[3683] | 1 | /*!\file: Element.h
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| 2 | * \brief abstract class for Element object
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[23366] | 3 | * This class is a place holder for the Tria and the Penta elements.
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[3683] | 4 | * It is derived from Element, so DataSets can contain them.
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[23524] | 5 | */
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[3683] | 6 |
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| 7 | #ifndef _ELEMENT_H_
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| 8 | #define _ELEMENT_H_
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| 9 |
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| 10 | /*Headers:*/
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[12365] | 11 | /*{{{*/
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[15067] | 12 | #include "../../datastructures/datastructures.h"
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[16789] | 13 | #include "../../toolkits/toolkits.h"
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[3683] | 14 | class DataSet;
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| 15 | class Parameters;
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[16912] | 16 | class Parameter;
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[14996] | 17 | class Elements;
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| 18 | class Loads;
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[16912] | 19 | class Nodes;
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[14996] | 20 | class Node;
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| 21 | class Vertices;
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[16912] | 22 | class Vertex;
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[14996] | 23 | class Materials;
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[16912] | 24 | class Material;
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[24335] | 25 | class Inputs2;
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[16912] | 26 | class Inputs;
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[24335] | 27 | class Input2;
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[16675] | 28 | class Input;
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[24335] | 29 | class ElementInput2;
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| 30 | class DatasetInput2;
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[23524] | 31 | class IoModel;
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[16675] | 32 | class Gauss;
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[16799] | 33 | class ElementVector;
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[13216] | 34 | template <class doublematrix> class Matrix;
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| 35 | template <class doubletype> class Vector;
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[16789] | 36 | class ElementMatrix;
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| 37 | class ElementVector;
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[3683] | 38 | /*}}}*/
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| 39 |
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[23524] | 40 | class Element: public Object{
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[3683] | 41 |
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[16910] | 42 | public:
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[17516] | 43 | int id;
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| 44 | int sid;
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[24335] | 45 | int lid;
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[16912] | 46 | Inputs *inputs;
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[24335] | 47 | Inputs2 *inputs2;
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[16912] | 48 | Node **nodes;
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| 49 | Vertex **vertices;
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| 50 | Material *material;
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| 51 | Parameters *parameters;
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[24335] | 52 | bool isonsurface;
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| 53 | bool isonbase;
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[16910] | 54 |
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[18078] | 55 | int* element_type_list;
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| 56 | int element_type;
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| 57 |
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[23366] | 58 | public:
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[16910] | 59 | /*Constructors/Destructores*/
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| 60 | Element();
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| 61 | ~Element();
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[13623] | 62 |
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[16910] | 63 | /*Functions*/
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[18913] | 64 | /*bool AllActive(void);*/
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| 65 | /*bool AnyActive(void);*/
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[20678] | 66 | void ComputeLambdaS(void);
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[18913] | 67 | void ComputeNewDamage();
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| 68 | void ComputeStrainRate();
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| 69 | void CoordinateSystemTransform(IssmDouble** ptransform,Node** nodes,int numnodes,int* cs_array);
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| 70 | void DeepEcho();
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| 71 | void DeleteInput(int input_enum);
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| 72 | void DeleteMaterials(void);
