• HDU 2871 Memory Control 线段树


    虐心线段树  感觉写的有点挫

    #include <cstdio>
    #include <cstring>
    #include <algorithm>
    #include <cstdlib>
    #include <map>
    #include <set>
    #include <vector>
    #include <string>
    #include <queue>
    #include <stack>
    #include <climits>
    
    using namespace std;
    
    #define lson rt<<1,l,mid
    #define rson rt<<1|1,mid + 1,r
    typedef long long LL;
    const int maxn = 50000 + 5;
    int lmax[maxn << 2],rmax[maxn << 2],mmax[maxn << 2];
    int strv[maxn << 2],endv[maxn << 2],lazy_str[maxn << 2],lazy_end[maxn << 2],lazy[maxn << 2];
    int sum[maxn << 2],lazy_add[maxn << 2];
    int N,M;
    
    void pushdown_sum(int rt,int l,int r) {
        if(lazy_add[rt] == -1) return;
        int lc = rt<<1,rc = rt<<1|1,mid = (l + r) >> 1;
        int Llen = mid - l + 1,Rlen = r - mid;
        lazy_add[lc] = lazy_add[rt]; lazy_add[rc] = lazy_add[rt];
        sum[lc] = lazy_add[rt] * Llen; sum[rc] = lazy_add[rt] * Rlen;
        lazy_add[rt] = -1;
    }
    
    void update_sum(int rt,int l,int r,int ql,int qr,int v) {
        if(ql <= l && qr >= r) {
            lazy_add[rt] = v; sum[rt] = v * (r - l + 1);
        }
        else {
            int mid = (l + r) >> 1,lc = rt << 1,rc = rt << 1 | 1;
            pushdown_sum(rt,l,r);
            if(ql <= mid) update_sum(lson,ql,qr,v);
            if(qr > mid) update_sum(rson,ql,qr,v);
            sum[rt] = sum[lc] + sum[rc];
        }
    }
    
    int getstr(int rt,int l,int r,int Val) {
        if(l == r) return l;
        int lc = rt<<1,rc = rt<<1|1,mid = (l + r) >> 1;
        pushdown_sum(rt,l,r);
        if(sum[lc] >= Val) return getstr(lson,Val);
        return getstr(rson,Val - sum[lc]);
    }
    
    void pushup(int rt,int l,int r) {
        int lc = rt<<1,rc = rt<<1|1,mid = (l + r) >> 1;
        int Llen = mid - l + 1,Rlen = r - mid;
        lmax[rt] = lmax[lc]; rmax[rt] = rmax[rc]; mmax[rt] = max(mmax[lc],mmax[rc]);
        if(rmax[lc] != 0 && lmax[rc] != 0) {
            if(lmax[lc] == Llen) lmax[rt] += lmax[rc];
            if(rmax[rc] == Rlen) rmax[rt] += rmax[lc];
            mmax[rt] = max(mmax[rt],rmax[lc] + lmax[rc]);
            mmax[rt] = max(mmax[rt],max(lmax[rt],rmax[rt]));
        }
    }
    
    void pushdown(int rt,int l,int r) {
        if(lazy[rt] == -1) return;
        int lc = rt<<1,rc = rt<<1|1,mid = (l + r) >> 1;
        int Llen = mid - l + 1,Rlen = r - mid;
        lazy[lc] = lazy[rc] = lazy[rt];
        lmax[lc] = rmax[lc] = mmax[lc] = lazy[rt] ? 0 : Llen;
        lmax[rc] = rmax[rc] = mmax[rc] = lazy[rt] ? 0 : Rlen;
        lazy[rt] = -1;
    }
    
    void update(int rt,int l,int r,int ql,int qr,int v) {
        if(ql <= l && qr >= r) {
            lazy[rt] = v;
            lmax[rt] = rmax[rt] = mmax[rt] = v ? 0 : r - l + 1;
        }
        else {
            int mid = (l + r) >> 1;
            pushdown(rt,l,r);
            if(ql <= mid) update(lson,ql,qr,v);
            if(qr > mid) update(rson,ql,qr,v);
            pushup(rt,l,r);
        }
    }
    
