2009-01-30 Julian Brown <julian@codesourcery.com>
[deliverable/binutils-gdb.git] / gdb / dwarf2loc.c
CommitLineData
4c2df51b 1/* DWARF 2 location expression support for GDB.
feb13ab0 2
0fb0cc75 3 Copyright (C) 2003, 2005, 2007, 2008, 2009 Free Software Foundation, Inc.
feb13ab0 4
4c2df51b
DJ
5 Contributed by Daniel Jacobowitz, MontaVista Software, 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
a9762ec7
JB
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
4c2df51b 13
a9762ec7
JB
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.
4c2df51b
DJ
18
19 You should have received a copy of the GNU General Public License
a9762ec7 20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
4c2df51b
DJ
21
22#include "defs.h"
23#include "ui-out.h"
24#include "value.h"
25#include "frame.h"
26#include "gdbcore.h"
27#include "target.h"
28#include "inferior.h"
a55cc764
DJ
29#include "ax.h"
30#include "ax-gdb.h"
e4adbba9 31#include "regcache.h"
c3228f12 32#include "objfiles.h"
93ad78a7 33#include "exceptions.h"
4c2df51b
DJ
34
35#include "elf/dwarf2.h"
36#include "dwarf2expr.h"
37#include "dwarf2loc.h"
38
39#include "gdb_string.h"
eff4f95e 40#include "gdb_assert.h"
4c2df51b 41
0d53c4c4
DJ
42/* A helper function for dealing with location lists. Given a
43 symbol baton (BATON) and a pc value (PC), find the appropriate
44 location expression, set *LOCEXPR_LENGTH, and return a pointer
45 to the beginning of the expression. Returns NULL on failure.
46
47 For now, only return the first matching location expression; there
48 can be more than one in the list. */
49
852483bc 50static gdb_byte *
0d53c4c4 51find_location_expression (struct dwarf2_loclist_baton *baton,
b6b08ebf 52 size_t *locexpr_length, CORE_ADDR pc)
0d53c4c4 53{
0d53c4c4 54 CORE_ADDR low, high;
852483bc
MK
55 gdb_byte *loc_ptr, *buf_end;
56 int length;
ae0d2f24 57 struct objfile *objfile = dwarf2_per_cu_objfile (baton->per_cu);
f7fd4728 58 struct gdbarch *gdbarch = get_objfile_arch (objfile);
ae0d2f24 59 unsigned int addr_size = dwarf2_per_cu_addr_size (baton->per_cu);
0d53c4c4 60 CORE_ADDR base_mask = ~(~(CORE_ADDR)1 << (addr_size * 8 - 1));
8edfa926 61 /* Adjust base_address for relocatable objects. */
ae0d2f24
UW
62 CORE_ADDR base_offset = ANOFFSET (objfile->section_offsets,
63 SECT_OFF_TEXT (objfile));
8edfa926 64 CORE_ADDR base_address = baton->base_address + base_offset;
0d53c4c4
DJ
65
66 loc_ptr = baton->data;
67 buf_end = baton->data + baton->size;
68
69 while (1)
70 {
f7fd4728 71 low = dwarf2_read_address (gdbarch, loc_ptr, buf_end, addr_size);
ae0d2f24 72 loc_ptr += addr_size;
f7fd4728 73 high = dwarf2_read_address (gdbarch, loc_ptr, buf_end, addr_size);
ae0d2f24 74 loc_ptr += addr_size;
0d53c4c4
DJ
75
76 /* An end-of-list entry. */
77 if (low == 0 && high == 0)
78 return NULL;
79
80 /* A base-address-selection entry. */
81 if ((low & base_mask) == base_mask)
82 {
83 base_address = high;
84 continue;
85 }
86
87 /* Otherwise, a location expression entry. */
88 low += base_address;
89 high += base_address;
90
91 length = extract_unsigned_integer (loc_ptr, 2);
92 loc_ptr += 2;
93
94 if (pc >= low && pc < high)
95 {
96 *locexpr_length = length;
97 return loc_ptr;
98 }
99
100 loc_ptr += length;
101 }
102}
103
4c2df51b
DJ
104/* This is the baton used when performing dwarf2 expression
105 evaluation. */
106struct dwarf_expr_baton
107{
108 struct frame_info *frame;
109 struct objfile *objfile;
