]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blame - gas/ecoff.c
1999-06-04 Mark Klein <mklein@dis.com>
[thirdparty/binutils-gdb.git] / gas / ecoff.c
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252b5132 1/* ECOFF debugging support.
49309057 2 Copyright (C) 1993, 94, 95, 96, 97, 98, 1999 Free Software Foundation, Inc.
252b5132
RH
3 Contributed by Cygnus Support.
4 This file was put together by Ian Lance Taylor <ian@cygnus.com>. A
5 good deal of it comes directly from mips-tfile.c, by Michael
6 Meissner <meissner@osf.org>.
7
8 This file is part of GAS.
9
10 GAS is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2, or (at your option)
13 any later version.
14
15 GAS is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
19
20 You should have received a copy of the GNU General Public License
21 along with GAS; see the file COPYING. If not, write to the Free
22 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
23 02111-1307, USA. */
24
25#include "as.h"
26
27/* This file is compiled conditionally for those targets which use
28 ECOFF debugging information (e.g., MIPS ECOFF, MIPS ELF, Alpha
29 ECOFF). */
30
31#ifdef ECOFF_DEBUGGING
32
33#include "coff/internal.h"
34#include "coff/symconst.h"
35#include "ecoff.h"
36#include "aout/stab_gnu.h"
37
38#include <ctype.h>
39
40/* Why isn't this in coff/sym.h? */
41#define ST_RFDESCAPE 0xfff
42
43/* This file constructs the information used by the ECOFF debugging
44 format. It just builds a large block of data.
45
46 We support both ECOFF style debugging and stabs debugging (the
47 stabs symbols are encapsulated in ECOFF symbols). This should let
48 us handle anything the compiler might throw at us. */
49
50/* Here is a brief description of the MIPS ECOFF symbol table, by
51 Michael Meissner. The MIPS symbol table has the following pieces:
52
53 Symbolic Header
54 |
55 +-- Auxiliary Symbols
56 |
57 +-- Dense number table
58 |
59 +-- Optimizer Symbols
60 |
61 +-- External Strings
62 |
63 +-- External Symbols
64 |
65 +-- Relative file descriptors
66 |
67 +-- File table
68 |
69 +-- Procedure table
70 |
71 +-- Line number table
72 |
73 +-- Local Strings
74 |
75 +-- Local Symbols
76
77 The symbolic header points to each of the other tables, and also
78 contains the number of entries. It also contains a magic number
79 and MIPS compiler version number, such as 2.0.
80
81 The auxiliary table is a series of 32 bit integers, that are
82 referenced as needed from the local symbol table. Unlike standard
83 COFF, the aux. information does not follow the symbol that uses
84 it, but rather is a separate table. In theory, this would allow
85 the MIPS compilers to collapse duplicate aux. entries, but I've not
86 noticed this happening with the 1.31 compiler suite. The different
87 types of aux. entries are:
88
89 1) dnLow: Low bound on array dimension.
90
91 2) dnHigh: High bound on array dimension.
92
93 3) isym: Index to the local symbol which is the start of the
94 function for the end of function first aux. entry.
95
96 4) width: Width of structures and bitfields.
97
98 5) count: Count of ranges for variant part.
99
100 6) rndx: A relative index into the symbol table. The relative
101 index field has two parts: rfd which is a pointer into the
102 relative file index table or ST_RFDESCAPE which says the next
103 aux. entry is the file number, and index: which is the pointer
104 into the local symbol within a given file table. This is for
105 things like references to types defined in another file.
106
107 7) Type information: This is like the COFF type bits, except it
108 is 32 bits instead of 16; they still have room to add new
109 basic types; and they can handle more than 6 levels of array,
110 pointer, function, etc. Each type information field contains
111 the following structure members:
112
113 a) fBitfield: a bit that says this is a bitfield, and the
114 size in bits follows as the next aux. entry.
115
116 b) continued: a bit that says the next aux. entry is a
117 continuation of the current type information (in case
118 there are more than 6 levels of array/ptr/function).
119
120 c) bt: an integer containing the base type before adding
121 array, pointer, function, etc. qualifiers. The
122 current base types that I have documentation for are:
123
124 btNil -- undefined
125 btAdr -- address - integer same size as ptr
126 btChar -- character
127 btUChar -- unsigned character
128 btShort -- short
129 btUShort -- unsigned short
130 btInt -- int
131 btUInt -- unsigned int
132 btLong -- long
133 btULong -- unsigned long
134 btFloat -- float (real)
135 btDouble -- Double (real)
136 btStruct -- Structure (Record)
137 btUnion -- Union (variant)
138 btEnum -- Enumerated
139 btTypedef -- defined via a typedef isymRef
140 btRange -- subrange of int
141 btSet -- pascal sets
142 btComplex -- fortran complex
143 btDComplex -- fortran double complex
144 btIndirect -- forward or unnamed typedef
145 btFixedDec -- Fixed Decimal
146 btFloatDec -- Float Decimal
147 btString -- Varying Length Character String
148 btBit -- Aligned Bit String
149 btPicture -- Picture
150 btVoid -- Void (MIPS cc revision >= 2.00)
151
152 d) tq0 - tq5: type qualifier fields as needed. The
153 current type qualifier fields I have documentation for
154 are:
155
156 tqNil -- no more qualifiers
157 tqPtr -- pointer
158 tqProc -- procedure
159 tqArray -- array
160 tqFar -- 8086 far pointers
161 tqVol -- volatile
162
163
164 The dense number table is used in the front ends, and disappears by
165 the time the .o is created.
166
167 With the 1.31 compiler suite, the optimization symbols don't seem
168 to be used as far as I can tell.
169
170 The linker is the first entity that creates the relative file
171 descriptor table, and I believe it is used so that the individual
172 file table pointers don't have to be rewritten when the objects are
173 merged together into the program file.
174
175 Unlike COFF, the basic symbol & string tables are split into
176 external and local symbols/strings. The relocation information
177 only goes off of the external symbol table, and the debug
178 information only goes off of the internal symbol table. The
179 external symbols can have links to an appropriate file index and
180 symbol within the file to give it the appropriate type information.
181 Because of this, the external symbols are actually larger than the
182 internal symbols (to contain the link information), and contain the
183 local symbol structure as a member, though this member is not the
184 first member of the external symbol structure (!). I suspect this
185 split is to make strip easier to deal with.
186
187 Each file table has offsets for where the line numbers, local
188 strings, local symbols, and procedure table starts from within the
189 global tables, and the indexs are reset to 0 for each of those
190 tables for the file.
191
192 The procedure table contains the binary equivalents of the .ent
193 (start of the function address), .frame (what register is the
194 virtual frame pointer, constant offset from the register to obtain
195 the VFP, and what register holds the return address), .mask/.fmask
196 (bitmask of saved registers, and where the first register is stored
197 relative to the VFP) assembler directives. It also contains the
198 low and high bounds of the line numbers if debugging is turned on.
199
200 The line number table is a compressed form of the normal COFF line
201 table. Each line number entry is either 1 or 3 bytes long, and
202 contains a signed delta from the previous line, and an unsigned
203 count of the number of instructions this statement takes.
204
205 The local symbol table contains the following fields:
206
207 1) iss: index to the local string table giving the name of the
208 symbol.
209
210 2) value: value of the symbol (address, register number, etc.).
211
212 3) st: symbol type. The current symbol types are:
213
214 stNil -- Nuthin' special
215 stGlobal -- external symbol
216 stStatic -- static
217 stParam -- procedure argument
218 stLocal -- local variable
219 stLabel -- label
220 stProc -- External Procedure
221 stBlock -- beginning of block
222 stEnd -- end (of anything)
223 stMember -- member (of anything)
224 stTypedef -- type definition
225 stFile -- file name
226 stRegReloc -- register relocation
227 stForward -- forwarding address
228 stStaticProc -- Static procedure
229 stConstant -- const
230
231 4) sc: storage class. The current storage classes are:
232
233 scText -- text symbol
234 scData -- initialized data symbol
235 scBss -- un-initialized data symbol
236 scRegister -- value of symbol is register number
237 scAbs -- value of symbol is absolute
238 scUndefined -- who knows?
239 scCdbLocal -- variable's value is IN se->va.??
240 scBits -- this is a bit field
241 scCdbSystem -- value is IN debugger's address space
242 scRegImage -- register value saved on stack
243 scInfo -- symbol contains debugger information
244 scUserStruct -- addr in struct user for current process
245 scSData -- load time only small data
246 scSBss -- load time only small common
247 scRData -- load time only read only data
248 scVar -- Var parameter (fortranpascal)
249 scCommon -- common variable
250 scSCommon -- small common
251 scVarRegister -- Var parameter in a register
252 scVariant -- Variant record
253 scSUndefined -- small undefined(external) data
254 scInit -- .init section symbol
255
256 5) index: pointer to a local symbol or aux. entry.
257
258
259
260 For the following program:
261
262 #include <stdio.h>
263
264 main(){
265 printf("Hello World!\n");
266 return 0;
267 }
268
269 Mips-tdump produces the following information:
270
271 Global file header:
272 magic number 0x162
273 # sections 2
274 timestamp 645311799, Wed Jun 13 17:16:39 1990
275 symbolic header offset 284
276 symbolic header size 96
277 optional header 56
278 flags 0x0
279
280 Symbolic header, magic number = 0x7009, vstamp = 1.31:
281
282 Info Offset Number Bytes
283 ==== ====== ====== =====
284
285 Line numbers 380 4 4 [13]
286 Dense numbers 0 0 0
287 Procedures Tables 384 1 52
288 Local Symbols 436 16 192
289 Optimization Symbols 0 0 0
290 Auxiliary Symbols 628 39 156
291 Local Strings 784 80 80
292 External Strings 864 144 144
293 File Tables 1008 2 144
294 Relative Files 0 0 0
295 External Symbols 1152 20 320
296
297 File #0, "hello2.c"
298
299 Name index = 1 Readin = No
300 Merge = No Endian = LITTLE
301 Debug level = G2 Language = C
302 Adr = 0x00000000
303
304 Info Start Number Size Offset
305 ==== ===== ====== ==== ======
306 Local strings 0 15 15 784
307 Local symbols 0 6 72 436
308 Line numbers 0 13 13 380
309 Optimization symbols 0 0 0 0
310 Procedures 0 1 52 384
311 Auxiliary symbols 0 14 56 628
312 Relative Files 0 0 0 0
313
314 There are 6 local symbols, starting at 436
315
316 Symbol# 0: "hello2.c"
317 End+1 symbol = 6
318 String index = 1
319 Storage class = Text Index = 6
320 Symbol type = File Value = 0
321
322 Symbol# 1: "main"
323 End+1 symbol = 5
324 Type = int
325 String index = 10
326 Storage class = Text Index = 12
327 Symbol type = Proc Value = 0
328
329 Symbol# 2: ""
330 End+1 symbol = 4
331 String index = 0
332 Storage class = Text Index = 4
333 Symbol type = Block Value = 8
334
335 Symbol# 3: ""
336 First symbol = 2
337 String index = 0
338 Storage class = Text Index = 2
339 Symbol type = End Value = 28
340
341 Symbol# 4: "main"
342 First symbol = 1
343 String index = 10
344 Storage class = Text Index = 1
345 Symbol type = End Value = 52
346
347 Symbol# 5: "hello2.c"
348 First symbol = 0
349 String index = 1
350 Storage class = Text Index = 0
351 Symbol type = End Value = 0
352
353 There are 14 auxiliary table entries, starting at 628.
354
355 * #0 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
356 * #1 24, [ 24/ 0], [ 6 0:0 0:0:0:0:0:0]
357 * #2 8, [ 8/ 0], [ 2 0:0 0:0:0:0:0:0]
358 * #3 16, [ 16/ 0], [ 4 0:0 0:0:0:0:0:0]
359 * #4 24, [ 24/ 0], [ 6 0:0 0:0:0:0:0:0]
360 * #5 32, [ 32/ 0], [ 8 0:0 0:0:0:0:0:0]
361 * #6 40, [ 40/ 0], [10 0:0 0:0:0:0:0:0]
362 * #7 44, [ 44/ 0], [11 0:0 0:0:0:0:0:0]
363 * #8 12, [ 12/ 0], [ 3 0:0 0:0:0:0:0:0]
364 * #9 20, [ 20/ 0], [ 5 0:0 0:0:0:0:0:0]
365 * #10 28, [ 28/ 0], [ 7 0:0 0:0:0:0:0:0]
366 * #11 36, [ 36/ 0], [ 9 0:0 0:0:0:0:0:0]
367 #12 5, [ 5/ 0], [ 1 1:0 0:0:0:0:0:0]
368 #13 24, [ 24/ 0], [ 6 0:0 0:0:0:0:0:0]
369
370 There are 1 procedure descriptor entries, starting at 0.
371
372 Procedure descriptor 0:
373 Name index = 10 Name = "main"
374 .mask 0x80000000,-4 .fmask 0x00000000,0
375 .frame $29,24,$31
376 Opt. start = -1 Symbols start = 1
377 First line # = 3 Last line # = 6
378 Line Offset = 0 Address = 0x00000000
379
380 There are 4 bytes holding line numbers, starting at 380.
381 Line 3, delta 0, count 2
382 Line 4, delta 1, count 3
383 Line 5, delta 1, count 2
384 Line 6, delta 1, count 6
385
386 File #1, "/usr/include/stdio.h"
387
388 Name index = 1 Readin = No
389 Merge = Yes Endian = LITTLE
390 Debug level = G2 Language = C
391 Adr = 0x00000000
392
393 Info Start Number Size Offset
394 ==== ===== ====== ==== ======
395 Local strings 15 65 65 799
396 Local symbols 6 10 120 508
397 Line numbers 0 0 0 380
398 Optimization symbols 0 0 0 0
399 Procedures 1 0 0 436
400 Auxiliary symbols 14 25 100 684
401 Relative Files 0 0 0 0
402
403 There are 10 local symbols, starting at 442
404
405 Symbol# 0: "/usr/include/stdio.h"
406 End+1 symbol = 10
407 String index = 1
408 Storage class = Text Index = 10
409 Symbol type = File Value = 0
410
411 Symbol# 1: "_iobuf"
412 End+1 symbol = 9
413 String index = 22
414 Storage class = Info Index = 9
415 Symbol type = Block Value = 20
416
417 Symbol# 2: "_cnt"
418 Type = int
419 String index = 29
420 Storage class = Info Index = 4
421 Symbol type = Member Value = 0
422
423 Symbol# 3: "_ptr"
424 Type = ptr to char
425 String index = 34
426 Storage class = Info Index = 15
427 Symbol type = Member Value = 32
428
429 Symbol# 4: "_base"
430 Type = ptr to char
431 String index = 39
432 Storage class = Info Index = 16
433 Symbol type = Member Value = 64
434
435 Symbol# 5: "_bufsiz"
436 Type = int
437 String index = 45
438 Storage class = Info Index = 4
439 Symbol type = Member Value = 96
440
441 Symbol# 6: "_flag"
442 Type = short
443 String index = 53
444 Storage class = Info Index = 3
445 Symbol type = Member Value = 128
446
447 Symbol# 7: "_file"
448 Type = char
449 String index = 59
450 Storage class = Info Index = 2
451 Symbol type = Member Value = 144
452
453 Symbol# 8: ""
454 First symbol = 1
455 String index = 0
456 Storage class = Info Index = 1
457 Symbol type = End Value = 0
458
459 Symbol# 9: "/usr/include/stdio.h"
460 First symbol = 0
461 String index = 1
462 Storage class = Text Index = 0
463 Symbol type = End Value = 0
464
465 There are 25 auxiliary table entries, starting at 642.
466
467 * #14 -1, [4095/1048575], [63 1:1 f:f:f:f:f:f]
468 #15 65544, [ 8/ 16], [ 2 0:0 1:0:0:0:0:0]
469 #16 65544, [ 8/ 16], [ 2 0:0 1:0:0:0:0:0]
470 * #17 196656, [ 48/ 48], [12 0:0 3:0:0:0:0:0]
471 * #18 8191, [4095/ 1], [63 1:1 0:0:0:0:f:1]
472 * #19 1, [ 1/ 0], [ 0 1:0 0:0:0:0:0:0]
473 * #20 20479, [4095/ 4], [63 1:1 0:0:0:0:f:4]
474 * #21 1, [ 1/ 0], [ 0 1:0 0:0:0:0:0:0]
475 * #22 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
476 * #23 2, [ 2/ 0], [ 0 0:1 0:0:0:0:0:0]
477 * #24 160, [ 160/ 0], [40 0:0 0:0:0:0:0:0]
478 * #25 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
479 * #26 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
480 * #27 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
481 * #28 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
482 * #29 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
483 * #30 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
484 * #31 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
485 * #32 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
486 * #33 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
487 * #34 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
488 * #35 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
489 * #36 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
490 * #37 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
491 * #38 0, [ 0/ 0], [ 0 0:0 0:0:0:0:0:0]
492
493 There are 0 procedure descriptor entries, starting at 1.
494
495 There are 20 external symbols, starting at 1152
496
497 Symbol# 0: "_iob"
498 Type = array [3 {160}] of struct _iobuf { ifd = 1, index = 1 }
499 String index = 0 Ifd = 1
500 Storage class = Nil Index = 17
501 Symbol type = Global Value = 60
502
503 Symbol# 1: "fopen"
504 String index = 5 Ifd = 1
505 Storage class = Nil Index = 1048575
506 Symbol type = Proc Value = 0
507
508 Symbol# 2: "fdopen"
509 String index = 11 Ifd = 1
510 Storage class = Nil Index = 1048575
511 Symbol type = Proc Value = 0
512
513 Symbol# 3: "freopen"
514 String index = 18 Ifd = 1
515 Storage class = Nil Index = 1048575
516 Symbol type = Proc Value = 0
517
518 Symbol# 4: "popen"
519 String index = 26 Ifd = 1
520 Storage class = Nil Index = 1048575
521 Symbol type = Proc Value = 0
522
523 Symbol# 5: "tmpfile"
524 String index = 32 Ifd = 1
525 Storage class = Nil Index = 1048575
526 Symbol type = Proc Value = 0
527
528 Symbol# 6: "ftell"
529 String index = 40 Ifd = 1
530 Storage class = Nil Index = 1048575
531 Symbol type = Proc Value = 0
532
533 Symbol# 7: "rewind"
534 String index = 46 Ifd = 1
535 Storage class = Nil Index = 1048575
536 Symbol type = Proc Value = 0
537
538 Symbol# 8: "setbuf"
539 String index = 53 Ifd = 1
540 Storage class = Nil Index = 1048575
541 Symbol type = Proc Value = 0
542
543 Symbol# 9: "setbuffer"
544 String index = 60 Ifd = 1
545 Storage class = Nil Index = 1048575
546 Symbol type = Proc Value = 0
547
548 Symbol# 10: "setlinebuf"
549 String index = 70 Ifd = 1
550 Storage class = Nil Index = 1048575
551 Symbol type = Proc Value = 0
552
553 Symbol# 11: "fgets"
554 String index = 81 Ifd = 1
555 Storage class = Nil Index = 1048575
556 Symbol type = Proc Value = 0
557
558 Symbol# 12: "gets"
559 String index = 87 Ifd = 1
560 Storage class = Nil Index = 1048575
561 Symbol type = Proc Value = 0
562
563 Symbol# 13: "ctermid"
564 String index = 92 Ifd = 1
565 Storage class = Nil Index = 1048575
566 Symbol type = Proc Value = 0
567
568 Symbol# 14: "cuserid"
569 String index = 100 Ifd = 1
570 Storage class = Nil Index = 1048575
571 Symbol type = Proc Value = 0
572
573 Symbol# 15: "tempnam"
574 String index = 108 Ifd = 1
575 Storage class = Nil Index = 1048575
576 Symbol type = Proc Value = 0
577
578 Symbol# 16: "tmpnam"
579 String index = 116 Ifd = 1
580 Storage class = Nil Index = 1048575
581 Symbol type = Proc Value = 0
582
583 Symbol# 17: "sprintf"
584 String index = 123 Ifd = 1
585 Storage class = Nil Index = 1048575
586 Symbol type = Proc Value = 0
587
588 Symbol# 18: "main"
589 Type = int
590 String index = 131 Ifd = 0
591 Storage class = Text Index = 1
592 Symbol type = Proc Value = 0
593
594 Symbol# 19: "printf"
595 String index = 136 Ifd = 0
596 Storage class = Undefined Index = 1048575
597 Symbol type = Proc Value = 0
598
599 The following auxiliary table entries were unused:
600
601 #0 0 0x00000000 void
602 #2 8 0x00000008 char
603 #3 16 0x00000010 short
604 #4 24 0x00000018 int
605 #5 32 0x00000020 long
606 #6 40 0x00000028 float
607 #7 44 0x0000002c double
608 #8 12 0x0000000c unsigned char
609 #9 20 0x00000014 unsigned short
610 #10 28 0x0000001c unsigned int
611 #11 36 0x00000024 unsigned long
612 #14 0 0x00000000 void
613 #15 24 0x00000018 int
614 #19 32 0x00000020 long
615 #20 40 0x00000028 float
616 #21 44 0x0000002c double
617 #22 12 0x0000000c unsigned char
618 #23 20 0x00000014 unsigned short
619 #24 28 0x0000001c unsigned int
620 #25 36 0x00000024 unsigned long
621 #26 48 0x00000030 struct no name { ifd = -1, index = 1048575 }
622*/
623\f
624/* Redefinition of of storage classes as an enumeration for better
625 debugging. */
626
627typedef enum sc {
628 sc_Nil = scNil, /* no storage class */
629 sc_Text = scText, /* text symbol */
630 sc_Data = scData, /* initialized data symbol */
631 sc_Bss = scBss, /* un-initialized data symbol */
632 sc_Register = scRegister, /* value of symbol is register number */
633 sc_Abs = scAbs, /* value of symbol is absolute */
634 sc_Undefined = scUndefined, /* who knows? */
635 sc_CdbLocal = scCdbLocal, /* variable's value is IN se->va.?? */
636 sc_Bits = scBits, /* this is a bit field */
637 sc_CdbSystem = scCdbSystem, /* value is IN CDB's address space */
638 sc_RegImage = scRegImage, /* register value saved on stack */
639 sc_Info = scInfo, /* symbol contains debugger information */
640 sc_UserStruct = scUserStruct, /* addr in struct user for current process */
641 sc_SData = scSData, /* load time only small data */
642 sc_SBss = scSBss, /* load time only small common */
643 sc_RData = scRData, /* load time only read only data */
644 sc_Var = scVar, /* Var parameter (fortran,pascal) */
645 sc_Common = scCommon, /* common variable */
646 sc_SCommon = scSCommon, /* small common */
647 sc_VarRegister = scVarRegister, /* Var parameter in a register */
648 sc_Variant = scVariant, /* Variant record */
649 sc_SUndefined = scSUndefined, /* small undefined(external) data */
650 sc_Init = scInit, /* .init section symbol */
651 sc_Max = scMax /* Max storage class+1 */
652} sc_t;
653
654/* Redefinition of symbol type. */
655
656typedef enum st {
657 st_Nil = stNil, /* Nuthin' special */
658 st_Global = stGlobal, /* external symbol */
659 st_Static = stStatic, /* static */
660 st_Param = stParam, /* procedure argument */
661 st_Local = stLocal, /* local variable */
662 st_Label = stLabel, /* label */
663 st_Proc = stProc, /* " " Procedure */
664 st_Block = stBlock, /* beginning of block */
665 st_End = stEnd, /* end (of anything) */
666 st_Member = stMember, /* member (of anything - struct/union/enum */
667 st_Typedef = stTypedef, /* type definition */
668 st_File = stFile, /* file name */
669 st_RegReloc = stRegReloc, /* register relocation */
670 st_Forward = stForward, /* forwarding address */
671 st_StaticProc = stStaticProc, /* load time only static procs */
672 st_Constant = stConstant, /* const */
673 st_Str = stStr, /* string */
674 st_Number = stNumber, /* pure number (ie. 4 NOR 2+2) */
675 st_Expr = stExpr, /* 2+2 vs. 4 */
676 st_Type = stType, /* post-coercion SER */
677 st_Max = stMax /* max type+1 */
678} st_t;
679
680/* Redefinition of type qualifiers. */
681
682typedef enum tq {
683 tq_Nil = tqNil, /* bt is what you see */
684 tq_Ptr = tqPtr, /* pointer */
685 tq_Proc = tqProc, /* procedure */
686 tq_Array = tqArray, /* duh */
687 tq_Far = tqFar, /* longer addressing - 8086/8 land */
688 tq_Vol = tqVol, /* volatile */
689 tq_Max = tqMax /* Max type qualifier+1 */
690} tq_t;
691
692/* Redefinition of basic types. */
693
694typedef enum bt {
695 bt_Nil = btNil, /* undefined */
696 bt_Adr = btAdr, /* address - integer same size as pointer */
697 bt_Char = btChar, /* character */
698 bt_UChar = btUChar, /* unsigned character */
699 bt_Short = btShort, /* short */
700 bt_UShort = btUShort, /* unsigned short */
701 bt_Int = btInt, /* int */
702 bt_UInt = btUInt, /* unsigned int */
703 bt_Long = btLong, /* long */
704 bt_ULong = btULong, /* unsigned long */
705 bt_Float = btFloat, /* float (real) */
706 bt_Double = btDouble, /* Double (real) */
707 bt_Struct = btStruct, /* Structure (Record) */
708 bt_Union = btUnion, /* Union (variant) */
709 bt_Enum = btEnum, /* Enumerated */
710 bt_Typedef = btTypedef, /* defined via a typedef, isymRef points */
711 bt_Range = btRange, /* subrange of int */
712 bt_Set = btSet, /* pascal sets */
713 bt_Complex = btComplex, /* fortran complex */
714 bt_DComplex = btDComplex, /* fortran double complex */
715 bt_Indirect = btIndirect, /* forward or unnamed typedef */
716 bt_FixedDec = btFixedDec, /* Fixed Decimal */
717 bt_FloatDec = btFloatDec, /* Float Decimal */
718 bt_String = btString, /* Varying Length Character String */
719 bt_Bit = btBit, /* Aligned Bit String */
720 bt_Picture = btPicture, /* Picture */
721 bt_Void = btVoid, /* Void */
722 bt_Max = btMax /* Max basic type+1 */
723} bt_t;
724
725#define N_TQ itqMax
726
727/* States for whether to hash type or not. */
728typedef enum hash_state {
729 hash_no = 0, /* don't hash type */
730 hash_yes = 1, /* ok to hash type, or use previous hash */
731 hash_record = 2 /* ok to record hash, but don't use prev. */
732} hash_state_t;
733
734/* Types of different sized allocation requests. */
735enum alloc_type {
736 alloc_type_none, /* dummy value */
737 alloc_type_scope, /* nested scopes linked list */
738 alloc_type_vlinks, /* glue linking pages in varray */
739 alloc_type_shash, /* string hash element */
740 alloc_type_thash, /* type hash element */
741 alloc_type_tag, /* struct/union/tag element */
742 alloc_type_forward, /* element to hold unknown tag */
743 alloc_type_thead, /* head of type hash list */
744 alloc_type_varray, /* general varray allocation */
745 alloc_type_lineno, /* line number list */
746 alloc_type_last /* last+1 element for array bounds */
747};
748
749/* Types of auxiliary type information. */
750enum aux_type {
751 aux_tir, /* TIR type information */
752 aux_rndx, /* relative index into symbol table */
753 aux_dnLow, /* low dimension */
754 aux_dnHigh, /* high dimension */
755 aux_isym, /* symbol table index (end of proc) */
756 aux_iss, /* index into string space (not used) */
757 aux_width, /* width for non-default sized struc fields */
758 aux_count /* count of ranges for variant arm */
759};
760\f
761/* Structures to provide n-number of virtual arrays, each of which can
762 grow linearly, and which are written in the object file as
763 sequential pages. On systems with a BSD malloc, the
764 MAX_CLUSTER_PAGES should be 1 less than a power of two, since
765 malloc adds it's overhead, and rounds up to the next power of 2.
