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ce95f13c10
Lots of renaming p4#: 20302
702 lines
30 KiB
C++
702 lines
30 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2011-2012 Statoil ASA, Ceetron AS
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//
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// ResInsight is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// ResInsight is distributed in the hope that it will be useful, but WITHOUT ANY
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// WARRANTY; without even the implied warranty of MERCHANTABILITY or
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// FITNESS FOR A PARTICULAR PURPOSE.
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//
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// See the GNU General Public License at <http://www.gnu.org/licenses/gpl.html>
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// for more details.
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//
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/////////////////////////////////////////////////////////////////////////////////
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#include "RIStdInclude.h"
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#include "RivReservoirViewPartMgr.h"
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#include "RivGridPartMgr.h"
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#include "RimReservoirView.h"
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#include "RigReservoir.h"
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#include "RigGridBase.h"
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#include "RigReservoirCellResults.h"
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RivReservoirViewPartMgr::RivReservoirViewPartMgr(RimReservoirView * resv) :
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m_reservoirView(resv)
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{
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m_scaleTransform = new cvf::Transform();
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clearGeometryCache();
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}
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//--------------------------------------------------------------------------------------------------
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/// Clears the geometry cache for the given, and the dependent geometryTypes (from a visibility standpoint)
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::scheduleGeometryRegen(ReservoirGeometryCacheType geometryType)
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{
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switch (geometryType)
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{
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case INACTIVE:
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clearGeometryCache(INACTIVE);
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clearGeometryCache(RANGE_FILTERED_INACTIVE);
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break;
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case RANGE_FILTERED_INACTIVE:
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clearGeometryCache(RANGE_FILTERED_INACTIVE);
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break;
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case ACTIVE:
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clearGeometryCache(ACTIVE);
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clearGeometryCache(ALL_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS);
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clearGeometryCache(RANGE_FILTERED);
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clearGeometryCache(RANGE_FILTERED_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case ALL_WELL_CELLS:
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clearGeometryCache(ALL_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS);
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clearGeometryCache(RANGE_FILTERED);
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clearGeometryCache(RANGE_FILTERED_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case VISIBLE_WELL_CELLS:
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clearGeometryCache(VISIBLE_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case VISIBLE_WELL_FENCE_CELLS:
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case RANGE_FILTERED:
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clearGeometryCache(RANGE_FILTERED);
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clearGeometryCache(RANGE_FILTERED_INACTIVE);
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clearGeometryCache(RANGE_FILTERED_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case RANGE_FILTERED_WELL_CELLS:
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clearGeometryCache(RANGE_FILTERED_WELL_CELLS);
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clearGeometryCache(RANGE_FILTERED);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER:
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER:
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case PROPERTY_FILTERED:
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clearGeometryCache(PROPERTY_FILTERED);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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case PROPERTY_FILTERED_WELL_CELLS:
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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break;
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::clearGeometryCache(ReservoirGeometryCacheType geomType)
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{
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RigReservoir* reservoir = NULL;
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if (m_reservoirView != NULL && m_reservoirView->eclipseCase())
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{
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reservoir = m_reservoirView->eclipseCase()->reservoirData();
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}
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if (geomType == PROPERTY_FILTERED)
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{
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for (size_t i = 0; i < m_propFilteredGeometryFramesNeedsRegen.size(); ++i)
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{
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m_propFilteredGeometryFramesNeedsRegen[i] = true;
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if (m_propFilteredGeometryFrames[i].notNull())
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{
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m_propFilteredGeometryFrames[i]->clearAndSetReservoir(reservoir);
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m_propFilteredGeometryFrames[i]->setTransform(m_scaleTransform.p());
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}
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}
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}
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else if (geomType == PROPERTY_FILTERED_WELL_CELLS)
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{
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for (size_t i = 0; i < m_propFilteredWellGeometryFramesNeedsRegen.size(); ++i)
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{
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m_propFilteredWellGeometryFramesNeedsRegen[i] = true;
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if (m_propFilteredWellGeometryFrames[i].notNull())
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{
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m_propFilteredWellGeometryFrames[i]->clearAndSetReservoir(reservoir);
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m_propFilteredWellGeometryFrames[i]->setTransform(m_scaleTransform.p());
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}
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}
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}
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else
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{
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m_geometriesNeedsRegen[geomType] = true;
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m_geometries[geomType].clearAndSetReservoir(reservoir);
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m_geometries[geomType].setTransform(m_scaleTransform.p());
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::clearGeometryCache()
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{
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clearGeometryCache(ACTIVE);
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clearGeometryCache(ALL_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_CELLS);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS);
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clearGeometryCache(INACTIVE);
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clearGeometryCache(RANGE_FILTERED);
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clearGeometryCache(RANGE_FILTERED_WELL_CELLS);
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clearGeometryCache(RANGE_FILTERED_INACTIVE);
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clearGeometryCache(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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clearGeometryCache(PROPERTY_FILTERED);
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clearGeometryCache(PROPERTY_FILTERED_WELL_CELLS);
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::appendStaticGeometryPartsToModel(cvf::ModelBasicList* model, ReservoirGeometryCacheType geometryType,
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const std::vector<size_t>& gridIndices)
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{
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if (m_geometriesNeedsRegen[geometryType])
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{
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createGeometry( geometryType);
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}
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m_geometries[geometryType].appendPartsToModel(model, gridIndices);
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::appendDynamicGeometryPartsToModel(cvf::ModelBasicList* model, ReservoirGeometryCacheType geometryType,
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size_t frameIndex, const std::vector<size_t>& gridIndices)
