* function.c (purge_addressof_1): Postpone insn in fewer cases.
[gcc.git] / gcc / vmsdbgout.c
1 /* Output VMS debug format symbol table information from GCC.
2 Copyright (C) 1987, 1988, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002 Free Software Foundation, Inc.
4 Contributed by Douglas B. Rupp (rupp@gnat.com).
5
6 This file is part of GCC.
7
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 2, or (at your option) any later
11 version.
12
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING. If not, write to the Free
20 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
21 02111-1307, USA. */
22
23 #include "config.h"
24 #include "system.h"
25 #include "coretypes.h"
26 #include "tm.h"
27
28 #ifdef VMS_DEBUGGING_INFO
29 #include "tree.h"
30 #include "flags.h"
31 #include "rtl.h"
32 #include "output.h"
33 #include "vmsdbg.h"
34 #include "debug.h"
35 #include "langhooks.h"
36 #include "function.h"
37 #include "target.h"
38
39 /* Difference in seconds between the VMS Epoch and the Unix Epoch */
40 static const long long vms_epoch_offset = 3506716800ll;
41
42 /* NOTE: In the comments in this file, many references are made to "Debug
43 Symbol Table". This term is abbreviated as `DST' throughout the remainder
44 of this file. */
45
46 typedef struct dst_line_info_struct *dst_line_info_ref;
47
48 /* Each entry in the line_info_table maintains the file and
49 line number associated with the label generated for that
50 entry. The label gives the PC value associated with
51 the line number entry. */
52 typedef struct dst_line_info_struct
53 {
54 unsigned long dst_file_num;
55 unsigned long dst_line_num;
56 }
57 dst_line_info_entry;
58
59 typedef struct dst_file_info_struct *dst_file_info_ref;
60
61 typedef struct dst_file_info_struct
62 {
63 char *file_name;
64 unsigned int max_line;
65 unsigned int listing_line_start;
66 long long cdt;
67 long ebk;
68 short ffb;
69 char rfo;
70 char flen;
71 }
72 dst_file_info_entry;
73
74 /* How to start an assembler comment. */
75 #ifndef ASM_COMMENT_START
76 #define ASM_COMMENT_START ";#"
77 #endif
78
79 /* Maximum size (in bytes) of an artificially generated label. */
80 #define MAX_ARTIFICIAL_LABEL_BYTES 30
81
82 /* Make sure we know the sizes of the various types debug can describe. These
83 are only defaults. If the sizes are different for your target, you should
84 override these values by defining the appropriate symbols in your tm.h
85 file. */
86 #ifndef PTR_SIZE
87 #define PTR_SIZE 4 /* Must be 32 bits for VMS debug info */
88 #endif
89
90 /* Pointer to a structure of filenames referenced by this compilation unit. */
91 static dst_file_info_ref file_info_table;
92
93 /* Total number of entries in the table (i.e. array) pointed to by
94 `file_info_table'. This is the *total* and includes both used and unused
95 slots. */
96 static unsigned int file_info_table_allocated;
97
98 /* Number of entries in the file_info_table which are actually in use. */
99 static unsigned int file_info_table_in_use;
100
101 /* Size (in elements) of increments by which we may expand the filename
102 table. */
103 #define FILE_TABLE_INCREMENT 64
104
105 static char **func_table;
106 static unsigned int func_table_allocated;
107 static unsigned int func_table_in_use;
108 #define FUNC_TABLE_INCREMENT 256
109
110 /* Local pointer to the name of the main input file. Initialized in
111 avmdbgout_init. */
112 static const char *primary_filename;
113
114 static char *module_producer;
115 static unsigned int module_language;
116
117 /* A pointer to the base of a table that contains line information
118 for each source code line in .text in the compilation unit. */
119 static dst_line_info_ref line_info_table;
120
121 /* Number of elements currently allocated for line_info_table. */
122 static unsigned int line_info_table_allocated;
123
124 /* Number of elements in line_info_table currently in use. */
125 static unsigned int line_info_table_in_use;
126
127 /* Size (in elements) of increments by which we may expand line_info_table. */
128 #define LINE_INFO_TABLE_INCREMENT 1024
129
130 /* Forward declarations for functions defined in this file. */
131 static char *full_name PARAMS ((const char *));
132 static unsigned int lookup_filename PARAMS ((const char *));
133 static void addr_const_to_string PARAMS ((char *, rtx));
134 static int write_debug_header PARAMS ((DST_HEADER *, const char *, int));
135 static int write_debug_addr PARAMS ((char *, const char *, int));
136 static int write_debug_data1 PARAMS ((unsigned int, const char *, int));
137 static int write_debug_data2 PARAMS ((unsigned int, const char *, int));
138 static int write_debug_data4 PARAMS ((unsigned long, const char *, int));
139 static int write_debug_data8 PARAMS ((unsigned long long, const char *,
140 int));
141 static int write_debug_delta4 PARAMS ((char *, char *, const char *, int));
142 static int write_debug_string PARAMS ((char *, const char *, int));
143 static int write_modbeg PARAMS ((int));
144 static int write_modend PARAMS ((int));
145 static int write_rtnbeg PARAMS ((int, int));
146 static int write_rtnend PARAMS ((int, int));
147 static int write_pclines PARAMS ((int));
148 static int write_srccorr PARAMS ((int, dst_file_info_entry, int));
149 static int write_srccorrs PARAMS ((int));
150
151 static void vmsdbgout_init PARAMS ((const char *));
152 static void vmsdbgout_finish PARAMS ((const char *));
153 static void vmsdbgout_define PARAMS ((unsigned int, const char *));
154 static void vmsdbgout_undef PARAMS ((unsigned int, const char *));
155 static void vmsdbgout_start_source_file PARAMS ((unsigned int, const char *));
156 static void vmsdbgout_end_source_file PARAMS ((unsigned int));
157 static void vmsdbgout_begin_block PARAMS ((unsigned int, unsigned int));
158 static void vmsdbgout_end_block PARAMS ((unsigned int, unsigned int));
159 static bool vmsdbgout_ignore_block PARAMS ((tree));
160 static void vmsdbgout_source_line PARAMS ((unsigned int, const char *));
161 static void vmsdbgout_begin_prologue PARAMS ((unsigned int, const char *));
162 static void vmsdbgout_end_prologue PARAMS ((unsigned int, const char *));
163 static void vmsdbgout_end_function PARAMS ((unsigned int));
164 static void vmsdbgout_end_epilogue PARAMS ((unsigned int, const char *));
165 static void vmsdbgout_begin_function PARAMS ((tree));
166 static void vmsdbgout_decl PARAMS ((tree));
167 static void vmsdbgout_global_decl PARAMS ((tree));
168 static void vmsdbgout_abstract_function PARAMS ((tree));
169
170 /* The debug hooks structure. */
171
172 const struct gcc_debug_hooks vmsdbg_debug_hooks
173 = {vmsdbgout_init,
174 vmsdbgout_finish,
175 vmsdbgout_define,
176 vmsdbgout_undef,
177 vmsdbgout_start_source_file,
178 vmsdbgout_end_source_file,
179 vmsdbgout_begin_block,
180 vmsdbgout_end_block,
181 vmsdbgout_ignore_block,
182 vmsdbgout_source_line,
183 vmsdbgout_begin_prologue,
184 vmsdbgout_end_prologue,
185 vmsdbgout_end_epilogue,
186 vmsdbgout_begin_function,
187 vmsdbgout_end_function,
188 vmsdbgout_decl,
189 vmsdbgout_global_decl,
190 debug_nothing_tree, /* deferred_inline_function */
191 vmsdbgout_abstract_function,
192 debug_nothing_rtx, /* label */
193 debug_nothing_int /* handle_pch */
194 };
195
196 /* Definitions of defaults for assembler-dependent names of various
197 pseudo-ops and section names.
