DEADSOFTWARE

fix use SYSTEM.PTR in signatures
[cpc.git] / src / native / posix / generic / System / Mod / Kernel.cp
1 MODULE Kernel;
3 IMPORT S := SYSTEM, stdlib := PosixCstdlib, stdio := PosixCstdio,
4 time := PosixCtime, wctype := PosixCwctype, sysmman := PosixCsys_mman,
5 dlfcn := PosixCdlfcn, types := PosixCtypes, fcntl := PosixCfcntl,
6 unistd := PosixCunistd, signal := PosixCsignal, setjmp := PosixCsetjmp;
8 (* init fpu? *)
9 (* add signal blocking to avoid race conditions in Try/Trap/TrapHandler *)
10 (* add BeepHook for Beep *)
11 (* implement Call using libffi *)
13 CONST
14 nameLen* = 256;
16 littleEndian* = TRUE;
17 timeResolution* = 1000; (* ticks per second *)
19 processor* = 1; (* generic c *)
21 objType* = "ocf"; (* file types *)
22 symType* = "osf";
23 docType* = "odc";
25 (* loader constants *)
26 done* = 0;
27 fileNotFound* = 1;
28 syntaxError* = 2;
29 objNotFound* = 3;
30 illegalFPrint* = 4;
31 cyclicImport* = 5;
32 noMem* = 6;
33 commNotFound* = 7;
34 commSyntaxError* = 8;
35 moduleNotFound* = 9;
37 any = 1000000;
39 CX = 1;
40 SP = 4; (* register number of stack pointer *)
41 FP = 5; (* register number of frame pointer *)
42 ML = 3; (* register which holds the module list at program start *)
44 strictStackSweep = FALSE;
45 N = 128 DIV 16; (* free lists *)
47 (* kernel flags in module desc *)
48 init = 16; dyn = 17; dll = 24; iptrs = 30;
50 (* meta interface consts *)
51 mConst = 1; mTyp = 2; mVar = 3; mProc = 4; mField = 5;
53 TYPE
54 Name* = ARRAY nameLen OF CHAR;
55 Utf8Name* = ARRAY nameLen OF SHORTCHAR;
56 Command* = PROCEDURE;
58 Module* = POINTER TO RECORD [untagged]
59 next-: Module;
60 opts-: SET; (* 0..15: compiler opts, 16..31: kernel flags *)
61 refcnt-: INTEGER; (* <0: module invalidated *)
62 compTime-, loadTime-: ARRAY 6 OF SHORTINT;
63 ext-: INTEGER; (* currently not used *)
64 term-: Command; (* terminator *)
65 nofimps-, nofptrs-: INTEGER;
66 csize-, dsize-, rsize-: INTEGER;
67 code-, data-, refs-: INTEGER;
68 procBase-, varBase-: INTEGER; (* meta base addresses *)
69 names-: POINTER TO ARRAY [untagged] OF SHORTCHAR; (* names[0] = 0X *)
70 ptrs-: POINTER TO ARRAY [untagged] OF INTEGER;
71 imports-: POINTER TO ARRAY [untagged] OF Module;
72 export-: Directory; (* exported objects (name sorted) *)
73 name-: Utf8Name
74 END;
76 Type* = POINTER TO RECORD [untagged]
77 (* record: ptr to method n at offset - 4 * (n+1) *)
78 size-: INTEGER; (* record: size, array: #elem, dyn array: 0, proc: sigfp *)
79 mod-: Module;
80 id-: INTEGER; (* name idx * 256 + lev * 16 + attr * 4 + form *)
81 base-: ARRAY 16 OF Type; (* signature if form = ProcTyp *)
82 fields-: Directory; (* new fields (declaration order) *)
83 ptroffs-: ARRAY any OF INTEGER (* array of any length *)
84 END;
86 Object* = POINTER TO ObjDesc;
88 ObjDesc* = RECORD [untagged]
89 fprint-: INTEGER;
90 offs-: INTEGER; (* pvfprint for record types *)
91 id-: INTEGER; (* name idx * 256 + vis * 16 + mode *)
92 struct-: Type (* id of basic type or pointer to typedesc/signature *)
93 END;
95 Directory* = POINTER TO RECORD [untagged]
96 num-: INTEGER; (* number of entries *)
97 obj-: ARRAY any OF ObjDesc (* array of any length *)
98 END;
100 Signature* = POINTER TO RECORD [untagged]
101 retStruct-: Type; (* id of basic type or pointer to typedesc or 0 *)
102 num-: INTEGER; (* number of parameters *)
103 par-: ARRAY any OF RECORD [untagged] (* parameters *)
104 id-: INTEGER; (* name idx * 256 + kind *)
105 struct-: Type (* id of basic type or pointer to typedesc *)
106 END
107 END;
109 Handler* = PROCEDURE;
111 Reducer* = POINTER TO ABSTRACT RECORD
112 next: Reducer
113 END;
115 Identifier* = ABSTRACT RECORD
116 typ*: INTEGER;
117 obj-: ANYPTR
118 END;
120 TrapCleaner* = POINTER TO ABSTRACT RECORD
121 next: TrapCleaner
122 END;
124 TryHandler* = PROCEDURE (a, b, c: INTEGER);
126 (* meta extension suport *)
128 ItemExt* = POINTER TO ABSTRACT RECORD END;
130 ItemAttr* = RECORD
131 obj*, vis*, typ*, adr*: INTEGER;
132 mod*: Module;
133 desc*: Type;
134 ptr*: S.PTR;
135 ext*: ItemExt
136 END;
138 Hook* = POINTER TO ABSTRACT RECORD END;
140 LoaderHook* = POINTER TO ABSTRACT RECORD (Hook)
141 res*: INTEGER;
142 importing*, imported*, object*: ARRAY 256 OF CHAR
143 END;
145 Block = POINTER TO RECORD [untagged]
146 tag: Type;
147 last: INTEGER; (* arrays: last element *)
148 actual: INTEGER; (* arrays: used during mark phase *)
149 first: INTEGER (* arrays: first element *)
150 END;
152 FreeBlock = POINTER TO FreeDesc;
154 FreeDesc = RECORD [untagged]
155 tag: Type; (* f.tag = ADR(f.size) *)
156 size: INTEGER;
157 next: FreeBlock
158 END;
160 Cluster = POINTER TO RECORD [untagged]
161 size: INTEGER; (* total size *)
162 next: Cluster;
163 max: INTEGER (* exe: reserved size, dll: original address *)
164 (* start of first block *)
165 END;
167 FList = POINTER TO RECORD
168 next: FList;
169 blk: Block;
170 iptr, aiptr: BOOLEAN
171 END;
173 CList = POINTER TO RECORD
174 next: CList;
175 do: Command;
176 trapped: BOOLEAN
177 END;
180 PtrType = RECORD v: S.PTR END; (* used for array of pointer *)
181 Char8Type = RECORD v: SHORTCHAR END;
182 Char16Type = RECORD v: CHAR END;
183 Int8Type = RECORD v: BYTE END;
184 Int16Type = RECORD v: SHORTINT END;
185 Int32Type = RECORD v: INTEGER END;
186 Int64Type = RECORD v: LONGINT END;
187 BoolType = RECORD v: BOOLEAN END;
188 SetType = RECORD v: SET END;
189 Real32Type = RECORD v: SHORTREAL END;
190 Real64Type = RECORD v: REAL END;
191 ProcType = RECORD v: PROCEDURE END;
192 UPtrType = RECORD v: INTEGER END;
193 StrPtr = POINTER TO ARRAY [untagged] OF SHORTCHAR;
195 ArrStrPtr = POINTER TO ARRAY [untagged] OF StrPtr;
197 ADDRESS* = types.Pvoid;
199 VAR
200 baseStack: INTEGER;
201 root: Cluster;
202 modList-: Module;
203 trapCount-: INTEGER;
204 err-, pc-, sp-, fp-, stack-, val-: INTEGER;
206 isTry: BOOLEAN;
207 startEnv: setjmp.sigjmp_buf;
208 tryEnv: setjmp.jmp_buf;
210 argc-: INTEGER;
211 argv-: ArrStrPtr;
212 pagesize: unistd.long;
214 free: ARRAY N OF FreeBlock; (* free list *)
215 sentinelBlock: FreeDesc;
216 sentinel: FreeBlock;
217 candidates: ARRAY 1024 OF INTEGER;
218 nofcand: INTEGER;
219 allocated: INTEGER; (* bytes allocated on BlackBox heap *)
220 total: INTEGER; (* current total size of BlackBox heap *)
221 used: INTEGER; (* bytes allocated on system heap *)
222 finalizers: FList;
223 hotFinalizers: FList;
224 cleaners: CList;
225 reducers: Reducer;
226 trapStack: TrapCleaner;
227 actual: Module; (* valid during module initialization *)
229 trapViewer, trapChecker: Handler;
230 trapped, guarded, secondTrap: BOOLEAN;
