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c906108c 1/* Internal type definitions for GDB.
1bac305b 2
6aba47ca
DJ
3 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001,
4 2002, 2003, 2004, 2006, 2007 Free Software Foundation, Inc.
1bac305b 5
c906108c
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6 Contributed by Cygnus Support, using pieces from other GDB modules.
7
c5aa993b 8 This file is part of GDB.
c906108c 9
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10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
a9762ec7 12 the Free Software Foundation; either version 3 of the License, or
c5aa993b 13 (at your option) any later version.
c906108c 14
c5aa993b
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15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
c906108c 19
c5aa993b 20 You should have received a copy of the GNU General Public License
a9762ec7 21 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
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22
23#if !defined (GDBTYPES_H)
24#define GDBTYPES_H 1
25
ae5a43e0
DJ
26#include "hashtab.h"
27
7fc73f38 28/* Forward declarations for prototypes. */
da3331ec 29struct field;
7fc73f38
MK
30struct block;
31
c906108c
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32/* Codes for `fundamental types'. This is a monstrosity based on the
33 bogus notion that there are certain compiler-independent
34 `fundamental types'. None of these is well-defined (how big is
35 FT_SHORT? Does it depend on the language? How does the
36 language-specific code know which type to correlate to FT_SHORT?) */
37
38#define FT_VOID 0
39#define FT_BOOLEAN 1
c5aa993b
JM
40#define FT_CHAR 2 /* we use this for not-unsigned C/C++ chars */
41#define FT_SIGNED_CHAR 3 /* we use this for C++ signed chars */
42#define FT_UNSIGNED_CHAR 4 /* we use this for C/C++ unsigned chars */
c906108c
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43#define FT_SHORT 5
44#define FT_SIGNED_SHORT 6
45#define FT_UNSIGNED_SHORT 7
46#define FT_INTEGER 8
47#define FT_SIGNED_INTEGER 9
48#define FT_UNSIGNED_INTEGER 10
49#define FT_LONG 11
50#define FT_SIGNED_LONG 12
51#define FT_UNSIGNED_LONG 13
52#define FT_LONG_LONG 14
53#define FT_SIGNED_LONG_LONG 15
54#define FT_UNSIGNED_LONG_LONG 16
55#define FT_FLOAT 17
56#define FT_DBL_PREC_FLOAT 18
57#define FT_EXT_PREC_FLOAT 19
58#define FT_COMPLEX 20
59#define FT_DBL_PREC_COMPLEX 21
60#define FT_EXT_PREC_COMPLEX 22
61#define FT_STRING 23
62#define FT_FIXED_DECIMAL 24
63#define FT_FLOAT_DECIMAL 25
64#define FT_BYTE 26
65#define FT_UNSIGNED_BYTE 27
66#define FT_TEMPLATE_ARG 28
67
68#define FT_NUM_MEMBERS 29 /* Highest FT_* above, plus one. */
69
70/* Some macros for char-based bitfields. */
71
72#define B_SET(a,x) ((a)[(x)>>3] |= (1 << ((x)&7)))
73#define B_CLR(a,x) ((a)[(x)>>3] &= ~(1 << ((x)&7)))
74#define B_TST(a,x) ((a)[(x)>>3] & (1 << ((x)&7)))
75#define B_TYPE unsigned char
76#define B_BYTES(x) ( 1 + ((x)>>3) )
77#define B_CLRALL(a,x) memset ((a), 0, B_BYTES(x))
78
79/* Different kinds of data types are distinguished by the `code' field. */
80
81enum type_code
c5aa993b
JM
82 {
83 TYPE_CODE_UNDEF, /* Not used; catches errors */
84 TYPE_CODE_PTR, /* Pointer type */
e6742ace
JB
85
86 /* Array type with lower & upper bounds.
87
88 Regardless of the language, GDB represents multidimensional
89 array types the way C does: as arrays of arrays. So an
90 instance of a GDB array type T can always be seen as a series
91 of instances of TYPE_TARGET_TYPE (T) laid out sequentially in
92 memory.
93
94 Row-major languages like C lay out multi-dimensional arrays so
95 that incrementing the rightmost index in a subscripting
96 expression results in the smallest change in the address of the
97 element referred to. Column-major languages like Fortran lay
98 them out so that incrementing the leftmost index results in the
99 smallest change.
100
101 This means that, in column-major languages, working our way
102 from type to target type corresponds to working through indices
103 from right to left, not left to right. */
104 TYPE_CODE_ARRAY,
105
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JM
106 TYPE_CODE_STRUCT, /* C struct or Pascal record */
107 TYPE_CODE_UNION, /* C union or Pascal variant part */
108 TYPE_CODE_ENUM, /* Enumeration type */
4f2aea11 109 TYPE_CODE_FLAGS, /* Bit flags type */
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JM
110 TYPE_CODE_FUNC, /* Function type */
111 TYPE_CODE_INT, /* Integer type */
112
113 /* Floating type. This is *NOT* a complex type. Beware, there are parts
114 of GDB which bogusly assume that TYPE_CODE_FLT can mean complex. */
115 TYPE_CODE_FLT,
116
117 /* Void type. The length field specifies the length (probably always
118 one) which is used in pointer arithmetic involving pointers to
119 this type, but actually dereferencing such a pointer is invalid;
120 a void type has no length and no actual representation in memory
121 or registers. A pointer to a void type is a generic pointer. */
122 TYPE_CODE_VOID,
123
124 TYPE_CODE_SET, /* Pascal sets */
125 TYPE_CODE_RANGE, /* Range (integers within spec'd bounds) */
126
127 /* A string type which is like an array of character but prints
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AC
128 differently (at least for (the deleted) CHILL). It does not
129 contain a length field as Pascal strings (for many Pascals,
130 anyway) do; if we want to deal with such strings, we should use
131 a new type code. */
c5aa993b
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132 TYPE_CODE_STRING,
133
db034ac5 134 /* String of bits; like TYPE_CODE_SET but prints differently (at
1b831c93 135 least for (the deleted) CHILL). */
c5aa993b
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136 TYPE_CODE_BITSTRING,
137
138 /* Unknown type. The length field is valid if we were able to
139 deduce that much about the type, or 0 if we don't even know that. */
140 TYPE_CODE_ERROR,
141
142 /* C++ */
c5aa993b 143 TYPE_CODE_METHOD, /* Method type */
0d5de010
DJ
144
145 /* Pointer-to-member-function type. This describes how to access a
146 particular member function of a class (possibly a virtual
147 member function). The representation may vary between different
148 C++ ABIs. */
149 TYPE_CODE_METHODPTR,
150
151 /* Pointer-to-member type. This is the offset within a class to some
152 particular data member. The only currently supported representation
153 uses an unbiased offset, with -1 representing NULL; this is used
154 by the Itanium C++ ABI (used by GCC on all platforms). */
155 TYPE_CODE_MEMBERPTR,
156
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JM
157 TYPE_CODE_REF, /* C++ Reference types */
158
159 TYPE_CODE_CHAR, /* *real* character type */
160
161 /* Boolean type. 0 is false, 1 is true, and other values are non-boolean
162 (e.g. FORTRAN "logical" used as unsigned int). */
163 TYPE_CODE_BOOL,
164
165 /* Fortran */
166 TYPE_CODE_COMPLEX, /* Complex float */
167
168 TYPE_CODE_TYPEDEF,
169 TYPE_CODE_TEMPLATE, /* C++ template */
5c4e30ca 170 TYPE_CODE_TEMPLATE_ARG, /* C++ template arg */
c5aa993b 171
20605361 172 TYPE_CODE_NAMESPACE /* C++ namespace. */
c5aa993b 173 };
c906108c
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174
175/* For now allow source to use TYPE_CODE_CLASS for C++ classes, as an
176 alias for TYPE_CODE_STRUCT. This is for DWARF, which has a distinct
177 "class" attribute. Perhaps we should actually have a separate TYPE_CODE
178 so that we can print "class" or "struct" depending on what the debug
179 info said. It's not clear we should bother. */
180
181#define TYPE_CODE_CLASS TYPE_CODE_STRUCT
182
aa468c60 183/* Some bits for the type's flags word, and macros to test them. */
c906108c
SS
184
185/* Unsigned integer type. If this is not set for a TYPE_CODE_INT, the
186 type is signed (unless TYPE_FLAG_NOSIGN (below) is set). */
187
188#define TYPE_FLAG_UNSIGNED (1 << 0)
4c90d51b 189#define TYPE_UNSIGNED(t) (TYPE_FLAGS (t) & TYPE_FLAG_UNSIGNED)
c906108c
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190
191/* No sign for this type. In C++, "char", "signed char", and "unsigned
192 char" are distinct types; so we need an extra flag to indicate the
ba91526b 193 absence of a sign! */
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194
195#define TYPE_FLAG_NOSIGN (1 << 1)
4c90d51b 196#define TYPE_NOSIGN(t) (TYPE_FLAGS (t) & TYPE_FLAG_NOSIGN)
c906108c
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197
198/* This appears in a type's flags word if it is a stub type (e.g., if
199 someone referenced a type that wasn't defined in a source file
200 via (struct sir_not_appearing_in_this_film *)). */
201
202#define TYPE_FLAG_STUB (1 << 2)
4c90d51b 203#define TYPE_STUB(t) (TYPE_FLAGS (t) & TYPE_FLAG_STUB)
c906108c
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204
205/* The target type of this type is a stub type, and this type needs to
206 be updated if it gets un-stubbed in check_typedef.
