Mainly to use a more normal constructor declaration and to enable classes with more than one template parameter to be used as container types.
139 lines
4.3 KiB
OpenEdge ABL
139 lines
4.3 KiB
OpenEdge ABL
/* -----------------------------------------------------------------------------
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* _std_deque.i
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*
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* This file contains a generic definition of std::deque along with
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* some helper functions. Specific language modules should include
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* this file to generate wrappers.
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* ----------------------------------------------------------------------------- */
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%include <std_except.i>
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%{
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#include <deque>
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#include <stdexcept>
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%}
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/* This macro defines all of the standard methods for a deque. This
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is defined as a macro to simplify the task of specialization. For
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example,
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template<> class deque<int> {
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public:
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%std_deque_methods(int);
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};
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*/
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%define %std_deque_methods_noempty(T...)
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typedef size_t size_type;
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typedef ptrdiff_t difference_type;
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typedef T value_type;
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typedef value_type* pointer;
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typedef const value_type* const_pointer;
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typedef value_type& reference;
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typedef const value_type& const_reference;
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deque();
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deque(unsigned int size, const T& value=T());
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deque(const deque< T > &);
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~deque();
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void assign(unsigned int n, const T& value);
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void swap(deque< T > &x);
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unsigned int size() const;
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unsigned int max_size() const;
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void resize(unsigned int n, T c = T());
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const_reference front();
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const_reference back();
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void push_front(const T& x);
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void push_back(const T& x);
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void pop_front();
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void pop_back();
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void clear();
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/* Some useful extensions */
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%extend {
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const_reference getitem(int i) throw (std::out_of_range) {
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int size = int(self->size());
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if (i<0) i += size;
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if (i>=0 && i<size)
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return (*self)[i];
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else
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throw std::out_of_range("deque index out of range");
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}
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void setitem(int i, const T& x) throw (std::out_of_range) {
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int size = int(self->size());
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if (i<0) i+= size;
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if (i>=0 && i<size)
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(*self)[i] = x;
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else
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throw std::out_of_range("deque index out of range");
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}
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void delitem(int i) throw (std::out_of_range) {
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int size = int(self->size());
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if (i<0) i+= size;
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if (i>=0 && i<size) {
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self->erase(self->begin()+i);
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} else {
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throw std::out_of_range("deque index out of range");
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}
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}
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std::deque< T > getslice(int i, int j) {
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int size = int(self->size());
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if (i<0) i = size+i;
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if (j<0) j = size+j;
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if (i<0) i = 0;
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if (j>size) j = size;
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std::deque< T > tmp(j-i);
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std::copy(self->begin()+i,self->begin()+j,tmp.begin());
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return tmp;
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}
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void setslice(int i, int j, const std::deque< T >& v) {
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int size = int(self->size());
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if (i<0) i = size+i;
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if (j<0) j = size+j;
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if (i<0) i = 0;
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if (j>size) j = size;
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if (int(v.size()) == j-i) {
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std::copy(v.begin(),v.end(),self->begin()+i);
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} else {
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self->erase(self->begin()+i,self->begin()+j);
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if (i+1 <= size)
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self->insert(self->begin()+i+1,v.begin(),v.end());
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else
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self->insert(self->end(),v.begin(),v.end());
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}
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}
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void delslice(int i, int j) {
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int size = int(self->size());
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if (i<0) i = size+i;
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if (j<0) j = size+j;
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if (i<0) i = 0;
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if (j>size) j = size;
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self->erase(self->begin()+i,self->begin()+j);
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}
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};
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%enddef
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#ifdef SWIGPHP
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%define %std_deque_methods(T...)
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%extend {
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bool is_empty() const {
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return self->empty();
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}
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};
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%std_deque_methods_noempty(T)
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%enddef
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#else
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%define %std_deque_methods(T...)
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bool empty() const;
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%std_deque_methods_noempty(T)
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%enddef
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#endif
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namespace std {
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template<class T> class deque {
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public:
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%std_deque_methods(T);
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};
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}
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