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- <title>The MPL Reference Manual: Algorithms</title>
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- <div class="section" id="algorithms">
- <h1><a class="toc-backref" href="../refmanual.html#id1460">Algorithms</a></h1>
- <p id="label-algorithms">The MPL provides a broad range of fundamental algorithms aimed to
- satisfy the majority of sequential compile-time data processing
- needs. The algorithms include compile-time counterparts
- of many of the STL algorithms, iteration algorithms borrowed from
- functional programming languages, and more.</p>
- <p>Unlike the algorithms in the C++ Standard Library, which operate on
- implict <em>iterator ranges</em>, the majority of MPL counterparts take
- and return <em>sequences</em>. This derivation is not dictated by the
- functional nature of C++ compile-time computations per se, but
- rather by a desire to improve general usability of the library,
- making programming with compile-time data structures as enjoyable
- as possible.</p>
- <!-- This can be seen as a further generalization and extension of
- the STL's conceptual framework. -->
- <p>In the spirit of the STL, MPL algorithms are <em>generic</em>, meaning
- that they are not tied to particular sequence class
- implementations, and can operate on a wide range of arguments as
- long as they satisfy the documented requirements. The requirements
- are formulated in terms of concepts. Under the hood,
- algorithms are decoupled from concrete sequence
- implementations by operating on <a class="reference internal" href="./iterators.html">Iterators</a>.</p>
- <p>All MPL algorithms can be sorted into three
- major categories: iteration algorithms, querying algorithms, and
- transformation algorithms. The transformation algorithms introduce
- an associated <a class="reference internal" href="./inserter.html">Inserter</a> concept, a rough equivalent for the notion of
- <a class="reference external" href="https://boost.org/sgi/stl/OutputIterator.html" target="_top">Output Iterator</a> in the Standard Library. Moreover, every
- transformation algorithm provides a <tt class="literal"><span class="pre">reverse_</span></tt> counterpart,
- allowing for a wider range of efficient transformations — a
- common functionality documented by the <a class="reference internal" href="./reversible-algorithm.html">Reversible Algorithm</a>
- concept.</p>
- <ul class="toc simple" id="outline">
- <li><a class="reference internal" href="./algorithms-concepts.html" id="id1461">Concepts</a></li>
- <li><a class="reference internal" href="./inserters.html" id="id1464">Inserters</a></li>
- <li><a class="reference internal" href="./iteration-algorithms.html" id="id1468">Iteration Algorithms</a></li>
- <li><a class="reference internal" href="./querying-algorithms.html" id="id1474">Querying Algorithms</a></li>
- <li><a class="reference internal" href="./transformation-algorithms.html" id="id1485">Transformation Algorithms</a></li>
- <li><a class="reference internal" href="./runtime-algorithms.html" id="id1508">Runtime Algorithms</a></li>
- </ul>
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- <td><div class="copyright-footer"><div class="copyright">Copyright © 2001-2009 Aleksey Gurtovoy and David Abrahams</div>
- Distributed under the Boost Software License, Version 1.0. (See accompanying
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