766 Pages are linked together via a linked list.
767
768 If PAGE_SIZE is > 4096, the string length in the shash_t structure
769 can't be represented (assuming there are strings > 4096 bytes). */
770
771/* FIXME: Yes, there can be such strings while emitting C++ class debug
772 info. Templates are the offender here, the test case in question
773 having a mangled class name of
774
775 t7rb_tree4Z4xkeyZt4pair2ZC4xkeyZt7xsocket1Z4UserZt9select1st2Zt4pair\
776 2ZC4xkeyZt7xsocket1Z4UserZ4xkeyZt4less1Z4xkey
777
778 Repeat that a couple dozen times while listing the class members and
779 you've got strings over 4k. Hack around this for now by increasing
780 the page size. A proper solution would abandon this structure scheme
781 certainly for very large strings, and possibly entirely. */
782
783#ifndef PAGE_SIZE
784#define PAGE_SIZE (8*1024) /* size of varray pages */
785#endif
786
787#define PAGE_USIZE ((unsigned long) PAGE_SIZE)
788
789#ifndef MAX_CLUSTER_PAGES /* # pages to get from system */
790#define MAX_CLUSTER_PAGES 63
791#endif
792
793/* Linked list connecting separate page allocations. */
794typedef struct vlinks {
795 struct vlinks *prev; /* previous set of pages */
796 struct vlinks *next; /* next set of pages */
797 union page *datum; /* start of page */
798 unsigned long start_index; /* starting index # of page */
799} vlinks_t;
800
801
802/* Virtual array header. */
803typedef struct varray {
804 vlinks_t *first; /* first page link */
805 vlinks_t *last; /* last page link */
806 unsigned long num_allocated; /* # objects allocated */
807 unsigned short object_size; /* size in bytes of each object */
808 unsigned short objects_per_page; /* # objects that can fit on a page */
809 unsigned short objects_last_page; /* # objects allocated on last page */
810} varray_t;
811
812#ifndef MALLOC_CHECK
813#define OBJECTS_PER_PAGE(type) (PAGE_SIZE / sizeof (type))
814#else
815#define OBJECTS_PER_PAGE(type) ((sizeof (type) > 1) ? 1 : PAGE_SIZE)
816#endif
817
818#define INIT_VARRAY(type) { /* macro to initialize a varray */ \
819 (vlinks_t *)0, /* first */ \
820 (vlinks_t *)0, /* last */ \
821 0, /* num_allocated */ \
822 sizeof (type), /* object_size */ \
823 OBJECTS_PER_PAGE (type), /* objects_per_page */ \
824 OBJECTS_PER_PAGE (type), /* objects_last_page */ \
825}
826
827
828/* Master type for indexes within the symbol table. */
829typedef unsigned long symint_t;
830
831
832/* Linked list support for nested scopes (file, block, structure, etc.). */
833typedef struct scope {
834 struct scope *prev; /* previous scope level */
835 struct scope *free; /* free list pointer */
836 struct localsym *lsym; /* pointer to local symbol node */
837 st_t type; /* type of the node */
838} scope_t;
839
840
841/* For a local symbol we store a gas symbol as well as the debugging
842 information we generate. The gas symbol will be NULL if this is
843 only a debugging symbol. */
844typedef struct localsym {
845 const char *name; /* symbol name */
846 symbolS *as_sym; /* symbol as seen by gas */
847 bfd_vma addend; /* addend to as_sym value */
848 struct efdr *file_ptr; /* file pointer */
849 struct ecoff_proc *proc_ptr; /* proc pointer */
850 struct localsym *begin_ptr; /* symbol at start of block */
851 struct ecoff_aux *index_ptr; /* index value to be filled in */
852 struct forward *forward_ref; /* forward references to this symbol */
853 long sym_index; /* final symbol index */
854 EXTR ecoff_sym; /* ECOFF debugging symbol */
855} localsym_t;
856
857
858/* For aux information we keep the type and the data. */
859typedef struct ecoff_aux {
860 enum aux_type type; /* aux type */
861 AUXU data; /* aux data */
862} aux_t;
863
864/* For a procedure we store the gas symbol as well as the PDR
865 debugging information. */
866typedef struct ecoff_proc {
867 localsym_t *sym; /* associated symbol */
868 PDR pdr; /* ECOFF debugging info */
869} proc_t;
870
871/* Number of proc_t structures allocated. */
872static unsigned long proc_cnt;
873
874
875/* Forward reference list for tags referenced, but not yet defined. */
876typedef struct forward {
877 struct forward *next; /* next forward reference */
878 struct forward *free; /* free list pointer */
879 aux_t *ifd_ptr; /* pointer to store file index */
880 aux_t *index_ptr; /* pointer to store symbol index */
881} forward_t;
882
883
884/* Linked list support for tags. The first tag in the list is always
885 the current tag for that block. */
886typedef struct tag {
887 struct tag *free; /* free list pointer */
888 struct shash *hash_ptr; /* pointer to the hash table head */
889 struct tag *same_name; /* tag with same name in outer scope */
890 struct tag *same_block; /* next tag defined in the same block. */
891 struct forward *forward_ref; /* list of forward references */
892 bt_t basic_type; /* bt_Struct, bt_Union, or bt_Enum */
893 symint_t ifd; /* file # tag defined in */
894 localsym_t *sym; /* file's local symbols */
895} tag_t;
896
897
898/* Head of a block's linked list of tags. */
899typedef struct thead {
900 struct thead *prev; /* previous block */
901 struct thead *free; /* free list pointer */
902 struct tag *first_tag; /* first tag in block defined */
903} thead_t;
904
905
906/* Union containing pointers to each the small structures which are freed up. */
907typedef union small_free {
908 scope_t *f_scope; /* scope structure */
909 thead_t *f_thead; /* tag head structure */
910 tag_t *f_tag; /* tag element structure */
911 forward_t *f_forward; /* forward tag reference */
912} small_free_t;
913
914
915/* String hash table entry. */
916
917typedef struct shash {
918 char *string; /* string we are hashing */
919 symint_t indx; /* index within string table */
920 EXTR *esym_ptr; /* global symbol pointer */
921 localsym_t *sym_ptr; /* local symbol pointer */
922 localsym_t *end_ptr; /* symbol pointer to end block */
923 tag_t *tag_ptr; /* tag pointer */
924 proc_t *proc_ptr; /* procedure descriptor pointer */
925} shash_t;
926
927
928/* Type hash table support. The size of the hash table must fit
929 within a page with the other extended file descriptor information.
930 Because unique types which are hashed are fewer in number than
931 strings, we use a smaller hash value. */
932
933#define HASHBITS 30
934
935#ifndef THASH_SIZE
936#define THASH_SIZE 113
937#endif
938
939typedef struct thash {
940 struct thash *next; /* next hash value */
941 AUXU type; /* type we are hashing */
942 symint_t indx; /* index within string table */
943} thash_t;
944
945
946/* Extended file descriptor that contains all of the support necessary
947 to add things to each file separately. */
948typedef struct efdr {
949 FDR fdr; /* File header to be written out */
950 FDR *orig_fdr; /* original file header */
951 char *name; /* filename */
952 int fake; /* whether this is faked .file */
953 symint_t void_type; /* aux. pointer to 'void' type */
954 symint_t int_type; /* aux. pointer to 'int' type */
955 scope_t *cur_scope; /* current nested scopes */
956 symint_t file_index; /* current file number */
957 int nested_scopes; /* # nested scopes */
958 varray_t strings; /* local strings */
959 varray_t symbols; /* local symbols */
960 varray_t procs; /* procedures */
961 varray_t aux_syms; /* auxiliary symbols */
962 struct efdr *next_file; /* next file descriptor */
963 /* string/type hash tables */
964 struct hash_control *str_hash; /* string hash table */
965 thash_t *thash_head[THASH_SIZE];
966} efdr_t;
967
968/* Pre-initialized extended file structure. */
969static const efdr_t init_file =
970{
971 { /* FDR structure */
972 0, /* adr: memory address of beginning of file */
973 0, /* rss: file name (of source, if known) */
974 0, /* issBase: file's string space */
975 0, /* cbSs: number of bytes in the ss */
976 0, /* isymBase: beginning of symbols */
977 0, /* csym: count file's of symbols */
978 0, /* ilineBase: file's line symbols */
979 0, /* cline: count of file's line symbols */
980 0, /* ioptBase: file's optimization entries */
981 0, /* copt: count of file's optimization entries */
982 0, /* ipdFirst: start of procedures for this file */
983 0, /* cpd: count of procedures for this file */
984 0, /* iauxBase: file's auxiliary entries */
985 0, /* caux: count of file's auxiliary entries */
986 0, /* rfdBase: index into the file indirect table */
987 0, /* crfd: count file indirect entries */
988 langC, /* lang: language for this file */
989 1, /* fMerge: whether this file can be merged */
990 0, /* fReadin: true if read in (not just created) */
991 TARGET_BYTES_BIG_ENDIAN, /* fBigendian: if 1, compiled on big endian machine */
992 GLEVEL_2, /* glevel: level this file was compiled with */
993 0, /* reserved: reserved for future use */
994 0, /* cbLineOffset: byte offset from header for this file ln's */
995 0, /* cbLine: size of lines for this file */
996 },
997
998 (FDR *)0, /* orig_fdr: original file header pointer */
999 (char *)0, /* name: pointer to filename */
1000 0, /* fake: whether this is a faked .file */
1001 0, /* void_type: ptr to aux node for void type */
1002 0, /* int_type: ptr to aux node for int type */
1003 (scope_t *)0, /* cur_scope: current scope being processed */
1004 0, /* file_index: current file # */
1005 0, /* nested_scopes: # nested scopes */
1006 INIT_VARRAY (char), /* strings: local string varray */
1007 INIT_VARRAY (localsym_t), /* symbols: local symbols varray */
1008 INIT_VARRAY (proc_t), /* procs: procedure varray */
1009 INIT_VARRAY (aux_t), /* aux_syms: auxiliary symbols varray */
1010
1011 (struct efdr *)0, /* next_file: next file structure */
1012
1013 (struct hash_control *)0, /* str_hash: string hash table */
1014 { 0 }, /* thash_head: type hash table */
1015};
1016
1017
1018static efdr_t *first_file; /* first file descriptor */
1019static efdr_t **last_file_ptr = &first_file; /* file descriptor tail */
1020
1021
1022/* Line number information is kept in a list until the assembly is
1023 finished. */
1024typedef struct lineno_list {
1025 struct lineno_list *next; /* next element in list */
1026 efdr_t *file; /* file this line is in */
1027 proc_t *proc; /* procedure this line is in */
1028 fragS *frag; /* fragment this line number is in */
1029 unsigned long paddr; /* offset within fragment */
1030 long lineno; /* actual line number */
1031} lineno_list_t;
1032
1033static lineno_list_t *first_lineno;
1034static lineno_list_t *last_lineno;
1035static lineno_list_t **last_lineno_ptr = &first_lineno;
1036
1037/* Sometimes there will be some .loc statements before a .ent. We
1038 keep them in this list so that we can fill in the procedure pointer
1039 after we see the .ent. */
1040static lineno_list_t *noproc_lineno;
1041
1042/* Union of various things that are held in pages. */
1043typedef union page {
1044 char byte [ PAGE_SIZE ];
1045 unsigned char ubyte [ PAGE_SIZE ];
1046 efdr_t file [ PAGE_SIZE / sizeof (efdr_t) ];
1047 FDR ofile [ PAGE_SIZE / sizeof (FDR) ];
1048 proc_t proc [ PAGE_SIZE / sizeof (proc_t) ];
1049 localsym_t sym [ PAGE_SIZE / sizeof (localsym_t) ];
1050 aux_t aux [ PAGE_SIZE / sizeof (aux_t) ];
1051 DNR dense [ PAGE_SIZE / sizeof (DNR) ];
1052 scope_t scope [ PAGE_SIZE / sizeof (scope_t) ];
1053 vlinks_t vlinks [ PAGE_SIZE / sizeof (vlinks_t) ];
1054 shash_t shash [ PAGE_SIZE / sizeof (shash_t) ];
1055 thash_t thash [ PAGE_SIZE / sizeof (thash_t) ];
1056 tag_t tag [ PAGE_SIZE / sizeof (tag_t) ];
1057 forward_t forward [ PAGE_SIZE / sizeof (forward_t) ];
1058 thead_t thead [ PAGE_SIZE / sizeof (thead_t) ];
1059 lineno_list_t lineno [ PAGE_SIZE / sizeof (lineno_list_t) ];
1060} page_type;
1061
1062
1063/* Structure holding allocation information for small sized structures. */
1064typedef struct alloc_info {
1065 char *alloc_name; /* name of this allocation type (must be first) */
1066 page_type *cur_page; /* current page being allocated from */
1067 small_free_t free_list; /* current free list if any */
1068 int unallocated; /* number of elements unallocated on page */
1069 int total_alloc; /* total number of allocations */
1070 int total_free; /* total number of frees */
1071 int total_pages; /* total number of pages allocated */
1072} alloc_info_t;
1073
1074
1075/* Type information collected together. */
1076typedef struct type_info {
1077 bt_t basic_type; /* basic type */
1078 int orig_type; /* original COFF-based type */
1079 int num_tq; /* # type qualifiers */
1080 int num_dims; /* # dimensions */
1081 int num_sizes; /* # sizes */
1082 int extra_sizes; /* # extra sizes not tied with dims */
1083 tag_t * tag_ptr; /* tag pointer */
1084 int bitfield; /* symbol is a bitfield */
1085 tq_t type_qualifiers[N_TQ]; /* type qualifiers (ptr, func, array)*/
1086 symint_t dimensions [N_TQ]; /* dimensions for each array */
1087 symint_t sizes [N_TQ+2]; /* sizes of each array slice + size of
1088 struct/union/enum + bitfield size */
1089} type_info_t;
1090
1091/* Pre-initialized type_info struct. */
1092static const type_info_t type_info_init = {
1093 bt_Nil, /* basic type */
1094 T_NULL, /* original COFF-based type */
1095 0, /* # type qualifiers */
1096 0, /* # dimensions */
1097 0, /* # sizes */
1098 0, /* sizes not tied with dims */
1099 NULL, /* ptr to tag */
1100 0, /* bitfield */
1101 { /* type qualifiers */
1102 tq_Nil,
1103 tq_Nil,
1104 tq_Nil,
1105 tq_Nil,
1106 tq_Nil,
1107 tq_Nil,
1108 },
1109 { /* dimensions */
1110 0,
1111 0,
1112 0,
1113 0,
1114 0,
1115 0
1116 },
1117 { /* sizes */
1118 0,
1119 0,
1120 0,
1121 0,
1122 0,
1123 0,
1124 0,
1125 0,
1126 },
1127};
1128
1129/* Global hash table for the tags table and global table for file
1130 descriptors. */
1131
1132static varray_t file_desc = INIT_VARRAY (efdr_t);
1133
1134static struct hash_control *tag_hash;
1135
1136/* Static types for int and void. Also, remember the last function's
1137 type (which is set up when we encounter the declaration for the
1138 function, and used when the end block for the function is emitted. */
1139
1140static type_info_t int_type_info;
1141static type_info_t void_type_info;
1142static type_info_t last_func_type_info;
1143static symbolS *last_func_sym_value;
1144
1145
1146/* Convert COFF basic type to ECOFF basic type. The T_NULL type
1147 really should use bt_Void, but this causes the current ecoff GDB to
1148 issue unsupported type messages, and the Ultrix 4.00 dbx (aka MIPS
1149 2.0) doesn't understand it, even though the compiler generates it.
1150 Maybe this will be fixed in 2.10 or 2.20 of the MIPS compiler
1151 suite, but for now go with what works.
