/* Multimaps */ %include %fragment("StdMultimapTraits","header",fragment="StdMapCommonTraits") { namespace swig { template struct traits_asptr > { typedef std::multimap multimap_type; static int asptr(PyObject *obj, std::multimap **val) { int res = SWIG_ERROR; if (PyDict_Check(obj)) { SwigVar_PyObject items = PyObject_CallMethod(obj,(char *)"items",NULL); %#if PY_VERSION_HEX >= 0x03000000 /* In Python 3.x the ".items()" method returns a dict_items object */ items = PySequence_Fast(items, ".items() didn't return a sequence!"); %#endif res = traits_asptr_stdseq, std::pair >::asptr(items, val); } else { multimap_type *p = 0; swig_type_info *descriptor = swig::type_info(); res = descriptor ? SWIG_ConvertPtr(obj, (void **)&p, descriptor, 0) : SWIG_ERROR; if (SWIG_IsOK(res) && val) *val = p; } return res; } }; template struct traits_from > { typedef std::multimap multimap_type; typedef typename multimap_type::const_iterator const_iterator; typedef typename multimap_type::size_type size_type; static PyObject *from(const multimap_type& multimap) { swig_type_info *desc = swig::type_info(); if (desc && desc->clientdata) { return SWIG_InternalNewPointerObj(new multimap_type(multimap), desc, SWIG_POINTER_OWN); } else { size_type size = multimap.size(); Py_ssize_t pysize = (size <= (size_type) INT_MAX) ? (Py_ssize_t) size : -1; if (pysize < 0) { SWIG_PYTHON_THREAD_BEGIN_BLOCK; PyErr_SetString(PyExc_OverflowError, "multimap size not valid in python"); SWIG_PYTHON_THREAD_END_BLOCK; return NULL; } PyObject *obj = PyDict_New(); for (const_iterator i= multimap.begin(); i!= multimap.end(); ++i) { swig::SwigVar_PyObject key = swig::from(i->first); swig::SwigVar_PyObject val = swig::from(i->second); PyDict_SetItem(obj, key, val); } return obj; } } }; } } %define %swig_multimap_methods(Type...) %swig_map_common(Type); #if defined(SWIGPYTHON_BUILTIN) %feature("python:slot", "mp_ass_subscript", functype="objobjargproc") __setitem__; #endif %extend { // This will be called through the mp_ass_subscript slot to delete an entry. void __setitem__(const key_type& key) { self->erase(key); } void __setitem__(const key_type& key, const mapped_type& x) throw (std::out_of_range) { self->insert(Type::value_type(key,x)); } } %enddef %include