* gdbtypes.h (TYPE_OBJFILE_OWNED, TYPE_OWNER): New macros.
[deliverable/binutils-gdb.git] / gdb / f-valprint.c
CommitLineData
c906108c 1/* Support for printing Fortran values for GDB, the GNU debugger.
a2bd3dcd 2
6aba47ca 3 Copyright (C) 1993, 1994, 1995, 1996, 1998, 1999, 2000, 2003, 2005, 2006,
0fb0cc75 4 2007, 2008, 2009 Free Software Foundation, Inc.
a2bd3dcd 5
c906108c
SS
6 Contributed by Motorola. Adapted from the C definitions by Farooq Butt
7 (fmbutt@engage.sps.mot.com), additionally worked over by Stan Shebs.
8
c5aa993b 9 This file is part of GDB.
c906108c 10
c5aa993b
JM
11 This program is free software; you can redistribute it and/or modify
12 it under the terms of the GNU General Public License as published by
a9762ec7 13 the Free Software Foundation; either version 3 of the License, or
c5aa993b 14 (at your option) any later version.
c906108c 15
c5aa993b
JM
16 This program 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.
c906108c 20
c5aa993b 21 You should have received a copy of the GNU General Public License
a9762ec7 22 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
23
24#include "defs.h"
25#include "gdb_string.h"
26#include "symtab.h"
27#include "gdbtypes.h"
28#include "expression.h"
29#include "value.h"
c906108c
SS
30#include "valprint.h"
31#include "language.h"
c5aa993b 32#include "f-lang.h"
c906108c
SS
33#include "frame.h"
34#include "gdbcore.h"
35#include "command.h"
fe898f56 36#include "block.h"
c906108c
SS
37
38#if 0
a14ed312 39static int there_is_a_visible_common_named (char *);
c906108c
SS
40#endif
41
a14ed312
KB
42extern void _initialize_f_valprint (void);
43static void info_common_command (char *, int);
44static void list_all_visible_commons (char *);
d9fcf2fb
JM
45static void f77_create_arrayprint_offset_tbl (struct type *,
46 struct ui_file *);
a14ed312 47static void f77_get_dynamic_length_of_aggregate (struct type *);
c906108c 48
c5aa993b 49int f77_array_offset_tbl[MAX_FORTRAN_DIMS + 1][2];
c906108c
SS
50
51/* Array which holds offsets to be applied to get a row's elements
52 for a given array. Array also holds the size of each subarray. */
53
54/* The following macro gives us the size of the nth dimension, Where
c5aa993b 55 n is 1 based. */
c906108c
SS
56
57#define F77_DIM_SIZE(n) (f77_array_offset_tbl[n][1])
58
c5aa993b 59/* The following gives us the offset for row n where n is 1-based. */
c906108c
SS
60
61#define F77_DIM_OFFSET(n) (f77_array_offset_tbl[n][0])
62
c5aa993b 63int
d78df370 64f77_get_lowerbound (struct type *type)
c906108c 65{
d78df370
JK
66 if (TYPE_ARRAY_LOWER_BOUND_IS_UNDEFINED (type))
67 error (_("Lower bound may not be '*' in F77"));
c5aa993b 68
d78df370 69 return TYPE_ARRAY_LOWER_BOUND_VALUE (type);
c906108c
SS
70}
71
c5aa993b 72int
d78df370 73f77_get_upperbound (struct type *type)
c906108c 74{
d78df370 75 if (TYPE_ARRAY_UPPER_BOUND_IS_UNDEFINED (type))
c906108c 76 {
d78df370
JK
77 /* We have an assumed size array on our hands. Assume that
78 upper_bound == lower_bound so that we show at least 1 element.