1152
1153 It would make sense for the .type and .scl directives to use the
1154 ECOFF numbers directly, rather than using the COFF numbers and
1155 mapping them. Unfortunately, this is historically what mips-tfile
1156 expects, and changing gcc now would be a considerable pain (the
1157 native compiler generates debugging information internally, rather
1158 than via the assembler, so it will never use .type or .scl). */
1159
1160static const bt_t map_coff_types[] = {
1161 bt_Nil, /* T_NULL */
1162 bt_Nil, /* T_ARG */
1163 bt_Char, /* T_CHAR */
1164 bt_Short, /* T_SHORT */
1165 bt_Int, /* T_INT */
1166 bt_Long, /* T_LONG */
1167 bt_Float, /* T_FLOAT */
1168 bt_Double, /* T_DOUBLE */
1169 bt_Struct, /* T_STRUCT */
1170 bt_Union, /* T_UNION */
1171 bt_Enum, /* T_ENUM */
1172 bt_Enum, /* T_MOE */
1173 bt_UChar, /* T_UCHAR */
1174 bt_UShort, /* T_USHORT */
1175 bt_UInt, /* T_UINT */
1176 bt_ULong /* T_ULONG */
1177};
1178
1179/* Convert COFF storage class to ECOFF storage class. */
1180static const sc_t map_coff_storage[] = {
1181 sc_Nil, /* 0: C_NULL */
1182 sc_Abs, /* 1: C_AUTO auto var */
1183 sc_Undefined, /* 2: C_EXT external */
1184 sc_Data, /* 3: C_STAT static */
1185 sc_Register, /* 4: C_REG register */
1186 sc_Undefined, /* 5: C_EXTDEF ??? */
1187 sc_Text, /* 6: C_LABEL label */
1188 sc_Text, /* 7: C_ULABEL user label */
1189 sc_Info, /* 8: C_MOS member of struct */
1190 sc_Abs, /* 9: C_ARG argument */
1191 sc_Info, /* 10: C_STRTAG struct tag */
1192 sc_Info, /* 11: C_MOU member of union */
1193 sc_Info, /* 12: C_UNTAG union tag */
1194 sc_Info, /* 13: C_TPDEF typedef */
1195 sc_Data, /* 14: C_USTATIC ??? */
1196 sc_Info, /* 15: C_ENTAG enum tag */
1197 sc_Info, /* 16: C_MOE member of enum */
1198 sc_Register, /* 17: C_REGPARM register parameter */
1199 sc_Bits, /* 18; C_FIELD bitfield */
1200 sc_Nil, /* 19 */
1201 sc_Nil, /* 20 */
1202 sc_Nil, /* 21 */
1203 sc_Nil, /* 22 */
1204 sc_Nil, /* 23 */
1205 sc_Nil, /* 24 */
1206 sc_Nil, /* 25 */
1207 sc_Nil, /* 26 */
1208 sc_Nil, /* 27 */
1209 sc_Nil, /* 28 */
1210 sc_Nil, /* 29 */
1211 sc_Nil, /* 30 */
1212 sc_Nil, /* 31 */
1213 sc_Nil, /* 32 */
1214 sc_Nil, /* 33 */
1215 sc_Nil, /* 34 */
1216 sc_Nil, /* 35 */
1217 sc_Nil, /* 36 */
1218 sc_Nil, /* 37 */
1219 sc_Nil, /* 38 */
1220 sc_Nil, /* 39 */
1221 sc_Nil, /* 40 */
1222 sc_Nil, /* 41 */
1223 sc_Nil, /* 42 */
1224 sc_Nil, /* 43 */
1225 sc_Nil, /* 44 */
1226 sc_Nil, /* 45 */
1227 sc_Nil, /* 46 */
1228 sc_Nil, /* 47 */
1229 sc_Nil, /* 48 */
1230 sc_Nil, /* 49 */
1231 sc_Nil, /* 50 */
1232 sc_Nil, /* 51 */
1233 sc_Nil, /* 52 */
1234 sc_Nil, /* 53 */
1235 sc_Nil, /* 54 */
1236 sc_Nil, /* 55 */
1237 sc_Nil, /* 56 */
1238 sc_Nil, /* 57 */
1239 sc_Nil, /* 58 */
1240 sc_Nil, /* 59 */
1241 sc_Nil, /* 60 */
1242 sc_Nil, /* 61 */
1243 sc_Nil, /* 62 */
1244 sc_Nil, /* 63 */
1245 sc_Nil, /* 64 */
1246 sc_Nil, /* 65 */
1247 sc_Nil, /* 66 */
1248 sc_Nil, /* 67 */
1249 sc_Nil, /* 68 */
1250 sc_Nil, /* 69 */
1251 sc_Nil, /* 70 */
1252 sc_Nil, /* 71 */
1253 sc_Nil, /* 72 */
1254 sc_Nil, /* 73 */
1255 sc_Nil, /* 74 */
1256 sc_Nil, /* 75 */
1257 sc_Nil, /* 76 */
1258 sc_Nil, /* 77 */
1259 sc_Nil, /* 78 */
1260 sc_Nil, /* 79 */
1261 sc_Nil, /* 80 */
1262 sc_Nil, /* 81 */
1263 sc_Nil, /* 82 */
1264 sc_Nil, /* 83 */
1265 sc_Nil, /* 84 */
1266 sc_Nil, /* 85 */
1267 sc_Nil, /* 86 */
1268 sc_Nil, /* 87 */
1269 sc_Nil, /* 88 */
1270 sc_Nil, /* 89 */
1271 sc_Nil, /* 90 */
1272 sc_Nil, /* 91 */
1273 sc_Nil, /* 92 */
1274 sc_Nil, /* 93 */
1275 sc_Nil, /* 94 */
1276 sc_Nil, /* 95 */
1277 sc_Nil, /* 96 */
1278 sc_Nil, /* 97 */
1279 sc_Nil, /* 98 */
1280 sc_Nil, /* 99 */
1281 sc_Text, /* 100: C_BLOCK block start/end */
1282 sc_Text, /* 101: C_FCN function start/end */
1283 sc_Info, /* 102: C_EOS end of struct/union/enum */
1284 sc_Nil, /* 103: C_FILE file start */
1285 sc_Nil, /* 104: C_LINE line number */
1286 sc_Nil, /* 105: C_ALIAS combined type info */
1287 sc_Nil, /* 106: C_HIDDEN ??? */
1288};
1289
1290/* Convert COFF storage class to ECOFF symbol type. */
1291static const st_t map_coff_sym_type[] = {
1292 st_Nil, /* 0: C_NULL */
1293 st_Local, /* 1: C_AUTO auto var */
1294 st_Global, /* 2: C_EXT external */
1295 st_Static, /* 3: C_STAT static */
1296 st_Local, /* 4: C_REG register */
1297 st_Global, /* 5: C_EXTDEF ??? */
1298 st_Label, /* 6: C_LABEL label */
1299 st_Label, /* 7: C_ULABEL user label */
1300 st_Member, /* 8: C_MOS member of struct */
1301 st_Param, /* 9: C_ARG argument */
1302 st_Block, /* 10: C_STRTAG struct tag */
1303 st_Member, /* 11: C_MOU member of union */
1304 st_Block, /* 12: C_UNTAG union tag */
1305 st_Typedef, /* 13: C_TPDEF typedef */
1306 st_Static, /* 14: C_USTATIC ??? */
1307 st_Block, /* 15: C_ENTAG enum tag */
1308 st_Member, /* 16: C_MOE member of enum */
1309 st_Param, /* 17: C_REGPARM register parameter */
1310 st_Member, /* 18; C_FIELD bitfield */
1311 st_Nil, /* 19 */
1312 st_Nil, /* 20 */
1313 st_Nil, /* 21 */
1314 st_Nil, /* 22 */
1315 st_Nil, /* 23 */
1316 st_Nil, /* 24 */
1317 st_Nil, /* 25 */
1318 st_Nil, /* 26 */
1319 st_Nil, /* 27 */
1320 st_Nil, /* 28 */
1321 st_Nil, /* 29 */
1322 st_Nil, /* 30 */
1323 st_Nil, /* 31 */
1324 st_Nil, /* 32 */
1325 st_Nil, /* 33 */
1326 st_Nil, /* 34 */
1327 st_Nil, /* 35 */
1328 st_Nil, /* 36 */
1329 st_Nil, /* 37 */
1330 st_Nil, /* 38 */
1331 st_Nil, /* 39 */
1332 st_Nil, /* 40 */
1333 st_Nil, /* 41 */
1334 st_Nil, /* 42 */
1335 st_Nil, /* 43 */
1336 st_Nil, /* 44 */
1337 st_Nil, /* 45 */
1338 st_Nil, /* 46 */
1339 st_Nil, /* 47 */
1340 st_Nil, /* 48 */
1341 st_Nil, /* 49 */
1342 st_Nil, /* 50 */
1343 st_Nil, /* 51 */
1344 st_Nil, /* 52 */
1345 st_Nil, /* 53 */
1346 st_Nil, /* 54 */
1347 st_Nil, /* 55 */
1348 st_Nil, /* 56 */
1349 st_Nil, /* 57 */
1350 st_Nil, /* 58 */
1351 st_Nil, /* 59 */
1352 st_Nil, /* 60 */
1353 st_Nil, /* 61 */
1354 st_Nil, /* 62 */
1355 st_Nil, /* 63 */
1356 st_Nil, /* 64 */
1357 st_Nil, /* 65 */
1358 st_Nil, /* 66 */
1359 st_Nil, /* 67 */
1360 st_Nil, /* 68 */
1361 st_Nil, /* 69 */
1362 st_Nil, /* 70 */
1363 st_Nil, /* 71 */
1364 st_Nil, /* 72 */
1365 st_Nil, /* 73 */
1366 st_Nil, /* 74 */
1367 st_Nil, /* 75 */
1368 st_Nil, /* 76 */
1369 st_Nil, /* 77 */
1370 st_Nil, /* 78 */
1371 st_Nil, /* 79 */
1372 st_Nil, /* 80 */
1373 st_Nil, /* 81 */
1374 st_Nil, /* 82 */
1375 st_Nil, /* 83 */
1376 st_Nil, /* 84 */
1377 st_Nil, /* 85 */
1378 st_Nil, /* 86 */
1379 st_Nil, /* 87 */
1380 st_Nil, /* 88 */
1381 st_Nil, /* 89 */
1382 st_Nil, /* 90 */
1383 st_Nil, /* 91 */
1384 st_Nil, /* 92 */
1385 st_Nil, /* 93 */
1386 st_Nil, /* 94 */
1387 st_Nil, /* 95 */
1388 st_Nil, /* 96 */
1389 st_Nil, /* 97 */
1390 st_Nil, /* 98 */
1391 st_Nil, /* 99 */
1392 st_Block, /* 100: C_BLOCK block start/end */
1393 st_Proc, /* 101: C_FCN function start/end */
1394 st_End, /* 102: C_EOS end of struct/union/enum */
1395 st_File, /* 103: C_FILE file start */
1396 st_Nil, /* 104: C_LINE line number */
1397 st_Nil, /* 105: C_ALIAS combined type info */
1398 st_Nil, /* 106: C_HIDDEN ??? */
1399};
1400
1401
1402/* Keep track of different sized allocation requests. */
1403static alloc_info_t alloc_counts[ (int)alloc_type_last ];
1404\f
1405/* Record whether we have seen any debugging information. */
1406int ecoff_debugging_seen = 0;
1407
1408/* Various statics. */
1409static efdr_t *cur_file_ptr = (efdr_t *) 0; /* current file desc. header */
1410static proc_t *cur_proc_ptr = (proc_t *) 0; /* current procedure header */
1411static proc_t *first_proc_ptr = (proc_t *) 0; /* first procedure header */
1412static thead_t *top_tag_head = (thead_t *) 0; /* top level tag head */
1413static thead_t *cur_tag_head = (thead_t *) 0; /* current tag head */
1414#ifdef ECOFF_DEBUG
1415static int debug = 0; /* trace functions */
1416#endif
1417static int stabs_seen = 0; /* != 0 if stabs have been seen */
1418
1419static int current_file_idx;
1420static const char *current_stabs_filename;
1421
1422/* Pseudo symbol to use when putting stabs into the symbol table. */
1423#ifndef STABS_SYMBOL
1424#define STABS_SYMBOL "@stabs"
1425#endif
1426
1427static char stabs_symbol[] = STABS_SYMBOL;
1428\f
1429/* Prototypes for functions defined in this file. */
1430
1431static void add_varray_page PARAMS ((varray_t *vp));
1432static symint_t add_string PARAMS ((varray_t *vp,
1433 struct hash_control *hash_tbl,
1434 const char *str,
1435 shash_t **ret_hash));
1436static localsym_t *add_ecoff_symbol PARAMS ((const char *str, st_t type,
1437 sc_t storage, symbolS *sym,
1438 bfd_vma addend, symint_t value,
1439 symint_t indx));
1440static symint_t add_aux_sym_symint PARAMS ((symint_t aux_word));
1441static symint_t add_aux_sym_rndx PARAMS ((int file_index,
1442 symint_t sym_index));
1443static symint_t add_aux_sym_tir PARAMS ((type_info_t *t,
1444 hash_state_t state,
1445 thash_t **hash_tbl));
1446static tag_t *get_tag PARAMS ((const char *tag, localsym_t *sym,
1447 bt_t basic_type));
1448static void add_unknown_tag PARAMS ((tag_t *ptag));
1449static void add_procedure PARAMS ((char *func));
1450static void add_file PARAMS ((const char *file_name, int indx, int fake));
1451#ifdef ECOFF_DEBUG
1452static char *sc_to_string PARAMS ((sc_t storage_class));
1453static char *st_to_string PARAMS ((st_t symbol_type));
1454#endif
1455static void mark_stabs PARAMS ((int));
1456static char *ecoff_add_bytes PARAMS ((char **buf, char **bufend,
1457 char *bufptr, unsigned long need));
1458static unsigned long ecoff_padding_adjust
1459 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1460 unsigned long offset, char **bufptrptr));
1461static unsigned long ecoff_build_lineno
1462 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1463 unsigned long offset, long *linecntptr));
1464static unsigned long ecoff_build_symbols
1465 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1466 unsigned long offset));
1467static unsigned long ecoff_build_procs
1468 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1469 unsigned long offset));
1470static unsigned long ecoff_build_aux
1471 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1472 unsigned long offset));
1473static unsigned long ecoff_build_strings PARAMS ((char **buf, char **bufend,
1474 unsigned long offset,
1475 varray_t *vp));
1476static unsigned long ecoff_build_ss
1477 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1478 unsigned long offset));
1479static unsigned long ecoff_build_fdr
1480 PARAMS ((const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1481 unsigned long offset));
1482static void ecoff_setup_ext PARAMS ((void));
1483static page_type *allocate_cluster PARAMS ((unsigned long npages));
1484static page_type *allocate_page PARAMS ((void));
1485static scope_t *allocate_scope PARAMS ((void));
1486static void free_scope PARAMS ((scope_t *ptr));
1487static vlinks_t *allocate_vlinks PARAMS ((void));
1488static shash_t *allocate_shash PARAMS ((void));
1489static thash_t *allocate_thash PARAMS ((void));
1490static tag_t *allocate_tag PARAMS ((void));
1491static void free_tag PARAMS ((tag_t *ptr));
1492static forward_t *allocate_forward PARAMS ((void));
1493static thead_t *allocate_thead PARAMS ((void));
1494static void free_thead PARAMS ((thead_t *ptr));
1495static lineno_list_t *allocate_lineno_list PARAMS ((void));
1496\f
1497/* This function should be called when the assembler starts up. */
1498
1499void
1500ecoff_read_begin_hook ()
1501{
1502 tag_hash = hash_new ();
1503 top_tag_head = allocate_thead ();
1504 top_tag_head->first_tag = (tag_t *) NULL;
1505 top_tag_head->free = (thead_t *) NULL;
1506 top_tag_head->prev = cur_tag_head;
1507 cur_tag_head = top_tag_head;
1508}
1509
1510/* This function should be called when a symbol is created. */
1511
1512void
1513ecoff_symbol_new_hook (symbolP)
1514 symbolS *symbolP;
1515{
49309057
ILT
1516 OBJ_SYMFIELD_TYPE *obj;
1517
252b5132
RH
1518 /* Make sure that we have a file pointer, but only if we have seen a
1519 file. If we haven't seen a file, then this is a probably special
1520 symbol created by md_begin which may required special handling at
1521 some point. Creating a dummy file with a dummy name is certainly
1522 wrong. */
1523 if (cur_file_ptr == (efdr_t *) NULL
1524 && seen_at_least_1_file ())
1525 add_file ((const char *) NULL, 0, 1);
49309057
ILT
1526 obj = symbol_get_obj (symbolP);
1527 obj->ecoff_file = cur_file_ptr;
1528 obj->ecoff_symbol = NULL;
1529 obj->ecoff_extern_size = 0;
252b5132
RH
1530}
1531\f
1532/* Add a page to a varray object. */
1533
1534static void
1535add_varray_page (vp)
1536 varray_t *vp; /* varray to add page to */
1537{
1538 vlinks_t *new_links = allocate_vlinks ();
1539
1540#ifdef MALLOC_CHECK
1541 if (vp->object_size > 1)
1542 new_links->datum = (page_type *) xcalloc (1, vp->object_size);
1543 else
1544#endif
1545 new_links->datum = allocate_page ();
1546
1547 alloc_counts[(int)alloc_type_varray].total_alloc++;
1548 alloc_counts[(int)alloc_type_varray].total_pages++;
1549
1550 new_links->start_index = vp->num_allocated;
1551 vp->objects_last_page = 0;
1552
1553 if (vp->first == (vlinks_t *) NULL) /* first allocation? */
1554 vp->first = vp->last = new_links;
1555 else
1556 { /* 2nd or greater allocation */
1557 new_links->prev = vp->last;
1558 vp->last->next = new_links;
1559 vp->last = new_links;
1560 }
1561}
1562\f
1563/* Add a string (and null pad) to one of the string tables. */
1564
1565static symint_t
1566add_string (vp, hash_tbl, str, ret_hash)
1567 varray_t *vp; /* string obstack */
1568 struct hash_control *hash_tbl; /* ptr to hash table */
1569 const char *str; /* string */
1570 shash_t **ret_hash; /* return hash pointer */
1571{
1572 register unsigned long len = strlen (str);
1573 register shash_t *hash_ptr;
1574
1575 if (len >= PAGE_USIZE)
1576 as_fatal (_("String too big (%lu bytes)"), len);
1577
1578 hash_ptr = (shash_t *) hash_find (hash_tbl, str);
1579 if (hash_ptr == (shash_t *) NULL)
1580 {
1581 register const char *err;
1582
1583 if (vp->objects_last_page + len >= PAGE_USIZE)
1584 {
1585 vp->num_allocated =
1586 ((vp->num_allocated + PAGE_USIZE - 1) / PAGE_USIZE) * PAGE_USIZE;
1587 add_varray_page (vp);
1588 }
1589
1590 hash_ptr = allocate_shash ();
1591 hash_ptr->indx = vp->num_allocated;
1592
1593 hash_ptr->string = &vp->last->datum->byte[vp->objects_last_page];
1594
1595 vp->objects_last_page += len + 1;
1596 vp->num_allocated += len + 1;
1597
1598 strcpy (hash_ptr->string, str);
1599
1600 err = hash_insert (hash_tbl, str, (char *) hash_ptr);
1601 if (err)
1602 as_fatal (_("Inserting \"%s\" into string hash table: %s"),
1603 str, err);
1604 }
1605
1606 if (ret_hash != (shash_t **) NULL)
1607 *ret_hash = hash_ptr;
1608
1609 return hash_ptr->indx;
1610}
1611\f
1612/* Add debugging information for a symbol. */
1613
1614static localsym_t *
1615add_ecoff_symbol (str, type, storage, sym_value, addend, value, indx)
1616 const char *str; /* symbol name */
1617 st_t type; /* symbol type */
1618 sc_t storage; /* storage class */
1619 symbolS *sym_value; /* associated symbol. */
1620 bfd_vma addend; /* addend to sym_value. */
1621 symint_t value; /* value of symbol */
1622 symint_t indx; /* index to local/aux. syms */
1623{
1624 localsym_t *psym;
1625 register scope_t *pscope;
1626 register thead_t *ptag_head;
1627 register tag_t *ptag;
1628 register tag_t *ptag_next;
1629 register varray_t *vp;
1630 register int scope_delta = 0;
1631 shash_t *hash_ptr = (shash_t *) NULL;
1632
1633 if (cur_file_ptr == (efdr_t *) NULL)
1634 as_fatal (_("no current file pointer"));
1635
1636 vp = &cur_file_ptr->symbols;
1637
1638 if (vp->objects_last_page == vp->objects_per_page)
1639 add_varray_page (vp);
1640
1641 psym = &vp->last->datum->sym[ vp->objects_last_page++ ];
1642
1643 if (str == (const char *) NULL && sym_value != (symbolS *) NULL)
1644 psym->name = S_GET_NAME (sym_value);
1645 else
1646 psym->name = str;
1647 psym->as_sym = sym_value;
1648 if (sym_value != (symbolS *) NULL)
49309057 1649 symbol_get_obj (sym_value)->ecoff_symbol = psym;
252b5132
RH
1650 psym->addend = addend;
1651 psym->file_ptr = cur_file_ptr;
1652 psym->proc_ptr = cur_proc_ptr;
1653 psym->begin_ptr = (localsym_t *) NULL;
1654 psym->index_ptr = (aux_t *) NULL;
1655 psym->forward_ref = (forward_t *) NULL;
1656 psym->sym_index = -1;
1657 memset (&psym->ecoff_sym, 0, sizeof (EXTR));
1658 psym->ecoff_sym.asym.value = value;
1659 psym->ecoff_sym.asym.st = (unsigned) type;
1660 psym->ecoff_sym.asym.sc = (unsigned) storage;
1661 psym->ecoff_sym.asym.index = indx;
1662
1663 /* If there is an associated symbol, we wait until the end of the
1664 assembly before deciding where to put the name (it may be just an
1665 external symbol). Otherwise, this is just a debugging symbol and
1666 the name should go with the current file. */
1667 if (sym_value == (symbolS *) NULL)
1668 psym->ecoff_sym.asym.iss = ((str == (const char *) NULL)
1669 ? 0
1670 : add_string (&cur_file_ptr->strings,
1671 cur_file_ptr->str_hash,
1672 str,
1673 &hash_ptr));
1674
1675 ++vp->num_allocated;
1676
1677 if (ECOFF_IS_STAB (&psym->ecoff_sym.asym))
1678 return psym;
1679
1680 /* Save the symbol within the hash table if this is a static
1681 item, and it has a name. */
1682 if (hash_ptr != (shash_t *) NULL
1683 && (type == st_Global || type == st_Static || type == st_Label
1684 || type == st_Proc || type == st_StaticProc))
1685 hash_ptr->sym_ptr = psym;
1686
1687 /* push or pop a scope if appropriate. */
1688 switch (type)
1689 {
1690 default:
1691 break;
1692
1693 case st_File: /* beginning of file */
1694 case st_Proc: /* procedure */
1695 case st_StaticProc: /* static procedure */
1696 case st_Block: /* begin scope */
1697 pscope = allocate_scope ();
1698 pscope->prev = cur_file_ptr->cur_scope;
1699 pscope->lsym = psym;
1700 pscope->type = type;
1701 cur_file_ptr->cur_scope = pscope;
1702
1703 if (type != st_File)
1704 scope_delta = 1;
1705
1706 /* For every block type except file, struct, union, or
1707 enumeration blocks, push a level on the tag stack. We omit
1708 file types, so that tags can span file boundaries. */
1709 if (type != st_File && storage != sc_Info)
1710 {
1711 ptag_head = allocate_thead ();
1712 ptag_head->first_tag = 0;
1713 ptag_head->prev = cur_tag_head;
1714 cur_tag_head = ptag_head;
1715 }
1716 break;
1717
1718 case st_End:
1719 pscope = cur_file_ptr->cur_scope;
1720 if (pscope == (scope_t *) NULL)
1721 as_fatal (_("too many st_End's"));
1722 else
1723 {
1724 st_t begin_type = (st_t) pscope->lsym->ecoff_sym.asym.st;
1725
1726 psym->begin_ptr = pscope->lsym;
1727
1728 if (begin_type != st_File)
1729 scope_delta = -1;
1730
1731 /* Except for file, structure, union, or enumeration end
1732 blocks remove all tags created within this scope. */
1733 if (begin_type != st_File && storage != sc_Info)
1734 {
1735 ptag_head = cur_tag_head;
1736 cur_tag_head = ptag_head->prev;
1737
1738 for (ptag = ptag_head->first_tag;
1739 ptag != (tag_t *) NULL;
1740 ptag = ptag_next)
1741 {
1742 if (ptag->forward_ref != (forward_t *) NULL)
1743 add_unknown_tag (ptag);
1744
1745 ptag_next = ptag->same_block;
1746 ptag->hash_ptr->tag_ptr = ptag->same_name;
1747 free_tag (ptag);
1748 }
1749
1750 free_thead (ptag_head);
1751 }
1752
1753 cur_file_ptr->cur_scope = pscope->prev;
1754
1755 /* block begin gets next sym #. This is set when we know
1756 the symbol index value. */
1757
1758 /* Functions push two or more aux words as follows:
1759 1st word: index+1 of the end symbol (filled in later).
1760 2nd word: type of the function (plus any aux words needed).
1761 Also, tie the external pointer back to the function begin symbol. */
1762 if (begin_type != st_File && begin_type != st_Block)
1763 {
1764 symint_t ty;
1765 varray_t *svp = &cur_file_ptr->aux_syms;
1766
1767 pscope->lsym->ecoff_sym.asym.index = add_aux_sym_symint (0);
1768 pscope->lsym->index_ptr =
1769 &svp->last->datum->aux[svp->objects_last_page - 1];
1770 ty = add_aux_sym_tir (&last_func_type_info,
1771 hash_no,
1772 &cur_file_ptr->thash_head[0]);
1773
1774/* This seems to be unnecessary. I'm not even sure what it is
1775 * intended to do. It's from mips-tfile.
