8 #ifndef BOOST_GIL_STEP_ITERATOR_HPP
9 #define BOOST_GIL_STEP_ITERATOR_HPP
11 #include <boost/gil/pixel_iterator.hpp>
12 #include <boost/gil/pixel_iterator_adaptor.hpp>
13 #include <boost/gil/utilities.hpp>
15 #include <boost/iterator/iterator_facade.hpp>
20 namespace boost {
namespace gil {
35 template <
typename Derived,
39 class step_iterator_adaptor :
public iterator_adaptor<Derived, Iterator, use_default, use_default, use_default, typename SFn::difference_type>
42 using parent_t = iterator_adaptor<Derived, Iterator, use_default, use_default, use_default, typename SFn::difference_type>;
43 using base_difference_type =
typename std::iterator_traits<Iterator>::difference_type;
44 using difference_type =
typename SFn::difference_type;
45 using reference =
typename std::iterator_traits<Iterator>::reference;
50 difference_type step()
const {
return _step_fn.step(); }
55 friend class boost::iterator_core_access;
57 void increment() { _step_fn.advance(this->base_reference(),1); }
58 void decrement() { _step_fn.advance(this->base_reference(),-1); }
59 void advance(base_difference_type d) { _step_fn.advance(this->base_reference(),d); }
60 difference_type distance_to(
const step_iterator_adaptor& it)
const {
return _step_fn.difference(this->base_reference(),it.base_reference()); }
65 template <
typename D,
typename Iterator,
typename SFn>
inline
67 return p1.step()>0 ? p1.base()> p2.base() : p1.base()< p2.base();
70 template <
typename D,
typename Iterator,
typename SFn>
inline
71 bool operator<(const step_iterator_adaptor<D,Iterator,SFn>& p1,
const step_iterator_adaptor<D,Iterator,SFn>& p2) {
72 return p1.step()>0 ? p1.base()< p2.base() : p1.base()> p2.base();
75 template <
typename D,
typename Iterator,
typename SFn>
inline
76 bool operator>=(
const step_iterator_adaptor<D,Iterator,SFn>& p1,
const step_iterator_adaptor<D,Iterator,SFn>& p2) {
77 return p1.step()>0 ? p1.base()>=p2.base() : p1.base()<=p2.base();
80 template <
typename D,
typename Iterator,
typename SFn>
inline
81 bool operator<=(const step_iterator_adaptor<D,Iterator,SFn>& p1,
const step_iterator_adaptor<D,Iterator,SFn>& p2) {
82 return p1.step()>0 ? p1.base()<=p2.base() : p1.base()>=p2.base();
85 template <
typename D,
typename Iterator,
typename SFn>
inline
86 bool operator==(
const step_iterator_adaptor<D,Iterator,SFn>& p1,
const step_iterator_adaptor<D,Iterator,SFn>& p2) {
87 return p1.base()==p2.base();
90 template <
typename D,
typename Iterator,
typename SFn>
inline
91 bool operator!=(
const step_iterator_adaptor<D,Iterator,SFn>& p1,
const step_iterator_adaptor<D,Iterator,SFn>& p2) {
92 return p1.base()!=p2.base();
119 template <
typename Iterator>
121 using difference_type = std::ptrdiff_t;
123 memunit_step_fn(difference_type step=memunit_step(Iterator())) : _step(step) {}
125 difference_type difference(
const Iterator& it1,
const Iterator& it2)
const {
return memunit_distance(it1,it2)/_step; }
126 void advance(Iterator& it, difference_type d)
const { memunit_advance(it,d*_step); }
127 difference_type step()
const {
return _step; }
129 void set_step(std::ptrdiff_t step) { _step=step; }
131 GIL_CLASS_REQUIRE(Iterator, boost::gil, MemoryBasedIteratorConcept)
132 difference_type _step;
135 template <
typename Iterator>
138 memunit_step_fn<Iterator>>
140 GIL_CLASS_REQUIRE(Iterator, boost::gil, MemoryBasedIteratorConcept)
145 using reference = typename parent_t::reference;
146 using difference_type = typename parent_t::difference_type;
147 using x_iterator = Iterator;
150 memory_based_step_iterator(Iterator it, std::ptrdiff_t memunit_step) : parent_t(it, memunit_step_fn<Iterator>(memunit_step)) {}
151 template <
typename I2>
152 memory_based_step_iterator(
const memory_based_step_iterator<I2>& it)
153 : parent_t(it.base(), memunit_step_fn<Iterator>(it.step())) {}
157 reference
operator[](difference_type d)
const {
return *(*
this+d); }
159 void set_step(std::ptrdiff_t memunit_step) { this->_step_fn.set_step(memunit_step); }
161 x_iterator& base() {
return parent_t::base_reference(); }
162 x_iterator
const& base()
const {
return parent_t::base_reference(); }
165 template <
typename Iterator>
166 struct const_iterator_type<memory_based_step_iterator<Iterator> > {
167 using type = memory_based_step_iterator<typename const_iterator_type<Iterator>::type>;
170 template <
