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Author SHA1 Message Date
e27d7faaf6 Branch for working on the documentation tools documentation.
[SVN r68640]
2011-02-04 21:18:24 +00:00
12 changed files with 104 additions and 478 deletions

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@ -1,5 +0,0 @@
using boostbook ;
boostbook standalone
: array.xml
: <xsl:param>boost.root=../../../.. ;

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@ -7,10 +7,6 @@
<firstname>Nicolai</firstname>
<surname>Josuttis</surname>
</author>
<maintainer>
<firstname>Marshall</firstname>
<surname>Clow</surname>
</maintainer>
<copyright>
<year>2001</year>
@ -20,11 +16,6 @@
<holder>Nicolai M. Josuttis</holder>
</copyright>
<copyright>
<year>2012</year>
<holder>Marshall Clow</holder>
</copyright>
<legalnotice>
<para>Distributed under the Boost Software License, Version 1.0.
(See accompanying file <filename>LICENSE_1_0.txt</filename> or copy at
@ -79,11 +70,6 @@
Technical Report, which will extend the C++ Standard (see
<ulink url="http://std.dkuug.dk/jtc1/sc22/wg21/docs/papers/2003/n1548.htm">http://std.dkuug.dk/jtc1/sc22/wg21/docs/papers/2003/n1548.htm</ulink>).</para>
<para>Update: <code>std::array</code> is (as of C++11) part of the C++ standard.
The differences between <code>boost::array</code> and <code>std::array</code> are minimal.
If you are using C++11, you should consider using <code>std::array</code> instead of <code>boost::array</code>.
</para>
<para>Class <code><classname>array</classname></code> fulfills most
but not all of the requirements of "reversible containers" (see
Section 23.1, [lib.container.requirements] of the C++
@ -185,24 +171,6 @@
<returns><simpara>iterator for position after the last element</simpara></returns>
<throws><simpara>will not throw</simpara></throws>
</overloaded-method>
<overloaded-method name="cbegin" cv="const">
<signature>
<type>const_iterator</type>
</signature>
<returns><simpara>constant iterator for the first element</simpara></returns>
<throws><simpara>will not throw</simpara></throws>
</overloaded-method>
<overloaded-method name="cend" cv="const">
<signature>
<type>const_iterator</type>
</signature>
<returns><simpara>constant iterator for position after the last element</simpara></returns>
<throws><simpara>will not throw</simpara></throws>
</overloaded-method>
</method-group>
<method-group name="reverse iterator support">
@ -227,24 +195,6 @@
<returns><simpara>reverse iterator for position after the last element in reverse iteration</simpara></returns>
</overloaded-method>
<overloaded-method name="crbegin" cv="const">
<signature>
<type>const_reverse_iterator</type>
</signature>
<returns><simpara>constant reverse iterator for the first element of reverse iteration</simpara></returns>
<throws><simpara>will not throw</simpara></throws>
</overloaded-method>
<overloaded-method name="crend" cv="const">
<signature>
<type>const_reverse_iterator</type>
</signature>
<returns><simpara>constant reverse iterator for position after the last element in reverse iteration</simpara></returns>
<throws><simpara>will not throw</simpara></throws>
</overloaded-method>
</method-group>
<method-group name="capacity">
@ -510,49 +460,6 @@
<returns><simpara><code>!(x &lt; y)</code></simpara></returns>
</function>
</free-function-group>
<free-function-group name="specializations">
<function name="boost::get">
<template>
<template-type-parameter name="T"/>
<template-nontype-parameter name="N">
<type>std::size_t</type>
</template-nontype-parameter>
<template-nontype-parameter name="Idx">
<type>std::size_t</type>
</template-nontype-parameter>
</template>
<type>T</type>
<parameter name="arr">
<paramtype><classname>array</classname>&lt;T, N&gt;&amp;</paramtype>
</parameter>
<returns><simpara>element of array with index <code>Idx</code></simpara></returns>
<effects><simpara>Will <code>static_assert</code> if <code>Idx >= N</code></simpara></effects>
</function>
<function name="boost::get">
<template>
<template-type-parameter name="T"/>
<template-nontype-parameter name="N">
<type>std::size_t</type>
</template-nontype-parameter>
<template-nontype-parameter name="Idx">
<type>std::size_t</type>
</template-nontype-parameter>
</template>
<type>T</type>
<parameter name="arr">
<paramtype>const <classname>array</classname>&lt;T, N&gt;&amp;</paramtype>
</parameter>
<returns><simpara>const element of array with index <code>Idx</code></simpara></returns>
<effects><simpara>Will <code>static_assert</code> if <code>Idx >= N</code></simpara></effects>
</function>
</free-function-group>
</class>
</namespace>
</header>

