mirror of https://github.com/GNOME/gimp.git
299 lines
11 KiB
C
299 lines
11 KiB
C
/* GIMP - The GNU Image Manipulation Program
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*
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* gimpoperationcagecoefcalc.c
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* Copyright (C) 2010 Michael Muré <batolettre@gmail.com>
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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 3 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, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include <gdk-pixbuf/gdk-pixbuf.h>
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#include <gegl.h>
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#include "libgimpmath/gimpmath.h"
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#include "operations-types.h"
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#include "gimpoperationcagecoefcalc.h"
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#include "gimpcageconfig.h"
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#include "gimp-intl.h"
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static void gimp_operation_cage_coef_calc_finalize (GObject *object);
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static void gimp_operation_cage_coef_calc_get_property (GObject *object,
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guint property_id,
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GValue *value,
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GParamSpec *pspec);
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static void gimp_operation_cage_coef_calc_set_property (GObject *object,
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guint property_id,
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const GValue *value,
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GParamSpec *pspec);
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static void gimp_operation_cage_coef_calc_prepare (GeglOperation *operation);
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static GeglRectangle gimp_operation_cage_coef_calc_get_bounding_box (GeglOperation *operation);
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static gboolean gimp_operation_cage_coef_calc_process (GeglOperation *operation,
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GeglBuffer *output,
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const GeglRectangle *roi,
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gint level);
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G_DEFINE_TYPE (GimpOperationCageCoefCalc, gimp_operation_cage_coef_calc,
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GEGL_TYPE_OPERATION_SOURCE)
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#define parent_class gimp_operation_cage_coef_calc_parent_class
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static void
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gimp_operation_cage_coef_calc_class_init (GimpOperationCageCoefCalcClass *klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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GeglOperationSourceClass *source_class = GEGL_OPERATION_SOURCE_CLASS (klass);
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GeglOperationClass *operation_class = GEGL_OPERATION_CLASS (klass);
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gegl_operation_class_set_keys (operation_class,
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"name", "gimp:cage-coef-calc",
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"categories", "transform",
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"description", _("Compute a set of coefficient buffer for the GIMP cage tool"),
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NULL);
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operation_class->prepare = gimp_operation_cage_coef_calc_prepare;
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operation_class->get_bounding_box = gimp_operation_cage_coef_calc_get_bounding_box;
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operation_class->no_cache = FALSE;
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operation_class->get_cached_region = NULL;
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source_class->process = gimp_operation_cage_coef_calc_process;
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object_class->get_property = gimp_operation_cage_coef_calc_get_property;
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object_class->set_property = gimp_operation_cage_coef_calc_set_property;
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object_class->finalize = gimp_operation_cage_coef_calc_finalize;
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g_object_class_install_property (object_class,
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GIMP_OPERATION_CAGE_COEF_CALC_PROP_CONFIG,
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g_param_spec_object ("config",
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"Config",
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"A GimpCageConfig object, that define the transformation",
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GIMP_TYPE_CAGE_CONFIG,
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G_PARAM_READWRITE |
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G_PARAM_CONSTRUCT));
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}
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static void
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gimp_operation_cage_coef_calc_init (GimpOperationCageCoefCalc *self)
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{
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}
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static void
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gimp_operation_cage_coef_calc_finalize (GObject *object)
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{
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GimpOperationCageCoefCalc *self = GIMP_OPERATION_CAGE_COEF_CALC (object);
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if (self->config)
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{
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g_object_unref (self->config);
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self->config = NULL;
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}
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G_OBJECT_CLASS (parent_class)->finalize (object);
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}
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static void
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gimp_operation_cage_coef_calc_get_property (GObject *object,
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guint property_id,
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GValue *value,
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GParamSpec *pspec)
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{
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GimpOperationCageCoefCalc *self = GIMP_OPERATION_CAGE_COEF_CALC (object);
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switch (property_id)
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{
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case GIMP_OPERATION_CAGE_COEF_CALC_PROP_CONFIG:
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g_value_set_object (value, self->config);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, property_id, pspec);
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break;
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}
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}
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static void
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gimp_operation_cage_coef_calc_set_property (GObject *object,
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guint property_id,
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const GValue *value,
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GParamSpec *pspec)
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{
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GimpOperationCageCoefCalc *self = GIMP_OPERATION_CAGE_COEF_CALC (object);
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switch (property_id)
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{
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case GIMP_OPERATION_CAGE_COEF_CALC_PROP_CONFIG:
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if (self->config)
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g_object_unref (self->config);
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self->config = g_value_dup_object (value);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, property_id, pspec);
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break;
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}
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}
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static gboolean
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gimp_operation_cage_coef_calc_is_on_straight (GimpVector2 *d1,
