(uxnmin.c) Simpler core
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0295f0f61c
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110
ref/uxnmin.c
110
ref/uxnmin.c
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@ -35,29 +35,32 @@ emu_deo(Uint8 addr, Uint8 value)
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/* Unroll */
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/* Unroll */
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#define OPC(opc, body) {\
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#define OPC(opc, init, body) {\
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case 0x00|opc: {enum{_2=0,_r=0}; s = &uxn.wst, sp = &uxn.wst.ptr; body break;}\
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case 0x00|opc: {enum{_2=0,_r=0}; init; body; break;}\
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case 0x20|opc: {enum{_2=1,_r=0}; s = &uxn.wst, sp = &uxn.wst.ptr; body break;}\
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case 0x20|opc: {enum{_2=1,_r=0}; init; body; break;}\
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case 0x40|opc: {enum{_2=0,_r=1}; s = &uxn.rst, sp = &uxn.rst.ptr; body break;}\
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case 0x40|opc: {enum{_2=0,_r=1}; init; body; break;}\
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case 0x60|opc: {enum{_2=1,_r=1}; s = &uxn.rst, sp = &uxn.rst.ptr; body break;}\
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case 0x60|opc: {enum{_2=1,_r=1}; init; body; break;}\
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case 0x80|opc: {enum{_2=0,_r=0}; s = &uxn.wst, kp = uxn.wst.ptr, sp = &kp; body break;}\
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case 0x80|opc: {enum{_2=0,_r=0}; k = uxn.wst.ptr; init; uxn.wst.ptr = k; body; break;}\
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case 0xa0|opc: {enum{_2=1,_r=0}; s = &uxn.wst, kp = uxn.wst.ptr, sp = &kp; body break;}\
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case 0xa0|opc: {enum{_2=1,_r=0}; k = uxn.wst.ptr; init; uxn.wst.ptr = k; body; break;}\
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case 0xc0|opc: {enum{_2=0,_r=1}; s = &uxn.rst, kp = uxn.rst.ptr, sp = &kp; body break;}\
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case 0xc0|opc: {enum{_2=0,_r=1}; k = uxn.rst.ptr; init; uxn.rst.ptr = k; body; break;}\
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case 0xe0|opc: {enum{_2=1,_r=1}; s = &uxn.rst, kp = uxn.rst.ptr, sp = &kp; body break;}\
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case 0xe0|opc: {enum{_2=1,_r=1}; k = uxn.rst.ptr; init; uxn.rst.ptr = k; body; break;}\
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}
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}
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/* Microcode */
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/* Microcode */
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#define FLP { s = _r ? &uxn.wst : &uxn.rst; }
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#define INC(s) uxn.s.dat[uxn.s.ptr++]
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#define DEC(s) uxn.s.dat[--uxn.s.ptr]
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#define JMI { pc += uxn.ram[pc++] << 8 | uxn.ram[pc++]; }
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#define JMI { pc += uxn.ram[pc++] << 8 | uxn.ram[pc++]; }
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#define JMP(x) { if(_2) pc = (x); else pc += (Sint8)(x); }
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#define JMP(x) { if(_2) pc = (x); else pc += (Sint8)(x); }
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#define POx(o) { if(_2) { PO2(o) } else PO1(o) }
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#define POx(o) { if(_2) { PO2(o) } else PO1(o) }
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#define PO1(o) { o = s->dat[--*sp]; }
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#define PO2(o) { if(_r) o = DEC(rst) | (DEC(rst) << 8); else o = DEC(wst) | (DEC(wst) << 8); }
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#define PO2(o) { o = s->dat[--*sp] | (s->dat[--*sp] << 8); }
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#define PO1(o) { if(_r) o = DEC(rst); else o = DEC(wst); }
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#define PUx(y) { if(_2) { PU2(y) } else PU1(y) }
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#define PUx(y) { if(_2) { PU2(y) } else PU1(y) }
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#define PU1(y) { s->dat[s->ptr++] = (y); }
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#define PU2(y) { tt = (y); PU1(tt >> 8) PU1(tt) }
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#define PU2(y) { tt = (y); PU1(tt >> 8) PU1(tt) }
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#define IMM(x, y) { uxn.x.dat[uxn.x.ptr++] = (y); }
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#define PU1(y) { if(_r) INC(rst) = y; else INC(wst) = y; }
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#define PFx(y) { if(_2) { PF2(y) } else PF1(y) }
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#define PF2(y) { tt = (y); PF1(tt >> 8) PF1(tt) }
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#define PF1(y) { if(_r) INC(wst) = y; else INC(rst) = y; }
