xref: /openbsd/gnu/usr.bin/binutils/gas/ecoff.c (revision 76d0caae)
1 /* ECOFF debugging support.
2    Copyright 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002
3    Free Software Foundation, Inc.
4    Contributed by Cygnus Support.
5    This file was put together by Ian Lance Taylor <ian@cygnus.com>.  A
6    good deal of it comes directly from mips-tfile.c, by Michael
7    Meissner <meissner@osf.org>.
8 
9    This file is part of GAS.
10 
11    GAS is free software; you can redistribute it and/or modify
12    it under the terms of the GNU General Public License as published by
13    the Free Software Foundation; either version 2, or (at your option)
14    any later version.
15 
16    GAS is distributed in the hope that it will be useful,
17    but WITHOUT ANY WARRANTY; without even the implied warranty of
18    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19    GNU General Public License for more details.
20 
21    You should have received a copy of the GNU General Public License
22    along with GAS; see the file COPYING.  If not, write to the Free
23    Software Foundation, 59 Temple Place - Suite 330, Boston, MA
24    02111-1307, USA.  */
25 
26 #include "as.h"
27 
28 /* This file is compiled conditionally for those targets which use
29    ECOFF debugging information (e.g., MIPS ECOFF, MIPS ELF, Alpha
30    ECOFF).  */
31 
32 #include "ecoff.h"
33 
34 #ifdef ECOFF_DEBUGGING
35 
36 #include "coff/internal.h"
37 #include "coff/symconst.h"
38 #include "aout/stab_gnu.h"
39 
40 #include "safe-ctype.h"
41 
42 /* Why isn't this in coff/sym.h?  */
43 #define ST_RFDESCAPE 0xfff
44 
45 /* This file constructs the information used by the ECOFF debugging
46    format.  It just builds a large block of data.
47 
48    We support both ECOFF style debugging and stabs debugging (the
49    stabs symbols are encapsulated in ECOFF symbols).  This should let
50    us handle anything the compiler might throw at us.  */
51 
52 /* Here is a brief description of the MIPS ECOFF symbol table, by
53    Michael Meissner.  The MIPS symbol table has the following pieces:
54 
55 	Symbolic Header
56 	    |
57 	    +--	Auxiliary Symbols
58 	    |
59 	    +--	Dense number table
60 	    |
61 	    +--	Optimizer Symbols
62 	    |
63 	    +--	External Strings
64 	    |
65 	    +--	External Symbols
66 	    |
67 	    +--	Relative file descriptors
68 	    |
69 	    +--	File table
70 		    |
71 		    +--	Procedure table
72 		    |
73 		    +--	Line number table
74 		    |
75 		    +--	Local Strings
76 		    |
77 		    +--	Local Symbols
78 
79    The symbolic header points to each of the other tables, and also
80    contains the number of entries.  It also contains a magic number
81    and MIPS compiler version number, such as 2.0.
82 
83    The auxiliary table is a series of 32 bit integers, that are
84    referenced as needed from the local symbol table.  Unlike standard
85    COFF, the aux.  information does not follow the symbol that uses
86    it, but rather is a separate table.  In theory, this would allow
87    the MIPS compilers to collapse duplicate aux. entries, but I've not
88    noticed this happening with the 1.31 compiler suite.  The different
89    types of aux. entries are:
90 
91     1)	dnLow: Low bound on array dimension.
92 
93     2)	dnHigh: High bound on array dimension.
94 
95     3)	isym: Index to the local symbol which is the start of the
96 	function for the end of function first aux. entry.
97 
98     4)	width: Width of structures and bitfields.
99 
100     5)	count: Count of ranges for variant part.
101 
102     6)	rndx: A relative index into the symbol table.  The relative
103 	index field has two parts: rfd which is a pointer into the
104 	relative file index table or ST_RFDESCAPE which says the next
105 	aux. entry is the file number, and index: which is the pointer
106 	into the local symbol within a given file table.  This is for
107 	things like references to types defined in another file.
108 
109     7)	Type information: This is like the COFF type bits, except it
110 	is 32 bits instead of 16; they still have room to add new
111 	basic types; and they can handle more than 6 levels of array,
112 	pointer, function, etc.  Each type information field contains
113 	the following structure members:
114 
115 	    a)	fBitfield: a bit that says this is a bitfield, and the
116 		size in bits follows as the next aux. entry.
117 
118 	    b)	continued: a bit that says the next aux. entry is a
119 		continuation of the current type information (in case
120 		there are more than 6 levels of array/ptr/function).
121 
122 	    c)	bt: an integer containing the base type before adding
123 		array, pointer, function, etc. qualifiers.  The
124 		current base types that I have documentation for are:
125 
126 			btNil		-- undefined
127 			btAdr		-- address - integer same size as ptr
128 			btChar		-- character
129 			btUChar		-- unsigned character
130 			btShort		-- short
131 			btUShort	-- unsigned short
132 			btInt		-- int
133 			btUInt		-- unsigned int
134 			btLong		-- long
135 			btULong		-- unsigned long
136 			btFloat		-- float (real)
137 			btDouble	-- Double (real)
138 			btStruct	-- Structure (Record)
139 			btUnion		-- Union (variant)
140 			btEnum		-- Enumerated
141 			btTypedef	-- defined via a typedef isymRef
142 			btRange		-- subrange of int
143 			btSet		-- pascal sets
144 			btComplex	-- fortran complex
145 			btDComplex	-- fortran double complex
146 			btIndirect	-- forward or unnamed typedef
147 			btFixedDec	-- Fixed Decimal
148 			btFloatDec	-- Float Decimal
149 			btString	-- Varying Length Character String
150 			btBit		-- Aligned Bit String
151 			btPicture	-- Picture
152 			btVoid		-- Void (MIPS cc revision >= 2.00)
153 
154 	    d)	tq0 - tq5: type qualifier fields as needed.  The
155 		current type qualifier fields I have documentation for
156 		are:
157 
158 			tqNil		-- no more qualifiers
159 			tqPtr		-- pointer
160 			tqProc		-- procedure
161 			tqArray		-- array
162 			tqFar		-- 8086 far pointers
163 			tqVol		-- volatile
164 
165    The dense number table is used in the front ends, and disappears by
166    the time the .o is created.
167 
168    With the 1.31 compiler suite, the optimization symbols don't seem
169    to be used as far as I can tell.
170 
171    The linker is the first entity that creates the relative file
172    descriptor table, and I believe it is used so that the individual
173    file table pointers don't have to be rewritten when the objects are
174    merged together into the program file.
175 
176    Unlike COFF, the basic symbol & string tables are split into
177    external and local symbols/strings.  The relocation information
178    only goes off of the external symbol table, and the debug
179    information only goes off of the internal symbol table.  The
180    external symbols can have links to an appropriate file index and
181    symbol within the file to give it the appropriate type information.
182    Because of this, the external symbols are actually larger than the
183    internal symbols (to contain the link information), and contain the
184    local symbol structure as a member, though this member is not the
185    first member of the external symbol structure (!).  I suspect this
186    split is to make strip easier to deal with.
187 
188    Each file table has offsets for where the line numbers, local
189    strings, local symbols, and procedure table starts from within the
190    global tables, and the indexs are reset to 0 for each of those
191    tables for the file.
192 
193    The procedure table contains the binary equivalents of the .ent
194    (start of the function address), .frame (what register is the
195    virtual frame pointer, constant offset from the register to obtain
196    the VFP, and what register holds the return address), .mask/.fmask
197    (bitmask of saved registers, and where the first register is stored
198    relative to the VFP) assembler directives.  It also contains the
199    low and high bounds of the line numbers if debugging is turned on.
200 
201    The line number table is a compressed form of the normal COFF line
202    table.  Each line number entry is either 1 or 3 bytes long, and
203    contains a signed delta from the previous line, and an unsigned
204    count of the number of instructions this statement takes.
205 
206    The local symbol table contains the following fields:
207 
208     1)	iss: index to the local string table giving the name of the
209 	symbol.
210 
211     2)	value: value of the symbol (address, register number, etc.).
212 
213     3)	st: symbol type.  The current symbol types are:
214 
215 	    stNil	  -- Nuthin' special
216 	    stGlobal	  -- external symbol
217 	    stStatic	  -- static
218 	    stParam	  -- procedure argument
219 	    stLocal	  -- local variable
220 	    stLabel	  -- label
221 	    stProc	  -- External Procedure
222 	    stBlock	  -- beginning of block
223 	    stEnd	  -- end (of anything)
224 	    stMember	  -- member (of anything)
225 	    stTypedef	  -- type definition
226 	    stFile	  -- file name
227 	    stRegReloc	  -- register relocation
228 	    stForward	  -- forwarding address
229 	    stStaticProc  -- Static procedure
230 	    stConstant	  -- const
231 
232     4)	sc: storage class.  The current storage classes are:
233 
234 	    scText	  -- text symbol
235 	    scData	  -- initialized data symbol
236 	    scBss	  -- un-initialized data symbol
237 	    scRegister	  -- value of symbol is register number
238 	    scAbs	  -- value of symbol is absolute
239 	    scUndefined   -- who knows?
240 	    scCdbLocal	  -- variable's value is IN se->va.??
241 	    scBits	  -- this is a bit field
242 	    scCdbSystem	  -- value is IN debugger's address space
243 	    scRegImage	  -- register value saved on stack
244 	    scInfo	  -- symbol contains debugger information
245 	    scUserStruct  -- addr in struct user for current process
246 	    scSData	  -- load time only small data
247 	    scSBss	  -- load time only small common
248 	    scRData	  -- load time only read only data
249 	    scVar	  -- Var parameter (fortranpascal)
250 	    scCommon	  -- common variable
251 	    scSCommon	  -- small common
252 	    scVarRegister -- Var parameter in a register
253 	    scVariant	  -- Variant record
254 	    scSUndefined  -- small undefined(external) data
255 	    scInit	  -- .init section symbol
256 
257     5)	index: pointer to a local symbol or aux. entry.
258 
259    For the following program:
260 
261 	#include <stdio.h>
262 
263 	main(){
264 		printf("Hello World!\n");
265 		return 0;
266 	}
267 
268    Mips-tdump produces the following information:
269 
270    Global file header:
271        magic number             0x162
272        # sections               2
273        timestamp                645311799, Wed Jun 13 17:16:39 1990
274        symbolic header offset   284
275        symbolic header size     96
276        optional header          56
277        flags                    0x0
278 
279    Symbolic header, magic number = 0x7009, vstamp = 1.31:
280 
281        Info                      Offset      Number       Bytes
282        ====                      ======      ======      =====
283 
284        Line numbers                 380           4           4 [13]
285        Dense numbers                  0           0           0
286        Procedures Tables            384           1          52
287        Local Symbols                436          16         192
288        Optimization Symbols           0           0           0
289        Auxiliary Symbols            628          39         156
290        Local Strings                784          80          80
291        External Strings             864         144         144
292        File Tables                 1008           2         144
293        Relative Files                 0           0           0
294        External Symbols            1152          20         320
295 
296    File #0, "hello2.c"
297 
298        Name index  = 1          Readin      = No
299        Merge       = No         Endian      = LITTLE
300        Debug level = G2         Language    = C
301        Adr         = 0x00000000
302 
303        Info                       Start      Number        Size      Offset
304        ====                       =====      ======        ====      ======
305        Local strings                  0          15          15         784
306        Local symbols                  0           6          72         436
307        Line numbers                   0          13          13         380
308        Optimization symbols           0           0           0           0
309        Procedures                     0           1          52         384
310        Auxiliary symbols              0          14          56         628
311        Relative Files                 0           0           0           0
312 
313     There are 6 local symbols, starting at 436
314 
315 	Symbol# 0: "hello2.c"
316 	    End+1 symbol  = 6
317 	    String index  = 1
318 	    Storage class = Text        Index  = 6
319 	    Symbol type   = File        Value  = 0
320 
321 	Symbol# 1: "main"
322 	    End+1 symbol  = 5
323 	    Type          = int
324 	    String index  = 10
325 	    Storage class = Text        Index  = 12
326 	    Symbol type   = Proc        Value  = 0
327 
328 	Symbol# 2: ""
329 	    End+1 symbol  = 4
330 	    String index  = 0
331 	    Storage class = Text        Index  = 4
332 	    Symbol type   = Block       Value  = 8
333 
334 	Symbol# 3: ""
335 	    First symbol  = 2
336 	    String index  = 0
337 	    Storage class = Text        Index  = 2
338 	    Symbol type   = End         Value  = 28
339 
340 	Symbol# 4: "main"
341 	    First symbol  = 1
342 	    String index  = 10
343 	    Storage class = Text        Index  = 1
344 	    Symbol type   = End         Value  = 52
345 
346 	Symbol# 5: "hello2.c"
347 	    First symbol  = 0
348 	    String index  = 1
349 	    Storage class = Text        Index  = 0
350 	    Symbol type   = End         Value  = 0
351 
352     There are 14 auxiliary table entries, starting at 628.
353 
354 	* #0               0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
355 	* #1              24, [  24/      0], [ 6 0:0 0:0:0:0:0:0]
356 	* #2               8, [   8/      0], [ 2 0:0 0:0:0:0:0:0]
357 	* #3              16, [  16/      0], [ 4 0:0 0:0:0:0:0:0]
358 	* #4              24, [  24/      0], [ 6 0:0 0:0:0:0:0:0]
359 	* #5              32, [  32/      0], [ 8 0:0 0:0:0:0:0:0]
360 	* #6              40, [  40/      0], [10 0:0 0:0:0:0:0:0]
361 	* #7              44, [  44/      0], [11 0:0 0:0:0:0:0:0]
362 	* #8              12, [  12/      0], [ 3 0:0 0:0:0:0:0:0]
363 	* #9              20, [  20/      0], [ 5 0:0 0:0:0:0:0:0]
364 	* #10             28, [  28/      0], [ 7 0:0 0:0:0:0:0:0]
365 	* #11             36, [  36/      0], [ 9 0:0 0:0:0:0:0:0]
366 	  #12              5, [   5/      0], [ 1 1:0 0:0:0:0:0:0]
367 	  #13             24, [  24/      0], [ 6 0:0 0:0:0:0:0:0]
368 
369     There are 1 procedure descriptor entries, starting at 0.
370 
371 	Procedure descriptor 0:
372 	    Name index   = 10          Name          = "main"
373 	    .mask 0x80000000,-4        .fmask 0x00000000,0
374 	    .frame $29,24,$31
375 	    Opt. start   = -1          Symbols start = 1
376 	    First line # = 3           Last line #   = 6
377 	    Line Offset  = 0           Address       = 0x00000000
378 
379 	There are 4 bytes holding line numbers, starting at 380.
380 	    Line           3,   delta     0,   count  2
381 	    Line           4,   delta     1,   count  3
382 	    Line           5,   delta     1,   count  2
383 	    Line           6,   delta     1,   count  6
384 
385    File #1, "/usr/include/stdio.h"
386 
387     Name index  = 1          Readin      = No
388     Merge       = Yes        Endian      = LITTLE
389     Debug level = G2         Language    = C
390     Adr         = 0x00000000
391 
392     Info                       Start      Number        Size      Offset
393     ====                       =====      ======        ====      ======
394     Local strings                 15          65          65         799
395     Local symbols                  6          10         120         508
396     Line numbers                   0           0           0         380
397     Optimization symbols           0           0           0           0
398     Procedures                     1           0           0         436
399     Auxiliary symbols             14          25         100         684
400     Relative Files                 0           0           0           0
401 
402     There are 10 local symbols, starting at 442
403 
404 	Symbol# 0: "/usr/include/stdio.h"
405 	    End+1 symbol  = 10
406 	    String index  = 1
407 	    Storage class = Text        Index  = 10
408 	    Symbol type   = File        Value  = 0
409 
410 	Symbol# 1: "_iobuf"
411 	    End+1 symbol  = 9
412 	    String index  = 22
413 	    Storage class = Info        Index  = 9
414 	    Symbol type   = Block       Value  = 20
415 
416 	Symbol# 2: "_cnt"
417 	    Type          = int
418 	    String index  = 29
419 	    Storage class = Info        Index  = 4
420 	    Symbol type   = Member      Value  = 0
421 
422 	Symbol# 3: "_ptr"
423 	    Type          = ptr to char
424 	    String index  = 34
425 	    Storage class = Info        Index  = 15
426 	    Symbol type   = Member      Value  = 32
427 
428 	Symbol# 4: "_base"
429 	    Type          = ptr to char
430 	    String index  = 39
431 	    Storage class = Info        Index  = 16
432 	    Symbol type   = Member      Value  = 64
433 
434 	Symbol# 5: "_bufsiz"
435 	    Type          = int
436 	    String index  = 45
437 	    Storage class = Info        Index  = 4
438 	    Symbol type   = Member      Value  = 96
439 
440 	Symbol# 6: "_flag"
441 	    Type          = short
442 	    String index  = 53
443 	    Storage class = Info        Index  = 3
444 	    Symbol type   = Member      Value  = 128
445 
446 	Symbol# 7: "_file"
447 	    Type          = char
448 	    String index  = 59
449 	    Storage class = Info        Index  = 2
450 	    Symbol type   = Member      Value  = 144
451 
452 	Symbol# 8: ""
453 	    First symbol  = 1
454 	    String index  = 0
455 	    Storage class = Info        Index  = 1
456 	    Symbol type   = End         Value  = 0
457 
458 	Symbol# 9: "/usr/include/stdio.h"
459 	    First symbol  = 0
460 	    String index  = 1
461 	    Storage class = Text        Index  = 0
462 	    Symbol type   = End         Value  = 0
463 
464     There are 25 auxiliary table entries, starting at 642.
465 
466 	* #14             -1, [4095/1048575], [63 1:1 f:f:f:f:f:f]
467 	  #15          65544, [   8/     16], [ 2 0:0 1:0:0:0:0:0]
468 	  #16          65544, [   8/     16], [ 2 0:0 1:0:0:0:0:0]
469 	* #17         196656, [  48/     48], [12 0:0 3:0:0:0:0:0]
470 	* #18           8191, [4095/      1], [63 1:1 0:0:0:0:f:1]
471 	* #19              1, [   1/      0], [ 0 1:0 0:0:0:0:0:0]
472 	* #20          20479, [4095/      4], [63 1:1 0:0:0:0:f:4]
473 	* #21              1, [   1/      0], [ 0 1:0 0:0:0:0:0:0]
474 	* #22              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
475 	* #23              2, [   2/      0], [ 0 0:1 0:0:0:0:0:0]
476 	* #24            160, [ 160/      0], [40 0:0 0:0:0:0:0:0]
477 	* #25              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
478 	* #26              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
479 	* #27              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
480 	* #28              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
481 	* #29              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
482 	* #30              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
483 	* #31              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
484 	* #32              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
485 	* #33              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
486 	* #34              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
487 	* #35              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
488 	* #36              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
489 	* #37              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
490 	* #38              0, [   0/      0], [ 0 0:0 0:0:0:0:0:0]
491 
492     There are 0 procedure descriptor entries, starting at 1.
493 
494    There are 20 external symbols, starting at 1152
495 
496 	Symbol# 0: "_iob"
497 	    Type          = array [3 {160}] of struct _iobuf { ifd = 1, index = 1 }
498 	    String index  = 0           Ifd    = 1
499 	    Storage class = Nil         Index  = 17
500 	    Symbol type   = Global      Value  = 60
501 
502 	Symbol# 1: "fopen"
503 	    String index  = 5           Ifd    = 1
504 	    Storage class = Nil         Index  = 1048575
505 	    Symbol type   = Proc        Value  = 0
506 
507 	Symbol# 2: "fdopen"
508 	    String index  = 11          Ifd    = 1
509 	    Storage class = Nil         Index  = 1048575
510 	    Symbol type   = Proc        Value  = 0
511 
512 	Symbol# 3: "freopen"
513 	    String index  = 18          Ifd    = 1
514 	    Storage class = Nil         Index  = 1048575
515 	    Symbol type   = Proc        Value  = 0
516 
517 	Symbol# 4: "popen"
518 	    String index  = 26          Ifd    = 1
519 	    Storage class = Nil         Index  = 1048575
520 	    Symbol type   = Proc        Value  = 0
521 
522 	Symbol# 5: "tmpfile"
523 	    String index  = 32          Ifd    = 1
524 	    Storage class = Nil         Index  = 1048575
525 	    Symbol type   = Proc        Value  = 0
526 
527 	Symbol# 6: "ftell"
528 	    String index  = 40          Ifd    = 1
529 	    Storage class = Nil         Index  = 1048575
530 	    Symbol type   = Proc        Value  = 0
531 
532 	Symbol# 7: "rewind"
533 	    String index  = 46          Ifd    = 1
534 	    Storage class = Nil         Index  = 1048575
535 	    Symbol type   = Proc        Value  = 0
536 
537 	Symbol# 8: "setbuf"
538 	    String index  = 53          Ifd    = 1
539 	    Storage class = Nil         Index  = 1048575
540 	    Symbol type   = Proc        Value  = 0
541 
542 	Symbol# 9: "setbuffer"
543 	    String index  = 60          Ifd    = 1
544 	    Storage class = Nil         Index  = 1048575
545 	    Symbol type   = Proc        Value  = 0
546 
547 	Symbol# 10: "setlinebuf"
548 	    String index  = 70          Ifd    = 1
549 	    Storage class = Nil         Index  = 1048575
550 	    Symbol type   = Proc        Value  = 0
551 
552 	Symbol# 11: "fgets"
553 	    String index  = 81          Ifd    = 1
554 	    Storage class = Nil         Index  = 1048575
555 	    Symbol type   = Proc        Value  = 0
556 
557 	Symbol# 12: "gets"
558 	    String index  = 87          Ifd    = 1
559 	    Storage class = Nil         Index  = 1048575
560 	    Symbol type   = Proc        Value  = 0
561 
562 	Symbol# 13: "ctermid"
563 	    String index  = 92          Ifd    = 1
564 	    Storage class = Nil         Index  = 1048575
565 	    Symbol type   = Proc        Value  = 0
566 
567 	Symbol# 14: "cuserid"
568 	    String index  = 100         Ifd    = 1
569 	    Storage class = Nil         Index  = 1048575
570 	    Symbol type   = Proc        Value  = 0
571 
572 	Symbol# 15: "tempnam"
573 	    String index  = 108         Ifd    = 1
574 	    Storage class = Nil         Index  = 1048575
575 	    Symbol type   = Proc        Value  = 0
576 
577 	Symbol# 16: "tmpnam"
578 	    String index  = 116         Ifd    = 1
579 	    Storage class = Nil         Index  = 1048575
580 	    Symbol type   = Proc        Value  = 0
581 
582 	Symbol# 17: "sprintf"
583 	    String index  = 123         Ifd    = 1
584 	    Storage class = Nil         Index  = 1048575
585 	    Symbol type   = Proc        Value  = 0
586 
587 	Symbol# 18: "main"
588 	    Type          = int
589 	    String index  = 131         Ifd    = 0
590 	    Storage class = Text        Index  = 1
591 	    Symbol type   = Proc        Value  = 0
592 
593 	Symbol# 19: "printf"
594 	    String index  = 136         Ifd    = 0
595 	    Storage class = Undefined   Index  = 1048575
596 	    Symbol type   = Proc        Value  = 0
597 
598    The following auxiliary table entries were unused:
599 
600     #0               0  0x00000000  void
601     #2               8  0x00000008  char
602     #3              16  0x00000010  short
603     #4              24  0x00000018  int
604     #5              32  0x00000020  long
605     #6              40  0x00000028  float
606     #7              44  0x0000002c  double
607     #8              12  0x0000000c  unsigned char
608     #9              20  0x00000014  unsigned short
609     #10             28  0x0000001c  unsigned int
610     #11             36  0x00000024  unsigned long
611     #14              0  0x00000000  void
612     #15             24  0x00000018  int
613     #19             32  0x00000020  long
614     #20             40  0x00000028  float
615     #21             44  0x0000002c  double
616     #22             12  0x0000000c  unsigned char
617     #23             20  0x00000014  unsigned short
618     #24             28  0x0000001c  unsigned int
619     #25             36  0x00000024  unsigned long
620     #26             48  0x00000030  struct no name { ifd = -1, index = 1048575 }
621 */
622 
623 /* Redefinition of of storage classes as an enumeration for better
624    debugging.  */
625 
626 typedef enum sc {
627   sc_Nil	 = scNil,	  /* no storage class */
628   sc_Text	 = scText,	  /* text symbol */
629   sc_Data	 = scData,	  /* initialized data symbol */
630   sc_Bss	 = scBss,	  /* un-initialized data symbol */
631   sc_Register	 = scRegister,	  /* value of symbol is register number */
632   sc_Abs	 = scAbs,	  /* value of symbol is absolute */
633   sc_Undefined	 = scUndefined,	  /* who knows? */
634   sc_CdbLocal	 = scCdbLocal,	  /* variable's value is IN se->va.?? */
635   sc_Bits	 = scBits,	  /* this is a bit field */
636   sc_CdbSystem	 = scCdbSystem,	  /* value is IN CDB's address space */
637   sc_RegImage	 = scRegImage,	  /* register value saved on stack */
638   sc_Info	 = scInfo,	  /* symbol contains debugger information */
639   sc_UserStruct	 = scUserStruct,  /* addr in struct user for current process */
640   sc_SData	 = scSData,	  /* load time only small data */
641   sc_SBss	 = scSBss,	  /* load time only small common */
642   sc_RData	 = scRData,	  /* load time only read only data */
643   sc_Var	 = scVar,	  /* Var parameter (fortran,pascal) */
644   sc_Common	 = scCommon,	  /* common variable */
645   sc_SCommon	 = scSCommon,	  /* small common */
646   sc_VarRegister = scVarRegister, /* Var parameter in a register */
647   sc_Variant	 = scVariant,	  /* Variant record */
648   sc_SUndefined	 = scSUndefined,  /* small undefined(external) data */
649   sc_Init	 = scInit,	  /* .init section symbol */
650   sc_Max	 = scMax	  /* Max storage class+1 */
651 } sc_t;
652 
653 /* Redefinition of symbol type.  */
654 
655 typedef enum st {
656   st_Nil	= stNil,	/* Nuthin' special */
657   st_Global	= stGlobal,	/* external symbol */
658   st_Static	= stStatic,	/* static */
659   st_Param	= stParam,	/* procedure argument */
660   st_Local	= stLocal,	/* local variable */
661   st_Label	= stLabel,	/* label */
662   st_Proc	= stProc,	/*     "      "	 Procedure */
663   st_Block	= stBlock,	/* beginning of block */
664   st_End	= stEnd,	/* end (of anything) */
665   st_Member	= stMember,	/* member (of anything	- struct/union/enum */
666   st_Typedef	= stTypedef,	/* type definition */
667   st_File	= stFile,	/* file name */
668   st_RegReloc	= stRegReloc,	/* register relocation */
669   st_Forward	= stForward,	/* forwarding address */
670   st_StaticProc	= stStaticProc,	/* load time only static procs */
671   st_Constant	= stConstant,	/* const */
672   st_Str	= stStr,	/* string */
673   st_Number	= stNumber,	/* pure number (ie. 4 NOR 2+2) */
674   st_Expr	= stExpr,	/* 2+2 vs. 4 */
675   st_Type	= stType,	/* post-coercion SER */
676   st_Max	= stMax		/* max type+1 */
677 } st_t;
678 
679 /* Redefinition of type qualifiers.  */
680 
681 typedef enum tq {
682   tq_Nil	= tqNil,	/* bt is what you see */
683   tq_Ptr	= tqPtr,	/* pointer */
684   tq_Proc	= tqProc,	/* procedure */
685   tq_Array	= tqArray,	/* duh */
686   tq_Far	= tqFar,	/* longer addressing - 8086/8 land */
687   tq_Vol	= tqVol,	/* volatile */
688   tq_Max	= tqMax		/* Max type qualifier+1 */
689 } tq_t;
690 
691 /* Redefinition of basic types.  */
692 
693 typedef enum bt {
694   bt_Nil	= btNil,	/* undefined */
695   bt_Adr	= btAdr,	/* address - integer same size as pointer */
696   bt_Char	= btChar,	/* character */
697   bt_UChar	= btUChar,	/* unsigned character */
698   bt_Short	= btShort,	/* short */
699   bt_UShort	= btUShort,	/* unsigned short */
700   bt_Int	= btInt,	/* int */
701   bt_UInt	= btUInt,	/* unsigned int */
702   bt_Long	= btLong,	/* long */
703   bt_ULong	= btULong,	/* unsigned long */
704   bt_Float	= btFloat,	/* float (real) */
705   bt_Double	= btDouble,	/* Double (real) */
706   bt_Struct	= btStruct,	/* Structure (Record) */
707   bt_Union	= btUnion,	/* Union (variant) */
708   bt_Enum	= btEnum,	/* Enumerated */
709   bt_Typedef	= btTypedef,	/* defined via a typedef, isymRef points */
710   bt_Range	= btRange,	/* subrange of int */
711   bt_Set	= btSet,	/* pascal sets */
712   bt_Complex	= btComplex,	/* fortran complex */
713   bt_DComplex	= btDComplex,	/* fortran double complex */
714   bt_Indirect	= btIndirect,	/* forward or unnamed typedef */
715   bt_FixedDec	= btFixedDec,	/* Fixed Decimal */
716   bt_FloatDec	= btFloatDec,	/* Float Decimal */
717   bt_String	= btString,	/* Varying Length Character String */
718   bt_Bit	= btBit,	/* Aligned Bit String */
719   bt_Picture	= btPicture,	/* Picture */
720   bt_Void	= btVoid,	/* Void */
721   bt_Max	= btMax		/* Max basic type+1 */
722 } bt_t;
723 
724 #define N_TQ itqMax
725 
726 /* States for whether to hash type or not.  */
727 typedef enum hash_state {
728   hash_no	= 0,		/* Don't hash type */
729   hash_yes	= 1,		/* OK to hash type, or use previous hash */
730   hash_record	= 2		/* OK to record hash, but don't use prev.  */
731 } hash_state_t;
732 
733 /* Types of different sized allocation requests.  */
734 enum alloc_type {
735   alloc_type_none,		/* dummy value */
736   alloc_type_scope,		/* nested scopes linked list */
737   alloc_type_vlinks,		/* glue linking pages in varray */
738   alloc_type_shash,		/* string hash element */
739   alloc_type_thash,		/* type hash element */
740   alloc_type_tag,		/* struct/union/tag element */
741   alloc_type_forward,		/* element to hold unknown tag */
742   alloc_type_thead,		/* head of type hash list */
743   alloc_type_varray,		/* general varray allocation */
744   alloc_type_lineno,		/* line number list */
745   alloc_type_last		/* last+1 element for array bounds */
746 };
747 
748 /* Types of auxiliary type information.  */
749 enum aux_type {
750   aux_tir,			/* TIR type information */
751   aux_rndx,			/* relative index into symbol table */
752   aux_dnLow,			/* low dimension */
753   aux_dnHigh,			/* high dimension */
754   aux_isym,			/* symbol table index (end of proc) */
755   aux_iss,			/* index into string space (not used) */
756   aux_width,			/* width for non-default sized struc fields */
757   aux_count			/* count of ranges for variant arm */
758 };
759 
760 /* Structures to provide n-number of virtual arrays, each of which can
761    grow linearly, and which are written in the object file as
762    sequential pages.  On systems with a BSD malloc, the
763    MAX_CLUSTER_PAGES should be 1 less than a power of two, since
764    malloc adds it's overhead, and rounds up to the next power of 2.
