Update ImmediateMesh to use octohedral encoded normals
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629796c333
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267db8a504
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@ -194,25 +194,20 @@ void ImmediateMesh::surface_end() {
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if (uses_normals) {
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uint32_t *normal = (uint32_t *)&surface_vertex_ptr[i * vertex_stride + normal_offset];
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Vector3 n = normals[i] * Vector3(0.5, 0.5, 0.5) + Vector3(0.5, 0.5, 0.5);
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Vector2 n = normals[i].octahedron_encode();
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uint32_t value = 0;
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value |= CLAMP(int(n.x * 1023.0), 0, 1023);
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value |= CLAMP(int(n.y * 1023.0), 0, 1023) << 10;
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value |= CLAMP(int(n.z * 1023.0), 0, 1023) << 20;
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value |= (uint16_t)CLAMP(n.x * 65535, 0, 65535);
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value |= (uint16_t)CLAMP(n.y * 65535, 0, 65535) << 16;
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*normal = value;
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}
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if (uses_tangents) {
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uint32_t *tangent = (uint32_t *)&surface_vertex_ptr[i * vertex_stride + tangent_offset];
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Plane t = tangents[i];
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Vector2 t = tangents[i].normal.octahedron_tangent_encode(tangents[i].d);
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uint32_t value = 0;
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value |= CLAMP(int((t.normal.x * 0.5 + 0.5) * 1023.0), 0, 1023);
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value |= CLAMP(int((t.normal.y * 0.5 + 0.5) * 1023.0), 0, 1023) << 10;
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value |= CLAMP(int((t.normal.z * 0.5 + 0.5) * 1023.0), 0, 1023) << 20;
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if (t.d > 0) {
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value |= 3UL << 30;
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}
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value |= (uint16_t)CLAMP(t.x * 65535, 0, 65535);
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value |= (uint16_t)CLAMP(t.y * 65535, 0, 65535) << 16;
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*tangent = value;
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}
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