source: issm/trunk-jpl/src/c/classes/Elements/Element.h@ 23629

Last change on this file since 23629 was 23629, checked in by Mathieu Morlighem, 6 years ago

NEW: do not use MPISerial in InputUpdateFromSolution anymore

File size: 23.9 KB
Line 
1/*!\file: Element.h
2 * \brief abstract class for Element object
3 * This class is a place holder for the Tria and the Penta elements.
4 * It is derived from Element, so DataSets can contain them.
5*/
6
7#ifndef _ELEMENT_H_
8#define _ELEMENT_H_
9
10/*Headers:*/
11/*{{{*/
12#include "../../datastructures/datastructures.h"
13#include "../../toolkits/toolkits.h"
14class DataSet;
15class Parameters;
16class Parameter;
17class Elements;
18class Loads;
19class Nodes;
20class Node;
21class Vertices;
22class Vertex;
23class Materials;
24class Material;
25class Matpar;
26class Inputs;
27class Input;
28class IoModel;
29class Gauss;
30class ElementVector;
31template <class doublematrix> class Matrix;
32template <class doubletype> class Vector;
33class ElementMatrix;
34class ElementVector;
35/*}}}*/
36
37class Element: public Object{
38
39 public:
40 int id;
41 int sid;
42 Inputs *inputs;
43 Node **nodes;
44 Vertex **vertices;
45 Material *material;
46 Matpar *matpar;
47 Parameters *parameters;
48
49 int* element_type_list;
50 int element_type;
51
52 public:
53 /*Constructors/Destructores*/
54 Element();
55 ~Element();
56
57 /*Functions*/
58 void AddInput(Input* input_in);
59 /*bool AllActive(void);*/
60 /*bool AnyActive(void);*/
61 void ComputeLambdaS(void);
62 void ComputeNewDamage();
63 void ComputeStrainRate();
64 void CoordinateSystemTransform(IssmDouble** ptransform,Node** nodes,int numnodes,int* cs_array);
65 void DeepEcho();
66 void DeleteInput(int input_enum);
67 void DeleteMaterials(void);
68 void Delta18oParameterization(void);
69 void Delta18opdParameterization(void);
70 void SmbGradCompParameterization(void);
71 IssmDouble Divergence(void);
72 void dViscositydBFS(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input,Input* vz_input);
73 void dViscositydBHO(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
74 void dViscositydBSSA(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
75 void dViscositydDSSA(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
76 void Echo();
77 IssmDouble EnthalpyDiffusionParameter(IssmDouble enthalpy,IssmDouble pressure);
78 IssmDouble EnthalpyDiffusionParameterVolume(int numvertices,IssmDouble* enthalpy,IssmDouble* pressure);
79 void EnthalpyToThermal(IssmDouble* ptemperature,IssmDouble* pwaterfraction,IssmDouble enthalpy,IssmDouble pressure);
80 void FindParam(bool* pvalue,int paramenum);
81 void FindParam(int* pvalue,int paramenum);
82 void FindParam(IssmDouble* pvalue,int paramenum);
83 void FindParam(int** pvalues,int* psize,int paramenum);
84 IssmDouble FloatingArea(IssmDouble* mask, bool scaled);
85 void GetDofList(int** pdoflist,int approximation_enum,int setenum);
86 void GetDofListPressure(int** pdoflist,int setenum);
87 void GetDofListVelocity(int** pdoflist,int setenum);
88 void GetDofListLocal(int** pdoflist,int approximation_enum,int setenum);
89 void GetDofListLocalPressure(int** pdoflist,int setenum);
90 void GetDofListLocalVelocity(int** pdoflist,int setenum);
91 Input* GetInput(int inputenum);
92 void GetInputListOnNodes(IssmDouble* pvalue,int enumtype);
93 void GetInputListOnNodes(IssmDouble* pvalue,int enumtype,IssmDouble defaultvalue);
94 void GetInputListOnNodesVelocity(IssmDouble* pvalue,int enumtype);
95 void GetInputListOnVertices(IssmDouble* pvalue,int enumtype);
96 void GetInputListOnVerticesAtTime(IssmDouble* pvalue,int enumtype,IssmDouble time);
97 void GetInputListOnVertices(IssmDouble* pvalue,int enumtype,IssmDouble defaultvalue);
