Add support for context sensitive '.arch_extension' to the ARM assembler.
[deliverable/binutils-gdb.git] / gas / dwarf2dbg.c
CommitLineData
fac0d250 1/* dwarf2dbg.c - DWARF2 debug support
82704155 2 Copyright (C) 1999-2019 Free Software Foundation, Inc.
fac0d250
RH
3 Contributed by David Mosberger-Tang <davidm@hpl.hp.com>
4
5 This file is part of GAS, the GNU Assembler.
6
7 GAS is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
ec2655a6 9 the Free Software Foundation; either version 3, or (at your option)
fac0d250
RH
10 any later version.
11
12 GAS 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.
16
17 You should have received a copy of the GNU General Public License
18 along with GAS; see the file COPYING. If not, write to the Free
4b4da160
NC
19 Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
20 02110-1301, USA. */
fac0d250 21
89b66cde 22/* Logical line numbers can be controlled by the compiler via the
bd0eb99b 23 following directives:
fac0d250
RH
24
25 .file FILENO "file.c"
ecea7679 26 .loc FILENO LINENO [COLUMN] [basic_block] [prologue_end] \
92846e72
CC
27 [epilogue_begin] [is_stmt VALUE] [isa VALUE] \
28 [discriminator VALUE]
bd0eb99b 29*/
fac0d250 30
fac0d250 31#include "as.h"
bd0eb99b 32#include "safe-ctype.h"
92eb7b32 33
42dbf88c
NC
34#ifdef HAVE_LIMITS_H
35#include <limits.h>
92625c16 36#else
6717891c
NC
37#ifdef HAVE_SYS_PARAM_H
38#include <sys/param.h>
39#endif
6256f9dd 40#ifndef INT_MAX
ee515fb7 41#define INT_MAX (int) (((unsigned) (-1)) >> 1)
42dbf88c 42#endif
b8f080d6 43#endif
42dbf88c 44
70658493 45#include "dwarf2dbg.h"
a7ed1ca2 46#include <filenames.h>
70658493 47
56487c55
NC
48#ifdef HAVE_DOS_BASED_FILE_SYSTEM
49/* We need to decide which character to use as a directory separator.
50 Just because HAVE_DOS_BASED_FILE_SYSTEM is defined, it does not
51 necessarily mean that the backslash character is the one to use.
52 Some environments, eg Cygwin, can support both naming conventions.
53 So we use the heuristic that we only need to use the backslash if
54 the path is an absolute path starting with a DOS style drive
55 selector. eg C: or D: */
56# define INSERT_DIR_SEPARATOR(string, offset) \
57 do \
58 { \
59 if (offset > 1 \
7fd3924a
AM
60 && string[0] != 0 \
61 && string[1] == ':') \
56487c55
NC
62 string [offset] = '\\'; \
63 else \
64 string [offset] = '/'; \
65 } \
66 while (0)
67#else
68# define INSERT_DIR_SEPARATOR(string, offset) string[offset] = '/'
69#endif
70
14e777e0 71#ifndef DWARF2_FORMAT
413a266c 72# define DWARF2_FORMAT(SEC) dwarf2_format_32bit
14e777e0
KB
73#endif
74
9605f328 75#ifndef DWARF2_ADDR_SIZE
e4475e39 76# define DWARF2_ADDR_SIZE(bfd) (bfd_arch_bits_per_address (bfd) / 8)
9605f328
AO
77#endif
78
01e1a5bc
NC
79#ifndef DWARF2_FILE_NAME
80#define DWARF2_FILE_NAME(FILENAME, DIRNAME) FILENAME
81#endif
82
83#ifndef DWARF2_FILE_TIME_NAME
84#define DWARF2_FILE_TIME_NAME(FILENAME,DIRNAME) 0
85#endif
86
87#ifndef DWARF2_FILE_SIZE_NAME
88#define DWARF2_FILE_SIZE_NAME(FILENAME,DIRNAME) 0
89#endif
90
fc0eebac
TG
91#ifndef DWARF2_VERSION
92#define DWARF2_VERSION 2
93#endif
94
88ebb0a1
MW
95/* The .debug_aranges version has been 2 in DWARF version 2, 3 and 4. */
96#ifndef DWARF2_ARANGES_VERSION
97#define DWARF2_ARANGES_VERSION 2
98#endif
99
8acbe8ff 100/* This implementation outputs version 3 .debug_line information. */
88ebb0a1 101#ifndef DWARF2_LINE_VERSION
8acbe8ff 102#define DWARF2_LINE_VERSION 3
88ebb0a1
MW
103#endif
104
fac0d250
RH
105#include "subsegs.h"
106
fa8f86ff 107#include "dwarf2.h"
fac0d250 108
fac0d250
RH
109/* Since we can't generate the prolog until the body is complete, we
110 use three different subsegments for .debug_line: one holding the
111 prolog, one for the directory and filename info, and one for the
112 body ("statement program"). */
113#define DL_PROLOG 0
114#define DL_FILES 1
115#define DL_BODY 2
116
1737851b
BW
117/* If linker relaxation might change offsets in the code, the DWARF special
118 opcodes and variable-length operands cannot be used. If this macro is
119 nonzero, use the DW_LNS_fixed_advance_pc opcode instead. */
120#ifndef DWARF2_USE_FIXED_ADVANCE_PC
453dc3f0 121# define DWARF2_USE_FIXED_ADVANCE_PC linkrelax
1737851b
BW
122#endif
123
33eaf5de 124/* First special line opcode - leave room for the standard opcodes.
fac0d250
RH
125 Note: If you want to change this, you'll have to update the
126 "standard_opcode_lengths" table that is emitted below in
bd0eb99b
RH
127 out_debug_line(). */
128#define DWARF2_LINE_OPCODE_BASE 13
fac0d250
RH
129
130#ifndef DWARF2_LINE_BASE
131 /* Minimum line offset in a special line info. opcode. This value
132 was chosen to give a reasonable range of values. */
133# define DWARF2_LINE_BASE -5
134#endif
135
136/* Range of line offsets in a special line info. opcode. */
137#ifndef DWARF2_LINE_RANGE
138# define DWARF2_LINE_RANGE 14
139#endif
140
141#ifndef DWARF2_LINE_MIN_INSN_LENGTH
142 /* Define the architecture-dependent minimum instruction length (in
143 bytes). This value should be rather too small than too big. */
4dc7ead9 144# define DWARF2_LINE_MIN_INSN_LENGTH 1
fac0d250
RH
145#endif
146
bd0eb99b 147/* Flag that indicates the initial value of the is_stmt_start flag. */
fac0d250
RH
148#define DWARF2_LINE_DEFAULT_IS_STMT 1
149
cb30237e 150/* Given a special op, return the line skip amount. */
fac0d250
RH
151#define SPECIAL_LINE(op) \
152 (((op) - DWARF2_LINE_OPCODE_BASE)%DWARF2_LINE_RANGE + DWARF2_LINE_BASE)
153
154/* Given a special op, return the address skip amount (in units of
155 DWARF2_LINE_MIN_INSN_LENGTH. */
156#define SPECIAL_ADDR(op) (((op) - DWARF2_LINE_OPCODE_BASE)/DWARF2_LINE_RANGE)
157
cb30237e 158/* The maximum address skip amount that can be encoded with a special op. */
fac0d250
RH
159#define MAX_SPECIAL_ADDR_DELTA SPECIAL_ADDR(255)
160
62ebcb5c
AM
161#ifndef TC_PARSE_CONS_RETURN_NONE
162#define TC_PARSE_CONS_RETURN_NONE BFD_RELOC_NONE
163#endif
164
ba8826a8
AO
165struct line_entry
166{
220e750f 167 struct line_entry *next;
07a53e5c 168 symbolS *label;
220e750f 169 struct dwarf2_line_info loc;
e6c774b4 170};
fac0d250 171
ba8826a8
AO
172/* Don't change the offset of next in line_entry. set_or_check_view
173 calls in dwarf2_gen_line_info_1 depend on it. */
174static char unused[offsetof(struct line_entry, next) ? -1 : 1]
175ATTRIBUTE_UNUSED;
176
177struct line_subseg
178{
220e750f
RH
179 struct line_subseg *next;
180 subsegT subseg;
181 struct line_entry *head;
182 struct line_entry **ptail;
e410add4 183 struct line_entry **pmove_tail;
220e750f 184};
353e2c69 185
ba8826a8
AO
186struct line_seg
187{
220e750f
RH
188 struct line_seg *next;
189 segT seg;
190 struct line_subseg *head;
191 symbolS *text_start;
192 symbolS *text_end;
193};
194
195/* Collects data for all line table entries during assembly. */
196static struct line_seg *all_segs;
1e9cc1c2 197static struct line_seg **last_seg_ptr;
220e750f 198
ba8826a8
AO
199struct file_entry
200{
a7ed1ca2 201 const char *filename;
220e750f
RH
202 unsigned int dir;
203};
204
205/* Table of files used by .debug_line. */
206static struct file_entry *files;
207static unsigned int files_in_use;
208static unsigned int files_allocated;
209
a7ed1ca2
NC
210/* Table of directories used by .debug_line. */
211static char **dirs;
212static unsigned int dirs_in_use;
213static unsigned int dirs_allocated;
214
b34976b6 215/* TRUE when we've seen a .loc directive recently. Used to avoid
220e750f 216 doing work when there's nothing to do. */
1eee4adc 217bfd_boolean dwarf2_loc_directive_seen;
220e750f 218
07a53e5c
RH
219/* TRUE when we're supposed to set the basic block mark whenever a
220 label is seen. */
221bfd_boolean dwarf2_loc_mark_labels;
222
220e750f 223/* Current location as indicated by the most recent .loc directive. */
ba8826a8
AO
224static struct dwarf2_line_info current =
225{
bd0eb99b 226 1, 1, 0, 0,
92846e72 227 DWARF2_LINE_DEFAULT_IS_STMT ? DWARF2_FLAG_IS_STMT : 0,
ba8826a8 228 0, NULL
bd0eb99b 229};
220e750f 230
ba8826a8
AO
231/* This symbol is used to recognize view number forced resets in loc
232 lists. */
233static symbolS *force_reset_view;
234
235/* This symbol evaluates to an expression that, if nonzero, indicates
236 some view assert check failed. */
237static symbolS *view_assert_failed;
238
220e750f
RH
239/* The size of an address on the target. */
240static unsigned int sizeof_address;
241\f
a2e22468 242static unsigned int get_filenum (const char *, unsigned int);
413a266c 243
c5c0a210 244#ifndef TC_DWARF2_EMIT_OFFSET
802f5d9e 245#define TC_DWARF2_EMIT_OFFSET generic_dwarf2_emit_offset
c5c0a210 246
6174d9c8
RH
247/* Create an offset to .dwarf2_*. */
248
249static void
a2e22468 250generic_dwarf2_emit_offset (symbolS *symbol, unsigned int size)
6174d9c8 251{
91d6fa6a 252 expressionS exp;
6174d9c8 253
031e3350 254 memset (&exp, 0, sizeof exp);
91d6fa6a
NC
255 exp.X_op = O_symbol;
256 exp.X_add_symbol = symbol;
257 exp.X_add_number = 0;
258 emit_expr (&exp, size);
6174d9c8 259}
c5c0a210 260#endif
6174d9c8 261
e410add4 262/* Find or create (if CREATE_P) an entry for SEG+SUBSEG in ALL_SEGS. */
220e750f
RH
263
264static struct line_subseg *
e410add4 265get_line_subseg (segT seg, subsegT subseg, bfd_boolean create_p)
220e750f 266{
5f3fd8b4 267 struct line_seg *s = seg_info (seg)->dwarf2_line_seg;
91d6fa6a 268 struct line_subseg **pss, *lss;
fac0d250 269
1e9cc1c2
NC
270 if (s == NULL)
271 {
e410add4
RS
272 if (!create_p)
273 return NULL;
274
325801bd 275 s = XNEW (struct line_seg);
1e9cc1c2
NC
276 s->next = NULL;
277 s->seg = seg;
278 s->head = NULL;
279 *last_seg_ptr = s;
280 last_seg_ptr = &s->next;
5f3fd8b4 281 seg_info (seg)->dwarf2_line_seg = s;
1e9cc1c2
NC
282 }
283 gas_assert (seg == s->seg);
220e750f 284
91d6fa6a 285 for (pss = &s->head; (lss = *pss) != NULL ; pss = &lss->next)
fac0d250 286 {
91d6fa6a 287 if (lss->subseg == subseg)
ee515fb7 288 goto found_subseg;
91d6fa6a 289 if (lss->subseg > subseg)
220e750f 290 break;
fac0d250 291 }
220e750f 292
325801bd 293 lss = XNEW (struct line_subseg);
91d6fa6a
NC
294 lss->next = *pss;
295 lss->subseg = subseg;
296 lss->head = NULL;
297 lss->ptail = &lss->head;
e410add4 298 lss->pmove_tail = &lss->head;
91d6fa6a 299 *pss = lss;
220e750f
