a1001992fcb00cc4cc72b32520d17a30c5884b67
[deliverable/binutils-gdb.git] / gdb / c-lang.c
1 /* C language support routines for GDB, the GNU debugger.
2
3 Copyright (C) 1992-2017 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 "parser-defs.h"
25 #include "language.h"
26 #include "varobj.h"
27 #include "c-lang.h"
28 #include "valprint.h"
29 #include "macroscope.h"
30 #include "charset.h"
31 #include "demangle.h"
32 #include "cp-abi.h"
33 #include "cp-support.h"
34 #include "gdb_obstack.h"
35 #include <ctype.h>
36 #include "gdbcore.h"
37
38 extern void _initialize_c_language (void);
39
40 /* Given a C string type, STR_TYPE, return the corresponding target
41 character set name. */
42
43 static const char *
44 charset_for_string_type (c_string_type str_type, struct gdbarch *gdbarch)
45 {
46 switch (str_type & ~C_CHAR)
47 {
48 case C_STRING:
49 return target_charset (gdbarch);
50 case C_WIDE_STRING:
51 return target_wide_charset (gdbarch);
52 case C_STRING_16:
53 /* FIXME: UTF-16 is not always correct. */
54 if (gdbarch_byte_order (gdbarch) == BFD_ENDIAN_BIG)
55 return "UTF-16BE";
56 else
57 return "UTF-16LE";
58 case C_STRING_32:
59 /* FIXME: UTF-32 is not always correct. */
60 if (gdbarch_byte_order (gdbarch) == BFD_ENDIAN_BIG)
61 return "UTF-32BE";
62 else
63 return "UTF-32LE";
64 }
65 internal_error (__FILE__, __LINE__, _("unhandled c_string_type"));
66 }
67
68 /* Classify ELTTYPE according to what kind of character it is. Return
69 the enum constant representing the character type. Also set
70 *ENCODING to the name of the character set to use when converting
71 characters of this type in target BYTE_ORDER to the host character
72 set. */
73
74 static c_string_type
75 classify_type (struct type *elttype, struct gdbarch *gdbarch,
76 const char **encoding)
77 {
78 c_string_type result;
79
80 /* We loop because ELTTYPE may be a typedef, and we want to
81 successively peel each typedef until we reach a type we
82 understand. We don't use CHECK_TYPEDEF because that will strip
83 all typedefs at once -- but in C, wchar_t is itself a typedef, so
84 that would do the wrong thing. */
85 while (elttype)
86 {
87 const char *name = TYPE_NAME (elttype);
88
89 if (TYPE_CODE (elttype) == TYPE_CODE_CHAR || !name)
90 {
91 result = C_CHAR;
92 goto done;
93 }
94
95 if (!strcmp (name, "wchar_t"))
96 {
97 result = C_WIDE_CHAR;
98 goto done;
99 }
100
101 if (!strcmp (name, "char16_t"))
102 {
103 result = C_CHAR_16;
104 goto done;
105 }
106
107 if (!strcmp (name, "char32_t"))
108 {
109 result = C_CHAR_32;
110 goto done;
111 }
112
113 if (TYPE_CODE (elttype) != TYPE_CODE_TYPEDEF)
114 break;
115
116 /* Call for side effects. */
117 check_typedef (elttype);
118
119 if (TYPE_TARGET_TYPE (elttype))
120 elttype = TYPE_TARGET_TYPE (elttype);
121 else
122 {
123 /* Perhaps check_typedef did not update the target type. In
124 this case, force the lookup again and hope it works out.
125 It never will for C, but it might for C++. */
126 elttype = check_typedef (elttype);
127 }
128 }
129
130 /* Punt. */
131 result = C_CHAR;
132
133 done:
134 if (encoding)
135 *encoding = charset_for_string_type (result, gdbarch);
136
137 return result;
138 }
139
140 /* Print the character C on STREAM as part of the contents of a
141 literal string whose delimiter is QUOTER. Note that that format
142 for printing characters and strings is language specific. */
143
144 void
145 c_emit_char (int c, struct type *type,
146 struct ui_file *stream, int quoter)
147 {
148 const char *encoding;
149
150 classify_type (type, get_type_arch (type), &encoding);
151 generic_emit_char (c, type, stream, quoter, encoding);
152 }
153
154 void
155 c_printchar (int c, struct type *type, struct ui_file *stream)
156 {
157 c_string_type str_type;
158
159 str_type = classify_type (type, get_type_arch (type), NULL);
160 switch (str_type)
161 {
162 case C_CHAR:
163 break;
164 case C_WIDE_CHAR:
165 fputc_filtered ('L', stream);
166 break;
167 case C_CHAR_16:
168 fputc_filtered ('u', stream);
169 break;
170 case C_CHAR_32:
171 fputc_filtered ('U', stream);
172 break;
173 }
174
175 fputc_filtered ('\'', stream);
176 LA_EMIT_CHAR (c, type, stream, '\'');
177 fputc_filtered ('\'', stream);
178 }
179
180 /* Print the character string STRING, printing at most LENGTH
181 characters. LENGTH is -1 if the string is nul terminated. Each
182 character is WIDTH bytes long. Printing stops early if the number
183 hits print_max; repeat counts are printed as appropriate. Print
184 ellipses at the end if we had to stop before printing LENGTH
185 characters, or if FORCE_ELLIPSES. */
186
187 void
188 c_printstr (struct ui_file *stream, struct type *type,
189 const gdb_byte *string, unsigned int length,
190 const char *user_encoding, int force_ellipses,
191 const struct value_print_options *options)
192 {
193 c_string_type str_type;
194 const char *type_encoding;
195 const char *encoding;
196
197 str_type = (classify_type (type, get_type_arch (type), &type_encoding)
198 & ~C_CHAR);
199 switch (str_type)
200 {
201 case C_STRING:
202 break;
203 case C_WIDE_STRING:
204 fputs_filtered ("L", stream);
205 break;
