Coverage Report

Created: 2026-06-01 06:14

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/workspace/out/libfuzzer-coverage-x86_64/include/python3.16/object.h
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#ifndef Py_OBJECT_H
2
#define Py_OBJECT_H
3
#ifdef __cplusplus
4
extern "C" {
5
#endif
6
7
8
/* Object and type object interface */
9
10
/*
11
Objects are structures allocated on the heap.  Special rules apply to
12
the use of objects to ensure they are properly garbage-collected.
13
Objects are never allocated statically or on the stack; they must be
14
accessed through special macros and functions only.  (Type objects are
15
exceptions to the first rule; the standard types are represented by
16
statically initialized type objects, although work on type/class unification
17
for Python 2.2 made it possible to have heap-allocated type objects too).
18
19
An object has a 'reference count' that is increased or decreased when a
20
pointer to the object is copied or deleted; when the reference count
21
reaches zero there are no references to the object left and it can be
22
removed from the heap.
23
24
An object has a 'type' that determines what it represents and what kind
25
of data it contains.  An object's type is fixed when it is created.
26
Types themselves are represented as objects; an object contains a
27
pointer to the corresponding type object.  The type itself has a type
28
pointer pointing to the object representing the type 'type', which
29
contains a pointer to itself!.
30
31
Objects do not float around in memory; once allocated an object keeps
32
the same size and address.  Objects that must hold variable-size data
33
can contain pointers to variable-size parts of the object.  Not all
34
objects of the same type have the same size; but the size cannot change
35
after allocation.  (These restrictions are made so a reference to an
36
object can be simply a pointer -- moving an object would require
37
updating all the pointers, and changing an object's size would require
38
moving it if there was another object right next to it.)
39
40
Objects are always accessed through pointers of the type 'PyObject *'.
41
The type 'PyObject' is a structure that only contains the reference count
42
and the type pointer.  The actual memory allocated for an object
43
contains other data that can only be accessed after casting the pointer
44
to a pointer to a longer structure type.  This longer type must start
45
with the reference count and type fields; the macro PyObject_HEAD should be
46
used for this (to accommodate for future changes).  The implementation
47
of a particular object type can cast the object pointer to the proper
48
type and back.
49
50
A standard interface exists for objects that contain an array of items
51
whose size is determined when the object is allocated.
52
*/
53
54
/* Py_DEBUG implies Py_REF_DEBUG. */
55
#if defined(Py_DEBUG) && !defined(Py_REF_DEBUG)
56
#  define Py_REF_DEBUG
57
#endif
58
59
#if defined(_Py_OPAQUE_PYOBJECT) && !defined(Py_LIMITED_API)
60
#   error "_Py_OPAQUE_PYOBJECT only makes sense with Py_LIMITED_API"
61
#endif
62
63
#ifndef _Py_OPAQUE_PYOBJECT
64
/* PyObject_HEAD defines the initial segment of every PyObject. */
65
#define PyObject_HEAD                   PyObject ob_base;
66
67
// Kept for backward compatibility. It was needed by Py_TRACE_REFS build.
68
#define _PyObject_EXTRA_INIT
69
70
/* Make all uses of PyObject_HEAD_INIT immortal.
71
 *
72
 * Statically allocated objects might be shared between
73
 * interpreters, so must be marked as immortal.
74
 *
75
 * Before changing this, see the check in PyModuleDef_Init().
76
 */
77
#if defined(Py_GIL_DISABLED)
78
#define PyObject_HEAD_INIT(type)    \
79
    {                               \
80
        0,                          \
81
        _Py_STATICALLY_ALLOCATED_FLAG, \
82
        { 0 },                      \
83
        0,                          \
84
        _Py_IMMORTAL_REFCNT_LOCAL,  \
85
        0,                          \
86
        (type),                     \
87
    },
88
#else
89
#define PyObject_HEAD_INIT(type)    \
90
    {                               \
91
        { _Py_STATIC_IMMORTAL_INITIAL_REFCNT },    \
92
        (type)                      \
93
    },
94
#endif
95
96
#define PyVarObject_HEAD_INIT(type, size) \
97
    {                                     \
98
        PyObject_HEAD_INIT(type)          \
99
        (size)                            \
100
    },
101
102
/* PyObject_VAR_HEAD defines the initial segment of all variable-size
103
 * container objects.  These end with a declaration of an array with 1
104
 * element, but enough space is malloc'ed so that the array actually
105
 * has room for ob_size elements.  Note that ob_size is an element count,
106
 * not necessarily a byte count.
107
 */
108
#define PyObject_VAR_HEAD      PyVarObject ob_base;
109
#endif // !defined(_Py_OPAQUE_PYOBJECT)
110
111
#define Py_INVALID_SIZE (Py_ssize_t)-1
112
113
/* PyObjects are given a minimum alignment so that the least significant bits
114
 * of an object pointer become available for other purposes.
115
 * This must be an integer literal with the value (1 << _PyGC_PREV_SHIFT), number of bytes.