198 Theses may be overridden in the tm.h file (if necessary) for a particular
199 assembler. */
200 #ifdef UNALIGNED_SHORT_ASM_OP
201 #undef UNALIGNED_SHORT_ASM_OP
202 #endif
203 #define UNALIGNED_SHORT_ASM_OP ".word"
204
205 #ifdef UNALIGNED_INT_ASM_OP
206 #undef UNALIGNED_INT_ASM_OP
207 #endif
208 #define UNALIGNED_INT_ASM_OP ".long"
209
210 #ifdef UNALIGNED_LONG_ASM_OP
211 #undef UNALIGNED_LONG_ASM_OP
212 #endif
213 #define UNALIGNED_LONG_ASM_OP ".long"
214
215 #ifdef UNALIGNED_DOUBLE_INT_ASM_OP
216 #undef UNALIGNED_DOUBLE_INT_ASM_OP
217 #endif
218 #define UNALIGNED_DOUBLE_INT_ASM_OP ".quad"
219
220 #ifdef ASM_BYTE_OP
221 #undef ASM_BYTE_OP
222 #endif
223 #define ASM_BYTE_OP ".byte"
224
225 #define NUMBYTES(I) ((I) < 256 ? 1 : (I) < 65536 ? 2 : 4)
226
227 #define NUMBYTES0(I) ((I) < 128 ? 0 : (I) < 65536 ? 2 : 4)
228
229 #ifndef UNALIGNED_PTR_ASM_OP
230 #define UNALIGNED_PTR_ASM_OP \
231 (PTR_SIZE == 8 ? UNALIGNED_DOUBLE_INT_ASM_OP : UNALIGNED_INT_ASM_OP)
232 #endif
233
234 #ifndef UNALIGNED_OFFSET_ASM_OP
235 #define UNALIGNED_OFFSET_ASM_OP(OFFSET) \
236 (NUMBYTES(OFFSET) == 4 \
237 ? UNALIGNED_LONG_ASM_OP \
238 : (NUMBYTES(OFFSET) == 2 ? UNALIGNED_SHORT_ASM_OP : ASM_BYTE_OP))
239 #endif
240
241 /* Definitions of defaults for formats and names of various special
242 (artificial) labels which may be generated within this file (when the -g
243 options is used and VMS_DEBUGGING_INFO is in effect. If necessary, these
244 may be overridden from within the tm.h file, but typically, overriding these
245 defaults is unnecessary. */
246
247 static char text_end_label[MAX_ARTIFICIAL_LABEL_BYTES];
248
249 #ifndef TEXT_END_LABEL
250 #define TEXT_END_LABEL "Lvetext"
251 #endif
252 #ifndef FUNC_BEGIN_LABEL
253 #define FUNC_BEGIN_LABEL "LVFB"
254 #endif
255 #ifndef FUNC_PROLOG_LABEL
256 #define FUNC_PROLOG_LABEL "LVFP"
257 #endif
258 #ifndef FUNC_END_LABEL
259 #define FUNC_END_LABEL "LVFE"
260 #endif
261 #ifndef BLOCK_BEGIN_LABEL
262 #define BLOCK_BEGIN_LABEL "LVBB"
263 #endif
264 #ifndef BLOCK_END_LABEL
265 #define BLOCK_END_LABEL "LVBE"
266 #endif
267 #ifndef LINE_CODE_LABEL
268 #define LINE_CODE_LABEL "LVM"
269 #endif
270
271 #ifndef ASM_OUTPUT_DEBUG_DELTA2
272 #define ASM_OUTPUT_DEBUG_DELTA2(FILE,LABEL1,LABEL2) \
273 do \
274 { \
275 fprintf ((FILE), "\t%s\t", UNALIGNED_SHORT_ASM_OP); \
276 assemble_name (FILE, LABEL1); \
277 fprintf (FILE, "-"); \
278 assemble_name (FILE, LABEL2); \
279 } \
280 while (0)
281 #endif
282
283 #ifndef ASM_OUTPUT_DEBUG_DELTA4
284 #define ASM_OUTPUT_DEBUG_DELTA4(FILE,LABEL1,LABEL2) \
285 do \
286 { \
287 fprintf ((FILE), "\t%s\t", UNALIGNED_INT_ASM_OP); \
288 assemble_name (FILE, LABEL1); \
289 fprintf (FILE, "-"); \
290 assemble_name (FILE, LABEL2); \
291 } \
292 while (0)
293 #endif
294
295 #ifndef ASM_OUTPUT_DEBUG_ADDR_DELTA
296 #define ASM_OUTPUT_DEBUG_ADDR_DELTA(FILE,LABEL1,LABEL2) \
297 do \
298 { \
299 fprintf ((FILE), "\t%s\t", UNALIGNED_PTR_ASM_OP); \
300 assemble_name (FILE, LABEL1); \
301 fprintf (FILE, "-"); \
302 assemble_name (FILE, LABEL2); \
303 } \
304 while (0)
305 #endif
306
307 #ifndef ASM_OUTPUT_DEBUG_ADDR
308 #define ASM_OUTPUT_DEBUG_ADDR(FILE,LABEL) \
309 do \
310 { \
311 fprintf ((FILE), "\t%s\t", UNALIGNED_PTR_ASM_OP); \
312 assemble_name (FILE, LABEL); \
313 } \
314 while (0)
315 #endif
316
317 #ifndef ASM_OUTPUT_DEBUG_ADDR_CONST
318 #define ASM_OUTPUT_DEBUG_ADDR_CONST(FILE,ADDR) \
319 fprintf ((FILE), "\t%s\t%s", UNALIGNED_PTR_ASM_OP, (ADDR))
320 #endif
321
322 #ifndef ASM_OUTPUT_DEBUG_DATA1
323 #define ASM_OUTPUT_DEBUG_DATA1(FILE,VALUE) \
324 fprintf ((FILE), "\t%s\t0x%x", ASM_BYTE_OP, (unsigned char) VALUE)
325 #endif
326
327 #ifndef ASM_OUTPUT_DEBUG_DATA2
328 #define ASM_OUTPUT_DEBUG_DATA2(FILE,VALUE) \
329 fprintf ((FILE), "\t%s\t0x%x", UNALIGNED_SHORT_ASM_OP, \
330 (unsigned short) VALUE)
331 #endif
332
333 #ifndef ASM_OUTPUT_DEBUG_DATA4
334 #define ASM_OUTPUT_DEBUG_DATA4(FILE,VALUE) \
335 fprintf ((FILE), "\t%s\t0x%lx", UNALIGNED_INT_ASM_OP, (unsigned long) VALUE)
336 #endif
337
338 #ifndef ASM_OUTPUT_DEBUG_DATA
339 #define ASM_OUTPUT_DEBUG_DATA(FILE,VALUE) \
340 fprintf ((FILE), "\t%s\t0x%lx", UNALIGNED_OFFSET_ASM_OP(VALUE), VALUE)
341 #endif
342
343 #ifndef ASM_OUTPUT_DEBUG_ADDR_DATA
344 #define ASM_OUTPUT_DEBUG_ADDR_DATA(FILE,VALUE) \
345 fprintf ((FILE), "\t%s\t0x%lx", UNALIGNED_PTR_ASM_OP, \
346 (unsigned long) VALUE)
347 #endif
348
349 #ifndef ASM_OUTPUT_DEBUG_DATA8
350 #define ASM_OUTPUT_DEBUG_DATA8(FILE,VALUE) \
351 fprintf ((FILE), "\t%s\t0x%llx", UNALIGNED_DOUBLE_INT_ASM_OP, \
352 (unsigned long long) VALUE)
353 #endif
354
355 /* This is similar to the default ASM_OUTPUT_ASCII, except that no trailing
356 newline is produced. When flag_verbose_asm is asserted, we add commentary
357 at the end of the line, so we must avoid output of a newline here. */
358 #ifndef ASM_OUTPUT_DEBUG_STRING
359 #define ASM_OUTPUT_DEBUG_STRING(FILE,P) \
360 do \
361 { \
362 register int slen = strlen(P); \
363 register char *p = (P); \
364 register int i; \
365 fprintf (FILE, "\t.ascii \""); \
366 for (i = 0; i < slen; i++) \
367 { \
368 register int c = p[i]; \
369 if (c == '\"' || c == '\\') \
370 putc ('\\', FILE); \
371 if (c >= ' ' && c < 0177) \
372 putc (c, FILE); \
373 else \
374 fprintf (FILE, "\\%o", c); \
375 } \
376 fprintf (FILE, "\""); \
377 } \
378 while (0)
379 #endif
380
381 /* Convert a reference to the assembler name of a C-level name. This
382 macro has the same effect as ASM_OUTPUT_LABELREF, but copies to
383 a string rather than writing to a file. */
384 #ifndef ASM_NAME_TO_STRING
385 #define ASM_NAME_TO_STRING(STR, NAME) \
386 do \
387 { \
388 if ((NAME)[0] == '*') \
389 strcpy (STR, NAME+1); \
390 else \
391 strcpy (STR, NAME); \
392 } \
393 while (0)
394 #endif
395
396 \f
397 /* General utility functions. */
398
399 /* Convert an integer constant expression into assembler syntax. Addition and
400 subtraction are the only arithmetic that may appear in these expressions.
