414 lines
13 KiB
C++
414 lines
13 KiB
C++
/**
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* @file print_board_functions.cpp
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* @brief Functions to print boards.
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*/
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#include <fctsys.h>
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#include <class_drawpanel.h>
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#include <wxPcbStruct.h>
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#include <printout_controler.h>
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#include <colors_selection.h>
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#include <pcbcommon.h>
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#include <class_board.h>
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#include <class_module.h>
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#include <class_edge_mod.h>
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#include <class_track.h>
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#include <class_zone.h>
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#include <pcbnew.h>
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#include <protos.h>
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#include <pcbplot.h>
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#include <module_editor_frame.h>
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static void Print_Module( EDA_DRAW_PANEL* aPanel, wxDC* aDC, MODULE* aModule,
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int aDraw_mode, int aMasklayer,
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PRINT_PARAMETERS::DrillShapeOptT aDrillShapeOpt );
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void FOOTPRINT_EDIT_FRAME::PrintPage( wxDC* aDC,
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int aPrintMaskLayer,
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bool aPrintMirrorMode,
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void * aData)
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{
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int drawmode = GR_COPY;
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int defaultPenSize = 50;
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DISPLAY_OPTIONS save_opt;
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PRINT_PARAMETERS * printParameters = (PRINT_PARAMETERS*) aData; // can be null
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PRINT_PARAMETERS::DrillShapeOptT drillShapeOpt = PRINT_PARAMETERS::FULL_DRILL_SHAPE;
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if( printParameters )
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defaultPenSize = printParameters->m_PenDefaultSize;
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save_opt = DisplayOpt;
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DisplayOpt.ContrastModeDisplay = false;
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DisplayOpt.DisplayPadFill = true;
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DisplayOpt.DisplayViaFill = true;
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m_DisplayPadFill = DisplayOpt.DisplayPadFill;
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m_DisplayViaFill = DisplayOpt.DisplayViaFill;
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m_DisplayPadNum = DisplayOpt.DisplayPadNum = false;
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bool nctmp = GetBoard()->IsElementVisible(NO_CONNECTS_VISIBLE);
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GetBoard()->SetElementVisibility(NO_CONNECTS_VISIBLE, false);
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DisplayOpt.DisplayPadIsol = false;
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DisplayOpt.DisplayModEdge = FILLED;
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DisplayOpt.DisplayModText = FILLED;
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m_DisplayPcbTrackFill = DisplayOpt.DisplayPcbTrackFill = FILLED;
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DisplayOpt.ShowTrackClearanceMode = DO_NOT_SHOW_CLEARANCE;
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DisplayOpt.DisplayDrawItems = FILLED;
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DisplayOpt.DisplayZonesMode = 0;
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DisplayOpt.DisplayNetNamesMode = 0;
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m_canvas->SetPrintMirrored( aPrintMirrorMode );
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// The OR mode is used in color mode, but be aware the background *must be
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// BLACK. In the print page dialog, we first print in BLACK, and after
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// reprint in color, on the black "local" background, in OR mode the black
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// print is not made before, only a white page is printed
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if( GetGRForceBlackPenState() == false )
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drawmode = GR_OR;
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// Draw footprints, this is done at last in order to print the pad holes in
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// white (or g_DrawBgColor) after the tracks and zones
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int tmp = D_PAD::m_PadSketchModePenSize;
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D_PAD::m_PadSketchModePenSize = defaultPenSize;
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wxSize pageSizeIU = GetPageSizeIU() / 2;
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wxPoint offset( pageSizeIU.x, pageSizeIU.y );
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for( MODULE* module = GetBoard()->m_Modules; module; module = module->Next() )
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{
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module->Move( offset );
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Print_Module( m_canvas, aDC, module, drawmode, aPrintMaskLayer, drillShapeOpt );
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module->Move( -offset );
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}
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D_PAD::m_PadSketchModePenSize = tmp;
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m_canvas->SetPrintMirrored( false );
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DisplayOpt = save_opt;
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m_DisplayPcbTrackFill = DisplayOpt.DisplayPcbTrackFill;
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m_DisplayPadFill = DisplayOpt.DisplayPadFill;
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m_DisplayViaFill = DisplayOpt.DisplayViaFill;
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m_DisplayPadNum = DisplayOpt.DisplayPadNum;
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GetBoard()->SetElementVisibility( NO_CONNECTS_VISIBLE, nctmp );
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}
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/**
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* Function PrintPage
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* is used to print the board (on printer, or when creating SVF files).