110};
111
112/* Helper functions for dwarf2_evaluate_loc_desc. */
113
4bc9efe1 114/* Using the frame specified in BATON, return the value of register
0b2b0195 115 REGNUM, treated as a pointer. */
4c2df51b 116static CORE_ADDR
61fbb938 117dwarf_expr_read_reg (void *baton, int dwarf_regnum)
4c2df51b 118{
4c2df51b 119 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
5e2b427d 120 struct gdbarch *gdbarch = get_frame_arch (debaton->frame);
e5192dd8 121 CORE_ADDR result;
0b2b0195 122 int regnum;
e4adbba9 123
5e2b427d
UW
124 regnum = gdbarch_dwarf2_reg_to_regnum (gdbarch, dwarf_regnum);
125 result = address_from_register (builtin_type (gdbarch)->builtin_data_ptr,
0b2b0195 126 regnum, debaton->frame);
4c2df51b
DJ
127 return result;
128}
129
130/* Read memory at ADDR (length LEN) into BUF. */
131
132static void
852483bc 133dwarf_expr_read_mem (void *baton, gdb_byte *buf, CORE_ADDR addr, size_t len)
4c2df51b
DJ
134{
135 read_memory (addr, buf, len);
136}
137
138/* Using the frame specified in BATON, find the location expression
139 describing the frame base. Return a pointer to it in START and
140 its length in LENGTH. */
141static void
852483bc 142dwarf_expr_frame_base (void *baton, gdb_byte **start, size_t * length)
4c2df51b 143{
da62e633
AC
144 /* FIXME: cagney/2003-03-26: This code should be using
145 get_frame_base_address(), and then implement a dwarf2 specific
146 this_base method. */
4c2df51b 147 struct symbol *framefunc;
4c2df51b 148 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
0d53c4c4 149
4c2df51b 150 framefunc = get_frame_function (debaton->frame);
0d53c4c4 151
eff4f95e
JG
152 /* If we found a frame-relative symbol then it was certainly within
153 some function associated with a frame. If we can't find the frame,
154 something has gone wrong. */
155 gdb_assert (framefunc != NULL);
156
a67af2b9 157 if (SYMBOL_OPS (framefunc) == &dwarf2_loclist_funcs)
0d53c4c4
DJ
158 {
159 struct dwarf2_loclist_baton *symbaton;
22c6caba
JW
160 struct frame_info *frame = debaton->frame;
161
0d53c4c4
DJ
162 symbaton = SYMBOL_LOCATION_BATON (framefunc);
163 *start = find_location_expression (symbaton, length,
22c6caba 164 get_frame_address_in_block (frame));
0d53c4c4
DJ
165 }
166 else
167 {
168 struct dwarf2_locexpr_baton *symbaton;
169 symbaton = SYMBOL_LOCATION_BATON (framefunc);
ebd3bcc1
JK
170 if (symbaton != NULL)
171 {
172 *length = symbaton->size;
173 *start = symbaton->data;
174 }
175 else
176 *start = NULL;
0d53c4c4
DJ
177 }
178
179 if (*start == NULL)
8a3fe4f8 180 error (_("Could not find the frame base for \"%s\"."),
0d53c4c4 181 SYMBOL_NATURAL_NAME (framefunc));
4c2df51b
DJ
182}
183
184/* Using the objfile specified in BATON, find the address for the
185 current thread's thread-local storage with offset OFFSET. */
186static CORE_ADDR
187dwarf_expr_tls_address (void *baton, CORE_ADDR offset)
188{
189 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
4c2df51b 190
9e35dae4 191 return target_translate_tls_address (debaton->objfile, offset);
4c2df51b
DJ
192}
193
194/* Evaluate a location description, starting at DATA and with length
195 SIZE, to find the current location of variable VAR in the context
196 of FRAME. */
197static struct value *
198dwarf2_evaluate_loc_desc (struct symbol *var, struct frame_info *frame,
852483bc 199 gdb_byte *data, unsigned short size,
ae0d2f24 200 struct dwarf2_per_cu_data *per_cu)
4c2df51b 201{
