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envi-code/SourceCode/Code2026/AdsXRx/XPoint.cpp
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gjm 164968b62e chore
把非utf8-bom编码的cpp/h文件改为 utf8 bom 编码, msvc识别utf8编码时,如果不是bom格式的,会使用当前cp_oem来解码.
2026-10-04 00:04:20 +08:00

314 lines
5.5 KiB
C++

//-----------------------------------------------------------------------------+
// Copyright (C), 1998-2007, SH Software Co. Ltd.
// = FileName : XPoint 点类
// = Version : ver2.0
// = Author : zjq
// = CreateDate : 2002-09-09
// = Description: XPoint 类定义
// = Maintainers:
//
//-----------------------------------------------------------------------------+
#include "StdAfx.h"
#include "XPoint.h"
#include "XCircle.h"
#include "XPlane.h"
#include "XLine.h"
#include "Entity.h"
#include "XPoly.h"
#include "XGlobalFunc.h"
#include "XPrivateGlobalFunc.h"
#include "geassign.h"
using namespace XExport;
using namespace XPrivate;
XPoint::~XPoint()
{
}
bool XPoint::operator > (const XPoint &pt) const
{
double dDis = x - pt.x;
if (dDis >XGeLib::_DIST_SNAP)
{
return true;
}
else if (dDis < -XGeLib::_DIST_SNAP)
{
return false;
}
else
{
dDis = y - pt.y;
if (dDis > XGeLib::_DIST_SNAP)
{
return true;
}
else if (dDis < -XGeLib::_DIST_SNAP)
{
return false;
}
else
{
return z-pt.z > XGeLib::_DIST_SNAP;
}
}
}
int XPoint::Project(const XLine* pLine, ads_point rp) const
{
//zjq 2009-08-31 投影方法 发现AcGe 没有原方案快
ASSERT(pLine != NULL);
return AT_pt_ProjectLine(*this, pLine->StartPoint(), pLine->EndPoint(), rp);
}
int XPoint::Project(const AcGeLine3d* pLine,ads_point rp) const
{
ASSERT(pLine != NULL);
return AT_pt_ProjectLine(*this, asDblArray(pLine->pointOnLine()), asDblArray(pLine->pointOnLine()), rp);
return RTNORM;
}
double XPoint::Distance(const XLine* pLine) const
{
//zjq 2009-9-20
ASSERT(pLine != NULL);
ads_real* pt0 = *this;
ads_real* pt1 = pLine->m_startPoint;
ads_real* pt2 = pLine->m_endPoint;
ads_point pt4;
struct plan_para plan;
XVector3D vt;
vt[0] = pt2[0] - pt1[0];
vt[1] = pt2[1] - pt1[1];
vt[2] = pt2[2] - pt1[2];
pt4[0]=pt0[0];
pt4[1]=pt0[1];
pt4[2]=pt0[2];
plan.A = vt[0];
plan.B = vt[1];
plan.C = vt[2];
plan.D = 0.0 - (vt[0] * pt0[0] + vt[1] * pt0[1] + vt[2] * pt0[2]);
double l, m, n, t;
double mid_var1, mid_var2;
l = pt2[0] - pt1[0];
m = pt2[1] - pt1[1];
n = pt2[2] - pt1[2];
mid_var1 = l * (plan.A) + m * (plan.B) + n * (plan.C);
if (fabs(mid_var1) < 0.000001)
{
return 0.0;
}
mid_var2 = (plan.D) + pt1[0] * (plan.A) + pt1[1] * (plan.B) + pt1[2] * (plan.C);
t = 0.0 - mid_var2 / mid_var1;
pt4[0] = pt1[0] + l * t;
pt4[1] = pt1[1] + m * t;
pt4[2] = pt1[2] + n * t;
return ads_distance(pt0, pt4);
}
inline int XPoint::Modify(const Entity* pEntity) const
{
Entity ent = *pEntity;
ent.SetData(10, &x);
