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85 Commits

Author SHA1 Message Date
280f150bfb optional_optimization branch
[SVN r77091]
2012-02-22 10:37:27 +00:00
dfaea65083 Fix (even more) test failures in Boost.Algorithm
[SVN r77076]
2012-02-20 15:22:04 +00:00
eb8291e0aa Fix some test (more) failures in Boost.Algorithm
[SVN r77073]
2012-02-19 16:17:27 +00:00
f023127c99 Fix some test failures in Boost.Algorithm
[SVN r77070]
2012-02-18 17:26:08 +00:00
43c01ff2bc Added c++11 algorithms to Boost.Algorithm
[SVN r77060]
2012-02-18 07:17:39 +00:00
8bfaa6dad3 Added QuickRef entries for 'is_any_of' and 'is_from_range'
[SVN r76526]
2012-01-15 16:47:48 +00:00
6fbc7401d5 should correct #3634; will close when merged to release
[SVN r76435]
2012-01-12 18:35:06 +00:00
d518994247 Initial checkin of Boost.Algorithm searching and clamp code and tests; docs and more Algos coming
[SVN r76388]
2012-01-09 17:21:04 +00:00
ba417e875a Qualified two calls to memcpy to work around a C++Builder bug; Refs #4811
[SVN r76213]
2011-12-28 19:14:18 +00:00
e92d471817 Comment updated
[SVN r72350]
2011-06-02 20:08:16 +00:00
34c49f856c trim_fill algorithm added
[SVN r72338]
2011-06-01 22:00:22 +00:00
caea7bd125 trim_all test fixed
[SVN r68173]
2011-01-15 18:37:46 +00:00
81b04cde96 Revert [67111] (addition of boost/detail/iomanip.hpp) and all the commits that depend on it. ([68137], [68140], [68141], [68154], and [68165]).
[SVN r68168]
2011-01-15 08:11:51 +00:00
276073ca64 tabs removed
[SVN r68162]
2011-01-14 23:12:32 +00:00
a7f5bdd781 trim_all algorithm added
[SVN r68161]
2011-01-14 23:06:14 +00:00
0c0a866f07 Replacing the use of <iomanip> with <boost/detail/iomanip.hpp> across Boost.
On Linux, GNU's libstdc++, which is the default stdlib for icc and clang,
cannot parse the <iomanip> header in version 4.5+ (which thankfully neither
compiler advises the use of yet), as it's original C++98-friendly
implementation has been replaced with a gnu++0x implementation.
<boost/detail/iomanip.hpp> is a portable implementation of <iomanip>, providing
boost::detail::setfill, boost::detail::setbase, boost::detail::setw,
boost::detail::setprecision, boost::detail::setiosflags and
boost::detail::resetiosflags. 



[SVN r68140]
2011-01-14 02:35:58 +00:00
9d25072f2f dissect formatter and tests added
[SVN r68124]
2011-01-13 21:21:37 +00:00
823b199df3 Fix typo. Fixes #4937.
[SVN r67106]
2010-12-08 17:37:52 +00:00
fecd440527 Fix some links I missed in string algorithms
[SVN r66278]
2010-10-30 15:53:41 +00:00
3325d3a3f8 Link fixes.
[SVN r66273]
2010-10-30 14:32:50 +00:00
ebf104c127 test for empty string split added
[SVN r66221]
2010-10-27 20:42:22 +00:00
3b76763807 fixed the empty string handling for the split iterator
[SVN r66220]
2010-10-27 20:40:37 +00:00
62df1eb048 Fix #4551,#4553,#4575 by removing unused parameter.
[SVN r65004]
2010-08-25 20:01:38 +00:00
f5dd47883f Update various libraries' documentation build.
Mostly to use the images and css files under doc/src instead of
doc/html, usually be deleting the settings in order to use the defaults.
Also add 'boost.root' to some builds in order to fix links which rely on
it.

[SVN r63146]
2010-06-20 18:00:48 +00:00
9d68c4280c Fix license per inspection report.
[SVN r62814]
2010-06-11 19:52:26 +00:00
1e8b3ee752 Make to_upperF and to_lowerF assignable. Fixes #3161.
[SVN r62697]
2010-06-09 23:23:56 +00:00
42147c8385 Copy m_bEof in the split_iterator copy constructor. Fixes #4271
[SVN r62696]
2010-06-09 23:12:56 +00:00
672775545d Avoid calling the formatter with an invalid match. Fixes #2777
[SVN r62695]
2010-06-09 23:04:24 +00:00
46ed1bf987 Assign the iterator returned by std::copy back to Output, so that string algorithms will work with iterators other than inserters
[SVN r62694]
2010-06-09 21:12:06 +00:00
6289ed7f98 Trim the correct string. Fixes #3860
[SVN r62692]
2010-06-09 20:42:46 +00:00
8e97668b1f Tail not head. Fixes #3314
[SVN r62690]
2010-06-09 20:31:26 +00:00
e7c23d2f13 Tail not head. Fixes #2124
[SVN r62689]
2010-06-09 20:26:36 +00:00
a1e7512012 Use result_type instead of sig for predicates. Fixes #2868
[SVN r62688]
2010-06-09 20:16:21 +00:00
31b5842441 Typo.
[SVN r62461]
2010-06-06 07:18:24 +00:00
4515bc182e Fix example. Fixes #4206
[SVN r61931]
2010-05-12 12:56:16 +00:00
7e2e6856cc Remove duplicate closing angle brackets. Fixes #4198
[SVN r61856]
2010-05-08 18:27:44 +00:00
235c81be61 Fixed various issues in docs (mostly duplicate bookmarks and broken links) found by inspect tool
[SVN r61437]
2010-04-20 18:49:18 +00:00
1eb3d83534 Fix links for string algorithm to range documentation.
[SVN r61351]
2010-04-18 12:17:36 +00:00
8f2b8d4888 rm cmake from trunk. I'm not entirely sure this is necessary to satisfy the inspect script, but I'm not taking any chances, and it is easy to put back
[SVN r56942]
2009-10-17 02:07:38 +00:00
6c0f953c01 GCC compilation errors caused be the recent update fixed
[SVN r55434]
2009-08-06 19:52:08 +00:00
e439792494 Merged ADL protection patch from Neil Groves
[SVN r55424]
2009-08-05 20:01:10 +00:00
236b142308 Copyrights on CMakeLists.txt to keep them from clogging up the inspect
reports.  This is essentially the same commit as r55095 on the release
branch.



[SVN r55159]
2009-07-26 00:49:56 +00:00
9bad789175 Fix operator precedence error in documentation. Fixes #2122
[SVN r53520]
2009-06-01 00:47:03 +00:00
d84f81d841 Fixed most tab and min/max issues from trunk inspection report
[SVN r53141]
2009-05-20 19:19:00 +00:00
ce98e8b87e Qualify minmax with boost:: to avoid ambiguity with std::minmax. Fixes #3023
[SVN r53062]
2009-05-17 00:39:22 +00:00
e8a2596637 Add PDF generation options to fix external links to point to the web site.
Added a few more Boostbook based libs that were missed first time around.
Fixed PDF naming issues.

[SVN r51284]
2009-02-17 10:05:58 +00:00
7b2754b937 Fix copy/paste error in minmax docs. Fixes #2500
[SVN r51045]
2009-02-06 03:45:09 +00:00
784402e5c0 Updating dependency information for modularized libraries.
[SVN r49628]
2008-11-07 17:05:27 +00:00
1188575e7b Updating CMake files to latest trunk. Added dependency information for regression tests and a few new macros for internal use.
[SVN r49627]
2008-11-07 17:02:56 +00:00
bff2a1e112 Continuing merge of CMake build system files into trunk with the encouragement of Doug Gregor
[SVN r49510]
2008-11-01 13:15:41 +00:00
6d5e7b5a04 self assignment problem in is_any_ofF fixed
[SVN r48281]
2008-08-21 14:46:15 +00:00
760af1798b removed static constant FIXED_STORAGE_SIZE from is_any_of to
make the code compile on borland compilers



[SVN r48218]
2008-08-19 14:32:59 +00:00
1f5542b44c predicate test improvements
[SVN r48199]
2008-08-18 18:33:40 +00:00
baf3dd99e2 fox for allocation bug in is_any_ofF
[SVN r48198]
2008-08-18 18:32:51 +00:00
7299b29bf8 fixind the problems in is_any_ofF spotted by gcc
[SVN r46498]
2008-06-18 22:07:32 +00:00
539c170b9d aditional tests added
[SVN r46497]
2008-06-18 21:55:38 +00:00
c81ee948b7 is_any_ofF performance improvements
tabs removed



[SVN r46496]
2008-06-18 21:54:06 +00:00
ba5e4c30c6 fixed the rle example crash
[SVN r46463]
2008-06-17 21:58:58 +00:00
cd26ed816c patch from ticket #1152 applied
[SVN r46461]
2008-06-17 21:21:33 +00:00
4e15767bed simple_finder example fixed
[SVN r46460]
2008-06-17 21:13:25 +00:00
9fa2f90db4 begin() and end() calls made fully qualified
[SVN r46459]
2008-06-17 21:04:00 +00:00
35f317aeac unnecessary typedefs removed
[SVN r46458]
2008-06-17 20:31:41 +00:00
d0a03fdb4e Added missing include. This was already fixed on the 1.34 branch but never merged to the trunk.
[SVN r45857]
2008-05-28 08:32:12 +00:00
346f032be2 Quote href values - our tools don't support unquoted values.
[SVN r45283]
2008-05-11 13:49:20 +00:00
a389d768c4 Fix broken copyright urls. Fixes #1573.
[SVN r43422]
2008-02-27 18:51:14 +00:00
90fca39906 Point links to the pages that used to be in 'more' to the site.
[SVN r43210]
2008-02-10 15:02:17 +00:00
5b24f31486 merging changes from 1.34
[SVN r40698]
2007-11-02 21:00:08 +00:00
b25d6511b3 merging changes from 1.34
[SVN r40697]
2007-11-02 20:55:26 +00:00
1541a554f5 changed range_result_iterator to range_iterator
[SVN r40518]
2007-10-27 22:52:29 +00:00
7a97b3390e Added missing include.
[SVN r39586]
2007-09-28 07:19:29 +00:00
6e5a7497ae Added missing include.
[SVN r39519]
2007-09-25 08:46:31 +00:00
f0b8b60379 Update
[SVN r38522]
2007-08-08 19:24:04 +00:00
66019abb2f Update
[SVN r38521]
2007-08-08 19:23:38 +00:00
8758222006 Remove V1 Jamfiles
[SVN r38516]
2007-08-08 19:02:26 +00:00
4eef56761a find/split iterator tests added
[SVN r38126]
2007-07-01 22:24:29 +00:00
b94a3fbfba adapting to new range interface
[SVN r38125]
2007-07-01 22:23:55 +00:00
614cc2ebab adapting to new range interface
[SVN r38123]
2007-07-01 13:29:56 +00:00
869660ed14 adapted to the new range interface
[SVN r38122]
2007-07-01 13:12:57 +00:00
777f30780e Fix broken build of docs, it was missing a dependency to the doxygen docs.
[SVN r37466]
2007-04-17 17:19:25 +00:00
26aa37733b Fix a few more references to *.boosbook instead of *.xml generated files.
[SVN r37465]
2007-04-17 17:13:35 +00:00
f1e60579c2 documentation typo fixed
[SVN r36843]
2007-01-30 07:59:28 +00:00
389dd3c863 Add copyright, license
[SVN r35905]
2006-11-07 19:11:57 +00:00
f23f61ae9b License added to the xml doc files
[SVN r34895]
2006-08-16 07:17:49 +00:00
608112b112 boost guidelines (mainly from inspect tool: tabs, license reference text, etc.)
[SVN r34752]
2006-07-27 10:27:37 +00:00
b21b54dc4e Applying patch from Nicola Musatti
[SVN r33709]
2006-04-16 09:46:34 +00:00
52 changed files with 48033 additions and 0 deletions

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example/Jamfile.v2 Normal file
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# Boost algorithm library example programs Jamfile
#
# Copyright Marshall Clow 2010-2012. Use, modification and
# distribution is subject to the Boost Software License, Version
# 1.0. (See accompanying file LICENSE_1_0.txt or copy at
# http://www.boost.org/LICENSE_1_0.txt)
#
# See http://www.boost.org for updates, documentation, and revision history.
project /boost/algorithm/example
: requirements
<include>../../../
<optimization>speed
<toolset>msvc:<define>_SCL_SECURE_NO_WARNINGS
<toolset>msvc:<define>NOMINMAX
<link>static
:
;
exe clamp_example : clamp_example.cpp ;
exe search_example : search_example.cpp ;

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example/clamp_example.cpp Normal file
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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <string>
#include <iostream> // for cout, etc
#include <boost/algorithm/clamp.hpp>
namespace ba = boost::algorithm;
bool compare_string_lengths ( const std::string &one, const std::string &two )
{
return one.length () < two.length ();
}
int main ( int /*argc*/, char * /*argv*/ [] ) {
// Clamp takes a value and two "fenceposts", and brings the value "between" the fenceposts.
// If the input value is "between" the fenceposts, then it is returned unchanged.
std::cout << "Clamping 5 to between [1, 10] -> " << ba::clamp ( 5, 1, 10 ) << std::endl;
// If the input value is out side the range of the fenceposts, it "brought into" range.
std::cout << "Clamping 15 to between [1, 10] -> " << ba::clamp ( 15, 1, 10 ) << std::endl;
std::cout << "Clamping -15 to between [1, 10] -> " << ba::clamp ( -15, 1, 10 ) << std::endl;
// It doesn't just work for ints
std::cout << "Clamping 5.1 to between [1, 10] -> " << ba::clamp ( 5.1, 1.0, 10.0 ) << std::endl;
{
std::string one ( "Lower Bound" ), two ( "upper bound!" ), test1 ( "test#" ), test2 ( "#test" );
std::cout << "Clamping '" << test1 << "' between ['" << one << "' and '" << two << "'] -> '" <<
ba::clamp ( test1, one, two ) << "'" << std::endl;
std::cout << "Clamping '" << test2 << "' between ['" << one << "' and '" << two << "'] -> '" <<
ba::clamp ( test2, one, two ) << "'" << std::endl;
// There is also a predicate based version, if you want to compare objects in your own way
std::cout << "Clamping '" << test1 << "' between ['" << one << "' and '" << two << "'] (comparing lengths) -> '" <<
ba::clamp ( test1, one, two, compare_string_lengths ) << "'" << std::endl;
std::cout << "Clamping '" << test2 << "' between ['" << one << "' and '" << two << "'] (comparing lengths) -> '" <<
ba::clamp ( test2, one, two, compare_string_lengths ) << "'" << std::endl;
}
// Sometimes, though, you don't get quite what you expect
// This is because the two double arguments get converted to int
std::cout << "Somewhat unexpected: clamp ( 12, 14.7, 15.9 ) --> " << ba::clamp ( 12, 14.7, 15.9 ) << std::endl;
std::cout << "Expected: clamp ((double)12, 14.7, 15.9 ) --> " << ba::clamp ((double) 12, 14.7, 15.9 ) << std::endl;
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <string>
#include <iostream> // for cout, etc.
#include <boost/algorithm/searching/boyer_moore.hpp>
#include <boost/algorithm/searching/boyer_moore_horspool.hpp>
#include <boost/algorithm/searching/knuth_morris_pratt.hpp>
namespace ba = boost::algorithm;
const std::string haystack ( "ABACAB is it everywhere!" );
const std::string needle1 ( "ACAB" );
const std::string needle2 ( "not ABA" );
int main ( int /*argc*/, char * /*argv*/ [] ) {
// In search.hpp, there are generic implementations of three classic sequence search
// algorithms. They all have the same (dual) interface.
// There is a procedural interface, based on std::search:
if ( ba::boyer_moore_search ( haystack.begin (), haystack.end (), needle1.begin (), needle1.end ()) != haystack.end ())
std::cout << "Found '" << needle1 << "' in '" << haystack << "' (boyer-moore 1)" << std::endl;
else
std::cout << "Did NOT find '" << needle1 << "' in '" << haystack << "' (boyer-moore 1)" << std::endl;
// If you plan on searching for the same pattern in several different data sets,
// you can create a search object and use that over and over again - amortizing the setup
// costs across several searches
ba::boyer_moore<std::string::const_iterator> search1 ( needle1.begin (), needle1.end ());
if ( search1 ( haystack.begin (), haystack.end ()) != haystack.end ())
std::cout << "Found '" << needle1 << "' in '" << haystack << "' (boyer-moore 2)" << std::endl;
else
std::cout << "Did NOT find '" << needle1 << "' in '" << haystack << "' (boyer-moore 2)" << std::endl;
// There is also an implementation of boyer-moore-horspool searching
if ( ba::boyer_moore_horspool_search ( haystack.begin (), haystack.end (), needle1.begin (), needle1.end ()) != haystack.end ())
std::cout << "Found '" << needle1 << "' in '" << haystack << "' (boyer-moore-horspool)" << std::endl;
else
std::cout << "Did NOT find '" << needle1 << "' in '" << haystack << "' (boyer-moore-horspool)" << std::endl;
// And also the knuth-pratt-morris search algorithm
if ( ba::knuth_morris_pratt_search ( haystack.begin (), haystack.end (), needle1.begin (), needle1.end ()) != haystack.end ())
std::cout << "Found '" << needle1 << "' in '" << haystack << "' (knuth_morris_pratt)" << std::endl;
else
std::cout << "Did NOT find '" << needle1 << "' in '" << haystack << "' (knuth_morris_pratt)" << std::endl;
return 0;
}