1776 * if (last_func_sym_value != (symbolS *) NULL)
1777 * {
1778 * last_func_sym_value->ifd = cur_file_ptr->file_index;
1779 * last_func_sym_value->index = ty;
1780 * }
1781 */
1782 }
1783
1784 free_scope (pscope);
1785 }
1786 }
1787
1788 cur_file_ptr->nested_scopes += scope_delta;
1789
1790#ifdef ECOFF_DEBUG
1791 if (debug && type != st_File
1792 && (debug > 2 || type == st_Block || type == st_End
1793 || type == st_Proc || type == st_StaticProc))
1794 {
1795 char *sc_str = sc_to_string (storage);
1796 char *st_str = st_to_string (type);
1797 int depth = cur_file_ptr->nested_scopes + (scope_delta < 0);
1798
1799 fprintf (stderr,
1800 "\tlsym\tv= %10ld, depth= %2d, sc= %-12s",
1801 value, depth, sc_str);
1802
1803 if (str_start && str_end_p1 - str_start > 0)
1804 fprintf (stderr, " st= %-11s name= %.*s\n", st_str, str_end_p1 - str_start, str_start);
1805 else
1806 {
1807 unsigned long len = strlen (st_str);
1808 fprintf (stderr, " st= %.*s\n", len-1, st_str);
1809 }
1810 }
1811#endif
1812
1813 return psym;
1814}
1815\f
1816/* Add an auxiliary symbol (passing a symint). This is actually used
1817 for integral aux types, not just symints. */
1818
1819static symint_t
1820add_aux_sym_symint (aux_word)
1821 symint_t aux_word; /* auxiliary information word */
1822{
1823 register varray_t *vp;
1824 register aux_t *aux_ptr;
1825
1826 if (cur_file_ptr == (efdr_t *) NULL)
1827 as_fatal (_("no current file pointer"));
1828
1829 vp = &cur_file_ptr->aux_syms;
1830
1831 if (vp->objects_last_page == vp->objects_per_page)
1832 add_varray_page (vp);
1833
1834 aux_ptr = &vp->last->datum->aux[vp->objects_last_page++];
1835 aux_ptr->type = aux_isym;
1836 aux_ptr->data.isym = aux_word;
1837
1838 return vp->num_allocated++;
1839}
1840
1841
1842/* Add an auxiliary symbol (passing a file/symbol index combo). */
1843
1844static symint_t
1845add_aux_sym_rndx (file_index, sym_index)
1846 int file_index;
1847 symint_t sym_index;
1848{
1849 register varray_t *vp;
1850 register aux_t *aux_ptr;
1851
1852 if (cur_file_ptr == (efdr_t *) NULL)
1853 as_fatal (_("no current file pointer"));
1854
1855 vp = &cur_file_ptr->aux_syms;
1856
1857 if (vp->objects_last_page == vp->objects_per_page)
1858 add_varray_page (vp);
1859
1860 aux_ptr = &vp->last->datum->aux[vp->objects_last_page++];
1861 aux_ptr->type = aux_rndx;
1862 aux_ptr->data.rndx.rfd = file_index;
1863 aux_ptr->data.rndx.index = sym_index;
1864
1865 return vp->num_allocated++;
1866}
1867\f
1868/* Add an auxiliary symbol (passing the basic type and possibly
1869 type qualifiers). */
1870
1871static symint_t
1872add_aux_sym_tir (t, state, hash_tbl)
1873 type_info_t *t; /* current type information */
1874 hash_state_t state; /* whether to hash type or not */
1875 thash_t **hash_tbl; /* pointer to hash table to use */
1876{
1877 register varray_t *vp;
1878 register aux_t *aux_ptr;
1879 static AUXU init_aux;
1880 symint_t ret;
1881 int i;
1882 AUXU aux;
1883
1884 if (cur_file_ptr == (efdr_t *) NULL)
1885 as_fatal (_("no current file pointer"));
1886
1887 vp = &cur_file_ptr->aux_syms;
1888
1889 aux = init_aux;
1890 aux.ti.bt = (int) t->basic_type;
1891 aux.ti.continued = 0;
1892 aux.ti.fBitfield = t->bitfield;
1893
1894 aux.ti.tq0 = (int) t->type_qualifiers[0];
1895 aux.ti.tq1 = (int) t->type_qualifiers[1];
1896 aux.ti.tq2 = (int) t->type_qualifiers[2];
1897 aux.ti.tq3 = (int) t->type_qualifiers[3];
1898 aux.ti.tq4 = (int) t->type_qualifiers[4];
1899 aux.ti.tq5 = (int) t->type_qualifiers[5];
1900
1901
1902 /* For anything that adds additional information, we must not hash,
1903 so check here, and reset our state. */
1904
1905 if (state != hash_no
1906 && (t->type_qualifiers[0] == tq_Array
1907 || t->type_qualifiers[1] == tq_Array
1908 || t->type_qualifiers[2] == tq_Array
1909 || t->type_qualifiers[3] == tq_Array
1910 || t->type_qualifiers[4] == tq_Array
1911 || t->type_qualifiers[5] == tq_Array
1912 || t->basic_type == bt_Struct
1913 || t->basic_type == bt_Union
1914 || t->basic_type == bt_Enum
1915 || t->bitfield
1916 || t->num_dims > 0))
1917 state = hash_no;
1918
1919 /* See if we can hash this type, and save some space, but some types
1920 can't be hashed (because they contain arrays or continuations),
1921 and others can be put into the hash list, but cannot use existing
1922 types because other aux entries precede this one. */
1923
1924 if (state != hash_no)
1925 {
1926 register thash_t *hash_ptr;
1927 register symint_t hi;
1928
1929 hi = aux.isym & ((1 << HASHBITS) - 1);
1930 hi %= THASH_SIZE;
1931
1932 for (hash_ptr = hash_tbl[hi];
1933 hash_ptr != (thash_t *)0;
1934 hash_ptr = hash_ptr->next)
1935 {
1936 if (aux.isym == hash_ptr->type.isym)
1937 break;
1938 }
1939
1940 if (hash_ptr != (thash_t *) NULL && state == hash_yes)
1941 return hash_ptr->indx;
1942
1943 if (hash_ptr == (thash_t *) NULL)
1944 {
1945 hash_ptr = allocate_thash ();
1946 hash_ptr->next = hash_tbl[hi];
1947 hash_ptr->type = aux;
1948 hash_ptr->indx = vp->num_allocated;
1949 hash_tbl[hi] = hash_ptr;
1950 }
1951 }
1952
1953 /* Everything is set up, add the aux symbol. */
1954 if (vp->objects_last_page == vp->objects_per_page)
1955 add_varray_page (vp);
1956
1957 aux_ptr = &vp->last->datum->aux[ vp->objects_last_page++ ];
1958 aux_ptr->type = aux_tir;
1959 aux_ptr->data = aux;
1960
1961 ret = vp->num_allocated++;
1962
1963 /* Add bitfield length if it exists.
1964
1965 NOTE: Mips documentation claims bitfield goes at the end of the
1966 AUX record, but the DECstation compiler emits it here.
1967 (This would only make a difference for enum bitfields.)
1968
1969 Also note: We use the last size given since gcc may emit 2
1970 for an enum bitfield. */
1971
1972 if (t->bitfield)
1973 (void) add_aux_sym_symint ((symint_t)t->sizes[t->num_sizes-1]);
1974
1975
1976 /* Add tag information if needed. Structure, union, and enum
1977 references add 2 aux symbols: a [file index, symbol index]
1978 pointer to the structure type, and the current file index. */
1979
1980 if (t->basic_type == bt_Struct
1981 || t->basic_type == bt_Union
1982 || t->basic_type == bt_Enum)
1983 {
1984 register symint_t file_index = t->tag_ptr->ifd;
1985 register localsym_t *sym = t->tag_ptr->sym;
1986 register forward_t *forward_ref = allocate_forward ();
1987
1988 if (sym != (localsym_t *) NULL)
1989 {
1990 forward_ref->next = sym->forward_ref;
1991 sym->forward_ref = forward_ref;
1992 }
1993 else
1994 {
1995 forward_ref->next = t->tag_ptr->forward_ref;
1996 t->tag_ptr->forward_ref = forward_ref;
1997 }
1998
1999 (void) add_aux_sym_rndx (ST_RFDESCAPE, indexNil);
2000 forward_ref->index_ptr
2001 = &vp->last->datum->aux[ vp->objects_last_page - 1];
2002
2003 (void) add_aux_sym_symint (file_index);
2004 forward_ref->ifd_ptr
2005 = &vp->last->datum->aux[ vp->objects_last_page - 1];
2006 }
2007
2008 /* Add information about array bounds if they exist. */
2009 for (i = 0; i < t->num_dims; i++)
2010 {
2011 (void) add_aux_sym_rndx (ST_RFDESCAPE,
2012 cur_file_ptr->int_type);
2013
2014 (void) add_aux_sym_symint (cur_file_ptr->file_index); /* file index*/
2015 (void) add_aux_sym_symint ((symint_t) 0); /* low bound */
2016 (void) add_aux_sym_symint (t->dimensions[i] - 1); /* high bound*/
2017 (void) add_aux_sym_symint ((t->dimensions[i] == 0) /* stride */
2018 ? 0
2019 : (t->sizes[i] * 8) / t->dimensions[i]);
2020 };
2021
2022 /* NOTE: Mips documentation claims that the bitfield width goes here.
2023 But it needs to be emitted earlier. */
2024
2025 return ret;
2026}
2027\f
2028/* Add a tag to the tag table (unless it already exists). */
2029
2030static tag_t *
2031get_tag (tag, sym, basic_type)
2032 const char *tag; /* tag name */
2033 localsym_t *sym; /* tag start block */
2034 bt_t basic_type; /* bt_Struct, bt_Union, or bt_Enum */
2035{
2036 shash_t *hash_ptr;
2037 const char *err;
2038 tag_t *tag_ptr;
2039
2040 if (cur_file_ptr == (efdr_t *) NULL)
2041 as_fatal (_("no current file pointer"));
2042
2043 hash_ptr = (shash_t *) hash_find (tag_hash, tag);
2044
2045 if (hash_ptr != (shash_t *) NULL
2046 && hash_ptr->tag_ptr != (tag_t *) NULL)
2047 {
2048 tag_ptr = hash_ptr->tag_ptr;
2049 if (sym != (localsym_t *) NULL)
2050 {
2051 tag_ptr->basic_type = basic_type;
2052 tag_ptr->ifd = cur_file_ptr->file_index;
2053 tag_ptr->sym = sym;
2054 }
2055 return tag_ptr;
2056 }
2057
2058 if (hash_ptr == (shash_t *) NULL)
2059 {
2060 char *perm;
2061
2062 perm = xmalloc ((unsigned long) (strlen (tag) + 1));
2063 strcpy (perm, tag);
2064 hash_ptr = allocate_shash ();
2065 err = hash_insert (tag_hash, perm, (char *) hash_ptr);
2066 if (err)
2067 as_fatal (_("Inserting \"%s\" into tag hash table: %s"),
2068 tag, err);
2069 hash_ptr->string = perm;
2070 }
2071
2072 tag_ptr = allocate_tag ();
2073 tag_ptr->forward_ref = (forward_t *) NULL;
2074 tag_ptr->hash_ptr = hash_ptr;
2075 tag_ptr->same_name = hash_ptr->tag_ptr;
2076 tag_ptr->basic_type = basic_type;
2077 tag_ptr->sym = sym;
2078 tag_ptr->ifd = ((sym == (localsym_t *) NULL)
2079 ? (symint_t) -1
2080 : cur_file_ptr->file_index);
2081 tag_ptr->same_block = cur_tag_head->first_tag;
2082
2083 cur_tag_head->first_tag = tag_ptr;
2084 hash_ptr->tag_ptr = tag_ptr;
2085
2086 return tag_ptr;
2087}
2088\f
2089/* Add an unknown {struct, union, enum} tag. */
2090
2091static void
2092add_unknown_tag (ptag)
2093 tag_t *ptag; /* pointer to tag information */
2094{
2095 shash_t *hash_ptr = ptag->hash_ptr;
2096 char *name = hash_ptr->string;
2097 localsym_t *sym;
2098 forward_t **pf;
2099
2100#ifdef ECOFF_DEBUG
2101 if (debug > 1)
2102 {
2103 char *agg_type = "{unknown aggregate type}";
2104 switch (ptag->basic_type)
2105 {
2106 case bt_Struct: agg_type = "struct"; break;
2107 case bt_Union: agg_type = "union"; break;
2108 case bt_Enum: agg_type = "enum"; break;
2109 default: break;
2110 }
2111
2112 fprintf (stderr, "unknown %s %.*s found\n", agg_type,
2113 hash_ptr->len, name_start);
2114 }
2115#endif
2116
2117 sym = add_ecoff_symbol (name,
2118 st_Block,
2119 sc_Info,
2120 (symbolS *) NULL,
2121 (bfd_vma) 0,
2122 (symint_t) 0,
2123 (symint_t) 0);
2124
2125 (void) add_ecoff_symbol (name,
2126 st_End,
2127 sc_Info,
2128 (symbolS *) NULL,
2129 (bfd_vma) 0,
2130 (symint_t) 0,
2131 (symint_t) 0);
2132
2133 for (pf = &sym->forward_ref; *pf != (forward_t *) NULL; pf = &(*pf)->next)
2134 ;
2135 *pf = ptag->forward_ref;
2136}
2137\f
2138/* Add a procedure to the current file's list of procedures, and record
2139 this is the current procedure. */
2140
2141static void
2142add_procedure (func)
2143 char *func; /* func name */
2144{
2145 register varray_t *vp;
2146 register proc_t *new_proc_ptr;
2147 symbolS *sym;
2148
2149#ifdef ECOFF_DEBUG
2150 if (debug)
2151 fputc ('\n', stderr);
2152#endif
2153
2154 if (cur_file_ptr == (efdr_t *) NULL)
2155 as_fatal (_("no current file pointer"));
2156
2157 vp = &cur_file_ptr->procs;
2158
2159 if (vp->objects_last_page == vp->objects_per_page)
2160 add_varray_page (vp);
2161
2162 cur_proc_ptr = new_proc_ptr = &vp->last->datum->proc[vp->objects_last_page++];
2163
2164 if (first_proc_ptr == (proc_t *) NULL)
2165 first_proc_ptr = new_proc_ptr;
2166
2167 vp->num_allocated++;
2168
2169 new_proc_ptr->pdr.isym = -1;
2170 new_proc_ptr->pdr.iline = -1;
2171 new_proc_ptr->pdr.lnLow = -1;
2172 new_proc_ptr->pdr.lnHigh = -1;
2173
2174 /* Set the BSF_FUNCTION flag for the symbol. */
2175 sym = symbol_find_or_make (func);
49309057 2176 symbol_get_bfdsym (sym)->flags |= BSF_FUNCTION;
252b5132
RH
2177
2178 /* Push the start of the function. */
2179 new_proc_ptr->sym = add_ecoff_symbol ((const char *) NULL, st_Proc, sc_Text,
2180 sym, (bfd_vma) 0, (symint_t) 0,
2181 (symint_t) 0);
2182
2183 ++proc_cnt;
2184
2185 /* Fill in the linenos preceding the .ent, if any. */
2186 if (noproc_lineno != (lineno_list_t *) NULL)
2187 {
2188 lineno_list_t *l;
2189
2190 for (l = noproc_lineno; l != (lineno_list_t *) NULL; l = l->next)
2191 l->proc = new_proc_ptr;
2192 *last_lineno_ptr = noproc_lineno;
2193 while (*last_lineno_ptr != NULL)
2194 {
2195 last_lineno = *last_lineno_ptr;
2196 last_lineno_ptr = &last_lineno->next;
2197 }
2198 noproc_lineno = (lineno_list_t *) NULL;
2199 }
2200}
2201
2202symbolS *
2203ecoff_get_cur_proc_sym ()
2204{
2205 return (cur_proc_ptr ? cur_proc_ptr->sym->as_sym : NULL);
2206}
2207\f
2208/* Add a new filename, and set up all of the file relative
2209 virtual arrays (strings, symbols, aux syms, etc.). Record
2210 where the current file structure lives. */
2211
2212static void
2213add_file (file_name, indx, fake)
2214 const char *file_name; /* file name */
2215 int indx;
2216 int fake;
2217{
2218 register int first_ch;
2219 register efdr_t *fil_ptr;
2220
2221#ifdef ECOFF_DEBUG
2222 if (debug)
2223 fprintf (stderr, "\tfile\t%.*s\n", len, file_start);
2224#endif
2225
2226 /* If the file name is NULL, then no .file symbol appeared, and we
2227 want to use the actual file name. */
2228 if (file_name == (const char *) NULL)
2229 {
2230 char *file;
2231
2232 if (first_file != (efdr_t *) NULL)
2233 as_fatal (_("fake .file after real one"));
2234 as_where (&file, (unsigned int *) NULL);
2235 file_name = (const char *) file;
2236
2237 /* Automatically generate ECOFF debugging information, since I
2238 think that's what other ECOFF assemblers do. We don't do
2239 this if we see a .file directive with a string, since that
2240 implies that some sort of debugging information is being
2241 provided. */
2242 if (! symbol_table_frozen && debug_type == DEBUG_NONE)
2243 debug_type = DEBUG_ECOFF;
2244 }
2245
2246#ifndef NO_LISTING
2247 if (listing)
2248 listing_source_file (file_name);
2249#endif
2250
2251 current_stabs_filename = file_name;
2252
2253 /* If we're creating stabs, then we don't actually make a new FDR.
2254 Instead, we just create a stabs symbol. */
2255 if (stabs_seen)
2256 {
2257 (void) add_ecoff_symbol (file_name, st_Nil, sc_Nil,
2258 symbol_new ("L0\001", now_seg,
2259 (valueT) frag_now_fix (),
2260 frag_now),
2261 (bfd_vma) 0, 0, ECOFF_MARK_STAB (N_SOL));
2262 return;
2263 }
2264
2265 first_ch = *file_name;
2266
2267 /* FIXME: We can't safely merge files which have line number
2268 information (fMerge will be zero in this case). Otherwise, we
2269 get incorrect line number debugging info. See for instance
2270 ecoff_build_lineno, which will end up setting all file->fdr.*
2271 fields multiple times, resulting in incorrect debug info. In
2272 order to make this work right, all line number and symbol info
2273 for the same source file has to be adjacent in the object file,
2274 so that a single file descriptor can be used to point to them.
2275 This would require maintaining file specific lists of line
2276 numbers and symbols for each file, so that they can be merged
2277 together (or output together) when two .file pseudo-ops are
2278 merged into one file descriptor. */
2279
2280 /* See if the file has already been created. */
2281 for (fil_ptr = first_file;
2282 fil_ptr != (efdr_t *) NULL;
2283 fil_ptr = fil_ptr->next_file)
2284 {
2285 if (first_ch == fil_ptr->name[0]
2286 && strcmp (file_name, fil_ptr->name) == 0
2287 && fil_ptr->fdr.fMerge)
2288 {
2289 cur_file_ptr = fil_ptr;
2290 if (! fake)
2291 cur_file_ptr->fake = 0;
2292 break;
2293 }
2294 }
2295
2296 /* If this is a new file, create it. */
2297 if (fil_ptr == (efdr_t *) NULL)
2298 {
2299 if (file_desc.objects_last_page == file_desc.objects_per_page)
2300 add_varray_page (&file_desc);
2301
2302 fil_ptr = cur_file_ptr =
2303 &file_desc.last->datum->file[file_desc.objects_last_page++];
2304 *fil_ptr = init_file;
2305
2306 fil_ptr->file_index = current_file_idx++;
2307 ++file_desc.num_allocated;
2308
2309 fil_ptr->fake = fake;
2310
2311 /* Allocate the string hash table. */
2312 fil_ptr->str_hash = hash_new ();
2313
2314 /* Make sure 0 byte in string table is null */
2315 add_string (&fil_ptr->strings,
2316 fil_ptr->str_hash,
2317 "",
2318 (shash_t **)0);
2319
2320 if (strlen (file_name) > PAGE_USIZE - 2)
2321 as_fatal (_("Filename goes over one page boundary."));
2322
2323 /* Push the start of the filename. We assume that the filename
2324 will be stored at string offset 1. */
2325 (void) add_ecoff_symbol (file_name, st_File, sc_Text,
2326 (symbolS *) NULL, (bfd_vma) 0,
2327 (symint_t) 0, (symint_t) 0);
2328 fil_ptr->fdr.rss = 1;
2329 fil_ptr->name = &fil_ptr->strings.last->datum->byte[1];
2330
2331 /* Update the linked list of file descriptors. */
2332 *last_file_ptr = fil_ptr;
2333 last_file_ptr = &fil_ptr->next_file;
2334
2335 /* Add void & int types to the file (void should be first to catch
2336 errant 0's within the index fields). */
2337 fil_ptr->void_type = add_aux_sym_tir (&void_type_info,
2338 hash_yes,
2339 &cur_file_ptr->thash_head[0]);
2340
2341 fil_ptr->int_type = add_aux_sym_tir (&int_type_info,
2342 hash_yes,
2343 &cur_file_ptr->thash_head[0]);
2344 }
2345}
2346
2347/* This function is called when the assembler notices a preprocessor
2348 directive switching to a new file. This will not happen in
2349 compiler output, only in hand coded assembler. */
2350
2351void
2352ecoff_new_file (name)
2353 const char *name;
2354{
2355 if (cur_file_ptr != NULL && strcmp (cur_file_ptr->name, name) == 0)
2356 return;
2357 add_file (name, 0, 0);
2358
2359 /* This is a hand coded assembler file, so automatically turn on
2360 debugging information. */
2361 if (debug_type == DEBUG_NONE)
2362 debug_type = DEBUG_ECOFF;
2363}
2364\f
2365#ifdef ECOFF_DEBUG
2366
2367/* Convert storage class to string. */
2368
2369static char *
2370sc_to_string(storage_class)
2371 sc_t storage_class;
2372{
2373 switch(storage_class)
2374 {
2375 case sc_Nil: return "Nil,";
2376 case sc_Text: return "Text,";
2377 case sc_Data: return "Data,";
2378 case sc_Bss: return "Bss,";
2379 case sc_Register: return "Register,";
2380 case sc_Abs: return "Abs,";
2381 case sc_Undefined: return "Undefined,";
2382 case sc_CdbLocal: return "CdbLocal,";
2383 case sc_Bits: return "Bits,";
2384 case sc_CdbSystem: return "CdbSystem,";
2385 case sc_RegImage: return "RegImage,";
2386 case sc_Info: return "Info,";
2387 case sc_UserStruct: return "UserStruct,";
2388 case sc_SData: return "SData,";
2389 case sc_SBss: return "SBss,";
2390 case sc_RData: return "RData,";
2391 case sc_Var: return "Var,";
2392 case sc_Common: return "Common,";
2393 case sc_SCommon: return "SCommon,";
2394 case sc_VarRegister: return "VarRegister,";
2395 case sc_Variant: return "Variant,";
2396 case sc_SUndefined: return "SUndefined,";
2397 case sc_Init: return "Init,";
2398 case sc_Max: return "Max,";
2399 }
2400
2401 return "???,";
2402}
2403
2404#endif /* DEBUG */
2405\f
2406#ifdef ECOFF_DEBUG
2407
2408/* Convert symbol type to string. */
2409
2410static char *
2411st_to_string(symbol_type)
2412 st_t symbol_type;
2413{
2414 switch(symbol_type)
2415 {
2416 case st_Nil: return "Nil,";
2417 case st_Global: return "Global,";
2418 case st_Static: return "Static,";
2419 case st_Param: return "Param,";
2420 case st_Local: return "Local,";
2421 case st_Label: return "Label,";
2422 case st_Proc: return "Proc,";
2423 case st_Block: return "Block,";
2424 case st_End: return "End,";
2425 case st_Member: return "Member,";
2426 case st_Typedef: return "Typedef,";
2427 case st_File: return "File,";
2428 case st_RegReloc: return "RegReloc,";
2429 case st_Forward: return "Forward,";
2430 case st_StaticProc: return "StaticProc,";
2431 case st_Constant: return "Constant,";
2432 case st_Str: return "String,";
2433 case st_Number: return "Number,";
2434 case st_Expr: return "Expr,";
2435 case st_Type: return "Type,";
2436 case st_Max: return "Max,";
2437 }
2438
2439 return "???,";
2440}
2441
2442#endif /* DEBUG */
2443\f
2444/* Parse .begin directives which have a label as the first argument
2445 which gives the location of the start of the block. */
2446
2447void
2448ecoff_directive_begin (ignore)
2449 int ignore;
2450{
2451 char *name;
2452 char name_end;
2453
2454 if (cur_file_ptr == (efdr_t *) NULL)
2455 {
2456 as_warn (_(".begin directive without a preceding .file directive"));
2457 demand_empty_rest_of_line ();
2458 return;
2459 }
2460
2461 if (cur_proc_ptr == (proc_t *) NULL)
2462 {
2463 as_warn (_(".begin directive without a preceding .ent directive"));
2464 demand_empty_rest_of_line ();
2465 return;
2466 }
2467
2468 name = input_line_pointer;
2469 name_end = get_symbol_end ();
2470
2471 (void) add_ecoff_symbol ((const char *) NULL, st_Block, sc_Text,
2472 symbol_find_or_make (name),
2473 (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
2474
2475 *input_line_pointer = name_end;
2476
2477 /* The line number follows, but we don't use it. */
2478 (void) get_absolute_expression ();
2479 demand_empty_rest_of_line ();
2480}
2481\f
2482/* Parse .bend directives which have a label as the first argument
2483 which gives the location of the end of the block. */
2484
2485void
2486ecoff_directive_bend (ignore)
2487 int ignore;
2488{
2489 char *name;
2490 char name_end;
2491 symbolS *endsym;
2492
2493 if (cur_file_ptr == (efdr_t *) NULL)
2494 {
2495 as_warn (_(".bend directive without a preceding .file directive"));
2496 demand_empty_rest_of_line ();
2497 return;
2498 }
2499
2500 if (cur_proc_ptr == (proc_t *) NULL)
2501 {
2502 as_warn (_(".bend directive without a preceding .ent directive"));
2503 demand_empty_rest_of_line ();
2504 return;
2505 }
2506
2507 name = input_line_pointer;
2508 name_end = get_symbol_end ();
2509
2510 /* The value is the distance between the .bend directive and the
2511 corresponding symbol. We fill in the offset when we write out
2512 the symbol. */
2513 endsym = symbol_find (name);
2514 if (endsym == (symbolS *) NULL)
2515 as_warn (_(".bend directive names unknown symbol"));
2516 else
2517 (void) add_ecoff_symbol ((const char *) NULL, st_End, sc_Text, endsym,
2518 (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
2519
2520 *input_line_pointer = name_end;
2521
2522 /* The line number follows, but we don't use it. */
2523 (void) get_absolute_expression ();
2524 demand_empty_rest_of_line ();
2525}
2526\f
2527/* COFF debugging information is provided as a series of directives
2528 (.def, .scl, etc.). We build up information as we read the
2529 directives in the following static variables, and file it away when
2530 we reach the .endef directive. */
2531static char *coff_sym_name;
2532static type_info_t coff_type;
2533static sc_t coff_storage_class;
2534static st_t coff_symbol_typ;
2535static int coff_is_function;
2536static char *coff_tag;
2537static valueT coff_value;
2538static symbolS *coff_sym_value;
2539static bfd_vma coff_sym_addend;
2540static int coff_inside_enumeration;
2541
2542/* Handle a .def directive: start defining a symbol. */
2543
2544void
2545ecoff_directive_def (ignore)
2546 int ignore;
2547{
2548 char *name;
2549 char name_end;
2550
2551 ecoff_debugging_seen = 1;
2552
