Remove parameter valaddr from la_val_print
[deliverable/binutils-gdb.git] / gdb / m2-valprint.c
1 /* Support for printing Modula 2 values for GDB, the GNU debugger.
2
3 Copyright (C) 1986-2016 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "symtab.h"
22 #include "gdbtypes.h"
23 #include "expression.h"
24 #include "value.h"
25 #include "valprint.h"
26 #include "language.h"
27 #include "typeprint.h"
28 #include "c-lang.h"
29 #include "m2-lang.h"
30 #include "target.h"
31
32 static int print_unpacked_pointer (struct type *type,
33 CORE_ADDR address, CORE_ADDR addr,
34 const struct value_print_options *options,
35 struct ui_file *stream);
36 static void
37 m2_print_array_contents (struct type *type, const gdb_byte *valaddr,
38 int embedded_offset, CORE_ADDR address,
39 struct ui_file *stream, int recurse,
40 struct value *val,
41 const struct value_print_options *options,
42 int len);
43
44
45 /* get_long_set_bounds - assigns the bounds of the long set to low and
46 high. */
47
48 int
49 get_long_set_bounds (struct type *type, LONGEST *low, LONGEST *high)
50 {
51 int len, i;
52
53 if (TYPE_CODE (type) == TYPE_CODE_STRUCT)
54 {
55 len = TYPE_NFIELDS (type);
56 i = TYPE_N_BASECLASSES (type);
57 if (len == 0)
58 return 0;
59 *low = TYPE_LOW_BOUND (TYPE_INDEX_TYPE (TYPE_FIELD_TYPE (type, i)));
60 *high = TYPE_HIGH_BOUND (TYPE_INDEX_TYPE (TYPE_FIELD_TYPE (type,
61 len-1)));
62 return 1;
63 }
64 error (_("expecting long_set"));
65 return 0;
66 }
67
68 static void
69 m2_print_long_set (struct type *type, const gdb_byte *valaddr,
70 int embedded_offset, CORE_ADDR address,
71 struct ui_file *stream)
72 {
73 int empty_set = 1;
74 int element_seen = 0;
75 LONGEST previous_low = 0;
76 LONGEST previous_high= 0;
77 LONGEST i, low_bound, high_bound;
78 LONGEST field_low, field_high;
79 struct type *range;
80 int len, field;
81 struct type *target;
82 int bitval;
83
84 type = check_typedef (type);
85
86 fprintf_filtered (stream, "{");
87 len = TYPE_NFIELDS (type);
88 if (get_long_set_bounds (type, &low_bound, &high_bound))
89 {
90 field = TYPE_N_BASECLASSES (type);
91 range = TYPE_INDEX_TYPE (TYPE_FIELD_TYPE (type, field));
92 }
93 else
94 {
95 fprintf_filtered (stream, " %s }", _("<unknown bounds of set>"));
96 return;
97 }
98
99 target = TYPE_TARGET_TYPE (range);
100
101 if (get_discrete_bounds (range, &field_low, &field_high) >= 0)
102 {
103 for (i = low_bound; i <= high_bound; i++)
104 {
105 bitval = value_bit_index (TYPE_FIELD_TYPE (type, field),
106 (TYPE_FIELD_BITPOS (type, field) / 8) +
107 valaddr + embedded_offset, i);
108 if (bitval < 0)
109 error (_("bit test is out of range"));
110 else if (bitval > 0)
111 {
112 previous_high = i;
113 if (! element_seen)
114 {
115 if (! empty_set)
116 fprintf_filtered (stream, ", ");
117 print_type_scalar (target, i, stream);
118 empty_set = 0;
119 element_seen = 1;
120 previous_low = i;
121 }
122 }
123 else
124 {
125 /* bit is not set */
126 if (element_seen)
127 {
128 if (previous_low+1 < previous_high)
129 fprintf_filtered (stream, "..");
130 if (previous_low+1 < previous_high)
131 print_type_scalar (target, previous_high, stream);
132 element_seen = 0;
133 }
134 }
135 if (i == field_high)
136 {
137 field++;
138 if (field == len)
139 break;
140 range = TYPE_INDEX_TYPE (TYPE_FIELD_TYPE (type, field));
141 if (get_discrete_bounds (range, &field_low, &field_high) < 0)