116
 */
117
#define _PyObject_MIN_ALIGNMENT 4
118
119
/* Nothing is actually declared to be a PyObject, but every pointer to
120
 * a Python object can be cast to a PyObject*.  This is inheritance built
121
 * by hand.  Similarly every pointer to a variable-size Python object can,
122
 * in addition, be cast to PyVarObject*.
123
 */
124
#ifdef _Py_OPAQUE_PYOBJECT
125
  /* PyObject is opaque */
126
#elif !defined(Py_GIL_DISABLED)
127
struct _object {
128
    _Py_ANONYMOUS union {
129
#if SIZEOF_VOID_P > 4
130
        int64_t ob_refcnt_full; /* This field is needed for efficient initialization with Clang on ARM */
131
        struct {
132
#  if PY_BIG_ENDIAN
133
            uint16_t ob_flags;
134
            uint16_t ob_overflow;
135
            uint32_t ob_refcnt;
136
#  else
137
            uint32_t ob_refcnt;
138
            uint16_t ob_overflow;
139
            uint16_t ob_flags;
140
#  endif
141
        };
142
#else
143
        Py_ssize_t ob_refcnt;  // part of stable ABI; do not change
144
#endif
145
        _Py_ALIGNED_DEF(_PyObject_MIN_ALIGNMENT, char) _aligner;
146
    };
147
148
    PyTypeObject *ob_type;  // part of stable ABI; do not change
149
};
150
#else
151
// Objects that are not owned by any thread use a thread id (tid) of zero.
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// This includes both immortal objects and objects whose reference count
153
// fields have been merged.
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#define _Py_UNOWNED_TID             0
155
156
struct _object {
157
    // ob_tid stores the thread id (or zero). It is also used by the GC and the
158
    // trashcan mechanism as a linked list pointer and by the GC to store the
159
    // computed "gc_refs" refcount.
160
    _Py_ALIGNED_DEF(_PyObject_MIN_ALIGNMENT, uintptr_t) ob_tid;
161
    uint16_t ob_flags;
162
    PyMutex ob_mutex;           // per-object lock
163
    uint8_t ob_gc_bits;         // gc-related state
164
    uint32_t ob_ref_local;      // local reference count
165
    Py_ssize_t ob_ref_shared;   // shared (atomic) reference count
166
    PyTypeObject *ob_type;
167
};
168
#endif // !defined(_Py_OPAQUE_PYOBJECT)
169
170
/* Cast argument to PyObject* type. */
171
57.7M
#define _PyObject_CAST(op) _Py_CAST(PyObject*, (op))
172
173
#ifndef _Py_OPAQUE_PYOBJECT
174
struct PyVarObject {
175
    PyObject ob_base;
176
    Py_ssize_t ob_size; // Number of items in variable part. Part of stable ABI
177
};
178
#endif
179
typedef struct PyVarObject PyVarObject;
180
181
/* Cast argument to PyVarObject* type. */
182
#define _PyVarObject_CAST(op) _Py_CAST(PyVarObject*, (op))
183
184
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// Test if the 'x' object is the 'y' object, the same as "x is y" in Python.
186
PyAPI_FUNC(int) Py_Is(PyObject *x, PyObject *y);
187
#define Py_Is(x, y) ((x) == (y))
188
189
PyAPI_DATA(PyTypeObject) PyLong_Type;
190
PyAPI_DATA(PyTypeObject) PyBool_Type;
191
192
/* Definitions for the stable ABI */
193
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= _Py_PACK_VERSION(3, 14)
194
PyAPI_FUNC(PyTypeObject*) Py_TYPE(PyObject *ob);
195
#endif
196
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= _Py_PACK_VERSION(3, 15)
197
PyAPI_FUNC(Py_ssize_t) Py_SIZE(PyObject *ob);
198
PyAPI_FUNC(int) Py_IS_TYPE(PyObject *ob, PyTypeObject *type);
199
PyAPI_FUNC(void) Py_SET_SIZE(PyVarObject *ob, Py_ssize_t size);
200
#endif
201
202
#ifndef _Py_OPAQUE_PYOBJECT
203
204
static inline void
205
Py_SET_TYPE(PyObject *ob, PyTypeObject *type)
206
0
{
207
0
    ob->ob_type = type;
208
0
}
209
210
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 < _Py_PACK_VERSION(3, 11)
211
// Non-limited API & limited API 3.11 & below: use static inline functions and
212
// use _PyObject_CAST so that users don't need their own casts
213
#  define Py_TYPE(ob) _Py_TYPE_impl(_PyObject_CAST(ob))
214
#  define Py_SIZE(ob) _Py_SIZE_impl(_PyObject_CAST(ob))
215
#  define Py_IS_TYPE(ob, type) _Py_IS_TYPE_impl(_PyObject_CAST(ob), (type))
216
#  define Py_SET_SIZE(ob, size) _Py_SET_SIZE_impl(_PyVarObject_CAST(ob), (size))
217
#  define Py_SET_TYPE(ob, type) Py_SET_TYPE(_PyObject_CAST(ob), type)
218
#elif Py_LIMITED_API+0 < _Py_PACK_VERSION(3, 15)
219
// Limited API 3.11-3.14: use static inline functions, without casts
220
#  define Py_SIZE(ob) _Py_SIZE_impl(ob)
221
#  define Py_IS_TYPE(ob, type) _Py_IS_TYPE_impl((ob), (type))
222
#  define Py_SET_SIZE(ob, size) _Py_SET_SIZE_impl((ob), (size))
223
#  if Py_LIMITED_API+0 < _Py_PACK_VERSION(3, 14)
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//   Py_TYPE() is static inline only on Limited API 3.13 and below
225
#    define Py_TYPE(ob) _Py_TYPE_impl(ob)
226
#  endif
227
#else
228
// Limited API 3.15+: use function calls
229
#endif
230
231
static inline
232
PyTypeObject* _Py_TYPE_impl(PyObject *ob)
233
0
{
234
0
    return ob->ob_type;
235
0
}
236
237
// bpo-39573: The Py_SET_SIZE() function must be used to set an object size.