231 interrupted: BOOLEAN;
232 static, inDll, terminating: BOOLEAN;
233 restart: Command;
235 loader: LoaderHook;
236 loadres: INTEGER;
238 wouldFinalize: BOOLEAN;
240 watcher*: PROCEDURE (event: INTEGER); (* for debugging *)
242 intTrap*: BOOLEAN;
244 PROCEDURE Erase (adr, words: INTEGER);
245 BEGIN
246 ASSERT(words >= 0, 20);
247 WHILE words > 0 DO
248 S.PUT(adr, 0);
249 INC(adr, 4);
250 DEC(words)
251 END
252 END Erase;
255 PROCEDURE (VAR id: Identifier) Identified* (): BOOLEAN, NEW, ABSTRACT;
256 PROCEDURE (r: Reducer) Reduce* (full: BOOLEAN), NEW, ABSTRACT;
257 PROCEDURE (c: TrapCleaner) Cleanup*, NEW, EMPTY;
259 (* meta extension suport *)
261 PROCEDURE (e: ItemExt) Lookup* (name: ARRAY OF CHAR; VAR i: ANYREC), NEW, ABSTRACT;
262 PROCEDURE (e: ItemExt) Index* (index: INTEGER; VAR elem: ANYREC), NEW, ABSTRACT;
263 PROCEDURE (e: ItemExt) Deref* (VAR ref: ANYREC), NEW, ABSTRACT;
265 PROCEDURE (e: ItemExt) Valid* (): BOOLEAN, NEW, ABSTRACT;
266 PROCEDURE (e: ItemExt) Size* (): INTEGER, NEW, ABSTRACT;
267 PROCEDURE (e: ItemExt) BaseTyp* (): INTEGER, NEW, ABSTRACT;
268 PROCEDURE (e: ItemExt) Len* (): INTEGER, NEW, ABSTRACT;
270 PROCEDURE (e: ItemExt) Call* (OUT ok: BOOLEAN), NEW, ABSTRACT;
271 PROCEDURE (e: ItemExt) BoolVal* (): BOOLEAN, NEW, ABSTRACT;
272 PROCEDURE (e: ItemExt) PutBoolVal* (x: BOOLEAN), NEW, ABSTRACT;
273 PROCEDURE (e: ItemExt) CharVal* (): CHAR, NEW, ABSTRACT;
274 PROCEDURE (e: ItemExt) PutCharVal* (x: CHAR), NEW, ABSTRACT;
275 PROCEDURE (e: ItemExt) IntVal* (): INTEGER, NEW, ABSTRACT;
276 PROCEDURE (e: ItemExt) PutIntVal* (x: INTEGER), NEW, ABSTRACT;
277 PROCEDURE (e: ItemExt) LongVal* (): LONGINT, NEW, ABSTRACT;
278 PROCEDURE (e: ItemExt) PutLongVal* (x: LONGINT), NEW, ABSTRACT;
279 PROCEDURE (e: ItemExt) RealVal* (): REAL, NEW, ABSTRACT;
280 PROCEDURE (e: ItemExt) PutRealVal* (x: REAL), NEW, ABSTRACT;
281 PROCEDURE (e: ItemExt) SetVal* (): SET, NEW, ABSTRACT;
282 PROCEDURE (e: ItemExt) PutSetVal* (x: SET), NEW, ABSTRACT;
283 PROCEDURE (e: ItemExt) PtrVal* (): ANYPTR, NEW, ABSTRACT;
284 PROCEDURE (e: ItemExt) PutPtrVal* (x: ANYPTR), NEW, ABSTRACT;
285 PROCEDURE (e: ItemExt) GetSStringVal* (OUT x: ARRAY OF SHORTCHAR;
286 OUT ok: BOOLEAN), NEW, ABSTRACT;
287 PROCEDURE (e: ItemExt) PutSStringVal* (IN x: ARRAY OF SHORTCHAR;
288 OUT ok: BOOLEAN), NEW, ABSTRACT;
289 PROCEDURE (e: ItemExt) GetStringVal* (OUT x: ARRAY OF CHAR; OUT ok: BOOLEAN), NEW, ABSTRACT;
290 PROCEDURE (e: ItemExt) PutStringVal* (IN x: ARRAY OF CHAR; OUT ok: BOOLEAN), NEW, ABSTRACT;
292 (* -------------------- miscellaneous tools -------------------- *)
294 PROCEDURE IsUpper* (ch: CHAR): BOOLEAN;
295 BEGIN
296 RETURN wctype.iswupper(ORD(ch)) # 0
297 END IsUpper;
299 PROCEDURE Upper* (ch: CHAR): CHAR;
300 BEGIN
301 RETURN CHR(wctype.towupper(ORD(ch)))
302 END Upper;
304 PROCEDURE IsLower* (ch: CHAR): BOOLEAN;
305 BEGIN
306 RETURN wctype.iswlower(ORD(ch)) # 0
307 END IsLower;
309 PROCEDURE Lower* (ch: CHAR): CHAR;
310 BEGIN
311 RETURN CHR(wctype.towlower(ORD(ch)))
312 END Lower;
314 PROCEDURE IsAlpha* (ch: CHAR): BOOLEAN;
315 BEGIN
316 RETURN wctype.iswalpha(ORD(ch)) # 0
317 END IsAlpha;
319 PROCEDURE Utf8ToString* (IN in: ARRAY OF SHORTCHAR; OUT out: ARRAY OF CHAR; OUT res: INTEGER);
320 VAR i, j, val, max: INTEGER; ch: SHORTCHAR;
322 PROCEDURE FormatError();
323 BEGIN out := in$; res := 2 (*format error*)
324 END FormatError;
326 BEGIN
327 ch := in[0]; i := 1; j := 0; max := LEN(out) - 1;
328 WHILE (ch # 0X) & (j < max) DO
329 IF ch < 80X THEN
330 out[j] := ch; INC(j)
331 ELSIF ch < 0E0X THEN
332 val := ORD(ch) - 192;
333 IF val < 0 THEN FormatError; RETURN END ;
334 ch := in[i]; INC(i); val := val * 64 + ORD(ch) - 128;
335 IF (ch < 80X) OR (ch >= 0E0X) THEN FormatError; RETURN END ;
336 out[j] := CHR(val); INC(j)
337 ELSIF ch < 0F0X THEN
338 val := ORD(ch) - 224;
339 ch := in[i]; INC(i); val := val * 64 + ORD(ch) - 128;
340 IF (ch < 80X) OR (ch >= 0E0X) THEN FormatError; RETURN END ;
341 ch := in[i]; INC(i); val := val * 64 + ORD(ch) - 128;
342 IF (ch < 80X) OR (ch >= 0E0X) THEN FormatError; RETURN END ;
343 out[j] := CHR(val); INC(j)
344 ELSE
345 FormatError; RETURN
346 END ;
347 ch := in[i]; INC(i)
348 END;
349 out[j] := 0X;
350 IF ch = 0X THEN res := 0 (*ok*) ELSE res := 1 (*truncated*) END
351 END Utf8ToString;
353 PROCEDURE StringToUtf8* (IN in: ARRAY OF CHAR; OUT out: ARRAY OF SHORTCHAR; OUT res: INTEGER);
354 VAR i, j, val, max: INTEGER;
355 BEGIN
356 i := 0; j := 0; max := LEN(out) - 3;
357 WHILE (in[i] # 0X) & (j < max) DO
358 val := ORD(in[i]); INC(i);
359 IF val < 128 THEN
360 out[j] := SHORT(CHR(val)); INC(j)
361 ELSIF val < 2048 THEN
362 out[j] := SHORT(CHR(val DIV 64 + 192)); INC(j);
363 out[j] := SHORT(CHR(val MOD 64 + 128)); INC(j)
364 ELSE
365 out[j] := SHORT(CHR(val DIV 4096 + 224)); INC(j);
366 out[j] := SHORT(CHR(val DIV 64 MOD 64 + 128)); INC(j);
367 out[j] := SHORT(CHR(val MOD 64 + 128)); INC(j)
368 END;
369 END;
370 out[j] := 0X;
371 IF in[i] = 0X THEN res := 0 (*ok*) ELSE res := 1 (*truncated*) END
372 END StringToUtf8;
374 PROCEDURE SplitName* (name: ARRAY OF CHAR; VAR head, tail: ARRAY OF CHAR);
375 (* portable *)
376 VAR i, j: INTEGER; ch, lch: CHAR;
377 BEGIN
378 i := 0; ch := name[0];
379 IF ch # 0X THEN
380 REPEAT
381 head[i] := ch; lch := ch; INC(i); ch := name[i]
382 UNTIL (ch = 0X) OR (ch = ".") OR IsUpper(ch) & ~IsUpper(lch);
383 IF ch = "." THEN i := 0; ch := name[0] END;
384 head[i] := 0X; j := 0;
385 WHILE ch # 0X DO tail[j] := ch; INC(i); INC(j); ch := name[i] END;
386 tail[j] := 0X;
387 IF tail = "" THEN tail := head$; head := "" END
388 ELSE head := ""; tail := ""
389 END
390 END SplitName;
392 PROCEDURE MakeFileName* (VAR name: ARRAY OF CHAR; type: ARRAY OF CHAR);
393 VAR i, j: INTEGER; ext: ARRAY 8 OF CHAR; ch: CHAR;
394 BEGIN
395 i := 0;
396 WHILE (name[i] # 0X) & (name[i] # ".") DO INC(i) END;
397 IF name[i] = "." THEN
398 IF name[i + 1] = 0X THEN name[i] := 0X END
399 ELSE
400 IF type = "" THEN ext := docType ELSE ext := type$ END;
401 IF i < LEN(name) - LEN(ext$) - 1 THEN
402 name[i] := "."; INC(i); j := 0; ch := ext[0];
403 WHILE ch # 0X DO
404 name[i] := Lower(ch); INC(i); INC(j); ch := ext[j]
405 END;
406 name[i] := 0X
407 END
408 END
409 END MakeFileName;
411 PROCEDURE Time* (): LONGINT;
412 VAR res: time.int; tp: time.struct_timespec;
413 BEGIN
414 ASSERT(timeResolution >= 1);
415 ASSERT(timeResolution <= 1000000000);
416 res := time.clock_gettime(time.CLOCK_MONOTONIC, tp);
417 ASSERT(res = 0, 100);
418 RETURN tp.tv_sec * LONG(timeResolution) + tp.tv_nsec DIV LONG(1000000000 DIV timeResolution)
