Pcbnew: gen drill functions: morecode cleanup
This commit is contained in:
parent
259d9a024c
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5944f4c405
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@ -1,5 +1,3 @@
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/////////////////////////////////////////////////////////////////////////////
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// Name: dialog_gendrill.cpp
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// Author: jean-pierre Charras
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// Licence: GPL
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@ -50,7 +48,7 @@ DIALOG_GENDRILL::DIALOG_GENDRILL( WinEDA_PcbFrame* parent ) :
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// Static members of DIALOG_GENDRILL
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int DIALOG_GENDRILL:: m_UnitDrillIsInch = true;
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int DIALOG_GENDRILL:: m_ZerosFormat = DECIMAL_FORMAT;
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int DIALOG_GENDRILL:: m_ZerosFormat = EXCELLON_WRITER::DECIMAL_FORMAT;
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bool DIALOG_GENDRILL::m_MinimalHeader = false;
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bool DIALOG_GENDRILL::m_Mirror = true;
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bool DIALOG_GENDRILL::m_DrillOriginIsAuxAxis = false;
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@ -96,7 +94,7 @@ void DIALOG_GENDRILL::InitDisplayParams( void )
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m_Choice_Unit->SetSelection( m_UnitDrillIsInch ? 1 : 0 );
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m_Choice_Precision->SetSelection( m_PrecisionFormat );
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m_Choice_Zeros_Format->SetSelection( m_ZerosFormat );
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if( m_ZerosFormat == DECIMAL_FORMAT )
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if( m_ZerosFormat == EXCELLON_WRITER::DECIMAL_FORMAT )
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m_Choice_Precision->Enable( false );
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UpdatePrecisionOptions( );
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@ -209,7 +207,8 @@ void DIALOG_GENDRILL::OnSelDrillUnitsSelected( wxCommandEvent& event )
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void DIALOG_GENDRILL::OnOkClick( wxCommandEvent& event )
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{
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GenDrillOrReportFiles( );
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GenDrillAndReportFiles( );
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EndModal( wxID_OK);
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}
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@ -220,7 +219,7 @@ void DIALOG_GENDRILL::OnOkClick( wxCommandEvent& event )
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void DIALOG_GENDRILL::OnCancelClick( wxCommandEvent& event )
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{
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UpdateConfig(); /* Save drill options: */
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event.Skip(); // Process the default cancel event (close dialog)
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EndModal( wxID_CANCEL); // Process the default cancel event (close dialog)
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}
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@ -248,7 +247,7 @@ void DIALOG_GENDRILL::UpdatePrecisionOptions( )
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m_Choice_Precision->SetString( 0, precisionListForMetric[0].GetPrecisionString() );
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m_Choice_Precision->SetString( 1, precisionListForMetric[1].GetPrecisionString() );
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}
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if( m_Choice_Zeros_Format->GetSelection()==DECIMAL_FORMAT )
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if( m_Choice_Zeros_Format->GetSelection() == EXCELLON_WRITER::DECIMAL_FORMAT )
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m_Choice_Precision->Enable( false );
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else
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m_Choice_Precision->Enable( true );
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@ -1,10 +1,30 @@
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/////////////////////////////////////////////////////////////////////////////
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/**
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*@file dialog_gendrill.h
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*/
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// Name: dialog_gendrill.h
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// Author: jean-pierre Charras
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// Created: 2010 apr 30
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// Licence: GPL
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/////////////////////////////////////////////////////////////////////////////
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/*
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* This program source code file is part of KICAD, a free EDA CAD application.
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*
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* Copyright (C) 1992-2010 Jean_Pierre Charras <jp.charras@iut.ujf-grenoble.fr>
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* Copyright (C) 1992-2010 Kicad Developers, see change_log.txt for contributors.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, you may find one here:
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* http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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* or you may search the http://www.gnu.org website for the version 2 license,
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* or you may write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#ifndef _DIALOG_GENDRILL_H_
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#define _DIALOG_GENDRILL_H_
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@ -14,15 +34,15 @@
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class DIALOG_GENDRILL : public DIALOG_GENDRILL_BASE
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{
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public:
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static int m_UnitDrillIsInch;
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static int m_ZerosFormat;
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static int m_PrecisionFormat;
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static bool m_MinimalHeader;
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static bool m_Mirror;
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static bool m_DrillOriginIsAuxAxis; /* Axis selection (main / auxiliary)
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* for drill origin coordinates */
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DRILL_PRECISION m_Precision; // Selected precision for drill files
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wxPoint m_FileDrillOffset; // Drill offset: 0,0 for absolute coordiantes, or auxialry axis origin
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static int m_UnitDrillIsInch;
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static int m_ZerosFormat;
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static int m_PrecisionFormat;
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static bool m_MinimalHeader;
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static bool m_Mirror;
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static bool m_DrillOriginIsAuxAxis; /* Axis selection (main / auxiliary)
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* for drill origin coordinates */
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DRILL_PRECISION m_Precision; // Selected precision for drill files
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wxPoint m_FileDrillOffset; // Drill offset: 0,0 for absolute coordiantes, or auxialry axis origin
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private:
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WinEDA_PcbFrame* m_Parent;
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@ -35,30 +55,33 @@ public: DIALOG_GENDRILL( WinEDA_PcbFrame* parent );
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~DIALOG_GENDRILL();
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private:
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// Initialises member variables
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void initDialog();
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void InitDisplayParams( void );
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void initDialog();