238
static inline Py_ssize_t
239
_Py_SIZE_impl(PyObject *ob)
240
0
{
241
0
    assert(Py_TYPE(ob) != &PyLong_Type);
242
0
    assert(Py_TYPE(ob) != &PyBool_Type);
243
0
    return  _PyVarObject_CAST(ob)->ob_size;
244
0
}
245
246
static inline int
247
_Py_IS_TYPE_impl(PyObject *ob, PyTypeObject *type)
248
0
{
249
0
    return Py_TYPE(ob) == type;
250
0
}
251
252
static inline void
253
_Py_SET_SIZE_impl(PyVarObject *ob, Py_ssize_t size)
254
0
{
255
0
    assert(Py_TYPE(_PyObject_CAST(ob)) != &PyLong_Type);
256
0
    assert(Py_TYPE(_PyObject_CAST(ob)) != &PyBool_Type);
257
0
#ifdef Py_GIL_DISABLED
258
0
    _Py_atomic_store_ssize_relaxed(&ob->ob_size, size);
259
0
#else
260
0
    ob->ob_size = size;
261
0
#endif
262
0
}
263
264
#endif // !defined(_Py_OPAQUE_PYOBJECT)
265
266
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/*
268
Type objects contain a string containing the type name (to help somewhat
269
in debugging), the allocation parameters (see PyObject_New() and
270
PyObject_NewVar()),
271
and methods for accessing objects of the type.  Methods are optional, a
272
nil pointer meaning that particular kind of access is not available for
273
this type.  The Py_DECREF() macro uses the tp_dealloc method without
274
checking for a nil pointer; it should always be implemented except if
275
the implementation can guarantee that the reference count will never
276
reach zero (e.g., for statically allocated type objects).
277
278
NB: the methods for certain type groups are now contained in separate
279
method blocks.
280
*/
281
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typedef PyObject * (*unaryfunc)(PyObject *);
283
typedef PyObject * (*binaryfunc)(PyObject *, PyObject *);
284
typedef PyObject * (*ternaryfunc)(PyObject *, PyObject *, PyObject *);
285
typedef int (*inquiry)(PyObject *);
286
typedef Py_ssize_t (*lenfunc)(PyObject *);
287
typedef PyObject *(*ssizeargfunc)(PyObject *, Py_ssize_t);
288
typedef PyObject *(*ssizessizeargfunc)(PyObject *, Py_ssize_t, Py_ssize_t);
289
typedef int(*ssizeobjargproc)(PyObject *, Py_ssize_t, PyObject *);
290
typedef int(*ssizessizeobjargproc)(PyObject *, Py_ssize_t, Py_ssize_t, PyObject *);
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typedef int(*objobjargproc)(PyObject *, PyObject *, PyObject *);
292
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typedef int (*objobjproc)(PyObject *, PyObject *);
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typedef int (*visitproc)(PyObject *, void *);
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typedef int (*traverseproc)(PyObject *, visitproc, void *);
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297
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typedef void (*freefunc)(void *);
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typedef void (*destructor)(PyObject *);
300
typedef PyObject *(*getattrfunc)(PyObject *, char *);
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typedef PyObject *(*getattrofunc)(PyObject *, PyObject *);
302
typedef int (*setattrfunc)(PyObject *, char *, PyObject *);
303
typedef int (*setattrofunc)(PyObject *, PyObject *, PyObject *);
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typedef PyObject *(*reprfunc)(PyObject *);
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typedef Py_hash_t (*hashfunc)(PyObject *);
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typedef PyObject *(*richcmpfunc) (PyObject *, PyObject *, int);
307
typedef PyObject *(*getiterfunc) (PyObject *);
308
typedef PyObject *(*iternextfunc) (PyObject *);
309
typedef struct {
310
    PyObject *object;
311
    Py_ssize_t index;
312
} _PyObjectIndexPair;
313
typedef _PyObjectIndexPair (*_Py_iteritemfunc) (PyObject *, Py_ssize_t index);
314
typedef PyObject *(*descrgetfunc) (PyObject *, PyObject *, PyObject *);
315
typedef int (*descrsetfunc) (PyObject *, PyObject *, PyObject *);
316
typedef int (*initproc)(PyObject *, PyObject *, PyObject *);
317
