// // Generated by dtk // Translation Unit: c_m3d.cpp // #include "SSystem/SComponent/c_m3d.h" #include "JSystem/JUtility/JUTAssert.h" #include "SSystem/SComponent/c_m3d_g_aab.h" #include "SSystem/SComponent/c_m3d_g_cps.h" #include "SSystem/SComponent/c_m3d_g_cyl.h" #include "SSystem/SComponent/c_m3d_g_lin.h" #include "SSystem/SComponent/c_m3d_g_pla.h" #include "SSystem/SComponent/c_m3d_g_sph.h" #include "SSystem/SComponent/c_m3d_g_tri.h" #include "SSystem/SComponent/c_math.h" #include "SSystem/SComponent/c_sxyz.h" #define CHECK_FLOAT_RANGE(line, x) JUT_ASSERT(line, -1.0e32f < x && x < 1.0e32f); #define CHECK_VEC3_RANGE(line, v) JUT_ASSERT(line, -1.0e32f < v.x && v.x < 1.0e32f && -1.0e32f < v.y && v.y < 1.0e32f && -1.0e32f < v.z && v.z < 1.0e32f) #define CHECK_PVEC3_RANGE(line, v) JUT_ASSERT(line, -1.0e32f < v->x && v->x < 1.0e32f && -1.0e32f < v->y && v->y < 1.0e32f && -1.0e32f < v->z && v->z < 1.0e32f) const f32 G_CM3D_F_ABS_MIN = 3.8146973e-06f; #if VERSION == VERSION_DEMO const f32 G_CM3D_F_INF = 1.0e38f; #endif static void dummy(f32 dummy) { // to fix float literal order std::sqrtf(dummy); } /* 8024A400-8024A450 .text cM3d_InDivPos1__FPC3VecPC3VecfP3Vec */ void cM3d_InDivPos1(const Vec* v0, const Vec* v1, f32 scale, Vec* pDst) { Vec tmp; VECScale(v1, &tmp, scale); VECAdd(&tmp, v0, pDst); } /* 8024A450-8024A4B4 .text cM3d_InDivPos2__FPC3VecPC3VecfP3Vec */ void cM3d_InDivPos2(const Vec* v0, const Vec* v1, f32 scale, Vec* pDst) { Vec tmp; VECSubtract(v1, v0, &tmp); cM3d_InDivPos1(v0, &tmp, scale, pDst); } /* 8024A4B4-8024A56C .text cM3d_Len2dSqPntAndSegLine__FffffffPfPfPf */ bool cM3d_Len2dSqPntAndSegLine(f32 xp, f32 yp, f32 x0, f32 y0, f32 x1, f32 y1, f32* outx, f32* outy, f32* seg) { bool ret = false; f32 xd = x1 - x0; f32 yd = y1 - y0; f32 dot = (xd * xd + yd * yd); if (cM3d_IsZero(dot)) { *seg = 0.0f; return false; } f32 mag = (xd * (xp - x0) + yd * (yp - y0)) / dot; if (mag >= 0.0f && mag <= 1.0f) { ret = true; } *outx = x0 + xd * mag; *outy = y0 + yd * mag; *seg = cM3d_Len2dSq(*outx, *outy, xp, yp); return ret; } /* 8024A56C-8024A670 .text cM3d_Len3dSqPntAndSegLine__FPC8cM3dGLinPC3VecP3VecPf */ bool cM3d_Len3dSqPntAndSegLine(const cM3dGLin* line, const Vec* pos, Vec* pDst, f32* pT) { Vec work2; Vec work1; VECSubtract(line->GetEndP(), line->GetStartP(), &work2); f32 midPoint = VECDotProduct(&work2, &work2); if ((cM3d_IsZero(midPoint))) { *pT = 0.0f; return false; } VECSubtract(pos, line->GetStartP(), &work1); midPoint = VECDotProduct(&work1, &work2) / midPoint; bool success; if (midPoint < 0.0f || midPoint > 1.0f) { success = false; } else { success = true; }; VECScale(&work2, &work2, midPoint); VECAdd(&work2, line->GetStartP(), pDst); *pT = VECSquareDistance(pDst, pos); return success; } /* 8024A670-8024A6F0 .text cM3d_SignedLenPlaAndPos__FPC8cM3dGPlaPC3Vec */ f32 cM3d_SignedLenPlaAndPos(const cM3dGPla* plane, const Vec* pos) { f32 len = VECMag(plane->GetNP()); if (cM3d_IsZero(len)) return 0.0f; else return plane->getPlaneFunc(pos) / len; } /* 8024A6F0-8024A7BC .text cM3d_CalcPla__FPC3VecPC3VecPC3VecP3VecPf */ void cM3d_CalcPla(const Vec* p0, const Vec* p1, const Vec* p2, Vec* pDst, f32* pT) { cM3d_VectorProduct(p0, p1, p2, pDst); f32 t = VECMag(pDst); #if VERSION == VERSION_DEMO if (!cM3d_IsZero(t)) #else if (std::fabsf(t) >= 0.02f) #endif { VECScale(pDst, pDst, 1.0f / t); *pT = -VECDotProduct(pDst, p0); } else { pDst->y = 0.0f; *pT = 0.0f; pDst->z = 0.0f; pDst->x = 0.0f; } } inline bool cM3d_CrossNumSection(f32 lMinX, f32 lMaxX, f32 rMinX, f32 rMaxX) { if (lMinX > rMaxX) { return false; } else if (lMaxX < rMinX) { return false; } else if (rMinX > lMaxX) { return false; } else if (rMaxX < lMinX) { return false; } else { return true; } } /* 8024A7BC-8024A8E0 .text cM3d_Cross_AabAab__FPC8cM3dGAabPC8cM3dGAab */ bool cM3d_Cross_AabAab(const cM3dGAab* a, const cM3dGAab* b) { if (cM3d_CrossNumSection(a->GetMinP()->x, a->GetMaxP()->x, b->GetMinP()->x, b->GetMaxP()->x) && cM3d_CrossNumSection(a->GetMinP()->y, a->GetMaxP()->y, b->GetMinP()->y, b->GetMaxP()->y) && cM3d_CrossNumSection(a->GetMinP()->z, a->GetMaxP()->z, b->GetMinP()->z, b->GetMaxP()->z)) { return true; } else { return false; } } /* 8024A8E0-8024A988 .text cM3d_Cross_AabCyl__FPC8cM3dGAabPC8cM3dGCyl */ bool cM3d_Cross_AabCyl(const cM3dGAab* aab, const cM3dGCyl* cyl) { if (aab->GetMinP()->x > cyl->GetCP()->x + cyl->GetR()) { return false; } else if (aab->GetMaxP()->x < cyl->GetCP()->x - cyl->GetR()) { return false; } else if (aab->GetMinP()->z > cyl->GetCP()->z + cyl->GetR()) { return false; } else if (aab->GetMaxP()->z < cyl->GetCP()->z - cyl->GetR()) { return false; } else if (aab->GetMinP()->y > cyl->GetCP()->y + cyl->GetH()) { return false; } else if (aab->GetMaxP()->y < cyl->GetCP()->y) { return false; } else { return true; } } /* 8024A988-8024AA30 .text cM3d_Cross_AabSph__FPC8cM3dGAabPC8cM3dGSph */ bool cM3d_Cross_AabSph(const cM3dGAab* aab, const cM3dGSph* sph) { f32 radius = sph->GetR(); f32 cx = sph->GetC().x; if (aab->GetMinX() > cx + radius) { return false; } else if (aab->GetMaxX() < cx - radius) { return false; } f32 cz = sph->GetC().z; if (aab->GetMinZ() > cz + radius) { return false; } else if (aab->GetMaxZ() < cz - radius) { return false; } f32 cy = sph->GetC().y; if (aab->GetMinY() > cy + radius) { return false; } else if (aab->GetMaxY() < cy - radius) { return false; } return true; } /* 8024AA30-8024ACA8 .text cM3d_Check_LinLin__FPC8cM3dGLinPC8cM3dGLinPfPf */ int cM3d_Check_LinLin(const cM3dGLin* lin_a, const cM3dGLin* lin_b, f32* dst_a, f32* dst_b) { Vec linAVec; Vec linBVec; lin_a->CalcVec(&linAVec); lin_b->CalcVec(&linBVec); f32 linALen = VECMag(&linAVec); f32 linBLen = VECMag(&linBVec); if (cM3d_IsZero(linALen) || cM3d_IsZero(linBLen)) { return 1; } else { f32 invLinALen = 1.0f / linALen; f32 invLinBLen = 1.0f / linBLen; VECScale(&linAVec, &linAVec, invLinALen); VECScale(&linBVec, &linBVec, invLinBLen); Vec tmp; VECSubtract(lin_a->GetStartP(), lin_b->GetStartP(), &tmp); f32 tmpF = -VECDotProduct(&linAVec, &linBVec); f32 tmpF2 = VECDotProduct(&tmp, &linAVec); VECSquareMag(&tmp); // result not used f32 tmpF3 = std::fabsf(1.0f - (tmpF * tmpF)); if (!cM3d_IsZero(tmpF3)) { f32 tmpF4 = -VECDotProduct(&tmp, &linBVec); f32 tmpF7 = 1.0f / tmpF3; f32 outFloatAtmp = ((tmpF * tmpF4) - tmpF2) * tmpF7; *dst_a = outFloatAtmp * invLinALen; f32 outFloatBtmp = ((tmpF * tmpF2) - tmpF4) * tmpF7; *dst_b = outFloatBtmp * invLinBLen; return 3; } else { f32 tmpF5 = -tmpF2; f32 tmpF6 = 0.0f; if (tmpF5 < 0.0f || (tmpF5 > linALen)) { tmpF6 = linBLen; tmpF5 = (tmpF6 * tmpF) - tmpF2; } f32 tmpF7 = VECDotProduct(&tmp, &linBVec); if (tmpF5 < 0.0f || tmpF5 > linALen) { tmpF5 = 0.0f; tmpF6 = tmpF7; } if (tmpF6 < 0.0f || tmpF6 > linBLen) { tmpF5 = linALen; tmpF6 = tmpF7 + (-linALen * tmpF); } *dst_a = tmpF5 * invLinALen; *dst_b = tmpF6 * invLinBLen; return 2; } } } /* 8024ACA8-8024AE3C .text cM3d_Cross_LinPla__FPC8cM3dGLinPC8cM3dGPlaP3Vecbb */ bool cM3d_Cross_LinPla(const cM3dGLin* lin, const cM3dGPla* pla, Vec* dst, bool a, bool b) { f32 startVal = pla->getPlaneFunc(lin->GetStartP()); f32 endVal = pla->getPlaneFunc(lin->GetEndP()); if (startVal * endVal > 0.0f) { *dst = lin->GetEnd(); return false; } else { if (startVal >= 0.0f && endVal <= 0.0f) { if (a) { return cM3d_CrossInfLineVsInfPlane_proc(startVal, endVal, lin->GetStartP(), lin->GetEndP(), dst); } } else { if (b) { return cM3d_CrossInfLineVsInfPlane_proc(startVal, endVal, lin->GetStartP(), lin->GetEndP(), dst); } } *dst = lin->GetEnd(); return false; } } const u32 BPCP_OUTCODE0 = 0x00000001; const u32 BPCP_OUTCODE1 = 0x00000002; const u32 BPCP_OUTCODE4 = 0x00000010; const u32 BPCP_OUTCODE5 = 0x00000020; const u32 BPCP_OUTCODE2 = 0x00000004; const u32 BPCP_OUTCODE3 = 0x00000008; const u32 BEVEL2D_OUTCODE0 = 0x00000001; const u32 BEVEL2D_OUTCODE1 = 0x00000002; const u32 BEVEL2D_OUTCODE2 = 0x00000004; const u32 BEVEL2D_OUTCODE3 = 0x00000008; const u32 BEVEL2D_OUTCODE4 = 0x00000010; const u32 BEVEL2D_OUTCODE5 = 0x00000020; const u32 BEVEL2D_OUTCODE6 = 0x00000040; const u32 BEVEL2D_OUTCODE7 = 0x00000080; const u32 BEVEL2D_OUTCODE8 = 0x00000100; const u32 BEVEL2D_OUTCODE9 = 0x00000200; const u32 BEVEL2D_OUTCODE10 = 0x00000400; const u32 BEVEL2D_OUTCODE11 = 0x00000800; const u32 BEVEL3D_OUTCODE0 = 0x00000001; const u32 BEVEL3D_OUTCODE1 = 0x00000002; const u32 BEVEL3D_OUTCODE2 = 0x00000004; const u32 BEVEL3D_OUTCODE3 = 0x00000008; const u32 BEVEL3D_OUTCODE4 = 0x00000010; const u32 BEVEL3D_OUTCODE5 = 0x00000020; const u32 BEVEL3D_OUTCODE6 = 0x00000040; const u32 BEVEL3D_OUTCODE7 = 0x00000080; inline u32 cM3d_CheckBoxEdgePlane_Bevel2DCheck(const Vec* param_0, const Vec* param_1, const Vec* param_2) { u32 ret = 0; if (-param_0->x + param_0->y > -param_1->x + param_2->y) { ret |= BEVEL2D_OUTCODE0; } if (-param_0->x + param_0->y < -param_2->x + param_1->y) { ret |= BEVEL2D_OUTCODE1; } if (param_0->x + param_0->y > param_2->x + param_2->y) { ret |= BEVEL2D_OUTCODE2; } if (param_0->x + param_0->y < param_1->x + param_1->y) { ret |= BEVEL2D_OUTCODE3; } if (-param_0->z + param_0->y > -param_1->z + param_2->y) { ret |= BEVEL2D_OUTCODE4; } if (-param_0->z + param_0->y < -param_2->z + param_1->y) { ret |= BEVEL2D_OUTCODE5; } if (param_0->z + param_0->y > param_2->z + param_2->y) { ret |= BEVEL2D_OUTCODE6; } if (param_0->z + param_0->y < param_1->z + param_1->y) { ret |= BEVEL2D_OUTCODE7; } if (-param_0->z + param_0->x > -param_1->z + param_2->x) { ret |= BEVEL2D_OUTCODE8; } if (-param_0->z + param_0->x < -param_2->z + param_1->x) { ret |= BEVEL2D_OUTCODE9; } if (param_0->z + param_0->x > param_2->z + param_2->x) { ret |= BEVEL2D_OUTCODE10; } if (param_0->z + param_0->x < param_1->z + param_1->x) { ret |= BEVEL2D_OUTCODE11; } return ret; } inline u32 cM3d_CheckBoxEdgePlane_Bevel3DCheck(const Vec* param_0, const Vec* param_1, const Vec* param_2) { u32 ret = 0; if (param_0->x + param_0->y + param_0->z > param_2->x + param_2->y + param_2->z) { ret |= BEVEL3D_OUTCODE0; } if (-param_0->x + param_0->y + param_0->z > -param_1->x + param_2->y + param_2->z) { ret |= BEVEL3D_OUTCODE1; } if (-param_0->x + param_0->y - param_0->z > -param_1->x + param_2->y - param_1->z) { ret |= BEVEL3D_OUTCODE2; } if (param_0->x + param_0->y - param_0->z > param_2->x + param_2->y - param_1->z) { ret |= BEVEL3D_OUTCODE3; } if (param_0->x - param_0->y + param_0->z > param_2->x - param_1->y + param_2->z) { ret |= BEVEL3D_OUTCODE4; } if (-param_0->x - param_0->y + param_0->z > -param_1->x - param_1->y + param_2->z) { ret |= BEVEL3D_OUTCODE5; } if (-param_0->x - param_0->y + param_0->z > -param_1->x - param_1->y + param_2->z) { ret |= BEVEL3D_OUTCODE6; } if (-param_0->x - param_0->y - param_0->z > -param_1->x - param_1->y - param_1->z) { ret |= BEVEL3D_OUTCODE7; } return ret; } /* 8024AE3C-8024BA18 .text cM3d_Cross_MinMaxBoxLine__FPC3VecPC3VecPC3VecPC3Vec */ bool cM3d_Cross_MinMaxBoxLine(const Vec* param_0, const Vec* param_1, const Vec* param_2, const Vec* param_3) { u32 uVar3 = 0; u32 uVar4 = 0; if (param_2->x > param_1->x) { if (param_3->x > param_1->x) { return false; } uVar3 |= BPCP_OUTCODE0; } else if (param_3->x > param_1->x) { uVar4 |= BPCP_OUTCODE0; } if ((uVar3 & BPCP_OUTCODE0) == 0 && param_2->x < param_0->x) { if ((uVar4 & BPCP_OUTCODE0) == 0 && param_3->x < param_0->x) { return false; } uVar3 |= BPCP_OUTCODE1; } else if ((uVar4 & BPCP_OUTCODE0) == 0 && param_3->x < param_0->x) { uVar4 |= BPCP_OUTCODE1; } if (param_2->z > param_1->z) { if (param_3->z > param_1->z) { return false; } uVar3 |= BPCP_OUTCODE4; } else if (param_3->z > param_1->z) { uVar4 |= BPCP_OUTCODE4; } if ((uVar3 & BPCP_OUTCODE4) == 0 && param_2->z < param_0->z) { if ((uVar4 & BPCP_OUTCODE4) == 0 && param_3->z < param_0->z) { return false; } uVar3 |= BPCP_OUTCODE5; } else if ((uVar4 & BPCP_OUTCODE4) == 0 && param_3->z < param_0->z) { uVar4 |= BPCP_OUTCODE5; } if (param_2->y > param_1->y) { if (param_3->y > param_1->y) { return false; } uVar3 |= BPCP_OUTCODE2; } else if (param_3->y > param_1->y) { uVar4 |= BPCP_OUTCODE2; } if ((uVar3 & BPCP_OUTCODE2) == 0 && param_2->y < param_0->y) { if ((uVar4 & BPCP_OUTCODE2) == 0 && param_3->y < param_0->y) { return false; } uVar3 |= BPCP_OUTCODE3; } else if ((uVar4 & BPCP_OUTCODE2) == 0 && param_3->y < param_0->y) { uVar4 |= BPCP_OUTCODE3; } if (uVar3 == 0) { return true; } if (uVar4 == 0) { return true; } uVar3 |= cM3d_CheckBoxEdgePlane_Bevel2DCheck(param_2, param_0, param_1) << 8; uVar4 |= cM3d_CheckBoxEdgePlane_Bevel2DCheck(param_3, param_0, param_1) << 8; if ((uVar3 & uVar4) != 0) { return false; } uVar3 |= cM3d_CheckBoxEdgePlane_Bevel3DCheck(param_2, param_0, param_1) << 0x18; uVar4 |= cM3d_CheckBoxEdgePlane_Bevel3DCheck(param_3, param_0, param_1) << 0x18; if ((uVar3 & uVar4) != 0) { return false; } cM3dGLin line(*param_2, *param_3); if ((uVar3 ^ uVar4) & BPCP_OUTCODE0) { cM3dGPla plane; plane.mNormal.x = 1.0f; plane.mNormal.y = 0.0f; plane.mNormal.z = 0.0f; plane.mD = -param_1->x; Vec cross; if (plane.cross(line, cross) && param_0->y <= cross.y && cross.y <= param_1->y && param_0->z <= cross.z && cross.z <= param_1->z) { return true; } } if ((uVar3 ^ uVar4) & BPCP_OUTCODE1) { cM3dGPla plane; plane.mNormal.x = -1.0f; plane.mNormal.y = 0.0f; plane.mNormal.z = 0.0f; plane.mD = param_0->x; Vec cross; if (plane.cross(line, cross) && param_0->y <= cross.y && cross.y <= param_1->y && param_0->z <= cross.z && cross.z <= param_1->z) { return true; } } if ((uVar3 ^ uVar4) & BPCP_OUTCODE2) { cM3dGPla plane; plane.mNormal.x = 0.0f; plane.mNormal.y = 1.0f; plane.mNormal.z = 0.0f; plane.mD = -param_1->y; Vec cross; if (plane.cross(line, cross) && param_0->x <= cross.x && cross.x <= param_1->x && param_0->z <= cross.z && cross.z <= param_1->z) { return true; } } if ((uVar3 ^ uVar4) & BPCP_OUTCODE3) { cM3dGPla