""" Test that if we hit a breakpoint on two threads at the same time, one of which passes the condition, one not, we only have a breakpoint stop reason for the one that passed the condition. """ import lldb import lldbsuite.test.lldbutil as lldbutil from lldbsuite.test.decorators import * from lldbsuite.test.lldbtest import * class TestTwoHitsOneActual(TestBase): NO_DEBUG_INFO_TESTCASE = True @skipIf(oslist=["linux"], archs=["arm$", "aarch64"]) def test_two_hits_one_actual(self): """There can be many tests in a test case - describe this test here.""" self.build() self.main_source_file = lldb.SBFileSpec("main.cpp") self.sample_test() def sample_test(self): """You might use the test implementation in several ways, say so here.""" (target, process, main_thread, _) = lldbutil.run_to_source_breakpoint( self, "Set bkpt here to get started", self.main_source_file ) # This is working around a separate bug. If you hit a breakpoint and # run an expression and it is the first expression you've ever run, on # Darwin that will involve running the ObjC runtime parsing code, and we'll # be in the middle of that when we do PerformAction on the other thread, # which will cause the condition expression to fail. Calling another # expression first works around this. val_obj = main_thread.frame[0].EvaluateExpression("main_usec==1") self.assertSuccess(val_obj.GetError(), "Ran our expression successfully") self.assertEqual(val_obj.value, "true", "Value was true.") # Set two breakpoints just to test the multiple location logic: bkpt1 = target.BreakpointCreateBySourceRegex( "Break here in the helper", self.main_source_file ) bkpt2 = target.BreakpointCreateBySourceRegex( "Break here in the helper", self.main_source_file ) # This one will never be hit: bkpt1.SetCondition("usec == 100") # This one will only be hit on the main thread: bkpt2.SetCondition("usec == 1") # This is hard to test definitively, becuase it requires hitting # a breakpoint on multiple threads at the same time. On Darwin, this # will happen pretty much ever time we continue. What we are really # asserting is that we only ever stop on one thread, so we approximate that # by continuing 20 times and assert we only ever hit the first thread. Either # this is a platform that only reports one hit at a time, in which case all # this code is unused, or we actually didn't hit the other thread. for idx in range(0, 20): process.Continue() for thread in process.threads: if thread.id == main_thread.id: self.assertStopReason( thread.stop_reason, lldb.eStopReasonBreakpoint ) else: self.assertStopReason(thread.stop_reason, lldb.eStopReasonNone)