답안 #987965

# 제출 시각 아이디 문제 언어 결과 실행 시간 메모리
987965 2024-05-23T19:47:37 Z activedeltorre Shopping Plans (CCO20_day2problem3) C++14
25 / 25
230 ms 46512 KB
///OWNERUL LUI Calin <3
#include <bits/stdc++.h>
#pragma GCC optimize("Ofast")
#pragma GCC optimize("unroll-loops")
#pragma gcc target("avx2")
using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}};priority_queue<node,vector<node>,cmp>pq;vector<int>adj[200005],ord;int y[200005],x[200005],init[200005],cost[200005];bool cmp2(int a,int b){return cost[a]<cost[b];}node special(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];curr.lst=0;curr.sum+=adj[g2][0];curr.layer++;curr.biti=1;curr.bitipref=0;curr.rghtbord=adj[g2].size()-1;return curr;}node skip(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g]==0){curr.sum=curr.sum-adj[g][curr.lst];}else curr.sum=curr.sum-adj[g][curr.lst]+adj[g][curr.lst-1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node godown(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node shift(node curr){int g;g=ord[curr.layer];curr.lst++;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandshift(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=curr.bitipref;curr.bitipref--;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandcreate(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=0;curr.biti++;curr.sum+=init[g];return curr;}signed  main(){int n,m,k,i,a,b;long long sum=0;ios_base::sync_with_stdio(false);cin.tie(NULL);cin>>n>>m>>k;for(i=1; i<=n; i++){cin>>a>>b;adj[a].push_back(b);}for(i=1; i<=m; i++){cin>>x[i]>>y[i];if(y[i]==0){cost[i]=inf;}else{sort(adj[i].begin(),adj[i].end());if(adj[i].size()<x[i]){for(int j=1; j<=k; j++){cout<<-1<<'\n';}return 0;}if(x[i]==0){if(adj[i].size()==0){cost[i]=inf;}else{init[i]=adj[i][0];cost[i]=adj[i][0];}}else{int vkuk=adj[i][0];init[i]=adj[i][0];for(int j=0; j<adj[i].size(); j++){if(j+1<=x[i]){sum+=adj[i][j];}adj[i][j]-=vkuk;}if(adj[i].size()==x[i]){cost[i]=inf;}else{cost[i]=adj[i][x[i]]-adj[i][x[i]-1];}}}ord.push_back(i);}sort(ord.begin(),ord.end(),cmp2);m--;for(i=0; i<ord.size(); i++){if(cost[ord[i]]==inf){m=i-1;break;}}node curr,curr2;cout<<sum<<'\n';k--;if(m>=0){int g=ord[0];if(x[g]==0){curr.layer=0;curr.sum=adj[g][0];curr.bitipref=0;curr.lst=0;curr.biti=1;curr.rghtbord=adj[g].size()-1;pq.push(curr);}else{curr.layer=0;curr.sum=adj[g][x[g]]-adj[g][x[g]-1];curr.bitipref=x[g]-1;curr.lst=x[g];curr.rghtbord=adj[g].size()-1;curr.biti=x[g];pq.push(curr);}while(pq.size() && k){curr=pq.top();pq.pop();k--;cout<<curr.sum+sum<<'\n';g=ord[curr.layer];if(x[g]==0 && curr.biti==1 && curr.layer+1<=m && curr.lst==0){curr2=skip(curr);pq.push(curr2);}if(curr.lst==x[g] && curr.bitipref==x[g]-1 && curr.biti==x[g] && curr.layer+1<=m){curr2=skip(curr);pq.push(curr2);}if(curr.lst+1<=curr.rghtbord){curr2=shift(curr);pq.push(curr2);}if(curr.bitipref>=1 && curr.lst>=curr.bitipref+1){curr2=fixborderandshift(curr);pq.push(curr2);}if(curr.bitipref==0 && curr.lst>=1 && curr.biti+1<=y[g]){curr2=fixborderandcreate(curr);pq.push(curr2);}if(curr.layer+1<=m){curr2=godown(curr);pq.push(curr2);}}}while(k){k--;cout<<-1<<'\n';}return 0;}

Compilation message

Main.cpp:5: warning: ignoring '#pragma gcc target' [-Wunknown-pragmas]
    5 | #pragma gcc target("avx2")
      | 
Main.cpp: In function 'node special(node)':
Main.cpp:6:359: warning: variable 'g' set but not used [-Wunused-but-set-variable]
