結果
| 問題 | No.3677 Global Checksum |
| コンテスト | |
| ユーザー |
|
| 提出日時 | 2026-09-05 00:03:07 |
| 言語 | C++23 (gcc 15.3.0 + boost 1.92.0) |
| 結果 |
TLE
|
| 実行時間 | - |
| コード長 | 12,293 bytes |
| 記録 | |
| コンパイル時間 | 2,349 ms |
| コンパイル使用メモリ | 356,356 KB |
| 実行使用メモリ | 7,716 KB |
| 最終ジャッジ日時 | 2026-09-05 00:03:17 |
| 合計ジャッジ時間 | 5,733 ms |
|
ジャッジサーバーID (参考情報) |
judge2_0 / judge3_0 |
(要ログイン)
| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 12 TLE * 1 -- * 7 |
ソースコード
#line 2 "library/template/template.hpp"
// repo: https://github.com/kumacs/library-cpp
// docs: https://kumacs.github.io/library-cpp
#include <bits/stdc++.h>
using namespace std;
#line 2 "library/template/macro.hpp"
#define rep(i, a, b) for (int i = (a); i < (int)(b); i++)
#define rrep(i, a, b) for (int i = (int)(b) - 1; i >= (a); i--)
#define ALL(v) (v).begin(), (v).end()
#define UNIQUE(v) sort(ALL(v)), (v).erase(unique(ALL(v)), (v).end())
#define SZ(v) (int)v.size()
#define MIN(v) *min_element(ALL(v))
#define MAX(v) *max_element(ALL(v))
#define LB(v, x) int(lower_bound(ALL(v), (x)) - (v).begin())
#define UB(v, x) int(upper_bound(ALL(v), (x)) - (v).begin())
#define YN(b) cout << ((b) ? "YES" : "NO") << "\n";
#define Yn(b) cout << ((b) ? "Yes" : "No") << "\n";
#define yn(b) cout << ((b) ? "yes" : "no") << "\n";
#line 10 "library/template/template.hpp"
#line 2 "library/template/util.hpp"
using uint = unsigned int;
using ll = long long int;
using ull = unsigned long long;
using i128 = __int128_t;
using u128 = __uint128_t;
template <class T>
using priority_queue_asc = priority_queue<T, vector<T>, greater<T>>;
template <class T, class S = T>
S SUM(const vector<T>& a) {
return accumulate(ALL(a), S(0));
}
template <class T1, class T2>
inline bool chmin(T1& a, T2 b) {
if (a > b) {
a = b;
return true;
}
return false;
}
template <class T1, class T2>
inline bool chmax(T1& a, T2 b) {
if (a < b) {
a = b;
return true;
}
return false;
}
template <class T1, class T2>
inline bool chmin_opt(optional<T1>& a, T2 b) {
if (!a || a > b) {
a = b;
return true;
}
return false;
}
template <class T1, class T2>
inline bool chmax_opt(optional<T1>& a, T2 b) {
if (!a || a < b) {
a = b;
return true;
}
return false;
}
template <class T>
int popcnt(T x) {
return __builtin_popcountll(x);
}
template <class T>
int topbit(T x) {
return (x == 0 ? -1 : 63 - __builtin_clzll(x));
}
template <class T>
int lowbit(T x) {
return (x == 0 ? -1 : __builtin_ctzll(x));
}
#line 12 "library/template/template.hpp"
#line 2 "library/template/inout.hpp"
struct Fast {
Fast() {
cin.tie(nullptr);
ios_base::sync_with_stdio(false);
cout << fixed << setprecision(15);
}
} fast;
ostream& operator<<(ostream& os, __uint128_t x) {
char buf[40];
size_t k = 0;
while (x > 0) buf[k++] = (char)(x % 10 + '0'), x /= 10;
if (k == 0) buf[k++] = '0';
while (k) os << buf[--k];
return os;
}
ostream& operator<<(ostream& os, __int128_t x) {
return x < 0 ? (os << '-' << (__uint128_t)(-x)) : (os << (__uint128_t)x);
}
template <class T, size_t N>
ostream& operator<<(ostream& os, const array<T, N>& a);
template <class T1, class T2>
istream& operator>>(istream& is, pair<T1, T2>& p) {
return is >> p.first >> p.second;
}
template <class T1, class T2>
ostream& operator<<(ostream& os, const pair<T1, T2>& p) {
return os << p.first << " " << p.second;
}
template <class T>
istream& operator>>(istream& is, vector<T>& a) {
for (auto& v : a) is >> v;
return is;
}
template <class T>
ostream& operator<<(ostream& os, const vector<T>& a) {
for (auto it = a.begin(); it != a.end();) {
os << *it;
if (++it != a.end()) os << " ";
}
return os;
}
template <class T, size_t N>
ostream& operator<<(ostream& os, const array<T, N>& a) {
for (auto it = a.begin(); it != a.end();) {
os << *it;
if (++it != a.end()) os << " ";
}
return os;
}
template <class T>
ostream& operator<<(ostream& os, const set<T>& st) {
os << "{";
for (auto it = st.begin(); it != st.end();) {
os << *it;
if (++it != st.end()) os << ",";
