* emultempl/mmo.em: Improve comments. Explain why there's
[deliverable/binutils-gdb.git] / gdb / dwarf2loc.c
CommitLineData
4c2df51b 1/* DWARF 2 location expression support for GDB.
feb13ab0 2
197e01b6 3 Copyright (C) 2003, 2005 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
11 the Free Software Foundation; either version 2 of the License, or (at
12 your option) any later version.
13
14 This program is distributed in the hope that it will be useful, but
15 WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 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
197e01b6
EZ
21 Foundation, Inc., 51 Franklin Street, Fifth Floor,
22 Boston, MA 02110-1301, USA. */
4c2df51b
DJ
23
24#include "defs.h"
25#include "ui-out.h"
26#include "value.h"
27#include "frame.h"
28#include "gdbcore.h"
29#include "target.h"
30#include "inferior.h"
a55cc764
DJ
31#include "ax.h"
32#include "ax-gdb.h"
e4adbba9 33#include "regcache.h"
c3228f12 34#include "objfiles.h"
93ad78a7 35#include "exceptions.h"
4c2df51b
DJ
36
37#include "elf/dwarf2.h"
38#include "dwarf2expr.h"
39#include "dwarf2loc.h"
40
41#include "gdb_string.h"
42
43#ifndef DWARF2_REG_TO_REGNUM
44#define DWARF2_REG_TO_REGNUM(REG) (REG)
45#endif
46
0d53c4c4
DJ
47/* A helper function for dealing with location lists. Given a
48 symbol baton (BATON) and a pc value (PC), find the appropriate
49 location expression, set *LOCEXPR_LENGTH, and return a pointer
50 to the beginning of the expression. Returns NULL on failure.
51
52 For now, only return the first matching location expression; there
53 can be more than one in the list. */
54
852483bc 55static gdb_byte *
0d53c4c4 56find_location_expression (struct dwarf2_loclist_baton *baton,
b6b08ebf 57 size_t *locexpr_length, CORE_ADDR pc)
0d53c4c4 58{
0d53c4c4 59 CORE_ADDR low, high;
852483bc
MK
60 gdb_byte *loc_ptr, *buf_end;
61 int length;
62 unsigned int addr_size = TARGET_ADDR_BIT / TARGET_CHAR_BIT;
0d53c4c4 63 CORE_ADDR base_mask = ~(~(CORE_ADDR)1 << (addr_size * 8 - 1));
8edfa926
BM
64 /* Adjust base_address for relocatable objects. */
65 CORE_ADDR base_offset = ANOFFSET (baton->objfile->section_offsets,
66 SECT_OFF_TEXT (baton->objfile));
67 CORE_ADDR base_address = baton->base_address + base_offset;
0d53c4c4
DJ
68
69 loc_ptr = baton->data;
70 buf_end = baton->data + baton->size;
71
72 while (1)
73 {
74 low = dwarf2_read_address (loc_ptr, buf_end, &length);
75 loc_ptr += length;
76 high = dwarf2_read_address (loc_ptr, buf_end, &length);
77 loc_ptr += length;
78
79 /* An end-of-list entry. */
80 if (low == 0 && high == 0)
81 return NULL;
82
83 /* A base-address-selection entry. */
84 if ((low & base_mask) == base_mask)
85 {
86 base_address = high;
87 continue;
88 }
89
90 /* Otherwise, a location expression entry. */
91 low += base_address;
92 high += base_address;
93
94 length = extract_unsigned_integer (loc_ptr, 2);
95 loc_ptr += 2;
96
97 if (pc >= low && pc < high)
98 {
99 *locexpr_length = length;
100 return loc_ptr;
101 }
102
103 loc_ptr += length;
104 }
105}
106
4c2df51b
DJ
107/* This is the baton used when performing dwarf2 expression
108 evaluation. */
109struct dwarf_expr_baton
110{
111 struct frame_info *frame;
112 struct objfile *objfile;
113};
114
115/* Helper functions for dwarf2_evaluate_loc_desc. */
116
117/* Using the frame specified in BATON, read register REGNUM. The lval
118 type will be returned in LVALP, and for lval_memory the register
119 save address will be returned in ADDRP. */
120static CORE_ADDR
