tthread.inc 15 KB

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  1. {
  2. This file is part of the Free Component Library (FCL)
  3. Copyright (c) 1999-2000 by Peter Vreman
  4. BeOS TThread implementation
  5. See the file COPYING.FPC, included in this distribution,
  6. for details about the copyright.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  10. **********************************************************************}
  11. {$IFDEF VER1_0} // leaving the old implementation in for now...
  12. type
  13. PThreadRec=^TThreadRec;
  14. TThreadRec=record
  15. thread : TThread;
  16. next : PThreadRec;
  17. end;
  18. var
  19. ThreadRoot : PThreadRec;
  20. ThreadsInited : boolean;
  21. // MainThreadID: longint;
  22. Const
  23. ThreadCount: longint = 0;
  24. function ThreadSelf:TThread;
  25. var
  26. hp : PThreadRec;
  27. sp : Pointer;
  28. begin
  29. sp:=SPtr;
  30. hp:=ThreadRoot;
  31. while assigned(hp) do
  32. begin
  33. if (sp<=hp^.Thread.FStackPointer) and
  34. (sp>(hp^.Thread.FStackPointer-hp^.Thread.FStackSize)) then
  35. begin
  36. Result:=hp^.Thread;
  37. exit;
  38. end;
  39. hp:=hp^.next;
  40. end;
  41. Result:=nil;
  42. end;
  43. //function SIGCHLDHandler(Sig: longint): longint; cdecl;//this is std linux C declaration as function
  44. procedure SIGCHLDHandler(Sig: longint); cdecl;
  45. begin
  46. fpwaitpid(-1, nil, WNOHANG);
  47. end;
  48. procedure InitThreads;
  49. var
  50. Act, OldAct: Baseunix.PSigActionRec;
  51. begin
  52. ThreadRoot:=nil;
  53. ThreadsInited:=true;
  54. // This will install SIGCHLD signal handler
  55. // signal() installs "one-shot" handler,
  56. // so it is better to install and set up handler with sigaction()
  57. GetMem(Act, SizeOf(SigActionRec));
  58. GetMem(OldAct, SizeOf(SigActionRec));
  59. Act^.sa_handler := TSigAction(@SIGCHLDHandler);
  60. Act^.sa_flags := SA_NOCLDSTOP {or SA_NOMASK or SA_RESTART};
  61. Fillchar(Act^.sa_mask,sizeof(Act^.sa_mask),0); //Do not block all signals ??. Don't need if SA_NOMASK in flags
  62. FpSigAction(SIGCHLD, Act, OldAct);
  63. FreeMem(Act, SizeOf(SigActionRec));
  64. FreeMem(OldAct, SizeOf(SigActionRec));
  65. end;
  66. procedure DoneThreads;
  67. var
  68. hp : PThreadRec;
  69. begin
  70. while assigned(ThreadRoot) do
  71. begin
  72. ThreadRoot^.Thread.Destroy;
  73. hp:=ThreadRoot;
  74. ThreadRoot:=ThreadRoot^.Next;
  75. dispose(hp);
  76. end;
  77. ThreadsInited:=false;
  78. end;
  79. procedure AddThread(t:TThread);
  80. var
  81. hp : PThreadRec;
  82. begin
  83. { Need to initialize threads ? }
  84. if not ThreadsInited then
  85. InitThreads;
  86. { Put thread in the linked list }
  87. new(hp);
  88. hp^.Thread:=t;
  89. hp^.next:=ThreadRoot;
  90. ThreadRoot:=hp;
  91. inc(ThreadCount, 1);
  92. end;
  93. procedure RemoveThread(t:TThread);
  94. var
  95. lasthp,hp : PThreadRec;
  96. begin
  97. hp:=ThreadRoot;
  98. lasthp:=nil;
  99. while assigned(hp) do
  100. begin
  101. if hp^.Thread=t then
  102. begin
  103. if assigned(lasthp) then
  104. lasthp^.next:=hp^.next
  105. else
  106. ThreadRoot:=hp^.next;
  107. dispose(hp);
  108. exit;
  109. end;
  110. lasthp:=hp;
  111. hp:=hp^.next;
  112. end;
  113. Dec(ThreadCount, 1);
  114. if ThreadCount = 0 then DoneThreads;
  115. end;
  116. { TThread }
  117. function ThreadProc(args:pointer): Integer;//cdecl;
  118. var
  119. FreeThread: Boolean;
  120. Thread : TThread absolute args;
  121. begin
