FreeCAD / src /Mod /TechDraw /App /DrawDimHelper.cpp
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/***************************************************************************
* Copyright (c) 2019 WandererFan <wandererfan@gmail.com> *
* *
* This file is part of the FreeCAD CAx development system. *
* *
* This library is free software; you can redistribute it and/or *
* modify it under the terms of the GNU Library General Public *
* License as published by the Free Software Foundation; either *
* version 2 of the License, or (at your option) any later version. *
* *
* This library 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 Library General Public License for more details. *
* *
* You should have received a copy of the GNU Library General Public *
* License along with this library; see the file COPYING.LIB. If not, *
* write to the Free Software Foundation, Inc., 59 Temple Place, *
* Suite 330, Boston, MA 02111-1307, USA *
* *
***************************************************************************/
# include <cstdlib>
# include <limits>
# include <sstream>
# include <Bnd_Box.hxx>
# include <BRepBndLib.hxx>
# include <BRep_Builder.hxx>
# include <BRepBuilderAPI_MakeEdge.hxx>
# include <BRepExtrema_DistShapeShape.hxx>
# include <Geom_Line.hxx>
# include <gp_Pln.hxx>
# include <TopoDS_Edge.hxx>
#include <App/Document.h>
#include <App/DocumentObject.h>
#include <Base/Console.h>
#include <Base/Interpreter.h>
#include <Base/Vector3D.h>
#include "DrawDimHelper.h"
#include "Cosmetic.h"
#include "DrawPage.h"
#include "DrawUtil.h"
#include "DrawViewDimension.h"
#include "DrawViewDimExtent.h"
#include "DrawViewPart.h"
#include "Geometry.h"
#include "GeometryObject.h"
#define HORIZONTAL 0
#define VERTICAL 1
#define LENGTH 2
using namespace TechDraw;
DrawViewDimension* DrawDimHelper::makeExtentDim(DrawViewPart* dvp,
const std::string& dimType, ReferenceVector references2d)
{
std::vector<std::string> edgeNames;
for (auto& ref : references2d) {
if (ref.getSubName().empty()) {
continue;
}
std::string geomType = DrawUtil::getGeomTypeFromName(ref.getSubName());
if (geomType == "Edge") {
edgeNames.push_back(ref.getSubName());
}
}
int direction = dimType == "DistanceX" ? 0 : dimType == "DistanceY" ? 1 : 2;
return makeExtentDim(dvp, edgeNames, direction);
}
DrawViewDimension* DrawDimHelper::makeExtentDim(DrawViewPart* dvp, std::vector<std::string> edgeNames,
int direction)
{
// Base::Console().message("DDH::makeExtentDim() - dvp: %s edgeNames: %d\n",
// dvp->Label.getValue(), edgeNames.size());
if (!dvp) {
return nullptr;
}
std::string dimType = "DistanceX";
int dimNum = 0;
if (direction == VERTICAL) {
dimType = "DistanceY";
dimNum = 1;
}
else if (direction == LENGTH) {
dimType = "Distance";
dimNum = 2;
}
DrawPage* page = dvp->findParentPage();
std::string pageName = page->getNameInDocument();
App::Document* doc = dvp->getDocument();
std::string dimName = doc->getUniqueObjectName("DimExtent");
