//#define NDEBUG #pragma warning(disable : 4146) #include #include #include #include #include #include #include #include #include namespace n91 { using i32 = std::int32_t; using i64 = std::int64_t; using u32 = std::uint32_t; using u64 = std::uint64_t; using isize = std::ptrdiff_t; using usize = std::size_t; using f64 = double; struct rep { struct itr { usize i; constexpr itr(const usize i) noexcept : i(i) {} void operator++() noexcept { ++i; } constexpr usize operator*() const noexcept { return i; } constexpr bool operator!=(const itr x) const noexcept { return i != x.i; } }; const itr f, l; constexpr rep(const usize f, const usize l) noexcept : f(std::min(f, l)), l(l) {} constexpr auto begin() const noexcept { return f; } constexpr auto end() const noexcept { return l; } }; struct revrep { struct itr { usize i; constexpr itr(const usize i) noexcept : i(i) {} void operator++() noexcept { --i; } constexpr usize operator*() const noexcept { return i; } constexpr bool operator!=(const itr x) const noexcept { return i != x.i; } }; const itr f, l; constexpr revrep(const usize f, const usize l) noexcept : f(l - 1), l(std::min(f, l) - 1) {} constexpr auto begin() const noexcept { return f; } constexpr auto end() const noexcept { return l; } }; template auto md_vec(const usize n, const T &value) { return std::vector(n, value); } template auto md_vec(const usize n, Args... args) { return std::vector(n, md_vec(args...)); } template constexpr T difference(const T &a, const T &b) noexcept { return a < b ? b - a : a - b; } template void chmin(T &a, const T &b) noexcept { if (b < a) a = b; } template void chmax(T &a, const T &b) noexcept { if (a < b) a = b; } template class rec_lambda { F f; public: rec_lambda(F &&f_) : f(std::forward(f_)) {} template auto operator()(Args &&... args) const { return f(*this, std::forward(args)...); } }; template T scan() { T ret; std::cin >> ret; return ret; } constexpr char eoln = '\n'; i64 floor_div(const i64 n, const i64 d) { assert(d != 0); return n / d - static_cast((n ^ d) < 0 && n % d != 0); } i64 ceil_div(const i64 n, const i64 d) { assert(d != 0); return n / d + static_cast((n ^ d) >= 0 && n % d != 0); } #ifdef N91_LOCAL #define OJ_LOCAL(a, b) b #else #define OJ_LOCAL(a, b) a #endif } // namespace n91 #include namespace n91 { void main_() { const usize n = scan(); const u64 a = scan(); const u64 b = scan(); const u64 c = scan(); std::vector>> g(2 * n); for (const usize i : rep(0, n)) { g[i].push_back({i * 2 % n, c}); } for (const usize i : rep(0, n)) { g[i].push_back({n + i, b}); } for (const usize i : rep(0, n)) { g[n + i].push_back({n + (i + 1) % n, a}); } for (const usize i : rep(0, n)) { g[n + i].push_back({i, 0}); } std::vector dist(2 * n, 1e18); struct node { usize v; u64 d; bool operator<(const node &r) const { return d > r.d; } }; std::priority_queue que; const auto push = [&](const usize v, const u64 d) { if (dist[v] > d) { dist[v] = d; que.push({v, d}); } }; for (const usize i : rep(1, n + 1)) { push(i % n, a * u64(i) + b); } while (!que.empty()) { const auto [v, d] = que.top(); que.pop(); if (dist[v] < d) { continue; } for (const auto &[to, c] : g[v]) { push(to, d + c); } } for (const usize i : rep(0, n)) { std::cout << dist[i] << eoln; } } } // namespace n91 int main() { //* std::ios::sync_with_stdio(false); std::cin.tie(nullptr); //*/ std::cout << std::fixed << std::setprecision(20); n91::main_(); return 0; }