libcruft-util/extent.hpp
Danny Robson 0e3fa05f05 build: migrate from ipp files to pure hpp files
ipp files weren't a great way of keeping things clean, and IDEs have a
little trouble dealing with the split configuration. this simplifies
debugging a great deal.
2018-02-28 11:49:13 +11:00

185 lines
5.2 KiB
C++

/*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* Copyright 2010-2017 Danny Robson <danny@nerdcruft.net>
*/
#ifndef CRUFT_UTIL_EXTENT_HPP
#define CRUFT_UTIL_EXTENT_HPP
#include "coord/fwd.hpp"
#include "coord/base.hpp"
#include "vector.hpp"
#include "point.hpp"
#include <cstddef>
namespace util {
/**
* A pure n-dimensional size, without positioning
*/
template <size_t S, typename T>
struct extent : public ::util::coord::base<S,T,::util::extent<S,T>>
{
using ::util::coord::base<S,T,::util::extent<S,T>>::base;
extent () = default;
explicit extent (::util::vector<S,T>);
constexpr T
area (void) const
{
return std::accumulate (std::begin (this->data),
std::end (this->data),
T {1},
std::multiplies<T> ());
}
constexpr T
diameter (void) const
{
return static_cast<T> (
std::sqrt (
std::accumulate (std::begin (this->data),
std::end (this->data),
T {0},
[] (auto a, auto b) { return a + b * b; })
)
);
}
template <typename U = float>
constexpr
U aspect (void) const
{
return static_cast<U> (this->w) / this->h;
}
/// tests whether a point would lie within:
/// region { origin, *this }, inclusive of borders.
///
/// included for parity with util::region.
constexpr bool
inclusive (util::point<S,T> p) const
{
return all (p >= T{0} && p <= *this);
}
/// tests whether a point would like within:
/// region { origin, *this }, exclusive of the bottom-right border
/// included for parity with util::region
constexpr bool
exclusive (point<S,T> p) const
{
return all (p >= T{0} && p < *this);
}
::util::extent<S,T> expanded (::util::vector<S,T>) const;
::util::extent<S,T> expanded (T) const;
::util::extent<S,T> contracted (::util::vector<S,T>) const;
::util::extent<S,T> contracted (T) const;
bool empty (void) const;
static constexpr
::util::extent<S,T> max (void)
{
return extent<S,T> {
std::numeric_limits<T>::max ()
};
}
static constexpr
::util::extent<S,T> min (void)
{
return extent<S,T> { 0 };
}
};
template <size_t S, typename T>
struct extent_range {
public:
struct iterator : public std::iterator<
std::forward_iterator_tag,
::util::point<S,T>,
size_t
> {
public:
iterator (::util::extent<S,T>, ::util::point<S,T>);
point<S,T> operator* () const;
iterator& operator++ (void);
bool operator!= (const iterator &rhs) const;
bool operator== (const iterator &rhs) const;
private:
point<S,T> m_cursor;
extent<S,T> m_target;
};
explicit extent_range (extent<S,T> target);
iterator begin (void) const;
iterator end (void) const;
private:
extent<S,T> m_target;
};
///////////////////////////////////////////////////////////////////////////
template <size_t S, typename T>
extent_range<S,T>
make_range (extent<S,T> e)
{
return extent_range<S,T> {e};
}
///////////////////////////////////////////////////////////////////////////
// convenience typedefs
template <typename T> using extent2 = extent<2,T>;
template <typename T> using extent3 = extent<3,T>;
template <size_t S> using extentu = extent<S,unsigned>;
template <size_t S> using extenti = extent<S,int>;
template <size_t S> using extentf = extent<S,float>;
template <size_t S> using extentd = extent<S,double>;
typedef extent2<int> extent2i;
typedef extent2<unsigned> extent2u;
typedef extent2<float> extent2f;
typedef extent2<double> extent2d;
typedef extent3<unsigned> extent3u;
typedef extent3<float> extent3f;
//-------------------------------------------------------------------------
template <typename T> using extent_range2 = extent_range<2,T>;
template <typename T> using extent_range3 = extent_range<3,T>;
using extent_range2u = extent_range2<typename extent2u::value_type>;
using extent_range2i = extent_range2<typename extent2i::value_type>;
using extent_range3u = extent_range2<typename extent3u::value_type>;
}
#endif