98 void GetInputLocalMinMaxOnNodes(IssmDouble* min,IssmDouble* max,IssmDouble* ug);
99 void GetInputValue(bool* pvalue,int enum_type);
100 void GetInputValue(int* pvalue,int enum_type);
101 void GetInputValue(IssmDouble* pvalue,int enum_type);
102 void GetInputValue(IssmDouble* pvalue,Gauss* gauss,int enum_type);
103 void GetInputsInterpolations(Vector<IssmDouble>* interps);
104 IssmDouble GetMaterialParameter(int enum_in);
105 int GetIntegerMaterialParameter(int enum_in);
106 void GetNodesLidList(int* lidlist);
107 void GetNodesSidList(int* sidlist);
108 void GetPhi(IssmDouble* phi, IssmDouble* epsilon, IssmDouble viscosity);
109 void GetSolutionFromInputsOneDof(Vector<IssmDouble>* solution,int solutionenum);
110 void GetVectorFromInputs(Vector<IssmDouble>* vector, int name_enum, int type);
111 void GetVectorFromInputs(Vector<IssmDouble>* vector, int name_enum, int type,IssmDouble time);
112 void GetVertexPidList(int* pidlist);
113 void GetVerticesConnectivityList(int* connectivitylist);
114 void GetVerticesCoordinates(IssmDouble** xyz_list);
115 void GetVerticesSidList(int* sidlist);
116 IssmDouble GetXcoord(IssmDouble* xyz_list,Gauss* gauss);
117 IssmDouble GetYcoord(IssmDouble* xyz_list,Gauss* gauss);
118 IssmDouble GetZcoord(IssmDouble* xyz_list,Gauss* gauss);
119 void GradientIndexing(int* indexing,int control_index);
120 IssmDouble GroundedArea(IssmDouble* mask, bool scaled);
121 bool HasNodeOnBase();
122 bool HasNodeOnSurface();
123 IssmDouble IceMass(bool scaled);
124 IssmDouble IceMass(IssmDouble* mask, bool scaled);
125 IssmDouble IceVolume(IssmDouble* mask, bool scaled);
126 IssmDouble IceVolumeAboveFloatation(IssmDouble* mask, bool scaled);
127 int Id();
128 void InputChangeName(int enum_type,int enum_type_old);
129 void InputCreate(IssmDouble* vector,IoModel* iomodel,int M,int N,int vector_type,int vector_enum,int code);
130 void ControlInputCreate(IssmDouble* doublearray,IssmDouble* independents_min,IssmDouble* independents_max,IoModel* iomodel,int M,int N,int input_enum,int id);
131 void DatasetInputAdd(int enum_type,IssmDouble* vector,IoModel* iomodel,int M,int N,int vector_type,int vector_enum,int code,int input_enum);
132 void InputDuplicate(int original_enum,int new_enum);
133 void InputUpdateFromConstant(IssmDouble constant, int name);
134 void InputUpdateFromConstant(int constant, int name);
135 void InputUpdateFromConstant(bool constant, int name);
136
137 bool IsFloating();
138 bool IsIceInElement();
139 bool IsLandInElement();
140 bool IsWaterInElement();
141 void LinearFloatingiceMeltingRate();
142 void SpatialLinearFloatingiceMeltingRate();
143 void MantlePlumeGeothermalFlux();
144 void MarshallElement(char** pmarshalled_data,int* pmarshalled_data_size, int marshall_direction,int numanalyses);
145 void MigrateGroundingLine(IssmDouble* sheet_ungrounding);
146 void MismipFloatingiceMeltingRate();
147 void MungsmtpParameterization(void);
148 ElementMatrix* NewElementMatrix(int approximation_enum=NoneApproximationEnum);
149 ElementMatrix* NewElementMatrixCoupling(int number_nodes,int approximation_enum=NoneApproximationEnum);
150 ElementVector* NewElementVector(int approximation_enum=NoneApproximationEnum);
151 void PositiveDegreeDay(IssmDouble* pdds,IssmDouble* pds,IssmDouble signorm,bool ismungsm,bool issetpddfac);
152 void PositiveDegreeDaySicopolis(bool isfirnwarming);
153 IssmDouble PureIceEnthalpy(IssmDouble pressure);
154 void ResultInterpolation(int* pinterpolation,int*nodesperelement,int* parray_size, int output_enum);
155 void ResultToPatch(IssmDouble* values,int nodesperelement,int output_enum);
156 void ResultToMatrix(IssmDouble* values,int ncols,int output_enum);
157 void ResultToVector(Vector<IssmDouble>* vector,int output_enum);
