kicad/pcbnew/dialogs/dialog_gendrill.cpp

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/**
* @file dialog_gendrill.cpp
*/
/*
* This program source code file is part of KiCad, a free EDA CAD application.
*
* Copyright (C) 1992-2012 Jean_Pierre Charras <jp.charras at wanadoo.fr>
* Copyright (C) 1992-2012 KiCad Developers, see change_log.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
*/
#include <fctsys.h>
* KIWAY Milestone A): Make major modules into DLL/DSOs. ! The initial testing of this commit should be done using a Debug build so that all the wxASSERT()s are enabled. Also, be sure and keep enabled the USE_KIWAY_DLLs option. The tree won't likely build without it. Turning it off is senseless anyways. If you want stable code, go back to a prior version, the one tagged with "stable". * Relocate all functionality out of the wxApp derivative into more finely targeted purposes: a) DLL/DSO specific b) PROJECT specific c) EXE or process specific d) configuration file specific data e) configuration file manipulations functions. All of this functionality was blended into an extremely large wxApp derivative and that was incompatible with the desire to support multiple concurrently loaded DLL/DSO's ("KIFACE")s and multiple concurrently open projects. An amazing amount of organization come from simply sorting each bit of functionality into the proper box. * Switch to wxConfigBase from wxConfig everywhere except instantiation. * Add classes KIWAY, KIFACE, KIFACE_I, SEARCH_STACK, PGM_BASE, PGM_KICAD, PGM_SINGLE_TOP, * Remove "Return" prefix on many function names. * Remove obvious comments from CMakeLists.txt files, and from else() and endif()s. * Fix building boost for use in a DSO on linux. * Remove some of the assumptions in the CMakeLists.txt files that windows had to be the host platform when building windows binaries. * Reduce the number of wxStrings being constructed at program load time via static construction. * Pass wxConfigBase* to all SaveSettings() and LoadSettings() functions so that these functions are useful even when the wxConfigBase comes from another source, as is the case in the KICAD_MANAGER_FRAME. * Move the setting of the KIPRJMOD environment variable into class PROJECT, so that it can be moved into a project variable soon, and out of FP_LIB_TABLE. * Add the KIWAY_PLAYER which is associated with a particular PROJECT, and all its child wxFrames and wxDialogs now have a Kiway() member function which returns a KIWAY& that that window tree branch is in support of. This is like wxWindows DNA in that child windows get this member with proper value at time of construction. * Anticipate some of the needs for milestones B) and C) and make code adjustments now in an effort to reduce work in those milestones. * No testing has been done for python scripting, since milestone C) has that being largely reworked and re-thought-out.
2014-03-20 00:42:08 +00:00
//#include <pgm_base.h>
#include <kiface_i.h>
#include <pcbnew.h>
#include <wxPcbStruct.h>
#include <pcbplot.h>
#include <gendrill_Excellon_writer.h>
#include <macros.h>
#include <class_board.h>
#include <class_track.h>
#include <class_module.h>
#include <dialog_gendrill.h>
#include <wildcards_and_files_ext.h>
// Keywords for read and write config
#define ZerosFormatKey wxT( "DrillZerosFormat" )
