Generic.Unix.Objects.Mod 25 KB

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  1. (* Aos, Copyright 2001, Pieter Muller, ETH Zurich *)
  2. MODULE Objects; (** AUTHOR "pjm, G.F."; PURPOSE "Active object runtime support"; *)
  3. IMPORT S := SYSTEM, Trace, Glue, Unix, Machine, Heaps, Modules;
  4. CONST
  5. (*! Process flags, meaningless in Unix ports !!! *)
  6. PleaseHalt* = 10; (* Process requested to Halt itself soon *)
  7. Unbreakable*= 11; (* FINALLY shall not catch HALT exception (PleaseHalt is also set) *)
  8. SelfTermination*=12; (* Indicates the process has requested to terminate ifself (PleaseHalt is also set) *)
  9. Preempted* = 27; (* Has been preempted. *)
  10. Resistant* = 28; (* Can only be destroyed by itself *)
  11. MinPriority* = Unix.ThreadLow;
  12. Low* = Unix.ThreadLow + 1;
  13. Normal* = Unix.ThreadNormal;
  14. High* = Unix.ThreadHigh - 2;
  15. GCPriority* = Unix.ThreadHigh - 1;
  16. Realtime* = Unix.ThreadHigh;
  17. (* Process flag defined by compiler in OPC.CallRecBody *)
  18. Restart* = 0; (* Restart/Destroy process on exception *)
  19. (* Process modes (in UnixAos Running means Running or Ready!) *)
  20. Unknown* = 0; Ready* = 1; Running* = 2; AwaitingLock* = 3;
  21. AwaitingCond* = 4; AwaitingEvent* = 5; Terminated* = 6;
  22. Second* = 1000; (* frequency of ticks increments in Hz *)
  23. DefaultStacksize = 128*1024;
  24. VAR
  25. (* timer *)
  26. timerActivity : TimerActivity;
  27. clock : Clock;
  28. timers : Timer;
  29. timerListMutex : Unix.Mutex_t;
  30. timerStopped: BOOLEAN;
  31. (* processes *)
  32. SystemA2Up- : BOOLEAN;
  33. root- : Process; (*! Anchor of all instantiated threads in system *)
  34. stacksize: LONGINT; (* stack size of active objects, adjustable via boot parameter *)
  35. processList : Unix.Mutex_t;
  36. createProcess : Unix.Mutex_t;
  37. startProcess : Unix.Mutex_t;
  38. lockMutex : Unix.Mutex_t;
  39. childrunning : Unix.Condition_t;
  40. processPointer : Unix.Key_t;
  41. newProcess: Process;
  42. nextPID: LONGINT;
  43. finalizerCaller : FinalizerCaller;
  44. mainthread: Unix.Thread_t;
  45. TYPE
  46. LockT= POINTER TO RECORD
  47. mtx, enter: ADDRESS;
  48. END;
  49. CpuCyclesArray* = ARRAY Machine.MaxCPU OF HUGEINT;
  50. ProtectedObject = POINTER TO RECORD END;
  51. ObjectHeader = Heaps.ProtRecBlock;
  52. ProcessQueue = Heaps.ProcessQueue;
  53. EventHandler* = PROCEDURE {DELEGATE};
  54. Timer* = OBJECT
  55. VAR
  56. next: Timer;
  57. trigger: LONGINT;
  58. handler: EventHandler
  59. END Timer;
  60. TimerActivity = OBJECT
  61. VAR
  62. t, r: Timer; h: EventHandler; restart: BOOLEAN;
  63. PROCEDURE UpdateTicks;
  64. BEGIN {EXCLUSIVE}
  65. Machine.UpdateTicks
  66. END UpdateTicks;
  67. PROCEDURE Restart;
  68. BEGIN {EXCLUSIVE}
  69. restart := TRUE
  70. END Restart;
  71. BEGIN {ACTIVE, SAFE, PRIORITY(High)}
  72. restart := FALSE;
  73. LOOP
  74. t := timers;
  75. IF t # NIL THEN
  76. h := NIL; r := NIL;
  77. BEGIN {EXCLUSIVE}
  78. AWAIT( (Machine.ticks >= t.trigger) OR restart ); restart := FALSE;
  79. IF Machine.ticks >= t.trigger THEN
  80. h := t.handler; r := t
  81. END
  82. END;
  83. IF r # NIL THEN Remove( r ) END;
  84. IF h # NIL THEN (* not canceled *) h END
  85. ELSE
  86. BEGIN{EXCLUSIVE}
  87. AWAIT( restart ); restart := FALSE;
  88. END
  89. END
  90. END
  91. END TimerActivity;
  92. Clock* = OBJECT
  93. BEGIN {ACTIVE}
  94. LOOP
  95. Unix.ThrSleep( 10 );
  96. IF ~timerStopped THEN timerActivity.UpdateTicks END
  97. END;