158 void SetwiseNodeConnectivity(int* d_nz,int* o_nz,Node* node,bool* flags,int* flagsindices,int set1_enum,int set2_enum);
159 void SmbSemic();
160 int Sid();
161 void SmbGemb();
162 void StrainRateESA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
163 void StrainRateFS(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input,Input* vz_input);
164 void StrainRateHO(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
165 void StrainRateHO2dvertical(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
166 void StrainRateSSA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
167 void StrainRateSSA1d(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input);
168 void StressMaxPrincipalCreateInput(void);
169 void ThermalToEnthalpy(IssmDouble* penthalpy,IssmDouble temperature,IssmDouble waterfraction,IssmDouble pressure);
170 IssmDouble TMeltingPoint(IssmDouble pressure);
171 IssmDouble TotalFloatingBmb(IssmDouble* mask, bool scaled);
172 IssmDouble TotalGroundedBmb(IssmDouble* mask, bool scaled);
173 IssmDouble TotalSmb(IssmDouble* mask, bool scaled);
174 void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,int cs_enum);
175 void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int cs_enum);
176 void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int* cs_array);
177 void TransformLoadVectorCoord(ElementVector* pe,int cs_enum);
178 void TransformLoadVectorCoord(ElementVector* pe,int* cs_array);
179 void TransformLoadVectorCoord(ElementVector* pe,Node** nodes,int numnodes,int cs_enum);
180 void TransformLoadVectorCoord(ElementVector* pe,Node** nodes,int numnodes,int* cs_array);
181 void TransformLoadVectorCoord(ElementVector* pe,int numnodes,int transformenum){_error_("not implemented yet");};/*Tiling only*/
182 void TransformLoadVectorCoord(ElementVector* pe,int numnodes,int* transformenum_list){_error_("not implemented yet");};/*Tiling only*/
183 void TransformSolutionCoord(IssmDouble* solution,int cs_enum);
184 void TransformSolutionCoord(IssmDouble* solution,int* cs_array);
185 void TransformSolutionCoord(IssmDouble* solution,int numnodes,int cs_enum);
186 void TransformSolutionCoord(IssmDouble* solution,int numnodes,int* cs_array);
187 void TransformSolutionCoord(IssmDouble* solution,Node** nodes,int numnodes,int cs_enum);
188 void TransformSolutionCoord(IssmDouble* solution,Node** nodes,int numnodes,int* cs_array);
189 void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int cs_enum);
190 void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int* cs_array);
191 void TransformStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int cs_enum);
192 void TransformStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int* cs_array);
193 void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int numnodes,int* transformenum_list){_error_("not implemented yet");};/*Tiling only*/
194 void ViscousHeatingCreateInput(void);
195
196
197 /*Virtual functions*/
198 virtual void AddBasalInput(int input_enum, IssmDouble* values, int interpolation_enum)=0;
199 virtual void AddInput(int input_enum, IssmDouble* values, int interpolation_enum)=0;
200 virtual void AddControlInput(int input_enum, IssmDouble* values,IssmDouble* values_min,IssmDouble* values_max, int interpolation_enum,int id){_error_("not supported yet");};
201 virtual void DatasetInputCreate(IssmDouble* array,int M,int N,int* individual_enums,int num_inputs,IoModel* iomodel,int input_enum){_error_("not supported");};
202 virtual void AverageOntoPartition(Vector<IssmDouble>* partition_contributions,Vector<IssmDouble>* partition_areas,IssmDouble* vertex_response,IssmDouble* qmu_part)=0;
203 virtual void BasalNodeIndices(int* pnumindices,int** pindices,int finiteelement){_error_("not implemented yet");};
