1 /* Abstraction of HP aCC ABI.
3 Contributed by Daniel Berlin <dberlin@redhat.com>
4 Most of the real code is from HP, i've just fiddled it to fit in
5 the C++ ABI abstraction framework.
7 Copyright (C) 2001, 2005 Free Software Foundation, Inc.
9 This file is part of GDB.
11 This program is free software; you can redistribute it and/or
13 it under the terms of the GNU General Public License as published
15 the Free Software Foundation; either version 2 of the License, or
16 (at your option) any later version.
18 This program is distributed in the hope that it will be useful,
19 but WITHOUT ANY WARRANTY; without even the implied warranty of
20 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 GNU General Public License for more details.
23 You should have received a copy of the GNU General Public License
24 along with this program; if not, write to the Free Software
25 Foundation, Inc., 51 Franklin Street, Fifth Floor,
26 Boston, MA 02110-1301, USA. */
30 #include "gdb_regex.h"
31 #include "gdb_string.h"
35 #include "gnu-v2-abi.h"
37 struct cp_abi_ops hpacc_abi_ops
;
39 /* It appears the is_*_name stuff is never used when we try the hpACC
40 * ABI. As such, I have no clue what the real answers are. Shouldn't
41 * have any more effect than it does now. */
42 static regex_t constructor_pattern
;
43 static regex_t destructor_pattern
;
44 static regex_t operator_pattern
;
46 static enum dtor_kinds
47 hpacc_is_destructor_name (const char *name
)
49 if (regexec (&destructor_pattern
, name
, 0, 0, 0) == 0)
50 return complete_object_dtor
;
55 static enum ctor_kinds
56 hpacc_is_constructor_name (const char *name
)
58 if (regexec (&constructor_pattern
, name
, 0, 0, 0) == 0)
59 return complete_object_ctor
;
65 hpacc_is_operator_name (const char *name
)
67 return regexec (&operator_pattern
, name
, 0, 0, 0) == 0;
71 hpacc_is_vtable_name (const char *name
)
74 "This will never match anything, please fill it in") == 0;
77 /* Return a virtual function as a value.
78 ARG1 is the object which provides the virtual function
79 table pointer. *ARG1P is side-effected in calling this function.
80 F is the list of member functions which contains the desired virtual
82 J is an index into F which provides the desired virtual function.
84 TYPE is the type in which F is located. */
86 hpacc_virtual_fn_field (struct value
**arg1p
, struct fn_field
* f
, int j
,
87 struct type
* type
, int offset
)
89 struct value
*arg1
= *arg1p
;
90 struct type
*type1
= check_typedef (value_type (arg1
));
92 /* Deal with HP/Taligent runtime model for virtual functions */
94 struct value
*argp
; /* arg1 cast to base */
95 CORE_ADDR coreptr
; /* pointer to target address */
96 int class_index
; /* which class segment pointer to use */
97 struct type
*ftype
= TYPE_FN_FIELD_TYPE (f
, j
); /* method type */
99 argp
= value_cast (type
, *arg1p
);
101 if (VALUE_ADDRESS (argp
) == 0)
102 error (_("Address of object is null; object may not have been created."));
104 /* pai: FIXME -- 32x64 possible problem? */
105 /* First word (4 bytes) in object layout is the vtable pointer */
106 coreptr
= *(CORE_ADDR
*) (value_contents (argp
)); /* pai: (temp) */
107 /* + offset + value_embedded_offset (argp)); */
111 ("Virtual table pointer is null for object; object may not have been created.");
114 * FIXME: The code here currently handles only
115 * the non-RRBC case of the Taligent/HP runtime spec; when RRBC
116 * is introduced, the condition for the "if" below will have to
117 * be changed to be a test for the RRBC case. */
121 /* Non-RRBC case; the virtual function pointers are stored at fixed
122 * offsets in the virtual table. */
124 /* Retrieve the offset in the virtual table from the debug
125 * info. The offset of the vfunc's entry is in words from
126 * the beginning of the vtable; but first we have to adjust
127 * by HP_ACC_VFUNC_START to account for other entries */
129 /* pai: FIXME: 32x64 problem here, a word may be 8 bytes in
130 * which case the multiplier should be 8 and values should be long */
131 vp
= value_at (builtin_type_int
,
132 coreptr
+ 4 * (TYPE_FN_FIELD_VOFFSET (f
, j
) +
133 HP_ACC_VFUNC_START
));
135 coreptr
= *(CORE_ADDR
*) (value_contents (vp
));
136 /* coreptr now contains the address of the virtual function */
137 /* (Actually, it contains the pointer to the plabel for the function. */
141 /* RRBC case; the virtual function pointers are found by double
142 * indirection through the class segment tables. */
144 /* Choose class segment depending on type we were passed */
145 class_index
= class_index_in_primary_list (type
);
147 /* Find class segment pointer. These are in the vtable slots after
148 * some other entries, so adjust by HP_ACC_VFUNC_START for that. */
149 /* pai: FIXME 32x64 problem here, if words are 8 bytes long
150 * the multiplier below has to be 8 and value should be long. */
151 vp
= value_at (builtin_type_int
,
152 coreptr
+ 4 * (HP_ACC_VFUNC_START
+ class_index
));
