mirror of
https://github.com/autc04/Retro68.git
synced 2024-11-28 05:51:04 +00:00
397 lines
8.4 KiB
Go
397 lines
8.4 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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// Simple file i/o and string manipulation, to avoid
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// depending on strconv and bufio and strings.
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package net
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import (
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"io"
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"os"
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"time"
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_ "unsafe" // For go:linkname
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)
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type file struct {
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file *os.File
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data []byte
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atEOF bool
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}
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func (f *file) close() { f.file.Close() }
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func (f *file) getLineFromData() (s string, ok bool) {
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data := f.data
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i := 0
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for i = 0; i < len(data); i++ {
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if data[i] == '\n' {
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s = string(data[0:i])
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ok = true
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// move data
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i++
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n := len(data) - i
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copy(data[0:], data[i:])
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f.data = data[0:n]
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return
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}
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}
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if f.atEOF && len(f.data) > 0 {
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// EOF, return all we have
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s = string(data)
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f.data = f.data[0:0]
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ok = true
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}
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return
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}
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func (f *file) readLine() (s string, ok bool) {
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if s, ok = f.getLineFromData(); ok {
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return
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}
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if len(f.data) < cap(f.data) {
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ln := len(f.data)
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n, err := io.ReadFull(f.file, f.data[ln:cap(f.data)])
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if n >= 0 {
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f.data = f.data[0 : ln+n]
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}
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if err == io.EOF || err == io.ErrUnexpectedEOF {
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f.atEOF = true
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}
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}
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s, ok = f.getLineFromData()
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return
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}
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func open(name string) (*file, error) {
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fd, err := os.Open(name)
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if err != nil {
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return nil, err
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}
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return &file{fd, make([]byte, 0, os.Getpagesize()), false}, nil
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}
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func stat(name string) (mtime time.Time, size int64, err error) {
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st, err := os.Stat(name)
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if err != nil {
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return time.Time{}, 0, err
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}
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return st.ModTime(), st.Size(), nil
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}
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// byteIndex is strings.IndexByte. It returns the index of the
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// first instance of c in s, or -1 if c is not present in s.
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// strings.IndexByte is implemented in runtime/asm_$GOARCH.s
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//go:linkname byteIndex strings.IndexByte
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//extern strings.IndexByte
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func byteIndex(s string, c byte) int
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// Count occurrences in s of any bytes in t.
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func countAnyByte(s string, t string) int {
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n := 0
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for i := 0; i < len(s); i++ {
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if byteIndex(t, s[i]) >= 0 {
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n++
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}
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}
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return n
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}
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// Split s at any bytes in t.
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func splitAtBytes(s string, t string) []string {
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a := make([]string, 1+countAnyByte(s, t))
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n := 0
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last := 0
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for i := 0; i < len(s); i++ {
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if byteIndex(t, s[i]) >= 0 {
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if last < i {
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a[n] = s[last:i]
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n++
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}
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last = i + 1
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}
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}
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if last < len(s) {
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a[n] = s[last:]
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n++
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}
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return a[0:n]
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}
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func getFields(s string) []string { return splitAtBytes(s, " \r\t\n") }
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// Bigger than we need, not too big to worry about overflow
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const big = 0xFFFFFF
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// Decimal to integer.
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// Returns number, characters consumed, success.
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func dtoi(s string) (n int, i int, ok bool) {
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n = 0
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for i = 0; i < len(s) && '0' <= s[i] && s[i] <= '9'; i++ {
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n = n*10 + int(s[i]-'0')
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if n >= big {
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return big, i, false
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}
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}
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if i == 0 {
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return 0, 0, false
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}
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return n, i, true
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}
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// Hexadecimal to integer.
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// Returns number, characters consumed, success.
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func xtoi(s string) (n int, i int, ok bool) {
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n = 0
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for i = 0; i < len(s); i++ {
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if '0' <= s[i] && s[i] <= '9' {
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n *= 16
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n += int(s[i] - '0')
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} else if 'a' <= s[i] && s[i] <= 'f' {
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n *= 16
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n += int(s[i]-'a') + 10
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} else if 'A' <= s[i] && s[i] <= 'F' {
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n *= 16
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n += int(s[i]-'A') + 10
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} else {
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break
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}
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if n >= big {
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return 0, i, false
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}
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}
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if i == 0 {
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return 0, i, false
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}
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return n, i, true
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}
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// xtoi2 converts the next two hex digits of s into a byte.
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// If s is longer than 2 bytes then the third byte must be e.
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// If the first two bytes of s are not hex digits or the third byte
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// does not match e, false is returned.
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func xtoi2(s string, e byte) (byte, bool) {
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if len(s) > 2 && s[2] != e {
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return 0, false
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}
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n, ei, ok := xtoi(s[:2])
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return byte(n), ok && ei == 2
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}
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// Convert integer to decimal string.
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func itoa(val int) string {
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if val < 0 {
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return "-" + uitoa(uint(-val))
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}
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return uitoa(uint(val))
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}
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// Convert unsigned integer to decimal string.
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func uitoa(val uint) string {
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if val == 0 { // avoid string allocation
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return "0"
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}
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var buf [20]byte // big enough for 64bit value base 10
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i := len(buf) - 1
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for val >= 10 {
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q := val / 10
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buf[i] = byte('0' + val - q*10)
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i--
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val = q
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}
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// val < 10
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buf[i] = byte('0' + val)
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return string(buf[i:])
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}
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// Convert i to a hexadecimal string. Leading zeros are not printed.
