Fesapi  2.0.0.0
This project provides C++ classes which allow an easy access in import and export to the Energistics standards.
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resqml2::AbstractStratigraphicOrganizationInterpretation Class Reference

An abstract stratigraphic organization interpretation is the main class that defines the relationships between the stratigraphic units and provides the stratigraphic hierarchy of the earth. More...

#include <AbstractStratigraphicOrganizationInterpretation.h>

Inheritance diagram for resqml2::AbstractStratigraphicOrganizationInterpretation:
resqml2::AbstractOrganizationInterpretation resqml2::AbstractFeatureInterpretation common::AbstractObject resqml2::StratigraphicColumnRankInterpretation resqml2::StratigraphicOccurrenceInterpretation resqml2_0_1::StratigraphicColumnRankInterpretation resqml2_2::StratigraphicColumnRankInterpretation resqml2_0_1::StratigraphicOccurrenceInterpretation resqml2_2::StratigraphicOccurrenceInterpretation

Public Member Functions

virtual ~AbstractStratigraphicOrganizationInterpretation ()=default
 
std::vector< AbstractGridRepresentation * > getGridRepresentations () const
 
unsigned int getGridRepresentationCount () const
 
AbstractGridRepresentationgetGridRepresentation (unsigned int index) const
 
bool isAssociatedToGridRepresentation (AbstractGridRepresentation *gridRep) const
 
- Public Member Functions inherited from resqml2::AbstractOrganizationInterpretation
virtual ~AbstractOrganizationInterpretation ()=default
 
void pushBackBinaryContact (AbstractFeatureInterpretation *subject, gsoap_eml2_3::resqml22__ContactVerb verb, AbstractFeatureInterpretation *directObject)
 
void pushBackBinaryContact (AbstractFeatureInterpretation *subject, gsoap_eml2_3::resqml22__ContactVerb verb, AbstractFeatureInterpretation *directObject, AbstractFeatureInterpretation *partOf)
 
void pushBackBinaryContact (AbstractFeatureInterpretation *subject, gsoap_eml2_3::resqml22__ContactVerb verb, AbstractFeatureInterpretation *directObject, gsoap_resqml2_0_1::resqml20__ContactSide directObjectQualifier)
 
void pushBackBinaryContact (AbstractFeatureInterpretation *subject, gsoap_resqml2_0_1::resqml20__ContactSide subjectQualifier, gsoap_eml2_3::resqml22__ContactVerb verb, AbstractFeatureInterpretation *directObject, gsoap_resqml2_0_1::resqml20__ContactSide directObjectQualifier)
 
- Public Member Functions inherited from resqml2::AbstractFeatureInterpretation
virtual ~AbstractFeatureInterpretation ()=default
 
common::DataObjectReference getInterpretedFeatureDor () const
 
void setInterpretedFeature (AbstractFeature *feature)
 
AbstractFeaturegetInterpretedFeature () const
 
gsoap_resqml2_0_1::resqml20__Domain initDomain (gsoap_resqml2_0_1::resqml20__Domain defaultDomain) const
 
gsoap_resqml2_0_1::resqml20__Domain getDomain () const
 
std::vector< AbstractRepresentation * > getRepresentationSet () const
 
unsigned int getRepresentationCount () const
 
std::vector< GridConnectionSetRepresentation * > getGridConnectionSetRepresentationSet () const
 
AbstractRepresentationgetRepresentation (unsigned int index) const
 
virtual void loadTargetRelationships ()
 
- Public Member Functions inherited from common::AbstractObject
bool isPartial () const
 
virtual bool isTopLevelElement () const
 
std::string getUuid () const
 
std::string getTitle () const
 
std::string getEditor () const
 
time_t getCreation () const
 
tm getCreationAsTimeStructure () const
 
std::string getOriginator () const
 
std::string getDescription () const
 
time_t getLastUpdate () const
 
tm getLastUpdateAsTimeStructure () const
 
std::string getFormat () const
 
std::string getDescriptiveKeywords () const
 
std::string getVersion () const
 
void setTitle (const std::string &title)
 
void setEditor (const std::string &editor)
 
void setCreation (time_t creation)
 
void setCreation (const tm &creation)
 
void setOriginator (const std::string &originator)
 
void setDescription (const std::string &description)
 
void setLastUpdate (time_t lastUpdate)
 
void setLastUpdate (const tm &lastUpdate)
 
void setDescriptiveKeywords (const std::string &descriptiveKeywords)
 
void setVersion (const std::string &version)
 
void setMetadata (const std::string &title, const std::string &editor, time_t creation, const std::string &originator, const std::string &description, time_t lastUpdate, const std::string &descriptiveKeywords)
 
void serializeIntoStream (std::ostream *stream)
 
void setGsoapProxy (gsoap_resqml2_0_1::eml20__AbstractCitedDataObject *gsoapProxy)
 
void setGsoapProxy (gsoap_eml2_1::eml21__AbstractObject *gsoapProxy)
 
gsoap_resqml2_0_1::eml20__AbstractCitedDataObject * getEml20GsoapProxy () const
 
gsoap_eml2_1::eml21__AbstractObject * getEml21GsoapProxy () const
 
gsoap_eml2_2::eml22__AbstractObject * getEml22GsoapProxy () const
 
void setGsoapProxy (gsoap_eml2_2::eml22__AbstractObject *gsoapProxy)
 