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{
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if (geometryType == PROPERTY_FILTERED)
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{
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if (frameIndex >= m_propFilteredGeometryFramesNeedsRegen.size() || m_propFilteredGeometryFramesNeedsRegen[frameIndex])
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{
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createPropertyFilteredGeometry(frameIndex);
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}
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m_propFilteredGeometryFrames[frameIndex]->appendPartsToModel(model, gridIndices);
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}
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else if (geometryType == PROPERTY_FILTERED_WELL_CELLS)
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{
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if (frameIndex >= m_propFilteredWellGeometryFramesNeedsRegen.size() || m_propFilteredWellGeometryFramesNeedsRegen[frameIndex])
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{
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createPropertyFilteredWellGeometry(frameIndex);
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}
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m_propFilteredWellGeometryFrames[frameIndex]->appendPartsToModel(model, gridIndices);
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::createGeometry(ReservoirGeometryCacheType geometryType)
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{
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RigReservoir* res = m_reservoirView->eclipseCase()->reservoirData();
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m_geometries[geometryType].clearAndSetReservoir(res);
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m_geometries[geometryType].setTransform(m_scaleTransform.p());
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std::vector<RigGridBase*> grids;
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res->allGrids(&grids);
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for (size_t i = 0; i < grids.size(); ++i)
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{
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cvf::ref<cvf::UByteArray> cellVisibility = m_geometries[geometryType].cellVisibility(i);
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computeVisibility(cellVisibility.p(), geometryType, grids[i], i);
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m_geometries[geometryType].setCellVisibility(i, cellVisibility.p());
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}
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m_geometriesNeedsRegen[geometryType] = false;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::computeVisibility(cvf::UByteArray* cellVisibility, ReservoirGeometryCacheType geometryType, RigGridBase* grid, size_t gridIdx)
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{
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switch (geometryType)
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{
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case ACTIVE:
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computeNativeVisibility(cellVisibility, grid, false, false, true, m_reservoirView->showMainGrid() );
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break;
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case ALL_WELL_CELLS:
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computeAllWellCellsVisibility(cellVisibility, grid);
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break;
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case VISIBLE_WELL_CELLS:
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{
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cvf::ref<cvf::UByteArray> allWellCellsVisibility;
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if (m_geometriesNeedsRegen[ALL_WELL_CELLS]) createGeometry(ALL_WELL_CELLS);
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allWellCellsVisibility = m_geometries[ALL_WELL_CELLS].cellVisibility(gridIdx);
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m_reservoirView->calculateVisibleWellCellsIncFence(cellVisibility, grid);
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#pragma omp parallel for
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for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
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{
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(*cellVisibility)[cellIdx] = (*allWellCellsVisibility)[cellIdx] && (*cellVisibility)[cellIdx];
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}
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}
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break;
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case VISIBLE_WELL_FENCE_CELLS:
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{
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cvf::ref<cvf::UByteArray> allWellCellsVisibility;
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if (m_geometriesNeedsRegen[ALL_WELL_CELLS]) createGeometry(ALL_WELL_CELLS);