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void InitDisplayParams( void );
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// event functions
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void OnSelDrillUnitsSelected( wxCommandEvent& event );
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void OnSelZerosFmtSelected( wxCommandEvent& event );
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void OnOkClick( wxCommandEvent& event );
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void OnCancelClick( wxCommandEvent& event );
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void OnSelDrillUnitsSelected( wxCommandEvent& event );
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void OnSelZerosFmtSelected( wxCommandEvent& event );
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void OnOkClick( wxCommandEvent& event );
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void OnCancelClick( wxCommandEvent& event );
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// Specific functions:
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void SetParams( void );
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void GenDrillOrReportFiles();
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void GenDrillMap( const wxString aFileName,
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std::vector<HOLE_INFO>& aHoleListBuffer,
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std::vector<DRILL_TOOL>& aToolListBuffer,
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int format );
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void UpdatePrecisionOptions( );
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void UpdateConfig();
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void Write_Excellon_Header( FILE* aFile, bool aMinimalHeader, zeros_fmt aFormat );
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void GenDrillReport( const wxString aFileName );
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int Create_Drill_File_EXCELLON( FILE* aFile,
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wxPoint aOffset,
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std::vector<HOLE_INFO>& aHoleListBuffer,
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std::vector<DRILL_TOOL>& aToolListBuffer );
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int Gen_Liste_Tools( std::vector<DRILL_TOOL>& buffer, bool print_header );
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void SetParams( void );
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void GenDrillAndReportFiles();
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void GenDrillMap( const wxString aFileName,
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std::vector<HOLE_INFO>& aHoleListBuffer,
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std::vector<DRILL_TOOL>& aToolListBuffer,
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int format );
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void UpdatePrecisionOptions();
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void UpdateConfig();
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void GenDrillReport( const wxString aFileName );
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int Create_Drill_File_EXCELLON( FILE* aFile,
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wxPoint aOffset,
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std::vector<HOLE_INFO>& aHoleListBuffer,
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std::vector<DRILL_TOOL>& aToolListBuffer );
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int Gen_Liste_Tools( std::vector<DRILL_TOOL>& buffer, bool print_header );
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/**
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* Return the selected format for coordinates, if not decimal
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*/
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@ -4,8 +4,6 @@
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#include "fctsys.h"
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using namespace std;
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#include <algorithm> // sort
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#include <vector>
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@ -42,7 +40,6 @@ static bool CmpHoleDiameterValue( const HOLE_INFO& a, const HOLE_INFO& b )
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* @param aToolListBuffer : the std::vector<DRILL_TOOL> to fill with tools to use
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* @param aFirstLayer = first layer to consider. if < 0 aFirstLayer is ignored (used to creates report file)
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* @param aLastLayer = last layer to consider. if < 0 aLastLayer is ignored
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* @param aLastLayer = last layer to consider. if < 0 aLastLayer is ignored
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* @param aExcludeThroughHoles : if true, exclude through holes ( pads and vias through )
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*/
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void Build_Holes_List( BOARD* aPcb,
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@ -1,7 +1,34 @@
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/**
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*@file gendrill.cpp
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*/
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/*************************************************************/
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/* Functions to create EXCELLON drill files and report files */
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/*************************************************************/
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/*
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* This program source code file is part of KICAD, a free EDA CAD application.
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*
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* Copyright (C) 1992-2010 Jean_Pierre Charras <jp.charras@iut.ujf-grenoble.fr>
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* Copyright (C) 1992-2010 Kicad Developers, see change_log.txt for contributors.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, you may find one here:
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* http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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* or you may search the http://www.gnu.org website for the version 2 license,
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* or you may write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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/**
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* @info for EXCELLON format, see:
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* http://www.excellon.com/applicationengineering/manuals/program.htm
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@ -50,12 +77,6 @@ const wxString DrillFileWildcard( _( "Drill files (*.drl)|*.drl" ) );
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* the Dialog box for drill file generation
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*/
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// Helper functions:
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static void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PRECISION& aPrecision );
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static void WriteEndOfFile_EXCELLON( FILE* aFile );
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static double s_ConversionUnits; /* Conversion unite for
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* drill / pcb */
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static std::vector<DRILL_TOOL> s_ToolListBuffer;
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static std::vector<HOLE_INFO> s_HoleListBuffer;
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@ -72,7 +93,7 @@ void WinEDA_PcbFrame::InstallDrillFrame( wxCommandEvent& event )
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/**
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* Function GenDrillOrReportFiles
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* Function GenDrillAndReportFiles
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* Calls the functions to create EXCELLON drill files and/or drill map files
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* >When all holes are through, only one excellon file is created.
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* >When there are some partial holes (some blind or buried vias),
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@ -80,14 +101,14 @@ void WinEDA_PcbFrame::InstallDrillFrame( wxCommandEvent& event )
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* and one file per layer pair, which have one or more holes, excluding
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* through holes, already in the first file.
