* python/py-inferior.c: Update comments of infpy_read_memory
[deliverable/binutils-gdb.git] / gdb / python / py-type.c
CommitLineData
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1/* Python interface to types.
2
0b302171 3 Copyright (C) 2008-2012 Free Software Foundation, Inc.
2c74e833
TT
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20#include "defs.h"
21#include "value.h"
22#include "exceptions.h"
23#include "python-internal.h"
24#include "charset.h"
25#include "gdbtypes.h"
26#include "cp-support.h"
27#include "demangle.h"
28#include "objfiles.h"
e6c014f2 29#include "language.h"
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TT
30#include "vec.h"
31#include "bcache.h"
8e3b41a9 32#include "dwarf2loc.h"
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TT
33
34typedef struct pyty_type_object
35{
36 PyObject_HEAD
37 struct type *type;
38
39 /* If a Type object is associated with an objfile, it is kept on a
40 doubly-linked list, rooted in the objfile. This lets us copy the
41 underlying struct type when the objfile is deleted. */
42 struct pyty_type_object *prev;
43 struct pyty_type_object *next;
44} type_object;
45
46static PyTypeObject type_object_type;
47
48/* A Field object. */
49typedef struct pyty_field_object
50{
51 PyObject_HEAD
52
53 /* Dictionary holding our attributes. */
54 PyObject *dict;
55} field_object;
56
57static PyTypeObject field_object_type;
58
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59/* A type iterator object. */
60typedef struct {
61 PyObject_HEAD
62 /* The current field index. */
63 int field;
64 /* What to return. */
65 enum gdbpy_iter_kind kind;
66 /* Pointer back to the original source type object. */
67 struct pyty_type_object *source;
68} typy_iterator_object;
69
70static PyTypeObject type_iterator_object_type;
71
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72/* This is used to initialize various gdb.TYPE_ constants. */
73struct pyty_code
74{
75 /* The code. */
76 enum type_code code;
77 /* The name. */
78 const char *name;
79};
80
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81/* Forward declarations. */
82static PyObject *typy_make_iter (PyObject *self, enum gdbpy_iter_kind kind);
83
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84#define ENTRY(X) { X, #X }
85
86static struct pyty_code pyty_codes[] =
87{
88 ENTRY (TYPE_CODE_PTR),
89 ENTRY (TYPE_CODE_ARRAY),
90 ENTRY (TYPE_CODE_STRUCT),
91 ENTRY (TYPE_CODE_UNION),
92 ENTRY (TYPE_CODE_ENUM),
93 ENTRY (TYPE_CODE_FLAGS),
94 ENTRY (TYPE_CODE_FUNC),
95 ENTRY (TYPE_CODE_INT),
96 ENTRY (TYPE_CODE_FLT),
97 ENTRY (TYPE_CODE_VOID),
98 ENTRY (TYPE_CODE_SET),
99 ENTRY (TYPE_CODE_RANGE),
100 ENTRY (TYPE_CODE_STRING),
101 ENTRY (TYPE_CODE_BITSTRING),
102 ENTRY (TYPE_CODE_ERROR),
103 ENTRY (TYPE_CODE_METHOD),
104 ENTRY (TYPE_CODE_METHODPTR),
105 ENTRY (TYPE_CODE_MEMBERPTR),
106 ENTRY (TYPE_CODE_REF),
107 ENTRY (TYPE_CODE_CHAR),
108 ENTRY (TYPE_CODE_BOOL),
109 ENTRY (TYPE_CODE_COMPLEX),
110 ENTRY (TYPE_CODE_TYPEDEF),
111 ENTRY (TYPE_CODE_NAMESPACE),
112 ENTRY (TYPE_CODE_DECFLOAT),
113 ENTRY (TYPE_CODE_INTERNAL_FUNCTION),
114 { TYPE_CODE_UNDEF, NULL }
115};
116
117\f
118
119static void
120field_dealloc (PyObject *obj)
121{
122 field_object *f = (field_object *) obj;
d59b6f6c 123
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124 Py_XDECREF (f->dict);
125 f->ob_type->tp_free (obj);
126}
127
128static PyObject *
129field_new (void)
130{
131 field_object *result = PyObject_New (field_object, &field_object_type);
d59b6f6c 132
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133 if (result)
134 {
135 result->dict = PyDict_New ();
136 if (!result->dict)
137 {
138 Py_DECREF (result);
139 result = NULL;
140 }
141 }
142 return (PyObject *) result;
143}
144
145\f
146
147/* Return the code for this type. */
148static PyObject *
149typy_get_code (PyObject *self, void *closure)
150{
151 struct type *type = ((type_object *) self)->type;
d59b6f6c 152
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153 return PyInt_FromLong (TYPE_CODE (type));
154}
155
156/* Helper function for typy_fields which converts a single field to a
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157 gdb.Field object. Returns NULL on error. */
158
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159static PyObject *
160convert_field (struct type *type, int field)
161{
162 PyObject *result = field_new ();
163 PyObject *arg;
164
165 if (!result)
166 return NULL;
167
168 if (!field_is_static (&TYPE_FIELD (type, field)))
169 {
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170 const char *attrstring;
171
172 if (TYPE_CODE (type) == TYPE_CODE_ENUM)
173 {
174 arg = gdb_py_long_from_longest (TYPE_FIELD_ENUMVAL (type, field));
175 attrstring = "enumval";
176 }
177 else
178 {
179 arg = PyLong_FromLong (TYPE_FIELD_BITPOS (type, field));
180 attrstring = "bitpos";
181 }
182
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183 if (!arg)
184 goto fail;
185
4fb2c64a
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186 /* At least python-2.4 had the second parameter non-const. */
187 if (PyObject_SetAttrString (result, (char *) attrstring, arg) < 0)
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188 goto failarg;
189 }
190
191 if (TYPE_FIELD_NAME (type, field))
192 arg = PyString_FromString (TYPE_FIELD_NAME (type, field));
193 else
194 {
195 arg = Py_None;
196 Py_INCREF (arg);
197 }
198 if (!arg)
199 goto fail;
200 if (PyObject_SetAttrString (result, "name", arg) < 0)
201 goto failarg;
202
203 arg = TYPE_FIELD_ARTIFICIAL (type, field) ? Py_True : Py_False;
204 Py_INCREF (arg);
205 if (PyObject_SetAttrString (result, "artificial", arg) < 0)
206 goto failarg;
207
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208 if (TYPE_CODE (type) == TYPE_CODE_CLASS)
209 arg = field < TYPE_N_BASECLASSES (type) ? Py_True : Py_False;
210 else
211 arg = Py_False;
212 Py_INCREF (arg);
213 if (PyObject_SetAttrString (result, "is_base_class", arg) < 0)
214 goto failarg;
215
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216 arg = PyLong_FromLong (TYPE_FIELD_BITSIZE (type, field));
217 if (!arg)
218 goto fail;
219 if (PyObject_SetAttrString (result, "bitsize", arg) < 0)
220 goto failarg;
221
222 /* A field can have a NULL type in some situations. */
223 if (TYPE_FIELD_TYPE (type, field) == NULL)
224 {
225 arg = Py_None;
226 Py_INCREF (arg);
227 }
228 else
229 arg = type_to_type_object (TYPE_FIELD_TYPE (type, field));
230 if (!arg)
231 goto fail;
232 if (PyObject_SetAttrString (result, "type", arg) < 0)
233 goto failarg;
234
235 return result;
236
237 failarg:
238 Py_DECREF (arg);
239 fail:
240 Py_DECREF (result);
241 return NULL;
242}
243
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244/* Helper function to return the name of a field, as a gdb.Field object.
