lgc.c 35 KB

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  1. /*
  2. ** $Id: lgc.c,v 2.186 2014/07/18 12:17:54 roberto Exp roberto $
  3. ** Garbage Collector
  4. ** See Copyright Notice in lua.h
  5. */
  6. #include <string.h>
  7. #define lgc_c
  8. #define LUA_CORE
  9. #include "lua.h"
  10. #include "ldebug.h"
  11. #include "ldo.h"
  12. #include "lfunc.h"
  13. #include "lgc.h"
  14. #include "lmem.h"
  15. #include "lobject.h"
  16. #include "lstate.h"
  17. #include "lstring.h"
  18. #include "ltable.h"
  19. #include "ltm.h"
  20. /*
  21. ** internal state for collector while inside the atomic phase. The
  22. ** collector should never be in this state while running regular code.
  23. */
  24. #define GCSinsideatomic (GCSpause + 1)
  25. /*
  26. ** cost of sweeping one element (the size of a small object divided
  27. ** by some adjust for the sweep speed)
  28. */
  29. #define GCSWEEPCOST ((sizeof(TString) + 4) / 4)
  30. /* maximum number of elements to sweep in each single step */
  31. #define GCSWEEPMAX (cast_int((GCSTEPSIZE / GCSWEEPCOST) / 4))
  32. /* cost of calling one finalizer */
  33. #define GCFINALIZECOST GCSWEEPCOST
  34. /*
  35. ** macro to adjust 'stepmul': 'stepmul' is actually used like
  36. ** 'stepmul / STEPMULADJ' (value chosen by tests)
  37. */
  38. #define STEPMULADJ 200
  39. /*
  40. ** macro to adjust 'pause': 'pause' is actually used like
  41. ** 'pause / PAUSEADJ' (value chosen by tests)
  42. */
  43. #define PAUSEADJ 100
  44. /*
  45. ** 'makewhite' erases all color bits then sets only the current white
  46. ** bit
  47. */
  48. #define maskcolors (~(bitmask(BLACKBIT) | WHITEBITS))
  49. #define makewhite(g,x) \
  50. (x->marked = cast_byte((x->marked & maskcolors) | luaC_white(g)))
  51. #define white2gray(x) resetbits(x->marked, WHITEBITS)
  52. #define black2gray(x) resetbit(x->marked, BLACKBIT)
  53. #define valiswhite(x) (iscollectable(x) && iswhite(gcvalue(x)))
  54. #define checkdeadkey(n) lua_assert(!ttisdeadkey(gkey(n)) || ttisnil(gval(n)))
  55. #define checkconsistency(obj) \
  56. lua_longassert(!iscollectable(obj) || righttt(obj))
  57. #define markvalue(g,o) { checkconsistency(o); \
  58. if (valiswhite(o)) reallymarkobject(g,gcvalue(o)); }
  59. #define markobject(g,t) \
  60. { if ((t) && iswhite(obj2gco(t))) reallymarkobject(g, obj2gco(t)); }
  61. static void reallymarkobject (global_State *g, GCObject *o);
  62. /*
  63. ** {======================================================
  64. ** Generic functions
  65. ** =======================================================
  66. */
  67. /*
  68. ** one after last element in a hash array
  69. */
  70. #define gnodelast(h) gnode(h, cast(size_t, sizenode(h)))
  71. /*
  72. ** link table 'h' into list pointed by 'p'
  73. */
  74. #define linktable(h,p) ((h)->gclist = *(p), *(p) = obj2gco(h))
  75. /*
  76. ** if key is not marked, mark its entry as dead (therefore removing it
  77. ** from the table)
  78. */
  79. static void removeentry (Node *n) {
  80. lua_assert(ttisnil(gval(n)));
  81. if (valiswhite(gkey(n)))
  82. setdeadvalue(gkey(n)); /* unused and unmarked key; remove it */
  83. }
  84. /*
  85. ** tells whether a key or value can be cleared from a weak
  86. ** table. Non-collectable objects are never removed from weak
  87. ** tables. Strings behave as `values', so are never removed too. for
  88. ** other objects: if really collected, cannot keep them; for objects
  89. ** being finalized, keep them in keys, but not in values
  90. */
  91. static int iscleared (global_State *g, const TValue *o) {
  92. if (!iscollectable(o)) return 0;
  93. else if (ttisstring(o)) {
  94. markobject(g, tsvalue(o)); /* strings are `values', so are never weak */
  95. return 0;
  96. }
  97. else return iswhite(gcvalue(o));
  98. }
  99. /*
  100. ** barrier that moves collector forward, that is, mark the white object
  101. ** being pointed by a black object.
  102. */
  103. void luaC_barrier_ (lua_State *L, GCObject *o, GCObject *v) {
  104. global_State *g = G(L);
  105. lua_assert(isblack(o) && iswhite(v) && !isdead(g, v) && !isdead(g, o));
  106. lua_assert(g->gcstate != GCSpause);
  107. lua_assert(o->tt != LUA_TTABLE); /* tables use a back barrier */
  108. if (keepinvariant(g)) /* must keep invariant? */
  109. reallymarkobject(g, v); /* restore invariant */
  110. else { /* sweep phase */
  111. lua_assert(issweepphase(g));
  112. makewhite(g, o); /* mark main obj. as white to avoid other barriers */
  113. }
  114. }
  115. /*
  116. ** barrier that moves collector backward, that is, mark the black object
  117. ** pointing to a white object as gray again. (Current implementation
  118. ** only works for tables; access to 'gclist' is not uniform across
  119. ** different types.)