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*/
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void DIALOG_GENDRILL::GenDrillOrReportFiles( )
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void DIALOG_GENDRILL::GenDrillAndReportFiles( )
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{
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wxFileName fn;
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wxString layer_extend; /* added to the Board FileName to
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* create FullFileName (= Board
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* FileName + layer pair names) */
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wxString msg;
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bool ExistsBuriedVias = false; /* If true, drill files are created
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bool hasBuriedVias = false; /* If true, drill files are created
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* layer pair by layer pair for
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* buried vias */
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int layer1 = LAYER_N_BACK;
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@ -98,13 +119,8 @@ void DIALOG_GENDRILL::GenDrillOrReportFiles( )
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m_Parent->MsgPanel->EraseMsgBox();
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/* Set conversion scale depending on drill file units */
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s_ConversionUnits = 0.0001; // EXCELLON units = INCHES
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if( !m_UnitDrillIsInch )
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s_ConversionUnits = 0.00254; // EXCELLON units = mm
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if( m_MicroViasCount || m_BlindOrBuriedViasCount )
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ExistsBuriedVias = true;
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hasBuriedVias = true;
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for( ; ; )
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{
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@ -148,9 +164,14 @@ void DIALOG_GENDRILL::GenDrillOrReportFiles( )
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EndModal( 0 );
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return;
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}
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Create_Drill_File_EXCELLON( aFile, m_FileDrillOffset,
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s_HoleListBuffer, s_ToolListBuffer );
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EXCELLON_WRITER excellonWriter( m_Parent->GetBoard(),
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aFile, m_FileDrillOffset,
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&s_HoleListBuffer, &s_ToolListBuffer );
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excellonWriter.SetFormat( !m_UnitDrillIsInch,
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(EXCELLON_WRITER::zeros_fmt) m_ZerosFormat,
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m_Precision.m_lhs, m_Precision.m_rhs );
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excellonWriter.SetOptions( m_Mirror, m_MinimalHeader, m_FileDrillOffset );
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excellonWriter.CreateDrillFile( );
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switch( m_Choice_Drill_Map->GetSelection() )
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{
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@ -178,7 +199,7 @@ void DIALOG_GENDRILL::GenDrillOrReportFiles( )
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break;
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}
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if( !ExistsBuriedVias )
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if( !hasBuriedVias )
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break;
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}
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if( gen_through_holes )
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@ -202,21 +223,14 @@ void DIALOG_GENDRILL::GenDrillOrReportFiles( )
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{
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GenDrillReport( m_Parent->GetScreen()->m_FileName );
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}
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EndModal( 0 );
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}
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/**
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* Create the drill file in EXCELLON format
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* @return hole count
