mirror of
https://github.com/python/cpython
synced 2024-11-02 09:48:08 +00:00
c494fb333b
Move private _PyEval functions to the internal C API (pycore_ceval.h): * _PyEval_GetBuiltin() * _PyEval_GetBuiltinId() * _PyEval_GetSwitchInterval() * _PyEval_MakePendingCalls() * _PyEval_SetProfile() * _PyEval_SetSwitchInterval() * _PyEval_SetTrace() No longer export most of these functions.
538 lines
14 KiB
C
538 lines
14 KiB
C
/* Class object implementation (dead now except for methods) */
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#include "Python.h"
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#include "pycore_call.h" // _PyObject_VectorcallTstate()
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#include "pycore_ceval.h" // _PyEval_GetBuiltin()
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#include "pycore_object.h"
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#include "pycore_pyerrors.h"
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#include "pycore_pystate.h" // _PyThreadState_GET()
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#include "clinic/classobject.c.h"
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#define TP_DESCR_GET(t) ((t)->tp_descr_get)
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/*[clinic input]
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class method "PyMethodObject *" "&PyMethod_Type"
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[clinic start generated code]*/
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/*[clinic end generated code: output=da39a3ee5e6b4b0d input=b16e47edf6107c23]*/
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PyObject *
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PyMethod_Function(PyObject *im)
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{
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if (!PyMethod_Check(im)) {
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PyErr_BadInternalCall();
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return NULL;
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}
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return ((PyMethodObject *)im)->im_func;
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}
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PyObject *
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PyMethod_Self(PyObject *im)
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{
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if (!PyMethod_Check(im)) {
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PyErr_BadInternalCall();
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return NULL;
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}
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return ((PyMethodObject *)im)->im_self;
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}
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static PyObject *
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method_vectorcall(PyObject *method, PyObject *const *args,
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size_t nargsf, PyObject *kwnames)
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{
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assert(Py_IS_TYPE(method, &PyMethod_Type));
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PyThreadState *tstate = _PyThreadState_GET();
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PyObject *self = PyMethod_GET_SELF(method);
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PyObject *func = PyMethod_GET_FUNCTION(method);
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Py_ssize_t nargs = PyVectorcall_NARGS(nargsf);
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assert(nargs == 0 || args[nargs-1]);
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PyObject *result;
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if (nargsf & PY_VECTORCALL_ARGUMENTS_OFFSET) {
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/* PY_VECTORCALL_ARGUMENTS_OFFSET is set, so we are allowed to mutate the vector */
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PyObject **newargs = (PyObject**)args - 1;
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nargs += 1;
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PyObject *tmp = newargs[0];
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newargs[0] = self;
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assert(newargs[nargs-1]);
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result = _PyObject_VectorcallTstate(tstate, func, newargs,
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nargs, kwnames);
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newargs[0] = tmp;
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}
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else {
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Py_ssize_t nkwargs = (kwnames == NULL) ? 0 : PyTuple_GET_SIZE(kwnames);
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Py_ssize_t totalargs = nargs + nkwargs;
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if (totalargs == 0) {
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return _PyObject_VectorcallTstate(tstate, func, &self, 1, NULL);
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}
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PyObject *newargs_stack[_PY_FASTCALL_SMALL_STACK];
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PyObject **newargs;
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if (totalargs <= (Py_ssize_t)Py_ARRAY_LENGTH(newargs_stack) - 1) {
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newargs = newargs_stack;
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}
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else {
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newargs = PyMem_Malloc((totalargs+1) * sizeof(PyObject *));
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if (newargs == NULL) {
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_PyErr_NoMemory(tstate);
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return NULL;
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}
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}
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/* use borrowed references */
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newargs[0] = self;
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/* bpo-37138: since totalargs > 0, it's impossible that args is NULL.
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* We need this, since calling memcpy() with a NULL pointer is
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* undefined behaviour. */
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assert(args != NULL);
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memcpy(newargs + 1, args, totalargs * sizeof(PyObject *));
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result = _PyObject_VectorcallTstate(tstate, func,
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newargs, nargs+1, kwnames);
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if (newargs != newargs_stack) {
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PyMem_Free(newargs);
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}
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}
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return result;
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}
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/* Method objects are used for bound instance methods returned by
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instancename.methodname. ClassName.methodname returns an ordinary
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function.