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GimpVector2 *d2,
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GimpVector2 *p)
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{
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GimpVector2 v1, v2;
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gfloat deter;
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v1.x = p->x - d1->x;
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v1.y = p->y - d1->y;
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v2.x = d2->x - d1->x;
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v2.y = d2->y - d1->y;
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gimp_vector2_normalize (&v1);
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gimp_vector2_normalize (&v2);
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deter = v1.x * v2.y - v2.x * v1.y;
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return (deter < 0.000000001) && (deter > -0.000000001);
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}
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static void
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gimp_operation_cage_coef_calc_prepare (GeglOperation *operation)
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{
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GimpOperationCageCoefCalc *occc = GIMP_OPERATION_CAGE_COEF_CALC (operation);
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GimpCageConfig *config = GIMP_CAGE_CONFIG (occc->config);
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gegl_operation_set_format (operation,
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"output",
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babl_format_n (babl_type ("float"),
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2 * gimp_cage_config_get_n_points (config)));
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}
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static GeglRectangle
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gimp_operation_cage_coef_calc_get_bounding_box (GeglOperation *operation)
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{
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GimpOperationCageCoefCalc *occc = GIMP_OPERATION_CAGE_COEF_CALC (operation);
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GimpCageConfig *config = GIMP_CAGE_CONFIG (occc->config);
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return gimp_cage_config_get_bounding_box (config);
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}
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static gboolean
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gimp_operation_cage_coef_calc_process (GeglOperation *operation,
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GeglBuffer *output,
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const GeglRectangle *roi,
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gint level)
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{
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GimpOperationCageCoefCalc *occc = GIMP_OPERATION_CAGE_COEF_CALC (operation);
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GimpCageConfig *config = GIMP_CAGE_CONFIG (occc->config);
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const Babl *format;
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GeglBufferIterator *it;
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guint n_cage_vertices;
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GimpCagePoint *current, *last;
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if (! config)
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return FALSE;
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format = babl_format_n (babl_type ("float"), 2 * gimp_cage_config_get_n_points (config));
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n_cage_vertices = gimp_cage_config_get_n_points (config);
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it = gegl_buffer_iterator_new (output, roi, 0, format,
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GEGL_ACCESS_READWRITE, GEGL_ABYSS_NONE);
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while (gegl_buffer_iterator_next (it))
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{
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/* iterate inside the roi */
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gint n_pixels = it->length;
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gint x = it->roi->x; /* initial x */
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gint y = it->roi->y; /* and y coordinates */
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gint j;
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gfloat *coef = it->data[0];
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while(n_pixels--)
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{
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if (gimp_cage_config_point_inside(config, x, y))
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{
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last = &(g_array_index (config->cage_points, GimpCagePoint, 0));
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for( j = 0; j < n_cage_vertices; j++)
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{
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GimpVector2 v1,v2,a,b,p;
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gdouble BA,SRT,L0,L1,A0,A1,A10,L10, Q,S,R, absa;
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current = &(g_array_index (config->cage_points, GimpCagePoint, (j+1) % n_cage_vertices));
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v1 = last->src_point;
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v2 = current->src_point;
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p.x = x;
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p.y = y;
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a.x = v2.x - v1.x;
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a.y = v2.y - v1.y;
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absa = gimp_vector2_length (&a);
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b.x = v1.x - x;
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b.y = v1.y - y;
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Q = a.x * a.x + a.y * a.y;
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S = b.x * b.x + b.y * b.y;
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R = 2.0 * (a.x * b.x + a.y * b.y);
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BA = b.x * a.y - b.y * a.x;
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SRT = sqrt(4.0 * S * Q - R * R);
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L0 = log(S);
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L1 = log(S + Q + R);
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A0 = atan2(R, SRT) / SRT;
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A1 = atan2(2.0 * Q + R, SRT) / SRT;
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A10 = A1 - A0;
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L10 = L1 - L0;
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/* edge coef */
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coef[j + n_cage_vertices] = (-absa / (4.0 * G_PI)) * ((4.0*S-(R*R)/Q) * A10 + (R / (2.0 * Q)) * L10 + L1 - 2.0);
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if (isnan(coef[j + n_cage_vertices]))
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{
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coef[j + n_cage_vertices] = 0.0;
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}
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/* vertice coef */
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if (!gimp_operation_cage_coef_calc_is_on_straight (&v1, &v2, &p))
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{
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coef[j] += (BA / (2.0 * G_PI)) * (L10 /(2.0*Q) - A10 * (2.0 + R / Q));
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coef[(j+1)%n_cage_vertices] -= (BA / (2.0 * G_PI)) * (L10 / (2.0 * Q) - A10 * (R / Q));
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}
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last = current;
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}
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}
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coef += 2 * n_cage_vertices;
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/* update x and y coordinates */
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x++;
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if (x >= (it->roi->x + it->roi->width))
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{
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x = it->roi->x;
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y++;
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}
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}
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}
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return TRUE;
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}
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