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
Revision history:
27 June 2009 mtc First version
23 Oct 2010 mtc Added predicate version
*/
/// \file clamp.hpp
/// \brief Clamp algorithm
/// \author Marshall Clow
///
/// Suggested by olafvdspek in https://svn.boost.org/trac/boost/ticket/3215
#ifndef BOOST_ALGORITHM_CLAMP_HPP
#define BOOST_ALGORITHM_CLAMP_HPP
#include <functional> // For std::less
#include <iterator> // For std::iterator_traits
#include <cassert>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
#include <boost/mpl/identity.hpp> // for identity
#include <boost/utility/enable_if.hpp> // for boost::disable_if
namespace boost { namespace algorithm {
/// \fn clamp ( T const& val,
/// typename boost::mpl::identity<T>::type const& lo,
/// typename boost::mpl::identity<T>::type const& hi, Pred p )
/// \return the value "val" brought into the range [ lo, hi ]
/// using the comparison predicate p.
/// If p ( val, lo ) return lo.
/// If p ( hi, val ) return hi.
/// Otherwise, return the original value.
///
/// \param val The value to be clamped
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
/// \param p A predicate to use to compare the values.
/// p ( a, b ) returns a boolean.
///
template<typename T, typename Pred>
T const & clamp ( T const& val,
typename boost::mpl::identity<T>::type const & lo,
typename boost::mpl::identity<T>::type const & hi, Pred p )
{
// assert ( !p ( hi, lo )); // Can't assert p ( lo, hi ) b/c they might be equal
return p ( val, lo ) ? lo : p ( hi, val ) ? hi : val;
}
/// \fn clamp ( T const& val,
/// typename boost::mpl::identity<T>::type const& lo,
/// typename boost::mpl::identity<T>::type const& hi )
/// \return the value "val" brought into the range [ lo, hi ].
/// If the value is less than lo, return lo.
/// If the value is greater than "hi", return hi.
/// Otherwise, return the original value.
///
/// \param val The value to be clamped
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
///
template<typename T>
T const& clamp ( const T& val,
typename boost::mpl::identity<T>::type const & lo,
typename boost::mpl::identity<T>::type const & hi )
{
return (clamp) ( val, lo, hi, std::less<T>());
}
/// \fn clamp_range ( InputIterator first, InputIterator last, OutputIterator out,
/// std::iterator_traits<InputIterator>::value_type lo,
/// std::iterator_traits<InputIterator>::value_type hi )
/// \return clamp the sequence of values [first, last) into [ lo, hi ]
///
/// \param first The start of the range of values
/// \param last One past the end of the range of input values
/// \param out An output iterator to write the clamped values into
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
///
template<typename InputIterator, typename OutputIterator>
OutputIterator clamp_range ( InputIterator first, InputIterator last, OutputIterator out,
typename std::iterator_traits<InputIterator>::value_type lo,
typename std::iterator_traits<InputIterator>::value_type hi )
{
// this could also be written with bind and std::transform
while ( first != last )
*out++ = clamp ( *first++, lo, hi );
return out;
}
/// \fn clamp_range ( const Range &r, OutputIterator out,
/// typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type lo,
/// typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type hi )
/// \return clamp the sequence of values [first, last) into [ lo, hi ]
///
/// \param r The range of values to be clamped
/// \param out An output iterator to write the clamped values into
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
///
template<typename Range, typename OutputIterator>
typename boost::disable_if_c<boost::is_same<Range, OutputIterator>::value, OutputIterator>::type
clamp_range ( const Range &r, OutputIterator out,
typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type lo,
typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type hi )
{
return clamp_range ( boost::begin ( r ), boost::end ( r ), out, lo, hi );
}
/// \fn clamp_range ( InputIterator first, InputIterator last, OutputIterator out,
/// std::iterator_traits<InputIterator>::value_type lo,
/// std::iterator_traits<InputIterator>::value_type hi, Pred p )
/// \return clamp the sequence of values [first, last) into [ lo, hi ]
/// using the comparison predicate p.
///
/// \param first The start of the range of values
/// \param last One past the end of the range of input values
/// \param out An output iterator to write the clamped values into
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
/// \param p A predicate to use to compare the values.
/// p ( a, b ) returns a boolean.
///
template<typename InputIterator, typename OutputIterator, typename Pred>
OutputIterator clamp_range ( InputIterator first, InputIterator last, OutputIterator out,
typename std::iterator_traits<InputIterator>::value_type lo,
typename std::iterator_traits<InputIterator>::value_type hi, Pred p )
{
// this could also be written with bind and std::transform
while ( first != last )
*out++ = clamp ( *first++, lo, hi, p );
return out;
}
/// \fn clamp_range ( const Range &r, OutputIterator out,
/// typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type lo,
/// typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type hi,
/// Pred p )
/// \return clamp the sequence of values [first, last) into [ lo, hi ]
/// using the comparison predicate p.
///
/// \param r The range of values to be clamped
/// \param out An output iterator to write the clamped values into
/// \param lo The lower bound of the range to be clamped to
/// \param hi The upper bound of the range to be clamped to
/// \param p A predicate to use to compare the values.
/// p ( a, b ) returns a boolean.
//
// Disable this template if the first two parameters are the same type;
// In that case, the user will get the two iterator version.
template<typename Range, typename OutputIterator, typename Pred>
typename boost::disable_if_c<boost::is_same<Range, OutputIterator>::value, OutputIterator>::type
clamp_range ( const Range &r, OutputIterator out,
typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type lo,
typename std::iterator_traits<typename boost::range_iterator<const Range>::type>::value_type hi,
Pred p )
{
return clamp_range ( boost::begin ( r ), boost::end ( r ), out, lo, hi, p );
}
}}
#endif // BOOST_ALGORITHM_CLAMP_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file all_of.hpp
/// \brief Test ranges to see if all elements match a value or predicate.
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_ALL_OF_HPP
#define BOOST_ALGORITHM_ALL_OF_HPP
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of all_of if it is available
using std::all_of; // Section 25.2.1
#else
/// \fn all_of ( InputIterator first, InputIterator last, Predicate p )
/// \return true if all elements in [first, last) satisfy the predicate 'p'
/// \note returns true on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p A predicate for testing the elements of the sequence
///
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template<typename InputIterator, typename Predicate>
bool all_of ( InputIterator first, InputIterator last, Predicate p )
{
for ( ; first != last; ++first )
if ( !p(*first))
return false;
return true;
}
#endif
/// \fn all_of ( const Range &r, Predicate p )
/// \return true if all elements in the range satisfy the predicate 'p'
/// \note returns true on an empty range
///
/// \param r The input range
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename Predicate>
bool all_of ( const Range &r, Predicate p )
{
return boost::algorithm::all_of ( boost::begin (r), boost::end (r), p );
}
/// \fn all_of_equal ( InputIterator first, InputIterator last, const T &val )
/// \return true if all elements in [first, last) are equal to 'val'
/// \note returns true on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param val A value to compare against
///
template<typename InputIterator, typename T>
bool all_of_equal ( InputIterator first, InputIterator last, const T &val )
{
for ( ; first != last; ++first )
if ( val != *first )
return false;
return true;
}
/// \fn all_of_equal ( const Range &r, const T &val )
/// \return true if all elements in the range are equal to 'val'
/// \note returns true on an empty range
///
/// \param r The input range
/// \param val A value to compare against
///
template<typename Range, typename T>
bool all_of_equal ( const Range &r, const T &val )
{
return boost::algorithm::all_of_equal ( boost::begin (r), boost::end (r), val );
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_ALL_OF_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
/// \file
/// \brief Test ranges to see if any elements match a value or predicate.
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_ANY_OF_HPP
#define BOOST_ALGORITHM_ANY_OF_HPP
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
// Use the C++11 versions of any_of if it is available
#if __cplusplus >= 201103L
using std::any_of; // Section 25.2.2
#else
/// \fn any_of ( InputIterator first, InputIterator last, Predicate p )
/// \return true if any of the elements in [first, last) satisfy the predicate
/// \note returns false on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p A predicate for testing the elements of the sequence
///
template<typename InputIterator, typename Predicate>
bool any_of ( InputIterator first, InputIterator last, Predicate p )
{
for ( ; first != last; ++first )
if ( p(*first))
return true;
return false;
}
#endif
/// \fn any_of ( const Range &r, Predicate p )
/// \return true if any elements in the range satisfy the predicate 'p'
/// \note returns false on an empty range
///
/// \param r The input range
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename Predicate>
bool any_of ( const Range &r, Predicate p )
{
return boost::algorithm::any_of (boost::begin (r), boost::end (r), p);
}
/// \fn any_of_equal ( InputIterator first, InputIterator last, const V &val )
/// \return true if any of the elements in [first, last) are equal to 'val'
/// \note returns false on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param val A value to compare against
///
template<typename InputIterator, typename V>
bool any_of_equal ( InputIterator first, InputIterator last, const V &val )
{
for ( ; first != last; ++first )
if ( val == *first )
return true;
return false;
}
/// \fn any_of_equal ( const Range &r, const V &val )
/// \return true if any of the elements in the range are equal to 'val'
/// \note returns false on an empty range
///
/// \param r The input range
/// \param val A value to compare against
///
template<typename Range, typename V>
bool any_of_equal ( const Range &r, const V &val )
{
return boost::algorithm::any_of_equal (boost::begin (r), boost::end (r), val);
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_ANY_OF_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file copy_if.hpp
/// \brief Copy a subset of a sequence to a new sequence
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_COPY_IF_HPP
#define BOOST_ALGORITHM_COPY_IF_HPP
#include <algorithm> // for std::copy_if, if available
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of copy_if if it is available
using std::copy_if; // Section 25.3.1
#else
/// \fn copy_if ( InputIterator first, InputIterator last, OutputIterator result, Predicate p )
/// \brief Copies all the elements from the input range that satisfy the
/// predicate to the output range.
/// \return The updated output iterator
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template<typename InputIterator, typename OutputIterator, typename Predicate>
OutputIterator copy_if ( InputIterator first, InputIterator last, OutputIterator result, Predicate p )
{
for ( ; first != last; ++first )
if (p(*first))
*result++ = first;
return result;
}
#endif
/// \fn copy_if ( const Range &r, OutputIterator result, Predicate p )
/// \brief Copies all the elements from the input range that satisfy the
/// predicate to the output range.
/// \return The updated output iterator
///
/// \param r The input range
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename OutputIterator, typename Predicate>
OutputIterator copy_if ( const Range &r, OutputIterator result, Predicate p )
{
return boost::algorithm::copy_if (boost::begin (r), boost::end(r), result, p);
}
/// \fn copy_while ( InputIterator first, InputIterator last, OutputIterator result, Predicate p )
/// \brief Copies all the elements at the start of the input range that
/// satisfy the predicate to the output range.
/// \return The updated output iterator
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
///
template<typename InputIterator, typename OutputIterator, typename Predicate>
OutputIterator copy_while ( InputIterator first, InputIterator last,
OutputIterator result, Predicate p )
{
for ( ; first != last && p(*first); ++first )
*result++ = first;
return result;
}
/// \fn copy_while ( const Range &r, OutputIterator result, Predicate p )
/// \brief Copies all the elements at the start of the input range that
/// satisfy the predicate to the output range.
/// \return The updated output iterator
///
/// \param r The input range
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename OutputIterator, typename Predicate>
OutputIterator copy_while ( const Range &r, OutputIterator result, Predicate p )
{
return boost::algorithm::copy_while (boost::begin (r), boost::end(r), result, p);
}
/// \fn copy_until ( InputIterator first, InputIterator last, OutputIterator result, Predicate p )
/// \brief Copies all the elements at the start of the input range that do not
/// satisfy the predicate to the output range.
/// \return The updated output iterator
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
///
template<typename InputIterator, typename OutputIterator, typename Predicate>
OutputIterator copy_until ( InputIterator first, InputIterator last, OutputIterator result, Predicate p )
{
for ( ; first != last && !p(*first); ++first )
*result++ = first;
return result;
}
/// \fn copy_until ( const Range &r, OutputIterator result, Predicate p )
/// \brief Copies all the elements at the start of the input range that do not
/// satisfy the predicate to the output range.
/// \return The updated output iterator
///
/// \param r The input range
/// \param result An output iterator to write the results into
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename OutputIterator, typename Predicate>
OutputIterator copy_until ( const Range &r, OutputIterator result, Predicate p )
{
return boost::algorithm::copy_until (boost::begin (r), boost::end(r), result, p);
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_COPY_IF_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file copy_n.hpp
/// \brief Copy n items from one sequence to another
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_COPY_N_HPP
#define BOOST_ALGORITHM_COPY_N_HPP
#include <algorithm> // for std::copy_n, if available
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of copy_n if it is available
using std::copy_n; // Section 25.3.1
#else
/// \fn copy_n ( InputIterator first, Size n, OutputIterator result )
/// \brief Copies exactly n (n > 0) elements from the range starting at first to
/// the range starting at result.
/// \return The updated output iterator
///
/// \param first The start of the input sequence
/// \param n The number of elements to copy
/// \param result An output iterator to write the results into
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template <typename InputIterator, typename Size, typename OutputIterator>
OutputIterator copy_n ( InputIterator first, Size n, OutputIterator result )
{
for ( ; n > 0; --n, ++first, ++result )
*result = *first;
return result;
}
#endif
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_COPY_IF_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file find_if_not.hpp
/// \brief Find the first element in a sequence that does not satisfy a predicate.
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_FIND_IF_NOT_HPP
#define BOOST_ALGORITHM_FIND_IF_NOT_HPP
#include <algorithm> // for std::find_if_not, if it exists
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of find_if_not if it is available
using std::find_if_not; // Section 25.2.5
#else
/// \fn find_if_not(InputIterator first, InputIterator last, Predicate p)
/// \brief Finds the first element in the sequence that does not satisfy the predicate.
/// \return The iterator pointing to the desired element.
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p A predicate for testing the elements of the range
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template<typename InputIterator, typename Predicate>
InputIterator find_if_not ( InputIterator first, InputIterator last, Predicate p )
{
for ( ; first != last; ++first )
if ( !p(*first))
break;
return first;
}
#endif
/// \fn find_if_not ( const Range &r, Predicate p )
/// \brief Finds the first element in the sequence that does not satisfy the predicate.
/// \return The iterator pointing to the desired element.
///
/// \param r The input range
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename Predicate>
typename boost::range_iterator<const Range>::type find_if_not ( const Range &r, Predicate p )
{
return boost::algorithm::find_if_not (boost::begin (r), boost::end(r), p);
}
}}
#endif // BOOST_ALGORITHM_FIND_IF_NOT_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file iota.hpp
/// \brief Generate an increasing series
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_IOTA_HPP
#define BOOST_ALGORITHM_IOTA_HPP
#include <numeric>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of iota if it is available
using std::iota; // Section 26.7.6
#else
/// \fn iota ( ForwardIterator first, ForwardIterator last, T value )
/// \brief Generates an increasing sequence of values, and stores them in [first, last)
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param value The initial value of the sequence to be generated
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template <typename ForwardIterator, typename T>
void iota ( ForwardIterator first, ForwardIterator last, T value )
{
for ( ; first != last; ++first, ++value )
*first = value;
}
#endif
/// \fn iota ( Range &r, T value )
/// \brief Generates an increasing sequence of values, and stores them in the input Range.
///
/// \param r The input range
/// \param value The initial value of the sequence to be generated
///
template <typename Range, typename T>
void iota ( Range &r, T value )
{
boost::algorithm::iota (boost::begin(r), boost::end(r), value);
}
/// \fn iota_n ( OutputIterator out, T value, std::size_t n )
/// \brief Generates an increasing sequence of values, and stores them in the input Range.
///
/// \param out An output iterator to write the results into
/// \param value The initial value of the sequence to be generated
/// \param n The number of items to write
///
template <typename OutputIterator, typename T>
OutputIterator iota_n ( OutputIterator out, T value, std::size_t n )
{
while ( n-- > 0 )
*out++ = value++;
return out;
}
}}
#endif // BOOST_ALGORITHM_IOTA_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file is_partitioned.hpp
/// \brief Tell if a sequence is partitioned
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_IS_PARTITIONED_HPP
#define BOOST_ALGORITHM_IS_PARTITIONED_HPP
#include <algorithm> // for std::is_partitioned, if available
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of iota if it is available
using std::is_partitioned; // Section 25.3.13
#else
/// \fn is_partitioned ( InputIterator first, InputIterator last, UnaryPredicate p )
/// \brief Tests to see if a sequence is partititioned according to a predicate
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p The predicicate to test the values with
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template <typename InputIterator, typename UnaryPredicate>
bool is_partitioned ( InputIterator first, InputIterator last, UnaryPredicate p )
{
// Run through the part that satisfy the predicate
for ( ; first != last; ++first )
if ( !p (*first))
break;
// Now the part that does not satisfy the predicate
for ( ; first != last; ++first )
if ( p (*first))
return false;
return true;
}
#endif
/// \fn is_partitioned ( const Range &r, UnaryPredicate p )
/// \brief Generates an increasing sequence of values, and stores them in the input Range.
///
/// \param r The input range
/// \param p The predicicate to test the values with
///
template <typename Range, typename UnaryPredicate>
bool is_partitioned ( const Range &r, UnaryPredicate p )
{
return boost::algorithm::is_partitioned (boost::begin(r), boost::end(r), p);
}
}}
#endif // BOOST_ALGORITHM_IS_PARTITIONED_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file is_permutation.hpp
/// \brief Is a sequence a permutation of another sequence
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_IS_PERMUTATION_HPP
#define BOOST_ALGORITHM_IS_PERMUTATION_HPP
#include <algorithm> // for std::less, tie, mismatch and is_permutation (if available)
#include <utility> // for std::make_pair
#include <functional> // for std::equal_to
#include <iterator>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
#include <boost/utility/enable_if.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/tr1/tr1/tuple> // for tie
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of is_permutation if it is available
using std::is_permutation; // Section 25.2.12
#else
/// \cond DOXYGEN_HIDE
namespace detail {
template <typename Predicate, typename Iterator>
struct value_predicate {
value_predicate ( Predicate p, Iterator it ) : p_ ( p ), it_ ( it ) {}
template <typename T1>
bool operator () ( const T1 &t1 ) const { return p_ ( *it_, t1 ); }
private:
Predicate &p_;
Iterator it_;
};
}
/// \endcond
/// \fn is_permutation ( ForwardIterator1 first, ForwardIterator1 last, ForwardIterator2 first2, BinaryPredicate p )
/// \brief Tests to see if a the sequence [first,last) is a permutation of the sequence starting at first2
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param first2 The start of the second sequence
/// \param p The predicate to compare elements with
///
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template< class ForwardIterator1, class ForwardIterator2, class BinaryPredicate >
bool is_permutation ( ForwardIterator1 first1, ForwardIterator1 last1,
ForwardIterator2 first2, BinaryPredicate p )
{
// Skip the common prefix (if any)
// std::tie (first1, first2) = std::mismatch (first1, last1, first2, p);
std::pair<ForwardIterator1, ForwardIterator2> eq = std::mismatch (first1, last1, first2, p);
first1 = eq.first;
first2 = eq.second;
if ( first1 != last1 ) {
// Create last2
ForwardIterator2 last2 = first2;
std::advance ( last2, std::distance (first1, last1));
// for each unique value in the sequence [first1,last1), count how many times
// it occurs, and make sure it occurs the same number of times in [first2, last2)
for ( ForwardIterator1 iter = first1; iter != last1; ++iter ) {
detail::value_predicate<BinaryPredicate, ForwardIterator1> pred ( p, iter );
/* For each value we haven't seen yet... */
if ( std::find_if ( first1, iter, pred ) == iter ) {
std::size_t dest_count = std::count_if ( first2, last2, pred );
if ( dest_count == 0 || dest_count != (std::size_t) std::count_if ( iter, last1, pred ))
return false;
}
}
}
return true;
}
/// \fn is_permutation ( ForwardIterator1 first, ForwardIterator1 last, ForwardIterator2 first2 )
/// \brief Tests to see if a the sequence [first,last) is a permutation of the sequence starting at first2
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param first2 The start of the second sequence
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template< class ForwardIterator1, class ForwardIterator2 >
bool is_permutation ( ForwardIterator1 first, ForwardIterator1 last, ForwardIterator2 first2 )
{
// How should I deal with the idea that ForwardIterator1::value_type
// and ForwardIterator2::value_type could be different? Define my own comparison predicate?
return boost::algorithm::is_permutation ( first, last, first2,
std::equal_to<typename std::iterator_traits<ForwardIterator1>::value_type> ());
}
#endif
/// \fn is_permutation ( const Range &r, ForwardIterator first2 )
/// \brief Tests to see if a the sequence [first,last) is a permutation of the sequence starting at first2
///
/// \param r The input range
/// \param first2 The start of the second sequence
template <typename Range, typename ForwardIterator>
bool is_permutation ( const Range &r, ForwardIterator first2 )
{
return boost::algorithm::is_permutation (boost::begin (r), boost::end (r), first2 );
}
/// \fn is_permutation ( const Range &r, ForwardIterator first2, BinaryPredicate pred )
/// \brief Tests to see if a the sequence [first,last) is a permutation of the sequence starting at first2
///
/// \param r The input range
/// \param first2 The start of the second sequence
/// \param pred The predicate to compare elements with
///
// Disable this template when the first two parameters are the same type
// That way the non-range version will be chosen.
template <typename Range, typename ForwardIterator, typename BinaryPredicate>
typename boost::disable_if_c<boost::is_same<Range, ForwardIterator>::value, bool>::type
is_permutation ( const Range &r, ForwardIterator first2, BinaryPredicate pred )
{
return boost::algorithm::is_permutation (boost::begin (r), boost::end (r), first2, pred );
}
}}
#endif // BOOST_ALGORITHM_IS_PERMUTATION_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file none_of.hpp
/// \brief Test ranges to see if no elements match a value or predicate.
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_NONE_OF_HPP
#define BOOST_ALGORITHM_NONE_OF_HPP
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
// Use the C++11 versions of the none_of if it is available
#if __cplusplus >= 201103L
using std::none_of; // Section 25.2.3
#else
/// \fn none_of ( InputIterator first, InputIterator last, Predicate p )
/// \return true if none of the elements in [first, last) satisfy the predicate 'p'
/// \note returns true on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p A predicate for testing the elements of the sequence
///
template<typename InputIterator, typename Predicate>
bool none_of ( InputIterator first, InputIterator last, Predicate p )
{
for ( ; first != last; ++first )
if ( p(*first))
return false;
return true;
}
#endif
/// \fn none_of ( const Range &r, Predicate p )
/// \return true if none of the elements in the range satisfy the predicate 'p'
/// \note returns true on an empty range
///
/// \param r The input range
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename Predicate>
bool none_of ( const Range &r, Predicate p )
{
return boost::algorithm::none_of (boost::begin (r), boost::end (r), p );
}
/// \fn none_of_equal ( InputIterator first, InputIterator last, const V &val )
/// \return true if none of the elements in [first, last) are equal to 'val'
/// \note returns true on an empty range
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param val A value to compare against
///
template<typename InputIterator, typename V>
bool none_of_equal ( InputIterator first, InputIterator last, const V &val )
{
for ( ; first != last; ++first )
if ( val == *first )
return false;
return true;
}
/// \fn none_of_equal ( const Range &r, const V &val )
/// \return true if none of the elements in the range are equal to 'val'
/// \note returns true on an empty range
///
/// \param r The input range
/// \param val A value to compare against
///
template<typename Range, typename V>
bool none_of_equal ( const Range &r, const V & val )
{
return boost::algorithm::none_of_equal (boost::begin (r), boost::end (r), val);
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_NONE_OF_HPP