  98. END Clock;
  99. FinalizedCollection* = OBJECT (* base type for collection, extended in Kernel.Mod *)
  100. PROCEDURE RemoveAll*(obj: ANY); (** abstract *)
  101. BEGIN HALT(301) END RemoveAll;
  102. END FinalizedCollection;
  103. FinalizerNode* = POINTER TO RECORD (Heaps.FinalizerNode)
  104. c*: FinalizedCollection (* base type for collection containing object *)
  105. END;
  106. FinalizerCaller = OBJECT (* separate active object that calls finalizers *)
  107. VAR
  108. n: Heaps.FinalizerNode; start: BOOLEAN;
  109. PROCEDURE Activate;
  110. BEGIN {EXCLUSIVE}
  111. start := TRUE
  112. END Activate;
  113. BEGIN {ACTIVE, SAFE, PRIORITY(High)}
  114. start := FALSE;
  115. LOOP
  116. BEGIN {EXCLUSIVE} AWAIT( start ) END;
  117. start := FALSE;
  118. LOOP
  119. n := Heaps.GetFinalizer();
  120. IF n = NIL THEN EXIT END;
  121. IF n IS FinalizerNode THEN
  122. n(FinalizerNode).c.RemoveAll(n.objStrong) (* remove it if it is not removed yet *)
  123. END;
  124. IF n.finalizer # NIL THEN
  125. n.finalizer(n.objStrong) (* may acquire locks *)
  126. END;
  127. END;
  128. END
  129. END FinalizerCaller;
  130. Body = PROCEDURE ( self: ProtectedObject );
  131. Condition = PROCEDURE ( slink: ADDRESS ): BOOLEAN;
  132. Process* = OBJECT (Heaps.ProcessLink)
  133. VAR
  134. threadId- : Unix.Thread_t;
  135. nextProcess- : Process; (* next in list of all processes *)
  136. stackBottom - : ADDRESS;
  137. id- : LONGINT;
  138. body : Body;
  139. mode- : LONGINT;
  140. flags- : SET;
  141. priority- : LONGINT; (* only effective if Aos is running SUID root *)
  142. succ : Process; (* in ProcessQueue *)
  143. obj- : ProtectedObject; (* associated active object *)
  144. condition- : Condition; (* awaited process' condition *)
  145. condFP- : ADDRESS; (* awaited process' condition's context *)
  146. continue : Unix.Condition_t; (* gets signaled when condition yields true *)
  147. waitingOn- : ProtectedObject;
  148. procID- : LONGINT; (*! processor ID where running, not used in UnixAos *)
  149. state- : Machine.State;
  150. state0 : ARRAY 2048 OF CHAR; (* thread state at body start, used for restart after trap *)
  151. context: ANY; (* commands context *)
  152. PROCEDURE FindRoots*;
  153. VAR sp, bp, n, a0, a1, adr: ADDRESS; desc: Modules.ProcedureDescPointer; i: LONGINT; p {UNTRACED}: ANY;
  154. BEGIN
  155. IF mode # Terminated THEN
  156. IF SELF = CurrentProcess() THEN
  157. state.SP := Machine.CurrentSP( );
  158. state.BP := Machine.CurrentBP( );
  159. END;
  160. sp := state.SP; bp := state.BP;
  161. IF Heaps.GCType = Heaps.HeuristicStackInspectionGC THEN
  162. IF (bp < stackBottom) & (bp # 0) THEN
  163. S.GET( bp, n );
  164. IF ODD( n ) THEN (* procedure descriptor at bp *)
  165. IF n > 1024 THEN
  166. desc := S.VAL( Modules.ProcedureDescPointer, n-1 ); (* tracing !*)
  167. END;
  168. END;
  169. END;
  170. IF (stackBottom # 0) & (sp # 0) & (sp <= stackBottom) THEN
  171. Heaps.RegisterCandidates( sp, stackBottom - sp );
  172. END;
  173. ELSIF Heaps.GCType = Heaps.MetaDataForStackGC THEN
  174. IF bp < stackBottom THEN
  175. WHILE (bp # Heaps.NilVal) & (bp > 1024) & (bp < stackBottom) DO (* do not test for bp >= sp: could be wrong temporarily! *)
  176. S.GET( bp, n );
  177. IF ODD( n ) THEN (* procedure descriptor at bp *)
  178. IF n > 1024 THEN
  179. desc := S.VAL( Modules.ProcedureDescPointer, n-1 );
  180. IF desc # NIL THEN
  181. a0 := ADDRESSOF( desc.offsets );
  182. a1 := S.VAL( ADDRESS, desc.offsets );
