rustdesk-org/webrtc cc6633bc, three commits on 825a0a48, all on the path
that sends without a congestion window:
Both bundlers counted a DATA chunk by its payload alone; with the header and
padding counted, bundles of small chunks stay within the MTU, and the fragment
payload rounds down to 1160 so a full chunk does too. A chunk is fast
retransmitted at most five times, KCP's IKCP_FASTACK_LIMIT.
A frame's chunks go out within microseconds of each other, so on a path that
jitters the send-order rule resent every chunk that landed behind three of
its siblings: 2.7x the payload on the wire at 10ms of jitter, and on a link
without the room for that, a queue that fed on itself. A reordering window,
RACK's, makes evidence count only from what was sent a quarter of an srtt
after the chunk once the path is seen to reorder, widening on the duplicate
TSNs the receiver reports. 5 Mbps, 1% loss, 20ms jitter: 600 of 600 frames
at a 98ms mean where 290 arrived at 6.2s.
A chunk lost at the tail of a burst has only T3-rtx, which ran from floors
sized for a 200ms delayed ack and restarted only on the tail's predecessor's
ack: 600ms and more. Every DATA chunk now carries the I bit, the floors are
KCP's shape, and a fast retransmission restarts the timer. One 200-byte
message per frame at 5% loss: 9 of 600 later than 200ms, from 42.
Random loss without jitter is unchanged at every rate and frame size.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019aokqJuhjvB3kijXtAg5Ns
rustdesk-org/webrtc 825a0a48: without a congestion window a chunk is lost
once three chunks sent after its latest transmission are acked, counted in
send order so retransmitted chunks are covered too, and the fast retransmit
sends every lost chunk at once, as KCP nc=1 does; before, a lost
retransmission waited for T3-rtx. Also fixes the delayed SACK timer never
re-arming, the switch applying to established associations, T3-rtx
resending one chunk when the peer's window is full, and bounds new data to
1 MiB / 1024 chunks in flight like KCP's snd_wnd.
Simulated 35ms one-way, random loss both ways, 30 fps, frames later than
200ms out of 1200: 12 KB at 5% loss 996 -> 55 (KCP 61); 40 KB at 2% loss
1183 -> 20 (KCP 39).
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019aokqJuhjvB3kijXtAg5Ns
The same link that streams over KCP crawls over WebRTC. webrtc-sctp runs
RFC 4960's AIMD: a fast retransmit halves cwnd, a T3 drops it to one MTU, and
slow start only rebuilds it while data is queued behind it. Where the loss is
random rather than congestion - a lossy long-haul link - the rate settles at
the Mathis ceiling MSS/(RTT*sqrt(p)) however idle the link is: about 1.3 Mbps
at 70ms RTT and 1% loss, 0.6 Mbps at 5%, while 1080p wants 2-5 Mbps. KCP's
turbo profile (nc=1) has no congestion window at all.
The fork now carries a switch that bypasses the two places gating sends on
cwnd, and hbb_common turns it on for every peer connection unless
`allow-webrtc-congestion-control` is set - the same opt-in KCP has in
`allow-kcp-congestion-control`, for the reason at `get_kcp_cc_enabled`.
Sender-side only; a browser or an older build on the other end interoperates.
Measured over a simulated link (35ms one-way, random loss both ways, 12 KB
frames at 30fps, 300 frames): at 1% loss the window stretches 9.9s of video to
20.7s with a mean latency of 5.5s; without it the stream stays realtime at a
mean of 113ms. At 3%: 47s and 15s against 10.2s and 290ms.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019aokqJuhjvB3kijXtAg5Ns
The single punch leaves before hbbs has told the controller where to dial, so
it is never in flight at the same time as the controller's SYN: it opens our
NAT, meets nothing, and a gateway that answers it with RST takes the mapping
down with it, leaving the listener waiting on a hole that no longer exists.
Punch again while the controller may still be dialing, and race those punches
against the accept. That is two ways in where there was one: the mapping is
rebuilt if a RST took it, and once the controller sits in SYN_SENT one of the
punches meets its SYN and completes as a simultaneous open - which a punch sent
before the controller had been told anything never could. The crossing reaches
the punch rather than the listener because the two sockets share the address
but only the punch matches the four-tuple, which the tests now pin down.