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* Print the board, but only layers allowed by aPrintMaskLayer
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* @param aDC = the print device context
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* @param aPrintMaskLayer = a 32 bits mask: bit n = 1 -> layer n is printed
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* @param aPrintMirrorMode = true to plot mirrored
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* @param aData = a pointer to an optional data (NULL if not used)
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*/
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void PCB_EDIT_FRAME::PrintPage( wxDC* aDC,
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int aPrintMaskLayer,
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bool aPrintMirrorMode,
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void* aData)
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{
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MODULE* Module;
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int drawmode = GR_COPY;
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DISPLAY_OPTIONS save_opt;
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TRACK* pt_trace;
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BOARD* Pcb = GetBoard();
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int defaultPenSize = 50;
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bool onePagePerLayer = false;
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PRINT_PARAMETERS * printParameters = (PRINT_PARAMETERS*) aData; // can be null
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if( printParameters && printParameters->m_OptionPrintPage == 0 )
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onePagePerLayer = true;
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PRINT_PARAMETERS::DrillShapeOptT drillShapeOpt = PRINT_PARAMETERS::FULL_DRILL_SHAPE;
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if( printParameters )
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{
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drillShapeOpt = printParameters->m_DrillShapeOpt;
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defaultPenSize = printParameters->m_PenDefaultSize;
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}
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save_opt = DisplayOpt;
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int activeLayer = GetScreen()->m_Active_Layer;
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DisplayOpt.ContrastModeDisplay = false;
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DisplayOpt.DisplayPadFill = true;
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DisplayOpt.DisplayViaFill = true;
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if( (aPrintMaskLayer & ALL_CU_LAYERS) == 0 )
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{
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if( onePagePerLayer )
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{ // We can print mask layers (solder mask and solder paste) with the actual
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// pad sizes. To do that, we must set ContrastModeDisplay to true and set
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//the GetScreen()->m_Active_Layer to the current printed layer
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DisplayOpt.ContrastModeDisplay = true;
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DisplayOpt.DisplayPadFill = true;
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// Calculate the active layer number to print from its mask layer:
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GetScreen()->m_Active_Layer = 0;
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for(int kk = 0; kk < 32; kk ++ )
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{
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if( ((1 << kk) & aPrintMaskLayer) != 0 )
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{
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GetScreen()->m_Active_Layer = kk;
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break;
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}
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}
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// pads on Silkscreen layer are usually plot in sketch mode:
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if( (GetScreen()->m_Active_Layer == SILKSCREEN_N_BACK)
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|| (GetScreen()->m_Active_Layer == SILKSCREEN_N_FRONT) )
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DisplayOpt.DisplayPadFill = false;
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}
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else
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{
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DisplayOpt.DisplayPadFill = false;
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}
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}
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m_DisplayPadFill = DisplayOpt.DisplayPadFill;
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m_DisplayViaFill = DisplayOpt.DisplayViaFill;
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m_DisplayPadNum = DisplayOpt.DisplayPadNum = false;
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bool nctmp = GetBoard()->IsElementVisible( NO_CONNECTS_VISIBLE );
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GetBoard()->SetElementVisibility( NO_CONNECTS_VISIBLE, false );
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DisplayOpt.DisplayPadIsol = false;
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m_DisplayModEdge = DisplayOpt.DisplayModEdge = FILLED;
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m_DisplayModText = DisplayOpt.DisplayModText = FILLED;
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m_DisplayPcbTrackFill = DisplayOpt.DisplayPcbTrackFill = FILLED;
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DisplayOpt.ShowTrackClearanceMode = DO_NOT_SHOW_CLEARANCE;
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DisplayOpt.DisplayDrawItems = FILLED;
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DisplayOpt.DisplayZonesMode = 0;
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DisplayOpt.DisplayNetNamesMode = 0;
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m_canvas->SetPrintMirrored( aPrintMirrorMode );
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// The OR mode is used in color mode, but be aware the background *must be
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// BLACK. In the print page dialog, we first print in BLACK, and after
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// reprint in color, on the black "local" background, in OR mode the black
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// print is not made before, only a white page is printed
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if( GetGRForceBlackPenState() == false )
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drawmode = GR_OR;
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// Print the pcb graphic items (texts, ...)
