Add real time signals support to LinuxSignals
Summary: This enables correct handling of real time signals by lldb. Test Plan: Added a test that verifies handling of SIGRTMIN Reviewers: tberghammer, ovyalov Subscribers: lldb-commits Differential Revision: http://reviews.llvm.org/D9911 llvm-svn: 238009
This commit is contained in:
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@ -1730,7 +1730,7 @@ public:
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PrintSignalHeader (Stream &str)
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PrintSignalHeader (Stream &str)
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{
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{
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str.Printf ("NAME PASS STOP NOTIFY\n");
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str.Printf ("NAME PASS STOP NOTIFY\n");
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str.Printf ("========== ===== ===== ======\n");
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str.Printf ("=========== ===== ===== ======\n");
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}
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}
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void
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void
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@ -1740,7 +1740,7 @@ public:
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bool suppress;
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bool suppress;
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bool notify;
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bool notify;
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str.Printf ("%-10s ", sig_name);
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str.Printf ("%-11s ", sig_name);
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if (signals.GetSignalInfo (signo, suppress, stop, notify))
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if (signals.GetSignalInfo (signo, suppress, stop, notify))
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{
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{
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bool pass = !suppress;
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bool pass = !suppress;
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@ -59,4 +59,37 @@ LinuxSignals::Reset()
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AddSignal (29, "SIGIO", "IO", false, true , true , "input/output ready");
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AddSignal (29, "SIGIO", "IO", false, true , true , "input/output ready");
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AddSignal (30, "SIGPWR", "PWR", false, true , true , "power failure");
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AddSignal (30, "SIGPWR", "PWR", false, true , true , "power failure");
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AddSignal (31, "SIGSYS", "SYS", false, true , true , "invalid system call");
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AddSignal (31, "SIGSYS", "SYS", false, true , true , "invalid system call");
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AddSignal (32, "SIG32", "SIG32", false, true , true , "threading library internal signal 1");
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AddSignal (33, "SIG33", "SIG33", false, true , true , "threading library internal signal 2");
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AddSignal (34, "SIGRTMIN", "RTMIN", false, true , true , "real time signal 0");
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AddSignal (35, "SIGRTMIN+1", "RTMIN+1", false, true , true , "real time signal 1");
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AddSignal (36, "SIGRTMIN+2", "RTMIN+2", false, true , true , "real time signal 2");
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AddSignal (37, "SIGRTMIN+3", "RTMIN+3", false, true , true , "real time signal 3");
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AddSignal (38, "SIGRTMIN+4", "RTMIN+4", false, true , true , "real time signal 4");
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AddSignal (39, "SIGRTMIN+5", "RTMIN+5", false, true , true , "real time signal 5");
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AddSignal (40, "SIGRTMIN+6", "RTMIN+6", false, true , true , "real time signal 6");
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AddSignal (41, "SIGRTMIN+7", "RTMIN+7", false, true , true , "real time signal 7");
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AddSignal (42, "SIGRTMIN+8", "RTMIN+8", false, true , true , "real time signal 8");
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AddSignal (43, "SIGRTMIN+9", "RTMIN+9", false, true , true , "real time signal 9");
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AddSignal (44, "SIGRTMIN+10", "RTMIN+10", false, true , true , "real time signal 10");
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AddSignal (45, "SIGRTMIN+11", "RTMIN+11", false, true , true , "real time signal 11");
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AddSignal (46, "SIGRTMIN+12", "RTMIN+12", false, true , true , "real time signal 12");
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AddSignal (47, "SIGRTMIN+13", "RTMIN+13", false, true , true , "real time signal 13");
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AddSignal (48, "SIGRTMIN+14", "RTMIN+14", false, true , true , "real time signal 14");
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AddSignal (49, "SIGRTMIN+15", "RTMIN+15", false, true , true , "real time signal 15");
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AddSignal (50, "SIGRTMAX-14", "RTMAX-14", false, true , true , "real time signal 16"); // switching to SIGRTMAX-xxx to match "kill -l" output
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AddSignal (51, "SIGRTMAX-13", "RTMAX-13", false, true , true , "real time signal 17");
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AddSignal (52, "SIGRTMAX-12", "RTMAX-12", false, true , true , "real time signal 18");
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AddSignal (53, "SIGRTMAX-11", "RTMAX-11", false, true , true , "real time signal 19");
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AddSignal (54, "SIGRTMAX-10", "RTMAX-10", false, true , true , "real time signal 20");
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AddSignal (55, "SIGRTMAX-9", "RTMAX-9", false, true , true , "real time signal 21");
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AddSignal (56, "SIGRTMAX-8", "RTMAX-8", false, true , true , "real time signal 22");
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AddSignal (57, "SIGRTMAX-7", "RTMAX-7", false, true , true , "real time signal 23");
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AddSignal (58, "SIGRTMAX-6", "RTMAX-6", false, true , true , "real time signal 24");
