44 namespace NekMeshUtils
55 vector<NodeSharedPtr> pNodeList,
57 :
Element(pConf, GetNumNodes(pConf), pNodeList.size())
67 map<pair<int, int>,
int> edgeNodeMap;
68 map<pair<int, int>,
int>::iterator it;
69 edgeNodeMap[pair<int, int>(1, 2)] = 5;
70 edgeNodeMap[pair<int, int>(2, 3)] = 5 + n;
71 edgeNodeMap[pair<int, int>(3, 4)] = 5 + 2 * n;
72 edgeNodeMap[pair<int, int>(4, 1)] = 5 + 3 * n;
77 for (
int i = 0; i < 4; ++i)
81 sum += (pNodeList[o]->m_x - pNodeList[i]->m_x) *
82 (pNodeList[o]->m_y + pNodeList[i]->m_y);
86 for (it = edgeNodeMap.begin(); it != edgeNodeMap.end(); ++it)
88 vector<NodeSharedPtr> edgeNodes;
91 for (
int j = it->second; j < it->second + n; ++j)
93 edgeNodes.push_back(pNodeList[j - 1]);
97 pNodeList[it->first.second - 1],
122 int locVert = edgeId;
123 if (edge->m_n1 ==
m_vertex[locVert])
127 else if (edge->m_n2 ==
m_vertex[locVert])
133 ASSERTL1(
false,
"Edge is not connected to this quadrilateral.");
165 int nPoints = order + 1;
175 for (
int i = 0; i < coordDim; ++i)
178 xmap->BwdTrans(geom->GetCoeffs(i), phys[i]);
181 int nQuadIntPts = (nPoints - 2) * (nPoints - 2);
184 for (
int i = 1, cnt = 0; i < nPoints-1; ++i)
186 for (
int j = 1; j < nPoints-1; ++j, ++cnt)
193 for (
int k = 0; k < coordDim; ++k)
195 x[k] = xmap->PhysEvaluate(xp, phys[k]);
199 new Node(
id++, x[0], x[1], x[2]));
209 for (
int i = 0; i < 4; ++i)
211 edges[i] =
m_edge[i]->GetGeom(coordDim);
223 int n =
m_edge[0]->GetNodeCount();
224 nodeList.resize(n * n);
230 nodeList[n * (n - 1)] =
m_vertex[3];
234 {0, 1}, {n - 1, n}, {n * n - 1, -1}, {n * (n - 1), -n}};
235 for (
int i = 0; i < 4; ++i)
241 for (
int j = 1; j < n - 1; ++j)
243 nodeList[skips[i][0] + j * skips[i][1]] =
244 m_edge[i]->m_edgeNodes[n - 2 - j];
249 for (
int j = 1; j < n - 1; ++j)
251 nodeList[skips[i][0] + j * skips[i][1]] =
252 m_edge[i]->m_edgeNodes[j - 1];
258 for (
int i = 1; i < n - 1; ++i)
260 for (
int j = 1; j < n - 1; ++j)
262 nodeList[i * n + j] =
278 return (n + 1) * (n + 1);
#define ASSERTL1(condition, msg)
Assert Level 1 – Debugging which is used whether in FULLDEBUG or DEBUG compilation mode....
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Defines a specification for a set of points.
unsigned int GetPointsDim() const
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.
Represents an edge which joins two points.
Base class for element definitions.
std::string m_tag
Tag character describing the element.
std::vector< NodeSharedPtr > m_vertex
List of element vertex nodes.
std::vector< EdgeSharedPtr > m_edge
List of element edges.
std::vector< int > m_taglist
List of integers specifying properties of the element.
ElmtConfig m_conf
Contains configuration of the element.
unsigned int m_id
ID of the element.
unsigned int m_dim
Dimension of the element.
LibUtilities::PointsType m_curveType
Volume curve type.
std::vector< NodeSharedPtr > m_volumeNodes
List of element volume nodes.
Represents a point in the domain.
static NEKMESHUTILS_EXPORT unsigned int GetNumNodes(ElmtConfig pConf)
Return the number of nodes defining a quadrilateral.
virtual NEKMESHUTILS_EXPORT SpatialDomains::GeometrySharedPtr GetGeom(int coordDim)
Generate a Nektar++ geometry object for this element.
virtual NEKMESHUTILS_EXPORT void MakeOrder(int order, SpatialDomains::GeometrySharedPtr geom, LibUtilities::PointsType pType, int coordDim, int &id, bool justConfig=false)
Insert interior (i.e. volume) points into this element to make the geometry an order order representa...
virtual NEKMESHUTILS_EXPORT StdRegions::Orientation GetEdgeOrient(int edgeId, EdgeSharedPtr edge)
Get the edge orientation of edge with respect to the local element, which lies at edge index edgeId.
virtual NEKMESHUTILS_EXPORT void GetCurvedNodes(std::vector< NodeSharedPtr > &nodeList) const
get list of volume interior nodes
PointsManagerT & PointsManager(void)
std::shared_ptr< Edge > EdgeSharedPtr
Shared pointer to an edge.
ElementFactory & GetElementFactory()
std::shared_ptr< QuadGeom > QuadGeomSharedPtr
std::shared_ptr< SegGeom > SegGeomSharedPtr
std::shared_ptr< Geometry > GeometrySharedPtr
std::shared_ptr< StdExpansion > StdExpansionSharedPtr
Basic information about an element.
bool m_reorient
Denotes whether the element needs to be re-orientated for a spectral element framework.
bool m_volumeNodes
Denotes whether the element contains volume (i.e. interior) nodes. These are not supported by either ...
unsigned int m_order
Order of the element.
LibUtilities::PointsType m_edgeCurveType
Distribution of points in edges.
bool m_faceNodes
Denotes whether the element contains face nodes. For 2D elements, if this is true then the element co...