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dialog_client.go
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dialog_client.go
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package sipgo
import (
"context"
"errors"
"fmt"
"sync"
"time"
"github.com/emiago/sipgo/sip"
"github.com/icholy/digest"
)
type DialogClientSession struct {
Dialog
// dc *DialogClient
inviteTx sip.ClientTransaction
ua *DialogUA
// onClose triggers when user calls Close
onClose func()
}
func (dt *DialogClientSession) validateRequest(req *sip.Request) (err error) {
// Make sure this is bye for this dialog
if req.CSeq().SeqNo < dt.lastCSeqNo.Load() {
return ErrDialogInvalidCseq
}
return nil
}
func (s *DialogClientSession) ReadBye(req *sip.Request, tx sip.ServerTransaction) error {
s.setState(sip.DialogStateEnded)
res := sip.NewResponseFromRequest(req, 200, "OK", nil)
if err := tx.Respond(res); err != nil {
return err
}
defer s.Close() // Delete our dialog always
defer s.inviteTx.Terminate() // Terminates Invite transaction
// select {
// case <-tx.Done():
// return tx.Err()
// }
return nil
}
// ReadRequest is generic func to validate new request in dialog and update seq. Use it if there are no predefined
func (s *DialogClientSession) ReadRequest(req *sip.Request, tx sip.ServerTransaction) error {
if err := s.validateRequest(req); err != nil {
return err
}
s.lastCSeqNo.Store(req.CSeq().SeqNo)
return nil
}
// Do sends request and waits final response using Dialog rules
// For more control use TransactionRequest
//
// NOTE:
// It does not provide INVITE CANCEL as it could be REINVITE
// Use WaitAnswer when creating initial INVITE to have CANCEL sending.
func (s *DialogClientSession) Do(ctx context.Context, req *sip.Request) (*sip.Response, error) {
tx, err := s.TransactionRequest(ctx, req)
if err != nil {
return nil, err
}
defer tx.Terminate()
for {
select {
case res := <-tx.Responses():
if res.IsProvisional() {
continue
}
return res, nil
case <-tx.Done():
return nil, tx.Err()
case <-ctx.Done():
return nil, ctx.Err()
}
}
}
// TransactionRequest is doing client DIALOG request based on RFC
// https://www.rfc-editor.org/rfc/rfc3261#section-12.2.1
// This ensures that you have proper request done within dialog. You should avoid setting any Dialog header (cseq, from, to, callid)
func (s *DialogClientSession) TransactionRequest(ctx context.Context, req *sip.Request) (sip.ClientTransaction, error) {
s.buildReq(req)
// Passing option to avoid CSEQ apply
return s.ua.Client.TransactionRequest(ctx, req, s.addVia)
}
func (s *DialogClientSession) WriteRequest(req *sip.Request) error {
s.buildReq(req)
return s.ua.Client.WriteRequest(req, s.addVia)
}
func (s *DialogClientSession) addVia(c *Client, req *sip.Request) error {
if req.Via() == nil {
ClientRequestAddVia(c, req)
}
return nil
}
func (s *DialogClientSession) buildReq(req *sip.Request) {
// Keep any request inside dialog
// var mustHaveHeaders []sip.Header = nil
mustHaveHeaders := make([]sip.Header, 0, 5)
if h, invH := req.From(), s.InviteRequest.From(); h == nil {
mustHaveHeaders = append(mustHaveHeaders, sip.HeaderClone(invH))
}
if h, invH := req.To(), s.InviteResponse.To(); h == nil && invH != nil {
mustHaveHeaders = append(mustHaveHeaders, sip.HeaderClone(invH))
}
if h, invH := req.CallID(), s.InviteRequest.CallID(); h == nil {
mustHaveHeaders = append(mustHaveHeaders, sip.HeaderClone(invH))
}
if h := req.MaxForwards(); h == nil {
maxFwd := sip.MaxForwardsHeader(70)
mustHaveHeaders = append(mustHaveHeaders, &maxFwd)
}
cseq := req.CSeq()
if cseq == nil {
cseq = &sip.CSeqHeader{
SeqNo: s.InviteRequest.CSeq().SeqNo,
MethodName: req.Method,
}
// req.AppendHeader(cseq)
mustHaveHeaders = append(mustHaveHeaders, sip.HeaderClone(cseq))
}
if len(mustHaveHeaders) > 0 {
req.PrependHeader(mustHaveHeaders...)
