992 lines
36 KiB
C++
992 lines
36 KiB
C++
/*
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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) 2004 Jean-Pierre Charras, jaen-pierre.charras@gipsa-lab.inpg.com
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* Copyright (C) 2008-2011 Wayne Stambaugh <stambaughw@verizon.net>
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* Copyright (C) 2004-2011 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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* @file base_struct.h
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* @brief Basic classes for most KiCad items.
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*/
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#ifndef BASE_STRUCT_H_
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#define BASE_STRUCT_H_
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#include <colors.h>
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#include <bitmaps.h>
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#include <boost/ptr_container/ptr_vector.hpp>
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#if defined(DEBUG)
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#include <iostream> // needed for Show()
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extern std::ostream& operator <<( std::ostream& out, const wxSize& size );
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extern std::ostream& operator <<( std::ostream& out, const wxPoint& pt );
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#endif
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/**
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* Enum KICAD_T
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* is the set of class identification values, stored in EDA_ITEM::m_StructType
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*/
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enum KICAD_T {
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NOT_USED = -1, ///< the 3d code uses this value
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EOT = 0, ///< search types array terminator (End Of Types)
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TYPE_NOT_INIT = 0,
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PCB_T,
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SCREEN_T, ///< not really an item, used to identify a screen
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// Items in pcb
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PCB_MODULE_T, ///< class MODULE, a footprint
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PCB_PAD_T, ///< class D_PAD, a pad in a footprint
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PCB_LINE_T, ///< class DRAWSEGMENT, a segment not on copper layers
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PCB_TEXT_T, ///< class TEXTE_PCB, text on a layer
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PCB_MODULE_TEXT_T, ///< class TEXTE_MODULE, text in a footprint
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PCB_MODULE_EDGE_T, ///< class EDGE_MODULE, a footprint edge
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PCB_TRACE_T, ///< class TRACKE, a track segment (segment on a copper layer)
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PCB_VIA_T, ///< class VIA, a via (like a track segment on a copper layer)
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PCB_ZONE_T, ///< class SEGZONE, a segment used to fill a zone area (segment on a
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///< copper layer)
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PCB_MARKER_T, ///< class MARKER_PCB, a marker used to show something
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PCB_DIMENSION_T, ///< class DIMENSION, a dimension (graphic item)
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PCB_TARGET_T, ///< class PCB_TARGET, a target (graphic item)
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PCB_ZONE_AREA_T, ///< class ZONE_CONTAINER, a zone area
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PCB_ITEM_LIST_T, ///< class BOARD_ITEM_LIST, a list of board items
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// Schematic draw Items. The order of these items effects the sort order.
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// It is currently ordered to mimic the old Eeschema locate behavior where
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// the smallest item is the selected item.
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SCH_MARKER_T,
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SCH_JUNCTION_T,
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SCH_NO_CONNECT_T,
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SCH_BUS_ENTRY_T,
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SCH_LINE_T,
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SCH_POLYLINE_T,
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SCH_BITMAP_T,
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SCH_TEXT_T,
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SCH_LABEL_T,
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SCH_GLOBAL_LABEL_T,
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SCH_HIERARCHICAL_LABEL_T,
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SCH_FIELD_T,
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SCH_COMPONENT_T,
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SCH_SHEET_PIN_T,
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SCH_SHEET_T,
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// General
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SCH_SCREEN_T,
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BLOCK_LOCATE_STRUCT_TYPE,
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/*
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* Draw items in library component.
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*
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* The order of these items effects the sort order for items inside the
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* "DRAW/ENDDRAW" section of the component definition in a library file.
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* If you add a new draw item, type, please make sure you add it so the
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* sort order is logical.
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*/
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LIB_COMPONENT_T,
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LIB_ALIAS_T,
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LIB_ARC_T,
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LIB_CIRCLE_T,
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LIB_TEXT_T,
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LIB_RECTANGLE_T,
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LIB_POLYLINE_T,
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LIB_BEZIER_T,
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LIB_PIN_T,
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/*
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* Fields are not saved inside the "DRAW/ENDDRAW". Add new draw item
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* types before this line.
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*/
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LIB_FIELD_T,
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/*
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* For GerbView: items type:
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*/
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TYPE_GERBER_DRAW_ITEM,
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// End value
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MAX_STRUCT_TYPE_ID
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};
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enum SEARCH_RESULT {
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SEARCH_QUIT,
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SEARCH_CONTINUE
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};
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class wxFindReplaceData;
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class EDA_ITEM;
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class EDA_DRAW_FRAME;
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class EDA_RECT;
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class EDA_DRAW_PANEL;
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class DHEAD;
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/**
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* Class INSPECTOR
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* is an abstract class that is used to inspect and possibly collect the
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* (search) results of Iterating over a list or tree of KICAD_T objects.
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* Extend from this class and implement the Inspect function and provide for
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* a way for the extension to collect the results of the search/scan data and
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* provide them to the caller.
