Translate IPv6 traffic across shared mobile members, including
transport checksums and reverse-flow handling.
Normalize saved Android TUN configs and detach runtimes before the
VPN fd closes. Restore the mainline lockfile after resolving the merge.
Port shared TUN ownership, routing, mobile source dispatch, and
Magic DNS route claims onto the native runtime-host architecture.
Preserve per-member lifecycle and add focused desktop, mobile, netlink,
GUI, FFI, and root integration validation for the merged code.
Create easytier-core as the portable owner of configuration,
connectivity, tunnels, peer and routing state, gateways, management,
the data plane, and instance lifecycle. Keep operating-system
integration, native protocol engines, process startup, and presentation
in easytier behind explicit Host capability adapters.
Create easytier-proto to own schemas, generated RPC types, descriptors,
and feature-scoped protocol slices. Remove runtime protobuf reflection
from core while preserving unknown route-peer fields across forwarding.
Normalize instance construction through CoreInstance, CoreHostAdapters,
CoreProcessRuntime, and InstanceManager. Make the runtime config store
the only authoritative mutable configuration after startup.
Move the portable TCP/UDP data plane into core and extract a generic
OperationBroker for completion, cancellation, disposal, and capacity
accounting. Expose the session-based FFI v2 completion API and keep the
WASI guest ABI, wire schemas, and adapters with core.
Migrate CLI, GUI, web, FFI, Android JNI, OHOS, uptime, and mobile
consumers to the shared manager and core state. Add explicit user/web
config ownership and revision-aware web reconciliation.
Preserve configuration, wire, and management behavior while fixing
regressions discovered by the full platform and integration matrix:
- inherit advertised relay capabilities in foreign networks;
- refresh OSPF peer state immediately after runtime config changes;
- restore CLI GlobalCtx event output without forcing GUI logging;
- retain legacy encryption names and standalone RPC tunnel metadata;
- restore ICMP host composition and fragmented UDP handling;
- use portable 64-bit atomics on 32-bit MIPS targets; and
- retain discarded operations until late cancellation completes.
Validate the refactor across 45 GitHub checks, including Linux, macOS,
Windows, FreeBSD, web, GUI, Android, OHOS, feature profiles, and
three-node and subnet-proxy integration tests.
BREAKING CHANGE: internal Rust module paths are not preserved. Legacy
native data-plane APIs are replaced by the session-based FFI v2 API.
The dedicated Android data-plane wrapper is removed.
Fix web/frontend compat bugs in managed config & runtime status
- Preserve [[peer]].peer_public_key when TOML configs round-trip
through the web/managed NetworkConfig path
- Keep old peer_urls clients working while adding structured peer
metadata for new clients
- Make frontend protobuf JSON normalization preserve omitted-field
semantics instead of turning missing data into misleading defaults
- Harden runtime status rendering against omitted or string-encoded
backend fields
- Expose peer-route feature flags in the web status UI
* refactor(web): use generated proto network types
* fix(core): preserve dumped config flags
* test(web): cover config flag save paths
* fix(ci): use system protoc before frontend codegen
* fix(ci): serialize frontend-lib builds
Introduce shared NIC source ownership and dispatcher handling so a
single dev_name can be shared by multiple tun-enabled instances while
keeping per-member IP and route claims distinct.
Pass Android VpnService fd registration with per-instance source and
route claims. Keep the VPN address list limited to real member
addresses and allow AF_INET6 without installing hidden fd00::1.
Invalidate dispatcher flow and NAT state when source ownership changes
or a member unregisters. Avoid rewriting non-first IPv4 fragment
payloads, and adjust fragmented TCP/UDP checksums without recomputing
over partial fragment bodies.
Preserve source-owner routing for equal-prefix route conflicts, keep
ICMP echo NAT entries distinct by echo id, and retry stale flow-owner
send failures from the original packet. Only record NAT state after a
translated packet is accepted by its member.
