305 Commits
Author SHA1 Message Date
dokril f4882c53c2 Improve device tag editing and version clients
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-31 02:26:24 +03:00
dokril 116686a138 Implement Harbor gateway device ecosystem support
Build and Deploy Gateway / build-and-push (push) Successful in 26s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-31 02:06:22 +03:00
dokril 7e15cc199f Default new devices to Direct routing
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-31 01:07:59 +03:00
dokril f977874da6 Refine failover channel status and switch controls
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-28 21:13:09 +03:00
dokril 14b3c2afac Exclude test artifacts from runtime impact analysis
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-28 19:47:58 +03:00
dokril a84cca0668 Improve failover controls and preserve manual switching state
Build and Deploy Gateway / build-and-push (push) Failing after 1s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-08-28 19:40:53 +03:00
dokril 8f2f418569 Add failover channel events to activity journal
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-27 14:36:08 +03:00
Dmitriy Petrov 4a566e082a Expand activity journal color cues
Build and Deploy Gateway / build-and-push (push) Successful in 37s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-25 16:42:05 +03:00
Dmitriy Petrov f451c65b2f Improve activity journal readability
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 15s
2026-08-25 15:52:42 +03:00
dokril 64462d3639 Clarify failover messaging and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 26s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-21 13:00:54 +03:00
dokril 12f2f30212 Clarify failover UI messaging and controls
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-21 01:01:34 +03:00
dokril 1ee453b3b6 Add failover setting step controls
Build and Deploy Gateway / build-and-push (push) Successful in 26s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-20 01:55:50 +03:00
dokril c27c898ad5 Simplify failover settings UI
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-20 01:47:27 +03:00
dokril 74227ae38c Improve failover status feedback and controls
Build and Deploy Gateway / build-and-push (push) Successful in 26s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-20 01:32:03 +03:00
dokril 9055934e92 Fix failover channel layout and runtime impact coverage
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-19 20:54:28 +03:00
dokril 3b515ee355 Improve failover startup handling and status UI
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-19 20:24:04 +03:00
dokril cedd31cc16 Refine failover controls and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-19 19:23:16 +03:00
dokril d4f228284e Add hard deploy option for Gateway workflow
Build and Deploy Gateway / build-and-push (push) Successful in 24s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-19 18:40:01 +03:00
dokril b843970ec2 Make journal write failure test deterministic
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-08-19 18:20:25 +03:00
dokril daec12e013 Update Harbor client and gateway integration workflows
Build and Deploy Gateway / build-and-push (push) Failing after 14s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-08-19 18:16:10 +03:00
dokril 416b2b294a Persist configurable connectivity diagnostics
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-19 13:38:19 +03:00
dokril df865fbe3d Add per-row connectivity diagnostic refresh controls
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-19 12:59:21 +03:00
dokril 7cb25d0633 Retry state conflicts and always render server picker
Build and Deploy Gateway / build-and-push (push) Successful in 25s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-19 00:36:39 +03:00
dokril dc1fd76c44 Simplify rail motion and add routing help toggle
Build and Deploy Gateway / build-and-push (push) Successful in 35s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-17 17:26:57 +03:00
dokril 0a0a932057 Refine secondary rail icon animations
Build and Deploy Gateway / build-and-push (push) Successful in 35s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-17 17:07:25 +03:00
dokril 286a89051a Improve routing rule drag handling and controls
Build and Deploy Gateway / build-and-push (push) Successful in 34s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-17 16:48:46 +03:00
dokril f3be0b2fd0 Polish routing rules UI and normalize pasted values
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-17 16:27:25 +03:00
dokril bc86741397 Refine routing rule controls and responsive layout
Build and Deploy Gateway / build-and-push (push) Successful in 35s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-17 16:04:06 +03:00
dokril 7c255192b0 Update Harbor client and gateway functionality
Build and Deploy Gateway / build-and-push (push) Successful in 35s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-17 15:23:16 +03:00
dokril 0b39211fbd Refactor Harbor client connection flow
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-17 12:19:26 +03:00
dokril 8eccdd4050 Remove startup reveal animation
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-15 10:34:19 +03:00
dokril 804e08727e Refine client rail icons and motion
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-15 02:26:02 +03:00
dokril 978fe71628 Refine secondary rail icons and animations
Build and Deploy Gateway / build-and-push (push) Successful in 23s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-14 23:40:05 +03:00
dokril 5a21a09b82 Refine rail drawer switching and toggle animations
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-14 15:52:56 +03:00
dokril a9eca0e9d4 Refine Harbor device ecosystem guidance and device panel layout
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-14 15:38:17 +03:00
dokril 32217f4d17 Animate vertical transitions between client drawers
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-14 15:23:00 +03:00
dokril 019930924d Handle expired subscriptions in client profile UI
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-13 15:06:13 +03:00
dokril 0ea2f9d548 Track outbound device traffic deltas
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-13 14:12:12 +03:00
dokril 0290784526 Refine device traffic reset control
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-13 00:05:04 +03:00
dokril b86812d02b Add device traffic reset with outbound baselines
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-12 23:55:34 +03:00
dokril 08cc013def Clarify device traffic route labels and update Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-12 23:20:25 +03:00
dokril 72c085a5b8 Expose outbound traffic totals and simplify Direct chart breakdown
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-12 22:43:40 +03:00
dokril 9d43e74d97 Add outbound traffic breakdown to device charts
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-12 22:18:08 +03:00
dokril 9e52ccc24d Improve VPN client connection management
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-12 21:48:37 +03:00
dokril 068a7f9890 Accept IPv6 addresses in connectivity diagnostics
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-11 17:23:20 +03:00
dokril 6381760b27 Add network identity diagnostics
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-11 16:19:23 +03:00
dokril 3566f4bc0b Show device identity details and resolve hostnames
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-11 12:39:27 +03:00
dokril 501c498edf Add device identity tooltips and MAC validation
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 11:45:11 +03:00
dokril 7e4da4bdcf Fix profile server selection activation state
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 10:11:13 +03:00
dokril 17849ffd73 Polish subscription profile controls and status styling
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 10:04:13 +03:00
dokril 021cdb28d0 Preserve drawer during startup animation
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 09:02:19 +03:00
dokril ded7b740dc Use top offset for subscribed panel positioning
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 08:56:59 +03:00
dokril 79ffff194f Update VPN client and gateway behavior
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 08:50:44 +03:00
dokril 396c5d1917 Improve server picker scrolling and subscription input layout
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 08:10:15 +03:00
dokril 444f26c401 Prevent duplicate server display during profile transitions
Build and Deploy Gateway / build-and-push (push) Successful in 26s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 08:02:17 +03:00
dokril 9ad0307333 Polish subscription and server picker animations
Build and Deploy Gateway / build-and-push (push) Successful in 28s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 07:55:41 +03:00
dokril 9a8191dc91 Refine subscription panel layout and feedback
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 07:47:28 +03:00
dokril 5cad3e9061 Simplify subscription profile management UI
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 07:36:44 +03:00
dokril af1c45e424 Refine subscription profile layout and focus handling
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-11 07:23:40 +03:00
dokril 9432112fe2 Improve server picker layout and profile activation flow
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-11 01:40:50 +03:00
dokril aa9c959368 Refactor VPN proxy components and update related behavior
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-11 01:27:46 +03:00
dokril c89e56942a Preserve device inventory across unavailable observations
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-10 10:49:02 +03:00
dokril f233660dc3 Add deprioritized device group
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-10 09:25:29 +03:00
dokril ec68ba6a7b Refine device traffic chart collapse animation
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-10 00:17:13 +03:00
dokril 3a4173db43 Animate device pin collapse and traffic chart updates
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-09 23:58:02 +03:00
dokril d349ca5e29 Improve gateway traffic dashboard and connection branding
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-09 14:37:11 +03:00
dokril 3204ecf4a5 Retry sing-box downloads in runtime builds
Build and Deploy Gateway / build-and-push (push) Successful in 36s
Build and Deploy Gateway / deploy (push) Successful in 18s
2026-08-09 13:33:28 +03:00
dokril d612e227fa Pin and verify sing-box version across Harbor runtimes
Build and Deploy Gateway / build-and-push (push) Failing after 1m15s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-08-09 13:25:07 +03:00
dokril 03b2ed5fb0 Preserve local macOS client state during installs
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-09 13:18:53 +03:00
dokril 5da9686c27 Update sing-box to 1.13.18
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-09 13:05:51 +03:00
dokril f40221969b Preserve VLESS WebSocket variants during subscription refresh
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-09 12:42:05 +03:00
dokril 90433d7cd8 Update VPN proxy client behavior
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-09 11:55:02 +03:00
dokril 71ede44be0 Use Debian Node image for gateway builds
Build and Deploy Gateway / build-and-push (push) Successful in 48s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-09 00:51:46 +03:00
dokril f04b1752f4 Use mirrored Node image for gateway builds
Build and Deploy Gateway / build-and-push (push) Failing after 21s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-08-09 00:46:07 +03:00
dokril 34d8b681ad Refactor VPN proxy client implementation
Build and Deploy Gateway / build-and-push (push) Failing after 2s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-08-09 00:41:52 +03:00
dokril 32be4380a3 Bump macOS client version to 0.20.5
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-08 09:23:18 +03:00
dokril 837f058025 Configure symlog scaling for gateway traffic dashboard
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-08 08:09:47 +03:00
dokril 6b17f1982b Improve device traffic dashboard and domain attribution metrics
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-08 03:15:45 +03:00
dokril 6e701d4fc6 Refine Grafana traffic dashboard and documentation
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-08 02:30:53 +03:00
dokril ca53b671ee Add domain traffic metrics and Grafana dashboard
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-08 01:57:00 +03:00
dokril 10888ac012 Add Prometheus and Grafana monitoring instructions
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-08 01:28:53 +03:00
dokril c26d4cb43b Reposition Gateway traffic summary below power controls
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-08 01:13:48 +03:00
dokril 3cdb0c735e Reposition Gateway traffic summary
Build and Deploy Gateway / build-and-push (push) Successful in 11s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-08 00:43:28 +03:00
dokril 4c61a04dc7 Add Gateway traffic totals and dashboard chart
