forked from suyu/suyu
ebdae19fd2
This makes clang-format useful on those. Also add a bunch of forgotten transitive includes, which otherwise prevented compilation.
147 lines
4 KiB
C++
147 lines
4 KiB
C++
// Copyright 2015 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include <cmath>
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#include <cstring>
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#include "common/common_types.h"
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namespace Pica {
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/**
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* Template class for converting arbitrary Pica float types to IEEE 754 32-bit single-precision
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* floating point.
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*
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* When decoding, format is as follows:
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* - The first `M` bits are the mantissa
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* - The next `E` bits are the exponent
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* - The last bit is the sign bit
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*
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* @todo Verify on HW if this conversion is sufficiently accurate.
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*/
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template <unsigned M, unsigned E>
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struct Float {
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public:
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static Float<M, E> FromFloat32(float val) {
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Float<M, E> ret;
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ret.value = val;
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return ret;
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}
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static Float<M, E> FromRaw(u32 hex) {
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Float<M, E> res;
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const int width = M + E + 1;
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const int bias = 128 - (1 << (E - 1));
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const int exponent = (hex >> M) & ((1 << E) - 1);
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const unsigned mantissa = hex & ((1 << M) - 1);
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if (hex & ((1 << (width - 1)) - 1))
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hex = ((hex >> (E + M)) << 31) | (mantissa << (23 - M)) | ((exponent + bias) << 23);
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else
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hex = ((hex >> (E + M)) << 31);
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std::memcpy(&res.value, &hex, sizeof(float));
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return res;
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}
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static Float<M, E> Zero() {
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return FromFloat32(0.f);
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}
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// Not recommended for anything but logging
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float ToFloat32() const {
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return value;
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}
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Float<M, E> operator*(const Float<M, E>& flt) const {
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if ((this->value == 0.f && !std::isnan(flt.value)) ||
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(flt.value == 0.f && !std::isnan(this->value)))
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// PICA gives 0 instead of NaN when multiplying by inf
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return Zero();
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return Float<M, E>::FromFloat32(ToFloat32() * flt.ToFloat32());
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}
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Float<M, E> operator/(const Float<M, E>& flt) const {
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return Float<M, E>::FromFloat32(ToFloat32() / flt.ToFloat32());
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}
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Float<M, E> operator+(const Float<M, E>& flt) const {
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return Float<M, E>::FromFloat32(ToFloat32() + flt.ToFloat32());
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}
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Float<M, E> operator-(const Float<M, E>& flt) const {
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return Float<M, E>::FromFloat32(ToFloat32() - flt.ToFloat32());
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}
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Float<M, E>& operator*=(const Float<M, E>& flt) {
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if ((this->value == 0.f && !std::isnan(flt.value)) ||
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(flt.value == 0.f && !std::isnan(this->value)))
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// PICA gives 0 instead of NaN when multiplying by inf
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*this = Zero();
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else
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value *= flt.ToFloat32();
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return *this;
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}
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Float<M, E>& operator/=(const Float<M, E>& flt) {
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value /= flt.ToFloat32();
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return *this;
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}
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Float<M, E>& operator+=(const Float<M, E>& flt) {
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value += flt.ToFloat32();
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return *this;
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}
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Float<M, E>& operator-=(const Float<M, E>& flt) {
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value -= flt.ToFloat32();
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return *this;
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}
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Float<M, E> operator-() const {
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return Float<M, E>::FromFloat32(-ToFloat32());
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}
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bool operator<(const Float<M, E>& flt) const {
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return ToFloat32() < flt.ToFloat32();
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}
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bool operator>(const Float<M, E>& flt) const {
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return ToFloat32() > flt.ToFloat32();
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}
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bool operator>=(const Float<M, E>& flt) const {
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return ToFloat32() >= flt.ToFloat32();
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}
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bool operator<=(const Float<M, E>& flt) const {
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return ToFloat32() <= flt.ToFloat32();
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}
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bool operator==(const Float<M, E>& flt) const {
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return ToFloat32() == flt.ToFloat32();
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}
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bool operator!=(const Float<M, E>& flt) const {
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return ToFloat32() != flt.ToFloat32();
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}
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private:
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static const unsigned MASK = (1 << (M + E + 1)) - 1;
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static const unsigned MANTISSA_MASK = (1 << M) - 1;
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static const unsigned EXPONENT_MASK = (1 << E) - 1;
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// Stored as a regular float, merely for convenience
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// TODO: Perform proper arithmetic on this!
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float value;
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};
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using float24 = Float<16, 7>;
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using float20 = Float<12, 7>;
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using float16 = Float<10, 5>;
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} // namespace Pica
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