/* * This program source code file is part of KiCad, a free EDA CAD application. * * Copyright (C) 1992-2017 Jean-Pierre Charras * Copyright (C) 2010 SoftPLC Corporation, Dick Hollenbeck * Copyright (C) 1992-2023 KiCad Developers, see AUTHORS.txt for contributors. * * 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 2 * 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, you may find one here: * http://www.gnu.org/licenses/old-licenses/gpl-2.0.html * or you may search the http://www.gnu.org website for the version 2 license, * or you may write to the Free Software Foundation, Inc., * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA */ /** * @file aperture_macro.cpp */ #include #include #include void APERTURE_MACRO::InitLocalParams( const D_CODE* aDcode ) { // store the initial values coming from aDcode into m_localParamValues // for n parameters, they are local params $1 to $n m_localParamValues.clear(); // Note: id_param = 1... n, not 0 for( unsigned id_param = 1; id_param <= aDcode->GetParamCount(); id_param++ ) m_localParamValues[id_param] = aDcode->GetParam( id_param ); m_paramLevelEval = 0; } void APERTURE_MACRO::EvalLocalParams( const AM_PRIMITIVE& aPrimitive ) { // Evaluate m_localParamValues from current m_paramLevelEval to // aPrimitive.m_LocalParamLevel // if m_paramLevelEval >= m_LocalParamLevel, do nothing: the // m_localParamValues are already up to date if( m_paramLevelEval >= aPrimitive.m_LocalParamLevel ) return; for( ; m_paramLevelEval < aPrimitive.m_LocalParamLevel; m_paramLevelEval++ ) { AM_PARAM& am_param = m_localParamStack.at( m_paramLevelEval ); int prm_index = am_param.GetIndex(); double value = am_param.GetValueFromMacro( this ); // if am_param value is not yet stored in m_localParamValues, add it. // if it is already in m_localParamValues, update its value; m_localParamValues[ prm_index ] = value; } } double APERTURE_MACRO::GetLocalParamValue( int aIndex ) { // return the local param value stored in m_localParamValues // if not existing, returns 0 if( m_localParamValues.find( aIndex ) != m_localParamValues.end() ) return m_localParamValues[ aIndex ]; return 0.0; } void APERTURE_MACRO::AddPrimitiveToList( AM_PRIMITIVE& aPrimitive ) { m_primitivesList.push_back( aPrimitive ); m_primitivesList.back().m_LocalParamLevel = m_localParamStack.size(); } void APERTURE_MACRO::AddLocalParamDefToStack() { m_localParamStack.push_back( AM_PARAM() ); } AM_PARAM& APERTURE_MACRO::GetLastLocalParamDefFromStack() { return m_localParamStack.back(); } SHAPE_POLY_SET* APERTURE_MACRO::GetApertureMacroShape( const GERBER_DRAW_ITEM* aParent, const VECTOR2I& aShapePos ) { SHAPE_POLY_SET holeBuffer; m_shape.RemoveAllContours(); D_CODE* dcode = aParent->GetDcodeDescr(); InitLocalParams( dcode ); for( AM_PRIMITIVE& prim_macro : m_primitivesList ) { if( prim_macro.m_Primitive_id == AMP_COMMENT ) continue; if( prim_macro.IsAMPrimitiveExposureOn( this ) ) { prim_macro.ConvertBasicShapeToPolygon( this, m_shape ); } else { prim_macro.ConvertBasicShapeToPolygon( this, holeBuffer ); if( holeBuffer.OutlineCount() ) // we have a new hole in shape: remove the hole { m_shape.BooleanSubtract( holeBuffer, SHAPE_POLY_SET::PM_FAST ); holeBuffer.RemoveAllContours(); } } } // Merge and cleanup basic shape polygons m_shape.Simplify( SHAPE_POLY_SET::PM_FAST ); // A hole can be is defined inside a polygon, or the polygons themselve can create // a hole when merged, so we must fracture the polygon to be able to drawn it // (i.e link holes by overlapping edges) m_shape.Fracture( SHAPE_POLY_SET::PM_FAST ); // Move m_shape to the actual draw position: for( int icnt = 0; icnt < m_shape.OutlineCount(); icnt++ ) { SHAPE_LINE_CHAIN& outline = m_shape.Outline( icnt ); for( int jj = 0; jj < outline.PointCount(); jj++ ) { VECTOR2I point = outline.CPoint( jj ); point += aShapePos; point = aParent->GetABPosition( point ); outline.SetPoint( jj, point ); } } return &m_shape; }