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-08 00:23:55 +03:00
dokril 39f3467f9b Smooth traffic chart paths and update version
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 23:02:18 +03:00
dokril b084d7e42c Refine secondary rail icon animations
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:51:51 +03:00
dokril 9751f4b8c8 Animate client rail icons on menu activation
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:46:23 +03:00
dokril a84e54f9dd Animate instructions toggle icon
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:38:24 +03:00
dokril 41b6613837 Refine device traffic chart layout and styling
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:36:35 +03:00
dokril ca0322f93a Refine connectivity diagnostics service management
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:27:19 +03:00
dokril 2151ff51f0 Polish diagnostics animations and device alias sizing
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:19:06 +03:00
dokril e9433e754f Add targeted connectivity diagnostics with sampled results
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 22:11:04 +03:00
dokril b2a2ed7104 Improve startup animation and traffic chart headroom
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 22:03:18 +03:00
dokril fbf22e0b88 Refine inline device alias editing
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 21:54:41 +03:00
dokril 4c9822539d Fix device name and edit control layout
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 21:47:00 +03:00
dokril d32bc14108 Enable connectivity diagnostics in Connect mode
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 21:43:09 +03:00
dokril 70cc221f34 Refine device inventory animations and diagnostics layout
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 21:35:46 +03:00
dokril 0a4a6d9443 Update VPN client connection flow
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 21:19:33 +03:00
dokril 0c376c72aa Handle connectivity diagnostics failures
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 20:58:18 +03:00
dokril 12375006d3 Add Gateway connectivity diagnostics and traffic chart improvements
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 20:48:43 +03:00
dokril e6666558b7 Polish device traffic charts and bump Harbor client versions
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 20:19:27 +03:00
dokril ffd899033e Refine device inventory layout and traffic chart styling
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 19:43:56 +03:00
dokril 8926a8877d Improve device traffic chart tooltips
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 19:39:54 +03:00
dokril ef4847a3e1 Add persistent device traffic history charts
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 19:34:59 +03:00
dokril cf90fd5b4e Add device traffic history chart and total breakdown
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 18:52:46 +03:00
dokril 00a2e1606b Enhance device traffic feedback and totals
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 18:10:19 +03:00
dokril d0c5336b7e Polish device inventory layout and typography
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 17:58:52 +03:00
dokril 0a37121dbe Refine device traffic display and sorting
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 17:51:53 +03:00
dokril c430557dc0 Refine device panel layout and IP copy feedback
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 17:42:06 +03:00
dokril dfa9f09695 Allow device routing without pinning
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 17:27:13 +03:00
dokril 608f8cfcf2 Filter container interfaces from device discovery and policies
Build and Deploy Gateway / build-and-push (push) Successful in 11s
Build and Deploy Gateway / deploy (push) Successful in 14s
2026-08-07 17:16:36 +03:00
dokril 53e6cf2146 Track proxy traffic separately in device inventory
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 17:08:24 +03:00
dokril 9f31eaf396 Simplify device status display and bump client versions
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 16:33:02 +03:00
dokril 560c243047 Add per-device VPN and direct routing policies
Build and Deploy Gateway / build-and-push (push) Successful in 10s
Build and Deploy Gateway / deploy (push) Successful in 16s
2026-08-07 16:18:31 +03:00
dokril 307ad02cd7 Track per-device traffic totals and recover inventory state
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 15:24:54 +03:00
dokril e774486b99 Add device traffic counters and ambiguous MAC detection
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-07 14:29:51 +03:00
dokril 3157e9e8f7 Add device inventory refresh endpoint and auto-refresh UI
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 14:00:26 +03:00
dokril 36c8438b7f Refine device last-seen text morph animation
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 13:52:41 +03:00
dokril 76b75624b8 Add animated relative last-seen device timestamps
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-08-07 13:48:51 +03:00
dokril 44367e0ef3 Refine device inventory layout and last-seen details
Build and Deploy Gateway / build-and-push (push) Successful in 11s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-08-07 13:39:25 +03:00
dokril 158aaadd23 Add Gateway device inventory panel
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-08-06 10:17:33 +03:00
dokril fdc6f687f3 Keep verified Gateway active through transient discovery failures
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-31 10:57:00 +03:00
dokril c6d3fd39fb Add stop confirmation to client power action
Build and Deploy Gateway / build-and-push (push) Successful in 17s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-15 15:25:10 +03:00
dokril b4adcce26a Switch mac client install to tarball download
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-15 12:13:12 +03:00
dokril 7b94f2dee4 Refine server health loading indicator and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-15 00:22:57 +03:00
dokril 7f276b0404 Refine server picker layout and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-15 00:09:50 +03:00
dokril c2f9623394 Refine server picker layout and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-14 23:55:10 +03:00
dokril bc3cc12f69 Bump Harbor versions and tighten server picker layout
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-14 23:06:29 +03:00
dokril 8139543e9a Refine server picker ping labels and layout
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-14 22:53:06 +03:00
dokril 162ef861d7 Simplify client overview access controls and layout
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-14 22:06:38 +03:00
dokril e5a69dcb73 Bump Harbor clients and clarify disabled local rules
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-14 21:55:37 +03:00
dokril a37c211c42 Raise Harbor versions and move secondary menus to the right rail
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-14 21:49:48 +03:00
dokril f629309f32 Bump Harbor versions and surface gateway mode in overview
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-13 20:32:59 +03:00
dokril 56f5e408e3 Handle rejected subscriptions and add local client compose
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-13 20:23:37 +03:00
dokril 8c19f2cba9 Remove initial server health check and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-13 13:36:56 +03:00
dokril 90447de0aa Polish server health checking feedback and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 19:14:00 +03:00
dokril 5874df2fce Add initial server health check and update Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 18:49:45 +03:00
dokril d551d41b71 Keep the server picker simple by default
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 16:30:53 +03:00
dokril 9a539409f0 Improve server picker health state handling and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 15:31:41 +03:00
dokril 0480e617cd Bump Harbor versions and adjust subscribed desktop layout
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 15:22:18 +03:00
dokril 77eaed8d90 Align client panel desktop spacing and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 14:58:55 +03:00
dokril e8c1c9d403 Bump Harbor versions and add desktop subscription spacing
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 14:52:43 +03:00
dokril 12c1b128f8 Bump Harbor client versions and pin form content alignment
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 14:48:07 +03:00
dokril 6bd51dc8fb Raise client layout version and add subscription form height cap
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 14:41:47 +03:00
dokril fca3c0b705 Refine server picker toggle and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 14:31:34 +03:00
dokril d9745e9aed Add simple server picker mode with version bump
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 14:13:42 +03:00
dokril 57330f1c78 Refactor server picker and limit ping requests
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 13:42:22 +03:00
dokril 24fda3e34e Improve client accessibility and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 13:24:05 +03:00
dokril 5b3d288405 Bump Harbor versions and refine disabled local rules toggle
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 13:09:56 +03:00
dokril 2a71466670 Refine client panel layout and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 13:01:45 +03:00
dokril 2d1d89911e Animate Harbor brand swap arrow and bump client versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 12:47:37 +03:00
dokril 394fceac15 Bump Harbor client versions and refine mode swap animation
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 12:44:45 +03:00
dokril c40f465708 Bump Harbor versions and refine mode swap animation
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:42:35 +03:00
dokril ba1e53a824 Bump Harbor versions and refine mode swap arrow animation
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:38:50 +03:00
dokril 1fe13703eb Bump Harbor client versions and refine arrow reveal animation
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:36:56 +03:00
dokril 17577ea460 Bump Harbor client versions and tighten gateway mode animation
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:33:44 +03:00
dokril 2a214fc28b Clarify and strengthen state invariant tests
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 12:22:59 +03:00
dokril 5e33360c92 Bump Harbor versions and refine gateway mode transition
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:09:31 +03:00
dokril ef33ad9c84 Bump Harbor client versions and refine brand mode transition
Build and Deploy Gateway / build-and-push (push) Successful in 21s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 12:04:00 +03:00
dokril 267afc5c7e Introduce stable server IDs for subscription state
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 11:59:22 +03:00
dokril 005c7a101b Refine subscription import and refresh flow
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-07-12 11:18:33 +03:00
dokril ba15a25c89 Refine local rule delete animation and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 11:00:54 +03:00
dokril d4897e5dcf Bump Harbor versions and soften rule editor dimming animation
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 01:48:24 +03:00
dokril 7182bc2c1a Bump Harbor versions and add delete dimming animation
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 01:45:47 +03:00
dokril 8db9d30828 Refine rule editor exit animations and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 00:28:34 +03:00
dokril c56f51e07b Add delete strike overlay and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 00:23:19 +03:00
dokril d6ba05ac7d Refine client delete animation and local rule button styling
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 00:21:21 +03:00
dokril 4ed25301db Refine rule delete animation and bump Harbor versions
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 00:17:17 +03:00
dokril d49a1f6837 Raise delete strike overlay above row content
Build and Deploy Gateway / build-and-push (push) Successful in 19s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 00:14:54 +03:00
dokril 56304514ff Bump Harbor versions and refine delete strike styling
Build and Deploy Gateway / build-and-push (push) Successful in 22s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-12 00:10:25 +03:00
dokril 4519577295 Bump Harbor versions and refine delete strike styling
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-12 00:06:14 +03:00
dokril 87cd83f89a Refine client rule delete strike animation
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-11 23:57:00 +03:00
dokril fbbd6e40b4 Add delete strike animation for local rules
Build and Deploy Gateway / build-and-push (push) Successful in 28s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-11 23:54:21 +03:00
dokril 483fce55f3 Update Harbor Gateway UI for direct routing mode
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 23:47:45 +03:00