4c2df51b
DJ
202 struct value *retval;
203 struct dwarf_expr_baton baton;
204 struct dwarf_expr_context *ctx;
205
0d53c4c4
DJ
206 if (size == 0)
207 {
208 retval = allocate_value (SYMBOL_TYPE (var));
209 VALUE_LVAL (retval) = not_lval;
feb13ab0 210 set_value_optimized_out (retval, 1);
10fb19b6 211 return retval;
0d53c4c4
DJ
212 }
213
4c2df51b 214 baton.frame = frame;
ae0d2f24 215 baton.objfile = dwarf2_per_cu_objfile (per_cu);
4c2df51b
DJ
216
217 ctx = new_dwarf_expr_context ();
f7fd4728 218 ctx->gdbarch = get_objfile_arch (baton.objfile);
ae0d2f24 219 ctx->addr_size = dwarf2_per_cu_addr_size (per_cu);
4c2df51b
DJ
220 ctx->baton = &baton;
221 ctx->read_reg = dwarf_expr_read_reg;
222 ctx->read_mem = dwarf_expr_read_mem;
223 ctx->get_frame_base = dwarf_expr_frame_base;
224 ctx->get_tls_address = dwarf_expr_tls_address;
225
226 dwarf_expr_eval (ctx, data, size);
87808bd6
JB
227 if (ctx->num_pieces > 0)
228 {
23572eca
EZ
229 int i;
230 long offset = 0;
231 bfd_byte *contents;
232
233 retval = allocate_value (SYMBOL_TYPE (var));
234 contents = value_contents_raw (retval);
235 for (i = 0; i < ctx->num_pieces; i++)
236 {
237 struct dwarf_expr_piece *p = &ctx->pieces[i];
238 if (p->in_reg)
239 {
77a732d9 240 struct gdbarch *arch = get_frame_arch (frame);
23572eca 241 bfd_byte regval[MAX_REGISTER_SIZE];
77a732d9 242 int gdb_regnum = gdbarch_dwarf2_reg_to_regnum (arch, p->value);
23572eca
EZ
243 get_frame_register (frame, gdb_regnum, regval);
244 memcpy (contents + offset, regval, p->size);
245 }
246 else /* In memory? */
247 {
248 read_memory (p->value, contents + offset, p->size);
249 }
250 offset += p->size;
251 }
87808bd6
JB
252 }
253 else if (ctx->in_reg)
051caad9 254 {
77a732d9 255 struct gdbarch *arch = get_frame_arch (frame);
5ca2e327 256 CORE_ADDR dwarf_regnum = dwarf_expr_fetch (ctx, 0);
77a732d9 257 int gdb_regnum = gdbarch_dwarf2_reg_to_regnum (arch, dwarf_regnum);
5ca2e327 258 retval = value_from_register (SYMBOL_TYPE (var), gdb_regnum, frame);
051caad9 259 }
4c2df51b
DJ
260 else
261 {
5ca2e327
JB
262 CORE_ADDR address = dwarf_expr_fetch (ctx, 0);
263
61fbb938 264 retval = allocate_value (SYMBOL_TYPE (var));
4c2df51b 265 VALUE_LVAL (retval) = lval_memory;
dfa52d88 266 set_value_lazy (retval, 1);
5ca2e327 267 VALUE_ADDRESS (retval) = address;
4c2df51b
DJ
268 }
269
42be36b3
CT
270 set_value_initialized (retval, ctx->initialized);
271
4c2df51b
DJ
272 free_dwarf_expr_context (ctx);
273
274 return retval;
275}
276
277
278
279
280\f
281/* Helper functions and baton for dwarf2_loc_desc_needs_frame. */
282
283struct needs_frame_baton
284{
285 int needs_frame;
286};
287
288/* Reads from registers do require a frame. */
289static CORE_ADDR
61fbb938 290needs_frame_read_reg (void *baton, int regnum)
4c2df51b
DJ
291{
292 struct needs_frame_baton *nf_baton = baton;
293 nf_baton->needs_frame = 1;
294 return 1;
295}
296
297/* Reads from memory do not require a frame. */
298static void
852483bc 299needs_frame_read_mem (void *baton, gdb_byte *buf, CORE_ADDR addr, size_t len)
4c2df51b
DJ
300{
301 memset (buf, 0, len);
302}
303
304/* Frame-relative accesses do require a frame. */
305static void
852483bc 306needs_frame_frame_base (void *baton, gdb_byte **start, size_t * length)
4c2df51b 307{
852483bc 308 static gdb_byte lit0 = DW_OP_lit0;
4c2df51b
DJ
309 struct needs_frame_baton *nf_baton = baton;
310
311 *start = &lit0;
312 *length = 1;
313
