結果
問題 | No.2007 Arbitrary Mod (Easy) |
ユーザー |
![]() |
提出日時 | 2022-07-15 22:10:35 |
言語 | Go (1.23.4) |
結果 |
AC
|
実行時間 | 2 ms / 2,000 ms |
コード長 | 3,518 bytes |
コンパイル時間 | 15,361 ms |
コンパイル使用メモリ | 222,840 KB |
実行使用メモリ | 5,376 KB |
最終ジャッジ日時 | 2024-06-27 18:19:23 |
合計ジャッジ時間 | 17,952 ms |
ジャッジサーバーID (参考情報) |
judge2 / judge5 |
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ファイルパターン | 結果 |
---|---|
sample | AC * 3 |
other | AC * 30 |
ソースコード
package mainimport ("bufio""fmt""io""os""strconv")var iost *Iosttype Iost struct {Scanner *bufio.ScannerWriter *bufio.Writer}func NewIost(fp io.Reader, wfp io.Writer) *Iost {const BufSize = 2000005scanner := bufio.NewScanner(fp)scanner.Split(bufio.ScanWords)scanner.Buffer(make([]byte, BufSize), BufSize)return &Iost{Scanner: scanner, Writer: bufio.NewWriter(wfp)}}func (i *Iost) Text() string {if !i.Scanner.Scan() {panic("scan failed")}return i.Scanner.Text()}func (i *Iost) Atoi(s string) int { x, _ := strconv.Atoi(s); return x }func (i *Iost) GetNextInt() int { return i.Atoi(i.Text()) }func (i *Iost) Atoi64(s string) int64 { x, _ := strconv.ParseInt(s, 10, 64); return x }func (i *Iost) GetNextInt64() int64 { return i.Atoi64(i.Text()) }func (i *Iost) Atof64(s string) float64 { x, _ := strconv.ParseFloat(s, 64); return x }func (i *Iost) GetNextFloat64() float64 { return i.Atof64(i.Text()) }func (i *Iost) Print(x ...interface{}) { fmt.Fprint(i.Writer, x...) }func (i *Iost) Printf(s string, x ...interface{}) { fmt.Fprintf(i.Writer, s, x...) }func (i *Iost) Println(x ...interface{}) { fmt.Fprintln(i.Writer, x...) }func isLocal() bool { return os.Getenv("I") == "IronMan" }func main() {fp := os.Stdinwfp := os.Stdoutif isLocal() {fp, _ = os.Open(os.Getenv("END_GAME"))}iost = NewIost(fp, wfp)defer func() {iost.Writer.Flush()}()solve()}func solve() {SetMod(Mod1000000007)a := iost.GetNextInt()n := iost.GetNextInt()iost.Println(Mod1000000007)iost.Println(Mint(a).Pow(Mint(n)))}// Mod constants.const (Mod1000000007 = 1000000007Mod998244353 = 998244353)var (mod Mintfmod func(Mint) Mint)// Mint treats the modular arithmetictype Mint int64// SetMod sets the mod. It must be called first.func SetMod(newmod Mint) {switch newmod {case Mod1000000007:fmod = staticMod1000000007case Mod998244353:fmod = staticMod998244353default:mod = newmodfmod = dynamicMod}}func dynamicMod(m Mint) Mint {m %= modif m < 0 {return m + mod}return m}func staticMod1000000007(m Mint) Mint {m %= Mod1000000007if m < 0 {return m + Mod1000000007}return m}func staticMod998244353(m Mint) Mint {m %= Mod998244353if m < 0 {return m + Mod998244353}return m}// Mod returns m % mod.func (m Mint) Mod() Mint {return fmod(m)}// Inv returns modular multiplicative inversefunc (m Mint) Inv() Mint {return m.Pow(Mint(0).Sub(2))}// Pow returns m^nfunc (m Mint) Pow(n Mint) Mint {p := Mint(1)for n > 0 {if n&1 == 1 {p.MulAs(m)}m.MulAs(m)n >>= 1}return p}// Add returns m+xfunc (m Mint) Add(x Mint) Mint {return (m + x).Mod()}// Sub returns m-xfunc (m Mint) Sub(x Mint) Mint {return (m - x).Mod()}// Mul returns m*xfunc (m Mint) Mul(x Mint) Mint {return (m * x).Mod()}// Div returns m/xfunc (m Mint) Div(x Mint) Mint {return m.Mul(x.Inv())}// AddAs assigns *m + x to *m and returns mfunc (m *Mint) AddAs(x Mint) *Mint {*m = m.Add(x)return m}// SubAs assigns *m - x to *m and returns mfunc (m *Mint) SubAs(x Mint) *Mint {*m = m.Sub(x)return m}// MulAs assigns *m * x to *m and returns mfunc (m *Mint) MulAs(x Mint) *Mint {*m = m.Mul(x)return m}// DivAs assigns *m / x to *m and returns mfunc (m *Mint) DivAs(x Mint) *Mint {*m = m.Div(x)return m}