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* @param aHoleListBuffer = hole descriptor list
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* @param aToolListBuffer = Drill tools list
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*/
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int DIALOG_GENDRILL::Create_Drill_File_EXCELLON( FILE* aFile,
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wxPoint aOffset,
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std::vector<HOLE_INFO>& aHoleListBuffer,
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std::vector<DRILL_TOOL>& aToolListBuffer )
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int EXCELLON_WRITER::CreateDrillFile( )
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{
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int diam, holes_count;
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int x0, y0, xf, yf, xc, yc;
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@ -225,54 +239,57 @@ int DIALOG_GENDRILL::Create_Drill_File_EXCELLON( FILE* aFile,
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SetLocaleTo_C_standard(); // Use the standard notation for double numbers
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Write_Excellon_Header( aFile, m_MinimalHeader, (zeros_fmt) m_ZerosFormat );
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WriteHeader( );
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holes_count = 0;
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/* Write the tool list */
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for( unsigned ii = 0; ii < aToolListBuffer.size(); ii++ )
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for( unsigned ii = 0; ii < m_toolListBuffer->size(); ii++ )
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{
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fprintf( aFile, "T%dC%.3f\n", ii + 1,
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double (aToolListBuffer[ii].m_Diameter) * s_ConversionUnits );
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DRILL_TOOL& tool_descr = (*m_toolListBuffer)[ii];
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fprintf( m_file, "T%dC%.3f\n", ii + 1,
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tool_descr.m_Diameter * m_conversionUnits );
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}
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fputs( "%\n", aFile ); // End of header info
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fputs( "%\n", m_file ); // End of header info
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fputs( "G90\n", aFile ); // Absolute mode
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fputs( "G05\n", aFile ); // Drill mode
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fputs( "G90\n", m_file ); // Absolute mode
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fputs( "G05\n", m_file ); // Drill mode
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/* Units : */
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if( !m_MinimalHeader )
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if( !m_minimalHeader )
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{
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if( m_UnitDrillIsInch )
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fputs( "M72\n", aFile ); /* M72 = inch mode */
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else
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fputs( "M71\n", aFile ); /* M71 = metric mode */
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if( m_unitsDecimal )
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fputs( "M71\n", m_file ); /* M71 = metric mode */
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else
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fputs( "M72\n", m_file ); /* M72 = inch mode */
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}
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/* Read the hole file and generate lines for normal holes (oblong
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* holes will be created later) */
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int tool_reference = -2;
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for( unsigned ii = 0; ii < aHoleListBuffer.size(); ii++ )
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for( unsigned ii = 0; ii < m_holeListBuffer->size(); ii++ )
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{
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if( aHoleListBuffer[ii].m_Hole_Shape )
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HOLE_INFO& hole_descr = (*m_holeListBuffer)[ii];
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if( hole_descr.m_Hole_Shape )
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continue; // oblong holes will be created later
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if( tool_reference != aHoleListBuffer[ii].m_Tool_Reference )
