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20 Commits

Author SHA1 Message Date
Robert Ramey 5b87c83419 Merge branch 'develop' into portable_binary_archive 2017-10-06 21:39:52 -07:00
Robert Ramey d21a064a69 corrected mistakes in codecvt_null affecting visibility 2017-10-06 11:54:34 -07:00
Robert Ramey 3d179caaec correct extraneous BOOST_ARCHIVE_DECL 2017-10-05 12:45:32 -07:00
Robert Ramey cd2f77defb Trying to fix three issues
a) appveyor for mingw
b) usage of macros "defined" in iserializer.hpp
c) extra decl... in codecvt_null
d) get_lock not found in singleton.hpp
2017-10-05 11:40:00 -07:00
Robert Ramey 621a3ea8a3 Merge pull request #62 from masterleinad/avoid_dereferencing_nullptr
Avoid dereferencing a nullptr in save_pointer_type::register_type
2017-10-04 22:03:12 -07:00
Robert Ramey 8b4e08490b Merge pull request #63 from masterleinad/fix_appveyor
Fix appveyor setup
2017-10-04 22:02:09 -07:00
Daniel Arndt f44dc8da2c Fix appveyor setup 2017-09-20 17:40:29 +02:00
Daniel Arndt 480a8c94b0 Avoid dereferencing a nullptr in save_pointer_type::register_type 2017-09-20 14:17:14 +02:00
Robert Ramey 2557639490 try to address problem where singleton is dropped by linker 2017-08-13 14:48:20 -07:00
Robert Ramey 932b4221ff Merge pull request #57 from Flast/patch-2
Fixed incorrect slist test.
2017-08-11 06:17:44 -07:00
Robert Ramey a5cb34ff8e Merge pull request #58 from yuri-kilochek/develop
Fix conversion operators of injected primitive types
2017-08-11 06:13:39 -07:00
Robert Ramey 0bccdf6da7 Merge pull request #59 from vtnerd/bugfix/null_pointer_serializer
Fixed bug where pointer iserializer can be NULL
2017-08-11 06:13:13 -07:00
Robert Ramey ad1e1e5d5a attempt to fix mingw failures 2017-08-11 06:12:24 -07:00
Lee Clagett dd09b03d33 Fixed bug where pointer iserializer can be NULL 2017-08-04 23:04:42 -04:00
Yuri Kilochek 96f818ee03 Use archive::object_id_type::base_type as type of archive::object_id_type's conversion operators for consistency with other injected types. 2017-07-25 17:27:51 +03:00
Yuri Kilochek 791f1bde64 Use same type for both input and output conversion operators of archive::class_id_type. 2017-07-25 17:25:00 +03:00
Kohei Takahashi d1ed17a656 Fixed incorrect use of slist, back v.s. front. 2017-07-12 11:39:26 +09:00
Kohei Takahashi 8b7e756746 Fixed incorrect slist test. 2017-07-12 11:10:36 +09:00
Robert Ramey 14f3f5ea77 added files particular to portable_archive 2016-02-15 10:51:46 -08:00
Robert Ramey e15f94a77e minimal changes to see If I can build and add to test_suite portable_archive.
stick for last of to_utf8
2016-02-15 10:42:42 -08:00
46 changed files with 5498 additions and 42 deletions
+5 -3
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@@ -111,7 +111,7 @@ set(Boost_DEBUG true)
set(Boost_DETAILED_FAILURE_MSG true)
set(Boost_FOUND true)
find_package(Boost REQUIRED COMPONENTS system filesystem)
find_package(Boost REQUIRED COMPONENTS system filesystem program_options)
include(CheckIncludeFileCXX)
message(STATUS "Boost_FOUND is ${Boost_FOUND}")
@@ -215,7 +215,8 @@ function(archive_test test_name)
endforeach()
foreach(
archive-name
IN ITEMS text_archive text_warchive binary_archive xml_archive xml_warchive
IN ITEMS portable_archive
# text_archive text_warchive binary_archive xml_archive xml_warchive
)
set(amended_test_name ${test_name}_${archive-name})
message(STATUS ${amended_test_name})
@@ -236,7 +237,8 @@ function(polymorphic_archive_test test_name)
endforeach()
foreach(
archive-name
IN ITEMS text_archive text_warchive binary_archive xml_archive xml_warchive
IN ITEMS portable_archive
# text_archive text_warchive binary_archive xml_archive xml_warchive
)
set(amended_test_name ${test_name}_polymorphic_${archive-name})
message(STATUS ${amended_test_name})
+4 -4
View File
@@ -56,12 +56,12 @@ install:
- git submodule init tools/build
- git submodule update
- xcopy /s /e /q %APPVEYOR_BUILD_FOLDER% libs\serialization
- set PATH=C:\mingw-w64\i686-6.3.0-posix-dwarf-rt_v5-rev1;%PATH%
- bootstrap mingw
- tools\build\v2\b2 headers
- set PATH=C:\mingw-w64\i686-6.3.0-posix-dwarf-rt_v5-rev1\mingw32\bin;%CD%;%PATH%
- bootstrap gcc
- b2 headers
build: off
test_script:
- cd libs/serialization/test
- tools\build\v2\b2 toolset=gcc link=static,shared
- b2 toolset=gcc link=static,shared
+38
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@@ -0,0 +1,38 @@
IMPORTANT:
This is the last release from me as EOS employee. I plan to contribute all of this
work to the official boost libraries distribution and will continue to support users.
Francois Mauger joined me recently and already added a valuable tutorial for you!
Changelog:
07.11.2015 5.1 Small fix to get it running up to 1.59.
26.06.2012 5.0 Ported to boost versions up to 1.49.
Added support for wstring, added tutorial by Francois Mauger.
01.04.2011 4.2 Ported to boost versions up to 1.46.1.
Allow serialization of inf and nan values.
17.12.2009 4.1 Ported to boost versions up to 1.41.
4.0 Changes in inheritance make arrays work.
13.02.2009 3.1 Shared pointer serialization capabilities added
Ported to recent boost versions (up to 1.38)
25.09.2008 3.0 Refactored, fixed and ported to recent boost versions
Archives are now named eos::portable_[io]archive
17.09.2008 2.1 Improved floating point handling and error detection.
Extracted the exception class into an extra file.
28.04.2008 2.0 Major Bugfix resolving negative number collision!
28.11.2007 1.1 Small Bugfix in portable_binary_archive_exception class:
throwing specifiers did not match base class declaration
12.11.2007 1.0 Initial Release to boost-users!
Christian Pfligersdorffer
christian.pfligersdorffer@gmx.at
+56
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@@ -0,0 +1,56 @@
/** tutorial_pba_0.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This quick start example shows how to store some variables
* of basic types (bool, integer, floating point numbers, STL string)
* using the portable binary archive format associated to a
* standard output file stream.
*
*/
#include <string>
#include <fstream>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
int main (void)
{
// The name for the example data file :
std::string filename = "pba_0.data";
// Some variables of various primitive types :
bool b = true;
char c = 'B';
uint32_t answer = 42;
float computing_time = 7.5e6;
double e = 2.71828182845905;
std::string slogan = "DON'T PANIC";
// Open an output file stream in binary mode :
std::ofstream fout (filename.c_str (), std::ios_base::binary);
{
// Create an output portable binary archive attached to the output file :
boost::archive::portable_binary_oarchive opba (fout);
// Store (serializing) variables :
opba & b & c & answer & computing_time & e & slogan;
}
return 0;
}
// end of tutorial_pba_0.cpp
+68
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@@ -0,0 +1,68 @@
/** tutorial_pba_1.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization package.
*
* This quick start example shows how to load some variables
* of basic types (bool, integer, floating point numbers, STL string)
* using the portable binary archive format associated to a
* standard input file stream.
*
*/
#include <iostream>
#include <string>
#include <fstream>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
int main (void)
{
using namespace std;
// The name for the example data file :
string filename = "pba_0.data";
// Some variables of various types :
bool b;
char c;
uint32_t answer;
float computing_time;
double e;
string slogan;
// Open an input file stream in binary mode :
ifstream fin (filename.c_str (), ios_base::binary);
{
// Create an input portable binary archive attached to the input file :
boost::archive::portable_binary_iarchive ipba (fin);
// Loading (de-serializing) variables using the same
// order than for serialization (see tutorial_pba_0.cpp) :
ipba & b & c & answer & computing_time & e & slogan;
}
cout.precision (15);
cout << "Variable 'b' is : " << b << " " << "(bool)" << endl;
cout << "Variable 'c' is : '" << c << "' " << " " << "(char)" << endl;
cout << "Variable 'answer' is : " << answer << " " << "(unsigned 32-bit integer)" << endl;
cout << "Variable 'computing_time' is : " << computing_time << " " << "(single precision 32-bit float)" << endl;
cout << "Variable 'e' is : " << e << " " << "(double precision 64-bit float)" << endl;
cout << "Variable 'slogan' is : \"" << slogan << "\" " << "(std::string)" << endl;
return 0;
}
// end of tutorial_pba_1.cpp
+162
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@@ -0,0 +1,162 @@
/** tutorial_pba_10.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example shows how use PBAs combined with on-the-fly
* compressed I/O streams.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <vector>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
#include <boost/iostreams/filtering_stream.hpp>
#include <boost/iostreams/filter/gzip.hpp>
#include <boost/serialization/access.hpp>
#include <boost/serialization/vector.hpp>
using namespace std;
class data_type
{
private:
friend class boost::serialization::access;
template<class Archive>
void serialize (Archive & ar, const unsigned int version);
public:
void print (ostream & out, const string & title) const;
public:
vector<double> values;
data_type ();
};
data_type::data_type () : values ()
{
return;
}
void data_type::print (ostream & out, const string & title) const
{
out << endl;
out << title << " :" << endl;
for (int i = 0; i < this->values.size (); ++i)
{
out.precision (16);
out.width (18);
out << this->values [i] << ' ' ;
if ((i%4) == 3) clog << endl;
}
out << endl;
return;
}
template<class Archive>
void data_type::serialize (Archive & ar, const unsigned int version)
{
ar & values;
return;
}
void do_gzipped_out (void)
{
// The name for the output data file :
string filename = "pba_10.data.gz";
// A data structure to be stored :
data_type my_data;
// Fill the vector with arbitrary (possibly non-finite) values :
size_t dim = 1000;
my_data.values.reserve (dim);
for (int i = 0; i < dim; ++i)
{
double val = (i + 1) * (1.0 + 3 * numeric_limits<double>::epsilon ());
if (i == 4) val = numeric_limits<double>::quiet_NaN ();
if (i == 23) val = numeric_limits<double>::infinity ();
if (i == 73) val = -numeric_limits<double>::infinity ();
if (i == 90) val = 0.0;
my_data.values.push_back (val);
}
// Print:
my_data.print (clog, "Stored data");
// Create an output filtering stream :
boost::iostreams::filtering_ostream zout;
zout.push (boost::iostreams::gzip_compressor ());
// Open an output file stream in binary mode :
ofstream fout (filename.c_str (), ios_base::binary);
zout.push (fout);
// Save to PBA :
{
// Create an output portable binary archive attached to the output file :
boost::archive::portable_binary_oarchive opba (zout);
// Store (serializing) the data :
opba & my_data;
}
// Clean termination of the streams :
zout.flush ();
zout.reset ();
return;
}
void do_gzipped_in (void)
{
// The name for the input data file :
string filename = "pba_10.data.gz";
// A data structure to be loaded :
data_type my_data;
// Create an input filtering stream :
boost::iostreams::filtering_istream zin;
zin.push (boost::iostreams::gzip_decompressor ());
// Open an input file stream in binary mode :
ifstream fin (filename.c_str (), ios_base::binary);
zin.push (fin);
// Load from PBA :
{
// Create an input portable binary archive attached to the input file :
boost::archive::portable_binary_iarchive ipba (zin);
// Load (deserializing) the data :
ipba & my_data;
}
// Print:
my_data.print (clog, "Loaded data");
return;
}
int main (void)
{
do_gzipped_out ();
do_gzipped_in ();
return 0;
}
// end of tutorial_pba_10.cpp
+198
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@@ -0,0 +1,198 @@
/** tutorial_pba_10b.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example shows how use PBAs combined with on-the-fly
* compressed I/O streams.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <vector>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
#include <boost/archive/xml_oarchive.hpp>
#include <boost/iostreams/filtering_stream.hpp>
#include <boost/iostreams/filter/gzip.hpp>
#include <boost/serialization/access.hpp>
#include <boost/serialization/vector.hpp>
#include <boost/serialization/nvp.hpp>
#include <boost/serialization/version.hpp>
using namespace std;
class data_type
{
private:
friend class boost::serialization::access;
template<class Archive>
void serialize (Archive & ar, const unsigned int version);
public:
void print (ostream & out, const string & title) const;
public:
vector<double> values;
data_type ();
};
//BOOST_CLASS_VERSION(data_type, 7)
data_type::data_type () : values ()
{
return;
}
void data_type::print (ostream & out, const string & title) const
{
out << endl;
out << title << " :" << endl;
for (int i = 0; i < this->values.size (); ++i)
{
out.precision (16);
out.width (18);
out << this->values [i] << ' ' ;
if ((i%4) == 3) clog << endl;
}
out << endl;
return;
}
template<class Archive>
void data_type::serialize (Archive & ar, const unsigned int version)
{
ar & BOOST_SERIALIZATION_NVP (values);
return;
}
class data_type2
{
private:
friend class boost::serialization::access;
template<class Archive>
void serialize (Archive & ar, const unsigned int version);
public:
double value;
data_type2 ();
};
BOOST_CLASS_VERSION(data_type2, 99)
data_type2::data_type2 () : value (666.666)
{
return;
}
template<class Archive>
void data_type2::serialize (Archive & ar, const unsigned int version)
{
ar & BOOST_SERIALIZATION_NVP (value);
return;
}
class data_type3
{
private:
friend class boost::serialization::access;
template<class Archive>
void serialize (Archive & ar, const unsigned int version);
public:
vector<data_type2> values;
data_type3 ();
};
BOOST_CLASS_VERSION(data_type3, 33)
data_type3::data_type3 ()
{
{
data_type2 d;
d.value = 6.66;
values.push_back (d);
}
{
data_type2 d;
d.value = 66.66;
values.push_back (d);
}
{
data_type2 d;
d.value = 666.66;
values.push_back (d);
}
return;
}
template<class Archive>
void data_type3::serialize (Archive & ar, const unsigned int version)
{
ar & BOOST_SERIALIZATION_NVP (values);
return;
}
/********************/
void do_xml_out (void)
{
// The name for the output data file :
string filename = "pba_10.xml";
// A data structure to be stored :
data_type my_data;
// Fill the vector with arbitrary (possibly non-finite) values :
size_t dim = 6;
my_data.values.reserve (dim);
for (int i = 0; i < dim; ++i)
{
double val = (i + 1) * (1.0 + 3 * numeric_limits<double>::epsilon ());
if (i == 4) val = numeric_limits<double>::quiet_NaN ();
if (i == 7) val = numeric_limits<double>::infinity ();
if (i == 9) val = -numeric_limits<double>::infinity ();
if (i == 13) val = 0.0;
my_data.values.push_back (val);
}
// Print:
my_data.print (clog, "Stored data");
data_type2 my_data2;
data_type3 my_data3;
// Open an output file stream in binary mode :
ofstream fout (filename.c_str ());
// Save to PBA :
{
// Create an output XML archive attached to the output file :
boost::archive::xml_oarchive oxa (fout);
// Store (serializing) the data :
oxa & BOOST_SERIALIZATION_NVP(my_data);
oxa & BOOST_SERIALIZATION_NVP(my_data2);
oxa & BOOST_SERIALIZATION_NVP(my_data3);
}
return;
}
int main (void)
{
do_xml_out ();
return 0;
}
// end of tutorial_pba_10b.cpp
+187
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@@ -0,0 +1,187 @@
/** tutorial_pba_11.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example program compares the times needed to serialize
* and deserialize some large amount of data using PBA and
* text archives.
*
*/
#include <string>
#include <fstream>
#include <vector>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
#include <boost/archive/text_oarchive.hpp>
#include <boost/archive/text_iarchive.hpp>
#include <boost/serialization/access.hpp>
#include <boost/serialization/vector.hpp>
#include <boost/random/mersenne_twister.hpp>
#include <boost/random/uniform_real_distribution.hpp>
#include <boost/timer.hpp>
using namespace std;
class data_type
{
private:
friend class boost::serialization::access;
template<class Archive>
void serialize (Archive & ar, const unsigned int version);
public:
void print (ostream & out, const string & title) const;
public:
vector<double> values;
data_type ();
};
data_type::data_type () : values ()
{
return;
}
void data_type::print (ostream & out, const string & title) const
{
out << endl;
out << title << " :" << endl;
bool skip = false;
for (int i = 0; i < this->values.size (); ++i)
{
if ((i >= 12) && (i < (int) this->values.size () - 8))
{
if (! skip) out << " ..." << endl;
skip = true;
continue;
}
out.precision (16);
out.width (18);
out << this->values [i] << ' ' ;
if ((i%4) == 3) clog << endl;
}
out << endl;
return;
}
template<class Archive>
void data_type::serialize (Archive & ar, const unsigned int version)
{
ar & values;
return;
}
double do_pba_out (const data_type & a_data)
{
string filename = "pba_11.data";
ofstream fout (filename.c_str (), ios_base::binary);
boost::timer io_timer;
{
boost::archive::portable_binary_oarchive opba (fout);
opba & a_data;
}
return io_timer.elapsed ();
}
double do_pba_in (data_type & a_data)
{
string filename = "pba_11.data";
ifstream fin (filename.c_str (), ios_base::binary);
boost::timer io_timer;
{
boost::archive::portable_binary_iarchive ipba (fin);
ipba & a_data;
}
return io_timer.elapsed ();
}
double do_text_out (const data_type & a_data)
{
string filename = "pba_11.txt";
ofstream fout (filename.c_str ());
boost::timer io_timer;
{
boost::archive::text_oarchive ota (fout);
ota & a_data;
}
return io_timer.elapsed ();
}
double do_text_in (data_type & a_data)
{
string filename = "pba_11.txt";
ifstream fin (filename.c_str ());
boost::timer io_timer;
{
boost::archive::text_iarchive ita (fin);
ita & a_data;
}
return io_timer.elapsed ();
}
int main (void)
{
double elapsed_time_pba_out;
double elapsed_time_text_out;
double elapsed_time_pba_in;
double elapsed_time_text_in;
data_type my_data; // A data structure to be stored then loaded.
{
// Fill the vector with random values :
size_t dim = 10000000;
my_data.values.reserve (dim);
boost::random::mt19937 rng;
boost::random::uniform_real_distribution<> flat (0.0, 100.0);
for (int i = 0; i < dim; ++i)
{
double val = flat (rng);
my_data.values.push_back (val);
}
my_data.print (clog, "Stored data in PBA and text archive");
}
{
// Store in PBA :
elapsed_time_pba_out = do_pba_out (my_data);
}
{
// Store in text archive :
elapsed_time_text_out = do_text_out (my_data);
}
{
my_data.values.clear ();
// Load from PBA :
elapsed_time_pba_in = do_pba_in (my_data);
my_data.print (clog, "Loaded data from PBA");
}
{
my_data.values.clear ();
// Load from text archive :
elapsed_time_text_in = do_text_in (my_data);
my_data.print (clog, "Loaded data from text archive");
}
clog << "PBA store I/O elapsed time : " << elapsed_time_pba_out << " (second)" << endl;
clog << "Text store I/O elapsed time : " << elapsed_time_text_out << " (second)" << endl;
clog << "PBA load I/O elapsed time : " << elapsed_time_pba_in << " (second)" << endl;
clog << "Text load I/O elapsed time : " << elapsed_time_text_in << " (second)" << endl;
return 0;
}
// end of tutorial_pba_11.cpp
+105
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@@ -0,0 +1,105 @@
/** tutorial_pba_2.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This sample program shows how to use a portable binary archive
* to store/load floating point numbers including non-finite and
* special (denormalized) values.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
int main (void)
{
using namespace std;
// The name for the example data file :
string filename = "pba_2.data";
{
// A normal single precision floating point number :
float pi = 3.14159265;
// Single precision zeroed floating point number :
float zero = 0.0;
// A denormalized single precision floating point number :
float tiny = 1.e-40;
// A single precision floating point number with `+Infinity' value :
float plus_infinity = numeric_limits<float>::infinity ();
// A single precision floating point number with `-Infinity' value :
float minus_infinity = -numeric_limits<float>::infinity ();
// A single precision `Not-a-Number' (NaN):
float nan = numeric_limits<float>::quiet_NaN ();
// Open an output file stream in binary mode :
ofstream fout (filename.c_str (), ios_base::binary);
{
// Create an output portable binary archive attached to the output file :
boost::archive::portable_binary_oarchive opba (fout);
// Store (serialize) variables :
opba & pi & zero & tiny & plus_infinity & minus_infinity & nan;
}
}
{
// Single precision floating point numbers to be loaded :
float x[6];
// Open an input file stream in binary mode :
ifstream fin (filename.c_str (), ios_base::binary);
{
// Create an input portable binary archive attached to the input file :
boost::archive::portable_binary_iarchive ipba (fin);
// Load (de-serialize) variables using the same
// order than for serialization :
for (int i = 0; i < 6; ++i)
{
ipba & x[i];
}
}
// Print :
for (int i = 0; i < 6; ++i)
{
cout.precision (8);
cout << "Loaded x[" << i << "] = " << x[i];
switch (fp::fpclassify(x[i]))
{
case FP_NAN: cout << " (NaN)"; break;
case FP_INFINITE: cout << " (infinite)"; break;
case FP_SUBNORMAL: cout << " (denormalized)"; break;
case FP_NORMAL: cout << " (normalized)"; break;
}
cout << endl;
}
}
return 0;
}
// end of tutorial_pba_2.cpp
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/** tutorial_pba_3.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This sample program shows how to use a portable binary archive
* and prevent the serialization of non-finite floating numbers.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <boost/archive/portable_binary_oarchive.hpp>
int main (void)
{
using namespace std;
// The name for the example data file :
string filename = "pba_3.data";
try
{
// An array of single precision floating numbers:
float x[5];
x[0] = 3.14159; // Pi
x[1] = 6.022e22; // Avogadro constant
x[2] = 1.6e-19; // Electron charge magnitude
x[3] = 1.e-40; // A tiny (denormalized) value
x[4] = numeric_limits<float>::infinity (); // This will fail while serializing...
// Open an output file stream in binary mode :
ofstream fout (filename.c_str (), ios_base::binary);
{
// Create an output portable binary archive attached to the output file,
// using the special 'boost::archive::no_infnan' flag :
boost::archive::portable_binary_oarchive opba (fout, boost::archive::no_infnan);
// Store (serialize) variables :
for (int i = 0; i < 5; ++i)
{
clog << "Serializing value : " << x[i] << " ... ";
opba & x[i];
clog << "Ok !" << endl;
}
}
}
catch (exception & x)
{
cerr << "ERROR: " << x.what () << endl;
return 1;
}
return 0;
}
// end of tutorial_pba_3.cpp
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/** tutorial_pba_4.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This sample program shows how to use a portable binary archive
* to store/load integer numbers of various sizes using the Boost
* portable integer typedefs.