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@ -13,8 +13,6 @@
* accompanying file LICENSE_1_0.txt or copy at
* http://www.boost.org/LICENSE_1_0.txt)
*
* 9 Jan 2013 - (mtc) Added constexpr
* 14 Apr 2012 - (mtc) Added support for boost::hash
* 28 Dec 2010 - (mtc) Added cbegin and cend (and crbegin and crend) for C++Ox compatibility.
* 10 Mar 2010 - (mtc) fill method added, matching resolution of the standard library working group.
* See <http://www.open-std.org/jtc1/sc22/wg21/docs/lwg-defects.html#776> or Trac issue #3168
@ -43,13 +41,11 @@
#include <cstddef>
#include <stdexcept>
#include <boost/assert.hpp>
#include <boost/static_assert.hpp>
#include <boost/swap.hpp>
// Handles broken standard libraries better than <iterator>
#include <boost/detail/iterator.hpp>
#include <boost/throw_exception.hpp>
#include <boost/functional/hash_fwd.hpp>
#include <algorithm>
// FIXES for broken compilers
@ -122,17 +118,19 @@ namespace boost {
// operator[]
reference operator[](size_type i)
{
return BOOST_ASSERT_MSG( i < N, "out of range" ), elems[i];
BOOST_ASSERT( i < N && "out of range" );
return elems[i];
}
/*BOOST_CONSTEXPR*/ const_reference operator[](size_type i) const
const_reference operator[](size_type i) const
{
return BOOST_ASSERT_MSG( i < N, "out of range" ), elems[i];
BOOST_ASSERT( i < N && "out of range" );
return elems[i];
}
// at() with range check
reference at(size_type i) { return rangecheck(i), elems[i]; }
/*BOOST_CONSTEXPR*/ const_reference at(size_type i) const { return rangecheck(i), elems[i]; }
reference at(size_type i) { rangecheck(i); return elems[i]; }
const_reference at(size_type i) const { rangecheck(i); return elems[i]; }
// front() and back()
reference front()
@ -140,7 +138,7 @@ namespace boost {
return elems[0];
}
BOOST_CONSTEXPR const_reference front() const
const_reference front() const
{
return elems[0];
}
@ -150,15 +148,15 @@ namespace boost {
return elems[N-1];
}
BOOST_CONSTEXPR const_reference back() const
const_reference back() const
{
return elems[N-1];
}
// size is constant
static BOOST_CONSTEXPR size_type size() { return N; }
static BOOST_CONSTEXPR bool empty() { return false; }
static BOOST_CONSTEXPR size_type max_size() { return N; }
static size_type size() { return N; }
static bool empty() { return false; }
static size_type max_size() { return N; }
enum { static_size = N };
// swap (note: linear complexity)
@ -189,8 +187,11 @@ namespace boost {
}
// check range (may be private because it is static)
static BOOST_CONSTEXPR bool rangecheck (size_type i) {
return i > size() ? boost::throw_exception(std::out_of_range ("array<>: index out of range")), true : true;
static void rangecheck (size_type i) {
if (i >= size()) {
std::out_of_range e("array<>: index out of range");
boost::throw_exception(e);
}
}
};
@ -261,14 +262,14 @@ namespace boost {
return failed_rangecheck();
}
/*BOOST_CONSTEXPR*/ const_reference operator[](size_type /*i*/) const
const_reference operator[](size_type /*i*/) const
{
return failed_rangecheck();
}
// at() with range check
reference at(size_type /*i*/) { return failed_rangecheck(); }
