset + offset < arg_addr + TYPE_LENGTH (arg_type))
4e8f195d
TT
677 {
678 ++result_count;
679 if (!*result)
680 *result = value_at_lazy (TYPE_BASECLASS (search_type, i),
8af8e3bc 681 address + embedded_offset + offset);
4e8f195d
TT
682 }
683 }
684 else
685 result_count += dynamic_cast_check_1 (desired_type,
8af8e3bc
PA
686 valaddr,
687 embedded_offset + offset,
688 address, val,
4e8f195d
TT
689 TYPE_BASECLASS (search_type, i),
690 arg_addr,
691 arg_type,
692 result);
693 }
694
695 return result_count;
696}
697
698/* A helper for value_dynamic_cast. This implements the second of two
699 runtime checks: we look for a unique public sibling class of the
700 argument's declared class. */
701
702static int
703dynamic_cast_check_2 (struct type *desired_type,
8af8e3bc
PA
704 const gdb_byte *valaddr,
705 int embedded_offset,
4e8f195d 706 CORE_ADDR address,
8af8e3bc 707 struct value *val,
4e8f195d
TT
708 struct type *search_type,
709 struct value **result)
710{
711 int i, result_count = 0;
712
713 for (i = 0; i < TYPE_N_BASECLASSES (search_type) && result_count < 2; ++i)
714 {
715 int offset;
716
717 if (! BASETYPE_VIA_PUBLIC (search_type, i))
718 continue;
719
8af8e3bc
PA
720 offset = baseclass_offset (search_type, i, valaddr, embedded_offset,
721 address, val);
4e8f195d
TT
722 if (class_types_same_p (desired_type, TYPE_BASECLASS (search_type, i)))
723 {
724 ++result_count;
725 if (*result == NULL)
726 *result = value_at_lazy (TYPE_BASECLASS (search_type, i),
8af8e3bc 727 address + embedded_offset + offset);
4e8f195d
TT
728 }
729 else
730 result_count += dynamic_cast_check_2 (desired_type,
8af8e3bc
PA
731 valaddr,
732 embedded_offset + offset,
733 address, val,
4e8f195d
TT
734 TYPE_BASECLASS (search_type, i),
735 result);
736 }
737
738 return result_count;
739}
740
741/* The C++ dynamic_cast operator. */
742
743struct value *
744value_dynamic_cast (struct type *type, struct value *arg)
745{
8f78b329 746 int full, top, using_enc;
4e8f195d
TT
747 struct type *resolved_type = check_typedef (type);
748 struct type *arg_type = check_typedef (value_type (arg));
749 struct type *class_type, *rtti_type;
750 struct value *result, *tem, *original_arg = arg;
751 CORE_ADDR addr;
752 int is_ref = TYPE_CODE (resolved_type) == TYPE_CODE_REF;
753
754 if (TYPE_CODE (resolved_type) != TYPE_CODE_PTR
755 && TYPE_CODE (resolved_type) != TYPE_CODE_REF)
756 error (_("Argument to dynamic_cast must be a pointer or reference type"));
757 if (TYPE_CODE (TYPE_TARGET_TYPE (resolved_type)) != TYPE_CODE_VOID
758 && TYPE_CODE (TYPE_TARGET_TYPE (resolved_type)) != TYPE_CODE_CLASS)
759 error (_("Argument to dynamic_cast must be pointer to class or `void *'"));
760
761 class_type = check_typedef (TYPE_TARGET_TYPE (resolved_type));
762 if (TYPE_CODE (resolved_type) == TYPE_CODE_PTR)
763 {
764 if (TYPE_CODE (arg_type) != TYPE_CODE_PTR
765 && ! (TYPE_CODE (arg_type) == TYPE_CODE_INT
766 && value_as_long (arg) == 0))
767 error (_("Argument to dynamic_cast does not have pointer type"));
768 if (TYPE_CODE (arg_type) == TYPE_CODE_PTR)
769 {
770 arg_type = check_typedef (TYPE_TARGET_TYPE (arg_type));
771 if (TYPE_CODE (arg_type) != TYPE_CODE_CLASS)
3e43a32a
MS
772 error (_("Argument to dynamic_cast does "
773 "not have pointer to class type"));
4e8f195d
TT
774 }
775
776 /* Handle NULL pointers. */
777 if (value_as_long (arg) == 0)
778 return value_zero (type, not_lval);
779
780 arg = value_ind (arg);
781 }
782 else
783 {
784 if (TYPE_CODE (arg_type) != TYPE_CODE_CLASS)
785 error (_("Argument to dynamic_cast does not have class type"));
786 }
787
788 /* If the classes are the same, just return the argument. */
789 if (class_types_same_p (class_type, arg_type))
790 return value_cast (type, arg);
791
792 /* If the target type is a unique base class of the argument's
793 declared type, just cast it. */
794 if (is_ancestor (class_type, arg_type))
795 {
796 if (is_unique_ancestor (class_type, arg))
797 return value_cast (type, original_arg);
798 error (_("Ambiguous dynamic_cast"));
799 }
800
801 rtti_type = value_rtti_type (arg, &full, &top, &using_enc);
802 if (! rtti_type)
803 error (_("Couldn't determine value's most derived type for dynamic_cast"));
804
805 /* Compute the most derived object's address. */
806 addr = value_address (arg);
807 if (full)
808 {
809 /* Done. */
810 }
811 else if (using_enc)
812 addr += top;
813 else
814 addr += top + value_embedded_offset (arg);
815
816 /* dynamic_cast<void *> means to return a pointer to the
817 most-derived object. */
818 if (TYPE_CODE (resolved_type) == TYPE_CODE_PTR
819 && TYPE_CODE (TYPE_TARGET_TYPE (resolved_type)) == TYPE_CODE_VOID)
820 return value_at_lazy (type, addr);
821
822 tem = value_at (type, addr);
823
824 /* The first dynamic check specified in 5.2.7. */
825 if (is_public_ancestor (arg_type, TYPE_TARGET_TYPE (resolved_type)))
826 {
827 if (class_types_same_p (rtti_type, TYPE_TARGET_TYPE (resolved_type)))
828 return tem;
829 result = NULL;
830 if (dynamic_cast_check_1 (TYPE_TARGET_TYPE (resolved_type),
8af8e3bc
PA
831 value_contents_for_printing (tem),
832 value_embedded_offset (tem),
833 value_address (tem), tem,
4e8f195d
TT
834 rtti_type, addr,
835 arg_type,
836 &result) == 1)
837 return value_cast (type,
838 is_ref ? value_ref (result) : value_addr (result));
839 }
840
841 /* The second dynamic check specified in 5.2.7. */
842 result = NULL;
843 if (is_public_ancestor (arg_type, rtti_type)
844 && dynamic_cast_check_2 (TYPE_TARGET_TYPE (resolved_type),
8af8e3bc
PA
845 value_contents_for_printing (tem),
846 value_embedded_offset (tem),
847 value_address (tem), tem,
4e8f195d
TT
848 rtti_type, &result) == 1)
849 return value_cast (type,
850 is_ref ? value_ref (result) : value_addr (result));
851
852 if (TYPE_CODE (resolved_type) == TYPE_CODE_PTR)
853 return value_zero (type, not_lval);
854
855 error (_("dynamic_cast failed"));
856}
857
c906108c
SS
858/* Create a value of type TYPE that is zero, and return it. */
859
f23631e4 860struct value *
fba45db2 861value_zero (struct type *type, enum lval_type lv)
c906108c 862{
f23631e4 863 struct value *val = allocate_value (type);
c906108c 864
bb7da2bf 865 VALUE_LVAL (val) = (lv == lval_computed ? not_lval : lv);
c906108c
SS
866 return val;
867}
868
18a46dbe 869/* Create a not_lval value of numeric type TYPE that is one, and return it. */
301f0ecf
DE
870
871struct value *
18a46dbe 872value_one (struct type *type)
301f0ecf
DE
873{
874 struct type *type1 = check_typedef (type);
4e608b4f 875 struct value *val;
301f0ecf
DE
876
877 if (TYPE_CODE (type1) == TYPE_CODE_DECFLOAT)
878 {
e17a4113 879 enum bfd_endian byte_order = gdbarch_byte_order (get_type_arch (type));
301f0ecf 880 gdb_byte v[16];
a109c7c1 881
e17a4113 882 decimal_from_string (v, TYPE_LENGTH (type), byte_order, "1");
301f0ecf
DE
883 val = value_from_decfloat (type, v);
884 }
885 else if (TYPE_CODE (type1) == TYPE_CODE_FLT)
886 {
887 val = value_from_double (type, (DOUBLEST) 1);
888 }
889 else if (is_integral_type (type1))
890 {
891 val = value_from_longest (type, (LONGEST) 1);
892 }
120bd360
KW
893 else if (TYPE_CODE (type1) == TYPE_CODE_ARRAY && TYPE_VECTOR (type1))
894 {
895 struct type *eltype = check_typedef (TYPE_TARGET_TYPE (type1));
cfa6f054
KW
896 int i;
897 LONGEST low_bound, high_bound;
120bd360
KW
898 struct value *tmp;
899
cfa6f054
KW
900 if (!get_array_bounds (type1, &low_bound, &high_bound))
901 error (_("Could not determine the vector bounds"));
902
120bd360 903 val = allocate_value (type);
cfa6f054 904 for (i = 0; i < high_bound - low_bound + 1; i++)
120bd360 905 {
18a46dbe 906 tmp = value_one (eltype);
120bd360
KW
907 memcpy (value_contents_writeable (val) + i * TYPE_LENGTH (eltype),
908 value_contents_all (tmp), TYPE_LENGTH (eltype));
909 }
910 }
301f0ecf
DE
911 else
912 {
913 error (_("Not a numeric type."));
914 }
915
18a46dbe
JK
916 /* value_one result is never used for assignments to. */
917 gdb_assert (VALUE_LVAL (val) == not_lval);
918
301f0ecf
DE
919 return val;
920}
921
4e5d721f
DE
922/* Helper function for value_at, value_at_lazy, and value_at_lazy_stack. */
923
924static struct value *
925get_value_at (struct type *type, CORE_ADDR addr, int lazy)
926{
927 struct value *val;
928
929 if (TYPE_CODE (check_typedef (type)) == TYPE_CODE_VOID)
930 error (_("Attempt to dereference a generic pointer."));
931
a3d34bf4 932 val = value_from_contents_and_address (type, NULL, addr);
4e5d721f 933
a3d34bf4
PA
934 if (!lazy)
935 value_fetch_lazy (val);
4e5d721f
DE
936
937 return val;
938}
939
070ad9f0 940/* Return a value with type TYPE located at ADDR.
c906108c
SS
941
942 Call value_at only if the data needs to be fetched immediately;
943 if we can be 'lazy' and defer the fetch, perhaps indefinately, call
944 value_at_lazy instead. value_at_lazy simply records the address of
070ad9f0 945 the data and sets the lazy-evaluation-required flag. The lazy flag
0fd88904 946 is tested in the value_contents macro, which is used if and when
070ad9f0 947 the contents are actually required.
c906108c
SS
948
949 Note: value_at does *NOT* handle embedded offsets; perform such
ac3eeb49 950 adjustments before or after calling it. */
c906108c 951
f23631e4 952struct value *
00a4c844 953value_at (struct type *type, CORE_ADDR addr)
c906108c 954{
4e5d721f 955 return get_value_at (type, addr, 0);
c906108c
SS
956}
957
958/* Return a lazy value with type TYPE located at ADDR (cf. value_at). */
959
f23631e4 960struct value *
00a4c844 961value_at_lazy (struct type *type, CORE_ADDR addr)
c906108c 962{
4e5d721f 963 return get_value_at (type, addr, 1);
c906108c
SS
964}
965
0fd88904 966/* Called only from the value_contents and value_contents_all()
46615f07 967 macros, if the current data for a variable needs to be loaded into
0fd88904 968 value_contents(VAL). Fetches the data from the user's process, and
46615f07
AC
969 clears the lazy flag to indicate that the data in the buffer is
970 valid.
c906108c 971
ac3eeb49
MS
972 If the value is zero-length, we avoid calling read_memory, which
973 would abort. We mark the value as fetched anyway -- all 0 bytes of
974 it.
c906108c 975
ac3eeb49
MS
976 This function returns a value because it is used in the
977 value_contents macro as part of an expression, where a void would
978 not work. The value is ignored. */
c906108c
SS
979
980int
f23631e4 981value_fetch_lazy (struct value *val)
c906108c 982{
3e3d7139
JG
983 gdb_assert (value_lazy (val));
984 allocate_value_contents (val);
4ea48cc1
DJ
985 if (value_bitsize (val))
986 {
987 /* To read a lazy bitfield, read the entire enclosing value. This
988 prevents reading the same block of (possibly volatile) memory once
989 per bitfield. It would be even better to read only the containing
990 word, but we have no way to record that just specific bits of a
991 value have been fetched. */
992 struct type *type = check_typedef (value_type (val));
993 enum bfd_endian byte_order = gdbarch_byte_order (get_type_arch (type));
994 struct value *parent = value_parent (val);
995 LONGEST offset = value_offset (val);
5467c6c8 996 LONGEST num;
4ea48cc1 997 int length = TYPE_LENGTH (type);
a109c7c1 998
0e03807e
TT
999 if (!value_bits_valid (val,
1000 TARGET_CHAR_BIT * offset + value_bitpos (val),
1001 value_bitsize (val)))
1002 error (_("value has been optimized out"));
1003
5467c6c8
PA
1004 if (!unpack_value_bits_as_long (value_type (val),
1005 value_contents_for_printing (parent),
1006 offset,
1007 value_bitpos (val),
1008 value_bitsize (val), parent, &num))
1009 mark_value_bytes_unavailable (val,
1010 value_embedded_offset (val),
1011 length);
1012 else
1013 store_signed_integer (value_contents_raw (val), length,
1014 byte_order, num);
4ea48cc1
DJ
1015 }
1016 else if (VALUE_LVAL (val) == lval_memory)
9214ee5f 1017 {
42ae5230 1018 CORE_ADDR addr = value_address (val);
694182d2 1019 int length = TYPE_LENGTH (check_typedef (value_enclosing_type (val)));
9214ee5f 1020
9214ee5f 1021 if (length)
e6ca34fc
PA
1022 read_value_memory (val, 0, value_stack (val),
1023 addr, value_contents_all_raw (val), length);
9214ee5f
DJ
1024 }
1025 else if (VALUE_LVAL (val) == lval_register)
1026 {
669fac23
DJ
1027 struct frame_info *frame;
1028 int regnum;
9214ee5f 1029 struct type *type = check_typedef (value_type (val));
669fac23 1030 struct value *new_val = val, *mark = value_mark ();
c906108c 1031
669fac23
DJ
1032 /* Offsets are not supported here; lazy register values must
1033 refer to the entire register. */
1034 gdb_assert (value_offset (val) == 0);
9214ee5f 1035
669fac23
DJ
1036 while (VALUE_LVAL (new_val) == lval_register && value_lazy (new_val))
1037 {
1038 frame = frame_find_by_id (VALUE_FRAME_ID (new_val));
1039 regnum = VALUE_REGNUM (new_val);
1040
1041 gdb_assert (frame != NULL);
9214ee5f 1042
669fac23
DJ
1043 /* Convertible register routines are used for multi-register
1044 values and for interpretation in different types
1045 (e.g. float or int from a double register). Lazy
1046 register values should have the register's natural type,
1047 so they do not apply. */
1048 gdb_assert (!gdbarch_convert_register_p (get_frame_arch (frame),
1049 regnum, type));
1050
1051 new_val = get_frame_register_value (frame, regnum);
1052 }
1053
1054 /* If it's still lazy (for instance, a saved register on the
1055 stack), fetch it. */
1056 if (value_lazy (new_val))
1057 value_fetch_lazy (new_val);
1058
39d37385 1059 /* If the register was not saved, mark it optimized out. */
669fac23 1060 if (value_optimized_out (new_val))
9214ee5f 1061 set_value_optimized_out (val, 1);
669fac23 1062 else
39d37385
PA
1063 {
1064 set_value_lazy (val, 0);
1065 value_contents_copy (val, value_embedded_offset (val),
1066 new_val, value_embedded_offset (new_val),
1067 TYPE_LENGTH (type));
1068 }
669fac23
DJ
1069
1070 if (frame_debug)
1071 {
029a67e4 1072 struct gdbarch *gdbarch;
669fac23
DJ
1073 frame = frame_find_by_id (VALUE_FRAME_ID (val));
1074 regnum = VALUE_REGNUM (val);
029a67e4 1075 gdbarch = get_frame_arch (frame);
669fac23 1076
3e43a32a
MS
1077 fprintf_unfiltered (gdb_stdlog,
1078 "{ value_fetch_lazy "
1079 "(frame=%d,regnum=%d(%s),...) ",
669fac23 1080 frame_relative_level (frame), regnum,
029a67e4 1081 user_reg_map_regnum_to_name (gdbarch, regnum));
669fac23
DJ
1082
1083 fprintf_unfiltered (gdb_stdlog, "->");
1084 if (value_optimized_out (new_val))
1085 fprintf_unfiltered (gdb_stdlog, " optimized out");
1086 else
1087 {
1088 int i;
1089 const gdb_byte *buf = value_contents (new_val);
1090
1091 if (VALUE_LVAL (new_val) == lval_register)
1092 fprintf_unfiltered (gdb_stdlog, " register=%d",
1093 VALUE_REGNUM (new_val));
1094 else if (VALUE_LVAL (new_val) == lval_memory)
5af949e3
UW
1095 fprintf_unfiltered (gdb_stdlog, " address=%s",
1096 paddress (gdbarch,
1097 value_address (new_val)));
669fac23
DJ
1098 else
1099 fprintf_unfiltered (gdb_stdlog, " computed");
1100
1101 fprintf_unfiltered (gdb_stdlog, " bytes=");
1102 fprintf_unfiltered (gdb_stdlog, "[");
029a67e4 1103 for (i = 0; i < register_size (gdbarch, regnum); i++)
669fac23
DJ
1104 fprintf_unfiltered (gdb_stdlog, "%02x", buf[i]);
1105 fprintf_unfiltered (gdb_stdlog, "]");
1106 }
1107
1108 fprintf_unfiltered (gdb_stdlog, " }\n");
1109 }
1110
1111 /* Dispose of the intermediate values. This prevents
1112 watchpoints from trying to watch the saved frame pointer. */
1113 value_free_to_mark (mark);
9214ee5f 1114 }
ac71a68c
JK
1115 else if (VALUE_LVAL (val) == lval_computed
1116 && value_computed_funcs (val)->read != NULL)
5f5233d4 1117 value_computed_funcs (val)->read (val);
41e8491f
JK
1118 else if (value_optimized_out (val))
1119 /* Keep it optimized out. */;
9214ee5f 1120 else
9b20d036 1121 internal_error (__FILE__, __LINE__, _("Unexpected lazy value type."));
802db21b 1122
dfa52d88 1123 set_value_lazy (val, 0);
c906108c
SS
1124 return 0;
1125}
1126
e6ca34fc
PA
1127void
1128read_value_memory (struct value *val, int embedded_offset,
1129 int stack, CORE_ADDR memaddr,
1130 gdb_byte *buffer, size_t length)
1131{
1132 if (length)
1133 {
1134 VEC(mem_range_s) *available_memory;
1135
1136 if (get_traceframe_number () < 0
1137 || !traceframe_available_memory (&available_memory, memaddr, length))
1138 {
1139 if (stack)
1140 read_stack (memaddr, buffer, length);
1141 else
1142 read_memory (memaddr, buffer, length);
1143 }
1144 else
1145 {
1146 struct target_section_table *table;
1147 struct cleanup *old_chain;
1148 CORE_ADDR unavail;
1149 mem_range_s *r;
1150 int i;
1151
1152 /* Fallback to reading from read-only sections. */
1153 table = target_get_section_table (&exec_ops);
1154 available_memory =
1155 section_table_available_memory (available_memory,
1156 memaddr, length,
1157 table->sections,
1158 table->sections_end);
1159
1160 old_chain = make_cleanup (VEC_cleanup(mem_range_s),
1161 &available_memory);
1162
1163 normalize_mem_ranges (available_memory);
1164
1165 /* Mark which bytes are unavailable, and read those which
1166 are available. */
1167
1168 unavail = memaddr;
1169
1170 for (i = 0;
1171 VEC_iterate (mem_range_s, available_memory, i, r);
1172 i++)
1173 {
1174 if (mem_ranges_overlap (r->start, r->length,
1175 memaddr, length))
1176 {
1177 CORE_ADDR lo1, hi1, lo2, hi2;
1178 CORE_ADDR start, end;
1179
1180 /* Get the intersection window. */
1181 lo1 = memaddr;
1182 hi1 = memaddr + length;
1183 lo2 = r->start;
1184 hi2 = r->start + r->length;
1185 start = max (lo1, lo2);
1186 end = min (hi1, hi2);
1187
1188 gdb_assert (end - memaddr <= length);
1189
1190 if (start > unavail)
1191 mark_value_bytes_unavailable (val,
1192 (embedded_offset
1193 + unavail - memaddr),
1194 start - unavail);
1195 unavail = end;
1196
1197 read_memory (start, buffer + start - memaddr, end - start);
1198 }
1199 }
1200
1201 if (unavail != memaddr + length)
1202 mark_value_bytes_unavailable (val,
1203 embedded_offset + unavail - memaddr,
1204 (memaddr + length) - unavail);
1205
1206 do_cleanups (old_chain);
1207 }
1208 }
1209}
c906108c
SS
1210
1211/* Store the contents of FROMVAL into the location of TOVAL.