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[19237] | 73 | void Delta18oParameterization(void);
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| 74 | void Delta18opdParameterization(void);
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[23366] | 75 | void SmbGradCompParameterization(void);
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[18913] | 76 | IssmDouble Divergence(void);
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[24335] | 77 | void dViscositydBFS(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input,Input2* vz_input);
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| 78 | void dViscositydBHO(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 79 | void dViscositydBSSA(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 80 | void dViscositydDSSA(IssmDouble* pdmudB,int dim,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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[20810] | 81 | void Echo();
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[18913] | 82 | void FindParam(bool* pvalue,int paramenum);
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| 83 | void FindParam(int* pvalue,int paramenum);
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| 84 | void FindParam(IssmDouble* pvalue,int paramenum);
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[23644] | 85 | IssmDouble FindParam(int paramenum);
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[18913] | 86 | void FindParam(int** pvalues,int* psize,int paramenum);
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[22326] | 87 | IssmDouble FloatingArea(IssmDouble* mask, bool scaled);
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[18913] | 88 | void GetDofList(int** pdoflist,int approximation_enum,int setenum);
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| 89 | void GetDofListPressure(int** pdoflist,int setenum);
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| 90 | void GetDofListVelocity(int** pdoflist,int setenum);
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[23629] | 91 | void GetDofListLocal(int** pdoflist,int approximation_enum,int setenum);
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| 92 | void GetDofListLocalPressure(int** pdoflist,int setenum);
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| 93 | void GetDofListLocalVelocity(int** pdoflist,int setenum);
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[18913] | 94 | Input* GetInput(int inputenum);
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| 95 | void GetInputListOnNodes(IssmDouble* pvalue,int enumtype);
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| 96 | void GetInputListOnNodes(IssmDouble* pvalue,int enumtype,IssmDouble defaultvalue);
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| 97 | void GetInputListOnNodesVelocity(IssmDouble* pvalue,int enumtype);
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[24335] | 98 | void GetInputListOnVertices(IssmDouble* pvalue,ElementInput2* input);
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[18913] | 99 | void GetInputListOnVertices(IssmDouble* pvalue,int enumtype);
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[22955] | 100 | void GetInputListOnVerticesAtTime(IssmDouble* pvalue,int enumtype,IssmDouble time);
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[18913] | 101 | void GetInputListOnVertices(IssmDouble* pvalue,int enumtype,IssmDouble defaultvalue);
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| 102 | void GetInputLocalMinMaxOnNodes(IssmDouble* min,IssmDouble* max,IssmDouble* ug);
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| 103 | void GetInputValue(bool* pvalue,int enum_type);
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| 104 | void GetInputValue(int* pvalue,int enum_type);
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[24335] | 105 | void GetInput2Value(bool* pvalue,int enum_type);
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| 106 | void GetInput2Value(int* pvalue,int enum_type);
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[18913] | 107 | void GetInputValue(IssmDouble* pvalue,int enum_type);
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| 108 | void GetInputValue(IssmDouble* pvalue,Gauss* gauss,int enum_type);
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[24089] | 109 | Node* GetNode(int nodeindex);
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| 110 | int GetNodeIndex(Node* node);
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[18913] | 111 | void GetNodesLidList(int* lidlist);
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| 112 | void GetNodesSidList(int* sidlist);
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| 113 | void GetPhi(IssmDouble* phi, IssmDouble* epsilon, IssmDouble viscosity);
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[21886] | 114 | void GetSolutionFromInputsOneDof(Vector<IssmDouble>* solution,int solutionenum);
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[19094] | 115 | void GetVectorFromInputs(Vector<IssmDouble>* vector, int name_enum, int type);
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[22955] | 116 | void GetVectorFromInputs(Vector<IssmDouble>* vector, int name_enum, int type,IssmDouble time);
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[23992] | 117 | void GetVerticesLidList(int* lidlist);
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| 118 | void GetVerticesPidList(int* pidlist);
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[18913] | 119 | void GetVerticesConnectivityList(int* connectivitylist);
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| 120 | void GetVerticesCoordinates(IssmDouble** xyz_list);
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| 121 | void GetVerticesSidList(int* sidlist);
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| 122 | IssmDouble GetXcoord(IssmDouble* xyz_list,Gauss* gauss);
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| 123 | IssmDouble GetYcoord(IssmDouble* xyz_list,Gauss* gauss);