  120. */
  121. void luaC_barrierback_ (lua_State *L, GCObject *o) {
  122. global_State *g = G(L);
  123. lua_assert(isblack(o) && !isdead(g, o) && o->tt == LUA_TTABLE);
  124. black2gray(o); /* make object gray (again) */
  125. gco2t(o)->gclist = g->grayagain;
  126. g->grayagain = o;
  127. }
  128. /*
  129. ** barrier for assignments to closed upvalues. Because upvalues are
  130. ** shared among closures, it is impossible to know the color of all
  131. ** closures pointing to it. So, we assume that the object being assigned
  132. ** must be marked.
  133. */
  134. void luaC_upvalbarrier_ (lua_State *L, UpVal *uv) {
  135. global_State *g = G(L);
  136. GCObject *o = gcvalue(uv->v);
  137. lua_assert(!upisopen(uv)); /* ensured by macro luaC_upvalbarrier */
  138. if (keepinvariant(g))
  139. markobject(g, o);
  140. }
  141. void luaC_fix (lua_State *L, GCObject *o) {
  142. global_State *g = G(L);
  143. lua_assert(g->allgc == o); /* object must be 1st in 'allgc' list! */
  144. white2gray(o); /* they will be gray forever */
  145. g->allgc = o->next; /* remove object from 'allgc' list */
  146. o->next = g->fixedgc; /* link it to 'fixedgc' list */
  147. g->fixedgc = o;
  148. }
  149. /*
  150. ** create a new collectable object (with given type and size) and link
  151. ** it to 'allgc' list.
  152. */
  153. GCObject *luaC_newobj (lua_State *L, int tt, size_t sz) {
  154. global_State *g = G(L);
  155. GCObject *o = cast(GCObject *, luaM_newobject(L, novariant(tt), sz));
  156. o->marked = luaC_white(g);
  157. o->tt = tt;
  158. o->next = g->allgc;
  159. g->allgc = o;
  160. return o;
  161. }
  162. /* }====================================================== */
  163. /*
  164. ** {======================================================
  165. ** Mark functions
  166. ** =======================================================
  167. */
  168. /*
  169. ** mark an object. Userdata, strings, and closed upvalues are visited
  170. ** and turned black here. Other objects are marked gray and added
  171. ** to appropriate list to be visited (and turned black) later. (Open
  172. ** upvalues are already linked in 'headuv' list.)
  173. */
  174. static void reallymarkobject (global_State *g, GCObject *o) {
  175. reentry:
  176. white2gray(o);
  177. switch (o->tt) {
  178. case LUA_TSHRSTR:
  179. case LUA_TLNGSTR: {
  180. gray2black(o);
  181. g->GCmemtrav += sizestring(gco2ts(o));
  182. break;
  183. }
  184. case LUA_TUSERDATA: {
  185. TValue uvalue;
  186. markobject(g, gco2u(o)->metatable); /* mark its metatable */
  187. gray2black(o);
  188. g->GCmemtrav += sizeudata(gco2u(o));
  189. getuservalue(g->mainthread, rawgco2u(o), &uvalue);
  190. if (valiswhite(&uvalue)) { /* markvalue(g, &uvalue); */
  191. o = gcvalue(&uvalue);
  192. goto reentry;
  193. }
  194. break;
  195. }
  196. case LUA_TLCL: {
  197. gco2lcl(o)->gclist = g->gray;
  198. g->gray = o;
  199. break;
  200. }
  201. case LUA_TCCL: {
  202. gco2ccl(o)->gclist = g->gray;
  203. g->gray = o;
  204. break;
  205. }
  206. case LUA_TTABLE: {
  207. linktable(gco2t(o), &g->gray);
  208. break;
  209. }
  210. case LUA_TTHREAD: {
  211. gco2th(o)->gclist = g->gray;
  212. g->gray = o;
  213. break;
  214. }
  215. case LUA_TPROTO: {
  216. gco2p(o)->gclist = g->gray;
  217. g->gray = o;
  218. break;
  219. }
  220. default: lua_assert(0); break;
  221. }
  222. }
  223. /*
  224. ** mark metamethods for basic types
  225. */
  226. static void markmt (global_State *g) {
  227. int i;
  228. for (i=0; i < LUA_NUMTAGS; i++)
  229. markobject(g, g->mt[i]);
  230. }
  231. /*
  232. ** mark all objects in list of being-finalized
  233. */
  234. static void markbeingfnz (global_State *g) {
  235. GCObject *o;
  236. for (o = g->tobefnz; o != NULL; o = o->next)
  237. markobject(g, o);
  238. }
  239. /*
  240. ** Mark all values stored in marked open upvalues from non-marked threads.
  241. ** (Values from marked threads were already marked when traversing the
  242. ** thread.) Remove from the list threads that no longer have upvalues and
  243. ** not-marked threads.