plane; plane.mNormal.x = 0.0f; plane.mNormal.y = -1.0f; plane.mNormal.z = 0.0f; plane.mD = param_0->y; Vec cross; if (plane.cross(line, cross) && param_0->x <= cross.x && cross.x <= param_1->x && param_0->z <= cross.z && cross.z <= param_1->z) { return true; } } if ((uVar3 ^ uVar4) & BPCP_OUTCODE4) { cM3dGPla plane; plane.mNormal.x = 0.0f; plane.mNormal.y = 0.0f; plane.mNormal.z = 1.0f; plane.mD = -param_1->z; Vec cross; if (plane.cross(line, cross) && param_0->x <= cross.x && cross.x <= param_1->x && param_0->y <= cross.y && cross.y <= param_1->y) { return true; } } if ((uVar3 ^ uVar4) & BPCP_OUTCODE5) { cM3dGPla plane; plane.mNormal.x = 0.0f; plane.mNormal.y = 0.0f; plane.mNormal.z = -1.0f; plane.mD = param_0->z; Vec cross; if (plane.cross(line, cross) && param_0->x <= cross.x && cross.x <= param_1->x && param_0->y <= cross.y && cross.y <= param_1->y) { return true; } } return false; } /* 8024BA18-8024BB50 .text cM3d_InclusionCheckPosIn3PosBox3d__FPC3VecPC3VecPC3VecPC3Vecf */ bool cM3d_InclusionCheckPosIn3PosBox3d(const Vec* pVecA, const Vec* pVecB, const Vec* pVecC, const Vec* pVecD, f32 pF) { f32 min, max; if (pVecA->x < pVecB->x) { min = pVecA->x; max = pVecB->x; } else { min = pVecB->x; max = pVecA->x; } if (min > pVecC->x) { min = pVecC->x; } else if (max < pVecC->x) { max = pVecC->x; } if (min - pF > pVecD->x || max + pF < pVecD->x) { return false; } if (pVecA->z < pVecB->z) { min = pVecA->z; max = pVecB->z; } else { min = pVecB->z; max = pVecA->z; } if (min > pVecC->z) { min = pVecC->z; } else if (max < pVecC->z) { max = pVecC->z; } if (min - pF > pVecD->z || max + pF < pVecD->z) { return false; } if (pVecA->y < pVecB->y) { min = pVecA->y; max = pVecB->y; } else { min = pVecB->y; max = pVecA->y; } if (min > pVecC->y) { min = pVecC->y; } else if (max < pVecC->y) { max = pVecC->y; } if (min - pF > pVecD->y || max + pF < pVecD->y) { return false; } return true; } inline static bool cM3d_InclusionCheckPosIn3PosBox2d( f32 param_1, f32 param_2, f32 param_3, f32 param_4, f32 param_5, f32 param_6, f32 param_7, f32 param_8 ) { f32 f31; f32 f30; if (param_1 < param_3) { f31 = param_1; f30 = param_3; } else { f31 = param_3; f30 = param_1; } if (f31 > param_5) { f31 = param_5; } else if (f30 < param_5) { f30 = param_5; } if (f31 > param_7 || f30 < param_7) { return false; } if (param_2 < param_4) { f31 = param_2; f30 = param_4; } else { f31 = param_4; f30 = param_2; } if (f31 > param_6) { f31 = param_6; } else if (f30 < param_6) { f30 = param_6; } if (f31 > param_8 || f30 < param_8) { return false; } return true; } /* 8024BB50-8024BD34 .text cM3d_CrossX_Tri__FPC8cM3dGTriPC3Vecf */ bool cM3d_CrossX_Tri(const cM3dGTri* tri, const Vec* pos, f32 f1) { if (cM3d_IsZero(tri->GetNP()->x)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.y, tri->mA.z, tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.y, tri->mA.z, tri->mB.y, tri->mB.z, pos->y, pos->z ); if (f12 <= f1 && cM3d_VectorProduct2d( tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z ) <= f1 && cM3d_VectorProduct2d( tri->mC.y, tri->mC.z, tri->mA.y, tri->mA.z, pos->y, pos->z ) <= f1 ) { return true; } if (f12 >= -f1 && cM3d_VectorProduct2d( tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z ) >= -f1 && cM3d_VectorProduct2d( tri->mC.y, tri->mC.z, tri->mA.y, tri->mA.z, pos->y, pos->z ) >= -f1 ) { return true; } return false; } /* 8024BD34-8024BF1C .text cM3d_CrossX_Tri__FPC8cM3dGTriPC3Vec */ bool cM3d_CrossX_Tri(const cM3dGTri* tri, const Vec* pos) { if (cM3d_IsZero(tri->GetNP()->x)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.y, tri->mA.z, tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.y, tri->mA.z, tri->mB.y, tri->mB.z, pos->y, pos->z ); if (f12 <= 20.0f && cM3d_VectorProduct2d( tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z ) <= 20.0f && cM3d_VectorProduct2d( tri->mC.y, tri->mC.z, tri->mA.y, tri->mA.z, pos->y, pos->z ) <= 20.0f ) { return true; } if (f12 >= -20.0f && cM3d_VectorProduct2d( tri->mB.y, tri->mB.z, tri->mC.y, tri->mC.z, pos->y, pos->z ) >= -20.0f && cM3d_VectorProduct2d( tri->mC.y, tri->mC.z, tri->mA.y, tri->mA.z, pos->y, pos->z ) >= -20.0f ) { return true; } return false; } /* 8024BF1C-8024BFA0 .text cM3d_CrossX_Tri__FPC8cM3dGTriPC3VecPf */ bool cM3d_CrossX_Tri(const cM3dGTri* tri, const Vec* r30, f32* pcross_len) { if (cM3d_CrossX_Tri(tri, r30)) { *pcross_len = ((r30->y * -tri->GetNP()->y) - (r30->z * tri->GetNP()->z) - tri->GetD()) / tri->GetNP()->x; return true; } else { return false; } } /* 8024BFA0-8024C188 .text cM3d_CrossY_Tri__FPC8cM3dGTriPC3Vec */ bool cM3d_CrossY_Tri(const cM3dGTri* tri, const Vec* pos) { if (cM3d_IsZero(tri->GetNP()->y)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.z, tri->mA.x, tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.z, tri->mA.x, tri->mB.z, tri->mB.x, pos->z, pos->x ); if (f12 <= 20.0f && cM3d_VectorProduct2d( tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x ) <= 20.0f && cM3d_VectorProduct2d( tri->mC.z, tri->mC.x, tri->mA.z, tri->mA.x, pos->z, pos->x ) <= 20.0f ) { return true; } if (f12 >= -20.0f && cM3d_VectorProduct2d( tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x ) >= -20.0f && cM3d_VectorProduct2d( tri->mC.z, tri->mC.x, tri->mA.z, tri->mA.x, pos->z, pos->x ) >= -20.0f ) { return true; } return false; } /* 8024C188-8024C370 .text cM3d_CrossY_Tri__FRC3VecRC3VecRC3VecRC8cM3dGPlaPC3Vec */ bool cM3d_CrossY_Tri(const Vec& r3, const Vec& r4, const Vec& r5, const cM3dGPla& pla, const Vec* pos) { if (cM3d_IsZero(pla.GetNP()->y)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( r3.z, r3.x, r4.z, r4.x, r5.z, r5.x, pos->z, pos->x )) { return false; } f32 f12 = cM3d_VectorProduct2d( r3.z, r3.x, r4.z, r4.x, pos->z, pos->x ); if (f12 <= 20.0f && cM3d_VectorProduct2d( r4.z, r4.x, r5.z, r5.x, pos->z, pos->x ) <= 20.0f && cM3d_VectorProduct2d( r5.z, r5.x, r3.z, r3.x, pos->z, pos->x ) <= 20.0f ) { return true; } if (f12 >= -20.0f && cM3d_VectorProduct2d( r4.z, r4.x, r5.z, r5.x, pos->z, pos->x ) >= -20.0f && cM3d_VectorProduct2d( r5.z, r5.x, r3.z, r3.x, pos->z, pos->x ) >= -20.0f ) { return true; } return false; } /* 8024C370-8024C4D0 .text cM3d_CrossY_Tri_Front__FRC3VecRC3VecRC3VecPC3Vec */ bool cM3d_CrossY_Tri_Front(const Vec& r3, const Vec& r4, const Vec& r5, const Vec* pos) { if (!cM3d_InclusionCheckPosIn3PosBox2d( r3.z, r3.x, r4.z, r4.x, r5.z, r5.x, pos->z, pos->x )) { return false; } if (cM3d_VectorProduct2d( r3.z, r3.x, r4.z, r4.x, pos->z, pos->x ) >= -20.0f && cM3d_VectorProduct2d( r4.z, r4.x, r5.z, r5.x, pos->z, pos->x ) >= -20.0f && cM3d_VectorProduct2d( r5.z, r5.x, r3.z, r3.x, pos->z, pos->x ) >= -20.0f ) { return true; } return false; } /* 8024C4D0-8024C554 .text cM3d_CrossY_Tri__FPC8cM3dGTriPC3VecPf */ bool cM3d_CrossY_Tri(const cM3dGTri* tri, const Vec* r30, f32* pcross_len) { if (cM3d_CrossY_Tri(tri, r30)) { *pcross_len = ((r30->x * -tri->GetNP()->x) - (r30->z * tri->GetNP()->z) - tri->GetD()) / tri->GetNP()->y; return true; } else { return false; } } /* 8024C554-8024C738 .text cM3d_CrossY_Tri__FPC8cM3dGTriPC3Vecf */ bool cM3d_CrossY_Tri(const cM3dGTri* tri, const Vec* pos, f32 f1) { if (cM3d_IsZero(tri->GetNP()->y)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.z, tri->mA.x, tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.z, tri->mA.x, tri->mB.z, tri->mB.x, pos->z, pos->x ); if (f12 <= f1 && cM3d_VectorProduct2d( tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x ) <= f1 && cM3d_VectorProduct2d( tri->mC.z, tri->mC.x, tri->mA.z, tri->mA.x, pos->z, pos->x ) <= f1 ) { return true; } if (f12 >= -f1 && cM3d_VectorProduct2d( tri->mB.z, tri->mB.x, tri->mC.z, tri->mC.x, pos->z, pos->x ) >= -f1 && cM3d_VectorProduct2d( tri->mC.z, tri->mC.x, tri->mA.z, tri->mA.x, pos->z, pos->x ) >= -f1 ) { return true; } return false; } /* 8024C738-8024C828 .text cM3d_CrossY_Tri__FPC8cM3dGTriPC3VecPC10cM3d_RangePf */ bool cM3d_CrossY_Tri(const cM3dGTri* tri, const Vec* pos, const cM3d_Range* range, f32* pcross_len) { if (cM3d_IsZero(tri->GetNP()->y)) { return false; } Vec sp08; sp08.x = pos->x; sp08.y = range->start; sp08.z = pos->z; f32 f31 = tri->getPlaneFunc(&sp08); sp08.y = range->end; f32 f1 = tri->getPlaneFunc(&sp08); if ((f31 > 0.0f && f1 > 0.0f) || (f31 < 0.0f && f1 < 0.0f)) { return false; } return cM3d_CrossY_Tri(tri, pos, pcross_len); } /* 8024C828-8024CA0C .text cM3d_CrossZ_Tri__FPC8cM3dGTriPC3Vecf */ bool cM3d_CrossZ_Tri(const cM3dGTri* tri, const Vec* pos, f32 f1) { if (cM3d_IsZero(tri->GetNP()->z)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.x, tri->mA.y, tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.x, tri->mA.y, tri->mB.x, tri->mB.y, pos->x, pos->y ); if (f12 <= f1 && cM3d_VectorProduct2d( tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y ) <= f1 && cM3d_VectorProduct2d( tri->mC.x, tri->mC.y, tri->mA.x, tri->mA.y, pos->x, pos->y ) <= f1 ) { return true; } if (f12 >= -f1 && cM3d_VectorProduct2d( tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y ) >= -f1 && cM3d_VectorProduct2d( tri->mC.x, tri->mC.y, tri->mA.x, tri->mA.y, pos->x, pos->y ) >= -f1 ) { return true; } return false; } /* 8024CA0C-8024CBF4 .text cM3d_CrossZ_Tri__FPC8cM3dGTriPC3Vec */ bool cM3d_CrossZ_Tri(const cM3dGTri* tri, const Vec* pos) { if (cM3d_IsZero(tri->GetNP()->z)) { return false; } if (!cM3d_InclusionCheckPosIn3PosBox2d( tri->mA.x, tri->mA.y, tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y )) { return false; } f32 f12 = cM3d_VectorProduct2d( tri->mA.x, tri->mA.y, tri->mB.x, tri->mB.y, pos->x, pos->y ); if (f12 <= 20.0f && cM3d_VectorProduct2d( tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y ) <= 20.0f && cM3d_VectorProduct2d( tri->mC.x, tri->mC.y, tri->mA.x, tri->mA.y, pos->x, pos->y ) <= 20.0f ) { return true; } if (f12 >= -20.0f && cM3d_VectorProduct2d( tri->mB.x, tri->mB.y, tri->mC.x, tri->mC.y, pos->x, pos->y ) >= -20.0f && cM3d_VectorProduct2d( tri->mC.x, tri->mC.y, tri->mA.x, tri->mA.y, pos->x, pos->y ) >= -20.0f ) { return true; } return false; } /* 8024CBF4-8024CC78 .text cM3d_CrossZ_Tri__FPC8cM3dGTriPC3VecPf */ bool cM3d_CrossZ_Tri(const cM3dGTri* tri, const Vec* r30, f32* pcross_len) { if (cM3d_CrossZ_Tri(tri, r30)) { *pcross_len = ((r30->x * -tri->GetNP()->x) - (r30->y * tri->GetNP()->y) - tri->GetD()) / tri->GetNP()->z; return true; } else { return false; } } /* 8024CC78-8024CD50 .text cM3d_Cross_LinTri__FPC8cM3dGLinPC8cM3dGTriP3Vecbb */ bool cM3d_Cross_LinTri(const cM3dGLin* lin, const cM3dGTri* tri, Vec* dst, bool a, bool b) { if (!cM3d_Cross_LinPla(lin, tri, dst, a, b)) { return false; } if ((std::fabsf(tri->GetNP()->x) < 0.008f || cM3d_CrossX_Tri(tri, dst)) && (std::fabsf(tri->GetNP()->y) < 0.008f || cM3d_CrossY_Tri(tri, dst)) && (std::fabsf(tri->GetNP()->z) < 0.008f || cM3d_CrossZ_Tri(tri, dst)) ) { return true; } else { return false; } } /* 8024CD50-8024CE0C .text cM3d_Cross_LinTri_Easy__FPC8cM3dGTriPC3Vec */ bool cM3d_Cross_LinTri_Easy(const cM3dGTri* tri, const Vec* r31) { if ((cM3d_IsZero(tri->GetNP()->x) || cM3d_CrossX_Tri(tri, r31)) && (cM3d_IsZero(tri->GetNP()->y) || cM3d_CrossY_Tri(tri, r31)) && (cM3d_IsZero(tri->GetNP()->z) || cM3d_CrossZ_Tri(tri, r31)) ) { return true; } else { return false; } } /* 8024CE0C-8024CE54 .text cM3d_Cross_SphPnt__FPC8cM3dGSphPC3Vec */ bool cM3d_Cross_SphPnt(const cM3dGSph* sph, const Vec* point) { return cM3d_LenSq(sph->GetCP(), point) <= sph->GetR() * sph->GetR(); } /* 8024CE54-8024D0BC .text cM3d_Cross_LinSph__FPC8cM3dGLinPC8cM3dGSphP3Vec */ bool cM3d_Cross_LinSph(const cM3dGLin* line, const cM3dGSph* sph, Vec* param_2) { Vec lin_vec; cXyz vec; const Vec* center = sph->GetCP(); f32 max_x = center->x + sph->GetR(); if (max_x < line->GetStartP()->x && max_x < line->GetEndP()->x) { return false; } f32 min_x = center->x - sph->GetR(); if (min_x > line->GetStartP()->x && min_x > line->GetEndP()->x) { return false; } f32 max_y = center->y + sph->GetR(); if (max_y < line->GetStartP()->y && max_y < line->GetEndP()->y) { return false; } f32 min_y = center->y - sph->GetR(); if (min_y > line->GetStartP()->y && min_y > line->GetEndP()->y) { return false; } f32 max_z = center->z + sph->GetR(); if (max_z < line->GetStartP()->z && max_z < line->GetEndP()->z) { return false; } f32 min_z = center->z - sph->GetR(); if (min_z > line->GetStartP()->z && min_z > line->GetEndP()->z) { return false; } VECSubtract(line->GetEndP(), line->GetStartP(), &lin_vec); f32 len_sq = VECSquareMag(&lin_vec); if (cM3d_IsZero(len_sq)) { return false; } VECSubtract(center, line->GetStartP(), &vec); f32 proj = VECDotProduct(&vec, &lin_vec) / len_sq; if (proj < 0.0f || proj > 1.0f) { if (line->GetStartP()->abs2(*center) < line->GetEndP()->abs2(*center)) { if (cM3d_Cross_SphPnt(sph, line->GetStartP())) { param_2->x = line->GetStartP()->x; param_2->y = line->GetStartP()->y; param_2->z = line->GetStartP()->z; return true; } } else { if (cM3d_Cross_SphPnt(sph, line->GetEndP())) { param_2->x = line->GetEndP()->x; param_2->y = line->GetEndP()->y; param_2->z = line->GetEndP()->z; return true; } } return false; } Vec proj_vec; VECScale(&lin_vec, &proj_vec, proj); VECAdd(&proj_vec, line->GetStartP(), param_2); if (cM3d_LenSq(param_2, center) <= sph->GetR() * sph->GetR()) { return true; } return false; } /* 8024D0BC-8024D378 .text cM3d_Cross_LinSph_CrossPos__FRC8cM3dGSphRC8cM3dGLinP3VecP3Vec */ int cM3d_Cross_LinSph_CrossPos(const cM3dGSph& sph, const cM3dGLin& line, Vec* param_2, Vec* param_3) { int ret; Vec line_vec, vec; VECSubtract(line.GetEndP(), line.GetStartP(), &line_vec); VECSubtract(line.GetStartP(), sph.GetCP(), &vec); f32 len_sq = VECDotProduct(&line_vec, &line_vec); f32 dVar9 = VECDotProduct(&line_vec, &vec) * 2.0f; f32 dVar6 = VECDotProduct(&vec, &vec) - sph.GetR() * sph.GetR(); if (cM3d_IsZero(len_sq)) { if (cM3d_IsZero(dVar9)) { return 0; } else { ret = 1; Vec vec2; VECScale(&line_vec, &vec2, -dVar6 / dVar9); VECAdd(&vec2, line.GetStartP(), param_2); } } else { f32 f11 = dVar9 * dVar9 - len_sq * 4.0f * dVar6; if (cM3d_IsZero(f11)) { ret = 1; Vec vec2; VECScale(&line_vec, &vec2, -dVar9 / (len_sq * 2.0f)); VECAdd(&vec2, line.GetStartP(), param_2); } else if (f11 < 0.0f) { ret = 0; } else { ret = 2; f32 f1 = 1.0f / (len_sq * 2.0f); Vec vec2; f32 scale1 = f1 * (-dVar9 + std::sqrtf(f11)); f32 scale2 = f1 * (-dVar9 - std::sqrtf(f11)); VECScale(&line_vec, &vec2, scale1); VECAdd(&vec2, line.GetStartP(), param_2); VECScale(&line_vec, &vec2, scale2); VECAdd(&vec2, line.GetStartP(), param_3); } } return ret; } /* 8024D378-8024DB34 .text cM3d_Cross_CylSph__FPC8cM3dGCylPC8cM3dGSphP3VecPf */ bool cM3d_Cross_CylSph(const cM3dGCyl* pcyl, const cM3dGSph* psph, Vec* param_2, f32* pcross_len) { const Vec* pnow_sph_center = psph->GetCP(); JUT_ASSERT(DEMO_SELECT(2499, 2498), !isnan(pnow_sph_center->x)); JUT_ASSERT(DEMO_SELECT(2500, 2499), !isnan(pnow_sph_center->y)); JUT_ASSERT(DEMO_SELECT(2501, 2500), !isnan(pnow_sph_center->z)); JUT_ASSERT(DEMO_SELECT(2502, 2501), !isnan(psph->GetR())); const Vec* pnow_cyl_center = pcyl->GetCP(); JUT_ASSERT(DEMO_SELECT(2504, 2503), !isnan(pnow_cyl_center->x)); JUT_ASSERT(DEMO_SELECT(2505, 2504), !isnan(pnow_cyl_center->y)); JUT_ASSERT(DEMO_SELECT(2506, 2505), !isnan(pnow_cyl_center->z)); JUT_ASSERT(DEMO_SELECT(2507, 2506), !isnan(pcyl->GetH())); JUT_ASSERT(DEMO_SELECT(2508, 2507), !isnan(pcyl->GetR())); f32 radius_sum = pcyl->GetR() + psph->GetR(); f32 dist = std::sqrtf(cM3d_Len2dSq(pnow_sph_center->x, pnow_sph_center->z, pnow_cyl_center->x, pnow_cyl_center->z)); if (radius_sum < dist) { return false; } if (pnow_sph_center->y + psph->GetR() >= pnow_cyl_center->y && pnow_sph_center->y - psph->GetR() <= pnow_cyl_center->y + pcyl->GetH()) { *pcross_len = radius_sum - dist; if (!cM3d_IsZero(dist)) { f32 scale = pcyl->GetR() / dist; if (scale <= 1.0f) { Vec delta; VECSubtract(pnow_sph_center, pnow_cyl_center, &delta); VECScale(&delta, &delta, scale); VECAdd(&delta, pnow_cyl_center, param_2); } else { *param_2 = *pnow_sph_center; } } else { *param_2 = *pnow_sph_center; } #if VERSION > VERSION_DEMO JUT_ASSERT(2539, !isnan(*pcross_len)); #endif return true; } return false; } /* 8024DB34-8024E1B4 .text cM3d_Cross_SphSph__FPC8cM3dGSphPC8cM3dGSphPfPf */ bool cM3d_Cross_SphSph(const cM3dGSph* i_a, const cM3dGSph* i_b, f32* param_2, f32* i_pcc_crosslen) { JUT_ASSERT(DEMO_SELECT(2566, 2565), !isnan(i_a->GetCP()->x)); JUT_ASSERT(DEMO_SELECT(2567, 2566), !isnan(i_a->GetCP()->y)); JUT_ASSERT(DEMO_SELECT(2568, 2567), !isnan(i_a->GetCP()->z)); JUT_ASSERT(DEMO_SELECT(2569, 2568), !isnan(i_a->GetR())); JUT_ASSERT(DEMO_SELECT(2570, 2569), !isnan(i_b->GetCP()->x)); JUT_ASSERT(DEMO_SELECT(2571, 2570), !isnan(i_b->GetCP()->y)); JUT_ASSERT(DEMO_SELECT(2572, 2571), !isnan(i_b->GetCP()->z)); JUT_ASSERT(DEMO_SELECT(2573, 2572), !isnan(i_b->GetR())); Vec delta; VECSubtract(i_a->GetCP(), i_b->GetCP(), &delta); *param_2 = VECMag(&delta); *i_pcc_crosslen = i_a->GetR() + i_b->GetR() - *param_2; if (*i_pcc_crosslen > G_CM3D_F_ABS_MIN) { JUT_ASSERT(DEMO_SELECT(2583, 2582), !isnan(*i_pcc_crosslen)); return true; } else { *i_pcc_crosslen = 0.0f; JUT_ASSERT(DEMO_SELECT(2588, 2587), !isnan(*i_pcc_crosslen)); return false; } } /* 8024E1B4-8024E288 .text cM3d_Cross_SphSph__FPC8cM3dGSphPC8cM3dGSphP3Vec */ bool cM3d_Cross_SphSph(const cM3dGSph* sph_a, const cM3dGSph* sph_b, Vec* dst) { f32 centerDist; f32 overlapLen; if (cM3d_Cross_SphSph(sph_a, sph_b, ¢erDist, &overlapLen)) { if (!cM3d_IsZero(centerDist)) { // could be an inlined function f32 tmpF = sph_b->GetR() / centerDist; Vec tmp; VECSubtract(&sph_a->GetC(), &sph_b->GetC(), &tmp); VECScale(&tmp, &tmp, tmpF); VECAdd(&tmp, &sph_b->GetC(), dst); } else { *dst = sph_a->GetC(); } return true; } else { return false; } } /* 8024E288-8024E330 .text cM3d_CalcSphVsTriCrossPoint__FPC8cM3dGSphPC8cM3dGTriP3Vec */ void cM3d_CalcSphVsTriCrossPoint(const cM3dGSph* sph, const cM3dGTri* tri, Vec* dst) { Vec tmp2; Vec tmp; VECAdd(&tri->mA, &tri->mB, &tmp); VECScale(&tmp, &tmp2, 0.5f); f32 sqDist = VECSquareDistance(&tmp2, &sph->GetC()); if (cM3d_IsZero(sqDist)) { *dst = sph->GetC(); } else { cM3d_InDivPos2(&sph->GetC(), &tmp2, sph->GetR() / sqDist, dst); } } inline bool cM3d_Cross_LinSph(cM3dGLin const* line, cM3dGSph const* sph) { Vec vec; return cM3d_Cross_LinSph(line, sph, &vec); } /* 8024E330-8024E694 .text cM3d_Cross_SphTri__FPC8cM3dGSphPC8cM3dGTriP3Vec */ bool cM3d_Cross_SphTri(const cM3dGSph* sph, const cM3dGTri* tri, Vec* param_2) { if (!cM3d_InclusionCheckPosIn3PosBox3d(&tri->mA, &tri->mB, &tri->mC, sph->GetCP(), sph->GetR())) { return false; } f32 dist = cM3d_SignedLenPlaAndPos(tri, sph->GetCP()); if (std::fabsf(dist) > sph->GetR()) { return false; } Vec vec1, vec2; VECScale(tri->GetNP(), &vec2, dist); VECSubtract(sph->GetCP(), &vec2, &vec1); if (std::fabsf(tri->GetNP()->y) > 0.5f) { if (cM3d_CrossY_Tri(tri, &vec1, 0.0f)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } } else if (std::fabsf(tri->GetNP()->x) > 0.5f) { if (cM3d_CrossX_Tri(tri, &vec1, 0.0f)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } } else { if (cM3d_CrossZ_Tri(tri, &vec1, 0.0f)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } } cM3dGLin line1(tri->mA, tri->mB); if (cM3d_Cross_LinSph(&line1, sph)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } cM3dGLin line2(tri->mB, tri->mC); if (cM3d_Cross_LinSph(&line2, sph)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } cM3dGLin line3(tri->mC, tri->mA); if (cM3d_Cross_LinSph(&line3, sph)) { if (param_2 != NULL) { cM3d_CalcSphVsTriCrossPoint(sph, tri, param_2); } return true; } return false; } /* 8024E694-8024EF80 .text cM3d_Cross_CylCyl__FPC8cM3dGCylPC8cM3dGCylPf */ bool cM3d_Cross_CylCyl(const cM3dGCyl* i_cyl1, const cM3dGCyl* i_cyl2, f32* i_pcross_len) { const Vec& c1 = i_cyl1->GetC(); JUT_ASSERT(DEMO_SELECT(2827, 2826), !isnan(c1.x)); JUT_ASSERT(DEMO_SELECT(2828, 2827), !isnan(c1.y)); JUT_ASSERT(DEMO_SELECT(2829, 2828), !isnan(c1.z)); JUT_ASSERT(DEMO_SELECT(2830, 2829), !isnan(i_cyl1->GetR())); JUT_ASSERT(DEMO_SELECT(2831, 2830), !isnan(i_cyl1->GetH())); const Vec& c2 = i_cyl2->GetC(); JUT_ASSERT(DEMO_SELECT(2833, 2832), !isnan(c2.x)); JUT_ASSERT(DEMO_SELECT(2834, 2833), !isnan(c2.y)); JUT_ASSERT(DEMO_SELECT(2835, 2834), !isnan(c2.z)); JUT_ASSERT(DEMO_SELECT(2836, 2835), !isnan(i_cyl2->GetR())); JUT_ASSERT(DEMO_SELECT(2837, 2836), !isnan(i_cyl2->GetH())); f32 delta_x = c1.x - c2.x; f32 delta_z = c1.z - c2.z; f32 dist_sq = delta_x * delta_x + delta_z * delta_z; f32 radius_sum = i_cyl1->GetR() + i_cyl2->GetR(); if (dist_sq > radius_sum * radius_sum) { *i_pcross_len = 0.0f; JUT_ASSERT(DEMO_SELECT(2850, 2849), !isnan(*i_pcross_len)); return false; } if (c1.y + i_cyl1->GetH() < c2.y || c1.y > c2.y + i_cyl2->GetH()) { *i_pcross_len = 