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active_call/call/
active_call.rs

1use super::Command;
2use crate::{
3    CallOption, ReferOption,
4    call::state::{ActorMsg, CallProgress, CallRuntime, Extras, LegShared, build_callrecord},
5    event::{EventReceiver, EventSender, SessionEvent},
6    media::{
7        TrackId,
8        engine::StreamEngine,
9        recorder::RecorderOption,
10        stream::{MediaStream, MediaStreamBuilder, SERVER_SIDE_TRACK_ID},
11        track::{
12            Track, TrackConfig, forwarding::ForwardingTrack, media_pass::MediaPassTrack,
13            tts::SynthesisHandle, websocket::WebsocketBytesReceiver,
14        },
15    },
16    synthesis::SynthesisCommand,
17    transcription::TranscriptionOption,
18};
19use crate::{
20    app::AppState,
21    call::{CommandReceiver, CommandSender, sip::Invitation},
22    callrecord::{CallRecord, CallRecordEvent, CallRecordEventType, CallRecordHangupReason},
23};
24use anyhow::Result;
25use arc_swap::{ArcSwap, ArcSwapOption};
26use chrono::{DateTime, Utc};
27use rsipstack::dialog::invite_dialog::InviteDialog;
28use serde::{Deserialize, Serialize};
29use std::{
30    collections::HashMap,
31    path::Path,
32    sync::{
33        Arc,
34        atomic::{AtomicBool, Ordering},
35    },
36    time::Duration,
37};
38use tokio::{fs::File, select, sync::mpsc};
39use tokio_util::sync::CancellationToken;
40use tracing::{debug, info, warn};
41
42/// Describes the state of the caller track when an incoming SIP call is waiting to be answered.
43pub enum PendingCallerTrack {
44    /// The track has been started in the media stream during ringing (early media).
45    /// Processors must be built from the accept option and appended to it.
46    StartedForEarlyMedia,
47    /// The track has not been added to the media stream yet.
48    /// setup_track_with_stream will start it and build processors from the accept option.
49    NotStarted(Box<dyn Track>),
50}
51
52#[cfg(test)]
53mod tests {
54    use super::*;
55    use crate::app::AppStateBuilder;
56    use crate::config::Config;
57    use crate::media::track::tts::SynthesisHandle;
58    use crate::synthesis::SynthesisCommand;
59    use tokio::sync::mpsc;
60
61    async fn make_active_call_with_option(option: CallOption) -> Arc<ActiveCall> {
62        let mut config = Config::default();
63        config.udp_port = 0; // Use random port
64        config.media_cache_path = "/tmp/mediacache".to_string();
65        let app_state = AppStateBuilder::new()
66            .with_config(config)
67            .with_stream_engine(Arc::new(StreamEngine::default()))
68            .build()
69            .await
70            .unwrap();
71        let active_call = Arc::new(ActiveCall::new(CallSpec {
72            call_type: ActiveCallType::Sip,
73            cancel_token: CancellationToken::new(),
74            session_id: "test-session".to_string(),
75            invitation: app_state.invitation.clone(),
76            app_state: app_state.clone(),
77            track_config: TrackConfig::default(),
78            audio_receiver: None,
79            dump_events: false,
80            server_side_track_id: None,
81            extras: None,
82        }));
83        active_call.set_option(option);
84        active_call
85    }
86
87    #[tokio::test]
88    async fn test_tts_ssrc_reuse_for_autohangup() -> Result<()> {
89        let mut option = crate::CallOption::default();
90        option.tts = Some(crate::synthesis::SynthesisOption::default());
91        let active_call = make_active_call_with_option(option).await;
92
93        let (tx, mut rx) = mpsc::unbounded_channel::<SynthesisCommand>();
94        let initial_ssrc = 12345;
95        let handle = SynthesisHandle::new(tx, Some("play_1".to_string()), initial_ssrc);
96
97        // 1. Set initial TTS handle
98        active_call.tts_handle.store(Some(Arc::new(handle)));
99        active_call.set_current_play(Some("play_1".to_string()));
100
101        // 2. Call do_tts with auto_hangup=true and same play_id
102        active_call
103            .do_tts(Command::Tts {
104                text: "hangup now".to_string(),
105                speaker: None,
106                play_id: Some("play_1".to_string()),
107                auto_hangup: Some(true),
108                streaming: Some(false),
109                end_of_stream: Some(true),
110                option: None,
111                wait_input_timeout: None,
112                base64: Some(false),
113                cache_key: None,
114            })
115            .await?;
116
117        // 3. Verify the hangup intent rides on the command sent to the existing track
118        let cmd = rx.try_recv().expect("Should have received tts command");
119        assert_eq!(cmd.text, "hangup now");
120        assert_eq!(cmd.auto_hangup, Some(true));
121
122        Ok(())
123    }
124
125    #[tokio::test]
126    async fn test_tts_new_ssrc_for_different_play_id() -> Result<()> {
127        let mut tts_opt = crate::synthesis::SynthesisOption::default();
128        tts_opt.provider = Some(crate::synthesis::SynthesisType::Aliyun);
129        let mut option = crate::CallOption::default();
130        option.tts = Some(tts_opt);
131        let active_call = make_active_call_with_option(option).await;
132
133        let (tx, _rx) = mpsc::unbounded_channel();
134        let initial_ssrc = 111;
135        let handle = SynthesisHandle::new(tx, Some("play_1".to_string()), initial_ssrc);
136
137        active_call.tts_handle.store(Some(Arc::new(handle)));
138        active_call.set_current_play(Some("play_1".to_string()));
139
140        // Call do_tts with DIFFERENT play_id
141        active_call
142            .do_tts(Command::Tts {
143                text: "new play".to_string(),
144                speaker: None,
145                play_id: Some("play_2".to_string()),
146                auto_hangup: Some(true),
147                streaming: Some(false),
148                end_of_stream: Some(true),
149                option: None,
150                wait_input_timeout: None,
151                base64: Some(false),
152                cache_key: None,
153            })
154            .await?;
155
156        // Verify a NEW track was started (new handle with a different ssrc,
157        // because a different play_id interrupts and starts fresh)
158        {
159            let handle = active_call.tts_handle.load_full();
160            assert!(handle.is_some(), "new tts handle should be stored");
161            let handle = handle.unwrap();
162            assert_ne!(
163                handle.ssrc, initial_ssrc,
164                "Should use a new SSRC for different play_id"
165            );
166        }
167
168        Ok(())
169    }
170
171    // refer=Some(true): only the refer call is cancelled, media stream stays alive.
172    #[tokio::test]
173    async fn test_hangup_refer_true_cancels_refer_only() -> Result<()> {
174        let active_call = make_active_call_with_option(crate::CallOption::default()).await;
175
176        let refer_token = active_call.cancel_token.child_token();
177        let refer_leg = LegShared::new(1, true, CallProgress::default());
178        active_call.set_refer_call_token(refer_token.clone());
179        active_call.set_refer_leg(Some(refer_leg.clone()));
180
181        active_call.do_hangup(None, None, None, Some(true)).await?;
182
183        assert!(
184            refer_token.is_cancelled(),
185            "refer token should be cancelled"
186        );
187        assert!(
188            !active_call.media_stream.cancel_token.is_cancelled(),
189            "media stream should NOT stop"
190        );
191        assert!(
192            refer_leg.progress.load_full().hangup_reason.is_some(),
193            "hangup_reason should be set on refer leg"
194        );
195        Ok(())
196    }
197
198    // refer=None: media stream stops and the refer token is also cancelled.
199    #[tokio::test]
200    async fn test_hangup_none_cancels_refer_too() -> Result<()> {
201        let active_call = make_active_call_with_option(crate::CallOption::default()).await;
202
203        let refer_token = active_call.cancel_token.child_token();
204        active_call.set_refer_call_token(refer_token.clone());
205
206        active_call.do_hangup(None, None, None, None).await?;
207
208        assert!(
209            refer_token.is_cancelled(),
210            "refer token should be cancelled"
211        );
212        assert!(
213            active_call.media_stream.cancel_token.is_cancelled(),
214            "media stream should stop"
215        );
216        Ok(())
217    }
218
219    // ---------------------------------------------------------------------------
220    // Regression: ringing-before-accept leaves caller track without processors
221    // ---------------------------------------------------------------------------
222    //
223    // When Ringing is issued before Accept on an incoming SIP call,
224    // prepare_incoming_sip_track starts the caller track in the media stream
225    // (needed for early-media ringtone) with the empty ringing option — no
226    // VAD/ASR/AGC processors.  It stores PendingCallerTrack::StartedForEarlyMedia
227    // in ready_to_answer.  At accept time, finish_caller_stack matches that variant
228    // and calls create_processors + append_processor with the real accept option.
229    //
230    // This test verifies that setup_track_with_stream (same processor-creation path)
231    // fires the ASR builder when given the accept option, proving the fix is sound.
232
233    struct MockCallerTrack {
234        id: TrackId,
235        config: crate::media::track::TrackConfig,
236        processor_chain: crate::media::processor::ProcessorChain,
237    }
238
239    impl MockCallerTrack {
240        fn new(id: TrackId) -> Self {
241            Self {
242                id,
243                config: crate::media::track::TrackConfig::default(),
244                processor_chain: crate::media::processor::ProcessorChain::new(16000),
245            }
246        }
247    }
248
249    #[async_trait::async_trait]
250    impl crate::media::track::Track for MockCallerTrack {
251        fn ssrc(&self) -> u32 {
252            0
253        }
254        fn id(&self) -> &TrackId {
255            &self.id
256        }
257        fn config(&self) -> &crate::media::track::TrackConfig {
258            &self.config
259        }
260        fn processor_chain(&mut self) -> &mut crate::media::processor::ProcessorChain {
261            &mut self.processor_chain
262        }
263        async fn handshake(
264            &mut self,
265            _o: String,
266            _t: Option<tokio::time::Duration>,
267        ) -> Result<String> {
268            Ok(String::new())
269        }
270        async fn update_remote_description(&mut self, _a: &String) -> Result<()> {
271            Ok(())
272        }
273        async fn start(
274            &mut self,
275            _e: crate::event::EventSender,
276            _p: crate::media::track::TrackPacketSender,
277        ) -> Result<()> {
278            Ok(())
279        }
280        async fn stop(&self) -> Result<()> {
281            Ok(())
282        }
283        async fn send_packet(&mut self, _f: &crate::media::AudioFrame) -> Result<()> {
284            Ok(())
285        }
286    }
287
288    struct MockAsrClient;
289
290    #[async_trait::async_trait]
291    impl crate::transcription::TranscriptionClient for MockAsrClient {
292        fn send_audio(
293            &self,
294            _s: &[crate::media::Sample],
295            _src: Option<&crate::media::SourcePacket>,
296        ) -> Result<()> {
297            Ok(())
298        }
299    }
300
301    async fn make_active_call_with_engine_and_option(
302        engine: Arc<StreamEngine>,
303        cache_dir: &str,
304        option: crate::CallOption,
305    ) -> Arc<ActiveCall> {
306        let mut config = Config::default();
307        config.udp_port = 0;
308        config.media_cache_path = cache_dir.to_string();
309        let app_state = AppStateBuilder::new()
310            .with_config(config)
311            .with_stream_engine(engine)
312            .build()
313            .await
314            .unwrap();
315        let session_id = format!("test-{}-{}", cache_dir, uuid::Uuid::new_v4());
316        let active_call = Arc::new(ActiveCall::new(CallSpec {
317            call_type: ActiveCallType::Sip,
318            cancel_token: CancellationToken::new(),
319            session_id: session_id.clone(),
320            invitation: app_state.invitation.clone(),
321            app_state: app_state.clone(),
322            track_config: TrackConfig::default(),
323            audio_receiver: None,
324            dump_events: false,
325            server_side_track_id: None,
326            extras: None,
327        }));
328        active_call.set_option(option);
329        active_call
330    }
331
332    #[tokio::test]
333    async fn test_setup_track_with_stream_builds_processors_from_accept_option() -> Result<()> {
334        let (asr_created_tx, mut asr_created_rx) = mpsc::channel::<()>(1);
335
336        let mock_provider =
337            crate::transcription::TranscriptionType::Other("mock-ringing-asr".to_string());
338
339        let mut engine = StreamEngine::new();
340        engine.register_asr(
341            mock_provider.clone(),
342            Box::new(move |_tid, _tok, _opt, _es| {
343                let tx = asr_created_tx.clone();
344                Box::pin(async move {
345                    let _ = tx.send(()).await;
346                    Ok(Box::new(MockAsrClient)
347                        as Box<dyn crate::transcription::TranscriptionClient>)
348                })
349            }),
350        );
351        let engine = Arc::new(engine);
352
353        let accept_option = crate::CallOption {
354            asr: Some(crate::transcription::TranscriptionOption {
355                provider: Some(mock_provider),
356                ..Default::default()
357            }),
358            ..Default::default()
359        };
360        let active_call = make_active_call_with_engine_and_option(
361            engine,
362            "mediacache_ringing_accept_test",
363            accept_option,
364        )
365        .await;
366        let cancel_token = active_call.cancel_token.clone();
367
368        // Simulate the fixed prepare_incoming_sip_track: track is held in
369        // ready_to_answer, NOT yet added to the media stream.
