Use Boost.Test's minimal test library for unordered & hash. It's closer to

Boster.Test which makes it easier to switch to take advantage of Boost.Test's
extra testing facilities.

Merged revisions 44420 via svnmerge from 
https://svn.boost.org/svn/boost/branches/unordered/trunk

........
  r44420 | danieljames | 2008-04-14 19:02:03 +0100 (Mon, 14 Apr 2008) | 1 line
  
  Use Boost.Test's minimal test library.
........


[SVN r44487]
This commit is contained in:
Daniel James
2008-04-17 07:39:24 +00:00
parent cf529e496a
commit 9cfee57633
23 changed files with 282 additions and 285 deletions
+22 -22
View File
@@ -52,11 +52,11 @@ namespace move_tests
{
T y(empty(ptr));
BOOST_TEST(y.empty());
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(y.max_load_factor() == 1.0);
BOOST_CHECK(y.empty());
BOOST_CHECK(test::equivalent(y.hash_function(), hf));
BOOST_CHECK(test::equivalent(y.key_eq(), eq));
BOOST_CHECK(test::equivalent(y.get_allocator(), al));
BOOST_CHECK(y.max_load_factor() == 1.0);
test::check_equivalent_keys(y);
}
@@ -64,7 +64,7 @@ namespace move_tests
test::random_values<T> v(1000);
BOOST_DEDUCED_TYPENAME T::value_type const* first = 0;
T y(create(v, first));
BOOST_TEST(first == &*y.begin());
BOOST_CHECK(first == &*y.begin());
test::check_container(y, v);
test::check_equivalent_keys(y);
}
@@ -78,7 +78,7 @@ namespace move_tests
BOOST_DEDUCED_TYPENAME T::value_type const* first = 0;
T y;
y = create(v, first);
BOOST_TEST(first == &*y.begin());
BOOST_CHECK(first == &*y.begin());
test::check_container(y, v);
test::check_equivalent_keys(y);
}
@@ -100,12 +100,12 @@ namespace move_tests
{
test::random_values<T> v(500);
T y(create(v, first, hf, eq, al, 0.5));
BOOST_TEST(first == &*y.begin());
BOOST_CHECK(first == &*y.begin());
test::check_container(y, v);
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(y.max_load_factor() == 0.5); // Not necessarily required.
BOOST_CHECK(test::equivalent(y.hash_function(), hf));
BOOST_CHECK(test::equivalent(y.key_eq(), eq));
BOOST_CHECK(test::equivalent(y.get_allocator(), al));
BOOST_CHECK(y.max_load_factor() == 0.5); // Not necessarily required.
test::check_equivalent_keys(y);
}
@@ -113,24 +113,24 @@ namespace move_tests
// TODO: To do this correctly requires the fancy new allocator stuff.
test::random_values<T> v(500);
T y(create(v, first, hf, eq, al, 2.0), al2);
BOOST_TEST(first != &*y.begin());
BOOST_CHECK(first != &*y.begin());
test::check_container(y, v);
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al2));
BOOST_TEST(y.max_load_factor() == 2.0); // Not necessarily required.
BOOST_CHECK(test::equivalent(y.hash_function(), hf));
BOOST_CHECK(test::equivalent(y.key_eq(), eq));
BOOST_CHECK(test::equivalent(y.get_allocator(), al2));
BOOST_CHECK(y.max_load_factor() == 2.0); // Not necessarily required.
test::check_equivalent_keys(y);
}
{
test::random_values<T> v(25);
T y(create(v, first, hf, eq, al, 1.0), al);
BOOST_TEST(first == &*y.begin());
BOOST_CHECK(first == &*y.begin());
test::check_container(y, v);
BOOST_TEST(test::equivalent(y.hash_function(), hf));
BOOST_TEST(test::equivalent(y.key_eq(), eq));
BOOST_TEST(test::equivalent(y.get_allocator(), al));
BOOST_TEST(y.max_load_factor() == 1.0); // Not necessarily required.
BOOST_CHECK(test::equivalent(y.hash_function(), hf));
BOOST_CHECK(test::equivalent(y.key_eq(), eq));
BOOST_CHECK(test::equivalent(y.get_allocator(), al));
BOOST_CHECK(y.max_load_factor() == 1.0); // Not necessarily required.
test::check_equivalent_keys(y);
}
}