    6 | using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}};priority_queue<node,vector<node>,cmp>pq;vector<int>adj[200005],ord;int y[200005],x[200005],init[200005],cost[200005];bool cmp2(int a,int b){return cost[a]<cost[b];}node special(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];curr.lst=0;curr.sum+=adj[g2][0];curr.layer++;curr.biti=1;curr.bitipref=0;curr.rghtbord=adj[g2].size()-1;return curr;}node skip(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g]==0){curr.sum=curr.sum-adj[g][curr.lst];}else curr.sum=curr.sum-adj[g][curr.lst]+adj[g][curr.lst-1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node godown(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node shift(node curr){int g;g=ord[curr.layer];curr.lst++;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandshift(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=curr.bitipref;curr.bitipref--;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandcreate(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=0;curr.biti++;curr.sum+=init[g];return curr;}signed  main(){int n,m,k,i,a,b;long long sum=0;ios_base::sync_with_stdio(false);cin.tie(NULL);cin>>n>>m>>k;for(i=1; i<=n; i++){cin>>a>>b;adj[a].push_back(b);}for(i=1; i<=m; i++){cin>>x[i]>>y[i];if(y[i]==0){cost[i]=inf;}else{sort(adj[i].begin(),adj[i].end());if(adj[i].size()<x[i]){for(int j=1; j<=k; j++){cout<<-1<<'\n';}return 0;}if(x[i]==0){if(adj[i].size()==0){cost[i]=inf;}else{init[i]=adj[i][0];cost[i]=adj[i][0];}}else{int vkuk=adj[i][0];init[i]=adj[i][0];for(int j=0; j<adj[i].size(); j++){if(j+1<=x[i]){sum+=adj[i][j];}adj[i][j]-=vkuk;}if(adj[i].size()==x[i]){cost[i]=inf;}else{cost[i]=adj[i][x[i]]-adj[i][x[i]-1];}}}ord.push_back(i);}sort(ord.begin(),ord.end(),cmp2);m--;for(i=0; i<ord.size(); i++){if(cost[ord[i]]==inf){m=i-1;break;}}node curr,curr2;cout<<sum<<'\n';k--;if(m>=0){int g=ord[0];if(x[g]==0){curr.layer=0;curr.sum=adj[g][0];curr.bitipref=0;curr.lst=0;curr.biti=1;curr.rghtbord=adj[g].size()-1;pq.push(curr);}else{curr.layer=0;curr.sum=adj[g][x[g]]-adj[g][x[g]-1];curr.bitipref=x[g]-1;curr.lst=x[g];curr.rghtbord=adj[g].size()-1;curr.biti=x[g];pq.push(curr);}while(pq.size() && k){curr=pq.top();pq.pop();k--;cout<<curr.sum+sum<<'\n';g=ord[curr.layer];if(x[g]==0 && curr.biti==1 && curr.layer+1<=m && curr.lst==0){curr2=skip(curr);pq.push(curr2);}if(curr.lst==x[g] && curr.bitipref==x[g]-1 && curr.biti==x[g] && curr.layer+1<=m){curr2=skip(curr);pq.push(curr2);}if(curr.lst+1<=curr.rghtbord){curr2=shift(curr);pq.push(curr2);}if(curr.bitipref>=1 && curr.lst>=curr.bitipref+1){curr2=fixborderandshift(curr);pq.push(curr2);}if(curr.bitipref==0 && curr.lst>=1 && curr.biti+1<=y[g]){curr2=fixborderandcreate(curr);pq.push(curr2);}if(curr.layer+1<=m){curr2=godown(curr);pq.push(curr2);}}}while(k){k--;cout<<-1<<'\n';}return 0;}
      |                                                                                                                                                                                                                                                                                                                                                                       ^
Main.cpp: In function 'node godown(node)':
Main.cpp:6:917: warning: variable 'g' set but not used [-Wunused-but-set-variable]
    6 | using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}};priority_queue<node,vector<node>,cmp>pq;vector<int>adj[200005],ord;int y[200005],x[200005],init[200005],cost[200005];bool cmp2(int a,int b){return cost[a]<cost[b];}node special(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];curr.lst=0;curr.sum+=adj[g2][0];curr.layer++;curr.biti=1;curr.bitipref=0;curr.rghtbord=adj[g2].size()-1;return curr;}node skip(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g]==0){curr.sum=curr.sum-adj[g][curr.lst];}else curr.sum=curr.sum-adj[g][curr.lst]+adj[g][curr.lst-1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node