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      1   1.1  mrg /* Implementation of W32-specific threads compatibility routines for
      2   1.1  mrg    libgcc2.  */
      3   1.1  mrg 
      4  1.10  mrg /* Copyright (C) 1999-2022 Free Software Foundation, Inc.
      5   1.1  mrg    Contributed by Mumit Khan <khan (at) xraylith.wisc.edu>.
      6   1.1  mrg    Modified and moved to separate file by Danny Smith
      7   1.1  mrg    <dannysmith (at) users.sourceforge.net>.
      8   1.1  mrg 
      9   1.1  mrg This file is part of GCC.
     10   1.1  mrg 
     11   1.1  mrg GCC is free software; you can redistribute it and/or modify it under
     12   1.1  mrg the terms of the GNU General Public License as published by the Free
     13   1.1  mrg Software Foundation; either version 3, or (at your option) any later
     14   1.1  mrg version.
     15   1.1  mrg 
     16   1.1  mrg GCC is distributed in the hope that it will be useful, but WITHOUT ANY
     17   1.1  mrg WARRANTY; without even the implied warranty of MERCHANTABILITY or
     18   1.1  mrg FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
     19   1.1  mrg for more details.
     20   1.1  mrg 
     21   1.1  mrg Under Section 7 of GPL version 3, you are granted additional
     22   1.1  mrg permissions described in the GCC Runtime Library Exception, version
     23   1.1  mrg 3.1, as published by the Free Software Foundation.
     24   1.1  mrg 
     25   1.1  mrg You should have received a copy of the GNU General Public License and
     26   1.1  mrg a copy of the GCC Runtime Library Exception along with this program;
     27   1.1  mrg see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
     28   1.1  mrg <http://www.gnu.org/licenses/>.  */
     29   1.1  mrg 
     30   1.1  mrg #include <windows.h>
     31   1.1  mrg #ifndef __GTHREAD_HIDE_WIN32API
     32   1.1  mrg # define __GTHREAD_HIDE_WIN32API 1
     33   1.1  mrg #endif
     34   1.1  mrg #include "gthr-win32.h"
     35   1.1  mrg 
     36   1.1  mrg /* Windows32 threads specific definitions. The windows32 threading model
     37   1.1  mrg    does not map well into pthread-inspired gcc's threading model, and so
     38   1.1  mrg    there are caveats one needs to be aware of.
     39   1.1  mrg 
     40   1.1  mrg    1. The destructor supplied to __gthread_key_create is ignored for
     41   1.1  mrg       generic x86-win32 ports. This will certainly cause memory leaks
     42   1.1  mrg       due to unreclaimed eh contexts (sizeof (eh_context) is at least
     43   1.1  mrg       24 bytes for x86 currently).
     44   1.1  mrg 
     45   1.1  mrg       This memory leak may be significant for long-running applications
     46   1.1  mrg       that make heavy use of C++ EH.
     47   1.1  mrg 
     48   1.1  mrg       However, Mingw runtime (version 0.3 or newer) provides a mechanism
     49   1.1  mrg       to emulate pthreads key dtors; the runtime provides a special DLL,
     50   1.1  mrg       linked in if -mthreads option is specified, that runs the dtors in
     51   1.1  mrg       the reverse order of registration when each thread exits. If
     52   1.1  mrg       -mthreads option is not given, a stub is linked in instead of the
     53   1.1  mrg       DLL, which results in memory leak. Other x86-win32 ports can use
     54   1.1  mrg       the same technique of course to avoid the leak.
     55   1.1  mrg 
     56   1.1  mrg    2. The error codes returned are non-POSIX like, and cast into ints.
     57   1.1  mrg       This may cause incorrect error return due to truncation values on
     58   1.1  mrg       hw where sizeof (DWORD) > sizeof (int).
     59   1.1  mrg 
     60   1.1  mrg    3. We are currently using a special mutex instead of the Critical
     61   1.1  mrg       Sections, since Win9x does not support TryEnterCriticalSection
     62   1.1  mrg       (while NT does).