*
*/
#include <string>
#include <fstream>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
int main (void)
{
using namespace std;
// The name for the example data file :
string filename = "pba_4.data";
{
// Some integer numbers :
bool t = true;
char c = 'c';
unsigned char u = 'u';
int8_t b = -3; // char
uint8_t B = +6; // unsigned char
int16_t s = -16;
uint16_t S = +32;
int32_t l = -128;
uint32_t L = +127;
int64_t ll = -1024;
uint64_t LL = +2048;
// Open an output file stream in binary mode :
ofstream fout (filename.c_str (), ios_base::binary);
{
// Create an output portable binary archive attached to the output file :
boost::archive::portable_binary_oarchive opba (fout);
// Store (serialize) variables :
opba & t & c & u & b & B & s & S & l & L & ll & LL;
}
}
{
// Single precision floating numbers to be loaded :
// Some integer numbers :
bool t;
char c;
unsigned char u;
int8_t b;
uint8_t B;
int16_t s;
uint16_t S;
int32_t l;
uint32_t L;
int64_t ll;
uint64_t LL;
// Open an input file stream in binary mode :
ifstream fin (filename.c_str (), ios_base::binary);
{
// Create an input portable binary archive attached to the input file :
boost::archive::portable_binary_iarchive ipba (fin);
// Load (de-serialize) variables using the same
// order than for serialization :
ipba & t & c & u & b & B & s & S & l & L & ll & LL;
}
clog << "t = " << t << " (bool)" << endl;
clog << "c = '" << c << "' (char)" << endl;
clog << "u = '" << u << "' (unsigned char)" << endl;
clog << "b = " << (int) b << " (int8_t)" << endl;
clog << "B = " << (int) B << " (uint8_t)" << endl;
clog << "s = " << s << " (int16_t)" << endl;
clog << "S = " << S << " (uint16_t)" << endl;
clog << "l = " << l << " (int32_t)" << endl;
clog << "L = " << L << " (uint32_t)" << endl;
clog << "ll = " << ll << " (int64_t)" << endl;
clog << "LL = " << LL << " (uint64_t)" << endl;
}
return 0;
}
// end of tutorial_pba_4.cpp
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/** tutorial_pba_5.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This sample program shows how to use a portable binary archive
* to store/load data in a memory buffer.
*
*/
#include <string>
#include <vector>
#include <boost/iostreams/stream.hpp>
#include <boost/iostreams/device/back_inserter.hpp>
#include <boost/iostreams/device/array.hpp>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
int main (void)
{
using namespace std;
// The memory buffer is implemented using a STL vector :
typedef std::vector<char> buffer_type;
buffer_type buffer;
{
// Some data to be stored :
bool t = true;
char c = 'c';
int16_t s = +16;
int32_t l = -128;
int64_t ll = +10000000000;
float pi = 3.14159;
double nan = numeric_limits<double>::quiet_NaN ();
string hello = "World !";
buffer.reserve (1024); // pre-allocate some memory
// The output stream interface to the buffer :
boost::iostreams::stream<boost::iostreams::back_insert_device<buffer_type> > output_stream (buffer);
{
// Create an output portable binary archive attached to the output file :
boost::archive::portable_binary_oarchive opba (output_stream);
// Store (serialize) variables :
opba & t & c & s & l & ll & pi & nan & hello;
}
}
clog << "Buffer content is " << buffer.size () << " bytes : " << endl << " ";
for (int i = 0; i < buffer.size (); ++i)
{
clog << (int) ((unsigned char) buffer[i]) << ' ';
if ((i + 1) % 20 == 0) clog << endl << " ";
}
clog << endl;
{
// Some data to be loaded :
bool t;
char c;
int16_t s;
int32_t l;
int64_t ll;
float pi;
double nan;
string hello;
// The input stream interface to the buffer :
boost::iostreams::stream<boost::iostreams::array_source> input_stream (&buffer[0],
buffer.size ());
{
// Create an input portable binary archive attached to the input file :
boost::archive::portable_binary_iarchive ipba (input_stream);
// Load (de-serialize) variables :
ipba & t & c & s & l & ll & pi & nan & hello;
}
clog << "Loaded values from the buffer are: " << endl;
clog << " t = " << t << " (bool)" << endl;
clog << " c = '" << c << "' (char)" << endl;
clog << " s = " << s << " (int16_t)" << endl;
clog << " l = " << l << " (int32_t)" << endl;
clog << " ll = " << ll << " (int64_t)" << endl;
clog << " pi = " << pi << " (float)" << endl;
clog << " nan = " << nan << " (double)" << endl;
clog << " hello = \"" << hello << "\" (std::string)" << endl;
}
return 0;
}
// end of tutorial_pba_5.cpp
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/** tutorial_pba_6.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This sample program shows how to use a portable binary archive
* associated to a memory buffer to copy a non-copyable object.
*
*/
#include <iostream>
#include <string>
#include <sstream>
#include <vector>
#include <boost/utility.hpp>
#include <boost/iostreams/stream.hpp>
#include <boost/iostreams/device/back_inserter.hpp>
#include <boost/iostreams/device/array.hpp>
#include <boost/cstdint.hpp>
#include <boost/archive/portable_binary_oarchive.hpp>
#include <boost/archive/portable_binary_iarchive.hpp>
using namespace std;
/* A foo noncopyable class */
struct foo : boost::noncopyable
{
uint32_t status;
double value;
double special;
string to_string () const
{
ostringstream sout;
sout << "foo={status=" << status << "; value=" << value << "; special=" << special<< "}";
return sout.str();
}
template<class Archive>
void serialize (Archive & ar, const unsigned int version)
{
ar & status;
ar & value;
ar & special;
return;
}
};
// A templatized copy function for Boost/Serialization equipped classes.
// Here we use PBAs associated to a memory buffer :
template <class Serializable>
void copy (const Serializable & source, Serializable & target)
{
namespace io = boost::iostreams;
namespace ba = boost::archive;
if (&source == &target) return; // self-copy guard
typedef std::vector<char> buffer_type;
buffer_type buffer;
buffer.reserve (1024);
{
io::stream<io::back_insert_device<buffer_type> > output_stream (buffer);
ba::portable_binary_oarchive opba (output_stream);
opba & source;
}
{
io::stream<io::array_source> input_stream (&buffer[0], buffer.size ());
ba::portable_binary_iarchive ipba (input_stream);
ipba & target;
}
return;
}
int main (void)
{
// Some instance of the 'foo' class :
foo dummy;
dummy.status = 1;
dummy.value = 3.14159;
dummy.special = numeric_limits<double>::quiet_NaN ();
clog << "dummy is : " << dummy.to_string () << endl;
// Another instance of the 'foo' class :
foo clone;
/* The following instruction is forbidden because foo
inherits 'boost::noncopyable' :
clone = dummy; // this ends in a compilation error.
*/
// Anyway, we can use this workaround :
copy (dummy, clone);
clog << "clone is : " << clone.to_string () << endl;
return 0;
}
// end of tutorial_pba_6.cpp
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/** tutorial_pba_7.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example shows how the default behaviour of standard
* I/O streams does not support the read/write operations of
* non-finite floating point values in a portable way.
*
*/
#include <string>
#include <iostream>
#include <sstream>
#include <limits>
using namespace std;
int main (void)
{
{
float x = numeric_limits<float>::infinity ();
double y = numeric_limits<double>::quiet_NaN ();
cout.precision (8);
cout << "x = " << x << endl;
cout.precision (16);
cout << "y = " << y << endl;
}
{
string input ("inf nan");
istringstream iss (input);
float x;
double y;
iss >> x >> y;
if (! iss)
{
cerr << "Cannot read 'x' or 'y' : non finite values are not supported !" << endl;
}
}
return 0;
}
// end of tutorial_pba_7.cpp
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/** tutorial_pba_8.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example shows how to store some variables
* of basic types (bool, integer, floating point numbers, STL string)
* using the text or XML archive format associated to a
* standard output file stream supporting portable non-finite
* floating point values.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <locale>
#include <boost/cstdint.hpp>
#include <boost/archive/xml_oarchive.hpp>
#include <boost/archive/text_oarchive.hpp>
#include <boost/serialization/nvp.hpp>
#include <boost/archive/codecvt_null.hpp>
#include <boost/math/special_functions/nonfinite_num_facets.hpp>
using namespace std;
void do_text_out (void)
{
// The name for the example data text file :
string filename = "pba_8.txt";
// Some variables of various primitive types :
bool b = true;
char c = 'B';
uint32_t answer = 42;
float value = numeric_limits<float>::infinity ();
double precision = numeric_limits<double>::quiet_NaN ();
string question = "What makes you think she's a witch?";
// Open an output file stream :
ofstream fout (filename.c_str ());
// Prepare the output file stream for inf/NaN support :
locale default_locale (locale::classic (),
new boost::archive::codecvt_null<char>);
locale infnan_locale (default_locale,
new boost::math::nonfinite_num_put<char>);
fout.imbue (infnan_locale);
{
// Create an output text archive attached to the output file :
boost::archive::text_oarchive ota (fout, boost::archive::no_codecvt);
// Store (serializing) variables :
ota & b & c & answer & value & precision & question;
}
return;
}
void do_xml_out (void)
{
// The name for the example data XML file :
string filename = "pba_8.xml";
// Some variables of various primitive types :
bool b = true;
char c = 'B';
uint32_t answer = 42;
float value = numeric_limits<float>::infinity ();
double precision = numeric_limits<double>::quiet_NaN ();
string question = "What makes you think she's a witch?";
// Open an output file stream :
ofstream fout (filename.c_str ());
// Prepare the output file stream for inf/NaN support :
locale default_locale (locale::classic (),
new boost::archive::codecvt_null<char>);
locale infnan_locale (default_locale,
new boost::math::nonfinite_num_put<char>);
fout.imbue (infnan_locale);
{
// Create an output text archive attached to the output file :
boost::archive::xml_oarchive oxa (fout, boost::archive::no_codecvt);
// Store (serializing) variables :
oxa & BOOST_SERIALIZATION_NVP(b)
& BOOST_SERIALIZATION_NVP(c)
& BOOST_SERIALIZATION_NVP(answer)
& BOOST_SERIALIZATION_NVP(value)
& BOOST_SERIALIZATION_NVP(precision)
& BOOST_SERIALIZATION_NVP(question);
}
return;
}
int main (void)
{
do_text_out ();
do_xml_out ();
return 0;
}
// end of tutorial_pba_8.cpp
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/** tutorial_pba_9.cpp
*
* (C) Copyright 2011 François Mauger, Christian Pfligersdorffer
*
* 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)
*
*/
/**
* The intent of this program is to serve as a tutorial for
* users of the portable binary archive in the framework of
* the Boost/Serialization library.
*
* This example shows how to load some variables of basic
* types (bool, char, integer, floating point numbers, STL string)
* using the text or XML archive format associated to a
* standard file input stream supporting portable non-finite
* floating point values.
