Support for XISF
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// ____ ______ __
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// / __ \ / ____// /
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// / /_/ // / / /
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// / ____// /___ / /___ PixInsight Class Library
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// /_/ \____//_____/ PCL 2.4.23
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// ----------------------------------------------------------------------------
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// pcl/PixelAllocator.h - Released 2022-03-12T18:59:29Z
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// ----------------------------------------------------------------------------
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// This file is part of the PixInsight Class Library (PCL).
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// PCL is a multiplatform C++ framework for development of PixInsight modules.
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//
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// Copyright (c) 2003-2022 Pleiades Astrophoto S.L. All Rights Reserved.
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//
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// Redistribution and use in both source and binary forms, with or without
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// modification, is permitted provided that the following conditions are met:
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//
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// 1. All redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//
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// 2. All redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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//
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// 3. Neither the names "PixInsight" and "Pleiades Astrophoto", nor the names
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// of their contributors, may be used to endorse or promote products derived
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// from this software without specific prior written permission. For written
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// permission, please contact info@pixinsight.com.
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//
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// 4. All products derived from this software, in any form whatsoever, must
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// reproduce the following acknowledgment in the end-user documentation
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// and/or other materials provided with the product:
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//
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// "This product is based on software from the PixInsight project, developed
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// by Pleiades Astrophoto and its contributors (https://pixinsight.com/)."
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//
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// Alternatively, if that is where third-party acknowledgments normally
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// appear, this acknowledgment must be reproduced in the product itself.
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//
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// THIS SOFTWARE IS PROVIDED BY PLEIADES ASTROPHOTO AND ITS CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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// TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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// PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL PLEIADES ASTROPHOTO OR ITS
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// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, BUSINESS
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// INTERRUPTION; PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; AND LOSS OF USE,
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// DATA OR PROFITS) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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// CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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// ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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// POSSIBILITY OF SUCH DAMAGE.
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// ----------------------------------------------------------------------------
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#ifndef __PCL_PixelAllocator_h
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#define __PCL_PixelAllocator_h
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/// \file pcl/PixelAllocator.h
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#include <pcl/Defs.h>
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#include <pcl/Diagnostics.h>
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#include <pcl/SharedPixelData.h>
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namespace pcl
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{
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// ----------------------------------------------------------------------------
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template <class P> class PCL_CLASS GenericImage;
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// ----------------------------------------------------------------------------
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/*!
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* \class PixelAllocator
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* \brief Manages transparent allocation and deallocation of shared and local
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* pixel data.
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*
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* %PixelAllocator is responsible for allocation and deallocation of pixel data
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* blocks in PCL. The template argument P corresponds to an instantiation of
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* GenericPixelTraits for a specific pixel sample type.
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*
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* Unless you are implementing geometrical transformations, or processes that
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* perform direct substitutions of pixel data blocks in images, such as a whole
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* channel, you usually should not have to use the %PixelAllocator template
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* class directly in your code. The SharedPixelData and GenericImage classes
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* can perform all the necessary allocations transparently.
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*
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* When you have to allocate or deallocate pixel data blocks, however, you
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* should \e never use the \c new and \c delete operators, or the \c malloc,
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* \c calloc and \c free standard C functions. You must use %PixelAllocator for
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* all allocations and deallocations of pixel data \e exclusively. Among other
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* good reasons for this, pixel data blocks cannot be allocated in your
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* module's local heap if they are being used with shared images, i.e. images
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* living in the PixInsight core application.
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*
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* The \e only safe way to allocate and deallocate pixel data in PCL is by
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* using %PixelAllocator's member functions. Note that you cannot allocate
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* %PixelAllocator directly. For an existing image, you get a reference to a
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* %PixelAllocator instance by calling the Allocator() member function of
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* %GenericImage. This member function returns a reference to the image's
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* internal allocator, which will perform all pixel allocation tasks that you
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* may need transparently, irrespective of whether the object represents a
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* local or shared image.
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*
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* \sa GenericPixelTraits, GenericImage, SharedPixelData
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*/
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template <class P>
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class PCL_CLASS PixelAllocator : public SharedPixelData
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{
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public:
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/*!
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* Represents the pixel traits class used by this instantiation of
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* %PixelAllocator.
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*
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* The \c pixel_traits type should be an instantiation of
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* GenericPixelTraits. It identifies a class implementing basic storage and
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* functional primitives optimized for a particular pixel sample type.
