mirror of https://github.com/GNOME/gimp.git
395 lines
8.9 KiB
C
395 lines
8.9 KiB
C
/*
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* Copyright (C) 1995 Spencer Kimball and Peter Mattis
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*
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* This is a plug-in for the GIMP.
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*
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* Generates images containing vector type drawings.
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*
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* Copyright (C) 1997 Andy Thomas alt@picnic.demon.co.uk
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU 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
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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*/
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#include "config.h"
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#include <math.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <gtk/gtk.h>
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#include <libgimp/gimp.h>
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#include <libgimp/gimpui.h>
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#include "gfig.h"
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#include "gfig-dobject.h"
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#include "gfig-poly.h"
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#include "libgimp/stdplugins-intl.h"
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static void
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d_draw_ellipse (Dobject * obj)
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{
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DobjPoints *center_pnt;
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DobjPoints *edge_pnt;
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gint bound_wx;
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gint bound_wy;
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gint top_x;
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gint top_y;
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center_pnt = obj->points;
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if (!center_pnt)
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return; /* End-of-line */
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edge_pnt = center_pnt->next;
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if (!edge_pnt)
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{
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g_warning ("Internal error - ellipse no edge pnt");
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}
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draw_sqr (¢er_pnt->pnt);
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draw_sqr (&edge_pnt->pnt);
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bound_wx = abs (center_pnt->pnt.x - edge_pnt->pnt.x);
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bound_wy = abs (center_pnt->pnt.y - edge_pnt->pnt.y);
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if (edge_pnt->pnt.x > center_pnt->pnt.x)
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top_x = 2 * center_pnt->pnt.x - edge_pnt->pnt.x;
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else
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top_x = edge_pnt->pnt.x;
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if (edge_pnt->pnt.y > center_pnt->pnt.y)
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top_y = 2 * center_pnt->pnt.y - edge_pnt->pnt.y;
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else
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top_y = edge_pnt->pnt.y;
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gfig_draw_arc (center_pnt->pnt.x, center_pnt->pnt.y, bound_wx, bound_wy, 0, 360);
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}
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static void
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d_paint_approx_ellipse (Dobject *obj)
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{
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/* first point center */
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/* Next point is radius */
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gdouble *line_pnts;
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gint seg_count = 0;
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gint i = 0;
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DobjPoints * center_pnt;
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DobjPoints * radius_pnt;
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gdouble a_axis;
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gdouble b_axis;
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gdouble ang_grid;
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gdouble ang_loop;
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gdouble radius;
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gint loop;
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GdkPoint first_pnt, last_pnt;
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gboolean first = TRUE;
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g_assert (obj != NULL);
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/* count - add one to close polygon */
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seg_count = 600;
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center_pnt = obj->points;
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if (!center_pnt || !seg_count)
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return; /* no-line */
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line_pnts = g_new0 (gdouble, 2 * seg_count + 1);
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/* Go around all the points drawing a line from one to the next */
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radius_pnt = center_pnt->next; /* this defines the vetices */
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/* Have center and radius - get lines */
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a_axis = ((gdouble) (radius_pnt->pnt.x - center_pnt->pnt.x));
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b_axis = ((gdouble) (radius_pnt->pnt.y - center_pnt->pnt.y));
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/* Lines */
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ang_grid = 2 * G_PI / (gdouble) 600;
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for (loop = 0; loop < 600; loop++)
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{
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gdouble lx, ly;
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GdkPoint calc_pnt;
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ang_loop = (gdouble)loop * ang_grid;
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radius = (a_axis * b_axis /
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(sqrt (cos (ang_loop) * cos (ang_loop) *
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(b_axis * b_axis - a_axis * a_axis) + a_axis * a_axis)));
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lx = radius * cos (ang_loop);
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ly = radius * sin (ang_loop);
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calc_pnt.x = RINT (lx + center_pnt->pnt.x);
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calc_pnt.y = RINT (ly + center_pnt->pnt.y);
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/* Miss out duped pnts */
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if (!first)
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{
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if (calc_pnt.x == last_pnt.x && calc_pnt.y == last_pnt.y)
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{
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continue;
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}
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}
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line_pnts[i++] = calc_pnt.x;
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line_pnts[i++] = calc_pnt.y;
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last_pnt = calc_pnt;
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if (first)
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{
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first_pnt = calc_pnt;
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first = FALSE;
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}
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}
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line_pnts[i++] = first_pnt.x;
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line_pnts[i++] = first_pnt.y;
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/* Reverse line if approp */
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if (selvals.reverselines)
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reverse_pairs_list (&line_pnts[0], i / 2);
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/* Scale before drawing */
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if (selvals.scaletoimage)
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scale_to_original_xy (&line_pnts[0], i / 2);
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else
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scale_to_xy (&line_pnts[0], i / 2);
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/* One go */
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if (selvals.painttype == PAINT_BRUSH_TYPE)
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{
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gfig_paint (selvals.brshtype,
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gfig_context->drawable_id,
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i, line_pnts);
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}
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else
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{
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gimp_free_select (gfig_context->image_id,
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i, line_pnts,
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selopt.type,
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selopt.antia,
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selopt.feather,
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selopt.feather_radius);
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}
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g_free (line_pnts);
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}
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static void
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d_paint_ellipse (Dobject *obj)
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{
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DobjPoints * center_pnt;
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DobjPoints * edge_pnt;
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gint bound_wx;
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gint bound_wy;
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gint top_x;
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gint top_y;
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gdouble dpnts[4];
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/* Drawing ellipse is hard .
