589 lines
19 KiB
C++
589 lines
19 KiB
C++
/**
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* @file dialog_pad_basicshapes_properties.cpp
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* @brief basic shapes for pads crude editor.
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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) 2017 Jean-Pierre Charras, jp.charras at wanadoo.fr
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* Copyright (C) 1992-2017 KiCad Developers, see AUTHORS.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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#include <algorithm>
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#include <fctsys.h>
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#include <common.h>
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#include <confirm.h>
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#include <pcbnew.h>
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#include <trigo.h>
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#include <macros.h>
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#include <pcb_base_frame.h>
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#include <base_units.h>
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#include <unit_format.h>
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#include <gr_basic.h>
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#include <class_board.h>
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#include <class_module.h>
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#include <dialog_pad_properties.h>
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DIALOG_PAD_PRIMITIVES_PROPERTIES::DIALOG_PAD_PRIMITIVES_PROPERTIES(
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wxWindow* aParent, PAD_CS_PRIMITIVE * aShape )
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: DIALOG_PAD_PRIMITIVES_PROPERTIES_BASE( aParent )
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{
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m_shape = aShape;
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TransferDataToWindow();
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m_sdbSizerOK->SetDefault();
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GetSizer()->SetSizeHints( this );
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}
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bool DIALOG_PAD_PRIMITIVES_PROPERTIES::TransferDataToWindow()
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{
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if( m_shape == NULL )
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return false;
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// Shows the text info about circle or ring only for S_CIRCLE shape
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if( m_shape->m_Shape != S_CIRCLE )
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m_staticTextInfo->Show( false );
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PutValueInLocalUnits( *m_textCtrlThickness, m_shape->m_Thickness );
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// Update units and parameters names according to the shape to edit:
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wxString unit = GetAbbreviatedUnitsLabel();
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m_staticTextPosUnit->SetLabel( unit );
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m_staticTextEndUnit->SetLabel( unit );
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m_staticTextThicknessUnit->SetLabel( unit );
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m_staticTextAngleUnit->SetLabel( wxEmptyString );
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m_staticTextAngle->SetLabel( wxEmptyString );
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switch( m_shape->m_Shape )
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{
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case S_SEGMENT: // Segment with rounded ends
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SetTitle( _( "Segment" ) );
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PutValueInLocalUnits( *m_textCtrPosX, m_shape->m_Start.x );
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PutValueInLocalUnits( *m_textCtrPosY, m_shape->m_Start.y );
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PutValueInLocalUnits( *m_textCtrEndX, m_shape->m_End.x );
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PutValueInLocalUnits( *m_textCtrEndY, m_shape->m_End.y );
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m_textCtrAngle->Show( false );
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m_staticTextAngleUnit->Show( false );
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m_staticTextAngle->Show( false );
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break;
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case S_ARC: // Arc with rounded ends
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SetTitle( _( "Arc" ) );
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m_staticTextPosEnd->SetLabel( _( "Center" ) );
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PutValueInLocalUnits( *m_textCtrEndX, m_shape->m_Start.x ); // Start point of arc
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PutValueInLocalUnits( *m_textCtrEndY, m_shape->m_Start.y );
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PutValueInLocalUnits( *m_textCtrPosX, m_shape->m_End.x ); // arc center
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PutValueInLocalUnits( *m_textCtrPosY, m_shape->m_End.y );
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m_textCtrAngle->SetValue( FMT_ANGLE( m_shape->m_ArcAngle ) );
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m_staticTextAngle->SetLabel( _( "Angle" ) );
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m_staticTextAngleUnit->SetLabel( _( "degree" ) );
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break;
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case S_CIRCLE: // ring or circle
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if( m_shape->m_Thickness )
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SetTitle( _( "Ring" ) );
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else
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SetTitle( _( "Circle" ) );
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// End point does not exist for a circle or ring:
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m_textCtrEndX->Show( false );
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m_textCtrEndY->Show( false );
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m_staticTextPosEnd->Show( false );
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m_staticTextEndUnit->Show( false );
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m_staticTextEndX->Show( false );
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m_staticTextEndY->Show( false );
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// Circle center uses position controls:
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m_staticTextPosStart->SetLabel( _( "Center" ) );
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PutValueInLocalUnits( *m_textCtrPosX, m_shape->m_Start.x );
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PutValueInLocalUnits( *m_textCtrPosY, m_shape->m_Start.y );
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PutValueInLocalUnits( *m_textCtrAngle, m_shape->m_Radius );
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m_staticTextAngleUnit->SetLabel( unit );
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m_staticTextAngle->SetLabel( _( "Radius" ) );
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break;
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case S_POLYGON: // polygon
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SetTitle( "Polygon" );
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m_staticTextPosStart->SetLabel( wxEmptyString );
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m_staticTextPosEnd->SetLabel( wxEmptyString );
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m_staticTextAngle->SetLabel( _( "corners count" ) );
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m_textCtrAngle->SetValue( wxString::Format( "%d", m_shape->m_Poly.size() ) );
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break;
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default:
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SetTitle( "Unknown basic shape" );
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break;
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}
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return true;
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}
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bool DIALOG_PAD_PRIMITIVES_PROPERTIES::TransferDataFromWindow()
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{
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// Transfer data out of the GUI.