2553 SKIP_WHITESPACE ();
2554
2555 name = input_line_pointer;
2556 name_end = get_symbol_end ();
2557
2558 if (coff_sym_name != (char *) NULL)
2559 as_warn (_(".def pseudo-op used inside of .def/.endef; ignored"));
2560 else if (*name == '\0')
2561 as_warn (_("Empty symbol name in .def; ignored"));
2562 else
2563 {
2564 if (coff_sym_name != (char *) NULL)
2565 free (coff_sym_name);
2566 if (coff_tag != (char *) NULL)
2567 free (coff_tag);
2568 coff_sym_name = (char *) xmalloc ((unsigned long) (strlen (name) + 1));
2569 strcpy (coff_sym_name, name);
2570 coff_type = type_info_init;
2571 coff_storage_class = sc_Nil;
2572 coff_symbol_typ = st_Nil;
2573 coff_is_function = 0;
2574 coff_tag = (char *) NULL;
2575 coff_value = 0;
2576 coff_sym_value = (symbolS *) NULL;
2577 coff_sym_addend = 0;
2578 }
2579
2580 *input_line_pointer = name_end;
2581
2582 demand_empty_rest_of_line ();
2583}
2584
2585/* Handle a .dim directive, used to give dimensions for an array. The
2586 arguments are comma separated numbers. mips-tfile assumes that
2587 there will not be more than 6 dimensions, and gdb won't read any
2588 more than that anyhow, so I will also make that assumption. */
2589
2590void
2591ecoff_directive_dim (ignore)
2592 int ignore;
2593{
2594 int dimens[N_TQ];
2595 int i;
2596
2597 if (coff_sym_name == (char *) NULL)
2598 {
2599 as_warn (_(".dim pseudo-op used outside of .def/.endef; ignored"));
2600 demand_empty_rest_of_line ();
2601 return;
2602 }
2603
2604 for (i = 0; i < N_TQ; i++)
2605 {
2606 SKIP_WHITESPACE ();
2607 dimens[i] = get_absolute_expression ();
2608 if (*input_line_pointer == ',')
2609 ++input_line_pointer;
2610 else
2611 {
2612 if (*input_line_pointer != '\n'
2613 && *input_line_pointer != ';')
2614 as_warn (_("Badly formed .dim directive"));
2615 break;
2616 }
2617 }
2618
2619 if (i == N_TQ)
2620 --i;
2621
2622 /* The dimensions are stored away in reverse order. */
2623 for (; i >= 0; i--)
2624 {
2625 if (coff_type.num_dims >= N_TQ)
2626 {
2627 as_warn (_("Too many .dim entries"));
2628 break;
2629 }
2630 coff_type.dimensions[coff_type.num_dims] = dimens[i];
2631 ++coff_type.num_dims;
2632 }
2633
2634 demand_empty_rest_of_line ();
2635}
2636
2637/* Handle a .scl directive, which sets the COFF storage class of the
2638 symbol. */
2639
2640void
2641ecoff_directive_scl (ignore)
2642 int ignore;
2643{
2644 long val;
2645
2646 if (coff_sym_name == (char *) NULL)
2647 {
2648 as_warn (_(".scl pseudo-op used outside of .def/.endef; ignored"));
2649 demand_empty_rest_of_line ();
2650 return;
2651 }
2652
2653 val = get_absolute_expression ();
2654
2655 coff_symbol_typ = map_coff_sym_type[val];
2656 coff_storage_class = map_coff_storage[val];
2657
2658 demand_empty_rest_of_line ();
2659}
2660
2661/* Handle a .size directive. For some reason mips-tfile.c thinks that
2662 .size can have multiple arguments. We humor it, although gcc will
2663 never generate more than one argument. */
2664
2665void
2666ecoff_directive_size (ignore)
2667 int ignore;
2668{
2669 int sizes[N_TQ];
2670 int i;
2671
2672 if (coff_sym_name == (char *) NULL)
2673 {
2674 as_warn (_(".size pseudo-op used outside of .def/.endef; ignored"));
2675 demand_empty_rest_of_line ();
2676 return;
2677 }
2678
2679 for (i = 0; i < N_TQ; i++)
2680 {
2681 SKIP_WHITESPACE ();
2682 sizes[i] = get_absolute_expression ();
2683 if (*input_line_pointer == ',')
2684 ++input_line_pointer;
2685 else
2686 {
2687 if (*input_line_pointer != '\n'
2688 && *input_line_pointer != ';')
2689 as_warn (_("Badly formed .size directive"));
2690 break;
2691 }
2692 }
2693
2694 if (i == N_TQ)
2695 --i;
2696
2697 /* The sizes are stored away in reverse order. */
2698 for (; i >= 0; i--)
2699 {
2700 if (coff_type.num_sizes >= N_TQ)
2701 {
2702 as_warn (_("Too many .size entries"));
2703 break;
2704 }
2705 coff_type.sizes[coff_type.num_sizes] = sizes[i];
2706 ++coff_type.num_sizes;
2707 }
2708
2709 demand_empty_rest_of_line ();
2710}
2711
2712/* Handle the .type directive, which gives the COFF type of the
2713 symbol. */
2714
2715void
2716ecoff_directive_type (ignore)
2717 int ignore;
2718{
2719 long val;
2720 tq_t *tq_ptr;
2721 tq_t *tq_shft;
2722
2723 if (coff_sym_name == (char *) NULL)
2724 {
2725 as_warn (_(".type pseudo-op used outside of .def/.endef; ignored"));
2726 demand_empty_rest_of_line ();
2727 return;
2728 }
2729
2730 val = get_absolute_expression ();
2731
2732 coff_type.orig_type = BTYPE (val);
2733 coff_type.basic_type = map_coff_types[coff_type.orig_type];
2734
2735 tq_ptr = &coff_type.type_qualifiers[N_TQ];
2736 while (val &~ N_BTMASK)
2737 {
2738 if (tq_ptr == &coff_type.type_qualifiers[0])
2739 {
2740 /* FIXME: We could handle this by setting the continued bit.
2741 There would still be a limit: the .type argument can not
2742 be infinite. */
2743 as_warn (_("The type of %s is too complex; it will be simplified"),
2744 coff_sym_name);
2745 break;
2746 }
2747 if (ISPTR (val))
2748 *--tq_ptr = tq_Ptr;
2749 else if (ISFCN (val))
2750 *--tq_ptr = tq_Proc;
2751 else if (ISARY (val))
2752 *--tq_ptr = tq_Array;
2753 else
2754 as_fatal (_("Unrecognized .type argument"));
2755
2756 val = DECREF (val);
2757 }
2758
2759 tq_shft = &coff_type.type_qualifiers[0];
2760 while (tq_ptr != &coff_type.type_qualifiers[N_TQ])
2761 *tq_shft++ = *tq_ptr++;
2762
2763 if (tq_shft != &coff_type.type_qualifiers[0] && tq_shft[-1] == tq_Proc)
2764 {
2765 /* If this is a function, ignore it, so that we don't get two
2766 entries (one from the .ent, and one for the .def that
2767 precedes it). Save the type information so that the end
2768 block can properly add it after the begin block index. For
2769 MIPS knows what reason, we must strip off the function type
2770 at this point. */
2771 coff_is_function = 1;
2772 tq_shft[-1] = tq_Nil;
2773 }
2774
2775 while (tq_shft != &coff_type.type_qualifiers[N_TQ])
2776 *tq_shft++ = tq_Nil;
2777
2778 demand_empty_rest_of_line ();
2779}
2780
2781/* Handle the .tag directive, which gives the name of a structure,
2782 union or enum. */
2783
2784void
2785ecoff_directive_tag (ignore)
2786 int ignore;
2787{
2788 char *name;
2789 char name_end;
2790
2791 if (coff_sym_name == (char *) NULL)
2792 {
2793 as_warn (_(".tag pseudo-op used outside of .def/.endef; ignored"));
2794 demand_empty_rest_of_line ();
2795 return;
2796 }
2797
2798 name = input_line_pointer;
2799 name_end = get_symbol_end ();
2800
2801 coff_tag = (char *) xmalloc ((unsigned long) (strlen (name) + 1));
2802 strcpy (coff_tag, name);
2803
2804 *input_line_pointer = name_end;
2805
2806 demand_empty_rest_of_line ();
2807}
2808
2809/* Handle the .val directive, which gives the value of the symbol. It
2810 may be the name of a static or global symbol. */
2811
2812void
2813ecoff_directive_val (ignore)
2814 int ignore;
2815{
2816 expressionS exp;
2817
2818 if (coff_sym_name == (char *) NULL)
2819 {
2820 as_warn (_(".val pseudo-op used outside of .def/.endef; ignored"));
2821 demand_empty_rest_of_line ();
2822 return;
2823 }
2824
2825 expression (&exp);
2826 if (exp.X_op != O_constant && exp.X_op != O_symbol)
2827 {
2828 as_bad (_(".val expression is too copmlex"));
2829 demand_empty_rest_of_line ();
2830 return;
2831 }
2832
2833 if (exp.X_op == O_constant)
2834 coff_value = exp.X_add_number;
2835 else
2836 {
2837 coff_sym_value = exp.X_add_symbol;
2838 coff_sym_addend = exp.X_add_number;
2839 }
2840
2841 demand_empty_rest_of_line ();
2842}
2843
2844/* Handle the .endef directive, which terminates processing of COFF
2845 debugging information for a symbol. */
2846
2847void
2848ecoff_directive_endef (ignore)
2849 int ignore;
2850{
2851 char *name;
2852 symint_t indx;
2853 localsym_t *sym;
2854
2855 demand_empty_rest_of_line ();
2856
2857 if (coff_sym_name == (char *) NULL)
2858 {
2859 as_warn (_(".endef pseudo-op used before .def; ignored"));
2860 return;
2861 }
2862
2863 name = coff_sym_name;
2864 coff_sym_name = (char *) NULL;
2865
2866 /* If the symbol is a static or external, we have already gotten the
2867 appropriate type and class, so make sure we don't override those
2868 values. This is needed because there are some type and classes
2869 that are not in COFF, such as short data, etc. */
2870 if (coff_sym_value != (symbolS *) NULL)
2871 {
2872 coff_symbol_typ = st_Nil;
2873 coff_storage_class = sc_Nil;
2874 }
2875
2876 coff_type.extra_sizes = coff_tag != (char *) NULL;
2877 if (coff_type.num_dims > 0)
2878 {
2879 int diff = coff_type.num_dims - coff_type.num_sizes;
2880 int i = coff_type.num_dims - 1;
2881 int j;
2882
2883 if (coff_type.num_sizes != 1 || diff < 0)
2884 {
2885 as_warn (_("Bad COFF debugging info"));
2886 return;
2887 }
2888
2889 /* If this is an array, make sure the same number of dimensions
2890 and sizes were passed, creating extra sizes for multiply
2891 dimensioned arrays if not passed. */
2892 coff_type.extra_sizes = 0;
2893 if (diff)
2894 {
2895 j = (sizeof (coff_type.sizes) / sizeof (coff_type.sizes[0])) - 1;
2896 while (j >= 0)
2897 {
2898 coff_type.sizes[j] = (((j - diff) >= 0)
2899 ? coff_type.sizes[j - diff]
2900 : 0);
2901 j--;
2902 }
2903
2904 coff_type.num_sizes = i + 1;
2905 for (i--; i >= 0; i--)
2906 coff_type.sizes[i] = (coff_type.dimensions[i + 1] == 0
2907 ? 0
2908 : (coff_type.sizes[i + 1]
2909 / coff_type.dimensions[i + 1]));
2910 }
2911 }
2912 else if (coff_symbol_typ == st_Member
2913 && coff_type.num_sizes - coff_type.extra_sizes == 1)
2914 {
2915 /* Is this a bitfield? This is indicated by a structure memeber
2916 having a size field that isn't an array. */
2917 coff_type.bitfield = 1;
2918 }
2919
2920 /* Except for enumeration members & begin/ending of scopes, put the
2921 type word in the aux. symbol table. */
2922 if (coff_symbol_typ == st_Block || coff_symbol_typ == st_End)
2923 indx = 0;
2924 else if (coff_inside_enumeration)
2925 indx = cur_file_ptr->void_type;
2926 else
2927 {
2928 if (coff_type.basic_type == bt_Struct
2929 || coff_type.basic_type == bt_Union
2930 || coff_type.basic_type == bt_Enum)
2931 {
2932 if (coff_tag == (char *) NULL)
2933 {
2934 as_warn (_("No tag specified for %s"), name);
2935 return;
2936 }
2937
2938 coff_type.tag_ptr = get_tag (coff_tag, (localsym_t *) NULL,
2939 coff_type.basic_type);
2940 }
2941
2942 if (coff_is_function)
2943 {
2944 last_func_type_info = coff_type;
2945 last_func_sym_value = coff_sym_value;
2946 return;
2947 }
2948
2949 indx = add_aux_sym_tir (&coff_type,
2950 hash_yes,
2951 &cur_file_ptr->thash_head[0]);
2952 }
2953
2954 /* Do any last minute adjustments that are necessary. */
2955 switch (coff_symbol_typ)
2956 {
2957 default:
2958 break;
2959
2960 /* For the beginning of structs, unions, and enumerations, the
2961 size info needs to be passed in the value field. */
2962 case st_Block:
2963 if (coff_type.num_sizes - coff_type.num_dims - coff_type.extra_sizes
2964 != 1)
2965 {
2966 as_warn (_("Bad COFF debugging information"));
2967 return;
2968 }
2969 else
2970 coff_value = coff_type.sizes[0];
2971
2972 coff_inside_enumeration = (coff_type.orig_type == T_ENUM);
2973 break;
2974
2975 /* For the end of structs, unions, and enumerations, omit the
2976 name which is always ".eos". This needs to be done last, so
2977 that any error reporting above gives the correct name. */
2978 case st_End:
2979 free (name);
2980 name = (char *) NULL;
2981 coff_value = 0;
2982 coff_inside_enumeration = 0;
2983 break;
2984
2985 /* Members of structures and unions that aren't bitfields, need
2986 to adjust the value from a byte offset to a bit offset.
2987 Members of enumerations do not have the value adjusted, and
2988 can be distinguished by indx == indexNil. For enumerations,
2989 update the maximum enumeration value. */
2990 case st_Member:
2991 if (! coff_type.bitfield && ! coff_inside_enumeration)
2992 coff_value *= 8;
2993
2994 break;
2995 }
2996
2997 /* Add the symbol. */
2998 sym = add_ecoff_symbol (name,
2999 coff_symbol_typ,
3000 coff_storage_class,
3001 coff_sym_value,
3002 coff_sym_addend,
3003 (symint_t) coff_value,
3004 indx);
3005
3006 /* deal with struct, union, and enum tags. */
3007 if (coff_symbol_typ == st_Block)
3008 {
3009 /* Create or update the tag information. */
3010 tag_t *tag_ptr = get_tag (name,
3011 sym,
3012 coff_type.basic_type);
3013 forward_t **pf;
3014
3015 /* Remember any forward references. */
3016 for (pf = &sym->forward_ref;
3017 *pf != (forward_t *) NULL;
3018 pf = &(*pf)->next)
3019 ;
3020 *pf = tag_ptr->forward_ref;
3021 tag_ptr->forward_ref = (forward_t *) NULL;
3022 }
3023}
3024\f
3025/* Parse .end directives. */
3026
3027void
3028ecoff_directive_end (ignore)
3029 int ignore;
3030{
3031 char *name;
3032 char name_end;
3033 register int ch;
3034 symbolS *ent;
3035
3036 if (cur_file_ptr == (efdr_t *) NULL)
3037 {
3038 as_warn (_(".end directive without a preceding .file directive"));
3039 demand_empty_rest_of_line ();
3040 return;
3041 }
3042
3043 if (cur_proc_ptr == (proc_t *) NULL)
3044 {
3045 as_warn (_(".end directive without a preceding .ent directive"));
3046 demand_empty_rest_of_line ();
3047 return;
3048 }
3049
3050 name = input_line_pointer;
3051 name_end = get_symbol_end ();
3052
3053 ch = *name;
3054 if (! is_name_beginner (ch))
3055 {
3056 as_warn (_(".end directive has no name"));
3057 *input_line_pointer = name_end;
3058 demand_empty_rest_of_line ();
3059 return;
3060 }
3061
3062 /* The value is the distance between the .end directive and the
3063 corresponding symbol. We create a fake symbol to hold the
3064 current location, and put in the offset when we write out the
3065 symbol. */
3066 ent = symbol_find (name);
3067 if (ent == (symbolS *) NULL)
3068 as_warn (_(".end directive names unknown symbol"));
3069 else
3070 (void) add_ecoff_symbol ((const char *) NULL, st_End, sc_Text,
3071 symbol_new ("L0\001", now_seg,
3072 (valueT) frag_now_fix (),
3073 frag_now),
3074 (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
3075
3076 cur_proc_ptr = (proc_t *) NULL;
3077
3078 *input_line_pointer = name_end;
3079 demand_empty_rest_of_line ();
3080}
3081\f
3082/* Parse .ent directives. */
3083
3084void
3085ecoff_directive_ent (ignore)
3086 int ignore;
3087{
3088 char *name;
3089 char name_end;
3090 register int ch;
3091
3092 if (cur_file_ptr == (efdr_t *) NULL)
3093 add_file ((const char *) NULL, 0, 1);
3094
3095 if (cur_proc_ptr != (proc_t *) NULL)
3096 {
3097 as_warn (_("second .ent directive found before .end directive"));
3098 demand_empty_rest_of_line ();
3099 return;
3100 }
3101
3102 name = input_line_pointer;
3103 name_end = get_symbol_end ();
3104
3105 ch = *name;
3106 if (! is_name_beginner (ch))
3107 {
3108 as_warn (_(".ent directive has no name"));
3109 *input_line_pointer = name_end;
3110 demand_empty_rest_of_line ();
3111 return;
3112 }
3113
3114 add_procedure (name);
3115
3116 *input_line_pointer = name_end;
3117
3118 /* The .ent directive is sometimes followed by a number. I'm not
3119 really sure what the number means. I don't see any way to store
3120 the information in the PDR. The Irix 4 assembler seems to ignore
3121 the information. */
3122 SKIP_WHITESPACE ();
3123 if (*input_line_pointer == ',')
3124 {
3125 ++input_line_pointer;
3126 SKIP_WHITESPACE ();
3127 }
d9a62219
DE
3128 if (isdigit ((unsigned char) *input_line_pointer)
3129 || *input_line_pointer == '-')
252b5132
RH
3130 (void) get_absolute_expression ();
3131
3132 demand_empty_rest_of_line ();
3133}
3134\f
3135/* Parse .extern directives. */
3136
3137void
3138ecoff_directive_extern (ignore)
3139 int ignore;
3140{
3141 char *name;
3142 int c;
3143 symbolS *symbolp;
3144 valueT size;
3145
3146 name = input_line_pointer;
3147 c = get_symbol_end ();
3148 symbolp = symbol_find_or_make (name);
3149 *input_line_pointer = c;
3150
3151 S_SET_EXTERNAL (symbolp);
3152
3153 if (*input_line_pointer == ',')
3154 ++input_line_pointer;
3155 size = get_absolute_expression ();
3156
49309057 3157 symbol_get_obj (symbolp)->ecoff_extern_size = size;
252b5132
RH
3158}
3159\f
3160/* Parse .file directives. */
3161
3162void
3163ecoff_directive_file (ignore)
3164 int ignore;
3165{
3166 int indx;
3167 char *name;
3168 int len;
3169
3170 if (cur_proc_ptr != (proc_t *) NULL)
3171 {
3172 as_warn (_("No way to handle .file within .ent/.end section"));
3173 demand_empty_rest_of_line ();
3174 return;
3175 }
3176
3177 indx = (int) get_absolute_expression ();
3178
3179 /* FIXME: we don't have to save the name here. */
3180 name = demand_copy_C_string (&len);
3181
3182 add_file (name, indx - 1, 0);
3183
3184 demand_empty_rest_of_line ();
3185}
3186\f
3187/* Parse .fmask directives. */
3188
3189void
3190ecoff_directive_fmask (ignore)
3191 int ignore;
3192{
3193 long val;
3194
3195 if (cur_proc_ptr == (proc_t *) NULL)
3196 {
3197 as_warn (_(".fmask outside of .ent"));
3198 demand_empty_rest_of_line ();
3199 return;
3200 }
3201
3202 if (get_absolute_expression_and_terminator (&val) != ',')
3203 {
3204 as_warn (_("Bad .fmask directive"));
3205 --input_line_pointer;
3206 demand_empty_rest_of_line ();
3207 return;
3208 }
3209
3210 cur_proc_ptr->pdr.fregmask = val;
3211 cur_proc_ptr->pdr.fregoffset = get_absolute_expression ();
3212
3213 demand_empty_rest_of_line ();
3214}
3215\f
3216/* Parse .frame directives. */
3217
3218void
3219ecoff_directive_frame (ignore)
3220 int ignore;
3221{
3222 long val;
3223
3224 if (cur_proc_ptr == (proc_t *) NULL)
3225 {
3226 as_warn (_(".frame outside of .ent"));
3227 demand_empty_rest_of_line ();
3228 return;
3229 }
3230
3231 cur_proc_ptr->pdr.framereg = tc_get_register (1);
3232
3233 SKIP_WHITESPACE ();
3234 if (*input_line_pointer++ != ','
3235 || get_absolute_expression_and_terminator (&val) != ',')
3236 {
3237 as_warn (_("Bad .frame directive"));
3238 --input_line_pointer;
3239 demand_empty_rest_of_line ();
3240 return;
3241 }
3242
3243 cur_proc_ptr->pdr.frameoffset = val;
3244
3245 cur_proc_ptr->pdr.pcreg = tc_get_register (0);
3246
3247#if 0 /* Alpha-OSF1 adds "the offset of saved $a0 from $sp", according
3248 to Sandro. I don't yet know where this value should be stored, if
3249 anywhere. */
3250 demand_empty_rest_of_line ();
3251#else
3252 s_ignore (42);
3253#endif
3254}
3255\f
3256/* Parse .mask directives. */
3257
3258void
3259ecoff_directive_mask (ignore)
3260 int ignore;
3261{
3262 long val;
3263
3264 if (cur_proc_ptr == (proc_t *) NULL)
3265 {
3266 as_warn (_(".mask outside of .ent"));
3267 demand_empty_rest_of_line ();
3268 return;
3269 }
3270
3271 if (get_absolute_expression_and_terminator (&val) != ',')
3272 {
3273 as_warn (_("Bad .mask directive"));
3274 --input_line_pointer;
3275 demand_empty_rest_of_line ();
3276 return;
3277 }
3278
3279 cur_proc_ptr->pdr.regmask = val;
3280 cur_proc_ptr->pdr.regoffset = get_absolute_expression ();
3281
3282 demand_empty_rest_of_line ();
3283}
3284\f
3285/* Parse .loc directives. */
3286
3287void
3288ecoff_directive_loc (ignore)
3289 int ignore;
3290{
3291 lineno_list_t *list;
3292 symint_t lineno;
3293
3294 if (cur_file_ptr == (efdr_t *) NULL)
3295 {
3296 as_warn (_(".loc before .file"));
3297 demand_empty_rest_of_line ();
3298 return;
3299 }
3300
3301 if (now_seg != text_section)
3302 {
3303 as_warn (_(".loc outside of .text"));
3304 demand_empty_rest_of_line ();
3305 return;
3306 }
3307
3308 /* Skip the file number. */
3309 SKIP_WHITESPACE ();
3310 get_absolute_expression ();
3311 SKIP_WHITESPACE ();
3312
3313 lineno = get_absolute_expression ();
3314
3315#ifndef NO_LISTING
3316 if (listing)
3317 listing_source_line (lineno);
3318#endif
3319
3320 /* If we're building stabs, then output a special label rather than
3321 ECOFF line number info. */
3322 if (stabs_seen)
3323 {
3324 (void) add_ecoff_symbol ((char *) NULL, st_Label, sc_Text,
3325 symbol_new ("L0\001", now_seg,
3326 (valueT) frag_now_fix (),
3327 frag_now),
3328 (bfd_vma) 0, 0, lineno);
3329 return;
3330 }
3331
3332 list = allocate_lineno_list ();
3333
3334 list->next = (lineno_list_t *) NULL;
3335 list->file = cur_file_ptr;
3336 list->proc = cur_proc_ptr;
3337 list->frag = frag_now;
3338 list->paddr = frag_now_fix ();
3339 list->lineno = lineno;
3340
3341 /* We don't want to merge files which have line numbers. */
3342 cur_file_ptr->fdr.fMerge = 0;
3343
3344 /* A .loc directive will sometimes appear before a .ent directive,
3345 which means that cur_proc_ptr will be NULL here. Arrange to
3346 patch this up. */
3347 if (cur_proc_ptr == (proc_t *) NULL)
3348 {
3349 lineno_list_t **pl;
3350
3351 pl = &noproc_lineno;
3352 while (*pl != (lineno_list_t *) NULL)
3353 pl = &(*pl)->next;
3354 *pl = list;
3355 }
3356 else
3357 {
3358 last_lineno = list;
3359 *last_lineno_ptr = list;
3360 last_lineno_ptr = &list->next;
3361 }
3362}
3363
3364/* The MIPS assembler sometimes inserts nop instructions in the
3365 instruction stream. When this happens, we must patch up the .loc
3366 information so that it points to the instruction after the nop. */
3367
3368void
3369ecoff_fix_loc (old_frag, old_frag_offset)
3370 fragS *old_frag;
3371 unsigned long old_frag_offset;
3372{
3373 if (last_lineno != NULL
3374 && last_lineno->frag == old_frag
3375 && last_lineno->paddr == old_frag_offset)
3376 {
3377 last_lineno->frag = frag_now;
3378 last_lineno->paddr = frag_now_fix ();
3379 }
3380}
3381\f
3382/* Make sure the @stabs symbol is emitted. */
3383
3384static void
3385mark_stabs (ignore)
3386 int ignore;
3387{
3388 if (! stabs_seen)
3389 {
3390 /* Add a dummy @stabs dymbol. */
3391 stabs_seen = 1;
3392 (void) add_ecoff_symbol (stabs_symbol, stNil, scInfo,
3393 (symbolS *) NULL,
3394 (bfd_vma) 0, (symint_t) -1,
3395 ECOFF_MARK_STAB (0));
3396 }
3397}
3398\f
3399/* Parse .weakext directives. */
3400#ifndef TC_MIPS
3401/* For TC_MIPS use the version in tc-mips.c. */
3402void
3403ecoff_directive_weakext (ignore)
3404 int ignore;
3405{
3406 char *name;
3407 int c;
3408 symbolS *symbolP;
3409 expressionS exp;
3410
3411 name = input_line_pointer;
3412 c = get_symbol_end ();
3413 symbolP = symbol_find_or_make (name);
3414 *input_line_pointer = c;
3415
3416 SKIP_WHITESPACE ();
3417
3418 if (*input_line_pointer == ',')
3419 {
3420 if (S_IS_DEFINED (symbolP))
3421 {
3422 as_bad (_("Ignoring attempt to redefine symbol `%s'."),
3423 S_GET_NAME (symbolP));
3424 ignore_rest_of_line ();
3425 return;
3426 }
3427
3428 ++input_line_pointer;
3429 SKIP_WHITESPACE ();
3430 if (! is_end_of_line[(unsigned char) *input_line_pointer])
3431 {
3432 expression (&exp);
3433 if (exp.X_op != O_symbol)
3434 {
3435 as_bad (_("bad .weakext directive"));
3436 ignore_rest_of_line();
3437 return;
3438 }
49309057 3439 symbol_set_value_expression (symbolP, &exp);
252b5132
RH
3440 }
3441 }
3442
3443 S_SET_WEAK (symbolP);
3444
3445 demand_empty_rest_of_line ();
3446}
3447#endif /* not TC_MIPS */
3448\f
3449/* Handle .stabs directives. The actual parsing routine is done by a
3450 generic routine. This routine is called via OBJ_PROCESS_STAB.