206 case C_STRING_16:
207 fputs_filtered ("u", stream);
208 break;
209 case C_STRING_32:
210 fputs_filtered ("U", stream);
211 break;
212 }
213
214 encoding = (user_encoding && *user_encoding) ? user_encoding : type_encoding;
215
216 generic_printstr (stream, type, string, length, encoding, force_ellipses,
217 '"', 1, options);
218 }
219
220 /* Obtain a C string from the inferior storing it in a newly allocated
221 buffer in BUFFER, which should be freed by the caller. If the in-
222 and out-parameter *LENGTH is specified at -1, the string is read
223 until a null character of the appropriate width is found, otherwise
224 the string is read to the length of characters specified. The size
225 of a character is determined by the length of the target type of
226 the pointer or array.
227
228 If VALUE is an array with a known length, and *LENGTH is -1,
229 the function will not read past the end of the array. However, any
230 declared size of the array is ignored if *LENGTH > 0.
231
232 On completion, *LENGTH will be set to the size of the string read in
233 characters. (If a length of -1 is specified, the length returned
234 will not include the null character). CHARSET is always set to the
235 target charset. */
236
237 void
238 c_get_string (struct value *value, gdb_byte **buffer,
239 int *length, struct type **char_type,
240 const char **charset)
241 {
242 int err, width;
243 unsigned int fetchlimit;
244 struct type *type = check_typedef (value_type (value));
245 struct type *element_type = TYPE_TARGET_TYPE (type);
246 int req_length = *length;
247 enum bfd_endian byte_order
248 = gdbarch_byte_order (get_type_arch (type));
249
250 if (element_type == NULL)
251 goto error;
252
253 if (TYPE_CODE (type) == TYPE_CODE_ARRAY)
254 {
255 /* If we know the size of the array, we can use it as a limit on
256 the number of characters to be fetched. */
257 if (TYPE_NFIELDS (type) == 1
258 && TYPE_CODE (TYPE_FIELD_TYPE (type, 0)) == TYPE_CODE_RANGE)
259 {
260 LONGEST low_bound, high_bound;
261
262 get_discrete_bounds (TYPE_FIELD_TYPE (type, 0),
263 &low_bound, &high_bound);
264 fetchlimit = high_bound - low_bound + 1;
265 }
266 else
267 fetchlimit = UINT_MAX;
268 }
269 else if (TYPE_CODE (type) == TYPE_CODE_PTR)
270 fetchlimit = UINT_MAX;
271 else
272 /* We work only with arrays and pointers. */
273 goto error;
274
275 if (! c_textual_element_type (element_type, 0))
276 goto error;
277 classify_type (element_type, get_type_arch (element_type), charset);
278 width = TYPE_LENGTH (element_type);
279
280 /* If the string lives in GDB's memory instead of the inferior's,
281 then we just need to copy it to BUFFER. Also, since such strings
282 are arrays with known size, FETCHLIMIT will hold the size of the
283 array. */
284 if ((VALUE_LVAL (value) == not_lval
285 || VALUE_LVAL (value) == lval_internalvar)
286 && fetchlimit != UINT_MAX)
287 {
288 int i;
289 const gdb_byte *contents = value_contents (value);
290
291 /* If a length is specified, use that. */
292 if (*length >= 0)
293 i = *length;
294 else
295 /* Otherwise, look for a null character. */
296 for (i = 0; i < fetchlimit; i++)
297 if (extract_unsigned_integer (contents + i * width,
298 width, byte_order) == 0)
299 break;
300
301 /* I is now either a user-defined length, the number of non-null
302 characters, or FETCHLIMIT. */
303 *length = i * width;
304 *buffer = (gdb_byte *) xmalloc (*length);
305 memcpy (*buffer, contents, *length);
306 err = 0;
307 }
308 else
309 {
310 CORE_ADDR addr = value_as_address (value);
311
312 /* Prior to the fix for PR 16196 read_string would ignore fetchlimit
313 if length > 0. The old "broken" behaviour is the behaviour we want:
314 The caller may want to fetch 100 bytes from a variable length array
315 implemented using the common idiom of having an array of length 1 at
316 the end of a struct. In this case we want to ignore the declared
317 size of the array. However, it's counterintuitive to implement that
318 behaviour in read_string: what does fetchlimit otherwise mean if
319 length > 0. Therefore we implement the behaviour we want here:
320 If *length > 0, don't specify a fetchlimit. This preserves the
321 previous behaviour. We could move this check above where we know
322 whether the array is declared with a fixed size, but we only want
323 to apply this behaviour when calling read_string. PR 16286. */
324 if (*length > 0)
325 fetchlimit = UINT_MAX;
326
327 err = read_string (addr, *length, width, fetchlimit,
328 byte_order, buffer, length);
329 if (err != 0)
330 {
331 xfree (*buffer);
332 memory_error (TARGET_XFER_E_IO, addr);
333 }
334 }
335
336 /* If the LENGTH is specified at -1, we want to return the string
337 length up to the terminating null character. If an actual length
338 was specified, we want to return the length of exactly what was
339 read. */
340 if (req_length == -1)
341 /* If the last character is null, subtract it from LENGTH. */
342 if (*length > 0
343 && extract_unsigned_integer (*buffer + *length - width,
344 width, byte_order) == 0)
345 *length -= width;
346
347 /* The read_string function will return the number of bytes read.