Base::Interpreter().runStringArg(
"App.activeDocument().addObject('TechDraw::DrawViewDimExtent', '%s')", dimName.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.translateLabel('DrawViewDimExtent', 'DimExtent', '%s')",
dimName.c_str(), dimName.c_str()); Base::Interpreter().runStringArg(
"App.activeDocument().%s.Type = '%s'", dimName.c_str(), dimType.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.DirExtent = %d", dimName.c_str(), dimNum);
auto* dimExt = freecad_cast<DrawViewDimExtent*>(doc->getObject(dimName.c_str()));
if (!dimExt) {
throw Base::TypeError("Dim extent not found");
}
dimExt->Source.setValue(dvp, edgeNames);
ReferenceVector newRefs;
if (edgeNames.empty()) {
ReferenceEntry emptyRef(dvp, std::string());
newRefs.push_back(emptyRef);
}
else {
for (auto& edge : edgeNames) {
ReferenceEntry ref(dvp, edge);
newRefs.push_back(ref);
}
}
dimExt->setReferences2d(newRefs);
Base::Interpreter().runStringArg("App.activeDocument().%s.addView(App.activeDocument().%s)",
pageName.c_str(),
dimName.c_str());
dimExt->recomputeFeature();
return dimExt;
}
void DrawDimHelper::makeExtentDim3d(DrawViewPart* dvp, const std::string& dimType, ReferenceVector references3d)
{
int direction = dimType == "DistanceX" ? 0 : dimType == "DistanceY" ? 1 : 2;
return makeExtentDim3d(dvp, references3d, direction);
}
void DrawDimHelper::makeExtentDim3d(DrawViewPart* dvp, ReferenceVector references, int direction)
{
// Base::Console().message("DDH::makeExtentDim3d() - dvp: %s references: %d\n",
// dvp->Label.getValue(), references.size());
if (!dvp) {
return;
}
std::string dimType = "DistanceX";
int dimNum = 0;
if (direction == VERTICAL) {
dimType = "DistanceY";
dimNum = 1;
}
DrawPage* page = dvp->findParentPage();
std::string pageName = page->getNameInDocument();
App::Document* doc = dvp->getDocument();
std::string dimName = doc->getUniqueObjectName("DimExtent");
Base::Interpreter().runStringArg(
"App.activeDocument().addObject('TechDraw::DrawViewDimExtent', '%s')", dimName.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.translateLabel('DrawViewDimExtent', 'DimExtent', '%s')",
dimName.c_str(), dimName.c_str()); Base::Interpreter().runStringArg(
"App.activeDocument().%s.Type = '%s'", dimName.c_str(), dimType.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.DirExtent = %d", dimName.c_str(), dimNum);
auto* dimExt = freecad_cast<DrawViewDimExtent*>(doc->getObject(dimName.c_str()));
if (!dimExt) {
throw Base::TypeError("Dim extent not found");
}
dimExt->Source.setValue(dvp);
std::vector<App::DocumentObject*> objs3d;
std::vector<std::string> subs3d;
for (auto& ref : references) {
objs3d.push_back(ref.getObject());
subs3d.push_back(ref.getSubName());
}
dimExt->Source3d.setValues(objs3d, subs3d);
ReferenceVector newRefs2d;
ReferenceEntry emptyRef(dvp, std::string());
newRefs2d.push_back(emptyRef);
dimExt->setReferences2d(newRefs2d);
dimExt->setReferences3d(references);