153 /* Indirect once more, offset by function index */
154 /* pai: FIXME 32x64 problem here, again multiplier could be 8 and value long */
156 *(CORE_ADDR
*) (value_contents (vp
) +
157 4 * TYPE_FN_FIELD_VOFFSET (f
, j
));
158 vp
= value_at (builtin_type_int
, coreptr
);
159 coreptr
= *(CORE_ADDR
*) (value_contents (vp
));
161 /* coreptr now contains the address of the virtual function */
162 /* (Actually, it contains the pointer to the plabel for the function.) */
167 error (_("Address of virtual function is null; error in virtual table?"));
169 /* Wrap this addr in a value and return pointer */
170 vp
= allocate_value (ftype
);
171 deprecated_set_value_type (vp
, ftype
);
172 VALUE_ADDRESS (vp
) = coreptr
;
174 /* pai: (temp) do we need the value_ind stuff in value_fn_field? */
180 hpacc_value_rtti_type (struct value
*v
, int *full
, int *top
, int *using_enc
)
182 struct type
*known_type
;
183 struct type
*rtti_type
;
186 int using_enclosing
= 0;
188 char rtti_type_name
[256];
197 /* Get declared type */
198 known_type
= value_type (v
);
199 CHECK_TYPEDEF (known_type
);
200 /* RTTI works only or class objects */
201 if (TYPE_CODE (known_type
) != TYPE_CODE_CLASS
)
204 /* If neither the declared type nor the enclosing type of the
205 * value structure has a HP ANSI C++ style virtual table,
206 * we can't do anything. */
207 if (!TYPE_HAS_VTABLE (known_type
))
209 known_type
= value_enclosing_type (v
);
210 CHECK_TYPEDEF (known_type
);
211 if ((TYPE_CODE (known_type
) != TYPE_CODE_CLASS
) ||
212 !TYPE_HAS_VTABLE (known_type
))
213 return NULL
; /* No RTTI, or not HP-compiled types */
214 CHECK_TYPEDEF (known_type
);
218 if (using_enclosing
&& using_enc
)
221 /* First get the virtual table address */
222 coreptr
= *(CORE_ADDR
*) ((value_contents_all (v
))
226 : value_embedded_offset (v
)));
228 /* return silently -- maybe called on gdb-generated value */
231 /* Fetch the top offset of the object */
232 /* FIXME possible 32x64 problem with pointer size & arithmetic */
233 vp
= value_at (builtin_type_int
,
234 coreptr
+ 4 * HP_ACC_TOP_OFFSET_OFFSET
);
235 top_offset
= value_as_long (vp
);
239 /* Fetch the typeinfo pointer */
240 /* FIXME possible 32x64 problem with pointer size & arithmetic */
241 vp
= value_at (builtin_type_int
, coreptr
+ 4 * HP_ACC_TYPEINFO_OFFSET
);
242 /* Indirect through the typeinfo pointer and retrieve the pointer
243 * to the string name */
244 coreptr
= *(CORE_ADDR
*) (value_contents (vp
));
246 error (_("Retrieved null typeinfo pointer in trying to determine "
248 /* 4 -> offset of name field */
249 vp
= value_at (builtin_type_int
, coreptr
+ 4);
250 /* FIXME possible 32x64 problem */
252 coreptr
= *(CORE_ADDR
*) (value_contents (vp
));
254 read_memory_string (coreptr
, rtti_type_name
, 256);
256 if (strlen (rtti_type_name
) == 0)
257 error (_("Retrieved null type name from typeinfo"));
259 /* search for type */
260 rtti_type
= lookup_typename (rtti_type_name
, (struct block
*) 0, 1);
263 error (_("Could not find run-time type: invalid type name %s in typeinfo??"),
265 CHECK_TYPEDEF (rtti_type
);
267 printf ("RTTI type name %s, tag %s, full? %d\n", TYPE_NAME (rtti_type
),
268 TYPE_TAG_NAME (rtti_type
), full
? *full
: -1);
270 /* Check whether we have the entire object */
271 if (full
/* Non-null pointer passed */
273 /* Either we checked on the whole object in hand and found the
274 top offset to be zero */
275 (((top_offset
== 0) &&
277 TYPE_LENGTH (known_type
) == TYPE_LENGTH (rtti_type
))
279 /* Or we checked on the embedded object and top offset was the
280 same as the embedded offset */
281 ((top_offset
== value_embedded_offset (v
)) &&
283 TYPE_LENGTH (value_enclosing_type (v
)) == TYPE_LENGTH (rtti_type
))))
291 init_hpacc_ops (void)
293 hpacc_abi_ops
.shortname
= "hpaCC";
294 hpacc_abi_ops
.longname
= "HP aCC ABI";
295 hpacc_abi_ops
.doc
= "HP aCC ABI";
296 hpacc_abi_ops
.is_destructor_name
= hpacc_is_destructor_name
;
297 hpacc_abi_ops
.is_constructor_name
= hpacc_is_constructor_name
;
298 hpacc_abi_ops
.is_vtable_name
= hpacc_is_vtable_name
;
299 hpacc_abi_ops
.is_operator_name
= hpacc_is_operator_name
;
300 hpacc_abi_ops
.virtual_fn_field
= hpacc_virtual_fn_field
;
301 hpacc_abi_ops
.rtti_type
= hpacc_value_rtti_type
;
302 /* It seems that this function is specific to GNU G++ < 3.0.
303 However, it is called for data members even in the HP
304 case (although not for member functions).
305 FIXME: Is that correct? */
306 hpacc_abi_ops
.baseclass_offset
= gnuv2_baseclass_offset
;
309 extern initialize_file_ftype _initialize_hpacc_abi
; /* -Wmissing-prototypes */
312 _initialize_hpacc_abi (void)
316 regcomp (&constructor_pattern
,
317 "^This will never match anything, please fill it in$", REG_NOSUB
);
319 regcomp (&destructor_pattern
,
320 "^This will never match anything, please fill it in$", REG_NOSUB
);
322 regcomp (&operator_pattern
,
323 "^This will never match anything, please fill it in$", REG_NOSUB
);
325 register_cp_abi (&hpacc_abi_ops
);