228 lines
6.2 KiB
C++
228 lines
6.2 KiB
C++
/* cygtls.cc
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This software is a copyrighted work licensed under the terms of the
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Cygwin license. Please consult the file "CYGWIN_LICENSE" for
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details. */
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#include "winsup.h"
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#define USE_SYS_TYPES_FD_SET
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#include "cygtls.h"
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#include <syslog.h>
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#include <stdlib.h>
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#include "path.h"
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#include "fhandler.h"
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#include "dtable.h"
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#include "cygheap.h"
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#include "sigproc.h"
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#include "exception.h"
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/* Two calls to get the stack right... */
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void
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_cygtls::call (DWORD (*func) (void *, void *), void *arg)
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{
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char buf[CYGTLS_PADSIZE];
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/* Initialize this thread's ability to respond to things like
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SIGSEGV or SIGFPE. */
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exception protect;
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_my_tls.call2 (func, arg, buf);
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}
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static int
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dll_cmp (const void *a, const void *b)
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{
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return wcscasecmp ((const wchar_t *) a, *(const wchar_t **) b);
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}
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/* Keep sorted!
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This is a list of well-known core system DLLs which contain code
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started in its own thread by the system. Kernel32.dll, for instance,
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contains the thread called on every Ctrl-C keypress in a console window.
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The DLLs in this list are not recognized as BLODAs. */
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const wchar_t *well_known_dlls[] =
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{
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L"advapi32.dll",
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L"kernel32.dll",
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L"kernelbase.dll",
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L"mswsock.dll",
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L"ntdll.dll",
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L"ole32.dll",
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L"shlwapi.dll",
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L"wbemprox.dll",
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L"ws2_32.dll",
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};
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/* Optional BLODA detection. The idea is that the function address is supposed
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to be within Cygwin itself. This is also true for pthreads, since pthreads
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are always calling pthread::thread_init_wrapper() in thread.cc. Therefore,
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every function call to a function outside of the Cygwin DLL is potentially
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a thread injected into the Cygwin process by some BLODA.
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But that's too simple. Assuming the application itself calls CreateThread,
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then this is a bad idea, but not really invalid. So we shouldn't print a
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BLODA message if the address is within the loaded image of the application.
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Also, ntdll.dll starts threads into the application which */
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static void
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bloda_detect (DWORD (*func) (void *, void *))
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{
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PIMAGE_DOS_HEADER img_start = (PIMAGE_DOS_HEADER)
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GetModuleHandle (NULL);
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PIMAGE_NT_HEADERS32 ntheader = (PIMAGE_NT_HEADERS32)
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((PBYTE) img_start + img_start->e_lfanew);
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void *img_end = (void *) ((PBYTE) img_start
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+ ntheader->OptionalHeader.SizeOfImage);
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if (((void *) func < (void *) cygwin_hmodule
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|| (void *) func > (void *) cygheap)
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&& ((void *) func < (void *) img_start || (void *) func >= img_end))
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{
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MEMORY_BASIC_INFORMATION mbi;
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wchar_t modname[PATH_MAX];
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VirtualQuery ((PVOID) func, &mbi, sizeof mbi);
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GetModuleFileNameW ((HMODULE) mbi.AllocationBase, modname,
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PATH_MAX);
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/* Fetch basename and check against list of above system DLLs. */
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const wchar_t *modbasename = wcsrchr (modname, L'\\') + 1;
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if (!bsearch (modbasename, well_known_dlls,
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sizeof well_known_dlls / sizeof well_known_dlls[0],
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sizeof well_known_dlls[0], dll_cmp))
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small_printf ("\n\nPotential BLODA detected! Thread function "
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"called outside of Cygwin DLL:\n %W\n\n",
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modname);
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}
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}
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void
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_cygtls::call2 (DWORD (*func) (void *, void *), void *arg, void *buf)
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{
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/* If func is pthread_wrapper, the final stack hasn't been set up yet.
