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6 Commits

Author SHA1 Message Date
Beman Dawes
bcd24426ff Release 1.29.0 beta 1
[SVN r52601]
2009-04-26 12:32:35 +00:00
Daniel James
2f2935f07e Merged revisions 45283,48266 via svnmerge from
https://svn.boost.org/svn/boost/trunk

........
  r45283 | danieljames | 2008-05-11 14:49:20 +0100 (Sun, 11 May 2008) | 1 line
  
  Quote href values - our tools don't support unquoted values.
........
  r48266 | danieljames | 2008-08-20 20:32:23 +0100 (Wed, 20 Aug 2008) | 1 line
  
  Fix the link to the limits documentation.
........


[SVN r51902]
2009-03-22 17:30:02 +00:00
John Maddock
3cbaafc27f Merge PDF build changes from Trunk.
[SVN r51417]
2009-02-23 18:39:32 +00:00
Steven Watanabe
c067b348bf Merge [51045] from the trunk
[SVN r51226]
2009-02-12 18:47:06 +00:00
Troy D. Straszheim
c33935fa1f merge of cmake build files from trunk per beman
[SVN r50756]
2009-01-24 18:57:20 +00:00
Pavol Droba
98a8b08afb Memory management fixes for is_any_of predicate merged from the trunk
[SVN r49172]
2008-10-07 21:59:57 +00:00
8 changed files with 140 additions and 37 deletions

20
CMakeLists.txt Normal file
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@@ -0,0 +1,20 @@
#----------------------------------------------------------------------------
# This file was automatically generated from the original CMakeLists.txt file
# Add a variable to hold the headers for the library
set (lib_headers
algorithm
)
# Add a library target to the build system
boost_library_project(
algorithm
# SRCDIRS
TESTDIRS minmax/test string/test
HEADERS ${lib_headers}
# DOCDIRS
DESCRIPTION "A library of various algorithms."
MODULARIZED
AUTHORS "Pavol Droba <droba -at- topmail.sk>"
"Herve Bronnimann <hbr -at- poly.edu>"
# MAINTAINERS
)

