Nektar++
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Nektar::LibUtilities::PointsKey Class Reference

Defines a specification for a set of points. More...

#include <Points.h>

Classes

struct  opLess
 

Public Member Functions

 PointsKey (void)
 Default constructor. More...
 
 PointsKey (const size_t &numpoints, const PointsType &pointstype, const NekDouble factor=NekConstants::kNekUnsetDouble)
 Constructor defining the number and distribution of points. More...
 
virtual ~PointsKey ()
 Destructor. More...
 
 PointsKey (const PointsKey &key)=default
 Copy constructor. More...
 
PointsKeyoperator= (const PointsKey &key)=default
 
size_t GetNumPoints () const
 
PointsType GetPointsType () const
 
NekDouble GetFactor () const
 
bool operator== (const PointsKey &key)
 
bool operator== (const PointsKey *y)
 
bool operator!= (const PointsKey &y)
 
bool operator!= (const PointsKey *y)
 
size_t GetPointsDim () const
 
size_t GetTotNumPoints () const
 

Protected Attributes

size_t m_numpoints
 number of the points (as appropriately defined for PointsType) More...
 
PointsType m_pointstype
 Type of Points. More...
 
NekDouble m_factor
 optional factor More...
 

Friends

bool operator== (const PointsKey &lhs, const PointsKey &rhs)
 
bool operator< (const PointsKey &lhs, const PointsKey &rhs)
 
bool opLess::operator() (const PointsKey &lhs, const PointsKey &rhs) const
 

Detailed Description

Defines a specification for a set of points.

Specification for a set of points. This includes the total number of points, as well as their distribution.

Definition at line 54 of file Points.h.

Constructor & Destructor Documentation

◆ PointsKey() [1/3]

Nektar::LibUtilities::PointsKey::PointsKey ( void  )
inline

Default constructor.

Definition at line 67 of file Points.h.

70 {
71 }
size_t m_numpoints
number of the points (as appropriately defined for PointsType)
Definition: Points.h:221
PointsType m_pointstype
Type of Points.
Definition: Points.h:223
NekDouble m_factor
optional factor
Definition: Points.h:224
static const NekDouble kNekUnsetDouble

◆ PointsKey() [2/3]

Nektar::LibUtilities::PointsKey::PointsKey ( const size_t &  numpoints,
const PointsType pointstype,
const NekDouble  factor = NekConstants::kNekUnsetDouble 
)
inline

Constructor defining the number and distribution of points.

Definition at line 74 of file Points.h.

76 : m_numpoints(numpoints), m_pointstype(pointstype), m_factor(factor)
77 {
78 }

◆ ~PointsKey()

virtual Nektar::LibUtilities::PointsKey::~PointsKey ( )
inlinevirtual

Destructor.

Definition at line 81 of file Points.h.

82 {
83 }

◆ PointsKey() [3/3]

Nektar::LibUtilities::PointsKey::PointsKey ( const PointsKey key)
default

Copy constructor.

Member Function Documentation

◆ GetFactor()

NekDouble Nektar::LibUtilities::PointsKey::GetFactor ( ) const
inline

Definition at line 100 of file Points.h.

101 {
102 return m_factor;
103 }

References m_factor.

Referenced by Nektar::LibUtilities::BLPoints::v_CalculatePoints().

◆ GetNumPoints()

size_t Nektar::LibUtilities::PointsKey::GetNumPoints ( ) const
inline

Definition at line 90 of file Points.h.

91 {
92 return m_numpoints;
93 }

References m_numpoints.