61fbb938 121dwarf_expr_read_reg (void *baton, int dwarf_regnum)
4c2df51b 122{
4c2df51b 123 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
61fbb938
DJ
124 CORE_ADDR result, save_addr;
125 enum lval_type lval_type;
852483bc 126 gdb_byte *buf;
e4adbba9
DJ
127 int optimized, regnum, realnum, regsize;
128
129 regnum = DWARF2_REG_TO_REGNUM (dwarf_regnum);
130 regsize = register_size (current_gdbarch, regnum);
852483bc 131 buf = alloca (regsize);
4c2df51b 132
61fbb938
DJ
133 frame_register (debaton->frame, regnum, &optimized, &lval_type, &save_addr,
134 &realnum, buf);
af1342ab
AC
135 /* NOTE: cagney/2003-05-22: This extract is assuming that a DWARF 2
136 address is always unsigned. That may or may not be true. */
137 result = extract_unsigned_integer (buf, regsize);
4c2df51b
DJ
138
139 return result;
140}
141
142/* Read memory at ADDR (length LEN) into BUF. */
143
144static void
852483bc 145dwarf_expr_read_mem (void *baton, gdb_byte *buf, CORE_ADDR addr, size_t len)
4c2df51b
DJ
146{
147 read_memory (addr, buf, len);
148}
149
150/* Using the frame specified in BATON, find the location expression
151 describing the frame base. Return a pointer to it in START and
152 its length in LENGTH. */
153static void
852483bc 154dwarf_expr_frame_base (void *baton, gdb_byte **start, size_t * length)
4c2df51b 155{
da62e633
AC
156 /* FIXME: cagney/2003-03-26: This code should be using
157 get_frame_base_address(), and then implement a dwarf2 specific
158 this_base method. */
4c2df51b 159 struct symbol *framefunc;
4c2df51b 160 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
0d53c4c4 161
4c2df51b 162 framefunc = get_frame_function (debaton->frame);
0d53c4c4 163
a67af2b9 164 if (SYMBOL_OPS (framefunc) == &dwarf2_loclist_funcs)
0d53c4c4
DJ
165 {
166 struct dwarf2_loclist_baton *symbaton;
22c6caba
JW
167 struct frame_info *frame = debaton->frame;
168
0d53c4c4
DJ
169 symbaton = SYMBOL_LOCATION_BATON (framefunc);
170 *start = find_location_expression (symbaton, length,
22c6caba 171 get_frame_address_in_block (frame));
0d53c4c4
DJ
172 }
173 else
174 {
175 struct dwarf2_locexpr_baton *symbaton;
176 symbaton = SYMBOL_LOCATION_BATON (framefunc);
177 *length = symbaton->size;
178 *start = symbaton->data;
179 }
180
181 if (*start == NULL)
8a3fe4f8 182 error (_("Could not find the frame base for \"%s\"."),
0d53c4c4 183 SYMBOL_NATURAL_NAME (framefunc));
4c2df51b
DJ
184}
185
186/* Using the objfile specified in BATON, find the address for the
187 current thread's thread-local storage with offset OFFSET. */
188static CORE_ADDR
189dwarf_expr_tls_address (void *baton, CORE_ADDR offset)
190{
191 struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
4dd04433 192 volatile CORE_ADDR addr = 0;
4c2df51b 193
b2756930
KB
194 if (target_get_thread_local_address_p ()
195 && gdbarch_fetch_tls_load_module_address_p (current_gdbarch))
93ad78a7
KB
196 {
197 ptid_t ptid = inferior_ptid;
198 struct objfile *objfile = debaton->objfile;
71fff37b 199 volatile struct gdb_exception ex;
93ad78a7
KB
200
201 TRY_CATCH (ex, RETURN_MASK_ALL)
202 {
b2756930
KB
203 CORE_ADDR lm_addr;
204
205 /* Fetch the load module address for this objfile. */
206 lm_addr = gdbarch_fetch_tls_load_module_address (current_gdbarch,
207 objfile);
208 /* If it's 0, throw the appropriate exception. */
209 if (lm_addr == 0)
109c3e39
AC
210 throw_error (TLS_LOAD_MODULE_NOT_FOUND_ERROR,
211 _("TLS load module not found"));
b2756930
KB
212
213 addr = target_get_thread_local_address (ptid, lm_addr, offset);
