#define lj_opt_mem_c
#define LUA_CORE
#include "lj_obj.h"
#if LJ_HASJIT
#include "lj_tab.h"
#include "lj_ir.h"
#include "lj_jit.h"
#include "lj_iropt.h"
#include "lj_ircall.h"
#define IR(ref) (&J->cur.ir[(ref)])
#define fins (&J->fold.ins)
#define fleft (J->fold.left)
#define fright (J->fold.right)
typedef enum {
ALIAS_NO,
ALIAS_MAY,
ALIAS_MUST
} AliasRet;
static AliasRet aa_escape(jit_State *J, IRIns *ir, IRIns *stop)
{
IRRef ref = (IRRef)(ir - J->cur.ir);
for (ir++; ir < stop; ir++)
if (ir->op2 == ref &&
(ir->o == IR_ASTORE || ir->o == IR_HSTORE ||
ir->o == IR_USTORE || ir->o == IR_FSTORE))
return ALIAS_MAY;
return ALIAS_NO;
}
static AliasRet aa_table(jit_State *J, IRRef ta, IRRef tb)
{
IRIns *taba = IR(ta), *tabb = IR(tb);
int newa, newb;
lua_assert(ta != tb);
lua_assert(irt_istab(taba->t) && irt_istab(tabb->t));
newa = (taba->o == IR_TNEW || taba->o == IR_TDUP);
newb = (tabb->o == IR_TNEW || tabb->o == IR_TDUP);
if (newa && newb)
return ALIAS_NO;
if (newb) {
IRIns *tmp = taba; taba = tabb; tabb = tmp;
} else if (!newa) {
return ALIAS_MAY;
}
return aa_escape(J, taba, tabb);
}
static AliasRet aa_ahref(jit_State *J, IRIns *refa, IRIns *refb)
{
IRRef ka = refa->op2;
IRRef kb = refb->op2;
IRIns *keya, *keyb;
IRRef ta, tb;
if (refa == refb)
return ALIAS_MUST;
keya = IR(ka);
if (keya->o == IR_KSLOT) { ka = keya->op1; keya = IR(ka); }
keyb = IR(kb);
if (keyb->o == IR_KSLOT) { kb = keyb->op1; keyb = IR(kb); }
ta = (refa->o==IR_HREFK || refa->o==IR_AREF) ? IR(refa->op1)->op1 : refa->op1;
tb = (refb->o==IR_HREFK || refb->o==IR_AREF) ? IR(refb->op1)->op1 : refb->op1;
if (ka == kb) {
if (ta == tb)
return ALIAS_MUST;
else
return aa_table(J, ta, tb);
}
if (irref_isk(ka) && irref_isk(kb))
return ALIAS_NO;
if (refa->o == IR_AREF) {
int32_t ofsa = 0, ofsb = 0;
IRRef basea = ka, baseb = kb;
lua_assert(refb->o == IR_AREF);
if (keya->o == IR_ADD && irref_isk(keya->op2)) {
basea = keya->op1;
ofsa = IR(keya->op2)->i;
if (basea == kb && ofsa != 0)
return ALIAS_NO;
}
if (keyb->o == IR_ADD && irref_isk(keyb->op2)) {
baseb = keyb->op1;
ofsb = IR(keyb->op2)->i;
if (ka == baseb && ofsb != 0)
return ALIAS_NO;
}
if (basea == baseb && ofsa != ofsb)
return ALIAS_NO;
} else {
lua_assert((refa->o==IR_HREF || refa->o==IR_HREFK || refa->o==IR_NEWREF) &&
(refb->o==IR_HREF || refb->o==IR_HREFK || refb->o==IR_NEWREF));
if (!irt_sametype(keya->t, keyb->t))
return ALIAS_NO;
}
if (ta == tb)
return ALIAS_MAY;
else
return aa_table(J, ta, tb);
}
static TRef fwd_ahload(jit_State *J, IRRef xref)
{
IRIns *xr = IR(xref);
IRRef lim = xref;
IRRef ref;
ref = J->chain[fins->o+IRDELTA_L2S];
while (ref > xref) {
IRIns *store = IR(ref);
switch (aa_ahref(J, xr, IR(store->op1))) {
case ALIAS_NO: break;
case ALIAS_MAY: lim = ref; goto cselim;
case ALIAS_MUST: return store->op2;
}
ref = store->prev;
}
{
