Fesapi 2.9.0.1
This project provides C++ classes which allow an easy access in import and export to the Energistics standards.
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AbstractGridRepresentation.h
1/*-----------------------------------------------------------------------
2Licensed to the Apache Software Foundation (ASF) under one
3or more contributor license agreements. See the NOTICE file
4distributed with this work for additional information
5regarding copyright ownership. The ASF licenses this file
6to you under the Apache License, Version 2.0 (the
7"License"; you may not use this file except in compliance
8with the License. You may obtain a copy of the License at
9
10 http://www.apache.org/licenses/LICENSE-2.0
11
12Unless required by applicable law or agreed to in writing,
13software distributed under the License is distributed on an
14"AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
15KIND, either express or implied. See the License for the
16specific language governing permissions and limitations
17under the License.
18-----------------------------------------------------------------------*/
19#pragma once
20
21#include "AbstractRepresentation.h"
22
23namespace RESQML2_NS
24{
27 {
28 private:
29
34 gsoap_resqml2_0_1::resqml20__Regrid* createRegrid2_0_1(unsigned int indexRegridStart, unsigned int * childCellCountPerInterval, unsigned int * parentCellCountPerInterval, uint64_t intervalCount, double * childCellWeights,
35 const std::string & dimension, EML2_NS::AbstractHdfProxy * proxy, bool forceConstantCellCountPerInterval = false);
36 gsoap_eml2_3::resqml22__Regrid* createRegrid2_2(unsigned int indexRegridStart, unsigned int * childCellCountPerInterval, unsigned int * parentCellCountPerInterval, uint64_t intervalCount, double * childCellWeights,
37 const std::string & dimension, EML2_NS::AbstractHdfProxy * proxy, bool forceConstantCellCountPerInterval = false);
38
39 /*
40 * @param dimension It must be either 'i', 'j' ou 'k' (upper or lower case) for an ijk parent grid. 'k' for a strict column layer parent grid.
41 * @param childVsParentCellCount If true return the child cell count per interval. If false return the parent cell count per interval.
42 */
43 gsoap_resqml2_0_1::resqml20__AbstractIntegerArray* getCellCountPerInterval2_0_1(char dimension, bool childVsParentCellCount) const;
44 gsoap_eml2_3::eml23__AbstractIntegerArray* getCellCountPerInterval2_2(char dimension, bool childVsParentCellCount) const;
45
51 gsoap_resqml2_0_1::resqml20__AbstractParentWindow* getParentWindow2_0_1() const;
52 gsoap_eml2_3::resqml22__AbstractParentWindow* getParentWindow2_2() const;
53
54 protected:
55
62 AbstractGridRepresentation(gsoap_resqml2_0_1::eml20__DataObjectReference* partialObject, bool withTruncatedPillars) :AbstractRepresentation(partialObject), withTruncatedPillars(withTruncatedPillars) {}
63
69 AbstractGridRepresentation(bool withTruncatedPillars) : withTruncatedPillars(withTruncatedPillars){}
70
77 AbstractGridRepresentation(gsoap_resqml2_0_1::resqml20__AbstractGridRepresentation* fromGsoap, bool withTruncatedPillars) : AbstractRepresentation(fromGsoap), withTruncatedPillars(withTruncatedPillars) {}
78 AbstractGridRepresentation(gsoap_eml2_3::resqml22__AbstractGridRepresentation* fromGsoap, bool withTruncatedPillars) : AbstractRepresentation(fromGsoap), withTruncatedPillars(withTruncatedPillars) {}
79
80 public:
81
83 virtual ~AbstractGridRepresentation() = default;
84
93 DLL_IMPORT_OR_EXPORT virtual uint64_t getCellCount() const = 0;
94
95 //************************************************************
96 //****************** GRID CONNECTION SET *********************
97 //************************************************************
98
104 DLL_IMPORT_OR_EXPORT std::vector<class GridConnectionSetRepresentation*> getGridConnectionSetRepresentationSet() const;
105
114 DLL_IMPORT_OR_EXPORT uint64_t getGridConnectionSetRepresentationCount() const; // It is mainly used in SWIG context for parsing the vector from a non C++ language.
115
125 DLL_IMPORT_OR_EXPORT class GridConnectionSetRepresentation * getGridConnectionSetRepresentation(uint64_t index) const; // It is mainly used in SWIG context for parsing the vector from a non C++ language.