370        let mock_track = Box::new(MockCallerTrack::new(active_call.session_id.clone()));
371
372        // Simulate finish_caller_stack at accept time: setup_track_with_stream
373        // is called with the full accept option (the code path under test).
374        let accept_option = active_call.progress.load_full().option.clone().unwrap();
375        active_call
376            .setup_track_with_stream(&accept_option, mock_track)
377            .await?;
378
379        // The mock ASR builder must have fired, proving processors were built
380        // from the accept option and attached to the caller track.
381        let received =
382            tokio::time::timeout(std::time::Duration::from_secs(3), asr_created_rx.recv()).await;
383        assert!(
384            received.is_ok() && received.unwrap().is_some(),
385            "ASR processor was NOT created — setup_track_with_stream did not build \
386             processors from the accept option (regression: ringing-before-accept)"
387        );
388
389        cancel_token.cancel();
390        Ok(())
391    }
392
393    // ---------------------------------------------------------------------------
394    // Regression: double-ASR when Accept arrives without a prior Ringing
395    // ---------------------------------------------------------------------------
396    //
397    // prepare_incoming_sip_track starts the caller track during ringing. It must
398    // NOT build VAD/ASR/AGC processors at that point: the stored option already
399    // carries `asr` in the accept-first path, so finish_caller_stack would build a
400    // second set at accept time, producing two ASR clients (two WebSocket
401    // connections) on the same track.
402    //
403    // This test verifies that update_track_wrapper (the prepare-time path) never
404    // fires the ASR builder even when the option carries an asr config.
405
406    #[tokio::test]
407    async fn test_update_track_wrapper_does_not_build_asr_processor() -> Result<()> {
408        let (asr_created_tx, mut asr_created_rx) = mpsc::channel::<()>(1);
409
410        let mock_provider =
411            crate::transcription::TranscriptionType::Other("mock-ringing-asr".to_string());
412
413        let mut engine = StreamEngine::new();
414        engine.register_asr(
415            mock_provider.clone(),
416            Box::new(move |_tid, _tok, _opt, _es| {
417                let tx = asr_created_tx.clone();
418                Box::pin(async move {
419                    let _ = tx.send(()).await;
420                    Ok(Box::new(MockAsrClient)
421                        as Box<dyn crate::transcription::TranscriptionClient>)
422                })
423            }),
424        );
425        let engine = Arc::new(engine);
426
427        // Simulate the accept-first path: setup_caller_track has already stored the
428        // full accept option (with asr) before the track is prepared.
429        let accept_option = crate::CallOption {
430            asr: Some(crate::transcription::TranscriptionOption {
431                provider: Some(mock_provider),
432                ..Default::default()
433            }),
434            ..Default::default()
435        };
436        let active_call = make_active_call_with_engine_and_option(
437            engine,
438            "mediacache_update_track_wrapper_test",
439            accept_option,
440        )
441        .await;
442        let cancel_token = active_call.cancel_token.clone();
443
444        let mock_track = Box::new(MockCallerTrack::new(active_call.session_id.clone()));
445        active_call.update_track_wrapper(mock_track, None).await;
446
447        // update_track_wrapper must NOT fire the ASR builder; the processors are
448        // deferred to finish_caller_stack(StartedForEarlyMedia) at accept time.
449        let received =
450            tokio::time::timeout(std::time::Duration::from_millis(500), asr_created_rx.recv())
451                .await;
452        assert!(
453            received.is_err(),
454            "ASR builder fired during track preparation — double-ASR regression"
455        );
456
457        cancel_token.cancel();
458        Ok(())
459    }
460}
461
462#[derive(Deserialize)]
463#[serde(rename_all = "camelCase")]
464pub struct CallParams {
465    pub id: Option<String>,
466    #[serde(rename = "dump")]
467    pub dump_events: Option<bool>,
468    #[serde(rename = "ping")]
469    pub ping_interval: Option<u32>,
470    pub server_side_track: Option<String>,
471    /// Set when this connection is a one-hop find from another node.
472    /// Only an empty `forward` may be forwarded. A present value is answered
473    /// locally only and must never hop again. `forward=true` must 404 if the
474    /// session is absent (do not create a new call).
475    #[serde(default)]
476    pub forward: Option<bool>,
477    /// Ignored. Kept so older nodes that still send `visited=` can deserialize.
478    #[serde(default)]
479    pub visited: Option<String>,
480}
481
482impl CallParams {
483    /// Build the query string used when forwarding this request to a peer.
484    /// Sets `forward=true` so the peer will not hop (`forward` is no longer empty).
485    pub fn to_forward_query(&self) -> String {
486        let mut parts: Vec<String> = Vec::new();
487        if let Some(id) = &self.id {
488            parts.push(format!("id={}", urlencoding::encode(id)));
489        }
490        if let Some(dump) = self.dump_events {
491            parts.push(format!("dump={}", dump));
492        }
493        if let Some(ping) = self.ping_interval {
494            parts.push(format!("ping={}", ping));
495        }
496        if let Some(track) = &self.server_side_track {
497            parts.push(format!("server_side_track={}", urlencoding::encode(track)));
498        }
499        parts.push("forward=true".to_string());
500        parts.join("&")
501    }
502}
503
504#[derive(Debug, Serialize, Deserialize, Clone, Default, PartialEq, Eq)]
505#[serde(rename_all = "camelCase")]
506pub enum ActiveCallType {
507    Webrtc,
508    B2bua,
509    WebSocket,
510    #[default]
511    Sip,
512}
513
514pub type ActiveCallRef = Arc<ActiveCall>;
515
516/// A call: immutable identity + lock-free shared state (see `call::state`)
517/// plus the infrastructure handles. Actor-owned mutable state lives in
518/// [`CallRuntime`] inside `serve`.
519pub struct ActiveCall {
520    pub cancel_token: CancellationToken,
521    pub call_type: ActiveCallType,
522    pub session_id: String,
523    pub start_time: DateTime<Utc>,
524    pub media_stream: Arc<MediaStream>,
525    pub track_config: TrackConfig,
526    pub event_sender: EventSender,
527    pub app_state: AppState,
528    pub invitation: Invitation,
529    pub cmd_sender: CommandSender,
530    pub dump_events: bool,
531    pub server_side_track_id: TrackId,
532
533    /// Immutable main-leg SSRC.
534    pub ssrc: u32,
535    /// Bridge pause flag shared with the peer call during bridging.
536    pub bridge_paused: Arc<AtomicBool>,
537    /// Main-leg lifecycle progress (dialog id, ring/answer times, answer SDP, option...).
538    pub progress: Arc<ArcSwap<CallProgress>>,
539    /// Main-leg variables (playbook set_var, SIP headers, hangup headers).
540    pub extras: Extras,
541    /// Active music-on-hold path (shared with the spawned refer task).
542    pub moh: ArcSwapOption<String>,
543    /// play id of the current server-side playback (shared for TrackEnd matching).
544    pub current_play_id: ArcSwapOption<String>,
545    /// Live TTS handle (shared so spawned tasks and post-serve cleanup can drop it).
546    pub tts_handle: ArcSwapOption<SynthesisHandle>,
547    /// Shared state of the refer leg, when one is active.
548    pub refer_leg: ArcSwapOption<LegShared>,
549    /// Answer prepared during ringing (SDP + running track + dialog); taken
550    /// by accept/reject. Shared so post-serve `cleanup` can still reject.
551    pub ready_to_answer: ArcSwapOption<ReadyAnswer>,
552    /// Answer prepared for the underlying SIP dialog of non-SIP call types
553    /// (WebSocket/Webrtc); taken by accept, rejected on reject/cleanup.
554    /// Same slot family as `ready_to_answer`: lock-free set/take on the
555    /// actor path, with ownership recoverable from `cleanup`.
556    pub pending_sip_answer: ArcSwapOption<PendingSipAnswer>,
557    /// Cancel this token to hang up only the refer call, leaving the main call alive.
558    pub refer_call_token: ArcSwapOption<CancellationToken>,
559    /// Pending wait-input timeout set by the last Tts/Play command.
560    pub wait_input_timeout: ArcSwapOption<u32>,
561    /// ASR config to resume on the parent leg once the refer leg ends.
562    pub pending_asr_resume: ArcSwapOption<(u32, TranscriptionOption)>,
563    /// WebSocket audio receiver injected at construction, taken once by setup.
564    pub audio_receiver: std::sync::Mutex<Option<WebsocketBytesReceiver>>,
565}
566
567impl ActiveCall {
568    /// Lock-free shared state of the main leg.
569    pub fn leg(&self) -> LegShared {
570        LegShared {
571            ssrc: self.ssrc,
572            is_refer: false,
573            progress: self.progress.clone(),
574            extras: self.extras.clone(),
575        }
576    }
577
578    /// Store/replace the main-leg option in the progress snapshot.