79 If the user wants to see more elements, let him manually ask for 'em
80 and we'll subscript the array and show him. */
81
82 return f77_get_lowerbound (type);
c906108c 83 }
d78df370
JK
84
85 return TYPE_ARRAY_UPPER_BOUND_VALUE (type);
c906108c
SS
86}
87
c5aa993b 88/* Obtain F77 adjustable array dimensions */
c906108c
SS
89
90static void
fba45db2 91f77_get_dynamic_length_of_aggregate (struct type *type)
c906108c
SS
92{
93 int upper_bound = -1;
c5aa993b
JM
94 int lower_bound = 1;
95 int retcode;
96
c906108c
SS
97 /* Recursively go all the way down into a possibly multi-dimensional
98 F77 array and get the bounds. For simple arrays, this is pretty
99 easy but when the bounds are dynamic, we must be very careful
100 to add up all the lengths correctly. Not doing this right
101 will lead to horrendous-looking arrays in parameter lists.
c5aa993b 102
c906108c 103 This function also works for strings which behave very
c5aa993b
JM
104 similarly to arrays. */
105
106 if (TYPE_CODE (TYPE_TARGET_TYPE (type)) == TYPE_CODE_ARRAY
107 || TYPE_CODE (TYPE_TARGET_TYPE (type)) == TYPE_CODE_STRING)
c906108c 108 f77_get_dynamic_length_of_aggregate (TYPE_TARGET_TYPE (type));
c5aa993b
JM
109
110 /* Recursion ends here, start setting up lengths. */
d78df370
JK
111 lower_bound = f77_get_lowerbound (type);
112 upper_bound = f77_get_upperbound (type);
c5aa993b
JM
113
114 /* Patch in a valid length value. */
115
c906108c
SS
116 TYPE_LENGTH (type) =
117 (upper_bound - lower_bound + 1) * TYPE_LENGTH (check_typedef (TYPE_TARGET_TYPE (type)));
c5aa993b 118}
c906108c
SS
119
120/* Function that sets up the array offset,size table for the array
c5aa993b 121 type "type". */
c906108c 122
c5aa993b 123static void
fba45db2 124f77_create_arrayprint_offset_tbl (struct type *type, struct ui_file *stream)
c906108c
SS
125{
126 struct type *tmp_type;
127 int eltlen;
128 int ndimen = 1;
c5aa993b
JM
129 int upper, lower, retcode;
130
131 tmp_type = type;
132
133 while ((TYPE_CODE (tmp_type) == TYPE_CODE_ARRAY))
c906108c 134 {
d78df370
JK
135 upper = f77_get_upperbound (tmp_type);
136 lower = f77_get_lowerbound (tmp_type);
c5aa993b 137
c906108c 138 F77_DIM_SIZE (ndimen) = upper - lower + 1;
c5aa993b 139
c906108c 140 tmp_type = TYPE_TARGET_TYPE (tmp_type);
c5aa993b 141 ndimen++;
c906108c 142 }
c5aa993b 143
c906108c
SS
144 /* Now we multiply eltlen by all the offsets, so that later we
145 can print out array elements correctly. Up till now we
146 know an offset to apply to get the item but we also
147 have to know how much to add to get to the next item */
c5aa993b 148
c906108c 149 ndimen--;
c5aa993b 150 eltlen = TYPE_LENGTH (tmp_type);
c906108c
SS
151 F77_DIM_OFFSET (ndimen) = eltlen;
152 while (--ndimen > 0)
153 {
154 eltlen *= F77_DIM_SIZE (ndimen + 1);
155 F77_DIM_OFFSET (ndimen) = eltlen;
156 }
157}
158
b3cacbee
DL
159
160
c906108c
SS
161/* Actual function which prints out F77 arrays, Valaddr == address in
162 the superior. Address == the address in the inferior. */
7b0090c3 163
c5aa993b 164static void
a2bd3dcd 165f77_print_array_1 (int nss, int ndimensions, struct type *type,
fc1a4b47 166 const gdb_byte *valaddr, CORE_ADDR address,
79a45b7d
TT
167 struct ui_file *stream, int recurse,
168 const struct value_print_options *options,
b3cacbee 169 int *elts)
c906108c
SS
170{
171 int i;
c5aa993b 172
c906108c
SS
173 if (nss != ndimensions)
174 {
79a45b7d 175 for (i = 0; (i < F77_DIM_SIZE (nss) && (*elts) < options->print_max); i++)
c906108c