/*BOOST_CONSTEXPR*/ const_reference at(size_type /*i*/) const { return failed_rangecheck(); }
const_reference at(size_type /*i*/) const { return failed_rangecheck(); }
// front() and back()
reference front()
@ -276,7 +277,7 @@ namespace boost {
return failed_rangecheck();
}
BOOST_CONSTEXPR const_reference front() const
const_reference front() const
{
return failed_rangecheck();
}
@ -286,15 +287,15 @@ namespace boost {
return failed_rangecheck();
}
BOOST_CONSTEXPR const_reference back() const
const_reference back() const
{
return failed_rangecheck();
}
// size is constant
static BOOST_CONSTEXPR size_type size() { return 0; }
static BOOST_CONSTEXPR bool empty() { return true; }
static BOOST_CONSTEXPR size_type max_size() { return 0; }
static size_type size() { return 0; }
static bool empty() { return true; }
static size_type max_size() { return 0; }
enum { static_size = 0 };
void swap (array<T,0>& /*y*/) {
@ -367,17 +368,17 @@ namespace boost {
}
#if defined(__SUNPRO_CC)
// Trac ticket #4757; the Sun Solaris compiler can't handle
// syntax like 'T(&get_c_array(boost::array<T,N>& arg))[N]'
//
// We can't just use this for all compilers, because the
// borland compilers can't handle this form.
namespace detail {
// Trac ticket #4757; the Sun Solaris compiler can't handle
// syntax like 'T(&get_c_array(boost::array<T,N>& arg))[N]'
//
// We can't just use this for all compilers, because the
// borland compilers can't handle this form.
namespace detail {
template <typename T, std::size_t N> struct c_array
{
typedef T type[N];
};
}
}
// Specific for boost::array: simply returns its elems data member.
template <typename T, std::size_t N>
@ -407,7 +408,7 @@ namespace boost {
return arg.elems;
}
#endif
#if 0
// Overload for std::array, assuming that std::array will have
// explicit conversion functions as discussed at the WG21 meeting
@ -426,43 +427,8 @@ namespace boost {
}
#endif
template<class T, std::size_t N>
std::size_t hash_value(const array<T,N>& arr)
{
return boost::hash_range(arr.begin(), arr.end());
}
template <size_t Idx, typename T, size_t N>
T &get(boost::array<T,N> &arr) BOOST_NOEXCEPT {
BOOST_STATIC_ASSERT_MSG ( Idx < N, "boost::get<>(boost::array &) index out of range" );
return arr[Idx];
}
template <size_t Idx, typename T, size_t N>
const T &get(const boost::array<T,N> &arr) BOOST_NOEXCEPT {
BOOST_STATIC_ASSERT_MSG ( Idx < N, "boost::get<>(const boost::array &) index out of range" );
return arr[Idx];
}
} /* namespace boost */
#ifndef BOOST_NO_CXX11_HDR_ARRAY
// If we don't have std::array, I'm assuming that we don't have std::get
namespace std {
template <size_t Idx, typename T, size_t N>
T &get(boost::array<T,N> &arr) BOOST_NOEXCEPT {
BOOST_STATIC_ASSERT_MSG ( Idx < N, "std::get<>(boost::array &) index out of range" );
return arr[Idx];
}
template <size_t Idx, typename T, size_t N>
const T &get(const boost::array<T,N> &arr) BOOST_NOEXCEPT {
BOOST_STATIC_ASSERT_MSG ( Idx < N, "std::get<>(const boost::array &) index out of range" );
return arr[Idx];
}
}
#endif
#if BOOST_WORKAROUND(BOOST_MSVC, >= 1400)
# pragma warning(pop)