765    Pages are linked together via a linked list.
766 
767    If PAGE_SIZE is > 4096, the string length in the shash_t structure
768    can't be represented (assuming there are strings > 4096 bytes).  */
769 
770 /* FIXME: Yes, there can be such strings while emitting C++ class debug
771    info.  Templates are the offender here, the test case in question
772    having a mangled class name of
773 
774      t7rb_tree4Z4xkeyZt4pair2ZC4xkeyZt7xsocket1Z4UserZt9select1st2Zt4pair\
775      2ZC4xkeyZt7xsocket1Z4UserZ4xkeyZt4less1Z4xkey
776 
777    Repeat that a couple dozen times while listing the class members and
778    you've got strings over 4k.  Hack around this for now by increasing
779    the page size.  A proper solution would abandon this structure scheme
780    certainly for very large strings, and possibly entirely.  */
781 
782 #ifndef PAGE_SIZE
783 #define PAGE_SIZE (8*1024)	/* size of varray pages */
784 #endif
785 
786 #define PAGE_USIZE ((unsigned long) PAGE_SIZE)
787 
788 #ifndef MAX_CLUSTER_PAGES	/* # pages to get from system */
789 #define MAX_CLUSTER_PAGES 63
790 #endif
791 
792 /* Linked list connecting separate page allocations.  */
793 typedef struct vlinks {
794   struct vlinks	*prev;		/* previous set of pages */
795   struct vlinks *next;		/* next set of pages */
796   union  page   *datum;		/* start of page */
797   unsigned long	 start_index;	/* starting index # of page */
798 } vlinks_t;
799 
800 /* Virtual array header.  */
801 typedef struct varray {
802   vlinks_t	*first;			/* first page link */
803   vlinks_t	*last;			/* last page link */
804   unsigned long	 num_allocated;		/* # objects allocated */
805   unsigned short object_size;		/* size in bytes of each object */
806   unsigned short objects_per_page;	/* # objects that can fit on a page */
807   unsigned short objects_last_page;	/* # objects allocated on last page */
808 } varray_t;
809 
810 #ifndef MALLOC_CHECK
811 #define OBJECTS_PER_PAGE(type) (PAGE_SIZE / sizeof (type))
812 #else
813 #define OBJECTS_PER_PAGE(type) ((sizeof (type) > 1) ? 1 : PAGE_SIZE)
814 #endif
815 
816 #define INIT_VARRAY(type) {	/* macro to initialize a varray */	\
817   (vlinks_t *)0,		/* first */				\
818   (vlinks_t *)0,		/* last */				\
819   0,				/* num_allocated */			\
820   sizeof (type),		/* object_size */			\
821   OBJECTS_PER_PAGE (type),	/* objects_per_page */			\
822   OBJECTS_PER_PAGE (type),	/* objects_last_page */			\
823 }
824 
825 /* Master type for indexes within the symbol table.  */
826 typedef unsigned long symint_t;
827 
828 /* Linked list support for nested scopes (file, block, structure, etc.).  */
829 typedef struct scope {
830   struct scope	*prev;		/* previous scope level */
831   struct scope	*free;		/* free list pointer */
832   struct localsym *lsym;	/* pointer to local symbol node */
833   st_t		 type;		/* type of the node */
834 } scope_t;
835 
836 /* For a local symbol we store a gas symbol as well as the debugging
837    information we generate.  The gas symbol will be NULL if this is
838    only a debugging symbol.  */
839 typedef struct localsym {
840   const char *name;		/* symbol name */
841   symbolS *as_sym;		/* symbol as seen by gas */
842   bfd_vma addend;		/* addend to as_sym value */
843   struct efdr *file_ptr;	/* file pointer */
844   struct ecoff_proc *proc_ptr;	/* proc pointer */
845   struct localsym *begin_ptr;	/* symbol at start of block */
846   struct ecoff_aux *index_ptr;	/* index value to be filled in */
847   struct forward *forward_ref;	/* forward references to this symbol */
848   long sym_index;		/* final symbol index */
849   EXTR ecoff_sym;		/* ECOFF debugging symbol */
850 } localsym_t;
851 
852 /* For aux information we keep the type and the data.  */
853 typedef struct ecoff_aux {
854   enum aux_type type;		/* aux type */
855   AUXU data;			/* aux data */
856 } aux_t;
857 
858 /* For a procedure we store the gas symbol as well as the PDR
859    debugging information.  */
860 typedef struct ecoff_proc {
861   localsym_t *sym;		/* associated symbol */
862   PDR pdr;			/* ECOFF debugging info */
863 } proc_t;
864 
865 /* Number of proc_t structures allocated.  */
866 static unsigned long proc_cnt;
867 
868 /* Forward reference list for tags referenced, but not yet defined.  */
869 typedef struct forward {
870   struct forward *next;		/* next forward reference */
871   struct forward *free;		/* free list pointer */
872   aux_t		 *ifd_ptr;	/* pointer to store file index */
873   aux_t		 *index_ptr;	/* pointer to store symbol index */
874 } forward_t;
875 
876 /* Linked list support for tags.  The first tag in the list is always
877    the current tag for that block.  */
878 typedef struct tag {
879   struct tag	 *free;		/* free list pointer */
880   struct shash	 *hash_ptr;	/* pointer to the hash table head */
881   struct tag	 *same_name;	/* tag with same name in outer scope */
882   struct tag	 *same_block;	/* next tag defined in the same block.  */
883   struct forward *forward_ref;	/* list of forward references */
884   bt_t		  basic_type;	/* bt_Struct, bt_Union, or bt_Enum */
885   symint_t	  ifd;		/* file # tag defined in */
886   localsym_t	 *sym;		/* file's local symbols */
887 } tag_t;
888 
889 /* Head of a block's linked list of tags.  */
890 typedef struct thead {
891   struct thead	*prev;		/* previous block */
892   struct thead	*free;		/* free list pointer */
893   struct tag	*first_tag;	/* first tag in block defined */
894 } thead_t;
895 
896 /* Union containing pointers to each the small structures which are freed up.  */
897 typedef union small_free {
898   scope_t	*f_scope;	/* scope structure */
899   thead_t	*f_thead;	/* tag head structure */
900   tag_t		*f_tag;		/* tag element structure */
901   forward_t	*f_forward;	/* forward tag reference */
902 } small_free_t;
903 
904 /* String hash table entry.  */
905 
906 typedef struct shash {
907   char		*string;	/* string we are hashing */
908   symint_t	 indx;		/* index within string table */
909   EXTR		*esym_ptr;	/* global symbol pointer */
910   localsym_t	*sym_ptr;	/* local symbol pointer */
911   localsym_t	*end_ptr;	/* symbol pointer to end block */
912   tag_t		*tag_ptr;	/* tag pointer */
913   proc_t	*proc_ptr;	/* procedure descriptor pointer */
914 } shash_t;
915 
916 /* Type hash table support.  The size of the hash table must fit
917    within a page with the other extended file descriptor information.
918    Because unique types which are hashed are fewer in number than
919    strings, we use a smaller hash value.  */
920 
921 #define HASHBITS 30
922 
923 #ifndef THASH_SIZE
924 #define THASH_SIZE 113
925 #endif
926 
927 typedef struct thash {
928   struct thash	*next;		/* next hash value */
929   AUXU		 type;		/* type we are hashing */
930   symint_t	 indx;		/* index within string table */
931 } thash_t;
932 
933 /* Extended file descriptor that contains all of the support necessary
934    to add things to each file separately.  */
935 typedef struct efdr {
936   FDR		 fdr;		/* File header to be written out */
937   FDR		*orig_fdr;	/* original file header */
938   char		*name;		/* filename */
939   int		 fake;		/* whether this is faked .file */
940   symint_t	 void_type;	/* aux. pointer to 'void' type */
941   symint_t	 int_type;	/* aux. pointer to 'int' type */
942   scope_t	*cur_scope;	/* current nested scopes */
943   symint_t	 file_index;	/* current file number */
944   int		 nested_scopes;	/* # nested scopes */
945   varray_t	 strings;	/* local strings */
946   varray_t	 symbols;	/* local symbols */
947   varray_t	 procs;		/* procedures */
948   varray_t	 aux_syms;	/* auxiliary symbols */
949   struct efdr	*next_file;	/* next file descriptor */
950 				/* string/type hash tables */
951   struct hash_control *str_hash;	/* string hash table */
952   thash_t	*thash_head[THASH_SIZE];
953 } efdr_t;
954 
955 /* Pre-initialized extended file structure.  */
956 static const efdr_t init_file = {
957   {			/* FDR structure */
958     0,			/* adr:		memory address of beginning of file */
959     0,			/* rss:		file name (of source, if known) */
960     0,			/* issBase:	file's string space */
961     0,			/* cbSs:	number of bytes in the ss */
962     0,			/* isymBase:	beginning of symbols */
963     0,			/* csym:	count file's of symbols */
964     0,			/* ilineBase:	file's line symbols */
965     0,			/* cline:	count of file's line symbols */
966     0,			/* ioptBase:	file's optimization entries */
967     0,			/* copt:	count of file's optimization entries */
968     0,			/* ipdFirst:	start of procedures for this file */
969     0,			/* cpd:		count of procedures for this file */
970     0,			/* iauxBase:	file's auxiliary entries */
971     0,			/* caux:	count of file's auxiliary entries */
972     0,			/* rfdBase:	index into the file indirect table */
973     0,			/* crfd:	count file indirect entries */
974     langC,		/* lang:	language for this file */
975     1,			/* fMerge:	whether this file can be merged */
976     0,			/* fReadin:	true if read in (not just created) */
977     TARGET_BYTES_BIG_ENDIAN,  /* fBigendian:	if 1, compiled on big endian machine */
978     GLEVEL_2,		/* glevel:	level this file was compiled with */
979     0,			/* reserved:	reserved for future use */
980     0,			/* cbLineOffset: byte offset from header for this file ln's */
981     0,			/* cbLine:	size of lines for this file */
982   },
983 
984   (FDR *)0,		/* orig_fdr:	original file header pointer */
985   (char *)0,		/* name:	pointer to filename */
986   0,			/* fake:	whether this is a faked .file */
987   0,			/* void_type:	ptr to aux node for void type */
988   0,			/* int_type:	ptr to aux node for int type */
989   (scope_t *)0,		/* cur_scope:	current scope being processed */
990   0,			/* file_index:	current file # */
991   0,			/* nested_scopes: # nested scopes */
992   INIT_VARRAY (char),	/* strings:	local string varray */
993   INIT_VARRAY (localsym_t),	/* symbols:	local symbols varray */
994   INIT_VARRAY (proc_t),	/* procs:	procedure varray */
995   INIT_VARRAY (aux_t),	/* aux_syms:	auxiliary symbols varray */
996 
997   (struct efdr *)0,	/* next_file:	next file structure */
998 
999   (struct hash_control *)0,	/* str_hash:	string hash table */
1000   { 0 },		/* thash_head:	type hash table */
1001 };
1002 
1003 static efdr_t *first_file;			/* first file descriptor */
1004 static efdr_t **last_file_ptr = &first_file;	/* file descriptor tail */
1005 
1006 /* Line number information is kept in a list until the assembly is
1007    finished.  */
1008 typedef struct lineno_list {
1009   struct lineno_list *next;	/* next element in list */
1010   efdr_t *file;			/* file this line is in */
1011   proc_t *proc;			/* procedure this line is in */
1012   fragS *frag;			/* fragment this line number is in */
1013   unsigned long paddr;		/* offset within fragment */
1014   long lineno;			/* actual line number */
1015 } lineno_list_t;
1016 
1017 static lineno_list_t *first_lineno;
1018 static lineno_list_t *last_lineno;
1019 static lineno_list_t **last_lineno_ptr = &first_lineno;
1020 
1021 /* Sometimes there will be some .loc statements before a .ent.  We
1022    keep them in this list so that we can fill in the procedure pointer
1023    after we see the .ent.  */
1024 static lineno_list_t *noproc_lineno;
1025 
1026 /* Union of various things that are held in pages.  */
1027 typedef union page {
1028   char		byte	[ PAGE_SIZE ];
1029   unsigned char	ubyte	[ PAGE_SIZE ];
1030   efdr_t	file	[ PAGE_SIZE / sizeof (efdr_t)	     ];
1031   FDR		ofile	[ PAGE_SIZE / sizeof (FDR)	     ];
1032   proc_t	proc	[ PAGE_SIZE / sizeof (proc_t)	     ];
1033   localsym_t	sym	[ PAGE_SIZE / sizeof (localsym_t)    ];
1034   aux_t		aux	[ PAGE_SIZE / sizeof (aux_t)	     ];
1035   DNR		dense	[ PAGE_SIZE / sizeof (DNR)	     ];
1036   scope_t	scope	[ PAGE_SIZE / sizeof (scope_t)	     ];
1037   vlinks_t	vlinks	[ PAGE_SIZE / sizeof (vlinks_t)	     ];
1038   shash_t	shash	[ PAGE_SIZE / sizeof (shash_t)	     ];
1039   thash_t	thash	[ PAGE_SIZE / sizeof (thash_t)	     ];
1040   tag_t		tag	[ PAGE_SIZE / sizeof (tag_t)	     ];
1041   forward_t	forward	[ PAGE_SIZE / sizeof (forward_t)     ];
1042   thead_t	thead	[ PAGE_SIZE / sizeof (thead_t)	     ];
1043   lineno_list_t	lineno	[ PAGE_SIZE / sizeof (lineno_list_t) ];
1044 } page_type;
1045 
1046 /* Structure holding allocation information for small sized structures.  */
1047 typedef struct alloc_info {
1048   char		*alloc_name;	/* name of this allocation type (must be first) */
1049   page_type	*cur_page;	/* current page being allocated from */
1050   small_free_t	 free_list;	/* current free list if any */
1051   int		 unallocated;	/* number of elements unallocated on page */
1052   int		 total_alloc;	/* total number of allocations */
1053   int		 total_free;	/* total number of frees */
1054   int		 total_pages;	/* total number of pages allocated */
1055 } alloc_info_t;
1056 
1057 /* Type information collected together.  */
1058 typedef struct type_info {
1059   bt_t	      basic_type;		/* basic type */
1060   int	      orig_type;		/* original COFF-based type */
1061   int	      num_tq;			/* # type qualifiers */
1062   int	      num_dims;			/* # dimensions */
1063   int	      num_sizes;		/* # sizes */
1064   int	      extra_sizes;		/* # extra sizes not tied with dims */
1065   tag_t *     tag_ptr;			/* tag pointer */
1066   int	      bitfield;			/* symbol is a bitfield */
1067   tq_t	      type_qualifiers[N_TQ];	/* type qualifiers (ptr, func, array)*/
1068   symint_t    dimensions     [N_TQ];	/* dimensions for each array */
1069   symint_t    sizes	     [N_TQ+2];	/* sizes of each array slice + size of
1070 					   struct/union/enum + bitfield size */
1071 } type_info_t;
1072 
1073 /* Pre-initialized type_info struct.  */
1074 static const type_info_t type_info_init = {
1075   bt_Nil,				/* basic type */
1076   T_NULL,				/* original COFF-based type */
1077   0,					/* # type qualifiers */
1078   0,					/* # dimensions */
1079   0,					/* # sizes */
1080   0,					/* sizes not tied with dims */
1081   NULL,					/* ptr to tag */
1082   0,					/* bitfield */
1083   {					/* type qualifiers */
1084     tq_Nil,
1085     tq_Nil,
1086     tq_Nil,
1087     tq_Nil,
1088     tq_Nil,
1089     tq_Nil,
1090   },
1091   {					/* dimensions */
1092     0,
1093     0,
1094     0,
1095     0,
1096     0,
1097     0
1098   },
1099   {					/* sizes */
1100     0,
1101     0,
1102     0,
1103     0,
1104     0,
1105     0,
1106     0,
1107     0,
1108   },
1109 };
1110 
1111 /* Global hash table for the tags table and global table for file
1112    descriptors.  */
1113 
1114 static varray_t file_desc = INIT_VARRAY (efdr_t);
1115 
1116 static struct hash_control *tag_hash;
1117 
1118 /* Static types for int and void.  Also, remember the last function's
1119    type (which is set up when we encounter the declaration for the
1120    function, and used when the end block for the function is emitted.  */
1121 
1122 static type_info_t int_type_info;
1123 static type_info_t void_type_info;
1124 static type_info_t last_func_type_info;
1125 static symbolS *last_func_sym_value;
1126 
1127 /* Convert COFF basic type to ECOFF basic type.  The T_NULL type
1128    really should use bt_Void, but this causes the current ecoff GDB to
1129    issue unsupported type messages, and the Ultrix 4.00 dbx (aka MIPS
1130    2.0) doesn't understand it, even though the compiler generates it.
1131    Maybe this will be fixed in 2.10 or 2.20 of the MIPS compiler
1132    suite, but for now go with what works.
