* config/tc-mips.c (HAVE_64BIT_ADDRESS_CONSTANTS): Remove.
[deliverable/binutils-gdb.git] / gdb / findvar.c
... / ...
CommitLineData
1/* Find a variable's value in memory, for GDB, the GNU debugger.
2
3 Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994,
4 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2003 Free Software
5 Foundation, Inc.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 59 Temple Place - Suite 330,
22 Boston, MA 02111-1307, USA. */
23
24#include "defs.h"
25#include "symtab.h"
26#include "gdbtypes.h"
27#include "frame.h"
28#include "value.h"
29#include "gdbcore.h"
30#include "inferior.h"
31#include "target.h"
32#include "gdb_string.h"
33#include "gdb_assert.h"
34#include "floatformat.h"
35#include "symfile.h" /* for overlay functions */
36#include "regcache.h"
37#include "user-regs.h"
38#include "block.h"
39
40/* Basic byte-swapping routines. GDB has needed these for a long time...
41 All extract a target-format integer at ADDR which is LEN bytes long. */
42
43#if TARGET_CHAR_BIT != 8 || HOST_CHAR_BIT != 8
44 /* 8 bit characters are a pretty safe assumption these days, so we
45 assume it throughout all these swapping routines. If we had to deal with
46 9 bit characters, we would need to make len be in bits and would have
47 to re-write these routines... */
48you lose
49#endif
50
51LONGEST
52extract_signed_integer (const void *addr, int len)
53{
54 LONGEST retval;
55 const unsigned char *p;
56 const unsigned char *startaddr = addr;
57 const unsigned char *endaddr = startaddr + len;
58
59 if (len > (int) sizeof (LONGEST))
60 error ("\
61That operation is not available on integers of more than %d bytes.",
62 (int) sizeof (LONGEST));
63
64 /* Start at the most significant end of the integer, and work towards
65 the least significant. */
66 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
67 {
68 p = startaddr;
69 /* Do the sign extension once at the start. */
70 retval = ((LONGEST) * p ^ 0x80) - 0x80;
71 for (++p; p < endaddr; ++p)
72 retval = (retval << 8) | *p;
73 }
74 else
75 {
76 p = endaddr - 1;
77 /* Do the sign extension once at the start. */
78 retval = ((LONGEST) * p ^ 0x80) - 0x80;
79 for (--p; p >= startaddr; --p)
80 retval = (retval << 8) | *p;
81 }
82 return retval;
83}
84
85ULONGEST
86extract_unsigned_integer (const void *addr, int len)
87{
88 ULONGEST retval;
89 const unsigned char *p;
90 const unsigned char *startaddr = addr;
91 const unsigned char *endaddr = startaddr + len;
92
93 if (len > (int) sizeof (ULONGEST))
94 error ("\
95That operation is not available on integers of more than %d bytes.",
96 (int) sizeof (ULONGEST));
97
98 /* Start at the most significant end of the integer, and work towards
99 the least significant. */
100 retval = 0;
101 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
102 {
103 for (p = startaddr; p < endaddr; ++p)
104 retval = (retval << 8) | *p;
105 }
106 else
107 {
108 for (p = endaddr - 1; p >= startaddr; --p)
109 retval = (retval << 8) | *p;
110 }
111 return retval;
112}
113
114/* Sometimes a long long unsigned integer can be extracted as a
115 LONGEST value. This is done so that we can print these values
116 better. If this integer can be converted to a LONGEST, this
117 function returns 1 and sets *PVAL. Otherwise it returns 0. */
118
119int
120extract_long_unsigned_integer (const void *addr, int orig_len, LONGEST *pval)
121{
122 char *p, *first_addr;
123 int len;
124
125 len = orig_len;
126 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
127 {
