220 lines
7.7 KiB
C++
220 lines
7.7 KiB
C++
// Copyright (C) Eric Niebler 2008.
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// Copyright (C) Pieter Bastiaan Ober 2014.
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// Use, modification and distribution are subject to the
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// Boost Software License, Version 1.0. (See accompanying file
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// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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#include <boost/test/unit_test.hpp>
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#include <boost/test/tools/floating_point_comparison.hpp>
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#include <boost/mpl/assert.hpp>
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#include <boost/type_traits/is_same.hpp>
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#include <boost/accumulators/accumulators.hpp>
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#include <boost/accumulators/statistics/stats.hpp>
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#include <boost/accumulators/statistics/rolling_mean.hpp>
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#include <sstream>
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#include <boost/archive/text_oarchive.hpp>
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#include <boost/archive/text_iarchive.hpp>
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using namespace boost;
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using namespace unit_test;
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using namespace accumulators;
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template<typename T>
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void assert_is_double(T const &)
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{
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BOOST_MPL_ASSERT((is_same<T, double>));
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}
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// test_rolling_mean_test_impl
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// implements a test for window_size = 5
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size_t window_size = 5;
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template<typename accumulator_set_type>
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void
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test_rolling_mean_test_impl(accumulator_set_type& acc)
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{
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acc(1);
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BOOST_CHECK_CLOSE(1., rolling_mean(acc), 1e-5);
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acc(2);
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BOOST_CHECK_CLOSE(1.5, rolling_mean(acc), 1e-5);
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acc(3);
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BOOST_CHECK_CLOSE(2., rolling_mean(acc), 1e-5);
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acc(4);
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BOOST_CHECK_CLOSE(2.5, rolling_mean(acc), 1e-5);
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acc(5);
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BOOST_CHECK_CLOSE(3., rolling_mean(acc), 1e-5);
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acc(6);
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BOOST_CHECK_CLOSE(4., rolling_mean(acc), 1e-5);
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acc(7);
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BOOST_CHECK_CLOSE(5., rolling_mean(acc), 1e-5);
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assert_is_double(rolling_mean(acc));
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}
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template<typename accumulator_set_type>
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void
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test_rolling_mean_unsigned_test_impl(accumulator_set_type& acc)
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{
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acc(7U);
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BOOST_CHECK_CLOSE(7., rolling_mean(acc), 1e-5);
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acc(6U);
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BOOST_CHECK_CLOSE(6.5, rolling_mean(acc), 1e-5);
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acc(5U);
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BOOST_CHECK_CLOSE(6., rolling_mean(acc), 1e-5);
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acc(4U);
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BOOST_CHECK_CLOSE(5.5, rolling_mean(acc), 1e-5);
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acc(3U);
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BOOST_CHECK_CLOSE(5., rolling_mean(acc), 1e-5);
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acc(2U);
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BOOST_CHECK_CLOSE(4., rolling_mean(acc), 1e-5);
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acc(1U);
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BOOST_CHECK_CLOSE(3., rolling_mean(acc), 1e-5);
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assert_is_double(rolling_mean(acc));
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}
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///////////////////////////////////////////////////////////////////////////////
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// test_persistency_impl
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//
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template<typename accumulator_set_type>
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void test_persistency_impl(accumulator_set_type& acc)
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{
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std::stringstream ss;
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{
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acc(1);
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acc(2);
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acc(3);
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acc(4);
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acc(5);
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acc(6);
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acc(7);
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BOOST_CHECK_CLOSE(5., rolling_mean(acc), 1e-5);
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boost::archive::text_oarchive oa(ss);
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acc.serialize(oa, 0);
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}
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// initialize from acc to make sure all values are passed
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accumulator_set_type other_acc = acc;
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// accumulate more, to make sure that deserialization set the right value
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// and not the copy ctor
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other_acc(100);
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other_acc(100);
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other_acc(100);
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other_acc(100);
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other_acc(100);
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boost::archive::text_iarchive ia(ss);
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other_acc.serialize(ia, 0);
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BOOST_CHECK_CLOSE(5., rolling_mean(other_acc), 1e-5);
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}
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///////////////////////////////////////////////////////////////////////////////
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// test_rolling_mean
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void test_rolling_mean()