1212 Return a new value with the location of TOVAL and contents of FROMVAL. */
1213
f23631e4
AC
1214struct value *
1215value_assign (struct value *toval, struct value *fromval)
c906108c 1216{
52f0bd74 1217 struct type *type;
f23631e4 1218 struct value *val;
cb741690 1219 struct frame_id old_frame;
c906108c 1220
88e3b34b 1221 if (!deprecated_value_modifiable (toval))
8a3fe4f8 1222 error (_("Left operand of assignment is not a modifiable lvalue."));
c906108c 1223
994b9211 1224 toval = coerce_ref (toval);
c906108c 1225
df407dfe 1226 type = value_type (toval);
c906108c 1227 if (VALUE_LVAL (toval) != lval_internalvar)
3cbaedff 1228 fromval = value_cast (type, fromval);
c906108c 1229 else
63092375
DJ
1230 {
1231 /* Coerce arrays and functions to pointers, except for arrays
1232 which only live in GDB's storage. */
1233 if (!value_must_coerce_to_target (fromval))
1234 fromval = coerce_array (fromval);
1235 }
1236
c906108c
SS
1237 CHECK_TYPEDEF (type);
1238
ac3eeb49
MS
1239 /* Since modifying a register can trash the frame chain, and
1240 modifying memory can trash the frame cache, we save the old frame
1241 and then restore the new frame afterwards. */
206415a3 1242 old_frame = get_frame_id (deprecated_safe_get_selected_frame ());
cb741690 1243
c906108c
SS
1244 switch (VALUE_LVAL (toval))
1245 {
1246 case lval_internalvar:
1247 set_internalvar (VALUE_INTERNALVAR (toval), fromval);
4aac0db7
UW
1248 return value_of_internalvar (get_type_arch (type),
1249 VALUE_INTERNALVAR (toval));
c906108c
SS
1250
1251 case lval_internalvar_component:
1252 set_internalvar_component (VALUE_INTERNALVAR (toval),
df407dfe
AC
1253 value_offset (toval),
1254 value_bitpos (toval),
1255 value_bitsize (toval),
c906108c
SS
1256 fromval);
1257 break;
1258
1259 case lval_memory:
1260 {
fc1a4b47 1261 const gdb_byte *dest_buffer;
c5aa993b
JM
1262 CORE_ADDR changed_addr;
1263 int changed_len;
10c42a71 1264 gdb_byte buffer[sizeof (LONGEST)];
c906108c 1265
df407dfe 1266 if (value_bitsize (toval))
c5aa993b 1267 {
2d88202a 1268 struct value *parent = value_parent (toval);
2d88202a 1269
a109c7c1 1270 changed_addr = value_address (parent) + value_offset (toval);
df407dfe
AC
1271 changed_len = (value_bitpos (toval)
1272 + value_bitsize (toval)
c5aa993b
JM
1273 + HOST_CHAR_BIT - 1)
1274 / HOST_CHAR_BIT;
c906108c 1275
4ea48cc1
DJ
1276 /* If we can read-modify-write exactly the size of the
1277 containing type (e.g. short or int) then do so. This
1278 is safer for volatile bitfields mapped to hardware
1279 registers. */
1280 if (changed_len < TYPE_LENGTH (type)
1281 && TYPE_LENGTH (type) <= (int) sizeof (LONGEST)
2d88202a 1282 && ((LONGEST) changed_addr % TYPE_LENGTH (type)) == 0)
4ea48cc1
DJ
1283 changed_len = TYPE_LENGTH (type);
1284
c906108c 1285 if (changed_len > (int) sizeof (LONGEST))
3e43a32a
MS
1286 error (_("Can't handle bitfields which "
1287 "don't fit in a %d bit word."),
baa6f10b 1288 (int) sizeof (LONGEST) * HOST_CHAR_BIT);
c906108c 1289
2d88202a 1290 read_memory (changed_addr, buffer, changed_len);
50810684 1291 modify_field (type, buffer, value_as_long (fromval),
df407dfe 1292 value_bitpos (toval), value_bitsize (toval));
c906108c
SS
1293 dest_buffer = buffer;
1294 }
c906108c
SS
1295 else
1296 {
42ae5230 1297 changed_addr = value_address (toval);
c906108c 1298 changed_len = TYPE_LENGTH (type);
0fd88904 1299 dest_buffer = value_contents (fromval);
c906108c
SS
1300 }
1301
1302 write_memory (changed_addr, dest_buffer, changed_len);
8cebebb9
PP
1303 observer_notify_memory_changed (changed_addr, changed_len,
1304 dest_buffer);
c906108c
SS
1305 }
1306 break;
1307
492254e9 1308 case lval_register:
c906108c 1309 {
c906108c 1310 struct frame_info *frame;
d80b854b 1311 struct gdbarch *gdbarch;
ff2e87ac 1312 int value_reg;
c906108c
SS
1313
1314 /* Figure out which frame this is in currently. */
0c16dd26
AC
1315 frame = frame_find_by_id (VALUE_FRAME_ID (toval));
1316 value_reg = VALUE_REGNUM (toval);
c906108c
SS
1317
1318 if (!frame)
8a3fe4f8 1319 error (_("Value being assigned to is no longer active."));
d80b854b
UW
1320
1321 gdbarch = get_frame_arch (frame);
1322 if (gdbarch_convert_register_p (gdbarch, VALUE_REGNUM (toval), type))
492254e9 1323 {
ff2e87ac 1324 /* If TOVAL is a special machine register requiring
ac3eeb49
MS
1325 conversion of program values to a special raw
1326 format. */
d80b854b 1327 gdbarch_value_to_register (gdbarch, frame,
ac3eeb49
MS
1328 VALUE_REGNUM (toval), type,
1329 value_contents (fromval));
492254e9 1330 }
c906108c 1331 else
492254e9 1332 {
df407dfe 1333 if (value_bitsize (toval))
00fa51f6 1334 {
2d88202a
UW
1335 struct value *parent = value_parent (toval);
1336 int offset = value_offset (parent) + value_offset (toval);
00fa51f6
UW
1337 int changed_len;
1338 gdb_byte buffer[sizeof (LONGEST)];
8af8e3bc 1339 int optim, unavail;
00fa51f6
UW
1340
1341 changed_len = (value_bitpos (toval)
1342 + value_bitsize (toval)
1343 + HOST_CHAR_BIT - 1)
1344 / HOST_CHAR_BIT;
1345
1346 if (changed_len > (int) sizeof (LONGEST))
3e43a32a
MS
1347 error (_("Can't handle bitfields which "
1348 "don't fit in a %d bit word."),
00fa51f6
UW
1349 (int) sizeof (LONGEST) * HOST_CHAR_BIT);
1350
8dccd430
PA
1351 if (!get_frame_register_bytes (frame, value_reg, offset,
1352 changed_len, buffer,
1353 &optim, &unavail))
1354 {
1355 if (optim)
1356 error (_("value has been optimized out"));
1357 if (unavail)
1358 throw_error (NOT_AVAILABLE_ERROR,
1359 _("value is not available"));
1360 }
00fa51f6 1361
50810684
UW
1362 modify_field (type, buffer, value_as_long (fromval),
1363 value_bitpos (toval), value_bitsize (toval));
00fa51f6 1364
2d88202a 1365 put_frame_register_bytes (frame, value_reg, offset,
00fa51f6
UW
1366 changed_len, buffer);
1367 }
c906108c 1368 else
00fa51f6
UW
1369 {
1370 put_frame_register_bytes (frame, value_reg,
1371 value_offset (toval),
1372 TYPE_LENGTH (type),
1373 value_contents (fromval));
1374 }
ff2e87ac 1375 }
00fa51f6 1376
9a4105ab
AC
1377 if (deprecated_register_changed_hook)
1378 deprecated_register_changed_hook (-1);
f4c5303c 1379 observer_notify_target_changed (&current_target);
ff2e87ac 1380 break;
c906108c 1381 }
5f5233d4
PA
1382
1383 case lval_computed:
1384 {
c8f2448a 1385 const struct lval_funcs *funcs = value_computed_funcs (toval);
5f5233d4 1386
ac71a68c
JK
1387 if (funcs->write != NULL)
1388 {
1389 funcs->write (toval, fromval);
1390 break;
1391 }
5f5233d4 1392 }
ac71a68c 1393 /* Fall through. */
5f5233d4 1394
c906108c 1395 default:
8a3fe4f8 1396 error (_("Left operand of assignment is not an lvalue."));
c906108c
SS
1397 }
1398
cb741690
DJ
1399 /* Assigning to the stack pointer, frame pointer, and other
1400 (architecture and calling convention specific) registers may
1401 cause the frame cache to be out of date. Assigning to memory
1402 also can. We just do this on all assignments to registers or
1403 memory, for simplicity's sake; I doubt the slowdown matters. */
1404 switch (VALUE_LVAL (toval))
1405 {
1406 case lval_memory:
1407 case lval_register:
0e03807e 1408 case lval_computed:
cb741690
DJ
1409
1410 reinit_frame_cache ();
1411
ac3eeb49
MS
1412 /* Having destroyed the frame cache, restore the selected
1413 frame. */
cb741690
DJ
1414
1415 /* FIXME: cagney/2002-11-02: There has to be a better way of
1416 doing this. Instead of constantly saving/restoring the
1417 frame. Why not create a get_selected_frame() function that,
1418 having saved the selected frame's ID can automatically
1419 re-find the previously selected frame automatically. */
1420
1421 {
1422 struct frame_info *fi = frame_find_by_id (old_frame);
a109c7c1 1423
cb741690
DJ
1424 if (fi != NULL)
1425 select_frame (fi);
1426 }
1427
1428 break;
1429 default:
1430 break;
1431 }
1432
ac3eeb49
MS
1433 /* If the field does not entirely fill a LONGEST, then zero the sign
1434 bits. If the field is signed, and is negative, then sign
1435 extend. */
df407dfe
AC
1436 if ((value_bitsize (toval) > 0)
1437 && (value_bitsize (toval) < 8 * (int) sizeof (LONGEST)))
c906108c
SS
1438 {
1439 LONGEST fieldval = value_as_long (fromval);
df407dfe 1440 LONGEST valmask = (((ULONGEST) 1) << value_bitsize (toval)) - 1;
c906108c
SS
1441
1442 fieldval &= valmask;
ac3eeb49
MS
1443 if (!TYPE_UNSIGNED (type)
1444 && (fieldval & (valmask ^ (valmask >> 1))))
c906108c
SS
1445 fieldval |= ~valmask;
1446
1447 fromval = value_from_longest (type, fieldval);
1448 }
1449
4aac0db7
UW
1450 /* The return value is a copy of TOVAL so it shares its location
1451 information, but its contents are updated from FROMVAL. This
1452 implies the returned value is not lazy, even if TOVAL was. */
c906108c 1453 val = value_copy (toval);
4aac0db7 1454 set_value_lazy (val, 0);
0fd88904 1455 memcpy (value_contents_raw (val), value_contents (fromval),
c906108c 1456 TYPE_LENGTH (type));
4aac0db7
UW
1457
1458 /* We copy over the enclosing type and pointed-to offset from FROMVAL
1459 in the case of pointer types. For object types, the enclosing type
1460 and embedded offset must *not* be copied: the target object refered
1461 to by TOVAL retains its original dynamic type after assignment. */
1462 if (TYPE_CODE (type) == TYPE_CODE_PTR)
1463 {
1464 set_value_enclosing_type (val, value_enclosing_type (fromval));
1465 set_value_pointed_to_offset (val, value_pointed_to_offset (fromval));
1466 }
c5aa993b 1467
c906108c
SS
1468 return val;
1469}
1470
1471/* Extend a value VAL to COUNT repetitions of its type. */
1472
f23631e4
AC
1473struct value *
1474value_repeat (struct value *arg1, int count)
c906108c 1475{
f23631e4 1476 struct value *val;
c906108c
SS
1477
1478 if (VALUE_LVAL (arg1) != lval_memory)
8a3fe4f8 1479 error (_("Only values in memory can be extended with '@'."));
c906108c 1480 if (count < 1)
8a3fe4f8 1481 error (_("Invalid number %d of repetitions."), count);
c906108c 1482
4754a64e 1483 val = allocate_repeat_value (value_enclosing_type (arg1), count);
c906108c 1484
c906108c 1485 VALUE_LVAL (val) = lval_memory;
42ae5230 1486 set_value_address (val, value_address (arg1));
c906108c 1487
24e6bcee
PA
1488 read_value_memory (val, 0, value_stack (val), value_address (val),
1489 value_contents_all_raw (val),
1490 TYPE_LENGTH (value_enclosing_type (val)));
1491
c906108c
SS
1492 return val;
1493}
1494
f23631e4 1495struct value *
9df2fbc4 1496value_of_variable (struct symbol *var, const struct block *b)
c906108c 1497{
61212c0f 1498 struct frame_info *frame;
c906108c 1499
61212c0f
UW
1500 if (!symbol_read_needs_frame (var))
1501 frame = NULL;
1502 else if (!b)
1503 frame = get_selected_frame (_("No frame selected."));
1504 else
c906108c
SS
1505 {
1506 frame = block_innermost_frame (b);
1507 if (!frame)
c5aa993b 1508 {
edb3359d 1509 if (BLOCK_FUNCTION (b) && !block_inlined_p (b)
de5ad195 1510 && SYMBOL_PRINT_NAME (BLOCK_FUNCTION (b)))
8a3fe4f8 1511 error (_("No frame is currently executing in block %s."),
de5ad195 1512 SYMBOL_PRINT_NAME (BLOCK_FUNCTION (b)));
c906108c 1513 else
8a3fe4f8 1514 error (_("No frame is currently executing in specified block"));
c5aa993b 1515 }
c906108c
SS
1516 }
1517
8afd712c 1518 return read_var_value (var, frame);
c906108c
SS
1519}
1520
61212c0f
UW
1521struct value *
1522address_of_variable (struct symbol *var, struct block *b)
1523{
1524 struct type *type = SYMBOL_TYPE (var);
1525 struct value *val;
1526
1527 /* Evaluate it first; if the result is a memory address, we're fine.