*
*/
#include <string>
#include <fstream>
#include <limits>
#include <locale>
#include <boost/cstdint.hpp>
#include <boost/archive/xml_iarchive.hpp>
#include <boost/archive/text_iarchive.hpp>
#include <boost/serialization/nvp.hpp>
#include <boost/scoped_ptr.hpp>
#include <boost/archive/codecvt_null.hpp>
#include <boost/math/special_functions/nonfinite_num_facets.hpp>
using namespace std;
void do_text_in (void)
{
// The name for the example data text file :
string filename = "pba_8.txt";
// Some variables of various primitive types :
bool b;
char c;
uint32_t answer;
float value;
double precision;
string question;
// Open an input file stream :
ifstream fin (filename.c_str ());
// Prepare the input file stream for inf/NaN support :
locale default_locale (locale::classic (),
new boost::archive::codecvt_null<char>);
locale infnan_locale (default_locale,
new boost::math::nonfinite_num_get<char>);
fin.imbue (infnan_locale);
{
// Create an input text archive attached to the input file :
boost::archive::text_iarchive ita (fin, boost::archive::no_codecvt);
// Store (serializing) variables :
ita & b & c & answer & value & precision & question;
}
clog << "Loaded values from text archive are: " << endl;
clog << " b = " << b << endl;
clog << " c = '" << c << "'" << endl;
clog << " answer = " << answer << endl;
clog << " value = " << value << endl;
clog << " precision = " << precision << endl;
clog << " question = \"" << question << "\"" << endl;
return;
}
void do_xml_in (void)
{
// The name for the example data text file :
string filename = "pba_8.xml";
// Some variables of various primitive types :
bool b;
char c;
uint32_t answer;
float value;
double precision;
string question;
// Open an input file stream :
ifstream fin (filename.c_str ());
// Prepare the input file stream for inf/NaN support :
locale default_locale (locale::classic (),
new boost::archive::codecvt_null<char>);
locale infnan_locale (default_locale,
new boost::math::nonfinite_num_get<char>);
fin.imbue (infnan_locale);
{
// Create an output text archive attached to the output file :
boost::archive::xml_iarchive ixa (fin, boost::archive::no_codecvt);
// Store (serializing) variables :
ixa & BOOST_SERIALIZATION_NVP(b)
& BOOST_SERIALIZATION_NVP(c)
& BOOST_SERIALIZATION_NVP(answer)
& BOOST_SERIALIZATION_NVP(value)
& BOOST_SERIALIZATION_NVP(precision)
& BOOST_SERIALIZATION_NVP(question);
}
clog << "Loaded values from XML archive are: " << endl;
clog << " b = " << b << endl;
clog << " c = '" << c << "'" << endl;
clog << " answer = " << answer << endl;
clog << " value = " << value << endl;
clog << " precision = " << precision << endl;
clog << " question = \"" << question << "\"" << endl;
return;
}
int main (void)
{
do_text_in ();
do_xml_in ();
return 0;
}
// end of tutorial_pba_9.cpp
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IMPORTANT:
This is the last release from me as EOS employee. I plan to contribute all of this
work to the official boost libraries distribution and will continue to support users.
Francois Mauger joined me recently and already added a valuable tutorial for you!
Dear user,
I am proud to announce the very first release of our portable_binary_[io]archive
which we use here at EOS to move data between different platforms. It really is
a conglomerate of pieces that already were there - as is most often the case in
OO world - we simply put them together in a way that seemed to make sense. I know
a lot of people were interested in portable binary archives, so here you are -
give it a try and let me know what you think about it!
We rely heavily on boost::serialization and really appreciate the amount of time
and knowledge that went into it. By publishing this small missing piece we hope
to contribute our mite to this great library.
The work extends the portable binary example which was done by Robert Ramey and
uses Beman Dawes' endian library plus the fp_utilities by Johan Rade. You will
need to get those two libraries in order to use our classes - look for them at
the boost vault (http://www.boost-consulting.com/vault/) in categories 'integer'
and 'math - numerics'. Finally you will find the portable binary archive in
category 'serialization' as well.
Regards,
Christian Pfligersdorffer
Munich, End of 2007
--
christian.pfligersdorffer@eos.info
christian.pfligersdorffer@gmx.at
http://www.eos.info
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/*!
* jQuery JavaScript Library v1.4
* http://jquery.com/
*
* Copyright 2010, John Resig
* Dual licensed under the MIT or GPL Version 2 licenses.
* http://docs.jquery.com/License
*
* Includes Sizzle.js
* http://sizzlejs.com/
* Copyright 2010, The Dojo Foundation
* Released under the MIT, BSD, and GPL Licenses.
*
* Date: Wed Jan 13 15:23:05 2010 -0500
*/
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+39
View File
@@ -0,0 +1,39 @@
/*=============================================================================
Copyright 2002 William E. Kempf
Distributed under the Boost Software License, Version 1.0. (See accompany-
ing file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
=============================================================================*/
H1
{
FONT-SIZE: 200%;
COLOR: #00008B;
}
H2
{
FONT-SIZE: 150%;
}
H3
{
FONT-SIZE: 125%;
}
H4
{
FONT-SIZE: 108%;
}
/*
BODY
{
FONT-SIZE: 100%;
BACKGROUND-COLOR: #ffffff;
COLOR: #000000;
}
*/
/*
PRE
{
MARGIN-LEFT: 2em;
FONT-FAMILY: Courier,
monospace;
}
*/
+92
View File
@@ -0,0 +1,92 @@
body
{
font-size: 12pt;
}
pre
{
border-right: gray 1pt solid;
border-top: gray 1pt solid;
border-left: gray 1pt solid;
border-bottom: gray 1pt solid;
margin-left: 0pt;
background-color: #EEEEEE;
font-size: smaller;
}
.button
{
color : black;
background-color : #FFFFFF;
border-radius: 0px;
border: outset 3px #d6d6d6;
text-decoration : none;
outline:none;
}
.fs
{
font-family: courier;
font-size: 11pt;
font-weight: bold;
color: maroon;
}
.code_string
{
font-family: courier;
font-size: 11pt;
font-weight: bold;
color: #bc8f8f;
}
.code
{
/*
top: 0;
border-style: inset;
margin-top: 5pt;
margin-bottom: 5pt;
margin-left: 5pt;
margin-right: 5pt;
border-width: 2px 2px 2px 2px ;
*/
font-family: courier;
font-size: 11pt;
font-weight: bold;
color: #228b22;
}
.byte
{
border-right: gray 1pt solid;
border-top: gray 1pt solid;
border-left: gray 1pt solid;
border-bottom: gray 1pt solid;
margin-left: 2pt;
margin-right: 2pt;
font-family: courier;
font-size: 11pt;
font-weight: bold;
color: #000000;
background-color: #eeeeee;
}
#pre
{
border-right: gray 1pt solid;
border-top: gray 1pt solid;
border-left: gray 1pt solid;
border-bottom: gray 1pt solid;
margin-left: 1pt;
margin-right: 1pt;
background-color: #EEEEEE;
}
/*
(C) Copyright 2011 François Mauger.
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)
*/
+2348
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File diff suppressed because it is too large Load Diff
+4 -4
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@@ -127,11 +127,11 @@ public:
}
// used for text output
operator int () const {
operator base_type () const {
return t;
}
// used for text input
operator int_least16_t &() {
operator base_type &() {
return t;
}
bool operator==(const class_id_type & rhs) const {
@@ -162,11 +162,11 @@ public:
return *this;
}
// used for text output
operator uint_least32_t () const {
operator base_type () const {
return t;
}
// used for text input
operator uint_least32_t & () {
operator base_type & () {
return t;
}
bool operator==(const object_id_type & rhs) const {
+7 -6
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@@ -63,9 +63,10 @@ public:
};
template<>
class BOOST_SYMBOL_VISIBLE codecvt_null<wchar_t> : public std::codecvt<wchar_t, char, std::mbstate_t>
class BOOST_SYMBOL_VISIBLE codecvt_null<wchar_t> :
public std::codecvt<wchar_t, char, std::mbstate_t>
{
virtual BOOST_WARCHIVE_DECL BOOST_DLLEXPORT std::codecvt_base::result
virtual BOOST_WARCHIVE_DECL std::codecvt_base::result
do_out(
std::mbstate_t & state,
const wchar_t * first1,
@@ -74,8 +75,8 @@ class BOOST_SYMBOL_VISIBLE codecvt_null<wchar_t> : public std::codecvt<wchar_t,
char * first2,
char * last2,
char * & next2
) const BOOST_USED;
virtual BOOST_WARCHIVE_DECL BOOST_DLLEXPORT std::codecvt_base::result
) const;
virtual BOOST_WARCHIVE_DECL std::codecvt_base::result
do_in(
std::mbstate_t & state,
const char * first1,
@@ -84,7 +85,7 @@ class BOOST_SYMBOL_VISIBLE codecvt_null<wchar_t> : public std::codecvt<wchar_t,
wchar_t * first2,
wchar_t * last2,
wchar_t * & next2
) const BOOST_USED;
) const;
virtual int do_encoding( ) const throw( ){
return sizeof(wchar_t) / sizeof(char);
}
@@ -92,7 +93,7 @@ class BOOST_SYMBOL_VISIBLE codecvt_null<wchar_t> : public std::codecvt<wchar_t,
return do_encoding();
}
public:
BOOST_DLLEXPORT explicit codecvt_null(std::size_t no_locale_manage = 0) :
explicit codecvt_null(std::size_t no_locale_manage = 0) :
std::codecvt<wchar_t, char, std::mbstate_t>(no_locale_manage)
{}
virtual ~codecvt_null(){};
+5 -5
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@@ -57,11 +57,11 @@ namespace std{
#include <boost/serialization/assume_abstract.hpp>
#ifndef BOOST_MSVC
#define DONT_USE_HAS_NEW_OPERATOR ( \
BOOST_WORKAROUND(__IBMCPP__, < 1210) \
|| defined(__SUNPRO_CC) && (__SUNPRO_CC < 0x590) \
)
#if BOOST_WORKAROUND(__IBMCPP__, < 1210) \
|| ( \
defined(__SUNPRO_CC) && (__SUNPRO_CC < 0x590) \
)
#define DONT_USE_HAS_NEW_OPERATOR 1
#else
#define DONT_USE_HAS_NEW_OPERATOR 0
#endif
+3 -3
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@@ -338,7 +338,7 @@ struct save_pointer_type {
};
template<class T>
static const basic_pointer_oserializer * register_type(Archive &ar, T & /*t*/){
static const basic_pointer_oserializer * register_type(Archive &ar, T* const /*t*/){
// there should never be any need to save an abstract polymorphic
// class pointer. Inhibiting code generation for this
// permits abstract base classes to be used - note: exception
@@ -405,7 +405,7 @@ struct save_pointer_type {
// if its not a pointer to a more derived type
const void *vp = static_cast<const void *>(&t);
if(*this_type == *true_type){
const basic_pointer_oserializer * bpos = register_type(ar, t);
const basic_pointer_oserializer * bpos = register_type(ar, &t);
ar.save_pointer(vp, bpos);
return;
}
@@ -464,7 +464,7 @@ struct save_pointer_type {
template<class TPtr>
static void invoke(Archive &ar, const TPtr t){
register_type(ar, * t);
register_type(ar, t);
if(NULL == t){
basic_oarchive & boa
= boost::serialization::smart_cast_reference<basic_oarchive &>(ar);
@@ -85,6 +85,7 @@ basic_binary_iprimitive<Archive, Elem, Tr>::init()
}
#ifndef BOOST_NO_CWCHAR
#ifndef BOOST_NO_INTRINSIC_WCHAR_T
template<class Archive, class Elem, class Tr>
BOOST_ARCHIVE_OR_WARCHIVE_DECL void
basic_binary_iprimitive<Archive, Elem, Tr>::load(wchar_t * ws)
@@ -95,6 +96,7 @@ basic_binary_iprimitive<Archive, Elem, Tr>::load(wchar_t * ws)
ws[l] = L'\0';
}
#endif
#endif
template<class Archive, class Elem, class Tr>
BOOST_ARCHIVE_OR_WARCHIVE_DECL void
@@ -86,12 +86,15 @@ class mb_from_wchar
wchar_t value = * this->base_reference();
const wchar_t *wend;
char *bend;
std::codecvt_base::result r = m_codecvt_facet.out(
m_mbs,
& value, & value + 1, wend,
m_buffer, m_buffer + sizeof(m_buffer), bend
BOOST_VERIFY(
m_codecvt_facet.out(
m_mbs,
& value, & value + 1, wend,
m_buffer, m_buffer + sizeof(m_buffer), bend
)
==
std::codecvt_base::ok
);
BOOST_ASSERT(std::codecvt_base::ok == r);
m_bnext = 0;
m_bend = bend - m_buffer;
}
+35
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@@ -0,0 +1,35 @@
/*****************************************************************************/
/**
* \file portable_archive.hpp
* \brief Needed for unit tests on portable archives.
* \author christian.pfligersdorffer@gmx.at
*
* Header for testing portable archives with all of the serialization tests.
* Before use copy all hpp files from this directory to your boost folder
* boost_.../libs/serialization/test and run from there a visual studio
* prompt with b2 oder bjam -sBOOST_ARCHIVE_LIST=portable_archive.hpp
*
* \note Since portable archives version 5.0 we depend on program_options!