204 virtual void CalvingRateVonmises(void){_error_("not implemented yet");};
205 virtual void CalvingCrevasseDepth(void){_error_("not implemented yet");};
206 virtual void CalvingRateLevermann(void)=0;
207 virtual IssmDouble CharacteristicLength(void)=0;
208 virtual void ComputeBasalStress(Vector<IssmDouble>* sigma_b)=0;
209 virtual void ComputeDeviatoricStressTensor(void)=0;
210 virtual void ComputeSigmaNN(void)=0;
211 virtual void ComputeStressTensor(void)=0;
212 virtual void ComputeEsaStrainAndVorticity(void)=0;
213 virtual void Configure(Elements* elements,Loads* loads,Nodes* nodes,Vertices* vertices,Materials* materials,Parameters* parameters)=0;
214 virtual void ControlInputSetGradient(IssmDouble* gradient,int enum_type,int control_index,int offset,int N,int M)=0;
215 virtual void ControlInputSetGradient(IssmDouble* gradient,int enum_type,int control_index)=0;
216 virtual void ControlToVectors(Vector<IssmPDouble>* vector_control, Vector<IssmPDouble>* vector_gradient,int control_enum)=0;
217 virtual void CreateDistanceInputFromSegmentlist(IssmDouble* distances,int distanceenum){_error_("not implemented yet");};
218 virtual void ElementResponse(IssmDouble* presponse,int response_enum)=0;
219 virtual void ElementSizes(IssmDouble* phx,IssmDouble* phy,IssmDouble* phz)=0;
220 virtual int FiniteElement(void)=0;
221 virtual IssmDouble FloatingArea(bool scaled)=0;
222 virtual void FSContactMigration(Vector<IssmDouble>* vertex_sigmann,Vector<IssmDouble>* vertex_waterpressure)=0;
223 virtual Element* GetBasalElement(void)=0;
224 virtual int GetElementType(void)=0;
225 virtual IssmDouble GetHorizontalSurfaceArea(void){_error_("not implemented");};
226 virtual void GetGroundedPart(int* point1,IssmDouble* fraction1,IssmDouble* fraction2, bool* mainlyfloating)=0;
227 virtual IssmDouble GetGroundedPortion(IssmDouble* xyz_list)=0;
228 virtual void GetIcefrontCoordinates(IssmDouble** pxyz_front,IssmDouble* xyz_list,int levelsetenum)=0;
229 virtual void GetInputValue(IssmDouble* pvalue,Node* node,int enumtype)=0;
230 virtual void GetLevelCoordinates(IssmDouble** pxyz_front,IssmDouble* xyz_list,int levelsetenum,IssmDouble level)=0;
231 virtual void GetLevelsetPositivePart(int* point1,IssmDouble* fraction1,IssmDouble* fraction2, bool* mainlynegative,IssmDouble* levelsetvalues)=0;
232 virtual Node* GetNode(int node_number)=0;
233 virtual int GetNodeIndex(Node* node)=0;
234 virtual int GetNumberOfNodes(void)=0;
235 virtual int GetNumberOfNodes(int enum_type)=0;
236 virtual int GetNumberOfVertices(void)=0;
237 virtual void GetVectorFromControlInputs(Vector<IssmDouble>* gradient,int control_enum,int control_index,const char* data,int offset)=0;
238 virtual void GetVectorFromControlInputs(Vector<IssmDouble>* gradient,int control_enum,int control_index,const char* data)=0;
239 virtual void GetVerticesCoordinatesBase(IssmDouble** xyz_list)=0;
240 virtual void GetVerticesCoordinatesTop(IssmDouble** xyz_list)=0;
241 virtual IssmDouble GroundedArea(bool scaled)=0;
242 virtual IssmDouble IceVolume(bool scaled)=0;
243 virtual IssmDouble IceVolumeAboveFloatation(bool scaled)=0;
244 virtual void InputDepthAverageAtBase(int enum_type,int average_enum_type)=0;
245 virtual void InputExtrude(int input_enum,int start)=0;
246 virtual void InputUpdateFromSolutionOneDofCollapsed(IssmDouble* solution,int inputenum)=0;
247 virtual void InputUpdateFromSolutionOneDof(IssmDouble* solution,int inputenum)=0;
248 #ifdef _HAVE_DAKOTA_
249 virtual void InputUpdateFromMatrixDakota(IssmDouble* matrix, int rows, int ncols, int name, int type)=0;
250 virtual void InputUpdateFromVectorDakota(IssmDouble* vector, int name, int type)=0;
251 #endif
252 virtual void InputUpdateFromIoModel(int index, IoModel* iomodel)=0;