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@ -4,22 +4,12 @@
import testing ;
alias unit_test_framework
: # sources
/boost//unit_test_framework
;
test-suite array :
[ run array0.cpp unit_test_framework : : : : array0 ]
[ run array0.cpp ]
[ run array1.cpp ]
[ run array2.cpp ]
[ run array3.cpp ]
[ run array4.cpp ]
[ run array5.cpp ]
[ run array6.cpp unit_test_framework : : : : array6 ]
[ run array7.cpp unit_test_framework : : : : array7 ]
# [ run array_constexpr.cpp unit_test_framework : : : : array_constexpr ]
[ compile-fail array_getfail1.cpp ]
[ compile-fail array_getfail2.cpp ]
[ run array_hash.cpp unit_test_framework : : : : array_hash ]
[ run array6.cpp ]
;

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@ -9,15 +9,18 @@
#include <iostream>
#include <boost/array.hpp>
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
unsigned int failed_tests = 0;
void fail_test( const char * reason ) {
++failed_tests;
std::cerr << "Test failure " << failed_tests << ": " << reason << std::endl;
}
template< class T >
void BadValue( const T & )
{
BOOST_CHECK ( false );
fail_test( "Unexpected value" );
}
template< class T >
@ -33,24 +36,46 @@ void RunTests()
// front/back and operator[] must compile, but calling them is undefined
// Likewise, all tests below should evaluate to false, avoiding undefined behaviour
BOOST_CHECK ( test_case.empty());
BOOST_CHECK ( const_test_case.empty());
if( !test_case.empty() ) {
BadValue( test_case.front() );
}
BOOST_CHECK ( test_case.size() == 0 );
BOOST_CHECK ( const_test_case.size() == 0 );
if( !const_test_case.empty() ) {
BadValue( const_test_case.back() );
}
if( test_case.size() > 0 ) {
BadValue( test_case[ 0 ] );
}
if( const_test_case.max_size() > 0 ) {
BadValue( const_test_case[ 0 ] );
}
// Assert requirements of TR1 6.2.2.4
BOOST_CHECK ( test_case.begin() == test_case.end());
BOOST_CHECK ( test_case.cbegin() == test_case.cend());
BOOST_CHECK ( const_test_case.begin() == const_test_case.end());
BOOST_CHECK ( const_test_case.cbegin() == const_test_case.cend());
if( test_case.begin() != test_case.end() ) {
fail_test( "Not an empty range" );
}
if( test_case.cbegin() != test_case.cend() ) {
fail_test( "Not an empty range" );
}
if( const_test_case.begin() != const_test_case.end() ) {
fail_test( "Not an empty range" );
}
if( const_test_case.cbegin() != const_test_case.cend() ) {
fail_test( "Not an empty range" );
}
if( test_case.begin() == const_test_case.begin() ) {
fail_test( "iterators for different containers are not distinct" );
}
BOOST_CHECK ( test_case.begin() != const_test_case.begin() );
if( test_case.data() == const_test_case.data() ) {
// Value of data is unspecified in TR1, so no requirement this test pass or fail
// However, it must compile!
}
// Check can safely use all iterator types with std algorithms
std::for_each( test_case.begin(), test_case.end(), BadValue< T > );
std::for_each( test_case.rbegin(), test_case.rend(), BadValue< T > );
@ -62,12 +87,12 @@ void RunTests()
// Check swap is well formed
std::swap( test_case, test_case );
// Check assignment operator and overloads are well formed
// Check assigment operator and overloads are well formed
test_case = const_test_case;
// Confirm at() throws the std lib defined exception
try {
BadValue( test_case.at( 0 ));
BadValue( test_case.at( 0 ) );
} catch ( const std::out_of_range & ) {
}
@ -79,11 +104,12 @@ void RunTests()
}
BOOST_AUTO_TEST_CASE( test_main )
int main()
{
RunTests< bool >();
RunTests< void * >();
RunTests< long double >();
RunTests< std::string >();
return failed_tests;
}

