Remove free_all_values
[deliverable/binutils-gdb.git] / gdb / value.h
CommitLineData
c906108c 1/* Definitions for values of C expressions, for GDB.
dea7f9ba 2
e2882c85 3 Copyright (C) 1986-2018 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#if !defined (VALUE_H)
21#define VALUE_H 1
22
1df6926e 23#include "frame.h" /* For struct frame_id. */
ba18742c 24#include "extension.h"
22bc8444 25#include "common/gdb_ref_ptr.h"
dea7f9ba
MK
26
27struct block;
da3331ec 28struct expression;
dea7f9ba 29struct regcache;
da3331ec
AC
30struct symbol;
31struct type;
dea7f9ba 32struct ui_file;
d8ca156b 33struct language_defn;
79a45b7d 34struct value_print_options;
d16aafd8 35
9a0dc9e3
PA
36/* Values can be partially 'optimized out' and/or 'unavailable'.
37 These are distinct states and have different string representations
38 and related error strings.
39
40 'unavailable' has a specific meaning in this context. It means the
41 value exists in the program (at the machine level), but GDB has no
42 means to get to it. Such a value is normally printed as
43 <unavailable>. Examples of how to end up with an unavailable value
44 would be:
45
46 - We're inspecting a traceframe, and the memory or registers the
47 debug information says the value lives on haven't been collected.
48
49 - We're inspecting a core dump, the memory or registers the debug
50 information says the value lives aren't present in the dump
51 (that is, we have a partial/trimmed core dump, or we don't fully
52 understand/handle the core dump's format).
53
54 - We're doing live debugging, but the debug API has no means to
55 get at where the value lives in the machine, like e.g., ptrace
56 not having access to some register or register set.
57
58 - Any other similar scenario.
59
60 OTOH, "optimized out" is about what the compiler decided to generate
61 (or not generate). A chunk of a value that was optimized out does
62 not actually exist in the program. There's no way to get at it
63 short of compiling the program differently.
64
65 A register that has not been saved in a frame is likewise considered
66 optimized out, except not-saved registers have a different string
67 representation and related error strings. E.g., we'll print them as
68 <not-saved> instead of <optimized out>, as in:
69
70 (gdb) p/x $rax
71 $1 = <not saved>
72 (gdb) info registers rax
73 rax <not saved>
74
75 If the debug info describes a variable as being in such a register,
76 we'll still print the variable as <optimized out>. IOW, <not saved>
77 is reserved for inspecting registers at the machine level.
78
79 When comparing value contents, optimized out chunks, unavailable
80 chunks, and valid contents data are all considered different. See
81 value_contents_eq for more info.
82*/
83
dea7f9ba
MK
84/* The structure which defines the type of a value. It should never
85 be possible for a program lval value to survive over a call to the
86 inferior (i.e. to be put into the history list or an internal
87 variable). */
c906108c 88
91294c83 89struct value;
c906108c 90
22bc8444
TT
91/* Decrease VAL's reference count. When the reference count drops to
92 0, VAL will be freed. */
93
94extern struct value *value_incref (struct value *val);
95
96/* Increate VAL's reference count. VAL is returned. */
97
98extern void value_decref (struct value *val);
99
100/* A policy class to interface gdb::ref_ptr with struct value. */
101
102struct value_ref_policy
103{
104 static void incref (struct value *ptr)
105 {
106 value_incref (ptr);
107 }
108
109 static void decref (struct value *ptr)
110 {
111 value_decref (ptr);
112 }
113};
114
115/* A gdb:;ref_ptr pointer to a struct value. */
116
117typedef gdb::ref_ptr<struct value, value_ref_policy> value_ref_ptr;
118
17cf0ecd 119/* Values are stored in a chain, so that they can be deleted easily
a08702d6
TJB
120 over calls to the inferior. Values assigned to internal variables,
121 put into the value history or exposed to Python are taken off this
122 list. */
91294c83 123
4bf7b526 124struct value *value_next (const struct value *);
17cf0ecd 125
91294c83
AC
126/* Type of the value. */
127
0e03807e 128extern struct type *value_type (const struct value *);
91294c83 129
e512cdbd
SM
130/* Return the gdbarch associated with the value. */
131
132extern struct gdbarch *get_value_arch (const struct value *value);
133
04624583
AC
134/* This is being used to change the type of an existing value, that
135 code should instead be creating a new value with the changed type
136 (but possibly shared content). */
91294c83 137
04624583
AC
138extern void deprecated_set_value_type (struct value *value,
139 struct type *type);
91294c83
AC
140
141/* Only used for bitfields; number of bits contained in them. */
142
6b850546
DT
143extern LONGEST value_bitsize (const struct value *);
144extern void set_value_bitsize (struct value *, LONGEST bit);
91294c83
AC
145
146/* Only used for bitfields; position of start of field. For
32c9a795
MD
147 gdbarch_bits_big_endian=0 targets, it is the position of the LSB. For
148 gdbarch_bits_big_endian=1 targets, it is the position of the MSB. */
91294c83 149
6b850546
DT
150extern LONGEST value_bitpos (const struct value *);
151extern void set_value_bitpos (struct value *, LONGEST bit);
f5cf64a7 152
4ea48cc1
DJ
153/* Only used for bitfields; the containing value. This allows a
154 single read from the target when displaying multiple
155 bitfields. */
156
4bf7b526 157struct value *value_parent (const struct value *);
53ba8333 158extern void set_value_parent (struct value *value, struct value *parent);
4ea48cc1 159
91294c83
AC
160/* Describes offset of a value within lval of a structure in bytes.
161 If lval == lval_memory, this is an offset to the address. If lval
162 == lval_register, this is a further offset from location.address
163 within the registers structure. Note also the member
164 embedded_offset below. */
165
6b850546
DT
166extern LONGEST value_offset (const struct value *);
167extern void set_value_offset (struct value *, LONGEST offset);
df407dfe 168
88e3b34b
AC
169/* The comment from "struct value" reads: ``Is it modifiable? Only
170 relevant if lval != not_lval.''. Shouldn't the value instead be
171 not_lval and be done with it? */
91294c83 172
4bf7b526 173extern int deprecated_value_modifiable (const struct value *value);
88e3b34b 174
91294c83
AC
175/* If a value represents a C++ object, then the `type' field gives the
176 object's compile-time type. If the object actually belongs to some
177 class derived from `type', perhaps with other base classes and
178 additional members, then `type' is just a subobject of the real
179 thing, and the full object is probably larger than `type' would
180 suggest.