#define PrecisionKey wxT( "DrilltPrecisionOpt" )
#define MirrorKey wxT( "DrillMirrorYOpt" )
#define MinimalHeaderKey wxT( "DrillMinHeader" )
#define MergePTHNPTHKey wxT( "DrillMergePTHNPTH" )
#define UnitDrillInchKey wxT( "DrillUnit" )
#define DrillOriginIsAuxAxisKey wxT( "DrillAuxAxis" )
#define DrillMapFileTypeKey wxT( "DrillMapFileType" )
// list of allowed precision for EXCELLON files, for integer format:
// Due to difference between inches and mm,
// there are 2 precision values, one for inches and one for metric
static DRILL_PRECISION precisionListForInches( 2, 4 );
static DRILL_PRECISION precisionListForMetric( 3, 3 );
/* This function displays the dialog frame for drill tools
*/
void PCB_EDIT_FRAME::InstallDrillFrame( wxCommandEvent& event )
{
DIALOG_GENDRILL dlg( this );
dlg.ShowModal();
}
DIALOG_GENDRILL::DIALOG_GENDRILL( PCB_EDIT_FRAME* parent ) :
DIALOG_GENDRILL_BASE( parent )
{
m_parent = parent;
m_board = parent->GetBoard();
* KIWAY Milestone A): Make major modules into DLL/DSOs. ! The initial testing of this commit should be done using a Debug build so that all the wxASSERT()s are enabled. Also, be sure and keep enabled the USE_KIWAY_DLLs option. The tree won't likely build without it. Turning it off is senseless anyways. If you want stable code, go back to a prior version, the one tagged with "stable". * Relocate all functionality out of the wxApp derivative into more finely targeted purposes: a) DLL/DSO specific b) PROJECT specific c) EXE or process specific d) configuration file specific data e) configuration file manipulations functions. All of this functionality was blended into an extremely large wxApp derivative and that was incompatible with the desire to support multiple concurrently loaded DLL/DSO's ("KIFACE")s and multiple concurrently open projects. An amazing amount of organization come from simply sorting each bit of functionality into the proper box. * Switch to wxConfigBase from wxConfig everywhere except instantiation. * Add classes KIWAY, KIFACE, KIFACE_I, SEARCH_STACK, PGM_BASE, PGM_KICAD, PGM_SINGLE_TOP, * Remove "Return" prefix on many function names. * Remove obvious comments from CMakeLists.txt files, and from else() and endif()s. * Fix building boost for use in a DSO on linux. * Remove some of the assumptions in the CMakeLists.txt files that windows had to be the host platform when building windows binaries. * Reduce the number of wxStrings being constructed at program load time via static construction. * Pass wxConfigBase* to all SaveSettings() and LoadSettings() functions so that these functions are useful even when the wxConfigBase comes from another source, as is the case in the KICAD_MANAGER_FRAME. * Move the setting of the KIPRJMOD environment variable into class PROJECT, so that it can be moved into a project variable soon, and out of FP_LIB_TABLE. * Add the KIWAY_PLAYER which is associated with a particular PROJECT, and all its child wxFrames and wxDialogs now have a Kiway() member function which returns a KIWAY& that that window tree branch is in support of. This is like wxWindows DNA in that child windows get this member with proper value at time of construction. * Anticipate some of the needs for milestones B) and C) and make code adjustments now in an effort to reduce work in those milestones. * No testing has been done for python scripting, since milestone C) has that being largely reworked and re-thought-out.