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@@ -28,11 +28,7 @@ namespace boost {
// classification functors -----------------------------------------------// // classification functors -----------------------------------------------//
#if BOOST_WORKAROUND(BOOST_MSVC, >= 1400) // is_classified functor
#pragma warning(push)
#pragma warning(disable:4512) //assignment operator could not be generated
#endif
// is_classified functor
struct is_classifiedF : struct is_classifiedF :
public predicate_facade<is_classifiedF> public predicate_facade<is_classifiedF>
{ {
@@ -42,7 +38,6 @@ namespace boost {
// Constructor from a locale // Constructor from a locale
is_classifiedF(std::ctype_base::mask Type, std::locale const & Loc = std::locale()) : is_classifiedF(std::ctype_base::mask Type, std::locale const & Loc = std::locale()) :
m_Type(Type), m_Locale(Loc) {} m_Type(Type), m_Locale(Loc) {}
// Operation // Operation
template<typename CharT> template<typename CharT>
bool operator()( CharT Ch ) const bool operator()( CharT Ch ) const
@@ -59,13 +54,10 @@ namespace boost {
#endif #endif
private: private:
const std::ctype_base::mask m_Type; std::ctype_base::mask m_Type;
const std::locale m_Locale; std::locale m_Locale;
}; };
#if BOOST_WORKAROUND(BOOST_MSVC, >= 1400)
#pragma warning(pop)
#endif
// is_any_of functor // is_any_of functor
/* /*
@@ -77,9 +69,7 @@ namespace boost {
{ {
private: private:
// set cannot operate on const value-type // set cannot operate on const value-type
typedef typename remove_const<CharT>::type set_value_type; typedef typename ::boost::remove_const<CharT>::type set_value_type;
// Size of the static storage (size of pointer*2)
static const ::std::size_t FIXED_STORAGE_SIZE = sizeof(set_value_type*)*2;
public: public:
// Boost.Lambda support // Boost.Lambda support
@@ -96,7 +86,7 @@ namespace boost {
m_Size=Size; m_Size=Size;
set_value_type* Storage=0; set_value_type* Storage=0;
if(m_Size<=FIXED_STORAGE_SIZE) if(use_fixed_storage(m_Size))
{ {
// Use fixed storage // Use fixed storage
Storage=&m_Storage.m_fixSet[0]; Storage=&m_Storage.m_fixSet[0];
@@ -121,7 +111,7 @@ namespace boost {
const set_value_type* SrcStorage=0; const set_value_type* SrcStorage=0;
set_value_type* DestStorage=0; set_value_type* DestStorage=0;
if(m_Size<=FIXED_STORAGE_SIZE) if(use_fixed_storage(m_Size))
{ {
// Use fixed storage // Use fixed storage
DestStorage=&m_Storage.m_fixSet[0]; DestStorage=&m_Storage.m_fixSet[0];
@@ -142,36 +132,80 @@ namespace boost {
// Destructor // Destructor
~is_any_ofF() ~is_any_ofF()
{ {
if(m_Size>FIXED_STORAGE_SIZE && m_Storage.m_dynSet!=0) if(!use_fixed_storage(m_Size) && m_Storage.m_dynSet!=0)
{ {
delete m_Storage.m_dynSet; delete [] m_Storage.m_dynSet;
} }
} }
// Assignment // Assignment
is_any_ofF& operator=(const is_any_ofF& Other) is_any_ofF& operator=(const is_any_ofF& Other)
{ {
// Prepare storage // Handle self assignment
m_Storage.m_dynSet=0; if(this==&Other) return *this;
m_Size=Other.m_Size;
const set_value_type* SrcStorage=0;
set_value_type* DestStorage=0;
if(m_Size<=FIXED_STORAGE_SIZE) // Prepare storage
const set_value_type* SrcStorage;
set_value_type* DestStorage;
if(use_fixed_storage(Other.m_Size))
{ {
// Use fixed storage // Use fixed storage
DestStorage=&m_Storage.m_fixSet[0]; DestStorage=&m_Storage.m_fixSet[0];
SrcStorage=&Other.m_Storage.m_fixSet[0]; SrcStorage=&Other.m_Storage.m_fixSet[0];
// Delete old storage if was present
if(!use_fixed_storage(m_Size) && m_Storage.m_dynSet!=0)
{
delete [] m_Storage.m_dynSet;
}
// Set new size
m_Size=Other.m_Size;
} }
else else
{ {
// Use dynamic storage // Other uses dynamic storage
m_Storage.m_dynSet=new set_value_type[m_Size];
DestStorage=m_Storage.m_dynSet;
SrcStorage=Other.m_Storage.m_dynSet; SrcStorage=Other.m_Storage.m_dynSet;
// Check what kind of storage are we using right now
if(use_fixed_storage(m_Size))
{
// Using fixed storage, allocate new
set_value_type* pTemp=new set_value_type[Other.m_Size];
DestStorage=pTemp;
m_Storage.m_dynSet=pTemp;
m_Size=Other.m_Size;
}
else
{
// Using dynamic storage, check if can reuse
if(m_Storage.m_dynSet!=0 && m_Size>=Other.m_Size && m_Size<Other.m_Size*2)
{
// Reuse the current storage
DestStorage=m_Storage.m_dynSet;
m_Size=Other.m_Size;
}
else
{
// Allocate the new one
set_value_type* pTemp=new set_value_type[Other.m_Size];
DestStorage=pTemp;
// Delete old storage if necessary
if(m_Storage.m_dynSet!=0)
{
delete [] m_Storage.m_dynSet;
}
// Store the new storage
m_Storage.m_dynSet=pTemp;
// Set new size
m_Size=Other.m_Size;
}
}
} }
// Use fixed storage // Copy the data
::memcpy(DestStorage, SrcStorage, sizeof(set_value_type)*m_Size); ::memcpy(DestStorage, SrcStorage, sizeof(set_value_type)*m_Size);
return *this; return *this;
@@ -182,12 +216,19 @@ namespace boost {
bool operator()( Char2T Ch ) const bool operator()( Char2T Ch ) const
{ {
const set_value_type* Storage= const set_value_type* Storage=
(m_Size<=FIXED_STORAGE_SIZE) (use_fixed_storage(m_Size))
? &m_Storage.m_fixSet[0] ? &m_Storage.m_fixSet[0]
: m_Storage.m_dynSet; : m_Storage.m_dynSet;
return ::std::binary_search(Storage, Storage+m_Size, Ch); return ::std::binary_search(Storage, Storage+m_Size, Ch);
} }
private:
// check if the size is eligible for fixed storage
static bool use_fixed_storage(std::size_t size)
{
return size<=sizeof(set_value_type*)*2;
}
private: private:
// storage // storage
@@ -195,7 +236,7 @@ namespace boost {
union union
{ {
set_value_type* m_dynSet; set_value_type* m_dynSet;
set_value_type m_fixSet[FIXED_STORAGE_SIZE]; set_value_type m_fixSet[sizeof(set_value_type*)*2];
} }
m_Storage; m_Storage;

