mirror of
https://github.com/soypat/lneto.git
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194 lines
5.4 KiB
Go
194 lines
5.4 KiB
Go
package tcp
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import (
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"errors"
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"fmt"
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"testing"
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)
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// Here we define internal testing helpers that may be used in any *_test.go file
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// but are not exported.
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// Exchange represents a single exchange of segments.
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type Exchange struct {
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Outgoing *Segment
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Incoming *Segment
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WantPending *Segment // Expected pending segment. If nil not checked.
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WantState State // Expected end state.
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WantPeerState State // Expected end state of peer. Not necessary when calling HelperExchange but can aid with logging information.
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}
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func (tcb *ControlBlock) HelperExchange(t *testing.T, exchange []Exchange) {
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t.Helper()
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var i int
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var ex Exchange
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defer func() {
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if t.Failed() {
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t.Errorf("exchange failed:\nwant: %s\ngot: %s",
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ex.RFC9293String(ex.WantState, ex.WantPeerState),
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ex.RFC9293String(tcb._state, ex.WantPeerState),
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)
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}
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}()
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const pfx = "exchange"
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t.Log(tcb._state, "Exchange start")
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for i, ex = range exchange {
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if ex.Outgoing != nil && ex.Incoming != nil {
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t.Fatalf(pfx+"[%d] cannot send and receive in the same exchange, please split into two exchanges.", i)
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} else if ex.Outgoing == nil && ex.Incoming == nil {
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t.Fatalf(pfx+"[%d] must send or receive a segment.", i)
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}
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if ex.Outgoing != nil {
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prevInflight := tcb.snd.inFlight()
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err := tcb.Send(*ex.Outgoing)
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gotSent := tcb.snd.inFlight() - prevInflight
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if err != nil {
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t.Fatalf(pfx+"[%d] snd: %s\nseg=%+v\nrcv=%+v\nsnd=%+v", i, err, *ex.Outgoing, tcb.rcv, tcb.snd)
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} else if gotSent != ex.Outgoing.LEN() {
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t.Fatalf(pfx+"[%d] snd: expected %d data sent, calculated inflight %d", i, ex.Outgoing.LEN(), gotSent)
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}
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}
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if ex.Incoming != nil {
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err := tcb.Recv(*ex.Incoming)
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if err != nil {
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msg := fmt.Sprintf(pfx+"[%d] rcv: %s\nseg=%+v\nrcv=%+v\nsnd=%+v", i, err, *ex.Incoming, tcb.rcv, tcb.snd)
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if IsDroppedErr(err) {
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t.Log(msg)
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} else {
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t.Fatal(msg)
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}
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}
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}
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t.Log(ex.RFC9293String(tcb._state, ex.WantPeerState))
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state := tcb.State()
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if state != ex.WantState {
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t.Errorf(pfx+"[%d] unexpected state:\n got=%s\nwant=%s", i, state, ex.WantState)
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}
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pending, ok := tcb.PendingSegment(0)
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if !ok && ex.WantPending != nil {
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t.Fatalf(pfx+"[%d] pending:got none, want=%+v", i, *ex.WantPending)
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} else if ex.WantPending != nil && pending != *ex.WantPending {
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t.Fatalf(pfx+"[%d] pending:\n got=%+v\nwant=%+v", i, pending, *ex.WantPending)
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} else if ok && ex.WantPending == nil {
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t.Fatalf(pfx+"[%d] pending:\n got=%+v\nwant=none", i, pending)
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}
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}
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}
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func (tcb *ControlBlock) HelperInitState(state State, localISS, localNXT Value, localWindow Size) {
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tcb._state = state
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tcb.snd = sendSpace{
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ISS: localISS,
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UNA: localISS,
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NXT: localNXT,
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WND: 1, // 1 byte window, so we can test the SEQ field.
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// UP, WL1, WL2 defaults to zero values.