142 break;
143 target = TYPE_TARGET_TYPE (range);
144 }
145 }
146 if (element_seen)
147 {
148 if (previous_low+1 < previous_high)
149 {
150 fprintf_filtered (stream, "..");
151 print_type_scalar (target, previous_high, stream);
152 }
153 element_seen = 0;
154 }
155 fprintf_filtered (stream, "}");
156 }
157 }
158
159 static void
160 m2_print_unbounded_array (struct type *type, const gdb_byte *valaddr,
161 int embedded_offset, CORE_ADDR address,
162 struct ui_file *stream, int recurse,
163 const struct value_print_options *options)
164 {
165 CORE_ADDR addr;
166 LONGEST len;
167 struct value *val;
168
169 type = check_typedef (type);
170
171 addr = unpack_pointer (TYPE_FIELD_TYPE (type, 0),
172 (TYPE_FIELD_BITPOS (type, 0) / 8) +
173 valaddr + embedded_offset);
174
175 val = value_at_lazy (TYPE_TARGET_TYPE (TYPE_FIELD_TYPE (type, 0)),
176 addr);
177 len = unpack_field_as_long (type, valaddr + embedded_offset, 1);
178
179 fprintf_filtered (stream, "{");
180 m2_print_array_contents (value_type (val),
181 value_contents_for_printing (val),
182 value_embedded_offset (val), addr, stream,
183 recurse, val, options, len);
184 fprintf_filtered (stream, ", HIGH = %d}", (int) len);
185 }
186
187 static int
188 print_unpacked_pointer (struct type *type,
189 CORE_ADDR address, CORE_ADDR addr,
190 const struct value_print_options *options,
191 struct ui_file *stream)
192 {
193 struct gdbarch *gdbarch = get_type_arch (type);
194 struct type *elttype = check_typedef (TYPE_TARGET_TYPE (type));
195 int want_space = 0;
196
197 if (TYPE_CODE (elttype) == TYPE_CODE_FUNC)
198 {
199 /* Try to print what function it points to. */
200 print_function_pointer_address (options, gdbarch, addr, stream);
201 /* Return value is irrelevant except for string pointers. */
202 return 0;
203 }
204
205 if (options->addressprint && options->format != 's')
206 {
207 fputs_filtered (paddress (gdbarch, address), stream);
208 want_space = 1;
209 }
210
211 /* For a pointer to char or unsigned char, also print the string
212 pointed to, unless pointer is null. */
213
214 if (TYPE_LENGTH (elttype) == 1
215 && TYPE_CODE (elttype) == TYPE_CODE_INT
216 && (options->format == 0 || options->format == 's')
217 && addr != 0)
218 {
219 if (want_space)
220 fputs_filtered (" ", stream);
221 return val_print_string (TYPE_TARGET_TYPE (type), NULL, addr, -1,
222 stream, options);
223 }
224
225 return 0;
226 }
227
228 static void
229 print_variable_at_address (struct type *type,
230 const gdb_byte *valaddr,
231 struct ui_file *stream,
232 int recurse,
233 const struct value_print_options *options)
234 {
235 struct gdbarch *gdbarch = get_type_arch (type);
236 CORE_ADDR addr = unpack_pointer (type, valaddr);
237 struct type *elttype = check_typedef (TYPE_TARGET_TYPE (type));
238
239 fprintf_filtered (stream, "[");
240 fputs_filtered (paddress (gdbarch, addr), stream);
241 fprintf_filtered (stream, "] : ");
242
243 if (TYPE_CODE (elttype) != TYPE_CODE_UNDEF)
244 {
245 struct value *deref_val =
246 value_at (TYPE_TARGET_TYPE (type), unpack_pointer (type, valaddr));
247
248 common_val_print (deref_val, stream, recurse, options, current_language);
249 }
250 else
251 fputs_filtered ("???", stream);
252 }
253
254
255 /* m2_print_array_contents - prints out the contents of an
256 array up to a max_print values.