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#define DEI(p, o) { if(_2) { o = (emu_dei(p) << 8) | emu_dei(p + 1); } else o = emu_dei(p); }
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#define DEI(p, o) { if(_2) { o = (emu_dei(p) << 8) | emu_dei(p + 1); } else o = emu_dei(p); }
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#define DEO(p, y) { if(_2) { emu_deo(p, y >> 8), emu_deo(p + 1, y); } else emu_deo(p, y); }
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#define DEO(p, y) { if(_2) { emu_deo(p, y >> 8), emu_deo(p + 1, y); } else emu_deo(p, y); }
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#define PEK(o, x, r) { if(_2) { r = (x); o = uxn.ram[r++] << 8 | uxn.ram[r]; } else o = uxn.ram[(x)]; }
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#define PEK(o, x, r) { if(_2) { r = (x); o = uxn.ram[r++] << 8 | uxn.ram[r]; } else o = uxn.ram[(x)]; }
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@ -66,52 +69,51 @@ emu_deo(Uint8 addr, Uint8 value)
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int
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int
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uxn_eval(Uint16 pc)
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uxn_eval(Uint16 pc)
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{
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{
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int a,b,c;
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int a,b,c,k;
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Uint8 t, kp, *sp;
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Uint8 t;
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Uint16 tt;
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Uint16 tt;
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Stack *s;
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if(!pc || uxn.dev[0x0f]) return 0;
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if(!pc || uxn.dev[0x0f]) return 0;
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for(;;) {
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for(;;) {
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switch(uxn.ram[pc++]) {
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switch(uxn.ram[pc++]) {
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/* BRK */ case 0x00: return 1;
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/* BRK */ case 0x00: return 1;
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/* JCI */ case 0x20: if(uxn.wst.dat[--uxn.wst.ptr]) { JMI break; } pc += 2; break;
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/* JCI */ case 0x20: if(DEC(wst)) { JMI break; } pc += 2; break;
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/* JMI */ case 0x40: JMI break;
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/* JMI */ case 0x40: JMI break;
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/* JSI */ case 0x60: tt = pc + 2; IMM(rst, tt >> 8) IMM(rst, tt) JMI break;
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/* JSI */ case 0x60: tt = pc + 2; INC(rst) = tt >> 8; INC(rst) = tt; JMI break;
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/* LI2 */ case 0xa0: IMM(wst, uxn.ram[pc++])
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/* LI2 */ case 0xa0: INC(wst) = uxn.ram[pc++];
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/* LIT */ case 0x80: IMM(wst, uxn.ram[pc++]) break;
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/* LIT */ case 0x80: INC(wst) = uxn.ram[pc++]; break;
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/* L2r */ case 0xe0: IMM(rst, uxn.ram[pc++])
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/* L2r */ case 0xe0: INC(rst) = uxn.ram[pc++];
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/* LIr */ case 0xc0: IMM(rst, uxn.ram[pc++]) break;
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/* LIr */ case 0xc0: INC(rst) = uxn.ram[pc++]; break;
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/* INC */ OPC(0x01, POx(a) PUx(a + 1))
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/* INC */ OPC(0x01, POx(a), PUx(a + 1))
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/* POP */ OPC(0x02, POx(a))
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/* POP */ OPC(0x02, POx(a), 0)
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/* NIP */ OPC(0x03, POx(a) POx(b) PUx(a))
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/* NIP */ OPC(0x03, POx(a) POx(b), PUx(a))
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/* SWP */ OPC(0x04, POx(a) POx(b) PUx(a) PUx(b))
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/* SWP */ OPC(0x04, POx(a) POx(b), PUx(a) PUx(b))
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/* ROT */ OPC(0x05, POx(a) POx(b) POx(c) PUx(b) PUx(a) PUx(c))
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/* ROT */ OPC(0x05, POx(a) POx(b) POx(c), PUx(b) PUx(a) PUx(c))
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/* DUP */ OPC(0x06, POx(a) PUx(a) PUx(a))
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/* DUP */ OPC(0x06, POx(a), PUx(a) PUx(a))
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/* OVR */ OPC(0x07, POx(a) POx(b) PUx(b) PUx(a) PUx(b))