128 for (p = (char *) addr;
129 len > (int) sizeof (LONGEST) && p < (char *) addr + orig_len;
130 p++)
131 {
132 if (*p == 0)
133 len--;
134 else
135 break;
136 }
137 first_addr = p;
138 }
139 else
140 {
141 first_addr = (char *) addr;
142 for (p = (char *) addr + orig_len - 1;
143 len > (int) sizeof (LONGEST) && p >= (char *) addr;
144 p--)
145 {
146 if (*p == 0)
147 len--;
148 else
149 break;
150 }
151 }
152
153 if (len <= (int) sizeof (LONGEST))
154 {
155 *pval = (LONGEST) extract_unsigned_integer (first_addr,
156 sizeof (LONGEST));
157 return 1;
158 }
159
160 return 0;
161}
162
163
164/* Treat the bytes at BUF as a pointer of type TYPE, and return the
165 address it represents. */
166CORE_ADDR
167extract_typed_address (const void *buf, struct type *type)
168{
169 if (TYPE_CODE (type) != TYPE_CODE_PTR
170 && TYPE_CODE (type) != TYPE_CODE_REF)
171 internal_error (__FILE__, __LINE__,
172 "extract_typed_address: "
173 "type is not a pointer or reference");
174
175 return POINTER_TO_ADDRESS (type, buf);
176}
177
178
179void
180store_signed_integer (void *addr, int len, LONGEST val)
181{
182 unsigned char *p;
183 unsigned char *startaddr = (unsigned char *) addr;
184 unsigned char *endaddr = startaddr + len;
185
186 /* Start at the least significant end of the integer, and work towards
187 the most significant. */
188 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
189 {
190 for (p = endaddr - 1; p >= startaddr; --p)
191 {
192 *p = val & 0xff;
193 val >>= 8;
194 }
195 }
196 else
197 {
198 for (p = startaddr; p < endaddr; ++p)
199 {
200 *p = val & 0xff;
201 val >>= 8;
202 }
203 }
204}
205
206void
207store_unsigned_integer (void *addr, int len, ULONGEST val)
208{
209 unsigned char *p;
210 unsigned char *startaddr = (unsigned char *) addr;
211 unsigned char *endaddr = startaddr + len;
212
213 /* Start at the least significant end of the integer, and work towards
214 the most significant. */
215 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
216 {
217 for (p = endaddr - 1; p >= startaddr; --p)
218 {
219 *p = val & 0xff;
220 val >>= 8;
221 }
222 }
223 else
224 {
225 for (p = startaddr; p < endaddr; ++p)
226 {
227 *p = val & 0xff;
228 val >>= 8;
229 }
230 }
231}
232
233/* Store the address ADDR as a pointer of type TYPE at BUF, in target
234 form. */
235void
236store_typed_address (void *buf, struct type *type, CORE_ADDR addr)
237{
238 if (TYPE_CODE (type) != TYPE_CODE_PTR
239 && TYPE_CODE (type) != TYPE_CODE_REF)
240 internal_error (__FILE__, __LINE__,
241 "store_typed_address: "
242 "type is not a pointer or reference");
243
244 ADDRESS_TO_POINTER (type, buf, addr);
245}
246
247
248
249/* Return a `value' with the contents of (virtual or cooked) register
250 REGNUM as found in the specified FRAME. The register's type is
251 determined by register_type().
252
253 NOTE: returns NULL if register value is not available. Caller will
254 check return value or die! */
255
256struct value *
257value_of_register (int regnum, struct frame_info *frame)
258{
259 CORE_ADDR addr;
260 int optim;
261 struct value *reg_val;
262 int realnum;
263 char raw_buffer[MAX_REGISTER_SIZE];
264 enum lval_type lval;
265
266 /* User registers lie completly outside of the range of normal
267 registers. Catch them early so that the target never sees them. */
268 if (regnum >= NUM_REGS + NUM_PSEUDO_REGS)
269 return value_of_user_reg (regnum, frame);
270
271 frame_register (frame, regnum, &optim, &lval, &addr, &realnum, raw_buffer);
272
273 /* FIXME: cagney/2002-05-15: This test is just bogus.
