corrade-vassal – Rev 1

Subversion Repositories:
Rev:
/*
* CVS identifier:
*
* $Id: SubbandROIMask.java,v 1.2 2001/02/28 15:12:44 grosbois Exp $
*
* Class:                   ROI
*
* Description:             This class describes the ROI mask for a subband
*
*
*
* COPYRIGHT:
* 
* This software module was originally developed by Raphaël Grosbois and
* Diego Santa Cruz (Swiss Federal Institute of Technology-EPFL); Joel
* Askelöf (Ericsson Radio Systems AB); and Bertrand Berthelot, David
* Bouchard, Félix Henry, Gerard Mozelle and Patrice Onno (Canon Research
* Centre France S.A) in the course of development of the JPEG2000
* standard as specified by ISO/IEC 15444 (JPEG 2000 Standard). This
* software module is an implementation of a part of the JPEG 2000
* Standard. Swiss Federal Institute of Technology-EPFL, Ericsson Radio
* Systems AB and Canon Research Centre France S.A (collectively JJ2000
* Partners) agree not to assert against ISO/IEC and users of the JPEG
* 2000 Standard (Users) any of their rights under the copyright, not
* including other intellectual property rights, for this software module
* with respect to the usage by ISO/IEC and Users of this software module
* or modifications thereof for use in hardware or software products
* claiming conformance to the JPEG 2000 Standard. Those intending to use
* this software module in hardware or software products are advised that
* their use may infringe existing patents. The original developers of
* this software module, JJ2000 Partners and ISO/IEC assume no liability
* for use of this software module or modifications thereof. No license
* or right to this software module is granted for non JPEG 2000 Standard
* conforming products. JJ2000 Partners have full right to use this
* software module for his/her own purpose, assign or donate this
* software module to any third party and to inhibit third parties from
* using this software module for non JPEG 2000 Standard conforming
* products. This copyright notice must be included in all copies or
* derivative works of this software module.
* 
* Copyright (c) 1999/2000 JJ2000 Partners.
*  */
using System;
using CSJ2K.j2k.codestream.writer;
using CSJ2K.j2k.wavelet.analysis;
using CSJ2K.j2k.quantization;
using CSJ2K.j2k.wavelet;
using CSJ2K.j2k.image;
using CSJ2K.j2k.util;
using CSJ2K.j2k.roi;
namespace CSJ2K.j2k.roi.encoder
{
        
        /// <summary> This abstract class describes the ROI mask for a single subband. Each
        /// object of the class contains the mask for a particular subband and also has
        /// references to the masks of the children subbands of the subband
        /// corresponding to this mask.  
        /// </summary>
        public abstract class SubbandROIMask
        {
                
                /// <summary>The subband masks of the child LL </summary>
                protected internal SubbandROIMask ll;
                
                /// <summary>The subband masks of the child LH </summary>
                protected internal SubbandROIMask lh;
                
                /// <summary>The subband masks of the child HL </summary>
                protected internal SubbandROIMask hl;
                
                /// <summary>The subband masks of the child HH </summary>
                protected internal SubbandROIMask hh;
                
                /// <summary>Flag indicating whether this subband mask is a node or not </summary>
                protected internal bool isNode;
                
                /// <summary>Horizontal uper-left coordinate of the subband mask </summary>
                public int ulx;
                
                /// <summary>Vertical uper-left coordinate of the subband mask </summary>
                public int uly;
                
                /// <summary>Width of the subband mask </summary>
                public int w;
                
                /// <summary>Height of the subband mask </summary>
                public int h;
                
                /// <summary> The constructor of the SubbandROIMask takes the dimensions of the
                /// subband as parameters
                /// 
                /// </summary>
                /// <param name="ulx">The upper left x coordinate of corresponding subband
                /// 
                /// </param>
                /// <param name="uly">The upper left y coordinate of corresponding subband
                /// 
                /// </param>
                /// <param name="w">The width of corresponding subband
                /// 
                /// </param>
                /// <param name="h">The height of corresponding subband
                /// 
                /// </param>
                public SubbandROIMask(int ulx, int uly, int w, int h)
                {
                        this.ulx = ulx;
                        this.uly = uly;
                        this.w = w;
                        this.h = h;
                }
                
                /// <summary> Returns a reference to the Subband mask element to which the specified
                /// point belongs. The specified point must be inside this (i.e. the one
                /// defined by this object) subband mask. This method searches through the
                /// tree.
                /// 
                /// </summary>
                /// <param name="x">horizontal coordinate of the specified point.
                /// 
                /// </param>
                /// <param name="y">horizontal coordinate of the specified point.
                /// 
                /// </param>
                public virtual SubbandROIMask getSubbandRectROIMask(int x, int y)
                {
                        SubbandROIMask cur, hhs;
                        
                        // Check that we are inside this subband
                        if (x < ulx || y < uly || x >= ulx + w || y >= uly + h)
                        {
                                throw new System.ArgumentException();
                        }
                        
                        cur = this;
                        while (cur.isNode)
                        {
                                hhs = cur.hh;
                                // While we are still at a node -> continue
                                if (x < hhs.ulx)
                                {
                                        // Is the result of horizontal low-pass
                                        if (y < hhs.uly)
                                        {
                                                // Vertical low-pass
                                                cur = cur.ll;
                                        }
                                        else
                                        {
                                                // Vertical high-pass
                                                cur = cur.lh;
                                        }
                                }
                                else
                                {
                                        // Is the result of horizontal high-pass
                                        if (y < hhs.uly)
                                        {
                                                // Vertical low-pass
                                                cur = cur.hl;
                                        }
                                        else
                                        {
                                                // Vertical high-pass
                                                cur = cur.hh;
                                        }
                                }
                        }
                        return cur;
                }
        }
}

Generated by GNU Enscript 1.6.5.90.