mirror of
https://github.com/octoleo/restic.git
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153 lines
4.3 KiB
Go
153 lines
4.3 KiB
Go
// Copyright 2012 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 icmp provides basic functions for the manipulation of
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// messages used in the Internet Control Message Protocols,
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// ICMPv4 and ICMPv6.
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//
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// ICMPv4 and ICMPv6 are defined in RFC 792 and RFC 4443.
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// Multi-part message support for ICMP is defined in RFC 4884.
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// ICMP extensions for MPLS are defined in RFC 4950.
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// ICMP extensions for interface and next-hop identification are
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// defined in RFC 5837.
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package icmp // import "golang.org/x/net/icmp"
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import (
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"encoding/binary"
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"errors"
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"net"
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"syscall"
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"golang.org/x/net/internal/iana"
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"golang.org/x/net/ipv4"
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"golang.org/x/net/ipv6"
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)
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// BUG(mikio): This package is not implemented on NaCl and Plan 9.
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var (
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errMessageTooShort = errors.New("message too short")
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errHeaderTooShort = errors.New("header too short")
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errBufferTooShort = errors.New("buffer too short")
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errOpNoSupport = errors.New("operation not supported")
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errNoExtension = errors.New("no extension")
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errInvalidExtension = errors.New("invalid extension")
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)
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func checksum(b []byte) uint16 {
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csumcv := len(b) - 1 // checksum coverage
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s := uint32(0)
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for i := 0; i < csumcv; i += 2 {
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s += uint32(b[i+1])<<8 | uint32(b[i])
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}
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if csumcv&1 == 0 {
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s += uint32(b[csumcv])
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}
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s = s>>16 + s&0xffff
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s = s + s>>16
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return ^uint16(s)
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}
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// A Type represents an ICMP message type.
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type Type interface {
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Protocol() int
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}
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// A Message represents an ICMP message.
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type Message struct {
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Type Type // type, either ipv4.ICMPType or ipv6.ICMPType
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Code int // code
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Checksum int // checksum
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Body MessageBody // body
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}
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// Marshal returns the binary encoding of the ICMP message m.
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//
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// For an ICMPv4 message, the returned message always contains the
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// calculated checksum field.
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//
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// For an ICMPv6 message, the returned message contains the calculated
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// checksum field when psh is not nil, otherwise the kernel will
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// compute the checksum field during the message transmission.
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// When psh is not nil, it must be the pseudo header for IPv6.
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func (m *Message) Marshal(psh []byte) ([]byte, error) {
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var mtype int
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switch typ := m.Type.(type) {
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case ipv4.ICMPType:
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mtype = int(typ)
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case ipv6.ICMPType:
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mtype = int(typ)
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default:
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return nil, syscall.EINVAL
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}
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b := []byte{byte(mtype), byte(m.Code), 0, 0}
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if m.Type.Protocol() == iana.ProtocolIPv6ICMP && psh != nil {
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b = append(psh, b...)
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}
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if m.Body != nil && m.Body.Len(m.Type.Protocol()) != 0 {
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mb, err := m.Body.Marshal(m.Type.Protocol())
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if err != nil {
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return nil, err
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}
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b = append(b, mb...)
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}
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if m.Type.Protocol() == iana.ProtocolIPv6ICMP {
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if psh == nil { // cannot calculate checksum here
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return b, nil
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}
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off, l := 2*net.IPv6len, len(b)-len(psh)
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binary.BigEndian.PutUint32(b[off:off+4], uint32(l))
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}
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s := checksum(b)
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// Place checksum back in header; using ^= avoids the
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// assumption the checksum bytes are zero.
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b[len(psh)+2] ^= byte(s)
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b[len(psh)+3] ^= byte(s >> 8)
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return b[len(psh):], nil
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}
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var parseFns = map[Type]func(int, []byte) (MessageBody, error){
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ipv4.ICMPTypeDestinationUnreachable: parseDstUnreach,
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ipv4.ICMPTypeTimeExceeded: parseTimeExceeded,
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ipv4.ICMPTypeParameterProblem: parseParamProb,
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ipv4.ICMPTypeEcho: parseEcho,
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ipv4.ICMPTypeEchoReply: parseEcho,
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ipv6.ICMPTypeDestinationUnreachable: parseDstUnreach,
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ipv6.ICMPTypePacketTooBig: parsePacketTooBig,
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ipv6.ICMPTypeTimeExceeded: parseTimeExceeded,
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ipv6.ICMPTypeParameterProblem: parseParamProb,
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ipv6.ICMPTypeEchoRequest: parseEcho,
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ipv6.ICMPTypeEchoReply: parseEcho,
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}
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// ParseMessage parses b as an ICMP message.
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// Proto must be either the ICMPv4 or ICMPv6 protocol number.
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func ParseMessage(proto int, b []byte) (*Message, error) {
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if len(b) < 4 {
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return nil, errMessageTooShort
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}
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var err error
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m := &Message{Code: int(b[1]), Checksum: int(binary.BigEndian.Uint16(b[2:4]))}
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switch proto {
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case iana.ProtocolICMP:
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m.Type = ipv4.ICMPType(b[0])
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case iana.ProtocolIPv6ICMP:
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m.Type = ipv6.ICMPType(b[0])
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default:
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return nil, syscall.EINVAL
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}
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if fn, ok := parseFns[m.Type]; !ok {
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m.Body, err = parseDefaultMessageBody(proto, b[4:])
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} else {
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m.Body, err = fn(proto, b[4:])
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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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return m, nil
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}
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