0.0f; JUT_ASSERT(DEMO_SELECT(2858, 2857), !isnan(*i_pcross_len)); return false; } *i_pcross_len = radius_sum - std::sqrtf(dist_sq); JUT_ASSERT(DEMO_SELECT(2865, 2864), !isnan(*i_pcross_len)); return true; } /* 8024EF80-8024F11C .text cM3d_Cross_CylCyl__FPC8cM3dGCylPC8cM3dGCylP3Vec */ bool cM3d_Cross_CylCyl(const cM3dGCyl* cyl1, const cM3dGCyl* cyl2, Vec* param_2) { const Vec& center1 = cyl1->GetC(); const Vec& center2 = cyl2->GetC(); f32 delta_x = center1.x - center2.x; f32 delta_z = center1.z - center2.z; f32 dist_sq = delta_x * delta_x + delta_z * delta_z; f32 radius_sum = cyl1->GetR() + cyl2->GetR(); if (dist_sq > radius_sum * radius_sum) { return false; } if (center1.y + cyl1->GetH() < center2.y || center1.y > center2.y + cyl2->GetH()) { return false; } f32 dist = std::sqrtf(dist_sq); if (!cM3d_IsZero(dist)) { f32 scale = cyl2->GetR() / dist; param_2->y = center2.y + cyl2->GetH() * 0.5f; f32 tmp = center1.y; if (param_2->y < tmp) { param_2->y = tmp; } else { tmp += cyl1->GetH(); if (param_2->y > tmp) { param_2->y = tmp; } } param_2->x = center2.x + scale * (center1.x - center2.x); param_2->z = center2.z + scale * (center1.z - center2.z); } else { *param_2 = center2; } return true; } /* 8024F11C-8024F410 .text cM3d_Cross_CylTri__FPC8cM3dGCylPC8cM3dGTriP3Vec */ bool cM3d_Cross_CylTri(const cM3dGCyl* cyl, const cM3dGTri* tri, Vec* param_2) { const Vec& center = cyl->GetC(); f32 top_y = center.y + cyl->GetH(); if ((center.y > tri->mA.y && center.y > tri->mB.y && center.y > tri->mC.y) || (top_y < tri->mA.y && top_y < tri->mB.y && top_y < tri->mC.y)) { return false; } Vec vec1, vec2; f32 min_len_sq = G_CM3D_F_INF; if (cM3d_Cross_CylPntPnt(cyl, &tri->mA, &tri->mB, &vec1, &vec2)) { min_len_sq = cM3d_LenSq(&vec1, &tri->mA); *param_2 = vec1; } if (cM3d_Cross_CylPntPnt(cyl, &tri->mC, &tri->mB, &vec1, &vec2)) { f32 len_sq = cM3d_LenSq(&vec1, &tri->mC); if (min_len_sq > len_sq) { min_len_sq = len_sq; *param_2 = vec1; } } if (cM3d_Cross_CylPntPnt(cyl, &tri->mA, &tri->mC, &vec1, &vec2)) { f32 len_sq = cM3d_LenSq(&vec1, &tri->mA); if (min_len_sq > len_sq) { min_len_sq = len_sq; *param_2 = vec1; } } if (min_len_sq != G_CM3D_F_INF) { return true; } cM3d_Range range; range.start = center.y; range.end = top_y; f32 tmp; if (cM3d_CrossY_Tri(tri, ¢er, &range, &tmp)) { Vec vec3, vec4, vec5, vec6; vec3 = center; vec3.y = tmp; VECAdd(&tri->mA, &tri->mB, &vec6); VECScale(&vec6, &vec4, 0.5f); VECSubtract(&vec4, &vec3, &vec5); f32 dist = std::sqrtf(vec5.x * vec5.x + vec5.z * vec5.z); if (cM3d_IsZero(dist)) { param_2->x = vec4.x; param_2->y = vec4.y; param_2->z = vec4.z; } else { cM3d_InDivPos1(&vec3, &vec5, cyl->GetR() / dist, param_2); } return true; } return false; } /* 8024F410-8024FA90 .text cM3d_Cross_CylLin__FPC8cM3dGCylPC8cM3dGLinP3VecP3Vec */ int cM3d_Cross_CylLin(const cM3dGCyl* cyl, const cM3dGLin* line, Vec* param_2, Vec* param_3) { f32 ratio; f32 f2; f32 fVar5; f32 fVar2; f32 fVar1; f32 fVar6; f32 fVar4; BOOL bVar4; BOOL bVar3; BOOL bVar6; BOOL bVar5; u32 uVar11; f32 sp28; f32 r_sq; int count; ratio = 0.0f; f2 = 0.0f; uVar11 = 0; if (cM3d_Cross_CylPnt(cyl, line->GetStartP()) && cM3d_Cross_CylPnt(cyl, line->GetEndP())) { *param_2 = *line->GetStartP(); *param_3 = *line->GetEndP(); return 2; } Vec vec1, vec2, vec3; Vec vec[4]; const cXyz* center = cyl->GetCP(); VECSubtract(line->GetStartP(), center, &vec1); VECSubtract(line->GetEndP(), center, &vec2); VECSubtract(&vec2, &vec1, &vec3); r_sq = cyl->GetR() * cyl->GetR(); if (!cM3d_IsZero(vec3.y)) { ratio = -vec1.y / vec3.y; if (ratio >= 0.0f && ratio <= 1.0f) { f32 x = vec1.x + vec3.x * ratio; f32 z = vec1.z + vec3.z * ratio; if (x * x + z * z < r_sq) { uVar11 |= 1; vec[0].x = x + center->x; vec[0].y = center->y; vec[0].z = z + center->z; } } ratio = (cyl->GetH() - vec1.y) / vec3.y; if (ratio >= 0.0f && ratio <= 1.0f) { f32 x = vec1.x + vec3.x * ratio; f32 z = vec1.z + vec3.z * ratio; if (x * x + z * z < r_sq) { uVar11 |= 2; vec[1].x = x + center->x; vec[1].y = center->y + cyl->GetH(); vec[1].z = z + center->z; } } } bVar4 = false; bVar3 = false; fVar5 = vec3.x * vec3.x + vec3.z * vec3.z; fVar2 = (vec3.x * vec1.x + vec3.z * vec1.z) * 2.0f; fVar1 = vec1.x * vec1.x + vec1.z * vec1.z - r_sq; f32 sp0C = fVar5 * 2.0f; if (!cM3d_IsZero(sp0C)) { fVar6 = fVar2 * fVar2 - fVar5 * 4.0f * fVar1; if (fVar6 < 0.0f) { return 0; } if (fVar6 > 0.0f) { bVar4 = bVar3 = true; } else { bVar4 = true; bVar3 = false; } fVar4 = std::sqrtf(fVar6); if (bVar4) { ratio = (-fVar2 + fVar4) / sp0C; } if (bVar3) { f2 = (-fVar2 - fVar4) / sp0C; } } else { if (!cM3d_IsZero(fVar2)) { bVar4 = true; bVar3 = false; ratio = -fVar1 / fVar2; } else { return 0; } } if (bVar4 && !bVar3) { if (0.0f > ratio || ratio > 1.0f) { return 0; } } else { bVar6 = 0.0f > ratio || ratio > 1.0f; bVar5 = 0.0f > f2 || f2 > 1.0f; if (bVar6 && bVar5) { return 0; } if (bVar6) { bVar4 = false; } if (bVar5) { bVar3 = false; } } if (bVar4) { sp28 = vec1.y + ratio * vec3.y; if (sp28 < 0.0f || sp28 > cyl->GetH()) { bVar4 = false; } } if (bVar3) { sp28 = vec1.y + f2 * vec3.y; if (sp28 < 0.0f || sp28 > cyl->GetH()) { bVar3 = false; } } if (!bVar4 && !bVar3) { return 0; } if (bVar4 && bVar3) { Vec vec5, vec6; VECAdd(&vec1, center, &vec5); uVar11 |= 4; VECScale(&vec3, &vec6, ratio); VECAdd(&vec6, &vec5, &vec[2]); uVar11 |= 8; VECScale(&vec3, &vec6, f2); VECAdd(&vec6, &vec5, &vec[3]); } else if (bVar4) { uVar11 |= 4; Vec vec5, vec6; VECScale(&vec3, &vec5, ratio); VECAdd(&vec5, &vec1, &vec6); VECAdd(&vec6, center, &vec[2]); } else if (bVar3) { uVar11 |= 4; Vec vec5, vec6; VECScale(&vec3, &vec5, f2); VECAdd(&vec5, &vec1, &vec6); VECAdd(&vec6, center, &vec[2]); } count = 0; for (int i = 0; i < 4; i++) { if (uVar11 & (1 << i)) { if (count == 0) { *param_2 = vec[i]; } else if (count == 1) { // Bug? This check was changed to the following for TP: // if (cM3d_LenSq(line->GetStartP(), param_2) < cM3d_LenSq(line->GetStartP(), &vec[i])) { if (cM3d_LenSq(param_2, line->GetStartP()) < cM3d_LenSq(param_2, &vec[i])) { *param_3 = vec[i]; } else { *param_3 = *param_2; *param_2 = vec[i]; } break; } count++; } } return count; } /* 8024FA90-8024FB04 .text cM3d_Cross_CylPntPnt__FPC8cM3dGCylPC3VecPC3VecP3VecP3Vec */ int cM3d_Cross_CylPntPnt(const cM3dGCyl* cyl, const Vec* a, const Vec* b, Vec* dst_a, Vec* dst_b) { cM3dGLin lin; lin.SetStartEnd(*a, *b); return cM3d_Cross_CylLin(cyl, &lin, dst_a, dst_b); } /* 8024FB04-8024FB68 .text cM3d_Cross_CylPnt__FPC8cM3dGCylPC3Vec */ bool cM3d_Cross_CylPnt(const cM3dGCyl* cyl, const Vec* pt) { const cXyz& center = cyl->GetC(); f32 dX = center.x - pt->x; f32 dZ = center.z - pt->z; f32 y = center.y; f32 maxY = y + cyl->GetH(); if (dX * dX + dZ * dZ < cyl->GetR() * cyl->GetR() && y < pt->y && maxY > pt->y) { return true; } else { return false; } } /* 8024FB68-8024FF10 .text cM3d_Cross_CpsCps__FRC8cM3dGCpsRC8cM3dGCpsP3Vec */ bool cM3d_Cross_CpsCps(const