#include "nw4r/g3d.h" // IWYU pragma: export namespace nw4r { namespace g3d { namespace detail { namespace dcc { namespace { void MakeTexSrtMtx_S(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_00 = rSrt.Su; pMtx->_01 = 0.0f; pMtx->_02 = 0.0f; pMtx->_03 = 0.5f * (1.0f - rSrt.Su); pMtx->_10 = 0.0f; pMtx->_11 = rSrt.Sv; pMtx->_12 = 0.0f; pMtx->_13 = 0.5f * (1.0f - rSrt.Sv); } void MakeTexSrtMtx_R(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; math::SinCosDeg(&sinR, &cosR, rSrt.R); pMtx->_00 = cosR; pMtx->_01 = sinR; pMtx->_02 = 0.0f; pMtx->_03 = -0.5f * (cosR + sinR - 1.0f); pMtx->_10 = -sinR; pMtx->_11 = cosR; pMtx->_12 = 0.0f; pMtx->_13 = -0.5f * (-sinR + cosR - 1.0f); } void MakeTexSrtMtx_T(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_00 = 1.0f; pMtx->_01 = 0.0f; pMtx->_02 = 0.0f; pMtx->_03 = -rSrt.Tu; pMtx->_10 = 0.0f; pMtx->_11 = 1.0f; pMtx->_12 = 0.0f; pMtx->_13 = rSrt.Tv; } void MakeTexSrtMtx_SR(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; math::SinCosDeg(&sinR, &cosR, rSrt.R); f32 sucr = rSrt.Su * cosR; f32 susr = rSrt.Su * sinR; f32 svcr = rSrt.Sv * cosR; f32 svsr = rSrt.Sv * sinR; pMtx->_00 = sucr; pMtx->_01 = susr; pMtx->_02 = 0.0f; pMtx->_03 = -0.5f * (sucr + susr - 1.0f); pMtx->_10 = -svsr; pMtx->_11 = svcr; pMtx->_12 = 0.0f; pMtx->_13 = -0.5f * (-svsr + svcr - 1.0f); } void MakeTexSrtMtx_RT(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; math::SinCosDeg(&sinR, &cosR, rSrt.R); pMtx->_00 = cosR; pMtx->_01 = sinR; pMtx->_02 = 0.0f; pMtx->_03 = -cosR * (0.5f + rSrt.Tu) + sinR * (rSrt.Tv - 0.5f) + 0.5f; pMtx->_10 = -sinR; pMtx->_11 = cosR; pMtx->_12 = 0.0f; pMtx->_13 = sinR * (0.5f + rSrt.Tu) + cosR * (rSrt.Tv - 0.5f) + 0.5f; } void MakeTexSrtMtx_ST(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_00 = rSrt.Su; pMtx->_01 = 0.0f; pMtx->_02 = 0.0f; pMtx->_03 = -rSrt.Su * (0.5f + rSrt.Tu) + 0.5f; pMtx->_10 = 0.0f; pMtx->_11 = rSrt.Sv; pMtx->_12 = 0.0f; pMtx->_13 = rSrt.Sv * (rSrt.Tv - 0.5f) + 0.5f; } void MakeTexSrtMtx_SRT(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; math::SinCosDeg(&sinR, &cosR, rSrt.R); f32 sucr = rSrt.Su * cosR; f32 susr = rSrt.Su * sinR; f32 svcr = rSrt.Sv * cosR; f32 svsr = rSrt.Sv * sinR; pMtx->_00 = sucr; pMtx->_01 = susr; pMtx->_02 = 0.0f; pMtx->_03 = -sucr * (0.5f + rSrt.Tu) + susr * (rSrt.Tv - 0.5f) + 0.5f; pMtx->_10 = -svsr; pMtx->_11 = svcr; pMtx->_12 = 0.0f; pMtx->_13 = svsr * (0.5f + rSrt.Tu) + svcr * (rSrt.Tv - 0.5f) + 0.5f; } void ProductTexSrtMtx_S(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_00 *= rSrt.Su; pMtx->_01 *= rSrt.Su; pMtx->_02 *= rSrt.Su; pMtx->_03 = rSrt.Su * (pMtx->_03 - 0.5f) + 0.5f; pMtx->_10 *= rSrt.Sv; pMtx->_11 *= rSrt.Sv; pMtx->_12 *= rSrt.Sv; pMtx->_13 = rSrt.Sv * (pMtx->_13 - 0.5f) + 0.5f; } void ProductTexSrtMtx_R(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; f32 _0x, _1x; math::SinCosDeg(&sinR, &cosR, rSrt.R); _0x = cosR * pMtx->_00 + sinR * pMtx->_10; _1x = -sinR * pMtx->_00 + cosR * pMtx->_10; pMtx->_00 = _0x; pMtx->_10 = _1x; _0x = cosR * pMtx->_01 + sinR * pMtx->_11; _1x = -sinR * pMtx->_01 + cosR * pMtx->_11; pMtx->_01 = _0x; pMtx->_11 = _1x; _0x = cosR * pMtx->_02 + sinR * pMtx->_12; _1x = -sinR * pMtx->_02 + cosR * pMtx->_12; pMtx->_02 = _0x; pMtx->_12 = _1x; _0x = cosR * (pMtx->_03 - 0.5f) + sinR * (pMtx->_13 - 0.5f) + 0.5f; _1x = -sinR * (pMtx->_03 - 0.5f) + cosR * (pMtx->_13 - 0.5f) + 0.5f; pMtx->_03 = _0x; pMtx->_13 = _1x; } void ProductTexSrtMtx_T(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_03 -= rSrt.Tu; pMtx->_13 += rSrt.Tv; } void ProductTexSrtMtx_SR(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; f32 _0x, _1x; math::SinCosDeg(&sinR, &cosR, rSrt.R); f32 sucr = rSrt.Su * cosR; f32 susr = rSrt.Su * sinR; f32 svcr = rSrt.Sv * cosR; f32 svsr = rSrt.Sv * sinR; _0x = sucr * pMtx->_00 + susr * pMtx->_10; _1x = -svsr * pMtx->_00 + svcr * pMtx->_10; pMtx->_00 = _0x; pMtx->_10 = _1x; _0x = sucr * pMtx->_01 + susr * pMtx->_11; _1x = -svsr * pMtx->_01 + svcr * pMtx->_11; pMtx->_01 = _0x; pMtx->_11 = _1x; _0x = sucr * pMtx->_02 + susr * pMtx->_12; _1x = -svsr * pMtx->_02 + svcr * pMtx->_12; pMtx->_02 = _0x; pMtx->_12 = _1x; _0x = sucr * (pMtx->_03 - 0.5f) + susr * (pMtx->_13 - 0.5f) + 0.5f; _1x = -svsr * (pMtx->_03 - 0.5f) + svcr * (pMtx->_13 - 0.5f) + 0.5f; pMtx->_03 = _0x; pMtx->_13 = _1x; } void ProductTexSrtMtx_RT(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; f32 _0x, _1x; math::SinCosDeg(&sinR, &cosR, rSrt.R); _0x = cosR * pMtx->_00 + sinR * pMtx->_10; _1x = -sinR * pMtx->_00 + cosR * pMtx->_10; pMtx->_00 = _0x; pMtx->_10 = _1x; _0x = cosR * pMtx->_01 + sinR * pMtx->_11; _1x = -sinR * pMtx->_01 + cosR * pMtx->_11; pMtx->_01 = _0x; pMtx->_11 = _1x; _0x = cosR * pMtx->_02 + sinR * pMtx->_12; _1x = -sinR * pMtx->_02 + cosR * pMtx->_12; pMtx->_02 = _0x; pMtx->_12 = _1x; _0x = cosR * (pMtx->_03 - rSrt.Tu - 0.5f) + sinR * (pMtx->_13 + rSrt.Tv - 0.5f) + 0.5f; _1x = -sinR * (pMtx->_03 - rSrt.Tu - 0.5f) + cosR * (pMtx->_13 + rSrt.Tv - 0.5f) + 0.5f; pMtx->_03 = _0x; pMtx->_13 = _1x; } void ProductTexSrtMtx_ST(math::MTX34 *pMtx, const TexSrt &rSrt) { pMtx->_00 *= rSrt.Su; pMtx->_01 *= rSrt.Su; pMtx->_02 *= rSrt.Su; pMtx->_03 = rSrt.Su * (pMtx->_03 - rSrt.Tu - 0.5f) + 0.5f; pMtx->_10 *= rSrt.Sv; pMtx->_11 *= rSrt.Sv; pMtx->_12 *= rSrt.Sv; pMtx->_13 *= rSrt.Sv * (pMtx->_13 + rSrt.Tv - 0.5f) + 0.5f; } void ProductTexSrtMtx_SRT(math::MTX34 *pMtx, const TexSrt &rSrt) { f32 sinR, cosR; f32 _0x, _1x; math::SinCosDeg(&sinR, &cosR, rSrt.R); f32 sucr = rSrt.Su * cosR; f32 susr = rSrt.Su * sinR; f32 svcr = rSrt.Sv * cosR; f32 svsr = rSrt.Sv * sinR; _0x = sucr * pMtx->_00 + susr * pMtx->_10; _1x = -svsr * pMtx->_00 + svcr * pMtx->_10; pMtx->_00 = _0x; pMtx->_10 = _1x; _0x = sucr * pMtx->_01 + susr * pMtx->_11; _1x = -svsr * pMtx->_01 + svcr * pMtx->_11; pMtx->_01 = _0x; pMtx->_11 = _1x; _0x = sucr * pMtx->_02 + susr * pMtx->_12; _1x = -svsr * pMtx->_02 + svcr * pMtx->_12; pMtx->_02 = _0x; pMtx->_12 = _1x; _0x = sucr * (pMtx->_03 - rSrt.Tu - 0.5f) + susr * (pMtx->_13 + rSrt.Tv - 0.5f) + 0.5f; _1x = -svsr * (pMtx->_03 - rSrt.Tu - 0.5f) + svcr * (pMtx->_13 + rSrt.Tv - 0.5f) + 0.5f; pMtx->_03 = _0x; pMtx->_13 = _1x; } } // namespace typedef void (*CalcTexMtxFunc)(math::MTX34 *pMtx, const TexSrt &rSrt); bool CalcTexMtx_3dsmax(math::MTX34 *pMtx, bool set, const TexSrt &rSrt, TexSrt::Flag flag) { // Extract S/R/T flags u32 index = flag >> 1 & 0b111; // Scale-one, no rotate/trans if (index == 0b111) { return false; } if (set) { static const CalcTexMtxFunc funcTable[] = { MakeTexSrtMtx_SRT, // 0 0 0 MakeTexSrtMtx_RT, // 0 0 1 MakeTexSrtMtx_ST, // 0 1 0 MakeTexSrtMtx_T, // 0 1 1 MakeTexSrtMtx_SR, // 1 0 0 MakeTexSrtMtx_R, // 1 0 1 MakeTexSrtMtx_S // 1 1 0 }; funcTable[index](pMtx, rSrt); } else { static const CalcTexMtxFunc funcTable[] = { ProductTexSrtMtx_SRT, // 0 0 0 ProductTexSrtMtx_RT, // 0 0 1 ProductTexSrtMtx_ST, // 0 1 0 ProductTexSrtMtx_T, // 0 1 1 ProductTexSrtMtx_SR, // 1 0 0 ProductTexSrtMtx_R, // 1 0 1 ProductTexSrtMtx_S // 1 1 0 }; funcTable[index](pMtx, rSrt); } pMtx->_20 = 0.0f; pMtx->_21 = 0.0f; pMtx->_22 = 1.0f; pMtx->_23 = 0.0f; return true; } } // namespace dcc } // namespace detail } // namespace g3d } // namespace nw4r