abstract.c 32 KB
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/* Abstract Object Interface (many thanks to Jim Fulton) */
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#include "Python.h"
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#include <ctype.h>
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#include "structmember.h" /* we need the offsetof() macro from there */

#define NEW_STYLE_NUMBER(o) PyType_HasFeature((o)->ob_type, \
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				Py_TPFLAGS_CHECKTYPES)
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/* Shorthands to return certain errors */
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static PyObject *
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type_error(const char *msg)
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{
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	PyErr_SetString(PyExc_TypeError, msg);
	return NULL;
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}

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static PyObject *
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null_error(void)
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{
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	if (!PyErr_Occurred())
		PyErr_SetString(PyExc_SystemError,
				"null argument to internal routine");
	return NULL;
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}

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/* Operations on any object */

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int
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PyObject_Cmp(PyObject *o1, PyObject *o2, int *result)
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{
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	int r;

	if (o1 == NULL || o2 == NULL) {
		null_error();
		return -1;
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	}
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	r = PyObject_Compare(o1, o2);
	if (PyErr_Occurred())
		return -1;
	*result = r;
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	return 0;
}

PyObject *
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PyObject_Type(PyObject *o)
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{
	PyObject *v;

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	if (o == NULL)
		return null_error();
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	v = (PyObject *)o->ob_type;
	Py_INCREF(v);
	return v;
}

int
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PyObject_Size(PyObject *o)
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{
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	PySequenceMethods *m;
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	if (o == NULL) {
		null_error();
		return -1;
	}
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	m = o->ob_type->tp_as_sequence;
	if (m && m->sq_length)
		return m->sq_length(o);
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	return PyMapping_Size(o);
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}

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#undef PyObject_Length
int
PyObject_Length(PyObject *o)
{
	return PyObject_Size(o);
}
#define PyObject_Length PyObject_Size

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PyObject *
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PyObject_GetItem(PyObject *o, PyObject *key)
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{
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	PyMappingMethods *m;
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	if (o == NULL || key == NULL)
		return null_error();
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	m = o->ob_type->tp_as_mapping;
	if (m && m->mp_subscript)
		return m->mp_subscript(o, key);
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	if (o->ob_type->tp_as_sequence) {
		if (PyInt_Check(key))
			return PySequence_GetItem(o, PyInt_AsLong(key));
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		else if (PyLong_Check(key)) {
			long key_value = PyLong_AsLong(key);
			if (key_value == -1 && PyErr_Occurred())
				return NULL;
			return PySequence_GetItem(o, key_value);
		}
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		return type_error("sequence index must be integer");
	}
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	return type_error("unsubscriptable object");
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}

int
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PyObject_SetItem(PyObject *o, PyObject *key, PyObject *value)
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{
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	PyMappingMethods *m;
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	if (o == NULL || key == NULL || value == NULL) {
		null_error();
		return -1;
	}
	m = o->ob_type->tp_as_mapping;
	if (m && m->mp_ass_subscript)
		return m->mp_ass_subscript(o, key, value);

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	if (o->ob_type->tp_as_sequence) {
		if (PyInt_Check(key))
			return PySequence_SetItem(o, PyInt_AsLong(key), value);
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		else if (PyLong_Check(key)) {
			long key_value = PyLong_AsLong(key);
			if (key_value == -1 && PyErr_Occurred())
				return -1;
			return PySequence_SetItem(o, key_value, value);
		}
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		type_error("sequence index must be integer");
		return -1;
	}
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	type_error("object does not support item assignment");
	return -1;
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}

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int
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PyObject_DelItem(PyObject *o, PyObject *key)
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{
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	PyMappingMethods *m;

	if (o == NULL || key == NULL) {
		null_error();
		return -1;
	}
	m = o->ob_type->tp_as_mapping;
	if (m && m->mp_ass_subscript)
		return m->mp_ass_subscript(o, key, (PyObject*)NULL);
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	if (o->ob_type->tp_as_sequence) {
		if (PyInt_Check(key))
			return PySequence_DelItem(o, PyInt_AsLong(key));
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		else if (PyLong_Check(key)) {
			long key_value = PyLong_AsLong(key);
			if (key_value == -1 && PyErr_Occurred())
				return -1;
			return PySequence_DelItem(o, key_value);
		}
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		type_error("sequence index must be integer");
		return -1;
	}
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	type_error("object does not support item deletion");
	return -1;
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}

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int PyObject_AsCharBuffer(PyObject *obj,
			  const char **buffer,
			  int *buffer_len)
{
	PyBufferProcs *pb;
	const char *pp;
	int len;

	if (obj == NULL || buffer == NULL || buffer_len == NULL) {
		null_error();
		return -1;
	}
	pb = obj->ob_type->tp_as_buffer;
	if ( pb == NULL ||
	     pb->bf_getcharbuffer == NULL ||
	     pb->bf_getsegcount == NULL ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a character buffer object");
		goto onError;
	}
	if ( (*pb->bf_getsegcount)(obj,NULL) != 1 ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a single-segment buffer object");
		goto onError;
	}
	len = (*pb->bf_getcharbuffer)(obj,0,&pp);
	if (len < 0)
		goto onError;
	*buffer = pp;
	*buffer_len = len;
	return 0;

 onError:
	return -1;
}

int PyObject_AsReadBuffer(PyObject *obj,
			  const void **buffer,
			  int *buffer_len)
{
	PyBufferProcs *pb;
	void *pp;
	int len;

