KKRainbow 4a10d1c2b9 feat(mobile): add embedded runtime and managed network updates (#2532)
* feat(mobile): add embedded iOS runtime API

Add a thin panic-safe C ABI crate for embedding no-TUN instances
on iOS. Expose lifecycle, status, JSON-RPC, string ownership, and
error handling.

Build device and simulator XCFramework static libraries on macOS.
Add exact named-instance deletion to the iOS and Android wrappers.
Cover wrapper lifecycle and the port-forward patch flow on host
targets.

* fix(gateway): recover TCP port-forward listeners

Release an unusable TCP port-forward listener after an accept
failure. Retry binding until the forward is cancelled. Keep the old
listener released while rebinding so mobile sockets can recover.

Expose opt-in iOS diagnostics for listener and connection events.
Trace configuration removal and adapter shutdown. Add tests for
recovery, release-before-rebind, and cancellation.

* feat(web): persist incremental managed config patches

Add a revision-CAS PATCH contract for managed configs while keeping
the existing Full PUT path for compatibility and recovery.

Apply Full and Patch mutations with their revision in one SQLite
transaction. Reject ownership conflicts and invalidate revisions on
alternate web-owned writes.

Document limits, failure semantics, rollout order, and verification.
Cover delta updates, conflicts, idempotency, and transaction rollback.

* feat(web): apply managed config patches to live sessions

Carry Patch fences and touched instance IDs into live sessions.
Reconcile only those instances when the applied revision matches the
Patch base. Fall back to Full reconciliation for gaps and restarts.

Invalidate the applied revision around every direct runtime mutation.
Fence revision advancement with the runtime cache epoch so stale
reconcile rounds cannot overwrite a newer invalidation.

Require deletion responses to confirm each requested instance before
advancing the revision. Raise the managed PUT and PATCH body limit to
32 MiB and return typed conflicts for publisher recovery.

* fix(core): retry transient accepted TCP errors

Keep TCP tunnel listeners alive when an accepted socket fails during
upgrade with a retryable connection-state error.

Share the retryable I/O classifier with the socket listener. Cover a
rejected connection followed by success and propagation of permanent
errors.

* feat(core): add internal Peer Relay edge projection

Derive the local advertised OSPF row from physical adjacency and transport-authenticated credential relay coverage. Keep full local adjacency only in the temporary SPF snapshot so direct destinations retain a fallback route.

Leave Peer Relay disabled at the public configuration seam. A follow-up change can expose the preference without coupling route projection to credential reauthorization.

feat(config): expose Peer Relay routing preference

Add prefer_peer_relay to public protobuf, TOML, management patch, and
hosted runtime surfaces.

Read the preference from live peer context so runtime config updates take
effect. Refresh authenticated peer metadata when the option is enabled.

Cover dynamic enable and disable in a five-node, dual-admin credential
topology, including forwarded relay coverage and local fallback.
2026-08-28 00:43:26 +08:00

EasyTier

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简体中文 | English

A simple, secure, decentralized virtual private network solution powered by Rust and Tokio

config page running page

📚 Full Documentation | 🖥️ Web Console | 📝 Download Releases | 🧩 Third Party Tools | ❤️ Sponsor

Features

Core Features

  • 🔒 Decentralized: Nodes are equal and independent, no centralized services required
  • 🚀 Easy to Use: Multiple operation methods via web, client, and command line
  • 🌍 Cross-Platform: Supports Win/MacOS/Linux/FreeBSD/Android and X86/ARM/MIPS architectures
  • 🔐 Secure: AES-GCM or WireGuard encryption, prevents man-in-the-middle attacks

Advanced Capabilities

  • 🔌 Efficient NAT Traversal: Supports UDP and IPv6 traversal, works with NAT4-NAT4 networks
  • 🌐 Subnet Proxy: Nodes can share subnets for other nodes to access
  • 🔄 Intelligent Routing: Latency priority and automatic route selection for best network experience
  • High Performance: Zero-copy throughout the entire link, supports TCP/UDP/WSS/WG protocols

