249 lines
7.2 KiB
C++
249 lines
7.2 KiB
C++
/***************************************/
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/* PCBNEW: Autorouting command control */
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/***************************************/
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#include "fctsys.h"
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#include "gr_basic.h"
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#include "common.h"
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#include "class_drawpanel.h"
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#include "confirm.h"
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#include "pcbnew.h"
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#include "autorout.h"
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#include "cell.h"
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#include "zones.h"
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#include "protos.h"
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int E_scale; /* facteur d'echelle des tables de distance */
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int Nb_Sides; /* Nombre de couches pour autoroutage (0 ou 1) */
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int Nrows = ILLEGAL;
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int Ncols = ILLEGAL;
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int Ntotal;
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int OpenNodes; /* total number of nodes opened */
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int ClosNodes; /* total number of nodes closed */
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int MoveNodes; /* total number of nodes moved */
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int MaxNodes; /* maximum number of nodes opened at one time */
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BOARDHEAD Board; /* 2-sided board */
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/********************************************************/
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void WinEDA_PcbFrame::Autoroute( wxDC* DC, int mode )
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/********************************************************/
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/* init board, route traces*/
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{
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int start, stop;
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MODULE* Module = NULL;
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D_PAD* Pad = NULL;
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int autoroute_net_code = -1;
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wxString msg;
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if( g_DesignSettings.m_CopperLayerCount > 1 )
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{
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Route_Layer_TOP = ((PCB_SCREEN*)GetScreen())->m_Route_Layer_TOP;
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Route_Layer_BOTTOM = ((PCB_SCREEN*)GetScreen())->m_Route_Layer_BOTTOM;
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}
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else
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{
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Route_Layer_TOP =
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Route_Layer_BOTTOM = COPPER_LAYER_N;
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}
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switch( mode )
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{
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case ROUTE_NET:
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if( GetScreen()->GetCurItem() )
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{
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switch( GetScreen()->GetCurItem()->Type() )
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{
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case TYPE_PAD:
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Pad = (D_PAD*) GetScreen()->GetCurItem();
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autoroute_net_code = Pad->GetNet();
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break;
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default:
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break;
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}
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}
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if( autoroute_net_code <= 0 )
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{
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DisplayError( this, _( "Net not selected" ) ); return;
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}
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break;
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case ROUTE_MODULE:
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Module = (MODULE*) GetScreen()->GetCurItem();
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if( (Module == NULL) || (Module->Type() != TYPE_MODULE) )
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{
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DisplayError( this, _( "Module not selected" ) ); return;
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}
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break;
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case ROUTE_PAD:
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Pad = (D_PAD*) GetScreen()->GetCurItem();
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if( (Pad == NULL) || (Pad->Type() != TYPE_PAD) )
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{
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DisplayError( this, _( "Pad not selected" ) ); return;
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}
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break;
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}
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if( (GetBoard()->m_Status_Pcb & LISTE_RATSNEST_ITEM_OK ) == 0 )
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Compile_Ratsnest( DC, TRUE );
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/* Placement du flag CH_ROUTE_REQ sur les chevelus demandes */
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for( unsigned ii = 0; ii < GetBoard()->GetRatsnestsCount(); ii++ )
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{
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RATSNEST_ITEM* ptmp = &GetBoard()->m_FullRatsnest[ii];
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ptmp->m_Status &= ~CH_ROUTE_REQ;
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switch( mode )
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{
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case ROUTE_ALL:
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ptmp->m_Status |= CH_ROUTE_REQ; break;
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case ROUTE_NET:
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if( autoroute_net_code == ptmp->GetNet() )
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ptmp->m_Status |= CH_ROUTE_REQ;
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break;
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case ROUTE_MODULE:
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{
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D_PAD* pt_pad = (D_PAD*) Module->m_Pads;
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for( ; pt_pad != NULL; pt_pad = pt_pad->Next() )
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{
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if( ptmp->m_PadStart == pt_pad )
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ptmp->m_Status |= CH_ROUTE_REQ;
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if( ptmp->m_PadEnd == pt_pad )
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ptmp->m_Status |= CH_ROUTE_REQ;
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}
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break;
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}
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case ROUTE_PAD:
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if( (ptmp->m_PadStart == Pad) || (ptmp->m_PadEnd == Pad) )
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ptmp->m_Status |= CH_ROUTE_REQ;
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break;
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}
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}
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start = time( NULL );
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/* Calcul du pas de routage fixe a 5 mils et plus */
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g_GridRoutingSize = (int)GetScreen()->GetGrid().x;
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if( g_GridRoutingSize < 50 )
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g_GridRoutingSize = 50;
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E_scale = g_GridRoutingSize / 50; if( E_scale < 1 )
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E_scale = 1;
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/* calcule de Ncols et Nrow, taille de la matrice de routage */
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ComputeMatriceSize( this, g_GridRoutingSize );
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MsgPanel->EraseMsgBox();
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/* Creation du mapping du board */
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Nb_Sides = ONE_SIDE;
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if( Route_Layer_TOP != Route_Layer_BOTTOM )
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Nb_Sides = TWO_SIDES;
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if( Board.InitBoard() < 0 )
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{
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DisplayError( this, _( "No memory for autorouting" ) );
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Board.UnInitBoard(); /* Libere la memoire BitMap */
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return;
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}
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Affiche_Message( _( "Place Cells" ) );
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PlaceCells( GetBoard(), -1, FORCE_PADS );
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/* Construction de la liste des pistes a router */
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Build_Work( GetBoard() );
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// DisplayBoard(DrawPanel, DC);
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if( Nb_Sides == TWO_SIDES )
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Solve( DC, TWO_SIDES ); /* double face */
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else
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Solve( DC, ONE_SIDE ); /* simple face */
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/* Liberation de la memoire */
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FreeQueue(); /* Libere la memoire de routage */
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InitWork(); /* Libere la memoire de la liste des connexions a router */
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Board.UnInitBoard(); /* Libere la memoire BitMap */
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stop = time( NULL ) - start;
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msg.Printf( wxT( "time = %d second%s" ), stop, (stop == 1) ? wxT( "" ) : wxT( "s" ) );
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Affiche_Message( msg );
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}
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/************************************************/
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void WinEDA_PcbFrame::Reset_Noroutable( wxDC* DC )
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/*************************************************/
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/* Remet a 0 le flag CH_NOROUTABLE qui est positionne a 1 par Solve()
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* lorsque un chevelu n'a pas ete route.
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* Si ce flag est a 1 il n'est pas reroute
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*/
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{
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if( (GetBoard()->m_Status_Pcb & LISTE_RATSNEST_ITEM_OK )== 0 )
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Compile_Ratsnest( DC, TRUE );
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for( unsigned ii = 0; ii < GetBoard()->GetRatsnestsCount(); ii++ )
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{
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GetBoard()->m_FullRatsnest[ii].m_Status &= ~CH_UNROUTABLE;
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}
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}
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/*****************************************************/
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void DisplayBoard( WinEDA_DrawPanel* panel, wxDC* DC )
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/****************************************************/
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/* Fonction de DEBUG : affiche le remplissage des cellules TOP et BOTTOM */
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{
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int row, col, i, j;
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int dcell0, dcell1 = 0, color;
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int maxi;
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maxi = 600 / Ncols;
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maxi = (maxi * 3 ) / 4;
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if( !maxi )
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maxi = 1;
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GRSetDrawMode( DC, GR_COPY );
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for( col = 0; col < Ncols; col++ )
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{
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for( row = 0; row < Nrows; row++ )
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{
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color = 0;
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dcell0 = GetCell( row, col, BOTTOM );
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if( dcell0 & HOLE )
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color = GREEN;
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// if( Nb_Sides )
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// dcell1 = GetCell( row, col, TOP );
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if( dcell1 & HOLE )
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color |= RED;
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// dcell0 |= dcell1;
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if( !color && (dcell0 & VIA_IMPOSSIBLE) )
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color = BLUE;
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if( dcell0 & CELL_is_EDGE )
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color = YELLOW;
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else if( dcell0 & CELL_is_ZONE )
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color = YELLOW;
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#define DRAW_OFFSET_X -20
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#define DRAW_OFFSET_Y 20
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// if( color )
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{
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for( i = 0; i < maxi; i++ )
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for( j = 0; j < maxi; j++ )
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GRSPutPixel( &panel->m_ClipBox, DC,
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(col * maxi) + i + DRAW_OFFSET_X,
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(row * maxi) + j + DRAW_OFFSET_Y, color );
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}
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}
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}
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}
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