Merge pull request #2434 from mvorbrodt/master
Generate attenuation constants if non are provided in the Blender file…pull/2458/head^2
commit
6fda615706
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@ -1225,6 +1225,16 @@ aiLight* BlenderImporter::ConvertLight(const Scene& /*in*/, const Object* obj, c
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case Lamp::Type_Local:
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case Lamp::Type_Local:
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out->mType = aiLightSource_POINT;
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out->mType = aiLightSource_POINT;
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break;
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break;
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case Lamp::Type_Spot:
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out->mType = aiLightSource_SPOT;
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// blender orients directional lights as facing toward -z
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out->mDirection = aiVector3D(0.f, 0.f, -1.f);
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out->mUp = aiVector3D(0.f, 1.f, 0.f);
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out->mAngleInnerCone = lamp->spotsize * (1.0f - lamp->spotblend);
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out->mAngleOuterCone = lamp->spotsize;
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break;
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case Lamp::Type_Sun:
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case Lamp::Type_Sun:
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out->mType = aiLightSource_DIRECTIONAL;
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out->mType = aiLightSource_DIRECTIONAL;
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@ -1255,6 +1265,23 @@ aiLight* BlenderImporter::ConvertLight(const Scene& /*in*/, const Object* obj, c
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out->mColorAmbient = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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out->mColorAmbient = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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out->mColorSpecular = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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out->mColorSpecular = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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out->mColorDiffuse = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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out->mColorDiffuse = aiColor3D(lamp->r, lamp->g, lamp->b) * lamp->energy;
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// If default values are supplied, compute the coefficients from light's max distance
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// Read this: https://imdoingitwrong.wordpress.com/2011/01/31/light-attenuation/
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//
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if (lamp->constant_coefficient == 1.0f && lamp->linear_coefficient == 0.0f && lamp->quadratic_coefficient == 0.0f && lamp->dist > 0.0f)
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{
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out->mAttenuationConstant = 1.0f;
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out->mAttenuationLinear = 2.0f / lamp->dist;
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out->mAttenuationQuadratic = 1.0f / (lamp->dist * lamp->dist);
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}
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else
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{
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out->mAttenuationConstant = lamp->constant_coefficient;
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out->mAttenuationLinear = lamp->linear_coefficient;
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out->mAttenuationQuadratic = lamp->quadratic_coefficient;
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}
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return out.release();
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return out.release();
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}
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}
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@ -211,9 +211,12 @@ template <> void Structure :: Convert<Lamp> (
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ReadField<ErrorPolicy_Warn>(dest.b,"b",db);
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ReadField<ErrorPolicy_Warn>(dest.b,"b",db);
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ReadField<ErrorPolicy_Warn>(dest.k,"k",db);
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ReadField<ErrorPolicy_Warn>(dest.k,"k",db);
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ReadField<ErrorPolicy_Igno>(dest.energy,"energy",db);
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ReadField<ErrorPolicy_Igno>(dest.energy,"energy",db);
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ReadField<ErrorPolicy_Igno>(dest.dist,"dist",db);
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ReadField<ErrorPolicy_Warn>(dest.dist,"dist",db);
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ReadField<ErrorPolicy_Igno>(dest.spotsize,"spotsize",db);
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ReadField<ErrorPolicy_Igno>(dest.spotsize,"spotsize",db);
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ReadField<ErrorPolicy_Igno>(dest.spotblend,"spotblend",db);
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ReadField<ErrorPolicy_Igno>(dest.spotblend,"spotblend",db);
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ReadField<ErrorPolicy_Warn>(dest.constant_coefficient, "coeff_const", db);
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ReadField<ErrorPolicy_Warn>(dest.linear_coefficient, "coeff_lin", db);
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ReadField<ErrorPolicy_Warn>(dest.quadratic_coefficient, "coeff_quad", db);
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ReadField<ErrorPolicy_Igno>(dest.att1,"att1",db);
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ReadField<ErrorPolicy_Igno>(dest.att1,"att1",db);
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ReadField<ErrorPolicy_Igno>(dest.att2,"att2",db);
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ReadField<ErrorPolicy_Igno>(dest.att2,"att2",db);
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ReadField<ErrorPolicy_Igno>(temp,"falloff_type",db);
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ReadField<ErrorPolicy_Igno>(temp,"falloff_type",db);
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@ -538,6 +538,10 @@ struct Lamp : ElemBase {
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float energy, dist, spotsize, spotblend;
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float energy, dist, spotsize, spotblend;
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//float haint;
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//float haint;
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float constant_coefficient;
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float linear_coefficient;
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float quadratic_coefficient;
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float att1, att2;
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float att1, att2;
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//struct CurveMapping *curfalloff;
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//struct CurveMapping *curfalloff;
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FalloffType falloff_type;
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FalloffType falloff_type;
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