allTests(global::Test.TestHelper helper, Ice.Communicator communicator, Ice.Communicator communicator2, string rf) { Instrumentation.testInvocationReset(); var output = helper.getWriter(); output.Write("testing stringToProxy... "); output.Flush(); var base1 = communicator.stringToProxy(rf); test(base1 != null); var base2 = communicator.stringToProxy(rf); test(base2 != null); output.WriteLine("ok"); output.Write("testing checked cast... "); output.Flush(); Test.RetryPrx retry1 = Test.RetryPrxHelper.checkedCast(base1); test(retry1 != null); test(retry1.Equals(base1)); Test.RetryPrx retry2 = Test.RetryPrxHelper.checkedCast(base2); test(retry2 != null); test(retry2.Equals(base2)); output.WriteLine("ok"); output.Write("calling regular operation with first proxy... "); output.Flush(); retry1.op(false); output.WriteLine("ok"); Instrumentation.testInvocationCount(3); output.Write("calling operation to kill connection with second proxy... "); output.Flush(); try { retry2.op(true); test(false); } catch (Ice.UnknownLocalException) { // Expected with collocation } catch (Ice.ConnectionLostException) { } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); output.WriteLine("ok"); output.Write("calling regular operation with first proxy again... "); output.Flush(); retry1.op(false); Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(0); Instrumentation.testRetryCount(0); output.WriteLine("ok"); output.Write("calling regular AMI operation with first proxy... "); retry1.opAsync(false).Wait(); Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(0); Instrumentation.testRetryCount(0); output.WriteLine("ok"); output.Write("calling AMI operation to kill connection with second proxy... "); try { retry2.opAsync(true).Wait(); test(false); } catch (System.AggregateException ex) { test(ex.InnerException is ConnectionLostException || ex.InnerException is UnknownLocalException); } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); output.WriteLine("ok"); output.Write("calling regular AMI operation with first proxy again... "); retry1.opAsync(false).Wait(); Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(0); Instrumentation.testRetryCount(0); output.WriteLine("ok"); output.Write("testing idempotent operation... "); test(retry1.opIdempotent(4) == 4); Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(0); Instrumentation.testRetryCount(4); test(retry1.opIdempotentAsync(4).Result == 4); Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(0); Instrumentation.testRetryCount(4); output.WriteLine("ok"); output.Write("testing non-idempotent operation... "); try { retry1.opNotIdempotent(); test(false); } catch (Ice.LocalException) { } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); try { retry1.opNotIdempotentAsync().Wait(); test(false); } catch (System.AggregateException ex) { test(ex.InnerException is LocalException); } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); output.WriteLine("ok"); if (retry1.ice_getConnection() == null) { Instrumentation.testInvocationCount(1); output.Write("testing system exception... "); try { retry1.opSystemException(); test(false); } catch (SystemFailure) { } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); try { retry1.opSystemExceptionAsync().Wait(); test(false); } catch (System.AggregateException ex) { test(ex.InnerException is SystemFailure); } Instrumentation.testInvocationCount(1); Instrumentation.testFailureCount(1); Instrumentation.testRetryCount(0); output.WriteLine("ok"); } { output.Write("testing invocation timeout and retries... "); output.Flush(); retry2 = Test.RetryPrxHelper.checkedCast(communicator2.stringToProxy(retry1.ToString())); try { // No more than 2 retries before timeout kicks-in ((Test.RetryPrx)retry2.ice_invocationTimeout(500)).opIdempotent(4); test(false); } catch (InvocationTimeoutException) { Instrumentation.testRetryCount(2); retry2.opIdempotent(-1); // Reset the counter Instrumentation.testRetryCount(-1); } try { // No more than 2 retries before timeout kicks-in Test.RetryPrx prx = (Test.RetryPrx)retry2.ice_invocationTimeout(500); prx.opIdempotentAsync(4).Wait(); test(false); } catch (System.AggregateException ex) { test(ex.InnerException is InvocationTimeoutException); Instrumentation.testRetryCount(2); retry2.opIdempotent(-1); // Reset the counter Instrumentation.testRetryCount(-1); } if (retry1.ice_getConnection() != null) { // The timeout might occur on connection establishment or because of the sleep. What's // important here is to make sure there are 4 retries and that no calls succeed to // ensure retries with the old connection timeout semantics work. Test.RetryPrx retryWithTimeout = (Test.RetryPrx)retry1.ice_invocationTimeout(-2).ice_timeout(200); try { retryWithTimeout.sleep(500); test(false); } catch (Ice.TimeoutException) { } Instrumentation.testRetryCount(4); } output.WriteLine("ok"); } return(retry1); }