#define lgc_c
#define LUA_CORE
#include "lprefix.h"
#include <stdio.h>
#include <string.h>
#include "lua.h"
#include "ldebug.h"
#include "ldo.h"
#include "lfunc.h"
#include "lgc.h"
#include "lmem.h"
#include "lobject.h"
#include "lstate.h"
#include "lstring.h"
#include "ltable.h"
#include "ltm.h"
#define GCSWEEPMAX 100
#define GCFINMAX 10
#define GCFINALIZECOST 50
#define WORK2MEM sizeof(TValue)
#define PAUSEADJ 100
#define maskcolors (~(bitmask(BLACKBIT) | WHITEBITS | AGEBITS))
#define makewhite(g,x) \
(x->marked = cast_byte((x->marked & maskcolors) | luaC_white(g)))
#define white2gray(x) resetbits(x->marked, WHITEBITS)
#define black2gray(x) resetbit(x->marked, BLACKBIT)
#define valiswhite(x) (iscollectable(x) && iswhite(gcvalue(x)))
#define keyiswhite(n) (keyiscollectable(n) && iswhite(gckey(n)))
#define checkconsistency(obj) \
lua_longassert(!iscollectable(obj) || righttt(obj))
#define gcvalueN(o) (iscollectable(o) ? gcvalue(o) : NULL)
#define markvalue(g,o) { checkconsistency(o); \
if (valiswhite(o)) reallymarkobject(g,gcvalue(o)); }
#define markkey(g, n) { if keyiswhite(n) reallymarkobject(g,gckey(n)); }
#define markobject(g,t) { if (iswhite(t)) reallymarkobject(g, obj2gco(t)); }
#define markobjectN(g,t) { if (t) markobject(g,t); }
static void reallymarkobject (global_State *g, GCObject *o);
static lu_mem atomic (lua_State *L);
static void entersweep (lua_State *L);
#define gnodelast(h) gnode(h, cast_sizet(sizenode(h)))
static GCObject **getgclist (GCObject *o) {
switch (o->tt) {
case LUA_VTABLE: return &gco2t(o)->gclist;
case LUA_VLCL: return &gco2lcl(o)->gclist;
case LUA_VCCL: return &gco2ccl(o)->gclist;
case LUA_VTHREAD: return &gco2th(o)->gclist;
case LUA_VPROTO: return &gco2p(o)->gclist;
case LUA_VUSERDATA: {
Udata *u = gco2u(o);
lua_assert(u->nuvalue > 0);
return &u->gclist;
}
default: lua_assert(0); return 0;
}
}
#define linkgclist(o,p) ((o)->gclist = (p), (p) = obj2gco(o))
#define linkobjgclist(o,p) (*getgclist(o) = (p), (p) = obj2gco(o))
static void clearkey (Node *n) {
lua_assert(isempty(gval(n)));
if (keyiswhite(n))
setdeadkey(n);
}
static int iscleared (global_State *g, const GCObject *o) {
if (o == NULL) return 0;
else if (novariant(o->tt) == LUA_TSTRING) {
markobject(g, o);
return 0;
}
else return iswhite(o);
}
void luaC_barrier_ (lua_State *L, GCObject *o, GCObject *v) {
global_State *g = G(L);
lua_assert(isblack(o) && iswhite(v) && !isdead(g, v) && !isdead(g, o));
if (keepinvariant(g)) {
reallymarkobject(g, v);
if (isold(o)) {
lua_assert(!isold(v));
setage(v, G_OLD0);
}
}
else {
lua_assert(issweepphase(g));
makewhite(g, o);
}
}
void luaC_barrierback_ (lua_State *L, GCObject *o) {
global_State *g = G(L);
lua_assert(isblack(o) && !isdead(g, o));
lua_assert(g->gckind != KGC_GEN || (isold(o) && getage(o) != G_TOUCHED1));
if (getage(o) != G_TOUCHED2)
linkobjgclist(o, g->grayagain);
black2gray(o);
setage(o, G_TOUCHED1);
}
void luaC_fix (lua_State *L, GCObject *o) {
global_State *g = G(L);
lua_assert(g->allgc == o);
white2gray(o);
setage(o, G_OLD);
