Add dwarf2_per_objfile parameter to dwarf2_read_addr_index
[deliverable/binutils-gdb.git] / gdb / gdbtypes.h
CommitLineData
80180f79 1
c906108c 2/* Internal type definitions for GDB.
1bac305b 3
b811d2c2 4 Copyright (C) 1992-2020 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
c5aa993b
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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
5e3a2c38
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26/* * \page gdbtypes GDB Types
27
28 GDB represents all the different kinds of types in programming
29 languages using a common representation defined in gdbtypes.h.
30
31 The main data structure is main_type; it consists of a code (such
71e50e83 32 as #TYPE_CODE_ENUM for enumeration types), a number of
5e3a2c38 33 generally-useful fields such as the printable name, and finally a
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34 field main_type::type_specific that is a union of info specific to
35 particular languages or other special cases (such as calling
36 convention).
5e3a2c38 37
71e50e83 38 The available type codes are defined in enum #type_code. The enum
5e3a2c38
SS
39 includes codes both for types that are common across a variety
40 of languages, and for types that are language-specific.
41
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42 Most accesses to type fields go through macros such as
43 #TYPE_CODE(thistype) and #TYPE_FN_FIELD_CONST(thisfn, n). These are
44 written such that they can be used as both rvalues and lvalues.
5e3a2c38
SS
45 */
46
ae5a43e0 47#include "hashtab.h"
268a13a5
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48#include "gdbsupport/array-view.h"
49#include "gdbsupport/offset-type.h"
50#include "gdbsupport/enum-flags.h"
51#include "gdbsupport/underlying.h"
52#include "gdbsupport/print-utils.h"
e35000a7 53#include "dwarf2.h"
ef83a141 54#include "gdb_obstack.h"
ae5a43e0 55
7fc73f38 56/* Forward declarations for prototypes. */
da3331ec 57struct field;
7fc73f38 58struct block;
79a45b7d 59struct value_print_options;
e6c014f2 60struct language_defn;
7fc73f38 61
836bf454
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62/* These declarations are DWARF-specific as some of the gdbtypes.h data types
63 are already DWARF-specific. */
64
5e3a2c38
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65/* * Offset relative to the start of its containing CU (compilation
66 unit). */
9c541725 67DEFINE_OFFSET_TYPE (cu_offset, unsigned int);
836bf454 68
5e3a2c38
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69/* * Offset relative to the start of its .debug_info or .debug_types
70 section. */
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71DEFINE_OFFSET_TYPE (sect_offset, uint64_t);
72
73static inline char *
74sect_offset_str (sect_offset offset)
75{
76 return hex_string (to_underlying (offset));
77}
836bf454 78
c906108c
SS
79/* Some macros for char-based bitfields. */
80
81#define B_SET(a,x) ((a)[(x)>>3] |= (1 << ((x)&7)))
82#define B_CLR(a,x) ((a)[(x)>>3] &= ~(1 << ((x)&7)))
83#define B_TST(a,x) ((a)[(x)>>3] & (1 << ((x)&7)))
84#define B_TYPE unsigned char
85#define B_BYTES(x) ( 1 + ((x)>>3) )
86#define B_CLRALL(a,x) memset ((a), 0, B_BYTES(x))
87
5e3a2c38
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88/* * Different kinds of data types are distinguished by the `code'
89 field. */
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90
91enum type_code
c5aa993b 92 {
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93 TYPE_CODE_BITSTRING = -1, /**< Deprecated */
94 TYPE_CODE_UNDEF = 0, /**< Not used; catches errors */
95 TYPE_CODE_PTR, /**< Pointer type */
e6742ace 96
5e3a2c38 97 /* * Array type with lower & upper bounds.
e6742ace
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98
99 Regardless of the language, GDB represents multidimensional
100 array types the way C does: as arrays of arrays. So an
101 instance of a GDB array type T can always be seen as a series
102 of instances of TYPE_TARGET_TYPE (T) laid out sequentially in
103 memory.
104
105 Row-major languages like C lay out multi-dimensional arrays so
106 that incrementing the rightmost index in a subscripting
107 expression results in the smallest change in the address of the
108 element referred to. Column-major languages like Fortran lay
109 them out so that incrementing the leftmost index results in the
110 smallest change.
111
112 This means that, in column-major languages, working our way
113 from type to target type corresponds to working through indices
114 from right to left, not left to right. */
115 TYPE_CODE_ARRAY,
116
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117 TYPE_CODE_STRUCT, /**< C struct or Pascal record */
118 TYPE_CODE_UNION, /**< C union or Pascal variant part */
119 TYPE_CODE_ENUM, /**< Enumeration type */
120 TYPE_CODE_FLAGS, /**< Bit flags type */
121 TYPE_CODE_FUNC, /**< Function type */
122 TYPE_CODE_INT, /**< Integer type */
c5aa993b 123
e8932576 124 /* * Floating type. This is *NOT* a complex type. */
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125 TYPE_CODE_FLT,
126
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127 /* * Void type. The length field specifies the length (probably
128 always one) which is used in pointer arithmetic involving
129 pointers to this type, but actually dereferencing such a
130 pointer is invalid; a void type has no length and no actual
131 representation in memory or registers. A pointer to a void
132 type is a generic pointer. */
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133 TYPE_CODE_VOID,
134
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135 TYPE_CODE_SET, /**< Pascal sets */
136 TYPE_CODE_RANGE, /**< Range (integers within spec'd bounds). */
c5aa993b 137
5e3a2c38 138 /* * A string type which is like an array of character but prints
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139 differently. It does not contain a length field as Pascal
140 strings (for many Pascals, anyway) do; if we want to deal with
141 such strings, we should use a new type code. */
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142 TYPE_CODE_STRING,
143
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144 /* * Unknown type. The length field is valid if we were able to
145 deduce that much about the type, or 0 if we don't even know
146 that. */
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147 TYPE_CODE_ERROR,
148
149 /* C++ */
5e3a2c38 150 TYPE_CODE_METHOD, /**< Method type */
0d5de010 151
5e3a2c38 152 /* * Pointer-to-member-function type. This describes how to access a
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153 particular member function of a class (possibly a virtual
154 member function). The representation may vary between different
155 C++ ABIs. */
156 TYPE_CODE_METHODPTR,
157
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158 /* * Pointer-to-member type. This is the offset within a class to
159 some particular data member. The only currently supported
160 representation uses an unbiased offset, with -1 representing
161 NULL; this is used by the Itanium C++ ABI (used by GCC on all
162 platforms). */
0d5de010
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163 TYPE_CODE_MEMBERPTR,
164
5e3a2c38 165 TYPE_CODE_REF, /**< C++ Reference types */
c5aa993b 166
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167 TYPE_CODE_RVALUE_REF, /**< C++ rvalue reference types */
168
5e3a2c38 169 TYPE_CODE_CHAR, /**< *real* character type */
c5aa993b 170
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171 /* * Boolean type. 0 is false, 1 is true, and other values are
172 non-boolean (e.g. FORTRAN "logical" used as unsigned int). */
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173 TYPE_CODE_BOOL,
174
175 /* Fortran */
5e3a2c38 176 TYPE_CODE_COMPLEX, /**< Complex float */
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177
178 TYPE_CODE_TYPEDEF,
c5aa993b 179
5e3a2c38 180 TYPE_CODE_NAMESPACE, /**< C++ namespace. */
7678ef8f 181
5e3a2c38 182 TYPE_CODE_DECFLOAT, /**< Decimal floating point. */
bc3b79fd 183
5e3a2c38 184 TYPE_CODE_MODULE, /**< Fortran module. */
f55ee35c 185
5e3a2c38 186 /* * Internal function type. */
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187 TYPE_CODE_INTERNAL_FUNCTION,
188
189 /* * Methods implemented in extension languages. */
190 TYPE_CODE_XMETHOD
c5aa993b 191 };
c906108c 192
5e3a2c38 193/* * Some bits for the type's instance_flags word. See the macros
a9ff5f12 194 below for documentation on each bit. */
5e3a2c38 195
ad69edbb 196enum type_instance_flag_value : unsigned
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197{
198 TYPE_INSTANCE_FLAG_CONST = (1 << 0),
199 TYPE_INSTANCE_FLAG_VOLATILE = (1 << 1),
200 TYPE_INSTANCE_FLAG_CODE_SPACE = (1 << 2),
201 TYPE_INSTANCE_FLAG_DATA_SPACE = (1 << 3),
202 TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1 = (1 << 4),
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203 TYPE_INSTANCE_FLAG_ADDRESS_CLASS_2 = (1 << 5),
204 TYPE_INSTANCE_FLAG_NOTTEXT = (1 << 6),
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205 TYPE_INSTANCE_FLAG_RESTRICT = (1 << 7),
206 TYPE_INSTANCE_FLAG_ATOMIC = (1 << 8)
876cecd0 207};
c906108c 208
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209DEF_ENUM_FLAGS_TYPE (enum type_instance_flag_value, type_instance_flags);
210
5e3a2c38 211/* * Unsigned integer type. If this is not set for a TYPE_CODE_INT,
a9ff5f12 212 the type is signed (unless TYPE_NOSIGN (below) is set). */
c906108c 213
876cecd0 214#define TYPE_UNSIGNED(t) (TYPE_MAIN_TYPE (t)->flag_unsigned)
c906108c 215
5e3a2c38
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216/* * No sign for this type. In C++, "char", "signed char", and
217 "unsigned char" are distinct types; so we need an extra flag to
218 indicate the absence of a sign! */
c906108c 219
876cecd0 220#define TYPE_NOSIGN(t) (TYPE_MAIN_TYPE (t)->flag_nosign)
c906108c 221
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222/* * A compiler may supply dwarf instrumentation
223 that indicates the desired endian interpretation of the variable
224 differs from the native endian representation. */
225
226#define TYPE_ENDIANITY_NOT_DEFAULT(t) (TYPE_MAIN_TYPE (t)->flag_endianity_not_default)
227
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228/* * This appears in a type's flags word if it is a stub type (e.g.,
229 if someone referenced a type that wasn't defined in a source file
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230 via (struct sir_not_appearing_in_this_film *)). */
231
876cecd0 232#define TYPE_STUB(t) (TYPE_MAIN_TYPE (t)->flag_stub)
c906108c 233
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234/* * The target type of this type is a stub type, and this type needs
235 to be updated if it gets un-stubbed in check_typedef. Used for
236 arrays and ranges, in which TYPE_LENGTH of the array/range gets set
237 based on the TYPE_LENGTH of the target type. Also, set for
238 TYPE_CODE_TYPEDEF. */
c906108c 239
876cecd0 240#define TYPE_TARGET_STUB(t) (TYPE_MAIN_TYPE (t)->flag_target_stub)
c906108c 241
5e3a2c38
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242/* * This is a function type which appears to have a prototype. We
243 need this for function calls in order to tell us if it's necessary
244 to coerce the args, or to just do the standard conversions. This
245 is used with a short field. */
c906108c 246
876cecd0 247#define TYPE_PROTOTYPED(t) (TYPE_MAIN_TYPE (t)->flag_prototyped)
c906108c 248
5e3a2c38 249/* * FIXME drow/2002-06-03: Only used for methods, but applies as well
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250 to functions. */
251
252#define TYPE_VARARGS(t) (TYPE_MAIN_TYPE (t)->flag_varargs)
253
5e3a2c38 254/* * Identify a vector type. Gcc is handling this by adding an extra
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255 attribute to the array type. We slurp that in as a new flag of a
256 type. This is used only in dwarf2read.c. */
257#define TYPE_VECTOR(t) (TYPE_MAIN_TYPE (t)->flag_vector)
258
5e3a2c38
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259/* * The debugging formats (especially STABS) do not contain enough
260 information to represent all Ada types---especially those whose
261 size depends on dynamic quantities. Therefore, the GNAT Ada
262 compiler includes extra information in the form of additional type
263 definitions connected by naming conventions. This flag indicates
264 that the type is an ordinary (unencoded) GDB type that has been
265 created from the necessary run-time information, and does not need
266 further interpretation. Optionally marks ordinary, fixed-size GDB
267 type. */
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268
269#define TYPE_FIXED_INSTANCE(t) (TYPE_MAIN_TYPE (t)->flag_fixed_instance)
270
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271/* * This debug target supports TYPE_STUB(t). In the unsupported case
272 we have to rely on NFIELDS to be zero etc., see TYPE_IS_OPAQUE().