207 Used for arrays and ranges, in which TYPE_LENGTH of the array/range
208 gets set based on the TYPE_LENGTH of the target type.
209 Also, set for TYPE_CODE_TYPEDEF. */
210
aa468c60 211#define TYPE_FLAG_TARGET_STUB (1 << 3)
4c90d51b 212#define TYPE_TARGET_STUB(t) (TYPE_FLAGS (t) & TYPE_FLAG_TARGET_STUB)
c906108c 213
7b83ea04 214/* Static type. If this is set, the corresponding type had
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215 * a static modifier.
216 * Note: This may be unnecessary, since static data members
217 * are indicated by other means (bitpos == -1)
218 */
219
aa468c60 220#define TYPE_FLAG_STATIC (1 << 4)
4c90d51b 221#define TYPE_STATIC(t) (TYPE_FLAGS (t) & TYPE_FLAG_STATIC)
c906108c
SS
222
223/* Constant type. If this is set, the corresponding type has a
224 * const modifier.
225 */
226
aa468c60 227#define TYPE_FLAG_CONST (1 << 5)
2fdde8f8 228#define TYPE_CONST(t) (TYPE_INSTANCE_FLAGS (t) & TYPE_FLAG_CONST)
c906108c
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229
230/* Volatile type. If this is set, the corresponding type has a
231 * volatile modifier.
232 */
233
aa468c60 234#define TYPE_FLAG_VOLATILE (1 << 6)
2fdde8f8 235#define TYPE_VOLATILE(t) (TYPE_INSTANCE_FLAGS (t) & TYPE_FLAG_VOLATILE)
c906108c
SS
236
237
238/* This is a function type which appears to have a prototype. We need this
239 for function calls in order to tell us if it's necessary to coerce the args,
240 or to just do the standard conversions. This is used with a short field. */
241
aa468c60 242#define TYPE_FLAG_PROTOTYPED (1 << 7)
4c90d51b 243#define TYPE_PROTOTYPED(t) (TYPE_FLAGS (t) & TYPE_FLAG_PROTOTYPED)
c906108c
SS
244
245/* This flag is used to indicate that processing for this type
246 is incomplete.
c5aa993b 247
c906108c
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248 (Mostly intended for HP platforms, where class methods, for
249 instance, can be encountered before their classes in the debug
250 info; the incomplete type has to be marked so that the class and
251 the method can be assigned correct types.) */
252
aa468c60 253#define TYPE_FLAG_INCOMPLETE (1 << 8)
4c90d51b 254#define TYPE_INCOMPLETE(t) (TYPE_FLAGS (t) & TYPE_FLAG_INCOMPLETE)
c906108c 255
47663de5
MS
256/* Instruction-space delimited type. This is for Harvard architectures
257 which have separate instruction and data address spaces (and perhaps
258 others).
259
260 GDB usually defines a flat address space that is a superset of the
261 architecture's two (or more) address spaces, but this is an extension
262 of the architecture's model.
263
264 If TYPE_FLAG_INST is set, an object of the corresponding type
265 resides in instruction memory, even if its address (in the extended
266 flat address space) does not reflect this.
267
268 Similarly, if TYPE_FLAG_DATA is set, then an object of the
269 corresponding type resides in the data memory space, even if
270 this is not indicated by its (flat address space) address.
271
272 If neither flag is set, the default space for functions / methods
273 is instruction space, and for data objects is data memory. */
274
aa468c60 275#define TYPE_FLAG_CODE_SPACE (1 << 9)
2fdde8f8 276#define TYPE_CODE_SPACE(t) (TYPE_INSTANCE_FLAGS (t) & TYPE_FLAG_CODE_SPACE)
aa468c60
FF
277
278#define TYPE_FLAG_DATA_SPACE (1 << 10)
2fdde8f8 279#define TYPE_DATA_SPACE(t) (TYPE_INSTANCE_FLAGS (t) & TYPE_FLAG_DATA_SPACE)
47663de5 280
ad2f7632
DJ
281/* FIXME drow/2002-06-03: Only used for methods, but applies as well
282 to functions. */
878ac530 283
aa468c60 284#define TYPE_FLAG_VARARGS (1 << 11)
4c90d51b 285#define TYPE_VARARGS(t) (TYPE_FLAGS (t) & TYPE_FLAG_VARARGS)
c906108c 286
f5f8a009
EZ
287/* Identify a vector type. Gcc is handling this by adding an extra
288 attribute to the array type. We slurp that in as a new flag of a
289 type. This is used only in dwarf2read.c. */
290#define TYPE_FLAG_VECTOR (1 << 12)
4c90d51b 291#define TYPE_VECTOR(t) (TYPE_FLAGS (t) & TYPE_FLAG_VECTOR)
f5f8a009 292
8b2dbe47
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293/* Address class flags. Some environments provide for pointers whose
294 size is different from that of a normal pointer or address types
295 where the bits are interpreted differently than normal addresses. The
296 TYPE_FLAG_ADDRESS_CLASS_n flags may be used in target specific
297 ways to represent these different types of address classes. */
298#define TYPE_FLAG_ADDRESS_CLASS_1 (1 << 13)
299#define TYPE_ADDRESS_CLASS_1(t) (TYPE_INSTANCE_FLAGS(t) \
300 & TYPE_FLAG_ADDRESS_CLASS_1)
301#define TYPE_FLAG_ADDRESS_CLASS_2 (1 << 14)
302#define TYPE_ADDRESS_CLASS_2(t) (TYPE_INSTANCE_FLAGS(t) \
303 & TYPE_FLAG_ADDRESS_CLASS_2)
304#define TYPE_FLAG_ADDRESS_CLASS_ALL (TYPE_FLAG_ADDRESS_CLASS_1 \
305 | TYPE_FLAG_ADDRESS_CLASS_2)
306#define TYPE_ADDRESS_CLASS_ALL(t) (TYPE_INSTANCE_FLAGS(t) \
307 & TYPE_FLAG_ADDRESS_CLASS_ALL)
308
963a6417
PH
309/* The debugging formats (especially STABS) do not contain enough information
310 to represent all Ada types---especially those whose size depends on
311 dynamic quantities. Therefore, the GNAT Ada compiler includes
312 extra information in the form of additional type definitions
313 connected by naming conventions. This flag indicates that the
314 type is an ordinary (unencoded) GDB type that has been created from
315 the necessary run-time information, and does not need further
316 interpretation. Optionally marks ordinary, fixed-size GDB type. */
317
318#define TYPE_FLAG_FIXED_INSTANCE (1 << 15)
319
d77b6808
JK
320/* This debug target supports TYPE_STUB(t). In the unsupported case we have to
321 rely on NFIELDS to be zero etc., see TYPE_IS_OPAQUE ().
322 TYPE_STUB(t) with !TYPE_STUB_SUPPORTED(t) may exist if we only guessed
323 the TYPE_STUB(t) value (see dwarfread.c). */
324
325#define TYPE_FLAG_STUB_SUPPORTED (1 << 16)
326#define TYPE_STUB_SUPPORTED(t) (TYPE_FLAGS (t) & TYPE_FLAG_STUB_SUPPORTED)
327
72e5f484
MC
328/* Array bound type. */
329enum array_bound_type
330{
331 BOUND_SIMPLE = 0,
332 BOUND_BY_VALUE_IN_REG,
333 BOUND_BY_REF_IN_REG,
334 BOUND_BY_VALUE_ON_STACK,
335 BOUND_BY_REF_ON_STACK,
336 BOUND_CANNOT_BE_DETERMINED
337};
338
0955bbf0
MC
339/* This structure is space-critical.
340 Its layout has been tweaked to reduce the space used. */
341
2fdde8f8
DJ
342struct main_type
343{
344 /* Code for kind of type */
345
0955bbf0
MC
346 ENUM_BITFIELD(type_code) code : 8;
347
72e5f484
MC
348 /* Array bounds. These fields appear at this location because
349 they pack nicely here. */
350
351 ENUM_BITFIELD(array_bound_type) upper_bound_type : 4;
352 ENUM_BITFIELD(array_bound_type) lower_bound_type : 4;
2fdde8f8
DJ
353
354 /* Name of this type, or NULL if none.
355
356 This is used for printing only, except by poorly designed C++ code.
176620f1 357 For looking up a name, look for a symbol in the VAR_DOMAIN. */
2fdde8f8
DJ
358
359 char *name;
360
361 /* Tag name for this type, or NULL if none. This means that the
362 name of the type consists of a keyword followed by the tag name.
363 Which keyword is determined by the type code ("struct" for
364 TYPE_CODE_STRUCT, etc.). As far as I know C/C++ are the only languages
365 with this feature.
366
367 This is used for printing only, except by poorly designed C++ code.
176620f1 368 For looking up a name, look for a symbol in the STRUCT_DOMAIN.