    int query(int rt,int l,int r,int D) {
        int lc = rt<<1,rc = rt<<1|1,mid = (l + r) >> 1;
        pushdown(rt,l,r);
        if(lmax[rt] >= D) return l;
        if(mmax[rt<<1] >= D) return query(lson,D);
        if(rmax[lc] + lmax[rc] >= D) return (l + r) / 2 - rmax[lc] + 1;
        return query(rson,D);
    }
    
    void update_seg(int rt,int l,int r,int ql,int qr,int v,int *lazy,int *Val) {
        if(ql <= l && qr >= r) lazy[rt] = Val[rt] = v; 
        else {
            if(lazy[rt] != -1) lazy[rt<<1] = lazy[rt<<1|1] = Val[rt<<1] = Val[rt<<1|1] = lazy[rt],lazy[rt] = -1;
            int mid = (l + r) >> 1;
            if(ql <= mid) update_seg(lson,ql,qr,v,lazy,Val);
            if(qr > mid) update_seg(rson,ql,qr,v,lazy,Val);
        }
    }
    
    int query_seg(int rt,int l,int r,int p,int *lazy,int *Val) {
        if(l == r) return Val[rt];
        if(lazy[rt] != -1) lazy[rt<<1] = lazy[rt<<1|1] = Val[rt<<1] = Val[rt<<1|1] = lazy[rt],lazy[rt] = -1;
        int mid = (l + r) >> 1;
        if(p <= mid) return query_seg(lson,p,lazy,Val);
        if(p > mid) return query_seg(rson,p,lazy,Val);
    }
    
    char buf[1024];
    
    void Handle() {
        int len,pos;
        scanf("%s",buf);
        if(buf[0] == 'N') {
            scanf("%d",&len);
            if(mmax[1] < len) {
                puts("Reject New"); return;
            }
            int ret = query(1,1,N,len);
            printf("New at %d
    ",ret);
            update(1,1,N,ret,ret + len - 1,1);
            update_seg(1,1,N,ret,ret + len - 1,ret,lazy_str,strv);
            update_seg(1,1,N,ret,ret + len - 1,ret + len - 1,lazy_end,endv);
            update_sum(1,1,N,ret,ret,1);
        }
        if(buf[0] == 'G') {
            scanf("%d",&pos);
            if(sum[1] < pos) {
                puts("Reject Get"); return;
            }
            int ret = getstr(1,1,N,pos);
            printf("Get at %d
    ",ret);
        }
        if(buf[0] == 'R') {
            puts("Reset Now");
            update(1,1,N,1,N,0);
            update_seg(1,1,N,1,N,0,lazy_str,strv); 
            update_seg(1,1,N,1,N,0,lazy_end,endv);
            update_sum(1,1,N,1,N,0);
        }
        if(buf[0] == 'F') {
            scanf("%d",&pos);
            int spos = query_seg(1,1,N,pos,lazy_str,strv);
            int epos = query_seg(1,1,N,pos,lazy_end,endv);
            if(spos <= 0) {
                puts("Reject Free"); return;
            }
            printf("Free from %d to %d
    ",spos,epos);
            update(1,1,N,spos,epos,0);
            update_seg(1,1,N,spos,epos,0,lazy_str,strv);
            update_seg(1,1,N,spos,epos,0,lazy_end,endv);
            update_sum(1,1,N,spos,spos,0);
        }
    }
    
    int main() {
        while(scanf("%d%d",&N,&M) != EOF) {
            update(1,1,N,1,N,0);
            update_seg(1,1,N,1,N,0,lazy_str,strv); 
            update_seg(1,1,N,1,N,0,lazy_end,endv);
            update_sum(1,1,N,1,N,0);
            for(int i = 0;i < M;i++) Handle();
            puts("");
        }
        return 0;
    }
    

      

  • 相关阅读:
    电子器件选型:保险丝
    智能硬件类产品测试项目总结
    PCB设计铜箔厚度、线宽和电流关系
    可控硅设计经验总结
    反激变压器安匝比
    外面的世界很精彩,然而等待你的人却可能已不在
    《一条狗的使命》观后感
    HT7A6312—— 离线开关电源小功率初级转换开关IC 记录总结
    Linux
    Python
  • 原文地址:https://www.cnblogs.com/rolight/p/3913884.html
Copyright © 2020-2023  润新知