Base::Interpreter().runStringArg("App.activeDocument().%s.addView(App.activeDocument().%s)",
pageName.c_str(),
dimName.c_str());
dimExt->recomputeFeature();
}
std::pair<Base::Vector3d, Base::Vector3d>
DrawDimHelper::minMax(DrawViewPart* dvp, std::vector<std::string> edgeNames, int direction)
{
// Base::Console().message("DDH::minMax() - edgeName: %d\n", edgeNames.size());
std::pair<Base::Vector3d, Base::Vector3d> result;
Base::Vector3d refMin;
Base::Vector3d refMax;
gp_Ax3 projAx3;// OXYZ
gp_Pln projPlane(projAx3);
BaseGeomPtrVector edgeGeomList;
if (!edgeNames.empty() && !edgeNames.front().empty()) {
//we have edge names and the first one isn't null
for (auto& n : edgeNames) {
std::string geomType = DrawUtil::getGeomTypeFromName(n);
if (geomType == "Edge") {
int i = DrawUtil::getIndexFromName(n);
BaseGeomPtr bg = dvp->getGeomByIndex(i);
if (bg) {
edgeGeomList.push_back(bg);
}
}
}
}
else {
for (auto& edge : dvp->getEdgeGeometry()) {
if (!edge->getCosmetic()) {
// skip cosmetic edges
edgeGeomList.push_back(edge);
}
}
}
if (edgeGeomList.empty()) {
return result;
}
Bnd_Box edgeBbx;
edgeBbx.SetGap(1.0);//make the box a bit bigger
std::vector<TopoDS_Edge> inEdges;
for (auto& bg : edgeGeomList) {
inEdges.push_back(bg->getOCCEdge());
BRepBndLib::Add(bg->getOCCEdge(), edgeBbx);
}
double minX, minY, minZ, maxX, maxY, maxZ;
edgeBbx.Get(minX, minY, minZ, maxX, maxY, maxZ);
double xMid = (maxX + minX) / 2.0;
double yMid = (maxY + minY) / 2.0;
gp_Pnt rightMid(maxX, yMid, 0.0);
gp_Pnt leftMid(minX, yMid, 0.0);
gp_Pnt topMid(xMid, maxY, 0.0);
gp_Pnt bottomMid(xMid, minY, 0.0);
gp_Dir xDir(1.0, 0.0, 0.0);
gp_Dir yDir(0.0, 1.0, 0.0);
if (direction == HORIZONTAL) {
Handle(Geom_Line) lineLeft = new Geom_Line(leftMid, yDir);
BRepBuilderAPI_MakeEdge mkEdgeLeft(lineLeft);
TopoDS_Edge edgeLeft = mkEdgeLeft.Edge();
gp_Pnt leftPoint = findClosestPoint(inEdges, edgeLeft);
Handle(Geom_Line) lineRight = new Geom_Line(rightMid, yDir);
BRepBuilderAPI_MakeEdge mkEdgeRight(lineRight);
TopoDS_Edge edgeRight = mkEdgeRight.Edge();
gp_Pnt rightPoint = findClosestPoint(inEdges, edgeRight);
refMin = Base::Vector3d(leftPoint.X(), leftPoint.Y(), 0.0);
refMax = Base::Vector3d(rightPoint.X(), rightPoint.Y(), 0.0);
}
else if (direction == VERTICAL) {
Handle(Geom_Line) lineBottom = new Geom_Line(bottomMid, xDir);
BRepBuilderAPI_MakeEdge mkEdgeBottom(lineBottom);
TopoDS_Edge edgeBottom = mkEdgeBottom.Edge();
gp_Pnt bottomPoint = findClosestPoint(inEdges, edgeBottom);
Handle(Geom_Line) lineTop = new Geom_Line(topMid, xDir);
BRepBuilderAPI_MakeEdge mkEdgeTop(lineTop);
TopoDS_Edge edgeTop = mkEdgeTop.Edge();
gp_Pnt topPoint = findClosestPoint(inEdges, edgeTop);
refMin = Base::Vector3d(bottomPoint.X(), bottomPoint.Y(), 0.0);
refMax = Base::Vector3d(topPoint.X(), topPoint.Y(), 0.0);
}
result.first = refMin;
result.second = refMax;
return result;
}
//given list of curves, find the closest point from any curve to a boundary
//computation intensive for a cosmetic result.