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@ -15,11 +15,12 @@
#include <boost/array.hpp>
#include "print.hpp"
using namespace std;
using namespace boost;
int main()
{
// create and initialize array
boost::array<int,10> a = { { 1, 2, 3, 4, 5 } };
array<int,10> a = { { 1, 2, 3, 4, 5 } };
print_elements(a);

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@ -10,31 +10,39 @@
#include <boost/array.hpp>
#include <algorithm>
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
template< class T >
void RunTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
arr &aRef = get_c_array ( test_case );
BOOST_CHECK ( &*test_case.begin () == &aRef[0] );
const arr &caRef = get_c_array ( test_case );
typename test_type::const_iterator iter = test_case.begin ();
BOOST_CHECK ( &*iter == &caRef[0] );
}
unsigned int failed_tests = 0;
void fail_test( const char * reason ) {
++failed_tests;
std::cerr << "Test failure " << failed_tests << ": " << reason << std::endl;
}
BOOST_AUTO_TEST_CASE( test_main )
template< class T >
void RunTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
arr &aRef = get_c_array ( test_case );
if ( &*test_case.begin () != &aRef[0] )
fail_test ( "Array6: Same thing not equal?(1)" );
const arr &caRef = get_c_array ( test_case );
typename test_type::const_iterator iter = test_case.begin ();
if ( &*iter != &caRef[0] )
fail_test ( "Array6: Same thing not equal?(2)" );
}
}
int main()
{
RunTests< bool >();
RunTests< void * >();
RunTests< long double >();
RunTests< std::string >();
return failed_tests;
}

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@ -1,67 +0,0 @@
/* tests using std::get on boost:array
* (C) Copyright Marshall Clow 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)
*/
#include <string>
#include <iostream>
#include <boost/array.hpp>
#include <algorithm>
#ifndef BOOST_NO_CXX11_HDR_ARRAY
#include <array>
#endif
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
#ifndef BOOST_NO_CXX11_HDR_ARRAY
template< class T >
void RunStdTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
T &aRef = std::get<0> ( test_case );
BOOST_CHECK ( &*test_case.begin () == &aRef );
const T &caRef = std::get<0> ( test_case );
BOOST_CHECK ( &*test_case.cbegin () == &caRef );
}
#endif
template< class T >
void RunBoostTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
T &aRef = boost::get<0> ( test_case );
BOOST_CHECK ( &*test_case.begin () == &aRef );
const T &caRef = boost::get<0> ( test_case );
BOOST_CHECK ( &*test_case.cbegin () == &caRef );
}
}
BOOST_AUTO_TEST_CASE( test_main )
{
RunBoostTests< bool >();
RunBoostTests< void * >();
RunBoostTests< long double >();
RunBoostTests< std::string >();
#ifndef BOOST_NO_CXX11_HDR_ARRAY
RunStdTests< bool >();
RunStdTests< void * >();
RunStdTests< long double >();
RunStdTests< std::string >();
#endif
}

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@ -1,43 +0,0 @@
/* tests using constexpr on boost:array
* (C) Copyright Marshall Clow 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)
*/
#include <string>
#include <iostream>
#include <boost/array.hpp>
#include <algorithm>
#ifndef BOOST_NO_CXX11_HDR_ARRAY
#include <array>
#endif
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
#ifndef BOOST_NO_CXX11_CONSTEXPR
constexpr boost::array<int, 10> arr {{ 0,1,2,3,4,5,6,7,8,9 }};
constexpr std::array<int, 10> arr_std {{ 0,1,2,3,4,5,6,7,8,9 }};
template <typename T>
void sink ( T t ) {}
template <typename T, size_t N>
void sink ( boost::array<T,N> &arr ) {}
BOOST_AUTO_TEST_CASE( test_main )
{
// constexpr int two = arr_std.at (2);
constexpr int three = arr.at (3);
int whatever [ arr.at(4) ];
(void)three;
(void) whatever;
}
#else // no constexpr means no constexpr tests!
BOOST_AUTO_TEST_CASE( test_main )
{
}
#endif