2014-03-20 00:42:08 +00:00
m_config = Kiface().KifaceSettings();
m_plotOpts = m_parent->GetPlotSettings();
SetReturnCode( 1 );
initDialog();
GetSizer()->SetSizeHints( this );
}
// Static members of DIALOG_GENDRILL
int DIALOG_GENDRILL::m_UnitDrillIsInch = true;
int DIALOG_GENDRILL::m_ZerosFormat = EXCELLON_WRITER::DECIMAL_FORMAT;
bool DIALOG_GENDRILL::m_MinimalHeader = false;
bool DIALOG_GENDRILL::m_Mirror = false;
bool DIALOG_GENDRILL::m_Merge_PTH_NPTH = false;
bool DIALOG_GENDRILL::m_DrillOriginIsAuxAxis = false;
int DIALOG_GENDRILL::m_mapFileType = 1;
DIALOG_GENDRILL::~DIALOG_GENDRILL()
{
UpdateConfig();
}
void DIALOG_GENDRILL::initDialog()
{
m_config->Read( ZerosFormatKey, &m_ZerosFormat );
m_config->Read( MirrorKey, &m_Mirror );
m_config->Read( MergePTHNPTHKey, &m_Merge_PTH_NPTH );
m_config->Read( MinimalHeaderKey, &m_MinimalHeader );
m_config->Read( UnitDrillInchKey, &m_UnitDrillIsInch );
m_config->Read( DrillOriginIsAuxAxisKey, &m_DrillOriginIsAuxAxis );
m_config->Read( DrillMapFileTypeKey, &m_mapFileType );
InitDisplayParams();
}
void DIALOG_GENDRILL::InitDisplayParams()
{
wxString msg;
m_Choice_Unit->SetSelection( m_UnitDrillIsInch ? 1 : 0 );
m_Choice_Zeros_Format->SetSelection( m_ZerosFormat );
UpdatePrecisionOptions();
m_Check_Minimal->SetValue( m_MinimalHeader );
if( m_DrillOriginIsAuxAxis )
m_Choice_Drill_Offset->SetSelection( 1 );
m_Check_Mirror->SetValue( m_Mirror );
m_Check_Merge_PTH_NPTH->SetValue( m_Merge_PTH_NPTH );
m_Choice_Drill_Map->SetSelection( m_mapFileType );
m_ViaDrillValue->SetLabel( _( "Use Netclasses values" ) );
m_MicroViaDrillValue->SetLabel( _( "Use Netclasses values" ) );
// See if we have some buried vias or/and microvias, and display
// microvias drill value if so
m_throughViasCount = 0;
m_microViasCount = 0;
m_blindOrBuriedViasCount = 0;
for( TRACK* track = m_parent->GetBoard()->m_Track; track != NULL; track = track->Next() )
{
const VIA *via = dynamic_cast<const VIA*>( track );
if( via )
{
switch( via->GetViaType() )
{
case VIA_THROUGH:
m_throughViasCount++;
break;
case VIA_MICROVIA:
m_microViasCount++;
break;
case VIA_BLIND_BURIED:
m_blindOrBuriedViasCount++;
break;
default:
break;
}
}
}
m_MicroViaDrillValue->Enable( m_microViasCount );
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// Count plated pad holes and not plated pad holes:
m_platedPadsHoleCount = 0;
m_notplatedPadsHoleCount = 0;
for( MODULE* module = m_parent->GetBoard()->m_Modules; module; module = module->Next() )
{
for( D_PAD* pad = module->Pads(); pad != NULL; pad = pad->Next() )
{
if( pad->GetDrillShape() == PAD_DRILL_CIRCLE )
{
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if( pad->GetDrillSize().x != 0 )
{
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if( pad->GetAttribute() == PAD_HOLE_NOT_PLATED )
m_notplatedPadsHoleCount++;
else
m_platedPadsHoleCount++;
}
}
else
{
if( pad->GetDrillSize().x != 0 && pad->GetDrillSize().y != 0 )
{
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if( pad->GetAttribute() == PAD_HOLE_NOT_PLATED )
m_notplatedPadsHoleCount++;
else
m_platedPadsHoleCount++;
}
}
}
}
// Display hole counts:
msg = m_PlatedPadsCountInfoMsg->GetLabel();
msg << wxT( " " ) << m_platedPadsHoleCount;
m_PlatedPadsCountInfoMsg->SetLabel( msg );
