Files
ResInsight/ApplicationLibCode/FileInterface/RifMultipleSummaryReaders.cpp
T
Magne Sjaastad de6a2a7aa8 #13137 Make sure calculated vectors appears in tree view
When populating the addresses to be displayed in the tree view, the native file readers must be populated first. The calculated addresses depend on addresses available in native readers.
2025-11-06 11:40:03 +01:00

189 lines
7.4 KiB
C++

/////////////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 2021- Equinor ASA
//
// ResInsight is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// ResInsight is distributed in the hope that it will be useful, but WITHOUT ANY
// WARRANTY; without even the implied warranty of MERCHANTABILITY or
// FITNESS FOR A PARTICULAR PURPOSE.
//
// See the GNU General Public License at <http://www.gnu.org/licenses/gpl.html>
// for more details.
//
/////////////////////////////////////////////////////////////////////////////////
#include "RifMultipleSummaryReaders.h"
#include "RimCalculatedSummaryCurveReader.h"
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
RifMultipleSummaryReaders::RifMultipleSummaryReaders() = default;
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
void RifMultipleSummaryReaders::addReader( std::unique_ptr<RifSummaryReaderInterface> reader )
{
if ( findReader( reader->serialNumber() ) != nullptr ) return;
m_readers.push_back( std::move( reader ) );
// https://github.com/OPM/ResInsight/issues/12989
// Reorder readers so the calculated reader is at the front of the vector. This ensures that RifMultipleSummaryReaders::values()
// evaluates calculated reader first.
auto calculatedReaderFirst = []( const auto& first, const auto& second )
{
bool isFirstCalc = dynamic_cast<RifCalculatedSummaryCurveReader*>( first.get() ) != nullptr;
bool isSecondCalc = dynamic_cast<RifCalculatedSummaryCurveReader*>( second.get() ) != nullptr;
if ( isFirstCalc && !isSecondCalc ) return true;
if ( !isFirstCalc && isSecondCalc ) return false;
return first->serialNumber() < second->serialNumber();
};
std::sort( m_readers.begin(), m_readers.end(), calculatedReaderFirst );
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
RifSummaryReaderInterface* RifMultipleSummaryReaders::findReader( int serialNumber ) const
{
auto reader = std::find_if( m_readers.begin(),
m_readers.end(),
[serialNumber]( const std::unique_ptr<RifSummaryReaderInterface>& r )
{ return r->serialNumber() == serialNumber; } );
if ( reader != m_readers.end() )
{
return reader->get();
}
return nullptr;
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
void RifMultipleSummaryReaders::removeReader( int serialNumber )
{
auto reader = std::find_if( m_readers.begin(),
m_readers.end(),
[serialNumber]( const std::unique_ptr<RifSummaryReaderInterface>& r )
{ return r->serialNumber() == serialNumber; } );
if ( reader != m_readers.end() )
{
m_readers.erase( reader );
}
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<time_t> RifMultipleSummaryReaders::timeSteps( const RifEclipseSummaryAddress& resultAddress ) const
{
for ( const auto& r : m_readers )
{
const auto& timeSteps = r->timeSteps( resultAddress );
if ( !timeSteps.empty() ) return timeSteps;
}
return {};
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::pair<bool, std::vector<double>> RifMultipleSummaryReaders::values( const RifEclipseSummaryAddress& resultAddress ) const
{
for ( const auto& r : m_readers )
{
const auto& okAndValues = r->values( resultAddress );
if ( okAndValues.first && !okAndValues.second.empty() ) return okAndValues;
}
return { false, {} };
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::string RifMultipleSummaryReaders::unitName( const RifEclipseSummaryAddress& resultAddress ) const
{
for ( const auto& r : m_readers )
{
auto name = r->unitName( resultAddress );
if ( !name.empty() ) return name;
}
return {};
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
RiaDefines::EclipseUnitSystem RifMultipleSummaryReaders::unitSystem() const
{
CVF_ASSERT( !m_readers.empty() );
return m_readers.at( 0 )->unitSystem();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
void RifMultipleSummaryReaders::createAndSetAddresses()
{
m_allErrorAddresses.clear();
m_allResultAddresses.clear();
// Loop over readers in inverted order to ensure calculated readers are processed after native file readers. Creation of summary
// addresses for calculated readers depend on native readers.
// https://github.com/OPM/ResInsight/issues/13137
std::vector<RifSummaryReaderInterface*> readers;
for ( auto& r : m_readers )
{
readers.push_back( r.get() );
}
auto nativeReaderFirst = []( const auto& first, const auto& second )
{
bool isFirstCalc = dynamic_cast<RifCalculatedSummaryCurveReader*>( first ) != nullptr;
bool isSecondCalc = dynamic_cast<RifCalculatedSummaryCurveReader*>( second ) != nullptr;
if ( isFirstCalc && !isSecondCalc ) return false;
if ( !isFirstCalc && isSecondCalc ) return true;
return first->serialNumber() < second->serialNumber();
};
std::sort( readers.begin(), readers.end(), nativeReaderFirst );
for ( auto reader : readers )
{
reader->createAndSetAddresses();
auto resultAddresses = reader->allResultAddresses();
m_allResultAddresses.insert( resultAddresses.begin(), resultAddresses.end() );
auto errorResultAddresses = reader->allErrorAddresses();
m_allErrorAddresses.insert( errorResultAddresses.begin(), errorResultAddresses.end() );
}
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
size_t RifMultipleSummaryReaders::keywordCount() const
{
for ( const auto& r : m_readers )
{
if ( r->keywordCount() > 0 ) return r->keywordCount();
}
return 0;
}