// need #include #include // data structure #include #include #include #include #include #include #include #include #include //#include #include // stream //#include //#include //#include #include // etc #include #include #include #include #include #include #include // input #define INIT std::ios::sync_with_stdio(false);std::cin.tie(0); #define VAR(type, ...)type __VA_ARGS__;MACRO_VAR_Scan(__VA_ARGS__); template void MACRO_VAR_Scan(T& t) { std::cin >> t; } templatevoid MACRO_VAR_Scan(First& first, Rest&...rest) { std::cin >> first; MACRO_VAR_Scan(rest...); } #define VEC_ROW(type, n, ...)std::vector __VA_ARGS__;MACRO_VEC_ROW_Init(n, __VA_ARGS__); for(int i=0; i void MACRO_VEC_ROW_Init(int n, T& t) { t.resize(n); } templatevoid MACRO_VEC_ROW_Init(int n, First& first, Rest&...rest) { first.resize(n); MACRO_VEC_ROW_Init(n, rest...); } template void MACRO_VEC_ROW_Scan(int p, T& t) { std::cin >> t[p]; } templatevoid MACRO_VEC_ROW_Scan(int p, First& first, Rest&...rest) { std::cin >> first[p]; MACRO_VEC_ROW_Scan(p, rest...); } #define VEC(type, c, n) std::vector c(n);for(auto& i:c)std::cin>>i; #define MAT(type, c, m, n) std::vector> c(m, std::vector(n));for(auto& r:c)for(auto& i:r)std::cin>>i; // output #define OUT(d) std::cout<<(d); #define FOUT(n, d) std::cout<=(a);--i) #define REP(i, n) for(int i=0;i=0;--i) #define FORLL(i, a, b) for(ll i=ll(a);i=ll(a);--i) #define REPLL(i, n) for(ll i=0;i=0;--i) #define IN(a, x, b) (a<=x && x inline T CHMAX(T& a, const T b) { return a = (a < b) ? b : a; } template inline T CHMIN(T& a, const T b) { return a = (a > b) ? b : a; } #define EXCEPTION(msg) throw std::string("Exception : " msg " [ in ") + __func__ + " : " + std::to_string(__LINE__) + " lines ]" #define TRY(cond, msg) try {if (cond) EXCEPTION(msg);}catch (std::string s) {std::cerr << s << std::endl;} void CHECKTIME(std::function f) { auto start = std::chrono::system_clock::now(); f(); auto end = std::chrono::system_clock::now(); auto res = std::chrono::duration_cast((end - start)).count(); std::cerr << "[Time:" << res << "ns (" << res / (1.0e9) << "s)]\n"; } // test template std::vector> VV(int n, int m, T init = T()) { return std::vector>(n, std::vector(m, init)); } template std::ostream& operator<<(std::ostream& os, std::pair p) { os << "(" << p.first << ", " << p.second << ")"; return os; } // type/const #define int ll using ll = long long; using ull = unsigned long long; using ld = long double; using PAIR = std::pair; using PAIRLL = std::pair; constexpr int INFINT = 1 << 30; // 1.07x10^ 9 constexpr int INFINT_LIM = (1LL << 31) - 1; // 2.15x10^ 9 constexpr ll INFLL = 1LL << 60; // 1.15x10^18 constexpr ll INFLL_LIM = (1LL << 62) - 1 + (1LL << 62); // 9.22x10^18 constexpr double EPS = 1e-9; constexpr int MOD = 1000000007; constexpr double PI = 3.141592653589793238462643383279; template void FILL(T(&a)[N], const T& val) { for (auto& x : a) x = val; } template void FILL(ARY(&a)[N][M], const T& val) { for (auto& b : a) FILL(b, val); } template void FILL(std::vector& a, const T& val) { for (auto& x : a) x = val; } template void FILL(std::vector>& a, const T& val) { for (auto& b : a) FILL(b, val); } // ------------>8------------------------------------->8------------ // Description: 区間をsetで管理するデータ構造(なお実装はmap).各クエリO(log区間数). // #### attention! : [l, r] ( include r, not [l, r) ) template class SegmentMap { private: std::map map; T rangeToMergeAdjacentSegment; public: // ## set rangeToMergeAdjacentSegment to R to merge [l, c] and [c+R, r] SegmentMap(T rangeToMergeAdjacentSegment) : rangeToMergeAdjacentSegment(rangeToMergeAdjacentSegment) {} // ## __exist -> iterator pair(l, r) (contain p) // ## noexist -> map.end() auto get(T p) const { auto it = upper_bound(p); if (it == begin() || (--it)->second < p) return end(); return it; } // ## insert segment [l, r] void insert(T l, T r) { auto itl = upper_bound(l), itr = upper_bound(r + rangeToMergeAdjacentSegment); if (itl != begin()) { if ((--itl)->second < l - rangeToMergeAdjacentSegment) ++itl; } if (itl != itr) { l = std::min(l, itl->first); r = std::max(r, std::prev(itr)->second); map.erase(itl, itr); } map[l] = r; } // ## remove segment [l, r] void remove(T l, T r) { auto itl = upper_bound(l), itr = upper_bound(r); if (itl != begin()) { if ((--itl)->second < l) ++itl; } if (itl == itr) return; T tl = std::min(l, itl->first), tr = std::max(r, std::prev(itr)->second); map.erase(itl, itr); if (tl < l) map[tl] = l - 1; if (r < tr) map[r + 1] = tr; } // ## Are p and q in the same segment? bool same(T p, T q) const { const auto&& it = get(p); return it != end() && it->first <= q && q <= it->second; } auto upper_bound(T x) const { return map.upper_bound(x); } auto lower_bound(T x) const { return map.lower_bound(x); } auto begin() const { return map.begin(); } auto end() const { return map.end(); } }; signed main() { INIT; VAR(int, d, q); int ma = 0; SegmentMap sm(1); REP(_, q) { VAR(int, a, b); sm.insert(a, b); auto it = sm.get(a); CHMAX(ma, (int)it->second - it->first + 1); OUT(ma)BR; } return 0; }