  122. while Thread.FHandle = 0 do fpsleep(1);
  123. if Thread.FSuspended then Thread.suspend();
  124. try
  125. Thread.Execute;
  126. except
  127. Thread.FFatalException := TObject(AcquireExceptionObject);
  128. end;
  129. FreeThread := Thread.FFreeOnTerminate;
  130. Result := Thread.FReturnValue;
  131. Thread.FFinished := True;
  132. Thread.DoTerminate;
  133. if FreeThread then
  134. Thread.Free;
  135. fpexit(Result);
  136. end;
  137. constructor TThread.Create(CreateSuspended: Boolean);
  138. var
  139. Flags: Integer;
  140. begin
  141. inherited Create;
  142. AddThread(self);
  143. FSuspended := CreateSuspended;
  144. Flags := CLONE_VM + CLONE_FS + CLONE_FILES + CLONE_SIGHAND + SIGCHLD;
  145. { Setup 16k of stack }
  146. FStackSize:=16384;
  147. Getmem(FStackPointer,FStackSize);
  148. inc(FStackPointer,FStackSize);
  149. FCallExitProcess:=false;
  150. { Clone }
  151. FHandle:= Clone(@ThreadProc,FStackPointer,Flags,self);
  152. // if FSuspended then Suspend;
  153. FThreadID := FHandle;
  154. IsMultiThread := TRUE;
  155. FFatalException := nil;
  156. end;
  157. destructor TThread.Destroy;
  158. begin
  159. if not FFinished and not Suspended then
  160. begin
  161. Terminate;
  162. WaitFor;
  163. end;
  164. if FHandle <> -1 then
  165. fpkill(FHandle, SIGKILL);
  166. dec(FStackPointer,FStackSize);
  167. Freemem(FStackPointer);
  168. FFatalException.Free;
  169. FFatalException := nil;
  170. inherited Destroy;
  171. RemoveThread(self);
  172. end;
  173. procedure TThread.CallOnTerminate;
  174. begin
  175. FOnTerminate(Self);
  176. end;
  177. procedure TThread.DoTerminate;
  178. begin
  179. if Assigned(FOnTerminate) then
  180. Synchronize(@CallOnTerminate);
  181. end;
  182. const
  183. { I Don't know idle or timecritical, value is also 20, so the largest other
  184. possibility is 19 (PFV) }
  185. Priorities: array [TThreadPriority] of Integer =
  186. (-20,-19,-10,9,10,19,20);
  187. function TThread.GetPriority: TThreadPriority;
  188. var
  189. P: Integer;
  190. I: TThreadPriority;
  191. begin
  192. P := fpGetPriority(Prio_Process,FHandle);
  193. Result := tpNormal;
  194. for I := Low(TThreadPriority) to High(TThreadPriority) do
  195. if Priorities[I] = P then
  196. Result := I;
  197. end;
  198. procedure TThread.SetPriority(Value: TThreadPriority);
  199. begin
  200. fpSetPriority(Prio_Process,FHandle,Priorities[Value]);
  201. end;
  202. procedure TThread.Synchronize(Method: TThreadMethod);
  203. begin
  204. FSynchronizeException := nil;
  205. FMethod := Method;
  206. { SendMessage(ThreadWindow, CM_EXECPROC, 0, Longint(Self)); }
  207. if Assigned(FSynchronizeException) then
  208. raise FSynchronizeException;
  209. end;
  210. procedure TThread.SetSuspended(Value: Boolean);
  211. begin
  212. if Value <> FSuspended then
  213. if Value then
  214. Suspend
  215. else
  216. Resume;
  217. end;
  218. procedure TThread.Suspend;
  219. begin
  220. FSuspended := true;
  221. fpKill(FHandle, SIGSTOP);
  222. end;
  223. procedure TThread.Resume;
  224. begin
  225. fpKill(FHandle, SIGCONT);
  226. FSuspended := False;
  227. end;
  228. procedure TThread.Terminate;
  229. begin
  230. FTerminated := True;
  231. end;
  232. function TThread.WaitFor: Integer;
  233. var
  234. status : longint;
  235. begin
  236. if FThreadID = MainThreadID then
  237. fpwaitpid(0,@status,0)
  238. else
  239. fpwaitpid(FHandle,@status,0);
  240. Result:=status;
  241. end;
