bringing back the old circulators. marked decrement operator as deprecated. Please use CW/CCW iterators
git-svn-id: http://www.openmesh.org/svnrepo/OpenMesh/trunk@1230 fdac6126-5c0c-442c-9429-916003d36597
This commit is contained in:
@@ -397,6 +397,210 @@ class GenericCirculatorT : protected GenericCirculatorBaseT<Mesh> {
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mutable value_type pointer_deref_value;
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mutable value_type pointer_deref_value;
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};
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};
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//////////////////////////////////////////////////////////////////////////////////////////////////////////////
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////////////////////////////////// OLD ///////////////////////////////////////////////////
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//////////////////////////////////////////////////////////////////////////////////////////////////////////////
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//////////////////////////////////////////////////////////////////////////////////////////////////////////////
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// OLD CIRCULATORS
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// deprecated circulators, will be removed soon
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// if you remove these circulators and go to the old ones, PLEASE ENABLE FOLLOWING UNITTESTS:
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//
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// OpenMeshTrimeshCirculatorVertexIHalfEdge.VertexIHalfEdgeIterCheckInvalidationAtEnds
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// OpenMeshTrimeshCirculatorVertexEdge.VertexEdgeIterCheckInvalidationAtEnds
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// OpenMeshTrimeshCirculatorVertexVertex.VertexVertexIterCheckInvalidationAtEnds
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// OpenMeshTrimeshCirculatorVertexOHalfEdge.VertexOHalfEdgeIterCheckInvalidationAtEnds
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// OpenMeshTrimeshCirculatorVertexFace.VertexFaceIterCheckInvalidationAtEnds
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// OpenMeshTrimeshCirculatorVertexFace.VertexFaceIterWithoutHolesDecrement
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//
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template<class Mesh, class CenterEntityHandle, class ValueHandle>
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class GenericCirculator_ValueHandleFnsT_DEPRECATED {
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public:
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inline static bool is_valid(const typename Mesh::HalfedgeHandle &heh,const typename Mesh::HalfedgeHandle &start, const int lap_counter) {
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return ( heh.is_valid() && ((start != heh) || (lap_counter == 0 )) );
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}
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inline static void init(const Mesh*, typename Mesh::HalfedgeHandle&, typename Mesh::HalfedgeHandle&, int&) {};
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inline static void increment(const Mesh *mesh, typename Mesh::HalfedgeHandle &heh, typename Mesh::HalfedgeHandle &start, int &lap_counter) {
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GenericCirculator_CenterEntityFnsT<Mesh, CenterEntityHandle, true>::increment(mesh, heh, start, lap_counter);
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}
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inline static void decrement(const Mesh *mesh, typename Mesh::HalfedgeHandle &heh, typename Mesh::HalfedgeHandle &start, int &lap_counter) {
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GenericCirculator_CenterEntityFnsT<Mesh, CenterEntityHandle, true>::decrement(mesh, heh, start, lap_counter);
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}
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};
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template<class Mesh, class CenterEntityHandle>
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class GenericCirculator_ValueHandleFnsT_DEPRECATED<Mesh, CenterEntityHandle, typename Mesh::FaceHandle> {
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public:
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typedef GenericCirculator_DereferenciabilityCheckT<Mesh, CenterEntityHandle, typename Mesh::FaceHandle> GenericCirculator_DereferenciabilityCheck;
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inline static bool is_valid(const typename Mesh::HalfedgeHandle &heh, const typename Mesh::HalfedgeHandle &start, const int lap_counter) {
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return ( heh.is_valid() && ((start != heh) || (lap_counter == 0 )));
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}
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inline static void init(const Mesh *mesh, typename Mesh::HalfedgeHandle &heh, typename Mesh::HalfedgeHandle &start, int &lap_counter) {
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if (heh.is_valid() && !GenericCirculator_DereferenciabilityCheck::isDereferenciable(mesh, heh) && lap_counter == 0 )
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increment(mesh, heh, start, lap_counter);
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};
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inline static void increment(const Mesh *mesh, typename Mesh::HalfedgeHandle &heh, typename Mesh::HalfedgeHandle &start, int &lap_counter) {
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do {
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GenericCirculator_CenterEntityFnsT<Mesh, CenterEntityHandle, true>::increment(mesh, heh, start, lap_counter);
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} while (is_valid(heh, start, lap_counter) && !GenericCirculator_DereferenciabilityCheck::isDereferenciable(mesh, heh));
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}
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inline static void decrement(const Mesh *mesh, typename Mesh::HalfedgeHandle &heh, typename Mesh::HalfedgeHandle &start, int &lap_counter) {
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do {
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GenericCirculator_CenterEntityFnsT<Mesh, CenterEntityHandle, true>::decrement(mesh, heh, start, lap_counter);
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} while (is_valid(heh, start, lap_counter) && !GenericCirculator_DereferenciabilityCheck::isDereferenciable(mesh, heh));
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}
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};
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template<class Mesh, class CenterEntityHandle, class ValueHandle,
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ValueHandle (GenericCirculatorBaseT<Mesh>::*Handle2Value)() const>
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class GenericCirculatorT_DEPRECATED : protected GenericCirculatorBaseT<Mesh> {
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public:
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typedef std::ptrdiff_t difference_type;
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typedef ValueHandle value_type;
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typedef const value_type& reference;
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typedef const value_type* pointer;
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typedef std::bidirectional_iterator_tag iterator_category;