	if (obj == NULL || buffer == NULL || buffer_len == NULL) {
		null_error();
		return -1;
	}
	pb = obj->ob_type->tp_as_buffer;
	if ( pb == NULL ||
	     pb->bf_getreadbuffer == NULL ||
	     pb->bf_getsegcount == NULL ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a readable buffer object");
		goto onError;
	}
	if ( (*pb->bf_getsegcount)(obj,NULL) != 1 ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a single-segment buffer object");
		goto onError;
	}
	len = (*pb->bf_getreadbuffer)(obj,0,&pp);
	if (len < 0)
		goto onError;
	*buffer = pp;
	*buffer_len = len;
	return 0;

 onError:
	return -1;
}

int PyObject_AsWriteBuffer(PyObject *obj,
			   void **buffer,
			   int *buffer_len)
{
	PyBufferProcs *pb;
	void*pp;
	int len;

	if (obj == NULL || buffer == NULL || buffer_len == NULL) {
		null_error();
		return -1;
	}
	pb = obj->ob_type->tp_as_buffer;
	if ( pb == NULL ||
	     pb->bf_getwritebuffer == NULL ||
	     pb->bf_getsegcount == NULL ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a writeable buffer object");
		goto onError;
	}
	if ( (*pb->bf_getsegcount)(obj,NULL) != 1 ) {
		PyErr_SetString(PyExc_TypeError,
				"expected a single-segment buffer object");
		goto onError;
	}
	len = (*pb->bf_getwritebuffer)(obj,0,&pp);
	if (len < 0)
		goto onError;
	*buffer = pp;
	*buffer_len = len;
	return 0;

 onError:
	return -1;
}

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/* Operations on numbers */

int
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PyNumber_Check(PyObject *o)
283
{
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	return o && o->ob_type->tp_as_number;
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}

287
/* Binary operators */
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289
/* New style number protocol support */
290

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#define NB_SLOT(x) offsetof(PyNumberMethods, x)
#define NB_BINOP(nb_methods, slot) \
		((binaryfunc*)(& ((char*)nb_methods)[slot] ))
#define NB_TERNOP(nb_methods, slot) \
		((ternaryfunc*)(& ((char*)nb_methods)[slot] ))
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/*
  Calling scheme used for binary operations:
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  v	w	Action
  -------------------------------------------------------------------
  new	new	v.op(v,w), w.op(v,w)
  new	old	v.op(v,w), coerce(v,w), v.op(v,w)
  old	new	w.op(v,w), coerce(v,w), v.op(v,w)
  old	old	coerce(v,w), v.op(v,w)
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  Legend:
  -------
  * new == new style number
  * old == old style number
  * Action indicates the order in which operations are tried until either
    a valid result is produced or an error occurs.

 */

static PyObject *
binary_op1(PyObject *v, PyObject *w, const int op_slot)
{
	PyObject *x;
	binaryfunc *slot;
	if (v->ob_type->tp_as_number != NULL && NEW_STYLE_NUMBER(v)) {
		slot = NB_BINOP(v->ob_type->tp_as_number, op_slot);
		if (*slot) {
			x = (*slot)(v, w);
			if (x != Py_NotImplemented) {
				return x;
			}
			Py_DECREF(x); /* can't do it */
		}
		if (v->ob_type == w->ob_type) {
			goto binop_error;
		}
	}
	if (w->ob_type->tp_as_number != NULL && NEW_STYLE_NUMBER(w)) {
		slot = NB_BINOP(w->ob_type->tp_as_number, op_slot);
		if (*slot) {
			x = (*slot)(v, w);
			if (x != Py_NotImplemented) {
				return x;
			}
			Py_DECREF(x); /* can't do it */
		}
	}
	if (!NEW_STYLE_NUMBER(v) || !NEW_STYLE_NUMBER(w)) {
		int err = PyNumber_CoerceEx(&v, &w);
		if (err < 0) {
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			return NULL;
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		}
		if (err == 0) {
			PyNumberMethods *mv = v->ob_type->tp_as_number;
			if (mv) {
				slot = NB_BINOP(mv, op_slot);
				if (*slot) {
					PyObject *x = (*slot)(v, w);
					Py_DECREF(v);
					Py_DECREF(w);
					return x;
				}
			}
			/* CoerceEx incremented the reference counts */
			Py_DECREF(v);
			Py_DECREF(w);
		}
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	}
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binop_error:
	Py_INCREF(Py_NotImplemented);
	return Py_NotImplemented;
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}
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static PyObject *
binary_op(PyObject *v, PyObject *w, const int op_slot, const char *op_name)
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{
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	PyObject *result = binary_op1(v, w, op_slot);
	if (result == Py_NotImplemented) {
		Py_DECREF(Py_NotImplemented);
		PyErr_Format(PyExc_TypeError, 
				"unsupported operand type(s) for %s", op_name);
		return NULL;
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	}
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	return result;
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}

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384 385
/*
  Calling scheme used for ternary operations:
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  v	w	z	Action
  -------------------------------------------------------------------
  new	new	new	v.op(v,w,z), w.op(v,w,z), z.op(v,w,z)
  new	old	new	v.op(v,w,z), z.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  old	new	new	w.op(v,w,z), z.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  old	old	new	z.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  new	new	old	v.op(v,w,z), w.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  new	old	old	v.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  old	new	old	w.op(v,w,z), coerce(v,w,z), v.op(v,w,z)
  old	old	old	coerce(v,w,z), v.op(v,w,z)
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  Legend:
  -------
  * new == new style number
  * old == old style number
  * Action indicates the order in which operations are tried until either
    a valid result is produced or an error occurs.
  * coerce(v,w,z) actually does: coerce(v,w), coerce(v,z), coerce(w,z) and
    only if z != Py_None; if z == Py_None, then it is treated as absent
    variable and only coerce(v,w) is tried.