g->allgc = o->next;
o->next = g->fixedgc;
g->fixedgc = o;
}
GCObject *luaC_newobj (lua_State *L, int tt, size_t sz) {
global_State *g = G(L);
GCObject *o = cast(GCObject *, luaM_newobject(L, novariant(tt), sz));
o->marked = luaC_white(g);
o->tt = tt;
o->next = g->allgc;
g->allgc = o;
return o;
}
static void reallymarkobject (global_State *g, GCObject *o) {
white2gray(o);
switch (o->tt) {
case LUA_VSHRSTR:
case LUA_VLNGSTR: {
gray2black(o);
break;
}
case LUA_VUPVAL: {
UpVal *uv = gco2upv(o);
if (!upisopen(uv))
gray2black(o);
markvalue(g, uv->v);
break;
}
case LUA_VUSERDATA: {
Udata *u = gco2u(o);
if (u->nuvalue == 0) {
markobjectN(g, u->metatable);
gray2black(o);
break;
}
}
case LUA_VLCL: case LUA_VCCL: case LUA_VTABLE:
case LUA_VTHREAD: case LUA_VPROTO: {
linkobjgclist(o, g->gray);
break;
}
default: lua_assert(0); break;
}
}
static void markmt (global_State *g) {
int i;
for (i=0; i < LUA_NUMTAGS; i++)
markobjectN(g, g->mt[i]);
}
static lu_mem markbeingfnz (global_State *g) {
GCObject *o;
lu_mem count = 0;
for (o = g->tobefnz; o != NULL; o = o->next) {
count++;
markobject(g, o);
}
return count;
}
static int remarkupvals (global_State *g) {
lua_State *thread;
lua_State **p = &g->twups;
int work = 0;
while ((thread = *p) != NULL) {
work++;
lua_assert(!isblack(thread));
if (isgray(thread) && thread->openupval != NULL)
p = &thread->twups;
else {
UpVal *uv;
*p = thread->twups;
thread->twups = thread;
for (uv = thread->openupval; uv != NULL; uv = uv->u.open.next) {
work++;
if (!iswhite(uv))
markvalue(g, uv->v);
}
}
}
return work;
}
static void restartcollection (global_State *g) {
g->gray = g->grayagain = NULL;
g->weak = g->allweak = g->ephemeron = NULL;
markobject(g, g->mainthread);
markvalue(g, &g->l_registry);
markmt(g);
markbeingfnz(g);
}
static void traverseweakvalue (global_State *g, Table *h) {
Node *n, *limit = gnodelast(h);
int hasclears = (h->alimit > 0);
for (n = gnode(h, 0); n < limit; n++) {
if (isempty(gval(n)))
clearkey(n);
else {
lua_assert(!keyisnil(n));
markkey(g, n);
if (!hasclears && iscleared(g, gcvalueN(gval(n))))
hasclears = 1;
}
}
if (g->gcstate == GCSatomic && hasclears)
linkgclist(h, g->weak);
else
linkgclist(h, g->grayagain);
}
static int traverseephemeron (global_State *g, Table *h, int inv) {
int marked = 0;
int hasclears = 0;
int hasww = 0;
unsigned int i;
unsigned int asize = luaH_realasize(h);
unsigned int nsize = sizenode(h);
for (i = 0; i < asize; i++) {
if (valiswhite(&h->array[i])) {
marked = 1;
reallymarkobject(g, gcvalue(&h->array[i]));
}
}
for (i = 0; i < nsize; i++) {
Node *n = inv ? gnode(h, nsize - 1 - i) : gnode(h, i);
if (isempty(gval(n)))
clearkey(n);
else if (iscleared(g, gckeyN(n))) {
hasclears = 1;
if (valiswhite(gval(n)))
hasww = 1;
}
else if (valiswhite(gval(n))) {
marked = 1;
reallymarkobject(g, gcvalue(gval(n)));
}
}
if (g->gcstate == GCSpropagate)
linkgclist(h, g->grayagain);
else if (hasww)
linkgclist(h, g->ephemeron);
else if (hasclears)
linkgclist(h, g->allweak);
else if (g->gckind == KGC_GEN)