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AddSignal (59, "SIGRTMAX-5", "RTMAX-5", false, true , true , "real time signal 25");
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AddSignal (60, "SIGRTMAX-4", "RTMAX-4", false, true , true , "real time signal 26");
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AddSignal (61, "SIGRTMAX-3", "RTMAX-3", false, true , true , "real time signal 27");
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AddSignal (62, "SIGRTMAX-2", "RTMAX-2", false, true , true , "real time signal 28");
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AddSignal (63, "SIGRTMAX-1", "RTMAX-1", false, true , true , "real time signal 29");
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AddSignal (64, "SIGRTMAX", "RTMAX", false, true , true , "real time signal 30");
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}
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}
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@ -59,4 +59,37 @@ MipsLinuxSignals::Reset()
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AddSignal (29, "SIGPROF", "PROF", false, false, false, "profiling time alarm");
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AddSignal (29, "SIGPROF", "PROF", false, false, false, "profiling time alarm");
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AddSignal (30, "SIGXCPU", "XCPU", false, true , true , "CPU resource exceeded");
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AddSignal (30, "SIGXCPU", "XCPU", false, true , true , "CPU resource exceeded");
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AddSignal (31, "SIGXFSZ", "XFSZ", false, true , true , "file size limit exceeded");
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AddSignal (31, "SIGXFSZ", "XFSZ", false, true , true , "file size limit exceeded");
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AddSignal (32, "SIG32", "SIG32", false, true , true , "threading library internal signal 1");
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AddSignal (33, "SIG33", "SIG33", false, true , true , "threading library internal signal 2");
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AddSignal (34, "SIGRTMIN", "RTMIN", false, true , true , "real time signal 0");
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AddSignal (35, "SIGRTMIN+1", "RTMIN+1", false, true , true , "real time signal 1");
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AddSignal (36, "SIGRTMIN+2", "RTMIN+2", false, true , true , "real time signal 2");
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AddSignal (37, "SIGRTMIN+3", "RTMIN+3", false, true , true , "real time signal 3");
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AddSignal (38, "SIGRTMIN+4", "RTMIN+4", false, true , true , "real time signal 4");
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AddSignal (39, "SIGRTMIN+5", "RTMIN+5", false, true , true , "real time signal 5");
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AddSignal (40, "SIGRTMIN+6", "RTMIN+6", false, true , true , "real time signal 6");
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AddSignal (41, "SIGRTMIN+7", "RTMIN+7", false, true , true , "real time signal 7");
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AddSignal (42, "SIGRTMIN+8", "RTMIN+8", false, true , true , "real time signal 8");
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AddSignal (43, "SIGRTMIN+9", "RTMIN+9", false, true , true , "real time signal 9");
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AddSignal (44, "SIGRTMIN+10", "RTMIN+10", false, true , true , "real time signal 10");
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AddSignal (45, "SIGRTMIN+11", "RTMIN+11", false, true , true , "real time signal 11");
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AddSignal (46, "SIGRTMIN+12", "RTMIN+12", false, true , true , "real time signal 12");
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AddSignal (47, "SIGRTMIN+13", "RTMIN+13", false, true , true , "real time signal 13");
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AddSignal (48, "SIGRTMIN+14", "RTMIN+14", false, true , true , "real time signal 14");
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AddSignal (49, "SIGRTMIN+15", "RTMIN+15", false, true , true , "real time signal 15");
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AddSignal (50, "SIGRTMAX-14", "RTMAX-14", false, true , true , "real time signal 16"); // switching to SIGRTMAX-xxx to match "kill -l" output
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AddSignal (51, "SIGRTMAX-13", "RTMAX-13", false, true , true , "real time signal 17");
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AddSignal (52, "SIGRTMAX-12", "RTMAX-12", false, true , true , "real time signal 18");
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AddSignal (53, "SIGRTMAX-11", "RTMAX-11", false, true , true , "real time signal 19");
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AddSignal (54, "SIGRTMAX-10", "RTMAX-10", false, true , true , "real time signal 20");
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AddSignal (55, "SIGRTMAX-9", "RTMAX-9", false, true , true , "real time signal 21");
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AddSignal (56, "SIGRTMAX-8", "RTMAX-8", false, true , true , "real time signal 22");
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AddSignal (57, "SIGRTMAX-7", "RTMAX-7", false, true , true , "real time signal 23");
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AddSignal (58, "SIGRTMAX-6", "RTMAX-6", false, true , true , "real time signal 24");
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AddSignal (59, "SIGRTMAX-5", "RTMAX-5", false, true , true , "real time signal 25");
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AddSignal (60, "SIGRTMAX-4", "RTMAX-4", false, true , true , "real time signal 26");
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AddSignal (61, "SIGRTMAX-3", "RTMAX-3", false, true , true , "real time signal 27");
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AddSignal (62, "SIGRTMAX-2", "RTMAX-2", false, true , true , "real time signal 28");
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AddSignal (63, "SIGRTMAX-1", "RTMAX-1", false, true , true , "real time signal 29");
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AddSignal (64, "SIGRTMAX", "RTMAX", false, true , true , "real time signal 30");
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}
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}
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@ -5,6 +5,7 @@ import unittest2
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import lldb
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import lldb
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from lldbtest import *
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from lldbtest import *