 */
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static PyObject *
ternary_op(PyObject *v,
	   PyObject *w,
	   PyObject *z,
	   const int op_slot,
	   const char *op_name)
{
	PyNumberMethods *mv, *mw, *mz;
	register PyObject *x = NULL;
	register ternaryfunc *slot;
	
	mv = v->ob_type->tp_as_number;
	if (mv != NULL && NEW_STYLE_NUMBER(v)) {
		/* try v.op(v,w,z) */
		slot = NB_TERNOP(mv, op_slot);
		if (*slot) {
			x = (*slot)(v, w, z);
			if (x != Py_NotImplemented)
				return x;
			/* Can't do it... fall through */
			Py_DECREF(x);
		}
		if (v->ob_type == w->ob_type &&
				(z == Py_None || z->ob_type == v->ob_type)) {
			goto ternary_error;
		}
436
	}
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	mw = w->ob_type->tp_as_number;
	if (mw != NULL && NEW_STYLE_NUMBER(w)) {
		/* try w.op(v,w,z) */
		slot = NB_TERNOP(mw,op_slot);
		if (*slot) {
			x = (*slot)(v, w, z);
			if (x != Py_NotImplemented)
				return x;
			/* Can't do it... fall through */
			Py_DECREF(x);
		}
		if (NEW_STYLE_NUMBER(v) &&
				(z == Py_None || z->ob_type == v->ob_type)) {
			goto ternary_error;
		}
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	}
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	mz = z->ob_type->tp_as_number;
	if (mz != NULL && NEW_STYLE_NUMBER(z)) {
		/* try: z.op(v,w,z) */
		slot = NB_TERNOP(mz, op_slot);
		if (*slot) {
			x = (*slot)(v, w, z);
			if (x != Py_NotImplemented)
				return x;
			/* Can't do it... fall through */
			Py_DECREF(x);
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		}
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	}

	if (!NEW_STYLE_NUMBER(v) || !NEW_STYLE_NUMBER(w) ||
			(z != Py_None && !NEW_STYLE_NUMBER(z))) {
		/* we have an old style operand, coerce */
		PyObject *v1, *z1, *w2, *z2;
		int c;
		
		c = PyNumber_Coerce(&v, &w);
		if (c != 0)
			goto error3;

		/* Special case: if the third argument is None, it is
		   treated as absent argument and not coerced. */
		if (z == Py_None) {
			if (v->ob_type->tp_as_number) {
				slot = NB_TERNOP(v->ob_type->tp_as_number,
						 op_slot);
				if (*slot)
					x = (*slot)(v, w, z);
				else
					c = -1;
			}
			else
				c = -1;
			goto error2;
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		}
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		v1 = v;
		z1 = z;
		c = PyNumber_Coerce(&v1, &z1);
		if (c != 0)
			goto error2;
		w2 = w;
		z2 = z1;
		c = PyNumber_Coerce(&w2, &z2);
		if (c != 0)
			goto error1;

		if (v1->ob_type->tp_as_number != NULL) {
			slot = NB_TERNOP(v1->ob_type->tp_as_number,
					 op_slot);
			if (*slot)
				x = (*slot)(v1, w2, z2);
			else
				c = -1;
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		}
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		else
			c = -1;

		Py_DECREF(w2);
		Py_DECREF(z2);
	error1:
		Py_DECREF(v1);
		Py_DECREF(z1);
	error2:
		Py_DECREF(v);
		Py_DECREF(w);
	error3:
		if (c >= 0)
			return x;
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	}
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ternary_error:
	PyErr_Format(PyExc_TypeError, "unsupported operand type(s) for %s",
			op_name);
	return NULL;
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}

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#define BINARY_FUNC(func, op, op_name) \
    PyObject * \
    func(PyObject *v, PyObject *w) { \
	    return binary_op(v, w, NB_SLOT(op), op_name); \
    }

BINARY_FUNC(PyNumber_Or, nb_or, "|")
BINARY_FUNC(PyNumber_Xor, nb_xor, "^")
BINARY_FUNC(PyNumber_And, nb_and, "&")
BINARY_FUNC(PyNumber_Lshift, nb_lshift, "<<")
BINARY_FUNC(PyNumber_Rshift, nb_rshift, ">>")
BINARY_FUNC(PyNumber_Subtract, nb_subtract, "-")
BINARY_FUNC(PyNumber_Multiply, nb_multiply, "*")
BINARY_FUNC(PyNumber_Divide, nb_divide, "/")
BINARY_FUNC(PyNumber_Divmod, nb_divmod, "divmod()")

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PyObject *
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PyNumber_Add(PyObject *v, PyObject *w)
550
{
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	PyObject *result = binary_op1(v, w, NB_SLOT(nb_add));
	if (result == Py_NotImplemented) {
		PySequenceMethods *m = v->ob_type->tp_as_sequence;
		Py_DECREF(Py_NotImplemented);
		if (m && m->sq_concat) {
			result = (*m->sq_concat)(v, w);
		}
                else {
                    PyErr_SetString(PyExc_TypeError,
                                    "unsupported operand types for +");
                    result = NULL;
                }
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	}
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	return result;
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}

PyObject *
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PyNumber_Remainder(PyObject *v, PyObject *w)
569
{
570
	if (PyString_Check(v))
571
		return PyString_Format(v, w);
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	else if (PyUnicode_Check(v))
		return PyUnicode_Format(v, w);
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	return binary_op(v, w, NB_SLOT(nb_remainder), "%");
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}