  244. */
  245. static void remarkupvals (global_State *g) {
  246. lua_State *thread;
  247. lua_State **p = &g->twups;
  248. while ((thread = *p) != NULL) {
  249. lua_assert(!isblack(obj2gco(thread))); /* threads are never black */
  250. if (isgray(obj2gco(thread)) && thread->openupval != NULL)
  251. p = &thread->twups; /* keep marked thread with upvalues in the list */
  252. else { /* thread is not marked or without upvalues */
  253. UpVal *uv;
  254. *p = thread->twups; /* remove thread from the list */
  255. thread->twups = thread; /* mark that it is out of list */
  256. for (uv = thread->openupval; uv != NULL; uv = uv->u.open.next) {
  257. if (uv->u.open.touched) {
  258. markvalue(g, uv->v); /* remark upvalue's value */
  259. uv->u.open.touched = 0;
  260. }
  261. }
  262. }
  263. }
  264. }
  265. /*
  266. ** mark root set and reset all gray lists, to start a new collection
  267. */
  268. static void restartcollection (global_State *g) {
  269. g->gray = g->grayagain = NULL;
  270. g->weak = g->allweak = g->ephemeron = NULL;
  271. markobject(g, g->mainthread);
  272. markvalue(g, &g->l_registry);
  273. markmt(g);
  274. markbeingfnz(g); /* mark any finalizing object left from previous cycle */
  275. }
  276. /* }====================================================== */
  277. /*
  278. ** {======================================================
  279. ** Traverse functions
  280. ** =======================================================
  281. */
  282. static void traverseweakvalue (global_State *g, Table *h) {
  283. Node *n, *limit = gnodelast(h);
  284. /* if there is array part, assume it may have white values (do not
  285. traverse it just to check) */
  286. int hasclears = (h->sizearray > 0);
  287. for (n = gnode(h, 0); n < limit; n++) {
  288. checkdeadkey(n);
  289. if (ttisnil(gval(n))) /* entry is empty? */
  290. removeentry(n); /* remove it */
  291. else {
  292. lua_assert(!ttisnil(gkey(n)));
  293. markvalue(g, gkey(n)); /* mark key */
  294. if (!hasclears && iscleared(g, gval(n))) /* is there a white value? */
  295. hasclears = 1; /* table will have to be cleared */
  296. }
  297. }
  298. if (hasclears)
  299. linktable(h, &g->weak); /* has to be cleared later */
  300. else /* no white values */
  301. linktable(h, &g->grayagain); /* no need to clean */
  302. }
  303. static int traverseephemeron (global_State *g, Table *h) {
  304. int marked = 0; /* true if an object is marked in this traversal */
  305. int hasclears = 0; /* true if table has white keys */
  306. int prop = 0; /* true if table has entry "white-key -> white-value" */
  307. Node *n, *limit = gnodelast(h);
  308. int i;
  309. /* traverse array part (numeric keys are 'strong') */
  310. for (i = 0; i < h->sizearray; i++) {
  311. if (valiswhite(&h->array[i])) {
  312. marked = 1;
  313. reallymarkobject(g, gcvalue(&h->array[i]));
  314. }
  315. }
  316. /* traverse hash part */
  317. for (n = gnode(h, 0); n < limit; n++) {
  318. checkdeadkey(n);
  319. if (ttisnil(gval(n))) /* entry is empty? */
  320. removeentry(n); /* remove it */
  321. else if (iscleared(g, gkey(n))) { /* key is not marked (yet)? */
  322. hasclears = 1; /* table must be cleared */
  323. if (valiswhite(gval(n))) /* value not marked yet? */
  324. prop = 1; /* must propagate again */
  325. }
  326. else if (valiswhite(gval(n))) { /* value not marked yet? */
  327. marked = 1;
  328. reallymarkobject(g, gcvalue(gval(n))); /* mark it now */
  329. }
  330. }
  331. if (prop)
  332. linktable(h, &g->ephemeron); /* have to propagate again */
  333. else if (hasclears) /* does table have white keys? */
  334. linktable(h, &g->allweak); /* may have to clean white keys */
  335. else /* no white keys */
  336. linktable(h, &g->grayagain); /* no need to clean */
  337. return marked;
  338. }
  339. static void traversestrongtable (global_State *g, Table *h) {
  340. Node *n, *limit = gnodelast(h);
  341. int i;
  342. for (i = 0; i < h->sizearray; i++) /* traverse array part */
  343. markvalue(g, &h->array[i]);
  344. for (n = gnode(h, 0); n < limit; n++) { /* traverse hash part */
  345. checkdeadkey(n);
  346. if (ttisnil(gval(n))) /* entry is empty? */
  347. removeentry(n); /* remove it */
  348. else {
  349. lua_assert(!ttisnil(gkey(n)));
  350. markvalue(g, gkey(n)); /* mark key */
  351. markvalue(g, gval(n)); /* mark value */
  352. }
  353. }
  354. }
  355. static lu_mem traversetable (global_State *g, Table *h) {
  356. const char *weakkey, *weakvalue;
  357. const TValue *mode = gfasttm(g, h->metatable, TM_MODE);
  358. markobject(g, h->metatable);
  359. if (mode && ttisstring(mode) && /* is there a weak mode? */
  360. ((weakkey = strchr(svalue(mode), 'k')),
  361. (weakvalue = strchr(svalue(mode), 'v')),
  362. (weakkey || weakvalue))) { /* is really weak? */