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typedef typename GenericCirculatorBaseT<Mesh>::mesh_ptr mesh_ptr;
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typedef typename GenericCirculatorBaseT<Mesh>::mesh_ref mesh_ref;
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typedef GenericCirculator_ValueHandleFnsT_DEPRECATED<Mesh, CenterEntityHandle, ValueHandle> GenericCirculator_ValueHandleFns;
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public:
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GenericCirculatorT_DEPRECATED() {}
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GenericCirculatorT_DEPRECATED(mesh_ref mesh, CenterEntityHandle start, bool end = false) :
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GenericCirculatorBaseT<Mesh>(mesh, mesh.halfedge_handle(start), end) {
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GenericCirculator_ValueHandleFns::init(this->mesh_, this->heh_, this->start_, this->lap_counter_);
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}
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GenericCirculatorT_DEPRECATED(mesh_ref mesh, HalfedgeHandle heh, bool end = false) :
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GenericCirculatorBaseT<Mesh>(mesh, heh, end) {
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GenericCirculator_ValueHandleFns::init(this->mesh_, this->heh_, this->start_, this->lap_counter_);
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}
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GenericCirculatorT_DEPRECATED(const GenericCirculatorT_DEPRECATED &rhs) : GenericCirculatorBaseT<Mesh>(rhs) {}
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GenericCirculatorT_DEPRECATED& operator++() {
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assert(this->mesh_);
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GenericCirculator_ValueHandleFns::increment(this->mesh_, this->heh_, this->start_, this->lap_counter_);
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return *this;
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}
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DEPRECATED("current decrement operator is deprecated. Please use CCW/CW iterators.")
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GenericCirculatorT_DEPRECATED& operator--() {
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assert(this->mesh_);
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GenericCirculator_ValueHandleFns::decrement(this->mesh_, this->heh_, this->start_, this->lap_counter_);
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return *this;
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}
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/// Post-increment
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GenericCirculatorT_DEPRECATED operator++(int) {
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assert(this->mesh_);
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GenericCirculatorT_DEPRECATED cpy(*this);
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++(*this);
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return cpy;
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}
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/// Post-decrement
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DEPRECATED("current decrement operator is deprecated. Please use CCW/CW iterators.")
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GenericCirculatorT_DEPRECATED operator--(int) {
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assert(this->mesh_);
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GenericCirculatorT_DEPRECATED cpy(*this);
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--(*this);
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return cpy;
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}
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/// Standard dereferencing operator.
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value_type operator*() const {
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#ifndef NDEBUG
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assert(this->heh_.is_valid());
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value_type res = (this->*Handle2Value)();
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assert(res.is_valid());
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return res;
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#else
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return (this->*Handle2Value)();
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#endif
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}
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/**
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* @brief Pointer dereferentiation.
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*
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* This returns a pointer which points to a handle
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* that loses its validity once this dereferentiation is
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* invoked again. Thus, do not store the result of
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* this operation.
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*/
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pointer operator->() const {
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pointer_deref_value = **this;
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return &pointer_deref_value;
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}
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GenericCirculatorT_DEPRECATED &operator=(const GenericCirculatorT_DEPRECATED &rhs) {
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GenericCirculatorBaseT<Mesh>::operator=(rhs);
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return *this;
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};
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bool operator==(const GenericCirculatorT_DEPRECATED &rhs) const {
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return GenericCirculatorBaseT<Mesh>::operator==(rhs);
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}
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bool operator!=(const GenericCirculatorT_DEPRECATED &rhs) const {
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return GenericCirculatorBaseT<Mesh>::operator!=(rhs);
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}
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bool is_valid() const {
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return GenericCirculator_ValueHandleFns::is_valid(this->heh_,this->start_, this->lap_counter_);
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}
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DEPRECATED("current_halfedge_handle() is an implementation detail and should not be accessed from outside the iterator class.")
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/**
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* \deprecated
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* current_halfedge_handle() is an implementation detail and should not
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* be accessed from outside the iterator class.
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*/
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const HalfedgeHandle ¤t_halfedge_handle() const {
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return this->heh_;
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}
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DEPRECATED("Do not use this error prone implicit cast. Compare to end-iterator or use is_valid(), instead.")