* Edit libs/serialization/test/Jamfile.v2 and change the requirements to
* : requirements <source>/boost/filesystem <source>/boost/program_options
*/
/****************************************************************************/
#pragma warning( disable:4217 4127 4310 4244 4800 4267 )
// portable_archive test header
// include output archive header
#include "portable_oarchive.hpp"
// set name of test output archive
typedef eos::portable_oarchive test_oarchive;
// set name of test output stream
typedef std::ofstream test_ostream;
// repeat the above for input archive
#include "portable_iarchive.hpp"
typedef eos::portable_iarchive test_iarchive;
typedef std::ifstream test_istream;
// define open mode for streams
// binary archives should use std::ios_base::binary
#define TEST_STREAM_FLAGS std::ios_base::binary
+93
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@@ -0,0 +1,93 @@
/*****************************************************************************/
/**
* \file portable_archive_exception.hpp
* \brief Provides error handling and constants.
* \author christian.pfligersdorffer@gmx.at
*
* Portable archive exceptions derive from the boost archive exceptions
* and add failure causes specific to the portable binary usecase.
*
* Additionally this header serves as common include for important
* constants or typedefs.
*/
/****************************************************************************/
#pragma once
#include <boost/lexical_cast.hpp>
#include <boost/archive/basic_archive.hpp>
#include <boost/archive/archive_exception.hpp>
namespace eos {
// this value is written to the top of the stream
const signed char magic_byte = 'e' | 'o' | 's';
// flag for fp serialization
const unsigned no_infnan = 64;
// integral type for the archive version
#if BOOST_VERSION < 104400
typedef boost::archive::version_type archive_version_type;
#else
typedef boost::archive::library_version_type archive_version_type;
#endif
// version of the linked boost archive library
const archive_version_type archive_version(
#if BOOST_VERSION < 103700
boost::archive::ARCHIVE_VERSION()
#else
boost::archive::BOOST_ARCHIVE_VERSION()
#endif
);
/**
* \brief Exception being thrown when serialization cannot proceed.
*
* There are several situations in which the portable archives may fail and
* hence throw an exception:
* -# deserialization of an integer value that exceeds the range of the type
* -# (de)serialization of inf/nan through an archive with no_infnan flag set
* -# deserialization of a denormalized value without the floating point type
* supporting denormalized numbers
*
* Note that this exception will also be thrown if you mixed up your stream
* position and accidentially interpret some value for size data (in this case
* the reported size will be totally amiss most of the time).
*/
class portable_archive_exception : public boost::archive::archive_exception
{
std::string msg;
public:
//! type size is not large enough for deserialized number
portable_archive_exception(signed char invalid_size)
: boost::archive::archive_exception(other_exception)
, msg("requested integer size exceeds type size: ")
{
msg += boost::lexical_cast<std::string, int>(invalid_size);
}
//! negative number in unsigned type
portable_archive_exception()
: boost::archive::archive_exception(other_exception)
, msg("cannot read a negative number into an unsigned type")
{
}
//! serialization of inf, nan and denormals
template <typename T>
portable_archive_exception(const T& abnormal)
: boost::archive::archive_exception(other_exception)
, msg("serialization of illegal floating point value: ")
{
msg += boost::lexical_cast<std::string>(abnormal);
}
//! override the base class function with our message
const char* what() const throw() { return msg.c_str(); }
~portable_archive_exception() throw() {}
};
} // namespace eos
+487
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@@ -0,0 +1,487 @@
/*****************************************************************************/
/**
* \file portable_iarchive.hpp
* \brief Provides an archive to read from portable binary files.
* \author christian.pfligersdorffer@gmx.at
* \version 5.1
*
* This pair of archives brings the advantages of binary streams to the cross
* platform boost::serialization user. While being almost as fast as the native
* binary archive it allows its files to be exchanged between cpu architectures
* using different byte order (endianness). Speaking of speed: in serializing
* numbers the (portable) binary approach is approximately ten times faster than
* the ascii implementation (that is inherently portable)!
*
* Based on the portable archive example by Robert Ramey this implementation
* uses Beman Dawes endian library and fp_utilities from Johan Rade, both being
* in boost since 1.36. Prior to that you need to add them both (header only)
* to your boost directory before you're able to use the archives provided.
* Our archives have been tested successfully for boost versions 1.33 to 1.49!
*
* \note Correct behaviour has so far been confirmed using PowerPC-32, x86-32
* and x86-64 platforms featuring different byte order. So there is a good
* chance it will instantly work for your specific setup. If you encounter
* problems or have suggestions please contact the author.
*
* \note Version 5.1 is now compatible with boost up to version 1.59. Thanks to
* ecotax for pointing to the issue with shared_ptr_helper.
*
* \note Version 5.0 is now compatible with boost up to version 1.49 and enables
* serialization of std::wstring by converting it to/from utf8 (thanks to
* Arash Abghari for this suggestion). With that all unit tests from the
* serialization library pass again with the notable exception of user
* defined primitive types. Those are not supported and as a result any
* user defined type to be used with the portable archives are required
* to be at least object_serializable.
*
* \note Version 4.2 maintains compatibility with the latest boost 1.45 and adds
* serialization of special floating point values inf and NaN as proposed
* by Francois Mauger.
*
* \note Version 4.1 makes the archives work together with boost 1.40 and 1.41.
* Thanks to Francois Mauger for his suggestions.
*
* \note Version 4 removes one level of the inheritance hierarchy and directly
* builds upon binary primitive and basic binary archive, thereby fixing
* the last open issue regarding array serialization. Thanks to Robert
* Ramey for the hint.
*
* \note A few fixes introduced in version 3.1 let the archives pass all of the
* serialization tests. Thanks to Sergey Morozov for running the tests.
* Wouter Bijlsma pointed out where to find the fp_utilities and endian
* libraries headers inside the boost distribution. I would never have
* found them so thank him it works out of the box since boost 1.36.
*
* \note With Version 3.0 the archives have been made portable across different
* boost versions. For that purpose a header is added to the data that
* supplies the underlying serialization library version. Backwards
* compatibility is maintained by assuming library version boost 1.33 if
* the iarchive is created using the no_header flag. Whether a header is
* present or not can be guessed by peeking into the stream: the header's
* first byte is the magic number 127 coinciding with 'e'|'o'|'s' :-)
*
* \note Version 2.1 removes several compiler warnings and enhances floating
* point diagnostics to inform the user if some preconditions are violated
* on his platform. We do not strive for the universally portable solution
* in binary floating point serialization as desired by some boost users.
* Instead we support only the most widely used IEEE 754 format and try to
* detect when requirements are not met and hence our approach must fail.
* Contributions we made by Johan Rade and Ákos Maróy.
*
* \note Version 2.0 fixes a serious bug that effectively transformed most
* of negative integral values into positive values! For example the two
* numbers -12 and 234 were stored in the same 8-bit pattern and later
* always restored to 234. This was fixed in this version in a way that
* does not change the interpretation of existing archives that did work
* because there were no negative numbers. The other way round archives
* created by version 2.0 and containing negative numbers will raise an
* integer type size exception when reading it with version 1.0. Thanks
* to Markus Frohnmaier for testing the archives and finding the bug.
*
* \copyright The boost software license applies.
*/
/*****************************************************************************/
#pragma once
#include <istream>
// basic headers
#include <boost/version.hpp>
#include <boost/utility/enable_if.hpp>
#include <boost/archive/basic_binary_iprimitive.hpp>
#include <boost/archive/basic_binary_iarchive.hpp>
#if BOOST_VERSION >= 103500 && BOOST_VERSION < 105600
#include <boost/archive/shared_ptr_helper.hpp>
#endif
// funny polymorphics
#if BOOST_VERSION < 103500
#include <boost/archive/detail/polymorphic_iarchive_impl.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_iarchive_impl<T>
#elif BOOST_VERSION < 103600
#include <boost/archive/detail/polymorphic_iarchive_dispatch.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_iarchive_dispatch<T>
#else
#include <boost/archive/detail/polymorphic_iarchive_route.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_iarchive_route<T>
#endif
// endian and fpclassify
#if BOOST_VERSION < 103600
#include <boost/integer/endian.hpp>
#include <boost/math/fpclassify.hpp>
#elif BOOST_VERSION < 104800
#include <boost/spirit/home/support/detail/integer/endian.hpp>
#include <boost/spirit/home/support/detail/math/fpclassify.hpp>
#else
#include <boost/spirit/home/support/detail/endian/endian.hpp>
#include <boost/spirit/home/support/detail/math/fpclassify.hpp>
#endif
// namespace alias
#if BOOST_VERSION < 103800
namespace fp = boost::math;
#else
namespace fp = boost::spirit::math;
#endif
// namespace alias endian
#if BOOST_VERSION < 104800
namespace endian = boost::detail;
#else
namespace endian = boost::spirit::detail;
#endif
#if BOOST_VERSION >= 104500 && !defined BOOST_NO_STD_WSTRING
// used for wstring to utf8 conversion
#include <boost/program_options/config.hpp>
#include <boost/program_options/detail/convert.hpp>
#endif
// generic type traits for numeric types
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/is_unsigned.hpp>
#include <boost/type_traits/is_arithmetic.hpp>
#include <boost/type_traits/is_floating_point.hpp>
#include "portable_archive_exception.hpp"
// hint from Johan Rade: on VMS there is still support for
// the VAX floating point format and this macro detects it
#if defined(__vms) && defined(__DECCXX) && !__IEEE_FLOAT
#error "VAX floating point format is not supported!"
#endif
namespace eos {
// forward declaration
class portable_iarchive;
typedef boost::archive::basic_binary_iprimitive<
portable_iarchive
#if BOOST_VERSION < 103400
, std::istream
#else
, std::istream::char_type
, std::istream::traits_type
#endif
> portable_iprimitive;
/**
* \brief Portable binary input archive using little endian format.
*
* This archive addresses integer size, endianness and floating point types so
* that data can be transferred across different systems. There may still be
* constraints as to what systems are compatible and the user will have to take
* care that e.g. a very large int being saved on a 64 bit machine will result
* in a portable_archive_exception if loaded into an int on a 32 bit system.
* A possible workaround to this would be to use fixed types like
* boost::uint64_t in your serialization structures.
*
* \note The class is based on the portable binary example by Robert Ramey and
* uses Beman Dawes endian library plus fp_utilities by Johan Rade.
*/
class portable_iarchive : public portable_iprimitive
// the example derives from common_oarchive but that lacks the
// load_override functions so we chose to stay one level higher
, public boost::archive::basic_binary_iarchive<portable_iarchive>
#if BOOST_VERSION >= 103500 && BOOST_VERSION < 105600
// mix-in helper class for serializing shared_ptr
, public boost::archive::detail::shared_ptr_helper
#endif
{
// only needed for Robert's hack in basic_binary_iarchive::init
friend class boost::archive::basic_binary_iarchive<portable_iarchive>;
// workaround for gcc: use a dummy struct
// as additional argument type for overloading
template <int> struct dummy { dummy(int) {}};
// loads directly from stream
inline signed char load_signed_char()
{
signed char c;
portable_iprimitive::load(c);
return c;
}
// archive initialization
void init(unsigned flags)
{
using namespace boost::archive;
archive_version_type input_library_version(3);
// it is vital to have version information!
// if we don't have any we assume boost 1.33
if (flags & no_header)
set_library_version(input_library_version);
// extract and check the magic eos byte
else if (load_signed_char() != magic_byte)
throw archive_exception(archive_exception::invalid_signature);
else
{
// extract version information
operator>>(input_library_version);
// throw if file version is newer than we are
if (input_library_version > archive_version)
throw archive_exception(archive_exception::unsupported_version);
// else set the library version accordingly
else set_library_version(input_library_version);
}
}
public:
/**
* \brief Constructor on a stream using ios::binary mode!
