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110 lines
3.1 KiB
C++
110 lines
3.1 KiB
C++
// Copyright (C) 2018 Zeno and Tehora Rogue, see 'hyper.cpp' for details
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// this is a plugin which generates branched tilings for newconformist
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// https://github.com/zenorogue/newconformist (see the option '-cvl')
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namespace hr {
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#if CAP_SHOT
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struct location {
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transmatrix lView;
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cell *lco;
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};
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struct lineinfo {
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vector<location> locs;
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int plus_matrices;
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int minus_matrices;
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};
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map<int, lineinfo> lines;
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location loc_multiply(location orig, transmatrix T) {
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dynamicval<transmatrix> dv(View, orig.lView);
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dynamicval<cell*> dc(centerover, orig.lco);
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View = inverse(T) * View;
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for(int a=0; a<10; a++) optimizeview();
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return location{View, centerover};
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}
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bool show_map = false;
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void cvl_marker() {
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if(show_map) for(auto& l: lines) {
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int id = 0;
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for(auto& loc: l.second.locs) {
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if(gmatrix.count(loc.lco)) {
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transmatrix T = gmatrix[loc.lco] * inverse(loc.lView);
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queuepoly(T, cgi.shAsymmetric, 0xFF00FFFF);
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queuestr(T, 1.0, its(l.first)+"/"+its(id), 0xFFFFFF);
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}
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id++;
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}
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}
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}
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int readArgs() {
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using namespace arg;
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if(0) ;
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else if(argis("-cvlbuild")) {
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PHASEFROM(3);
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start_game();
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shift();
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fhstream f(argcs(), "rt");
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if(!f.f) { shift(); printf("failed to open file\n"); return 0; }
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int id;
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lineinfo l0;
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scan(f, id, l0.plus_matrices, l0.minus_matrices);
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l0.locs.push_back(location{View, centerover});
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for(int i=1; i<l0.plus_matrices; i++)
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l0.locs.push_back(loc_multiply(l0.locs.back(), xpush(1)));
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lines[id] = std::move(l0);
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while(true) {
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scan(f, id);
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println(hlog, "id=", id, ".");
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if(id < 0) break;
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auto& l1 = lines[id];
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int step;
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scan(f, id, step);
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transmatrix T;
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for(int a=0; a<9; a++) scan(f, T[0][a]);
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scan(f, l1.plus_matrices, l1.minus_matrices);
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auto old = lines[id].locs[step];
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println(hlog, "FROM ", old.lView, old.lco, " id=", id, " step=", step);
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l1.locs.push_back(loc_multiply(old, T));
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println(hlog, "TO ", l1.locs.back().lView, l1.locs.back().lco, "; creating ", l1.plus_matrices);
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for(int i=1; i<l1.plus_matrices; i++)
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l1.locs.push_back(loc_multiply(l1.locs.back(), xpush(1)));
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println(hlog, "LAST ", l1.locs.back().lView, l1.locs.back().lco);
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}
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}
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else if(argis("-cvllist")) {
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for(auto& l: lines)
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for(auto& loc: l.second.locs) {
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println(hlog, l.first, ". ", loc.lco, " (dist=", celldist(loc.lco), "), View = ", loc.lView);
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}
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}
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else if(argis("-cvlmap")) {
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show_map = !show_map;
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}
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else if(argis("-cvldraw")) {
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shift(); string s = args();
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for(auto& p: lines) {
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int i = 0;
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for(auto& loc: p.second.locs) {
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dynamicval<transmatrix> dv(View, loc.lView);
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dynamicval<cell*> dc(centerover, loc.lco);
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shot::take(format(s.c_str(), p.first, i++));
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}
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}
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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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auto magichook = addHook(hooks_args, 100, readArgs) + addHook(hooks_frame, 100, cvl_marker);
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#endif
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}
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