msg = m_NotPlatedPadsCountInfoMsg->GetLabel();
msg << wxT( " " ) << m_notplatedPadsHoleCount;
m_NotPlatedPadsCountInfoMsg->SetLabel( msg );
msg = m_ThroughViasInfoMsg->GetLabel();
msg << wxT( " " ) << m_throughViasCount;
m_ThroughViasInfoMsg->SetLabel( msg );
msg = m_MicroViasInfoMsg->GetLabel();
msg << wxT( " " ) << m_microViasCount;
m_MicroViasInfoMsg->SetLabel( msg );
msg = m_BuriedViasInfoMsg->GetLabel();
msg << wxT( " " ) << m_blindOrBuriedViasCount;
m_BuriedViasInfoMsg->SetLabel( msg );
// Output directory
m_outputDirectoryName->SetValue( m_plotOpts.GetOutputDirectory() );
}
void DIALOG_GENDRILL::UpdateConfig()
{
SetParams();
m_config->Write( ZerosFormatKey, m_ZerosFormat );
m_config->Write( MirrorKey, m_Mirror );
m_config->Write( MinimalHeaderKey, m_MinimalHeader );
m_config->Write( MergePTHNPTHKey, m_Merge_PTH_NPTH );
m_config->Write( UnitDrillInchKey, m_UnitDrillIsInch );
m_config->Write( DrillOriginIsAuxAxisKey, m_DrillOriginIsAuxAxis );
m_config->Write( DrillMapFileTypeKey, m_mapFileType );
}
void DIALOG_GENDRILL::OnSelDrillUnitsSelected( wxCommandEvent& event )
{
UpdatePrecisionOptions();
}
void DIALOG_GENDRILL::OnGenMapFile( wxCommandEvent& event )
{
GenDrillAndMapFiles( false, true);
}
void DIALOG_GENDRILL::OnGenDrillFile( wxCommandEvent& event )
{
GenDrillAndMapFiles(true, false);
}
void DIALOG_GENDRILL::OnCancelClick( wxCommandEvent& event )
{
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UpdateConfig(); // Save drill options:
EndModal( wxID_CANCEL ); // Process the default cancel event (close dialog)
}
void DIALOG_GENDRILL::OnSelZerosFmtSelected( wxCommandEvent& event )
{
UpdatePrecisionOptions();
}
void DIALOG_GENDRILL::UpdatePrecisionOptions()
{
if( m_Choice_Unit->GetSelection()== 1 ) // Units = inches
m_staticTextPrecision->SetLabel( precisionListForInches.GetPrecisionString() );
else
{
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// metric options
m_staticTextPrecision->SetLabel( precisionListForMetric.GetPrecisionString() );
}
if( m_Choice_Zeros_Format->GetSelection() == EXCELLON_WRITER::DECIMAL_FORMAT )
m_staticTextPrecision->Enable( false );
else
m_staticTextPrecision->Enable( true );
}
void DIALOG_GENDRILL::OnOutputDirectoryBrowseClicked( wxCommandEvent& event )
{
// Build the absolute path of current output plot directory
// to preselect it when opening the dialog.
wxFileName fn( m_outputDirectoryName->GetValue() );
wxString path = Prj().AbsolutePath( m_outputDirectoryName->GetValue() );
wxDirDialog dirDialog( this, _( "Select Output Directory" ), path );
if( dirDialog.ShowModal() == wxID_CANCEL )
return;
wxFileName dirName = wxFileName::DirName( dirDialog.GetPath() );
wxMessageDialog dialog( this, _( "Use a relative path? " ),
_( "Plot Output Directory" ),
wxYES_NO | wxICON_QUESTION | wxYES_DEFAULT );
if( dialog.ShowModal() == wxID_YES )
{
wxString boardFilePath = Prj().AbsolutePath( m_parent->GetBoard()->GetFileName() );
boardFilePath = wxPathOnly( boardFilePath );
if( !dirName.MakeRelativeTo( boardFilePath ) )
wxMessageBox( _( "Cannot make path relative. The target volume is different from board file volume!" ),
_( "Plot Output Directory" ), wxOK | wxICON_ERROR );
}
m_outputDirectoryName->SetValue( dirName.GetFullPath() );
}
void DIALOG_GENDRILL::SetParams()
{
wxString msg;
// Set output directory and replace backslashes with forward ones