401 This is an adaptation of output_addr_const in final.c. Here, the target
402 of the conversion is a string buffer. We can't use output_addr_const
403 directly, because it writes to a file. */
404
405 static void
406 addr_const_to_string (str, x)
407 char *str;
408 rtx x;
409 {
410 char buf1[256];
411 char buf2[256];
412
413 restart:
414 str[0] = '\0';
415 switch (GET_CODE (x))
416 {
417 case PC:
418 if (flag_pic)
419 strcat (str, ",");
420 else
421 abort ();
422 break;
423
424 case SYMBOL_REF:
425 ASM_NAME_TO_STRING (buf1, XSTR (x, 0));
426 strcat (str, buf1);
427 break;
428
429 case LABEL_REF:
430 ASM_GENERATE_INTERNAL_LABEL (buf1, "L", CODE_LABEL_NUMBER (XEXP (x, 0)));
431 ASM_NAME_TO_STRING (buf2, buf1);
432 strcat (str, buf2);
433 break;
434
435 case CODE_LABEL:
436 ASM_GENERATE_INTERNAL_LABEL (buf1, "L", CODE_LABEL_NUMBER (x));
437 ASM_NAME_TO_STRING (buf2, buf1);
438 strcat (str, buf2);
439 break;
440
441 case CONST_INT:
442 sprintf (buf1, HOST_WIDE_INT_PRINT_DEC, INTVAL (x));
443 strcat (str, buf1);
444 break;
445
446 case CONST:
447 /* This used to output parentheses around the expression, but that does
448 not work on the 386 (either ATT or BSD assembler). */
449 addr_const_to_string (buf1, XEXP (x, 0));
450 strcat (str, buf1);
451 break;
452
453 case CONST_DOUBLE:
454 if (GET_MODE (x) == VOIDmode)
455 {
456 /* We can use %d if the number is one word and positive. */
457 if (CONST_DOUBLE_HIGH (x))
458 sprintf (buf1, HOST_WIDE_INT_PRINT_DOUBLE_HEX,
459 CONST_DOUBLE_HIGH (x), CONST_DOUBLE_LOW (x));
460 else if (CONST_DOUBLE_LOW (x) < 0)
461 sprintf (buf1, HOST_WIDE_INT_PRINT_HEX, CONST_DOUBLE_LOW (x));
462 else
463 sprintf (buf1, HOST_WIDE_INT_PRINT_DEC,
464 CONST_DOUBLE_LOW (x));
465 strcat (str, buf1);
466 }
467 else
468 /* We can't handle floating point constants; PRINT_OPERAND must
469 handle them. */
470 output_operand_lossage ("floating constant misused");
471 break;
472
473 case PLUS:
474 /* Some assemblers need integer constants to appear last (eg masm). */
475 if (GET_CODE (XEXP (x, 0)) == CONST_INT)
476 {
477 addr_const_to_string (buf1, XEXP (x, 1));
478 strcat (str, buf1);
479 if (INTVAL (XEXP (x, 0)) >= 0)
480 strcat (str, "+");
481 addr_const_to_string (buf1, XEXP (x, 0));
482 strcat (str, buf1);
483 }
484 else
485 {
486 addr_const_to_string (buf1, XEXP (x, 0));
487 strcat (str, buf1);
488 if (INTVAL (XEXP (x, 1)) >= 0)
489 strcat (str, "+");
490 addr_const_to_string (buf1, XEXP (x, 1));
491 strcat (str, buf1);
492 }
493 break;
494
495 case MINUS:
496 /* Avoid outputting things like x-x or x+5-x, since some assemblers
497 can't handle that. */
498 x = simplify_subtraction (x);
499 if (GET_CODE (x) != MINUS)
500 goto restart;
501
502 addr_const_to_string (buf1, XEXP (x, 0));
503 strcat (str, buf1);
504 strcat (str, "-");
505 if (GET_CODE (XEXP (x, 1)) == CONST_INT
506 && INTVAL (XEXP (x, 1)) < 0)
507 {
508 strcat (str, "(");
509 addr_const_to_string (buf1, XEXP (x, 1));
510 strcat (str, buf1);
511 strcat (str, ")");
512 }
513 else
514 {
515 addr_const_to_string (buf1, XEXP (x, 1));
516 strcat (str, buf1);
517 }
518 break;
519
520 case ZERO_EXTEND:
521 case SIGN_EXTEND:
522 addr_const_to_string (buf1, XEXP (x, 0));
523 strcat (str, buf1);
524 break;
525
526 default:
527 output_operand_lossage ("invalid expression as operand");
528 }
529 }
530
531 /* Output the debug header HEADER. Also output COMMENT if flag_verbose_asm is
532 set. Return the header size. Just return the size if DOSIZEONLY is
533 nonzero. */
534
535 static int
536 write_debug_header (header, comment, dosizeonly)
537 DST_HEADER *header;
538 const char *comment;
539 int dosizeonly;
540 {
541 if (!dosizeonly)
542 {
543 ASM_OUTPUT_DEBUG_DATA2 (asm_out_file,
544 header->dst__header_length.dst_w_length);
545
546 if (flag_verbose_asm)
547 fprintf (asm_out_file, "\t%s record length", ASM_COMMENT_START);
548 fputc ('\n', asm_out_file);
549
550 ASM_OUTPUT_DEBUG_DATA2 (asm_out_file,
551 header->dst__header_type.dst_w_type);
552
553 if (flag_verbose_asm)
554 fprintf (asm_out_file, "\t%s record type (%s)", ASM_COMMENT_START,
555 comment);
556
557 fputc ('\n', asm_out_file);
558 }
559
560 return 4;
561 }
562
563 /* Output the address of SYMBOL. Also output COMMENT if flag_verbose_asm is
564 set. Return the address size. Just return the size if DOSIZEONLY is
565 nonzero. */
566
567 static int
568 write_debug_addr (symbol, comment, dosizeonly)
569 char *symbol;
570 const char *comment;
571 int dosizeonly;
572 {
573 if (!dosizeonly)
574 {
575 ASM_OUTPUT_DEBUG_ADDR (asm_out_file, symbol);
576 if (flag_verbose_asm)
577 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
578 fputc ('\n', asm_out_file);
579 }
580
581 return PTR_SIZE;
582 }
583
584 /* Output the single byte DATA1. Also output COMMENT if flag_verbose_asm is
585 set. Return the data size. Just return the size if DOSIZEONLY is
586 nonzero. */
587
588 static int
589 write_debug_data1 (data1, comment, dosizeonly)
590 unsigned int data1;
591 const char *comment;
592 int dosizeonly;
593 {
594 if (!dosizeonly)
595 {
596 ASM_OUTPUT_DEBUG_DATA1 (asm_out_file, data1);
597 if (flag_verbose_asm)
598 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
599 fputc ('\n', asm_out_file);
600 }
601
602 return 1;
603 }
604
605 /* Output the single word DATA2. Also output COMMENT if flag_verbose_asm is
606 set. Return the data size. Just return the size if DOSIZEONLY is
607 nonzero. */
608
609 static int
610 write_debug_data2 (data2, comment, dosizeonly)
611 unsigned int data2;
612 const char *comment;
613 int dosizeonly;
614 {
615 if (!dosizeonly)
616 {
617 ASM_OUTPUT_DEBUG_DATA2 (asm_out_file, data2);
618 if (flag_verbose_asm)
619 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
620 fputc ('\n', asm_out_file);
621 }
622
623 return 2;
624 }
625
626 /* Output double word DATA4. Also output COMMENT if flag_verbose_asm is set.
627 Return the data size. Just return the size if DOSIZEONLY is nonzero. */
628
629 static int
630 write_debug_data4 (data4, comment, dosizeonly)
631 unsigned long data4;
632 const char *comment;
633 int dosizeonly;
634 {
635 if (!dosizeonly)
636 {
637 ASM_OUTPUT_DEBUG_DATA4 (asm_out_file, data4);
638 if (flag_verbose_asm)
639 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
640 fputc ('\n', asm_out_file);
641 }
642
643 return 4;
644 }
645
646 /* Output quad word DATA8. Also output COMMENT if flag_verbose_asm is set.