typedef PyObject *(*newfunc)(PyTypeObject *, PyObject *, PyObject *);
318
typedef PyObject *(*allocfunc)(PyTypeObject *, Py_ssize_t);
319
320
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030c0000 // 3.12
321
typedef PyObject *(*vectorcallfunc)(PyObject *callable, PyObject *const *args,
322
                                    size_t nargsf, PyObject *kwnames);
323
#endif
324
325
typedef struct{
326
    int slot;    /* slot id, see below */
327
    void *pfunc; /* function pointer */
328
} PyType_Slot;
329
330
typedef struct{
331
    const char* name;
332
    int basicsize;
333
    int itemsize;
334
    unsigned int flags;
335
    PyType_Slot *slots; /* terminated by slot==0. */
336
} PyType_Spec;
337
338
PyAPI_FUNC(PyObject*) PyType_FromSpec(PyType_Spec*);
339
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x03030000
340
PyAPI_FUNC(PyObject*) PyType_FromSpecWithBases(PyType_Spec*, PyObject*);
341
#endif
342
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x03040000
343
PyAPI_FUNC(void*) PyType_GetSlot(PyTypeObject*, int);
344
#endif
345
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x03090000
346
PyAPI_FUNC(PyObject*) PyType_FromModuleAndSpec(PyObject *, PyType_Spec *, PyObject *);
347
PyAPI_FUNC(PyObject *) PyType_GetModule(PyTypeObject *);
348
PyAPI_FUNC(void *) PyType_GetModuleState(PyTypeObject *);
349
#endif
350
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030B0000
351
PyAPI_FUNC(PyObject *) PyType_GetName(PyTypeObject *);
352
PyAPI_FUNC(PyObject *) PyType_GetQualName(PyTypeObject *);
353
#endif
354
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030D0000
355
PyAPI_FUNC(PyObject *) PyType_GetFullyQualifiedName(PyTypeObject *type);
356
PyAPI_FUNC(PyObject *) PyType_GetModuleName(PyTypeObject *type);
357
#endif
358
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030C0000
359
PyAPI_FUNC(PyObject *) PyType_FromMetaclass(PyTypeObject*, PyObject*, PyType_Spec*, PyObject*);
360
PyAPI_FUNC(void *) PyObject_GetTypeData(PyObject *obj, PyTypeObject *cls);
361
PyAPI_FUNC(Py_ssize_t) PyType_GetTypeDataSize(PyTypeObject *cls);
362
#endif
363
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030E0000
364
PyAPI_FUNC(int) PyType_GetBaseByToken(PyTypeObject *, void *, PyTypeObject **);
365
#define Py_TP_USE_SPEC NULL
366
#endif
367
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= _Py_PACK_VERSION(3, 15)
368
PyAPI_FUNC(PyObject *) PyType_FromSlots(struct PySlot *slots);
369
#endif
370
371
/* Generic type check */
372
PyAPI_FUNC(int) PyType_IsSubtype(PyTypeObject *, PyTypeObject *);
373
374
0
static inline int PyObject_TypeCheck(PyObject *ob, PyTypeObject *type) {
375
0
    return Py_IS_TYPE(ob, type) || PyType_IsSubtype(Py_TYPE(ob), type);
376
0
}
377
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 < 0x030b0000
378
#  define PyObject_TypeCheck(ob, type) PyObject_TypeCheck(_PyObject_CAST(ob), (type))
379
#endif
380
381
PyAPI_DATA(PyTypeObject) PyType_Type; /* built-in 'type' */
382
PyAPI_DATA(PyTypeObject) PyBaseObject_Type; /* built-in 'object' */
383
PyAPI_DATA(PyTypeObject) PySuper_Type; /* built-in 'super' */
384
385
PyAPI_FUNC(unsigned long) PyType_GetFlags(PyTypeObject*);
386
387
PyAPI_FUNC(int) PyType_Ready(PyTypeObject *);
388
PyAPI_FUNC(PyObject *) PyType_GenericAlloc(PyTypeObject *, Py_ssize_t);
389
PyAPI_FUNC(PyObject *) PyType_GenericNew(PyTypeObject *,
390
                                               PyObject *, PyObject *);
391
PyAPI_FUNC(unsigned int) PyType_ClearCache(void);
392
PyAPI_FUNC(void) PyType_Modified(PyTypeObject *);
393
394
/* Generic operations on objects */
395
PyAPI_FUNC(PyObject *) PyObject_Repr(PyObject *);
396
PyAPI_FUNC(PyObject *) PyObject_Str(PyObject *);
397
PyAPI_FUNC(PyObject *) PyObject_ASCII(PyObject *);
398
PyAPI_FUNC(PyObject *) PyObject_Bytes(PyObject *);
399
PyAPI_FUNC(PyObject *) PyObject_RichCompare(PyObject *, PyObject *, int);
400
PyAPI_FUNC(int) PyObject_RichCompareBool(PyObject *, PyObject *, int);
401
