mirror of
https://github.com/leozide/leocad
synced 2024-12-27 21:58:37 +01:00
367 lines
9.3 KiB
C++
367 lines
9.3 KiB
C++
#include "lc_global.h"
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#include "lc_math.h"
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#include "lc_mesh.h"
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#include "lc_meshloader.h"
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#include "lc_colors.h"
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#include "lc_texture.h"
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#include "pieceinf.h"
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#include "lc_library.h"
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#include "lc_application.h"
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#include "lc_model.h"
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#include "project.h"
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#include "lc_scene.h"
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#include "lc_synth.h"
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#include "lc_file.h"
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#include <locale.h>
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PieceInfo::PieceInfo()
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{
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mZipFileType = LC_NUM_ZIPFILES;
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mZipFileIndex = -1;
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mState = LC_PIECEINFO_UNLOADED;
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mRefCount = 0;
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mType = lcPieceInfoType::Part;
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mMesh = nullptr;
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mModel = nullptr;
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mProject = nullptr;
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mSynthInfo = nullptr;
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}
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PieceInfo::~PieceInfo()
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{
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delete mSynthInfo;
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if (mState == LC_PIECEINFO_LOADED)
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Unload();
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}
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void PieceInfo::SetMesh(lcMesh* Mesh)
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{
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mBoundingBox = Mesh->mBoundingBox;
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ReleaseMesh();
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mMesh = Mesh;
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}
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void PieceInfo::SetPlaceholder()
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{
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mBoundingBox.Min = lcVector3(-10.0f, -10.0f, -24.0f);
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mBoundingBox.Max = lcVector3(10.0f, 10.0f, 4.0f);
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ReleaseMesh();
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mType = lcPieceInfoType::Placeholder;
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mModel = nullptr;
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mProject = nullptr;
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}
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void PieceInfo::SetModel(lcModel* Model, bool UpdateMesh, Project* CurrentProject, bool SearchProjectFolder)
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{
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if (mModel != Model)
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{
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mType = lcPieceInfoType::Model;
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mModel = Model;
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}
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strncpy(mFileName, Model->GetProperties().mName.toLatin1().data(), sizeof(mFileName));
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mFileName[sizeof(mFileName)-1] = 0;
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strncpy(m_strDescription, Model->GetProperties().mName.toLatin1().data(), sizeof(m_strDescription));
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m_strDescription[sizeof(m_strDescription)-1] = 0;
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const QStringList& MeshLines = Model->GetFileLines();
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if (UpdateMesh && !MeshLines.isEmpty())
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{
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lcMemFile PieceFile;
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for (const QString& Line : MeshLines)
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{
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QByteArray Buffer = Line.toLatin1();
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PieceFile.WriteBuffer(Buffer.constData(), Buffer.size());
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PieceFile.WriteBuffer("\r\n", 2);
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}
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lcLibraryMeshData MeshData;
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lcArray<lcLibraryTextureMap> TextureStack;
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PieceFile.Seek(0, SEEK_SET);
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lcMeshLoader MeshLoader(MeshData, true, CurrentProject, SearchProjectFolder);
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const bool Ret = MeshLoader.LoadMesh(PieceFile, LC_MESHDATA_SHARED);
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if (Ret && !MeshData.IsEmpty())
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SetMesh(MeshData.CreateMesh());
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}
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}
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void PieceInfo::CreateProject(Project* Project, const char* PieceName)
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{
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if (mProject != Project)
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{
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mType = lcPieceInfoType::Project;
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mProject = Project;
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mState = LC_PIECEINFO_LOADED;
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}
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strncpy(mFileName, PieceName, sizeof(mFileName));
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mFileName[sizeof(mFileName) - 1] = 0;
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strncpy(m_strDescription, Project->GetFileName().toLatin1().data(), sizeof(m_strDescription));
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m_strDescription[sizeof(m_strDescription) - 1] = 0;
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}
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bool PieceInfo::GetPieceWorldMatrix(lcPiece* Piece, lcMatrix44& WorldMatrix) const
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{
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if (IsModel())
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return mModel->GetPieceWorldMatrix(Piece, WorldMatrix);
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return false;
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}
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bool PieceInfo::IncludesModel(const lcModel* Model) const
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{
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if (IsModel())
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{
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if (mModel == Model)
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return true;
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return mModel->IncludesModel(Model);
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}