419 END Time;
421 PROCEDURE Beep*;
422 (* !!! *)
423 END Beep;
425 PROCEDURE SearchProcVar* (var: INTEGER; VAR m: Module; VAR adr: INTEGER);
426 BEGIN
427 adr := var; m := NIL;
428 IF var # 0 THEN
429 m := modList;
430 WHILE (m # NIL) & ((var < m.code) OR (var >= m.code + m.csize)) DO m := m.next END;
431 IF m # NIL THEN DEC(adr, m.code) END
432 END
433 END SearchProcVar;
435 (* -------------------- system memory management --------------------- *)
437 PROCEDURE AllocMem (size: sysmman.size_t; VAR max: sysmman.size_t): ADDRESS;
438 VAR fd, flags, res: fcntl.int; ptr: ADDRESS;
439 BEGIN
440 max := (size + pagesize - 1) DIV pagesize * pagesize;
441 fd := fcntl.open("/dev/zero", fcntl.O_RDWR, 0);
442 IF fd # -1 THEN
443 flags := sysmman.PROT_READ + sysmman.PROT_WRITE;
444 ptr := sysmman.mmap(0, max, flags, sysmman.MAP_PRIVATE, fd, 0);
445 IF ptr = sysmman.MAP_FAILED THEN ptr := 0 END;
446 res := unistd.close(fd);
447 ASSERT(res = 0, 100)
448 ELSE
449 ptr := 0
450 END;
451 RETURN ptr
452 END AllocMem;
454 PROCEDURE FreeMem (adr: ADDRESS; size: sysmman.size_t);
455 VAR res: types.int;
456 BEGIN
457 size := (size + pagesize - 1) DIV pagesize * pagesize;
458 res := sysmman.munmap(adr, size);
459 ASSERT(res = 0, 100)
460 END FreeMem;
462 PROCEDURE AllocHeapMem (size: INTEGER; VAR c: Cluster);
463 CONST N = 65536; (* cluster size for dll *)
464 VAR adr, allocated, newsize: INTEGER;
465 BEGIN
466 INC(size, 16);
467 ASSERT(size > 0, 100); adr := 0;
468 IF size < N THEN
469 adr := AllocMem(N, newsize);
470 allocated := newsize
471 END;
472 IF adr = 0 THEN
473 adr := AllocMem(size, newsize);
474 allocated := newsize
475 END;
476 IF adr = 0 THEN c := NIL
477 ELSE
478 c := S.VAL(Cluster, (adr + 15) DIV 16 * 16); c.max := adr;
479 c.size := allocated - (S.VAL(INTEGER, c) - adr);
480 INC(used, c.size); INC(total, c.size)
481 END;
482 ASSERT((adr = 0) OR (adr MOD 16 = 0) & (c.size >= size), 101);
483 (* post: (c = NIL) OR (c MOD 16 = 0) & (c.size >= size) *)
484 END AllocHeapMem;
486 PROCEDURE FreeHeapMem (c: Cluster);
487 BEGIN
488 DEC(used, c.size); DEC(total, c.size);
489 FreeMem(S.VAL(ADDRESS, c.max), c.size)
490 END FreeHeapMem;
492 PROCEDURE HeapFull (size: INTEGER): BOOLEAN;
493 BEGIN
494 RETURN TRUE
495 END HeapFull;
497 PROCEDURE AllocModMem* (descSize, modSize: INTEGER; VAR descAdr, modAdr: INTEGER);
498 BEGIN
499 descAdr := 0; modAdr := 0;
500 descAdr := AllocMem(descSize, descSize);
501 IF descAdr # 0 THEN
502 modAdr := AllocMem(modSize, modSize);
503 IF modAdr = 0 THEN
504 FreeMem(descAdr, descSize)
505 ELSE
506 INC(used, descSize + modSize)
507 END
508 END
509 END AllocModMem;
511 PROCEDURE DeallocModMem* (descSize, modSize, descAdr, modAdr: INTEGER);
512 BEGIN
513 FreeMem(descAdr, descSize);
514 FreeMem(modAdr, modSize);
515 DEC(used, descSize + modSize)
516 END DeallocModMem;
518 PROCEDURE InvalModMem (modSize, modAdr: INTEGER);
519 BEGIN
520 FreeMem(modAdr, modSize)
521 END InvalModMem;
523 PROCEDURE TryRead (from, to, c: INTEGER);
524 VAR i: INTEGER; x: BYTE;
525 BEGIN
526 IF from <= to THEN
527 FOR i := from TO to DO
528 S.GET(i, x)
529 END
530 ELSE
531 FOR i := to TO from BY -1 DO
532 S.GET(i, x)
533 END
534 END;
535 END TryRead;
537 PROCEDURE^ Try* (h: TryHandler; a, b, c: INTEGER);
539 PROCEDURE IsReadable* (from, to: INTEGER): BOOLEAN;
540 VAR i: INTEGER;
541 BEGIN
542 i := trapCount;
543 Try(TryRead, from, to, 0);
544 RETURN trapCount = i
545 END IsReadable;
547 (* --------------------- NEW implementation (portable) -------------------- *)
549 PROCEDURE^ NewBlock (size: INTEGER): Block;
551 PROCEDURE NewRec* (typ: INTEGER): INTEGER; (* implementation of NEW(ptr) *)
552 VAR size, adr: INTEGER; b: Block; tag: Type; l: FList;
553 BEGIN
554 IF ~ODD(typ) THEN
555 tag := S.VAL(Type, typ);
556 b := NewBlock(tag.size);
557 IF b # NIL THEN
558 b.tag := tag;
559 S.GET(typ - 4, size);
560 IF size # 0 THEN (* record uses a finalizer *)
561 l := S.VAL(FList, S.ADR(b.last)); (* anchor new object! *)
562 l := S.VAL(FList, NewRec(S.TYP(FList))); (* NEW(l) *)
563 l.blk := b; l.next := finalizers; finalizers := l
564 END;
565 adr := S.ADR(b.last)
566 ELSE
567 adr := 0
568 END
569 ELSE
570 HALT(100) (* COM interface pointers not supported *)
571 END;
572 RETURN adr
573 END NewRec;
575 PROCEDURE NewArr* (eltyp, nofelem, nofdim: INTEGER): INTEGER; (* impl. of NEW(ptr, dim0, dim1, ...) *)
576 VAR b: Block; size, headSize: INTEGER; t: Type;
577 BEGIN
578 CASE eltyp OF
579 | -1: HALT(100) (* COM interface pointers not supported *)
580 | 0: eltyp := S.ADR(PtrType)
581 | 1: eltyp := S.ADR(Char8Type)
582 | 2: eltyp := S.ADR(Int16Type)
583 | 3: eltyp := S.ADR(Int8Type)
584 | 4: eltyp := S.ADR(Int32Type)
585 | 5: eltyp := S.ADR(BoolType)
586 | 6: eltyp := S.ADR(SetType)
587 | 7: eltyp := S.ADR(Real32Type)
588 | 8: eltyp := S.ADR(Real64Type)
589 | 9: eltyp := S.ADR(Char16Type)
590 | 10: eltyp := S.ADR(Int64Type)
591 | 11: eltyp := S.ADR(ProcType)
592 | 12: HALT(101) (* COM interface pointers not supported *)
593 ELSE
594 ASSERT(~ODD(eltyp), 102) (* COM interface pointers not supported *)
595 END;
596 t := S.VAL(Type, eltyp);
597 headSize := 4 * nofdim + 12;
598 size := headSize + nofelem * t.size;
599 b := NewBlock(size);
600 IF b # NIL THEN
601 b.tag := S.VAL(Type, eltyp + 2); (* tag + array mark *)
602 b.last := S.ADR(b.last) + size - t.size; (* pointer to last elem *)
603 b.first := S.ADR(b.last) + headSize; (* pointer to first elem *)
604 RETURN S.ADR(b.last)
605 ELSE
606 RETURN 0
607 END;
608 END NewArr;
610 (* -------------------- handler installation (portable) --------------------- *)
612 PROCEDURE ThisFinObj* (VAR id: Identifier): ANYPTR;
613 VAR l: FList;
614 BEGIN
615 ASSERT(id.typ # 0, 100);
616 l := finalizers;
617 WHILE l # NIL DO
618 IF S.VAL(INTEGER, l.blk.tag) = id.typ THEN
619 id.obj := S.VAL(ANYPTR, S.ADR(l.blk.last));
620 IF id.Identified() THEN RETURN id.obj END
621 END;
622 l := l.next
623 END;
624 RETURN NIL
625 END ThisFinObj;
627 PROCEDURE InstallReducer* (r: Reducer);
628 BEGIN
629 r.next := reducers; reducers := r
630 END InstallReducer;
632 PROCEDURE InstallTrapViewer* (h: Handler);
633 BEGIN
634 trapViewer := h
635 END InstallTrapViewer;
637 PROCEDURE InstallTrapChecker* (h: Handler);
638 BEGIN
639 trapChecker := h
640 END InstallTrapChecker;
642 PROCEDURE PushTrapCleaner* (c: TrapCleaner);
643 VAR t: TrapCleaner;
644 BEGIN
645 t := trapStack; WHILE (t # NIL) & (t # c) DO t := t.next END;
646 ASSERT(t = NIL, 20);
647 c.next := trapStack; trapStack := c
648 END PushTrapCleaner;