PyAPI_FUNC(PyObject *) PyObject_GetAttrString(PyObject *, const char *);
402
PyAPI_FUNC(int) PyObject_SetAttrString(PyObject *, const char *, PyObject *);
403
PyAPI_FUNC(int) PyObject_DelAttrString(PyObject *v, const char *name);
404
PyAPI_FUNC(int) PyObject_HasAttrString(PyObject *, const char *);
405
PyAPI_FUNC(PyObject *) PyObject_GetAttr(PyObject *, PyObject *);
406
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030d0000
407
PyAPI_FUNC(int) PyObject_GetOptionalAttr(PyObject *, PyObject *, PyObject **);
408
PyAPI_FUNC(int) PyObject_GetOptionalAttrString(PyObject *, const char *, PyObject **);
409
#endif
410
PyAPI_FUNC(int) PyObject_SetAttr(PyObject *, PyObject *, PyObject *);
411
PyAPI_FUNC(int) PyObject_DelAttr(PyObject *v, PyObject *name);
412
PyAPI_FUNC(int) PyObject_HasAttr(PyObject *, PyObject *);
413
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030d0000
414
PyAPI_FUNC(int) PyObject_HasAttrWithError(PyObject *, PyObject *);
415
PyAPI_FUNC(int) PyObject_HasAttrStringWithError(PyObject *, const char *);
416
#endif
417
PyAPI_FUNC(PyObject *) PyObject_SelfIter(PyObject *);
418
PyAPI_FUNC(PyObject *) PyObject_GenericGetAttr(PyObject *, PyObject *);
419
PyAPI_FUNC(int) PyObject_GenericSetAttr(PyObject *, PyObject *, PyObject *);
420
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x03030000
421
PyAPI_FUNC(int) PyObject_GenericSetDict(PyObject *, PyObject *, void *);
422
#endif
423
PyAPI_FUNC(Py_hash_t) PyObject_Hash(PyObject *);
424
PyAPI_FUNC(Py_hash_t) PyObject_HashNotImplemented(PyObject *);
425
PyAPI_FUNC(int) PyObject_IsTrue(PyObject *);
426
PyAPI_FUNC(int) PyObject_Not(PyObject *);
427
PyAPI_FUNC(int) PyCallable_Check(PyObject *);
428
PyAPI_FUNC(void) PyObject_ClearWeakRefs(PyObject *);
429
430
/* PyObject_Dir(obj) acts like Python builtins.dir(obj), returning a
431
   list of strings.  PyObject_Dir(NULL) is like builtins.dir(),
432
   returning the names of the current locals.  In this case, if there are
433
   no current locals, NULL is returned, and PyErr_Occurred() is false.
434
*/
435
PyAPI_FUNC(PyObject *) PyObject_Dir(PyObject *);
436
437
/* Helpers for printing recursive container types */
438
PyAPI_FUNC(int) Py_ReprEnter(PyObject *);
439
PyAPI_FUNC(void) Py_ReprLeave(PyObject *);
440
441
/* Flag bits for printing: */
442
#define Py_PRINT_RAW    1       /* No string quotes etc. */
443
444
/*
445
Type flags (tp_flags)
446
447
These flags are used to change expected features and behavior for a
448
particular type.
449
450
Arbitration of the flag bit positions will need to be coordinated among
451
all extension writers who publicly release their extensions (this will
452
be fewer than you might expect!).
453
454
Most flags were removed as of Python 3.0 to make room for new flags.  (Some
455
flags are not for backwards compatibility but to indicate the presence of an
456
optional feature; these flags remain of course.)
457
458
Type definitions should use Py_TPFLAGS_DEFAULT for their tp_flags value.
459
460
Code can use PyType_HasFeature(type_ob, flag_value) to test whether the
461
given type object has a specified feature.
462
*/
463
464
#ifndef Py_LIMITED_API
465
466
/* Track types initialized using _PyStaticType_InitBuiltin(). */
467
#define _Py_TPFLAGS_STATIC_BUILTIN (1 << 1)
468
469
/* The values array is placed inline directly after the rest of
470
 * the object. Implies Py_TPFLAGS_HAVE_GC.
471
 */
472
#define Py_TPFLAGS_INLINE_VALUES (1 << 2)
473
474
/* Placement of weakref pointers are managed by the VM, not by the type.
475
 * The VM will automatically set tp_weaklistoffset. Implies Py_TPFLAGS_HAVE_GC.
476
 */
477
#define Py_TPFLAGS_MANAGED_WEAKREF (1 << 3)
478
479
/* Placement of dict (and values) pointers are managed by the VM, not by the type.
480
 * The VM will automatically set tp_dictoffset. Implies Py_TPFLAGS_HAVE_GC.
481
 */
482
#define Py_TPFLAGS_MANAGED_DICT (1 << 4)
483
484
/* Type has dictionary or weakref pointers that are managed by VM and has
485
 * to allocate space to store these.