linkgclist(h, g->grayagain);
else
gray2black(h);
return marked;
}
static void traversestrongtable (global_State *g, Table *h) {
Node *n, *limit = gnodelast(h);
unsigned int i;
unsigned int asize = luaH_realasize(h);
for (i = 0; i < asize; i++)
markvalue(g, &h->array[i]);
for (n = gnode(h, 0); n < limit; n++) {
if (isempty(gval(n)))
clearkey(n);
else {
lua_assert(!keyisnil(n));
markkey(g, n);
markvalue(g, gval(n));
}
}
if (g->gckind == KGC_GEN) {
linkgclist(h, g->grayagain);
black2gray(h);
}
}
static lu_mem traversetable (global_State *g, Table *h) {
const char *weakkey, *weakvalue;
const TValue *mode = gfasttm(g, h->metatable, TM_MODE);
markobjectN(g, h->metatable);
if (mode && ttisstring(mode) &&
(cast_void(weakkey = strchr(svalue(mode), 'k')),
cast_void(weakvalue = strchr(svalue(mode), 'v')),
(weakkey || weakvalue))) {
black2gray(h);
if (!weakkey)
traverseweakvalue(g, h);
else if (!weakvalue)
traverseephemeron(g, h, 0);
else
linkgclist(h, g->allweak);
}
else
traversestrongtable(g, h);
return 1 + h->alimit + 2 * allocsizenode(h);
}
static int traverseudata (global_State *g, Udata *u) {
int i;
markobjectN(g, u->metatable);
for (i = 0; i < u->nuvalue; i++)
markvalue(g, &u->uv[i].uv);
if (g->gckind == KGC_GEN) {
linkgclist(u, g->grayagain);
black2gray(u);
}
return 1 + u->nuvalue;
}
static int traverseproto (global_State *g, Proto *f) {
int i;
markobjectN(g, f->source);
for (i = 0; i < f->sizek; i++)
markvalue(g, &f->k[i]);
for (i = 0; i < f->sizeupvalues; i++)
markobjectN(g, f->upvalues[i].name);
for (i = 0; i < f->sizep; i++)
markobjectN(g, f->p[i]);
for (i = 0; i < f->sizelocvars; i++)
markobjectN(g, f->locvars[i].varname);
return 1 + f->sizek + f->sizeupvalues + f->sizep + f->sizelocvars;
}
static int traverseCclosure (global_State *g, CClosure *cl) {
int i;
for (i = 0; i < cl->nupvalues; i++)
markvalue(g, &cl->upvalue[i]);
return 1 + cl->nupvalues;
}
static int traverseLclosure (global_State *g, LClosure *cl) {
int i;
markobjectN(g, cl->p);
for (i = 0; i < cl->nupvalues; i++) {
UpVal *uv = cl->upvals[i];
markobjectN(g, uv);
}
return 1 + cl->nupvalues;
}
static int traversethread (global_State *g, lua_State *th) {
UpVal *uv;
StkId o = th->stack;
if (o == NULL)
return 1;
lua_assert(g->gcstate == GCSatomic ||
th->openupval == NULL || isintwups(th));
for (; o < th->top; o++)
markvalue(g, s2v(o));
for (uv = th->openupval; uv != NULL; uv = uv->u.open.next)
markobject(g, uv);
if (g->gcstate == GCSatomic) {
StkId lim = th->stack + th->stacksize;
for (; o < lim; o++)
setnilvalue(s2v(o));
if (!isintwups(th) && th->openupval != NULL) {
th->twups = g->twups;
g->twups = th;
}
}
else if (!g->gcemergency)
luaD_shrinkstack(th);
return 1 + th->stacksize;
}
static lu_mem propagatemark (global_State *g) {
GCObject *o = g->gray;
gray2black(o);
g->gray = *getgclist(o);
switch (o->tt) {
case LUA_VTABLE: return traversetable(g, gco2t(o));
case LUA_VUSERDATA: return traverseudata(g, gco2u(o));
case LUA_VLCL: return traverseLclosure(g, gco2lcl(o));
case LUA_VCCL: return traverseCclosure(g, gco2ccl(o));