253 virtual void InputUpdateFromVector(IssmDouble* vector, int name, int type)=0;
254 virtual bool IsFaceOnBoundary(void)=0;
255 virtual bool IsIcefront(void)=0;
256 virtual bool IsNodeOnShelfFromFlags(IssmDouble* flags)=0;
257 virtual bool IsOnBase()=0;
258 virtual bool IsOnSurface()=0;
259 virtual bool IsZeroLevelset(int levelset_enum)=0;
260 virtual void JacobianDeterminant(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
261 virtual void JacobianDeterminantBase(IssmDouble* Jdet,IssmDouble* xyz_list_base,Gauss* gauss)=0;
262 virtual void JacobianDeterminantLine(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
263 virtual void JacobianDeterminantSurface(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
264 virtual void JacobianDeterminantTop(IssmDouble* Jdet,IssmDouble* xyz_list_base,Gauss* gauss)=0;
265 virtual void Marshall(char** pmarshalled_data,int* pmarshalled_data_size, int marshall_direction)=0;
266 virtual IssmDouble Masscon(IssmDouble* levelset)=0;
267 virtual IssmDouble MassFlux(IssmDouble* segment)=0;
268 virtual IssmDouble MassFlux(IssmDouble x1,IssmDouble y1, IssmDouble x2, IssmDouble y2,int segment_id)=0;
269 virtual IssmDouble MinEdgeLength(IssmDouble* xyz_list)=0;
270 virtual IssmDouble Misfit(int modelenum,int observationenum,int weightsenum)=0;
271 virtual IssmDouble MisfitArea(int weightsenum)=0;
272 virtual Gauss* NewGauss(void)=0;
273 virtual Gauss* NewGauss(int order)=0;
274 virtual Gauss* NewGauss(IssmDouble* xyz_list, IssmDouble* xyz_list_front,int order)=0;
275 virtual Gauss* NewGauss(IssmDouble* xyz_list, IssmDouble* xyz_list_front,int order_horiz,int order_vert)=0;
276 virtual Gauss* NewGauss(int point1,IssmDouble fraction1,IssmDouble fraction2,bool mainlyfloating,int order)=0;
277 virtual Gauss* NewGauss(int point1,IssmDouble fraction1,IssmDouble fraction2,int order)=0;
278 virtual Gauss* NewGaussBase(int order)=0;
279 virtual Gauss* NewGaussLine(int vertex1,int vertex2,int order)=0;
280 virtual Gauss* NewGaussTop(int order)=0;
281 virtual void NodalFunctions(IssmDouble* basis,Gauss* gauss)=0;
282 virtual void NodalFunctionsDerivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
283 virtual void NodalFunctionsDerivativesVelocity(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
284 virtual void NodalFunctionsMINIDerivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
285 virtual void NodalFunctionsPressure(IssmDouble* basis, Gauss* gauss)=0;
286 virtual void NodalFunctionsP1(IssmDouble* basis,Gauss* gauss)=0;
287 virtual void NodalFunctionsP1Derivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
288 virtual void NodalFunctionsP2(IssmDouble* basis,Gauss* gauss)=0;
289 virtual void NodalFunctionsVelocity(IssmDouble* basis, Gauss* gauss)=0;
290 virtual void NodalFunctionsTensor(IssmDouble* basis, Gauss* gauss)=0;
291 virtual int NodalValue(IssmDouble* pvalue, int index, int natureofdataenum)=0;
292 virtual void NormalBase(IssmDouble* normal,IssmDouble* xyz_list)=0;
293 virtual void NormalSection(IssmDouble* normal,IssmDouble* xyz_list)=0;
294 virtual void NormalTop(IssmDouble* normal,IssmDouble* xyz_list)=0;
295 virtual int NumberofNodesPressure(void)=0;
296 virtual int NumberofNodesVelocity(void)=0;
297 virtual void PicoUpdateBoxid(int* pmax_boxid_basin)=0;
298 virtual void PicoUpdateBox(int loopboxid)=0;
299 virtual void PicoComputeBasalMelt(void)=0;
300 virtual void PotentialUngrounding(Vector<IssmDouble>* potential_sheet_ungrounding)=0;
301 virtual int PressureInterpolation()=0;
302 virtual void ReduceMatrices(ElementMatrix* Ke,ElementVector* pe)=0;
303 virtual void ResetFSBasalBoundaryCondition()=0;
304 virtual void ResetHooks()=0;