godown(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node shift(node curr){int g;g=ord[curr.layer];curr.lst++;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandshift(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=curr.bitipref;curr.bitipref--;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandcreate(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=0;curr.biti++;curr.sum+=init[g];return curr;}signed  main(){int n,m,k,i,a,b;long long sum=0;ios_base::sync_with_stdio(false);cin.tie(NULL);cin>>n>>m>>k;for(i=1; i<=n; i++){cin>>a>>b;adj[a].push_back(b);}for(i=1; i<=m; i++){cin>>x[i]>>y[i];if(y[i]==0){cost[i]=inf;}else{sort(adj[i].begin(),adj[i].end());if(adj[i].size()<x[i]){for(int j=1; j<=k; j++){cout<<-1<<'\n';}return 0;}if(x[i]==0){if(adj[i].size()==0){cost[i]=inf;}else{init[i]=adj[i][0];cost[i]=adj[i][0];}}else{int vkuk=adj[i][0];init[i]=adj[i][0];for(int j=0; j<adj[i].size(); j++){if(j+1<=x[i]){sum+=adj[i][j];}adj[i][j]-=vkuk;}if(adj[i].size()==x[i]){cost[i]=inf;}else{cost[i]=adj[i][x[i]]-adj[i][x[i]-1];}}}ord.push_back(i);}sort(ord.begin(),ord.end(),cmp2);m--;for(i=0; i<ord.size(); i++){if(cost[ord[i]]==inf){m=i-1;break;}}node curr,curr2;cout<<sum<<'\n';k--;if(m>=0){int g=ord[0];if(x[g]==0){curr.layer=0;curr.sum=adj[g][0];curr.bitipref=0;curr.lst=0;curr.biti=1;curr.rghtbord=adj[g].size()-1;pq.push(curr);}else{curr.layer=0;curr.sum=adj[g][x[g]]-adj[g][x[g]-1];curr.bitipref=x[g]-1;curr.lst=x[g];curr.rghtbord=adj[g].size()-1;curr.biti=x[g];pq.push(curr);}while(pq.size() && k){curr=pq.top();pq.pop();k--;cout<<curr.sum+sum<<'\n';g=ord[curr.layer];if(x[g]==0 && curr.biti==1 && curr.layer+1<=m && curr.lst==0){curr2=skip(curr);pq.push(curr2);}if(curr.lst==x[g] && curr.bitipref==x[g]-1 && curr.biti==x[g] && curr.layer+1<=m){curr2=skip(curr);pq.push(curr2);}if(curr.lst+1<=curr.rghtbord){curr2=shift(curr);pq.push(curr2);}if(curr.bitipref>=1 && curr.lst>=curr.bitipref+1){curr2=fixborderandshift(curr);pq.push(curr2);}if(curr.bitipref==0 && curr.lst>=1 && curr.biti+1<=y[g]){curr2=fixborderandcreate(curr);pq.push(curr2);}if(curr.layer+1<=m){curr2=godown(curr);pq.push(curr2);}}}while(k){k--;cout<<-1<<'\n';}return 0;}
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Main.cpp: In function 'int main()':
Main.cpp:6:1866: warning: comparison of integer expressions of different signedness: 'std::vector<int>::size_type' {aka 'long unsigned int'} and 'int' [-Wsign-compare]
    6 | using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}};priority_queue<node,vector<node>,cmp>pq;vector<int>adj[200005],ord;int y[200005],x[200005],init[200005],cost[200005];bool cmp2(int a,int b){return cost[a]<cost[b];}node special(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];curr.lst=0;curr.sum+=adj[g2][0];curr.layer++;curr.biti=1;curr.bitipref=0;curr.rghtbord=adj[g2].size()-1;return curr;}node skip(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g]==0){curr.sum=curr.sum-adj[g][curr.lst];}else curr.sum=curr.sum-adj[g][curr.lst]+adj[g][curr.lst-1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node godown(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node shift(node curr){int g;g=ord[curr.layer];curr.lst++;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandshift(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=curr.bitipref;curr.bitipref--;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandcreate(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=0;curr.biti++;curr.sum+=init[g];return curr;}signed  main(){int n,m,k,i,a,b;long long