2020-09-25 18:26:58 +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 (C) 2004-2020 KiCad Developers.
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*
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* This program is free software: you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation, either version 3 of the License, or (at your
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* option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* 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 along
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* with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <cstdio>
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#include <memory>
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#include <reporter.h>
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2020-11-12 20:19:22 +00:00
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#include <board.h>
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#include <track.h>
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2020-10-15 22:39:33 +00:00
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#include <kicad_string.h>
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2020-09-25 18:26:58 +00:00
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#include <pcb_expr_evaluator.h>
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#include <connectivity/connectivity_data.h>
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#include <connectivity/connectivity_algo.h>
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#include <connectivity/from_to_cache.h>
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void FROM_TO_CACHE::buildEndpointList( )
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{
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m_ftEndpoints.clear();
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2020-11-12 23:50:33 +00:00
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for( MODULE* footprint : m_board->Footprints() )
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2020-09-25 18:26:58 +00:00
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{
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2020-11-12 23:50:33 +00:00
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for( PAD* pad : footprint->Pads() )
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2020-09-25 18:26:58 +00:00
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{
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FT_ENDPOINT ent;
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2020-11-12 23:50:33 +00:00
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ent.name = footprint->GetReference() + "-" + pad->GetName();
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2020-09-25 18:26:58 +00:00
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ent.parent = pad;
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m_ftEndpoints.push_back( ent );
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2020-11-12 23:50:33 +00:00
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ent.name = footprint->GetReference();
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2020-09-25 18:26:58 +00:00
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ent.parent = pad;
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m_ftEndpoints.push_back( ent );
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}
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}
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}
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enum PATH_STATUS {
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PS_OK = 0,
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PS_MULTIPLE_PATHS = -1,
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PS_NO_PATH = -2
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};
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static bool isVertexVisited( CN_ITEM* v, const std::vector<CN_ITEM*>& path )
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{
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for( auto u : path )
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{
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if ( u == v )
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return true;
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}
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return false;
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}
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static PATH_STATUS uniquePathBetweenNodes( CN_ITEM* u, CN_ITEM* v, std::vector<CN_ITEM*>& outPath )
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{
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using Path = std::vector<CN_ITEM*>;
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std::deque<Path> Q;
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2020-09-27 15:49:54 +00:00
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Path pInit;
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int pathFound = false;
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pInit.push_back( u );
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Q.push_back( pInit );
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2020-09-25 18:26:58 +00:00
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while( Q.size() )
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{
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Path path = Q.front();
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Q.pop_front();
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2020-09-27 15:49:54 +00:00
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CN_ITEM* last = path.back();
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2020-09-25 18:26:58 +00:00
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if( last == v )
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{
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outPath = path;
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if( pathFound )
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return PS_MULTIPLE_PATHS;
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pathFound = true;
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}
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for( auto ci : last->ConnectedItems() )
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{
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2020-09-27 15:49:54 +00:00
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bool vertexVisited = isVertexVisited( ci, path );
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2020-09-25 18:26:58 +00:00
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2020-09-27 15:49:54 +00:00
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for( auto& p : Q )
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if( isVertexVisited( ci, p ) )
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2020-09-25 18:26:58 +00:00
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{
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vertexVisited = true;
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break;
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}
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2020-09-27 15:49:54 +00:00
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if( !vertexVisited )
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{
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Path newpath( path );
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newpath.push_back( ci );
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Q.push_back( newpath );
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}
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}
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2020-09-25 18:26:58 +00:00
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}
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return pathFound ? PS_OK : PS_NO_PATH;
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};
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int FROM_TO_CACHE::cacheFromToPaths( const wxString& aFrom, const wxString& aTo )
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{
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std::vector<FT_PATH> paths;
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auto connectivity = m_board->GetConnectivity();
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auto cnAlgo = connectivity->GetConnectivityAlgo();
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for( auto& endpoint : m_ftEndpoints )
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{
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if( WildCompareString( aFrom, endpoint.name, false ) )
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{
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FT_PATH p;
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p.net = endpoint.parent->GetNetCode();
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p.from = endpoint.parent;
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p.to = nullptr;
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paths.push_back(p);