274
275 It indicates that the target failed to supply a value for a
276 register because it was "not available" at this time. Problem
277 is, the target still has the register and so get saved_register()
278 may be returning a value saved on the stack. */
279
280 if (register_cached (regnum) < 0)
281 return NULL; /* register value not available */
282
283 reg_val = allocate_value (register_type (current_gdbarch, regnum));
284
285 /* Convert raw data to virtual format if necessary. */
286
287 if (DEPRECATED_REGISTER_CONVERTIBLE (regnum))
288 {
289 DEPRECATED_REGISTER_CONVERT_TO_VIRTUAL (regnum, register_type (current_gdbarch, regnum),
290 raw_buffer, VALUE_CONTENTS_RAW (reg_val));
291 }
292 else if (REGISTER_RAW_SIZE (regnum) == REGISTER_VIRTUAL_SIZE (regnum))
293 memcpy (VALUE_CONTENTS_RAW (reg_val), raw_buffer,
294 REGISTER_RAW_SIZE (regnum));
295 else
296 internal_error (__FILE__, __LINE__,
297 "Register \"%s\" (%d) has conflicting raw (%d) and virtual (%d) size",
298 REGISTER_NAME (regnum),
299 regnum,
300 REGISTER_RAW_SIZE (regnum),
301 REGISTER_VIRTUAL_SIZE (regnum));
302 VALUE_LVAL (reg_val) = lval;
303 VALUE_ADDRESS (reg_val) = addr;
304 VALUE_REGNO (reg_val) = regnum;
305 VALUE_OPTIMIZED_OUT (reg_val) = optim;
306 return reg_val;
307}
308
309/* Given a pointer of type TYPE in target form in BUF, return the
310 address it represents. */
311CORE_ADDR
312unsigned_pointer_to_address (struct type *type, const void *buf)
313{
314 return extract_unsigned_integer (buf, TYPE_LENGTH (type));
315}
316
317CORE_ADDR
318signed_pointer_to_address (struct type *type, const void *buf)
319{
320 return extract_signed_integer (buf, TYPE_LENGTH (type));
321}
322
323/* Given an address, store it as a pointer of type TYPE in target
324 format in BUF. */
325void
326unsigned_address_to_pointer (struct type *type, void *buf, CORE_ADDR addr)
327{
328 store_unsigned_integer (buf, TYPE_LENGTH (type), addr);
329}
330
331void
332address_to_signed_pointer (struct type *type, void *buf, CORE_ADDR addr)
333{
334 store_signed_integer (buf, TYPE_LENGTH (type), addr);
335}
336\f
337/* Will calling read_var_value or locate_var_value on SYM end
338 up caring what frame it is being evaluated relative to? SYM must
339 be non-NULL. */
340int
341symbol_read_needs_frame (struct symbol *sym)
342{
343 switch (SYMBOL_CLASS (sym))
344 {
345 /* All cases listed explicitly so that gcc -Wall will detect it if
346 we failed to consider one. */
347 case LOC_COMPUTED:
348 case LOC_COMPUTED_ARG:
349 {
350 struct location_funcs *symfuncs = SYMBOL_LOCATION_FUNCS (sym);
351 return (symfuncs->read_needs_frame) (sym);
352 }
353 break;
354
355 case LOC_REGISTER:
356 case LOC_ARG:
357 case LOC_REF_ARG:
358 case LOC_REGPARM:
359 case LOC_REGPARM_ADDR:
360 case LOC_LOCAL:
361 case LOC_LOCAL_ARG:
362 case LOC_BASEREG:
363 case LOC_BASEREG_ARG:
364 case LOC_HP_THREAD_LOCAL_STATIC:
365 return 1;
366
367 case LOC_UNDEF:
368 case LOC_CONST:
369 case LOC_STATIC:
370 case LOC_INDIRECT:
371 case LOC_TYPEDEF:
372
373 case LOC_LABEL:
374 /* Getting the address of a label can be done independently of the block,
375 even if some *uses* of that address wouldn't work so well without
376 the right frame. */
377
378 case LOC_BLOCK:
379 case LOC_CONST_BYTES:
380 case LOC_UNRESOLVED:
381 case LOC_OPTIMIZED_OUT:
382 return 0;
383 }
384 return 1;
385}
386
387/* Given a struct symbol for a variable,
388 and a stack frame id, read the value of the variable
389 and return a (pointer to a) struct value containing the value.