579    pub fn set_option(&self, option: CallOption) {
580        self.progress.rcu(|p| {
581            let mut p = CallProgress::clone(p);
582            p.option = Some(option.clone());
583            p
584        });
585    }
586
587    pub fn moh_path(&self) -> Option<String> {
588        self.moh.load_full().map(|s| s.to_string())
589    }
590
591    pub fn set_moh(&self, v: Option<String>) {
592        self.moh.store(v.map(Arc::new));
593    }
594
595    pub fn current_play(&self) -> Option<String> {
596        self.current_play_id.load_full().map(|s| s.to_string())
597    }
598
599    pub fn set_current_play(&self, v: Option<String>) {
600        self.current_play_id.store(v.map(Arc::new));
601    }
602
603    pub fn refer_leg_value(&self) -> Option<LegShared> {
604        self.refer_leg.load_full().map(|l| l.as_ref().clone())
605    }
606
607    pub fn set_refer_leg(&self, v: Option<LegShared>) {
608        self.refer_leg.store(v.map(Arc::new));
609    }
610
611    /// Prepared answer during ringing; taken once by accept/reject.
612    pub fn set_ready_to_answer(&self, ready: ReadyAnswer) {
613        self.ready_to_answer.store(Some(Arc::new(ready)));
614    }
615
616    pub fn take_ready_to_answer(&self) -> Option<Arc<ReadyAnswer>> {
617        self.ready_to_answer.swap(None)
618    }
619
620    pub fn has_ready_to_answer(&self) -> bool {
621        self.ready_to_answer.load().is_some()
622    }
623
624    /// Prepared 200 OK for the underlying SIP dialog of non-SIP call types.
625    pub fn set_pending_sip_answer(&self, pending: PendingSipAnswer) {
626        self.pending_sip_answer.store(Some(Arc::new(pending)));
627    }
628
629    pub fn take_pending_sip_answer(&self) -> Option<Arc<PendingSipAnswer>> {
630        self.pending_sip_answer.swap(None)
631    }
632
633    /// Cancel token that hangs up only the refer leg, leaving the main call
634    /// alive; set by `do_refer`, taken by hangup.
635    pub fn take_refer_call_token(&self) -> Option<CancellationToken> {
636        self.refer_call_token.swap(None).map(|t| (*t).clone())
637    }
638
639    pub fn set_refer_call_token(&self, token: CancellationToken) {
640        self.refer_call_token.store(Some(Arc::new(token)));
641    }
642
643    /// Pending wait-input timeout set by the last Tts/Play command, consumed
644    /// when the track ends.
645    pub fn take_wait_input_timeout(&self) -> Option<u32> {
646        self.wait_input_timeout.swap(None).map(|t| *t)
647    }
648
649    pub fn set_wait_input_timeout(&self, v: Option<u32>) {
650        self.wait_input_timeout.store(v.map(Arc::new));
651    }
652
653    /// ASR config to resume on the parent leg once the refer leg ends.
654    pub fn set_pending_asr_resume(&self, v: (u32, TranscriptionOption)) {
655        self.pending_asr_resume.store(Some(Arc::new(v)));
656    }
657
658    pub fn take_pending_asr_resume(&self) -> Option<(u32, TranscriptionOption)> {
659        self.pending_asr_resume.swap(None).map(|a| (*a).clone())
660    }
661
662    /// Insert/overwrite one main-leg extras variable.
663    pub fn set_extra(&self, key: &str, value: serde_json::Value) {
664        self.leg().set_extra(key, value);
665    }
666
667    /// Whether a pending (not yet answered) incoming dialog exists for this call.
668    fn has_pending_invite(&self) -> bool {
669        self.invitation
670            .find_dialog_id_by_session_id(&self.session_id)
671            .is_some()
672    }
673
674    /// One-shot hangup for error-cleanup paths outside the actor loop.
675    async fn hangup_now(&self, reason: Option<CallRecordHangupReason>) {
676        self.do_hangup(reason, None, None, None).await.ok();
677    }
678
679    /// One-shot reject for teardown paths outside the actor loop.
680    async fn reject_now(&self, code: Option<rsipstack::rsip::StatusCode>, reason: Option<String>) {
681        self.do_reject(code, reason).await.ok();
682    }
683}
684
685/// Answer prepared during ringing: the SDP to answer with, the already
686/// running caller track (started for early media), and the dialog to accept.
687pub struct ReadyAnswer {
688    pub answer: String,
689    pub track: PendingCallerTrack,
690    pub dialog: InviteDialog,
691}
692
693/// Answer prepared for the underlying inbound SIP dialog of a non-SIP call
694/// type (WebSocket/Webrtc): the 200 OK SDP, the dialog to accept, and the RTP
695/// track that bridges the SIP leg into the media stream.
696pub struct PendingSipAnswer {
697    pub answer: String,
698    pub dialog: InviteDialog,
699    pub track: Box<dyn Track>,
700}
701
702pub struct ActiveCallGuard {
703    pub call: ActiveCallRef,
704    pub active_calls: usize,
705}
706
707impl ActiveCallGuard {
708    pub fn new(call: ActiveCallRef) -> Self {
709        let active_calls = {
710            call.app_state
711                .total_calls
712                .fetch_add(1, std::sync::atomic::Ordering::Relaxed);
713            let mut calls = call.app_state.active_calls.lock().unwrap();
714            calls.insert(call.session_id.clone(), call.clone());
715            calls.len()
716        };
717        Self { call, active_calls }
718    }
719}
720
721impl Drop for ActiveCallGuard {
722    fn drop(&mut self) {
723        self.call
724            .app_state
725            .active_calls
726            .lock()
727            .unwrap()
728            .remove(&self.call.session_id);
729    }
730}
731
732pub struct ActiveCallReceiver {
733    pub cmd_receiver: CommandReceiver,
734    pub dump_cmd_receiver: CommandReceiver,
735    pub dump_event_receiver: EventReceiver,
736}
737
738/// Construction parameters for [`ActiveCall::new`].
739pub struct CallSpec {
740    pub call_type: ActiveCallType,
741    pub cancel_token: CancellationToken,
742    pub session_id: String,
743    pub invitation: Invitation,
744    pub app_state: AppState,
745    pub track_config: TrackConfig,
746    /// WebSocket audio receiver (WebSocket calls only), taken once by setup.
747    pub audio_receiver: Option<WebsocketBytesReceiver>,
748    pub dump_events: bool,
749    /// Overrides the default server-side track id.
750    pub server_side_track_id: Option<TrackId>,
751    /// Initial session variables; built-ins (session id, call type, start
752    /// time) are injected for missing keys.
753    pub extras: Option<HashMap<String, serde_json::Value>>,
754}
755
756impl ActiveCall {
757    pub fn new(spec: CallSpec) -> Self {
758        let CallSpec {
759            call_type,
760            cancel_token,
761            session_id,
762            invitation,
763            app_state,
764            track_config,
765            audio_receiver,
766            dump_events,
767            server_side_track_id,
768            extras,
769        } = spec;
770        let event_sender = crate::event::create_event_sender();
771        let cmd_sender = tokio::sync::broadcast::Sender::<Command>::new(32);
772        let server_side_track_id = server_side_track_id.unwrap_or(SERVER_SIDE_TRACK_ID.to_string());
773        let media_stream_builder = MediaStreamBuilder::new(event_sender.clone())
774            .with_id(session_id.clone())
775            .with_cancel_token(cancel_token.child_token());
776        let media_stream = Arc::new(media_stream_builder.build());
777        let start_time = Utc::now();
778        // Inject built-in session variables into extras
779        let call_type_str = match &call_type {
780            ActiveCallType::Sip => "sip",
781            ActiveCallType::WebSocket => "websocket",
782            ActiveCallType::Webrtc => "webrtc",
783            ActiveCallType::B2bua => "b2bua",
784        };
785        let mut extras = extras.unwrap_or_default();
786        extras
787            .entry(crate::playbook::BUILTIN_SESSION_ID.to_string())
788            .or_insert_with(|| serde_json::Value::String(session_id.clone()));
789        extras
790            .entry(crate::playbook::BUILTIN_CALL_TYPE.to_string())
791            .or_insert_with(|| serde_json::Value::String(call_type_str.to_string()));
792        extras
793            .entry(crate::playbook::BUILTIN_START_TIME.to_string())
794            .or_insert_with(|| serde_json::Value::String(start_time.to_rfc3339()));
795
796        let progress = CallProgress {
797            session_id: session_id.clone(),
798            start_time: Some(start_time),
799            ..Default::default()
800        };
801
802        Self {
803            cancel_token,
804            call_type,
805            session_id,
806            start_time,
807            media_stream,
808            track_config,
809            event_sender,
810            app_state,
811            invitation,
812            cmd_sender,
813            dump_events,
814            server_side_track_id,
815            ssrc: rand::random::<u32>(),
816            bridge_paused: Arc::new(AtomicBool::new(false)),
817            progress: Arc::new(ArcSwap::from_pointee(progress)),
818            extras: Arc::new(ArcSwap::from_pointee(extras)),
819            moh: ArcSwapOption::new(None),
820            current_play_id: ArcSwapOption::new(None),
821            tts_handle: ArcSwapOption::new(None),
822            refer_leg: ArcSwapOption::new(None),
823            ready_to_answer: ArcSwapOption::new(None),
824            pending_sip_answer: ArcSwapOption::new(None),
825            refer_call_token: ArcSwapOption::new(None),
826            wait_input_timeout: ArcSwapOption::new(None),
827            pending_asr_resume: ArcSwapOption::new(None),
828            audio_receiver: std::sync::Mutex::new(audio_receiver),
829        }
830    }
831
832    pub async fn enqueue_command(&self, command: Command) -> Result<()> {
833        self.cmd_sender
834            .send(command)
835            .map_err(|e| anyhow::anyhow!("Failed to send command: {}", e))?;
836        Ok(())
837    }
838
839    /// Create a new ActiveCallReceiver for this ActiveCall
840    /// `tokio::sync::broadcast` not cached messages, so need to early create receiver
841    /// before calling `serve()`
842    pub fn new_receiver(&self) -> ActiveCallReceiver {
843        ActiveCallReceiver {
844            cmd_receiver: self.cmd_sender.subscribe(),
845            dump_cmd_receiver: self.cmd_sender.subscribe(),
846            dump_event_receiver: self.event_sender.subscribe(),
847        }
848    }
849
850    /// The call actor: a single select loop owning the [`CallRuntime`].
851    ///
852    /// Commands, session events, background-completion messages, the
853    /// wait-input timeout tick, the media stream and cancellation all meet in
854    /// one place, so runtime state is plain (lock-free) data owned by this
855    /// task — mirroring the concurrency of the previous separate
856    /// command/event loops without their shared locks.
857    pub async fn serve(self: Arc<Self>, receiver: ActiveCallReceiver) -> Result<()> {
858        let ActiveCallReceiver {
859            mut cmd_receiver,
860            dump_cmd_receiver,
861            dump_event_receiver,
862        } = receiver;
863
864        let mut event_receiver = self.event_sender.subscribe();
865        let (actor_tx, mut actor_rx) = mpsc::channel::<ActorMsg>(16);
866        let mut runtime = CallRuntime::new(actor_tx);
867        runtime.me = Some(self.clone());
868
869        self.app_state
870            .total_calls
871            .fetch_add(1, std::sync::atomic::Ordering::Relaxed);
872
873        let me = self.clone();
874        let actor = async move {
875            // RAII: whatever way the loop exits (break, panic, early drop),
876            // the call's cancel token fires so every child task and the media
877            // stream shut down.