typename Iterator>
171 struct iterator_is_mutable<memory_based_step_iterator<Iterator> > :
public iterator_is_mutable<Iterator> {};
178 template <
typename Iterator>
179 struct is_iterator_adaptor<memory_based_step_iterator<Iterator> > :
public mpl::true_{};
181 template <
typename Iterator>
182 struct iterator_adaptor_get_base<memory_based_step_iterator<Iterator> > {
183 using type = Iterator;
186 template <
typename Iterator,
typename NewBaseIterator>
187 struct iterator_adaptor_rebind<memory_based_step_iterator<Iterator>,NewBaseIterator> {
188 using type = memory_based_step_iterator<NewBaseIterator>;
195 template <
typename Iterator>
196 struct color_space_type<memory_based_step_iterator<Iterator> > :
public color_space_type<Iterator> {};
198 template <
typename Iterator>
199 struct channel_mapping_type<memory_based_step_iterator<Iterator> > :
public channel_mapping_type<Iterator> {};
201 template <
typename Iterator>
202 struct is_planar<memory_based_step_iterator<Iterator> > :
public is_planar<Iterator> {};
204 template <
typename Iterator>
205 struct channel_type<memory_based_step_iterator<Iterator> > :
public channel_type<Iterator> {};
210 template <
typename Iterator>
211 struct byte_to_memunit<memory_based_step_iterator<Iterator> > :
public byte_to_memunit<Iterator> {};
213 template <
typename Iterator>
214 inline std::ptrdiff_t memunit_step(
const memory_based_step_iterator<Iterator>& p) {
return p.step(); }
216 template <
typename Iterator>
217 inline std::ptrdiff_t memunit_distance(
const memory_based_step_iterator<Iterator>& p1,
218 const memory_based_step_iterator<Iterator>& p2) {
219 return memunit_distance(p1.base(),p2.base());
222 template <
typename Iterator>
223 inline void memunit_advance(memory_based_step_iterator<Iterator>& p,
224 std::ptrdiff_t diff) {
225 memunit_advance(p.base(), diff);
228 template <
typename Iterator>
229 inline memory_based_step_iterator<Iterator>
230 memunit_advanced(
const memory_based_step_iterator<Iterator>& p,
231 std::ptrdiff_t diff) {
232 return memory_based_step_iterator<Iterator>(memunit_advanced(p.base(), diff),p.step());
235 template <
typename Iterator>
236 inline typename std::iterator_traits<Iterator>::reference
237 memunit_advanced_ref(
const memory_based_step_iterator<Iterator>& p,
238 std::ptrdiff_t diff) {
239 return memunit_advanced_ref(p.base(), diff);
246 template <
typename Iterator>
247 struct dynamic_x_step_type<memory_based_step_iterator<Iterator> > {
248 using type = memory_based_step_iterator<Iterator>;
252 template <
typename Iterator,
typename Deref>
253 struct iterator_add_deref<memory_based_step_iterator<Iterator>,Deref> {
254 GIL_CLASS_REQUIRE(Deref, boost::gil, PixelDereferenceAdaptorConcept)
256 using type = memory_based_step_iterator<typename iterator_add_deref<Iterator, Deref>::type>;
258 static type make(const memory_based_step_iterator<Iterator>& it, const Deref& d) {
return type(iterator_add_deref<Iterator, Deref>::make(it.base(),d),it.step()); }
265 template <
typename I>
typename dynamic_x_step_type<I>::type make_step_iterator(
const I& it, std::ptrdiff_t step);
270 template <
typename I>
271 typename dynamic_x_step_type<I>::type make_step_iterator_impl(
const I& it, std::ptrdiff_t step, mpl::false_) {
272 return memory_based_step_iterator<I>(it, step);
276 template <
typename I>
277 typename dynamic_x_step_type<I>::type make_step_iterator_impl(
const I& it, std::ptrdiff_t step, mpl::true_) {
278 return make_step_iterator(it.base(), step);
282 template <
typename BaseIt>
283 memory_based_step_iterator<BaseIt> make_step_iterator_impl(
const memory_based_step_iterator<BaseIt>& it, std::ptrdiff_t step, mpl::true_) {
284 return memory_based_step_iterator<BaseIt>(it.base(), step);
301 template <
typename I>
302 typename dynamic_x_step_type<I>::type make_step_iterator(
const I& it, std::ptrdiff_t step) {
303 return detail::make_step_iterator_impl(it, step,
typename is_iterator_adaptor<I>::type());
reference operator[](difference_type d) const
Definition: step_iterator.hpp:157
function object that returns the memory unit distance between two iterators and advances a given iter...
Definition: step_iterator.hpp:120
An adaptor over an existing iterator that changes the step unit.
Definition: step_iterator.hpp:39
MEMORY-BASED STEP ITERATOR.
Definition: algorithm.hpp:36