126
127
128 //************************************************************
129 //******************** GRID PARENTAGE ************************
130 //************************************************************
131
141 DLL_IMPORT_OR_EXPORT AbstractGridRepresentation* getParentGrid() const;
142
153 COMMON_NS::DataObjectReference getParentGridDor() const;
154
160 DLL_IMPORT_OR_EXPORT std::vector<RESQML2_NS::AbstractGridRepresentation *> getChildGridSet() const;
161
170 DLL_IMPORT_OR_EXPORT uint64_t getChildGridCount() const;
171
181 DLL_IMPORT_OR_EXPORT AbstractGridRepresentation * getChildGrid(uint64_t index) const;
182
203 DLL_IMPORT_OR_EXPORT void setParentWindow(uint64_t* cellIndices, uint64_t cellIndexCount, class UnstructuredGridRepresentation* parentGrid, EML2_NS::AbstractHdfProxy* proxy = nullptr);
204
248 DLL_IMPORT_OR_EXPORT void setParentWindow(unsigned int * columnIndices, uint64_t columnIndexCount,
249 unsigned int kLayerIndexRegridStart,
250 unsigned int * childCellCountPerInterval, unsigned int * parentCellCountPerInterval, unsigned int intervalCount,
252 EML2_NS::AbstractHdfProxy * proxy = nullptr, double * childCellWeights = nullptr);
253
328 DLL_IMPORT_OR_EXPORT void setParentWindow(
329 unsigned int iCellIndexRegridStart, unsigned int * childCellCountPerIInterval, unsigned int * parentCellCountPerIInterval, unsigned int iIntervalCount,
330 unsigned int jCellIndexRegridStart, unsigned int * childCellCountPerJInterval, unsigned int * parentCellCountPerJInterval, unsigned int jIntervalCount,
331 unsigned int kCellIndexRegridStart, unsigned int * childCellCountPerKInterval, unsigned int * parentCellCountPerKInterval, unsigned int kIntervalCount,
332 class AbstractIjkGridRepresentation* parentGrid, EML2_NS::AbstractHdfProxy * proxy = nullptr, double * iChildCellWeights = nullptr, double * jChildCellWeights = nullptr, double * kChildCellWeights = nullptr);
333
424 DLL_IMPORT_OR_EXPORT void setParentWindow(
425 unsigned int iCellIndexRegridStart, unsigned int constantChildCellCountPerIInterval, unsigned int constantParentCellCountPerIInterval, unsigned int iIntervalCount,
426 unsigned int jCellIndexRegridStart, unsigned int constantChildCellCountPerJInterval, unsigned int constantParentCellCountPerJInterval, unsigned int jIntervalCount,
427 unsigned int kCellIndexRegridStart, unsigned int constantChildCellCountPerKInterval, unsigned int constantParentCellCountPerKInterval, unsigned int kIntervalCount,
428 class AbstractIjkGridRepresentation* parentGrid, EML2_NS::AbstractHdfProxy * proxy = nullptr, double * iChildCellWeights = nullptr, double * jChildCellWeights = nullptr, double * kChildCellWeights = nullptr);
429
486 DLL_IMPORT_OR_EXPORT void setParentWindow(
487 unsigned int iCellIndexRegridStart, unsigned int iChildCellCount, unsigned int iParentCellCount,
488 unsigned int jCellIndexRegridStart, unsigned int jChildCellCount, unsigned int jParentCellCount,
489 unsigned int kCellIndexRegridStart, unsigned int kChildCellCount, unsigned int kParentCellCount,
490 class AbstractIjkGridRepresentation* parentGrid, EML2_NS::AbstractHdfProxy * proxy = nullptr, double * iChildCellWeights = nullptr, double * jChildCellWeights = nullptr, double * kChildCellWeights = nullptr);
491
508 DLL_IMPORT_OR_EXPORT void setForcedNonRegridedParentCell(uint64_t* cellIndices, uint64_t cellIndexCount);
509
535 DLL_IMPORT_OR_EXPORT void setCellOverlap(uint64_t parentChildCellPairCount, uint64_t* parentChildCellPair,
536 const std::string& volumeUom, double* overlapVolumes = nullptr);
537
550 DLL_IMPORT_OR_EXPORT int64_t getParentCellIndexCount() const;
551
566 DLL_IMPORT_OR_EXPORT void getParentCellIndices(uint64_t * parentCellIndices) const;
567
580 DLL_IMPORT_OR_EXPORT int64_t getParentColumnIndexCount() const;
581
596 DLL_IMPORT_OR_EXPORT void getParentColumnIndices(uint64_t * parentColumnIndices) const;
597
617 DLL_IMPORT_OR_EXPORT uint64_t getRegridStartIndexOnParentGrid(char dimension) const;
618
