adb0401dac
From-SVN: r178910
203 lines
4.1 KiB
Go
203 lines
4.1 KiB
Go
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package strconv
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import "os"
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type NumError struct {
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Num string
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Error os.Error
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}
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func (e *NumError) String() string { return `parsing "` + e.Num + `": ` + e.Error.String() }
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func computeIntsize() uint {
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siz := uint(8)
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for 1<<siz != 0 {
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siz *= 2
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}
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return siz
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}
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var IntSize = computeIntsize()
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// Return the first number n such that n*base >= 1<<64.
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func cutoff64(base int) uint64 {
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if base < 2 {
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return 0
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}
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return (1<<64-1)/uint64(base) + 1
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}
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// Btoui64 interprets a string s in an arbitrary base b (2 to 36)
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// and returns the corresponding value n. If b == 0, the base
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// is taken from the string prefix: base 16 for "0x", base 8 for "0",
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// and base 10 otherwise.
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//
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// The errors that Btoui64 returns have concrete type *NumError
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// and include err.Num = s. If s is empty or contains invalid
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// digits, err.Error = os.EINVAL; if the value corresponding
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// to s cannot be represented by a uint64, err.Error = os.ERANGE.
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func Btoui64(s string, b int) (n uint64, err os.Error) {
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var cutoff uint64
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s0 := s
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switch {
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case len(s) < 1:
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err = os.EINVAL
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goto Error
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case 2 <= b && b <= 36:
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// valid base; nothing to do
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case b == 0:
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// Look for octal, hex prefix.
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switch {
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case s[0] == '0' && len(s) > 1 && (s[1] == 'x' || s[1] == 'X'):
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b = 16
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s = s[2:]
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if len(s) < 1 {
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err = os.EINVAL
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goto Error
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}
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case s[0] == '0':
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b = 8
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default:
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b = 10
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}
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default:
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err = os.NewError("invalid base " + Itoa(b))
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goto Error
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}
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n = 0
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cutoff = cutoff64(b)
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for i := 0; i < len(s); i++ {
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var v byte
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d := s[i]
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switch {
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case '0' <= d && d <= '9':
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v = d - '0'
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case 'a' <= d && d <= 'z':
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v = d - 'a' + 10
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case 'A' <= d && d <= 'Z':
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v = d - 'A' + 10
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default:
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n = 0
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err = os.EINVAL
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goto Error
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}
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if int(v) >= b {
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n = 0
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err = os.EINVAL
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goto Error
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}
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if n >= cutoff {
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// n*b overflows
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n = 1<<64 - 1
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err = os.ERANGE
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goto Error
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}
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n *= uint64(b)
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n1 := n + uint64(v)
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if n1 < n {
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// n+v overflows
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n = 1<<64 - 1
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err = os.ERANGE
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goto Error
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}
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n = n1
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}
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return n, nil
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Error:
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return n, &NumError{s0, err}
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}
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// Atoui64 interprets a string s as a decimal number and
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// returns the corresponding value n.
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//
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// Atoui64 returns err == os.EINVAL if s is empty or contains invalid digits.
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// It returns err == os.ERANGE if s cannot be represented by a uint64.
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func Atoui64(s string) (n uint64, err os.Error) {
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return Btoui64(s, 10)
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}
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// Btoi64 is like Btoui64 but allows signed numbers and
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// returns its result in an int64.
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func Btoi64(s string, base int) (i int64, err os.Error) {
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// Empty string bad.
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if len(s) == 0 {
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return 0, &NumError{s, os.EINVAL}
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}
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// Pick off leading sign.
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s0 := s
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neg := false
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if s[0] == '+' {
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s = s[1:]
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} else if s[0] == '-' {
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neg = true
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s = s[1:]
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}
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// Convert unsigned and check range.
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var un uint64
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un, err = Btoui64(s, base)
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if err != nil && err.(*NumError).Error != os.ERANGE {
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err.(*NumError).Num = s0
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return 0, err
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}
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if !neg && un >= 1<<63 {
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return 1<<63 - 1, &NumError{s0, os.ERANGE}
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}
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if neg && un > 1<<63 {
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return -1 << 63, &NumError{s0, os.ERANGE}
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}
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n := int64(un)
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if neg {
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n = -n
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}
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return n, nil
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}
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// Atoi64 is like Atoui64 but allows signed numbers and
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// returns its result in an int64.
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func Atoi64(s string) (i int64, err os.Error) { return Btoi64(s, 10) }
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// Atoui is like Atoui64 but returns its result as a uint.
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func Atoui(s string) (i uint, err os.Error) {
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i1, e1 := Atoui64(s)
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if e1 != nil && e1.(*NumError).Error != os.ERANGE {
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return 0, e1
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}
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i = uint(i1)
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if uint64(i) != i1 {
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return ^uint(0), &NumError{s, os.ERANGE}
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}
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return i, nil
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}
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// Atoi is like Atoi64 but returns its result as an int.
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func Atoi(s string) (i int, err os.Error) {
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i1, e1 := Atoi64(s)
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if e1 != nil && e1.(*NumError).Error != os.ERANGE {
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return 0, e1
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}
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i = int(i1)
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if int64(i) != i1 {
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if i1 < 0 {
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return -1 << (IntSize - 1), &NumError{s, os.ERANGE}
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}
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return 1<<(IntSize-1) - 1, &NumError{s, os.ERANGE}
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}
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return i, nil
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}
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