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/**
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* \deprecated
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* Do not use this error prone implicit cast. Compare to the
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* end-iterator or use is_valid() instead.
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*/
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operator bool() const {
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return is_valid();
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}
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/**
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* \brief Return the handle of the current target.
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* \deprecated
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* This function clutters your code. Use dereferencing operators -> and * instead.
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*/
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DEPRECATED("This function clutters your code. Use dereferencing operators -> and * instead.")
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value_type handle() const {
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return **this;
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}
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/**
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* \brief Cast to the handle of the current target.
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* \deprecated
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* Implicit casts of iterators are unsafe. Use dereferencing operators
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* -> and * instead.
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*/
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DEPRECATED("Implicit casts of iterators are unsafe. Use dereferencing operators -> and * instead.")
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operator value_type() const {
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return **this;
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}
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template<typename STREAM>
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friend STREAM &operator<< (STREAM &s, const GenericCirculatorT_DEPRECATED &self) {
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return s << self.mesh_ << ", " << self.start_.idx() << ", " << self.heh_.idx() << ", " << self.lap_counter_;
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}
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private:
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mutable value_type pointer_deref_value;
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};
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} // namespace Iterators
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} // namespace Iterators
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} // namespace OpenMesh
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} // namespace OpenMesh
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@@ -102,10 +102,11 @@ public:
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/**
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/**
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* Enumerates 1-ring vertices in a clockwise fashion.
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* Enumerates 1-ring vertices in a clockwise fashion.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::VertexHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::VertexHandle, This::VertexHandle,
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&Iterators::GenericCirculatorBaseT<This>::toVertexHandle>
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&Iterators::GenericCirculatorBaseT<This>::toVertexHandle>
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VertexVertexIter;
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VertexVertexIter;
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typedef VertexVertexIter VertexVertexCWIter;
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::VertexHandle,
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&Iterators::GenericCirculatorBaseT<This>::toVertexHandle> VertexVertexCWIter;
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/**
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/**
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* Enumerates 1-ring vertices in a counter clockwise fashion.
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* Enumerates 1-ring vertices in a counter clockwise fashion.
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@@ -117,10 +118,11 @@ public:
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/**
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/**
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* Enumerates outgoing half edges in a clockwise fashion.
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* Enumerates outgoing half edges in a clockwise fashion.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::HalfedgeHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::VertexHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle>
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle>
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VertexOHalfedgeIter;
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VertexOHalfedgeIter;
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typedef VertexOHalfedgeIter VertexOHalfedgeCWIter;
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle> VertexOHalfedgeCWIter;
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/**
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/**
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* Enumerates outgoing half edges in a counter clockwise fashion.
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* Enumerates outgoing half edges in a counter clockwise fashion.
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@@ -132,10 +134,11 @@ public:
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/**
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/**
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* Enumerates incoming half edges in a clockwise fashion.
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* Enumerates incoming half edges in a clockwise fashion.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::HalfedgeHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::VertexHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toOppositeHalfedgeHandle>
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&Iterators::GenericCirculatorBaseT<This>::toOppositeHalfedgeHandle>
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VertexIHalfedgeIter;
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VertexIHalfedgeIter;
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typedef VertexIHalfedgeIter VertexIHalfedgeCWIter;
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toOppositeHalfedgeHandle> VertexIHalfedgeCWIter;
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/**
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/**
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* Enumerates incoming half edges in a counter clockwise fashion.
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* Enumerates incoming half edges in a counter clockwise fashion.
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@@ -147,10 +150,11 @@ public:
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/**
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/**
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* Enumerates incident faces in a clockwise fashion.
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* Enumerates incident faces in a clockwise fashion.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::FaceHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::VertexHandle, This::FaceHandle,
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&Iterators::GenericCirculatorBaseT<This>::toFaceHandle>
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&Iterators::GenericCirculatorBaseT<This>::toFaceHandle>
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VertexFaceIter;
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VertexFaceIter;
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typedef VertexFaceIter VertexFaceCWIter;
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::FaceHandle,
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&Iterators::GenericCirculatorBaseT<This>::toFaceHandle> VertexFaceCWIter;
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/**
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/**
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* Enumerates incident faces in a counter clockwise fashion.
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* Enumerates incident faces in a counter clockwise fashion.
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@@ -162,10 +166,11 @@ public:
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/**
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/**
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* Enumerates incident edges in a clockwise fashion.
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* Enumerates incident edges in a clockwise fashion.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::EdgeHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::VertexHandle, This::EdgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toEdgeHandle>
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&Iterators::GenericCirculatorBaseT<This>::toEdgeHandle>
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VertexEdgeIter;
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VertexEdgeIter;
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typedef VertexEdgeIter VertexEdgeCWIter;
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typedef Iterators::GenericCirculatorT<This, This::VertexHandle, This::EdgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toEdgeHandle> VertexEdgeCWIter;
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/**
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/**
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* Enumerates incident edges in a counter clockwise fashion.
|
* Enumerates incident edges in a counter clockwise fashion.