181
182 If `type' is a dynamic class (i.e. one with a vtable), then GDB can
183 actually determine the object's run-time type by looking at the
184 run-time type information in the vtable. When this information is
185 available, we may elect to read in the entire object, for several
186 reasons:
187
188 - When printing the value, the user would probably rather see the
189 full object, not just the limited portion apparent from the
190 compile-time type.
191
192 - If `type' has virtual base classes, then even printing `type'
193 alone may require reaching outside the `type' portion of the
194 object to wherever the virtual base class has been stored.
195
196 When we store the entire object, `enclosing_type' is the run-time
197 type -- the complete object -- and `embedded_offset' is the offset
198 of `type' within that larger type, in bytes. The value_contents()
199 macro takes `embedded_offset' into account, so most GDB code
200 continues to see the `type' portion of the value, just as the
201 inferior would.
202
203 If `type' is a pointer to an object, then `enclosing_type' is a
204 pointer to the object's run-time type, and `pointed_to_offset' is
205 the offset in bytes from the full object to the pointed-to object
206 -- that is, the value `embedded_offset' would have if we followed
207 the pointer and fetched the complete object. (I don't really see
208 the point. Why not just determine the run-time type when you
209 indirect, and avoid the special case? The contents don't matter
210 until you indirect anyway.)
211
212 If we're not doing anything fancy, `enclosing_type' is equal to
213 `type', and `embedded_offset' is zero, so everything works
214 normally. */
215
4bf7b526 216extern struct type *value_enclosing_type (const struct value *);
4dfea560
DE
217extern void set_value_enclosing_type (struct value *val,
218 struct type *new_type);
219
8264ba82
AG
220/* Returns value_type or value_enclosing_type depending on
221 value_print_options.objectprint.
222
223 If RESOLVE_SIMPLE_TYPES is 0 the enclosing type will be resolved
224 only for pointers and references, else it will be returned
225 for all the types (e.g. structures). This option is useful
226 to prevent retrieving enclosing type for the base classes fields.
227
228 REAL_TYPE_FOUND is used to inform whether the real type was found
229 (or just static type was used). The NULL may be passed if it is not
230 necessary. */
231
232extern struct type *value_actual_type (struct value *value,
233 int resolve_simple_types,
234 int *real_type_found);
235
6b850546
DT
236extern LONGEST value_pointed_to_offset (const struct value *value);
237extern void set_value_pointed_to_offset (struct value *value, LONGEST val);
238extern LONGEST value_embedded_offset (const struct value *value);
239extern void set_value_embedded_offset (struct value *value, LONGEST val);
91294c83 240
5f5233d4
PA
241/* For lval_computed values, this structure holds functions used to
242 retrieve and set the value (or portions of the value).
243
244 For each function, 'V' is the 'this' pointer: an lval_funcs
245 function F may always assume that the V it receives is an
246 lval_computed value, and has F in the appropriate slot of its
247 lval_funcs structure. */
248
249struct lval_funcs
250{
251 /* Fill in VALUE's contents. This is used to "un-lazy" values. If
252 a problem arises in obtaining VALUE's bits, this function should
ac71a68c
JK
253 call 'error'. If it is NULL value_fetch_lazy on "un-lazy"
254 non-optimized-out value is an internal error. */
5f5233d4
PA
255 void (*read) (struct value *v);
256
257 /* Handle an assignment TOVAL = FROMVAL by writing the value of
258 FROMVAL to TOVAL's location. The contents of TOVAL have not yet
259 been updated. If a problem arises in doing so, this function
ac71a68c
JK
260 should call 'error'. If it is NULL such TOVAL assignment is an error as
261 TOVAL is not considered as an lvalue. */
5f5233d4
PA
262 void (*write) (struct value *toval, struct value *fromval);
263
8cf6f0b1
TT
264 /* If non-NULL, this is used to implement pointer indirection for
265 this value. This method may return NULL, in which case value_ind
266 will fall back to ordinary indirection. */
267 struct value *(*indirect) (struct value *value);
268
a471c594
JK
269 /* If non-NULL, this is used to implement reference resolving for
270 this value. This method may return NULL, in which case coerce_ref
271 will fall back to ordinary references resolving. */
272 struct value *(*coerce_ref) (const struct value *value);
273
8cf6f0b1
TT
274 /* If non-NULL, this is used to determine whether the indicated bits
275 of VALUE are a synthetic pointer. */
276 int (*check_synthetic_pointer) (const struct value *value,
6b850546 277 LONGEST offset, int length);
8cf6f0b1 278
5f5233d4
PA
279 /* Return a duplicate of VALUE's closure, for use in a new value.
280 This may simply return the same closure, if VALUE's is
281 reference-counted or statically allocated.
282
283 This may be NULL, in which case VALUE's closure is re-used in the
284 new value. */
0e03807e 285 void *(*copy_closure) (const struct value *v);
5f5233d4
PA
286
287 /* Drop VALUE's reference to its closure. Maybe this frees the
288 closure; maybe this decrements a reference count; maybe the
289 closure is statically allocated and this does nothing.
290
291 This may be NULL, in which case no action is taken to free
292 VALUE's closure. */
293 void (*free_closure) (struct value *v);
294};
295
296/* Create a computed lvalue, with type TYPE, function pointers FUNCS,
297 and closure CLOSURE. */
298
299extern struct value *allocate_computed_value (struct type *type,
c8f2448a
JK
300 const struct lval_funcs *funcs,
301 void *closure);
5f5233d4 302
a72c8f6a
JK
303/* Helper function to check the validity of some bits of a value.
304
305 If TYPE represents some aggregate type (e.g., a structure), return 1.
306
307 Otherwise, any of the bytes starting at OFFSET and extending for
308 TYPE_LENGTH(TYPE) bytes are invalid, print a message to STREAM and
309 return 0. The checking is done using FUNCS.
310
311 Otherwise, return 1. */
312
313extern int valprint_check_validity (struct ui_file *stream, struct type *type,
6b850546 314 LONGEST embedded_offset,
a72c8f6a
JK
315 const struct value *val);
316
a7035dbb
JK
317extern struct value *allocate_optimized_out_value (struct type *type);
318
5f5233d4
PA
319/* If VALUE is lval_computed, return its lval_funcs structure. */
320
a471c594 321extern const struct lval_funcs *value_computed_funcs (const struct value *);
5f5233d4
PA
322
323/* If VALUE is lval_computed, return its closure. The meaning of the
324 returned value depends on the functions VALUE uses. */
325
0e03807e 326extern void *value_computed_closure (const struct value *value);
5f5233d4 327
91294c83 328/* If zero, contents of this value are in the contents field. If
9214ee5f
DJ
329 nonzero, contents are in inferior. If the lval field is lval_memory,
330 the contents are in inferior memory at location.address plus offset.
