mirror of
https://github.com/golang/go
synced 2024-11-22 02:44:39 -07:00
changed 5c 64 bit word ordering to little endian so it matches
5g. fixes to 64 bit code gen. added (finally) function to do shifts properly. go/test: passes 83% (287/342) R=rsc APPROVED=rsc DELTA=156 (50 added, 53 deleted, 53 changed) OCL=35589 CL=35616
This commit is contained in:
parent
2372408189
commit
101f7cbd61
@ -916,12 +916,12 @@ sugen(Node *n, Node *nn, int32 w)
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reglcgen(&nod1, nn, Z);
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nn->type = t;
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if(1 || align(0, types[TCHAR], Aarg1)) /* isbigendian */
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if(isbigendian)
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gopcode(OAS, nod32const(n->vconst>>32), Z, &nod1);
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else
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gopcode(OAS, nod32const(n->vconst), Z, &nod1);
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nod1.xoffset += SZ_LONG;
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if(1 || align(0, types[TCHAR], Aarg1)) /* isbigendian */
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if(isbigendian)
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gopcode(OAS, nod32const(n->vconst), Z, &nod1);
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else
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gopcode(OAS, nod32const(n->vconst>>32), Z, &nod1);
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@ -175,6 +175,7 @@ EXTERN int32 continpc;
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EXTERN int32 curarg;
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EXTERN int32 cursafe;
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EXTERN Prog* firstp;
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EXTERN int32 isbigendian;
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EXTERN Prog* lastp;
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EXTERN int32 maxargsafe;
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EXTERN int mnstring;
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@ -311,13 +311,13 @@ gextern(Sym *s, Node *a, int32 o, int32 w)
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{
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if(a->op == OCONST && typev[a->type->etype]) {
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if(1 || align(0, types[TCHAR], Aarg1)) /* isbigendian */
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if(isbigendian)
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gpseudo(ADATA, s, nod32const(a->vconst>>32));
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else
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gpseudo(ADATA, s, nod32const(a->vconst));
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p->from.offset += o;
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p->reg = 4;
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if(1 || align(0, types[TCHAR], Aarg1)) /* isbigendian */
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if(isbigendian)
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gpseudo(ADATA, s, nod32const(a->vconst));
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else
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gpseudo(ADATA, s, nod32const(a->vconst>>32));
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@ -49,7 +49,8 @@ cgen64(Node *n, Node *res)
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gmove(ncon(0), &t1);
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gins(ASUB, &t1, &al);
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p1 = gins(ASUB, &t1, &al);
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p1->scond |= C_SBIT;
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gins(ASBC, &t1, &ah);
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gins(AMOVW, &al, &lo2);
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@ -104,6 +105,7 @@ cgen64(Node *n, Node *res)
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regalloc(&al, lo1.type, N);
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regalloc(&ah, hi1.type, N);
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// Do op. Leave result in ah:al.
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switch(n->op) {
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default:
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@ -117,7 +119,8 @@ cgen64(Node *n, Node *res)
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gins(AMOVW, &lo1, &al);
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gins(AMOVW, &hi2, &bh);
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gins(AMOVW, &lo2, &bl);
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gins(AADD, &bl, &al);
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p1 = gins(AADD, &bl, &al);
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p1->scond |= C_SBIT;
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gins(AADC, &bh, &ah);
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regfree(&bl);
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regfree(&bh);
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@ -131,7 +134,8 @@ cgen64(Node *n, Node *res)
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gins(AMOVW, &hi1, &ah);
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gins(AMOVW, &lo2, &bl);
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gins(AMOVW, &hi2, &bh);
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gins(ASUB, &bl, &al);
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p1 = gins(ASUB, &bl, &al);
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p1->scond |= C_SBIT;
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gins(ASBC, &bh, &ah);
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regfree(&bl);
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regfree(&bh);
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@ -139,10 +143,10 @@ cgen64(Node *n, Node *res)
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case OMUL:
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// TODO(kaib): this can be done with 4 regs and does not need 6
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regalloc(&bh, types[TPTR32], N);
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regalloc(&bl, types[TPTR32], N);
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regalloc(&ch, types[TPTR32], N);
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regalloc(&bh, types[TPTR32], N);
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regalloc(&cl, types[TPTR32], N);
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regalloc(&ch, types[TPTR32], N);
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// load args into bh:bl and bh:bl.