348 If length returned from read_string was > 0, return the number of
349 characters read by dividing the number of bytes by width. */
350 if (*length != 0)
351 *length = *length / width;
352
353 *char_type = element_type;
354
355 return;
356
357 error:
358 {
359 std::string type_str = type_to_string (type);
360 if (!type_str.empty ())
361 {
362 error (_("Trying to read string with inappropriate type `%s'."),
363 type_str.c_str ());
364 }
365 else
366 error (_("Trying to read string with inappropriate type."));
367 }
368 }
369
370 \f
371 /* Evaluating C and C++ expressions. */
372
373 /* Convert a UCN. The digits of the UCN start at P and extend no
374 farther than LIMIT. DEST_CHARSET is the name of the character set
375 into which the UCN should be converted. The results are written to
376 OUTPUT. LENGTH is the maximum length of the UCN, either 4 or 8.
377 Returns a pointer to just after the final digit of the UCN. */
378
379 static char *
380 convert_ucn (char *p, char *limit, const char *dest_charset,
381 struct obstack *output, int length)
382 {
383 unsigned long result = 0;
384 gdb_byte data[4];
385 int i;
386
387 for (i = 0; i < length && p < limit && isxdigit (*p); ++i, ++p)
388 result = (result << 4) + host_hex_value (*p);
389
390 for (i = 3; i >= 0; --i)
391 {
392 data[i] = result & 0xff;
393 result >>= 8;
394 }
395
396 convert_between_encodings ("UTF-32BE", dest_charset, data,
397 4, 4, output, translit_none);
398
399 return p;
400 }
401
402 /* Emit a character, VALUE, which was specified numerically, to
403 OUTPUT. TYPE is the target character type. */
404
405 static void
406 emit_numeric_character (struct type *type, unsigned long value,
407 struct obstack *output)
408 {
409 gdb_byte *buffer;
410
411 buffer = (gdb_byte *) alloca (TYPE_LENGTH (type));
412 pack_long (buffer, type, value);
413 obstack_grow (output, buffer, TYPE_LENGTH (type));
414 }
415
416 /* Convert an octal escape sequence. TYPE is the target character
417 type. The digits of the escape sequence begin at P and extend no
418 farther than LIMIT. The result is written to OUTPUT. Returns a
419 pointer to just after the final digit of the escape sequence. */
420
421 static char *
422 convert_octal (struct type *type, char *p,
423 char *limit, struct obstack *output)
424 {
425 int i;
426 unsigned long value = 0;
427
428 for (i = 0;
429 i < 3 && p < limit && isdigit (*p) && *p != '8' && *p != '9';
430 ++i)
431 {
432 value = 8 * value + host_hex_value (*p);
433 ++p;
434 }
435
436 emit_numeric_character (type, value, output);
437
438 return p;
439 }
440
441 /* Convert a hex escape sequence. TYPE is the target character type.