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func appendHex(dst []byte, i uint32) []byte {
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if i == 0 {
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return append(dst, '0')
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}
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for j := 7; j >= 0; j-- {
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v := i >> uint(j*4)
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if v > 0 {
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dst = append(dst, hexDigit[v&0xf])
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}
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}
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return dst
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}
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// Number of occurrences of b in s.
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func count(s string, b byte) int {
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n := 0
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for i := 0; i < len(s); i++ {
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if s[i] == b {
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n++
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}
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}
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return n
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}
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// Index of rightmost occurrence of b in s.
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func last(s string, b byte) int {
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i := len(s)
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for i--; i >= 0; i-- {
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if s[i] == b {
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break
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}
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}
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return i
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}
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// lowerASCIIBytes makes x ASCII lowercase in-place.
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func lowerASCIIBytes(x []byte) {
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for i, b := range x {
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if 'A' <= b && b <= 'Z' {
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x[i] += 'a' - 'A'
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}
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}
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}
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// lowerASCII returns the ASCII lowercase version of b.
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func lowerASCII(b byte) byte {
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if 'A' <= b && b <= 'Z' {
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return b + ('a' - 'A')
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}
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return b
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}
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// trimSpace returns x without any leading or trailing ASCII whitespace.
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func trimSpace(x []byte) []byte {
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for len(x) > 0 && isSpace(x[0]) {
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x = x[1:]
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}
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for len(x) > 0 && isSpace(x[len(x)-1]) {
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x = x[:len(x)-1]
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}
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return x
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}
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// isSpace reports whether b is an ASCII space character.
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func isSpace(b byte) bool {
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return b == ' ' || b == '\t' || b == '\n' || b == '\r'
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}
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// removeComment returns line, removing any '#' byte and any following
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// bytes.
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func removeComment(line []byte) []byte {
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if i := bytesIndexByte(line, '#'); i != -1 {
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return line[:i]
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}
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return line
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}
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// foreachLine runs fn on each line of x.
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// Each line (except for possibly the last) ends in '\n'.
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// It returns the first non-nil error returned by fn.
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func foreachLine(x []byte, fn func(line []byte) error) error {
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for len(x) > 0 {
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nl := bytesIndexByte(x, '\n')
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if nl == -1 {
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return fn(x)
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}
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line := x[:nl+1]
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x = x[nl+1:]
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if err := fn(line); err != nil {
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return err
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}
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}
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return nil
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}
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// foreachField runs fn on each non-empty run of non-space bytes in x.
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// It returns the first non-nil error returned by fn.
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func foreachField(x []byte, fn func(field []byte) error) error {
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x = trimSpace(x)
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for len(x) > 0 {
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sp := bytesIndexByte(x, ' ')
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if sp == -1 {
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return fn(x)
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}
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if field := trimSpace(x[:sp]); len(field) > 0 {
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if err := fn(field); err != nil {
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return err
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}
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}
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x = trimSpace(x[sp+1:])
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}
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return nil
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}
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// bytesIndexByte is bytes.IndexByte. It returns the index of the
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// first instance of c in s, or -1 if c is not present in s.
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// bytes.IndexByte is implemented in runtime/asm_$GOARCH.s
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//go:linkname bytesIndexByte bytes.IndexByte
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//extern bytes.IndexByte
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func bytesIndexByte(s []byte, c byte) int
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// stringsHasSuffix is strings.HasSuffix. It reports whether s ends in
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// suffix.
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func stringsHasSuffix(s, suffix string) bool {
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return len(s) >= len(suffix) && s[len(s)-len(suffix):] == suffix
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}
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// stringsHasSuffixFold reports whether s ends in suffix,
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// ASCII-case-insensitively.
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func stringsHasSuffixFold(s, suffix string) bool {
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return len(s) >= len(suffix) && stringsEqualFold(s[len(s)-len(suffix):], suffix)
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}
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// stringsHasPrefix is strings.HasPrefix. It reports whether s begins with prefix.
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func stringsHasPrefix(s, prefix string) bool {
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return len(s) >= len(prefix) && s[:len(prefix)] == prefix
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}
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// stringsEqualFold is strings.EqualFold, ASCII only. It reports whether s and t
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// are equal, ASCII-case-insensitively.
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func stringsEqualFold(s, t string) bool {
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if len(s) != len(t) {
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return false
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}
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for i := 0; i < len(s); i++ {
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if lowerASCII(s[i]) != lowerASCII(t[i]) {
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return false
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}
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}
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return true
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}
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func readFull(r io.Reader) (all []byte, err error) {
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buf := make([]byte, 1024)
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for {
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n, err := r.Read(buf)
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all = append(all, buf[:n]...)
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if err == io.EOF {
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return all, nil
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}
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if err != nil {
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return nil, err
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}
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}
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}
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// goDebugString returns the value of the named GODEBUG key.
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// GODEBUG is of the form "key=val,key2=val2"
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func goDebugString(key string) string {
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s := os.Getenv("GODEBUG")
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for i := 0; i < len(s)-len(key)-1; i++ {
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if i > 0 && s[i-1] != ',' {
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continue
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}
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afterKey := s[i+len(key):]
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if afterKey[0] != '=' || s[i:i+len(key)] != key {
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continue
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}
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val := afterKey[1:]
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for i, b := range val {
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if b == ',' {
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return val[:i]
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}
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}
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return val
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}
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return ""
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}
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