331 The lval field may also be lval_register.
91294c83
AC
332
333 WARNING: This field is used by the code which handles watchpoints
334 (see breakpoint.c) to decide whether a particular value can be
335 watched by hardware watchpoints. If the lazy flag is set for some
336 member of a value chain, it is assumed that this member of the
337 chain doesn't need to be watched as part of watching the value
338 itself. This is how GDB avoids watching the entire struct or array
339 when the user wants to watch a single struct member or array
340 element. If you ever change the way lazy flag is set and reset, be
341 sure to consider this use as well! */
342
4bf7b526 343extern int value_lazy (const struct value *);
dfa52d88 344extern void set_value_lazy (struct value *value, int val);
dea7f9ba 345
4bf7b526 346extern int value_stack (const struct value *);
4e5d721f
DE
347extern void set_value_stack (struct value *value, int val);
348
901461f8
PA
349/* Throw an error complaining that the value has been optimized
350 out. */
351
352extern void error_value_optimized_out (void);
353
0fd88904
AC
354/* value_contents() and value_contents_raw() both return the address
355 of the gdb buffer used to hold a copy of the contents of the lval.
356 value_contents() is used when the contents of the buffer are needed
dea7f9ba 357 -- it uses value_fetch_lazy() to load the buffer from the process
0fd88904
AC
358 being debugged if it hasn't already been loaded
359 (value_contents_writeable() is used when a writeable but fetched
360 buffer is required).. value_contents_raw() is used when data is
361 being stored into the buffer, or when it is certain that the
362 contents of the buffer are valid.
dea7f9ba 363
c906108c
SS
364 Note: The contents pointer is adjusted by the offset required to
365 get to the real subobject, if the value happens to represent
dea7f9ba 366 something embedded in a larger run-time object. */
c906108c 367
fc1a4b47 368extern gdb_byte *value_contents_raw (struct value *);
91294c83
AC
369
370/* Actual contents of the value. For use of this value; setting it
371 uses the stuff above. Not valid if lazy is nonzero. Target
372 byte-order. We force it to be aligned properly for any possible
373 value. Note that a value therefore extends beyond what is
374 declared here. */
375
fc1a4b47
AC
376extern const gdb_byte *value_contents (struct value *);
377extern gdb_byte *value_contents_writeable (struct value *);
c906108c
SS
378
379/* The ALL variants of the above two macros do not adjust the returned
dea7f9ba 380 pointer by the embedded_offset value. */
c5aa993b 381
fc1a4b47
AC
382extern gdb_byte *value_contents_all_raw (struct value *);
383extern const gdb_byte *value_contents_all (struct value *);
c5aa993b 384
0e03807e
TT
385/* Like value_contents_all, but does not require that the returned
386 bits be valid. This should only be used in situations where you
387 plan to check the validity manually. */
388extern const gdb_byte *value_contents_for_printing (struct value *value);
389
de4127a3
PA
390/* Like value_contents_for_printing, but accepts a constant value
391 pointer. Unlike value_contents_for_printing however, the pointed
392 value must _not_ be lazy. */
393extern const gdb_byte *
394 value_contents_for_printing_const (const struct value *value);
395
a844296a 396extern void value_fetch_lazy (struct value *val);
c906108c 397
91294c83 398/* If nonzero, this is the value of a variable which does not actually
eca07816
JB
399 exist in the program, at least partially. If the value is lazy,
400 this may fetch it now. */
feb13ab0 401extern int value_optimized_out (struct value *value);
c906108c 402
9a0dc9e3
PA
403/* Given a value, return true if any of the contents bits starting at
404 OFFSET and extending for LENGTH bits is optimized out, false
405 otherwise. */
406
407extern int value_bits_any_optimized_out (const struct value *value,
408 int bit_offset, int bit_length);
409
410/* Like value_optimized_out, but return true iff the whole value is
411 optimized out. */
412extern int value_entirely_optimized_out (struct value *value);
413
414/* Mark VALUE's content bytes starting at OFFSET and extending for
415 LENGTH bytes as optimized out. */
416
417extern void mark_value_bytes_optimized_out (struct value *value,
418 int offset, int length);
419
420/* Mark VALUE's content bits starting at OFFSET and extending for
421 LENGTH bits as optimized out. */
eca07816 422
9a0dc9e3 423extern void mark_value_bits_optimized_out (struct value *value,
6b850546 424 LONGEST offset, LONGEST length);
0e03807e 425
f372da99 426/* Set or return field indicating whether a variable is initialized or
581e13c1 427 not, based on debugging information supplied by the compiler.
f372da99 428 1 = initialized; 0 = uninitialized. */
4bf7b526 429extern int value_initialized (const struct value *);
f372da99
CT
430extern void set_value_initialized (struct value *, int);
431
74bcbdf3
PA
432/* Set COMPONENT's location as appropriate for a component of WHOLE
433 --- regardless of what kind of lvalue WHOLE is. */
434extern void set_value_component_location (struct value *component,
0e03807e 435 const struct value *whole);
74bcbdf3 436
13bb5560
AC
437/* While the following fields are per- VALUE .CONTENT .PIECE (i.e., a
438 single value might have multiple LVALs), this hacked interface is
439 limited to just the first PIECE. Expect further change. */
91294c83
AC
440/* Type of value; either not an lval, or one of the various different
441 possible kinds of lval. */
13bb5560
AC
442extern enum lval_type *deprecated_value_lval_hack (struct value *);
443#define VALUE_LVAL(val) (*deprecated_value_lval_hack (val))
91294c83 444
a471c594
JK
445/* Like VALUE_LVAL, except the parameter can be const. */
446extern enum lval_type value_lval_const (const struct value *value);
447
42ae5230
TT
448/* If lval == lval_memory, return the address in the inferior. If
449 lval == lval_register, return the byte offset into the registers
450 structure. Otherwise, return 0. The returned address
451 includes the offset, if any. */
de4127a3 452extern CORE_ADDR value_address (const struct value *);
42ae5230
TT
453
454/* Like value_address, except the result does not include value's
455 offset. */
4bf7b526 456extern CORE_ADDR value_raw_address (const struct value *);
42ae5230
TT
457
458/* Set the address of a value. */
459extern void set_value_address (struct value *, CORE_ADDR);
91294c83
AC
460
461/* Pointer to internal variable. */
13bb5560
AC
462extern struct internalvar **deprecated_value_internalvar_hack (struct value *);
463#define VALUE_INTERNALVAR(val) (*deprecated_value_internalvar_hack (val))
91294c83 464
41b56feb
KB
465/* Frame ID of "next" frame to which a register value is relative. A
466 register value is indicated by VALUE_LVAL being set to lval_register.