dokril 62d2044dc1 Bump Harbor versions and raise open rule row stacking
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 23:41:02 +03:00
dokril f135ade43b Track applied route rules separately from pending edits
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 23:07:20 +03:00
dokril 65bf88bf41 Add shared critical confirmation popup for destructive actions
Build and Deploy Gateway / build-and-push (push) Successful in 23s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 22:50:51 +03:00
dokril 387cc273e8 Improve local rules persistence and dirty-state handling
Build and Deploy Gateway / build-and-push (push) Successful in 20s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 22:37:04 +03:00
dokril 1304a22f1f Add enabled local routing rules and gateway version reporting
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 13s
2026-07-11 22:14:43 +03:00
dokril a0c66edb02 Add local routing rules to Harbor
Build and Deploy Gateway / build-and-push (push) Successful in 17s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-11 21:52:03 +03:00
dokril 306a9b8ced Bump Harbor versions and add direct .ru routing
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-11 21:36:04 +03:00
dokril 7a6f9a26ac Add runtime version reporting and display
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-11 21:24:18 +03:00
dokril c9223aa3a9 Harden server state and config persistence
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 6s
2026-07-11 21:07:11 +03:00
dokril e6b21ed8a9 Copy shared sources into client Docker build
Build and Deploy Gateway / build-and-push (push) Successful in 12s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 20:58:43 +03:00
dokril 74660d915f Track client operations and show inline progress
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 20:55:20 +03:00
dokril 9da4fef1f0 Unify Harbor error handling across server and client
Build and Deploy Gateway / build-and-push (push) Successful in 15s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-11 20:38:41 +03:00
dokril 457dd912d1 Bypass bridge traffic in TProxy and simplify subscription refresh
Build and Deploy Gateway / build-and-push (push) Failing after 1m12s
Build and Deploy Gateway / deploy (push) Has been skipped
2026-07-11 19:48:04 +03:00
dokril 198669694c Handle stale sync state in client UI
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Failing after 1m21s
2026-07-11 19:31:35 +03:00
dokril a775d8456a Ignore local workpack roadmap workspace
Build and Deploy Gateway / build-and-push (push) Successful in 11s
Build and Deploy Gateway / deploy (push) Successful in 7s
2026-07-11 19:18:50 +03:00
dokril 40f73ee98c Include shared server modules in runtime images
Build and Deploy Gateway / build-and-push (push) Successful in 18s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-11 19:02:27 +03:00
dokril e81a48a5b1 Persist operation state in server and reuse returned snapshots
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Failing after 1s
2026-07-11 18:59:14 +03:00
dokril b0b9da51b6 Split gateway control and dataplane into separate services
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 12s
2026-07-11 17:52:48 +03:00
dokril 4b326c5e99 Refine VPN client design guidance for mode-aware motion
Build and Deploy Gateway / build-and-push (push) Successful in 11s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:51:41 +03:00
dokril 0bf7d2ee30 Refresh Harbor docs and subscription controls
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:42:03 +03:00
dokril b53cd08dcc Rename client app to Harbor Connect and refresh state animations
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:24:28 +03:00
dokril edad26d978 Refresh Harbor Gateway branding assets and accent styling
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:15:54 +03:00
dokril 322f5a125b Polish client duration and tooltip interactions
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:12:09 +03:00
dokril 85053f9948 Add ambient motion to harbor mode branding
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:06:25 +03:00
dokril 9efd446d4e Refine Harbor brand mode hover animation
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 16:02:49 +03:00
dokril bfc85c3056 Add smooth transform transition to harbor mode swap icons
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:59:09 +03:00
dokril 89feffd0b7 Refine Harbor mode swap icon animation
Build and Deploy Gateway / build-and-push (push) Successful in 12s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:56:02 +03:00
dokril aa54be9c9b Refine Harbor mode swap and client delete modal animations
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:52:56 +03:00
dokril befd41933d Refine Harbor delete flow and gateway affordances
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:46:15 +03:00
dokril b389664824 Refine client accent styling with dynamic harbor colors
Build and Deploy Gateway / build-and-push (push) Successful in 12s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:39:30 +03:00
dokril d5a42d8b7b Add Harbor mode tooltip on hover and focus
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:28:42 +03:00
dokril e6bcdc9c62 Refine harbor brand mode swap positioning and styling
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:24:23 +03:00
dokril a58fb26e4f Accept 16-character subscription secrets for gateway presence
Build and Deploy Gateway / build-and-push (push) Successful in 12s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:18:22 +03:00
dokril 0ab912c64c Add gateway auto toggle for client mode
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:17:07 +03:00
dokril 51312d51cd Add Harbor Gateway auto-detection for client routing
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 15:02:33 +03:00
dokril 0a1aa8aed3 Add subscription validation and first-run onboarding reveal
Build and Deploy Gateway / build-and-push (push) Successful in 16s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 14:13:39 +03:00
dokril 84efbe7450 Rename product to Harbor and refine connection timer
Build and Deploy Gateway / build-and-push (push) Successful in 12s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 13:20:32 +03:00
dokril 42c15df8c9 Close client instructions panel on outside click
Build and Deploy Gateway / build-and-push (push) Successful in 9s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 12:36:30 +03:00
dokril fa3b455fab Refine VPN client instructions and subscription refresh flow
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 12:34:14 +03:00
dokril 6f565ded2e Rename gateway proxy labels and update window title
Build and Deploy Gateway / build-and-push (push) Successful in 13s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 11:40:19 +03:00
dokril 41922ad30b Add direct gateway forwarding when VPN is off
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 11:37:08 +03:00
dokril 9d4f312595 Remove legacy vpn proxy code and simplify the client
Build and Deploy Gateway / build-and-push (push) Successful in 14s
Build and Deploy Gateway / deploy (push) Successful in 1s
2026-07-11 11:18:03 +03:00
dokril e19d33adb9 Refine client setup state and subscription controls 2026-07-11 10:43:28 +03:00
dokril 99f7f58fcb Add subscription info refresh endpoint and UI stats 2026-07-11 09:49:55 +03:00
dokril 6bc7840fb1 Refine client overview proxy and subscription display 2026-07-11 05:42:22 +03:00
dokril d3b7f0d613 Simplify proxy routing and configuration 2026-07-11 04:42:16 +03:00
dokril efa46d1ee5 Remove obsolete VPN proxy code 2026-07-08 09:51:15 +03:00
dokril 149bb999dc Refactor VPN proxy routing logic 2026-07-08 09:39:24 +03:00
dokril 288acbf0c8 Refactor proxy handling and update related UI flows 2026-07-08 09:01:10 +03:00
dokril b45dd2ae05 Refactor proxy routing and session management 2026-07-08 00:09:38 +03:00
dokril c5bdb10445 Add VPN proxy connection handling 2026-07-07 22:33:15 +03:00
dokril 7dbf786c56 Refactor VPN proxy routing and session handling 2026-07-07 22:07:17 +03:00
dokril 59f2264a2e Clarify active Windows client architecture 2026-07-07 21:19:41 +03:00
dokril a0f41baa36 Simplify client proxy port handling
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2026-06-04 10:24:33 +03:00
dokril c3d3aaa699 Add kernel forwarding for bypassed devices 2026-05-24 14:00:09 +03:00
dokril 301b76c03e Shorten tproxy source bypass chain name 2026-05-24 13:46:04 +03:00
dokril ab6de6996f Add UI-controlled TProxy bypass for devices 2026-05-24 13:38:52 +03:00
dokril 0092ec4cde Add source CIDR bypass for TProxy 2026-05-24 13:26:03 +03:00
dokril 12ad0c8b78 chore: ignore local worktrees 2026-05-21 20:13:18 +03:00
dokril b5d4c61783 docs: add windows client implementation plan
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2026-05-21 20:04:51 +03:00
dokril f4990a4f55 docs: add windows client design 2026-05-21 19:55:08 +03:00
dokril ab44626a0f feat: simplify mac client interface
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2026-05-20 09:31:14 +03:00
dokril 95edefa84f feat: link mac client to shared gateway proxy
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2026-05-19 22:47:05 +03:00
dokril f914c28bc5 fix: detect macos client port conflicts
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2026-05-19 16:51:40 +03:00
dokril 73488384e4 feat: improve macos client proxy setup
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2026-05-19 16:31:33 +03:00
dokril c6352d781f Add home bypass mode for the Mac client
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2026-05-19 13:47:53 +03:00
dokril d02dbe10de Add Mac client mode and simplify local proxy UI 2026-05-19 13:12:39 +03:00
dokril 2ef1e09986 Fix gateway CI to build and deploy via registry
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2026-05-09 11:11:39 +03:00
dokril 6df8c525ef Fix Gitea gateway build and deploy workflow
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2026-05-09 11:10:16 +03:00
dokril f264ce4a2f Switch gateway CI to registry-based build and deploy
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2026-05-09 11:08:05 +03:00
dokril 371adbcb50 Break gateway build cycle with runtime base bootstrap
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2026-05-09 11:03:50 +03:00
dokril 3a930c9d8c Fix gateway workflow runner and deploy host
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2026-05-09 10:58:19 +03:00
dokril 1bdf12f174 Break gateway build cycle with runtime base bootstrap
Build and Deploy Gateway / build-and-deploy (push) Failing after 2m58s
2026-05-09 10:54:13 +03:00
dokril 3e8925c609 Fix gateway workflow runner selection
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2026-05-09 10:51:23 +03:00
dokril d12b0c01fc Use runtime base to break gateway build cycle
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2026-05-09 10:46:13 +03:00
dokril e16f401dc5 Run gateway builds on 107 and deploy on 111
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2026-05-09 10:41:36 +03:00
dokril 68844d67df Add remote build and deploy workflow
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2026-05-09 10:37:27 +03:00
dokril ec8e748a43 Add routed build and deploy flow for gateway image
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2026-05-09 10:32:18 +03:00
dokril 62f50d9c28 Allow special characters in rule-set tags
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2026-05-09 10:23:57 +03:00
dokril cab4313c70 Fix LAN proxy binding in routing setup
Build and Deploy Gateway / build-and-deploy (push) Failing after 13s
2026-05-09 10:11:40 +03:00
dokril aab7533438 Refine routing defaults for global and device fallbacks
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2026-05-09 09:53:12 +03:00
dokril 62b39cdf58 style: отформатирован код для улучшения читаемости
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Refs: None
2026-05-09 09:24:43 +03:00
dokril 6ab5f50f95 feat: добавлена поддержка отображения устройства в журнале трафика
Refs: None
2026-05-09 09:24:34 +03:00
dokril 4bb8507e3f feat: добавлены правила маршрутизации по устройствам и управление ими через API
Build and Deploy Gateway / build-and-deploy (push) Successful in 19s
Refs: None
2026-05-09 09:12:03 +03:00
dokril b3fad00f80 feat: добавлена возможность сортировки трафика по частоте и времени
Build and Deploy Gateway / build-and-deploy (push) Failing after 0s
Refs: None
2026-05-09 08:38:37 +03:00
dokril 5c9a291920 feat: добавлена поддержка кэша прямого обхода с использованием ipset
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Refs: None
2026-05-08 22:27:58 +03:00
dokril 781cbbb026 feat: добавлено использование хеширования для ключа кеша
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Refs: None
2026-05-08 21:57:54 +03:00
dokril 499d2d3367 fix: удален ненужный параметр SING_BOX_CONFIG из конфигурации сервиса
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2026-05-08 21:42:45 +03:00
dokril eeec4359b0 feat: добавлена возможность обхода правил для трафика
Build and Deploy Gateway / build-and-deploy (push) Successful in 19s
- Реализована функция для включения и отключения обхода правил.