*
* We cannot call basic_binary_iprimitive::init which tries to detect
* if the binary archive stems from a different platform by examining
* type sizes.
*
* We could have called basic_binary_iarchive::init which would create
* the boost::serialization standard archive header containing also the
* library version. Due to efficiency we stick with our own.
*/
portable_iarchive(std::istream& is, unsigned flags = 0)
#if BOOST_VERSION < 103400
: portable_iprimitive(is, flags & boost::archive::no_codecvt)
#else
: portable_iprimitive(*is.rdbuf(), flags & boost::archive::no_codecvt)
#endif
, boost::archive::basic_binary_iarchive<portable_iarchive>(flags)
{
init(flags);
}
#if BOOST_VERSION >= 103400
portable_iarchive(std::streambuf& sb, unsigned flags = 0)
: portable_iprimitive(sb, flags & boost::archive::no_codecvt)
, boost::archive::basic_binary_iarchive<portable_iarchive>(flags)
{
init(flags);
}
#endif
//! Load narrow strings.
void load(std::string& s)
{
portable_iprimitive::load(s);
}
#ifndef BOOST_NO_STD_WSTRING
/**
* \brief Load wide strings.
*
* This is rather tricky to get right for true portability as there
* are so many different character encodings around. However, wide
* strings that are encoded in one of the Unicode schemes only need
* to be _transcoded_ which is a lot easier actually.
*
* We generate the output string to be encoded in the system's native
* format, ie. UTF-16 on Windows and UTF-32 on Linux machines. Don't
* know about Mac here so I can't really say about that.
*/
void load(std::wstring& s)
{
std::string utf8;
load(utf8);
s = boost::from_utf8(utf8);
}
#endif
/**
* \brief Loading bool type.
*
* Byte pattern is same as with integer types, so this function
* is somewhat redundant but treating bool as integer generates
* a lot of compiler warnings.
*
* \note If you cannot compile your application and it says something
* about load(bool) cannot convert your type A& into bool& then you
* should check your BOOST_CLASS_IMPLEMENTATION setting for A, as
* portable_archive is not able to handle custom primitive types in
* a general manner.
*/
void load(bool& b)
{
switch (signed char c = load_signed_char())
{
case 0: b = false; break;
case 1: b = load_signed_char(); break;
default: throw portable_archive_exception(c);
}
}
/**
* \brief Load integer types.
*
* First we load the size information ie. the number of bytes that
* hold the actual data. Then we retrieve the data and transform it
* to the original value by using load_little_endian.
*/
template <typename T>
typename boost::enable_if<boost::is_integral<T> >::type
load(T & t, dummy<2> = 0)
{
// get the number of bytes in the stream
if (signed char size = load_signed_char())
{
// check for negative value in unsigned type
if (size < 0 && boost::is_unsigned<T>::value)
throw portable_archive_exception();
// check that our type T is large enough
else if ((unsigned) abs(size) > sizeof(T))
throw portable_archive_exception(size);
// reconstruct the value
T temp = size < 0 ? -1 : 0;
load_binary(&temp, abs(size));
// load the value from little endian - it is then converted
// to the target type T and fits it because size <= sizeof(T)
t = endian::load_little_endian<T, sizeof(T)>(&temp);
}
else t = 0; // zero optimization
}
/**
* \brief Load floating point types.
*
* We simply rely on fp_traits to set the bit pattern from the (unsigned)
* integral type that was stored in the stream. Francois Mauger provided
* standardized behaviour for special values like inf and NaN, that need to
* be serialized in his application.
*
* \note by Johan Rade (author of the floating point utilities library):
* Be warned that the math::detail::fp_traits<T>::type::get_bits() function
* is *not* guaranteed to give you all bits of the floating point number. It
* will give you all bits if and only if there is an integer type that has
* the same size as the floating point you are copying from. It will not
* give you all bits for double if there is no uint64_t. It will not give
* you all bits for long double if sizeof(long double) > 8 or there is no
* uint64_t.
*
* The member fp_traits<T>::type::coverage will tell you whether all bits
* are copied. This is a typedef for either math::detail::all_bits or
* math::detail::not_all_bits.
*
* If the function does not copy all bits, then it will copy the most
* significant bits. So if you serialize and deserialize the way you
* describe, and fp_traits<T>::type::coverage is math::detail::not_all_bits,
* then your floating point numbers will be truncated. This will introduce
* small rounding off errors.
*/
template <typename T>
typename boost::enable_if<boost::is_floating_point<T> >::type
load(T & t, dummy<3> = 0)
{
typedef typename fp::detail::fp_traits<T>::type traits;
// if you end here there are three possibilities:
// 1. you're serializing a long double which is not portable
// 2. you're serializing a double but have no 64 bit integer
// 3. your machine is using an unknown floating point format
// after reading the note above you still might decide to
// deactivate this static assert and try if it works out.
typename traits::bits bits;
BOOST_STATIC_ASSERT(sizeof(bits) == sizeof(T));
BOOST_STATIC_ASSERT(std::numeric_limits<T>::is_iec559);
load(bits);
traits::set_bits(t, bits);
// if the no_infnan flag is set we must throw here
if (get_flags() & no_infnan && !fp::isfinite(t))
throw portable_archive_exception(t);
// if you end here your floating point type does not support
// denormalized numbers. this might be the case even though
// your type conforms to IEC 559 (and thus to IEEE 754)
if (std::numeric_limits<T>::has_denorm == std::denorm_absent
&& fp::fpclassify(t) == (int) FP_SUBNORMAL) // GCC4
throw portable_archive_exception(t);
}
// in boost 1.44 version_type was splitted into library_version_type and
// item_version_type, plus a whole bunch of additional strong typedefs.
template <typename T>
typename boost::disable_if<boost::is_arithmetic<T> >::type
load(T& t, dummy<4> = 0)
{
// we provide a generic load routine for all types that feature
// conversion operators into an unsigned integer value like those
// created through BOOST_STRONG_TYPEDEF(X, some unsigned int) like
// library_version_type, collection_size_type, item_version_type,
// class_id_type, object_id_type, version_type and tracking_type
load((typename boost::uint_t<sizeof(T)*CHAR_BIT>::least&)(t));
}
};
// polymorphic portable binary iarchive typedef
typedef POLYMORPHIC(portable_iarchive) polymorphic_portable_iarchive;
#undef POLYMORPHIC
} // namespace eos
// this is required by export which registers all of your
// classes with all the inbuilt archives plus our archive.
#if BOOST_VERSION < 103500
#define BOOST_ARCHIVE_CUSTOM_IARCHIVE_TYPES eos::portable_iarchive
#else
BOOST_SERIALIZATION_REGISTER_ARCHIVE(eos::portable_iarchive)
BOOST_SERIALIZATION_REGISTER_ARCHIVE(eos::polymorphic_portable_iarchive)
#endif
// if you include this header multiple times and your compiler is picky
// about multiple template instantiations (eg. gcc is) then you need to
// define NO_EXPLICIT_TEMPLATE_INSTANTIATION before every include but one
// or you move the instantiation section into an implementation file
#ifndef NO_EXPLICIT_TEMPLATE_INSTANTIATION
#include <boost/archive/impl/basic_binary_iarchive.ipp>
#include <boost/archive/impl/basic_binary_iprimitive.ipp>
#if BOOST_VERSION < 104000
#include <boost/archive/impl/archive_pointer_iserializer.ipp>
#elif !defined BOOST_ARCHIVE_SERIALIZER_INCLUDED
#include <boost/archive/impl/archive_serializer_map.ipp>
#define BOOST_ARCHIVE_SERIALIZER_INCLUDED
#endif
namespace boost { namespace archive {
// explicitly instantiate for this type of binary stream
template class basic_binary_iarchive<eos::portable_iarchive>;
template class basic_binary_iprimitive<
eos::portable_iarchive
#if BOOST_VERSION < 103400
, std::istream
#else
, std::istream::char_type
, std::istream::traits_type
#endif
>;
#if BOOST_VERSION < 104000
template class detail::archive_pointer_iserializer<eos::portable_iarchive>;
#else
template class detail::archive_serializer_map<eos::portable_iarchive>;
//template class detail::archive_serializer_map<eos::polymorphic_portable_iarchive>;
#endif
} } // namespace boost::archive
#endif
+470
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@@ -0,0 +1,470 @@
/*****************************************************************************/
/**
* \file portable_oarchive.hpp
* \brief Provides an archive to create portable binary files.
* \author christian.pfligersdorffer@gmx.at
* \version 5.1
*
* This pair of archives brings the advantages of binary streams to the cross
* platform boost::serialization user. While being almost as fast as the native
* binary archive it allows its files to be exchanged between cpu architectures
* using different byte order (endianness). Speaking of speed: in serializing
* numbers the (portable) binary approach is approximately ten times faster than
* the ascii implementation (that is inherently portable)!
*
* Based on the portable archive example by Robert Ramey this implementation
* uses Beman Dawes endian library and fp_utilities from Johan Rade, both being
* in boost since 1.36. Prior to that you need to add them both (header only)
* to your boost directory before you're able to use the archives provided.
* Our archives have been tested successfully for boost versions 1.33 to 1.49!
*
* \note Correct behaviour has so far been confirmed using PowerPC-32, x86-32
* and x86-64 platforms featuring different byte order. So there is a good
* chance it will instantly work for your specific setup. If you encounter
* problems or have suggestions please contact the author.
*
* \note Version 5.1 is now compatible with boost up to version 1.59. Thanks to
* ecotax for pointing to the issue with shared_ptr_helper.
*
* \note Version 5.0 is now compatible with boost up to version 1.49 and enables
* serialization of std::wstring by converting it to/from utf8 (thanks to
* Arash Abghari for this suggestion). With that all unit tests from the
* serialization library pass again with the notable exception of user
* defined primitive types. Those are not supported and as a result any
* user defined type to be used with the portable archives are required
* to be at least object_serializable.
*
* \note Oliver Putz pointed out that -0.0 was not serialized correctly, so
* version 4.3 provides a fix for that. Thanks Ollie!
*
* \note Version 4.2 maintains compatibility with the latest boost 1.45 and adds
* serialization of special floating point values inf and NaN as proposed
* by Francois Mauger.
*
* \note Version 4.1 makes the archives work together with boost 1.40 and 1.41.
* Thanks to Francois Mauger for his suggestions.
*
* \note Version 4 removes one level of the inheritance hierarchy and directly
* builds upon binary primitive and basic binary archive, thereby fixing
* the last open issue regarding array serialization. Thanks to Robert
* Ramey for the hint.
*
* \note A few fixes introduced in version 3.1 let the archives pass all of the
* serialization tests. Thanks to Sergey Morozov for running the tests.
* Wouter Bijlsma pointed out where to find the fp_utilities and endian
* libraries headers inside the boost distribution. I would never have
* found them so thank him it works out of the box since boost 1.36.
*
* \note With Version 3.0 the archives have been made portable across different
* boost versions. For that purpose a header is added to the data that
* supplies the underlying serialization library version. Backwards
* compatibility is maintained by assuming library version boost 1.33 if
* the iarchive is created using the no_header flag. Whether a header is
* present or not can be guessed by peeking into the stream: the header's
* first byte is the magic number 127 coinciding with 'e'|'o'|'s' :-)
*
* \note Version 2.1 removes several compiler warnings and enhances floating
* point diagnostics to inform the user if some preconditions are violated
* on his platform. We do not strive for the universally portable solution
* in binary floating point serialization as desired by some boost users.
* Instead we support only the most widely used IEEE 754 format and try to
* detect when requirements are not met and hence our approach must fail.
* Contributions we made by Johan Rade and Ákos Maróy.
*
* \note Version 2.0 fixes a serious bug that effectively transformed most
* of negative integral values into positive values! For example the two
* numbers -12 and 234 were stored in the same 8-bit pattern and later
* always restored to 234. This was fixed in this version in a way that
* does not change the interpretation of existing archives that did work
* because there were no negative numbers. The other way round archives
* created by version 2.0 and containing negative numbers will raise an
* integer type size exception when reading it with version 1.0. Thanks
* to Markus Frohnmaier for testing the archives and finding the bug.