RH
300
301 found_subseg:
91d6fa6a 302 return lss;
fac0d250
RH
303}
304
ba8826a8
AO
305/* (Un)reverse the line_entry list starting from H. */
306
307static struct line_entry *
308reverse_line_entry_list (struct line_entry *h)
309{
310 struct line_entry *p = NULL, *e, *n;
311
312 for (e = h; e; e = n)
313 {
314 n = e->next;
315 e->next = p;
316 p = e;
317 }
318 return p;
319}
320
321/* Compute the view for E based on the previous entry P. If we
322 introduce an (undefined) view symbol for P, and H is given (P must
323 be the tail in this case), introduce view symbols for earlier list
324 entries as well, until one of them is constant. */
325
326static void
327set_or_check_view (struct line_entry *e, struct line_entry *p,
328 struct line_entry *h)
329{
330 expressionS viewx;
331
332 memset (&viewx, 0, sizeof (viewx));
333 viewx.X_unsigned = 1;
334
335 /* First, compute !(E->label > P->label), to tell whether or not
336 we're to reset the view number. If we can't resolve it to a
337 constant, keep it symbolic. */
338 if (!p || (e->loc.view == force_reset_view && force_reset_view))
339 {
340 viewx.X_op = O_constant;
341 viewx.X_add_number = 0;
342 viewx.X_add_symbol = NULL;
343 viewx.X_op_symbol = NULL;
344 }
345 else
346 {
347 viewx.X_op = O_gt;
348 viewx.X_add_number = 0;
349 viewx.X_add_symbol = e->label;
350 viewx.X_op_symbol = p->label;
351 resolve_expression (&viewx);
352 if (viewx.X_op == O_constant)
353 viewx.X_add_number = !viewx.X_add_number;
354 else
355 {
356 viewx.X_add_symbol = make_expr_symbol (&viewx);
357 viewx.X_add_number = 0;
358 viewx.X_op_symbol = NULL;
359 viewx.X_op = O_logical_not;
360 }
361 }
362
363 if (S_IS_DEFINED (e->loc.view) && symbol_constant_p (e->loc.view))
364 {
365 expressionS *value = symbol_get_value_expression (e->loc.view);
366 /* We can't compare the view numbers at this point, because in
367 VIEWX we've only determined whether we're to reset it so
368 far. */
369 if (viewx.X_op == O_constant)
370 {
371 if (!value->X_add_number != !viewx.X_add_number)
372 as_bad (_("view number mismatch"));
373 }
374 /* Record the expression to check it later. It is the result of
375 a logical not, thus 0 or 1. We just add up all such deferred
376 expressions, and resolve it at the end. */
377 else if (!value->X_add_number)
378 {
379 symbolS *deferred = make_expr_symbol (&viewx);
380 if (view_assert_failed)
381 {
382 expressionS chk;
031e3350 383
ba8826a8
AO
384 memset (&chk, 0, sizeof (chk));
385 chk.X_unsigned = 1;
386 chk.X_op = O_add;
387 chk.X_add_number = 0;
388 chk.X_add_symbol = view_assert_failed;
389 chk.X_op_symbol = deferred;
390 deferred = make_expr_symbol (&chk);
391 }
392 view_assert_failed = deferred;
393 }
394 }
395
396 if (viewx.X_op != O_constant || viewx.X_add_number)
397 {
398 expressionS incv;
399
400 if (!p->loc.view)
401 {
402 p->loc.view = symbol_temp_make ();
403 gas_assert (!S_IS_DEFINED (p->loc.view));
404 }
405
406 memset (&incv, 0, sizeof (incv));
407 incv.X_unsigned = 1;
408 incv.X_op = O_symbol;
409 incv.X_add_symbol = p->loc.view;
410 incv.X_add_number = 1;
411
412 if (viewx.X_op == O_constant)
413 {
414 gas_assert (viewx.X_add_number == 1);
415 viewx = incv;
416 }
417 else
418 {
419 viewx.X_add_symbol = make_expr_symbol (&viewx);
420 viewx.X_add_number = 0;
421 viewx.X_op_symbol = make_expr_symbol (&incv);
422 viewx.X_op = O_multiply;
423 }
424 }
425
426 if (!S_IS_DEFINED (e->loc.view))
427 {
428 symbol_set_value_expression (e->loc.view, &viewx);
38cf168b 429 S_SET_SEGMENT (e->loc.view, expr_section);
ba8826a8
AO
430 symbol_set_frag (e->loc.view, &zero_address_frag);
431 }
432
433 /* Define and attempt to simplify any earlier views needed to
434 compute E's. */
435 if (h && p && p->loc.view && !S_IS_DEFINED (p->loc.view))
436 {
437 struct line_entry *h2;
438 /* Reverse the list to avoid quadratic behavior going backwards
439 in a single-linked list. */
440 struct line_entry *r = reverse_line_entry_list (h);
441
442 gas_assert (r == p);
443 /* Set or check views until we find a defined or absent view. */
444 do
62e6b7b3
AO
445 {
446 /* Do not define the head of a (sub?)segment view while
447 handling others. It would be defined too early, without
448 regard to the last view of other subsegments.
449 set_or_check_view will be called for every head segment
450 that needs it. */
451 if (r == h)
452 break;
453 set_or_check_view (r, r->next, NULL);
454 }
ba8826a8
AO
455 while (r->next && r->next->loc.view && !S_IS_DEFINED (r->next->loc.view)
456 && (r = r->next));
457
458 /* Unreverse the list, so that we can go forward again. */
459 h2 = reverse_line_entry_list (p);
460 gas_assert (h2 == h);
461
462 /* Starting from the last view we just defined, attempt to
463 simplify the view expressions, until we do so to P. */
464 do
465 {
62e6b7b3
AO
466 /* The head view of a subsegment may remain undefined while
467 handling other elements, before it is linked to the last
468 view of the previous subsegment. */
469 if (r == h)
470 continue;
ba8826a8
AO
471 gas_assert (S_IS_DEFINED (r->loc.view));
472 resolve_expression (symbol_get_value_expression (r->loc.view));
473 }
474 while (r != p && (r = r->next));
475
476 /* Now that we've defined and computed all earlier views that might
477 be needed to compute E's, attempt to simplify it. */
478 resolve_expression (symbol_get_value_expression (e->loc.view));
479 }
480}
481
6a50d470 482/* Record an entry for LOC occurring at LABEL. */
07a53e5c
RH
483
484static void
6a50d470 485dwarf2_gen_line_info_1 (symbolS *label, struct dwarf2_line_info *loc)
07a53e5c 486{
6a50d470 487 struct line_subseg *lss;
07a53e5c
RH
488 struct line_entry *e;
489
325801bd 490 e = XNEW (struct line_entry);
07a53e5c 491 e->next = NULL;
6a50d470 492 e->label = label;
07a53e5c
RH
493 e->loc = *loc;
494
e410add4 495 lss = get_line_subseg (now_seg, now_subseg, TRUE);
ba8826a8 496
62e6b7b3
AO
497 /* Subseg heads are chained to previous subsegs in
498 dwarf2_finish. */
499 if (loc->view && lss->head)
ba8826a8 500 set_or_check_view (e,
62e6b7b3 501 (struct line_entry *)lss->ptail,
ba8826a8
AO
502 lss->head);
503
6a50d470
RS
504 *lss->ptail = e;
505 lss->ptail = &e->next;
07a53e5c
RH
506}
507
436d9e46 508/* Record an entry for LOC occurring at OFS within the current fragment. */
353e2c69 509
220e750f 510void
a2e22468 511dwarf2_gen_line_info (addressT ofs, struct dwarf2_line_info *loc)
fac0d250 512{
1ea5c325
MS
513 static unsigned int line = -1;
514 static unsigned int filenum = -1;
220e750f 515
6a50d470
RS
516 symbolS *sym;
517
220e750f
RH
518 /* Early out for as-yet incomplete location information. */
519 if (loc->filenum == 0 || loc->line == 0)
520 return;
521
ffa554ed
GK
522 /* Don't emit sequences of line symbols for the same line when the
523 symbols apply to assembler code. It is necessary to emit
524 duplicate line symbols when a compiler asks for them, because GDB
525 uses them to determine the end of the prologue. */
d1a6c242 526 if (debug_type == DEBUG_DWARF2
ffa554ed 527 && line == loc->line && filenum == loc->filenum)
1ea5c325
MS
528 return;
529
530 line = loc->line;
531 filenum = loc->filenum;
532
453dc3f0
NC
533 if (linkrelax)
534 {
535 char name[120];
536
537 /* Use a non-fake name for the line number location,
538 so that it can be referred to by relocations. */
539 sprintf (name, ".Loc.%u.%u", line, filenum);
6a50d470 540 sym = symbol_new (name, now_seg, ofs, frag_now);
453dc3f0
NC
541 }
542 else
6a50d470
RS
543 sym = symbol_temp_new (now_seg, ofs, frag_now);
544 dwarf2_gen_line_info_1 (sym, loc);
220e750f 545}
fac0d250 546
ecea7679
RH
547/* Returns the current source information. If .file directives have
548 been encountered, the info for the corresponding source file is
549 returned. Otherwise, the info for the assembly source file is
550 returned. */
551
220e750f 552void
a2e22468 553dwarf2_where (struct dwarf2_line_info *line)
220e750f
RH
554{
555 if (debug_type == DEBUG_DWARF2)
fac0d250 556 {
ba8826a8
AO
557 const char *filename;
558
559 memset (line, 0, sizeof (*line));
560 filename = as_where (&line->line);
a7ed1ca2 561 line->filenum = get_filenum (filename, 0);
220e750f 562 line->column = 0;
bd0eb99b 563 line->flags = DWARF2_FLAG_IS_STMT;
ecea7679 564 line->isa = current.isa;
92846e72 565 line->discriminator = current.discriminator;
ba8826a8 566 line->view = NULL;
fac0d250 567 }
220e750f
RH
568 else
569 *line = current;
fac0d250
RH
570}
571
7fd3924a 572/* A hook to allow the target backend to inform the line number state
ecea7679
RH
573 machine of isa changes when assembler debug info is enabled. */
574
575void
576dwarf2_set_isa (unsigned int isa)
577{
578 current.isa = isa;
579}
580
220e750f
RH
581/* Called for each machine instruction, or relatively atomic group of
582 machine instructions (ie built-in macro). The instruction or group
583 is SIZE bytes in length. If dwarf2 line number generation is called
584 for, emit a line statement appropriately. */
353e2c69 585
220e750f 586void
a2e22468 587dwarf2_emit_insn (int size)
fac0d250 588{
220e750f 589 struct dwarf2_line_info loc;
fac0d250 590
ba8826a8
AO
591 if (debug_type != DEBUG_DWARF2
592 ? !dwarf2_loc_directive_seen
593 : !seen_at_least_1_file ())
220e750f 594 return;
7fd3924a
AM
595
596 dwarf2_where (&loc);
b6675117 597
71250b94 598 dwarf2_gen_line_info ((frag_now_fix_octets () - size) / OCTETS_PER_BYTE, &loc);
661ba50f
BW
599 dwarf2_consume_line_info ();
600}
601
e410add4
RS
602/* Move all previously-emitted line entries for the current position by
603 DELTA bytes. This function cannot be used to move the same entries
604 twice. */
605
606void
607dwarf2_move_insn (int delta)
608{
609 struct line_subseg *lss;
610 struct line_entry *e;
611 valueT now;
612
613 if (delta == 0)
614 return;
615
616 lss = get_line_subseg (now_seg, now_subseg, FALSE);
617 if (!lss)
618 return;
619
620 now = frag_now_fix ();
621 while ((e = *lss->pmove_tail))
622 {
623 if (S_GET_VALUE (e->label) == now)
624 S_SET_VALUE (e->label, now + delta);
625 lss->pmove_tail = &e->next;
626 }
627}
628
661ba50f
BW
629/* Called after the current line information has been either used with
630 dwarf2_gen_line_info or saved with a machine instruction for later use.