93ad78a7
KB
214 }
215 /* If an error occurred, print TLS related messages here. Otherwise,
216 throw the error to some higher catcher. */
217 if (ex.reason < 0)
218 {
219 int objfile_is_library = (objfile->flags & OBJF_SHARED);
220
221 switch (ex.error)
222 {
223 case TLS_NO_LIBRARY_SUPPORT_ERROR:
224 error (_("Cannot find thread-local variables in this thread library."));
225 break;
226 case TLS_LOAD_MODULE_NOT_FOUND_ERROR:
227 if (objfile_is_library)
228 error (_("Cannot find shared library `%s' in dynamic"
229 " linker's load module list"), objfile->name);
230 else
231 error (_("Cannot find executable file `%s' in dynamic"
232 " linker's load module list"), objfile->name);
233 break;
234 case TLS_NOT_ALLOCATED_YET_ERROR:
235 if (objfile_is_library)
236 error (_("The inferior has not yet allocated storage for"
237 " thread-local variables in\n"
238 "the shared library `%s'\n"
239 "for %s"),
240 objfile->name, target_pid_to_str (ptid));
241 else
242 error (_("The inferior has not yet allocated storage for"
243 " thread-local variables in\n"
244 "the executable `%s'\n"
245 "for %s"),
246 objfile->name, target_pid_to_str (ptid));
247 break;
248 case TLS_GENERIC_ERROR:
249 if (objfile_is_library)
250 error (_("Cannot find thread-local storage for %s, "
251 "shared library %s:\n%s"),
252 target_pid_to_str (ptid),
253 objfile->name, ex.message);
254 else
255 error (_("Cannot find thread-local storage for %s, "
256 "executable file %s:\n%s"),
257 target_pid_to_str (ptid),
258 objfile->name, ex.message);
259 break;
260 default:
261 throw_exception (ex);
262 break;
263 }
264 }
265 }
c3228f12
EZ
266 /* It wouldn't be wrong here to try a gdbarch method, too; finding
267 TLS is an ABI-specific thing. But we don't do that yet. */
4c2df51b 268 else
8a3fe4f8 269 error (_("Cannot find thread-local variables on this target"));
4c2df51b
DJ
270
271 return addr;
272}
273
274/* Evaluate a location description, starting at DATA and with length
275 SIZE, to find the current location of variable VAR in the context
276 of FRAME. */
277static struct value *
278dwarf2_evaluate_loc_desc (struct symbol *var, struct frame_info *frame,
852483bc 279 gdb_byte *data, unsigned short size,
4c2df51b
DJ
280 struct objfile *objfile)
281{
87808bd6 282 struct gdbarch *arch = get_frame_arch (frame);
4c2df51b
DJ
283 struct value *retval;
284 struct dwarf_expr_baton baton;
285 struct dwarf_expr_context *ctx;
286
0d53c4c4
DJ
287 if (size == 0)
288 {
289 retval = allocate_value (SYMBOL_TYPE (var));
290 VALUE_LVAL (retval) = not_lval;
feb13ab0 291 set_value_optimized_out (retval, 1);
0d53c4c4
DJ
292 }
293
4c2df51b
DJ
294 baton.frame = frame;
295 baton.objfile = objfile;
296
297 ctx = new_dwarf_expr_context ();
298 ctx->baton = &baton;
299 ctx->read_reg = dwarf_expr_read_reg;
300 ctx->read_mem = dwarf_expr_read_mem;
301 ctx->get_frame_base = dwarf_expr_frame_base;
302 ctx->get_tls_address = dwarf_expr_tls_address;
303
304 dwarf_expr_eval (ctx, data, size);
87808bd6
JB
305 if (ctx->num_pieces > 0)
306 {
23572eca
EZ
307 int i;
308 long offset = 0;
309 bfd_byte *contents;
310
311 retval = allocate_value (SYMBOL_TYPE (var));
312 contents = value_contents_raw (retval);
313 for (i = 0; i < ctx->num_pieces; i++)
314 {
315 struct dwarf_expr_piece *p = &ctx->pieces[i];
316 if (p->in_reg)
317 {
318 bfd_byte regval[MAX_REGISTER_SIZE];
319 int gdb_regnum = DWARF2_REG_TO_REGNUM (p->value);
320 get_frame_register (frame, gdb_regnum, regval);