  183. ASSERT( a0+SIZEOF( ADDRESS ) = a1, 54321 );
  184. FOR i := 0 TO LEN( desc.offsets ) - 1 DO
  185. adr := bp + desc.offsets[i]; (* pointer at offset *)
  186. S.GET( adr, p ); (* load pointer *)
  187. IF p # NIL THEN
  188. Heaps.Mark( p );
  189. END
  190. END
  191. END
  192. END;
  193. S.GET( bp + SIZEOF( ADDRESS ), bp );
  194. ELSE (* classical stack frame *)
  195. bp := n;
  196. END;
  197. END;
  198. ASSERT( (bp = stackBottom) OR (bp < 1024) , 12345 );
  199. END;
  200. END
  201. END;
  202. Heaps.Mark( nextProcess )
  203. END FindRoots;
  204. PROCEDURE Cancel;
  205. VAR pt, t: Process; kt: Unix.Thread_t;
  206. BEGIN
  207. IF SELF = CurrentProcess() THEN Exit
  208. ELSE
  209. Machine.Acquire( Machine.X11 ); (* let the thread to be killed first finish its last I/O, if any *)
  210. Unix.MtxLock( processList );
  211. pt := NIL; t := root; kt := 0;
  212. WHILE (t # NIL ) & (t # SELF) DO pt := t; t := t.nextProcess END;
  213. IF t = SELF THEN
  214. kt := threadId;
  215. IF pt = NIL THEN root := t.nextProcess ELSE pt.nextProcess := t.nextProcess END;
  216. END;
  217. Unix.MtxUnlock( processList );
  218. IF kt # 0 THEN Unix.ThrKill( kt ) END;
  219. Machine.Release( Machine.X11 );
  220. END
  221. END Cancel;
  222. PROCEDURE GetPriority( ): LONGINT;
  223. BEGIN
  224. RETURN Unix.ThrGetPriority( threadId )
  225. END GetPriority;
  226. PROCEDURE SetPriority( prio: LONGINT );
  227. VAR pr: LONGINT;
  228. BEGIN
  229. pr := max( Machine.prioLow, min( prio, Machine.prioHigh ) );
  230. Unix.ThrSetPriority( threadId, pr ); (* works only if SUID root *)
  231. priority := GetPriority( )
  232. END SetPriority;
  233. PROCEDURE & Initialize( obj: ProtectedObject; bodyProc: Body; prio: LONGINT; fl: SET; stacksize: LONGINT);
  234. BEGIN
  235. SELF.obj := obj; condition := NIL; continue := Unix.NewCond( );
  236. flags := fl;
  237. priority := prio;
  238. nextProcess := NIL;
  239. context := CurrentContext();
  240. IF root # NIL THEN
  241. newProcess := SELF;
  242. ASSERT( bodyProc # NIL );
  243. body := bodyProc;
  244. Unix.MtxLock( startProcess );
  245. threadId := Unix.ThrStart( BodyStarter, stacksize );
  246. Unix.CondWait( childrunning, startProcess );
  247. Unix.MtxUnlock( startProcess );
  248. RegisterFinalizer( SELF, FinalizeProcess );
  249. ELSE
  250. (* first process *)
  251. stackBottom := Glue.stackBottom;
  252. threadId := Unix.ThrThis( );
  253. id := 0; nextPID := 1;
  254. root := SELF;
  255. mode := Running;
  256. Unix.WriteKey( processPointer, SELF );
  257. END;
  258. END Initialize;
  259. END Process;
  260. GCStatusExt = OBJECT (Heaps.GCStatus)
  261. (* called from Heaps.InvokeGC, i.e. this is a hidden upcall. However, it is necessary to take the Machine.Objects
  262. lock here since writing the set of variables here must not be interrupted, i.e. atomic writing of the set of variables
  263. is absolutely necessary. They system may hang if the lock is not taken. *)
  264. PROCEDURE SetgcOngoing( value: BOOLEAN );
  265. VAR cur: Process;
  266. BEGIN (* serialize writers *)
  267. cur := CurrentProcess();
  268. IF value THEN
  269. Machine.Acquire( Machine.Objects );
  270. Machine.Acquire( Machine.Heaps );
  271. cur.state.SP := Machine.CurrentSP();
  272. cur.state.BP := Machine.CurrentBP();
  273. cur.state.PC := ADDRESSOF( GCLoop );
  274. SuspendActivities;
  275. Heaps.CollectGarbage( Modules.root );
  276. Machine.Release( Machine.Heaps );
  277. Machine.Release( Machine.Objects );