SS
176 {
177 fprintf_filtered (stream, "( ");
178 f77_print_array_1 (nss + 1, ndimensions, TYPE_TARGET_TYPE (type),
c5aa993b
JM
179 valaddr + i * F77_DIM_OFFSET (nss),
180 address + i * F77_DIM_OFFSET (nss),
79a45b7d 181 stream, recurse, options, elts);
c906108c
SS
182 fprintf_filtered (stream, ") ");
183 }
79a45b7d 184 if (*elts >= options->print_max && i < F77_DIM_SIZE (nss))
b3cacbee 185 fprintf_filtered (stream, "...");
c906108c
SS
186 }
187 else
188 {
79a45b7d 189 for (i = 0; i < F77_DIM_SIZE (nss) && (*elts) < options->print_max;
7b0090c3 190 i++, (*elts)++)
c906108c
SS
191 {
192 val_print (TYPE_TARGET_TYPE (type),
193 valaddr + i * F77_DIM_OFFSET (ndimensions),
c5aa993b 194 0,
c906108c 195 address + i * F77_DIM_OFFSET (ndimensions),
79a45b7d 196 stream, recurse, options, current_language);
c906108c
SS
197
198 if (i != (F77_DIM_SIZE (nss) - 1))
c5aa993b
JM
199 fprintf_filtered (stream, ", ");
200
79a45b7d
TT
201 if ((*elts == options->print_max - 1)
202 && (i != (F77_DIM_SIZE (nss) - 1)))
c906108c
SS
203 fprintf_filtered (stream, "...");
204 }
205 }
206}
207
208/* This function gets called to print an F77 array, we set up some
209 stuff and then immediately call f77_print_array_1() */
210
c5aa993b 211static void
fc1a4b47 212f77_print_array (struct type *type, const gdb_byte *valaddr,
a2bd3dcd 213 CORE_ADDR address, struct ui_file *stream,
79a45b7d 214 int recurse, const struct value_print_options *options)
c906108c 215{
c5aa993b 216 int ndimensions;
b3cacbee 217 int elts = 0;
c5aa993b
JM
218
219 ndimensions = calc_f77_array_dims (type);
220
c906108c 221 if (ndimensions > MAX_FORTRAN_DIMS || ndimensions < 0)
8a3fe4f8 222 error (_("Type node corrupt! F77 arrays cannot have %d subscripts (%d Max)"),
c906108c 223 ndimensions, MAX_FORTRAN_DIMS);
c5aa993b 224
c906108c
SS
225 /* Since F77 arrays are stored column-major, we set up an
226 offset table to get at the various row's elements. The
c5aa993b 227 offset table contains entries for both offset and subarray size. */
c906108c 228
c5aa993b
JM
229 f77_create_arrayprint_offset_tbl (type, stream);
230
79a45b7d
TT
231 f77_print_array_1 (1, ndimensions, type, valaddr, address, stream,
232 recurse, options, &elts);
c5aa993b 233}
c906108c 234\f
c5aa993b 235
c906108c
SS
236/* Print data of type TYPE located at VALADDR (within GDB), which came from
237 the inferior at address ADDRESS, onto stdio stream STREAM according to
79a45b7d 238 OPTIONS. The data at VALADDR is in target byte order.
c5aa993b 239
c906108c 240 If the data are a string pointer, returns the number of string characters
79a45b7d 241 printed. */
c906108c
SS
242
243int
fc1a4b47 244f_val_print (struct type *type, const gdb_byte *valaddr, int embedded_offset,
79a45b7d
TT
245 CORE_ADDR address, struct ui_file *stream, int recurse,
246 const struct value_print_options *options)
c906108c 247{
52f0bd74 248 unsigned int i = 0; /* Number of characters printed */
c906108c
SS
249 struct type *elttype;
250 LONGEST val;
251 CORE_ADDR addr;
2a5e440c 252 int index;
c5aa993b 253
c906108c
SS
254 CHECK_TYPEDEF (type);
255 switch (TYPE_CODE (type))
256 {
c5aa993b 257 case TYPE_CODE_STRING:
c906108c 258 f77_get_dynamic_length_of_aggregate (type);
6c7a06a3
TT
259 LA_PRINT_STRING (stream, builtin_type (current_gdbarch)->builtin_char,
260 valaddr, TYPE_LENGTH (type), 0, options);
c906108c 261 break;
c5aa993b 262
c906108c 263 case TYPE_CODE_ARRAY:
c5aa993b 264 fprintf_filtered (stream, "(");