442 The digits of the escape sequence begin at P and extend no farther
443 than LIMIT. The result is written to OUTPUT. Returns a pointer to
444 just after the final digit of the escape sequence. */
445
446 static char *
447 convert_hex (struct type *type, char *p,
448 char *limit, struct obstack *output)
449 {
450 unsigned long value = 0;
451
452 while (p < limit && isxdigit (*p))
453 {
454 value = 16 * value + host_hex_value (*p);
455 ++p;
456 }
457
458 emit_numeric_character (type, value, output);
459
460 return p;
461 }
462
463 #define ADVANCE \
464 do { \
465 ++p; \
466 if (p == limit) \
467 error (_("Malformed escape sequence")); \
468 } while (0)
469
470 /* Convert an escape sequence to a target format. TYPE is the target
471 character type to use, and DEST_CHARSET is the name of the target
472 character set. The backslash of the escape sequence is at *P, and
473 the escape sequence will not extend past LIMIT. The results are
474 written to OUTPUT. Returns a pointer to just past the final
475 character of the escape sequence. */
476
477 static char *
478 convert_escape (struct type *type, const char *dest_charset,
479 char *p, char *limit, struct obstack *output)
480 {
481 /* Skip the backslash. */
482 ADVANCE;
483
484 switch (*p)
485 {
486 case '\\':
487 obstack_1grow (output, '\\');
488 ++p;
489 break;
490
491 case 'x':
492 ADVANCE;
493 if (!isxdigit (*p))
494 error (_("\\x used with no following hex digits."));
495 p = convert_hex (type, p, limit, output);
496 break;
497
498 case '0':
499 case '1':
500 case '2':
501 case '3':
502 case '4':
503 case '5':
504 case '6':
505 case '7':
506 p = convert_octal (type, p, limit, output);
507 break;
508
509 case 'u':
510 case 'U':
511 {
512 int length = *p == 'u' ? 4 : 8;
513
514 ADVANCE;
515 if (!isxdigit (*p))
516 error (_("\\u used with no following hex digits"));
517 p = convert_ucn (p, limit, dest_charset, output, length);
518 }
519 }
520
521 return p;
522 }
523
524 /* Given a single string from a (C-specific) OP_STRING list, convert
525 it to a target string, handling escape sequences specially. The
526 output is written to OUTPUT. DATA is the input string, which has
527 length LEN. DEST_CHARSET is the name of the target character set,
528 and TYPE is the type of target character to use. */
529
530 static void
531 parse_one_string (struct obstack *output, char *data, int len,
532 const char *dest_charset, struct type *type)
533 {
534 char *limit;
535
536 limit = data + len;
537
538 while (data < limit)
539 {
540 char *p = data;
541
542 /* Look for next escape, or the end of the input. */
543 while (p < limit && *p != '\\')
544 ++p;
545 /* If we saw a run of characters, convert them all. */
546 if (p > data)
547 convert_between_encodings (host_charset (), dest_charset,
548 (gdb_byte *) data, p - data, 1,
549 output, translit_none);
550 /* If we saw an escape, convert it. */
551 if (p < limit)
552 p = convert_escape (type, dest_charset, p, limit, output);
553 data = p;
554 }
555 }
556
557 /* Expression evaluator for the C language family. Most operations
558 are delegated to evaluate_subexp_standard; see that function for a
559 description of the arguments. */
560
561 struct value *
562 evaluate_subexp_c (struct type *expect_type, struct expression *exp,
563 int *pos, enum noside noside)
564 {
565 enum exp_opcode op = exp->elts[*pos].opcode;
566
567 switch (op)
568 {
569 case OP_STRING:
570 {
571 int oplen, limit;
572 struct type *type;
573 struct obstack output;
574 struct cleanup *cleanup;
575 struct value *result;
576 c_string_type dest_type;
577 const char *dest_charset;
578 int satisfy_expected = 0;
579
580 obstack_init (&output);
581 cleanup = make_cleanup_obstack_free (&output);
582
583 ++*pos;
584 oplen = longest_to_int (exp->elts[*pos].longconst);
585
586 ++*pos;
587 limit = *pos + BYTES_TO_EXP_ELEM (oplen + 1);
588 dest_type = ((enum c_string_type_values)
589 longest_to_int (exp->elts[*pos].longconst));
590 switch (dest_type & ~C_CHAR)
591 {
592 case C_STRING:
593 type = language_string_char_type (exp->language_defn,
594 exp->gdbarch);
595 break;
596 case C_WIDE_STRING:
597 type = lookup_typename (exp->language_defn, exp->gdbarch,
598 "wchar_t", NULL, 0);
599 break;
600 case C_STRING_16:
601 type = lookup_typename (exp->language_defn, exp->gdbarch,
602 "char16_t", NULL, 0);
603 break;
604 case C_STRING_32:
605 type = lookup_typename (exp->language_defn, exp->gdbarch,
606 "char32_t", NULL, 0);
607 break;