581e13c1 1528 Lazy evaluation pays off here. */
61212c0f
UW
1529
1530 val = value_of_variable (var, b);
1531
1532 if ((VALUE_LVAL (val) == lval_memory && value_lazy (val))
1533 || TYPE_CODE (type) == TYPE_CODE_FUNC)
1534 {
42ae5230 1535 CORE_ADDR addr = value_address (val);
a109c7c1 1536
61212c0f
UW
1537 return value_from_pointer (lookup_pointer_type (type), addr);
1538 }
1539
1540 /* Not a memory address; check what the problem was. */
1541 switch (VALUE_LVAL (val))
1542 {
1543 case lval_register:
1544 {
1545 struct frame_info *frame;
1546 const char *regname;
1547
1548 frame = frame_find_by_id (VALUE_FRAME_ID (val));
1549 gdb_assert (frame);
1550
1551 regname = gdbarch_register_name (get_frame_arch (frame),
1552 VALUE_REGNUM (val));
1553 gdb_assert (regname && *regname);
1554
1555 error (_("Address requested for identifier "
1556 "\"%s\" which is in register $%s"),
1557 SYMBOL_PRINT_NAME (var), regname);
1558 break;
1559 }
1560
1561 default:
1562 error (_("Can't take address of \"%s\" which isn't an lvalue."),
1563 SYMBOL_PRINT_NAME (var));
1564 break;
1565 }
1566
1567 return val;
1568}
1569
63092375
DJ
1570/* Return one if VAL does not live in target memory, but should in order
1571 to operate on it. Otherwise return zero. */
1572
1573int
1574value_must_coerce_to_target (struct value *val)
1575{
1576 struct type *valtype;
1577
1578 /* The only lval kinds which do not live in target memory. */
1579 if (VALUE_LVAL (val) != not_lval
1580 && VALUE_LVAL (val) != lval_internalvar)
1581 return 0;
1582
1583 valtype = check_typedef (value_type (val));
1584
1585 switch (TYPE_CODE (valtype))
1586 {
1587 case TYPE_CODE_ARRAY:
3cbaedff 1588 return TYPE_VECTOR (valtype) ? 0 : 1;
63092375
DJ
1589 case TYPE_CODE_STRING:
1590 return 1;
1591 default:
1592 return 0;
1593 }
1594}
1595
3e43a32a
MS
1596/* Make sure that VAL lives in target memory if it's supposed to. For
1597 instance, strings are constructed as character arrays in GDB's
1598 storage, and this function copies them to the target. */
63092375
DJ
1599
1600struct value *
1601value_coerce_to_target (struct value *val)
1602{
1603 LONGEST length;
1604 CORE_ADDR addr;
1605
1606 if (!value_must_coerce_to_target (val))
1607 return val;
1608
1609 length = TYPE_LENGTH (check_typedef (value_type (val)));
1610 addr = allocate_space_in_inferior (length);
1611 write_memory (addr, value_contents (val), length);
1612 return value_at_lazy (value_type (val), addr);
1613}
1614
ac3eeb49
MS
1615/* Given a value which is an array, return a value which is a pointer
1616 to its first element, regardless of whether or not the array has a
1617 nonzero lower bound.
c906108c 1618
ac3eeb49
MS
1619 FIXME: A previous comment here indicated that this routine should
1620 be substracting the array's lower bound. It's not clear to me that
1621 this is correct. Given an array subscripting operation, it would
1622 certainly work to do the adjustment here, essentially computing:
c906108c
SS
1623
1624 (&array[0] - (lowerbound * sizeof array[0])) + (index * sizeof array[0])
1625
ac3eeb49
MS
1626 However I believe a more appropriate and logical place to account
1627 for the lower bound is to do so in value_subscript, essentially
1628 computing:
c906108c
SS
1629
1630 (&array[0] + ((index - lowerbound) * sizeof array[0]))
1631
ac3eeb49
MS
1632 As further evidence consider what would happen with operations
1633 other than array subscripting, where the caller would get back a
1634 value that had an address somewhere before the actual first element
1635 of the array, and the information about the lower bound would be
581e13c1 1636 lost because of the coercion to pointer type. */
c906108c 1637
f23631e4
AC
1638struct value *
1639value_coerce_array (struct value *arg1)
c906108c 1640{
df407dfe 1641 struct type *type = check_typedef (value_type (arg1));
c906108c 1642
63092375
DJ
1643 /* If the user tries to do something requiring a pointer with an
1644 array that has not yet been pushed to the target, then this would
1645 be a good time to do so. */
1646 arg1 = value_coerce_to_target (arg1);
1647
c906108c 1648 if (VALUE_LVAL (arg1) != lval_memory)
8a3fe4f8 1649 error (_("Attempt to take address of value not located in memory."));
c906108c 1650
4478b372 1651 return value_from_pointer (lookup_pointer_type (TYPE_TARGET_TYPE (type)),
42ae5230 1652 value_address (arg1));
c906108c
SS
1653}
1654
1655/* Given a value which is a function, return a value which is a pointer
1656 to it. */
1657
f23631e4
AC
1658struct value *
1659value_coerce_function (struct value *arg1)
c906108c 1660{
f23631e4 1661 struct value *retval;
c906108c
SS
1662
1663 if (VALUE_LVAL (arg1) != lval_memory)
8a3fe4f8 1664 error (_("Attempt to take address of value not located in memory."));
c906108c 1665
df407dfe 1666 retval = value_from_pointer (lookup_pointer_type (value_type (arg1)),
42ae5230 1667 value_address (arg1));
c906108c 1668 return retval;
c5aa993b 1669}
c906108c 1670
ac3eeb49
MS
1671/* Return a pointer value for the object for which ARG1 is the
1672 contents. */
c906108c 1673
f23631e4
AC
1674struct value *
1675value_addr (struct value *arg1)
c906108c 1676{
f23631e4 1677 struct value *arg2;
df407dfe 1678 struct type *type = check_typedef (value_type (arg1));
a109c7c1 1679
c906108c
SS
1680 if (TYPE_CODE (type) == TYPE_CODE_REF)
1681 {
ac3eeb49
MS
1682 /* Copy the value, but change the type from (T&) to (T*). We
1683 keep the same location information, which is efficient, and
1684 allows &(&X) to get the location containing the reference. */
c906108c 1685 arg2 = value_copy (arg1);
ac3eeb49
MS
1686 deprecated_set_value_type (arg2,
1687 lookup_pointer_type (TYPE_TARGET_TYPE (type)));
c906108c
SS
1688 return arg2;
1689 }
1690 if (TYPE_CODE (type) == TYPE_CODE_FUNC)
1691 return value_coerce_function (arg1);
1692
63092375
DJ
1693 /* If this is an array that has not yet been pushed to the target,
1694 then this would be a good time to force it to memory. */
1695 arg1 = value_coerce_to_target (arg1);
1696
c906108c 1697 if (VALUE_LVAL (arg1) != lval_memory)
8a3fe4f8 1698 error (_("Attempt to take address of value not located in memory."));
c906108c 1699
581e13c1 1700 /* Get target memory address. */
df407dfe 1701 arg2 = value_from_pointer (lookup_pointer_type (value_type (arg1)),
42ae5230 1702 (value_address (arg1)
13c3b5f5 1703 + value_embedded_offset (arg1)));
c906108c
SS
1704
1705 /* This may be a pointer to a base subobject; so remember the
ac3eeb49 1706 full derived object's type ... */
4dfea560
DE
1707 set_value_enclosing_type (arg2,
1708 lookup_pointer_type (value_enclosing_type (arg1)));
ac3eeb49
MS
1709 /* ... and also the relative position of the subobject in the full
1710 object. */
b44d461b 1711 set_value_pointed_to_offset (arg2, value_embedded_offset (arg1));
c906108c
SS
1712 return arg2;
1713}
1714
ac3eeb49
MS
1715/* Return a reference value for the object for which ARG1 is the
1716 contents. */
fb933624
DJ
1717
1718struct value *
1719value_ref (struct value *arg1)
1720{
1721 struct value *arg2;
fb933624 1722 struct type *type = check_typedef (value_type (arg1));
a109c7c1 1723
fb933624
DJ
1724 if (TYPE_CODE (type) == TYPE_CODE_REF)
1725 return arg1;
1726
1727 arg2 = value_addr (arg1);
1728 deprecated_set_value_type (arg2, lookup_reference_type (type));
1729 return arg2;
1730}
1731
ac3eeb49
MS
1732/* Given a value of a pointer type, apply the C unary * operator to
1733 it. */
c906108c 1734
f23631e4
AC
1735struct value *
1736value_ind (struct value *arg1)
c906108c
SS
1737{
1738 struct type *base_type;
f23631e4 1739 struct value *arg2;
c906108c 1740
994b9211 1741 arg1 = coerce_array (arg1);
c906108c 1742
df407dfe 1743 base_type = check_typedef (value_type (arg1));
c906108c 1744
8cf6f0b1
TT
1745 if (VALUE_LVAL (arg1) == lval_computed)
1746 {
c8f2448a 1747 const struct lval_funcs *funcs = value_computed_funcs (arg1);
8cf6f0b1
TT
1748
1749 if (funcs->indirect)
1750 {
1751 struct value *result = funcs->indirect (arg1);
1752
1753 if (result)
1754 return result;
1755 }
1756 }
1757
22fe0fbb 1758 if (TYPE_CODE (base_type) == TYPE_CODE_PTR)
c906108c
SS
1759 {
1760 struct type *enc_type;
a109c7c1 1761
ac3eeb49
MS
1762 /* We may be pointing to something embedded in a larger object.
1763 Get the real type of the enclosing object. */
4754a64e 1764 enc_type = check_typedef (value_enclosing_type (arg1));
c906108c 1765 enc_type = TYPE_TARGET_TYPE (enc_type);
0d5de010
DJ
1766
1767 if (TYPE_CODE (check_typedef (enc_type)) == TYPE_CODE_FUNC
1768 || TYPE_CODE (check_typedef (enc_type)) == TYPE_CODE_METHOD)
1769 /* For functions, go through find_function_addr, which knows
1770 how to handle function descriptors. */
ac3eeb49
MS
1771 arg2 = value_at_lazy (enc_type,
1772 find_function_addr (arg1, NULL));
0d5de010 1773 else
581e13c1 1774 /* Retrieve the enclosing object pointed to. */
ac3eeb49
MS
1775 arg2 = value_at_lazy (enc_type,
1776 (value_as_address (arg1)
1777 - value_pointed_to_offset (arg1)));
0d5de010 1778
dfcee124 1779 return readjust_indirect_value_type (arg2, enc_type, base_type, arg1);
c906108c
SS
1780 }
1781
8a3fe4f8 1782 error (_("Attempt to take contents of a non-pointer value."));
ac3eeb49 1783 return 0; /* For lint -- never reached. */
c906108c
SS
1784}
1785\f
39d37385
PA
1786/* Create a value for an array by allocating space in GDB, copying the
1787 data into that space, and then setting up an array value.
c906108c 1788
ac3eeb49
MS
1789 The array bounds are set from LOWBOUND and HIGHBOUND, and the array
1790 is populated from the values passed in ELEMVEC.
c906108c
SS
1791
1792 The element type of the array is inherited from the type of the
1793 first element, and all elements must have the same size (though we
ac3eeb49 1794 don't currently enforce any restriction on their types). */
c906108c 1795
f23631e4
AC
1796struct value *
1797value_array (int lowbound, int highbound, struct value **elemvec)
c906108c
SS
1798{
1799 int nelem;
1800 int idx;
1801 unsigned int typelength;
f23631e4 1802 struct value *val;
c906108c 1803 struct type *arraytype;
c906108c 1804
ac3eeb49
MS
1805 /* Validate that the bounds are reasonable and that each of the
1806 elements have the same size. */
c906108c
SS
1807
1808 nelem = highbound - lowbound + 1;
1809 if (nelem <= 0)
1810 {
8a3fe4f8 1811 error (_("bad array bounds (%d, %d)"), lowbound, highbound);
c906108c 1812 }
4754a64e 1813 typelength = TYPE_LENGTH (value_enclosing_type (elemvec[0]));
c906108c
SS
1814 for (idx = 1; idx < nelem; idx++)
1815 {
4754a64e 1816 if (TYPE_LENGTH (value_enclosing_type (elemvec[idx])) != typelength)
c906108c 1817 {
8a3fe4f8 1818 error (_("array elements must all be the same size"));
c906108c
SS
1819 }
1820 }
1821
e3506a9f
UW
1822 arraytype = lookup_array_range_type (value_enclosing_type (elemvec[0]),
1823 lowbound, highbound);
c906108c
SS
1824
1825 if (!current_language->c_style_arrays)
1826 {
1827 val = allocate_value (arraytype);
1828 for (idx = 0; idx < nelem; idx++)
39d37385
PA
1829 value_contents_copy (val, idx * typelength, elemvec[idx], 0,
1830 typelength);
c906108c
SS
1831 return val;
1832 }
1833
63092375
DJ
1834 /* Allocate space to store the array, and then initialize it by
1835 copying in each element. */
c906108c 1836
63092375 1837 val = allocate_value (arraytype);
c906108c 1838 for (idx = 0; idx < nelem; idx++)
39d37385 1839 value_contents_copy (val, idx * typelength, elemvec[idx], 0, typelength);
63092375 1840 return val;
c906108c
SS
1841}
1842
6c7a06a3 1843struct value *
3b7538c0 1844value_cstring (char *ptr, int len, struct type *char_type)
6c7a06a3
TT
1845{
1846 struct value *val;
1847 int lowbound = current_language->string_lower_bound;
1848 int highbound = len / TYPE_LENGTH (char_type);
6c7a06a3 1849 struct type *stringtype
e3506a9f 1850 = lookup_array_range_type (char_type, lowbound, highbound + lowbound - 1);
6c7a06a3
TT
1851
1852 val = allocate_value (stringtype);
1853 memcpy (value_contents_raw (val), ptr, len);
1854 return val;
1855}
1856
ac3eeb49
MS
1857/* Create a value for a string constant by allocating space in the
1858 inferior, copying the data into that space, and returning the
1859 address with type TYPE_CODE_STRING. PTR points to the string
1860 constant data; LEN is number of characters.
1861
1862 Note that string types are like array of char types with a lower
1863 bound of zero and an upper bound of LEN - 1. Also note that the
1864 string may contain embedded null bytes. */
c906108c 1865
f23631e4 1866struct value *
3b7538c0 1867value_string (char *ptr, int len, struct type *char_type)
c906108c 1868{
f23631e4 1869 struct value *val;
c906108c 1870 int lowbound = current_language->string_lower_bound;
3b7538c0 1871 int highbound = len / TYPE_LENGTH (char_type);
c906108c 1872 struct type *stringtype
e3506a9f 1873 = lookup_string_range_type (char_type, lowbound, highbound + lowbound - 1);
c906108c 1874
3b7538c0
UW
1875 val = allocate_value (stringtype);
1876 memcpy (value_contents_raw (val), ptr, len);
1877 return val;
c906108c
SS
1878}
1879
f23631e4 1880struct value *
22601c15 1881value_bitstring (char *ptr, int len, struct type *index_type)
c906108c 1882{
f23631e4 1883 struct value *val;
22601c15
UW
1884 struct type *domain_type
1885 = create_range_type (NULL, index_type, 0, len - 1);
1886 struct type *type = create_set_type (NULL, domain_type);
a109c7c1 1887
c906108c
SS
1888 TYPE_CODE (type) = TYPE_CODE_BITSTRING;
1889 val = allocate_value (type);
990a07ab 1890 memcpy (value_contents_raw (val), ptr, TYPE_LENGTH (type));
c906108c
SS
1891 return val;
1892}
1893\f
ac3eeb49
MS
1894/* See if we can pass arguments in T2 to a function which takes
1895 arguments of types T1. T1 is a list of NARGS arguments, and T2 is
1896 a NULL-terminated vector. If some arguments need coercion of some
1897 sort, then the coerced values are written into T2. Return value is
1898 0 if the arguments could be matched, or the position at which they
1899 differ if not.
c906108c 1900
ac3eeb49
MS
1901 STATICP is nonzero if the T1 argument list came from a static
1902 member function. T2 will still include the ``this'' pointer, but
1903 it will be skipped.