79a45b7d 265 f77_print_array (type, valaddr, address, stream, recurse, options);
c906108c
SS
266 fprintf_filtered (stream, ")");
267 break;
7e86466e 268
c906108c 269 case TYPE_CODE_PTR:
79a45b7d 270 if (options->format && options->format != 's')
c906108c 271 {
79a45b7d 272 print_scalar_formatted (valaddr, type, options, 0, stream);
c906108c
SS
273 break;
274 }
275 else
276 {
277 addr = unpack_pointer (type, valaddr);
278 elttype = check_typedef (TYPE_TARGET_TYPE (type));
c5aa993b 279
c906108c
SS
280 if (TYPE_CODE (elttype) == TYPE_CODE_FUNC)
281 {
282 /* Try to print what function it points to. */
283 print_address_demangle (addr, stream, demangle);
284 /* Return value is irrelevant except for string pointers. */
285 return 0;
286 }
c5aa993b 287
79a45b7d 288 if (options->addressprint && options->format != 's')
ed49a04f 289 fputs_filtered (paddress (addr), stream);
c5aa993b 290
c906108c
SS
291 /* For a pointer to char or unsigned char, also print the string
292 pointed to, unless pointer is null. */
293 if (TYPE_LENGTH (elttype) == 1
294 && TYPE_CODE (elttype) == TYPE_CODE_INT
79a45b7d 295 && (options->format == 0 || options->format == 's')
c906108c 296 && addr != 0)
6c7a06a3 297 i = val_print_string (TYPE_TARGET_TYPE (type), addr, -1, stream,
79a45b7d 298 options);
c5aa993b 299
7e86466e
RH
300 /* Return number of characters printed, including the terminating
301 '\0' if we reached the end. val_print_string takes care including
302 the terminating '\0' if necessary. */
303 return i;
304 }
305 break;
306
307 case TYPE_CODE_REF:
308 elttype = check_typedef (TYPE_TARGET_TYPE (type));
79a45b7d 309 if (options->addressprint)
7e86466e
RH
310 {
311 CORE_ADDR addr
312 = extract_typed_address (valaddr + embedded_offset, type);
313 fprintf_filtered (stream, "@");
ed49a04f 314 fputs_filtered (paddress (addr), stream);
79a45b7d 315 if (options->deref_ref)
7e86466e
RH
316 fputs_filtered (": ", stream);
317 }
318 /* De-reference the reference. */
79a45b7d 319 if (options->deref_ref)
7e86466e
RH
320 {
321 if (TYPE_CODE (elttype) != TYPE_CODE_UNDEF)
322 {
323 struct value *deref_val =
324 value_at
325 (TYPE_TARGET_TYPE (type),
d8631d21 326 unpack_pointer (type, valaddr + embedded_offset));
79a45b7d
TT
327 common_val_print (deref_val, stream, recurse,
328 options, current_language);
7e86466e
RH
329 }
330 else
331 fputs_filtered ("???", stream);
c906108c
SS
332 }
333 break;
c5aa993b 334
c906108c 335 case TYPE_CODE_FUNC:
79a45b7d 336 if (options->format)
c906108c 337 {
79a45b7d 338 print_scalar_formatted (valaddr, type, options, 0, stream);
c906108c
SS
339 break;
340 }
341 /* FIXME, we should consider, at least for ANSI C language, eliminating
c5aa993b 342 the distinction made between FUNCs and POINTERs to FUNCs. */
c906108c
SS
343 fprintf_filtered (stream, "{");
344 type_print (type, "", stream, -1);
345 fprintf_filtered (stream, "} ");
346 /* Try to print what function it points to, and its address. */
347 print_address_demangle (address, stream, demangle);
348 break;
c5aa993b 349
c906108c 350 case TYPE_CODE_INT:
79a45b7d
TT
351 if (options->format || options->output_format)
352 {
353 struct value_print_options opts = *options;
354 opts.format = (options->format ? options->format
355 : options->output_format);
356 print_scalar_formatted (valaddr, type, &opts, 0, stream);
357 }
c906108c
SS
358 else
359 {
360 val_print_type_code_int (type, valaddr, stream);
361 /* C and C++ has no single byte int type, char is used instead.