3451 When this is called, input_line_pointer will be pointing at the
3452 value field of the stab.
3453
3454 .stabs directives have five fields:
3455 "string" a string, encoding the type information.
3456 code a numeric code, defined in <stab.h>
3457 0 a zero
3458 desc a zero or line number
3459 value a numeric value or an address.
3460
3461 If the value is relocatable, we transform this into:
3462 iss points as an index into string space
3463 value value from lookup of the name
3464 st st from lookup of the name
3465 sc sc from lookup of the name
3466 index code|CODE_MASK
3467
3468 If the value is not relocatable, we transform this into:
3469 iss points as an index into string space
3470 value value
3471 st st_Nil
3472 sc sc_Nil
3473 index code|CODE_MASK
3474
3475 .stabn directives have four fields (string is null):
3476 code a numeric code, defined in <stab.h>
3477 0 a zero
3478 desc a zero or a line number
3479 value a numeric value or an address. */
3480
3481void
3482ecoff_stab (sec, what, string, type, other, desc)
3483 segT sec;
3484 int what;
3485 const char *string;
3486 int type;
3487 int other;
3488 int desc;
3489{
3490 efdr_t *save_file_ptr = cur_file_ptr;
3491 symbolS *sym;
3492 symint_t value;
3493 bfd_vma addend;
3494 st_t st;
3495 sc_t sc;
3496 symint_t indx;
3497 localsym_t *hold = NULL;
3498
3499 ecoff_debugging_seen = 1;
3500
3501 /* We don't handle .stabd. */
3502 if (what != 's' && what != 'n')
3503 {
3504 as_bad (_(".stab%c is not supported"), what);
3505 return;
3506 }
3507
3508 /* A .stabn uses a null name, not an empty string. */
3509 if (what == 'n')
3510 string = NULL;
3511
3512 /* We ignore the other field. */
3513 if (other != 0)
3514 as_warn (_(".stab%c: ignoring non-zero other field"), what);
3515
3516 /* Make sure we have a current file. */
3517 if (cur_file_ptr == (efdr_t *) NULL)
3518 {
3519 add_file ((const char *) NULL, 0, 1);
3520 save_file_ptr = cur_file_ptr;
3521 }
3522
3523 /* For stabs in ECOFF, the first symbol must be @stabs. This is a
3524 signal to gdb. */
3525 if (stabs_seen == 0)
3526 mark_stabs (0);
3527
3528 /* Line number stabs are handled differently, since they have two
3529 values, the line number and the address of the label. We use the
3530 index field (aka desc) to hold the line number, and the value
3531 field to hold the address. The symbol type is st_Label, which
3532 should be different from the other stabs, so that gdb can
3533 recognize it. */
3534 if (type == N_SLINE)
3535 {
3536 SYMR dummy_symr;
3537 char *name;
3538 char name_end;
3539
3540#ifndef NO_LISTING
3541 if (listing)
3542 listing_source_line ((unsigned int) desc);
3543#endif
3544
3545 dummy_symr.index = desc;
3546 if (dummy_symr.index != desc)
3547 {
3548 as_warn (_("Line number (%d) for .stab%c directive cannot fit in index field (20 bits)"),
3549 desc, what);
3550 return;
3551 }
3552
3553 name = input_line_pointer;
3554 name_end = get_symbol_end ();
3555
3556 sym = symbol_find_or_make (name);
3557 *input_line_pointer = name_end;
3558
3559 value = 0;
3560 addend = 0;
3561 st = st_Label;
3562 sc = sc_Text;
3563 indx = desc;
3564 }
3565 else
3566 {
3567#ifndef NO_LISTING
3568 if (listing && (type == N_SO || type == N_SOL))
3569 listing_source_file (string);
3570#endif
3571
d9a62219 3572 if (isdigit ((unsigned char) *input_line_pointer)
252b5132
RH
3573 || *input_line_pointer == '-'
3574 || *input_line_pointer == '+')
3575 {
3576 st = st_Nil;
3577 sc = sc_Nil;
3578 sym = (symbolS *) NULL;
3579 value = get_absolute_expression ();
3580 addend = 0;
3581 }
3582 else if (! is_name_beginner ((unsigned char) *input_line_pointer))
3583 {
3584 as_warn (_("Illegal .stab%c directive, bad character"), what);
3585 return;
3586 }
3587 else
3588 {
3589 expressionS exp;
3590
3591 sc = sc_Nil;
3592 st = st_Nil;
3593
3594 expression (&exp);
3595 if (exp.X_op == O_constant)
3596 {
3597 sym = NULL;
3598 value = exp.X_add_number;
3599 addend = 0;
3600 }
3601 else if (exp.X_op == O_symbol)
3602 {
3603 sym = exp.X_add_symbol;
3604 value = 0;
3605 addend = exp.X_add_number;
3606 }
3607 else
3608 {
3609 sym = make_expr_symbol (&exp);
3610 value = 0;
3611 addend = 0;
3612 }
3613 }
3614
3615 indx = ECOFF_MARK_STAB (type);
3616 }
3617
3618 /* Don't store the stabs symbol we are creating as the type of the
3619 ECOFF symbol. We want to compute the type of the ECOFF symbol
3620 independently. */
3621 if (sym != (symbolS *) NULL)
49309057 3622 hold = symbol_get_obj (sym)->ecoff_symbol;
252b5132
RH
3623
3624 (void) add_ecoff_symbol (string, st, sc, sym, addend, value, indx);
3625
3626 if (sym != (symbolS *) NULL)
49309057 3627 symbol_get_obj (sym)->ecoff_symbol = hold;
252b5132
RH
3628
3629 /* Restore normal file type. */
3630 cur_file_ptr = save_file_ptr;
3631}
3632\f
3633/* Frob an ECOFF symbol. Small common symbols go into a special
3634 .scommon section rather than bfd_com_section. */
3635
3636void
3637ecoff_frob_symbol (sym)
3638 symbolS *sym;
3639{
3640 if (S_IS_COMMON (sym)
3641 && S_GET_VALUE (sym) > 0
3642 && S_GET_VALUE (sym) <= bfd_get_gp_size (stdoutput))
3643 {
3644 static asection scom_section;
3645 static asymbol scom_symbol;
3646
3647 /* We must construct a fake section similar to bfd_com_section
3648 but with the name .scommon. */
3649 if (scom_section.name == NULL)
3650 {
3651 scom_section = bfd_com_section;
3652 scom_section.name = ".scommon";
3653 scom_section.output_section = &scom_section;
3654 scom_section.symbol = &scom_symbol;
3655 scom_section.symbol_ptr_ptr = &scom_section.symbol;
3656 scom_symbol = *bfd_com_section.symbol;
3657 scom_symbol.name = ".scommon";
3658 scom_symbol.section = &scom_section;
3659 }
3660 S_SET_SEGMENT (sym, &scom_section);
3661 }
3662
3663 /* Double check weak symbols. */
49309057 3664 if (S_IS_WEAK (sym))
252b5132
RH
3665 {
3666 if (S_IS_COMMON (sym))
3667 as_bad (_("Symbol `%s' can not be both weak and common"),
3668 S_GET_NAME (sym));
3669 }
3670}
3671\f
3672/* Add bytes to the symbolic information buffer. */
3673
3674static char *
3675ecoff_add_bytes (buf, bufend, bufptr, need)
3676 char **buf;
3677 char **bufend;
3678 char *bufptr;
3679 unsigned long need;
3680{
3681 unsigned long at;
3682 unsigned long want;
3683
3684 at = bufptr - *buf;
3685 need -= *bufend - bufptr;
3686 if (need < PAGE_SIZE)
3687 need = PAGE_SIZE;
3688 want = (*bufend - *buf) + need;
3689 *buf = xrealloc (*buf, want);
3690 *bufend = *buf + want;
3691 return *buf + at;
3692}
3693
3694/* Adjust the symbolic information buffer to the alignment required
3695 for the ECOFF target debugging information. */
3696
3697static unsigned long
3698ecoff_padding_adjust (backend, buf, bufend, offset, bufptrptr)
3699 const struct ecoff_debug_swap *backend;
3700 char **buf;
3701 char **bufend;
3702 unsigned long offset;
3703 char **bufptrptr;
3704{
3705 bfd_size_type align;
3706
3707 align = backend->debug_align;
3708 if ((offset & (align - 1)) != 0)
3709 {
3710 unsigned long add;
3711
3712 add = align - (offset & (align - 1));
3713 if (*bufend - (*buf + offset) < add)
3714 (void) ecoff_add_bytes (buf, bufend, *buf + offset, add);
3715 memset (*buf + offset, 0, add);
3716 offset += add;
3717 if (bufptrptr != (char **) NULL)
3718 *bufptrptr = *buf + offset;
3719 }
3720
3721 return offset;
3722}
3723
3724/* Build the line number information. */
3725
3726static unsigned long
3727ecoff_build_lineno (backend, buf, bufend, offset, linecntptr)
3728 const struct ecoff_debug_swap *backend;
3729 char **buf;
3730 char **bufend;
3731 unsigned long offset;
3732 long *linecntptr;
3733{
3734 char *bufptr;
3735 register lineno_list_t *l;
3736 lineno_list_t *last;
3737 efdr_t *file;
3738 proc_t *proc;
3739 unsigned long c;
3740 long iline;
3741 long totcount;
3742 lineno_list_t first;
3743 lineno_list_t *local_first_lineno = first_lineno;
3744
3745 if (linecntptr != (long *) NULL)
3746 *linecntptr = 0;
3747
3748 bufptr = *buf + offset;
3749
3750 file = (efdr_t *) NULL;
3751 proc = (proc_t *) NULL;
3752 last = (lineno_list_t *) NULL;
3753 c = offset;
3754 iline = 0;
3755 totcount = 0;
3756
3757 /* For some reason the address of the first procedure is ignored
3758 when reading line numbers. This doesn't matter if the address of
3759 the first procedure is 0, but when gcc is generating MIPS
3760 embedded PIC code, it will put strings in the .text section
3761 before the first procedure. We cope by inserting a dummy line if
3762 the address of the first procedure is not 0. Hopefully this
3763 won't screw things up too badly.
3764
3765 Don't do this for ECOFF assembly source line numbers. They work
3766 without this extra attention. */
3767 if (debug_type != DEBUG_ECOFF
3768 && first_proc_ptr != (proc_t *) NULL
3769 && local_first_lineno != (lineno_list_t *) NULL
3770 && ((S_GET_VALUE (first_proc_ptr->sym->as_sym)
3771 + bfd_get_section_vma (stdoutput,
3772 S_GET_SEGMENT (first_proc_ptr->sym->as_sym)))
3773 != 0))
3774 {
3775 first.file = local_first_lineno->file;
3776 first.proc = local_first_lineno->proc;
3777 first.frag = &zero_address_frag;
3778 first.paddr = 0;
3779 first.lineno = 0;
3780
3781 first.next = local_first_lineno;
3782 local_first_lineno = &first;
3783 }
3784
3785 for (l = local_first_lineno; l != (lineno_list_t *) NULL; l = l->next)
3786 {
3787 long count;
3788 long delta;
3789
3790 /* Get the offset to the memory address of the next line number
3791 (in words). Do this first, so that we can skip ahead to the
3792 next useful line number entry. */
3793 if (l->next == (lineno_list_t *) NULL)
3794 {
3795 /* We want a count of zero, but it will be decremented
3796 before it is used. */
3797 count = 1;
3798 }
3799 else if (l->next->frag->fr_address + l->next->paddr
3800 > l->frag->fr_address + l->paddr)
3801 {
3802 count = ((l->next->frag->fr_address + l->next->paddr
3803 - (l->frag->fr_address + l->paddr))
3804 >> 2);
3805 }
3806 else
3807 {
3808 /* Don't change last, so we still get the right delta. */
3809 continue;
3810 }
3811
3812 if (l->file != file || l->proc != proc)
3813 {
3814 if (l->proc != proc && proc != (proc_t *) NULL)
3815 proc->pdr.lnHigh = last->lineno;
3816 if (l->file != file && file != (efdr_t *) NULL)
3817 {
3818 file->fdr.cbLine = c - file->fdr.cbLineOffset;
3819 file->fdr.cline = totcount + count;
3820 if (linecntptr != (long *) NULL)
3821 *linecntptr += totcount + count;
3822 totcount = 0;
3823 }
3824
3825 if (l->file != file)
3826 {
3827 efdr_t *last_file = file;
3828
3829 file = l->file;
3830 if (last_file != (efdr_t *) NULL)
3831 file->fdr.ilineBase
3832 = last_file->fdr.ilineBase + last_file->fdr.cline;
3833 else
3834 file->fdr.ilineBase = 0;
3835 file->fdr.cbLineOffset = c;
3836 }
3837 if (l->proc != proc)
3838 {
3839 proc = l->proc;
3840 if (proc != (proc_t *) NULL)
3841 {
3842 proc->pdr.lnLow = l->lineno;
3843 proc->pdr.cbLineOffset = c - file->fdr.cbLineOffset;
3844 proc->pdr.iline = totcount;
3845 }
3846 }
3847
3848 last = (lineno_list_t *) NULL;
3849 }
3850
3851 totcount += count;
3852
3853 /* Get the offset to this line number. */
3854 if (last == (lineno_list_t *) NULL)
3855 delta = 0;
3856 else
3857 delta = l->lineno - last->lineno;
3858
3859 /* Put in the offset to this line number. */
3860 while (delta != 0)
3861 {
3862 int setcount;
3863
3864 /* 1 is added to each count read. */
3865 --count;
3866 /* We can only adjust the word count by up to 15 words at a
3867 time. */
3868 if (count <= 0x0f)
3869 {
3870 setcount = count;
3871 count = 0;
3872 }
3873 else
3874 {
3875 setcount = 0x0f;
3876 count -= 0x0f;
3877 }
3878 if (delta >= -7 && delta <= 7)
3879 {
3880 if (bufptr >= *bufend)
3881 bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 1);
3882 *bufptr++ = setcount + (delta << 4);
3883 delta = 0;
3884 ++c;
3885 }
3886 else
3887 {
3888 int set;
3889
3890 if (*bufend - bufptr < 3)
3891 bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 3);
3892 *bufptr++ = setcount + (8 << 4);
3893 if (delta < -0x8000)
3894 {
3895 set = -0x8000;
3896 delta += 0x8000;
3897 }
3898 else if (delta > 0x7fff)
3899 {
3900 set = 0x7fff;
3901 delta -= 0x7fff;
3902 }
3903 else
3904 {
3905 set = delta;
3906 delta = 0;
3907 }
3908 *bufptr++ = set >> 8;
3909 *bufptr++ = set & 0xffff;
3910 c += 3;
3911 }
3912 }
3913
3914 /* Finish adjusting the count. */
3915 while (count > 0)
3916 {
3917 if (bufptr >= *bufend)
3918 bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 1);
3919 /* 1 is added to each count read. */
3920 --count;
3921 if (count > 0x0f)
3922 {
3923 *bufptr++ = 0x0f;
3924 count -= 0x0f;
3925 }
3926 else
3927 {
3928 *bufptr++ = count;
3929 count = 0;
3930 }
3931 ++c;
3932 }
3933
3934 ++iline;
3935 last = l;
3936 }
3937
3938 if (proc != (proc_t *) NULL)
3939 proc->pdr.lnHigh = last->lineno;
3940 if (file != (efdr_t *) NULL)
3941 {
3942 file->fdr.cbLine = c - file->fdr.cbLineOffset;
3943 file->fdr.cline = totcount;
3944 }
3945
3946 if (linecntptr != (long *) NULL)
3947 *linecntptr += totcount;
3948
3949 c = ecoff_padding_adjust (backend, buf, bufend, c, &bufptr);
3950
3951 return c;
3952}
3953
3954/* Build and swap out the symbols. */
3955
3956static unsigned long
3957ecoff_build_symbols (backend, buf, bufend, offset)
3958 const struct ecoff_debug_swap *backend;
3959 char **buf;
3960 char **bufend;
3961 unsigned long offset;
3962{
3963 const bfd_size_type external_sym_size = backend->external_sym_size;
3964 void (* const swap_sym_out) PARAMS ((bfd *, const SYMR *, PTR))
3965 = backend->swap_sym_out;
3966 char *sym_out;
3967 long isym;
3968 vlinks_t *file_link;
3969
3970 sym_out = *buf + offset;
3971
3972 isym = 0;
3973
3974 /* The symbols are stored by file. */
3975 for (file_link = file_desc.first;
3976 file_link != (vlinks_t *) NULL;
3977 file_link = file_link->next)
3978 {
3979 int ifilesym;
3980 int fil_cnt;
3981 efdr_t *fil_ptr;
3982 efdr_t *fil_end;
3983
3984 if (file_link->next == (vlinks_t *) NULL)
3985 fil_cnt = file_desc.objects_last_page;
3986 else
3987 fil_cnt = file_desc.objects_per_page;
3988 fil_ptr = file_link->datum->file;
3989 fil_end = fil_ptr + fil_cnt;
3990 for (; fil_ptr < fil_end; fil_ptr++)
3991 {
3992 vlinks_t *sym_link;
3993
3994 fil_ptr->fdr.isymBase = isym;
3995 ifilesym = isym;
3996 for (sym_link = fil_ptr->symbols.first;
3997 sym_link != (vlinks_t *) NULL;
3998 sym_link = sym_link->next)
3999 {
4000 int sym_cnt;
4001 localsym_t *sym_ptr;
4002 localsym_t *sym_end;
4003
4004 if (sym_link->next == (vlinks_t *) NULL)
4005 sym_cnt = fil_ptr->symbols.objects_last_page;
4006 else
4007 sym_cnt = fil_ptr->symbols.objects_per_page;
4008 sym_ptr = sym_link->datum->sym;
4009 sym_end = sym_ptr + sym_cnt;
4010 for (; sym_ptr < sym_end; sym_ptr++)
4011 {
4012 int local;
4013 symbolS *as_sym;
4014 forward_t *f;
4015
4016 know (sym_ptr->file_ptr == fil_ptr);
4017
4018 /* If there is no associated gas symbol, then this
4019 is a pure debugging symbol. We have already
4020 added the name (if any) to fil_ptr->strings.
