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util.go
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util.go
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package main
import (
"bytes"
"crypto/md5"
"encoding/binary"
"errors"
"fmt"
"io"
"net"
"os"
"path"
"runtime"
"strconv"
"strings"
"github.com/cyfdecyf/bufio"
)
const isWindows = runtime.GOOS == "windows"
type notification chan byte
func newNotification() notification {
// Notification channel has size 1, so sending a single one will not block
return make(chan byte, 1)
}
func (n notification) notify() {
n <- 1
}
func (n notification) hasNotified() bool {
select {
case <-n:
return true
default:
return false
}
}
func ASCIIToUpperInplace(b []byte) {
for i := 0; i < len(b); i++ {
if 97 <= b[i] && b[i] <= 122 {
b[i] -= 32
}
}
}
func ASCIIToUpper(b []byte) []byte {
buf := make([]byte, len(b))
for i := 0; i < len(b); i++ {
if 97 <= b[i] && b[i] <= 122 {
buf[i] = b[i] - 32
} else {
buf[i] = b[i]
}
}
return buf
}
func ASCIIToLowerInplace(b []byte) {
for i := 0; i < len(b); i++ {
if 65 <= b[i] && b[i] <= 90 {
b[i] += 32
}
}
}
func ASCIIToLower(b []byte) []byte {
buf := make([]byte, len(b))
for i := 0; i < len(b); i++ {
if 65 <= b[i] && b[i] <= 90 {
buf[i] = b[i] + 32
} else {
buf[i] = b[i]
}
}
return buf
}
func IsDigit(b byte) bool {
return '0' <= b && b <= '9'
}
var spaceTbl = [256]bool{
'\t': true, // ht
'\n': true, // lf
'\r': true, // cr
' ': true, // sp
}
func IsSpace(b byte) bool {
return spaceTbl[b]
}
func TrimSpace(s []byte) []byte {
st := 0
end := len(s) - 1
for ; st < len(s) && IsSpace(s[st]); st++ {
}
if st == len(s) {
return s[:0]
}
for ; end >= 0 && IsSpace(s[end]); end-- {
}
return s[st : end+1]
}
func TrimTrailingSpace(s []byte) []byte {
end := len(s) - 1
for ; end >= 0 && IsSpace(s[end]); end-- {
}
return s[:end+1]
}
// FieldsN is simliar with bytes.Fields, but only consider space and '\t' as
// space, and will include all content in the final slice with ending white
// space characters trimmed. bytes.Split can't split on both space and '\t',
// and considers two separator as an empty item. bytes.FieldsFunc can't
// specify how much fields we need, which is required for parsing response
// status line. Returns nil if n < 0.
func FieldsN(s []byte, n int) [][]byte {
if n <= 0 {
return nil
}
res := make([][]byte, n)
na := 0
fieldStart := -1
var i int
for ; i < len(s); i++ {
issep := s[i] == ' ' || s[i] == '\t'
if fieldStart < 0 && !issep {
fieldStart = i
}
if fieldStart >= 0 && issep {
if na == n-1 {
break
}
res[na] = s[fieldStart:i]
na++
fieldStart = -1
}
}
if fieldStart >= 0 { // must have na <= n-1 here
res[na] = TrimSpace(s[fieldStart:])
if len(res[na]) != 0 { // do not consider ending space as a field
na++
}
}
return res[:na]
}
var digitTbl = [256]int8{
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
0, 1, 2, 3, 4, 5, 6, 7, 8, 9, -1, -1, -1, -1, -1, -1,
-1, 10, 11, 12, 13, 14, 15, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, 10, 11, 12, 13, 14, 15, -1, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
}
// ParseIntFromBytes parse hexidecimal number from given bytes.
// No prefix (e.g. 0xdeadbeef) should given.
// base can only be 10 or 16.
func ParseIntFromBytes(b []byte, base int) (n int64, err error) {
// Currently, we have to convert []byte to string to use strconv
// Refer to: http://code.google.com/p/go/issues/detail?id=2632
// That's why I created this function.
if base != 10 && base != 16 {
err = errors.New(fmt.Sprintf("invalid base: %d", base))
return
}
if len(b) == 0 {
err = errors.New("parse int from empty bytes")
return
}
neg := false
if b[0] == '+' {
b = b[1:]
} else if b[0] == '-' {
b = b[1:]
neg = true
}
for _, d := range b {
v := digitTbl[d]
if v == -1 {
n = 0
err = errors.New(fmt.Sprintf("invalid number: %s", b))
return
}
if int(v) >= base {
n = 0
err = errors.New(fmt.Sprintf("invalid base %d number: %s", base, b))
return
}
n *= int64(base)
n += int64(v)
}
if neg {
n = -n
}
return
}
func isFileExists(path string) error {
stat, err := os.Stat(path)
if err != nil {
return err
}
if !stat.Mode().IsRegular() {
return fmt.Errorf("%s is not regular file", path)
}
return nil
}
func isDirExists(path string) error {
stat, err := os.Stat(path)
if err != nil {
return err
}
if !stat.IsDir() {
return fmt.Errorf("%s is not directory", path)
}
return nil
}
func getUserHomeDir() string {
home := os.Getenv("HOME")
if home == "" {
fmt.Println("HOME environment variable is empty")
}
return home
}
func expandTilde(pth string) string {
if len(pth) > 0 && pth[0] == '~' {
home := getUserHomeDir()
return path.Join(home, pth[1:])
}
return pth
}
// copyN copys N bytes from src to dst, reading at most rdSize for each read.