*
* \copyright The boost software license applies.
*/
/*****************************************************************************/
#pragma once
#include <ostream>
// basic headers
#include <boost/version.hpp>
#include <boost/utility/enable_if.hpp>
#include <boost/archive/basic_binary_oprimitive.hpp>
#include <boost/archive/basic_binary_oarchive.hpp>
#if BOOST_VERSION >= 103500 && BOOST_VERSION < 105600
#include <boost/archive/shared_ptr_helper.hpp>
#endif
// funny polymorphics
#if BOOST_VERSION < 103500
#include <boost/archive/detail/polymorphic_oarchive_impl.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_oarchive_impl<T>
#elif BOOST_VERSION < 103600
#include <boost/archive/detail/polymorphic_oarchive_dispatch.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_oarchive_dispatch<T>
#else
#include <boost/archive/detail/polymorphic_oarchive_route.hpp>
#define POLYMORPHIC(T) boost::archive::detail::polymorphic_oarchive_route<T>
#endif
// endian and fpclassify
#if BOOST_VERSION < 103600
#include <boost/integer/endian.hpp>
#include <boost/math/fpclassify.hpp>
#elif BOOST_VERSION < 104800
#include <boost/spirit/home/support/detail/integer/endian.hpp>
#include <boost/spirit/home/support/detail/math/fpclassify.hpp>
#else
#include <boost/spirit/home/support/detail/endian/endian.hpp>
#include <boost/spirit/home/support/detail/math/fpclassify.hpp>
#endif
// namespace alias fp_classify
#if BOOST_VERSION < 103800
namespace fp = boost::math;
#else
namespace fp = boost::spirit::math;
#endif
// namespace alias endian
#if BOOST_VERSION < 104800
namespace endian = boost::detail;
#else
namespace endian = boost::spirit::detail;
#endif
#if BOOST_VERSION >= 104500 && !defined BOOST_NO_STD_WSTRING
// used for wstring to utf8 conversion
#include <boost/program_options/config.hpp>
#include <boost/program_options/detail/convert.hpp>
#endif
// generic type traits for numeric types
#include <boost/type_traits/is_integral.hpp>
#include <boost/type_traits/is_signed.hpp>
#include <boost/type_traits/is_arithmetic.hpp>
#include <boost/type_traits/is_floating_point.hpp>
#include "portable_archive_exception.hpp"
// hint from Johan Rade: on VMS there is still support for
// the VAX floating point format and this macro detects it
#if defined(__vms) && defined(__DECCXX) && !__IEEE_FLOAT
#error "VAX floating point format is not supported!"
#endif
namespace eos {
// forward declaration
class portable_oarchive;
typedef boost::archive::basic_binary_oprimitive<
portable_oarchive
#if BOOST_VERSION < 103400
, std::ostream
#else
, std::ostream::char_type
, std::ostream::traits_type
#endif
> portable_oprimitive;
/**
* \brief Portable binary output archive using little endian format.
*
* This archive addresses integer size, endianness and floating point types so
* that data can be transferred across different systems. The archive consists
* primarily of three different save implementations for integral types,
* floating point types and string types. Those functions are templates and use
* enable_if to be correctly selected for overloading.
*
* \note The class is based on the portable binary example by Robert Ramey and
* uses Beman Dawes endian library plus fp_utilities by Johan Rade.
*/
class portable_oarchive : public portable_oprimitive
// the example derives from common_oarchive but that lacks the
// save_override functions so we chose to stay one level higher
, public boost::archive::basic_binary_oarchive<portable_oarchive>
#if BOOST_VERSION >= 103500 && BOOST_VERSION < 105600
// mix-in helper class for serializing shared_ptr
, public boost::archive::detail::shared_ptr_helper
#endif
{
// workaround for gcc: use a dummy struct
// as additional argument type for overloading
template<int> struct dummy { dummy(int) {}};
// stores a signed char directly to stream
inline void save_signed_char(const signed char& c)
{
portable_oprimitive::save(c);
}
// archive initialization
void init(unsigned flags)
{
// it is vital to have version information if the archive is
// to be parsed with a newer version of boost::serialization
// therefor we create a header, no header means boost 1.33
if (flags & boost::archive::no_header)
BOOST_ASSERT(archive_version == 3);
else
{
// write our minimalistic header (magic byte plus version)
// the boost archives write a string instead - by calling
// boost::archive::basic_binary_oarchive<derived_t>::init()
save_signed_char(magic_byte);
// write current version
// save<unsigned>(archive_version);
operator<<(archive_version);
}
}
public:
/**
* \brief Constructor on a stream using ios::binary mode!
*
* We cannot call basic_binary_oprimitive::init which stores type
* sizes to the archive in order to detect transfers to non-compatible
* platforms.
*
* We could have called basic_binary_oarchive::init which would create
* the boost::serialization standard archive header containing also the
* library version. Due to efficiency we stick with our own.
*/
portable_oarchive(std::ostream& os, unsigned flags = 0)
#if BOOST_VERSION < 103400
: portable_oprimitive(os, flags & boost::archive::no_codecvt)
#else
: portable_oprimitive(*os.rdbuf(), flags & boost::archive::no_codecvt)
#endif
, boost::archive::basic_binary_oarchive<portable_oarchive>(flags)
{
init(flags);
}
#if BOOST_VERSION >= 103400
portable_oarchive(std::streambuf& sb, unsigned flags = 0)
: portable_oprimitive(sb, flags & boost::archive::no_codecvt)
, boost::archive::basic_binary_oarchive<portable_oarchive>(flags)
{
init(flags);
}
#endif
//! Save narrow strings.
void save(const std::string& s)
{
portable_oprimitive::save(s);
}
#ifndef BOOST_NO_STD_WSTRING
/**
* \brief Save wide strings.
*
* This is rather tricky to get right for true portability as there
* are so many different character encodings around. However, wide
* strings that are encoded in one of the Unicode schemes only need
* to be _transcoded_ which is a lot easier actually.
*
* We expect the input string to be encoded in the system's native
* format, ie. UTF-16 on Windows and UTF-32 on Linux machines. Don't
* know about Mac here so I can't really say about that.
*/
void save(const std::wstring& s)
{
save(boost::to_utf8(s));
}
#endif
/**
* \brief Saving bool type.
*
* Saving bool directly, not by const reference
* because of tracking_type's operator (bool).
*
* \note If you cannot compile your application and it says something
* about save(bool) cannot convert your type const A& into bool then
* you should check your BOOST_CLASS_IMPLEMENTATION setting for A, as
* portable_archive is not able to handle custom primitive types in
* a general manner.
*/
void save(const bool& b)
{
save_signed_char(b);
if (b) save_signed_char('T');
}
/**
* \brief Save integer types.
*
* First we save the size information ie. the number of bytes that hold the
* actual data. We subsequently transform the data using store_little_endian
* and store non-zero bytes to the stream.
*/
template <typename T>
typename boost::enable_if<boost::is_integral<T> >::type
save(const T & t, dummy<2> = 0)
{
if (T temp = t)
{
// examine the number of bytes
// needed to represent the number
signed char size = 0;
do { temp >>= CHAR_BIT; ++size; }
while (temp != 0 && temp != (T) -1);
// encode the sign bit into the size
save_signed_char(t > 0 ? size : -size);
BOOST_ASSERT(t > 0 || boost::is_signed<T>::value);
// we choose to use little endian because this way we just
// save the first size bytes to the stream and skip the rest
endian::store_little_endian<T, sizeof(T)>(&temp, t);
save_binary(&temp, size);
}
// zero optimization
else save_signed_char(0);
}
/**
* \brief Save floating point types.
*
* We simply rely on fp_traits to extract the bit pattern into an (unsigned)
* integral type and store that into the stream. Francois Mauger provided
* standardized behaviour for special values like inf and NaN, that need to
* be serialized in his application.
*
* \note by Johan Rade (author of the floating point utilities library):
* Be warned that the math::detail::fp_traits<T>::type::get_bits() function
* is *not* guaranteed to give you all bits of the floating point number. It
* will give you all bits if and only if there is an integer type that has
* the same size as the floating point you are copying from. It will not
* give you all bits for double if there is no uint64_t. It will not give
* you all bits for long double if sizeof(long double) > 8 or there is no
* uint64_t.
*
* The member fp_traits<T>::type::coverage will tell you whether all bits
* are copied. This is a typedef for either math::detail::all_bits or
* math::detail::not_all_bits.
*
* If the function does not copy all bits, then it will copy the most
* significant bits. So if you serialize and deserialize the way you
* describe, and fp_traits<T>::type::coverage is math::detail::not_all_bits,
* then your floating point numbers will be truncated. This will introduce
* small rounding off errors.
*/
template <typename T>
typename boost::enable_if<boost::is_floating_point<T> >::type
save(const T & t, dummy<3> = 0)
{
typedef typename fp::detail::fp_traits<T>::type traits;
// if the no_infnan flag is set we must throw here
if (get_flags() & no_infnan && !fp::isfinite(t))
throw portable_archive_exception(t);
// if you end here there are three possibilities:
// 1. you're serializing a long double which is not portable
// 2. you're serializing a double but have no 64 bit integer
// 3. your machine is using an unknown floating point format
// after reading the note above you still might decide to
// deactivate this static assert and try if it works out.
typename traits::bits bits;
BOOST_STATIC_ASSERT(sizeof(bits) == sizeof(T));
BOOST_STATIC_ASSERT(std::numeric_limits<T>::is_iec559);
// examine value closely
switch (fp::fpclassify(t))
{
//case FP_ZERO: bits = 0; break;
case FP_NAN: bits = traits::exponent | traits::mantissa; break;
case FP_INFINITE: bits = traits::exponent | (t<0) * traits::sign; break;
case FP_SUBNORMAL: assert(std::numeric_limits<T>::has_denorm); // pass
case FP_ZERO: // note that floats can be ±0.0
case FP_NORMAL: traits::get_bits(t, bits); break;
default: throw portable_archive_exception(t);
}
save(bits);
}
// in boost 1.44 version_type was splitted into library_version_type and
// item_version_type, plus a whole bunch of additional strong typedefs.
