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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

187 lines
3.0 KiB
C++

#include "StdAfx.h"
#include "GeSector.h"
#include "globalFunc.h"
using namespace GlobalFunc;
GeSector::GeSector()
{
m_dstartAngle = 0.0;
m_dendAngle = 2.0*PI;
}
GeSector::GeSector(double dStAng, double dEndAng)
{
m_dstartAngle = dStAng;
m_dendAngle = dEndAng;
}
GeSector::GeSector(const GeSector &src)
{
m_dstartAngle = src.m_dstartAngle;
m_dendAngle = src.m_dendAngle;
}
GeSector::GeSector(const EntitySet & ent)
{
EntitySet entTmp = ent;
if (entTmp.Is(_T("ARC")))
{
entTmp.GetData(50, &m_dstartAngle);
entTmp.GetData(51, &m_dendAngle);
}
else
{
m_dstartAngle = 0.0;
m_dendAngle = PI * 2.0;
}
}
GeSector::~GeSector()
{
}
GeSector& GeSector::operator = (GeSector &src)
{
m_dstartAngle = src.m_dstartAngle;
m_dendAngle = src.m_dendAngle;
return *this;
}
bool GeSector::operator == (const GeSector &src) const
{
return (RealEqual(m_dstartAngle, src.m_dstartAngle, g_DimOption::instance()._angSnap) &&
RealEqual(m_dendAngle, src.m_dendAngle, g_DimOption::instance()._angSnap));
}
int GeSector::operator ! () const
{
return Bulge() < g_DimOption::instance()._angSnap;
}
double GeSector::Bulge() const
{
ads_real dBulge = m_dendAngle - m_dstartAngle;
if (dBulge < -1E-6)
{
dBulge = 2.0 * PI + dBulge;
}
return dBulge;
}
void GeSector::SetAngles(double dStart, double dEnd)
{
m_dstartAngle = dStart;
m_dendAngle = dEnd;
}
void GeSector::SetStarAngle(double dAngle)
{
m_dstartAngle = dAngle;
}
void GeSector::SetEndAngle(double dAngle)
{
m_dendAngle = dAngle;
}
double GeSector::GetStarAngle() const
{
return m_dstartAngle;
}
double GeSector::GetEndAngle() const
{
return m_dendAngle;
}
int GeSector::AngleFlag(double dAng) const
{
if (AngleRangeTo2PI(dAng - m_dstartAngle) < g_DimOption::instance()._angSnap)
{
return 1;
}
if (AngleRangeTo2PI(dAng - m_dendAngle) < g_DimOption::instance()._angSnap)
{
return 2;
}
int nTag = 0;
if (m_dstartAngle < m_dendAngle)
{
if (dAng > m_dstartAngle && dAng < m_dendAngle)
{
nTag = 3;
}
else
{
nTag = 0;
}
}
else
{
if (dAng > m_dstartAngle || dAng < m_dendAngle)
{
nTag = 3;
}
else
{
nTag = 0;
}
}
return nTag;
}
double* GeSector::NearAngle(double dAng)
{
double dEAng = AngleRangeTo2PI(m_dendAngle - m_dstartAngle),
dSrcAng = AngleRangeTo2PI(dAng - m_dstartAngle);
if (dSrcAng < g_DimOption::instance()._angSnap)
{
return &(m_dstartAngle);
}
else if (RealEqual(dSrcAng, dEAng, g_DimOption::instance()._angSnap))
{
return &(m_dendAngle);
}
else if (dSrcAng < dEAng) //弧内
{
if (dEAng - dSrcAng < dSrcAng)
{
return &(m_dendAngle);
}
else
{
return &(m_dstartAngle);
}
}
else //弧外
{
if (dSrcAng - dEAng < 2.0 * PI - dSrcAng)
{
return &(m_dendAngle);
}
else
{
return &(m_dstartAngle);
}
}
}
void GeSector::TransUCS(double dIncAngle)
{
m_dstartAngle = AngleRangeTo2PI(m_dstartAngle + dIncAngle);
m_dendAngle = AngleRangeTo2PI(m_dendAngle + dIncAngle);
}
double GeSector::MidAngle() const
{
return AngleRangeTo2PI(m_dstartAngle + Bulge() / 2.0);
}