  278. ResumeActivities;
  279. finalizerCaller.Activate;
  280. END;
  281. END SetgcOngoing;
  282. END GCStatusExt;
  283. PROCEDURE BodyStarter;
  284. VAR p{UNTRACED}: Process; res: LONGINT; prevBP, sp: ADDRESS;
  285. BEGIN
  286. Unix.MtxLock( startProcess );
  287. p := newProcess; newProcess := NIL;
  288. Unix.WriteKey( processPointer, p );
  289. p.id := nextPID; INC( nextPID );
  290. p.stackBottom := Machine.CurrentBP( );
  291. S.GET( p.stackBottom, prevBP );
  292. S.PUT( prevBP, S.VAL( ADDRESS, 0 ) ); (* for terminating Reflection.StackTraceBack *)
  293. Unix.MtxLock( processList );
  294. p.nextProcess := root; root := p;
  295. Unix.MtxUnlock( processList );
  296. Unix.CondSignal( childrunning );
  297. Unix.MtxUnlock( startProcess );
  298. p.SetPriority( p.priority );
  299. IF Restart IN p.flags THEN
  300. (* store and restore stack pointer because it is saved on the stack during SYSVABI calls to ensure stack alignment *)
  301. sp := S.GetStackPointer ();
  302. res := Unix.sigsetjmp( ADDRESSOF( p.state0[0] ), 1 );
  303. S.SetStackPointer (sp);
  304. END;
  305. p.mode := Running;
  306. p.body( p.obj );
  307. p.mode := Terminated;
  308. Exit
  309. END BodyStarter;
  310. (*--------------------- create, lock, await, unlock -------------------------*)
  311. (* initialize the ObjectHeader, requires lockMutex temporarily *)
  312. PROCEDURE InitProtHeader( hdr: ObjectHeader);
  313. VAR lock: LockT;
  314. BEGIN
  315. (* we cannot hold the lockMute here because allocation can trigger the GC that requires the lock when activating the finalizers *)
  316. NEW(lock);
  317. Unix.MtxLock(lockMutex);
  318. IF hdr.lock = NIL THEN
  319. lock.mtx := Unix.NewMtx( ); lock.enter := Unix.NewCond( ); hdr.lockedBy := NIL;
  320. hdr.lock := lock;
  321. END;
  322. Unix.MtxUnlock(lockMutex);
  323. END InitProtHeader;
  324. PROCEDURE CreateProcess*( body: Body; priority: LONGINT; flags: SET; obj: ProtectedObject );
  325. VAR p: Process; hdr: ObjectHeader;
  326. BEGIN
  327. Unix.MtxLock( createProcess );
  328. S.GET( S.VAL( ADDRESS, obj ) + Heaps.HeapBlockOffset, hdr );
  329. InitProtHeader( hdr );
  330. IF priority = 0 THEN priority := Normal END;
  331. NEW( p, obj, body, priority, flags, stacksize ) ; (* execute BodyStarter as new (posix or solaris) thread *)
  332. Unix.MtxUnlock( createProcess );
  333. RegisterFinalizer( obj, FinalizeActiveObj )
  334. END CreateProcess;
  335. PROCEDURE Lock*( obj: ProtectedObject; exclusive: BOOLEAN );
  336. VAR hdr: ObjectHeader; p: Process; lock: LockT;
  337. BEGIN
  338. ASSERT( exclusive ); (* shared not implemented yet *)
  339. S.GET( S.VAL( ADDRESS, obj ) + Heaps.HeapBlockOffset, hdr );
  340. p := CurrentProcess();
  341. p.state.SP := Machine.CurrentSP( );
  342. p.state.BP := Machine.CurrentBP( );
  343. p.state.PC := Machine.CurrentPC( );
  344. p.mode := AwaitingLock;
  345. (*! we might want to replace the lock mutex by a lock free construct *)
  346. IF hdr.lock = NIL THEN InitProtHeader( hdr ) END;
  347. lock := S.VAL(LockT, hdr.lock);
  348. p.mode := AwaitingLock;
  349. Unix.MtxLock( lock.mtx );
  350. WHILE hdr.lockedBy # NIL DO
  351. (* wait until threads with complied AWAIT conditions have left the monitor *)
  352. Unix.CondWait( lock.enter, lock.mtx );
  353. END;
  354. p.mode := Running; hdr.lockedBy := p; p.waitingOn := NIL
  355. END Lock;
  356. PROCEDURE Await*( cond: Condition; slink: ADDRESS; obj: ProtectedObject; flags: SET );
  357. VAR hdr {UNTRACED}: ObjectHeader; p, c: Process; lock: LockT;