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*/
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typedef P pixel_traits;
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/*!
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* Represents the data type used to store pixel sample values in this
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* template instantiation of %PixelAllocator.
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*/
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typedef typename pixel_traits::sample sample;
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/*!
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* Returns true iff this allocator and another instance are working for the
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* same shared image, or if both of them are working for local images.
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*
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* All local images share a unique internal allocator, but each shared image
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* has its own, independent allocator object. This responds to the
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* multithreaded nature of the PixInsight core application.
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*/
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bool operator ==( const PixelAllocator<P>& x ) const noexcept
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{
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return SharedPixelData::operator ==( x );
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}
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/*!
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* Allocates a contiguous block of memory where at least \a n > 0 pixel
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* samples can be optimally stored.
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*
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* Returns the starting address of the allocated block.
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*
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* This member function throws a \c std::bad_alloc exception if there is not
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* enough memory available to allocate the required contiguous block.
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*/
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sample* AllocatePixels( size_type n ) const
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{
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PCL_PRECONDITION( n != 0 )
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return reinterpret_cast<sample*>( SharedPixelData::Allocate( n*sizeof( sample ) ) );
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}
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/*!
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* Allocates a contiguous block of memory where at least \a width *
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* \a height pixel samples can be optimally stored.
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*
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* Returns the starting address of the allocated block. This is a
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* convenience alias for:
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*
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* \code
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* AllocatePixels( size_type( width )*size_type( height ) );
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* \endcode
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*/
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sample* AllocatePixels( int width, int height ) const
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{
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return AllocatePixels( size_type( width )*size_type( height ) );
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}
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/*!
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* Allocates an array where at least \a n > 0 <em>channel slots</em> can be
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* optimally stored. A channel slot is a pointer to a contiguous block of
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* pixel samples, where an image can store a single channel.
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*
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* The allocated array is initialized to zero. Returns the starting address
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* of the allocated array.
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*
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* This member function throws a \c std::bad_alloc exception if there is not
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* enough memory available to allocate the required contiguous block.
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*/
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sample** AllocateChannelSlots( size_type n ) const
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{
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PCL_PRECONDITION( n != 0 )
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sample** cslots = reinterpret_cast<sample**>( SharedPixelData::Allocate( n*sizeof( sample* ) ) );
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::memset( cslots, 0, n*sizeof( sample* ) );
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return cslots;
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}
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/*!
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* Deallocates a previously allocated memory block. The deallocated block
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* becomes available for subsequent allocations.
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*
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* \warning <em>Do not</em> use this function to deallocate memory that has
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* not been allocated by \e this %PixelAllocator object. This includes
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* memory blocks allocated by the global \c new operator, or by other
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* %PixelAllocator objects. Failure to follow this rule will lead to severe
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* heap corruption for the calling module.
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*/
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template <typename T>
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void Deallocate( T* p ) const
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{
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PCL_PRECONDITION( p != nullptr )
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SharedPixelData::Deallocate( reinterpret_cast<void*>( p ) );
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}
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private:
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PixelAllocator() = default;
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PixelAllocator( void* handle )
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: SharedPixelData( handle, P::BitsPerSample(), P::IsFloatSample(), P::IsComplexSample() )
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{
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}
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PixelAllocator( const PixelAllocator<P>& x )
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: SharedPixelData( x )
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{
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}
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PixelAllocator( int width, int height, int numberOfChannels, int colorSpace )
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: SharedPixelData( width, height, numberOfChannels, P::BitsPerSample(), P::IsFloatSample(), colorSpace )
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{
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}
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PixelAllocator& operator =( const PixelAllocator<P>& x )
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{
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(void)SharedPixelData::operator =( x );
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return *this;
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}
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sample** GetSharedData() const
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{
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return reinterpret_cast<sample**>( SharedPixelData::GetSharedData() );
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}
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void SetSharedData( sample** ptrToShared )
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{
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SharedPixelData::SetSharedData( reinterpret_cast<void**>( ptrToShared ) );
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}
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friend class pcl::GenericImage<P>;
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};
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// ----------------------------------------------------------------------------
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} // pcl
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#endif // __PCL_PixelAllocator_h
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// ----------------------------------------------------------------------------
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// EOF pcl/PixelAllocator.h - Released 2022-03-12T18:59:29Z
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