1133 
1134    It would make sense for the .type and .scl directives to use the
1135    ECOFF numbers directly, rather than using the COFF numbers and
1136    mapping them.  Unfortunately, this is historically what mips-tfile
1137    expects, and changing gcc now would be a considerable pain (the
1138    native compiler generates debugging information internally, rather
1139    than via the assembler, so it will never use .type or .scl).  */
1140 
1141 static const bt_t map_coff_types[] = {
1142   bt_Nil,			/* T_NULL */
1143   bt_Nil,			/* T_ARG */
1144   bt_Char,			/* T_CHAR */
1145   bt_Short,			/* T_SHORT */
1146   bt_Int,			/* T_INT */
1147   bt_Long,			/* T_LONG */
1148   bt_Float,			/* T_FLOAT */
1149   bt_Double,			/* T_DOUBLE */
1150   bt_Struct,			/* T_STRUCT */
1151   bt_Union,			/* T_UNION */
1152   bt_Enum,			/* T_ENUM */
1153   bt_Enum,			/* T_MOE */
1154   bt_UChar,			/* T_UCHAR */
1155   bt_UShort,			/* T_USHORT */
1156   bt_UInt,			/* T_UINT */
1157   bt_ULong			/* T_ULONG */
1158 };
1159 
1160 /* Convert COFF storage class to ECOFF storage class.  */
1161 static const sc_t map_coff_storage[] = {
1162   sc_Nil,			/*   0: C_NULL */
1163   sc_Abs,			/*   1: C_AUTO	  auto var */
1164   sc_Undefined,			/*   2: C_EXT	  external */
1165   sc_Data,			/*   3: C_STAT	  static */
1166   sc_Register,			/*   4: C_REG	  register */
1167   sc_Undefined,			/*   5: C_EXTDEF  ??? */
1168   sc_Text,			/*   6: C_LABEL	  label */
1169   sc_Text,			/*   7: C_ULABEL  user label */
1170   sc_Info,			/*   8: C_MOS	  member of struct */
1171   sc_Abs,			/*   9: C_ARG	  argument */
1172   sc_Info,			/*  10: C_STRTAG  struct tag */
1173   sc_Info,			/*  11: C_MOU	  member of union */
1174   sc_Info,			/*  12: C_UNTAG   union tag */
1175   sc_Info,			/*  13: C_TPDEF	  typedef */
1176   sc_Data,			/*  14: C_USTATIC ??? */
1177   sc_Info,			/*  15: C_ENTAG	  enum tag */
1178   sc_Info,			/*  16: C_MOE	  member of enum */
1179   sc_Register,			/*  17: C_REGPARM register parameter */
1180   sc_Bits,			/*  18; C_FIELD	  bitfield */
1181   sc_Nil,			/*  19 */
1182   sc_Nil,			/*  20 */
1183   sc_Nil,			/*  21 */
1184   sc_Nil,			/*  22 */
1185   sc_Nil,			/*  23 */
1186   sc_Nil,			/*  24 */
1187   sc_Nil,			/*  25 */
1188   sc_Nil,			/*  26 */
1189   sc_Nil,			/*  27 */
1190   sc_Nil,			/*  28 */
1191   sc_Nil,			/*  29 */
1192   sc_Nil,			/*  30 */
1193   sc_Nil,			/*  31 */
1194   sc_Nil,			/*  32 */
1195   sc_Nil,			/*  33 */
1196   sc_Nil,			/*  34 */
1197   sc_Nil,			/*  35 */
1198   sc_Nil,			/*  36 */
1199   sc_Nil,			/*  37 */
1200   sc_Nil,			/*  38 */
1201   sc_Nil,			/*  39 */
1202   sc_Nil,			/*  40 */
1203   sc_Nil,			/*  41 */
1204   sc_Nil,			/*  42 */
1205   sc_Nil,			/*  43 */
1206   sc_Nil,			/*  44 */
1207   sc_Nil,			/*  45 */
1208   sc_Nil,			/*  46 */
1209   sc_Nil,			/*  47 */
1210   sc_Nil,			/*  48 */
1211   sc_Nil,			/*  49 */
1212   sc_Nil,			/*  50 */
1213   sc_Nil,			/*  51 */
1214   sc_Nil,			/*  52 */
1215   sc_Nil,			/*  53 */
1216   sc_Nil,			/*  54 */
1217   sc_Nil,			/*  55 */
1218   sc_Nil,			/*  56 */
1219   sc_Nil,			/*  57 */
1220   sc_Nil,			/*  58 */
1221   sc_Nil,			/*  59 */
1222   sc_Nil,			/*  60 */
1223   sc_Nil,			/*  61 */
1224   sc_Nil,			/*  62 */
1225   sc_Nil,			/*  63 */
1226   sc_Nil,			/*  64 */
1227   sc_Nil,			/*  65 */
1228   sc_Nil,			/*  66 */
1229   sc_Nil,			/*  67 */
1230   sc_Nil,			/*  68 */
1231   sc_Nil,			/*  69 */
1232   sc_Nil,			/*  70 */
1233   sc_Nil,			/*  71 */
1234   sc_Nil,			/*  72 */
1235   sc_Nil,			/*  73 */
1236   sc_Nil,			/*  74 */
1237   sc_Nil,			/*  75 */
1238   sc_Nil,			/*  76 */
1239   sc_Nil,			/*  77 */
1240   sc_Nil,			/*  78 */
1241   sc_Nil,			/*  79 */
1242   sc_Nil,			/*  80 */
1243   sc_Nil,			/*  81 */
1244   sc_Nil,			/*  82 */
1245   sc_Nil,			/*  83 */
1246   sc_Nil,			/*  84 */
1247   sc_Nil,			/*  85 */
1248   sc_Nil,			/*  86 */
1249   sc_Nil,			/*  87 */
1250   sc_Nil,			/*  88 */
1251   sc_Nil,			/*  89 */
1252   sc_Nil,			/*  90 */
1253   sc_Nil,			/*  91 */
1254   sc_Nil,			/*  92 */
1255   sc_Nil,			/*  93 */
1256   sc_Nil,			/*  94 */
1257   sc_Nil,			/*  95 */
1258   sc_Nil,			/*  96 */
1259   sc_Nil,			/*  97 */
1260   sc_Nil,			/*  98 */
1261   sc_Nil,			/*  99 */
1262   sc_Text,			/* 100: C_BLOCK  block start/end */
1263   sc_Text,			/* 101: C_FCN	 function start/end */
1264   sc_Info,			/* 102: C_EOS	 end of struct/union/enum */
1265   sc_Nil,			/* 103: C_FILE	 file start */
1266   sc_Nil,			/* 104: C_LINE	 line number */
1267   sc_Nil,			/* 105: C_ALIAS	 combined type info */
1268   sc_Nil,			/* 106: C_HIDDEN ??? */
1269 };
1270 
1271 /* Convert COFF storage class to ECOFF symbol type.  */
1272 static const st_t map_coff_sym_type[] = {
1273   st_Nil,			/*   0: C_NULL */
1274   st_Local,			/*   1: C_AUTO	  auto var */
1275   st_Global,			/*   2: C_EXT	  external */
1276   st_Static,			/*   3: C_STAT	  static */
1277   st_Local,			/*   4: C_REG	  register */
1278   st_Global,			/*   5: C_EXTDEF  ??? */
1279   st_Label,			/*   6: C_LABEL	  label */
1280   st_Label,			/*   7: C_ULABEL  user label */
1281   st_Member,			/*   8: C_MOS	  member of struct */
1282   st_Param,			/*   9: C_ARG	  argument */
1283   st_Block,			/*  10: C_STRTAG  struct tag */
1284   st_Member,			/*  11: C_MOU	  member of union */
1285   st_Block,			/*  12: C_UNTAG   union tag */
1286   st_Typedef,			/*  13: C_TPDEF	  typedef */
1287   st_Static,			/*  14: C_USTATIC ??? */
1288   st_Block,			/*  15: C_ENTAG	  enum tag */
1289   st_Member,			/*  16: C_MOE	  member of enum */
1290   st_Param,			/*  17: C_REGPARM register parameter */
1291   st_Member,			/*  18; C_FIELD	  bitfield */
1292   st_Nil,			/*  19 */
1293   st_Nil,			/*  20 */
1294   st_Nil,			/*  21 */
1295   st_Nil,			/*  22 */
1296   st_Nil,			/*  23 */
1297   st_Nil,			/*  24 */
1298   st_Nil,			/*  25 */
1299   st_Nil,			/*  26 */
1300   st_Nil,			/*  27 */
1301   st_Nil,			/*  28 */
1302   st_Nil,			/*  29 */
1303   st_Nil,			/*  30 */
1304   st_Nil,			/*  31 */
1305   st_Nil,			/*  32 */
1306   st_Nil,			/*  33 */
1307   st_Nil,			/*  34 */
1308   st_Nil,			/*  35 */
1309   st_Nil,			/*  36 */
1310   st_Nil,			/*  37 */
1311   st_Nil,			/*  38 */
1312   st_Nil,			/*  39 */
1313   st_Nil,			/*  40 */
1314   st_Nil,			/*  41 */
1315   st_Nil,			/*  42 */
1316   st_Nil,			/*  43 */
1317   st_Nil,			/*  44 */
1318   st_Nil,			/*  45 */
1319   st_Nil,			/*  46 */
1320   st_Nil,			/*  47 */
1321   st_Nil,			/*  48 */
1322   st_Nil,			/*  49 */
1323   st_Nil,			/*  50 */
1324   st_Nil,			/*  51 */
1325   st_Nil,			/*  52 */
1326   st_Nil,			/*  53 */
1327   st_Nil,			/*  54 */
1328   st_Nil,			/*  55 */
1329   st_Nil,			/*  56 */
1330   st_Nil,			/*  57 */
1331   st_Nil,			/*  58 */
1332   st_Nil,			/*  59 */
1333   st_Nil,			/*  60 */
1334   st_Nil,			/*  61 */
1335   st_Nil,			/*  62 */
1336   st_Nil,			/*  63 */
1337   st_Nil,			/*  64 */
1338   st_Nil,			/*  65 */
1339   st_Nil,			/*  66 */
1340   st_Nil,			/*  67 */
1341   st_Nil,			/*  68 */
1342   st_Nil,			/*  69 */
1343   st_Nil,			/*  70 */
1344   st_Nil,			/*  71 */
1345   st_Nil,			/*  72 */
1346   st_Nil,			/*  73 */
1347   st_Nil,			/*  74 */
1348   st_Nil,			/*  75 */
1349   st_Nil,			/*  76 */
1350   st_Nil,			/*  77 */
1351   st_Nil,			/*  78 */
1352   st_Nil,			/*  79 */
1353   st_Nil,			/*  80 */
1354   st_Nil,			/*  81 */
1355   st_Nil,			/*  82 */
1356   st_Nil,			/*  83 */
1357   st_Nil,			/*  84 */
1358   st_Nil,			/*  85 */
1359   st_Nil,			/*  86 */
1360   st_Nil,			/*  87 */
1361   st_Nil,			/*  88 */
1362   st_Nil,			/*  89 */
1363   st_Nil,			/*  90 */
1364   st_Nil,			/*  91 */
1365   st_Nil,			/*  92 */
1366   st_Nil,			/*  93 */
1367   st_Nil,			/*  94 */
1368   st_Nil,			/*  95 */
1369   st_Nil,			/*  96 */
1370   st_Nil,			/*  97 */
1371   st_Nil,			/*  98 */
1372   st_Nil,			/*  99 */
1373   st_Block,			/* 100: C_BLOCK  block start/end */
1374   st_Proc,			/* 101: C_FCN	 function start/end */
1375   st_End,			/* 102: C_EOS	 end of struct/union/enum */
1376   st_File,			/* 103: C_FILE	 file start */
1377   st_Nil,			/* 104: C_LINE	 line number */
1378   st_Nil,			/* 105: C_ALIAS	 combined type info */
1379   st_Nil,			/* 106: C_HIDDEN ??? */
1380 };
1381 
1382 /* Keep track of different sized allocation requests.  */
1383 static alloc_info_t alloc_counts[(int) alloc_type_last];
1384 
1385 /* Record whether we have seen any debugging information.  */
1386 int ecoff_debugging_seen = 0;
1387 
1388 /* Various statics.  */
1389 static efdr_t  *cur_file_ptr	= (efdr_t *) 0;	/* current file desc. header */
1390 static proc_t  *cur_proc_ptr	= (proc_t *) 0;	/* current procedure header */
1391 static proc_t  *first_proc_ptr  = (proc_t *) 0; /* first procedure header */
1392 static thead_t *top_tag_head	= (thead_t *) 0; /* top level tag head */
1393 static thead_t *cur_tag_head	= (thead_t *) 0; /* current tag head */
1394 #ifdef ECOFF_DEBUG
1395 static int	debug		= 0; 		/* trace functions */
1396 #endif
1397 static int	stabs_seen	= 0;		/* != 0 if stabs have been seen */
1398 
1399 static int current_file_idx;
1400 static const char *current_stabs_filename;
1401 
1402 /* Pseudo symbol to use when putting stabs into the symbol table.  */
1403 #ifndef STABS_SYMBOL
1404 #define STABS_SYMBOL "@stabs"
1405 #endif
1406 
1407 static char stabs_symbol[] = STABS_SYMBOL;
1408 
1409 /* Prototypes for functions defined in this file.  */
1410 
1411 static void add_varray_page (varray_t *vp);
1412 static symint_t add_string (varray_t *vp,
1413 			    struct hash_control *hash_tbl,
1414 			    const char *str,
1415 			    shash_t **ret_hash);
1416 static localsym_t *add_ecoff_symbol (const char *str, st_t type,
1417 				     sc_t storage, symbolS *sym,
1418 				     bfd_vma addend, symint_t value,
1419 				     symint_t indx);
1420 static symint_t add_aux_sym_symint (symint_t aux_word);
1421 static symint_t add_aux_sym_rndx (int file_index, symint_t sym_index);
1422 static symint_t add_aux_sym_tir (type_info_t *t,
1423 				 hash_state_t state,
1424 				 thash_t **hash_tbl);
1425 static tag_t *get_tag (const char *tag, localsym_t *sym, bt_t basic_type);
1426 static void add_unknown_tag (tag_t *ptag);
1427 static void add_procedure (char *func);
1428 static void add_file (const char *file_name, int indx, int fake);
1429 #ifdef ECOFF_DEBUG
1430 static char *sc_to_string (sc_t storage_class);
1431 static char *st_to_string (st_t symbol_type);
1432 #endif
1433 static void mark_stabs (int);
1434 static char *ecoff_add_bytes (char **buf, char **bufend,
1435 			      char *bufptr, unsigned long need);
1436 static unsigned long ecoff_padding_adjust
1437   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1438    unsigned long offset, char **bufptrptr);
1439 static unsigned long ecoff_build_lineno
1440   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1441    unsigned long offset, long *linecntptr);
1442 static unsigned long ecoff_build_symbols
1443   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1444    unsigned long offset);
1445 static unsigned long ecoff_build_procs
1446   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1447    unsigned long offset);
1448 static unsigned long ecoff_build_aux
1449   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1450    unsigned long offset);
1451 static unsigned long ecoff_build_strings (char **buf, char **bufend,
1452 					  unsigned long offset,
1453 					  varray_t *vp);
1454 static unsigned long ecoff_build_ss
1455   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1456    unsigned long offset);
1457 static unsigned long ecoff_build_fdr
1458   (const struct ecoff_debug_swap *backend, char **buf, char **bufend,
1459    unsigned long offset);
1460 static void ecoff_setup_ext (void);
1461 static page_type *allocate_cluster (unsigned long npages);
1462 static page_type *allocate_page (void);
1463 static scope_t *allocate_scope (void);
1464 static void free_scope (scope_t *ptr);
1465 static vlinks_t *allocate_vlinks (void);
1466 static shash_t *allocate_shash (void);
1467 static thash_t *allocate_thash (void);
1468 static tag_t *allocate_tag (void);
1469 static void free_tag (tag_t *ptr);
1470 static forward_t *allocate_forward (void);
1471 static thead_t *allocate_thead (void);
1472 static void free_thead (thead_t *ptr);
1473 static lineno_list_t *allocate_lineno_list (void);
1474 
1475 /* This function should be called when the assembler starts up.  */
1476 
1477 void
1478 ecoff_read_begin_hook (void)
1479 {
1480   tag_hash = hash_new ();
1481   top_tag_head = allocate_thead ();
1482   top_tag_head->first_tag = (tag_t *) NULL;
1483   top_tag_head->free = (thead_t *) NULL;
1484   top_tag_head->prev = cur_tag_head;
1485   cur_tag_head = top_tag_head;
1486 }
1487 
1488 /* This function should be called when a symbol is created.  */
1489 
1490 void
1491 ecoff_symbol_new_hook (symbolS *symbolP)
1492 {
1493   OBJ_SYMFIELD_TYPE *obj;
1494 
1495   /* Make sure that we have a file pointer, but only if we have seen a
1496      file.  If we haven't seen a file, then this is a probably special
1497      symbol created by md_begin which may required special handling at
1498      some point.  Creating a dummy file with a dummy name is certainly
1499      wrong.  */
1500   if (cur_file_ptr == (efdr_t *) NULL
1501       && seen_at_least_1_file ())
1502     add_file ((const char *) NULL, 0, 1);
1503   obj = symbol_get_obj (symbolP);
1504   obj->ecoff_file = cur_file_ptr;
1505   obj->ecoff_symbol = NULL;
1506   obj->ecoff_extern_size = 0;
1507 }
1508 
1509 /* Add a page to a varray object.  */
1510 
1511 static void
1512 add_varray_page (varray_t *vp /* varray to add page to */)
1513 {
1514   vlinks_t *new_links = allocate_vlinks ();
1515 
1516 #ifdef MALLOC_CHECK
1517   if (vp->object_size > 1)
1518     new_links->datum = (page_type *) xcalloc (1, vp->object_size);
1519   else
1520 #endif
1521     new_links->datum = allocate_page ();
1522 
1523   alloc_counts[(int) alloc_type_varray].total_alloc++;
1524   alloc_counts[(int) alloc_type_varray].total_pages++;
1525 
1526   new_links->start_index = vp->num_allocated;
1527   vp->objects_last_page = 0;
1528 
1529   if (vp->first == (vlinks_t *) NULL)		/* first allocation? */
1530     vp->first = vp->last = new_links;
1531   else
1532     {						/* 2nd or greater allocation */
1533       new_links->prev = vp->last;
1534       vp->last->next = new_links;
1535       vp->last = new_links;
1536     }
1537 }
1538 
1539 /* Add a string (and null pad) to one of the string tables.  */
1540 
1541 static symint_t
1542 add_string (varray_t *vp,			/* string obstack */
1543 	    struct hash_control *hash_tbl,	/* ptr to hash table */
1544 	    const char *str,			/* string */
1545 	    shash_t **ret_hash			/* return hash pointer */)
1546 {
1547   register unsigned long len = strlen (str);
1548   register shash_t *hash_ptr;
1549 
1550   if (len >= PAGE_USIZE)
1551     as_fatal (_("string too big (%lu bytes)"), len);
1552 
1553   hash_ptr = (shash_t *) hash_find (hash_tbl, str);
1554   if (hash_ptr == (shash_t *) NULL)
1555     {
1556       register const char *err;
1557 
1558       if (vp->objects_last_page + len >= PAGE_USIZE)
1559 	{
1560 	  vp->num_allocated =
1561 	    ((vp->num_allocated + PAGE_USIZE - 1) / PAGE_USIZE) * PAGE_USIZE;
1562 	  add_varray_page (vp);
1563 	}
1564 
1565       hash_ptr = allocate_shash ();
1566       hash_ptr->indx = vp->num_allocated;
1567 
1568       hash_ptr->string = &vp->last->datum->byte[vp->objects_last_page];
1569 
1570       vp->objects_last_page += len + 1;
1571       vp->num_allocated += len + 1;
1572 
1573       strcpy (hash_ptr->string, str);
1574 
1575       err = hash_insert (hash_tbl, str, (char *) hash_ptr);
1576       if (err)
1577 	as_fatal (_("inserting \"%s\" into string hash table: %s"),
1578 		  str, err);
1579     }
1580 
1581   if (ret_hash != (shash_t **) NULL)
1582     *ret_hash = hash_ptr;
1583 
1584   return hash_ptr->indx;
1585 }
1586 
1587 /* Add debugging information for a symbol.  */
1588 
1589 static localsym_t *
1590 add_ecoff_symbol (const char *str,	/* symbol name */
1591 		  st_t type,		/* symbol type */
1592 		  sc_t storage,		/* storage class */
1593 		  symbolS *sym_value,	/* associated symbol.  */
1594 		  bfd_vma addend,	/* addend to sym_value.  */
1595 		  symint_t value,	/* value of symbol */
1596 		  symint_t indx		/* index to local/aux. syms */)
1597 {
1598   localsym_t *psym;
1599   register scope_t *pscope;
1600   register thead_t *ptag_head;
1601   register tag_t *ptag;
1602   register tag_t *ptag_next;
1603   register varray_t *vp;
1604   register int scope_delta = 0;
1605   shash_t *hash_ptr = (shash_t *) NULL;
1606 
1607   if (cur_file_ptr == (efdr_t *) NULL)
1608     as_fatal (_("no current file pointer"));
1609 
1610   vp = &cur_file_ptr->symbols;
1611 
1612   if (vp->objects_last_page == vp->objects_per_page)
1613     add_varray_page (vp);
1614 
1615   psym = &vp->last->datum->sym[vp->objects_last_page++];
1616 
1617   if (str == (const char *) NULL && sym_value != (symbolS *) NULL)
1618     psym->name = S_GET_NAME (sym_value);
1619   else
1620     psym->name = str;
1621   psym->as_sym = sym_value;
1622   if (sym_value != (symbolS *) NULL)
1623     symbol_get_obj (sym_value)->ecoff_symbol = psym;
1624   psym->addend = addend;
1625   psym->file_ptr = cur_file_ptr;
1626   psym->proc_ptr = cur_proc_ptr;
1627   psym->begin_ptr = (localsym_t *) NULL;
1628   psym->index_ptr = (aux_t *) NULL;
1629   psym->forward_ref = (forward_t *) NULL;
1630   psym->sym_index = -1;
1631   memset (&psym->ecoff_sym, 0, sizeof (EXTR));
1632   psym->ecoff_sym.asym.value = value;
1633   psym->ecoff_sym.asym.st = (unsigned) type;
1634   psym->ecoff_sym.asym.sc = (unsigned) storage;
1635   psym->ecoff_sym.asym.index = indx;
1636 
1637   /* If there is an associated symbol, we wait until the end of the
1638      assembly before deciding where to put the name (it may be just an
1639      external symbol).  Otherwise, this is just a debugging symbol and
1640      the name should go with the current file.  */
1641   if (sym_value == (symbolS *) NULL)
1642     psym->ecoff_sym.asym.iss = ((str == (const char *) NULL)
1643 				? 0
1644 				: add_string (&cur_file_ptr->strings,
1645 					      cur_file_ptr->str_hash,
1646 					      str,
1647 					      &hash_ptr));
1648 
1649   ++vp->num_allocated;
1650 
1651   if (ECOFF_IS_STAB (&psym->ecoff_sym.asym))
1652     return psym;
1653 
1654   /* Save the symbol within the hash table if this is a static
1655      item, and it has a name.  */
1656   if (hash_ptr != (shash_t *) NULL
1657       && (type == st_Global || type == st_Static || type == st_Label
1658 	  || type == st_Proc || type == st_StaticProc))
1659     hash_ptr->sym_ptr = psym;
1660 
1661   /* push or pop a scope if appropriate.  */
1662   switch (type)
1663     {
1664     default:
1665       break;
1666 
1667     case st_File:			/* beginning of file */
1668     case st_Proc:			/* procedure */
1669     case st_StaticProc:			/* static procedure */
1670     case st_Block:			/* begin scope */
1671       pscope = allocate_scope ();
1672       pscope->prev = cur_file_ptr->cur_scope;
1673       pscope->lsym = psym;
1674       pscope->type = type;
1675       cur_file_ptr->cur_scope = pscope;
1676 
1677       if (type != st_File)
1678 	scope_delta = 1;
1679 
1680       /* For every block type except file, struct, union, or
1681          enumeration blocks, push a level on the tag stack.  We omit
1682          file types, so that tags can span file boundaries.  */
1683       if (type != st_File && storage != sc_Info)
1684 	{
1685 	  ptag_head = allocate_thead ();
1686 	  ptag_head->first_tag = 0;
1687 	  ptag_head->prev = cur_tag_head;
1688 	  cur_tag_head = ptag_head;
1689 	}
1690       break;
1691 
1692     case st_End:
1693       pscope = cur_file_ptr->cur_scope;
1694       if (pscope == (scope_t *) NULL)
1695 	as_fatal (_("too many st_End's"));
1696       else
1697 	{
1698 	  st_t begin_type = (st_t) pscope->lsym->ecoff_sym.asym.st;
1699 
1700 	  psym->begin_ptr = pscope->lsym;
1701 
1702 	  if (begin_type != st_File)
1703 	    scope_delta = -1;
1704 
1705 	  /* Except for file, structure, union, or enumeration end
1706 	     blocks remove all tags created within this scope.  */
1707 	  if (begin_type != st_File && storage != sc_Info)
1708 	    {
1709 	      ptag_head = cur_tag_head;
1710 	      cur_tag_head = ptag_head->prev;
1711 
1712 	      for (ptag = ptag_head->first_tag;
1713 		   ptag != (tag_t *) NULL;
1714 		   ptag = ptag_next)
1715 		{
1716 		  if (ptag->forward_ref != (forward_t *) NULL)
1717 		    add_unknown_tag (ptag);
1718 
1719 		  ptag_next = ptag->same_block;
1720 		  ptag->hash_ptr->tag_ptr = ptag->same_name;
1721 		  free_tag (ptag);
1722 		}
1723 
1724 	      free_thead (ptag_head);
1725 	    }
1726 
1727 	  cur_file_ptr->cur_scope = pscope->prev;
1728 
1729 	  /* block begin gets next sym #.  This is set when we know
1730 	     the symbol index value.  */
1731 
1732 	  /* Functions push two or more aux words as follows:
1733 	     1st word: index+1 of the end symbol (filled in later).
1734 	     2nd word: type of the function (plus any aux words needed).
1735 	     Also, tie the external pointer back to the function begin symbol.  */
1736 	  if (begin_type != st_File && begin_type != st_Block)
1737 	    {
1738 	      symint_t ty;
1739 	      varray_t *svp = &cur_file_ptr->aux_syms;
1740 
1741 	      pscope->lsym->ecoff_sym.asym.index = add_aux_sym_symint (0);
1742 	      pscope->lsym->index_ptr =
1743 		&svp->last->datum->aux[svp->objects_last_page - 1];
1744 	      ty = add_aux_sym_tir (&last_func_type_info,
1745 				    hash_no,
1746 				    &cur_file_ptr->thash_head[0]);
1747 
1748 /* This seems to be unnecessary.  I'm not even sure what it is
1749  * intended to do.  It's from mips-tfile.
