%fragment("StdTraits","header",fragment="StdTraitsCommon") { namespace swig { /* Traits that provides the from method */ template <class Type> struct traits_from_ptr { static PyObject *from(Type *val, int owner = 0) { return SWIG_InternalNewPointerObj(val, type_info<Type>(), owner); } }; template <class Type> struct traits_from { static PyObject *from(const Type& val) { return traits_from_ptr<Type>::from(new Type(val), 1); } }; template <class Type> struct traits_from<Type *> { static PyObject *from(Type* val) { return traits_from_ptr<Type>::from(val, 0); } }; template <class Type> struct traits_from<const Type *> { static PyObject *from(const Type* val) { return traits_from_ptr<Type>::from(const_cast<Type*>(val), 0); } }; template <class Type> inline PyObject *from(const Type& val) { return traits_from<Type>::from(val); } template <class Type> inline PyObject *from_ptr(Type* val, int owner) { return traits_from_ptr<Type>::from(val, owner); } /* Traits that provides the asval/as/check method */ template <class Type> struct traits_asptr { static int asptr(PyObject *obj, Type **val) { Type *p; int res = SWIG_ConvertPtr(obj, (void**)&p, type_info<Type>(), 0); if (SWIG_IsOK(res)) { if (val) *val = p; } return res; } }; template <class Type> inline int asptr(PyObject *obj, Type **vptr) { return traits_asptr<Type>::asptr(obj, vptr); } template <class Type> struct traits_asval { static int asval(PyObject *obj, Type *val) { if (val) { Type *p = 0; int res = traits_asptr<Type>::asptr(obj, &p); if (!SWIG_IsOK(res)) return res; if (p) { typedef typename noconst_traits<Type>::noconst_type noconst_type; *(const_cast<noconst_type*>(val)) = *p; if (SWIG_IsNewObj(res)){ %delete(p); res = SWIG_DelNewMask(res); } return res; } else { return SWIG_ERROR; } } else { return traits_asptr<Type>::asptr(obj, (Type **)(0)); } } }; template <class Type> struct traits_asval<Type*> { static int asval(PyObject *obj, Type **val) { if (val) { typedef typename noconst_traits<Type>::noconst_type noconst_type; noconst_type *p = 0; int res = traits_asptr<noconst_type>::asptr(obj, &p); if (SWIG_IsOK(res)) { *(const_cast<noconst_type**>(val)) = p; } return res; } else { return traits_asptr<Type>::asptr(obj, (Type **)(0)); } } }; template <class Type> inline int asval(PyObject *obj, Type *val) { return traits_asval<Type>::asval(obj, val); } template <class Type> struct traits_as<Type, value_category> { static Type as(PyObject *obj, bool throw_error) { Type v; int res = asval(obj, &v); if (!obj || !SWIG_IsOK(res)) { if (!PyErr_Occurred()) { ::%type_error(swig::type_name<Type>()); } if (throw_error) throw std::invalid_argument("bad type"); } return v; } }; template <class Type> struct traits_as<Type, pointer_category> { static Type as(PyObject *obj, bool throw_error) { Type *v = 0; int res = (obj ? traits_asptr<Type>::asptr(obj, &v) : SWIG_ERROR); if (SWIG_IsOK(res) && v) { if (SWIG_IsNewObj(res)) { Type r(*v); %delete(v); return r; } else { return *v; } } else { // Uninitialized return value, no Type() constructor required. static Type *v_def = (Type*) malloc(sizeof(Type)); if (!PyErr_Occurred()) { %type_error(swig::type_name<Type>()); } if (throw_error) throw std::invalid_argument("bad type"); memset(v_def,0,sizeof(Type)); return *v_def; } } }; template <class Type> struct traits_as<Type*, pointer_category> { static Type* as(PyObject *obj, bool throw_error) { Type *v = 0; int res = (obj ? traits_asptr<Type>::asptr(obj, &v) : SWIG_ERROR); if (SWIG_IsOK(res)) { return v; } else { if (!PyErr_Occurred()) { %type_error(swig::type_name<Type>()); } if (throw_error) throw std::invalid_argument("bad type"); return 0; } } }; template <class Type> inline Type as(PyObject *obj, bool te = false) { return traits_as<Type, typename traits<Type>::category>::as(obj, te); } template <class Type> struct traits_check<Type, value_category> { static bool check(PyObject *obj) { int res = obj ? asval(obj, (Type *)(0)) : SWIG_ERROR; return SWIG_IsOK(res) ? true : false; } }; template <class Type> struct traits_check<Type, pointer_category> { static bool check(PyObject *obj) { int res = obj ? asptr(obj, (Type **)(0)) : SWIG_ERROR; return SWIG_IsOK(res) ? true : false; } }; template <class Type> inline bool check(PyObject *obj) { return traits_check<Type, typename traits<Type>::category>::check(obj); } } } // // Backward compatibility // #ifdef SWIG_PYTHON_BACKWARD_COMP %{ #include <string> PyObject* SwigInt_FromBool(bool b) { return PyInt_FromLong(b ? 1L : 0L); } double SwigNumber_Check(PyObject* o) { return PyFloat_Check(o) || PyInt_Check(o) || PyLong_Check(o); } double SwigNumber_AsDouble(PyObject* o) { return PyFloat_Check(o) ? PyFloat_AsDouble(o) : (PyInt_Check(o) ? double(PyInt_AsLong(o)) : double(PyLong_AsLong(o))); } PyObject* SwigString_FromString(const std::string& s) { return PyString_FromStringAndSize(s.data(),s.size()); } std::string SwigString_AsString(PyObject* o) { return std::string(PyString_AsString(o)); } %} #endif %define %specialize_std_container(Type,Check,As,From) %{ namespace swig { template <> struct traits_asval<Type > { typedef Type value_type; static int asval(PyObject *obj, value_type *val) { if (Check(obj)) { if (val) *val = As(obj); return SWIG_OK; } return SWIG_ERROR; } }; template <> struct traits_from<Type > { typedef Type value_type; static PyObject *from(const value_type& val) { return From(val); } }; template <> struct traits_check<Type, value_category> { static int check(PyObject *obj) { int res = Check(obj); return obj && res ? res : 0; } }; } %} %enddef #define specialize_std_vector(Type,Check,As,From) %specialize_std_container(%arg(Type),Check,As,From) #define specialize_std_list(Type,Check,As,From) %specialize_std_container(%arg(Type),Check,As,From) #define specialize_std_deque(Type,Check,As,From) %specialize_std_container(%arg(Type),Check,As,From) #define specialize_std_set(Type,Check,As,From) %specialize_std_container(%arg(Type),Check,As,From) #define specialize_std_multiset(Type,Check,As,From) %specialize_std_container(%arg(Type),Check,As,From)