314 nf_baton->needs_frame = 1;
315}
316
317/* Thread-local accesses do require a frame. */
318static CORE_ADDR
319needs_frame_tls_address (void *baton, CORE_ADDR offset)
320{
321 struct needs_frame_baton *nf_baton = baton;
322 nf_baton->needs_frame = 1;
323 return 1;
324}
325
326/* Return non-zero iff the location expression at DATA (length SIZE)
327 requires a frame to evaluate. */
328
329static int
ae0d2f24
UW
330dwarf2_loc_desc_needs_frame (gdb_byte *data, unsigned short size,
331 struct dwarf2_per_cu_data *per_cu)
4c2df51b
DJ
332{
333 struct needs_frame_baton baton;
334 struct dwarf_expr_context *ctx;
f630a401 335 int in_reg;
4c2df51b
DJ
336
337 baton.needs_frame = 0;
338
339 ctx = new_dwarf_expr_context ();
f7fd4728 340 ctx->gdbarch = get_objfile_arch (dwarf2_per_cu_objfile (per_cu));
ae0d2f24 341 ctx->addr_size = dwarf2_per_cu_addr_size (per_cu);
4c2df51b
DJ
342 ctx->baton = &baton;
343 ctx->read_reg = needs_frame_read_reg;
344 ctx->read_mem = needs_frame_read_mem;
345 ctx->get_frame_base = needs_frame_frame_base;
346 ctx->get_tls_address = needs_frame_tls_address;
347
348 dwarf_expr_eval (ctx, data, size);
349
f630a401
DJ
350 in_reg = ctx->in_reg;
351
87808bd6
JB
352 if (ctx->num_pieces > 0)
353 {
354 int i;
355
356 /* If the location has several pieces, and any of them are in
357 registers, then we will need a frame to fetch them from. */
358 for (i = 0; i < ctx->num_pieces; i++)
359 if (ctx->pieces[i].in_reg)
360 in_reg = 1;
361 }
362
4c2df51b
DJ
363 free_dwarf_expr_context (ctx);
364
f630a401 365 return baton.needs_frame || in_reg;
4c2df51b
DJ
366}
367
0d53c4c4 368static void
852483bc
MK
369dwarf2_tracepoint_var_ref (struct symbol *symbol, struct agent_expr *ax,
370 struct axs_value *value, gdb_byte *data,
0d53c4c4
DJ
371 int size)
372{
373 if (size == 0)
8a3fe4f8 374 error (_("Symbol \"%s\" has been optimized out."),
0d53c4c4
DJ
375 SYMBOL_PRINT_NAME (symbol));
376
377 if (size == 1
378 && data[0] >= DW_OP_reg0
379 && data[0] <= DW_OP_reg31)
380 {
381 value->kind = axs_lvalue_register;
382 value->u.reg = data[0] - DW_OP_reg0;
383 }
384 else if (data[0] == DW_OP_regx)
385 {
386 ULONGEST reg;
387 read_uleb128 (data + 1, data + size, &reg);
388 value->kind = axs_lvalue_register;
389 value->u.reg = reg;
390 }
391 else if (data[0] == DW_OP_fbreg)
392 {
393 /* And this is worse than just minimal; we should honor the frame base
394 as above. */
395 int frame_reg;
396 LONGEST frame_offset;
852483bc 397 gdb_byte *buf_end;
0d53c4c4
DJ
398
399 buf_end = read_sleb128 (data + 1, data + size, &frame_offset);
400 if (buf_end != data + size)
8a3fe4f8 401 error (_("Unexpected opcode after DW_OP_fbreg for symbol \"%s\"."),
0d53c4c4 402 SYMBOL_PRINT_NAME (symbol));
4c2df51b 403
c7bb205c
UW
404 gdbarch_virtual_frame_pointer (current_gdbarch,
405 ax->scope, &frame_reg, &frame_offset);
0d53c4c4
DJ
406 ax_reg (ax, frame_reg);
407 ax_const_l (ax, frame_offset);
408 ax_simple (ax, aop_add);
4c2df51b 409
9c238357
RC
410 value->kind = axs_lvalue_memory;
411 }
412 else if (data[0] >= DW_OP_breg0
413 && data[0] <= DW_OP_breg31)
414 {
415 unsigned int reg;
416 LONGEST offset;
417 gdb_byte *buf_end;
418
419 reg = data[0] - DW_OP_breg0;
420 buf_end = read_sleb128 (data + 1, data + size, &offset);
421 if (buf_end != data + size)
422 error (_("Unexpected opcode after DW_OP_breg%u for symbol \"%s\"."),
423 reg, SYMBOL_PRINT_NAME (symbol));
424
425 ax_reg (ax, reg);
