import java.io.BufferedReader import java.io.InputStream import java.io.InputStreamReader import java.util.* import kotlin.math.abs import kotlin.math.max import kotlin.math.min val MOD = 1_000_000_007L val INF = 1e9.toInt() /** * @param n 個数 最大値じゃないぞ。 * iの範囲は[0, n - 1] * * AがIntやLongのときは埋め込んでしまおう * type A = Int */ class RangeUpdateTree(n: Int) { private inline fun f(a: Int, b:Int): Int { return min(a, b) } private val zero = INF private val N = if (Integer.highestOneBit(n) == n) n else Integer.highestOneBit(n) shl 1 private val dat = IntArray(2 * N){zero} // private inline fun f(a: Int, b: Int) = a + b /** * [l, r) */ fun add(l: Int, r: Int, a: Int) { var left = l + N var right = r - 1 + N while(left <= right) { if ((left and 1) == 1) dat[left] = f(dat[left], a) if ((right and 1) == 0) dat[right] = f(dat[right], a) left = (left + 1) shr 1 // 右の子供なら右の親に移動 right = (right - 1) shr 1 // 左の子供なら左の親に移動 } } fun query(i: Int): Int { var ix = N + i var res: Int = zero while(ix >= 1) { res = f(res, dat[ix]) ix = ix shr 1 } return res } // 条件を満たすか。maxなら '>' minなら '<' が使える private inline fun contains(a: Int, x: Int): Boolean = a > x /** * @param x 左右どちらからか最初に a < x になる場所を探す * @return -1 */ fun search(x: Int, k: Int = 1, l: Int = 0, r: Int = N): Int { if (!contains(dat[k], x)) return -1 if (l + 1 == r) return l // 1-indexed val m = (l + r) / 2 val lft = k * 2 val rgt = lft + 1 val ans = search(x, lft, l, m) if (ans != -1) return ans return search(x, rgt, m, r) } } data class Query(val i: Int, val x1: Int, val y1: Int, val x2: Int, val y2: Int) data class Point(val i: Int, val x: Int, val y: Int) class Solver(stream: InputStream, private val out: java.io.PrintWriter) { fun solve() { val N = ni() val Q = Array(N){Query(it, ni(), ni(), ni(), ni())} val ans = IntArray(N) fun calc(P: MutableList) { val t = RangeUpdateTree(20_000) P.sortWith(compareBy({-it.y}, {it.x})) for (p in P) { var i = p.i var x = t.search(i) debug{"i:$i x:$x"} while(x != -1 && x <= p.x) { val ni = t.query(x) if (ni == INF) { ans[p.i] += (p.x - x + 1) * p.y break } val nx = t.search(ni) debug{"i:$i ni:$ni x:$x nx:$nx"} if (nx != -1) { ans[ni] -= (min(nx, p.x + 1) - x) * p.y ans[p.i] += (min(nx, p.x + 1) - x) * p.y } i = ni x = nx } t.add(0, p.x + 1, p.i) } } calc(Q.map{Point(it.i, it.x2 - 1, it.y2)} as MutableList) calc(Q.map{Point(it.i, -it.x1 - 1, -it.y1)} as MutableList) calc(Q.map{Point(it.i, -it.x1 - 1, it.y2)} as MutableList) calc(Q.map{Point(it.i, it.x2 - 1, -it.y1)} as MutableList) for (i in 0 until N) { out.println(ans[i]) } } private val isDebug = try { // なんか本番でエラーでる System.getenv("MY_DEBUG") != null } catch (t: Throwable) { false } private var tokenizer: StringTokenizer? = null private val reader = BufferedReader(InputStreamReader(stream), 32768) private fun next(): String { while (tokenizer == null || !tokenizer!!.hasMoreTokens()) { tokenizer = StringTokenizer(reader.readLine()) } return tokenizer!!.nextToken() } private fun ni() = next().toInt() private fun nl() = next().toLong() private fun ns() = next() private fun na(n: Int, offset: Int = 0): IntArray { return map(n) { ni() + offset } } private fun nal(n: Int, offset: Int = 0): LongArray { val res = LongArray(n) for (i in 0 until n) { res[i] = nl() + offset } return res } private fun na2(n: Int, offset: Int = 0): Array { val a = Array(2){IntArray(n)} for (i in 0 until n) { for (e in a) { e[i] = ni() + offset } } return a } private inline fun map(n: Int, f: (Int) -> Int): IntArray { val res = IntArray(n) for (i in 0 until n) { res[i] = f(i) } return res } private inline fun debug(msg: () -> String) { if (isDebug) System.err.println(msg()) } private fun debug(a: LongArray) { debug { a.joinToString(" ") } } private fun debug(a: IntArray) { debug { a.joinToString(" ") } } private fun debug(a: BooleanArray) { debug { a.map { if (it) 1 else 0 }.joinToString("") } } private fun debugDim(A: Array) { if (isDebug) { for (a in A) { debug(a) } } } private fun debugDim(A: Array) { if (isDebug) { for (a in A) { debug(a) } } } /** * 勝手にimport消されるのを防ぎたい */ private fun hoge() { min(1, 2) max(1, 2) abs(-10) } } fun main() { val out = java.io.PrintWriter(System.out) Solver(System.`in`, out).solve() out.flush() }