1750  *	      if (last_func_sym_value != (symbolS *) NULL)
1751  *		{
1752  *		  last_func_sym_value->ifd = cur_file_ptr->file_index;
1753  *		  last_func_sym_value->index = ty;
1754  *		}
1755  */
1756 	    }
1757 
1758 	  free_scope (pscope);
1759 	}
1760     }
1761 
1762   cur_file_ptr->nested_scopes += scope_delta;
1763 
1764 #ifdef ECOFF_DEBUG
1765   if (debug && type != st_File
1766       && (debug > 2 || type == st_Block || type == st_End
1767 	  || type == st_Proc || type == st_StaticProc))
1768     {
1769       char *sc_str = sc_to_string (storage);
1770       char *st_str = st_to_string (type);
1771       int depth = cur_file_ptr->nested_scopes + (scope_delta < 0);
1772 
1773       fprintf (stderr,
1774 	       "\tlsym\tv= %10ld, depth= %2d, sc= %-12s",
1775 	       value, depth, sc_str);
1776 
1777       if (str_start && str_end_p1 - str_start > 0)
1778 	fprintf (stderr, " st= %-11s name= %.*s\n",
1779 		 st_str, str_end_p1 - str_start, str_start);
1780       else
1781 	{
1782 	  unsigned long len = strlen (st_str);
1783 	  fprintf (stderr, " st= %.*s\n", len - 1, st_str);
1784 	}
1785     }
1786 #endif
1787 
1788   return psym;
1789 }
1790 
1791 /* Add an auxiliary symbol (passing a symint).  This is actually used
1792    for integral aux types, not just symints.  */
1793 
1794 static symint_t
1795 add_aux_sym_symint (symint_t aux_word /* auxiliary information word */)
1796 {
1797   register varray_t *vp;
1798   register aux_t *aux_ptr;
1799 
1800   if (cur_file_ptr == (efdr_t *) NULL)
1801     as_fatal (_("no current file pointer"));
1802 
1803   vp = &cur_file_ptr->aux_syms;
1804 
1805   if (vp->objects_last_page == vp->objects_per_page)
1806     add_varray_page (vp);
1807 
1808   aux_ptr = &vp->last->datum->aux[vp->objects_last_page++];
1809   aux_ptr->type = aux_isym;
1810   aux_ptr->data.isym = aux_word;
1811 
1812   return vp->num_allocated++;
1813 }
1814 
1815 /* Add an auxiliary symbol (passing a file/symbol index combo).  */
1816 
1817 static symint_t
1818 add_aux_sym_rndx (int file_index, symint_t sym_index)
1819 {
1820   register varray_t *vp;
1821   register aux_t *aux_ptr;
1822 
1823   if (cur_file_ptr == (efdr_t *) NULL)
1824     as_fatal (_("no current file pointer"));
1825 
1826   vp = &cur_file_ptr->aux_syms;
1827 
1828   if (vp->objects_last_page == vp->objects_per_page)
1829     add_varray_page (vp);
1830 
1831   aux_ptr = &vp->last->datum->aux[vp->objects_last_page++];
1832   aux_ptr->type = aux_rndx;
1833   aux_ptr->data.rndx.rfd   = file_index;
1834   aux_ptr->data.rndx.index = sym_index;
1835 
1836   return vp->num_allocated++;
1837 }
1838 
1839 /* Add an auxiliary symbol (passing the basic type and possibly
1840    type qualifiers).  */
1841 
1842 static symint_t
1843 add_aux_sym_tir (type_info_t *t,	/* current type information */
1844 		 hash_state_t state,	/* whether to hash type or not */
1845 		 thash_t **hash_tbl	/* pointer to hash table to use */)
1846 {
1847   register varray_t *vp;
1848   register aux_t *aux_ptr;
1849   static AUXU init_aux;
1850   symint_t ret;
1851   int i;
1852   AUXU aux;
1853 
1854   if (cur_file_ptr == (efdr_t *) NULL)
1855     as_fatal (_("no current file pointer"));
1856 
1857   vp = &cur_file_ptr->aux_syms;
1858 
1859   aux = init_aux;
1860   aux.ti.bt = (int) t->basic_type;
1861   aux.ti.continued = 0;
1862   aux.ti.fBitfield = t->bitfield;
1863 
1864   aux.ti.tq0 = (int) t->type_qualifiers[0];
1865   aux.ti.tq1 = (int) t->type_qualifiers[1];
1866   aux.ti.tq2 = (int) t->type_qualifiers[2];
1867   aux.ti.tq3 = (int) t->type_qualifiers[3];
1868   aux.ti.tq4 = (int) t->type_qualifiers[4];
1869   aux.ti.tq5 = (int) t->type_qualifiers[5];
1870 
1871   /* For anything that adds additional information, we must not hash,
1872      so check here, and reset our state.  */
1873 
1874   if (state != hash_no
1875       && (t->type_qualifiers[0] == tq_Array
1876 	  || t->type_qualifiers[1] == tq_Array
1877 	  || t->type_qualifiers[2] == tq_Array
1878 	  || t->type_qualifiers[3] == tq_Array
1879 	  || t->type_qualifiers[4] == tq_Array
1880 	  || t->type_qualifiers[5] == tq_Array
1881 	  || t->basic_type == bt_Struct
1882 	  || t->basic_type == bt_Union
1883 	  || t->basic_type == bt_Enum
1884 	  || t->bitfield
1885 	  || t->num_dims > 0))
1886     state = hash_no;
1887 
1888   /* See if we can hash this type, and save some space, but some types
1889      can't be hashed (because they contain arrays or continuations),
1890      and others can be put into the hash list, but cannot use existing
1891      types because other aux entries precede this one.  */
1892 
1893   if (state != hash_no)
1894     {
1895       register thash_t *hash_ptr;
1896       register symint_t hi;
1897 
1898       hi = aux.isym & ((1 << HASHBITS) - 1);
1899       hi %= THASH_SIZE;
1900 
1901       for (hash_ptr = hash_tbl[hi];
1902 	   hash_ptr != (thash_t *)0;
1903 	   hash_ptr = hash_ptr->next)
1904 	{
1905 	  if (aux.isym == hash_ptr->type.isym)
1906 	    break;
1907 	}
1908 
1909       if (hash_ptr != (thash_t *) NULL && state == hash_yes)
1910 	return hash_ptr->indx;
1911 
1912       if (hash_ptr == (thash_t *) NULL)
1913 	{
1914 	  hash_ptr = allocate_thash ();
1915 	  hash_ptr->next = hash_tbl[hi];
1916 	  hash_ptr->type = aux;
1917 	  hash_ptr->indx = vp->num_allocated;
1918 	  hash_tbl[hi] = hash_ptr;
1919 	}
1920     }
1921 
1922   /* Everything is set up, add the aux symbol.  */
1923   if (vp->objects_last_page == vp->objects_per_page)
1924     add_varray_page (vp);
1925 
1926   aux_ptr = &vp->last->datum->aux[vp->objects_last_page++];
1927   aux_ptr->type = aux_tir;
1928   aux_ptr->data = aux;
1929 
1930   ret = vp->num_allocated++;
1931 
1932   /* Add bitfield length if it exists.
1933 
1934      NOTE:  Mips documentation claims bitfield goes at the end of the
1935      AUX record, but the DECstation compiler emits it here.
1936      (This would only make a difference for enum bitfields.)
1937 
1938      Also note:  We use the last size given since gcc may emit 2
1939      for an enum bitfield.  */
1940 
1941   if (t->bitfield)
1942     (void) add_aux_sym_symint ((symint_t) t->sizes[t->num_sizes - 1]);
1943 
1944   /* Add tag information if needed.  Structure, union, and enum
1945      references add 2 aux symbols: a [file index, symbol index]
1946      pointer to the structure type, and the current file index.  */
1947 
1948   if (t->basic_type == bt_Struct
1949       || t->basic_type == bt_Union
1950       || t->basic_type == bt_Enum)
1951     {
1952       register symint_t file_index = t->tag_ptr->ifd;
1953       register localsym_t *sym = t->tag_ptr->sym;
1954       register forward_t *forward_ref = allocate_forward ();
1955 
1956       if (sym != (localsym_t *) NULL)
1957 	{
1958 	  forward_ref->next = sym->forward_ref;
1959 	  sym->forward_ref = forward_ref;
1960 	}
1961       else
1962 	{
1963 	  forward_ref->next = t->tag_ptr->forward_ref;
1964 	  t->tag_ptr->forward_ref = forward_ref;
1965 	}
1966 
1967       (void) add_aux_sym_rndx (ST_RFDESCAPE, indexNil);
1968       forward_ref->index_ptr
1969 	= &vp->last->datum->aux[vp->objects_last_page - 1];
1970 
1971       (void) add_aux_sym_symint (file_index);
1972       forward_ref->ifd_ptr
1973 	= &vp->last->datum->aux[vp->objects_last_page - 1];
1974     }
1975 
1976   /* Add information about array bounds if they exist.  */
1977   for (i = 0; i < t->num_dims; i++)
1978     {
1979       (void) add_aux_sym_rndx (ST_RFDESCAPE,
1980 			       cur_file_ptr->int_type);
1981 
1982       (void) add_aux_sym_symint (cur_file_ptr->file_index);	/* file index*/
1983       (void) add_aux_sym_symint ((symint_t) 0);			/* low bound */
1984       (void) add_aux_sym_symint (t->dimensions[i] - 1);		/* high bound*/
1985       (void) add_aux_sym_symint ((t->dimensions[i] == 0)	/* stride */
1986 				 ? 0
1987 				 : (t->sizes[i] * 8) / t->dimensions[i]);
1988     };
1989 
1990   /* NOTE:  Mips documentation claims that the bitfield width goes here.
1991      But it needs to be emitted earlier.  */
1992 
1993   return ret;
1994 }
1995 
1996 /* Add a tag to the tag table (unless it already exists).  */
1997 
1998 static tag_t *
1999 get_tag (const char *tag,	/* tag name */
2000 	 localsym_t *sym,	/* tag start block */
2001 	 bt_t basic_type	/* bt_Struct, bt_Union, or bt_Enum */)
2002 {
2003   shash_t *hash_ptr;
2004   const char *err;
2005   tag_t *tag_ptr;
2006 
2007   if (cur_file_ptr == (efdr_t *) NULL)
2008     as_fatal (_("no current file pointer"));
2009 
2010   hash_ptr = (shash_t *) hash_find (tag_hash, tag);
2011 
2012   if (hash_ptr != (shash_t *) NULL
2013       && hash_ptr->tag_ptr != (tag_t *) NULL)
2014     {
2015       tag_ptr = hash_ptr->tag_ptr;
2016       if (sym != (localsym_t *) NULL)
2017 	{
2018 	  tag_ptr->basic_type = basic_type;
2019 	  tag_ptr->ifd        = cur_file_ptr->file_index;
2020 	  tag_ptr->sym        = sym;
2021 	}
2022       return tag_ptr;
2023     }
2024 
2025   if (hash_ptr == (shash_t *) NULL)
2026     {
2027       char *perm;
2028 
2029       perm = xstrdup (tag);
2030       hash_ptr = allocate_shash ();
2031       err = hash_insert (tag_hash, perm, (char *) hash_ptr);
2032       if (err)
2033 	as_fatal (_("inserting \"%s\" into tag hash table: %s"),
2034 		  tag, err);
2035       hash_ptr->string = perm;
2036     }
2037 
2038   tag_ptr = allocate_tag ();
2039   tag_ptr->forward_ref	= (forward_t *) NULL;
2040   tag_ptr->hash_ptr	= hash_ptr;
2041   tag_ptr->same_name	= hash_ptr->tag_ptr;
2042   tag_ptr->basic_type	= basic_type;
2043   tag_ptr->sym		= sym;
2044   tag_ptr->ifd		= ((sym == (localsym_t *) NULL)
2045 			   ? (symint_t) -1
2046 			   : cur_file_ptr->file_index);
2047   tag_ptr->same_block	= cur_tag_head->first_tag;
2048 
2049   cur_tag_head->first_tag = tag_ptr;
2050   hash_ptr->tag_ptr	  = tag_ptr;
2051 
2052   return tag_ptr;
2053 }
2054 
2055 /* Add an unknown {struct, union, enum} tag.  */
2056 
2057 static void
2058 add_unknown_tag (tag_t *ptag /* pointer to tag information */)
2059 {
2060   shash_t *hash_ptr	= ptag->hash_ptr;
2061   char *name		= hash_ptr->string;
2062   localsym_t *sym;
2063   forward_t **pf;
2064 
2065 #ifdef ECOFF_DEBUG
2066   if (debug > 1)
2067     {
2068       char *agg_type = "{unknown aggregate type}";
2069       switch (ptag->basic_type)
2070 	{
2071 	case bt_Struct:	agg_type = "struct";	break;
2072 	case bt_Union:	agg_type = "union";	break;
2073 	case bt_Enum:	agg_type = "enum";	break;
2074 	default:				break;
2075 	}
2076 
2077       fprintf (stderr, "unknown %s %.*s found\n", agg_type,
2078 	       hash_ptr->len, name_start);
2079     }
2080 #endif
2081 
2082   sym = add_ecoff_symbol (name,
2083 			  st_Block,
2084 			  sc_Info,
2085 			  (symbolS *) NULL,
2086 			  (bfd_vma) 0,
2087 			  (symint_t) 0,
2088 			  (symint_t) 0);
2089 
2090   (void) add_ecoff_symbol (name,
2091 			   st_End,
2092 			   sc_Info,
2093 			   (symbolS *) NULL,
2094 			   (bfd_vma) 0,
2095 			   (symint_t) 0,
2096 			   (symint_t) 0);
2097 
2098   for (pf = &sym->forward_ref; *pf != (forward_t *) NULL; pf = &(*pf)->next)
2099     ;
2100   *pf = ptag->forward_ref;
2101 }
2102 
2103 /* Add a procedure to the current file's list of procedures, and record
2104    this is the current procedure.  */
2105 
2106 static void
2107 add_procedure (char *func /* func name */)
2108 {
2109   register varray_t *vp;
2110   register proc_t *new_proc_ptr;
2111   symbolS *sym;
2112 
2113 #ifdef ECOFF_DEBUG
2114   if (debug)
2115     fputc ('\n', stderr);
2116 #endif
2117 
2118   if (cur_file_ptr == (efdr_t *) NULL)
2119     as_fatal (_("no current file pointer"));
2120 
2121   vp = &cur_file_ptr->procs;
2122 
2123   if (vp->objects_last_page == vp->objects_per_page)
2124     add_varray_page (vp);
2125 
2126   cur_proc_ptr = new_proc_ptr = &vp->last->datum->proc[vp->objects_last_page++];
2127 
2128   if (first_proc_ptr == (proc_t *) NULL)
2129     first_proc_ptr = new_proc_ptr;
2130 
2131   vp->num_allocated++;
2132 
2133   new_proc_ptr->pdr.isym = -1;
2134   new_proc_ptr->pdr.iline = -1;
2135   new_proc_ptr->pdr.lnLow = -1;
2136   new_proc_ptr->pdr.lnHigh = -1;
2137 
2138   /* Set the BSF_FUNCTION flag for the symbol.  */
2139   sym = symbol_find_or_make (func);
2140   symbol_get_bfdsym (sym)->flags |= BSF_FUNCTION;
2141 
2142   /* Push the start of the function.  */
2143   new_proc_ptr->sym = add_ecoff_symbol ((const char *) NULL, st_Proc, sc_Text,
2144 					sym, (bfd_vma) 0, (symint_t) 0,
2145 					(symint_t) 0);
2146 
2147   ++proc_cnt;
2148 
2149   /* Fill in the linenos preceding the .ent, if any.  */
2150   if (noproc_lineno != (lineno_list_t *) NULL)
2151     {
2152       lineno_list_t *l;
2153 
2154       for (l = noproc_lineno; l != (lineno_list_t *) NULL; l = l->next)
2155 	l->proc = new_proc_ptr;
2156       *last_lineno_ptr = noproc_lineno;
2157       while (*last_lineno_ptr != NULL)
2158 	{
2159 	  last_lineno = *last_lineno_ptr;
2160 	  last_lineno_ptr = &last_lineno->next;
2161 	}
2162       noproc_lineno = (lineno_list_t *) NULL;
2163     }
2164 }
2165 
2166 symbolS *
2167 ecoff_get_cur_proc_sym (void)
2168 {
2169   return (cur_proc_ptr ? cur_proc_ptr->sym->as_sym : NULL);
2170 }
2171 
2172 /* Add a new filename, and set up all of the file relative
2173    virtual arrays (strings, symbols, aux syms, etc.).  Record
2174    where the current file structure lives.  */
2175 
2176 static void
2177 add_file (const char *file_name, int indx ATTRIBUTE_UNUSED, int fake)
2178 {
2179   register int first_ch;
2180   register efdr_t *fil_ptr;
2181 
2182 #ifdef ECOFF_DEBUG
2183   if (debug)
2184     fprintf (stderr, "\tfile\t%.*s\n", len, file_start);
2185 #endif
2186 
2187   /* If the file name is NULL, then no .file symbol appeared, and we
2188      want to use the actual file name.  */
2189   if (file_name == (const char *) NULL)
2190     {
2191       char *file;
2192 
2193       if (first_file != (efdr_t *) NULL)
2194 	as_fatal (_("fake .file after real one"));
2195       as_where (&file, (unsigned int *) NULL);
2196       file_name = (const char *) file;
2197 
2198       /* Automatically generate ECOFF debugging information, since I
2199          think that's what other ECOFF assemblers do.  We don't do
2200          this if we see a .file directive with a string, since that
2201          implies that some sort of debugging information is being
2202          provided.  */
2203       if (! symbol_table_frozen && debug_type == DEBUG_UNSPECIFIED)
2204 	debug_type = DEBUG_ECOFF;
2205     }
2206   else if (debug_type == DEBUG_UNSPECIFIED)
2207     debug_type = DEBUG_NONE;
2208 
2209 #ifndef NO_LISTING
2210   if (listing)
2211     listing_source_file (file_name);
2212 #endif
2213 
2214   current_stabs_filename = file_name;
2215 
2216   /* If we're creating stabs, then we don't actually make a new FDR.
2217      Instead, we just create a stabs symbol.  */
2218   if (stabs_seen)
2219     {
2220       (void) add_ecoff_symbol (file_name, st_Nil, sc_Nil,
2221 			       symbol_new ("L0\001", now_seg,
2222 					   (valueT) frag_now_fix (),
2223 					   frag_now),
2224 			       (bfd_vma) 0, 0, ECOFF_MARK_STAB (N_SOL));
2225       return;
2226     }
2227 
2228   first_ch = *file_name;
2229 
2230   /* FIXME: We can't safely merge files which have line number
2231      information (fMerge will be zero in this case).  Otherwise, we
2232      get incorrect line number debugging info.  See for instance
2233      ecoff_build_lineno, which will end up setting all file->fdr.*
2234      fields multiple times, resulting in incorrect debug info.  In
2235      order to make this work right, all line number and symbol info
2236      for the same source file has to be adjacent in the object file,
2237      so that a single file descriptor can be used to point to them.