362 Since we don't know whether the value is really intended to
363 be used as an integer or a character, print the character
364 equivalent as well. */
365 if (TYPE_LENGTH (type) == 1)
366 {
367 fputs_filtered (" ", stream);
368 LA_PRINT_CHAR ((unsigned char) unpack_long (type, valaddr),
6c7a06a3 369 type, stream);
c906108c
SS
370 }
371 }
372 break;
c5aa993b 373
4f2aea11 374 case TYPE_CODE_FLAGS:
79a45b7d
TT
375 if (options->format)
376 print_scalar_formatted (valaddr, type, options, 0, stream);
4f2aea11
MK
377 else
378 val_print_type_code_flags (type, valaddr, stream);
379 break;
380
c906108c 381 case TYPE_CODE_FLT:
79a45b7d
TT
382 if (options->format)
383 print_scalar_formatted (valaddr, type, options, 0, stream);
c906108c
SS
384 else
385 print_floating (valaddr, type, stream);
386 break;
c5aa993b 387
c906108c
SS
388 case TYPE_CODE_VOID:
389 fprintf_filtered (stream, "VOID");
390 break;
c5aa993b 391
c906108c
SS
392 case TYPE_CODE_ERROR:
393 fprintf_filtered (stream, "<error type>");
394 break;
c5aa993b 395
c906108c
SS
396 case TYPE_CODE_RANGE:
397 /* FIXME, we should not ever have to print one of these yet. */
398 fprintf_filtered (stream, "<range type>");
399 break;
c5aa993b 400
c906108c 401 case TYPE_CODE_BOOL:
79a45b7d
TT
402 if (options->format || options->output_format)
403 {
404 struct value_print_options opts = *options;
405 opts.format = (options->format ? options->format
406 : options->output_format);
407 print_scalar_formatted (valaddr, type, &opts, 0, stream);
408 }
c906108c
SS
409 else
410 {
b806fb9a 411 val = extract_unsigned_integer (valaddr, TYPE_LENGTH (type));
c5aa993b
JM
412
413 if (val == 0)
c906108c 414 fprintf_filtered (stream, ".FALSE.");
c5aa993b
JM
415 else if (val == 1)
416 fprintf_filtered (stream, ".TRUE.");
417 else
418 /* Not a legitimate logical type, print as an integer. */
419 {
420 /* Bash the type code temporarily. */
421 TYPE_CODE (type) = TYPE_CODE_INT;
79a45b7d 422 f_val_print (type, valaddr, 0, address, stream, recurse, options);
c5aa993b
JM
423 /* Restore the type code so later uses work as intended. */
424 TYPE_CODE (type) = TYPE_CODE_BOOL;
425 }
c906108c
SS
426 }
427 break;
c5aa993b 428
c906108c 429 case TYPE_CODE_COMPLEX:
b806fb9a 430 type = TYPE_TARGET_TYPE (type);
c906108c
SS
431 fputs_filtered ("(", stream);
432 print_floating (valaddr, type, stream);
433 fputs_filtered (",", stream);
9af97293 434 print_floating (valaddr + TYPE_LENGTH (type), type, stream);
c906108c
SS
435 fputs_filtered (")", stream);
436 break;
c5aa993b 437
c906108c
SS
438 case TYPE_CODE_UNDEF:
439 /* This happens (without TYPE_FLAG_STUB set) on systems which don't use
c5aa993b
JM
440 dbx xrefs (NO_DBX_XREFS in gcc) if a file has a "struct foo *bar"
441 and no complete type for struct foo in that file. */
c906108c
SS
442 fprintf_filtered (stream, "<incomplete type>");
443 break;
c5aa993b 444
2a5e440c 445 case TYPE_CODE_STRUCT:
9eec4d1e 446 case TYPE_CODE_UNION:
2a5e440c
WZ
447 /* Starting from the Fortran 90 standard, Fortran supports derived
448 types. */
9eec4d1e 449 fprintf_filtered (stream, "( ");
2a5e440c
WZ
450 for (index = 0; index < TYPE_NFIELDS (type); index++)
451 {
452 int offset = TYPE_FIELD_BITPOS (type, index) / 8;
453 f_val_print (TYPE_FIELD_TYPE (type, index), valaddr + offset,
79a45b7d 454 embedded_offset, address, stream, recurse, options);
2a5e440c
WZ
455 if (index != TYPE_NFIELDS (type) - 1)
456 fputs_filtered (", ", stream);
457 }
9eec4d1e 458 fprintf_filtered (stream, " )");
2a5e440c
WZ
459 break;
460