c906108c
SS
1904
1905 For non-static member functions, we ignore the first argument,
ac3eeb49
MS
1906 which is the type of the instance variable. This is because we
1907 want to handle calls with objects from derived classes. This is
1908 not entirely correct: we should actually check to make sure that a
c906108c
SS
1909 requested operation is type secure, shouldn't we? FIXME. */
1910
1911static int
ad2f7632
DJ
1912typecmp (int staticp, int varargs, int nargs,
1913 struct field t1[], struct value *t2[])
c906108c
SS
1914{
1915 int i;
1916
1917 if (t2 == 0)
ac3eeb49
MS
1918 internal_error (__FILE__, __LINE__,
1919 _("typecmp: no argument list"));
ad2f7632 1920
ac3eeb49
MS
1921 /* Skip ``this'' argument if applicable. T2 will always include
1922 THIS. */
4a1970e4 1923 if (staticp)
ad2f7632
DJ
1924 t2 ++;
1925
1926 for (i = 0;
1927 (i < nargs) && TYPE_CODE (t1[i].type) != TYPE_CODE_VOID;
1928 i++)
c906108c 1929 {
c5aa993b 1930 struct type *tt1, *tt2;
ad2f7632 1931
c5aa993b
JM
1932 if (!t2[i])
1933 return i + 1;
ad2f7632
DJ
1934
1935 tt1 = check_typedef (t1[i].type);
df407dfe 1936 tt2 = check_typedef (value_type (t2[i]));
ad2f7632 1937
c906108c 1938 if (TYPE_CODE (tt1) == TYPE_CODE_REF
c5aa993b 1939 /* We should be doing hairy argument matching, as below. */
3e43a32a
MS
1940 && (TYPE_CODE (check_typedef (TYPE_TARGET_TYPE (tt1)))
1941 == TYPE_CODE (tt2)))
c906108c
SS
1942 {
1943 if (TYPE_CODE (tt2) == TYPE_CODE_ARRAY)
1944 t2[i] = value_coerce_array (t2[i]);
1945 else
fb933624 1946 t2[i] = value_ref (t2[i]);
c906108c
SS
1947 continue;
1948 }
1949
802db21b
DB
1950 /* djb - 20000715 - Until the new type structure is in the
1951 place, and we can attempt things like implicit conversions,
1952 we need to do this so you can take something like a map<const
1953 char *>, and properly access map["hello"], because the
1954 argument to [] will be a reference to a pointer to a char,
ac3eeb49
MS
1955 and the argument will be a pointer to a char. */
1956 while (TYPE_CODE(tt1) == TYPE_CODE_REF
1957 || TYPE_CODE (tt1) == TYPE_CODE_PTR)
802db21b
DB
1958 {
1959 tt1 = check_typedef( TYPE_TARGET_TYPE(tt1) );
1960 }
ac3eeb49
MS
1961 while (TYPE_CODE(tt2) == TYPE_CODE_ARRAY
1962 || TYPE_CODE(tt2) == TYPE_CODE_PTR
1963 || TYPE_CODE(tt2) == TYPE_CODE_REF)
c906108c 1964 {
ac3eeb49 1965 tt2 = check_typedef (TYPE_TARGET_TYPE(tt2));
c906108c 1966 }
c5aa993b
JM
1967 if (TYPE_CODE (tt1) == TYPE_CODE (tt2))
1968 continue;
ac3eeb49
MS
1969 /* Array to pointer is a `trivial conversion' according to the
1970 ARM. */
c906108c 1971
ac3eeb49
MS
1972 /* We should be doing much hairier argument matching (see
1973 section 13.2 of the ARM), but as a quick kludge, just check
1974 for the same type code. */
df407dfe 1975 if (TYPE_CODE (t1[i].type) != TYPE_CODE (value_type (t2[i])))
c5aa993b 1976 return i + 1;
c906108c 1977 }
ad2f7632 1978 if (varargs || t2[i] == NULL)
c5aa993b 1979 return 0;
ad2f7632 1980 return i + 1;
c906108c
SS
1981}
1982
b1af9e97
TT
1983/* Helper class for do_search_struct_field that updates *RESULT_PTR
1984 and *LAST_BOFFSET, and possibly throws an exception if the field
1985 search has yielded ambiguous results. */
c906108c 1986
b1af9e97
TT
1987static void
1988update_search_result (struct value **result_ptr, struct value *v,
1989 int *last_boffset, int boffset,
1990 const char *name, struct type *type)
1991{
1992 if (v != NULL)
1993 {
1994 if (*result_ptr != NULL
1995 /* The result is not ambiguous if all the classes that are
1996 found occupy the same space. */
1997 && *last_boffset != boffset)
1998 error (_("base class '%s' is ambiguous in type '%s'"),
1999 name, TYPE_SAFE_NAME (type));
2000 *result_ptr = v;
2001 *last_boffset = boffset;
2002 }
2003}
c906108c 2004
b1af9e97
TT
2005/* A helper for search_struct_field. This does all the work; most
2006 arguments are as passed to search_struct_field. The result is
2007 stored in *RESULT_PTR, which must be initialized to NULL.
2008 OUTERMOST_TYPE is the type of the initial type passed to
2009 search_struct_field; this is used for error reporting when the
2010 lookup is ambiguous. */
2011
2012static void
2013do_search_struct_field (const char *name, struct value *arg1, int offset,
2014 struct type *type, int looking_for_baseclass,
2015 struct value **result_ptr,
2016 int *last_boffset,
2017 struct type *outermost_type)
c906108c
SS
2018{
2019 int i;
edf3d5f3 2020 int nbases;
c906108c
SS
2021
2022 CHECK_TYPEDEF (type);
edf3d5f3 2023 nbases = TYPE_N_BASECLASSES (type);
c906108c 2024
c5aa993b 2025 if (!looking_for_baseclass)
c906108c
SS
2026 for (i = TYPE_NFIELDS (type) - 1; i >= nbases; i--)
2027 {
0d5cff50 2028 const char *t_field_name = TYPE_FIELD_NAME (type, i);
c906108c 2029
db577aea 2030 if (t_field_name && (strcmp_iw (t_field_name, name) == 0))
c906108c 2031 {
f23631e4 2032 struct value *v;
a109c7c1 2033
d6a843b5 2034 if (field_is_static (&TYPE_FIELD (type, i)))
2c2738a0
DC
2035 {
2036 v = value_static_field (type, i);
2037 if (v == 0)
3e43a32a
MS
2038 error (_("field %s is nonexistent or "
2039 "has been optimized out"),
2c2738a0
DC
2040 name);
2041 }
c906108c 2042 else
b1af9e97
TT
2043 v = value_primitive_field (arg1, offset, i, type);
2044 *result_ptr = v;
2045 return;
c906108c
SS
2046 }
2047
2048 if (t_field_name
2049 && (t_field_name[0] == '\0'
2050 || (TYPE_CODE (type) == TYPE_CODE_UNION
db577aea 2051 && (strcmp_iw (t_field_name, "else") == 0))))
c906108c
SS
2052 {
2053 struct type *field_type = TYPE_FIELD_TYPE (type, i);
a109c7c1 2054
c906108c
SS
2055 if (TYPE_CODE (field_type) == TYPE_CODE_UNION
2056 || TYPE_CODE (field_type) == TYPE_CODE_STRUCT)
2057 {
ac3eeb49
MS
2058 /* Look for a match through the fields of an anonymous
2059 union, or anonymous struct. C++ provides anonymous
2060 unions.
c906108c 2061
1b831c93
AC
2062 In the GNU Chill (now deleted from GDB)
2063 implementation of variant record types, each
2064 <alternative field> has an (anonymous) union type,
2065 each member of the union represents a <variant
2066 alternative>. Each <variant alternative> is
2067 represented as a struct, with a member for each
2068 <variant field>. */
c5aa993b 2069
b1af9e97 2070 struct value *v = NULL;
c906108c
SS
2071 int new_offset = offset;
2072
db034ac5
AC
2073 /* This is pretty gross. In G++, the offset in an
2074 anonymous union is relative to the beginning of the
1b831c93
AC
2075 enclosing struct. In the GNU Chill (now deleted
2076 from GDB) implementation of variant records, the
2077 bitpos is zero in an anonymous union field, so we
ac3eeb49 2078 have to add the offset of the union here. */
c906108c
SS
2079 if (TYPE_CODE (field_type) == TYPE_CODE_STRUCT
2080 || (TYPE_NFIELDS (field_type) > 0
2081 && TYPE_FIELD_BITPOS (field_type, 0) == 0))
2082 new_offset += TYPE_FIELD_BITPOS (type, i) / 8;
2083
b1af9e97
TT
2084 do_search_struct_field (name, arg1, new_offset,
2085 field_type,
2086 looking_for_baseclass, &v,
2087 last_boffset,
2088 outermost_type);
c906108c 2089 if (v)
b1af9e97
TT
2090 {
2091 *result_ptr = v;
2092 return;
2093 }
c906108c
SS
2094 }
2095 }
2096 }
2097
c5aa993b 2098 for (i = 0; i < nbases; i++)
c906108c 2099 {
b1af9e97 2100 struct value *v = NULL;
c906108c 2101 struct type *basetype = check_typedef (TYPE_BASECLASS (type, i));
ac3eeb49
MS
2102 /* If we are looking for baseclasses, this is what we get when
2103 we hit them. But it could happen that the base part's member
2104 name is not yet filled in. */
c906108c
SS
2105 int found_baseclass = (looking_for_baseclass
2106 && TYPE_BASECLASS_NAME (type, i) != NULL
ac3eeb49
MS
2107 && (strcmp_iw (name,
2108 TYPE_BASECLASS_NAME (type,
2109 i)) == 0));
b1af9e97 2110 int boffset = value_embedded_offset (arg1) + offset;
c906108c
SS
2111
2112 if (BASETYPE_VIA_VIRTUAL (type, i))
2113 {
3e3d7139 2114 struct value *v2;
c906108c
SS
2115
2116 boffset = baseclass_offset (type, i,
8af8e3bc
PA
2117 value_contents_for_printing (arg1),
2118 value_embedded_offset (arg1) + offset,
2119 value_address (arg1),
2120 arg1);
c906108c 2121
ac3eeb49 2122 /* The virtual base class pointer might have been clobbered
581e13c1 2123 by the user program. Make sure that it still points to a
ac3eeb49 2124 valid memory location. */
c906108c 2125
1a334831
TT
2126 boffset += value_embedded_offset (arg1) + offset;
2127 if (boffset < 0
2128 || boffset >= TYPE_LENGTH (value_enclosing_type (arg1)))
c906108c
SS
2129 {
2130 CORE_ADDR base_addr;
c5aa993b 2131
3e3d7139 2132 v2 = allocate_value (basetype);
42ae5230 2133 base_addr = value_address (arg1) + boffset;
ac3eeb49
MS
2134 if (target_read_memory (base_addr,
2135 value_contents_raw (v2),
c906108c 2136 TYPE_LENGTH (basetype)) != 0)
8a3fe4f8 2137 error (_("virtual baseclass botch"));
c906108c 2138 VALUE_LVAL (v2) = lval_memory;
42ae5230 2139 set_value_address (v2, base_addr);
c906108c
SS
2140 }
2141 else
2142 {
1a334831
TT
2143 v2 = value_copy (arg1);
2144 deprecated_set_value_type (v2, basetype);
2145 set_value_embedded_offset (v2, boffset);
c906108c
SS
2146 }
2147
2148 if (found_baseclass)
b1af9e97
TT
2149 v = v2;
2150 else
2151 {
2152 do_search_struct_field (name, v2, 0,
2153 TYPE_BASECLASS (type, i),
2154 looking_for_baseclass,
2155 result_ptr, last_boffset,
2156 outermost_type);
2157 }
c906108c
SS
2158 }
2159 else if (found_baseclass)
2160 v = value_primitive_field (arg1, offset, i, type);
2161 else
b1af9e97
TT
2162 {
2163 do_search_struct_field (name, arg1,
2164 offset + TYPE_BASECLASS_BITPOS (type,
2165 i) / 8,
2166 basetype, looking_for_baseclass,
2167 result_ptr, last_boffset,
2168 outermost_type);
2169 }
2170
2171 update_search_result (result_ptr, v, last_boffset,
2172 boffset, name, outermost_type);
c906108c 2173 }
b1af9e97
TT
2174}
2175
2176/* Helper function used by value_struct_elt to recurse through
2177 baseclasses. Look for a field NAME in ARG1. Adjust the address of
2178 ARG1 by OFFSET bytes, and search in it assuming it has (class) type
2179 TYPE. If found, return value, else return NULL.
2180
2181 If LOOKING_FOR_BASECLASS, then instead of looking for struct
2182 fields, look for a baseclass named NAME. */
2183
2184static struct value *
2185search_struct_field (const char *name, struct value *arg1, int offset,
2186 struct type *type, int looking_for_baseclass)
2187{
2188 struct value *result = NULL;
2189 int boffset = 0;
2190
2191 do_search_struct_field (name, arg1, offset, type, looking_for_baseclass,
2192 &result, &boffset, type);
2193 return result;
c906108c
SS
2194}
2195
ac3eeb49 2196/* Helper function used by value_struct_elt to recurse through
581e13c1 2197 baseclasses. Look for a field NAME in ARG1. Adjust the address of
ac3eeb49
MS
2198 ARG1 by OFFSET bytes, and search in it assuming it has (class) type
2199 TYPE.
2200
2201 If found, return value, else if name matched and args not return
2202 (value) -1, else return NULL. */
c906108c 2203
f23631e4 2204static struct value *
714f19d5 2205search_struct_method (const char *name, struct value **arg1p,
f23631e4 2206 struct value **args, int offset,
aa1ee363 2207 int *static_memfuncp, struct type *type)
c906108c
SS
2208{
2209 int i;
f23631e4 2210 struct value *v;
c906108c
SS
2211 int name_matched = 0;
2212 char dem_opname[64];
2213
2214 CHECK_TYPEDEF (type);
2215 for (i = TYPE_NFN_FIELDS (type) - 1; i >= 0; i--)
2216 {
0d5cff50 2217 const char *t_field_name = TYPE_FN_FIELDLIST_NAME (type, i);
a109c7c1 2218
581e13c1 2219 /* FIXME! May need to check for ARM demangling here. */
c5aa993b
JM
2220 if (strncmp (t_field_name, "__", 2) == 0 ||
2221 strncmp (t_field_name, "op", 2) == 0 ||
2222 strncmp (t_field_name, "type", 4) == 0)
c906108c 2223 {
c5aa993b
JM
2224 if (cplus_demangle_opname (t_field_name, dem_opname, DMGL_ANSI))
2225 t_field_name = dem_opname;
2226 else if (cplus_demangle_opname (t_field_name, dem_opname, 0))
c906108c 2227 t_field_name = dem_opname;
c906108c 2228 }
db577aea 2229 if (t_field_name && (strcmp_iw (t_field_name, name) == 0))
c906108c
SS
2230 {
2231 int j = TYPE_FN_FIELDLIST_LENGTH (type, i) - 1;
2232 struct fn_field *f = TYPE_FN_FIELDLIST1 (type, i);
c906108c 2233
a109c7c1 2234 name_matched = 1;
de17c821 2235 check_stub_method_group (type, i);
c906108c 2236 if (j > 0 && args == 0)
3e43a32a
MS
2237 error (_("cannot resolve overloaded method "
2238 "`%s': no arguments supplied"), name);
acf5ed49 2239 else if (j == 0 && args == 0)
c906108c 2240 {
acf5ed49
DJ
2241 v = value_fn_field (arg1p, f, j, type, offset);
2242 if (v != NULL)
2243 return v;
c906108c 2244 }
acf5ed49
DJ
2245 else
2246 while (j >= 0)
2247 {
acf5ed49 2248 if (!typecmp (TYPE_FN_FIELD_STATIC_P (f, j),
ad2f7632
DJ
2249 TYPE_VARARGS (TYPE_FN_FIELD_TYPE (f, j)),
2250 TYPE_NFIELDS (TYPE_FN_FIELD_TYPE (f, j)),
acf5ed49
DJ
2251 TYPE_FN_FIELD_ARGS (f, j), args))
2252 {
2253 if (TYPE_FN_FIELD_VIRTUAL_P (f, j))
ac3eeb49
MS
2254 return value_virtual_fn_field (arg1p, f, j,
2255 type, offset);
2256 if (TYPE_FN_FIELD_STATIC_P (f, j)
2257 && static_memfuncp)
acf5ed49
DJ
2258 *static_memfuncp = 1;
2259 v = value_fn_field (arg1p, f, j, type, offset);
2260 if (v != NULL)
2261 return v;
2262 }
2263 j--;
2264 }
c906108c
SS
2265 }
2266 }
2267
2268 for (i = TYPE_N_BASECLASSES (type) - 1; i >= 0; i--)
2269 {
2270 int base_offset;
8af8e3bc
PA
2271 int skip = 0;
2272 int this_offset;
c906108c
SS
2273
2274 if (BASETYPE_VIA_VIRTUAL (type, i))
2275 {
086280be 2276 struct type *baseclass = check_typedef (TYPE_BASECLASS (type, i));
8af8e3bc 2277 struct value *base_val;
086280be
UW
2278 const gdb_byte *base_valaddr;
2279
2280 /* The virtual base class pointer might have been
581e13c1 2281 clobbered by the user program. Make sure that it
086280be
UW
2282 still points to a valid memory location. */
2283
2284 if (offset < 0 || offset >= TYPE_LENGTH (type))
c5aa993b 2285 {
086280be 2286 gdb_byte *tmp = alloca (TYPE_LENGTH (baseclass));
8af8e3bc 2287 CORE_ADDR address = value_address (*arg1p);
a109c7c1 2288
8af8e3bc 2289 if (target_read_memory (address + offset,
086280be
UW
2290 tmp, TYPE_LENGTH (baseclass)) != 0)
2291 error (_("virtual baseclass botch"));
8af8e3bc
PA
2292
2293 base_val = value_from_contents_and_address (baseclass,
2294 tmp,
2295 address + offset);
2296 base_valaddr = value_contents_for_printing (base_val);
2297 this_offset = 0;
c5aa993b
JM
2298 }
2299 else
8af8e3bc
PA
2300 {
2301 base_val = *arg1p;
2302 base_valaddr = value_contents_for_printing (*arg1p);
2303 this_offset = offset;
2304 }
c5aa993b 2305
086280be 2306 base_offset = baseclass_offset (type, i, base_valaddr,
8af8e3bc
PA
2307 this_offset, value_address (base_val),
2308 base_val);
c5aa993b 2309 }
c906108c
SS
2310 else
2311 {
2312 base_offset = TYPE_BASECLASS_BITPOS (type, i) / 8;
c5aa993b 2313 }
c906108c
SS
2314 v = search_struct_method (name, arg1p, args, base_offset + offset,
2315 static_memfuncp, TYPE_BASECLASS (type, i));
f23631e4 2316 if (v == (struct value *) - 1)
c906108c
SS
2317 {
2318 name_matched = 1;
2319 }
2320 else if (v)
2321 {
ac3eeb49
MS
2322 /* FIXME-bothner: Why is this commented out? Why is it here? */
2323 /* *arg1p = arg1_tmp; */
c906108c 2324 return v;
c5aa993b 2325 }
c906108c 2326 }
c5aa993b 2327 if (name_matched)
f23631e4 2328 return (struct value *) - 1;
c5aa993b
JM
2329 else
2330 return NULL;
c906108c
SS
2331}
2332
2333/* Given *ARGP, a value of type (pointer to a)* structure/union,
ac3eeb49
MS
2334 extract the component named NAME from the ultimate target
2335 structure/union and return it as a value with its appropriate type.
c906108c
SS
2336 ERR is used in the error message if *ARGP's type is wrong.
2337
2338 C++: ARGS is a list of argument types to aid in the selection of
581e13c1 2339 an appropriate method. Also, handle derived types.
c906108c
SS
2340
2341 STATIC_MEMFUNCP, if non-NULL, points to a caller-supplied location
2342 where the truthvalue of whether the function that was resolved was
2343 a static member function or not is stored.
