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https://github.com/catchorg/Catch2.git
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Backport fix for SIGSTKSZ
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@ -9,10 +9,12 @@
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#ifndef TWOBLUECUBES_CATCH_FATAL_CONDITION_H_INCLUDED
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#define TWOBLUECUBES_CATCH_FATAL_CONDITION_H_INCLUDED
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#include <cassert>
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#include <stdexcept>
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namespace Catch {
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// Report the error condition
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//! Signals fatal error message to the run context
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inline void reportFatal( std::string const& message ) {
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IContext& context = Catch::getCurrentContext();
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IResultCapture* resultCapture = context.getResultCapture();
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@ -27,8 +29,31 @@ namespace Catch {
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# if !defined ( CATCH_CONFIG_WINDOWS_SEH )
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namespace Catch {
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struct FatalConditionHandler {
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void reset() {}
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class FatalConditionHandler {
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bool m_started = false;
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// Install/disengage implementation for specific platform.
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// Should be if-defed to work on current platform, can assume
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// engage-disengage 1:1 pairing.
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void engage_platform() {}
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void disengage_platform() {}
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public:
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// Should also have platform-specific implementations as needed
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FatalConditionHandler() {}
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~FatalConditionHandler() {}
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void engage() {
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assert(!m_started && "Handler cannot be installed twice.");
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m_started = true;
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engage_platform();
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}
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void disengage() {
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assert(m_started && "Handler cannot be uninstalled without being installed first");
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m_started = false;
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disengage_platform();
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}
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};
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}
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@ -48,8 +73,6 @@ namespace Catch {
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{ EXCEPTION_INT_DIVIDE_BY_ZERO, "Divide by zero error" },
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};
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struct FatalConditionHandler {
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static LONG CALLBACK handleVectoredException(PEXCEPTION_POINTERS ExceptionInfo) {
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for (int i = 0; i < sizeof(signalDefs) / sizeof(SignalDefs); ++i) {
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if (ExceptionInfo->ExceptionRecord->ExceptionCode == signalDefs[i].id) {
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@ -61,41 +84,62 @@ namespace Catch {
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return EXCEPTION_CONTINUE_SEARCH;
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}
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FatalConditionHandler() {
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isSet = true;
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// 32k seems enough for Catch to handle stack overflow,
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// but the value was found experimentally, so there is no strong guarantee
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guaranteeSize = 32 * 1024;
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exceptionHandlerHandle = CATCH_NULL;
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// Since we do not support multiple instantiations, we put these
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// into global variables and rely on cleaning them up in outlined
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// constructors/destructors
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static PVOID exceptionHandlerHandle = CATCH_NULL;
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class FatalConditionHandler {
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bool m_started = false;
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// Install/disengage implementation for specific platform.
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// Should be if-defed to work on current platform, can assume
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// engage-disengage 1:1 pairing.
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void engage_platform() {
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// Register as first handler in current chain
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exceptionHandlerHandle = AddVectoredExceptionHandler(1, handleVectoredException);
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// Pass in guarantee size to be filled
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SetThreadStackGuarantee(&guaranteeSize);
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if (!exceptionHandlerHandle) {
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throw std::runtime_error("Could not register vectored exception handler");
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}
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}
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static void reset() {
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if (isSet) {
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// Unregister handler and restore the old guarantee
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RemoveVectoredExceptionHandler(exceptionHandlerHandle);
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SetThreadStackGuarantee(&guaranteeSize);
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void disengage_platform() {
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if (!RemoveVectoredExceptionHandler(exceptionHandlerHandle)) {
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throw std::runtime_error("Could not unregister vectored exception handler");
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}
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exceptionHandlerHandle = CATCH_NULL;
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isSet = false;
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}
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public:
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FatalConditionHandler() {
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ULONG guaranteeSize = static_cast<ULONG>(32 * 1024);
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if (!SetThreadStackGuarantee(&guaranteeSize)) {
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// We do not want to fully error out, because needing
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// the stack reserve should be rare enough anyway.
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Catch::cerr()
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<< "Failed to reserve piece of stack."
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<< " Stack overflows will not be reported successfully.";
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}
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}
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~FatalConditionHandler() {
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reset();
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// We do not attempt to unset the stack guarantee, because
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// Windows does not support lowering the stack size guarantee.
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~FatalConditionHandler() {}
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void engage() {
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assert(!m_started && "Handler cannot be installed twice.");
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m_started = true;
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engage_platform();
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}
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void disengage() {
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assert(m_started && "Handler cannot be uninstalled without being installed first");
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m_started = false;
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disengage_platform();
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}
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private:
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static bool isSet;
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static ULONG guaranteeSize;
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static PVOID exceptionHandlerHandle;
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};
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bool FatalConditionHandler::isSet = false;
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ULONG FatalConditionHandler::guaranteeSize = 0;
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PVOID FatalConditionHandler::exceptionHandlerHandle = CATCH_NULL;
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} // namespace Catch
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# endif // CATCH_CONFIG_WINDOWS_SEH
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@ -105,8 +149,31 @@ namespace Catch {
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# if !defined(CATCH_CONFIG_POSIX_SIGNALS)
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namespace Catch {
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struct FatalConditionHandler {
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void reset() {}
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class FatalConditionHandler {
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bool m_started = false;
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// Install/disengage implementation for specific platform.
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// Should be if-defed to work on current platform, can assume
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// engage-disengage 1:1 pairing.
