bpo-39573: Add Py_SET_REFCNT() function (GH-18389)
Add a Py_SET_REFCNT() function to set the reference counter of an object.
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@ -79,6 +79,13 @@ the definition of all other Python objects.
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(((PyObject*)(o))->ob_refcnt)
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.. c:function:: void Py_SET_REFCNT(PyObject *o, Py_ssize_t refcnt)
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Set the object *o* reference counter to *refcnt*.
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.. versionadded:: 3.9
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.. c:macro:: Py_SIZE(o)
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This macro is used to access the :attr:`ob_size` member of a Python object.
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@ -123,6 +123,11 @@ typedef struct {
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#define Py_TYPE(ob) (_PyObject_CAST(ob)->ob_type)
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#define Py_SIZE(ob) (_PyVarObject_CAST(ob)->ob_size)
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static inline void _Py_SET_REFCNT(PyObject *ob, Py_ssize_t refcnt) {
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ob->ob_refcnt = refcnt;
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}
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#define Py_SET_REFCNT(ob, refcnt) _Py_SET_REFCNT(_PyObject_CAST(ob), refcnt)
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/*
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Type objects contain a string containing the type name (to help somewhat
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in debugging), the allocation parameters (see PyObject_New() and
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@ -0,0 +1,2 @@
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Add a :c:func:`Py_SET_REFCNT` function to set the reference counter of an
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object.
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@ -3551,7 +3551,7 @@ slot_tp_del(PyObject *self)
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/* Temporarily resurrect the object. */
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assert(Py_REFCNT(self) == 0);
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Py_REFCNT(self) = 1;
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Py_SET_REFCNT(self, 1);
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/* Save the current exception, if any. */
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PyErr_Fetch(&error_type, &error_value, &error_traceback);
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@ -3574,7 +3574,8 @@ slot_tp_del(PyObject *self)
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* cause a recursive call.
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*/
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assert(Py_REFCNT(self) > 0);
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if (--Py_REFCNT(self) == 0) {
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Py_SET_REFCNT(self, Py_REFCNT(self) - 1);
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if (Py_REFCNT(self) == 0) {
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/* this is the normal path out */
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return;
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}
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@ -3585,7 +3586,7 @@ slot_tp_del(PyObject *self)
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{
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Py_ssize_t refcnt = Py_REFCNT(self);
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_Py_NewReference(self);
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Py_REFCNT(self) = refcnt;
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Py_SET_REFCNT(self, refcnt);
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}
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assert(!PyType_IS_GC(Py_TYPE(self)) || _PyObject_GC_IS_TRACKED(self));
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/* If Py_REF_DEBUG macro is defined, _Py_NewReference() increased
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@ -4621,7 +4622,7 @@ check_pyobject_uninitialized_is_freed(PyObject *self, PyObject *Py_UNUSED(args))
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return NULL;
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}
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/* Initialize reference count to avoid early crash in ceval or GC */
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Py_REFCNT(op) = 1;
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Py_SET_REFCNT(op, 1);
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/* object fields like ob_type are uninitialized! */
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return test_pyobject_is_freed("check_pyobject_uninitialized_is_freed", op);
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}
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@ -4636,7 +4637,7 @@ check_pyobject_forbidden_bytes_is_freed(PyObject *self, PyObject *Py_UNUSED(args
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return NULL;
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}
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/* Initialize reference count to avoid early crash in ceval or GC */
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Py_REFCNT(op) = 1;
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Py_SET_REFCNT(op, 1);
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/* ob_type field is after the memory block: part of "forbidden bytes"
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when using debug hooks on memory allocators! */
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return test_pyobject_is_freed("check_pyobject_forbidden_bytes_is_freed", op);
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@ -4652,7 +4653,7 @@ check_pyobject_freed_is_freed(PyObject *self, PyObject *Py_UNUSED(args))
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}
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Py_TYPE(op)->tp_dealloc(op);
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/* Reset reference count to avoid early crash in ceval or GC */
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Py_REFCNT(op) = 1;
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Py_SET_REFCNT(op, 1);
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/* object memory is freed! */
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return test_pyobject_is_freed("check_pyobject_freed_is_freed", op);
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}
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@ -5134,7 +5135,7 @@ negative_refcount(PyObject *self, PyObject *Py_UNUSED(args))
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}
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assert(Py_REFCNT(obj) == 1);
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Py_REFCNT(obj) = 0;
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Py_SET_REFCNT(obj, 0);
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/* Py_DECREF() must call _Py_NegativeRefcount() and abort Python */
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Py_DECREF(obj);
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@ -51,7 +51,7 @@ PyModuleDef_Init(struct PyModuleDef* def)
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return NULL;
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if (def->m_base.m_index == 0) {
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max_module_number++;
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Py_REFCNT(def) = 1;
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Py_SET_REFCNT(def, 1);
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Py_TYPE(def) = &PyModuleDef_Type;
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def->m_base.m_index = max_module_number;
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}
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@ -213,7 +213,7 @@ PyObject_CallFinalizerFromDealloc(PyObject *self)
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}
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/* Temporarily resurrect the object. */
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Py_REFCNT(self) = 1;
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Py_SET_REFCNT(self, 1);
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PyObject_CallFinalizer(self);
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@ -223,7 +223,8 @@ PyObject_CallFinalizerFromDealloc(PyObject *self)
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/* Undo the temporary resurrection; can't use DECREF here, it would
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* cause a recursive call. */
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if (--Py_REFCNT(self) == 0) {
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Py_SET_REFCNT(self, Py_REFCNT(self) - 1);
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if (Py_REFCNT(self) == 0) {
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return 0; /* this is the normal path out */
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}
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@ -231,7 +232,7 @@ PyObject_CallFinalizerFromDealloc(PyObject *self)
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* never happened. */
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Py_ssize_t refcnt = Py_REFCNT(self);
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_Py_NewReference(self);
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Py_REFCNT(self) = refcnt;
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Py_SET_REFCNT(self, refcnt);
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_PyObject_ASSERT(self,
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(!PyType_IS_GC(Py_TYPE(self))
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@ -1818,7 +1819,7 @@ _Py_NewReference(PyObject *op)
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#ifdef Py_REF_DEBUG
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_Py_RefTotal++;
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#endif
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Py_REFCNT(op) = 1;
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Py_SET_REFCNT(op, 1);
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#ifdef Py_TRACE_REFS
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_Py_AddToAllObjects(op, 1);
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#endif
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@ -1903,7 +1903,7 @@ unicode_dealloc(PyObject *unicode)
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case SSTATE_INTERNED_MORTAL:
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/* revive dead object temporarily for DelItem */
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Py_REFCNT(unicode) = 3;
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Py_SET_REFCNT(unicode, 3);
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if (PyDict_DelItem(interned, unicode) != 0) {
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_PyErr_WriteUnraisableMsg("deletion of interned string failed",
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NULL);
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@ -15367,7 +15367,7 @@ PyUnicode_InternInPlace(PyObject **p)
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}
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/* The two references in interned are not counted by refcnt.
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The deallocator will take care of this */
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Py_REFCNT(s) -= 2;
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Py_SET_REFCNT(s, Py_REFCNT(s) - 2);
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_PyUnicode_STATE(s).interned = SSTATE_INTERNED_MORTAL;
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}
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