- Обновлены компоненты интерфейса для управления режимом обхода.
- Добавлена обработка состояния обхода в API.

Refs: None
2026-05-08 21:28:42 +03:00
dokril 11f2c0ccb2 feat: добавлена группировка трафика с возможностью переключения
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2026-05-08 21:05:26 +03:00
dokril f89cba4a24 style: отформатирован код для улучшения читаемости
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2026-05-08 21:02:31 +03:00
dokril 49be90a82c feat: добавлена обработка трафика и интерфейс для его отображения
Refs: None
2026-05-08 21:02:18 +03:00
dokril bb7250e4ac feat: добавлена возможность поиска и отображения rule-sets из каталога SagerNet
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Refs: None
2026-05-08 20:38:27 +03:00
dokril 4f1a2f8bf6 feat: обновлены источники rule-set для sing-box
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2026-05-08 20:18:55 +03:00
dokril 7d1f5f89ed feat: добавлена возможность поиска и декомпиляции rule-sets
Build and Deploy Gateway / build-and-deploy (push) Failing after 2s
Refs: None
2026-05-08 20:15:33 +03:00
dokril b1c8eea976 style: отформатирован код для улучшения читаемости
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2026-05-08 19:49:54 +03:00
dokril 27b71077b1 feat: добавлены функции для работы с пользовательскими rule-sets
Добавлены новые API-методы для получения и сохранения пользовательских rule-sets. Обновлены компоненты для работы с этими данными, включая интерфейс для добавления и удаления rule-sets.

Refs: None
2026-05-08 19:49:44 +03:00
dokril 3e18b833c6 style: исправлены кавычки в коде для единообразия
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Refs: None
2026-05-08 19:41:24 +03:00
dokril 0cd898d1c1 feat: добавлены функции для работы с PID sing-box
Refs: None
2026-05-08 19:41:17 +03:00
dokril 8476ab16e5 feat: добавлены новые компоненты для управления правилами и серверами
Build and Deploy Gateway / build-and-deploy (push) Successful in 25s
- Создан компонент RuleEditorDrawer для редактирования правил с поддержкой JSON.
- Добавлен компонент ServersPage для отображения и управления серверами.
- Реализован компонент SettingsPage для управления подписками и конфигурациями.
- Создан компонент Sidebar для навигации по приложению.
- Добавлен компонент StatusPane для отображения статуса сервера.
- Реализован компонент Toasts для отображения уведомлений.
- Создан компонент Topbar для отображения информации о текущем состоянии.
- Добавлен модуль country.js для определения страны по тегу сервера.

Refs: None
2026-05-08 19:31:49 +03:00
dokril a8f2c6f3f9 fix: добавить ESC-символ в regex парсинга уровня лога sing-box
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2026-05-08 19:01:30 +03:00
dokril a961b1b415 fix: хранить конфиг sing-box в volume (dataDir), а не в /etc/sing-box
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2026-05-08 18:50:53 +03:00
dokril 7489b5ef97 fix: парсить уровень лога sing-box из stderr вместо hardcode error
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2026-05-08 18:45:16 +03:00
dokril b716b370ac ci: retry after npm installed on lxc-111
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2026-05-08 18:37:15 +03:00
dokril abd5a73b51 fix: перенести сборку фронта на хост CI, убрать ui-build стадию из Docker
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2026-05-08 18:32:26 +03:00
dokril 1ed79c3a1e style: исправлены стили и форматирование кода
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2026-05-08 18:23:56 +03:00
dokril 8789496ae6 feat: добавлены компоненты для управления конфигурацией и логами
Добавлены новые компоненты для отображения и управления конфигурацией, логами и правилами маршрутизации. Реализована логика для работы с API, включая запросы на получение и сохранение данных. Также добавлены шаблоны правил и утилиты для валидации.

Refs: None
2026-05-08 18:23:29 +03:00
dokril 7d41dd86e7 Reduce Docker build memory usage
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2026-05-08 17:27:56 +03:00
dokril 81bed1513c Remove proxy args from gateway build
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2026-05-08 17:19:43 +03:00
dokril d13eb0a9a4 Fix Gitea workflow labels and runner deployment
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2026-05-08 16:58:32 +03:00
dokril 71f8e0b84c Update vpn proxy routing checks
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2026-05-08 16:52:01 +03:00
dokril 03885d2e09 Add gateway deploy workflow
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2026-05-08 16:36:41 +03:00
dokrilandCopilot 88eef527d5 Фикс TProxy: добавлен bypass для LOCAL трафика хоста
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Добавлено правило --dst-type LOCAL в начало цепочки VPN_PROXY_TPROXY.
Без него ответные пакеты от VPN серверов (storage.dokops.ru, media.dokops.ru)
перехватывались TProxy и sing-box не мог установить VLESS соединение.

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-05-08 16:36:06 +03:00
dokril c971b40eae Add gateway auto-deploy and tag matching fallback
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2026-05-08 16:34:29 +03:00
dokrilandCopilot 327561b2e9 Dockerfile: добавлен COPY package.json для поддержки ES modules
Build Gateway Image / build (push) Failing after 0s
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-05-08 16:17:02 +03:00
dokril 185a311a38 Merge pull request 'develop' (#1) from develop into master
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Reviewed-on: http://192.168.50.109:3000/dokril/vpn-proxy/pulls/1
2026-05-08 16:05:18 +03:00
dokril ef752d66bc Rebuild vpn proxy around gateway mode 2026-05-08 16:04:38 +03:00
dokril a3816cbedc feat: add network module and service for TCP latency measurement and proxy performance 2026-03-14 18:19:02 +03:00
dokril 51d26a4c1b feat: add network module and service for TCP latency measurement and proxy performance 2026-03-14 17:04:53 +03:00
dokrilandCopilot 638940c694 feat: полный CI/CD — build на 107, deploy на 111
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- build job (ubuntu-latest/107): docker build + push в Gitea Registry
- deploy job (lxc-111): docker pull + docker run с network=host
- Данные сохраняются в /opt/vpn-proxy/data volume
- Ansible плейбук больше не нужен для деплоя

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-03-01 02:45:05 +03:00
dokrilandCopilot 2e16d33618 fix: ветка master в CI trigger
Build and Push Docker Image / build (push) Successful in 12s
Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-03-01 02:06:24 +03:00
dokrilandCopilot 6b38c7b15f feat: Gitea CI workflow + registry image для деплоя
- .gitea/workflows/docker-build.yml: билд и пуш образа в Gitea Container Registry
- docker-compose.server.yml: убрал build context, используем registry image
- Требует REGISTRY_TOKEN секрет в настройках репо

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-03-01 02:05:31 +03:00
dokril 6e97bb9f61 feat: Реализован новый веб-интерфейс и бэкенд для управления VPN-клиентом, включая списки серверов, элементы управления прокси и опции конфигурации. 2026-01-15 18:39:39 +03:00
dokril c4915389a7 feat: Добавлена начальная реализация веб-интерфейса и основной логики приложения для VPN-прокси с новыми компонентами, скриптами и модулями. 2026-01-15 18:39:10 +03:00
dokril 48178fa3ae docs: Обновить README.md. 2026-01-15 17:58:54 +03:00
dokril ede0370b3a feat: Реализовано включение/выключение прокси через веб-интерфейс с сохранением состояния и обновлением конфигурации, а также добавлен соответствующий UI. 2026-01-15 01:15:25 +03:00
dokril 116856c1d1 feat: добавляет визуализацию цепочки прокси, настройки подключения и интерфейс для конфигурации резервного прокси. 2026-01-15 00:34:46 +03:00
dokril 13c92c7413 feat: Добавлены скрипты для установки Sing-box и Discord, а также для просмотра логов. 2025-12-31 15:41:53 +03:00
dokril 479a7232b1 feat: Добавлены скрипты для установки Sing-box и Discord, а также для просмотра логов. 2025-12-31 12:26:17 +03:00
dokril e1f71f95ad feat: Добавить скрипт для настройки Discord. 2025-12-30 22:42:20 +03:00
dokril d7a3b20da9 feat: Добавлены скрипты для работы с сетью, системными утилитами и настройки Discord. 2025-12-30 21:08:02 +03:00
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---
name: design-harbor-device-ecosystem
description: Design, plan, implement, review, or document Harbor Gateway integrations with current and future companion devices. Use for LAN advertisement and discovery, Connect-Gateway pairing, trusted device identity, connected-client presence, ecosystem membership in the Gateway device list, multi-Gateway selection, capability or protocol negotiation, and related API, persistence, migration, or UI contracts. Do not use for traffic-only LAN inventory or visual polish that does not change ecosystem behavior.