273 TYPE_STUB(t) with !TYPE_STUB_SUPPORTED(t) may exist if we only
274 guessed the TYPE_STUB(t) value (see dwarfread.c). */
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275
276#define TYPE_STUB_SUPPORTED(t) (TYPE_MAIN_TYPE (t)->flag_stub_supported)
277
5e3a2c38 278/* * Not textual. By default, GDB treats all single byte integers as
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TT
279 characters (or elements of strings) unless this flag is set. */
280
2844d6b5 281#define TYPE_NOTTEXT(t) (TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_NOTTEXT)
876cecd0 282
5e3a2c38
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283/* * Used only for TYPE_CODE_FUNC where it specifies the real function
284 address is returned by this function call. TYPE_TARGET_TYPE
285 determines the final returned function type to be presented to
286 user. */
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287
288#define TYPE_GNU_IFUNC(t) (TYPE_MAIN_TYPE (t)->flag_gnu_ifunc)
289
5e3a2c38 290/* * Type owner. If TYPE_OBJFILE_OWNED is true, the type is owned by
30baf67b 291 the objfile retrieved as TYPE_OBJFILE. Otherwise, the type is
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292 owned by an architecture; TYPE_OBJFILE is NULL in this case. */
293
294#define TYPE_OBJFILE_OWNED(t) (TYPE_MAIN_TYPE (t)->flag_objfile_owned)
295#define TYPE_OWNER(t) TYPE_MAIN_TYPE(t)->owner
296#define TYPE_OBJFILE(t) (TYPE_OBJFILE_OWNED(t)? TYPE_OWNER(t).objfile : NULL)
297
5e3a2c38 298/* * True if this type was declared using the "class" keyword. This is
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299 only valid for C++ structure and enum types. If false, a structure
300 was declared as a "struct"; if true it was declared "class". For
301 enum types, this is true when "enum class" or "enum struct" was
302 used to declare the type.. */
0cc2414c
TT
303
304#define TYPE_DECLARED_CLASS(t) (TYPE_MAIN_TYPE (t)->flag_declared_class)
305
5e3a2c38 306/* * True if this type is a "flag" enum. A flag enum is one where all
cafec441
TT
307 the values are pairwise disjoint when "and"ed together. This
308 affects how enum values are printed. */
309
310#define TYPE_FLAG_ENUM(t) (TYPE_MAIN_TYPE (t)->flag_flag_enum)
311
5e3a2c38 312/* * Constant type. If this is set, the corresponding type has a
0963b4bd 313 const modifier. */
876cecd0 314
3693fdb3 315#define TYPE_CONST(t) ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_CONST) != 0)
876cecd0 316
5e3a2c38 317/* * Volatile type. If this is set, the corresponding type has a
0963b4bd 318 volatile modifier. */
876cecd0 319
3e43a32a 320#define TYPE_VOLATILE(t) \
3693fdb3 321 ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_VOLATILE) != 0)
c906108c 322
5e3a2c38 323/* * Restrict type. If this is set, the corresponding type has a
06d66ee9
TT
324 restrict modifier. */
325
326#define TYPE_RESTRICT(t) \
3693fdb3 327 ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_RESTRICT) != 0)
06d66ee9 328
a2c2acaf
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329/* * Atomic type. If this is set, the corresponding type has an
330 _Atomic modifier. */
331
332#define TYPE_ATOMIC(t) \
3693fdb3 333 ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_ATOMIC) != 0)
a2c2acaf 334
f9aeb8d4
AV
335/* * True if this type represents either an lvalue or lvalue reference type. */
336
337#define TYPE_IS_REFERENCE(t) \
78134374 338 ((t)->code () == TYPE_CODE_REF || (t)->code () == TYPE_CODE_RVALUE_REF)
f9aeb8d4 339
bc68014d
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340/* * True if this type is allocatable. */
341#define TYPE_IS_ALLOCATABLE(t) \
24e99c6c 342 ((t)->dyn_prop (DYN_PROP_ALLOCATED) != NULL)
bc68014d 343
ef83a141
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344/* * True if this type has variant parts. */
345#define TYPE_HAS_VARIANT_PARTS(t) \
24e99c6c 346 ((t)->dyn_prop (DYN_PROP_VARIANT_PARTS) != nullptr)
ef83a141 347
f8e89861
TT
348/* * True if this type has a dynamic length. */
349#define TYPE_HAS_DYNAMIC_LENGTH(t) \
24e99c6c 350 ((t)->dyn_prop (DYN_PROP_BYTE_SIZE) != nullptr)
f8e89861 351
5e3a2c38 352/* * Instruction-space delimited type. This is for Harvard architectures
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MS
353 which have separate instruction and data address spaces (and perhaps
354 others).
355
356 GDB usually defines a flat address space that is a superset of the
357 architecture's two (or more) address spaces, but this is an extension
358 of the architecture's model.
359
a9ff5f12 360 If TYPE_INSTANCE_FLAG_CODE_SPACE is set, an object of the corresponding type
47663de5
MS
361 resides in instruction memory, even if its address (in the extended
362 flat address space) does not reflect this.
363
a9ff5f12 364 Similarly, if TYPE_INSTANCE_FLAG_DATA_SPACE is set, then an object of the
47663de5
MS
365 corresponding type resides in the data memory space, even if
366 this is not indicated by its (flat address space) address.
367
368 If neither flag is set, the default space for functions / methods
369 is instruction space, and for data objects is data memory. */
370
876cecd0 371#define TYPE_CODE_SPACE(t) \
3693fdb3 372 ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_CODE_SPACE) != 0)
47663de5 373
876cecd0 374#define TYPE_DATA_SPACE(t) \
3693fdb3 375 ((TYPE_INSTANCE_FLAGS (t) & TYPE_INSTANCE_FLAG_DATA_SPACE) != 0)
f5f8a009 376
5e3a2c38
SS
377/* * Address class flags. Some environments provide for pointers
378 whose size is different from that of a normal pointer or address
379 types where the bits are interpreted differently than normal
a9ff5f12 380 addresses. The TYPE_INSTANCE_FLAG_ADDRESS_CLASS_n flags may be used in
5e3a2c38
SS
381 target specific ways to represent these different types of address
382 classes. */
383
8b2dbe47 384#define TYPE_ADDRESS_CLASS_1(t) (TYPE_INSTANCE_FLAGS(t) \
876cecd0 385 & TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1)
8b2dbe47 386#define TYPE_ADDRESS_CLASS_2(t) (TYPE_INSTANCE_FLAGS(t) \
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TT
387 & TYPE_INSTANCE_FLAG_ADDRESS_CLASS_2)
388#define TYPE_INSTANCE_FLAG_ADDRESS_CLASS_ALL \
389 (TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1 | TYPE_INSTANCE_FLAG_ADDRESS_CLASS_2)
8b2dbe47 390#define TYPE_ADDRESS_CLASS_ALL(t) (TYPE_INSTANCE_FLAGS(t) \
876cecd0 391 & TYPE_INSTANCE_FLAG_ADDRESS_CLASS_ALL)
d77b6808 392
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TT
393/* * Information about a single discriminant. */
394
395struct discriminant_range
396{
397 /* * The range of values for the variant. This is an inclusive
398 range. */
399 ULONGEST low, high;
400
401 /* * Return true if VALUE is contained in this range. IS_UNSIGNED
402 is true if this should be an unsigned comparison; false for
403 signed. */
404 bool contains (ULONGEST value, bool is_unsigned) const
405 {
406 if (is_unsigned)
407 return value >= low && value <= high;
408 LONGEST valuel = (LONGEST) value;
409 return valuel >= (LONGEST) low && valuel <= (LONGEST) high;
410 }
411};
412
413struct variant_part;
414
415/* * A single variant. A variant has a list of discriminant values.
416 When the discriminator matches one of these, the variant is
417 enabled. Each variant controls zero or more fields; and may also
418 control other variant parts as well. This struct corresponds to
419 DW_TAG_variant in DWARF. */
420
421struct variant : allocate_on_obstack
422{
423 /* * The discriminant ranges for this variant. */
424 gdb::array_view<discriminant_range> discriminants;
425
426 /* * The fields controlled by this variant. This is inclusive on
427 the low end and exclusive on the high end. A variant may not
428 control any fields, in which case the two values will be equal.
429 These are indexes into the type's array of fields. */
430 int first_field;
431 int last_field;
432
433 /* * Variant parts controlled by this variant. */
434 gdb::array_view<variant_part> parts;
435
436 /* * Return true if this is the default variant. The default
437 variant can be recognized because it has no associated
438 discriminants. */
439 bool is_default () const
440 {
441 return discriminants.empty ();
442 }
443
444 /* * Return true if this variant matches VALUE. IS_UNSIGNED is true
445 if this should be an unsigned comparison; false for signed. */
446 bool matches (ULONGEST value, bool is_unsigned) const;
447};
448
449/* * A variant part. Each variant part has an optional discriminant
450 and holds an array of variants. This struct corresponds to
451 DW_TAG_variant_part in DWARF. */
452
453struct variant_part : allocate_on_obstack
454{
455 /* * The index of the discriminant field in the outer type. This is
456 an index into the type's array of fields. If this is -1, there
457 is no discriminant, and only the default variant can be
458 considered to be selected. */
459 int discriminant_index;
460
461 /* * True if this discriminant is unsigned; false if signed. This
462 comes from the type of the discriminant. */
463 bool is_unsigned;
464
465 /* * The variants that are controlled by this variant part. Note
466 that these will always be sorted by field number. */
467 gdb::array_view<variant> variants;
468};
469
470
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TT
471enum dynamic_prop_kind
472{
473 PROP_UNDEFINED, /* Not defined. */
474 PROP_CONST, /* Constant. */
475 PROP_ADDR_OFFSET, /* Address offset. */
476 PROP_LOCEXPR, /* Location expression. */
ef83a141
TT
477 PROP_LOCLIST, /* Location list. */
478 PROP_VARIANT_PARTS, /* Variant parts. */
479 PROP_TYPE, /* Type. */
52059ffd
TT
480};
481
482union dynamic_prop_data
483{
484 /* Storage for constant property. */
485
486 LONGEST const_val;
487
488 /* Storage for dynamic property. */
489
490 void *baton;
ef83a141
TT
491
492 /* Storage of variant parts for a type. A type with variant parts
493 has all its fields "linearized" -- stored in a single field
494 array, just as if they had all been declared that way. The
495 variant parts are attached via a dynamic property, and then are
496 used to control which fields end up in the final type during
497 dynamic type resolution. */
498
499 const gdb::array_view<variant_part> *variant_parts;
500
501 /* Once a variant type is resolved, we may want to be able to go
502 from the resolved type to the original type. In this case we
503 rewrite the property's kind and set this field. */
504
505 struct type *original_type;
52059ffd
TT
506};
507
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508/* * Used to store a dynamic property. */
509
510struct dynamic_prop
511{
512 /* Determine which field of the union dynamic_prop.data is used. */
52059ffd 513 enum dynamic_prop_kind kind;
729efb13
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514
515 /* Storage for dynamic or static value. */
52059ffd 516 union dynamic_prop_data data;
729efb13
SA
517};
518
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PA
519/* Compare two dynamic_prop objects for equality. dynamic_prop
520 instances are equal iff they have the same type and storage. */
521extern bool operator== (const dynamic_prop &l, const dynamic_prop &r);
522
523/* Compare two dynamic_prop objects for inequality. */
524static inline bool operator!= (const dynamic_prop &l, const dynamic_prop &r)
525{
526 return !(l == r);
527}
528
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529/* * Define a type's dynamic property node kind. */
530enum dynamic_prop_node_kind
531{
532 /* A property providing a type's data location.
533 Evaluating this field yields to the location of an object's data. */
93a8e227 534 DYN_PROP_DATA_LOCATION,
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KB
535
536 /* A property representing DW_AT_allocated. The presence of this attribute
537 indicates that the object of the type can be allocated/deallocated. */
538 DYN_PROP_ALLOCATED,
539
a51119cd 540 /* A property representing DW_AT_associated. The presence of this attribute
3f2f83dd
KB
541 indicated that the object of the type can be associated. */
542 DYN_PROP_ASSOCIATED,
a405673c
JB
543
544 /* A property providing an array's byte stride. */
545 DYN_PROP_BYTE_STRIDE,
7c22600a 546
ef83a141
TT
547 /* A property holding variant parts. */
548 DYN_PROP_VARIANT_PARTS,
f8e89861
TT
549
550 /* A property holding the size of the type. */
551 DYN_PROP_BYTE_SIZE,
d9823cbb
KB
552};
553
554/* * List for dynamic type attributes. */
555struct dynamic_prop_list
556{
557 /* The kind of dynamic prop in this node. */
558 enum dynamic_prop_node_kind prop_kind;
559
560 /* The dynamic property itself. */
283a9958 561 struct dynamic_prop prop;
d9823cbb
KB
562
563 /* A pointer to the next dynamic property. */
564 struct dynamic_prop_list *next;
565};
729efb13 566
5e3a2c38
SS
567/* * Determine which field of the union main_type.fields[x].loc is
568 used. */
d6a843b5
JK
569
570enum field_loc_kind
571 {
5e3a2c38
SS
572 FIELD_LOC_KIND_BITPOS, /**< bitpos */
573 FIELD_LOC_KIND_ENUMVAL, /**< enumval */
574 FIELD_LOC_KIND_PHYSADDR, /**< physaddr */
575 FIELD_LOC_KIND_PHYSNAME, /**< physname */
576 FIELD_LOC_KIND_DWARF_BLOCK /**< dwarf_block */
d6a843b5
JK
577 };
578
5e3a2c38
SS
579/* * A discriminant to determine which field in the
580 main_type.type_specific union is being used, if any.
b4ba55a1 581
09e2d7c7 582 For types such as TYPE_CODE_FLT, the use of this
b4ba55a1
JB
583 discriminant is really redundant, as we know from the type code
584 which field is going to be used. As such, it would be possible to
585 reduce the size of this enum in order to save a bit or two for
586 other fields of struct main_type. But, since we still have extra
587 room , and for the sake of clarity and consistency, we treat all fields
588 of the union the same way. */
589
590enum type_specific_kind
591{
592 TYPE_SPECIFIC_NONE,
593 TYPE_SPECIFIC_CPLUS_STUFF,
594 TYPE_SPECIFIC_GNAT_STUFF,
595 TYPE_SPECIFIC_FLOATFORMAT,
09e2d7c7
DE
596 /* Note: This is used by TYPE_CODE_FUNC and TYPE_CODE_METHOD. */
597 TYPE_SPECIFIC_FUNC,
598 TYPE_SPECIFIC_SELF_TYPE
b4ba55a1
JB
599};
600
52059ffd
TT
601union type_owner
602{
603 struct objfile *objfile;
604 struct gdbarch *gdbarch;
605};
606
607union field_location
608{
609 /* * Position of this field, counting in bits from start of
d5a22e77
TT
610 containing structure. For big-endian targets, it is the bit
611 offset to the MSB. For little-endian targets, it is the bit
612 offset to the LSB. */
52059ffd 613
6b850546 614 LONGEST bitpos;
52059ffd
TT
615
616 /* * Enum value. */
617 LONGEST enumval;
618
619 /* * For a static field, if TYPE_FIELD_STATIC_HAS_ADDR then
620 physaddr is the location (in the target) of the static
621 field. Otherwise, physname is the mangled label of the
622 static field. */
623
624 CORE_ADDR physaddr;
625 const char *physname;
626
627 /* * The field location can be computed by evaluating the
628 following DWARF block. Its DATA is allocated on
629 objfile_obstack - no CU load is needed to access it. */
630
631 struct dwarf2_locexpr_baton *dwarf_block;
632};
633
634struct field
635{
636 union field_location loc;
637
638 /* * For a function or member type, this is 1 if the argument is
639 marked artificial. Artificial arguments should not be shown
640 to the user. For TYPE_CODE_RANGE it is set if the specific
641 bound is not defined. */
642
643 unsigned int artificial : 1;
644
645 /* * Discriminant for union field_location. */
646
647 ENUM_BITFIELD(field_loc_kind) loc_kind : 3;
648
649 /* * Size of this field, in bits, or zero if not packed.