IRIns *ir = (xr->o == IR_HREFK || xr->o == IR_AREF) ? IR(xr->op1) : xr;
IRRef tab = ir->op1;
ir = IR(tab);
if (ir->o == IR_TNEW || (ir->o == IR_TDUP && irref_isk(xr->op2))) {
if (xr->o == IR_AREF) {
IRRef ref2 = J->chain[IR_NEWREF];
while (ref2 > tab) {
IRIns *newref = IR(ref2);
if (irt_isnum(IR(newref->op2)->t))
goto cselim;
ref2 = newref->prev;
}
}
while (ref > tab) {
IRIns *store = IR(ref);
switch (aa_ahref(J, xr, IR(store->op1))) {
case ALIAS_NO: break;
case ALIAS_MAY: goto cselim;
case ALIAS_MUST: return store->op2;
}
ref = store->prev;
}
if (ir->o == IR_TNEW && !irt_isnil(fins->t))
return 0;
if (irt_ispri(fins->t)) {
return TREF_PRI(irt_type(fins->t));
} else if (irt_isnum(fins->t) || (LJ_DUALNUM && irt_isint(fins->t)) ||
irt_isstr(fins->t)) {
TValue keyv;
cTValue *tv;
IRIns *key = IR(xr->op2);
if (key->o == IR_KSLOT) key = IR(key->op1);
lj_ir_kvalue(J->L, &keyv, key);
tv = lj_tab_get(J->L, ir_ktab(IR(ir->op1)), &keyv);
lua_assert(itype2irt(tv) == irt_type(fins->t));
if (irt_isnum(fins->t))
return lj_ir_knum_u64(J, tv->u64);
else if (LJ_DUALNUM && irt_isint(fins->t))
return lj_ir_kint(J, intV(tv));
else
return lj_ir_kstr(J, strV(tv));
}
}
}
cselim:
ref = J->chain[fins->o];
while (ref > lim) {
IRIns *load = IR(ref);
if (load->op1 == xref)
return ref;
ref = load->prev;
}
return 0;
}
static TRef fwd_aload_reassoc(jit_State *J)
{
IRIns *irx = IR(fins->op1);
IRIns *key = IR(irx->op2);
if (key->o == IR_ADD && irref_isk(key->op2)) {
IRIns *add2 = IR(key->op1);
if (add2->o == IR_ADD && irref_isk(add2->op2) &&
IR(key->op2)->i == -IR(add2->op2)->i) {
IRRef ref = J->chain[IR_AREF];
IRRef lim = add2->op1;
if (irx->op1 > lim) lim = irx->op1;
while (ref > lim) {
IRIns *ir = IR(ref);
if (ir->op1 == irx->op1 && ir->op2 == add2->op1)
return fwd_ahload(J, ref);
ref = ir->prev;
}
}
}
return 0;
}
TRef LJ_FASTCALL lj_opt_fwd_aload(jit_State *J)
{
IRRef ref;
if ((ref = fwd_ahload(J, fins->op1)) ||
(ref = fwd_aload_reassoc(J)))
return ref;
return EMITFOLD;
}
TRef LJ_FASTCALL lj_opt_fwd_hload(jit_State *J)
{
IRRef ref = fwd_ahload(J, fins->op1);
if (ref)
return ref;
return EMITFOLD;
}
TRef LJ_FASTCALL lj_opt_fwd_hrefk(jit_State *J)
{
IRRef tab = fleft->op1;
IRRef ref = J->chain[IR_NEWREF];
while (ref > tab) {
IRIns *newref = IR(ref);
if (tab == newref->op1) {
if (fright->op1 == newref->op2)
return ref;
else
goto docse;
} else if (aa_table(J, tab, newref->op1) != ALIAS_NO) {
goto docse;
}
ref = newref->prev;
}
if (IR(tab)->o == IR_TDUP)
fins->t.irt &= ~IRT_GUARD;
docse:
return CSEFOLD;
}
int LJ_FASTCALL lj_opt_fwd_href_nokey(jit_State *J)
{
IRRef lim = fins->op1;
IRRef ref;
if (irt_isnum(fright->t) && J->chain[IR_NEWREF] > lim) {
ref = J->chain[IR_ASTORE];
while (ref > lim) {
if (ref < J->chain[IR_NEWREF])
return 0;
ref = IR(ref)->prev;
}
}
ref = J->chain[IR_HSTORE];
while (ref > lim) {
IRIns *store = IR(ref);