647 Return the data size. Just return the size if DOSIZEONLY is nonzero. */
648
649 static int
650 write_debug_data8 (data8, comment, dosizeonly)
651 unsigned long long data8;
652 const char *comment;
653 int dosizeonly;
654 {
655 if (!dosizeonly)
656 {
657 ASM_OUTPUT_DEBUG_DATA8 (asm_out_file, data8);
658 if (flag_verbose_asm)
659 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
660 fputc ('\n', asm_out_file);
661 }
662
663 return 8;
664 }
665
666 /* Output the difference between LABEL1 and LABEL2. Also output COMMENT if
667 flag_verbose_asm is set. Return the data size. Just return the size if
668 DOSIZEONLY is nonzero. */
669
670 static int
671 write_debug_delta4 (label1, label2, comment, dosizeonly)
672 char *label1;
673 char *label2;
674 const char *comment;
675 int dosizeonly;
676 {
677 if (!dosizeonly)
678 {
679 ASM_OUTPUT_DEBUG_DELTA4 (asm_out_file, label1, label2);
680 if (flag_verbose_asm)
681 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
682 fputc ('\n', asm_out_file);
683 }
684
685 return 4;
686 }
687
688 /* Output a character string STRING. Also write COMMENT if flag_verbose_asm is
689 set. Return the string length. Just return the length if DOSIZEONLY is
690 nonzero. */
691
692 static int
693 write_debug_string (string, comment, dosizeonly)
694 char *string;
695 const char *comment;
696 int dosizeonly;
697 {
698 if (!dosizeonly)
699 {
700 ASM_OUTPUT_DEBUG_STRING (asm_out_file, string);
701 if (flag_verbose_asm)
702 fprintf (asm_out_file, "\t%s %s", ASM_COMMENT_START, comment);
703 fputc ('\n', asm_out_file);
704 }
705
706 return strlen (string);
707 }
708
709 /* Output a module begin header and return the header size. Just return the
710 size if DOSIZEONLY is nonzero. */
711
712 static int
713 write_modbeg (dosizeonly)
714 int dosizeonly;
715 {
716 DST_MODULE_BEGIN modbeg;
717 DST_MB_TRLR mb_trlr;
718 int i;
719 char *module_name, *m;
720 int modnamelen;
721 int prodnamelen;
722 int totsize = 0;
723
724 /* Assumes primary filename has Unix syntax file spec. */
725 module_name = xstrdup (basename ((char *) primary_filename));
726
727 m = strrchr (module_name, '.');
728 if (m)
729 *m = 0;
730
731 modnamelen = strlen (module_name);
732 for (i = 0; i < modnamelen; i++)
733 module_name[i] = TOUPPER (module_name[i]);
734
735 prodnamelen = strlen (module_producer);
736
737 modbeg.dst_a_modbeg_header.dst__header_length.dst_w_length
738 = DST_K_MODBEG_SIZE + modnamelen + DST_K_MB_TRLR_SIZE + prodnamelen - 1;
739 modbeg.dst_a_modbeg_header.dst__header_type.dst_w_type = DST_K_MODBEG;
740 modbeg.dst_b_modbeg_flags.dst_v_modbeg_hide = 0;
741 modbeg.dst_b_modbeg_flags.dst_v_modbeg_version = 1;
742 modbeg.dst_b_modbeg_flags.dst_v_modbeg_unused = 0;
743 modbeg.dst_b_modbeg_unused = 0;
744 modbeg.dst_l_modbeg_language = module_language;
745 modbeg.dst_w_version_major = DST_K_VERSION_MAJOR;
746 modbeg.dst_w_version_minor = DST_K_VERSION_MINOR;
747 modbeg.dst_b_modbeg_name = strlen (module_name);
748
749 mb_trlr.dst_b_compiler = strlen (module_producer);
750
751 totsize += write_debug_header (&modbeg.dst_a_modbeg_header,
752 "modbeg", dosizeonly);
753 totsize += write_debug_data1 (*((char *) &modbeg.dst_b_modbeg_flags),
754 "flags", dosizeonly);
755 totsize += write_debug_data1 (modbeg.dst_b_modbeg_unused,
756 "unused", dosizeonly);
757 totsize += write_debug_data4 (modbeg.dst_l_modbeg_language,
758 "language", dosizeonly);
759 totsize += write_debug_data2 (modbeg.dst_w_version_major,
760 "DST major version", dosizeonly);
761 totsize += write_debug_data2 (modbeg.dst_w_version_minor,
762 "DST minor version", dosizeonly);
763 totsize += write_debug_data1 (modbeg.dst_b_modbeg_name,
764 "length of module name", dosizeonly);
765 totsize += write_debug_string (module_name, "module name", dosizeonly);
766 totsize += write_debug_data1 (mb_trlr.dst_b_compiler,
767 "length of compiler name", dosizeonly);
768 totsize += write_debug_string (module_producer, "compiler name", dosizeonly);
769
770 return totsize;
771 }
772
773 /* Output a module end trailer and return the trailer size. Just return
774 the size if DOSIZEONLY is nonzero. */
775
776 static int
777 write_modend (dosizeonly)
778 int dosizeonly;
779 {
780 DST_MODULE_END modend;
781 int totsize = 0;
782
783 modend.dst_a_modend_header.dst__header_length.dst_w_length
784 = DST_K_MODEND_SIZE - 1;
785 modend.dst_a_modend_header.dst__header_type.dst_w_type = DST_K_MODEND;
786
787 totsize += write_debug_header (&modend.dst_a_modend_header, "modend",
788 dosizeonly);
789
790 return totsize;
791 }
792
793 /* Output a routine begin header routine RTNNUM and return the header size.
794 Just return the size if DOSIZEONLY is nonzero. */
795
796 static int
797 write_rtnbeg (rtnnum, dosizeonly)
798 int rtnnum;
799 int dosizeonly;
800 {
801 char *rtnname;
802 int rtnnamelen;
803 char *rtnentryname;
804 int totsize = 0;
805 char label[MAX_ARTIFICIAL_LABEL_BYTES];
806 DST_ROUTINE_BEGIN rtnbeg;
807 DST_PROLOG prolog;
808
809 rtnname = func_table[rtnnum];
810 rtnnamelen = strlen (rtnname);
811 rtnentryname = concat (rtnname, "..en", NULL);
812
813 if (!strcmp (rtnname, "main"))
814 {
815 DST_HEADER header;
816 const char *go = "TRANSFER$BREAK$GO";
817
818 /* This command isn't documented in DSTRECORDS, so it's made to
819 look like what DEC C does */
820
821 /* header size - 1st byte + flag byte + STO_LW size
822 + string count byte + string length */
823 header.dst__header_length.dst_w_length
824 = DST_K_DST_HEADER_SIZE - 1 + 1 + 4 + 1 + strlen (go);
825 header.dst__header_type.dst_w_type = 0x17;
826
827 totsize += write_debug_header (&header, "transfer", dosizeonly);
828
829 /* I think this is a flag byte, but I don't know what this flag means */
830 totsize += write_debug_data1 (0x1, "flags ???", dosizeonly);
831
832 /* Routine Begin PD Address */
833 totsize += write_debug_addr (rtnname, "main procedure descriptor",
834 dosizeonly);
835 totsize += write_debug_data1 (strlen (go), "length of main_name",
836 dosizeonly);
837 totsize += write_debug_string ((char *) go, "main name", dosizeonly);
838 }
839
840 /* The header length never includes the length byte */
841 rtnbeg.dst_a_rtnbeg_header.dst__header_length.dst_w_length
842 = DST_K_RTNBEG_SIZE + rtnnamelen - 1;
843 rtnbeg.dst_a_rtnbeg_header.dst__header_type.dst_w_type = DST_K_RTNBEG;
844 rtnbeg.dst_b_rtnbeg_flags.dst_v_rtnbeg_unused = 0;
845 rtnbeg.dst_b_rtnbeg_flags.dst_v_rtnbeg_unalloc = 0;
846 rtnbeg.dst_b_rtnbeg_flags.dst_v_rtnbeg_prototype = 0;
847 rtnbeg.dst_b_rtnbeg_flags.dst_v_rtnbeg_inlined = 0;
848 rtnbeg.dst_b_rtnbeg_flags.dst_v_rtnbeg_no_call = 1;
849 rtnbeg.dst_b_rtnbeg_name = rtnnamelen;
850
851 totsize += write_debug_header (&rtnbeg.dst_a_rtnbeg_header, "rtnbeg",
852 dosizeonly);
853 totsize += write_debug_data1 (*((char *) &rtnbeg.dst_b_rtnbeg_flags),
854 "flags", dosizeonly);
855
856 /* Routine Begin Address */
857 totsize += write_debug_addr (rtnentryname, "routine entry name", dosizeonly);
858
859 /* Routine Begin PD Address */
860 totsize += write_debug_addr (rtnname, "routine procedure descriptor",
861 dosizeonly);
862
863 /* Routine Begin Name */
864 totsize += write_debug_data1 (rtnbeg.dst_b_rtnbeg_name,
865 "length of routine name", dosizeonly);
866
867 totsize += write_debug_string (rtnname, "routine name", dosizeonly);
868
869 free (rtnentryname);
870
871 if (debug_info_level > DINFO_LEVEL_TERSE)
872 {
873 prolog.dst_a_prolog_header.dst__header_length.dst_w_length
874 = DST_K_PROLOG_SIZE - 1;
875 prolog.dst_a_prolog_header.dst__header_type.dst_w_type = DST_K_PROLOG;
876
877 totsize += write_debug_header (&prolog.dst_a_prolog_header, "prolog",
878 dosizeonly);
879
880 ASM_GENERATE_INTERNAL_LABEL (label, FUNC_PROLOG_LABEL, rtnnum);
881 totsize += write_debug_addr (label, "prolog breakpoint addr",
882 dosizeonly);
883 }
884
885 return totsize;
886 }
887
888 /* Output a routine end trailer for routine RTNNUM and return the header size.