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file one_of.hpp
/// \brief Test ranges to see if only one element matches a value or predicate.
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_ONE_OF_HPP
#define BOOST_ALGORITHM_ONE_OF_HPP
#include <algorithm> // for std::find and std::find_if
#include <boost/algorithm/cxx11/none_of.hpp>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
/// \fn one_of ( InputIterator first, InputIterator last, Predicate p )
/// \return true if the predicate 'p' is true for exactly one item in [first, last).
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p A predicate for testing the elements of the sequence
///
template<typename InputIterator, typename Predicate>
bool one_of ( InputIterator first, InputIterator last, Predicate p )
{
InputIterator i = std::find_if (first, last, p);
if (i == last)
return false; // Didn't occur at all
return boost::algorithm::none_of (++i, last, p);
}
/// \fn one_of ( const Range &r, Predicate p )
/// \return true if the predicate 'p' is true for exactly one item in the range.
///
/// \param r The input range
/// \param p A predicate for testing the elements of the range
///
template<typename Range, typename Predicate>
bool one_of ( const Range &r, Predicate p )
{
return boost::algorithm::one_of ( boost::begin (r), boost::end (r), p );
}
/// \fn one_of_equal ( InputIterator first, InputIterator last, const V &val )
/// \return true if the value 'val' exists only once in [first, last).
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param val A value to compare against
///
template<typename InputIterator, typename V>
bool one_of_equal ( InputIterator first, InputIterator last, const V &val )
{
InputIterator i = std::find (first, last, val); // find first occurrence of 'val'
if (i == last)
return false; // Didn't occur at all
return boost::algorithm::none_of_equal (++i, last, val);
}
/// \fn one_of_equal ( const Range &r, const V &val )
/// \return true if the value 'val' exists only once in the range.
///
/// \param r The input range
/// \param val A value to compare against
///
template<typename Range, typename V>
bool one_of_equal ( const Range &r, const V &val )
{
return boost::algorithm::one_of_equal ( boost::begin (r), boost::end (r), val );
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_ALL_HPP

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// Copyright (c) 2010 Nuovation System Designs, LLC
// Grant Erickson <gerickson@nuovations.com>
//
// Reworked somewhat by Marshall Clow; August 2010
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
//
// See http://www.boost.org/ for latest version.
//
#ifndef BOOST_ALGORITHM_ORDERED_HPP
#define BOOST_ALGORITHM_ORDERED_HPP
#include <algorithm>
#include <functional>
#include <iterator>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
#include <boost/utility/enable_if.hpp>
#include <boost/type_traits/is_same.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of iota if it is available
using std::is_sorted_until; // Section 25.4.1.5
using std::is_sorted; // Section 25.4.1.5
#else
/// \fn is_sorted_until ( ForwardIterator first, ForwardIterator last, Pred p )
/// \return the point in the sequence [first, last) where the elements are unordered
/// (according to the comparison predicate 'p').
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
/// \param p A binary predicate that returns true if two elements are ordered.
///
template <typename ForwardIterator, typename Pred>
ForwardIterator is_sorted_until ( ForwardIterator first, ForwardIterator last, Pred p )
{
if ( first == last ) return last; // the empty sequence is ordered
ForwardIterator next = first;
while ( ++next != last )
{
if ( !p ( *first, *next ))
return next;
first = next;
}
return last;
}
/// \fn is_sorted_until ( ForwardIterator first, ForwardIterator last )
/// \return the point in the sequence [first, last) where the elements are unordered
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
template <typename ForwardIterator>
ForwardIterator is_sorted_until ( ForwardIterator first, ForwardIterator last )
{
typedef typename std::iterator_traits<ForwardIterator>::value_type value_type;
return boost::algorithm::is_sorted_until ( first, last, std::less_equal<value_type>());
}
/// \fn is_sorted ( ForwardIterator first, ForwardIterator last, Pred p )
/// \return whether or not the entire sequence is sorted
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
/// \param p A binary predicate that returns true if two elements are ordered.
///
template <typename ForwardIterator, typename Pred>
bool is_sorted ( ForwardIterator first, ForwardIterator last, Pred p )
{
return boost::algorithm::is_sorted_until (first, last, p) == last;
}
/// \fn is_sorted ( ForwardIterator first, ForwardIterator last )
/// \return whether or not the entire sequence is sorted
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
template <typename ForwardIterator>
bool is_sorted ( ForwardIterator first, ForwardIterator last )
{
return boost::algorithm::is_sorted_until (first, last) == last;
}
#endif
///
/// -- Range based versions of the C++11 functions
///
/// \fn is_sorted_until ( const R &range, Pred p )
/// \return the point in the range R where the elements are unordered
/// (according to the comparison predicate 'p').
///
/// \param range The range to be tested.
/// \param p A binary predicate that returns true if two elements are ordered.
///
template <typename R, typename Pred>
typename boost::lazy_disable_if_c<
boost::is_same<R, Pred>::value,
typename boost::range_iterator<const R>
>::type is_sorted_until ( const R &range, Pred p )
{
return boost::algorithm::is_sorted_until ( boost::begin ( range ), boost::end ( range ), p );
}
/// \fn is_sorted_until ( const R &range )
/// \return the point in the range R where the elements are unordered
///
/// \param range The range to be tested.
///
template <typename R>
typename boost::range_iterator<const R>::type is_sorted_until ( const R &range )
{
return boost::algorithm::is_sorted_until ( boost::begin ( range ), boost::end ( range ));
}
/// \fn is_sorted ( const R &range, Pred p )
/// \return whether or not the entire range R is sorted
/// (according to the comparison predicate 'p').
///
/// \param range The range to be tested.
/// \param p A binary predicate that returns true if two elements are ordered.
///
template <typename R, typename Pred>
bool is_sorted ( const R &range, Pred p )
{
return boost::algorithm::is_sorted ( boost::begin ( range ), boost::end ( range ), p );
}
/// \fn is_sorted ( const R &range )
/// \return whether or not the entire range R is sorted
///
/// \param range The range to be tested.
///
template <typename R, typename Pred>
bool is_sorted ( const R &range )
{
return boost::algorithm::is_sorted ( boost::begin ( range ), boost::end ( range ));
}
///
/// -- Range based versions of the C++11 functions
///
/// \fn is_increasing ( ForwardIterator first, ForwardIterator last )
/// \return true if the entire sequence is increasing; i.e, each item is greater than or
/// equal to the previous one.
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
/// \note This function will return true for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_strictly_increasing instead.
template <typename ForwardIterator>
bool is_increasing ( ForwardIterator first, ForwardIterator last )
{
typedef typename std::iterator_traits<ForwardIterator>::value_type value_type;
return boost::algorithm::is_sorted (first, last, std::less_equal<value_type>());
}
/// \fn is_increasing ( const R &range )
/// \return true if the entire sequence is increasing; i.e, each item is greater than or
/// equal to the previous one.
///
/// \param range The range to be tested.
///
/// \note This function will return true for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_strictly_increasing instead.
template <typename R>
bool is_increasing ( const R &range )
{
return is_increasing ( boost::begin ( range ), boost::end ( range ));
}
/// \fn is_decreasing ( ForwardIterator first, ForwardIterator last )
/// \return true if the entire sequence is decreasing; i.e, each item is less than
/// or equal to the previous one.
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
/// \note This function will return true for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_strictly_decreasing instead.
template <typename ForwardIterator>
bool is_decreasing ( ForwardIterator first, ForwardIterator last )
{
typedef typename std::iterator_traits<ForwardIterator>::value_type value_type;
return boost::algorithm::is_sorted (first, last, std::greater_equal<value_type>());
}
/// \fn is_decreasing ( const R &range )
/// \return true if the entire sequence is decreasing; i.e, each item is less than
/// or equal to the previous one.
///
/// \param range The range to be tested.
///
/// \note This function will return true for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_strictly_decreasing instead.
template <typename R>
bool is_decreasing ( const R &range )
{
return is_decreasing ( boost::begin ( range ), boost::end ( range ));
}
/// \fn is_strictly_increasing ( ForwardIterator first, ForwardIterator last )
/// \return true if the entire sequence is strictly increasing; i.e, each item is greater
/// than the previous one
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
/// \note This function will return false for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_increasing instead.
template <typename ForwardIterator>
bool is_strictly_increasing ( ForwardIterator first, ForwardIterator last )
{
typedef typename std::iterator_traits<ForwardIterator>::value_type value_type;
return boost::algorithm::is_sorted (first, last, std::less<value_type>());
}
/// \fn is_strictly_increasing ( const R &range )
/// \return true if the entire sequence is strictly increasing; i.e, each item is greater
/// than the previous one
///
/// \param range The range to be tested.
///
/// \note This function will return false for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_increasing instead.
template <typename R>
bool is_strictly_increasing ( const R &range )
{
return is_strictly_increasing ( boost::begin ( range ), boost::end ( range ));
}
/// \fn is_strictly_decreasing ( ForwardIterator first, ForwardIterator last )
/// \return true if the entire sequence is strictly decreasing; i.e, each item is less than
/// the previous one
///
/// \param first The start of the sequence to be tested.
/// \param last One past the end of the sequence
///
/// \note This function will return false for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_decreasing instead.
template <typename ForwardIterator>
bool is_strictly_decreasing ( ForwardIterator first, ForwardIterator last )
{
typedef typename std::iterator_traits<ForwardIterator>::value_type value_type;
return boost::algorithm::is_sorted (first, last, std::greater<value_type>());
}
/// \fn is_strictly_decreasing ( const R &range )
/// \return true if the entire sequence is strictly decreasing; i.e, each item is less than
/// the previous one
///
/// \param range The range to be tested.
///
/// \note This function will return false for sequences that contain items that compare
/// equal. If that is not what you intended, you should use is_decreasing instead.
template <typename R>
bool is_strictly_decreasing ( const R &range )
{
return is_strictly_decreasing ( boost::begin ( range ), boost::end ( range ));
}
}} // namespace boost
#endif // BOOST_ALGORITHM_ORDERED_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file partition_copy.hpp
/// \brief Copy a subset of a sequence to a new sequence
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_PARTITION_COPY_HPP
#define BOOST_ALGORITHM_PARTITION_COPY_HPP
#include <utility> // for make_pair
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of partition_copy if it is available
using std::partition_copy; // Section 25.3.13
#else
/// \fn partition_copy ( InputIterator first, InputIterator last,
/// OutputIterator1 out_true, OutputIterator2 out_false, UnaryPredicate p )
/// \brief Copies the elements that satisfy the predicate p from the range [first, last)
/// to the range beginning at d_first_true, and
/// copies the elements that do not satisfy p to the range beginning at d_first_false.
///
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param out_true An output iterator to write the elements that satisfy the predicate into
/// \param out_false An output iterator to write the elements that do not satisfy the predicate into
/// \param p A predicate for dividing the elements of the input sequence.
///
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template <typename InputIterator,
typename OutputIterator1, typename OutputIterator2, typename UnaryPredicate>
std::pair<OutputIterator1, OutputIterator2>
partition_copy ( InputIterator first, InputIterator last,
OutputIterator1 out_true, OutputIterator2 out_false, UnaryPredicate p )
{
for ( ; first != last; ++first )
if ( p (*first))
*out_true++ = *first;
else
*out_false++ = *first;
return std::pair<OutputIterator1, OutputIterator2> ( out_true, out_false );
}
#endif
/// \fn partition_copy ( const Range &r,
/// OutputIterator1 out_true, OutputIterator2 out_false, UnaryPredicate p )
///
/// \param r The input range
/// \param out_true An output iterator to write the elements that satisfy the predicate into
/// \param out_false An output iterator to write the elements that do not satisfy the predicate into
/// \param p A predicate for dividing the elements of the input sequence.
///
template <typename Range, typename OutputIterator1, typename OutputIterator2,
typename UnaryPredicate>
std::pair<OutputIterator1, OutputIterator2>
partition_copy ( const Range &r, OutputIterator1 out_true, OutputIterator2 out_false,
UnaryPredicate p )
{
return boost::algorithm::partition_copy
(boost::begin(r), boost::end(r), out_true, out_false, p );
}
}} // namespace boost and algorithm
#endif // BOOST_ALGORITHM_PARTITION_COPY_HPP

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
*/
/// \file partition_point.hpp
/// \brief Find the partition point in a sequence
/// \author Marshall Clow
#ifndef BOOST_ALGORITHM_PARTITION_POINT_HPP
#define BOOST_ALGORITHM_PARTITION_POINT_HPP
#include <algorithm> // for std::partition_point, if available
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
namespace boost { namespace algorithm {
#if __cplusplus >= 201103L
// Use the C++11 versions of iota if it is available
using std::partition_point; // Section 25.3.13
#else
/// \fn partition_point ( ForwardIterator first, ForwardIterator last, Predicate p )
/// \brief Given a partitioned range, returns the partition point, i.e, the first element
/// that does not satisfy p
///
/// \param first The start of the input sequence
/// \param last One past the end of the input sequence
/// \param p The predicate to test the values with
/// \note This function is part of the C++2011 standard library.
/// We will use the standard one if it is available,
/// otherwise we have our own implementation.
template <typename ForwardIterator, typename Predicate>
ForwardIterator partition_point ( ForwardIterator first, ForwardIterator last, Predicate p )
{
std::size_t dist = std::distance ( first, last );
while ( first != last ) {
std::size_t d2 = dist / 2;
ForwardIterator ret_val = first;
std::advance (ret_val, d2);
if (p (*ret_val)) {
first = ++ret_val;
dist -= d2 + 1;
}
else {
last = ret_val;
dist = d2;
}
}
return first;
}
#endif
/// \fn partition_point ( Range &r, Predicate p )
/// \brief Given a partitioned range, returns the partition point
///
/// \param r The input range
/// \param p The predicate to test the values with
///
template <typename Range, typename Predicate>
typename boost::range_iterator<Range> partition_point ( Range &r, Predicate p )
{
return boost::algorithm::partition_point (boost::begin(r), boost::end(r), p);
}
}}
#endif // BOOST_ALGORITHM_PARTITION_POINT_HPP