390 If the variable cannot be found, return a zero pointer.
391 If FRAME is NULL, use the deprecated_selected_frame. */
392
393struct value *
394read_var_value (register struct symbol *var, struct frame_info *frame)
395{
396 register struct value *v;
397 struct type *type = SYMBOL_TYPE (var);
398 CORE_ADDR addr;
399 register int len;
400
401 v = allocate_value (type);
402 VALUE_LVAL (v) = lval_memory; /* The most likely possibility. */
403 VALUE_BFD_SECTION (v) = SYMBOL_BFD_SECTION (var);
404
405 len = TYPE_LENGTH (type);
406
407
408 /* FIXME drow/2003-09-06: this call to the selected frame should be
409 pushed upwards to the callers. */
410 if (frame == NULL)
411 frame = deprecated_safe_get_selected_frame ();
412
413 switch (SYMBOL_CLASS (var))
414 {
415 case LOC_CONST:
416 /* Put the constant back in target format. */
417 store_signed_integer (VALUE_CONTENTS_RAW (v), len,
418 (LONGEST) SYMBOL_VALUE (var));
419 VALUE_LVAL (v) = not_lval;
420 return v;
421
422 case LOC_LABEL:
423 /* Put the constant back in target format. */
424 if (overlay_debugging)
425 {
426 CORE_ADDR addr
427 = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (var),
428 SYMBOL_BFD_SECTION (var));
429 store_typed_address (VALUE_CONTENTS_RAW (v), type, addr);
430 }
431 else
432 store_typed_address (VALUE_CONTENTS_RAW (v), type,
433 SYMBOL_VALUE_ADDRESS (var));
434 VALUE_LVAL (v) = not_lval;
435 return v;
436
437 case LOC_CONST_BYTES:
438 {
439 char *bytes_addr;
440 bytes_addr = SYMBOL_VALUE_BYTES (var);
441 memcpy (VALUE_CONTENTS_RAW (v), bytes_addr, len);
442 VALUE_LVAL (v) = not_lval;
443 return v;
444 }
445
446 case LOC_STATIC:
447 if (overlay_debugging)
448 addr = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (var),
449 SYMBOL_BFD_SECTION (var));
450 else
451 addr = SYMBOL_VALUE_ADDRESS (var);
452 break;
453
454 case LOC_INDIRECT:
455 {
456 /* The import slot does not have a real address in it from the
457 dynamic loader (dld.sl on HP-UX), if the target hasn't
458 begun execution yet, so check for that. */
459 CORE_ADDR locaddr;
460 struct value *loc;
461 if (!target_has_execution)
462 error ("\
463Attempt to access variable defined in different shared object or load module when\n\
464addresses have not been bound by the dynamic loader. Try again when executable is running.");
465
466 locaddr = SYMBOL_VALUE_ADDRESS (var);
467 loc = value_at (lookup_pointer_type (type), locaddr, NULL);
468 addr = value_as_address (loc);
469 }
470
471 case LOC_ARG:
472 if (frame == NULL)
473 return 0;
474 addr = get_frame_args_address (frame);
475 if (!addr)
476 return 0;
477 addr += SYMBOL_VALUE (var);
478 break;
479
480 case LOC_REF_ARG:
481 {
482 struct value *ref;
483 CORE_ADDR argref;
484 if (frame == NULL)
485 return 0;
486 argref = get_frame_args_address (frame);
487 if (!argref)
488 return 0;
489 argref += SYMBOL_VALUE (var);
490 ref = value_at (lookup_pointer_type (type), argref, NULL);
491 addr = value_as_address (ref);
492 break;
493 }
494
495 case LOC_LOCAL:
496 case LOC_LOCAL_ARG:
497 if (frame == NULL)
498 return 0;
499 addr = get_frame_locals_address (frame);
500 addr += SYMBOL_VALUE (var);
501 break;
502
503 case LOC_BASEREG:
504 case LOC_BASEREG_ARG:
505 case LOC_HP_THREAD_LOCAL_STATIC:
506 {
507 struct value *regval;
508
509 regval = value_from_register (lookup_pointer_type (type),
510 SYMBOL_BASEREG (var), frame);
511 if (regval == NULL)
512 error ("Value of base register not available.");
513 addr = value_as_address (regval);
514 addr += SYMBOL_VALUE (var);
515 break;
516 }
517
518 case LOC_TYPEDEF:
519 error ("Cannot look up value of a typedef");
520 break;
521
522 case LOC_BLOCK:
523 if (overlay_debugging)
524 VALUE_ADDRESS (v) = symbol_overlayed_address
525 (BLOCK_START (SYMBOL_BLOCK_VALUE (var)), SYMBOL_BFD_SECTION (var));