Referenced by Nektar::MultiRegions::LocTraceToTraceMap::CalcLocTracePhysToTraceIDMap_2D(), Nektar::MultiRegions::LocTraceToTraceMap::CalcLocTracePhysToTraceIDMap_3D(), Nektar::LibUtilities::GaussPoints::CalculateGalerkinProjectionMatrix(), Nektar::LibUtilities::FourierPoints::CalculateInterpMatrix(), Nektar::LibUtilities::GaussPoints::CalculateInterpMatrix(), Nektar::LibUtilities::PolyEPoints::CalculateInterpMatrix(), Nektar::LibUtilities::FourierPoints::CreateMatrix(), Nektar::LibUtilities::GaussPoints::CreateMatrix(), Nektar::LibUtilities::BasisKey::GetNumPoints(), Nektar::LibUtilities::Points< DataT >::GetNumPoints(), Nektar::LibUtilities::Interp1D(), Nektar::LibUtilities::Interp2D(), Nektar::LibUtilities::Interp3D(), Nektar::MultiRegions::LocTraceToTraceMap::InterpLocEdgesToTrace(), Nektar::MultiRegions::LocTraceToTraceMap::InterpLocEdgesToTraceTranspose(), Nektar::MultiRegions::LocTraceToTraceMap::InterpLocFacesToTrace(), Nektar::MultiRegions::LocTraceToTraceMap::InterpLocFacesToTraceTranspose(), Nektar::MultiRegions::LocTraceToTraceMap::InterpTraceToLocEdges(), Nektar::MultiRegions::LocTraceToTraceMap::InterpTraceToLocFaces(), Nektar::LibUtilities::operator<<(), Nektar::LibUtilities::PhysGalerkinProject1D(), Nektar::LibUtilities::PhysGalerkinProject2D(), Nektar::LibUtilities::PhysGalerkinProject3D(), Nektar::MultiRegions::LocTraceToTraceMap::Setup(), Nektar::LibUtilities::FourierPoints::v_CalculateDerivMatrix(), Nektar::LibUtilities::GaussPoints::v_CalculateDerivMatrix(), Nektar::LibUtilities::PolyEPoints::v_CalculateDerivMatrix(), Nektar::LibUtilities::BLPoints::v_CalculatePoints(), Nektar::LibUtilities::FourierPoints::v_CalculatePoints(), Nektar::LibUtilities::FourierSingleModePoints::v_CalculatePoints(), Nektar::LibUtilities::GaussPoints::v_CalculatePoints(), Nektar::LibUtilities::PolyEPoints::v_CalculatePoints(), Nektar::LibUtilities::FourierPoints::v_CalculateWeights(), Nektar::LibUtilities::FourierSingleModePoints::v_CalculateWeights(), Nektar::LibUtilities::PolyEPoints::v_CalculateWeights(), Nektar::LocalRegions::NodalTriExp::v_ComputeTraceNormal(), Nektar::LocalRegions::QuadExp::v_ComputeTraceNormal(), Nektar::LocalRegions::TriExp::v_ComputeTraceNormal(), and Nektar::LibUtilities::PolyEPoints::v_GetI().

◆ GetPointsDim()

size_t Nektar::LibUtilities::PointsKey::GetPointsDim ( ) const
inline

Definition at line 133 of file Points.h.

134 {
135 size_t dimpoints = 1;
136
137 switch (m_pointstype)
138 {
139 case eNodalTriElec:
140 case eNodalTriFekete:
142 case eNodalTriSPI:
143 case eNodalQuadElec:
144 dimpoints = 2;
145 break;
146
147 case eNodalTetElec:
150 case eNodalPrismElec:
151 case eNodalHexElec:
152 dimpoints = 3;
153 break;
154
155 default:
156 break;
157 }
158
159 return dimpoints;
160 }
@ eNodalPrismEvenlySpaced
3D Evenly-spaced points on a Prism
Definition: PointsType.h:88
@ eNodalTriFekete
2D Nodal Fekete Points on a Triangle
Definition: PointsType.h:84
@ eNodalTriElec
2D Nodal Electrostatic Points on a Triangle
Definition: PointsType.h:83
@ eNodalTriEvenlySpaced
2D Evenly-spaced points on a Triangle
Definition: PointsType.h:85
@ eNodalHexElec
3D GLL for hex
Definition: PointsType.h:96
@ eNodalQuadElec
2D GLL for quad
Definition: PointsType.h:95
@ eNodalTetEvenlySpaced
3D Evenly-spaced points on a Tetrahedron
Definition: PointsType.h:86
@ eNodalPrismElec
3D electrostatically spaced points on a Prism
Definition: PointsType.h:89
@ eNodalTetElec
3D Nodal Electrostatic Points on a Tetrahedron
Definition: PointsType.h:87
@ eNodalTriSPI
2D Nodal Symmetric positive internal triangle (Whitherden, Vincent)
Definition: PointsType.h:90