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m_shape->m_Thickness = ValueFromString( g_UserUnit, m_textCtrlThickness->GetValue() );
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switch( m_shape->m_Shape )
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{
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case S_SEGMENT: // Segment with rounded ends
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m_shape->m_Start.x = ValueFromString( g_UserUnit, m_textCtrPosX->GetValue() );
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m_shape->m_Start.y = ValueFromString( g_UserUnit, m_textCtrPosY->GetValue() );
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m_shape->m_End.x = ValueFromString( g_UserUnit, m_textCtrEndX->GetValue() );
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m_shape->m_End.y = ValueFromString( g_UserUnit, m_textCtrEndY->GetValue() );
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break;
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case S_ARC: // Arc with rounded ends
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// Start point of arc
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m_shape->m_Start.x = ValueFromString( g_UserUnit, m_textCtrEndX->GetValue() );
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m_shape->m_Start.y = ValueFromString( g_UserUnit, m_textCtrEndY->GetValue() );
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// arc center
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m_shape->m_End.x = ValueFromString( g_UserUnit, m_textCtrPosX->GetValue() );
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m_shape->m_End.y = ValueFromString( g_UserUnit, m_textCtrPosY->GetValue() );
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m_shape->m_ArcAngle = ValueFromString( DEGREES, m_textCtrAngle->GetValue() );
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break;
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case S_CIRCLE: // ring or circle
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m_shape->m_Start.x = ValueFromString( g_UserUnit, m_textCtrPosX->GetValue() );
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m_shape->m_Start.y = ValueFromString( g_UserUnit, m_textCtrPosY->GetValue() );
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//radius
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m_shape->m_Radius = ValueFromString( g_UserUnit, m_textCtrAngle->GetValue() );
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break;
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case S_POLYGON: // polygon
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// polygon has a specific dialog editor. No nothing here
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break;
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default:
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SetTitle( "Unknown basic shape" );
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break;
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}
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return true;
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}
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DIALOG_PAD_PRIMITIVE_POLY_PROPS::DIALOG_PAD_PRIMITIVE_POLY_PROPS(
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wxWindow* aParent, PAD_CS_PRIMITIVE * aShape )
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: DIALOG_PAD_PRIMITIVE_POLY_PROPS_BASE( aParent ),
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m_shape( aShape ), m_currshape( *m_shape )
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{
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TransferDataToWindow();
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m_sdbSizerOK->SetDefault();
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GetSizer()->SetSizeHints( this );
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// TODO: move wxEVT_GRID_CELL_CHANGING in wxFormbuilder, when it support it
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m_gridCornersList->Connect( wxEVT_GRID_CELL_CHANGING,
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wxGridEventHandler( DIALOG_PAD_PRIMITIVE_POLY_PROPS::onCellChanging ), NULL, this );
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}
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DIALOG_PAD_PRIMITIVE_POLY_PROPS::~DIALOG_PAD_PRIMITIVE_POLY_PROPS()
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{
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m_gridCornersList->Disconnect( wxEVT_GRID_CELL_CHANGING,
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wxGridEventHandler( DIALOG_PAD_PRIMITIVE_POLY_PROPS::onCellChanging ), NULL, this );
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}
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bool DIALOG_PAD_PRIMITIVE_POLY_PROPS::TransferDataToWindow()
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{
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if( m_shape == NULL )
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return false;
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// Update units and parameters names according to the shape to edit:
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wxString unit = GetAbbreviatedUnitsLabel();
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m_staticTextThicknessUnit->SetLabel( unit );
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PutValueInLocalUnits( *m_textCtrlThickness, m_currshape.m_Thickness );
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// Test for acceptable polygon (more than 2 corners, and not self-intersecting)
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// A warning message is displayed if not OK
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Validate();
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// If the number of corners is < 2 (Happens for a new shape, prepare 2 dummy corners
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while( m_currshape.m_Poly.size() < 2 )
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m_currshape.m_Poly.push_back( wxPoint( 0, 0 ) );
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// Populates the list of corners
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int extra_rows = m_currshape.m_Poly.size() - m_gridCornersList->GetNumberRows();
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if( extra_rows > 0 )
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{
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m_gridCornersList->AppendRows( extra_rows );
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}
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else if( extra_rows < 0 )
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{
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extra_rows = -extra_rows;
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m_gridCornersList->DeleteRows( 0, extra_rows );
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}
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// enter others corner coordinates
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wxString msg;
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for( unsigned row = 0; row < m_currshape.m_Poly.size(); ++row )
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{
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// Row label is "Corner x"