  242. {$ELSE}
  243. {
  244. What follows, is a short description on my implementation of TThread.
  245. Most information can also be found by reading the source and accompanying
  246. comments.
  247. A thread is created using BeginThread, which in turn calls
  248. pthread_create. So the threads here are always posix threads.
  249. Posix doesn't define anything for suspending threads as this is
  250. inherintly unsafe. Just don't suspend threads at points they cannot
  251. control. Therefore, I didn't implement .Suspend() if its called from
  252. outside the threads execution flow (except on Linux _without_ NPTL).
  253. The implementation for .suspend uses a semaphore, which is initialized
  254. at thread creation. If the thread tries to suspend itself, we simply
  255. let it wait on the semaphore until it is unblocked by someone else
  256. who calls .Resume.
  257. If a thread is supposed to be suspended (from outside its own path of
  258. execution) on a system where the symbol LINUX is defined, two things
  259. are possible.
  260. 1) the system has the LinuxThreads pthread implementation
  261. 2) the system has NPTL as the pthread implementation.
  262. In the first case, each thread is a process on its own, which as far as
  263. know actually violates posix with respect to signal handling.
  264. But we can detect this case, because getpid(2) will
  265. return a different PID for each thread. In that case, sending SIGSTOP
  266. to the PID associated with a thread will actually stop that thread
  267. only.
  268. In the second case, this is not possible. But getpid(2) returns the same
  269. PID across all threads, which is detected, and TThread.Suspend() does
  270. nothing in that case. This should probably be changed, but I know of
  271. no way to suspend a thread when using NPTL.
  272. If the symbol LINUX is not defined, then the unimplemented
  273. function SuspendThread is called.
  274. Johannes Berg <[email protected]>, Sunday, November 16 2003
  275. }
  276. // ========== semaphore stuff ==========
  277. {
  278. I don't like this. It eats up 2 filedescriptors for each thread,
  279. and those are a limited resource. If you have a server programm
  280. handling client connections (one per thread) it will not be able
  281. to handle many if we use 2 fds already for internal structures.
  282. However, right now I don't see a better option unless some sem_*
  283. functions are added to systhrds.
  284. I encapsulated all used functions here to make it easier to
  285. change them completely.
  286. }
  287. {BeOS implementation}
  288. function SemaphoreInit: Pointer;
  289. begin
  290. SemaphoreInit := GetMem(SizeOf(TFilDes));
  291. fppipe(PFilDes(SemaphoreInit)^);
  292. end;
  293. procedure SemaphoreWait(const FSem: Pointer);
  294. var
  295. b: byte;
  296. begin
  297. fpread(PFilDes(FSem)^[0], b, 1);
  298. end;
  299. procedure SemaphorePost(const FSem: Pointer);
  300. var
  301. b : byte;
  302. begin
  303. b := 0;
  304. fpwrite(PFilDes(FSem)^[1], b, 1);
  305. end;
  306. procedure SemaphoreDestroy(const FSem: Pointer);
  307. begin
  308. fpclose(PFilDes(FSem)^[0]);
  309. fpclose(PFilDes(FSem)^[1]);
  310. FreeMemory(FSem);
  311. end;
  312. // =========== semaphore end ===========
  313. var
  314. ThreadsInited: boolean = false;
  315. {$IFDEF LINUX}
  316. GMainPID: LongInt = 0;
  317. {$ENDIF}
  318. const
  319. // stupid, considering its not even implemented...