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if( tool_reference != hole_descr.m_Tool_Reference )
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{
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tool_reference = aHoleListBuffer[ii].m_Tool_Reference;
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fprintf( aFile, "T%d\n", tool_reference );
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tool_reference = hole_descr.m_Tool_Reference;
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fprintf( m_file, "T%d\n", tool_reference );
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}
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x0 = aHoleListBuffer[ii].m_Hole_Pos_X - aOffset.x;
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y0 = aHoleListBuffer[ii].m_Hole_Pos_Y - aOffset.y;
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x0 = hole_descr.m_Hole_Pos_X - m_offset.x;
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y0 = hole_descr.m_Hole_Pos_Y - m_offset.y;
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if( !m_Mirror )
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if( !m_mirror )
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y0 *= -1;
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xt = x0 * s_ConversionUnits;
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yt = y0 * s_ConversionUnits;
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Gen_Line_EXCELLON( line, xt, yt, m_Precision );
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xt = x0 * m_conversionUnits;
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yt = y0 * m_conversionUnits;
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WriteCoordinates( line, xt, yt );
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fputs( line, aFile );
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fputs( line, m_file );
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holes_count++;
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}
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@ -280,50 +297,49 @@ int DIALOG_GENDRILL::Create_Drill_File_EXCELLON( FILE* aFile,
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* will be created later) */
|
||||
tool_reference = -2; // set to a value not used for
|
||||
// aHoleListBuffer[ii].m_Tool_Reference
|
||||
for( unsigned ii = 0; ii < aHoleListBuffer.size(); ii++ )
|
||||
for( unsigned ii = 0; ii < m_holeListBuffer->size(); ii++ )
|
||||
{
|
||||
if( aHoleListBuffer[ii].m_Hole_Shape == 0 )
|
||||
HOLE_INFO& hole_descr = (*m_holeListBuffer)[ii];
|
||||
if( hole_descr.m_Hole_Shape == 0 )
|
||||
continue; // wait for oblong holes
|
||||
if( tool_reference != aHoleListBuffer[ii].m_Tool_Reference )
|
||||
if( tool_reference != hole_descr.m_Tool_Reference )
|
||||
{
|
||||
tool_reference = aHoleListBuffer[ii].m_Tool_Reference;
|
||||
fprintf( aFile, "T%d\n", tool_reference );
|
||||
tool_reference = hole_descr.m_Tool_Reference;
|
||||
fprintf( m_file, "T%d\n", tool_reference );
|
||||
}
|
||||
|
||||
diam = MIN( aHoleListBuffer[ii].m_Hole_SizeX,
|
||||
aHoleListBuffer[ii].m_Hole_SizeY );
|
||||
diam = MIN( hole_descr.m_Hole_SizeX,
|
||||
hole_descr.m_Hole_SizeY );
|
||||
if( diam == 0 )
|
||||
continue;
|
||||
|
||||
/* Compute the hole coordinates: */
|
||||
xc = x0 = xf = aHoleListBuffer[ii].m_Hole_Pos_X - aOffset.x;
|
||||
yc = y0 = yf = aHoleListBuffer[ii].m_Hole_Pos_Y - aOffset.y;
|
||||
xc = x0 = xf = hole_descr.m_Hole_Pos_X - m_offset.x;
|
||||
yc = y0 = yf = hole_descr.m_Hole_Pos_Y - m_offset.y;
|
||||
|
||||
/* Compute the start and end coordinates for the shape */
|
||||
if( aHoleListBuffer[ii].m_Hole_SizeX < aHoleListBuffer[ii].m_Hole_SizeY )
|
||||
if( hole_descr.m_Hole_SizeX < hole_descr.m_Hole_SizeY )
|
||||
{
|
||||
int delta = ( aHoleListBuffer[ii].m_Hole_SizeY
|
||||
- aHoleListBuffer[ii].m_Hole_SizeX ) / 2;
|
||||
int delta = ( hole_descr.m_Hole_SizeY - hole_descr.m_Hole_SizeX ) / 2;
|
||||
y0 -= delta; yf += delta;
|
||||
}
|
||||
else
|
||||
{
|
||||
int delta = ( aHoleListBuffer[ii].m_Hole_SizeX
|
||||
- aHoleListBuffer[ii].m_Hole_SizeY ) / 2;
|
||||
int delta = ( hole_descr.m_Hole_SizeX - hole_descr.m_Hole_SizeY ) / 2;
|
||||
x0 -= delta; xf += delta;
|
||||
}
|
||||
RotatePoint( &x0, &y0, xc, yc, aHoleListBuffer[ii].m_Hole_Orient );
|
||||
RotatePoint( &xf, &yf, xc, yc, aHoleListBuffer[ii].m_Hole_Orient );
|
||||
RotatePoint( &x0, &y0, xc, yc, hole_descr.m_Hole_Orient );
|
||||
RotatePoint( &xf, &yf, xc, yc, hole_descr.m_Hole_Orient );
|
||||
|
||||
|
||||
if( !m_Mirror )
|
||||
if( !m_mirror )
|
||||
{
|
||||
y0 *= -1; yf *= -1;
|
||||
}
|
||||
|
||||
xt = x0 * s_ConversionUnits;
|
||||
yt = y0 * s_ConversionUnits;
|
||||
Gen_Line_EXCELLON( line, xt, yt, m_Precision );
|
||||
xt = x0 * m_conversionUnits;
|
||||
yt = y0 * m_conversionUnits;
|
||||
WriteCoordinates( line, xt, yt );
|
||||
|
||||