650 If non-zero in an array type, indicates the element size in
651 bits (used only in Ada at the moment).
652 For an unpacked field, the field's type's length
653 says how many bytes the field occupies. */
654
655 unsigned int bitsize : 28;
656
657 /* * In a struct or union type, type of this field.
658 - In a function or member type, type of this argument.
659 - In an array type, the domain-type of the array. */
660
661 struct type *type;
662
663 /* * Name of field, value or argument.
664 NULL for range bounds, array domains, and member function
665 arguments. */
666
667 const char *name;
668};
669
670struct range_bounds
671{
672 /* * Low bound of range. */
673
674 struct dynamic_prop low;
675
676 /* * High bound of range. */
677
678 struct dynamic_prop high;
679
5bbd8269
AB
680 /* The stride value for this range. This can be stored in bits or bytes
681 based on the value of BYTE_STRIDE_P. It is optional to have a stride
682 value, if this range has no stride value defined then this will be set
683 to the constant zero. */
684
685 struct dynamic_prop stride;
686
4e962e74
TT
687 /* * The bias. Sometimes a range value is biased before storage.
688 The bias is added to the stored bits to form the true value. */
689
690 LONGEST bias;
691
52059ffd 692 /* True if HIGH range bound contains the number of elements in the
bfcdb852 693 subrange. This affects how the final high bound is computed. */
52059ffd 694
bab05c83 695 unsigned int flag_upper_bound_is_count : 1;
52059ffd
TT
696
697 /* True if LOW or/and HIGH are resolved into a static bound from
698 a dynamic one. */
699
bab05c83 700 unsigned int flag_bound_evaluated : 1;
5bbd8269
AB
701
702 /* If this is true this STRIDE is in bytes, otherwise STRIDE is in bits. */
703
704 unsigned int flag_is_byte_stride : 1;
52059ffd
TT
705};
706
0f59d5fc
PA
707/* Compare two range_bounds objects for equality. Simply does
708 memberwise comparison. */
709extern bool operator== (const range_bounds &l, const range_bounds &r);
710
711/* Compare two range_bounds objects for inequality. */
712static inline bool operator!= (const range_bounds &l, const range_bounds &r)
713{
714 return !(l == r);
715}
716
52059ffd
TT
717union type_specific
718{
719 /* * CPLUS_STUFF is for TYPE_CODE_STRUCT. It is initialized to
720 point to cplus_struct_default, a default static instance of a
721 struct cplus_struct_type. */
722
723 struct cplus_struct_type *cplus_stuff;
724
725 /* * GNAT_STUFF is for types for which the GNAT Ada compiler
726 provides additional information. */
727
728 struct gnat_aux_type *gnat_stuff;
729
0db7851f
UW
730 /* * FLOATFORMAT is for TYPE_CODE_FLT. It is a pointer to a
731 floatformat object that describes the floating-point value
732 that resides within the type. */
52059ffd 733
0db7851f 734 const struct floatformat *floatformat;
52059ffd
TT
735
736 /* * For TYPE_CODE_FUNC and TYPE_CODE_METHOD types. */
737
738 struct func_type *func_stuff;
739
740 /* * For types that are pointer to member types (TYPE_CODE_METHODPTR,
741 TYPE_CODE_MEMBERPTR), SELF_TYPE is the type that this pointer
742 is a member of. */
743
744 struct type *self_type;
745};
746
5e3a2c38
SS
747/* * Main structure representing a type in GDB.
748
749 This structure is space-critical. Its layout has been tweaked to
750 reduce the space used. */
0955bbf0 751
2fdde8f8
DJ
752struct main_type
753{
5e3a2c38 754 /* * Code for kind of type. */
2fdde8f8 755
0955bbf0
MC
756 ENUM_BITFIELD(type_code) code : 8;
757
5e3a2c38 758 /* * Flags about this type. These fields appear at this location
876cecd0
TT
759 because they packs nicely here. See the TYPE_* macros for
760 documentation about these fields. */
761
762 unsigned int flag_unsigned : 1;
763 unsigned int flag_nosign : 1;
764 unsigned int flag_stub : 1;
765 unsigned int flag_target_stub : 1;
876cecd0 766 unsigned int flag_prototyped : 1;
876cecd0
TT
767 unsigned int flag_varargs : 1;
768 unsigned int flag_vector : 1;
769 unsigned int flag_stub_supported : 1;
0875794a 770 unsigned int flag_gnu_ifunc : 1;
876cecd0 771 unsigned int flag_fixed_instance : 1;
e9bb382b 772 unsigned int flag_objfile_owned : 1;
34877895 773 unsigned int flag_endianity_not_default : 1;
5e3a2c38
SS
774
775 /* * True if this type was declared with "class" rather than
0cc2414c 776 "struct". */
5e3a2c38 777
0cc2414c 778 unsigned int flag_declared_class : 1;
876cecd0 779
5e3a2c38
SS
780 /* * True if this is an enum type with disjoint values. This
781 affects how the enum is printed. */
cafec441
TT
782
783 unsigned int flag_flag_enum : 1;
784
5e3a2c38
SS
785 /* * A discriminant telling us which field of the type_specific
786 union is being used for this type, if any. */
787
b4ba55a1
JB
788 ENUM_BITFIELD(type_specific_kind) type_specific_field : 3;
789
5e3a2c38
SS
790 /* * Number of fields described for this type. This field appears
791 at this location because it packs nicely here. */
876cecd0
TT
792
793 short nfields;
794
5e3a2c38 795 /* * Name of this type, or NULL if none.
2fdde8f8 796
e86ca25f
TT
797 This is used for printing only. For looking up a name, look for
798 a symbol in the VAR_DOMAIN. This is generally allocated in the
799 objfile's obstack. However coffread.c uses malloc. */
2fdde8f8 800
0d5cff50 801 const char *name;
2fdde8f8 802
5e3a2c38
SS
803 /* * Every type is now associated with a particular objfile, and the
804 type is allocated on the objfile_obstack for that objfile. One
805 problem however, is that there are times when gdb allocates new
806 types while it is not in the process of reading symbols from a
807 particular objfile. Fortunately, these happen when the type
808 being created is a derived type of an existing type, such as in
809 lookup_pointer_type(). So we can just allocate the new type
810 using the same objfile as the existing type, but to do this we
811 need a backpointer to the objfile from the existing type. Yes
812 this is somewhat ugly, but without major overhaul of the internal
813 type system, it can't be avoided for now. */
2fdde8f8 814
52059ffd 815 union type_owner owner;
2fdde8f8 816
5e3a2c38
SS
817 /* * For a pointer type, describes the type of object pointed to.
818 - For an array type, describes the type of the elements.
819 - For a function or method type, describes the type of the return value.
820 - For a range type, describes the type of the full range.
821 - For a complex type, describes the type of each coordinate.
822 - For a special record or union type encoding a dynamic-sized type
d09ce91e
JB
823 in GNAT, a memoized pointer to a corresponding static version of
824 the type.
5e3a2c38 825 - Unused otherwise. */
2fdde8f8
DJ
826
827 struct type *target_type;
828
5e3a2c38 829 /* * For structure and union types, a description of each field.
2fdde8f8
DJ
830 For set and pascal array types, there is one "field",
831 whose type is the domain type of the set or array.
832 For range types, there are two "fields",
833 the minimum and maximum values (both inclusive).
834 For enum types, each possible value is described by one "field".
ad2f7632 835 For a function or method type, a "field" for each parameter.
2fdde8f8
DJ
836 For C++ classes, there is one field for each base class (if it is
837 a derived class) plus one field for each class data member. Member
838 functions are recorded elsewhere.
839
840 Using a pointer to a separate array of fields
841 allows all types to have the same size, which is useful
842 because we can allocate the space for a type before
843 we know what to put in it. */
844
43bbcdc2 845 union
c5aa993b 846 {
52059ffd 847 struct field *fields;
01ad7f36 848
5e3a2c38 849 /* * Union member used for range types. */
43bbcdc2 850
52059ffd 851 struct range_bounds *bounds;
c906108c 852
5b930b45
TT
853 /* If this is a scalar type, then this is its corresponding
854 complex type. */
855 struct type *complex_type;
856
43bbcdc2 857 } flds_bnds;
c906108c 858
5e3a2c38
SS
859 /* * Slot to point to additional language-specific fields of this
860 type. */
c906108c 861
52059ffd 862 union type_specific type_specific;
3cdcd0ce 863
d9823cbb
KB
864 /* * Contains all dynamic type properties. */
865 struct dynamic_prop_list *dyn_prop_list;
2fdde8f8 866};
c906108c 867
2b4424c3
TT
868/* * Number of bits allocated for alignment. */
869
870#define TYPE_ALIGN_BITS 8
871
5e3a2c38 872/* * A ``struct type'' describes a particular instance of a type, with
2fdde8f8 873 some particular qualification. */
5e3a2c38 874
2fdde8f8
DJ
875struct type
876{
67607e24
SM
877 /* Get the type code of this type.
878
879 Note that the code can be TYPE_CODE_TYPEDEF, so if you want the real
880 type, you need to do `check_typedef (type)->code ()`. */
881 type_code code () const
882 {
883 return this->main_type->code;
884 }
885
886 /* Set the type code of this type. */
887 void set_code (type_code code)
888 {
889 this->main_type->code = code;
890 }
891
d0e39ea2
SM
892 /* Get the name of this type. */
893 const char *name () const
894 {
895 return this->main_type->name;
896 }
897
898 /* Set the name of this type. */
899 void set_name (const char *name)
900 {
901 this->main_type->name = name;
902 }
903
5e33d5f4
SM
904 /* Get the number of fields of this type. */
905 int num_fields () const
906 {
907 return this->main_type->nfields;
908 }
909
910 /* Set the number of fields of this type. */
911 void set_num_fields (int num_fields)
912 {
913 this->main_type->nfields = num_fields;
914 }
915
3cabb6b0 916 /* Get the fields array of this type. */
80fc5e77 917 struct field *fields () const
3cabb6b0
SM
918 {
919 return this->main_type->flds_bnds.fields;
920 }
921
80fc5e77
SM
922 /* Get the field at index IDX. */
923 struct field &field (int idx) const
924 {
925 return this->fields ()[idx];
926 }
927
3cabb6b0 928 /* Set the fields array of this type. */
80fc5e77 929 void set_fields (struct field *fields)
3cabb6b0
SM
930 {
931 this->main_type->flds_bnds.fields = fields;
932 }
933
24e99c6c
SM
934 /* * Return the dynamic property of the requested KIND from this type's
935 list of dynamic properties. */
936 dynamic_prop *dyn_prop (dynamic_prop_node_kind kind) const;
937
5c54719c
SM
938 /* * Given a dynamic property PROP of a given KIND, add this dynamic
939 property to this type.
940
941 This function assumes that this type is objfile-owned. */
942 void add_dyn_prop (dynamic_prop_node_kind kind, dynamic_prop prop);
943
7aa91313
SM
944 /* * Remove dynamic property of kind KIND from this type, if it exists. */
945 void remove_dyn_prop (dynamic_prop_node_kind kind);
946
5e3a2c38 947 /* * Type that is a pointer to this type.
2fdde8f8
DJ
948 NULL if no such pointer-to type is known yet.
949 The debugger may add the address of such a type
950 if it has to construct one later. */
c906108c 951
2fdde8f8 952 struct type *pointer_type;
c906108c 953
5e3a2c38 954 /* * C++: also need a reference type. */
c906108c 955
2fdde8f8 956 struct type *reference_type;
c906108c 957
f9aeb8d4
AV
958 /* * A C++ rvalue reference type added in C++11. */
959
960 struct type *rvalue_reference_type;
961
5e3a2c38
SS
962 /* * Variant chain. This points to a type that differs from this
963 one only in qualifiers and length. Currently, the possible
964 qualifiers are const, volatile, code-space, data-space, and
965 address class. The length may differ only when one of the
966 address class flags are set. The variants are linked in a
967 circular ring and share MAIN_TYPE. */
968
2fdde8f8 969 struct type *chain;
c906108c 970
2b4424c3
TT
971 /* * The alignment for this type. Zero means that the alignment was
972 not specified in the debug info. Note that this is stored in a
973 funny way: as the log base 2 (plus 1) of the alignment; so a
974 value of 1 means the alignment is 1, and a value of 9 means the
975 alignment is 256. */
976
977 unsigned align_log2 : TYPE_ALIGN_BITS;
978
5e3a2c38 979 /* * Flags specific to this instance of the type, indicating where
92163a10
JK
980 on the ring we are.
981
5e3a2c38
SS
982 For TYPE_CODE_TYPEDEF the flags of the typedef type should be
983 binary or-ed with the target type, with a special case for
984 address class and space class. For example if this typedef does
985 not specify any new qualifiers, TYPE_INSTANCE_FLAGS is 0 and the
986 instance flags are completely inherited from the target type. No
987 qualifiers can be cleared by the typedef. See also
988 check_typedef. */
2b4424c3 989 unsigned instance_flags : 9;
701c159d 990
2e056931
SM
991 /* * Length of storage for a value of this type. The value is the
992 expression in host bytes of what sizeof(type) would return. This
993 size includes padding. For example, an i386 extended-precision
994 floating point value really only occupies ten bytes, but most
995 ABI's declare its size to be 12 bytes, to preserve alignment.
996 A `struct type' representing such a floating-point type would
997 have a `length' value of 12, even though the last two bytes are
998 unused.
999
1000 Since this field is expressed in host bytes, its value is appropriate
1001 to pass to memcpy and such (it is assumed that GDB itself always runs
1002 on an 8-bits addressable architecture). However, when using it for
1003 target address arithmetic (e.g. adding it to a target address), the
1004 type_length_units function should be used in order to get the length
1005 expressed in target addressable memory units. */
1006
cc1defb1 1007 ULONGEST length;
ab5d3da6 1008
5e3a2c38
SS
1009 /* * Core type, shared by a group of qualified types. */
1010
2fdde8f8
DJ
1011 struct main_type *main_type;
1012};
c906108c
SS
1013
1014#define NULL_TYPE ((struct type *) 0)
1015
52059ffd
TT
1016struct fn_fieldlist
1017{
1018
1019 /* * The overloaded name.