650 PROCEDURE PopTrapCleaner* (c: TrapCleaner);
651 VAR t: TrapCleaner;
652 BEGIN
653 t := NIL;
654 WHILE (trapStack # NIL) & (t # c) DO
655 t := trapStack; trapStack := trapStack.next
656 END
657 END PopTrapCleaner;
659 PROCEDURE InstallCleaner* (p: Command);
660 VAR c: CList;
661 BEGIN
662 c := S.VAL(CList, NewRec(S.TYP(CList))); (* NEW(c) *)
663 c.do := p; c.trapped := FALSE; c.next := cleaners; cleaners := c
664 END InstallCleaner;
666 PROCEDURE RemoveCleaner* (p: Command);
667 VAR c0, c: CList;
668 BEGIN
669 c := cleaners; c0 := NIL;
670 WHILE (c # NIL) & (c.do # p) DO c0 := c; c := c.next END;
671 IF c # NIL THEN
672 IF c0 = NIL THEN cleaners := cleaners.next ELSE c0.next := c.next END
673 END
674 END RemoveCleaner;
676 PROCEDURE Cleanup*;
677 VAR c, c0: CList;
678 BEGIN
679 c := cleaners; c0 := NIL;
680 WHILE c # NIL DO
681 IF ~c.trapped THEN
682 c.trapped := TRUE; c.do; c.trapped := FALSE; c0 := c
683 ELSE
684 IF c0 = NIL THEN cleaners := cleaners.next
685 ELSE c0.next := c.next
686 END
687 END;
688 c := c.next
689 END
690 END Cleanup;
692 (* -------------------- meta information (portable) --------------------- *)
694 PROCEDURE (h: LoaderHook) ThisMod* (IN name: ARRAY OF CHAR): Module, NEW, ABSTRACT;
696 PROCEDURE SetLoaderHook*(h: LoaderHook);
697 BEGIN
698 loader := h
699 END SetLoaderHook;
701 PROCEDURE InitModule (mod: Module); (* initialize linked modules *)
702 VAR body: Command;
703 BEGIN
704 IF ~(dyn IN mod.opts) & (mod.next # NIL) & ~(init IN mod.next.opts) THEN InitModule(mod.next) END;
705 IF ~(init IN mod.opts) THEN
706 body := S.VAL(Command, mod.code);
707 INCL(mod.opts, init);
708 actual := mod;
709 body(); actual := NIL
710 END
711 END InitModule;
713 PROCEDURE ThisLoadedMod* (IN name: ARRAY OF CHAR): Module; (* loaded modules only *)
714 VAR m: Module; res: INTEGER; n: Utf8Name;
715 BEGIN
716 StringToUtf8(name, n, res); ASSERT(res = 0);
717 loadres := done;
718 m := modList;
719 WHILE (m # NIL) & ((m.name # n) OR (m.refcnt < 0)) DO m := m.next END;
720 IF (m # NIL) & ~(init IN m.opts) THEN InitModule(m) END;
721 IF m = NIL THEN loadres := moduleNotFound END;
722 RETURN m
723 END ThisLoadedMod;
725 PROCEDURE ThisMod* (IN name: ARRAY OF CHAR): Module;
726 BEGIN
727 IF loader # NIL THEN
728 loader.res := done;
729 RETURN loader.ThisMod(name)
730 ELSE
731 RETURN ThisLoadedMod(name)
732 END
733 END ThisMod;
735 PROCEDURE LoadMod* (IN name: ARRAY OF CHAR);
736 VAR m: Module;
737 BEGIN
738 m := ThisMod(name)
739 END LoadMod;
741 PROCEDURE GetLoaderResult* (OUT res: INTEGER; OUT importing, imported, object: ARRAY OF CHAR);
742 BEGIN
743 IF loader # NIL THEN
744 res := loader.res;
745 importing := loader.importing$;
746 imported := loader.imported$;
747 object := loader.object$
748 ELSE
749 res := loadres;
750 importing := "";
751 imported := "";
752 object := ""
753 END
754 END GetLoaderResult;
756 PROCEDURE ThisObject* (mod: Module; IN name: ARRAY OF CHAR): Object;
757 VAR l, r, m, res: INTEGER; p: StrPtr; n: Utf8Name;
758 BEGIN
759 StringToUtf8(name, n, res); ASSERT(res = 0);
760 l := 0; r := mod.export.num;
761 WHILE l < r DO (* binary search *)
762 m := (l + r) DIV 2;
763 p := S.VAL(StrPtr, S.ADR(mod.names[mod.export.obj[m].id DIV 256]));
764 IF p^ = n THEN RETURN S.VAL(Object, S.ADR(mod.export.obj[m])) END;
765 IF p^ < n THEN l := m + 1 ELSE r := m END
766 END;
767 RETURN NIL
768 END ThisObject;
770 PROCEDURE ThisDesc* (mod: Module; fprint: INTEGER): Object;
771 VAR i, n: INTEGER;
772 BEGIN
773 i := 0; n := mod.export.num;
774 WHILE (i < n) & (mod.export.obj[i].id DIV 256 = 0) DO
775 IF mod.export.obj[i].offs = fprint THEN RETURN S.VAL(Object, S.ADR(mod.export.obj[i])) END;
776 INC(i)
777 END;
778 RETURN NIL
779 END ThisDesc;
781 PROCEDURE ThisField* (rec: Type; IN name: ARRAY OF CHAR): Object;
782 VAR n, res: INTEGER; p: StrPtr; obj: Object; m: Module; nn: Utf8Name;
783 BEGIN
784 StringToUtf8(name, nn, res); ASSERT(res = 0);
785 m := rec.mod;
786 obj := S.VAL(Object, S.ADR(rec.fields.obj[0])); n := rec.fields.num;
787 WHILE n > 0 DO
788 p := S.VAL(StrPtr, S.ADR(m.names[obj.id DIV 256]));
789 IF p^ = nn THEN RETURN obj END;
790 DEC(n); INC(S.VAL(INTEGER, obj), 16)
791 END;
792 RETURN NIL
793 END ThisField;
795 PROCEDURE ThisCommand* (mod: Module; IN name: ARRAY OF CHAR): Command;
796 VAR x: Object; sig: Signature;
797 BEGIN
798 x := ThisObject(mod, name);
799 IF (x # NIL) & (x.id MOD 16 = mProc) THEN
800 sig := S.VAL(Signature, x.struct);
801 IF (sig.retStruct = NIL) & (sig.num = 0) THEN RETURN S.VAL(Command, mod.procBase + x.offs) END
802 END;
803 RETURN NIL
804 END ThisCommand;
806 PROCEDURE ThisType* (mod: Module; IN name: ARRAY OF CHAR): Type;
807 VAR x: Object;
808 BEGIN
809 x := ThisObject(mod, name);
810 IF (x # NIL) & (x.id MOD 16 = mTyp) & (S.VAL(INTEGER, x.struct) DIV 256 # 0) THEN
811 RETURN x.struct
812 ELSE
813 RETURN NIL
814 END
815 END ThisType;
817 PROCEDURE TypeOf* (IN rec: ANYREC): Type;
818 BEGIN
819 RETURN S.VAL(Type, S.TYP(rec))
820 END TypeOf;
822 PROCEDURE LevelOf* (t: Type): SHORTINT;
823 BEGIN
824 RETURN SHORT(t.id DIV 16 MOD 16)
825 END LevelOf;
827 PROCEDURE NewObj* (VAR o: S.PTR; t: Type);
828 VAR i: INTEGER;
829 BEGIN
830 IF t.size = -1 THEN o := NIL
831 ELSE
832 i := 0; WHILE t.ptroffs[i] >= 0 DO INC(i) END;
833 IF t.ptroffs[i+1] >= 0 THEN INC(S.VAL(INTEGER, t)) END; (* with interface pointers *)
834 o := S.VAL(S.PTR, NewRec(S.VAL(INTEGER, t))) (* generic NEW *)
835 END
836 END NewObj;
838 PROCEDURE GetModName* (mod: Module; OUT name: Name);
839 VAR res: INTEGER;
840 BEGIN
841 Utf8ToString(mod.name, name, res); ASSERT(res = 0)
842 END GetModName;
844 PROCEDURE GetObjName* (mod: Module; obj: Object; OUT name: Name);
845 VAR p: StrPtr; res: INTEGER;
846 BEGIN
847 p := S.VAL(StrPtr, S.ADR(mod.names[obj.id DIV 256]));
848 Utf8ToString(p^$, name, res); ASSERT(res = 0)
849 END GetObjName;
851 PROCEDURE GetTypeName* (t: Type; OUT name: Name);
852 VAR p: StrPtr; res: INTEGER;
853 BEGIN
854 p := S.VAL(StrPtr, S.ADR(t.mod.names[t.id DIV 256]));
855 Utf8ToString(p^$, name, res); ASSERT(res = 0)
856 END GetTypeName;
858 PROCEDURE RegisterMod* (mod: Module);
859 VAR i: INTEGER; epoch: time.time_t; tm: time.struct_tm; ptm: time.Pstruct_tm;
860 BEGIN
861 mod.next := modList; modList := mod; mod.refcnt := 0; INCL(mod.opts, dyn); i := 0;
862 WHILE i < mod.nofimps DO
863 IF mod.imports[i] # NIL THEN INC(mod.imports[i].refcnt) END;
864 INC(i)
865 END;
866 epoch := time.time(NIL);
867 ptm := time.localtime_r(epoch, tm);
868 IF ptm # NIL THEN
869 mod.loadTime[0] := SHORT(tm.tm_year + 1900);