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*/
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class INSPECTOR
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{
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public:
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virtual ~INSPECTOR()
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{
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}
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/**
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* Function Inspect
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* is the examining function within the INSPECTOR which is passed to the
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* EDA_ITEM::Iterate() function. It is used primarily for searching, but
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* not limited to that. It can also collect or modify the scanned objects.
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*
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* @param aItem An EDA_ITEM to examine.
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* @param aTestData is arbitrary data needed by the inspector to determine
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* if the EDA_ITEM under test meets its match criteria.
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* @return A #SEARCH_RESULT type #SEARCH_QUIT if the iterator function is to
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* stop the scan, else #SEARCH_CONTINUE;
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*/
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SEARCH_RESULT virtual Inspect( EDA_ITEM* aItem, const void* aTestData ) = 0;
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};
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/**
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* Class EDA_RECT
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* handles the component boundary box.
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* This class is similar to wxRect, but some wxRect functions are very curious,
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* and are working only if dimensions are >= 0 (not always the case in KiCad)
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* and also KiCad needs some specific method.
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* so I prefer this more suitable class
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*/
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class EDA_RECT
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{
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private:
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wxPoint m_Pos; // Rectangle Origin
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wxSize m_Size; // Rectangle Size
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public:
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EDA_RECT() { };
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EDA_RECT( const wxPoint& aPos, const wxSize& aSize ) :
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m_Pos( aPos ),
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m_Size( aSize )
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{ }
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wxPoint Centre()
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{
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return wxPoint( m_Pos.x + ( m_Size.x >> 1 ),
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m_Pos.y + ( m_Size.y >> 1 ) );
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}
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/**
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* Function Move
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* moves the rectangle by the \a aMoveVector.
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* @param aMoveVector A wxPoint that is the value to move this rectangle
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*/
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void Move( const wxPoint& aMoveVector );
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/**
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* Function Normalize
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* ensures that the height ant width are positive.
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*/
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void Normalize();
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/**
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* Function Contains
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* @param aPoint = the wxPoint to test
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* @return true if aPoint is inside the boundary box. A point on a edge is seen as inside
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*/
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bool Contains( const wxPoint& aPoint ) const;
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/**
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* Function Contains
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* @param x = the x coordinate of the point to test
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* @param y = the x coordinate of the point to test
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* @return true if point is inside the boundary box. A point on a edge is seen as inside
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*/
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bool Contains( int x, int y ) const { return Contains( wxPoint( x, y ) ); }
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/**
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* Function Contains
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* @param aRect = the EDA_RECT to test
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* @return true if aRect is Contained. A common edge is seen as contained
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*/
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bool Contains( const EDA_RECT& aRect ) const;
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wxSize GetSize() const { return m_Size; }
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int GetX() const { return m_Pos.x; }
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int GetY() const { return m_Pos.y; }
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wxPoint GetOrigin() const { return m_Pos; }
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wxPoint GetPosition() const { return m_Pos; }
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wxPoint GetEnd() const { return wxPoint( GetRight(), GetBottom() ); }
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int GetWidth() const { return m_Size.x; }
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int GetHeight() const { return m_Size.y; }
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int GetRight() const { return m_Pos.x + m_Size.x; }
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int GetBottom() const { return m_Pos.y + m_Size.y; }
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void SetOrigin( const wxPoint& pos ) { m_Pos = pos; }
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void SetOrigin( int x, int y ) { m_Pos.x = x; m_Pos.y = y; }
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void SetSize( const wxSize& size ) { m_Size = size; }
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void SetSize( int w, int h ) { m_Size.x = w; m_Size.y = h; }
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void Offset( int dx, int dy ) { m_Pos.x += dx; m_Pos.y += dy; }
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void Offset( const wxPoint& offset ) { m_Pos.x += offset.x; m_Pos.y +=
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offset.y; }
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void SetX( int val ) { m_Pos.x = val; }
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void SetY( int val ) { m_Pos.y = val; }
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void SetWidth( int val ) { m_Size.x = val; }
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void SetHeight( int val ) { m_Size.y = val; }
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void SetEnd( int x, int y ) { SetEnd( wxPoint( x, y ) ); }
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void SetEnd( const wxPoint& pos )
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{
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m_Size.x = pos.x - m_Pos.x; m_Size.y = pos.y - m_Pos.y;
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}
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/**
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* Function Intersects
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* @return bool - true if the argument rectangle intersects this rectangle.
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* (i.e. if the 2 rectangles have at least a common point)
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*/
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bool Intersects( const EDA_RECT& aRect ) const;
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/**
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* Function operator(wxRect)
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* overloads the cast operator to return a wxRect
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*/
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operator wxRect() const { return wxRect( m_Pos, m_Size ); }
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/**
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* Function Inflate
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* inflates the rectangle horizontally by \a dx and vertically by \a dy. If \a dx
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* and/or \a dy is negative the rectangle is deflated.
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*/
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EDA_RECT& Inflate( wxCoord dx, wxCoord dy );
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/**
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* Function Inflate
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* inflates the rectangle horizontally and vertically by \a aDelta. If \a aDelta
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* is negative the rectangle is deflated.