  363. black2gray(obj2gco(h)); /* keep table gray */
  364. if (!weakkey) /* strong keys? */
  365. traverseweakvalue(g, h);
  366. else if (!weakvalue) /* strong values? */
  367. traverseephemeron(g, h);
  368. else /* all weak */
  369. linktable(h, &g->allweak); /* nothing to traverse now */
  370. }
  371. else /* not weak */
  372. traversestrongtable(g, h);
  373. return sizeof(Table) + sizeof(TValue) * h->sizearray +
  374. sizeof(Node) * cast(size_t, sizenode(h));
  375. }
  376. static int traverseproto (global_State *g, Proto *f) {
  377. int i;
  378. if (f->cache && iswhite(obj2gco(f->cache)))
  379. f->cache = NULL; /* allow cache to be collected */
  380. markobject(g, f->source);
  381. for (i = 0; i < f->sizek; i++) /* mark literals */
  382. markvalue(g, &f->k[i]);
  383. for (i = 0; i < f->sizeupvalues; i++) /* mark upvalue names */
  384. markobject(g, f->upvalues[i].name);
  385. for (i = 0; i < f->sizep; i++) /* mark nested protos */
  386. markobject(g, f->p[i]);
  387. for (i = 0; i < f->sizelocvars; i++) /* mark local-variable names */
  388. markobject(g, f->locvars[i].varname);
  389. return sizeof(Proto) + sizeof(Instruction) * f->sizecode +
  390. sizeof(Proto *) * f->sizep +
  391. sizeof(TValue) * f->sizek +
  392. sizeof(int) * f->sizelineinfo +
  393. sizeof(LocVar) * f->sizelocvars +
  394. sizeof(Upvaldesc) * f->sizeupvalues;
  395. }
  396. static lu_mem traverseCclosure (global_State *g, CClosure *cl) {
  397. int i;
  398. for (i = 0; i < cl->nupvalues; i++) /* mark its upvalues */
  399. markvalue(g, &cl->upvalue[i]);
  400. return sizeCclosure(cl->nupvalues);
  401. }
  402. /*
  403. ** open upvalues point to values in a thread, so those values should
  404. ** be marked when the thread is traversed except in the atomic phase
  405. ** (because then the value cannot be changed by the thread and the
  406. ** thread may not be traversed again)
  407. */
  408. static lu_mem traverseLclosure (global_State *g, LClosure *cl) {
  409. int i;
  410. markobject(g, cl->p); /* mark its prototype */
  411. for (i = 0; i < cl->nupvalues; i++) { /* mark its upvalues */
  412. UpVal *uv = cl->upvals[i];
  413. if (uv != NULL) {
  414. if (upisopen(uv) && g->gcstate != GCSinsideatomic)
  415. uv->u.open.touched = 1; /* can be marked in 'remarkupvals' */
  416. else
  417. markvalue(g, uv->v);
  418. }
  419. }
  420. return sizeLclosure(cl->nupvalues);
  421. }
  422. static lu_mem traversethread (global_State *g, lua_State *th) {
  423. StkId o = th->stack;
  424. if (o == NULL)
  425. return 1; /* stack not completely built yet */
  426. lua_assert(g->gcstate == GCSinsideatomic ||
  427. th->openupval == NULL || isintwups(th));
  428. for (; o < th->top; o++) /* mark live elements in the stack */
  429. markvalue(g, o);
  430. if (g->gcstate == GCSinsideatomic) { /* final traversal? */
  431. StkId lim = th->stack + th->stacksize; /* real end of stack */
  432. for (; o < lim; o++) /* clear not-marked stack slice */
  433. setnilvalue(o);
  434. /* 'remarkupvals' may have removed thread from 'twups' list */
  435. if (!isintwups(th) && th->openupval != NULL) {
  436. th->twups = g->twups; /* link it back to the list */
  437. g->twups = th;
  438. }
  439. }
  440. else if (g->gckind != KGC_EMERGENCY)
  441. luaD_shrinkstack(th); /* do not change stack in emergency cycle */
  442. return (sizeof(lua_State) + sizeof(TValue) * th->stacksize);
  443. }
  444. /*
  445. ** traverse one gray object, turning it to black (except for threads,
  446. ** which are always gray).
  447. */
  448. static void propagatemark (global_State *g) {
  449. lu_mem size;
  450. GCObject *o = g->gray;
  451. lua_assert(isgray(o));
  452. gray2black(o);
  453. switch (o->tt) {
  454. case LUA_TTABLE: {
  455. Table *h = gco2t(o);
  456. g->gray = h->gclist; /* remove from 'gray' list */
  457. size = traversetable(g, h);
  458. break;
  459. }
  460. case LUA_TLCL: {
  461. LClosure *cl = gco2lcl(o);
  462. g->gray = cl->gclist; /* remove from 'gray' list */
  463. size = traverseLclosure(g, cl);
  464. break;
  465. }
  466. case LUA_TCCL: {
  467. CClosure *cl = gco2ccl(o);
  468. g->gray = cl->gclist; /* remove from 'gray' list */
  469. size = traverseCclosure(g, cl);
  470. break;
  471. }
  472. case LUA_TTHREAD: {
  473. lua_State *th = gco2th(o);
  474. g->gray = th->gclist; /* remove from 'gray' list */
  475. th->gclist = g->grayagain;
  476. g->grayagain = o; /* insert into 'grayagain' list */
  477. black2gray(o);
  478. size = traversethread(g, th);
  479. break;
  480. }
  481. case LUA_TPROTO: {
  482. Proto *p = gco2p(o);
  483. g->gray = p->gclist; /* remove from 'gray' list */
  484. size = traverseproto(g, p);
  485. break;
  486. }
  487. default: lua_assert(0); return;
  488. }
  489. g->GCmemtrav += size;
  490. }
  491. static void propagateall (global_State *g) {