1020 This is generally allocated in the objfile's obstack.
1021 However stabsread.c sometimes uses malloc. */
1022
1023 const char *name;
1024
1025 /* * The number of methods with this name. */
1026
1027 int length;
1028
1029 /* * The list of methods. */
1030
1031 struct fn_field *fn_fields;
1032};
1033
1034
1035
1036struct fn_field
1037{
1038 /* * If is_stub is clear, this is the mangled name which we can look
1039 up to find the address of the method (FIXME: it would be cleaner
1040 to have a pointer to the struct symbol here instead).
1041
1042 If is_stub is set, this is the portion of the mangled name which
1043 specifies the arguments. For example, "ii", if there are two int
1044 arguments, or "" if there are no arguments. See gdb_mangle_name
1045 for the conversion from this format to the one used if is_stub is
1046 clear. */
1047
1048 const char *physname;
1049
1050 /* * The function type for the method.
1051
1052 (This comment used to say "The return value of the method", but
1053 that's wrong. The function type is expected here, i.e. something
1054 with TYPE_CODE_METHOD, and *not* the return-value type). */
1055
1056 struct type *type;
1057
1058 /* * For virtual functions. First baseclass that defines this
1059 virtual function. */
1060
1061 struct type *fcontext;
1062
1063 /* Attributes. */
1064
1065 unsigned int is_const:1;
1066 unsigned int is_volatile:1;
1067 unsigned int is_private:1;
1068 unsigned int is_protected:1;
52059ffd
TT
1069 unsigned int is_artificial:1;
1070
1071 /* * A stub method only has some fields valid (but they are enough
1072 to reconstruct the rest of the fields). */
1073
1074 unsigned int is_stub:1;
1075
1076 /* * True if this function is a constructor, false otherwise. */
1077
1078 unsigned int is_constructor : 1;
1079
e35000a7
TBA
1080 /* * True if this function is deleted, false otherwise. */
1081
1082 unsigned int is_deleted : 1;
1083
1084 /* * DW_AT_defaulted attribute for this function. The value is one
1085 of the DW_DEFAULTED constants. */
1086
1087 ENUM_BITFIELD (dwarf_defaulted_attribute) defaulted : 2;
1088
52059ffd
TT
1089 /* * Unused. */
1090
e35000a7 1091 unsigned int dummy:6;
52059ffd
TT
1092
1093 /* * Index into that baseclass's virtual function table, minus 2;
1094 else if static: VOFFSET_STATIC; else: 0. */
1095
1096 unsigned int voffset:16;
1097
1098#define VOFFSET_STATIC 1
1099
1100};
1101
883fd55a 1102struct decl_field
52059ffd
TT
1103{
1104 /* * Unqualified name to be prefixed by owning class qualified
1105 name. */
1106
1107 const char *name;
1108
1109 /* * Type this typedef named NAME represents. */
1110
1111 struct type *type;
c191a687
KS
1112
1113 /* * True if this field was declared protected, false otherwise. */
1114 unsigned int is_protected : 1;
1115
1116 /* * True if this field was declared private, false otherwise. */
1117 unsigned int is_private : 1;
52059ffd
TT
1118};
1119
5e3a2c38
SS
1120/* * C++ language-specific information for TYPE_CODE_STRUCT and
1121 TYPE_CODE_UNION nodes. */
c906108c
SS
1122
1123struct cplus_struct_type
c5aa993b 1124 {
5e3a2c38
SS
1125 /* * Number of base classes this type derives from. The
1126 baseclasses are stored in the first N_BASECLASSES fields
5e7cf078
DE
1127 (i.e. the `fields' field of the struct type). The only fields
1128 of struct field that are used are: type, name, loc.bitpos. */
c906108c 1129
c5aa993b 1130 short n_baseclasses;
c906108c 1131
ae6ae975
DE
1132 /* * Field number of the virtual function table pointer in VPTR_BASETYPE.
1133 All access to this field must be through TYPE_VPTR_FIELDNO as one
1134 thing it does is check whether the field has been initialized.
1135 Initially TYPE_RAW_CPLUS_SPECIFIC has the value of cplus_struct_default,
1136 which for portability reasons doesn't initialize this field.
1137 TYPE_VPTR_FIELDNO returns -1 for this case.
1138
1139 If -1, we were unable to find the virtual function table pointer in
1140 initial symbol reading, and get_vptr_fieldno should be called to find
1141 it if possible. get_vptr_fieldno will update this field if possible.
1142 Otherwise the value is left at -1.
1143
1144 Unused if this type does not have virtual functions. */
1145
1146 short vptr_fieldno;
1147
5e3a2c38
SS
1148 /* * Number of methods with unique names. All overloaded methods
1149 with the same name count only once. */
c906108c 1150
c5aa993b 1151 short nfn_fields;
c906108c 1152
5e3a2c38
SS
1153 /* * Number of template arguments. */
1154
34eaf542
TT
1155 unsigned short n_template_arguments;
1156
5e3a2c38 1157 /* * One if this struct is a dynamic class, as defined by the
48ea67a7
TT
1158 Itanium C++ ABI: if it requires a virtual table pointer,
1159 because it or any of its base classes have one or more virtual
1160 member functions or virtual base classes. Minus one if not
1161 dynamic. Zero if not yet computed. */
5e3a2c38 1162
48ea67a7 1163 int is_dynamic : 2;
c5aa993b 1164
e35000a7
TBA
1165 /* * The calling convention for this type, fetched from the
1166 DW_AT_calling_convention attribute. The value is one of the
1167 DW_CC constants. */
1168
1169 ENUM_BITFIELD (dwarf_calling_convention) calling_convention : 8;
1170
ae6ae975
DE
1171 /* * The base class which defined the virtual function table pointer. */
1172
1173 struct type *vptr_basetype;
1174
5e3a2c38 1175 /* * For derived classes, the number of base classes is given by
3e43a32a
MS
1176 n_baseclasses and virtual_field_bits is a bit vector containing
1177 one bit per base class. If the base class is virtual, the
1178 corresponding bit will be set.
c5aa993b 1179 I.E, given:
c906108c 1180
c5aa993b
JM
1181 class A{};
1182 class B{};
1183 class C : public B, public virtual A {};
c906108c 1184
c5aa993b 1185 B is a baseclass of C; A is a virtual baseclass for C.
0963b4bd 1186 This is a C++ 2.0 language feature. */
c906108c 1187
c5aa993b 1188 B_TYPE *virtual_field_bits;
c906108c 1189
5e3a2c38
SS
1190 /* * For classes with private fields, the number of fields is
1191 given by nfields and private_field_bits is a bit vector
1192 containing one bit per field.
1193
0963b4bd 1194 If the field is private, the corresponding bit will be set. */
c906108c 1195
c5aa993b 1196 B_TYPE *private_field_bits;
c906108c 1197
5e3a2c38
SS
1198 /* * For classes with protected fields, the number of fields is
1199 given by nfields and protected_field_bits is a bit vector
1200 containing one bit per field.
1201
0963b4bd 1202 If the field is private, the corresponding bit will be set. */
c906108c 1203
c5aa993b 1204 B_TYPE *protected_field_bits;
c906108c 1205
5e3a2c38
SS
1206 /* * For classes with fields to be ignored, either this is
1207 optimized out or this field has length 0. */
c906108c 1208
c5aa993b 1209 B_TYPE *ignore_field_bits;
c906108c 1210
5e3a2c38
SS
1211 /* * For classes, structures, and unions, a description of each
1212 field, which consists of an overloaded name, followed by the
1213 types of arguments that the method expects, and then the name
1214 after it has been renamed to make it distinct.
c906108c 1215
0963b4bd 1216 fn_fieldlists points to an array of nfn_fields of these. */
c906108c 1217
52059ffd 1218 struct fn_fieldlist *fn_fieldlists;
c906108c 1219
5e3a2c38
SS
1220 /* * typedefs defined inside this class. typedef_field points to
1221 an array of typedef_field_count elements. */
1222
883fd55a 1223 struct decl_field *typedef_field;
5e3a2c38 1224
98751a41 1225 unsigned typedef_field_count;
34eaf542 1226
883fd55a
KS
1227 /* * The nested types defined by this type. nested_types points to
1228 an array of nested_types_count elements. */
1229
1230 struct decl_field *nested_types;
1231
1232 unsigned nested_types_count;
1233
5e3a2c38 1234 /* * The template arguments. This is an array with
34eaf542
TT
1235 N_TEMPLATE_ARGUMENTS elements. This is NULL for non-template
1236 classes. */
5e3a2c38 1237
34eaf542 1238 struct symbol **template_arguments;
c5aa993b 1239 };
c906108c 1240
5e3a2c38
SS
1241/* * Struct used to store conversion rankings. */
1242
6403aeea
SW
1243struct rank
1244 {
a9d5ef47
SW
1245 short rank;
1246
5e3a2c38
SS
1247 /* * When two conversions are of the same type and therefore have
1248 the same rank, subrank is used to differentiate the two.
1249
1250 Eg: Two derived-class-pointer to base-class-pointer conversions
1251 would both have base pointer conversion rank, but the
1252 conversion with the shorter distance to the ancestor is
1253 preferable. 'subrank' would be used to reflect that. */
1254
a9d5ef47 1255 short subrank;
6403aeea
SW
1256 };
1257
82ceee50 1258/* * Used for ranking a function for overload resolution. */
5e3a2c38 1259
82ceee50 1260typedef std::vector<rank> badness_vector;
c906108c 1261
5e3a2c38
SS
1262/* * GNAT Ada-specific information for various Ada types. */
1263
b4ba55a1
JB
1264struct gnat_aux_type
1265 {
5e3a2c38 1266 /* * Parallel type used to encode information about dynamic types
b4ba55a1
JB
1267 used in Ada (such as variant records, variable-size array,
1268 etc). */
1269 struct type* descriptive_type;
1270 };
1271
09e2d7c7 1272/* * For TYPE_CODE_FUNC and TYPE_CODE_METHOD types. */
5e3a2c38 1273
b6cdc2c1
JK
1274struct func_type
1275 {
5e3a2c38
SS
1276 /* * The calling convention for targets supporting multiple ABIs.
1277 Right now this is only fetched from the Dwarf-2
743649fd 1278 DW_AT_calling_convention attribute. The value is one of the
d0922fcf 1279 DW_CC constants. */
5e3a2c38 1280
d0922fcf 1281 ENUM_BITFIELD (dwarf_calling_convention) calling_convention : 8;
743649fd
MW
1282
1283 /* * Whether this function normally returns to its caller. It is
1284 set from the DW_AT_noreturn attribute if set on the
1285 DW_TAG_subprogram. */
1286
1287 unsigned int is_noreturn : 1;
bb984ff1 1288
216f72a1
JK
1289 /* * Only those DW_TAG_call_site's in this function that have
1290 DW_AT_call_tail_call set are linked in this list. Function
5e3a2c38 1291 without its tail call list complete
216f72a1
JK
1292 (DW_AT_call_all_tail_calls or its superset
1293 DW_AT_call_all_calls) has TAIL_CALL_LIST NULL, even if some
1294 DW_TAG_call_site's exist in such function. */
5e3a2c38 1295
bb984ff1 1296 struct call_site *tail_call_list;
09e2d7c7
DE
1297
1298 /* * For method types (TYPE_CODE_METHOD), the aggregate type that
1299 contains the method. */
1300
1301 struct type *self_type;
b6cdc2c1
JK
1302 };
1303
24c5c679
JK
1304/* struct call_site_parameter can be referenced in callees by several ways. */
1305
1306enum call_site_parameter_kind
1307{
5e3a2c38 1308 /* * Use field call_site_parameter.u.dwarf_reg. */
24c5c679
JK
1309 CALL_SITE_PARAMETER_DWARF_REG,
1310
5e3a2c38 1311 /* * Use field call_site_parameter.u.fb_offset. */
1788b2d3
JK
1312 CALL_SITE_PARAMETER_FB_OFFSET,
1313
5e3a2c38 1314 /* * Use field call_site_parameter.u.param_offset. */
1788b2d3 1315 CALL_SITE_PARAMETER_PARAM_OFFSET
24c5c679
JK
1316};
1317
52059ffd
TT
1318struct call_site_target
1319{
1320 union field_location loc;
1321
1322 /* * Discriminant for union field_location. */
1323
1324 ENUM_BITFIELD(field_loc_kind) loc_kind : 3;
1325};
1326
1327union call_site_parameter_u
1328{
1329 /* * DW_TAG_formal_parameter's DW_AT_location's DW_OP_regX
1330 as DWARF register number, for register passed
1331 parameters. */
1332
1333 int dwarf_reg;
1334
1335 /* * Offset from the callee's frame base, for stack passed
1336 parameters. This equals offset from the caller's stack
1337 pointer. */
1338
1339 CORE_ADDR fb_offset;
1340
1341 /* * Offset relative to the start of this PER_CU to
1342 DW_TAG_formal_parameter which is referenced by both
1343 caller and the callee. */
1344
9c541725 1345 cu_offset param_cu_off;
52059ffd
TT
1346};
1347
1348struct call_site_parameter
1349{
1350 ENUM_BITFIELD (call_site_parameter_kind) kind : 2;
1351
1352 union call_site_parameter_u u;
1353
216f72a1 1354 /* * DW_TAG_formal_parameter's DW_AT_call_value. It is never NULL. */
52059ffd
TT
1355
1356 const gdb_byte *value;
1357 size_t value_size;
1358
216f72a1 1359 /* * DW_TAG_formal_parameter's DW_AT_call_data_value.
