436 lines
12 KiB
C++
436 lines
12 KiB
C++
/******************************************
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* class_plotter.cpp
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* the class PLOTTER handle basic functions to plot schematic and boards
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* with different plot formats.
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* currently formats are:*
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* HPGL
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* POSTSCRIPT
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* GERBER
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* DXF
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******************************************/
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#include "fctsys.h"
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#include "trigo.h"
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#include "wxstruct.h"
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#include "base_struct.h"
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#include "common.h"
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#include "plot_common.h"
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#include "worksheet.h"
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#include "macros.h"
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#include "class_base_screen.h"
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#include "drawtxt.h"
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PLOTTER::PLOTTER( PlotFormat aPlotType )
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{
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m_PlotType = aPlotType;
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plot_scale = 1;
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default_pen_width = 0;
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current_pen_width = -1; /* To-be-set marker */
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pen_state = 'Z'; /* End-of-path idle */
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plotMirror = 0; /* Mirror flag */
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output_file = 0;
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color_mode = false; /* Start as a BW plot */
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negative_mode = false;
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sheet = NULL;
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}
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/* Modifies coordinates pos.x and pos.y trace according to the orientation,
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* scale factor, and offsets trace
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*/
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void PLOTTER::user_to_device_coordinates( wxPoint& pos )
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{
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pos.x = (int) ( (pos.x - plot_offset.x) * plot_scale * device_scale );
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if( plotMirror )
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pos.y = (int) ( ( pos.y - plot_offset.y ) * plot_scale * device_scale );
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else
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pos.y = (int) ( ( paper_size.y - ( pos.y - plot_offset.y )
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* plot_scale ) * device_scale );
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}
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/* Generic arc rendered as a polyline */
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void PLOTTER::arc( wxPoint centre, int StAngle, int EndAngle, int radius,
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FILL_T fill, int width )
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{
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wxPoint start, end;
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const int delta = 50; /* increment (in 0.1 degrees) to draw circles */
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double alpha;
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if( StAngle > EndAngle )
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EXCHG( StAngle, EndAngle );
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set_current_line_width( width );
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/* Please NOTE the different sign due to Y-axis flip */
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alpha = StAngle / 1800.0 * M_PI;
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start.x = centre.x + (int) ( radius * cos( -alpha ) );
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start.y = centre.y + (int) ( radius * sin( -alpha ) );
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move_to( start );
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for( int ii = StAngle + delta; ii < EndAngle; ii += delta )
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{
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alpha = ii / 1800.0 * M_PI;
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end.x = centre.x + (int) ( radius * cos( -alpha ) );
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end.y = centre.y + (int) ( radius * sin( -alpha ) );
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line_to( end );
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}
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alpha = EndAngle / 1800.0 * M_PI;
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end.x = centre.x + (int) ( radius * cos( -alpha ) );
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end.y = centre.y + (int) ( radius * sin( -alpha ) );
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finish_to( end );
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}
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/* Modifies size size.x and size.y trace according to the scale factor. */
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void PLOTTER::user_to_device_size( wxSize& size )
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{
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size.x = (int) ( size.x * plot_scale * device_scale );
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size.y = (int) ( size.y * plot_scale * device_scale );
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}
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double PLOTTER::user_to_device_size( double size )
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{
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return size * plot_scale * device_scale;
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}
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void PLOTTER::center_square( const wxPoint& position, int diametre, FILL_T fill )
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{
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int radius = wxRound( diametre / 2.8284 );
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static std::vector< wxPoint > corner_list;
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corner_list.clear();
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wxPoint corner;
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corner.x = position.x + radius;
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corner.y = position.y + radius;
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corner_list.push_back( corner );
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corner.x = position.x + radius;
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corner.y = position.y - radius;
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corner_list.push_back( corner );
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corner.x = position.x - radius;
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corner.y = position.y - radius;
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corner_list.push_back( corner );
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corner.x = position.x - radius;
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corner.y = position.y + radius;
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corner_list.push_back( corner );
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corner.x = position.x + radius;
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corner.y = position.y + radius;
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corner_list.push_back( corner );
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PlotPoly( corner_list, fill );
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}
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void PLOTTER::center_lozenge( const wxPoint& position, int diametre, FILL_T fill )
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{
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int radius = diametre / 2;
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static std::vector< wxPoint > corner_list;
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corner_list.clear();
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wxPoint corner;
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corner.x = position.x;
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corner.y = position.y + radius;
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corner_list.push_back( corner );
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corner.x = position.x + radius;
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corner.y = position.y,
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corner_list.push_back( corner );
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corner.x = position.x;
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corner.y = position.y - radius;
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corner_list.push_back( corner );
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corner.x = position.x - radius;
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corner.y = position.y;
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corner_list.push_back( corner );
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corner.x = position.x;
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corner.y = position.y + radius;
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corner_list.push_back( corner );
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PlotPoly( corner_list, fill );
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}
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/* Draw a pattern shape number aShapeId, to coord x0, y0.