case LUA_VPROTO: return traverseproto(g, gco2p(o));
case LUA_VTHREAD: {
lua_State *th = gco2th(o);
linkgclist(th, g->grayagain);
black2gray(o);
return traversethread(g, th);
}
default: lua_assert(0); return 0;
}
}
static lu_mem propagateall (global_State *g) {
lu_mem tot = 0;
while (g->gray)
tot += propagatemark(g);
return tot;
}
static void convergeephemerons (global_State *g) {
int changed;
int dir = 0;
do {
GCObject *w;
GCObject *next = g->ephemeron;
g->ephemeron = NULL;
changed = 0;
while ((w = next) != NULL) {
next = gco2t(w)->gclist;
if (traverseephemeron(g, gco2t(w), dir)) {
propagateall(g);
changed = 1;
}
}
dir = !dir;
} while (changed);
}
static void clearbykeys (global_State *g, GCObject *l) {
for (; l; l = gco2t(l)->gclist) {
Table *h = gco2t(l);
Node *limit = gnodelast(h);
Node *n;
for (n = gnode(h, 0); n < limit; n++) {
if (iscleared(g, gckeyN(n)))
setempty(gval(n));
if (isempty(gval(n)))
clearkey(n);
}
}
}
static void clearbyvalues (global_State *g, GCObject *l, GCObject *f) {
for (; l != f; l = gco2t(l)->gclist) {
Table *h = gco2t(l);
Node *n, *limit = gnodelast(h);
unsigned int i;
unsigned int asize = luaH_realasize(h);
for (i = 0; i < asize; i++) {
TValue *o = &h->array[i];
if (iscleared(g, gcvalueN(o)))
setempty(o);
}
for (n = gnode(h, 0); n < limit; n++) {
if (iscleared(g, gcvalueN(gval(n))))
setempty(gval(n));
if (isempty(gval(n)))
clearkey(n);
}
}
}
static void freeupval (lua_State *L, UpVal *uv) {
if (upisopen(uv))
luaF_unlinkupval(uv);
luaM_free(L, uv);
}
static void freeobj (lua_State *L, GCObject *o) {
switch (o->tt) {
case LUA_VPROTO:
luaF_freeproto(L, gco2p(o));
break;
case LUA_VUPVAL:
freeupval(L, gco2upv(o));
break;
case LUA_VLCL:
luaM_freemem(L, o, sizeLclosure(gco2lcl(o)->nupvalues));
break;
case LUA_VCCL:
luaM_freemem(L, o, sizeCclosure(gco2ccl(o)->nupvalues));
break;
case LUA_VTABLE:
luaH_free(L, gco2t(o));
break;
case LUA_VTHREAD:
luaE_freethread(L, gco2th(o));
break;
case LUA_VUSERDATA: {
Udata *u = gco2u(o);
luaM_freemem(L, o, sizeudata(u->nuvalue, u->len));
break;
}
case LUA_VSHRSTR:
luaS_remove(L, gco2ts(o));
luaM_freemem(L, o, sizelstring(gco2ts(o)->shrlen));
break;
case LUA_VLNGSTR:
luaM_freemem(L, o, sizelstring(gco2ts(o)->u.lnglen));
break;
default: lua_assert(0);
}
}
static GCObject **sweeplist (lua_State *L, GCObject **p, int countin,
int *countout) {
global_State *g = G(L);
int ow = otherwhite(g);
int i;
int white = luaC_white(g);
for (i = 0; *p != NULL && i < countin; i++) {
GCObject *curr = *p;
int marked = curr->marked;
if (isdeadm(ow, marked)) {
*p = curr->next;
freeobj(L, curr);
}
else {
curr->marked = cast_byte((marked & maskcolors) | white);
p = &curr->next;
}
}
if (countout)
*countout = i;
return (*p == NULL) ? NULL : p;
}
static GCObject **sweeptolive (lua_State *L, GCObject **p) {
GCObject **old = p;
do {
p = sweeplist(L, p, 1, NULL);
} while (p == old);
return p;
}
static void checkSizes (lua_State *L, global_State *g) {
if (!g->gcemergency) {
if (g->strt.nuse < g->strt.size / 4) {