PyObject *
578
PyNumber_Power(PyObject *v, PyObject *w, PyObject *z)
579
{
580
	return ternary_op(v, w, z, NB_SLOT(nb_power), "** or pow()");
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}

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/* Binary in-place operators */

/* The in-place operators are defined to fall back to the 'normal',
586
   non in-place operations, if the in-place methods are not in place.
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   - If the left hand object has the appropriate struct members, and
     they are filled, call the appropriate function and return the
     result.  No coercion is done on the arguments; the left-hand object
     is the one the operation is performed on, and it's up to the
     function to deal with the right-hand object.
593
     
594 595
   - Otherwise, in-place modification is not supported. Handle it exactly as
     a non in-place operation of the same kind.
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   */

#define HASINPLACE(t) PyType_HasFeature((t)->ob_type, Py_TPFLAGS_HAVE_INPLACEOPS)

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static PyObject *
binary_iop(PyObject *v, PyObject *w, const int iop_slot, const int op_slot,
		const char *op_name)
{
	PyNumberMethods *mv = v->ob_type->tp_as_number;
	if (mv != NULL && HASINPLACE(v)) {
		binaryfunc *slot = NB_BINOP(mv, iop_slot);
		if (*slot) {
			PyObject *x = (*slot)(v, w);
			if (x != Py_NotImplemented) {
				return x;
			}
			Py_DECREF(x);
		}
615
	}
616
	return binary_op(v, w, op_slot, op_name);
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}

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#define INPLACE_BINOP(func, iop, op, op_name) \
	PyObject * \
	func(PyObject *v, PyObject *w) { \
		return binary_iop(v, w, NB_SLOT(iop), NB_SLOT(op), op_name); \
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	}

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INPLACE_BINOP(PyNumber_InPlaceOr, nb_inplace_or, nb_or, "|=")
INPLACE_BINOP(PyNumber_InPlaceXor, nb_inplace_xor, nb_xor, "^=")
INPLACE_BINOP(PyNumber_InPlaceAnd, nb_inplace_and, nb_and, "&=")
INPLACE_BINOP(PyNumber_InPlaceLshift, nb_inplace_lshift, nb_lshift, "<<=")
INPLACE_BINOP(PyNumber_InPlaceRshift, nb_inplace_rshift, nb_rshift, ">>=")
INPLACE_BINOP(PyNumber_InPlaceSubtract, nb_inplace_subtract, nb_subtract, "-=")
INPLACE_BINOP(PyNumber_InPlaceDivide, nb_inplace_divide, nb_divide, "/=")
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PyObject *
PyNumber_InPlaceAdd(PyObject *v, PyObject *w)
{
636
	binaryfunc f = NULL;
637

638
	if (v->ob_type->tp_as_sequence != NULL) {
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		if (HASINPLACE(v))
			f = v->ob_type->tp_as_sequence->sq_inplace_concat;
		if (f == NULL)
			f = v->ob_type->tp_as_sequence->sq_concat;
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		if (f != NULL)
			return (*f)(v, w);
	}
646
	return binary_iop(v, w, NB_SLOT(nb_inplace_add), NB_SLOT(nb_add), "+=");
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}

PyObject *
PyNumber_InPlaceMultiply(PyObject *v, PyObject *w)
{
652
	PyObject * (*g)(PyObject *, int) = NULL;
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	if (HASINPLACE(v) && v->ob_type->tp_as_sequence &&
		(g = v->ob_type->tp_as_sequence->sq_inplace_repeat)) {
		long n;
656
		if (PyInt_Check(w)) {
657
			n  = PyInt_AsLong(w);
658 659
		}
		else if (PyLong_Check(w)) {
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			n = PyLong_AsLong(w);
			if (n == -1 && PyErr_Occurred())
				return NULL;
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		}
		else {
665
			return type_error("can't multiply sequence to non-int");
666
		}
667
		return (*g)(v, (int)n);
668
	}
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	return binary_iop(v, w, NB_SLOT(nb_inplace_multiply),
				NB_SLOT(nb_multiply), "*=");
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}



PyObject *
PyNumber_InPlaceRemainder(PyObject *v, PyObject *w)
{
	if (PyString_Check(v))
		return PyString_Format(v, w);
	else if (PyUnicode_Check(v))
		return PyUnicode_Format(v, w);
	else
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		return binary_iop(v, w, NB_SLOT(nb_inplace_remainder),
					NB_SLOT(nb_remainder), "%=");
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}

687

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PyObject *
PyNumber_InPlacePower(PyObject *v, PyObject *w, PyObject *z)
{
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	if (HASINPLACE(v) && v->ob_type->tp_as_number &&
	    v->ob_type->tp_as_number->nb_inplace_power != NULL) {
		return ternary_op(v, w, z, NB_SLOT(nb_inplace_power), "**=");
	}
	else {
		return ternary_op(v, w, z, NB_SLOT(nb_power), "**=");
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	}
}


701
/* Unary operators and functions */
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PyObject *
704
PyNumber_Negative(PyObject *o)
705
{
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	PyNumberMethods *m;

	if (o == NULL)
		return null_error();
	m = o->ob_type->tp_as_number;
	if (m && m->nb_negative)
		return (*m->nb_negative)(o);

	return type_error("bad operand type for unary -");
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}

PyObject *
718
PyNumber_Positive(PyObject *o)
719
{
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	PyNumberMethods *m;

	if (o == NULL)
		return null_error();
	m = o->ob_type->tp_as_number;
	if (m && m->nb_positive)
		return (*m->nb_positive)(o);

	return type_error("bad operand type for unary +");
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}