878            let _cancel_on_exit = CancelOnExit(&me.cancel_token);
879            let mut ticker = tokio::time::interval(Duration::from_millis(100));
880            // Keep the media-serve future alive across select iterations.
881            let mut media_serve = Box::pin(me.media_stream.serve());
882            loop {
883                tokio::select! {
884                    cmd = cmd_receiver.recv() => {
885                        match cmd {
886                            Ok(command) => {
887                                // Box::pin keeps the deep do_* future tree off
888                                // the select's stack frame (debug builds overflow
889                                // otherwise).
890                                if let Err(e) = Box::pin(me.dispatch(&mut runtime, command)).await {
891                                    warn!(session_id = me.session_id, "{}", e);
892                                    me.event_sender
893                                        .send(SessionEvent::Error {
894                                            track_id: me.session_id.clone(),
895                                            timestamp: crate::media::get_timestamp(),
896                                            sender: "command".to_string(),
897                                            error: e.to_string(),
898                                            code: None,
899                                        })
900                                        .ok();
901                                }
902                            }
903                            Err(tokio::sync::broadcast::error::RecvError::Lagged(_)) => continue,
904                            Err(_) => {
905                                info!(session_id = me.session_id, "command loop done");
906                                break;
907                            }
908                        }
909                    }
910                    ev = event_receiver.recv() => {
911                        match ev {
912                            Ok(event) => Box::pin(me.handle_event(&mut runtime, event)).await,
913                            Err(tokio::sync::broadcast::error::RecvError::Lagged(_)) => continue,
914                            Err(_) => {
915                                info!(session_id = me.session_id, "event loop done");
916                                break;
917                            }
918                        }
919                    }
920                    Some(msg) = actor_rx.recv() => {
921                        if let Err(e) = Box::pin(me.handle_actor_msg(msg)).await {
922                            warn!(session_id = me.session_id, "{}", e);
923                            me.event_sender
924                                .send(SessionEvent::Error {
925                                    track_id: me.session_id.clone(),
926                                    timestamp: crate::media::get_timestamp(),
927                                    sender: "command".to_string(),
928                                    error: e.to_string(),
929                                    code: None,
930                                })
931                                .ok();
932                        }
933                    }
934                    _ = ticker.tick() => {
935                        Box::pin(me.check_input_timeout(&mut runtime)).await;
936                    }
937                    _ = &mut media_serve => {
938                        info!(session_id = me.session_id, "media stream loop done");
939                        break;
940                    }
941                    _ = me.cancel_token.cancelled() => {
942                        info!(session_id = me.session_id, "call cancelled - cleaning up resources");
943                        break;
944                    }
945                }
946            }
947        };
948
949        tokio::join!(
950            self.dump_loop(self.dump_events, dump_cmd_receiver, dump_event_receiver),
951            actor
952        );
953        Ok(())
954    }
955
956    /// Wait-input silence timeout tick (formerly its own loop + mutex).
957    async fn check_input_timeout(&self, runtime: &mut CallRuntime) {
958        let (start_time, expire) = runtime.input_timeout_expire;
959        if expire > 0 && crate::media::get_timestamp() >= start_time + expire as u64 {
960            info!(session_id = self.session_id, "wait input timeout reached");
961            runtime.input_timeout_expire = (0, 0);
962            self.event_sender
963                .send(SessionEvent::Silence {
964                    track_id: self.server_side_track_id.clone(),
965                    timestamp: crate::media::get_timestamp(),
966                    start_time,
967                    duration: expire as u64,
968                    samples: None,
969                    refer: Some(false),
970                })
971                .ok();
972        }
973    }
974
975    /// Handle a session event (formerly the concurrent event-hook loop).
976    async fn handle_event(&self, runtime: &mut CallRuntime, event: SessionEvent) {
977        match event {
978            SessionEvent::Speaking { .. }
979            | SessionEvent::Dtmf { .. }
980            | SessionEvent::AsrDelta { .. }
981            | SessionEvent::AsrFinal { .. }
982            | SessionEvent::TrackStart { .. } => {
983                runtime.input_timeout_expire = (0, 0);
984            }
985            SessionEvent::TrackEnd {
986                track_id,
987                play_id,
988                ssrc,
989                auto_hangup,
990                ..
991            } => {
992                if track_id != self.server_side_track_id {
993                    return;
994                }
995
996                if play_id != self.current_play() {
997                    debug!(
998                        session_id = self.session_id,
999                        ?play_id,
1000                        current = ?self.current_play(),
1001                        "ignoring interrupted track end"
1002                    );
1003                    return;
1004                }
1005                self.set_current_play(None);
1006                let moh_path = self.moh_path();
1007                let wait_timeout_val = self.take_wait_input_timeout();
1008
1009                if let Some(path) = moh_path {
1010                    info!(session_id = self.session_id, "looping moh: {}", path);
1011                    let ssrc = rand::random::<u32>();
1012                    let file_track = self.make_file_track(path.clone(), ssrc);
1013                    self.update_track_wrapper(Box::new(file_track), Some(path))
1014                        .await;
1015                    return;
1016                }
1017
1018                if let Some(hangup_reason) = auto_hangup {
1019                    info!(
1020                        session_id = self.session_id,
1021                        ssrc, "auto hangup when track end track_id:{}", track_id
1022                    );
1023                    self.do_hangup(Some(hangup_reason), None, None, None)
1024                        .await
1025                        .ok();
1026                }
1027
1028                if let Some(timeout) = wait_timeout_val {
1029                    runtime.input_timeout_expire = if timeout > 0 {
1030                        (crate::media::get_timestamp(), timeout)
1031                    } else {
1032                        (0, 0)
1033                    };
1034                }
1035            }
1036            SessionEvent::Interrupt { receiver } => {
1037                let track_id = receiver.unwrap_or_else(|| self.server_side_track_id.clone());
1038                if track_id == self.server_side_track_id {
1039                    debug!(
1040                        session_id = self.session_id,
1041                        "received interrupt event, stopping playback"
1042                    );
1043                    self.do_interrupt(true).await.ok();
1044                }
1045            }
1046            SessionEvent::Inactivity { track_id, .. } => {
1047                info!(
1048                    session_id = self.session_id,
1049                    track_id, "inactivity timeout reached, hanging up"
1050                );
1051                self.do_hangup(
1052                    Some(CallRecordHangupReason::InactivityTimeout),
1053                    None,
1054                    None,
1055                    None,
1056                )
1057                .await
1058                .ok();
1059            }
1060            SessionEvent::Hangup { refer, .. } => {
1061                // Check if we need to resume ASR after refer hangup
1062                if refer == Some(true) {
1063                    if let Some((refer_ssrc, asr_option)) = self.take_pending_asr_resume() {
1064                        // Verify it's the refer call that ended
1065                        let is_refer_hangup = self
1066                            .refer_leg
1067                            .load_full()
1068                            .map(|leg| leg.ssrc == refer_ssrc)
1069                            .unwrap_or(false);
1070
1071                        if is_refer_hangup {
1072                            info!(
1073                                session_id = self.session_id,
1074                                "Refer call ended, resuming parent ASR"
1075                            );
1076
1077                            // Resume ASR
1078                            match self
1079                                .app_state
1080                                .stream_engine
1081                                .create_asr_processor(
1082                                    self.server_side_track_id.clone(),
1083                                    self.cancel_token.child_token(),
1084                                    asr_option,
1085                                    self.event_sender.clone(),
1086                                )
1087                                .await
1088                            {
1089                                Ok(asr_processor) => {
1090                                    if let Err(e) = self
1091                                        .media_stream
1092                                        .append_processor(&self.server_side_track_id, asr_processor)
1093                                        .await
1094                                    {
1095                                        warn!(
1096                                            session_id = self.session_id,
1097                                            "Failed to resume ASR after refer: {}", e
1098                                        );
1099                                    }
1100                                }
1101                                Err(e) => {
1102                                    warn!(
1103                                        session_id = self.session_id,
1104                                        "Failed to create ASR processor for resume: {}", e
1105                                    );
1106                                }
1107                            }
1108                        }
1109                    }
1110                }
1111            }
1112            SessionEvent::Error { track_id, .. } => {
1113                if track_id != self.server_side_track_id {
1114                    return;
1115                }
1116
1117                let moh_info = {
1118                    let path = self.moh_path();
1119                    path.map(|path| {
1120                        let fallback = "./config/sounds/refer_moh.wav".to_string();
1121                        if path != fallback && std::path::Path::new(&fallback).exists() {
1122                            info!(
1123                                session_id = self.session_id,
1124                                "moh error, switching to fallback: {}", fallback
1125                            );
1126                            self.set_moh(Some(fallback.clone()));
1127                            fallback
1128                        } else {
1129                            info!(
1130                                session_id = self.session_id,
1131                                "looping moh on error: {}", path
1132                            );
1133                            path
1134                        }
1135                    })
1136                };
1137
1138                if let Some(next_path) = moh_info {
1139                    let ssrc = rand::random::<u32>();
1140                    let file_track = self.make_file_track(next_path.clone(), ssrc);
1141                    self.update_track_wrapper(Box::new(file_track), Some(next_path))
1142                        .await;
1143                }
1144            }
1145            SessionEvent::Hold { on_hold, .. } => {
1146                self.bridge_paused.store(on_hold, Ordering::Relaxed);
1147            }
1148            _ => {}
1149        }
1150    }
1151
1152    /// Completion of background work spawned by a `do_*` command.
