finished OrbitCamera
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@ -13,6 +13,7 @@ private:
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double m_phi;
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double m_theta;
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double m_roh;
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QVector3D m_center;
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// functions
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public:
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@ -85,10 +85,10 @@ void MshFile::loadChunks(QList<ChunkHeader*>& destination, qint64 start, const q
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ChunkHeader* tmp_header = new ChunkHeader();
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char workaround[5] = { 0 };
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// get information
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m_file.read(F2V(workaround[0]), sizeof(workaround) -1);
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tmp_header->name = QString(workaround);
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char tmpName[5] = { 0 };
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m_file.read(F2V(tmpName[0]), sizeof(tmpName) -1);
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tmp_header->name = QString(tmpName);
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m_file.read(F2V(tmp_header->size), sizeof(tmp_header->size));
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tmp_header->position = m_file.pos();
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@ -23,10 +23,10 @@ OrbitCamera::~OrbitCamera()
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void OrbitCamera::rotateAction(QVector2D diff)
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{
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//m_phi += diff.x() * 0.01;
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m_phi -= diff.x() * 0.01;
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m_theta -= diff.y() * 0.01;
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m_theta = qMax(qMin(M_PI_2, m_theta), -M_PI_2);
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m_theta = qMax(qMin(M_PI - 0.0001, m_theta), 0.0001);
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}
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@ -50,15 +50,15 @@ void OrbitCamera::recalculateMatrix()
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tmpPosition.setY(qSin(m_theta) * qSin(m_phi));
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tmpPosition.setZ(qCos(m_theta));
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std::cout << m_theta << ":" << tmpPosition.x() << "-" << tmpPosition.y() << "-" << tmpPosition.z() << std::endl;
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m_matrix.lookAt(m_roh * tmpPosition, QVector3D(0,0,0), QVector3D(0, 0, 1));
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m_matrix.rotate(90, 90, 0);
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m_matrix.lookAt(m_roh * tmpPosition, QVector3D(0, 0, 0), QVector3D(0, 1, 0));
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}
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void OrbitCamera::resetView()
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{
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m_roh = 4;
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m_phi = -M_PI_2;
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m_theta = 0;
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m_theta = M_PI_2;
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CameraInterface::resetView();
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}
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