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*/
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EDA_RECT& Inflate( int aDelta );
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/**
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* Function Merge
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* modifies the position and size of the rectangle in order to contain \a aRect. It is
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* mainly used to calculate bounding boxes.
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* @param aRect The rectangle to merge with this rectangle.
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*/
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void Merge( const EDA_RECT& aRect );
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/**
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* Function Merge
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* modifies the position and size of the rectangle in order to contain the given point.
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* @param aPoint The point to merge with the rectangle.
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*/
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void Merge( const wxPoint& aPoint );
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/**
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* Function GetArea
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* returns the area of the rectangle.
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* @return The area of the rectangle.
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*/
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double GetArea() const;
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};
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// These define are used for the .m_Flags and .m_UndoRedoStatus member of the
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// class EDA_ITEM
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#define IS_CHANGED (1 << 0) ///< Item was edited, and modified
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#define IS_LINKED (1 << 1) ///< Used in calculation to mark linked items (temporary use)
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#define IN_EDIT (1 << 2) ///< Item currently edited
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#define IS_MOVED (1 << 3) ///< Item being moved
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#define IS_NEW (1 << 4) ///< New item, just created
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#define IS_RESIZED (1 << 5) ///< Item being resized
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#define IS_DRAGGED (1 << 6) ///< Item being dragged
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#define IS_DELETED (1 << 7)
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#define IS_WIRE_IMAGE (1 << 8)
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#define STARTPOINT (1 << 9)
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#define ENDPOINT (1 << 10)
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#define SELECTED (1 << 11)
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#define SELECTEDNODE (1 << 12) ///< flag indicating that the structure has already selected
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#define STRUCT_DELETED (1 << 13) ///< flag indication structures to be erased
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#define CANDIDATE (1 << 14) ///< flag indicating that the structure is connected
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#define SKIP_STRUCT (1 << 15) ///< flag indicating that the structure should be ignored
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#define DO_NOT_DRAW (1 << 16) ///< Used to disable draw function
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#define IS_CANCELLED (1 << 17) ///< flag set when edit dialogs are canceled when editing a
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///< new object
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#define TRACK_LOCKED (1 << 18) ///< Pcbnew: track locked: protected from global deletion
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#define TRACK_AR (1 << 19) ///< Pcbnew: autorouted track
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#define FLAG1 (1 << 20) ///< Pcbnew: flag used in local computations
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#define FLAG0 (1 << 21) ///< Pcbnew: flag used in local computations
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#define BEGIN_ONPAD (1 << 22) ///< Pcbnew: flag set for track segment starting on a pad
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#define END_ONPAD (1 << 23) ///< Pcbnew: flag set for track segment ending on a pad
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#define BUSY (1 << 24) ///< Pcbnew: flag indicating that the structure has
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///< already been edited, in some functions
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#define EDA_ITEM_ALL_FLAGS -1
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/**
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* Class EDA_ITEM
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* is a base class for most all the KiCad significant classes, used in
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* schematics and boards.
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*/
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class EDA_ITEM
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{
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private:
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/**
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* Run time identification, _keep private_ so it can never be changed after
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* a constructor sets it. See comment near SetType() regarding virtual
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* functions.
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*/
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KICAD_T m_StructType;
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int m_Status;
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protected:
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EDA_ITEM* Pnext; ///< next in linked list
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EDA_ITEM* Pback; ///< previous in linked list
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DHEAD* m_List; ///< which DLIST I am on.
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EDA_ITEM* m_Parent; /* Linked list: Link (parent struct) */
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EDA_ITEM* m_Son; /* Linked list: Link (son struct) */
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unsigned long m_TimeStamp; ///< Time stamp used for logical links
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/// Set to true to override the visibility setting of the item.
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bool m_forceVisible;
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/// Flag bits for editing and other uses.
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int m_Flags;
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// Link to an copy of the item use to save the item's state for undo/redo feature.
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EDA_ITEM* m_Image;
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private:
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void InitVars();
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/**
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* Function doClone
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* is used by the derived class to actually implement the cloning.
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*
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* The default version will return NULL in release builds and likely crash the
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* program. In debug builds, an warning message indicating the derived class
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* has not implemented cloning. This really should be a pure virtual function.
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* Due to the fact that there are so many objects derived from EDA_ITEM, the
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* decision was made to return NULL until all the objects derived from EDA_ITEM
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* implement cloning. Once that happens, this function should be made pure.
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*
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* @return A clone of the item.
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*/
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virtual EDA_ITEM* doClone() const;
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public:
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EDA_ITEM( EDA_ITEM* parent, KICAD_T idType );
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EDA_ITEM( KICAD_T idType );
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EDA_ITEM( const EDA_ITEM& base );
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virtual ~EDA_ITEM() { };
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/**
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* Function Type
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* returns the type of object. This attribute should never be changed
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* after a constructor sets it, so there is no public "setter" method.