52059ffd
TT
1360 It may be NULL if not provided by DWARF. */
1361
1362 const gdb_byte *data_value;
1363 size_t data_value_size;
1364};
1365
5e3a2c38 1366/* * A place where a function gets called from, represented by
216f72a1 1367 DW_TAG_call_site. It can be looked up from symtab->call_site_htab. */
8e3b41a9
JK
1368
1369struct call_site
1370 {
5e3a2c38
SS
1371 /* * Address of the first instruction after this call. It must be
1372 the first field as we overload core_addr_hash and core_addr_eq
1373 for it. */
1374
8e3b41a9
JK
1375 CORE_ADDR pc;
1376
5e3a2c38
SS
1377 /* * List successor with head in FUNC_TYPE.TAIL_CALL_LIST. */
1378
bb984ff1
JK
1379 struct call_site *tail_call_next;
1380
216f72a1 1381 /* * Describe DW_AT_call_target. Missing attribute uses
8e3b41a9 1382 FIELD_LOC_KIND_DWARF_BLOCK with FIELD_DWARF_BLOCK == NULL. */
5e3a2c38 1383
52059ffd 1384 struct call_site_target target;
8e3b41a9 1385
5e3a2c38
SS
1386 /* * Size of the PARAMETER array. */
1387
8e3b41a9
JK
1388 unsigned parameter_count;
1389
5e3a2c38
SS
1390 /* * CU of the function where the call is located. It gets used
1391 for DWARF blocks execution in the parameter array below. */
1392
8e3b41a9
JK
1393 struct dwarf2_per_cu_data *per_cu;
1394
216f72a1 1395 /* * Describe DW_TAG_call_site's DW_TAG_formal_parameter. */
5e3a2c38 1396
52059ffd 1397 struct call_site_parameter parameter[1];
8e3b41a9
JK
1398 };
1399
5e3a2c38
SS
1400/* * The default value of TYPE_CPLUS_SPECIFIC(T) points to this shared
1401 static structure. */
c906108c
SS
1402
1403extern const struct cplus_struct_type cplus_struct_default;
1404
a14ed312 1405extern void allocate_cplus_struct_type (struct type *);
c906108c
SS
1406
1407#define INIT_CPLUS_SPECIFIC(type) \
b4ba55a1 1408 (TYPE_SPECIFIC_FIELD (type) = TYPE_SPECIFIC_CPLUS_STUFF, \
3e43a32a
MS
1409 TYPE_RAW_CPLUS_SPECIFIC (type) = (struct cplus_struct_type*) \
1410 &cplus_struct_default)
b4ba55a1 1411
c906108c 1412#define ALLOCATE_CPLUS_STRUCT_TYPE(type) allocate_cplus_struct_type (type)
b4ba55a1 1413
c906108c 1414#define HAVE_CPLUS_STRUCT(type) \
b4ba55a1
JB
1415 (TYPE_SPECIFIC_FIELD (type) == TYPE_SPECIFIC_CPLUS_STUFF \
1416 && TYPE_RAW_CPLUS_SPECIFIC (type) != &cplus_struct_default)
1417
8ecb59f8
TT
1418#define INIT_NONE_SPECIFIC(type) \
1419 (TYPE_SPECIFIC_FIELD (type) = TYPE_SPECIFIC_NONE, \
1420 TYPE_MAIN_TYPE (type)->type_specific = {})
1421
b4ba55a1
JB
1422extern const struct gnat_aux_type gnat_aux_default;
1423
1424extern void allocate_gnat_aux_type (struct type *);
1425
1426#define INIT_GNAT_SPECIFIC(type) \
1427 (TYPE_SPECIFIC_FIELD (type) = TYPE_SPECIFIC_GNAT_STUFF, \
1428 TYPE_GNAT_SPECIFIC (type) = (struct gnat_aux_type *) &gnat_aux_default)
1429#define ALLOCATE_GNAT_AUX_TYPE(type) allocate_gnat_aux_type (type)
5e3a2c38 1430/* * A macro that returns non-zero if the type-specific data should be
b4ba55a1
JB
1431 read as "gnat-stuff". */
1432#define HAVE_GNAT_AUX_INFO(type) \
1433 (TYPE_SPECIFIC_FIELD (type) == TYPE_SPECIFIC_GNAT_STUFF)
c906108c 1434
8ecb59f8
TT
1435/* * True if TYPE is known to be an Ada type of some kind. */
1436#define ADA_TYPE_P(type) \
1437 (TYPE_SPECIFIC_FIELD (type) == TYPE_SPECIFIC_GNAT_STUFF \
1438 || (TYPE_SPECIFIC_FIELD (type) == TYPE_SPECIFIC_NONE \
1439 && TYPE_FIXED_INSTANCE (type)))
1440
b6cdc2c1
JK
1441#define INIT_FUNC_SPECIFIC(type) \
1442 (TYPE_SPECIFIC_FIELD (type) = TYPE_SPECIFIC_FUNC, \
224c3ddb
SM
1443 TYPE_MAIN_TYPE (type)->type_specific.func_stuff = (struct func_type *) \
1444 TYPE_ZALLOC (type, \
1445 sizeof (*TYPE_MAIN_TYPE (type)->type_specific.func_stuff)))
b6cdc2c1 1446
2fdde8f8
DJ
1447#define TYPE_INSTANCE_FLAGS(thistype) (thistype)->instance_flags
1448#define TYPE_MAIN_TYPE(thistype) (thistype)->main_type
2fdde8f8 1449#define TYPE_TARGET_TYPE(thistype) TYPE_MAIN_TYPE(thistype)->target_type
c906108c
SS
1450#define TYPE_POINTER_TYPE(thistype) (thistype)->pointer_type
1451#define TYPE_REFERENCE_TYPE(thistype) (thistype)->reference_type
f9aeb8d4 1452#define TYPE_RVALUE_REFERENCE_TYPE(thistype) (thistype)->rvalue_reference_type
2fdde8f8 1453#define TYPE_CHAIN(thistype) (thistype)->chain
5e3a2c38 1454/* * Note that if thistype is a TYPEDEF type, you have to call check_typedef.
c906108c
SS
1455 But check_typedef does set the TYPE_LENGTH of the TYPEDEF type,
1456 so you only have to call check_typedef once. Since allocate_value
1457 calls check_typedef, TYPE_LENGTH (VALUE_TYPE (X)) is safe. */
ab5d3da6 1458#define TYPE_LENGTH(thistype) (thistype)->length
2b4424c3
TT
1459
1460/* * Return the alignment of the type in target addressable memory
1461 units, or 0 if no alignment was specified. */
1462#define TYPE_RAW_ALIGN(thistype) type_raw_align (thistype)
1463
1464/* * Return the alignment of the type in target addressable memory
1465 units, or 0 if no alignment was specified. */
1466extern unsigned type_raw_align (struct type *);
1467
1468/* * Return the alignment of the type in target addressable memory
1469 units. Return 0 if the alignment cannot be determined; but note
1470 that this makes an effort to compute the alignment even it it was
1471 not specified in the debug info. */
1472extern unsigned type_align (struct type *);
1473
1474/* * Set the alignment of the type. The alignment must be a power of
1475 2. Returns false if the given value does not fit in the available
1476 space in struct type. */
1477extern bool set_type_align (struct type *, ULONGEST);
1478
c906108c 1479#define TYPE_INDEX_TYPE(type) TYPE_FIELD_TYPE (type, 0)
43bbcdc2 1480#define TYPE_RANGE_DATA(thistype) TYPE_MAIN_TYPE(thistype)->flds_bnds.bounds
729efb13
SA
1481#define TYPE_LOW_BOUND(range_type) \
1482 TYPE_RANGE_DATA(range_type)->low.data.const_val
1483#define TYPE_HIGH_BOUND(range_type) \
1484 TYPE_RANGE_DATA(range_type)->high.data.const_val
43bbcdc2 1485#define TYPE_LOW_BOUND_UNDEFINED(range_type) \
729efb13 1486 (TYPE_RANGE_DATA(range_type)->low.kind == PROP_UNDEFINED)
43bbcdc2 1487#define TYPE_HIGH_BOUND_UNDEFINED(range_type) \
729efb13
SA
1488 (TYPE_RANGE_DATA(range_type)->high.kind == PROP_UNDEFINED)
1489#define TYPE_HIGH_BOUND_KIND(range_type) \
1490 TYPE_RANGE_DATA(range_type)->high.kind
1491#define TYPE_LOW_BOUND_KIND(range_type) \
1492 TYPE_RANGE_DATA(range_type)->low.kind
5bbd8269
AB
1493#define TYPE_BIT_STRIDE(range_type) \
1494 (TYPE_RANGE_DATA(range_type)->stride.data.const_val \
1495 * (TYPE_RANGE_DATA(range_type)->flag_is_byte_stride ? 8 : 1))
c906108c 1496
d9823cbb 1497/* Property accessors for the type data location. */
3cdcd0ce 1498#define TYPE_DATA_LOCATION(thistype) \
24e99c6c 1499 ((thistype)->dyn_prop (DYN_PROP_DATA_LOCATION))
3cdcd0ce
JB
1500#define TYPE_DATA_LOCATION_BATON(thistype) \
1501 TYPE_DATA_LOCATION (thistype)->data.baton
1502#define TYPE_DATA_LOCATION_ADDR(thistype) \
1503 TYPE_DATA_LOCATION (thistype)->data.const_val
1504#define TYPE_DATA_LOCATION_KIND(thistype) \
1505 TYPE_DATA_LOCATION (thistype)->kind
f8e89861 1506#define TYPE_DYNAMIC_LENGTH(thistype) \
24e99c6c 1507 ((thistype)->dyn_prop (DYN_PROP_BYTE_SIZE))
3cdcd0ce 1508
3f2f83dd
KB
1509/* Property accessors for the type allocated/associated. */
1510#define TYPE_ALLOCATED_PROP(thistype) \
24e99c6c 1511 ((thistype)->dyn_prop (DYN_PROP_ALLOCATED))
3f2f83dd 1512#define TYPE_ASSOCIATED_PROP(thistype) \
24e99c6c 1513 ((thistype)->dyn_prop (DYN_PROP_ASSOCIATED))
3f2f83dd 1514
d9823cbb 1515/* Attribute accessors for dynamic properties. */
d9823cbb
KB
1516#define TYPE_DYN_PROP_BATON(dynprop) \
1517 dynprop->data.baton
1518#define TYPE_DYN_PROP_ADDR(dynprop) \
1519 dynprop->data.const_val
1520#define TYPE_DYN_PROP_KIND(dynprop) \
1521 dynprop->kind
1522
1523
bfcdb852
TT
1524/* Accessors for struct range_bounds data attached to an array type's
1525 index type. */
c906108c 1526
d78df370 1527#define TYPE_ARRAY_UPPER_BOUND_IS_UNDEFINED(arraytype) \
43bbcdc2 1528 TYPE_HIGH_BOUND_UNDEFINED(TYPE_INDEX_TYPE(arraytype))
d78df370 1529#define TYPE_ARRAY_LOWER_BOUND_IS_UNDEFINED(arraytype) \
43bbcdc2 1530 TYPE_LOW_BOUND_UNDEFINED(TYPE_INDEX_TYPE(arraytype))
c906108c
SS
1531
1532#define TYPE_ARRAY_UPPER_BOUND_VALUE(arraytype) \
262452ec 1533 (TYPE_HIGH_BOUND(TYPE_INDEX_TYPE((arraytype))))
c906108c
SS
1534
1535#define TYPE_ARRAY_LOWER_BOUND_VALUE(arraytype) \
262452ec 1536 (TYPE_LOW_BOUND(TYPE_INDEX_TYPE((arraytype))))
c906108c 1537
5bbd8269
AB
1538#define TYPE_ARRAY_BIT_STRIDE(arraytype) \
1539 (TYPE_BIT_STRIDE(TYPE_INDEX_TYPE((arraytype))))
1540
c906108c
SS
1541/* C++ */
1542
09e2d7c7
DE
1543#define TYPE_SELF_TYPE(thistype) internal_type_self_type (thistype)
1544/* Do not call this, use TYPE_SELF_TYPE. */
1545extern struct type *internal_type_self_type (struct type *);
1546extern void set_type_self_type (struct type *, struct type *);
1547
ae6ae975
DE
1548extern int internal_type_vptr_fieldno (struct type *);
1549extern void set_type_vptr_fieldno (struct type *, int);
1550extern struct type *internal_type_vptr_basetype (struct type *);
1551extern void set_type_vptr_basetype (struct type *, struct type *);
1552#define TYPE_VPTR_FIELDNO(thistype) internal_type_vptr_fieldno (thistype)
1553#define TYPE_VPTR_BASETYPE(thistype) internal_type_vptr_basetype (thistype)
1554
c906108c 1555#define TYPE_NFN_FIELDS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->nfn_fields
b4ba55a1
JB
1556#define TYPE_SPECIFIC_FIELD(thistype) \
1557 TYPE_MAIN_TYPE(thistype)->type_specific_field
b4ba55a1
JB
1558/* We need this tap-dance with the TYPE_RAW_SPECIFIC because of the case
1559 where we're trying to print an Ada array using the C language.