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#ifndef BOOST_ALGORITHM_BOYER_MOORE_SEARCH_HPP
#define BOOST_ALGORITHM_BOYER_MOORE_SEARCH_HPP
#include <iterator> // for std::iterator_traits
#include <boost/assert.hpp>
#include <boost/static_assert.hpp>
#include <boost/range/begin.hpp>
#include <boost/range/end.hpp>
#include <boost/utility/enable_if.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/algorithm/searching/detail/bm_traits.hpp>
#include <boost/algorithm/searching/detail/debugging.hpp>
namespace boost { namespace algorithm {
/*
A templated version of the boyer-moore searching algorithm.
References:
http://www.cs.utexas.edu/users/moore/best-ideas/string-searching/
http://www.cs.utexas.edu/~moore/publications/fstrpos.pdf
Explanations: boostinspect:noascii (test tool complains)
http://en.wikipedia.org/wiki/BoyerMoore_string_search_algorithm
http://www.movsd.com/bm.htm
http://www.cs.ucdavis.edu/~gusfield/cs224f09/bnotes.pdf
The Boyer-Moore search algorithm uses two tables, a "bad character" table
to tell how far to skip ahead when it hits a character that is not in the pattern,
and a "good character" table to tell how far to skip ahead when it hits a
mismatch on a character that _is_ in the pattern.
Requirements:
* Random access iterators
* The two iterator types (patIter and corpusIter) must
"point to" the same underlying type and be comparable.
* Additional requirements may be imposed but the skip table, such as:
** Numeric type (array-based skip table)
** Hashable type (map-based skip table)
*/
template <typename patIter, typename traits = detail::BM_traits<patIter> >
class boyer_moore {
typedef typename std::iterator_traits<patIter>::difference_type difference_type;
public:
boyer_moore ( patIter first, patIter last )
: pat_first ( first ), pat_last ( last ),
k_pattern_length ( std::distance ( pat_first, pat_last )),
skip_ ( k_pattern_length, -1 ),
suffix_ ( k_pattern_length + 1 )
{
this->build_skip_table ( first, last );
this->build_suffix_table ( first, last );
}
~boyer_moore () {}
/// \fn operator ( corpusIter corpus_first, corpusIter corpus_last )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
///
template <typename corpusIter>
corpusIter operator () ( corpusIter corpus_first, corpusIter corpus_last ) const {
BOOST_STATIC_ASSERT (( boost::is_same<
typename std::iterator_traits<patIter>::value_type,
typename std::iterator_traits<corpusIter>::value_type>::value ));
if ( corpus_first == corpus_last ) return corpus_last; // if nothing to search, we didn't find it!
if ( pat_first == pat_last ) return corpus_first; // empty pattern matches at start
const difference_type k_corpus_length = std::distance ( corpus_first, corpus_last );
// If the pattern is larger than the corpus, we can't find it!
if ( k_corpus_length < k_pattern_length )
return corpus_last;
// Do the search
return this->do_search ( corpus_first, corpus_last );
}
template <typename Range>
typename boost::range_iterator<Range>::type operator () ( Range &r ) const {
return (*this) (boost::begin(r), boost::end(r));
}
private:
/// \cond DOXYGEN_HIDE
patIter pat_first, pat_last;
const difference_type k_pattern_length;
typename traits::skip_table_t skip_;
std::vector <difference_type> suffix_;
/// \fn operator ( corpusIter corpus_first, corpusIter corpus_last, Pred p )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param p A predicate used for the search comparisons.
///
template <typename corpusIter>
corpusIter do_search ( corpusIter corpus_first, corpusIter corpus_last ) const {
/* ---- Do the matching ---- */
corpusIter curPos = corpus_first;
const corpusIter lastPos = corpus_last - k_pattern_length;
difference_type j, k, m;
while ( curPos <= lastPos ) {
/* while ( std::distance ( curPos, corpus_last ) >= k_pattern_length ) { */
// Do we match right where we are?
j = k_pattern_length;
while ( pat_first [j-1] == curPos [j-1] ) {
j--;
// We matched - we're done!
if ( j == 0 )
return curPos;
}
// Since we didn't match, figure out how far to skip forward
k = skip_ [ curPos [ j - 1 ]];
m = j - k - 1;
if ( k < j && m > suffix_ [ j ] )
curPos += m;
else
curPos += suffix_ [ j ];
}
return corpus_last; // We didn't find anything
}
void build_skip_table ( patIter first, patIter last ) {
for ( std::size_t i = 0; first != last; ++first, ++i )
skip_.insert ( *first, i );
}
template<typename Iter, typename Container>
void compute_bm_prefix ( Iter pat_first, Iter pat_last, Container &prefix ) {
const std::size_t count = std::distance ( pat_first, pat_last );
BOOST_ASSERT ( count > 0 );
BOOST_ASSERT ( prefix.size () == count );
prefix[0] = 0;
std::size_t k = 0;
for ( std::size_t i = 1; i < count; ++i ) {
BOOST_ASSERT ( k < count );
while ( k > 0 && ( pat_first[k] != pat_first[i] )) {
BOOST_ASSERT ( k < count );
k = prefix [ k - 1 ];
}
if ( pat_first[k] == pat_first[i] )
k++;
prefix [ i ] = k;
}
}
void build_suffix_table ( patIter pat_first, patIter pat_last ) {
const std::size_t count = (std::size_t) std::distance ( pat_first, pat_last );
if ( count > 0 ) { // empty pattern
std::vector<typename std::iterator_traits<patIter>::value_type> reversed(count);
(void) std::reverse_copy ( pat_first, pat_last, reversed.begin ());
std::vector<difference_type> prefix (count);
compute_bm_prefix ( pat_first, pat_last, prefix );
std::vector<difference_type> prefix_reversed (count);
compute_bm_prefix ( reversed.begin (), reversed.end (), prefix_reversed );
for ( std::size_t i = 0; i <= count; i++ )
suffix_[i] = count - prefix [count-1];
for ( std::size_t i = 0; i < count; i++ ) {
const std::size_t j = count - prefix_reversed[i];
const difference_type k = i - prefix_reversed[i] + 1;
if (suffix_[j] > k)
suffix_[j] = k;
}
}
}
/// \endcond
};
/* Two ranges as inputs gives us four possibilities; with 2,3,3,4 parameters
Use a bit of TMP to disambiguate the 3-argument templates */
/// \fn boyer_moore_search ( corpusIter corpus_first, corpusIter corpus_last,
/// patIter pat_first, patIter pat_last )
/// \brief Searches the corpus for the pattern.
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param pat_first The start of the pattern to search for (Random Access Iterator)
/// \param pat_last One past the end of the data to search for
///
template <typename patIter, typename corpusIter>
corpusIter boyer_moore_search (
corpusIter corpus_first, corpusIter corpus_last,
patIter pat_first, patIter pat_last )
{
boyer_moore<patIter> bm ( pat_first, pat_last );
return bm ( corpus_first, corpus_last );
}
template <typename PatternRange, typename corpusIter>
corpusIter boyer_moore_search (
corpusIter corpus_first, corpusIter corpus_last, const PatternRange &pattern )
{
typedef typename boost::range_iterator<PatternRange> pattern_iterator;
boyer_moore<pattern_iterator> bm ( boost::begin(pattern), boost::end (pattern));
return bm ( corpus_first, corpus_last );
}
template <typename patIter, typename CorpusRange>
typename boost::lazy_disable_if_c<
boost::is_same<CorpusRange, patIter>::value, typename boost::range_iterator<CorpusRange> >
::type
boyer_moore_search ( CorpusRange &corpus, patIter pat_first, patIter pat_last )
{
boyer_moore<patIter> bm ( pat_first, pat_last );
return bm (boost::begin (corpus), boost::end (corpus));
}
template <typename PatternRange, typename CorpusRange>
typename boost::range_iterator<CorpusRange>::type
boyer_moore_search ( CorpusRange &corpus, const PatternRange &pattern )
{
typedef typename boost::range_iterator<PatternRange> pattern_iterator;
boyer_moore<pattern_iterator> bm ( boost::begin(pattern), boost::end (pattern));
return bm (boost::begin (corpus), boost::end (corpus));
}
// Creator functions -- take a pattern range, return an object
template <typename Range>
boost::algorithm::boyer_moore<typename boost::range_iterator<const Range>::type>
make_boyer_moore ( const Range &r ) {
return boost::algorithm::boyer_moore
<typename boost::range_iterator<const Range>::type> (boost::begin(r), boost::end(r));
}
template <typename Range>
boost::algorithm::boyer_moore<typename boost::range_iterator<Range>::type>
make_boyer_moore ( Range &r ) {
return boost::algorithm::boyer_moore
<typename boost::range_iterator<Range>::type> (boost::begin(r), boost::end(r));
}
}}
#endif // BOOST_ALGORITHM_BOYER_MOORE_SEARCH_HPP

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#ifndef BOOST_ALGORITHM_BOYER_MOORE_HORSPOOOL_SEARCH_HPP
#define BOOST_ALGORITHM_BOYER_MOORE_HORSPOOOL_SEARCH_HPP
#include <iterator> // for std::iterator_traits
#include <boost/assert.hpp>
#include <boost/static_assert.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/algorithm/searching/detail/bm_traits.hpp>
#include <boost/algorithm/searching/detail/debugging.hpp>
// #define BOOST_ALGORITHM_BOYER_MOORE_HORSPOOL_DEBUG_HPP
namespace boost { namespace algorithm {
/*
A templated version of the boyer-moore-horspool searching algorithm.
Requirements:
* Random access iterators
* The two iterator types (patIter and corpusIter) must
"point to" the same underlying type.
* Additional requirements may be imposed buy the skip table, such as:
** Numeric type (array-based skip table)
** Hashable type (map-based skip table)
http://www-igm.univ-mlv.fr/%7Elecroq/string/node18.html
*/
template <typename patIter, typename traits = detail::BM_traits<patIter> >
class boyer_moore_horspool {
typedef typename std::iterator_traits<patIter>::difference_type difference_type;
public:
boyer_moore_horspool ( patIter first, patIter last )
: pat_first ( first ), pat_last ( last ),
k_pattern_length ( std::distance ( pat_first, pat_last )),
skip_ ( k_pattern_length, k_pattern_length ) {
// Build the skip table
std::size_t i = 0;
if ( first != last ) // empty pattern?
for ( patIter iter = first; iter != last-1; ++iter, ++i )
skip_.insert ( *iter, k_pattern_length - 1 - i );
#ifdef BOOST_ALGORITHM_BOYER_MOORE_HORSPOOL_DEBUG_HPP
skip_.PrintSkipTable ();
#endif
}
~boyer_moore_horspool () {}
/// \fn operator ( corpusIter corpus_first, corpusIter corpus_last, Pred p )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param p A predicate used for the search comparisons.
///
template <typename corpusIter>
corpusIter operator () ( corpusIter corpus_first, corpusIter corpus_last ) const {
BOOST_STATIC_ASSERT (( boost::is_same<
typename std::iterator_traits<patIter>::value_type,
typename std::iterator_traits<corpusIter>::value_type>::value ));
if ( corpus_first == corpus_last ) return corpus_last; // if nothing to search, we didn't find it!
if ( pat_first == pat_last ) return corpus_first; // empty pattern matches at start
const difference_type k_corpus_length = std::distance ( corpus_first, corpus_last );
// If the pattern is larger than the corpus, we can't find it!
if ( k_corpus_length < k_pattern_length )
return corpus_last;
// Do the search
return this->do_search ( corpus_first, corpus_last );
}
private:
/// \cond DOXYGEN_HIDE
patIter pat_first, pat_last;
const difference_type k_pattern_length;
typename traits::skip_table_t skip_;
/// \fn do_search ( corpusIter corpus_first, corpusIter corpus_last )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param k_corpus_length The length of the corpus to search
///
template <typename corpusIter>
corpusIter do_search ( corpusIter corpus_first, corpusIter corpus_last ) const {
corpusIter curPos = corpus_first;
const corpusIter lastPos = corpus_last - k_pattern_length;
while ( curPos <= lastPos ) {
// Do we match right where we are?
std::size_t j = k_pattern_length - 1;
while ( pat_first [j] == curPos [j] ) {
// We matched - we're done!
if ( j == 0 )
return curPos;
j--;
}
curPos += skip_ [ curPos [ k_pattern_length - 1 ]];
}
return corpus_last;
}
// \endcond
};
/// \fn boyer_moore_horspool_search ( corpusIter corpus_first, corpusIter corpus_last,
/// patIter pat_first, patIter pat_last )
/// \brief Searches the corpus for the pattern.
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param pat_first The start of the pattern to search for (Random Access Iterator)
/// \param pat_last One past the end of the data to search for
///
template <typename patIter, typename corpusIter>
corpusIter boyer_moore_horspool_search (
corpusIter corpus_first, corpusIter corpus_last,
patIter pat_first, patIter pat_last ) {
boyer_moore_horspool<patIter> bmh ( pat_first, pat_last );
return bmh ( corpus_first, corpus_last );
}
}}
#endif // BOOST_ALGORITHM_BOYER_MOORE_HORSPOOOL_SEARCH_HPP

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#ifndef BOOST_ALGORITHM_SEARCH_DETAIL_BM_TRAITS_HPP
#define BOOST_ALGORITHM_SEARCH_DETAIL_BM_TRAITS_HPP
#include <climits> // for CHAR_BIT
#include <vector>
#include <iterator> // for std::iterator_traits
#include <boost/type_traits/make_unsigned.hpp>
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/remove_pointer.hpp>
#include <boost/type_traits/remove_const.hpp>
#include <boost/array.hpp>
#include <boost/tr1/tr1/unordered_map>
#include <boost/algorithm/searching/detail/debugging.hpp>
namespace boost { namespace algorithm { namespace detail {
//
// Default implementations of the skip tables for B-M and B-M-H
//
template<typename key_type, typename value_type, bool /*useArray*/> class skip_table;
// General case for data searching other than bytes; use a map
template<typename key_type, typename value_type>
class skip_table<key_type, value_type, false> {
private:
typedef std::tr1::unordered_map<key_type, value_type> skip_map;
const value_type k_default_value;
skip_map skip_;
public:
skip_table ( std::size_t patSize, value_type default_value )
: k_default_value ( default_value ), skip_ ( patSize ) {}
void insert ( key_type key, value_type val ) {
skip_ [ key ] = val; // Would skip_.insert (val) be better here?
}
value_type operator [] ( key_type key ) const {
typename skip_map::const_iterator it = skip_.find ( key );
return it == skip_.end () ? k_default_value : it->second;
}
void PrintSkipTable () const {
std::cout << "BM(H) Skip Table <unordered_map>:" << std::endl;
for ( typename skip_map::const_iterator it = skip_.begin (); it != skip_.end (); ++it )
if ( it->second != k_default_value )
std::cout << " " << it->first << ": " << it->second << std::endl;
std::cout << std::endl;
}
};
// Special case small numeric values; use an array
template<typename key_type, typename value_type>
class skip_table<key_type, value_type, true> {
private:
typedef typename boost::make_unsigned<key_type>::type unsigned_key_type;
typedef boost::array<value_type, 1U << (CHAR_BIT * sizeof(key_type))> skip_map;
skip_map skip_;
const value_type k_default_value;
public:
skip_table ( std::size_t patSize, value_type default_value ) : k_default_value ( default_value ) {
std::fill_n ( skip_.begin(), skip_.size(), default_value );
}
void insert ( key_type key, value_type val ) {
skip_ [ static_cast<unsigned_key_type> ( key ) ] = val;
}
value_type operator [] ( key_type key ) const {
return skip_ [ static_cast<unsigned_key_type> ( key ) ];
}
void PrintSkipTable () const {
std::cout << "BM(H) Skip Table <boost:array>:" << std::endl;
for ( typename skip_map::const_iterator it = skip_.begin (); it != skip_.end (); ++it )
if ( *it != k_default_value )
std::cout << " " << std::distance (skip_.begin (), it) << ": " << *it << std::endl;
std::cout << std::endl;
}
};
template<typename Iterator>
struct BM_traits {
typedef typename std::iterator_traits<Iterator>::difference_type value_type;
typedef typename std::iterator_traits<Iterator>::value_type key_type;
typedef boost::algorithm::detail::skip_table<key_type, value_type,
boost::is_integral<key_type>::value && (sizeof(key_type)==1)> skip_table_t;
};
}}} // namespaces
#endif // BOOST_ALGORITHM_SEARCH_DETAIL_BM_TRAITS_HPP

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#ifndef BOOST_ALGORITHM_SEARCH_DETAIL_DEBUG_HPP
#define BOOST_ALGORITHM_SEARCH_DETAIL_DEBUG_HPP
#include <iostream>
/// \cond DOXYGEN_HIDE
namespace boost { namespace algorithm { namespace detail {
// Debugging support
template <typename Iter>
void PrintTable ( Iter first, Iter last ) {
std::cout << std::distance ( first, last ) << ": { ";
for ( Iter iter = first; iter != last; ++iter )
std::cout << *iter << " ";
std::cout << "}" << std::endl;
}
}}}
/// \endcond
#endif // BOOST_ALGORITHM_SEARCH_DETAIL_DEBUG_HPP

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#ifndef BOOST_ALGORITHM_KNUTH_MORRIS_PRATT_SEARCH_HPP
#define BOOST_ALGORITHM_KNUTH_MORRIS_PRATT_SEARCH_HPP
#include <vector>
#include <iterator> // for std::iterator_traits
#include <boost/assert.hpp>
#include <boost/static_assert.hpp>
#include <boost/type_traits/is_same.hpp>
#include <boost/algorithm/searching/detail/debugging.hpp>
// #define BOOST_ALGORITHM_KNUTH_MORRIS_PRATT_DEBUG
namespace boost { namespace algorithm {
// #define NEW_KMP
/*
A templated version of the Knuth-Morris-Pratt searching algorithm.
Requirements:
* Random-access iterators
* The two iterator types (I1 and I2) must "point to" the same underlying type.
http://en.wikipedia.org/wiki/KnuthMorrisPratt_algorithm
http://www.inf.fh-flensburg.de/lang/algorithmen/pattern/kmpen.htm
*/
template <typename patIter>
class knuth_morris_pratt {
typedef typename std::iterator_traits<patIter>::difference_type difference_type;
public:
knuth_morris_pratt ( patIter first, patIter last )
: pat_first ( first ), pat_last ( last ),
k_pattern_length ( std::distance ( pat_first, pat_last )),
skip_ ( k_pattern_length + 1 ) {
#ifdef NEW_KMP
preKmp ( pat_first, pat_last );
#else
init_skip_table ( pat_first, pat_last );
#endif
#ifdef BOOST_ALGORITHM_KNUTH_MORRIS_PRATT_DEBUG
detail::PrintTable ( skip_.begin (), skip_.end ());
#endif
}
~knuth_morris_pratt () {}
/// \fn operator ( corpusIter corpus_first, corpusIter corpus_last, Pred p )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param p A predicate used for the search comparisons.
///
template <typename corpusIter>
corpusIter operator () ( corpusIter corpus_first, corpusIter corpus_last ) const {
BOOST_STATIC_ASSERT (( boost::is_same<
typename std::iterator_traits<patIter>::value_type,
typename std::iterator_traits<corpusIter>::value_type>::value ));
if ( corpus_first == corpus_last ) return corpus_last; // if nothing to search, we didn't find it!
if ( pat_first == pat_last ) return corpus_first; // empty pattern matches at start
const difference_type k_corpus_length = std::distance ( corpus_first, corpus_last );
// If the pattern is larger than the corpus, we can't find it!
if ( k_corpus_length < k_pattern_length )
return corpus_last;
return do_search ( corpus_first, corpus_last, k_corpus_length );
}
private:
/// \cond DOXYGEN_HIDE
patIter pat_first, pat_last;
const difference_type k_pattern_length;
std::vector <difference_type> skip_;
/// \fn operator ( corpusIter corpus_first, corpusIter corpus_last, Pred p )
/// \brief Searches the corpus for the pattern that was passed into the constructor
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param p A predicate used for the search comparisons.
///
template <typename corpusIter>
corpusIter do_search ( corpusIter corpus_first, corpusIter corpus_last,
difference_type k_corpus_length ) const {
difference_type match_start = 0; // position in the corpus that we're matching
#ifdef NEW_KMP
int patternIdx = 0;
while ( match_start < k_corpus_length ) {
while ( patternIdx > -1 && pat_first[patternIdx] != corpus_first [match_start] )
patternIdx = skip_ [patternIdx]; //<--- Shifting the pattern on mismatch
patternIdx++;
match_start++; //<--- corpus is always increased by 1
if ( patternIdx >= (int) k_pattern_length )
return corpus_first + match_start - patternIdx;
}
#else
// At this point, we know:
// k_pattern_length <= k_corpus_length
// for all elements of skip, it holds -1 .. k_pattern_length
//
// In the loop, we have the following invariants
// idx is in the range 0 .. k_pattern_length
// match_start is in the range 0 .. k_corpus_length - k_pattern_length + 1
const difference_type last_match = k_corpus_length - k_pattern_length;
difference_type idx = 0; // position in the pattern we're comparing
while ( match_start <= last_match ) {
while ( pat_first [ idx ] == corpus_first [ match_start + idx ] ) {
if ( ++idx == k_pattern_length )
return corpus_first + match_start;
}
// Figure out where to start searching again
// assert ( idx - skip_ [ idx ] > 0 ); // we're always moving forward
match_start += idx - skip_ [ idx ];
idx = skip_ [ idx ] >= 0 ? skip_ [ idx ] : 0;
// assert ( idx >= 0 && idx < k_pattern_length );
}
#endif
// We didn't find anything
return corpus_last;
}
void preKmp ( patIter first, patIter last ) {
const /*std::size_t*/ int count = std::distance ( first, last );
int i, j;
i = 0;
j = skip_[0] = -1;
while (i < count) {
while (j > -1 && first[i] != first[j])
j = skip_[j];
i++;
j++;
if (first[i] == first[j])
skip_[i] = skip_[j];
else
skip_[i] = j;
}
}
void init_skip_table ( patIter first, patIter last ) {
const difference_type count = std::distance ( first, last );
int j;
skip_ [ 0 ] = -1;
for ( int i = 1; i <= count; ++i ) {
j = skip_ [ i - 1 ];
while ( j >= 0 ) {
if ( first [ j ] == first [ i - 1 ] )
break;
j = skip_ [ j ];
}
skip_ [ i ] = j + 1;
}
}
// \endcond
};
/// \fn knuth_morris_pratt_search ( corpusIter corpus_first, corpusIter corpus_last,
/// patIter pat_first, patIter pat_last )
/// \brief Searches the corpus for the pattern.
///
/// \param corpus_first The start of the data to search (Random Access Iterator)
/// \param corpus_last One past the end of the data to search
/// \param pat_first The start of the pattern to search for (Random Access Iterator)
/// \param pat_last One past the end of the data to search for
///
template <typename patIter, typename corpusIter>
corpusIter knuth_morris_pratt_search (
corpusIter corpus_first, corpusIter corpus_last,
patIter pat_first, patIter pat_last ) {
knuth_morris_pratt<patIter> kmp ( pat_first, pat_last );
return kmp ( corpus_first, corpus_last );
}
}}
#endif // BOOST_ALGORITHM_KNUTH_MORRIS_PRATT_SEARCH_HPP

