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Rename IR_POWI to IR_POW.
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@ -2749,7 +2749,7 @@ static void asm_fpmath(ASMState *as, IRIns *ir)
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}
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}
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static void asm_powi(ASMState *as, IRIns *ir)
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static void asm_fppowi(ASMState *as, IRIns *ir)
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{
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/* The modified regs must match with the *.dasc implementation. */
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RegSet drop = RSET_RANGE(RID_XMM0, RID_XMM1+1)|RID2RSET(RID_EAX);
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@ -4020,14 +4020,14 @@ static void asm_ir(ASMState *as, IRIns *ir)
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case IR_FPMATH: case IR_ATAN2: case IR_LDEXP:
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asm_fpmath(as, ir);
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break;
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case IR_POWI:
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case IR_POW:
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#if LJ_64 && LJ_HASFFI
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if (!irt_isnum(ir->t))
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asm_arith64(as, ir, irt_isi64(ir->t) ? IRCALL_lj_carith_powi64 :
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IRCALL_lj_carith_powu64);
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else
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#endif
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asm_powi(as, ir);
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asm_fppowi(as, ir);
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break;
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/* Overflow-checking arithmetic ops. Note: don't use LEA here! */
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@ -4183,7 +4183,7 @@ static void asm_setup_regsp(ASMState *as, GCtrace *T)
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if (inloop)
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as->modset = RSET_SCRATCH;
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break;
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case IR_POWI:
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case IR_POW:
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if (irt_isnum(ir->t)) {
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ir->prev = REGSP_HINT(RID_XMM0);
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if (inloop)
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@ -67,7 +67,7 @@
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_(MUL, C , ref, ref) \
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_(DIV, N , ref, ref) \
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_(MOD, N , ref, ref) \
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_(POWI, N , ref, ref) \
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_(POW, N , ref, ref) \
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_(NEG, N , ref, ref) \
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\
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_(ABS, N , ref, ref) \
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@ -184,12 +184,12 @@ LJFOLDF(kfold_fpmath)
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return lj_ir_knum(J, y);
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}
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LJFOLD(POWI KNUM KINT)
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LJFOLDF(kfold_powi)
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LJFOLD(POW KNUM KINT)
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LJFOLDF(kfold_numpow)
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{
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lua_Number a = knumleft;
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lua_Number b = cast_num(fright->i);
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lua_Number y = lj_vm_foldarith(a, b, IR_POWI - IR_ADD);
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lua_Number y = lj_vm_foldarith(a, b, IR_POW - IR_ADD);
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return lj_ir_knum(J, y);
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}
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@ -326,7 +326,7 @@ LJFOLDF(kfold_int64arith)
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LJFOLD(DIV KINT64 KINT64)
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LJFOLD(MOD KINT64 KINT64)
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LJFOLD(POWI KINT64 KINT64)
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LJFOLD(POW KINT64 KINT64)
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LJFOLDF(kfold_int64arith2)
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{
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#if LJ_HASFFI
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@ -784,8 +784,8 @@ LJFOLDF(simplify_nummuldiv_negneg)
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return RETRYFOLD;
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}
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LJFOLD(POWI any KINT)
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LJFOLDF(simplify_powi_xk)
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LJFOLD(POW any KINT)
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LJFOLDF(simplify_numpow_xk)
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{
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int32_t k = fright->i;
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TRef ref = fins->op1;
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@ -814,8 +814,8 @@ LJFOLDF(simplify_powi_xk)
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return ref;
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}
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LJFOLD(POWI KNUM any)
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LJFOLDF(simplify_powi_kx)
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LJFOLD(POW KNUM any)
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LJFOLDF(simplify_numpow_kx)
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{
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lua_Number n = knumleft;
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if (n == 2.0) { /* 2.0 ^ i ==> ldexp(1.0, tonum(i)) */
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@ -428,7 +428,7 @@ TRef lj_opt_narrow_pow(jit_State *J, TRef rb, TRef rc, TValue *vc)
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tmp = emitir(IRTI(IR_ADD), rc, lj_ir_kint(J, 65536-2147483647-1));
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emitir(IRTGI(IR_LE), tmp, lj_ir_kint(J, 2*65536-2147483647-1));
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}
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return emitir(IRTN(IR_POWI), rb, rc);
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return emitir(IRTN(IR_POW), rb, rc);
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}
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/* FOLD covers most cases, but some are easier to do here. */
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if (tref_isk(rb) && tvispone(ir_knum(IR(tref_ref(rb)))))
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@ -207,7 +207,7 @@ static void split_ir(jit_State *J)
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irt_isi64(ir->t) ? IRCALL_lj_carith_modi64 :
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IRCALL_lj_carith_modu64);
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break;
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case IR_POWI:
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case IR_POW:
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hi = split_call64(J, hisubst, oir, ir,
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irt_isi64(ir->t) ? IRCALL_lj_carith_powi64 :
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IRCALL_lj_carith_powu64);
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