245 If the field doesn't have a name, None is returned. */
246
2c74e833 247static PyObject *
a73bb892 248field_name (struct type *type, int field)
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249{
250 PyObject *result;
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251
252 if (TYPE_FIELD_NAME (type, field))
253 result = PyString_FromString (TYPE_FIELD_NAME (type, field));
254 else
255 {
256 result = Py_None;
257 Py_INCREF (result);
258 }
259 return result;
260}
261
262/* Helper function for Type standard mapping methods. Returns a
263 Python object for field i of the type. "kind" specifies what to
264 return: the name of the field, a gdb.Field object corresponding to
265 the field, or a tuple consisting of field name and gdb.Field
266 object. */
267
268static PyObject *
269make_fielditem (struct type *type, int i, enum gdbpy_iter_kind kind)
270{
271 PyObject *item = NULL, *key = NULL, *value = NULL;
272
273 switch (kind)
274 {
275 case iter_items:
276 key = field_name (type, i);
277 if (key == NULL)
278 goto fail;
279 value = convert_field (type, i);
280 if (value == NULL)
281 goto fail;
282 item = PyTuple_New (2);
283 if (item == NULL)
284 goto fail;
285 PyTuple_SET_ITEM (item, 0, key);
286 PyTuple_SET_ITEM (item, 1, value);
287 break;
288 case iter_keys:
289 item = field_name (type, i);
290 break;
291 case iter_values:
292 item = convert_field (type, i);
293 break;
294 }
295 return item;
296
297 fail:
298 Py_XDECREF (key);
299 Py_XDECREF (value);
300 Py_XDECREF (item);
301 return NULL;
302}
303
304/* Return a sequence of all field names, fields, or (name, field) pairs.
305 Each field is a gdb.Field object. */
306
307static PyObject *
308typy_fields_items (PyObject *self, enum gdbpy_iter_kind kind)
309{
f6b47be4 310 PyObject *py_type = self;
0dab82e9 311 PyObject *result = NULL, *iter = NULL;
f6b47be4
DE
312 volatile struct gdb_exception except;
313 struct type *type = ((type_object *) py_type)->type;
314 struct type *checked_type = type;
315
316 TRY_CATCH (except, RETURN_MASK_ALL)
317 {
318 CHECK_TYPEDEF (checked_type);
319 }
320 GDB_PY_HANDLE_EXCEPTION (except);
321
322 if (checked_type != type)
323 py_type = type_to_type_object (checked_type);
324 iter = typy_make_iter (py_type, kind);
325 if (checked_type != type)
326 {
327 /* Need to wrap this in braces because Py_DECREF isn't wrapped
328 in a do{}while(0). */
329 Py_DECREF (py_type);
330 }
331 if (iter != NULL)
332 {
333 result = PySequence_List (iter);
334 Py_DECREF (iter);
335 }
336
2c74e833 337 return result;
a73bb892
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338}
339
340/* Return a sequence of all fields. Each field is a gdb.Field object. */
341
342static PyObject *
9cc10fd1 343typy_values (PyObject *self, PyObject *args)
a73bb892
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344{
345 return typy_fields_items (self, iter_values);
346}
347
9cc10fd1
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348/* Return a sequence of all fields. Each field is a gdb.Field object.
349 This method is similar to typy_values, except where the supplied
350 gdb.Type is an array, in which case it returns a list of one entry
351 which is a gdb.Field object for a range (the array bounds). */
352
353static PyObject *
354typy_fields (PyObject *self, PyObject *args)
355{
356 struct type *type = ((type_object *) self)->type;
357 PyObject *r, *rl;
358
359 if (TYPE_CODE (type) != TYPE_CODE_ARRAY)
360 return typy_fields_items (self, iter_values);
361
362 /* Array type. Handle this as a special case because the common
363 machinery wants struct or union or enum types. Build a list of
364 one entry which is the range for the array. */
365 r = convert_field (type, 0);
366 if (r == NULL)
367 return NULL;
368
369 rl = Py_BuildValue ("[O]", r);
370 if (rl == NULL)
371 {
372 Py_DECREF (r);
373 }
374
375 return rl;
376}
377
a73bb892
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378/* Return a sequence of all field names. Each field is a gdb.Field object. */
379
380static PyObject *
381typy_field_names (PyObject *self, PyObject *args)
382{
383 return typy_fields_items (self, iter_keys);
384}
385
386/* Return a sequence of all (name, fields) pairs. Each field is a
387 gdb.Field object. */
388
389static PyObject *
390typy_items (PyObject *self, PyObject *args)
391{
392 return typy_fields_items (self, iter_items);
2c74e833
TT
393}
394
395/* Return the type's tag, or None. */
396static PyObject *
397typy_get_tag (PyObject *self, void *closure)
398{
399 struct type *type = ((type_object *) self)->type;
d59b6f6c 400
2c74e833
TT
401 if (!TYPE_TAG_NAME (type))
402 Py_RETURN_NONE;
403 return PyString_FromString (TYPE_TAG_NAME (type));
404}
405
406/* Return the type, stripped of typedefs. */
407static PyObject *
408typy_strip_typedefs (PyObject *self, PyObject *args)
409{
410 struct type *type = ((type_object *) self)->type;
5d9c5995
PM
411 volatile struct gdb_exception except;
412
413 TRY_CATCH (except, RETURN_MASK_ALL)
414 {
415 type = check_typedef (type);
416 }
417 GDB_PY_HANDLE_EXCEPTION (except);
2c74e833
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418
419 return type_to_type_object (check_typedef (type));
420}
421
9cc10fd1
PK
422/* Strip typedefs and pointers/reference from a type. Then check that
423 it is a struct, union, or enum type. If not, raise TypeError. */
424
425static struct type *
426typy_get_composite (struct type *type)
427{
428 volatile struct gdb_exception except;
429
430 for (;;)
431 {
432 TRY_CATCH (except, RETURN_MASK_ALL)
433 {
434 CHECK_TYPEDEF (type);
435 }
436 /* Don't use GDB_PY_HANDLE_EXCEPTION here because that returns
437 a (NULL) pointer of the wrong type. */
438 if (except.reason < 0)
439 {
440 gdbpy_convert_exception (except);
441 return NULL;
442 }
443
444 if (TYPE_CODE (type) != TYPE_CODE_PTR
445 && TYPE_CODE (type) != TYPE_CODE_REF)
446 break;
447 type = TYPE_TARGET_TYPE (type);
448 }
449
450 /* If this is not a struct, union, or enum type, raise TypeError
451 exception. */
452 if (TYPE_CODE (type) != TYPE_CODE_STRUCT
453 && TYPE_CODE (type) != TYPE_CODE_UNION
454 && TYPE_CODE (type) != TYPE_CODE_ENUM)
455 {
456 PyErr_SetString (PyExc_TypeError,
457 "Type is not a structure, union, or enum type.");
458 return NULL;
459 }
460
461 return type;
462}
463
702c2711
TT
464/* Return an array type. */
465
466static PyObject *
467typy_array (PyObject *self, PyObject *args)
468{
74aedc46 469 long n1, n2;
702c2711
TT
