ModelHandle/source/external/three.converter.js
2021-03-27 08:29:19 +01:00

196 lines
6.2 KiB
JavaScript

OV.ConvertModelToThreeMeshes = function (model, callbacks)
{
function CreateThreeMaterial (model, materialIndex)
{
function SetTextureParameters (texture, threeTexture)
{
threeTexture.wrapS = THREE.RepeatWrapping;
threeTexture.wrapT = THREE.RepeatWrapping;
threeTexture.rotation = texture.rotation;
threeTexture.offset.x = texture.offset.x;
threeTexture.offset.y = texture.offset.y;
threeTexture.repeat.x = texture.scale.x;
threeTexture.repeat.y = texture.scale.y;
}
function LoadTexture (threeMaterial, texture, onLoad)
{
if (texture === null || texture.url === null) {
return;
}
let loader = new THREE.TextureLoader ();
loader.load (texture.url, function (threeTexture) {
SetTextureParameters (texture, threeTexture);
threeTexture.image = OV.ResizeImageToPowerOfTwoSides (threeTexture.image);
threeMaterial.needsUpdate = true;
onLoad (threeTexture);
});
}
let material = model.GetMaterial (materialIndex);
let diffuseColor = new THREE.Color (material.diffuse.r / 255.0, material.diffuse.g / 255.0, material.diffuse.b / 255.0);
let specularColor = new THREE.Color (material.specular.r / 255.0, material.specular.g / 255.0, material.specular.b / 255.0);
let emissiveColor = new THREE.Color (material.emissive.r / 255.0, material.emissive.g / 255.0, material.emissive.b / 255.0);
if (OV.IsEqual (material.shininess, 0.0)) {
specularColor.setRGB (0.0, 0.0, 0.0);
}
let threeMaterial = new THREE.MeshPhongMaterial ({
color : diffuseColor,
specular : specularColor,
emissive : emissiveColor,
shininess : material.shininess * 10.0,
opacity : material.opacity,
transparent : material.transparent,
alphaTest : material.alphaTest,
side : THREE.DoubleSide
});
LoadTexture (threeMaterial, material.diffuseMap, function (threeTexture) {
if (!material.multiplyDiffuseMap) {
threeMaterial.color.setRGB (1.0, 1.0, 1.0);
}
threeMaterial.map = threeTexture;
callbacks.onTextureLoaded ();
});
LoadTexture (threeMaterial, material.specularMap, function (threeTexture) {
threeMaterial.specularMap = threeTexture;
callbacks.onTextureLoaded ();
});
LoadTexture (threeMaterial, material.bumpMap, function (threeTexture) {
threeMaterial.bumpMap = threeTexture;
callbacks.onTextureLoaded ();
});
LoadTexture (threeMaterial, material.normalMap, function (threeTexture) {
threeMaterial.normalMap = threeTexture;
callbacks.onTextureLoaded ();
});
LoadTexture (threeMaterial, material.emissiveMap, function (threeTexture) {
threeMaterial.emissiveMap = threeTexture;
callbacks.onTextureLoaded ();
});
return threeMaterial;
}
function CreateThreeMesh (model, meshIndex, modelThreeMaterials)
{
let mesh = model.GetMesh (meshIndex);
let triangleCount = mesh.TriangleCount ();
if (triangleCount === 0) {
return null;
}
let triangleIndices = [];
for (let i = 0; i < triangleCount; i++) {
triangleIndices.push (i);
}
triangleIndices.sort (function (a, b) {
let aTriangle = mesh.GetTriangle (a);
let bTriangle = mesh.GetTriangle (b);
return aTriangle.mat - bTriangle.mat;
});
let threeGeometry = new THREE.BufferGeometry ();
let meshThreeMaterials = [];
let meshOriginalMaterials = [];
let modelToThreeMaterials = {};
let vertices = [];
let normals = [];
let uvs = [];
let groups = [];
groups.push ({
start : 0,
end : -1
});
let meshHasUVs = mesh.TextureUVCount () > 0;
for (let i = 0; i < triangleIndices.length; i++) {
let triangleIndex = triangleIndices[i];
let triangle = mesh.GetTriangle (triangleIndex);
let v0 = mesh.GetVertex (triangle.v0);
let v1 = mesh.GetVertex (triangle.v1);
let v2 = mesh.GetVertex (triangle.v2);
vertices.push (v0.x, v0.y, v0.z, v1.x, v1.y, v1.z, v2.x, v2.y, v2.z);
let n0 = mesh.GetNormal (triangle.n0);
let n1 = mesh.GetNormal (triangle.n1);
let n2 = mesh.GetNormal (triangle.n2);
normals.push (n0.x, n0.y, n0.z, n1.x, n1.y, n1.z, n2.x, n2.y, n2.z);
if (triangle.HasTextureUVs ()) {
let u0 = mesh.GetTextureUV (triangle.u0);
let u1 = mesh.GetTextureUV (triangle.u1);
let u2 = mesh.GetTextureUV (triangle.u2);
uvs.push (u0.x, u0.y, u1.x, u1.y, u2.x, u2.y);
} else if (meshHasUVs) {
uvs.push (0.0, 0.0, 0.0, 0.0, 0.0, 0.0);
}
let modelMaterialIndex = triangle.mat;
let materialIndex = modelToThreeMaterials[modelMaterialIndex];
if (materialIndex === undefined) {
materialIndex = meshThreeMaterials.length;
modelToThreeMaterials[modelMaterialIndex] = materialIndex;
meshThreeMaterials.push (modelThreeMaterials[modelMaterialIndex]);
meshOriginalMaterials.push (modelMaterialIndex);
if (i > 0) {
groups[groups.length - 1].end = i - 1;
groups.push ({
start : groups[groups.length - 1].end + 1,
end : -1
});
}
}
}
groups[groups.length - 1].end = triangleCount - 1;
threeGeometry.setAttribute ('position', new THREE.Float32BufferAttribute (vertices, 3));
threeGeometry.setAttribute ('normal', new THREE.Float32BufferAttribute (normals, 3));
if (uvs.length !== 0) {
threeGeometry.setAttribute ('uv', new THREE.Float32BufferAttribute (uvs, 2));
}
for (let i = 0; i < groups.length; i++) {
let group = groups[i];
threeGeometry.addGroup (group.start * 3, (group.end - group.start + 1) * 3, i);
}
let threeMesh = new THREE.Mesh (threeGeometry, meshThreeMaterials);
threeMesh.userData = {
originalMeshIndex : meshIndex,
originalMaterials : meshOriginalMaterials,
threeMaterials : null
};
return threeMesh;
}
let modelThreeMaterials = [];
for (let materialIndex = 0; materialIndex < model.MaterialCount (); materialIndex++) {
let threeMaterial = CreateThreeMaterial (model, materialIndex);
modelThreeMaterials.push (threeMaterial);
}
let threeMeshes = [];
let taskRunner = new OV.TaskRunner ();
taskRunner.Run (model.MeshCount (), {
runTask : function (index, ready) {
let mesh = model.GetMesh (index);
if (mesh.TriangleCount () === 0) {
ready ();
} else {
let threeMesh = CreateThreeMesh (model, index, modelThreeMaterials);
threeMeshes.push (threeMesh);
ready ();
}
},
onReady : function () {
callbacks.onModelLoaded (threeMeshes);
}
});
};