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/* OVR */ OPC(0x07, POx(a) POx(b), PUx(b) PUx(a) PUx(b))
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/* EQU */ OPC(0x08, POx(a) POx(b) PU1(b == a))
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/* EQU */ OPC(0x08, POx(a) POx(b), PU1(b == a))
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/* NEQ */ OPC(0x09, POx(a) POx(b) PU1(b != a))
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/* NEQ */ OPC(0x09, POx(a) POx(b), PU1(b != a))
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/* GTH */ OPC(0x0a, POx(a) POx(b) PU1(b > a))
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/* GTH */ OPC(0x0a, POx(a) POx(b), PU1(b > a))
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/* LTH */ OPC(0x0b, POx(a) POx(b) PU1(b < a))
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/* LTH */ OPC(0x0b, POx(a) POx(b), PU1(b < a))
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/* JMP */ OPC(0x0c, POx(a) JMP(a))
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/* JMP */ OPC(0x0c, POx(a), JMP(a))
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/* JCN */ OPC(0x0d, POx(a) PO1(b) if(b) JMP(a))
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/* JCN */ OPC(0x0d, POx(a) PO1(b), if(b) JMP(a))
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/* JSR */ OPC(0x0e, POx(a) FLP PU2(pc) JMP(a))
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/* JSR */ OPC(0x0e, POx(a), PF2(pc) JMP(a))
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/* STH */ OPC(0x0f, POx(a) FLP PUx(a))
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/* STH */ OPC(0x0f, POx(a), PFx(a))
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/* LDZ */ OPC(0x10, PO1(a) PEK(b, a, t) PUx(b))
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/* LDZ */ OPC(0x10, PO1(a), PEK(b, a, t) PUx(b))
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/* STZ */ OPC(0x11, PO1(a) POx(b) POK(a, b, t))
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/* STZ */ OPC(0x11, PO1(a) POx(b), POK(a, b, t))
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/* LDR */ OPC(0x12, PO1(a) PEK(b, pc + (Sint8)a, tt) PUx(b))
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/* LDR */ OPC(0x12, PO1(a), PEK(b, pc + (Sint8)a, tt) PUx(b))
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/* STR */ OPC(0x13, PO1(a) POx(b) POK(pc + (Sint8)a, b, tt))
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/* STR */ OPC(0x13, PO1(a) POx(b), POK(pc + (Sint8)a, b, tt))
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/* LDA */ OPC(0x14, PO2(a) PEK(b, a, tt) PUx(b))
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/* LDA */ OPC(0x14, PO2(a), PEK(b, a, tt) PUx(b))
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/* STA */ OPC(0x15, PO2(a) POx(b) POK(a, b, tt))
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/* STA */ OPC(0x15, PO2(a) POx(b), POK(a, b, tt))
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/* DEI */ OPC(0x16, PO1(a) DEI(a, b) PUx(b))
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/* DEI */ OPC(0x16, PO1(a), DEI(a, b) PUx(b))
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/* DEO */ OPC(0x17, PO1(a) POx(b) DEO(a, b))
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/* DEO */ OPC(0x17, PO1(a) POx(b), DEO(a, b))
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/* ADD */ OPC(0x18, POx(a) POx(b) PUx(b + a))
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/* ADD */ OPC(0x18, POx(a) POx(b), PUx(b + a))
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/* SUB */ OPC(0x19, POx(a) POx(b) PUx(b - a))
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/* SUB */ OPC(0x19, POx(a) POx(b), PUx(b - a))
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/* MUL */ OPC(0x1a, POx(a) POx(b) PUx(b * a))
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/* MUL */ OPC(0x1a, POx(a) POx(b), PUx(b * a))
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/* DIV */ OPC(0x1b, POx(a) POx(b) PUx(a ? b / a : 0))
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/* DIV */ OPC(0x1b, POx(a) POx(b), PUx(a ? b / a : 0))
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/* AND */ OPC(0x1c, POx(a) POx(b) PUx(b & a))
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/* AND */ OPC(0x1c, POx(a) POx(b), PUx(b & a))
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/* ORA */ OPC(0x1d, POx(a) POx(b) PUx(b | a))
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/* ORA */ OPC(0x1d, POx(a) POx(b), PUx(b | a))
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/* EOR */ OPC(0x1e, POx(a) POx(b) PUx(b ^ a))
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/* EOR */ OPC(0x1e, POx(a) POx(b), PUx(b ^ a))
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/* SFT */ OPC(0x1f, PO1(a) POx(b) PUx(b >> (a & 0xf) << (a >> 4)))
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/* SFT */ OPC(0x1f, PO1(a) POx(b), PUx(b >> (a & 0xf) << (a >> 4)))
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}
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}
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}
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}
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}
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}
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