/* remove the '\n' from end of line, because we must add the "G85"
|
||||
* command to the line: */
|
||||
|
@ -331,35 +347,57 @@ int DIALOG_GENDRILL::Create_Drill_File_EXCELLON( FILE* aFile,
|
|||
if( line[kk] == '\n' || line[kk] =='\r' )
|
||||
line[kk] = 0;
|
||||
|
||||
fputs( line, aFile );
|
||||
fputs( line, m_file );
|
||||
|
||||
fputs( "G85", aFile ); // add the "G85" command
|
||||
fputs( "G85", m_file ); // add the "G85" command
|
||||
|
||||
xt = xf * s_ConversionUnits;
|
||||
yt = yf * s_ConversionUnits;
|
||||
Gen_Line_EXCELLON( line, xt, yt, m_Precision );
|
||||
|
||||
fputs( line, aFile );
|
||||
fputs( "G05\n", aFile );
|
||||
xt = xf * m_conversionUnits;
|
||||
yt = yf * m_conversionUnits;
|
||||
WriteCoordinates( line, xt, yt );
|
||||
|
||||
fputs( line, m_file );
|
||||
fputs( "G05\n", m_file );
|
||||
holes_count++;
|
||||
}
|
||||
|
||||
WriteEndOfFile_EXCELLON( aFile );
|
||||
WriteEndOfFile( );
|
||||
|
||||
SetLocaleTo_Default(); // Revert to locale double notation
|
||||
|
||||
return holes_count;
|
||||
}
|
||||
|
||||
/**
|
||||
* SetFormat
|
||||
* Initialize internal parameters to match the given format
|
||||
* @param aMetric = true for metric coordinates, false for imperial units
|
||||
* @param aZerosFmt = DECIMAL_FORMAT, SUPPRESS_LEADING, SUPPRESS_TRAILING, KEEP_ZEROS
|
||||
* @param aLeftDigits = number of digits for integer part of coordinates
|
||||
* @param aRightDigits = number of digits for mantissa part of coordinates
|
||||
*/
|
||||
void EXCELLON_WRITER::SetFormat( bool aMetric, zeros_fmt aZerosFmt, int aLeftDigits, int aRightDigits )
|
||||
{
|
||||
m_unitsDecimal = aMetric;
|
||||
m_zeroFormat = aZerosFmt;
|
||||
|
||||
/* Set conversion scale depending on drill file units */
|
||||
if( m_unitsDecimal )
|
||||
m_conversionUnits = 0.00254; // EXCELLON units = mm
|
||||
else
|
||||
m_conversionUnits = 0.0001; // EXCELLON units = INCHES
|
||||
|
||||
m_precision.m_lhs = aLeftDigits;
|
||||
m_precision.m_rhs = aRightDigits;
|
||||
}
|
||||
|
||||
/* Created a line like:
|
||||
* X48000Y19500
|
||||
* According to the selected format
|
||||
*/
|
||||
void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PRECISION& aPrecision )
|
||||
void EXCELLON_WRITER::WriteCoordinates( char * aLine, double aCoordX, double aCoordY )
|
||||
{
|
||||
wxString xs, ys;
|
||||
int xpad = aPrecision.m_lhs + aPrecision.m_rhs;
|
||||
int xpad = m_precision.m_lhs + m_precision.m_rhs;
|
||||
int ypad = xpad;
|
||||
|
||||
/* I need to come up with an algorithm that handles any lhs:rhs format.*/
|
||||
|
@ -373,7 +411,7 @@ void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PREC
|
|||
break;
|
||||
|
||||
case SUPPRESS_LEADING: /* that should work now */
|
||||
for( int i = 0; i< aPrecision.m_rhs; i++ )
|
||||
for( int i = 0; i< m_precision.m_rhs; i++ )
|
||||
{
|
||||
aCoordX *= 10; aCoordY *= 10;
|
||||
}
|
||||
|
@ -383,7 +421,7 @@ void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PREC
|
|||
|
||||
case SUPPRESS_TRAILING:
|
||||
{
|
||||
for( int i = 0; i < aPrecision.m_rhs; i++ )
|
||||
for( int i = 0; i < m_precision.m_rhs; i++ )
|
||||
{
|
||||
aCoordX *= 10;
|
||||
aCoordY *= 10;
|
||||
|
@ -410,7 +448,7 @@ void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PREC
|
|||
}
|
||||
|
||||
case KEEP_ZEROS:
|
||||
for( int i = 0; i< aPrecision.m_rhs; i++ )
|
||||
for( int i = 0; i< m_precision.m_rhs; i++ )
|
||||
{
|
||||
aCoordX *= 10; aCoordY *= 10;
|
||||
}
|
||||
|
@ -431,37 +469,32 @@ void Gen_Line_EXCELLON( char * aLine, double aCoordX, double aCoordY, DRILL_PREC
|
|||
* M48
|
||||
* ;DRILL file {PCBNEW (2007-11-29-b)} date 17/1/2008-21:02:35
|
||||
* ;FORMAT={ <precision> / absolute / <units> / <numbers format>}
|
||||
* R,T
|
||||
* VER,1
|
||||
* FMAT,2
|
||||
* INCH,TZ
|
||||
* TCST,OFF
|
||||
* ICI,OFF
|
||||
* ATC,ON
|
||||
*/
|
||||
void DIALOG_GENDRILL::Write_Excellon_Header( FILE* aFile, bool aMinimalHeader, zeros_fmt aFormat )
|
||||
void EXCELLON_WRITER::WriteHeader( )
|
||||
{
|
||||
char Line[256];
|
||||
|
||||
fputs( "M48\n", aFile ); // The beginning of a header
|
||||
fputs( "M48\n", m_file ); // The beginning of a header
|
||||
|
||||
if( !aMinimalHeader )
|
||||
if( !m_minimalHeader )
|
||||
{
|
||||
DateAndTime( Line );
|
||||
|
||||
// The next 2 lines in EXCELLON files are comments:
|
||||
wxString msg = wxGetApp().GetTitle() + wxT( " " ) + GetBuildVersion();
|
||||
fprintf( aFile, ";DRILL file {%s} date %s\n", CONV_TO_UTF8( msg ),
|
||||
fprintf( m_file, ";DRILL file {%s} date %s\n", CONV_TO_UTF8( msg ),
|
||||
Line );
|
||||
msg = wxT( ";FORMAT={" );
|
||||
|
||||
// Print precision:
|
||||
if( aFormat != DECIMAL_FORMAT )
|
||||
msg << m_Choice_Precision->GetStringSelection();
|
||||
if( m_zeroFormat != DECIMAL_FORMAT )
|
||||
msg << m_precision.GetPrecisionString();
|
||||
else
|
||||
msg << wxT( "-.-" ); // in decimal format the precision is irrelevant
|
||||
msg << wxT( "-:-" ); // in decimal format the precision is irrelevant