}
// For safety make sure we are starting with our last dialog cseq num
cseq.SeqNo = s.lastCSeqNo.Load()
if !req.IsAck() && !req.IsCancel() {
// Do cseq increment within dialog
cseq.SeqNo++
}
// Check record route header
if s.InviteResponse != nil {
hdrs := s.InviteResponse.GetHeaders("record-route")
// More on
// https://datatracker.ietf.org/doc/html/rfc3261#section-16.12.1.1
if len(hdrs) > 0 {
for i := len(hdrs) - 1; i >= 0; i-- {
// We need to put record-route as recipient in case of strict routing
recordRoute := hdrs[i]
req.AppendHeader(sip.NewHeader("Route", recordRoute.Value()))
}
// Now check top most route header with lazy header parsing
rh := req.Route()
if !rh.Address.UriParams.Has("lr") {
// this is strict routing
req.Recipient = rh.Address
}
} else if s.ua.RewriteContact {
req.SetDestination(s.InviteResponse.Source())
}
}
if h := req.Contact(); h == nil {
req.AppendHeader(sip.HeaderClone(&s.ua.ContactHDR))
}
s.lastCSeqNo.Store(cseq.SeqNo)
}
// Close must be always called in order to cleanup some internal resources
// Consider that this will not send BYE or CANCEL or change dialog state
func (s *DialogClientSession) Close() error {
if s.onClose != nil {
s.onClose()
}
// s.ua.dialogs.Delete(s.ID)
// s.setState(sip.DialogStateEnded)
// ctx, _ := context.WithTimeout(context.Background(), sip.Timer_B)
// return s.Bye(ctx)
return nil
}
type AnswerOptions struct {
OnResponse func(res *sip.Response) error
// For digest authentication
Username string
Password string
}
var (
WaitAnswerForceCancelErr = errors.New("Context cancel forced")
)
// WaitAnswer waits for success response or returns ErrDialogResponse in case non 2xx
// Canceling context while waiting 2xx will send Cancel request. It will block until 1xx provisional is not received
// If Canceling succesfull context.Canceled error is returned
// Returns errors:
// - ErrDialogResponse in case non 2xx response
// - any internal in case waiting answer failed for different reasons
func (s *DialogClientSession) WaitAnswer(ctx context.Context, opts AnswerOptions) error {
tx, inviteRequest := s.inviteTx, s.InviteRequest
var r *sip.Response
var err error
for {
select {
case r = <-tx.Responses():
s.InviteResponse = r
// just pass
case <-ctx.Done():
// Send cancel
// https://datatracker.ietf.org/doc/html/rfc3261#section-9.1
// Cancel can only be sent when provisional is received
// We will wait until transaction timeous out (TimerB)
defer tx.Terminate()
if err := context.Cause(ctx); err == WaitAnswerForceCancelErr {
// In case caller wants to force cancelation exit.