526 else
527 VALUE_ADDRESS (v) = BLOCK_START (SYMBOL_BLOCK_VALUE (var));
528 return v;
529
530 case LOC_REGISTER:
531 case LOC_REGPARM:
532 case LOC_REGPARM_ADDR:
533 {
534 struct block *b;
535 int regno = SYMBOL_VALUE (var);
536 struct value *regval;
537
538 if (frame == NULL)
539 return 0;
540 b = get_frame_block (frame, 0);
541
542 if (SYMBOL_CLASS (var) == LOC_REGPARM_ADDR)
543 {
544 regval = value_from_register (lookup_pointer_type (type),
545 regno,
546 frame);
547
548 if (regval == NULL)
549 error ("Value of register variable not available.");
550
551 addr = value_as_address (regval);
552 VALUE_LVAL (v) = lval_memory;
553 }
554 else
555 {
556 regval = value_from_register (type, regno, frame);
557
558 if (regval == NULL)
559 error ("Value of register variable not available.");
560 return regval;
561 }
562 }
563 break;
564
565 case LOC_COMPUTED:
566 case LOC_COMPUTED_ARG:
567 {
568 struct location_funcs *funcs = SYMBOL_LOCATION_FUNCS (var);
569
570 if (frame == 0 && (funcs->read_needs_frame) (var))
571 return 0;
572 return (funcs->read_variable) (var, frame);
573
574 }
575 break;
576
577 case LOC_UNRESOLVED:
578 {
579 struct minimal_symbol *msym;
580
581 msym = lookup_minimal_symbol (DEPRECATED_SYMBOL_NAME (var), NULL, NULL);
582 if (msym == NULL)
583 return 0;
584 if (overlay_debugging)
585 addr = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (msym),
586 SYMBOL_BFD_SECTION (msym));
587 else
588 addr = SYMBOL_VALUE_ADDRESS (msym);
589 }
590 break;
591
592 case LOC_OPTIMIZED_OUT:
593 VALUE_LVAL (v) = not_lval;
594 VALUE_OPTIMIZED_OUT (v) = 1;
595 return v;
596
597 default:
598 error ("Cannot look up value of a botched symbol.");
599 break;
600 }
601
602 VALUE_ADDRESS (v) = addr;
603 VALUE_LAZY (v) = 1;
604 return v;
605}
606
607/* Return a value of type TYPE, stored in register REGNUM, in frame
608 FRAME.
609
610 NOTE: returns NULL if register value is not available.
611 Caller will check return value or die! */
612
613struct value *
614value_from_register (struct type *type, int regnum, struct frame_info *frame)
615{
616 struct gdbarch *gdbarch = get_frame_arch (frame);
617 struct value *v = allocate_value (type);
618 CHECK_TYPEDEF (type);
619
620 if (CONVERT_REGISTER_P (regnum, type))
621 {
622 /* The ISA/ABI need to something weird when obtaining the
623 specified value from this register. It might need to
624 re-order non-adjacent, starting with REGNUM (see MIPS and
625 i386). It might need to convert the [float] register into
626 the corresponding [integer] type (see Alpha). The assumption
627 is that REGISTER_TO_VALUE populates the entire value
628 including the location. */
629 REGISTER_TO_VALUE (frame, regnum, type, VALUE_CONTENTS_RAW (v));
630 VALUE_LVAL (v) = lval_reg_frame_relative;
631 VALUE_FRAME_ID (v) = get_frame_id (frame);
632 VALUE_FRAME_REGNUM (v) = regnum;
633 }
634 else
635 {
636 int local_regnum;
637 int mem_stor = 0, reg_stor = 0;
638 int mem_tracking = 1;
639 CORE_ADDR last_addr = 0;
640 CORE_ADDR first_addr = 0;
641 int first_realnum = regnum;
642 int len = TYPE_LENGTH (type);
643 int value_bytes_copied;
644 int optimized = 0;
645 char *value_bytes = (char *) alloca (len + MAX_REGISTER_SIZE);
646
647 /* Copy all of the data out, whereever it may be. */
648 for (local_regnum = regnum, value_bytes_copied = 0;
649 value_bytes_copied < len;
650 (value_bytes_copied += REGISTER_RAW_SIZE (local_regnum),
651 ++local_regnum))
652 {
653 int realnum;
654 int optim;
655 enum lval_type lval;
656 CORE_ADDR addr;
657 frame_register (frame, local_regnum, &optim, &lval, &addr,
658 &realnum, value_bytes + value_bytes_copied);
659 optimized += optim;
660 if (register_cached (local_regnum) == -1)
661 return NULL; /* register value not available */
662
663 if (regnum == local_regnum)
664 {
