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https://github.com/status-im/consul.git
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9dc7194321
See https://github.com/hashicorp/consul/issues/3977 While trying to improve furthermore #3948 (This pull request is still valid since we are not using Compression to compute the result anyway). I saw a strange behaviour of dns library. Basically, msg.Len() and len(msg.Pack()) disagree on Message len. Thus, calculation of DNS response is false consul relies on msg.Len() instead of the result of Pack() This is linked to miekg/dns#453 and a fix has been provided with miekg/dns#454 Would it be possible to upgrade miekg/dns to a more recent function ? Consul might for instance upgrade to a post 1.0 release such as https://github.com/miekg/dns/releases/tag/v1.0.4
188 lines
4.9 KiB
Go
188 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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"net"
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"syscall"
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"time"
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"golang.org/x/net/internal/socket"
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)
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// BUG(mikio): On Windows, the JoinSourceSpecificGroup,
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// LeaveSourceSpecificGroup, ExcludeSourceSpecificGroup and
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// IncludeSourceSpecificGroup methods of PacketConn and RawConn are
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// not implemented.
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// A Conn represents a network endpoint that uses the IPv4 transport.
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// It is used to control basic IP-level socket options such as TOS and
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// TTL.
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type Conn struct {
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genericOpt
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}
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type genericOpt struct {
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*socket.Conn
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}
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func (c *genericOpt) ok() bool { return c != nil && c.Conn != nil }
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// NewConn returns a new Conn.
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func NewConn(c net.Conn) *Conn {
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cc, _ := socket.NewConn(c)
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return &Conn{
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genericOpt: genericOpt{Conn: cc},
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}
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}
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// A PacketConn represents a packet network endpoint that uses the
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// IPv4 transport. It is used to control several IP-level socket
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// options including multicasting. It also provides datagram based
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// network I/O methods specific to the IPv4 and higher layer protocols
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// such as UDP.
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type PacketConn struct {
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genericOpt
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dgramOpt
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payloadHandler
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}
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type dgramOpt struct {
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*socket.Conn
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}
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func (c *dgramOpt) ok() bool { return c != nil && c.Conn != nil }
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// SetControlMessage sets the per packet IP-level socket options.
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func (c *PacketConn) SetControlMessage(cf ControlFlags, on bool) error {
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if !c.payloadHandler.ok() {
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return syscall.EINVAL
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}
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return setControlMessage(c.dgramOpt.Conn, &c.payloadHandler.rawOpt, cf, on)
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}
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// SetDeadline sets the read and write deadlines associated with the
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// endpoint.
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func (c *PacketConn) SetDeadline(t time.Time) error {
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if !c.payloadHandler.ok() {
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return syscall.EINVAL
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}
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return c.payloadHandler.PacketConn.SetDeadline(t)
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}
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// SetReadDeadline sets the read deadline associated with the
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// endpoint.
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func (c *PacketConn) SetReadDeadline(t time.Time) error {
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if !c.payloadHandler.ok() {
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return syscall.EINVAL
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}
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return c.payloadHandler.PacketConn.SetReadDeadline(t)
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}
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// SetWriteDeadline sets the write deadline associated with the
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// endpoint.
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func (c *PacketConn) SetWriteDeadline(t time.Time) error {
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if !c.payloadHandler.ok() {
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return syscall.EINVAL
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}
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return c.payloadHandler.PacketConn.SetWriteDeadline(t)
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}
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// Close closes the endpoint.
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func (c *PacketConn) Close() error {
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if !c.payloadHandler.ok() {
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return syscall.EINVAL
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}
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return c.payloadHandler.PacketConn.Close()
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}
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// NewPacketConn returns a new PacketConn using c as its underlying
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// transport.
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func NewPacketConn(c net.PacketConn) *PacketConn {
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cc, _ := socket.NewConn(c.(net.Conn))
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p := &PacketConn{
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genericOpt: genericOpt{Conn: cc},
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dgramOpt: dgramOpt{Conn: cc},
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payloadHandler: payloadHandler{PacketConn: c, Conn: cc},
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}
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return p
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}
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// A RawConn represents a packet network endpoint that uses the IPv4
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// transport. It is used to control several IP-level socket options
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// including IPv4 header manipulation. It also provides datagram
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// based network I/O methods specific to the IPv4 and higher layer
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// protocols that handle IPv4 datagram directly such as OSPF, GRE.
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type RawConn struct {
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genericOpt
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dgramOpt
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packetHandler
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}
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// SetControlMessage sets the per packet IP-level socket options.
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func (c *RawConn) SetControlMessage(cf ControlFlags, on bool) error {
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if !c.packetHandler.ok() {
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return syscall.EINVAL
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}
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return setControlMessage(c.dgramOpt.Conn, &c.packetHandler.rawOpt, cf, on)
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}
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// SetDeadline sets the read and write deadlines associated with the
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// endpoint.
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func (c *RawConn) SetDeadline(t time.Time) error {
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if !c.packetHandler.ok() {
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return syscall.EINVAL
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}
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return c.packetHandler.IPConn.SetDeadline(t)
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}
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// SetReadDeadline sets the read deadline associated with the
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// endpoint.
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func (c *RawConn) SetReadDeadline(t time.Time) error {
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if !c.packetHandler.ok() {
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return syscall.EINVAL
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}
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return c.packetHandler.IPConn.SetReadDeadline(t)
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}
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// SetWriteDeadline sets the write deadline associated with the
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// endpoint.
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func (c *RawConn) SetWriteDeadline(t time.Time) error {
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if !c.packetHandler.ok() {
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return syscall.EINVAL
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}
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return c.packetHandler.IPConn.SetWriteDeadline(t)
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}
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// Close closes the endpoint.
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func (c *RawConn) Close() error {
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if !c.packetHandler.ok() {
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return syscall.EINVAL
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}
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return c.packetHandler.IPConn.Close()
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}
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// NewRawConn returns a new RawConn using c as its underlying
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// transport.
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func NewRawConn(c net.PacketConn) (*RawConn, error) {
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cc, err := socket.NewConn(c.(net.Conn))
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if err != nil {
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return nil, err
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}
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r := &RawConn{
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genericOpt: genericOpt{Conn: cc},
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dgramOpt: dgramOpt{Conn: cc},
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packetHandler: packetHandler{IPConn: c.(*net.IPConn), Conn: cc},
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}
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so, ok := sockOpts[ssoHeaderPrepend]
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if !ok {
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return nil, errOpNoSupport
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}
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if err := so.SetInt(r.dgramOpt.Conn, boolint(true)); err != nil {
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return nil, err
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}
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return r, nil
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}
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