PyObject *
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PyNumber_Invert(PyObject *o)
733
{
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	PyNumberMethods *m;

	if (o == NULL)
		return null_error();
	m = o->ob_type->tp_as_number;
	if (m && m->nb_invert)
		return (*m->nb_invert)(o);

	return type_error("bad operand type for unary ~");
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}

PyObject *
746
PyNumber_Absolute(PyObject *o)
747
{
748
	PyNumberMethods *m;
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	if (o == NULL)
		return null_error();
	m = o->ob_type->tp_as_number;
	if (m && m->nb_absolute)
		return m->nb_absolute(o);
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756
	return type_error("bad operand type for abs()");
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}

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/* Add a check for embedded NULL-bytes in the argument. */
static PyObject *
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int_from_string(const char *s, int len)
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{
	char *end;
	PyObject *x;

	x = PyInt_FromString((char*)s, &end, 10);
	if (x == NULL)
		return NULL;
	if (end != s + len) {
		PyErr_SetString(PyExc_ValueError,
				"null byte in argument for int()");
		Py_DECREF(x);
		return NULL;
	}
	return x;
}

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PyObject *
779
PyNumber_Int(PyObject *o)
780
{
781
	PyNumberMethods *m;
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	const char *buffer;
	int buffer_len;
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785 786
	if (o == NULL)
		return null_error();
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	if (PyInt_Check(o)) {
		Py_INCREF(o);
		return o;
	}
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	if (PyString_Check(o))
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		return int_from_string(PyString_AS_STRING(o), 
				       PyString_GET_SIZE(o));
	if (PyUnicode_Check(o))
		return PyInt_FromUnicode(PyUnicode_AS_UNICODE(o),
					 PyUnicode_GET_SIZE(o),
					 10);
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	m = o->ob_type->tp_as_number;
	if (m && m->nb_int)
		return m->nb_int(o);
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	if (!PyObject_AsCharBuffer(o, &buffer, &buffer_len))
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		return int_from_string((char*)buffer, buffer_len);
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	return type_error("object can't be converted to int");
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}

807
/* Add a check for embedded NULL-bytes in the argument. */
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static PyObject *
809
long_from_string(const char *s, int len)
810
{
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	char *end;
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	PyObject *x;

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	x = PyLong_FromString((char*)s, &end, 10);
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	if (x == NULL)
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		return NULL;
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	if (end != s + len) {
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		PyErr_SetString(PyExc_ValueError,
				"null byte in argument for long()");
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		Py_DECREF(x);
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		return NULL;
	}
	return x;
}

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PyObject *
827
PyNumber_Long(PyObject *o)
828
{
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	PyNumberMethods *m;
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	const char *buffer;
	int buffer_len;
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	if (o == NULL)
		return null_error();
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	if (PyLong_Check(o)) {
		Py_INCREF(o);
		return o;
	}
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	if (PyString_Check(o))
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		/* need to do extra error checking that PyLong_FromString() 
		 * doesn't do.  In particular long('9.5') must raise an
		 * exception, not truncate the float.
		 */
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		return long_from_string(PyString_AS_STRING(o),
					PyString_GET_SIZE(o));
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	if (PyUnicode_Check(o))
		/* The above check is done in PyLong_FromUnicode(). */
		return PyLong_FromUnicode(PyUnicode_AS_UNICODE(o),
					  PyUnicode_GET_SIZE(o),
					  10);
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	m = o->ob_type->tp_as_number;
	if (m && m->nb_long)
		return m->nb_long(o);
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	if (!PyObject_AsCharBuffer(o, &buffer, &buffer_len))
		return long_from_string(buffer, buffer_len);
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857
	return type_error("object can't be converted to long");
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}

PyObject *
861
PyNumber_Float(PyObject *o)
862
{
863
	PyNumberMethods *m;
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	if (o == NULL)
		return null_error();
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	if (PyFloat_Check(o)) {
		Py_INCREF(o);
		return o;
	}
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	if (!PyString_Check(o)) {
		m = o->ob_type->tp_as_number;
		if (m && m->nb_float)
			return m->nb_float(o);
	}
	return PyFloat_FromString(o, NULL);
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}

879
/* Operations on sequences */
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881
int
882
PySequence_Check(PyObject *s)
883
{
884
	return s != NULL && s->ob_type->tp_as_sequence;
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}

887
int
888
PySequence_Size(PyObject *s)
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{
890
	PySequenceMethods *m;
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	if (s == NULL) {
		null_error();
		return -1;
	}
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	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_length)
		return m->sq_length(s);
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	type_error("len() of unsized object");
	return -1;
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}

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#undef PySequence_Length
int
PySequence_Length(PyObject *s)
{
	return PySequence_Size(s);
}
#define PySequence_Length PySequence_Size

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PyObject *
914
PySequence_Concat(PyObject *s, PyObject *o)
915
{
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	PySequenceMethods *m;

	if (s == NULL || o == NULL)
		return null_error();
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	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_concat)
		return m->sq_concat(s, o);
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925
	return type_error("object can't be concatenated");
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}

PyObject *
929
PySequence_Repeat(PyObject *o, int count)
930
{
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	PySequenceMethods *m;
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	if (o == NULL)
		return null_error();
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	m = o->ob_type->tp_as_sequence;
	if (m && m->sq_repeat)
		return m->sq_repeat(o, count);

	return type_error("object can't be repeated");
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}

