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159 lines
4.9 KiB
Go
159 lines
4.9 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 ipv4
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import (
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"errors"
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"fmt"
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"net"
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"runtime"
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"syscall"
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"unsafe"
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)
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var (
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errMissingAddress = errors.New("missing address")
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errMissingHeader = errors.New("missing header")
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errHeaderTooShort = errors.New("header too short")
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errBufferTooShort = errors.New("buffer too short")
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errInvalidConnType = errors.New("invalid conn type")
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)
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// References:
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//
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// RFC 791 Internet Protocol
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// http://tools.ietf.org/html/rfc791
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// RFC 1112 Host Extensions for IP Multicasting
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// http://tools.ietf.org/html/rfc1112
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// RFC 1122 Requirements for Internet Hosts
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// http://tools.ietf.org/html/rfc1122
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const (
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Version = 4 // protocol version
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HeaderLen = 20 // header length without extension headers
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maxHeaderLen = 60 // sensible default, revisit if later RFCs define new usage of version and header length fields
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)
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const (
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posTOS = 1 // type-of-service
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posTotalLen = 2 // packet total length
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posID = 4 // identification
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posFragOff = 6 // fragment offset
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posTTL = 8 // time-to-live
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posProtocol = 9 // next protocol
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posChecksum = 10 // checksum
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posSrc = 12 // source address
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posDst = 16 // destination address
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)
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type HeaderFlags int
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const (
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MoreFragments HeaderFlags = 1 << iota // more fragments flag
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DontFragment // don't fragment flag
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)
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// A Header represents an IPv4 header.
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type Header struct {
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Version int // protocol version
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Len int // header length
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TOS int // type-of-service
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TotalLen int // packet total length
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ID int // identification
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Flags HeaderFlags // flags
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FragOff int // fragment offset
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TTL int // time-to-live
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Protocol int // next protocol
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Checksum int // checksum
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Src net.IP // source address
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Dst net.IP // destination address
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Options []byte // options, extension headers
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}
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func (h *Header) String() string {
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if h == nil {
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return "<nil>"
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}
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return fmt.Sprintf("ver: %v, hdrlen: %v, tos: %#x, totallen: %v, id: %#x, flags: %#x, fragoff: %#x, ttl: %v, proto: %v, cksum: %#x, src: %v, dst: %v", h.Version, h.Len, h.TOS, h.TotalLen, h.ID, h.Flags, h.FragOff, h.TTL, h.Protocol, h.Checksum, h.Src, h.Dst)
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}
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// Please refer to the online manual; IP(4) on Darwin, FreeBSD and
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// OpenBSD. IP(7) on Linux.
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const supportsNewIPInput = runtime.GOOS == "linux" || runtime.GOOS == "openbsd"
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// Marshal returns the binary encoding of the IPv4 header h.
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func (h *Header) Marshal() ([]byte, error) {
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if h == nil {
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return nil, syscall.EINVAL
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}
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if h.Len < HeaderLen {
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return nil, errHeaderTooShort
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}
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hdrlen := HeaderLen + len(h.Options)
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b := make([]byte, hdrlen)
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b[0] = byte(Version<<4 | (hdrlen >> 2 & 0x0f))
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b[posTOS] = byte(h.TOS)
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flagsAndFragOff := (h.FragOff & 0x1fff) | int(h.Flags<<13)
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if supportsNewIPInput {
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b[posTotalLen], b[posTotalLen+1] = byte(h.TotalLen>>8), byte(h.TotalLen)
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b[posFragOff], b[posFragOff+1] = byte(flagsAndFragOff>>8), byte(flagsAndFragOff)
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} else {
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*(*uint16)(unsafe.Pointer(&b[posTotalLen : posTotalLen+1][0])) = uint16(h.TotalLen)
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*(*uint16)(unsafe.Pointer(&b[posFragOff : posFragOff+1][0])) = uint16(flagsAndFragOff)
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}
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b[posID], b[posID+1] = byte(h.ID>>8), byte(h.ID)
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b[posTTL] = byte(h.TTL)
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b[posProtocol] = byte(h.Protocol)
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b[posChecksum], b[posChecksum+1] = byte(h.Checksum>>8), byte(h.Checksum)
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if ip := h.Src.To4(); ip != nil {
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copy(b[posSrc:posSrc+net.IPv4len], ip[:net.IPv4len])
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}
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if ip := h.Dst.To4(); ip != nil {
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copy(b[posDst:posDst+net.IPv4len], ip[:net.IPv4len])
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} else {
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return nil, errMissingAddress
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}
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if len(h.Options) > 0 {
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copy(b[HeaderLen:], h.Options)
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}
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return b, nil
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}
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// ParseHeader parses b as an IPv4 header.
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func ParseHeader(b []byte) (*Header, error) {
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if len(b) < HeaderLen {
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return nil, errHeaderTooShort
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}
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hdrlen := int(b[0]&0x0f) << 2
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if hdrlen > len(b) {
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return nil, errBufferTooShort
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}
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h := &Header{}
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h.Version = int(b[0] >> 4)
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h.Len = hdrlen
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h.TOS = int(b[posTOS])
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if supportsNewIPInput {
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h.TotalLen = int(b[posTotalLen])<<8 | int(b[posTotalLen+1])
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h.FragOff = int(b[posFragOff])<<8 | int(b[posFragOff+1])
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} else {
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h.TotalLen = int(*(*uint16)(unsafe.Pointer(&b[posTotalLen : posTotalLen+1][0])))
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h.TotalLen += hdrlen
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h.FragOff = int(*(*uint16)(unsafe.Pointer(&b[posFragOff : posFragOff+1][0])))
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}
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h.Flags = HeaderFlags(h.FragOff&0xe000) >> 13
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h.FragOff = h.FragOff & 0x1fff
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h.ID = int(b[posID])<<8 | int(b[posID+1])
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h.TTL = int(b[posTTL])
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h.Protocol = int(b[posProtocol])
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h.Checksum = int(b[posChecksum])<<8 | int(b[posChecksum+1])
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h.Src = net.IPv4(b[posSrc], b[posSrc+1], b[posSrc+2], b[posSrc+3])
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h.Dst = net.IPv4(b[posDst], b[posDst+1], b[posDst+2], b[posDst+3])
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if hdrlen-HeaderLen > 0 {
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h.Options = make([]byte, hdrlen-HeaderLen)
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copy(h.Options, b[HeaderLen:])
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}
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return h, nil
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}
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