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allWellCellsVisibility = m_geometries[ALL_WELL_CELLS].cellVisibility(gridIdx);
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m_reservoirView->calculateVisibleWellCellsIncFence(cellVisibility, grid);
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#pragma omp parallel for
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for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
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{
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(*cellVisibility)[cellIdx] = !(*allWellCellsVisibility)[cellIdx] && (*cellVisibility)[cellIdx];
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}
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}
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break;
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case INACTIVE:
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computeNativeVisibility(cellVisibility, grid, m_reservoirView->showInvalidCells(), true, false, m_reservoirView->showMainGrid());
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break;
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case RANGE_FILTERED:
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{
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cvf::ref<cvf::UByteArray> nativeVisibility;
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if (m_geometriesNeedsRegen[ACTIVE]) createGeometry(ACTIVE);
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nativeVisibility = m_geometries[ACTIVE].cellVisibility(gridIdx);
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computeRangeVisibility(cellVisibility, grid, nativeVisibility.p(), m_reservoirView->rangeFilterCollection());
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}
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break;
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case RANGE_FILTERED_INACTIVE:
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{
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cvf::ref<cvf::UByteArray> nativeVisibility;
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if (m_geometriesNeedsRegen[INACTIVE]) createGeometry(INACTIVE);
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nativeVisibility = m_geometries[INACTIVE].cellVisibility(gridIdx);
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computeRangeVisibility(cellVisibility, grid, nativeVisibility.p(), m_reservoirView->rangeFilterCollection());
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}
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break;
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case RANGE_FILTERED_WELL_CELLS:
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{
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cvf::ref<cvf::UByteArray> nativeVisibility;
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if (m_geometriesNeedsRegen[ALL_WELL_CELLS]) createGeometry(ALL_WELL_CELLS);
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nativeVisibility = m_geometries[ALL_WELL_CELLS].cellVisibility(gridIdx);
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computeRangeVisibility(cellVisibility, grid, nativeVisibility.p(), m_reservoirView->rangeFilterCollection());
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}
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break;
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case VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER:
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{
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cvf::ref<cvf::UByteArray> visibleWellCells;
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cvf::ref<cvf::UByteArray> rangeFilteredWellCells;
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if (m_geometriesNeedsRegen[VISIBLE_WELL_CELLS]) createGeometry(VISIBLE_WELL_CELLS);
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if (m_geometriesNeedsRegen[RANGE_FILTERED_WELL_CELLS]) createGeometry(RANGE_FILTERED_WELL_CELLS);
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visibleWellCells = m_geometries[VISIBLE_WELL_CELLS].cellVisibility(gridIdx);
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rangeFilteredWellCells = m_geometries[RANGE_FILTERED_WELL_CELLS].cellVisibility(gridIdx);
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cellVisibility->resize(visibleWellCells->size());
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#pragma omp parallel for
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for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
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{
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(*cellVisibility)[cellIdx] = (*visibleWellCells)[cellIdx] && !(*rangeFilteredWellCells)[cellIdx];
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}
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}
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break;
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case VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER:
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{
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cvf::ref<cvf::UByteArray> visibleWellCells;
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cvf::ref<cvf::UByteArray> rangeFilteredWellCells;