631 This resets the state of the line number information to reflect that
632 it has been used. */
633
634void
635dwarf2_consume_line_info (void)
636{
637 /* Unless we generate DWARF2 debugging information for each
638 assembler line, we only emit one line symbol for one LOC. */
7fd3924a 639 dwarf2_loc_directive_seen = FALSE;
bd0eb99b
RH
640
641 current.flags &= ~(DWARF2_FLAG_BASIC_BLOCK
642 | DWARF2_FLAG_PROLOGUE_END
643 | DWARF2_FLAG_EPILOGUE_BEGIN);
92846e72 644 current.discriminator = 0;
3a00b02d 645 current.view = NULL;
220e750f 646}
fac0d250 647
07a53e5c
RH
648/* Called for each (preferably code) label. If dwarf2_loc_mark_labels
649 is enabled, emit a basic block marker. */
650
651void
652dwarf2_emit_label (symbolS *label)
653{
654 struct dwarf2_line_info loc;
655
656 if (!dwarf2_loc_mark_labels)
657 return;
658 if (S_GET_SEGMENT (label) != now_seg)
659 return;
fd361982 660 if (!(bfd_section_flags (now_seg) & SEC_CODE))
07a53e5c 661 return;
7fd3924a
AM
662 if (files_in_use == 0 && debug_type != DEBUG_DWARF2)
663 return;
664
665 dwarf2_where (&loc);
07a53e5c
RH
666
667 loc.flags |= DWARF2_FLAG_BASIC_BLOCK;
668
6a50d470 669 dwarf2_gen_line_info_1 (label, &loc);
7fd3924a 670 dwarf2_consume_line_info ();
07a53e5c
RH
671}
672
a7ed1ca2
NC
673/* Get a .debug_line file number for FILENAME. If NUM is nonzero,
674 allocate it on that file table slot, otherwise return the first
675 empty one. */
220e750f
RH
676
677static unsigned int
a2e22468 678get_filenum (const char *filename, unsigned int num)
220e750f 679{
a7ed1ca2
NC
680 static unsigned int last_used, last_used_dir_len;
681 const char *file;
682 size_t dir_len;
683 unsigned int i, dir;
220e750f 684
a7ed1ca2
NC
685 if (num == 0 && last_used)
686 {
687 if (! files[last_used].dir
8b6efd89 688 && filename_cmp (filename, files[last_used].filename) == 0)
a7ed1ca2
NC
689 return last_used;
690 if (files[last_used].dir
8b6efd89
KT
691 && filename_ncmp (filename, dirs[files[last_used].dir],
692 last_used_dir_len) == 0
a7ed1ca2 693 && IS_DIR_SEPARATOR (filename [last_used_dir_len])
8b6efd89
KT
694 && filename_cmp (filename + last_used_dir_len + 1,
695 files[last_used].filename) == 0)
a7ed1ca2
NC
696 return last_used;
697 }
220e750f 698
a7ed1ca2
NC
699 file = lbasename (filename);
700 /* Don't make empty string from / or A: from A:/ . */
701#ifdef HAVE_DOS_BASED_FILE_SYSTEM
702 if (file <= filename + 3)
703 file = filename;
704#else
705 if (file == filename + 1)
706 file = filename;
707#endif
708 dir_len = file - filename;
709
710 dir = 0;
711 if (dir_len)
712 {
01e1a5bc 713#ifndef DWARF2_DIR_SHOULD_END_WITH_SEPARATOR
a7ed1ca2 714 --dir_len;
01e1a5bc 715#endif
a7ed1ca2 716 for (dir = 1; dir < dirs_in_use; ++dir)
8b6efd89 717 if (filename_ncmp (filename, dirs[dir], dir_len) == 0
a7ed1ca2
NC
718 && dirs[dir][dir_len] == '\0')
719 break;
720
721 if (dir >= dirs_in_use)
722 {
723 if (dir >= dirs_allocated)
724 {
725 dirs_allocated = dir + 32;
325801bd 726 dirs = XRESIZEVEC (char *, dirs, dirs_allocated);
a7ed1ca2
NC
727 }
728
29a2809e 729 dirs[dir] = xmemdup0 (filename, dir_len);
a7ed1ca2
NC
730 dirs_in_use = dir + 1;
731 }
732 }
733
734 if (num == 0)
735 {
736 for (i = 1; i < files_in_use; ++i)
737 if (files[i].dir == dir
88b4ca40 738 && files[i].filename
8b6efd89 739 && filename_cmp (file, files[i].filename) == 0)
a7ed1ca2
NC
740 {
741 last_used = i;
742 last_used_dir_len = dir_len;
743 return i;
744 }
745 }
746 else
747 i = num;
220e750f
RH
748
749 if (i >= files_allocated)
fac0d250 750 {
249e3833
RH
751 unsigned int old = files_allocated;
752
220e750f 753 files_allocated = i + 32;
3076e594
NC
754 /* Catch wraparound. */
755 if (files_allocated <= old)
756 {
8f02ae5b 757 as_bad (_("file number %lu is too big"), (unsigned long) i);
3076e594
NC
758 return 0;
759 }
249e3833 760
3076e594 761 files = XRESIZEVEC (struct file_entry, files, files_allocated);
249e3833 762 memset (files + old, 0, (i + 32 - old) * sizeof (struct file_entry));
fac0d250
RH
763 }
764
8f02ae5b 765 files[i].filename = file;
a7ed1ca2 766 files[i].dir = dir;
10cd14b4
AM
767 if (files_in_use < i + 1)
768 files_in_use = i + 1;
220e750f 769 last_used = i;
a7ed1ca2 770 last_used_dir_len = dir_len;
220e750f
RH
771
772 return i;
773}
fac0d250 774
ecb4347a
DJ
775/* Handle two forms of .file directive:
776 - Pass .file "source.c" to s_app_file
777 - Handle .file 1 "source.c" by adding an entry to the DWARF-2 file table
220e750f 778
68d20676 779 If an entry is added to the file table, return a pointer to the filename. */
ecb4347a
DJ
780
781char *
68d20676 782dwarf2_directive_filename (void)
220e750f 783{
8f02ae5b 784 valueT num;
e46d99eb 785 char *filename;
220e750f
RH
786 int filename_len;
787
788 /* Continue to accept a bare string and pass it off. */
789 SKIP_WHITESPACE ();
790 if (*input_line_pointer == '"')
fac0d250 791 {
220e750f 792 s_app_file (0);
ecb4347a 793 return NULL;
fac0d250
RH
794 }
795
220e750f
RH
796 num = get_absolute_expression ();
797 filename = demand_copy_C_string (&filename_len);
bd0eb99b
RH
798 if (filename == NULL)
799 return NULL;
220e750f
RH
800 demand_empty_rest_of_line ();
801
8f02ae5b 802 if ((offsetT) num < 1)
fac0d250 803 {
0e389e77 804 as_bad (_("file number less than one"));
ecb4347a 805 return NULL;
fac0d250
RH
806 }
807
7cadeb2c
AM
808 /* A .file directive implies compiler generated debug information is
809 being supplied. Turn off gas generated debug info. */
810 debug_type = DEBUG_NONE;
811
8f02ae5b
AM
812 if (num != (unsigned int) num
813 || num >= (size_t) -1 / sizeof (struct file_entry) - 32)
220e750f 814 {
8f02ae5b 815 as_bad (_("file number %lu is too big"), (unsigned long) num);
ecb4347a 816 return NULL;
249e3833 817 }
8f02ae5b 818 if (num < files_in_use && files[num].filename != 0)
3076e594 819 {
8f02ae5b 820 as_bad (_("file number %u already allocated"), (unsigned int) num);
3076e594
NC
821 return NULL;
822 }
220e750f 823
3076e594 824 get_filenum (filename, (unsigned int) num);
ecb4347a
DJ
825
826 return filename;
fac0d250
RH
827}
828
68d20676
NC
829/* Calls dwarf2_directive_filename, but discards its result.
830 Used in pseudo-op tables where the function result is ignored. */
831
832void
833dwarf2_directive_file (int dummy ATTRIBUTE_UNUSED)
834{
835 (void) dwarf2_directive_filename ();
836}
837
220e750f 838void
a2e22468 839dwarf2_directive_loc (int dummy ATTRIBUTE_UNUSED)
220e750f 840{
ecea7679
RH
841 offsetT filenum, line;
842
851feff8
DJ
843 /* If we see two .loc directives in a row, force the first one to be
844 output now. */
7cadeb2c 845 if (dwarf2_loc_directive_seen)
6a50d470 846 dwarf2_emit_insn (0);
851feff8 847
ecea7679
RH
848 filenum = get_absolute_expression ();
849 SKIP_WHITESPACE ();
850 line = get_absolute_expression ();
851
852 if (filenum < 1)
853 {
854 as_bad (_("file number less than one"));
855 return;
856 }
857 if (filenum >= (int) files_in_use || files[filenum].filename == 0)
858 {
859 as_bad (_("unassigned file number %ld"), (long) filenum);
860 return;
861 }
862
863 current.filenum = filenum;
864 current.line = line;
92846e72 865 current.discriminator = 0;
ecea7679
RH
866
867#ifndef NO_LISTING
868 if (listing)
869 {
870 if (files[filenum].dir)
871 {
872 size_t dir_len = strlen (dirs[files[filenum].dir]);
873 size_t file_len = strlen (files[filenum].filename);
add39d23 874 char *cp = XNEWVEC (char, dir_len + 1 + file_len + 1);
ecea7679
RH
875
876 memcpy (cp, dirs[files[filenum].dir], dir_len);
56487c55 877 INSERT_DIR_SEPARATOR (cp, dir_len);
ecea7679
RH
878 memcpy (cp + dir_len + 1, files[filenum].filename, file_len);
879 cp[dir_len + file_len + 1] = '\0';
880 listing_source_file (cp);
e1fa0163 881 free (cp);
ecea7679
RH
882 }
883 else
884 listing_source_file (files[filenum].filename);
885 listing_source_line (line);
886 }
887#endif
888
220e750f 889 SKIP_WHITESPACE ();
ecea7679
RH
890 if (ISDIGIT (*input_line_pointer))
891 {
892 current.column = get_absolute_expression ();
893 SKIP_WHITESPACE ();
894 }
895
896 while (ISALPHA (*input_line_pointer))
220e750f 897 {
bd0eb99b
RH
898 char *p, c;
899 offsetT value;
900
d02603dc 901 c = get_symbol_name (& p);
bd0eb99b
RH
902
903 if (strcmp (p, "basic_block") == 0)
904 {
905 current.flags |= DWARF2_FLAG_BASIC_BLOCK;
906 *input_line_pointer = c;
907 }
908 else if (strcmp (p, "prologue_end") == 0)
909 {
910 current.flags |= DWARF2_FLAG_PROLOGUE_END;
911 *input_line_pointer = c;
912 }
913 else if (strcmp (p, "epilogue_begin") == 0)
914 {
915 current.flags |= DWARF2_FLAG_EPILOGUE_BEGIN;
916 *input_line_pointer = c;
917 }
918 else if (strcmp (p, "is_stmt") == 0)
919 {
d02603dc 920 (void) restore_line_pointer (c);
bd0eb99b
RH
921 value = get_absolute_expression ();
922 if (value == 0)
923 current.flags &= ~DWARF2_FLAG_IS_STMT;
924 else if (value == 1)
925 current.flags |= DWARF2_FLAG_IS_STMT;
926 else
ecea7679
RH
927 {
928 as_bad (_("is_stmt value not 0 or 1"));
929 return;
930 }
bd0eb99b
RH
931 }
932 else if (strcmp (p, "isa") == 0)
933 {
d02603dc 934 (void) restore_line_pointer (c);
bd0eb99b 935 value = get_absolute_expression ();
ecea7679 936 if (value >= 0)
bd0eb99b 937 current.isa = value;
ecea7679
RH
938 else
939 {
940 as_bad (_("isa number less than zero"));
941 return;
942 }
bd0eb99b 943 }
92846e72
CC
944 else if (strcmp (p, "discriminator") == 0)
945 {
d02603dc 946 (void) restore_line_pointer (c);
92846e72
CC
947 value = get_absolute_expression ();
948 if (value >= 0)
949 current.discriminator = value;
950 else
951 {
952 as_bad (_("discriminator less than zero"));