321 memcpy (contents + offset, regval, p->size);
322 }
323 else /* In memory? */
324 {
325 read_memory (p->value, contents + offset, p->size);
326 }
327 offset += p->size;
328 }
87808bd6
JB
329 }
330 else if (ctx->in_reg)
051caad9 331 {
5ca2e327
JB
332 CORE_ADDR dwarf_regnum = dwarf_expr_fetch (ctx, 0);
333 int gdb_regnum = DWARF2_REG_TO_REGNUM (dwarf_regnum);
334 retval = value_from_register (SYMBOL_TYPE (var), gdb_regnum, frame);
051caad9 335 }
4c2df51b
DJ
336 else
337 {
5ca2e327
JB
338 CORE_ADDR address = dwarf_expr_fetch (ctx, 0);
339
61fbb938 340 retval = allocate_value (SYMBOL_TYPE (var));
4c2df51b 341 VALUE_LVAL (retval) = lval_memory;
dfa52d88 342 set_value_lazy (retval, 1);
5ca2e327 343 VALUE_ADDRESS (retval) = address;
4c2df51b
DJ
344 }
345
346 free_dwarf_expr_context (ctx);
347
348 return retval;
349}
350
351
352
353
354\f
355/* Helper functions and baton for dwarf2_loc_desc_needs_frame. */
356
357struct needs_frame_baton
358{
359 int needs_frame;
360};
361
362/* Reads from registers do require a frame. */
363static CORE_ADDR
61fbb938 364needs_frame_read_reg (void *baton, int regnum)
4c2df51b
DJ
365{
366 struct needs_frame_baton *nf_baton = baton;
367 nf_baton->needs_frame = 1;
368 return 1;
369}
370
371/* Reads from memory do not require a frame. */
372static void
852483bc 373needs_frame_read_mem (void *baton, gdb_byte *buf, CORE_ADDR addr, size_t len)
4c2df51b
DJ
374{
375 memset (buf, 0, len);
376}
377
378/* Frame-relative accesses do require a frame. */
379static void
852483bc 380needs_frame_frame_base (void *baton, gdb_byte **start, size_t * length)
4c2df51b 381{
852483bc 382 static gdb_byte lit0 = DW_OP_lit0;
4c2df51b
DJ
383 struct needs_frame_baton *nf_baton = baton;
384
385 *start = &lit0;
386 *length = 1;
387
388 nf_baton->needs_frame = 1;
389}
390
391/* Thread-local accesses do require a frame. */
392static CORE_ADDR
393needs_frame_tls_address (void *baton, CORE_ADDR offset)
394{
395 struct needs_frame_baton *nf_baton = baton;
396 nf_baton->needs_frame = 1;
397 return 1;
398}
399
400/* Return non-zero iff the location expression at DATA (length SIZE)
401 requires a frame to evaluate. */
402
403static int
852483bc 404dwarf2_loc_desc_needs_frame (gdb_byte *data, unsigned short size)
4c2df51b
DJ
405{
406 struct needs_frame_baton baton;
407 struct dwarf_expr_context *ctx;
f630a401 408 int in_reg;
4c2df51b
DJ
409
410 baton.needs_frame = 0;
411
412 ctx = new_dwarf_expr_context ();
413 ctx->baton = &baton;
414 ctx->read_reg = needs_frame_read_reg;
415 ctx->read_mem = needs_frame_read_mem;
416 ctx->get_frame_base = needs_frame_frame_base;
417 ctx->get_tls_address = needs_frame_tls_address;
418
419 dwarf_expr_eval (ctx, data, size);
420
f630a401
DJ
421 in_reg = ctx->in_reg;
422
87808bd6
JB
423 if (ctx->num_pieces > 0)
424 {
425 int i;
426
427 /* If the location has several pieces, and any of them are in
428 registers, then we will need a frame to fetch them from. */
429 for (i = 0; i < ctx->num_pieces; i++)
430 if (ctx->pieces[i].in_reg)
431 in_reg = 1;
432 }
433
4c2df51b
DJ
434 free_dwarf_expr_context (ctx);
435
f630a401 436 return baton.needs_frame || in_reg;
4c2df51b
DJ
437}
438
0d53c4c4 439static void
852483bc
MK
440dwarf2_tracepoint_var_ref (struct symbol *symbol, struct agent_expr *ax,
441 struct axs_value *value, gdb_byte *data,
0d53c4c4
DJ
442 int size)
443{
444 if (size == 0)
8a3fe4f8 445 error (_("Symbol \"%s\" has been optimized out."),
0d53c4c4
DJ