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* x0, y0 = coordinates tables
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* Diameter diameter = (coord table) hole
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* AShapeId = index (used to generate forms characters)
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*/
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void PLOTTER::marker( const wxPoint& position, int diametre, int aShapeId )
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{
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int radius = diametre / 2;
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int x0, y0;
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x0 = position.x; y0 = position.y;
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switch( aShapeId )
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{
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case 0: /* vias : X shape */
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move_to( wxPoint( x0 - radius, y0 - radius ) );
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line_to( wxPoint( x0 + radius, y0 + radius ) );
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move_to( wxPoint( x0 + radius, y0 - radius ) );
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finish_to( wxPoint( x0 - radius, y0 + radius ) );
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break;
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case 1: /* Circle */
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circle( position, diametre, NO_FILL );
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break;
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case 2: /* + shape */
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move_to( wxPoint( x0, y0 - radius ) );
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line_to( wxPoint( x0, y0 + radius ) );
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move_to( wxPoint( x0 + radius, y0 ) );
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finish_to( wxPoint( x0 - radius, y0 ) );
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break;
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case 3: /* X shape in circle */
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circle( position, diametre, NO_FILL );
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move_to( wxPoint( x0 - radius, y0 - radius ) );
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line_to( wxPoint( x0 + radius, y0 + radius ) );
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move_to( wxPoint( x0 + radius, y0 - radius ) );
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finish_to( wxPoint( x0 - radius, y0 + radius ) );
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break;
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case 4: /* circle with bar - shape */
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circle( position, diametre, NO_FILL );
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move_to( wxPoint( x0 - radius, y0 ) );
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finish_to( wxPoint( x0 + radius, y0 ) );
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break;
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case 5: /* circle with bar | shape */
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circle( position, diametre, NO_FILL );
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move_to( wxPoint( x0, y0 - radius ) );
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finish_to( wxPoint( x0, y0 + radius ) );
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break;
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case 6: /* square */
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center_square( position, diametre, NO_FILL );
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break;
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case 7: /* diamond */
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center_lozenge( position, diametre, NO_FILL );
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break;
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case 8: /* square with an X*/
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center_square( position, diametre, NO_FILL );
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move_to( wxPoint( x0 - radius, y0 - radius ) );
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line_to( wxPoint( x0 + radius, y0 + radius ) );
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move_to( wxPoint( x0 + radius, y0 - radius ) );
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finish_to( wxPoint( x0 - radius, y0 + radius ) );
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break;
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case 9: /* diamond with a +*/
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center_lozenge( position, diametre, NO_FILL );
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move_to( wxPoint( x0, y0 - radius ) );
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line_to( wxPoint( x0, y0 + radius ) );
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move_to( wxPoint( x0 + radius, y0 ) );
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finish_to( wxPoint( x0 - radius, y0 ) );
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break;
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case 10: /* square with a '/' */
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center_square( position, diametre, NO_FILL );
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move_to( wxPoint( x0 - radius, y0 - radius ) );
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finish_to( wxPoint( x0 + radius, y0 + radius ) );
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break;
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case 11: /* square with a |*/
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center_lozenge( position, diametre, NO_FILL );
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move_to( wxPoint( x0, y0 - radius ) );
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finish_to( wxPoint( x0, y0 + radius ) );
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break;
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case 12: /* square with a -*/
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center_lozenge( position, diametre, NO_FILL );
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move_to( wxPoint( x0 - radius, y0 ) );
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finish_to( wxPoint( x0 + radius, y0 ) );
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break;
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default:
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circle( position, diametre, NO_FILL );
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break;
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}
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}
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/* Convert a thick segment and plot it as an oval */
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void PLOTTER::segment_as_oval( wxPoint start, wxPoint end, int width,
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GRTraceMode tracemode )
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{
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wxPoint center( (start.x + end.x) / 2, (start.y + end.y) / 2 );
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wxSize size( end.x - start.x, end.y - start.y );
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int orient;
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if( size.y == 0 )
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orient = 0;
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else if( size.x == 0 )
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orient = 900;
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else
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orient = -(int) ( atan2( (double) size.y,
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(double) size.x ) * 1800.0 / M_PI );
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size.x = (int) sqrt( ( (double) size.x * size.x )
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+ ( (double) size.y * size.y ) ) + width;
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size.y = width;
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flash_pad_oval( center, size, orient, tracemode );
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}
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void PLOTTER::sketch_oval( wxPoint pos, wxSize size, int orient,
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int width )
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{
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set_current_line_width( width );
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width = current_pen_width;
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int radius, deltaxy, cx, cy;
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if( size.x > size.y )
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{
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EXCHG( size.x, size.y );
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orient += 900;
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if( orient >= 3600 )
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orient -= 3600;