}
os << "}";
return os;
}
template <class T1, class T2>
ostream& operator<<(ostream& os, const map<T1, T2>& mp) {
os << "{";
for (auto it = mp.begin(); it != mp.end();) {
os << it->first << ":" << it->second;
if (++it != mp.end()) os << ",";
}
os << "}";
return os;
}
void in() {}
template <typename T, class... U>
void in(T& t, U&... u) {
cin >> t;
in(u...);
}
template <class... T>
void in_zip(int n, T&... t) {
assert(n >= 0 && ((size(t) >= static_cast<size_t>(n)) && ...));
for (int i = 0; i < n; i++) in(t[i]...);
}
void out() { cout << "\n"; }
template <typename T, class... U, char sep = ' '>
void out(const T& t, const U&... u) {
cout << t;
if (sizeof...(u)) cout << sep;
out(u...);
}
template <class T, class U>
void out_opt(const optional<T>& opt, const U& fallback, ostream& os = cout) {
if (opt.has_value())
os << opt.value();
else
os << fallback;
os << "\n";
}
template <class T, class U>
void out_opt(const vector<optional<T>>& vec, const U& fallback, ostream& os = cout) {
for (auto it = vec.begin(); it != vec.end();) {
if ((*it).has_value())
os << (*it).value();
else
os << fallback;
if (++it != vec.end()) os << " ";
}
os << "\n";
}
namespace IO {
template <class T, class... U>
T read(U&&... u) {
T t = T(forward<U>(u)...);
in(t);
return t;
}
namespace Graph {
vector<vector<int>> unweighted(int n, int m, bool directed = false, int offset = 1) {
vector<vector<int>> g(n);
for (int i = 0; i < m; i++) {
int u, v;
cin >> u >> v;
u -= offset, v -= offset;
g[u].push_back(v);
if (!directed) g[v].push_back(u);
}
return g;
}
template <class T>
vector<vector<pair<int, T>>> weighted(int n, int m, bool directed = false, int offset = 1) {
vector<vector<pair<int, T>>> g(n);
for (int i = 0; i < m; i++) {
int u, v;
T w;
cin >> u >> v >> w;
u -= offset, v -= offset;
g[u].push_back({v, w});
if (!directed) g[v].push_back({u, w});
}
return g;
}
} // namespace Graph
namespace Tree {
vector<vector<int>> unweighted(int n, bool directed = false, int offset = 1) {
return Graph::unweighted(n, n - 1, directed, offset);
}
template <class T>
vector<vector<pair<int, T>>> weighted(int n, bool directed = false, int offset = 1) {
return Graph::weighted<T>(n, n - 1, directed, offset);
}
vector<vector<int>> rooted(int n, bool to_root = true, bool to_leaf = true, int offset = 1) {
vector<vector<int>> g(n);
for (int i = 1; i < n; i++) {
int p;
cin >> p;
p -= offset;
if (to_root) g[i].push_back(p);
if (to_leaf) g[p].push_back(i);
}
return g;
}
} // namespace Tree
} // namespace IO
#line 14 "library/template/template.hpp"
#line 2 "library/template/debug.hpp"
#ifdef LOCAL
#define debug 1
#define show(...) _show(0, #__VA_ARGS__, __VA_ARGS__)
#else
#define debug 0
#define show(...) true
#endif
template <class T>
void _show(int, T) {
cerr << '\n';
}
template <class T1, class T2, class... T3>
void _show(int i, const T1& a, const T2& b, const T3&... c) {
for (; a[i] != ',' && a[i] != '\0'; i++) cerr << a[i];
cerr << ":" << b << " ";
_show(i + 1, a, c...);
}
#line 2 "main.cpp"
#line 2 "library/util/fastio.hpp"
#line 4 "library/util/fastio.hpp"
namespace FastIO {
static constexpr unsigned int BUF_SIZE = 1 << 17;
struct InStream {
private:
using IS = InStream;
unsigned int p = BUF_SIZE;
static char buf[BUF_SIZE];
public:
char seekChar() {
if (p == BUF_SIZE) {
size_t len = fread(buf, 1, BUF_SIZE, stdin);
if (len != BUF_SIZE) buf[len] = '\0';
p = 0;
}
return buf[p];
}
void skipSpace() {
while (isspace(seekChar())) p++;
}
template <class T>
T readUInteger() {
T x = 0;
skipSpace();
while (true) {
char c = seekChar();
if ('9' < c || c < '0') break;
x = x * 10 + (c - '0');
p++;
}
return x;
}
template <class T>
T readInteger() {
T x = 0;
skipSpace();
bool is_negative = seekChar() == '-';
if (is_negative) p++;
while (true) {
char c = seekChar();
if ('9' < c || c < '0') break;
x = x * 10 + (c - '0');
p++;
}
if (is_negative) x = -x;
return x;
}
char readChar() {
skipSpace();