sum=0;ios_base::sync_with_stdio(false);cin.tie(NULL);cin>>n>>m>>k;for(i=1; i<=n; i++){cin>>a>>b;adj[a].push_back(b);}for(i=1; i<=m; i++){cin>>x[i]>>y[i];if(y[i]==0){cost[i]=inf;}else{sort(adj[i].begin(),adj[i].end());if(adj[i].size()<x[i]){for(int j=1; j<=k; j++){cout<<-1<<'\n';}return 0;}if(x[i]==0){if(adj[i].size()==0){cost[i]=inf;}else{init[i]=adj[i][0];cost[i]=adj[i][0];}}else{int vkuk=adj[i][0];init[i]=adj[i][0];for(int j=0; j<adj[i].size(); j++){if(j+1<=x[i]){sum+=adj[i][j];}adj[i][j]-=vkuk;}if(adj[i].size()==x[i]){cost[i]=inf;}else{cost[i]=adj[i][x[i]]-adj[i][x[i]-1];}}}ord.push_back(i);}sort(ord.begin(),ord.end(),cmp2);m--;for(i=0; i<ord.size(); i++){if(cost[ord[i]]==inf){m=i-1;break;}}node curr,curr2;cout<<sum<<'\n';k--;if(m>=0){int g=ord[0];if(x[g]==0){curr.layer=0;curr.sum=adj[g][0];curr.bitipref=0;curr.lst=0;curr.biti=1;curr.rghtbord=adj[g].size()-1;pq.push(curr);}else{curr.layer=0;curr.sum=adj[g][x[g]]-adj[g][x[g]-1];curr.bitipref=x[g]-1;curr.lst=x[g];curr.rghtbord=adj[g].size()-1;curr.biti=x[g];pq.push(curr);}while(pq.size() && k){curr=pq.top();pq.pop();k--;cout<<curr.sum+sum<<'\n';g=ord[curr.layer];if(x[g]==0 && curr.biti==1 && curr.layer+1<=m && curr.lst==0){curr2=skip(curr);pq.push(curr2);}if(curr.lst==x[g] && curr.bitipref==x[g]-1 && curr.biti==x[g] && curr.layer+1<=m){curr2=skip(curr);pq.push(curr2);}if(curr.lst+1<=curr.rghtbord){curr2=shift(curr);pq.push(curr2);}if(curr.bitipref>=1 && curr.lst>=curr.bitipref+1){curr2=fixborderandshift(curr);pq.push(curr2);}if(curr.bitipref==0 && curr.lst>=1 && curr.biti+1<=y[g]){curr2=fixborderandcreate(curr);pq.push(curr2);}if(curr.layer+1<=m){curr2=godown(curr);pq.push(curr2);}}}while(k){k--;cout<<-1<<'\n';}return 0;}
      |                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                             ~~~~~~~~~~~~~^~~~~
Main.cpp:6:2068: warning: comparison of integer expressions of different signedness: 'int' and 'std::vector<int>::size_type' {aka 'long unsigned int'} [-Wsign-compare]
    6 | using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}};priority_queue<node,vector<node>,cmp>pq;vector<int>adj[200005],ord;int y[200005],x[200005],init[200005],cost[200005];bool cmp2(int a,int b){return cost[a]<cost[b];}node special(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];curr.lst=0;curr.sum+=adj[g2][0];curr.layer++;curr.biti=1;curr.bitipref=0;curr.rghtbord=adj[g2].size()-1;return curr;}node skip(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g]==0){curr.sum=curr.sum-adj[g][curr.lst];}else curr.sum=curr.sum-adj[g][curr.lst]+adj[g][curr.lst-1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node godown(node curr){int g,g2;g=ord[curr.layer];g2=ord[curr.layer+1];if(x[g2]==0){return special(curr);}curr.layer++;curr.biti=x[g2];curr.lst=x[g2];curr.bitipref=x[g2]-1;curr.rghtbord=adj[g2].size()-1;curr.sum+=adj[g2][curr.lst]-adj[g2][curr.lst-1];return curr;} node shift(node curr){int g;g=ord[curr.layer];curr.lst++;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandshift(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=curr.bitipref;curr.bitipref--;curr.sum+=adj[g][curr.lst]-adj[g][curr.lst-1];return curr;} node fixborderandcreate(node curr){int g;g=ord[curr.layer];curr.rghtbord=curr.lst-1;curr.lst=0;curr.biti++;curr.sum+=init[g];return curr;}signed  main(){int n,m,k,i,a,b;long long sum=0;ios_base::sync_with_stdio(false);cin.tie(NULL);cin>>n>>m>>k;for(i=1; i<=n; i++){cin>>a>>b;adj[a].push_back(b);}for(i=1; i<=m; i++){cin>>x[i]>>y[i];if(y[i]==0){cost[i]=inf;}else{sort(adj[i].begin(),adj[i].end());if(adj[i].size()<x[i]){for(int j=1; j<=k; j++){cout<<-1<<'\n';}return 0;}if(x[i]==0){if(adj[i].size()==0){cost[i]=inf;}else{init[i]=adj[i][0];cost[i]=adj[i][0];}}else{int