if (aa_ahref(J, fins, IR(store->op1)) != ALIAS_NO)
return 0;
ref = store->prev;
}
return 1;
}
static int fwd_aa_tab_clear(jit_State *J, IRRef lim, IRRef ta)
{
IRRef ref = J->chain[IR_CALLS];
while (ref > lim) {
IRIns *calls = IR(ref);
if (calls->op2 == IRCALL_lj_tab_clear &&
(ta == calls->op1 || aa_table(J, ta, calls->op1) != ALIAS_NO))
return 0;
ref = calls->prev;
}
return 1;
}
int LJ_FASTCALL lj_opt_fwd_tptr(jit_State *J, IRRef lim)
{
IRRef ta = fins->op1;
IRRef ref = J->chain[IR_NEWREF];
while (ref > lim) {
IRIns *newref = IR(ref);
if (ta == newref->op1 || aa_table(J, ta, newref->op1) != ALIAS_NO)
return 0;
ref = newref->prev;
}
return fwd_aa_tab_clear(J, lim, ta);
}
TRef LJ_FASTCALL lj_opt_dse_ahstore(jit_State *J)
{
IRRef xref = fins->op1;
IRRef val = fins->op2;
IRIns *xr = IR(xref);
IRRef1 *refp = &J->chain[fins->o];
IRRef ref = *refp;
while (ref > xref) {
IRIns *store = IR(ref);
switch (aa_ahref(J, xr, IR(store->op1))) {
case ALIAS_NO:
break;
case ALIAS_MAY:
if (store->op2 != val)
goto doemit;
break;
case ALIAS_MUST:
if (store->op2 == val)
return DROPFOLD;
if (ref > J->chain[IR_LOOP]) {
IRIns *ir;
for (ir = IR(J->cur.nins-1); ir > store; ir--)
if (irt_isguard(ir->t) || ir->o == IR_CALLL)
goto doemit;
*refp = store->prev;
store->o = IR_NOP;
store->t.irt = IRT_NIL;
store->op1 = store->op2 = 0;
store->prev = 0;
}
goto doemit;
}
ref = *(refp = &store->prev);
}
doemit:
return EMITFOLD;
}
static AliasRet aa_uref(IRIns *refa, IRIns *refb)
{
if (refa->o != refb->o)
return ALIAS_NO;
if (refa->op1 == refb->op1) {
if (refa->op2 == refb->op2)
return ALIAS_MUST;
else
return ALIAS_NO;
} else {
if (((refa->op2 ^ refb->op2) & 0xff))
return ALIAS_NO;
else
return ALIAS_MAY;
}
}
TRef LJ_FASTCALL lj_opt_fwd_uload(jit_State *J)
{
IRRef uref = fins->op1;
IRRef lim = REF_BASE;
IRIns *xr = IR(uref);
IRRef ref;
ref = J->chain[IR_USTORE];
while (ref > lim) {
IRIns *store = IR(ref);
switch (aa_uref(xr, IR(store->op1))) {
case ALIAS_NO: break;
case ALIAS_MAY: lim = ref; goto cselim;
case ALIAS_MUST: return store->op2;
}
ref = store->prev;
}
cselim:
ref = J->chain[IR_ULOAD];
while (ref > lim) {
IRIns *ir = IR(ref);
if (ir->op1 == uref ||
(IR(ir->op1)->op12 == IR(uref)->op12 && IR(ir->op1)->o == IR(uref)->o))
return ref;
ref = ir->prev;
}
return lj_ir_emit(J);
}
TRef LJ_FASTCALL lj_opt_dse_ustore(jit_State *J)
{
IRRef xref = fins->op1;
IRRef val = fins->op2;
IRIns *xr = IR(xref);
IRRef1 *refp = &J->chain[IR_USTORE];
IRRef ref = *refp;
while (ref > xref) {
IRIns *store = IR(ref);
switch (aa_uref(xr, IR(store->op1))) {
case ALIAS_NO:
break;
case ALIAS_MAY:
if (store->op2 != val)
goto doemit;
break;
case ALIAS_MUST:
if (store->op2 == val)
return DROPFOLD;
if (ref > J->chain[IR_LOOP]) {
IRIns *ir;
for (ir = IR(J->cur.nins-1); ir > store; ir--)
if (irt_isguard(ir->t))
goto doemit;
*refp = store->prev;
store->o = IR_NOP;