2344
ac3eeb49
MS
2345 ERR is an error message to be printed in case the field is not
2346 found. */
c906108c 2347
f23631e4
AC
2348struct value *
2349value_struct_elt (struct value **argp, struct value **args,
714f19d5 2350 const char *name, int *static_memfuncp, const char *err)
c906108c 2351{
52f0bd74 2352 struct type *t;
f23631e4 2353 struct value *v;
c906108c 2354
994b9211 2355 *argp = coerce_array (*argp);
c906108c 2356
df407dfe 2357 t = check_typedef (value_type (*argp));
c906108c
SS
2358
2359 /* Follow pointers until we get to a non-pointer. */
2360
2361 while (TYPE_CODE (t) == TYPE_CODE_PTR || TYPE_CODE (t) == TYPE_CODE_REF)
2362 {
2363 *argp = value_ind (*argp);
2364 /* Don't coerce fn pointer to fn and then back again! */
df407dfe 2365 if (TYPE_CODE (value_type (*argp)) != TYPE_CODE_FUNC)
994b9211 2366 *argp = coerce_array (*argp);
df407dfe 2367 t = check_typedef (value_type (*argp));
c906108c
SS
2368 }
2369
c5aa993b 2370 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
c906108c 2371 && TYPE_CODE (t) != TYPE_CODE_UNION)
3e43a32a
MS
2372 error (_("Attempt to extract a component of a value that is not a %s."),
2373 err);
c906108c
SS
2374
2375 /* Assume it's not, unless we see that it is. */
2376 if (static_memfuncp)
c5aa993b 2377 *static_memfuncp = 0;
c906108c
SS
2378
2379 if (!args)
2380 {
2381 /* if there are no arguments ...do this... */
2382
ac3eeb49
MS
2383 /* Try as a field first, because if we succeed, there is less
2384 work to be done. */
c906108c
SS
2385 v = search_struct_field (name, *argp, 0, t, 0);
2386 if (v)
2387 return v;
2388
2389 /* C++: If it was not found as a data field, then try to
7b83ea04 2390 return it as a pointer to a method. */
ac3eeb49
MS
2391 v = search_struct_method (name, argp, args, 0,
2392 static_memfuncp, t);
c906108c 2393
f23631e4 2394 if (v == (struct value *) - 1)
55b39184 2395 error (_("Cannot take address of method %s."), name);
c906108c
SS
2396 else if (v == 0)
2397 {
2398 if (TYPE_NFN_FIELDS (t))
8a3fe4f8 2399 error (_("There is no member or method named %s."), name);
c906108c 2400 else
8a3fe4f8 2401 error (_("There is no member named %s."), name);
c906108c
SS
2402 }
2403 return v;
2404 }
2405
ac3eeb49
MS
2406 v = search_struct_method (name, argp, args, 0,
2407 static_memfuncp, t);
7168a814 2408
f23631e4 2409 if (v == (struct value *) - 1)
c906108c 2410 {
3e43a32a
MS
2411 error (_("One of the arguments you tried to pass to %s could not "
2412 "be converted to what the function wants."), name);
c906108c
SS
2413 }
2414 else if (v == 0)
2415 {
ac3eeb49
MS
2416 /* See if user tried to invoke data as function. If so, hand it
2417 back. If it's not callable (i.e., a pointer to function),
7b83ea04 2418 gdb should give an error. */
c906108c 2419 v = search_struct_field (name, *argp, 0, t, 0);
fa8de41e
TT
2420 /* If we found an ordinary field, then it is not a method call.
2421 So, treat it as if it were a static member function. */
2422 if (v && static_memfuncp)
2423 *static_memfuncp = 1;
c906108c
SS
2424 }
2425
2426 if (!v)
79afc5ef
SW
2427 throw_error (NOT_FOUND_ERROR,
2428 _("Structure has no component named %s."), name);
c906108c
SS
2429 return v;
2430}
2431
ac3eeb49 2432/* Search through the methods of an object (and its bases) to find a
cfe9eade 2433 specified method. Return the pointer to the fn_field list of
ac3eeb49
MS
2434 overloaded instances.
2435
2436 Helper function for value_find_oload_list.
2437 ARGP is a pointer to a pointer to a value (the object).
2438 METHOD is a string containing the method name.
2439 OFFSET is the offset within the value.
2440 TYPE is the assumed type of the object.
2441 NUM_FNS is the number of overloaded instances.
2442 BASETYPE is set to the actual type of the subobject where the
2443 method is found.
581e13c1 2444 BOFFSET is the offset of the base subobject where the method is found. */
c906108c 2445
7a292a7a 2446static struct fn_field *
714f19d5 2447find_method_list (struct value **argp, const char *method,
ac3eeb49 2448 int offset, struct type *type, int *num_fns,
fba45db2 2449 struct type **basetype, int *boffset)
c906108c
SS
2450{
2451 int i;
c5aa993b 2452 struct fn_field *f;
c906108c
SS
2453 CHECK_TYPEDEF (type);
2454
2455 *num_fns = 0;
2456
ac3eeb49 2457 /* First check in object itself. */
c5aa993b 2458 for (i = TYPE_NFN_FIELDS (type) - 1; i >= 0; i--)
c906108c 2459 {
ac3eeb49 2460 /* pai: FIXME What about operators and type conversions? */
0d5cff50 2461 const char *fn_field_name = TYPE_FN_FIELDLIST_NAME (type, i);
a109c7c1 2462
db577aea 2463 if (fn_field_name && (strcmp_iw (fn_field_name, method) == 0))
c5aa993b 2464 {
4a1970e4
DJ
2465 int len = TYPE_FN_FIELDLIST_LENGTH (type, i);
2466 struct fn_field *f = TYPE_FN_FIELDLIST1 (type, i);
4a1970e4
DJ
2467
2468 *num_fns = len;
c5aa993b
JM
2469 *basetype = type;
2470 *boffset = offset;
4a1970e4 2471
de17c821
DJ
2472 /* Resolve any stub methods. */
2473 check_stub_method_group (type, i);
4a1970e4
DJ
2474
2475 return f;
c5aa993b
JM
2476 }
2477 }
2478
ac3eeb49 2479 /* Not found in object, check in base subobjects. */
c906108c
SS
2480 for (i = TYPE_N_BASECLASSES (type) - 1; i >= 0; i--)
2481 {
2482 int base_offset;
a109c7c1 2483
c906108c
SS
2484 if (BASETYPE_VIA_VIRTUAL (type, i))
2485 {
086280be 2486 base_offset = baseclass_offset (type, i,
8af8e3bc
PA
2487 value_contents_for_printing (*argp),
2488 value_offset (*argp) + offset,
2489 value_address (*argp), *argp);
c5aa993b 2490 }
ac3eeb49
MS
2491 else /* Non-virtual base, simply use bit position from debug
2492 info. */
c906108c
SS
2493 {
2494 base_offset = TYPE_BASECLASS_BITPOS (type, i) / 8;
c5aa993b 2495 }
c906108c 2496 f = find_method_list (argp, method, base_offset + offset,
ac3eeb49
MS
2497 TYPE_BASECLASS (type, i), num_fns,
2498 basetype, boffset);
c906108c 2499 if (f)
c5aa993b 2500 return f;
c906108c 2501 }
c5aa993b 2502 return NULL;
c906108c
SS
2503}
2504
2505/* Return the list of overloaded methods of a specified name.
ac3eeb49
MS
2506
2507 ARGP is a pointer to a pointer to a value (the object).
2508 METHOD is the method name.
2509 OFFSET is the offset within the value contents.
2510 NUM_FNS is the number of overloaded instances.
2511 BASETYPE is set to the type of the base subobject that defines the
2512 method.
581e13c1 2513 BOFFSET is the offset of the base subobject which defines the method. */
c906108c
SS
2514
2515struct fn_field *
714f19d5 2516value_find_oload_method_list (struct value **argp, const char *method,
ac3eeb49
MS
2517 int offset, int *num_fns,
2518 struct type **basetype, int *boffset)
c906108c 2519{
c5aa993b 2520 struct type *t;
c906108c 2521
df407dfe 2522 t = check_typedef (value_type (*argp));
c906108c 2523
ac3eeb49 2524 /* Code snarfed from value_struct_elt. */
c906108c
SS
2525 while (TYPE_CODE (t) == TYPE_CODE_PTR || TYPE_CODE (t) == TYPE_CODE_REF)
2526 {
2527 *argp = value_ind (*argp);
2528 /* Don't coerce fn pointer to fn and then back again! */
df407dfe 2529 if (TYPE_CODE (value_type (*argp)) != TYPE_CODE_FUNC)
994b9211 2530 *argp = coerce_array (*argp);
df407dfe 2531 t = check_typedef (value_type (*argp));
c906108c 2532 }
c5aa993b 2533
c5aa993b
JM
2534 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
2535 && TYPE_CODE (t) != TYPE_CODE_UNION)
3e43a32a
MS
2536 error (_("Attempt to extract a component of a "
2537 "value that is not a struct or union"));
c5aa993b 2538
ac3eeb49
MS
2539 return find_method_list (argp, method, 0, t, num_fns,
2540 basetype, boffset);
c906108c
SS
2541}
2542
da096638 2543/* Given an array of arguments (ARGS) (which includes an
c906108c
SS
2544 entry for "this" in the case of C++ methods), the number of
2545 arguments NARGS, the NAME of a function whether it's a method or
2546 not (METHOD), and the degree of laxness (LAX) in conforming to
2547 overload resolution rules in ANSI C++, find the best function that
2548 matches on the argument types according to the overload resolution
2549 rules.
2550
4c3376c8
SW
2551 METHOD can be one of three values:
2552 NON_METHOD for non-member functions.
2553 METHOD: for member functions.
2554 BOTH: used for overload resolution of operators where the
2555 candidates are expected to be either member or non member
581e13c1 2556 functions. In this case the first argument ARGTYPES
4c3376c8
SW
2557 (representing 'this') is expected to be a reference to the
2558 target object, and will be dereferenced when attempting the
2559 non-member search.
2560
c906108c
SS
2561 In the case of class methods, the parameter OBJ is an object value
2562 in which to search for overloaded methods.
2563
2564 In the case of non-method functions, the parameter FSYM is a symbol
2565 corresponding to one of the overloaded functions.
2566
2567 Return value is an integer: 0 -> good match, 10 -> debugger applied
2568 non-standard coercions, 100 -> incompatible.
2569
2570 If a method is being searched for, VALP will hold the value.
ac3eeb49
MS
2571 If a non-method is being searched for, SYMP will hold the symbol
2572 for it.
c906108c
SS
2573
2574 If a method is being searched for, and it is a static method,
2575 then STATICP will point to a non-zero value.
2576
7322dca9
SW
2577 If NO_ADL argument dependent lookup is disabled. This is used to prevent
2578 ADL overload candidates when performing overload resolution for a fully
2579 qualified name.
2580
c906108c
SS
2581 Note: This function does *not* check the value of
2582 overload_resolution. Caller must check it to see whether overload
581e13c1 2583 resolution is permitted. */
c906108c
SS
2584
2585int
da096638 2586find_overload_match (struct value **args, int nargs,
4c3376c8
SW
2587 const char *name, enum oload_search_type method,
2588 int lax, struct value **objp, struct symbol *fsym,
ac3eeb49 2589 struct value **valp, struct symbol **symp,
7322dca9 2590 int *staticp, const int no_adl)
c906108c 2591{
7f8c9282 2592 struct value *obj = (objp ? *objp : NULL);
da096638 2593 struct type *obj_type = obj ? value_type (obj) : NULL;
ac3eeb49 2594 /* Index of best overloaded function. */
4c3376c8
SW
2595 int func_oload_champ = -1;
2596 int method_oload_champ = -1;
2597
ac3eeb49 2598 /* The measure for the current best match. */
4c3376c8
SW
2599 struct badness_vector *method_badness = NULL;
2600 struct badness_vector *func_badness = NULL;
2601
f23631e4 2602 struct value *temp = obj;
ac3eeb49
MS
2603 /* For methods, the list of overloaded methods. */
2604 struct fn_field *fns_ptr = NULL;
2605 /* For non-methods, the list of overloaded function symbols. */
2606 struct symbol **oload_syms = NULL;
2607 /* Number of overloaded instances being considered. */
2608 int num_fns = 0;
c5aa993b 2609 struct type *basetype = NULL;
c906108c 2610 int boffset;
7322dca9
SW
2611
2612 struct cleanup *all_cleanups = make_cleanup (null_cleanup, NULL);
c906108c 2613
8d577d32 2614 const char *obj_type_name = NULL;
7322dca9 2615 const char *func_name = NULL;
8d577d32 2616 enum oload_classification match_quality;
4c3376c8
SW
2617 enum oload_classification method_match_quality = INCOMPATIBLE;
2618 enum oload_classification func_match_quality = INCOMPATIBLE;
c906108c 2619
ac3eeb49 2620 /* Get the list of overloaded methods or functions. */
4c3376c8 2621 if (method == METHOD || method == BOTH)
c906108c 2622 {
a2ca50ae 2623 gdb_assert (obj);
94af9270
KS
2624
2625 /* OBJ may be a pointer value rather than the object itself. */
2626 obj = coerce_ref (obj);
2627 while (TYPE_CODE (check_typedef (value_type (obj))) == TYPE_CODE_PTR)
2628 obj = coerce_ref (value_ind (obj));
df407dfe 2629 obj_type_name = TYPE_NAME (value_type (obj));
94af9270
KS
2630
2631 /* First check whether this is a data member, e.g. a pointer to
2632 a function. */
2633 if (TYPE_CODE (check_typedef (value_type (obj))) == TYPE_CODE_STRUCT)
2634 {
2635 *valp = search_struct_field (name, obj, 0,
2636 check_typedef (value_type (obj)), 0);
2637 if (*valp)
2638 {
2639 *staticp = 1;
f748fb40 2640 do_cleanups (all_cleanups);
94af9270
KS
2641 return 0;
2642 }
2643 }
c906108c 2644
4c3376c8 2645 /* Retrieve the list of methods with the name NAME. */
ac3eeb49
MS
2646 fns_ptr = value_find_oload_method_list (&temp, name,
2647 0, &num_fns,
c5aa993b 2648 &basetype, &boffset);
4c3376c8
SW
2649 /* If this is a method only search, and no methods were found
2650 the search has faild. */
2651 if (method == METHOD && (!fns_ptr || !num_fns))
8a3fe4f8 2652 error (_("Couldn't find method %s%s%s"),
c5aa993b
JM
2653 obj_type_name,
2654 (obj_type_name && *obj_type_name) ? "::" : "",
2655 name);
4a1970e4 2656 /* If we are dealing with stub method types, they should have
ac3eeb49
MS
2657 been resolved by find_method_list via
2658 value_find_oload_method_list above. */
4c3376c8
SW
2659 if (fns_ptr)
2660 {
2661 gdb_assert (TYPE_DOMAIN_TYPE (fns_ptr[0].type) != NULL);
da096638 2662 method_oload_champ = find_oload_champ (args, nargs, method,
4c3376c8
SW
2663 num_fns, fns_ptr,
2664 oload_syms, &method_badness);
2665
2666 method_match_quality =
2667 classify_oload_match (method_badness, nargs,
2668 oload_method_static (method, fns_ptr,
2669 method_oload_champ));
2670
2671 make_cleanup (xfree, method_badness);
2672 }
2673
c906108c 2674 }
4c3376c8
SW
2675
2676 if (method == NON_METHOD || method == BOTH)
c906108c 2677 {
7322dca9 2678 const char *qualified_name = NULL;
c906108c 2679
b021a221
MS
2680 /* If the overload match is being search for both as a method
2681 and non member function, the first argument must now be
2682 dereferenced. */
4c3376c8 2683 if (method == BOTH)
da096638
KS
2684 deprecated_set_value_type (args[0],
2685 TYPE_TARGET_TYPE (value_type (args[0])));
4c3376c8 2686
7322dca9
SW
2687 if (fsym)
2688 {
2689 qualified_name = SYMBOL_NATURAL_NAME (fsym);
2690
2691 /* If we have a function with a C++ name, try to extract just
2692 the function part. Do not try this for non-functions (e.g.