|
||||
msg << wxT( "/ absolute / " );
|
||||
msg << ( m_UnitDrillIsInch ? wxT( "inch" ) : wxT( "metric" ) );
|
||||
msg << ( m_unitsDecimal ? wxT( "metric" ) : wxT( "inch" ) );
|
||||
|
||||
/* Adding numbers notation format.
|
||||
* this is same as m_Choice_Zeros_Format strings, but NOT translated
|
||||
|
@ -479,37 +512,37 @@ void DIALOG_GENDRILL::Write_Excellon_Header( FILE* aFile, bool aMinimalHeader, z
|
|||
wxT( "keep zeros" )
|
||||
};
|
||||
|
||||
msg << zero_fmt[aFormat];
|
||||
msg << zero_fmt[m_zeroFormat];
|
||||
msg << wxT( "}\n" );
|
||||
fputs( CONV_TO_UTF8( msg ), aFile );
|
||||
fputs( "FMAT,2\n", aFile ); // Use Format 2 commands (version used since 1979)
|
||||
fputs( CONV_TO_UTF8( msg ), m_file );
|
||||
fputs( "FMAT,2\n", m_file ); // Use Format 2 commands (version used since 1979)
|
||||
}
|
||||
|
||||
fputs( m_UnitDrillIsInch ? "INCH" : "METRIC", aFile );
|
||||
fputs( m_unitsDecimal ? "METRIC" : "INCH", m_file );
|
||||
|
||||
switch( aFormat )
|
||||
switch( m_zeroFormat )
|
||||
{
|
||||
case SUPPRESS_LEADING:
|
||||
case DECIMAL_FORMAT:
|
||||
fputs( ",TZ\n", aFile );
|
||||
fputs( ",TZ\n", m_file );
|
||||
break;
|
||||
|
||||
case SUPPRESS_TRAILING:
|
||||
fputs( ",LZ\n", aFile );
|
||||
fputs( ",LZ\n", m_file );
|
||||
break;
|
||||
|
||||
case KEEP_ZEROS:
|
||||
fputs( ",TZ\n", aFile ); // TZ is acceptable when all zeros are kept
|
||||
fputs( ",TZ\n", m_file ); // TZ is acceptable when all zeros are kept
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
void WriteEndOfFile_EXCELLON( FILE* aFile )
|
||||
void EXCELLON_WRITER::WriteEndOfFile( )
|
||||
{
|
||||
//add if minimal here
|
||||
fputs( "T0\nM30\n", aFile );
|
||||
fclose( aFile );
|
||||
fputs( "T0\nM30\n", m_file );
|
||||
fclose( m_file );
|
||||
}
|
||||
|
||||
|
||||
|
|
|
@ -9,11 +9,10 @@
|
|||
class DRILL_TOOL
|
||||
{
|
||||
public:
|
||||
int m_Diameter; // the diameter of the used tool (for oblong, the smaller size)
|
||||
int m_TotalCount; // how many times it is used (round and oblong)
|
||||
int m_OvalCount; // oblong count
|
||||
public:
|
||||
DRILL_TOOL( int diametre )
|
||||
int m_Diameter; // the diameter of the used tool (for oblong, the smaller size)
|
||||
int m_TotalCount; // how many times it is used (round and oblong)
|
||||
int m_OvalCount; // oblong count
|
||||
public: DRILL_TOOL( int diametre )
|
||||
{
|
||||
m_TotalCount = 0;
|
||||
m_OvalCount = 0;
|
||||
|
@ -32,7 +31,7 @@ public:
|
|||
int m_Hole_SizeY; // hole size y for oblong holes
|
||||
int m_Hole_Orient; // Hole rotation (= pad rotation) for oblong holes
|
||||
int m_Hole_Shape; // hole shape: round (0) or oval (1)
|
||||
int m_Hole_Pos_X; // hole position X
|
||||
int m_Hole_Pos_X; // hole position X
|
||||
int m_Hole_Pos_Y; // hole position Y
|
||||
int m_Hole_Bottom_Layer; // hole starting layer (usually copper)
|
||||
int m_Hole_Top_Layer; // hole ending layer (usually component): m_Hole_First_Layer < m_Hole_Last_Layer
|
||||
|
@ -40,39 +39,123 @@ public:
|
|||
|
||||
|
||||
/* the DRILL_PRECISION helper class to handle drill precision format in excellon files
|
||||
*/
|
||||
*/
|
||||
class DRILL_PRECISION
|
||||
{
|
||||
public:
|
||||
int m_lhs; // Left digit number (integer value of coordinates)
|
||||
int m_rhs; // Right digit number (deciam value of coordinates)
|
||||
|
||||
public:
|
||||
DRILL_PRECISION( int l = 2, int r = 4)
|
||||
public: DRILL_PRECISION( int l = 2, int r = 4 )
|
||||
{
|
||||
m_lhs = l; m_rhs = r;
|
||||
}
|
||||
|
||||
|
||||
wxString GetPrecisionString()
|
||||
{
|
||||
wxString text;
|
||||
text << m_lhs << wxT(":") << m_rhs;
|
||||
|
||||
text << m_lhs << wxT( ":" ) << m_rhs;
|
||||
return text;
|
||||
}
|
||||
};
|
||||
|
||||
/* zeros format */
|
||||
enum zeros_fmt {
|
||||
DECIMAL_FORMAT,
|
||||
SUPPRESS_LEADING,
|
||||
SUPPRESS_TRAILING,
|
||||
KEEP_ZEROS
|
||||
};
|
||||
|
||||
// A helper class to create Excellon drill files
|
||||
class EXCELLON_WRITER
|
||||
{
|
||||
public:
|
||||
enum zeros_fmt {
|
||||
// Zero format in coordinates
|
||||
DECIMAL_FORMAT,
|
||||
SUPPRESS_LEADING,
|
||||
SUPPRESS_TRAILING,
|
||||
KEEP_ZEROS
|
||||
};
|
||||
wxPoint m_Offset; // offset coordinates
|
||||
bool m_ShortHeader; // true to generate the smallest header (strip comments)
|
||||
|
||||
private:
|
||||
FILE* m_file; // The output file
|
||||
BOARD* m_pcb;
|
||||
bool m_minimalHeader; // True to use minimal haeder
|
||||
// in excellon file (strip comments)
|
||||
bool m_unitsDecimal; // true = decimal, false = inches
|
||||
zeros_fmt m_zeroFormat; // the zero format option for output file
|
||||
DRILL_PRECISION m_precision; // The current coordinate precision (not used in decimat format)
|
||||
double m_conversionUnits; // scaling factor to convert the board unites to Excellon units
|
||||
// (i.e inches or mm)
|
||||
bool m_mirror;
|
||||
wxPoint m_offset; // Drill offset ooordinates
|
||||