665 first_addr = addr;
666 first_realnum = realnum;
667 }
668 if (lval == lval_register)
669 reg_stor++;
670 else
671 {
672 mem_stor++;
673
674 mem_tracking = (mem_tracking
675 && (regnum == local_regnum
676 || addr == last_addr));
677 }
678 last_addr = addr;
679 }
680
681 /* FIXME: cagney/2003-06-04: Shouldn't this always use
682 lval_reg_frame_relative? If it doesn't and the register's
683 location changes (say after a resume) then this value is
684 going to have wrong information. */
685 if ((reg_stor && mem_stor)
686 || (mem_stor && !mem_tracking))
687 /* Mixed storage; all of the hassle we just went through was
688 for some good purpose. */
689 {
690 VALUE_LVAL (v) = lval_reg_frame_relative;
691 VALUE_FRAME_ID (v) = get_frame_id (frame);
692 VALUE_FRAME_REGNUM (v) = regnum;
693 }
694 else if (mem_stor)
695 {
696 VALUE_LVAL (v) = lval_memory;
697 VALUE_ADDRESS (v) = first_addr;
698 }
699 else if (reg_stor)
700 {
701 VALUE_LVAL (v) = lval_register;
702 VALUE_ADDRESS (v) = first_addr;
703 VALUE_REGNO (v) = first_realnum;
704 }
705 else
706 internal_error (__FILE__, __LINE__,
707 "value_from_register: Value not stored anywhere!");
708
709 VALUE_OPTIMIZED_OUT (v) = optimized;
710
711 /* Any structure stored in more than one register will always be
712 an integral number of registers. Otherwise, you need to do
713 some fiddling with the last register copied here for little
714 endian machines. */
715 if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG
716 && len < REGISTER_RAW_SIZE (regnum))
717 /* Big-endian, and we want less than full size. */
718 VALUE_OFFSET (v) = REGISTER_RAW_SIZE (regnum) - len;
719 else
720 VALUE_OFFSET (v) = 0;
721 memcpy (VALUE_CONTENTS_RAW (v), value_bytes + VALUE_OFFSET (v), len);
722 }
723 return v;
724}
725
726\f
727/* Given a struct symbol for a variable or function,
728 and a stack frame id,
729 return a (pointer to a) struct value containing the properly typed
730 address. */
731
732struct value *
733locate_var_value (register struct symbol *var, struct frame_info *frame)
734{
735 CORE_ADDR addr = 0;
736 struct type *type = SYMBOL_TYPE (var);
737 struct value *lazy_value;
738
739 /* Evaluate it first; if the result is a memory address, we're fine.
740 Lazy evaluation pays off here. */
741
742 lazy_value = read_var_value (var, frame);
743 if (lazy_value == 0)
744 error ("Address of \"%s\" is unknown.", SYMBOL_PRINT_NAME (var));
745
746 if (VALUE_LAZY (lazy_value)
747 || TYPE_CODE (type) == TYPE_CODE_FUNC)
748 {
749 struct value *val;
750
751 addr = VALUE_ADDRESS (lazy_value);
752 val = value_from_pointer (lookup_pointer_type (type), addr);
753 VALUE_BFD_SECTION (val) = VALUE_BFD_SECTION (lazy_value);
754 return val;
755 }
756
757 /* Not a memory address; check what the problem was. */
758 switch (VALUE_LVAL (lazy_value))
759 {
760 case lval_register:
761 gdb_assert (REGISTER_NAME (VALUE_REGNO (lazy_value)) != NULL
762 && *REGISTER_NAME (VALUE_REGNO (lazy_value)) != '\0');
763 error("Address requested for identifier "
764 "\"%s\" which is in register $%s",
765 SYMBOL_PRINT_NAME (var),
766 REGISTER_NAME (VALUE_REGNO (lazy_value)));
767 break;
768
769 case lval_reg_frame_relative:
770 gdb_assert (REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value)) != NULL
771 && *REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value)) != '\0');
772 error("Address requested for identifier "
773 "\"%s\" which is in frame register $%s",
774 SYMBOL_PRINT_NAME (var),
775 REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value)));
776 break;
777
778 default:
779 error ("Can't take address of \"%s\" which isn't an lvalue.",
780 SYMBOL_PRINT_NAME (var));
781 break;
782 }
783 return 0; /* For lint -- never reached */
784}
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