2693 function pointers). */
2694 if (qualified_name
3e43a32a
MS
2695 && TYPE_CODE (check_typedef (SYMBOL_TYPE (fsym)))
2696 == TYPE_CODE_FUNC)
7322dca9
SW
2697 {
2698 char *temp;
2699
2700 temp = cp_func_name (qualified_name);
2701
2702 /* If cp_func_name did not remove anything, the name of the
2703 symbol did not include scope or argument types - it was
2704 probably a C-style function. */
2705 if (temp)
2706 {
2707 make_cleanup (xfree, temp);
2708 if (strcmp (temp, qualified_name) == 0)
2709 func_name = NULL;
2710 else
2711 func_name = temp;
2712 }
2713 }
2714 }
2715 else
94af9270 2716 {
7322dca9
SW
2717 func_name = name;
2718 qualified_name = name;
94af9270 2719 }
d9639e13 2720
94af9270
KS
2721 /* If there was no C++ name, this must be a C-style function or
2722 not a function at all. Just return the same symbol. Do the
2723 same if cp_func_name fails for some reason. */
8d577d32 2724 if (func_name == NULL)
7b83ea04 2725 {
917317f4 2726 *symp = fsym;
5fe41fbf 2727 do_cleanups (all_cleanups);
7b83ea04
AC
2728 return 0;
2729 }
917317f4 2730
da096638 2731 func_oload_champ = find_oload_champ_namespace (args, nargs,
4c3376c8
SW
2732 func_name,
2733 qualified_name,
2734 &oload_syms,
2735 &func_badness,
2736 no_adl);
8d577d32 2737
4c3376c8
SW
2738 if (func_oload_champ >= 0)
2739 func_match_quality = classify_oload_match (func_badness, nargs, 0);
2740
2741 make_cleanup (xfree, oload_syms);
2742 make_cleanup (xfree, func_badness);
8d577d32
DC
2743 }
2744
7322dca9 2745 /* Did we find a match ? */
4c3376c8 2746 if (method_oload_champ == -1 && func_oload_champ == -1)
79afc5ef
SW
2747 throw_error (NOT_FOUND_ERROR,
2748 _("No symbol \"%s\" in current context."),
2749 name);
8d577d32 2750
4c3376c8
SW
2751 /* If we have found both a method match and a function
2752 match, find out which one is better, and calculate match
2753 quality. */
2754 if (method_oload_champ >= 0 && func_oload_champ >= 0)
2755 {
2756 switch (compare_badness (func_badness, method_badness))
2757 {
2758 case 0: /* Top two contenders are equally good. */
b021a221
MS
2759 /* FIXME: GDB does not support the general ambiguous case.
2760 All candidates should be collected and presented the
2761 user. */
4c3376c8
SW
2762 error (_("Ambiguous overload resolution"));
2763 break;
2764 case 1: /* Incomparable top contenders. */
2765 /* This is an error incompatible candidates
2766 should not have been proposed. */
3e43a32a
MS
2767 error (_("Internal error: incompatible "
2768 "overload candidates proposed"));
4c3376c8
SW
2769 break;
2770 case 2: /* Function champion. */
2771 method_oload_champ = -1;
2772 match_quality = func_match_quality;
2773 break;
2774 case 3: /* Method champion. */
2775 func_oload_champ = -1;
2776 match_quality = method_match_quality;
2777 break;
2778 default:
2779 error (_("Internal error: unexpected overload comparison result"));
2780 break;
2781 }
2782 }
2783 else
2784 {
2785 /* We have either a method match or a function match. */
2786 if (method_oload_champ >= 0)
2787 match_quality = method_match_quality;
2788 else
2789 match_quality = func_match_quality;
2790 }
8d577d32
DC
2791
2792 if (match_quality == INCOMPATIBLE)
2793 {
4c3376c8 2794 if (method == METHOD)
8a3fe4f8 2795 error (_("Cannot resolve method %s%s%s to any overloaded instance"),
8d577d32
DC
2796 obj_type_name,
2797 (obj_type_name && *obj_type_name) ? "::" : "",
2798 name);
2799 else
8a3fe4f8 2800 error (_("Cannot resolve function %s to any overloaded instance"),
8d577d32
DC
2801 func_name);
2802 }
2803 else if (match_quality == NON_STANDARD)
2804 {
4c3376c8 2805 if (method == METHOD)
3e43a32a
MS
2806 warning (_("Using non-standard conversion to match "
2807 "method %s%s%s to supplied arguments"),
8d577d32
DC
2808 obj_type_name,
2809 (obj_type_name && *obj_type_name) ? "::" : "",
2810 name);
2811 else
3e43a32a
MS
2812 warning (_("Using non-standard conversion to match "
2813 "function %s to supplied arguments"),
8d577d32
DC
2814 func_name);
2815 }
2816
4c3376c8
SW
2817 if (staticp != NULL)
2818 *staticp = oload_method_static (method, fns_ptr, method_oload_champ);
2819
2820 if (method_oload_champ >= 0)
8d577d32 2821 {
4c3376c8
SW
2822 if (TYPE_FN_FIELD_VIRTUAL_P (fns_ptr, method_oload_champ))
2823 *valp = value_virtual_fn_field (&temp, fns_ptr, method_oload_champ,
ac3eeb49 2824 basetype, boffset);
8d577d32 2825 else
4c3376c8 2826 *valp = value_fn_field (&temp, fns_ptr, method_oload_champ,
ac3eeb49 2827 basetype, boffset);
8d577d32
DC
2828 }
2829 else
4c3376c8 2830 *symp = oload_syms[func_oload_champ];
8d577d32
DC
2831
2832 if (objp)
2833 {
a4295225 2834 struct type *temp_type = check_typedef (value_type (temp));
da096638 2835 struct type *objtype = check_typedef (obj_type);
a109c7c1 2836
a4295225 2837 if (TYPE_CODE (temp_type) != TYPE_CODE_PTR
da096638
KS
2838 && (TYPE_CODE (objtype) == TYPE_CODE_PTR
2839 || TYPE_CODE (objtype) == TYPE_CODE_REF))
8d577d32
DC
2840 {
2841 temp = value_addr (temp);
2842 }
2843 *objp = temp;
2844 }
7322dca9
SW
2845
2846 do_cleanups (all_cleanups);
8d577d32
DC
2847
2848 switch (match_quality)
2849 {
2850 case INCOMPATIBLE:
2851 return 100;
2852 case NON_STANDARD:
2853 return 10;
2854 default: /* STANDARD */
2855 return 0;
2856 }
2857}
2858
2859/* Find the best overload match, searching for FUNC_NAME in namespaces
2860 contained in QUALIFIED_NAME until it either finds a good match or
2861 runs out of namespaces. It stores the overloaded functions in
2862 *OLOAD_SYMS, and the badness vector in *OLOAD_CHAMP_BV. The
2863 calling function is responsible for freeing *OLOAD_SYMS and
7322dca9
SW
2864 *OLOAD_CHAMP_BV. If NO_ADL, argument dependent lookup is not
2865 performned. */
8d577d32
DC
2866
2867static int
da096638 2868find_oload_champ_namespace (struct value **args, int nargs,
8d577d32
DC
2869 const char *func_name,
2870 const char *qualified_name,
2871 struct symbol ***oload_syms,
7322dca9
SW
2872 struct badness_vector **oload_champ_bv,
2873 const int no_adl)
8d577d32
DC
2874{
2875 int oload_champ;
2876
da096638 2877 find_oload_champ_namespace_loop (args, nargs,
8d577d32
DC
2878 func_name,
2879 qualified_name, 0,
2880 oload_syms, oload_champ_bv,
7322dca9
SW
2881 &oload_champ,
2882 no_adl);
8d577d32
DC
2883
2884 return oload_champ;
2885}
2886
2887/* Helper function for find_oload_champ_namespace; NAMESPACE_LEN is
2888 how deep we've looked for namespaces, and the champ is stored in
2889 OLOAD_CHAMP. The return value is 1 if the champ is a good one, 0
7322dca9
SW
2890 if it isn't. Other arguments are the same as in
2891 find_oload_champ_namespace
8d577d32
DC
2892
2893 It is the caller's responsibility to free *OLOAD_SYMS and
2894 *OLOAD_CHAMP_BV. */
2895
2896static int
da096638 2897find_oload_champ_namespace_loop (struct value **args, int nargs,
8d577d32
DC
2898 const char *func_name,
2899 const char *qualified_name,
2900 int namespace_len,
2901 struct symbol ***oload_syms,
2902 struct badness_vector **oload_champ_bv,
7322dca9
SW
2903 int *oload_champ,
2904 const int no_adl)
8d577d32
DC
2905{
2906 int next_namespace_len = namespace_len;
2907 int searched_deeper = 0;
2908 int num_fns = 0;
2909 struct cleanup *old_cleanups;
2910 int new_oload_champ;
2911 struct symbol **new_oload_syms;
2912 struct badness_vector *new_oload_champ_bv;
2913 char *new_namespace;
2914
2915 if (next_namespace_len != 0)
2916 {
2917 gdb_assert (qualified_name[next_namespace_len] == ':');
2918 next_namespace_len += 2;
c906108c 2919 }
ac3eeb49
MS
2920 next_namespace_len +=
2921 cp_find_first_component (qualified_name + next_namespace_len);
8d577d32
DC
2922
2923 /* Initialize these to values that can safely be xfree'd. */
2924 *oload_syms = NULL;
2925 *oload_champ_bv = NULL;
c5aa993b 2926
581e13c1 2927 /* First, see if we have a deeper namespace we can search in.
ac3eeb49 2928 If we get a good match there, use it. */
8d577d32
DC
2929
2930 if (qualified_name[next_namespace_len] == ':')
2931 {
2932 searched_deeper = 1;
2933
da096638 2934 if (find_oload_champ_namespace_loop (args, nargs,
8d577d32
DC
2935 func_name, qualified_name,
2936 next_namespace_len,
2937 oload_syms, oload_champ_bv,
7322dca9 2938 oload_champ, no_adl))
8d577d32
DC
2939 {
2940 return 1;
2941 }
2942 };
2943
2944 /* If we reach here, either we're in the deepest namespace or we
2945 didn't find a good match in a deeper namespace. But, in the
2946 latter case, we still have a bad match in a deeper namespace;
2947 note that we might not find any match at all in the current
2948 namespace. (There's always a match in the deepest namespace,
2949 because this overload mechanism only gets called if there's a
2950 function symbol to start off with.) */
2951
2952 old_cleanups = make_cleanup (xfree, *oload_syms);
ec322823 2953 make_cleanup (xfree, *oload_champ_bv);
8d577d32
DC
2954 new_namespace = alloca (namespace_len + 1);
2955 strncpy (new_namespace, qualified_name, namespace_len);
2956 new_namespace[namespace_len] = '\0';
2957 new_oload_syms = make_symbol_overload_list (func_name,
2958 new_namespace);
7322dca9
SW
2959
2960 /* If we have reached the deepest level perform argument
2961 determined lookup. */
2962 if (!searched_deeper && !no_adl)
da096638
KS
2963 {
2964 int ix;
2965 struct type **arg_types;
2966
2967 /* Prepare list of argument types for overload resolution. */
2968 arg_types = (struct type **)
2969 alloca (nargs * (sizeof (struct type *)));
2970 for (ix = 0; ix < nargs; ix++)
2971 arg_types[ix] = value_type (args[ix]);
2972 make_symbol_overload_list_adl (arg_types, nargs, func_name);
2973 }
7322dca9 2974
8d577d32
DC
2975 while (new_oload_syms[num_fns])
2976 ++num_fns;
2977
da096638 2978 new_oload_champ = find_oload_champ (args, nargs, 0, num_fns,
8d577d32
DC
2979 NULL, new_oload_syms,
2980 &new_oload_champ_bv);
2981
2982 /* Case 1: We found a good match. Free earlier matches (if any),
2983 and return it. Case 2: We didn't find a good match, but we're
2984 not the deepest function. Then go with the bad match that the
2985 deeper function found. Case 3: We found a bad match, and we're
2986 the deepest function. Then return what we found, even though
2987 it's a bad match. */
2988
2989 if (new_oload_champ != -1
2990 && classify_oload_match (new_oload_champ_bv, nargs, 0) == STANDARD)
2991 {
2992 *oload_syms = new_oload_syms;
2993 *oload_champ = new_oload_champ;
2994 *oload_champ_bv = new_oload_champ_bv;
2995 do_cleanups (old_cleanups);
2996 return 1;
2997 }
2998 else if (searched_deeper)
2999 {
3000 xfree (new_oload_syms);
3001 xfree (new_oload_champ_bv);
3002 discard_cleanups (old_cleanups);
3003 return 0;
3004 }
3005 else
3006 {
8d577d32
DC
3007 *oload_syms = new_oload_syms;
3008 *oload_champ = new_oload_champ;
3009 *oload_champ_bv = new_oload_champ_bv;
2a7d6a25 3010 do_cleanups (old_cleanups);
8d577d32
DC
3011 return 0;
3012 }
3013}
3014
da096638 3015/* Look for a function to take NARGS args of ARGS. Find
8d577d32
DC
3016 the best match from among the overloaded methods or functions
3017 (depending on METHOD) given by FNS_PTR or OLOAD_SYMS, respectively.
3018 The number of methods/functions in the list is given by NUM_FNS.
3019 Return the index of the best match; store an indication of the
3020 quality of the match in OLOAD_CHAMP_BV.
