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https://gitlab.com/freepascal.org/fpc/source.git
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501 lines
14 KiB
ObjectPascal
501 lines
14 KiB
ObjectPascal
{
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$Id$
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This file is part of the Free Pascal run time library.
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Copyright (c) 2002 by Peter Vreman,
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member of the Free Pascal development team.
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Linux (pthreads) threading support implementation
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See the file COPYING.FPC, included in this distribution,
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for details about the copyright.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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**********************************************************************}
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{$mode objfpc}
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{$ifdef linux}
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{$define dynpthreads} // Useless on BSD, since they are in libc
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{$endif}
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unit cthreads;
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interface
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{$S-}
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{$ifndef dynpthreads}
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{$ifndef BSD}
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{$linklib c}
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{$linklib pthread}
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{$else}
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// Link reentrant libc with pthreads
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{$linklib c_r}
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{$endif}
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{$endif}
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Procedure SetCThreadManager;
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implementation
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Uses
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systhrds,
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BaseUnix,
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unix
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{$ifdef dynpthreads}
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,dl
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{$endif}
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;
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{*****************************************************************************
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Generic overloaded
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*****************************************************************************}
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{ Include OS specific parts. }
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{$i pthread.inc}
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{*****************************************************************************
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Threadvar support
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*****************************************************************************}
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{$ifdef HASTHREADVAR}
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const
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threadvarblocksize : dword = 0;
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var
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TLSKey : pthread_key_t;
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procedure CInitThreadvar(var offset : dword;size : dword);
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begin
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offset:=threadvarblocksize;
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inc(threadvarblocksize,size);
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end;
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function CRelocateThreadvar(offset : dword) : pointer;
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begin
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CRelocateThreadvar:=pthread_getspecific(tlskey)+Offset;
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end;
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procedure CAllocateThreadVars;
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var
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dataindex : pointer;
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begin
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{ we've to allocate the memory from system }
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{ because the FPC heap management uses }
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{ exceptions which use threadvars but }
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{ these aren't allocated yet ... }
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{ allocate room on the heap for the thread vars }
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DataIndex:=Pointer(Fpmmap(nil,threadvarblocksize,3,MAP_PRIVATE+MAP_ANONYMOUS,-1,0));
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FillChar(DataIndex^,threadvarblocksize,0);
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pthread_setspecific(tlskey,dataindex);
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end;
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procedure CReleaseThreadVars;
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begin
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{$ifdef ver1_0}
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Fpmunmap(longint(pthread_getspecific(tlskey)),threadvarblocksize);
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{$else}
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Fpmunmap(pointer(pthread_getspecific(tlskey)),threadvarblocksize);
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{$endif}
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end;
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{ Include OS independent Threadvar initialization }
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{$endif HASTHREADVAR}
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{*****************************************************************************
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Thread starting
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*****************************************************************************}
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type
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pthreadinfo = ^tthreadinfo;
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tthreadinfo = record
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f : tthreadfunc;
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p : pointer;
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stklen : cardinal;
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end;
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procedure DoneThread;
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begin
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{ Release Threadvars }
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{$ifdef HASTHREADVAR}
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CReleaseThreadVars;
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{$endif HASTHREADVAR}
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end;
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function ThreadMain(param : pointer) : pointer;cdecl;
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var
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ti : tthreadinfo;
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{$ifdef DEBUG_MT}
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// in here, don't use write/writeln before having called
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// InitThread! I wonder if anyone ever debugged these routines,
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// because they will have crashed if DEBUG_MT was enabled!
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// this took me the good part of an hour to figure out
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// why it was crashing all the time!
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// this is kind of a workaround, we simply write(2) to fd 0
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s: string[100]; // not an ansistring
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{$endif DEBUG_MT}
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begin
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{$ifdef DEBUG_MT}
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s := 'New thread started, initing threadvars'#10;
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fpwrite(0,s[1],length(s));
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{$endif DEBUG_MT}
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{$ifdef HASTHREADVAR}
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{ Allocate local thread vars, this must be the first thing,
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because the exception management and io depends on threadvars }
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CAllocateThreadVars;
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{$endif HASTHREADVAR}
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{ Copy parameter to local data }
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{$ifdef DEBUG_MT}
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s := 'New thread started, initialising ...'#10;
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fpwrite(0,s[1],length(s));
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{$endif DEBUG_MT}
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ti:=pthreadinfo(param)^;
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dispose(pthreadinfo(param));
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{ Initialize thread }
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InitThread(ti.stklen);
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{ Start thread function }
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{$ifdef DEBUG_MT}
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writeln('Jumping to thread function');
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{$endif DEBUG_MT}
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ThreadMain:=pointer(ti.f(ti.p));
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DoneThread;
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pthread_detach(pointer(pthread_self));
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end;
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function CBeginThread(sa : Pointer;stacksize : dword;
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ThreadFunction : tthreadfunc;p : pointer;
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creationFlags : dword; var ThreadId : DWord) : DWord;
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var
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ti : pthreadinfo;
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thread_attr : pthread_attr_t;
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begin
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{$ifdef DEBUG_MT}
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writeln('Creating new thread');
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{$endif DEBUG_MT}
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{ Initialize multithreading if not done }
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if not IsMultiThread then
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begin
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{$ifdef HASTHREADVAR}
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{ We're still running in single thread mode, setup the TLS }
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pthread_key_create(@TLSKey,nil);
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InitThreadVars(@CRelocateThreadvar);
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{$endif HASTHREADVAR}
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IsMultiThread:=true;
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end;
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{ the only way to pass data to the newly created thread
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in a MT safe way, is to use the heap }
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new(ti);
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ti^.f:=ThreadFunction;
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ti^.p:=p;
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ti^.stklen:=stacksize;
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{ call pthread_create }
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{$ifdef DEBUG_MT}
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writeln('Starting new thread');
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{$endif DEBUG_MT}
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pthread_attr_init(@thread_attr);
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pthread_attr_setinheritsched(@thread_attr, PTHREAD_EXPLICIT_SCHED);
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// will fail under linux -- apparently unimplemented
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pthread_attr_setscope(@thread_attr, PTHREAD_SCOPE_PROCESS);
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// don't create detached, we need to be able to join (waitfor) on
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// the newly created thread!