l_mem olddebt = g->GCdebt;
luaS_resize(L, g->strt.size / 2);
g->GCestimate += g->GCdebt - olddebt;
}
}
}
static GCObject *udata2finalize (global_State *g) {
GCObject *o = g->tobefnz;
lua_assert(tofinalize(o));
g->tobefnz = o->next;
o->next = g->allgc;
g->allgc = o;
resetbit(o->marked, FINALIZEDBIT);
if (issweepphase(g))
makewhite(g, o);
return o;
}
static void dothecall (lua_State *L, void *ud) {
UNUSED(ud);
luaD_callnoyield(L, L->top - 2, 0);
}
static void GCTM (lua_State *L) {
global_State *g = G(L);
const TValue *tm;
TValue v;
lua_assert(!g->gcemergency);
setgcovalue(L, &v, udata2finalize(g));
tm = luaT_gettmbyobj(L, &v, TM_GC);
if (!notm(tm)) {
int status;
lu_byte oldah = L->allowhook;
int running = g->gcrunning;
L->allowhook = 0;
g->gcrunning = 0;
setobj2s(L, L->top++, tm);
setobj2s(L, L->top++, &v);
L->ci->callstatus |= CIST_FIN;
status = luaD_pcall(L, dothecall, NULL, savestack(L, L->top - 2), 0);
L->ci->callstatus &= ~CIST_FIN;
L->allowhook = oldah;
g->gcrunning = running;
if (unlikely(status != LUA_OK)) {
luaE_warnerror(L, "__gc metamethod");
L->top--;
}
}
}
static int runafewfinalizers (lua_State *L, int n) {
global_State *g = G(L);
int i;
for (i = 0; i < n && g->tobefnz; i++)
GCTM(L);
return i;
}
static void callallpendingfinalizers (lua_State *L) {
global_State *g = G(L);
while (g->tobefnz)
GCTM(L);
}
static GCObject **findlast (GCObject **p) {
while (*p != NULL)
p = &(*p)->next;
return p;
}
static void separatetobefnz (global_State *g, int all) {
GCObject *curr;
GCObject **p = &g->finobj;
GCObject **lastnext = findlast(&g->tobefnz);
while ((curr = *p) != g->finobjold) {
lua_assert(tofinalize(curr));
if (!(iswhite(curr) || all))
p = &curr->next;
else {
if (curr == g->finobjsur)
g->finobjsur = curr->next;
*p = curr->next;
curr->next = *lastnext;
*lastnext = curr;
lastnext = &curr->next;
}
}
}
void luaC_checkfinalizer (lua_State *L, GCObject *o, Table *mt) {
global_State *g = G(L);
if (tofinalize(o) ||
gfasttm(g, mt, TM_GC) == NULL)
return;
else {
GCObject **p;
if (issweepphase(g)) {
makewhite(g, o);
if (g->sweepgc == &o->next)
g->sweepgc = sweeptolive(L, g->sweepgc);
}
else {
if (o == g->survival)
g->survival = o->next;
if (o == g->old)
g->old = o->next;
if (o == g->reallyold)
g->reallyold = o->next;
}
for (p = &g->allgc; *p != o; p = &(*p)->next) { }
*p = o->next;
o->next = g->finobj;
g->finobj = o;
l_setbit(o->marked, FINALIZEDBIT);
}
}
static void setpause (global_State *g);
#define maskgencolors (~(bitmask(BLACKBIT) | WHITEBITS))
static void sweep2old (lua_State *L, GCObject **p) {
GCObject *curr;
while ((curr = *p) != NULL) {
if (iswhite(curr)) {
lua_assert(isdead(G(L), curr));
*p = curr->next;
freeobj(L, curr);
}
else {
setage(curr, G_OLD);
p = &curr->next;
}
}
}
static GCObject **sweepgen (lua_State *L, global_State *g, GCObject **p,
GCObject *limit) {
static const lu_byte nextage[] = {
G_SURVIVAL,
G_OLD1,
G_OLD1,
G_OLD,
G_OLD,
G_TOUCHED1,
G_TOUCHED2
};
int white = luaC_white(g);
GCObject *curr;
while ((curr = *p) != limit) {
