2017-08-14 14:53:25 +00:00
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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 2017 CERN
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* @author Maciej Suminski <maciej.suminski@cern.ch>
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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 <lib_items.h>
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#include <lib_draw_item.h>
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#include <stdexcept>
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#include <wx/debug.h>
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LIB_ITEMS_LIST::ITERATOR::ITERATOR( LIB_ITEMS_MAP& aItems, int aType )
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: m_parent( &aItems )
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{
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m_filter = ( aType != TYPE_NOT_INIT );
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m_type = m_filter ? aType : FIRST_TYPE;
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m_it = (*m_parent)[m_type].begin();
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2017-09-07 20:05:49 +00:00
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// be sure the enum order is correct for the type
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2017-08-14 14:53:25 +00:00
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static_assert( (int) ( ITERATOR::FIRST_TYPE ) < (int) ( ITERATOR::LAST_TYPE ),
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"fix FIRST_TYPE and LAST_TYPE definitions" );
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wxASSERT( m_type >= ITERATOR::FIRST_TYPE && m_type <= ITERATOR::LAST_TYPE );
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}
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LIB_ITEMS_LIST::ITERATOR LIB_ITEMS_LIST::begin( int aType ) const
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{
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LIB_ITEMS_LIST::ITERATOR it( m_data, aType );
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if( it.m_filter ) // iterates over a specific type
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{
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it.m_it = (*it.m_parent)[it.m_type].begin();
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}
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else // iterates over all items
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{
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// find a not empty container
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auto i = m_data.begin();
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while( i->second.empty() && i != m_data.end() )
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++i;
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if( i == m_data.end() )
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--i;
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it.m_it = i->second.begin();
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it.m_type = i->first;
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}
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return it;
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}
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LIB_ITEMS_LIST::ITERATOR LIB_ITEMS_LIST::end( int aType ) const
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{
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LIB_ITEMS_LIST::ITERATOR it( m_data, aType );
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if( it.m_filter ) // iterates over a specific type
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{
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it.m_it = (*it.m_parent)[it.m_type].end();
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}
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else // iterates over all items
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{
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2017-09-07 19:56:30 +00:00
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// find a not empty container, starting from the last type
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2017-08-14 14:53:25 +00:00
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auto i = m_data.rbegin();
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while( i->second.empty() && i != m_data.rend() )
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++i;
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if( i == m_data.rend() )
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--i;
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it.m_it = i->second.end();
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it.m_type = i->first;
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}
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return it;
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}
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void LIB_ITEMS_LIST::push_back( LIB_ITEM* aItem )
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{
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wxASSERT( aItem->Type() >= ITERATOR::FIRST_TYPE && aItem->Type() <= ITERATOR::LAST_TYPE );
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m_data[aItem->Type()].push_back( aItem );
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}
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LIB_ITEMS_LIST::ITERATOR LIB_ITEMS_LIST::erase( const ITERATOR& aIterator )
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{
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LIB_ITEMS_LIST::ITERATOR it( aIterator );
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it.m_it = (*aIterator.m_parent)[aIterator.m_type].erase( aIterator.m_it );
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2017-09-07 20:05:49 +00:00
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it.validate();
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2017-08-14 14:53:25 +00:00
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return it;
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}
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size_t LIB_ITEMS_LIST::size() const
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{
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size_t counter = 0;
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for( auto& type : m_data )
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counter += type.second.size();
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return counter;
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}
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bool LIB_ITEMS_LIST::empty() const
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{
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for( auto& type : m_data )
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{
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if( !type.second.empty() )
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return false;
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}
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return true;
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}
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void LIB_ITEMS_LIST::sort()
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{
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for( auto& itemType : m_data )
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itemType.second.sort();
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}
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LIB_ITEM& LIB_ITEMS_LIST::operator[]( unsigned int aIdx )
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{
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int counter = 0;
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for( auto& type : m_data )
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{
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if( aIdx < counter + type.second.size() )
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return type.second[aIdx - counter];
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else
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counter += type.second.size();
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}
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throw std::out_of_range( "LIB_ITEMS_LIST out of range" );
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}
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const LIB_ITEM& LIB_ITEMS_LIST::operator[]( unsigned int aIdx ) const
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{
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int counter = 0;
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for( const auto& type : m_data )
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{
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2017-09-06 22:43:22 +00:00
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if( aIdx < counter + type.second.size() )
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2017-08-14 14:53:25 +00:00
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return type.second[aIdx - counter];
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else
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counter += type.second.size();
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}
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throw std::out_of_range( "LIB_ITEMS_LIST out of range" );
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}
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LIB_ITEMS_LIST::ITERATOR& LIB_ITEMS_LIST::ITERATOR::operator++()
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{
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if( m_it != (*m_parent)[m_type].end() )
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++m_it;
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2017-09-07 20:05:49 +00:00
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validate();
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return *this;
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}
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bool LIB_ITEMS_LIST::ITERATOR::operator!=( const LIB_ITEMS_LIST::ITERATOR& aOther ) const
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{
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wxASSERT( aOther.m_parent == m_parent );
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wxASSERT( aOther.m_filter == m_filter );
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wxASSERT( !m_filter || aOther.m_type == m_type );
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return aOther.m_it != m_it;
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}
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void LIB_ITEMS_LIST::ITERATOR::validate()
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{
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// for all-items iterators (unfiltered): check if this is the end of the
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// current type container, if so switch to the next non-empty container
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2017-09-07 19:56:30 +00:00
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if( m_it == (*m_parent)[m_type].end() && !m_filter )
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2017-08-14 14:53:25 +00:00
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{
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2017-09-07 19:56:30 +00:00
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auto typeIt = m_parent->find( m_type );
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wxASSERT( typeIt != m_parent->end() );
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2017-08-14 14:53:25 +00:00
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2017-09-07 19:56:30 +00:00
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// switch to the next type (look for a not empty container)
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do
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++typeIt;
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while( typeIt != m_parent->end() && typeIt->second.empty() );
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// there is another not empty container, so make the iterator point to it,
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// otherwise it means the iterator points to the last item
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if( typeIt != m_parent->end() )
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{
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m_it = typeIt->second.begin();
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m_type = typeIt->first;
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}
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2017-08-14 14:53:25 +00:00
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}
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}
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