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rulegen3:: less cycles to check
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80c3dfcd34
commit
304c9efe54
51
rulegen3.cpp
51
rulegen3.cpp
@ -1267,12 +1267,27 @@ EX void test_transducers() {
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be_productive(cum);
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int id_size = isize(cum);
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set<cycle> checked;
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for(auto& cyc: cycle_data[tid]) {
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println(hlog, "Working on tid=", tid, " cycle ", cyc, " (", id++, "/", isize(cycle_data[tid]), ")");
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if(checked.count(cyc)) {
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continue;
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}
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auto cyc2 = cyc;
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int q = isize(cyc.dirs);
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for(int i=0; i<q; i++) {
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for(int j=1; j<q; j++) {
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swap(cyc2.dirs[j], cyc2.dirs[j-1]);
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swap(cyc2.tids[j], cyc2.tids[j-1]);
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swap(cyc2.rdirs[j], cyc2.rdirs[j-1]);
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}
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checked.insert(cyc2);
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}
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println(hlog, "Working on tid=", tid, " cycle ", cyc.dirs, " (", id++, "/", isize(cycle_data[tid]), ")");
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check_timeout();
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indenter ind(2);
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int ctid = tid;
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for(auto c: cyc.first) {
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for(auto c: cyc.dirs) {
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transducer result;
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println(hlog, "special is ", tie(ctid, c));
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compose_with(cum, special[ctid][c], result);
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@ -1283,7 +1298,7 @@ EX void test_transducers() {
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int err = 0;
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for(auto duc: cum) for(auto p: duc.second.t)
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if(p.first.first == ENDED || p.first.second != p.first.first) err++;
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throw_identity_errors(cum, cyc.first);
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throw_identity_errors(cum, cyc.dirs);
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if(id_size != isize(cum)) println(hlog, "error: identity not recovered correctly");
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}
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}
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@ -1369,9 +1384,9 @@ EX void check_upto(int lev, int t) {
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vs.vcells[0].become(i);
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vs.current_pos = vs.current_root = 0;
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vs.movestack.clear();
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for(auto v: cd.first) vs.movestack.emplace_back(v, MYSTERY);
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for(auto v: cd.dirs) vs.movestack.emplace_back(v, MYSTERY);
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reverse(vs.movestack.begin(), vs.movestack.end());
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if(check_debug >= 1) println(hlog, "checking ", tie(i, id, cd));
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if(check_debug >= 1) println(hlog, "checking ", tie(i, id, cd.dirs));
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indenter ind(2);
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check(vs);
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}
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@ -1418,7 +1433,16 @@ EX void check_road_shortcuts() {
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println(hlog, "Got it!");
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}
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EX vector<vector<pair<vector<int>, vector<int>>>> cycle_data;
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#if HDR
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struct cycle {
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vector<int> dirs;
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vector<int> tids;
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vector<int> rdirs;
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bool operator < (const cycle& c2) const { return tie(dirs, tids, rdirs) < tie(c2.dirs, c2.tids, c2.rdirs); }
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};
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#endif
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EX vector<vector<cycle>> cycle_data;
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EX void build_cycle_data() {
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cycle_data.clear();
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@ -1431,8 +1455,10 @@ EX void build_cycle_data() {
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for(int j=0; j<isize(f); j++) {
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hyperpoint v1 = kleinize(sh0.from_cellcenter * sh0.faces[i][j]);
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hyperpoint v2 = kleinize(sh0.from_cellcenter * sh0.faces[i][(j+1) % isize(f)]);
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vector<int> path = {i};
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vector<int> rpath = {start->c.spin(i)};
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cycle cc;
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cc.dirs = {i};
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cc.tids = {t};
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cc.rdirs = {start->c.spin(i)};
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transmatrix T = currentmap->adj(start, i);
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cell *at = start->cmove(i);
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cell *last = start;
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@ -1449,17 +1475,18 @@ EX void build_cycle_data() {
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if(ok == 3) dir = d;
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}
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if(dir == -1) throw hr_exception("cannot cycle");
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path.push_back(dir);
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rpath.push_back(at->c.spin(dir));
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cc.tids.push_back(get_id(at));
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cc.dirs.push_back(dir);
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cc.rdirs.push_back(at->c.spin(dir));
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T = T * currentmap->adj(at, dir);
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last = at;
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at = at->cmove(dir);
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}
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cycle_data[t].push_back({std::move(path), std::move(rpath)});
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cycle_data[t].push_back({std::move(cc)});
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}
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}
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}
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println(hlog, "cycle data = ", cycle_data);
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println(hlog, "cycle data computed");
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}
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using classdata = pair<vector<int>, int>;
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