467 So, if the register value is found relative to frame F, then the
468 frame id of F->next will be stored in VALUE_NEXT_FRAME_ID. */
469extern struct frame_id *deprecated_value_next_frame_id_hack (struct value *);
470#define VALUE_NEXT_FRAME_ID(val) (*deprecated_value_next_frame_id_hack (val))
471
472/* Frame ID of frame to which a register value is relative. This is
473 similar to VALUE_NEXT_FRAME_ID, above, but may not be assigned to.
474 Note that VALUE_FRAME_ID effectively undoes the "next" operation
475 that was performed during the assignment to VALUE_NEXT_FRAME_ID. */
476#define VALUE_FRAME_ID(val) (get_prev_frame_id_by_id (VALUE_NEXT_FRAME_ID (val)))
91294c83
AC
477
478/* Register number if the value is from a register. */
7dc54575 479extern int *deprecated_value_regnum_hack (struct value *);
13bb5560
AC
480#define VALUE_REGNUM(val) (*deprecated_value_regnum_hack (val))
481
a471c594
JK
482/* Return value after lval_funcs->coerce_ref (after check_typedef). Return
483 NULL if lval_funcs->coerce_ref is not applicable for whatever reason. */
484
485extern struct value *coerce_ref_if_computed (const struct value *arg);
486
dfcee124
AG
487/* Setup a new value type and enclosing value type for dereferenced value VALUE.
488 ENC_TYPE is the new enclosing type that should be set. ORIGINAL_TYPE and
489 ORIGINAL_VAL are the type and value of the original reference or pointer.
490
491 Note, that VALUE is modified by this function.
492
493 It is a common implementation for coerce_ref and value_ind. */
494
495extern struct value * readjust_indirect_value_type (struct value *value,
496 struct type *enc_type,
4bf7b526
MG
497 const struct type *original_type,
498 const struct value *original_val);
dfcee124 499
dea7f9ba 500/* Convert a REF to the object referenced. */
c906108c 501
994b9211 502extern struct value *coerce_ref (struct value *value);
c906108c
SS
503
504/* If ARG is an array, convert it to a pointer.
c906108c
SS
505 If ARG is a function, convert it to a function pointer.
506
507 References are dereferenced. */
508
994b9211 509extern struct value *coerce_array (struct value *value);
c906108c 510
8cf6f0b1
TT
511/* Given a value, determine whether the bits starting at OFFSET and
512 extending for LENGTH bits are a synthetic pointer. */
513
514extern int value_bits_synthetic_pointer (const struct value *value,
6b850546 515 LONGEST offset, LONGEST length);
8cf6f0b1 516
4e07d55f
PA
517/* Given a value, determine whether the contents bytes starting at
518 OFFSET and extending for LENGTH bytes are available. This returns
519 nonzero if all bytes in the given range are available, zero if any
520 byte is unavailable. */
521
522extern int value_bytes_available (const struct value *value,
6b850546 523 LONGEST offset, LONGEST length);
4e07d55f 524
bdf22206
AB
525/* Given a value, determine whether the contents bits starting at
526 OFFSET and extending for LENGTH bits are available. This returns
527 nonzero if all bits in the given range are available, zero if any
528 bit is unavailable. */
529
530extern int value_bits_available (const struct value *value,
6b850546 531 LONGEST offset, LONGEST length);
bdf22206 532
ec0a52e1
PA
533/* Like value_bytes_available, but return false if any byte in the
534 whole object is unavailable. */
535extern int value_entirely_available (struct value *value);
536
6211c335
YQ
537/* Like value_entirely_available, but return false if any byte in the
538 whole object is available. */
539extern int value_entirely_unavailable (struct value *value);
540
4e07d55f
PA
541/* Mark VALUE's content bytes starting at OFFSET and extending for
542 LENGTH bytes as unavailable. */
543
544extern void mark_value_bytes_unavailable (struct value *value,
6b850546 545 LONGEST offset, LONGEST length);
c8c1c22f 546
bdf22206
AB
547/* Mark VALUE's content bits starting at OFFSET and extending for
548 LENGTH bits as unavailable. */
549
550extern void mark_value_bits_unavailable (struct value *value,
6b850546 551 LONGEST offset, LONGEST length);
bdf22206 552
c8c1c22f 553/* Compare LENGTH bytes of VAL1's contents starting at OFFSET1 with
cd24cfaa
PA
554 LENGTH bytes of VAL2's contents starting at OFFSET2.
555
556 Note that "contents" refers to the whole value's contents
557 (value_contents_all), without any embedded offset adjustment. For
558 example, to compare a complete object value with itself, including
559 its enclosing type chunk, you'd do:
560
561 int len = TYPE_LENGTH (check_typedef (value_enclosing_type (val)));
9a0dc9e3
PA
562 value_contents_eq (val, 0, val, 0, len);
563
564 Returns true iff the set of available/valid contents match.
565
566 Optimized-out contents are equal to optimized-out contents, and are
567 not equal to non-optimized-out contents.
cd24cfaa 568
9a0dc9e3
PA
569 Unavailable contente are equal to unavailable contents, and are not
570 equal to non-unavailable contents.