if (iswhite(curr)) {
lua_assert(!isold(curr) && isdead(g, curr));
*p = curr->next;
freeobj(L, curr);
}
else {
if (getage(curr) == G_NEW)
curr->marked = cast_byte((curr->marked & maskgencolors) | white);
setage(curr, nextage[getage(curr)]);
p = &curr->next;
}
}
return p;
}
static void whitelist (global_State *g, GCObject *p) {
int white = luaC_white(g);
for (; p != NULL; p = p->next)
p->marked = cast_byte((p->marked & maskcolors) | white);
}
static GCObject **correctgraylist (GCObject **p) {
GCObject *curr;
while ((curr = *p) != NULL) {
switch (curr->tt) {
case LUA_VTABLE: case LUA_VUSERDATA: {
GCObject **next = getgclist(curr);
if (getage(curr) == G_TOUCHED1) {
lua_assert(isgray(curr));
gray2black(curr);
changeage(curr, G_TOUCHED1, G_TOUCHED2);
p = next;
}
else {
if (!iswhite(curr)) {
lua_assert(isold(curr));
if (getage(curr) == G_TOUCHED2)
changeage(curr, G_TOUCHED2, G_OLD);
gray2black(curr);
}
*p = *next;
}
break;
}
case LUA_VTHREAD: {
lua_State *th = gco2th(curr);
lua_assert(!isblack(th));
if (iswhite(th))
*p = th->gclist;
else
p = &th->gclist;
break;
}
default: lua_assert(0);
}
}
return p;
}
static void correctgraylists (global_State *g) {
GCObject **list = correctgraylist(&g->grayagain);
*list = g->weak; g->weak = NULL;
list = correctgraylist(list);
*list = g->allweak; g->allweak = NULL;
list = correctgraylist(list);
*list = g->ephemeron; g->ephemeron = NULL;
correctgraylist(list);
}
static void markold (global_State *g, GCObject *from, GCObject *to) {
GCObject *p;
for (p = from; p != to; p = p->next) {
if (getage(p) == G_OLD1) {
lua_assert(!iswhite(p));
if (isblack(p)) {
black2gray(p);
reallymarkobject(g, p);
}
}
}
}
static void finishgencycle (lua_State *L, global_State *g) {
correctgraylists(g);
checkSizes(L, g);
g->gcstate = GCSpropagate;
if (!g->gcemergency)
callallpendingfinalizers(L);
}
static void youngcollection (lua_State *L, global_State *g) {
GCObject **psurvival;
lua_assert(g->gcstate == GCSpropagate);
markold(g, g->survival, g->reallyold);
markold(g, g->finobj, g->finobjrold);
atomic(L);
psurvival = sweepgen(L, g, &g->allgc, g->survival);
sweepgen(L, g, psurvival, g->reallyold);
g->reallyold = g->old;
g->old = *psurvival;
g->survival = g->allgc;
psurvival = sweepgen(L, g, &g->finobj, g->finobjsur);
sweepgen(L, g, psurvival, g->finobjrold);
g->finobjrold = g->finobjold;
g->finobjold = *psurvival;
g->finobjsur = g->finobj;
sweepgen(L, g, &g->tobefnz, NULL);
finishgencycle(L, g);
}
static void atomic2gen (lua_State *L, global_State *g) {
sweep2old(L, &g->allgc);
g->reallyold = g->old = g->survival = g->allgc;
sweep2old(L, &g->finobj);
g->finobjrold = g->finobjold = g->finobjsur = g->finobj;
sweep2old(L, &g->tobefnz);
g->gckind = KGC_GEN;
g->lastatomic = 0;
g->GCestimate = gettotalbytes(g);
finishgencycle(L, g);
}
static lu_mem entergen (lua_State *L, global_State *g) {
lu_mem numobjs;
luaC_runtilstate(L, bitmask(GCSpause));
luaC_runtilstate(L, bitmask(GCSpropagate));
numobjs = atomic(L);
atomic2gen(L, g);
return numobjs;
}
static void enterinc (global_State *g) {
