mirror of https://github.com/GNOME/gimp.git
804 lines
20 KiB
C
804 lines
20 KiB
C
/* The GIMP -- an image manipulation program
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* Copyright (C) 1995 Spencer Kimball and Peter Mattis
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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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#include "config.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 "libgimp/stdplugins-intl.h"
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typedef struct
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{
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gdouble radius;
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gboolean horizontal;
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gboolean vertical;
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} BlurValues;
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typedef struct
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{
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gdouble horizontal;
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gdouble vertical;
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} Blur2Values;
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/* Declare local functions.
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*/
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static void query (void);
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static void run (const gchar *name,
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gint nparams,
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const GimpParam *param,
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gint *nreturn_vals,
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GimpParam **return_vals);
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static void gauss_rle (GimpDrawable *drawable,
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gdouble horizontal,
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gdouble vertical);
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/*
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* Gaussian blur interface
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*/
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static gint gauss_rle_dialog (void);
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static gint gauss_rle2_dialog (gint32 image_ID,
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GimpDrawable *drawable);
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/*
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* Gaussian blur helper functions
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*/
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static gint * make_curve (gdouble sigma,
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gint *length);
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static void run_length_encode (guchar *src,
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gint *dest,
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gint bytes,
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gint width);
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GimpPlugInInfo PLUG_IN_INFO =
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{
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NULL, /* init_proc */
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NULL, /* quit_proc */
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query, /* query_proc */
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run, /* run_proc */
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};
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static BlurValues bvals =
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{
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5.0, /* radius */
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TRUE, /* horizontal blur */
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TRUE /* vertical blur */
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};
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static Blur2Values b2vals =
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{
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5.0, /* x radius */
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5.0 /* y radius */
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};
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MAIN ()
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static void
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query (void)
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{
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static GimpParamDef args[] =
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{
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{ GIMP_PDB_INT32, "run_mode", "Interactive, non-interactive" },
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{ GIMP_PDB_IMAGE, "image", "Input image (unused)" },
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{ GIMP_PDB_DRAWABLE, "drawable", "Input drawable" },
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{ GIMP_PDB_FLOAT, "radius", "Radius of gaussian blur (in pixels, > 0.0)" },
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{ GIMP_PDB_INT32, "horizontal", "Blur in horizontal direction" },
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{ GIMP_PDB_INT32, "vertical", "Blur in vertical direction" }
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};
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static GimpParamDef args2[] =
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{
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{ GIMP_PDB_INT32, "run_mode", "Interactive, non-interactive" },
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{ GIMP_PDB_IMAGE, "image", "Input image" },
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{ GIMP_PDB_DRAWABLE, "drawable", "Input drawable" },
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{ GIMP_PDB_FLOAT, "horizontal", "Horizontal radius of gaussian blur (in pixels, > 0.0)" },
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{ GIMP_PDB_FLOAT, "vertical", "Vertical radius of gaussian blur (in pixels, > 0.0)" }
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};
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gimp_install_procedure ("plug_in_gauss_rle",
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"Applies a gaussian blur to the specified drawable.",