There is no instant to aim at, and no window either. `Client::connect` sizes
the controller's dial only after our PunchHoleSent, from its own rendezvous
time and the direct failures it has recorded for us: CONNECT_TIMEOUT between
two known-asymmetric NATs that never failed, punch_time_used times three or
six otherwise, floored at a second - so a peer that failed once dials for a
second or two from then on, and none of that reaches this side. The repeats
therefore cover our own ceiling instead, CONNECT_TIMEOUT, which is exactly as
long as the accept has always been willing to take a connection through the
hole, and back off across it: dense at the start, where every window begins
and the short ones end, sparse afterwards, which is `punch_udp`'s shape for
the same reason. A window past that ceiling was lost before this change too,
and mostly to the controller's own kernel - Windows gives a SYN up at 21s,
Linux's next re-send after 15s is at 31s; a window short of it costs a few
SYNs to a port already closed.
No punch is cut on a per-attempt timeout; one in flight is bounded only by
the shared deadline plus PUNCH_GRACE. A punch is cancel-safe only while it is
still in SYN_SENT; once the controller's SYN has crossed it the socket is half
way through a handshake, and cutting it there cuts the connection the
controller is opening - whose `connect` has already returned, so that attempt
fails outright, there being no relay fallback after a failed TCP handshake. A
timer cannot tell the two states apart, and none is needed: a gateway that
answers with RST fails the connect at once and the loop punches again, while
one that drops the SYN in silence leaves the socket in SYN_SENT, holding the
mapping open while the kernel re-sends, which any SYN of the controller's then
crosses - a second punch has nothing to add. The deadline decides whether
another punch starts; one in flight runs a grace past it, enough for a
crossing begun just before it to complete. The last sleep is cut at the
deadline rather than run out past it, so the window ends on a punch given
that grace and not on a gap of up to the backoff ceiling: the controller's
window opened after ours, on the PunchHoleSent hbbs relayed, so one as long
as ours is still open through our tail.
Only the accept races the punch, never `accept_connection`: that one does not
return until the session it goes on to run has ended, so racing it would tear a
live session down.
Whichever arrives first is the one connection the request produces. `meta`
carries the control permissions hbbs granted for this one controller, so
serving the loser as well would hand them to a second peer - and nothing about
a connection tells the two apart before `create_tcp_connection` has spoken to
it, least of all its address: a carrier NAT shares one between subscribers,
and a NAT that pools its external addresses may dial us from a different one
than hbbs saw the controller through. So the address is not checked, as
`accept_connection` never checked it; the handshake says who arrived, and what
holds the invariant is that there is no second serve. Those
permissions are a ceiling and not a grant either way: `Connection` gates every
message on `authorized`, and latches the login scope of the first request it
accepts, so a peer that reached the hole still arrives with nothing.
The accept loops rather than taking a single connection, so that a transient
accept error does not spend the window the controller still has to arrive in.
libp2p's DCUtR reaches the same place by having both peers dial at one instant
agreed over the relay. Nothing we send reaches the controller directly, so we
cover its dial window rather than name an instant inside it.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019aokqJuhjvB3kijXtAg5Ns
The earlier commit took dcsctp's min_rtt_variance = 220 as a raw floor under
rttvar. dcsctp divides the option by kHeuristicVarianceAdjustment = 8.0 first,
a historical accident it kept because downstream users had measured good
values with it, so the intended floor is 27.5ms of variance contributing 110ms
to RTO. Flooring at 220 contributed 880ms instead, which on a 50ms path left
RTO within 7% of the 1000ms default this change exists to escape.
The fork also now records why T1/T2 share T3's RTO manager here, unlike
dcsctp's separate control timers: RTO_INITIAL is the T3 value for the first
DATA chunk, since no RTT sample exists before the first SACK.
webrtc-sctp ships RFC 4960's RTO.Initial/RTO.Min (3000/1000), TCP's values for
arbitrary public paths. On this workload they set the recovery time outright:
a request/response exchange keeps one chunk in flight, so no later SACK ever
raises miss_indicator to the 3 that arms fast retransmit, and the T3 floor is
the only way back. A single loss during a handshake or a first keyframe
therefore costs whole seconds.