608 default:
609 internal_error (__FILE__, __LINE__, _("unhandled c_string_type"));
610 }
611
612 /* Ensure TYPE_LENGTH is valid for TYPE. */
613 check_typedef (type);
614
615 /* If the caller expects an array of some integral type,
616 satisfy them. If something odder is expected, rely on the
617 caller to cast. */
618 if (expect_type && TYPE_CODE (expect_type) == TYPE_CODE_ARRAY)
619 {
620 struct type *element_type
621 = check_typedef (TYPE_TARGET_TYPE (expect_type));
622
623 if (TYPE_CODE (element_type) == TYPE_CODE_INT
624 || TYPE_CODE (element_type) == TYPE_CODE_CHAR)
625 {
626 type = element_type;
627 satisfy_expected = 1;
628 }
629 }
630
631 dest_charset = charset_for_string_type (dest_type, exp->gdbarch);
632
633 ++*pos;
634 while (*pos < limit)
635 {
636 int len;
637
638 len = longest_to_int (exp->elts[*pos].longconst);
639
640 ++*pos;
641 if (noside != EVAL_SKIP)
642 parse_one_string (&output, &exp->elts[*pos].string, len,
643 dest_charset, type);
644 *pos += BYTES_TO_EXP_ELEM (len);
645 }
646
647 /* Skip the trailing length and opcode. */
648 *pos += 2;
649
650 if (noside == EVAL_SKIP)
651 {
652 /* Return a dummy value of the appropriate type. */
653 if (expect_type != NULL)
654 result = allocate_value (expect_type);
655 else if ((dest_type & C_CHAR) != 0)
656 result = allocate_value (type);
657 else
658 result = value_cstring ("", 0, type);
659 do_cleanups (cleanup);
660 return result;
661 }
662
663 if ((dest_type & C_CHAR) != 0)
664 {
665 LONGEST value;
666
667 if (obstack_object_size (&output) != TYPE_LENGTH (type))
668 error (_("Could not convert character "
669 "constant to target character set"));
670 value = unpack_long (type, (gdb_byte *) obstack_base (&output));
671 result = value_from_longest (type, value);
672 }
673 else
674 {
675 int i;
676
677 /* Write the terminating character. */
678 for (i = 0; i < TYPE_LENGTH (type); ++i)
679 obstack_1grow (&output, 0);
680
681 if (satisfy_expected)
682 {
683 LONGEST low_bound, high_bound;
684 int element_size = TYPE_LENGTH (type);
685
686 if (get_discrete_bounds (TYPE_INDEX_TYPE (expect_type),
687 &low_bound, &high_bound) < 0)
688 {
689 low_bound = 0;
690 high_bound = (TYPE_LENGTH (expect_type) / element_size) - 1;
691 }
692 if (obstack_object_size (&output) / element_size
693 > (high_bound - low_bound + 1))
694 error (_("Too many array elements"));
695
696 result = allocate_value (expect_type);
697 memcpy (value_contents_raw (result), obstack_base (&output),
698 obstack_object_size (&output));
699 }
700 else
701 result = value_cstring ((const char *) obstack_base (&output),
702 obstack_object_size (&output),
703 type);
704 }
705 do_cleanups (cleanup);
706 return result;
707 }
708 break;
709
710 default:
711 break;
712 }
713 return evaluate_subexp_standard (expect_type, exp, pos, noside);
714 }
715
716
717 \f
718 /* Table mapping opcodes into strings for printing operators
719 and precedences of the operators. */
720
721 const struct op_print c_op_print_tab[] =
722 {
723 {",", BINOP_COMMA, PREC_COMMA, 0},
724 {"=", BINOP_ASSIGN, PREC_ASSIGN, 1},
725 {"||", BINOP_LOGICAL_OR, PREC_LOGICAL_OR, 0},
726 {"&&", BINOP_LOGICAL_AND, PREC_LOGICAL_AND, 0},
727 {"|", BINOP_BITWISE_IOR, PREC_BITWISE_IOR, 0},
728 {"^", BINOP_BITWISE_XOR, PREC_BITWISE_XOR, 0},
729 {"&", BINOP_BITWISE_AND, PREC_BITWISE_AND, 0},
730 {"==", BINOP_EQUAL, PREC_EQUAL, 0},
731 {"!=", BINOP_NOTEQUAL, PREC_EQUAL, 0},
732 {"<=", BINOP_LEQ, PREC_ORDER, 0},
733 {">=", BINOP_GEQ, PREC_ORDER, 0},
734 {">", BINOP_GTR, PREC_ORDER, 0},
735 {"<", BINOP_LESS, PREC_ORDER, 0},
736 {">>", BINOP_RSH, PREC_SHIFT, 0},
737 {"<<", BINOP_LSH, PREC_SHIFT, 0},
738 {"+", BINOP_ADD, PREC_ADD, 0},
739 {"-", BINOP_SUB, PREC_ADD, 0},
740 {"*", BINOP_MUL, PREC_MUL, 0},
741 {"/", BINOP_DIV, PREC_MUL, 0},
742 {"%", BINOP_REM, PREC_MUL, 0},
743 {"@", BINOP_REPEAT, PREC_REPEAT, 0},
744 {"+", UNOP_PLUS, PREC_PREFIX, 0},
745 {"-", UNOP_NEG, PREC_PREFIX, 0},
746 {"!", UNOP_LOGICAL_NOT, PREC_PREFIX, 0},
747 {"~", UNOP_COMPLEMENT, PREC_PREFIX, 0},
748 {"*", UNOP_IND, PREC_PREFIX, 0},
749 {"&", UNOP_ADDR, PREC_PREFIX, 0},
750 {"sizeof ", UNOP_SIZEOF, PREC_PREFIX, 0},
751 {"++", UNOP_PREINCREMENT, PREC_PREFIX, 0},
752 {"--", UNOP_PREDECREMENT, PREC_PREFIX, 0},
753 {NULL, OP_NULL, PREC_PREFIX, 0}
754 };
755 \f
756 enum c_primitive_types {
757 c_primitive_type_int,
758 c_primitive_type_long,
759 c_primitive_type_short,
760 c_primitive_type_char,
761 c_primitive_type_float,
762 c_primitive_type_double,
