Submission #756043

# Submission time Handle Problem Language Result Execution time Memory
756043 2023-06-11T01:05:11 Z NK_ XOR (IZhO12_xor) C++17
100 / 100
173 ms 118728 KB
#include <bits/stdc++.h>

using namespace std;

/////////////////////// MACROS ////////////////////////////////////////////
using ll = long long;
using ld = long double;
using db = double;
using str = string;

using pi = pair<int,int>;
using pl = pair<ll,ll>;

using vi = vector<int>;
using vl = vector<ll>;
using vs = vector<str>;
using vc = vector<char>;
using vpi = vector<pi>;
using vpl = vector<pl>;

#define tcT template<class T
#define tcTU tcT, class U
tcT> using V = vector<T>;
tcT, size_t SZ> using AR = array<T,SZ>;
tcTU> using PR = pair<T,U>;
tcTU> using umap = unordered_map<T, U>;
tcT> using uset = unordered_set<T>;
tcT> using mset = multiset<T>;

#define mp make_pair
#define f first
#define s second

#define sz(x) int((x).size())
#define all(x) x.begin(), x.end()
#define rall(x) x.rbegin(), x.rend()
#define rsz resize
#define ins insert
#define ft front()
#define bk back()
#define ppb pop_back()
#define ppf pop_front()
#define pb push_back
#define eb emplace_back
#define pf push_front

#define lb lower_bound
#define ub upper_bound

// LOOPS
#define FOR(i,a,b) for (int i = (a); i < (b); ++i)
#define F0R(i,a) FOR(i,0,a)
#define ROF(i,a,b) for (int i = (b)-1; i >= (a); --i)
#define R0F(i,a) ROF(i,0,a)
#define rep(a) F0R(_, a)
#define each(a,x) for (auto& a: x)

/////////////////////// IMPORANT VARS /////////////////////////////////////

const int MOD = 1e9+7; // 998244353;
const int MX = 2e5+5;
const ll INFL = ll(3e18)+10;
const int INF = int(1e9)+10;
const ld PI = acos((ld)-1);
const int dx[4] = {1,0,-1,0}, dy[4] = {0,1,0,-1};
tcT> using pqg = priority_queue<T,vector<T>,greater<T>>;
tcT> using pql = priority_queue<T,vector<T>,less<T>>;
mt19937 rng(chrono::steady_clock::now().time_since_epoch().count());
#define nl '\n'

constexpr int pct(int x) { return __builtin_popcount(x); } // # of bits set
constexpr int bits(int x) { 
	return x == 0 ? 0 : 31-__builtin_clz(x); }
constexpr int p2(int x) { return 1<<x; }
constexpr int msk2(int x) { return p2(x)-1; }
 
ll cdiv(ll a, ll b) { return a/b+((a^b)>0&&a%b); } // divide a by b rounded up
ll fdiv(ll a, ll b) { return a/b-((a^b)<0&&a%b); } // divide a by b rounded down
 
tcT> bool ckmin(T& a, const T& b) {
	return b < a ? a = b, 1 : 0; } // set a = min(a,b)
tcT> bool ckmax(T& a, const T& b) {
	return a < b ? a = b, 1 : 0; }
 
tcTU> T fstTrue(T lo, T hi, U f) {
	hi ++; assert(lo <= hi); // assuming f is increasing
	while (lo < hi) { // find first index such that f is true 
		T mid = lo+(hi-lo)/2;
		f(mid) ? hi = mid : lo = mid+1; 
	} 
	return lo;
}
tcTU> T lstTrue(T lo, T hi, U f) {
	lo --; assert(lo <= hi); // assuming f is decreasing
	while (lo < hi) { // find first index such that f is true 
		T mid = lo+(hi-lo+1)/2;
		f(mid) ? lo = mid : hi = mid-1;
	} 
	return lo;
}
tcT> void remDup(vector<T>& v) { // sort and remove duplicates
	sort(all(v)); v.erase(unique(all(v)),end(v)); }
tcTU> void erase(T& t, const U& u) { // don't erase
	auto it = t.find(u); assert(it != end(t));
	t.erase(it); } // element that doesn't exist from (multi)set


// #include <ext/pb_ds/assoc_container.hpp>
// using namespace __gnu_pbds;

// tcT> using iset = tree<T, null_type, less<T>, rb_tree_tag, tree_order_statistics_node_update>; 
// #define ook order_of_key
// #define fbo find_by_order