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# Boost algorithm library test suite Jamfile ----------------------------
#
# Copyright Marshall Clow 2010-2012. Use, modification and
# distribution is subject to the Boost Software License, Version
# 1.0. (See accompanying file LICENSE_1_0.txt or copy at
# http://www.boost.org/LICENSE_1_0.txt)
#
# See http://www.boost.org for updates, documentation, and revision history.
import testing ;
{
test-suite algorithm:
# Search tests
: [ run empty_search_test.cpp : : : : empty_search_test ]
[ run search_test1.cpp : : : : search_test1 ]
[ run search_test2.cpp : : : : search_test2 ]
[ run search_test3.cpp : : : : search_test3 ]
[ compile-fail search_fail1.cpp : : : : ]
[ compile-fail search_fail2.cpp : : : : ]
[ compile-fail search_fail3.cpp : : : : ]
# Clamp tests
[ run clamp_test.cpp : : : : clamp_test ]
# Cxx11 tests
[ run all_of_test.cpp : : : : all_of_test ]
[ run any_of_test.cpp : : : : any_of_test ]
[ run none_of_test.cpp : : : : none_of_test ]
[ run one_of_test.cpp : : : : one_of_test ]
[ run ordered_test.cpp : : : : ordered_test ]
[ run find_if_not_test1.cpp : : : : find_if_not_test1 ]
[ run copy_n_test1.cpp : : : : copy_n_test1 ]
[ run iota_test1.cpp : : : : iota_test1 ]
[ run is_permutation_test1.cpp : : : : is_permutation_test1 ]
[ run partition_point_test1.cpp : : : : partition_point_test1 ]
[ run is_partitioned_test1.cpp : : : : is_partitioned_test1 ]
[ run partition_copy_test1.cpp : : : : partition_copy_test1 ]
;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/all_of.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <functional>
#include <vector>
#include <list>
template<typename T>
struct is_ : public std::unary_function<T, bool> {
is_ ( T v ) : val_ ( v ) {}
~is_ () {}
bool operator () ( T comp ) const { return val_ == comp; }
private:
is_ (); // need a value
T val_;
};
namespace ba = boost::algorithm;
void test_all ()
{
// Note: The literal values here are tested against directly, careful if you change them:
int some_numbers[] = { 1, 1, 1, 18, 10 };
std::vector<int> vi(some_numbers, some_numbers + 5);
std::list<int> li(vi.begin(), vi.end ());
int some_letters[] = { 'a', 'q', 'n', 'y', 'n' };
std::vector<char> vc(some_letters, some_letters + 5);
BOOST_CHECK (!ba::all_of_equal ( vi, 1 ));
BOOST_CHECK (!ba::all_of ( vi, is_<int> ( 1 )));
BOOST_CHECK (!ba::all_of_equal ( vi.begin(), vi.end(), 1 ));
BOOST_CHECK (!ba::all_of ( vi.begin(), vi.end(), is_<int> ( 1 )));
BOOST_CHECK (!ba::all_of_equal ( vi, 0 ));
BOOST_CHECK (!ba::all_of ( vi, is_<int> ( 0 )));
BOOST_CHECK (!ba::all_of_equal ( vi.begin(), vi.end(), 0 ));
BOOST_CHECK (!ba::all_of ( vi.begin(), vi.end(), is_<int> ( 0 )));
BOOST_CHECK ( ba::all_of_equal ( vi.end(), vi.end(), 0 ));
BOOST_CHECK ( ba::all_of ( vi.end(), vi.end(), is_<int> ( 0 )));
BOOST_CHECK ( ba::all_of_equal ( vi.begin(), vi.begin () + 3, 1 ));
BOOST_CHECK ( ba::all_of ( vi.begin(), vi.begin () + 3, is_<int> ( 1 )));
BOOST_CHECK ( ba::all_of_equal ( vc.begin() + 1, vc.begin() + 2, 'q' ));
BOOST_CHECK ( ba::all_of ( vc.begin() + 1, vc.begin() + 2, is_<char> ( 'q' )));
BOOST_CHECK (!ba::all_of_equal ( vc, '!' ));
BOOST_CHECK (!ba::all_of ( vc, is_<char> ( '!' )));
BOOST_CHECK ( ba::all_of_equal ( vi.begin(), vi.begin(), 1 ));
BOOST_CHECK ( ba::all_of_equal ( vc.begin(), vc.begin(), 'a' ));
BOOST_CHECK ( ba::all_of ( vi.begin(), vi.begin(), is_<int> ( 1 )));
BOOST_CHECK ( ba::all_of ( vc.begin(), vc.begin(), is_<char> ( 'a' )));
BOOST_CHECK (!ba::all_of_equal ( li, 1 ));
BOOST_CHECK (!ba::all_of ( li, is_<int> ( 1 )));
BOOST_CHECK (!ba::all_of_equal ( li.begin(), li.end(), 1 ));
BOOST_CHECK (!ba::all_of ( li.begin(), li.end(), is_<int> ( 1 )));
std::list<int>::iterator l_iter = li.begin ();
l_iter++; l_iter++; l_iter++;
BOOST_CHECK ( ba::all_of_equal ( li.begin(), l_iter, 1 ));
BOOST_CHECK ( ba::all_of ( li.begin(), l_iter, is_<int> ( 1 )));
}
int test_main( int , char* [] )
{
test_all ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/any_of.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <functional>
#include <vector>
#include <list>
template<typename T>
struct is_ : public std::unary_function<T, bool> {
is_ ( T v ) : val_ ( v ) {}
~is_ () {}
bool operator () ( T comp ) const { return val_ == comp; }
private:
is_ (); // need a value
T val_;
};
namespace ba = boost::algorithm;
void test_any ()
{
// Note: The literal values here are tested against directly, careful if you change them:
int some_numbers[] = { 1, 5, 0, 18, 10 };
std::vector<int> vi(some_numbers, some_numbers + 5);
std::list<int> li(vi.begin(), vi.end ());
int some_letters[] = { 'a', 'q', 'n', 'y', 'n' };
std::vector<char> vc(some_letters, some_letters + 5);
BOOST_CHECK ( ba::any_of_equal ( vi, 1 ));
BOOST_CHECK ( ba::any_of ( vi, is_<int> ( 1 )));
BOOST_CHECK ( ba::any_of_equal ( vi.begin(), vi.end(), 1 ));
BOOST_CHECK ( ba::any_of ( vi.begin(), vi.end(), is_<int> ( 1 )));
BOOST_CHECK (!ba::any_of_equal ( vi, 9 ));
BOOST_CHECK (!ba::any_of ( vi, is_<int> ( 9 )));
BOOST_CHECK (!ba::any_of_equal ( vi.begin(), vi.end(), 9 ));
BOOST_CHECK (!ba::any_of ( vi.begin(), vi.end(), is_<int> ( 9 )));
BOOST_CHECK ( ba::any_of_equal ( vi, 10 ));
BOOST_CHECK ( ba::any_of ( vi, is_<int> ( 10 )));
BOOST_CHECK (!ba::any_of_equal ( vi, 4 ));
BOOST_CHECK (!ba::any_of ( vi, is_<int> ( 4 )));
BOOST_CHECK (!ba::any_of_equal ( vi.end(), vi.end(), 0 ));
BOOST_CHECK (!ba::any_of ( vi.end(), vi.end(), is_<int> ( 0 )));
// 5 is not in { 0, 18, 10 }, but 10 is
BOOST_CHECK ( ba::any_of_equal ( vi.begin() + 2, vi.end(), 10 ));
BOOST_CHECK ( ba::any_of ( vi.begin() + 2, vi.end(), is_<int> ( 10 )));
BOOST_CHECK (!ba::any_of_equal ( vi.begin() + 2, vi.end(), 5 ));
BOOST_CHECK (!ba::any_of ( vi.begin() + 2, vi.end(), is_<int> ( 5 )));
// 18 is not in { 1, 5, 0 }, but 5 is
BOOST_CHECK ( ba::any_of_equal ( vi.begin(), vi.begin() + 3, 5 ));
BOOST_CHECK ( ba::any_of ( vi.begin(), vi.begin() + 3, is_<int> ( 5 )));
BOOST_CHECK (!ba::any_of_equal ( vi.begin(), vi.begin() + 3, 18 ));
BOOST_CHECK (!ba::any_of ( vi.begin(), vi.begin() + 3, is_<int> ( 18 )));
BOOST_CHECK ( ba::any_of_equal ( vc, 'q' ));
BOOST_CHECK ( ba::any_of ( vc, is_<char> ( 'q' )));
BOOST_CHECK (!ba::any_of_equal ( vc, '!' ));
BOOST_CHECK (!ba::any_of ( vc, is_<char> ( '!' )));
BOOST_CHECK ( ba::any_of_equal ( vc, 'n' ));
BOOST_CHECK ( ba::any_of ( vc, is_<char> ( 'n' )));
BOOST_CHECK (!ba::any_of_equal ( vi.begin(), vi.begin(), 1 ));
BOOST_CHECK (!ba::any_of_equal ( vc.begin(), vc.begin(), 'a' ));
BOOST_CHECK (!ba::any_of ( vi.begin(), vi.begin(), is_<int> ( 1 )));
BOOST_CHECK (!ba::any_of ( vc.begin(), vc.begin(), is_<char> ( 'a' )));
BOOST_CHECK ( ba::any_of_equal ( li, 1 ));
BOOST_CHECK ( ba::any_of ( li, is_<int> ( 1 )));
BOOST_CHECK ( ba::any_of_equal ( li.begin(), li.end(), 1 ));
BOOST_CHECK ( ba::any_of ( li.begin(), li.end(), is_<int> ( 1 )));
std::list<int>::iterator l_iter = li.begin ();
l_iter++; l_iter++; l_iter++;
BOOST_CHECK ( ba::any_of_equal ( li.begin(), l_iter, 5 ));
BOOST_CHECK ( ba::any_of ( li.begin(), l_iter, is_<int> ( 5 )));
BOOST_CHECK (!ba::any_of_equal ( li.begin(), l_iter, 18 ));
BOOST_CHECK (!ba::any_of ( li.begin(), l_iter, is_<int> ( 18 )));
}
int test_main( int , char* [] )
{
test_any ();
return 0;
}

