commit
f62d03bd03
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@ -91,7 +91,7 @@ public:
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a = std::fmod(a,static_cast<IfcFloat>( AI_MATH_TWO_PI ));
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b = std::fmod(b,static_cast<IfcFloat>( AI_MATH_TWO_PI ));
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const IfcFloat setting = static_cast<IfcFloat>( AI_MATH_PI * conv.settings.conicSamplingAngle / 180.0 );
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return static_cast<size_t>( std::ceil(abs( b-a)) / setting);
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return static_cast<size_t>( std::ceil(std::abs( b-a)) / setting);
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}
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// --------------------------------------------------
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@ -276,7 +276,7 @@ public:
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IfcFloat acc = 0;
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BOOST_FOREACH(const CurveEntry& entry, curves) {
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const ParamRange& range = entry.first->GetParametricRange();
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const IfcFloat delta = abs(range.second-range.first);
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const IfcFloat delta = std::abs(range.second-range.first);
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if (u < acc+delta) {
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return entry.first->Eval( entry.second ? (u-acc) + range.first : range.second-(u-acc));
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}
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@ -295,7 +295,7 @@ public:
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IfcFloat acc = 0;
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BOOST_FOREACH(const CurveEntry& entry, curves) {
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const ParamRange& range = entry.first->GetParametricRange();
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const IfcFloat delta = abs(range.second-range.first);
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const IfcFloat delta = std::abs(range.second-range.first);
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if (a <= acc+delta && b >= acc) {
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const IfcFloat at = std::max(static_cast<IfcFloat>( 0. ),a-acc), bt = std::min(delta,b-acc);
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cnt += entry.first->EstimateSampleCount( entry.second ? at + range.first : range.second - bt, entry.second ? bt + range.first : range.second - at );
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@ -569,7 +569,7 @@ bool Curve :: InRange(IfcFloat u) const
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IfcFloat Curve :: GetParametricRangeDelta() const
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{
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const ParamRange& range = GetParametricRange();
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return abs(range.second - range.first);
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return std::abs(range.second - range.first);
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}
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// ------------------------------------------------------------------------------------------------
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@ -375,21 +375,21 @@ void ProcessSweptDiskSolid(const IfcSweptDiskSolid solid, TempMesh& result, Conv
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bool take_any = false;
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for (unsigned int i = 0; i < 2; ++i, take_any = true) {
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if ((last_dir == 0 || take_any) && abs(d.x) > 1e-6) {
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if ((last_dir == 0 || take_any) && std::abs(d.x) > 1e-6) {
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q.y = startvec.y;
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q.z = startvec.z;
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q.x = -(d.y * q.y + d.z * q.z) / d.x;
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last_dir = 0;
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break;
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}
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else if ((last_dir == 1 || take_any) && abs(d.y) > 1e-6) {
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else if ((last_dir == 1 || take_any) && std::abs(d.y) > 1e-6) {
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q.x = startvec.x;
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q.z = startvec.z;
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q.y = -(d.x * q.x + d.z * q.z) / d.y;
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last_dir = 1;
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break;
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}
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else if ((last_dir == 2 && abs(d.z) > 1e-6) || take_any) {
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else if ((last_dir == 2 && std::abs(d.z) > 1e-6) || take_any) {
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q.y = startvec.y;
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q.x = startvec.x;
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q.z = -(d.y * q.y + d.x * q.x) / d.z;
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@ -1244,7 +1244,7 @@ bool GenerateOpenings(std::vector<TempOpening>& openings,
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const IfcVector3& face_nor = ((profile_verts[vi_total+2] - profile_verts[vi_total]) ^
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(profile_verts[vi_total+1] - profile_verts[vi_total])).Normalize();
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const IfcFloat abs_dot_face_nor = abs(nor * face_nor);
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const IfcFloat abs_dot_face_nor = std::abs(nor * face_nor);
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if (abs_dot_face_nor < 0.9) {
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vi_total += profile_vertcnts[f];
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continue;
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