     63   1.1  mrg 
     64   1.1  mrg    The basic framework should work well enough. In the long term, GCC
     65   1.1  mrg    needs to use Structured Exception Handling on Windows32.  */
     66   1.1  mrg 
     67   1.1  mrg int
     68   1.1  mrg __gthr_win32_once (__gthread_once_t *once, void (*func) (void))
     69   1.1  mrg {
     70   1.1  mrg   if (once == NULL || func == NULL)
     71   1.1  mrg     return EINVAL;
     72   1.1  mrg 
     73   1.1  mrg   if (! once->done)
     74   1.1  mrg     {
     75   1.1  mrg       if (InterlockedIncrement (&(once->started)) == 0)
     76   1.1  mrg         {
     77   1.1  mrg 	  (*func) ();
     78   1.1  mrg 	  once->done = TRUE;
     79   1.1  mrg 	}
     80   1.1  mrg       else
     81   1.1  mrg 	{
     82   1.1  mrg 	  /* Another thread is currently executing the code, so wait for it
     83   1.1  mrg 	     to finish; yield the CPU in the meantime.  If performance
     84   1.1  mrg 	     does become an issue, the solution is to use an Event that
     85   1.1  mrg 	     we wait on here (and set above), but that implies a place to
     86   1.1  mrg 	     create the event before this routine is called.  */
     87   1.1  mrg 	  while (! once->done)
     88   1.1  mrg 	    Sleep (0);
     89   1.1  mrg 	}
     90   1.1  mrg     }
     91   1.1  mrg   return 0;
     92   1.1  mrg }
     93   1.1  mrg 
     94   1.1  mrg /* Windows32 thread local keys don't support destructors; this leads to
     95   1.1  mrg    leaks, especially in threaded applications making extensive use of
     96   1.1  mrg    C++ EH. Mingw uses a thread-support DLL to work-around this problem.  */
     97   1.1  mrg 
     98   1.1  mrg int
     99   1.1  mrg __gthr_win32_key_create (__gthread_key_t *key,
    100   1.1  mrg 			 void (*dtor) (void *) __attribute__((unused)))
    101   1.1  mrg {
    102   1.1  mrg   int status = 0;
    103   1.1  mrg   DWORD tls_index = TlsAlloc ();
    104   1.1  mrg   if (tls_index != 0xFFFFFFFF)
    105   1.1  mrg     {
    106   1.1  mrg       *key = tls_index;
    107   1.1  mrg #ifdef MINGW32_SUPPORTS_MT_EH
    108   1.1  mrg       /* Mingw runtime will run the dtors in reverse order for each thread
    109   1.1  mrg          when the thread exits.  */
    110   1.1  mrg       status = __mingwthr_key_dtor (*key, dtor);
    111   1.1  mrg #endif
    112   1.1  mrg     }
    113   1.1  mrg   else
    114   1.1  mrg     status = (int) GetLastError ();
    115   1.1  mrg   return status;
    116   1.1  mrg }
    117   1.1  mrg 
    118   1.1  mrg int
    119   1.1  mrg __gthr_win32_key_delete (__gthread_key_t key)
    120   1.1  mrg {
    121   1.1  mrg   return (TlsFree (key) != 0) ? 0 : (int) GetLastError ();
    122   1.1  mrg }
    123   1.1  mrg 
    124   1.1  mrg void *
    125   1.1  mrg __gthr_win32_getspecific (__gthread_key_t key)
    126   1.1  mrg {
    127   1.1  mrg   DWORD lasterror;
    128   1.1  mrg   void *ptr;
    129   1.1  mrg   lasterror = GetLastError();
    130   1.1  mrg   ptr = TlsGetValue(key);
    131   1.1  mrg   SetLastError( lasterror );
    132   1.1  mrg   return ptr;
    133   1.1  mrg }
    134   1.1  mrg 
    135   1.1  mrg int
    136   1.1  mrg __gthr_win32_setspecific (__gthread_key_t key, const void *ptr)
    137   1.1  mrg {
    138   1.1  mrg   if (TlsSetValue (key, CONST_CAST2(void *, const void *, ptr)) != 0)
    139   1.1  mrg     return 0;
    140   1.1  mrg   else
    141   1.1  mrg     return GetLastError ();
    142   1.1  mrg }
    143   1.1  mrg 
    144   1.1  mrg void
    145   1.1  mrg __gthr_win32_mutex_init_function (__gthread_mutex_t *mutex)
    146   1.1  mrg {
    147   1.1  mrg   mutex->counter = -1;
    148   1.3  mrg   mutex->sema = CreateSemaphoreW (NULL, 0, 65535, NULL);
    149   1.1  mrg }
    150   1.1  mrg 
    151   1.1  mrg void
    152   1.1  mrg __gthr_win32_mutex_destroy (__gthread_mutex_t *mutex)
    153   1.1  mrg {
    154   1.1  mrg   CloseHandle ((HANDLE) mutex->sema);
    155   1.1  mrg }
    156   1.1  mrg 
    157   1.1  mrg int
    158   1.1  mrg __gthr_win32_mutex_lock (__gthread_mutex_t *mutex)
    159   1.1  mrg {
    160   1.1  mrg   if (InterlockedIncrement (&mutex->counter) == 0 ||