4021 Otherwise we must decide whether this is an
4022 external or a local symbol (actually, it may be
4023 both if the local provides additional debugging
4024 information for the external). */
4025 local = 1;
4026 as_sym = sym_ptr->as_sym;
4027 if (as_sym != (symbolS *) NULL)
4028 {
4029 symint_t indx;
4030
4031 /* The value of a block start symbol is the
4032 offset from the start of the procedure. For
4033 other symbols we just use the gas value (but
4034 we must offset it by the vma of the section,
4035 just as BFD does, because BFD will not see
4036 this value). */
4037 if (sym_ptr->ecoff_sym.asym.st == (int) st_Block
4038 && sym_ptr->ecoff_sym.asym.sc == (int) sc_Text)
4039 {
4040 symbolS *begin_sym;
4041
4042 know (sym_ptr->proc_ptr != (proc_t *) NULL);
4043 begin_sym = sym_ptr->proc_ptr->sym->as_sym;
4044 if (S_GET_SEGMENT (as_sym)
4045 != S_GET_SEGMENT (begin_sym))
4046 as_warn (_(".begin/.bend in different segments"));
4047 sym_ptr->ecoff_sym.asym.value =
4048 S_GET_VALUE (as_sym) - S_GET_VALUE (begin_sym);
4049 }
4050 else
4051 sym_ptr->ecoff_sym.asym.value =
4052 (S_GET_VALUE (as_sym)
4053 + bfd_get_section_vma (stdoutput,
4054 S_GET_SEGMENT (as_sym))
4055 + sym_ptr->addend);
4056
4057 sym_ptr->ecoff_sym.weakext = S_IS_WEAK (as_sym);
4058
4059 /* Set st_Proc to st_StaticProc for local
4060 functions. */
4061 if (sym_ptr->ecoff_sym.asym.st == st_Proc
4062 && S_IS_DEFINED (as_sym)
4063 && ! S_IS_EXTERNAL (as_sym)
4064 && ! S_IS_WEAK (as_sym))
4065 sym_ptr->ecoff_sym.asym.st = st_StaticProc;
4066
4067 /* Get the type and storage class based on where
4068 the symbol actually wound up. Traditionally,
4069 N_LBRAC and N_RBRAC are *not* relocated. */
4070 indx = sym_ptr->ecoff_sym.asym.index;
4071 if (sym_ptr->ecoff_sym.asym.st == st_Nil
4072 && sym_ptr->ecoff_sym.asym.sc == sc_Nil
4073 && (! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym)
4074 || ((ECOFF_UNMARK_STAB (indx) != N_LBRAC)
4075 && (ECOFF_UNMARK_STAB (indx) != N_RBRAC))))
4076 {
4077 segT seg;
4078 const char *segname;
4079 st_t st;
4080 sc_t sc;
4081
4082 seg = S_GET_SEGMENT (as_sym);
4083 segname = segment_name (seg);
4084
4085 if (! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym)
4086 && (S_IS_EXTERNAL (as_sym)
4087 || S_IS_WEAK (as_sym)
4088 || ! S_IS_DEFINED (as_sym)))
4089 {
49309057
ILT
4090 if ((symbol_get_bfdsym (as_sym)->flags
4091 & BSF_FUNCTION) != 0)
252b5132
RH
4092 st = st_Proc;
4093 else
4094 st = st_Global;
4095 }
4096 else if (seg == text_section)
4097 st = st_Label;
4098 else
4099 st = st_Static;
4100
4101 if (! S_IS_DEFINED (as_sym))
4102 {
49309057
ILT
4103 valueT s;
4104
4105 s = symbol_get_obj (as_sym)->ecoff_extern_size;
4106 if (s == 0
4107 || s > bfd_get_gp_size (stdoutput))
252b5132
RH
4108 sc = sc_Undefined;
4109 else
4110 {
4111 sc = sc_SUndefined;
49309057 4112 sym_ptr->ecoff_sym.asym.value = s;
252b5132
RH
4113 }
4114#ifdef S_SET_SIZE
49309057 4115 S_SET_SIZE (as_sym, s);
252b5132
RH
4116#endif
4117 }
4118 else if (S_IS_COMMON (as_sym))
4119 {
4120 if (S_GET_VALUE (as_sym) > 0
4121 && (S_GET_VALUE (as_sym)
4122 <= bfd_get_gp_size (stdoutput)))
4123 sc = sc_SCommon;
4124 else
4125 sc = sc_Common;
4126 }
4127 else if (seg == text_section)
4128 sc = sc_Text;
4129 else if (seg == data_section)
4130 sc = sc_Data;
4131 else if (strcmp (segname, ".rdata") == 0
4132 || strcmp (segname, ".rodata") == 0)
4133 sc = sc_RData;
4134 else if (strcmp (segname, ".sdata") == 0)
4135 sc = sc_SData;
4136 else if (seg == bss_section)
4137 sc = sc_Bss;
4138 else if (strcmp (segname, ".sbss") == 0)
4139 sc = sc_SBss;
4140 else if (seg == &bfd_abs_section)
4141 sc = sc_Abs;
4142 else
4143 {
4144 /* This must be a user named section.
4145 This is not possible in ECOFF, but it
4146 is in ELF. */
4147 sc = sc_Data;
4148 }
4149
4150 sym_ptr->ecoff_sym.asym.st = (int) st;
4151 sym_ptr->ecoff_sym.asym.sc = (int) sc;
4152 }
4153
4154 /* This is just an external symbol if it is
4155 outside a procedure and it has a type.
4156 FIXME: g++ will generate symbols which have
4157 different names in the debugging information
4158 than the actual symbol. Should we handle
4159 them here? */
4160 if ((S_IS_EXTERNAL (as_sym)
4161 || S_IS_WEAK (as_sym)
4162 || ! S_IS_DEFINED (as_sym))
4163 && sym_ptr->proc_ptr == (proc_t *) NULL
4164 && sym_ptr->ecoff_sym.asym.st != (int) st_Nil
4165 && ! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym))
4166 local = 0;
4167
4168 /* This is just an external symbol if it is a
4169 common symbol. */
4170 if (S_IS_COMMON (as_sym))
4171 local = 0;
4172
4173 /* If an st_end symbol has an associated gas
4174 symbol, then it is a local label created for
4175 a .bend or .end directive. Stabs line
4176 numbers will have \001 in the names. */
4177 if (local
4178 && sym_ptr->ecoff_sym.asym.st != st_End
4179 && strchr (sym_ptr->name, '\001') == 0)
4180 sym_ptr->ecoff_sym.asym.iss =
4181 add_string (&fil_ptr->strings,
4182 fil_ptr->str_hash,
4183 sym_ptr->name,
4184 (shash_t **) NULL);
4185 }
4186
4187 /* We now know the index of this symbol; fill in
4188 locations that have been waiting for that
4189 information. */
4190 if (sym_ptr->begin_ptr != (localsym_t *) NULL)
4191 {
4192 localsym_t *begin_ptr;
4193 st_t begin_type;
4194
4195 know (local);
4196 begin_ptr = sym_ptr->begin_ptr;
4197 know (begin_ptr->sym_index != -1);
4198 sym_ptr->ecoff_sym.asym.index = begin_ptr->sym_index;
4199 if (sym_ptr->ecoff_sym.asym.sc != (int) sc_Info)
4200 sym_ptr->ecoff_sym.asym.iss =
4201 begin_ptr->ecoff_sym.asym.iss;
4202
4203 begin_type = begin_ptr->ecoff_sym.asym.st;
4204 if (begin_type == st_File
4205 || begin_type == st_Block)
4206 {
4207 begin_ptr->ecoff_sym.asym.index =
4208 isym - ifilesym + 1;
4209 (*swap_sym_out) (stdoutput,
4210 &begin_ptr->ecoff_sym.asym,
4211 (*buf
4212 + offset
4213 + (begin_ptr->sym_index
4214 * external_sym_size)));
4215 }
4216 else
4217 {
4218 know (begin_ptr->index_ptr != (aux_t *) NULL);
4219 begin_ptr->index_ptr->data.isym =
4220 isym - ifilesym + 1;
4221 }
4222
4223 /* The value of the symbol marking the end of a
4224 procedure is the size of the procedure. The
4225 value of the symbol marking the end of a
4226 block is the offset from the start of the
4227 procedure to the block. */
4228 if (begin_type == st_Proc
4229 || begin_type == st_StaticProc)
4230 {
4231 know (as_sym != (symbolS *) NULL);
4232 know (begin_ptr->as_sym != (symbolS *) NULL);
4233 if (S_GET_SEGMENT (as_sym)
4234 != S_GET_SEGMENT (begin_ptr->as_sym))
4235 as_warn (_(".begin/.bend in different segments"));
4236 sym_ptr->ecoff_sym.asym.value =
4237 (S_GET_VALUE (as_sym)
4238 - S_GET_VALUE (begin_ptr->as_sym));
4239
4240 /* If the size is odd, this is probably a
4241 mips16 function; force it to be even. */
4242 if ((sym_ptr->ecoff_sym.asym.value & 1) != 0)
4243 ++sym_ptr->ecoff_sym.asym.value;
4244
4245#ifdef S_SET_SIZE
4246 S_SET_SIZE (begin_ptr->as_sym,
4247 sym_ptr->ecoff_sym.asym.value);
4248#endif
4249 }
4250 else if (begin_type == st_Block
4251 && sym_ptr->ecoff_sym.asym.sc != (int) sc_Info)
4252 {
4253 symbolS *begin_sym;
4254
4255 know (as_sym != (symbolS *) NULL);
4256 know (sym_ptr->proc_ptr != (proc_t *) NULL);
4257 begin_sym = sym_ptr->proc_ptr->sym->as_sym;
4258 if (S_GET_SEGMENT (as_sym)
4259 != S_GET_SEGMENT (begin_sym))
4260 as_warn (_(".begin/.bend in different segments"));
4261 sym_ptr->ecoff_sym.asym.value =
4262 S_GET_VALUE (as_sym) - S_GET_VALUE (begin_sym);
4263 }
4264 }
4265
4266 for (f = sym_ptr->forward_ref;
4267 f != (forward_t *) NULL;
4268 f = f->next)
4269 {
4270 know (local);
4271 f->ifd_ptr->data.isym = fil_ptr->file_index;
4272 f->index_ptr->data.rndx.index = isym - ifilesym;
4273 }
4274
4275 if (local)
4276 {
4277 if (*bufend - sym_out < external_sym_size)
4278 sym_out = ecoff_add_bytes (buf, bufend,
4279 sym_out,
4280 external_sym_size);
4281 (*swap_sym_out) (stdoutput, &sym_ptr->ecoff_sym.asym,
4282 sym_out);
4283 sym_out += external_sym_size;
4284
4285 sym_ptr->sym_index = isym;
4286
4287 if (sym_ptr->proc_ptr != (proc_t *) NULL
4288 && sym_ptr->proc_ptr->sym == sym_ptr)
4289 sym_ptr->proc_ptr->pdr.isym = isym - ifilesym;
4290
4291 ++isym;
4292 }
4293
4294 /* Record the local symbol index and file number in
4295 case this is an external symbol. Note that this
4296 destroys the asym.index field. */
4297 if (as_sym != (symbolS *) NULL
49309057 4298 && symbol_get_obj (as_sym)->ecoff_symbol == sym_ptr)
252b5132
RH
4299 {
4300 if ((sym_ptr->ecoff_sym.asym.st == st_Proc
4301 || sym_ptr->ecoff_sym.asym.st == st_StaticProc)
4302 && local)
4303 sym_ptr->ecoff_sym.asym.index = isym - ifilesym - 1;
4304 sym_ptr->ecoff_sym.ifd = fil_ptr->file_index;
4305
4306 /* Don't try to merge an FDR which has an
4307 external symbol attached to it. */
4308 if (S_IS_EXTERNAL (as_sym) || S_IS_WEAK (as_sym))
4309 fil_ptr->fdr.fMerge = 0;
4310 }
4311 }
4312 }
4313 fil_ptr->fdr.csym = isym - fil_ptr->fdr.isymBase;
4314 }
4315 }
4316
4317 return offset + isym * external_sym_size;
4318}
4319
4320/* Swap out the procedure information. */
4321
4322static unsigned long
4323ecoff_build_procs (backend, buf, bufend, offset)
4324 const struct ecoff_debug_swap *backend;
4325 char **buf;
4326 char **bufend;
4327 unsigned long offset;
4328{
4329 const bfd_size_type external_pdr_size = backend->external_pdr_size;
4330 void (* const swap_pdr_out) PARAMS ((bfd *, const PDR *, PTR))
4331 = backend->swap_pdr_out;
4332 char *pdr_out;
4333 long iproc;
4334 vlinks_t *file_link;
4335
4336 pdr_out = *buf + offset;
4337
4338 iproc = 0;
4339
4340 /* The procedures are stored by file. */
4341 for (file_link = file_desc.first;
4342 file_link != (vlinks_t *) NULL;
4343 file_link = file_link->next)
4344 {
4345 int fil_cnt;
4346 efdr_t *fil_ptr;
4347 efdr_t *fil_end;
4348
4349 if (file_link->next == (vlinks_t *) NULL)
4350 fil_cnt = file_desc.objects_last_page;
4351 else
4352 fil_cnt = file_desc.objects_per_page;
4353 fil_ptr = file_link->datum->file;
4354 fil_end = fil_ptr + fil_cnt;
4355 for (; fil_ptr < fil_end; fil_ptr++)
4356 {
4357 vlinks_t *proc_link;
4358 int first;
4359
4360 fil_ptr->fdr.ipdFirst = iproc;
4361 first = 1;
4362 for (proc_link = fil_ptr->procs.first;
4363 proc_link != (vlinks_t *) NULL;
4364 proc_link = proc_link->next)
4365 {
4366 int prc_cnt;
4367 proc_t *proc_ptr;
4368 proc_t *proc_end;
4369
4370 if (proc_link->next == (vlinks_t *) NULL)
4371 prc_cnt = fil_ptr->procs.objects_last_page;
4372 else
4373 prc_cnt = fil_ptr->procs.objects_per_page;
4374 proc_ptr = proc_link->datum->proc;
4375 proc_end = proc_ptr + prc_cnt;
4376 for (; proc_ptr < proc_end; proc_ptr++)
4377 {
4378 symbolS *adr_sym;
4379 unsigned long adr;
4380
4381 adr_sym = proc_ptr->sym->as_sym;
4382 adr = (S_GET_VALUE (adr_sym)
4383 + bfd_get_section_vma (stdoutput,
4384 S_GET_SEGMENT (adr_sym)));
4385 if (first)
4386 {
4387 /* This code used to force the adr of the very
4388 first fdr to be 0. However, the native tools
4389 don't do that, and I can't remember why it
4390 used to work that way, so I took it out. */
4391 fil_ptr->fdr.adr = adr;
4392 first = 0;
4393 }
4394 proc_ptr->pdr.adr = adr - fil_ptr->fdr.adr;
4395 if (*bufend - pdr_out < external_pdr_size)
4396 pdr_out = ecoff_add_bytes (buf, bufend,
4397 pdr_out,
4398 external_pdr_size);
4399 (*swap_pdr_out) (stdoutput, &proc_ptr->pdr, pdr_out);
4400 pdr_out += external_pdr_size;
4401 ++iproc;
4402 }
4403 }
4404 fil_ptr->fdr.cpd = iproc - fil_ptr->fdr.ipdFirst;
4405 }
4406 }
4407
4408 return offset + iproc * external_pdr_size;
4409}
4410
4411/* Swap out the aux information. */
4412
4413static unsigned long
4414ecoff_build_aux (backend, buf, bufend, offset)
4415 const struct ecoff_debug_swap *backend;
4416 char **buf;
4417 char **bufend;
4418 unsigned long offset;
4419{
4420 int bigendian;
4421 union aux_ext *aux_out;
4422 long iaux;
4423 vlinks_t *file_link;
4424
4425 bigendian = bfd_big_endian (stdoutput);
4426
4427 aux_out = (union aux_ext *) (*buf + offset);
4428
4429 iaux = 0;
4430
4431 /* The aux entries are stored by file. */
4432 for (file_link = file_desc.first;
4433 file_link != (vlinks_t *) NULL;
4434 file_link = file_link->next)
4435 {
4436 int fil_cnt;
4437 efdr_t *fil_ptr;
4438 efdr_t *fil_end;
4439
4440 if (file_link->next == (vlinks_t *) NULL)
4441 fil_cnt = file_desc.objects_last_page;
4442 else
4443 fil_cnt = file_desc.objects_per_page;
4444 fil_ptr = file_link->datum->file;
4445 fil_end = fil_ptr + fil_cnt;
4446 for (; fil_ptr < fil_end; fil_ptr++)
4447 {
4448 vlinks_t *aux_link;
4449
4450 fil_ptr->fdr.fBigendian = bigendian;
4451 fil_ptr->fdr.iauxBase = iaux;
4452 for (aux_link = fil_ptr->aux_syms.first;
4453 aux_link != (vlinks_t *) NULL;
4454 aux_link = aux_link->next)
4455 {
4456 int aux_cnt;
4457 aux_t *aux_ptr;
4458 aux_t *aux_end;
4459
4460 if (aux_link->next == (vlinks_t *) NULL)
4461 aux_cnt = fil_ptr->aux_syms.objects_last_page;
4462 else
4463 aux_cnt = fil_ptr->aux_syms.objects_per_page;
4464 aux_ptr = aux_link->datum->aux;
4465 aux_end = aux_ptr + aux_cnt;
4466 for (; aux_ptr < aux_end; aux_ptr++)
4467 {
4468 if (*bufend - (char *) aux_out < sizeof (union aux_ext))
4469 aux_out = ((union aux_ext *)
4470 ecoff_add_bytes (buf, bufend,
4471 (char *) aux_out,
4472 sizeof (union aux_ext)));
4473 switch (aux_ptr->type)
4474 {
4475 case aux_tir:
4476 (*backend->swap_tir_out) (bigendian,
4477 &aux_ptr->data.ti,
4478 &aux_out->a_ti);
4479 break;
4480 case aux_rndx:
4481 (*backend->swap_rndx_out) (bigendian,
4482 &aux_ptr->data.rndx,
4483 &aux_out->a_rndx);
4484 break;
4485 case aux_dnLow:
4486 AUX_PUT_DNLOW (bigendian, aux_ptr->data.dnLow,
4487 aux_out);
4488 break;
4489 case aux_dnHigh:
4490 AUX_PUT_DNHIGH (bigendian, aux_ptr->data.dnHigh,
4491 aux_out);
4492 break;
4493 case aux_isym:
4494 AUX_PUT_ISYM (bigendian, aux_ptr->data.isym,
4495 aux_out);
4496 break;
4497 case aux_iss:
4498 AUX_PUT_ISS (bigendian, aux_ptr->data.iss,
4499 aux_out);
4500 break;
4501 case aux_width:
4502 AUX_PUT_WIDTH (bigendian, aux_ptr->data.width,
4503 aux_out);
4504 break;
4505 case aux_count:
4506 AUX_PUT_COUNT (bigendian, aux_ptr->data.count,
4507 aux_out);
4508 break;
4509 }
4510
4511 ++aux_out;
4512 ++iaux;
4513 }
4514 }
4515 fil_ptr->fdr.caux = iaux - fil_ptr->fdr.iauxBase;
4516 }
4517 }
4518
4519 return ecoff_padding_adjust (backend, buf, bufend,
4520 offset + iaux * sizeof (union aux_ext),
4521 (char **) NULL);
4522}
4523
4524/* Copy out the strings from a varray_t. This returns the number of
4525 bytes copied, rather than the new offset. */
4526
4527static unsigned long
4528ecoff_build_strings (buf, bufend, offset, vp)
4529 char **buf;
4530 char **bufend;
4531 unsigned long offset;
4532 varray_t *vp;
4533{
4534 unsigned long istr;
4535 char *str_out;
4536 vlinks_t *str_link;
4537
4538 str_out = *buf + offset;
4539
4540 istr = 0;
4541
4542 for (str_link = vp->first;
4543 str_link != (vlinks_t *) NULL;
4544 str_link = str_link->next)
4545 {
4546 unsigned long str_cnt;
4547
4548 if (str_link->next == (vlinks_t *) NULL)
4549 str_cnt = vp->objects_last_page;
4550 else
4551 str_cnt = vp->objects_per_page;
4552
4553 if (*bufend - str_out < str_cnt)
4554 str_out = ecoff_add_bytes (buf, bufend, str_out, str_cnt);
4555
4556 memcpy (str_out, str_link->datum->byte, str_cnt);
4557 str_out += str_cnt;
4558 istr += str_cnt;
4559 }
4560
4561 return istr;
4562}
4563
4564/* Dump out the local strings. */
4565
4566static unsigned long
4567ecoff_build_ss (backend, buf, bufend, offset)
4568 const struct ecoff_debug_swap *backend;
4569 char **buf;
4570 char **bufend;
4571 unsigned long offset;
4572{
4573 long iss;
4574 vlinks_t *file_link;
4575
4576 iss = 0;
4577
4578 for (file_link = file_desc.first;
4579 file_link != (vlinks_t *) NULL;
4580 file_link = file_link->next)
4581 {
4582 int fil_cnt;
4583 efdr_t *fil_ptr;
4584 efdr_t *fil_end;
4585
4586 if (file_link->next == (vlinks_t *) NULL)
4587 fil_cnt = file_desc.objects_last_page;
4588 else
4589 fil_cnt = file_desc.objects_per_page;
4590 fil_ptr = file_link->datum->file;
4591 fil_end = fil_ptr + fil_cnt;
4592 for (; fil_ptr < fil_end; fil_ptr++)
4593 {
4594 long ss_cnt;
4595
4596 fil_ptr->fdr.issBase = iss;
4597 ss_cnt = ecoff_build_strings (buf, bufend, offset + iss,
4598 &fil_ptr->strings);
4599 fil_ptr->fdr.cbSs = ss_cnt;
4600 iss += ss_cnt;
4601 }
4602 }
4603
4604 return ecoff_padding_adjust (backend, buf, bufend, offset + iss,
4605 (char **) NULL);
4606}
4607
4608/* Swap out the file descriptors. */
4609
4610static unsigned long
4611ecoff_build_fdr (backend, buf, bufend, offset)
4612 const struct ecoff_debug_swap *backend;
4613 char **buf;
4614 char **bufend;
4615 unsigned long offset;
4616{
4617 const bfd_size_type external_fdr_size = backend->external_fdr_size;
4618 void (* const swap_fdr_out) PARAMS ((bfd *, const FDR *, PTR))
4619 = backend->swap_fdr_out;
4620 long ifile;
4621 char *fdr_out;
4622 vlinks_t *file_link;
4623
4624 ifile = 0;
4625
4626 fdr_out = *buf + offset;
4627
4628 for (file_link = file_desc.first;
4629 file_link != (vlinks_t *) NULL;
4630 file_link = file_link->next)
4631 {
4632 int fil_cnt;
4633 efdr_t *fil_ptr;
4634 efdr_t *fil_end;
4635
4636 if (file_link->next == (vlinks_t *) NULL)
4637 fil_cnt = file_desc.objects_last_page;
4638 else
4639 fil_cnt = file_desc.objects_per_page;
4640 fil_ptr = file_link->datum->file;
4641 fil_end = fil_ptr + fil_cnt;
4642 for (; fil_ptr < fil_end; fil_ptr++)
4643 {
4644 if (*bufend - fdr_out < external_fdr_size)
4645 fdr_out = ecoff_add_bytes (buf, bufend, fdr_out,
4646 external_fdr_size);
4647 (*swap_fdr_out) (stdoutput, &fil_ptr->fdr, fdr_out);
4648 fdr_out += external_fdr_size;
4649 ++ifile;
4650 }
4651 }
4652
4653 return offset + ifile * external_fdr_size;
4654}
4655
4656/* Set up the external symbols. These are supposed to be handled by
4657 the backend. This routine just gets the right information and
4658 calls a backend function to deal with it. */
4659
4660static void
4661ecoff_setup_ext ()
4662{
4663 register symbolS *sym;
4664
4665 for (sym = symbol_rootP; sym != (symbolS *) NULL; sym = symbol_next (sym))
4666 {
49309057 4667 if (symbol_get_obj (sym)->ecoff_symbol == NULL)
252b5132
RH
4668 continue;
4669
4670 /* If this is a local symbol, then force the fields to zero. */
4671 if (! S_IS_EXTERNAL (sym)
4672 && ! S_IS_WEAK (sym)
4673 && S_IS_DEFINED (sym))
4674 {
49309057
ILT
4675 struct localsym *lsym;
4676
4677 lsym = symbol_get_obj (sym)->ecoff_symbol;
4678 lsym->ecoff_sym.asym.value = 0;
4679 lsym->ecoff_sym.asym.st = (int) st_Nil;
4680 lsym->ecoff_sym.asym.sc = (int) sc_Nil;
4681 lsym->ecoff_sym.asym.index = indexNil;
252b5132
RH
4682 }
4683
49309057 4684 obj_ecoff_set_ext (sym, &symbol_get_obj (sym)->ecoff_symbol->ecoff_sym);
252b5132
RH
4685 }
4686}
4687
4688/* Build the ECOFF debugging information. */
4689
4690unsigned long
4691ecoff_build_debug (hdr, bufp, backend)
4692 HDRR *hdr;
4693 char **bufp;
4694 const struct ecoff_debug_swap *backend;
4695{
4696 const bfd_size_type external_pdr_size = backend->external_pdr_size;
4697 tag_t *ptag;
4698 tag_t *ptag_next;
4699 efdr_t *fil_ptr;
4700 int end_warning;
4701 efdr_t *hold_file_ptr;
4702 proc_t * hold_proc_ptr;
4703 symbolS *sym;
4704 char *buf;
4705 char *bufend;
4706 unsigned long offset;
4707
4708 /* Make sure we have a file. */
4709 if (first_file == (efdr_t *) NULL)
4710 add_file ((const char *) NULL, 0, 1);
4711
4712 /* Handle any top level tags. */
4713 for (ptag = top_tag_head->first_tag;
4714 ptag != (tag_t *) NULL;
4715 ptag = ptag_next)
4716 {
4717 if (ptag->forward_ref != (forward_t *) NULL)
4718 add_unknown_tag (ptag);
4719
4720 ptag_next = ptag->same_block;
4721 ptag->hash_ptr->tag_ptr = ptag->same_name;
4722 free_tag (ptag);
4723 }
4724
4725 free_thead (top_tag_head);
4726
4727 /* Look through the symbols. Add debugging information for each
4728 symbol that has not already received it. */
4729 hold_file_ptr = cur_file_ptr;
4730 hold_proc_ptr = cur_proc_ptr;
4731 cur_proc_ptr = (proc_t *) NULL;
4732 for (sym = symbol_rootP; sym != (symbolS *) NULL; sym = symbol_next (sym))
4733 {
49309057
ILT
4734 if (symbol_get_obj (sym)->ecoff_symbol != NULL
4735 || symbol_get_obj (sym)->ecoff_file == (efdr_t *) NULL
4736 || (symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) != 0)
252b5132
RH
4737 continue;
4738
49309057 4739 cur_file_ptr = symbol_get_obj (sym)->ecoff_file;
252b5132
RH
4740 add_ecoff_symbol ((const char *) NULL, st_Nil, sc_Nil, sym,
4741 (bfd_vma) 0, S_GET_VALUE (sym), indexNil);
4742 }
4743 cur_proc_ptr = hold_proc_ptr;
4744 cur_file_ptr = hold_file_ptr;
4745
4746 /* Output an ending symbol for all the files. We have to do this
4747 here for the last file, so we may as well do it for all of the
4748 files. */
4749 end_warning = 0;
4750 for (fil_ptr = first_file;
4751 fil_ptr != (efdr_t *) NULL;
4752 fil_ptr = fil_ptr->next_file)
4753 {
4754 cur_file_ptr = fil_ptr;
4755 while (cur_file_ptr->cur_scope != (scope_t *) NULL
4756 && cur_file_ptr->cur_scope->prev != (scope_t *) NULL)
4757 {
4758 cur_file_ptr->cur_scope = cur_file_ptr->cur_scope->prev;
4759 if (! end_warning && ! cur_file_ptr->fake)
4760 {
4761 as_warn (_("Missing .end or .bend at end of file"));
4762 end_warning = 1;
4763 }
4764 }
4765 if (cur_file_ptr->cur_scope != (scope_t *) NULL)
4766 (void) add_ecoff_symbol ((const char *) NULL,
4767 st_End, sc_Text,
4768 (symbolS *) NULL,
4769 (bfd_vma) 0,
4770 (symint_t) 0,
4771 (symint_t) 0);
4772 }
4773
4774 /* Build the symbolic information. */
4775 offset = 0;
4776 buf = xmalloc (PAGE_SIZE);
4777 bufend = buf + PAGE_SIZE;
4778
4779 /* Build the line number information. */
4780 hdr->cbLineOffset = offset;
4781 offset = ecoff_build_lineno (backend, &buf, &bufend, offset,
4782 &hdr->ilineMax);
4783 hdr->cbLine = offset - hdr->cbLineOffset;
4784
4785 /* We don't use dense numbers at all. */
4786 hdr->idnMax = 0;
4787 hdr->cbDnOffset = 0;
4788
4789 /* We can't build the PDR table until we have built the symbols,
4790 because a PDR contains a symbol index. However, we set aside
4791 space at this point. */
4792 hdr->ipdMax = proc_cnt;
4793 hdr->cbPdOffset = offset;
4794 if (bufend - (buf + offset) < proc_cnt * external_pdr_size)
4795 (void) ecoff_add_bytes (&buf, &bufend, buf + offset,
4796 proc_cnt * external_pdr_size);
4797 offset += proc_cnt * external_pdr_size;
4798
4799 /* Build the local symbols. */
4800 hdr->cbSymOffset = offset;
4801 offset = ecoff_build_symbols (backend, &buf, &bufend, offset);
4802 hdr->isymMax = (offset - hdr->cbSymOffset) / backend->external_sym_size;
4803
4804 /* Building the symbols initializes the symbol index in the PDR's.