Apply Linux IPv4 route preferred-source hints for shared routes and keep
route repair paths source-aware. Keep Darwin ifcfg access scoped to
cleanup-only paths where netns is not available.
Android previously treated setTunFd as a single-instance update, and the
VpnService plugin could only expose one IPv4 address. That made shared
TUN members disable each other or leave only one address configured.
Group enabled Android TUN instances by shared dev_name, send the fd to
every compatible member, and only disable incompatible TUN users. Build
the Android VPN request from the whole running shared group and pass
every IPv4 address to VpnService.
The shared mobile dispatcher now owns current fd device state on a
process-level runtime. New setTunFd calls replace that state even when
the raw fd number is reused, and mobile TUN read/write/create failures
rebuild with backoff while preserving member registrations.
Protect shared member cleanup with per-registration ownership tokens, so
old async cleanup cannot unregister a recreated member or remove its
source claims. Mobile source addresses are registered in the dispatcher
without applying OS ifcfg changes, so Android-originated packets return
through the owning instance.
When one shared member stops while another remains, notify the frontend
to recalculate the VpnService config instead of leaving stale addresses
and routes. Serialize Android VpnService config recalculation so stale
async events cannot overwrite newer shared-group state.
If one shared member is not ready, rebuild from the healthy members and
retry the missing member later. If no healthy member remains, stop the
Android VPN service instead of keeping stale routes active.
The GUI exposed three networking modes: public server, manual, and standalone. In practice EasyTier does not have a server/client role distinction here. Those options only mapped to different peer bootstrap shapes, which made the product model misleading and pushed users toward a non-existent "public server" concept.
This change rewrites the shared configuration UX around initial nodes. Users now add or remove one or more initial node URLs directly, and the UI explains that EasyTier networking works like plugging in a cable: once a node connects to one or more existing nodes, it can join the mesh. Initial nodes may be self-hosted or shared by others.
To preserve compatibility, the frontend keeps the legacy fields and adds normalization helpers in the shared NetworkConfig layer. Old configs are read as initial_node_urls, while saves, runs, validation, config generation, and persisted GUI config sync still denormalize back into the current backend shape: zero initial nodes -> Standalone, one -> PublicServer, many -> Manual. This avoids any proto or backend API change while making old saved configs and imported TOML files load cleanly in the new UI.
Code changes:
- add initial_node_urls plus normalize/denormalize helpers in the shared frontend NetworkConfig model
- remove the mode switch and public-server/manual specific inputs from the shared Config component and replace them with a single initial-node list plus explanatory copy
- update Chinese and English locale strings for the new terminology
- normalize configs received from GUI/web backends and denormalize them before outbound API calls
- normalize GUI save-config events before storing them in localStorage so legacy payloads remain editable under the new model
Implement end-to-end encryption for core-web connections using the
Noise protocol framework with the following changes:
Client-side (easytier/src/web_client/):
- Add security.rs module with Noise handshake implementation
- Add upgrade_client_tunnel() for client-side handshake
- Add Noise frame encryption/decryption via TunnelFilter
- Integrate GetFeature RPC for capability negotiation
- Support secure_mode option to enforce encrypted connections
- Handle graceful fallback for backward compatibility
Server-side (easytier-web/):
- Accept Noise handshake in client_manager
- Expose encryption support via GetFeature RPC
The implementation uses Noise_NN_25519_ChaChaPoly_SHA256 pattern for
encryption without authentication. Provides backward compatibility
with automatic fallback to plaintext connections.
support faketcp to avoid tcp-over-tcp problem.
linux/macos/windows are supported.
better to be used in internet env, the maximum
performance is majorly limited by windivert/raw socket.
This PR fundamentally restructures the EasyTier GUI, introducing support for service mode and remote mode, transforming it from a simple desktop application into a powerful network management terminal. This change allows users to persistently run the EasyTier core as a background service or remotely manage multiple EasyTier instances, greatly improving deployment flexibility and manageability.