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This only happens in pthread_wrapper itself. Thus it doesn't make
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sense to call init_thread or perform BLODA detection. pthread_wrapper
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eventually calls init_thread by itself. */
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if ((void *) func != (void *) pthread_wrapper)
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{
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init_thread (buf, func);
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if (detect_bloda)
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bloda_detect (func);
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}
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DWORD res = func (arg, buf);
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remove (INFINITE);
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/* Don't call ExitThread on the main thread since we may have been
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dynamically loaded. */
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if ((void *) func != (void *) dll_crt0_1
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&& (void *) func != (void *) dll_dllcrt0_1)
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ExitThread (res);
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}
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void
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_cygtls::init_thread (void *x, DWORD (*func) (void *, void *))
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{
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if (x)
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{
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memset (this, 0, sizeof (*this));
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_REENT_INIT_PTR (&local_clib);
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stackptr = stack;
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altstack.ss_flags = SS_DISABLE;
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if (_GLOBAL_REENT)
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{
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local_clib._stdin = _GLOBAL_REENT->_stdin;
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local_clib._stdout = _GLOBAL_REENT->_stdout;
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local_clib._stderr = _GLOBAL_REENT->_stderr;
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local_clib.__sdidinit = _GLOBAL_REENT->__sdidinit ? -1 : 0;
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local_clib.__cleanup = _GLOBAL_REENT->__cleanup;
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local_clib.__sglue._niobs = 3;
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local_clib.__sglue._iobs = &_GLOBAL_REENT->__sf[0];
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}
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}
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thread_id = GetCurrentThreadId ();
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initialized = CYGTLS_INITIALIZED;
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errno_addr = &(local_clib._errno);
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locals.cw_timer = NULL;
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if ((void *) func == (void *) cygthread::stub
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|| (void *) func == (void *) cygthread::simplestub)
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return;
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cygheap->add_tls (this);
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}
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void
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_cygtls::fixup_after_fork ()
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{
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if (sig)
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{
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pop ();
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sig = 0;
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}
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stacklock = spinning = 0;
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signal_arrived = NULL;
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locals.select.sockevt = NULL;
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locals.cw_timer = NULL;
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wq.thread_ev = NULL;
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}
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#define free_local(x) \
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if (locals.x) \
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{ \
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free (locals.x); \
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locals.x = NULL; \
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}
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void
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_cygtls::remove (DWORD wait)
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{
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initialized = 0;
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if (exit_state >= ES_FINAL)
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return;
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debug_printf ("wait %u", wait);
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HANDLE mutex = cygheap->remove_tls (this);
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remove_wq (wait);
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/* FIXME: Need some sort of atthreadexit function to allow things like
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select to control this themselves. */
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remove_pending_sigs ();
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if (signal_arrived)
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{
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HANDLE h = signal_arrived;
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signal_arrived = NULL;
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CloseHandle (h);
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}
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/* Close handle and free memory used by select. */
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if (locals.select.sockevt)
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{
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CloseHandle (locals.select.sockevt);
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locals.select.sockevt = NULL;
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free_local (select.ser_num);
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free_local (select.w4);
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}
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/* Free memory used by network functions. */
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free_local (ntoa_buf);
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free_local (protoent_buf);
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free_local (servent_buf);
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free_local (hostent_buf);
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/* Free temporary TLS path buffers. */
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locals.pathbufs.destroy ();
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/* Close timer handle. */
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if (locals.cw_timer)
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NtClose (locals.cw_timer);
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if (mutex)
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{
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ReleaseMutex (mutex);
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CloseHandle (mutex);
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}
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}
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#ifdef __x86_64__
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void san::leave ()
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{
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/* Restore tls_pathbuf counters in case of error. */
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_my_tls.locals.pathbufs._counters = _cnt;
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_my_tls.andreas = _clemente;
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}
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#endif
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