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"Applies a gaussian blur to the drawable, with "
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"specified radius of affect. The standard deviation "
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"of the normal distribution used to modify pixel "
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"values is calculated based on the supplied radius. "
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"Horizontal and vertical blurring can be "
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"independently invoked by specifying only one to "
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"run. The RLE gaussian blurring performs most "
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"efficiently on computer-generated images or images "
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"with large areas of constant intensity.",
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"Spencer Kimball & Peter Mattis",
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"Spencer Kimball & Peter Mattis",
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"1995-1996",
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NULL,
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"RGB*, GRAY*",
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GIMP_PLUGIN,
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G_N_ELEMENTS (args), 0,
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args, NULL);
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gimp_install_procedure ("plug_in_gauss_rle2",
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"Applies a gaussian blur to the specified drawable.",
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"Applies a gaussian blur to the drawable, with "
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"specified radius of affect. The standard deviation "
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"of the normal distribution used to modify pixel "
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"values is calculated based on the supplied radius. "
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"This radius can be specified indepently on for the "
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"horizontal and the vertical direction. The RLE "
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"gaussian blurring performs most efficiently on "
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"computer-generated images or images with large "
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"areas of constant intensity.",
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"Spencer Kimball, Peter Mattis & Sven Neumann",
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"Spencer Kimball, Peter Mattis & Sven Neumann",
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"1995-2000",
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N_("<Image>/Filters/Blur/Gaussian Blur (_RLE)..."),
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"RGB*, GRAY*",
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GIMP_PLUGIN,
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G_N_ELEMENTS (args2), 0,
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args2, NULL);
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}
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static void
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run (const gchar *name,
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gint nparams,
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const GimpParam *param,
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gint *nreturn_vals,
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GimpParam **return_vals)
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{
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static GimpParam values[1];
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gint32 image_ID;
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GimpDrawable *drawable;
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GimpRunMode run_mode;
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GimpPDBStatusType status = GIMP_PDB_SUCCESS;
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run_mode = param[0].data.d_int32;
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INIT_I18N ();
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*nreturn_vals = 1;
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*return_vals = values;
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values[0].type = GIMP_PDB_STATUS;
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values[0].data.d_status = status;
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/* Get the specified image and drawable */
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image_ID = param[1].data.d_image;
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drawable = gimp_drawable_get (param[2].data.d_drawable);
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if (strcmp (name, "plug_in_gauss_rle") == 0) /* the old-fashioned way of calling it */
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{
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switch (run_mode)
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{
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case GIMP_RUN_INTERACTIVE:
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/* Possibly retrieve data */
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gimp_get_data ("plug_in_gauss_rle", &bvals);
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/* First acquire information with a dialog */
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if (! gauss_rle_dialog ())
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return;
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break;
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case GIMP_RUN_NONINTERACTIVE:
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/* Make sure all the arguments are there! */
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if (nparams != 6)
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status = GIMP_PDB_CALLING_ERROR;
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if (status == GIMP_PDB_SUCCESS)
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{
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bvals.radius = param[3].data.d_float;
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bvals.horizontal = (param[4].data.d_int32) ? TRUE : FALSE;
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bvals.vertical = (param[5].data.d_int32) ? TRUE : FALSE;
