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							182 lines
						
					
					
						
							5.7 KiB
						
					
					
				//=============================================================================
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//
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//  Copyright (c) 2015 Qualcomm Technologies, Inc.
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//  All Rights Reserved.
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//  Confidential and Proprietary - Qualcomm Technologies, Inc.
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//
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//=============================================================================
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#ifndef _ITENSOR_ITR_HPP_
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#define _ITENSOR_ITR_HPP_
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#include "ZdlExportDefine.hpp"
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#include "ITensorItrImpl.hpp"
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#include <memory>
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#include <iterator>
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#include <iostream>
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namespace zdl {
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namespace DlSystem
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{
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   template<bool IS_CONST> class ITensorItr;
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   class ITensor;
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   void ZDL_EXPORT fill(ITensorItr<false> first, ITensorItr<false> end, float val);
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   template<class InItr, class OutItr> OutItr ZDL_EXPORT copy(InItr first, InItr last, OutItr result)
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   {
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      return std::copy(first, last, result);
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   }
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}}
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namespace DlSystem
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{
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   class ITensorItrImpl;
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}
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namespace zdl { namespace DlSystem
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{
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/** @addtogroup c_plus_plus_apis C++
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@{ */
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/**
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 * A bidirectional iterator (with limited random access 
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 * capabilities) for the zdl::DlSystem::ITensor class.
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 *  
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 * This is a standard bidrectional iterator and is compatible
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 * with standard algorithm functions that operate on bidirectional 
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 * access iterators (e.g., std::copy, std::fill, etc.). It uses a
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 * template parameter to create const and non-const iterators 
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 * from the same code. Iterators are easiest to declare via the 
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 * typedefs iterator and const_iterator in the ITensor class 
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 * (e.g., zdl::DlSystem::ITensor::iterator). 
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 *  
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 * Note that if the tensor the iterator is traversing was 
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 * created with nondefault (i.e., nontrivial) strides, the 
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 * iterator will obey the strides when traversing the tensor 
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 * data. 
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 *  
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 * Also note that nontrivial strides dramatically affect the
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 * performance of the iterator (on the order of 20x slower). 
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 */ 
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template<bool IS_CONST=true>
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class ZDL_EXPORT ITensorItr : public std::iterator<std::bidirectional_iterator_tag, float>
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{
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public:
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   typedef typename std::conditional<IS_CONST, const float&, float&>::type VALUE_REF;
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   ITensorItr() = delete;
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   virtual ~ITensorItr() {}
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   ITensorItr(std::unique_ptr<::DlSystem::ITensorItrImpl> impl, 
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              bool isTrivial = false, 
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              float* data = nullptr)
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      : m_Impl(impl->clone())
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      , m_IsTrivial(isTrivial)
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      , m_Data(data)
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      , m_DataStart(data) {}
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   ITensorItr(const ITensorItr<IS_CONST>& itr)
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      : m_Impl(itr.m_Impl->clone()),
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        m_IsTrivial(itr.m_IsTrivial),
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        m_Data(itr.m_Data),
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        m_DataStart(itr.m_DataStart) {}
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   zdl::DlSystem::ITensorItr<IS_CONST>& operator=(const ITensorItr<IS_CONST>& other)
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   {
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      if (this == &other) return *this;
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      m_Impl = std::move(other.m_Impl->clone());
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      m_IsTrivial = other.m_IsTrivial;
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      m_Data = other.m_Data;
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      m_DataStart = other.m_DataStart;
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      return *this;
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   }
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   inline zdl::DlSystem::ITensorItr<IS_CONST>& operator++()
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   {
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      if (m_IsTrivial) m_Data++; else m_Impl->increment();
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      return *this;
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   }
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   inline zdl::DlSystem::ITensorItr<IS_CONST> operator++(int)
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   {
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      ITensorItr tmp(*this);
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      operator++();
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      return tmp;
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   }
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   inline zdl::DlSystem::ITensorItr<IS_CONST>& operator--()
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   {
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      if (m_IsTrivial) m_Data--; else m_Impl->decrement();
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      return *this;
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   }
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   inline zdl::DlSystem::ITensorItr<IS_CONST> operator--(int)
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   {
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      ITensorItr tmp(*this);
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      operator--();
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      return tmp;
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   }
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   inline zdl::DlSystem::ITensorItr<IS_CONST>& operator+=(int rhs)
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   {
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      if (m_IsTrivial) m_Data += rhs; else m_Impl->increment(rhs);
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      return *this;
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   }
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   inline friend zdl::DlSystem::ITensorItr<IS_CONST> operator+(zdl::DlSystem::ITensorItr<IS_CONST> lhs, int rhs)
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      { lhs += rhs; return lhs; }
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   inline zdl::DlSystem::ITensorItr<IS_CONST>& operator-=(int rhs)
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   {
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      if (m_IsTrivial) m_Data -= rhs; else m_Impl->decrement(rhs);
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      return *this;
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   }
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   inline friend zdl::DlSystem::ITensorItr<IS_CONST> operator-(zdl::DlSystem::ITensorItr<IS_CONST> lhs, int rhs)
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      { lhs -= rhs; return lhs; }
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   inline size_t operator-(const zdl::DlSystem::ITensorItr<IS_CONST>& rhs)
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   {
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      if (m_IsTrivial) return (m_Data - m_DataStart) - (rhs.m_Data - rhs.m_DataStart);
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      return m_Impl->getPosition() - rhs.m_Impl->getPosition();
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   }
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   inline friend bool operator<(const ITensorItr<IS_CONST>& lhs, const ITensorItr<IS_CONST>& rhs)
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   {
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      if (lhs.m_IsTrivial) return lhs.m_Data < rhs.m_Data;
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      return lhs.m_Impl->dataPointer() < rhs.m_Impl->dataPointer();
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   }
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   inline friend bool operator>(const ITensorItr<IS_CONST>& lhs, const ITensorItr<IS_CONST>& rhs)
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      { return rhs < lhs; }
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   inline friend bool operator<=(const ITensorItr<IS_CONST>& lhs, const ITensorItr<IS_CONST>& rhs)
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      { return !(lhs > rhs); }
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   inline friend bool operator>=(const ITensorItr<IS_CONST>& lhs, const ITensorItr<IS_CONST>& rhs)
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      { return !(lhs < rhs); }
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   inline bool operator==(const ITensorItr<IS_CONST>& rhs) const
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   {
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      if (m_IsTrivial) return m_Data == rhs.m_Data;
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      return m_Impl->dataPointer() == rhs.m_Impl->dataPointer();
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   }
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   inline bool operator!=(const ITensorItr<IS_CONST>& rhs) const
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      { return !operator==(rhs); }
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   inline VALUE_REF operator[](size_t idx)
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   {
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      if (m_IsTrivial) return *(m_DataStart + idx);
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      return m_Impl->getReferenceAt(idx);
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   }
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   inline VALUE_REF operator*()
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      { if (m_IsTrivial) return *m_Data; else return m_Impl->getReference(); }
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   inline VALUE_REF operator->()
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      { return *(*this); }
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   inline float* dataPointer() const
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      { if (m_IsTrivial) return m_Data; else return m_Impl->dataPointer(); }
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protected:
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   std::unique_ptr<::DlSystem::ITensorItrImpl> m_Impl;
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   bool m_IsTrivial = false;
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   float* m_Data = nullptr;
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   float* m_DataStart = nullptr;
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};
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}}
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/** @} */ /* end_addtogroup c_plus_plus_apis C++ */
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#endif
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