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void engage_platform() {}
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void disengage_platform() {}
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public:
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// Should also have platform-specific implementations as needed
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FatalConditionHandler() {}
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~FatalConditionHandler() {}
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void engage() {
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assert(!m_started && "Handler cannot be installed twice.");
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m_started = true;
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engage_platform();
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}
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void disengage() {
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assert(m_started && "Handler cannot be uninstalled without being installed first");
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m_started = false;
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disengage_platform();
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}
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};
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}
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@ -131,15 +198,33 @@ namespace Catch {
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{ SIGABRT, "SIGABRT - Abort (abnormal termination) signal" }
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};
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struct FatalConditionHandler {
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// Older GCCs trigger -Wmissing-field-initializers for T foo = {}
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// which is zero initialization, but not explicit. We want to avoid
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// that.
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#if defined(__GNUC__)
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# pragma GCC diagnostic push
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# pragma GCC diagnostic ignored "-Wmissing-field-initializers"
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#endif
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static bool isSet;
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static struct sigaction oldSigActions [sizeof(signalDefs)/sizeof(SignalDefs)];
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static char* altStackMem = CATCH_NULL;
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static std::size_t altStackSize = 0;
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static stack_t oldSigStack;
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static char altStackMem[SIGSTKSZ];
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static struct sigaction oldSigActions[sizeof(signalDefs) / sizeof(SignalDefs)];
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static void restorePreviousSignalHandlers() {
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// We set signal handlers back to the previous ones. Hopefully
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// nobody overwrote them in the meantime, and doesn't expect
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// their signal handlers to live past ours given that they
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// installed them after ours..
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for (std::size_t i = 0; i < sizeof(signalDefs) / sizeof(SignalDefs); ++i) {
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sigaction(signalDefs[i].id, &oldSigActions[i], CATCH_NULL);
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}
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// Return the old stack
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sigaltstack(&oldSigStack, CATCH_NULL);
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}
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static void handleSignal( int sig ) {
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std::string name = "<unknown signal>";
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char const * name = "<unknown signal>";
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for (std::size_t i = 0; i < sizeof(signalDefs) / sizeof(SignalDefs); ++i) {
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SignalDefs &def = signalDefs[i];
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if (sig == def.id) {
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@ -147,13 +232,22 @@ namespace Catch {
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break;
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}
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}
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reset();
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reportFatal(name);
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// We need to restore previous signal handlers and let them do
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// their thing, so that the users can have the debugger break
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// when a signal is raised, and so on.
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restorePreviousSignalHandlers();
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reportFatal( name );
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raise( sig );
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}
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FatalConditionHandler() {
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isSet = true;
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class FatalConditionHandler {
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bool m_started = false;
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// Install/disengage implementation for specific platform.
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// Should be if-defed to work on current platform, can assume
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// engage-disengage 1:1 pairing.
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void engage_platform() {
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stack_t sigStack;
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sigStack.ss_sp = altStackMem;
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sigStack.ss_size = SIGSTKSZ;
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@ -168,28 +262,42 @@ namespace Catch {
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}
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}
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void disengage_platform() {
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restorePreviousSignalHandlers();
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}
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public:
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FatalConditionHandler() {
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assert(!altStackMem && "Cannot initialize POSIX signal handler when one already exists");
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if (altStackSize == 0) {
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altStackSize = SIGSTKSZ;
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}
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altStackMem = new char[altStackSize]();
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}
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~FatalConditionHandler() {
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reset();
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delete[] altStackMem;
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// We signal that another instance can be constructed by zeroing
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// out the pointer.
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altStackMem = CATCH_NULL;
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}
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static void reset() {
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if( isSet ) {
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// Set signals back to previous values -- hopefully nobody overwrote them in the meantime
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for( std::size_t i = 0; i < sizeof(signalDefs)/sizeof(SignalDefs); ++i ) {
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sigaction(signalDefs[i].id, &oldSigActions[i], CATCH_NULL);
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}
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// Return the old stack
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sigaltstack(&oldSigStack, CATCH_NULL);
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isSet = false;
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void engage() {
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assert(!m_started && "Handler cannot be installed twice.");
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m_started = true;
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engage_platform();
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}
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void disengage() {
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assert(m_started && "Handler cannot be uninstalled without being installed first");
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m_started = false;
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disengage_platform();
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}
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};
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bool FatalConditionHandler::isSet = false;
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struct sigaction FatalConditionHandler::oldSigActions[sizeof(signalDefs)/sizeof(SignalDefs)] = {};
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stack_t FatalConditionHandler::oldSigStack = {};
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char FatalConditionHandler::altStackMem[SIGSTKSZ] = {};
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#if defined(__GNUC__)
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# pragma GCC diagnostic pop
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#endif
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} // namespace Catch
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@ -197,4 +305,21 @@ namespace Catch {
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#endif // not Windows
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namespace Catch {
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//! Simple RAII guard for (dis)engaging the FatalConditionHandler
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class FatalConditionHandlerGuard {
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FatalConditionHandler* m_handler;
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public:
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FatalConditionHandlerGuard(FatalConditionHandler* handler):
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m_handler(handler) {
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m_handler->engage();
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}
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~FatalConditionHandlerGuard() {
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m_handler->disengage();
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}
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};
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} // end namespace Catch
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#endif // TWOBLUECUBES_CATCH_FATAL_CONDITION_H_INCLUDED
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@ -363,9 +363,8 @@ namespace Catch {
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}
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void invokeActiveTestCase() {
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FatalConditionHandler fatalConditionHandler; // Handle signals
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FatalConditionHandlerGuard _(&m_fatalConditionhandler);
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m_activeTestCase->invoke();
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fatalConditionHandler.reset();
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}
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private:
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@ -403,6 +402,7 @@ namespace Catch {
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std::vector<SectionEndInfo> m_unfinishedSections;
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std::vector<ITracker*> m_activeSections;
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TrackerContext m_trackerContext;
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FatalConditionHandler m_fatalConditionhandler;
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size_t m_prevPassed;
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bool m_shouldReportUnexpected;
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};
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