470 PyObject *n2_obj = NULL;
471 struct type *array = NULL;
472 struct type *type = ((type_object *) self)->type;
473 volatile struct gdb_exception except;
474
74aedc46 475 if (! PyArg_ParseTuple (args, "l|O", &n1, &n2_obj))
702c2711
TT
476 return NULL;
477
478 if (n2_obj)
479 {
480 if (!PyInt_Check (n2_obj))
481 {
482 PyErr_SetString (PyExc_RuntimeError,
483 _("Array bound must be an integer"));
484 return NULL;
485 }
74aedc46
TT
486
487 if (! gdb_py_int_as_long (n2_obj, &n2))
702c2711
TT
488 return NULL;
489 }
490 else
491 {
492 n2 = n1;
493 n1 = 0;
494 }
495
496 if (n2 < n1)
497 {
498 PyErr_SetString (PyExc_ValueError,
499 _("Array length must not be negative"));
500 return NULL;
501 }
502
503 TRY_CATCH (except, RETURN_MASK_ALL)
504 {
505 array = lookup_array_range_type (type, n1, n2);
506 }
507 GDB_PY_HANDLE_EXCEPTION (except);
508
509 return type_to_type_object (array);
510}
511
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512/* Return a Type object which represents a pointer to SELF. */
513static PyObject *
514typy_pointer (PyObject *self, PyObject *args)
515{
516 struct type *type = ((type_object *) self)->type;
517 volatile struct gdb_exception except;
518
519 TRY_CATCH (except, RETURN_MASK_ALL)
520 {
521 type = lookup_pointer_type (type);
522 }
523 GDB_PY_HANDLE_EXCEPTION (except);
524
525 return type_to_type_object (type);
526}
527
361ae042
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528/* Return the range of a type represented by SELF. The return type is
529 a tuple. The first element of the tuple contains the low bound,
530 while the second element of the tuple contains the high bound. */
531static PyObject *
532typy_range (PyObject *self, PyObject *args)
533{
534 struct type *type = ((type_object *) self)->type;
535 PyObject *result;
536 PyObject *low_bound = NULL, *high_bound = NULL;
8d099ae9
PM
537 /* Initialize these to appease GCC warnings. */
538 LONGEST low = 0, high = 0;
361ae042
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539
540 if (TYPE_CODE (type) != TYPE_CODE_ARRAY
541 && TYPE_CODE (type) != TYPE_CODE_STRING
542 && TYPE_CODE (type) != TYPE_CODE_RANGE)
543 {
544 PyErr_SetString (PyExc_RuntimeError,
044c0f87 545 _("This type does not have a range."));
361ae042
PM
546 return NULL;
547 }
548
549 switch (TYPE_CODE (type))
550 {
551 case TYPE_CODE_ARRAY:
552 case TYPE_CODE_STRING:
553 low = TYPE_LOW_BOUND (TYPE_INDEX_TYPE (type));
554 high = TYPE_HIGH_BOUND (TYPE_INDEX_TYPE (type));
555 break;
556 case TYPE_CODE_RANGE:
557 low = TYPE_LOW_BOUND (type);
558 high = TYPE_HIGH_BOUND (type);
559 break;
560 }
561
562 low_bound = PyLong_FromLong (low);
563 if (!low_bound)
564 goto failarg;
565
566 high_bound = PyLong_FromLong (high);
567 if (!high_bound)
568 goto failarg;
569
570 result = PyTuple_New (2);
571 if (!result)
572 goto failarg;
573
574 if (PyTuple_SetItem (result, 0, low_bound) != 0)
575 {
576 Py_DECREF (result);
577 goto failarg;
578 }
579 if (PyTuple_SetItem (result, 1, high_bound) != 0)
580 {
581 Py_DECREF (high_bound);
582 Py_DECREF (result);
583 return NULL;
584 }
585 return result;
586
587 failarg:
588 Py_XDECREF (high_bound);
589 Py_XDECREF (low_bound);
590 return NULL;
591}
592
2c74e833
TT
593/* Return a Type object which represents a reference to SELF. */
594static PyObject *
595typy_reference (PyObject *self, PyObject *args)
596{
597 struct type *type = ((type_object *) self)->type;
598 volatile struct gdb_exception except;
599
600 TRY_CATCH (except, RETURN_MASK_ALL)
601 {
602 type = lookup_reference_type (type);
603 }
604 GDB_PY_HANDLE_EXCEPTION (except);
605
606 return type_to_type_object (type);
607}
608
609/* Return a Type object which represents the target type of SELF. */
610static PyObject *
611typy_target (PyObject *self, PyObject *args)
612{
613 struct type *type = ((type_object *) self)->type;
614
615 if (!TYPE_TARGET_TYPE (type))
616 {
044c0f87
PM
617 PyErr_SetString (PyExc_RuntimeError,
618 _("Type does not have a target."));
2c74e833
TT
619 return NULL;
620 }
621
622 return type_to_type_object (TYPE_TARGET_TYPE (type));
623}
624
625/* Return a const-qualified type variant. */
626static PyObject *
627typy_const (PyObject *self, PyObject *args)
628{
629 struct type *type = ((type_object *) self)->type;
630 volatile struct gdb_exception except;
631
632 TRY_CATCH (except, RETURN_MASK_ALL)
633 {
634 type = make_cv_type (1, 0, type, NULL);
635 }
636 GDB_PY_HANDLE_EXCEPTION (except);
637
638 return type_to_type_object (type);
639}
640
641/* Return a volatile-qualified type variant. */
642static PyObject *
643typy_volatile (PyObject *self, PyObject *args)
644{
645 struct type *type = ((type_object *) self)->type;
646 volatile struct gdb_exception except;
647
648 TRY_CATCH (except, RETURN_MASK_ALL)
649 {
650 type = make_cv_type (0, 1, type, NULL);
651 }
652 GDB_PY_HANDLE_EXCEPTION (except);
653
654 return type_to_type_object (type);
655}
656
657/* Return an unqualified type variant. */
658static PyObject *
659typy_unqualified (PyObject *self, PyObject *args)
660{
661 struct type *type = ((type_object *) self)->type;
662 volatile struct gdb_exception except;
663
664 TRY_CATCH (except, RETURN_MASK_ALL)
665 {
666 type = make_cv_type (0, 0, type, NULL);
667 }
668 GDB_PY_HANDLE_EXCEPTION (except);
669
670 return type_to_type_object (type);
671}
672
673/* Return the size of the type represented by SELF, in bytes. */
674static PyObject *
675typy_get_sizeof (PyObject *self, void *closure)
676{
677 struct type *type = ((type_object *) self)->type;
678 volatile struct gdb_exception except;
679
680 TRY_CATCH (except, RETURN_MASK_ALL)
681 {
682 check_typedef (type);
683 }
684 /* Ignore exceptions. */
685
686 return PyLong_FromLong (TYPE_LENGTH (type));
687}
688
689static struct type *
9df2fbc4 690typy_lookup_typename (const char *type_name, const struct block *block)
2c74e833
TT
691{
692 struct type *type = NULL;
693 volatile struct gdb_exception except;
d59b6f6c 694
2c74e833
TT
695 TRY_CATCH (except, RETURN_MASK_ALL)
696 {
697 if (!strncmp (type_name, "struct ", 7))
698 type = lookup_struct (type_name + 7, NULL);
699 else if (!strncmp (type_name, "union ", 6))
700 type = lookup_union (type_name + 6, NULL);
701 else if (!strncmp (type_name, "enum ", 5))
702 type = lookup_enum (type_name + 5, NULL);
703 else
d452c4bc 704 type = lookup_typename (python_language, python_gdbarch,
5107b149 705 type_name, block, 0);
2c74e833
TT
706 }
707 if (except.reason < 0)
708 {