953 return;
954 }
955 }
ba8826a8
AO
956 else if (strcmp (p, "view") == 0)
957 {
958 symbolS *sym;
959
960 (void) restore_line_pointer (c);
961 SKIP_WHITESPACE ();
962
963 if (ISDIGIT (*input_line_pointer)
964 || *input_line_pointer == '-')
965 {
966 bfd_boolean force_reset = *input_line_pointer == '-';
967
968 value = get_absolute_expression ();
969 if (value != 0)
970 {
971 as_bad (_("numeric view can only be asserted to zero"));
972 return;
973 }
974 if (force_reset && force_reset_view)
975 sym = force_reset_view;
976 else
977 {
978 sym = symbol_temp_new (absolute_section, value,
979 &zero_address_frag);
980 if (force_reset)
981 force_reset_view = sym;
982 }
983 }
984 else
985 {
986 char *name = read_symbol_name ();
987
988 if (!name)
989 return;
990 sym = symbol_find_or_make (name);
38cf168b 991 if (S_IS_DEFINED (sym) || symbol_equated_p (sym))
ba8826a8 992 {
38cf168b 993 if (S_IS_VOLATILE (sym))
ba8826a8 994 sym = symbol_clone (sym, 1);
38cf168b
AM
995 else if (!S_CAN_BE_REDEFINED (sym))
996 {
997 as_bad (_("symbol `%s' is already defined"), name);
998 return;
999 }
ba8826a8 1000 }
38cf168b
AM
1001 S_SET_SEGMENT (sym, undefined_section);
1002 S_SET_VALUE (sym, 0);
1003 symbol_set_frag (sym, &zero_address_frag);
ba8826a8
AO
1004 }
1005 current.view = sym;
1006 }
bd0eb99b
RH
1007 else
1008 {
ecea7679 1009 as_bad (_("unknown .loc sub-directive `%s'"), p);
d02603dc 1010 (void) restore_line_pointer (c);
bd0eb99b
RH
1011 return;
1012 }
1013
d02603dc 1014 SKIP_WHITESPACE_AFTER_NAME ();
bd0eb99b
RH
1015 }
1016
1017 demand_empty_rest_of_line ();
1eee4adc 1018 dwarf2_loc_directive_seen = TRUE;
7cadeb2c 1019 debug_type = DEBUG_NONE;
ba8826a8
AO
1020
1021 /* If we were given a view id, emit the row right away. */
1022 if (current.view)
1023 dwarf2_emit_insn (0);
220e750f 1024}
07a53e5c
RH
1025
1026void
1027dwarf2_directive_loc_mark_labels (int dummy ATTRIBUTE_UNUSED)
1028{
1029 offsetT value = get_absolute_expression ();
1030
1031 if (value != 0 && value != 1)
1032 {
1033 as_bad (_("expected 0 or 1"));
1034 ignore_rest_of_line ();
1035 }
1036 else
1037 {
1038 dwarf2_loc_mark_labels = value != 0;
1039 demand_empty_rest_of_line ();
1040 }
1041}
220e750f
RH
1042\f
1043static struct frag *
a2e22468 1044first_frag_for_seg (segT seg)
220e750f 1045{
c9049d30 1046 return seg_info (seg)->frchainP->frch_root;
220e750f
RH
1047}
1048
1049static struct frag *
a2e22468 1050last_frag_for_seg (segT seg)
220e750f 1051{
c9049d30 1052 frchainS *f = seg_info (seg)->frchainP;
220e750f 1053
c9049d30
AM
1054 while (f->frch_next != NULL)
1055 f = f->frch_next;
220e750f 1056
c9049d30 1057 return f->frch_last;
220e750f
RH
1058}
1059\f
1060/* Emit a single byte into the current segment. */
1061
1062static inline void
a2e22468 1063out_byte (int byte)
220e750f
RH
1064{
1065 FRAG_APPEND_1_CHAR (byte);
1066}
1067
1068/* Emit a statement program opcode into the current segment. */
1069
1070static inline void
a2e22468 1071out_opcode (int opc)
220e750f
RH
1072{
1073 out_byte (opc);
1074}
1075
1076/* Emit a two-byte word into the current segment. */
1077
1078static inline void
a2e22468 1079out_two (int data)
220e750f
RH
1080{
1081 md_number_to_chars (frag_more (2), data, 2);
1082}
1083
1084/* Emit a four byte word into the current segment. */
1085
1086static inline void
a2e22468 1087out_four (int data)
220e750f
RH
1088{
1089 md_number_to_chars (frag_more (4), data, 4);
1090}
1091
1092/* Emit an unsigned "little-endian base 128" number. */
1093
fac0d250 1094static void
a2e22468 1095out_uleb128 (addressT value)
220e750f
RH
1096{
1097 output_leb128 (frag_more (sizeof_leb128 (value, 0)), value, 0);
1098}
1099
92846e72
CC
1100/* Emit a signed "little-endian base 128" number. */
1101
1102static void
1103out_leb128 (addressT value)
1104{
1105 output_leb128 (frag_more (sizeof_leb128 (value, 1)), value, 1);
1106}
1107
220e750f
RH
1108/* Emit a tuple for .debug_abbrev. */
1109
1110static inline void
a2e22468 1111out_abbrev (int name, int form)
fac0d250 1112{
220e750f
RH
1113 out_uleb128 (name);
1114 out_uleb128 (form);
1115}
fac0d250 1116
220e750f 1117/* Get the size of a fragment. */
fac0d250 1118
220e750f 1119static offsetT
c9049d30 1120get_frag_fix (fragS *frag, segT seg)
220e750f
RH
1121{
1122 frchainS *fr;
1123
1124 if (frag->fr_next)
1125 return frag->fr_fix;
1126
1127 /* If a fragment is the last in the chain, special measures must be
1128 taken to find its size before relaxation, since it may be pending
1129 on some subsegment chain. */
c9049d30 1130 for (fr = seg_info (seg)->frchainP; fr; fr = fr->frch_next)
220e750f 1131 if (fr->frch_last == frag)
c5c0a210 1132 return (char *) obstack_next_free (&fr->frch_obstack) - frag->fr_literal;
220e750f
RH
1133
1134 abort ();
1135}
fac0d250 1136
220e750f 1137/* Set an absolute address (may result in a relocation entry). */
fac0d250 1138
204f543c
CE
1139static void
1140out_inc_line_addr (int line_delta, addressT addr_delta);
1141
220e750f 1142static void
07a53e5c 1143out_set_addr (symbolS *sym)
220e750f 1144{
91d6fa6a 1145 expressionS exp;
204f543c 1146 addressT expr_addr, expr_addr_aligned;
9e3af0e7 1147
031e3350 1148 memset (&exp, 0, sizeof exp);
fac0d250 1149
204f543c
CE
1150 /* The expression at the bottom must be aligned to OCTETS_PER_BYTE. The
1151 statements after the for loop will contribute 3 more octets. */
1152 expr_addr = frag_now_fix_octets () + 3;
1153 expr_addr_aligned = (expr_addr + OCTETS_PER_BYTE - 1) & -OCTETS_PER_BYTE;
1154 for ( ; expr_addr != expr_addr_aligned; expr_addr++)
1155 out_inc_line_addr (0, 0); /* NOP */
1156
1157 out_opcode (DW_LNS_extended_op); /* 1 octet */
1158 out_uleb128 (sizeof_address + 1); /* 1 octet */
1159
1160 out_opcode (DW_LNE_set_address); /* 1 octet */
91d6fa6a
NC
1161 exp.X_op = O_symbol;
1162 exp.X_add_symbol = sym;
1163 exp.X_add_number = 0;
1164 emit_expr (&exp, sizeof_address);
fac0d250
RH
1165}
1166
a2e22468 1167static void scale_addr_delta (addressT *);
c8970b4b 1168
a3b75434 1169static void
d7342424 1170scale_addr_delta (addressT *addr_delta)
a3b75434
DD
1171{
1172 static int printed_this = 0;
8fbf7334 1173 if (DWARF2_LINE_MIN_INSN_LENGTH > 1)
a3b75434 1174 {
8fbf7334 1175 if (*addr_delta % DWARF2_LINE_MIN_INSN_LENGTH != 0 && !printed_this)
8f02ae5b 1176 {
8fbf7334 1177 as_bad("unaligned opcodes detected in executable segment");
8f02ae5b
AM
1178 printed_this = 1;
1179 }
8fbf7334 1180 *addr_delta /= DWARF2_LINE_MIN_INSN_LENGTH;
a3b75434 1181 }
a3b75434 1182}
a3b75434 1183
220e750f
RH
1184/* Encode a pair of line and address skips as efficiently as possible.
1185 Note that the line skip is signed, whereas the address skip is unsigned.
353e2c69 1186
220e750f
RH
1187 The following two routines *must* be kept in sync. This is
1188 enforced by making emit_inc_line_addr abort if we do not emit
1189 exactly the expected number of bytes. */
1190
1191static int
a2e22468 1192size_inc_line_addr (int line_delta, addressT addr_delta)
fac0d250 1193{
220e750f
RH
1194 unsigned int tmp, opcode;
1195 int len = 0;
fac0d250 1196
220e750f 1197 /* Scale the address delta by the minimum instruction length. */
a3b75434 1198 scale_addr_delta (&addr_delta);
220e750f
RH
1199
1200 /* INT_MAX is a signal that this is actually a DW_LNE_end_sequence.
1201 We cannot use special opcodes here, since we want the end_sequence
1202 to emit the matrix entry. */
1203 if (line_delta == INT_MAX)
fac0d250 1204 {
220e750f
RH
1205 if (addr_delta == MAX_SPECIAL_ADDR_DELTA)
1206 len = 1;
62e6b7b3 1207 else if (addr_delta)
220e750f
RH
1208 len = 1 + sizeof_leb128 (addr_delta, 0);
1209 return len + 3;
fac0d250 1210 }
fac0d250 1211
220e750f
RH
1212 /* Bias the line delta by the base. */
1213 tmp = line_delta - DWARF2_LINE_BASE;
fac0d250 1214
220e750f
RH
1215 /* If the line increment is out of range of a special opcode, we
1216 must encode it with DW_LNS_advance_line. */
1217 if (tmp >= DWARF2_LINE_RANGE)
1218 {
1219 len = 1 + sizeof_leb128 (line_delta, 1);
1220 line_delta = 0;
1221 tmp = 0 - DWARF2_LINE_BASE;
1222 }
fac0d250 1223
220e750f
RH
1224 /* Bias the opcode by the special opcode base. */
1225 tmp += DWARF2_LINE_OPCODE_BASE;
353e2c69 1226
220e750f
RH
1227 /* Avoid overflow when addr_delta is large. */
1228 if (addr_delta < 256 + MAX_SPECIAL_ADDR_DELTA)
1229 {
1230 /* Try using a special opcode. */
1231 opcode = tmp + addr_delta * DWARF2_LINE_RANGE;
1232 if (opcode <= 255)
1233 return len + 1;
1234
1235 /* Try using DW_LNS_const_add_pc followed by special op. */
1236 opcode = tmp + (addr_delta - MAX_SPECIAL_ADDR_DELTA) * DWARF2_LINE_RANGE;
1237 if (opcode <= 255)
1238 return len + 2;
1239 }
1240
1241 /* Otherwise use DW_LNS_advance_pc. */
1242 len += 1 + sizeof_leb128 (addr_delta, 0);
1243
1244 /* DW_LNS_copy or special opcode. */
1245 len += 1;
1246
1247 return len;
1248}
fac0d250 1249
220e750f 1250static void
a2e22468 1251emit_inc_line_addr (int line_delta, addressT addr_delta, char *p, int len)
220e750f
RH
1252{
1253 unsigned int tmp, opcode;
1254 int need_copy = 0;
1255 char *end = p + len;
fac0d250 1256
07a53e5c
RH
1257 /* Line number sequences cannot go backward in addresses. This means
1258 we've incorrectly ordered the statements in the sequence. */
9c2799c2 1259 gas_assert ((offsetT) addr_delta >= 0);
07a53e5c 1260
220e750f 1261 /* Scale the address delta by the minimum instruction length. */
a3b75434
DD
1262 scale_addr_delta (&addr_delta);
1263
220e750f
RH
1264 /* INT_MAX is a signal that this is actually a DW_LNE_end_sequence.