References Nektar::LibUtilities::eNodalHexElec, Nektar::LibUtilities::eNodalPrismElec, Nektar::LibUtilities::eNodalPrismEvenlySpaced, Nektar::LibUtilities::eNodalQuadElec, Nektar::LibUtilities::eNodalTetElec, Nektar::LibUtilities::eNodalTetEvenlySpaced, Nektar::LibUtilities::eNodalTriElec, Nektar::LibUtilities::eNodalTriEvenlySpaced, Nektar::LibUtilities::eNodalTriFekete, Nektar::LibUtilities::eNodalTriSPI, and m_pointstype.

Referenced by Nektar::LibUtilities::Basis::GetI(), Nektar::LibUtilities::Points< DataT >::GetPointsDim(), Nektar::LibUtilities::GaussPoints::v_GetI(), Nektar::LibUtilities::NodalPrismElec::v_GetI(), Nektar::LibUtilities::NodalPrismEvenlySpaced::v_GetI(), Nektar::LibUtilities::NodalTetElec::v_GetI(), Nektar::LibUtilities::NodalTetEvenlySpaced::v_GetI(), Nektar::LibUtilities::NodalTriElec::v_GetI(), Nektar::LibUtilities::NodalTriEvenlySpaced::v_GetI(), Nektar::LibUtilities::NodalTriFekete::v_GetI(), Nektar::LibUtilities::PolyEPoints::v_GetI(), and Nektar::LibUtilities::FourierPoints::v_GetI().

◆ GetPointsType()

PointsType Nektar::LibUtilities::PointsKey::GetPointsType ( ) const
inline

◆ GetTotNumPoints()

size_t Nektar::LibUtilities::PointsKey::GetTotNumPoints ( ) const
inline

Definition at line 163 of file Points.h.

164 {
165 size_t totpoints = m_numpoints;
166
167 switch (m_pointstype)
168 {
169 case eNodalTriElec:
170 case eNodalTriFekete:
172 totpoints = m_numpoints * (m_numpoints + 1) / 2;
173 break;
174 case eNodalTriSPI:
176 "This method cannot be implemented");
177 break;
178
179 case eNodalQuadElec:
180 totpoints = m_numpoints * m_numpoints;
181 break;
182
183 case eNodalTetElec:
185 totpoints =
186 m_numpoints * (m_numpoints + 1) * (m_numpoints + 2) / 6;
187 break;
188 case eNodalTetSPI:
190 "This method cannot be implemented");
191 break;
192
194 case eNodalPrismElec:
195 totpoints = m_numpoints * m_numpoints * (m_numpoints + 1) / 2;
196 break;
197 case eNodalPrismSPI:
199 "This method cannot be implemented");
200 break;
201
202 case eNodalHexElec:
203 totpoints = m_numpoints * m_numpoints * m_numpoints;
204 break;
205
206 default:
207 break;
208 }
209
210 return totpoints;
211 }
#define NEKERROR(type, msg)
Assert Level 0 – Fundamental assert which is used whether in FULLDEBUG, DEBUG or OPT compilation mode...
Definition: ErrorUtil.hpp:209
@ eNodalPrismSPI
3D prism SPI
Definition: PointsType.h:94
@ eNodalTetSPI
3D Nodal Symmetric positive internal tet (Whitherden, Vincent)
Definition: PointsType.h:92

References Nektar::ErrorUtil::efatal, Nektar::LibUtilities::eNodalHexElec, Nektar::LibUtilities::eNodalPrismElec, Nektar::LibUtilities::eNodalPrismEvenlySpaced, Nektar::LibUtilities::eNodalPrismSPI, Nektar::LibUtilities::eNodalQuadElec, Nektar::LibUtilities::eNodalTetElec, Nektar::LibUtilities::eNodalTetEvenlySpaced, Nektar::LibUtilities::eNodalTetSPI, Nektar::LibUtilities::eNodalTriElec, Nektar::LibUtilities::eNodalTriEvenlySpaced, Nektar::LibUtilities::eNodalTriFekete, Nektar::LibUtilities::eNodalTriSPI, m_numpoints, m_pointstype, and NEKERROR.