  358. BEGIN
  359. IF 1 IN flags THEN (* compiler did not generate IF *)
  360. IF cond( slink ) THEN (* condition already true *) RETURN END
  361. END;
  362. S.GET( S.VAL( ADDRESS, obj ) + Heaps.HeapBlockOffset, hdr ); c := NIL;
  363. lock := S.VAL(LockT, hdr.lock);
  364. IF hdr.awaitingCond.head # NIL THEN c := FindCondition( hdr.awaitingCond ) END;
  365. p := CurrentProcess();
  366. ASSERT( hdr.lockedBy = p, 2204 );
  367. p.succ := NIL; p.condition := cond; p.condFP := slink;
  368. p.waitingOn := obj; p.mode := AwaitingCond;
  369. Put( hdr.awaitingCond, p );
  370. hdr.lockedBy := c;
  371. IF c # NIL THEN Unix.CondSignal( c.continue ) ELSE Unix.CondSignal( lock.enter ) END;
  372. p.state.SP := Machine.CurrentSP( );
  373. p.state.BP := Machine.CurrentBP( );
  374. p.state.PC := Machine.CurrentPC( );
  375. Unix.CondWait( p.continue, lock.mtx );
  376. p.mode := Running; hdr.lockedBy := p; p.waitingOn := NIL
  377. END Await;
  378. PROCEDURE Unlock*( obj: ProtectedObject; dummy: BOOLEAN );
  379. VAR hdr: ObjectHeader; c: Process; lock: LockT;
  380. BEGIN
  381. S.GET( S.VAL( ADDRESS, obj ) + Heaps.HeapBlockOffset, hdr ); c := NIL;
  382. lock := S.VAL(LockT,hdr.lock);
  383. IF hdr.awaitingCond.head # NIL THEN c := FindCondition( hdr.awaitingCond ) END;
  384. hdr.lockedBy := c;
  385. IF c # NIL THEN Unix.CondSignal( c.continue ) ELSE Unix.CondSignal( lock.enter ) END;
  386. Unix.MtxUnlock( lock.mtx );
  387. END Unlock;
  388. PROCEDURE FindCondition( VAR q: ProcessQueue ): Process;
  389. VAR first, cand: Process;
  390. BEGIN
  391. Get( q, first );
  392. IF first.condition( first.condFP ) THEN RETURN first ELSE Put( q, first ) END;
  393. WHILE q.head # first DO
  394. Get( q, cand );
  395. IF cand.condition( cand.condFP ) THEN RETURN cand ELSE Put( q, cand ) END;
  396. END;
  397. RETURN NIL
  398. END FindCondition;
  399. PROCEDURE Get( VAR queue: ProcessQueue; VAR new: Process );
  400. VAR t: Process;
  401. BEGIN
  402. t := queue.head(Process);
  403. IF t # NIL THEN
  404. IF t = queue.tail THEN queue.head := NIL; queue.tail := NIL
  405. ELSE queue.head := t.succ; t.succ := NIL
  406. END
  407. END;
  408. new := t
  409. END Get;
  410. PROCEDURE Put( VAR queue: ProcessQueue; t: Process );
  411. BEGIN
  412. IF queue.head = NIL THEN queue.head := t ELSE queue.tail(Process).succ := t END;
  413. queue.tail := t
  414. END Put;
  415. (*-------------------------------------------------------------------------*)
  416. PROCEDURE Terminate*;
  417. BEGIN
  418. Exit
  419. END Terminate;
  420. PROCEDURE TerminateThis*( p: Process; unbreakable: BOOLEAN );
  421. BEGIN
  422. p.mode := Terminated;
  423. p.Cancel
  424. END TerminateThis;
  425. PROCEDURE SetPriority*( pri: LONGINT ); (* Set the current process' priority. *)
  426. VAR me: Process;
  427. BEGIN
  428. me := CurrentProcess();
  429. me.SetPriority( pri )
  430. END SetPriority;
  431. PROCEDURE Sleep*( ms: LONGINT );
  432. BEGIN
  433. Unix.ThrSleep( ms );
  434. END Sleep;
  435. PROCEDURE Yield*; (* Relinquish control. *)
  436. BEGIN
  437. Unix.ThrYield( );
  438. END Yield;
  439. (* Return current process. (DEPRECATED, use ActiveObject) *)
  440. PROCEDURE CurrentProcess*( ): Process;
  441. BEGIN
  442. RETURN S.VAL( Process, Unix.ReadKey( processPointer ) )
  443. END CurrentProcess;
  444. PROCEDURE CurrentContext*(): ANY;
  445. VAR p: Process;
  446. BEGIN
  447. p := CurrentProcess();
  448. IF p # NIL THEN RETURN p.context
