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https://github.com/MaSzyna-EU07/maszyna.git
synced 2026-07-17 23:39:18 +02:00
Replace RadToDeg and DegToRad with glm::degrees and glm::radians
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@@ -381,11 +381,11 @@ std::pair<int, int> TSubModel::Load(cParser &parser, bool dynamic)
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// convert conve parameters if specified in degrees
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if (fCosFalloffAngle > 1.0)
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{
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fCosFalloffAngle = std::cos(DegToRad(0.5f * fCosFalloffAngle));
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fCosFalloffAngle = std::cos(glm::radians(0.5f * fCosFalloffAngle));
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}
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if (fCosHotspotAngle > 1.0)
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{
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fCosHotspotAngle = std::cos(DegToRad(0.5f * fCosHotspotAngle));
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fCosHotspotAngle = std::cos(glm::radians(0.5f * fCosHotspotAngle));
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}
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m_geometry.vertex_count = 1;
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iFlags |= 0x4030; // drawn both in solid (light point) and transparent (light glare) phases
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@@ -2313,11 +2313,11 @@ void TSubModel::BinInit(TSubModel *s, float4x4 *m, std::vector<std::string> *t,
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// intercept and fix hotspot values if specified in degrees and not directly
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if (fCosFalloffAngle > 1.0f)
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{
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fCosFalloffAngle = std::cos(DegToRad(0.5f * fCosFalloffAngle));
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fCosFalloffAngle = std::cos(glm::radians(0.5f * fCosFalloffAngle));
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}
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if (fCosHotspotAngle > 1.0f)
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{
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fCosHotspotAngle = std::cos(DegToRad(0.5f * fCosHotspotAngle));
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fCosHotspotAngle = std::cos(glm::radians(0.5f * fCosHotspotAngle));
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}
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// cap specular values for legacy models
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f4Specular = glm::vec4{std::clamp(f4Specular.r, 0.0f, 1.0f), std::clamp(f4Specular.g, 0.0f, 1.0f), std::clamp(f4Specular.b, 0.0f, 1.0f), std::clamp(f4Specular.a, 0.0f, 1.0f)};
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