vkuk=adj[i][0];init[i]=adj[i][0];for(int j=0; j<adj[i].size(); j++){if(j+1<=x[i]){sum+=adj[i][j];}adj[i][j]-=vkuk;}if(adj[i].size()==x[i]){cost[i]=inf;}else{cost[i]=adj[i][x[i]]-adj[i][x[i]-1];}}}ord.push_back(i);}sort(ord.begin(),ord.end(),cmp2);m--;for(i=0; i<ord.size(); i++){if(cost[ord[i]]==inf){m=i-1;break;}}node curr,curr2;cout<<sum<<'\n';k--;if(m>=0){int g=ord[0];if(x[g]==0){curr.layer=0;curr.sum=adj[g][0];curr.bitipref=0;curr.lst=0;curr.biti=1;curr.rghtbord=adj[g].size()-1;pq.push(curr);}else{curr.layer=0;curr.sum=adj[g][x[g]]-adj[g][x[g]-1];curr.bitipref=x[g]-1;curr.lst=x[g];curr.rghtbord=adj[g].size()-1;curr.biti=x[g];pq.push(curr);}while(pq.size() && k){curr=pq.top();pq.pop();k--;cout<<curr.sum+sum<<'\n';g=ord[curr.layer];if(x[g]==0 && curr.biti==1 && curr.layer+1<=m && curr.lst==0){curr2=skip(curr);pq.push(curr2);}if(curr.lst==x[g] && curr.bitipref==x[g]-1 && curr.biti==x[g] && curr.layer+1<=m){curr2=skip(curr);pq.push(curr2);}if(curr.lst+1<=curr.rghtbord){curr2=shift(curr);pq.push(curr2);}if(curr.bitipref>=1 && curr.lst>=curr.bitipref+1){curr2=fixborderandshift(curr);pq.push(curr2);}if(curr.bitipref==0 && curr.lst>=1 && curr.biti+1<=y[g]){curr2=fixborderandcreate(curr);pq.push(curr2);}if(curr.layer+1<=m){curr2=godown(curr);pq.push(curr2);}}}while(k){k--;cout<<-1<<'\n';}return 0;}
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Main.cpp:6:2152: warning: comparison of integer expressions of different signedness: 'std::vector<int>::size_type' {aka 'long unsigned int'} and 'int' [-Wsign-compare]
    6 | using namespace std;int inf=1e9+10;struct node{long long  sum;int layer,bitipref,lst,rghtbord,biti;};struct cmp{bool operator()(node a,node  b){return a.sum>b.sum;}}
# 결과 실행 시간 메모리 Grader output
1 Correct 5 ms 8540 KB Output is correct
2 Correct 4 ms 8540 KB Output is correct
3 Correct 5 ms 8540 KB Output is correct
4 Correct 4 ms 8540 KB Output is correct
5 Correct 5 ms 8540 KB Output is correct
6 Correct 5 ms 8540 KB Output is correct
7 Correct 4 ms 8540 KB Output is correct
8 Correct 4 ms 8540 KB Output is correct
9 Correct 3 ms 8028 KB Output is correct
10 Correct 5 ms 8536 KB Output is correct
11 Correct 3 ms 8028 KB Output is correct
12 Correct 4 ms 8280 KB Output is correct
13 Correct 4 ms 8536 KB Output is correct
14 Correct 8 ms 8540 KB Output is correct
15 Correct 4 ms 8280 KB Output is correct
16 Correct 4 ms 8536 KB Output is correct
17 Correct 5 ms 8540 KB Output is correct
18 Correct 3 ms 8284 KB Output is correct
19 Correct 4 ms 8540 KB Output is correct
20 Correct 5 ms 8540 KB Output is correct
21 Correct 3 ms 8028 KB Output is correct
22 Correct 3 ms 8540 KB Output is correct
23 Correct 4 ms 8540 KB Output is correct
24 Correct 4 ms 8284 KB Output is correct
25 Correct 4 ms 8284 KB Output is correct
26 Correct 5 ms 8564 KB Output is correct
27 Correct 5 ms 8540 KB Output is correct
28 Correct 4 ms 8540 KB Output is correct
# 결과 실행 시간 메모리 Grader output
1 Correct 56 ms 27588 KB Output is correct
2 Correct 58 ms 27056 KB Output is correct
3 Correct 57 ms 26032 KB Output is correct
4 Correct 64 ms 26800 KB Output is correct
5 Correct 52 ms 18372 KB Output is correct
6 Correct 51 ms 17860 KB Output is correct
7 Correct 58 ms 27572 KB Output is correct
8 Correct 53 ms 25520 KB Output is correct
9 Correct 16 ms 8540 KB Output is correct
10 Correct 58 ms 26804 KB Output is correct
11 Correct 12 ms 8536 KB Output is correct
12 Correct 29 ms 9688 KB Output is correct
13 Correct 64 ms 25528 KB Output is correct
14 Correct 63 ms 23972 KB Output is correct
15 Correct 12 ms 6744 KB Output is correct
16 Correct 62 ms 23472 KB Output is correct