c8c1c22f 571
9a0dc9e3
PA
572 For example, if 'x's represent an unavailable byte, and 'V' and 'Z'
573 represent different available/valid bytes, in a value with length
574 16:
575
576 offset: 0 4 8 12 16
577 contents: xxxxVVVVxxxxVVZZ
c8c1c22f
PA
578
579 then:
580
98ead37e
YQ
581 value_contents_eq(val, 0, val, 8, 6) => true
582 value_contents_eq(val, 0, val, 4, 4) => false
583 value_contents_eq(val, 0, val, 8, 8) => false
584 value_contents_eq(val, 4, val, 12, 2) => true
585 value_contents_eq(val, 4, val, 12, 4) => true
586 value_contents_eq(val, 3, val, 4, 4) => true
9a0dc9e3
PA
587
588 If 'x's represent an unavailable byte, 'o' represents an optimized
589 out byte, in a value with length 8:
590
591 offset: 0 4 8
592 contents: xxxxoooo
593
594 then:
595
98ead37e
YQ
596 value_contents_eq(val, 0, val, 2, 2) => true
597 value_contents_eq(val, 4, val, 6, 2) => true
598 value_contents_eq(val, 0, val, 4, 4) => true
9a0dc9e3
PA
599
600 We only know whether a value chunk is unavailable or optimized out
601 if we've tried to read it. As this routine is used by printing
602 routines, which may be printing values in the value history, long
603 after the inferior is gone, it works with const values. Therefore,
604 this routine must not be called with lazy values. */
605
98ead37e
YQ
606extern bool value_contents_eq (const struct value *val1, LONGEST offset1,
607 const struct value *val2, LONGEST offset2,
608 LONGEST length);
4e07d55f 609
3ae385af
SM
610/* Read LENGTH addressable memory units starting at MEMADDR into BUFFER,
611 which is (or will be copied to) VAL's contents buffer offset by
23f945bf
AA
612 BIT_OFFSET bits. Marks value contents ranges as unavailable if
613 the corresponding memory is likewise unavailable. STACK indicates
614 whether the memory is known to be stack memory. */
e6ca34fc 615
23f945bf 616extern void read_value_memory (struct value *val, LONGEST bit_offset,
e6ca34fc
PA
617 int stack, CORE_ADDR memaddr,
618 gdb_byte *buffer, size_t length);
619
8954db33
AB
620/* Cast SCALAR_VALUE to the element type of VECTOR_TYPE, then replicate
621 into each element of a new vector value with VECTOR_TYPE. */
622
623struct value *value_vector_widen (struct value *scalar_value,
624 struct type *vector_type);
625
c906108c 626\f
c5aa993b 627
c906108c
SS
628#include "symtab.h"
629#include "gdbtypes.h"
630#include "expression.h"
631
c906108c
SS
632struct frame_info;
633struct fn_field;
c906108c 634
9cb709b6
TT
635extern int print_address_demangle (const struct value_print_options *,
636 struct gdbarch *, CORE_ADDR,
637 struct ui_file *, int);
c906108c 638
70100014
UW
639/* Returns true if VAL is of floating-point type. In addition,
640 throws an error if the value is an invalid floating-point value. */
641extern bool is_floating_value (struct value *val);
642
f23631e4 643extern LONGEST value_as_long (struct value *val);
f23631e4 644extern CORE_ADDR value_as_address (struct value *val);
c906108c 645
fc1a4b47 646extern LONGEST unpack_long (struct type *type, const gdb_byte *valaddr);
fc1a4b47 647extern CORE_ADDR unpack_pointer (struct type *type, const gdb_byte *valaddr);
5467c6c8 648
8929e59d 649extern LONGEST unpack_field_as_long (struct type *type,
fc1a4b47 650 const gdb_byte *valaddr,
a14ed312 651 int fieldno);
5467c6c8 652extern int unpack_value_field_as_long (struct type *type, const gdb_byte *valaddr,
6b850546 653 LONGEST embedded_offset, int fieldno,
5467c6c8
PA
654 const struct value *val, LONGEST *result);
655
bb9d5f81 656extern void unpack_value_bitfield (struct value *dest_val,
6b850546
DT
657 LONGEST bitpos, LONGEST bitsize,
658 const gdb_byte *valaddr,
659 LONGEST embedded_offset,
bb9d5f81
PP
660 const struct value *val);
661
5467c6c8
PA
662extern struct value *value_field_bitfield (struct type *type, int fieldno,
663 const gdb_byte *valaddr,
6b850546 664 LONGEST embedded_offset,
5467c6c8 665 const struct value *val);
c906108c 666
14d06750
DJ
667extern void pack_long (gdb_byte *buf, struct type *type, LONGEST num);
668
f23631e4 669extern struct value *value_from_longest (struct type *type, LONGEST num);
595939de 670extern struct value *value_from_ulongest (struct type *type, ULONGEST num);
f23631e4 671extern struct value *value_from_pointer (struct type *type, CORE_ADDR addr);
e799154c 672extern struct value *value_from_history_ref (const char *, const char **);
3fff9862
YQ
673extern struct value *value_from_component (struct value *, struct type *,
674 LONGEST);
0f71a2f6 675
00a4c844
AC
676extern struct value *value_at (struct type *type, CORE_ADDR addr);
677extern struct value *value_at_lazy (struct type *type, CORE_ADDR addr);
c906108c 678
012370f6
TT
679extern struct value *value_from_contents_and_address_unresolved
680 (struct type *, const gdb_byte *, CORE_ADDR);
8acb6b92
TT
681extern struct value *value_from_contents_and_address (struct type *,
682 const gdb_byte *,
683 CORE_ADDR);
8a9b8146 684extern struct value *value_from_contents (struct type *, const gdb_byte *);
8acb6b92 685
2ed3c037
UW
686extern struct value *default_value_from_register (struct gdbarch *gdbarch,
687 struct type *type,
9acbedc0 688 int regnum,
2ed3c037 689 struct frame_id frame_id);
9acbedc0 690
b56d6f31
JB
691extern void read_frame_register_value (struct value *value,
692 struct frame_info *frame);
693
f23631e4
AC
694extern struct value *value_from_register (struct type *type, int regnum,
695 struct frame_info *frame);
c906108c 696
2ed3c037 697extern CORE_ADDR address_from_register (int regnum,
0b2b0195
UW
698 struct frame_info *frame);
699
9df2fbc4
PM
700extern struct value *value_of_variable (struct symbol *var,
701 const struct block *b);
c906108c 702
270140bd
TT
703extern struct value *address_of_variable (struct symbol *var,
704 const struct block *b);
61212c0f 705
89f5065b 706extern struct value *value_of_register (int regnum, struct frame_info *frame);
c906108c 707
9214ee5f
DJ
708struct value *value_of_register_lazy (struct frame_info *frame, int regnum);
709
0b31a4bc
TT
710/* Return the symbol's reading requirement. */
711
712extern enum symbol_needs_kind symbol_read_needs (struct symbol *);
713
714/* Return true if the symbol needs a frame. This is a wrapper for
715 symbol_read_needs that simply checks for SYMBOL_NEEDS_FRAME. */