76dce0be 709 gdbpy_convert_exception (except);
2c74e833
TT
710 return NULL;
711 }
712
713 return type;
714}
715
716static struct type *
5107b149 717typy_lookup_type (struct demangle_component *demangled,
9df2fbc4 718 const struct block *block)
2c74e833 719{
cd829959 720 struct type *type, *rtype = NULL;
76dce0be 721 char *type_name = NULL;
2c74e833 722 enum demangle_component_type demangled_type;
76dce0be 723 volatile struct gdb_exception except;
2c74e833
TT
724
725 /* Save the type: typy_lookup_type() may (indirectly) overwrite
726 memory pointed by demangled. */
727 demangled_type = demangled->type;
728
729 if (demangled_type == DEMANGLE_COMPONENT_POINTER
730 || demangled_type == DEMANGLE_COMPONENT_REFERENCE
731 || demangled_type == DEMANGLE_COMPONENT_CONST
732 || demangled_type == DEMANGLE_COMPONENT_VOLATILE)
733 {
5107b149 734 type = typy_lookup_type (demangled->u.s_binary.left, block);
2c74e833
TT
735 if (! type)
736 return NULL;
737
76dce0be
PM
738 TRY_CATCH (except, RETURN_MASK_ALL)
739 {
cd829959
PM
740 /* If the demangled_type matches with one of the types
741 below, run the corresponding function and save the type
742 to return later. We cannot just return here as we are in
743 an exception handler. */
76dce0be
PM
744 switch (demangled_type)
745 {
746 case DEMANGLE_COMPONENT_REFERENCE:
cd829959
PM
747 rtype = lookup_reference_type (type);
748 break;
76dce0be 749 case DEMANGLE_COMPONENT_POINTER:
cd829959
PM
750 rtype = lookup_pointer_type (type);
751 break;
76dce0be 752 case DEMANGLE_COMPONENT_CONST:
cd829959
PM
753 rtype = make_cv_type (1, 0, type, NULL);
754 break;
76dce0be 755 case DEMANGLE_COMPONENT_VOLATILE:
cd829959
PM
756 rtype = make_cv_type (0, 1, type, NULL);
757 break;
76dce0be 758 }
76dce0be
PM
759 }
760 if (except.reason < 0)
2c74e833 761 {
76dce0be
PM
762 gdbpy_convert_exception (except);
763 return NULL;
2c74e833
TT
764 }
765 }
cd829959
PM
766
767 /* If we have a type from the switch statement above, just return
768 that. */
769 if (rtype)
770 return rtype;
771
772 /* We don't have a type, so lookup the type. */
773 type_name = cp_comp_to_string (demangled, 10);
5107b149 774 type = typy_lookup_typename (type_name, block);
2c74e833
TT
775 xfree (type_name);
776
777 return type;
778}
779
326fd672
TT
780/* This is a helper function for typy_template_argument that is used
781 when the type does not have template symbols attached. It works by
782 parsing the type name. This happens with compilers, like older
783 versions of GCC, that do not emit DW_TAG_template_*. */
784
2c74e833 785static PyObject *
9df2fbc4 786typy_legacy_template_argument (struct type *type, const struct block *block,
326fd672 787 int argno)
2c74e833 788{
326fd672 789 int i;
2c74e833 790 struct demangle_component *demangled;
5d9c5995 791 struct demangle_parse_info *info = NULL;
2c74e833
TT
792 const char *err;
793 struct type *argtype;
3a93a0c2 794 struct cleanup *cleanup;
5d9c5995 795 volatile struct gdb_exception except;
2c74e833
TT
796
797 if (TYPE_NAME (type) == NULL)
798 {
5107b149 799 PyErr_SetString (PyExc_RuntimeError, _("Null type name."));
2c74e833
TT
800 return NULL;
801 }
802
5d9c5995
PM
803 TRY_CATCH (except, RETURN_MASK_ALL)
804 {
805 /* Note -- this is not thread-safe. */
806 info = cp_demangled_name_to_comp (TYPE_NAME (type), &err);
807 }
808 GDB_PY_HANDLE_EXCEPTION (except);
809
3a93a0c2 810 if (! info)
2c74e833
TT
811 {
812 PyErr_SetString (PyExc_RuntimeError, err);
813 return NULL;
814 }
3a93a0c2
KS
815 demangled = info->tree;
816 cleanup = make_cleanup_cp_demangled_name_parse_free (info);
2c74e833
TT
817
818 /* Strip off component names. */
819 while (demangled->type == DEMANGLE_COMPONENT_QUAL_NAME
820 || demangled->type == DEMANGLE_COMPONENT_LOCAL_NAME)
821 demangled = demangled->u.s_binary.right;
822
823 if (demangled->type != DEMANGLE_COMPONENT_TEMPLATE)
824 {
3a93a0c2 825 do_cleanups (cleanup);
5107b149 826 PyErr_SetString (PyExc_RuntimeError, _("Type is not a template."));
2c74e833
TT
827 return NULL;
828 }
829
830 /* Skip from the template to the arguments. */
831 demangled = demangled->u.s_binary.right;
832
833 for (i = 0; demangled && i < argno; ++i)
834 demangled = demangled->u.s_binary.right;
835
836 if (! demangled)
837 {
3a93a0c2 838 do_cleanups (cleanup);
5107b149 839 PyErr_Format (PyExc_RuntimeError, _("No argument %d in template."),
2c74e833
TT
840 argno);
841 return NULL;
842 }
843
5107b149 844 argtype = typy_lookup_type (demangled->u.s_binary.left, block);
3a93a0c2 845 do_cleanups (cleanup);
2c74e833
TT
846 if (! argtype)
847 return NULL;
848
849 return type_to_type_object (argtype);
326fd672
TT
850}
851
852static PyObject *
853typy_template_argument (PyObject *self, PyObject *args)
854{
855 int argno;
856 struct type *type = ((type_object *) self)->type;
9df2fbc4 857 const struct block *block = NULL;
326fd672
TT
858 PyObject *block_obj = NULL;
859 struct symbol *sym;
860 struct value *val = NULL;
861 volatile struct gdb_exception except;
862
863 if (! PyArg_ParseTuple (args, "i|O", &argno, &block_obj))
864 return NULL;
865
866 if (block_obj)
867 {
868 block = block_object_to_block (block_obj);
869 if (! block)
870 {
871 PyErr_SetString (PyExc_RuntimeError,
872 _("Second argument must be block."));
873 return NULL;
874 }
875 }
876
05d0e1e7
TT
877 TRY_CATCH (except, RETURN_MASK_ALL)
878 {
879 type = check_typedef (type);
880 if (TYPE_CODE (type) == TYPE_CODE_REF)
881 type = check_typedef (TYPE_TARGET_TYPE (type));
882 }
883 GDB_PY_HANDLE_EXCEPTION (except);
326fd672
TT
884
885 /* We might not have DW_TAG_template_*, so try to parse the type's
886 name. This is inefficient if we do not have a template type --
887 but that is going to wind up as an error anyhow. */
888 if (! TYPE_N_TEMPLATE_ARGUMENTS (type))
889 return typy_legacy_template_argument (type, block, argno);
890
891 if (argno >= TYPE_N_TEMPLATE_ARGUMENTS (type))
892 {
893 PyErr_Format (PyExc_RuntimeError, _("No argument %d in template."),
894 argno);
895 return NULL;
896 }
897
898 sym = TYPE_TEMPLATE_ARGUMENT (type, argno);
899 if (SYMBOL_CLASS (sym) == LOC_TYPEDEF)
900 return type_to_type_object (SYMBOL_TYPE (sym));
901 else if (SYMBOL_CLASS (sym) == LOC_OPTIMIZED_OUT)
902 {
903 PyErr_Format (PyExc_RuntimeError,
904 _("Template argument is optimized out"));
905 return NULL;
906 }
907
908 TRY_CATCH (except, RETURN_MASK_ALL)
909 {
910 val = value_of_variable (sym, block);
911 }
912 GDB_PY_HANDLE_EXCEPTION (except);
913
914 return value_to_value_object (val);