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*/
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*/
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@@ -176,10 +181,11 @@ public:
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/**
|
/**
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* Identical to #FaceHalfedgeIter. God knows why this typedef exists.
|
* Identical to #FaceHalfedgeIter. God knows why this typedef exists.
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*/
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*/
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typedef Iterators::GenericCirculatorT<This, This::FaceHandle, This::HalfedgeHandle,
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typedef Iterators::GenericCirculatorT_DEPRECATED<This, This::FaceHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle>
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle>
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HalfedgeLoopIter;
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HalfedgeLoopIter;
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typedef HalfedgeLoopIter HalfedgeLoopCWIter;
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typedef Iterators::GenericCirculatorT<This, This::FaceHandle, This::HalfedgeHandle,
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&Iterators::GenericCirculatorBaseT<This>::toHalfedgeHandle> HalfedgeLoopCWIter;
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/**
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/**
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* Identical to #FaceHalfedgeIter. God knows why this typedef exists.
|
* Identical to #FaceHalfedgeIter. God knows why this typedef exists.
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*/
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*/
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@@ -200,85 +200,86 @@ TEST_F(OpenMeshTrimeshCirculatorVertexEdge, VertexEdgeIterBoundaryIncrement) {
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|
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/*
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/*
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* Test if the end iterator stays invalid after one lap
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* Test if the end iterator stays invalid after one lap
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||||||
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* DISABLED as long as the normal iterators using old behavior
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*/
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*/
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TEST_F(OpenMeshTrimeshCirculatorVertexEdge, VertexEdgeIterCheckInvalidationAtEnds) {
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//TEST_F(OpenMeshTrimeshCirculatorVertexEdge, VertexEdgeIterCheckInvalidationAtEnds) {
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//
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mesh_.clear();
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// mesh_.clear();
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//
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// Add some vertices
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// // Add some vertices
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Mesh::VertexHandle vhandle[5];
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// Mesh::VertexHandle vhandle[5];
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//
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vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
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// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
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vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
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// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
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||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
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// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
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vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
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// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
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||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
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// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
// Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the end iterator stays invalid after end
|
// // Check if the end iterator stays invalid after end
|
||||||
Mesh::VertexEdgeIter endIter = mesh_.ve_end(vhandle[1]);
|
// Mesh::VertexEdgeIter endIter = mesh_.ve_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
++endIter ;
|
// ++endIter ;
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
||||||
|
//
|
||||||
// Check if the end iterators becomes valid after decrement
|
// // Check if the end iterators becomes valid after decrement