gp_Pnt DrawDimHelper::findClosestPoint(std::vector<TopoDS_Edge> inEdges, TopoDS_Edge& boundary)
{
// Base::Console().message("DDH::findClosestPoint() - edges: %d\n", inEdges.size());
//
//find an extent point that is actually on one of the curves
double minDistance(std::numeric_limits<float>::max());
gp_Pnt nearPoint;
for (auto& edge : inEdges) {
BRepExtrema_DistShapeShape extss(edge, boundary);
if (!extss.IsDone()) {
Base::Console().warning(
"DDH::findClosestPoint - BRepExtrema_DistShapeShape failed - 1\n");
continue;
}
if (extss.NbSolution() == 0) {
Base::Console().warning(
"DDH::findClosestPoint - BRepExtrema_DistShapeShape failed - 2\n");
continue;
}
if (extss.Value() < minDistance) {
minDistance = extss.Value();
nearPoint = extss.PointOnShape1(1);
}
}
return nearPoint;
}
std::pair<Base::Vector3d, Base::Vector3d>
DrawDimHelper::minMax3d(DrawViewPart* dvp, ReferenceVector references, int direction)
{
// Base::Console().message("DDH::minMax3d() - references: %d\n", references.size());
std::pair<Base::Vector3d, Base::Vector3d> result;
Base::Vector3d refMin;
Base::Vector3d refMax;
gp_Ax3 projAx3;//OXYZ
gp_Pln projPlane(projAx3);
BRep_Builder builder;
TopoDS_Compound comp;
builder.MakeCompound(comp);
for (auto& ref : references) {
auto tempGeom = ref.getGeometry();
if (tempGeom.IsNull()) {
continue;
}
builder.Add(comp, tempGeom);
}
Base::Vector3d centroid = dvp->getOriginalCentroid();
TopoDS_Shape centeredShape =//this result is a throw away. We will work with comp.
DrawViewPart::centerScaleRotate(dvp, comp, centroid);
//project the selected 3d shapes in the dvp's coord system
TechDraw::GeometryObjectPtr go(
std::make_shared<TechDraw::GeometryObject>(std::string(), nullptr));
go->setIsoCount(0);
go->isPerspective(false);
go->usePolygonHLR(false);
go->projectShape(comp, dvp->getProjectionCS());
auto edges = go->getEdgeGeometry();
if (edges.empty()) {
return result;
}
Bnd_Box shapeBbx;
shapeBbx.SetGap(1.0);//make the box a bit bigger
std::vector<TopoDS_Edge> inEdges;
for (auto& bg : edges) {
inEdges.push_back(bg->getOCCEdge());
BRepBndLib::Add(bg->getOCCEdge(), shapeBbx);
}
//from here on this is the same as 2d method
double minX, minY, minZ, maxX, maxY, maxZ;
shapeBbx.Get(minX, minY, minZ, maxX, maxY, maxZ);
double xMid = (maxX + minX) / 2.0;
double yMid = (maxY + minY) / 2.0;
gp_Pnt rightMid(maxX, yMid, 0.0);
gp_Pnt leftMid(minX, yMid, 0.0);
gp_Pnt topMid(xMid, maxY, 0.0);
gp_Pnt bottomMid(xMid, minY, 0.0);
gp_Dir xDir(1.0, 0.0, 0.0);
gp_Dir yDir(0.0, 1.0, 0.0);
if (direction == HORIZONTAL) {
Handle(Geom_Line) lineLeft = new Geom_Line(leftMid, yDir);
BRepBuilderAPI_MakeEdge mkEdgeLeft(lineLeft);
TopoDS_Edge edgeLeft = mkEdgeLeft.Edge();
gp_Pnt leftPoint = findClosestPoint(inEdges, edgeLeft);
Handle(Geom_Line) lineRight = new Geom_Line(rightMid, yDir);
BRepBuilderAPI_MakeEdge mkEdgeRight(lineRight);
TopoDS_Edge edgeRight = mkEdgeRight.Edge();
gp_Pnt rightPoint = findClosestPoint(inEdges, edgeRight);
refMin = Base::Vector3d(leftPoint.X(), leftPoint.Y(), 0.0);
refMax = Base::Vector3d(rightPoint.X(), rightPoint.Y(), 0.0);
}
else if (direction == VERTICAL) {
Handle(Geom_Line) lineBottom = new Geom_Line(bottomMid, xDir);
BRepBuilderAPI_MakeEdge mkEdgeBottom(lineBottom);
TopoDS_Edge edgeBottom = mkEdgeBottom.Edge();
gp_Pnt bottomPoint = findClosestPoint(inEdges, edgeBottom);
Handle(Geom_Line) lineTop = new Geom_Line(topMid, xDir);
BRepBuilderAPI_MakeEdge mkEdgeTop(lineTop);
TopoDS_Edge edgeTop = mkEdgeTop.Edge();
gp_Pnt topPoint = findClosestPoint(inEdges, edgeTop);
refMin = Base::Vector3d(bottomPoint.X(), bottomPoint.Y(), 0.0);
refMax = Base::Vector3d(topPoint.X(), topPoint.Y(), 0.0);
}
result.first = refMin;
result.second = refMax;
return result;
}
DrawViewDimension*
DrawDimHelper::makeDistDim(DrawViewPart* dvp, std::string dimType,
Base::Vector3d inMin,//is this scaled or unscaled??