2c74e833
TT
915}
916
917static PyObject *
918typy_str (PyObject *self)
919{
920 volatile struct gdb_exception except;
921 char *thetype = NULL;
759ef836 922 long length = 0;
2c74e833
TT
923 PyObject *result;
924
925 TRY_CATCH (except, RETURN_MASK_ALL)
926 {
927 struct cleanup *old_chain;
928 struct ui_file *stb;
2c74e833
TT
929
930 stb = mem_fileopen ();
931 old_chain = make_cleanup_ui_file_delete (stb);
932
933 type_print (type_object_to_type (self), "", stb, -1);
934
935 thetype = ui_file_xstrdup (stb, &length);
936 do_cleanups (old_chain);
937 }
938 if (except.reason < 0)
939 {
940 xfree (thetype);
941 GDB_PY_HANDLE_EXCEPTION (except);
942 }
943
759ef836 944 result = PyUnicode_Decode (thetype, length, host_charset (), NULL);
2c74e833
TT
945 xfree (thetype);
946
947 return result;
948}
949
d839c8a4
TT
950/* An entry in the type-equality bcache. */
951
952typedef struct type_equality_entry
953{
954 struct type *type1, *type2;
955} type_equality_entry_d;
956
957DEF_VEC_O (type_equality_entry_d);
958
959/* A helper function to compare two strings. Returns 1 if they are
960 the same, 0 otherwise. Handles NULLs properly. */
961
962static int
f8eba3c6 963compare_maybe_null_strings (const char *s, const char *t)
d839c8a4
TT
964{
965 if (s == NULL && t != NULL)
966 return 0;
967 else if (s != NULL && t == NULL)
968 return 0;
969 else if (s == NULL && t== NULL)
970 return 1;
971 return strcmp (s, t) == 0;
972}
973
974/* A helper function for typy_richcompare that checks two types for
975 "deep" equality. Returns Py_EQ if the types are considered the
976 same, Py_NE otherwise. */
977
978static int
979check_types_equal (struct type *type1, struct type *type2,
980 VEC (type_equality_entry_d) **worklist)
981{
982 CHECK_TYPEDEF (type1);
983 CHECK_TYPEDEF (type2);
984
985 if (type1 == type2)
986 return Py_EQ;
987
988 if (TYPE_CODE (type1) != TYPE_CODE (type2)
989 || TYPE_LENGTH (type1) != TYPE_LENGTH (type2)
990 || TYPE_UNSIGNED (type1) != TYPE_UNSIGNED (type2)
991 || TYPE_NOSIGN (type1) != TYPE_NOSIGN (type2)
992 || TYPE_VARARGS (type1) != TYPE_VARARGS (type2)
993 || TYPE_VECTOR (type1) != TYPE_VECTOR (type2)
994 || TYPE_NOTTEXT (type1) != TYPE_NOTTEXT (type2)
995 || TYPE_INSTANCE_FLAGS (type1) != TYPE_INSTANCE_FLAGS (type2)
996 || TYPE_NFIELDS (type1) != TYPE_NFIELDS (type2))
997 return Py_NE;
998
f8eba3c6
TT
999 if (!compare_maybe_null_strings (TYPE_TAG_NAME (type1),
1000 TYPE_TAG_NAME (type2)))
d839c8a4 1001 return Py_NE;
f8eba3c6 1002 if (!compare_maybe_null_strings (TYPE_NAME (type1), TYPE_NAME (type2)))
d839c8a4
TT
1003 return Py_NE;
1004
1005 if (TYPE_CODE (type1) == TYPE_CODE_RANGE)
1006 {
1007 if (memcmp (TYPE_RANGE_DATA (type1), TYPE_RANGE_DATA (type2),
1008 sizeof (*TYPE_RANGE_DATA (type1))) != 0)
1009 return Py_NE;
1010 }
1011 else
1012 {
1013 int i;
1014
1015 for (i = 0; i < TYPE_NFIELDS (type1); ++i)
1016 {
1017 const struct field *field1 = &TYPE_FIELD (type1, i);
1018 const struct field *field2 = &TYPE_FIELD (type2, i);
1019 struct type_equality_entry entry;
1020
1021 if (FIELD_ARTIFICIAL (*field1) != FIELD_ARTIFICIAL (*field2)
1022 || FIELD_BITSIZE (*field1) != FIELD_BITSIZE (*field2)
1023 || FIELD_LOC_KIND (*field1) != FIELD_LOC_KIND (*field2))
1024 return Py_NE;
f8eba3c6
TT
1025 if (!compare_maybe_null_strings (FIELD_NAME (*field1),
1026 FIELD_NAME (*field2)))
d839c8a4
TT
1027 return Py_NE;
1028 switch (FIELD_LOC_KIND (*field1))
1029 {
1030 case FIELD_LOC_KIND_BITPOS:
1031 if (FIELD_BITPOS (*field1) != FIELD_BITPOS (*field2))
1032 return Py_NE;
1033 break;
14e75d8e
JK
1034 case FIELD_LOC_KIND_ENUMVAL:
1035 if (FIELD_ENUMVAL (*field1) != FIELD_ENUMVAL (*field2))
1036 return Py_NE;
1037 break;
d839c8a4
TT
1038 case FIELD_LOC_KIND_PHYSADDR:
1039 if (FIELD_STATIC_PHYSADDR (*field1)
1040 != FIELD_STATIC_PHYSADDR (*field2))
1041 return Py_NE;
1042 break;
1043 case FIELD_LOC_KIND_PHYSNAME:
f8eba3c6
TT
1044 if (!compare_maybe_null_strings (FIELD_STATIC_PHYSNAME (*field1),
1045 FIELD_STATIC_PHYSNAME (*field2)))
d839c8a4
TT
1046 return Py_NE;
1047 break;
8e3b41a9
JK
1048 case FIELD_LOC_KIND_DWARF_BLOCK:
1049 {
1050 struct dwarf2_locexpr_baton *block1, *block2;
1051
1052 block1 = FIELD_DWARF_BLOCK (*field1);
1053 block2 = FIELD_DWARF_BLOCK (*field2);
1054 if (block1->per_cu != block2->per_cu
1055 || block1->size != block2->size
1056 || memcmp (block1->data, block2->data, block1->size) != 0)
1057 return Py_NE;
1058 }
1059 break;
1060 default:
1061 internal_error (__FILE__, __LINE__, _("Unsupported field kind "
1062 "%d by check_types_equal"),
1063 FIELD_LOC_KIND (*field1));
d839c8a4
TT
1064 }
1065
1066 entry.type1 = FIELD_TYPE (*field1);
1067 entry.type2 = FIELD_TYPE (*field2);
1068 VEC_safe_push (type_equality_entry_d, *worklist, &entry);
1069 }
1070 }
1071
1072 if (TYPE_TARGET_TYPE (type1) != NULL)
1073 {
1074 struct type_equality_entry entry;
d839c8a4
TT
1075
1076 if (TYPE_TARGET_TYPE (type2) == NULL)
1077 return Py_NE;
1078
1079 entry.type1 = TYPE_TARGET_TYPE (type1);
1080 entry.type2 = TYPE_TARGET_TYPE (type2);
1081 VEC_safe_push (type_equality_entry_d, *worklist, &entry);
1082 }
1083 else if (TYPE_TARGET_TYPE (type2) != NULL)
1084 return Py_NE;
1085
1086 return Py_EQ;
1087}
1088
1089/* Check types on a worklist for equality. Returns Py_NE if any pair
1090 is not equal, Py_EQ if they are all considered equal. */
1091
1092static int
1093check_types_worklist (VEC (type_equality_entry_d) **worklist,
1094 struct bcache *cache)
1095{
1096 while (!VEC_empty (type_equality_entry_d, *worklist))
1097 {
1098 struct type_equality_entry entry;
1099 int added;
1100
1101 entry = *VEC_last (type_equality_entry_d, *worklist);
1102 VEC_pop (type_equality_entry_d, *worklist);
1103
1104 /* If the type pair has already been visited, we know it is
1105 ok. */
1106 bcache_full (&entry, sizeof (entry), cache, &added);
1107 if (!added)
1108 continue;
1109
1110 if (check_types_equal (entry.type1, entry.type2, worklist) == Py_NE)
1111 return Py_NE;
1112 }
1113
1114 return Py_EQ;
1115}
1116
1117/* Implement the richcompare method. */
1118
1119static PyObject *
1120typy_richcompare (PyObject *self, PyObject *other, int op)
1121{
1122 int result = Py_NE;
1123 struct type *type1 = type_object_to_type (self);
1124 struct type *type2 = type_object_to_type (other);
1125 volatile struct gdb_exception except;
1126
1127 /* We can only compare ourselves to another Type object, and only
1128 for equality or inequality. */
1129 if (type2 == NULL || (op != Py_EQ && op != Py_NE))