  492. while (g->gray) propagatemark(g);
  493. }
  494. static void propagatelist (global_State *g, GCObject *l) {
  495. lua_assert(g->gray == NULL); /* no grays left */
  496. g->gray = l;
  497. propagateall(g); /* traverse all elements from 'l' */
  498. }
  499. /*
  500. ** retraverse all gray lists. Because tables may be reinserted in other
  501. ** lists when traversed, traverse the original lists to avoid traversing
  502. ** twice the same table (which is not wrong, but inefficient)
  503. */
  504. static void retraversegrays (global_State *g) {
  505. GCObject *weak = g->weak; /* save original lists */
  506. GCObject *grayagain = g->grayagain;
  507. GCObject *ephemeron = g->ephemeron;
  508. g->weak = g->grayagain = g->ephemeron = NULL;
  509. propagateall(g); /* traverse main gray list */
  510. propagatelist(g, grayagain);
  511. propagatelist(g, weak);
  512. propagatelist(g, ephemeron);
  513. }
  514. static void convergeephemerons (global_State *g) {
  515. int changed;
  516. do {
  517. GCObject *w;
  518. GCObject *next = g->ephemeron; /* get ephemeron list */
  519. g->ephemeron = NULL; /* tables will return to this list when traversed */
  520. changed = 0;
  521. while ((w = next) != NULL) {
  522. next = gco2t(w)->gclist;
  523. if (traverseephemeron(g, gco2t(w))) { /* traverse marked some value? */
  524. propagateall(g); /* propagate changes */
  525. changed = 1; /* will have to revisit all ephemeron tables */
  526. }
  527. }
  528. } while (changed);
  529. }
  530. /* }====================================================== */
  531. /*
  532. ** {======================================================
  533. ** Sweep Functions
  534. ** =======================================================
  535. */
  536. /*
  537. ** clear entries with unmarked keys from all weaktables in list 'l' up
  538. ** to element 'f'
  539. */
  540. static void clearkeys (global_State *g, GCObject *l, GCObject *f) {
  541. for (; l != f; l = gco2t(l)->gclist) {
  542. Table *h = gco2t(l);
  543. Node *n, *limit = gnodelast(h);
  544. for (n = gnode(h, 0); n < limit; n++) {
  545. if (!ttisnil(gval(n)) && (iscleared(g, gkey(n)))) {
  546. setnilvalue(gval(n)); /* remove value ... */
  547. removeentry(n); /* and remove entry from table */
  548. }
  549. }
  550. }
  551. }
  552. /*
  553. ** clear entries with unmarked values from all weaktables in list 'l' up
  554. ** to element 'f'
  555. */
  556. static void clearvalues (global_State *g, GCObject *l, GCObject *f) {
  557. for (; l != f; l = gco2t(l)->gclist) {
  558. Table *h = gco2t(l);
  559. Node *n, *limit = gnodelast(h);
  560. int i;
  561. for (i = 0; i < h->sizearray; i++) {
  562. TValue *o = &h->array[i];
  563. if (iscleared(g, o)) /* value was collected? */
  564. setnilvalue(o); /* remove value */
  565. }
  566. for (n = gnode(h, 0); n < limit; n++) {
  567. if (!ttisnil(gval(n)) && iscleared(g, gval(n))) {
  568. setnilvalue(gval(n)); /* remove value ... */
  569. removeentry(n); /* and remove entry from table */
  570. }
  571. }
  572. }
  573. }
  574. void luaC_upvdeccount (lua_State *L, UpVal *uv) {
  575. lua_assert(uv->refcount > 0);
  576. uv->refcount--;
  577. if (uv->refcount == 0 && !upisopen(uv))
  578. luaM_free(L, uv);
  579. }
  580. static void freeLclosure (lua_State *L, LClosure *cl) {
  581. int i;
  582. for (i = 0; i < cl->nupvalues; i++) {
  583. UpVal *uv = cl->upvals[i];
  584. if (uv)
  585. luaC_upvdeccount(L, uv);
  586. }
  587. luaM_freemem(L, cl, sizeLclosure(cl->nupvalues));
  588. }
  589. static void freeobj (lua_State *L, GCObject *o) {
  590. switch (o->tt) {
  591. case LUA_TPROTO: luaF_freeproto(L, gco2p(o)); break;
  592. case LUA_TLCL: {
  593. freeLclosure(L, gco2lcl(o));
  594. break;
  595. }
  596. case LUA_TCCL: {
  597. luaM_freemem(L, o, sizeCclosure(gco2ccl(o)->nupvalues));
  598. break;
  599. }
  600. case LUA_TTABLE: luaH_free(L, gco2t(o)); break;
  601. case LUA_TTHREAD: luaE_freethread(L, gco2th(o)); break;
  602. case LUA_TUSERDATA: luaM_freemem(L, o, sizeudata(gco2u(o))); break;
  603. case LUA_TSHRSTR:
  604. luaS_remove(L, gco2ts(o)); /* remove it from hash table */
  605. /* go through */
  606. case LUA_TLNGSTR: {
  607. luaM_freemem(L, o, sizestring(gco2ts(o)));
  608. break;
  609. }
  610. default: lua_assert(0);
  611. }
  612. }
  613. #define sweepwholelist(L,p) sweeplist(L,p,MAX_LUMEM)
  614. static GCObject **sweeplist (lua_State *L, GCObject **p, lu_mem count);
  615. /*
  616. ** sweep at most 'count' elements from a list of GCObjects erasing dead
  617. ** objects, where a dead (not alive) object is one marked with the "old"
  618. ** (non current) white and not fixed; change all non-dead objects back
  619. ** to white, preparing for next collection cycle.
  620. ** When object is a thread, sweep its list of open upvalues too.