// rdSize should <= buffer size of the buffered reader.
// Returns any encountered error.
func copyN(dst io.Writer, src *bufio.Reader, n, rdSize int) (err error) {
// Most of the copy is copied from io.Copy
for n > 0 {
var b []byte
var er error
if n > rdSize {
b, er = src.ReadN(rdSize)
} else {
b, er = src.ReadN(n)
}
nr := len(b)
n -= nr
if nr > 0 {
nw, ew := dst.Write(b)
if ew != nil {
err = ew
break
}
if nr != nw {
err = io.ErrShortWrite
break
}
}
if er == io.EOF {
break
}
if er != nil {
err = er
break
}
}
return err
}
func md5sum(ss ...string) string {
h := md5.New()
for _, s := range ss {
io.WriteString(h, s)
}
return fmt.Sprintf("%x", h.Sum(nil))
}
// hostIsIP determines whether a host address is an IP address and whether
// it is private. Currenly only handles IPv4 addresses.
func hostIsIP(host string) (isIP, isPrivate bool) {
part := strings.Split(host, ".")
if len(part) != 4 {
return false, false
}
for _, i := range part {
if len(i) == 0 || len(i) > 3 {
return false, false
}
n, err := strconv.Atoi(i)
if err != nil || n < 0 || n > 255 {
return false, false
}
}
if part[0] == "127" || part[0] == "10" || (part[0] == "192" && part[1] == "168") {
return true, true
}
if part[0] == "172" {
n, _ := strconv.Atoi(part[1])
if 16 <= n && n <= 31 {
return true, true
}
}
return true, false
}
// NetNbitIPv4Mask returns a IPMask with highest n bit set.
func NewNbitIPv4Mask(n int) net.IPMask {
if n > 32 {
panic("NewNbitIPv4Mask: bit number > 32")
}
mask := []byte{0, 0, 0, 0}
for id := 0; id < 4; id++ {
if n >= 8 {
mask[id] = 0xff
} else {
mask[id] = ^byte(1<<(uint8(8-n)) - 1)
break
}
n -= 8
}
return net.IPMask(mask)
}
func trimLastDot(s string) string {
if len(s) > 0 && s[len(s)-1] == '.' {
return s[:len(s)-1]
}
return s
}
// host2Domain returns the domain of a host. It will recognize domains like
// google.com.hk. Returns empty string for simple host and internal IP.
func host2Domain(host string) (domain string) {
isIP, isPrivate := hostIsIP(host)
if isPrivate {
return ""
}
if isIP {
return host
}
host = trimLastDot(host)
lastDot := strings.LastIndex(host, ".")
if lastDot == -1 {
return ""
}
// Find the 2nd last dot
dot2ndLast := strings.LastIndex(host[:lastDot], ".")
if dot2ndLast == -1 {
return host
}
return host[dot2ndLast+1:]
}
// IgnoreUTF8BOM consumes UTF-8 encoded BOM character if present in the file.
func IgnoreUTF8BOM(f *os.File) error {
bom := make([]byte, 3)
n, err := f.Read(bom)
if err != nil {
return err
}
if n != 3 {
return nil
}
if bytes.Equal(bom, []byte{0xEF, 0xBB, 0xBF}) {
debug.Println("UTF-8 BOM found")
return nil
}
// No BOM found, seek back
_, err = f.Seek(-3, 1)
return err
}
// Return all host IP addresses.
func hostAddr() (addr []string) {
allAddr, err := net.InterfaceAddrs()
if err != nil {
Fatal("error getting host address", err)
}
for _, ad := range allAddr {
ads := ad.String()
id := strings.Index(ads, "/")
if id == -1 {
// On windows, no network mask.
id = len(ads)
}
addr = append(addr, ads[:id])
}
return addr
}
// ip to long int
func ip2long(ipstr string) (uint32, error) {
ip := net.ParseIP(ipstr)
if ip == nil {
return 0, errors.New("Invalid IP")
}
ip = ip.To4()
if ip == nil {
return 0, errors.New("Not IPv4")
}
return binary.BigEndian.Uint32(ip), nil
}
// search between [start, end]
func searchRange(start, end int, f func(int) bool) int {
i, j := start, end+1
for i < j {
h := i + (j-i)/2 // avoid overflow when computing h
// i ≤ h < j
if !f(h) {
i = h + 1 // preserves f(i-1) == false
} else {
j = h // preserves f(j) == true
}
}
return i
}