---
# Design Harbor Device Ecosystem
Keep discovery, trust, application presence, routing, and LAN observation separate. A device is not trusted because mDNS or the neighbor table reports it, and a paired device is not necessarily connected or routed through this Gateway.
## Scope and non-goals
- Apply this skill to Gateway integration with Harbor Connect on macOS and future clients, extensions, appliances, or companion services.
- Keep one platform-neutral protocol core. Isolate native DNS-SD and private-key storage behind thin platform adapters, and state whether a new target is desktop, headless, mobile, or browser-bound before choosing an adapter.
- Preserve the existing MAC-based inventory as an observational traffic and policy surface; do not turn it into ecosystem identity.
- Do not introduce a generic event bus, mesh, cloud account, fleet controller, or WAN discovery without a concrete requirement.
- Do not define a new visible pairing flow, badge, layout, wording, or management surface without the exact owner decision required by `workpack/DESIGN_OWNER_POLICY.md`.
- Do not deploy, SSH, pair live devices, or operate a live Gateway unless the current user request explicitly authorizes that exact operation.
## Workflow
1. Read `PRODUCT.md`, `workpack/PRODUCT_PRIORITIES.md`, `workpack/DATA_CONSISTENCY_MODEL.md`, `workpack/DESIGN_OWNER_POLICY.md`, `workpack/STATUS.md`, and the selected workpack task.
2. Read [device-ecosystem-contract.md](references/device-ecosystem-contract.md) before changing discovery, pairing, identity, presence, routing handoff, or the Gateway device projection.
3. Trace the current producer -> transport -> persistence -> canonical snapshot -> UI path. Confirm the owning service and every caller before editing.
4. Classify each proposed field and state as one of: discovery candidate, persisted trust relationship, authenticated presence lease, route state, network observation, or derived binding. Reject fields that mix categories.
5. Reuse standard DNS-SD/mDNS for local discovery and the existing request/response control-plane shape for the first protocol slice. Do not treat the current plaintext HTTP transport as sufficient protection for invitations or credentials; require pinned end-to-end identity and confidentiality. Add push transport only when a concrete feature cannot work with bounded polling or heartbeats.
6. Keep persisted relationship mutations schema-versioned, atomic, revision-safe, and reversible. Keep transient session loss from deleting paired identity.
7. Join ecosystem membership to network inventory in the backend and expose one revisioned projection. Never join independent authoritative lists in React. Also use `design-vpn-client-ui` for any visible Connect UI work.
8. For runtime, API, dependency, UI, or deployment changes, also use `manage-harbor-versions` and run its affected-component gate. Skill-only and documentation-only changes need no Harbor version bump.
## Non-negotiable decisions
- Advertise Gateway availability through a versioned DNS-SD service on the local link. Treat every advertisement and resolved address as an untrusted candidate until paired identity is cryptographically verified.
- Put no subscription URL, pairing secret, device list, credential, or private identity material in mDNS/DNS-SD records, logs, fixtures, screenshots, or user-visible diagnostics.
- Pair explicitly. Use a short-lived, single-use invitation; bind the stable Gateway identity and client installation identity; persist each side atomically only after confirmation; make cross-device finalization idempotent and recoverable; support revoke and credential rotation.
- Use a high-entropy QR/manual invitation, or a vetted PAKE plus mutual confirmation for a short human code. Never send a low-entropy code as a bearer secret over unauthenticated HTTP.
- Give every Harbor installation a stable cryptographic device identity. Keep it independent of IP, hostname, interface, and randomized MAC.
- Define states precisely: `discovered` means advertised; `paired` means a persisted trust relationship; `connected` means a current authenticated lease; `routed` means this Gateway is the active route. Never collapse them into one `online` boolean.
- Derive lease freshness from Gateway receipt time. Do not trust a client-supplied clock, IP address, or MAC address as authoritative.
- Correlate a paired client with the existing neighbor inventory only as a derived, confidence-bearing binding. A missing or ambiguous binding must not erase membership or fabricate traffic attribution.
- Allow a client to pair with multiple Gateways, but keep one explicit active routing target. A discovered or unpaired Gateway must never hijack route selection.
- Preserve legacy subscription-based presence only as a bounded transition path. Never silently convert matching subscription URLs into permanent pairing records.
- Keep capability advertisement versioned and additive. Ignore unknown capabilities; block incompatible protocol versions explicitly. Never authorize a mutation from self-declared capabilities alone.
- Keep the Gateway backend as the source of truth for its paired-device registry and active leases. Preserve revision-safe frontend application and transport freshness separation.
## Acceptance pass
Before handing off an ecosystem change, verify:
- A supported client can discover more than one Gateway and survives address changes without changing Gateway identity.
- Spoofed discovery cannot create trust, change the active route, or appear as a paired ecosystem member.
- Pairing works without a subscription URL; invitations expire, are single-use, and reject replay.
- The Gateway can distinguish an ordinary LAN neighbor, a paired but disconnected device, a connected Harbor client, and a client currently routed through it.
- A paired Mac remains the same ecosystem device across DHCP, interface, or randomized-MAC changes; only its derived inventory binding changes.
- Discovery loss does not unpair a device; heartbeat loss expires the lease; revocation rejects the next authenticated request immediately.
- Multiple Gateways and multiple clients do not collide. Any aggregate network identity includes Gateway scope.
- Persisted writes are atomic and migrated with rollback; delayed snapshots cannot overwrite newer state.
- Legacy installs retain the documented transition behavior without exposing or copying subscription secrets.
- Automated tests cover discovery deduplication, pairing expiry/replay, authentication, lease expiry, revocation, binding ambiguity, revision ordering, and migration.
- Any visible UI outcome has a separately recorded owner decision and preserves loading, empty, stale, error, keyboard, reduced-motion, and responsive behavior.
## Output contract
Report:
- current owner and traced data flow;
- chosen source of truth for identity, trust, presence, route, and inventory binding;
- protocol and persistence changes, including version negotiation;
- migration, compatibility, rollback, and security boundaries;
- exact automated checks and what remains unverified;
- unresolved owner decisions, especially visible UI and short-code pairing treatment.
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interface:
display_name: "Design Harbor Device Ecosystem"
short_description: "Design trusted Harbor device integration."
default_prompt: "Use $design-harbor-device-ecosystem to design Harbor Gateway discovery, pairing, and connected-device contracts."
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# Harbor device ecosystem contract
Use this reference for Gateway advertisement, discovery, pairing, connected-device lists, or integration with future Harbor-capable subsystems.
## Layer ownership
| Layer | Source of truth | Identity | Lifetime | Meaning |
|---|---|---|---|---|
| Discovery | DNS-SD browser cache | advertised Gateway instance | ephemeral | a compatible service may be reachable |
| Gateway trust | client pairing store | `gatewayId` plus pinned public identity | persisted | this is a Gateway the owner paired |
| Peer registry | Gateway pairing store | stable client installation ID plus public identity | persisted | this client belongs to the Harbor ecosystem |
| Presence | Gateway session owner | authenticated client ID plus lease | ephemeral | this paired client is currently connected to the control plane |
| Route | Connect route owner | selected `gatewayId` plus applied route state | runtime/canonical | this client currently intends to use this Gateway |
| Network inventory | existing device inventory | Gateway-scoped MAC-derived `dev_*` ID | observed/persisted | this network endpoint was seen and may own traffic or policy |
| Binding | Gateway backend projection | ecosystem client ID -> network inventory ID | derived | current correlation, never trust identity |
Do not reuse the current MAC-derived `dev_*` ID as an ecosystem ID. For a future fleet view, scope network inventory IDs by `gatewayId`.
## Minimal discovery profile
Advertise one TCP DNS-SD service such as `_harbor-gw._tcp.local.`. Use the service instance name as a short, user-friendly Gateway name; do not encode a MAC address or serial number in it.
Use SRV/A/AAAA for endpoint resolution. Keep TXT metadata small and additive:
- `txtvers=1` for the TXT schema;
- `protovers=1` for the application protocol;
- public `id=<gatewayId>` for candidate deduplication;
- compact capability flags and whether a pairing window is open.
Never advertise credentials, pairing invitations, subscription data, client names, client counts, or private network policy. Unknown TXT keys must be ignored. Resolve addresses immediately before connection and verify the paired identity after connecting.
mDNS is link-local. For another VLAN or routed segment, use an explicitly configured address, QR/manual endpoint, or unicast DNS-SD. Do not invent a custom UDP broadcast or assume multicast crosses routers.
In the current Gateway deployment, first inspect the Compose network boundary: the control service is bridge-networked while the dataplane owns host networking. Keep identity and trust in control, but publish the public DNS-SD descriptor through host Avahi or a narrow host-network publisher. Do not move the whole control plane to host networking merely to gain multicast. On macOS, prefer the native Bonjour/`dns-sd` surface through the existing host-side network monitor over a second custom discovery stack.
Discovery answers only “where might a Gateway be?” It does not answer “do I trust it?”, “am I connected?”, or “is my traffic routed through it?”.
## Identity and pairing
Maintain a stable Gateway identity and a stable key pair in persisted, backup-aware storage. Maintain a stable installation identity and key pair per client; store the client private key in the platform credential store, including macOS Keychain.
Do not reuse the current subscription `hwid` as public ecosystem identity: it is also sent to the subscription provider as `x-hwid`. Create a separate local identity so LAN and provider correlation remain independent.
Model the minimum persisted relationship records:
```text
PairedGateway = gatewayId, displayName, pinnedPublicIdentity,
capabilities, pairedAt
PairedDevice = deviceId, displayName, deviceType, publicIdentity,
capabilities, pairedAt, revokedAt?
```
Treat display names, platform, version, and capabilities as metadata, not authentication or authorization.
Use this pairing sequence:
1. Let the Gateway open a bounded pairing window and create a short-lived, single-use invitation.
2. Bind the invitation to the Gateway ID and public-identity fingerprint.
3. Let the client create or load its installation key and submit its public identity and minimal metadata.
4. Confirm the peer on a trusted surface before committing both records.
5. Issue a per-device credential or register proof-of-possession for later authenticated requests.
6. Consume the invitation atomically; reject expiry, replay, mismatch, or reuse.
7. Support revoke and credential rotation without changing unrelated LAN inventory.
Persist each local trust record atomically and make finalization idempotent so an interrupted client can resume or safely retry. Pairing spans two devices and is not a distributed transaction; never report it as cross-device atomicity.