2fdde8f8
DJ
369 One more legitimate use is that if TYPE_FLAG_STUB is set, this is
370 the name to use to look for definitions in other files. */
371
372 char *tag_name;
373
2fdde8f8 374 /* Every type is now associated with a particular objfile, and the
b99607ea 375 type is allocated on the objfile_obstack for that objfile. One problem
2fdde8f8
DJ
376 however, is that there are times when gdb allocates new types while
377 it is not in the process of reading symbols from a particular objfile.
378 Fortunately, these happen when the type being created is a derived
379 type of an existing type, such as in lookup_pointer_type(). So
380 we can just allocate the new type using the same objfile as the
381 existing type, but to do this we need a backpointer to the objfile
382 from the existing type. Yes this is somewhat ugly, but without
383 major overhaul of the internal type system, it can't be avoided
384 for now. */
385
386 struct objfile *objfile;
387
388 /* For a pointer type, describes the type of object pointed to.
389 For an array type, describes the type of the elements.
390 For a function or method type, describes the type of the return value.
391 For a range type, describes the type of the full range.
392 For a complex type, describes the type of each coordinate.
393 Unused otherwise. */
394
395 struct type *target_type;
396
397 /* Flags about this type. */
398
399 int flags;
400
401 /* Number of fields described for this type */
402
403 short nfields;
404
0955bbf0
MC
405 /* Field number of the virtual function table pointer in
406 VPTR_BASETYPE. If -1, we were unable to find the virtual
407 function table pointer in initial symbol reading, and
408 fill_in_vptr_fieldno should be called to find it if possible.
409
410 Unused if this type does not have virtual functions. */
411
412 short vptr_fieldno;
413
2fdde8f8
DJ
414 /* For structure and union types, a description of each field.
415 For set and pascal array types, there is one "field",
416 whose type is the domain type of the set or array.
417 For range types, there are two "fields",
418 the minimum and maximum values (both inclusive).
419 For enum types, each possible value is described by one "field".
ad2f7632 420 For a function or method type, a "field" for each parameter.
2fdde8f8
DJ
421 For C++ classes, there is one field for each base class (if it is
422 a derived class) plus one field for each class data member. Member
423 functions are recorded elsewhere.
424
425 Using a pointer to a separate array of fields
426 allows all types to have the same size, which is useful
427 because we can allocate the space for a type before
428 we know what to put in it. */
429
430 struct field
c5aa993b 431 {
2fdde8f8
DJ
432 union field_location
433 {
434 /* Position of this field, counting in bits from start of
435 containing structure.
436 For BITS_BIG_ENDIAN=1 targets, it is the bit offset to the MSB.
437 For BITS_BIG_ENDIAN=0 targets, it is the bit offset to the LSB.
438 For a range bound or enum value, this is the value itself. */
c906108c 439
2fdde8f8 440 int bitpos;
c906108c 441
2fdde8f8
DJ
442 /* For a static field, if TYPE_FIELD_STATIC_HAS_ADDR then physaddr
443 is the location (in the target) of the static field.
444 Otherwise, physname is the mangled label of the static field. */
c906108c 445
2fdde8f8
DJ
446 CORE_ADDR physaddr;
447 char *physname;
2fdde8f8
DJ
448 }
449 loc;
c906108c 450
01ad7f36
DJ
451 /* For a function or member type, this is 1 if the argument is marked
452 artificial. Artificial arguments should not be shown to the
453 user. */
454 unsigned int artificial : 1;
455
456 /* This flag is zero for non-static fields, 1 for fields whose location
457 is specified by the label loc.physname, and 2 for fields whose location
458 is specified by loc.physaddr. */
459
460 unsigned int static_kind : 2;
461
2fdde8f8
DJ
462 /* Size of this field, in bits, or zero if not packed.
463 For an unpacked field, the field's type's length
01ad7f36 464 says how many bytes the field occupies. */
c906108c 465
01ad7f36 466 unsigned int bitsize : 29;
c906108c 467
2fdde8f8 468 /* In a struct or union type, type of this field.
ad2f7632 469 In a function or member type, type of this argument.
2fdde8f8 470 In an array type, the domain-type of the array. */
c906108c 471
2fdde8f8 472 struct type *type;
c906108c 473
2fdde8f8 474 /* Name of field, value or argument.
ad2f7632
DJ
475 NULL for range bounds, array domains, and member function
476 arguments. */
8176bb6d 477
2fdde8f8 478 char *name;
c906108c 479
2fdde8f8 480 } *fields;
c906108c 481
2fdde8f8
DJ
482 /* For types with virtual functions (TYPE_CODE_STRUCT), VPTR_BASETYPE
483 is the base class which defined the virtual function table pointer.
c906108c 484
0d5de010
DJ
485 For types that are pointer to member types (TYPE_CODE_METHODPTR,
486 TYPE_CODE_MEMBERPTR), VPTR_BASETYPE is the type that this pointer
487 is a member of.
c906108c 488
2fdde8f8
DJ
489 For method types (TYPE_CODE_METHOD), VPTR_BASETYPE is the aggregate
490 type that contains the method.
c906108c 491
2fdde8f8 492 Unused otherwise. */
c906108c 493
2fdde8f8 494 struct type *vptr_basetype;
c906108c 495
2fdde8f8 496 /* Slot to point to additional language-specific fields of this type. */
c906108c 497
2fdde8f8
DJ
498 union type_specific
499 {
2fdde8f8
DJ
500 /* CPLUS_STUFF is for TYPE_CODE_STRUCT. It is initialized to point to
501 cplus_struct_default, a default static instance of a struct
502 cplus_struct_type. */
c906108c 503
2fdde8f8 504 struct cplus_struct_type *cplus_stuff;
c906108c 505
8da61cc4
DJ
506 /* FLOATFORMAT is for TYPE_CODE_FLT. It is a pointer to two
507 floatformat objects that describe the floating-point value
508 that resides within the type. The first is for big endian
509 targets and the second is for little endian targets. */
c906108c 510
8da61cc4 511 const struct floatformat **floatformat;
2fdde8f8
DJ
512 } type_specific;
513};
c906108c 514
2fdde8f8
DJ
515/* A ``struct type'' describes a particular instance of a type, with
516 some particular qualification. */
517struct type
518{
519 /* Type that is a pointer to this type.
520 NULL if no such pointer-to type is known yet.
521 The debugger may add the address of such a type
522 if it has to construct one later. */
c906108c 523
2fdde8f8 524 struct type *pointer_type;
c906108c 525
2fdde8f8 526 /* C++: also need a reference type. */
c906108c 527
2fdde8f8 528 struct type *reference_type;
c906108c 529
2fdde8f8 530 /* Variant chain. This points to a type that differs from this one only
ab5d3da6
KB
531 in qualifiers and length. Currently, the possible qualifiers are
532 const, volatile, code-space, data-space, and address class. The
533 length may differ only when one of the address class flags are set.
534 The variants are linked in a circular ring and share MAIN_TYPE. */
2fdde8f8 535 struct type *chain;
c906108c 536
2fdde8f8
DJ
537 /* Flags specific to this instance of the type, indicating where
538 on the ring we are. */
539 int instance_flags;
701c159d 540
ab5d3da6
KB
541 /* Length of storage for a value of this type. This is what
542 sizeof(type) would return; use it for address arithmetic,
543 memory reads and writes, etc. This size includes padding. For
544 example, an i386 extended-precision floating point value really
545 only occupies ten bytes, but most ABI's declare its size to be
546 12 bytes, to preserve alignment. A `struct type' representing
547 such a floating-point type would have a `length' value of 12,
548 even though the last two bytes are unused.
549
550 There's a bit of a host/target mess here, if you're concerned
551 about machines whose bytes aren't eight bits long, or who don't
552 have byte-addressed memory. Various places pass this to memcpy
553 and such, meaning it must be in units of host bytes. Various
554 other places expect they can calculate addresses by adding it
555 and such, meaning it must be in units of target bytes. For
556 some DSP targets, in which HOST_CHAR_BIT will (presumably) be 8
557 and TARGET_CHAR_BIT will be (say) 32, this is a problem.
558
559 One fix would be to make this field in bits (requiring that it
560 always be a multiple of HOST_CHAR_BIT and TARGET_CHAR_BIT) ---
561 the other choice would be to make it consistently in units of
562 HOST_CHAR_BIT. However, this would still fail to address
563 machines based on a ternary or decimal representation. */
564
565 unsigned length;
566
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567 /* Core type, shared by a group of qualified types. */
568 struct main_type *main_type;
569};
c906108c
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570
571#define NULL_TYPE ((struct type *) 0)
572
573/* C++ language-specific information for TYPE_CODE_STRUCT and TYPE_CODE_UNION
574 nodes. */
575
576struct cplus_struct_type
c5aa993b
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577 {
578 /* Number of base classes this type derives from. The baseclasses are
579 stored in the first N_BASECLASSES fields (i.e. the `fields' field of
580 the struct type). I think only the `type' field of such a field has
581 any meaning. */
c906108c 582
c5aa993b 583 short n_baseclasses;
c906108c 584
c5aa993b
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585 /* Number of methods with unique names. All overloaded methods with
586 the same name count only once. */
c906108c 587
c5aa993b 588 short nfn_fields;
c906108c 589
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590 /* Number of methods described for this type, not including the
591 methods that it derives from. */
c906108c 592
c5aa993b 593 short nfn_fields_total;
c906108c 594
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595 /* The "declared_type" field contains a code saying how the
596 user really declared this type, e.g., "class s", "union s",
597 "struct s".