The fork now carries dcsctp's numbers instead - the SCTP implementation Google
wrote to replace usrsctp for Chrome's WebRTC data channels, the same realtime
workload: rto_initial 500, rto_min 400, a 220ms floor under the RTT variance,
and mtu 1191. INITIAL_MTU 1228 plus DTLS/UDP/IPv6 overhead is 1313, past the
1280 minimum, so every full-size chunk fragmented on an IPv6 path.
Both patch entries move to the new branch, which also carries the Windows IPv6
byte-swap fix, so one rev matches the whole webrtc 0.13 stack.
Also pin webrtc-util to a fork of 0.11.0 carrying a Windows IPv6 enumeration fix.
`ifaces` reads the adapter list's on-wire IPv6 bytes as host-order `[u16; 8]`, so on a
little-endian host every group comes out byte-swapped and unbindable: a peer's real
240e:369:9606:4600:f52a:7a8d:2530:4de0 is enumerated as e24:6903:696:46:2af5:8d7a:3025:e04d,
::1 as ::100 and fe80:: as 80fe::. Each fails to bind with WSAEADDRNOTAVAIL, so ICE gathers
no IPv6 host candidate at all on Windows - where a globally routable address is the one
NAT-free path a CGNAT'd peer has.
Never reported upstream; the unix twin of the same bug was fixed in webrtc-rs#475 (2023).
Fork: rustdesk-org/webrtc, branch rustdesk-patches, tag webrtc-util-0.11.0-win-ipv6.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_019UzcMTdYTEv2QbMHcTSUy3
Reverts the connect/accept/add_conn changes that regressed concurrent
connects (the state_map guard held across add_conn is load-bearing), states
the single-conn contract on KcpEndpoint so shared-endpoint behaviour stops
consuming review effort, pins the two invariants that keep truncated input
from aborting under panic='abort', and fixes three findings from external
review: sendwnd() echoing raw config instead of KCP's effective window (a
non-positive factory value stalled sending forever), the passive closer's
lost final FIN delaying EOF by up to ~20s, and the doubled window
overflowing for extreme factory values.
Lock-only change: cargo update -p kcp-sys also re-picked libloading's
windows-targets between two versions already present in the lock; that was
reverted to keep this commit to the one line it is about. cargo metadata
--locked passes on the result.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Picks up the handshake-recovery work plus the review round on top of it:
ABBA deadlock between the endpoint's two DashMaps, graceful-close tail
truncation, mid-stream hole on ikcp_send failure, FIN retransmission for
lost-FIN half-open hangs, SYN-ACK budget burned on dropped packets,
spurious ConnectTimeout after a completed handshake, accept-backlog
overflow stranding conns, aliasing UB in the output callback, and the
log-facade/throttling cleanup (per-packet sites no longer reach the
debug-level file logger, peer-rate warns throttled).
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ExUfAkYbq8UC9pQCiLy8TQ
The rebase onto master (switch-code feature) added an 8th request_relay
parameter; pass the interface's switch code from both WebRTC->relay
fallback paths so a role-swap session survives the fallback. Also drop
a duplicate bindgen 0.72.1 entry the Cargo.lock merge produced.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ExUfAkYbq8UC9pQCiLy8TQ
- treat ICMP-driven UDP socket errors (WSAECONNRESET 10054 on Windows,
ECONNREFUSED on Linux) as packet loss in punch_udp and the KCP pump
instead of tearing the session down; KCP retransmits through them and a
truly dead link is still reaped by the pong/app-level timeouts
- resolve STUN hostnames via tokio::net::lookup_host so DNS never blocks a
runtime worker; fix the inverted non-IPv4 error message
- add enable-kcp-congestion-control option (default on): switch the turbo
profile to nc=0 so brief loss on constrained links no longer spirals into
stalls; sender-side only, no wire negotiation
- pin kcp-sys to the rustdesk-patches branch: upstream main lost the
RustDesk patches on the EasyTier sync, and this branch also wires
set_kcp_config_factory into connection setup, making the option effective
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
- prefer-P2P racing (race_transports_prefer_webrtc) across punch and RelayResponse; ICE bridge with 400ms candidate resend
- controlled-side answerer and ICE routing; sign local DTLS fingerprint into SignedId, controller verifies the binding fail-closed
- fix pc leaks: close_webrtc() on insecure-decline paths (io_loop, port_forward); compute direct before disarming the offerer guard
- point hbb_common to the WebRTC data-plane commit 9f5a296
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
* fix(flutter): show error and retry when fetching login options fails
The third-party login section of the login dialog was silently hidden
whenever /api/login-options could not be fetched (e.g. TLS handshake
aborted by a router/ISP scam filter, discussion #15700), leaving users
staring at a dialog with no feedback. The pure-Dart HTTP path also had
no timeout, so a black-holed connection could hang indefinitely.
