Files
ResInsight/ApplicationLibCode/GeoMech/GeoMechDataModel/RigFemScalarResultFrames.cpp
T

113 lines
4.1 KiB
C++
Raw Normal View History

2015-05-06 16:07:30 +02:00
/////////////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 2015- Statoil ASA
// Copyright (C) 2015- Ceetron Solutions AS
//
2015-05-06 16:07:30 +02:00
// 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.
//
2015-05-06 16:07:30 +02:00
// 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>
2015-05-06 16:07:30 +02:00
// for more details.
//
/////////////////////////////////////////////////////////////////////////////////
#include "RigFemScalarResultFrames.h"
2015-05-07 10:11:55 +02:00
#include "RigStatisticsDataCache.h"
2021-04-06 12:04:31 -07:00
#include <cstdlib>
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
///
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
2023-01-18 14:42:33 +01:00
RigFemScalarResultFrames::RigFemScalarResultFrames( int timeStepCount )
2015-05-07 10:11:55 +02:00
{
2023-01-18 14:42:33 +01:00
m_dataForEachFrame.resize( timeStepCount );
m_isSingleStepResult = false;
2015-05-07 10:11:55 +02:00
}
//--------------------------------------------------------------------------------------------------
///
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
RigFemScalarResultFrames::~RigFemScalarResultFrames()
{
}
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
2023-01-18 14:42:33 +01:00
void RigFemScalarResultFrames::enableAsSingleStepResult()
{
2023-01-18 14:42:33 +01:00
m_isSingleStepResult = true;
}
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
///
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
2023-01-18 14:42:33 +01:00
int RigFemScalarResultFrames::timeStepCount() const
2015-05-07 10:11:55 +02:00
{
return static_cast<int>( m_dataForEachFrame.size() );
2015-05-07 10:11:55 +02:00
}
//--------------------------------------------------------------------------------------------------
///
2015-05-07 10:11:55 +02:00
//--------------------------------------------------------------------------------------------------
2023-01-18 14:42:33 +01:00
int RigFemScalarResultFrames::frameCount( int timeStepIndex ) const
2015-05-07 10:11:55 +02:00
{
2023-01-18 14:42:33 +01:00
if ( timeStepIndex >= timeStepCount() ) return 0;
return static_cast<int>( m_dataForEachFrame[timeStepIndex].size() );
2015-05-07 10:11:55 +02:00
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
2023-01-18 14:42:33 +01:00
std::vector<float>& RigFemScalarResultFrames::frameData( int timeStepIndex, int frameIndex )
{
2023-01-18 14:42:33 +01:00
CVF_ASSERT( timeStepIndex < timeStepCount() );
if ( m_isSingleStepResult ) timeStepIndex = 0;
int availFrames = int( m_dataForEachFrame[timeStepIndex].size() );
// frame index == -1 means last available frame
if ( frameIndex == -1 ) frameIndex = availFrames - 1;
CVF_ASSERT( frameIndex >= 0 );
if ( frameIndex >= availFrames )
{
2023-01-18 14:42:33 +01:00
m_dataForEachFrame[timeStepIndex].resize( size_t( frameIndex + 1 ) );
}
2023-01-18 14:42:33 +01:00
return m_dataForEachFrame[timeStepIndex][frameIndex];
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
const std::vector<float>& RigFemScalarResultFrames::frameData( int timeStepIndex, int frameIndex ) const
{
CVF_ASSERT( timeStepIndex < timeStepCount() );
if ( m_isSingleStepResult ) timeStepIndex = 0;
int availFrames = int( m_dataForEachFrame[timeStepIndex].size() );
// frame index == -1 means last available frame
if ( frameIndex == -1 ) frameIndex = availFrames - 1;
if ( frameIndex < 0 ) return m_noData;
if ( frameIndex >= availFrames )
{
2023-01-18 14:42:33 +01:00
return m_noData;
}
2023-01-18 14:42:33 +01:00
return m_dataForEachFrame[timeStepIndex][frameIndex];
}