Network Optimization

  • 📊 UDP Loss Resistance: KCP/QUIC proxy optimizes latency and bandwidth in high packet loss environments
  • 🔧 Web Management: Easy configuration and monitoring through web interface
  • 🛠️ Zero Config: Simple deployment with statically linked executables

Quick Start

📥 Installation

Choose the installation method that best suits your needs:

Linux (Recommended):

curl -fsSL "https://github.com/EasyTier/EasyTier/blob/main/script/install.sh?raw=true" | sudo bash -s install

Homebrew (MacOS/Linux):

brew tap brewforge/chinese
brew install --cask easytier-gui

Windows (Recommended, run with administrator privileges):

irm "https://github.com/EasyTier/EasyTier/blob/main/script/install.ps1?raw=true" | iex

Install via cargo (Latest development version):

cargo install --git https://github.com/EasyTier/EasyTier.git easytier

Install pre-built binary (Recommended, All platforms supported)

Install via Docker

Install OpenWrt ipk package

Additional steps:

One-Click Register Service (Automatically start when the system boots and run in the background)

🚀 Basic Usage

Quick Networking with Shared Nodes

EasyTier supports quick networking using shared public nodes. When you don't have a public IP, you can use the free shared nodes provided by the EasyTier community. Nodes will automatically attempt NAT traversal and establish P2P connections. When P2P fails, data will be relayed through shared nodes.

When using shared nodes, each node entering the network needs to provide the same --network-name and --network-secret parameters as the unique identifier of the network.

Taking two nodes as an example (Please use more complex network name to avoid conflicts):

  1. Run on Node A:
# Run with administrator privileges
sudo easytier-core -d --network-name abc --network-secret abc -p tcp://<SharedNodeIP>:11010
  1. Run on Node B:
# Run with administrator privileges
sudo easytier-core -d --network-name abc --network-secret abc -p tcp://<SharedNodeIP>:11010

After successful execution, you can check the network status using easytier-cli:

| ipv4         | hostname       | cost  | lat_ms | loss_rate | rx_bytes | tx_bytes | tunnel_proto | nat_type | id         | version         |
| ------------ | -------------- | ----- | ------ | --------- | -------- | -------- | ------------ | -------- | ---------- | --------------- |
| 10.126.126.1 | abc-1          | Local | *      | *         | *        | *        | udp          | FullCone | 439804259  | 2.6.2-70e69a38~ |
| 10.126.126.2 | abc-2          | p2p   | 3.452  | 0         | 17.33 kB | 20.42 kB | udp          | FullCone | 390879727  | 2.6.2-70e69a38~ |
|              | PublicServer_a | p2p   | 27.796 | 0.000     | 50.01 kB | 67.46 kB | tcp          | Unknown  | 3771642457 | 2.6.2-70e69a38~ |

You can test connectivity between nodes:

# Test connectivity
ping 10.126.126.1
ping 10.126.126.2

Note: If you cannot ping through, it may be that the firewall is blocking incoming traffic. Please turn off the firewall or add allow rules.

To improve availability, you can connect to multiple shared nodes simultaneously:

# Connect to multiple shared nodes
sudo easytier-core -d --network-name abc --network-secret abc -p tcp://<SharedNodeIP1>:11010 -p udp://<SharedNodeIP2>:11010

Once your network is set up successfully, you can easily configure it to start automatically on system boot. Refer to the One-Click Register Service guide for step-by-step instructions on registering EasyTier as a system service.