return ctx.Err()
}
if s.InviteResponse == nil {
select {
case r = <-tx.Responses():
s.InviteResponse = r
if !r.IsProvisional() {
// Maybe consider sending BYE
return fmt.Errorf("non provisional response received during CANCEL. resp=%s", r.String())
}
case <-tx.Done():
return errors.Join(fmt.Errorf("transaction terminated"), tx.Err())
}
}
cancelReq := newCancelRequest(s.InviteRequest)
res, err := s.Do(context.Background(), cancelReq) // Cancel should grab same connection underhood
if err != nil {
return err
}
if res.StatusCode != 200 {
return fmt.Errorf("cancel failed with non 200. code=%d", res.StatusCode)
}
// Wait for 487 or just timeout
// https://datatracker.ietf.org/doc/html/rfc3261#section-9.1
// UAC canceling a request cannot rely on receiving a 487 (Request
// Terminated) response for the original request, as an RFC 2543-
// compliant UAS will not generate such a response. If there is no
// final response for the original request in 64*T1 seconds
loop_487:
for {
select {
case r = <-tx.Responses():
if r.IsProvisional() {
continue
}
s.InviteResponse = r
break loop_487
case <-tx.Done():
return tx.Err()
case <-time.After(64 * sip.T1):
break loop_487
}
}
return ctx.Err()
case <-tx.Done():
// tx.Err() can be empty
return errors.Join(fmt.Errorf("transaction terminated"), tx.Err())
}
if opts.OnResponse != nil {
if err := opts.OnResponse(r); err != nil {
return err
}
}
if r.IsSuccess() {
break
}
if r.IsProvisional() {
continue
}
if (r.StatusCode == sip.StatusProxyAuthRequired) && opts.Password != "" {
h := r.GetHeader("Proxy-Authorization")
if h == nil {
tx.Terminate()
digopts := digest.Options{
Method: sip.INVITE.String(),
URI: inviteRequest.Recipient.Addr(),
Username: opts.Username,
Password: opts.Password,
}
// First build this request
if err := digestProxyAuthApply(inviteRequest, r, digopts); err != nil {
return err
}
// Remove Via from original request and send it through dialog transaction
// This keeps transaction within dialog
inviteRequest.RemoveHeader("Via")
tx, err = s.TransactionRequest(ctx, inviteRequest)
if err != nil {
return err
}
continue
}
}
if r.StatusCode == sip.StatusUnauthorized && opts.Password != "" {
h := inviteRequest.GetHeader("Authorization")
if h == nil {
tx.Terminate()
digopts := digest.Options{
Method: sip.INVITE.String(),
URI: inviteRequest.Recipient.Addr(),
Username: opts.Username,
Password: opts.Password,
}
// First build this request
if err := digestAuthApply(inviteRequest, r, digopts); err != nil {
return err
}
// Remove Via from original request and send it through dialog transaction
// This keeps transaction within dialog
inviteRequest.RemoveHeader("Via")
tx, err = s.TransactionRequest(ctx, inviteRequest)
if err != nil {
return err
}
continue
}
}
return &ErrDialogResponse{Res: r}
}
id, err := sip.MakeDialogIDFromResponse(r)
if err != nil {
return err
}
s.inviteTx = tx
s.InviteResponse = r
s.ID = id
s.setState(sip.DialogStateEstablished)
return nil
}
// Ack sends ack. Use WriteAck for more customizing
func (s *DialogClientSession) Ack(ctx context.Context) error {
ack := newAckRequestUAC(s.InviteRequest, s.InviteResponse, nil)
return s.WriteAck(ctx, ack)
}
func (s *DialogClientSession) WriteAck(ctx context.Context, ack *sip.Request) error {
if err := s.WriteRequest(ack); err != nil {
// Make sure we close our error
// s.Close()
return err
}
s.setState(sip.DialogStateConfirmed)
return nil
}
// Bye sends bye and terminates session. Use WriteBye if you want to customize bye request
func (s *DialogClientSession) Bye(ctx context.Context) error {
bye := newByeRequestUAC(s.InviteRequest, s.InviteResponse, nil)
return s.WriteBye(ctx, bye)
}
func (s *DialogClientSession) WriteBye(ctx context.Context, bye *sip.Request) error {
defer s.Close()
state := s.state.Load()
// In case dialog terminated
if sip.DialogState(state) == sip.DialogStateEnded {
return nil
}
// In case dialog was not updated
if sip.DialogState(state) != sip.DialogStateConfirmed {
return fmt.Errorf("Dialog not confirmed. ACK not send?")