For the smallest safe first slice, encode the same grouped high-entropy invitation in QR and manual copy/paste form. If the owner requires a short numeric code, use a vetted password-authenticated key exchange such as SPAKE2 and mutual key confirmation, or require an independent confirmation that provides equivalent protection. Use platform or Node standard cryptography for identity and signatures; do not design custom cryptography or add a crypto dependency without need.
Do not use the subscription URL as a pairing credential. Keep the existing subscription-HMAC presence only as an explicitly labelled legacy trust source during the transition window.
## Authenticated presence and route state
After pairing, let the client renew a bounded authenticated lease. Start with periodic requests using the existing control-plane API shape, but protect invitations and credentials with pinned end-to-end identity and confidentiality; the current plaintext HTTP transport alone is not sufficient. Do not add WebSocket, broker, or event-stream infrastructure until a concrete server-push feature requires it.
The Gateway derives:
```text
paired = persisted relationship exists and is not revoked
connected = paired and authenticated lease has not expired
routed = connected and current Connect route state selects this gatewayId
inventory = optional current network binding exists
```
Store or project `lastAuthenticatedAt` and `leaseExpiresAt`; derive status rather than persisting a mutable `online` boolean. Use Gateway receipt time for freshness. Let the client report `deviceType`, app/protocol version, capabilities, and selected route as authenticated metadata, but distinguish a reported route from dataplane-confirmed traffic.
Discovery failure marks the candidate stale. It does not revoke pairing or immediately terminate a still-valid lease. Lease expiry marks the client disconnected without deleting its relationship. Revocation invalidates the credential immediately.
## Joining a Mac to the Gateway device view
When a paired Mac renews its lease:
1. Authenticate its stable ecosystem identity.
2. Derive the remote source address from the accepted connection; do not trust a claimed IP.
3. Correlate that address with the current neighbor snapshot to obtain an optional MAC-derived inventory ID.
4. Publish the relationship, presence, route, and binding together from the Gateway backend.
Represent the binding with `networkDeviceId`, `confidence`, and `observedAt`. A randomized MAC, DHCP change, or interface switch updates or removes only this binding. The stable Mac relationship remains.
If the source address is NATed, missing, duplicated, or maps to an ambiguous neighbor, keep the Mac paired/connected but leave traffic and policy attribution unavailable. Never attach another device's counters by hostname or client-provided MAC.
Expose one revisioned Gateway projection to the UI. It may extend the current device snapshot or use a dedicated ecosystem snapshot, but the backend must perform the join. React must not fetch authoritative pairing, presence, and inventory lists independently and guess the relationship.
## Multi-Gateway behavior
- Let Connect persist several `PairedGateway` records keyed by stable Gateway ID.
- Let discovery resolve zero or more current endpoints for each identity.
- Keep one active route target and make selection or automatic policy explicit.
- Require a paired identity match before automatic handoff. A new advertisement is never enough.
- Preserve a verified active Gateway through transient discovery failure, but surface stale freshness.
- Let one Gateway register many clients without assuming macOS; branch on negotiated capabilities, not hard-coded platform paths.
- Do not add fleet federation. If it becomes real, aggregate with compound `{gatewayId, deviceId}` identities.
## Canonical data and failure rules
- Give the pairing registry its own `schemaVersion` and monotonic `revision`, or include it in an existing canonical aggregate with equivalent guarantees.
- Reuse the existing atomic JSON-store pattern before considering a database or another persistence dependency.
- Make pair, rename, revoke, and credential rotation atomic. Return the complete new snapshot after a mutation.
- Keep active leases process-local unless restart continuity has a demonstrated need. Persist last-seen metadata at a bounded cadence if required; never write every heartbeat by default.
- Apply incoming frontend snapshots only when their revision is not older than the current one. Keep transport stale/error state outside the domain snapshot.
- Preserve last-good discovery and registry data on source errors; expose freshness and the error separately.
- Treat public-key mismatch as an identity error requiring explicit repair or re-pairing, not an address update.
- Treat an unsupported protocol version as an incompatible state, not a generic offline state.
## Compatibility sequence
1. Add the new identity, discovery, pairing, and presence contract without changing current route behavior.
2. Prefer evolving the existing Gateway presence protocol to a version that signs challenges with ecosystem identity instead of creating a second overlapping presence subsystem.
3. Keep the subscription-HMAC default-gateway proof as a labelled `legacy-default-route` source for one documented transition release.
4. Publish the stable `gatewayId` in canonical route state; keep address, UI origin, and freshness as changeable observations.
5. Prefer a paired Gateway when its verified identity matches the current route candidate. Preserve the approved sticky verified-Gateway behavior through transient discovery failure.
6. Never auto-mint a pairing record from a matching subscription URL.
7. When forgetting the active Gateway, demote route state atomically before deleting trust.
8. Preserve existing `dev_*` inventory IDs, aliases, traffic totals, and policies; add only a derived ecosystem binding.
9. Remove the legacy proof only after migration evidence and an explicit cutover task.
## Automated evidence
Cover at least:
- zero, one, and multiple advertisements; deduplication and endpoint changes;
- mDNS loss and recovery without unpairing;
- no secrets in TXT metadata or logs;
- invitation expiry, replay, mismatch, and atomic single-use consumption;
- valid/invalid proof-of-possession, credential rotation, and revocation;
- lease renewal and expiry using Gateway receipt time;
- paired/connected/routed state separation;
- DHCP, interface, and randomized-MAC changes;
- missing and ambiguous inventory binding without false traffic attribution;
- multiple Gateways with one active route;
- revision ordering, migration, rollback, and legacy transition.
## Standards basis
- [RFC 6762: Multicast DNS](https://www.rfc-editor.org/rfc/rfc6762)
- [RFC 6763: DNS-Based Service Discovery](https://www.rfc-editor.org/rfc/rfc6763)
- [RFC 9382: SPAKE2](https://www.rfc-editor.org/rfc/rfc9382)
These standards define discovery and an available PAKE building block. They do not make an mDNS advertisement trustworthy; preserve end-to-end identity verification.
@@ -0,0 +1,66 @@
---
name: design-vpn-client-ui
description: Design, implement, review, or refine the client-facing VPN interfaces in this repository using the established calm monospace visual language and smooth state-driven motion. Use for the current macOS client and future end-user gateway client screens, especially power controls, subscriptions, traffic usage, proxy copy controls, server selection, responsive layout, hover feedback, transitions, and animation polish. Do not use for the administrative gateway UI unless the user explicitly asks to apply the client visual language there.
---
# Design VPN Client UI
Preserve the repo's focused one-screen VPN client language: a centered primary action, quiet technical typography, mode-specific accents, and motion that makes live state and interaction legible without moving layout.
## Workflow
1. Read `PRODUCT.md` and the complete client component and styles before editing.
2. Inspect supplied evidence and trace the real DOM and state change that causes the visual issue. Follow repository testing policy; do not launch manual or interactive visual testing unless the user explicitly requests it in the current prompt.
3. Read [visual-language.md](references/visual-language.md) for layout, hierarchy, color, and typography work.
4. Read [motion-and-interaction.md](references/motion-and-interaction.md) for animation, hover, refresh, input, copy, or state-transition work.
5. Reuse existing React state, CSS variables, formatters, and API paths. Prefer a narrow CSS/markup change over a new abstraction or dependency.
6. Keep geometry stable across every state. Reserve space before animating content.
7. Implement `prefers-reduced-motion` alongside every new animation.
8. Run `npm test`, `npm run build`, and `git diff --check`. Perform manual visual inspection only when explicitly requested.
## Communicating a proposed change
For implementation proposals and progress summaries, combine structure instead of maximizing it:
- start with one compact table grouped by affected modules such as frontend, UI, backend/API, styles, tests, and versions;
- use short lists only for cross-cutting details such as states, accessibility, motion, or changed files;
- keep unaffected modules visible in the table when that clarifies scope;
- avoid both an unstructured paragraph and a separate table for every subsection.
## Non-negotiable decisions
- Keep the power action on the screen's central vertical axis. Place subscription content to its right without shifting that axis.
- Keep the power hit target generous while rendering only the icon, never a large enclosing accent circle.
- Drive every active accent from the current mode token: Connect is blue-green; Gateway is orange. Keep inactive power gray, including hover, and preserve semantic warning/error colors.
- Never let labels, timers, feedback, icons, progress, or server rows shift neighboring content.
- Animate state, opacity, blur, glow, color, filter, and transform. Do not animate layout properties.
- Make live behavior visibly alive: running processes, changing values, mode changes, and interactive affordances should communicate through restrained motion instead of abrupt static replacement.
- Give every actionable icon a semantic hover/focus response; rotate cyclic actions, move the physical part of object-like controls, and keep their hit targets fixed.
- Let every visible cycle finish and return to its resting coordinates before stopping. Never cancel a hover animation, spinner, or list exit at an arbitrary frame.
- Animate dynamic rows through complete enter and exit phases; keep a departing row mounted until its exit finishes, with immediate removal under reduced motion.
- Animate only what changed. Keep unchanged digits, labels, icons, and surrounding geometry stable.
- Keep tooltips outside transformed, rotating, glowing, or filtered controls. Show them quickly above the control as independent translucent cloud surfaces.
- Prefer one clear value over unsupported detail. Hide subscription fields the provider does not supply.
- Keep client UI compact and calm. Do not introduce dashboard cards, decorative chrome, or admin-console density.
- Do not use a modal, popup, or blocking backdrop unless the user explicitly asks for one. Prefer inline disclosure or a non-modal layer that preserves the main screen.
- When the owner explicitly chooses modal treatment for critical confirmations, reuse one accessible full-screen confirmation popup: blur and block the background, reveal from center, then stage text and actions.
- Avoid borders, divider lines, and framed regions by default. Build hierarchy with spacing, typography, subtle surface changes, light, and depth; use a line only when it communicates an essential state.