1130 {
1131 Py_INCREF (Py_NotImplemented);
1132 return Py_NotImplemented;
1133 }
1134
1135 if (type1 == type2)
1136 result = Py_EQ;
1137 else
1138 {
1139 struct bcache *cache;
e8fd65ef 1140 VEC (type_equality_entry_d) *worklist = NULL;
d839c8a4
TT
1141 struct type_equality_entry entry;
1142
cbd70537 1143 cache = bcache_xmalloc (NULL, NULL);
d839c8a4
TT
1144
1145 entry.type1 = type1;
1146 entry.type2 = type2;
1147 VEC_safe_push (type_equality_entry_d, worklist, &entry);
1148
1149 TRY_CATCH (except, RETURN_MASK_ALL)
1150 {
1151 result = check_types_worklist (&worklist, cache);
1152 }
76dce0be
PM
1153 /* check_types_worklist calls several nested Python helper
1154 functions, some of which can raise a GDB Exception, so we
1155 just check and convert here. If there is a GDB exception, a
1156 comparison is not capable (or trusted), so exit. */
d839c8a4
TT
1157 bcache_xfree (cache);
1158 VEC_free (type_equality_entry_d, worklist);
76dce0be 1159 GDB_PY_HANDLE_EXCEPTION (except);
d839c8a4
TT
1160 }
1161
1162 if (op == result)
1163 Py_RETURN_TRUE;
1164 Py_RETURN_FALSE;
1165}
1166
2c74e833
TT
1167\f
1168
1169static const struct objfile_data *typy_objfile_data_key;
1170
1171static void
c1bd65d0 1172save_objfile_types (struct objfile *objfile, void *datum)
2c74e833
TT
1173{
1174 type_object *obj = datum;
1175 htab_t copied_types;
1176 struct cleanup *cleanup;
2c74e833
TT
1177
1178 /* This prevents another thread from freeing the objects we're
1179 operating on. */
d452c4bc 1180 cleanup = ensure_python_env (get_objfile_arch (objfile), current_language);
2c74e833
TT
1181
1182 copied_types = create_copied_types_hash (objfile);
1183
1184 while (obj)
1185 {
1186 type_object *next = obj->next;
1187
1188 htab_empty (copied_types);
1189
1190 obj->type = copy_type_recursive (objfile, obj->type, copied_types);
1191
1192 obj->next = NULL;
1193 obj->prev = NULL;
1194
1195 obj = next;
1196 }
1197
1198 htab_delete (copied_types);
1199
1200 do_cleanups (cleanup);
1201}
1202
1203static void
1204set_type (type_object *obj, struct type *type)
1205{
1206 obj->type = type;
1207 obj->prev = NULL;
1208 if (type && TYPE_OBJFILE (type))
1209 {
1210 struct objfile *objfile = TYPE_OBJFILE (type);
1211
1212 obj->next = objfile_data (objfile, typy_objfile_data_key);
1213 if (obj->next)
1214 obj->next->prev = obj;
1215 set_objfile_data (objfile, typy_objfile_data_key, obj);
1216 }
1217 else
1218 obj->next = NULL;
1219}
1220
1221static void
1222typy_dealloc (PyObject *obj)
1223{
1224 type_object *type = (type_object *) obj;
1225
1226 if (type->prev)
1227 type->prev->next = type->next;
1228 else if (type->type && TYPE_OBJFILE (type->type))
1229 {
1230 /* Must reset head of list. */
1231 struct objfile *objfile = TYPE_OBJFILE (type->type);
d59b6f6c 1232
2c74e833
TT
1233 if (objfile)
1234 set_objfile_data (objfile, typy_objfile_data_key, type->next);
1235 }
1236 if (type->next)
1237 type->next->prev = type->prev;
1238
1239 type->ob_type->tp_free (type);
1240}
1241
a73bb892
PK
1242/* Return number of fields ("length" of the field dictionary). */
1243
1244static Py_ssize_t
1245typy_length (PyObject *self)
1246{
1247 struct type *type = ((type_object *) self)->type;
1248
9cc10fd1
PK
1249 type = typy_get_composite (type);
1250 if (type == NULL)
1251 return -1;
1252
a73bb892
PK
1253 return TYPE_NFIELDS (type);
1254}
1255
9cc10fd1
PK
1256/* Implements boolean evaluation of gdb.Type. Handle this like other
1257 Python objects that don't have a meaningful truth value -- all
1258 values are true. */
1259
1260static int
1261typy_nonzero (PyObject *self)
1262{
1263 return 1;
1264}
1265
a73bb892
PK
1266/* Return a gdb.Field object for the field named by the argument. */
1267
1268static PyObject *
1269typy_getitem (PyObject *self, PyObject *key)
1270{
1271 struct type *type = ((type_object *) self)->type;
1272 char *field;
1273 int i;
76dce0be 1274
a73bb892
PK
1275 field = python_string_to_host_string (key);
1276 if (field == NULL)
1277 return NULL;
1278
1279 /* We want just fields of this type, not of base types, so instead of
1280 using lookup_struct_elt_type, portions of that function are
1281 copied here. */
1282
9cc10fd1
PK
1283 type = typy_get_composite (type);
1284 if (type == NULL)
1285 return NULL;
1286
a73bb892
PK
1287 for (i = 0; i < TYPE_NFIELDS (type); i++)
1288 {
0d5cff50 1289 const char *t_field_name = TYPE_FIELD_NAME (type, i);
a73bb892
PK
1290
1291 if (t_field_name && (strcmp_iw (t_field_name, field) == 0))
1292 {
1293 return convert_field (type, i);
1294 }
1295 }
1296 PyErr_SetObject (PyExc_KeyError, key);
1297 return NULL;
1298}
1299
1300/* Implement the "get" method on the type object. This is the
1301 same as getitem if the key is present, but returns the supplied
1302 default value or None if the key is not found. */
1303
1304static PyObject *
1305typy_get (PyObject *self, PyObject *args)
1306{
1307 PyObject *key, *defval = Py_None, *result;
1308
1309 if (!PyArg_UnpackTuple (args, "get", 1, 2, &key, &defval))
1310 return NULL;
1311
1312 result = typy_getitem (self, key);
1313 if (result != NULL)
1314 return result;
1315
1316 /* typy_getitem returned error status. If the exception is
1317 KeyError, clear the exception status and return the defval
1318 instead. Otherwise return the exception unchanged. */
1319 if (!PyErr_ExceptionMatches (PyExc_KeyError))
1320 return NULL;
1321
1322 PyErr_Clear ();
1323 Py_INCREF (defval);
1324 return defval;
1325}
1326
1327/* Implement the "has_key" method on the type object. */
1328
1329static PyObject *
1330typy_has_key (PyObject *self, PyObject *args)
1331{
1332 struct type *type = ((type_object *) self)->type;
2ff6b080 1333 const char *field;
a73bb892 1334 int i;
76dce0be 1335
a73bb892
PK
1336 if (!PyArg_ParseTuple (args, "s", &field))
1337 return NULL;
1338
1339 /* We want just fields of this type, not of base types, so instead of
1340 using lookup_struct_elt_type, portions of that function are
1341 copied here. */
1342
9cc10fd1
PK
1343 type = typy_get_composite (type);
1344 if (type == NULL)
1345 return NULL;
a73bb892
PK
1346
1347 for (i = 0; i < TYPE_NFIELDS (type); i++)
1348 {
0d5cff50 1349 const char *t_field_name = TYPE_FIELD_NAME (type, i);
a73bb892
PK
1350
1351 if (t_field_name && (strcmp_iw (t_field_name, field) == 0))
1352 Py_RETURN_TRUE;
1353 }
1354 Py_RETURN_FALSE;
1355}
1356
1357/* Make an iterator object to iterate over keys, values, or items. */
1358
1359static PyObject *