446 SYMBOL_PRINT_NAME (symbol));
447
448 if (size == 1
449 && data[0] >= DW_OP_reg0
450 && data[0] <= DW_OP_reg31)
451 {
452 value->kind = axs_lvalue_register;
453 value->u.reg = data[0] - DW_OP_reg0;
454 }
455 else if (data[0] == DW_OP_regx)
456 {
457 ULONGEST reg;
458 read_uleb128 (data + 1, data + size, &reg);
459 value->kind = axs_lvalue_register;
460 value->u.reg = reg;
461 }
462 else if (data[0] == DW_OP_fbreg)
463 {
464 /* And this is worse than just minimal; we should honor the frame base
465 as above. */
466 int frame_reg;
467 LONGEST frame_offset;
852483bc 468 gdb_byte *buf_end;
0d53c4c4
DJ
469
470 buf_end = read_sleb128 (data + 1, data + size, &frame_offset);
471 if (buf_end != data + size)
8a3fe4f8 472 error (_("Unexpected opcode after DW_OP_fbreg for symbol \"%s\"."),
0d53c4c4 473 SYMBOL_PRINT_NAME (symbol));
4c2df51b 474
0d53c4c4
DJ
475 TARGET_VIRTUAL_FRAME_POINTER (ax->scope, &frame_reg, &frame_offset);
476 ax_reg (ax, frame_reg);
477 ax_const_l (ax, frame_offset);
478 ax_simple (ax, aop_add);
4c2df51b 479
9c238357
RC
480 value->kind = axs_lvalue_memory;
481 }
482 else if (data[0] >= DW_OP_breg0
483 && data[0] <= DW_OP_breg31)
484 {
485 unsigned int reg;
486 LONGEST offset;
487 gdb_byte *buf_end;
488
489 reg = data[0] - DW_OP_breg0;
490 buf_end = read_sleb128 (data + 1, data + size, &offset);
491 if (buf_end != data + size)
492 error (_("Unexpected opcode after DW_OP_breg%u for symbol \"%s\"."),
493 reg, SYMBOL_PRINT_NAME (symbol));
494
495 ax_reg (ax, reg);
496 ax_const_l (ax, offset);
0d53c4c4 497 ax_simple (ax, aop_add);
9c238357 498
0d53c4c4
DJ
499 value->kind = axs_lvalue_memory;
500 }
501 else
9c238357
RC
502 error (_("Unsupported DWARF opcode 0x%x in the location of \"%s\"."),
503 data[0], SYMBOL_PRINT_NAME (symbol));
0d53c4c4 504}
4c2df51b
DJ
505\f
506/* Return the value of SYMBOL in FRAME using the DWARF-2 expression
507 evaluator to calculate the location. */
508static struct value *
509locexpr_read_variable (struct symbol *symbol, struct frame_info *frame)
510{
511 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
512 struct value *val;
513 val = dwarf2_evaluate_loc_desc (symbol, frame, dlbaton->data, dlbaton->size,
514 dlbaton->objfile);
515
516 return val;
517}
518
519/* Return non-zero iff we need a frame to evaluate SYMBOL. */
520static int
521locexpr_read_needs_frame (struct symbol *symbol)
522{
523 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
524 return dwarf2_loc_desc_needs_frame (dlbaton->data, dlbaton->size);
525}
526
527/* Print a natural-language description of SYMBOL to STREAM. */
528static int
529locexpr_describe_location (struct symbol *symbol, struct ui_file *stream)
530{
531 /* FIXME: be more extensive. */
532 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
533
534 if (dlbaton->size == 1
535 && dlbaton->data[0] >= DW_OP_reg0
536 && dlbaton->data[0] <= DW_OP_reg31)
537 {
538 int regno = DWARF2_REG_TO_REGNUM (dlbaton->data[0] - DW_OP_reg0);
539 fprintf_filtered (stream,
540 "a variable in register %s", REGISTER_NAME (regno));
541 return 1;
542 }
543
c3228f12
EZ
544 /* The location expression for a TLS variable looks like this (on a
545 64-bit LE machine):
546
547 DW_AT_location : 10 byte block: 3 4 0 0 0 0 0 0 0 e0
548 (DW_OP_addr: 4; DW_OP_GNU_push_tls_address)
549
550 0x3 is the encoding for DW_OP_addr, which has an operand as long
551 as the size of an address on the target machine (here is 8
552 bytes). 0xe0 is the encoding for DW_OP_GNU_push_tls_address.
