/* ----------------------------------------------------------------------------- * std_vector.i * ----------------------------------------------------------------------------- */ %include %{ #include #include %} namespace std { template class vector { public: typedef size_t size_type; typedef ptrdiff_t difference_type; typedef T value_type; typedef value_type* pointer; typedef const value_type* const_pointer; typedef value_type& reference; typedef const value_type& const_reference; vector(); vector(size_type n); vector(const vector& other); size_type size() const; size_type capacity() const; void reserve(size_type n); void clear(); %rename(push) push_back; void push_back(const value_type& x); %extend { bool is_empty() const { return $self->empty(); } T pop() throw (std::out_of_range) { if (self->size() == 0) throw std::out_of_range("pop from empty vector"); T x = self->back(); self->pop_back(); return x; } const_reference get(int i) throw (std::out_of_range) { int size = int(self->size()); if (i>=0 && isize()); if (i>=0 && i class vector { public: typedef size_t size_type; typedef ptrdiff_t difference_type; typedef bool value_type; typedef value_type* pointer; typedef const value_type* const_pointer; typedef value_type& reference; typedef bool const_reference; vector(); vector(size_type n); vector(const vector& other); size_type size() const; size_type capacity() const; void reserve(size_type n); void clear(); %rename(push) push_back; void push_back(const value_type& x); %extend { bool is_empty() const { return $self->empty(); } bool pop() throw (std::out_of_range) { if (self->size() == 0) throw std::out_of_range("pop from empty vector"); bool x = self->back(); self->pop_back(); return x; } bool get(int i) throw (std::out_of_range) { int size = int(self->size()); if (i>=0 && isize()); if (i>=0 && i