- let transport errors propagate from queryOidcLoginOptions instead of
swallowing them; a non-JSON response still means "no third-party
login" so self-hosted servers without this API keep the old behavior
- show network_error_tip, a Retry button, and the underlying error in
the login dialog so users and supporters can see what failed
- bound the Dart HTTP branch with a 15s timeout; the Rust branch keeps
its own bounded per-attempt timeouts and is awaited to completion so
a retry never races the URL-keyed ASYNC_HTTP_STATUS entry of an
abandoned in-flight request
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(flutter): surface currentUser refresh failures that were only logged
Non-transport failures of the token auto-login (/api/currentUser) -- a
bad HTTP status, a filter's HTML block page, or an error field in the
body -- were only debugPrinted, so the address book / group tabs showed
nothing and offered no retry. Reuse the existing networkError channel
so netWorkErrorWidget shows the error with its Retry button.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(flutter): keep retry row visible with progress while refetching login options
Review follow-ups: clicking Retry used to clear the error and hide the
row with no pending feedback, which could read as a dead click while
the Rust fallback chain runs; keep the row, disable the button, and
show the usual LinearProgressIndicator instead. Also raise the Dart
HTTP branch timeout to 30s so large web address book pulls on slow
links do not newly time out; it still bounds the previously unbounded
hang and stays above the Rust side's 12s per-attempt timeout.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* chore: update webpki-roots to latest Mozilla root store
0.26.9 -> 0.26.11 (now a forwarding shim over 1.x, used by tungstenite)
1.0.4 -> 1.0.9 (used by reqwest / hyper-rustls / hbb_common)
The 0.26.9 line carried its own root snapshot frozen in early 2025, so
the websocket TLS path was building against a stale bundle.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* ci: weekly workflow to PR webpki-roots root store updates
webpki-roots is a transitive dependency, so dependabot's cargo version
updates would not cover it. A scheduled job runs cargo update for every
webpki-roots instance in each lockfile and opens a PR when the pinned
Mozilla root snapshot is behind, keeping root store changes reviewable
instead of baking them silently into release builds.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(flutter): hide network tip for server-reported currentUser errors
Review follow-up: when /api/currentUser fails with an error the server
itself reported (an error field in a JSON body, or an unexpected
schema), "Please check your network connection" was misleading. Track
whether the surfaced error came from a server response and skip the
network tip for those; FormatException (a non-JSON body such as a
filter's block page) keeps it, since that still indicates a network or
middlebox problem.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(flutter): close timed-out HTTP clients
* fix(flutter): flag server-reported errors at the throw site
Review follow-up (CodeRabbit). Classifying by `e is! FormatException`
mislabeled ambiguous failures: a middlebox block page returning 200
with valid-but-wrong-shape JSON throws a TypeError from fromJson and
was shown without the check-your-network tip, though it is a network
artifact. Set networkErrorFromServer only at the one site that is
certainly server-reported (an error field in the body); every other
failure keeps the network tip plus the raw error text.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* ci: serialize webpki-roots update runs, null-delimit lockfile paths
Review follow-up (CodeRabbit). A manual dispatch overlapping the weekly
cron could have an older run force-push over the newer branch state;
queue runs via a concurrency group without cancel-in-progress. Also
iterate lockfiles with git ls-files -z so a path with spaces cannot be
word-split, and keep the loop failing the step on any cargo error.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(flutter): improve login retry feedback
Use the theme primary color for the Retry button and hide stale
error messages while a retry is in progress.