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//pthread_attr_setdetachstate(@thread_attr, PTHREAD_CREATE_DETACHED);
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if pthread_create(@threadid, @thread_attr, @ThreadMain,ti) <> 0 then begin
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threadid := 0;
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end;
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CBeginThread:=threadid;
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{$ifdef DEBUG_MT}
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writeln('BeginThread returning ',BeginThread);
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{$endif DEBUG_MT}
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end;
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procedure CEndThread(ExitCode : DWord);
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begin
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DoneThread;
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pthread_detach(pointer(pthread_self));
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pthread_exit(pointer(ExitCode));
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end;
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function CSuspendThread (threadHandle : dword) : dword;
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begin
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{$Warning SuspendThread needs to be implemented}
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end;
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function CResumeThread (threadHandle : dword) : dword;
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begin
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{$Warning ResumeThread needs to be implemented}
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end;
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procedure CThreadSwitch; {give time to other threads}
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begin
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{extern int pthread_yield (void) __THROW;}
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{$Warning ThreadSwitch needs to be implemented}
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end;
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function CKillThread (threadHandle : dword) : dword;
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begin
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pthread_detach(pointer(threadHandle));
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CKillThread := pthread_cancel(Pointer(threadHandle));
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end;
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function CWaitForThreadTerminate (threadHandle : dword; TimeoutMs : longint) : dword; {0=no timeout}
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var
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LResultP: Pointer;
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LResult: DWord;
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begin
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LResult := 0;
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LResultP := @LResult;
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pthread_join(Pointer(threadHandle), @LResultP);
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CWaitForThreadTerminate := LResult;
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end;
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function CThreadSetPriority (threadHandle : dword; Prio: longint): boolean; {-15..+15, 0=normal}
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begin
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{$Warning ThreadSetPriority needs to be implemented}
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end;
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function CThreadGetPriority (threadHandle : dword): Integer;
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begin
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{$Warning ThreadGetPriority needs to be implemented}
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end;
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function CGetCurrentThreadId : dword;
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begin
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CGetCurrentThreadId:=dword(pthread_self);
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end;
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{*****************************************************************************
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Delphi/Win32 compatibility
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*****************************************************************************}
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procedure CInitCriticalSection(var CS);
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Var
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P : PRTLCriticalSection;
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begin
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P:=PRTLCriticalSection(@CS);
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With p^ do
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begin
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m_spinlock:=0;
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m_count:=0;
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m_owner:=nil;
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m_kind:=1;
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m_waiting.head:=nil;
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m_waiting.tail:=nil;
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end;
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pthread_mutex_init(P,NIL);
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end;
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procedure CEnterCriticalSection(var CS);
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begin
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pthread_mutex_lock(@CS);
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end;
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procedure CLeaveCriticalSection(var CS);
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begin
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pthread_mutex_unlock(@CS);
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end;
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procedure CDoneCriticalSection(var CS);
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begin
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pthread_mutex_destroy(@CS);
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end;
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{*****************************************************************************
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Heap Mutex Protection
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*****************************************************************************}
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var
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HeapMutex : pthread_mutex_t;
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procedure PThreadHeapMutexInit;
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begin
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pthread_mutex_init(@heapmutex,nil);
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end;
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procedure PThreadHeapMutexDone;
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begin
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pthread_mutex_destroy(@heapmutex);
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end;
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procedure PThreadHeapMutexLock;
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begin
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pthread_mutex_lock(@heapmutex);
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end;
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procedure PThreadHeapMutexUnlock;
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begin
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pthread_mutex_unlock(@heapmutex);
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end;
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const
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PThreadMemoryMutexManager : TMemoryMutexManager = (
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MutexInit : @PThreadHeapMutexInit;
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MutexDone : @PThreadHeapMutexDone;
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MutexLock : @PThreadHeapMutexLock;
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MutexUnlock : @PThreadHeapMutexUnlock;
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);
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procedure InitHeapMutexes;
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begin
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SetMemoryMutexManager(PThreadMemoryMutexManager);
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end;
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Function CInitThreads : Boolean;
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begin