  449. ELSE RETURN NIL
  450. END;
  451. END CurrentContext;
  452. PROCEDURE SetContext*(context: ANY);
  453. VAR p: Process;
  454. BEGIN
  455. p := CurrentProcess();
  456. IF p # NIL THEN p.context := context END;
  457. END SetContext;
  458. (* Return the active object currently executing. *)
  459. PROCEDURE ActiveObject*( ): ANY;
  460. VAR p: Process;
  461. BEGIN
  462. p := CurrentProcess();
  463. RETURN p.obj
  464. END ActiveObject;
  465. (* Return stack bottom of process. For compatibility WinAos/UnixAos/NativeAos *)
  466. PROCEDURE GetStackBottom*(p: Process): ADDRESS;
  467. BEGIN
  468. RETURN p.stackBottom
  469. END GetStackBottom;
  470. PROCEDURE GetProcessID*( ): LONGINT;
  471. VAR p: Process;
  472. BEGIN
  473. p := CurrentProcess();
  474. RETURN p.id;
  475. END GetProcessID;
  476. PROCEDURE GetCpuCycles*( process : Process; VAR cpuCycles: CpuCyclesArray; all: BOOLEAN );
  477. VAR i: LONGINT;
  478. BEGIN
  479. ASSERT( process # NIL );
  480. FOR i := 0 TO Machine.MaxCPU-1 DO cpuCycles[i] := 0 END;
  481. END GetCpuCycles;
  482. (*-----------------------------------------------------------------------*)
  483. PROCEDURE min( a, b: LONGINT ): LONGINT;
  484. BEGIN
  485. IF a <= b THEN RETURN a ELSE RETURN b END
  486. END min;
  487. PROCEDURE max( a, b: LONGINT ): LONGINT;
  488. BEGIN
  489. IF a >= b THEN RETURN a ELSE RETURN b END
  490. END max;
  491. PROCEDURE RegisterFinalizer( obj: ANY; fin: Heaps.Finalizer );
  492. VAR n: Heaps.FinalizerNode;
  493. BEGIN
  494. NEW( n ); n.finalizer := fin; Heaps.AddFinalizer( obj, n );
  495. END RegisterFinalizer;
  496. PROCEDURE FinalizeActiveObj( obj: ANY );
  497. VAR p: Process;
  498. BEGIN
  499. Unix.MtxLock( processList );
  500. p := root;
  501. WHILE (p # NIL) & (p.obj # obj) DO p := p.nextProcess END;
  502. Unix.MtxUnlock( processList );
  503. IF (p # NIL) & (p.obj = obj) THEN
  504. p.mode := Terminated;
  505. Unix.CondDestroy( p.continue ); p.continue := 0;
  506. FinalizeProtObject( obj );
  507. p.Cancel
  508. END;
  509. END FinalizeActiveObj;
  510. PROCEDURE FinalizeProtObject( obj: ANY );
  511. VAR hdr: ObjectHeader; lock: LockT;
  512. BEGIN
  513. S.GET( S.VAL( ADDRESS, obj ) + Heaps.HeapBlockOffset, hdr );
  514. IF hdr.lock # NIL THEN
  515. lock := S.VAL(LockT, hdr.lock);
  516. Unix.MtxDestroy( lock.mtx ); lock.mtx := 0
  517. END
  518. END FinalizeProtObject;
  519. PROCEDURE FinalizeProcess( obj: ANY );
  520. VAR p: Process;
  521. BEGIN
  522. p := obj(Process);
  523. IF p.continue # 0 THEN
  524. Unix.CondDestroy( p.continue ); p.continue := 0
  525. END
  526. END FinalizeProcess;
  527. (* Terminate calling thread. *)
  528. PROCEDURE Exit;
  529. VAR prev, p, me: Process;
  530. BEGIN
  531. me := CurrentProcess();
  532. me.mode := Terminated;
  533. Unix.MtxLock( processList );
  534. prev := NIL; p := root;
  535. WHILE (p # NIL ) & (p # me) DO prev := p; p := p.nextProcess END;
  536. IF p = me THEN
  537. IF prev = NIL THEN root := p.nextProcess ELSE prev.nextProcess := p.nextProcess END;
  538. END;
  539. Unix.MtxUnlock( processList );
  540. Unix.ThrExit( );
  541. END Exit;
  542. PROCEDURE ExitTrap*;
  543. VAR p: Process;
  544. BEGIN
  545. p := CurrentProcess();
  546. (* restart the object body if it was given the SAFE flag *)
  547. IF Restart IN p.flags THEN
  548. Unix.siglongjmp( ADDRESSOF( p.state0[0] ), 1 )
  549. END;
  550. Exit
  551. END ExitTrap;
  552. (*---------------------------- Timer --------------------------------*)