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*/
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PyObject *
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PyMethod_New(PyObject *func, PyObject *self)
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{
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if (self == NULL) {
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PyErr_BadInternalCall();
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return NULL;
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}
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PyMethodObject *im = PyObject_GC_New(PyMethodObject, &PyMethod_Type);
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if (im == NULL) {
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return NULL;
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}
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im->im_weakreflist = NULL;
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im->im_func = Py_NewRef(func);
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im->im_self = Py_NewRef(self);
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im->vectorcall = method_vectorcall;
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_PyObject_GC_TRACK(im);
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return (PyObject *)im;
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}
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/*[clinic input]
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method.__reduce__
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[clinic start generated code]*/
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static PyObject *
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method___reduce___impl(PyMethodObject *self)
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/*[clinic end generated code: output=6c04506d0fa6fdcb input=143a0bf5e96de6e8]*/
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{
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PyObject *funcself = PyMethod_GET_SELF(self);
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PyObject *func = PyMethod_GET_FUNCTION(self);
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PyObject *funcname = PyObject_GetAttr(func, &_Py_ID(__name__));
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if (funcname == NULL) {
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return NULL;
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}
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return Py_BuildValue(
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"N(ON)", _PyEval_GetBuiltin(&_Py_ID(getattr)), funcself, funcname);
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}
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static PyMethodDef method_methods[] = {
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METHOD___REDUCE___METHODDEF
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{NULL, NULL}
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};
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/* Descriptors for PyMethod attributes */
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/* im_func and im_self are stored in the PyMethod object */
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#define MO_OFF(x) offsetof(PyMethodObject, x)
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static PyMemberDef method_memberlist[] = {
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{"__func__", _Py_T_OBJECT, MO_OFF(im_func), Py_READONLY,
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"the function (or other callable) implementing a method"},
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{"__self__", _Py_T_OBJECT, MO_OFF(im_self), Py_READONLY,
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"the instance to which a method is bound"},
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{NULL} /* Sentinel */
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};
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/* Christian Tismer argued convincingly that method attributes should
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(nearly) always override function attributes.
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The one exception is __doc__; there's a default __doc__ which
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should only be used for the class, not for instances */
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static PyObject *
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method_get_doc(PyMethodObject *im, void *context)
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{
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return PyObject_GetAttr(im->im_func, &_Py_ID(__doc__));
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}
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static PyGetSetDef method_getset[] = {
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{"__doc__", (getter)method_get_doc, NULL, NULL},
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{0}
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};
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static PyObject *
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method_getattro(PyObject *obj, PyObject *name)
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{
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PyMethodObject *im = (PyMethodObject *)obj;
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PyTypeObject *tp = Py_TYPE(obj);
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PyObject *descr = NULL;
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{
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if (!_PyType_IsReady(tp)) {
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if (PyType_Ready(tp) < 0)
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return NULL;
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}
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descr = _PyType_Lookup(tp, name);
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}
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if (descr != NULL) {
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descrgetfunc f = TP_DESCR_GET(Py_TYPE(descr));
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if (f != NULL)
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return f(descr, obj, (PyObject *)Py_TYPE(obj));
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else {
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return Py_NewRef(descr);
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}
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}
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return PyObject_GetAttr(im->im_func, name);
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}
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/*[clinic input]
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@classmethod
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method.__new__ as method_new
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function: object
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instance: object
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/
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Create a bound instance method object.
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[clinic start generated code]*/
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static PyObject *
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method_new_impl(PyTypeObject *type, PyObject *function, PyObject *instance)
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/*[clinic end generated code: output=d33ef4ebf702e1f7 input=4e32facc3c3108ae]*/
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{
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if (!PyCallable_Check(function)) {
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PyErr_SetString(PyExc_TypeError,
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"first argument must be callable");
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return NULL;
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}
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if (instance == NULL || instance == Py_None) {
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PyErr_SetString(PyExc_TypeError,
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"instance must not be None");
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return NULL;
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}
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return PyMethod_New(function, instance);
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}
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static void
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method_dealloc(PyMethodObject *im)
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{
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_PyObject_GC_UNTRACK(im);
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if (im->im_weakreflist != NULL)
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PyObject_ClearWeakRefs((PyObject *)im);
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Py_DECREF(im->im_func);
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Py_XDECREF(im->im_self);
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PyObject_GC_Del(im);
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}
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static PyObject *
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method_richcompare(PyObject *self, PyObject *other, int op)
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{