gsoap_eml2_3::eml23__AbstractObject * getEml23GsoapProxy () const
 
void setGsoapProxy (gsoap_eml2_3::eml23__AbstractObject *gsoapProxy)
 
soap * getGsoapContext () const
 
int getGsoapType () const
 
gsoap_resqml2_0_1::eml20__DataObjectReference * newResqmlReference () const
 
gsoap_eml2_1::eml21__DataObjectReference * newEmlReference () const
 
gsoap_eml2_2::eml22__DataObjectReference * newEml22Reference () const
 
gsoap_eml2_3::eml23__DataObjectReference * newEml23Reference () const
 
gsoap_resqml2_0_1::resqml20__ContactElementReference * newContactElementReference2_0_1 () const
 
gsoap_eml2_3::resqml22__ContactElement * newContactElementReference2_2 () const
 
common::DataObjectRepositorygetRepository () const
 
virtual std::string getXmlNamespace () const =0
 
virtual std::string getXmlTag () const =0
 
virtual std::string getXmlNamespaceVersion () const
 
virtual std::string getContentType () const
 
virtual std::string getQualifiedType () const
 
virtual std::string getPartNameInEpcDocument () const
 
std::string serializeIntoString ()
 
void addAlias (const std::string &authority, const std::string &title)
 
unsigned int getAliasCount () const
 
std::string getAliasAuthorityAtIndex (unsigned int index) const
 
std::string getAliasTitleAtIndex (unsigned int index) const
 
std::vector< eml2::Activity * > getActivitySet () const
 
unsigned int getActivityCount () const
 
eml2::ActivitygetActivity (unsigned int index) const
 
void pushBackExtraMetadata (const std::string &key, const std::string &value)
 
std::unordered_map< std::string, std::string > getExtraMetadataSet () const
 
std::vector< std::string > getExtraMetadata (const std::string &key) const
 
unsigned int getExtraMetadataCount () const
 
std::string getExtraMetadataKeyAtIndex (unsigned int index) const
 
std::string getExtraMetadataStringValueAtIndex (unsigned int index) const
 

Additional Inherited Members

- Public Types inherited from common::AbstractObject
enum  hdfDatatypeEnum {
  UNKNOWN = 0 , DOUBLE = 1 , FLOAT = 2 , LONG_64 = 3 ,
  ULONG_64 = 4 , INT = 5 , UINT = 6 , SHORT = 7 ,
  USHORT = 8 , CHAR = 9 , UCHAR = 10
}
 
- Static Public Member Functions inherited from common::AbstractObject
static void setFormat (const std::string &vendor, const std::string &applicationName, const std::string &applicationVersionNumber)
 

Detailed Description

An abstract stratigraphic organization interpretation is the main class that defines the relationships between the stratigraphic units and provides the stratigraphic hierarchy of the earth.

BUSINESS RULE: A stratigraphic organization must be in a ranked order from a lower rank to an upper rank. For example, it is possible to find previous unit containment relationships between several ranks.

Constructor & Destructor Documentation

◆ ~AbstractStratigraphicOrganizationInterpretation()

virtual resqml2::AbstractStratigraphicOrganizationInterpretation::~AbstractStratigraphicOrganizationInterpretation ( )
virtualdefault

Destructor does nothing since the memory is managed by the gSOAP context.

Member Function Documentation

◆ getGridRepresentation()

AbstractGridRepresentation* resqml2::AbstractStratigraphicOrganizationInterpretation::getGridRepresentation ( unsigned int  index) const

Gets a grid representation associated to this stratigraphic organization interpretation by means of its index.

Exceptions
std::out_of_rangeIf index is out of range.
Parameters
indexThe index of the grid representation to get in the array of grid representations of this stratigraphic organization interpretations.
Returns
The associated grid representation at index index.

◆ getGridRepresentationCount()

unsigned int resqml2::AbstractStratigraphicOrganizationInterpretation::getGridRepresentationCount ( ) const

Gets the count of grid representations associated to this stratigraphic organization interpretation.

Exceptions
std::range_errorIf the count of associated grid representations is strictly greater than unsigned int max.
Returns
The count of associated grid representations.

◆ getGridRepresentations()

std::vector<AbstractGridRepresentation*> resqml2::AbstractStratigraphicOrganizationInterpretation::getGridRepresentations ( ) const

Gets the grid representations associated to this stratigraphic organization interpretation.

Returns
A vector of pointers to all the grid representations associated to this stratigraphic organization interpretation.

◆ isAssociatedToGridRepresentation()

bool resqml2::AbstractStratigraphicOrganizationInterpretation::isAssociatedToGridRepresentation ( AbstractGridRepresentation gridRep) const

Checks whether a given grid representation is associated to this stratigraphic organization interpretation or not.

Parameters
[in]gridRepThe grid representation fro which we want to check its association with this stratigraphic organization interpretation.
Returns
True if gridRep is associated to this stratigraphic organization interpretation or false if it is not.

The documentation for this class was generated from the following file: