libcruft-util/noise/fractal/runtime.hpp

165 lines
5.7 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 2012-2015 Danny Robson <danny@nerdcruft.net>
*/
#ifndef __UTIL_NOISE_FRACTAL_RUNTIME_HPP
#define __UTIL_NOISE_FRACTAL_RUNTIME_HPP
#include "base.hpp"
#include <memory>
namespace util { namespace noise { namespace fractal {
template <class B>
struct runtime {
public:
using value_t = typename B::value_t;
using point_t = typename B::point_t;
runtime (seed_t) { }
runtime () = default;
runtime (runtime&&) = default;
runtime (const runtime&) = delete;
runtime& operator= (const runtime&) = delete;
// basis functions
value_t operator () (point_t p) const noexcept { return (*m_child) (p); }
unsigned octaves (void) const { return m_child->octaves (); }
unsigned octaves (unsigned _octaves) { return m_child->octaves (_octaves); }
value_t H (void) const { return m_child->H (); }
value_t H (value_t _H) { return m_child->H (_H); }
value_t frequency (void) const { return m_child->frequency (); }
value_t frequency (value_t _frequency) { return m_child->frequency (_frequency); }
value_t lacunarity (void) const { return m_child->lacunarity (); }
value_t lacunarity (value_t _lacunarity) { return m_child->lacunarity (_lacunarity); }
value_t amplitude (void) const { return m_child->amplitude (); }
value_t amplitude (value_t _amplitude) { return m_child->amplitude (_amplitude); }
value_t gain (void) const { return m_child->gain (); }
value_t gain (value_t _gain) { return m_child->gain (_gain); }
B& basis (void) { return m_child->basis (); }
const B& basis (void) const { return m_child->basis (); }
seed_t seed (void) const { return m_child->seed (); }
seed_t seed (seed_t) { return m_child->seed (); }
private:
struct base {
virtual ~base () = default;
virtual value_t operator() (point_t) const noexcept = 0;
virtual unsigned octaves (void) const = 0;
virtual unsigned octaves (unsigned) = 0;
virtual value_t H (void) const = 0;
virtual value_t H (value_t) = 0;
virtual value_t frequency (void) const = 0;
virtual value_t frequency (value_t) = 0;
virtual value_t lacunarity (void) const = 0;
virtual value_t lacunarity (value_t) = 0;
virtual value_t amplitude (void) const = 0;
virtual value_t amplitude (value_t) = 0;
virtual value_t gain (void) const = 0;
virtual value_t gain (value_t) = 0;
virtual B& basis (void) = 0;
virtual const B& basis (void) const = 0;
virtual seed_t seed (void) const = 0;
virtual seed_t seed (seed_t) = 0;
};
template <typename F>
struct child final : public base {
child (seed_t _seed):
data (_seed)
{ ; }
child (seed_t _seed,
unsigned _octaves,
value_t _H,
value_t _frequency,
value_t _lacunarity,
value_t _amplitude,
value_t _gain):
data (_seed,
_octaves,
_H,
_frequency,
_lacunarity,
_amplitude,
_gain)
{ ; }
value_t operator() (point_t p) const noexcept override { return data (p); }
unsigned octaves (void) const override { return data.octaves (); }
unsigned octaves (unsigned _octaves) override { return data.octaves (_octaves); }
value_t H (void) const override { return data.H (); }
value_t H (value_t _H) override { return data.H (_H); }
value_t frequency (void) const override { return data.frequency (); }
value_t frequency (value_t _frequency) override { return data.frequency (_frequency); }
value_t lacunarity (void) const override { return data.lacunarity (); }
value_t lacunarity (value_t _lacunarity) override { return data.lacunarity (_lacunarity); }
value_t amplitude (void) const override { return data.amplitude (); }
value_t amplitude (value_t _amplitude) override { return data.amplitude (_amplitude); }
value_t gain (void) const override { return data.gain (); }
value_t gain (value_t _gain) override { return data.gain (_gain); }
B& basis (void) override { return data.basis (); }
const B& basis (void) const override { return data.basis (); }
seed_t seed (void) const override { return data.seed (); }
seed_t seed (seed_t _seed) override { return data.seed (_seed); }
F data;
};
std::unique_ptr<base> m_child;
public:
template <typename F>
F&
reset (seed_t _seed)
{
using fractal_t = F;
using child_t = child<fractal_t>;
child_t *out;
m_child.reset (out= new child_t (_seed));
return out->data;
}
};
} } }
#endif