Download 2017/finals/poles.cpp from hackercupai/hackercup: direct link, hf CLI and curl.
- Browser
- Download file 4.04 kB
-
https://huggingface.co/datasets/hackercupai/hackercup/resolve/main/2017/finals/poles.cpp
- Command line
-
hf download hf://datasets/hackercupai/hackercup/2017/finals/poles.cpp
-
curl -L -o poles.cpp https://huggingface.co/datasets/hackercupai/hackercup/resolve/main/2017/finals/poles.cpp
4.04 kB
| // Hacker Cup 2017 | |
| // Final Round | |
| // Fox Poles | |
| // Jacob Plachta | |
| using namespace std; | |
| template<typename T> T Abs(T x) { return(x<0 ? -x : x); } | |
| template<typename T> T Sqr(T x) { return(x*x); } | |
| const int INF = (int)1e9; | |
| const LD EPS = 1e-10; | |
| const LD PI = acos(-1.0); | |
| bool Read(int &x) | |
| { | |
| char c,r=0,n=0; | |
| x=0; | |
| for(;;) | |
| { | |
| c=getchar(); | |
| if ((c<0) && (!r)) | |
| return(0); | |
| if ((c=='-') && (!r)) | |
| n=1; | |
| else | |
| if ((c>='0') && (c<='9')) | |
| x=x*10+c-'0',r=1; | |
| else | |
| if (r) | |
| break; | |
| } | |
| if (n) | |
| x=-x; | |
| return(1); | |
| } | |
| pair<int,LD> O[LIM],P[LIM]; | |
| LD mx[LIM]; | |
| vector<int> ch[LIM]; | |
| int ss,st[LIM]; | |
| LD Calc(LD h,LD a1,LD a2) | |
| { | |
| return(-h*(log(cos(a2))-log(cos(a1)))); | |
| } | |
| int main() | |
| { | |
| // vars | |
| int T,t; | |
| int N; | |
| bool D[2]; | |
| LD A[2]; | |
| int i,j,c,p,w,z; | |
| double v; | |
| LD a,a1,a2,tot,ans[2]; | |
| // testcase loop | |
| Read(T); | |
| Fox1(t,T) | |
| { | |
| // input | |
| Read(N); | |
| Fox(i,2) | |
| { | |
| Read(j); | |
| D[i]=int(j<0); | |
| A[i]=j*PI/180; | |
| } | |
| Fox(i,N) | |
| { | |
| scanf("%d%lf",&O[i].x,&v); | |
| O[i].y=v; | |
| } | |
| // consider each direction | |
| Fox(z,2) | |
| { | |
| // reverse poles horizontally if necessary | |
| memcpy(P,O,sizeof(P)); | |
| if (D[z]) | |
| Fox(i,N) | |
| P[i].x=-P[i].x; | |
| // sort poles left-to-right | |
| sort(P,P+N); | |
| // init | |
| Fox(i,N+1) | |
| ch[i].clear(); | |
| // consider poles left-to-right, constructing convex hull of coverage | |
| ss=0; | |
| Fox(i,N) | |
| { | |
| // find this pole's parent, if any | |
| while (ss>0) | |
| { | |
| j=st[ss-1]; | |
| a=atan2(P[i].x-P[j].x,P[j].y-P[i].y); | |
| if (a<mx[j]-EPS) | |
| break; | |
| ss--; | |
| } | |
| if (!ss) | |
| { | |
| mx[i]=Abs(A[z]); | |
| ch[N].pb(i); | |
| } | |
| else | |
| { | |
| mx[i]=a; | |
| ch[j].pb(i); | |
| } | |
| st[ss++]=i; | |
| } | |
| // augment tree | |
| Fox(j,Sz(ch[N])-1) | |
| ch[ch[N][j]].pb(ch[N][j+1]); | |
| Fox(i,N) | |
| Fox(j,Sz(ch[i])-1) | |
| ch[ch[i][j]].pb(ch[i][j+1]); | |
| // consider each left pole | |
| ans[z]=0; | |
| Fox(i,N) | |
| { | |
| a=0; | |
| Fox(c,Sz(ch[i])) | |
| { | |
| j=ch[i][c]; | |
| a1=max(a,atan2(P[j].x-P[i].x,P[i].y)); | |
| a2=atan2(P[j].x-P[i].x,P[i].y-P[j].y); | |
| // partial shadow until bottom | |
| if (a1>mx[i]-EPS) | |
| break; | |
| ans[z]+=Calc(P[i].y,a,a1); | |
| // full shadow until top | |
| w=P[j].x-P[i].x; | |
| if (a2>mx[i]-EPS) | |
| { | |
| ans[z]+=w*(mx[i]-a1); | |
| goto Done; | |
| } | |
| ans[z]+=w*(a2-a1); | |
| a=a2; | |
| } | |
| ans[z]+=Calc(P[i].y,a,mx[i]); | |
| Done:; | |
| } | |
| } | |
| // compute answer | |
| if (D[0]==D[1]) | |
| tot=Abs(ans[0]-ans[1]); | |
| else | |
| tot=ans[0]+ans[1]; | |
| tot/=A[1]-A[0]; | |
| // output | |
| printf("Case #%d: %.9lf\n",t,(double)tot); | |
| } | |
| return(0); | |
| } |