257 It prints arrays of char as a string
258 and all other data types as comma
259 separated values. */
260
261 static void
262 m2_print_array_contents (struct type *type, const gdb_byte *valaddr,
263 int embedded_offset, CORE_ADDR address,
264 struct ui_file *stream, int recurse,
265 struct value *val,
266 const struct value_print_options *options,
267 int len)
268 {
269 type = check_typedef (type);
270
271 if (TYPE_LENGTH (type) > 0)
272 {
273 if (options->prettyformat_arrays)
274 print_spaces_filtered (2 + 2 * recurse, stream);
275 /* For an array of chars, print with string syntax. */
276 if (TYPE_LENGTH (type) == 1 &&
277 ((TYPE_CODE (type) == TYPE_CODE_INT)
278 || ((current_language->la_language == language_m2)
279 && (TYPE_CODE (type) == TYPE_CODE_CHAR)))
280 && (options->format == 0 || options->format == 's'))
281 val_print_string (type, NULL, address, len+1, stream, options);
282 else
283 {
284 fprintf_filtered (stream, "{");
285 val_print_array_elements (type, embedded_offset,
286 address, stream, recurse, val,
287 options, 0);
288 fprintf_filtered (stream, "}");
289 }
290 }
291 }
292
293 /* Decorations for Modula 2. */
294
295 static const struct generic_val_print_decorations m2_decorations =
296 {
297 "",
298 " + ",
299 " * I",
300 "TRUE",
301 "FALSE",
302 "void",
303 "{",
304 "}"
305 };
306
307 /* See val_print for a description of the various parameters of this
308 function; they are identical. */
309
310 void
311 m2_val_print (struct type *type, int embedded_offset,
312 CORE_ADDR address, struct ui_file *stream, int recurse,
313 struct value *original_value,
314 const struct value_print_options *options)
315 {
316 struct gdbarch *gdbarch = get_type_arch (type);
317 unsigned len;
318 struct type *elttype;
319 CORE_ADDR addr;
320 const gdb_byte *valaddr = value_contents_for_printing (original_value);
321
322 type = check_typedef (type);
323 switch (TYPE_CODE (type))
324 {
325 case TYPE_CODE_ARRAY:
326 if (TYPE_LENGTH (type) > 0 && TYPE_LENGTH (TYPE_TARGET_TYPE (type)) > 0)
327 {
328 elttype = check_typedef (TYPE_TARGET_TYPE (type));
329 len = TYPE_LENGTH (type) / TYPE_LENGTH (elttype);
330 if (options->prettyformat_arrays)
331 print_spaces_filtered (2 + 2 * recurse, stream);
332 /* For an array of chars, print with string syntax. */
333 if (TYPE_LENGTH (elttype) == 1 &&
334 ((TYPE_CODE (elttype) == TYPE_CODE_INT)
335 || ((current_language->la_language == language_m2)
336 && (TYPE_CODE (elttype) == TYPE_CODE_CHAR)))
337 && (options->format == 0 || options->format == 's'))
338 {
339 /* If requested, look for the first null char and only print
340 elements up to it. */
341 if (options->stop_print_at_null)
342 {
343 unsigned int temp_len;
344
345 /* Look for a NULL char. */
346 for (temp_len = 0;
347 (valaddr + embedded_offset)[temp_len]
348 && temp_len < len && temp_len < options->print_max;
349 temp_len++);
350 len = temp_len;
351 }
352
353 LA_PRINT_STRING (stream, TYPE_TARGET_TYPE (type),
354 valaddr + embedded_offset, len, NULL,
355 0, options);
356 }
357 else
358 {
359 fprintf_filtered (stream, "{");
360 val_print_array_elements (type, embedded_offset,
361 address, stream,
362 recurse, original_value,
363 options, 0);
364 fprintf_filtered (stream, "}");
365 }
366 break;
367 }
368 /* Array of unspecified length: treat like pointer to first elt. */
369 print_unpacked_pointer (type, address, address, options, stream);
370 break;
371
372 case TYPE_CODE_PTR:
373 if (TYPE_CONST (type))
