Fixed orientation of MD2, MD3 and 3DS models.
git-svn-id: https://assimp.svn.sourceforge.net/svnroot/assimp/trunk@75 67173fc5-114c-0410-ac8e-9d2fd5bffc1fpull/1/head
parent
8aa56a62c2
commit
63596e22c5
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@ -593,7 +593,7 @@ void Dot3DSImporter::AddNodeToGraph(aiScene* pcSOut,aiNode* pcOut,Dot3DS::Node*
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while (pvCurrent != pvEnd)
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while (pvCurrent != pvEnd)
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{
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{
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std::swap( pvCurrent->y, pvCurrent->z );
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std::swap( pvCurrent->y, pvCurrent->z );
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pvCurrent->y *= -1.0f;
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//pvCurrent->y *= -1.0f;
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++pvCurrent;
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++pvCurrent;
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}
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}
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}
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}
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@ -66,8 +66,9 @@ void Dot3DSImporter::GenNormals(Dot3DS::Mesh* sMesh)
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aiVector3D* pV2 = &sMesh->mPositions[face.mIndices[1]];
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aiVector3D* pV2 = &sMesh->mPositions[face.mIndices[1]];
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aiVector3D* pV3 = &sMesh->mPositions[face.mIndices[2]];
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aiVector3D* pV3 = &sMesh->mPositions[face.mIndices[2]];
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aiVector3D pDelta1 = *pV2 - *pV1;
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// FIX invert all vertex normals
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aiVector3D pDelta2 = *pV3 - *pV1;
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aiVector3D pDelta1 = *pV3 - *pV1;
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aiVector3D pDelta2 = *pV2 - *pV1;
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aiVector3D vNor = pDelta1 ^ pDelta2;
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aiVector3D vNor = pDelta1 ^ pDelta2;
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sMesh->mNormals[face.mIndices[0]] = vNor;
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sMesh->mNormals[face.mIndices[0]] = vNor;
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@ -127,6 +128,10 @@ void Dot3DSImporter::GenNormals(Dot3DS::Mesh* sMesh)
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vNormals.y /= fDiv;
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vNormals.y /= fDiv;
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vNormals.z /= fDiv;
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vNormals.z /= fDiv;
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vNormals.Normalize();
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vNormals.Normalize();
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// do the common coordinate system adjustment
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std::swap(vNormals.y,vNormals.z);
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avNormals[(*i).mIndices[c]] = vNormals;
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avNormals[(*i).mIndices[c]] = vNormals;
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poResult.clear();
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poResult.clear();
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}
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}
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@ -344,16 +344,18 @@ void MD2Importer::InternReadFile(
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vec.x += pcFrame->translate[0];
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vec.x += pcFrame->translate[0];
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// (flip z and y component)
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// (flip z and y component)
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vec.z = (float)pcVerts[iIndex].vertex[1] * pcFrame->scale[1];
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// FIX: no .... invert y instead
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vec.z += pcFrame->translate[1];
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vec.y = (float)pcVerts[iIndex].vertex[1] * pcFrame->scale[1];
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vec.y += pcFrame->translate[1];
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vec.y *= -1.0f;
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vec.y = (float)pcVerts[iIndex].vertex[2] * pcFrame->scale[2];
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vec.z = (float)pcVerts[iIndex].vertex[2] * pcFrame->scale[2];
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vec.y += pcFrame->translate[2];
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vec.z += pcFrame->translate[2];
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// read the normal vector from the precalculated normal table
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// read the normal vector from the precalculated normal table
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aiVector3D& vNormal = pcMesh->mNormals[iCurrent];
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aiVector3D& vNormal = pcMesh->mNormals[iCurrent];
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LookupNormalIndex(pcVerts[iIndex].lightNormalIndex,vNormal);
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LookupNormalIndex(pcVerts[iIndex].lightNormalIndex,vNormal);