870 mod.loadTime[1] := SHORT(tm.tm_mon + 1);
871 mod.loadTime[2] := SHORT(tm.tm_mday);
872 mod.loadTime[3] := SHORT(tm.tm_hour);
873 mod.loadTime[4] := SHORT(tm.tm_min);
874 mod.loadTime[5] := SHORT(tm.tm_sec)
875 ELSE
876 mod.loadTime[0] := 0;
877 mod.loadTime[1] := 0;
878 mod.loadTime[2] := 0;
879 mod.loadTime[3] := 0;
880 mod.loadTime[4] := 0;
881 mod.loadTime[5] := 0
882 END;
883 IF ~(init IN mod.opts) THEN InitModule(mod) END
884 END RegisterMod;
886 PROCEDURE^ Collect*;
888 PROCEDURE UnloadMod* (mod: Module);
889 VAR i: INTEGER; t: Command;
890 BEGIN
891 IF mod.refcnt = 0 THEN
892 t := mod.term; mod.term := NIL;
893 IF t # NIL THEN t() END; (* terminate module *)
894 i := 0;
895 WHILE i < mod.nofptrs DO (* release global pointers *)
896 S.PUT(mod.varBase + mod.ptrs[i], 0); INC(i)
897 END;
898 Collect; (* call finalizers *)
899 i := 0;
900 WHILE i < mod.nofimps DO (* release imported modules *)
901 IF mod.imports[i] # NIL THEN DEC(mod.imports[i].refcnt) END;
902 INC(i)
903 END;
904 mod.refcnt := -1;
905 IF dyn IN mod.opts THEN (* release memory *)
906 InvalModMem(mod.data + mod.dsize - mod.refs, mod.refs)
907 END
908 END
909 END UnloadMod;
911 (* -------------------- dynamic procedure call --------------------- *)
913 PROCEDURE Call* (adr: INTEGER; sig: Signature; IN par: ARRAY OF INTEGER; n: INTEGER): LONGINT;
914 BEGIN
915 HALT(126); (* !!! *)
916 RETURN 0
917 END Call;
919 (* -------------------- reference information (portable) --------------------- *)
921 PROCEDURE RefCh (VAR ref: INTEGER; OUT ch: SHORTCHAR);
922 BEGIN
923 S.GET(ref, ch); INC(ref)
924 END RefCh;
926 PROCEDURE RefNum (VAR ref: INTEGER; OUT x: INTEGER);
927 VAR s, n: INTEGER; ch: SHORTCHAR;
928 BEGIN
929 s := 0; n := 0; RefCh(ref, ch);
930 WHILE ORD(ch) >= 128 DO INC(n, ASH(ORD(ch) - 128, s) ); INC(s, 7); RefCh(ref, ch) END;
931 x := n + ASH(ORD(ch) MOD 64 - ORD(ch) DIV 64 * 64, s)
932 END RefNum;
934 PROCEDURE RefName (VAR ref: INTEGER; OUT n: Utf8Name);
935 VAR i: INTEGER; ch: SHORTCHAR;
936 BEGIN
937 i := 0; RefCh(ref, ch);
938 WHILE ch # 0X DO n[i] := ch; INC(i); RefCh(ref, ch) END;
939 n[i] := 0X
940 END RefName;
942 PROCEDURE GetRefProc* (VAR ref: INTEGER; OUT adr: INTEGER; OUT name: Utf8Name);
943 VAR ch: SHORTCHAR;
944 BEGIN
945 S.GET(ref, ch);
946 WHILE ch >= 0FDX DO (* skip variables *)
947 INC(ref); RefCh(ref, ch);
948 IF ch = 10X THEN INC(ref, 4) END;
949 RefNum(ref, adr); RefName(ref, name); S.GET(ref, ch)
950 END;
951 WHILE (ch > 0X) & (ch < 0FCX) DO (* skip source refs *)
952 INC(ref); RefNum(ref, adr); S.GET(ref, ch)
953 END;
954 IF ch = 0FCX THEN INC(ref); RefNum(ref, adr); RefName(ref, name)
955 ELSE adr := 0
956 END
957 END GetRefProc;
959 PROCEDURE GetRefVar* (VAR ref: INTEGER; OUT mode, form: SHORTCHAR; OUT desc: Type; OUT adr: INTEGER; OUT name: Utf8Name);
960 BEGIN
961 S.GET(ref, mode); desc := NIL;
962 IF mode >= 0FDX THEN
963 mode := SHORT(CHR(ORD(mode) - 0FCH));
964 INC(ref); RefCh(ref, form);
965 IF form = 10X THEN
966 S.GET(ref, desc); INC(ref, 4); form := SHORT(CHR(16 + desc.id MOD 4))
967 END;
968 RefNum(ref, adr); RefName(ref, name)
969 ELSE
970 mode := 0X; form := 0X; adr := 0
971 END
972 END GetRefVar;
974 PROCEDURE SourcePos* (mod: Module; codePos: INTEGER): INTEGER;
975 VAR ref, pos, ad, d: INTEGER; ch: SHORTCHAR; name: Utf8Name;
976 BEGIN
977 IF mod # NIL THEN (* mf, 12.02.04 *)
978 ref := mod.refs; pos := 0; ad := 0; S.GET(ref, ch);
979 WHILE ch # 0X DO
980 WHILE (ch > 0X) & (ch < 0FCX) DO (* srcref: {dAdr,dPos} *)
981 INC(ad, ORD(ch)); INC(ref); RefNum(ref, d);
982 IF ad > codePos THEN RETURN pos END;
983 INC(pos, d); S.GET(ref, ch)
984 END;
985 IF ch = 0FCX THEN (* proc: 0FCX,Adr,Name *)
986 INC(ref); RefNum(ref, d); RefName(ref, name); S.GET(ref, ch);
987 IF (d > codePos) & (pos > 0) THEN RETURN pos END
988 END;
989 WHILE ch >= 0FDX DO (* skip variables: Mode, Form, adr, Name *)
990 INC(ref); RefCh(ref, ch);
991 IF ch = 10X THEN INC(ref, 4) END;
992 RefNum(ref, d); RefName(ref, name); S.GET(ref, ch)
993 END
994 END;
995 END;
996 RETURN -1
997 END SourcePos;
999 PROCEDURE LoadDll* (IN name: ARRAY OF CHAR; VAR ok: BOOLEAN);
1000 VAR h: ADDRESS; file: Utf8Name; res: INTEGER;
1001 BEGIN
1002 StringToUtf8(name, file, res);
1003 IF res = 0 THEN
1004 h := dlfcn.dlopen(file, dlfcn.RTLD_LAZY + dlfcn.RTLD_GLOBAL);
1005 ok := h # 0
1006 ELSE
1007 ok := FALSE
1008 END
1009 END LoadDll;
1011 PROCEDURE ThisDllObj* (mode, fprint: INTEGER; IN dll, name: ARRAY OF CHAR): INTEGER;
1012 VAR h, p: ADDRESS; file, sym: Utf8Name; res: INTEGER; err: dlfcn.int;
1013 BEGIN
1014 StringToUtf8(dll, file, res);
1015 IF res = 0 THEN
1016 h := dlfcn.dlopen(file, dlfcn.RTLD_LAZY + dlfcn.RTLD_GLOBAL);
1017 IF h # 0 THEN
1018 StringToUtf8(name, sym, res);
1019 IF res = 0 THEN
1020 p := dlfcn.dlsym(h, sym)
1021 ELSE
1022 p := 0
1023 END;
1024 err := dlfcn.dlclose(h);
1025 ASSERT(err = 0, 100)
1026 ELSE
1027 p := 0
1028 END
1029 ELSE
1030 p := 0
1031 END;
1032 RETURN p
1033 END ThisDllObj;
1035 (* -------------------- garbage collector (portable) --------------------- *)
1037 PROCEDURE Mark (this: Block);
1038 VAR father, son: Block; tag: Type; flag, offset, actual: INTEGER;
1039 BEGIN
1040 IF ~ODD(S.VAL(INTEGER, this.tag)) THEN
1041 father := NIL;
1042 LOOP
1043 INC(S.VAL(INTEGER, this.tag));
1044 flag := S.VAL(INTEGER, this.tag) MOD 4;
1045 tag := S.VAL(Type, S.VAL(INTEGER, this.tag) - flag);
1046 IF flag >= 2 THEN actual := this.first; this.actual := actual
1047 ELSE actual := S.ADR(this.last)
1048 END;
1049 LOOP
1050 offset := tag.ptroffs[0];
1051 IF offset < 0 THEN
1052 INC(S.VAL(INTEGER, tag), offset + 4); (* restore tag *)
1053 IF (flag >= 2) & (actual < this.last) & (offset < -4) THEN (* next array element *)
1054 INC(actual, tag.size); this.actual := actual
1055 ELSE (* up *)
1056 this.tag := S.VAL(Type, S.VAL(INTEGER, tag) + flag);
1057 IF father = NIL THEN RETURN END;
1058 son := this; this := father;
1059 flag := S.VAL(INTEGER, this.tag) MOD 4;
1060 tag := S.VAL(Type, S.VAL(INTEGER, this.tag) - flag);
1061 offset := tag.ptroffs[0];
1062 IF flag >= 2 THEN actual := this.actual ELSE actual := S.ADR(this.last) END;
1063 S.GET(actual + offset, father); S.PUT(actual + offset, S.ADR(son.last));
1064 INC(S.VAL(INTEGER, tag), 4)
1065 END
1066 ELSE
1067 S.GET(actual + offset, son);
1068 IF son # NIL THEN
1069 DEC(S.VAL(INTEGER, son), 4);
1070 IF ~ODD(S.VAL(INTEGER, son.tag)) THEN (* down *)
1071 this.tag := S.VAL(Type, S.VAL(INTEGER, tag) + flag);
1072 S.PUT(actual + offset, father); father := this; this := son;
1073 EXIT
1074 END