1153    async fn handle_actor_msg(&self, msg: ActorMsg) -> Result<()> {
1154        match msg {
1155            ActorMsg::ReferDone {
1156                track_id,
1157                forward_dtmf,
1158                result,
1159            } => match result {
1160                Ok(answer) => {
1161                    self.media_stream
1162                        .set_track_refer(&track_id, Some(true))
1163                        .await;
1164                    if !forward_dtmf {
1165                        self.media_stream
1166                            .set_track_dtmf_forward(&track_id, false)
1167                            .await;
1168                    }
1169                    self.event_sender
1170                        .send(SessionEvent::Answer {
1171                            timestamp: crate::media::get_timestamp(),
1172                            track_id,
1173                            sdp: answer,
1174                            refer: Some(true),
1175                        })
1176                        .ok();
1177                    Ok(())
1178                }
1179                Err(e) => {
1180                    warn!(
1181                        session_id = self.session_id,
1182                        "failed to create refer sip track: {}", e
1183                    );
1184                    self.emit_reject_from_rsip_error(track_id, true, &e);
1185                    Err(e.into())
1186                }
1187            },
1188        }
1189    }
1190
1191    async fn dispatch(&self, runtime: &mut CallRuntime, command: Command) -> Result<()> {
1192        match command {
1193            Command::Invite { option } => self.do_invite(runtime, option).await,
1194            Command::Accept { option } => self.do_accept(option).await,
1195            Command::Reject { reason, code } => {
1196                self.do_reject(code.map(|c| (c as u16).into()), Some(reason))
1197                    .await
1198            }
1199            Command::Ringing { .. } => self.do_ringing(command).await,
1200            Command::Tts { .. } => self.do_tts(command).await,
1201            Command::Play { .. } => self.do_play(command).await,
1202            Command::Hangup {
1203                reason,
1204                initiator,
1205                headers,
1206                refer,
1207            } => {
1208                let reason = reason.map(|r| {
1209                    r.parse::<CallRecordHangupReason>()
1210                        .unwrap_or(CallRecordHangupReason::BySystem)
1211                });
1212                self.do_hangup(reason, initiator, headers, refer).await
1213            }
1214            Command::Refer {
1215                caller,
1216                callee,
1217                options,
1218            } => self.do_refer(runtime, caller, callee, options).await,
1219            Command::Message {
1220                body,
1221                content_type,
1222                headers,
1223                refer,
1224            } => self.do_message(body, content_type, headers, refer).await,
1225            Command::Bridge { target_session_id } => self.do_bridge(target_session_id).await,
1226            Command::Unbridge { target_session_id } => self.do_unbridge(target_session_id).await,
1227            Command::Mute { track_id } => self.do_mute(track_id).await,
1228            Command::Unmute { track_id } => self.do_unmute(track_id).await,
1229            Command::Pause {} => self.do_pause().await,
1230            Command::Resume {} => self.do_resume().await,
1231            Command::Interrupt {
1232                graceful: passage,
1233                fade_out_ms: _,
1234            } => self.do_interrupt(passage.unwrap_or_default()).await,
1235            Command::History { speaker, text } => self.do_history(speaker, text).await,
1236            Command::Custom { sender, data } => self.do_custom(sender, data),
1237            Command::AddIceCandidate {
1238                candidate,
1239                sdp_mid,
1240                sdp_mline_index,
1241            } => {
1242                self.media_stream
1243                    .add_ice_candidate(&candidate, sdp_mid.as_deref(), sdp_mline_index)
1244                    .await
1245            }
1246        }
1247    }
1248
1249    fn build_record_option(&self, option: &CallOption) -> Option<RecorderOption> {
1250        if let Some(recorder_option) = &option.recorder {
1251            let mut recorder_file = recorder_option.recorder_file.clone();
1252            if recorder_file.contains("{id}") {
1253                recorder_file = recorder_file.replace("{id}", &self.session_id);
1254            }
1255
1256            let recorder_file = if recorder_file.is_empty() {
1257                self.app_state.get_recorder_file(&self.session_id)
1258            } else {
1259                let p = Path::new(&recorder_file);
1260                p.is_absolute()
1261                    .then(|| recorder_file.clone())
1262                    .unwrap_or_else(|| self.app_state.get_recorder_file(&recorder_file))
1263            };
1264            info!(
1265                session_id = self.session_id,
1266                recorder_file, "created recording file"
1267            );
1268
1269            let track_samplerate = self.track_config.samplerate;
1270            let recorder_samplerate = if track_samplerate > 0 {
1271                track_samplerate
1272            } else {
1273                recorder_option.samplerate
1274            };
1275            let recorder_ptime = if recorder_option.ptime == 0 {
1276                200
1277            } else {
1278                recorder_option.ptime
1279            };
1280            let requested_format = recorder_option
1281                .format
1282                .unwrap_or(self.app_state.config.recorder_format());
1283            let format = requested_format.effective();
1284            if requested_format != format {
1285                warn!(
1286                    session_id = self.session_id,
1287                    requested = requested_format.extension(),
1288                    "Recorder format fallback to wav due to unsupported feature"
1289                );
1290            }
1291            let mut recorder_config = RecorderOption {
1292                recorder_file,
1293                samplerate: recorder_samplerate,
1294                ptime: recorder_ptime,
1295                format: Some(format),
1296            };
1297            recorder_config.ensure_path_extension(format);
1298            Some(recorder_config)
1299        } else {
1300            None
1301        }
1302    }
1303
1304    async fn invite_or_accept(&self, mut option: CallOption, sender: String) -> Result<CallOption> {
1305        // Merge with existing configuration (e.g., from playbook)
1306        {
1307            let state = self.progress.load_full();
1308            option = state.merge_option(option);
1309        }
1310
1311        option.check_default();
1312        if let Some(opt) = self.build_record_option(&option) {
1313            self.media_stream.update_recorder_option(opt).await;
1314        }
1315        self.ensure_call_ambiance(&option).await;
1316
1317        if let Some(opt) = &option.media_pass {
1318            let track_id = self.server_side_track_id.clone();
1319            let cancel_token = self.cancel_token.child_token();
1320            let ssrc = rand::random::<u32>();
1321            let media_pass_track = MediaPassTrack::new(
1322                self.session_id.clone(),
1323                ssrc,
1324                track_id,
1325                cancel_token,
1326                opt.clone(),
1327            );
1328            self.update_track_wrapper(Box::new(media_pass_track), None)
1329                .await;
1330        }
1331
1332        info!(
1333            session_id = self.session_id,
1334            call_type = ?self.call_type,
1335            sender,
1336            ?option,
1337            "caller with option"
1338        );
1339
1340        match self.setup_caller_track(&option).await {
1341            Ok(_) => return Ok(option),
1342            Err(e) => {
1343                self.app_state
1344                    .total_failed_calls
1345                    .fetch_add(1, std::sync::atomic::Ordering::Relaxed);
1346                let error_event = crate::event::SessionEvent::Error {
1347                    track_id: self.session_id.clone(),
1348                    timestamp: crate::media::get_timestamp(),
1349                    sender,
1350                    error: e.to_string(),
1351                    code: None,
1352                };
1353                self.event_sender.send(error_event).ok();
1354                self.hangup_now(Some(CallRecordHangupReason::BySystem))
1355                    .await;
1356                return Err(e);
1357            }
1358        }
1359    }
1360
1361    async fn do_invite(&self, runtime: &mut CallRuntime, option: CallOption) -> Result<()> {
1362        // Run the INVITE handshake in the background so the actor keeps
1363        // serving media (and everything else) while the call rings - same
1364        // reasoning as do_refer below. invite_or_accept blocks on the SIP
1365        // transaction for the entire ring duration; handling that inline on
1366        // the actor's own select loop would freeze media_stream.serve() (and
1367        // therefore all live audio bridging for this leg) for just as long.
1368        let me = runtime
1369            .me
1370            .clone()
1371            .ok_or_else(|| anyhow::anyhow!("invite is only supported inside serve()"))?;
1372        crate::spawn(async move {
1373            if let Err(e) = me.invite_or_accept(option, "invite".to_string()).await {
1374                warn!(session_id = me.session_id, "{}", e);
1375                me.event_sender
1376                    .send(SessionEvent::Error {
1377                        track_id: me.session_id.clone(),
1378                        timestamp: crate::media::get_timestamp(),
1379                        sender: "command".to_string(),
1380                        error: e.to_string(),
1381                        code: None,
1382                    })
1383                    .ok();
1384            }
1385        });
1386        Ok(())
1387    }
1388
1389    async fn do_accept(&self, mut option: CallOption) -> Result<()> {
1390        let has_pending = self.has_pending_invite();
1391        let ready_to_answer_val = !self.has_ready_to_answer();
1392
1393        if ready_to_answer_val {
1394            if !has_pending {
1395                // emit reject event
1396                warn!(session_id = self.session_id, "no pending call to accept");
1397                let rejet_event = crate::event::SessionEvent::Reject {
1398                    track_id: self.session_id.clone(),
1399                    timestamp: crate::media::get_timestamp(),
1400                    reason: "no pending call".to_string(),
1401                    refer: None,
1402                    code: Some(486),
1403                };
1404                self.event_sender.send(rejet_event).ok();
1405                self.hangup_now(Some(CallRecordHangupReason::BySystem))
1406                    .await;
1407                return Err(anyhow::anyhow!("no pending call to accept"));
1408            }
1409            option = self.invite_or_accept(option, "accept".to_string()).await?;
1410        } else {
1411            option.check_default();
1412            if let Some(opt) = self.build_record_option(&option) {
1413                self.media_stream.update_recorder_option(opt).await;
1414            }
1415            self.set_option(option.clone());
1416            self.ensure_call_ambiance(&option).await;
1417        }
1418        info!(session_id = self.session_id, ?option, "accepting call");
1419        let ready = self.take_ready_to_answer();
1420        if let Some(ready) = ready {
1421            // Exclusive since `take` swapped it out and the actor serializes
1422            // commands, so the unwrap cannot race another holder.
1423            let ReadyAnswer {
1424                answer,
1425                track: pending_track,
1426                dialog,
1427            } = match Arc::try_unwrap(ready) {
1428                Ok(ready) => ready,
1429                Err(_) => {
1430                    warn!(
1431                        session_id = self.session_id,
1432                        "ready_to_answer held elsewhere; skipping accept"
1433                    );
1434                    return Ok(());
1435                }
1436            };
1437            info!(session_id = self.session_id, "ready to answer with track");
1438
1439            let headers = vec![rsipstack::rsip::Header::ContentType(
1440                "application/sdp".to_string().into(),
1441            )];
1442
1443            match dialog.accept(Some(headers), Some(answer.as_bytes().to_vec())) {
1444                Ok(_) => {
1445                    self.leg().update_progress(|p| {
1446                        p.answer = Some(answer.clone());
1447                        p.answer_time.get_or_insert_with(Utc::now);
1448                    });
1449                    self.finish_caller_stack(&option, pending_track).await?;
1450                }
1451                Err(e) => {
1452                    warn!(session_id = self.session_id, "failed to accept call: {}", e);
1453                    return Err(anyhow::anyhow!("failed to accept call"));
1454                }
1455            }
1456        }
1457
1458        // Non-SIP call types (WebSocket/Webrtc) created by an inbound SIP
1459        // INVITE never go through `ready_to_answer`; the underlying dialog is
1460        // answered here. Without this the carrier leg stays in `Trying` until
1461        // the far end times out and CANCELs (production: VOS3000 20s timeout).
1462        if let Some(pending) = self.take_pending_sip_answer() {
1463            let Ok(pending) = Arc::try_unwrap(pending) else {
1464                warn!(
1465                    session_id = self.session_id,
1466                    "pending sip answer held elsewhere; skipping sip accept"
1467                );
1468                return Ok(());
1469            };
1470            let headers = vec![rsipstack::rsip::Header::ContentType(
1471                "application/sdp".to_string().into(),
1472            )];
1473            match pending
1474                .dialog
1475                .accept(Some(headers), Some(pending.answer.as_bytes().to_vec()))
1476            {
1477                Ok(_) => {
1478                    info!(
1479                        session_id = self.session_id,
1480                        "answered underlying sip dialog"
1481                    );
1482                    self.leg().update_progress(|p| {
1483                        p.answer = Some(pending.answer.clone());
1484                        p.answer_time.get_or_insert_with(Utc::now);
1485                    });
1486                    // Register the SIP leg so customer audio is bridged with
1487                    // the caller track (and later the refer leg).