- In client-side editors, prefer flat text controls and accessible custom pickers over browser-native menus when the native surface breaks the visual language. Do not append another blank row until the current row is complete.
## Acceptance pass
Before handing off, verify:
- Power on/off is unmistakable without reading the label.
- Switching on/off preserves the exact positions of title, timer, and hint.
- Switching Connect/Gateway crossfades status in a fixed slot, changes the full accent palette, and clearly de-emphasizes data irrelevant to the active route.
- A timer tick animates only changed digits and reads as a soft flow, never a blink.
- Hover motion completes its current cycle and settles before stopping; ambient affordance motion remains subtle and infrequent.
- Tooltips remain upright, unfiltered, above adjacent content, and visually consistent across controls.
- Refresh and copy feedback cannot change element width or alignment.
- Server separators are compact and only slightly wider than their content.
- Repeated polling does not replay decorative list animations.
- Manual refresh has an obvious but non-jarring response.
- Icon-only controls respond on hover and focus, active cyclic work spins, and durable states such as pinned remain legible at rest.
- Keyboard focus remains visible even when the text caret is intentionally hidden.
- Narrow screens return to a simple single-column layout.
@@ -0,0 +1,4 @@
interface:
display_name: "Design VPN Client UI"
short_description: "Design the repo's calm animated VPN client UI."
default_prompt: "Use $design-vpn-client-ui to design or refine the VPN client interface in this repository."
@@ -0,0 +1,125 @@
# Motion and interaction
## Motion character
Aim for fluid, slightly viscous motion: noticeable, calm, and complete. Avoid bounce, elastic easing, abrupt unmounts, decorative page choreography, or tiny effects too weak to communicate feedback.
Motion is functional feedback. If the system is running, refreshing, counting, switching route, or inviting interaction, show that activity with restrained movement. Do not animate every static decoration; animate the part that proves work, state, or affordance.
Use exponential ease-out curves such as `cubic-bezier(0.16, 1, 0.3, 1)` for arrivals. Typical timing:
- hover and press: 180-300 ms;
- state color and glow: 600-900 ms;
- content reveal: 600-850 ms;
- numeric tween and progress: about 900 ms;
- copy feedback: about 800 ms;
- server cascade: 620-760 ms per row with 90-110 ms stagger.
- tooltip arrival: about 90-140 ms with almost no delay;
- ambient affordance hint: one small cycle roughly every 10 seconds.
## Cycle completion
- On pointer leave, do not snap an infinite hover animation or reverse it from the middle. Mark it for stopping, let the current iteration reach its original coordinates, then remove the animation.
- If the user re-enters before the iteration ends, clear the stop request and continue the same behavior.
- Separate state transforms from repeating motion when both affect one control. Animate a child for the cycle and its wrapper for durable state, or wait for `animationiteration` before clearing the animated class.
- Keep reduced-motion behavior immediate and static; never wait for an iteration event that will not fire.
## Power state
- Transition gray to the current mode accent slowly when connecting and back to gray when disconnecting.
- Animate icon color, localized light, and SVG shadow together.
- Let the light expand and brighten on enable, then contract and fade on disable.
- Keep the hit target and all surrounding geometry fixed.
- Use a short press compression, followed by a slower release.
## Changing text and numbers
- Put alternate labels in fixed-size slots.
- Reveal connection title, timer, and hint with overlapping fixed layers, opacity, and light blur, never vertical layout movement.
- Crossfade `VPN включён`, `Gateway подключён`, and disconnected copy in the same reserved slot when route state changes.
- Split changing numeric values into stable digits. On a tick such as `33 → 34`, keep the first `3` mounted and animate only `3 → 4` with a soft color/glow/blur flow; avoid low-opacity blinking or scaling the whole seconds value.
- Persist user-selected timer presentation locally and restore it on the next visit.
- Tween numeric traffic values from old to new with `requestAnimationFrame` or an equivalent stable counter.
- Animate progress width concurrently and add a brief glow that fully fades.
- Never translate changing numbers if the user asked for a fluid morph; use numerical interpolation, opacity, color, blur, and light.
## Mode switch affordance
- Treat the Connect/Gateway brand as one state control with a foreground label, a background label, and two independently colored direction arrows.
- On hover, move both labels continuously: let the foreground drift slightly down while the background rises toward it. Move the right arrow right and the left arrow left, then return; keep amplitudes small.
- When mode changes, swap the arrows' positions smoothly and bring the new label to the foreground without changing the brand's centered geometry.
- When hover ends, finish the current cycle at rest before stopping. Outside hover, replay one smaller cycle about every 10 seconds to hint that the control is clickable.
- Keep explanatory tooltip geometry tied to the mode-label-to-arrows span, not to the entire Harbor wordmark.
## Refresh
- Use a clean, symmetric SVG refresh icon aligned in the same flex row as its label.
- Spin for at least one full cycle. If the request finishes mid-cycle, continue to the next cycle boundary before stopping.
- Update data immediately when it arrives; finishing the icon cycle must not delay the data.
- Manual refresh may replay meaningful data and server transitions.
- Background polling should update quietly and must not repeatedly replay the server cascade.
- On updated traffic, tween the number, advance the bar, and emit a visible but brief mode-accent flare.
- Keep refresh tooltip outside the rotating button so it remains upright and unfiltered.
## Icon controls
- Give every actionable icon a small semantic response on hover and keyboard focus; leave decorative icons still.
- Rotate cyclic actions such as refresh, ping, and traffic sorting on hover, then use the shared continuous spin while work is running.
- Move the physical part of object-like controls: lift and tilt a pin, pencil, or trash lid instead of moving its fixed hit target.
- Keep durable state on the icon wrapper and transient motion on the SVG child. A pinned icon stays lifted and tilted while its row moves to the pinned group.
- Keep the hit target, tooltip, and surrounding layout fixed. Tooltips remain outside the transformed SVG.
- Under reduced motion, preserve color, focus, and final state without animated travel or rotation.
## Server cascade
- On initial display, reveal rows from top to bottom with a small negative Y offset, opacity, and blur.
- On manual refresh, animate an explicit exit phase first. Fade rows top to bottom, then remount and enter top to bottom.
- Wait for the last exit delay and duration before starting entry.
- Disable pointer interaction during exit.
- Do not replay on ping updates or unrelated renders.
## Dynamic editors
- Reveal added rows with opacity, blur, and a small transform while keeping surrounding geometry predictable.
- Keep interactive add latency constant regardless of collection length. Never multiply an added row's delay by its index; use bounded staggering only for a one-time group reveal.
- Give removal its own exit state and keep the row mounted until `animationend`; then animate surviving rows into their new positions instead of letting layout snap. Under reduced motion, remove it immediately.
- Do not let repeated add actions accumulate unfinished rows. Disable add while any current row lacks its required value and explain the disabled state in a reserved hint slot.
- Track the editor's dirty draft against its open/save baseline. Guard Escape, outside click, navigation controls, Cancel, and page unload; use an inline discard confirmation for in-app exits.
- Replace browser-native dropdowns when their platform chrome conflicts with the client surface. Use an accessible custom listbox with trigger, selected state, outside-click and Escape closing, arrow-key navigation, and restored trigger focus.
- Let picker options appear as a short staggered cloud using opacity, blur, and transform. Avoid borders, shadows, raised cards, and layout-property animation.
## Subscription input
- Show the public domain while retaining the full URL internally.
- Disable browser autocomplete suggestions and neutralize autofill backgrounds.
- Hide the blinking caret when the paste-first interaction does not need it, while preserving keyboard input and focus outline.
- When an existing subscription is being edited and the field is idle, use the mode-accent underline as a five-second timeout indicator: start bright, fade to quiet, then restore display mode.
- Pause the timeout once the user enters content.
- Close and clear unfinished input on outside click or Escape.
- Animate the trash lid independently on hover. Use the shared critical confirmation popup instead of a browser-native confirm dialog.
## Critical confirmation popup
- Reserve the blocking popup for explicit destructive or data-loss confirmation. It must cover the viewport, make the background inert, and use `alertdialog` with `aria-modal`.
- Fade and blur the backdrop first, resolve the popup from the center, then reveal its title, description, and actions in a short sequence.
- Put initial focus on the safe action, trap Tab within the popup, let Escape and backdrop click choose the safe action, and restore the invoking focus on close.
- Reuse the same component and motion vocabulary for every critical confirmation. Reduced motion presents the final state immediately.
## First-run initialization
- With no subscription, show only the centered subscription input. Hide power, proxy controls, usage, and servers.
- After a valid subscription loads, keep the subscription and server list centered. Require an explicit server choice instead of silently selecting the first server.
- On server choice, slide the subscription column to the right while revealing the power column on the viewport's central axis.
- Preserve the chosen server on later visits, but return to first-run initialization after subscription deletion.
- Deleting a subscription must stop the VPN, clear its cached/configured state, and return the UI to the centered input without leaving stale controls visible.
## Copy feedback
- Keep protocol buttons fixed-size and centered.
- Copy the complete protocol URL while showing a shared address separately.
- Overlay mode-accent `Copied` feedback in the same fixed box; do not append text or move the label.
- Make feedback appear immediately, hold briefly, and fade fully before restoring the original label. Keep the whole cycle near 800 ms.
## Reduced motion
Under `prefers-reduced-motion: reduce`, remove transitions and keyframe animations while preserving final state, focus, color contrast, copy wording, and all functionality.
@@ -0,0 +1,64 @@
# Visual language
## Scene and character
Design for a macOS user glancing at a small VPN control surface in a quiet desktop environment. The UI should feel soft, precise, dependable, and slightly terminal-like, not like a network administration dashboard.
## Composition
- Make one primary action dominant: the VPN power icon.
- Keep the power control centered on the viewport's vertical axis, not merely centered inside a left column.
- Build the left flow vertically: power icon, stable connection copy, proxy address, copy actions.
- Place subscription identity, usage, expiry, and servers in a compact column to the right.
- Collapse to one centered column on narrow screens.