return ent.Modify();
}
inline int XPoint::MakeEntity(const Entity* pEntity) const
{
Entity ent = *pEntity;
Groups g(_T("*"));
RBList ebuf = ads_entgetx(ent, (resbuf *)&g);
ebuf.SetData(10, &x);
return ads_entmake(ebuf);
}
int XPoint::Project(const XCircle* pCir, ads_point rp) const
{
//zjq 2009-08-31
ASSERT(pCir != NULL);
XLine aLine(XPoint(x, y, pCir->m_ptCenter.z), pCir->m_ptCenter);
XPoint pt1, pt2;
if (aLine.Intersection(pCir, pt1, pt2) == 2)
{
if (ads_distance(&x, pt1) < ads_distance(&x, pt2))
{
pt1 > rp;
}
else
{
pt2 > rp;
}
return RTNORM;
}
return RTERROR;
}
XPoint XPoint::Project(const XPlane* pPlan) const
{
ASSERT(pPlan != NULL);
XPoint ptEnd = *this + XVector3D(pPlan->GetParaA(), pPlan->GetParaB(), pPlan->GetParaC());
XLine ln(*this, ptEnd);
XPoint ptRet;
VERIFY(pPlan->Intersect(ln, ptRet) != FALSE);
return ptRet;
}
void XPoint::GetRotationMatrix(ads_real dRot, ads_matrix mat) const
{
ads_matrix matRot =
{
{cos(dRot), -sin(dRot), 0, 0},
{sin(dRot), cos(dRot), 0, 0},
{0, 0, 1, 0},
{0, 0, 0, 1}
};
if (*this == XPoint())
{
memcpy(mat, matRot, sizeof(matRot));
}
else
{
ads_matrix matMov =
{
{1, 0, 0, -x},
{0, 1, 0, -y},
{0, 0, 1, -z},
{0, 0, 0, 1}
};
ads_matrix matMov1 =
{
{1, 0, 0, x},
{0, 1, 0, y},
{0, 0, 1, z},
{0, 0, 0, 1}
};
MatrixMultiply(mat, matMov1, matRot, matMov, NULL);
}
}
void XPoint::GetScaleMatrix(ads_real nScale, ads_matrix mat) const
{
ads_matrix matScale =
{
{nScale, 0, 0, 0},
{0, nScale, 0, 0},
{0, 0, nScale, 0},
{0, 0, 0, 1}
};
if (*this == XPoint())
{
memcpy(mat, matScale, sizeof(ads_matrix));
}
else
{
ads_matrix matMov =
{
{1, 0, 0, -x},
{0, 1, 0, -y},
{0, 0, 1, -z},
{0, 0, 0, 1}
};
ads_matrix matMov1 =
{
{1, 0, 0, x},
{0, 1, 0, y},
{0, 0, 1, z},
{0, 0, 0, 1}
};
MatrixMultiply(mat, matMov1, matScale, matMov, NULL);
}
}
void XPoint::GetScaleMatrix(ads_real sx, ads_real sy, ads_real sz, ads_matrix mat) const
{
ads_matrix matScale =
{
{sx, 0, 0, 0},
{0, sy, 0, 0},
{0, 0, sz, 0},
{0, 0, 0, 1}
};
if (*this == XPoint())
{
memcpy(mat, matScale, sizeof(ads_matrix));
}
else
{
ads_matrix matMov =
{
{1, 0, 0, -x},
{0, 1, 0, -y},
{0, 0, 1, -z},
{0, 0, 0, 1}
};
ads_matrix matMov1 =
{
{1, 0, 0, x},
{0, 1, 0, y},
{0, 0, 1, z},
{0, 0, 0, 1}
};
MatrixMultiply(mat, matMov1, matScale, matMov, NULL);
}
}
void XPoint::GetMoveMatrix(const XPoint &ptDest, ads_matrix mat) const
{
XVector3D vt = ptDest - (*this);
ads_matrix matMove =
{
{1, 0, 0, vt.x},
{0, 1, 0, vt.y},
{0, 0, 1, vt.z},
{0, 0, 0, 1}
};
memcpy(mat, matMove, sizeof(ads_matrix));
}
int XPoint::Make(const TCHAR *pszLay) const
{
TCHAR szLayer[80] = _T("");
if (pszLay)
{
_tcscpy(szLayer, pszLay);
}
else
{
xg_getvar(_T("clayer"), szLayer);
}
return XExport::MakeEntity(RTDXF0, _T("POINT"), 8, szLayer, 10, &x, NULL);
}