c906108c 461 default:
8a3fe4f8 462 error (_("Invalid F77 type code %d in symbol table."), TYPE_CODE (type));
c906108c
SS
463 }
464 gdb_flush (stream);
465 return 0;
466}
467
468static void
fba45db2 469list_all_visible_commons (char *funname)
c906108c 470{
c5aa993b
JM
471 SAVED_F77_COMMON_PTR tmp;
472
c906108c 473 tmp = head_common_list;
c5aa993b 474
a3f17187 475 printf_filtered (_("All COMMON blocks visible at this level:\n\n"));
c5aa993b 476
c906108c
SS
477 while (tmp != NULL)
478 {
762f08a3 479 if (strcmp (tmp->owning_function, funname) == 0)
c5aa993b
JM
480 printf_filtered ("%s\n", tmp->name);
481
c906108c
SS
482 tmp = tmp->next;
483 }
484}
485
486/* This function is used to print out the values in a given COMMON
487 block. It will always use the most local common block of the
c5aa993b 488 given name */
c906108c 489
c5aa993b 490static void
fba45db2 491info_common_command (char *comname, int from_tty)
c906108c 492{
c5aa993b
JM
493 SAVED_F77_COMMON_PTR the_common;
494 COMMON_ENTRY_PTR entry;
c906108c 495 struct frame_info *fi;
52f0bd74 496 char *funname = 0;
c906108c 497 struct symbol *func;
c5aa993b 498
c906108c
SS
499 /* We have been told to display the contents of F77 COMMON
500 block supposedly visible in this function. Let us
501 first make sure that it is visible and if so, let
c5aa993b
JM
502 us display its contents */
503
206415a3 504 fi = get_selected_frame (_("No frame selected"));
c5aa993b 505
c906108c 506 /* The following is generally ripped off from stack.c's routine
c5aa993b
JM
507 print_frame_info() */
508
bdd78e62 509 func = find_pc_function (get_frame_pc (fi));
c906108c
SS
510 if (func)
511 {
512 /* In certain pathological cases, the symtabs give the wrong
c5aa993b
JM
513 function (when we are in the first function in a file which
514 is compiled without debugging symbols, the previous function
515 is compiled with debugging symbols, and the "foo.o" symbol
516 that is supposed to tell us where the file with debugging symbols
517 ends has been truncated by ar because it is longer than 15
518 characters).
519
520 So look in the minimal symbol tables as well, and if it comes
521 up with a larger address for the function use that instead.
522 I don't think this can ever cause any problems; there shouldn't
523 be any minimal symbols in the middle of a function.
524 FIXME: (Not necessarily true. What about text labels) */
525
7c6e0d48
MS
526 struct minimal_symbol *msymbol =
527 lookup_minimal_symbol_by_pc (get_frame_pc (fi));
c5aa993b 528
c906108c 529 if (msymbol != NULL
c5aa993b 530 && (SYMBOL_VALUE_ADDRESS (msymbol)
c906108c 531 > BLOCK_START (SYMBOL_BLOCK_VALUE (func))))
3567439c 532 funname = SYMBOL_LINKAGE_NAME (msymbol);
c906108c 533 else
3567439c 534 funname = SYMBOL_LINKAGE_NAME (func);
c906108c
SS
535 }
536 else
537 {
aa1ee363 538 struct minimal_symbol *msymbol =
bdd78e62 539 lookup_minimal_symbol_by_pc (get_frame_pc (fi));
c5aa993b 540
c906108c 541 if (msymbol != NULL)
3567439c 542 funname = SYMBOL_LINKAGE_NAME (msymbol);
7c6e0d48
MS
543 else /* Got no 'funname', code below will fail. */
544 error (_("No function found for frame."));
c906108c 545 }
c5aa993b 546
c906108c 547 /* If comname is NULL, we assume the user wishes to see the
c5aa993b
JM
548 which COMMON blocks are visible here and then return */
549
c906108c
SS
550 if (comname == 0)
551 {
552 list_all_visible_commons (funname);
c5aa993b 553 return;
c906108c 554 }
c5aa993b
JM
555
556 the_common = find_common_for_function (comname, funname);
557
c906108c
SS
558 if (the_common)
559 {