1560 In that case, there is no "cplus_stuff", but the C language assumes
1561 that there is. What we do, in that case, is pretend that there is
1562 an implicit one which is the default cplus stuff. */
1563#define TYPE_CPLUS_SPECIFIC(thistype) \
1564 (!HAVE_CPLUS_STRUCT(thistype) \
1565 ? (struct cplus_struct_type*)&cplus_struct_default \
1566 : TYPE_RAW_CPLUS_SPECIFIC(thistype))
1567#define TYPE_RAW_CPLUS_SPECIFIC(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.cplus_stuff
e35000a7
TBA
1568#define TYPE_CPLUS_CALLING_CONVENTION(thistype) \
1569 TYPE_MAIN_TYPE(thistype)->type_specific.cplus_stuff->calling_convention
2fdde8f8 1570#define TYPE_FLOATFORMAT(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.floatformat
b4ba55a1
JB
1571#define TYPE_GNAT_SPECIFIC(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.gnat_stuff
1572#define TYPE_DESCRIPTIVE_TYPE(thistype) TYPE_GNAT_SPECIFIC(thistype)->descriptive_type
b6cdc2c1 1573#define TYPE_CALLING_CONVENTION(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.func_stuff->calling_convention
743649fd 1574#define TYPE_NO_RETURN(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.func_stuff->is_noreturn
bb984ff1 1575#define TYPE_TAIL_CALL_LIST(thistype) TYPE_MAIN_TYPE(thistype)->type_specific.func_stuff->tail_call_list
43bbcdc2 1576#define TYPE_BASECLASS(thistype,index) TYPE_FIELD_TYPE(thistype, index)
c906108c 1577#define TYPE_N_BASECLASSES(thistype) TYPE_CPLUS_SPECIFIC(thistype)->n_baseclasses
43bbcdc2 1578#define TYPE_BASECLASS_NAME(thistype,index) TYPE_FIELD_NAME(thistype, index)
c906108c
SS
1579#define TYPE_BASECLASS_BITPOS(thistype,index) TYPE_FIELD_BITPOS(thistype,index)
1580#define BASETYPE_VIA_PUBLIC(thistype, index) \
1581 ((!TYPE_FIELD_PRIVATE(thistype, index)) && (!TYPE_FIELD_PROTECTED(thistype, index)))
d48cc9dd 1582#define TYPE_CPLUS_DYNAMIC(thistype) TYPE_CPLUS_SPECIFIC (thistype)->is_dynamic
c906108c
SS
1583
1584#define BASETYPE_VIA_VIRTUAL(thistype, index) \
1585 (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits == NULL ? 0 \
1586 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (index)))
1587
1588#define FIELD_TYPE(thisfld) ((thisfld).type)
1589#define FIELD_NAME(thisfld) ((thisfld).name)
d6a843b5 1590#define FIELD_LOC_KIND(thisfld) ((thisfld).loc_kind)
f41f5e61
PA
1591#define FIELD_BITPOS_LVAL(thisfld) ((thisfld).loc.bitpos)
1592#define FIELD_BITPOS(thisfld) (FIELD_BITPOS_LVAL (thisfld) + 0)
14e75d8e
JK
1593#define FIELD_ENUMVAL_LVAL(thisfld) ((thisfld).loc.enumval)
1594#define FIELD_ENUMVAL(thisfld) (FIELD_ENUMVAL_LVAL (thisfld) + 0)
d6a843b5
JK
1595#define FIELD_STATIC_PHYSNAME(thisfld) ((thisfld).loc.physname)
1596#define FIELD_STATIC_PHYSADDR(thisfld) ((thisfld).loc.physaddr)
8e3b41a9 1597#define FIELD_DWARF_BLOCK(thisfld) ((thisfld).loc.dwarf_block)
d6a843b5
JK
1598#define SET_FIELD_BITPOS(thisfld, bitpos) \
1599 (FIELD_LOC_KIND (thisfld) = FIELD_LOC_KIND_BITPOS, \
f41f5e61 1600 FIELD_BITPOS_LVAL (thisfld) = (bitpos))
14e75d8e
JK
1601#define SET_FIELD_ENUMVAL(thisfld, enumval) \
1602 (FIELD_LOC_KIND (thisfld) = FIELD_LOC_KIND_ENUMVAL, \
1603 FIELD_ENUMVAL_LVAL (thisfld) = (enumval))
d6a843b5
JK
1604#define SET_FIELD_PHYSNAME(thisfld, name) \
1605 (FIELD_LOC_KIND (thisfld) = FIELD_LOC_KIND_PHYSNAME, \
1606 FIELD_STATIC_PHYSNAME (thisfld) = (name))
1607#define SET_FIELD_PHYSADDR(thisfld, addr) \
1608 (FIELD_LOC_KIND (thisfld) = FIELD_LOC_KIND_PHYSADDR, \
1609 FIELD_STATIC_PHYSADDR (thisfld) = (addr))
8e3b41a9
JK
1610#define SET_FIELD_DWARF_BLOCK(thisfld, addr) \
1611 (FIELD_LOC_KIND (thisfld) = FIELD_LOC_KIND_DWARF_BLOCK, \
1612 FIELD_DWARF_BLOCK (thisfld) = (addr))
01ad7f36 1613#define FIELD_ARTIFICIAL(thisfld) ((thisfld).artificial)
c906108c 1614#define FIELD_BITSIZE(thisfld) ((thisfld).bitsize)
d6a843b5 1615
ceacbf6e
SM
1616#define TYPE_FIELD_TYPE(thistype, n) FIELD_TYPE((thistype)->field (n))
1617#define TYPE_FIELD_NAME(thistype, n) FIELD_NAME((thistype)->field (n))
1618#define TYPE_FIELD_LOC_KIND(thistype, n) FIELD_LOC_KIND ((thistype)->field (n))
1619#define TYPE_FIELD_BITPOS(thistype, n) FIELD_BITPOS ((thistype)->field (n))
1620#define TYPE_FIELD_ENUMVAL(thistype, n) FIELD_ENUMVAL ((thistype)->field (n))
1621#define TYPE_FIELD_STATIC_PHYSNAME(thistype, n) FIELD_STATIC_PHYSNAME ((thistype)->field (n))
1622#define TYPE_FIELD_STATIC_PHYSADDR(thistype, n) FIELD_STATIC_PHYSADDR ((thistype)->field (n))
1623#define TYPE_FIELD_DWARF_BLOCK(thistype, n) FIELD_DWARF_BLOCK ((thistype)->field (n))
1624#define TYPE_FIELD_ARTIFICIAL(thistype, n) FIELD_ARTIFICIAL((thistype)->field (n))
1625#define TYPE_FIELD_BITSIZE(thistype, n) FIELD_BITSIZE((thistype)->field (n))
1626#define TYPE_FIELD_PACKED(thistype, n) (FIELD_BITSIZE((thistype)->field (n))!=0)
c906108c
SS
1627
1628#define TYPE_FIELD_PRIVATE_BITS(thistype) \
1629 TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits
1630#define TYPE_FIELD_PROTECTED_BITS(thistype) \
1631 TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits
1632#define TYPE_FIELD_IGNORE_BITS(thistype) \
1633 TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits
1634#define TYPE_FIELD_VIRTUAL_BITS(thistype) \
1635 TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits
1636#define SET_TYPE_FIELD_PRIVATE(thistype, n) \
1637 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits, (n))
1638#define SET_TYPE_FIELD_PROTECTED(thistype, n) \
1639 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits, (n))
1640#define SET_TYPE_FIELD_IGNORE(thistype, n) \
1641 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits, (n))
1642#define SET_TYPE_FIELD_VIRTUAL(thistype, n) \
1643 B_SET (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (n))
1644#define TYPE_FIELD_PRIVATE(thistype, n) \
1645 (TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits == NULL ? 0 \
1646 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->private_field_bits, (n)))
1647#define TYPE_FIELD_PROTECTED(thistype, n) \
1648 (TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits == NULL ? 0 \
1649 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->protected_field_bits, (n)))
1650#define TYPE_FIELD_IGNORE(thistype, n) \
1651 (TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits == NULL ? 0 \
1652 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->ignore_field_bits, (n)))
1653#define TYPE_FIELD_VIRTUAL(thistype, n) \
1654 (TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits == NULL ? 0 \
1655 : B_TST(TYPE_CPLUS_SPECIFIC(thistype)->virtual_field_bits, (n)))
1656
c906108c
SS
1657#define TYPE_FN_FIELDLISTS(thistype) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists
1658#define TYPE_FN_FIELDLIST(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n]
1659#define TYPE_FN_FIELDLIST1(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].fn_fields
1660#define TYPE_FN_FIELDLIST_NAME(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].name
1661#define TYPE_FN_FIELDLIST_LENGTH(thistype, n) TYPE_CPLUS_SPECIFIC(thistype)->fn_fieldlists[n].length
1662
34eaf542
TT
1663#define TYPE_N_TEMPLATE_ARGUMENTS(thistype) \
1664 TYPE_CPLUS_SPECIFIC (thistype)->n_template_arguments
1665#define TYPE_TEMPLATE_ARGUMENTS(thistype) \
1666 TYPE_CPLUS_SPECIFIC (thistype)->template_arguments
1667#define TYPE_TEMPLATE_ARGUMENT(thistype, n) \
1668 TYPE_CPLUS_SPECIFIC (thistype)->template_arguments[n]
1669
c906108c
SS
1670#define TYPE_FN_FIELD(thisfn, n) (thisfn)[n]
1671#define TYPE_FN_FIELD_PHYSNAME(thisfn, n) (thisfn)[n].physname
1672#define TYPE_FN_FIELD_TYPE(thisfn, n) (thisfn)[n].type
80fc5e77 1673#define TYPE_FN_FIELD_ARGS(thisfn, n) (((thisfn)[n].type)->fields ())
c906108c
SS
1674#define TYPE_FN_FIELD_CONST(thisfn, n) ((thisfn)[n].is_const)
1675#define TYPE_FN_FIELD_VOLATILE(thisfn, n) ((thisfn)[n].is_volatile)
1676#define TYPE_FN_FIELD_PRIVATE(thisfn, n) ((thisfn)[n].is_private)
1677#define TYPE_FN_FIELD_PROTECTED(thisfn, n) ((thisfn)[n].is_protected)
b02dede2 1678#define TYPE_FN_FIELD_ARTIFICIAL(thisfn, n) ((thisfn)[n].is_artificial)
c906108c 1679#define TYPE_FN_FIELD_STUB(thisfn, n) ((thisfn)[n].is_stub)
7d27a96d 1680#define TYPE_FN_FIELD_CONSTRUCTOR(thisfn, n) ((thisfn)[n].is_constructor)
c906108c
SS
1681#define TYPE_FN_FIELD_FCONTEXT(thisfn, n) ((thisfn)[n].fcontext)
1682#define TYPE_FN_FIELD_VOFFSET(thisfn, n) ((thisfn)[n].voffset-2)
1683#define TYPE_FN_FIELD_VIRTUAL_P(thisfn, n) ((thisfn)[n].voffset > 1)
1684#define TYPE_FN_FIELD_STATIC_P(thisfn, n) ((thisfn)[n].voffset == VOFFSET_STATIC)
e35000a7
TBA
1685#define TYPE_FN_FIELD_DEFAULTED(thisfn, n) ((thisfn)[n].defaulted)
1686#define TYPE_FN_FIELD_DELETED(thisfn, n) ((thisfn)[n].is_deleted)
c906108c 1687
c191a687 1688/* Accessors for typedefs defined by a class. */
98751a41
JK
1689#define TYPE_TYPEDEF_FIELD_ARRAY(thistype) \
1690 TYPE_CPLUS_SPECIFIC (thistype)->typedef_field
1691#define TYPE_TYPEDEF_FIELD(thistype, n) \
1692 TYPE_CPLUS_SPECIFIC (thistype)->typedef_field[n]
1693#define TYPE_TYPEDEF_FIELD_NAME(thistype, n) \
1694 TYPE_TYPEDEF_FIELD (thistype, n).name
1695#define TYPE_TYPEDEF_FIELD_TYPE(thistype, n) \
1696 TYPE_TYPEDEF_FIELD (thistype, n).type
1697#define TYPE_TYPEDEF_FIELD_COUNT(thistype) \
1698 TYPE_CPLUS_SPECIFIC (thistype)->typedef_field_count
c191a687
KS
1699#define TYPE_TYPEDEF_FIELD_PROTECTED(thistype, n) \
1700 TYPE_TYPEDEF_FIELD (thistype, n).is_protected
1701#define TYPE_TYPEDEF_FIELD_PRIVATE(thistype, n) \
1702 TYPE_TYPEDEF_FIELD (thistype, n).is_private
98751a41 1703
883fd55a
KS
1704#define TYPE_NESTED_TYPES_ARRAY(thistype) \
1705 TYPE_CPLUS_SPECIFIC (thistype)->nested_types
1706#define TYPE_NESTED_TYPES_FIELD(thistype, n) \
1707 TYPE_CPLUS_SPECIFIC (thistype)->nested_types[n]
1708#define TYPE_NESTED_TYPES_FIELD_NAME(thistype, n) \
1709 TYPE_NESTED_TYPES_FIELD (thistype, n).name
1710#define TYPE_NESTED_TYPES_FIELD_TYPE(thistype, n) \
1711 TYPE_NESTED_TYPES_FIELD (thistype, n).type
1712#define TYPE_NESTED_TYPES_COUNT(thistype) \
1713 TYPE_CPLUS_SPECIFIC (thistype)->nested_types_count
1714#define TYPE_NESTED_TYPES_FIELD_PROTECTED(thistype, n) \
1715 TYPE_NESTED_TYPES_FIELD (thistype, n).is_protected
1716#define TYPE_NESTED_TYPES_FIELD_PRIVATE(thistype, n) \
1717 TYPE_NESTED_TYPES_FIELD (thistype, n).is_private
1718
4e4666e6 1719#define TYPE_IS_OPAQUE(thistype) \
78134374
SM
1720 ((((thistype)->code () == TYPE_CODE_STRUCT) \
1721 || ((thistype)->code () == TYPE_CODE_UNION)) \
1f704f76 1722 && ((thistype)->num_fields () == 0) \
4e4666e6
DE
1723 && (!HAVE_CPLUS_STRUCT (thistype) \
1724 || TYPE_NFN_FIELDS (thistype) == 0) \
1725 && (TYPE_STUB (thistype) || !TYPE_STUB_SUPPORTED (thistype)))
c5aa993b 1726
5e3a2c38
SS
1727/* * A helper macro that returns the name of a type or "unnamed type"
1728 if the type has no name. */
1729
0a07729b 1730#define TYPE_SAFE_NAME(type) \
7d93a1e0 1731 (type->name () != nullptr ? type->name () : _("<unnamed type>"))
0a07729b 1732
5e3a2c38
SS
1733/* * A helper macro that returns the name of an error type. If the
1734 type has a name, it is used; otherwise, a default is used. */
1735
b00fdb78 1736#define TYPE_ERROR_NAME(type) \
7d93a1e0 1737 (type->name () ? type->name () : _("<error type>"))
b00fdb78 1738
0db7851f
UW
1739/* Given TYPE, return its floatformat. */
1740const struct floatformat *floatformat_from_type (const struct type *type);
1741
000177f0
AC
1742struct builtin_type
1743{
46bf5051
UW
1744 /* Integral types. */
1745
b021a221 1746 /* Implicit size/sign (based on the architecture's ABI). */
46bf5051
UW
1747 struct type *builtin_void;
1748 struct type *builtin_char;
1749 struct type *builtin_short;
1750 struct type *builtin_int;
1751 struct type *builtin_long;
1752 struct type *builtin_signed_char;
1753 struct type *builtin_unsigned_char;
1754 struct type *builtin_unsigned_short;
1755 struct type *builtin_unsigned_int;
1756 struct type *builtin_unsigned_long;
a6d0f249 1757 struct type *builtin_half;
46bf5051
UW
1758 struct type *builtin_float;
1759 struct type *builtin_double;
1760 struct type *builtin_long_double;
1761 struct type *builtin_complex;
1762 struct type *builtin_double_complex;
1763 struct type *builtin_string;
1764 struct type *builtin_bool;
1765 struct type *builtin_long_long;
1766 struct type *builtin_unsigned_long_long;
1767 struct type *builtin_decfloat;
1768 struct type *builtin_decdouble;
1769 struct type *builtin_declong;
1770
69feb676
UW
1771 /* "True" character types.
