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56 lines
1.3 KiB
C++
56 lines
1.3 KiB
C++
// computePath to convert HyperRogue's cell to DHRG's mycell (mycell.cpp)
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namespace dhrg {
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// compute the path to the given cell
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hrmap *mapptr;
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string computePath(cell *c) {
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string s = "";
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int d = celldist(c);
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while(d > 0) {
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char z = '0';
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cell *c1 = ts::left_parent(c, celldist);
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int id = neighborId(c1, c);
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d--;
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if(d == 0) z = '0'+id;
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else while(true) {
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id--;
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if(id<0) id += c1->type;
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if(celldist(createMov(c1, id)) <= d) break;
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if(z >= 'a') { printf("<%d> ", celldist(createMov(c1, id))); }
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z++;
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}
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s += z; c = c1;
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}
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reverse(s.begin(), s.end());
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return s;
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}
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int recycle_counter = 0;
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void recycle_compute_map() {
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if(mapptr) {
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delete mapptr;
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mapptr = NULL;
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}
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}
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string computePath(const transmatrix& T) {
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if(recycle_counter >= 1000)
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recycle_compute_map();
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if(!mapptr) mapptr = bt::in() ? bt::new_map() : new hrmap_hyperbolic;
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recycle_counter++;
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dynamicval<hrmap*> dv (currentmap, mapptr);
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cell *c = mapptr->gamestart();
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hyperpoint T0 = T * C0;
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// call HyperRogue's function virtualRebase:
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// a point in the hyperbolic plane is given by cell c and point T0 relative to c
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// change c and T0 so that the same point is specified, but with minimal T0
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virtualRebase(c, T0);
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return computePath(c);
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}
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}
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