結果
| 問題 |
No.1391 ±1 Abs Sum
|
| コンテスト | |
| ユーザー |
yakamoto
|
| 提出日時 | 2021-02-12 22:03:17 |
| 言語 | Kotlin (2.1.0) |
| 結果 |
WA
|
| 実行時間 | - |
| コード長 | 3,719 bytes |
| コンパイル時間 | 16,476 ms |
| コンパイル使用メモリ | 467,864 KB |
| 実行使用メモリ | 88,812 KB |
| 最終ジャッジ日時 | 2024-07-19 21:39:18 |
| 合計ジャッジ時間 | 33,807 ms |
|
ジャッジサーバーID (参考情報) |
judge3 / judge1 |
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| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 33 WA * 1 |
コンパイルメッセージ
Main.kt:153:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debug(a: LongArray) {
^
Main.kt:157:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debug(a: IntArray) {
^
Main.kt:161:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debug(a: BooleanArray) {
^
Main.kt:165:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun toString(a: BooleanArray) = run{a.map { if (it) 1 else 0 }.joinToString("")}
^
Main.kt:167:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debugDim(A: Array<LongArray>) {
^
Main.kt:174:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debugDim(A: Array<IntArray>) {
^
Main.kt:181:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun debugDim(A: Array<BooleanArray>) {
^
Main.kt:198:11: warning: expected performance impact from inlining is insignificant. Inlining works best for functions with parameters of functional types
private inline fun assert(b: Boolean) = run{if (!b) throw AssertionError()}
^
ソースコード
import java.io.BufferedReader
import java.io.InputStream
import java.io.InputStreamReader
import java.lang.AssertionError
import java.util.*
import kotlin.math.abs
import kotlin.math.max
import kotlin.math.min
val MOD = 1_000_000_007
class Solver(stream: InputStream, private val out: java.io.PrintWriter) {
private val reader = BufferedReader(InputStreamReader(stream), 32768)
private val N = ni()
private val K = ni()
private val A = nal(N)
fun solve() {
fun sumL() = (0 until N).map{A[it] - A[0]}.sum()
fun sumR() = (0 until N).map{A.last() - A[it]}.sum()
if (K == N) {
out.println(min(sumL(), sumR()))
return
}
if (K == 0) {
out.println(min(-sumL(), -sumR()))
return
}
var lsum = 0L
var lcnt = 0
var rsum = 0L
var sum = 0L
for (i in 1 until N) {
sum += A[i] - A[0]
}
for (i in K until N) {
rsum += A[i] - A[0]
}
var rcnt = N - K
var l = -1
var r = K
debug{"$sum $rsum $rcnt"}
var ans = 2e18.toLong() + 100
for (i in 0 until N) {
val lstMove = if (i == 0) 0 else A[i] - A[i-1]
lsum += lcnt*lstMove
rsum -= rcnt*lstMove
sum += i*lstMove - (N - i)*lstMove
while (l + 1 < i && r < N && abs(A[l + 1] - A[i]) > abs(A[r] - A[i])) {
lcnt++
rcnt--
lsum += abs(A[l + 1] - A[i])
rsum -= abs(A[r] - A[i])
l++
r++
}
val v = sum - lsum*2-rsum*2
debug{"$i $sum $l:$r $lsum $lcnt $rsum $rcnt $v"}
ans = min(ans, v)
}
out.println(ans)
}
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 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 IntArray(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<IntArray> {
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 debug(msg: () -> String) {
if (isDebug) System.err.println(msg())
}
private inline fun debug(a: LongArray) {
debug { a.joinToString(" ") }
}
private inline fun debug(a: IntArray) {
debug { a.joinToString(" ") }
}
private inline fun debug(a: BooleanArray) {
debug { toString(a) }
}
private inline fun toString(a: BooleanArray) = run{a.map { if (it) 1 else 0 }.joinToString("")}
private inline fun debugDim(A: Array<LongArray>) {
if (isDebug) {
for (a in A) {
debug(a)
}
}
}
private inline fun debugDim(A: Array<IntArray>) {
if (isDebug) {
for (a in A) {
debug(a)
}
}
}
private inline fun debugDim(A: Array<BooleanArray>) {
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)
}
private inline fun assert(b: Boolean) = run{if (!b) throw AssertionError()}
}
fun main() {
val out = java.io.PrintWriter(System.out)
Solver(System.`in`, out).solve()
out.flush()
}
yakamoto