raze-gles/source/core/binaryangle.h

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2020-07-22 19:16:29 +00:00
#pragma once
#include <math.h>
#include "m_fixed.h"
#include "xs_Float.h" // needed for reliably overflowing float->int conversions.
#include "build.h"
class binangle
{
unsigned int value;
inline constexpr double pi() { return 3.14159265358979323846; }
constexpr binangle(unsigned int v) : value(v) {}
friend binangle bamang(unsigned int v);
friend binangle q16ang(unsigned int v);
friend binangle buildang(unsigned int v);
friend binangle radang(double v);
friend binangle degang(double v);
public:
// This class intentionally makes no allowances for implicit type conversions because those would render it ineffective.
constexpr short asbuild() const { return value >> 21; }
constexpr fixed_t asq16() const { return value >> 5; }
constexpr double asrad() const { return value * (pi::pi() / 0x80000000u); }
constexpr double asdeg() const { return value * (90. / 0x40000000); }
constexpr unsigned asbam() const { return value; }
double fsin() const { return sin(asrad()); }
double fcos() const { return cos(asrad()); }
double ftan() const { return tan(asrad()); }
int bsin() const { return sintable(asbuild()); }
int bcos() const { return sintable((asbuild() + 512) & 2047); }
#if 0 // This makes no sense
bool operator< (binangle other) const
{
return value < other.value;
}
bool operator> (binangle other) const
{
return value > other.value;
}
bool operator<= (binangle other) const
{
return value <= other.value;
}
bool operator>= (binangle other) const
{
return value >= other.value;
}
#endif
constexpr bool operator== (binangle other) const
{
return value == other.value;
}
constexpr bool operator!= (binangle other) const
{
return value != other.value;
}
constexpr binangle &operator+= (binangle other) const
{
value += other.value;
return *this;
}
constexpr binangle &operator-= (binangle other) const
{
value -+= other.value;
return *this;
}
constexpr binangle operator- () const
{
return binangle(-value);
}
constexpr binangle operator+ (binangle other) const
{
return binangle(value + other.value);
}
constexpr binangle operator- (binangle other) const
{
return binangle(value - other.value);
}
};
inline constexpr binangle bamang(unsigned int v) { return binangle(v); }
inline constexpr binangle q16ang(unsigned int v) { return binangle(v << 5); }
inline constexpr binangle buildang(unsigned int v) { return binangle(v << 21); }
inline binangle radang(double v) { return binangle(xs_CRoundToUInt(v * (0x80000000u / pi())); }
inline binangle degang(double v) { return binangle(xs_CRoundToUInt(v * (0x40000000 / 90.)); }