}
tx, err := s.TransactionRequest(ctx, bye)
if err != nil {
return err
}
defer s.inviteTx.Terminate() // Terminates INVITE in all cases
defer tx.Terminate() // Terminates current transaction
// Wait 200
select {
case res := <-tx.Responses():
if res.StatusCode != 200 {
return ErrDialogResponse{res}
}
s.setState(sip.DialogStateEnded)
return nil
case <-tx.Done():
return tx.Err()
case <-ctx.Done():
return ctx.Err()
}
}
// newAckRequestUAC creates ACK request for 2xx INVITE
// https://tools.ietf.org/html/rfc3261#section-13.2.2.4
// NOTE: it does not copy Via header. This is left to transport or caller to enforce
func newAckRequestUAC(inviteRequest *sip.Request, inviteResponse *sip.Response, body []byte) *sip.Request {
Recipient := &inviteRequest.Recipient
if contact := inviteResponse.Contact(); contact != nil {
Recipient = &contact.Address
}
ackRequest := sip.NewRequest(
sip.ACK,
*Recipient.Clone(),
)
ackRequest.SipVersion = inviteRequest.SipVersion
if len(inviteRequest.GetHeaders("Route")) > 0 {
sip.CopyHeaders("Route", inviteRequest, ackRequest)
}
if h := inviteRequest.From(); h != nil {
ackRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteResponse.To(); h != nil {
ackRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteRequest.CallID(); h != nil {
ackRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteRequest.CSeq(); h != nil {
ackRequest.AppendHeader(sip.HeaderClone(h))
}
cseq := ackRequest.CSeq()
cseq.MethodName = sip.ACK
maxForwardsHeader := sip.MaxForwardsHeader(70)
ackRequest.AppendHeader(&maxForwardsHeader)
/*
A UAC SHOULD include a Contact header field in any target refresh
requests within a dialog, and unless there is a need to change it,
the URI SHOULD be the same as used in previous requests within the
dialog. If the "secure" flag is true, that URI MUST be a SIPS URI.
As discussed in Section 12.2.2, a Contact header field in a target
refresh request updates the remote target URI. This allows a UA to
provide a new contact address, should its address change during the
duration of the dialog.
*/
if h := inviteRequest.Contact(); h != nil {
ackRequest.AppendHeader(sip.HeaderClone(h))
}
ackRequest.SetBody(body)
ackRequest.SetTransport(inviteRequest.Transport())
ackRequest.SetSource(inviteRequest.Source())
return ackRequest
}
// newByeRequestUAC creates bye request from established dialog
// https://datatracker.ietf.org/doc/html/rfc3261#section-15.1.1
// NOTE: it does not copy Via header neither increases CSEQ. This is left to dialog transaction request
func newByeRequestUAC(inviteRequest *sip.Request, inviteResponse *sip.Response, body []byte) *sip.Request {
recipient := &inviteRequest.Recipient
cont := inviteResponse.Contact()
if cont != nil {
// BYE is subsequent request
recipient = &cont.Address
}
byeRequest := sip.NewRequest(
sip.BYE,
*recipient.Clone(),
)
byeRequest.SipVersion = inviteRequest.SipVersion
if len(inviteRequest.GetHeaders("Route")) > 0 {
sip.CopyHeaders("Route", inviteRequest, byeRequest)
}
maxForwardsHeader := sip.MaxForwardsHeader(70)
byeRequest.AppendHeader(&maxForwardsHeader)
if h := inviteRequest.From(); h != nil {
byeRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteResponse.To(); h != nil {
byeRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteRequest.CallID(); h != nil {
byeRequest.AppendHeader(sip.HeaderClone(h))
}
if h := inviteRequest.CSeq(); h != nil {
byeRequest.AppendHeader(sip.HeaderClone(h))
}
cseq := byeRequest.CSeq()
cseq.MethodName = sip.BYE
byeRequest.SetBody(body)
byeRequest.SetTransport(inviteRequest.Transport())
byeRequest.SetSource(inviteRequest.Source())
return byeRequest
}
func newCancelRequest(inviteRequest *sip.Request) *sip.Request {
cancelReq := sip.NewRequest(sip.CANCEL, inviteRequest.Recipient)
cancelReq.AppendHeader(sip.HeaderClone(inviteRequest.Via())) // Cancel request must match invite TOP via and only have that Via
cancelReq.AppendHeader(sip.HeaderClone(inviteRequest.From()))
cancelReq.AppendHeader(sip.HeaderClone(inviteRequest.To()))
cancelReq.AppendHeader(sip.HeaderClone(inviteRequest.CallID()))
sip.CopyHeaders("Route", inviteRequest, cancelReq)
cancelReq.SetSource(inviteRequest.Source())
cancelReq.SetDestination(inviteRequest.Destination())
return cancelReq
}
type DialogClientCache struct {
c *Client
dialogs sync.Map // TODO replace with typed version
ua DialogUA
}
// NewDialogClientCache provides simple cache layer for managing UAC dialogs.