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}
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if (status == GIMP_PDB_SUCCESS && (bvals.radius <= 0.0))
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status = GIMP_PDB_CALLING_ERROR;
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break;
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case GIMP_RUN_WITH_LAST_VALS:
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/* Possibly retrieve data */
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gimp_get_data ("plug_in_gauss_rle", &bvals);
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break;
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default:
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break;
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}
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if (!(bvals.horizontal || bvals.vertical))
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{
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g_message (_("You must specify either horizontal "
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"or vertical (or both)"));
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status = GIMP_PDB_CALLING_ERROR;
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}
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}
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else if (strcmp (name, "plug_in_gauss_rle2") == 0)
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{
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switch (run_mode)
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{
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case GIMP_RUN_INTERACTIVE:
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/* Possibly retrieve data */
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gimp_get_data ("plug_in_gauss_rle2", &b2vals);
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/* First acquire information with a dialog */
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if (! gauss_rle2_dialog (image_ID, drawable))
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return;
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break;
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case GIMP_RUN_NONINTERACTIVE:
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/* Make sure all the arguments are there! */
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if (nparams != 5)
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status = GIMP_PDB_CALLING_ERROR;
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if (status == GIMP_PDB_SUCCESS)
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{
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b2vals.horizontal = param[3].data.d_float;
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b2vals.vertical = param[4].data.d_float;
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}
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if (status == GIMP_PDB_SUCCESS &&
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(b2vals.horizontal <= 0.0 && b2vals.vertical <= 0.0))
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status = GIMP_PDB_CALLING_ERROR;
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break;
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case GIMP_RUN_WITH_LAST_VALS:
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/* Possibly retrieve data */
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gimp_get_data ("plug_in_gauss_rle2", &b2vals);
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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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else
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status = GIMP_PDB_CALLING_ERROR;
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if (status == GIMP_PDB_SUCCESS)
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{
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/* Make sure that the drawable is gray or RGB color */
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if (gimp_drawable_is_rgb (drawable->drawable_id) ||
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gimp_drawable_is_gray (drawable->drawable_id))
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{
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gimp_progress_init (_("RLE Gaussian Blur"));
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/* set the tile cache size so that the gaussian blur works well */
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gimp_tile_cache_ntiles (2 *
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(MAX (drawable->width, drawable->height) /
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gimp_tile_width () + 1));
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/* run the gaussian blur */
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if (strcmp (name, "plug_in_gauss_rle") == 0)
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{
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gauss_rle (drawable, (bvals.horizontal ? bvals.radius : 0.0),
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(bvals.vertical ? bvals.radius : 0.0));
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/* Store data */
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if (run_mode == GIMP_RUN_INTERACTIVE)
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gimp_set_data ("plug_in_gauss_rle",
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&bvals, sizeof (BlurValues));
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}
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else
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{
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gauss_rle (drawable, b2vals.horizontal, b2vals.vertical);
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/* Store data */
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if (run_mode == GIMP_RUN_INTERACTIVE)
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gimp_set_data ("plug_in_gauss_rle2",
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&b2vals, sizeof (Blur2Values));
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}
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if (run_mode != GIMP_RUN_NONINTERACTIVE)
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gimp_displays_flush ();
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}
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else
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{