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// (C) Copyright Jesse Williamson 2009
// Use, modification and distribution are subject to the
// Boost Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
#include <iostream>
#include <vector>
#include <boost/config.hpp>
#include <boost/algorithm/clamp.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
namespace ba = boost::algorithm;
bool intGreater ( int lhs, int rhs ) { return lhs > rhs; }
bool doubleGreater ( double lhs, double rhs ) { return lhs > rhs; }
class custom {
public:
custom ( int x ) : v(x) {}
custom ( const custom &rhs ) : v(rhs.v) {}
~custom () {}
custom & operator = ( const custom &rhs ) { v = rhs.v; return *this; }
bool operator < ( const custom &rhs ) const { return v < rhs.v; }
bool operator == ( const custom &rhs ) const { return v == rhs.v; } // need this for the test
std::ostream & print ( std::ostream &os ) const { return os << v; }
int v;
};
std::ostream & operator << ( std::ostream & os, const custom &x ) { return x.print ( os ); }
bool customLess ( const custom &lhs, const custom &rhs ) { return lhs.v < rhs.v; }
void test_ints()
{
// Inside the range, equal to the endpoints, and outside the endpoints.
BOOST_CHECK_EQUAL ( 3, ba::clamp ( 3, 1, 10 ));
BOOST_CHECK_EQUAL ( 1, ba::clamp ( 1, 1, 10 ));
BOOST_CHECK_EQUAL ( 1, ba::clamp ( 0, 1, 10 ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 10, 1, 10 ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 11, 1, 10 ));
BOOST_CHECK_EQUAL ( 3, ba::clamp ( 3, 10, 1, intGreater ));
BOOST_CHECK_EQUAL ( 1, ba::clamp ( 1, 10, 1, intGreater ));
BOOST_CHECK_EQUAL ( 1, ba::clamp ( 0, 10, 1, intGreater ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 10, 10, 1, intGreater ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 11, 10, 1, intGreater ));
// Negative numbers
BOOST_CHECK_EQUAL ( -3, ba::clamp ( -3, -10, -1 ));
BOOST_CHECK_EQUAL ( -1, ba::clamp ( -1, -10, -1 ));
BOOST_CHECK_EQUAL ( -1, ba::clamp ( 0, -10, -1 ));
BOOST_CHECK_EQUAL ( -10, ba::clamp ( -10, -10, -1 ));
BOOST_CHECK_EQUAL ( -10, ba::clamp ( -11, -10, -1 ));
// Mixed positive and negative numbers
BOOST_CHECK_EQUAL ( 5, ba::clamp ( 5, -10, 10 ));
BOOST_CHECK_EQUAL ( -10, ba::clamp ( -10, -10, 10 ));
BOOST_CHECK_EQUAL ( -10, ba::clamp ( -15, -10, 10 ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 10, -10, 10 ));
BOOST_CHECK_EQUAL ( 10, ba::clamp ( 15, -10, 10 ));
// Unsigned
BOOST_CHECK_EQUAL ( 5U, ba::clamp ( 5U, 1U, 10U ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 1U, 1U, 10U ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 0U, 1U, 10U ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 10U, 1U, 10U ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 15U, 1U, 10U ));
// Mixed (1)
BOOST_CHECK_EQUAL ( 5U, ba::clamp ( 5U, 1, 10 ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 1U, 1, 10 ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 0U, 1, 10 ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 10U, 1, 10 ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 15U, 1, 10 ));
// Mixed (3)
BOOST_CHECK_EQUAL ( 5U, ba::clamp ( 5U, 1, 10. ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 1U, 1, 10. ));
BOOST_CHECK_EQUAL ( 1U, ba::clamp ( 0U, 1, 10. ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 10U, 1, 10. ));
BOOST_CHECK_EQUAL ( 10U, ba::clamp ( 15U, 1, 10. ));
short foo = 50;
BOOST_CHECK_EQUAL ( 56, ba::clamp ( foo, 56.9, 129 ));
BOOST_CHECK_EQUAL ( 24910, ba::clamp ( foo, 12345678, 123456999 ));
}
void test_floats()
{
// Inside the range, equal to the endpoints, and outside the endpoints.
BOOST_CHECK_EQUAL ( 3.0, ba::clamp ( 3.0, 1.0, 10.0 ));
BOOST_CHECK_EQUAL ( 1.0, ba::clamp ( 1.0, 1.0, 10.0 ));
BOOST_CHECK_EQUAL ( 1.0, ba::clamp ( 0.0, 1.0, 10.0 ));
BOOST_CHECK_EQUAL ( 10.0, ba::clamp ( 10.0, 1.0, 10.0 ));
BOOST_CHECK_EQUAL ( 10.0, ba::clamp ( 11.0, 1.0, 10.0 ));
BOOST_CHECK_EQUAL ( 3.0, ba::clamp ( 3.0, 10.0, 1.0, doubleGreater ));
BOOST_CHECK_EQUAL ( 1.0, ba::clamp ( 1.0, 10.0, 1.0, doubleGreater ));
BOOST_CHECK_EQUAL ( 1.0, ba::clamp ( 0.0, 10.0, 1.0, doubleGreater ));
BOOST_CHECK_EQUAL ( 10.0, ba::clamp ( 10.0, 10.0, 1.0, doubleGreater ));
BOOST_CHECK_EQUAL ( 10.0, ba::clamp ( 11.0, 10.0, 1.0, doubleGreater ));
// Negative numbers
BOOST_CHECK_EQUAL ( -3.f, ba::clamp ( -3.f, -10.f, -1.f ));
BOOST_CHECK_EQUAL ( -1.f, ba::clamp ( -1.f, -10.f, -1.f ));
BOOST_CHECK_EQUAL ( -1.f, ba::clamp ( 0.f, -10.f, -1.f ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -10.f, -10.f, -1.f ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -11.f, -10.f, -1.f ));
// Mixed positive and negative numbers
BOOST_CHECK_EQUAL ( 5.f, ba::clamp ( 5.f, -10.f, 10.f ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -10.f, -10.f, 10.f ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -15.f, -10.f, 10.f ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 10.f, -10.f, 10.f ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 15.f, -10.f, 10.f ));
// Mixed (1)
BOOST_CHECK_EQUAL ( 5.f, ba::clamp ( 5.f, -10., 10. ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -10.f, -10., 10. ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -15.f, -10., 10. ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 10.f, -10., 10. ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 15.f, -10., 10. ));
// Mixed (2)
BOOST_CHECK_EQUAL ( 5.f, ba::clamp ( 5.f, -10, 10 ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -10.f, -10, 10 ));
BOOST_CHECK_EQUAL ( -10.f, ba::clamp ( -15.f, -10, 10 ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 10.f, -10, 10 ));
BOOST_CHECK_EQUAL ( 10.f, ba::clamp ( 15.f, -10, 10 ));
}
void test_custom()
{
// Inside the range, equal to the endpoints, and outside the endpoints.
BOOST_CHECK_EQUAL ( custom( 3), ba::clamp ( custom( 3), custom(1), custom(10)));
BOOST_CHECK_EQUAL ( custom( 1), ba::clamp ( custom( 1), custom(1), custom(10)));
BOOST_CHECK_EQUAL ( custom( 1), ba::clamp ( custom( 0), custom(1), custom(10)));
BOOST_CHECK_EQUAL ( custom(10), ba::clamp ( custom(10), custom(1), custom(10)));
BOOST_CHECK_EQUAL ( custom(10), ba::clamp ( custom(11), custom(1), custom(10)));
BOOST_CHECK_EQUAL ( custom( 3), ba::clamp ( custom( 3), custom(1), custom(10), customLess ));
BOOST_CHECK_EQUAL ( custom( 1), ba::clamp ( custom( 1), custom(1), custom(10), customLess ));
BOOST_CHECK_EQUAL ( custom( 1), ba::clamp ( custom( 0), custom(1), custom(10), customLess ));
BOOST_CHECK_EQUAL ( custom(10), ba::clamp ( custom(10), custom(1), custom(10), customLess ));
BOOST_CHECK_EQUAL ( custom(10), ba::clamp ( custom(11), custom(1), custom(10), customLess ));
// Fail!!
// BOOST_CHECK_EQUAL ( custom(1), ba::clamp ( custom(11), custom(1), custom(10)));
}
#define elementsof(v) (sizeof (v) / sizeof (v[0]))
#define a_begin(v) (&v[0])
#define a_end(v) (v + elementsof (v))
#define a_range(v) v
#define b_e(v) a_begin(v),a_end(v)
void test_int_range ()
{
int inputs [] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 19, 99, 999, -1, -3, -99, 234234 };
int outputs [] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 10, 10, -1, -1, -1, 10 };
std::vector<int> results;
std::vector<int> in_v;
std::copy ( a_begin(inputs), a_end(inputs), std::back_inserter ( in_v ));
ba::clamp_range ( a_begin(inputs), a_end(inputs), std::back_inserter ( results ), -1, 10 );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( in_v.begin (), in_v.end (), std::back_inserter ( results ), -1, 10 );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( a_begin(inputs), a_end(inputs), std::back_inserter ( results ), 10, -1, intGreater );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( in_v.begin (), in_v.end (), std::back_inserter ( results ), 10, -1, intGreater );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( a_range(inputs), std::back_inserter ( results ), -1, 10 );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( in_v, std::back_inserter ( results ), -1, 10 );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( a_range(inputs), std::back_inserter ( results ), 10, -1, intGreater );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
ba::clamp_range ( in_v, std::back_inserter ( results ), 10, -1, intGreater );
BOOST_CHECK ( std::equal ( results.begin(), results.end (), outputs ));
results.clear ();
int junk[elementsof(inputs)];
ba::clamp_range ( inputs, junk, 10, -1, intGreater );
BOOST_CHECK ( std::equal ( b_e(junk), outputs ));
}
int test_main( int , char* [] )
{
test_ints ();
test_floats ();
test_custom ();
test_int_range ();
// test_float_range ();
// test_custom_range ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/copy_n.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <string>
#include <iostream>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
template <typename Container>
void test_sequence ( Container const &c ) {
typedef typename Container::value_type value_type;
std::vector<value_type> v;
// Copy zero elements
v.clear ();
ba::copy_n ( c.begin (), 0, back_inserter ( v ));
BOOST_CHECK ( v.size () == 0 );
ba::copy_n ( c.begin (), 0U, back_inserter ( v ));
BOOST_CHECK ( v.size () == 0 );
if ( c.size () > 0 ) {
// Just one element
v.clear ();
ba::copy_n ( c.begin (), 1, back_inserter ( v ));
BOOST_CHECK ( v.size () == 1 );
BOOST_CHECK ( v[0] == *c.begin ());
v.clear ();
ba::copy_n ( c.begin (), 1U, back_inserter ( v ));
BOOST_CHECK ( v.size () == 1 );
BOOST_CHECK ( v[0] == *c.begin ());
// Half the elements
v.clear ();
ba::copy_n ( c.begin (), c.size () / 2, back_inserter ( v ));
BOOST_CHECK ( v.size () == c.size () / 2);
BOOST_CHECK ( std::equal ( v.begin (), v.end (), c.begin ()));
// Half the elements + 1
v.clear ();
ba::copy_n ( c.begin (), c.size () / 2 + 1, back_inserter ( v ));
BOOST_CHECK ( v.size () == c.size () / 2 + 1 );
BOOST_CHECK ( std::equal ( v.begin (), v.end (), c.begin ()));
// All the elements
v.clear ();
ba::copy_n ( c.begin (), c.size (), back_inserter ( v ));
BOOST_CHECK ( v.size () == c.size ());
BOOST_CHECK ( std::equal ( v.begin (), v.end (), c.begin ()));
}
}
void test_sequence1 () {
std::vector<int> v;
for ( int i = 5; i < 15; ++i )
v.push_back ( i );
test_sequence ( v );
std::list<int> l;
for ( int i = 25; i > 15; --i )
l.push_back ( i );
test_sequence ( l );
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <string>
#include <boost/algorithm/searching/boyer_moore.hpp>
#include <boost/algorithm/searching/boyer_moore_horspool.hpp>
#include <boost/algorithm/searching/knuth_morris_pratt.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
int test_main( int argc, char *argv [] )
{
const std::string cs;
std::string estr;
std::string str ( "abc" );
// empty corpus, empty pattern
BOOST_CHECK (
boost::algorithm::boyer_moore_search (
cs.begin (), cs.end (), estr.begin (), estr.end ())
== cs.begin ()
);
BOOST_CHECK (
boost::algorithm::boyer_moore_horspool_search (
cs.begin (), cs.end (), estr.begin (), estr.end ())
== cs.begin ()
);
BOOST_CHECK (
boost::algorithm::knuth_morris_pratt_search (
cs.begin (), cs.end (), estr.begin (), estr.end ())
== cs.begin ()
);
// empty corpus, non-empty pattern
BOOST_CHECK (
boost::algorithm::boyer_moore_search (
estr.begin (), estr.end (), str.begin (), str.end ())
== estr.end ()
);
BOOST_CHECK (
boost::algorithm::boyer_moore_horspool_search (
estr.begin (), estr.end (), str.begin (), str.end ())
== estr.end ()
);
BOOST_CHECK (
boost::algorithm::knuth_morris_pratt_search (
estr.begin (), estr.end (), str.begin (), str.end ())
== estr.end ()
);
// non-empty corpus, empty pattern
BOOST_CHECK (
boost::algorithm::boyer_moore_search (
str.begin (), str.end (), estr.begin (), estr.end ())
== str.begin ()
);
BOOST_CHECK (
boost::algorithm::boyer_moore_horspool_search (
str.begin (), str.end (), estr.begin (), estr.end ())
== str.begin ()
);
BOOST_CHECK (
boost::algorithm::knuth_morris_pratt_search (
str.begin (), str.end (), estr.begin (), estr.end ())
== str.begin ()
);
(void) argv; (void) argc;
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <iostream>
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/find_if_not.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <string>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
template <typename Container>
typename Container::iterator offset_to_iter ( Container &v, int offset ) {
typename Container::iterator retval;
if ( offset >= 0 ) {
retval = v.begin ();
std::advance ( retval, offset );
}
else {
retval = v.end ();
std::advance ( retval, offset + 1 );
}
return retval;
}
template <typename Container, typename Predicate>
void test_sequence ( Container &v, Predicate comp, int expected ) {
typename Container::iterator res, exp;
res = ba::find_if_not ( v.begin (), v.end (), comp );
exp = offset_to_iter ( v, expected );
std::cout << "Expected(1): " << std::distance ( v.begin (), exp )
<< ", got: " << std::distance ( v.begin (), res ) << std::endl;
BOOST_CHECK ( exp == res );
}
template <typename T>
struct less_than {
public:
less_than ( T foo ) : val ( foo ) {}
less_than ( const less_than &rhs ) : val ( rhs.val ) {}
bool operator () ( const T &v ) const { return v < val; }
private:
less_than ();
less_than operator = ( const less_than &rhs );
T val;
};
void test_sequence1 () {
std::vector<int> v;
v.clear ();
for ( int i = 5; i < 15; ++i )
v.push_back ( i );
test_sequence ( v, less_than<int>(3), 0 ); // no elements
test_sequence ( v, less_than<int>(6), 1 ); // only the first element
test_sequence ( v, less_than<int>(10), 5 );
test_sequence ( v, less_than<int>(99), -1 ); // all elements satisfy
// With bidirectional iterators.
std::list<int> l;
for ( int i = 5; i < 15; ++i )
l.push_back ( i );
test_sequence ( l, less_than<int>(3), 0 ); // no elements
test_sequence ( l, less_than<int>(6), 1 ); // only the first element
test_sequence ( l, less_than<int>(10), 5 );
test_sequence ( l, less_than<int>(99), -1 ); // all elements satisfy
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/iota.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <iostream>
#include <string>
#include <vector>
#include <list>
// Test to make sure a sequence is "correctly formed"; i.e, ascending by one
template <typename Iterator, typename T>
bool test_iota_results ( Iterator first, Iterator last, T initial_value ) {
if ( first == last ) return true;
if ( initial_value != *first ) return false;
Iterator prev = first;
while ( ++first != last ) {
if (( *first - *prev ) != 1 )
return false;
prev = first;
}
return true;
}
template <typename Range, typename T>
bool test_iota_results ( const Range &r, T initial_value ) {
return test_iota_results (boost::begin (r), boost::end (r), initial_value );
}
void test_ints () {
std::vector<int> v;
std::list<int> l;
v.clear (); v.reserve ( 10 );
boost::algorithm::iota ( v.begin (), v.end (), 23 );
BOOST_CHECK ( test_iota_results ( v.begin (), v.end (), 23 ));
v.clear (); v.reserve ( 19 );
boost::algorithm::iota ( v, 18 );
BOOST_CHECK ( test_iota_results ( v, 18 ));
v.clear ();
boost::algorithm::iota_n ( std::back_inserter(v), 99, 20 );
BOOST_CHECK ( test_iota_results ( v, 99 ));
/*
l.clear (); l.reserve ( 5 );
boost::algorithm::iota ( l.begin (), l.end (), 123 );
BOOST_CHECK ( test_iota_results ( l.begin (), l.end (), 123 ));
l.clear (); l.reserve ( 9 );
boost::algorithm::iota ( l.begin (), l.end (), 87 );
BOOST_CHECK ( test_iota_results ( l.begin (), l.end (), 87 ));
*/
l.clear ();
boost::algorithm::iota_n ( std::back_inserter(l), 99, 20 );
BOOST_CHECK ( test_iota_results ( l, 99 ));
l.clear ();
boost::algorithm::iota_n ( std::front_inserter(l), 123, 20 );
BOOST_CHECK ( test_iota_results ( l.rbegin (), l.rend (), 123 ));
}
int test_main( int , char* [] )
{
test_ints ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <iostream>
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/is_partitioned.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <string>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
template <typename T>
struct less_than {
public:
less_than ( T foo ) : val ( foo ) {}
less_than ( const less_than &rhs ) : val ( rhs.val ) {}
bool operator () ( const T &v ) const { return v < val; }
private:
less_than ();
less_than operator = ( const less_than &rhs );
T val;
};
void test_sequence1 () {
std::vector<int> v;
v.clear ();
for ( int i = 5; i < 15; ++i )
v.push_back ( i );
BOOST_CHECK ( ba::is_partitioned ( v, less_than<int>(3))); // no elements
BOOST_CHECK ( ba::is_partitioned ( v, less_than<int>(6))); // only the first element
BOOST_CHECK ( ba::is_partitioned ( v, less_than<int>(10))); // in the middle somewhere
BOOST_CHECK ( ba::is_partitioned ( v, less_than<int>(99))); // all elements satisfy
// With bidirectional iterators.
std::list<int> l;
for ( int i = 5; i < 15; ++i )
l.push_back ( i );
BOOST_CHECK ( ba::is_partitioned ( l.begin (), l.end (), less_than<int>(3))); // no elements
BOOST_CHECK ( ba::is_partitioned ( l.begin (), l.end (), less_than<int>(6))); // only the first element
BOOST_CHECK ( ba::is_partitioned ( l.begin (), l.end (), less_than<int>(10))); // in the middle somewhere
BOOST_CHECK ( ba::is_partitioned ( l.begin (), l.end (), less_than<int>(99))); // all elements satisfy
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <iostream>
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/is_permutation.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <string>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
void test_sequence1 () {
std::vector<int> v, v1;
v.clear ();
for ( std::size_t i = 5; i < 15; ++i )
v.push_back ( i );
v1 = v;
BOOST_CHECK ( ba::is_permutation ( v.begin (), v.end (), v.begin ())); // better be a permutation of itself!
BOOST_CHECK ( ba::is_permutation ( v.begin (), v.end (), v1.begin ()));
// With bidirectional iterators.
std::list<int> l;
std::copy ( v.begin (), v.end (), std::back_inserter ( l ));
BOOST_CHECK ( ba::is_permutation ( l.begin (), l.end (), l.begin ())); // better be a permutation of itself!
BOOST_CHECK ( ba::is_permutation ( l.begin (), l.end (), v1.begin ()));
for ( std::size_t i = 0; i < l.size (); ++i ) {
l.push_back ( *l.begin ()); l.pop_front (); // rotation
BOOST_CHECK ( ba::is_permutation ( l.begin (), l.end (), v1.begin ()));
}
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/none_of.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <functional>
#include <vector>
#include <list>
template<typename T>
struct is_ : public std::unary_function<T, bool> {
is_ ( T v ) : val_ ( v ) {}
~is_ () {}
bool operator () ( T comp ) const { return val_ == comp; }
private:
is_ (); // need a value
T val_;
};
namespace ba = boost::algorithm;
void test_none()
{
// Note: The literal values here are tested against directly, careful if you change them:
int some_numbers[] = { 1, 5, 0, 18, 1 };
std::vector<int> vi(some_numbers, some_numbers + 5);
std::list<int> li(vi.begin(), vi.end ());
int some_letters[] = { 'a', 'q', 'n', 'y', 'n' };
std::vector<char> vc(some_letters, some_letters + 5);
BOOST_CHECK ( ba::none_of_equal ( vi, 100 ));
BOOST_CHECK ( ba::none_of ( vi, is_<int> ( 100 )));
BOOST_CHECK ( ba::none_of_equal ( vi.begin(), vi.end(), 100 ));
BOOST_CHECK ( ba::none_of ( vi.begin(), vi.end(), is_<int> ( 100 )));
BOOST_CHECK (!ba::none_of_equal ( vi, 1 ));
BOOST_CHECK (!ba::none_of ( vi, is_<int> ( 1 )));
BOOST_CHECK (!ba::none_of_equal ( vi.begin(), vi.end(), 1 ));
BOOST_CHECK (!ba::none_of ( vi.begin(), vi.end(), is_<int> ( 1 )));
BOOST_CHECK ( ba::none_of_equal ( vi.end(), vi.end(), 0 ));
BOOST_CHECK ( ba::none_of ( vi.end(), vi.end(), is_<int> ( 0 )));
// 5 is not in { 0, 18, 1 }, but 1 is
BOOST_CHECK ( ba::none_of_equal ( vi.begin() + 2, vi.end(), 5 ));
BOOST_CHECK ( ba::none_of ( vi.begin() + 2, vi.end(), is_<int> ( 5 )));
BOOST_CHECK (!ba::none_of_equal ( vi.begin() + 2, vi.end(), 1 ));
BOOST_CHECK (!ba::none_of ( vi.begin() + 2, vi.end(), is_<int> ( 1 )));
// 18 is not in { 1, 5, 0 }, but 5 is
BOOST_CHECK ( ba::none_of_equal ( vi.begin(), vi.begin() + 3, 18 ));
BOOST_CHECK ( ba::none_of ( vi.begin(), vi.begin() + 3, is_<int> ( 18 )));
BOOST_CHECK (!ba::none_of_equal ( vi.begin(), vi.begin() + 3, 5 ));
BOOST_CHECK (!ba::none_of ( vi.begin(), vi.begin() + 3, is_<int> ( 5 )));
BOOST_CHECK ( ba::none_of_equal ( vc, 'z' ));
BOOST_CHECK ( ba::none_of ( vc, is_<char> ( 'z' )));
BOOST_CHECK (!ba::none_of_equal ( vc, 'a' ));
BOOST_CHECK (!ba::none_of ( vc, is_<char> ( 'a' )));
BOOST_CHECK (!ba::none_of_equal ( vc, 'n' ));
BOOST_CHECK (!ba::none_of ( vc, is_<char> ( 'n' )));
BOOST_CHECK ( ba::none_of_equal ( vi.begin(), vi.begin(), 1 ));
BOOST_CHECK ( ba::none_of_equal ( vc.begin(), vc.begin(), 'a' ));
BOOST_CHECK ( ba::none_of ( vi.begin(), vi.begin(), is_<int> ( 1 )));
BOOST_CHECK ( ba::none_of ( vc.begin(), vc.begin(), is_<char> ( 'a' )));
BOOST_CHECK ( ba::none_of_equal ( li, 100 ));
BOOST_CHECK ( ba::none_of ( li, is_<int> ( 100 )));
BOOST_CHECK ( ba::none_of_equal ( li.begin(), li.end(), 100 ));
BOOST_CHECK ( ba::none_of ( li.begin(), li.end(), is_<int> ( 100 )));
std::list<int>::iterator l_iter = li.begin ();
l_iter++; l_iter++; l_iter++;
BOOST_CHECK ( ba::none_of_equal ( li.begin(), l_iter, 18 ));
BOOST_CHECK ( ba::none_of ( li.begin(), l_iter, is_<int> ( 18 )));
BOOST_CHECK (!ba::none_of ( li.begin(), l_iter, is_<int> ( 5 )));
}
int test_main( int , char* [] )
{
test_none();
return 0;
}