763 c_primitive_type_void,
764 c_primitive_type_long_long,
765 c_primitive_type_signed_char,
766 c_primitive_type_unsigned_char,
767 c_primitive_type_unsigned_short,
768 c_primitive_type_unsigned_int,
769 c_primitive_type_unsigned_long,
770 c_primitive_type_unsigned_long_long,
771 c_primitive_type_long_double,
772 c_primitive_type_complex,
773 c_primitive_type_double_complex,
774 c_primitive_type_decfloat,
775 c_primitive_type_decdouble,
776 c_primitive_type_declong,
777 nr_c_primitive_types
778 };
779
780 void
781 c_language_arch_info (struct gdbarch *gdbarch,
782 struct language_arch_info *lai)
783 {
784 const struct builtin_type *builtin = builtin_type (gdbarch);
785
786 lai->string_char_type = builtin->builtin_char;
787 lai->primitive_type_vector
788 = GDBARCH_OBSTACK_CALLOC (gdbarch, nr_c_primitive_types + 1,
789 struct type *);
790 lai->primitive_type_vector [c_primitive_type_int] = builtin->builtin_int;
791 lai->primitive_type_vector [c_primitive_type_long] = builtin->builtin_long;
792 lai->primitive_type_vector [c_primitive_type_short] = builtin->builtin_short;
793 lai->primitive_type_vector [c_primitive_type_char] = builtin->builtin_char;
794 lai->primitive_type_vector [c_primitive_type_float] = builtin->builtin_float;
795 lai->primitive_type_vector [c_primitive_type_double] = builtin->builtin_double;
796 lai->primitive_type_vector [c_primitive_type_void] = builtin->builtin_void;
797 lai->primitive_type_vector [c_primitive_type_long_long] = builtin->builtin_long_long;
798 lai->primitive_type_vector [c_primitive_type_signed_char] = builtin->builtin_signed_char;
799 lai->primitive_type_vector [c_primitive_type_unsigned_char] = builtin->builtin_unsigned_char;
800 lai->primitive_type_vector [c_primitive_type_unsigned_short] = builtin->builtin_unsigned_short;
801 lai->primitive_type_vector [c_primitive_type_unsigned_int] = builtin->builtin_unsigned_int;
802 lai->primitive_type_vector [c_primitive_type_unsigned_long] = builtin->builtin_unsigned_long;
803 lai->primitive_type_vector [c_primitive_type_unsigned_long_long] = builtin->builtin_unsigned_long_long;
804 lai->primitive_type_vector [c_primitive_type_long_double] = builtin->builtin_long_double;
805 lai->primitive_type_vector [c_primitive_type_complex] = builtin->builtin_complex;
806 lai->primitive_type_vector [c_primitive_type_double_complex] = builtin->builtin_double_complex;
807 lai->primitive_type_vector [c_primitive_type_decfloat] = builtin->builtin_decfloat;
808 lai->primitive_type_vector [c_primitive_type_decdouble] = builtin->builtin_decdouble;
809 lai->primitive_type_vector [c_primitive_type_declong] = builtin->builtin_declong;
810
811 lai->bool_type_default = builtin->builtin_int;
812 }
813
814 const struct exp_descriptor exp_descriptor_c =
815 {
816 print_subexp_standard,
817 operator_length_standard,
818 operator_check_standard,
819 op_name_standard,
820 dump_subexp_body_standard,
821 evaluate_subexp_c
822 };
823
824 static const char *c_extensions[] =
825 {
826 ".c", NULL
827 };
828
829 const struct language_defn c_language_defn =
830 {
831 "c", /* Language name */
832 "C",
833 language_c,
834 range_check_off,
835 case_sensitive_on,
836 array_row_major,
837 macro_expansion_c,
838 c_extensions,
839 &exp_descriptor_c,
840 c_parse,
841 c_yyerror,
842 null_post_parser,
843 c_printchar, /* Print a character constant */
844 c_printstr, /* Function to print string constant */
845 c_emit_char, /* Print a single char */
846 c_print_type, /* Print a type using appropriate syntax */
847 c_print_typedef, /* Print a typedef using appropriate syntax */
848 c_val_print, /* Print a value using appropriate syntax */
849 c_value_print, /* Print a top-level value */
850 default_read_var_value, /* la_read_var_value */
851 NULL, /* Language specific skip_trampoline */
852 NULL, /* name_of_this */
853 basic_lookup_symbol_nonlocal, /* lookup_symbol_nonlocal */
854 basic_lookup_transparent_type,/* lookup_transparent_type */
855 NULL, /* Language specific symbol demangler */
856 NULL,
857 NULL, /* Language specific
858 class_name_from_physname */
859 c_op_print_tab, /* expression operators for printing */
860 1, /* c-style arrays */
861 0, /* String lower bound */
862 default_word_break_characters,
863 default_make_symbol_completion_list,
864 c_language_arch_info,
865 default_print_array_index,
866 default_pass_by_reference,
867 c_get_string,
868 NULL, /* la_get_symbol_name_cmp */
869 iterate_over_symbols,