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PyMethodObject *a, *b;
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PyObject *res;
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int eq;
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if ((op != Py_EQ && op != Py_NE) ||
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!PyMethod_Check(self) ||
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!PyMethod_Check(other))
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{
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Py_RETURN_NOTIMPLEMENTED;
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}
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a = (PyMethodObject *)self;
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b = (PyMethodObject *)other;
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eq = PyObject_RichCompareBool(a->im_func, b->im_func, Py_EQ);
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if (eq == 1) {
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eq = (a->im_self == b->im_self);
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}
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else if (eq < 0)
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return NULL;
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if (op == Py_EQ)
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res = eq ? Py_True : Py_False;
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else
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res = eq ? Py_False : Py_True;
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return Py_NewRef(res);
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}
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static PyObject *
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method_repr(PyMethodObject *a)
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{
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PyObject *self = a->im_self;
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PyObject *func = a->im_func;
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PyObject *funcname, *result;
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const char *defname = "?";
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if (PyObject_GetOptionalAttr(func, &_Py_ID(__qualname__), &funcname) < 0 ||
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(funcname == NULL &&
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PyObject_GetOptionalAttr(func, &_Py_ID(__name__), &funcname) < 0))
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{
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return NULL;
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}
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if (funcname != NULL && !PyUnicode_Check(funcname)) {
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Py_SETREF(funcname, NULL);
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}
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/* XXX Shouldn't use repr()/%R here! */
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result = PyUnicode_FromFormat("<bound method %V of %R>",
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funcname, defname, self);
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Py_XDECREF(funcname);
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return result;
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}
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static Py_hash_t
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method_hash(PyMethodObject *a)
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{
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Py_hash_t x, y;
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x = _Py_HashPointer(a->im_self);
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y = PyObject_Hash(a->im_func);
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if (y == -1)
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return -1;
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x = x ^ y;
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if (x == -1)
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x = -2;
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return x;
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}
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static int
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method_traverse(PyMethodObject *im, visitproc visit, void *arg)
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{
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Py_VISIT(im->im_func);
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Py_VISIT(im->im_self);
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return 0;
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}
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PyTypeObject PyMethod_Type = {
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PyVarObject_HEAD_INIT(&PyType_Type, 0)
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.tp_name = "method",
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.tp_basicsize = sizeof(PyMethodObject),
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.tp_dealloc = (destructor)method_dealloc,
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.tp_vectorcall_offset = offsetof(PyMethodObject, vectorcall),
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.tp_repr = (reprfunc)method_repr,
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.tp_hash = (hashfunc)method_hash,
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.tp_call = PyVectorcall_Call,
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.tp_getattro = method_getattro,
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.tp_setattro = PyObject_GenericSetAttr,
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.tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC |
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Py_TPFLAGS_HAVE_VECTORCALL,
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.tp_doc = method_new__doc__,
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.tp_traverse = (traverseproc)method_traverse,
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.tp_richcompare = method_richcompare,
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.tp_weaklistoffset = offsetof(PyMethodObject, im_weakreflist),
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.tp_methods = method_methods,
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.tp_members = method_memberlist,
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.tp_getset = method_getset,
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.tp_new = method_new,
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};
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/* ------------------------------------------------------------------------
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* instance method
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*/
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/*[clinic input]
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class instancemethod "PyInstanceMethodObject *" "&PyInstanceMethod_Type"
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[clinic start generated code]*/
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/*[clinic end generated code: output=da39a3ee5e6b4b0d input=28c9762a9016f4d2]*/
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PyObject *
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PyInstanceMethod_New(PyObject *func) {
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PyInstanceMethodObject *method;
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method = PyObject_GC_New(PyInstanceMethodObject,
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&PyInstanceMethod_Type);
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if (method == NULL) return NULL;
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method->func = Py_NewRef(func);
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_PyObject_GC_TRACK(method);
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return (PyObject *)method;
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}
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PyObject *
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PyInstanceMethod_Function(PyObject *im)
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{
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if (!PyInstanceMethod_Check(im)) {
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PyErr_BadInternalCall();
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return NULL;
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}
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return PyInstanceMethod_GET_FUNCTION(im);
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}
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#define IMO_OFF(x) offsetof(PyInstanceMethodObject, x)
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static PyMemberDef instancemethod_memberlist[] = {
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{"__func__", _Py_T_OBJECT, IMO_OFF(func), Py_READONLY,
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"the function (or other callable) implementing a method"},
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{NULL} /* Sentinel */
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};
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static PyObject *
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instancemethod_get_doc(PyObject *self, void *context)
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{