1265 We cannot use special opcodes here, since we want the end_sequence
1266 to emit the matrix entry. */
1267 if (line_delta == INT_MAX)
fac0d250 1268 {
220e750f
RH
1269 if (addr_delta == MAX_SPECIAL_ADDR_DELTA)
1270 *p++ = DW_LNS_const_add_pc;
62e6b7b3 1271 else if (addr_delta)
fac0d250 1272 {
220e750f
RH
1273 *p++ = DW_LNS_advance_pc;
1274 p += output_leb128 (p, addr_delta, 0);
fac0d250 1275 }
220e750f
RH
1276
1277 *p++ = DW_LNS_extended_op;
1278 *p++ = 1;
1279 *p++ = DW_LNE_end_sequence;
1280 goto done;
fac0d250
RH
1281 }
1282
220e750f
RH
1283 /* Bias the line delta by the base. */
1284 tmp = line_delta - DWARF2_LINE_BASE;
1285
1286 /* If the line increment is out of range of a special opcode, we
1287 must encode it with DW_LNS_advance_line. */
1288 if (tmp >= DWARF2_LINE_RANGE)
fac0d250 1289 {
220e750f
RH
1290 *p++ = DW_LNS_advance_line;
1291 p += output_leb128 (p, line_delta, 1);
fac0d250 1292
220e750f
RH
1293 line_delta = 0;
1294 tmp = 0 - DWARF2_LINE_BASE;
1295 need_copy = 1;
1296 }
fac0d250 1297
bd0eb99b
RH
1298 /* Prettier, I think, to use DW_LNS_copy instead of a "line +0, addr +0"
1299 special opcode. */
1300 if (line_delta == 0 && addr_delta == 0)
1301 {
1302 *p++ = DW_LNS_copy;
1303 goto done;
1304 }
1305
220e750f
RH
1306 /* Bias the opcode by the special opcode base. */
1307 tmp += DWARF2_LINE_OPCODE_BASE;
fac0d250 1308
220e750f
RH
1309 /* Avoid overflow when addr_delta is large. */
1310 if (addr_delta < 256 + MAX_SPECIAL_ADDR_DELTA)
fac0d250 1311 {
220e750f
RH
1312 /* Try using a special opcode. */
1313 opcode = tmp + addr_delta * DWARF2_LINE_RANGE;
1314 if (opcode <= 255)
1315 {
1316 *p++ = opcode;
1317 goto done;
1318 }
1319
1320 /* Try using DW_LNS_const_add_pc followed by special op. */
1321 opcode = tmp + (addr_delta - MAX_SPECIAL_ADDR_DELTA) * DWARF2_LINE_RANGE;
1322 if (opcode <= 255)
fac0d250 1323 {
220e750f
RH
1324 *p++ = DW_LNS_const_add_pc;
1325 *p++ = opcode;
1326 goto done;
fac0d250
RH
1327 }
1328 }
220e750f
RH
1329
1330 /* Otherwise use DW_LNS_advance_pc. */
1331 *p++ = DW_LNS_advance_pc;
1332 p += output_leb128 (p, addr_delta, 0);
1333
1334 if (need_copy)
1335 *p++ = DW_LNS_copy;
fac0d250 1336 else
220e750f 1337 *p++ = tmp;
fac0d250 1338
220e750f 1339 done:
9c2799c2 1340 gas_assert (p == end);
220e750f 1341}
a8316fe2 1342
220e750f 1343/* Handy routine to combine calls to the above two routines. */
e1c05f12 1344
220e750f 1345static void
a2e22468 1346out_inc_line_addr (int line_delta, addressT addr_delta)
220e750f
RH
1347{
1348 int len = size_inc_line_addr (line_delta, addr_delta);
1349 emit_inc_line_addr (line_delta, addr_delta, frag_more (len), len);
1350}
9de8d8f1 1351
1737851b
BW
1352/* Write out an alternative form of line and address skips using
1353 DW_LNS_fixed_advance_pc opcodes. This uses more space than the default
7ddd14de
BW
1354 line and address information, but it is required if linker relaxation
1355 could change the code offsets. The following two routines *must* be
1356 kept in sync. */
453dc3f0 1357#define ADDR_DELTA_LIMIT 50000
1737851b 1358
7ddd14de
BW
1359static int
1360size_fixed_inc_line_addr (int line_delta, addressT addr_delta)
1737851b 1361{
7ddd14de 1362 int len = 0;
1737851b
BW
1363
1364 /* INT_MAX is a signal that this is actually a DW_LNE_end_sequence. */
7ddd14de
BW
1365 if (line_delta != INT_MAX)
1366 len = 1 + sizeof_leb128 (line_delta, 1);
1367
453dc3f0 1368 if (addr_delta > ADDR_DELTA_LIMIT)
7ddd14de
BW
1369 {
1370 /* DW_LNS_extended_op */
1371 len += 1 + sizeof_leb128 (sizeof_address + 1, 0);
1372 /* DW_LNE_set_address */
1373 len += 1 + sizeof_address;
1374 }
1375 else
1376 /* DW_LNS_fixed_advance_pc */
1377 len += 3;
1378
1737851b 1379 if (line_delta == INT_MAX)
7ddd14de
BW
1380 /* DW_LNS_extended_op + DW_LNE_end_sequence */
1381 len += 3;
1382 else
1383 /* DW_LNS_copy */
1384 len += 1;
1385
1386 return len;
1387}
1388
1389static void
1390emit_fixed_inc_line_addr (int line_delta, addressT addr_delta, fragS *frag,
1391 char *p, int len)
1392{
91d6fa6a 1393 expressionS *pexp;
7ddd14de
BW
1394 char *end = p + len;
1395
1396 /* Line number sequences cannot go backward in addresses. This means
1397 we've incorrectly ordered the statements in the sequence. */
9c2799c2 1398 gas_assert ((offsetT) addr_delta >= 0);
7ddd14de 1399
b40bf0a2
NC
1400 /* Verify that we have kept in sync with size_fixed_inc_line_addr. */
1401 gas_assert (len == size_fixed_inc_line_addr (line_delta, addr_delta));
1402
7ddd14de
BW
1403 /* INT_MAX is a signal that this is actually a DW_LNE_end_sequence. */
1404 if (line_delta != INT_MAX)
1405 {
1406 *p++ = DW_LNS_advance_line;
1407 p += output_leb128 (p, line_delta, 1);
1408 }
1409
91d6fa6a 1410 pexp = symbol_get_value_expression (frag->fr_symbol);
7ddd14de
BW
1411
1412 /* The DW_LNS_fixed_advance_pc opcode has a 2-byte operand so it can
1413 advance the address by at most 64K. Linker relaxation (without
1414 which this function would not be used) could change the operand by
1415 an unknown amount. If the address increment is getting close to
1416 the limit, just reset the address. */
453dc3f0 1417 if (addr_delta > ADDR_DELTA_LIMIT)
1737851b 1418 {
7ddd14de 1419 symbolS *to_sym;
91d6fa6a 1420 expressionS exp;
7ddd14de 1421
031e3350 1422 memset (&exp, 0, sizeof exp);
9f6db0d3 1423 gas_assert (pexp->X_op == O_subtract);
91d6fa6a 1424 to_sym = pexp->X_add_symbol;
7ddd14de
BW
1425
1426 *p++ = DW_LNS_extended_op;
1427 p += output_leb128 (p, sizeof_address + 1, 0);
1428 *p++ = DW_LNE_set_address;
91d6fa6a
NC
1429 exp.X_op = O_symbol;
1430 exp.X_add_symbol = to_sym;
1431 exp.X_add_number = 0;
62ebcb5c 1432 emit_expr_fix (&exp, sizeof_address, frag, p, TC_PARSE_CONS_RETURN_NONE);
7ddd14de
BW
1433 p += sizeof_address;
1434 }
1435 else
1436 {
1437 *p++ = DW_LNS_fixed_advance_pc;
62ebcb5c 1438 emit_expr_fix (pexp, 2, frag, p, TC_PARSE_CONS_RETURN_NONE);
7ddd14de 1439 p += 2;
1737851b
BW
1440 }
1441
7ddd14de
BW
1442 if (line_delta == INT_MAX)
1443 {
1444 *p++ = DW_LNS_extended_op;
1445 *p++ = 1;
1446 *p++ = DW_LNE_end_sequence;
1447 }
1448 else
1449 *p++ = DW_LNS_copy;
1737851b 1450
9c2799c2 1451 gas_assert (p == end);
1737851b
BW
1452}
1453
220e750f
RH
1454/* Generate a variant frag that we can use to relax address/line
1455 increments between fragments of the target segment. */
9e3af0e7 1456
220e750f 1457static void
07a53e5c 1458relax_inc_line_addr (int line_delta, symbolS *to_sym, symbolS *from_sym)
220e750f 1459{
91d6fa6a 1460 expressionS exp;
220e750f 1461 int max_chars;
6576f0b5 1462
031e3350 1463 memset (&exp, 0, sizeof exp);
91d6fa6a
NC
1464 exp.X_op = O_subtract;
1465 exp.X_add_symbol = to_sym;
1466 exp.X_op_symbol = from_sym;
1467 exp.X_add_number = 0;
fac0d250 1468
220e750f
RH
1469 /* The maximum size of the frag is the line delta with a maximum
1470 sized address delta. */
7ddd14de
BW
1471 if (DWARF2_USE_FIXED_ADVANCE_PC)
1472 max_chars = size_fixed_inc_line_addr (line_delta,
1473 -DWARF2_LINE_MIN_INSN_LENGTH);
1474 else
1475 max_chars = size_inc_line_addr (line_delta, -DWARF2_LINE_MIN_INSN_LENGTH);
fac0d250 1476
220e750f 1477 frag_var (rs_dwarf2dbg, max_chars, max_chars, 1,
91d6fa6a 1478 make_expr_symbol (&exp), line_delta, NULL);
220e750f 1479}
fac0d250 1480
220e750f
RH
1481/* The function estimates the size of a rs_dwarf2dbg variant frag
1482 based on the current values of the symbols. It is called before
1483 the relaxation loop. We set fr_subtype to the expected length. */
fac0d250 1484
220e750f 1485int
a2e22468 1486dwarf2dbg_estimate_size_before_relax (fragS *frag)
220e750f
RH
1487{
1488 offsetT addr_delta;
1489 int size;
fac0d250 1490
6386f3a7 1491 addr_delta = resolve_symbol_value (frag->fr_symbol);
7ddd14de
BW
1492 if (DWARF2_USE_FIXED_ADVANCE_PC)
1493 size = size_fixed_inc_line_addr (frag->fr_offset, addr_delta);
1494 else
1495 size = size_inc_line_addr (frag->fr_offset, addr_delta);
fac0d250 1496
220e750f 1497 frag->fr_subtype = size;
fac0d250 1498
220e750f
RH
1499 return size;
1500}
1501
1502/* This function relaxes a rs_dwarf2dbg variant frag based on the
1503 current values of the symbols. fr_subtype is the current length
1504 of the frag. This returns the change in frag length. */
1505
1506int
a2e22468 1507dwarf2dbg_relax_frag (fragS *frag)
220e750f
RH
1508{
1509 int old_size, new_size;
fac0d250 1510
220e750f
RH
1511 old_size = frag->fr_subtype;
1512 new_size = dwarf2dbg_estimate_size_before_relax (frag);
ee515fb7 1513
220e750f 1514 return new_size - old_size;
fac0d250
RH
1515}
1516
220e750f
RH
1517/* This function converts a rs_dwarf2dbg variant frag into a normal
1518 fill frag. This is called after all relaxation has been done.
1519 fr_subtype will be the desired length of the frag. */
1520
1521void
a2e22468 1522dwarf2dbg_convert_frag (fragS *frag)
fac0d250 1523{
220e750f
RH
1524 offsetT addr_diff;
1525
453dc3f0
NC
1526 if (DWARF2_USE_FIXED_ADVANCE_PC)
1527 {
2b0f3761 1528 /* If linker relaxation is enabled then the distance between the two
453dc3f0
NC
1529 symbols in the frag->fr_symbol expression might change. Hence we
1530 cannot rely upon the value computed by resolve_symbol_value.
1531 Instead we leave the expression unfinalized and allow
1532 emit_fixed_inc_line_addr to create a fixup (which later becomes a
1533 relocation) that will allow the linker to correctly compute the
1534 actual address difference. We have to use a fixed line advance for
1535 this as we cannot (easily) relocate leb128 encoded values. */
1536 int saved_finalize_syms = finalize_syms;
1537
1538 finalize_syms = 0;
1539 addr_diff = resolve_symbol_value (frag->fr_symbol);
1540 finalize_syms = saved_finalize_syms;
1541 }
1542 else
1543 addr_diff = resolve_symbol_value (frag->fr_symbol);
fac0d250 1544
220e750f
RH
1545 /* fr_var carries the max_chars that we created the fragment with.