639 DLL_IMPORT_OR_EXPORT uint64_t getRegridIntervalCount(char dimension) const;
640
668 DLL_IMPORT_OR_EXPORT bool isRegridCellCountPerIntervalConstant(char dimension, bool childVsParentCellCount) const;
669
698 DLL_IMPORT_OR_EXPORT uint64_t getRegridConstantCellCountPerInterval(char dimension, bool childVsParentCellCount) const;
699
730 DLL_IMPORT_OR_EXPORT void getRegridCellCountPerInterval(char dimension, uint64_t* childCellCountPerInterval, bool childVsParentCellCount) const;
731
754 DLL_IMPORT_OR_EXPORT bool hasRegridChildCellWeights(char dimension) const;
755
782 DLL_IMPORT_OR_EXPORT void getRegridChildCellWeights(char dimension, double* childCellWeights) const;
783
794 DLL_IMPORT_OR_EXPORT bool hasForcedNonRegridedParentCell() const;
795
796 //************************************************************
797 //**************** LINK WITH STRATIGRAPHY ********************
798 //************************************************************
799
815 DLL_IMPORT_OR_EXPORT void setCellAssociationWithStratigraphicOrganizationInterpretation(int64_t* stratiUnitIndices, int64_t nullValue, class AbstractStratigraphicOrganizationInterpretation* stratiOrgInterp);
816
827
838 DLL_IMPORT_OR_EXPORT virtual COMMON_NS::DataObjectReference getStratigraphicOrganizationInterpretationDor() const;
839
849 DLL_IMPORT_OR_EXPORT bool hasCellStratigraphicUnitIndices() const;
850
869 DLL_IMPORT_OR_EXPORT int64_t getCellStratigraphicUnitIndices(int64_t * stratiUnitIndices);
870
871 //************************************************************
872 //**************** LINK WITH ROCKFLUID ********************
873 //************************************************************
874
890 DLL_IMPORT_OR_EXPORT void setCellAssociationWithRockFluidOrganizationInterpretation(int64_t* rockFluidUnitIndices, int64_t nullValue, class RockFluidOrganizationInterpretation* rockFluidOrgInterp);
891
902
913 DLL_IMPORT_OR_EXPORT virtual COMMON_NS::DataObjectReference getRockFluidOrganizationInterpretationDor() const;
914
924 DLL_IMPORT_OR_EXPORT bool hasCellFluidPhaseUnitIndices() const;
925
945 DLL_IMPORT_OR_EXPORT int64_t getCellFluidPhaseUnitIndices(int64_t * rockfluidUnitIndices);
946
947
948 //************************************************************
949 //********************** TRUNCATION **************************
950 //************************************************************
951
957 DLL_IMPORT_OR_EXPORT bool isTruncated() const;
958
968 DLL_IMPORT_OR_EXPORT uint64_t getTruncatedFaceCount() const;
969
982 DLL_IMPORT_OR_EXPORT void getNodeIndicesOfTruncatedFaces(uint64_t * nodeIndices) const;
983
1001 DLL_IMPORT_OR_EXPORT void getCumulativeNodeCountPerTruncatedFace(uint64_t * nodeCountPerFace) const;
1002
1017 DLL_IMPORT_OR_EXPORT void getNodeCountPerTruncatedFace(uint64_t * nodeCountPerFace) const;
1018
1027 DLL_IMPORT_OR_EXPORT uint64_t getTruncatedCellCount() const;
1028
1040 DLL_IMPORT_OR_EXPORT void getTruncatedCellIndices(uint64_t* cellIndices) const;
1041
1057 DLL_IMPORT_OR_EXPORT void getTruncatedFaceIndicesOfTruncatedCells(uint64_t * faceIndices) const;
1058
1077 DLL_IMPORT_OR_EXPORT void getCumulativeTruncatedFaceCountPerTruncatedCell(uint64_t * cumulativeFaceCountPerCell) const;
1078
1093 DLL_IMPORT_OR_EXPORT void getTruncatedFaceCountPerTruncatedCell(uint64_t * faceCountPerCell) const;
1094
1110 DLL_IMPORT_OR_EXPORT void getNonTruncatedFaceIndicesOfTruncatedCells(uint64_t * faceIndices) const;
1111
1130 DLL_IMPORT_OR_EXPORT void getCumulativeNonTruncatedFaceCountPerTruncatedCell(uint64_t * cumulativeFaceCountPerCell) const;
1131
1147 DLL_IMPORT_OR_EXPORT void getNonTruncatedFaceCountPerTruncatedCell(uint64_t * faceCountPerCell) const;
1148
1164 DLL_IMPORT_OR_EXPORT void getTruncatedFaceIsRightHanded(uint8_t* cellFaceIsRightHanded) const;
1165
1167 DLL_IMPORT_OR_EXPORT static constexpr char const* XML_TAG = "AbstractGridRepresentation";
1168
1171
1172 protected:
1173
1175 bool withTruncatedPillars;
1176 };
1177}
Proxy class for an abstract column layer grid representation.