|
||||||
endIter = mesh_.ve_end(vhandle[1]);
|
// endIter = mesh_.ve_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
--endIter;
|
// --endIter;
|
||||||
EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
// EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
||||||
EXPECT_EQ(1,endIter->idx()) << "EndIter points on the wrong element";
|
// EXPECT_EQ(1,endIter->idx()) << "EndIter points on the wrong element";
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the start iterator decrement is invalid
|
// // Check if the start iterator decrement is invalid
|
||||||
Mesh::VertexEdgeIter startIter = mesh_.ve_begin(vhandle[1]);
|
// Mesh::VertexEdgeIter startIter = mesh_.ve_begin(vhandle[1]);
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
||||||
--startIter;
|
// --startIter;
|
||||||
EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
// EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
||||||
|
//
|
||||||
// Check if the start iterator becomes valid
|
// // Check if the start iterator becomes valid
|
||||||
++startIter;
|
// ++startIter;
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
// EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
||||||
EXPECT_EQ(startIter->idx(), mesh_.ve_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
// EXPECT_EQ(startIter->idx(), mesh_.ve_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Test CW and CCW iterators
|
* Test CW and CCW iterators
|
||||||
|
|||||||
@@ -269,187 +269,189 @@ TEST_F(OpenMeshTrimeshCirculatorVertexFace, VertexFaceIterBoundaryIncrement) {
|
|||||||
|
|
||||||
/*
|
/*
|
||||||
* Test if the end iterator stays invalid after one lap
|
* Test if the end iterator stays invalid after one lap
|
||||||
|
* DISABLED as long as the normal iterators using old behavior
|
||||||
*/
|
*/
|
||||||
TEST_F(OpenMeshTrimeshCirculatorVertexFace, VertexFaceIterCheckInvalidationAtEnds) {
|
//TEST_F(OpenMeshTrimeshCirculatorVertexFace, VertexFaceIterCheckInvalidationAtEnds) {
|
||||||
|
//
|
||||||
mesh_.clear();
|
// mesh_.clear();
|
||||||
|
//
|
||||||
// Add some vertices
|
// // Add some vertices
|
||||||
Mesh::VertexHandle vhandle[5];
|
// Mesh::VertexHandle vhandle[5];
|
||||||
|
//
|
||||||
vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
||||||
vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
||||||
vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
// Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the end iterator stays invalid after end
|
// // Check if the end iterator stays invalid after end
|
||||||
Mesh::VertexFaceIter endIter = mesh_.vf_end(vhandle[1]);
|
// Mesh::VertexFaceIter endIter = mesh_.vf_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
++endIter ;
|
// ++endIter ;
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
||||||
|
//
|
||||||
// Check if the end iterators becomes valid after decrement
|
// // Check if the end iterators becomes valid after decrement
|
||||||
endIter = mesh_.vf_end(vhandle[1]);
|
// endIter = mesh_.vf_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
--endIter;
|
// --endIter;
|
||||||
EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
// EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
||||||
EXPECT_EQ(0,endIter->idx()) << "EndIter points on the wrong element";
|
// EXPECT_EQ(0,endIter->idx()) << "EndIter points on the wrong element";
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the start iterator decrement is invalid
|
// // Check if the start iterator decrement is invalid
|
||||||
Mesh::VertexFaceIter startIter = mesh_.vf_begin(vhandle[1]);
|
// Mesh::VertexFaceIter startIter = mesh_.vf_begin(vhandle[1]);
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
||||||
--startIter;
|
// --startIter;
|
||||||
EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
// EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
||||||
|
//
|
||||||
// Check if the start iterator becomes valid
|
// // Check if the start iterator becomes valid
|
||||||
++startIter;
|
// ++startIter;
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
// EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
||||||
EXPECT_EQ(startIter->idx(), mesh_.vf_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
// EXPECT_EQ(startIter->idx(), mesh_.vf_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* VertexFaceIterator Test without holes testing decrement
|
* VertexFaceIterator Test without holes testing decrement
|
||||||
|
* DISABLED as long as the normal iterators using old behavior
|
||||||
*/
|
*/
|
||||||
TEST_F(OpenMeshTrimeshCirculatorVertexFace, VertexFaceIterWithoutHolesDecrement) {
|
//TEST_F(OpenMeshTrimeshCirculatorVertexFace, VertexFaceIterWithoutHolesDecrement) {
|
||||||
|
//
|
||||||
mesh_.clear();
|
// mesh_.clear();
|
||||||
|
//
|
||||||
// Add some vertices
|
// // Add some vertices
|
||||||
Mesh::VertexHandle vhandle[5];
|
// Mesh::VertexHandle vhandle[5];
|
||||||
|
//
|
||||||
vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
||||||
vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
||||||
vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
mesh_.vf_begin(vhandle[1]);
|
// mesh_.vf_begin(vhandle[1]);
|
||||||
|
//
|
||||||