template <typename T>
typename boost::disable_if<boost::is_arithmetic<T> >::type
save(const T& t, dummy<4> = 0)
{
// we provide a generic save routine for all types that feature
// conversion operators into an unsigned integer value like those
// created through BOOST_STRONG_TYPEDEF(X, some unsigned int) like
// library_version_type, collection_size_type, item_version_type,
// class_id_type, object_id_type, version_type and tracking_type
save((typename boost::uint_t<sizeof(T)*CHAR_BIT>::least)(t));
}
};
// polymorphic portable binary oarchive typedef
typedef POLYMORPHIC(portable_oarchive) polymorphic_portable_oarchive;
#undef POLYMORPHIC
} // namespace eos
// required by export
#if BOOST_VERSION < 103500
#define BOOST_ARCHIVE_CUSTOM_OARCHIVE_TYPES eos::portable_oarchive
#else
BOOST_SERIALIZATION_REGISTER_ARCHIVE(eos::portable_oarchive)
BOOST_SERIALIZATION_REGISTER_ARCHIVE(eos::polymorphic_portable_oarchive)
#endif
// if you include this header multiple times and your compiler is picky
// about multiple template instantiations (eg. gcc is) then you need to
// define NO_EXPLICIT_TEMPLATE_INSTANTIATION before every include but one
// or you move the instantiation section into an implementation file
#ifndef NO_EXPLICIT_TEMPLATE_INSTANTIATION
#include <boost/archive/impl/basic_binary_oarchive.ipp>
#include <boost/archive/impl/basic_binary_oprimitive.ipp>
#if BOOST_VERSION < 104000
#include <boost/archive/impl/archive_pointer_oserializer.ipp>
#elif !defined BOOST_ARCHIVE_SERIALIZER_INCLUDED
#include <boost/archive/impl/archive_serializer_map.ipp>
#define BOOST_ARCHIVE_SERIALIZER_INCLUDED
#endif
namespace boost { namespace archive {
// explicitly instantiate for this type of binary stream
template class basic_binary_oarchive<eos::portable_oarchive>;
template class basic_binary_oprimitive<
eos::portable_oarchive
#if BOOST_VERSION < 103400
, std::ostream
#else
, std::ostream::char_type
, std::ostream::traits_type
#endif
>;
#if BOOST_VERSION < 104000
template class detail::archive_pointer_oserializer<eos::portable_oarchive>;
#else
template class detail::archive_serializer_map<eos::portable_oarchive>;
//template class detail::archive_serializer_map<eos::polymorphic_portable_oarchive>;
#endif
} } // namespace boost::archive
#endif
+1 -1
View File
@@ -91,7 +91,7 @@ class BOOST_SYMBOL_VISIBLE singleton_module :
public boost::noncopyable
{
private:
BOOST_SERIALIZATION_DECL BOOST_DLLEXPORT static bool & get_lock() BOOST_USED;
BOOST_DLLEXPORT static bool & get_lock() BOOST_USED;
public:
BOOST_DLLEXPORT static void lock(){
get_lock() = true;
+6
View File
@@ -459,6 +459,12 @@ basic_iarchive_impl::load_pointer(
cobject_id & co = cobject_id_vector[i];
bpis_ptr = co.bpis_ptr;
if (bpis_ptr == NULL) {
boost::serialization::throw_exception(
archive_exception(archive_exception::unregistered_class)
);
}
load_preamble(ar, co);
// extra line to evade borland issue
+2 -2
View File
@@ -18,7 +18,7 @@
namespace boost {
namespace archive {
BOOST_WARCHIVE_DECL BOOST_DLLEXPORT std::codecvt_base::result
BOOST_WARCHIVE_DECL std::codecvt_base::result
codecvt_null<wchar_t>::do_out(
std::mbstate_t & /*state*/,
const wchar_t * first1,
@@ -46,7 +46,7 @@ codecvt_null<wchar_t>::do_out(
return std::codecvt_base::ok;
}
BOOST_WARCHIVE_DECL BOOST_DLLEXPORT std::codecvt_base::result
BOOST_WARCHIVE_DECL std::codecvt_base::result
codecvt_null<wchar_t>::do_in(
std::mbstate_t & /*state*/,
const char * first1,
+1 -1
View File
@@ -122,7 +122,7 @@ test-suite "serialization" :
[ test-bsl-run_files test_optional ]
[ test-bsl-run_files test_shared_ptr ]
[ test-bsl-run_files test_shared_ptr_multi_base ]
[ test-bsl-run_files test_shared_ptr_132 ]
[ test-bsl-run_files test_shared_ptr_132 : : : [ requires auto_ptr ] ] # BOOST_NO_AUTO_PTR
[ test-bsl-run_polymorphic_archive test_polymorphic : test_polymorphic_A A ]
[ test-bsl-run_polymorphic_archive test_polymorphic2 : test_polymorphic2imp ]
[ test-bsl-run_polymorphic_archive test_polymorphic_helper ]
+35
View File
@@ -0,0 +1,35 @@
/*****************************************************************************/
/**
* \file polymorphic_portable_archive.hpp
* \brief Needed for unit tests on portable archives.
* \author christian.pfligersdorffer@gmx.at
*
* Header for testing portable archives with all of the serialization tests.
* Before use copy all hpp files from this directory to your boost folder
* boost_.../libs/serialization/test and run from there a visual studio
* prompt with b2 oder bjam -sBOOST_ARCHIVE_LIST=portable_archive.hpp
*
* \note Since portable archives version 5.0 we depend on program_options!
* Edit libs/serialization/test/Jamfile.v2 and change the requirements to
* : requirements <source>/boost/filesystem <source>/boost/program_options
*/
/****************************************************************************/
#pragma warning( disable:4217 4127 4310 4244 4800 4267 )
// portable_archive test header
// include output archive header
#include <boost/archive/portable_oarchive.hpp>
// set name of test output archive
typedef eos::polymorphic_portable_oarchive test_oarchive;
// set name of test output stream
typedef std::ofstream test_ostream;
// repeat the above for input archive
#include <boost/archive/portable_iarchive.hpp>
typedef eos::polymorphic_portable_iarchive test_iarchive;
typedef std::ifstream test_istream;
// define open mode for streams
// binary archives should use std::ios_base::binary
#define TEST_STREAM_FLAGS std::ios_base::binary
+25
View File
@@ -0,0 +1,25 @@
// (C) Copyright 2002-4 Robert Ramey - http://www.rrsd.com .
// 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.
// file includes for testing a custom archive.
// as an example this tests the portable binary archive
#include <fstream>
// #include output archive header
#include <boost/archive/portable_oarchive.hpp>
// define output archive class to be used
typedef eos::portable_oarchive test_oarchive;
// and corresponding stream
typedef std::ofstream test_ostream;
// repeat the above for correspondng input archive
#include <boost/archive/portable_iarchive.hpp>
typedef eos::portable_iarchive test_iarchive;
typedef std::ifstream test_istream;
// and stream open flags
#define TEST_STREAM_FLAGS std::ios::binary
+1
View File
@@ -25,6 +25,7 @@ namespace std{
#include "polymorphic_text_archive.hpp"
#include "polymorphic_text_warchive.hpp"
#include "polymorphic_binary_archive.hpp"
#include "polymorphic_portable_archive.hpp"
#include "polymorphic_xml_archive.hpp"
#include "polymorphic_xml_warchive.hpp"
*/
+1
View File
@@ -25,6 +25,7 @@ namespace std{
#include "polymorphic_text_archive.hpp"
#include "polymorphic_text_warchive.hpp"
#include "polymorphic_binary_archive.hpp"
#include "polymorphic_portable_archive.hpp"
#include "polymorphic_xml_archive.hpp"
#include "polymorphic_xml_warchive.hpp"
*/
+4 -4
View File
@@ -49,15 +49,15 @@ void test_slist(){
const char * testfile = boost::archive::tmpnam(NULL);
BOOST_REQUIRE(NULL != testfile);
std::list<A *> aslist;
BOOST_STD_EXTENSION_NAMESPACE::slist<A *> aslist;
{
test_ostream os(testfile, TEST_STREAM_FLAGS);
test_oarchive oa(os, TEST_ARCHIVE_FLAGS);
aslist.push_back(new A);
aslist.push_back(new A);
aslist.push_front(new A);
aslist.push_front(new A);
oa << boost::serialization::make_nvp("aslist", aslist);
}
std::list<A *> aslist1;
BOOST_STD_EXTENSION_NAMESPACE::slist<A *> aslist1;
{
test_istream is(testfile, TEST_STREAM_FLAGS);
test_iarchive ia(is, TEST_ARCHIVE_FLAGS);
+1
View File
@@ -223,6 +223,7 @@ main(int argc, char * argv[]){
#include "text_archive.hpp"
#include "text_warchive.hpp"
#include "binary_archive.hpp"
#include "portable_archive.hpp"
#include "xml_archive.hpp"
#include "xml_warchive.hpp"
*/
+70 -2
View File
@@ -12,6 +12,7 @@
#include <cstddef> // NULL
#include <cstdio> // remove
#include <cstring> // strcmp
#include <boost/config.hpp>
#if defined(BOOST_NO_STDC_NAMESPACE)
namespace std{
@@ -54,6 +55,22 @@ class polymorphic_derived2 : public polymorphic_base
}
};
struct type1 {
template<typename Archive>
void serialize(Archive&, unsigned int ver) {
BOOST_CHECK(ver == 1);
}
};
struct type2 {
template<typename Archive>
void serialize(Archive&, unsigned int ver) {
BOOST_CHECK(ver == 2);
}
};
BOOST_CLASS_VERSION(type1, 1);
BOOST_CLASS_VERSION(type2, 2);
// save unregistered polymorphic classes
void save_unregistered1(const char *testfile)
{
@@ -61,7 +78,7 @@ void save_unregistered1(const char *testfile)
test_oarchive oa(os, TEST_ARCHIVE_FLAGS);
polymorphic_base *rb1 = new polymorphic_derived1;
// registration IS necessary when serializing a polymorphic class
// through pointer to the base class
bool except = false;
@@ -98,7 +115,7 @@ void load_unregistered1(const char *testfile)
BOOST_CATCH(boost::archive::archive_exception aex){
except = true;
BOOST_CHECK_MESSAGE(
NULL == rb1,
NULL == rb1,
"failed load resulted in a non-null pointer"
);
}
@@ -227,6 +244,55 @@ void load_registered(const char *testfile)
delete rb2;
}
// store a pointer from slot0
void save_unregistered_pointer(const char *testfile)
{
test_ostream os(testfile, TEST_STREAM_FLAGS);
test_oarchive oa(os, TEST_ARCHIVE_FLAGS);
oa.register_type(static_cast<type2 *>(NULL));
type1 instance1;
type2 *pointer2 = new type2;
BOOST_TRY {
oa & BOOST_SERIALIZATION_NVP(instance1) & BOOST_SERIALIZATION_NVP(pointer2);
}
BOOST_CATCH(...) {
BOOST_CHECK_MESSAGE(false, "unexpected exception");
}
BOOST_CATCH_END
delete pointer2;
}
// load a pointer from slot0 which has no pointer serializer
void load_unregistered_pointer(const char *testfile)
{
test_istream is(testfile);
test_iarchive ia(is);
type1 instance1;
type2 *pointer2(NULL);
bool except = false;
BOOST_TRY {
ia & BOOST_SERIALIZATION_NVP(instance1) & BOOST_SERIALIZATION_NVP(pointer2);
}
BOOST_CATCH(boost::archive::archive_exception aex){
except = true;
BOOST_CHECK_MESSAGE(
std::strcmp(aex.what(), "unregistered class") == 0,
"incorrect exception"
);
}
BOOST_CATCH_END
BOOST_CHECK_MESSAGE(except, "lack of registration not detected !");
BOOST_CHECK_MESSAGE(NULL == pointer2, "expected failed load");
delete pointer2;
}
int
test_main( int /* argc */, char* /* argv */[] )
{
@@ -238,6 +304,8 @@ test_main( int /* argc */, char* /* argv */[] )
load_unregistered2(testfile);
save_registered(testfile);
load_registered(testfile);
save_unregistered_pointer(testfile);
load_unregistered_pointer(testfile);
std::remove(testfile);
return EXIT_SUCCESS;
}
+42 -1
View File
@@ -240,7 +240,7 @@ int main(int argc, char **argv) {
return 0;
}
#else
#elif 0
#include <cassert>
#include <string>
@@ -555,5 +555,46 @@ int main()
assert(base64 == output);
return 0;
}
#else
#include <memory>
#include <sstream>
#include <boost/archive/text_iarchive.hpp>
#include <boost/archive/text_oarchive.hpp>
#include <boost/serialization/shared_ptr.hpp>
struct S
{
int i;
char c;
template <class Archive>
void serialize(Archive & ar, const unsigned int version)
{
ar & i;
ar & c;
}
};
int main()
{
const auto s0 = std::make_shared<S>();
s0->i = 42;
s0->c = 'c';
std::stringstream ss;
{
boost::archive::text_oarchive oa(ss);
oa << s0;
}
std::shared_ptr<S> s1;
{
boost::archive::text_iarchive ia(ss);
ia >> s1;
}
return 0;
}
#endif
+2 -1
View File
@@ -20,7 +20,8 @@ if ! $(BOOST_ARCHIVE_LIST) {
"text_warchive.hpp"
"binary_archive.hpp"
"xml_archive.hpp"
"xml_warchive.hpp"
"xml_warchive.hpp"
"portable_binary_archive.hpp"
;
# enable the tests which don't depend on a particular archive
BOOST_SERIALIZATION_TEST = true ;