結果
問題 | No.2232 Miser's Gift |
ユーザー | moharan627 |
提出日時 | 2023-03-06 17:39:35 |
言語 | C++23 (gcc 12.3.0 + boost 1.83.0) |
結果 |
WA
|
実行時間 | - |
コード長 | 4,643 bytes |
コンパイル時間 | 5,425 ms |
コンパイル使用メモリ | 316,496 KB |
実行使用メモリ | 84,764 KB |
最終ジャッジ日時 | 2024-09-18 01:53:28 |
合計ジャッジ時間 | 13,194 ms |
ジャッジサーバーID (参考情報) |
judge4 / judge3 |
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テストケース
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ソースコード
#if !__INCLUDE_LEVEL__ #include __FILE__ using S = ll; S op(S a,S b){ return max(a,b); } S e(){return -1;} //構築 //segtree<S,op,e> seg(A); //メソッド //seg.set(i,x);A[i]=x //seg.get(i);A[i]を取得 //seg.prod(l,r);op(A[l]~A[r-1])を取得 //seg.all_prod();op(A[0]~A[N-1])を取得 int main() { ll N,W;cin >> N >> W; vector<pair<ll,ll>> A(N); rep(i,N){ ll w,v;cin >> w >> v; A[i]={w,v}; } vector<vector<ll>> DP(N+1,vector<ll>(W+1,-1)); DP[0][0]=0; rep(i,N){ rep(j,W){ if(0<=DP[i][j]){ chmax(DP[i+1][j],DP[i][j]); if(j+A[i].first<=W)chmax(DP[i+1][j+A[i].first],DP[i][j]+A[i].second); } } } segtree<S,op,e> seg(DP[N]); cout << DP[N] << endl; ll Vmax = seg.all_prod(); //cout << "Vmax:" << Vmax << endl; range(x,1,W+1){ cout << (Vmax+1)-seg.prod(0,W-x+1) << endl; } } #else //tie(a, b, c) = t #include <bits/stdc++.h> #include <atcoder/all> using namespace std; using namespace atcoder; #define rep(i, n) for(int i = 0; i < n; i++) #define rrep(i, n) for(int i = n-1; i >= 0; i--) #define range(i, m, n) for(int i = m; i < n; i++) #define fore(i,a) for(auto &i:a) #define all(v) v.begin(), v.end() #define rall(v) v.rbegin(), v.rend() #define Sum(v) accumulate(all(v),0LL) #define minv(v) *min_element(all(v)) #define maxv(v) *max_element(all(v)) typedef long long ll; typedef vector<ll> vl; typedef vector<vector<ll>> vvl; const ll INF = 1e16; const ll MOD1 = 1000000007; const ll MOD2 = 998244353; template<class T> inline bool chmax(T& a, T b) { if (a < b) { a = b; return 1; } return 0; } template<class T> inline bool chmin(T& a, T b) { if (a > b) { a = b; return 1; } return 0; } ll SN(char s){return ll(s-'0');} ll SN(string s){return stoll(s);} int alpN(char s){return int(s-'a');} int AlpN(char s){return int(s-'A');} int Nalp(int n){return char(n+97);} int NAlp(int n){return char(n+65);} using Graph = vector<vector<ll>>; using GraphCost = vector<vector<pair<ll,ll>>>; using mint = modint; using mint1 = modint1000000007; using mint2 = modint998244353; using pll = pair<long long, long long>; template <class T>ostream &operator<<(ostream &o,const vector<T>&v){for(int i=0;i<(int)v.size();i++)o<<(i>0?" ":"")<<v[i];return o;}//vector空白区切り出力 ostream& operator<<(ostream& os, const mint1& N) {return os << N.val();}//mint出力。デフォはmint1 ostream& operator<<(ostream& os, const mint2& N) {return os << N.val();} template<class T> bool contain(const std::string& s, const T& v) { return s.find(v) != std::string::npos; } ll max(int x,ll y){return max((ll)x,y);} ll max(ll x,int y){return max(x,(ll)y);} ll min(int x,ll y){return min((ll)x,y);} ll min(ll x,int y){return min(x,(ll)y);} template <typename T> struct edge { int src, to; T cost; edge(int to, T cost) : src(-1), to(to), cost(cost) {} edge(int src, int to, T cost) : src(src), to(to), cost(cost) {} edge& operator=(const int& x) { to = x; return *this; } operator int() const { return to; } }; template <typename T> using Edges = vector<edge<T> >; template <typename T> using WeightedGraph = vector<Edges<T> >; using UnWeightedGraph = vector<vector<int> >; template <typename T> using Matrix = vector<vector<T> >; //unorderd_mapの拡張…https://qiita.com/hamamu/items/4d081751b69aa3bb3557 template<class T> size_t HashCombine(const size_t seed,const T &v){ return seed^(std::hash<T>()(v)+0x9e3779b9+(seed<<6)+(seed>>2)); } /* pair用 */ template<class T,class S> struct std::hash<std::pair<T,S>>{ size_t operator()(const std::pair<T,S> &keyval) const noexcept { return HashCombine(std::hash<T>()(keyval.first), keyval.second); } }; /* vector用 */ template<class T> struct std::hash<std::vector<T>>{ size_t operator()(const std::vector<T> &keyval) const noexcept { size_t s=0; for (auto&& v: keyval) s=HashCombine(s,v); return s; } }; /* tuple用 */ template<int N> struct HashTupleCore{ template<class Tuple> size_t operator()(const Tuple &keyval) const noexcept{ size_t s=HashTupleCore<N-1>()(keyval); return HashCombine(s,std::get<N-1>(keyval)); } }; template <> struct HashTupleCore<0>{ template<class Tuple> size_t operator()(const Tuple &keyval) const noexcept{ return 0; } }; template<class... Args> struct std::hash<std::tuple<Args...>>{ size_t operator()(const tuple<Args...> &keyval) const noexcept { return HashTupleCore<tuple_size<tuple<Args...>>::value>()(keyval); } }; ll ceil(ll a, ll b){ return (a + b - 1) / b; } #endif