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| 124 | IssmDouble GetZcoord(IssmDouble* xyz_list,Gauss* gauss);
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[22828] | 125 | void GradientIndexing(int* indexing,int control_index);
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[22326] | 126 | IssmDouble GroundedArea(IssmDouble* mask, bool scaled);
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[18913] | 127 | bool HasNodeOnBase();
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| 128 | bool HasNodeOnSurface();
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[22326] | 129 | IssmDouble IceMass(bool scaled);
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| 130 | IssmDouble IceMass(IssmDouble* mask, bool scaled);
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| 131 | IssmDouble IceVolume(IssmDouble* mask, bool scaled);
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| 132 | IssmDouble IceVolumeAboveFloatation(IssmDouble* mask, bool scaled);
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[18913] | 133 | int Id();
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[24335] | 134 | void InputCreate(IssmDouble* vector,Inputs2* inputs2,IoModel* iomodel,int M,int N,int vector_type,int vector_enum,int code);
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| 135 | void ControlInputCreate(IssmDouble* doublearray,IssmDouble* independents_min,IssmDouble* independents_max,Inputs2*inputs2,IoModel* iomodel,int M,int N,IssmDouble scale,int input_enum,int id);
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| 136 | void DatasetInputAdd(int enum_type,IssmDouble* vector,Inputs2* inputs2,IoModel* iomodel,int M,int N,int vector_type,int vector_enum,int code,int input_enum);
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[18913] | 137 | void InputUpdateFromConstant(IssmDouble constant, int name);
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| 138 | void InputUpdateFromConstant(int constant, int name);
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| 139 | void InputUpdateFromConstant(bool constant, int name);
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[23524] | 140 |
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[23366] | 141 | bool IsFloating();
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[23990] | 142 | bool IsGrounded();
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[24335] | 143 | bool IsOnBase();
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| 144 | bool IsOnSurface();
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[18913] | 145 | bool IsIceInElement();
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[24359] | 146 | bool IsIceOnlyInElement();
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[20810] | 147 | bool IsLandInElement();
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[24010] | 148 | void Ismip6FloatingiceMeltingRate();
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[19984] | 149 | bool IsWaterInElement();
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[23366] | 150 | void LinearFloatingiceMeltingRate();
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| 151 | void SpatialLinearFloatingiceMeltingRate();
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| 152 | void MantlePlumeGeothermalFlux();
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[19395] | 153 | void MarshallElement(char** pmarshalled_data,int* pmarshalled_data_size, int marshall_direction,int numanalyses);
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[18913] | 154 | void MigrateGroundingLine(IssmDouble* sheet_ungrounding);
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[23366] | 155 | void MismipFloatingiceMeltingRate();
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[24145] | 156 | void BeckmannGoosseFloatingiceMeltingRate();
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[20810] | 157 | void MungsmtpParameterization(void);
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[18913] | 158 | ElementMatrix* NewElementMatrix(int approximation_enum=NoneApproximationEnum);
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| 159 | ElementMatrix* NewElementMatrixCoupling(int number_nodes,int approximation_enum=NoneApproximationEnum);
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| 160 | ElementVector* NewElementVector(int approximation_enum=NoneApproximationEnum);
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[24145] | 161 | void PicoUpdateBoxid(int* pmax_boxid_basin);
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[24010] | 162 | void PicoUpdateBox(int loopboxid);
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| 163 | void PicoComputeBasalMelt();
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[22448] | 164 | void PositiveDegreeDay(IssmDouble* pdds,IssmDouble* pds,IssmDouble signorm,bool ismungsm,bool issetpddfac);
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[23317] | 165 | void PositiveDegreeDaySicopolis(bool isfirnwarming);
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[19554] | 166 | void ResultInterpolation(int* pinterpolation,int*nodesperelement,int* parray_size, int output_enum);
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[18913] | 167 | void ResultToPatch(IssmDouble* values,int nodesperelement,int output_enum);
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[19554] | 168 | void ResultToMatrix(IssmDouble* values,int ncols,int output_enum);
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[18913] | 169 | void ResultToVector(Vector<IssmDouble>* vector,int output_enum);
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| 170 | void SetwiseNodeConnectivity(int* d_nz,int* o_nz,Node* node,bool* flags,int* flagsindices,int set1_enum,int set2_enum);
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[24335] | 171 | void SetBoolInput(Inputs2* inputs2,int enum_in,bool value);
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| 172 |
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| 173 | void SetIntInput(Inputs2* inputs2,int enum_in,int value);
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[23540] | 174 | void SmbSemic();