std::vector<HOLE_INFO>* m_holeListBuffer; // Buffer containing holes
|
||||
std::vector<DRILL_TOOL>* m_toolListBuffer; // Buffer containing tools
|
||||
|
||||
public: EXCELLON_WRITER( BOARD* aPcb, FILE* aFile,
|
||||
wxPoint aOffset,
|
||||
std::vector<HOLE_INFO>* aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>* aToolListBuffer )
|
||||
{
|
||||
m_file = aFile;
|
||||
m_pcb = aPcb;
|
||||
m_zeroFormat = DECIMAL_FORMAT;
|
||||
m_holeListBuffer = aHoleListBuffer;
|
||||
m_toolListBuffer = aToolListBuffer;
|
||||
m_conversionUnits = 0.0001;
|
||||
m_unitsDecimal = false;
|
||||
m_mirror = false;
|
||||
m_minimalHeader = false;
|
||||
}
|
||||
|
||||
|
||||
~EXCELLON_WRITER()
|
||||
{
|
||||
}
|
||||
|
||||
|
||||
/**
|
||||
* SetFormat
|
||||
* Initialize internal parameters to match the given format
|
||||
* @param aMetric = true for metric coordinates, false for imperial units
|
||||
* @param aZerosFmt = DECIMAL_FORMAT, SUPPRESS_LEADING, SUPPRESS_TRAILING, KEEP_ZEROS
|
||||
* @param aLeftDigits = number of digits for integer part of coordinates
|
||||
* @param aRightDigits = number of digits for mantissa part of coordinates
|
||||
*/
|
||||
void SetFormat( bool aMetric, zeros_fmt aZerosFmt, int aLeftDigits, int aRightDigits );
|
||||
|
||||
/**
|
||||
* SetOptions
|
||||
* Initialize internal parameters to match drill options
|
||||
* @param aMetric = true for metric coordinates, false for imperial units
|
||||
* @param aZerosFmt = DECIMAL_FORMAT, SUPPRESS_LEADING, SUPPRESS_TRAILING, KEEP_ZEROS
|
||||
* @param aLeftDigits = number of digits for integer part of coordinates
|
||||
* @param aRightDigits = number of digits for mantissa part of coordinates
|
||||
*/
|
||||
void SetOptions( bool aMirror, bool aMinimalHeader, wxPoint aOffset )
|
||||
{
|
||||
m_mirror = aMirror;
|
||||
m_offset = aOffset;
|
||||
m_minimalHeader = aMinimalHeader;
|
||||
}
|
||||
|
||||
|
||||
/**
|
||||
* CreateDrillFile
|
||||
* Creates an Excellon drill file
|
||||
* @return hole count
|
||||
*/
|
||||
int CreateDrillFile();
|
||||
|
||||
private:
|
||||
void WriteHeader();
|
||||
void WriteEndOfFile();
|
||||
void WriteCoordinates( char* aLine, double aCoordX, double aCoordY );
|
||||
};
|
||||
|
||||
/**
|
||||
* Function BuildHolesList
|
||||
* Create the list of holes and tools for a given board
|
||||
* The list is sorted by incraesin drill values
|
||||
* The list is sorted by increasing drill values
|
||||
* Only holes from aFirstLayer to aLastLayer copper layers are listed (for vias, because pad holes are always through holes)
|
||||
* @param Pcb : the given board
|
||||
* @param aHoleListBuffer : the std::vector<HOLE_INFO> to fill with pcb holes info
|
||||
|
@ -81,32 +164,32 @@ enum zeros_fmt {
|
|||
* @param aLastLayer = last layer to consider. if < 0 aLastLayer is ignored
|
||||
* @param aExcludeThroughHoles : if true, exclude through holes ( pads and vias through )
|
||||
*/
|
||||
void Build_Holes_List( BOARD* Pcb, std::vector<HOLE_INFO>& aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer,
|
||||
int aFirstLayer, int aLastLayer, bool aExcludeThroughHoles );
|
||||
void Build_Holes_List( BOARD* Pcb, std::vector<HOLE_INFO>& aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer,
|
||||
int aFirstLayer, int aLastLayer, bool aExcludeThroughHoles );
|
||||
|
||||
|
||||
void GenDrillMapFile( BOARD* aPcb,
|
||||
FILE* aFile,
|
||||
const wxString& aFullFileName,
|
||||
Ki_PageDescr *aSheet,
|
||||
std::vector<HOLE_INFO> aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL> aToolListBuffer,
|
||||
bool aUnit_Drill_is_Inch,
|
||||
int format, const wxPoint& auxoffset );
|
||||
void GenDrillMapFile( BOARD* aPcb,
|
||||
FILE* aFile,
|
||||
const wxString& aFullFileName,
|
||||
Ki_PageDescr* aSheet,
|
||||
std::vector<HOLE_INFO> aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL> aToolListBuffer,
|
||||
bool aUnit_Drill_is_Inch,
|
||||
int format, const wxPoint& auxoffset );
|
||||
|
||||
void Gen_Drill_PcbMap( BOARD* aPcb, PLOTTER* plotter,
|
||||
std::vector<HOLE_INFO>& aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer);
|
||||
void Gen_Drill_PcbMap( BOARD* aPcb, PLOTTER* plotter,
|
||||
std::vector<HOLE_INFO>& aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer );
|
||||
|
||||
/*
|
||||
* Create a list of drill values and drill count
|
||||
* there is only one report for all drill files even when buried or blinds vias exist
|
||||
*/
|
||||
void GenDrillReportFile( FILE* aFile, BOARD * aPcb, const wxString& aBoardFilename,
|
||||
void GenDrillReportFile( FILE* aFile, BOARD* aPcb, const wxString& aBoardFilename,
|
||||
bool aUnit_Drill_is_Inch,
|
||||
std::vector<HOLE_INFO> & aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer
|
||||
);
|
||||
std::vector<HOLE_INFO>& aHoleListBuffer,
|
||||
std::vector<DRILL_TOOL>& aToolListBuffer
|
||||
);
|
||||
|
||||
#endif // #ifndef _GENDRILL_H_
|
||||
|
|
Loading…
Reference in New Issue