17 Correct 66 ms 22708 KB Output is correct
18 Correct 20 ms 6360 KB Output is correct
19 Correct 65 ms 22964 KB Output is correct
20 Correct 61 ms 23224 KB Output is correct
21 Correct 21 ms 5720 KB Output is correct
22 Correct 62 ms 14032 KB Output is correct
23 Correct 58 ms 22192 KB Output is correct
24 Correct 15 ms 5724 KB Output is correct
25 Correct 13 ms 5656 KB Output is correct
26 Correct 76 ms 14652 KB Output is correct
27 Correct 61 ms 14520 KB Output is correct
# 결과 실행 시간 메모리 Grader output
1 Correct 5 ms 8540 KB Output is correct
2 Correct 4 ms 8540 KB Output is correct
3 Correct 5 ms 8540 KB Output is correct
4 Correct 4 ms 8540 KB Output is correct
5 Correct 5 ms 8540 KB Output is correct
6 Correct 5 ms 8540 KB Output is correct
7 Correct 4 ms 8540 KB Output is correct
8 Correct 4 ms 8540 KB Output is correct
9 Correct 3 ms 8028 KB Output is correct
10 Correct 5 ms 8536 KB Output is correct
11 Correct 3 ms 8028 KB Output is correct
12 Correct 4 ms 8280 KB Output is correct
13 Correct 4 ms 8536 KB Output is correct
14 Correct 8 ms 8540 KB Output is correct
15 Correct 4 ms 8280 KB Output is correct
16 Correct 4 ms 8536 KB Output is correct
17 Correct 5 ms 8540 KB Output is correct
18 Correct 3 ms 8284 KB Output is correct
19 Correct 4 ms 8540 KB Output is correct
20 Correct 5 ms 8540 KB Output is correct
21 Correct 3 ms 8028 KB Output is correct
22 Correct 3 ms 8540 KB Output is correct
23 Correct 4 ms 8540 KB Output is correct
24 Correct 4 ms 8284 KB Output is correct
25 Correct 4 ms 8284 KB Output is correct
26 Correct 5 ms 8564 KB Output is correct
27 Correct 5 ms 8540 KB Output is correct
28 Correct 4 ms 8540 KB Output is correct
29 Correct 56 ms 27588 KB Output is correct
30 Correct 58 ms 27056 KB Output is correct
31 Correct 57 ms 26032 KB Output is correct
32 Correct 64 ms 26800 KB Output is correct
33 Correct 52 ms 18372 KB Output is correct
34 Correct 51 ms 17860 KB Output is correct
35 Correct 58 ms 27572 KB Output is correct
36 Correct 53 ms 25520 KB Output is correct
37 Correct 16 ms 8540 KB Output is correct
38 Correct 58 ms 26804 KB Output is correct
39 Correct 12 ms 8536 KB Output is correct
40 Correct 29 ms 9688 KB Output is correct
41 Correct 64 ms 25528 KB Output is correct
42 Correct 63 ms 23972 KB Output is correct
43 Correct 12 ms 6744 KB Output is correct
44 Correct 62 ms 23472 KB Output is correct
45 Correct 66 ms 22708 KB Output is correct
46 Correct 20 ms 6360 KB Output is correct
47 Correct 65 ms 22964 KB Output is correct
48 Correct 61 ms 23224 KB Output is correct
49 Correct 21 ms 5720 KB Output is correct
50 Correct 62 ms 14032 KB Output is correct
51 Correct 58 ms 22192 KB Output is correct
52 Correct 15 ms 5724 KB Output is correct
53 Correct 13 ms 5656 KB Output is correct
54 Correct 76 ms 14652 KB Output is correct
55 Correct 61 ms 14520 KB Output is correct
56 Correct 184 ms 30828 KB Output is correct
57 Correct 134 ms 28216 KB Output is correct
58 Correct 151 ms 29084 KB Output is correct
59 Correct 143 ms 26668 KB Output is correct
60 Correct 165 ms 23132 KB Output is correct
61 Correct 134 ms 28992 KB Output is correct
62 Correct 136 ms 25364 KB Output is correct
63 Correct 121 ms 23688 KB Output is correct
64 Correct 59 ms 7900 KB Output is correct
65 Correct 134 ms 28160 KB Output is correct
66 Correct 73 ms 8532 KB Output is correct
67 Correct 56 ms 9124 KB Output is correct
68 Correct 89 ms 23460 KB Output is correct
69 Correct 169 ms 28924 KB Output is correct
70 Correct 17 ms 6104 KB Output is correct
71 Correct 86 ms 23560 KB Output is correct
72 Correct 140 ms 26688 KB Output is correct
73 Correct 16 ms 5868 KB Output is correct