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/*
Copyright (c) Marshall Clow 2008-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/one_of.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <functional>
#include <vector>
#include <list>
template<typename T>
struct is_ : public std::unary_function<T, bool> {
is_ ( T v ) : val_ ( v ) {}
~is_ () {}
bool operator () ( T comp ) const { return val_ == comp; }
private:
is_ (); // need a value
T val_;
};
namespace ba = boost::algorithm;
void test_one ()
{
// Note: The literal values here are tested against directly, careful if you change them:
int some_numbers[] = { 1, 1, 2, 3, 5 };
std::vector<int> vi(some_numbers, some_numbers + 5);
std::list<int> li(vi.begin(), vi.end ());
int some_letters[] = { 'a', 'q', 'n', 'y', 'n' };
std::vector<char> vc(some_letters, some_letters + 5);
BOOST_CHECK (!ba::one_of_equal ( vi, 1 ));
BOOST_CHECK (!ba::one_of ( vi, is_<int> ( 1 )));
BOOST_CHECK (!ba::one_of_equal ( vi.begin(), vi.end(), 1 ));
BOOST_CHECK (!ba::one_of ( vi.begin(), vi.end(), is_<int> ( 1 )));
BOOST_CHECK (!ba::one_of_equal ( vi, 0 ));
BOOST_CHECK (!ba::one_of ( vi, is_<int> ( 0 )));
BOOST_CHECK (!ba::one_of_equal ( vi.begin(), vi.end(), 0 ));
BOOST_CHECK (!ba::one_of ( vi.begin(), vi.end(), is_<int> ( 0 )));
BOOST_CHECK ( ba::one_of_equal ( vi, 2 ));
BOOST_CHECK ( ba::one_of ( vi, is_<int> ( 2 )));
BOOST_CHECK ( ba::one_of_equal ( vi.begin(), vi.end(), 2 ));
BOOST_CHECK ( ba::one_of ( vi.begin(), vi.end(), is_<int> ( 2 )));
// Check for a match at the end
BOOST_CHECK ( ba::one_of_equal ( vi, 5 ));
BOOST_CHECK ( ba::one_of ( vi, is_<int> ( 5 )));
BOOST_CHECK ( ba::one_of_equal ( vi.begin(), vi.end(), 5 ));
BOOST_CHECK ( ba::one_of ( vi.begin(), vi.end(), is_<int> ( 5 )));
BOOST_CHECK ( ba::one_of_equal ( vi.begin() + 1, vi.end(), 1 ));
BOOST_CHECK ( ba::one_of ( vi.begin() + 1, vi.end(), is_<int> ( 1 )));
BOOST_CHECK ( ba::one_of_equal ( vc.begin() + 1, vc.begin() + 2, 'q' ));
BOOST_CHECK ( ba::one_of ( vc.begin() + 1, vc.begin() + 2, is_<char> ( 'q' )));
BOOST_CHECK (!ba::one_of_equal ( vc, '!' ));
BOOST_CHECK (!ba::one_of ( vc, is_<char> ( '!' )));
BOOST_CHECK (!ba::one_of_equal ( vc, 'n' ));
BOOST_CHECK (!ba::one_of ( vc, is_<char> ( 'n' )));
// Empty range check
BOOST_CHECK (!ba::one_of_equal ( vi.begin(), vi.begin(), 1 ));
BOOST_CHECK (!ba::one_of_equal ( vc.begin(), vc.begin(), 'a' ));
BOOST_CHECK (!ba::one_of ( vi.begin(), vi.begin(), is_<int> ( 1 )));
BOOST_CHECK (!ba::one_of ( vc.begin(), vc.begin(), is_<char> ( 'a' )));
BOOST_CHECK (!ba::one_of_equal ( li, 1 ));
BOOST_CHECK (!ba::one_of ( li, is_<int> ( 1 )));
BOOST_CHECK (!ba::one_of_equal ( li.begin(), li.end(), 1 ));
BOOST_CHECK (!ba::one_of ( li.begin(), li.end(), is_<int> ( 1 )));
std::list<int>::iterator l_iter = li.begin ();
l_iter++; l_iter++; l_iter++;
BOOST_CHECK (!ba::one_of_equal ( li.begin(), l_iter, 1 ));
BOOST_CHECK (!ba::one_of ( li.begin(), l_iter, is_<int> ( 1 )));
BOOST_CHECK ( ba::one_of_equal ( li.begin(), l_iter, 2 ));
BOOST_CHECK ( ba::one_of ( li.begin(), l_iter, is_<int> ( 2 )));
BOOST_CHECK (!ba::one_of_equal ( li.begin(), l_iter, 3 ));
BOOST_CHECK (!ba::one_of ( li.begin(), l_iter, is_<int> ( 3 )));
}
int test_main( int , char* [] )
{
test_one ();
return 0;
}

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// Copyright (c) 2010 Nuovation System Designs, LLC
// Grant Erickson <gerickson@nuovations.com>
//
// Reworked by Marshall Clow; August 2010
//
// Distributed under the Boost Software License, Version 1.0. (See
// accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
//
// See http://www.boost.org/ for latest version.
#include <algorithm>
#include <iostream>
#include <boost/algorithm/cxx11/ordered.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
using namespace boost;
/* Preprocessor Defines */
#define elementsof(v) (sizeof (v) / sizeof (v[0]))
#define a_begin(v) (&v[0])
#define a_end(v) (v + elementsof (v))
#define a_range(v) v
#define b_e(v) a_begin(v),a_end(v)
namespace ba = boost::algorithm;
static void
test_ordered(void)
{
const int strictlyIncreasingValues[] = { 1, 2, 3, 4, 5 };
const int strictlyDecreasingValues[] = { 9, 8, 7, 6, 5 };
const int increasingValues[] = { 1, 2, 2, 2, 5 };
const int decreasingValues[] = { 9, 7, 7, 7, 5 };
const int randomValues[] = { 3, 6, 1, 2, 7 };
const int constantValues[] = { 7, 7, 7, 7, 7 };
int nonConstantArray[] = { 7, 7, 7, 7, 7 };
const int inOrderUntilTheEnd [] = { 0, 1, 2, 3, 4, 5, 6, 7, 6 };
// Test a strictly increasing sequence
BOOST_CHECK ( ba::is_strictly_increasing (b_e(strictlyIncreasingValues)));
BOOST_CHECK ( ba::is_increasing (b_e(strictlyIncreasingValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (b_e(strictlyIncreasingValues)));
BOOST_CHECK ( !ba::is_decreasing (b_e(strictlyIncreasingValues)));
BOOST_CHECK ( ba::is_strictly_increasing (a_range(strictlyIncreasingValues)));
BOOST_CHECK ( ba::is_increasing (a_range(strictlyIncreasingValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (a_range(strictlyIncreasingValues)));
BOOST_CHECK ( !ba::is_decreasing (a_range(strictlyIncreasingValues)));
// Test a strictly decreasing sequence
BOOST_CHECK ( !ba::is_strictly_increasing (b_e(strictlyDecreasingValues)));
BOOST_CHECK ( !ba::is_increasing (b_e(strictlyDecreasingValues)));
BOOST_CHECK ( ba::is_strictly_decreasing (b_e(strictlyDecreasingValues)));
BOOST_CHECK ( ba::is_decreasing (b_e(strictlyDecreasingValues)));
// Test an increasing sequence
BOOST_CHECK ( !ba::is_strictly_increasing (b_e(increasingValues)));
BOOST_CHECK ( ba::is_increasing (b_e(increasingValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (b_e(increasingValues)));
BOOST_CHECK ( !ba::is_decreasing (b_e(increasingValues)));
// Test a decreasing sequence
BOOST_CHECK ( !ba::is_strictly_increasing (b_e(decreasingValues)));
BOOST_CHECK ( !ba::is_increasing (b_e(decreasingValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (b_e(decreasingValues)));
BOOST_CHECK ( ba::is_decreasing (b_e(decreasingValues)));
// Test a random sequence
BOOST_CHECK ( !ba::is_strictly_increasing (b_e(randomValues)));
BOOST_CHECK ( !ba::is_increasing (b_e(randomValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (b_e(randomValues)));
BOOST_CHECK ( !ba::is_decreasing (b_e(randomValues)));
// Test a constant sequence
BOOST_CHECK ( !ba::is_strictly_increasing (b_e(constantValues)));
BOOST_CHECK ( ba::is_increasing (b_e(constantValues)));
BOOST_CHECK ( !ba::is_strictly_decreasing (b_e(constantValues)));
BOOST_CHECK ( ba::is_decreasing (b_e(constantValues)));
// Test an empty sequence
BOOST_CHECK ( ba::is_strictly_increasing (strictlyIncreasingValues, strictlyIncreasingValues));
BOOST_CHECK ( ba::is_increasing (strictlyIncreasingValues, strictlyIncreasingValues));
BOOST_CHECK ( ba::is_strictly_decreasing (strictlyIncreasingValues, strictlyIncreasingValues));
BOOST_CHECK ( ba::is_decreasing (strictlyIncreasingValues, strictlyIncreasingValues));
// Test a one-element sequence
BOOST_CHECK ( ba::is_strictly_increasing (strictlyIncreasingValues, strictlyIncreasingValues+1));
BOOST_CHECK ( ba::is_increasing (strictlyIncreasingValues, strictlyIncreasingValues+1));
BOOST_CHECK ( ba::is_strictly_decreasing (strictlyIncreasingValues, strictlyIncreasingValues+1));
BOOST_CHECK ( ba::is_decreasing (strictlyIncreasingValues, strictlyIncreasingValues+1));
// Test a two-element sequence
BOOST_CHECK ( ba::is_strictly_increasing (strictlyIncreasingValues, strictlyIncreasingValues+2));
BOOST_CHECK ( ba::is_increasing (strictlyIncreasingValues, strictlyIncreasingValues+2));
BOOST_CHECK ( !ba::is_strictly_decreasing (strictlyIncreasingValues, strictlyIncreasingValues+2));
BOOST_CHECK ( !ba::is_decreasing (strictlyIncreasingValues, strictlyIncreasingValues+2));
// Test underlying routines
BOOST_CHECK ( ba::is_sorted_until ( b_e(strictlyIncreasingValues), std::less<int>()) == a_end(strictlyIncreasingValues));
BOOST_CHECK ( ba::is_sorted_until ( a_range(strictlyIncreasingValues), std::less<int>()) == boost::end(strictlyIncreasingValues));
BOOST_CHECK ( ba::is_sorted_until ( b_e(nonConstantArray), std::less<int>()) != a_end(nonConstantArray));
BOOST_CHECK ( ba::is_sorted_until ( a_range(nonConstantArray), std::less<int>()) != boost::end(nonConstantArray));
BOOST_CHECK ( ba::is_sorted_until ( b_e(randomValues), std::less<int>()) == &randomValues[2] );
BOOST_CHECK ( ba::is_sorted_until ( a_range(randomValues), std::less<int>()) == &randomValues[2] );
BOOST_CHECK ( ba::is_sorted_until ( b_e(randomValues), std::less<int>()) == &randomValues[2] );
BOOST_CHECK ( ba::is_sorted_until ( a_range(randomValues), std::less<int>()) == &randomValues[2] );
BOOST_CHECK ( ba::is_sorted_until ( a_range(inOrderUntilTheEnd), std::less<int>()) == &inOrderUntilTheEnd[8] );
// For zero and one element collections, the comparison predicate should never be called
BOOST_CHECK ( ba::is_sorted_until ( a_begin(randomValues), a_begin(randomValues), std::equal_to<int>()) == a_begin(randomValues));
BOOST_CHECK ( ba::is_sorted_until ( a_begin(randomValues), a_begin(randomValues) + 1, std::equal_to<int>()) == a_begin(randomValues) + 1);
}
int test_main( int, char * [] )
{
test_ordered ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <iostream>
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/partition_copy.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <boost/algorithm/cxx11/all_of.hpp>
#include <boost/algorithm/cxx11/none_of.hpp>
#include <string>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
template <typename Container, typename Predicate>
void test_sequence ( const Container &c, Predicate comp ) {
std::vector<typename Container::value_type> v1, v2;
v1.clear (); v2.clear ();
ba::partition_copy ( c.begin (), c.end (),
std::back_inserter (v1), std::back_inserter (v2), comp );
// std::cout << "Sizes(1): " << c.size () << " -> { " << v1.size () << ", " << v2.size () << " }" << std::endl;
BOOST_CHECK ( v1.size () + v2.size () == c.size ());
BOOST_CHECK ( ba::all_of ( v1.begin (), v1.end (), comp ));
BOOST_CHECK ( ba::none_of ( v2.begin (), v2.end (), comp ));
v1.clear (); v2.clear ();
ba::partition_copy ( c, std::back_inserter (v1), std::back_inserter ( v2 ), comp );
// std::cout << "Sizes(2): " << c.size () << " -> { " << v1.size () << ", " << v2.size () << " }" << std::endl;
BOOST_CHECK ( v1.size () + v2.size () == c.size ());
BOOST_CHECK ( ba::all_of ( v1, comp ));
BOOST_CHECK ( ba::none_of ( v2, comp ));
}
template <typename T>
struct less_than {
public:
less_than ( T foo ) : val ( foo ) {}
less_than ( const less_than &rhs ) : val ( rhs.val ) {}
bool operator () ( const T &v ) const { return v < val; }
private:
less_than ();
less_than operator = ( const less_than &rhs );
T val;
};
bool is_even ( int v ) { return v % 2 == 0; }
void test_sequence1 () {
std::vector<int> v;
v.clear ();
for ( int i = 5; i < 15; ++i )
v.push_back ( i );
test_sequence ( v, less_than<int>(3)); // no elements
test_sequence ( v, less_than<int>(6)); // only the first element
test_sequence ( v, less_than<int>(10));
test_sequence ( v, less_than<int>(99)); // all elements satisfy
// With bidirectional iterators.
std::list<int> l;
for ( int i = 5; i < 16; ++i )
l.push_back ( i );
test_sequence ( l, less_than<int>(3)); // no elements
test_sequence ( l, less_than<int>(6)); // only the first element
test_sequence ( l, less_than<int>(10));
test_sequence ( l, less_than<int>(99)); // all elements satisfy
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2011-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <iostream>
#include <boost/config.hpp>
#include <boost/algorithm/cxx11/partition_point.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <string>
#include <vector>
#include <list>
namespace ba = boost::algorithm;
// namespace ba = boost;
template <typename Container>
typename Container::iterator offset_to_iter ( Container &v, int offset ) {
typename Container::iterator retval;
if ( offset >= 0 ) {
retval = v.begin ();
std::advance ( retval, offset );
}
else {
retval = v.end ();
std::advance ( retval, offset + 1 );
}
return retval;
}
template <typename Container, typename Predicate>
void test_sequence ( Container &v, Predicate comp, int expected ) {
typename Container::iterator res, exp;
res = ba::partition_point ( v.begin (), v.end (), comp );
exp = offset_to_iter ( v, expected );
std::cout << "Expected(1): " << std::distance ( v.begin (), exp )
<< ", got: " << std::distance ( v.begin (), res ) << std::endl;
BOOST_CHECK ( exp == res );
// Duplicate the last element; this checks for any even/odd problems
v.push_back ( * v.rbegin ());
res = ba::partition_point ( v.begin (), v.end (), comp );
exp = offset_to_iter ( v, expected );
std::cout << "Expected(2): " << std::distance ( v.begin (), exp )
<< ", got: " << std::distance ( v.begin (), res ) << std::endl;
BOOST_CHECK ( exp == res );
}
template <typename T>
struct less_than {
public:
less_than ( T foo ) : val ( foo ) {}
less_than ( const less_than &rhs ) : val ( rhs.val ) {}
bool operator () ( const T &v ) const { return v < val; }
private:
less_than ();
less_than operator = ( const less_than &rhs );
T val;
};
void test_sequence1 () {
std::vector<int> v;
v.clear ();
for ( int i = 5; i < 15; ++i )
v.push_back ( i );
test_sequence ( v, less_than<int>(3), 0 ); // no elements
test_sequence ( v, less_than<int>(6), 1 ); // only the first element
test_sequence ( v, less_than<int>(10), 5 );
test_sequence ( v, less_than<int>(99), -1 ); // all elements satisfy
// With bidirectional iterators.
std::list<int> l;
for ( int i = 5; i < 15; ++i )
l.push_back ( i );
test_sequence ( l, less_than<int>(3), 0 ); // no elements
test_sequence ( l, less_than<int>(6), 1 ); // only the first element
test_sequence ( l, less_than<int>(10), 5 );
test_sequence ( l, less_than<int>(99), -1 ); // all elements satisfy
}
int test_main( int , char* [] )
{
test_sequence1 ();
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <vector>
#include <boost/algorithm/searching/boyer_moore.hpp>
int main( int argc, char *argv [] )
{
std::vector<char> cv;
std::vector<int> iv;
// Should fail to compile because the underlying types are different
// They are (almost certainly) different sizes
(void) boost::algorithm::boyer_moore_search (
cv.begin (), cv.end (), iv.begin (), iv.end ());
(void) argv; (void) argc;
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <vector>
#include <boost/cstdint.hpp>
#include <boost/algorithm/searching/boyer_moore.hpp>
int main( int argc, char *argv [] )
{
std::vector<boost::uint8_t> cv;
std::vector<boost:: int8_t> iv;
// Should fail to compile because the underlying types are different
// They are the same size, but one is signed, and the other is not.
(void) boost::algorithm::boyer_moore_search (
cv.begin (), cv.end (), iv.begin (), iv.end ());
(void) argv; (void) argc;
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <vector>
#include <boost/algorithm/searching/boyer_moore.hpp>
int main( int argc, char *argv [] )
{
// Should fail to compile because the search objects are not default-constructible
boost::algorithm::boyer_moore<std::vector<char>::iterator> bm;
(void) argv; (void) argc;
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/algorithm/searching/boyer_moore.hpp>
#include <boost/algorithm/searching/boyer_moore_horspool.hpp>
#include <boost/algorithm/searching/knuth_morris_pratt.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <iostream>
#include <string>
#include <vector>
namespace ba = boost::algorithm;
template <typename Iter>
std::string make_str ( Iter first, std::size_t len ) {
std::string retVal ( len + 2, '\'' );
std::copy ( first, first+len, retVal.begin () + 1);
return retVal;
}
namespace {
// Check using iterators
template<typename Container>
void check_one_iter ( const Container &haystack, const std::string &needle, int expected ) {
typedef typename Container::const_iterator iter_type;
typedef std::string::const_iterator pattern_type;
iter_type hBeg = haystack.begin ();
iter_type hEnd = haystack.end ();
pattern_type nBeg = needle.begin ();
pattern_type nEnd = needle.end ();
iter_type it0 = std::search (hBeg, hEnd, nBeg, nEnd);
iter_type it1 = ba::boyer_moore_search (hBeg, hEnd, nBeg, nEnd);
iter_type it1r = ba::boyer_moore_search (haystack, nBeg, nEnd);
iter_type it2 = ba::boyer_moore_horspool_search (hBeg, hEnd, nBeg, nEnd);
iter_type it3 = ba::knuth_morris_pratt_search (hBeg, hEnd, nBeg, nEnd);
const int dist = it1 == hEnd ? -1 : std::distance ( hBeg, it1 );
std::cout << "(Iterators) Pattern is " << needle.length () << ", haysstack is " << haystack.length () << " chars long; " << std::endl;
try {
if ( it0 != it1 ) {
throw std::runtime_error (
std::string ( "results mismatch between std::search and boyer-moore search" ));
}
if ( it1 != it1r ) {
throw std::runtime_error (
std::string ( "results mismatch between iterator and range boyer_moore search" ));
}
if ( it1 != it2 ) {
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and boyer-moore-horspool search" ));
}
if ( it1 != it3 )
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and knuth-morris-pratt search" ));
}
catch ( ... ) {
std::cout << "Searching for: " << needle << std::endl;
std::cout << "Expected: " << expected << "\n";
std::cout << " std: " << std::distance ( hBeg, it0 ) << "\n";
std::cout << " bm: " << std::distance ( hBeg, it1 ) << "\n";
std::cout << " bm(r): " << std::distance ( hBeg, it1r ) << "\n";
std::cout << " bmh: " << std::distance ( hBeg, it2 ) << "\n";
std::cout << " kpm: " << std::distance ( hBeg, it3 )<< "\n";
std::cout << std::flush;
throw ;
}
BOOST_CHECK_EQUAL ( dist, expected );
}
// Check using pointers
// We're assuming that the container implements contiguous storage here.
template<typename Container>
void check_one_pointer ( const Container &haystack, const std::string &needle, int expected ) {
typedef const typename Container::value_type *ptr_type;
ptr_type hBeg = haystack.size () == 0 ? NULL : &*haystack.begin ();
ptr_type hEnd = hBeg + haystack.size ();
ptr_type nBeg = needle.size () == 0 ? NULL : &*needle.begin ();
ptr_type nEnd = nBeg + needle.size ();
ptr_type it0 = std::search (hBeg, hEnd, nBeg, nEnd);
ptr_type it1 = ba::boyer_moore_search (hBeg, hEnd, nBeg, nEnd);
ptr_type it2 = ba::boyer_moore_horspool_search (hBeg, hEnd, nBeg, nEnd);
ptr_type it3 = ba::knuth_morris_pratt_search (hBeg, hEnd, nBeg, nEnd);
const int dist = it1 == hEnd ? -1 : std::distance ( hBeg, it1 );
std::cout << "(Pointers) Pattern is " << needle.length () << ", haysstack is " << haystack.length () << " chars long; " << std::endl;
try {
if ( it0 != it1 ) {
throw std::runtime_error (
std::string ( "results mismatch between std::search and boyer-moore search" ));
}
if ( it1 != it2 ) {
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and boyer-moore-horspool search" ));
}
if ( it1 != it3 )
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and knuth-morris-pratt search" ));
}
catch ( ... ) {
std::cout << "Searching for: " << needle << std::endl;
std::cout << "Expected: " << expected << "\n";
std::cout << " std: " << std::distance ( hBeg, it0 ) << "\n";
std::cout << " bm: " << std::distance ( hBeg, it1 ) << "\n";
std::cout << " bmh: " << std::distance ( hBeg, it2 ) << "\n";
std::cout << " kpm: " << std::distance ( hBeg, it3 )<< "\n";
std::cout << std::flush;
throw ;
}
BOOST_CHECK_EQUAL ( dist, expected );
}
// Check using objects
template<typename Container>
void check_one_object ( const Container &haystack, const std::string &needle, int expected ) {
typedef typename Container::const_iterator iter_type;
typedef std::string::const_iterator pattern_type;
iter_type hBeg = haystack.begin ();
iter_type hEnd = haystack.end ();
pattern_type nBeg = needle.begin ();
pattern_type nEnd = needle.end ();
ba::boyer_moore<pattern_type> bm_r = ba::make_boyer_moore ( needle );
ba::boyer_moore<pattern_type> bm ( nBeg, nEnd );
ba::boyer_moore_horspool<pattern_type> bmh ( nBeg, nEnd );
ba::knuth_morris_pratt<pattern_type> kmp ( nBeg, nEnd );
iter_type it0 = std::search (hBeg, hEnd, nBeg, nEnd);
iter_type it1 = bm (hBeg, hEnd);
iter_type it1r = bm (haystack);
iter_type rt1 = bm_r (hBeg, hEnd);
iter_type rt1r = bm_r (haystack);
iter_type it2 = bmh (hBeg, hEnd);
iter_type it3 = kmp (hBeg, hEnd);
const int dist = it1 == hEnd ? -1 : std::distance ( hBeg, it1 );
std::cout << "(Objects) Pattern is " << needle.length () << ", haysstack is " << haystack.length () << " chars long; " << std::endl;
try {
if ( it0 != it1 ) {
throw std::runtime_error (
std::string ( "results mismatch between std::search and boyer-moore search" ));
}
if ( it1 != it1r ) {
throw std::runtime_error (
std::string ( "results mismatch between iterator and range boyer_moore search(1)" ));
}
if ( it1 != rt1 ) {
throw std::runtime_error (
std::string ( "results mismatch between iterator and range boyer_moore search(2)" ));
}
if ( rt1 != rt1r ) {
throw std::runtime_error (
std::string ( "results mismatch between iterator and range boyer_moore search(3)" ));
}
if ( it1 != it2 ) {
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and boyer-moore-horspool search" ));
}
if ( it1 != it3 )
throw std::runtime_error (
std::string ( "results mismatch between boyer-moore and knuth-morris-pratt search" ));
}
catch ( ... ) {
std::cout << "Searching for: " << needle << std::endl;
std::cout << "Expected: " << expected << "\n";
std::cout << " std: " << std::distance ( hBeg, it0 ) << "\n";
std::cout << " bm: " << std::distance ( hBeg, it1 ) << "\n";
std::cout << " bm(r1): " << std::distance ( hBeg, it1r ) << "\n";
std::cout << " bm(r2): " << std::distance ( hBeg, rt1 ) << "\n";
std::cout << " bm(r3): " << std::distance ( hBeg, rt1r ) << "\n";
std::cout << " bmh: " << std::distance ( hBeg, it2 ) << "\n";
std::cout << " kpm: " << std::distance ( hBeg, it3 )<< "\n";
std::cout << std::flush;
throw ;
}
BOOST_CHECK_EQUAL ( dist, expected );
}
template<typename Container>
void check_one ( const Container &haystack, const std::string &needle, int expected ) {
check_one_iter ( haystack, needle, expected );
check_one_pointer ( haystack, needle, expected );
check_one_object ( haystack, needle, expected );
}
}
int test_main( int , char* [] )
{
std::string haystack1 ( "NOW AN FOWE\220ER ANNMAN THE ANPANMANEND" );
std::string needle1 ( "ANPANMAN" );
std::string needle2 ( "MAN THE" );
std::string needle3 ( "WE\220ER" );
std::string needle4 ( "NOW " ); // At the beginning
std::string needle5 ( "NEND" ); // At the end
std::string needle6 ( "NOT FOUND" ); // Nowhere
std::string needle7 ( "NOT FO\340ND" ); // Nowhere
std::string haystack2 ( "ABC ABCDAB ABCDABCDABDE" );
std::string needle11 ( "ABCDABD" );
std::string haystack3 ( "abra abracad abracadabra" );
std::string needle12 ( "abracadabra" );
std::string needle13 ( "" );
std::string haystack4 ( "" );
check_one ( haystack1, needle1, 26 );
check_one ( haystack1, needle2, 18 );
check_one ( haystack1, needle3, 9 );
check_one ( haystack1, needle4, 0 );
check_one ( haystack1, needle5, 33 );
check_one ( haystack1, needle6, -1 );
check_one ( haystack1, needle7, -1 );
check_one ( needle1, haystack1, -1 ); // cant find long pattern in short corpus
check_one ( haystack1, haystack1, 0 ); // find something in itself
check_one ( haystack2, haystack2, 0 ); // find something in itself
check_one ( haystack2, needle11, 15 );
check_one ( haystack3, needle12, 13 );
check_one ( haystack1, needle13, 0 ); // find the empty string
check_one ( haystack4, needle1, -1 ); // can't find in an empty haystack
// Mikhail Levin <svarneticist@gmail.com> found a problem, and this was the test
// that triggered it.
const std::string mikhail_pattern =
"GATACACCTACCTTCACCAGTTACTCTATGCACTAGGTGCGCCAGGCCCATGCACAAGGGCTTGAGTGGATGGGAAGGA"
"TGTGCCCTAGTGATGGCAGCATAAGCTACGCAGAGAAGTTCCAGGGCAGAGTCACCATGACCAGGGACACATCCACGAG"
"CACAGCCTACATGGAGCTGAGCAGCCTGAGATCTGAAGACACGGCCATGTATTACTGTGGGAGAGATGTCTGGAGTGGT"
"TATTATTGCCCCGGTAATATTACTACTACTACTACTACATGGACGTCTGGGGCAAAGGGACCACG"
;
const std::string mikhail_corpus = std::string (8, 'a') + mikhail_pattern;
check_one ( mikhail_corpus, mikhail_pattern, 8 );
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/algorithm/searching/boyer_moore.hpp>
#include <boost/algorithm/searching/boyer_moore_horspool.hpp>
#include <boost/algorithm/searching/knuth_morris_pratt.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <iostream>
#include <algorithm>
#include <vector>
typedef std::vector<char> vec;
#define NUM_TRIES 100
#define runOne(call, refDiff) { \
std::clock_t bTime, eTime; \
bTime = std::clock (); \
for ( i = 0; i < NUM_TRIES; ++i ) { \
res = boost::algorithm::call \
( haystack.begin (), haystack.end (), \
needle.begin (), needle.end ()); \
if ( res != exp ) { \
std::cout << "On run # " << i << " expected " \
<< exp - haystack.begin () << " got " \
<< res - haystack.begin () << std::endl; \
throw std::runtime_error \
( "Unexpected result from " #call ); \
} \
} \
eTime = std::clock (); \
printRes ( #call, eTime - bTime, refDiff ); }
#define runObject(obj, refDiff) { \
std::clock_t bTime, eTime; \
bTime = std::clock (); \
boost::algorithm::obj <vec::const_iterator> \
s_o ( needle.begin (), needle.end ()); \
for ( i = 0; i < NUM_TRIES; ++i ) { \
res = s_o ( haystack.begin (), haystack.end ()); \
if ( res != exp ) { \
std::cout << "On run # " << i << " expected " \
<< exp - haystack.begin () << " got " \
<< res - haystack.begin () << std::endl; \
throw std::runtime_error \
( "Unexpected result from " #obj " object" ); \
} \
} \
eTime = std::clock (); \
printRes ( #obj " object", eTime - bTime, refDiff ); }
namespace {
vec ReadFromFile ( const char *name ) {
std::ifstream in ( name, std::ios_base::binary | std::ios_base::in );
vec retVal;
std::istream_iterator<char, char> begin(in);
std::istream_iterator<char, char> end;
std::copy ( begin, end, std::back_inserter ( retVal ));
return retVal;
}
void printRes ( const char *prompt, unsigned long diff, unsigned long stdDiff ) {
std::cout
<< std::setw(34) << prompt << " "
<< std::setw(6) << ( 1.0 * diff) / CLOCKS_PER_SEC << " seconds\t"
<< std::setw(5) << (100.0 * diff) / stdDiff << "% \t"
<< std::setw(12) << diff;
if ( diff > stdDiff )
std::cout << " !!";
std::cout << std::endl;
}
void check_one ( const vec &haystack, const vec &needle, int expected ) {
std::size_t i;
std::clock_t sTime;
unsigned long stdDiff;
vec::const_iterator res;
vec::const_iterator exp; // the expected result
if ( expected >= 0 )
exp = haystack.begin () + expected;
else if ( expected == -1 )
exp = haystack.end (); // we didn't find it!
else if ( expected == -2 )
exp = std::search ( haystack.begin (), haystack.end (), needle.begin (), needle.end ());
else
throw std::logic_error ( "Expected must be -2, -1, or >= 0" );
std::cout << "Pattern is " << needle.size () << " entries long" << std::endl;
std::cout << "Corpus is " << haystack.size () << " entries long" << std::endl;
// First, the std library search
sTime = std::clock ();
for ( i = 0; i < NUM_TRIES; ++i ) {
res = std::search ( haystack.begin (), haystack.end (), needle.begin (), needle.end ());
if ( res != exp ) {
std::cout << "On run # " << i << " expected " << exp - haystack.begin () << " got " << res - haystack.begin () << std::endl;
throw std::runtime_error ( "Unexpected result from std::search" );
}
}
stdDiff = std::clock () - sTime;
printRes ( "std::search", stdDiff, stdDiff );
runOne ( boyer_moore_search, stdDiff );
runObject ( boyer_moore, stdDiff );
runOne ( boyer_moore_horspool_search, stdDiff );
runObject ( boyer_moore_horspool, stdDiff );
runOne ( knuth_morris_pratt_search, stdDiff );
runObject ( knuth_morris_pratt, stdDiff );
}
}
int test_main( int , char* [] )
{
vec c1 = ReadFromFile ( "search_test_data/0001.corpus" );
vec p1b = ReadFromFile ( "search_test_data/0001b.pat" );
vec p1e = ReadFromFile ( "search_test_data/0001e.pat" );
vec p1n = ReadFromFile ( "search_test_data/0001n.pat" );
vec p1f = ReadFromFile ( "search_test_data/0001f.pat" );
std::cout << std::ios::fixed << std::setprecision(4);
// std::cout << "Corpus is " << c1.size () << " entries long\n";
std::cout << "--- Beginning ---" << std::endl;
check_one ( c1, p1b, 0 ); // Find it at position zero
std::cout << "---- Middle -----" << std::endl;
check_one ( c1, p1f, -2 ); // Don't know answer
std::cout << "------ End ------" << std::endl;
check_one ( c1, p1e, c1.size() - p1e.size ());
std::cout << "--- Not found ---" << std::endl;
check_one ( c1, p1n, -1 ); // Not found
return 0;
}