// struct chash { 
// 	const uint64_t C = ll(2e18*PI)+71;
// 	const int RANDOM = rng();
// 	ll operator()(ll x) const {
// 		return __builtin_bswap64((x^RANDOM)*C); }
// };
// template<class K,class V> using um = unordered_map<K,V,chash>;
// template<class K,class V> using ht = gp_hash_table<K,V,chash>;
// template<class K,class V> V get(ht<K,V>& u, K x) {
// 	auto it = u.find(x); return it == end(u) ? 0 : it->s; }

/////////////////////// OUPUT /////////////////////////////////////////////
#define ts to_string
str ts(char c) { return str(1,c); }
str ts(const char* s) { return (str)s; }
str ts(str s) { return s; }
str ts(bool b) {
	#ifdef LOCAL
		return b ? "true" : "false";
	#else
		return ts((int)b);
	#endif
}
tcTU> str ts(pair<T,U> p) {
	#ifdef LOCAL
		return "("+ts(p.f)+", "+ts(p.s)+")";
	#else
		return ts(p.f)+" "+ts(p.s);
	#endif
}

tcTU> str ts(V<pair<T, U>> v) {
	#ifdef LOCAL
		bool fst = 1; str res = "{";
		for (const auto& x: v) {
			if (!fst) res += ", ";
			fst = 0; res += ts(x);
		}
		res += "}"; return res;
	#else
		bool fst = 1; str res = "";
		for (const auto& x: v) {
			if (!fst) res += " ";
			fst = 0; res += ts(x);
		}
		return res;
	#endif
}

tcT> str ts(T v) {
	#ifdef LOCAL
		bool fst = 1; str res = "{";
		for (const auto& x: v) {
			if (!fst) res += ", ";
			fst = 0; res += ts(x);
		}
		res += "}"; return res;
	#else
		bool fst = 1; str res = "";
		for (const auto& x: v) {
			if (!fst) res += " ";
			fst = 0; res += ts(x);
		}
		return res;

	#endif
}

///////////////////////// DEBUG ///////////////////////////////////////////
#define tcTUU tcT, class ...U
void DBG() { cerr << "]" << "\e[0m" << endl; }
tcTUU> void DBG(const T& t, const U&... u) {
	cerr << ts(t); if (sizeof...(u)) cerr << ", ";
	DBG(u...); }
#ifdef LOCAL
	#define dbg(...) cerr << "\e[1m" << "Line(" << __LINE__ << ") -> [" << #__VA_ARGS__ << "]: [", DBG(__VA_ARGS__);
	#define chk(...) if (!(__VA_ARGS__)) cerr << "Line(" << __LINE__ << ") -> function(" \
		 << __FUNCTION__  << ") -> CHK FAILED: (" << #__VA_ARGS__ << ")" << "\n", exit(0);
#else
	#define dbg(...) 0
	#define chk(...) 0
#endif	

///////////////////////// FILE I/O ////////////////////////////////////////
void unsyncIO() { cin.tie(0)->sync_with_stdio(0); }
void setPrec() { cout << fixed << setprecision(15); }
void setIn(str s) { freopen(s.c_str(),"r",stdin); }
void setOut(str s) { freopen(s.c_str(),"w",stdout); }
void setIO(str s = "") {
	unsyncIO(); setPrec();
	#ifndef LOCAL	
		if (sz(s)) setIn(s+".in"), setOut(s+".out"); // for USACO
	#endif
}

///////////////////////// TEMPLATE ABOVE //////////////////////////////////

// REMEMBER
// - Don't Focus On Only One Approach
// - Read And Understand Problem Fully
// - Think Of Edges Cases
// - Implement Carefully
// - Always Check For Overflows
// - Reset Global Variables
// - Look At The Bigger Picture
// - Don't Get Discouraged, You Can Pull It Back

template<int SZ, int MXBIT> struct Trie {
	int nex[SZ][2], sz[SZ], ans[SZ], num = 0; // num is last node in trie
	// change 2 to 26 for lowercase letters
	Trie() { 
		F0R(i, SZ) {
			nex[i][0] = nex[i][1] = 0;
			sz[i] = 0;
			ans[i] = INF;
		}
	}

	void ins(int x, int idx) { // insert or delete
		int cur = 0; sz[cur] += 1; ckmin(ans[cur], idx);
		R0F(i,MXBIT) {
			int t = (x>>i)&1;
			if (!nex[cur][t]) nex[cur][t] = ++num;
			sz[cur = nex[cur][t]] += 1;
			ckmin(ans[cur], idx);
		}
	}