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msg.Printf( "Corner %d", row+1 );
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m_gridCornersList->SetRowLabelValue( row, msg );
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msg = StringFromValue( g_UserUnit, m_currshape.m_Poly[row].x );
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m_gridCornersList->SetCellValue( row, 0, msg );
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msg = StringFromValue( g_UserUnit, m_currshape.m_Poly[row].y );
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m_gridCornersList->SetCellValue( row, 1, msg );
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}
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return true;
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}
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bool DIALOG_PAD_PRIMITIVE_POLY_PROPS::TransferDataFromWindow()
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{
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if( !Validate() )
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return false;
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// Transfer data out of the GUI.
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m_currshape.m_Thickness = ValueFromString( g_UserUnit, m_textCtrlThickness->GetValue() );
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*m_shape = m_currshape;
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return true;
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}
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// test for a valid polygon (a not self intersectiong polygon)
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bool DIALOG_PAD_PRIMITIVE_POLY_PROPS::Validate()
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{
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if( m_currshape.m_Poly.size() < 3 )
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{
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m_staticTextValidate->SetLabel( _("Incorrect polygon: less than 3 corners" ) );
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m_staticTextValidate->Show( true );
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return false;
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}
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bool valid = true;
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SHAPE_LINE_CHAIN polyline;
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for( unsigned ii = 0; ii < m_currshape.m_Poly.size(); ++ii )
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polyline.Append( m_currshape.m_Poly[ii].x, m_currshape.m_Poly[ii].y );
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// The polyline describes a polygon: close it.
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polyline.SetClosed( true );
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// Remove redundant corners:
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polyline.Simplify();
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if( polyline.PointCount() < 3 )
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{
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m_staticTextValidate->SetLabel( _("Incorrect polygon: too few corners after simplification" ) );
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valid = false;
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}
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if( valid && polyline.SelfIntersecting() )
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{
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m_staticTextValidate->SetLabel( _("Incorrect polygon: self intersecting" ) );
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valid = false;
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}
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if( valid )
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m_staticTextValidate->SetLabel( _("Polygon:" ) );
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if( polyline.PointCount() != (int)m_currshape.m_Poly.size() )
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{ // Happens after simplification
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m_currshape.m_Poly.clear();
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for( int ii = 0; ii < polyline.PointCount(); ++ii )
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m_currshape.m_Poly.push_back( wxPoint( polyline.CPoint( ii ).x, polyline.CPoint( ii ).y ) );
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m_staticTextValidate->SetLabel( _("Polygon: redundant corners removed" ) );
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}
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return valid;
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::onButtonAdd( wxCommandEvent& event )
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{
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// Insert a new corner after the currently selected:
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int row = -1;
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if( m_gridCornersList->GetNumberRows() )
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{
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wxArrayInt selections = m_gridCornersList->GetSelectedRows();
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if( selections.size() > 0 )
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{
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std::sort( selections.begin(), selections.end() );
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row = selections[0];
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}
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else
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{
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row = m_gridCornersList->GetGridCursorRow();
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}
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if( row < 0 )
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{
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wxMessageBox( _( "Select a corner before adding a new corner" ) );
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return;
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}
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}
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else
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row = 0;
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m_gridCornersList->SelectRow( row, false );
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if( m_currshape.m_Poly.size() == 0 )
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m_currshape.m_Poly.push_back( wxPoint(0,0) );
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else
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m_currshape.m_Poly.insert( m_currshape.m_Poly.begin() + row + 1, wxPoint(0,0) );
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TransferDataToWindow();
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m_panelPoly->Refresh();
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::OnButtonDelete( wxCommandEvent& event )
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{
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wxArrayInt selections = m_gridCornersList->GetSelectedRows();