1360typy_make_iter (PyObject *self, enum gdbpy_iter_kind kind)
1361{
1362 typy_iterator_object *typy_iter_obj;
1363
9cc10fd1
PK
1364 /* Check that "self" is a structure or union type. */
1365 if (typy_get_composite (((type_object *) self)->type) == NULL)
1366 return NULL;
1367
a73bb892
PK
1368 typy_iter_obj = PyObject_New (typy_iterator_object,
1369 &type_iterator_object_type);
1370 if (typy_iter_obj == NULL)
1371 return NULL;
1372
1373 typy_iter_obj->field = 0;
1374 typy_iter_obj->kind = kind;
1375 Py_INCREF (self);
1376 typy_iter_obj->source = (type_object *) self;
1377
1378 return (PyObject *) typy_iter_obj;
1379}
1380
1381/* iteritems() method. */
1382
1383static PyObject *
1384typy_iteritems (PyObject *self, PyObject *args)
1385{
1386 return typy_make_iter (self, iter_items);
1387}
1388
1389/* iterkeys() method. */
1390
1391static PyObject *
1392typy_iterkeys (PyObject *self, PyObject *args)
1393{
1394 return typy_make_iter (self, iter_keys);
1395}
1396
1397/* Iterating over the class, same as iterkeys except for the function
1398 signature. */
1399
1400static PyObject *
1401typy_iter (PyObject *self)
1402{
1403 return typy_make_iter (self, iter_keys);
1404}
1405
1406/* itervalues() method. */
1407
1408static PyObject *
1409typy_itervalues (PyObject *self, PyObject *args)
1410{
1411 return typy_make_iter (self, iter_values);
1412}
1413
1414/* Return a reference to the type iterator. */
1415
1416static PyObject *
1417typy_iterator_iter (PyObject *self)
1418{
1419 Py_INCREF (self);
1420 return self;
1421}
1422
1423/* Return the next field in the iteration through the list of fields
1424 of the type. */
1425
1426static PyObject *
1427typy_iterator_iternext (PyObject *self)
1428{
1429 typy_iterator_object *iter_obj = (typy_iterator_object *) self;
1430 struct type *type = iter_obj->source->type;
a73bb892
PK
1431 PyObject *result;
1432
1433 if (iter_obj->field < TYPE_NFIELDS (type))
1434 {
1435 result = make_fielditem (type, iter_obj->field, iter_obj->kind);
1436 if (result != NULL)
1437 iter_obj->field++;
1438 return result;
1439 }
1440
1441 return NULL;
1442}
1443
1444static void
1445typy_iterator_dealloc (PyObject *obj)
1446{
1447 typy_iterator_object *iter_obj = (typy_iterator_object *) obj;
1448
1449 Py_DECREF (iter_obj->source);
1450}
1451
2c74e833
TT
1452/* Create a new Type referring to TYPE. */
1453PyObject *
1454type_to_type_object (struct type *type)
1455{
1456 type_object *type_obj;
1457
1458 type_obj = PyObject_New (type_object, &type_object_type);
1459 if (type_obj)
1460 set_type (type_obj, type);
1461
1462 return (PyObject *) type_obj;
1463}
1464
1465struct type *
1466type_object_to_type (PyObject *obj)
1467{
1468 if (! PyObject_TypeCheck (obj, &type_object_type))
1469 return NULL;
1470 return ((type_object *) obj)->type;
1471}
1472
1473\f
1474
1475/* Implementation of gdb.lookup_type. */
1476PyObject *
1477gdbpy_lookup_type (PyObject *self, PyObject *args, PyObject *kw)
1478{
5107b149 1479 static char *keywords[] = { "name", "block", NULL };
ddd49eee 1480 const char *type_name = NULL;
2c74e833 1481 struct type *type = NULL;
5107b149 1482 PyObject *block_obj = NULL;
9df2fbc4 1483 const struct block *block = NULL;
2c74e833 1484
5107b149
PM
1485 if (! PyArg_ParseTupleAndKeywords (args, kw, "s|O", keywords,
1486 &type_name, &block_obj))
2c74e833
TT
1487 return NULL;
1488
5107b149
PM
1489 if (block_obj)
1490 {
1491 block = block_object_to_block (block_obj);
1492 if (! block)
1493 {
1494 PyErr_SetString (PyExc_RuntimeError,
1495 _("'block' argument must be a Block."));
1496 return NULL;
1497 }
1498 }
1499
1500 type = typy_lookup_typename (type_name, block);
2c74e833
TT
1501 if (! type)
1502 return NULL;
1503
1504 return (PyObject *) type_to_type_object (type);
1505}
1506
1507void
1508gdbpy_initialize_types (void)
1509{
1510 int i;
1511
1512 typy_objfile_data_key
c1bd65d0 1513 = register_objfile_data_with_cleanup (save_objfile_types, NULL);
2c74e833
TT
1514
1515 if (PyType_Ready (&type_object_type) < 0)
1516 return;
1517 if (PyType_Ready (&field_object_type) < 0)
1518 return;
a73bb892
PK
1519 if (PyType_Ready (&type_iterator_object_type) < 0)
1520 return;
2c74e833
TT
1521
1522 for (i = 0; pyty_codes[i].name; ++i)
1523 {
1524 if (PyModule_AddIntConstant (gdb_module,
1525 /* Cast needed for Python 2.4. */
1526 (char *) pyty_codes[i].name,
1527 pyty_codes[i].code) < 0)
1528 return;
1529 }
1530
1531 Py_INCREF (&type_object_type);
1532 PyModule_AddObject (gdb_module, "Type", (PyObject *) &type_object_type);
1533
a73bb892
PK
1534 Py_INCREF (&type_iterator_object_type);
1535 PyModule_AddObject (gdb_module, "TypeIterator",
1536 (PyObject *) &type_iterator_object_type);
1537
2c74e833
TT
1538 Py_INCREF (&field_object_type);
1539 PyModule_AddObject (gdb_module, "Field", (PyObject *) &field_object_type);
1540}
1541
1542\f
1543
1544static PyGetSetDef type_object_getset[] =
1545{
1546 { "code", typy_get_code, NULL,
1547 "The code for this type.", NULL },
1548 { "sizeof", typy_get_sizeof, NULL,
1549 "The size of this type, in bytes.", NULL },
1550 { "tag", typy_get_tag, NULL,
1551 "The tag name for this type, or None.", NULL },
1552 { NULL }
1553};
1554
1555static PyMethodDef type_object_methods[] =
1556{
702c2711 1557 { "array", typy_array, METH_VARARGS,
f28c316a
DE
1558 "array ([LOW_BOUND,] HIGH_BOUND) -> Type\n\
1559Return a type which represents an array of objects of this type.\n\
1560The bounds of the array are [LOW_BOUND, HIGH_BOUND] inclusive.\n\
1561If LOW_BOUND is omitted, a value of zero is used." },
a73bb892
PK
1562 { "__contains__", typy_has_key, METH_VARARGS,
1563 "T.__contains__(k) -> True if T has a field named k, else False" },
2c74e833
TT
1564 { "const", typy_const, METH_NOARGS,
1565 "const () -> Type\n\
1566Return a const variant of this type." },
1567 { "fields", typy_fields, METH_NOARGS,
a73bb892
PK
1568 "fields () -> list\n\
1569Return a list holding all the fields of this type.\n\
1570Each field is a gdb.Field object." },
1571 { "get", typy_get, METH_VARARGS,
1572 "T.get(k[,default]) -> returns field named k in T, if it exists;\n\
1573otherwise returns default, if supplied, or None if not." },
1574 { "has_key", typy_has_key, METH_VARARGS,
1575 "T.has_key(k) -> True if T has a field named k, else False" },
1576 { "items", typy_items, METH_NOARGS,
1577 "items () -> list\n\
1578Return a list of (name, field) pairs of this type.\n\
1579Each field is a gdb.Field object." },
1580 { "iteritems", typy_iteritems, METH_NOARGS,