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* @return KICAD_T - the type of object.
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*/
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KICAD_T Type() const { return m_StructType; }
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void SetTimeStamp( unsigned long aNewTimeStamp ) { m_TimeStamp = aNewTimeStamp; }
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unsigned long GetTimeStamp() const { return m_TimeStamp; }
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EDA_ITEM* Next() const { return (EDA_ITEM*) Pnext; }
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EDA_ITEM* Back() const { return (EDA_ITEM*) Pback; }
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EDA_ITEM* GetParent() const { return m_Parent; }
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EDA_ITEM* GetSon() const { return m_Son; }
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DHEAD* GetList() const { return m_List; }
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void SetNext( EDA_ITEM* aNext ) { Pnext = aNext; }
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void SetBack( EDA_ITEM* aBack ) { Pback = aBack; }
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void SetParent( EDA_ITEM* aParent ) { m_Parent = aParent; }
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void SetSon( EDA_ITEM* aSon ) { m_Son = aSon; }
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void SetList( DHEAD* aList ) { m_List = aList; }
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inline bool IsNew() const { return m_Flags & IS_NEW; }
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inline bool IsModified() const { return m_Flags & IS_CHANGED; }
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inline bool IsMoving() const { return m_Flags & IS_MOVED; }
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inline bool IsDragging() const { return m_Flags & IS_DRAGGED; }
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inline bool IsSelected() const { return m_Flags & SELECTED; }
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inline bool IsResized() const { return m_Flags & IS_RESIZED; }
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void SetModified();
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int GetState( int type ) const
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{
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return m_Status & type;
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}
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void SetState( int type, int state )
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{
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if( state )
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m_Status |= type; // state = ON or OFF
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else
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m_Status &= ~type;
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}
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int GetStatus() const { return m_Status; }
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void SetStatus( int aStatus ) { m_Status = aStatus; }
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void SetFlags( int aMask ) { m_Flags |= aMask; }
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void ClearFlags( int aMask = EDA_ITEM_ALL_FLAGS ) { m_Flags &= ~aMask; }
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int GetFlags() const { return m_Flags; }
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void SetImage( EDA_ITEM* aItem ) { m_Image = aItem; }
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/**
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* Function SetForceVisible
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* is used to set and cleag force visible flag used to force the item to be drawn
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* even if it's draw attribute is set to not visible.
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*
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* @param aEnable True forces the item to be drawn. False uses the item's visibility
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* setting to determine if the item is to be drawn.
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*/
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void SetForceVisible( bool aEnable ) { m_forceVisible = aEnable; }
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/**
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* Function DisplayInfo
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* has knowledge about the frame and how and where to put status
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* information about this object into the frame's message panel.
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* @param frame A EDA_DRAW_FRAME in which to print status information.
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*/
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virtual void DisplayInfo( EDA_DRAW_FRAME* frame )
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{
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|
// derived classes may implement this
|
|
}
|
|
|
|
/**
|
|
* Function HitTest
|
|
* tests if the given wxPoint is within the bounds of this object.
|
|
* @param refPos A wxPoint to test
|
|
* @return bool - true if a hit, else false
|
|
*/
|
|
virtual bool HitTest( const wxPoint& refPos )
|
|
{
|
|
return false; // derived classes should override this function
|
|
}
|
|
|
|
/**
|
|
* Function HitTest (overlaid)
|
|
* tests if the given EDA_RECT intersect this object.
|
|
* For now, an ending point must be inside this rect.
|
|
* @param refArea : the given EDA_RECT
|
|
* @return bool - true if a hit, else false
|
|
*/
|
|
virtual bool HitTest( EDA_RECT& refArea )
|
|
{
|
|
return false; // derived classes should override this function
|
|
}
|
|
|
|
/**
|
|
* Function GetBoundingBox
|
|
* returns the orthogonal, bounding box of this object for display
|
|
* purposes.
|
|
* This box should be an enclosing perimeter for visible components of this
|
|
* object, and the units should be in the pcb or schematic coordinate
|
|
* system.
|
|
* It is OK to overestimate the size by a few counts.
|
|
*/
|
|
virtual EDA_RECT GetBoundingBox() const
|
|
{
|
|
#if defined(DEBUG)
|
|
printf( "Missing GetBoundingBox()\n" );
|
|
Show( 0, std::cout ); // tell me which classes still need GetBoundingBox support
|
|
#endif
|
|
|
|
// return a zero-sized box per default. derived classes should override
|
|
// this
|
|
return EDA_RECT( wxPoint( 0, 0 ), wxSize( 0, 0 ) );
|
|
}
|
|
|
|
/**
|
|
* Function Clone
|
|
* creates a duplicate of this item with linked list members set to NULL.
|
|
*
|
|
* The Clone() function only calls the private virtual doClone() which actually
|
|
* does the cloning for the derived object.
|
|
*
|
|
* @todo: use this instead of Copy() everywhere, then kill Copy().
|
|
*
|
|
* @return A clone of the item.