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}
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tcb.rcv = recvSpace{
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WND: localWindow,
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}
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}
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func (tcb *ControlBlock) HelperInitRcv(irs, nxt Value, remoteWindow Size) {
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tcb.rcv.IRS = irs
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tcb.rcv.NXT = nxt
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tcb.snd.WND = remoteWindow
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}
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func (tcb *ControlBlock) RelativeSendSpace() sendSpace {
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snd := tcb.snd
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snd.NXT -= snd.ISS
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snd.UNA -= snd.ISS
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snd.ISS = 0
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return snd
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}
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func (tcb *ControlBlock) RelativeRecvSpace() recvSpace {
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rcv := tcb.rcv
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rcv.NXT -= rcv.IRS
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rcv.IRS = 0
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return rcv
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}
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func (tcb *ControlBlock) RelativeRecvSegment(seg Segment) Segment {
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seg.SEQ -= tcb.rcv.IRS
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seg.ACK -= tcb.snd.ISS
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return seg
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}
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func (tcb *ControlBlock) RelativeSendSegment(seg Segment) Segment {
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seg.SEQ -= tcb.snd.ISS
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seg.ACK -= tcb.rcv.IRS
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return seg
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}
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func (tcb *ControlBlock) RelativeAutoSegment(seg Segment) Segment {
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rcv := tcb.RelativeRecvSegment(seg)
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snd := tcb.RelativeSendSegment(seg)
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if rcv.SEQ > snd.SEQ {
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return snd
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}
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return rcv
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}
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func (tcb *ControlBlock) HelperPrintSegment(t *testing.T, isReceive bool, seg Segment) {
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const fmtmsg = "\nSeg=%+v\nRcvSpace=%s\nSndSpace=%s"
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rcv := tcb.RelativeRecvSpace()
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rcvStr := rcv.RelativeGoString()
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snd := tcb.RelativeSendSpace()
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sndStr := snd.RelativeGoString()
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t.Helper()
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if isReceive {
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t.Logf("RECV:"+fmtmsg, seg.RelativeGoString(tcb.rcv.IRS, tcb.snd.ISS), rcvStr, sndStr)
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} else {
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t.Logf("SEND:"+fmtmsg, seg.RelativeGoString(tcb.snd.ISS, tcb.rcv.IRS), rcvStr, sndStr)
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}
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}
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func (rcv recvSpace) RelativeGoString() string {
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return fmt.Sprintf("{NXT:%d} ", rcv.NXT-rcv.IRS)
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}
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func (rcv sendSpace) RelativeGoString() string {
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nxt := rcv.NXT - rcv.ISS
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una := rcv.UNA - rcv.ISS
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unaLen := Sizeof(una, nxt)
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if unaLen != 0 {
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return fmt.Sprintf("{NXT:%d UNA:%d} (%d unacked)", nxt, una, unaLen)
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}
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return fmt.Sprintf("{NXT:%d UNA:%d}", nxt, una)
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}
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func (seg Segment) RelativeGoString(iseq, iack Value) string {
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seglen := seg.LEN()
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if seglen != seg.DATALEN {
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// If SYN/FIN is set print out the length of the segment.
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return fmt.Sprintf("{SEQ:%d ACK:%d DATALEN:%d Flags:%s} (LEN:%d)", seg.SEQ-iseq, seg.ACK-iack, seg.DATALEN, seg.Flags, seglen)
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}
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return fmt.Sprintf("{SEQ:%d ACK:%d DATALEN:%d Flags:%s} ", seg.SEQ-iseq, seg.ACK-iack, seg.DATALEN, seg.Flags)
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}
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// https://datatracker.ietf.org/doc/html/rfc9293#section-3.8.6.2.1
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func (tcb *ControlBlock) UsableWindow() Size {
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return Sizeof(tcb.snd.NXT, tcb.snd.UNA) + tcb.snd.WND
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}
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func IsDroppedErr(err error) bool {
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return err != nil && errors.Is(err, errDropSegment)
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}
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func (ex *Exchange) RFC9293String(A, B State) string {
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var seg Segment
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sentByA := ex.Outgoing != nil
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if sentByA {
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seg = *ex.Outgoing
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} else if ex.Incoming != nil {
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seg = *ex.Incoming
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} else {
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return ""
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}
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return StringExchange(seg, A, B, !sentByA)
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}
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