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[18913] | 175 | int Sid();
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[19554] | 176 | void SmbGemb();
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[21620] | 177 | void StrainRateESA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
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[18913] | 178 | void StrainRateFS(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input,Input* vz_input);
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| 179 | void StrainRateHO(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
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| 180 | void StrainRateHO2dvertical(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
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| 181 | void StrainRateSSA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input,Input* vy_input);
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| 182 | void StrainRateSSA1d(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input* vx_input);
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[24335] | 183 | void StrainRateESA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 184 | void StrainRateFS(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input,Input2* vz_input);
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| 185 | void StrainRateHO(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 186 | void StrainRateHO2dvertical(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 187 | void StrainRateSSA(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input);
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| 188 | void StrainRateSSA1d(IssmDouble* epsilon,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input);
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[18913] | 189 | void StressMaxPrincipalCreateInput(void);
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[22326] | 190 | IssmDouble TotalFloatingBmb(IssmDouble* mask, bool scaled);
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| 191 | IssmDouble TotalGroundedBmb(IssmDouble* mask, bool scaled);
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| 192 | IssmDouble TotalSmb(IssmDouble* mask, bool scaled);
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[18913] | 193 | void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,int cs_enum);
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| 194 | void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int cs_enum);
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| 195 | void TransformInvStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int* cs_array);
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| 196 | void TransformLoadVectorCoord(ElementVector* pe,int cs_enum);
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| 197 | void TransformLoadVectorCoord(ElementVector* pe,int* cs_array);
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| 198 | void TransformLoadVectorCoord(ElementVector* pe,Node** nodes,int numnodes,int cs_enum);
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| 199 | void TransformLoadVectorCoord(ElementVector* pe,Node** nodes,int numnodes,int* cs_array);
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| 200 | void TransformLoadVectorCoord(ElementVector* pe,int numnodes,int transformenum){_error_("not implemented yet");};/*Tiling only*/
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| 201 | void TransformLoadVectorCoord(ElementVector* pe,int numnodes,int* transformenum_list){_error_("not implemented yet");};/*Tiling only*/
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| 202 | void TransformSolutionCoord(IssmDouble* solution,int cs_enum);
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| 203 | void TransformSolutionCoord(IssmDouble* solution,int* cs_array);
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| 204 | void TransformSolutionCoord(IssmDouble* solution,int numnodes,int cs_enum);
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| 205 | void TransformSolutionCoord(IssmDouble* solution,int numnodes,int* cs_array);
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| 206 | void TransformSolutionCoord(IssmDouble* solution,Node** nodes,int numnodes,int cs_enum);
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| 207 | void TransformSolutionCoord(IssmDouble* solution,Node** nodes,int numnodes,int* cs_array);
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| 208 | void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int cs_enum);
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| 209 | void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int* cs_array);
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| 210 | void TransformStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int cs_enum);
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| 211 | void TransformStiffnessMatrixCoord(ElementMatrix* Ke,Node** nodes,int numnodes,int* cs_array);
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| 212 | void TransformStiffnessMatrixCoord(ElementMatrix* Ke,int numnodes,int* transformenum_list){_error_("not implemented yet");};/*Tiling only*/
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| 213 | void ViscousHeatingCreateInput(void);
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[23644] | 214 | void ThermalToEnthalpy(IssmDouble * penthalpy,IssmDouble temperature,IssmDouble waterfraction,IssmDouble pressure);
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| 215 | IssmDouble TMeltingPoint(IssmDouble pressure);
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| 216 | void EnthalpyToThermal(IssmDouble* ptemperature,IssmDouble* pwaterfraction,IssmDouble enthalpy,IssmDouble pressure);
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| 217 | IssmDouble EnthalpyDiffusionParameter(IssmDouble enthalpy,IssmDouble pressure);
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| 218 | IssmDouble EnthalpyDiffusionParameterVolume(int numvertices,IssmDouble* enthalpy,IssmDouble* pressure);