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{
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accumulator_set<int,stats<tag::immediate_rolling_mean> >
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acc_immediate_rolling_mean(tag::immediate_rolling_mean::window_size = window_size),
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acc_immediate_rolling_mean2(tag::immediate_rolling_mean::window_size = window_size, sample = 0);
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accumulator_set<int,stats<tag::rolling_mean(immediate)> >
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acc_immediate_rolling_mean3(tag::immediate_rolling_mean::window_size = window_size);
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accumulator_set<int,stats<tag::lazy_rolling_mean> >
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acc_lazy_rolling_mean(tag::lazy_rolling_mean::window_size = window_size),
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acc_lazy_rolling_mean2(tag::lazy_rolling_mean::window_size = window_size, sample = 0);
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accumulator_set<int,stats<tag::rolling_mean(lazy)> >
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acc_lazy_rolling_mean3(tag::lazy_rolling_mean::window_size = window_size);
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accumulator_set<int,stats<tag::rolling_mean> >
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acc_default_rolling_mean(tag::rolling_mean::window_size = window_size),
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acc_default_rolling_mean2(tag::rolling_mean::window_size = window_size, sample = 0);
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//// test the different implementations
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test_rolling_mean_test_impl(acc_lazy_rolling_mean);
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test_rolling_mean_test_impl(acc_default_rolling_mean);
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test_rolling_mean_test_impl(acc_immediate_rolling_mean);
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test_rolling_mean_test_impl(acc_lazy_rolling_mean2);
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test_rolling_mean_test_impl(acc_default_rolling_mean2);
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test_rolling_mean_test_impl(acc_immediate_rolling_mean2);
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test_rolling_mean_test_impl(acc_lazy_rolling_mean3);
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test_rolling_mean_test_impl(acc_immediate_rolling_mean3);
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//// test that the default implementation is the 'immediate' computation
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BOOST_REQUIRE(sizeof(acc_lazy_rolling_mean) != sizeof(acc_immediate_rolling_mean));
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BOOST_CHECK (sizeof(acc_default_rolling_mean) == sizeof(acc_immediate_rolling_mean));
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//// test the equivalence of the different ways to indicate a feature
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BOOST_CHECK (sizeof(acc_lazy_rolling_mean) == sizeof(acc_lazy_rolling_mean2));
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BOOST_CHECK (sizeof(acc_lazy_rolling_mean) == sizeof(acc_lazy_rolling_mean3));
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BOOST_CHECK (sizeof(acc_immediate_rolling_mean) == sizeof(acc_immediate_rolling_mean2));
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BOOST_CHECK (sizeof(acc_immediate_rolling_mean) == sizeof(acc_immediate_rolling_mean3));
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//// test unsigned int with both implementations
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accumulator_set<unsigned int,stats<tag::immediate_rolling_mean> >
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acc_immediate_rolling_mean4(tag::immediate_rolling_mean::window_size = window_size),
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acc_immediate_rolling_mean5(tag::immediate_rolling_mean::window_size = window_size, sample = 0);
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test_rolling_mean_unsigned_test_impl(acc_immediate_rolling_mean4);
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test_rolling_mean_unsigned_test_impl(acc_immediate_rolling_mean5);
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}
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///////////////////////////////////////////////////////////////////////////////
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// test_persistency
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void test_persistency()
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{
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accumulator_set<int,stats<tag::immediate_rolling_mean> >
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acc_immediate_rolling_mean(tag::immediate_rolling_mean::window_size = window_size),
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acc_immediate_rolling_mean2(tag::immediate_rolling_mean::window_size = window_size, sample = 0);
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accumulator_set<int,stats<tag::rolling_mean(immediate)> >
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acc_immediate_rolling_mean3(tag::immediate_rolling_mean::window_size = window_size);
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accumulator_set<int,stats<tag::lazy_rolling_mean> >
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acc_lazy_rolling_mean(tag::lazy_rolling_mean::window_size = window_size),
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acc_lazy_rolling_mean2(tag::lazy_rolling_mean::window_size = window_size, sample = 0);
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accumulator_set<int,stats<tag::rolling_mean(lazy)> >
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acc_lazy_rolling_mean3(tag::lazy_rolling_mean::window_size = window_size);
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accumulator_set<int,stats<tag::rolling_mean> >
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acc_default_rolling_mean(tag::rolling_mean::window_size = window_size),
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acc_default_rolling_mean2(tag::rolling_mean::window_size = window_size, sample = 0);
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//// test the different implementations
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test_persistency_impl(acc_lazy_rolling_mean);
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test_persistency_impl(acc_default_rolling_mean);
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test_persistency_impl(acc_immediate_rolling_mean);
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test_persistency_impl(acc_lazy_rolling_mean2);
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test_persistency_impl(acc_default_rolling_mean2);
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test_persistency_impl(acc_immediate_rolling_mean2);
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test_persistency_impl(acc_lazy_rolling_mean3);
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test_persistency_impl(acc_immediate_rolling_mean3);
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}
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///////////////////////////////////////////////////////////////////////////////
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// init_unit_test_suite
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//
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test_suite* init_unit_test_suite( int argc, char* argv[] )
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{
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test_suite *test = BOOST_TEST_SUITE("rolling mean test");
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test->add(BOOST_TEST_CASE(&test_rolling_mean));
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test->add(BOOST_TEST_CASE(&test_persistency));
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return test;
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}
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