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author | saurabhb17 | 2020-02-26 16:00:53 +0530 |
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committer | GitHub | 2020-02-26 16:00:53 +0530 |
commit | 886d9cb772e81d2e5262284bc3082664f084337f (patch) | |
tree | 6acee185a4dc19113fcbf0f9a3d6941085dedaf7 /pcbnew/router/pns_meander_placer_base.cpp | |
parent | 0db48f6533517ecebfd9f0693f89deca28408b76 (diff) | |
parent | aa35045840b78d3f48212db45da59a2e5c69b223 (diff) | |
download | KiCad-eSim-886d9cb772e81d2e5262284bc3082664f084337f.tar.gz KiCad-eSim-886d9cb772e81d2e5262284bc3082664f084337f.tar.bz2 KiCad-eSim-886d9cb772e81d2e5262284bc3082664f084337f.zip |
Merge pull request #1 from saurabhb17/develop
Added main functions
Diffstat (limited to 'pcbnew/router/pns_meander_placer_base.cpp')
-rw-r--r-- | pcbnew/router/pns_meander_placer_base.cpp | 187 |
1 files changed, 187 insertions, 0 deletions
diff --git a/pcbnew/router/pns_meander_placer_base.cpp b/pcbnew/router/pns_meander_placer_base.cpp new file mode 100644 index 0000000..0a655e4 --- /dev/null +++ b/pcbnew/router/pns_meander_placer_base.cpp @@ -0,0 +1,187 @@ +/* + * KiRouter - a push-and-(sometimes-)shove PCB router + * + * Copyright (C) 2013-2015 CERN + * Author: Tomasz Wlostowski <tomasz.wlostowski@cern.ch> + * + * This program 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. + * + * This program 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 for more details. + * + * You should have received a copy of the GNU General Public License along + * with this program. If not, see <http://www.gnu.org/licenses/>. + */ + +#include "pns_router.h" +#include "pns_meander.h" +#include "pns_meander_placer_base.h" + +PNS_MEANDER_PLACER_BASE::PNS_MEANDER_PLACER_BASE( PNS_ROUTER* aRouter ) : + PNS_PLACEMENT_ALGO( aRouter ) +{ + m_currentWidth = 0; +} + + +PNS_MEANDER_PLACER_BASE::~PNS_MEANDER_PLACER_BASE() +{ +} + + +void PNS_MEANDER_PLACER_BASE::AmplitudeStep( int aSign ) +{ + int a = m_settings.m_maxAmplitude + aSign * m_settings.m_step; + a = std::max( a, m_settings.m_minAmplitude ); + + m_settings.m_maxAmplitude = a; +} + + +void PNS_MEANDER_PLACER_BASE::SpacingStep( int aSign ) +{ + int s = m_settings.m_spacing + aSign * m_settings.m_step; + s = std::max( s, 2 * m_currentWidth ); + + m_settings.m_spacing = s; +} + + +void PNS_MEANDER_PLACER_BASE::UpdateSettings( const PNS_MEANDER_SETTINGS& aSettings ) +{ + m_settings = aSettings; +} + + +void PNS_MEANDER_PLACER_BASE::cutTunedLine( const SHAPE_LINE_CHAIN& aOrigin, + const VECTOR2I& aTuneStart, + const VECTOR2I& aCursorPos, + SHAPE_LINE_CHAIN& aPre, + SHAPE_LINE_CHAIN& aTuned, + SHAPE_LINE_CHAIN& aPost ) +{ + VECTOR2I cp ( aCursorPos ); + + if ( cp == aTuneStart ) // we don't like tuning segments with 0 length + { + int idx = aOrigin.FindSegment( cp ); + if( idx >= 0 ) + { + const SEG& s = aOrigin.CSegment( idx ); + cp += (s.B - s.A).Resize(2); + } else + cp += VECTOR2I (2, 5); // some arbitrary value that is not 45 degrees oriented + } + + VECTOR2I n = aOrigin.NearestPoint( cp ); + VECTOR2I m = aOrigin.NearestPoint( aTuneStart ); + + SHAPE_LINE_CHAIN l( aOrigin ); + l.Split( n ); + l.Split( m ); + + int i_start = l.Find( m ); + int i_end = l.Find( n ); + + if( i_start > i_end ) + { + l = l.Reverse(); + i_start = l.Find( m ); + i_end = l.Find( n ); + } + + aPre = l.Slice( 0, i_start ); + aPost = l.Slice( i_end, -1 ); + aTuned = l.Slice( i_start, i_end ); + + aTuned.Simplify(); +} + + +void PNS_MEANDER_PLACER_BASE::tuneLineLength( PNS_MEANDERED_LINE& aTuned, int aElongation ) +{ + int remaining = aElongation; + bool finished = false; + + BOOST_FOREACH( PNS_MEANDER_SHAPE* m, aTuned.Meanders() ) + { + if( m->Type() != MT_CORNER ) + { + if( remaining >= 0 ) + remaining -= m->MaxTunableLength() - m->BaselineLength(); + + if( remaining < 0 ) + { + if( !finished ) + { + PNS_MEANDER_TYPE newType; + + if( m->Type() == MT_START || m->Type() == MT_SINGLE ) + newType = MT_SINGLE; + else + newType = MT_FINISH; + + m->SetType( newType ); + m->Recalculate(); + + finished = true; + } else { + m->MakeEmpty(); + } + } + } + } + + remaining = aElongation; + int meanderCount = 0; + + BOOST_FOREACH(PNS_MEANDER_SHAPE* m, aTuned.Meanders()) + { + if( m->Type() != MT_CORNER && m->Type() != MT_EMPTY ) + { + if(remaining >= 0) + { + remaining -= m->MaxTunableLength() - m->BaselineLength(); + meanderCount ++; + } + } + } + + int balance = 0; + + if( meanderCount ) + balance = -remaining / meanderCount; + + if( balance >= 0 ) + { + BOOST_FOREACH( PNS_MEANDER_SHAPE* m, aTuned.Meanders() ) + { + if( m->Type() != MT_CORNER && m->Type() != MT_EMPTY ) + { + m->Resize( std::max( m->Amplitude() - balance / 2, m_settings.m_minAmplitude ) ); + } + } + } +} + + +const PNS_MEANDER_SETTINGS& PNS_MEANDER_PLACER_BASE::MeanderSettings() const +{ + return m_settings; +} + + +int PNS_MEANDER_PLACER_BASE::compareWithTolerance( int aValue, int aExpected, int aTolerance ) const +{ + if( aValue < aExpected - aTolerance ) + return -1; + else if( aValue > aExpected + aTolerance ) + return 1; + else + return 0; +} |