  553. PROCEDURE Remove( t: Timer ); (* remove timer from list of active timers *)
  554. VAR p, x: Timer;
  555. BEGIN
  556. Unix.MtxLock( timerListMutex );
  557. t.trigger := 0; t.handler := NIL;
  558. IF timers # NIL THEN
  559. IF t = timers THEN
  560. timers := t.next
  561. ELSE
  562. p := timers; x := p.next;
  563. WHILE (x # NIL) & (x # t) DO p := x; x := p.next END;
  564. IF x = t THEN p.next := t.next END
  565. END;
  566. t.next := NIL
  567. END;
  568. Unix.MtxUnlock( timerListMutex )
  569. END Remove;
  570. PROCEDURE Insert( t: Timer );
  571. VAR p, x: Timer;
  572. BEGIN
  573. Unix.MtxLock( timerListMutex );
  574. p := NIL; x := timers;
  575. WHILE (x # NIL) & (x.trigger < t.trigger) DO p := x; x := p.next END;
  576. t.next := x;
  577. IF p = NIL THEN timers := t ELSE p.next := t END;
  578. Unix.MtxUnlock( timerListMutex )
  579. END Insert;
  580. PROCEDURE SetTimeout*( t: Timer; h: EventHandler; ms: LONGINT );
  581. BEGIN
  582. ASSERT( ( t # NIL) & ( h # NIL) );
  583. Remove( t );
  584. IF ms < 1 THEN ms := 1 END;
  585. t.trigger := Machine.ticks + ms; t.handler := h;
  586. Insert( t );
  587. timerActivity.Restart
  588. END SetTimeout;
  589. PROCEDURE SetTimeoutAt*( t: Timer; h: EventHandler; ms: LONGINT );
  590. BEGIN
  591. ASSERT( (t # NIL) & (h # NIL) );
  592. Remove( t );
  593. t.trigger := ms; t.handler := h;
  594. Insert( t );
  595. timerActivity.Restart
  596. END SetTimeoutAt;
  597. PROCEDURE CancelTimeout*( t: Timer );
  598. BEGIN
  599. Remove( t )
  600. END CancelTimeout;
  601. (*-------------------- Garbage Collection ------------------------------------*)
  602. PROCEDURE GetContext( ctxt: Unix.Ucontext );
  603. VAR t: Process; context: Unix.McontextDesc;
  604. BEGIN
  605. t := CurrentProcess( );
  606. Unix.CopyContext( ctxt.mc, context );
  607. t.state.PC := context.r_pc;
  608. t.state.BP := context.r_bp;
  609. t.state.SP := context.r_sp
  610. END GetContext;
  611. (* called by WMProcessInfo to obtain the current state of a running process *)
  612. PROCEDURE UpdateProcessState*( p: Process );
  613. BEGIN
  614. IF p.threadId = Unix.ThrThis( ) THEN
  615. p.state.PC := Machine.CurrentPC( );
  616. p.state.BP := Machine.CurrentBP( );
  617. p.state.SP := Machine.CurrentSP( )
  618. ELSE
  619. IF p.mode = Running THEN
  620. timerStopped := TRUE;
  621. Unix.ThrSleep( 3 );
  622. IF p.mode = Running THEN (* still running *)
  623. Unix.ThrSuspend( p.threadId, TRUE );
  624. Unix.ThrResume( p.threadId );
  625. END;
  626. timerStopped := FALSE
  627. END
  628. END
  629. END UpdateProcessState;
  630. PROCEDURE SuspendActivities;
  631. VAR t, me: Process;
  632. BEGIN
  633. me := CurrentProcess();
  634. t := root;
  635. WHILE t # NIL DO
  636. IF t # me THEN
  637. Unix.ThrSuspend( t.threadId, t.mode = Running );
  638. END;
  639. t := t.nextProcess
  640. END;
  641. END SuspendActivities;
  642. PROCEDURE ResumeActivities;
  643. VAR t, me: Process;
  644. BEGIN
  645. me := CurrentProcess();
  646. t := root;
  647. WHILE t # NIL DO
  648. IF (t # me) THEN
  649. Unix.ThrResume( t.threadId );
  650. END;
  651. t := t.nextProcess
  652. END;
  653. END ResumeActivities;
  654. PROCEDURE GCLoop*; (* Timer and GC activity *)
  655. BEGIN
  656. (*
  657. If using BootConsole keep main thread running.
  658. If the thread is blocked by a mutex (MainThreadSleep)
  659. the signals SIGHUP, SIGINT and SIGQUIT don't branch into SignalHandler
  660. but terminate A2 (at least in Solaris).