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g_message (_("Cannot operate on indexed color images."));
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status = GIMP_PDB_EXECUTION_ERROR;
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}
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gimp_drawable_detach (drawable);
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}
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values[0].data.d_status = status;
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}
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static gint
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gauss_rle_dialog (void)
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{
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GtkWidget *dlg;
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GtkWidget *label;
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GtkWidget *spinbutton;
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GtkObject *adj;
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GtkWidget *toggle;
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GtkWidget *vbox;
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GtkWidget *hbox;
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gboolean run;
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gimp_ui_init ("gauss_rle", FALSE);
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dlg = gimp_dialog_new (_("RLE Gaussian Blur"), "gauss_rle",
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NULL, 0,
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gimp_standard_help_func, "filters/gauss_rle.html",
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GTK_STOCK_CANCEL, GTK_RESPONSE_CANCEL,
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GTK_STOCK_OK, GTK_RESPONSE_OK,
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NULL);
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vbox = gimp_parameter_settings_new (GTK_DIALOG (dlg)->vbox, 0, 0);
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toggle = gtk_check_button_new_with_label (_("Blur Horizontally"));
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gtk_box_pack_start (GTK_BOX (vbox), toggle, FALSE, FALSE, 0);
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gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (toggle), bvals.horizontal);
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gtk_widget_show (toggle);
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g_signal_connect (toggle, "toggled",
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G_CALLBACK (gimp_toggle_button_update),
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&bvals.horizontal);
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toggle = gtk_check_button_new_with_label (_("Blur Vertically"));
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gtk_box_pack_start (GTK_BOX (vbox), toggle, FALSE, FALSE, 0);
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gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (toggle), bvals.vertical);
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gtk_widget_show (toggle);
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g_signal_connect (toggle, "toggled",
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G_CALLBACK (gimp_toggle_button_update),
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&bvals.vertical);
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hbox = gtk_hbox_new (FALSE, 4);
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gtk_box_pack_start (GTK_BOX (vbox), hbox, FALSE, FALSE, 0);
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label = gtk_label_new (_("Blur Radius:"));
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gtk_box_pack_start (GTK_BOX (hbox), label, FALSE, FALSE, 0);
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gtk_widget_show (label);
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spinbutton = gimp_spin_button_new (&adj,
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bvals.radius, 0.0, GIMP_MAX_IMAGE_SIZE,
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0.0, 5.0, 0, 1, 2);
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gtk_box_pack_start (GTK_BOX (hbox), spinbutton, TRUE, TRUE, 0);
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gtk_widget_show (spinbutton);
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g_signal_connect (adj, "value_changed",
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G_CALLBACK (gimp_double_adjustment_update),
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&bvals.radius);
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gtk_widget_show (hbox);
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gtk_widget_show (dlg);
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run = (gimp_dialog_run (GIMP_DIALOG (dlg)) == GTK_RESPONSE_OK);
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gtk_widget_destroy (dlg);
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return run;
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}
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static gint
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gauss_rle2_dialog (gint32 image_ID,
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GimpDrawable *drawable)
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{
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GtkWidget *dlg;
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GtkWidget *frame;
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GtkWidget *size;
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GimpUnit unit;
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gdouble xres;
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gdouble yres;
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gboolean run;
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gimp_ui_init ("gauss_rle2", FALSE);
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dlg = gimp_dialog_new (_("RLE Gaussian Blur"), "gauss_rle",
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NULL, 0,
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gimp_standard_help_func, "filters/gauss_rle.html",
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GTK_STOCK_CANCEL, GTK_RESPONSE_CANCEL,
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GTK_STOCK_OK, GTK_RESPONSE_OK,
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NULL);
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/* parameter settings */
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frame = gtk_frame_new (_("Blur Radius"));