store->t.irt = IRT_NIL;
store->op1 = store->op2 = 0;
store->prev = 0;
if (ref+1 < J->cur.nins &&
store[1].o == IR_OBAR && store[1].op1 == xref) {
IRRef1 *bp = &J->chain[IR_OBAR];
IRIns *obar;
for (obar = IR(*bp); *bp > ref+1; obar = IR(*bp))
bp = &obar->prev;
*bp = obar->prev;
obar->o = IR_NOP;
obar->t.irt = IRT_NIL;
obar->op1 = obar->op2 = 0;
obar->prev = 0;
}
}
goto doemit;
}
ref = *(refp = &store->prev);
}
doemit:
return EMITFOLD;
}
static AliasRet aa_fref(jit_State *J, IRIns *refa, IRIns *refb)
{
if (refa->op2 != refb->op2)
return ALIAS_NO;
if (refa->op1 == refb->op1)
return ALIAS_MUST;
else if (refa->op2 >= IRFL_TAB_META && refa->op2 <= IRFL_TAB_NOMM)
return aa_table(J, refa->op1, refb->op1);
else
return ALIAS_MAY;
}
TRef LJ_FASTCALL lj_opt_fwd_fload(jit_State *J)
{
IRRef oref = fins->op1;
IRRef fid = fins->op2;
IRRef lim = oref;
IRRef ref;
ref = J->chain[IR_FSTORE];
while (ref > oref) {
IRIns *store = IR(ref);
switch (aa_fref(J, fins, IR(store->op1))) {
case ALIAS_NO: break;
case ALIAS_MAY: lim = ref; goto cselim;
case ALIAS_MUST: return store->op2;
}
ref = store->prev;
}
if (fid == IRFL_TAB_META) {
IRIns *ir = IR(oref);
if (ir->o == IR_TNEW || ir->o == IR_TDUP)
return lj_ir_knull(J, IRT_TAB);
}
cselim:
return lj_opt_cselim(J, lim);
}
TRef LJ_FASTCALL lj_opt_dse_fstore(jit_State *J)
{
IRRef fref = fins->op1;
IRRef val = fins->op2;
IRIns *xr = IR(fref);
IRRef1 *refp = &J->chain[IR_FSTORE];
IRRef ref = *refp;
while (ref > fref) {
IRIns *store = IR(ref);
switch (aa_fref(J, xr, IR(store->op1))) {
case ALIAS_NO:
break;
case ALIAS_MAY:
if (store->op2 != val)
goto doemit;
break;
case ALIAS_MUST:
if (store->op2 == val)
return DROPFOLD;
if (ref > J->chain[IR_LOOP]) {
IRIns *ir;
for (ir = IR(J->cur.nins-1); ir > store; ir--)
if (irt_isguard(ir->t) || (ir->o == IR_FLOAD && ir->op2 == xr->op2))
goto doemit;
*refp = store->prev;
store->o = IR_NOP;
store->t.irt = IRT_NIL;
store->op1 = store->op2 = 0;
store->prev = 0;
}
goto doemit;
}
ref = *(refp = &store->prev);
}
doemit:
return EMITFOLD;
}
static IRIns *aa_findcnew(jit_State *J, IRIns *ir)
{
while (ir->o == IR_ADD) {
if (!irref_isk(ir->op1)) {
IRIns *ir1 = aa_findcnew(J, IR(ir->op1));
if (ir1) return ir1;
}
if (irref_isk(ir->op2)) return NULL;
ir = IR(ir->op2);
}
return ir->o == IR_CNEW ? ir : NULL;
}
static AliasRet aa_cnew(jit_State *J, IRIns *refa, IRIns *refb)
{
IRIns *cnewa = aa_findcnew(J, refa);
IRIns *cnewb = aa_findcnew(J, refb);
if (cnewa == cnewb)
return ALIAS_MAY;
if (cnewa && cnewb)
return ALIAS_NO;
if (cnewb) { cnewa = cnewb; refb = refa; }
return aa_escape(J, cnewa, refb);
}
static AliasRet aa_xref(jit_State *J, IRIns *refa, IRIns *xa, IRIns *xb)
{
ptrdiff_t ofsa = 0, ofsb = 0;
IRIns *refb = IR(xb->op1);
IRIns *basea = refa, *baseb = refb;
if (refa == refb && irt_sametype(xa->t, xb->t))
return ALIAS_MUST;
if (refa->o == IR_ADD && irref_isk(refa->op2)) {
IRIns *irk = IR(refa->op2);
basea = IR(refa->op1);
ofsa = (LJ_64 && irk->o == IR_KINT64) ? (ptrdiff_t)ir_k64(irk)->u64 :
(ptrdiff_t)irk->i;
}
if (refb->o == IR_ADD && irref_isk(refb->op2)) {
IRIns *irk = IR(refb->op2);
baseb = IR(refb->op1);
ofsb = (LJ_64 && irk->o == IR_KINT64) ? (ptrdiff_t)ir_k64(irk)->u64 :
(ptrdiff_t)irk->i;
}
if (basea->o == IR_KPTR && baseb->o == IR_KPTR) {
ofsb += (char *)ir_kptr(baseb) - (char *)ir_kptr(basea);
baseb = basea;
}
if (basea == baseb) {
ptrdiff_t sza = irt_size(xa->t), szb = irt_size(xb->t);
if (ofsa == ofsb) {
if (sza == szb && irt_isfp(xa->t) == irt_isfp(xb->t))
return ALIAS_MUST;
} else if (ofsa + sza <= ofsb || ofsb + szb <= ofsa) {
return ALIAS_NO;
}
return ALIAS_MAY;
}
if (!irt_sametype(xa->t, xb->t) &&
!(irt_typerange(xa->t, IRT_I8, IRT_U64) &&
((xa->t.irt - IRT_I8) ^ (xb->t.irt - IRT_I8)) == 1))
return ALIAS_NO;
return aa_cnew(J, basea, baseb);
}
static IRRef reassoc_trycse(jit_State *J, IROp op, IRRef op1, IRRef op2)
{
IRRef ref = J->chain[op];
IRRef lim = op1;
if (op2 > lim) { lim = op2; op2 = op1; op1 = lim; }
while (ref > lim) {
IRIns *ir = IR(ref);
if (ir->op1 == op1 && ir->op2 == op2)
return ref;
ref = ir->prev;
}
return 0;
}
static IRRef reassoc_xref(jit_State *J, IRIns *ir)
{
ptrdiff_t ofs = 0;
if (ir->o == IR_ADD && irref_isk(ir->op2)) {
IRIns *irk = IR(ir->op2);
ofs = (LJ_64 && irk->o == IR_KINT64) ? (ptrdiff_t)ir_k64(irk)->u64 :
(ptrdiff_t)irk->i;
ir = IR(ir->op1);
}
if (ir->o == IR_ADD) {
IRIns *ir2, *ir1 = IR(ir->op1);
int32_t shift = 0;
IRRef idxref;
if (ir1->o == IR_BSHL && irref_isk(ir1->op2))
shift = IR(ir1->op2)->i;
else if (ir1->o == IR_ADD && ir1->op1 == ir1->op2)
shift = 1;
else
ir1 = ir;
ir2 = IR(ir1->op1);
if (ir2->o == IR_ADD && irt_isint(ir2->t) && irref_isk(ir2->op2))
ofs += (ptrdiff_t)IR(ir2->op2)->i << shift;
else
return 0;
idxref = ir2->op1;
if (ir1 != ir &&
!(idxref = reassoc_trycse(J, ir1->o, idxref,
ir1->o == IR_BSHL ? ir1->op2 : idxref)))
return 0;
if (!(idxref = reassoc_trycse(J, IR_ADD, idxref, ir->op2)))
return 0;
if (ofs != 0) {
IRRef refk = tref_ref(lj_ir_kintp(J, ofs));
if (!(idxref = reassoc_trycse(J, IR_ADD, idxref, refk)))
return 0;
}
return idxref;
}
return 0;
}
TRef LJ_FASTCALL lj_opt_fwd_xload(jit_State *J)
{
IRRef xref = fins->op1;
IRIns *xr = IR(xref);
IRRef lim = xref;
IRRef ref;
if ((fins->op2 & IRXLOAD_READONLY))
goto cselim;
if ((fins->op2 & IRXLOAD_VOLATILE))
goto doemit;
ref = J->chain[IR_XSTORE];
retry:
if (J->chain[IR_CALLXS] > lim) lim = J->chain[IR_CALLXS];
if (J->chain[IR_XBAR] > lim) lim = J->chain[IR_XBAR];
while (ref > lim) {
IRIns *store = IR(ref);
switch (aa_xref(J, xr, fins, store)) {
case ALIAS_NO: break;
case ALIAS_MAY: lim = ref; goto cselim;
case ALIAS_MUST:
if (!irt_sametype(fins->t, IR(store->op2)->t)) {
