// SPDX-FileCopyrightText: Copyright (c) 2008-2013, NVIDIA Corporation. All rights reserved. // SPDX-License-Identifier: Apache-2.0 /*! \file adjacent_difference.h * \brief Compute difference between consecutive elements of a range */ #pragma once #include #if defined(_CCCL_IMPLICIT_SYSTEM_HEADER_GCC) # pragma GCC system_header #elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_CLANG) # pragma clang system_header #elif defined(_CCCL_IMPLICIT_SYSTEM_HEADER_MSVC) # pragma system_header #endif // no system header #include THRUST_NAMESPACE_BEGIN /*! \addtogroup transformations Transformations * \{ */ /*! \p adjacent_difference calculates the differences of adjacent elements in the * range [first, last). That is, \*first is assigned to * \*result, and, for each iterator \p i in the range * [first + 1, last), the difference of \*i and *(i - 1) * is assigned to \*(result + (i - first)). * * This version of \p adjacent_difference uses operator- to calculate * differences. * * The algorithm's execution is parallelized as determined by \p exec. * * \param exec The execution policy to use for parallelization. * \param first The beginning of the input range. * \param last The end of the input range. * \param result The beginning of the output range. * \return The iterator result + (last - first) * * \tparam DerivedPolicy The name of the derived execution policy. * \tparam InputIterator is a model of Input * Iterator, and \c x and \c y are objects of \p InputIterator's \c value_type, then \c x - \c is defined, and \p * InputIterator's \c value_type is convertible to a type in \p OutputIterator's set of \c value_types, and the return * type of x - y is convertible to a type in \p OutputIterator's set of \c value_types. \tparam OutputIterator * is a model of Output Iterator. * * \remark Note that \p result is permitted to be the same iterator as \p first. This is * useful for computing differences "in place". * * The following code snippet demonstrates how to use \p adjacent_difference to compute * the difference between adjacent elements of a range using the \p thrust::device execution policy: * * \code * #include * #include * #include * ... * int h_data[8] = {1, 2, 1, 2, 1, 2, 1, 2}; * thrust::device_vector d_data(h_data, h_data + 8); * thrust::device_vector d_result(8); * * thrust::adjacent_difference(thrust::device, d_data.begin(), d_data.end(), d_result.begin()); * * // d_result is now [1, 1, -1, 1, -1, 1, -1, 1] * \endcode * * \see https://en.cppreference.com/w/cpp/algorithm/adjacent_difference * \see inclusive_scan * * \verbatim embed:rst:leading-asterisk * .. versionadded:: 2.2.0 * \endverbatim */ template _CCCL_HOST_DEVICE OutputIterator adjacent_difference( const thrust::detail::execution_policy_base& exec, InputIterator first, InputIterator last, OutputIterator result); /*! \p adjacent_difference calculates the differences of adjacent elements in the * range [first, last). That is, *first is assigned to * \*result, and, for each iterator \p i in the range * [first + 1, last), binary_op(\*i, \*(i - 1)) is assigned to * \*(result + (i - first)). * * This version of \p adjacent_difference uses the binary function \p binary_op to * calculate differences. * * The algorithm's execution is parallelized as determined by \p exec. * * \param exec The execution policy to use for parallelization. * \param first The beginning of the input range. * \param last The end of the input range. * \param result The beginning of the output range. * \param binary_op The binary function used to compute differences. * \return The iterator result + (last - first) * * \tparam DerivedPolicy The name of the derived execution policy. * \tparam InputIterator is a model of Input * Iterator, and \p InputIterator's \c value_type is convertible to \p BinaryFunction's first and second argument * type, and \p InputIterator's \c value_type is convertible to a type in \p OutputIterator's set of * \c value_types. \tparam OutputIterator is a model of Output Iterator. * \tparam BinaryFunction The functions's return type convertible to a type in \p OutputIterator's set of \c * value_types. * * \remark Note that \p result is permitted to be the same iterator as \p first. This is * useful for computing differences "in place". * * The following code snippet demonstrates how to use \p adjacent_difference to compute * the sum between adjacent elements of a range using the \p thrust::device execution policy: * * \code * #include * #include * #include * #include * ... * int h_data[8] = {1, 2, 1, 2, 1, 2, 1, 2}; * thrust::device_vector