716
a14ed312 717extern int symbol_read_needs_frame (struct symbol *);
c906108c 718
f23631e4 719extern struct value *read_var_value (struct symbol *var,
63e43d3a 720 const struct block *var_block,
f23631e4 721 struct frame_info *frame);
c906108c 722
a5ee536b 723extern struct value *default_read_var_value (struct symbol *var,
63e43d3a 724 const struct block *var_block,
a5ee536b
JB
725 struct frame_info *frame);
726
f23631e4 727extern struct value *allocate_value (struct type *type);
3e3d7139 728extern struct value *allocate_value_lazy (struct type *type);
6b850546
DT
729extern void value_contents_copy (struct value *dst, LONGEST dst_offset,
730 struct value *src, LONGEST src_offset,
731 LONGEST length);
732extern void value_contents_copy_raw (struct value *dst, LONGEST dst_offset,
733 struct value *src, LONGEST src_offset,
734 LONGEST length);
c906108c 735
f23631e4 736extern struct value *allocate_repeat_value (struct type *type, int count);
c906108c 737
f23631e4 738extern struct value *value_mark (void);
c906108c 739
4bf7b526 740extern void value_free_to_mark (const struct value *mark);
c906108c 741
eb115069
TT
742/* A helper class that uses value_mark at construction time and calls
743 value_free_to_mark in the destructor. This is used to clear out
744 temporary values created during the lifetime of this object. */
745class scoped_value_mark
746{
747 public:
748
749 scoped_value_mark ()
750 : m_value (value_mark ())
751 {
752 }
753
754 ~scoped_value_mark ()
755 {
0cf08227
TT
756 free_to_mark ();
757 }
758
54f70bc1
TT
759 scoped_value_mark (scoped_value_mark &&other) = default;
760
761 DISABLE_COPY_AND_ASSIGN (scoped_value_mark);
762
0cf08227
TT
763 /* Free the values currently on the value stack. */
764 void free_to_mark ()
765 {
766 if (m_value != NULL)
767 {
768 value_free_to_mark (m_value);
769 m_value = NULL;
770 }
eb115069
TT
771 }
772
773 private:
774
775 const struct value *m_value;
776};
777
e3a3797e 778extern struct value *value_cstring (const char *ptr, ssize_t len,
3b7538c0 779 struct type *char_type);
7cc3f8e2 780extern struct value *value_string (const char *ptr, ssize_t len,
3b7538c0 781 struct type *char_type);
c906108c 782
f23631e4 783extern struct value *value_array (int lowbound, int highbound,
89f5065b 784 struct value **elemvec);
c906108c 785
f23631e4 786extern struct value *value_concat (struct value *arg1, struct value *arg2);
c906108c 787
f23631e4
AC
788extern struct value *value_binop (struct value *arg1, struct value *arg2,
789 enum exp_opcode op);
c906108c 790
2497b498 791extern struct value *value_ptradd (struct value *arg1, LONGEST arg2);
89eef114
UW
792
793extern LONGEST value_ptrdiff (struct value *arg1, struct value *arg2);
c906108c 794
63092375
DJ
795extern int value_must_coerce_to_target (struct value *arg1);
796
797extern struct value *value_coerce_to_target (struct value *arg1);
798
f23631e4 799extern struct value *value_coerce_array (struct value *arg1);
c906108c 800
f23631e4 801extern struct value *value_coerce_function (struct value *arg1);
c906108c 802
f23631e4 803extern struct value *value_ind (struct value *arg1);
c906108c 804
f23631e4 805extern struct value *value_addr (struct value *arg1);
c906108c 806
a65cfae5 807extern struct value *value_ref (struct value *arg1, enum type_code refcode);
fb933624 808
89f5065b
AC
809extern struct value *value_assign (struct value *toval,
810 struct value *fromval);
c906108c 811
36e9969c
NS
812extern struct value *value_pos (struct value *arg1);
813
f23631e4 814extern struct value *value_neg (struct value *arg1);
c906108c 815
f23631e4 816extern struct value *value_complement (struct value *arg1);
c906108c 817
f23631e4
AC
818extern struct value *value_struct_elt (struct value **argp,
819 struct value **args,
714f19d5
TT
820 const char *name, int *static_memfuncp,
821 const char *err);
c906108c 822
b5b08fb4
SC
823extern struct value *value_struct_elt_bitpos (struct value **argp,
824 int bitpos,
825 struct type *field_type,
826 const char *err);
827
79c2c32d 828extern struct value *value_aggregate_elt (struct type *curtype,
c848d642 829 const char *name,
072bba3b 830 struct type *expect_type,
0d5de010
DJ
831 int want_address,
832 enum noside noside);
c906108c 833
f23631e4 834extern struct value *value_static_field (struct type *type, int fieldno);
c906108c 835
4c3376c8
SW
836enum oload_search_type { NON_METHOD, METHOD, BOTH };
837
da096638 838extern int find_overload_match (struct value **args, int nargs,
4c3376c8 839 const char *name,
28c64fc2 840 enum oload_search_type method,
7f8c9282 841 struct value **objp, struct symbol *fsym,
f23631e4 842 struct value **valp, struct symbol **symp,
e66d4446
SC
843 int *staticp, const int no_adl,
844 enum noside noside);
c906108c 845
f23631e4 846extern struct value *value_field (struct value *arg1, int fieldno);
c906108c 847
6b850546 848extern struct value *value_primitive_field (struct value *arg1, LONGEST offset,
f23631e4
AC
849 int fieldno,
850 struct type *arg_type);
c906108c 851
c906108c 852
6b850546 853extern struct type *value_rtti_indirect_type (struct value *, int *, LONGEST *,
dfcee124 854 int *);
c906108c 855
f23631e4
AC
856extern struct value *value_full_object (struct value *, struct type *, int,
857 int, int);
c906108c 858
b1af9e97 859extern struct value *value_cast_pointers (struct type *, struct value *, int);
fb933624 860
f23631e4 861extern struct value *value_cast (struct type *type, struct value *arg2);
c906108c 862
4e8f195d
TT
863extern struct value *value_reinterpret_cast (struct type *type,
864 struct value *arg);
865
866extern struct value *value_dynamic_cast (struct type *type, struct value *arg);
867
f23631e4 868extern struct value *value_zero (struct type *type, enum lval_type lv);
c906108c 869
18a46dbe 870extern struct value *value_one (struct type *type);
301f0ecf 871
f23631e4 872extern struct value *value_repeat (struct value *arg1, int count);
c906108c 873
2497b498 874extern struct value *value_subscript (struct value *array, LONGEST index);
c906108c 875
afc05acb
UW
876extern struct value *value_bitstring_subscript (struct type *type,
877 struct value *bitstring,
2497b498 878 LONGEST index);
afc05acb 879
5fe830e4
AC