1772 We use these for the '/c' print format, because c_char is just a
1773 one-byte integral type, which languages less laid back than C
1774 will print as ... well, a one-byte integral type. */
1775 struct type *builtin_true_char;
1776 struct type *builtin_true_unsigned_char;
1777
df4df182
UW
1778 /* Explicit sizes - see C9X <intypes.h> for naming scheme. The "int0"
1779 is for when an architecture needs to describe a register that has
1780 no size. */
1781 struct type *builtin_int0;
1782 struct type *builtin_int8;
1783 struct type *builtin_uint8;
1784 struct type *builtin_int16;
1785 struct type *builtin_uint16;
d1908f2d
JD
1786 struct type *builtin_int24;
1787 struct type *builtin_uint24;
df4df182
UW
1788 struct type *builtin_int32;
1789 struct type *builtin_uint32;
1790 struct type *builtin_int64;
1791 struct type *builtin_uint64;
1792 struct type *builtin_int128;
1793 struct type *builtin_uint128;
1794
9a22f0d0
PM
1795 /* Wide character types. */
1796 struct type *builtin_char16;
1797 struct type *builtin_char32;
53375380 1798 struct type *builtin_wchar;
46bf5051
UW
1799
1800 /* Pointer types. */
000177f0 1801
5e3a2c38 1802 /* * `pointer to data' type. Some target platforms use an implicitly
000177f0
AC
1803 {sign,zero} -extended 32-bit ABI pointer on a 64-bit ISA. */
1804 struct type *builtin_data_ptr;
1805
5e3a2c38 1806 /* * `pointer to function (returning void)' type. Harvard
000177f0
AC
1807 architectures mean that ABI function and code pointers are not
1808 interconvertible. Similarly, since ANSI, C standards have
1809 explicitly said that pointers to functions and pointers to data
1810 are not interconvertible --- that is, you can't cast a function
1811 pointer to void * and back, and expect to get the same value.
1812 However, all function pointer types are interconvertible, so void
1813 (*) () can server as a generic function pointer. */
5e3a2c38 1814
000177f0 1815 struct type *builtin_func_ptr;
78267919 1816
5e3a2c38 1817 /* * `function returning pointer to function (returning void)' type.
0875794a 1818 The final void return type is not significant for it. */
0875794a 1819
5e3a2c38 1820 struct type *builtin_func_func;
78267919
UW
1821
1822 /* Special-purpose types. */
1823
5e3a2c38
SS
1824 /* * This type is used to represent a GDB internal function. */
1825
78267919 1826 struct type *internal_fn;
e81e7f5e
SC
1827
1828 /* * This type is used to represent an xmethod. */
1829 struct type *xmethod;
46bf5051 1830};
000177f0 1831
5e3a2c38 1832/* * Return the type table for the specified architecture. */
64c50499 1833
5e3a2c38 1834extern const struct builtin_type *builtin_type (struct gdbarch *gdbarch);
64c50499 1835
5e3a2c38 1836/* * Per-objfile types used by symbol readers. */
000177f0 1837
46bf5051
UW
1838struct objfile_type
1839{
1840 /* Basic types based on the objfile architecture. */
000177f0
AC
1841 struct type *builtin_void;
1842 struct type *builtin_char;
1843 struct type *builtin_short;
1844 struct type *builtin_int;
1845 struct type *builtin_long;
46bf5051 1846 struct type *builtin_long_long;
000177f0
AC
1847 struct type *builtin_signed_char;
1848 struct type *builtin_unsigned_char;
1849 struct type *builtin_unsigned_short;
1850 struct type *builtin_unsigned_int;
1851 struct type *builtin_unsigned_long;
46bf5051 1852 struct type *builtin_unsigned_long_long;
a6d0f249 1853 struct type *builtin_half;
000177f0
AC
1854 struct type *builtin_float;
1855 struct type *builtin_double;
1856 struct type *builtin_long_double;
46bf5051 1857
5e3a2c38 1858 /* * This type is used to represent symbol addresses. */
46bf5051
UW
1859 struct type *builtin_core_addr;
1860
5e3a2c38
SS
1861 /* * This type represents a type that was unrecognized in symbol
1862 read-in. */
46bf5051
UW
1863 struct type *builtin_error;
1864
5e3a2c38 1865 /* * Types used for symbols with no debug information. */
46bf5051 1866 struct type *nodebug_text_symbol;
0875794a
JK
1867 struct type *nodebug_text_gnu_ifunc_symbol;
1868 struct type *nodebug_got_plt_symbol;
46bf5051
UW
1869 struct type *nodebug_data_symbol;
1870 struct type *nodebug_unknown_symbol;
1871 struct type *nodebug_tls_symbol;
000177f0 1872};
c5aa993b 1873
5e3a2c38 1874/* * Return the type table for the specified objfile. */
c5aa993b 1875
5e3a2c38 1876extern const struct objfile_type *objfile_type (struct objfile *objfile);
5674de60 1877
598f52df 1878/* Explicit floating-point formats. See "floatformat.h". */
f9e9243a 1879extern const struct floatformat *floatformats_ieee_half[BFD_ENDIAN_UNKNOWN];
8da61cc4
DJ
1880extern const struct floatformat *floatformats_ieee_single[BFD_ENDIAN_UNKNOWN];
1881extern const struct floatformat *floatformats_ieee_double[BFD_ENDIAN_UNKNOWN];
1882extern const struct floatformat *floatformats_ieee_double_littlebyte_bigword[BFD_ENDIAN_UNKNOWN];
1883extern const struct floatformat *floatformats_i387_ext[BFD_ENDIAN_UNKNOWN];
1884extern const struct floatformat *floatformats_m68881_ext[BFD_ENDIAN_UNKNOWN];
1885extern const struct floatformat *floatformats_arm_ext[BFD_ENDIAN_UNKNOWN];
1886extern const struct floatformat *floatformats_ia64_spill[BFD_ENDIAN_UNKNOWN];
1887extern const struct floatformat *floatformats_ia64_quad[BFD_ENDIAN_UNKNOWN];
1888extern const struct floatformat *floatformats_vax_f[BFD_ENDIAN_UNKNOWN];
1889extern const struct floatformat *floatformats_vax_d[BFD_ENDIAN_UNKNOWN];
b14d30e1 1890extern const struct floatformat *floatformats_ibm_long_double[BFD_ENDIAN_UNKNOWN];
8da61cc4 1891
fde6c819 1892
2fabdf33 1893/* Allocate space for storing data associated with a particular
5e3a2c38
SS
1894 type. We ensure that the space is allocated using the same
1895 mechanism that was used to allocate the space for the type
1896 structure itself. I.e. if the type is on an objfile's
1897 objfile_obstack, then the space for data associated with that type
2fabdf33
AB
1898 will also be allocated on the objfile_obstack. If the type is
1899 associated with a gdbarch, then the space for data associated with that
1900 type will also be allocated on the gdbarch_obstack.
1901
1902 If a type is not associated with neither an objfile or a gdbarch then
1903 you should not use this macro to allocate space for data, instead you
1904 should call xmalloc directly, and ensure the memory is correctly freed
1905 when it is no longer needed. */
1906
1907#define TYPE_ALLOC(t,size) \
1908 (obstack_alloc ((TYPE_OBJFILE_OWNED (t) \
1909 ? &TYPE_OBJFILE (t)->objfile_obstack \
1910 : gdbarch_obstack (TYPE_OWNER (t).gdbarch)), \
1911 size))
1912
1913
1914/* See comment on TYPE_ALLOC. */
1915
1916#define TYPE_ZALLOC(t,size) (memset (TYPE_ALLOC (t, size), 0, size))
ae5a43e0 1917
5e3a2c38
SS
1918/* Use alloc_type to allocate a type owned by an objfile. Use
1919 alloc_type_arch to allocate a type owned by an architecture. Use
1920 alloc_type_copy to allocate a type with the same owner as a
1921 pre-existing template type, no matter whether objfile or
1922 gdbarch. */
a14ed312 1923extern struct type *alloc_type (struct objfile *);
e9bb382b
UW
1924extern struct type *alloc_type_arch (struct gdbarch *);
1925extern struct type *alloc_type_copy (const struct type *);
c906108c 1926
5e3a2c38
SS
1927/* * Return the type's architecture. For types owned by an
1928 architecture, that architecture is returned. For types owned by an
1929 objfile, that objfile's architecture is returned. */
1930
e9bb382b
UW
1931extern struct gdbarch *get_type_arch (const struct type *);
1932
5e3a2c38 1933/* * This returns the target type (or NULL) of TYPE, also skipping
99ad9427 1934 past typedefs. */
5e3a2c38 1935
99ad9427
YQ
1936extern struct type *get_target_type (struct type *type);
1937
2e056931
SM
1938/* Return the equivalent of TYPE_LENGTH, but in number of target
1939 addressable memory units of the associated gdbarch instead of bytes. */
1940
1941extern unsigned int type_length_units (struct type *type);
1942
5e3a2c38
SS
1943/* * Helper function to construct objfile-owned types. */
1944
19f392bc
UW
1945extern struct type *init_type (struct objfile *, enum type_code, int,
1946 const char *);
1947extern struct type *init_integer_type (struct objfile *, int, int,
1948 const char *);
1949extern struct type *init_character_type (struct objfile *, int, int,
1950 const char *);
1951extern struct type *init_boolean_type (struct objfile *, int, int,
1952 const char *);
1953extern struct type *init_float_type (struct objfile *, int, const char *,
103a685e
TT
1954 const struct floatformat **,
1955 enum bfd_endian = BFD_ENDIAN_UNKNOWN);
19f392bc 1956extern struct type *init_decfloat_type (struct objfile *, int, const char *);
5b930b45 1957extern struct type *init_complex_type (const char *, struct type *);
19f392bc
UW
1958extern struct type *init_pointer_type (struct objfile *, int, const char *,
1959 struct type *);
c906108c 1960
e9bb382b 1961/* Helper functions to construct architecture-owned types. */
695bfa52
TT
1962extern struct type *arch_type (struct gdbarch *, enum type_code, int,
1963 const char *);
1964extern struct type *arch_integer_type (struct gdbarch *, int, int,
1965 const char *);
1966extern struct type *arch_character_type (struct gdbarch *, int, int,
1967 const char *);
1968extern struct type *arch_boolean_type (struct gdbarch *, int, int,
1969 const char *);
1970extern struct type *arch_float_type (struct gdbarch *, int, const char *,
e9bb382b 1971 const struct floatformat **);
88dfca6c 1972extern struct type *arch_decfloat_type (struct gdbarch *, int, const char *);
88dfca6c
UW
1973extern struct type *arch_pointer_type (struct gdbarch *, int, const char *,
1974 struct type *);
e9bb382b 1975
0e101458 1976/* Helper functions to construct a struct or record type. An
e9bb382b 1977 initially empty type is created using arch_composite_type().
eb90ce83 1978 Fields are then added using append_composite_type_field*(). A union
0e101458
AC
1979 type has its size set to the largest field. A struct type has each
1980 field packed against the previous. */
1981
e9bb382b 1982extern struct type *arch_composite_type (struct gdbarch *gdbarch,
695bfa52
TT
1983 const char *name, enum type_code code);
1984extern void append_composite_type_field (struct type *t, const char *name,
0e101458 1985 struct type *field);
4aa995e1 1986extern void append_composite_type_field_aligned (struct type *t,
695bfa52 1987 const char *name,
4aa995e1
PA
1988 struct type *field,
1989 int alignment);
695bfa52 1990struct field *append_composite_type_field_raw (struct type *t, const char *name,
f5dff777 1991 struct type *field);
0e101458 1992
4f2aea11 1993/* Helper functions to construct a bit flags type. An initially empty
e9bb382b 1994 type is created using arch_flag_type(). Flags are then added using
81516450 1995 append_flag_type_field() and append_flag_type_flag(). */
e9bb382b 1996extern struct type *arch_flags_type (struct gdbarch *gdbarch,
77b7c781 1997 const char *name, int bit);
81516450
DE
1998extern void append_flags_type_field (struct type *type,
1999 int start_bitpos, int nr_bits,
695bfa52
TT
2000 struct type *field_type, const char *name);
2001extern void append_flags_type_flag (struct type *type, int bitpos,
2002 const char *name);
4f2aea11 2003
ea37ba09 2004extern void make_vector_type (struct type *array_type);
794ac428
UW
2005extern struct type *init_vector_type (struct type *elt_type, int n);
2006
3b224330
AV
2007extern struct type *lookup_reference_type (struct type *, enum type_code);
2008extern struct type *lookup_lvalue_reference_type (struct type *);
2009extern struct type *lookup_rvalue_reference_type (struct type *);
c906108c 2010
3b224330
AV
2011
2012extern struct type *make_reference_type (struct type *, struct type **,
2013 enum type_code);
c906108c 2014
a14ed312 2015extern struct type *make_cv_type (int, int, struct type *, struct type **);
c906108c 2016
06d66ee9
TT
2017extern struct type *make_restrict_type (struct type *);
2018
f1660027
TT
2019extern struct type *make_unqualified_type (struct type *);
2020
a2c2acaf
MW
2021extern struct type *make_atomic_type (struct type *);
2022
dd6bda65
DJ
2023extern void replace_type (struct type *, struct type *);
2024
61f4b350 2025extern int address_space_name_to_int (struct gdbarch *, const char *);
47663de5 2026
50810684 2027extern const char *address_space_int_to_name (struct gdbarch *, int);
47663de5
MS
2028
2029extern struct type *make_type_with_address_space (struct type *type,
2030 int space_identifier);
2031
0d5de010
DJ
2032extern struct type *lookup_memberptr_type (struct type *, struct type *);
2033
2034extern struct type *lookup_methodptr_type (struct type *);
c906108c 2035
09e2d7c7 2036extern void smash_to_method_type (struct type *type, struct type *self_type,
0d5de010
DJ
2037 struct type *to_type, struct field *args,
2038 int nargs, int varargs);
c906108c 2039
0d5de010
DJ
2040extern void smash_to_memberptr_type (struct type *, struct type *,
2041 struct type *);
c906108c 2042
0b92b5bb
TT
2043extern void smash_to_methodptr_type (struct type *, struct type *);
2044
a14ed312 2045extern struct type *allocate_stub_method (struct type *);
c906108c 2046
a737d952 2047extern const char *type_name_or_error (struct type *type);
d8228535 2048
ef0bd204
JB
2049struct struct_elt
2050{
2051 /* The field of the element, or NULL if no element was found. */
2052 struct field *field;
2053
2054 /* The bit offset of the element in the parent structure. */
2055 LONGEST offset;
2056};