|
|
*/
|
|
EDA_ITEM* Clone() const; // should not be inline, to save the ~ 6 bytes per call site.
|
|
|
|
/**
|
|
* Function IterateForward
|
|
* walks through the object tree calling the inspector() on each object
|
|
* type requested in scanTypes.
|
|
*
|
|
* @param listStart The first in a list of EDA_ITEMs to iterate over.
|
|
* @param inspector Is an INSPECTOR to call on each object that is one of
|
|
* the requested scanTypes.
|
|
* @param testData Is an aid to testFunc, and should be sufficient to allow
|
|
* it to fully determine if an item meets the match criteria,
|
|
* but it may also be used to collect output.
|
|
* @param scanTypes A KICAD_T array that is EOT terminated, and provides both
|
|
* the order and interest level of of the types of objects to
|
|
* be iterated over.
|
|
* @return SEARCH_RESULT SEARCH_QUIT if the called INSPECTOR returned
|
|
* SEARCH_QUIT, else SCAN_CONTINUE;
|
|
*/
|
|
static SEARCH_RESULT IterateForward( EDA_ITEM* listStart,
|
|
INSPECTOR* inspector,
|
|
const void* testData,
|
|
const KICAD_T scanTypes[] );
|
|
|
|
/**
|
|
* Function Visit
|
|
* may be re-implemented for each derived class in order to handle
|
|
* all the types given by its member data. Implementations should call
|
|
* inspector->Inspect() on types in scanTypes[], and may use
|
|
* IterateForward()
|
|
* to do so on lists of such data.
|
|
* @param inspector An INSPECTOR instance to use in the inspection.
|
|
* @param testData Arbitrary data used by the inspector.
|
|
* @param scanTypes Which KICAD_T types are of interest and the order
|
|
* is significant too, terminated by EOT.
|
|
* @return SEARCH_RESULT SEARCH_QUIT if the Iterator is to stop the scan,
|
|
* else SCAN_CONTINUE, and determined by the inspector.
|
|
*/
|
|
virtual SEARCH_RESULT Visit( INSPECTOR* inspector, const void* testData,
|
|
const KICAD_T scanTypes[] );
|
|
|
|
/**
|
|
* Function GetClass
|
|
* returns the class name.
|
|
* @return wxString
|
|
*/
|
|
virtual wxString GetClass() const
|
|
{
|
|
return wxT( "EDA_ITEM" );
|
|
}
|
|
|
|
/**
|
|
* Function GetSelectMenuText
|
|
* returns the text to display to be used in the selection clarification context menu
|
|
* when multiple items are found at the current cursor position. The default version
|
|
* of this function raises an assertion in the debug mode and returns a string to
|
|
* indicate that it was not overridden to provide the object specific text.
|
|
*
|
|
* @return The menu text string.
|
|
*/
|
|
virtual wxString GetSelectMenuText() const;
|
|
|
|
/**
|
|
* Function GetMenuImage
|
|
* returns a pointer to an image to be used in menus. The default version returns
|
|
* the right arrow image. Override this function to provide object specific menu
|
|
* images.
|
|
* @return The menu image associated with the item.
|
|
*/
|
|
virtual BITMAP_DEF GetMenuImage() const { return right_xpm; }
|
|
|
|
/**
|
|
* Function Matches
|
|
* compares the item against the search criteria in \a aSearchData.
|
|
*
|
|
* The base class returns false since many of the objects derived from EDA_ITEM
|
|
* do not have any text to search.
|
|
*
|
|
* @param aSearchData A reference to a wxFindReplaceData object containing the
|
|
* search criteria.
|
|
* @param aAuxData A pointer to optional data required for the search or NULL
|
|
* if not used.
|
|
* @param aFindLocation A pointer to a wxPoint object to store the location of
|
|
* matched item. The pointer can be NULL if it is not used.
|
|
* @return True if the item's text matches the search criteria in \a aSearchData.
|
|
*/
|
|
virtual bool Matches( wxFindReplaceData& aSearchData, void* aAuxData, wxPoint* aFindLocation )
|
|
{
|
|
return false;
|
|
}
|
|
|
|
/**
|
|
* Function Matches
|
|
* compares \a aText against search criteria in \a aSearchData.
|
|
*
|
|
* @param aText A reference to a wxString object containing the string to test.
|
|
* @param aSearchData The criteria to search against.
|
|
* @return True if \a aText matches the search criteria in \a aSearchData.
|
|
*/
|
|
bool Matches( const wxString& aText, wxFindReplaceData& aSearchData );
|
|
|
|
/**
|
|
* Function Replace
|
|
* performs a text replace on \a aText using the find and replace criteria in
|
|
* \a aSearchData on items that support text find and replace.
|
|
*
|
|
* @param aSearchData A reference to a wxFindReplaceData object containing the
|
|
* search and replace criteria.
|
|
* @param aText A reference to a wxString object containing the text to be
|
|
* replaced.
|
|
* @return True if \a aText was modified, otherwise false.