1546 fr_subtype carries the current expected length. We must, of
1547 course, have allocated enough memory earlier. */
9c2799c2 1548 gas_assert (frag->fr_var >= (int) frag->fr_subtype);
fac0d250 1549
7ddd14de
BW
1550 if (DWARF2_USE_FIXED_ADVANCE_PC)
1551 emit_fixed_inc_line_addr (frag->fr_offset, addr_diff, frag,
1552 frag->fr_literal + frag->fr_fix,
1553 frag->fr_subtype);
1554 else
1555 emit_inc_line_addr (frag->fr_offset, addr_diff,
1556 frag->fr_literal + frag->fr_fix, frag->fr_subtype);
220e750f
RH
1557
1558 frag->fr_fix += frag->fr_subtype;
1559 frag->fr_type = rs_fill;
1560 frag->fr_var = 0;
1561 frag->fr_offset = 0;
1562}
1563
1564/* Generate .debug_line content for the chain of line number entries
1565 beginning at E, for segment SEG. */
1566
1567static void
a2e22468 1568process_entries (segT seg, struct line_entry *e)
220e750f
RH
1569{
1570 unsigned filenum = 1;
1571 unsigned line = 1;
1572 unsigned column = 0;
bd0eb99b
RH
1573 unsigned isa = 0;
1574 unsigned flags = DWARF2_LINE_DEFAULT_IS_STMT ? DWARF2_FLAG_IS_STMT : 0;
07a53e5c
RH
1575 fragS *last_frag = NULL, *frag;
1576 addressT last_frag_ofs = 0, frag_ofs;
fead5cd9 1577 symbolS *last_lab = NULL, *lab;
220e750f
RH
1578 struct line_entry *next;
1579
b40bf0a2
NC
1580 if (flag_dwarf_sections)
1581 {
1582 char * name;
1583 const char * sec_name;
1584
2b0f3761 1585 /* Switch to the relevant sub-section before we start to emit
b40bf0a2
NC
1586 the line number table.
1587
1588 FIXME: These sub-sections do not have a normal Line Number
1589 Program Header, thus strictly speaking they are not valid
1590 DWARF sections. Unfortunately the DWARF standard assumes
1591 a one-to-one relationship between compilation units and
1592 line number tables. Thus we have to have a .debug_line
1593 section, as well as our sub-sections, and we have to ensure
1594 that all of the sub-sections are merged into a proper
1595 .debug_line section before a debugger sees them. */
3739860c 1596
fd361982 1597 sec_name = bfd_section_name (seg);
b40bf0a2
NC
1598 if (strcmp (sec_name, ".text") != 0)
1599 {
29a2809e 1600 name = concat (".debug_line", sec_name, (char *) NULL);
b40bf0a2
NC
1601 subseg_set (subseg_get (name, FALSE), 0);
1602 }
1603 else
1604 /* Don't create a .debug_line.text section -
1605 that is redundant. Instead just switch back to the
1606 normal .debug_line section. */
1607 subseg_set (subseg_get (".debug_line", FALSE), 0);
1608 }
1609
fead5cd9 1610 do
fac0d250 1611 {
07a53e5c 1612 int line_delta;
220e750f
RH
1613
1614 if (filenum != e->loc.filenum)
fac0d250 1615 {
220e750f
RH
1616 filenum = e->loc.filenum;
1617 out_opcode (DW_LNS_set_file);
1618 out_uleb128 (filenum);
220e750f
RH
1619 }
1620
1621 if (column != e->loc.column)
1622 {
1623 column = e->loc.column;
1624 out_opcode (DW_LNS_set_column);
1625 out_uleb128 (column);
220e750f
RH
1626 }
1627
92846e72
CC
1628 if (e->loc.discriminator != 0)
1629 {
1630 out_opcode (DW_LNS_extended_op);
1631 out_leb128 (1 + sizeof_leb128 (e->loc.discriminator, 0));
1632 out_opcode (DW_LNE_set_discriminator);
1633 out_uleb128 (e->loc.discriminator);
1634 }
1635
bd0eb99b
RH
1636 if (isa != e->loc.isa)
1637 {
1638 isa = e->loc.isa;
1639 out_opcode (DW_LNS_set_isa);
1640 out_uleb128 (isa);
bd0eb99b
RH
1641 }
1642
1643 if ((e->loc.flags ^ flags) & DWARF2_FLAG_IS_STMT)
220e750f
RH
1644 {
1645 flags = e->loc.flags;
1646 out_opcode (DW_LNS_negate_stmt);
220e750f
RH
1647 }
1648
bd0eb99b 1649 if (e->loc.flags & DWARF2_FLAG_BASIC_BLOCK)
07a53e5c 1650 out_opcode (DW_LNS_set_basic_block);
220e750f 1651
bd0eb99b 1652 if (e->loc.flags & DWARF2_FLAG_PROLOGUE_END)
07a53e5c 1653 out_opcode (DW_LNS_set_prologue_end);
bd0eb99b
RH
1654
1655 if (e->loc.flags & DWARF2_FLAG_EPILOGUE_BEGIN)
07a53e5c 1656 out_opcode (DW_LNS_set_epilogue_begin);
bd0eb99b 1657
fb81275c
JM
1658 /* Don't try to optimize away redundant entries; gdb wants two
1659 entries for a function where the code starts on the same line as
1660 the {, and there's no way to identify that case here. Trust gcc
1661 to optimize appropriately. */
07a53e5c
RH
1662 line_delta = e->loc.line - line;
1663 lab = e->label;
1664 frag = symbol_get_frag (lab);
1665 frag_ofs = S_GET_VALUE (lab);
220e750f 1666
ba8826a8
AO
1667 if (last_frag == NULL
1668 || (e->loc.view == force_reset_view && force_reset_view
1669 /* If we're going to reset the view, but we know we're
1670 advancing the PC, we don't have to force with
1671 set_address. We know we do when we're at the same
1672 address of the same frag, and we know we might when
1673 we're in the beginning of a frag, and we were at the
1674 end of the previous frag. */
1675 && (frag == last_frag
1676 ? (last_frag_ofs == frag_ofs)
1677 : (frag_ofs == 0
1678 && ((offsetT)last_frag_ofs
1679 >= get_frag_fix (last_frag, seg))))))
220e750f 1680 {
07a53e5c
RH
1681 out_set_addr (lab);
1682 out_inc_line_addr (line_delta, 0);
220e750f 1683 }
7ddd14de 1684 else if (frag == last_frag && ! DWARF2_USE_FIXED_ADVANCE_PC)
07a53e5c
RH
1685 out_inc_line_addr (line_delta, frag_ofs - last_frag_ofs);
1686 else
1687 relax_inc_line_addr (line_delta, lab, last_lab);
1688
1689 line = e->loc.line;
1690 last_lab = lab;
1691 last_frag = frag;
1692 last_frag_ofs = frag_ofs;
220e750f
RH
1693
1694 next = e->next;
1695 free (e);
1696 e = next;
fac0d250 1697 }
fead5cd9 1698 while (e);
353e2c69 1699
220e750f 1700 /* Emit a DW_LNE_end_sequence for the end of the section. */
07a53e5c 1701 frag = last_frag_for_seg (seg);
c9049d30 1702 frag_ofs = get_frag_fix (frag, seg);
7ddd14de 1703 if (frag == last_frag && ! DWARF2_USE_FIXED_ADVANCE_PC)
07a53e5c 1704 out_inc_line_addr (INT_MAX, frag_ofs - last_frag_ofs);
220e750f 1705 else
07a53e5c
RH
1706 {
1707 lab = symbol_temp_new (seg, frag_ofs, frag);
1708 relax_inc_line_addr (INT_MAX, lab, last_lab);
1709 }
fac0d250
RH
1710}
1711
220e750f
RH
1712/* Emit the directory and file tables for .debug_line. */
1713
fac0d250 1714static void
a2e22468 1715out_file_list (void)
fac0d250
RH
1716{
1717 size_t size;
3d6b762c 1718 const char *dir;
fac0d250 1719 char *cp;
220e750f
RH
1720 unsigned int i;
1721
a7ed1ca2
NC
1722 /* Emit directory list. */
1723 for (i = 1; i < dirs_in_use; ++i)
1724 {
3d6b762c
JM
1725 dir = remap_debug_filename (dirs[i]);
1726 size = strlen (dir) + 1;
a7ed1ca2 1727 cp = frag_more (size);
3d6b762c 1728 memcpy (cp, dir, size);
a7ed1ca2
NC
1729 }
1730 /* Terminate it. */
220e750f 1731 out_byte ('\0');
fac0d250 1732
220e750f 1733 for (i = 1; i < files_in_use; ++i)
fac0d250 1734 {
01e1a5bc
NC
1735 const char *fullfilename;
1736
249e3833
RH
1737 if (files[i].filename == NULL)
1738 {
0e389e77 1739 as_bad (_("unassigned file number %ld"), (long) i);
88b4ca40
RH
1740 /* Prevent a crash later, particularly for file 1. */
1741 files[i].filename = "";
249e3833
RH
1742 continue;
1743 }
1744
01e1a5bc
NC
1745 fullfilename = DWARF2_FILE_NAME (files[i].filename,
1746 files[i].dir ? dirs [files [i].dir] : "");
1747 size = strlen (fullfilename) + 1;
fac0d250 1748 cp = frag_more (size);
01e1a5bc 1749 memcpy (cp, fullfilename, size);
fac0d250 1750
220e750f 1751 out_uleb128 (files[i].dir); /* directory number */
01e1a5bc
NC
1752 /* Output the last modification timestamp. */
1753 out_uleb128 (DWARF2_FILE_TIME_NAME (files[i].filename,
8f02ae5b 1754 files[i].dir ? dirs [files [i].dir] : ""));
01e1a5bc
NC
1755 /* Output the filesize. */
1756 out_uleb128 (DWARF2_FILE_SIZE_NAME (files[i].filename,
8f02ae5b 1757 files[i].dir ? dirs [files [i].dir] : ""));
fac0d250 1758 }
353e2c69
KH
1759
1760 /* Terminate filename list. */
1761 out_byte (0);
fac0d250
RH
1762}
1763
413a266c
AM
1764/* Switch to SEC and output a header length field. Return the size of
1765 offsets used in SEC. The caller must set EXPR->X_add_symbol value
d025d5e5
MW
1766 to the end of the section. EXPR->X_add_number will be set to the
1767 negative size of the header. */
413a266c
AM
1768
1769static int
91d6fa6a 1770out_header (asection *sec, expressionS *exp)
413a266c
AM
1771{
1772 symbolS *start_sym;
1773 symbolS *end_sym;
1774
1775 subseg_set (sec, 0);
b57dc16f 1776
0f8f0c57
NC
1777 if (flag_dwarf_sections)
1778 {
1779 /* If we are going to put the start and end symbols in different
1780 sections, then we need real symbols, not just fake, local ones. */
1781 frag_now_fix ();
1782 start_sym = symbol_make (".Ldebug_line_start");
1783 end_sym = symbol_make (".Ldebug_line_end");
1784 symbol_set_value_now (start_sym);
1785 }
1786 else
0f8f0c57 1787 {
72354279 1788 start_sym = symbol_temp_new_now_octets ();
0f8f0c57
NC
1789 end_sym = symbol_temp_make ();
1790 }
413a266c
AM
1791
1792 /* Total length of the information. */
91d6fa6a
NC
1793 exp->X_op = O_subtract;
1794 exp->X_add_symbol = end_sym;
1795 exp->X_op_symbol = start_sym;
413a266c
AM
1796
1797 switch (DWARF2_FORMAT (sec))
1798 {
1799 case dwarf2_format_32bit:
91d6fa6a
NC
1800 exp->X_add_number = -4;
1801 emit_expr (exp, 4);
413a266c
AM
1802 return 4;
1803
1804 case dwarf2_format_64bit:
91d6fa6a 1805 exp->X_add_number = -12;
413a266c 1806 out_four (-1);
91d6fa6a 1807 emit_expr (exp, 8);
413a266c
AM
1808 return 8;
1809
1810 case dwarf2_format_64bit_irix:
91d6fa6a
NC
1811 exp->X_add_number = -8;
1812 emit_expr (exp, 8);
413a266c
AM
1813 return 8;
1814 }
1815
1816 as_fatal (_("internal error: unknown dwarf2 format"));
1817 return 0;
1818}
1819
220e750f
RH
1820/* Emit the collected .debug_line data. */
1821
1822static void
a2e22468 1823out_debug_line (segT line_seg)
220e750f 1824{
91d6fa6a 1825 expressionS exp;
02fe846e 1826 symbolS *prologue_start, *prologue_end;
220e750f
RH
1827 symbolS *line_end;
1828 struct line_seg *s;
14e777e0 1829 int sizeof_offset;
145c4477 1830 addressT section_end, section_end_aligned;
220e750f 1831
031e3350 1832 memset (&exp, 0, sizeof exp);
91d6fa6a
NC
1833 sizeof_offset = out_header (line_seg, &exp);
1834 line_end = exp.X_add_symbol;
220e750f
RH
1835
1836 /* Version. */
88ebb0a1 1837 out_two (DWARF2_LINE_VERSION);
220e750f
RH
1838
1839 /* Length of the prologue following this length. */
02fe846e 1840 prologue_start = symbol_temp_make ();
413a266c 1841 prologue_end = symbol_temp_make ();
02fe846e 1842 exp.X_op = O_subtract;
91d6fa6a 1843 exp.X_add_symbol = prologue_end;
02fe846e
AM
1844 exp.X_op_symbol = prologue_start;
1845 exp.X_add_number = 0;
91d6fa6a 1846 emit_expr (&exp, sizeof_offset);
38c24f42 1847 symbol_set_value_now_octets (prologue_start);
220e750f
RH
1848
1849 /* Parameters of the state machine. */
1850 out_byte (DWARF2_LINE_MIN_INSN_LENGTH);
1851 out_byte (DWARF2_LINE_DEFAULT_IS_STMT);
1852 out_byte (DWARF2_LINE_BASE);
1853 out_byte (DWARF2_LINE_RANGE);
1854 out_byte (DWARF2_LINE_OPCODE_BASE);
1855
1856 /* Standard opcode lengths. */
1857 out_byte (0); /* DW_LNS_copy */
1858 out_byte (1); /* DW_LNS_advance_pc */
1859 out_byte (1); /* DW_LNS_advance_line */
1860 out_byte (1); /* DW_LNS_set_file */
1861 out_byte (1); /* DW_LNS_set_column */
1862 out_byte (0); /* DW_LNS_negate_stmt */
1863 out_byte (0); /* DW_LNS_set_basic_block */
1864 out_byte (0); /* DW_LNS_const_add_pc */
1865 out_byte (1); /* DW_LNS_fixed_advance_pc */
bd0eb99b
RH
1866 out_byte (0); /* DW_LNS_set_prologue_end */
1867 out_byte (0); /* DW_LNS_set_epilogue_begin */
1868 out_byte (1); /* DW_LNS_set_isa */
220e750f
RH
1869
1870 out_file_list ();
1871
38c24f42 1872 symbol_set_value_now_octets (prologue_end);
220e750f
RH
1873
1874 /* For each section, emit a statement program. */
ee515fb7 1875 for (s = all_segs; s; s = s->next)
9aec2026
NC
1876 if (SEG_NORMAL (s->seg))
1877 process_entries (s->seg, s->head->head);
1878 else
1879 as_warn ("dwarf line number information for %s ignored",
1880 segment_name (s->seg));
220e750f 1881
b40bf0a2
NC
1882 if (flag_dwarf_sections)
1883 /* We have to switch to the special .debug_line_end section
1884 before emitting the end-of-debug_line symbol. The linker
1885 script arranges for this section to be placed after all the
1886 (potentially garbage collected) .debug_line.<foo> sections.