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std::sort( selections.begin(), selections.end() );
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// remove corners:
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for( int ii = selections.size()-1; ii >= 0 ; --ii )
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{
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m_currshape.m_Poly.erase( m_currshape.m_Poly.begin() + selections[ii] );
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}
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// Unselect all raws:
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m_gridCornersList->SelectRow( -1, false );
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TransferDataToWindow();
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m_panelPoly->Refresh();
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::onPaintPolyPanel( wxPaintEvent& event )
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{
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wxPaintDC dc( m_panelPoly );
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wxSize dc_size = dc.GetSize();
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dc.SetDeviceOrigin( dc_size.x / 2, dc_size.y / 2 );
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// Calculate a suitable scale to fit the available draw area
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wxSize minsize;
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for( unsigned ii = 0; ii < m_currshape.m_Poly.size(); ++ii )
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{
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minsize.x = std::max( minsize.x, std::abs( m_currshape.m_Poly[ii].x ) );
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minsize.y = std::max( minsize.y, std::abs( m_currshape.m_Poly[ii].y ) );
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}
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// The draw origin is the center of the window.
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// Therefore the window size is twice the minsize just calculated
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minsize.x *= 2;
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minsize.y *= 2;
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minsize.x += m_currshape.m_Thickness;
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minsize.y += m_currshape.m_Thickness;
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// Avoid null or too small size:
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int mindim = Millimeter2iu( 0.5 );
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if( minsize.x < mindim )
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minsize.x = mindim;
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if( minsize.y < mindim )
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minsize.y = mindim;
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double scale = std::min( (double) dc_size.x / minsize.x, (double) dc_size.y / minsize.y );
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// Give a margin
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scale *= 0.9;
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dc.SetUserScale( scale, scale );
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GRResetPenAndBrush( &dc );
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// Draw X and Y axis. This is particularly useful to show the
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// reference position of basic shape
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// Axis are drawn before the polygon to avoid masking segments on axis
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GRLine( NULL, &dc, -int( dc_size.x/scale ), 0, int( dc_size.x/scale ), 0, 0, LIGHTBLUE ); // X axis
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GRLine( NULL, &dc, 0, -int( dc_size.y/scale ), 0, int( dc_size.y/scale ), 0, LIGHTBLUE ); // Y axis
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// Draw polygon.
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// The selected edge(s) are shown in selectcolor, the others in normalcolor.
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EDA_COLOR_T normalcolor = WHITE;
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EDA_COLOR_T selectcolor = RED;
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for( unsigned ii = 0; ii < m_currshape.m_Poly.size(); ++ii )
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{
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EDA_COLOR_T color = normalcolor;
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if( m_gridCornersList->IsInSelection (ii, 0) ||
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m_gridCornersList->IsInSelection (ii, 1) ||
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m_gridCornersList->GetGridCursorRow() == (int)ii )
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color = selectcolor;
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unsigned jj = ii + 1;
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if( jj >= m_currshape.m_Poly.size() )
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jj = 0;
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GRLine( NULL, &dc, m_currshape.m_Poly[ii], m_currshape.m_Poly[jj], m_currshape.m_Thickness, color );
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}
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event.Skip();
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::onPolyPanelResize( wxSizeEvent& event )
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{
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m_panelPoly->Refresh();
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event.Skip();
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::onGridSelect( wxGridRangeSelectEvent& event )
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{
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m_panelPoly->Refresh();
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}
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void DIALOG_PAD_PRIMITIVE_POLY_PROPS::onCellChanging( wxGridEvent& event )
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{
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int row = event.GetRow();
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int col = event.GetCol();
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wxString msg = event.GetString();
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if( msg.IsEmpty() )
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return;
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int value = ValueFromString( g_UserUnit, msg );
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if( col == 0 ) // Set the X value
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m_currshape.m_Poly[row].x = value;
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else // Set the Y value
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m_currshape.m_Poly[row].y = value;
|
|
|
|
m_currshape.m_Thickness = ValueFromString( g_UserUnit, m_textCtrlThickness->GetValue() );
|
|
|
|
Validate();
|
|
|
|
m_panelPoly->Refresh();
|
|
}
|
|
|
|
|
|
// A dialog to apply geometry transforms to a shape or set of shapes
|
|
// (move, rotate around origin, scaling factor, duplication).