1075 END;
1076 INC(S.VAL(INTEGER, tag), 4)
1077 END
1078 END
1079 END
1080 END
1081 END Mark;
1083 PROCEDURE MarkGlobals;
1084 VAR m: Module; i, p: INTEGER;
1085 BEGIN
1086 m := modList;
1087 WHILE m # NIL DO
1088 IF m.refcnt >= 0 THEN
1089 i := 0;
1090 WHILE i < m.nofptrs DO
1091 S.GET(m.varBase + m.ptrs[i], p); INC(i);
1092 IF p # 0 THEN Mark(S.VAL(Block, p - 4)) END
1093 END
1094 END;
1095 m := m.next
1096 END
1097 END MarkGlobals;
1099 PROCEDURE Next (b: Block): Block; (* next block in same cluster *)
1100 VAR size: INTEGER;
1101 BEGIN
1102 S.GET(S.VAL(INTEGER, b.tag) DIV 4 * 4, size);
1103 IF ODD(S.VAL(INTEGER, b.tag) DIV 2) THEN INC(size, b.last - S.ADR(b.last)) END;
1104 RETURN S.VAL(Block, S.VAL(INTEGER, b) + (size + 19) DIV 16 * 16)
1105 END Next;
1107 PROCEDURE CheckCandidates;
1108 (* pre: nofcand > 0 *)
1109 VAR i, j, h, p, end: INTEGER; c: Cluster; blk, next: Block;
1110 BEGIN
1111 (* sort candidates (shellsort) *)
1112 h := 1; REPEAT h := h*3 + 1 UNTIL h > nofcand;
1113 REPEAT h := h DIV 3; i := h;
1114 WHILE i < nofcand DO p := candidates[i]; j := i;
1115 WHILE (j >= h) & (candidates[j-h] > p) DO
1116 candidates[j] := candidates[j-h]; j := j-h
1117 END;
1118 candidates[j] := p; INC(i)
1119 END
1120 UNTIL h = 1;
1121 (* sweep *)
1122 c := root; i := 0;
1123 WHILE c # NIL DO
1124 blk := S.VAL(Block, S.VAL(INTEGER, c) + 12);
1125 end := S.VAL(INTEGER, blk) + (c.size - 12) DIV 16 * 16;
1126 WHILE candidates[i] < S.VAL(INTEGER, blk) DO
1127 INC(i);
1128 IF i = nofcand THEN RETURN END
1129 END;
1130 WHILE S.VAL(INTEGER, blk) < end DO
1131 next := Next(blk);
1132 IF candidates[i] < S.VAL(INTEGER, next) THEN
1133 IF (S.VAL(INTEGER, blk.tag) # S.ADR(blk.last)) (* not a free block *)
1134 & (~strictStackSweep OR (candidates[i] = S.ADR(blk.last))) THEN
1135 Mark(blk)
1136 END;
1137 REPEAT
1138 INC(i);
1139 IF i = nofcand THEN RETURN END
1140 UNTIL candidates[i] >= S.VAL(INTEGER, next)
1141 END;
1142 IF (S.VAL(INTEGER, blk.tag) MOD 4 = 0) & (S.VAL(INTEGER, blk.tag) # S.ADR(blk.last))
1143 & (blk.tag.base[0] = NIL) & (blk.actual > 0) THEN (* referenced interface record *)
1144 Mark(blk)
1145 END;
1146 blk := next
1147 END;
1148 c := c.next
1149 END
1150 END CheckCandidates;
1152 PROCEDURE MarkLocals;
1153 VAR sp, p, min, max: INTEGER; c: Cluster;
1154 BEGIN
1155 sp := S.ADR(sp); nofcand := 0; c := root;
1156 WHILE c.next # NIL DO c := c.next END;
1157 min := S.VAL(INTEGER, root); max := S.VAL(INTEGER, c) + c.size;
1158 WHILE sp < baseStack DO
1159 S.GET(sp, p);
1160 IF (p > min) & (p < max) & (~strictStackSweep OR (p MOD 16 = 0)) THEN
1161 candidates[nofcand] := p; INC(nofcand);
1162 IF nofcand = LEN(candidates) - 1 THEN CheckCandidates; nofcand := 0 END
1163 END;
1164 INC(sp, 4)
1165 END;
1166 candidates[nofcand] := max; INC(nofcand); (* ensure complete scan for interface mark*)
1167 IF nofcand > 0 THEN CheckCandidates END
1168 END MarkLocals;
1170 PROCEDURE MarkFinObj;
1171 VAR f: FList;
1172 BEGIN
1173 wouldFinalize := FALSE;
1174 f := finalizers;
1175 WHILE f # NIL DO
1176 IF ~ODD(S.VAL(INTEGER, f.blk.tag)) THEN wouldFinalize := TRUE END;
1177 Mark(f.blk);
1178 f := f.next
1179 END;
1180 f := hotFinalizers;
1181 WHILE f # NIL DO IF ~ODD(S.VAL(INTEGER, f.blk.tag)) THEN wouldFinalize := TRUE END;
1182 Mark(f.blk);
1183 f := f.next
1184 END
1185 END MarkFinObj;
1187 PROCEDURE CheckFinalizers;
1188 VAR f, g, h, k: FList;
1189 BEGIN
1190 f := finalizers; g := NIL;
1191 IF hotFinalizers = NIL THEN k := NIL
1192 ELSE
1193 k := hotFinalizers;
1194 WHILE k.next # NIL DO k := k.next END
1195 END;
1196 WHILE f # NIL DO
1197 h := f; f := f.next;
1198 IF ~ODD(S.VAL(INTEGER, h.blk.tag)) THEN
1199 IF g = NIL THEN finalizers := f ELSE g.next := f END;
1200 IF k = NIL THEN hotFinalizers := h ELSE k.next := h END;
1201 k := h; h.next := NIL
1202 ELSE g := h
1203 END
1204 END;
1205 h := hotFinalizers;
1206 WHILE h # NIL DO Mark(h.blk); h := h.next END
1207 END CheckFinalizers;
1209 PROCEDURE ExecFinalizer (a, b, c: INTEGER);
1210 VAR f: FList; fin: PROCEDURE(this: ANYPTR);
1211 BEGIN
1212 f := S.VAL(FList, a);
1213 S.GET(S.VAL(INTEGER, f.blk.tag) - 4, fin); (* method 0 *)
1214 IF (fin # NIL) & (f.blk.tag.mod.refcnt >= 0) THEN fin(S.VAL(ANYPTR, S.ADR(f.blk.last))) END;
1215 END ExecFinalizer;
1217 PROCEDURE^ Try* (h: TryHandler; a, b, c: INTEGER); (* COMPILER DEPENDENT *)
1219 PROCEDURE CallFinalizers;
1220 VAR f: FList;
1221 BEGIN
1222 WHILE hotFinalizers # NIL DO
1223 f := hotFinalizers; hotFinalizers := hotFinalizers.next;
1224 Try(ExecFinalizer, S.VAL(INTEGER, f), 0, 0)
1225 END;
1226 wouldFinalize := FALSE
1227 END CallFinalizers;
1229 PROCEDURE Insert (blk: FreeBlock; size: INTEGER); (* insert block in free list *)
1230 VAR i: INTEGER;
1231 BEGIN
1232 blk.size := size - 4; blk.tag := S.VAL(Type, S.ADR(blk.size));
1233 i := MIN(N - 1, (blk.size DIV 16));
1234 blk.next := free[i]; free[i] := blk
1235 END Insert;
1237 PROCEDURE Sweep (dealloc: BOOLEAN);
1238 VAR cluster, last, c: Cluster; blk, next: Block; fblk, b, t: FreeBlock; end, i: INTEGER;
1239 BEGIN
1240 cluster := root; last := NIL; allocated := 0;
1241 i := N;
1242 REPEAT DEC(i); free[i] := sentinel UNTIL i = 0;
1243 WHILE cluster # NIL DO
1244 blk := S.VAL(Block, S.VAL(INTEGER, cluster) + 12);
1245 end := S.VAL(INTEGER, blk) + (cluster.size - 12) DIV 16 * 16;
1246 fblk := NIL;
1247 WHILE S.VAL(INTEGER, blk) < end DO
1248 next := Next(blk);
1249 IF ODD(S.VAL(INTEGER, blk.tag)) THEN
1250 IF fblk # NIL THEN
1251 Insert(fblk, S.VAL(INTEGER, blk) - S.VAL(INTEGER, fblk));
1252 fblk := NIL
1253 END;
1254 DEC(S.VAL(INTEGER, blk.tag)); (* unmark *)
1255 INC(allocated, S.VAL(INTEGER, next) - S.VAL(INTEGER, blk))
1256 ELSIF fblk = NIL THEN
1257 fblk := S.VAL(FreeBlock, blk)
1258 END;
1259 blk := next
1260 END;
1261 IF dealloc & (S.VAL(INTEGER, fblk) = S.VAL(INTEGER, cluster) + 12) THEN (* deallocate cluster *)
1262 c := cluster; cluster := cluster.next;
1263 IF last = NIL THEN root := cluster ELSE last.next := cluster END;
1264 FreeHeapMem(c)
1265 ELSE
1266 IF fblk # NIL THEN Insert(fblk, end - S.VAL(INTEGER, fblk)) END;
1267 last := cluster; cluster := cluster.next
1268 END
1269 END;
1270 (* reverse free list *)
1271 i := N;
1272 REPEAT
1273 DEC(i);
1274 b := free[i]; fblk := sentinel;
1275 WHILE b # sentinel DO t := b; b := t.next; t.next := fblk; fblk := t END;
1276 free[i] := fblk
1277 UNTIL i = 0
1278 END Sweep;
1280 PROCEDURE Collect*;
1281 BEGIN
1282 IF root # NIL THEN
1283 CallFinalizers; (* trap cleanup *)
1284 MarkGlobals;
1285 MarkLocals;
1286 CheckFinalizers;
1287 Sweep(TRUE);