2057
2058/* Given a type TYPE, lookup the field and offset of the component named
2059 NAME.
2060
2061 TYPE can be either a struct or union, or a pointer or reference to
2062 a struct or union. If it is a pointer or reference, its target
2063 type is automatically used. Thus '.' and '->' are interchangable,
2064 as specified for the definitions of the expression element types
2065 STRUCTOP_STRUCT and STRUCTOP_PTR.
2066
2067 If NOERR is nonzero, the returned structure will have field set to
2068 NULL if there is no component named NAME.
2069
2070 If the component NAME is a field in an anonymous substructure of
2071 TYPE, the returned offset is a "global" offset relative to TYPE
2072 rather than an offset within the substructure. */
2073
2074extern struct_elt lookup_struct_elt (struct type *, const char *, int);
2075
2076/* Given a type TYPE, lookup the type of the component named NAME.
2077
2078 TYPE can be either a struct or union, or a pointer or reference to
2079 a struct or union. If it is a pointer or reference, its target
2080 type is automatically used. Thus '.' and '->' are interchangable,
2081 as specified for the definitions of the expression element types
2082 STRUCTOP_STRUCT and STRUCTOP_PTR.
2083
2084 If NOERR is nonzero, return NULL if there is no component named
2085 NAME. */
2086
d7561cbb 2087extern struct type *lookup_struct_elt_type (struct type *, const char *, int);
c906108c 2088
a14ed312 2089extern struct type *make_pointer_type (struct type *, struct type **);
c906108c 2090
a14ed312 2091extern struct type *lookup_pointer_type (struct type *);
c906108c 2092
0c8b41f1 2093extern struct type *make_function_type (struct type *, struct type **);
c906108c 2094
a14ed312 2095extern struct type *lookup_function_type (struct type *);
c906108c 2096
71918a86
TT
2097extern struct type *lookup_function_type_with_arguments (struct type *,
2098 int,
2099 struct type **);
2100
0c9c3474
SA
2101extern struct type *create_static_range_type (struct type *, struct type *,
2102 LONGEST, LONGEST);
c906108c 2103
729efb13 2104
dc53a7ad 2105extern struct type *create_array_type_with_stride
a405673c
JB
2106 (struct type *, struct type *, struct type *,
2107 struct dynamic_prop *, unsigned int);
dc53a7ad 2108
729efb13
SA
2109extern struct type *create_range_type (struct type *, struct type *,
2110 const struct dynamic_prop *,
4e962e74
TT
2111 const struct dynamic_prop *,
2112 LONGEST);
729efb13 2113
5bbd8269
AB
2114/* Like CREATE_RANGE_TYPE but also sets up a stride. When BYTE_STRIDE_P
2115 is true the value in STRIDE is a byte stride, otherwise STRIDE is a bit
2116 stride. */
2117
2118extern struct type * create_range_type_with_stride
2119 (struct type *result_type, struct type *index_type,
2120 const struct dynamic_prop *low_bound,
2121 const struct dynamic_prop *high_bound, LONGEST bias,
2122 const struct dynamic_prop *stride, bool byte_stride_p);
2123
a14ed312
KB
2124extern struct type *create_array_type (struct type *, struct type *,
2125 struct type *);
dc53a7ad 2126
63375b74 2127extern struct type *lookup_array_range_type (struct type *, LONGEST, LONGEST);
c906108c 2128
3b7538c0
UW
2129extern struct type *create_string_type (struct type *, struct type *,
2130 struct type *);
63375b74 2131extern struct type *lookup_string_range_type (struct type *, LONGEST, LONGEST);
c906108c 2132
a14ed312 2133extern struct type *create_set_type (struct type *, struct type *);
c906108c 2134
e6c014f2 2135extern struct type *lookup_unsigned_typename (const struct language_defn *,
b858499d 2136 const char *);
c906108c 2137
e6c014f2 2138extern struct type *lookup_signed_typename (const struct language_defn *,
b858499d 2139 const char *);
c906108c 2140
ed3ef339
DE
2141extern void get_unsigned_type_max (struct type *, ULONGEST *);
2142
2143extern void get_signed_type_minmax (struct type *, LONGEST *, LONGEST *);
2144
80180f79
SA
2145/* * Resolve all dynamic values of a type e.g. array bounds to static values.
2146 ADDR specifies the location of the variable the type is bound to.
2147 If TYPE has no dynamic properties return TYPE; otherwise a new type with
2148 static properties is returned. */
b249d2c2
TT
2149extern struct type *resolve_dynamic_type
2150 (struct type *type, gdb::array_view<const gdb_byte> valaddr,
2151 CORE_ADDR addr);
80180f79
SA
2152
2153/* * Predicate if the type has dynamic values, which are not resolved yet. */
2154extern int is_dynamic_type (struct type *type);
2155
a14ed312 2156extern struct type *check_typedef (struct type *);
c906108c 2157
de17c821 2158extern void check_stub_method_group (struct type *, int);
c906108c 2159
a14ed312 2160extern char *gdb_mangle_name (struct type *, int, int);
c906108c 2161
e6c014f2 2162extern struct type *lookup_typename (const struct language_defn *,
b858499d 2163 const char *, const struct block *, int);
c906108c 2164
61f4b350 2165extern struct type *lookup_template_type (const char *, struct type *,
270140bd 2166 const struct block *);
c906108c 2167
81fe8080 2168extern int get_vptr_fieldno (struct type *, struct type **);
c906108c 2169
a14ed312 2170extern int get_discrete_bounds (struct type *, LONGEST *, LONGEST *);
c906108c 2171
dbc98a8b
KW
2172extern int get_array_bounds (struct type *type, LONGEST *low_bound,
2173 LONGEST *high_bound);
2174
aa715135
JG
2175extern int discrete_position (struct type *type, LONGEST val, LONGEST *pos);
2176
4e8f195d
TT
2177extern int class_types_same_p (const struct type *, const struct type *);
2178
a14ed312 2179extern int is_ancestor (struct type *, struct type *);
c906108c 2180
4e8f195d
TT
2181extern int is_public_ancestor (struct type *, struct type *);
2182
2183extern int is_unique_ancestor (struct type *, struct value *);
2184
c906108c
SS
2185/* Overload resolution */
2186
5e3a2c38 2187/* * Badness if parameter list length doesn't match arg list length. */
6403aeea
SW
2188extern const struct rank LENGTH_MISMATCH_BADNESS;
2189
5e3a2c38 2190/* * Dummy badness value for nonexistent parameter positions. */
6403aeea 2191extern const struct rank TOO_FEW_PARAMS_BADNESS;
5e3a2c38 2192/* * Badness if no conversion among types. */
6403aeea
SW
2193extern const struct rank INCOMPATIBLE_TYPE_BADNESS;
2194
5e3a2c38 2195/* * Badness of an exact match. */
6403aeea 2196extern const struct rank EXACT_MATCH_BADNESS;
c906108c 2197
5e3a2c38 2198/* * Badness of integral promotion. */
6403aeea 2199extern const struct rank INTEGER_PROMOTION_BADNESS;
5e3a2c38 2200/* * Badness of floating promotion. */
6403aeea 2201extern const struct rank FLOAT_PROMOTION_BADNESS;
5e3a2c38 2202/* * Badness of converting a derived class pointer
7062b0a0 2203 to a base class pointer. */
6403aeea 2204extern const struct rank BASE_PTR_CONVERSION_BADNESS;
5e3a2c38 2205/* * Badness of integral conversion. */
6403aeea 2206extern const struct rank INTEGER_CONVERSION_BADNESS;
5e3a2c38 2207/* * Badness of floating conversion. */
6403aeea 2208extern const struct rank FLOAT_CONVERSION_BADNESS;
5e3a2c38 2209/* * Badness of integer<->floating conversions. */
6403aeea 2210extern const struct rank INT_FLOAT_CONVERSION_BADNESS;
5e3a2c38 2211/* * Badness of conversion of pointer to void pointer. */
6403aeea 2212extern const struct rank VOID_PTR_CONVERSION_BADNESS;
5e3a2c38 2213/* * Badness of conversion to boolean. */
5b4f6e25 2214extern const struct rank BOOL_CONVERSION_BADNESS;
5e3a2c38 2215/* * Badness of converting derived to base class. */
6403aeea 2216extern const struct rank BASE_CONVERSION_BADNESS;
e15c3eb4
KS
2217/* * Badness of converting from non-reference to reference. Subrank
2218 is the type of reference conversion being done. */
6403aeea 2219extern const struct rank REFERENCE_CONVERSION_BADNESS;
06acc08f 2220extern const struct rank REFERENCE_SEE_THROUGH_BADNESS;
e15c3eb4
KS
2221/* * Conversion to rvalue reference. */
2222#define REFERENCE_CONVERSION_RVALUE 1
2223/* * Conversion to const lvalue reference. */
2224#define REFERENCE_CONVERSION_CONST_LVALUE 2
2225
5e3a2c38 2226/* * Badness of converting integer 0 to NULL pointer. */
da096638 2227extern const struct rank NULL_POINTER_CONVERSION;
e15c3eb4
KS
2228/* * Badness of cv-conversion. Subrank is a flag describing the conversions
2229 being done. */
2230extern const struct rank CV_CONVERSION_BADNESS;
2231#define CV_CONVERSION_CONST 1
2232#define CV_CONVERSION_VOLATILE 2
7b83ea04 2233
c906108c 2234/* Non-standard conversions allowed by the debugger */
5e3a2c38
SS
2235
2236/* * Converting a pointer to an int is usually OK. */
6403aeea
SW
2237extern const struct rank NS_POINTER_CONVERSION_BADNESS;
2238
5e3a2c38 2239/* * Badness of converting a (non-zero) integer constant
a451cb65
KS
2240 to a pointer. */
2241extern const struct rank NS_INTEGER_POINTER_CONVERSION_BADNESS;
c906108c 2242
6403aeea
SW
2243extern struct rank sum_ranks (struct rank a, struct rank b);
2244extern int compare_ranks (struct rank a, struct rank b);
c906108c 2245
82ceee50
PA
2246extern int compare_badness (const badness_vector &,
2247 const badness_vector &);
c906108c 2248
82ceee50
PA
2249extern badness_vector rank_function (gdb::array_view<type *> parms,
2250 gdb::array_view<value *> args);
c906108c 2251
da096638
KS
2252extern struct rank rank_one_type (struct type *, struct type *,
2253 struct value *);
c906108c 2254
a14ed312 2255extern void recursive_dump_type (struct type *, int);
c906108c 2256
d6a843b5
JK
2257extern int field_is_static (struct field *);
2258
c906108c
SS
2259/* printcmd.c */
2260
7c543f7b 2261extern void print_scalar_formatted (const gdb_byte *, struct type *,
79a45b7d
TT
2262 const struct value_print_options *,
2263 int, struct ui_file *);
c906108c 2264
a14ed312 2265extern int can_dereference (struct type *);
c906108c 2266
a14ed312 2267extern int is_integral_type (struct type *);
adf40b2e 2268
70100014
UW
2269extern int is_floating_type (struct type *);
2270
220475ed
JB
2271extern int is_scalar_type (struct type *type);
2272
e09342b5
TJB
2273extern int is_scalar_type_recursive (struct type *);
2274
6c659fc2
SC
2275extern int class_or_union_p (const struct type *);
2276
58971144 2277extern void maintenance_print_type (const char *, int);
c906108c 2278
ae5a43e0
DJ
2279extern htab_t create_copied_types_hash (struct objfile *objfile);
2280
2281extern struct type *copy_type_recursive (struct objfile *objfile,
2282 struct type *type,
2283 htab_t copied_types);
2284
4af88198
JB
2285extern struct type *copy_type (const struct type *type);
2286
894882e3 2287extern bool types_equal (struct type *, struct type *);
bd69fc68 2288
894882e3 2289extern bool types_deeply_equal (struct type *, struct type *);
ca092b61 2290
3f2f83dd
KB
2291extern int type_not_allocated (const struct type *type);
2292
2293extern int type_not_associated (const struct type *type);
2294
34877895
PJ
2295/* * When the type includes explicit byte ordering, return that.
2296 Otherwise, the byte ordering from gdbarch_byte_order for
2297 get_type_arch is returned. */
2298
2299extern enum bfd_endian type_byte_order (const struct type *type);
2300
79bb1944
CB
2301/* A flag to enable printing of debugging information of C++
2302 overloading. */
2303
2304extern unsigned int overload_debug;
2305
c5aa993b 2306#endif /* GDBTYPES_H */
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