1887 This section contains the line_end symbol which is used to
1888 compute the size of the linked .debug_line section, as seen
1889 in the DWARF Line Number header. */
1890 subseg_set (subseg_get (".debug_line_end", FALSE), 0);
1891
145c4477
CE
1892 /* Pad size of .debug_line section to a multiple of OCTETS_PER_BYTE.
1893 Simply sizing the section in md_section_align() is not sufficient,
1894 also the size field in the .debug_line header must be a multiple
1895 of OCTETS_PER_BYTE. Not doing so will introduce gaps within the
1896 .debug_line sections after linking. */
1897 section_end = frag_now_fix_octets ();
1898 section_end_aligned = (section_end + OCTETS_PER_BYTE - 1) & -OCTETS_PER_BYTE;
1899 for ( ; section_end != section_end_aligned; section_end++)
1900 out_inc_line_addr (0, 0); /* NOP */
1901
72354279 1902 symbol_set_value_now_octets (line_end);
220e750f
RH
1903}
1904
802f5d9e
NC
1905static void
1906out_debug_ranges (segT ranges_seg)
1907{
1908 unsigned int addr_size = sizeof_address;
1909 struct line_seg *s;
91d6fa6a 1910 expressionS exp;
802f5d9e
NC
1911 unsigned int i;
1912
031e3350 1913 memset (&exp, 0, sizeof exp);
802f5d9e
NC
1914 subseg_set (ranges_seg, 0);
1915
1916 /* Base Address Entry. */
7fd3924a 1917 for (i = 0; i < addr_size; i++)
802f5d9e 1918 out_byte (0xff);
7fd3924a 1919 for (i = 0; i < addr_size; i++)
802f5d9e
NC
1920 out_byte (0);
1921
1922 /* Range List Entry. */
1923 for (s = all_segs; s; s = s->next)
1924 {
1925 fragS *frag;
1926 symbolS *beg, *end;
1927
1928 frag = first_frag_for_seg (s->seg);
1929 beg = symbol_temp_new (s->seg, 0, frag);
1930 s->text_start = beg;
1931
1932 frag = last_frag_for_seg (s->seg);
1933 end = symbol_temp_new (s->seg, get_frag_fix (frag, s->seg), frag);
1934 s->text_end = end;
1935
91d6fa6a
NC
1936 exp.X_op = O_symbol;
1937 exp.X_add_symbol = beg;
1938 exp.X_add_number = 0;
1939 emit_expr (&exp, addr_size);
802f5d9e 1940
91d6fa6a
NC
1941 exp.X_op = O_symbol;
1942 exp.X_add_symbol = end;
1943 exp.X_add_number = 0;
1944 emit_expr (&exp, addr_size);
802f5d9e
NC
1945 }
1946
1947 /* End of Range Entry. */
7fd3924a 1948 for (i = 0; i < addr_size; i++)
802f5d9e 1949 out_byte (0);
7fd3924a 1950 for (i = 0; i < addr_size; i++)
802f5d9e
NC
1951 out_byte (0);
1952}
1953
220e750f
RH
1954/* Emit data for .debug_aranges. */
1955
58b5739a 1956static void
a2e22468 1957out_debug_aranges (segT aranges_seg, segT info_seg)
fac0d250 1958{
220e750f 1959 unsigned int addr_size = sizeof_address;
d025d5e5 1960 offsetT size;
220e750f 1961 struct line_seg *s;
91d6fa6a 1962 expressionS exp;
413a266c 1963 symbolS *aranges_end;
220e750f 1964 char *p;
413a266c 1965 int sizeof_offset;
fac0d250 1966
031e3350 1967 memset (&exp, 0, sizeof exp);
91d6fa6a
NC
1968 sizeof_offset = out_header (aranges_seg, &exp);
1969 aranges_end = exp.X_add_symbol;
d025d5e5 1970 size = -exp.X_add_number;
fac0d250 1971
220e750f 1972 /* Version. */
88ebb0a1 1973 out_two (DWARF2_ARANGES_VERSION);
d025d5e5 1974 size += 2;
4dc7ead9 1975
220e750f 1976 /* Offset to .debug_info. */
413a266c 1977 TC_DWARF2_EMIT_OFFSET (section_symbol (info_seg), sizeof_offset);
d025d5e5 1978 size += sizeof_offset;
220e750f
RH
1979
1980 /* Size of an address (offset portion). */
1981 out_byte (addr_size);
d025d5e5 1982 size++;
220e750f
RH
1983
1984 /* Size of a segment descriptor. */
1985 out_byte (0);
d025d5e5 1986 size++;
220e750f
RH
1987
1988 /* Align the header. */
d025d5e5
MW
1989 while ((size++ % (2 * addr_size)) > 0)
1990 out_byte (0);
4dc7ead9 1991
ee515fb7 1992 for (s = all_segs; s; s = s->next)
220e750f
RH
1993 {
1994 fragS *frag;
1995 symbolS *beg, *end;
1996
1997 frag = first_frag_for_seg (s->seg);
b7d6ed97 1998 beg = symbol_temp_new (s->seg, 0, frag);
220e750f
RH
1999 s->text_start = beg;
2000
2001 frag = last_frag_for_seg (s->seg);
c9049d30 2002 end = symbol_temp_new (s->seg, get_frag_fix (frag, s->seg), frag);
220e750f
RH
2003 s->text_end = end;
2004
91d6fa6a
NC
2005 exp.X_op = O_symbol;
2006 exp.X_add_symbol = beg;
2007 exp.X_add_number = 0;
2008 emit_expr (&exp, addr_size);
220e750f 2009
91d6fa6a
NC
2010 exp.X_op = O_subtract;
2011 exp.X_add_symbol = end;
2012 exp.X_op_symbol = beg;
2013 exp.X_add_number = 0;
2014 emit_expr (&exp, addr_size);
220e750f 2015 }
4dc7ead9 2016
220e750f
RH
2017 p = frag_more (2 * addr_size);
2018 md_number_to_chars (p, 0, addr_size);
2019 md_number_to_chars (p + addr_size, 0, addr_size);
413a266c 2020
72354279 2021 symbol_set_value_now_octets (aranges_end);
4dc7ead9
RH
2022}
2023
220e750f
RH
2024/* Emit data for .debug_abbrev. Note that this must be kept in
2025 sync with out_debug_info below. */
fac0d250 2026
220e750f 2027static void
413a266c
AM
2028out_debug_abbrev (segT abbrev_seg,
2029 segT info_seg ATTRIBUTE_UNUSED,
2030 segT line_seg ATTRIBUTE_UNUSED)
220e750f
RH
2031{
2032 subseg_set (abbrev_seg, 0);
fac0d250 2033
220e750f
RH
2034 out_uleb128 (1);
2035 out_uleb128 (DW_TAG_compile_unit);
2036 out_byte (DW_CHILDREN_no);
413a266c
AM
2037 if (DWARF2_FORMAT (line_seg) == dwarf2_format_32bit)
2038 out_abbrev (DW_AT_stmt_list, DW_FORM_data4);
2039 else
2040 out_abbrev (DW_AT_stmt_list, DW_FORM_data8);
220e750f 2041 if (all_segs->next == NULL)
4dc7ead9 2042 {
220e750f 2043 out_abbrev (DW_AT_low_pc, DW_FORM_addr);
88ebb0a1
MW
2044 if (DWARF2_VERSION < 4)
2045 out_abbrev (DW_AT_high_pc, DW_FORM_addr);
2046 else
2047 out_abbrev (DW_AT_high_pc, (sizeof_address == 4
2048 ? DW_FORM_data4 : DW_FORM_data8));
220e750f 2049 }
802f5d9e
NC
2050 else
2051 {
413a266c 2052 if (DWARF2_FORMAT (info_seg) == dwarf2_format_32bit)
802f5d9e
NC
2053 out_abbrev (DW_AT_ranges, DW_FORM_data4);
2054 else
2055 out_abbrev (DW_AT_ranges, DW_FORM_data8);
2056 }
49fced12
MW
2057 out_abbrev (DW_AT_name, DW_FORM_strp);
2058 out_abbrev (DW_AT_comp_dir, DW_FORM_strp);
2059 out_abbrev (DW_AT_producer, DW_FORM_strp);
220e750f
RH
2060 out_abbrev (DW_AT_language, DW_FORM_data2);
2061 out_abbrev (0, 0);
a987bfc9
RH
2062
2063 /* Terminate the abbreviations for this compilation unit. */
2064 out_byte (0);
220e750f 2065}
4dc7ead9 2066
220e750f 2067/* Emit a description of this compilation unit for .debug_info. */
4dc7ead9 2068
220e750f 2069static void
49fced12
MW
2070out_debug_info (segT info_seg, segT abbrev_seg, segT line_seg, segT ranges_seg,
2071 symbolS *name_sym, symbolS *comp_dir_sym, symbolS *producer_sym)
220e750f 2072{
91d6fa6a 2073 expressionS exp;
220e750f 2074 symbolS *info_end;
14e777e0 2075 int sizeof_offset;
4dc7ead9 2076
031e3350 2077 memset (&exp, 0, sizeof exp);
91d6fa6a
NC
2078 sizeof_offset = out_header (info_seg, &exp);
2079 info_end = exp.X_add_symbol;
4dc7ead9 2080
220e750f 2081 /* DWARF version. */
fc0eebac 2082 out_two (DWARF2_VERSION);
4dc7ead9 2083
220e750f 2084 /* .debug_abbrev offset */
6174d9c8 2085 TC_DWARF2_EMIT_OFFSET (section_symbol (abbrev_seg), sizeof_offset);
4dc7ead9 2086
220e750f
RH
2087 /* Target address size. */
2088 out_byte (sizeof_address);
fac0d250 2089
220e750f
RH
2090 /* DW_TAG_compile_unit DIE abbrev */
2091 out_uleb128 (1);
fac0d250 2092
220e750f 2093 /* DW_AT_stmt_list */
413a266c
AM
2094 TC_DWARF2_EMIT_OFFSET (section_symbol (line_seg),
2095 (DWARF2_FORMAT (line_seg) == dwarf2_format_32bit
2096 ? 4 : 8));
fac0d250 2097
802f5d9e 2098 /* These two attributes are emitted if all of the code is contiguous. */
220e750f 2099 if (all_segs->next == NULL)
58b5739a 2100 {
220e750f 2101 /* DW_AT_low_pc */
91d6fa6a
NC
2102 exp.X_op = O_symbol;
2103 exp.X_add_symbol = all_segs->text_start;
2104 exp.X_add_number = 0;
2105 emit_expr (&exp, sizeof_address);
220e750f
RH
2106
2107 /* DW_AT_high_pc */
88ebb0a1
MW
2108 if (DWARF2_VERSION < 4)
2109 exp.X_op = O_symbol;
2110 else
2111 {
2112 exp.X_op = O_subtract;
2113 exp.X_op_symbol = all_segs->text_start;
2114 }
91d6fa6a
NC
2115 exp.X_add_symbol = all_segs->text_end;
2116 exp.X_add_number = 0;
2117 emit_expr (&exp, sizeof_address);
58b5739a 2118 }
802f5d9e
NC
2119 else
2120 {
eb1fe072
NC
2121 /* This attribute is emitted if the code is disjoint. */
2122 /* DW_AT_ranges. */
2123 TC_DWARF2_EMIT_OFFSET (section_symbol (ranges_seg), sizeof_offset);
802f5d9e 2124 }
58b5739a 2125
49fced12
MW
2126 /* DW_AT_name, DW_AT_comp_dir and DW_AT_producer. Symbols in .debug_str
2127 setup in out_debug_str below. */
2128 TC_DWARF2_EMIT_OFFSET (name_sym, sizeof_offset);
2129 TC_DWARF2_EMIT_OFFSET (comp_dir_sym, sizeof_offset);
2130 TC_DWARF2_EMIT_OFFSET (producer_sym, sizeof_offset);
2131
2132 /* DW_AT_language. Yes, this is probably not really MIPS, but the
2133 dwarf2 draft has no standard code for assembler. */
2134 out_two (DW_LANG_Mips_Assembler);
2135
72354279 2136 symbol_set_value_now_octets (info_end);
49fced12
MW
2137}
2138
2139/* Emit the three debug strings needed in .debug_str and setup symbols
2140 to them for use in out_debug_info. */
2141static void
2142out_debug_str (segT str_seg, symbolS **name_sym, symbolS **comp_dir_sym,
2143 symbolS **producer_sym)
2144{
2145 char producer[128];
2146 const char *comp_dir;
2147 const char *dirname;
2148 char *p;
2149 int len;
2150
2151 subseg_set (str_seg, 0);
2152
48b91938
RH
2153 /* DW_AT_name. We don't have the actual file name that was present
2154 on the command line, so assume files[1] is the main input file.
