#include #include #include #include #include namespace atcoder { namespace internal { #ifndef _MSC_VER template using is_signed_int128 = typename std::conditional::value || std::is_same::value, std::true_type, std::false_type>::type; template using is_unsigned_int128 = typename std::conditional::value || std::is_same::value, std::true_type, std::false_type>::type; template using make_unsigned_int128 = typename std::conditional::value, __uint128_t, unsigned __int128>; template using is_integral = typename std::conditional::value || is_signed_int128::value || is_unsigned_int128::value, std::true_type, std::false_type>::type; template using is_signed_int = typename std::conditional<(is_integral::value && std::is_signed::value) || is_signed_int128::value, std::true_type, std::false_type>::type; template using is_unsigned_int = typename std::conditional<(is_integral::value && std::is_unsigned::value) || is_unsigned_int128::value, std::true_type, std::false_type>::type; template using to_unsigned = typename std::conditional< is_signed_int128::value, make_unsigned_int128, typename std::conditional::value, std::make_unsigned, std::common_type>::type>::type; #else template using is_integral = typename std::is_integral; template using is_signed_int = typename std::conditional::value && std::is_signed::value, std::true_type, std::false_type>::type; template using is_unsigned_int = typename std::conditional::value && std::is_unsigned::value, std::true_type, std::false_type>::type; template using to_unsigned = typename std::conditional::value, std::make_unsigned, std::common_type>::type; #endif template using is_signed_int_t = std::enable_if_t::value>; template using is_unsigned_int_t = std::enable_if_t::value>; template using to_unsigned_t = typename to_unsigned::type; } // namespace internal } // namespace atcoder #include #include namespace atcoder { // Reference: https://en.wikipedia.org/wiki/Fenwick_tree template struct fenwick_tree { using U = internal::to_unsigned_t; public: fenwick_tree() : _n(0) {} fenwick_tree(int n) : _n(n), data(n) {} void add(int p, T x) { assert(0 <= p && p < _n); p++; while (p <= _n) { data[p - 1] += U(x); p += p & -p; } } T sum(int l, int r) { assert(0 <= l && l <= r && r <= _n); return sum(r) - sum(l); } private: int _n; std::vector data; U sum(int r) { U s = 0; while (r > 0) { s += data[r - 1]; r -= r & -r; } return s; } }; } // namespace atcoder using namespace atcoder; using namespace std; #define rep(i,n) for (int i = 0; i < (n); ++i) #define Inf 10000000 int main(){ int N,Q; cin>>N>>Q; map mp; rep(i,N)mp[i] = i+1; fenwick_tree F(N); rep(i,N){ int A; scanf("%d",&A); F.add(i,A); } rep(i,Q){ int t,x; scanf("%d %d",&t,&x); x--; auto it = mp.upper_bound(x); it--; //cout<<(it->first)<<','<<(it->second)<second-1==x){ int temp = it->first; it = mp.erase(it); int x = temp; int y = it->second; mp.erase(it); mp[x] = y; } } if(t==2){ if(it->second-1!=x){ int a = it->first; int b = x+1; int c = x+1; int d = it->second; mp.erase(it); mp[a] = b; mp[c] = d; } } if(t==3){ F.add(x,1); } if(t==4){ int l = it->first; int r = it->second; printf("%lld\n",F.sum(l,r)); } } return 0; }