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GRSetDrawMode( aDC, drawmode );
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for( BOARD_ITEM* item = Pcb->m_Drawings; item; item = item->Next() )
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{
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switch( item->Type() )
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{
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case PCB_LINE_T:
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case PCB_DIMENSION_T:
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case PCB_TEXT_T:
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case PCB_TARGET_T:
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if( ( ( 1 << item->GetLayer() ) & aPrintMaskLayer ) == 0 )
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break;
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item->Draw( m_canvas, aDC, drawmode );
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break;
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case PCB_MARKER_T:
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default:
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break;
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}
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}
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// Print tracks
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pt_trace = Pcb->m_Track;
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for( ; pt_trace != NULL; pt_trace = pt_trace->Next() )
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{
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if( ( aPrintMaskLayer & pt_trace->ReturnMaskLayer() ) == 0 )
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continue;
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if( pt_trace->Type() == PCB_VIA_T ) // VIA encountered.
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{
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int radius = pt_trace->m_Width >> 1;
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int color = g_ColorsSettings.GetItemColor( VIAS_VISIBLE + pt_trace->m_Shape );
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GRSetDrawMode( aDC, drawmode );
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GRFilledCircle( m_canvas->GetClipBox(), aDC,
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pt_trace->m_Start.x,
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pt_trace->m_Start.y,
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radius,
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0, color, color );
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}
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else
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{
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pt_trace->Draw( m_canvas, aDC, drawmode );
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}
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}
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pt_trace = Pcb->m_Zone;
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for( ; pt_trace != NULL; pt_trace = pt_trace->Next() )
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{
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if( ( aPrintMaskLayer & pt_trace->ReturnMaskLayer() ) == 0 )
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continue;
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pt_trace->Draw( m_canvas, aDC, drawmode );
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}
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// Draw filled areas (i.e. zones)
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for( int ii = 0; ii < Pcb->GetAreaCount(); ii++ )
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{
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ZONE_CONTAINER* zone = Pcb->GetArea( ii );
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if( ( aPrintMaskLayer & ( 1 << zone->GetLayer() ) ) == 0 )
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continue;
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zone->DrawFilledArea( m_canvas, aDC, drawmode );
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}
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// Draw footprints, this is done at last in order to print the pad holes in
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// white (or g_DrawBgColor) after the tracks and zones
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Module = (MODULE*) Pcb->m_Modules;
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int tmp = D_PAD::m_PadSketchModePenSize;
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D_PAD::m_PadSketchModePenSize = defaultPenSize;
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for( ; Module != NULL; Module = Module->Next() )
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{
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Print_Module( m_canvas, aDC, Module, drawmode, aPrintMaskLayer, drillShapeOpt );
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}
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D_PAD::m_PadSketchModePenSize = tmp;
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/* Print via holes in bg color: Not sure it is good for buried or blind
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* vias */
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if( drillShapeOpt != PRINT_PARAMETERS::NO_DRILL_SHAPE )
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{
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pt_trace = Pcb->m_Track;
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int color = g_DrawBgColor;
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bool blackpenstate = GetGRForceBlackPenState();
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GRForceBlackPen( false );
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GRSetDrawMode( aDC, GR_COPY );
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for( ; pt_trace != NULL; pt_trace = pt_trace->Next() )
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{
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if( ( aPrintMaskLayer & pt_trace->ReturnMaskLayer() ) == 0 )
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continue;
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if( pt_trace->Type() == PCB_VIA_T ) // VIA encountered.