cM3dGCps& cps1, const cM3dGCps& cps2, Vec* param_2) { f32 f1, f2; int iVar1 = cM3d_Check_LinLin(&cps1, &cps2, &f1, &f2); if (iVar1 == 1) { return false; } if (iVar1 == 2) { if (f1 > 0.0f && f1 < 1.0f && f2 > 0.0f && f2 < 1.0f) { Vec pos1, pos2; cps1.CalcPos(&pos1, f1); cps2.CalcPos(&pos2, f2); if (VECDistance(&pos1, &pos2) < cps1.GetR() + cps2.GetR()) { VECAdd(&pos1, &pos2, param_2); VECScale(param_2, param_2, 0.5f); return true; } } } else if (iVar1 == 3) { Vec pos1, pos2; if (f1 < 0.0f) { pos1 = cps1.GetStart(); if (f2 < 0.0f) { pos2 = cps2.GetStart(); } else if (f2 > 1.0f) { pos2 = cps2.GetEnd(); } else { cps2.CalcPos(&pos2, f2); } } else if (f1 > 1.0f) { pos1 = cps1.GetEnd(); if (f2 < 0.0f) { pos2 = cps2.GetStart(); } else if (f2 > 1.0f) { pos2 = cps2.GetEnd(); } else { cps2.CalcPos(&pos2, f2); } } else { cps1.CalcPos(&pos1, f1); if (f2 < 0.0f) { pos2 = cps2.GetStart(); } else if (f2 > 1.0f) { pos2 = cps2.GetEnd(); } else { cps2.CalcPos(&pos2, f2); } } if (VECDistance(&pos1, &pos2) < cps1.GetR() + cps2.GetR()) { VECAdd(&pos1, &pos2, param_2); VECScale(param_2, param_2, 0.5f); return true; } return false; } return false; } inline bool cM3d_Cross_CpsCyl_Check(cM3dGCps const& cps, cM3dGCyl const& cyl, Vec& pos1, Vec& pos2, Vec* param_4) { f32 dist = VECDistance(&pos1, &pos2); if (dist < cps.GetR()) { VECAdd(&pos1, &pos2, param_4); VECScale(param_4, param_4, 0.5f); return true; } return false; } /* 8024FF10-802506D4 .text cM3d_Cross_CpsCyl__FRC8cM3dGCpsRC8cM3dGCylP3Vec */ bool cM3d_Cross_CpsCyl(const cM3dGCps& cps, const cM3dGCyl& cyl, Vec* param_2) { cM3dGLin line; if (cM3d_Cross_CylPnt(&cyl, cps.GetEndP())) { *param_2 = *cps.GetEndP(); return true; } if (cM3d_Cross_CylPnt(&cyl, cps.GetStartP())) { *param_2 = *cps.GetStartP(); return true; } *line.GetStartP() = *cyl.GetCP(); *line.GetEndP() = *cyl.GetCP(); line.GetEndP()->y += cyl.GetH(); Vec vec; f32 tmp; if (cM3d_Len3dSqPntAndSegLine(&cps, line.GetEndP(), &vec, &tmp)) { f32 dist = VECDistance(line.GetEndP(), &vec); if (dist < cps.GetR()) { VECAdd(line.GetEndP(), &vec, param_2); VECScale(param_2, param_2, 0.5f); *param_2 = *line.GetEndP(); return true; } } if (cM3d_Len3dSqPntAndSegLine(&cps, line.GetStartP(), &vec, &tmp)) { f32 dist = VECDistance(line.GetStartP(), &vec); if (dist < cps.GetR()) { VECAdd(line.GetStartP(), &vec, param_2); VECScale(param_2, param_2, 0.5f); return true; } } f32 f1, f2; int iVar2 = cM3d_Check_LinLin(&cps, &line, &f1, &f2); if (iVar2 == 1) { cM3dGSph sph; f32 tmp2; sph.SetR(cps.GetR()); sph.SetC(*cps.GetStartP()); return cM3d_Cross_CylSph(&cyl, &sph, param_2, &tmp2); } else if (iVar2 == 2) { if (f1 >= 0.0f && f1 <= 1.0f && f2 >= 0.0f && f2 <= 1.0f) { Vec pos1, pos2; cps.CalcPos(&pos1, f1); line.CalcPos(&pos2, f2); if (VECDistance(&pos1, &pos2) < cps.GetR() + cyl.GetR()) { VECAdd(&pos1, &pos2, param_2); VECScale(param_2, param_2, 0.5f); return true; } } } else if (iVar2 == 3) { Vec pos1, pos2; if (f1 < 0.0f) { pos1 = cps.GetStart(); if (f2 < 0.0f) { pos2 = line.GetStart(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } if (f2 > 1.0f) { pos2 = line.GetEnd(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } line.CalcPos(&pos2, f2); } else if (f1 > 1.0f) { pos1 = cps.GetEnd(); if (f2 < 0.0f) { pos2 = line.GetStart(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } if (f2 > 1.0f) { pos2 = line.GetEnd(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } line.CalcPos(&pos2, f2); } else { cps.CalcPos(&pos1, f1); if (f2 < 0.0f) { pos2 = line.GetStart(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } if (f2 > 1.0f) { pos2 = line.GetEnd(); return cM3d_Cross_CpsCyl_Check(cps, cyl, pos1, pos2, param_2); } line.CalcPos(&pos2, f2); } if (VECDistance(&pos1, &pos2) < cps.GetR() + cyl.GetR()) { VECAdd(&pos1, &pos2, param_2); VECScale(param_2, param_2, 0.5f); return true; } return false; } return false; } /* 802506D4-80250840 .text cM3d_Cross_CpsSph_CrossPos__FRC8cM3dGCpsRC8cM3dGSphRC3VecP3Vec */ void cM3d_Cross_CpsSph_CrossPos(const cM3dGCps& param_1, const cM3dGSph& param_2, const Vec& param_3, Vec* param_4) { Vec aVStack_70; Vec VStack_7c; int iVar5 = cM3d_Cross_LinSph_CrossPos(param_2, param_1, &aVStack_70, &VStack_7c); if (iVar5 == 1) { *param_4 = aVStack_70; } else if (iVar5 == 2) { f32 dVar8 = VECSquareDistance(&aVStack_70, param_1.GetStartP()); f32 dVar9 = VECSquareDistance(&VStack_7c, param_1.GetStartP()); if (dVar8 < dVar9) { *param_4 = aVStack_70; } else { *param_4 = VStack_7c; } } else { f32 dVar8 = param_1.GetR() + param_2.GetR(); *param_4 = param_3; if (cM3d_IsZero(dVar8)) { *param_4 = param_3; } Vec auStack_88; VECSubtract(¶m_3, param_2.GetCP(), &auStack_88); VECScale(&auStack_88, &auStack_88, param_1.GetR() / dVar8); VECAdd(param_4, &auStack_88, param_4); } } /* 80250840-802509B0 .text cM3d_Cross_CpsSph__FRC8cM3dGCpsRC8cM3dGSphP3Vec */ bool cM3d_Cross_CpsSph(const cM3dGCps& param_1, const cM3dGSph& param_2, Vec* param_3) { f32 local_38 = VECDistance(param_1.GetStartP(), param_2.GetCP()); if (local_38 < param_1.GetR() + param_2.GetR()) { cM3d_Cross_CpsSph_CrossPos(param_1, param_2, *param_1.GetStartP(), param_3); return true; } local_38 = VECDistance(param_1.GetEndP(), param_2.GetCP()); if (local_38 < param_1.GetR() + param_2.GetR()) { cM3d_Cross_CpsSph_CrossPos(param_1, param_2, *param_1.GetEndP(), param_3); return true; } Vec auStack_34; if (cM3d_Len3dSqPntAndSegLine(¶m_1, param_2.GetCP(), &auStack_34, &local_38) != 0) { if (std::sqrtf(local_38) < param_1.GetR() + param_2.GetR()) { cM3d_Cross_CpsSph_CrossPos(param_1, param_2, auStack_34, param_3); return true; } } return false; } /* 802509B0-80250D70 .text cM3d_Cross_TriTri__FRC8cM3dGTriRC8cM3dGTriP3Vec */ bool cM3d_Cross_TriTri(const cM3dGTri& t0, const cM3dGTri& t1, Vec* r5) { f32 aVal01 = t0.getPlaneFunc(&t1.mA); f32 bVal01 = t0.getPlaneFunc(&t1.mB); f32 cVal01 = t0.getPlaneFunc(&t1.mC); if ((aVal01 > 0.0f && bVal01 > 0.0f && cVal01 > 0.0f) || (aVal01 < 0.0f && bVal01 < 0.0f && cVal01 < 0.0f)) { return false; } f32 aVal10 = t1.getPlaneFunc(&t0.mA); f32 bVal10 = t1.getPlaneFunc(&t0.mB); f32 cVal10 = t1.getPlaneFunc(&t0.mC); if ((aVal10 > 0.0f && bVal10 > 0.0f && cVal10 > 0.0f) || (aVal10 < 0.0f && bVal10 < 0.0f && cVal10 < 0.0f)) { return false; } cM3dGLin lin; lin.SetStartEnd(t1.mA, t1.mB); if (t0.cross(&lin, r5, false, false)) { return true; } lin.SetStartEnd(t1.mB, t1.mC); if (t0.cross(&lin, r5, false, false)) { return true; } lin.SetStartEnd(t1.mA, t1.mB); if (t0.cross(&lin, r5, false, false)) { return true; } lin.SetStartEnd(t0.mA, t0.mB); if (t1.cross(&lin, r5, false, false)) { return true; } lin.SetStartEnd(t0.mB, t0.mC); if (t1.cross(&lin, r5, false, false)) { return true; } lin.SetStartEnd(t0.mA, t0.mB); if (t1.cross(&lin, r5, false, false)) { return true; } return false; } inline f32 cM3d_2LinCenter(cM3dGLin const& pLinA, f32 pLinAF, cM3dGLin const& pLinB, f32 pLinBF, Vec* pVecOut) { Vec