1488                    self.media_stream.update_track(pending.track, None).await;
1489                }
1490                Err(e) => {
1491                    warn!(
1492                        session_id = self.session_id,
1493                        "failed to accept underlying sip dialog: {}", e
1494                    );
1495                }
1496            }
1497        }
1498        Ok(())
1499    }
1500
1501    async fn do_reject(
1502        &self,
1503        code: Option<rsipstack::rsip::StatusCode>,
1504        reason: Option<String>,
1505    ) -> Result<()> {
1506        if let Some(pending) = self.take_pending_sip_answer() {
1507            info!(
1508                session_id = self.session_id,
1509                ?reason,
1510                ?code,
1511                "rejecting underlying sip dialog"
1512            );
1513            if let Ok(pending) = Arc::try_unwrap(pending) {
1514                pending.dialog.reject(code.clone(), reason.clone()).ok();
1515                self.invitation.dialog_layer.remove_dialog(&pending.dialog.id());
1516            }
1517        }
1518        match self
1519            .invitation
1520            .find_dialog_id_by_session_id(&self.session_id)
1521        {
1522            Some(id) => {
1523                info!(
1524                    session_id = self.session_id,
1525                    ?reason,
1526                    ?code,
1527                    "rejecting call"
1528                );
1529                let result = self.invitation.hangup(id, code, reason).await;
1530                if result.is_ok() {
1531                    self.cancel_token.cancel();
1532                }
1533                result
1534            }
1535            None => {
1536                if let Some(ready) = self.take_ready_to_answer() {
1537                    info!(
1538                        session_id = self.session_id,
1539                        ?reason,
1540                        ?code,
1541                        "rejecting call from ready_to_answer"
1542                    );
1543                    let dialog = &ready.dialog;
1544                    let dialog_id = dialog.id();
1545                    dialog.reject(code, reason).ok();
1546                    self.invitation.dialog_layer.remove_dialog(&dialog_id);
1547                    self.cancel_token.cancel();
1548                }
1549                Ok(())
1550            }
1551        }
1552    }
1553
1554    async fn do_ringing(&self, command: Command) -> Result<()> {
1555        let Command::Ringing {
1556            ringtone,
1557            recorder,
1558            early_media,
1559        } = command
1560        else {
1561            unreachable!("do_ringing called with non-Ringing command");
1562        };
1563
1564        if !self.has_ready_to_answer() {
1565            let option = CallOption {
1566                recorder,
1567                ..Default::default()
1568            };
1569            let _ = self.invite_or_accept(option, "ringing".to_string()).await?;
1570        }
1571
1572        if let Some(ready) = self.ready_to_answer.load_full() {
1573            let (headers, body) = if early_media.unwrap_or_default() || ringtone.is_some() {
1574                let headers = vec![rsipstack::rsip::Header::ContentType(
1575                    "application/sdp".to_string().into(),
1576                )];
1577                (Some(headers), Some(ready.answer.as_bytes().to_vec()))
1578            } else {
1579                (None, None)
1580            };
1581
1582            ready.dialog.ringing(headers, body).ok();
1583            info!(
1584                session_id = self.session_id,
1585                ringtone, early_media, "playing ringtone"
1586            );
1587            if let Some(ringtone_url) = ringtone {
1588                self.do_play(Command::Play {
1589                    url: ringtone_url,
1590                    play_id: None,
1591                    auto_hangup: None,
1592                    wait_input_timeout: None,
1593                    offset_ms: None,
1594                })
1595                .await
1596                .ok();
1597            } else {
1598                info!(session_id = self.session_id, "no ringtone to play");
1599            }
1600        }
1601        Ok(())
1602    }
1603
1604    async fn do_tts(&self, command: Command) -> Result<()> {
1605        let Command::Tts {
1606            text,
1607            speaker,
1608            play_id,
1609            auto_hangup,
1610            streaming,
1611            end_of_stream,
1612            option,
1613            wait_input_timeout,
1614            base64,
1615            cache_key,
1616        } = command
1617        else {
1618            unreachable!("do_tts called with non-Tts command");
1619        };
1620        let streaming = streaming.unwrap_or_default();
1621        let end_of_stream = end_of_stream.unwrap_or_default();
1622        let base64 = base64.unwrap_or_default();
1623
1624        let tts_option = {
1625            let call_state = self.progress.load_full();
1626            match call_state.option.clone().unwrap_or_default().tts {
1627                Some(opt) => opt.merge_with(option),
1628                None => {
1629                    if let Some(opt) = option {
1630                        opt
1631                    } else {
1632                        return Err(anyhow::anyhow!("no tts option available"));
1633                    }
1634                }
1635            }
1636        };
1637        let speaker = match speaker {
1638            Some(s) => Some(s),
1639            None => tts_option.speaker.clone(),
1640        };
1641
1642        let mut play_command = SynthesisCommand {
1643            text,
1644            speaker,
1645            play_id: play_id.clone(),
1646            streaming,
1647            end_of_stream: if !streaming { true } else { end_of_stream },
1648            option: tts_option,
1649            base64,
1650            cache_key,
1651            auto_hangup,
1652        };
1653        info!(
1654            session_id = self.session_id,
1655            provider = ?play_command.option.provider,
1656            text = %play_command.text.chars().take(10).collect::<String>(),
1657            speaker = play_command.speaker.as_deref(),
1658            auto_hangup = auto_hangup.unwrap_or_default(),
1659            play_id = play_command.play_id.as_deref(),
1660            streaming = play_command.streaming,
1661            end_of_stream = play_command.end_of_stream,
1662            wait_input_timeout = wait_input_timeout.unwrap_or_default(),
1663            is_base64 = play_command.base64,
1664            cache_key = play_command.cache_key.as_deref(),
1665            "new synthesis"
1666        );
1667
1668        let ssrc = rand::random::<u32>();
1669        let (should_interrupt, picked_ssrc) = {
1670            let existing_handle = self.tts_handle.load_full();
1671            let current_play_id = self.current_play();
1672
1673            let (target_ssrc, changed) = if let Some(handle) = &existing_handle {
1674                if play_id.is_some() && current_play_id != play_id {
1675                    (ssrc, true)
1676                } else {
1677                    (handle.ssrc, false)
1678                }
1679            } else {
1680                (ssrc, false)
1681            };
1682
1683            // Defer auto_hangup setting until after potential interrupt.
1684            // auto_hangup will be set below after do_interrupt() to avoid being cleared.
1685            self.set_wait_input_timeout(wait_input_timeout);
1686
1687            self.set_current_play(play_id.clone());
1688            (changed, target_ssrc)
1689        };
1690
1691        if should_interrupt {
1692            let _ = self.do_interrupt(false).await;
1693        }
1694
1695        // auto_hangup rides on the track: armed via `with_auto_hangup` when a
1696        // new track is created, or by the command itself for an existing track.
1697
1698        let existing_handle = self.tts_handle.load_full();
1699        if let Some(tts_handle) = existing_handle {
1700            match tts_handle.try_send(play_command) {
1701                Ok(_) => return Ok(()),
1702                Err(e) => {
1703                    play_command = e.0;
1704                }
1705            }
1706        }
1707
1708        let (new_handle, tts_track) = StreamEngine::create_tts_track(
1709            self.app_state.stream_engine.clone(),
1710            self.cancel_token.child_token(),
1711            self.session_id.clone(),
1712            self.server_side_track_id.clone(),
1713            picked_ssrc,
1714            play_id.clone(),
1715            streaming,
1716            &play_command.option,
1717            play_command.auto_hangup,
1718        )
1719        .await?;
1720
1721        new_handle.try_send(play_command)?;
1722        self.tts_handle.store(Some(Arc::new(new_handle)));
1723        self.update_track_wrapper(tts_track, play_id).await;
1724        Ok(())
1725    }
1726
1727    async fn do_play(&self, command: Command) -> Result<()> {
1728        let Command::Play {
1729            url,
1730            play_id,
1731            auto_hangup,
1732            wait_input_timeout,
1733            offset_ms,
1734        } = command
1735        else {
1736            unreachable!("do_play called with non-Play command");
1737        };
1738        let ssrc = rand::random::<u32>();
1739        info!(
1740            session_id = self.session_id,
1741            ssrc, url, play_id, auto_hangup, "play file track"
1742        );
1743
1744        let play_id = play_id.or(Some(url.clone()));
1745
1746        // make_file_track uses the path as play_id; honor an explicit play_id here.
1747        let mut file_track = self
1748            .make_file_track(url, ssrc)
1749            .with_play_id(play_id.clone())
1750            .with_auto_hangup(auto_hangup);
1751
1752        if let Some(offset) = offset_ms {
1753            file_track = file_track.with_offset_ms(offset);
1754        }
1755
1756        {
1757            self.tts_handle.store(None);
1758            self.set_wait_input_timeout(wait_input_timeout);
1759        }
1760
1761        self.update_track_wrapper(Box::new(file_track), play_id)
1762            .await;
1763        Ok(())
1764    }
1765
1766    async fn do_history(&self, speaker: String, text: String) -> Result<()> {
1767        self.event_sender
1768            .send(SessionEvent::AddHistory {
1769                sender: Some(self.session_id.clone()),
1770                timestamp: crate::media::get_timestamp(),
1771                speaker,
1772                text,
1773            })
1774            .map(|_| ())
1775            .map_err(Into::into)
1776    }
1777
1778    fn do_custom(&self, sender: Option<String>, data: serde_json::Value) -> Result<()> {
1779        self.event_sender
1780            .send(SessionEvent::Custom {
1781                timestamp: crate::media::get_timestamp(),
1782                sender,
1783                data,
1784            })
1785            .map(|_| ())
1786            .map_err(Into::into)
1787    }
1788
1789    async fn do_interrupt(&self, graceful: bool) -> Result<()> {
1790        {
1791            self.tts_handle.store(None);
1792            self.set_moh(None);
1793        }
1794        self.media_stream
1795            .remove_track(&self.server_side_track_id, graceful)
1796            .await;
1797        Ok(())
1798    }
1799    async fn do_pause(&self) -> Result<()> {
1800        self.media_stream
1801            .pause_playback(self.server_side_track_id.clone())
1802            .await?;
1803        Ok(())
1804    }
1805    async fn do_resume(&self) -> Result<()> {
1806        self.media_stream
1807            .resume_playback(self.server_side_track_id.clone())
1808            .await?;
1809        Ok(())
1810    }
1811    async fn do_hangup(
1812        &self,
1813        reason: Option<CallRecordHangupReason>,
1814        initiator: Option<String>,
1815        headers: Option<HashMap<String, String>>,
1816        refer: Option<bool>,
1817    ) -> Result<()> {
1818        info!(
1819            session_id = self.session_id,
1820            ?reason,
1821            ?initiator,
1822            ?headers,
1823            ?refer,
1824            "do_hangup"
1825        );
1826
1827        let hangup_reason = match initiator.as_deref() {
1828            Some("caller") => CallRecordHangupReason::ByCaller,
1829            Some("callee") => CallRecordHangupReason::ByCallee,
1830            Some("system") => CallRecordHangupReason::Autohangup,
1831            _ => reason.unwrap_or(CallRecordHangupReason::BySystem),
1832        };
1833
1834        match refer {
1835            Some(true) => {
1836                // Hang up only the refer call, leaving the main call alive.