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return false;
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}
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void PieceInfo::CreatePlaceholder(const char* Name)
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{
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strncpy(mFileName, Name, sizeof(mFileName));
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mFileName[sizeof(mFileName) - 1] = 0;
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strncpy(m_strDescription, Name, sizeof(m_strDescription));
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m_strDescription[sizeof(m_strDescription) - 1] = 0;
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SetPlaceholder();
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}
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void PieceInfo::Load()
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{
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if (!IsModel() && !IsProject())
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{
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mState = LC_PIECEINFO_LOADING; // todo: mutex lock when changing load state
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if (IsPlaceholder())
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{
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if (lcGetPiecesLibrary()->LoadPieceData(this))
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mType = lcPieceInfoType::Part;
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else
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mBoundingBox = gPlaceholderMesh->mBoundingBox;
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}
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else
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lcGetPiecesLibrary()->LoadPieceData(this);
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}
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mState = LC_PIECEINFO_LOADED;
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}
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void PieceInfo::ReleaseMesh()
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{
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if (mMesh)
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{
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for (int LodIdx = 0; LodIdx < LC_NUM_MESH_LODS; LodIdx++)
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{
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for (int SectionIdx = 0; SectionIdx < mMesh->mLods[LodIdx].NumSections; SectionIdx++)
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{
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lcMeshSection& Section = mMesh->mLods[LodIdx].Sections[SectionIdx];
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if (Section.Texture)
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lcGetPiecesLibrary()->ReleaseTexture(Section.Texture);
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}
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}
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delete mMesh;
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mMesh = nullptr;
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}
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}
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void PieceInfo::Unload()
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{
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ReleaseMesh();
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mState = LC_PIECEINFO_UNLOADED;
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mModel = nullptr;
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if (IsModel())
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lcGetPiecesLibrary()->RemovePiece(this);
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else if (IsProject())
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{
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delete mProject;
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mProject = nullptr;
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lcGetPiecesLibrary()->RemovePiece(this);
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}
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}
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bool PieceInfo::MinIntersectDist(const lcVector3& Start, const lcVector3& End, float& MinDistance) const
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{
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bool Intersect = false;
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if (IsPlaceholder() || IsModel() || IsProject())
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{
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float Distance;
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if (!lcBoundingBoxRayIntersectDistance(mBoundingBox.Min, mBoundingBox.Max, Start, End, &Distance, nullptr) || (Distance >= MinDistance))
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return false;
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if (IsPlaceholder())
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return true;
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if (IsModel())
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Intersect |= mModel->SubModelMinIntersectDist(Start, End, MinDistance);
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else if (IsProject())
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{
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const lcModel* const Model = mProject->GetMainModel();
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if (Model)
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Intersect |= Model->SubModelMinIntersectDist(Start, End, MinDistance);
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}
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}
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if (mMesh)
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Intersect = mMesh->MinIntersectDist(Start, End, MinDistance);
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return Intersect;
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}
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bool PieceInfo::BoxTest(const lcMatrix44& WorldMatrix, const lcVector4 WorldPlanes[6]) const
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{
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lcMatrix44 InverseWorldMatrix = lcMatrix44AffineInverse(WorldMatrix);
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constexpr int NumCorners = 8;
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constexpr int NumPlanes = 6;
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lcVector4 LocalPlanes[NumPlanes];
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for (int PlaneIdx = 0; PlaneIdx < NumPlanes; PlaneIdx++)
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{
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const lcVector3 PlaneNormal = lcMul30(WorldPlanes[PlaneIdx], InverseWorldMatrix);
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LocalPlanes[PlaneIdx] = lcVector4(PlaneNormal, WorldPlanes[PlaneIdx][3] - lcDot3(InverseWorldMatrix[3], PlaneNormal));
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}
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lcVector3 Box[NumCorners];
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lcGetBoxCorners(mBoundingBox, Box);
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int Outcodes[NumCorners];
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for (int CornerIdx = 0; CornerIdx < NumCorners; CornerIdx++)
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{
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Outcodes[CornerIdx] = 0;
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for (int PlaneIdx = 0; PlaneIdx < NumPlanes; PlaneIdx++)
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{
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if (lcDot3(Box[CornerIdx], LocalPlanes[PlaneIdx]) + LocalPlanes[PlaneIdx][3] > 0)
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Outcodes[CornerIdx] |= 1 << PlaneIdx;
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}
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}