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PyObject *
PySequence_InPlaceConcat(PyObject *s, PyObject *o)
{
	PySequenceMethods *m;

	if (s == NULL || o == NULL)
		return null_error();

	m = s->ob_type->tp_as_sequence;
	if (m && HASINPLACE(s) && m->sq_inplace_concat)
		return m->sq_inplace_concat(s, o);
	if (m && m->sq_concat)
		return m->sq_concat(s, o);

	return type_error("object can't be concatenated");
}

PyObject *
PySequence_InPlaceRepeat(PyObject *o, int count)
{
	PySequenceMethods *m;

	if (o == NULL)
		return null_error();

	m = o->ob_type->tp_as_sequence;
	if (m && HASINPLACE(o) && m->sq_inplace_repeat)
		return m->sq_inplace_repeat(o, count);
	if (m && m->sq_repeat)
		return m->sq_repeat(o, count);

	return type_error("object can't be repeated");
}

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PyObject *
978
PySequence_GetItem(PyObject *s, int i)
979
{
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	PySequenceMethods *m;

	if (s == NULL)
		return null_error();

	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_item) {
		if (i < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
					return NULL;
				i += l;
			}
		}
		return m->sq_item(s, i);
	}
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	return type_error("unindexable object");
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}

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static PyObject *
sliceobj_from_intint(int i, int j)
{
	PyObject *start, *end, *slice;
	start = PyInt_FromLong((long)i);
	if (!start)
		return NULL;
	end = PyInt_FromLong((long)j);
	if (!end) {
		Py_DECREF(start);
		return NULL;
	}
	slice = PySlice_New(start, end, NULL);
	Py_DECREF(start);
	Py_DECREF(end);
	return slice;
}

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PyObject *
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PySequence_GetSlice(PyObject *s, int i1, int i2)
1021
{
1022
	PySequenceMethods *m;
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	PyMappingMethods *mp;
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	if (!s) return null_error();

	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_slice) {
		if (i1 < 0 || i2 < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
					return NULL;
				if (i1 < 0)
					i1 += l;
				if (i2 < 0)
					i2 += l;
			}
		}
		return m->sq_slice(s, i1, i2);
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	} else if ((mp = s->ob_type->tp_as_mapping) && mp->mp_subscript) {
		PyObject *res;
		PyObject *slice = sliceobj_from_intint(i1, i2);
		if (!slice)
			return NULL;
		res = mp->mp_subscript(s, slice);
		Py_DECREF(slice);
		return res;
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	}
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1051
	return type_error("unsliceable object");
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}

int
1055
PySequence_SetItem(PyObject *s, int i, PyObject *o)
1056
{
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	PySequenceMethods *m;

	if (s == NULL) {
		null_error();
		return -1;
	}

	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_ass_item) {
		if (i < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
1070
					return -1;
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				i += l;
			}
		}
		return m->sq_ass_item(s, i, o);
	}

	type_error("object doesn't support item assignment");
	return -1;
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}

1081
int
1082
PySequence_DelItem(PyObject *s, int i)
1083
{
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	PySequenceMethods *m;

	if (s == NULL) {
		null_error();
		return -1;
	}

	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_ass_item) {
		if (i < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
1097
					return -1;
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				i += l;
			}
		}
		return m->sq_ass_item(s, i, (PyObject *)NULL);
	}

	type_error("object doesn't support item deletion");
	return -1;
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}

1108
int
1109
PySequence_SetSlice(PyObject *s, int i1, int i2, PyObject *o)
1110
{
1111
	PySequenceMethods *m;
1112
	PyMappingMethods *mp;
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	if (s == NULL) {
		null_error();
		return -1;
	}
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	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_ass_slice) {
		if (i1 < 0 || i2 < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
1125
					return -1;
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				if (i1 < 0)
					i1 += l;
				if (i2 < 0)
					i2 += l;
			}
		}
		return m->sq_ass_slice(s, i1, i2, o);
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	} else if ((mp = s->ob_type->tp_as_mapping) && mp->mp_ass_subscript) {
		int res;
		PyObject *slice = sliceobj_from_intint(i1, i2);
		if (!slice)
			return -1;
		res = mp->mp_ass_subscript(s, slice, o);
		Py_DECREF(slice);
		return res;
1141
	}
1142

1143 1144
	type_error("object doesn't support slice assignment");
	return -1;
1145 1146
}

1147
int
1148
PySequence_DelSlice(PyObject *s, int i1, int i2)
1149
{
1150
	PySequenceMethods *m;
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1152 1153 1154 1155
	if (s == NULL) {
		null_error();
		return -1;
	}
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	m = s->ob_type->tp_as_sequence;
	if (m && m->sq_ass_slice) {
		if (i1 < 0 || i2 < 0) {
			if (m->sq_length) {
				int l = (*m->sq_length)(s);
				if (l < 0)
1163
					return -1;
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				if (i1 < 0)
					i1 += l;
				if (i2 < 0)
					i2 += l;
			}
		}
		return m->sq_ass_slice(s, i1, i2, (PyObject *)NULL);
	}
	type_error("object doesn't support slice deletion");
	return -1;
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}

1176
PyObject *
1177
PySequence_Tuple(PyObject *v)
1178
{
1179
	PySequenceMethods *m;
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	if (v == NULL)
		return null_error();
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	if (PyTuple_Check(v)) {
		Py_INCREF(v);
		return v;
	}

	if (PyList_Check(v))
		return PyList_AsTuple(v);