3021
3022 It is the caller's responsibility to free *OLOAD_CHAMP_BV. */
3023
3024static int
da096638 3025find_oload_champ (struct value **args, int nargs, int method,
8d577d32
DC
3026 int num_fns, struct fn_field *fns_ptr,
3027 struct symbol **oload_syms,
3028 struct badness_vector **oload_champ_bv)
3029{
3030 int ix;
ac3eeb49
MS
3031 /* A measure of how good an overloaded instance is. */
3032 struct badness_vector *bv;
3033 /* Index of best overloaded function. */
3034 int oload_champ = -1;
3035 /* Current ambiguity state for overload resolution. */
3036 int oload_ambiguous = 0;
3037 /* 0 => no ambiguity, 1 => two good funcs, 2 => incomparable funcs. */
8d577d32
DC
3038
3039 *oload_champ_bv = NULL;
c906108c 3040
ac3eeb49 3041 /* Consider each candidate in turn. */
c906108c
SS
3042 for (ix = 0; ix < num_fns; ix++)
3043 {
8d577d32
DC
3044 int jj;
3045 int static_offset = oload_method_static (method, fns_ptr, ix);
3046 int nparms;
3047 struct type **parm_types;
3048
db577aea
AC
3049 if (method)
3050 {
ad2f7632 3051 nparms = TYPE_NFIELDS (TYPE_FN_FIELD_TYPE (fns_ptr, ix));
db577aea
AC
3052 }
3053 else
3054 {
ac3eeb49
MS
3055 /* If it's not a method, this is the proper place. */
3056 nparms = TYPE_NFIELDS (SYMBOL_TYPE (oload_syms[ix]));
db577aea 3057 }
c906108c 3058
ac3eeb49
MS
3059 /* Prepare array of parameter types. */
3060 parm_types = (struct type **)
3061 xmalloc (nparms * (sizeof (struct type *)));
c906108c 3062 for (jj = 0; jj < nparms; jj++)
db577aea 3063 parm_types[jj] = (method
ad2f7632 3064 ? (TYPE_FN_FIELD_ARGS (fns_ptr, ix)[jj].type)
ac3eeb49
MS
3065 : TYPE_FIELD_TYPE (SYMBOL_TYPE (oload_syms[ix]),
3066 jj));
c906108c 3067
ac3eeb49
MS
3068 /* Compare parameter types to supplied argument types. Skip
3069 THIS for static methods. */
3070 bv = rank_function (parm_types, nparms,
da096638 3071 args + static_offset,
4a1970e4 3072 nargs - static_offset);
c5aa993b 3073
8d577d32 3074 if (!*oload_champ_bv)
c5aa993b 3075 {
8d577d32 3076 *oload_champ_bv = bv;
c5aa993b 3077 oload_champ = 0;
c5aa993b 3078 }
ac3eeb49
MS
3079 else /* See whether current candidate is better or worse than
3080 previous best. */
8d577d32 3081 switch (compare_badness (bv, *oload_champ_bv))
c5aa993b 3082 {
ac3eeb49
MS
3083 case 0: /* Top two contenders are equally good. */
3084 oload_ambiguous = 1;
c5aa993b 3085 break;
ac3eeb49
MS
3086 case 1: /* Incomparable top contenders. */
3087 oload_ambiguous = 2;
c5aa993b 3088 break;
ac3eeb49
MS
3089 case 2: /* New champion, record details. */
3090 *oload_champ_bv = bv;
c5aa993b
JM
3091 oload_ambiguous = 0;
3092 oload_champ = ix;
c5aa993b
JM
3093 break;
3094 case 3:
3095 default:
3096 break;
3097 }
b8c9b27d 3098 xfree (parm_types);
6b1ba9a0
ND
3099 if (overload_debug)
3100 {
3101 if (method)
ac3eeb49 3102 fprintf_filtered (gdb_stderr,
3e43a32a 3103 "Overloaded method instance %s, # of parms %d\n",
ac3eeb49 3104 fns_ptr[ix].physname, nparms);
6b1ba9a0 3105 else
ac3eeb49 3106 fprintf_filtered (gdb_stderr,
3e43a32a
MS
3107 "Overloaded function instance "
3108 "%s # of parms %d\n",
ac3eeb49
MS
3109 SYMBOL_DEMANGLED_NAME (oload_syms[ix]),
3110 nparms);
4a1970e4 3111 for (jj = 0; jj < nargs - static_offset; jj++)
ac3eeb49
MS
3112 fprintf_filtered (gdb_stderr,
3113 "...Badness @ %d : %d\n",
6403aeea 3114 jj, bv->rank[jj].rank);
3e43a32a
MS
3115 fprintf_filtered (gdb_stderr, "Overload resolution "
3116 "champion is %d, ambiguous? %d\n",
ac3eeb49 3117 oload_champ, oload_ambiguous);
6b1ba9a0 3118 }
c906108c
SS
3119 }
3120
8d577d32
DC
3121 return oload_champ;
3122}
6b1ba9a0 3123
8d577d32
DC
3124/* Return 1 if we're looking at a static method, 0 if we're looking at
3125 a non-static method or a function that isn't a method. */
c906108c 3126
8d577d32
DC
3127static int
3128oload_method_static (int method, struct fn_field *fns_ptr, int index)
3129{
4c3376c8
SW
3130 if (method && fns_ptr && index >= 0
3131 && TYPE_FN_FIELD_STATIC_P (fns_ptr, index))
8d577d32 3132 return 1;
c906108c 3133 else
8d577d32
DC
3134 return 0;
3135}
c906108c 3136
8d577d32
DC
3137/* Check how good an overload match OLOAD_CHAMP_BV represents. */
3138
3139static enum oload_classification
3140classify_oload_match (struct badness_vector *oload_champ_bv,
3141 int nargs,
3142 int static_offset)
3143{
3144 int ix;
da096638 3145 enum oload_classification worst = STANDARD;
8d577d32
DC
3146
3147 for (ix = 1; ix <= nargs - static_offset; ix++)
7f8c9282 3148 {
6403aeea
SW
3149 /* If this conversion is as bad as INCOMPATIBLE_TYPE_BADNESS
3150 or worse return INCOMPATIBLE. */
3151 if (compare_ranks (oload_champ_bv->rank[ix],
3152 INCOMPATIBLE_TYPE_BADNESS) <= 0)
ac3eeb49 3153 return INCOMPATIBLE; /* Truly mismatched types. */
6403aeea
SW
3154 /* Otherwise If this conversion is as bad as
3155 NS_POINTER_CONVERSION_BADNESS or worse return NON_STANDARD. */
3156 else if (compare_ranks (oload_champ_bv->rank[ix],
3157 NS_POINTER_CONVERSION_BADNESS) <= 0)
da096638 3158 worst = NON_STANDARD; /* Non-standard type conversions
ac3eeb49 3159 needed. */
7f8c9282 3160 }
02f0d45d 3161
da096638
KS
3162 /* If no INCOMPATIBLE classification was found, return the worst one
3163 that was found (if any). */
3164 return worst;
c906108c
SS
3165}
3166
ac3eeb49
MS
3167/* C++: return 1 is NAME is a legitimate name for the destructor of
3168 type TYPE. If TYPE does not have a destructor, or if NAME is
d8228535
JK
3169 inappropriate for TYPE, an error is signaled. Parameter TYPE should not yet
3170 have CHECK_TYPEDEF applied, this function will apply it itself. */
3171
c906108c 3172int
d8228535 3173destructor_name_p (const char *name, struct type *type)
c906108c 3174{
c906108c
SS
3175 if (name[0] == '~')
3176 {
d8228535
JK
3177 const char *dname = type_name_no_tag_or_error (type);
3178 const char *cp = strchr (dname, '<');
c906108c
SS
3179 unsigned int len;
3180
3181 /* Do not compare the template part for template classes. */
3182 if (cp == NULL)
3183 len = strlen (dname);
3184 else
3185 len = cp - dname;
bf896cb0 3186 if (strlen (name + 1) != len || strncmp (dname, name + 1, len) != 0)
8a3fe4f8 3187 error (_("name of destructor must equal name of class"));
c906108c
SS
3188 else
3189 return 1;
3190 }
3191 return 0;
3192}
3193
2b2d9e11 3194/* Given TYPE, a structure/union,
ac3eeb49
MS
3195 return 1 if the component named NAME from the ultimate target
3196 structure/union is defined, otherwise, return 0. */
c906108c 3197
2b2d9e11
VP
3198int
3199check_field (struct type *type, const char *name)
c906108c 3200{
52f0bd74 3201 int i;
c906108c 3202
edf3d5f3
TT
3203 /* The type may be a stub. */
3204 CHECK_TYPEDEF (type);
3205
c906108c
SS
3206 for (i = TYPE_NFIELDS (type) - 1; i >= TYPE_N_BASECLASSES (type); i--)
3207 {
0d5cff50 3208 const char *t_field_name = TYPE_FIELD_NAME (type, i);
a109c7c1 3209
db577aea 3210 if (t_field_name && (strcmp_iw (t_field_name, name) == 0))
c906108c
SS
3211 return 1;
3212 }
3213
ac3eeb49
MS
3214 /* C++: If it was not found as a data field, then try to return it
3215 as a pointer to a method. */
c906108c 3216
c906108c
SS
3217 for (i = TYPE_NFN_FIELDS (type) - 1; i >= 0; --i)
3218 {
db577aea 3219 if (strcmp_iw (TYPE_FN_FIELDLIST_NAME (type, i), name) == 0)
c906108c
SS
3220 return 1;
3221 }
3222
3223 for (i = TYPE_N_BASECLASSES (type) - 1; i >= 0; i--)
2b2d9e11 3224 if (check_field (TYPE_BASECLASS (type, i), name))
c906108c 3225 return 1;
c5aa993b 3226
c906108c
SS
3227 return 0;
3228}
3229
79c2c32d 3230/* C++: Given an aggregate type CURTYPE, and a member name NAME,
0d5de010
DJ
3231 return the appropriate member (or the address of the member, if
3232 WANT_ADDRESS). This function is used to resolve user expressions
3233 of the form "DOMAIN::NAME". For more details on what happens, see
3234 the comment before value_struct_elt_for_reference. */
79c2c32d
DC
3235
3236struct value *
072bba3b
KS
3237value_aggregate_elt (struct type *curtype, char *name,
3238 struct type *expect_type, int want_address,
79c2c32d
DC
3239 enum noside noside)
3240{
3241 switch (TYPE_CODE (curtype))
3242 {
3243 case TYPE_CODE_STRUCT:
3244 case TYPE_CODE_UNION:
ac3eeb49 3245 return value_struct_elt_for_reference (curtype, 0, curtype,
072bba3b 3246 name, expect_type,
0d5de010 3247 want_address, noside);
79c2c32d 3248 case TYPE_CODE_NAMESPACE:
ac3eeb49
MS
3249 return value_namespace_elt (curtype, name,
3250 want_address, noside);
79c2c32d
DC
3251 default:
3252 internal_error (__FILE__, __LINE__,
e2e0b3e5 3253 _("non-aggregate type in value_aggregate_elt"));
79c2c32d
DC
3254 }
3255}
3256
072bba3b 3257/* Compares the two method/function types T1 and T2 for "equality"
b021a221 3258 with respect to the methods' parameters. If the types of the
072bba3b
KS
3259 two parameter lists are the same, returns 1; 0 otherwise. This
3260 comparison may ignore any artificial parameters in T1 if
3261 SKIP_ARTIFICIAL is non-zero. This function will ALWAYS skip
3262 the first artificial parameter in T1, assumed to be a 'this' pointer.
3263
3264 The type T2 is expected to have come from make_params (in eval.c). */
3265
3266static int
3267compare_parameters (struct type *t1, struct type *t2, int skip_artificial)
3268{
3269 int start = 0;
3270
80b23b6a 3271 if (TYPE_NFIELDS (t1) > 0 && TYPE_FIELD_ARTIFICIAL (t1, 0))
072bba3b
KS
3272 ++start;
3273
3274 /* If skipping artificial fields, find the first real field
581e13c1 3275 in T1. */
072bba3b
KS
3276 if (skip_artificial)
3277 {
3278 while (start < TYPE_NFIELDS (t1)
3279 && TYPE_FIELD_ARTIFICIAL (t1, start))
3280 ++start;
3281 }
3282
581e13c1 3283 /* Now compare parameters. */
072bba3b
KS
3284
3285 /* Special case: a method taking void. T1 will contain no
3286 non-artificial fields, and T2 will contain TYPE_CODE_VOID. */
3287 if ((TYPE_NFIELDS (t1) - start) == 0 && TYPE_NFIELDS (t2) == 1
3288 && TYPE_CODE (TYPE_FIELD_TYPE (t2, 0)) == TYPE_CODE_VOID)
3289 return 1;
3290
3291 if ((TYPE_NFIELDS (t1) - start) == TYPE_NFIELDS (t2))
3292 {
3293 int i;
a109c7c1 3294
072bba3b
KS
3295 for (i = 0; i < TYPE_NFIELDS (t2); ++i)
3296 {
6403aeea 3297 if (compare_ranks (rank_one_type (TYPE_FIELD_TYPE (t1, start + i),
da096638 3298 TYPE_FIELD_TYPE (t2, i), NULL),
6403aeea 3299 EXACT_MATCH_BADNESS) != 0)
072bba3b
KS
3300 return 0;
3301 }
3302
3303 return 1;
3304 }
3305
3306 return 0;
3307}
3308
c906108c 3309/* C++: Given an aggregate type CURTYPE, and a member name NAME,
ac3eeb49
MS
3310 return the address of this member as a "pointer to member" type.
3311 If INTYPE is non-null, then it will be the type of the member we
3312 are looking for. This will help us resolve "pointers to member
3313 functions". This function is used to resolve user expressions of
3314 the form "DOMAIN::NAME". */
c906108c 3315
63d06c5c 3316static struct value *
fba45db2
KB
3317value_struct_elt_for_reference (struct type *domain, int offset,
3318 struct type *curtype, char *name,
ac3eeb49
MS
3319 struct type *intype,
3320 int want_address,
63d06c5c 3321 enum noside noside)
c906108c 3322{
52f0bd74
AC
3323 struct type *t = curtype;
3324 int i;
0d5de010 3325 struct value *v, *result;
c906108c 3326
c5aa993b 3327 if (TYPE_CODE (t) != TYPE_CODE_STRUCT
c906108c 3328 && TYPE_CODE (t) != TYPE_CODE_UNION)
3e43a32a
MS
3329 error (_("Internal error: non-aggregate type "
3330 "to value_struct_elt_for_reference"));
c906108c
SS
3331
3332 for (i = TYPE_NFIELDS (t) - 1; i >= TYPE_N_BASECLASSES (t); i--)
3333 {
0d5cff50 3334 const char *t_field_name = TYPE_FIELD_NAME (t, i);
c5aa993b 3335
6314a349 3336 if (t_field_name && strcmp (t_field_name, name) == 0)
c906108c 3337 {
d6a843b5 3338 if (field_is_static (&TYPE_FIELD (t, i)))
c906108c
SS
3339 {
3340 v = value_static_field (t, i);
3341 if (v == NULL)
8a3fe4f8 3342 error (_("static field %s has been optimized out"),
c906108c 3343 name);
0d5de010
DJ
3344 if (want_address)
3345 v = value_addr (v);
c906108c
SS
3346 return v;
3347 }
3348 if (TYPE_FIELD_PACKED (t, i))
8a3fe4f8 3349 error (_("pointers to bitfield members not allowed"));
c5aa993b 3350
0d5de010
DJ
3351 if (want_address)
3352 return value_from_longest
3353 (lookup_memberptr_type (TYPE_FIELD_TYPE (t, i), domain),
3354 offset + (LONGEST) (TYPE_FIELD_BITPOS (t, i) >> 3));
3355 else if (noside == EVAL_AVOID_SIDE_EFFECTS)
3356 return allocate_value (TYPE_FIELD_TYPE (t, i));
3357 else
3358 error (_("Cannot reference non-static field \"%s\""), name);
c906108c
SS
3359 }
3360 }
3361
ac3eeb49
MS
3362 /* C++: If it was not found as a data field, then try to return it
3363 as a pointer to a method. */
c906108c 3364
c906108c
SS
3365 /* Perform all necessary dereferencing. */
3366 while (intype && TYPE_CODE (intype) == TYPE_CODE_PTR)
3367 intype = TYPE_TARGET_TYPE (intype);
3368
3369 for (i = TYPE_NFN_FIELDS (t) - 1; i >= 0; --i)
3370 {
0d5cff50 3371 const char *t_field_name = TYPE_FN_FIELDLIST_NAME (t, i);
c906108c
SS
3372 char dem_opname[64];
3373
ac3eeb49
MS
3374 if (strncmp (t_field_name, "__", 2) == 0
3375 || strncmp (t_field_name, "op", 2) == 0
3376 || strncmp (t_field_name, "type", 4) == 0)
c906108c 3377 {
ac3eeb49
MS
3378 if (cplus_demangle_opname (t_field_name,
3379 dem_opname, DMGL_ANSI))
c5aa993b 3380 t_field_name = dem_opname;
ac3eeb49
MS
3381 else if (cplus_demangle_opname (t_field_name,
3382 dem_opname, 0))
c906108c 3383 t_field_name = dem_opname;
c906108c 3384 }
6314a349 3385 if (t_field_name && strcmp (t_field_name, name) == 0)
c906108c 3386 {
072bba3b
KS
3387 int j;
3388 int len = TYPE_FN_FIELDLIST_LENGTH (t, i);
c906108c 3389 struct fn_field *f = TYPE_FN_FIELDLIST1 (t, i);
c5aa993b 3390
de17c821
DJ
3391 check_stub_method_group (t, i);
3392
c906108c
SS
3393 if (intype)
3394 {
072bba3b
KS
3395 for (j = 0; j < len; ++j)
3396 {
3397 if (compare_parameters (TYPE_FN_FIELD_TYPE (f, j), intype, 0)
3e43a32a
MS
3398 || compare_parameters (TYPE_FN_FIELD_TYPE (f, j),
3399 intype, 1))
072bba3b
KS
3400 break;
3401 }
3402
3403 if (j == len)
3e43a32a
MS
3404 error (_("no member function matches "
3405 "that type instantiation"));
7f79b1c5 3406 }
c906108c 3407 else
072bba3b
KS
3408 {
3409 int ii;
7f79b1c5
DJ
3410
3411 j = -1;
53832f31 3412 for (ii = 0; ii < len; ++ii)
072bba3b 3413 {
7f79b1c5
DJ
3414 /* Skip artificial methods. This is necessary if,
3415 for example, the user wants to "print
3416 subclass::subclass" with only one user-defined
53832f31
TT
3417 constructor. There is no ambiguity in this case.
3418 We are careful here to allow artificial methods
3419 if they are the unique result. */
072bba3b 3420 if (TYPE_FN_FIELD_ARTIFICIAL (f, ii))
53832f31
TT
3421 {
3422 if (j == -1)
3423 j = ii;
3424 continue;
3425 }
072bba3b 3426
7f79b1c5
DJ
3427 /* Desired method is ambiguous if more than one
3428 method is defined. */
53832f31 3429 if (j != -1 && !TYPE_FN_FIELD_ARTIFICIAL (f, j))
3e43a32a
MS
3430 error (_("non-unique member `%s' requires "
3431 "type instantiation"), name);
072bba3b 3432
7f79b1c5
DJ
3433 j = ii;
3434 }
53832f31
TT
3435
3436 if (j == -1)
3437 error (_("no matching member function"));
072bba3b 3438 }
c5aa993b 3439
0d5de010
DJ
3440 if (TYPE_FN_FIELD_STATIC_P (f, j))
3441 {
ac3eeb49
MS
3442 struct symbol *s =
3443 lookup_symbol (TYPE_FN_FIELD_PHYSNAME (f, j),
2570f2b7 3444 0, VAR_DOMAIN, 0);
a109c7c1 3445
0d5de010
DJ
3446 if (s == NULL)
3447 return NULL;
3448
3449 if (want_address)
3450 return value_addr (read_var_value (s, 0));
3451 else
3452 return read_var_value (s, 0);
3453 }
3454
c906108c
SS
3455 if (TYPE_FN_FIELD_VIRTUAL_P (f, j))
3456 {
0d5de010
DJ
3457 if (want_address)
3458 {
3459 result = allocate_value
3460 (lookup_methodptr_type (TYPE_FN_FIELD_TYPE (f, j)));
ad4820ab
UW
3461 cplus_make_method_ptr (value_type (result),
3462 value_contents_writeable (result),
0d5de010
DJ
3463 TYPE_FN_FIELD_VOFFSET (f, j), 1);
3464 }
3465 else if (noside == EVAL_AVOID_SIDE_EFFECTS)
3466 return allocate_value (TYPE_FN_FIELD_TYPE (f, j));
3467 else
3468 error (_("Cannot reference virtual member function \"%s\""),
3469 name);
c906108c
SS
3470 }
3471 else
3472 {
ac3eeb49
MS
3473 struct symbol *s =
3474 lookup_symbol (TYPE_FN_FIELD_PHYSNAME (f, j),
2570f2b7 3475 0, VAR_DOMAIN, 0);
a109c7c1 3476
c906108c 3477 if (s == NULL)
0d5de010
DJ
3478 return NULL;
3479
3480 v = read_var_value (s, 0);
3481 if (!want_address)
3482 result = v;
c906108c
SS
3483 else
3484 {
0d5de010 3485 result = allocate_value (lookup_methodptr_type (TYPE_FN_FIELD_TYPE (f, j)));
ad4820ab
UW
3486 cplus_make_method_ptr (value_type (result),
3487 value_contents_writeable (result),
42ae5230 3488 value_address (v), 0);
c906108c 3489 }
c906108c 3490 }
0d5de010 3491 return result;
c906108c
SS
3492 }
3493 }
3494 for (i = TYPE_N_BASECLASSES (t) - 1; i >= 0; i--)
3495 {
f23631e4 3496 struct value *v;
c906108c
SS
3497 int base_offset;
3498
3499 if (BASETYPE_VIA_VIRTUAL (t, i))
3500 base_offset = 0;
3501 else
3502 base_offset = TYPE_BASECLASS_BITPOS (t, i) / 8;
3503 v = value_struct_elt_for_reference (domain,
3504 offset + base_offset,
3505 TYPE_BASECLASS (t, i),
ac3eeb49
MS
3506 name, intype,
3507 want_address, noside);
c906108c
SS
3508 if (v)
3509 return v;
3510 }
63d06c5c
DC
3511
3512 /* As a last chance, pretend that CURTYPE is a namespace, and look
3513 it up that way; this (frequently) works for types nested inside
3514 classes. */
3515
ac3eeb49
MS
3516 return value_maybe_namespace_elt (curtype, name,
3517 want_address, noside);
c906108c
SS
3518}
3519
79c2c32d
DC
3520/* C++: Return the member NAME of the namespace given by the type
3521 CURTYPE. */
3522
3523static struct value *
3524value_namespace_elt (const struct type *curtype,
0d5de010 3525 char *name, int want_address,
79c2c32d 3526 enum noside noside)
63d06c5c
DC
3527{
3528 struct value *retval = value_maybe_namespace_elt (curtype, name,
ac3eeb49
MS
3529 want_address,
3530 noside);
63d06c5c
DC
3531
3532 if (retval == NULL)
ac3eeb49
MS
3533 error (_("No symbol \"%s\" in namespace \"%s\"."),
3534 name, TYPE_TAG_NAME (curtype));
63d06c5c
DC
3535
3536 return retval;
3537}
3538
3539/* A helper function used by value_namespace_elt and
3540 value_struct_elt_for_reference. It looks up NAME inside the
3541 context CURTYPE; this works if CURTYPE is a namespace or if CURTYPE
3542 is a class and NAME refers to a type in CURTYPE itself (as opposed
3543 to, say, some base class of CURTYPE). */
3544
3545static struct value *
3546value_maybe_namespace_elt (const struct type *curtype,
0d5de010 3547 char *name, int want_address,
63d06c5c 3548 enum noside noside)
79c2c32d
DC
3549{
3550 const char *namespace_name = TYPE_TAG_NAME (curtype);
3551 struct symbol *sym;
0d5de010 3552 struct value *result;
79c2c32d 3553
13387711 3554 sym = cp_lookup_symbol_namespace (namespace_name, name,
41f62f39
JK
3555 get_selected_block (0), VAR_DOMAIN);
3556
3557 if (sym == NULL)
3558 {
3559 char *concatenated_name = alloca (strlen (namespace_name) + 2
3560 + strlen (name) + 1);
3561
3562 sprintf (concatenated_name, "%s::%s", namespace_name, name);
3563 sym = lookup_static_symbol_aux (concatenated_name, VAR_DOMAIN);
3564 }
79c2c32d
DC
3565
3566 if (sym == NULL)
63d06c5c 3567 return NULL;
79c2c32d
DC
3568 else if ((noside == EVAL_AVOID_SIDE_EFFECTS)
3569 && (SYMBOL_CLASS (sym) == LOC_TYPEDEF))
0d5de010 3570 result = allocate_value (SYMBOL_TYPE (sym));
79c2c32d 3571 else
0d5de010
DJ
3572 result = value_of_variable (sym, get_selected_block (0));
3573
3574 if (result && want_address)
3575 result = value_addr (result);
3576
3577 return result;
79c2c32d
DC
3578}
3579
dfcee124 3580/* Given a pointer or a reference value V, find its real (RTTI) type.