  320. Priorities: array [TThreadPriority] of Integer =
  321. (-20,-19,-10,0,9,18,19);
  322. procedure InitThreads;
  323. begin
  324. if not ThreadsInited then begin
  325. ThreadsInited := true;
  326. {$IFDEF LINUX}
  327. GMainPid := fpgetpid();
  328. {$ENDIF}
  329. end;
  330. end;
  331. procedure DoneThreads;
  332. begin
  333. ThreadsInited := false;
  334. end;
  335. { ok, so this is a hack, but it works nicely. Just never use
  336. a multiline argument with WRITE_DEBUG! }
  337. {$MACRO ON}
  338. {$IFDEF DEBUG_MT}
  339. {$define WRITE_DEBUG := writeln} // actually write something
  340. {$ELSE}
  341. {$define WRITE_DEBUG := //} // just comment out those lines
  342. {$ENDIF}
  343. function ThreadFunc(parameter: Pointer): LongInt; // cdecl;
  344. var
  345. LThread: TThread;
  346. c: char;
  347. begin
  348. WRITE_DEBUG('ThreadFunc is here...');
  349. LThread := TThread(parameter);
  350. {$IFDEF LINUX}
  351. // save the PID of the "thread"
  352. // this is different from the PID of the main thread if
  353. // the LinuxThreads implementation is used
  354. LThread.FPid := fpgetpid();
  355. {$ENDIF}
  356. WRITE_DEBUG('thread initing, parameter = ', LongInt(LThread));
  357. try
  358. if LThread.FInitialSuspended then begin
  359. SemaphoreWait(LThread.FSem);
  360. if not LThread.FInitialSuspended then begin
  361. WRITE_DEBUG('going into LThread.Execute');
  362. LThread.Execute;
  363. end;
  364. end else begin
  365. WRITE_DEBUG('going into LThread.Execute');
  366. LThread.Execute;
  367. end;
  368. except
  369. on e: exception do begin
  370. WRITE_DEBUG('got exception: ',e.message);
  371. LThread.FFatalException := TObject(AcquireExceptionObject);
  372. // not sure if we should really do this...
  373. // but .Destroy was called, so why not try FreeOnTerminate?
  374. if e is EThreadDestroyCalled then LThread.FFreeOnTerminate := true;
  375. end;
  376. end;
  377. WRITE_DEBUG('thread done running');
  378. Result := LThread.FReturnValue;
  379. WRITE_DEBUG('Result is ',Result);
  380. LThread.FFinished := True;
  381. LThread.DoTerminate;
  382. if LThread.FreeOnTerminate then begin
  383. WRITE_DEBUG('Thread should be freed');
  384. LThread.Free;
  385. WRITE_DEBUG('Thread freed');
  386. end;
  387. WRITE_DEBUG('thread func exiting');
  388. end;
  389. { TThread }
  390. constructor TThread.Create(CreateSuspended: Boolean; const StackSize: SizeUInt = DefaultStackSize);
  391. var
  392. data : pointer;
  393. begin
  394. // lets just hope that the user doesn't create a thread
  395. // via BeginThread and creates the first TThread Object in there!
  396. InitThreads;
  397. inherited Create;
  398. FSem := SemaphoreInit;
  399. FSuspended := CreateSuspended;
  400. FSuspendedExternal := false;
  401. FInitialSuspended := CreateSuspended;
  402. FFatalException := nil;
  403. WRITE_DEBUG('creating thread, self = ',longint(self));
  404. FHandle:= BeginThread(@ThreadFunc, Pointer(Self), FThreadID);
  405. WRITE_DEBUG('TThread.Create done');
  406. end;
  407. destructor TThread.Destroy;
  408. begin
  409. if FThreadID = GetCurrentThreadID then begin
  410. raise EThreadDestroyCalled.Create('A thread cannot destroy itself except by setting FreeOnTerminate and leaving!');
  411. end;
  412. // if someone calls .Free on a thread with
  413. // FreeOnTerminate, then don't crash!