  661. *)
  662. SystemA2Up := TRUE;
  663. LOOP Sleep( 100 ) END
  664. END GCLoop;
  665. PROCEDURE CurrentProcessTime*(): HUGEINT;
  666. BEGIN
  667. RETURN Machine.GetTimer()
  668. END CurrentProcessTime;
  669. PROCEDURE TimerFrequency*(): HUGEINT;
  670. BEGIN
  671. RETURN Machine.mhz * 1000000
  672. END TimerFrequency;
  673. PROCEDURE LeaveA2;
  674. VAR cur: Process; bp, n: ADDRESS;
  675. BEGIN
  676. IF clock = NIL THEN RETURN END;
  677. cur := CurrentProcess();
  678. IF cur # NIL THEN
  679. bp := Machine.CurrentBP();
  680. S.GET( bp, n );
  681. IF ODD( n ) THEN S.GET( bp + SIZEOF( ADDRESS ), bp ) ELSE bp := n END;
  682. cur.state.BP := bp;
  683. END;
  684. END LeaveA2;
  685. PROCEDURE ReenterA2;
  686. VAR cur: Process;
  687. BEGIN
  688. IF clock = NIL THEN RETURN END;
  689. cur := CurrentProcess();
  690. IF cur # NIL THEN
  691. cur.state.BP := 0;
  692. END;
  693. END ReenterA2;
  694. (*----------------------------- initialization ----------------------------------*)
  695. PROCEDURE StartTimerActivity;
  696. BEGIN
  697. timerListMutex := Unix.NewMtx( ); timers := NIL;
  698. NEW( timerActivity );
  699. END StartTimerActivity;
  700. PROCEDURE GetStacksize;
  701. VAR str: ARRAY 32 OF CHAR; i: LONGINT;
  702. BEGIN
  703. Machine.GetConfig( "StackSize", str );
  704. IF str = "" THEN stacksize := DefaultStacksize
  705. ELSE
  706. i := 0; stacksize := Machine.StrToInt( i, str );
  707. stacksize := stacksize * 1024;
  708. END;
  709. IF Glue.debug # {} THEN
  710. Trace.String( "Stacksize of active objects = " );
  711. Trace.Int( stacksize DIV 1024, 0 ); Trace.StringLn( "K" )
  712. END;
  713. END GetStacksize;
  714. PROCEDURE Convert;
  715. VAR p: Process;
  716. BEGIN
  717. (* make current thread the first active object *)
  718. mainthread := Unix.ThrThis();
  719. NEW( p, NIL, NIL, 0, {}, 0 );
  720. END Convert;
  721. PROCEDURE Init;
  722. BEGIN
  723. Unix.suspendHandler := GetContext;
  724. createProcess := Unix.NewMtx( ); processList := Unix.NewMtx( );
  725. startProcess := Unix.NewMtx( ); childrunning := Unix.NewCond( );
  726. lockMutex := Unix.NewMtx( );
  727. processPointer := Unix.NewKey( );
  728. GetStacksize;
  729. Convert;
  730. NEW( clock ); StartTimerActivity; timerStopped := FALSE;
  731. NEW( finalizerCaller );
  732. Heaps.gcStatus := GCStatusFactory()
  733. END Init;
  734. TYPE
  735. MainThread = OBJECT
  736. VAR exit: BOOLEAN;
  737. PROCEDURE & Init;
  738. BEGIN
  739. exit := FALSE;
  740. END Init;
  741. PROCEDURE Await();
  742. BEGIN {EXCLUSIVE}
  743. AWAIT( exit );
  744. END Await;
  745. END MainThread;
  746. VAR main: MainThread;
  747. PROCEDURE MainThreadSleep;
  748. BEGIN
  749. NEW( main );
  750. main.Await( );
  751. Unix.exit( 0 );
  752. END MainThreadSleep;
  753. PROCEDURE {FINAL} Final;
  754. BEGIN
  755. MainThreadSleep;
  756. END Final;
  757. PROCEDURE GCStatusFactory(): Heaps.GCStatus;
  758. VAR gcStatusExt : GCStatusExt;
  759. BEGIN
  760. ASSERT( Heaps.gcStatus = NIL );
  761. NEW( gcStatusExt );
  762. RETURN gcStatusExt
  763. END GCStatusFactory;
  764. VAR
  765. (* for compatibility and later extension *)
  766. TraceProcessHook*: PROCEDURE (prcoess: Process; pc, bp: ADDRESS; stacklow, stackhigh: ADDRESS);
  767. BEGIN
  768. TraceProcessHook := NIL;
  769. SystemA2Up := FALSE;
  770. Init;
  771. END Objects.