880extern struct value *register_value_being_returned (struct type *valtype,
881 struct regcache *retbuf);
c906108c 882
fbb06eb1 883extern int value_in (struct value *element, struct value *set);
c906108c 884
fc1a4b47 885extern int value_bit_index (struct type *type, const gdb_byte *addr,
c84141d6 886 int index);
c906108c 887
bbfdfe1c
DM
888extern enum return_value_convention
889struct_return_convention (struct gdbarch *gdbarch, struct value *function,
890 struct type *value_type);
891
d80b854b 892extern int using_struct_return (struct gdbarch *gdbarch,
6a3a010b 893 struct value *function,
c055b101 894 struct type *value_type);
c906108c 895
f23631e4 896extern struct value *evaluate_expression (struct expression *exp);
c906108c 897
f23631e4 898extern struct value *evaluate_type (struct expression *exp);
c906108c 899
4b27a620
JB
900extern struct value *evaluate_subexp (struct type *expect_type,
901 struct expression *exp,
902 int *pos, enum noside noside);
903
65d12d83
TT
904extern struct value *evaluate_subexpression_type (struct expression *exp,
905 int subexp);
906
ced9779b
JB
907extern value *evaluate_var_value (enum noside noside, const block *blk,
908 symbol *var);
909
910extern value *evaluate_var_msym_value (enum noside noside,
911 struct objfile *objfile,
912 minimal_symbol *msymbol);
913
914extern value *eval_skip_value (expression *exp);
915
0cf6dd15
TJB
916extern void fetch_subexp_value (struct expression *exp, int *pc,
917 struct value **valp, struct value **resultp,
3a1115a0
TT
918 struct value **val_chain,
919 int preserve_errors);
0cf6dd15 920
3eac2b65 921extern const char *extract_field_op (struct expression *exp, int *subexp);
65d12d83 922
f23631e4
AC
923extern struct value *evaluate_subexp_with_coercion (struct expression *,
924 int *, enum noside);
c906108c 925
bbc13ae3 926extern struct value *parse_and_eval (const char *exp);
c906108c 927
bbc13ae3 928extern struct value *parse_to_comma_and_eval (const char **expp);
c906108c 929
a14ed312 930extern struct type *parse_and_eval_type (char *p, int length);
c906108c 931
bbc13ae3 932extern CORE_ADDR parse_and_eval_address (const char *exp);
c906108c 933
a1b8c4cc 934extern LONGEST parse_and_eval_long (const char *exp);
bb518678 935
4066e646
UW
936extern void unop_promote (const struct language_defn *language,
937 struct gdbarch *gdbarch,
938 struct value **arg1);
939
940extern void binop_promote (const struct language_defn *language,
941 struct gdbarch *gdbarch,
942 struct value **arg1, struct value **arg2);
943
f23631e4 944extern struct value *access_value_history (int num);
c906108c 945
78267919
UW
946extern struct value *value_of_internalvar (struct gdbarch *gdbarch,
947 struct internalvar *var);
c906108c 948
4fa62494
UW
949extern int get_internalvar_integer (struct internalvar *var, LONGEST *l);
950
f23631e4 951extern void set_internalvar (struct internalvar *var, struct value *val);
c906108c 952
4fa62494
UW
953extern void set_internalvar_integer (struct internalvar *var, LONGEST l);
954
78267919
UW
955extern void set_internalvar_string (struct internalvar *var,
956 const char *string);
957
4fa62494
UW
958extern void clear_internalvar (struct internalvar *var);
959
a14ed312 960extern void set_internalvar_component (struct internalvar *var,
6b850546
DT
961 LONGEST offset,
962 LONGEST bitpos, LONGEST bitsize,
f23631e4 963 struct value *newvalue);
c906108c 964
bc3b79fd 965extern struct internalvar *lookup_only_internalvar (const char *name);
c4a3d09a 966
bc3b79fd 967extern struct internalvar *create_internalvar (const char *name);
c4a3d09a 968
eb3ff9a5
PA
969extern void complete_internalvar (completion_tracker &tracker,
970 const char *name);
d55637df 971
22d2b532
SDJ
972/* An internalvar can be dynamically computed by supplying a vector of
973 function pointers to perform various operations. */
974
975struct internalvar_funcs
976{
977 /* Compute the value of the variable. The DATA argument passed to
978 the function is the same argument that was passed to
979 `create_internalvar_type_lazy'. */
980
981 struct value *(*make_value) (struct gdbarch *arch,
982 struct internalvar *var,
983 void *data);
984
985 /* Update the agent expression EXPR with bytecode to compute the
986 value. VALUE is the agent value we are updating. The DATA
987 argument passed to this function is the same argument that was
988 passed to `create_internalvar_type_lazy'. If this pointer is
989 NULL, then the internalvar cannot be compiled to an agent
990 expression. */
991
992 void (*compile_to_ax) (struct internalvar *var,
993 struct agent_expr *expr,
994 struct axs_value *value,
995 void *data);
996
997 /* If non-NULL, this is called to destroy DATA. The DATA argument
998 passed to this function is the same argument that was passed to
999 `create_internalvar_type_lazy'. */
1000
1001 void (*destroy) (void *data);
1002};
1003
73033f12
SDJ
1004extern struct internalvar *create_internalvar_type_lazy (const char *name,
1005 const struct internalvar_funcs *funcs,
1006 void *data);
22d2b532
SDJ
1007
1008/* Compile an internal variable to an agent expression. VAR is the
1009 variable to compile; EXPR and VALUE are the agent expression we are
1010 updating. This will return 0 if there is no known way to compile
1011 VAR, and 1 if VAR was successfully compiled. It may also throw an
1012 exception on error. */
1013
1014extern int compile_internalvar_to_ax (struct internalvar *var,
1015 struct agent_expr *expr,
1016 struct axs_value *value);
4aa995e1 1017
bc3b79fd 1018extern struct internalvar *lookup_internalvar (const char *name);
c906108c 1019
f23631e4 1020extern int value_equal (struct value *arg1, struct value *arg2);
c906108c 1021
218d2fc6
TJB
1022extern int value_equal_contents (struct value *arg1, struct value *arg2);
1023
f23631e4 1024extern int value_less (struct value *arg1, struct value *arg2);
c906108c 1025
f23631e4 1026extern int value_logical_not (struct value *arg1);
c906108c
SS
1027
1028/* C++ */
1029
85bc8cb7
JK
1030extern struct value *value_of_this (const struct language_defn *lang);
1031
1032extern struct value *value_of_this_silent (const struct language_defn *lang);
c906108c 1033
f23631e4
AC
1034extern struct value *value_x_binop (struct value *arg1, struct value *arg2,