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if (m_geometriesNeedsRegen[VISIBLE_WELL_FENCE_CELLS]) createGeometry(VISIBLE_WELL_FENCE_CELLS);
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if (m_geometriesNeedsRegen[RANGE_FILTERED]) createGeometry(RANGE_FILTERED);
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visibleWellCells = m_geometries[VISIBLE_WELL_FENCE_CELLS].cellVisibility(gridIdx);
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rangeFilteredWellCells = m_geometries[RANGE_FILTERED].cellVisibility(gridIdx);
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cellVisibility->resize(visibleWellCells->size());
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#pragma omp parallel for
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for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
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{
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(*cellVisibility)[cellIdx] = (*visibleWellCells)[cellIdx] && !(*rangeFilteredWellCells)[cellIdx];
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}
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}
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break;
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default:
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CVF_ASSERT(false); // Call special function for property filtered stuff
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break;
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::createPropertyFilteredGeometry(size_t frameIndex)
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{
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RigReservoir* res = m_reservoirView->eclipseCase()->reservoirData();
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if ( frameIndex >= m_propFilteredGeometryFrames.size())
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{
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m_propFilteredGeometryFrames.resize(frameIndex + 1);
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m_propFilteredGeometryFramesNeedsRegen.resize(frameIndex + 1, true);
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}
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if ( m_propFilteredGeometryFrames[frameIndex].isNull()) m_propFilteredGeometryFrames[frameIndex] = new RivReservoirPartMgr;
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m_propFilteredGeometryFrames[frameIndex]->clearAndSetReservoir(res);
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m_propFilteredGeometryFrames[frameIndex]->setTransform(m_scaleTransform.p());
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std::vector<RigGridBase*> grids;
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res->allGrids(&grids);
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bool hasActiveRangeFilters = m_reservoirView->rangeFilterCollection()->hasActiveFilters() || m_reservoirView->wellCollection()->hasVisibleWellCells();
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for (size_t i = 0; i < grids.size(); ++i)
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{
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cvf::ref<cvf::UByteArray> cellVisibility = m_propFilteredGeometryFrames[frameIndex]->cellVisibility(i);
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cvf::ref<cvf::UByteArray> rangeVisibility;
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cvf::ref<cvf::UByteArray> fenceVisibility;
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if (m_geometriesNeedsRegen[RANGE_FILTERED]) createGeometry(RANGE_FILTERED);
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if (m_geometriesNeedsRegen[VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER]) createGeometry(VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER);
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rangeVisibility = m_geometries[RANGE_FILTERED].cellVisibility(i);
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fenceVisibility = m_geometries[VISIBLE_WELL_FENCE_CELLS_OUTSIDE_RANGE_FILTER].cellVisibility(i);
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cellVisibility->resize(rangeVisibility->size());
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#pragma omp parallel for
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for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
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{
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(*cellVisibility)[cellIdx] = (!hasActiveRangeFilters && !grids[i]->cell(cellIdx).isWellCell()) || (*rangeVisibility)[cellIdx] || (*fenceVisibility)[cellIdx];
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}
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computePropertyVisibility(cellVisibility.p(), grids[i], frameIndex, cellVisibility.p(), m_reservoirView->propertyFilterCollection());
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m_propFilteredGeometryFrames[frameIndex]->setCellVisibility(i, cellVisibility.p());
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}
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m_propFilteredGeometryFramesNeedsRegen[frameIndex] = false;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RivReservoirViewPartMgr::createPropertyFilteredWellGeometry(size_t frameIndex)
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{