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}
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}
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for( auto &path : paths )
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{
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int count = 0;
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auto netName = path.from->GetNetname();
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wxString fromName = path.from->GetParent()->GetReference() + "-" + path.from->GetName();
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const KICAD_T onlyRouting[] = { PCB_PAD_T, PCB_ARC_T, PCB_VIA_T, PCB_TRACE_T, EOT };
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auto padCandidates = connectivity->GetConnectedItems( path.from, onlyRouting );
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2020-11-12 22:30:02 +00:00
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PAD* toPad = nullptr;
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2020-09-25 18:26:58 +00:00
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for( auto pitem : padCandidates )
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{
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if( pitem == path.from )
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continue;
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if( pitem->Type() != PCB_PAD_T )
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continue;
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2020-11-12 22:30:02 +00:00
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PAD *pad = static_cast<PAD*>( pitem );
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2020-09-25 18:26:58 +00:00
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wxString toName = pad->GetParent()->GetReference() + "-" + pad->GetName();
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for ( auto& endpoint : m_ftEndpoints )
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{
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if( pad == endpoint.parent )
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{
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if( WildCompareString( aTo, endpoint.name, false ) )
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{
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count++;
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toPad = endpoint.parent;
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path.to = toPad;
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path.fromName = fromName;
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path.toName = toName;
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path.fromWildcard = aFrom;
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path.toWildcard = aTo;
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if( count >= 2 )
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{
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// fixme: report this somewhere?
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//printf("Multiple targets found, aborting...\n");
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path.to = nullptr;
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}
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}
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}
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}
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}
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}
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int newPaths = 0;
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for( auto &path : paths )
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{
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if( !path.from || !path.to )
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continue;
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CN_ITEM *cnFrom = cnAlgo->ItemEntry( path.from ).GetItems().front();
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CN_ITEM *cnTo = cnAlgo->ItemEntry( path.to ).GetItems().front();
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CN_ITEM::CONNECTED_ITEMS upath;
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auto result = uniquePathBetweenNodes( cnFrom, cnTo, upath );
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if( result == PS_OK )
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path.isUnique = true;
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else
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path.isUnique = false;
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//printf( "%s\n", (const char *) wxString::Format( _("Check path: %s -> %s (net %s)"), path.fromName, path.toName, cnFrom->Parent()->GetNetname() ) );
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if( result == PS_NO_PATH )
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continue;
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for( auto item : upath )
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{
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path.pathItems.insert( item->Parent() );
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}
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m_ftPaths.push_back(path);
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newPaths++;
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}
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//reportAux( _("Cached %d paths\n"), newPaths );
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return newPaths;
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}
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bool FROM_TO_CACHE::IsOnFromToPath( BOARD_CONNECTED_ITEM* aItem, const wxString& aFrom, const wxString& aTo )
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{
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int nFromTosFound = 0;
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if( !m_board )
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return false;
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//printf("Check %d cached paths [%p]\n", m_ftPaths.size(), aItem );
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for( int attempt = 0; attempt < 2; attempt++ )
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{
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// item already belongs to path
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for( auto& ftPath : m_ftPaths )
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{
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if( aFrom == ftPath.fromWildcard &&
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aTo == ftPath.toWildcard )
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{
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nFromTosFound++;
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if( ftPath.pathItems.count( aItem ) )
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{
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// printf("Found cached path for %p [%s->%s]\n", aItem, (const char *)ftPath.fromName, (const char *) ftPath.toName );
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return true;
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}
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}
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}
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if( !nFromTosFound )
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cacheFromToPaths( aFrom, aTo );
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else
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return false;
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}
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return false;
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}
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2020-09-26 20:41:36 +00:00
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2020-09-25 18:26:58 +00:00
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void FROM_TO_CACHE::Rebuild( BOARD* aBoard )
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{
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m_board = aBoard;
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buildEndpointList();
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m_ftPaths.clear();
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}
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2020-09-26 20:41:36 +00:00
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FROM_TO_CACHE::FT_PATH* FROM_TO_CACHE::QueryFromToPath( const std::set<BOARD_CONNECTED_ITEM*>& aItems )
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{
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for( auto& ftPath : m_ftPaths )
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{
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if ( ftPath.pathItems == aItems )
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return &ftPath;
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}
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return nullptr;
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}
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