1035 enum exp_opcode op,
1036 enum exp_opcode otherop,
1037 enum noside noside);
c906108c 1038
f23631e4
AC
1039extern struct value *value_x_unop (struct value *arg1, enum exp_opcode op,
1040 enum noside noside);
c906108c 1041
89f5065b 1042extern struct value *value_fn_field (struct value **arg1p, struct fn_field *f,
6b850546 1043 int j, struct type *type, LONGEST offset);
c906108c 1044
be636754
PA
1045extern int binop_types_user_defined_p (enum exp_opcode op,
1046 struct type *type1,
1047 struct type *type2);
1048
f23631e4
AC
1049extern int binop_user_defined_p (enum exp_opcode op, struct value *arg1,
1050 struct value *arg2);
c906108c 1051
f23631e4 1052extern int unop_user_defined_p (enum exp_opcode op, struct value *arg1);
c906108c 1053
d8228535 1054extern int destructor_name_p (const char *name, struct type *type);
c906108c 1055
0cf6dd15
TJB
1056extern void free_value_chain (struct value *v);
1057
22bc8444 1058extern value_ref_ptr release_value (struct value *val);
e848a8a5 1059
f23631e4 1060extern int record_latest_value (struct value *val);
c906108c 1061
50810684 1062extern void modify_field (struct type *type, gdb_byte *addr,
6b850546 1063 LONGEST fieldval, LONGEST bitpos, LONGEST bitsize);
c906108c 1064
0d5cff50 1065extern void type_print (struct type *type, const char *varstring,
89f5065b 1066 struct ui_file *stream, int show);
c906108c 1067
2f408ecb 1068extern std::string type_to_string (struct type *type);
ae6a3a4c 1069
fc1a4b47
AC
1070extern gdb_byte *baseclass_addr (struct type *type, int index,
1071 gdb_byte *valaddr,
8929e59d 1072 struct value **valuep, int *errp);
c906108c 1073
89f5065b 1074extern void print_longest (struct ui_file *stream, int format,
d9fcf2fb 1075 int use_local, LONGEST val);
c906108c 1076
fc1a4b47 1077extern void print_floating (const gdb_byte *valaddr, struct type *type,
89f5065b 1078 struct ui_file *stream);
c906108c 1079
8e069a98
TT
1080extern void value_print (struct value *val, struct ui_file *stream,
1081 const struct value_print_options *options);
c906108c 1082
f23631e4
AC
1083extern void value_print_array_elements (struct value *val,
1084 struct ui_file *stream, int format,
2a998fc0 1085 enum val_prettyformat pretty);
c906108c 1086
4bf7b526 1087extern struct value *value_release_to_mark (const struct value *mark);
c906108c 1088
e8b24d9f 1089extern void val_print (struct type *type,
6b850546 1090 LONGEST embedded_offset, CORE_ADDR address,
35c0084b 1091 struct ui_file *stream, int recurse,
e8b24d9f 1092 struct value *val,
35c0084b
TT
1093 const struct value_print_options *options,
1094 const struct language_defn *language);
c906108c 1095
a1f5dd1b
TT
1096extern void common_val_print (struct value *val,
1097 struct ui_file *stream, int recurse,
1098 const struct value_print_options *options,
1099 const struct language_defn *language);
806048c6 1100
09ca9e2e
TT
1101extern int val_print_string (struct type *elttype, const char *encoding,
1102 CORE_ADDR addr, int len,
79a45b7d
TT
1103 struct ui_file *stream,
1104 const struct value_print_options *options);
c906108c 1105
aad95b57
TT
1106extern void print_variable_and_value (const char *name,
1107 struct symbol *var,
1108 struct frame_info *frame,
1109 struct ui_file *stream,
1110 int indent);
c906108c 1111
89f5065b
AC
1112extern void typedef_print (struct type *type, struct symbol *news,
1113 struct ui_file *stream);
c906108c 1114
4bf7b526 1115extern char *internalvar_name (const struct internalvar *var);
c906108c 1116
ae5a43e0 1117extern void preserve_values (struct objfile *);
c906108c
SS
1118
1119/* From values.c */
1120
f23631e4 1121extern struct value *value_copy (struct value *);
c906108c 1122
c37f7098
KW
1123extern struct value *value_non_lval (struct value *);
1124
6c659fc2
SC
1125extern void value_force_lval (struct value *, CORE_ADDR);
1126
4c082a81
SC
1127extern struct value *make_cv_value (int, int, struct value *);
1128
4e7a5ef5
TT
1129extern void preserve_one_value (struct value *, struct objfile *, htab_t);
1130
c906108c
SS
1131/* From valops.c */
1132
f23631e4 1133extern struct value *varying_to_slice (struct value *);
c906108c 1134
f23631e4 1135extern struct value *value_slice (struct value *, int, int);
c906108c 1136
f23631e4
AC
1137extern struct value *value_literal_complex (struct value *, struct value *,
1138 struct type *);
c906108c 1139
3e3b026f
UW
1140extern struct value *find_function_in_inferior (const char *,
1141 struct objfile **);
c906108c 1142
f23631e4 1143extern struct value *value_allocate_space_in_inferior (int);
c906108c 1144
2497b498
UW
1145extern struct value *value_subscripted_rvalue (struct value *array,
1146 LONGEST index, int lowerbound);
bc3b79fd
TJB
1147
1148/* User function handler. */
1149
d452c4bc
UW
1150typedef struct value *(*internal_function_fn) (struct gdbarch *gdbarch,
1151 const struct language_defn *language,
1152 void *cookie,
bc3b79fd
TJB
1153 int argc,
1154 struct value **argv);
1155
1156void add_internal_function (const char *name, const char *doc,
1157 internal_function_fn handler,
1158 void *cookie);
1159
d452c4bc
UW
1160struct value *call_internal_function (struct gdbarch *gdbarch,
1161 const struct language_defn *language,
1162 struct value *function,
bc3b79fd
TJB
1163 int argc, struct value **argv);
1164
1165char *value_internal_function_name (struct value *);
1166
ba18742c
SM
1167/* Build a value wrapping and representing WORKER. The value takes ownership
1168 of the xmethod_worker object. */
1169
1170extern struct value *value_from_xmethod (xmethod_worker_up &&worker);
e81e7f5e 1171
2ce1cdbf
DE
1172extern struct type *result_type_of_xmethod (struct value *method,
1173 int argc, struct value **argv);
1174
1175extern struct value *call_xmethod (struct value *method,
1176 int argc, struct value **argv);
e81e7f5e 1177
7c22600a
TT
1178/* Given a discriminated union type and some corresponding value
1179 contents, this will return the field index of the currently active
1180 variant. This will throw an exception if no active variant can be
1181 found. */
1182
1183extern int value_union_variant (struct type *union_type,
1184 const gdb_byte *contents);
1185
c5aa993b 1186#endif /* !defined (VALUE_H) */
This page took 3.16419 seconds and 4 git commands to generate.