2238      This would require maintaining file specific lists of line
2239      numbers and symbols for each file, so that they can be merged
2240      together (or output together) when two .file pseudo-ops are
2241      merged into one file descriptor.  */
2242 
2243   /* See if the file has already been created.  */
2244   for (fil_ptr = first_file;
2245        fil_ptr != (efdr_t *) NULL;
2246        fil_ptr = fil_ptr->next_file)
2247     {
2248       if (first_ch == fil_ptr->name[0]
2249 	  && strcmp (file_name, fil_ptr->name) == 0
2250 	  && fil_ptr->fdr.fMerge)
2251 	{
2252 	  cur_file_ptr = fil_ptr;
2253 	  if (! fake)
2254 	    cur_file_ptr->fake = 0;
2255 	  break;
2256 	}
2257     }
2258 
2259   /* If this is a new file, create it.  */
2260   if (fil_ptr == (efdr_t *) NULL)
2261     {
2262       if (file_desc.objects_last_page == file_desc.objects_per_page)
2263 	add_varray_page (&file_desc);
2264 
2265       fil_ptr = cur_file_ptr =
2266 	&file_desc.last->datum->file[file_desc.objects_last_page++];
2267       *fil_ptr = init_file;
2268 
2269       fil_ptr->file_index = current_file_idx++;
2270       ++file_desc.num_allocated;
2271 
2272       fil_ptr->fake = fake;
2273 
2274       /* Allocate the string hash table.  */
2275       fil_ptr->str_hash = hash_new ();
2276 
2277       /* Make sure 0 byte in string table is null  */
2278       add_string (&fil_ptr->strings,
2279 		  fil_ptr->str_hash,
2280 		  "",
2281 		  (shash_t **)0);
2282 
2283       if (strlen (file_name) > PAGE_USIZE - 2)
2284 	as_fatal (_("filename goes over one page boundary"));
2285 
2286       /* Push the start of the filename. We assume that the filename
2287          will be stored at string offset 1.  */
2288       (void) add_ecoff_symbol (file_name, st_File, sc_Text,
2289 			       (symbolS *) NULL, (bfd_vma) 0,
2290 			       (symint_t) 0, (symint_t) 0);
2291       fil_ptr->fdr.rss = 1;
2292       fil_ptr->name = &fil_ptr->strings.last->datum->byte[1];
2293 
2294       /* Update the linked list of file descriptors.  */
2295       *last_file_ptr = fil_ptr;
2296       last_file_ptr = &fil_ptr->next_file;
2297 
2298       /* Add void & int types to the file (void should be first to catch
2299          errant 0's within the index fields).  */
2300       fil_ptr->void_type = add_aux_sym_tir (&void_type_info,
2301 					    hash_yes,
2302 					    &cur_file_ptr->thash_head[0]);
2303 
2304       fil_ptr->int_type = add_aux_sym_tir (&int_type_info,
2305 					   hash_yes,
2306 					   &cur_file_ptr->thash_head[0]);
2307     }
2308 }
2309 
2310 /* This function is called when the assembler notices a preprocessor
2311    directive switching to a new file.  This will not happen in
2312    compiler output, only in hand coded assembler.  */
2313 
2314 void
2315 ecoff_new_file (const char *name)
2316 {
2317   if (cur_file_ptr != NULL && strcmp (cur_file_ptr->name, name) == 0)
2318     return;
2319   add_file (name, 0, 0);
2320 
2321   /* This is a hand coded assembler file, so automatically turn on
2322      debugging information.  */
2323   if (debug_type == DEBUG_UNSPECIFIED)
2324     debug_type = DEBUG_ECOFF;
2325 }
2326 
2327 #ifdef ECOFF_DEBUG
2328 
2329 /* Convert storage class to string.  */
2330 
2331 static char *
2332 sc_to_string (storage_class)
2333      sc_t storage_class;
2334 {
2335   switch (storage_class)
2336     {
2337     case sc_Nil:	 return "Nil,";
2338     case sc_Text:	 return "Text,";
2339     case sc_Data:	 return "Data,";
2340     case sc_Bss:	 return "Bss,";
2341     case sc_Register:	 return "Register,";
2342     case sc_Abs:	 return "Abs,";
2343     case sc_Undefined:	 return "Undefined,";
2344     case sc_CdbLocal:	 return "CdbLocal,";
2345     case sc_Bits:	 return "Bits,";
2346     case sc_CdbSystem:	 return "CdbSystem,";
2347     case sc_RegImage:	 return "RegImage,";
2348     case sc_Info:	 return "Info,";
2349     case sc_UserStruct:	 return "UserStruct,";
2350     case sc_SData:	 return "SData,";
2351     case sc_SBss:	 return "SBss,";
2352     case sc_RData:	 return "RData,";
2353     case sc_Var:	 return "Var,";
2354     case sc_Common:	 return "Common,";
2355     case sc_SCommon:	 return "SCommon,";
2356     case sc_VarRegister: return "VarRegister,";
2357     case sc_Variant:	 return "Variant,";
2358     case sc_SUndefined:	 return "SUndefined,";
2359     case sc_Init:	 return "Init,";
2360     case sc_Max:	 return "Max,";
2361     }
2362 
2363   return "???,";
2364 }
2365 
2366 #endif /* DEBUG */
2367 
2368 #ifdef ECOFF_DEBUG
2369 
2370 /* Convert symbol type to string.  */
2371 
2372 static char *
2373 st_to_string (symbol_type)
2374      st_t symbol_type;
2375 {
2376   switch (symbol_type)
2377     {
2378     case st_Nil:	return "Nil,";
2379     case st_Global:	return "Global,";
2380     case st_Static:	return "Static,";
2381     case st_Param:	return "Param,";
2382     case st_Local:	return "Local,";
2383     case st_Label:	return "Label,";
2384     case st_Proc:	return "Proc,";
2385     case st_Block:	return "Block,";
2386     case st_End:	return "End,";
2387     case st_Member:	return "Member,";
2388     case st_Typedef:	return "Typedef,";
2389     case st_File:	return "File,";
2390     case st_RegReloc:	return "RegReloc,";
2391     case st_Forward:	return "Forward,";
2392     case st_StaticProc:	return "StaticProc,";
2393     case st_Constant:	return "Constant,";
2394     case st_Str:	return "String,";
2395     case st_Number:	return "Number,";
2396     case st_Expr:	return "Expr,";
2397     case st_Type:	return "Type,";
2398     case st_Max:	return "Max,";
2399     }
2400 
2401   return "???,";
2402 }
2403 
2404 #endif /* DEBUG */
2405 
2406 /* Parse .begin directives which have a label as the first argument
2407    which gives the location of the start of the block.  */
2408 
2409 void
2410 ecoff_directive_begin (int ignore ATTRIBUTE_UNUSED)
2411 {
2412   char *name;
2413   char name_end;
2414 
2415   if (cur_file_ptr == (efdr_t *) NULL)
2416     {
2417       as_warn (_(".begin directive without a preceding .file directive"));
2418       demand_empty_rest_of_line ();
2419       return;
2420     }
2421 
2422   if (cur_proc_ptr == (proc_t *) NULL)
2423     {
2424       as_warn (_(".begin directive without a preceding .ent directive"));
2425       demand_empty_rest_of_line ();
2426       return;
2427     }
2428 
2429   name = input_line_pointer;
2430   name_end = get_symbol_end ();
2431 
2432   (void) add_ecoff_symbol ((const char *) NULL, st_Block, sc_Text,
2433 			   symbol_find_or_make (name),
2434 			   (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
2435 
2436   *input_line_pointer = name_end;
2437 
2438   /* The line number follows, but we don't use it.  */
2439   (void) get_absolute_expression ();
2440   demand_empty_rest_of_line ();
2441 }
2442 
2443 /* Parse .bend directives which have a label as the first argument
2444    which gives the location of the end of the block.  */
2445 
2446 void
2447 ecoff_directive_bend (int ignore ATTRIBUTE_UNUSED)
2448 {
2449   char *name;
2450   char name_end;
2451   symbolS *endsym;
2452 
2453   if (cur_file_ptr == (efdr_t *) NULL)
2454     {
2455       as_warn (_(".bend directive without a preceding .file directive"));
2456       demand_empty_rest_of_line ();
2457       return;
2458     }
2459 
2460   if (cur_proc_ptr == (proc_t *) NULL)
2461     {
2462       as_warn (_(".bend directive without a preceding .ent directive"));
2463       demand_empty_rest_of_line ();
2464       return;
2465     }
2466 
2467   name = input_line_pointer;
2468   name_end = get_symbol_end ();
2469 
2470   /* The value is the distance between the .bend directive and the
2471      corresponding symbol.  We fill in the offset when we write out
2472      the symbol.  */
2473   endsym = symbol_find (name);
2474   if (endsym == (symbolS *) NULL)
2475     as_warn (_(".bend directive names unknown symbol"));
2476   else
2477     (void) add_ecoff_symbol ((const char *) NULL, st_End, sc_Text, endsym,
2478 			     (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
2479 
2480   *input_line_pointer = name_end;
2481 
2482   /* The line number follows, but we don't use it.  */
2483   (void) get_absolute_expression ();
2484   demand_empty_rest_of_line ();
2485 }
2486 
2487 /* COFF debugging information is provided as a series of directives
2488    (.def, .scl, etc.).  We build up information as we read the
2489    directives in the following static variables, and file it away when
2490    we reach the .endef directive.  */
2491 static char *coff_sym_name;
2492 static type_info_t coff_type;
2493 static sc_t coff_storage_class;
2494 static st_t coff_symbol_typ;
2495 static int coff_is_function;
2496 static char *coff_tag;
2497 static valueT coff_value;
2498 static symbolS *coff_sym_value;
2499 static bfd_vma coff_sym_addend;
2500 static int coff_inside_enumeration;
2501 
2502 /* Handle a .def directive: start defining a symbol.  */
2503 
2504 void
2505 ecoff_directive_def (int ignore ATTRIBUTE_UNUSED)
2506 {
2507   char *name;
2508   char name_end;
2509 
2510   ecoff_debugging_seen = 1;
2511 
2512   SKIP_WHITESPACE ();
2513 
2514   name = input_line_pointer;
2515   name_end = get_symbol_end ();
2516 
2517   if (coff_sym_name != (char *) NULL)
2518     as_warn (_(".def pseudo-op used inside of .def/.endef; ignored"));
2519   else if (*name == '\0')
2520     as_warn (_("empty symbol name in .def; ignored"));
2521   else
2522     {
2523       if (coff_sym_name != (char *) NULL)
2524 	free (coff_sym_name);
2525       if (coff_tag != (char *) NULL)
2526 	free (coff_tag);
2527 
2528       coff_sym_name = xstrdup (name);
2529       coff_type = type_info_init;
2530       coff_storage_class = sc_Nil;
2531       coff_symbol_typ = st_Nil;
2532       coff_is_function = 0;
2533       coff_tag = (char *) NULL;
2534       coff_value = 0;
2535       coff_sym_value = (symbolS *) NULL;
2536       coff_sym_addend = 0;
2537     }
2538 
2539   *input_line_pointer = name_end;
2540 
2541   demand_empty_rest_of_line ();
2542 }
2543 
2544 /* Handle a .dim directive, used to give dimensions for an array.  The
2545    arguments are comma separated numbers.  mips-tfile assumes that
2546    there will not be more than 6 dimensions, and gdb won't read any
2547    more than that anyhow, so I will also make that assumption.  */
2548 
2549 void
2550 ecoff_directive_dim (int ignore ATTRIBUTE_UNUSED)
2551 {
2552   int dimens[N_TQ];
2553   int i;
2554 
2555   if (coff_sym_name == (char *) NULL)
2556     {
2557       as_warn (_(".dim pseudo-op used outside of .def/.endef; ignored"));
2558       demand_empty_rest_of_line ();
2559       return;
2560     }
2561 
2562   for (i = 0; i < N_TQ; i++)
2563     {
2564       SKIP_WHITESPACE ();
2565       dimens[i] = get_absolute_expression ();
2566       if (*input_line_pointer == ',')
2567 	++input_line_pointer;
2568       else
2569 	{
2570 	  if (*input_line_pointer != '\n'
2571 	      && *input_line_pointer != ';')
2572 	    as_warn (_("badly formed .dim directive"));
2573 	  break;
2574 	}
2575     }
2576 
2577   if (i == N_TQ)
2578     --i;
2579 
2580   /* The dimensions are stored away in reverse order.  */
2581   for (; i >= 0; i--)
2582     {
2583       if (coff_type.num_dims >= N_TQ)
2584 	{
2585 	  as_warn (_("too many .dim entries"));
2586 	  break;
2587 	}
2588       coff_type.dimensions[coff_type.num_dims] = dimens[i];
2589       ++coff_type.num_dims;
2590     }
2591 
2592   demand_empty_rest_of_line ();
2593 }
2594 
2595 /* Handle a .scl directive, which sets the COFF storage class of the
2596    symbol.  */
2597 
2598 void
2599 ecoff_directive_scl (int ignore ATTRIBUTE_UNUSED)
2600 {
2601   long val;
2602 
2603   if (coff_sym_name == (char *) NULL)
2604     {
2605       as_warn (_(".scl pseudo-op used outside of .def/.endef; ignored"));
2606       demand_empty_rest_of_line ();
2607       return;
2608     }
2609 
2610   val = get_absolute_expression ();
2611 
2612   coff_symbol_typ = map_coff_sym_type[val];
2613   coff_storage_class = map_coff_storage[val];
2614 
2615   demand_empty_rest_of_line ();
2616 }
2617 
2618 /* Handle a .size directive.  For some reason mips-tfile.c thinks that
2619    .size can have multiple arguments.  We humor it, although gcc will
2620    never generate more than one argument.  */
2621 
2622 void
2623 ecoff_directive_size (int ignore ATTRIBUTE_UNUSED)
2624 {
2625   int sizes[N_TQ];
2626   int i;
2627 
2628   if (coff_sym_name == (char *) NULL)
2629     {
2630       as_warn (_(".size pseudo-op used outside of .def/.endef; ignored"));
2631       demand_empty_rest_of_line ();
2632       return;
2633     }
2634 
2635   for (i = 0; i < N_TQ; i++)
2636     {
2637       SKIP_WHITESPACE ();
2638       sizes[i] = get_absolute_expression ();
2639       if (*input_line_pointer == ',')
2640 	++input_line_pointer;
2641       else
2642 	{
2643 	  if (*input_line_pointer != '\n'
2644 	      && *input_line_pointer != ';')
2645 	    as_warn (_("badly formed .size directive"));
2646 	  break;
2647 	}
2648     }
2649 
2650   if (i == N_TQ)
2651     --i;
2652 
2653   /* The sizes are stored away in reverse order.  */
2654   for (; i >= 0; i--)
2655     {
2656       if (coff_type.num_sizes >= N_TQ)
2657 	{
2658 	  as_warn (_("too many .size entries"));
2659 	  break;
2660 	}
2661       coff_type.sizes[coff_type.num_sizes] = sizes[i];
2662       ++coff_type.num_sizes;
2663     }
2664 
2665   demand_empty_rest_of_line ();
2666 }
2667 
2668 /* Handle the .type directive, which gives the COFF type of the
2669    symbol.  */
2670 
2671 void
2672 ecoff_directive_type (int ignore ATTRIBUTE_UNUSED)
2673 {
2674   long val;
2675   tq_t *tq_ptr;
2676   tq_t *tq_shft;
2677 
2678   if (coff_sym_name == (char *) NULL)
2679     {
2680       as_warn (_(".type pseudo-op used outside of .def/.endef; ignored"));
2681       demand_empty_rest_of_line ();
2682       return;
2683     }
2684 
2685   val = get_absolute_expression ();
2686 
2687   coff_type.orig_type = BTYPE (val);
2688   coff_type.basic_type = map_coff_types[coff_type.orig_type];
2689 
2690   tq_ptr = &coff_type.type_qualifiers[N_TQ];
2691   while (val & ~N_BTMASK)
2692     {
2693       if (tq_ptr == &coff_type.type_qualifiers[0])
2694 	{
2695 	  /* FIXME: We could handle this by setting the continued bit.
2696 	     There would still be a limit: the .type argument can not
2697 	     be infinite.  */
2698 	  as_warn (_("the type of %s is too complex; it will be simplified"),
2699 		   coff_sym_name);
2700 	  break;
2701 	}
2702       if (ISPTR (val))
2703 	*--tq_ptr = tq_Ptr;
2704       else if (ISFCN (val))
2705 	*--tq_ptr = tq_Proc;
2706       else if (ISARY (val))
2707 	*--tq_ptr = tq_Array;
2708       else
2709 	as_fatal (_("Unrecognized .type argument"));
2710 
2711       val = DECREF (val);
2712     }
2713 
2714   tq_shft = &coff_type.type_qualifiers[0];
2715   while (tq_ptr != &coff_type.type_qualifiers[N_TQ])
2716     *tq_shft++ = *tq_ptr++;
2717 
2718   if (tq_shft != &coff_type.type_qualifiers[0] && tq_shft[-1] == tq_Proc)
2719     {
2720       /* If this is a function, ignore it, so that we don't get two
2721          entries (one from the .ent, and one for the .def that
2722          precedes it).  Save the type information so that the end
2723          block can properly add it after the begin block index.  For
2724          MIPS knows what reason, we must strip off the function type
2725          at this point.  */
2726       coff_is_function = 1;
2727       tq_shft[-1] = tq_Nil;
2728     }
2729 
2730   while (tq_shft != &coff_type.type_qualifiers[N_TQ])
2731     *tq_shft++ = tq_Nil;
2732 
2733   demand_empty_rest_of_line ();
2734 }
2735 
2736 /* Handle the .tag directive, which gives the name of a structure,
2737    union or enum.  */
2738 
2739 void
2740 ecoff_directive_tag (int ignore ATTRIBUTE_UNUSED)
2741 {
2742   char *name;
2743   char name_end;
2744 
2745   if (coff_sym_name == (char *) NULL)
2746     {
2747       as_warn (_(".tag pseudo-op used outside of .def/.endef; ignored"));
2748       demand_empty_rest_of_line ();
2749       return;
2750     }
2751 
2752   name = input_line_pointer;
2753   name_end = get_symbol_end ();
2754 
2755   coff_tag = xstrdup (name);
2756 
2757   *input_line_pointer = name_end;
2758 
2759   demand_empty_rest_of_line ();
2760 }
2761 
2762 /* Handle the .val directive, which gives the value of the symbol.  It
2763    may be the name of a static or global symbol.  */
2764 
2765 void
2766 ecoff_directive_val (int ignore ATTRIBUTE_UNUSED)
2767 {
2768   expressionS exp;
2769 
2770   if (coff_sym_name == (char *) NULL)
2771     {
2772       as_warn (_(".val pseudo-op used outside of .def/.endef; ignored"));
2773       demand_empty_rest_of_line ();
2774       return;
2775     }
2776 
2777   expression (&exp);
2778   if (exp.X_op != O_constant && exp.X_op != O_symbol)
2779     {
2780       as_bad (_(".val expression is too copmlex"));
2781       demand_empty_rest_of_line ();
2782       return;
2783     }
2784 
2785   if (exp.X_op == O_constant)
2786     coff_value = exp.X_add_number;
2787   else
2788     {
2789       coff_sym_value = exp.X_add_symbol;
2790       coff_sym_addend = exp.X_add_number;
2791     }
2792 
2793   demand_empty_rest_of_line ();
2794 }
2795 
2796 /* Handle the .endef directive, which terminates processing of COFF
2797    debugging information for a symbol.  */
2798 
2799 void
2800 ecoff_directive_endef (int ignore ATTRIBUTE_UNUSED)
2801 {
2802   char *name;
2803   symint_t indx;
2804   localsym_t *sym;
2805 
2806   demand_empty_rest_of_line ();
2807 
2808   if (coff_sym_name == (char *) NULL)
2809     {
2810       as_warn (_(".endef pseudo-op used before .def; ignored"));
2811       return;
2812     }
2813 
2814   name = coff_sym_name;
2815   coff_sym_name = (char *) NULL;
2816 
2817   /* If the symbol is a static or external, we have already gotten the
2818      appropriate type and class, so make sure we don't override those
2819      values.  This is needed because there are some type and classes
2820      that are not in COFF, such as short data, etc.  */
2821   if (coff_sym_value != (symbolS *) NULL)
2822     {
2823       coff_symbol_typ = st_Nil;
2824       coff_storage_class = sc_Nil;
2825     }
2826 
2827   coff_type.extra_sizes = coff_tag != (char *) NULL;
2828   if (coff_type.num_dims > 0)
2829     {
2830       int diff = coff_type.num_dims - coff_type.num_sizes;
2831       int i = coff_type.num_dims - 1;
2832       int j;
2833 
2834       if (coff_type.num_sizes != 1 || diff < 0)
2835 	{
2836 	  as_warn (_("bad COFF debugging information"));
2837 	  return;
2838 	}
2839 
2840       /* If this is an array, make sure the same number of dimensions
2841          and sizes were passed, creating extra sizes for multiply
2842          dimensioned arrays if not passed.  */
2843       coff_type.extra_sizes = 0;
2844       if (diff)
2845 	{
2846 	  j = (sizeof (coff_type.sizes) / sizeof (coff_type.sizes[0])) - 1;
2847 	  while (j >= 0)
2848 	    {
2849 	      coff_type.sizes[j] = (((j - diff) >= 0)
2850 				    ? coff_type.sizes[j - diff]
2851 				    : 0);
2852 	      j--;
2853 	    }
2854 
2855 	  coff_type.num_sizes = i + 1;
2856 	  for (i--; i >= 0; i--)
2857 	    coff_type.sizes[i] = (coff_type.dimensions[i + 1] == 0
2858 				  ? 0
2859 				  : (coff_type.sizes[i + 1]
2860 				     / coff_type.dimensions[i + 1]));
2861 	}
2862     }
2863   else if (coff_symbol_typ == st_Member
2864 	   && coff_type.num_sizes - coff_type.extra_sizes == 1)
2865     {
2866       /* Is this a bitfield?  This is indicated by a structure member
2867          having a size field that isn't an array.  */
2868       coff_type.bitfield = 1;
2869     }
2870 
2871   /* Except for enumeration members & begin/ending of scopes, put the
2872      type word in the aux. symbol table.  */
2873   if (coff_symbol_typ == st_Block || coff_symbol_typ == st_End)
2874     indx = 0;
2875   else if (coff_inside_enumeration)
2876     indx = cur_file_ptr->void_type;
2877   else
2878     {
2879       if (coff_type.basic_type == bt_Struct
2880 	  || coff_type.basic_type == bt_Union
2881 	  || coff_type.basic_type == bt_Enum)
2882 	{
2883 	  if (coff_tag == (char *) NULL)
2884 	    {
2885 	      as_warn (_("no tag specified for %s"), name);
2886 	      return;
2887 	    }
2888 
2889 	  coff_type.tag_ptr = get_tag (coff_tag, (localsym_t *) NULL,
2890 				       coff_type.basic_type);
2891 	}
2892 
2893       if (coff_is_function)
2894 	{
2895 	  last_func_type_info = coff_type;
2896 	  last_func_sym_value = coff_sym_value;
2897 	  return;
2898 	}
2899 
2900       indx = add_aux_sym_tir (&coff_type,
2901 			      hash_yes,
2902 			      &cur_file_ptr->thash_head[0]);
2903     }
2904 
2905   /* Do any last minute adjustments that are necessary.  */
2906   switch (coff_symbol_typ)
2907     {
2908     default:
2909       break;
2910 
2911       /* For the beginning of structs, unions, and enumerations, the
2912          size info needs to be passed in the value field.  */
2913     case st_Block:
2914       if (coff_type.num_sizes - coff_type.num_dims - coff_type.extra_sizes
2915 	  != 1)
2916 	{
2917 	  as_warn (_("bad COFF debugging information"));
2918 	  return;
2919 	}
2920       else
2921 	coff_value = coff_type.sizes[0];
2922 
2923       coff_inside_enumeration = (coff_type.orig_type == T_ENUM);
2924       break;
2925 
2926       /* For the end of structs, unions, and enumerations, omit the
2927          name which is always ".eos".  This needs to be done last, so
2928          that any error reporting above gives the correct name.  */
2929     case st_End:
2930       free (name);
2931       name = (char *) NULL;
2932       coff_value = 0;
2933       coff_inside_enumeration = 0;
2934       break;
2935 
2936       /* Members of structures and unions that aren't bitfields, need
2937          to adjust the value from a byte offset to a bit offset.
2938          Members of enumerations do not have the value adjusted, and
2939          can be distinguished by indx == indexNil.  For enumerations,
2940          update the maximum enumeration value.  */
2941     case st_Member:
2942       if (! coff_type.bitfield && ! coff_inside_enumeration)
2943 	coff_value *= 8;
2944 
2945       break;
2946     }
2947 
2948   /* Add the symbol.  */
2949   sym = add_ecoff_symbol (name,
2950 			  coff_symbol_typ,
2951 			  coff_storage_class,
2952 			  coff_sym_value,
2953 			  coff_sym_addend,
2954 			  (symint_t) coff_value,
2955 			  indx);
2956 
2957   /* deal with struct, union, and enum tags.  */
2958   if (coff_symbol_typ == st_Block)
2959     {
2960       /* Create or update the tag information.  */
2961       tag_t *tag_ptr = get_tag (name,
2962 				sym,
2963 				coff_type.basic_type);
2964       forward_t **pf;
2965 
2966       /* Remember any forward references.  */
2967       for (pf = &sym->forward_ref;
2968 	   *pf != (forward_t *) NULL;
2969 	   pf = &(*pf)->next)
2970 	;
2971       *pf = tag_ptr->forward_ref;
2972       tag_ptr->forward_ref = (forward_t *) NULL;
2973     }
2974 }
2975 
2976 /* Parse .end directives.  */
2977 
2978 void
2979 ecoff_directive_end (int ignore ATTRIBUTE_UNUSED)
2980 {
2981   char *name;
2982   char name_end;
2983   symbolS *ent;
2984 
2985   if (cur_file_ptr == (efdr_t *) NULL)
2986     {
2987       as_warn (_(".end directive without a preceding .file directive"));
2988       demand_empty_rest_of_line ();
2989       return;
2990     }
2991 
2992   if (cur_proc_ptr == (proc_t *) NULL)
2993     {
2994       as_warn (_(".end directive without a preceding .ent directive"));
2995       demand_empty_rest_of_line ();
2996       return;
2997     }
2998 
2999   name = input_line_pointer;
3000   name_end = get_symbol_end ();
3001 
3002   if (name == input_line_pointer)
3003     {
3004       as_warn (_(".end directive has no name"));
3005       *input_line_pointer = name_end;
3006       demand_empty_rest_of_line ();
3007       return;
3008     }
3009 
3010   /* The value is the distance between the .end directive and the
3011      corresponding symbol.  We create a fake symbol to hold the
3012      current location, and put in the offset when we write out the
3013      symbol.  */
3014   ent = symbol_find (name);
3015   if (ent == (symbolS *) NULL)
3016     as_warn (_(".end directive names unknown symbol"));
3017   else
3018     (void) add_ecoff_symbol ((const char *) NULL, st_End, sc_Text,
3019 			     symbol_new ("L0\001", now_seg,
3020 					 (valueT) frag_now_fix (),
3021 					 frag_now),
3022 			     (bfd_vma) 0, (symint_t) 0, (symint_t) 0);
3023 
3024   cur_proc_ptr = (proc_t *) NULL;
3025 
3026   *input_line_pointer = name_end;
3027   demand_empty_rest_of_line ();
3028 }
3029 
3030 /* Parse .ent directives.  */
3031 
3032 void
3033 ecoff_directive_ent (int ignore ATTRIBUTE_UNUSED)
3034 {
3035   char *name;
3036   char name_end;
3037 
3038   if (cur_file_ptr == (efdr_t *) NULL)
3039     add_file ((const char *) NULL, 0, 1);
3040 
3041   if (cur_proc_ptr != (proc_t *) NULL)
3042     {
3043       as_warn (_("second .ent directive found before .end directive"));
3044       demand_empty_rest_of_line ();
3045       return;
3046     }
3047 
3048   name = input_line_pointer;
3049   name_end = get_symbol_end ();
3050 
3051   if (name == input_line_pointer)
3052     {
3053       as_warn (_(".ent directive has no name"));
3054       *input_line_pointer = name_end;
3055       demand_empty_rest_of_line ();
3056       return;
3057     }
3058 
3059   add_procedure (name);
3060 
3061   *input_line_pointer = name_end;
3062 
3063   /* The .ent directive is sometimes followed by a number.  I'm not
3064      really sure what the number means.  I don't see any way to store
3065      the information in the PDR.  The Irix 4 assembler seems to ignore
3066      the information.  */
3067   SKIP_WHITESPACE ();
3068   if (*input_line_pointer == ',')
3069     {
3070       ++input_line_pointer;
3071       SKIP_WHITESPACE ();
3072     }
3073   if (ISDIGIT (*input_line_pointer)
3074       || *input_line_pointer == '-')
3075     (void) get_absolute_expression ();
3076 
3077   demand_empty_rest_of_line ();
3078 }
3079 
3080 /* Parse .extern directives.  */
3081 
3082 void
3083 ecoff_directive_extern (int ignore ATTRIBUTE_UNUSED)
3084 {
3085   char *name;
3086   int c;
3087   symbolS *symbolp;
3088   valueT size;
3089 
3090   name = input_line_pointer;
3091   c = get_symbol_end ();
3092   symbolp = symbol_find_or_make (name);
3093   *input_line_pointer = c;
3094 
3095   S_SET_EXTERNAL (symbolp);
3096 
3097   if (*input_line_pointer == ',')
3098     ++input_line_pointer;
3099   size = get_absolute_expression ();
3100 
3101   symbol_get_obj (symbolp)->ecoff_extern_size = size;
3102 }
3103 
3104 /* Parse .file directives.  */
3105 
3106 void
3107 ecoff_directive_file (int ignore ATTRIBUTE_UNUSED)
3108 {
3109   int indx;
3110   char *name;
3111   int len;
3112 
3113   if (cur_proc_ptr != (proc_t *) NULL)
3114     {
3115       as_warn (_("no way to handle .file within .ent/.end section"));
3116       demand_empty_rest_of_line ();
3117       return;
3118     }
3119 
3120   indx = (int) get_absolute_expression ();
3121 
3122   /* FIXME: we don't have to save the name here.  */
3123   name = demand_copy_C_string (&len);
3124 
3125   add_file (name, indx - 1, 0);
3126 
3127   demand_empty_rest_of_line ();
3128 }
3129 
3130 /* Parse .fmask directives.  */
3131 
3132 void
3133 ecoff_directive_fmask (int ignore ATTRIBUTE_UNUSED)
3134 {
3135   long val;
3136 
3137   if (cur_proc_ptr == (proc_t *) NULL)
3138     {
3139       as_warn (_(".fmask outside of .ent"));
3140       demand_empty_rest_of_line ();
3141       return;
3142     }
3143 
3144   if (get_absolute_expression_and_terminator (&val) != ',')
3145     {
3146       as_warn (_("bad .fmask directive"));
3147       --input_line_pointer;
3148       demand_empty_rest_of_line ();
3149       return;
3150     }
3151 
3152   cur_proc_ptr->pdr.fregmask = val;
3153   cur_proc_ptr->pdr.fregoffset = get_absolute_expression ();
3154 
3155   demand_empty_rest_of_line ();
3156 }
3157 
3158 /* Parse .frame directives.  */
3159 
3160 void
3161 ecoff_directive_frame (int ignore ATTRIBUTE_UNUSED)
3162 {
3163   long val;
3164 
3165   if (cur_proc_ptr == (proc_t *) NULL)
3166     {
3167       as_warn (_(".frame outside of .ent"));
3168       demand_empty_rest_of_line ();
3169       return;
3170     }
3171 
3172   cur_proc_ptr->pdr.framereg = tc_get_register (1);
3173 
3174   SKIP_WHITESPACE ();
3175   if (*input_line_pointer++ != ','
3176       || get_absolute_expression_and_terminator (&val) != ',')
3177     {
3178       as_warn (_("bad .frame directive"));
3179       --input_line_pointer;
3180       demand_empty_rest_of_line ();
3181       return;
3182     }
3183 
3184   cur_proc_ptr->pdr.frameoffset = val;
3185 
3186   cur_proc_ptr->pdr.pcreg = tc_get_register (0);
3187 
3188 #if 0
3189   /* Alpha-OSF1 adds "the offset of saved $a0 from $sp", according to
3190      Sandro.  I don't yet know where this value should be stored, if
3191      anywhere.  */
3192   demand_empty_rest_of_line ();
3193 #else
3194   s_ignore (42);
3195 #endif
3196 }
3197 
3198 /* Parse .mask directives.  */
3199 
3200 void
3201 ecoff_directive_mask (int ignore ATTRIBUTE_UNUSED)
3202 {
3203   long val;
3204 
3205   if (cur_proc_ptr == (proc_t *) NULL)
3206     {
3207       as_warn (_(".mask outside of .ent"));
3208       demand_empty_rest_of_line ();
3209       return;
3210     }
3211 
3212   if (get_absolute_expression_and_terminator (&val) != ',')
3213     {
3214       as_warn (_("bad .mask directive"));
3215       --input_line_pointer;
3216       demand_empty_rest_of_line ();
3217       return;
3218     }
3219 
3220   cur_proc_ptr->pdr.regmask = val;
3221   cur_proc_ptr->pdr.regoffset = get_absolute_expression ();
3222 
3223   demand_empty_rest_of_line ();
3224 }
3225 
3226 /* Parse .loc directives.  */
3227 
3228 void
3229 ecoff_directive_loc (int ignore ATTRIBUTE_UNUSED)
3230 {
3231   lineno_list_t *list;
3232   symint_t lineno;
3233 
3234   if (cur_file_ptr == (efdr_t *) NULL)
3235     {
3236       as_warn (_(".loc before .file"));
3237       demand_empty_rest_of_line ();
3238       return;
3239     }
3240 
3241   if (now_seg != text_section)
3242     {
3243       as_warn (_(".loc outside of .text"));
3244       demand_empty_rest_of_line ();
3245       return;
3246     }
3247 
3248   /* Skip the file number.  */
3249   SKIP_WHITESPACE ();
3250   get_absolute_expression ();
3251   SKIP_WHITESPACE ();
3252 
3253   lineno = get_absolute_expression ();
3254 
3255 #ifndef NO_LISTING
3256   if (listing)
3257     listing_source_line (lineno);
3258 #endif
3259 
3260   /* If we're building stabs, then output a special label rather than
3261      ECOFF line number info.  */
3262   if (stabs_seen)
3263     {
3264       (void) add_ecoff_symbol ((char *) NULL, st_Label, sc_Text,
3265 			       symbol_new ("L0\001", now_seg,
3266 					   (valueT) frag_now_fix (),
3267 					   frag_now),
3268 			       (bfd_vma) 0, 0, lineno);
3269       return;
3270     }
3271 
3272   list = allocate_lineno_list ();
3273 
3274   list->next = (lineno_list_t *) NULL;
3275   list->file = cur_file_ptr;
3276   list->proc = cur_proc_ptr;
3277   list->frag = frag_now;
3278   list->paddr = frag_now_fix ();
3279   list->lineno = lineno;
3280 
3281   /* We don't want to merge files which have line numbers.  */
3282   cur_file_ptr->fdr.fMerge = 0;
3283 
3284   /* A .loc directive will sometimes appear before a .ent directive,
3285      which means that cur_proc_ptr will be NULL here.  Arrange to
3286      patch this up.  */
3287   if (cur_proc_ptr == (proc_t *) NULL)
3288     {
3289       lineno_list_t **pl;
3290 
3291       pl = &noproc_lineno;
3292       while (*pl != (lineno_list_t *) NULL)
3293 	pl = &(*pl)->next;
3294       *pl = list;
3295     }
3296   else
3297     {
3298       last_lineno = list;
3299       *last_lineno_ptr = list;
3300       last_lineno_ptr = &list->next;
3301     }
3302 }
3303 
3304 /* The MIPS assembler sometimes inserts nop instructions in the
3305    instruction stream.  When this happens, we must patch up the .loc
3306    information so that it points to the instruction after the nop.  */
3307 
3308 void
3309 ecoff_fix_loc (fragS *old_frag, unsigned long old_frag_offset)
3310 {
3311   if (last_lineno != NULL
3312       && last_lineno->frag == old_frag
3313       && last_lineno->paddr == old_frag_offset)
3314     {
3315       last_lineno->frag = frag_now;
3316       last_lineno->paddr = frag_now_fix ();
3317     }
3318 }
3319 
3320 /* Make sure the @stabs symbol is emitted.  */
3321 
3322 static void
3323 mark_stabs (int ignore ATTRIBUTE_UNUSED)
3324 {
3325   if (! stabs_seen)
3326     {
3327       /* Add a dummy @stabs dymbol.  */
3328       stabs_seen = 1;
3329       (void) add_ecoff_symbol (stabs_symbol, stNil, scInfo,
3330 			       (symbolS *) NULL,
3331 			       (bfd_vma) 0, (symint_t) -1,
3332 			       ECOFF_MARK_STAB (0));
3333     }
3334 }
3335 
3336 /* Parse .weakext directives.  */
3337 #ifndef TC_MIPS
3338 /* For TC_MIPS use the version in tc-mips.c.  */
3339 void
3340 ecoff_directive_weakext (int ignore ATTRIBUTE_UNUSED)
3341 {
3342   char *name;
3343   int c;
3344   symbolS *symbolP;
3345   expressionS exp;
3346 
3347   name = input_line_pointer;
3348   c = get_symbol_end ();
3349   symbolP = symbol_find_or_make (name);
3350   *input_line_pointer = c;
3351 
3352   SKIP_WHITESPACE ();
3353 
3354   if (*input_line_pointer == ',')
3355     {
3356       if (S_IS_DEFINED (symbolP))
3357 	{
3358 	  as_bad (_("symbol `%s' is already defined"),
3359 		  S_GET_NAME (symbolP));
3360 	  ignore_rest_of_line ();
3361 	  return;
3362 	}
3363 
3364       ++input_line_pointer;
3365       SKIP_WHITESPACE ();
3366       if (! is_end_of_line[(unsigned char) *input_line_pointer])
3367 	{
3368 	  expression (&exp);
3369 	  if (exp.X_op != O_symbol)
3370 	    {
3371 	      as_bad (_("bad .weakext directive"));
3372 	      ignore_rest_of_line ();
3373 	      return;
3374 	    }
3375 	  symbol_set_value_expression (symbolP, &exp);
3376 	}
3377     }
3378 
3379   S_SET_WEAK (symbolP);
3380 
3381   demand_empty_rest_of_line ();
3382 }
3383 #endif /* not TC_MIPS */
3384 
3385 /* Handle .stabs directives.  The actual parsing routine is done by a
3386    generic routine.  This routine is called via OBJ_PROCESS_STAB.