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std::swap ( vNormal.y,vNormal.z );
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vNormal.y *= -1.0f;
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// validate texture coordinates
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// validate texture coordinates
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if (pcTriangles[iIndex].textureIndices[c] >= this->m_pcHeader->numTexCoords)
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if (pcTriangles[iIndex].textureIndices[c] >= this->m_pcHeader->numTexCoords)
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@ -407,18 +409,16 @@ void MD2Importer::InternReadFile(
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vec.x = (float)pcVerts[iIndex].vertex[0] * pcFrame->scale[0];
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vec.x = (float)pcVerts[iIndex].vertex[0] * pcFrame->scale[0];
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vec.x += pcFrame->translate[0];
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vec.x += pcFrame->translate[0];
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// (flip z and y component)
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vec.z = (float)pcVerts[iIndex].vertex[1] * pcFrame->scale[1];
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vec.z = (float)pcVerts[iIndex].vertex[1] * pcFrame->scale[1];
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vec.z += pcFrame->translate[1];
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vec.z += pcFrame->translate[1];
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vec.y = (float)pcVerts[iIndex].vertex[2] * pcFrame->scale[2];
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vec.y = (float)pcVerts[iIndex].vertex[2] * pcFrame->scale[2];
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vec.y += pcFrame->translate[2];
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vec.y += pcFrame->translate[2];
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vec.y *= -1.f;
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// read the normal vector from the precalculated normal table
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// read the normal vector from the precalculated normal table
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aiVector3D& vNormal = pcMesh->mNormals[iCurrent];
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aiVector3D& vNormal = pcMesh->mNormals[iCurrent];
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LookupNormalIndex(pcVerts[iIndex].lightNormalIndex,vNormal);
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LookupNormalIndex(pcVerts[iIndex].lightNormalIndex,vNormal);
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std::swap ( vNormal.y,vNormal.z );
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vNormal.y *= -1.0f;
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}
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}
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// FIX: flip the face order for use with OpenGL
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// FIX: flip the face order for use with OpenGL
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pScene->mMeshes[0]->mFaces[i].mIndices[0] = iTemp+2;
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pScene->mMeshes[0]->mFaces[i].mIndices[0] = iTemp+2;
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@ -251,15 +251,14 @@ void MD3Importer::InternReadFile(
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{
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{
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// read vertices
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// read vertices
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pcMesh->mVertices[iCurrent].x = pcVertices[ pcTriangles->INDEXES[c]].X;
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pcMesh->mVertices[iCurrent].x = pcVertices[ pcTriangles->INDEXES[c]].X;
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pcMesh->mVertices[iCurrent].y = pcVertices[ pcTriangles->INDEXES[c]].Y;
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pcMesh->mVertices[iCurrent].y = pcVertices[ pcTriangles->INDEXES[c]].Y*-1.0f;
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pcMesh->mVertices[iCurrent].z = pcVertices[ pcTriangles->INDEXES[c]].Z*-1.0f;
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pcMesh->mVertices[iCurrent].z = pcVertices[ pcTriangles->INDEXES[c]].Z;
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// convert the normal vector to uncompressed float3 format
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// convert the normal vector to uncompressed float3 format
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LatLngNormalToVec3(pcVertices[pcTriangles->INDEXES[c]].NORMAL,
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LatLngNormalToVec3(pcVertices[pcTriangles->INDEXES[c]].NORMAL,
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(float*)&pcMesh->mNormals[iCurrent]);
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(float*)&pcMesh->mNormals[iCurrent]);
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//std::swap(pcMesh->mNormals[iCurrent].z,pcMesh->mNormals[iCurrent].y);
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pcMesh->mNormals[iCurrent].y *= -1.0f;
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pcMesh->mNormals[iCurrent].z *= -1.0f;
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// read texture coordinates
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// read texture coordinates
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pcMesh->mTextureCoords[0][iCurrent].x = pcUVs[ pcTriangles->INDEXES[c]].U;
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pcMesh->mTextureCoords[0][iCurrent].x = pcUVs[ pcTriangles->INDEXES[c]].U;
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