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gtk_frame_set_shadow_type (GTK_FRAME (frame), GTK_SHADOW_ETCHED_IN);
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gtk_container_set_border_width (GTK_CONTAINER (frame), 6);
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gtk_box_pack_start (GTK_BOX (GTK_DIALOG (dlg)->vbox), frame, TRUE, TRUE, 0);
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/* Get the image resolution and unit */
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gimp_image_get_resolution (image_ID, &xres, &yres);
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unit = gimp_image_get_unit (image_ID);
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size = gimp_coordinates_new (unit, "%a", TRUE, FALSE, -1,
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GIMP_SIZE_ENTRY_UPDATE_SIZE,
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b2vals.horizontal == b2vals.vertical,
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FALSE,
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_("_Horizontal:"), b2vals.horizontal, xres,
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0, 8 * MAX (drawable->width, drawable->height),
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0, 0,
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_("_Vertical:"), b2vals.vertical, yres,
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0, 8 * MAX (drawable->width, drawable->height),
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0, 0);
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gtk_container_set_border_width (GTK_CONTAINER (size), 4);
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gtk_container_add (GTK_CONTAINER (frame), size);
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gimp_size_entry_set_pixel_digits (GIMP_SIZE_ENTRY (size), 1);
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gtk_widget_show (size);
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gtk_widget_show (frame);
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gtk_widget_show (dlg);
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run = (gimp_dialog_run (GIMP_DIALOG (dlg)) == GTK_RESPONSE_OK);
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if (run)
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{
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b2vals.horizontal = gimp_size_entry_get_refval (GIMP_SIZE_ENTRY (size), 0);
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b2vals.vertical = gimp_size_entry_get_refval (GIMP_SIZE_ENTRY (size), 1);
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}
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gtk_widget_destroy (dlg);
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return run;
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}
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/* Convert from separated to premultiplied alpha, on a single scan line. */
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static void
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multiply_alpha (guchar *buf,
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gint width,
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gint bytes)
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{
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gint i, j;
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gdouble alpha;
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for (i = 0; i < width * bytes; i += bytes)
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{
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alpha = buf[i + bytes - 1] * (1.0 / 255.0);
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for (j = 0; j < bytes - 1; j++)
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buf[i + j] *= alpha;
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}
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}
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/* Convert from premultiplied to separated alpha, on a single scan
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line. */
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static void
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separate_alpha (guchar *buf,
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gint width,
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gint bytes)
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{
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gint i, j;
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guchar alpha;
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gdouble recip_alpha;
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gint new_val;
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for (i = 0; i < width * bytes; i += bytes)
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{
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alpha = buf[i + bytes - 1];
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if (alpha != 0 && alpha != 255)
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{
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recip_alpha = 255.0 / alpha;
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for (j = 0; j < bytes - 1; j++)
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{
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new_val = buf[i + j] * recip_alpha;
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buf[i + j] = MIN (255, new_val);
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}
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}
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}
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}
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static void
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gauss_rle (GimpDrawable *drawable,
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gdouble horz,
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gdouble vert)
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{
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GimpPixelRgn src_rgn, dest_rgn;
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gint width, height;
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gint bytes;
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gint has_alpha;
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guchar *dest, *dp;
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guchar *src, *sp;
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gint *buf, *bb;