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@ -1,50 +0,0 @@
/* tests using std::get on boost:array
* (C) Copyright Marshall Clow 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)
*/
#include <boost/array.hpp>
#include <boost/static_assert.hpp>
#include <string>
#include <iostream>
#include <algorithm>
#ifndef BOOST_NO_CXX11_HDR_ARRAY
#include <array>
#endif
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
#ifndef BOOST_NO_CXX11_HDR_ARRAY
template< class T >
void RunStdTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
T &aRef = std::get<5> ( test_case ); // should fail to compile
BOOST_CHECK ( &*test_case.begin () == &aRef );
}
#endif
}
BOOST_AUTO_TEST_CASE( test_main )
{
#ifndef BOOST_NO_CXX11_HDR_ARRAY
RunStdTests< bool >();
RunStdTests< void * >();
RunStdTests< long double >();
RunStdTests< std::string >();
#else
BOOST_STATIC_ASSERT ( false ); // fail on C++03 systems.
#endif
}

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@ -1,64 +0,0 @@
/* tests using std::get on boost:array
* (C) Copyright Marshall Clow 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)
*/
#include <string>
#include <iostream>
#include <boost/array.hpp>
#include <algorithm>
#ifndef BOOST_NO_CXX11_HDR_ARRAY
#include <array>
#endif
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
#ifndef BOOST_NO_CXX11_HDR_ARRAY
template< class T >
void RunStdTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
T &aRef = std::get<0> ( test_case );
BOOST_CHECK ( &*test_case.begin () == &aRef );
const T &caRef = std::get<0> ( test_case );
BOOST_CHECK ( &*test_case.cbegin () == &caRef );
}
#endif
template< class T >
void RunBoostTests()
{
typedef boost::array< T, 5 > test_type;
typedef T arr[5];
test_type test_case; // = { 1, 1, 2, 3, 5 };
T &aRef = boost::get<5> ( test_case );
BOOST_CHECK ( &*test_case.begin () == &aRef );
}
}
BOOST_AUTO_TEST_CASE( test_main )
{
RunBoostTests< bool >();
RunBoostTests< void * >();
RunBoostTests< long double >();
RunBoostTests< std::string >();
#ifndef BOOST_NO_CXX11_HDR_ARRAY
RunStdTests< bool >();
RunStdTests< void * >();
RunStdTests< long double >();
RunStdTests< std::string >();
#endif
}

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@ -1,43 +0,0 @@
/* tests for using boost::hash with boost::array
* (C) Copyright Marshall Clow 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)
*/
#include <string>
#include <iostream>
#include <boost/array.hpp>
#include <algorithm>
#include <boost/functional/hash.hpp>
#define BOOST_TEST_MAIN
#include <boost/test/unit_test.hpp>
namespace {
template< class T >
void RunTests()
{
// std::size_t hash0 = boost::hash<boost::array<T,0> > () ( boost::array<T, 0> ());
// std::size_t hash1 = boost::hash<boost::array<T,1> > () ( boost::array<T, 1> ());
typedef boost::array< T, 5 > barr;
typedef T arr[5];
barr test_barr = {{ 1, 1, 2, 3, 5 }};
arr test_arr = { 1, 1, 2, 3, 5 };
std::size_t bhash = boost::hash<barr> () ( test_barr );
std::size_t ahash = boost::hash<arr> () ( test_arr );
BOOST_CHECK ( ahash == bhash );
}
}
BOOST_AUTO_TEST_CASE( test_main )
{
RunTests< int >();
RunTests< long >();
RunTests< long double >();
}