889 Just return the size if DOSIZEONLY is nonzero. */
890
891 static int
892 write_rtnend (rtnnum, dosizeonly)
893 int rtnnum;
894 int dosizeonly;
895 {
896 DST_ROUTINE_END rtnend;
897 char label1[MAX_ARTIFICIAL_LABEL_BYTES];
898 char label2[MAX_ARTIFICIAL_LABEL_BYTES];
899 int totsize;
900
901 totsize = 0;
902
903 rtnend.dst_a_rtnend_header.dst__header_length.dst_w_length
904 = DST_K_RTNEND_SIZE - 1;
905 rtnend.dst_a_rtnend_header.dst__header_type.dst_w_type = DST_K_RTNEND;
906 rtnend.dst_b_rtnend_unused = 0;
907 rtnend.dst_l_rtnend_size = 0; /* Calculated below. */
908
909 totsize += write_debug_header (&rtnend.dst_a_rtnend_header, "rtnend",
910 dosizeonly);
911 totsize += write_debug_data1 (rtnend.dst_b_rtnend_unused, "unused",
912 dosizeonly);
913
914 ASM_GENERATE_INTERNAL_LABEL (label1, FUNC_BEGIN_LABEL, rtnnum);
915 ASM_GENERATE_INTERNAL_LABEL (label2, FUNC_END_LABEL, rtnnum);
916 totsize += write_debug_delta4 (label2, label1, "routine size", dosizeonly);
917
918 return totsize;
919 }
920
921 #define K_DELTA_PC(I) \
922 ((I) < 128 ? -(I) : (I) < 65536 ? DST_K_DELTA_PC_W : DST_K_DELTA_PC_L)
923
924 #define K_SET_LINUM(I) \
925 ((I) < 256 ? DST_K_SET_LINUM_B \
926 : (I) < 65536 ? DST_K_SET_LINUM : DST_K_SET_LINUM_L)
927
928 #define K_INCR_LINUM(I) \
929 ((I) < 256 ? DST_K_INCR_LINUM \
930 : (I) < 65536 ? DST_K_INCR_LINUM_W : DST_K_INCR_LINUM_L)
931
932 /* Output the PC to line number correlations and return the size. Just return
933 the size if DOSIZEONLY is nonzero */
934
935 static int
936 write_pclines (dosizeonly)
937 int dosizeonly;
938 {
939 unsigned i;
940 int fn;
941 int ln, lastln;
942 int linestart = 0;
943 int max_line;
944 DST_LINE_NUM_HEADER line_num;
945 DST_PCLINE_COMMANDS pcline;
946 char label[MAX_ARTIFICIAL_LABEL_BYTES];
947 char lastlabel[MAX_ARTIFICIAL_LABEL_BYTES];
948 int totsize = 0;
949 char buff[256];
950
951 max_line = file_info_table[1].max_line;
952 file_info_table[1].listing_line_start = linestart;
953 linestart = linestart + ((max_line / 100000) + 1) * 100000;
954
955 for (i = 2; i < file_info_table_in_use; i++)
956 {
957 max_line = file_info_table[i].max_line;
958 file_info_table[i].listing_line_start = linestart;
959 linestart = linestart + ((max_line / 10000) + 1) * 10000;
960 }
961
962 /* Set starting address to beginning of text section */
963 line_num.dst_a_line_num_header.dst__header_length.dst_w_length = 8;
964 line_num.dst_a_line_num_header.dst__header_type.dst_w_type = DST_K_LINE_NUM;
965 pcline.dst_b_pcline_command = DST_K_SET_ABS_PC;
966
967 totsize += write_debug_header (&line_num.dst_a_line_num_header,
968 "line_num", dosizeonly);
969 totsize += write_debug_data1 (pcline.dst_b_pcline_command,
970 "line_num (SET ABS PC)", dosizeonly);
971
972 if (dosizeonly)
973 totsize += 4;
974 else
975 {
976 ASM_OUTPUT_DEBUG_ADDR (asm_out_file, TEXT_SECTION_ASM_OP);
977 if (flag_verbose_asm)
978 fprintf (asm_out_file, "\t%s line_num", ASM_COMMENT_START);
979 fputc ('\n', asm_out_file);
980 }
981
982 fn = line_info_table[1].dst_file_num;
983 ln = (file_info_table[fn].listing_line_start
984 + line_info_table[1].dst_line_num);
985 line_num.dst_a_line_num_header.dst__header_length.dst_w_length = 4 + 4;
986 pcline.dst_b_pcline_command = DST_K_SET_LINUM_L;
987
988 totsize += write_debug_header (&line_num.dst_a_line_num_header,
989 "line_num", dosizeonly);
990 totsize += write_debug_data1 (pcline.dst_b_pcline_command,
991 "line_num (SET LINUM LONG)", dosizeonly);
992
993 sprintf (buff, "line_num (%d)", ln ? ln - 1 : 0);
994 totsize += write_debug_data4 (ln ? ln - 1 : 0, buff, dosizeonly);
995
996 lastln = ln;
997 strcpy (lastlabel, TEXT_SECTION_ASM_OP);
998 for (i = 1; i < line_info_table_in_use; i++)
999 {
1000 int extrabytes;
1001
1002 fn = line_info_table[i].dst_file_num;
1003 ln = (file_info_table[fn].listing_line_start
1004 + line_info_table[i].dst_line_num);
1005
1006 if (ln - lastln > 1)
1007 extrabytes = 5; /* NUMBYTES (ln - lastln - 1) + 1; */
1008 else if (ln <= lastln)
1009 extrabytes = 5; /* NUMBYTES (ln - 1) + 1; */
1010 else
1011 extrabytes = 0;
1012
1013 line_num.dst_a_line_num_header.dst__header_length.dst_w_length
1014 = 8 + extrabytes;
1015
1016 totsize += write_debug_header
1017 (&line_num.dst_a_line_num_header, "line_num", dosizeonly);
1018
1019 if (ln - lastln > 1)
1020 {
1021 int lndif = ln - lastln - 1;
1022
1023 /* K_INCR_LINUM (lndif); */
1024 pcline.dst_b_pcline_command = DST_K_INCR_LINUM_L;
1025
1026 totsize += write_debug_data1 (pcline.dst_b_pcline_command,
1027 "line_num (INCR LINUM LONG)",
1028 dosizeonly);
1029
1030 sprintf (buff, "line_num (%d)", lndif);
1031 totsize += write_debug_data4 (lndif, buff, dosizeonly);
1032 }
1033 else if (ln <= lastln)
1034 {
1035 /* K_SET_LINUM (ln-1); */
1036 pcline.dst_b_pcline_command = DST_K_SET_LINUM_L;
1037
1038 totsize += write_debug_data1 (pcline.dst_b_pcline_command,
1039 "line_num (SET LINUM LONG)",
1040 dosizeonly);
1041
1042 sprintf (buff, "line_num (%d)", ln - 1);
1043 totsize += write_debug_data4 (ln - 1, buff, dosizeonly);
1044 }
1045
1046 pcline.dst_b_pcline_command = DST_K_DELTA_PC_L;
1047
1048 totsize += write_debug_data1 (pcline.dst_b_pcline_command,
1049 "line_num (DELTA PC LONG)", dosizeonly);
1050
1051 ASM_GENERATE_INTERNAL_LABEL (label, LINE_CODE_LABEL, i);
1052 totsize += write_debug_delta4 (label, lastlabel, "increment line_num",
1053 dosizeonly);
1054
1055 lastln = ln;
1056 strcpy (lastlabel, label);
1057 }
1058
1059 return totsize;
1060 }
1061
1062 /* Output a source correlation for file FILEID using information saved in
1063 FILE_INFO_ENTRY and return the size. Just return the size if DOSIZEONLY is
1064 nonzero. */
1065
1066 static int
1067 write_srccorr (fileid, file_info_entry, dosizeonly)
1068 int fileid;
1069 dst_file_info_entry file_info_entry;
1070 int dosizeonly;
1071 {
1072 int src_command_size;
1073 int linesleft = file_info_entry.max_line;
1074 int linestart = file_info_entry.listing_line_start;
1075 int flen = file_info_entry.flen;
1076 int linestodo = 0;
1077 DST_SOURCE_CORR src_header;
1078 DST_SRC_COMMAND src_command;
1079 DST_SRC_COMMAND src_command_sf;
1080 DST_SRC_COMMAND src_command_sl;
1081 DST_SRC_COMMAND src_command_sr;
1082 DST_SRC_COMMAND src_command_dl;
1083 DST_SRC_CMDTRLR src_cmdtrlr;
1084 char buff[256];
1085 int totsize = 0;
1086
1087 if (fileid == 1)
1088 {
1089 src_header.dst_a_source_corr_header.dst__header_length.dst_w_length
1090 = DST_K_SOURCE_CORR_HEADER_SIZE + 1 - 1;
1091 src_header.dst_a_source_corr_header.dst__header_type.dst_w_type
1092 = DST_K_SOURCE;
1093 src_command.dst_b_src_command = DST_K_SRC_FORMFEED;
1094
1095 totsize += write_debug_header (&src_header.dst_a_source_corr_header,
1096 "source corr", dosizeonly);
1097
1098 totsize += write_debug_data1 (src_command.dst_b_src_command,
1099 "source_corr (SRC FORMFEED)",
1100 dosizeonly);
1101 }
1102
1103 src_command_size
1104 = DST_K_SRC_COMMAND_SIZE + flen + DST_K_SRC_CMDTRLR_SIZE;
1105 src_command.dst_b_src_command = DST_K_SRC_DECLFILE;
1106 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_length
1107 = src_command_size - 2;
1108 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_flags = 0;
1109 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_w_src_df_fileid
1110 = fileid;
1111 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_q_src_df_rms_cdt
1112 = file_info_entry.cdt;
1113 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_l_src_df_rms_ebk
1114 = file_info_entry.ebk;
1115 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_w_src_df_rms_ffb
1116 = file_info_entry.ffb;
1117 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_rms_rfo
1118 = file_info_entry.rfo;
1119 src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_filename
1120 = file_info_entry.flen;
1121
1122 src_header.dst_a_source_corr_header.dst__header_length.dst_w_length