1581 "iteritems () -> an iterator over the (name, field)\n\
1582pairs of this type. Each field is a gdb.Field object." },
1583 { "iterkeys", typy_iterkeys, METH_NOARGS,
1584 "iterkeys () -> an iterator over the field names of this type." },
1585 { "itervalues", typy_itervalues, METH_NOARGS,
1586 "itervalues () -> an iterator over the fields of this type.\n\
1587Each field is a gdb.Field object." },
1588 { "keys", typy_field_names, METH_NOARGS,
1589 "keys () -> list\n\
1590Return a list holding all the fields names of this type." },
2c74e833
TT
1591 { "pointer", typy_pointer, METH_NOARGS,
1592 "pointer () -> Type\n\
1593Return a type of pointer to this type." },
361ae042
PM
1594 { "range", typy_range, METH_NOARGS,
1595 "range () -> tuple\n\
1596Return a tuple containing the lower and upper range for this type."},
2c74e833
TT
1597 { "reference", typy_reference, METH_NOARGS,
1598 "reference () -> Type\n\
1599Return a type of reference to this type." },
1600 { "strip_typedefs", typy_strip_typedefs, METH_NOARGS,
1601 "strip_typedefs () -> Type\n\
1602Return a type formed by stripping this type of all typedefs."},
1603 { "target", typy_target, METH_NOARGS,
1604 "target () -> Type\n\
1605Return the target type of this type." },
1606 { "template_argument", typy_template_argument, METH_VARARGS,
5107b149 1607 "template_argument (arg, [block]) -> Type\n\
2c74e833
TT
1608Return the type of a template argument." },
1609 { "unqualified", typy_unqualified, METH_NOARGS,
1610 "unqualified () -> Type\n\
1611Return a variant of this type without const or volatile attributes." },
9cc10fd1 1612 { "values", typy_values, METH_NOARGS,
a73bb892
PK
1613 "values () -> list\n\
1614Return a list holding all the fields of this type.\n\
1615Each field is a gdb.Field object." },
2c74e833
TT
1616 { "volatile", typy_volatile, METH_NOARGS,
1617 "volatile () -> Type\n\
1618Return a volatile variant of this type" },
1619 { NULL }
1620};
1621
9cc10fd1
PK
1622static PyNumberMethods type_object_as_number = {
1623 NULL, /* nb_add */
1624 NULL, /* nb_subtract */
1625 NULL, /* nb_multiply */
1626 NULL, /* nb_divide */
1627 NULL, /* nb_remainder */
1628 NULL, /* nb_divmod */
1629 NULL, /* nb_power */
1630 NULL, /* nb_negative */
1631 NULL, /* nb_positive */
1632 NULL, /* nb_absolute */
1633 typy_nonzero, /* nb_nonzero */
1634 NULL, /* nb_invert */
1635 NULL, /* nb_lshift */
1636 NULL, /* nb_rshift */
1637 NULL, /* nb_and */
1638 NULL, /* nb_xor */
1639 NULL, /* nb_or */
1640 NULL, /* nb_coerce */
1641 NULL, /* nb_int */
1642 NULL, /* nb_long */
1643 NULL, /* nb_float */
1644 NULL, /* nb_oct */
1645 NULL /* nb_hex */
1646};
1647
a73bb892
PK
1648static PyMappingMethods typy_mapping = {
1649 typy_length,
1650 typy_getitem,
1651 NULL /* no "set" method */
1652};
1653
2c74e833
TT
1654static PyTypeObject type_object_type =
1655{
1656 PyObject_HEAD_INIT (NULL)
1657 0, /*ob_size*/
1658 "gdb.Type", /*tp_name*/
1659 sizeof (type_object), /*tp_basicsize*/
1660 0, /*tp_itemsize*/
1661 typy_dealloc, /*tp_dealloc*/
1662 0, /*tp_print*/
1663 0, /*tp_getattr*/
1664 0, /*tp_setattr*/
1665 0, /*tp_compare*/
1666 0, /*tp_repr*/
9cc10fd1 1667 &type_object_as_number, /*tp_as_number*/
2c74e833 1668 0, /*tp_as_sequence*/
a73bb892 1669 &typy_mapping, /*tp_as_mapping*/
2c74e833
TT
1670 0, /*tp_hash */
1671 0, /*tp_call*/
1672 typy_str, /*tp_str*/
1673 0, /*tp_getattro*/
1674 0, /*tp_setattro*/
1675 0, /*tp_as_buffer*/
1676 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_ITER, /*tp_flags*/
1677 "GDB type object", /* tp_doc */
1678 0, /* tp_traverse */
1679 0, /* tp_clear */
d839c8a4 1680 typy_richcompare, /* tp_richcompare */
2c74e833 1681 0, /* tp_weaklistoffset */
a73bb892 1682 typy_iter, /* tp_iter */
2c74e833
TT
1683 0, /* tp_iternext */
1684 type_object_methods, /* tp_methods */
1685 0, /* tp_members */
1686 type_object_getset, /* tp_getset */
1687 0, /* tp_base */
1688 0, /* tp_dict */
1689 0, /* tp_descr_get */
1690 0, /* tp_descr_set */
1691 0, /* tp_dictoffset */
1692 0, /* tp_init */
1693 0, /* tp_alloc */
1694 0, /* tp_new */
1695};
1696
2e8265fd
TT
1697static PyGetSetDef field_object_getset[] =
1698{
1699 { "__dict__", gdb_py_generic_dict, NULL,
1700 "The __dict__ for this field.", &field_object_type },
1701 { NULL }
1702};
1703
2c74e833
TT
1704static PyTypeObject field_object_type =
1705{
1706 PyObject_HEAD_INIT (NULL)
1707 0, /*ob_size*/
1708 "gdb.Field", /*tp_name*/
1709 sizeof (field_object), /*tp_basicsize*/
1710 0, /*tp_itemsize*/
1711 field_dealloc, /*tp_dealloc*/
1712 0, /*tp_print*/
1713 0, /*tp_getattr*/
1714 0, /*tp_setattr*/
1715 0, /*tp_compare*/
1716 0, /*tp_repr*/
1717 0, /*tp_as_number*/
1718 0, /*tp_as_sequence*/
1719 0, /*tp_as_mapping*/
1720 0, /*tp_hash */
1721 0, /*tp_call*/
1722 0, /*tp_str*/
1723 0, /*tp_getattro*/
1724 0, /*tp_setattro*/
1725 0, /*tp_as_buffer*/
1726 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_ITER, /*tp_flags*/
1727 "GDB field object", /* tp_doc */
1728 0, /* tp_traverse */
1729 0, /* tp_clear */
1730 0, /* tp_richcompare */
1731 0, /* tp_weaklistoffset */
1732 0, /* tp_iter */
1733 0, /* tp_iternext */
1734 0, /* tp_methods */
1735 0, /* tp_members */
2e8265fd 1736 field_object_getset, /* tp_getset */
2c74e833
TT
1737 0, /* tp_base */
1738 0, /* tp_dict */
1739 0, /* tp_descr_get */
1740 0, /* tp_descr_set */
1741 offsetof (field_object, dict), /* tp_dictoffset */
1742 0, /* tp_init */
1743 0, /* tp_alloc */
1744 0, /* tp_new */
1745};
a73bb892
PK
1746
1747static PyTypeObject type_iterator_object_type = {
1748 PyObject_HEAD_INIT (NULL)
1749 0, /*ob_size*/
1750 "gdb.TypeIterator", /*tp_name*/
1751 sizeof (typy_iterator_object), /*tp_basicsize*/
1752 0, /*tp_itemsize*/
1753 typy_iterator_dealloc, /*tp_dealloc*/
1754 0, /*tp_print*/
1755 0, /*tp_getattr*/
1756 0, /*tp_setattr*/
1757 0, /*tp_compare*/
1758 0, /*tp_repr*/
1759 0, /*tp_as_number*/
1760 0, /*tp_as_sequence*/
1761 0, /*tp_as_mapping*/
1762 0, /*tp_hash */
1763 0, /*tp_call*/
1764 0, /*tp_str*/
1765 0, /*tp_getattro*/
1766 0, /*tp_setattro*/
1767 0, /*tp_as_buffer*/
1768 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_ITER, /*tp_flags*/
1769 "GDB type iterator object", /*tp_doc */
1770 0, /*tp_traverse */
1771 0, /*tp_clear */
1772 0, /*tp_richcompare */
1773 0, /*tp_weaklistoffset */
1774 typy_iterator_iter, /*tp_iter */
1775 typy_iterator_iternext, /*tp_iternext */
1776 0 /*tp_methods */
1777};
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