7b83ea04 598 The 3 above things come out from the C++ compiler looking like classes,
c5aa993b
JM
599 but we keep track of the real declaration so we can give
600 the correct information on "ptype". (Note: TEMPLATE may not
601 belong in this list...) */
c906108c
SS
602
603#define DECLARED_TYPE_CLASS 0
604#define DECLARED_TYPE_UNION 1
605#define DECLARED_TYPE_STRUCT 2
606#define DECLARED_TYPE_TEMPLATE 3
c5aa993b
JM
607 short declared_type; /* One of the above codes */
608
609 /* For derived classes, the number of base classes is given by n_baseclasses
610 and virtual_field_bits is a bit vector containing one bit per base class.
611 If the base class is virtual, the corresponding bit will be set.
612 I.E, given:
c906108c 613
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614 class A{};
615 class B{};
616 class C : public B, public virtual A {};
c906108c 617
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618 B is a baseclass of C; A is a virtual baseclass for C.
619 This is a C++ 2.0 language feature. */
c906108c 620
c5aa993b 621 B_TYPE *virtual_field_bits;
c906108c 622
c5aa993b
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623 /* For classes with private fields, the number of fields is given by
624 nfields and private_field_bits is a bit vector containing one bit
625 per field.
626 If the field is private, the corresponding bit will be set. */
c906108c 627
c5aa993b 628 B_TYPE *private_field_bits;
c906108c 629
c5aa993b
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630 /* For classes with protected fields, the number of fields is given by
631 nfields and protected_field_bits is a bit vector containing one bit
632 per field.
633 If the field is private, the corresponding bit will be set. */
c906108c 634
c5aa993b 635 B_TYPE *protected_field_bits;
c906108c 636
c5aa993b
JM
637 /* for classes with fields to be ignored, either this is optimized out
638 or this field has length 0 */
c906108c 639
c5aa993b 640 B_TYPE *ignore_field_bits;
c906108c 641
c5aa993b
JM
642 /* For classes, structures, and unions, a description of each field,
643 which consists of an overloaded name, followed by the types of
644 arguments that the method expects, and then the name after it
645 has been renamed to make it distinct.
c906108c 646
c5aa993b 647 fn_fieldlists points to an array of nfn_fields of these. */
c906108c 648
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JM
649 struct fn_fieldlist
650 {
c906108c 651
c5aa993b 652 /* The overloaded name. */
c906108c 653
c5aa993b 654 char *name;
c906108c 655
c5aa993b 656 /* The number of methods with this name. */
c906108c 657
c5aa993b 658 int length;
c906108c 659
c5aa993b 660 /* The list of methods. */
c906108c 661
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JM
662 struct fn_field
663 {
c906108c 664
c5aa993b
JM
665 /* If is_stub is clear, this is the mangled name which we can
666 look up to find the address of the method (FIXME: it would
667 be cleaner to have a pointer to the struct symbol here
668 instead). */
c906108c 669
c5aa993b
JM
670 /* If is_stub is set, this is the portion of the mangled
671 name which specifies the arguments. For example, "ii",
672 if there are two int arguments, or "" if there are no
673 arguments. See gdb_mangle_name for the conversion from this
674 format to the one used if is_stub is clear. */
c906108c 675
c5aa993b 676 char *physname;
c906108c 677
c5aa993b
JM
678 /* The function type for the method.
679 (This comment used to say "The return value of the method",
7b83ea04 680 but that's wrong. The function type
c5aa993b
JM
681 is expected here, i.e. something with TYPE_CODE_FUNC,
682 and *not* the return-value type). */
c906108c 683
c5aa993b 684 struct type *type;
c906108c 685
c5aa993b
JM
686 /* For virtual functions.
687 First baseclass that defines this virtual function. */
c906108c 688
c5aa993b 689 struct type *fcontext;
c906108c 690
c5aa993b 691 /* Attributes. */
c906108c 692
c5aa993b
JM
693 unsigned int is_const:1;
694 unsigned int is_volatile:1;
695 unsigned int is_private:1;
696 unsigned int is_protected:1;
697 unsigned int is_public:1;
698 unsigned int is_abstract:1;
699 unsigned int is_static:1;
700 unsigned int is_final:1;
701 unsigned int is_synchronized:1;
702 unsigned int is_native:1;
b02dede2 703 unsigned int is_artificial:1;
c906108c 704
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JM
705 /* A stub method only has some fields valid (but they are enough
706 to reconstruct the rest of the fields). */
707 unsigned int is_stub:1;
c906108c 708
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709 /* C++ method that is inlined */
710 unsigned int is_inlined:1;
c906108c 711
c5aa993b 712 /* Unused. */
b02dede2 713 unsigned int dummy:3;
c906108c 714
c5aa993b
JM
715 /* Index into that baseclass's virtual function table,
716 minus 2; else if static: VOFFSET_STATIC; else: 0. */
c906108c 717
c5aa993b 718 unsigned int voffset:16;
c906108c 719
c5aa993b 720#define VOFFSET_STATIC 1
c906108c 721
c5aa993b
JM
722 }
723 *fn_fields;
c906108c 724
c5aa993b
JM
725 }
726 *fn_fieldlists;
c906108c 727
7b83ea04 728 /* If this "struct type" describes a template, then it
c906108c
SS
729 * has arguments. "template_args" points to an array of
730 * template arg descriptors, of length "ntemplate_args".
731 * The only real information in each of these template arg descriptors
732 * is a name. "type" will typically just point to a "struct type" with
733 * the placeholder TYPE_CODE_TEMPLATE_ARG type.
734 */
735 short ntemplate_args;
736 struct template_arg
c5aa993b
JM
737 {
738 char *name;
739 struct type *type;
740 }
741 *template_args;
c906108c
SS
742
743 /* If this "struct type" describes a template, it has a list
744 * of instantiations. "instantiations" is a pointer to an array
745 * of type's, one representing each instantiation. There
746 * are "ninstantiations" elements in this array.
747 */
748 short ninstantiations;
749 struct type **instantiations;
750
751 /* The following points to information relevant to the runtime model
752 * of the compiler.
753 * Currently being used only for HP's ANSI C++ compiler.
754 * (This type may have to be changed/enhanced for other compilers.)
755 *
756 * RUNTIME_PTR is NULL if there is no runtime information (currently
757 * this means the type was not compiled by HP aCC).
758 *
759 * Fields in structure pointed to:
760 * ->HAS_VTABLE : 0 => no virtual table, 1 => vtable present
7b83ea04 761 *
c906108c
SS
762 * ->PRIMARY_BASE points to the first non-virtual base class that has
763 * a virtual table.
764 *
765 * ->VIRTUAL_BASE_LIST points to a list of struct type * pointers that
766 * point to the type information for all virtual bases among this type's
767 * ancestors.
768 */
c5aa993b
JM
769 struct runtime_info
770 {
771 short has_vtable;
772 struct type *primary_base;
773 struct type **virtual_base_list;
774 }
775 *runtime_ptr;
c906108c
SS
776
777 /* Pointer to information about enclosing scope, if this is a
778 * local type. If it is not a local type, this is NULL
779 */
c5aa993b
JM
780 struct local_type_info
781 {
782 char *file;
783 int line;
784 }
785 *localtype_ptr;
786 };
c906108c
SS
787
788/* Struct used in computing virtual base list */
789struct vbase
c5aa993b
JM
790 {
791 struct type *vbasetype; /* pointer to virtual base */
792 struct vbase *next; /* next in chain */
793 };
c906108c
SS
794
795/* Struct used for ranking a function for overload resolution */
c5aa993b
JM
796struct badness_vector
797 {
798 int length;
799 int *rank;
800 };
c906108c
SS
801
802/* The default value of TYPE_CPLUS_SPECIFIC(T) points to the
803 this shared static structure. */
804
805extern const struct cplus_struct_type cplus_struct_default;
806
a14ed312 807extern void allocate_cplus_struct_type (struct type *);
c906108c
SS
808
809#define INIT_CPLUS_SPECIFIC(type) \
810 (TYPE_CPLUS_SPECIFIC(type)=(struct cplus_struct_type*)&cplus_struct_default)
811#define ALLOCATE_CPLUS_STRUCT_TYPE(type) allocate_cplus_struct_type (type)
812#define HAVE_CPLUS_STRUCT(type) \
813 (TYPE_CPLUS_SPECIFIC(type) != &cplus_struct_default)
814
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DJ
815#define TYPE_INSTANCE_FLAGS(thistype) (thistype)->instance_flags
816#define TYPE_MAIN_TYPE(thistype) (thistype)->main_type
817#define TYPE_NAME(thistype) TYPE_MAIN_TYPE(thistype)->name
818#define TYPE_TAG_NAME(type) TYPE_MAIN_TYPE(type)->tag_name
819#define TYPE_TARGET_TYPE(thistype) TYPE_MAIN_TYPE(thistype)->target_type
c906108c
SS
820#define TYPE_POINTER_TYPE(thistype) (thistype)->pointer_type
821#define TYPE_REFERENCE_TYPE(thistype) (thistype)->reference_type
2fdde8f8 822#define TYPE_CHAIN(thistype) (thistype)->chain
c906108c
SS
823/* Note that if thistype is a TYPEDEF type, you have to call check_typedef.
