serialization/test/test_binary.cpp
Robert Ramey 225b1e326b update test_utf8_codecvt test to use std::istream_iterator.
update other tests for improvements in base64_from_binary
tweak test_complex to play nice with PGI library.

[SVN r82200]
2012-12-24 18:12:43 +00:00

168 lines
4.6 KiB
C++

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// test_simple_class.cpp
// (C) Copyright 2002 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)
// should pass compilation and execution
#include <cstdlib> // for rand(), NULL, size_t
#include <fstream>
#include <boost/config.hpp>
#include <cstdio> // remove
#if defined(BOOST_NO_STDC_NAMESPACE)
namespace std{
using ::rand;
using ::remove;
}
#endif
#include "test_tools.hpp"
#include <boost/serialization/nvp.hpp>
#include <boost/serialization/binary_object.hpp>
class A {
friend class boost::serialization::access;
char data[150];
// note: from an aesthetic perspective, I would much prefer to have this
// defined out of line. Unfortunately, this trips a bug in the VC 6.0
// compiler. So hold our nose and put it her to permit running of tests.
template<class Archive>
void serialize(Archive & ar, const unsigned int /* file_version */){
ar & boost::serialization::make_nvp(
"data",
boost::serialization::make_binary_object(data, sizeof(data))
);
}
public:
A();
bool operator==(const A & rhs) const;
};
A::A(){
int i = sizeof(data);
while(i-- > 0)
data[i] = static_cast<char>(0xff & std::rand());
}
bool A::operator==(const A & rhs) const {
int i = sizeof(data);
while(i-- > 0)
if(data[i] != rhs.data[i])
return false;
return true;
}
int test_main( int /* argc */, char* /* argv */[] )
{
const char * testfile = boost::archive::tmpnam(NULL);
BOOST_REQUIRE(NULL != testfile);
const A a;
char s1[] = "a";
char s2[] = "ab";
char s3[] = "abc";
char s4[] = "abcd";
const int i = 12345;
A a1;
char s1_1[10];
char s1_2[10];
char s1_3[10];
char s1_4[10];
int i1 = 34790;
std::memset(s1_1, '\0', sizeof(s1_1));
std::memset(s1_2, '\0', sizeof(s1_2));
std::memset(s1_3, '\0', sizeof(s1_3));
std::memset(s1_4, '\0', sizeof(s1_4));
{
test_ostream os(testfile, TEST_STREAM_FLAGS);
test_oarchive oa(os, TEST_ARCHIVE_FLAGS);
oa << boost::serialization::make_nvp(
"s1",
boost::serialization::make_binary_object(
s1,
sizeof(s1)
)
);
oa << boost::serialization::make_nvp(
"s2",
boost::serialization::make_binary_object(
s2,
sizeof(s2)
)
);
oa << boost::serialization::make_nvp(
"s3",
boost::serialization::make_binary_object(
s3,
sizeof(s3)
)
);
oa << boost::serialization::make_nvp(
"s4",
boost::serialization::make_binary_object(
s4,
sizeof(s4)
)
);
oa << BOOST_SERIALIZATION_NVP(a);
// note: add a little bit on the end of the archive to detect
// failure of text mode binary.
oa << BOOST_SERIALIZATION_NVP(i);
}
{
test_istream is(testfile, TEST_STREAM_FLAGS);
test_iarchive ia(is, TEST_ARCHIVE_FLAGS);
ia >> boost::serialization::make_nvp(
"s1",
boost::serialization::make_binary_object(
s1_1,
sizeof(s1)
)
);
ia >> boost::serialization::make_nvp(
"s2",
boost::serialization::make_binary_object(
s1_2,
sizeof(s2)
)
);
ia >> boost::serialization::make_nvp(
"s3",
boost::serialization::make_binary_object(
s1_3,
sizeof(s3)
)
);
ia >> boost::serialization::make_nvp(
"s4",
boost::serialization::make_binary_object(
s1_4,
sizeof(s4)
)
);
ia >> BOOST_SERIALIZATION_NVP(a1);
// note: add a little bit on the end of the archive to detect
// failure of text mode binary.
ia >> BOOST_SERIALIZATION_NVP(i1);
}
BOOST_CHECK(0 == std::strcmp(s1, s1_1));
BOOST_CHECK(0 == std::strcmp(s2, s1_2));
BOOST_CHECK(0 == std::strcmp(s3, s1_3));
BOOST_CHECK(0 == std::strcmp(s4, s1_4));
BOOST_CHECK(a == a1);
BOOST_CHECK(i == i1);
std::remove(testfile);
return EXIT_SUCCESS;
}
// EOF