1123 = DST_K_SOURCE_CORR_HEADER_SIZE + src_command_size - 1;
1124 src_header.dst_a_source_corr_header.dst__header_type.dst_w_type
1125 = DST_K_SOURCE;
1126
1127 src_cmdtrlr.dst_b_src_df_libmodname = 0;
1128
1129 totsize += write_debug_header (&src_header.dst_a_source_corr_header,
1130 "source corr", dosizeonly);
1131 totsize += write_debug_data1 (src_command.dst_b_src_command,
1132 "source_corr (DECL SRC FILE)", dosizeonly);
1133 totsize += write_debug_data1
1134 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_length,
1135 "source_corr (length)", dosizeonly);
1136
1137 totsize += write_debug_data1
1138 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_flags,
1139 "source_corr (flags)", dosizeonly);
1140
1141 totsize += write_debug_data2
1142 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_w_src_df_fileid,
1143 "source_corr (fileid)", dosizeonly);
1144
1145 totsize += write_debug_data8
1146 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_q_src_df_rms_cdt,
1147 "source_corr (creation date)", dosizeonly);
1148
1149 totsize += write_debug_data4
1150 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_l_src_df_rms_ebk,
1151 "source_corr (EOF block number)", dosizeonly);
1152
1153 totsize += write_debug_data2
1154 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_w_src_df_rms_ffb,
1155 "source_corr (first free byte)", dosizeonly);
1156
1157 totsize += write_debug_data1
1158 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_rms_rfo,
1159 "source_corr (record and file organization)", dosizeonly);
1160
1161 totsize += write_debug_data1
1162 (src_command.dst_a_src_cmd_fields.dst_a_src_decl_src.dst_b_src_df_filename,
1163 "source_corr (filename length)", dosizeonly);
1164
1165 totsize += write_debug_string (file_info_entry.file_name,
1166 "source file name", dosizeonly);
1167 totsize += write_debug_data1 (src_cmdtrlr.dst_b_src_df_libmodname,
1168 "source_corr (libmodname)", dosizeonly);
1169
1170 src_command_sf.dst_b_src_command = DST_K_SRC_SETFILE;
1171 src_command_sf.dst_a_src_cmd_fields.dst_w_src_unsword = fileid;
1172
1173 src_command_sr.dst_b_src_command = DST_K_SRC_SETREC_W;
1174 src_command_sr.dst_a_src_cmd_fields.dst_w_src_unsword = 1;
1175
1176 src_command_sl.dst_b_src_command = DST_K_SRC_SETLNUM_L;
1177 src_command_sl.dst_a_src_cmd_fields.dst_l_src_unslong = linestart + 1;
1178
1179 src_command_dl.dst_b_src_command = DST_K_SRC_DEFLINES_W;
1180
1181 if (linesleft > 65534)
1182 linesleft = linesleft - 65534, linestodo = 65534;
1183 else
1184 linestodo = linesleft, linesleft = 0;
1185
1186 src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword = linestodo;
1187
1188 src_header.dst_a_source_corr_header.dst__header_length.dst_w_length
1189 = DST_K_SOURCE_CORR_HEADER_SIZE + 3 + 3 + 5 + 3 - 1;
1190 src_header.dst_a_source_corr_header.dst__header_type.dst_w_type
1191 = DST_K_SOURCE;
1192
1193 if (src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword)
1194 {
1195 totsize += write_debug_header (&src_header.dst_a_source_corr_header,
1196 "source corr", dosizeonly);
1197
1198 totsize += write_debug_data1 (src_command_sf.dst_b_src_command,
1199 "source_corr (src setfile)", dosizeonly);
1200
1201 totsize += write_debug_data2
1202 (src_command_sf.dst_a_src_cmd_fields.dst_w_src_unsword,
1203 "source_corr (fileid)", dosizeonly);
1204
1205 totsize += write_debug_data1 (src_command_sr.dst_b_src_command,
1206 "source_corr (setrec)", dosizeonly);
1207
1208 totsize += write_debug_data2
1209 (src_command_sr.dst_a_src_cmd_fields.dst_w_src_unsword,
1210 "source_corr (recnum)", dosizeonly);
1211
1212 totsize += write_debug_data1 (src_command_sl.dst_b_src_command,
1213 "source_corr (setlnum)", dosizeonly);
1214
1215 totsize += write_debug_data4
1216 (src_command_sl.dst_a_src_cmd_fields.dst_l_src_unslong,
1217 "source_corr (linenum)", dosizeonly);
1218
1219 totsize += write_debug_data1 (src_command_dl.dst_b_src_command,
1220 "source_corr (deflines)", dosizeonly);
1221
1222 sprintf (buff, "source_corr (%d)",
1223 src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword);
1224 totsize += write_debug_data2
1225 (src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword,
1226 buff, dosizeonly);
1227
1228 while (linesleft > 0)
1229 {
1230 src_header.dst_a_source_corr_header.dst__header_length.dst_w_length
1231 = DST_K_SOURCE_CORR_HEADER_SIZE + 3 - 1;
1232 src_header.dst_a_source_corr_header.dst__header_type.dst_w_type
1233 = DST_K_SOURCE;
1234 src_command_dl.dst_b_src_command = DST_K_SRC_DEFLINES_W;
1235
1236 if (linesleft > 65534)
1237 linesleft = linesleft - 65534, linestodo = 65534;
1238 else
1239 linestodo = linesleft, linesleft = 0;
1240
1241 src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword = linestodo;
1242
1243 totsize += write_debug_header (&src_header.dst_a_source_corr_header,
1244 "source corr", dosizeonly);
1245 totsize += write_debug_data1 (src_command_dl.dst_b_src_command,
1246 "source_corr (deflines)", dosizeonly);
1247 sprintf (buff, "source_corr (%d)",
1248 src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword);
1249 totsize += write_debug_data2
1250 (src_command_dl.dst_a_src_cmd_fields.dst_w_src_unsword,
1251 buff, dosizeonly);
1252 }
1253 }
1254
1255 return totsize;
1256 }
1257
1258 /* Output all the source correlation entries and return the size. Just return
1259 the size if DOSIZEONLY is nonzero. */
1260
1261 static int
1262 write_srccorrs (dosizeonly)
1263 int dosizeonly;
1264 {
1265 unsigned int i;
1266 int totsize = 0;
1267
1268 for (i = 1; i < file_info_table_in_use; i++)
1269 totsize += write_srccorr (i, file_info_table[i], dosizeonly);
1270
1271 return totsize;
1272 }
1273 \f
1274 /* Output a marker (i.e. a label) for the beginning of a function, before
1275 the prologue. */
1276
1277 static void
1278 vmsdbgout_begin_prologue (line, file)
1279 unsigned int line;
1280 const char *file;
1281 {
1282 char label[MAX_ARTIFICIAL_LABEL_BYTES];
1283
1284 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1285 (*dwarf2_debug_hooks.begin_prologue) (line, file);
1286
1287 if (debug_info_level > DINFO_LEVEL_NONE)
1288 {
1289 ASM_GENERATE_INTERNAL_LABEL (label, FUNC_BEGIN_LABEL,
1290 current_function_funcdef_no);
1291 ASM_OUTPUT_LABEL (asm_out_file, label);
1292 }
1293 }
1294
1295 /* Output a marker (i.e. a label) for the beginning of a function, after
1296 the prologue. */
1297
1298 static void
1299 vmsdbgout_end_prologue (line, file)
1300 unsigned int line;
1301 const char *file;
1302 {
1303 char label[MAX_ARTIFICIAL_LABEL_BYTES];
1304
1305 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1306 (*dwarf2_debug_hooks.end_prologue) (line, file);
1307
1308 if (debug_info_level > DINFO_LEVEL_TERSE)
1309 {
1310 ASM_GENERATE_INTERNAL_LABEL (label, FUNC_PROLOG_LABEL,
1311 current_function_funcdef_no);
1312 ASM_OUTPUT_LABEL (asm_out_file, label);
1313
1314 /* VMS PCA expects every PC range to correlate to some line and file */
1315 vmsdbgout_source_line (line, file);
1316 }
1317 }
1318
1319 /* No output for VMS debug, but make obligatory call to Dwarf2 debug */
1320
1321 static void
1322 vmsdbgout_end_function (line)
1323 unsigned int line;
1324 {
1325 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1326 (*dwarf2_debug_hooks.end_function) (line);
1327 }
1328
1329 /* Output a marker (i.e. a label) for the absolute end of the generated code
1330 for a function definition. This gets called *after* the epilogue code has
1331 been generated. */
1332
1333 static void
1334 vmsdbgout_end_epilogue (line, file)
1335 unsigned int line;
1336 const char *file;
1337 {
1338 char label[MAX_ARTIFICIAL_LABEL_BYTES];
1339
1340 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1341 (*dwarf2_debug_hooks.end_epilogue) (line, file);
1342
1343 if (debug_info_level > DINFO_LEVEL_NONE)
1344 {
1345 /* Output a label to mark the endpoint of the code generated for this