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gins(AMOVW, &hi1, &bh);
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@ -156,27 +160,27 @@ cgen64(Node *n, Node *res)
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p1->from.reg = bl.val.u.reg;
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p1->reg = cl.val.u.reg;
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p1->to.type = D_REGREG;
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p1->to.reg = al.val.u.reg;
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p1->to.offset = ah.val.u.reg;
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p1->to.reg = ah.val.u.reg;
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p1->to.offset = al.val.u.reg;
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//print("%P\n", p1);
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// bl * ch
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p1 = gins(AMULALU, N, N);
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p1 = gins(AMULA, N, N);
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p1->from.type = D_REG;
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p1->from.reg = ah.val.u.reg;
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p1->reg = bl.val.u.reg;
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p1->from.reg = bl.val.u.reg;
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p1->reg = ch.val.u.reg;
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p1->to.type = D_REGREG;
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p1->to.reg = ch.val.u.reg;
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p1->to.reg = ah.val.u.reg;
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p1->to.offset = ah.val.u.reg;
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//print("%P\n", p1);
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// bh * cl
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p1 = gins(AMULALU, N, N);
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p1 = gins(AMULA, N, N);
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p1->from.type = D_REG;
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p1->from.reg = ah.val.u.reg;
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p1->reg = bh.val.u.reg;
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p1->from.reg = bh.val.u.reg;
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p1->reg = cl.val.u.reg;
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p1->to.type = D_REGREG;
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p1->to.reg = cl.val.u.reg;
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p1->to.reg = ah.val.u.reg;
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p1->to.offset = ah.val.u.reg;
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//print("%P\n", p1);
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@ -188,8 +192,8 @@ cgen64(Node *n, Node *res)
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break;
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case OLSH:
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regalloc(&bh, hi1.type, N);
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regalloc(&bl, lo1.type, N);
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regalloc(&bh, hi1.type, N);
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gins(AMOVW, &hi1, &bh);
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gins(AMOVW, &lo1, &bl);
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@ -205,32 +209,21 @@ cgen64(Node *n, Node *res)
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if(v >= 32) {
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gins(AEOR, &al, &al);
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// MOVW bl<<(v-32), ah
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p1 = gins(AMOVW, &bl, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | (v-32)<<7 | bl.val.u.reg;
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p1->from.reg = NREG;
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gshift(AMOVW, &bl, SHIFT_LL, v-32, &ah);
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goto olsh_break;
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}
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// general literal left shift
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// MOVW bl<<v, al
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p1 = gins(AMOVW, &bl, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | v<<7 | bl.val.u.reg;
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p1->from.reg = NREG;
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gshift(AMOVW, &bl, SHIFT_LL, v, &al);
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// MOVW bh<<v, ah
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p1 = gins(AMOVW, &bh, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | v<<7 | bh.val.u.reg;
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p1->from.reg = NREG;
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gshift(AMOVW, &bh, SHIFT_LL, v, &ah);
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// OR bl>>(32-v), ah
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p1 = gins(AORR, &bl, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | (32-v)<<7 | bl.val.u.reg;
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p1->from.reg = NREG;
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gshift(AORR, &bl, SHIFT_LR, 32-v, &ah);
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goto olsh_break;
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}
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@ -244,25 +237,19 @@ cgen64(Node *n, Node *res)
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gcmp(ACMP, &s, &creg);
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// MOVW.LT bl<<s, al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | s.val.u.reg << 8 | 1<<4 | bl.val.u.reg;
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p1 = gregshift(AMOVW, &bl, SHIFT_LL, &s, &al);
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p1->scond = C_SCOND_LT;
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// MOVW.LT bh<<s, al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | s.val.u.reg << 8 | 1<<4 | bh.val.u.reg;
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// MOVW.LT bh<<s, ah
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p1 = gregshift(AMOVW, &bh, SHIFT_LL, &s, &ah);
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p1->scond = C_SCOND_LT;
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// SUB.LT creg, s
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p1 = gins(ASUB, &creg, &s);
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p1->scond = C_SCOND_LT;
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// OR.LT bl>>(32-s), ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | t1.val.u.reg<<8| 1<<4 | bl.val.u.reg;
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// OR.LT bl>>creg, ah
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p1 = gregshift(AORR, &bl, SHIFT_LR, &creg, &ah);
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p1->scond = C_SCOND_LT;
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// BLT end
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@ -278,19 +265,15 @@ cgen64(Node *n, Node *res)
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p1->scond = C_SCOND_LT;
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// MOVW.LT creg>>1, creg
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p1 = gins(AMOVW, N, &creg);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | 1<<7 | creg.val.u.reg;
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p1 = gshift(AMOVW, &creg, SHIFT_LR, 1, &creg);
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p1->scond = C_SCOND_LT;
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// SUB.LT creg, s
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p1 = gins(ASUB, &s, &creg);
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p1->scond = C_SCOND_LT;
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// MOVW bl<<(s-32), ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | s.val.u.reg<<8 | 1<<4 | bl.val.u.reg;
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// MOVW bl<<s, ah
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p1 = gregshift(AMOVW, &bl, SHIFT_LL, &s, &ah);
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p1->scond = C_SCOND_LT;
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p3 = gbranch(ABLT, T);
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@ -310,8 +293,8 @@ olsh_break:
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case ORSH:
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regalloc(&bh, hi1.type, N);
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regalloc(&bl, lo1.type, N);
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regalloc(&bh, hi1.type, N);
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gins(AMOVW, &hi1, &bh);
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gins(AMOVW, &lo1, &bl);
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@ -320,14 +303,10 @@ olsh_break:
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if(v >= 64) {
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if(bh.type->etype == TINT32) {
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// MOVW bh->31, al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_AR | 31 << 7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_AR, 31, &al);
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// MOVW bh->31, ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_AR | 31 << 7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_AR, 31, &ah);
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} else {
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gins(AEOR, &al, &al);
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gins(AEOR, &ah, &ah);
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@ -337,19 +316,13 @@ olsh_break:
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if(v >= 32) {
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if(bh.type->etype == TINT32) {
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// MOVW bh->(v-32), al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_AR | (v-32)<<7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_AR, v-32, &al);
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// MOVW bh->31, ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_AR | 31<<7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_AR, 31, &ah);
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} else {
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// MOVW bh>>(v-32), al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | (v-32)<<7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_LR, v-32, &al);
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gins(AEOR, &ah, &ah);
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}
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goto orsh_break;
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@ -358,26 +331,17 @@ olsh_break:
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// general literal right shift
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// MOVW bl>>v, al
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p1 = gins(AMOVW, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | v<<7 | bl.val.u.reg;
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gshift(AMOVW, &bl, SHIFT_LR, v, &al);
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// OR bh<<(32-v), al, al
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p1 = gins(AORR, N, &al);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LL | (32-v)<<7 | bh.val.u.reg;
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p1->reg = al.val.u.reg;
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// OR bh<<(32-v), al
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gshift(AORR, &bh, SHIFT_LL, 32-v, &al);
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if(bh.type->etype == TINT32) {
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// MOVW bh->v, ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_AR | v<<7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_AR, v, &ah);
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} else {
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// MOVW bh>>v, ah
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p1 = gins(AMOVW, N, &ah);
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p1->from.type = D_SHIFT;
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p1->from.offset = SHIFT_LR | v<<7 | bh.val.u.reg;
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gshift(AMOVW, &bh, SHIFT_LR, v, &ah);
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}
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goto orsh_break;
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}
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@ -97,6 +97,8 @@ Prog* gins(int, Node*, Node*);
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int samaddr(Node*, Node*);
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void raddr(Node *n, Prog *p);
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Prog* gcmp(int, Node*, Node*);
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Prog* gshift(int as, Node *lhs, int32 stype, int32 sval, Node *rhs);
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Prog * gregshift(int as, Node *lhs, int32 stype, Node *reg, Node *rhs);
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void naddr(Node*, Addr*);
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void cgen_aret(Node*, Node*);
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@ -964,6 +964,34 @@ gcmp(int as, Node *lhs, Node *rhs)
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return p;
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}
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/* generate a constant shift
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*/
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Prog*
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gshift(int as, Node *lhs, int32 stype, int32 sval, Node *rhs)
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{
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Prog *p;
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if (sval < 0 || sval > 31)
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fatal("bad shift value: %d", sval);
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p = gins(as, N, rhs);
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p->from.type = D_SHIFT;
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p->from.offset = stype | sval<<7 | lhs->val.u.reg;
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return p;
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}
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/* generate a register shift
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*/
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Prog *
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gregshift(int as, Node *lhs, int32 stype, Node *reg, Node *rhs)
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{
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Prog *p;
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p = gins(as, N, rhs);
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p->from.type = D_SHIFT;
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p->from.offset = stype | reg->val.u.reg << 8 | 1<<4 | lhs->val.u.reg;
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return p;
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}
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/*
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* generate code to compute n;
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@ -38,15 +38,15 @@ struct Vlong
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{
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struct
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{
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ulong hi;
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ulong lo;
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ulong hi;
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};
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struct
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{
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ushort hims;
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ushort hils;
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ushort loms;
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ushort lols;
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ushort loms;
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ushort hils;
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ushort hims;
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};
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};
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};
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@ -243,6 +243,7 @@ interface/returntype.go
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interface/struct.go
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iota.go
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ken/complit.go
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ken/divmod.go
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ken/embed.go
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ken/for.go
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ken/interbasic.go
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@ -262,6 +263,7 @@ ken/simpfun.go
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ken/simpprint.go
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ken/simpswitch.go
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ken/simpvar.go
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ken/string.go
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ken/strvar.go
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method.go
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method1.go
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