824 But check_typedef does set the TYPE_LENGTH of the TYPEDEF type,
825 so you only have to call check_typedef once. Since allocate_value
826 calls check_typedef, TYPE_LENGTH (VALUE_TYPE (X)) is safe. */
ab5d3da6 827#define TYPE_LENGTH(thistype) (thistype)->length
2fdde8f8
DJ
828#define TYPE_OBJFILE(thistype) TYPE_MAIN_TYPE(thistype)->objfile
829#define TYPE_FLAGS(thistype) TYPE_MAIN_TYPE(thistype)->flags
aa468c60 830/* Note that TYPE_CODE can be TYPE_CODE_TYPEDEF, so if you want the real
c906108c 831 type, you need to do TYPE_CODE (check_type (this_type)). */
2fdde8f8
DJ
832#define TYPE_CODE(thistype) TYPE_MAIN_TYPE(thistype)->code
833#define TYPE_NFIELDS(thistype) TYPE_MAIN_TYPE(thistype)->nfields
834#define TYPE_FIELDS(thistype) TYPE_MAIN_TYPE(thistype)->fields
c906108c
SS
835#define TYPE_TEMPLATE_ARGS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->template_args
836#define TYPE_INSTANTIATIONS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->instantiations
837
838#define TYPE_INDEX_TYPE(type) TYPE_FIELD_TYPE (type, 0)
839#define TYPE_LOW_BOUND(range_type) TYPE_FIELD_BITPOS (range_type, 0)
840#define TYPE_HIGH_BOUND(range_type) TYPE_FIELD_BITPOS (range_type, 1)
841
842/* Moto-specific stuff for FORTRAN arrays */
843
2fdde8f8
DJ
844#define TYPE_ARRAY_UPPER_BOUND_TYPE(thistype) \
845 TYPE_MAIN_TYPE(thistype)->upper_bound_type
846#define TYPE_ARRAY_LOWER_BOUND_TYPE(thistype) \
847 TYPE_MAIN_TYPE(thistype)->lower_bound_type
c906108c
SS
848
849#define TYPE_ARRAY_UPPER_BOUND_VALUE(arraytype) \
850 (TYPE_FIELD_BITPOS((TYPE_FIELD_TYPE((arraytype),0)),1))
851
852#define TYPE_ARRAY_LOWER_BOUND_VALUE(arraytype) \
853 (TYPE_FIELD_BITPOS((TYPE_FIELD_TYPE((arraytype),0)),0))
854
855/* C++ */
856
2fdde8f8
DJ
857#define TYPE_VPTR_BASETYPE(thistype) TYPE_MAIN_TYPE(thistype)->vptr_basetype
858#define TYPE_DOMAIN_TYPE(thistype) TYPE_MAIN_TYPE(thistype)->vptr_basetype
859#define TYPE_VPTR_FIELDNO(thistype) TYPE_MAIN_TYPE(thistype)->vptr_fieldno
c906108c
SS
860#define TYPE_FN_FIELDS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->fn_fields
861#define TYPE_NFN_FIELDS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->nfn_fields
862#define TYPE_NFN_FIELDS_TOTAL(thistype) TYPE_CPLUS_SPECIFIC(thistype)->nfn_fields_total
863#define TYPE_NTEMPLATE_ARGS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->ntemplate_args
864#define TYPE_NINSTANTIATIONS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->ninstantiations
865#define TYPE_DECLARED_TYPE(thistype) TYPE_CPLUS_SPECIFIC(thistype)->declared_type
2fdde8f8 866#define TYPE_TYPE_SPECIFIC(thistype) TYPE_MAIN_TYPE(thistype)->type_specific
2fdde8f8
DJ
867#define TYPE_CPLUS_SPECIFIC(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.cplus_stuff
868#define TYPE_FLOATFORMAT(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.floatformat
869#define TYPE_BASECLASS(thistype,index) TYPE_MAIN_TYPE(thistype)->fields[index].type
c906108c 870#define TYPE_N_BASECLASSES(thistype) TYPE_CPLUS_SPECIFIC(thistype)->n_baseclasses
2fdde8f8 871#define TYPE_BASECLASS_NAME(thistype,index) TYPE_MAIN_TYPE(thistype)->fields[index].name
c906108c
SS
872#define TYPE_BASECLASS_BITPOS(thistype,index) TYPE_FIELD_BITPOS(thistype,index)
873#define BASETYPE_VIA_PUBLIC(thistype, index) \
874 ((!TYPE_FIELD_PRIVATE(thistype, index)) && (!TYPE_FIELD_PROTECTED(thistype, index)))
875
876#define BASETYPE_VIA_VIRTUAL(thistype, index) \
877 (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits == NULL ? 0 \
878 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (index)))
879
880#define FIELD_TYPE(thisfld) ((thisfld).type)
881#define FIELD_NAME(thisfld) ((thisfld).name)
882#define FIELD_BITPOS(thisfld) ((thisfld).loc.bitpos)
01ad7f36 883#define FIELD_ARTIFICIAL(thisfld) ((thisfld).artificial)
c906108c 884#define FIELD_BITSIZE(thisfld) ((thisfld).bitsize)
01ad7f36 885#define FIELD_STATIC_KIND(thisfld) ((thisfld).static_kind)
c906108c
SS
886#define FIELD_PHYSNAME(thisfld) ((thisfld).loc.physname)
887#define FIELD_PHYSADDR(thisfld) ((thisfld).loc.physaddr)
888#define SET_FIELD_PHYSNAME(thisfld, name) \
01ad7f36 889 ((thisfld).static_kind = 1, FIELD_PHYSNAME(thisfld) = (name))
c906108c 890#define SET_FIELD_PHYSADDR(thisfld, name) \
01ad7f36 891 ((thisfld).static_kind = 2, FIELD_PHYSADDR(thisfld) = (name))
2fdde8f8 892#define TYPE_FIELD(thistype, n) TYPE_MAIN_TYPE(thistype)->fields[n]
c906108c
SS
893#define TYPE_FIELD_TYPE(thistype, n) FIELD_TYPE(TYPE_FIELD(thistype, n))
894#define TYPE_FIELD_NAME(thistype, n) FIELD_NAME(TYPE_FIELD(thistype, n))
895#define TYPE_FIELD_BITPOS(thistype, n) FIELD_BITPOS(TYPE_FIELD(thistype,n))
8176bb6d 896#define TYPE_FIELD_ARTIFICIAL(thistype, n) FIELD_ARTIFICIAL(TYPE_FIELD(thistype,n))
c906108c
SS
897#define TYPE_FIELD_BITSIZE(thistype, n) FIELD_BITSIZE(TYPE_FIELD(thistype,n))
898#define TYPE_FIELD_PACKED(thistype, n) (FIELD_BITSIZE(TYPE_FIELD(thistype,n))!=0)
899#define TYPE_TEMPLATE_ARG(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->template_args[n]
900#define TYPE_INSTANTIATION(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->instantiations[n]
901
902#define TYPE_FIELD_PRIVATE_BITS(thistype) \
903 TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits
904#define TYPE_FIELD_PROTECTED_BITS(thistype) \
905 TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits
906#define TYPE_FIELD_IGNORE_BITS(thistype) \
907 TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits
908#define TYPE_FIELD_VIRTUAL_BITS(thistype) \
909 TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits
910#define SET_TYPE_FIELD_PRIVATE(thistype, n) \
911 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits, (n))
912#define SET_TYPE_FIELD_PROTECTED(thistype, n) \
913 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits, (n))
914#define SET_TYPE_FIELD_IGNORE(thistype, n) \
915 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits, (n))
916#define SET_TYPE_FIELD_VIRTUAL(thistype, n) \
917 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (n))
918#define TYPE_FIELD_PRIVATE(thistype, n) \
919 (TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits == NULL ? 0 \
920 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits, (n)))
921#define TYPE_FIELD_PROTECTED(thistype, n) \
922 (TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits == NULL ? 0 \
923 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits, (n)))
924#define TYPE_FIELD_IGNORE(thistype, n) \
925 (TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits == NULL ? 0 \
926 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits, (n)))
927#define TYPE_FIELD_VIRTUAL(thistype, n) \
928 (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits == NULL ? 0 \
929 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (n)))
930
01ad7f36
DJ
931#define TYPE_FIELD_STATIC(thistype, n) (TYPE_MAIN_TYPE (thistype)->fields[n].static_kind != 0)
932#define TYPE_FIELD_STATIC_KIND(thistype, n) TYPE_MAIN_TYPE (thistype)->fields[n].static_kind
933#define TYPE_FIELD_STATIC_HAS_ADDR(thistype, n) (TYPE_MAIN_TYPE (thistype)->fields[n].static_kind == 2)
c906108c
SS
934#define TYPE_FIELD_STATIC_PHYSNAME(thistype, n) FIELD_PHYSNAME(TYPE_FIELD(thistype, n))
935#define TYPE_FIELD_STATIC_PHYSADDR(thistype, n) FIELD_PHYSADDR(TYPE_FIELD(thistype, n))
936
937#define TYPE_FN_FIELDLISTS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists
938#define TYPE_FN_FIELDLIST(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n]
939#define TYPE_FN_FIELDLIST1(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].fn_fields
940#define TYPE_FN_FIELDLIST_NAME(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].name
941#define TYPE_FN_FIELDLIST_LENGTH(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].length
942
943#define TYPE_FN_FIELD(thisfn, n) (thisfn)[n]
944#define TYPE_FN_FIELD_PHYSNAME(thisfn, n) (thisfn)[n].physname
945#define TYPE_FN_FIELD_TYPE(thisfn, n) (thisfn)[n].type
ad2f7632 946#define TYPE_FN_FIELD_ARGS(thisfn, n) TYPE_FIELDS ((thisfn)[n].type)
c906108c
SS
947#define TYPE_FN_FIELD_CONST(thisfn, n) ((thisfn)[n].is_const)
948#define TYPE_FN_FIELD_VOLATILE(thisfn, n) ((thisfn)[n].is_volatile)
949#define TYPE_FN_FIELD_PRIVATE(thisfn, n) ((thisfn)[n].is_private)
950#define TYPE_FN_FIELD_PROTECTED(thisfn, n) ((thisfn)[n].is_protected)
951#define TYPE_FN_FIELD_PUBLIC(thisfn, n) ((thisfn)[n].is_public)
952#define TYPE_FN_FIELD_STATIC(thisfn, n) ((thisfn)[n].is_static)
953#define TYPE_FN_FIELD_FINAL(thisfn, n) ((thisfn)[n].is_final)
954#define TYPE_FN_FIELD_SYNCHRONIZED(thisfn, n) ((thisfn)[n].is_synchronized)
955#define TYPE_FN_FIELD_NATIVE(thisfn, n) ((thisfn)[n].is_native)
b02dede2 956#define TYPE_FN_FIELD_ARTIFICIAL(thisfn, n) ((thisfn)[n].is_artificial)
c906108c
SS
957#define TYPE_FN_FIELD_ABSTRACT(thisfn, n) ((thisfn)[n].is_abstract)
958#define TYPE_FN_FIELD_STUB(thisfn, n) ((thisfn)[n].is_stub)
959#define TYPE_FN_FIELD_INLINED(thisfn, n) ((thisfn)[n].is_inlined)
960#define TYPE_FN_FIELD_FCONTEXT(thisfn, n) ((thisfn)[n].fcontext)
961#define TYPE_FN_FIELD_VOFFSET(thisfn, n) ((thisfn)[n].voffset-2)
962#define TYPE_FN_FIELD_VIRTUAL_P(thisfn, n) ((thisfn)[n].voffset > 1)
963#define TYPE_FN_FIELD_STATIC_P(thisfn, n) ((thisfn)[n].voffset == VOFFSET_STATIC)
964
965#define TYPE_RUNTIME_PTR(thistype) (TYPE_CPLUS_SPECIFIC(thistype)->runtime_ptr)
966#define TYPE_VTABLE(thistype) (TYPE_RUNTIME_PTR(thistype)->has_vtable)
967#define TYPE_HAS_VTABLE(thistype) (TYPE_RUNTIME_PTR(thistype) && TYPE_VTABLE(thistype))
968#define TYPE_PRIMARY_BASE(thistype) (TYPE_RUNTIME_PTR(thistype)->primary_base)
969#define TYPE_VIRTUAL_BASE_LIST(thistype) (TYPE_RUNTIME_PTR(thistype)->virtual_base_list)
c5aa993b 970
c906108c
SS
971#define TYPE_LOCALTYPE_PTR(thistype) (TYPE_CPLUS_SPECIFIC(thistype)->localtype_ptr)
972#define TYPE_LOCALTYPE_FILE(thistype) (TYPE_CPLUS_SPECIFIC(thistype)->localtype_ptr->file)
973#define TYPE_LOCALTYPE_LINE(thistype) (TYPE_CPLUS_SPECIFIC(thistype)->localtype_ptr->line)
c5aa993b 974
c906108c 975#define TYPE_IS_OPAQUE(thistype) (((TYPE_CODE (thistype) == TYPE_CODE_STRUCT) || \
7b83ea04
AC
976 (TYPE_CODE (thistype) == TYPE_CODE_UNION)) && \
977 (TYPE_NFIELDS (thistype) == 0) && \
d77b6808
JK
978 (TYPE_CPLUS_SPECIFIC (thistype) && (TYPE_NFN_FIELDS (thistype) == 0)) && \
979 (TYPE_STUB (thistype) || !TYPE_STUB_SUPPORTED (thistype)))
c5aa993b 980
000177f0
AC
981struct builtin_type
982{
983 /* Address/pointer types. */
984
985 /* `pointer to data' type. Some target platforms use an implicitly
986 {sign,zero} -extended 32-bit ABI pointer on a 64-bit ISA. */
987 struct type *builtin_data_ptr;
988
989 /* `pointer to function (returning void)' type. Harvard
990 architectures mean that ABI function and code pointers are not
991 interconvertible. Similarly, since ANSI, C standards have
992 explicitly said that pointers to functions and pointers to data
993 are not interconvertible --- that is, you can't cast a function
994 pointer to void * and back, and expect to get the same value.
995 However, all function pointer types are interconvertible, so void
996 (*) () can server as a generic function pointer. */
997 struct type *builtin_func_ptr;
998
999 /* The target CPU's address type. This is the ISA address size. */
1000 struct type *builtin_core_addr;
1001
64c50499
UW
1002
1003 /* Types used for symbols with no debug information. */
1004 struct type *nodebug_text_symbol;
1005 struct type *nodebug_data_symbol;
1006 struct type *nodebug_unknown_symbol;
1007 struct type *nodebug_tls_symbol;
1008
1009
000177f0
AC
1010 /* Integral types. */
1011
000177f0
AC
1012 /* We use this for the '/c' print format, because c_char is just a
1013 one-byte integral type, which languages less laid back than C
1014 will print as ... well, a one-byte integral type. */
685419e2 1015 struct type *builtin_true_char;
000177f0
AC
1016
1017 /* Implicit size/sign (based on the the architecture's ABI). */
1018 struct type *builtin_void;
1019 struct type *builtin_char;
1020 struct type *builtin_short;
1021 struct type *builtin_int;
1022 struct type *builtin_long;
1023 struct type *builtin_signed_char;
1024 struct type *builtin_unsigned_char;
1025 struct type *builtin_unsigned_short;
1026 struct type *builtin_unsigned_int;
1027 struct type *builtin_unsigned_long;
1028 struct type *builtin_float;
1029 struct type *builtin_double;
1030 struct type *builtin_long_double;
1031 struct type *builtin_complex;
1032 struct type *builtin_double_complex;
1033 struct type *builtin_string;
1034 struct type *builtin_bool;
1035 struct type *builtin_long_long;
1036 struct type *builtin_unsigned_long_long;
1037};
c5aa993b 1038
000177f0
AC
1039/* Return the type table for the specified architecture. */
1040extern const struct builtin_type *builtin_type (struct gdbarch *gdbarch);
c5aa993b 1041
5674de60
UW
1042/* Compatibility macros to access types for the current architecture. */
1043#define builtin_type_void_data_ptr \
1044 (builtin_type (current_gdbarch)->builtin_data_ptr)
1045#define builtin_type_void_func_ptr \
1046 (builtin_type (current_gdbarch)->builtin_func_ptr)
1047#define builtin_type_CORE_ADDR \
1048 (builtin_type (current_gdbarch)->builtin_core_addr)
1049#define builtin_type_true_char \
1050 (builtin_type (current_gdbarch)->builtin_true_char)
1051#define builtin_type_void \
1052 (builtin_type (current_gdbarch)->builtin_void)
1053#define builtin_type_char \
1054 (builtin_type (current_gdbarch)->builtin_char)
1055#define builtin_type_short \
1056 (builtin_type (current_gdbarch)->builtin_short)
1057#define builtin_type_int \
1058 (builtin_type (current_gdbarch)->builtin_int)
1059#define builtin_type_long \
1060 (builtin_type (current_gdbarch)->builtin_long)
1061#define builtin_type_signed_char \
1062 (builtin_type (current_gdbarch)->builtin_signed_char)
1063#define builtin_type_unsigned_char \
1064 (builtin_type (current_gdbarch)->builtin_unsigned_char)
1065#define builtin_type_unsigned_short \
1066 (builtin_type (current_gdbarch)->builtin_unsigned_short)
1067#define builtin_type_unsigned_int \
1068 (builtin_type (current_gdbarch)->builtin_unsigned_int)
1069#define builtin_type_unsigned_long \
1070 (builtin_type (current_gdbarch)->builtin_unsigned_long)
1071#define builtin_type_float \
1072 (builtin_type (current_gdbarch)->builtin_float)
1073#define builtin_type_double \
1074 (builtin_type (current_gdbarch)->builtin_double)
1075#define builtin_type_long_double \
1076 (builtin_type (current_gdbarch)->builtin_long_double)
1077#define builtin_type_complex \
1078 (builtin_type (current_gdbarch)->builtin_complex)
1079#define builtin_type_double_complex \
1080 (builtin_type (current_gdbarch)->builtin_double_complex)
1081#define builtin_type_string \