|
|
*/
|
|
bool Replace( wxFindReplaceData& aSearchData, wxString& aText );
|
|
|
|
/**
|
|
* Function Replace
|
|
* performs a text replace using the find and replace criteria in \a aSearchData
|
|
* on items that support text find and replace.
|
|
*
|
|
* This function must be overridden for items that support text replace.
|
|
*
|
|
* @param aSearchData A reference to a wxFindReplaceData object containing the
|
|
* search and replace criteria.
|
|
* @param aAuxData A pointer to optional data required for the search or NULL
|
|
* if not used.
|
|
* @return True if the item text was modified, otherwise false.
|
|
*/
|
|
virtual bool Replace( wxFindReplaceData& aSearchData, void* aAuxData = NULL ) { return false; }
|
|
|
|
/**
|
|
* Function IsReplaceable
|
|
* <p>
|
|
* Override this method in any derived object that supports test find and
|
|
* replace.
|
|
* </p>
|
|
*
|
|
* @return True if the item has replaceable text that can be modified using
|
|
* the find and replace dialog.
|
|
*/
|
|
virtual bool IsReplaceable() const { return false; }
|
|
|
|
/**
|
|
* Test if another item is less than this object.
|
|
*
|
|
* @param aItem - Item to compare against.
|
|
* @return - True if \a aItem is less than the item.
|
|
*/
|
|
bool operator<( const EDA_ITEM& aItem ) const;
|
|
|
|
/**
|
|
* Function Sort
|
|
* is a helper function to be used by the C++ STL sort algorithm for sorting a STL
|
|
* container of EDA_ITEM pointers.
|
|
*
|
|
* @param aLeft The left hand item to compare.
|
|
* @param aRight The right hand item to compare.
|
|
* @return True if \a aLeft is less than \a aRight.
|
|
*/
|
|
static bool Sort( const EDA_ITEM* aLeft, const EDA_ITEM* aRight ) { return *aLeft < *aRight; }
|
|
|
|
/**
|
|
* Operator assignment
|
|
* is used to assign the members of \a aItem to another object.
|
|
*
|
|
* @warning This is still a work in progress and not ready for prime time. Do not use
|
|
* as there is a known issue with wxString buffers.
|
|
*/
|
|
virtual EDA_ITEM& operator=( const EDA_ITEM& aItem );
|
|
|
|
#if defined(DEBUG)
|
|
|
|
/**
|
|
* Function Show
|
|
* is used to output the object tree, currently for debugging only.
|
|
* @param nestLevel An aid to prettier tree indenting, and is the level
|
|
* of nesting of this object within the overall tree.
|
|
* @param os The ostream& to output to.
|
|
*/
|
|
virtual void Show( int nestLevel, std::ostream& os ) const = 0;
|
|
// pure virtual so compiler warns if somebody mucks up a derived declaration
|
|
|
|
void ShowDummy( std::ostream& os ) const; ///< call this if you are a lazy developer
|
|
|
|
/**
|
|
* Function NestedSpace
|
|
* outputs nested space for pretty indenting.
|
|
* @param nestLevel The nest count
|
|
* @param os The ostream&, where to output
|
|
* @return std::ostream& - for continuation.
|
|
**/
|
|
static std::ostream& NestedSpace( int nestLevel, std::ostream& os );
|
|
|
|
#endif
|
|
};
|
|
|
|
|
|
/**
|
|
* Function new_clone
|
|
* provides cloning capabilities for all Boost pointer containers of EDA_ITEM pointers.
|
|
*
|
|
* @param aItem EDA_ITEM to clone.
|
|
* @return Clone of \a aItem.
|
|
*/
|
|
inline EDA_ITEM* new_clone( const EDA_ITEM& aItem ) { return aItem.Clone(); }
|
|
|
|
|
|
/**
|
|
* Define list of drawing items for screens.
|
|
*
|
|
* The standard C++ container was chosen so the pointer can be removed from a list without
|
|
* it being destroyed.
|
|
*/
|
|
typedef std::vector< EDA_ITEM* > EDA_ITEMS;
|
|
|
|
|
|
// Graphic Text justify:
|
|
// Values -1,0,1 are used in computations, do not change them
|
|
enum EDA_TEXT_HJUSTIFY_T {
|
|
GR_TEXT_HJUSTIFY_LEFT = -1,
|
|
GR_TEXT_HJUSTIFY_CENTER = 0,
|
|
GR_TEXT_HJUSTIFY_RIGHT = 1
|
|
};
|
|
|
|
|
|
enum EDA_TEXT_VJUSTIFY_T {
|
|
GR_TEXT_VJUSTIFY_TOP = -1,
|
|
GR_TEXT_VJUSTIFY_CENTER = 0,
|
|
GR_TEXT_VJUSTIFY_BOTTOM = 1
|
|
};
|
|
|
|
/* Options to show solid segments (segments, texts...) */
|
|
enum EDA_DRAW_MODE_T {
|
|
LINE = 0, // segments are drawn as lines
|
|
FILLED, // normal mode: segments have thickness
|
|
SKETCH // sketch mode: segments have thickness, but are not filled
|
|
};
|
|
|
|
/**
|
|
* Enum FILL_T
|
|
* is the set of fill types used in plotting or drawing enclosed areas.
