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#include "src/real-geometry/angle/get-sighed-angle.hpp"
#pragma once
#include "src/real-geometry/class/point.hpp"
#include "src/real-geometry/common/const/pi.hpp"
#include <cmath>
namespace geometry {
template< typename R >
R get_signed_angle(const point &a, const point &b, const point &c) {
auto fix = [](R theta) {
if (theta < 0) theta += 2 * pi();
return theta;
};
const point u(a - b), v(c - b);
R alpha = fix(std::atan2(u.y(), u.x()));
R beta = fix(std::atan2(v.y(), v.x()));
return fix(beta - alpha);
}
}
#line 2 "src/real-geometry/angle/get-sighed-angle.hpp"
#line 2 "src/real-geometry/class/point.hpp"
#line 2 "src/real-geometry/class/vector.hpp"
#include <complex>
#include <iostream>
namespace geometry {
template< typename R >
class vec2d : public std::complex< R > {
using complex = std::complex< R >;
public:
using complex::complex;
vec2d(const complex &c): complex::complex(c) {}
const R x() const { return this->real(); }
const R y() const { return this->imag(); }
friend vec2d operator*(const vec2d &v, const R &k) {
return vec2d(v.x() * k, v.y() * k);
}
friend vec2d operator*(const R &k, const vec2d &v) {
return vec2d(v.x() * k, v.y() * k);
}
friend std::istream &operator>>(std::istream &is, vec2d &v) {
R x, y;
is >> x >> y;
v = vec2d(x, y);
return is;
}
};
}
#line 4 "src/real-geometry/class/point.hpp"
#include <vector>
namespace geometry {
template< typename R >
using point = vec2d<R>;
template< typename R >
using points = std::vector< point< R > >;
}
#line 2 "src/real-geometry/common/const/pi.hpp"
#line 2 "src/real-geometry/common/float-alias.hpp"
namespace geometry {
using f80 = long double;
using f64 = double;
}
#line 4 "src/real-geometry/common/const/pi.hpp"
#include <cmath>
namespace geometry {
static f80 pi() {
static const f80 PI = acosl(-1); // no need `std::`. (?)
return PI;
}
}
#line 5 "src/real-geometry/angle/get-sighed-angle.hpp"
#line 7 "src/real-geometry/angle/get-sighed-angle.hpp"
namespace geometry {
template< typename R >
R get_signed_angle(const point &a, const point &b, const point &c) {
auto fix = [](R theta) {
if (theta < 0) theta += 2 * pi();
return theta;
};
const point u(a - b), v(c - b);
R alpha = fix(std::atan2(u.y(), u.x()));
R beta = fix(std::atan2(v.y(), v.x()));
return fix(beta - alpha);
}
}