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195 lines
4.8 KiB
C++
195 lines
4.8 KiB
C++
// Hyperbolic Rogue -- infinite-order tessellations
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// Copyright (C) 2011-2019 Zeno Rogue, see 'hyper.cpp' for details
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/** \file inforder3.cpp
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* \brief infinite-order tessellations
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*
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* very simple
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*/
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#include "../hyper.h"
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namespace hr {
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namespace rewriting {
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bool symmetric;
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string start;
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vector<pair<string, string> > rules;
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set<pair<string, string> > ruleset;
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map<string, int> find_matches(string s) {
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map<string, int> res;
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for(auto& p: rules) {
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size_t next = s.find(p.first);
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while(next != string::npos) {
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string t = s.substr(0, next) + p.second + s.substr(next+isize(p.first));
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auto& r = res[t];
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if(ruleset.count({p.second, p.first})) r = 2;
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else r = max(r, 1);
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next = s.find(p.first, next+1);
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}
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}
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return res;
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}
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struct hrmap_rewrite : hrmap_hyperbolic {
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map<heptagon*, pair<heptagon*, string> > asg;
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map<pair<heptagon*, string>, heptagon*> asg_rev;
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heptagon *create_step(heptagon *h, int direction) override {
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if(h->move(direction)) return h->move(direction);
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if(asg.empty()) { asg[h] = {h, start}; h->zebraval = 0; }
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auto s = asg[h].second;
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auto root = asg[h].first;
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auto matches = find_matches(s);
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int next = h->zebraval;
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if(matches.empty() && next == 0) {
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h->c.connect(0, h, 0, false);
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return h;
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}
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for(auto& match: matches) {
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if(h->move(next)) { next++; continue; }
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bool symmetric = match.second == 2;
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const string& m = match.first;
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if(symmetric) {
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auto matches1 = find_matches(m);
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heptagon *h1;
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if(asg_rev[{root, m}]) h1 = asg_rev[{root, m}];
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else {
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h1 = tailored_alloc<heptagon> (isize(matches1));
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h1->alt = NULL;
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h1->s = hsA;
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h1->cdata = NULL;
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h1->distance = h->distance;
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h1->zebraval = 0;
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h1->c7 = newCell(isize(matches1), h1);
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asg[h1] = {root, m};
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asg_rev[{root, m}] = h1;
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}
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int next1 = 0;
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for(auto& match2: matches1) { if(match2.first == s) break; next1++; }
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h->c.connect(next, h1, next1, false);
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}
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else {
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int deg = 1 + isize(find_matches(m));
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auto h1 = tailored_alloc<heptagon> (deg);
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h->c.connect(next, h1, 0, false);
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h1->alt = NULL;
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h1->s = hsA;
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h1->cdata = NULL;
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h1->distance = h->distance + 1;
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h1->zebraval = 1;
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h1->c7 = newCell(deg, h1);
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asg[h1] = {h1, m};
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asg_rev[{h1, m}] = h1;
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}
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next++;
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}
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if(next != h->type) { println(hlog, "degree error"); exit(1); }
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return h->move(direction);
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}
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};
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colortable labels = {0x100FFFF, 0x100FF00, 0x1FFFF00, 0x1FF8000, 0x1FF0000, 0x1FF00FF};
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bool labeller(cell* c, const shiftmatrix& V) {
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auto m = dynamic_cast<hrmap_rewrite*> (currentmap);
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if(m) {
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string s = m->asg[c->master].second;
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cgi.scalefactor = 1;
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queuestr(V, 0.5, s, labels[c->master->distance+1]);
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}
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return false;
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}
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void load_rules(vector<string> vs) {
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stop_game();
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set_geometry(gInfOrderMixed);
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ginf[gInfOrderMixed].distlimit = {{1, 1}};
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ginf[gInfOrderMixed].flags |= qEXPERIMENTAL;
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start = "";
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rules.clear();
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ruleset.clear();
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for(string line: vs) {
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if(line == "") continue;
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auto i = line.find("->");
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if(i != string::npos) {
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rules.emplace_back(line.substr(0, i), line.substr(i+2));
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ruleset.emplace(line.substr(0, i), line.substr(i+2));
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}
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else start = line;
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}
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ginf[gInfOrderMixed].sides = isize(find_matches(start));
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if(!ginf[gInfOrderMixed].sides) ginf[gInfOrderMixed].sides = 1;
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ginf[gInfOrderMixed].flags |= qANYQ;
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}
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#if ISWEB
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extern "C" {
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void load_web_rules() {
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string s = get_value("rules") + '\n';
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vector<string> split;
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string cc = "";
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for(char c: s) if(c == '\n' || c == '\r') split.push_back(cc), cc = ""; else cc += c;
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load_rules(split);
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start_game();
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clearMessages();
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bfs();
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resetview();
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drawthemap();
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centerpc(INF);
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centerover = cwt.at;
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}
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}
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#endif
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auto hooks =
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addHook(hooks_args, 100, [] {
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using namespace arg;
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if(0) ;
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#if ISWEB
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else if(argis("-rww")) {
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load_web_rules();
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}
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#endif
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else if(argis("-rwr")) {
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shift();
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fhstream ss(argcs(), "rt");
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vector<string> vs;
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string line;
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while(scan(ss, line)) vs.push_back(line);
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load_rules(vs);
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}
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else return 1;
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return 0;
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}) +
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addHook(hooks_newmap, 100, [] {
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if(geometry == gInfOrderMixed && !rules.empty()) return (hrmap*) new hrmap_rewrite;
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return (hrmap*) nullptr;
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})
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+ addHook(hooks_drawcell, 100, labeller);
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}
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}
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