870 &c_varobj_ops,
871 c_get_compile_context,
872 c_compute_program,
873 LANG_MAGIC
874 };
875
876 enum cplus_primitive_types {
877 cplus_primitive_type_int,
878 cplus_primitive_type_long,
879 cplus_primitive_type_short,
880 cplus_primitive_type_char,
881 cplus_primitive_type_float,
882 cplus_primitive_type_double,
883 cplus_primitive_type_void,
884 cplus_primitive_type_long_long,
885 cplus_primitive_type_signed_char,
886 cplus_primitive_type_unsigned_char,
887 cplus_primitive_type_unsigned_short,
888 cplus_primitive_type_unsigned_int,
889 cplus_primitive_type_unsigned_long,
890 cplus_primitive_type_unsigned_long_long,
891 cplus_primitive_type_long_double,
892 cplus_primitive_type_complex,
893 cplus_primitive_type_double_complex,
894 cplus_primitive_type_bool,
895 cplus_primitive_type_decfloat,
896 cplus_primitive_type_decdouble,
897 cplus_primitive_type_declong,
898 nr_cplus_primitive_types
899 };
900
901 static void
902 cplus_language_arch_info (struct gdbarch *gdbarch,
903 struct language_arch_info *lai)
904 {
905 const struct builtin_type *builtin = builtin_type (gdbarch);
906
907 lai->string_char_type = builtin->builtin_char;
908 lai->primitive_type_vector
909 = GDBARCH_OBSTACK_CALLOC (gdbarch, nr_cplus_primitive_types + 1,
910 struct type *);
911 lai->primitive_type_vector [cplus_primitive_type_int]
912 = builtin->builtin_int;
913 lai->primitive_type_vector [cplus_primitive_type_long]
914 = builtin->builtin_long;
915 lai->primitive_type_vector [cplus_primitive_type_short]
916 = builtin->builtin_short;
917 lai->primitive_type_vector [cplus_primitive_type_char]
918 = builtin->builtin_char;
919 lai->primitive_type_vector [cplus_primitive_type_float]
920 = builtin->builtin_float;
921 lai->primitive_type_vector [cplus_primitive_type_double]
922 = builtin->builtin_double;
923 lai->primitive_type_vector [cplus_primitive_type_void]
924 = builtin->builtin_void;
925 lai->primitive_type_vector [cplus_primitive_type_long_long]
926 = builtin->builtin_long_long;
927 lai->primitive_type_vector [cplus_primitive_type_signed_char]
928 = builtin->builtin_signed_char;
929 lai->primitive_type_vector [cplus_primitive_type_unsigned_char]
930 = builtin->builtin_unsigned_char;
931 lai->primitive_type_vector [cplus_primitive_type_unsigned_short]
932 = builtin->builtin_unsigned_short;
933 lai->primitive_type_vector [cplus_primitive_type_unsigned_int]
934 = builtin->builtin_unsigned_int;
935 lai->primitive_type_vector [cplus_primitive_type_unsigned_long]
936 = builtin->builtin_unsigned_long;
937 lai->primitive_type_vector [cplus_primitive_type_unsigned_long_long]
938 = builtin->builtin_unsigned_long_long;
939 lai->primitive_type_vector [cplus_primitive_type_long_double]
940 = builtin->builtin_long_double;
941 lai->primitive_type_vector [cplus_primitive_type_complex]
942 = builtin->builtin_complex;
943 lai->primitive_type_vector [cplus_primitive_type_double_complex]
944 = builtin->builtin_double_complex;
945 lai->primitive_type_vector [cplus_primitive_type_bool]
946 = builtin->builtin_bool;
947 lai->primitive_type_vector [cplus_primitive_type_decfloat]
948 = builtin->builtin_decfloat;
949 lai->primitive_type_vector [cplus_primitive_type_decdouble]
950 = builtin->builtin_decdouble;
951 lai->primitive_type_vector [cplus_primitive_type_declong]
952 = builtin->builtin_declong;
953
954 lai->bool_type_symbol = "bool";
955 lai->bool_type_default = builtin->builtin_bool;
956 }
957
958 static const char *cplus_extensions[] =
959 {
960 ".C", ".cc", ".cp", ".cpp", ".cxx", ".c++", NULL
961 };
962
963 const struct language_defn cplus_language_defn =
964 {
965 "c++", /* Language name */
966 "C++",
967 language_cplus,
968 range_check_off,
969 case_sensitive_on,
970 array_row_major,
971 macro_expansion_c,
972 cplus_extensions,
973 &exp_descriptor_c,
974 c_parse,
975 c_yyerror,
976 null_post_parser,
977 c_printchar, /* Print a character constant */
978 c_printstr, /* Function to print string constant */
979 c_emit_char, /* Print a single char */
980 c_print_type, /* Print a type using appropriate syntax */
981 c_print_typedef, /* Print a typedef using appropriate syntax */
982 c_val_print, /* Print a value using appropriate syntax */
983 c_value_print, /* Print a top-level value */
984 default_read_var_value, /* la_read_var_value */
985 cplus_skip_trampoline, /* Language specific skip_trampoline */
986 "this", /* name_of_this */
987 cp_lookup_symbol_nonlocal, /* lookup_symbol_nonlocal */
