These are all recent additions I think, including a few of mine for AArch64. Going forward the CI checks should help us fix these earlier.
301 lines
13 KiB
Python
301 lines
13 KiB
Python
"""
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Test the functionality of interactive scripted processes
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"""
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import lldb
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import lldbsuite.test.lldbutil as lldbutil
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from lldbsuite.test.decorators import *
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from lldbsuite.test.lldbtest import *
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import json, os
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class TestInteractiveScriptedProcess(TestBase):
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NO_DEBUG_INFO_TESTCASE = True
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def setUp(self):
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# Call super's setUp().
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TestBase.setUp(self)
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# Build and load test program
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self.build()
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self.runCmd("file " + self.getBuildArtifact("a.out"), CURRENT_EXECUTABLE_SET)
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self.main_source_file = lldb.SBFileSpec("main.cpp")
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self.script_module = "interactive_scripted_process"
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self.script_file = self.script_module + ".py"
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# These tests are flakey and sometimes timeout. They work most of the time
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# so the basic event flow is right, but somehow the handling is off.
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@skipUnlessDarwin
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@skipIfDarwin
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def test_passthrough_launch(self):
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"""Test a simple pass-through process launch"""
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self.passthrough_launch()
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lldbutil.run_break_set_by_source_regexp(self, "also break here")
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self.assertEqual(self.mux_target.GetNumBreakpoints(), 2)
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error = self.mux_process.Continue()
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self.assertSuccess(error, "Resuming multiplexer scripted process")
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self.assertTrue(self.mux_process.IsValid(), "Got a valid process")
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), self.mux_process.GetBroadcaster(), timeout=20
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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@skipUnlessDarwin
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@skipIfDarwin
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def test_multiplexed_launch(self):
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"""Test a multiple interactive scripted process debugging"""
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self.passthrough_launch()
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self.assertEqual(self.dbg.GetNumTargets(), 2)
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driving_target = self.mux_process.GetScriptedImplementation().driving_target
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self.assertTrue(driving_target.IsValid(), "Driving target is invalid")
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# Create a target for the multiplexed even scripted process
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even_target = self.duplicate_target(driving_target)
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self.assertTrue(
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even_target.IsValid(),
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"Couldn't duplicate driving target to launch multiplexed even scripted process",
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)
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class_name = f"{self.script_module}.MultiplexedScriptedProcess"
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dictionary = {"driving_target_idx": self.dbg.GetIndexOfTarget(self.mux_target)}
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dictionary["parity"] = 0
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muxed_launch_info = self.get_launch_info(class_name, dictionary)
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# Launch Even Child Scripted Process
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error = lldb.SBError()
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even_process = even_target.Launch(muxed_launch_info, error)
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self.assertTrue(
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even_process, "Couldn't launch multiplexed even scripted process"
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)
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self.multiplex(even_process)
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# Check that the even process started running
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), even_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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# Check that the even process stopped
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), even_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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self.assertTrue(even_process.IsValid(), "Got a valid process")
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self.assertState(
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even_process.GetState(), lldb.eStateStopped, "Process is stopped"
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)
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# Create a target for the multiplexed odd scripted process
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odd_target = self.duplicate_target(driving_target)
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self.assertTrue(
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odd_target.IsValid(),
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"Couldn't duplicate driving target to launch multiplexed odd scripted process",
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)
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dictionary["parity"] = 1
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muxed_launch_info = self.get_launch_info(class_name, dictionary)
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# Launch Odd Child Scripted Process
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error = lldb.SBError()
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odd_process = odd_target.Launch(muxed_launch_info, error)
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self.assertTrue(odd_process, "Couldn't launch multiplexed odd scripted process")
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self.multiplex(odd_process)
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# Check that the odd process started running
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), odd_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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# Check that the odd process stopped
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), odd_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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self.assertTrue(odd_process.IsValid(), "Got a valid process")
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self.assertState(
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odd_process.GetState(), lldb.eStateStopped, "Process is stopped"
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)
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# Set a breakpoint on the odd child process
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bkpt = odd_target.BreakpointCreateBySourceRegex(
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"also break here", self.main_source_file
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)
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self.assertEqual(odd_target.GetNumBreakpoints(), 1)
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self.assertTrue(bkpt, "Second breakpoint set on child scripted process")
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self.assertEqual(bkpt.GetNumLocations(), 1, "Second breakpoint has 1 location")
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# Verify that the breakpoint was also set on the multiplexer & real target
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self.assertEqual(self.mux_target.GetNumBreakpoints(), 2)
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bkpt = self.mux_target.GetBreakpointAtIndex(1)
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self.assertEqual(
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bkpt.GetNumLocations(), 1, "Second breakpoint set on mux scripted process"
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)
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self.assertTrue(bkpt.MatchesName("multiplexed_scripted_process_421"))
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self.assertGreater(driving_target.GetNumBreakpoints(), 1)
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# Resume execution on child process
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error = odd_process.Continue()
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self.assertSuccess(error, "Resuming odd child scripted process")
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self.assertTrue(odd_process.IsValid(), "Got a valid process")
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# Since all the execution is asynchronous, the order in which events
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# arrive is non-deterministic, so we need a data structure to make sure
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# we received both the running and stopped event for each target.