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| 219 | IssmDouble PureIceEnthalpy(IssmDouble pressure);
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[13623] | 220 |
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[23524] | 221 |
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[16910] | 222 | /*Virtual functions*/
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[24335] | 223 | virtual void AddBasalInput2(int input_enum, IssmDouble* values, int interpolation_enum){_error_("not implemented");};
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| 224 | virtual void AddInput2(int input_enum, IssmDouble* values, int interpolation_enum){_error_("not implemented");};
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| 225 | virtual void AddControlInput(int input_enum,Inputs2* inputs2,IoModel* iomodel,IssmDouble* values,IssmDouble* values_min,IssmDouble* values_max, int interpolation_enum,int id){_error_("not supported yet");};
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| 226 | virtual void DatasetInputCreate(IssmDouble* array,int M,int N,int* individual_enums,int num_inputs,Inputs2* inputs2,IoModel* iomodel,int input_enum){_error_("not supported");};
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[18913] | 227 | virtual void AverageOntoPartition(Vector<IssmDouble>* partition_contributions,Vector<IssmDouble>* partition_areas,IssmDouble* vertex_response,IssmDouble* qmu_part)=0;
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[21721] | 228 | virtual void BasalNodeIndices(int* pnumindices,int** pindices,int finiteelement){_error_("not implemented yet");};
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[22192] | 229 | virtual void CalvingRateVonmises(void){_error_("not implemented yet");};
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[22181] | 230 | virtual void CalvingCrevasseDepth(void){_error_("not implemented yet");};
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[18913] | 231 | virtual void CalvingRateLevermann(void)=0;
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[24048] | 232 | virtual void CalvingFluxLevelset(void){_error_("not implemented yet");};
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[24049] | 233 | virtual void CalvingMeltingFluxLevelset(void){_error_("not implemented yet");};
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[16832] | 234 | virtual IssmDouble CharacteristicLength(void)=0;
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[24020] | 235 | virtual void ComputeBasalStress(void){_error_("not implemented yet");};
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[18913] | 236 | virtual void ComputeDeviatoricStressTensor(void)=0;
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| 237 | virtual void ComputeSigmaNN(void)=0;
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| 238 | virtual void ComputeStressTensor(void)=0;
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[21620] | 239 | virtual void ComputeEsaStrainAndVorticity(void)=0;
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[24335] | 240 | virtual void Configure(Elements* elements,Loads* loads,Nodes* nodes,Vertices* vertices,Materials* materials,Parameters* parameters,Inputs2* inputs2in)=0;
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[22739] | 241 | virtual void ControlInputSetGradient(IssmDouble* gradient,int enum_type,int control_index,int offset,int N,int M)=0;
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[18913] | 242 | virtual void ControlInputSetGradient(IssmDouble* gradient,int enum_type,int control_index)=0;
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| 243 | virtual void ControlToVectors(Vector<IssmPDouble>* vector_control, Vector<IssmPDouble>* vector_gradient,int control_enum)=0;
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[23053] | 244 | virtual void CreateDistanceInputFromSegmentlist(IssmDouble* distances,int distanceenum){_error_("not implemented yet");};
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[24351] | 245 | virtual void CreateInputTimeAverage(int transientinput_enum,int averagedinput_enum,IssmDouble init_time,IssmDouble end_time){_error_("not implemented yet "<<this->ObjectEnum());};
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[18913] | 246 | virtual void ElementResponse(IssmDouble* presponse,int response_enum)=0;
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| 247 | virtual void ElementSizes(IssmDouble* phx,IssmDouble* phy,IssmDouble* phz)=0;
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| 248 | virtual int FiniteElement(void)=0;
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[22326] | 249 | virtual IssmDouble FloatingArea(bool scaled)=0;
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[23035] | 250 | virtual void FSContactMigration(Vector<IssmDouble>* vertex_sigmann,Vector<IssmDouble>* vertex_waterpressure)=0;
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[18913] | 251 | virtual Element* GetBasalElement(void)=0;
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| 252 | virtual int GetElementType(void)=0;
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[22625] | 253 | virtual IssmDouble GetHorizontalSurfaceArea(void){_error_("not implemented");};
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[18913] | 254 | virtual void GetGroundedPart(int* point1,IssmDouble* fraction1,IssmDouble* fraction2, bool* mainlyfloating)=0;
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| 255 | virtual IssmDouble GetGroundedPortion(IssmDouble* xyz_list)=0;
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[23652] | 256 | virtual IssmDouble GetIcefrontArea(){_error_("not implemented");};
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[18913] | 257 | virtual void GetIcefrontCoordinates(IssmDouble** pxyz_front,IssmDouble* xyz_list,int levelsetenum)=0;
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[24335] | 258 | virtual DatasetInput2* GetDatasetInput2(int inputenum){_error_("not implemented");};
