結果
| 問題 |
No.2916 累進コスト最小化
|
| コンテスト | |
| ユーザー |
|
| 提出日時 | 2024-10-04 23:12:55 |
| 言語 | C++23 (gcc 13.3.0 + boost 1.87.0) |
| 結果 |
TLE
|
| 実行時間 | - |
| コード長 | 5,524 bytes |
| コンパイル時間 | 5,362 ms |
| コンパイル使用メモリ | 333,476 KB |
| 実行使用メモリ | 74,880 KB |
| 最終ジャッジ日時 | 2024-10-04 23:13:11 |
| 合計ジャッジ時間 | 11,807 ms |
|
ジャッジサーバーID (参考情報) |
judge3 / judge4 |
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| ファイルパターン | 結果 |
|---|---|
| other | AC * 25 TLE * 1 -- * 7 |
ソースコード
#include<bits/stdc++.h>
#include<atcoder/all>
using namespace std;
using namespace atcoder;
using lint = long long;
using ulint = unsigned long long;
using llint = __int128_t;
struct edge;
using graph = vector<vector<edge>>;
#define endl '\n'
constexpr int INF = 1<<30;
constexpr lint INF64 = 1LL<<61;
constexpr lint mod107 = 1e9+7;
using mint107 = modint1000000007;
constexpr long mod = 998244353;
using mint = modint998244353;
lint ceilDiv(lint x, lint y){if(x >= 0){return (x+y-1)/y;}else{return x/y;}}
lint floorDiv(lint x, lint y){if(x >= 0){return x/y;}else{return (x-y+1)/y;}}
lint Sqrt(lint x) {assert(x >= 0); lint ans = sqrt(x); while(ans*ans > x)ans--; while((ans+1)*(ans+1)<=x)ans++; return ans;}
lint gcd(lint a,lint b){if(a<b)swap(a,b);if(a%b==0)return b;else return gcd(b,a%b);}
lint lcm(lint a,lint b){return (a / gcd(a,b)) * b;}
double Dist(double x1, double y1, double x2, double y2){return sqrt(pow(x1-x2, 2) + pow(y1-y2,2));}
lint DistSqr(lint x1, lint y1, lint x2, lint y2){return (x1-x2)*(x1-x2) + (y1-y2)*(y1-y2); }
string toString(lint n){string ans = "";if(n == 0){ans += "0";}else{while(n > 0){int a = n%10;char b = '0' + a;string c = "";c += b;n /= 10;ans = c + ans;}}return ans;}
string toString(lint n, lint k){string ans = toString(n);string tmp = "";while(ans.length() + tmp.length() < k){tmp += "0";}return tmp + ans;}
vector<lint>prime;void makePrime(lint n){prime.push_back(2);for(lint i=3;i<=n;i+=2){bool chk = true;for(lint j=0;j<prime.size() && prime[j]*prime[j] <= i;j++){if(i % prime[j]==0){chk=false;break;}}if(chk)prime.push_back(i);}}
lint Kai[20000001]; bool firstCallnCr = true;
lint ncrmodp(lint n,lint r,lint p){ if(firstCallnCr){ Kai[0] = 1; for(int i=1;i<=20000000;i++){ Kai[i] = Kai[i-1] * i; Kai[i] %= p;} firstCallnCr = false;} if(n<0)return 0;
if(n < r)return 0;if(n==0)return 1;lint ans = Kai[n];lint tmp = (Kai[r] * Kai[n-r]) % p;for(lint i=1;i<=p-2;i*=2){if(i & p-2){ans *= tmp;ans %= p;}tmp *= tmp;tmp %= p;}return ans;}
#define rep(i, n) for(int i = 0; i < n; i++)
#define repp(i, x, y) for(int i = x; i < y; i++)
#define rrep(i, x) for(int i = x-1; i >= 0; i--)
#define vec vector
#define pb push_back
#define eb emplace_back
#define se second
#define fi first
#define al(x) x.begin(),x.end()
#define ral(x) x.rbegin(),x.rend()
unsigned long Rand() {
static random_device seed;
static mt19937_64 engine(seed());
return engine();
}
struct Point {
lint x, y; int quad;
Point(lint X, lint Y) {
x = X;
y = Y;
quad = getQuad();
}
int getQuad() {
if(x >= 0) {
if(y >= 0) return 1;
else return 4;
} else {
if(y >= 0) return 2;
else return 3;
}
}
};
bool operator<(const Point &left, const Point &right) {
if(left.quad == right.quad) {
return left.y * right.x < left.x * right.y;
} else {
return left.quad < right.quad;
}
}
struct Frac {
lint upper, lower;
Frac() { Frac(0,1); }
Frac(lint u, lint l) {
assert(l != 0);
if(u <= 0 && l < 0) { upper = -u; lower = -l; }
else { upper = u; lower = l; }
reduction();
}
Frac(lint u) { upper = u; lower = 1; }
void reduction() {
if(upper != 0) {
lint g = gcd(abs(upper), abs(lower));
upper /= g; lower /= g;
if(lower < 0) {lower *= -1; upper *= -1; }
} else {
lower = 1;
}
}
Frac operator+(const Frac &other) {
lint L = lower * other.lower;
lint U = upper*other.lower + lower*other.upper;
return Frac(U, L);
}
Frac operator-(const Frac &other) {
lint L = lower * other.lower;
lint U = upper*other.lower - lower*other.upper;
upper = U; lower = L;
return Frac(U, L);
}
bool operator<=(const Frac &other) {
return upper*other.lower <= lower*other.upper;
}
Frac operator*(const Frac &other) {
lint L = lower * other.lower;
lint U = upper * other.upper;
return Frac(U, L);
}
Frac operator/(const Frac &other) {
assert(other.upper != 0);
lint L = lower * other.upper;
lint U = upper * other.lower;
return Frac(U, L);
}
};
bool operator<(const Frac &left, const Frac &right) {
llint L = left.upper;
L *= right.lower;
llint R = right.upper;
R *= left.lower;
return L < R;
}
lint extGCD(lint a, lint b, lint &x, lint &y) {
if (b == 0) {
x = 1; y = 0;
return a;
}
lint d = extGCD(b, a%b, y, x);
y -= a/b * x;
return d;
}
struct edge{
lint to;
lint r;
lint w;
};
vec dp(1<<10, vec<map<int, int>>(10));
vec went(1<<10, vec<map<int, bool>>(10));
int n, m, c;
vec<vec<int>>R(10, vec<int>(10, -1));
vec<vec<int>>W(10, vec<int>(10, -1));
lint f(int S, int p, int v) {
if(v < 0) return -1;
if(p == n-1) return v;
if(went[S][p][v]) return dp[S][p][v];
went[S][p][v] = true;
lint ans = -1;
rep(i, n) {
if(S & (1<<i)) continue;
if(R[p][i] == -1) continue;
int T = S + (1<<i);
ans = max(ans, f(T, i, v - (v/R[p][i] + W[p][i])));
}
return dp[S][p][v] = ans;
}
int main(){
cin >> n >> m >> c;
rep(k, m) {
int i, j, r, w;
cin >> i >> j >> r >> w;
i--;j--;
R[i][j] = r;
R[j][i] = r;
W[i][j] = w;
W[j][i] = w;
}
repp(i,1, c+1) {
cout << f(1, 0, i) << endl;
}
}