305 virtual void SetControlInputsFromVector(IssmDouble* vector,int control_enum,int control_index,int offset,int N,int M)=0;
306 virtual void SetControlInputsFromVector(IssmDouble* vector,int control_enum,int control_index)=0;
307 virtual void SetCurrentConfiguration(Elements* elements,Loads* loads,Nodes* nodes,Materials* materials,Parameters* parameters)=0;
308 virtual void SetTemporaryElementType(int element_type_in)=0;
309 virtual Element* SpawnBasalElement(void)=0;
310 virtual Element* SpawnTopElement(void)=0;
311 virtual IssmDouble StabilizationParameter(IssmDouble u, IssmDouble v, IssmDouble w, IssmDouble diameter, IssmDouble kappa)=0;
312 virtual void StrainRateparallel(void)=0;
313 virtual void StrainRateperpendicular(void)=0;
314 virtual void StressIntensityFactor(void)=0;
315 virtual IssmDouble SurfaceArea(void)=0;
316 virtual int TensorInterpolation()=0;
317 virtual IssmDouble TimeAdapt()=0;
318 virtual IssmDouble TotalFloatingBmb(bool scaled)=0;
319 virtual IssmDouble TotalGroundedBmb(bool scaled)=0;
320 virtual IssmDouble TotalSmb(bool scaled)=0;
321 virtual void Update(int index, IoModel* iomodel,int analysis_counter,int analysis_type,int finite_element)=0;
322 virtual void UpdateConstraintsExtrudeFromBase(void)=0;
323 virtual void UpdateConstraintsExtrudeFromTop(void)=0;
324 virtual int UpdatePotentialUngrounding(IssmDouble* potential_sheet_ungrounding,Vector<IssmDouble>* vec_nodes_on_iceshelf,IssmDouble* nodes_on_iceshelf)=0;
325 virtual void ValueP1DerivativesOnGauss(IssmDouble* dvalue,IssmDouble* values,IssmDouble* xyz_list,Gauss* gauss)=0;
326 virtual void ValueP1OnGauss(IssmDouble* pvalue,IssmDouble* values,Gauss* gauss)=0;
327 virtual int VelocityInterpolation()=0;
328 virtual int VertexConnectivity(int vertexindex)=0;
329 virtual void VerticalSegmentIndices(int** pindices,int* pnumseg)=0;
330 virtual void VerticalSegmentIndicesBase(int** pindices,int* pnumseg)=0;
331 virtual void ViscousHeating(IssmDouble* pphi,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input,Input* vz_input)=0;
332 virtual void WriteFieldIsovalueSegment(DataSet* segments,int fieldenum,IssmDouble fieldvalue){_error_("not implemented yet");};
333
334 #ifdef _HAVE_GIAIVINS_
335 virtual void GiaDeflection(Vector<IssmDouble>* wg,Vector<IssmDouble>* dwgdt,IssmDouble* x,IssmDouble* y)=0;
336 #endif
337 #ifdef _HAVE_ESA_
338 virtual void EsaGeodetic2D(Vector<IssmDouble>* pUp,Vector<IssmDouble>* pNorth,Vector<IssmDouble>* pEast, Vector<IssmDouble>* pX, Vector<IssmDouble>* pY,IssmDouble* xx,IssmDouble* yy)=0;
339 virtual void EsaGeodetic3D(Vector<IssmDouble>* pUp,Vector<IssmDouble>* pNorth,Vector<IssmDouble>* pEast,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble* xx,IssmDouble* yy,IssmDouble* zz,IssmDouble eartharea)=0;
340 #endif
341 #ifdef _HAVE_SEALEVELRISE_
342 virtual IssmDouble GetArea3D(void)=0;
343 virtual IssmDouble GetAreaSpherical(void)=0;
344 virtual IssmDouble OceanAverage(IssmDouble* Sg)=0;
345 virtual IssmDouble OceanArea(void)=0;
346 virtual void SealevelriseMomentOfInertia(IssmDouble* dI_list,IssmDouble* Sg_old,IssmDouble eartharea)=0;
347 virtual void SealevelriseEustatic(Vector<IssmDouble>* pSgi,IssmDouble* peustatic,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble oceanarea,IssmDouble eartharea)=0;
348 virtual void SealevelriseNonEustatic(Vector<IssmDouble>* pSgo,IssmDouble* Sg_old,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble eartharea)=0;
349 virtual void SealevelriseGeodetic(Vector<IssmDouble>* pUp,Vector<IssmDouble>* pNorth,Vector<IssmDouble>* pEast,IssmDouble* Sg,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble* xx,IssmDouble* yy,IssmDouble* zz,IssmDouble eartharea,int horiz)=0;
350 #endif
351
352};
353#endif
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