mirror of
https://github.com/go-gitea/gitea
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276 lines
6.8 KiB
Go
276 lines
6.8 KiB
Go
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// Copyright 2018 The Prometheus Authors
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package procfs
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import (
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"bufio"
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"errors"
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"fmt"
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"io"
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"os"
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"strconv"
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"strings"
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)
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// For the proc file format details,
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// see https://elixir.bootlin.com/linux/v4.17/source/net/unix/af_unix.c#L2815
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// and https://elixir.bootlin.com/linux/latest/source/include/uapi/linux/net.h#L48.
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const (
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netUnixKernelPtrIdx = iota
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netUnixRefCountIdx
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_
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netUnixFlagsIdx
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netUnixTypeIdx
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netUnixStateIdx
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netUnixInodeIdx
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// Inode and Path are optional.
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netUnixStaticFieldsCnt = 6
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)
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const (
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netUnixTypeStream = 1
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netUnixTypeDgram = 2
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netUnixTypeSeqpacket = 5
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netUnixFlagListen = 1 << 16
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netUnixStateUnconnected = 1
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netUnixStateConnecting = 2
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netUnixStateConnected = 3
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netUnixStateDisconnected = 4
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)
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var errInvalidKernelPtrFmt = errors.New("Invalid Num(the kernel table slot number) format")
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// NetUnixType is the type of the type field.
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type NetUnixType uint64
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// NetUnixFlags is the type of the flags field.
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type NetUnixFlags uint64
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// NetUnixState is the type of the state field.
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type NetUnixState uint64
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// NetUnixLine represents a line of /proc/net/unix.
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type NetUnixLine struct {
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KernelPtr string
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RefCount uint64
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Protocol uint64
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Flags NetUnixFlags
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Type NetUnixType
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State NetUnixState
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Inode uint64
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Path string
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}
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// NetUnix holds the data read from /proc/net/unix.
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type NetUnix struct {
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Rows []*NetUnixLine
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}
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// NewNetUnix returns data read from /proc/net/unix.
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func NewNetUnix() (*NetUnix, error) {
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fs, err := NewFS(DefaultMountPoint)
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if err != nil {
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return nil, err
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}
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return fs.NewNetUnix()
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}
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// NewNetUnix returns data read from /proc/net/unix.
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func (fs FS) NewNetUnix() (*NetUnix, error) {
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return NewNetUnixByPath(fs.proc.Path("net/unix"))
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}
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// NewNetUnixByPath returns data read from /proc/net/unix by file path.
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// It might returns an error with partial parsed data, if an error occur after some data parsed.
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func NewNetUnixByPath(path string) (*NetUnix, error) {
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f, err := os.Open(path)
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if err != nil {
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return nil, err
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}
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defer f.Close()
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return NewNetUnixByReader(f)
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}
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// NewNetUnixByReader returns data read from /proc/net/unix by a reader.
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// It might returns an error with partial parsed data, if an error occur after some data parsed.
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func NewNetUnixByReader(reader io.Reader) (*NetUnix, error) {
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nu := &NetUnix{
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Rows: make([]*NetUnixLine, 0, 32),
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}
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scanner := bufio.NewScanner(reader)
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// Omit the header line.
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scanner.Scan()
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header := scanner.Text()
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// From the man page of proc(5), it does not contain an Inode field,
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// but in actually it exists.
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// This code works for both cases.