988 cp_lookup_transparent_type, /* lookup_transparent_type */
989 gdb_demangle, /* Language specific symbol demangler */
990 gdb_sniff_from_mangled_name,
991 cp_class_name_from_physname, /* Language specific
992 class_name_from_physname */
993 c_op_print_tab, /* expression operators for printing */
994 1, /* c-style arrays */
995 0, /* String lower bound */
996 default_word_break_characters,
997 default_make_symbol_completion_list,
998 cplus_language_arch_info,
999 default_print_array_index,
1000 cp_pass_by_reference,
1001 c_get_string,
1002 NULL, /* la_get_symbol_name_cmp */
1003 iterate_over_symbols,
1004 &cplus_varobj_ops,
1005 NULL,
1006 NULL,
1007 LANG_MAGIC
1008 };
1009
1010 static const char *asm_extensions[] =
1011 {
1012 ".s", ".sx", ".S", NULL
1013 };
1014
1015 const struct language_defn asm_language_defn =
1016 {
1017 "asm", /* Language name */
1018 "assembly",
1019 language_asm,
1020 range_check_off,
1021 case_sensitive_on,
1022 array_row_major,
1023 macro_expansion_c,
1024 asm_extensions,
1025 &exp_descriptor_c,
1026 c_parse,
1027 c_yyerror,
1028 null_post_parser,
1029 c_printchar, /* Print a character constant */
1030 c_printstr, /* Function to print string constant */
1031 c_emit_char, /* Print a single char */
1032 c_print_type, /* Print a type using appropriate syntax */
1033 c_print_typedef, /* Print a typedef using appropriate syntax */
1034 c_val_print, /* Print a value using appropriate syntax */
1035 c_value_print, /* Print a top-level value */
1036 default_read_var_value, /* la_read_var_value */
1037 NULL, /* Language specific skip_trampoline */
1038 NULL, /* name_of_this */
1039 basic_lookup_symbol_nonlocal, /* lookup_symbol_nonlocal */
1040 basic_lookup_transparent_type,/* lookup_transparent_type */
1041 NULL, /* Language specific symbol demangler */
1042 NULL,
1043 NULL, /* Language specific
1044 class_name_from_physname */
1045 c_op_print_tab, /* expression operators for printing */
1046 1, /* c-style arrays */
1047 0, /* String lower bound */
1048 default_word_break_characters,
1049 default_make_symbol_completion_list,
1050 c_language_arch_info, /* FIXME: la_language_arch_info. */
1051 default_print_array_index,
1052 default_pass_by_reference,
1053 c_get_string,
1054 NULL, /* la_get_symbol_name_cmp */
1055 iterate_over_symbols,
1056 &default_varobj_ops,
1057 NULL,
1058 NULL,
1059 LANG_MAGIC
1060 };
1061
1062 /* The following language_defn does not represent a real language.
1063 It just provides a minimal support a-la-C that should allow users
1064 to do some simple operations when debugging applications that use
1065 a language currently not supported by GDB. */
1066
1067 const struct language_defn minimal_language_defn =
1068 {
1069 "minimal", /* Language name */
1070 "Minimal",
1071 language_minimal,
1072 range_check_off,
1073 case_sensitive_on,
1074 array_row_major,
1075 macro_expansion_c,
1076 NULL,
1077 &exp_descriptor_c,
1078 c_parse,
1079 c_yyerror,
1080 null_post_parser,
1081 c_printchar, /* Print a character constant */
1082 c_printstr, /* Function to print string constant */
1083 c_emit_char, /* Print a single char */
1084 c_print_type, /* Print a type using appropriate syntax */
1085 c_print_typedef, /* Print a typedef using appropriate syntax */
1086 c_val_print, /* Print a value using appropriate syntax */
1087 c_value_print, /* Print a top-level value */
1088 default_read_var_value, /* la_read_var_value */
1089 NULL, /* Language specific skip_trampoline */
1090 NULL, /* name_of_this */
1091 basic_lookup_symbol_nonlocal, /* lookup_symbol_nonlocal */
1092 basic_lookup_transparent_type,/* lookup_transparent_type */
1093 NULL, /* Language specific symbol demangler */
1094 NULL,
1095 NULL, /* Language specific
1096 class_name_from_physname */
1097 c_op_print_tab, /* expression operators for printing */
1098 1, /* c-style arrays */
1099 0, /* String lower bound */
1100 default_word_break_characters,
1101 default_make_symbol_completion_list,
1102 c_language_arch_info,
1103 default_print_array_index,
1104 default_pass_by_reference,
1105 c_get_string,
1106 NULL, /* la_get_symbol_name_cmp */
1107 iterate_over_symbols,
1108 &default_varobj_ops,
1109 NULL,
1110 NULL,
1111 LANG_MAGIC
1112 };
1113
1114 void
1115 _initialize_c_language (void)
1116 {
1117 add_language (&c_language_defn);
1118 add_language (&cplus_language_defn);
1119 add_language (&asm_language_defn);
1120 add_language (&minimal_language_defn);
1121 }
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