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import lldbutil
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import lldbutil
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import re
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class RaiseTestCase(TestBase):
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class RaiseTestCase(TestBase):
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@ -17,34 +18,43 @@ class RaiseTestCase(TestBase):
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@expectedFailureDarwin("llvm.org/pr23610") # process doesn't stop at a breakpoint on the third launch
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@expectedFailureDarwin("llvm.org/pr23610") # process doesn't stop at a breakpoint on the third launch
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def test_sigstop_with_dsym(self):
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def test_sigstop_with_dsym(self):
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self.buildDsym()
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self.buildDsym()
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self.sigstop()
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self.signal_test('SIGSTOP', False)
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# passing of SIGSTOP is not correctly handled, so not testing that scenario: https://llvm.org/bugs/show_bug.cgi?id=23574
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@skipIfWindows # signals do not exist on Windows
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@skipIfWindows # signals do not exist on Windows
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@dwarf_test
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@dwarf_test
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@expectedFailureDarwin("llvm.org/pr23610") # process doesn't stop at a breakpoint on the third launch
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@expectedFailureDarwin("llvm.org/pr23610") # process doesn't stop at a breakpoint on the third launch
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def test_sigstop_with_dwarf(self):
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def test_sigstop_with_dwarf(self):
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self.buildDwarf()
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self.buildDwarf()
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self.sigstop()
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self.signal_test('SIGSTOP', False)
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# passing of SIGSTOP is not correctly handled, so not testing that scenario: https://llvm.org/bugs/show_bug.cgi?id=23574
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def launch(self, target):
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@skipIfWindows # signals do not exist on Windows
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@dwarf_test
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@skipIfDarwin # darwin does not support real time signals
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def test_sigsigrtmin_with_dwarf(self):
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self.buildDwarf()
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self.signal_test('SIGRTMIN', True)
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def launch(self, target, signal):
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# launch the process, do not stop at entry point.
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# launch the process, do not stop at entry point.
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process = target.LaunchSimple(['SIGSTOP'], None, self.get_process_working_directory())
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process = target.LaunchSimple([signal], None, self.get_process_working_directory())
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self.assertTrue(process, PROCESS_IS_VALID)
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self.assertTrue(process, PROCESS_IS_VALID)
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self.assertEqual(process.GetState(), lldb.eStateStopped)
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self.assertEqual(process.GetState(), lldb.eStateStopped)
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thread = lldbutil.get_stopped_thread(process, lldb.eStopReasonBreakpoint)
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thread = lldbutil.get_stopped_thread(process, lldb.eStopReasonBreakpoint)
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self.assertTrue(thread.IsValid(), "Thread should be stopped due to a breakpoint")
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self.assertTrue(thread.IsValid(), "Thread should be stopped due to a breakpoint")
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return process
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return process
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def set_handle(self, signal, stop_at_signal, pass_signal, notify_signal):
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def set_handle(self, signal, pass_signal, stop_at_signal, notify_signal):
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return_obj = lldb.SBCommandReturnObject()
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return_obj = lldb.SBCommandReturnObject()
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self.dbg.GetCommandInterpreter().HandleCommand(
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self.dbg.GetCommandInterpreter().HandleCommand(
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"process handle %s -s %d -p %d -n %d" % (signal, stop_at_signal, pass_signal, notify_signal),
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"process handle %s -p %s -s %s -n %s" % (signal, pass_signal, stop_at_signal, notify_signal),
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return_obj)
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return_obj)
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self.assertTrue (return_obj.Succeeded() == True, "Setting signal handling failed")
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self.assertTrue (return_obj.Succeeded() == True, "Setting signal handling failed")
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def sigstop(self):
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def signal_test(self, signal, test_passing):
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"""Test that we handle inferior raising SIGSTOP"""
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"""Test that we handle inferior raising signals"""
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exe = os.path.join(os.getcwd(), "a.out")
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exe = os.path.join(os.getcwd(), "a.out")
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# Create a target by the debugger.