tmp, tmp2; pLinA.CalcPos(&tmp, pLinAF); pLinB.CalcPos(&tmp2, pLinBF); VECAdd(&tmp, &tmp2, pVecOut); VECScale(pVecOut, pVecOut, 0.5f); return VECDistance(&tmp, &tmp2); } /* 80250D70-80251280 .text cM3d_Cross_CpsTri__FRC8cM3dGCps8cM3dGTriP3Vec */ bool cM3d_Cross_CpsTri(const cM3dGCps& cps, cM3dGTri tri, Vec* param_2) { cM3dGSph sph; sph.SetC(*cps.GetStartP()); sph.SetR(cps.GetR()); if (cM3d_Cross_SphTri(&sph, &tri, param_2)) { return true; } sph.SetC(*cps.GetEndP()); sph.SetR(cps.GetR()); if (cM3d_Cross_SphTri(&sph, &tri, param_2)) { return true; } if (!cM3d_Cross_LinPla(&cps, &tri, param_2, true, true)) { return false; } if (cM3d_Cross_LinTri_Easy(&tri, param_2)) { return true; } cM3dGLin line; f32 f1, f2; line.SetStartEnd(tri.mA, tri.mB); if (cM3d_Check_LinLin(&cps, &line, &f1, &f2) >= 2 && f1 > 0.0f && f1 < 1.0f && f2 > 0.0f && f2 < 1.0f && cM3d_2LinCenter(cps, f1, line, f2, param_2) < cps.GetR()) { return true; } line.SetStartEnd(tri.mB, tri.mC); if (cM3d_Check_LinLin(&cps, &line, &f1, &f2) >= 2 && f1 > 0.0f && f1 < 1.0f && f2 > 0.0f && f2 < 1.0f && cM3d_2LinCenter(cps, f1, line, f2, param_2) < cps.GetR()) { return true; } line.SetStartEnd(tri.mC, tri.mA); if (cM3d_Check_LinLin(&cps, &line, &f1, &f2) >= 2 && f1 > 0.0f && f1 < 1.0f && f2 > 0.0f && f2 < 1.0f && cM3d_2LinCenter(cps, f1, line, f2, param_2) < cps.GetR()) { return true; } return false; } /* 80251280-802514EC .text cM3d_NearPos_Cps__FRC8cM3dGCpsRC3VecP3Vec */ bool cM3d_NearPos_Cps(const cM3dGCps& cps, const Vec& param_2, Vec* param_3) { Vec sp3C; f32 sp14; if (cM3d_Len3dSqPntAndSegLine(&cps, ¶m_2, &sp3C, &sp14)) { sp14 = std::sqrtf(sp14); Vec tmp; VECSubtract(¶m_2, &sp3C, &tmp); VECScale(&tmp, &tmp, cps.GetR() / sp14); VECAdd(&sp3C, &tmp, param_3); return true; } f32 f31 = VECSquareDistance(cps.GetStartP(), ¶m_2); f32 f1 = VECSquareDistance(cps.GetEndP(), ¶m_2); if (f31 < f1) { f31 = std::sqrtf(f31); Vec tmp; VECSubtract(cps.GetStartP(), ¶m_2, &tmp); VECScale(&tmp, &tmp, cps.GetR() / f31); VECAdd(cps.GetStartP(), &tmp, param_3); } else { f1 = std::sqrtf(f1); Vec tmp; VECSubtract(cps.GetEndP(), ¶m_2, &tmp); VECScale(&tmp, &tmp, cps.GetR() / f1); VECAdd(cps.GetEndP(), &tmp, param_3); } return true; } /* 802514EC-80251560 .text cM3d_CalcVecAngle__FRC3VecPsPs */ void cM3d_CalcVecAngle(const Vec& vec, s16* a, s16* b) { *a = -cM_atan2s(-vec.z * vec.y, 1.0f); *b = cM_atan2s(-vec.x * vec.y, 1.0f); } /* 80251560-80251634 .text cM3d_CalcVecZAngle__FRC3VecP5csXyz */ void cM3d_CalcVecZAngle(const Vec& param_0, csXyz* param_1) { param_1->x = -cM_atan2s(param_0.y, std::sqrtf(param_0.x * param_0.x + param_0.z * param_0.z)); param_1->y = cM_atan2s(param_0.x, param_0.z); param_1->z = 0; } /* 80251634-8025172C .text cM3d_UpMtx_Base__FRC3VecRC3VecPA4_f */ int cM3d_UpMtx_Base(const Vec& param_0, const Vec& param_1, Mtx m) { if (cM3d_IsZero(VECMag(¶m_1))) { MTXIdentity(m); return 0; } Vec sp3C; Vec sp48; VECNormalize(¶m_1, &sp48); VECCrossProduct(¶m_0, &sp48, &sp3C); if (cM3d_IsZero(VECMag(&sp3C))) { sp3C.x = 1.0f; sp3C.y = 0.0f; sp3C.z = 0.0f; } f32 var_f31 = VECDotProduct(¶m_0, &sp48); if (var_f31 > 1.0f) { var_f31 = 1.0f; } else if (var_f31 < -1.0f) { var_f31 = -1.0f; } f32 var_f30 = (float)acos(var_f31); // Bug? Calls the C_MTX func instead of the PSMTX func in the release version. C_MTXRotAxisRad(m, &sp3C, var_f30); return 1; } /* 8025172C-80251758 .text cM3d_PlaneCrossLineProcWork__FfffffffPfPf */ void cM3d_PlaneCrossLineProcWork(f32 v0, f32 v1, f32 v2, f32 v3, f32 v4, f32 v5, f32 v6, f32* p0, f32* p1) { *p0 = (v1 * v6 - v3 * v5) / v4; *p1 = (v2 * v5 - v0 * v6) / v4; } /* 80251758-802518F0 .text cM3d_2PlaneCrossLine__FRC8cM3dGPlaRC8cM3dGPlaP8cM3dGLin */ int cM3d_2PlaneCrossLine(const cM3dGPla& pPlaneA, const cM3dGPla& pPlaneB, cM3dGLin* pLinOut) { Vec tmp; VECCrossProduct(pPlaneA.GetNP(), pPlaneB.GetNP(), &tmp); if (cM3d_IsZero(tmp.x) && cM3d_IsZero(tmp.y) && cM3d_IsZero(tmp.z)) { return 0; } else { f32 absTX = std::fabsf(tmp.x); f32 absTY = std::fabsf(tmp.y); f32 absTZ = std::fabsf(tmp.z); if (absTX >= absTY && absTX >= absTZ) { cM3d_PlaneCrossLineProcWork(pPlaneA.GetNP()->y, pPlaneA.GetNP()->z, pPlaneB.GetNP()->y, pPlaneB.GetNP()->z, tmp.x, pPlaneA.GetD(), pPlaneB.GetD(), &pLinOut->GetStartP()->y, &pLinOut->GetStartP()->z); pLinOut->GetStartP()->x = 0.0f; } else if (absTY >= absTX && absTY >= absTZ) { cM3d_PlaneCrossLineProcWork(pPlaneA.GetNP()->z, pPlaneA.GetNP()->x, pPlaneB.GetNP()->z, pPlaneB.GetNP()->x, tmp.y, pPlaneA.GetD(), pPlaneB.GetD(), &pLinOut->GetStartP()->z, &pLinOut->GetStartP()->x); pLinOut->GetStartP()->y = 0.0f; } else { cM3d_PlaneCrossLineProcWork(pPlaneA.GetNP()->x, pPlaneA.GetNP()->y, pPlaneB.GetNP()->x, pPlaneB.GetNP()->y, tmp.z, pPlaneA.GetD(), pPlaneB.GetD(), &pLinOut->GetStartP()->x, &pLinOut->GetStartP()->y); pLinOut->GetStartP()->z = 0.0f; } f32 scale = VECMag(pLinOut->GetStartP()); VECScale(&tmp, &tmp, scale); VECAdd(pLinOut->GetStartP(), &tmp, pLinOut->GetEndP()); return 1; } } /* 802518F0-80251A10 .text cM3d_3PlaneCrossPos__FRC8cM3dGPlaRC8cM3dGPlaRC8cM3dGPlaP3Vec */ BOOL cM3d_3PlaneCrossPos(const cM3dGPla& p0, const cM3dGPla& p1, const cM3dGPla& p2, Vec* pDst) { cM3dGLin lin; if (!cM3d_2PlaneCrossLine(p0, p1, &lin)) return false; Vec& start = lin.GetStart(); Vec& end = lin.GetEnd(); if (!cM3d_CrossInfLineVsInfPlane_proc(p2.getPlaneFunc(&start), p2.getPlaneFunc(&end), &start, &end, pDst)) return false; return true; } /* 80251A10-80251AE4 .text cM3d_lineVsPosSuisenCross__FPC8cM3dGLinPC3VecP3Vec */ f32 cM3d_lineVsPosSuisenCross(const cM3dGLin* g_lin, const Vec* pt, Vec* dst) { Vec lin; g_lin->CalcVec(&lin); f32 len = VECSquareMag(&lin); if (cM3d_IsZero(len)) { *dst = *pt; } Vec p0_v; VECSubtract(pt, g_lin->GetStartP(), &p0_v); f32 dot = VECDotProduct(&p0_v, &lin); f32 v = dot / len; Vec ret; VECScale(&lin, &ret, v); VECAdd(&ret, g_lin->GetStartP(), dst); return v; } /* 80251AE4-80251BC0 .text cM3d_lineVsPosSuisenCross__FRC3VecRC3VecRC3VecP3Vec */ f32 cM3d_lineVsPosSuisenCross(const Vec& a, const Vec& b, const Vec& pt, Vec* dst) { Vec lin; VECSubtract(&b, &a, &lin); f32 len = VECSquareMag(&lin); if (cM3d_IsZero(len)) { *dst = pt; return 0.0f; } Vec p0_v; VECSubtract(&pt, &a, &p0_v); f32 dot = VECDotProduct(&p0_v, &lin); f32 v = dot / len; Vec ret; VECScale(&lin, &ret, v); VECAdd(&ret, &a, dst); return v; } /* 80251BC0-80251C44 .text cM3d_2PlaneLinePosNearPos__FRC8cM3dGPlaRC8cM3dGPlaPC3VecP3Vec */ int cM3d_2PlaneLinePosNearPos(const cM3dGPla& p0, const cM3dGPla& p1, const Vec* line, Vec* pDst) { cM3dGLin lin; if (cM3d_2PlaneCrossLine(p0, p1, &lin) == 0) return false; cM3d_lineVsPosSuisenCross(&lin, line, pDst); return true; } /* 80251C44-80251CC4 .text cM3d_CrawVec__FRC3VecRC3VecP3Vec */ void cM3d_CrawVec(const Vec& v0, const Vec& v1, Vec* pDst) { Vec tmp; f32 sq = std::fabsf(v1.x * v0.x + v1.y * v0.y + v1.z * v0.z); VECScale(&v0, &tmp, sq); VECAdd(&tmp, &v1, pDst); }