Referenced by Nektar::LibUtilities::BasisKey::GetTotNumPoints(), Nektar::LibUtilities::Points< DataT >::GetTotNumPoints(), Nektar::LibUtilities::GaussPoints::v_CalculateDerivMatrix(), Nektar::LibUtilities::NodalTetElec::v_CalculatePoints(), Nektar::LibUtilities::NodalTriElec::v_CalculatePoints(), and Nektar::LibUtilities::NodalTriFekete::v_CalculatePoints().

◆ operator!=() [1/2]

bool Nektar::LibUtilities::PointsKey::operator!= ( const PointsKey y)
inline

Definition at line 122 of file Points.h.

123 {
124 return (!(*this == y));
125 }

◆ operator!=() [2/2]

bool Nektar::LibUtilities::PointsKey::operator!= ( const PointsKey y)
inline

Definition at line 127 of file Points.h.

128 {
129 return (!(*this == *y));
130 }

◆ operator=()

PointsKey & Nektar::LibUtilities::PointsKey::operator= ( const PointsKey key)
default

◆ operator==() [1/2]

bool Nektar::LibUtilities::PointsKey::operator== ( const PointsKey key)
inline

Definition at line 105 of file Points.h.

106 {
107
108 if (fabs(m_factor - key.m_factor) < NekConstants::kNekZeroTol)
109 {
110 return (m_numpoints == key.m_numpoints &&
111 m_pointstype == key.m_pointstype);
112 }
113
114 return false;
115 }
static const NekDouble kNekZeroTol

References Nektar::NekConstants::kNekZeroTol, m_factor, m_numpoints, and m_pointstype.

◆ operator==() [2/2]

bool Nektar::LibUtilities::PointsKey::operator== ( const PointsKey y)
inline

Definition at line 117 of file Points.h.

118 {
119 return (*this == *y);
120 }

Friends And Related Function Documentation

◆ operator<

bool operator< ( const PointsKey lhs,
const PointsKey rhs 
)
friend

Definition at line 53 of file Foundations/Points.cpp.

54{
55 if (lhs.m_pointstype < rhs.m_pointstype)
56 {
57 return true;
58 }
59
60 if (lhs.m_pointstype > rhs.m_pointstype)
61 {
62 return false;
63 }
64
65 if (lhs.m_numpoints < rhs.m_numpoints)
66 {
67 return true;
68 }
69
70 if (lhs.m_numpoints > rhs.m_numpoints)
71 {
72 return false;
73 }
74
75 if (lhs.m_factor < rhs.m_factor)
76 {
77 return true;
78 }
79
80 if (lhs.m_factor > rhs.m_factor)
81 {
82 return false;
83 }
84
85 return false;
86}

◆ operator==

bool operator== ( const PointsKey lhs,
const PointsKey rhs 
)
friend

Definition at line 47 of file Foundations/Points.cpp.

48{
49 return (lhs.m_numpoints == rhs.m_numpoints &&
50 lhs.m_pointstype == rhs.m_pointstype);
51}

◆ opLess::operator()

bool opLess::operator() ( const PointsKey lhs,
const PointsKey rhs 
) const
friend

Member Data Documentation

◆ m_factor

NekDouble Nektar::LibUtilities::PointsKey::m_factor
protected

optional factor

Definition at line 224 of file Points.h.

Referenced by GetFactor(), and operator==().

◆ m_numpoints

size_t Nektar::LibUtilities::PointsKey::m_numpoints
protected

number of the points (as appropriately defined for PointsType)

Definition at line 221 of file Points.h.

Referenced by GetNumPoints(), GetTotNumPoints(), and operator==().

◆ m_pointstype

PointsType Nektar::LibUtilities::PointsKey::m_pointstype
protected