// Iterate around vertex 1 at the middle
|
// // Iterate around vertex 1 at the middle
|
||||||
Mesh::VertexFaceIter vf_it = mesh_.vf_begin(vhandle[1]);
|
// Mesh::VertexFaceIter vf_it = mesh_.vf_begin(vhandle[1]);
|
||||||
std::advance(vf_it,3);
|
// std::advance(vf_it,3);
|
||||||
Mesh::VertexFaceIter vf_end = mesh_.vf_begin(vhandle[1]);
|
// Mesh::VertexFaceIter vf_end = mesh_.vf_begin(vhandle[1]);
|
||||||
--vf_end;
|
// --vf_end;
|
||||||
|
//
|
||||||
EXPECT_EQ(0, vf_it->idx() ) << "Index wrong in VertexFaceIter at initialization";
|
// EXPECT_EQ(0, vf_it->idx() ) << "Index wrong in VertexFaceIter at initialization";
|
||||||
EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at initialization";
|
// EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at initialization";
|
||||||
--vf_it ;
|
// --vf_it ;
|
||||||
EXPECT_EQ(2, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 1";
|
// EXPECT_EQ(2, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 1";
|
||||||
EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 1";
|
// EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 1";
|
||||||
--vf_it ;
|
// --vf_it ;
|
||||||
EXPECT_EQ(1, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 2";
|
// EXPECT_EQ(1, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 2";
|
||||||
EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
// EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
||||||
--vf_it ;
|
// --vf_it ;
|
||||||
EXPECT_EQ(3, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 3";
|
// EXPECT_EQ(3, vf_it->idx() ) << "Index wrong in VertexFaceIter at step 3";
|
||||||
EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 3";
|
// EXPECT_TRUE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 3";
|
||||||
--vf_it ;
|
// --vf_it ;
|
||||||
EXPECT_EQ(0, vf_it->idx() ) << "Index wrong in VertexFaceIter at end";
|
// EXPECT_EQ(0, vf_it->idx() ) << "Index wrong in VertexFaceIter at end";
|
||||||
EXPECT_FALSE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
// EXPECT_FALSE(vf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
||||||
EXPECT_TRUE( vf_it == vf_end ) << "End iterator for VertexFaceIter not matching";
|
// EXPECT_TRUE( vf_it == vf_end ) << "End iterator for VertexFaceIter not matching";
|
||||||
|
//
|
||||||
// Iterate around vertex 1 at the middle with const iterator
|
// // Iterate around vertex 1 at the middle with const iterator
|
||||||
Mesh::ConstVertexFaceIter cvf_it = mesh_.cvf_begin(vhandle[1]);
|
// Mesh::ConstVertexFaceIter cvf_it = mesh_.cvf_begin(vhandle[1]);
|
||||||
std::advance(cvf_it,3);
|
// std::advance(cvf_it,3);
|
||||||
Mesh::ConstVertexFaceIter cvf_end = mesh_.cvf_begin(vhandle[1]);
|
// Mesh::ConstVertexFaceIter cvf_end = mesh_.cvf_begin(vhandle[1]);
|
||||||
--cvf_end;
|
// --cvf_end;
|
||||||
|
//
|
||||||
EXPECT_EQ(0, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at initialization";
|
// EXPECT_EQ(0, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at initialization";
|
||||||
EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at initialization";
|
// EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at initialization";
|
||||||
--cvf_it ;
|
// --cvf_it ;
|
||||||
EXPECT_EQ(2, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 1";
|
// EXPECT_EQ(2, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 1";
|
||||||
EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 1";
|
// EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 1";
|
||||||
--cvf_it ;
|
// --cvf_it ;
|
||||||
EXPECT_EQ(1, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 2";
|
// EXPECT_EQ(1, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 2";
|
||||||
EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 2";
|
// EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 2";
|
||||||
--cvf_it ;
|
// --cvf_it ;
|
||||||
EXPECT_EQ(3, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 3";
|
// EXPECT_EQ(3, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at step 3";
|
||||||
EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 3";
|
// EXPECT_TRUE(cvf_it.is_valid()) << "Iterator invalid in ConstVertexFaceIter at step 3";
|
||||||
--cvf_it ;
|
// --cvf_it ;
|
||||||
EXPECT_EQ(0, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at end";
|
// EXPECT_EQ(0, cvf_it->idx() ) << "Index wrong in ConstVertexFaceIter at end";
|
||||||
EXPECT_FALSE(cvf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
// EXPECT_FALSE(cvf_it.is_valid()) << "Iterator invalid in VertexFaceIter at step 2";
|
||||||
EXPECT_TRUE( cvf_it == cvf_end ) << "End iterator for ConstVertexFaceIter not matching";
|
// EXPECT_TRUE( cvf_it == cvf_end ) << "End iterator for ConstVertexFaceIter not matching";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Test CW and CCW iterators
|
* Test CW and CCW iterators
|
||||||
|
|||||||
@@ -314,85 +314,86 @@ TEST_F(OpenMeshTrimeshCirculatorVertexIHalfEdge, VertexIncomingHalfedgeDereferen
|
|||||||
|
|
||||||
/*
|
/*
|
||||||
* Test if the end iterator stays invalid after one lap
|
* Test if the end iterator stays invalid after one lap
|
||||||
|
* DISABLED as long as the normal iterators using old behavior
|
||||||
*/
|
*/
|
||||||