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RigReservoir* res = m_reservoirView->eclipseCase()->reservoirData();
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if ( frameIndex >= m_propFilteredWellGeometryFrames.size())
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{
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m_propFilteredWellGeometryFrames.resize(frameIndex + 1);
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m_propFilteredWellGeometryFramesNeedsRegen.resize(frameIndex + 1, true);
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}
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if ( m_propFilteredWellGeometryFrames[frameIndex].isNull()) m_propFilteredWellGeometryFrames[frameIndex] = new RivReservoirPartMgr;
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m_propFilteredWellGeometryFrames[frameIndex]->clearAndSetReservoir(res);
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m_propFilteredWellGeometryFrames[frameIndex]->setTransform(m_scaleTransform.p());
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std::vector<RigGridBase*> grids;
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res->allGrids(&grids);
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bool hasActiveRangeFilters = m_reservoirView->rangeFilterCollection()->hasActiveFilters() || m_reservoirView->wellCollection()->hasVisibleWellCells();
|
|
|
|
for (size_t i = 0; i < grids.size(); ++i)
|
|
{
|
|
cvf::ref<cvf::UByteArray> cellVisibility = m_propFilteredWellGeometryFrames[frameIndex]->cellVisibility(i);
|
|
cvf::ref<cvf::UByteArray> rangeVisibility;
|
|
cvf::ref<cvf::UByteArray> wellCellsOutsideVisibility;
|
|
|
|
if (m_geometriesNeedsRegen[RANGE_FILTERED_WELL_CELLS]) createGeometry(RANGE_FILTERED_WELL_CELLS);
|
|
rangeVisibility = m_geometries[RANGE_FILTERED_WELL_CELLS].cellVisibility(i);
|
|
|
|
if (m_geometriesNeedsRegen[VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER]) createGeometry(VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER);
|
|
wellCellsOutsideVisibility = m_geometries[VISIBLE_WELL_CELLS_OUTSIDE_RANGE_FILTER].cellVisibility(i);
|
|
|
|
cellVisibility->resize(rangeVisibility->size());
|
|
#pragma omp parallel for
|
|
for (int cellIdx = 0; cellIdx < static_cast<int>(cellVisibility->size()); ++cellIdx)
|
|
{
|
|
(*cellVisibility)[cellIdx] = (!hasActiveRangeFilters && grids[i]->cell(cellIdx).isWellCell()) || (*rangeVisibility)[cellIdx] || (*wellCellsOutsideVisibility)[cellIdx];
|
|
}
|
|
computePropertyVisibility(cellVisibility.p(), grids[i], frameIndex, cellVisibility.p(), m_reservoirView->propertyFilterCollection());
|
|
m_propFilteredWellGeometryFrames[frameIndex]->setCellVisibility(i, cellVisibility.p());
|
|
}
|
|
|
|
m_propFilteredWellGeometryFramesNeedsRegen[frameIndex] = false;
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
/// Evaluate visibility based on cell state
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::computeNativeVisibility(cvf::UByteArray* cellVisibility, const RigGridBase* grid,
|
|
bool invalidCellsIsVisible,
|
|
bool inactiveCellsIsVisible,
|
|
bool activeCellsIsVisible,
|
|
bool mainGridIsVisible)
|
|
{
|
|
CVF_ASSERT(cellVisibility != NULL);
|
|
CVF_ASSERT(grid != NULL);
|
|
cellVisibility->resize(grid->cellCount());
|
|
|
|
#pragma omp parallel for
|
|
for (int cellIndex = 0; cellIndex < static_cast<int>(grid->cellCount()); cellIndex++)
|
|
{
|
|
const RigCell& cell = grid->cell(cellIndex);
|
|
|
|
if ( !invalidCellsIsVisible && cell.isInvalid()
|
|
|| !inactiveCellsIsVisible && !cell.isActiveInMatrixModel()
|
|
|| !activeCellsIsVisible && cell.isActiveInMatrixModel()
|
|
|| mainGridIsVisible && (cell.subGrid() != NULL)
|
|
|| cell.isWellCell()
|
|
)
|
|
{
|
|
(*cellVisibility)[cellIndex] = false;
|
|
}
|
|
else
|
|
{
|
|
(*cellVisibility)[cellIndex] = true;
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
/// Evaluate Well cell visibility based on cell state
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::computeAllWellCellsVisibility(cvf::UByteArray* cellVisibility, const RigGridBase* grid )
|
|
{
|
|
CVF_ASSERT(cellVisibility != NULL);
|
|
CVF_ASSERT(grid != NULL);
|
|
cellVisibility->resize(grid->cellCount());
|
|
|
|
#pragma omp parallel for
|
|
for (int cellIndex = 0; cellIndex < static_cast<int>(grid->cellCount()); cellIndex++)
|
|
{
|
|
const RigCell& cell = grid->cell(cellIndex);
|
|
|
|
if ( cell.isWellCell() )
|
|
{
|
|
(*cellVisibility)[cellIndex] = true;
|
|
}
|
|
else
|
|
{
|
|
(*cellVisibility)[cellIndex] = false;
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::computeRangeVisibility(cvf::UByteArray* cellVisibility, const RigGridBase* grid,
|
|
const cvf::UByteArray* nativeVisibility, const RimCellRangeFilterCollection* rangeFilterColl)
|
|
{
|
|
CVF_ASSERT(cellVisibility != NULL);
|
|
CVF_ASSERT(nativeVisibility != NULL);
|
|
CVF_ASSERT(rangeFilterColl != NULL);
|
|
|
|
CVF_ASSERT(grid != NULL);
|
|
CVF_ASSERT(nativeVisibility->size() == grid->cellCount());
|
|
|
|
|
|
if (rangeFilterColl->hasActiveFilters())
|
|
{
|
|
if (cellVisibility != nativeVisibility) (*cellVisibility) = (*nativeVisibility);
|
|
|
|
// Build range filter for current grid
|
|
cvf::CellRangeFilter mainGridCellRangeFilter;
|
|
rangeFilterColl->compoundCellRangeFilter(&mainGridCellRangeFilter);
|
|
|
|
