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reg3:: using quotient_map based on whether quotient_map exists
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18
reg3.cpp
18
reg3.cpp
@ -560,12 +560,17 @@ EX namespace reg3 {
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heptagon *alt = NULL;
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transmatrix T = Id;
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if(hyperbolic) {
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binary_map = nullptr;
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quotient_map = nullptr;
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#if CAP_FIELD
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if(hyperbolic && !(cgflags & qIDEAL)) {
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quotient_map = new hrmap_field3;
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h.zebraval = quotient_map->allh[0]->zebraval;
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}
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#endif
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if(hyperbolic) {
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dynamicval<eGeometry> g(geometry, gBinary3);
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binary::build_tmatrix();
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alt = tailored_alloc<heptagon> (S7);
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@ -579,7 +584,6 @@ EX namespace reg3 {
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binary_map = binary::new_alt_map(alt);
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T = xpush(.01241) * spin(1.4117) * xpush(0.1241) * cspin(0, 2, 1.1249) * xpush(0.07) * Id;
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}
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else binary_map = NULL, quotient_map = NULL;
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reg_gmatrix[origin] = make_pair(alt, T);
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altmap[alt].emplace_back(origin, T);
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@ -642,7 +646,7 @@ EX namespace reg3 {
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if(DEB) println(hlog, "creating step ", parent, ":", d, ", at ", p1.first, tC0(p1.second));
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heptagon *alt = p1.first;
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#if CAP_FIELD
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transmatrix T = p1.second * (hyperbolic ? quotient_map->tmatrices[parent->fieldval][d] : adjmoves[d]);
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transmatrix T = p1.second * (quotient_map ? quotient_map->tmatrices[parent->fieldval][d] : adjmoves[d]);
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#else
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transmatrix T = p1.second * adjmoves[d];
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#endif
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@ -669,7 +673,7 @@ EX namespace reg3 {
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int fb = 0;
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hyperpoint old = T * (inverse(T1) * tC0(p1.second));
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#if CAP_FIELD
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if(hyperbolic) {
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if(quotient_map) {
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p2.first->c.connect(counterpart(parent)->c.spin(d), parent, d, false);
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fix_distances(p2.first, parent);
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return p2.first;
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@ -700,7 +704,7 @@ EX namespace reg3 {
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if(DEB) println(hlog, "-> not found");
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int d2 = 0, fv = isize(reg_gmatrix);
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#if CAP_FIELD
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if(hyperbolic) {
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if(quotient_map) {
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auto cp = counterpart(parent);
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d2 = cp->c.spin(d);
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fv = cp->c.move(d)->fieldval;
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@ -712,7 +716,7 @@ EX namespace reg3 {
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created->alt = NULL;
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created->cdata = NULL;
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#if CAP_FIELD
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if(hyperbolic) {
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if(quotient_map) {
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created->zebraval = quotient_map->allh[fv]->zebraval;
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}
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else
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@ -788,7 +792,7 @@ EX namespace reg3 {
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for(int i=0; i<S7; i++) if(h->move(i)) {
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#if CAP_FIELD
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if(hyperbolic) dq::enqueue(h->move(i), V * quotient_map->tmatrices[h->fieldval][i]);
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if(quotient_map) dq::enqueue(h->move(i), V * quotient_map->tmatrices[h->fieldval][i]);
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else
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#endif
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dq::enqueue(h->move(i), V * relative_matrix(h->move(i), h));
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