    161   1.1  mrg       WaitForSingleObject (mutex->sema, INFINITE) == WAIT_OBJECT_0)
    162   1.1  mrg     return 0;
    163   1.1  mrg   else
    164   1.1  mrg     {
    165   1.1  mrg       /* WaitForSingleObject returns WAIT_FAILED, and we can only do
    166   1.1  mrg          some best-effort cleanup here.  */
    167   1.1  mrg       InterlockedDecrement (&mutex->counter);
    168   1.1  mrg       return 1;
    169   1.1  mrg     }
    170   1.1  mrg }
    171   1.1  mrg 
    172   1.1  mrg int
    173   1.1  mrg __gthr_win32_mutex_trylock (__gthread_mutex_t *mutex)
    174   1.1  mrg {
    175   1.1  mrg   if (__GTHR_W32_InterlockedCompareExchange (&mutex->counter, 0, -1) < 0)
    176   1.1  mrg     return 0;
    177   1.1  mrg   else
    178   1.1  mrg     return 1;
    179   1.1  mrg }
    180   1.1  mrg 
    181   1.1  mrg int
    182   1.1  mrg __gthr_win32_mutex_unlock (__gthread_mutex_t *mutex)
    183   1.1  mrg {
    184   1.1  mrg   if (InterlockedDecrement (&mutex->counter) >= 0)
    185   1.1  mrg     return ReleaseSemaphore (mutex->sema, 1, NULL) ? 0 : 1;
    186   1.1  mrg   else
    187   1.1  mrg     return 0;
    188   1.1  mrg }
    189   1.1  mrg 
    190   1.1  mrg void
    191   1.1  mrg __gthr_win32_recursive_mutex_init_function (__gthread_recursive_mutex_t *mutex)
    192   1.1  mrg {
    193   1.1  mrg   mutex->counter = -1;
    194   1.1  mrg   mutex->depth = 0;
    195   1.1  mrg   mutex->owner = 0;
    196   1.3  mrg   mutex->sema = CreateSemaphoreW (NULL, 0, 65535, NULL);
    197   1.1  mrg }
    198   1.1  mrg 
    199   1.1  mrg int
    200   1.1  mrg __gthr_win32_recursive_mutex_lock (__gthread_recursive_mutex_t *mutex)
    201   1.1  mrg {
    202   1.1  mrg   DWORD me = GetCurrentThreadId();
    203   1.1  mrg   if (InterlockedIncrement (&mutex->counter) == 0)
    204   1.1  mrg     {
    205   1.1  mrg       mutex->depth = 1;
    206   1.1  mrg       mutex->owner = me;
    207   1.1  mrg     }
    208   1.1  mrg   else if (mutex->owner == me)
    209   1.1  mrg     {
    210   1.1  mrg       InterlockedDecrement (&mutex->counter);
    211   1.1  mrg       ++(mutex->depth);
    212   1.1  mrg     }
    213   1.1  mrg   else if (WaitForSingleObject (mutex->sema, INFINITE) == WAIT_OBJECT_0)
    214   1.1  mrg     {
    215   1.1  mrg       mutex->depth = 1;
    216   1.1  mrg       mutex->owner = me;
    217   1.1  mrg     }
    218   1.1  mrg   else
    219   1.1  mrg     {
    220   1.1  mrg       /* WaitForSingleObject returns WAIT_FAILED, and we can only do
    221   1.1  mrg          some best-effort cleanup here.  */
    222   1.1  mrg       InterlockedDecrement (&mutex->counter);
    223   1.1  mrg       return 1;
    224   1.1  mrg     }
    225   1.1  mrg   return 0;
    226   1.1  mrg }
    227   1.1  mrg 
    228   1.1  mrg int
    229   1.1  mrg __gthr_win32_recursive_mutex_trylock (__gthread_recursive_mutex_t *mutex)
    230   1.1  mrg {
    231   1.1  mrg   DWORD me = GetCurrentThreadId();
    232   1.1  mrg   if (__GTHR_W32_InterlockedCompareExchange (&mutex->counter, 0, -1) < 0)
    233   1.1  mrg     {
    234   1.1  mrg       mutex->depth = 1;
    235   1.1  mrg       mutex->owner = me;
    236   1.1  mrg     }
    237   1.1  mrg   else if (mutex->owner == me)
    238   1.1  mrg     ++(mutex->depth);
    239   1.1  mrg   else
    240   1.1  mrg     return 1;
    241   1.1  mrg 
    242   1.1  mrg   return 0;
    243   1.1  mrg }
    244   1.1  mrg 
    245   1.1  mrg int
    246   1.1  mrg __gthr_win32_recursive_mutex_unlock (__gthread_recursive_mutex_t *mutex)
    247   1.1  mrg {
    248   1.1  mrg   --(mutex->depth);
    249   1.1  mrg   if (mutex->depth == 0)
    250   1.1  mrg     {
    251   1.1  mrg       mutex->owner = 0;
    252   1.1  mrg 
    253   1.1  mrg       if (InterlockedDecrement (&mutex->counter) >= 0)
    254   1.1  mrg 	return ReleaseSemaphore (mutex->sema, 1, NULL) ? 0 : 1;
    255   1.1  mrg     }
    256   1.1  mrg 
    257   1.1  mrg   return 0;
    258   1.1  mrg }
    259   1.1  mrg 
    260   1.1  mrg int
    261   1.1  mrg __gthr_win32_recursive_mutex_destroy (__gthread_recursive_mutex_t *mutex)
    262   1.1  mrg {
    263   1.1  mrg   CloseHandle ((HANDLE) mutex->sema);
    264   1.1  mrg   return 0;
    265   1.1  mrg }
    266