  621. */
  622. static GCObject **sweeplist (lua_State *L, GCObject **p, lu_mem count) {
  623. global_State *g = G(L);
  624. int ow = otherwhite(g);
  625. int white = luaC_white(g); /* current white */
  626. while (*p != NULL && count-- > 0) {
  627. GCObject *curr = *p;
  628. int marked = curr->marked;
  629. if (isdeadm(ow, marked)) { /* is 'curr' dead? */
  630. *p = curr->next; /* remove 'curr' from list */
  631. freeobj(L, curr); /* erase 'curr' */
  632. }
  633. else { /* update marks */
  634. curr->marked = cast_byte((marked & maskcolors) | white);
  635. p = &curr->next; /* go to next element */
  636. }
  637. }
  638. return (*p == NULL) ? NULL : p;
  639. }
  640. /*
  641. ** sweep a list until a live object (or end of list)
  642. */
  643. static GCObject **sweeptolive (lua_State *L, GCObject **p, int *n) {
  644. GCObject **old = p;
  645. int i = 0;
  646. do {
  647. i++;
  648. p = sweeplist(L, p, 1);
  649. } while (p == old);
  650. if (n) *n += i;
  651. return p;
  652. }
  653. /* }====================================================== */
  654. /*
  655. ** {======================================================
  656. ** Finalization
  657. ** =======================================================
  658. */
  659. /*
  660. ** If possible, free concatenation buffer and shrink string table
  661. */
  662. static void checkSizes (lua_State *L, global_State *g) {
  663. if (g->gckind != KGC_EMERGENCY) {
  664. l_mem olddebt = g->GCdebt;
  665. luaZ_freebuffer(L, &g->buff); /* free concatenation buffer */
  666. if (g->strt.nuse < g->strt.size / 4) /* string table too big? */
  667. luaS_resize(L, g->strt.size / 2); /* shrink it a little */
  668. g->GCestimate += g->GCdebt - olddebt; /* update estimate */
  669. }
  670. }
  671. static GCObject *udata2finalize (global_State *g) {
  672. GCObject *o = g->tobefnz; /* get first element */
  673. lua_assert(tofinalize(o));
  674. g->tobefnz = o->next; /* remove it from 'tobefnz' list */
  675. o->next = g->allgc; /* return it to 'allgc' list */
  676. g->allgc = o;
  677. resetbit(o->marked, FINALIZEDBIT); /* object is "normal" again */
  678. if (issweepphase(g))
  679. makewhite(g, o); /* "sweep" object */
  680. return o;
  681. }
  682. static void dothecall (lua_State *L, void *ud) {
  683. UNUSED(ud);
  684. luaD_call(L, L->top - 2, 0, 0);
  685. }
  686. static void GCTM (lua_State *L, int propagateerrors) {
  687. global_State *g = G(L);
  688. const TValue *tm;
  689. TValue v;
  690. setgcovalue(L, &v, udata2finalize(g));
  691. tm = luaT_gettmbyobj(L, &v, TM_GC);
  692. if (tm != NULL && ttisfunction(tm)) { /* is there a finalizer? */
  693. int status;
  694. lu_byte oldah = L->allowhook;
  695. int running = g->gcrunning;
  696. L->allowhook = 0; /* stop debug hooks during GC metamethod */
  697. g->gcrunning = 0; /* avoid GC steps */
  698. setobj2s(L, L->top, tm); /* push finalizer... */
  699. setobj2s(L, L->top + 1, &v); /* ... and its argument */
  700. L->top += 2; /* and (next line) call the finalizer */
  701. status = luaD_pcall(L, dothecall, NULL, savestack(L, L->top - 2), 0);
  702. L->allowhook = oldah; /* restore hooks */
  703. g->gcrunning = running; /* restore state */
  704. if (status != LUA_OK && propagateerrors) { /* error while running __gc? */
  705. if (status == LUA_ERRRUN) { /* is there an error object? */
  706. const char *msg = (ttisstring(L->top - 1))
  707. ? svalue(L->top - 1)
  708. : "no message";
  709. luaO_pushfstring(L, "error in __gc metamethod (%s)", msg);
  710. status = LUA_ERRGCMM; /* error in __gc metamethod */
  711. }
  712. luaD_throw(L, status); /* re-throw error */
  713. }
  714. }
  715. }
  716. /*
  717. ** call a few (up to 'g->gcfinnum') finalizers
  718. */
  719. static int runafewfinalizers (lua_State *L) {
  720. global_State *g = G(L);
  721. unsigned int i;
  722. lua_assert(!g->tobefnz || g->gcfinnum > 0);
  723. for (i = 0; g->tobefnz && i < g->gcfinnum; i++)
  724. GCTM(L, 1); /* call one finalizer */
  725. g->gcfinnum = (!g->tobefnz) ? 0 /* nothing more to finalize? */
  726. : g->gcfinnum * 2; /* else call a few more next time */
  727. return i;
  728. }
  729. /*
  730. ** call all pending finalizers
  731. */
  732. static void callallpendingfinalizers (lua_State *L, int propagateerrors) {
  733. global_State *g = G(L);
  734. while (g->tobefnz)
  735. GCTM(L, propagateerrors);
  736. }
  737. /*
  738. ** find last 'next' field in list 'p' list (to add elements in its end)
  739. */
  740. static GCObject **findlast (GCObject **p) {
  741. while (*p != NULL)
  742. p = &(*p)->next;
  743. return p;
  744. }
  745. /*
  746. ** move all unreachable objects (or 'all' objects) that need
  747. ** finalization from list 'p' to list 'tobefnz' (to be finalized)
  748. */
  749. static void separatetobefnz (global_State *g, int all) {
  750. GCObject *curr;
  751. GCObject **p = &g->finobj;
  752. GCObject **lastnext = findlast(&g->tobefnz);
  753. while ((curr = *p) != NULL) { /* traverse all finalizable objects */
  754. lua_assert(tofinalize(curr));
  755. if (!(iswhite(curr) || all)) /* not being collected? */
  756. p = &curr->next; /* don't bother with it */
  757. else {
  758. *p = curr->next; /* remove 'curr' from "fin" list */
  759. curr->next = *lastnext; /* link at the end of 'tobefnz' list */
  760. *lastnext = curr;
  761. lastnext = &curr->next;
  762. }
  763. }
  764. }
  765. /*
  766. ** if object 'o' has a finalizer, remove it from 'allgc' list (must
  767. ** search the list to find it) and link it in 'finobj' list.
