(uxn-tnl) Use stack pointer for arithmetic
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@ -17,31 +17,32 @@ WITH REGARD TO THIS SOFTWARE.
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[ L2 ][ N2 ][ T2 ] <
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[ L2 ][ N2 ][ T2 ] <
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*/
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*/
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#define T s->dat[s->ptr - 1]
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#define T *sp
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#define N s->dat[s->ptr - 2]
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#define N *(sp-1)
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#define L s->dat[s->ptr - 3]
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#define L *(sp-2)
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#define T2 PEEK2(s->dat + s->ptr - 2)
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#define T2 PEEK2((sp-1))
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#define H2 PEEK2(s->dat + s->ptr - 3)
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#define H2 PEEK2((sp-2))
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#define N2 PEEK2(s->dat + s->ptr - 4)
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#define N2 PEEK2((sp-3))
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#define L2 PEEK2(s->dat + s->ptr - 6)
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#define L2 PEEK2((sp-5))
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#define HALT(c) { return emu_halt(u, ins, (c), pc - 1); }
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#define HALT(c) { return emu_halt(u, ins, (c), pc - 1); }
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#define FLIP { s = ins & 0x40 ? &u->wst : &u->rst; }
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#define FLIP { s = ins & 0x40 ? &u->wst : &u->rst; }
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#define SET(x, y) { if(x > s->ptr) HALT(1) tmp = (x & k) + y + s->ptr; if(tmp > 254) HALT(2) s->ptr = tmp; }
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#define SET(x, y) { if(x > s->ptr) HALT(1) tmp = (x & k) + y + s->ptr; if(tmp > 254) HALT(2) s->ptr = tmp; }
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#define PUT(o, v) { s->dat[(s->ptr - 1 - (o))] = (v); }
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#define PUT(o, v) { s->dat[(s->ptr - 1 - (o))] = (v); }
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#define PUT2(o, v) { tmp = (v); POKE2(s->dat + (s->ptr - o - 2), tmp); }
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#define PUT2(o, v) { tmp = (v); POKE2(s->dat + (s->ptr - 2 - (o)), tmp); }
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int
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int
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uxn_eval(Uxn *u, Uint16 pc)
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uxn_eval(Uxn *u, Uint16 pc)
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{
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{
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int t, n, l, k, tmp, ins, opc;
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int t, n, l, k, tmp, ins, opc;
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Uint8 *ram = u->ram;
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Uint8 *ram = u->ram, *sp;
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Stack *s;
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Stack *s;
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if(!pc || u->dev[0x0f]) return 0;
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if(!pc || u->dev[0x0f]) return 0;
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for(;;) {
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for(;;) {
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ins = ram[pc++];
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ins = ram[pc++];
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k = ins & 0x80 ? 0xff : 0;
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k = ins & 0x80 ? 0xff : 0;
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s = ins & 0x40 ? &u->rst : &u->wst;
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s = ins & 0x40 ? &u->rst : &u->wst;
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sp = s->dat + s->ptr - 1;
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opc = !(ins & 0x1f) ? (0 - (ins >> 5)) & 0xff : ins & 0x3f;
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opc = !(ins & 0x1f) ? (0 - (ins >> 5)) & 0xff : ins & 0x3f;
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switch(opc) {
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switch(opc) {
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/* IMM */
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/* IMM */
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