4805 Now we can swap out the PDR's. */
4806 (void) ecoff_build_procs (backend, &buf, &bufend, hdr->cbPdOffset);
4807
4808 /* We don't use optimization symbols. */
4809 hdr->ioptMax = 0;
4810 hdr->cbOptOffset = 0;
4811
4812 /* Swap out the auxiliary type information. */
4813 hdr->cbAuxOffset = offset;
4814 offset = ecoff_build_aux (backend, &buf, &bufend, offset);
4815 hdr->iauxMax = (offset - hdr->cbAuxOffset) / sizeof (union aux_ext);
4816
4817 /* Copy out the local strings. */
4818 hdr->cbSsOffset = offset;
4819 offset = ecoff_build_ss (backend, &buf, &bufend, offset);
4820 hdr->issMax = offset - hdr->cbSsOffset;
4821
4822 /* We don't use relative file descriptors. */
4823 hdr->crfd = 0;
4824 hdr->cbRfdOffset = 0;
4825
4826 /* Swap out the file descriptors. */
4827 hdr->cbFdOffset = offset;
4828 offset = ecoff_build_fdr (backend, &buf, &bufend, offset);
4829 hdr->ifdMax = (offset - hdr->cbFdOffset) / backend->external_fdr_size;
4830
4831 /* Set up the external symbols, which are handled by the BFD back
4832 end. */
4833 hdr->issExtMax = 0;
4834 hdr->cbSsExtOffset = 0;
4835 hdr->iextMax = 0;
4836 hdr->cbExtOffset = 0;
4837 ecoff_setup_ext ();
4838
4839 know ((offset & (backend->debug_align - 1)) == 0);
4840
4841 /* FIXME: This value should be determined from the .verstamp directive,
4842 with reasonable defaults in config files. */
4843#ifdef TC_ALPHA
4844 hdr->vstamp = 0x030b;
4845#else
4846 hdr->vstamp = 0x020b;
4847#endif
4848
4849 *bufp = buf;
4850 return offset;
4851}
4852\f
4853/* Allocate a cluster of pages. */
4854
4855#ifndef MALLOC_CHECK
4856
4857static page_type *
4858allocate_cluster (npages)
4859 unsigned long npages;
4860{
4861 register page_type *value = (page_type *) xmalloc (npages * PAGE_USIZE);
4862
4863#ifdef ECOFF_DEBUG
4864 if (debug > 3)
4865 fprintf (stderr, "\talloc\tnpages = %d, value = 0x%.8x\n", npages, value);
4866#endif
4867
4868 memset (value, 0, npages * PAGE_USIZE);
4869
4870 return value;
4871}
4872
4873
4874static page_type *cluster_ptr = NULL;
4875static unsigned long pages_left = 0;
4876
4877#endif /* MALLOC_CHECK */
4878
4879/* Allocate one page (which is initialized to 0). */
4880
4881static page_type *
4882allocate_page ()
4883{
4884#ifndef MALLOC_CHECK
4885
4886 if (pages_left == 0)
4887 {
4888 pages_left = MAX_CLUSTER_PAGES;
4889 cluster_ptr = allocate_cluster (pages_left);
4890 }
4891
4892 pages_left--;
4893 return cluster_ptr++;
4894
4895#else /* MALLOC_CHECK */
4896
4897 page_type *ptr;
4898
4899 ptr = xmalloc (PAGE_USIZE);
4900 memset (ptr, 0, PAGE_USIZE);
4901 return ptr;
4902
4903#endif /* MALLOC_CHECK */
4904}
4905\f
4906/* Allocate scoping information. */
4907
4908static scope_t *
4909allocate_scope ()
4910{
4911 register scope_t *ptr;
4912 static scope_t initial_scope;
4913
4914#ifndef MALLOC_CHECK
4915
4916 ptr = alloc_counts[(int)alloc_type_scope].free_list.f_scope;
4917 if (ptr != (scope_t *) NULL)
4918 alloc_counts[ (int)alloc_type_scope ].free_list.f_scope = ptr->free;
4919 else
4920 {
4921 register int unallocated = alloc_counts[(int)alloc_type_scope].unallocated;
4922 register page_type *cur_page = alloc_counts[(int)alloc_type_scope].cur_page;
4923
4924 if (unallocated == 0)
4925 {
4926 unallocated = PAGE_SIZE / sizeof (scope_t);
4927 alloc_counts[(int)alloc_type_scope].cur_page = cur_page = allocate_page ();
4928 alloc_counts[(int)alloc_type_scope].total_pages++;
4929 }
4930
4931 ptr = &cur_page->scope[--unallocated];
4932 alloc_counts[(int)alloc_type_scope].unallocated = unallocated;
4933 }
4934
4935#else
4936
4937 ptr = (scope_t *) xmalloc (sizeof (scope_t));
4938
4939#endif
4940
4941 alloc_counts[(int)alloc_type_scope].total_alloc++;
4942 *ptr = initial_scope;
4943 return ptr;
4944}
4945
4946/* Free scoping information. */
4947
4948static void
4949free_scope (ptr)
4950 scope_t *ptr;
4951{
4952 alloc_counts[(int)alloc_type_scope].total_free++;
4953
4954#ifndef MALLOC_CHECK
4955 ptr->free = alloc_counts[(int)alloc_type_scope].free_list.f_scope;
4956 alloc_counts[(int)alloc_type_scope].free_list.f_scope = ptr;
4957#else
4958 free ((PTR) ptr);
4959#endif
4960}
4961\f
4962/* Allocate links for pages in a virtual array. */
4963
4964static vlinks_t *
4965allocate_vlinks ()
4966{
4967 register vlinks_t *ptr;
4968 static vlinks_t initial_vlinks;
4969
4970#ifndef MALLOC_CHECK
4971
4972 register int unallocated = alloc_counts[(int)alloc_type_vlinks].unallocated;
4973 register page_type *cur_page = alloc_counts[(int)alloc_type_vlinks].cur_page;
4974
4975 if (unallocated == 0)
4976 {
4977 unallocated = PAGE_SIZE / sizeof (vlinks_t);
4978 alloc_counts[(int)alloc_type_vlinks].cur_page = cur_page = allocate_page ();
4979 alloc_counts[(int)alloc_type_vlinks].total_pages++;
4980 }
4981
4982 ptr = &cur_page->vlinks[--unallocated];
4983 alloc_counts[(int)alloc_type_vlinks].unallocated = unallocated;
4984
4985#else
4986
4987 ptr = (vlinks_t *) xmalloc (sizeof (vlinks_t));
4988
4989#endif
4990
4991 alloc_counts[(int)alloc_type_vlinks].total_alloc++;
4992 *ptr = initial_vlinks;
4993 return ptr;
4994}
4995\f
4996/* Allocate string hash buckets. */
4997
4998static shash_t *
4999allocate_shash ()
5000{
5001 register shash_t *ptr;
5002 static shash_t initial_shash;
5003
5004#ifndef MALLOC_CHECK
5005
5006 register int unallocated = alloc_counts[(int)alloc_type_shash].unallocated;
5007 register page_type *cur_page = alloc_counts[(int)alloc_type_shash].cur_page;
5008
5009 if (unallocated == 0)
5010 {
5011 unallocated = PAGE_SIZE / sizeof (shash_t);
5012 alloc_counts[(int)alloc_type_shash].cur_page = cur_page = allocate_page ();
5013 alloc_counts[(int)alloc_type_shash].total_pages++;
5014 }
5015
5016 ptr = &cur_page->shash[--unallocated];
5017 alloc_counts[(int)alloc_type_shash].unallocated = unallocated;
5018
5019#else
5020
5021 ptr = (shash_t *) xmalloc (sizeof (shash_t));
5022
5023#endif
5024
5025 alloc_counts[(int)alloc_type_shash].total_alloc++;
5026 *ptr = initial_shash;
5027 return ptr;
5028}
5029\f
5030/* Allocate type hash buckets. */
5031
5032static thash_t *
5033allocate_thash ()
5034{
5035 register thash_t *ptr;
5036 static thash_t initial_thash;
5037
5038#ifndef MALLOC_CHECK
5039
5040 register int unallocated = alloc_counts[(int)alloc_type_thash].unallocated;
5041 register page_type *cur_page = alloc_counts[(int)alloc_type_thash].cur_page;
5042
5043 if (unallocated == 0)
5044 {
5045 unallocated = PAGE_SIZE / sizeof (thash_t);
5046 alloc_counts[(int)alloc_type_thash].cur_page = cur_page = allocate_page ();
5047 alloc_counts[(int)alloc_type_thash].total_pages++;
5048 }
5049
5050 ptr = &cur_page->thash[--unallocated];
5051 alloc_counts[(int)alloc_type_thash].unallocated = unallocated;
5052
5053#else
5054
5055 ptr = (thash_t *) xmalloc (sizeof (thash_t));
5056
5057#endif
5058
5059 alloc_counts[(int)alloc_type_thash].total_alloc++;
5060 *ptr = initial_thash;
5061 return ptr;
5062}
5063\f
5064/* Allocate structure, union, or enum tag information. */
5065
5066static tag_t *
5067allocate_tag ()
5068{
5069 register tag_t *ptr;
5070 static tag_t initial_tag;
5071
5072#ifndef MALLOC_CHECK
5073
5074 ptr = alloc_counts[(int)alloc_type_tag].free_list.f_tag;
5075 if (ptr != (tag_t *) NULL)
5076 alloc_counts[(int)alloc_type_tag].free_list.f_tag = ptr->free;
5077 else
5078 {
5079 register int unallocated = alloc_counts[(int)alloc_type_tag].unallocated;
5080 register page_type *cur_page = alloc_counts[(int)alloc_type_tag].cur_page;
5081
5082 if (unallocated == 0)
5083 {
5084 unallocated = PAGE_SIZE / sizeof (tag_t);
5085 alloc_counts[(int)alloc_type_tag].cur_page = cur_page = allocate_page ();
5086 alloc_counts[(int)alloc_type_tag].total_pages++;
5087 }
5088
5089 ptr = &cur_page->tag[--unallocated];
5090 alloc_counts[(int)alloc_type_tag].unallocated = unallocated;
5091 }
5092
5093#else
5094
5095 ptr = (tag_t *) xmalloc (sizeof (tag_t));
5096
5097#endif
5098
5099 alloc_counts[(int)alloc_type_tag].total_alloc++;
5100 *ptr = initial_tag;
5101 return ptr;
5102}
5103
5104/* Free scoping information. */
5105
5106static void
5107free_tag (ptr)
5108 tag_t *ptr;
5109{
5110 alloc_counts[(int)alloc_type_tag].total_free++;
5111
5112#ifndef MALLOC_CHECK
5113 ptr->free = alloc_counts[(int)alloc_type_tag].free_list.f_tag;
5114 alloc_counts[(int)alloc_type_tag].free_list.f_tag = ptr;
5115#else
5116 free ((PTR_T) ptr);
5117#endif
5118}
5119\f
5120/* Allocate forward reference to a yet unknown tag. */
5121
5122static forward_t *
5123allocate_forward ()
5124{
5125 register forward_t *ptr;
5126 static forward_t initial_forward;
5127
5128#ifndef MALLOC_CHECK
5129
5130 register int unallocated = alloc_counts[(int)alloc_type_forward].unallocated;
5131 register page_type *cur_page = alloc_counts[(int)alloc_type_forward].cur_page;
5132
5133 if (unallocated == 0)
5134 {
5135 unallocated = PAGE_SIZE / sizeof (forward_t);
5136 alloc_counts[(int)alloc_type_forward].cur_page = cur_page = allocate_page ();
5137 alloc_counts[(int)alloc_type_forward].total_pages++;
5138 }
5139
5140 ptr = &cur_page->forward[--unallocated];
5141 alloc_counts[(int)alloc_type_forward].unallocated = unallocated;
5142
5143#else
5144
5145 ptr = (forward_t *) xmalloc (sizeof (forward_t));
5146
5147#endif
5148
5149 alloc_counts[(int)alloc_type_forward].total_alloc++;
5150 *ptr = initial_forward;
5151 return ptr;
5152}
5153\f
5154/* Allocate head of type hash list. */
5155
5156static thead_t *
5157allocate_thead ()
5158{
5159 register thead_t *ptr;
5160 static thead_t initial_thead;
5161
5162#ifndef MALLOC_CHECK
5163
5164 ptr = alloc_counts[(int)alloc_type_thead].free_list.f_thead;
5165 if (ptr != (thead_t *) NULL)
5166 alloc_counts[ (int)alloc_type_thead ].free_list.f_thead = ptr->free;
5167 else
5168 {
5169 register int unallocated = alloc_counts[(int)alloc_type_thead].unallocated;
5170 register page_type *cur_page = alloc_counts[(int)alloc_type_thead].cur_page;
5171
5172 if (unallocated == 0)
5173 {
5174 unallocated = PAGE_SIZE / sizeof (thead_t);
5175 alloc_counts[(int)alloc_type_thead].cur_page = cur_page = allocate_page ();
5176 alloc_counts[(int)alloc_type_thead].total_pages++;
5177 }
5178
5179 ptr = &cur_page->thead[--unallocated];
5180 alloc_counts[(int)alloc_type_thead].unallocated = unallocated;
5181 }
5182
5183#else
5184
5185 ptr = (thead_t *) xmalloc (sizeof (thead_t));
5186
5187#endif
5188
5189 alloc_counts[(int)alloc_type_thead].total_alloc++;
5190 *ptr = initial_thead;
5191 return ptr;
5192}
5193
5194/* Free scoping information. */
5195
5196static void
5197free_thead (ptr)
5198 thead_t *ptr;
5199{
5200 alloc_counts[(int)alloc_type_thead].total_free++;
5201
5202#ifndef MALLOC_CHECK
5203 ptr->free = (thead_t *) alloc_counts[(int)alloc_type_thead].free_list.f_thead;
5204 alloc_counts[(int)alloc_type_thead].free_list.f_thead = ptr;
5205#else
5206 free ((PTR_T) ptr);
5207#endif
5208}
5209\f
5210static lineno_list_t *
5211allocate_lineno_list ()
5212{
5213 register lineno_list_t *ptr;
5214 static lineno_list_t initial_lineno_list;
5215
5216#ifndef MALLOC_CHECK
5217
5218 register int unallocated = alloc_counts[(int)alloc_type_lineno].unallocated;
5219 register page_type *cur_page = alloc_counts[(int)alloc_type_lineno].cur_page;
5220
5221 if (unallocated == 0)
5222 {
5223 unallocated = PAGE_SIZE / sizeof (lineno_list_t);
5224 alloc_counts[(int)alloc_type_lineno].cur_page = cur_page = allocate_page ();
5225 alloc_counts[(int)alloc_type_lineno].total_pages++;
5226 }
5227
5228 ptr = &cur_page->lineno[--unallocated];
5229 alloc_counts[(int)alloc_type_lineno].unallocated = unallocated;
5230
5231#else
5232
5233 ptr = (lineno_list_t *) xmalloc (sizeof (lineno_list_t));
5234
5235#endif
5236
5237 alloc_counts[(int)alloc_type_lineno].total_alloc++;
5238 *ptr = initial_lineno_list;
5239 return ptr;
5240}
5241
5242void
5243ecoff_set_gp_prolog_size (sz)
5244 int sz;
5245{
5246 if (cur_proc_ptr == 0)
5247 return;
5248
5249 cur_proc_ptr->pdr.gp_prologue = sz;
5250 if (cur_proc_ptr->pdr.gp_prologue != sz)
5251 {
5252 as_warn (_("GP prologue size exceeds field size, using 0 instead"));
5253 cur_proc_ptr->pdr.gp_prologue = 0;
5254 }
5255
5256 cur_proc_ptr->pdr.gp_used = 1;
5257}
5258
5259int
5260ecoff_no_current_file ()
5261{
5262 return cur_file_ptr == (efdr_t *) NULL;
5263}
5264
5265void
5266ecoff_generate_asm_lineno ()
5267{
5268 unsigned int lineno;
5269 char *filename;
5270 lineno_list_t *list;
5271
5272 as_where (&filename, &lineno);
5273
5274 if (current_stabs_filename == (char *)NULL
5275 || strcmp (current_stabs_filename, filename))
5276 add_file (filename, 0, 1);
5277
5278 list = allocate_lineno_list ();
5279
5280 list->next = (lineno_list_t *) NULL;
5281 list->file = cur_file_ptr;
5282 list->proc = cur_proc_ptr;
5283 list->frag = frag_now;
5284 list->paddr = frag_now_fix ();
5285 list->lineno = lineno;
5286
5287 /* We don't want to merge files which have line numbers. */
5288 cur_file_ptr->fdr.fMerge = 0;
5289
5290 /* A .loc directive will sometimes appear before a .ent directive,
5291 which means that cur_proc_ptr will be NULL here. Arrange to
5292 patch this up. */
5293 if (cur_proc_ptr == (proc_t *) NULL)
5294 {
5295 lineno_list_t **pl;
5296
5297 pl = &noproc_lineno;
5298 while (*pl != (lineno_list_t *) NULL)
5299 pl = &(*pl)->next;
5300 *pl = list;
5301 }
5302 else
5303 {
5304 last_lineno = list;
5305 *last_lineno_ptr = list;
5306 last_lineno_ptr = &list->next;
5307 }
5308}
5309
5310#else
5311
5312void
5313ecoff_generate_asm_lineno ()
5314{
5315}
5316
5317#endif /* ECOFF_DEBUGGING */