  768. */
  769. void luaC_checkfinalizer (lua_State *L, GCObject *o, Table *mt) {
  770. global_State *g = G(L);
  771. if (tofinalize(o) || /* obj. is already marked... */
  772. gfasttm(g, mt, TM_GC) == NULL) /* or has no finalizer? */
  773. return; /* nothing to be done */
  774. else { /* move 'o' to 'finobj' list */
  775. GCObject **p;
  776. if (issweepphase(g)) {
  777. makewhite(g, o); /* "sweep" object 'o' */
  778. if (g->sweepgc == &o->next) /* should not remove 'sweepgc' object */
  779. g->sweepgc = sweeptolive(L, g->sweepgc, NULL); /* change 'sweepgc' */
  780. }
  781. /* search for pointer pointing to 'o' */
  782. for (p = &g->allgc; *p != o; p = &(*p)->next) { /* empty */ }
  783. *p = o->next; /* remove 'o' from 'allgc' list */
  784. o->next = g->finobj; /* link it in "fin" list */
  785. g->finobj = o;
  786. l_setbit(o->marked, FINALIZEDBIT); /* mark it as such */
  787. }
  788. }
  789. /* }====================================================== */
  790. /*
  791. ** {======================================================
  792. ** GC control
  793. ** =======================================================
  794. */
  795. /*
  796. ** set a reasonable "time" to wait before starting a new GC cycle;
  797. ** cycle will start when memory use hits threshold
  798. */
  799. static void setpause (global_State *g) {
  800. l_mem threshold, debt;
  801. l_mem estimate = g->GCestimate / PAUSEADJ; /* adjust 'estimate' */
  802. threshold = (g->gcpause < MAX_LMEM / estimate) /* overflow? */
  803. ? estimate * g->gcpause /* no overflow */
  804. : MAX_LMEM; /* overflow; truncate to maximum */
  805. debt = gettotalbytes(g) - threshold;
  806. luaE_setdebt(g, debt);
  807. }
  808. /*
  809. ** Enter first sweep phase.
  810. ** The call to 'sweeptolive' makes pointer point to an object inside
  811. ** the list (instead of to the header), so that the real sweep do not
  812. ** need to skip objects created between "now" and the start of the real
  813. ** sweep.
  814. ** Returns how many objects it swept.
  815. */
  816. static int entersweep (lua_State *L) {
  817. global_State *g = G(L);
  818. int n = 0;
  819. g->gcstate = GCSswpallgc;
  820. lua_assert(g->sweepgc == NULL);
  821. g->sweepgc = sweeptolive(L, &g->allgc, &n);
  822. return n;
  823. }
  824. void luaC_freeallobjects (lua_State *L) {
  825. global_State *g = G(L);
  826. separatetobefnz(g, 1); /* separate all objects with finalizers */
  827. lua_assert(g->finobj == NULL);
  828. callallpendingfinalizers(L, 0);
  829. lua_assert(g->tobefnz == NULL);
  830. g->currentwhite = WHITEBITS; /* this "white" makes all objects look dead */
  831. g->gckind = KGC_NORMAL;
  832. sweepwholelist(L, &g->finobj);
  833. sweepwholelist(L, &g->allgc);
  834. sweepwholelist(L, &g->fixedgc); /* collect fixed objects */
  835. lua_assert(g->strt.nuse == 0);
  836. }
  837. static l_mem atomic (lua_State *L) {
  838. global_State *g = G(L);
  839. l_mem work;
  840. GCObject *origweak, *origall;
  841. g->GCmemtrav = 0; /* start counting work */
  842. lua_assert(!iswhite(obj2gco(g->mainthread)));
  843. g->gcstate = GCSinsideatomic;
  844. markobject(g, L); /* mark running thread */
  845. /* registry and global metatables may be changed by API */
  846. markvalue(g, &g->l_registry);
  847. markmt(g); /* mark basic metatables */
  848. /* remark occasional upvalues of (maybe) dead threads */
  849. remarkupvals(g);
  850. propagateall(g); /* propagate changes */
  851. work = g->GCmemtrav; /* stop counting (do not (re)count grays) */
  852. /* traverse objects caught by write barrier and by 'remarkupvals' */
  853. retraversegrays(g);
  854. g->GCmemtrav = 0; /* restart counting */
  855. convergeephemerons(g);
  856. /* at this point, all strongly accessible objects are marked. */
  857. /* Clear values from weak tables, before checking finalizers */
  858. clearvalues(g, g->weak, NULL);
  859. clearvalues(g, g->allweak, NULL);
  860. origweak = g->weak; origall = g->allweak;
  861. work += g->GCmemtrav; /* stop counting (objects being finalized) */
  862. separatetobefnz(g, 0); /* separate objects to be finalized */
  863. g->gcfinnum = 1; /* there may be objects to be finalized */
  864. markbeingfnz(g); /* mark objects that will be finalized */
  865. propagateall(g); /* remark, to propagate 'resurrection' */
  866. g->GCmemtrav = 0; /* restart counting */
  867. convergeephemerons(g);
  868. /* at this point, all resurrected objects are marked. */
  869. /* remove dead objects from weak tables */
  870. clearkeys(g, g->ephemeron, NULL); /* clear keys from all ephemeron tables */
  871. clearkeys(g, g->allweak, NULL); /* clear keys from all allweak tables */
  872. /* clear values from resurrected weak tables */
  873. clearvalues(g, g->weak, origweak);
  874. clearvalues(g, g->allweak, origall);
  875. g->currentwhite = cast_byte(otherwhite(g)); /* flip current white */
  876. work += g->GCmemtrav; /* complete counting */
  877. return work; /* estimate of memory marked by 'atomic' */
  878. }
  879. static lu_mem sweepstep (lua_State *L, global_State *g,
  880. int nextstate, GCObject **nextlist) {
  881. if (g->sweepgc) {
  882. l_mem olddebt = g->GCdebt;