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| 259 | virtual Input2* GetInput2(int inputenum)=0;
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| 260 | virtual Input2* GetInput2(int inputenum,IssmDouble time)=0;
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[24089] | 261 | virtual void GetInputValue(IssmDouble* pvalue,Vertex* vertex,int enumtype){_error_("not implemented yet");};
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| 262 | virtual void GetInputValue(IssmDouble* pvalue,Node* node,int enumtype){_error_("not implemented yet");};
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[18913] | 263 | virtual void GetLevelCoordinates(IssmDouble** pxyz_front,IssmDouble* xyz_list,int levelsetenum,IssmDouble level)=0;
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| 264 | virtual void GetLevelsetPositivePart(int* point1,IssmDouble* fraction1,IssmDouble* fraction2, bool* mainlynegative,IssmDouble* levelsetvalues)=0;
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[24089] | 265 | virtual int GetVertexIndex(Vertex* vertex){_error_("not implemented");};;
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[18913] | 266 | virtual int GetNumberOfNodes(void)=0;
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| 267 | virtual int GetNumberOfNodes(int enum_type)=0;
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| 268 | virtual int GetNumberOfVertices(void)=0;
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[22828] | 269 | virtual void GetVectorFromControlInputs(Vector<IssmDouble>* gradient,int control_enum,int control_index,const char* data,int offset)=0;
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| 270 | virtual void GetVectorFromControlInputs(Vector<IssmDouble>* gradient,int control_enum,int control_index,const char* data)=0;
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[18913] | 271 | virtual void GetVerticesCoordinatesBase(IssmDouble** xyz_list)=0;
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| 272 | virtual void GetVerticesCoordinatesTop(IssmDouble** xyz_list)=0;
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[22326] | 273 | virtual IssmDouble GroundedArea(bool scaled)=0;
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| 274 | virtual IssmDouble IceVolume(bool scaled)=0;
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| 275 | virtual IssmDouble IceVolumeAboveFloatation(bool scaled)=0;
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[23885] | 276 | virtual IssmDouble IcefrontMassFlux(bool scaled){_error_("not implemented");};
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[23900] | 277 | virtual IssmDouble IcefrontMassFluxLevelset(bool scaled){_error_("not implemented");};
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[23888] | 278 | virtual IssmDouble GroundinglineMassFlux(bool scaled){_error_("not implemented");};
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[18913] | 279 | virtual void InputDepthAverageAtBase(int enum_type,int average_enum_type)=0;
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[24335] | 280 | virtual void DatasetInputExtrude(int input_enum,int start){_error_("not implemented yet");};
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[18913] | 281 | virtual void InputExtrude(int input_enum,int start)=0;
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| 282 | virtual void InputUpdateFromSolutionOneDofCollapsed(IssmDouble* solution,int inputenum)=0;
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| 283 | virtual void InputUpdateFromSolutionOneDof(IssmDouble* solution,int inputenum)=0;
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[23524] | 284 | #ifdef _HAVE_DAKOTA_
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| 285 | virtual void InputUpdateFromMatrixDakota(IssmDouble* matrix, int rows, int ncols, int name, int type)=0;
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| 286 | virtual void InputUpdateFromVectorDakota(IssmDouble* vector, int name, int type)=0;
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| 287 | #endif
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| 288 | virtual void InputUpdateFromIoModel(int index, IoModel* iomodel)=0;
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| 289 | virtual void InputUpdateFromVector(IssmDouble* vector, int name, int type)=0;
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[18913] | 290 | virtual bool IsFaceOnBoundary(void)=0;
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| 291 | virtual bool IsIcefront(void)=0;
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[23366] | 292 | virtual bool IsNodeOnShelfFromFlags(IssmDouble* flags)=0;
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[24335] | 293 |
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[18913] | 294 | virtual bool IsZeroLevelset(int levelset_enum)=0;
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| 295 | virtual void JacobianDeterminant(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
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| 296 | virtual void JacobianDeterminantBase(IssmDouble* Jdet,IssmDouble* xyz_list_base,Gauss* gauss)=0;
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| 297 | virtual void JacobianDeterminantLine(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
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| 298 | virtual void JacobianDeterminantSurface(IssmDouble* Jdet, IssmDouble* xyz_list,Gauss* gauss)=0;
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| 299 | virtual void JacobianDeterminantTop(IssmDouble* Jdet,IssmDouble* xyz_list_base,Gauss* gauss)=0;
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[19395] | 300 | virtual void Marshall(char** pmarshalled_data,int* pmarshalled_data_size, int marshall_direction)=0;
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[18913] | 301 | virtual IssmDouble Masscon(IssmDouble* levelset)=0;
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| 302 | virtual IssmDouble MassFlux(IssmDouble* segment)=0;
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| 303 | virtual IssmDouble MassFlux(IssmDouble x1,IssmDouble y1, IssmDouble x2, IssmDouble y2,int segment_id)=0;