Definition AbstractColumnLayerGridRepresentation.h:27
Proxy class for an abstract grid representation.
Definition AbstractGridRepresentation.h:27
uint64_t getRegridStartIndexOnParentGrid(char dimension) const
void getNonTruncatedFaceCountPerTruncatedCell(uint64_t *faceCountPerCell) const
common::DataObjectReference getParentGridDor() const
AbstractGridRepresentation * getChildGrid(uint64_t index) const
void setParentWindow(unsigned int iCellIndexRegridStart, unsigned int *childCellCountPerIInterval, unsigned int *parentCellCountPerIInterval, unsigned int iIntervalCount, unsigned int jCellIndexRegridStart, unsigned int *childCellCountPerJInterval, unsigned int *parentCellCountPerJInterval, unsigned int jIntervalCount, unsigned int kCellIndexRegridStart, unsigned int *childCellCountPerKInterval, unsigned int *parentCellCountPerKInterval, unsigned int kIntervalCount, class AbstractIjkGridRepresentation *parentGrid, eml2 ::AbstractHdfProxy *proxy=nullptr, double *iChildCellWeights=nullptr, double *jChildCellWeights=nullptr, double *kChildCellWeights=nullptr)
int64_t getCellStratigraphicUnitIndices(int64_t *stratiUnitIndices)
void getTruncatedFaceIsRightHanded(uint8_t *cellFaceIsRightHanded) const
virtual common::DataObjectReference getStratigraphicOrganizationInterpretationDor() const
void getCumulativeTruncatedFaceCountPerTruncatedCell(uint64_t *cumulativeFaceCountPerCell) const
virtual common::DataObjectReference getRockFluidOrganizationInterpretationDor() const
void getNonTruncatedFaceIndicesOfTruncatedCells(uint64_t *faceIndices) const
void getParentColumnIndices(uint64_t *parentColumnIndices) const
virtual ~AbstractGridRepresentation()=default
bool hasRegridChildCellWeights(char dimension) const
void setParentWindow(uint64_t *cellIndices, uint64_t cellIndexCount, class UnstructuredGridRepresentation *parentGrid, eml2 ::AbstractHdfProxy *proxy=nullptr)
AbstractGridRepresentation * getParentGrid() const
void getRegridCellCountPerInterval(char dimension, uint64_t *childCellCountPerInterval, bool childVsParentCellCount) const
uint64_t getRegridConstantCellCountPerInterval(char dimension, bool childVsParentCellCount) const
void setCellOverlap(uint64_t parentChildCellPairCount, uint64_t *parentChildCellPair, const std::string &volumeUom, double *overlapVolumes=nullptr)
virtual uint64_t getCellCount() const =0
uint64_t getRegridIntervalCount(char dimension) const
uint64_t getGridConnectionSetRepresentationCount() const
void getParentCellIndices(uint64_t *parentCellIndices) const
class GridConnectionSetRepresentation * getGridConnectionSetRepresentation(uint64_t index) const
void setParentWindow(unsigned int *columnIndices, uint64_t columnIndexCount, unsigned int kLayerIndexRegridStart, unsigned int *childCellCountPerInterval, unsigned int *parentCellCountPerInterval, unsigned int intervalCount, class AbstractColumnLayerGridRepresentation *parentGrid, eml2 ::AbstractHdfProxy *proxy=nullptr, double *childCellWeights=nullptr)
void getCumulativeNodeCountPerTruncatedFace(uint64_t *nodeCountPerFace) const
void getNodeCountPerTruncatedFace(uint64_t *nodeCountPerFace) const
void getRegridChildCellWeights(char dimension, double *childCellWeights) const
int64_t getCellFluidPhaseUnitIndices(int64_t *rockfluidUnitIndices)
void setCellAssociationWithStratigraphicOrganizationInterpretation(int64_t *stratiUnitIndices, int64_t nullValue, class AbstractStratigraphicOrganizationInterpretation *stratiOrgInterp)