  883. g->sweepgc = sweeplist(L, g->sweepgc, GCSWEEPMAX);
  884. g->GCestimate += g->GCdebt - olddebt; /* update estimate */
  885. if (g->sweepgc) /* is there still something to sweep? */
  886. return (GCSWEEPMAX * GCSWEEPCOST);
  887. }
  888. /* else enter next state */
  889. g->gcstate = nextstate;
  890. g->sweepgc = nextlist;
  891. return 0;
  892. }
  893. static lu_mem singlestep (lua_State *L) {
  894. global_State *g = G(L);
  895. switch (g->gcstate) {
  896. case GCSpause: {
  897. g->GCmemtrav = g->strt.size * sizeof(GCObject*);
  898. restartcollection(g);
  899. g->gcstate = GCSpropagate;
  900. return g->GCmemtrav;
  901. }
  902. case GCSpropagate: {
  903. g->GCmemtrav = 0;
  904. lua_assert(g->gray);
  905. propagatemark(g);
  906. if (g->gray == NULL) /* no more `gray' objects? */
  907. g->gcstate = GCSatomic; /* finish propagate phase */
  908. return g->GCmemtrav; /* memory traversed in this step */
  909. }
  910. case GCSatomic: {
  911. lu_mem work;
  912. int sw;
  913. propagateall(g); /* make sure gray list is empty */
  914. work = atomic(L); /* work is what was traversed by 'atomic' */
  915. sw = entersweep(L);
  916. g->GCestimate = gettotalbytes(g); /* first estimate */;
  917. return work + sw * GCSWEEPCOST;
  918. }
  919. case GCSswpallgc: { /* sweep "regular" objects */
  920. return sweepstep(L, g, GCSswpfinobj, &g->finobj);
  921. }
  922. case GCSswpfinobj: { /* sweep objects with finalizers */
  923. return sweepstep(L, g, GCSswptobefnz, &g->tobefnz);
  924. }
  925. case GCSswptobefnz: { /* sweep objects to be finalized */
  926. return sweepstep(L, g, GCSswpend, NULL);
  927. }
  928. case GCSswpend: { /* finish sweeps */
  929. makewhite(g, obj2gco(g->mainthread)); /* sweep main thread */
  930. checkSizes(L, g);
  931. g->gcstate = GCScallfin;
  932. return 0;
  933. }
  934. case GCScallfin: { /* call remaining finalizers */
  935. if (g->tobefnz && g->gckind != KGC_EMERGENCY) {
  936. int n = runafewfinalizers(L);
  937. return (n * GCFINALIZECOST);
  938. }
  939. else { /* emergency mode or no more finalizers */
  940. g->gcstate = GCSpause; /* finish collection */
  941. return 0;
  942. }
  943. }
  944. default: lua_assert(0); return 0;
  945. }
  946. }
  947. /*
  948. ** advances the garbage collector until it reaches a state allowed
  949. ** by 'statemask'
  950. */
  951. void luaC_runtilstate (lua_State *L, int statesmask) {
  952. global_State *g = G(L);
  953. while (!testbit(statesmask, g->gcstate))
  954. singlestep(L);
  955. }
  956. /*
  957. ** get GC debt and convert it from Kb to 'work units' (avoid zero debt
  958. ** and overflows)
  959. */
  960. static l_mem getdebt (global_State *g) {
  961. l_mem debt = g->GCdebt;
  962. int stepmul = g->gcstepmul;
  963. debt = (debt / STEPMULADJ) + 1;
  964. debt = (debt < MAX_LMEM / stepmul) ? debt * stepmul : MAX_LMEM;
  965. return debt;
  966. }
  967. /*
  968. ** performs a basic GC step when collector is running
  969. */
  970. void luaC_step (lua_State *L) {
  971. global_State *g = G(L);
  972. l_mem debt = getdebt(g); /* GC deficit (be paid now) */
  973. if (!g->gcrunning) { /* not running? */
  974. luaE_setdebt(g, -GCSTEPSIZE * 10); /* avoid being called too often */
  975. return;
  976. }
  977. do { /* repeat until pause or enough "credit" (negative debt) */
  978. lu_mem work = singlestep(L); /* perform one single step */
  979. debt -= work;
  980. } while (debt > -GCSTEPSIZE && g->gcstate != GCSpause);
  981. if (g->gcstate == GCSpause)
  982. setpause(g); /* pause until next cycle */
  983. else {
  984. debt = (debt / g->gcstepmul) * STEPMULADJ; /* convert 'work units' to Kb */
  985. luaE_setdebt(g, debt);
  986. runafewfinalizers(L);
  987. }
  988. }
  989. /*
  990. ** Performs a full GC cycle; if "isemergency", set a flag to avoid
  991. ** some operations which could change the interpreter state in some
  992. ** unexpected ways (running finalizers and shrinking some structures).
  993. ** Before running the collection, check 'keepinvariant'; if it is true,
  994. ** there may be some objects marked as black, so the collector has
  995. ** to sweep all objects to turn them back to white (as white has not
  996. ** changed, nothing will be collected).
  997. */
  998. void luaC_fullgc (lua_State *L, int isemergency) {
  999. global_State *g = G(L);
  1000. lua_assert(g->gckind == KGC_NORMAL);
  1001. if (isemergency) g->gckind = KGC_EMERGENCY; /* set flag */
  1002. if (keepinvariant(g)) { /* black objects? */
  1003. entersweep(L); /* sweep everything to turn them back to white */
  1004. }
  1005. /* finish any pending sweep phase to start a new cycle */
  1006. luaC_runtilstate(L, bitmask(GCSpause));
  1007. luaC_runtilstate(L, ~bitmask(GCSpause)); /* start new collection */
  1008. luaC_runtilstate(L, bitmask(GCScallfin)); /* run up to finalizers */
  1009. /* estimate must be correct after a full GC cycle */
  1010. lua_assert(g->GCestimate == gettotalbytes(g));
  1011. luaC_runtilstate(L, bitmask(GCSpause)); /* finish collection */
  1012. g->gckind = KGC_NORMAL;
  1013. setpause(g);
  1014. }
  1015. /* }====================================================== */