2155 We're not supposed to get called unless at least one line number
2156 entry was emitted, so this should always be defined. */
5c4e5fe6 2157 *name_sym = symbol_temp_new_now_octets ();
7fd3924a 2158 if (files_in_use == 0)
48b91938 2159 abort ();
a7ed1ca2
NC
2160 if (files[1].dir)
2161 {
3d6b762c
JM
2162 dirname = remap_debug_filename (dirs[files[1].dir]);
2163 len = strlen (dirname);
198f1251
TG
2164#ifdef TE_VMS
2165 /* Already has trailing slash. */
2166 p = frag_more (len);
2167 memcpy (p, dirname, len);
2168#else
a7ed1ca2 2169 p = frag_more (len + 1);
3d6b762c 2170 memcpy (p, dirname, len);
56487c55 2171 INSERT_DIR_SEPARATOR (p, len);
198f1251 2172#endif
a7ed1ca2 2173 }
48b91938
RH
2174 len = strlen (files[1].filename) + 1;
2175 p = frag_more (len);
2176 memcpy (p, files[1].filename, len);
2177
220e750f 2178 /* DW_AT_comp_dir */
5c4e5fe6 2179 *comp_dir_sym = symbol_temp_new_now_octets ();
3d6b762c 2180 comp_dir = remap_debug_filename (getpwd ());
220e750f
RH
2181 len = strlen (comp_dir) + 1;
2182 p = frag_more (len);
2183 memcpy (p, comp_dir, len);
fac0d250 2184
220e750f 2185 /* DW_AT_producer */
5c4e5fe6 2186 *producer_sym = symbol_temp_new_now_octets ();
220e750f
RH
2187 sprintf (producer, "GNU AS %s", VERSION);
2188 len = strlen (producer) + 1;
2189 p = frag_more (len);
2190 memcpy (p, producer, len);
fac0d250
RH
2191}
2192
1e9cc1c2
NC
2193void
2194dwarf2_init (void)
2195{
1e9cc1c2
NC
2196 last_seg_ptr = &all_segs;
2197}
2198
2199
c6cb92c5
NS
2200/* Finish the dwarf2 debug sections. We emit .debug.line if there
2201 were any .file/.loc directives, or --gdwarf2 was given, or if the
df1c40a7
L
2202 file has a non-empty .debug_info section and an empty .debug_line
2203 section. If we emit .debug_line, and the .debug_info section is
2204 empty, we also emit .debug_info, .debug_aranges and .debug_abbrev.
2205 ALL_SEGS will be non-null if there were any .file/.loc directives,
2206 or --gdwarf2 was given and there were any located instructions
2207 emitted. */
c6cb92c5 2208
fac0d250 2209void
a2e22468 2210dwarf2_finish (void)
fac0d250 2211{
220e750f
RH
2212 segT line_seg;
2213 struct line_seg *s;
c6cb92c5
NS
2214 segT info_seg;
2215 int emit_other_sections = 0;
df1c40a7 2216 int empty_debug_line = 0;
c6cb92c5
NS
2217
2218 info_seg = bfd_get_section_by_name (stdoutput, ".debug_info");
2219 emit_other_sections = info_seg == NULL || !seg_not_empty_p (info_seg);
fac0d250 2220
df1c40a7
L
2221 line_seg = bfd_get_section_by_name (stdoutput, ".debug_line");
2222 empty_debug_line = line_seg == NULL || !seg_not_empty_p (line_seg);
2223
2224 /* We can't construct a new debug_line section if we already have one.
2225 Give an error. */
2226 if (all_segs && !empty_debug_line)
2227 as_fatal ("duplicate .debug_line sections");
2228
2229 if ((!all_segs && emit_other_sections)
2230 || (!emit_other_sections && !empty_debug_line))
2231 /* If there is no line information and no non-empty .debug_info
2232 section, or if there is both a non-empty .debug_info and a non-empty
2233 .debug_line, then we do nothing. */
220e750f 2234 return;
fac0d250 2235
220e750f 2236 /* Calculate the size of an address for the target machine. */
9605f328 2237 sizeof_address = DWARF2_ADDR_SIZE (stdoutput);
fac0d250 2238
220e750f
RH
2239 /* Create and switch to the line number section. */
2240 line_seg = subseg_new (".debug_line", 0);
fd361982 2241 bfd_set_section_flags (line_seg, SEC_READONLY | SEC_DEBUGGING);
fac0d250 2242
220e750f 2243 /* For each subsection, chain the debug entries together. */
ee515fb7 2244 for (s = all_segs; s; s = s->next)
fac0d250 2245 {
91d6fa6a
NC
2246 struct line_subseg *lss = s->head;
2247 struct line_entry **ptail = lss->ptail;
220e750f 2248
62e6b7b3
AO
2249 /* Reset the initial view of the first subsection of the
2250 section. */
2251 if (lss->head && lss->head->loc.view)
2252 set_or_check_view (lss->head, NULL, NULL);
2253
91d6fa6a 2254 while ((lss = lss->next) != NULL)
220e750f 2255 {
62e6b7b3
AO
2256 /* Link the first view of subsequent subsections to the
2257 previous view. */
2258 if (lss->head && lss->head->loc.view)
2259 set_or_check_view (lss->head,
2260 !s->head ? NULL : (struct line_entry *)ptail,
2261 s->head ? s->head->head : NULL);
91d6fa6a
NC
2262 *ptail = lss->head;
2263 ptail = lss->ptail;
220e750f 2264 }
fac0d250 2265 }
85a39694 2266
220e750f 2267 out_debug_line (line_seg);
85a39694 2268
c6cb92c5 2269 /* If this is assembler generated line info, and there is no
49fced12
MW
2270 debug_info already, we need .debug_info, .debug_abbrev and
2271 .debug_str sections as well. */
c6cb92c5 2272 if (emit_other_sections)
220e750f
RH
2273 {
2274 segT abbrev_seg;
220e750f 2275 segT aranges_seg;
802f5d9e 2276 segT ranges_seg;
49fced12
MW
2277 segT str_seg;
2278 symbolS *name_sym, *comp_dir_sym, *producer_sym;
4dc7ead9 2279
9c2799c2 2280 gas_assert (all_segs);
7fd3924a 2281
220e750f
RH
2282 info_seg = subseg_new (".debug_info", 0);
2283 abbrev_seg = subseg_new (".debug_abbrev", 0);
2284 aranges_seg = subseg_new (".debug_aranges", 0);
49fced12 2285 str_seg = subseg_new (".debug_str", 0);
ef99799a 2286
fd361982
AM
2287 bfd_set_section_flags (info_seg, SEC_READONLY | SEC_DEBUGGING);
2288 bfd_set_section_flags (abbrev_seg, SEC_READONLY | SEC_DEBUGGING);
2289 bfd_set_section_flags (aranges_seg, SEC_READONLY | SEC_DEBUGGING);
2290 bfd_set_section_flags (str_seg, (SEC_READONLY | SEC_DEBUGGING
2291 | SEC_MERGE | SEC_STRINGS));
49fced12 2292 str_seg->entsize = 1;
ef99799a 2293
ee515fb7 2294 record_alignment (aranges_seg, ffs (2 * sizeof_address) - 1);
ef99799a 2295
802f5d9e
NC
2296 if (all_segs->next == NULL)
2297 ranges_seg = NULL;
2298 else
2299 {
2300 ranges_seg = subseg_new (".debug_ranges", 0);
fd361982 2301 bfd_set_section_flags (ranges_seg, SEC_READONLY | SEC_DEBUGGING);
802f5d9e
NC
2302 record_alignment (ranges_seg, ffs (2 * sizeof_address) - 1);
2303 out_debug_ranges (ranges_seg);
2304 }
2305
220e750f 2306 out_debug_aranges (aranges_seg, info_seg);
413a266c 2307 out_debug_abbrev (abbrev_seg, info_seg, line_seg);
49fced12
MW
2308 out_debug_str (str_seg, &name_sym, &comp_dir_sym, &producer_sym);
2309 out_debug_info (info_seg, abbrev_seg, line_seg, ranges_seg,
2310 name_sym, comp_dir_sym, producer_sym);
220e750f 2311 }
85a39694 2312}
ba8826a8
AO
2313
2314/* Perform any deferred checks pertaining to debug information. */
2315
2316void
2317dwarf2dbg_final_check (void)
2318{
2319 /* Perform reset-view checks. Don't evaluate view_assert_failed
2320 recursively: it could be very deep. It's a chain of adds, with
2321 each chain element pointing to the next in X_add_symbol, and
2322 holding the check value in X_op_symbol. */
2323 while (view_assert_failed)
2324 {
723dfee7 2325 expressionS *exp;
ba8826a8
AO
2326 symbolS *sym;
2327 offsetT failed;
2328
2329 gas_assert (!symbol_resolved_p (view_assert_failed));
2330
723dfee7 2331 exp = symbol_get_value_expression (view_assert_failed);
ba8826a8
AO
2332 sym = view_assert_failed;
2333
2334 /* If view_assert_failed looks like a compound check in the
2335 chain, break it up. */
723dfee7 2336 if (exp->X_op == O_add && exp->X_add_number == 0 && exp->X_unsigned)
ba8826a8 2337 {
723dfee7
HPN
2338 view_assert_failed = exp->X_add_symbol;
2339 sym = exp->X_op_symbol;
ba8826a8
AO
2340 }
2341 else
2342 view_assert_failed = NULL;
2343
2344 failed = resolve_symbol_value (sym);
2345 if (!symbol_resolved_p (sym) || failed)
2346 {
2347 as_bad (_("view number mismatch"));
2348 break;
2349 }
2350 }
2351}
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