d_data(h_data, h_data + 8); * thrust::device_vector d_result(8); * * thrust::adjacent_difference(thrust::device, d_data.begin(), d_data.end(), d_result.begin(), * ::cuda::std::plus()); * * // d_result is now [1, 3, 3, 3, 3, 3, 3, 3] * \endcode * * \see https://en.cppreference.com/w/cpp/algorithm/adjacent_difference * \see inclusive_scan * * \verbatim embed:rst:leading-asterisk * .. versionadded:: 2.2.0 * \endverbatim */ template _CCCL_HOST_DEVICE OutputIterator adjacent_difference( const thrust::detail::execution_policy_base& exec, InputIterator first, InputIterator last, OutputIterator result, BinaryFunction binary_op); /*! \p adjacent_difference calculates the differences of adjacent elements in the * range [first, last). That is, \*first is assigned to * \*result, and, for each iterator \p i in the range * [first + 1, last), the difference of \*i and *(i - 1) * is assigned to \*(result + (i - first)). * * This version of \p adjacent_difference uses operator- to calculate * differences. * * \param first The beginning of the input range. * \param last The end of the input range. * \param result The beginning of the output range. * \return The iterator result + (last - first) * * \tparam InputIterator is a model of Input * Iterator, and \c x and \c y are objects of \p InputIterator's \c value_type, then \c x - \c is defined, and \p * InputIterator's \c value_type is convertible to a type in \p OutputIterator's set of \c value_types, and the return * type of x - y is convertible to a type in \p OutputIterator's set of \c value_types. \tparam OutputIterator * is a model of Output Iterator. * * \remark Note that \p result is permitted to be the same iterator as \p first. This is * useful for computing differences "in place". * * The following code snippet demonstrates how to use \p adjacent_difference to compute * the difference between adjacent elements of a range. * * \code * #include * #include * ... * int h_data[8] = {1, 2, 1, 2, 1, 2, 1, 2}; * thrust::device_vector d_data(h_data, h_data + 8); * thrust::device_vector d_result(8); * * thrust::adjacent_difference(d_data.begin(), d_data.end(), d_result.begin()); * * // d_result is now [1, 1, -1, 1, -1, 1, -1, 1] * \endcode * * \see https://en.cppreference.com/w/cpp/algorithm/adjacent_difference * \see inclusive_scan * * \verbatim embed:rst:leading-asterisk * .. versionadded:: 2.2.0 * \endverbatim */ template OutputIterator adjacent_difference(InputIterator first, InputIterator last, OutputIterator result); /*! \p adjacent_difference calculates the differences of adjacent elements in the * range [first, last). That is, *first is assigned to * \*result, and, for each iterator \p i in the range * [first + 1, last), binary_op(\*i, \*(i - 1)) is assigned to * \*(result + (i - first)). * * This version of \p adjacent_difference uses the binary function \p binary_op to * calculate differences. * * \param first The beginning of the input range. * \param last The end of the input range. * \param result The beginning of the output range. * \param binary_op The binary function used to compute differences. * \return The iterator result + (last - first) * * \tparam InputIterator is a model of Input * Iterator, and \p InputIterator's \c value_type is convertible to \p BinaryFunction's first and second argument * type, and \p InputIterator's \c value_type is convertible to a type in \p OutputIterator's set of \c value_types. * \tparam OutputIterator is a model of Output * Iterator. * \tparam BinaryFunction The function's return type must be convertible to a type in \p OutputIterator's * set of \c value_types. * * \remark Note that \p result is permitted to be the same iterator as \p first. This is * useful for computing differences "in place". * * The following code snippet demonstrates how to use \p adjacent_difference to compute * the sum between adjacent elements of a range. * * \code * #include * #include * #include * ... * int h_data[8] = {1, 2, 1, 2, 1, 2, 1, 2}; * thrust::device_vector d_data(h_data, h_data + 8); * thrust::device_vector d_result(8); * * thrust::adjacent_difference(d_data.begin(), d_data.end(), d_result.begin(), ::cuda::std::plus()); * * // d_result is now [1, 3, 3, 3, 3, 3, 3, 3] * \endcode * * \see https://en.cppreference.com/w/cpp/algorithm/adjacent_difference * \see inclusive_scan * * \verbatim embed:rst:leading-asterisk * .. versionadded:: 2.2.0 * \endverbatim */ template OutputIterator adjacent_difference(InputIterator first, InputIterator last, OutputIterator result, BinaryFunction binary_op); /*! \} */ THRUST_NAMESPACE_END #include