486
 */
487
#define Py_TPFLAGS_PREHEADER (Py_TPFLAGS_MANAGED_WEAKREF | Py_TPFLAGS_MANAGED_DICT)
488
489
/* Set if instances of the type object are treated as sequences for pattern matching */
490
#define Py_TPFLAGS_SEQUENCE (1 << 5)
491
/* Set if instances of the type object are treated as mappings for pattern matching */
492
#define Py_TPFLAGS_MAPPING (1 << 6)
493
#endif
494
495
/* Disallow creating instances of the type: set tp_new to NULL and don't create
496
 * the "__new__" key in the type dictionary. */
497
#define Py_TPFLAGS_DISALLOW_INSTANTIATION (1UL << 7)
498
499
/* Set if the type object is immutable: type attributes cannot be set nor deleted */
500
#define Py_TPFLAGS_IMMUTABLETYPE (1UL << 8)
501
502
/* Set if the type object is dynamically allocated */
503
#define Py_TPFLAGS_HEAPTYPE (1UL << 9)
504
505
/* Set if the type allows subclassing */
506
#define Py_TPFLAGS_BASETYPE (1UL << 10)
507
508
/* Set if the type implements the vectorcall protocol (PEP 590) */
509
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030C0000
510
#define Py_TPFLAGS_HAVE_VECTORCALL (1UL << 11)
511
#ifndef Py_LIMITED_API
512
// Backwards compatibility alias for API that was provisional in Python 3.8
513
#define _Py_TPFLAGS_HAVE_VECTORCALL Py_TPFLAGS_HAVE_VECTORCALL
514
#endif
515
#endif
516
517
/* Set if the type is 'ready' -- fully initialized */
518
#define Py_TPFLAGS_READY (1UL << 12)
519
520
/* Set while the type is being 'readied', to prevent recursive ready calls */
521
#define Py_TPFLAGS_READYING (1UL << 13)
522
523
/* Objects support garbage collection (see objimpl.h) */
524
#define Py_TPFLAGS_HAVE_GC (1UL << 14)
525
526
/* These two bits are preserved for Stackless Python, next after this is 17 */
527
#ifdef STACKLESS
528
#define Py_TPFLAGS_HAVE_STACKLESS_EXTENSION (3UL << 15)
529
#else
530
#define Py_TPFLAGS_HAVE_STACKLESS_EXTENSION 0
531
#endif
532
533
/* Objects behave like an unbound method */
534
#define Py_TPFLAGS_METHOD_DESCRIPTOR (1UL << 17)
535
536
/* Unused. Legacy flag */
537
#define Py_TPFLAGS_VALID_VERSION_TAG  (1UL << 19)
538
539
/* Type is abstract and cannot be instantiated */
540
#define Py_TPFLAGS_IS_ABSTRACT (1UL << 20)
541
542
// This undocumented flag gives certain built-ins their unique pattern-matching
543
// behavior, which allows a single positional subpattern to match against the
544
// subject itself (rather than a mapped attribute on it):
545
#define _Py_TPFLAGS_MATCH_SELF (1UL << 22)
546
547
/* Items (ob_size*tp_itemsize) are found at the end of an instance's memory */
548
#define Py_TPFLAGS_ITEMS_AT_END (1UL << 23)
549
550
/* These flags are used to determine if a type is a subclass. */
551
#define Py_TPFLAGS_LONG_SUBCLASS        (1UL << 24)
552
#define Py_TPFLAGS_LIST_SUBCLASS        (1UL << 25)
553
#define Py_TPFLAGS_TUPLE_SUBCLASS       (1UL << 26)
554
#define Py_TPFLAGS_BYTES_SUBCLASS       (1UL << 27)
555
#define Py_TPFLAGS_UNICODE_SUBCLASS     (1UL << 28)
556
#define Py_TPFLAGS_DICT_SUBCLASS        (1UL << 29)
557
#define Py_TPFLAGS_BASE_EXC_SUBCLASS    (1UL << 30)
558
#define Py_TPFLAGS_TYPE_SUBCLASS        (1UL << 31)
559
560
#define Py_TPFLAGS_DEFAULT  ( \
561
                 Py_TPFLAGS_HAVE_STACKLESS_EXTENSION | \
562
                0)
563
564
/* NOTE: Some of the following flags reuse lower bits (removed as part of the
565
 * Python 3.0 transition). */
566
567
/* The following flags are kept for compatibility; in previous
568
 * versions they indicated presence of newer tp_* fields on the
569
 * type struct.
570
 * Starting with 3.8, binary compatibility of C extensions across
571
 * feature releases of Python is not supported anymore (except when
572
 * using the stable ABI, in which all classes are created dynamically,
573
 * using the interpreter's memory layout.)
574
 * Note that older extensions using the stable ABI set these flags,
575
 * so the bits must not be repurposed.
576
 */
577
#define Py_TPFLAGS_HAVE_FINALIZE (1UL << 0)
578
#define Py_TPFLAGS_HAVE_VERSION_TAG   (1UL << 18)
579
580
// Flag values for ob_flags (16 bits available, if SIZEOF_VOID_P > 4).