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	/* There used to be code for strings here, but tuplifying strings is
	   not a common activity, so I nuked it.  Down with code bloat! */
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	/* Generic sequence object */
	m = v->ob_type->tp_as_sequence;
	if (m && m->sq_item) {
		int i;
		PyObject *t;
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		int n = PySequence_Size(v);
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		if (n < 0)
			return NULL;
		t = PyTuple_New(n);
		if (t == NULL)
			return NULL;
1206
		for (i = 0; ; i++) {
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			PyObject *item = (*m->sq_item)(v, i);
			if (item == NULL) {
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				if (PyErr_ExceptionMatches(PyExc_IndexError))
					PyErr_Clear();
				else {
					Py_DECREF(t);
					t = NULL;
				}
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				break;
			}
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			if (i >= n) {
				if (n < 500)
					n += 10;
				else
					n += 100;
				if (_PyTuple_Resize(&t, n, 0) != 0)
					break;
			}
			PyTuple_SET_ITEM(t, i, item);
1226
		}
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		if (i < n && t != NULL)
			_PyTuple_Resize(&t, i, 0);
1229
		return t;
1230
	}
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	/* None of the above */
	return type_error("tuple() argument must be a sequence");
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}

1236
PyObject *
1237
PySequence_List(PyObject *v)
1238
{
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	PySequenceMethods *m;

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	if (v == NULL)
		return null_error();

	if (PyList_Check(v))
		return PyList_GetSlice(v, 0, PyList_GET_SIZE(v));

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	m = v->ob_type->tp_as_sequence;
	if (m && m->sq_item) {
		int i;
		PyObject *l;
1251
		int n = PySequence_Size(v);
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		if (n < 0)
			return NULL;
		l = PyList_New(n);
		if (l == NULL)
			return NULL;
1257
		for (i = 0; ; i++) {
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			PyObject *item = (*m->sq_item)(v, i);
			if (item == NULL) {
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				if (PyErr_ExceptionMatches(PyExc_IndexError))
					PyErr_Clear();
				else {
					Py_DECREF(l);
					l = NULL;
				}
				break;
			}
			if (i < n)
				PyList_SET_ITEM(l, i, item);
			else if (PyList_Append(l, item) < 0) {
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				Py_DECREF(l);
				l = NULL;
				break;
			}
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		}
		if (i < n && l != NULL) {
			if (PyList_SetSlice(l, i, n, (PyObject *)NULL) != 0) {
				Py_DECREF(l);
				l = NULL;
			}
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		}
		return l;
	}
	return type_error("list() argument must be a sequence");
}
1286

Andrew M. Kuchling's avatar
Andrew M. Kuchling committed
1287
PyObject *
1288
PySequence_Fast(PyObject *v, const char *m)
Andrew M. Kuchling's avatar
Andrew M. Kuchling committed
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{
	if (v == NULL)
		return null_error();

	if (PyList_Check(v) || PyTuple_Check(v)) {
		Py_INCREF(v);
		return v;
	}

	v = PySequence_Tuple(v);
	if (v == NULL && PyErr_ExceptionMatches(PyExc_TypeError))
		return type_error(m);

	return v;
}

1305
int
1306
PySequence_Count(PyObject *s, PyObject *o)
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{
	int l, i, n, cmp, err;
	PyObject *item;
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	if (s == NULL || o == NULL) {
		null_error();
		return -1;
	}
	
1316
	l = PySequence_Size(s);
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	if (l < 0)
		return -1;

	n = 0;
	for (i = 0; i < l; i++) {
		item = PySequence_GetItem(s, i);
		if (item == NULL)
			return -1;
		err = PyObject_Cmp(item, o, &cmp);
		Py_DECREF(item);
		if (err < 0)
			return err;
		if (cmp == 0)
			n++;
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	}
1332
	return n;
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}

1335
int
1336
PySequence_Contains(PyObject *w, PyObject *v) /* v in w */
1337
{
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	int i, cmp;
	PyObject *x;
	PySequenceMethods *sq;

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	if(PyType_HasFeature(w->ob_type, Py_TPFLAGS_HAVE_SEQUENCE_IN)) {
		sq = w->ob_type->tp_as_sequence;
	        if(sq != NULL && sq->sq_contains != NULL)
			return (*sq->sq_contains)(w, v);
	}
	
	/* If there is no better way to check whether an item is is contained,
	   do it the hard way */
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	sq = w->ob_type->tp_as_sequence;
	if (sq == NULL || sq->sq_item == NULL) {
		PyErr_SetString(PyExc_TypeError,
			"'in' or 'not in' needs sequence right argument");
		return -1;
	}

	for (i = 0; ; i++) {
		x = (*sq->sq_item)(w, i);
		if (x == NULL) {
1360
			if (PyErr_ExceptionMatches(PyExc_IndexError)) {
1361 1362 1363 1364 1365
				PyErr_Clear();
				break;
			}
			return -1;
		}
1366
		cmp = PyObject_RichCompareBool(v, x, Py_EQ);
1367
		Py_XDECREF(x);
1368
		if (cmp > 0)
1369
			return 1;
1370
		if (cmp < 0)
1371 1372 1373 1374
			return -1;
	}

	return 0;
1375 1376
}

1377 1378 1379
/* Backwards compatibility */
#undef PySequence_In
int
1380
PySequence_In(PyObject *w, PyObject *v)
1381
{
1382
	return PySequence_Contains(w, v);
1383 1384
}

1385
int
1386
PySequence_Index(PyObject *s, PyObject *o)
1387
{
1388 1389 1390 1391 1392 1393 1394 1395
	int l, i, cmp, err;
	PyObject *item;

	if (s == NULL || o == NULL) {
		null_error();
		return -1;
	}
	
1396
	l = PySequence_Size(s);
1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413
	if (l < 0)
		return -1;

	for (i = 0; i < l; i++) {
		item = PySequence_GetItem(s, i);
		if (item == NULL)
			return -1;
		err = PyObject_Cmp(item, o, &cmp);
		Py_DECREF(item);
		if (err < 0)
			return err;
		if (cmp == 0)
			return i;
	}