374 print_variable_at_address (type, valaddr + embedded_offset,
375 stream, recurse, options);
376 else if (options->format && options->format != 's')
377 val_print_scalar_formatted (type, embedded_offset,
378 original_value, options, 0, stream);
379 else
380 {
381 addr = unpack_pointer (type, valaddr + embedded_offset);
382 print_unpacked_pointer (type, addr, address, options, stream);
383 }
384 break;
385
386 case TYPE_CODE_UNION:
387 if (recurse && !options->unionprint)
388 {
389 fprintf_filtered (stream, "{...}");
390 break;
391 }
392 /* Fall through. */
393 case TYPE_CODE_STRUCT:
394 if (m2_is_long_set (type))
395 m2_print_long_set (type, valaddr, embedded_offset, address,
396 stream);
397 else if (m2_is_unbounded_array (type))
398 m2_print_unbounded_array (type, valaddr, embedded_offset,
399 address, stream, recurse, options);
400 else
401 cp_print_value_fields (type, type, valaddr, embedded_offset,
402 address, stream, recurse, original_value,
403 options, NULL, 0);
404 break;
405
406 case TYPE_CODE_SET:
407 elttype = TYPE_INDEX_TYPE (type);
408 elttype = check_typedef (elttype);
409 if (TYPE_STUB (elttype))
410 {
411 fprintf_filtered (stream, _("<incomplete type>"));
412 gdb_flush (stream);
413 break;
414 }
415 else
416 {
417 struct type *range = elttype;
418 LONGEST low_bound, high_bound;
419 int i;
420 int need_comma = 0;
421
422 fputs_filtered ("{", stream);
423
424 i = get_discrete_bounds (range, &low_bound, &high_bound);
425 maybe_bad_bstring:
426 if (i < 0)
427 {
428 fputs_filtered (_("<error value>"), stream);
429 goto done;
430 }
431
432 for (i = low_bound; i <= high_bound; i++)
433 {
434 int element = value_bit_index (type, valaddr + embedded_offset,
435 i);
436
437 if (element < 0)
438 {
439 i = element;
440 goto maybe_bad_bstring;
441 }
442 if (element)
443 {
444 if (need_comma)
445 fputs_filtered (", ", stream);
446 print_type_scalar (range, i, stream);
447 need_comma = 1;
448
449 if (i + 1 <= high_bound
450 && value_bit_index (type, valaddr + embedded_offset,
451 ++i))
452 {
453 int j = i;
454
455 fputs_filtered ("..", stream);
456 while (i + 1 <= high_bound
457 && value_bit_index (type,
458 valaddr + embedded_offset,
459 ++i))
460 j = i;
461 print_type_scalar (range, j, stream);
462 }
463 }
464 }
465 done:
466 fputs_filtered ("}", stream);
467 }
468 break;
469
470 case TYPE_CODE_RANGE:
471 if (TYPE_LENGTH (type) == TYPE_LENGTH (TYPE_TARGET_TYPE (type)))
472 {
473 m2_val_print (TYPE_TARGET_TYPE (type), embedded_offset,
474 address, stream, recurse, original_value, options);
475 break;
476 }
477 /* FIXME: create_static_range_type does not set the unsigned bit in a
478 range type (I think it probably should copy it from the target
479 type), so we won't print values which are too large to
480 fit in a signed integer correctly. */
481 /* FIXME: Doesn't handle ranges of enums correctly. (Can't just
482 print with the target type, though, because the size of our type
483 and the target type might differ). */
484 /* FALLTHROUGH */
485
486 case TYPE_CODE_REF:
487 case TYPE_CODE_ENUM:
488 case TYPE_CODE_FUNC:
489 case TYPE_CODE_INT:
490 case TYPE_CODE_FLT:
491 case TYPE_CODE_METHOD:
492 case TYPE_CODE_VOID:
493 case TYPE_CODE_ERROR:
494 case TYPE_CODE_UNDEF:
495 case TYPE_CODE_BOOL:
496 case TYPE_CODE_CHAR:
497 default:
498 generic_val_print (type, embedded_offset, address,
499 stream, recurse, original_value, options,
500 &m2_decorations);
501 break;
502 }
503 gdb_flush (stream);
504 }
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