// It is generally recomended to build your own cache layer
// Contact hdr is default to be provided for correct invite. It is not used if you provided hdr as part of request,
// but contact hdr must be present so this makes sure correct dialog is established.
// In case handling different transports you should have multiple instances per transport
func NewDialogClientCache(client *Client, contactHDR sip.ContactHeader) *DialogClientCache {
s := &DialogClientCache{
c: client,
dialogs: sync.Map{},
ua: DialogUA{
Client: client,
ContactHDR: contactHDR,
},
}
return s
}
func (s *DialogClientCache) dialogsLen() int {
leftItems := 0
s.dialogs.Range(func(key, value any) bool {
leftItems++
return true
})
return leftItems
}
func (s *DialogClientCache) loadDialog(id string) *DialogClientSession {
val, ok := s.dialogs.Load(id)
if !ok || val == nil {
return nil
}
t := val.(*DialogClientSession)
return t
}
func (s *DialogClientCache) MatchRequestDialog(req *sip.Request) (*DialogClientSession, error) {
id, err := sip.UACReadRequestDialogID(req)
if err != nil {
return nil, errors.Join(err, ErrDialogOutsideDialog)
}
dt := s.loadDialog(id)
if dt == nil {
return nil, ErrDialogDoesNotExists
}
return dt, nil
}
// Invite sends INVITE request and creates early dialog session.
// This is actually not yet dialog (ID is empty)
// You need to call WaitAnswer after for establishing dialog
// For passing custom Invite request use WriteInvite
func (c *DialogClientCache) Invite(ctx context.Context, recipient sip.Uri, body []byte, headers ...sip.Header) (*DialogClientSession, error) {
dt, err := c.ua.Invite(ctx, recipient, body, headers...)
if err != nil {
return nil, err
}
dt.onClose = func() {
c.dialogs.Delete(dt.ID)
}
dt.OnState(func(s sip.DialogState) {
if s == sip.DialogStateEstablished {
// Change of state is called after populating ID
if dt.ID == "" {
panic("id of dialog is empty")
}
c.dialogs.Store(dt.ID, dt)
}
})
return dt, err
}
func (c *DialogClientCache) WriteInvite(ctx context.Context, inviteRequest *sip.Request) (*DialogClientSession, error) {
dt, err := c.ua.WriteInvite(ctx, inviteRequest)
if err != nil {
return nil, err
}
dt.onClose = func() {
c.dialogs.Delete(dt.ID)
}
dt.OnState(func(s sip.DialogState) {
if s == sip.DialogStateEstablished {
// Change of state is called after populating ID
if dt.ID == "" {
panic("id of dialog is empty")
}
c.dialogs.Store(dt.ID, dt)
}
})
return dt, err
}
func (c *DialogClientCache) ReadBye(req *sip.Request, tx sip.ServerTransaction) error {
dt, err := c.MatchRequestDialog(req)
if err != nil {
return err
}
return dt.ReadBye(req, tx)
}