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Writeln('Entering InitThreads.');
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{$ifndef dynpthreads}
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Result:=True;
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{$else}
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Result:=LoadPthreads;
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{$endif}
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Writeln('InitThreads : ',Result);
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end;
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Function CDoneThreads : Boolean;
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begin
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{$ifndef dynpthreads}
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Result:=True;
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{$else}
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Result:=UnloadPthreads;
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{$endif}
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end;
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Var
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CThreadManager : TThreadManager;
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Procedure SetCThreadManager;
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begin
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With CThreadManager do
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begin
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InitManager :=@CInitThreads;
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DoneManager :=@CDoneThreads;
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BeginThread :=@CBeginThread;
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EndThread :=@CEndThread;
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SuspendThread :=@CSuspendThread;
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ResumeThread :=@CResumeThread;
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KillThread :=@CKillThread;
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ThreadSwitch :=@CThreadSwitch;
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WaitForThreadTerminate :=@CWaitForThreadTerminate;
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ThreadSetPriority :=@CThreadSetPriority;
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ThreadGetPriority :=@CThreadGetPriority;
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GetCurrentThreadId :=@CGetCurrentThreadId;
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InitCriticalSection :=@CInitCriticalSection;
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DoneCriticalSection :=@CDoneCriticalSection;
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EnterCriticalSection :=@CEnterCriticalSection;
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LeaveCriticalSection :=@CLeaveCriticalSection;
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{$ifdef hasthreadvar}
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InitThreadVar :=@CInitThreadVar;
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RelocateThreadVar :=@CRelocateThreadVar;
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AllocateThreadVars :=@CAllocateThreadVars;
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ReleaseThreadVars :=@CReleaseThreadVars;
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{$endif}
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end;
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SetThreadManager(CThreadManager);
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InitHeapMutexes;
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end;
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initialization
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SetCThreadManager;
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end.
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{
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$Log$
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Revision 1.5 2003-12-16 09:43:04 daniel
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* Use of 0 instead of nil fixed
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Revision 1.4 2003/11/29 17:34:14 michael
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+ Removed dummy variable from SetCthreadManager
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Revision 1.3 2003/11/27 20:24:53 michael
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+ Compiles on BSD too now
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Revision 1.2 2003/11/27 20:16:59 michael
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+ Make works with 1.0.10 too
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Revision 1.1 2003/11/26 20:10:59 michael
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+ New threadmanager implementation
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Revision 1.20 2003/11/19 10:54:32 marco
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* some simple restructures
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Revision 1.19 2003/11/18 22:36:12 marco
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* Last patch was ok, problem was somewhere else. Moved *BSD part of pthreads to freebsd/pthreads.inc
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Revision 1.18 2003/11/18 22:35:09 marco
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* Last patch was ok, problem was somewhere else. Moved *BSD part of pthreads to freebsd/pthreads.inc
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Revision 1.17 2003/11/17 10:05:51 marco
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* threads for FreeBSD. Not working tho
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Revision 1.16 2003/11/17 08:27:50 marco
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* pthreads based ttread from Johannes Berg
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Revision 1.15 2003/10/01 21:00:09 peter
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* GetCurrentThreadHandle renamed to GetCurrentThreadId
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Revision 1.14 2003/10/01 20:53:08 peter
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* GetCurrentThreadId implemented
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Revision 1.13 2003/09/20 12:38:29 marco
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* FCL now compiles for FreeBSD with new 1.1. Now Linux.
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Revision 1.12 2003/09/16 13:17:03 marco
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* Wat cleanup, ouwe syscalls nu via baseunix e.d.
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Revision 1.11 2003/09/16 13:00:02 marco
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* small BSD gotcha removed (typing mmap params)
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Revision 1.10 2003/09/15 20:08:49 marco
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* small fixes. FreeBSD now cycles
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Revision 1.9 2003/09/14 20:15:01 marco
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* Unix reform stage two. Remove all calls from Unix that exist in Baseunix.
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Revision 1.8 2003/03/27 17:14:27 armin
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* more platform independent thread routines, needs to be implemented for unix
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Revision 1.7 2003/01/05 19:11:32 marco
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* small changes originating from introduction of Baseunix to FreeBSD
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Revision 1.6 2002/11/11 21:41:06 marco
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* syscall.inc -> syscallo.inc
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Revision 1.5 2002/10/31 13:45:21 carl
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* threadvar.inc -> threadvr.inc
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Revision 1.4 2002/10/26 18:27:52 marco
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* First series POSIX calls commits. Including getcwd.
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Revision 1.3 2002/10/18 18:05:06 marco
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* $I pthread.inc instead of pthreads.inc
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Revision 1.2 2002/10/18 12:19:59 marco
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* Fixes to get the generic *BSD RTL compiling again + fixes for thread
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support. Still problems left in fexpand. (inoutres?) Therefore fixed
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sysposix not yet commited
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Revision 1.1 2002/10/16 06:22:56 michael
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Threads renamed from threads to systhrds
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Revision 1.1 2002/10/14 19:39:17 peter
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* threads unit added for thread support
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}
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