1346 function. */
1347 ASM_GENERATE_INTERNAL_LABEL (label, FUNC_END_LABEL,
1348 current_function_funcdef_no);
1349 ASM_OUTPUT_LABEL (asm_out_file, label);
1350
1351 /* VMS PCA expects every PC range to correlate to some line and file */
1352 vmsdbgout_source_line (line, file);
1353 }
1354 }
1355
1356 /* Output a marker (i.e. a label) for the beginning of the generated code for
1357 a lexical block. */
1358
1359 static void
1360 vmsdbgout_begin_block (line, blocknum)
1361 register unsigned line;
1362 register unsigned blocknum;
1363 {
1364 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1365 (*dwarf2_debug_hooks.begin_block) (line, blocknum);
1366
1367 if (debug_info_level > DINFO_LEVEL_TERSE)
1368 (*targetm.asm_out.internal_label) (asm_out_file, BLOCK_BEGIN_LABEL, blocknum);
1369 }
1370
1371 /* Output a marker (i.e. a label) for the end of the generated code for a
1372 lexical block. */
1373
1374 static void
1375 vmsdbgout_end_block (line, blocknum)
1376 register unsigned line;
1377 register unsigned blocknum;
1378 {
1379 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1380 (*dwarf2_debug_hooks.end_block) (line, blocknum);
1381
1382 if (debug_info_level > DINFO_LEVEL_TERSE)
1383 (*targetm.asm_out.internal_label) (asm_out_file, BLOCK_END_LABEL, blocknum);
1384 }
1385
1386 /* Not implemented in VMS Debug. */
1387
1388 static bool
1389 vmsdbgout_ignore_block (block)
1390 tree block;
1391 {
1392 bool retval = 0;
1393
1394 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1395 retval = (*dwarf2_debug_hooks.ignore_block) (block);
1396
1397 return retval;
1398 }
1399
1400 /* Add an entry for function DECL into the func_table. */
1401
1402 static void
1403 vmsdbgout_begin_function (decl)
1404 tree decl;
1405 {
1406 const char *name = XSTR (XEXP (DECL_RTL (decl), 0), 0);
1407
1408 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1409 (*dwarf2_debug_hooks.begin_function) (decl);
1410
1411 if (func_table_in_use == func_table_allocated)
1412 {
1413 func_table_allocated += FUNC_TABLE_INCREMENT;
1414 func_table = (char **) xrealloc (func_table,
1415 func_table_allocated * sizeof (char *));
1416 }
1417
1418 /* Add the new entry to the end of the function name table. */
1419 func_table[func_table_in_use++] = xstrdup (name);
1420 }
1421
1422 static char fullname_buff [4096];
1423
1424 /* Return the full file specification for FILENAME. The specification must be
1425 in VMS syntax in order to be processed by VMS Debug. */
1426
1427 static char *
1428 full_name (filename)
1429 const char *filename;
1430 {
1431 #ifdef VMS
1432 FILE *fp = fopen (filename, "r");
1433
1434 fgetname (fp, fullname_buff, 1);
1435 fclose (fp);
1436 #else
1437 getcwd (fullname_buff, sizeof (fullname_buff));
1438
1439 strcat (fullname_buff, "/");
1440 strcat (fullname_buff, filename);
1441
1442 /* ??? Insert hairy code here to translate Unix style file specification
1443 to VMS style. */
1444 #endif
1445
1446 return fullname_buff;
1447 }
1448
1449 /* Lookup a filename (in the list of filenames that we know about here in
1450 vmsdbgout.c) and return its "index". The index of each (known) filename is
1451 just a unique number which is associated with only that one filename. We
1452 need such numbers for the sake of generating labels and references
1453 to those files numbers. If the filename given as an argument is not
1454 found in our current list, add it to the list and assign it the next
1455 available unique index number. In order to speed up searches, we remember
1456 the index of the filename was looked up last. This handles the majority of
1457 all searches. */
1458
1459 static unsigned int
1460 lookup_filename (file_name)
1461 const char *file_name;
1462 {
1463 static unsigned int last_file_lookup_index = 0;
1464 register char *fn;
1465 register unsigned i;
1466 char *fnam;
1467 long long cdt;
1468 long ebk;
1469 short ffb;
1470 char rfo;
1471 char flen;
1472 struct stat statbuf;
1473
1474 if (stat (file_name, &statbuf) == 0)
1475 {
1476 long gmtoff;
1477 #ifdef VMS
1478 struct tm *ts;
1479
1480 /* Adjust for GMT */
1481 ts = (struct tm *) localtime (&statbuf.st_ctime);
1482 gmtoff = ts->tm_gmtoff;
1483
1484 /* VMS has multiple file format types */
1485 rfo = statbuf.st_fab_rfm;
1486 #else
1487 /* Is GMT adjustment an issue with a cross-compiler? */
1488 gmtoff = 0;
1489
1490 /* Assume stream LF type file */
1491 rfo = 2;
1492 #endif
1493 cdt = 10000000 * (statbuf.st_ctime + gmtoff + vms_epoch_offset);
1494 ebk = statbuf.st_size / 512 + 1;
1495 ffb = statbuf.st_size - ((statbuf.st_size / 512) * 512);
1496 fnam = full_name (file_name);
1497 flen = strlen (fnam);
1498 }
1499 else
1500 {
1501 cdt = 0;
1502 ebk = 0;
1503 ffb = 0;
1504 rfo = 0;
1505 fnam = (char *) "";
1506 flen = 0;
1507 }
1508
1509 /* Check to see if the file name that was searched on the previous call
1510 matches this file name. If so, return the index. */
1511 if (last_file_lookup_index != 0)
1512 {
1513 fn = file_info_table[last_file_lookup_index].file_name;
1514 if (strcmp (fnam, fn) == 0)
1515 return last_file_lookup_index;
1516 }
1517
1518 /* Didn't match the previous lookup, search the table */
1519 for (i = 1; i < file_info_table_in_use; ++i)
1520 {
1521 fn = file_info_table[i].file_name;
1522 if (strcmp (fnam, fn) == 0)
1523 {
1524 last_file_lookup_index = i;
1525 return i;
1526 }
1527 }
1528
1529 /* Prepare to add a new table entry by making sure there is enough space in
1530 the table to do so. If not, expand the current table. */
1531 if (file_info_table_in_use == file_info_table_allocated)
1532 {
1533
1534 file_info_table_allocated += FILE_TABLE_INCREMENT;
1535 file_info_table
1536 = (dst_file_info_ref) xrealloc (file_info_table,
1537 (file_info_table_allocated
1538 * sizeof (dst_file_info_entry)));
1539 }
1540
1541 /* Add the new entry to the end of the filename table. */
1542 file_info_table[file_info_table_in_use].file_name = xstrdup (fnam);
1543 file_info_table[file_info_table_in_use].max_line = 0;
1544 file_info_table[file_info_table_in_use].cdt = cdt;
1545 file_info_table[file_info_table_in_use].ebk = ebk;
1546 file_info_table[file_info_table_in_use].ffb = ffb;
1547 file_info_table[file_info_table_in_use].rfo = rfo;
1548 file_info_table[file_info_table_in_use].flen = flen;
1549
1550 last_file_lookup_index = file_info_table_in_use++;
1551 return last_file_lookup_index;
1552 }
1553
1554 /* Output a label to mark the beginning of a source code line entry
1555 and record information relating to this source line, in
1556 'line_info_table' for later output of the .debug_line section. */
1557
1558 static void
1559 vmsdbgout_source_line (line, filename)
1560 register unsigned line;
1561 register const char *filename;
1562 {
1563 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1564 (*dwarf2_debug_hooks.source_line) (line, filename);
1565
1566 if (debug_info_level >= DINFO_LEVEL_TERSE)
1567 {
1568 dst_line_info_ref line_info;
1569
1570 (*targetm.asm_out.internal_label) (asm_out_file, LINE_CODE_LABEL,
1571 line_info_table_in_use);
1572
1573 /* Expand the line info table if necessary. */
1574 if (line_info_table_in_use == line_info_table_allocated)
1575 {
1576 line_info_table_allocated += LINE_INFO_TABLE_INCREMENT;
1577 line_info_table
1578 = (dst_line_info_ref) xrealloc (line_info_table,
1579 (line_info_table_allocated
1580 * sizeof (dst_line_info_entry)));
1581 }
1582
1583 /* Add the new entry at the end of the line_info_table. */
1584 line_info = &line_info_table[line_info_table_in_use++];
1585 line_info->dst_file_num = lookup_filename (filename);
1586 line_info->dst_line_num = line;
1587 if (line > file_info_table[line_info->dst_file_num].max_line)
1588 file_info_table[line_info->dst_file_num].max_line = line;
1589 }
1590 }
1591
1592 /* Record the beginning of a new source file, for later output.