Decentralized Networking

EasyTier is fundamentally decentralized, with no distinction between server and client. As long as one device can communicate with any node in the virtual network, it can join the virtual network. Here's how to set up a decentralized network:

  1. Start First Node (Node A):
# Start the first node
sudo easytier-core -i 10.144.144.1

After startup, this node will listen on the following ports by default:

  • TCP: 11010
  • UDP: 11010
  • WebSocket: 11011
  • WebSocket SSL: 11012
  • WireGuard: 11013
  1. Connect Second Node (Node B):
# Connect to the first node using its public IP
sudo easytier-core -i 10.144.144.2 -p udp://FIRST_NODE_PUBLIC_IP:11010
  1. Verify Connection:
# Test connectivity
ping 10.144.144.2

# View connected peers
easytier-cli peer

# View routing information
easytier-cli route

# View local node information
easytier-cli node

For more nodes to join the network, they can connect to any existing node in the network using the -p parameter:

# Connect to any existing node using its public IP
sudo easytier-core -i 10.144.144.3 -p udp://ANY_EXISTING_NODE_PUBLIC_IP:11010

🔍 Advanced Features

Subnet Proxy

Assuming the network topology is as follows, Node B wants to share its accessible subnet 10.1.1.0/24 with other nodes:

flowchart LR

subgraph Node A Public IP 22.1.1.1
nodea[EasyTier<br/>10.144.144.1]
end

subgraph Node B
nodeb[EasyTier<br/>10.144.144.2]
end

id1[[10.1.1.0/24]]

nodea <--> nodeb <-.-> id1

To share a subnet, add the -n parameter when starting EasyTier:

# Share subnet 10.1.1.0/24 with other nodes
sudo easytier-core -i 10.144.144.2 -n 10.1.1.0/24

Subnet proxy information will automatically sync to each node in the virtual network, and each node will automatically configure the corresponding route. You can verify the subnet proxy setup:

  1. Check if the routing information has been synchronized (the proxy_cidrs column shows the proxied subnets):
# View routing information
easytier-cli route

Routing Information

  1. Test if you can access nodes in the proxied subnet:
# Test connectivity to proxied subnet
ping 10.1.1.2

WireGuard Integration

EasyTier can act as a WireGuard server, allowing any device with a WireGuard client (including iOS and Android) to access the EasyTier network. Here's an example setup:

flowchart LR

ios[[iPhone<br/>WireGuard Installed]]

subgraph Node A Public IP 22.1.1.1
nodea[EasyTier<br/>10.144.144.1]
end

subgraph Node B
nodeb[EasyTier<br/>10.144.144.2]
end

id1[[10.1.1.0/24]]

ios <-.-> nodea <--> nodeb <-.-> id1
  1. Start EasyTier with WireGuard portal enabled:
# Register one WireGuard client as virtual peer 10.144.144.3
sudo easytier-core -i 10.144.144.1 \
  --network-secret portal-secret \
  --vpn-portal wg://0.0.0.0:11013 \
  --vpn-portal-private-key "$(wg genkey)" \
  --vpn-portal-client phone=10.144.144.3
  1. Get WireGuard client configuration:
# Get WireGuard client configuration
easytier-cli vpn-portal
  1. In the output configuration, replace a wildcard Peer.Endpoint with the public IP/domain of your EasyTier node, then import it. Interface.Address is local to that WireGuard client and may be changed to any IPv4 address; EasyTier translates it to the registered virtual-peer address.

Self-Hosted Public Shared Node

You can run your own public shared node to help other nodes discover each other. A public shared node is just a regular EasyTier network (with same network name and secret) that other networks can connect to.

To run a public shared node:

# No need to specify IPv4 address for public shared nodes
sudo easytier-core --network-name mysharednode --network-secret mysharednode
  • ZeroTier: A global virtual network for connecting devices.
  • TailScale: A VPN solution aimed at simplifying network configuration.

Contact Us

License

EasyTier is released under the LGPL-3.0.

Sponsor

CDN acceleration and security protection for this project are sponsored by Tencent EdgeOne.

EdgeOne Logo

Special thanks to Langlang Cloud and RainCloud for sponsoring our public servers.

If you find EasyTier helpful, please consider sponsoring us. Software development and maintenance require a lot of time and effort, and your sponsorship will help us better maintain and improve EasyTier.

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