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gint pixels;
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gint total = 1;
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gint x1, y1, x2, y2;
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gint i, row, col, b;
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gint start, end;
|
|
gdouble progress, max_progress;
|
|
gint *curve;
|
|
gint *sum = NULL;
|
|
gint val;
|
|
gint length;
|
|
gint initial_p, initial_m;
|
|
gdouble std_dev;
|
|
|
|
if (horz <= 0.0 && vert <= 0.0)
|
|
return;
|
|
|
|
gimp_drawable_mask_bounds (drawable->drawable_id, &x1, &y1, &x2, &y2);
|
|
|
|
width = (x2 - x1);
|
|
height = (y2 - y1);
|
|
|
|
if (width < 1 || height < 1)
|
|
return;
|
|
|
|
bytes = drawable->bpp;
|
|
has_alpha = gimp_drawable_has_alpha(drawable->drawable_id);
|
|
|
|
buf = g_new (gint, MAX (width, height) * 2);
|
|
|
|
/* allocate buffers for source and destination pixels */
|
|
src = g_new (guchar, MAX (width, height) * bytes);
|
|
dest = g_new (guchar, MAX (width, height) * bytes);
|
|
|
|
gimp_pixel_rgn_init (&src_rgn,
|
|
drawable, 0, 0, drawable->width, drawable->height,
|
|
FALSE, FALSE);
|
|
gimp_pixel_rgn_init (&dest_rgn,
|
|
drawable, 0, 0, drawable->width, drawable->height,
|
|
TRUE, TRUE);
|
|
|
|
progress = 0.0;
|
|
max_progress = (horz <= 0.0 ) ? 0 : width * height * horz;
|
|
max_progress += (vert <= 0.0 ) ? 0 : width * height * vert;
|
|
|
|
|
|
/* First the vertical pass */
|
|
if (vert > 0.0)
|
|
{
|
|
vert = fabs (vert) + 1.0;
|
|
std_dev = sqrt (-(vert * vert) / (2 * log (1.0 / 255.0)));
|
|
|
|
curve = make_curve (std_dev, &length);
|
|
sum = g_new (gint, 2 * length + 1);
|
|
|
|
sum[0] = 0;
|
|
|
|
for (i = 1; i <= length*2; i++)
|
|
sum[i] = curve[i-length-1] + sum[i-1];
|
|
sum += length;
|
|
|
|
total = sum[length] - sum[-length];
|
|
|
|
for (col = 0; col < width; col++)
|
|
{
|
|
gimp_pixel_rgn_get_col (&src_rgn, src, col + x1, y1, (y2 - y1));
|
|
if (has_alpha)
|
|
multiply_alpha (src, height, bytes);
|
|
|
|
sp = src;
|
|
dp = dest;
|
|
|
|
for (b = 0; b < bytes; b++)
|
|
{
|
|
initial_p = sp[b];
|
|
initial_m = sp[(height-1) * bytes + b];
|
|
|
|
/* Determine a run-length encoded version of the row */
|
|
run_length_encode (sp + b, buf, bytes, height);
|
|
|
|
for (row = 0; row < height; row++)
|
|
{
|
|
start = (row < length) ? -row : -length;
|
|
end = (height <= (row + length) ?
|
|
(height - row - 1) : length);
|
|
|
|
val = 0;
|
|
i = start;
|
|
bb = buf + (row + i) * 2;
|
|
|
|
if (start != -length)
|
|
val += initial_p * (sum[start] - sum[-length]);
|
|
|
|
while (i < end)
|
|
{
|
|
pixels = bb[0];
|
|
i += pixels;
|
|
if (i > end)
|
|
i = end;
|
|
val += bb[1] * (sum[i] - sum[start]);
|
|
bb += (pixels * 2);
|
|
start = i;
|
|
}
|
|
|
|
if (end != length)
|
|
val += initial_m * (sum[length] - sum[end]);
|
|
|
|
dp[row * bytes + b] = val / total;
|
|
}
|
|
}
|
|
if (has_alpha)
|
|
separate_alpha (dest, height, bytes);
|
|
|
|
gimp_pixel_rgn_set_col (&dest_rgn, dest, col + x1, y1, (y2 - y1));
|
|
progress += height * vert;
|
|
if ((col % 5) == 0)
|
|
gimp_progress_update (progress / max_progress);
|
|
}
|
|
|
|
/* prepare for the horizontal pass */
|
|
gimp_pixel_rgn_init (&src_rgn,
|
|
drawable, 0, 0, drawable->width, drawable->height,
|
|
FALSE, TRUE);
|
|
}
|
|
|
|
/* Now the horizontal pass */
|
|
if (horz > 0.0)
|
|
{
|
|
horz = fabs (horz) + 1.0;
|
|
|
|
if (horz != vert)
|
|
{
|
|
std_dev = sqrt (-(horz * horz) / (2 * log (1.0 / 255.0)));
|
|
|
|
curve = make_curve (std_dev, &length);
|
|
sum = g_new (gint, 2 * length + 1);
|
|
|
|
sum[0] = 0;
|
|
|
|
for (i = 1; i <= length*2; i++)
|
|
sum[i] = curve[i-length-1] + sum[i-1];
|
|
sum += length;
|
|
|
|
total = sum[length] - sum[-length];
|
|
}
|
|
|
|
for (row = 0; row < height; row++)
|
|
{
|
|
gimp_pixel_rgn_get_row (&src_rgn, src, x1, row + y1, (x2 - x1));
|
|
if (has_alpha)
|
|
multiply_alpha (src, width, bytes);
|
|
|
|
sp = src;
|
|
dp = dest;
|
|
|
|
for (b = 0; b < bytes; b++)
|
|
{
|
|
initial_p = sp[b];
|
|
initial_m = sp[(width-1) * bytes + b];
|
|
|
|
/* Determine a run-length encoded version of the row */
|
|
run_length_encode (sp + b, buf, bytes, width);
|
|
|
|
for (col = 0; col < width; col++)
|
|
{
|
|
start = (col < length) ? -col : -length;
|
|
end = (width <= (col + length)) ? (width - col - 1) : length;
|
|
|
|
val = 0;
|
|
i = start;
|
|
bb = buf + (col + i) * 2;
|
|
|
|
if (start != -length)
|
|
val += initial_p * (sum[start] - sum[-length]);
|
|
|
|
while (i < end)
|
|
{
|
|
pixels = bb[0];
|
|
i += pixels;
|
|
if (i > end)
|
|
i = end;
|
|
val += bb[1] * (sum[i] - sum[start]);
|
|
bb += (pixels * 2);
|
|
start = i;
|
|
}
|
|
|
|
if (end != length)
|
|
val += initial_m * (sum[length] - sum[end]);
|
|
|
|
dp[col * bytes + b] = val / total;
|
|
}
|
|
}
|
|
if (has_alpha)
|
|
separate_alpha (dest, width, bytes);
|
|
|
|
gimp_pixel_rgn_set_row (&dest_rgn, dest, x1, row + y1, (x2 - x1));
|
|
progress += width * horz;
|
|
if ((row % 5) == 0)
|
|
gimp_progress_update (progress / max_progress);
|
|
}
|
|
}
|
|
|
|
|
|
/* merge the shadow, update the drawable */
|
|
gimp_drawable_flush (drawable);
|
|
gimp_drawable_merge_shadow (drawable->drawable_id, TRUE);
|
|
gimp_drawable_update (drawable->drawable_id, x1, y1, (x2 - x1), (y2 - y1));
|
|
|
|
/* free buffers */
|
|
g_free (buf);
|
|
g_free (src);
|
|
g_free (dest);
|
|
}
|
|
|
|
/*
|
|
* The equations: g(r) = exp (- r^2 / (2 * sigma^2))
|
|
* r = sqrt (x^2 + y ^2)
|
|
*/
|
|
|
|
static gint *
|
|
make_curve (gdouble sigma,
|
|
gint *length)
|
|
{
|
|
gint *curve;
|
|
gdouble sigma2;
|
|
gdouble l;
|
|
gint temp;
|
|
gint i, n;
|
|
|
|
sigma2 = 2 * sigma * sigma;
|
|
l = sqrt (-sigma2 * log (1.0 / 255.0));
|
|
|
|
n = ceil (l) * 2;
|
|
if ((n % 2) == 0)
|
|
n += 1;
|
|
|
|
curve = g_new (gint, n);
|
|
|
|
*length = n / 2;
|
|
curve += *length;
|
|
curve[0] = 255;
|
|
|
|
for (i = 1; i <= *length; i++)
|
|
{
|
|
temp = (gint) (exp (- (i * i) / sigma2) * 255);
|
|
curve[-i] = temp;
|
|
curve[i] = temp;
|
|
}
|
|
|
|
return curve;
|
|
}
|
|
|
|
static void
|
|
run_length_encode (guchar *src,
|
|
gint *dest,
|
|
gint bytes,
|
|
gint width)
|
|
{
|
|
gint start;
|
|
gint i;
|
|
gint j;
|
|
guchar last;
|
|
|
|
last = *src;
|
|
src += bytes;
|
|
start = 0;
|
|
|
|
for (i = 1; i < width; i++)
|
|
{
|
|
if (*src != last)
|
|
{
|
|
for (j = start; j < i; j++)
|
|
{
|
|
*dest++ = (i - j);
|
|
*dest++ = last;
|
|
}
|
|
start = i;
|
|
last = *src;
|
|
}
|
|
src += bytes;
|
|
}
|
|
|
|
for (j = start; j < i; j++)
|
|
{
|
|
*dest++ = (i - j);
|
|
*dest++ = last;
|
|
}
|
|
}
|