#pragma GCC optimize("Ofast") #pragma GCC target("sse,sse2,sse3,ssse3,sse4,popcnt,abm,mmx,avx,tune=native") #pragma GCC optimize("unroll-loops") #pragma warning(disable : 4996) #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace std; #define REP(i, n) for(int i = 0;i < n;++i) #define REPR(i, n) for(int i = n-1;i >= 0;--i) #define FOR(i, m, n) for(int i = m;i < n;++i) #define FORR(i, m, n) for(int i = m-1;i >= n;--i) #define SORT(v, n) sort(v, v+n); #define VSORT(v) sort(v.begin(), v.end()); #define REVERSE(v,n) reverse(v,v+n); #define VREVERSE(v) reverse(v.begin(), v.end()) #define ll long long #define pb(a) push_back #define print(x) cout<<(x)<<'\n' #define pe(x) cout<<(x)<<" " #define DEBUG(x) cout<<#x<<": "< inline void chmin(T1 & a, T2 b) { if (a > b) a = b; } template inline void chmax(T1& a, T2 b) { if (a < b) a = b; } typedef pairP; const int MOD = 1e9 + 7; const int MAX = 200020; const double pi = acos(-1); const double EPS = 1e-12; const ll INF = 1e18; struct LazySegmentTree { private: int n; vector node, lazy; public: LazySegmentTree(vector v) { int sz = (int)v.size(); n = 1; while (n < sz) n *= 2; node.resize(2 * n - 1); lazy.resize(2 * n - 1, 0); for (int i = 0; i= 0; i--) node[i] = node[i * 2 + 1] + node[i * 2 + 2]; } void eval(int k, int l, int r) { if (lazy[k] != 0) { node[k] += lazy[k]; if (r - l > 1) { lazy[2 * k + 1] += lazy[k] / 2; lazy[2 * k + 2] += lazy[k] / 2; } lazy[k] = 0; } } void add(int a, int b, ll x, int k = 0, int l = 0, int r = -1) { if (r < 0) r = n; eval(k, l, r); if (b <= l || r <= a) return; if (a <= l && r <= b) { lazy[k] += (r - l) * x; eval(k, l, r); } else { add(a, b, x, 2 * k + 1, l, (l + r) / 2); add(a, b, x, 2 * k + 2, (l + r) / 2, r); node[k] = node[2 * k + 1] + node[2 * k + 2]; } } ll getsum(int a, int b, int k = 0, int l = 0, int r = -1) { if (r < 0) r = n; eval(k, l, r); if (b <= l || r <= a) return 0; if (a <= l && r <= b) return node[k]; ll vl = getsum(a, b, 2 * k + 1, l, (l + r) / 2); ll vr = getsum(a, b, 2 * k + 2, (l + r) / 2, r); return vl + vr; } }; void solve() { int N, Q; cin >> N >> Q; vectorA(N); REP(i, N)cin >> A[i]; vector>arr(Q); REP(i, Q) { char c;int x, y; cin >> c >> x >> y; x--; int sign = (c == 'A') ? 0 : 1; arr[i] = { sign,x,y }; } VREVERSE(arr); vectorB(N); LazySegmentTree seg(vector(N, 0)); REP(i, Q) { int sign = arr[i][0], x = arr[i][1], y = arr[i][2]; //pe(sign); pe(x); print(y); if (sign == 1) { seg.add(x, y, 1); } else { int cnt = seg.getsum(x, x + 1); B[x] += cnt * y; } } REP(i, N) { int cnt = seg.getsum(i, i + 1); B[i] += cnt * A[i]; } print_space(B); } signed main() { cin.tie(0); ios::sync_with_stdio(false); //int q; cin >> q; //while (q--) solve(); }