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# Create a target by the debugger.
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@ -53,42 +63,99 @@ class RaiseTestCase(TestBase):
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lldbutil.run_break_set_by_symbol(self, "main")
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lldbutil.run_break_set_by_symbol(self, "main")
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# launch
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# launch
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process = self.launch(target)
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process = self.launch(target, signal)
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signo = process.GetUnixSignals().GetSignalNumberFromName(signal)
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# retrieve default signal disposition
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return_obj = lldb.SBCommandReturnObject()
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self.dbg.GetCommandInterpreter().HandleCommand("process handle %s " % signal, return_obj)
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match = re.match('NAME *PASS *STOP *NOTIFY.*(false|true) *(false|true) *(false|true)',
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return_obj.GetOutput(), re.IGNORECASE | re.DOTALL)
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if not match:
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self.fail('Unable to retrieve default signal disposition.')
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default_pass = match.group(1)
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default_stop = match.group(2)
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default_notify = match.group(3)
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# Make sure we stop at the signal
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# Make sure we stop at the signal
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self.set_handle("SIGSTOP", 1, 0, 1)
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self.set_handle(signal, "false", "true", "true")
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process.Continue()
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process.Continue()
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self.assertEqual(process.GetState(), lldb.eStateStopped)
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thread = lldbutil.get_stopped_thread(process, lldb.eStopReasonSignal)
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thread = lldbutil.get_stopped_thread(process, lldb.eStopReasonSignal)
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self.assertTrue(thread.IsValid(), "Thread should be stopped due to a signal")
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self.assertTrue(thread.IsValid(), "Thread should be stopped due to a signal")
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self.assertTrue(thread.GetStopReasonDataCount() >= 1, "There was data in the event.")
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self.assertTrue(thread.GetStopReasonDataCount() >= 1, "There was data in the event.")
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self.assertEqual(thread.GetStopReasonDataAtIndex(0),
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self.assertEqual(thread.GetStopReasonDataAtIndex(0), signo,
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process.GetUnixSignals().GetSignalNumberFromName('SIGSTOP'),
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"The stop signal was %s" % signal)
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"The stop signal was SIGSTOP")
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# Continue until we exit.
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# Continue until we exit.
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process.Continue()
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process.Continue()
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetExitStatus(), 0)
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# launch again
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# launch again
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process = self.launch(target)
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process = self.launch(target, signal)
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# Make sure we do not stop at the signal. We should still get the notification.
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# Make sure we do not stop at the signal. We should still get the notification.
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self.set_handle("SIGSTOP", 0, 0, 1)
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self.set_handle(signal, "false", "false", "true")
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self.expect("process continue", substrs=["stopped and restarted", "SIGSTOP"])
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self.expect("process continue", substrs=["stopped and restarted", signal])
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetExitStatus(), 0)
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# launch again
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# launch again
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process = self.launch(target)
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process = self.launch(target, signal)
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# Make sure we do not stop at the signal, and we do not get the notification.
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# Make sure we do not stop at the signal, and we do not get the notification.