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# Initialize the execution event "bingo book", that maps a process index
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# to a dictionary that contains flags that are not set for the process
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# events that we care about (running & stopped)
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execution_events = {
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1: {lldb.eStateRunning: False, lldb.eStateStopped: False},
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2: {lldb.eStateRunning: False, lldb.eStateStopped: False},
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3: {lldb.eStateRunning: False, lldb.eStateStopped: False},
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}
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def fetch_process_event(self, execution_events):
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event = lldbutil.fetch_next_event(
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self,
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self.dbg.GetListener(),
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lldb.SBProcess.GetBroadcasterClass(),
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match_class=True,
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)
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state = lldb.SBProcess.GetStateFromEvent(event)
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self.assertIn(state, [lldb.eStateRunning, lldb.eStateStopped])
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event_process = lldb.SBProcess.GetProcessFromEvent(event)
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self.assertTrue(event_process.IsValid())
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event_target = event_process.GetTarget()
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event_target_idx = self.dbg.GetIndexOfTarget(event_target)
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self.assertFalse(
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execution_events[event_target_idx][state],
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"Event already received for this process",
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)
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execution_events[event_target_idx][state] = True
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for _ in range((self.dbg.GetNumTargets() - 1) * 2):
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fetch_process_event(self, execution_events)
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for target_index, event_states in execution_events.items():
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for state, is_set in event_states.items():
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self.assertTrue(is_set, f"Target {target_index} has state {state} set")
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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def duplicate_target(self, driving_target):
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exe = driving_target.executable.fullpath
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triple = driving_target.triple
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return self.dbg.CreateTargetWithFileAndTargetTriple(exe, triple)
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def get_launch_info(self, class_name, script_dict):
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structured_data = lldb.SBStructuredData()
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structured_data.SetFromJSON(json.dumps(script_dict))
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launch_info = lldb.SBLaunchInfo(None)
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launch_info.SetProcessPluginName("ScriptedProcess")
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launch_info.SetScriptedProcessClassName(class_name)
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launch_info.SetScriptedProcessDictionary(structured_data)
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return launch_info
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def multiplex(self, muxed_process):
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muxed_process.GetScriptedImplementation().multiplexer = (
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self.mux_process.GetScriptedImplementation()
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)
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self.mux_process.GetScriptedImplementation().multiplexed_processes[
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muxed_process.GetProcessID()
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] = muxed_process
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def passthrough_launch(self):
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"""Test that a simple passthrough wrapper functions correctly"""
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# First build the real target:
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self.assertEqual(self.dbg.GetNumTargets(), 1)
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real_target_id = 0
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real_target = self.dbg.GetTargetAtIndex(real_target_id)
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lldbutil.run_break_set_by_source_regexp(self, "Break here")
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self.assertEqual(real_target.GetNumBreakpoints(), 1)
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# Now source in the scripted module:
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script_path = os.path.join(self.getSourceDir(), self.script_file)
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self.runCmd(f"command script import '{script_path}'")
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self.mux_target = self.duplicate_target(real_target)
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self.assertTrue(self.mux_target.IsValid(), "duplicate target succeeded")
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mux_class = f"{self.script_module}.MultiplexerScriptedProcess"
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script_dict = {"driving_target_idx": real_target_id}
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mux_launch_info = self.get_launch_info(mux_class, script_dict)
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self.mux_process_listener = lldb.SBListener(
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"lldb.test.interactive-scripted-process.listener"
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)
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mux_launch_info.SetShadowListener(self.mux_process_listener)
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self.dbg.SetAsync(True)
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error = lldb.SBError()
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self.mux_process = self.mux_target.Launch(mux_launch_info, error)
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self.assertSuccess(error, "Launched multiplexer scripted process")
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self.assertTrue(self.mux_process.IsValid(), "Got a valid process")
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# Check that the real process started running
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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# Check that the mux process started running
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateRunning)
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# Check that the real process stopped
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event = lldbutil.fetch_next_event(
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self, self.dbg.GetListener(), self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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# Check that the mux process stopped
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event = lldbutil.fetch_next_event(
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self, self.mux_process_listener, self.mux_process.GetBroadcaster()
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)
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self.assertState(lldb.SBProcess.GetStateFromEvent(event), lldb.eStateStopped)
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real_process = real_target.GetProcess()
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self.assertTrue(real_process.IsValid(), "Got a valid process")
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self.assertState(
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real_process.GetState(), lldb.eStateStopped, "Process is stopped"
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)
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# This is a passthrough, so the two processes should have the same state:
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# Check that we got the right threads:
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self.assertEqual(
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len(real_process.threads),
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len(self.mux_process.threads),
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"Same number of threads",
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)
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for id in range(len(real_process.threads)):
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real_pc = real_process.threads[id].frame[0].pc
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mux_pc = self.mux_process.threads[id].frame[0].pc
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self.assertEqual(real_pc, mux_pc, f"PC's equal for {id}")
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