3387    When this is called, input_line_pointer will be pointing at the
3388    value field of the stab.
3389 
3390    .stabs directives have five fields:
3391 	"string"	a string, encoding the type information.
3392 	code		a numeric code, defined in <stab.h>
3393 	0		a zero
3394 	desc		a zero or line number
3395 	value		a numeric value or an address.
3396 
3397     If the value is relocatable, we transform this into:
3398 	iss		points as an index into string space
3399 	value		value from lookup of the name
3400 	st		st from lookup of the name
3401 	sc		sc from lookup of the name
3402 	index		code|CODE_MASK
3403 
3404     If the value is not relocatable, we transform this into:
3405 	iss		points as an index into string space
3406 	value		value
3407 	st		st_Nil
3408 	sc		sc_Nil
3409 	index		code|CODE_MASK
3410 
3411     .stabn directives have four fields (string is null):
3412 	code		a numeric code, defined in <stab.h>
3413 	0		a zero
3414 	desc		a zero or a line number
3415 	value		a numeric value or an address.  */
3416 
3417 void
3418 ecoff_stab (segT sec ATTRIBUTE_UNUSED,
3419 	    int what,
3420 	    const char *string,
3421 	    int type,
3422 	    int other,
3423 	    int desc)
3424 {
3425   efdr_t *save_file_ptr = cur_file_ptr;
3426   symbolS *sym;
3427   symint_t value;
3428   bfd_vma addend;
3429   st_t st;
3430   sc_t sc;
3431   symint_t indx;
3432   localsym_t *hold = NULL;
3433 
3434   ecoff_debugging_seen = 1;
3435 
3436   /* We don't handle .stabd.  */
3437   if (what != 's' && what != 'n')
3438     {
3439       as_bad (_(".stab%c is not supported"), what);
3440       return;
3441     }
3442 
3443   /* A .stabn uses a null name, not an empty string.  */
3444   if (what == 'n')
3445     string = NULL;
3446 
3447   /* We ignore the other field.  */
3448   if (other != 0)
3449     as_warn (_(".stab%c: ignoring non-zero other field"), what);
3450 
3451   /* Make sure we have a current file.  */
3452   if (cur_file_ptr == (efdr_t *) NULL)
3453     {
3454       add_file ((const char *) NULL, 0, 1);
3455       save_file_ptr = cur_file_ptr;
3456     }
3457 
3458   /* For stabs in ECOFF, the first symbol must be @stabs.  This is a
3459      signal to gdb.  */
3460   if (stabs_seen == 0)
3461     mark_stabs (0);
3462 
3463   /* Line number stabs are handled differently, since they have two
3464      values, the line number and the address of the label.  We use the
3465      index field (aka desc) to hold the line number, and the value
3466      field to hold the address.  The symbol type is st_Label, which
3467      should be different from the other stabs, so that gdb can
3468      recognize it.  */
3469   if (type == N_SLINE)
3470     {
3471       SYMR dummy_symr;
3472       char *name;
3473       char name_end;
3474 
3475 #ifndef NO_LISTING
3476       if (listing)
3477 	listing_source_line ((unsigned int) desc);
3478 #endif
3479 
3480       dummy_symr.index = desc;
3481       if (dummy_symr.index != desc)
3482 	{
3483 	  as_warn (_("line number (%d) for .stab%c directive cannot fit in index field (20 bits)"),
3484 		   desc, what);
3485 	  return;
3486 	}
3487 
3488       name = input_line_pointer;
3489       name_end = get_symbol_end ();
3490 
3491       sym = symbol_find_or_make (name);
3492       *input_line_pointer = name_end;
3493 
3494       value = 0;
3495       addend = 0;
3496       st = st_Label;
3497       sc = sc_Text;
3498       indx = desc;
3499     }
3500   else
3501     {
3502 #ifndef NO_LISTING
3503       if (listing && (type == N_SO || type == N_SOL))
3504 	listing_source_file (string);
3505 #endif
3506 
3507       if (ISDIGIT (*input_line_pointer)
3508 	  || *input_line_pointer == '-'
3509 	  || *input_line_pointer == '+')
3510 	{
3511 	  st = st_Nil;
3512 	  sc = sc_Nil;
3513 	  sym = (symbolS *) NULL;
3514 	  value = get_absolute_expression ();
3515 	  addend = 0;
3516 	}
3517       else if (! is_name_beginner ((unsigned char) *input_line_pointer))
3518 	{
3519 	  as_warn (_("illegal .stab%c directive, bad character"), what);
3520 	  return;
3521 	}
3522       else
3523 	{
3524 	  expressionS exp;
3525 
3526 	  sc = sc_Nil;
3527 	  st = st_Nil;
3528 
3529 	  expression (&exp);
3530 	  if (exp.X_op == O_constant)
3531 	    {
3532 	      sym = NULL;
3533 	      value = exp.X_add_number;
3534 	      addend = 0;
3535 	    }
3536 	  else if (exp.X_op == O_symbol)
3537 	    {
3538 	      sym = exp.X_add_symbol;
3539 	      value = 0;
3540 	      addend = exp.X_add_number;
3541 	    }
3542 	  else
3543 	    {
3544 	      sym = make_expr_symbol (&exp);
3545 	      value = 0;
3546 	      addend = 0;
3547 	    }
3548 	}
3549 
3550       indx = ECOFF_MARK_STAB (type);
3551     }
3552 
3553   /* Don't store the stabs symbol we are creating as the type of the
3554      ECOFF symbol.  We want to compute the type of the ECOFF symbol
3555      independently.  */
3556   if (sym != (symbolS *) NULL)
3557     hold = symbol_get_obj (sym)->ecoff_symbol;
3558 
3559   (void) add_ecoff_symbol (string, st, sc, sym, addend, value, indx);
3560 
3561   if (sym != (symbolS *) NULL)
3562     symbol_get_obj (sym)->ecoff_symbol = hold;
3563 
3564   /* Restore normal file type.  */
3565   cur_file_ptr = save_file_ptr;
3566 }
3567 
3568 /* Frob an ECOFF symbol.  Small common symbols go into a special
3569    .scommon section rather than bfd_com_section.  */
3570 
3571 void
3572 ecoff_frob_symbol (symbolS *sym)
3573 {
3574   if (S_IS_COMMON (sym)
3575       && S_GET_VALUE (sym) > 0
3576       && S_GET_VALUE (sym) <= bfd_get_gp_size (stdoutput))
3577     {
3578       static asection scom_section;
3579       static asymbol scom_symbol;
3580 
3581       /* We must construct a fake section similar to bfd_com_section
3582          but with the name .scommon.  */
3583       if (scom_section.name == NULL)
3584 	{
3585 	  scom_section = bfd_com_section;
3586 	  scom_section.name = ".scommon";
3587 	  scom_section.output_section = &scom_section;
3588 	  scom_section.symbol = &scom_symbol;
3589 	  scom_section.symbol_ptr_ptr = &scom_section.symbol;
3590 	  scom_symbol = *bfd_com_section.symbol;
3591 	  scom_symbol.name = ".scommon";
3592 	  scom_symbol.section = &scom_section;
3593 	}
3594       S_SET_SEGMENT (sym, &scom_section);
3595     }
3596 
3597   /* Double check weak symbols.  */
3598   if (S_IS_WEAK (sym))
3599     {
3600       if (S_IS_COMMON (sym))
3601 	as_bad (_("symbol `%s' can not be both weak and common"),
3602 		S_GET_NAME (sym));
3603     }
3604 }
3605 
3606 /* Add bytes to the symbolic information buffer.  */
3607 
3608 static char *
3609 ecoff_add_bytes (char **buf,
3610 		 char **bufend,
3611 		 char *bufptr,
3612 		 unsigned long need)
3613 {
3614   unsigned long at;
3615   unsigned long want;
3616 
3617   at = bufptr - *buf;
3618   need -= *bufend - bufptr;
3619   if (need < PAGE_SIZE)
3620     need = PAGE_SIZE;
3621   want = (*bufend - *buf) + need;
3622   *buf = xrealloc (*buf, want);
3623   *bufend = *buf + want;
3624   return *buf + at;
3625 }
3626 
3627 /* Adjust the symbolic information buffer to the alignment required
3628    for the ECOFF target debugging information.  */
3629 
3630 static unsigned long
3631 ecoff_padding_adjust (const struct ecoff_debug_swap *backend,
3632 		      char **buf,
3633 		      char **bufend,
3634 		      unsigned long offset,
3635 		      char **bufptrptr)
3636 {
3637   bfd_size_type align;
3638 
3639   align = backend->debug_align;
3640   if ((offset & (align - 1)) != 0)
3641     {
3642       unsigned long add;
3643 
3644       add = align - (offset & (align - 1));
3645       if ((unsigned long) (*bufend - (*buf + offset)) < add)
3646 	(void) ecoff_add_bytes (buf, bufend, *buf + offset, add);
3647       memset (*buf + offset, 0, add);
3648       offset += add;
3649       if (bufptrptr != (char **) NULL)
3650 	*bufptrptr = *buf + offset;
3651     }
3652 
3653   return offset;
3654 }
3655 
3656 /* Build the line number information.  */
3657 
3658 static unsigned long
3659 ecoff_build_lineno (const struct ecoff_debug_swap *backend,
3660 		    char **buf,
3661 		    char **bufend,
3662 		    unsigned long offset,
3663 		    long *linecntptr)
3664 {
3665   char *bufptr;
3666   register lineno_list_t *l;
3667   lineno_list_t *last;
3668   efdr_t *file;
3669   proc_t *proc;
3670   unsigned long c;
3671   long iline;
3672   long totcount;
3673   lineno_list_t first;
3674   lineno_list_t *local_first_lineno = first_lineno;
3675 
3676   if (linecntptr != (long *) NULL)
3677     *linecntptr = 0;
3678 
3679   bufptr = *buf + offset;
3680 
3681   file = (efdr_t *) NULL;
3682   proc = (proc_t *) NULL;
3683   last = (lineno_list_t *) NULL;
3684   c = offset;
3685   iline = 0;
3686   totcount = 0;
3687 
3688   /* For some reason the address of the first procedure is ignored
3689      when reading line numbers.  This doesn't matter if the address of
3690      the first procedure is 0, but when gcc is generating MIPS
3691      embedded PIC code, it will put strings in the .text section
3692      before the first procedure.  We cope by inserting a dummy line if
3693      the address of the first procedure is not 0.  Hopefully this
3694      won't screw things up too badly.
3695 
3696      Don't do this for ECOFF assembly source line numbers.  They work
3697      without this extra attention.  */
3698   if (debug_type != DEBUG_ECOFF
3699       && first_proc_ptr != (proc_t *) NULL
3700       && local_first_lineno != (lineno_list_t *) NULL
3701       && ((S_GET_VALUE (first_proc_ptr->sym->as_sym)
3702 	   + bfd_get_section_vma (stdoutput,
3703 				  S_GET_SEGMENT (first_proc_ptr->sym->as_sym)))
3704 	  != 0))
3705     {
3706       first.file = local_first_lineno->file;
3707       first.proc = local_first_lineno->proc;
3708       first.frag = &zero_address_frag;
3709       first.paddr = 0;
3710       first.lineno = 0;
3711 
3712       first.next = local_first_lineno;
3713       local_first_lineno = &first;
3714     }
3715 
3716   for (l = local_first_lineno; l != (lineno_list_t *) NULL; l = l->next)
3717     {
3718       long count;
3719       long delta;
3720 
3721       /* Get the offset to the memory address of the next line number
3722          (in words).  Do this first, so that we can skip ahead to the
3723          next useful line number entry.  */
3724       if (l->next == (lineno_list_t *) NULL)
3725 	{
3726 	  /* We want a count of zero, but it will be decremented
3727 	     before it is used.  */
3728 	  count = 1;
3729 	}
3730       else if (l->next->frag->fr_address + l->next->paddr
3731 	       > l->frag->fr_address + l->paddr)
3732 	{
3733 	  count = ((l->next->frag->fr_address + l->next->paddr
3734 		    - (l->frag->fr_address + l->paddr))
3735 		   >> 2);
3736 	}
3737       else
3738 	{
3739 	  /* Don't change last, so we still get the right delta.  */
3740 	  continue;
3741 	}
3742 
3743       if (l->file != file || l->proc != proc)
3744 	{
3745 	  if (l->proc != proc && proc != (proc_t *) NULL)
3746 	    proc->pdr.lnHigh = last->lineno;
3747 	  if (l->file != file && file != (efdr_t *) NULL)
3748 	    {
3749 	      file->fdr.cbLine = c - file->fdr.cbLineOffset;
3750 	      file->fdr.cline = totcount + count;
3751 	      if (linecntptr != (long *) NULL)
3752 		*linecntptr += totcount + count;
3753 	      totcount = 0;
3754 	    }
3755 
3756 	  if (l->file != file)
3757 	    {
3758 	      efdr_t *last_file = file;
3759 
3760 	      file = l->file;
3761 	      if (last_file != (efdr_t *) NULL)
3762 		file->fdr.ilineBase
3763 		  = last_file->fdr.ilineBase + last_file->fdr.cline;
3764 	      else
3765 		file->fdr.ilineBase = 0;
3766 	      file->fdr.cbLineOffset = c;
3767 	    }
3768 	  if (l->proc != proc)
3769 	    {
3770 	      proc = l->proc;
3771 	      if (proc != (proc_t *) NULL)
3772 		{
3773 		  proc->pdr.lnLow = l->lineno;
3774 		  proc->pdr.cbLineOffset = c - file->fdr.cbLineOffset;
3775 		  proc->pdr.iline = totcount;
3776 		}
3777 	    }
3778 
3779 	  last = (lineno_list_t *) NULL;
3780 	}
3781 
3782       totcount += count;
3783 
3784       /* Get the offset to this line number.  */
3785       if (last == (lineno_list_t *) NULL)
3786 	delta = 0;
3787       else
3788 	delta = l->lineno - last->lineno;
3789 
3790       /* Put in the offset to this line number.  */
3791       while (delta != 0)
3792 	{
3793 	  int setcount;
3794 
3795 	  /* 1 is added to each count read.  */
3796 	  --count;
3797 	  /* We can only adjust the word count by up to 15 words at a
3798 	     time.  */
3799 	  if (count <= 0x0f)
3800 	    {
3801 	      setcount = count;
3802 	      count = 0;
3803 	    }
3804 	  else
3805 	    {
3806 	      setcount = 0x0f;
3807 	      count -= 0x0f;
3808 	    }
3809 	  if (delta >= -7 && delta <= 7)
3810 	    {
3811 	      if (bufptr >= *bufend)
3812 		bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 1);
3813 	      *bufptr++ = setcount + (delta << 4);
3814 	      delta = 0;
3815 	      ++c;
3816 	    }
3817 	  else
3818 	    {
3819 	      int set;
3820 
3821 	      if (*bufend - bufptr < 3)
3822 		bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 3);
3823 	      *bufptr++ = setcount + (8 << 4);
3824 	      if (delta < -0x8000)
3825 		{
3826 		  set = -0x8000;
3827 		  delta += 0x8000;
3828 		}
3829 	      else if (delta > 0x7fff)
3830 		{
3831 		  set = 0x7fff;
3832 		  delta -= 0x7fff;
3833 		}
3834 	      else
3835 		{
3836 		  set = delta;
3837 		  delta = 0;
3838 		}
3839 	      *bufptr++ = set >> 8;
3840 	      *bufptr++ = set & 0xffff;
3841 	      c += 3;
3842 	    }
3843 	}
3844 
3845       /* Finish adjusting the count.  */
3846       while (count > 0)
3847 	{
3848 	  if (bufptr >= *bufend)
3849 	    bufptr = ecoff_add_bytes (buf, bufend, bufptr, (long) 1);
3850 	  /* 1 is added to each count read.  */
3851 	  --count;
3852 	  if (count > 0x0f)
3853 	    {
3854 	      *bufptr++ = 0x0f;
3855 	      count -= 0x0f;
3856 	    }
3857 	  else
3858 	    {
3859 	      *bufptr++ = count;
3860 	      count = 0;
3861 	    }
3862 	  ++c;
3863 	}
3864 
3865       ++iline;
3866       last = l;
3867     }
3868 
3869   if (proc != (proc_t *) NULL)
3870     proc->pdr.lnHigh = last->lineno;
3871   if (file != (efdr_t *) NULL)
3872     {
3873       file->fdr.cbLine = c - file->fdr.cbLineOffset;
3874       file->fdr.cline = totcount;
3875     }
3876 
3877   if (linecntptr != (long *) NULL)
3878     *linecntptr += totcount;
3879 
3880   c = ecoff_padding_adjust (backend, buf, bufend, c, &bufptr);
3881 
3882   return c;
3883 }
3884 
3885 /* Build and swap out the symbols.  */
3886 
3887 static unsigned long
3888 ecoff_build_symbols (const struct ecoff_debug_swap *backend,
3889 		     char **buf,
3890 		     char **bufend,
3891 		     unsigned long offset)
3892 {
3893   const bfd_size_type external_sym_size = backend->external_sym_size;
3894   void (* const swap_sym_out) (bfd *, const SYMR *, PTR)
3895     = backend->swap_sym_out;
3896   char *sym_out;
3897   long isym;
3898   vlinks_t *file_link;
3899 
3900   sym_out = *buf + offset;
3901 
3902   isym = 0;
3903 
3904   /* The symbols are stored by file.  */
3905   for (file_link = file_desc.first;
3906        file_link != (vlinks_t *) NULL;
3907        file_link = file_link->next)
3908     {
3909       int ifilesym;
3910       int fil_cnt;
3911       efdr_t *fil_ptr;
3912       efdr_t *fil_end;
3913 
3914       if (file_link->next == (vlinks_t *) NULL)
3915 	fil_cnt = file_desc.objects_last_page;
3916       else
3917 	fil_cnt = file_desc.objects_per_page;
3918       fil_ptr = file_link->datum->file;
3919       fil_end = fil_ptr + fil_cnt;
3920       for (; fil_ptr < fil_end; fil_ptr++)
3921 	{
3922 	  vlinks_t *sym_link;
3923 
3924 	  fil_ptr->fdr.isymBase = isym;
3925 	  ifilesym = isym;
3926 	  for (sym_link = fil_ptr->symbols.first;
3927 	       sym_link != (vlinks_t *) NULL;
3928 	       sym_link = sym_link->next)
3929 	    {
3930 	      int sym_cnt;
3931 	      localsym_t *sym_ptr;
3932 	      localsym_t *sym_end;
3933 
3934 	      if (sym_link->next == (vlinks_t *) NULL)
3935 		sym_cnt = fil_ptr->symbols.objects_last_page;
3936 	      else
3937 		sym_cnt = fil_ptr->symbols.objects_per_page;
3938 	      sym_ptr = sym_link->datum->sym;
3939 	      sym_end = sym_ptr + sym_cnt;
3940 	      for (; sym_ptr < sym_end; sym_ptr++)
3941 		{
3942 		  int local;
3943 		  symbolS *as_sym;
3944 		  forward_t *f;
3945 
3946 		  know (sym_ptr->file_ptr == fil_ptr);
3947 
3948 		  /* If there is no associated gas symbol, then this
3949 		     is a pure debugging symbol.  We have already
3950 		     added the name (if any) to fil_ptr->strings.
