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mirror of https://github.com/zenorogue/hyperrogue.git synced 2024-11-13 00:49:54 +00:00
hyperrogue/wfcgen.cpp
2020-03-07 04:47:10 +01:00

288 lines
11 KiB
C++

#include "hyper.h"
namespace hr {
EX namespace wfc {
typedef map<vector<eWall>, short> wfc_data;
wfc_data probs;
typedef pair<const vector<eWall>, short> probdata;
wfc_data gen_decompressed(const wfc_data& data) {
wfc_data res;
for(auto& d: data) {
auto cur = d.first;
for(int i=0; i<isize(cur)-1; i++) {
for(int k=2; k<isize(cur); k++) swap(cur[k-1], cur[k]);
res[cur] += d.second / (isize(cur)-1);
}
}
return res;
}
wfc_data gen_compressed(const wfc_data& data) {
wfc_data res;
for(auto& d: data) {
vector<eWall> cur = d.first;
vector<eWall> best = d.first;
for(int i=0; i<isize(best)-1; i++) {
for(int k=2; k<isize(cur); k++) swap(cur[k-1], cur[k]);
if(cur < best) best = cur;
}
res[best] += d.second;
}
return res;
}
void hwrite(hstream& hs, wfc_data& data) {
int siz = isize(data);
hr::hwrite(hs, siz);
for(auto p: data) {
hr::hwrite<char>(hs, isize(p.first));
for(auto c: p.first) hr::hwrite<char>(hs, c);
hr::hwrite<short>(hs, p.second);
}
}
void hread(hstream& hs, wfc_data& data) {
data.clear();
int qty = hs.get<int>();
for(int i=0; i<qty; i++) {
vector<eWall> w;
w.resize(hs.get<char>());
for(auto& c: w) c = eWall(hs.get<char>());
data[w] = hs.get<short>();
}
}
EX void load_probs() {
start_game();
manual_celllister cl;
cl.add(cwt.at);
for(int i=0; i<isize(cl.lst); i++) {
cell *c = cl.lst[i];
if(c->wall == waChasm || c->mpdist > 7) goto next;
forCellEx(c1, c) if(c1->wall == waChasm || c1->mpdist > 7) goto next;
for(int i=0; i<c->type; i++) {
vector<eWall> s;
if(c->type == 6 && (i&1)) continue;
s.push_back(c->wall);
for(int j=0; j<c->type; j++) s.push_back(c->modmove(i+j)->wall);
bool interesting = false;
for(eWall w: s) if(w != waNone) interesting = true;
if(interesting) probs[s] += 42 / c->type;
}
forCellEx(c1, c) cl.add(c1);
next: ;
}
}
bool agree(cell *c, probdata& p) {
// println(hlog, p);
if(isize(p.first) != c->type + 1) return false;
int idx = 1;
if(c->wall != waChasm && eWall(c->wparam) != p.first[0]) return false;
forCellEx(c1, c) {
eWall found = p.first[idx++];
if(c1->wparam != found && c1->wall != waChasm) return false;
}
return true;
}
vector<probdata*> gen_picks(cell *c, int& total, wfc_data& data) {
vector<probdata*> picks;
total = 0;
for(auto& wp: data) {
if(!agree(c, wp)) continue;
picks.push_back(&wp);
total += wp.second;
}
return picks;
}
EX vector<cell*> centers;
EX void schedule(cell *c) {
centers.push_back(c);
}
void generate_all() {
start_game();
manual_celllister cl;
cl.add(cwt.at);
vector<cell*> centers;
for(int i=0; i<isize(cl.lst); i++) {
cell *c = cl.lst[i];
bool incenter = true;
forCellEx(c1, c) {
if(c1->mpdist <= 7)
cl.add(c1);
else
incenter = false;
}
if(incenter)
centers.push_back(c);
}
for(cell *c: cl.lst) c->wall = waChasm;
}
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void extend(wfc_data& res, vector<eWall> v, int val, int sides) {
if(isize(v) == sides+1)
res[v] += val;
else if(isize(v) < sides + 1) {
for(int i=1; i<isize(v); i++) {
auto w = v;
w.insert(w.begin()+i, v[i]);
extend(res, w, val, sides);
}
v.insert(v.begin()+1, v.back());
extend(res, v, val, sides);
}
else {
for(int i=1; i<isize(v); i++) {
auto w = v;
auto l = v[i==1 ? isize(v)-1 : i-1];
auto r = v[i == isize(v)-1 ? 1 : i+1];
if(l == waCharged && r == waGrounded) continue;
if(l == waGrounded && r == waCharged) continue;
w.erase(w.begin()+i);
extend(res, w, val, sides);
}
}
}
wfc_data renumerate(const wfc_data& d, int sides) {
wfc_data res;
for(auto& p: d) {
extend(res, p.first, p.second, sides);
}
return res;
}
wfc_data& eclectic_data() {
static wfc_data d = gen_decompressed(deserialize<wfc_data>(decompress_string(eclectic_c)));
if(geometry == gNormal && !PURE) return d;
if(geometry == gNormal && PURE) {
static wfc_data dpure = renumerate(d, 7);
return dpure;
}
if(geometry == gEuclid) {
static wfc_data deuc = renumerate(d, 6);
return deuc;
}
return d;
}
EX bool use_eclectic = true;
EX void invoke() {
wfc_data& d = use_eclectic ? eclectic_data() : probs;
while(isize(centers)) {
int pos = -1;
ld best_entropy = 1e9;
for(int p=0; p<isize(centers); p++) {
cell *c = centers[p];
int total;
auto picks = gen_picks(c, total, d);
ld entropy = 0;
for(auto p: picks) entropy += p->second * log(total * 1. / p->second) / total;
if(entropy < best_entropy) best_entropy = entropy, pos = p;
}
cell *c = centers[pos];
centers[pos] = centers.back();
centers.pop_back();
// println(hlog, "chosen ", c, " at entropy ", best_entropy, " in distance ", c->mpdist);
int total;
auto picks = gen_picks(c, total, d);
if(total) total = hrand(total);
for(auto pp: picks) {
auto& p = *pp;
total -= p.second;
if(total < 0) {
int idx = 1;
c->wall = p.first[0];
c->wparam = p.first[0];
forCellEx(c1, c) c1->wparam = c1->wall = p.first[idx++];
break;
}
}
}
}
void use_probs() {
stop_game();
use_eclectic = false;
firstland = specialland = laEclectic;
start_game();
}
EX void wfc_menu() {
cmode = sm::SIDE | sm::MAYDARK;
gamescreen(1);
dialog::init(XLAT("Wave Function Collapse"));
dialog::addSelItem(XLAT("import the current map"), XLAT("rules: %1", its(isize(probs))), 'i');
dialog::add_action(load_probs);
dialog::addBoolItem(XLAT("generate a map using WFC"), !use_eclectic, 'g');
if(probs.empty()) dialog::lastItem().value = "(no rules)";
dialog::add_action([] {
if(probs.empty()) return;
if(use_eclectic) {
use_probs();
}
else {
stop_game();
use_eclectic = true;
start_game();
}
});
dialog::addBack();
dialog::display();
}
auto wfc_hook =
// addHook(hooks_handleKey, 100, wfc_handleKey) +
addHook(hooks_args, 100, [] {
using namespace arg;
if(0) ;
else if(argis("-wfc-load")) {
load_probs();
}
else if(argis("-wfc-c")) {
println(hlog, as_cstring(compress_string(serialize(gen_compressed(probs)))));
}
else if(argis("-wfc-use")) {
use_probs();
}
else return 1;
return 0;
});
EX }
}