whitelist(g, g->allgc);
g->reallyold = g->old = g->survival = NULL;
whitelist(g, g->finobj);
whitelist(g, g->tobefnz);
g->finobjrold = g->finobjold = g->finobjsur = NULL;
g->gcstate = GCSpause;
g->gckind = KGC_INC;
g->lastatomic = 0;
}
void luaC_changemode (lua_State *L, int newmode) {
global_State *g = G(L);
if (newmode != g->gckind) {
if (newmode == KGC_GEN)
entergen(L, g);
else
enterinc(g);
}
g->lastatomic = 0;
}
static lu_mem fullgen (lua_State *L, global_State *g) {
enterinc(g);
return entergen(L, g);
}
static void setminordebt (global_State *g) {
luaE_setdebt(g, -(cast(l_mem, (gettotalbytes(g) / 100)) * g->genminormul));
}
static void stepgenfull (lua_State *L, global_State *g) {
lu_mem newatomic;
lu_mem lastatomic = g->lastatomic;
if (g->gckind == KGC_GEN)
enterinc(g);
luaC_runtilstate(L, bitmask(GCSpropagate));
newatomic = atomic(L);
if (newatomic < lastatomic + (lastatomic >> 3)) {
atomic2gen(L, g);
setminordebt(g);
}
else {
g->GCestimate = gettotalbytes(g); ;
entersweep(L);
luaC_runtilstate(L, bitmask(GCSpause));
setpause(g);
g->lastatomic = newatomic;
}
}
static void genstep (lua_State *L, global_State *g) {
if (g->lastatomic != 0)
stepgenfull(L, g);
else {
lu_mem majorbase = g->GCestimate;
lu_mem majorinc = (majorbase / 100) * getgcparam(g->genmajormul);
if (g->GCdebt > 0 && gettotalbytes(g) > majorbase + majorinc) {
lu_mem numobjs = fullgen(L, g);
if (gettotalbytes(g) < majorbase + (majorinc / 2)) {
setminordebt(g);
}
else {
g->lastatomic = numobjs;
setpause(g);
}
}
else {
youngcollection(L, g);
setminordebt(g);
g->GCestimate = majorbase;
}
}
lua_assert(isdecGCmodegen(g));
}
static void setpause (global_State *g) {
l_mem threshold, debt;
int pause = getgcparam(g->gcpause);
l_mem estimate = g->GCestimate / PAUSEADJ;
lua_assert(estimate > 0);
threshold = (pause < MAX_LMEM / estimate)
? estimate * pause
: MAX_LMEM;
debt = gettotalbytes(g) - threshold;
if (debt > 0) debt = 0;
luaE_setdebt(g, debt);
}
static void entersweep (lua_State *L) {
global_State *g = G(L);
g->gcstate = GCSswpallgc;
lua_assert(g->sweepgc == NULL);
g->sweepgc = sweeptolive(L, &g->allgc);
}
static void deletelist (lua_State *L, GCObject *p, GCObject *limit) {
while (p != limit) {
GCObject *next = p->next;
freeobj(L, p);
p = next;
}
}
void luaC_freeallobjects (lua_State *L) {
global_State *g = G(L);
luaC_changemode(L, KGC_INC);
separatetobefnz(g, 1);
lua_assert(g->finobj == NULL);
callallpendingfinalizers(L);
deletelist(L, g->allgc, obj2gco(g->mainthread));
deletelist(L, g->finobj, NULL);
deletelist(L, g->fixedgc, NULL);
lua_assert(g->strt.nuse == 0);
}
static lu_mem atomic (lua_State *L) {
global_State *g = G(L);
lu_mem work = 0;
GCObject *origweak, *origall;
GCObject *grayagain = g->grayagain;
g->grayagain = NULL;
lua_assert(g->ephemeron == NULL && g->weak == NULL);
lua_assert(!iswhite(g->mainthread));
g->gcstate = GCSatomic;
markobject(g, L);
markvalue(g, &g->l_registry);
markmt(g);
work += propagateall(g);
work += remarkupvals(g);
work += propagateall(g);