581
#define _Py_IMMORTAL_FLAGS (1 << 0)
582
#define _Py_LEGACY_ABI_CHECK_FLAG (1 << 1) /* see PyModuleDef_Init() */
583
#define _Py_STATICALLY_ALLOCATED_FLAG (1 << 2)
584
#if !defined(Py_LIMITED_API)
585
#  if defined(Py_GIL_DISABLED) && defined(Py_DEBUG)
586
#    define _Py_TYPE_REVEALED_FLAG (1 << 3)
587
#  endif
588
#endif
589
590
#define Py_CONSTANT_NONE 0
591
#define Py_CONSTANT_FALSE 1
592
#define Py_CONSTANT_TRUE 2
593
#define Py_CONSTANT_ELLIPSIS 3
594
#define Py_CONSTANT_NOT_IMPLEMENTED 4
595
#define Py_CONSTANT_ZERO 5
596
#define Py_CONSTANT_ONE 6
597
#define Py_CONSTANT_EMPTY_STR 7
598
#define Py_CONSTANT_EMPTY_BYTES 8
599
#define Py_CONSTANT_EMPTY_TUPLE 9
600
601
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030d0000
602
PyAPI_FUNC(PyObject*) Py_GetConstant(unsigned int constant_id);
603
PyAPI_FUNC(PyObject*) Py_GetConstantBorrowed(unsigned int constant_id);
604
#endif
605
606
607
/*
608
_Py_NoneStruct is an object of undefined type which can be used in contexts
609
where NULL (nil) is not suitable (since NULL often means 'error').
610
*/
611
PyAPI_DATA(PyObject) _Py_NoneStruct; /* Don't use this directly */
612
613
#if defined(Py_LIMITED_API) && Py_LIMITED_API+0 >= 0x030D0000
614
#  define Py_None Py_GetConstantBorrowed(Py_CONSTANT_NONE)
615
#else
616
#  define Py_None (&_Py_NoneStruct)
617
#endif
618
619
// Test if an object is the None singleton, the same as "x is None" in Python.
620
PyAPI_FUNC(int) Py_IsNone(PyObject *x);
621
#define Py_IsNone(x) Py_Is((x), Py_None)
622
623
/* Macro for returning Py_None from a function.
624
 * Only treat Py_None as immortal in the limited C API 3.12 and newer. */
625
#if defined(Py_LIMITED_API) && Py_LIMITED_API+0 < 0x030c0000
626
#  define Py_RETURN_NONE return Py_NewRef(Py_None)
627
#else
628
#  define Py_RETURN_NONE return Py_None
629
#endif
630
631
/*
632
Py_NotImplemented is a singleton used to signal that an operation is
633
not implemented for a given type combination.
634
*/
635
PyAPI_DATA(PyObject) _Py_NotImplementedStruct; /* Don't use this directly */
636
637
#if defined(Py_LIMITED_API) && Py_LIMITED_API+0 >= 0x030D0000
638
#  define Py_NotImplemented Py_GetConstantBorrowed(Py_CONSTANT_NOT_IMPLEMENTED)
639
#else
640
#  define Py_NotImplemented (&_Py_NotImplementedStruct)
641
#endif
642
643
/* Macro for returning Py_NotImplemented from a function. Only treat
644
 * Py_NotImplemented as immortal in the limited C API 3.12 and newer. */
645
#if defined(Py_LIMITED_API) && Py_LIMITED_API+0 < 0x030c0000
646
#  define Py_RETURN_NOTIMPLEMENTED return Py_NewRef(Py_NotImplemented)
647
#else
648
#  define Py_RETURN_NOTIMPLEMENTED return Py_NotImplemented
649
#endif
650
651
/* Rich comparison opcodes */
652
#define Py_LT 0
653
#define Py_LE 1
654
#define Py_EQ 2
655
#define Py_NE 3
656
#define Py_GT 4
657
#define Py_GE 5
658
659
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030A0000
660
/* Result of calling PyIter_Send */
661
typedef enum {
662
    PYGEN_RETURN = 0,
663
    PYGEN_ERROR = -1,
664
    PYGEN_NEXT = 1
665
} PySendResult;
666
#endif
667
668
/*
669
 * Macro for implementing rich comparisons
670
 *
671
 * Needs to be a macro because any C-comparable type can be used.
672
 */
673
#define Py_RETURN_RICHCOMPARE(val1, val2, op)                               \
674
    do {                                                                    \
675
        switch (op) {                                                       \
676
        case Py_EQ: if ((val1) == (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;  \
677
        case Py_NE: if ((val1) != (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;  \
678
        case Py_LT: if ((val1) < (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;   \
679
        case Py_GT: if ((val1) > (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;   \
680
        case Py_LE: if ((val1) <= (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;  \
681
        case Py_GE: if ((val1) >= (val2)) Py_RETURN_TRUE; Py_RETURN_FALSE;  \
682
        default:                                                            \
683
            Py_UNREACHABLE();                                               \
684
        }                                                                   \
685
    } while (0)
686
687
688
/*
689
More conventions
690
================
691
692
Argument Checking
693
-----------------
694
695
Functions that take objects as arguments normally don't check for nil
696
arguments, but they do check the type of the argument, and return an
697
error if the function doesn't apply to the type.
