import java.util.*;
import java.util.zip.*;
import java.util.List;
import java.util.regex.*;
import java.util.concurrent.*;
import java.util.concurrent.atomic.*;
import java.util.concurrent.locks.*;
import javax.swing.*;
import javax.swing.event.*;
import javax.swing.text.*;
import javax.swing.table.*;
import java.io.*;
import java.net.*;
import java.lang.reflect.*;
import java.lang.ref.*;
import java.lang.management.*;
import java.security.*;
import java.security.spec.*;
import java.awt.*;
import java.awt.event.*;
import java.awt.image.*;
import javax.imageio.*;
import java.math.*;
import java.text.NumberFormat;
class main {
static class DeepBitSetWordIndex {
boolean _isTransient() { return true; }
String regexp = "\\w+";
Map singleTextIndices = new HashMap();
ElementInstanceMatrix mainIndex = new ElementInstanceMatrix();
void add(A a, String text) {
singleTextIndices.put(a, new SingleTextWordIndex(regexp, text));
mainIndex.add(a, mapToSet(__20 -> upper(__20),regexpExtractAll(regexp, text)));
}
void doneAdding() {
mainIndex.doneAdding();
}
List> wordsAndOffsets(String text) {
return map(regexpFindRanges(regexp, text),
r -> pair(upper(substring(text, r)), r.start));
}
// assumes word boundaries left and right of query
Collection preSearch(String query, Object... __) {
boolean debug = boolPar("debug",__);
List> l = wordsAndOffsets(query);
Collection candidates = mainIndex.instancesContainingAllElements(pairsA(l));
if (debug) {
List lengths = map(candidates, a -> singleTextIndices.get(a).length);
print(nCandidates(candidates) + ", total length: " + n2(intSum(lengths)) + ", lengths: " + lengths);
}
return filter(candidates, a -> nempty(singleTextIndices.get(a).indicesOfWordCombination(l)));
}
int numWords() { return mainIndex.numElements(); }
}
static HashSet mapToSet(Object f, Iterable l) {
return mapToHashSet(f, l);
}
static HashSet mapToSet(IF1 f, Iterable l) {
return mapToSet((Object) f, l);
}
static HashSet mapToSet(Iterable l, IF1 f) {
return mapToSet((Object) f, l);
}
static String upper(String s) {
return s == null ? null : s.toUpperCase();
}
static char upper(char c) {
return Character.toUpperCase(c);
}
static List regexpExtractAll(String pat, String s) {
if (s == null) return null;
Matcher m = regexpMatcher(pat, s);
List out = new ArrayList();
while (m.find())
out.add(m.group());
return out;
}
static List map(Iterable l, Object f) { return map(f, l); }
static List map(Object f, Iterable l) {
List x = emptyList(l);
if (l != null) for (Object o : l)
x.add(callF(f, o));
return x;
}
static List map(Iterable l, F1 f) { return map(f, l); }
static List map(F1 f, Iterable l) {
List x = emptyList(l);
if (l != null) for (A o : l)
x.add(callF(f, o));
return x;
}
static List map(IF1 f, Iterable l) { return map(l, f); }
static List map(Iterable l, IF1 f) {
List x = emptyList(l);
if (l != null) for (A o : l)
x.add(f.get(o));
return x;
}
static List map(IF1 f, A[] l) { return map(l, f); }
static List map(A[] l, IF1 f) {
List x = emptyList(l);
if (l != null) for (A o : l)
x.add(f.get(o));
return x;
}
static List map(Object f, Object[] l) { return map(f, asList(l)); }
static List map(Object[] l, Object f) { return map(f, l); }
static List map(Object f, Map map) {
return map(map, f);
}
// map: func(key, value) -> list element
static List map(Map map, Object f) {
List x = new ArrayList();
if (map != null) for (Object _e : map.entrySet()) {
Map.Entry e = (Map.Entry) _e;
x.add(callF(f, e.getKey(), e.getValue()));
}
return x;
}
static List map(Map map, IF2 f) {
return map(map, (Object) f);
}
static List regexpFindRanges(String pat, String s) {
Matcher m = regexpMatcher(pat, s);
List l = new ArrayList();
while (m.find())
l.add(new IntRange(m.start(), m.end()));
return l;
}
static Pair pair(A a, B b) {
return new Pair(a, b);
}
static Pair pair(A a) {
return new Pair(a, a);
}
static String substring(String s, int x) {
return substring(s, x, strL(s));
}
static String substring(String s, int x, int y) {
if (s == null) return null;
if (x < 0) x = 0;
if (x >= s.length()) return "";
if (y < x) y = x;
if (y > s.length()) y = s.length();
return s.substring(x, y);
}
static String substring(String s, IntRange r) {
return r == null ? null : substring(s, r.start, r.end);
}
// convenience method for quickly dropping a prefix
static String substring(String s, CharSequence l) {
return substring(s, l(l));
}
static boolean boolPar(ThreadLocal tl) {
return boolOptParam(tl);
}
// defaults to false
static boolean boolPar(Object[] __, String name) {
return boolOptParam(__, name);
}
static boolean boolPar(String name, Object[] __) {
return boolOptParam(__, name);
}
static boolean boolPar(String name, Map __) {
return boolOptParam(name, __);
}
static boolean boolPar(String name, Object[] params, boolean defaultValue) {
return optParam(params, name, defaultValue);
}
static List pairsA(Collection> l) {
return firstOfPairs(l);
}
static volatile StringBuffer local_log = new StringBuffer(); // not redirected
static volatile Appendable print_log = local_log; // might be redirected, e.g. to main bot
// in bytes - will cut to half that
static volatile int print_log_max = 1024*1024;
static volatile int local_log_max = 100*1024;
static boolean print_silent = false; // total mute if set
static Object print_byThread_lock = new Object();
static volatile ThreadLocal