bool isRegridCellCountPerIntervalConstant(char dimension, bool childVsParentCellCount) const
void setParentWindow(unsigned int iCellIndexRegridStart, unsigned int iChildCellCount, unsigned int iParentCellCount, unsigned int jCellIndexRegridStart, unsigned int jChildCellCount, unsigned int jParentCellCount, unsigned int kCellIndexRegridStart, unsigned int kChildCellCount, unsigned int kParentCellCount, class AbstractIjkGridRepresentation *parentGrid, eml2 ::AbstractHdfProxy *proxy=nullptr, double *iChildCellWeights=nullptr, double *jChildCellWeights=nullptr, double *kChildCellWeights=nullptr)
void setCellAssociationWithRockFluidOrganizationInterpretation(int64_t *rockFluidUnitIndices, int64_t nullValue, class RockFluidOrganizationInterpretation *rockFluidOrgInterp)
void getCumulativeNonTruncatedFaceCountPerTruncatedCell(uint64_t *cumulativeFaceCountPerCell) const
void setForcedNonRegridedParentCell(uint64_t *cellIndices, uint64_t cellIndexCount)
void getTruncatedFaceCountPerTruncatedCell(uint64_t *faceCountPerCell) const
std::vector< resqml2 ::AbstractGridRepresentation * > getChildGridSet() const
void getTruncatedFaceIndicesOfTruncatedCells(uint64_t *faceIndices) const
void setParentWindow(unsigned int iCellIndexRegridStart, unsigned int constantChildCellCountPerIInterval, unsigned int constantParentCellCountPerIInterval, unsigned int iIntervalCount, unsigned int jCellIndexRegridStart, unsigned int constantChildCellCountPerJInterval, unsigned int constantParentCellCountPerJInterval, unsigned int jIntervalCount, unsigned int kCellIndexRegridStart, unsigned int constantChildCellCountPerKInterval, unsigned int constantParentCellCountPerKInterval, unsigned int kIntervalCount, class AbstractIjkGridRepresentation *parentGrid, eml2 ::AbstractHdfProxy *proxy=nullptr, double *iChildCellWeights=nullptr, double *jChildCellWeights=nullptr, double *kChildCellWeights=nullptr)
Indicates that this grid takes place into another IJK parent grid. This method assumes that the count...
class AbstractStratigraphicOrganizationInterpretation * getStratigraphicOrganizationInterpretation() const
void getNodeIndicesOfTruncatedFaces(uint64_t *nodeIndices) const
class RockFluidOrganizationInterpretation * getRockFluidOrganizationInterpretation() const
std::vector< class GridConnectionSetRepresentation * > getGridConnectionSetRepresentationSet() const
void getTruncatedCellIndices(uint64_t *cellIndices) const
Proxy class for an abstract IJK grid representation. This class is semantically abstract....
Definition AbstractIjkGridRepresentation.h:34
Proxy class for an abstract representation.
Definition AbstractRepresentation.h:37
An abstract stratigraphic organization interpretation is the main class that defines the relationship...
Definition AbstractStratigraphicOrganizationInterpretation.h:37
Proxy class for a grid connection set representation. This representation consists of a list of conne...
Definition GridConnectionSetRepresentation.h:51
This class describes the organization of geological reservoir, i.e., of an interconnected network of ...
Definition RockFluidOrganizationInterpretation.h:34
Unstructured grid representation characterized by a cell count, and potentially nothing else....
Definition UnstructuredGridRepresentation.h:30