3951 		     Otherwise we must decide whether this is an
3952 		     external or a local symbol (actually, it may be
3953 		     both if the local provides additional debugging
3954 		     information for the external).  */
3955 		  local = 1;
3956 		  as_sym = sym_ptr->as_sym;
3957 		  if (as_sym != (symbolS *) NULL)
3958 		    {
3959 		      symint_t indx;
3960 
3961 		      /* The value of a block start symbol is the
3962 		         offset from the start of the procedure.  For
3963 		         other symbols we just use the gas value (but
3964 		         we must offset it by the vma of the section,
3965 		         just as BFD does, because BFD will not see
3966 		         this value).  */
3967 		      if (sym_ptr->ecoff_sym.asym.st == (int) st_Block
3968 			  && sym_ptr->ecoff_sym.asym.sc == (int) sc_Text)
3969 			{
3970 			  symbolS *begin_sym;
3971 
3972 			  know (sym_ptr->proc_ptr != (proc_t *) NULL);
3973 			  begin_sym = sym_ptr->proc_ptr->sym->as_sym;
3974 			  if (S_GET_SEGMENT (as_sym)
3975 			      != S_GET_SEGMENT (begin_sym))
3976 			    as_warn (_(".begin/.bend in different segments"));
3977 			  sym_ptr->ecoff_sym.asym.value =
3978 			    S_GET_VALUE (as_sym) - S_GET_VALUE (begin_sym);
3979 			}
3980 		      else
3981 			sym_ptr->ecoff_sym.asym.value =
3982 			  (S_GET_VALUE (as_sym)
3983 			   + bfd_get_section_vma (stdoutput,
3984 						  S_GET_SEGMENT (as_sym))
3985 			   + sym_ptr->addend);
3986 
3987 		      sym_ptr->ecoff_sym.weakext = S_IS_WEAK (as_sym);
3988 
3989 		      /* Set st_Proc to st_StaticProc for local
3990 			 functions.  */
3991 		      if (sym_ptr->ecoff_sym.asym.st == st_Proc
3992 			  && S_IS_DEFINED (as_sym)
3993 			  && ! S_IS_EXTERNAL (as_sym)
3994 			  && ! S_IS_WEAK (as_sym))
3995 			sym_ptr->ecoff_sym.asym.st = st_StaticProc;
3996 
3997 		      /* Get the type and storage class based on where
3998 		         the symbol actually wound up.  Traditionally,
3999 		         N_LBRAC and N_RBRAC are *not* relocated.  */
4000 		      indx = sym_ptr->ecoff_sym.asym.index;
4001 		      if (sym_ptr->ecoff_sym.asym.st == st_Nil
4002 			  && sym_ptr->ecoff_sym.asym.sc == sc_Nil
4003 			  && (! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym)
4004 			      || ((ECOFF_UNMARK_STAB (indx) != N_LBRAC)
4005 				  && (ECOFF_UNMARK_STAB (indx) != N_RBRAC))))
4006 			{
4007 			  segT seg;
4008 			  const char *segname;
4009 			  st_t st;
4010 			  sc_t sc;
4011 
4012 			  seg = S_GET_SEGMENT (as_sym);
4013 			  segname = segment_name (seg);
4014 
4015 			  if (! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym)
4016 			      && (S_IS_EXTERNAL (as_sym)
4017 				  || S_IS_WEAK (as_sym)
4018 				  || ! S_IS_DEFINED (as_sym)))
4019 			    {
4020 			      if ((symbol_get_bfdsym (as_sym)->flags
4021 				   & BSF_FUNCTION) != 0)
4022 				st = st_Proc;
4023 			      else
4024 				st = st_Global;
4025 			    }
4026 			  else if (seg == text_section)
4027 			    st = st_Label;
4028 			  else
4029 			    st = st_Static;
4030 
4031 			  if (! S_IS_DEFINED (as_sym))
4032 			    {
4033 			      valueT s;
4034 
4035 			      s = symbol_get_obj (as_sym)->ecoff_extern_size;
4036 			      if (s == 0
4037 				  || s > bfd_get_gp_size (stdoutput))
4038 				sc = sc_Undefined;
4039 			      else
4040 				{
4041 				  sc = sc_SUndefined;
4042 				  sym_ptr->ecoff_sym.asym.value = s;
4043 				}
4044 #ifdef S_SET_SIZE
4045 			      S_SET_SIZE (as_sym, s);
4046 #endif
4047 			    }
4048 			  else if (S_IS_COMMON (as_sym))
4049 			    {
4050 			      if (S_GET_VALUE (as_sym) > 0
4051 				  && (S_GET_VALUE (as_sym)
4052 				      <= bfd_get_gp_size (stdoutput)))
4053 				sc = sc_SCommon;
4054 			      else
4055 				sc = sc_Common;
4056 			    }
4057 			  else if (seg == text_section)
4058 			    sc = sc_Text;
4059 			  else if (seg == data_section)
4060 			    sc = sc_Data;
4061 			  else if (strcmp (segname, ".rdata") == 0
4062 				   || strcmp (segname, ".rodata") == 0)
4063 			    sc = sc_RData;
4064 			  else if (strcmp (segname, ".sdata") == 0)
4065 			    sc = sc_SData;
4066 			  else if (seg == bss_section)
4067 			    sc = sc_Bss;
4068 			  else if (strcmp (segname, ".sbss") == 0)
4069 			    sc = sc_SBss;
4070 			  else if (seg == &bfd_abs_section)
4071 			    sc = sc_Abs;
4072 			  else
4073 			    {
4074 			      /* This must be a user named section.
4075 			         This is not possible in ECOFF, but it
4076 			         is in ELF.  */
4077 			      sc = sc_Data;
4078 			    }
4079 
4080 			  sym_ptr->ecoff_sym.asym.st = (int) st;
4081 			  sym_ptr->ecoff_sym.asym.sc = (int) sc;
4082 			}
4083 
4084 		      /* This is just an external symbol if it is
4085 		         outside a procedure and it has a type.
4086 		         FIXME: g++ will generate symbols which have
4087 		         different names in the debugging information
4088 		         than the actual symbol.  Should we handle
4089 		         them here?  */
4090 		      if ((S_IS_EXTERNAL (as_sym)
4091 			   || S_IS_WEAK (as_sym)
4092 			   || ! S_IS_DEFINED (as_sym))
4093 			  && sym_ptr->proc_ptr == (proc_t *) NULL
4094 			  && sym_ptr->ecoff_sym.asym.st != (int) st_Nil
4095 			  && ! ECOFF_IS_STAB (&sym_ptr->ecoff_sym.asym))
4096 			local = 0;
4097 
4098 		      /* This is just an external symbol if it is a
4099 		         common symbol.  */
4100 		      if (S_IS_COMMON (as_sym))
4101 			local = 0;
4102 
4103 		      /* If an st_end symbol has an associated gas
4104 		         symbol, then it is a local label created for
4105 		         a .bend or .end directive.  Stabs line
4106 		         numbers will have \001 in the names.  */
4107 		      if (local
4108 			  && sym_ptr->ecoff_sym.asym.st != st_End
4109 			  && strchr (sym_ptr->name, '\001') == 0)
4110 			sym_ptr->ecoff_sym.asym.iss =
4111 			  add_string (&fil_ptr->strings,
4112 				      fil_ptr->str_hash,
4113 				      sym_ptr->name,
4114 				      (shash_t **) NULL);
4115 		    }
4116 
4117 		  /* We now know the index of this symbol; fill in
4118 		     locations that have been waiting for that
4119 		     information.  */
4120 		  if (sym_ptr->begin_ptr != (localsym_t *) NULL)
4121 		    {
4122 		      localsym_t *begin_ptr;
4123 		      st_t begin_type;
4124 
4125 		      know (local);
4126 		      begin_ptr = sym_ptr->begin_ptr;
4127 		      know (begin_ptr->sym_index != -1);
4128 		      sym_ptr->ecoff_sym.asym.index = begin_ptr->sym_index;
4129 		      if (sym_ptr->ecoff_sym.asym.sc != (int) sc_Info)
4130 			sym_ptr->ecoff_sym.asym.iss =
4131 			  begin_ptr->ecoff_sym.asym.iss;
4132 
4133 		      begin_type = begin_ptr->ecoff_sym.asym.st;
4134 		      if (begin_type == st_File
4135 			  || begin_type == st_Block)
4136 			{
4137 			  begin_ptr->ecoff_sym.asym.index =
4138 			    isym - ifilesym + 1;
4139 			  (*swap_sym_out) (stdoutput,
4140 					   &begin_ptr->ecoff_sym.asym,
4141 					   (*buf
4142 					    + offset
4143 					    + (begin_ptr->sym_index
4144 					       * external_sym_size)));
4145 			}
4146 		      else
4147 			{
4148 			  know (begin_ptr->index_ptr != (aux_t *) NULL);
4149 			  begin_ptr->index_ptr->data.isym =
4150 			    isym - ifilesym + 1;
4151 			}
4152 
4153 		      /* The value of the symbol marking the end of a
4154 		         procedure is the size of the procedure.  The
4155 		         value of the symbol marking the end of a
4156 		         block is the offset from the start of the
4157 		         procedure to the block.  */
4158 		      if (begin_type == st_Proc
4159 			  || begin_type == st_StaticProc)
4160 			{
4161 			  know (as_sym != (symbolS *) NULL);
4162 			  know (begin_ptr->as_sym != (symbolS *) NULL);
4163 			  if (S_GET_SEGMENT (as_sym)
4164 			      != S_GET_SEGMENT (begin_ptr->as_sym))
4165 			    as_warn (_(".begin/.bend in different segments"));
4166 			  sym_ptr->ecoff_sym.asym.value =
4167 			    (S_GET_VALUE (as_sym)
4168 			     - S_GET_VALUE (begin_ptr->as_sym));
4169 
4170 			  /* If the size is odd, this is probably a
4171 			     mips16 function; force it to be even.  */
4172 			  if ((sym_ptr->ecoff_sym.asym.value & 1) != 0)
4173 			    ++sym_ptr->ecoff_sym.asym.value;
4174 
4175 #ifdef S_SET_SIZE
4176 			  S_SET_SIZE (begin_ptr->as_sym,
4177 				      sym_ptr->ecoff_sym.asym.value);
4178 #endif
4179 			}
4180 		      else if (begin_type == st_Block
4181 			       && sym_ptr->ecoff_sym.asym.sc != (int) sc_Info)
4182 			{
4183 			  symbolS *begin_sym;
4184 
4185 			  know (as_sym != (symbolS *) NULL);
4186 			  know (sym_ptr->proc_ptr != (proc_t *) NULL);
4187 			  begin_sym = sym_ptr->proc_ptr->sym->as_sym;
4188 			  if (S_GET_SEGMENT (as_sym)
4189 			      != S_GET_SEGMENT (begin_sym))
4190 			    as_warn (_(".begin/.bend in different segments"));
4191 			  sym_ptr->ecoff_sym.asym.value =
4192 			    S_GET_VALUE (as_sym) - S_GET_VALUE (begin_sym);
4193 			}
4194 		    }
4195 
4196 		  for (f = sym_ptr->forward_ref;
4197 		       f != (forward_t *) NULL;
4198 		       f = f->next)
4199 		    {
4200 		      know (local);
4201 		      f->ifd_ptr->data.isym = fil_ptr->file_index;
4202 		      f->index_ptr->data.rndx.index = isym - ifilesym;
4203 		    }
4204 
4205 		  if (local)
4206 		    {
4207 		      if ((bfd_size_type)(*bufend - sym_out) < external_sym_size)
4208 			sym_out = ecoff_add_bytes (buf, bufend,
4209 						   sym_out,
4210 						   external_sym_size);
4211 		      (*swap_sym_out) (stdoutput, &sym_ptr->ecoff_sym.asym,
4212 				       sym_out);
4213 		      sym_out += external_sym_size;
4214 
4215 		      sym_ptr->sym_index = isym;
4216 
4217 		      if (sym_ptr->proc_ptr != (proc_t *) NULL
4218 			  && sym_ptr->proc_ptr->sym == sym_ptr)
4219 			sym_ptr->proc_ptr->pdr.isym = isym - ifilesym;
4220 
4221 		      ++isym;
4222 		    }
4223 
4224 		  /* Record the local symbol index and file number in
4225 		     case this is an external symbol.  Note that this
4226 		     destroys the asym.index field.  */
4227 		  if (as_sym != (symbolS *) NULL
4228 		      && symbol_get_obj (as_sym)->ecoff_symbol == sym_ptr)
4229 		    {
4230 		      if ((sym_ptr->ecoff_sym.asym.st == st_Proc
4231 			   || sym_ptr->ecoff_sym.asym.st == st_StaticProc)
4232 			  && local)
4233 			sym_ptr->ecoff_sym.asym.index = isym - ifilesym - 1;
4234 		      sym_ptr->ecoff_sym.ifd = fil_ptr->file_index;
4235 
4236 		      /* Don't try to merge an FDR which has an
4237 		         external symbol attached to it.  */
4238 		      if (S_IS_EXTERNAL (as_sym) || S_IS_WEAK (as_sym))
4239 			fil_ptr->fdr.fMerge = 0;
4240 		    }
4241 		}
4242 	    }
4243 	  fil_ptr->fdr.csym = isym - fil_ptr->fdr.isymBase;
4244 	}
4245     }
4246 
4247   return offset + isym * external_sym_size;
4248 }
4249 
4250 /* Swap out the procedure information.  */
4251 
4252 static unsigned long
4253 ecoff_build_procs (const struct ecoff_debug_swap *backend,
4254 		   char **buf,
4255 		   char **bufend,
4256 		   unsigned long offset)
4257 {
4258   const bfd_size_type external_pdr_size = backend->external_pdr_size;
4259   void (* const swap_pdr_out) (bfd *, const PDR *, PTR)
4260     = backend->swap_pdr_out;
4261   char *pdr_out;
4262   long iproc;
4263   vlinks_t *file_link;
4264 
4265   pdr_out = *buf + offset;
4266 
4267   iproc = 0;
4268 
4269   /* The procedures are stored by file.  */
4270   for (file_link = file_desc.first;
4271        file_link != (vlinks_t *) NULL;
4272        file_link = file_link->next)
4273     {
4274       int fil_cnt;
4275       efdr_t *fil_ptr;
4276       efdr_t *fil_end;
4277 
4278       if (file_link->next == (vlinks_t *) NULL)
4279 	fil_cnt = file_desc.objects_last_page;
4280       else
4281 	fil_cnt = file_desc.objects_per_page;
4282       fil_ptr = file_link->datum->file;
4283       fil_end = fil_ptr + fil_cnt;
4284       for (; fil_ptr < fil_end; fil_ptr++)
4285 	{
4286 	  vlinks_t *proc_link;
4287 	  int first;
4288 
4289 	  fil_ptr->fdr.ipdFirst = iproc;
4290 	  first = 1;
4291 	  for (proc_link = fil_ptr->procs.first;
4292 	       proc_link != (vlinks_t *) NULL;
4293 	       proc_link = proc_link->next)
4294 	    {
4295 	      int prc_cnt;
4296 	      proc_t *proc_ptr;
4297 	      proc_t *proc_end;
4298 
4299 	      if (proc_link->next == (vlinks_t *) NULL)
4300 		prc_cnt = fil_ptr->procs.objects_last_page;
4301 	      else
4302 		prc_cnt = fil_ptr->procs.objects_per_page;
4303 	      proc_ptr = proc_link->datum->proc;
4304 	      proc_end = proc_ptr + prc_cnt;
4305 	      for (; proc_ptr < proc_end; proc_ptr++)
4306 		{
4307 		  symbolS *adr_sym;
4308 		  unsigned long adr;
4309 
4310 		  adr_sym = proc_ptr->sym->as_sym;
4311 		  adr = (S_GET_VALUE (adr_sym)
4312 			 + bfd_get_section_vma (stdoutput,
4313 						S_GET_SEGMENT (adr_sym)));
4314 		  if (first)
4315 		    {
4316 		      /* This code used to force the adr of the very
4317 		         first fdr to be 0.  However, the native tools
4318 		         don't do that, and I can't remember why it
4319 		         used to work that way, so I took it out.  */
4320 		      fil_ptr->fdr.adr = adr;
4321 		      first = 0;
4322 		    }
4323 		  proc_ptr->pdr.adr = adr - fil_ptr->fdr.adr;
4324 		  if ((bfd_size_type)(*bufend - pdr_out) < external_pdr_size)
4325 		    pdr_out = ecoff_add_bytes (buf, bufend,
4326 					       pdr_out,
4327 					       external_pdr_size);
4328 		  (*swap_pdr_out) (stdoutput, &proc_ptr->pdr, pdr_out);
4329 		  pdr_out += external_pdr_size;
4330 		  ++iproc;
4331 		}
4332 	    }
4333 	  fil_ptr->fdr.cpd = iproc - fil_ptr->fdr.ipdFirst;
4334 	}
4335     }
4336 
4337   return offset + iproc * external_pdr_size;
4338 }
4339 
4340 /* Swap out the aux information.  */
4341 
4342 static unsigned long
4343 ecoff_build_aux (const struct ecoff_debug_swap *backend,
4344 		 char **buf,
4345 		 char **bufend,
4346 		 unsigned long offset)
4347 {
4348   int bigendian;
4349   union aux_ext *aux_out;
4350   long iaux;
4351   vlinks_t *file_link;
4352 
4353   bigendian = bfd_big_endian (stdoutput);
4354 
4355   aux_out = (union aux_ext *) (*buf + offset);
4356 
4357   iaux = 0;
4358 
4359   /* The aux entries are stored by file.  */
4360   for (file_link = file_desc.first;
4361        file_link != (vlinks_t *) NULL;
4362        file_link = file_link->next)
4363     {
4364       int fil_cnt;
4365       efdr_t *fil_ptr;
4366       efdr_t *fil_end;
4367 
4368       if (file_link->next == (vlinks_t *) NULL)
4369 	fil_cnt = file_desc.objects_last_page;
4370       else
4371 	fil_cnt = file_desc.objects_per_page;
4372       fil_ptr = file_link->datum->file;
4373       fil_end = fil_ptr + fil_cnt;
4374       for (; fil_ptr < fil_end; fil_ptr++)
4375 	{
4376 	  vlinks_t *aux_link;
4377 
4378 	  fil_ptr->fdr.fBigendian = bigendian;
4379 	  fil_ptr->fdr.iauxBase = iaux;
4380 	  for (aux_link = fil_ptr->aux_syms.first;
4381 	       aux_link != (vlinks_t *) NULL;
4382 	       aux_link = aux_link->next)
4383 	    {
4384 	      int aux_cnt;
4385 	      aux_t *aux_ptr;
4386 	      aux_t *aux_end;
4387 
4388 	      if (aux_link->next == (vlinks_t *) NULL)
4389 		aux_cnt = fil_ptr->aux_syms.objects_last_page;
4390 	      else
4391 		aux_cnt = fil_ptr->aux_syms.objects_per_page;
4392 	      aux_ptr = aux_link->datum->aux;
4393 	      aux_end = aux_ptr + aux_cnt;
4394 	      for (; aux_ptr < aux_end; aux_ptr++)
4395 		{
4396 		  if ((unsigned long) (*bufend - (char *) aux_out)
4397 		      < sizeof (union aux_ext))
4398 		    aux_out = ((union aux_ext *)
4399 			       ecoff_add_bytes (buf, bufend,
4400 						(char *) aux_out,
4401 						sizeof (union aux_ext)));
4402 		  switch (aux_ptr->type)
4403 		    {
4404 		    case aux_tir:
4405 		      (*backend->swap_tir_out) (bigendian,
4406 						&aux_ptr->data.ti,
4407 						&aux_out->a_ti);
4408 		      break;
4409 		    case aux_rndx:
4410 		      (*backend->swap_rndx_out) (bigendian,
4411 						 &aux_ptr->data.rndx,
4412 						 &aux_out->a_rndx);
4413 		      break;
4414 		    case aux_dnLow:
4415 		      AUX_PUT_DNLOW (bigendian, aux_ptr->data.dnLow,
4416 				     aux_out);
4417 		      break;
4418 		    case aux_dnHigh:
4419 		      AUX_PUT_DNHIGH (bigendian, aux_ptr->data.dnHigh,
4420 				      aux_out);
4421 		      break;
4422 		    case aux_isym:
4423 		      AUX_PUT_ISYM (bigendian, aux_ptr->data.isym,
4424 				    aux_out);
4425 		      break;
4426 		    case aux_iss:
4427 		      AUX_PUT_ISS (bigendian, aux_ptr->data.iss,
4428 				   aux_out);
4429 		      break;
4430 		    case aux_width:
4431 		      AUX_PUT_WIDTH (bigendian, aux_ptr->data.width,
4432 				     aux_out);
4433 		      break;
4434 		    case aux_count:
4435 		      AUX_PUT_COUNT (bigendian, aux_ptr->data.count,
4436 				     aux_out);
4437 		      break;
4438 		    }
4439 
4440 		  ++aux_out;
4441 		  ++iaux;
4442 		}
4443 	    }
4444 	  fil_ptr->fdr.caux = iaux - fil_ptr->fdr.iauxBase;
4445 	}
4446     }
4447 
4448   return ecoff_padding_adjust (backend, buf, bufend,
4449 			       offset + iaux * sizeof (union aux_ext),
4450 			       (char **) NULL);
4451 }
4452 
4453 /* Copy out the strings from a varray_t.  This returns the number of
4454    bytes copied, rather than the new offset.  */
4455 
4456 static unsigned long
4457 ecoff_build_strings (char **buf,
4458 		     char **bufend,
4459 		     unsigned long offset,
4460 		     varray_t *vp)
4461 {
4462   unsigned long istr;
4463   char *str_out;
4464   vlinks_t *str_link;
4465 
4466   str_out = *buf + offset;
4467 
4468   istr = 0;
4469 
4470   for (str_link = vp->first;
4471        str_link != (vlinks_t *) NULL;
4472        str_link = str_link->next)
4473     {
4474       unsigned long str_cnt;
4475 
4476       if (str_link->next == (vlinks_t *) NULL)
4477 	str_cnt = vp->objects_last_page;
4478       else
4479 	str_cnt = vp->objects_per_page;
4480 
4481       if ((unsigned long)(*bufend - str_out) < str_cnt)
4482 	str_out = ecoff_add_bytes (buf, bufend, str_out, str_cnt);
4483 
4484       memcpy (str_out, str_link->datum->byte, str_cnt);
4485       str_out += str_cnt;
4486       istr += str_cnt;
4487     }
4488 
4489   return istr;
4490 }
4491 
4492 /* Dump out the local strings.  */
4493 
4494 static unsigned long
4495 ecoff_build_ss (const struct ecoff_debug_swap *backend,
4496 		char **buf,
4497 		char **bufend,
4498 		unsigned long offset)
4499 {
4500   long iss;
4501   vlinks_t *file_link;
4502 
4503   iss = 0;
4504 
4505   for (file_link = file_desc.first;
4506        file_link != (vlinks_t *) NULL;
4507        file_link = file_link->next)
4508     {
4509       int fil_cnt;
4510       efdr_t *fil_ptr;
4511       efdr_t *fil_end;
4512 
4513       if (file_link->next == (vlinks_t *) NULL)
4514 	fil_cnt = file_desc.objects_last_page;
4515       else
4516 	fil_cnt = file_desc.objects_per_page;
4517       fil_ptr = file_link->datum->file;
4518       fil_end = fil_ptr + fil_cnt;
4519       for (; fil_ptr < fil_end; fil_ptr++)
4520 	{
4521 	  long ss_cnt;
4522 
4523 	  fil_ptr->fdr.issBase = iss;
4524 	  ss_cnt = ecoff_build_strings (buf, bufend, offset + iss,
4525 					&fil_ptr->strings);
4526 	  fil_ptr->fdr.cbSs = ss_cnt;
4527 	  iss += ss_cnt;
4528 	}
4529     }
4530 
4531   return ecoff_padding_adjust (backend, buf, bufend, offset + iss,
4532 			       (char **) NULL);
4533 }
4534 
4535 /* Swap out the file descriptors.  */
4536 
4537 static unsigned long
4538 ecoff_build_fdr (const struct ecoff_debug_swap *backend,
4539 		 char **buf,
4540 		 char **bufend,
4541 		 unsigned long offset)
4542 {
4543   const bfd_size_type external_fdr_size = backend->external_fdr_size;
4544   void (* const swap_fdr_out) (bfd *, const FDR *, PTR)
4545     = backend->swap_fdr_out;
4546   long ifile;
4547   char *fdr_out;
4548   vlinks_t *file_link;
4549 
4550   ifile = 0;
4551 
4552   fdr_out = *buf + offset;
4553 
4554   for (file_link = file_desc.first;
4555        file_link != (vlinks_t *) NULL;
4556        file_link = file_link->next)
4557     {
4558       int fil_cnt;
4559       efdr_t *fil_ptr;
4560       efdr_t *fil_end;
4561 
4562       if (file_link->next == (vlinks_t *) NULL)
4563 	fil_cnt = file_desc.objects_last_page;
4564       else
4565 	fil_cnt = file_desc.objects_per_page;
4566       fil_ptr = file_link->datum->file;
4567       fil_end = fil_ptr + fil_cnt;
4568       for (; fil_ptr < fil_end; fil_ptr++)
4569 	{
4570 	  if ((bfd_size_type)(*bufend - fdr_out) < external_fdr_size)
4571 	    fdr_out = ecoff_add_bytes (buf, bufend, fdr_out,
4572 				       external_fdr_size);
4573 	  (*swap_fdr_out) (stdoutput, &fil_ptr->fdr, fdr_out);
4574 	  fdr_out += external_fdr_size;
4575 	  ++ifile;
4576 	}
4577     }
4578 
4579   return offset + ifile * external_fdr_size;
4580 }
4581 
4582 /* Set up the external symbols.  These are supposed to be handled by
4583    the backend.  This routine just gets the right information and
4584    calls a backend function to deal with it.  */
4585 
4586 static void
4587 ecoff_setup_ext (void)
4588 {
4589   register symbolS *sym;
4590 
4591   for (sym = symbol_rootP; sym != (symbolS *) NULL; sym = symbol_next (sym))
4592     {
4593       if (symbol_get_obj (sym)->ecoff_symbol == NULL)
4594 	continue;
4595 
4596       /* If this is a local symbol, then force the fields to zero.  */
4597       if (! S_IS_EXTERNAL (sym)
4598 	  && ! S_IS_WEAK (sym)
4599 	  && S_IS_DEFINED (sym))
4600 	{
4601 	  struct localsym *lsym;
4602 
4603 	  lsym = symbol_get_obj (sym)->ecoff_symbol;
4604 	  lsym->ecoff_sym.asym.value = 0;
4605 	  lsym->ecoff_sym.asym.st = (int) st_Nil;
4606 	  lsym->ecoff_sym.asym.sc = (int) sc_Nil;
4607 	  lsym->ecoff_sym.asym.index = indexNil;
4608 	}
4609 
4610       obj_ecoff_set_ext (sym, &symbol_get_obj (sym)->ecoff_symbol->ecoff_sym);
4611     }
4612 }
4613 
4614 /* Build the ECOFF debugging information.  */
4615 
4616 unsigned long
4617 ecoff_build_debug (HDRR *hdr,
4618 		   char **bufp,
4619 		   const struct ecoff_debug_swap *backend)
4620 {
4621   const bfd_size_type external_pdr_size = backend->external_pdr_size;
4622   tag_t *ptag;
4623   tag_t *ptag_next;
4624   efdr_t *fil_ptr;
4625   int end_warning;
4626   efdr_t *hold_file_ptr;
4627   proc_t *hold_proc_ptr;
4628   symbolS *sym;
4629   char *buf;
4630   char *bufend;
4631   unsigned long offset;
4632 
4633   /* Make sure we have a file.  */
4634   if (first_file == (efdr_t *) NULL)
4635     add_file ((const char *) NULL, 0, 1);
4636 
4637   /* Handle any top level tags.  */
4638   for (ptag = top_tag_head->first_tag;
4639        ptag != (tag_t *) NULL;
4640        ptag = ptag_next)
4641     {
4642       if (ptag->forward_ref != (forward_t *) NULL)
4643 	add_unknown_tag (ptag);
4644 
4645       ptag_next = ptag->same_block;
4646       ptag->hash_ptr->tag_ptr = ptag->same_name;
4647       free_tag (ptag);
4648     }
4649 
4650   free_thead (top_tag_head);
4651 
4652   /* Look through the symbols.  Add debugging information for each
4653      symbol that has not already received it.  */
4654   hold_file_ptr = cur_file_ptr;
4655   hold_proc_ptr = cur_proc_ptr;
4656   cur_proc_ptr = (proc_t *) NULL;
4657   for (sym = symbol_rootP; sym != (symbolS *) NULL; sym = symbol_next (sym))
4658     {
4659       if (symbol_get_obj (sym)->ecoff_symbol != NULL
4660 	  || symbol_get_obj (sym)->ecoff_file == (efdr_t *) NULL
4661 	  || (symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) != 0)
4662 	continue;
4663 
4664       cur_file_ptr = symbol_get_obj (sym)->ecoff_file;
4665       add_ecoff_symbol ((const char *) NULL, st_Nil, sc_Nil, sym,
4666 			(bfd_vma) 0, S_GET_VALUE (sym), indexNil);
4667     }
4668   cur_proc_ptr = hold_proc_ptr;
4669   cur_file_ptr = hold_file_ptr;
4670 
4671   /* Output an ending symbol for all the files.  We have to do this
4672      here for the last file, so we may as well do it for all of the
4673      files.  */
4674   end_warning = 0;
4675   for (fil_ptr = first_file;
4676        fil_ptr != (efdr_t *) NULL;
4677        fil_ptr = fil_ptr->next_file)
4678     {
4679       cur_file_ptr = fil_ptr;
4680       while (cur_file_ptr->cur_scope != (scope_t *) NULL
4681 	     && cur_file_ptr->cur_scope->prev != (scope_t *) NULL)
4682 	{
4683 	  cur_file_ptr->cur_scope = cur_file_ptr->cur_scope->prev;
4684 	  if (! end_warning && ! cur_file_ptr->fake)
4685 	    {
4686 	      as_warn (_("missing .end or .bend at end of file"));
4687 	      end_warning = 1;
4688 	    }
4689 	}
4690       if (cur_file_ptr->cur_scope != (scope_t *) NULL)
4691 	(void) add_ecoff_symbol ((const char *) NULL,
4692 				 st_End, sc_Text,
4693 				 (symbolS *) NULL,
4694 				 (bfd_vma) 0,
4695 				 (symint_t) 0,
4696 				 (symint_t) 0);
4697     }
4698 
4699   /* Build the symbolic information.  */
4700   offset = 0;
4701   buf = xmalloc (PAGE_SIZE);
4702   bufend = buf + PAGE_SIZE;
4703 
4704   /* Build the line number information.  */
4705   hdr->cbLineOffset = offset;
4706   offset = ecoff_build_lineno (backend, &buf, &bufend, offset,
4707 			       &hdr->ilineMax);
4708   hdr->cbLine = offset - hdr->cbLineOffset;
4709 
4710   /* We don't use dense numbers at all.  */
4711   hdr->idnMax = 0;
4712   hdr->cbDnOffset = 0;
4713 
4714   /* We can't build the PDR table until we have built the symbols,
4715      because a PDR contains a symbol index.  However, we set aside
4716      space at this point.  */
4717   hdr->ipdMax = proc_cnt;
4718   hdr->cbPdOffset = offset;
4719   if ((bfd_size_type)(bufend - (buf + offset)) < proc_cnt * external_pdr_size)
4720     (void) ecoff_add_bytes (&buf, &bufend, buf + offset,
4721 			    proc_cnt * external_pdr_size);
4722   offset += proc_cnt * external_pdr_size;
4723 
4724   /* Build the local symbols.  */
4725   hdr->cbSymOffset = offset;
4726   offset = ecoff_build_symbols (backend, &buf, &bufend, offset);
4727   hdr->isymMax = (offset - hdr->cbSymOffset) / backend->external_sym_size;
4728 
4729   /* Building the symbols initializes the symbol index in the PDR's.