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| 304 | virtual IssmDouble MinEdgeLength(IssmDouble* xyz_list)=0;
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| 305 | virtual IssmDouble Misfit(int modelenum,int observationenum,int weightsenum)=0;
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| 306 | virtual IssmDouble MisfitArea(int weightsenum)=0;
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| 307 | virtual Gauss* NewGauss(void)=0;
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| 308 | virtual Gauss* NewGauss(int order)=0;
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[24335] | 309 | virtual Gauss* NewGauss(IssmDouble* xyz_list, IssmDouble* xyz_list_front,int order)=0;
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| 310 | virtual Gauss* NewGauss(IssmDouble* xyz_list, IssmDouble* xyz_list_front,int order_horiz,int order_vert)=0;
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| 311 | virtual Gauss* NewGauss(int point1,IssmDouble fraction1,IssmDouble fraction2,bool mainlyfloating,int order)=0;
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| 312 | virtual Gauss* NewGauss(int point1,IssmDouble fraction1,IssmDouble fraction2,int order)=0;
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[18913] | 313 | virtual Gauss* NewGaussBase(int order)=0;
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| 314 | virtual Gauss* NewGaussLine(int vertex1,int vertex2,int order)=0;
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| 315 | virtual Gauss* NewGaussTop(int order)=0;
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| 316 | virtual void NodalFunctions(IssmDouble* basis,Gauss* gauss)=0;
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| 317 | virtual void NodalFunctionsDerivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
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| 318 | virtual void NodalFunctionsDerivativesVelocity(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
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| 319 | virtual void NodalFunctionsMINIDerivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
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| 320 | virtual void NodalFunctionsPressure(IssmDouble* basis, Gauss* gauss)=0;
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| 321 | virtual void NodalFunctionsP1(IssmDouble* basis,Gauss* gauss)=0;
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| 322 | virtual void NodalFunctionsP1Derivatives(IssmDouble* dbasis,IssmDouble* xyz_list,Gauss* gauss)=0;
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| 323 | virtual void NodalFunctionsP2(IssmDouble* basis,Gauss* gauss)=0;
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| 324 | virtual void NodalFunctionsVelocity(IssmDouble* basis, Gauss* gauss)=0;
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| 325 | virtual void NodalFunctionsTensor(IssmDouble* basis, Gauss* gauss)=0;
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| 326 | virtual int NodalValue(IssmDouble* pvalue, int index, int natureofdataenum)=0;
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| 327 | virtual void NormalBase(IssmDouble* normal,IssmDouble* xyz_list)=0;
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| 328 | virtual void NormalSection(IssmDouble* normal,IssmDouble* xyz_list)=0;
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| 329 | virtual void NormalTop(IssmDouble* normal,IssmDouble* xyz_list)=0;
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| 330 | virtual int NumberofNodesPressure(void)=0;
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| 331 | virtual int NumberofNodesVelocity(void)=0;
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| 332 | virtual void PotentialUngrounding(Vector<IssmDouble>* potential_sheet_ungrounding)=0;
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| 333 | virtual int PressureInterpolation()=0;
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| 334 | virtual void ReduceMatrices(ElementMatrix* Ke,ElementVector* pe)=0;
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| 335 | virtual void ResetFSBasalBoundaryCondition()=0;
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| 336 | virtual void ResetHooks()=0;
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[23652] | 337 | virtual void RignotMeltParameterization(void){_error_("not implemented yet");};
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[24335] | 338 | virtual void SetElementInput(int enum_in,IssmDouble values){_error_("not implemented yet");};
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| 339 | virtual void SetElementInput(Inputs2* inputs2,int enum_in,IssmDouble values){_error_("not implemented yet");};
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| 340 | virtual void SetElementInput(Inputs2* inputs2,int numindices,int* indices,IssmDouble* values,int enum_in){_error_("not implemented yet");};
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[22739] | 341 | virtual void SetControlInputsFromVector(IssmDouble* vector,int control_enum,int control_index,int offset,int N,int M)=0;
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[18913] | 342 | virtual void SetControlInputsFromVector(IssmDouble* vector,int control_enum,int control_index)=0;
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[16912] | 343 | virtual void SetCurrentConfiguration(Elements* elements,Loads* loads,Nodes* nodes,Materials* materials,Parameters* parameters)=0;
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[18913] | 344 | virtual void SetTemporaryElementType(int element_type_in)=0;
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[16721] | 345 | virtual Element* SpawnBasalElement(void)=0;
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[17172] | 346 | virtual Element* SpawnTopElement(void)=0;
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[16810] | 347 | virtual IssmDouble StabilizationParameter(IssmDouble u, IssmDouble v, IssmDouble w, IssmDouble diameter, IssmDouble kappa)=0;