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}
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deltaxy = size.y - size.x; /* distance between centers of the oval */
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radius = ( size.x - width ) / 2;
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cx = -radius;
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cy = -deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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move_to( wxPoint( cx + pos.x, cy + pos.y ) );
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cx = -radius;
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cy = deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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finish_to( wxPoint( cx + pos.x, cy + pos.y ) );
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cx = radius;
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cy = -deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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move_to( wxPoint( cx + pos.x, cy + pos.y ) );
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cx = radius;
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cy = deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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finish_to( wxPoint( cx + pos.x, cy + pos.y ) );
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cx = 0;
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cy = deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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arc( wxPoint( cx + pos.x, cy + pos.y ),
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orient + 1800, orient + 3600,
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radius, NO_FILL );
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cx = 0;
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cy = -deltaxy / 2;
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RotatePoint( &cx, &cy, orient );
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arc( wxPoint( cx + pos.x, cy + pos.y ),
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orient, orient + 1800,
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radius, NO_FILL );
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}
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/* Plot 1 segment like a track segment
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*/
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void PLOTTER::thick_segment( wxPoint start, wxPoint end, int width,
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GRTraceMode tracemode )
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{
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switch( tracemode )
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{
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case FILLED:
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case FILAIRE:
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set_current_line_width( tracemode==FILLED ? width : -1 );
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move_to( start );
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finish_to( end );
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break;
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case SKETCH:
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set_current_line_width( -1 );
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segment_as_oval( start, end, width, tracemode );
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break;
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}
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}
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void PLOTTER::thick_arc( wxPoint centre, int StAngle, int EndAngle, int radius,
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int width, GRTraceMode tracemode )
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{
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switch( tracemode )
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{
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case FILAIRE:
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set_current_line_width( -1 );
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arc( centre, StAngle, EndAngle, radius, NO_FILL, -1 );
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break;
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case FILLED:
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arc( centre, StAngle, EndAngle, radius, NO_FILL, width );
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break;
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case SKETCH:
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set_current_line_width( -1 );
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arc( centre, StAngle, EndAngle,
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radius - ( width - current_pen_width ) / 2, NO_FILL, -1 );
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arc( centre, StAngle, EndAngle,
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radius + ( width - current_pen_width ) / 2, NO_FILL, -1 );
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break;
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}
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}
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void PLOTTER::thick_rect( wxPoint p1, wxPoint p2, int width,
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GRTraceMode tracemode )
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{
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switch( tracemode )
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{
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case FILAIRE:
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rect( p1, p2, NO_FILL, -1 );
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break;
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case FILLED:
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rect( p1, p2, NO_FILL, width );
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break;
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case SKETCH:
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set_current_line_width( -1 );
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p1.x -= (width - current_pen_width) / 2;
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p1.y -= (width - current_pen_width) / 2;
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p2.x += (width - current_pen_width) / 2;
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p2.y += (width - current_pen_width) / 2;
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rect( p1, p2, NO_FILL, -1 );
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p1.x += (width - current_pen_width);
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p1.y += (width - current_pen_width);
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p2.x -= (width - current_pen_width);
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p2.y -= (width - current_pen_width);
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rect( p1, p2, NO_FILL, -1 );
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break;
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}
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}
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void PLOTTER::thick_circle( wxPoint pos, int diametre, int width,
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GRTraceMode tracemode )
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{
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switch( tracemode )
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{
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case FILAIRE:
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circle( pos, diametre, NO_FILL, -1 );
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break;
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case FILLED:
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circle( pos, diametre, NO_FILL, width );
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break;
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case SKETCH:
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set_current_line_width( -1 );
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circle( pos, diametre - width + current_pen_width, NO_FILL, -1 );
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circle( pos, diametre + width - current_pen_width, NO_FILL, -1 );
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break;
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}
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}
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void PLOTTER::set_paper_size( Ki_PageDescr* asheet )
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{
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wxASSERT( !output_file );
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sheet = asheet;
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// Sheets are in mils, plotter works with decimals
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paper_size.x = sheet->m_Size.x * 10;
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paper_size.y = sheet->m_Size.y * 10;
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}
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