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self.set_handle("SIGSTOP", 0, 0, 0)
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self.set_handle(signal, "false", "false", "false")
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self.expect("process continue", substrs=["stopped and restarted"], matching=False)
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self.expect("process continue", substrs=["stopped and restarted"], matching=False)
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetExitStatus(), 0)
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# passing of SIGSTOP is not correctly handled, so not testing that scenario: https://llvm.org/bugs/show_bug.cgi?id=23574
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if not test_passing:
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# reset signal handling to default
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self.set_handle(signal, default_pass, default_stop, default_notify)
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return
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# launch again
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process = self.launch(target, signal)
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# Make sure we stop at the signal
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self.set_handle(signal, "true", "true", "true")
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process.Continue()
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self.assertEqual(process.GetState(), lldb.eStateStopped)
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thread = lldbutil.get_stopped_thread(process, lldb.eStopReasonSignal)
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self.assertTrue(thread.IsValid(), "Thread should be stopped due to a signal")
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self.assertTrue(thread.GetStopReasonDataCount() >= 1, "There was data in the event.")
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self.assertEqual(thread.GetStopReasonDataAtIndex(0),
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process.GetUnixSignals().GetSignalNumberFromName(signal),
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"The stop signal was %s" % signal)
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# Continue until we exit. The process should receive the signal.
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process.Continue()
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetExitStatus(), signo)
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# launch again
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process = self.launch(target, signal)
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# Make sure we do not stop at the signal. We should still get the notification. Process
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# should receive the signal.
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self.set_handle(signal, "true", "false", "true")
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self.expect("process continue", substrs=["stopped and restarted", signal])
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self.assertEqual(process.GetState(), lldb.eStateExited)
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self.assertEqual(process.GetExitStatus(), signo)
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# launch again
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process = self.launch(target, signal)
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# Make sure we do not stop at the signal, and we do not get the notification. Process
|
||||||
|
# should receive the signal.
|
||||||
|
self.set_handle(signal, "true", "false", "false")
|
||||||
|
self.expect("process continue", substrs=["stopped and restarted"], matching=False)
|
||||||
|
self.assertEqual(process.GetState(), lldb.eStateExited)
|
||||||
|
self.assertEqual(process.GetExitStatus(), signo)
|
||||||
|
|
||||||
# reset signal handling to default
|
# reset signal handling to default
|
||||||
self.set_handle("SIGSTOP", 1, 0, 1)
|
self.set_handle(signal, default_pass, default_stop, default_notify)
|
||||||
|
|
||||||
if __name__ == '__main__':
|
if __name__ == '__main__':
|
||||||
import atexit
|
import atexit
|
||||||
|
|
|
@ -1,9 +1,24 @@
|
||||||
#include <signal.h>
|
#include <signal.h>
|
||||||
#include <stdio.h>
|
#include <stdio.h>
|
||||||
#include <string.h>
|
#include <string.h>
|
||||||
|
#include <unistd.h>
|
||||||
|
|
||||||
|
void handler(int signo)
|
||||||
|
{
|
||||||
|
_exit(signo);
|
||||||
|
}
|
||||||
|
|
||||||
int main (int argc, char *argv[])
|
int main (int argc, char *argv[])
|
||||||
{
|
{
|
||||||
|
#ifndef __APPLE__
|
||||||
|
// Real time signals not supported on apple platforms.
|
||||||
|
if (signal(SIGRTMIN, handler) == SIG_ERR)
|
||||||
|
{
|
||||||
|
perror("signal(SIGRTMIN)");
|
||||||
|
return 1;
|
||||||
|
}
|
||||||
|
#endif
|
||||||
|
|
||||||
if (argc < 2)
|
if (argc < 2)
|
||||||
{
|
{
|
||||||
puts("Please specify a signal to raise");
|
puts("Please specify a signal to raise");
|
||||||
|
@ -12,10 +27,14 @@ int main (int argc, char *argv[])
|
||||||
|
|
||||||
if (strcmp(argv[1], "SIGSTOP") == 0)
|
if (strcmp(argv[1], "SIGSTOP") == 0)
|
||||||
raise(SIGSTOP);
|
raise(SIGSTOP);
|
||||||
|
#ifndef __APPLE__
|
||||||
|
else if (strcmp(argv[1], "SIGRTMIN") == 0)
|
||||||
|
raise(SIGRTMIN);
|
||||||
|
#endif
|
||||||
else
|
else
|
||||||
{
|
{
|
||||||
printf("Unknown signal: %s\n", argv[1]);
|
printf("Unknown signal: %s\n", argv[1]);
|
||||||
return 2;
|
return 1;
|
||||||
}
|
}
|
||||||
|
|
||||||
return 0;
|
return 0;
|
||||||
|
|
Loading…
Reference in New Issue