74 Correct 78 ms 15892 KB Output is correct
75 Correct 174 ms 31276 KB Output is correct
76 Correct 14 ms 5760 KB Output is correct
77 Correct 74 ms 14396 KB Output is correct
78 Correct 121 ms 23996 KB Output is correct
# 결과 실행 시간 메모리 Grader output
1 Correct 43 ms 7648 KB Output is correct
2 Correct 44 ms 6656 KB Output is correct
3 Correct 15 ms 5724 KB Output is correct
4 Correct 13 ms 5980 KB Output is correct
5 Correct 158 ms 30544 KB Output is correct
6 Correct 180 ms 29280 KB Output is correct
7 Correct 161 ms 29832 KB Output is correct
8 Correct 155 ms 28736 KB Output is correct
9 Correct 190 ms 30788 KB Output is correct
10 Correct 152 ms 29248 KB Output is correct
11 Correct 162 ms 27800 KB Output is correct
12 Correct 134 ms 27872 KB Output is correct
13 Correct 102 ms 11508 KB Output is correct
14 Correct 168 ms 29232 KB Output is correct
15 Correct 188 ms 29188 KB Output is correct
16 Correct 69 ms 14880 KB Output is correct
17 Correct 76 ms 22968 KB Output is correct
18 Correct 188 ms 29596 KB Output is correct
19 Correct 72 ms 23216 KB Output is correct
20 Correct 92 ms 22920 KB Output is correct
21 Correct 159 ms 28664 KB Output is correct
22 Correct 65 ms 14716 KB Output is correct
23 Correct 77 ms 22980 KB Output is correct
24 Correct 193 ms 30768 KB Output is correct
25 Correct 59 ms 23484 KB Output is correct
26 Correct 76 ms 23476 KB Output is correct
27 Correct 142 ms 27444 KB Output is correct
# 결과 실행 시간 메모리 Grader output
1 Correct 5 ms 8540 KB Output is correct
2 Correct 4 ms 8540 KB Output is correct
3 Correct 5 ms 8540 KB Output is correct
4 Correct 4 ms 8540 KB Output is correct
5 Correct 5 ms 8540 KB Output is correct
6 Correct 5 ms 8540 KB Output is correct
7 Correct 4 ms 8540 KB Output is correct
8 Correct 4 ms 8540 KB Output is correct
9 Correct 3 ms 8028 KB Output is correct
10 Correct 5 ms 8536 KB Output is correct
11 Correct 3 ms 8028 KB Output is correct
12 Correct 4 ms 8280 KB Output is correct
13 Correct 4 ms 8536 KB Output is correct
14 Correct 8 ms 8540 KB Output is correct
15 Correct 4 ms 8280 KB Output is correct
16 Correct 4 ms 8536 KB Output is correct
17 Correct 5 ms 8540 KB Output is correct
18 Correct 3 ms 8284 KB Output is correct
19 Correct 4 ms 8540 KB Output is correct
20 Correct 5 ms 8540 KB Output is correct
21 Correct 3 ms 8028 KB Output is correct
22 Correct 3 ms 8540 KB Output is correct
23 Correct 4 ms 8540 KB Output is correct
24 Correct 4 ms 8284 KB Output is correct
25 Correct 4 ms 8284 KB Output is correct
26 Correct 5 ms 8564 KB Output is correct
27 Correct 5 ms 8540 KB Output is correct
28 Correct 4 ms 8540 KB Output is correct
29 Correct 56 ms 27588 KB Output is correct
30 Correct 58 ms 27056 KB Output is correct
31 Correct 57 ms 26032 KB Output is correct
32 Correct 64 ms 26800 KB Output is correct
33 Correct 52 ms 18372 KB Output is correct
34 Correct 51 ms 17860 KB Output is correct
35 Correct 58 ms 27572 KB Output is correct
36 Correct 53 ms 25520 KB Output is correct
37 Correct 16 ms 8540 KB Output is correct
38 Correct 58 ms 26804 KB Output is correct
39 Correct 12 ms 8536 KB Output is correct
40 Correct 29 ms 9688 KB Output is correct
41 Correct 64 ms 25528 KB Output is correct
42 Correct 63 ms 23972 KB Output is correct
43 Correct 12 ms 6744 KB Output is correct
44 Correct 62 ms 23472 KB Output is correct
45 Correct 66 ms 22708 KB Output is correct
46 Correct 20 ms 6360 KB Output is correct
47 Correct 65 ms 22964 KB Output is correct
48 Correct 61 ms 23224 KB Output is correct
49 Correct 21 ms 5720 KB Output is correct
50 Correct 62 ms 14032 KB Output is correct
51 Correct 58 ms 22192 KB Output is correct