1288 CallFinalizers
1289 END
1290 END Collect;
1292 PROCEDURE FastCollect*;
1293 BEGIN
1294 IF root # NIL THEN
1295 MarkGlobals;
1296 MarkLocals;
1297 MarkFinObj;
1298 Sweep(FALSE)
1299 END
1300 END FastCollect;
1302 PROCEDURE WouldFinalize* (): BOOLEAN;
1303 BEGIN
1304 RETURN wouldFinalize
1305 END WouldFinalize;
1307 (* --------------------- memory allocation (portable) -------------------- *)
1309 PROCEDURE OldBlock (size: INTEGER): FreeBlock; (* size MOD 16 = 0 *)
1310 VAR b, l: FreeBlock; s, i: INTEGER;
1311 BEGIN
1312 s := size - 4;
1313 i := MIN(N - 1, s DIV 16);
1314 WHILE (i # N - 1) & (free[i] = sentinel) DO INC(i) END;
1315 b := free[i]; l := NIL;
1316 WHILE b.size < s DO l := b; b := b.next END;
1317 IF b # sentinel THEN
1318 IF l = NIL THEN free[i] := b.next ELSE l.next := b.next END
1319 ELSE b := NIL
1320 END;
1321 RETURN b
1322 END OldBlock;
1324 PROCEDURE LastBlock (limit: INTEGER): FreeBlock; (* size MOD 16 = 0 *)
1325 VAR b, l: FreeBlock; s, i: INTEGER;
1326 BEGIN
1327 s := limit - 4;
1328 i := 0;
1329 REPEAT
1330 b := free[i]; l := NIL;
1331 WHILE (b # sentinel) & (S.VAL(INTEGER, b) + b.size # s) DO l := b; b := b.next END;
1332 IF b # sentinel THEN
1333 IF l = NIL THEN free[i] := b.next ELSE l.next := b.next END
1334 ELSE b := NIL
1335 END;
1336 INC(i)
1337 UNTIL (b # NIL) OR (i = N);
1338 RETURN b
1339 END LastBlock;
1341 PROCEDURE NewBlock (size: INTEGER): Block;
1342 VAR tsize, a, s: INTEGER; b: FreeBlock; new, c: Cluster; r: Reducer;
1343 BEGIN
1344 ASSERT(size >= 0, 20);
1345 IF size > MAX(INTEGER) - 19 THEN RETURN NIL END;
1346 tsize := (size + 19) DIV 16 * 16;
1347 b := OldBlock(tsize); (* 1) search for free block *)
1348 IF b = NIL THEN
1349 FastCollect; b := OldBlock(tsize); (* 2) collect *)
1350 IF b = NIL THEN
1351 Collect; b := OldBlock(tsize); (* 2a) fully collect *)
1352 END;
1353 IF b = NIL THEN
1354 AllocHeapMem(tsize + 12, new); (* 3) allocate new cluster *)
1355 IF new # NIL THEN
1356 IF (root = NIL) OR (S.VAL(INTEGER, new) < S.VAL(INTEGER, root)) THEN
1357 new.next := root; root := new
1358 ELSE
1359 c := root;
1360 WHILE (c.next # NIL) & (S.VAL(INTEGER, new) > S.VAL(INTEGER, c.next)) DO c := c.next END;
1361 new.next := c.next; c.next := new
1362 END;
1363 b := S.VAL(FreeBlock, S.VAL(INTEGER, new) + 12);
1364 b.size := (new.size - 12) DIV 16 * 16 - 4
1365 ELSE
1366 RETURN NIL (* 4) give up *)
1367 END
1368 END
1369 END;
1370 (* b # NIL *)
1371 a := b.size + 4 - tsize;
1372 IF a > 0 THEN Insert(S.VAL(FreeBlock, S.VAL(INTEGER, b) + tsize), a) END;
1373 IF size > 0 THEN Erase(S.ADR(b.size), (size + 3) DIV 4) END;
1374 INC(allocated, tsize);
1375 RETURN S.VAL(Block, b)
1376 END NewBlock;
1378 PROCEDURE Allocated* (): INTEGER;
1379 BEGIN
1380 RETURN allocated
1381 END Allocated;
1383 PROCEDURE Used* (): INTEGER;
1384 BEGIN
1385 RETURN used
1386 END Used;
1388 PROCEDURE Root* (): INTEGER;
1389 BEGIN
1390 RETURN S.VAL(INTEGER, root)
1391 END Root;
1393 (* -------------------- Trap Handling --------------------- *)
1395 PROCEDURE Start* (code: Command);
1396 VAR res: setjmp.int;
1397 BEGIN
1398 restart := code;
1399 S.GETREG(SP, baseStack);
1400 res := setjmp.sigsetjmp(startEnv, 1);
1401 restart
1402 END Start;
1404 PROCEDURE Quit* (exitCode: INTEGER);
1405 VAR m: Module; term: Command; t: BOOLEAN;
1406 BEGIN
1407 trapViewer := NIL; trapChecker := NIL; restart := NIL;
1408 t := terminating; terminating := TRUE; m := modList;
1409 WHILE m # NIL DO (* call terminators *)
1410 IF ~static OR ~t THEN
1411 term := m.term; m.term := NIL;
1412 IF term # NIL THEN term() END
1413 END;
1414 m := m.next
1415 END;
1416 CallFinalizers;
1417 hotFinalizers := finalizers; finalizers := NIL;
1418 CallFinalizers;
1419 stdlib.exit(exitCode)
1420 END Quit;
1422 PROCEDURE FatalError* (id: INTEGER; str: ARRAY OF CHAR);
1423 VAR res: stdio.int; title: ARRAY 16 OF CHAR; text: ARRAY 256 OF SHORTCHAR;
1424 BEGIN
1425 title := "Error xy";
1426 title[6] := CHR(id DIV 10 + ORD("0"));
1427 title[7] := CHR(id MOD 10 + ORD("0"));
1428 res := unistd.write(2, S.ADR(title), 8);
1429 stdlib.abort
1430 END FatalError;
1432 PROCEDURE DefaultTrapViewer;
1433 VAR out: ARRAY 2048 OF SHORTCHAR; a, b, c, len, ref, end: INTEGER; mod: Module;
1434 modName, name: Name; n: Utf8Name; res: unistd.int;
1436 PROCEDURE WriteString (IN s: ARRAY OF SHORTCHAR);
1437 VAR i: INTEGER;
1438 BEGIN
1439 i := 0;
1440 WHILE (len < LEN(out) - 1) & (s[i] # 0X) DO out[len] := s[i]; INC(i); INC(len) END
1441 END WriteString;
1443 PROCEDURE WriteHex (x, n: INTEGER);
1444 VAR i, y: INTEGER;
1445 BEGIN
1446 IF len + n < LEN(out) THEN
1447 i := len + n - 1;
1448 WHILE i >= len DO
1449 y := x MOD 16; x := x DIV 16;
1450 IF y > 9 THEN y := y + (ORD("A") - ORD("0") - 10) END;
1451 out[i] := SHORT(CHR(y + ORD("0"))); DEC(i)
1452 END;
1453 INC(len, n)
1454 END
1455 END WriteHex;
1457 PROCEDURE WriteLn;
1458 BEGIN
1459 IF len < LEN(out) - 1 THEN out[len] := 0AX; INC(len) END
1460 END WriteLn;
1462 BEGIN
1463 len := 0;
1464 WriteString("====== ");
1465 IF err = 129 THEN WriteString("invalid with")
1466 ELSIF err = 130 THEN WriteString("invalid case")
1467 ELSIF err = 131 THEN WriteString("function without return")
1468 ELSIF err = 132 THEN WriteString("type guard")
1469 ELSIF err = 133 THEN WriteString("implied type guard")
1470 ELSIF err = 134 THEN WriteString("value out of range")
1471 ELSIF err = 135 THEN WriteString("index out of range")
1472 ELSIF err = 136 THEN WriteString("string too long")
1473 ELSIF err = 137 THEN WriteString("stack overflow")
1474 ELSIF err = 138 THEN WriteString("integer overflow")
1475 ELSIF err = 139 THEN WriteString("division by zero")
1476 ELSIF err = 140 THEN WriteString("infinite real result")
1477 ELSIF err = 141 THEN WriteString("real underflow")
1478 ELSIF err = 142 THEN WriteString("real overflow")
1479 ELSIF err = 143 THEN WriteString("undefined real result")
1480 ELSIF err = 144 THEN WriteString("not a number")
1481 ELSIF err = 200 THEN WriteString("keyboard interrupt")
1482 ELSIF err = 201 THEN WriteString("NIL dereference")
1483 ELSIF err = 202 THEN WriteString("illegal instruction: ");
1484 WriteHex(val, 4)
1485 ELSIF err = 203 THEN WriteString("illegal memory read [ad = ");
1486 WriteHex(val, 8); WriteString("]")
1487 ELSIF err = 204 THEN WriteString("illegal memory write [ad = ");
1488 WriteHex(val, 8); WriteString("]")
1489 ELSIF err = 205 THEN WriteString("illegal execution [ad = ");
1490 WriteHex(val, 8); WriteString("]")
1491 ELSIF err = 257 THEN WriteString("out of memory")
1492 ELSIF err = 10001H THEN WriteString("bus error")