Signed-off-by: fufesou <linlong1266@gmail.com>
* fix(flutter): surface login option response errors
Signed-off-by: fufesou <linlong1266@gmail.com>
---------
Signed-off-by: fufesou <linlong1266@gmail.com>
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
Co-authored-by: fufesou <linlong1266@gmail.com>
bindgen-0.65 is incompatible with llvm 22, we should upgrade to a
newer bindgen version
error message:
```
error[E0609]: no field `g_w` on type `vpx_codec_enc_cfg`
--> libs/scrap/src/common/vpxcodec.rs:66:19
|
66 | c.g_w = config.width;
| ^^^ unknown field
|
= note: available field is: `_address`
```
* Add initial arm64 build logic
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Upgrade Flutter to 3.44.0 and introduce Windows arm64 in CI
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Bump bridge build to Flutter 3.44 as well
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Fix install flutter step for Win arm64
* Bump install-llvm-action to v2 for arm64 support
* Fix libsodium logic to only install through vcpkg on win arm64
* Fix Flutter installations on Win
* Flutter XCode: only build the current arch as it defaults to universal
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Ensure that we really have arm64 Dart + Flutter engine in CI
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Enable hwcodec feature now that upstream supports building it
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* CI: improve logic for getting Flutter arm64 SDK
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
* Apply PR feedback (only bump Flutter version on Win arm64)
* Exclude MSI build on arm64
* CI: build the MSI for Windows arm64 (WiX v4 ARM64 platform + native CustomActions)
* Address PR feedback
* Update Cargo.toml
* Update Cargo.lock
* Update Cargo.lock
* Add Flutter 3.44 DialogThemeData background colors
Signed-off-by: 21pages <sunboeasy@gmail.com>
---------
Signed-off-by: Dennis Ameling <dennis@dennisameling.com>
Signed-off-by: 21pages <sunboeasy@gmail.com>
Co-authored-by: RustDesk <71636191+rustdesk@users.noreply.github.com>
Co-authored-by: 21pages <sunboeasy@gmail.com>
* feat: Add relative mouse mode
- Add "Relative Mouse Mode" toggle in desktop toolbar and bind to InputModel
- Implement relative mouse movement path: Flutter pointer deltas -> `type: move_relative` -> new `MOUSE_TYPE_MOVE_RELATIVE` in Rust
- In server input service, simulate relative movement via Enigo and keep latest cursor position in sync
- Track pointer-lock center in Flutter (local widget + screen coordinates) and re-center OS cursor after each relative move
- Update pointer-lock center on window move/resize/restore/maximize and when remote display geometry changes
- Hide local cursor when relative mouse mode is active (both Flutter cursor and OS cursor), restore on leave/disable
- On Windows, clip OS cursor to the window rect while in relative mode and release clip when leaving/turning off
- Implement platform helpers: `get_cursor_pos`, `set_cursor_pos`, `show_cursor`, `clip_cursor` (no-op clip/hide on Linux for now)
- Add keyboard shortcut Ctrl+Alt+Shift+M to toggle relative mode (enabled by default, works on all platforms)
- Remove `enable-relative-mouse-shortcut` config option - shortcut is now always available when keyboard permission is granted
- Handle window blur/focus/minimize events to properly release/restore cursor constraints
- Add MOUSE_TYPE_MASK constant and unit tests for mouse event constants
Note: Relative mouse mode state is NOT persisted to config (session-only).
Note: On Linux, show_cursor and clip_cursor are no-ops; cursor hiding is handled by Flutter side.
Signed-off-by: fufesou <linlong1266@gmail.com>
* feat(mouse): relative mouse mode, exit hint
Signed-off-by: fufesou <linlong1266@gmail.com>
* refact(relative mouse): shortcut
Signed-off-by: fufesou <linlong1266@gmail.com>
---------
Signed-off-by: fufesou <linlong1266@gmail.com>