#include <vector>
#include <algorithm>
+#include <type_traits>
// Multi-threaded queue push/pop test
namespace {
static size_t s_nConsumerThreadCount = 4;
static size_t s_nProducerThreadCount = 4;
static size_t s_nQueueSize = 4000000;
+ static size_t s_nHeavyValueSize = 100;
static std::atomic<size_t> s_nProducerDone( 0 );
+ struct old_value
+ {
+ size_t nNo;
+ size_t nWriterNo;
+ };
+
+ template<class Value = old_value>
class queue_push_pop: public cds_test::stress_fixture
{
protected:
- struct value_type
- {
- size_t nNo;
- size_t nWriterNo;
- };
+ using value_type = Value;
enum {
producer_thread,
propout() << q.statistics();
}
+ private:
+ static void set_array_size( size_t size ) {
+ const bool tmp = fc_test::has_set_array_size<value_type>::value;
+ set_array_size(size, std::integral_constant<bool, tmp>());
+ }
+
+ static void set_array_size(size_t size, std::true_type){
+ value_type::set_array_size(size);
+ }
+
+ static void set_array_size(size_t, std::false_type)
+ {
+ }
+
public:
static void SetUpTestCase()
{
s_nConsumerThreadCount = cfg.get_size_t( "ConsumerCount", s_nConsumerThreadCount );
s_nProducerThreadCount = cfg.get_size_t( "ProducerCount", s_nProducerThreadCount );
s_nQueueSize = cfg.get_size_t( "QueueSize", s_nQueueSize );
+ s_nHeavyValueSize = cfg.get_size_t( "HeavyValueSize", s_nHeavyValueSize );
if ( s_nConsumerThreadCount == 0u )
s_nConsumerThreadCount = 1;
s_nProducerThreadCount = 1;
if ( s_nQueueSize == 0u )
s_nQueueSize = 1000;
+ if ( s_nHeavyValueSize == 0 )
+ s_nHeavyValueSize = 1;
+
+ set_array_size( s_nHeavyValueSize );
}
//static void TearDownTestCase();
};
- CDSSTRESS_MSQueue( queue_push_pop )
- CDSSTRESS_MoirQueue( queue_push_pop )
- CDSSTRESS_BasketQueue( queue_push_pop )
- CDSSTRESS_OptimsticQueue( queue_push_pop )
- CDSSTRESS_FCQueue( queue_push_pop )
- CDSSTRESS_FCDeque( queue_push_pop )
- CDSSTRESS_RWQueue( queue_push_pop )
- CDSSTRESS_StdQueue( queue_push_pop )
+ using fc_with_heavy_value = queue_push_pop< fc_test::heavy_value<36000> >;
+ using simple_queue_push_pop = queue_push_pop<>;
+
+ CDSSTRESS_MSQueue( simple_queue_push_pop )
+ CDSSTRESS_MoirQueue( simple_queue_push_pop )
+ CDSSTRESS_BasketQueue( simple_queue_push_pop )
+ CDSSTRESS_OptimsticQueue( simple_queue_push_pop )
+ CDSSTRESS_FCQueue( simple_queue_push_pop )
+ CDSSTRESS_FCDeque( simple_queue_push_pop )
+ CDSSTRESS_FCDeque_HeavyValue( fc_with_heavy_value )
+ CDSSTRESS_RWQueue( simple_queue_push_pop )
+ CDSSTRESS_StdQueue( simple_queue_push_pop )
#undef CDSSTRESS_Queue_F
-#define CDSSTRESS_Queue_F( test_fixture, type_name, level ) \
+#define CDSSTRESS_Queue_F( test_fixture, type_name ) \
TEST_F( test_fixture, type_name ) \
{ \
- if ( !check_detail_level( level )) return; \
typedef queue::Types< value_type >::type_name queue_type; \
queue_type queue( s_nQueueSize ); \
test( queue ); \
}
- CDSSTRESS_VyukovQueue( queue_push_pop )
+ CDSSTRESS_VyukovQueue( simple_queue_push_pop )
#undef CDSSTRESS_Queue_F
// SegmentedQueue test
class segmented_queue_push_pop
- : public queue_push_pop
+ : public queue_push_pop<>
, public ::testing::WithParamInterface< size_t >
{
- typedef queue_push_pop base_class;
+ typedef queue_push_pop<> base_class;
protected:
if ( bIterative && quasi_factor > 4 ) {
for ( size_t qf = 4; qf <= quasi_factor; qf *= 2 )
args.push_back( qf );
- }
- else {
+ } else {
if ( quasi_factor > 2 )
args.push_back( quasi_factor );
else
}
};
-#define CDSSTRESS_Queue_F( test_fixture, type_name, level ) \
+#define CDSSTRESS_Queue_F( test_fixture, type_name ) \
TEST_P( test_fixture, type_name ) \
{ \
- if ( !check_detail_level( level )) return; \
typedef typename queue::Types<value_type>::type_name queue_type; \
test< queue_type >(); \
}
CDSSTRESS_SegmentedQueue( segmented_queue_push_pop )
+#ifdef CDSTEST_GTEST_INSTANTIATE_TEST_CASE_P_HAS_4TH_ARG
+ static std::string get_test_parameter_name( testing::TestParamInfo<size_t> const& p )
+ {
+ return std::to_string( p.param );
+ }
+ INSTANTIATE_TEST_CASE_P( SQ,
+ segmented_queue_push_pop,
+ ::testing::ValuesIn( segmented_queue_push_pop::get_test_parameters()), get_test_parameter_name );
+#else
INSTANTIATE_TEST_CASE_P( SQ,
segmented_queue_push_pop,
::testing::ValuesIn( segmented_queue_push_pop::get_test_parameters()));
+#endif
} // namespace