426 ax_const_l (ax, offset);
0d53c4c4 427 ax_simple (ax, aop_add);
9c238357 428
0d53c4c4
DJ
429 value->kind = axs_lvalue_memory;
430 }
431 else
9c238357
RC
432 error (_("Unsupported DWARF opcode 0x%x in the location of \"%s\"."),
433 data[0], SYMBOL_PRINT_NAME (symbol));
0d53c4c4 434}
4c2df51b
DJ
435\f
436/* Return the value of SYMBOL in FRAME using the DWARF-2 expression
437 evaluator to calculate the location. */
438static struct value *
439locexpr_read_variable (struct symbol *symbol, struct frame_info *frame)
440{
441 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
442 struct value *val;
443 val = dwarf2_evaluate_loc_desc (symbol, frame, dlbaton->data, dlbaton->size,
ae0d2f24 444 dlbaton->per_cu);
4c2df51b
DJ
445
446 return val;
447}
448
449/* Return non-zero iff we need a frame to evaluate SYMBOL. */
450static int
451locexpr_read_needs_frame (struct symbol *symbol)
452{
453 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
ae0d2f24
UW
454 return dwarf2_loc_desc_needs_frame (dlbaton->data, dlbaton->size,
455 dlbaton->per_cu);
4c2df51b
DJ
456}
457
458/* Print a natural-language description of SYMBOL to STREAM. */
459static int
460locexpr_describe_location (struct symbol *symbol, struct ui_file *stream)
461{
462 /* FIXME: be more extensive. */
463 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
ae0d2f24 464 int addr_size = dwarf2_per_cu_addr_size (dlbaton->per_cu);
4c2df51b
DJ
465
466 if (dlbaton->size == 1
467 && dlbaton->data[0] >= DW_OP_reg0
468 && dlbaton->data[0] <= DW_OP_reg31)
469 {
5e2b427d
UW
470 struct objfile *objfile = dwarf2_per_cu_objfile (dlbaton->per_cu);
471 struct gdbarch *gdbarch = get_objfile_arch (objfile);
472 int regno = gdbarch_dwarf2_reg_to_regnum (gdbarch,
473 dlbaton->data[0] - DW_OP_reg0);
4c2df51b 474 fprintf_filtered (stream,
c9f4d572 475 "a variable in register %s",
5e2b427d 476 gdbarch_register_name (gdbarch, regno));
4c2df51b
DJ
477 return 1;
478 }
479
c3228f12
EZ
480 /* The location expression for a TLS variable looks like this (on a
481 64-bit LE machine):
482
483 DW_AT_location : 10 byte block: 3 4 0 0 0 0 0 0 0 e0
484 (DW_OP_addr: 4; DW_OP_GNU_push_tls_address)
485
486 0x3 is the encoding for DW_OP_addr, which has an operand as long
487 as the size of an address on the target machine (here is 8
488 bytes). 0xe0 is the encoding for DW_OP_GNU_push_tls_address.
489 The operand represents the offset at which the variable is within
490 the thread local storage. */
491
492 if (dlbaton->size > 1
493 && dlbaton->data[dlbaton->size - 1] == DW_OP_GNU_push_tls_address)
494 if (dlbaton->data[0] == DW_OP_addr)
495 {
ae0d2f24 496 struct objfile *objfile = dwarf2_per_cu_objfile (dlbaton->per_cu);
f7fd4728
UW
497 struct gdbarch *gdbarch = get_objfile_arch (objfile);
498 CORE_ADDR offset = dwarf2_read_address (gdbarch,
499 &dlbaton->data[1],
c193f044 500 &dlbaton->data[dlbaton->size - 1],
ae0d2f24 501 addr_size);
c3228f12 502 fprintf_filtered (stream,
32ffcbed 503 "a thread-local variable at offset %s in the "
c3228f12 504 "thread-local storage for `%s'",
ae0d2f24 505 paddr_nz (offset), objfile->name);
c3228f12
EZ
506 return 1;
507 }
508
509
4c2df51b
DJ
510 fprintf_filtered (stream,
511 "a variable with complex or multiple locations (DWARF2)");
512 return 1;
513}
514
a55cc764
DJ
515
516/* Describe the location of SYMBOL as an agent value in VALUE, generating
517 any necessary bytecode in AX.