wxString dirStr;
dirStr = m_outputDirectoryName->GetValue();
dirStr.Replace( wxT( "\\" ), wxT( "/" ) );
m_plotOpts.SetOutputDirectory( dirStr );
m_mapFileType = m_Choice_Drill_Map->GetSelection();
m_UnitDrillIsInch = (m_Choice_Unit->GetSelection() == 0) ? false : true;
m_MinimalHeader = m_Check_Minimal->IsChecked();
m_Mirror = m_Check_Mirror->IsChecked();
m_Merge_PTH_NPTH = m_Check_Merge_PTH_NPTH->IsChecked();
m_ZerosFormat = m_Choice_Zeros_Format->GetSelection();
m_DrillOriginIsAuxAxis = m_Choice_Drill_Offset->GetSelection();
if( m_Choice_Drill_Offset->GetSelection() == 0 )
m_FileDrillOffset = wxPoint( 0, 0 );
else
m_FileDrillOffset = m_parent->GetAuxOrigin();
if( m_UnitDrillIsInch )
m_Precision = precisionListForInches;
else
m_Precision = precisionListForMetric;
m_board->SetPlotOptions( m_plotOpts );
}
void DIALOG_GENDRILL::GenDrillAndMapFiles(bool aGenDrill, bool aGenMap)
{
wxString layername_extend; /* added to the Board FileName to
* create FullFileName (= Board
* FileName + layer pair names)
*/
wxString msg;
bool hasBuriedVias = false; /* If true, drill files are created
* layer pair by layer pair for
* buried vias
*/
int layer1 = F_Cu;
int layer2 = B_Cu;
bool gen_through_holes = true;
bool gen_NPTH_holes = false;
UpdateConfig(); // set params and Save drill options
m_parent->ClearMsgPanel();
if( m_microViasCount || m_blindOrBuriedViasCount )
hasBuriedVias = true;
EXCELLON_WRITER excellonWriter( m_parent->GetBoard(),
m_FileDrillOffset );
excellonWriter.SetFormat( !m_UnitDrillIsInch,
(EXCELLON_WRITER::zeros_fmt) m_ZerosFormat,
m_Precision.m_lhs, m_Precision.m_rhs );
excellonWriter.SetOptions( m_Mirror, m_MinimalHeader, m_FileDrillOffset, m_Merge_PTH_NPTH );
wxFileName fn;
for( ; ; )
{
excellonWriter.BuildHolesList( layer1, layer2, gen_through_holes ? false : true,
gen_NPTH_holes, m_Merge_PTH_NPTH );
if( excellonWriter.GetHolesCount() > 0 ) // has holes?
{
fn = m_parent->GetBoard()->GetFileName();
layername_extend.Empty();
if( gen_NPTH_holes )
{
layername_extend << wxT( "-NPTH" );
}
else if( !gen_through_holes )
{
if( layer1 == F_Cu )
layername_extend << wxT( "-front" );
else
layername_extend << wxT( "-inner" ) << layer1;
if( layer2 == B_Cu )
layername_extend << wxT( "-back" );
else
layername_extend << wxT( "-inner" ) << layer2;
}
fn.SetName( fn.GetName() + layername_extend );
wxString defaultPath = Prj().AbsolutePath( m_plotOpts.GetOutputDirectory() );
fn.SetPath( defaultPath );
if( aGenDrill )
{
fn.SetExt( DrillFileExtension );
wxString fullFilename = fn.GetFullPath();
FILE* file = wxFopen( fullFilename, wxT( "w" ) );
if( file == 0 )
{
msg.Printf( _( "** Unable to create %s **\n" ),
GetChars( fullFilename ) );
m_messagesBox->AppendText( msg );
break;
}
else
{
msg.Printf( _( "Plot: %s OK\n" ), GetChars( fullFilename ) );
m_messagesBox->AppendText( msg );
}
excellonWriter.CreateDrillFile( file );
}
if( aGenMap )
{
const PlotFormat filefmt[6] =
{ // Keep these format ids in the same order than m_Choice_Drill_Map choices
PLOT_FORMAT_HPGL, PLOT_FORMAT_POST, PLOT_FORMAT_GERBER,
PLOT_FORMAT_DXF, PLOT_FORMAT_SVG, PLOT_FORMAT_PDF
};
unsigned choice = (unsigned) m_Choice_Drill_Map->GetSelection();
if( choice >= m_Choice_Drill_Map->GetCount() )
choice = 1;
fn.SetExt( wxEmptyString ); // Will be added by GenDrillMap
