207 lines
5.5 KiB
C++
207 lines
5.5 KiB
C++
/******************************************/
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/* Kicad: Common plot HPGL Routines */
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/******************************************/
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#include "fctsys.h"
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#include "gr_basic.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 "macros.h"
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/* parametre HPGL pour trace de cercle: */
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#define CHORD_ANGLE 10
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// Variables partagees avec Common plot Postscript Routines
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extern wxPoint LastPenPosition;
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extern wxPoint PlotOffset;
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extern FILE * PlotOutputFile;
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extern double XScale, YScale;
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extern int PenWidth;
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extern int PlotOrientOptions, etat_plume;
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//Variables locales
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void Move_Plume_HPGL( wxPoint pos, int plume );
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void Plume_HPGL( int plume );
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/***********************************************************************************/
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void InitPlotParametresHPGL(wxPoint offset, double xscale, double yscale, int orient)
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/***********************************************************************************/
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/* Set the plot offset for the current plotting
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xscale,yscale = coordinate scale (scale coefficient for coordinates)
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device_xscale,device_yscale = device coordinate scale (i.e scale used by plot device)
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*/
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{
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PlotOffset = offset;
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XScale = xscale;
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YScale = yscale;
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PenWidth = 6; /* epaisseur du trait standard en 1/1000 pouce */
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PlotOrientOptions = orient;
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}
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/*****************************************************************/
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bool PrintHeaderHPGL(FILE * plot_file, int pen_speed, int pen_num)
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/*****************************************************************/
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{
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char Line[256];
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PlotOutputFile = plot_file;
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etat_plume = 'U';
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sprintf(Line,"IN;VS%d;PU;PA;SP%d;\n",pen_speed,pen_num);
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fputs(Line,plot_file);
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return TRUE;
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}
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/**********************************/
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bool CloseFileHPGL(FILE * plot_file)
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/**********************************/
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{
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fputs("PU;PA;SP0;\n",PlotOutputFile) ; fclose(PlotOutputFile) ;
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fclose(plot_file);
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return TRUE;
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}
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/************************************************************/
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void PlotCircle_HPGL(wxPoint centre, int diameter, int width)
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/************************************************************/
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{
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int rayon;
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char Line[256];
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UserToDeviceCoordinate(centre);
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rayon = (int)(diameter / 2 * XScale);
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if(rayon < 0 ) rayon = 0 ;
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Plume_HPGL('U');
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sprintf(Line,"PA %d,%d;CI %d,%d;\n", centre.x, centre.y, rayon , CHORD_ANGLE);
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fputs(Line,PlotOutputFile) ;
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Plume_HPGL('U'); return ;
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}
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/********************************************************************/
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void PlotArcHPGL(wxPoint centre, int StAngle, int EndAngle, int rayon)
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/********************************************************************/
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/* trace d'un arc de cercle:
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centre = coord du centre
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StAngle, EndAngle = angle de debut et fin
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rayon = rayon de l'arc
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commande
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PU;PA x,y;PD;AA start_arc_X, start_arc_Y, angle, NbSegm; PU;
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ou PU;PA x,y;PD;AA start_arc_X, start_arc_Y, angle; PU;
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*/
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{
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char Line[256];
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wxPoint cmap; /* point de depart */
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wxPoint cpos; /* centre */
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float angle; /* angle de l'arc*/
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if(rayon <= 0 ) return ;
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cpos = centre; UserToDeviceCoordinate(cpos);
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if( PlotOrientOptions == PLOT_MIROIR)
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{
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EndAngle = - EndAngle;
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StAngle = - StAngle;
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EXCHG (StAngle, EndAngle);
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}
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angle = (EndAngle - StAngle) /10.0;
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/* Calcul des coord du point de depart : */
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cmap.x = (int)( centre.x + ( rayon * cos(StAngle * M_PI / 1800 ) ) );
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cmap.y = (int)(centre.y + ( rayon * sin(StAngle * M_PI / 1800 ) ) );
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UserToDeviceCoordinate(cmap);
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Plume_HPGL('U');
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sprintf(Line,"PU;PA %d,%d;PD;AA %d,%d, ", cmap.x, cmap.y, cpos.x, cpos.y);
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fputs(Line,PlotOutputFile) ;
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sprintf(Line,"%f", - angle); to_point(Line); // Transforme , et . du separateur
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fputs(Line,PlotOutputFile) ;
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sprintf(Line,", %d", CHORD_ANGLE); fputs(Line,PlotOutputFile) ;
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sprintf(Line,";PU;\n"); fputs(Line,PlotOutputFile) ;
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Plume_HPGL('U');
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}
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/*****************************************************/
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void PlotPolyHPGL( int nb, int * coord, int fill)
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/*****************************************************/
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/* Trace un polygone (ferme si rempli) en format HPGL
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coord = tableau des coord des sommets
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nb = nombre de coord ( 1 coord = 2 elements: X et Y du tableau )
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fill : si != 0 polygone rempli
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*/
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{
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int ii;
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if( nb <= 1 ) return;
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Move_Plume_HPGL( wxPoint(coord[0],coord[1]), 'U');
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for( ii = 1; ii < nb ; ii ++ )
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{
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Move_Plume_HPGL( wxPoint(coord[ii * 2],coord[(ii*2) +1]), 'D');
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}
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/* Fermeture eventuelle du polygone */
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if ( fill )
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{
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ii = (nb - 1) * 2;
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if( (coord[ii] != coord[0] ) || (coord[ii+1] != coord[0]) )
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Move_Plume_HPGL( wxPoint(coord[0],coord[1]), 'D');
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}
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Plume_HPGL('U');
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}
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/**********************************************/
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void Move_Plume_HPGL( wxPoint pos, int plume )
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/**********************************************/
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/*
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deplace la plume levee (plume = 'U') ou baissee (plume = 'D')
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en position x,y
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Unites en Unites DESSIN
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Si plume = 'Z' lever de plume sans deplacement
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*/
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{
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char Line[256];
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if ( plume == 'Z')
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{
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Plume_HPGL('U');
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return;
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}
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Plume_HPGL(plume);
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UserToDeviceCoordinate(pos);
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sprintf(Line,"PA %d,%d;\n",pos.x,pos.y) ; fputs(Line,PlotOutputFile) ;
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}
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/***************************/
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void Plume_HPGL( int plume )
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/***************************/
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/* leve (plume = 'U') ou baisse (plume = 'D') la plume
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*/
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{
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if ( plume == 'U')
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{
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if(etat_plume != 'U' ) fputs("PU;",PlotOutputFile) ;
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etat_plume = 'U';
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}
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else
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{
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if(etat_plume != 'D' )fputs("PD;",PlotOutputFile) ;
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etat_plume = 'D';
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}
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}
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