TEST_F(OpenMeshTrimeshCirculatorVertexIHalfEdge, VertexIHalfEdgeIterCheckInvalidationAtEnds) {
|
//TEST_F(OpenMeshTrimeshCirculatorVertexIHalfEdge, VertexIHalfEdgeIterCheckInvalidationAtEnds) {
|
||||||
|
//
|
||||||
mesh_.clear();
|
// mesh_.clear();
|
||||||
|
//
|
||||||
// Add some vertices
|
// // Add some vertices
|
||||||
Mesh::VertexHandle vhandle[5];
|
// Mesh::VertexHandle vhandle[5];
|
||||||
|
//
|
||||||
vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
||||||
vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
||||||
vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
// Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the end iterator stays invalid after end
|
// // Check if the end iterator stays invalid after end
|
||||||
Mesh::VertexIHalfedgeIter endIter = mesh_.vih_end(vhandle[1]);
|
// Mesh::VertexIHalfedgeIter endIter = mesh_.vih_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
++endIter ;
|
// ++endIter ;
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
||||||
|
//
|
||||||
// Check if the end iterators becomes valid after decrement
|
// // Check if the end iterators becomes valid after decrement
|
||||||
endIter = mesh_.vih_end(vhandle[1]);
|
// endIter = mesh_.vih_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
--endIter;
|
// --endIter;
|
||||||
EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
// EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
||||||
EXPECT_EQ(3,endIter->idx()) << "EndIter points on the wrong element";
|
// EXPECT_EQ(3,endIter->idx()) << "EndIter points on the wrong element";
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the start iterator decrement is invalid
|
// // Check if the start iterator decrement is invalid
|
||||||
Mesh::VertexIHalfedgeIter startIter = mesh_.vih_begin(vhandle[1]);
|
// Mesh::VertexIHalfedgeIter startIter = mesh_.vih_begin(vhandle[1]);
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
||||||
--startIter;
|
// --startIter;
|
||||||
EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
// EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
||||||
|
//
|
||||||
// Check if the start iterator becomes valid
|
// // Check if the start iterator becomes valid
|
||||||
++startIter;
|
// ++startIter;
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
// EXPECT_TRUE(startIter.is_valid()) << "StarIter is invalid after re-incrementing";
|
||||||
EXPECT_EQ(startIter->idx(), mesh_.vih_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
// EXPECT_EQ(startIter->idx(), mesh_.vih_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Test CW and CCW iterators
|
* Test CW and CCW iterators
|
||||||
|
|||||||
@@ -315,84 +315,85 @@ TEST_F(OpenMeshTrimeshCirculatorVertexOHalfEdge, VertexOutgoingHalfedgeDereferen
|
|||||||
|
|
||||||
/*
|
/*
|
||||||
* Test if the end iterator stays invalid after one lap
|
* Test if the end iterator stays invalid after one lap
|
||||||
|
* DISABLED as long as the normal iterators using old behavior
|
||||||
*/
|
*/
|
||||||
TEST_F(OpenMeshTrimeshCirculatorVertexOHalfEdge, VertexOHalfEdgeIterCheckInvalidationAtEnds) {
|
//TEST_F(OpenMeshTrimeshCirculatorVertexOHalfEdge, VertexOHalfEdgeIterCheckInvalidationAtEnds) {
|
||||||
|
//
|
||||||
mesh_.clear();
|
// mesh_.clear();
|
||||||
|
//
|
||||||
// Add some vertices
|
// // Add some vertices
|
||||||
Mesh::VertexHandle vhandle[5];
|
// Mesh::VertexHandle vhandle[5];
|
||||||
|
//
|
||||||
vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
||||||
vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
||||||
vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
// Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the end iterator stays invalid after end
|
// // Check if the end iterator stays invalid after end
|
||||||
Mesh::VertexOHalfedgeIter endIter = mesh_.voh_end(vhandle[1]);
|
// Mesh::VertexOHalfedgeIter endIter = mesh_.voh_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
++endIter ;
|
// ++endIter ;
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
||||||
|
//
|
||||||
endIter = mesh_.voh_end(vhandle[1]);
|
// endIter = mesh_.voh_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
--endIter;
|
// --endIter;
|
||||||
EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
// EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
||||||
EXPECT_EQ(2,endIter->idx()) << "EndIter points on the wrong element";
|
// EXPECT_EQ(2,endIter->idx()) << "EndIter points on the wrong element";
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the start iterator decrement is invalid
|
// // Check if the start iterator decrement is invalid
|
||||||
Mesh::VertexOHalfedgeIter startIter = mesh_.voh_begin(vhandle[1]);
|
// Mesh::VertexOHalfedgeIter startIter = mesh_.voh_begin(vhandle[1]);
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
||||||
--startIter;
|
// --startIter;
|
||||||
EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
// EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
||||||
|
//
|
||||||
// Check if the start iterator becomes valid
|
// // Check if the start iterator becomes valid
|
||||||
++startIter;
|
// ++startIter;
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is invalid after re-incrementing";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is invalid after re-incrementing";