g->gray = grayagain;
work += propagateall(g);
convergeephemerons(g);
clearbyvalues(g, g->weak, NULL);
clearbyvalues(g, g->allweak, NULL);
origweak = g->weak; origall = g->allweak;
separatetobefnz(g, 0);
work += markbeingfnz(g);
work += propagateall(g);
convergeephemerons(g);
clearbykeys(g, g->ephemeron);
clearbykeys(g, g->allweak);
clearbyvalues(g, g->weak, origweak);
clearbyvalues(g, g->allweak, origall);
luaS_clearcache(g);
g->currentwhite = cast_byte(otherwhite(g));
lua_assert(g->gray == NULL);
return work;
}
static int sweepstep (lua_State *L, global_State *g,
int nextstate, GCObject **nextlist) {
if (g->sweepgc) {
l_mem olddebt = g->GCdebt;
int count;
g->sweepgc = sweeplist(L, g->sweepgc, GCSWEEPMAX, &count);
g->GCestimate += g->GCdebt - olddebt;
return count;
}
else {
g->gcstate = nextstate;
g->sweepgc = nextlist;
return 0;
}
}
static lu_mem singlestep (lua_State *L) {
global_State *g = G(L);
switch (g->gcstate) {
case GCSpause: {
restartcollection(g);
g->gcstate = GCSpropagate;
return 1;
}
case GCSpropagate: {
if (g->gray == NULL) {
g->gcstate = GCSenteratomic;
return 0;
}
else
return propagatemark(g);
}
case GCSenteratomic: {
lu_mem work = atomic(L);
entersweep(L);
g->GCestimate = gettotalbytes(g); ;
return work;
}
case GCSswpallgc: {
return sweepstep(L, g, GCSswpfinobj, &g->finobj);
}
case GCSswpfinobj: {
return sweepstep(L, g, GCSswptobefnz, &g->tobefnz);
}
case GCSswptobefnz: {
return sweepstep(L, g, GCSswpend, NULL);
}
case GCSswpend: {
checkSizes(L, g);
g->gcstate = GCScallfin;
return 0;
}
case GCScallfin: {
if (g->tobefnz && !g->gcemergency) {
int n = runafewfinalizers(L, GCFINMAX);
return n * GCFINALIZECOST;
}
else {
g->gcstate = GCSpause;
return 0;
}
}
default: lua_assert(0); return 0;
}
}
void luaC_runtilstate (lua_State *L, int statesmask) {
global_State *g = G(L);
while (!testbit(statesmask, g->gcstate))
singlestep(L);
}
static void incstep (lua_State *L, global_State *g) {
int stepmul = (getgcparam(g->gcstepmul) | 1);
l_mem debt = (g->GCdebt / WORK2MEM) * stepmul;
l_mem stepsize = (g->gcstepsize <= log2maxs(l_mem))
? ((cast(l_mem, 1) << g->gcstepsize) / WORK2MEM) * stepmul
: MAX_LMEM;
do {
lu_mem work = singlestep(L);
debt -= work;
} while (debt > -stepsize && g->gcstate != GCSpause);
if (g->gcstate == GCSpause)
setpause(g);
else {
debt = (debt / stepmul) * WORK2MEM;
luaE_setdebt(g, debt);
}
}
void luaC_step (lua_State *L) {
global_State *g = G(L);
lua_assert(!g->gcemergency);
if (g->gcrunning) {
if(isdecGCmodegen(g))
genstep(L, g);
else
incstep(L, g);
}
}
static void fullinc (lua_State *L, global_State *g) {
if (keepinvariant(g))
entersweep(L);
luaC_runtilstate(L, bitmask(GCSpause));
luaC_runtilstate(L, bitmask(GCScallfin));
lua_assert(g->GCestimate == gettotalbytes(g));
luaC_runtilstate(L, bitmask(GCSpause));
setpause(g);
}
void luaC_fullgc (lua_State *L, int isemergency) {
global_State *g = G(L);
lua_assert(!g->gcemergency);
g->gcemergency = isemergency;
if (g->gckind == KGC_INC)
fullinc(L, g);
else
fullgen(L, g);
g->gcemergency = 0;
}