1082 (builtin_type (current_gdbarch)->builtin_string)
1083#define builtin_type_bool \
1084 (builtin_type (current_gdbarch)->builtin_bool)
1085#define builtin_type_long_long \
1086 (builtin_type (current_gdbarch)->builtin_long_long)
1087#define builtin_type_unsigned_long_long \
1088 (builtin_type (current_gdbarch)->builtin_unsigned_long_long)
1089
1090
449a5da4
AC
1091/* Explicit sizes - see C9X <intypes.h> for naming scheme. The "int0"
1092 is for when an architecture needs to describe a register that has
1093 no size. */
1094extern struct type *builtin_type_int0;
c906108c
SS
1095extern struct type *builtin_type_int8;
1096extern struct type *builtin_type_uint8;
1097extern struct type *builtin_type_int16;
1098extern struct type *builtin_type_uint16;
1099extern struct type *builtin_type_int32;
1100extern struct type *builtin_type_uint32;
1101extern struct type *builtin_type_int64;
1102extern struct type *builtin_type_uint64;
8b982acf
EZ
1103extern struct type *builtin_type_int128;
1104extern struct type *builtin_type_uint128;
c2d11a7d 1105
598f52df 1106/* Explicit floating-point formats. See "floatformat.h". */
8da61cc4
DJ
1107extern const struct floatformat *floatformats_ieee_single[BFD_ENDIAN_UNKNOWN];
1108extern const struct floatformat *floatformats_ieee_double[BFD_ENDIAN_UNKNOWN];
1109extern const struct floatformat *floatformats_ieee_double_littlebyte_bigword[BFD_ENDIAN_UNKNOWN];
1110extern const struct floatformat *floatformats_i387_ext[BFD_ENDIAN_UNKNOWN];
1111extern const struct floatformat *floatformats_m68881_ext[BFD_ENDIAN_UNKNOWN];
1112extern const struct floatformat *floatformats_arm_ext[BFD_ENDIAN_UNKNOWN];
1113extern const struct floatformat *floatformats_ia64_spill[BFD_ENDIAN_UNKNOWN];
1114extern const struct floatformat *floatformats_ia64_quad[BFD_ENDIAN_UNKNOWN];
1115extern const struct floatformat *floatformats_vax_f[BFD_ENDIAN_UNKNOWN];
1116extern const struct floatformat *floatformats_vax_d[BFD_ENDIAN_UNKNOWN];
1117
1118extern struct type *builtin_type_ieee_single;
1119extern struct type *builtin_type_ieee_double;
598f52df
AC
1120extern struct type *builtin_type_i387_ext;
1121extern struct type *builtin_type_m68881_ext;
8da61cc4
DJ
1122extern struct type *builtin_type_arm_ext;
1123extern struct type *builtin_type_ia64_spill;
1124extern struct type *builtin_type_ia64_quad;
598f52df 1125
c906108c
SS
1126/* This type represents a type that was unrecognized in symbol
1127 read-in. */
1128
1129extern struct type *builtin_type_error;
1130
c906108c
SS
1131
1132/* Modula-2 types */
1133
5760b90a
UW
1134struct builtin_m2_type
1135{
1136 struct type *builtin_char;
1137 struct type *builtin_int;
1138 struct type *builtin_card;
1139 struct type *builtin_real;
1140 struct type *builtin_bool;
1141};
1142
1143/* Return the Modula-2 type table for the specified architecture. */
1144extern const struct builtin_m2_type *builtin_m2_type (struct gdbarch *gdbarch);
1145
1146/* Compatibility macros to access types for the current architecture. */
1147#define builtin_type_m2_char \
1148 (builtin_m2_type (current_gdbarch)->builtin_char)
1149#define builtin_type_m2_int \
1150 (builtin_m2_type (current_gdbarch)->builtin_int)
1151#define builtin_type_m2_card \
1152 (builtin_m2_type (current_gdbarch)->builtin_card)
1153#define builtin_type_m2_real \
1154 (builtin_m2_type (current_gdbarch)->builtin_real)
1155#define builtin_type_m2_bool \
1156 (builtin_m2_type (current_gdbarch)->builtin_bool)
1157
c906108c 1158
c906108c
SS
1159/* Fortran (F77) types */
1160
54ef06c7
UW
1161struct builtin_f_type
1162{
1163 struct type *builtin_character;
1164 struct type *builtin_integer;
1165 struct type *builtin_integer_s2;
1166 struct type *builtin_logical;
1167 struct type *builtin_logical_s1;
1168 struct type *builtin_logical_s2;
1169 struct type *builtin_real;
1170 struct type *builtin_real_s8;
1171 struct type *builtin_real_s16;
1172 struct type *builtin_complex_s8;
1173 struct type *builtin_complex_s16;
1174 struct type *builtin_complex_s32;
1175 struct type *builtin_void;
1176};
1177
1178/* Return the Fortran type table for the specified architecture. */
1179extern const struct builtin_f_type *builtin_f_type (struct gdbarch *gdbarch);
1180
1181/* Compatibility macros to access types for the current architecture. */
1182#define builtin_type_f_character \
1183 (builtin_f_type (current_gdbarch)->builtin_character)
1184#define builtin_type_f_integer \
1185 (builtin_f_type (current_gdbarch)->builtin_integer)
1186#define builtin_type_f_integer_s2 \
1187 (builtin_f_type (current_gdbarch)->builtin_integer_s2)
1188#define builtin_type_f_logical \
1189 (builtin_f_type (current_gdbarch)->builtin_logical)
1190#define builtin_type_f_logical_s1 \
1191 (builtin_f_type (current_gdbarch)->builtin_logical_s1)
1192#define builtin_type_f_logical_s2 \
1193 (builtin_f_type (current_gdbarch)->builtin_logical_s2)
1194#define builtin_type_f_real \
1195 (builtin_f_type (current_gdbarch)->builtin_real)
1196#define builtin_type_f_real_s8 \
1197 (builtin_f_type (current_gdbarch)->builtin_real_s8)
1198#define builtin_type_f_real_s16 \
1199 (builtin_f_type (current_gdbarch)->builtin_real_s16)
1200#define builtin_type_f_complex_s8 \
1201 (builtin_f_type (current_gdbarch)->builtin_complex_s8)
1202#define builtin_type_f_complex_s16 \
1203 (builtin_f_type (current_gdbarch)->builtin_complex_s16)
1204#define builtin_type_f_complex_s32 \
1205 (builtin_f_type (current_gdbarch)->builtin_complex_s32)
1206#define builtin_type_f_void \
1207 (builtin_f_type (current_gdbarch)->builtin_void)
1208
c906108c
SS
1209
1210/* RTTI for C++ */
c5aa993b 1211/* extern struct type *builtin_type_cxx_typeinfo; */
c906108c
SS
1212
1213/* Maximum and minimum values of built-in types */
1214
1215#define MAX_OF_TYPE(t) \
ba41d549
C
1216 (TYPE_UNSIGNED(t) ? UMAX_OF_SIZE(TYPE_LENGTH(t)) \
1217 : MAX_OF_SIZE(TYPE_LENGTH(t)))
c906108c
SS
1218
1219#define MIN_OF_TYPE(t) \
ba41d549
C
1220 (TYPE_UNSIGNED(t) ? UMIN_OF_SIZE(TYPE_LENGTH(t)) \
1221 : MIN_OF_SIZE(TYPE_LENGTH(t)))
c906108c
SS
1222
1223/* Allocate space for storing data associated with a particular type.
1224 We ensure that the space is allocated using the same mechanism that
1225 was used to allocate the space for the type structure itself. I.E.
b99607ea
EZ
1226 if the type is on an objfile's objfile_obstack, then the space for data
1227 associated with that type will also be allocated on the objfile_obstack.
c906108c
SS
1228 If the type is not associated with any particular objfile (such as
1229 builtin types), then the data space will be allocated with xmalloc,
1230 the same as for the type structure. */
1231
1232#define TYPE_ALLOC(t,size) \
1233 (TYPE_OBJFILE (t) != NULL \
b99607ea 1234 ? obstack_alloc (&TYPE_OBJFILE (t) -> objfile_obstack, size) \
c906108c
SS
1235 : xmalloc (size))
1236
ae5a43e0
DJ
1237#define TYPE_ZALLOC(t,size) \
1238 (TYPE_OBJFILE (t) != NULL \
1239 ? memset (obstack_alloc (&TYPE_OBJFILE (t)->objfile_obstack, size), \
1240 0, size) \
1241 : xzalloc (size))
1242
a14ed312 1243extern struct type *alloc_type (struct objfile *);
c906108c 1244
a14ed312
KB
1245extern struct type *init_type (enum type_code, int, int, char *,
1246 struct objfile *);
c906108c 1247
0e101458
AC
1248/* Helper functions to construct a struct or record type. An
1249 initially empty type is created using init_composite_type().