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* 1) select circle
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* 2) stroke it
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*/
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g_assert (obj != NULL);
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if (selvals.approxcircles)
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{
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d_paint_approx_ellipse (obj);
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return;
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}
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center_pnt = obj->points;
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if (!center_pnt)
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return; /* End-of-line */
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edge_pnt = center_pnt->next;
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if (!edge_pnt)
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{
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g_error ("Internal error - ellipse no edge pnt");
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}
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bound_wx = abs (center_pnt->pnt.x - edge_pnt->pnt.x)*2;
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bound_wy = abs (center_pnt->pnt.y - edge_pnt->pnt.y)*2;
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if (edge_pnt->pnt.x > center_pnt->pnt.x)
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top_x = 2*center_pnt->pnt.x - edge_pnt->pnt.x;
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else
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top_x = edge_pnt->pnt.x;
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if (edge_pnt->pnt.y > center_pnt->pnt.y)
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top_y = 2*center_pnt->pnt.y - edge_pnt->pnt.y;
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else
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top_y = edge_pnt->pnt.y;
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dpnts[0] = (gdouble)top_x;
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dpnts[1] = (gdouble)top_y;
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dpnts[2] = (gdouble)bound_wx;
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dpnts[3] = (gdouble)bound_wy;
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/* Scale before drawing */
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if (selvals.scaletoimage)
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scale_to_original_xy (&dpnts[0], 2);
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else
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scale_to_xy (&dpnts[0], 2);
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gimp_ellipse_select (gfig_context->image_id,
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dpnts[0], dpnts[1],
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dpnts[2], dpnts[3],
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selopt.type,
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selopt.antia,
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selopt.feather,
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selopt.feather_radius);
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paint_layer_fill ();
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gimp_edit_stroke (gfig_context->drawable_id);
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}
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static Dobject *
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d_copy_ellipse (Dobject * obj)
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{
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Dobject *nc;
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g_assert (obj->type == ELLIPSE);
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nc = d_new_object (ELLIPSE, obj->points->pnt.x, obj->points->pnt.y);
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nc->points->next = d_copy_dobjpoints (obj->points->next);
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return nc;
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}
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void
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d_ellipse_object_class_init ()
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{
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DobjClass *class = &dobj_class[ELLIPSE];
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class->type = ELLIPSE;
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class->name = "Ellipse";
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class->drawfunc = d_draw_ellipse;
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class->paintfunc = d_paint_ellipse;
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class->copyfunc = d_copy_ellipse;
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}
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void
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d_update_ellipse (GdkPoint *pnt)
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{
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DobjPoints *center_pnt, *edge_pnt;
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gint bound_wx;
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gint bound_wy;
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gint top_x;
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gint top_y;
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/* Undraw last one then draw new one */
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center_pnt = obj_creating->points;
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if (!center_pnt)
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return; /* No points */
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if ((edge_pnt = center_pnt->next))
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{
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/* Undraw current */
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bound_wx = abs (center_pnt->pnt.x - edge_pnt->pnt.x)*2;
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bound_wy = abs (center_pnt->pnt.y - edge_pnt->pnt.y)*2;
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if (edge_pnt->pnt.x > center_pnt->pnt.x)
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top_x = 2*center_pnt->pnt.x - edge_pnt->pnt.x;
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else
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top_x = edge_pnt->pnt.x;
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if (edge_pnt->pnt.y > center_pnt->pnt.y)
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top_y = 2*center_pnt->pnt.y - edge_pnt->pnt.y;
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else
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top_y = edge_pnt->pnt.y;
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draw_circle (&edge_pnt->pnt);
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gdk_draw_arc (gfig_context->preview->window,
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gfig_gc,
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0,
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top_x,
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top_y,
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bound_wx,
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bound_wy,
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0,
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360*64);
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}
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draw_circle (pnt);
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edge_pnt = new_dobjpoint (pnt->x, pnt->y);
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bound_wx = abs (center_pnt->pnt.x - edge_pnt->pnt.x)*2;
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bound_wy = abs (center_pnt->pnt.y - edge_pnt->pnt.y)*2;
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if (edge_pnt->pnt.x > center_pnt->pnt.x)
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top_x = 2*center_pnt->pnt.x - edge_pnt->pnt.x;
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else
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top_x = edge_pnt->pnt.x;
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if (edge_pnt->pnt.y > center_pnt->pnt.y)
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top_y = 2* center_pnt->pnt.y - edge_pnt->pnt.y;
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else
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top_y = edge_pnt->pnt.y;
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gdk_draw_arc (gfig_context->preview->window,
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gfig_gc,
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0,
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top_x,
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top_y,
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bound_wx,
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bound_wy,
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0,
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360*64);
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center_pnt->next = edge_pnt;
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}
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void
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d_ellipse_start (GdkPoint *pnt, gint shift_down)
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{
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obj_creating = d_new_object (ELLIPSE, pnt->x, pnt->y);
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}
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void
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d_ellipse_end (GdkPoint *pnt, gint shift_down)
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{
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/* Under contrl point */
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if (!obj_creating->points->next)
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{
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/* No circle created */
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free_one_obj (obj_creating);
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}
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else
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{
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draw_circle (pnt);
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add_to_all_obj (gfig_context->current_obj, obj_creating);
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}
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obj_creating = NULL;
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}
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