762f08a3 560 if (strcmp (comname, BLANK_COMMON_NAME_LOCAL) == 0)
a3f17187 561 printf_filtered (_("Contents of blank COMMON block:\n"));
c5aa993b 562 else
a3f17187 563 printf_filtered (_("Contents of F77 COMMON block '%s':\n"), comname);
c5aa993b
JM
564
565 printf_filtered ("\n");
566 entry = the_common->entries;
567
c906108c
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568 while (entry != NULL)
569 {
aad95b57 570 print_variable_and_value (NULL, entry->symbol, fi, gdb_stdout, 0);
c5aa993b 571 entry = entry->next;
c906108c
SS
572 }
573 }
c5aa993b 574 else
a3f17187 575 printf_filtered (_("Cannot locate the common block %s in function '%s'\n"),
c5aa993b 576 comname, funname);
c906108c
SS
577}
578
579/* This function is used to determine whether there is a
c5aa993b 580 F77 common block visible at the current scope called 'comname'. */
c906108c
SS
581
582#if 0
583static int
fba45db2 584there_is_a_visible_common_named (char *comname)
c906108c 585{
c5aa993b 586 SAVED_F77_COMMON_PTR the_common;
c906108c 587 struct frame_info *fi;
52f0bd74 588 char *funname = 0;
c906108c 589 struct symbol *func;
c5aa993b 590
c906108c 591 if (comname == NULL)
8a3fe4f8 592 error (_("Cannot deal with NULL common name!"));
c5aa993b 593
206415a3 594 fi = get_selected_frame (_("No frame selected"));
c5aa993b 595
c906108c 596 /* The following is generally ripped off from stack.c's routine
c5aa993b
JM
597 print_frame_info() */
598
c906108c
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599 func = find_pc_function (fi->pc);
600 if (func)
601 {
602 /* In certain pathological cases, the symtabs give the wrong
c5aa993b
JM
603 function (when we are in the first function in a file which
604 is compiled without debugging symbols, the previous function
605 is compiled with debugging symbols, and the "foo.o" symbol
606 that is supposed to tell us where the file with debugging symbols
607 ends has been truncated by ar because it is longer than 15
608 characters).
609
610 So look in the minimal symbol tables as well, and if it comes
611 up with a larger address for the function use that instead.
612 I don't think this can ever cause any problems; there shouldn't
613 be any minimal symbols in the middle of a function.
614 FIXME: (Not necessarily true. What about text labels) */
615
c906108c 616 struct minimal_symbol *msymbol = lookup_minimal_symbol_by_pc (fi->pc);
c5aa993b 617
c906108c 618 if (msymbol != NULL
c5aa993b 619 && (SYMBOL_VALUE_ADDRESS (msymbol)
c906108c 620 > BLOCK_START (SYMBOL_BLOCK_VALUE (func))))
3567439c 621 funname = SYMBOL_LINKAGE_NAME (msymbol);
c906108c 622 else
3567439c 623 funname = SYMBOL_LINKAGE_NAME (func);
c906108c
SS
624 }
625 else
626 {
aa1ee363 627 struct minimal_symbol *msymbol =
c5aa993b
JM
628 lookup_minimal_symbol_by_pc (fi->pc);
629
c906108c 630 if (msymbol != NULL)
3567439c 631 funname = SYMBOL_LINKAGE_NAME (msymbol);
c906108c 632 }
c5aa993b
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633
634 the_common = find_common_for_function (comname, funname);
635
c906108c
SS
636 return (the_common ? 1 : 0);
637}
638#endif
639
640void
fba45db2 641_initialize_f_valprint (void)
c906108c
SS
642{
643 add_info ("common", info_common_command,
1bedd215 644 _("Print out the values contained in a Fortran COMMON block."));
c906108c 645 if (xdb_commands)
c5aa993b 646 add_com ("lc", class_info, info_common_command,
1bedd215 647 _("Print out the values contained in a Fortran COMMON block."));
c906108c 648}
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