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return PyObject_GetAttr(PyInstanceMethod_GET_FUNCTION(self),
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&_Py_ID(__doc__));
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}
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static PyGetSetDef instancemethod_getset[] = {
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{"__doc__", (getter)instancemethod_get_doc, NULL, NULL},
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{0}
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};
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static PyObject *
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instancemethod_getattro(PyObject *self, PyObject *name)
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{
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PyTypeObject *tp = Py_TYPE(self);
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PyObject *descr = NULL;
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if (!_PyType_IsReady(tp)) {
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if (PyType_Ready(tp) < 0)
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return NULL;
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}
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descr = _PyType_Lookup(tp, name);
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if (descr != NULL) {
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descrgetfunc f = TP_DESCR_GET(Py_TYPE(descr));
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if (f != NULL)
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return f(descr, self, (PyObject *)Py_TYPE(self));
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else {
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return Py_NewRef(descr);
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}
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}
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return PyObject_GetAttr(PyInstanceMethod_GET_FUNCTION(self), name);
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}
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static void
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instancemethod_dealloc(PyObject *self) {
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_PyObject_GC_UNTRACK(self);
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Py_DECREF(PyInstanceMethod_GET_FUNCTION(self));
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PyObject_GC_Del(self);
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}
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static int
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instancemethod_traverse(PyObject *self, visitproc visit, void *arg) {
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Py_VISIT(PyInstanceMethod_GET_FUNCTION(self));
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return 0;
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}
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static PyObject *
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instancemethod_call(PyObject *self, PyObject *arg, PyObject *kw)
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{
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return PyObject_Call(PyInstanceMethod_GET_FUNCTION(self), arg, kw);
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}
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static PyObject *
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instancemethod_descr_get(PyObject *descr, PyObject *obj, PyObject *type) {
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PyObject *func = PyInstanceMethod_GET_FUNCTION(descr);
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if (obj == NULL) {
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return Py_NewRef(func);
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}
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else
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return PyMethod_New(func, obj);
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}
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static PyObject *
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instancemethod_richcompare(PyObject *self, PyObject *other, int op)
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{
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PyInstanceMethodObject *a, *b;
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PyObject *res;
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int eq;
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if ((op != Py_EQ && op != Py_NE) ||
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!PyInstanceMethod_Check(self) ||
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!PyInstanceMethod_Check(other))
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{
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Py_RETURN_NOTIMPLEMENTED;
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}
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a = (PyInstanceMethodObject *)self;
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b = (PyInstanceMethodObject *)other;
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eq = PyObject_RichCompareBool(a->func, b->func, Py_EQ);
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if (eq < 0)
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return NULL;
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if (op == Py_EQ)
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res = eq ? Py_True : Py_False;
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else
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res = eq ? Py_False : Py_True;
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return Py_NewRef(res);
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}
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static PyObject *
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instancemethod_repr(PyObject *self)
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{
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PyObject *func = PyInstanceMethod_Function(self);
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PyObject *funcname, *result;
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const char *defname = "?";
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if (func == NULL) {
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PyErr_BadInternalCall();
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return NULL;
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}
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if (PyObject_GetOptionalAttr(func, &_Py_ID(__name__), &funcname) < 0) {
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return NULL;
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}
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if (funcname != NULL && !PyUnicode_Check(funcname)) {
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Py_SETREF(funcname, NULL);
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}
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result = PyUnicode_FromFormat("<instancemethod %V at %p>",
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funcname, defname, self);
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Py_XDECREF(funcname);
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return result;
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}
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/*[clinic input]
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@classmethod
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instancemethod.__new__ as instancemethod_new
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function: object
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/
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Bind a function to a class.
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[clinic start generated code]*/
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static PyObject *
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instancemethod_new_impl(PyTypeObject *type, PyObject *function)
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/*[clinic end generated code: output=5e0397b2bdb750be input=cfc54e8b973664a8]*/
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{
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if (!PyCallable_Check(function)) {
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PyErr_SetString(PyExc_TypeError,
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"first argument must be callable");
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return NULL;
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}
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return PyInstanceMethod_New(function);
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}
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PyTypeObject PyInstanceMethod_Type = {
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PyVarObject_HEAD_INIT(&PyType_Type, 0)
|
|
.tp_name = "instancemethod",
|
|
.tp_basicsize = sizeof(PyInstanceMethodObject),
|
|
.tp_dealloc = instancemethod_dealloc,
|
|
.tp_repr = (reprfunc)instancemethod_repr,
|
|
.tp_call = instancemethod_call,
|
|
.tp_getattro = instancemethod_getattro,
|
|
.tp_setattro = PyObject_GenericSetAttr,
|
|
.tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC,
|
|
.tp_doc = instancemethod_new__doc__,
|
|
.tp_traverse = instancemethod_traverse,
|
|
.tp_richcompare = instancemethod_richcompare,
|
|
.tp_members = instancemethod_memberlist,
|
|
.tp_getset = instancemethod_getset,
|
|
.tp_descr_get = instancemethod_descr_get,
|
|
.tp_new = instancemethod_new,
|
|
};
|