1837                let refer_token = self.take_refer_call_token();
1838                let refer_leg = self.refer_leg_value();
1839                let has_refer_leg = refer_leg.is_some();
1840                if let Some(leg) = refer_leg {
1841                    if let Some(headers) = headers {
1842                        let h_val = serde_json::to_value(&headers).unwrap_or_default();
1843                        leg.set_extra("_hangup_headers", h_val);
1844                    }
1845                    // Set reason before cancelling so on_terminated() sees it.
1846                    let reason = hangup_reason.clone();
1847                    leg.update_progress(|p| p.set_hangup_reason(reason.clone()));
1848                }
1849                if let Some(token) = refer_token {
1850                    token.cancel();
1851                }
1852                if has_refer_leg {
1853                    self.media_stream
1854                        .remove_track(&self.server_side_track_id, false)
1855                        .await;
1856                }
1857            }
1858            _ => {
1859                if let Some(headers) = headers {
1860                    let h_val = serde_json::to_value(&headers).unwrap_or_default();
1861                    self.leg().set_extra("_hangup_headers", h_val);
1862                }
1863                self.leg()
1864                    .update_progress(|p| p.set_hangup_reason(hangup_reason.clone()));
1865                let refer_token = self.take_refer_call_token();
1866                self.media_stream
1867                    .stop(Some(hangup_reason.to_string()), initiator);
1868                if let Some(token) = refer_token {
1869                    token.cancel();
1870                }
1871            }
1872        }
1873        tokio::task::yield_now().await;
1874        Ok(())
1875    }
1876
1877    /// Initiate a refer (attended transfer) leg.
1878    ///
1879    /// The INVITE handshake can take up to `timeout` seconds, so it runs in a
1880    /// spawned task and reports back through [`ActorMsg::ReferDone`]; the
1881    /// actor loop keeps serving events (e.g. MOH looping) meanwhile.
1882    async fn do_refer(
1883        &self,
1884        runtime: &mut CallRuntime,
1885        caller: String,
1886        callee: String,
1887        refer_option: Option<ReferOption>,
1888    ) -> Result<()> {
1889        self.do_interrupt(false).await.ok();
1890
1891        // Check if we should pause parent ASR
1892        let pause_parent_asr = refer_option
1893            .as_ref()
1894            .and_then(|o| o.pause_parent_asr)
1895            .unwrap_or(false);
1896
1897        // Save original ASR option for later resume
1898        let original_asr_option = if pause_parent_asr {
1899            self.progress
1900                .load_full()
1901                .option
1902                .as_ref()
1903                .and_then(|o| o.asr.clone())
1904        } else {
1905            None
1906        };
1907
1908        // Pause parent ASR if requested
1909        if pause_parent_asr {
1910            info!(
1911                session_id = self.session_id,
1912                "Pausing parent call ASR during refer"
1913            );
1914            self.media_stream
1915                .remove_processor::<crate::media::asr_processor::AsrProcessor>(
1916                    &self.server_side_track_id,
1917                )
1918                .await
1919                .ok();
1920        }
1921
1922        let mut moh = refer_option.as_ref().and_then(|o| o.moh.clone());
1923        if let Some(ref path) = moh {
1924            if !path.starts_with("http") && !std::path::Path::new(path).exists() {
1925                let fallback = "./config/sounds/refer_moh.wav";
1926                if std::path::Path::new(fallback).exists() {
1927                    info!(
1928                        session_id = self.session_id,
1929                        "moh {} not found, using fallback {}", path, fallback
1930                    );
1931                    moh = Some(fallback.to_string());
1932                }
1933            }
1934        }
1935        let ref_call_id = refer_option
1936            .as_ref()
1937            .and_then(|o| o.call_id.clone())
1938            .unwrap_or_else(|| format!("ref-{}-{}", rand::random::<u32>(), self.session_id));
1939
1940        let session_id = self.session_id.clone();
1941        let track_id = self.server_side_track_id.clone();
1942
1943        let (recorder, parent_caller) = {
1944            let progress = self.progress.load_full();
1945            let option = progress.option.as_ref();
1946            (
1947                option.map(|o| o.recorder.clone()).unwrap_or_default(),
1948                option.and_then(|o| o.caller.clone()),
1949            )
1950        };
1951        let caller = if caller.trim().is_empty() {
1952            parent_caller.unwrap_or_default()
1953        } else {
1954            caller
1955        };
1956
1957        let mut call_option = CallOption {
1958            caller: Some(caller),
1959            callee: Some(callee.clone()),
1960            sip: refer_option.as_ref().and_then(|o| o.sip.clone()),
1961            vad: refer_option
1962                .as_ref()
1963                .and_then(|o| o.vad.clone())
1964                .map(|mut opts| {
1965                    opts.refer = Some(true);
1966                    opts
1967                }),
1968            asr: refer_option
1969                .as_ref()
1970                .and_then(|o| o.asr.clone())
1971                .map(|mut opts| {
1972                    opts.refer = Some(true);
1973                    opts
1974                }),
1975            denoise: refer_option.as_ref().and_then(|o| o.denoise.clone()),
1976            agc: refer_option.as_ref().and_then(|o| o.agc.clone()),
1977            recorder,
1978            ..Default::default()
1979        };
1980        call_option.check_default();
1981
1982        let mut invite_option = call_option.build_invite_option()?;
1983        invite_option.call_id = Some(ref_call_id.clone());
1984
1985        let headers = invite_option.headers.get_or_insert_with(|| Vec::new());
1986
1987        {
1988            let progress = self.progress.load_full();
1989            if let Some(opt) = progress.option.as_ref() {
1990                if let Some(callee) = opt.callee.as_ref() {
1991                    headers.push(rsipstack::rsip::Header::Other(
1992                        "X-Referred-To".to_string(),
1993                        callee.clone(),
1994                    ));
1995                }
1996                if let Some(caller) = opt.caller.as_ref() {
1997                    headers.push(rsipstack::rsip::Header::Other(
1998                        "X-Referred-From".to_string(),
1999                        caller.clone(),
2000                    ));
2001                }
2002            }
2003        }
2004
2005        headers.push(rsipstack::rsip::Header::Other(
2006            "X-Referred-Id".to_string(),
2007            self.session_id.clone(),
2008        ));
2009
2010        let ssrc = rand::random::<u32>();
2011        let refer_leg = LegShared::new(
2012            ssrc,
2013            true,
2014            CallProgress {
2015                session_id: ref_call_id.clone(),
2016                start_time: Some(Utc::now()),
2017                option: Some(call_option.clone()),
2018                ..Default::default()
2019            },
2020        );
2021        self.set_refer_leg(Some(refer_leg.clone()));
2022
2023        let auto_hangup_requested = refer_option
2024            .as_ref()
2025            .and_then(|o| o.auto_hangup)
2026            .unwrap_or(true);
2027
2028        // auto_hangup rides on the refer leg's TrackEnd (InviteDialogStates).
2029
2030        // Setup ASR resume after refer ends (if not auto_hangup and ASR was paused)
2031        if !auto_hangup_requested && pause_parent_asr && original_asr_option.is_some() {
2032            let asr_option = original_asr_option.unwrap();
2033            self.set_pending_asr_resume((ssrc, asr_option));
2034        }
2035
2036        let timeout_secs = refer_option.as_ref().and_then(|o| o.timeout).unwrap_or(30);
2037        let forward_dtmf = refer_option
2038            .as_ref()
2039            .and_then(|o| o.forward_dtmf)
2040            .unwrap_or(true);
2041
2042        info!(
2043            session_id = self.session_id,
2044            ssrc,
2045            auto_hangup = auto_hangup_requested,
2046            callee,
2047            timeout_secs,
2048            "do_refer"
2049        );
2050
2051        let refer_cancel_token = self.cancel_token.child_token();
2052        self.set_refer_call_token(refer_cancel_token.clone());
2053
2054        // Run the INVITE handshake in the background so the actor keeps
2055        // serving events (MOH looping, auto-hangup...) while it is in flight.
2056        let me = runtime
2057            .me
2058            .clone()
2059            .ok_or_else(|| anyhow::anyhow!("refer is only supported inside serve()"))?;
2060        let actor_tx = runtime.actor_tx.clone();
2061        let event_sender = self.event_sender.clone();
2062        let log_session_id = session_id.clone();
2063        let reject_track_id = track_id.clone();
2064        crate::spawn(async move {
2065            let out = crate::call::tracks::OutgoingLeg {
2066                cancel_token: refer_cancel_token,
2067                leg: refer_leg,
2068                track_id: track_id.clone(),
2069                invite_option,
2070                call_option,
2071                moh,
2072                auto_hangup: auto_hangup_requested,
2073            };
2074            let result = match tokio::time::timeout(
2075                Duration::from_secs(timeout_secs as u64),
2076                me.create_outgoing_sip_track(out),
2077            )
2078            .await
2079            {
2080                Ok(res) => res,
2081                Err(_) => {
2082                    warn!(
2083                        session_id = log_session_id,
2084                        "refer sip track creation timed out after {} seconds", timeout_secs
2085                    );
2086                    event_sender
2087                        .send(SessionEvent::Reject {
2088                            track_id: reject_track_id,
2089                            timestamp: crate::media::get_timestamp(),
2090                            reason: "Timeout when refer".into(),
2091                            code: Some(408),
2092                            refer: Some(true),
2093                        })
2094                        .ok();
2095                    Err(rsipstack::Error::Error(
2096                        "refer sip track creation timed out".to_string(),
2097                    ))
2098                }
2099            };
2100            me.set_moh(None);
2101            actor_tx
2102                .send(ActorMsg::ReferDone {
2103                    track_id,
2104                    forward_dtmf,
2105                    result,
2106                })
2107                .await
2108                .ok();
2109        });
2110
2111        Ok(())
2112    }
2113
2114    async fn do_message(
2115        &self,
2116        body: String,
2117        content_type: Option<String>,
2118        headers: Option<HashMap<String, String>>,
2119        refer: Option<bool>,
2120    ) -> Result<()> {
2121        if !matches!(self.call_type, ActiveCallType::Sip | ActiveCallType::B2bua) {
2122            return Err(anyhow::anyhow!(
2123                "message command is only supported for SIP calls"
2124            ));
2125        }
2126
2127        let dialog_key = if refer == Some(true) {
2128            self.refer_leg_value()
2129                .map(|leg| leg.progress.load_full().session_id.clone())
2130        } else {
2131            Some(self.progress.load_full().session_id.clone())
2132        };
2133
2134        let mut dialog = dialog_key
2135            .as_ref()
2136            .filter(|id| !id.is_empty())
2137            .and_then(|id| self.invitation.dialog_layer.get_dialog_with(id));
2138
2139        if dialog.is_none() {
2140            if let Some(target_id) = dialog_key.as_ref().filter(|id| !id.is_empty()) {
2141                dialog = self
2142                    .invitation
2143                    .dialog_layer
2144                    .all_dialog_ids()
2145                    .into_iter()
2146                    .filter_map(|id| self.invitation.dialog_layer.get_dialog_with(&id))
2147                    .find(|dialog| dialog.id().to_string() == *target_id);
2148            }
2149        }
2150
2151        // Last resort: look up a confirmed client dialog by call id (the
2152        // dialog id for refer legs, the session id otherwise).