IRType dt = irt_type(fins->t), st = irt_type(IR(store->op2)->t);
if (dt == IRT_I8 || dt == IRT_I16) {
st = dt | IRCONV_SEXT;
dt = IRT_INT;
} else if (dt == IRT_U8 || dt == IRT_U16) {
st = dt;
dt = IRT_INT;
}
fins->ot = IRT(IR_CONV, dt);
fins->op1 = store->op2;
fins->op2 = (dt<<5)|st;
return RETRYFOLD;
}
return store->op2;
}
ref = store->prev;
}
cselim:
ref = J->chain[IR_XLOAD];
while (ref > lim) {
if (IR(ref)->op1 == xref && irt_sametype(IR(ref)->t, fins->t))
return ref;
ref = IR(ref)->prev;
}
if (!(fins->op2 & IRXLOAD_READONLY) && J->chain[IR_LOOP] &&
xref == fins->op1 && (xref = reassoc_xref(J, xr)) != 0) {
ref = J->chain[IR_XSTORE];
while (ref > lim)
ref = IR(ref)->prev;
lim = xref;
xr = IR(xref);
goto retry;
}
doemit:
return EMITFOLD;
}
TRef LJ_FASTCALL lj_opt_dse_xstore(jit_State *J)
{
IRRef xref = fins->op1;
IRIns *xr = IR(xref);
IRRef lim = xref;
IRRef val = fins->op2;
IRRef1 *refp = &J->chain[IR_XSTORE];
IRRef ref = *refp;
if (J->chain[IR_CALLXS] > lim) lim = J->chain[IR_CALLXS];
if (J->chain[IR_XBAR] > lim) lim = J->chain[IR_XBAR];
if (J->chain[IR_XSNEW] > lim) lim = J->chain[IR_XSNEW];
while (ref > lim) {
IRIns *store = IR(ref);
switch (aa_xref(J, xr, fins, store)) {
case ALIAS_NO:
break;
case ALIAS_MAY:
if (store->op2 != val)
goto doemit;
break;
case ALIAS_MUST:
if (store->op2 == val)
return DROPFOLD;
if (ref > J->chain[IR_LOOP]) {
IRIns *ir;
for (ir = IR(J->cur.nins-1); ir > store; ir--)
if (irt_isguard(ir->t) || ir->o == IR_XLOAD)
goto doemit;
*refp = store->prev;
store->o = IR_NOP;
store->t.irt = IRT_NIL;
store->op1 = store->op2 = 0;
store->prev = 0;
}
goto doemit;
}
ref = *(refp = &store->prev);
}
doemit:
return EMITFOLD;
}
TRef LJ_FASTCALL lj_opt_fwd_tab_len(jit_State *J)
{
IRRef tab = fins->op1;
IRRef lim = tab;
IRRef ref;
if (J->chain[IR_ASTORE] > lim) lim = J->chain[IR_ASTORE];
ref = J->chain[IR_HSTORE];
while (ref > lim) {
IRIns *store = IR(ref);
IRIns *href = IR(store->op1);
IRIns *key = IR(href->op2);
if (irt_isnum(key->o == IR_KSLOT ? IR(key->op1)->t : key->t)) {
lim = ref;
break;
}
ref = store->prev;
}
if (!fwd_aa_tab_clear(J, lim, tab))
return lj_ir_emit(J);
return lj_opt_cselim(J, lim);
}
int lj_opt_fwd_wasnonnil(jit_State *J, IROpT loadop, IRRef xref)
{
IRRef ref = J->chain[loadop+IRDELTA_L2S];
while (ref > xref) {
IRIns *store = IR(ref);
if (store->op1 == xref) {
return !irt_isnil(store->t);
} else if (irt_isnil(store->t)) {
IRRef skref = IR(store->op1)->op2;
IRRef xkref = IR(xref)->op2;
if (loadop == IR_ALOAD || irt_sametype(IR(skref)->t, IR(xkref)->t)) {
if (skref == xkref || !irref_isk(skref) || !irref_isk(xkref))
return 0;
}
}
ref = store->prev;
}
ref = J->chain[loadop];
while (ref > xref) {
IRIns *load = IR(ref);
if (load->op1 == xref) {
return !irt_isnil(load->t);
}
ref = load->prev;
}
return 0;
}
#undef IR
#undef fins
#undef fleft
#undef fright
#endif