1493 ELSIF err = 10002H THEN WriteString("address error")
1494 ELSIF err = 10007H THEN WriteString("fpu error")
1495 ELSIF err < 0 THEN WriteString("exception #"); WriteHex(-err, 2)
1496 ELSE err := err DIV 100 * 256 + err DIV 10 MOD 10 * 16 + err MOD 10;
1497 WriteString("trap #"); WriteHex(err, 3)
1498 END;
1499 WriteString(" ======");
1500 a := pc; b := fp; c := 12;
1501 REPEAT
1502 WriteLn; WriteString("- ");
1503 mod := modList;
1504 WHILE (mod # NIL) & ((a < mod.code) OR (a >= mod.code + mod.csize)) DO mod := mod.next END;
1505 IF mod # NIL THEN
1506 DEC(a, mod.code);
1507 IF mod.refcnt >= 0 THEN
1508 GetModName(mod, modName); WriteString(SHORT(modName)); ref := mod.refs;
1509 REPEAT GetRefProc(ref, end, n) UNTIL (end = 0) OR (a < end);
1510 IF a < end THEN
1511 Utf8ToString(n, name, res); WriteString("."); WriteString(SHORT(name))
1512 END
1513 ELSE
1514 GetModName(mod, modName); WriteString("("); WriteString(SHORT(modName)); WriteString(")")
1515 END;
1516 WriteString(" ")
1517 END;
1518 WriteString("(pc="); WriteHex(a, 8);
1519 WriteString(", fp="); WriteHex(b, 8); WriteString(")");
1520 IF (b >= sp) & (b < stack) THEN
1521 S.GET(b+4, a); (* stacked pc *)
1522 S.GET(b, b); (* dynamic link *)
1523 DEC(c)
1524 ELSE c := 0
1525 END
1526 UNTIL c = 0;
1527 out[len] := 0X;
1528 res := unistd.write(2, S.ADR(out), len)
1529 END DefaultTrapViewer;
1531 PROCEDURE TrapCleanup;
1532 VAR t: TrapCleaner;
1533 BEGIN
1534 WHILE trapStack # NIL DO
1535 t := trapStack; trapStack := trapStack.next; t.Cleanup
1536 END;
1537 IF (trapChecker # NIL) & (err # 128) THEN trapChecker END
1538 END TrapCleanup;
1540 PROCEDURE SetTrapGuard* (on: BOOLEAN);
1541 BEGIN
1542 guarded := on
1543 END SetTrapGuard;
1545 PROCEDURE Try* (h: TryHandler; a, b, c: INTEGER);
1546 VAR oldIsTry: BOOLEAN; oldTryEnv: setjmp.jmp_buf; res: setjmp.int;
1547 BEGIN
1548 oldIsTry := isTry; oldTryEnv := tryEnv;
1549 isTry := TRUE;
1550 res := setjmp._setjmp(tryEnv);
1551 IF res = 0 THEN h(a, b, c) END;
1552 isTry := oldIsTry; tryEnv := oldTryEnv
1553 END Try;
1555 PROCEDURE Trap* (n: INTEGER);
1556 BEGIN
1557 IF trapped THEN
1558 DefaultTrapViewer;
1559 IF ~secondTrap THEN trapped := FALSE; secondTrap := TRUE END
1560 END;
1561 IF n >= 0 THEN err := n
1562 ELSE err := -n + 128
1563 END;
1564 pc := 0; sp := 0; fp := 0; stack := 0; val := 0;
1565 INC(trapCount);
1566 (* !!! InitFPU *)
1567 TrapCleanup;
1568 IF isTry THEN
1569 setjmp._longjmp(tryEnv, 1)
1570 END;
1571 IF (err = 128) OR (err = 200) & ~intTrap THEN (* do nothing *)
1572 ELSIF (trapViewer # NIL) & (restart # NIL) & ~trapped & ~guarded THEN
1573 trapped := TRUE; trapViewer()
1574 ELSE DefaultTrapViewer
1575 END;
1576 trapped := FALSE; secondTrap := FALSE;
1577 IF restart # NIL THEN
1578 setjmp.siglongjmp(startEnv, 1)
1579 END;
1580 stdlib.abort
1581 END Trap;
1583 PROCEDURE [ccall] TrapHandler (signo: signal.int; IN info: signal.siginfo_t; context: ADDRESS);
1584 VAR res: signal.int;
1585 BEGIN
1586 IF trapped THEN
1587 DefaultTrapViewer;
1588 IF ~secondTrap THEN trapped := FALSE; secondTrap := TRUE END
1589 END;
1590 err := -signo; pc := 0; sp := 0; fp := 0; stack := baseStack; val := 0;
1591 CASE signo OF
1592 | signal.SIGFPE:
1593 val := info.si_code;
1594 pc := info.info.sigfpe.si_addr;
1595 CASE info.si_code OF
1596 | signal.FPE_INTDIV: err := 139 (* division by zero *)
1597 | signal.FPE_INTOVF: err := 138 (* integer overflow *)
1598 | signal.FPE_FLTDIV: err := 140 (* fpu: division by zero *)
1599 | signal.FPE_FLTOVF: err := 142 (* fpu: overflow *)
1600 | signal.FPE_FLTUND: err := 141 (* fpu: underflow *)
1601 (* !!! | signal.FPE_FLTRES: err := ??? (* fpu: *) *)
1602 | signal.FPE_FLTINV: err := 143 (* val := opcode *) (* fpu: invalid op *)
1603 (* !!! | signal.FPE_FLTSUB: err := ??? (* fpu: *) *)
1604 ELSE (* unknown *)
1605 END
1606 | signal.SIGINT:
1607 val := info.si_code;
1608 err := 200 (* keyboard interrupt *)
1609 | signal.SIGSEGV:
1610 val := info.info.sigsegv.si_addr;
1611 err := 203 (* illigal read *)
1612 | signal.SIGBUS:
1613 val := info.info.sigbus.si_addr;
1614 err := 10001H (* bus error *)
1615 | signal.SIGILL:
1616 pc := info.info.sigill.si_addr;
1617 err := 202; (* illigal instruction *)
1618 IF IsReadable(pc, pc + 4) THEN
1619 S.GET(pc, val)
1620 (* !!! err := halt code *)
1621 END;
1622 ELSE (* unknown *)
1623 END;
1624 INC(trapCount);
1625 (* !!! InitFPU *)
1626 TrapCleanup;
1627 IF isTry THEN
1628 setjmp._longjmp(tryEnv, 1)
1629 END;
1630 IF (err = 128) OR (err = 200) & ~intTrap THEN (* do nothing *)
1631 ELSIF (trapViewer # NIL) & (restart # NIL) & ~trapped & ~guarded THEN
1632 trapped := TRUE; trapViewer()
1633 ELSE DefaultTrapViewer
1634 END;
1635 trapped := FALSE; secondTrap := FALSE;
1636 IF restart # NIL THEN
1637 setjmp.siglongjmp(startEnv, 1)
1638 END;
1639 stdlib.abort
1640 END TrapHandler;
1642 (* -------------------- Initialization --------------------- *)
1644 PROCEDURE InstallTrap (signo: signal.int);
1645 VAR act: signal.struct_sigaction; res: signal.int;
1646 BEGIN
1647 act.handler.sa_handler := NIL;
1648 res := signal.sigemptyset(act.sa_mask);
1649 act.sa_flags := signal.SA_NODEFER + signal.SA_SIGINFO;
1650 act.handler.sa_sigaction := TrapHandler;
1651 res := signal.sigaction(signo, act, NIL);
1652 END InstallTrap;
1654 PROCEDURE InstallTrapVectors;
1655 BEGIN
1656 InstallTrap(signal.SIGFPE);
1657 InstallTrap(signal.SIGINT);
1658 InstallTrap(signal.SIGSEGV);
1659 InstallTrap(signal.SIGBUS);
1660 InstallTrap(signal.SIGILL)
1661 END InstallTrapVectors;
1663 PROCEDURE RemoveTrapVectors;
1664 END RemoveTrapVectors;
1666 PROCEDURE Init;
1667 VAR i: INTEGER;
1668 BEGIN
1669 intTrap := TRUE;
1670 pagesize := unistd.sysconf(unistd._SC_PAGESIZE);
1672 (* init heap *)
1673 allocated := 0; total := 0; used := 0;
1674 sentinelBlock.size := MAX(INTEGER);
1675 sentinel := S.ADR(sentinelBlock);
1676 i := N;
1677 REPEAT DEC(i); free[i] := sentinel UNTIL i = 0;
1679 IF ~inDll THEN
1680 InstallTrapVectors
1681 END;
1683 (* !!! InitFPU *)
1684 IF ~static THEN
1685 InitModule(modList);
1686 IF ~inDll THEN Quit(1) END
1687 END
1688 END Init;
1690 BEGIN
1691 IF modList = NIL THEN (* only once *)
1692 S.GETREG(SP, baseStack);
1693 S.GET(baseStack + 16, argc);
1694 argv := S.VAL(ArrStrPtr, baseStack + 20);
1695 S.GETREG(ML, modList); (* linker loads module list to BX *)
1696 static := init IN modList.opts;
1697 inDll := dll IN modList.opts;
1698 Init
1699 END
1700 CLOSE
1701 IF ~terminating THEN
1702 terminating := TRUE;
1703 Quit(0)
1704 END
1705 END Kernel.