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hasInode := strings.Contains(header, "Inode")
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minFieldsCnt := netUnixStaticFieldsCnt
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if hasInode {
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minFieldsCnt++
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}
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for scanner.Scan() {
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line := scanner.Text()
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item, err := nu.parseLine(line, hasInode, minFieldsCnt)
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if err != nil {
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return nu, err
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}
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nu.Rows = append(nu.Rows, item)
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}
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return nu, scanner.Err()
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}
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func (u *NetUnix) parseLine(line string, hasInode bool, minFieldsCnt int) (*NetUnixLine, error) {
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fields := strings.Fields(line)
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fieldsLen := len(fields)
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if fieldsLen < minFieldsCnt {
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return nil, fmt.Errorf(
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"Parse Unix domain failed: expect at least %d fields but got %d",
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minFieldsCnt, fieldsLen)
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}
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kernelPtr, err := u.parseKernelPtr(fields[netUnixKernelPtrIdx])
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain num(%s) failed: %s", fields[netUnixKernelPtrIdx], err)
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}
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users, err := u.parseUsers(fields[netUnixRefCountIdx])
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain ref count(%s) failed: %s", fields[netUnixRefCountIdx], err)
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}
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flags, err := u.parseFlags(fields[netUnixFlagsIdx])
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain flags(%s) failed: %s", fields[netUnixFlagsIdx], err)
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}
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typ, err := u.parseType(fields[netUnixTypeIdx])
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain type(%s) failed: %s", fields[netUnixTypeIdx], err)
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}
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state, err := u.parseState(fields[netUnixStateIdx])
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain state(%s) failed: %s", fields[netUnixStateIdx], err)
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}
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var inode uint64
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if hasInode {
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inodeStr := fields[netUnixInodeIdx]
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inode, err = u.parseInode(inodeStr)
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if err != nil {
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return nil, fmt.Errorf("Parse Unix domain inode(%s) failed: %s", inodeStr, err)
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}
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}
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nuLine := &NetUnixLine{
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KernelPtr: kernelPtr,
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RefCount: users,
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Type: typ,
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Flags: flags,
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State: state,
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Inode: inode,
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}
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// Path field is optional.
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if fieldsLen > minFieldsCnt {
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pathIdx := netUnixInodeIdx + 1
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if !hasInode {
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pathIdx--
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}
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nuLine.Path = fields[pathIdx]
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}
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return nuLine, nil
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}
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func (u NetUnix) parseKernelPtr(str string) (string, error) {
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if !strings.HasSuffix(str, ":") {
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return "", errInvalidKernelPtrFmt
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}
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return str[:len(str)-1], nil
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}
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func (u NetUnix) parseUsers(hexStr string) (uint64, error) {
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return strconv.ParseUint(hexStr, 16, 32)
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}
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func (u NetUnix) parseProtocol(hexStr string) (uint64, error) {
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return strconv.ParseUint(hexStr, 16, 32)
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}
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func (u NetUnix) parseType(hexStr string) (NetUnixType, error) {
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typ, err := strconv.ParseUint(hexStr, 16, 16)
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if err != nil {
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return 0, err
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}
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return NetUnixType(typ), nil
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}
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func (u NetUnix) parseFlags(hexStr string) (NetUnixFlags, error) {
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flags, err := strconv.ParseUint(hexStr, 16, 32)
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if err != nil {
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return 0, err
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}
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return NetUnixFlags(flags), nil
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}
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func (u NetUnix) parseState(hexStr string) (NetUnixState, error) {
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st, err := strconv.ParseInt(hexStr, 16, 8)
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if err != nil {
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return 0, err
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}
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return NetUnixState(st), nil
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}
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func (u NetUnix) parseInode(inodeStr string) (uint64, error) {
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return strconv.ParseUint(inodeStr, 10, 64)
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}
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func (t NetUnixType) String() string {
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switch t {
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case netUnixTypeStream:
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return "stream"
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case netUnixTypeDgram:
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return "dgram"
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case netUnixTypeSeqpacket:
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return "seqpacket"
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}
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return "unknown"
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}
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func (f NetUnixFlags) String() string {
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switch f {
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case netUnixFlagListen:
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return "listen"
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default:
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return "default"
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}
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}
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func (s NetUnixState) String() string {
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switch s {
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case netUnixStateUnconnected:
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return "unconnected"
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case netUnixStateConnecting:
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return "connecting"
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case netUnixStateConnected:
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return "connected"
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case netUnixStateDisconnected:
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return "disconnected"
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}
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return "unknown"
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}
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