  414. FFreeOnTerminate := false;
  415. if not FFinished and not FSuspended then begin
  416. Terminate;
  417. WaitFor;
  418. end;
  419. if (FInitialSuspended) then begin
  420. // thread was created suspended but never woken up.
  421. SemaphorePost(FSem);
  422. WaitFor;
  423. end;
  424. FFatalException.Free;
  425. FFatalException := nil;
  426. SemaphoreDestroy(FSem);
  427. inherited Destroy;
  428. end;
  429. procedure TThread.SetSuspended(Value: Boolean);
  430. begin
  431. if Value <> FSuspended then
  432. if Value then
  433. Suspend
  434. else
  435. Resume;
  436. end;
  437. procedure TThread.Suspend;
  438. begin
  439. if not FSuspended then begin
  440. if FThreadID = GetCurrentThreadID then begin
  441. FSuspended := true;
  442. SemaphoreWait(FSem);
  443. end else begin
  444. FSuspendedExternal := true;
  445. {$IFDEF LINUX}
  446. // naughty hack if the user doesn't have Linux with NPTL...
  447. // in that case, the PID of threads will not be identical
  448. // to the other threads, which means that our thread is a normal
  449. // process that we can suspend via SIGSTOP...
  450. // this violates POSIX, but is the way it works on the
  451. // LinuxThreads pthread implementation. Not with NPTL, but in that case
  452. // getpid(2) also behaves properly and returns the same PID for
  453. // all threads. Thats actually (FINALLY!) native thread support :-)
  454. if FPid <> GMainPID then begin
  455. FSuspended := true;
  456. fpkill(FPid, SIGSTOP);
  457. end;
  458. {$ELSE}
  459. SuspendThread(FHandle);
  460. {$ENDIF}
  461. end;
  462. end;
  463. end;
  464. procedure TThread.Resume;
  465. begin
  466. if (not FSuspendedExternal) then begin
  467. if FSuspended then begin
  468. SemaphorePost(FSem);
  469. FInitialSuspended := false;
  470. FSuspended := False;
  471. end;
  472. end else begin
  473. {$IFDEF LINUX}
  474. // see .Suspend
  475. if FPid <> GMainPID then begin
  476. fpkill(FPid, SIGCONT);
  477. FSuspended := False;
  478. end;
  479. {$ELSE}
  480. ResumeThread(FHandle);
  481. {$ENDIF}
  482. FSuspendedExternal := false;
  483. end;
  484. end;
  485. procedure TThread.Terminate;
  486. begin
  487. FTerminated := True;
  488. end;
  489. function TThread.WaitFor: Integer;
  490. begin
  491. WRITE_DEBUG('waiting for thread ',FHandle);
  492. WaitFor := WaitForThreadTerminate(FHandle, 0);
  493. WRITE_DEBUG('thread terminated');
  494. end;
  495. procedure TThread.CallOnTerminate;
  496. begin
  497. // no need to check if FOnTerminate <> nil, because
  498. // thats already done in DoTerminate
  499. FOnTerminate(self);
  500. end;
  501. procedure TThread.DoTerminate;
  502. begin
  503. if Assigned(FOnTerminate) then
  504. Synchronize(@CallOnTerminate);
  505. end;
  506. function TThread.GetPriority: TThreadPriority;
  507. var
  508. P: Integer;
  509. I: TThreadPriority;
  510. begin
  511. P := ThreadGetPriority(FHandle);
  512. Result := tpNormal;
  513. for I := Low(TThreadPriority) to High(TThreadPriority) do
  514. if Priorities[I] = P then
  515. Result := I;
  516. end;
  517. (*
  518. procedure TThread.Synchronize(Method: TThreadMethod);
  519. begin
  520. {$TODO someone with more clue of the GUI stuff will have to do this}
  521. end;
  522. *)
  523. procedure TThread.SetPriority(Value: TThreadPriority);
  524. begin
  525. ThreadSetPriority(FHandle, Priorities[Value]);
  526. end;
  527. {$ENDIF}