|
||||||
EXPECT_EQ(startIter->idx(), mesh_.voh_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
// EXPECT_EQ(startIter->idx(), mesh_.voh_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Test CW and CCW iterators
|
* Test CW and CCW iterators
|
||||||
|
|||||||
@@ -203,85 +203,86 @@ TEST_F(OpenMeshTrimeshCirculatorVertexVertex, VertexVertexBoundaryIncrement) {
|
|||||||
|
|
||||||
/*
|
/*
|
||||||
* Test if the end iterator stays invalid after one lap
|
* Test if the end iterator stays invalid after one lap
|
||||||
|
* DISABLED as long as the normal iterators using old behavior
|
||||||
*/
|
*/
|
||||||
TEST_F(OpenMeshTrimeshCirculatorVertexVertex, VertexVertexIterCheckInvalidationAtEnds) {
|
//TEST_F(OpenMeshTrimeshCirculatorVertexVertex, VertexVertexIterCheckInvalidationAtEnds) {
|
||||||
|
//
|
||||||
mesh_.clear();
|
// mesh_.clear();
|
||||||
|
//
|
||||||
// Add some vertices
|
// // Add some vertices
|
||||||
Mesh::VertexHandle vhandle[5];
|
// Mesh::VertexHandle vhandle[5];
|
||||||
|
//
|
||||||
vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
// vhandle[0] = mesh_.add_vertex(Mesh::Point(0, 1, 0));
|
||||||
vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
// vhandle[1] = mesh_.add_vertex(Mesh::Point(1, 0, 0));
|
||||||
vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
// vhandle[2] = mesh_.add_vertex(Mesh::Point(2, 1, 0));
|
||||||
vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
// vhandle[3] = mesh_.add_vertex(Mesh::Point(0,-1, 0));
|
||||||
vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
// vhandle[4] = mesh_.add_vertex(Mesh::Point(2,-1, 0));
|
||||||
|
//
|
||||||
// Add two faces
|
// // Add two faces
|
||||||
std::vector<Mesh::VertexHandle> face_vhandles;
|
// std::vector<Mesh::VertexHandle> face_vhandles;
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
// Mesh::FaceHandle fh0 = mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[0]);
|
// face_vhandles.push_back(vhandle[0]);
|
||||||
face_vhandles.push_back(vhandle[3]);
|
// face_vhandles.push_back(vhandle[3]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
face_vhandles.clear();
|
// face_vhandles.clear();
|
||||||
|
//
|
||||||
face_vhandles.push_back(vhandle[2]);
|
// face_vhandles.push_back(vhandle[2]);
|
||||||
face_vhandles.push_back(vhandle[1]);
|
// face_vhandles.push_back(vhandle[1]);
|
||||||
face_vhandles.push_back(vhandle[4]);
|
// face_vhandles.push_back(vhandle[4]);
|
||||||
mesh_.add_face(face_vhandles);
|
// mesh_.add_face(face_vhandles);
|
||||||
|
//
|
||||||
/* Test setup:
|
// /* Test setup:
|
||||||
0 ==== 2
|
// 0 ==== 2
|
||||||
|\ 0 /|
|
// |\ 0 /|
|
||||||
| \ / |
|
// | \ / |
|
||||||
|2 1 3|
|
// |2 1 3|
|
||||||
| / \ |
|
// | / \ |
|
||||||
|/ 1 \|
|
// |/ 1 \|
|
||||||
3 ==== 4 */
|
// 3 ==== 4 */
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the end iterator stays invalid after end
|
// // Check if the end iterator stays invalid after end
|
||||||
Mesh::VertexVertexIter endIter = mesh_.vv_end(vhandle[1]);
|
// Mesh::VertexVertexIter endIter = mesh_.vv_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
++endIter ;
|
// ++endIter ;
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid after increment";
|
||||||
|
//
|
||||||
// Check if the end iterators becomes valid after decrement
|
// // Check if the end iterators becomes valid after decrement
|
||||||
endIter = mesh_.vv_end(vhandle[1]);
|
// endIter = mesh_.vv_end(vhandle[1]);
|
||||||
EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
// EXPECT_FALSE(endIter.is_valid()) << "EndIter is not invalid";
|
||||||
--endIter;
|
// --endIter;
|
||||||
EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
// EXPECT_TRUE(endIter.is_valid()) << "EndIter is invalid after decrement";
|
||||||
EXPECT_EQ(2,endIter->idx()) << "EndIter points on the wrong element";
|
// EXPECT_EQ(2,endIter->idx()) << "EndIter points on the wrong element";
|
||||||
|
//
|
||||||
|
//
|
||||||
// Check if the start iterator decrement is invalid
|
// // Check if the start iterator decrement is invalid
|
||||||
Mesh::VertexVertexIter startIter = mesh_.vv_begin(vhandle[1]);
|
// Mesh::VertexVertexIter startIter = mesh_.vv_begin(vhandle[1]);
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is not valid";
|
||||||
--startIter;
|
// --startIter;
|
||||||
EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
// EXPECT_FALSE(startIter.is_valid()) << "StartIter decrement is not invalid";
|
||||||
|
//
|
||||||
// Check if the start iterator becomes valid
|
// // Check if the start iterator becomes valid
|
||||||
++startIter;
|
// ++startIter;
|
||||||
EXPECT_TRUE(startIter.is_valid()) << "StartIter is invalid after re-incrementing";
|
// EXPECT_TRUE(startIter.is_valid()) << "StartIter is invalid after re-incrementing";
|
||||||
EXPECT_EQ(startIter->idx(), mesh_.vv_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
// EXPECT_EQ(startIter->idx(), mesh_.vv_begin(vhandle[1])->idx()) << "StartIter points on the wrong element";
|
||||||
|
//
|
||||||
}
|
//}
|
||||||
|
|
||||||
/*
|
/*
|
||||||
* Test CW and CCW iterators
|
* Test CW and CCW iterators
|
||||||
|
|||||||
Reference in New Issue
Block a user