	PyErr_SetString(PyExc_ValueError, "sequence.index(x): x not in list");
	return -1;
1414 1415
}

1416 1417 1418
/* Operations on mappings */

int
1419
PyMapping_Check(PyObject *o)
1420
{
1421
	return o && o->ob_type->tp_as_mapping;
1422 1423
}

1424
int
1425
PyMapping_Size(PyObject *o)
1426
{
1427
	PyMappingMethods *m;
1428

1429 1430 1431 1432
	if (o == NULL) {
		null_error();
		return -1;
	}
1433

1434 1435 1436
	m = o->ob_type->tp_as_mapping;
	if (m && m->mp_length)
		return m->mp_length(o);
1437

1438 1439
	type_error("len() of unsized object");
	return -1;
1440 1441
}

1442 1443 1444 1445 1446 1447 1448 1449
#undef PyMapping_Length
int
PyMapping_Length(PyObject *o)
{
	return PyMapping_Size(o);
}
#define PyMapping_Length PyMapping_Size

1450
PyObject *
1451
PyMapping_GetItemString(PyObject *o, char *key)
1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466
{
	PyObject *okey, *r;

	if (key == NULL)
		return null_error();

	okey = PyString_FromString(key);
	if (okey == NULL)
		return NULL;
	r = PyObject_GetItem(o, okey);
	Py_DECREF(okey);
	return r;
}

int
1467
PyMapping_SetItemString(PyObject *o, char *key, PyObject *value)
1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478
{
	PyObject *okey;
	int r;

	if (key == NULL) {
		null_error();
		return -1;
	}

	okey = PyString_FromString(key);
	if (okey == NULL)
1479
		return -1;
1480 1481 1482 1483 1484 1485
	r = PyObject_SetItem(o, okey, value);
	Py_DECREF(okey);
	return r;
}

int
1486
PyMapping_HasKeyString(PyObject *o, char *key)
1487
{
1488 1489 1490 1491 1492 1493 1494 1495 1496
	PyObject *v;

	v = PyMapping_GetItemString(o, key);
	if (v) {
		Py_DECREF(v);
		return 1;
	}
	PyErr_Clear();
	return 0;
1497 1498
}

1499
int
1500
PyMapping_HasKey(PyObject *o, PyObject *key)
1501
{
1502 1503 1504 1505 1506 1507 1508 1509 1510
	PyObject *v;

	v = PyObject_GetItem(o, key);
	if (v) {
		Py_DECREF(v);
		return 1;
	}
	PyErr_Clear();
	return 0;
1511 1512
}

1513 1514 1515 1516
/* Operations on callable objects */

/* XXX PyCallable_Check() is in object.c */

1517
PyObject *
1518
PyObject_CallObject(PyObject *o, PyObject *a)
1519
{
1520 1521
	PyObject *r;
	PyObject *args = a;
1522

1523 1524 1525 1526 1527 1528 1529
	if (args == NULL) {
		args = PyTuple_New(0);
		if (args == NULL)
			return NULL;
	}

	r = PyEval_CallObject(o, args);
1530

1531
	if (args != a) {
1532
		Py_DECREF(args);
1533
	}
1534 1535 1536

	return r;
}
1537 1538

PyObject *
1539
PyObject_CallFunction(PyObject *callable, char *format, ...)
1540
{
1541 1542 1543
	va_list va;
	PyObject *args, *retval;
	va_start(va, format);
1544

1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574
	if (callable == NULL) {
		va_end(va);
		return null_error();
	}

	if (format)
		args = Py_VaBuildValue(format, va);
	else
		args = PyTuple_New(0);

	va_end(va);
	
	if (args == NULL)
		return NULL;

	if (!PyTuple_Check(args)) {
		PyObject *a;

		a = PyTuple_New(1);
		if (a == NULL)
			return NULL;
		if (PyTuple_SetItem(a, 0, args) < 0)
			return NULL;
		args = a;
	}
	retval = PyObject_CallObject(callable, args);

	Py_DECREF(args);

	return retval;
1575 1576 1577 1578 1579
}

PyObject *
PyObject_CallMethod(PyObject *o, char *name, char *format, ...)
{
1580 1581 1582
	va_list va;
	PyObject *args, *func = 0, *retval;
	va_start(va, format);
1583

1584 1585 1586 1587
	if (o == NULL || name == NULL) {
		va_end(va);
		return null_error();
	}
1588

1589 1590 1591 1592 1593 1594
	func = PyObject_GetAttrString(o, name);
	if (func == NULL) {
		va_end(va);
		PyErr_SetString(PyExc_AttributeError, name);
		return 0;
	}
1595

1596 1597 1598 1599
	if (!PyCallable_Check(func)) {
		va_end(va);
		return type_error("call of non-callable attribute");
	}
1600

1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627
	if (format && *format)
		args = Py_VaBuildValue(format, va);
	else
		args = PyTuple_New(0);

	va_end(va);

	if (!args)
		return NULL;

	if (!PyTuple_Check(args)) {
		PyObject *a;

		a = PyTuple_New(1);
		if (a == NULL)
			return NULL;
		if (PyTuple_SetItem(a, 0, args) < 0)
			return NULL;
		args = a;
	}

	retval = PyObject_CallObject(func, args);

	Py_DECREF(args);
	Py_DECREF(func);

	return retval;
1628
}