Base::Vector3d inMax,//expects scaled from makeExtentDim
bool extent)
{
// Base::Console().message("DDH::makeDistDim() - inMin: %s inMax: %s\n",
// DrawUtil::formatVector(inMin).c_str(),
// DrawUtil::formatVector(inMax).c_str());
TechDraw::DrawPage* page = dvp->findParentPage();
std::string pageName = page->getNameInDocument();
TechDraw::DrawViewDimension* dim = nullptr;
App::Document* doc = dvp->getDocument();
std::string dimName = doc->getUniqueObjectName("Dimension");
if (extent) {
dimName = doc->getUniqueObjectName("DimExtent");
}
std::vector<TechDraw::VertexPtr> gVerts = dvp->getVertexGeometry();
// invert the point so the math works correctly
Base::Vector3d cleanMin = DrawUtil::invertY(inMin);
cleanMin = CosmeticVertex::makeCanonicalPoint(dvp, cleanMin);
std::string tag1 = dvp->addCosmeticVertex(cleanMin);
int iGV1 = dvp->add1CVToGV(tag1);
Base::Vector3d cleanMax = DrawUtil::invertY(inMax);
cleanMax = CosmeticVertex::makeCanonicalPoint(dvp, cleanMax);
std::string tag2 = dvp->addCosmeticVertex(cleanMax);
int iGV2 = dvp->add1CVToGV(tag2);
gVerts = dvp->getVertexGeometry();
std::vector<App::DocumentObject*> objs;
std::vector<std::string> subs;
std::stringstream ss;
ss << "Vertex" << iGV1;
std::string vertexName = ss.str();
subs.push_back(vertexName);
objs.push_back(dvp);
ss.clear();
ss.str(std::string());
ss << "Vertex" << iGV2;
vertexName = ss.str();
subs.push_back(vertexName);
objs.push_back(dvp);
if (extent) {
Base::Interpreter().runStringArg(
"App.activeDocument().addObject('TechDraw::DrawViewDimExtent', '%s')", dimName.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.translateLabel('DrawViewDimExtent', 'DimExtent', '%s')",
dimName.c_str(), dimName.c_str());
}
else {
Base::Interpreter().runStringArg(
"App.activeDocument().addObject('TechDraw::DrawViewDimension', '%s')", dimName.c_str());
Base::Interpreter().runStringArg(
"App.activeDocument().%s.translateLabel('DrawViewDimimension', 'Dimension', '%s')",
dimName.c_str(), dimName.c_str());
}
Base::Interpreter().runStringArg(
"App.activeDocument().%s.Type = '%s'", dimName.c_str(), dimType.c_str());
dim = dynamic_cast<TechDraw::DrawViewDimension*>(doc->getObject(dimName.c_str()));
if (!dim) {
throw Base::TypeError("DDH::makeDistDim - dim not found\n");
}
dim->References2D.setValues(objs, subs);
Base::Interpreter().runStringArg("App.activeDocument().%s.addView(App.activeDocument().%s)",
pageName.c_str(),
dimName.c_str());
dvp->requestPaint();
return dim;
}