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[24137] | 348 | virtual void StabilizationParameterAnisotropic(IssmDouble* tau_parameter_anisotropic, IssmDouble u, IssmDouble v, IssmDouble w, IssmDouble hx, IssmDouble hy, IssmDouble hz, IssmDouble kappa)=0;
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[18913] | 349 | virtual void StrainRateparallel(void)=0;
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| 350 | virtual void StrainRateperpendicular(void)=0;
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| 351 | virtual void StressIntensityFactor(void)=0;
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| 352 | virtual IssmDouble SurfaceArea(void)=0;
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| 353 | virtual int TensorInterpolation()=0;
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| 354 | virtual IssmDouble TimeAdapt()=0;
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[23991] | 355 | virtual IssmDouble TotalCalvingFluxLevelset(bool scaled){_error_("not implemented");};
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[24049] | 356 | virtual IssmDouble TotalCalvingMeltingFluxLevelset(bool scaled){_error_("not implemented");};
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[22326] | 357 | virtual IssmDouble TotalFloatingBmb(bool scaled)=0;
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| 358 | virtual IssmDouble TotalGroundedBmb(bool scaled)=0;
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| 359 | virtual IssmDouble TotalSmb(bool scaled)=0;
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[24335] | 360 | virtual void Update(Inputs2* inputs2,int index, IoModel* iomodel,int analysis_counter,int analysis_type,int finite_element)=0;
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[18913] | 361 | virtual void UpdateConstraintsExtrudeFromBase(void)=0;
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| 362 | virtual void UpdateConstraintsExtrudeFromTop(void)=0;
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| 363 | virtual int UpdatePotentialUngrounding(IssmDouble* potential_sheet_ungrounding,Vector<IssmDouble>* vec_nodes_on_iceshelf,IssmDouble* nodes_on_iceshelf)=0;
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| 364 | virtual void ValueP1DerivativesOnGauss(IssmDouble* dvalue,IssmDouble* values,IssmDouble* xyz_list,Gauss* gauss)=0;
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| 365 | virtual void ValueP1OnGauss(IssmDouble* pvalue,IssmDouble* values,Gauss* gauss)=0;
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| 366 | virtual int VelocityInterpolation()=0;
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| 367 | virtual int VertexConnectivity(int vertexindex)=0;
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| 368 | virtual void VerticalSegmentIndices(int** pindices,int* pnumseg)=0;
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[21714] | 369 | virtual void VerticalSegmentIndicesBase(int** pindices,int* pnumseg)=0;
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[24335] | 370 | virtual void ViscousHeating(IssmDouble* pphi,IssmDouble* xyz_list,Gauss* gauss,Input2* vx_input,Input2* vy_input,Input2* vz_input){_error_("not implemented yet");};
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[22379] | 371 | virtual void WriteFieldIsovalueSegment(DataSet* segments,int fieldenum,IssmDouble fieldvalue){_error_("not implemented yet");};
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[4055] | 372 |
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[21583] | 373 | #ifdef _HAVE_GIAIVINS_
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[21578] | 374 | virtual void GiaDeflection(Vector<IssmDouble>* wg,Vector<IssmDouble>* dwgdt,IssmDouble* x,IssmDouble* y)=0;
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[14589] | 375 | #endif
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[21261] | 376 | #ifdef _HAVE_ESA_
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[22349] | 377 | virtual void EsaGeodetic2D(Vector<IssmDouble>* pUp,Vector<IssmDouble>* pNorth,Vector<IssmDouble>* pEast, Vector<IssmDouble>* pX, Vector<IssmDouble>* pY,IssmDouble* xx,IssmDouble* yy)=0;
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[21272] | 378 | 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;
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[21261] | 379 | #endif
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[19984] | 380 | #ifdef _HAVE_SEALEVELRISE_
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[20810] | 381 | virtual IssmDouble GetArea3D(void)=0;
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[20871] | 382 | virtual IssmDouble GetAreaSpherical(void)=0;
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[20810] | 383 | virtual IssmDouble OceanAverage(IssmDouble* Sg)=0;
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| 384 | virtual IssmDouble OceanArea(void)=0;
|
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[23366] | 385 | virtual void SealevelriseMomentOfInertia(IssmDouble* dI_list,IssmDouble* Sg_old,IssmDouble eartharea)=0;
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[20007] | 386 | virtual void SealevelriseEustatic(Vector<IssmDouble>* pSgi,IssmDouble* peustatic,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble oceanarea,IssmDouble eartharea)=0;
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[21295] | 387 | virtual void SealevelriseNonEustatic(Vector<IssmDouble>* pSgo,IssmDouble* Sg_old,IssmDouble* latitude,IssmDouble* longitude,IssmDouble* radius,IssmDouble eartharea)=0;
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[22955] | 388 | 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;
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[19984] | 389 | #endif
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| 390 |
|
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[3683] | 391 | };
|
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| 392 | #endif
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