wxString fullfilename = fn.GetFullPath() + wxT( "-drl_map" );
GenDrillMap( fullfilename, excellonWriter, filefmt[choice] );
}
}
if( gen_NPTH_holes ) // The last drill file was created
break;
if( !hasBuriedVias )
gen_NPTH_holes = true;
else
{
if( gen_through_holes )
layer2 = layer1 + 1; // done with through-board holes, prepare generation of first layer pair
else
{
if( layer2 >= B_Cu ) // no more layer pair to consider
{
layer1 = F_Cu;
layer2 = B_Cu;
gen_NPTH_holes = true;
continue;
}
layer1++;
layer2++; // use next layer pair
if( layer2 == m_parent->GetBoard()->GetCopperLayerCount() - 1 )
layer2 = B_Cu; // the last layer is always the back layer
}
gen_through_holes = false;
}
}
}
void DIALOG_GENDRILL::OnGenReportFile( wxCommandEvent& event )
{
UpdateConfig(); // set params and Save drill options
wxFileName fn = m_parent->GetBoard()->GetFileName();
fn.SetName( fn.GetName() + wxT( "-drl" ) );
fn.SetExt( ReportFileExtension );
wxString defaultPath = m_plotOpts.GetOutputDirectory();
if( defaultPath.IsEmpty() )
defaultPath = ::wxGetCwd();
wxFileDialog dlg( this, _( "Save Drill Report File" ), defaultPath,
fn.GetFullName(), wxGetTranslation( ReportFileWildcard ),
wxFD_SAVE );
if( dlg.ShowModal() == wxID_CANCEL )
return;
EXCELLON_WRITER excellonWriter( m_parent->GetBoard(),
m_FileDrillOffset );
excellonWriter.SetFormat( !m_UnitDrillIsInch,
(EXCELLON_WRITER::zeros_fmt) m_ZerosFormat,
m_Precision.m_lhs, m_Precision.m_rhs );
excellonWriter.SetOptions( m_Mirror, m_MinimalHeader, m_FileDrillOffset, m_Merge_PTH_NPTH );
bool success = excellonWriter.GenDrillReportFile( dlg.GetPath() );
wxString msg;
if( ! success )
{
msg.Printf( _( "** Unable to create %s **\n" ), GetChars( dlg.GetPath() ) );
m_messagesBox->AppendText( msg );
}
else
{
msg.Printf( _( "Report file %s created\n" ), GetChars( dlg.GetPath() ) );
m_messagesBox->AppendText( msg );
}
}
// Generate the drill map of the board
void DIALOG_GENDRILL::GenDrillMap( const wxString aFullFileNameWithoutExt,
EXCELLON_WRITER& aExcellonWriter,
PlotFormat format )
{
wxString ext, wildcard;
/* Init extension */
switch( format )
{
case PLOT_FORMAT_HPGL:
ext = HPGL_PLOTTER::GetDefaultFileExtension();
wildcard = _( "HPGL plot files (.plt)|*.plt" );
break;
case PLOT_FORMAT_POST:
ext = PS_PLOTTER::GetDefaultFileExtension();
wildcard = PSFileWildcard;
break;
case PLOT_FORMAT_GERBER:
ext = GERBER_PLOTTER::GetDefaultFileExtension();
wildcard = _( "Gerber files (.pho)|*.pho" );
break;
case PLOT_FORMAT_DXF:
ext = DXF_PLOTTER::GetDefaultFileExtension();
wildcard = _( "DXF files (.dxf)|*.dxf" );
break;
case PLOT_FORMAT_SVG:
ext = SVG_PLOTTER::GetDefaultFileExtension();
wildcard = SVGFileWildcard;
break;
case PLOT_FORMAT_PDF:
ext = PDF_PLOTTER::GetDefaultFileExtension();
wildcard = PdfFileWildcard;
break;
default:
wxLogMessage( wxT( "DIALOG_GENDRILL::GenDrillMap() error, fmt % unknown" ), format );
return;
}
// Add file name extension
wxString fullFilename = aFullFileNameWithoutExt;
fullFilename << wxT(".") << ext;
bool success = aExcellonWriter.GenDrillMapFile( fullFilename,
m_parent->GetPageSettings(),
format );
wxString msg;
if( ! success )
{
msg.Printf( _( "** Unable to create %s **\n" ), GetChars( fullFilename ) );
m_messagesBox->AppendText( msg );
return;
}
else
{
msg.Printf( _( "Plot: %s OK\n" ), GetChars( fullFilename ) );
m_messagesBox->AppendText( msg );
}
}