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/*
Copyright (c) Marshall Clow 2010-2012.
Distributed under the Boost Software License, Version 1.0. (See accompanying
file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
For more information, see http://www.boost.org
*/
#include <boost/algorithm/searching/boyer_moore.hpp>
#include <boost/algorithm/searching/boyer_moore_horspool.hpp>
#include <boost/algorithm/searching/knuth_morris_pratt.hpp>
#include <boost/test/included/test_exec_monitor.hpp>
#include <iostream>
#include <algorithm>
#include <vector>
#include <string>
typedef std::vector<std::string> vec;
#define NUM_TRIES 100
#define runOne(call, refDiff) { \
std::clock_t bTime, eTime; \
bTime = std::clock (); \
for ( i = 0; i < NUM_TRIES; ++i ) { \
res = boost::algorithm::call \
( haystack.begin (), haystack.end (), \
needle.begin (), needle.end ()); \
if ( res != exp ) { \
std::cout << "On run # " << i << " expected " \
<< exp - haystack.begin () << " got " \
<< res - haystack.begin () << std::endl; \
throw std::runtime_error \
( "Unexpected result from " #call ); \
} \
} \
eTime = std::clock (); \
printRes ( #call, eTime - bTime, refDiff ); }
#define runObject(obj, refDiff) { \
std::clock_t bTime, eTime; \
bTime = std::clock (); \
boost::algorithm::obj <vec::const_iterator> \
s_o ( needle.begin (), needle.end ()); \
for ( i = 0; i < NUM_TRIES; ++i ) { \
res = s_o ( haystack.begin (), haystack.end ()); \
if ( res != exp ) { \
std::cout << "On run # " << i << " expected " \
<< exp - haystack.begin () << " got " \
<< res - haystack.begin () << std::endl; \
throw std::runtime_error \
( "Unexpected result from " #obj " object" ); \
} \
} \
eTime = std::clock (); \
printRes ( #obj " object", eTime - bTime, refDiff ); }
namespace {
vec ReadFromFile ( const char *name ) {
std::ifstream in ( name, std::ios_base::binary | std::ios_base::in );
std::string temp;
vec retVal;
while ( std::getline ( in, temp ))
retVal.push_back ( temp );
return retVal;
}
void printRes ( const char *prompt, unsigned long diff, unsigned long stdDiff ) {
std::cout
<< std::setw(34) << prompt << " "
<< std::setw(6) << ( 1.0 * diff) / CLOCKS_PER_SEC << " seconds\t"
<< std::setw(5) << (100.0 * diff) / stdDiff << "% \t"
<< std::setw(12) << diff;
if ( diff > stdDiff )
std::cout << " !!";
std::cout << std::endl;
}
void check_one ( const vec &haystack, const vec &needle, int expected ) {
std::size_t i;
std::clock_t sTime;
unsigned long stdDiff;
vec::const_iterator res;
vec::const_iterator exp; // the expected result
if ( expected >= 0 )
exp = haystack.begin () + expected;
else if ( expected == -1 )
exp = haystack.end (); // we didn't find it1
else if ( expected == -2 )
exp = std::search ( haystack.begin (), haystack.end (), needle.begin (), needle.end ());
else
throw std::logic_error ( "Expected must be -2, -1, or >= 0" );
std::cout << "Pattern is " << needle.size () << " entries long" << std::endl;
std::cout << "Corpus is " << haystack.size () << " entries long" << std::endl;
// First, the std library search
sTime = std::clock ();
for ( i = 0; i < NUM_TRIES; ++i ) {
res = std::search ( haystack.begin (), haystack.end (), needle.begin (), needle.end ());
if ( res != exp ) {
std::cout << "On run # " << i << " expected " << exp - haystack.begin () << " got " << res - haystack.begin () << std::endl;
throw std::runtime_error ( "Unexpected result from std::search" );
}
}
stdDiff = std::clock () - sTime;
printRes ( "std::search", stdDiff, stdDiff );
runOne ( boyer_moore_search, stdDiff );
runObject ( boyer_moore, stdDiff );
runOne ( boyer_moore_horspool_search, stdDiff );
runObject ( boyer_moore_horspool, stdDiff );
runOne ( knuth_morris_pratt_search, stdDiff );
runObject ( knuth_morris_pratt, stdDiff );
}
}
int test_main( int , char* [] )
{
vec c1 = ReadFromFile ( "search_test_data/0001.corpus" );
vec p1b = ReadFromFile ( "search_test_data/0002b.pat" );
vec p1e = ReadFromFile ( "search_test_data/0002e.pat" );
vec p1n = ReadFromFile ( "search_test_data/0002n.pat" );
vec p1f = ReadFromFile ( "search_test_data/0002f.pat" );
std::cout << std::ios::fixed << std::setprecision(4);
// std::cout << "Corpus is " << c1.size () << " entries long\n";
std::cout << "--- Beginning ---" << std::endl;
check_one ( c1, p1b, 0 ); // Find it at position zero
std::cout << "---- Middle -----" << std::endl;
check_one ( c1, p1f, -2 ); // Don't know answer
std::cout << "------ End ------" << std::endl;
check_one ( c1, p1e, c1.size() - p1e.size ());
std::cout << "--- Not found ---" << std::endl;
check_one ( c1, p1n, -1 ); // Not found
return 0;
}

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