char c = seekChar();
p++;
return c;
}
std::string readString() {
std::string s;
skipSpace();
while (true) {
char c = seekChar();
if (isspace(c) || c == '\0') break;
s.push_back(c);
p++;
}
return s;
}
IS& operator>>(unsigned int& x) { x = readUInteger<unsigned int>(); return *this; }
IS& operator>>(int& x) { x = readInteger<int>(); return *this; }
IS& operator>>(unsigned long long& x) { x = readUInteger<unsigned long long>(); return *this; }
IS& operator>>(long long& x) { x = readInteger<long long>(); return *this; }
IS& operator>>(char& c) { c = readChar(); return *this; }
IS& operator>>(std::string& s) { s = readString(); return *this; }
};
struct OutputTable {
char num[10000][5];
char tnum[10000][5];
constexpr OutputTable() : num(), tnum() {
for (int i = 0; i < 10000; i++) {
num[i][0] = '0' + i / 1000 % 10;
num[i][1] = '0' + i / 100 % 10;
num[i][2] = '0' + i / 10 % 10;
num[i][3] = '0' + i / 1 % 10;
num[i][4] = '\0';
int x = 0;
if (i >= 1000) tnum[i][x++] = '0' + i / 1000 % 10;
if (i >= 100) tnum[i][x++] = '0' + i / 100 % 10;
if (i >= 10) tnum[i][x++] = '0' + i / 10 % 10;
if (i >= 1) tnum[i][x++] = '0' + i / 1 % 10;
tnum[i][x++] = '\0';
}
}
} constexpr table;
struct OutStream {
private:
using OS = OutStream;
unsigned int p = 0;
static char buf[BUF_SIZE];
static constexpr uint32_t P10(unsigned int d) { return d ? P10(d - 1) * 10 : 1; }
static constexpr uint64_t P10L(unsigned int d){ return d ? P10L(d - 1) * 10 : 1; }
template <class T, class U> static void Split(T& x, U& y, U z) noexcept { x = y / z; y -= x * z; }
public:
OutStream() { buf[0] = 0; }
~OutStream(){ flush(); }
void flush() {
fwrite(buf, 1, p, stdout);
p = 0;
}
void write(const char c) {
if (p == BUF_SIZE) flush();
buf[p++] = c;
}
void write(const char* s) { while (*s) write(*(s++)); }
void write(const std::string& s) { write(s.c_str()); }
void writeU32(uint32_t x) {
unsigned int y = 0;
if (x >= P10(8)) {
Split(y, x, P10(8)); write(table.tnum[y]);
Split(y, x, P10(4)); write(table.num[y]);
write(table.num[x]);
} else if (x >= P10(4)) {
Split(y, x, P10(4)); write(table.tnum[y]);
write(table.num[x]);
} else if (x > 0) {
write(table.tnum[x]);
} else {
write('0');
}
}
void writeI32(int32_t x) {
if (x < 0) { write('-'); writeU32((uint32_t)x); }
else write(x);
}
void writeU64(uint64_t x) {
unsigned int y = 0;
if (x >= P10L(16)) {
Split(y, x, P10L(16)); write(table.tnum[y]);
Split(y, x, P10L(12)); write(table.num[y]);
Split(y, x, P10L(8)); write(table.num[y]);
Split(y, x, P10L(4)); write(table.num[y]);
write(table.num[x]);
} else if (x >= P10(12)) {
Split(y, x, P10L(12)); write(table.tnum[y]);
Split(y, x, P10L(8)); write(table.num[y]);
Split(y, x, P10L(4)); write(table.num[y]);
write(table.num[x]);
} else if (x >= P10(8)) {
Split(y, x, P10L(8)); write(table.tnum[y]);
Split(y, x, P10L(4)); write(table.num[y]);
write(table.num[x]);
} else if (x >= P10(4)) {
Split(y, x, P10L(4)); write(table.tnum[y]);
write(table.num[x]);
} else if (x > 0) {
write(table.tnum[x]);
} else {
write('0');
}
}
void writeI64(int64_t x) {
if (x < 0) { write('-'); writeU64((uint64_t)x); }
else write(x);
}
OS& operator<<(unsigned int x) { writeU32(x); return *this; }
OS& operator<<(int x) { writeI32(x); return *this; }
OS& operator<<(unsigned long long x) { writeU64(x); return *this; }
OS& operator<<(long long x) { writeI64(x); return *this; }
OS& operator<<(const std::string& s) { write(s); return *this; }
OS& operator<<(const char* s) { write(s); return *this; }
OS& operator<<(char c) { write(c); return *this; }
};
char InStream::buf[BUF_SIZE];
char OutStream::buf[BUF_SIZE];
}; // namespace FastIO
#line 4 "main.cpp"
void solve() {
FastIO::InStream is;
FastIO::OutStream os;
int H, W;
is >> H >> W;
uint T = 0;
vector<uint> C(H);
rep(i, 0, H) {
uint s = 0, x = 0;
rep(_, 0, W) {
is >> x;
s += x;
}
C[i] = s;
T += s;
}
for (auto& v : C) os << (v + T) << '\n';
}
int main() {
int T = 1;
// in(T);
while (T--) solve();
}