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@@ -56,7 +56,7 @@ be enough. The present library solves both problems.</p>
<tt>minmax</tt> <tt>minmax</tt>
as straightforward extensions of the C++ as straightforward extensions of the C++
standard. As it returns a pair of <tt>const&amp;</tt>, we must use the <a standard. As it returns a pair of <tt>const&amp;</tt>, we must use the <a
href=:../../../../tuple/index.html>Boost.tuple</a> library to construct such href="../../tuple/index.html">Boost.tuple</a> library to construct such
pairs. (Please note: the intent is not to fix the known defaults of pairs. (Please note: the intent is not to fix the known defaults of
<tt>std::min</tt> <tt>std::min</tt>
and <tt>std::max</tt>, but to add one more algorithms that combines both; see the and <tt>std::max</tt>, but to add one more algorithms that combines both; see the
@@ -158,9 +158,9 @@ identical to
that they return the last instance of the largest element (and not the that they return the last instance of the largest element (and not the
first, as <tt>first_min_element</tt> and <tt>last_max_element</tt> would). first, as <tt>first_min_element</tt> and <tt>last_max_element</tt> would).
<p>The family of algorithms comprising <tt>first_min_first_max_element</tt>, <p>The family of algorithms comprising <tt>first_min_first_max_element</tt>,
<tt>first_min_first_max_element</tt>, <tt>first_min_last_max_element</tt>,
<tt>first_min_first_max_element</tt>, <tt>last_min_first_max_element</tt>,
and <tt>first_min_first_max_element</tt> can be described generically as and <tt>last_min_last_max_element</tt> can be described generically as
follows (using <i><tt>which</tt></i> and follows (using <i><tt>which</tt></i> and
<i><tt>what</tt></i> for <tt>first</tt> <i><tt>what</tt></i> for <tt>first</tt>
or <tt>last</tt>): <tt><i>which</i>_min_<i>what</i>_max_element</tt> finds or <tt>last</tt>): <tt><i>which</i>_min_<i>what</i>_max_element</tt> finds

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@@ -0,0 +1,4 @@
boost_additional_test_dependencies(algorithm BOOST_DEPENDS test)
boost_test_run(minmax_element_test)
boost_test_run(minmax_test)

4
module.cmake Normal file
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@@ -0,0 +1,4 @@
boost_module(algorithm DEPENDS regex concept_check range)

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@@ -10,7 +10,10 @@
import toolset ; import toolset ;
toolset.using doxygen ; toolset.using doxygen ;
boostbook string_algo : string_algo.xml autodoc ; boostbook string_algo : string_algo.xml autodoc
:
<format>pdf:<xsl:param>boost.url.prefix=http://www.boost.org/doc/libs/release/doc/html
;
doxygen autodoc doxygen autodoc
: :

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@@ -0,0 +1,12 @@
boost_additional_test_dependencies(algorithm BOOST_DEPENDS test)
boost_test_run(trim_test)
boost_test_run(conv_test)
boost_test_run(predicate_test)
boost_test_run(find_test)
boost_test_run(split_test)
boost_test_run(join_test)
boost_test_run(replace_test)
boost_test_run(regex_test DEPENDS boost_regex SHARED)

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@@ -96,10 +96,29 @@ void predicate_test()
} }
template<typename Pred, typename Input>
void test_pred(const Pred& pred, const Input& input, bool bYes)
{
// test assignment operator
Pred pred1=pred;
pred1=pred;
pred1=pred1;
if(bYes)
{
BOOST_CHECK( all( input, pred ) );
BOOST_CHECK( all( input, pred1 ) );
}
else
{
BOOST_CHECK( !all( input, pred ) );
BOOST_CHECK( !all( input, pred1 ) );
}
}
#define TEST_CLASS( Pred, YesInput, NoInput )\ #define TEST_CLASS( Pred, YesInput, NoInput )\
{\ {\
BOOST_CHECK( all( string(YesInput), Pred ) );\ test_pred(Pred, YesInput, true); \
BOOST_CHECK( !all( string(NoInput), Pred ) );\ test_pred(Pred, NoInput, false); \
} }
void classification_test() void classification_test()