2153        if dialog.is_none() {
2154            let call_id = match (refer == Some(true), dialog_key.as_deref()) {
2155                (true, Some(id)) if !id.is_empty() => Some(id),
2156                (false, _) => Some(self.session_id.as_str()),
2157                _ => None,
2158            };
2159            if let Some(call_id) = call_id {
2160                dialog = self
2161                    .invitation
2162                    .dialog_layer
2163                    .get_client_dialog_by_call_id(call_id)
2164                    .into_iter()
2165                    .find(|d| {
2166                        matches!(
2167                            d.state(),
2168                            rsipstack::dialog::dialog::DialogState::Confirmed(_, _)
2169                        )
2170                    })
2171                    .map(rsipstack::dialog::dialog::Dialog::Invite);
2172            }
2173        }
2174
2175        let dialog = dialog.ok_or_else(|| {
2176            anyhow::anyhow!(
2177                "no established SIP dialog found for message command, refer={}",
2178                refer.unwrap_or_default()
2179            )
2180        })?;
2181
2182        let mut sip_headers = vec![rsipstack::rsip::Header::ContentType(
2183            content_type
2184                .clone()
2185                .unwrap_or_else(|| "text/plain;charset=utf-8".to_string())
2186                .into(),
2187        )];
2188        if let Some(headers) = &headers {
2189            sip_headers.extend(crate::sip_util::sip_headers_from_map(headers));
2190        }
2191
2192        info!(
2193            session_id = self.session_id,
2194            dialog_id = %dialog.id(),
2195            content_type = content_type.as_deref().unwrap_or("text/plain;charset=utf-8"),
2196            refer = refer.unwrap_or_default(),
2197            body = %body.chars().take(64).collect::<String>(),
2198            "sending SIP MESSAGE"
2199        );
2200
2201        let response = dialog
2202            .message(Some(sip_headers), Some(body.into_bytes()))
2203            .await?;
2204        match response {
2205            Some(resp)
2206                if resp.status_code.kind() == rsipstack::rsip::StatusCodeKind::Successful =>
2207            {
2208                Ok(())
2209            }
2210            Some(resp) => Err(anyhow::anyhow!(
2211                "SIP MESSAGE rejected with status {}",
2212                resp.status_code
2213            )),
2214            None => Err(anyhow::anyhow!(
2215                "SIP MESSAGE was not sent because dialog is not confirmed"
2216            )),
2217        }
2218    }
2219
2220    fn bridge_track_id(source_session_id: &str, target_session_id: &str) -> TrackId {
2221        format!("bridge:{}:to:{}", source_session_id, target_session_id)
2222    }
2223
2224    async fn do_bridge(&self, target_session_id: String) -> Result<()> {
2225        let target = {
2226            let calls = self.app_state.active_calls.lock().unwrap();
2227            calls.get(&target_session_id).cloned()
2228        };
2229        let target = target.ok_or_else(|| {
2230            anyhow::anyhow!("bridge target session not found: {}", target_session_id)
2231        })?;
2232
2233        if target.session_id == self.session_id {
2234            return Err(anyhow::anyhow!("cannot bridge a call to itself").into());
2235        }
2236
2237        let self_bridge_track_id = Self::bridge_track_id(&self.session_id, &target.session_id);
2238        let target_bridge_track_id = Self::bridge_track_id(&target.session_id, &self.session_id);
2239
2240        self.media_stream
2241            .remove_track(&self_bridge_track_id, false)
2242            .await;
2243        target
2244            .media_stream
2245            .remove_track(&target_bridge_track_id, false)
2246            .await;
2247
2248        let (self_bridge_sender, self_bridge_receiver) = mpsc::channel(25);
2249        let (target_bridge_sender, target_bridge_receiver) = mpsc::channel(25);
2250
2251        let self_paused = self.bridge_paused.clone();
2252        let target_paused = target.bridge_paused.clone();
2253
2254        let self_forwarding_track = ForwardingTrack::new(
2255            self_bridge_track_id.clone(),
2256            self.session_id.clone(),
2257            target_bridge_sender,
2258            self_bridge_receiver,
2259            self.track_config.clone(),
2260            self.cancel_token.child_token(),
2261            rand::random::<u32>(),
2262            self_paused,
2263        );
2264
2265        let target_forwarding_track = ForwardingTrack::new(
2266            target_bridge_track_id.clone(),
2267            target.session_id.clone(),
2268            self_bridge_sender,
2269            target_bridge_receiver,
2270            target.track_config.clone(),
2271            target.cancel_token.child_token(),
2272            rand::random::<u32>(),
2273            target_paused,
2274        );
2275
2276        self.media_stream
2277            .update_track(Box::new(self_forwarding_track), None)
2278            .await;
2279        target
2280            .media_stream
2281            .update_track(Box::new(target_forwarding_track), None)
2282            .await;
2283
2284        info!(
2285            session_id = self.session_id,
2286            target = target_session_id,
2287            self_bridge_track_id,
2288            target_bridge_track_id,
2289            "audio bridge established"
2290        );
2291        Ok(())
2292    }
2293
2294    async fn do_unbridge(&self, target_session_id: String) -> Result<()> {
2295        let target = {
2296            let calls = self.app_state.active_calls.lock().unwrap();
2297            calls.get(&target_session_id).cloned()
2298        };
2299
2300        let self_bridge_track_id = Self::bridge_track_id(&self.session_id, &target_session_id);
2301        self.media_stream
2302            .remove_track(&self_bridge_track_id, false)
2303            .await;
2304
2305        if let Some(target) = target {
2306            let target_bridge_track_id =
2307                Self::bridge_track_id(&target.session_id, &self.session_id);
2308            target
2309                .media_stream
2310                .remove_track(&target_bridge_track_id, false)
2311                .await;
2312            info!(
2313                session_id = self.session_id,
2314                target = target.session_id,
2315                self_bridge_track_id,
2316                target_bridge_track_id,
2317                "audio bridge removed"
2318            );
2319        } else {
2320            info!(
2321                session_id = self.session_id,
2322                target = target_session_id,
2323                self_bridge_track_id,
2324                "audio bridge removed locally; target session not active"
2325            );
2326        }
2327
2328        Ok(())
2329    }
2330
2331    async fn do_mute(&self, track_id: Option<String>) -> Result<()> {
2332        self.media_stream.mute_track(track_id).await;
2333        Ok(())
2334    }
2335
2336    async fn do_unmute(&self, track_id: Option<String>) -> Result<()> {
2337        self.media_stream.unmute_track(track_id).await;
2338        Ok(())
2339    }
2340
2341    pub async fn cleanup(&self) -> Result<()> {
2342        if matches!(self.call_type, ActiveCallType::Sip | ActiveCallType::B2bua) {
2343            self.reject_now(
2344                Some(rsipstack::rsip::StatusCode::Decline),
2345                Some("handler disconnected".to_string()),
2346            )
2347            .await;
2348        }
2349        // A prepared-but-unaccepted SIP answer (non-SIP call types) must not
2350        // leave the carrier leg ringing forever.
2351        if let Some(pending) = self.take_pending_sip_answer() {
2352            if let Ok(pending) = Arc::try_unwrap(pending) {
2353                pending
2354                    .dialog
2355                    .reject(
2356                        Some(rsipstack::rsip::StatusCode::Decline),
2357                        Some("handler disconnected".to_string()),
2358                    )
2359                    .ok();
2360                self.invitation
2361                    .dialog_layer
2362                    .remove_dialog(&pending.dialog.id());
2363            }
2364        }
2365        self.tts_handle.store(None);
2366        self.media_stream.cleanup().await.ok();
2367        Ok(())
2368    }
2369
2370    /// Build the call record from lock-free snapshots; never blocks, so it is
2371    /// safe (and lossless) from synchronous `Drop`.
2372    pub fn get_callrecord(&self) -> Option<CallRecord> {
2373        let progress = self.progress.load_full();
2374        let extras = self.extras.load_full();
2375        let refer_leg = self.refer_leg_value();
2376        Some(build_callrecord(
2377            &progress,
2378            &extras,
2379            refer_leg.as_ref(),
2380            &self.app_state,
2381            self.session_id.clone(),
2382            self.call_type.clone(),
2383        ))
2384    }
2385
2386    async fn dump_to_file(
2387        &self,
2388        dump_file: &mut File,
2389        cmd_receiver: &mut CommandReceiver,
2390        event_receiver: &mut EventReceiver,
2391    ) {
2392        loop {
2393            select! {
2394                _ = self.cancel_token.cancelled() => {
2395                    break;
2396                }
2397                Ok(cmd) = cmd_receiver.recv() => {
2398                    CallRecordEvent::write(CallRecordEventType::Command, cmd, dump_file)
2399                        .await;
2400                }
2401                Ok(event) = event_receiver.recv() => {
2402                    if matches!(event, SessionEvent::Binary{..}) {
2403                        continue;
2404                    }
2405                    CallRecordEvent::write(CallRecordEventType::Event, event, dump_file)
2406                        .await;
2407                }
2408            };
2409        }
2410    }
2411
2412    async fn dump_loop(
2413        &self,
2414        dump_events: bool,
2415        mut dump_cmd_receiver: CommandReceiver,
2416        mut dump_event_receiver: EventReceiver,
2417    ) {
2418        if !dump_events {
2419            return;
2420        }
2421
2422        let file_name = self.app_state.get_dump_events_file(&self.session_id);
2423        let mut dump_file = match File::options()
2424            .create(true)
2425            .append(true)
2426            .open(&file_name)
2427            .await
2428        {
2429            Ok(file) => file,
2430            Err(e) => {
2431                warn!(
2432                    session_id = self.session_id,
2433                    file_name, "failed to open dump events file: {}", e
2434                );
2435                return;
2436            }
2437        };
2438        self.dump_to_file(
2439            &mut dump_file,
2440            &mut dump_cmd_receiver,
2441            &mut dump_event_receiver,
2442        )
2443        .await;
2444
2445        while let Ok(event) = dump_event_receiver.try_recv() {
2446            if matches!(event, SessionEvent::Binary { .. }) {
2447                continue;
2448            }
2449            CallRecordEvent::write(CallRecordEventType::Event, event, &mut dump_file).await;
2450        }
2451    }
2452}
2453
2454/// Cancels the token on drop, guaranteeing shutdown on every exit path of the
2455/// actor loop (normal break, panic, or task abort).
2456struct CancelOnExit<'a>(&'a CancellationToken);
2457
2458impl Drop for CancelOnExit<'_> {
2459    fn drop(&mut self) {
2460        self.0.cancel();
2461    }
2462}
2463
2464impl Drop for ActiveCall {
2465    fn drop(&mut self) {
2466        info!(session_id = self.session_id, "dropping active call");
2467        if let Some(sender) = self.app_state.callrecord_sender.as_ref() {
2468            if let Some(record) = self.get_callrecord() {
2469                if let Err(e) = sender.send(record) {
2470                    warn!(
2471                        session_id = self.session_id,
2472                        "failed to send call record: {}", e
2473                    );
2474                }
2475            }
2476        }
2477    }
2478}