553 The operand represents the offset at which the variable is within
554 the thread local storage. */
555
556 if (dlbaton->size > 1
557 && dlbaton->data[dlbaton->size - 1] == DW_OP_GNU_push_tls_address)
558 if (dlbaton->data[0] == DW_OP_addr)
559 {
560 int bytes_read;
561 CORE_ADDR offset = dwarf2_read_address (&dlbaton->data[1],
c193f044 562 &dlbaton->data[dlbaton->size - 1],
c3228f12
EZ
563 &bytes_read);
564 fprintf_filtered (stream,
32ffcbed 565 "a thread-local variable at offset %s in the "
c3228f12
EZ
566 "thread-local storage for `%s'",
567 paddr_nz (offset), dlbaton->objfile->name);
568 return 1;
569 }
570
571
4c2df51b
DJ
572 fprintf_filtered (stream,
573 "a variable with complex or multiple locations (DWARF2)");
574 return 1;
575}
576
a55cc764
DJ
577
578/* Describe the location of SYMBOL as an agent value in VALUE, generating
579 any necessary bytecode in AX.
580
581 NOTE drow/2003-02-26: This function is extremely minimal, because
582 doing it correctly is extremely complicated and there is no
583 publicly available stub with tracepoint support for me to test
584 against. When there is one this function should be revisited. */
585
0d53c4c4 586static void
a55cc764
DJ
587locexpr_tracepoint_var_ref (struct symbol * symbol, struct agent_expr * ax,
588 struct axs_value * value)
589{
590 struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
591
0d53c4c4 592 dwarf2_tracepoint_var_ref (symbol, ax, value, dlbaton->data, dlbaton->size);
a55cc764
DJ
593}
594
4c2df51b
DJ
595/* The set of location functions used with the DWARF-2 expression
596 evaluator. */
a67af2b9 597const struct symbol_ops dwarf2_locexpr_funcs = {
4c2df51b
DJ
598 locexpr_read_variable,
599 locexpr_read_needs_frame,
600 locexpr_describe_location,
a55cc764 601 locexpr_tracepoint_var_ref
4c2df51b 602};
0d53c4c4
DJ
603
604
605/* Wrapper functions for location lists. These generally find
606 the appropriate location expression and call something above. */
607
608/* Return the value of SYMBOL in FRAME using the DWARF-2 expression
609 evaluator to calculate the location. */
610static struct value *
611loclist_read_variable (struct symbol *symbol, struct frame_info *frame)
612{
613 struct dwarf2_loclist_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
614 struct value *val;
852483bc 615 gdb_byte *data;
b6b08ebf 616 size_t size;
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617
618 data = find_location_expression (dlbaton, &size,
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619 frame ? get_frame_address_in_block (frame)
620 : 0);
0d53c4c4 621 if (data == NULL)
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622 {
623 val = allocate_value (SYMBOL_TYPE (symbol));
624 VALUE_LVAL (val) = not_lval;
625 set_value_optimized_out (val, 1);
626 }
627 else
628 val = dwarf2_evaluate_loc_desc (symbol, frame, data, size,
629 dlbaton->objfile);
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630
631 return val;
632}
633
634/* Return non-zero iff we need a frame to evaluate SYMBOL. */
635static int
636loclist_read_needs_frame (struct symbol *symbol)
637{
638 /* If there's a location list, then assume we need to have a frame
639 to choose the appropriate location expression. With tracking of
640 global variables this is not necessarily true, but such tracking
641 is disabled in GCC at the moment until we figure out how to
642 represent it. */
643
644 return 1;
645}
646
647/* Print a natural-language description of SYMBOL to STREAM. */
648static int
649loclist_describe_location (struct symbol *symbol, struct ui_file *stream)
650{
651 /* FIXME: Could print the entire list of locations. */
652 fprintf_filtered (stream, "a variable with multiple locations");
653 return 1;
654}
655
656/* Describe the location of SYMBOL as an agent value in VALUE, generating
657 any necessary bytecode in AX. */
658static void
659loclist_tracepoint_var_ref (struct symbol * symbol, struct agent_expr * ax,
660 struct axs_value * value)
661{
662 struct dwarf2_loclist_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
852483bc 663 gdb_byte *data;
b6b08ebf 664 size_t size;
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665
666 data = find_location_expression (dlbaton, &size, ax->scope);
667 if (data == NULL)
8a3fe4f8 668 error (_("Variable \"%s\" is not available."), SYMBOL_NATURAL_NAME (symbol));
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669
670 dwarf2_tracepoint_var_ref (symbol, ax, value, data, size);
671}
672
673/* The set of location functions used with the DWARF-2 expression
674 evaluator and location lists. */
a67af2b9 675const struct symbol_ops dwarf2_loclist_funcs = {
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676 loclist_read_variable,
677 loclist_read_needs_frame,
678 loclist_describe_location,
679 loclist_tracepoint_var_ref
680};
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