|
|
*/
|
|
enum FILL_T {
|
|
NO_FILL, // Poly, Square, Circle, Arc = option No Fill
|
|
FILLED_SHAPE, /* Poly, Square, Circle, Arc = option Fill
|
|
* with current color ("Solid shape") */
|
|
FILLED_WITH_BG_BODYCOLOR /* Poly, Square, Circle, Arc = option Fill
|
|
* with background body color, translucent
|
|
* (texts inside this shape can be seen)
|
|
* not filled in B&W mode when plotting or
|
|
* printing */
|
|
};
|
|
|
|
|
|
#define DEFAULT_SIZE_TEXT 60 /* default text height (in mils or 1/1000") */
|
|
|
|
/**
|
|
* Class EDA_TEXT
|
|
* is a basic class to handle texts (labels, texts on components or footprints
|
|
* ..) not used directly. The "used" text classes are derived from EDA_ITEM and
|
|
* EDA_TEXT using multiple inheritance.
|
|
*/
|
|
class EDA_TEXT
|
|
{
|
|
public:
|
|
wxString m_Text;
|
|
int m_Thickness; ///< pen size used to draw this text
|
|
double m_Orient; ///< Orient in 0.1 degrees
|
|
wxPoint m_Pos; ///< XY position of anchor text.
|
|
wxSize m_Size; ///< XY size of text
|
|
bool m_Mirror; ///< true iff mirrored
|
|
int m_Attributs; ///< bit flags such as visible, etc.
|
|
bool m_Italic; ///< should be italic font (if available)
|
|
bool m_Bold; ///< should be bold font (if available)
|
|
EDA_TEXT_HJUSTIFY_T m_HJustify; ///< horizontal justification
|
|
EDA_TEXT_VJUSTIFY_T m_VJustify; ///< vertical justification
|
|
|
|
bool m_MultilineAllowed; /**< true to use multiline option, false
|
|
* to use only single line text
|
|
* Single line is faster in
|
|
* calculations than multiline */
|
|
|
|
public:
|
|
EDA_TEXT( const wxString& text = wxEmptyString );
|
|
EDA_TEXT( const EDA_TEXT& aText );
|
|
virtual ~EDA_TEXT();
|
|
|
|
/**
|
|
* Function SetThickness
|
|
* sets text thickness.
|
|
* @param aNewThickness is the new text thickness.
|
|
*/
|
|
void SetThickness( int aNewThickness ) { m_Thickness = aNewThickness; };
|
|
|
|
/**
|
|
* Function GetThickness
|
|
* returns text thickness.
|
|
* @return int - text thickness.
|
|
*/
|
|
int GetThickness() const { return m_Thickness; };
|
|
|
|
void SetOrientation( double aOrientation ) { m_Orient = aOrientation; }
|
|
double GetOrientation() const { return m_Orient; }
|
|
|
|
void SetItalic( bool isItalic ) { m_Italic = isItalic; }
|
|
bool IsItalic() const { return m_Italic; }
|
|
|
|
void SetMirrored( bool isMirrored ) { m_Mirror = isMirrored; }
|
|
bool IsMirrored() const { return m_Mirror; }
|
|
|
|
/**
|
|
* Function SetSize
|
|
* sets text size.
|
|
* @param aNewSize is the new text size.
|
|
*/
|
|
void SetSize( const wxSize& aNewSize ) { m_Size = aNewSize; };
|
|
|
|
/**
|
|
* Function GetSize
|
|
* returns text size.
|
|
* @return wxSize - text size.
|
|
*/
|
|
const wxSize GetSize() const { return m_Size; };
|
|
|
|
/// named differently than the ones using multiple inheritance and including this class
|
|
void SetPos( const wxPoint& aPoint ) { m_Pos = aPoint; }
|
|
const wxPoint GetPos() const { return m_Pos; }
|
|
|
|
int GetLength() const { return m_Text.Length(); };
|
|
|
|
/**
|
|
* Function Draw
|
|
* @param aPanel = the current DrawPanel
|
|
* @param aDC = the current Device Context
|
|
* @param aOffset = draw offset (usually (0,0))
|
|
* @param aColor = text color
|
|
* @param aDrawMode = GR_OR, GR_XOR.., -1 to use the current mode.
|
|
* @param aDisplay_mode = LINE, FILLED or SKETCH
|
|
* @param aAnchor_color = anchor color ( UNSPECIFIED_COLOR = do not draw anchor ).