1593 At present, unimplemented. */
1594
1595 static void
1596 vmsdbgout_start_source_file (lineno, filename)
1597 unsigned int lineno;
1598 const char *filename;
1599 {
1600 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1601 (*dwarf2_debug_hooks.start_source_file) (lineno, filename);
1602 }
1603
1604 /* Record the end of a source file, for later output.
1605 At present, unimplemented. */
1606
1607 static void
1608 vmsdbgout_end_source_file (lineno)
1609 unsigned int lineno ATTRIBUTE_UNUSED;
1610 {
1611 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1612 (*dwarf2_debug_hooks.end_source_file) (lineno);
1613 }
1614
1615 /* Set up for Debug output at the start of compilation. */
1616
1617 static void
1618 vmsdbgout_init (main_input_filename)
1619 const char *main_input_filename;
1620 {
1621 const char *language_string = lang_hooks.name;
1622
1623 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1624 (*dwarf2_debug_hooks.init) (main_input_filename);
1625
1626 if (debug_info_level == DINFO_LEVEL_NONE)
1627 return;
1628
1629 /* Remember the name of the primary input file. */
1630 primary_filename = main_input_filename;
1631
1632 /* Allocate the initial hunk of the file_info_table. */
1633 file_info_table
1634 = (dst_file_info_ref) xcalloc (FILE_TABLE_INCREMENT,
1635 sizeof (dst_file_info_entry));
1636 file_info_table_allocated = FILE_TABLE_INCREMENT;
1637
1638 /* Skip the first entry - file numbers begin at 1 */
1639 file_info_table_in_use = 1;
1640
1641 func_table = (char **) xcalloc (FUNC_TABLE_INCREMENT, sizeof (char *));
1642 func_table_allocated = FUNC_TABLE_INCREMENT;
1643 func_table_in_use = 1;
1644
1645 /* Allocate the initial hunk of the line_info_table. */
1646 line_info_table
1647 = (dst_line_info_ref) xcalloc (LINE_INFO_TABLE_INCREMENT,
1648 sizeof (dst_line_info_entry));
1649 line_info_table_allocated = LINE_INFO_TABLE_INCREMENT;
1650 /* zero-th entry is allocated, but unused */
1651 line_info_table_in_use = 1;
1652
1653 lookup_filename (primary_filename);
1654
1655 if (!strcmp (language_string, "GNU C"))
1656 module_language = DST_K_C;
1657 else if (!strcmp (language_string, "GNU C++"))
1658 module_language = DST_K_CXX;
1659 else if (!strcmp (language_string, "GNU Ada"))
1660 module_language = DST_K_ADA;
1661 else if (!strcmp (language_string, "GNU F77"))
1662 module_language = DST_K_FORTRAN;
1663 else
1664 module_language = DST_K_UNKNOWN;
1665
1666 module_producer = concat (language_string, " ", version_string, NULL);
1667
1668 ASM_GENERATE_INTERNAL_LABEL (text_end_label, TEXT_END_LABEL, 0);
1669
1670 }
1671
1672 /* Not implemented in VMS Debug. */
1673
1674 static void
1675 vmsdbgout_define (lineno, buffer)
1676 unsigned int lineno;
1677 const char *buffer;
1678 {
1679 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1680 (*dwarf2_debug_hooks.define) (lineno, buffer);
1681 }
1682
1683 /* Not implemented in VMS Debug. */
1684
1685 static void
1686 vmsdbgout_undef (lineno, buffer)
1687 unsigned int lineno;
1688 const char *buffer;
1689 {
1690 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1691 (*dwarf2_debug_hooks.undef) (lineno, buffer);
1692 }
1693
1694 /* Not implemented in VMS Debug. */
1695
1696 static void
1697 vmsdbgout_decl (decl)
1698 tree decl;
1699 {
1700 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1701 (*dwarf2_debug_hooks.function_decl) (decl);
1702 }
1703
1704 /* Not implemented in VMS Debug. */
1705
1706 static void
1707 vmsdbgout_global_decl (decl)
1708 tree decl;
1709 {
1710 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1711 (*dwarf2_debug_hooks.global_decl) (decl);
1712 }
1713
1714 /* Not implemented in VMS Debug. */
1715
1716 static void
1717 vmsdbgout_abstract_function (decl)
1718 tree decl;
1719 {
1720 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1721 (*dwarf2_debug_hooks.outlining_inline_function) (decl);
1722 }
1723
1724 /* Output stuff that Debug requires at the end of every file and generate the
1725 VMS Debug debugging info. */
1726
1727 static void
1728 vmsdbgout_finish (input_filename)
1729 const char *input_filename ATTRIBUTE_UNUSED;
1730 {
1731 unsigned int i;
1732 int totsize;
1733
1734 if (write_symbols == VMS_AND_DWARF2_DEBUG)
1735 (*dwarf2_debug_hooks.finish) (input_filename);
1736
1737 if (debug_info_level == DINFO_LEVEL_NONE)
1738 return;
1739
1740 /* Output a terminator label for the .text section. */
1741 text_section ();
1742 (*targetm.asm_out.internal_label) (asm_out_file, TEXT_END_LABEL, 0);
1743
1744 /* Output debugging information.
1745 Warning! Do not change the name of the .vmsdebug section without
1746 changing it in the assembler also. */
1747 named_section (NULL_TREE, ".vmsdebug", 0);
1748 ASM_OUTPUT_ALIGN (asm_out_file, 0);
1749
1750 totsize = write_modbeg (1);
1751 for (i = 1; i < func_table_in_use; i++)
1752 {
1753 totsize += write_rtnbeg (i, 1);
1754 totsize += write_rtnend (i, 1);
1755 }
1756 totsize += write_pclines (1);
1757
1758 write_modbeg (0);
1759 for (i = 1; i < func_table_in_use; i++)
1760 {
1761 write_rtnbeg (i, 0);
1762 write_rtnend (i, 0);
1763 }
1764 write_pclines (0);
1765
1766 if (debug_info_level > DINFO_LEVEL_TERSE)
1767 {
1768 totsize = write_srccorrs (1);
1769 write_srccorrs (0);
1770 }
1771
1772 totsize = write_modend (1);
1773 write_modend (0);
1774 }
1775 #endif /* VMS_DEBUGGING_INFO */