52 Correct 15 ms 5724 KB Output is correct
53 Correct 13 ms 5656 KB Output is correct
54 Correct 76 ms 14652 KB Output is correct
55 Correct 61 ms 14520 KB Output is correct
56 Correct 184 ms 30828 KB Output is correct
57 Correct 134 ms 28216 KB Output is correct
58 Correct 151 ms 29084 KB Output is correct
59 Correct 143 ms 26668 KB Output is correct
60 Correct 165 ms 23132 KB Output is correct
61 Correct 134 ms 28992 KB Output is correct
62 Correct 136 ms 25364 KB Output is correct
63 Correct 121 ms 23688 KB Output is correct
64 Correct 59 ms 7900 KB Output is correct
65 Correct 134 ms 28160 KB Output is correct
66 Correct 73 ms 8532 KB Output is correct
67 Correct 56 ms 9124 KB Output is correct
68 Correct 89 ms 23460 KB Output is correct
69 Correct 169 ms 28924 KB Output is correct
70 Correct 17 ms 6104 KB Output is correct
71 Correct 86 ms 23560 KB Output is correct
72 Correct 140 ms 26688 KB Output is correct
73 Correct 16 ms 5868 KB Output is correct
74 Correct 78 ms 15892 KB Output is correct
75 Correct 174 ms 31276 KB Output is correct
76 Correct 14 ms 5760 KB Output is correct
77 Correct 74 ms 14396 KB Output is correct
78 Correct 121 ms 23996 KB Output is correct
79 Correct 43 ms 7648 KB Output is correct
80 Correct 44 ms 6656 KB Output is correct
81 Correct 15 ms 5724 KB Output is correct
82 Correct 13 ms 5980 KB Output is correct
83 Correct 158 ms 30544 KB Output is correct
84 Correct 180 ms 29280 KB Output is correct
85 Correct 161 ms 29832 KB Output is correct
86 Correct 155 ms 28736 KB Output is correct
87 Correct 190 ms 30788 KB Output is correct
88 Correct 152 ms 29248 KB Output is correct
89 Correct 162 ms 27800 KB Output is correct
90 Correct 134 ms 27872 KB Output is correct
91 Correct 102 ms 11508 KB Output is correct
92 Correct 168 ms 29232 KB Output is correct
93 Correct 188 ms 29188 KB Output is correct
94 Correct 69 ms 14880 KB Output is correct
95 Correct 76 ms 22968 KB Output is correct
96 Correct 188 ms 29596 KB Output is correct
97 Correct 72 ms 23216 KB Output is correct
98 Correct 92 ms 22920 KB Output is correct
99 Correct 159 ms 28664 KB Output is correct
100 Correct 65 ms 14716 KB Output is correct
101 Correct 77 ms 22980 KB Output is correct
102 Correct 193 ms 30768 KB Output is correct
103 Correct 59 ms 23484 KB Output is correct
104 Correct 76 ms 23476 KB Output is correct
105 Correct 142 ms 27444 KB Output is correct
106 Correct 38 ms 6364 KB Output is correct
107 Correct 47 ms 8036 KB Output is correct
108 Correct 43 ms 6872 KB Output is correct
109 Correct 46 ms 7820 KB Output is correct
110 Correct 205 ms 31704 KB Output is correct
111 Correct 230 ms 30812 KB Output is correct
112 Correct 181 ms 30520 KB Output is correct
113 Correct 187 ms 29452 KB Output is correct
114 Correct 166 ms 31780 KB Output is correct
115 Correct 176 ms 30288 KB Output is correct
116 Correct 192 ms 46512 KB Output is correct
117 Correct 148 ms 27664 KB Output is correct
118 Correct 112 ms 13520 KB Output is correct
119 Correct 58 ms 8404 KB Output is correct
120 Correct 169 ms 29904 KB Output is correct
121 Correct 87 ms 23560 KB Output is correct
122 Correct 83 ms 23288 KB Output is correct
123 Correct 184 ms 30516 KB Output is correct
124 Correct 66 ms 15336 KB Output is correct
125 Correct 85 ms 23216 KB Output is correct
126 Correct 169 ms 30188 KB Output is correct
127 Correct 60 ms 14628 KB Output is correct
128 Correct 87 ms 23696 KB Output is correct
129 Correct 186 ms 32372 KB Output is correct
130 Correct 70 ms 23484 KB Output is correct
131 Correct 91 ms 23244 KB Output is correct
132 Correct 142 ms 27752 KB Output is correct