|
|
*/
|
|
void Draw( EDA_DRAW_PANEL* aPanel, wxDC* aDC,
|
|
const wxPoint& aOffset, EDA_Colors aColor,
|
|
int aDrawMode, EDA_DRAW_MODE_T aDisplay_mode = LINE,
|
|
EDA_Colors aAnchor_color = UNSPECIFIED_COLOR );
|
|
|
|
private:
|
|
|
|
/**
|
|
* Function DrawOneLineOfText
|
|
* Draw a single text line.
|
|
* Used to draw each line of this EDA_TEXT, that can be multiline
|
|
* @param aPanel = the current DrawPanel
|
|
* @param aDC = the current Device Context
|
|
* @param aOffset = draw offset (usually (0,0))
|
|
* @param aColor = text color
|
|
* @param aDrawMode = GR_OR, GR_XOR.., -1 to use the current mode.
|
|
* @param aFillMode = LINE, FILLED or SKETCH
|
|
* @param aAnchor_color = anchor color ( UNSPECIFIED_COLOR = do not draw anchor ).
|
|
* @param aText = the single line of text to draw.
|
|
* @param aPos = the position of this line ).
|
|
*/
|
|
void DrawOneLineOfText( EDA_DRAW_PANEL* aPanel, wxDC* aDC,
|
|
const wxPoint& aOffset, EDA_Colors aColor,
|
|
int aDrawMode, EDA_DRAW_MODE_T aFillMode,
|
|
EDA_Colors aAnchor_color, wxString& aText,
|
|
wxPoint aPos );
|
|
|
|
public:
|
|
|
|
/**
|
|
* Function TextHitTest
|
|
* Test if \a aPoint is within the bounds of this object.
|
|
* @param aPoint- A wxPoint to test
|
|
* @param aAccuracy - Amount to inflate the bounding box.
|
|
* @return bool - true if a hit, else false
|
|
*/
|
|
bool TextHitTest( const wxPoint& aPoint, int aAccuracy = 0 ) const;
|
|
|
|
/**
|
|
* Function TextHitTest (overloaded)
|
|
* Tests if object bounding box is contained within or intersects \a aRect.
|
|
*
|
|
* @param aRect - Rect to test against.
|
|
* @param aContains - Test for containment instead of intersection if true.
|
|
* @param aAccuracy - Amount to inflate the bounding box.
|
|
* @return bool - true if a hit, else false
|
|
*/
|
|
bool TextHitTest( const EDA_RECT& aRect, bool aContains = false, int aAccuracy = 0 ) const;
|
|
|
|
/**
|
|
* Function LenSize
|
|
* @return the text length in internal units
|
|
* @param aLine : the line of text to consider.
|
|
* For single line text, this parameter is always m_Text
|
|
*/
|
|
int LenSize( const wxString& aLine ) const;
|
|
|
|
/**
|
|
* Function GetTextBox
|
|
* useful in multiline texts to calculate the full text or a line area (for
|
|
* zones filling, locate functions....)
|
|
* @return the rect containing the line of text (i.e. the position and the
|
|
* size of one line) this rectangle is calculated for 0 orient text.
|
|
* If orientation is not 0 the rect must be rotated to match the
|
|
* physical area
|
|
* @param aLine The line of text to consider.
|
|
* for single line text, aLine is unused
|
|
* If aLine == -1, the full area (considering all lines) is returned
|
|
* @param aThickness Overrides the current thickness when greater than 0.
|
|
* @param aInvertY Invert the Y axis when calculating bounding box.
|
|
*/
|
|
EDA_RECT GetTextBox( int aLine = -1, int aThickness = -1, bool aInvertY = false ) const;
|
|
|
|
/**
|
|
* Function GetInterline
|
|
* return the distance between 2 text lines
|
|
* has meaning only for multiline texts
|
|
*/
|
|
int GetInterline() const
|
|
{
|
|
return (( m_Size.y * 14 ) / 10) + m_Thickness;
|
|
}
|
|
|
|
/**
|
|
* Function GetTextStyleName
|
|
* @return a wxString with the style name( Normal, Italic, Bold, Bold+Italic)
|
|
*/
|
|
wxString GetTextStyleName();
|
|
|
|
void SetText( const wxString& aText ) { m_Text = aText; }
|
|
|
|
/**
|
|
* Function GetText
|
|
* returns the string associated with the text object.
|
|
* <p>
|
|
* This function is virtual to allow derived classes to override getting the
|
|
* string to provide a way for modifying the base string by adding a suffix or
|
|
* prefix to the base string.
|
|
* </p>
|
|
* @return a const wxString object containing the string of the item.
|
|
*/
|
|
virtual const wxString GetText() const { return m_Text; }
|
|
|
|
EDA_TEXT_HJUSTIFY_T GetHorizJustify() const { return m_HJustify; };
|
|
EDA_TEXT_VJUSTIFY_T GetVertJustify() const { return m_VJustify; };
|
|
void SetHorizJustify( EDA_TEXT_HJUSTIFY_T aType ) { m_HJustify = aType; };
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void SetVertJustify( EDA_TEXT_VJUSTIFY_T aType ) { m_VJustify = aType; };
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};
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#endif // BASE_STRUCT_H_
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