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{
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int diameter;
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if( drillShapeOpt == PRINT_PARAMETERS::SMALL_DRILL_SHAPE )
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diameter = min( SMALL_DRILL, pt_trace->GetDrillValue() );
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else
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diameter = pt_trace->GetDrillValue();
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GRFilledCircle( m_canvas->GetClipBox(), aDC,
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pt_trace->m_Start.x, pt_trace->m_Start.y,
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diameter/2,
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0, color, color );
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}
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}
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GRForceBlackPen( blackpenstate );
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}
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m_canvas->SetPrintMirrored( false );
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DisplayOpt = save_opt;
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GetScreen()->m_Active_Layer = activeLayer;
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m_DisplayPcbTrackFill = DisplayOpt.DisplayPcbTrackFill;
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m_DisplayPadFill = DisplayOpt.DisplayPadFill;
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m_DisplayViaFill = DisplayOpt.DisplayViaFill;
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m_DisplayPadNum = DisplayOpt.DisplayPadNum;
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m_DisplayModEdge = DisplayOpt.DisplayModEdge;
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m_DisplayModText = DisplayOpt.DisplayModText;
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GetBoard()->SetElementVisibility(NO_CONNECTS_VISIBLE, nctmp);
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}
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static void Print_Module( EDA_DRAW_PANEL* aPanel, wxDC* aDC, MODULE* aModule,
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int aDraw_mode, int aMasklayer,
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PRINT_PARAMETERS::DrillShapeOptT aDrillShapeOpt )
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{
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// Print pads
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for( D_PAD* pad = aModule->m_Pads; pad; pad = pad->Next() )
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{
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if( (pad->GetLayerMask() & aMasklayer ) == 0 )
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continue;
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// Manage hole according to the print drill option
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wxSize drill_tmp = pad->GetDrillSize();
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switch( aDrillShapeOpt )
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{
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case PRINT_PARAMETERS::NO_DRILL_SHAPE:
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pad->SetDrillSize( wxSize(0,0) );
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break;
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case PRINT_PARAMETERS::SMALL_DRILL_SHAPE:
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{
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wxSize sz( min( SMALL_DRILL, pad->GetDrillSize().x ),
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min( SMALL_DRILL, pad->GetDrillSize().y ) );
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pad->SetDrillSize( sz );
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}
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break;
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case PRINT_PARAMETERS::FULL_DRILL_SHAPE:
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// Do nothing
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break;
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}
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pad->Draw( aPanel, aDC, aDraw_mode );
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pad->SetDrillSize( drill_tmp );
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}
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// Print footprint graphic shapes
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int mlayer = GetLayerMask( aModule->GetLayer() );
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if( aModule->GetLayer() == LAYER_N_BACK )
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mlayer = SILKSCREEN_LAYER_BACK;
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else if( aModule->GetLayer() == LAYER_N_FRONT )
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mlayer = SILKSCREEN_LAYER_FRONT;
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if( mlayer & aMasklayer )
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{
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if( aModule->m_Reference->IsVisible() )
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aModule->m_Reference->Draw( aPanel, aDC, aDraw_mode );
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if( aModule->m_Value->IsVisible() )
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aModule->m_Value->Draw( aPanel, aDC, aDraw_mode );
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}
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for( EDA_ITEM* item = aModule->m_Drawings; item; item = item->Next() )
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{
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switch( item->Type() )
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{
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case PCB_MODULE_TEXT_T:
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if( ( mlayer & aMasklayer ) == 0 )
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break;
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TEXTE_MODULE* textMod;
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textMod = (TEXTE_MODULE*) item;
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textMod->Draw( aPanel, aDC, aDraw_mode );
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break;
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case PCB_MODULE_EDGE_T:
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{
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EDGE_MODULE* edge = (EDGE_MODULE*) item;
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if( ( GetLayerMask( edge->GetLayer() ) & aMasklayer ) == 0 )
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break;
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edge->Draw( aPanel, aDC, aDraw_mode );
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}
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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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}
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