#pragma omp parallel for
|
|
for (int cellIndex = 0; cellIndex < static_cast<int>(grid->cellCount()); cellIndex++)
|
|
{
|
|
if ( (*nativeVisibility)[cellIndex] )
|
|
{
|
|
const RigCell& cell = grid->cell(cellIndex);
|
|
size_t mainGridCellIndex = cell.mainGridCellIndex();
|
|
size_t mainGridI;
|
|
size_t mainGridJ;
|
|
size_t mainGridK;
|
|
|
|
grid->mainGrid()->ijkFromCellIndex(mainGridCellIndex, &mainGridI, &mainGridJ, &mainGridK);
|
|
(*cellVisibility)[cellIndex] = !mainGridCellRangeFilter.isCellRejected(mainGridI, mainGridJ, mainGridK);
|
|
}
|
|
}
|
|
}
|
|
else
|
|
{
|
|
cellVisibility->resize(grid->cellCount());
|
|
cellVisibility->setAll(false);
|
|
}
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::computePropertyVisibility(cvf::UByteArray* cellVisibility, const RigGridBase* grid, size_t timeStepIndex,
|
|
const cvf::UByteArray* rangeFilterVisibility, RimCellPropertyFilterCollection* propFilterColl)
|
|
{
|
|
CVF_ASSERT(cellVisibility != NULL);
|
|
CVF_ASSERT(rangeFilterVisibility != NULL);
|
|
CVF_ASSERT(propFilterColl != NULL);
|
|
|
|
CVF_ASSERT(grid->cellCount() > 0);
|
|
CVF_ASSERT(rangeFilterVisibility->size() == grid->cellCount());
|
|
|
|
// Copy if not equal
|
|
if (cellVisibility != rangeFilterVisibility ) (*cellVisibility) = *rangeFilterVisibility;
|
|
|
|
if (propFilterColl->hasActiveFilters())
|
|
{
|
|
std::list< caf::PdmPointer< RimCellPropertyFilter > >::const_iterator pfIt;
|
|
for (pfIt = propFilterColl->propertyFilters().begin(); pfIt != propFilterColl->propertyFilters().end(); ++pfIt)
|
|
{
|
|
if ((*pfIt)->active()&& (*pfIt)->resultDefinition->hasResult())
|
|
{
|
|
const double lowerBound = (*pfIt)->lowerBound();
|
|
const double upperBound = (*pfIt)->upperBound();
|
|
|
|
size_t scalarResultIndex = (*pfIt)->resultDefinition->gridScalarIndex();
|
|
|
|
// Set time step to zero for static results
|
|
if ((*pfIt)->resultDefinition()->hasStaticResult())
|
|
{
|
|
timeStepIndex = 0;
|
|
}
|
|
|
|
const RimCellFilter::FilterModeType filterType = (*pfIt)->filterMode();
|
|
bool useGlobalActiveIndex = grid->mainGrid()->results()->isUsingGlobalActiveIndex((*pfIt)->resultDefinition->gridScalarIndex());
|
|
|
|
#pragma omp parallel for schedule(dynamic)
|
|
for (int cellIndex = 0; cellIndex < static_cast<int>(grid->cellCount()); cellIndex++)
|
|
{
|
|
if ( (*cellVisibility)[cellIndex] )
|
|
{
|
|
size_t resultValueIndex = cellIndex;
|
|
if (useGlobalActiveIndex)
|
|
{
|
|
resultValueIndex = grid->cell(cellIndex).activeIndexInMatrixModel();
|
|
}
|
|
|
|
double scalarValue = grid->mainGrid()->results()->cellScalarResult(timeStepIndex, scalarResultIndex, resultValueIndex);
|
|
if (lowerBound <= scalarValue && scalarValue <= upperBound)
|
|
{
|
|
if (filterType == RimCellFilter::EXCLUDE)
|
|
{
|
|
(*cellVisibility)[cellIndex] = false;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
if (filterType == RimCellFilter::INCLUDE)
|
|
{
|
|
(*cellVisibility)[cellIndex] = false;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::updateCellColor(ReservoirGeometryCacheType geometryType, size_t timeStepIndex, cvf::Color4f color)
|
|
{
|
|
if (geometryType == PROPERTY_FILTERED)
|
|
{
|
|
m_propFilteredGeometryFrames[timeStepIndex]->updateCellColor(color );
|
|
}
|
|
else if (geometryType == PROPERTY_FILTERED_WELL_CELLS)
|
|
{
|
|
m_propFilteredWellGeometryFrames[timeStepIndex]->updateCellColor(color );
|
|
}
|
|
else
|
|
{
|
|
m_geometries[geometryType].updateCellColor(color);
|
|
}
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::updateCellColor(ReservoirGeometryCacheType geometryType, cvf::Color4f color)
|
|
{
|
|
//CVF_ASSERT(geometryType != PROPERTY_FILTERED);
|
|
//CVF_ASSERT(geometryType != PROPERTY_FILTERED_WELL_CELLS);
|
|
|
|
updateCellColor(geometryType, 0 , color);
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::updateCellResultColor(ReservoirGeometryCacheType geometryType, size_t timeStepIndex, RimResultSlot* cellResultSlot)
|
|
{
|
|
if (geometryType == PROPERTY_FILTERED)
|
|
{
|
|
m_propFilteredGeometryFrames[timeStepIndex]->updateCellResultColor(timeStepIndex, cellResultSlot);
|
|
}
|
|
else if (geometryType == PROPERTY_FILTERED_WELL_CELLS)
|
|
{
|
|
m_propFilteredWellGeometryFrames[timeStepIndex]->updateCellResultColor(timeStepIndex, cellResultSlot);
|
|
}
|
|
else
|
|
{
|
|
m_geometries[geometryType].updateCellResultColor(timeStepIndex, cellResultSlot);
|
|
}
|
|
}
|
|
|
|
//--------------------------------------------------------------------------------------------------
|
|
///
|
|
//--------------------------------------------------------------------------------------------------
|
|
void RivReservoirViewPartMgr::updateCellEdgeResultColor(ReservoirGeometryCacheType geometryType, size_t timeStepIndex, RimResultSlot* cellResultSlot, RimCellEdgeResultSlot* cellEdgeResultSlot)
|
|
{
|
|
if (geometryType == PROPERTY_FILTERED)
|
|
{
|
|
m_propFilteredGeometryFrames[timeStepIndex]->updateCellEdgeResultColor( timeStepIndex, cellResultSlot, cellEdgeResultSlot );
|
|
}
|
|
else if (geometryType == PROPERTY_FILTERED_WELL_CELLS)
|
|
{
|
|
m_propFilteredWellGeometryFrames[timeStepIndex]->updateCellEdgeResultColor( timeStepIndex, cellResultSlot, cellEdgeResultSlot );
|
|
}
|
|
else
|
|
{
|
|
m_geometries[geometryType].updateCellEdgeResultColor(timeStepIndex, cellResultSlot, cellEdgeResultSlot );
|
|
}
|
|
}
|