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int OutcodesOR = 0, OutcodesAND = 0x3f;
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for (int CornerIdx = 0; CornerIdx < NumCorners; CornerIdx++)
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{
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OutcodesAND &= Outcodes[CornerIdx];
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OutcodesOR |= Outcodes[CornerIdx];
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}
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if (OutcodesAND != 0)
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return false;
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if (OutcodesOR == 0)
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return true;
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if (IsPlaceholder())
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return gPlaceholderMesh->IntersectsPlanes(LocalPlanes);
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if (mMesh && mMesh->IntersectsPlanes(LocalPlanes))
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return true;
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if (IsModel())
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return mModel->SubModelBoxTest(LocalPlanes);
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else if (IsProject())
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{
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const lcModel* const Model = mProject->GetMainModel();
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return Model ? Model->SubModelBoxTest(LocalPlanes) : false;
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}
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return false;
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}
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void PieceInfo::ZoomExtents(float FoV, float AspectRatio, lcMatrix44& ProjectionMatrix, lcMatrix44& ViewMatrix) const
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{
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lcVector3 Points[8];
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lcGetBoxCorners(mBoundingBox, Points);
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const lcVector3 Center = (mBoundingBox.Min + mBoundingBox.Max) / 2.0f;
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lcVector3 Position = Center + lcVector3(100.0f, -100.0f, 75.0f);
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ProjectionMatrix = lcMatrix44Perspective(FoV, AspectRatio, 1.0f, 12500.0f);
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const lcMatrix44 ModelView = lcMatrix44LookAt(Position, Center, lcVector3(0, 0, 1));
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float FarDistance;
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std::tie(Position, FarDistance) = lcZoomExtents(Position, ModelView, ProjectionMatrix, Points, 8);
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ViewMatrix = lcMatrix44LookAt(Position, Center, lcVector3(0, 0, 1));
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ProjectionMatrix = lcMatrix44Perspective(FoV, AspectRatio, 1.0f, FarDistance);
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}
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void PieceInfo::AddRenderMesh(lcScene& Scene)
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{
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if (mMesh)
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Scene.AddMesh(mMesh, lcMatrix44Identity(), gDefaultColor, lcRenderMeshState::Default);
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}
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void PieceInfo::AddRenderMeshes(lcScene& Scene, const lcMatrix44& WorldMatrix, int ColorIndex, lcRenderMeshState RenderMeshState, bool ParentActive) const
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{
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if (mMesh || IsPlaceholder())
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Scene.AddMesh(IsPlaceholder() ? gPlaceholderMesh : mMesh, WorldMatrix, ColorIndex, RenderMeshState);
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if (IsModel())
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mModel->AddSubModelRenderMeshes(Scene, WorldMatrix, ColorIndex, RenderMeshState, ParentActive);
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else if (IsProject())
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{
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const lcModel* const Model = mProject->GetMainModel();
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if (Model)
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Model->AddSubModelRenderMeshes(Scene, WorldMatrix, ColorIndex, RenderMeshState, ParentActive);
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}
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}
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void PieceInfo::GetPartsList(int DefaultColorIndex, bool ScanSubModels, bool AddSubModels, lcPartsList& PartsList) const
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{
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if (IsModel())
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{
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if (ScanSubModels)
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mModel->GetPartsList(DefaultColorIndex, ScanSubModels, AddSubModels, PartsList);
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if (AddSubModels && DefaultColorIndex < gNumUserColors)
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PartsList[this][DefaultColorIndex]++;
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}
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else if (IsProject())
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{
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const lcModel* const Model = mProject->GetMainModel();
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if (Model)
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Model->GetPartsList(DefaultColorIndex, ScanSubModels, AddSubModels, PartsList);
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}
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else if (DefaultColorIndex < gNumUserColors)
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PartsList[this][DefaultColorIndex]++;
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}
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void PieceInfo::GetModelParts(const lcMatrix44& WorldMatrix, int DefaultColorIndex, std::vector<lcModelPartsEntry>& ModelParts) const
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{
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if (IsModel())
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{
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mModel->GetModelParts(WorldMatrix, DefaultColorIndex, ModelParts);
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return;
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}
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else if (IsProject())
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{
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const lcModel* const Model = mProject->GetMainModel();
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if (Model)
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Model->GetModelParts(WorldMatrix, DefaultColorIndex, ModelParts);
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return;
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}
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ModelParts.emplace_back(lcModelPartsEntry{ WorldMatrix, this, nullptr, DefaultColorIndex });
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}
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void PieceInfo::UpdateBoundingBox(std::vector<lcModel*>& UpdatedModels)
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{
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if (IsModel())
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mModel->UpdatePieceInfo(UpdatedModels);
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else if (IsProject())
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mProject->UpdatePieceInfo(this);
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}
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