1250 Fields are then added using append_struct_type_field(). A union
1251 type has its size set to the largest field. A struct type has each
1252 field packed against the previous. */
1253
1254extern struct type *init_composite_type (char *name, enum type_code code);
1255extern void append_composite_type_field (struct type *t, char *name,
1256 struct type *field);
1257
4f2aea11
MK
1258/* Helper functions to construct a bit flags type. An initially empty
1259 type is created using init_flag_type(). Flags are then added using
1260 append_flag_type_flag(). */
1261extern struct type *init_flags_type (char *name, int length);
1262extern void append_flags_type_flag (struct type *type, int bitpos, char *name);
1263
794ac428
UW
1264extern struct type *init_vector_type (struct type *elt_type, int n);
1265
a14ed312 1266extern struct type *lookup_reference_type (struct type *);
c906108c 1267
a14ed312 1268extern struct type *make_reference_type (struct type *, struct type **);
c906108c 1269
a14ed312 1270extern struct type *make_cv_type (int, int, struct type *, struct type **);
c906108c 1271
dd6bda65
DJ
1272extern void replace_type (struct type *, struct type *);
1273
47663de5
MS
1274extern int address_space_name_to_int (char *);
1275
321432c0 1276extern const char *address_space_int_to_name (int);
47663de5
MS
1277
1278extern struct type *make_type_with_address_space (struct type *type,
1279 int space_identifier);
1280
0d5de010
DJ
1281extern struct type *lookup_memberptr_type (struct type *, struct type *);
1282
1283extern struct type *lookup_methodptr_type (struct type *);
c906108c 1284
0d5de010
DJ
1285extern void smash_to_method_type (struct type *type, struct type *domain,
1286 struct type *to_type, struct field *args,
1287 int nargs, int varargs);
c906108c 1288
0d5de010
DJ
1289extern void smash_to_memberptr_type (struct type *, struct type *,
1290 struct type *);
c906108c 1291
a14ed312 1292extern struct type *allocate_stub_method (struct type *);
c906108c 1293
a14ed312 1294extern char *type_name_no_tag (const struct type *);
c906108c 1295
a14ed312 1296extern struct type *lookup_struct_elt_type (struct type *, char *, int);
c906108c 1297
a14ed312 1298extern struct type *make_pointer_type (struct type *, struct type **);
c906108c 1299
a14ed312 1300extern struct type *lookup_pointer_type (struct type *);
c906108c 1301
a14ed312 1302extern struct type *make_function_type (struct type *, struct type **);
c906108c 1303
a14ed312 1304extern struct type *lookup_function_type (struct type *);
c906108c 1305
a14ed312
KB
1306extern struct type *create_range_type (struct type *, struct type *, int,
1307 int);
c906108c 1308
a14ed312
KB
1309extern struct type *create_array_type (struct type *, struct type *,
1310 struct type *);
c906108c 1311
a14ed312 1312extern struct type *create_string_type (struct type *, struct type *);
c906108c 1313
a14ed312 1314extern struct type *create_set_type (struct type *, struct type *);
c906108c 1315
a14ed312 1316extern struct type *lookup_unsigned_typename (char *);
c906108c 1317
a14ed312 1318extern struct type *lookup_signed_typename (char *);
c906108c 1319
a14ed312 1320extern struct type *check_typedef (struct type *);
c906108c
SS
1321
1322#define CHECK_TYPEDEF(TYPE) (TYPE) = check_typedef (TYPE)
1323
de17c821 1324extern void check_stub_method_group (struct type *, int);
c906108c 1325
a14ed312 1326extern char *gdb_mangle_name (struct type *, int, int);
c906108c 1327
a14ed312 1328extern struct type *lookup_typename (char *, struct block *, int);
c906108c 1329
a14ed312
KB
1330extern struct type *lookup_template_type (char *, struct type *,
1331 struct block *);
c906108c 1332
a14ed312 1333extern struct type *lookup_fundamental_type (struct objfile *, int);
c906108c 1334
a14ed312 1335extern void fill_in_vptr_fieldno (struct type *);
c906108c 1336
a14ed312 1337extern int get_destructor_fn_field (struct type *, int *, int *);
c906108c 1338
a14ed312 1339extern int get_discrete_bounds (struct type *, LONGEST *, LONGEST *);
c906108c 1340
a14ed312 1341extern int is_ancestor (struct type *, struct type *);
c906108c 1342
a14ed312 1343extern int has_vtable (struct type *);
c906108c 1344
a14ed312 1345extern struct type *primary_base_class (struct type *);
c906108c 1346
a14ed312
KB
1347extern int virtual_base_list_length (struct type *);
1348extern int virtual_base_list_length_skip_primaries (struct type *);
c906108c 1349
a14ed312
KB
1350extern int virtual_base_index (struct type *, struct type *);
1351extern int virtual_base_index_skip_primaries (struct type *, struct type *);
c906108c
SS
1352
1353
a14ed312 1354extern int class_index_in_primary_list (struct type *);
c906108c 1355
a14ed312 1356extern int count_virtual_fns (struct type *);
c906108c
SS
1357
1358/* Constants for HP/Taligent ANSI C++ runtime model */
1359
1360/* Where virtual function entries begin in the
1361 * virtual table, in the non-RRBC vtable format.
1362 * First 4 are the metavtable pointer, top offset,
1363 * typeinfo pointer, and dup base info pointer */
1364#define HP_ACC_VFUNC_START 4
1365
7b83ea04 1366/* (Negative) Offset where virtual base offset entries begin
c906108c 1367 * in the virtual table. Skips over metavtable pointer and
7b83ea04 1368 * the self-offset entry.
c906108c
SS
1369 * NOTE: NEGATE THIS BEFORE USING! The virtual base offsets
1370 * appear before the address point of the vtable (the slot
1371 * pointed to by the object's vtable pointer), i.e. at lower
1372 * addresses than the vtable pointer. */
1373#define HP_ACC_VBASE_START 2
1374
1375/* (Positive) Offset where the pointer to the typeinfo
1376 * object is present in the virtual table */
1377#define HP_ACC_TYPEINFO_OFFSET 2
1378
1379/* (Positive) Offset where the ``top offset'' entry of
1380 * the virtual table is */
1381#define HP_ACC_TOP_OFFSET_OFFSET 1
1382
1383/* Overload resolution */
1384
1385#define LENGTH_MATCH(bv) ((bv)->rank[0])
1386
c5aa993b 1387/* Badness if parameter list length doesn't match arg list length */
c906108c 1388#define LENGTH_MISMATCH_BADNESS 100
c5aa993b 1389/* Dummy badness value for nonexistent parameter positions */
c906108c
SS
1390#define TOO_FEW_PARAMS_BADNESS 100
1391/* Badness if no conversion among types */
1392#define INCOMPATIBLE_TYPE_BADNESS 100
c906108c
SS
1393
1394/* Badness of integral promotion */
1395#define INTEGER_PROMOTION_BADNESS 1
1396/* Badness of floating promotion */
1397#define FLOAT_PROMOTION_BADNESS 1
1398/* Badness of integral conversion */
1399#define INTEGER_CONVERSION_BADNESS 2
1400/* Badness of floating conversion */
1401#define FLOAT_CONVERSION_BADNESS 2
1402/* Badness of integer<->floating conversions */
1403#define INT_FLOAT_CONVERSION_BADNESS 2
1404/* Badness of converting to a boolean */
1405#define BOOLEAN_CONVERSION_BADNESS 2
1406/* Badness of pointer conversion */
1407#define POINTER_CONVERSION_BADNESS 2
1408/* Badness of conversion of pointer to void pointer */
1409#define VOID_PTR_CONVERSION_BADNESS 2
db577aea 1410/* Badness of converting derived to base class */
c906108c 1411#define BASE_CONVERSION_BADNESS 2
db577aea
AC
1412/* Badness of converting from non-reference to reference */
1413#define REFERENCE_CONVERSION_BADNESS 2
7b83ea04 1414
c906108c
SS
1415/* Non-standard conversions allowed by the debugger */
1416/* Converting a pointer to an int is usually OK */
1417#define NS_POINTER_CONVERSION_BADNESS 10
1418
1419
a14ed312 1420extern int compare_badness (struct badness_vector *, struct badness_vector *);
c906108c 1421
a14ed312
KB
1422extern struct badness_vector *rank_function (struct type **, int,
1423 struct type **, int);
c906108c 1424
a14ed312 1425extern int rank_one_type (struct type *, struct type *);
c906108c 1426
a14ed312 1427extern void recursive_dump_type (struct type *, int);
c906108c
SS
1428
1429/* printcmd.c */
1430
366b1cbf 1431extern void print_scalar_formatted (const void *, struct type *, int, int,
d9fcf2fb 1432 struct ui_file *);
c906108c 1433
a14ed312 1434extern int can_dereference (struct type *);
c906108c 1435
a14ed312 1436extern int is_integral_type (struct type *);
adf40b2e 1437
a14ed312 1438extern void maintenance_print_type (char *, int);
c906108c 1439
ae5a43e0
DJ
1440extern htab_t create_copied_types_hash (struct objfile *objfile);
1441
1442extern struct type *copy_type_recursive (struct objfile *objfile,
1443 struct type *type,
1444 htab_t copied_types);
1445
c5aa993b 1446#endif /* GDBTYPES_H */