4730      Now we can swap out the PDR's.  */
4731   (void) ecoff_build_procs (backend, &buf, &bufend, hdr->cbPdOffset);
4732 
4733   /* We don't use optimization symbols.  */
4734   hdr->ioptMax = 0;
4735   hdr->cbOptOffset = 0;
4736 
4737   /* Swap out the auxiliary type information.  */
4738   hdr->cbAuxOffset = offset;
4739   offset = ecoff_build_aux (backend, &buf, &bufend, offset);
4740   hdr->iauxMax = (offset - hdr->cbAuxOffset) / sizeof (union aux_ext);
4741 
4742   /* Copy out the local strings.  */
4743   hdr->cbSsOffset = offset;
4744   offset = ecoff_build_ss (backend, &buf, &bufend, offset);
4745   hdr->issMax = offset - hdr->cbSsOffset;
4746 
4747   /* We don't use relative file descriptors.  */
4748   hdr->crfd = 0;
4749   hdr->cbRfdOffset = 0;
4750 
4751   /* Swap out the file descriptors.  */
4752   hdr->cbFdOffset = offset;
4753   offset = ecoff_build_fdr (backend, &buf, &bufend, offset);
4754   hdr->ifdMax = (offset - hdr->cbFdOffset) / backend->external_fdr_size;
4755 
4756   /* Set up the external symbols, which are handled by the BFD back
4757      end.  */
4758   hdr->issExtMax = 0;
4759   hdr->cbSsExtOffset = 0;
4760   hdr->iextMax = 0;
4761   hdr->cbExtOffset = 0;
4762   ecoff_setup_ext ();
4763 
4764   know ((offset & (backend->debug_align - 1)) == 0);
4765 
4766   /* FIXME: This value should be determined from the .verstamp directive,
4767      with reasonable defaults in config files.  */
4768 #ifdef TC_ALPHA
4769   hdr->vstamp = 0x030b;
4770 #else
4771   hdr->vstamp = 0x020b;
4772 #endif
4773 
4774   *bufp = buf;
4775   return offset;
4776 }
4777 
4778 /* Allocate a cluster of pages.  */
4779 
4780 #ifndef MALLOC_CHECK
4781 
4782 static page_type *
4783 allocate_cluster (unsigned long npages)
4784 {
4785   register page_type *value = (page_type *) xmalloc (npages * PAGE_USIZE);
4786 
4787 #ifdef ECOFF_DEBUG
4788   if (debug > 3)
4789     fprintf (stderr, "\talloc\tnpages = %d, value = 0x%.8x\n", npages, value);
4790 #endif
4791 
4792   memset (value, 0, npages * PAGE_USIZE);
4793 
4794   return value;
4795 }
4796 
4797 static page_type *cluster_ptr = NULL;
4798 static unsigned long pages_left = 0;
4799 
4800 #endif /* MALLOC_CHECK */
4801 
4802 /* Allocate one page (which is initialized to 0).  */
4803 
4804 static page_type *
4805 allocate_page (void)
4806 {
4807 #ifndef MALLOC_CHECK
4808 
4809   if (pages_left == 0)
4810     {
4811       pages_left = MAX_CLUSTER_PAGES;
4812       cluster_ptr = allocate_cluster (pages_left);
4813     }
4814 
4815   pages_left--;
4816   return cluster_ptr++;
4817 
4818 #else /* MALLOC_CHECK */
4819 
4820   page_type *ptr;
4821 
4822   ptr = xmalloc (PAGE_USIZE);
4823   memset (ptr, 0, PAGE_USIZE);
4824   return ptr;
4825 
4826 #endif /* MALLOC_CHECK */
4827 }
4828 
4829 /* Allocate scoping information.  */
4830 
4831 static scope_t *
4832 allocate_scope (void)
4833 {
4834   register scope_t *ptr;
4835   static scope_t initial_scope;
4836 
4837 #ifndef MALLOC_CHECK
4838 
4839   ptr = alloc_counts[(int) alloc_type_scope].free_list.f_scope;
4840   if (ptr != (scope_t *) NULL)
4841     alloc_counts[(int) alloc_type_scope].free_list.f_scope = ptr->free;
4842   else
4843     {
4844       register int unallocated	= alloc_counts[(int) alloc_type_scope].unallocated;
4845       register page_type *cur_page	= alloc_counts[(int) alloc_type_scope].cur_page;
4846 
4847       if (unallocated == 0)
4848 	{
4849 	  unallocated = PAGE_SIZE / sizeof (scope_t);
4850 	  alloc_counts[(int) alloc_type_scope].cur_page = cur_page = allocate_page ();
4851 	  alloc_counts[(int) alloc_type_scope].total_pages++;
4852 	}
4853 
4854       ptr = &cur_page->scope[--unallocated];
4855       alloc_counts[(int) alloc_type_scope].unallocated = unallocated;
4856     }
4857 
4858 #else
4859 
4860   ptr = (scope_t *) xmalloc (sizeof (scope_t));
4861 
4862 #endif
4863 
4864   alloc_counts[(int) alloc_type_scope].total_alloc++;
4865   *ptr = initial_scope;
4866   return ptr;
4867 }
4868 
4869 /* Free scoping information.  */
4870 
4871 static void
4872 free_scope (scope_t *ptr)
4873 {
4874   alloc_counts[(int) alloc_type_scope].total_free++;
4875 
4876 #ifndef MALLOC_CHECK
4877   ptr->free = alloc_counts[(int) alloc_type_scope].free_list.f_scope;
4878   alloc_counts[(int) alloc_type_scope].free_list.f_scope = ptr;
4879 #else
4880   free ((PTR) ptr);
4881 #endif
4882 }
4883 
4884 /* Allocate links for pages in a virtual array.  */
4885 
4886 static vlinks_t *
4887 allocate_vlinks (void)
4888 {
4889   register vlinks_t *ptr;
4890   static vlinks_t initial_vlinks;
4891 
4892 #ifndef MALLOC_CHECK
4893 
4894   register int unallocated = alloc_counts[(int) alloc_type_vlinks].unallocated;
4895   register page_type *cur_page = alloc_counts[(int) alloc_type_vlinks].cur_page;
4896 
4897   if (unallocated == 0)
4898     {
4899       unallocated = PAGE_SIZE / sizeof (vlinks_t);
4900       alloc_counts[(int) alloc_type_vlinks].cur_page = cur_page = allocate_page ();
4901       alloc_counts[(int) alloc_type_vlinks].total_pages++;
4902     }
4903 
4904   ptr = &cur_page->vlinks[--unallocated];
4905   alloc_counts[(int) alloc_type_vlinks].unallocated = unallocated;
4906 
4907 #else
4908 
4909   ptr = (vlinks_t *) xmalloc (sizeof (vlinks_t));
4910 
4911 #endif
4912 
4913   alloc_counts[(int) alloc_type_vlinks].total_alloc++;
4914   *ptr = initial_vlinks;
4915   return ptr;
4916 }
4917 
4918 /* Allocate string hash buckets.  */
4919 
4920 static shash_t *
4921 allocate_shash (void)
4922 {
4923   register shash_t *ptr;
4924   static shash_t initial_shash;
4925 
4926 #ifndef MALLOC_CHECK
4927 
4928   register int unallocated = alloc_counts[(int) alloc_type_shash].unallocated;
4929   register page_type *cur_page = alloc_counts[(int) alloc_type_shash].cur_page;
4930 
4931   if (unallocated == 0)
4932     {
4933       unallocated = PAGE_SIZE / sizeof (shash_t);
4934       alloc_counts[(int) alloc_type_shash].cur_page = cur_page = allocate_page ();
4935       alloc_counts[(int) alloc_type_shash].total_pages++;
4936     }
4937 
4938   ptr = &cur_page->shash[--unallocated];
4939   alloc_counts[(int) alloc_type_shash].unallocated = unallocated;
4940 
4941 #else
4942 
4943   ptr = (shash_t *) xmalloc (sizeof (shash_t));
4944 
4945 #endif
4946 
4947   alloc_counts[(int) alloc_type_shash].total_alloc++;
4948   *ptr = initial_shash;
4949   return ptr;
4950 }
4951 
4952 /* Allocate type hash buckets.  */
4953 
4954 static thash_t *
4955 allocate_thash (void)
4956 {
4957   register thash_t *ptr;
4958   static thash_t initial_thash;
4959 
4960 #ifndef MALLOC_CHECK
4961 
4962   register int unallocated = alloc_counts[(int) alloc_type_thash].unallocated;
4963   register page_type *cur_page = alloc_counts[(int) alloc_type_thash].cur_page;
4964 
4965   if (unallocated == 0)
4966     {
4967       unallocated = PAGE_SIZE / sizeof (thash_t);
4968       alloc_counts[(int) alloc_type_thash].cur_page = cur_page = allocate_page ();
4969       alloc_counts[(int) alloc_type_thash].total_pages++;
4970     }
4971 
4972   ptr = &cur_page->thash[--unallocated];
4973   alloc_counts[(int) alloc_type_thash].unallocated = unallocated;
4974 
4975 #else
4976 
4977   ptr = (thash_t *) xmalloc (sizeof (thash_t));
4978 
4979 #endif
4980 
4981   alloc_counts[(int) alloc_type_thash].total_alloc++;
4982   *ptr = initial_thash;
4983   return ptr;
4984 }
4985 
4986 /* Allocate structure, union, or enum tag information.  */
4987 
4988 static tag_t *
4989 allocate_tag (void)
4990 {
4991   register tag_t *ptr;
4992   static tag_t initial_tag;
4993 
4994 #ifndef MALLOC_CHECK
4995 
4996   ptr = alloc_counts[(int) alloc_type_tag].free_list.f_tag;
4997   if (ptr != (tag_t *) NULL)
4998     alloc_counts[(int) alloc_type_tag].free_list.f_tag = ptr->free;
4999   else
5000     {
5001       register int unallocated = alloc_counts[(int) alloc_type_tag].unallocated;
5002       register page_type *cur_page = alloc_counts[(int) alloc_type_tag].cur_page;
5003 
5004       if (unallocated == 0)
5005 	{
5006 	  unallocated = PAGE_SIZE / sizeof (tag_t);
5007 	  alloc_counts[(int) alloc_type_tag].cur_page = cur_page = allocate_page ();
5008 	  alloc_counts[(int) alloc_type_tag].total_pages++;
5009 	}
5010 
5011       ptr = &cur_page->tag[--unallocated];
5012       alloc_counts[(int) alloc_type_tag].unallocated = unallocated;
5013     }
5014 
5015 #else
5016 
5017   ptr = (tag_t *) xmalloc (sizeof (tag_t));
5018 
5019 #endif
5020 
5021   alloc_counts[(int) alloc_type_tag].total_alloc++;
5022   *ptr = initial_tag;
5023   return ptr;
5024 }
5025 
5026 /* Free scoping information.  */
5027 
5028 static void
5029 free_tag (tag_t *ptr)
5030 {
5031   alloc_counts[(int) alloc_type_tag].total_free++;
5032 
5033 #ifndef MALLOC_CHECK
5034   ptr->free = alloc_counts[(int) alloc_type_tag].free_list.f_tag;
5035   alloc_counts[(int) alloc_type_tag].free_list.f_tag = ptr;
5036 #else
5037   free ((PTR_T) ptr);
5038 #endif
5039 }
5040 
5041 /* Allocate forward reference to a yet unknown tag.  */
5042 
5043 static forward_t *
5044 allocate_forward (void)
5045 {
5046   register forward_t *ptr;
5047   static forward_t initial_forward;
5048 
5049 #ifndef MALLOC_CHECK
5050 
5051   register int unallocated = alloc_counts[(int) alloc_type_forward].unallocated;
5052   register page_type *cur_page = alloc_counts[(int) alloc_type_forward].cur_page;
5053 
5054   if (unallocated == 0)
5055     {
5056       unallocated = PAGE_SIZE / sizeof (forward_t);
5057       alloc_counts[(int) alloc_type_forward].cur_page = cur_page = allocate_page ();
5058       alloc_counts[(int) alloc_type_forward].total_pages++;
5059     }
5060 
5061   ptr = &cur_page->forward[--unallocated];
5062   alloc_counts[(int) alloc_type_forward].unallocated = unallocated;
5063 
5064 #else
5065 
5066   ptr = (forward_t *) xmalloc (sizeof (forward_t));
5067 
5068 #endif
5069 
5070   alloc_counts[(int) alloc_type_forward].total_alloc++;
5071   *ptr = initial_forward;
5072   return ptr;
5073 }
5074 
5075 /* Allocate head of type hash list.  */
5076 
5077 static thead_t *
5078 allocate_thead (void)
5079 {
5080   register thead_t *ptr;
5081   static thead_t initial_thead;
5082 
5083 #ifndef MALLOC_CHECK
5084 
5085   ptr = alloc_counts[(int) alloc_type_thead].free_list.f_thead;
5086   if (ptr != (thead_t *) NULL)
5087     alloc_counts[(int) alloc_type_thead].free_list.f_thead = ptr->free;
5088   else
5089     {
5090       register int unallocated = alloc_counts[(int) alloc_type_thead].unallocated;
5091       register page_type *cur_page = alloc_counts[(int) alloc_type_thead].cur_page;
5092 
5093       if (unallocated == 0)
5094 	{
5095 	  unallocated = PAGE_SIZE / sizeof (thead_t);
5096 	  alloc_counts[(int) alloc_type_thead].cur_page = cur_page = allocate_page ();
5097 	  alloc_counts[(int) alloc_type_thead].total_pages++;
5098 	}
5099 
5100       ptr = &cur_page->thead[--unallocated];
5101       alloc_counts[(int) alloc_type_thead].unallocated = unallocated;
5102     }
5103 
5104 #else
5105 
5106   ptr = (thead_t *) xmalloc (sizeof (thead_t));
5107 
5108 #endif
5109 
5110   alloc_counts[(int) alloc_type_thead].total_alloc++;
5111   *ptr = initial_thead;
5112   return ptr;
5113 }
5114 
5115 /* Free scoping information.  */
5116 
5117 static void
5118 free_thead (thead_t *ptr)
5119 {
5120   alloc_counts[(int) alloc_type_thead].total_free++;
5121 
5122 #ifndef MALLOC_CHECK
5123   ptr->free = (thead_t *) alloc_counts[(int) alloc_type_thead].free_list.f_thead;
5124   alloc_counts[(int) alloc_type_thead].free_list.f_thead = ptr;
5125 #else
5126   free ((PTR_T) ptr);
5127 #endif
5128 }
5129 
5130 static lineno_list_t *
5131 allocate_lineno_list (void)
5132 {
5133   register lineno_list_t *ptr;
5134   static lineno_list_t initial_lineno_list;
5135 
5136 #ifndef MALLOC_CHECK
5137 
5138   register int unallocated = alloc_counts[(int) alloc_type_lineno].unallocated;
5139   register page_type *cur_page = alloc_counts[(int) alloc_type_lineno].cur_page;
5140 
5141   if (unallocated == 0)
5142     {
5143       unallocated = PAGE_SIZE / sizeof (lineno_list_t);
5144       alloc_counts[(int) alloc_type_lineno].cur_page = cur_page = allocate_page ();
5145       alloc_counts[(int) alloc_type_lineno].total_pages++;
5146     }
5147 
5148   ptr = &cur_page->lineno[--unallocated];
5149   alloc_counts[(int) alloc_type_lineno].unallocated = unallocated;
5150 
5151 #else
5152 
5153   ptr = (lineno_list_t *) xmalloc (sizeof (lineno_list_t));
5154 
5155 #endif
5156 
5157   alloc_counts[(int) alloc_type_lineno].total_alloc++;
5158   *ptr = initial_lineno_list;
5159   return ptr;
5160 }
5161 
5162 void
5163 ecoff_set_gp_prolog_size (int sz)
5164 {
5165   if (cur_proc_ptr == 0)
5166     return;
5167 
5168   cur_proc_ptr->pdr.gp_prologue = sz;
5169   if (cur_proc_ptr->pdr.gp_prologue != sz)
5170     {
5171       as_warn (_("GP prologue size exceeds field size, using 0 instead"));
5172       cur_proc_ptr->pdr.gp_prologue = 0;
5173     }
5174 
5175   cur_proc_ptr->pdr.gp_used = 1;
5176 }
5177 
5178 int
5179 ecoff_no_current_file (void)
5180 {
5181   return cur_file_ptr == (efdr_t *) NULL;
5182 }
5183 
5184 void
5185 ecoff_generate_asm_lineno (void)
5186 {
5187   unsigned int lineno;
5188   char *filename;
5189   lineno_list_t *list;
5190 
5191   as_where (&filename, &lineno);
5192 
5193   if (current_stabs_filename == (char *) NULL
5194       || strcmp (current_stabs_filename, filename))
5195     add_file (filename, 0, 1);
5196 
5197   list = allocate_lineno_list ();
5198 
5199   list->next = (lineno_list_t *) NULL;
5200   list->file = cur_file_ptr;
5201   list->proc = cur_proc_ptr;
5202   list->frag = frag_now;
5203   list->paddr = frag_now_fix ();
5204   list->lineno = lineno;
5205 
5206   /* We don't want to merge files which have line numbers.  */
5207   cur_file_ptr->fdr.fMerge = 0;
5208 
5209   /* A .loc directive will sometimes appear before a .ent directive,
5210      which means that cur_proc_ptr will be NULL here.  Arrange to
5211      patch this up.  */
5212   if (cur_proc_ptr == (proc_t *) NULL)
5213     {
5214       lineno_list_t **pl;
5215 
5216       pl = &noproc_lineno;
5217       while (*pl != (lineno_list_t *) NULL)
5218 	pl = &(*pl)->next;
5219       *pl = list;
5220     }
5221   else
5222     {
5223       last_lineno = list;
5224       *last_lineno_ptr = list;
5225       last_lineno_ptr = &list->next;
5226     }
5227 }
5228 
5229 #else
5230 
5231 void
5232 ecoff_generate_asm_lineno (void)
5233 {
5234 }
5235 
5236 #endif /* ECOFF_DEBUGGING */
5237