698
699
Failure Modes
700
-------------
701
702
Functions may fail for a variety of reasons, including running out of
703
memory.  This is communicated to the caller in two ways: an error string
704
is set (see errors.h), and the function result differs: functions that
705
normally return a pointer return NULL for failure, functions returning
706
an integer return -1 (which could be a legal return value too!), and
707
other functions return 0 for success and -1 for failure.
708
Callers should always check for errors before using the result.  If
709
an error was set, the caller must either explicitly clear it, or pass
710
the error on to its caller.
711
712
Reference Counts
713
----------------
714
715
It takes a while to get used to the proper usage of reference counts.
716
717
Functions that create an object set the reference count to 1; such new
718
objects must be stored somewhere or destroyed again with Py_DECREF().
719
Some functions that 'store' objects, such as PyTuple_SetItem() and
720
PyList_SetItem(),
721
don't increment the reference count of the object, since the most
722
frequent use is to store a fresh object.  Functions that 'retrieve'
723
objects, such as PyTuple_GetItem() and PyDict_GetItemString(), also
724
don't increment
725
the reference count, since most frequently the object is only looked at
726
quickly.  Thus, to retrieve an object and store it again, the caller
727
must call Py_INCREF() explicitly.
728
729
NOTE: functions that 'consume' a reference count, like
730
PyList_SetItem(), consume the reference even if the object wasn't
731
successfully stored, to simplify error handling.
732
733
It seems attractive to make other functions that take an object as
734
argument consume a reference count; however, this may quickly get
735
confusing (even the current practice is already confusing).  Consider
736
it carefully, it may save lots of calls to Py_INCREF() and Py_DECREF() at
737
times.
738
*/
739
740
#ifndef Py_LIMITED_API
741
#  define Py_CPYTHON_OBJECT_H
742
#  include "cpython/object.h"
743
#  undef Py_CPYTHON_OBJECT_H
744
#endif
745
746
747
static inline int
748
PyType_HasFeature(PyTypeObject *type, unsigned long feature)
749
0
{
750
0
    unsigned long flags;
751
0
#ifdef Py_LIMITED_API
752
0
    // PyTypeObject is opaque in the limited C API
753
0
    flags = PyType_GetFlags(type);
754
0
#else
755
0
    flags = type->tp_flags;
756
0
#endif
757
0
    return ((flags & feature) != 0);
758
0
}
759
760
#define PyType_FastSubclass(type, flag) PyType_HasFeature((type), (flag))
761
762
0
static inline int PyType_Check(PyObject *op) {
763
0
    return PyType_FastSubclass(Py_TYPE(op), Py_TPFLAGS_TYPE_SUBCLASS);
764
0
}
765
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 < 0x030b0000
766
#  define PyType_Check(op) PyType_Check(_PyObject_CAST(op))
767
#endif
768
769
#define _PyType_CAST(op) \
770
    (assert(PyType_Check(op)), _Py_CAST(PyTypeObject*, (op)))
771
772
0
static inline int PyType_CheckExact(PyObject *op) {
773
0
    return Py_IS_TYPE(op, &PyType_Type);
774
0
}
775
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 < 0x030b0000
776
#  define PyType_CheckExact(op) PyType_CheckExact(_PyObject_CAST(op))
777
#endif
778
779
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030d0000
780
PyAPI_FUNC(PyObject *) PyType_GetModuleByDef(PyTypeObject *, PyModuleDef *);
781
#endif
782
783
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030e0000
784
PyAPI_FUNC(int) PyType_Freeze(PyTypeObject *type);
785
#endif
786
787
#if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= _Py_PACK_VERSION(3, 15)
788
PyAPI_FUNC(int) PyObject_CallFinalizerFromDealloc(PyObject *);
789
PyAPI_FUNC(PyObject *) PyType_GetModuleByToken(PyTypeObject *type,
790
                                               const void *token);
791
PyAPI_FUNC(void *) PyObject_GetTypeData_DuringGC(PyObject *obj,
792
                                                 PyTypeObject *cls);
793
PyAPI_FUNC(void *) PyType_GetModuleState_DuringGC(PyTypeObject *);
794
PyAPI_FUNC(int) PyType_GetBaseByToken_DuringGC(PyTypeObject *,
795
                                               void *, PyTypeObject **);
796
PyAPI_FUNC(PyObject *) PyType_GetModule_DuringGC(PyTypeObject *);
797
PyAPI_FUNC(PyObject *) PyType_GetModuleByToken_DuringGC(PyTypeObject *type,
798
                                                        const void *token);
799
#endif
800
801
#ifdef __cplusplus
802
}
803
#endif
804
#endif   // !Py_OBJECT_H