	int best(int x, int y) {
		int cur = 0, ANS = INF;
		bool natural = 0;
		R0F(i,MXBIT) {
			int t = ((x >> i) & 1);
			int tx = ((x >> i) & 1)^1; int ty = (y>>i) & 1;

			if (!nex[cur][tx] || !sz[nex[cur][tx]]) tx ^= 1;

			if ((tx ^ t) < ty) break;
			if ((tx ^ t) > ty) ckmin(ANS, ans[nex[cur][tx]]), tx ^= 1;

			if (!nex[cur][tx] || !sz[nex[cur][tx]]) break;

			cur = nex[cur][tx];

			if (i == 0) natural = 1;
		}

		if (natural) ckmin(ANS, ans[cur]);

		return ANS;
	}
};

int d[12];
int read() {
	char ch = getchar();
	while (ch < '0' || ch > '9') {
		ch = getchar();
	}
	int v = 0;
	while ('0' <= ch && ch <= '9') {
		v = v * 10 + (int) (ch - '0');
		ch = getchar();
	}
	return v;
}
 
void write(int x) {
	int len = 0;
	while (x > 0) {
		d[len++] = x % 10;
		x /= 10;
	}
	for (int i = len - 1; i >= 0; i--) {
		putchar('0' + d[i]);
	}
	if (len == 0) {
		putchar('0');
	}
	putchar(' ');
}

const int nax = 25e4 + 1;
const int bax = 30;
const int tax = bax * nax;
Trie<tax, bax> T;

void solve() {
	int N, X; scanf("%d %d", &N, &X);
	vi A(N); each(x, A) scanf("%d", &x);

	int x = 0; T.ins(x, -1);

	int ans = 0, best = -1;
	F0R(i, N) {
		x ^= A[i];
		int pos = T.best(x, X);

		if (ckmax(ans, i - pos)) best = pos + 1;

		T.ins(x, i);
	}

	printf("%d %d\n", best + 1, ans);
}

int main() {
	setIO(); 

	int TT = 1;
	// cin >> TT;

	rep(TT) solve();
	
	exit(0-0);
}

Compilation message

xor.cpp: In function 'void setIn(str)':
xor.cpp:201:28: warning: ignoring return value of 'FILE* freopen(const char*, const char*, FILE*)' declared with attribute 'warn_unused_result' [-Wunused-result]
  201 | void setIn(str s) { freopen(s.c_str(),"r",stdin); }
      |                     ~~~~~~~^~~~~~~~~~~~~~~~~~~~~
xor.cpp: In function 'void setOut(str)':
xor.cpp:202:29: warning: ignoring return value of 'FILE* freopen(const char*, const char*, FILE*)' declared with attribute 'warn_unused_result' [-Wunused-result]
  202 | void setOut(str s) { freopen(s.c_str(),"w",stdout); }
      |                      ~~~~~~~^~~~~~~~~~~~~~~~~~~~~~
xor.cpp: In function 'void solve()':
xor.cpp:303:17: warning: ignoring return value of 'int scanf(const char*, ...)' declared with attribute 'warn_unused_result' [-Wunused-result]
  303 |  int N, X; scanf("%d %d", &N, &X);
      |            ~~~~~^~~~~~~~~~~~~~~~~
xor.cpp:304:27: warning: ignoring return value of 'int scanf(const char*, ...)' declared with attribute 'warn_unused_result' [-Wunused-result]
  304 |  vi A(N); each(x, A) scanf("%d", &x);
      |                      ~~~~~^~~~~~~~~~
# Verdict Execution time Memory Grader output
1 Correct 52 ms 117692 KB Output is correct
2 Correct 48 ms 117624 KB Output is correct
3 Correct 52 ms 117720 KB Output is correct
4 Correct 50 ms 117716 KB Output is correct
5 Correct 55 ms 117816 KB Output is correct
6 Correct 56 ms 117836 KB Output is correct
7 Correct 61 ms 117728 KB Output is correct
8 Correct 58 ms 117836 KB Output is correct
9 Correct 81 ms 118092 KB Output is correct
10 Correct 89 ms 118148 KB Output is correct
11 Correct 93 ms 118088 KB Output is correct
12 Correct 83 ms 118120 KB Output is correct
13 Correct 93 ms 118092 KB Output is correct
14 Correct 85 ms 118008 KB Output is correct
15 Correct 88 ms 118092 KB Output is correct
16 Correct 90 ms 118128 KB Output is correct
17 Correct 170 ms 118660 KB Output is correct
18 Correct 172 ms 118728 KB Output is correct
19 Correct 173 ms 118720 KB Output is correct
20 Correct 171 ms 118724 KB Output is correct