///////////////////////////////////////////////////////////////////////////////// // // Copyright (C) 2018- Statoil 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 // for more details. // ///////////////////////////////////////////////////////////////////////////////// #include "RicCreateWellTargetsPickEventHandler.h" #include "RiaOffshoreSphericalCoords.h" #include "RigWellPath.h" #include "Rim3dView.h" #include "RimModeledWellPath.h" #include "RimWellPath.h" #include "RimWellPathGeometryDef.h" #include "RimWellPathTarget.h" #include "RiuViewerCommands.h" #include "RivWellPathSourceInfo.h" #include "cafDisplayCoordTransform.h" #include "cafSelectionManager.h" #include //-------------------------------------------------------------------------------------------------- /// //-------------------------------------------------------------------------------------------------- RicCreateWellTargetsPickEventHandler::RicCreateWellTargetsPickEventHandler(RimWellPathGeometryDef* wellGeometryDef) : m_geometryToAddTargetsTo(wellGeometryDef) { } //-------------------------------------------------------------------------------------------------- /// //-------------------------------------------------------------------------------------------------- RicCreateWellTargetsPickEventHandler::~RicCreateWellTargetsPickEventHandler() {} //-------------------------------------------------------------------------------------------------- /// //-------------------------------------------------------------------------------------------------- void RicCreateWellTargetsPickEventHandler::notifyUnregistered() { m_geometryToAddTargetsTo->enableTargetPointPicking(false); } //-------------------------------------------------------------------------------------------------- /// //-------------------------------------------------------------------------------------------------- bool RicCreateWellTargetsPickEventHandler::handlePickEvent(const Ric3DPickEvent& eventObject) { if (!caf::SelectionManager::instance()->isSelected(m_geometryToAddTargetsTo.p(), 0)) { m_geometryToAddTargetsTo->enableTargetPointPicking(false); return false; } if (m_geometryToAddTargetsTo) { Rim3dView* rimView = eventObject.m_view; cvf::Vec3d targetPointInDomain = cvf::Vec3d::ZERO; // If clicked on an other well path, snap target point to well path center line auto firstPickItem = eventObject.m_pickItemInfos.front(); auto wellPathSourceInfo = dynamic_cast(firstPickItem.sourceInfo()); auto intersectionPointInDomain = rimView->displayCoordTransform()->transformToDomainCoord(firstPickItem.globalPickedPoint()); bool doSetAzimuthAndInclination = false; double azimuth = 0.0; double inclination = 0.0; if (wellPathSourceInfo) { targetPointInDomain = wellPathSourceInfo->closestPointOnCenterLine(firstPickItem.faceIdx(), intersectionPointInDomain); double md = wellPathSourceInfo->measuredDepth(firstPickItem.faceIdx(), intersectionPointInDomain); doSetAzimuthAndInclination = calculateAzimuthAndInclinationAtMd( md, wellPathSourceInfo->wellPath()->wellPathGeometry(), &azimuth, &inclination); } else { targetPointInDomain = intersectionPointInDomain; doSetAzimuthAndInclination = false; } if (!m_geometryToAddTargetsTo->firstActiveTarget()) { m_geometryToAddTargetsTo->setReferencePointXyz(targetPointInDomain); if (wellPathSourceInfo) { double mdrkbAtFirstTarget = wellPathSourceInfo->measuredDepth(firstPickItem.faceIdx(), intersectionPointInDomain); RimModeledWellPath* modeledWellPath = dynamic_cast(wellPathSourceInfo->wellPath()); if (modeledWellPath) { mdrkbAtFirstTarget += modeledWellPath->geometryDefinition()->mdrkbAtFirstTarget(); } m_geometryToAddTargetsTo->setMdrkbAtFirstTarget(mdrkbAtFirstTarget); } } cvf::Vec3d referencePoint = m_geometryToAddTargetsTo->referencePointXyz(); cvf::Vec3d relativeTagetPoint = targetPointInDomain - referencePoint; RimWellPathTarget* newTarget = new RimWellPathTarget; if (doSetAzimuthAndInclination) { newTarget->setAsPointXYZAndTangentTarget( cvf::Vec3d(relativeTagetPoint.x(), relativeTagetPoint.y(), relativeTagetPoint.z()), azimuth, inclination); } else { newTarget->setAsPointTargetXYD(cvf::Vec3d(relativeTagetPoint.x(), relativeTagetPoint.y(), -relativeTagetPoint.z())); } m_geometryToAddTargetsTo->insertTarget(nullptr, newTarget); m_geometryToAddTargetsTo->updateConnectedEditors(); m_geometryToAddTargetsTo->updateWellPathVisualization(); return true; // Todo: See if we really should eat the event instead } return false; } //-------------------------------------------------------------------------------------------------- /// //-------------------------------------------------------------------------------------------------- bool RicCreateWellTargetsPickEventHandler::calculateAzimuthAndInclinationAtMd(double measuredDepth, const RigWellPath* wellPathGeometry, double* azimuth, double* inclination) const { int mdIndex = -1; auto mdList = wellPathGeometry->measureDepths(); for (int i = 0; i < (int)mdList.size(); i++) { if (mdList[i] > measuredDepth) { mdIndex = i - 1; break; } } auto ptList = wellPathGeometry->wellPathPoints(); if (mdIndex > 0 && mdIndex < (int)ptList.size() - 2) { auto v1 = cvf::Vec3d(ptList[mdIndex - 1]); auto v2 = cvf::Vec3d(ptList[mdIndex]); auto v3 = cvf::Vec3d(ptList[mdIndex + 1]); auto v4 = cvf::Vec3d(ptList[mdIndex + 2]); auto v21 = v2 - v1; auto v32 = v3 - v2; auto v43 = v4 - v3; v21.normalize(); v32.normalize(); v43.normalize(); auto v13mean = (v21 + v32) / 2; auto v24mean = (v32 + v43) / 2; double weight = (measuredDepth - mdList[mdIndex]) / (mdList[mdIndex + 1] - mdList[mdIndex]); auto vTan = v13mean * weight + v24mean * (1 - weight); RiaOffshoreSphericalCoords coords(vTan); *azimuth = coords.azi(); *inclination = coords.inc(); return true; } *azimuth = 0.0; *inclination = 0.0; return false; }