ac3eeb49 3581
c906108c 3582 Other parameters FULL, TOP, USING_ENC as with value_rtti_type()
ac3eeb49 3583 and refer to the values computed for the object pointed to. */
c906108c
SS
3584
3585struct type *
dfcee124
AG
3586value_rtti_indirect_type (struct value *v, int *full,
3587 int *top, int *using_enc)
c906108c 3588{
f23631e4 3589 struct value *target;
dfcee124
AG
3590 struct type *type, *real_type, *target_type;
3591
3592 type = value_type (v);
3593 type = check_typedef (type);
3594 if (TYPE_CODE (type) == TYPE_CODE_REF)
3595 target = coerce_ref (v);
3596 else if (TYPE_CODE (type) == TYPE_CODE_PTR)
3597 target = value_ind (v);
3598 else
3599 return NULL;
c906108c 3600
dfcee124
AG
3601 real_type = value_rtti_type (target, full, top, using_enc);
3602
3603 if (real_type)
3604 {
3605 /* Copy qualifiers to the referenced object. */
3606 target_type = value_type (target);
3607 real_type = make_cv_type (TYPE_CONST (target_type),
3608 TYPE_VOLATILE (target_type), real_type, NULL);
3609 if (TYPE_CODE (type) == TYPE_CODE_REF)
3610 real_type = lookup_reference_type (real_type);
3611 else if (TYPE_CODE (type) == TYPE_CODE_PTR)
3612 real_type = lookup_pointer_type (real_type);
3613 else
3614 internal_error (__FILE__, __LINE__, _("Unexpected value type."));
3615
3616 /* Copy qualifiers to the pointer/reference. */
3617 real_type = make_cv_type (TYPE_CONST (type), TYPE_VOLATILE (type),
3618 real_type, NULL);
3619 }
c906108c 3620
dfcee124 3621 return real_type;
c906108c
SS
3622}
3623
3624/* Given a value pointed to by ARGP, check its real run-time type, and
3625 if that is different from the enclosing type, create a new value
3626 using the real run-time type as the enclosing type (and of the same
3627 type as ARGP) and return it, with the embedded offset adjusted to
ac3eeb49
MS
3628 be the correct offset to the enclosed object. RTYPE is the type,
3629 and XFULL, XTOP, and XUSING_ENC are the other parameters, computed
3630 by value_rtti_type(). If these are available, they can be supplied
3631 and a second call to value_rtti_type() is avoided. (Pass RTYPE ==
3632 NULL if they're not available. */
c906108c 3633
f23631e4 3634struct value *
ac3eeb49
MS
3635value_full_object (struct value *argp,
3636 struct type *rtype,
3637 int xfull, int xtop,
fba45db2 3638 int xusing_enc)
c906108c 3639{
c5aa993b 3640 struct type *real_type;
c906108c
SS
3641 int full = 0;
3642 int top = -1;
3643 int using_enc = 0;
f23631e4 3644 struct value *new_val;
c906108c
SS
3645
3646 if (rtype)
3647 {
3648 real_type = rtype;
3649 full = xfull;
3650 top = xtop;
3651 using_enc = xusing_enc;
3652 }
3653 else
3654 real_type = value_rtti_type (argp, &full, &top, &using_enc);
3655
ac3eeb49 3656 /* If no RTTI data, or if object is already complete, do nothing. */
4754a64e 3657 if (!real_type || real_type == value_enclosing_type (argp))
c906108c
SS
3658 return argp;
3659
a7860e76
TT
3660 /* In a destructor we might see a real type that is a superclass of
3661 the object's type. In this case it is better to leave the object
3662 as-is. */
3663 if (full
3664 && TYPE_LENGTH (real_type) < TYPE_LENGTH (value_enclosing_type (argp)))
3665 return argp;
3666
c906108c 3667 /* If we have the full object, but for some reason the enclosing
ac3eeb49
MS
3668 type is wrong, set it. */
3669 /* pai: FIXME -- sounds iffy */
c906108c
SS
3670 if (full)
3671 {
4dfea560
DE
3672 argp = value_copy (argp);
3673 set_value_enclosing_type (argp, real_type);
c906108c
SS
3674 return argp;
3675 }
3676
581e13c1 3677 /* Check if object is in memory. */
c906108c
SS
3678 if (VALUE_LVAL (argp) != lval_memory)
3679 {
3e43a32a
MS
3680 warning (_("Couldn't retrieve complete object of RTTI "
3681 "type %s; object may be in register(s)."),
ac3eeb49 3682 TYPE_NAME (real_type));
c5aa993b 3683
c906108c
SS
3684 return argp;
3685 }
c5aa993b 3686
ac3eeb49
MS
3687 /* All other cases -- retrieve the complete object. */
3688 /* Go back by the computed top_offset from the beginning of the
3689 object, adjusting for the embedded offset of argp if that's what
3690 value_rtti_type used for its computation. */
42ae5230 3691 new_val = value_at_lazy (real_type, value_address (argp) - top +
13c3b5f5 3692 (using_enc ? 0 : value_embedded_offset (argp)));
04624583 3693 deprecated_set_value_type (new_val, value_type (argp));
13c3b5f5
AC
3694 set_value_embedded_offset (new_val, (using_enc
3695 ? top + value_embedded_offset (argp)
3696 : top));
c906108c
SS
3697 return new_val;
3698}
3699
389e51db 3700
85bc8cb7
JK
3701/* Return the value of the local variable, if one exists. Throw error
3702 otherwise, such as if the request is made in an inappropriate context. */
c906108c 3703
f23631e4 3704struct value *
85bc8cb7 3705value_of_this (const struct language_defn *lang)
c906108c 3706{
66a17cb6 3707 struct symbol *sym;
c906108c 3708 struct block *b;
206415a3 3709 struct frame_info *frame;
c906108c 3710
66a17cb6 3711 if (!lang->la_name_of_this)
85bc8cb7 3712 error (_("no `this' in current language"));
aee28ec6 3713
85bc8cb7 3714 frame = get_selected_frame (_("no frame selected"));
c906108c 3715
66a17cb6 3716 b = get_frame_block (frame, NULL);
c906108c 3717
66a17cb6 3718 sym = lookup_language_this (lang, b);
c906108c 3719 if (sym == NULL)
85bc8cb7
JK
3720 error (_("current stack frame does not contain a variable named `%s'"),
3721 lang->la_name_of_this);
3722
3723 return read_var_value (sym, frame);
3724}
3725
3726/* Return the value of the local variable, if one exists. Return NULL
3727 otherwise. Never throw error. */
3728
3729struct value *
3730value_of_this_silent (const struct language_defn *lang)
3731{
3732 struct value *ret = NULL;
3733 volatile struct gdb_exception except;
3734
3735 TRY_CATCH (except, RETURN_MASK_ERROR)
c906108c 3736 {
85bc8cb7 3737 ret = value_of_this (lang);
c906108c
SS
3738 }
3739
d069f99d
AF
3740 return ret;
3741}
3742
ac3eeb49
MS
3743/* Create a slice (sub-string, sub-array) of ARRAY, that is LENGTH
3744 elements long, starting at LOWBOUND. The result has the same lower
3745 bound as the original ARRAY. */
c906108c 3746
f23631e4
AC
3747struct value *
3748value_slice (struct value *array, int lowbound, int length)
c906108c
SS
3749{
3750 struct type *slice_range_type, *slice_type, *range_type;
7a67d0fe 3751 LONGEST lowerbound, upperbound;
f23631e4 3752 struct value *slice;
c906108c 3753 struct type *array_type;
ac3eeb49 3754
df407dfe 3755 array_type = check_typedef (value_type (array));
c906108c
SS
3756 if (TYPE_CODE (array_type) != TYPE_CODE_ARRAY
3757 && TYPE_CODE (array_type) != TYPE_CODE_STRING
3758 && TYPE_CODE (array_type) != TYPE_CODE_BITSTRING)
8a3fe4f8 3759 error (_("cannot take slice of non-array"));
ac3eeb49 3760
c906108c
SS
3761 range_type = TYPE_INDEX_TYPE (array_type);
3762 if (get_discrete_bounds (range_type, &lowerbound, &upperbound) < 0)
8a3fe4f8 3763 error (_("slice from bad array or bitstring"));
ac3eeb49 3764
c906108c 3765 if (lowbound < lowerbound || length < 0
db034ac5 3766 || lowbound + length - 1 > upperbound)
8a3fe4f8 3767 error (_("slice out of range"));
ac3eeb49 3768
c906108c
SS
3769 /* FIXME-type-allocation: need a way to free this type when we are
3770 done with it. */
c5aa993b 3771 slice_range_type = create_range_type ((struct type *) NULL,
c906108c 3772 TYPE_TARGET_TYPE (range_type),
ac3eeb49
MS
3773 lowbound,
3774 lowbound + length - 1);
c906108c
SS
3775 if (TYPE_CODE (array_type) == TYPE_CODE_BITSTRING)
3776 {
3777 int i;
ac3eeb49
MS
3778
3779 slice_type = create_set_type ((struct type *) NULL,
3780 slice_range_type);
c906108c
SS
3781 TYPE_CODE (slice_type) = TYPE_CODE_BITSTRING;
3782 slice = value_zero (slice_type, not_lval);
ac3eeb49 3783
c906108c
SS
3784 for (i = 0; i < length; i++)
3785 {
3786 int element = value_bit_index (array_type,
0fd88904 3787 value_contents (array),
c906108c 3788 lowbound + i);
a109c7c1 3789
c906108c 3790 if (element < 0)
8a3fe4f8 3791 error (_("internal error accessing bitstring"));
c906108c
SS
3792 else if (element > 0)
3793 {
3794 int j = i % TARGET_CHAR_BIT;
a109c7c1 3795
50810684 3796 if (gdbarch_bits_big_endian (get_type_arch (array_type)))
c906108c 3797 j = TARGET_CHAR_BIT - 1 - j;
990a07ab 3798 value_contents_raw (slice)[i / TARGET_CHAR_BIT] |= (1 << j);
c906108c
SS
3799 }
3800 }
ac3eeb49
MS
3801 /* We should set the address, bitssize, and bitspos, so the
3802 slice can be used on the LHS, but that may require extensions
3803 to value_assign. For now, just leave as a non_lval.
3804 FIXME. */
c906108c
SS
3805 }
3806 else
3807 {
3808 struct type *element_type = TYPE_TARGET_TYPE (array_type);
ac3eeb49
MS
3809 LONGEST offset =
3810 (lowbound - lowerbound) * TYPE_LENGTH (check_typedef (element_type));
3811
3812 slice_type = create_array_type ((struct type *) NULL,
3813 element_type,
c906108c
SS
3814 slice_range_type);
3815 TYPE_CODE (slice_type) = TYPE_CODE (array_type);
ac3eeb49 3816
9214ee5f 3817 if (VALUE_LVAL (array) == lval_memory && value_lazy (array))
3e3d7139 3818 slice = allocate_value_lazy (slice_type);
c906108c 3819 else
3e3d7139
JG
3820 {
3821 slice = allocate_value (slice_type);
39d37385
PA
3822 value_contents_copy (slice, 0, array, offset,
3823 TYPE_LENGTH (slice_type));
3e3d7139 3824 }
ac3eeb49 3825
74bcbdf3 3826 set_value_component_location (slice, array);
65d3800a 3827 VALUE_FRAME_ID (slice) = VALUE_FRAME_ID (array);
f5cf64a7 3828 set_value_offset (slice, value_offset (array) + offset);
c906108c
SS
3829 }
3830 return slice;
3831}
3832
ac3eeb49
MS
3833/* Create a value for a FORTRAN complex number. Currently most of the
3834 time values are coerced to COMPLEX*16 (i.e. a complex number
070ad9f0
DB
3835 composed of 2 doubles. This really should be a smarter routine
3836 that figures out precision inteligently as opposed to assuming
ac3eeb49 3837 doubles. FIXME: fmb */
c906108c 3838
f23631e4 3839struct value *
ac3eeb49
MS
3840value_literal_complex (struct value *arg1,
3841 struct value *arg2,
3842 struct type *type)
c906108c 3843{
f23631e4 3844 struct value *val;
c906108c
SS
3845 struct type *real_type = TYPE_TARGET_TYPE (type);
3846
3847 val = allocate_value (type);
3848 arg1 = value_cast (real_type, arg1);
3849 arg2 = value_cast (real_type, arg2);
3850
990a07ab 3851 memcpy (value_contents_raw (val),
0fd88904 3852 value_contents (arg1), TYPE_LENGTH (real_type));
990a07ab 3853 memcpy (value_contents_raw (val) + TYPE_LENGTH (real_type),
0fd88904 3854 value_contents (arg2), TYPE_LENGTH (real_type));
c906108c
SS
3855 return val;
3856}
3857
ac3eeb49 3858/* Cast a value into the appropriate complex data type. */
c906108c 3859
f23631e4
AC
3860static struct value *
3861cast_into_complex (struct type *type, struct value *val)
c906108c
SS
3862{
3863 struct type *real_type = TYPE_TARGET_TYPE (type);
ac3eeb49 3864
df407dfe 3865 if (TYPE_CODE (value_type (val)) == TYPE_CODE_COMPLEX)
c906108c 3866 {
df407dfe 3867 struct type *val_real_type = TYPE_TARGET_TYPE (value_type (val));
f23631e4
AC
3868 struct value *re_val = allocate_value (val_real_type);
3869 struct value *im_val = allocate_value (val_real_type);
c906108c 3870
990a07ab 3871 memcpy (value_contents_raw (re_val),
0fd88904 3872 value_contents (val), TYPE_LENGTH (val_real_type));
990a07ab 3873 memcpy (value_contents_raw (im_val),
0fd88904 3874 value_contents (val) + TYPE_LENGTH (val_real_type),
c5aa993b 3875 TYPE_LENGTH (val_real_type));
c906108c
SS
3876
3877 return value_literal_complex (re_val, im_val, type);
3878 }
df407dfe
AC
3879 else if (TYPE_CODE (value_type (val)) == TYPE_CODE_FLT
3880 || TYPE_CODE (value_type (val)) == TYPE_CODE_INT)
ac3eeb49
MS
3881 return value_literal_complex (val,
3882 value_zero (real_type, not_lval),
3883 type);
c906108c 3884 else
8a3fe4f8 3885 error (_("cannot cast non-number to complex"));
c906108c
SS
3886}
3887
3888void
fba45db2 3889_initialize_valops (void)
c906108c 3890{
5bf193a2
AC
3891 add_setshow_boolean_cmd ("overload-resolution", class_support,
3892 &overload_resolution, _("\
3893Set overload resolution in evaluating C++ functions."), _("\
ac3eeb49
MS
3894Show overload resolution in evaluating C++ functions."),
3895 NULL, NULL,
920d2a44 3896 show_overload_resolution,
5bf193a2 3897 &setlist, &showlist);
c906108c 3898 overload_resolution = 1;
c906108c 3899}
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