|
|
DIALOG_PAD_PRIMITIVES_TRANSFORM::DIALOG_PAD_PRIMITIVES_TRANSFORM(
|
|
wxWindow* aParent,
|
|
std::vector<PAD_CS_PRIMITIVE*>& aList, bool aShowDuplicate )
|
|
:DIALOG_PAD_PRIMITIVES_TRANSFORM_BASE( aParent ), m_list( aList )
|
|
{
|
|
wxString unit = GetAbbreviatedUnitsLabel();
|
|
m_staticTextMoveUnit->SetLabel( unit );
|
|
|
|
if( !aShowDuplicate ) // means no duplicate transform
|
|
{
|
|
m_staticTextDupCnt->Show( false );
|
|
m_spinCtrlDuplicateCount->Show( false );
|
|
}
|
|
|
|
m_sdbSizerOK->SetDefault();
|
|
GetSizer()->SetSizeHints( this );
|
|
}
|
|
|
|
// A helper function in geometry transform
|
|
inline void geom_transf( wxPoint& aCoord, wxPoint& aMove, double aScale, double aRotation )
|
|
{
|
|
aCoord.x = KiROUND( aCoord.x * aScale );
|
|
aCoord.y = KiROUND( aCoord.y * aScale );
|
|
aCoord += aMove;
|
|
RotatePoint( &aCoord, aRotation );
|
|
}
|
|
|
|
void DIALOG_PAD_PRIMITIVES_TRANSFORM::Transform( std::vector<PAD_CS_PRIMITIVE>* aList, int aDuplicateCount )
|
|
{
|
|
// Get parameters from dlg:
|
|
wxPoint moveVect;
|
|
moveVect.x = ValueFromString( g_UserUnit, m_textCtrMoveX->GetValue() );
|
|
moveVect.y = ValueFromString( g_UserUnit, m_textCtrMoveY->GetValue() );
|
|
|
|
double rotation = DoubleValueFromString( DEGREES, m_textCtrAngle->GetValue() );
|
|
double scale = DoubleValueFromString( UNSCALED_UNITS, m_textCtrlScalingFactor->GetValue() );
|
|
|
|
// Avoid too small /too large scale, which could create issues:
|
|
if( scale < 0.01 )
|
|
scale = 0.01;
|
|
|
|
if( scale > 100.0 )
|
|
scale = 100.0;
|
|
|
|
// Transform shapes
|
|
// shapes are scaled, then moved then rotated.
|
|
// if aList != NULL, the initial shape will be duplicated, and transform
|
|
// applied to the duplicated shape
|
|
do {
|
|
for( unsigned idx = 0; idx < m_list.size(); ++idx )
|
|
{
|
|
PAD_CS_PRIMITIVE* shape;
|
|
|
|
if( aList == NULL )
|
|
shape = m_list[idx];
|
|
else
|
|
{
|
|
PAD_CS_PRIMITIVE new_shape( *m_list[idx] );
|
|
aList->push_back( new_shape );
|
|
shape = &aList->back();
|
|
}
|
|
|
|
// Transform parameters common to all shape types (some can be unused)
|
|
shape->m_Thickness = KiROUND( shape->m_Thickness * scale );
|
|
geom_transf( shape->m_Start, moveVect, scale, rotation );
|
|
geom_transf( shape->m_End, moveVect, scale, rotation );
|
|
|
|
// specific parameters:
|
|
switch( shape->m_Shape )
|
|
{
|
|
case S_SEGMENT: // Segment with rounded ends
|
|
break;
|
|
|
|
case S_ARC: // Arc with rounded ends
|
|
break;
|
|
|
|
case S_CIRCLE: // ring or circle
|
|
shape->m_Radius = KiROUND( shape->m_Radius * scale );
|
|
break;
|
|
|
|
case S_POLYGON: // polygon
|
|
for( unsigned ii = 0; ii < shape->m_Poly.size(); ++ii )
|
|
geom_transf( shape->m_Poly[ii], moveVect, scale, rotation );
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
// Prepare new transform on duplication:
|
|
// Each new item is rotated (or moved) by the transform from the last duplication
|
|
rotation += rotation;
|
|
moveVect += moveVect;
|
|
} while( aList && --aDuplicateCount > 0 );
|
|
}
|
|
|