518
519 NOTE drow/2003-02-26: This function is extremely minimal, because
520 doing it correctly is extremely complicated and there is no
521 publicly available stub with tracepoint support for me to test
522 against. When there is one this function should be revisited. */
523
0d53c4c4 524static void
a55cc764
DJ
525locexpr_tracepoint_var_ref (struct symbol * symbol, struct agent_expr * ax,
526 struct axs_value * value)
527{
528 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
529
0d53c4c4 530 dwarf2_tracepoint_var_ref (symbol, ax, value, dlbaton->data, dlbaton->size);
a55cc764
DJ
531}
532
4c2df51b
DJ
533/* The set of location functions used with the DWARF-2 expression
534 evaluator. */
a67af2b9 535const struct symbol_ops dwarf2_locexpr_funcs = {
4c2df51b
DJ
536 locexpr_read_variable,
537 locexpr_read_needs_frame,
538 locexpr_describe_location,
a55cc764 539 locexpr_tracepoint_var_ref
4c2df51b 540};
0d53c4c4
DJ
541
542
543/* Wrapper functions for location lists. These generally find
544 the appropriate location expression and call something above. */
545
546/* Return the value of SYMBOL in FRAME using the DWARF-2 expression
547 evaluator to calculate the location. */
548static struct value *
549loclist_read_variable (struct symbol *symbol, struct frame_info *frame)
550{
551 struct dwarf2_loclist_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
552 struct value *val;
852483bc 553 gdb_byte *data;
b6b08ebf 554 size_t size;
0d53c4c4
DJ
555
556 data = find_location_expression (dlbaton, &size,
22c6caba
JW
557 frame ? get_frame_address_in_block (frame)
558 : 0);
0d53c4c4 559 if (data == NULL)
806048c6
DJ
560 {
561 val = allocate_value (SYMBOL_TYPE (symbol));
562 VALUE_LVAL (val) = not_lval;
563 set_value_optimized_out (val, 1);
564 }
565 else
566 val = dwarf2_evaluate_loc_desc (symbol, frame, data, size,
ae0d2f24 567 dlbaton->per_cu);
0d53c4c4
DJ
568
569 return val;
570}
571
572/* Return non-zero iff we need a frame to evaluate SYMBOL. */
573static int
574loclist_read_needs_frame (struct symbol *symbol)
575{
576 /* If there's a location list, then assume we need to have a frame
577 to choose the appropriate location expression. With tracking of
578 global variables this is not necessarily true, but such tracking
579 is disabled in GCC at the moment until we figure out how to
580 represent it. */
581
582 return 1;
583}
584
585/* Print a natural-language description of SYMBOL to STREAM. */
586static int
587loclist_describe_location (struct symbol *symbol, struct ui_file *stream)
588{
589 /* FIXME: Could print the entire list of locations. */
590 fprintf_filtered (stream, "a variable with multiple locations");
591 return 1;
592}
593
594/* Describe the location of SYMBOL as an agent value in VALUE, generating
595 any necessary bytecode in AX. */
596static void
597loclist_tracepoint_var_ref (struct symbol * symbol, struct agent_expr * ax,
598 struct axs_value * value)
599{
600 struct dwarf2_loclist_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
852483bc 601 gdb_byte *data;
b6b08ebf 602 size_t size;
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603
604 data = find_location_expression (dlbaton, &size, ax->scope);
605 if (data == NULL)
8a3fe4f8 606 error (_("Variable \"%s\" is not available."), SYMBOL_NATURAL_NAME (symbol));
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607
608 dwarf2_tracepoint_var_ref (symbol, ax, value, data, size);
609}
610
611/* The set of location functions used with the DWARF-2 expression
612 evaluator and location lists. */
a67af2b9 613const struct symbol_ops dwarf2_loclist_funcs = {
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614 loclist_read_variable,
615 loclist_read_needs_frame,
616 loclist_describe_location,
617 loclist_tracepoint_var_ref
618};
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