- Avoid enclosing frames, borders, and divider lines. Use spacing, type, subtle surface changes, light, depth, and state color for hierarchy.
- Do not introduce popups or modals without an explicit user request. Prefer inline disclosure or a non-modal side layer when supporting content must coexist with the main control surface.
- Keep server rows vertical and narrow. Underlines should be only slightly wider than the server label and ping.
## Geometry and alignment
- Reserve identical height for mutually exclusive content such as timer versus connection hint.
- Give copy buttons fixed width. Overlay temporary feedback instead of replacing text in normal flow.
- Align icons and labels in the same flex row. Do not position an icon by guessed absolute offsets.
- Give repeated row actions one fixed-width trailing slot aligned to the same edge. Reserve that slot when labels wrap or statuses change; never place the action at the end of intrinsic label text.
- Preserve a generous invisible hit area around icon-only controls.
- Center proxy address and protocol actions with the power column.
- Treat one-pixel optical misalignment as a defect when controls sit beside uppercase labels.
- Center the semantic brand or label independently from optional action icons. Place secondary icons beside it without letting their width move the centered content.
- Layer mutually exclusive status text in one fixed slot and crossfade between layers. Never replace text in normal flow when its length can move the interface.
## Typography
- Prefer the existing JetBrains Mono / SF Mono stack for the client surface.
- Use uppercase, tracked, muted micro-labels for metadata.
- Use stronger weight and size for the subscription domain and connection state.
- Use tabular numerals for timers and changing numeric data.
- Avoid display fonts, oversized headings, and mixed type families.
## Color and light
- Preserve green-tinted dark and light neutrals through the existing OKLCH variables.
- Treat mode color as a system-wide state, not a logo-only decoration: Connect uses its blue-green token and Gateway uses its orange token for power, glow, selected rows, progress, copy/refresh feedback, focus, and mode-relevant labels.
- Inactive power stays neutral gray even on hover. Warning and destructive actions remain semantic red rather than inheriting the mode accent.
- Prefer localized `drop-shadow`, `text-shadow`, or a soft radial light layer over filled accent containers.
- Let glow support state recognition. Do not leave every element glowing continuously.
- Give Connect and Gateway distinct favicons and brand marks using the same mode palette.
- When Gateway carries traffic, fade, desaturate, and disable the local subscription/server block: it remains understandable context but must not look active or actionable.
## Interactive surfaces
- Use one fast translucent cloud treatment for explanatory tooltips. Place the cloud above its target with strong enough contrast to survive busy content beneath it.
- Keep a tooltip as a sibling of the animated icon/button it describes. A tooltip must never rotate, glow, blur, scale, or move with the control.
- Use the shared full-screen critical confirmation popup for destructive actions and unsaved-data exits. Keep the centered surface flat, with hierarchy from blur, spacing, type, and staged motion rather than borders or rounded cards.
- Animate physical icon parts when their function suggests it, such as lifting a trash lid on hover, while keeping hit areas and nearby text fixed.
- Keep advanced client editors flat inside their side layer: rows, notes, selectors, and actions should not become nested cards, bordered fields, or raised buttons. Use spacing, type, focus light, and state color for hierarchy.
## Data presentation
- Show subscription domain, not the credential-like full URL.
- Show used traffic and total limit as the primary statistic.
- Omit upload/download breakdown when provider support is absent or ambiguous.
- Show expiry as both date and remaining days, with correct Russian forms.
- If there is no total, say `без лимита` and omit the progress bar.
- Hide unavailable rows instead of showing empty placeholders or zeros that imply real measurements.
- Keep `not tested`, `running`, `success`, and `failed` as separate row states. A result from one row must not turn untouched sibling rows into failures.
@@ -0,0 +1,26 @@
---
name: manage-harbor-versions
description: Check and bump Harbor component versions for every runtime, UI, API, dependency, packaging, or deployment-config change in this repository. Use before completing implementation work, release preparation, or any change that can alter the shipped Mac client, Gateway client, or Gateway backend.
---
# Manage Harbor Versions
Treat `src/shared/versions.ts` as the only component-version source. Do not use the root package version as a release version.
## Required workflow
1. Inspect the complete diff and choose the comparison base, normally `HEAD` for working-tree changes or the target branch for a review.
2. Run `npm run version:harbor -- affected <base>`.
3. Classify the highest compatibility impact:
- `major`: changes an ecosystem contract or requires all cooperating components and clients to update;
- `minor`: changes one component and its tightly linked components while remaining compatible with other clients on the same major;
- `hotfix`: changes only the affected component without requiring linked components or other clients to update.
4. Run one explicit bump command:
- `npm run version:harbor -- bump major`
- `npm run version:harbor -- bump minor <components...>`
- `npm run version:harbor -- bump hotfix <components...>`
5. Run `npm run version:harbor -- check <base>` and the repository tests before completion.
Valid component names are `mac`, `gateway-client`, and `gateway-backend`. A major bump always updates all three components. A minor bump for either Gateway component automatically updates both Gateway client and Gateway backend. A hotfix updates only the named component.
Do not bump documentation- or test-only changes. If the version contract is new and the base has no `src/shared/versions.ts`, keep the initial versions and let the checker report that no baseline exists.
@@ -0,0 +1,4 @@
interface:
display_name: "Manage Harbor Versions"
short_description: "Check and bump Harbor component versions."
default_prompt: "Use $manage-harbor-versions to classify changes and update the required Harbor component versions."
+10
View File
@@ -0,0 +1,10 @@
node_modules
dist
.vpn-proxy
.runtime
.git
.gitea
.github
.vscode
*.log
.DS_Store
+22
View File
@@ -0,0 +1,22 @@
PORT=3456
APP_MODE=gateway
CLIENT_UI_PORT=3456
CLIENT_PROXY_PORT=8082
HARBOR_GATEWAY_CONTROL_PORT=3456
BASE_IMAGE=debian:bookworm-slim
SINGBOX_VERSION=1.13.18
INSTALL_RUNTIME_DEPS=true
INSTALL_SINGBOX=true
PROXY_PORT=8080
PROXY_BIND_IP=0.0.0.0
SING_BOX_API_PORT=19090
TPROXY_PORT=7895
TPROXY_MARK=1
TPROXY_TABLE=100
TPROXY_CHAIN=VPN_PROXY_TPROXY
DIRECT_TRAFFIC_CHAIN=VPN_PROXY_DIRECT
DIRECT_TRAFFIC_MARK=0x40000000
GATEWAY_FORWARD_CHAIN=VPN_PROXY_FORWARD
GATEWAY_NAT_CHAIN=VPN_PROXY_NAT
GATEWAY_CLIENT_CIDRS=10.0.0.0/8 172.16.0.0/12 192.168.0.0/16
LOG_LEVEL=info
+229
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name: Build and Deploy Gateway
on:
push:
branches: [master]
workflow_dispatch:
inputs:
hard_deploy:
description: Always rebuild and deploy both Gateway images
required: false
default: false
type: boolean
env:
DEPLOY_PATH: /opt/vpn-proxy
BASE_IMAGE: vpn-proxy-runtime-base:bookworm-slim
NODE_BUILD_IMAGE: mirror.gcr.io/library/node:20.19-bookworm
RUNTIME_BASE_SOURCE_IMAGE: mirror.gcr.io/library/debian:bookworm-slim
APT_MIRROR: http://mirror.yandex.ru/debian
APT_SECURITY_MIRROR: http://mirror.yandex.ru/debian-security
SINGBOX_VERSION: 1.13.18
jobs:
build-and-push:
runs-on: ubuntu-22.04
outputs:
affected_components: ${{ steps['gateway-build'].outputs.affected_components }}
restart_scope: ${{ steps['gateway-build'].outputs.restart_scope }}
steps:
- name: Clone repository
env:
GIT_TOKEN: ${{ secrets.REGISTRY_TOKEN }}
run: |
set -euo pipefail
SERVER_HOST=$(echo "${{ gitea.server_url }}" | sed 's|https\?://||')
rm -rf repo
git clone "http://${{ gitea.actor }}:${GIT_TOKEN}@${SERVER_HOST}/${{ gitea.repository }}.git" repo
cd repo
git checkout ${{ gitea.sha }}
- name: Build and push gateway image
id: gateway-build
env:
HARD_DEPLOY_INPUT: ${{ inputs.hard_deploy }}
run: |
set -euo pipefail
cd repo
REGISTRY_HOST=$(echo "${{ gitea.server_url }}" | sed 's|https\?://||')
IMAGE="${REGISTRY_HOST}/${{ gitea.repository }}/gateway"
CONTROL_IMAGE="${IMAGE}-control"
DATAPLANE_IMAGE="${IMAGE}-dataplane"
EVENT_NAME="${{ gitea.event_name }}"
case "${EVENT_NAME}:${HARD_DEPLOY_INPUT}" in
workflow_dispatch:true) HARD_DEPLOY=true ;;
workflow_dispatch:false|workflow_dispatch:|push:false|push:) HARD_DEPLOY=false ;;
*) echo "Invalid hard deploy request: ${EVENT_NAME}:${HARD_DEPLOY_INPUT}" >&2; exit 1 ;;
esac
BEFORE_SHA="${{ gitea.event.before }}"
ZERO_SHA="0000000000000000000000000000000000000000"
if [ "$EVENT_NAME" = "push" ] \
&& [ -n "$BEFORE_SHA" ] \
&& [ "$BEFORE_SHA" != "$ZERO_SHA" ] \
&& git cat-file -e "${BEFORE_SHA}^{commit}" 2>/dev/null; then
CHANGED_FILES="$(git diff --no-renames --name-only "$BEFORE_SHA" "${{ gitea.sha }}")"
elif [ "$EVENT_NAME" = "push" ]; then
CHANGED_FILES="package.json"
else
CHANGED_FILES="$(git diff-tree --no-renames --no-commit-id --name-only -r -m HEAD)"
fi
if command -v node >/dev/null 2>&1; then
RUNTIME_IMPACT="$(printf '%s\n' "$CHANGED_FILES" | node scripts/runtime-impact.mjs --stdin)"
else
if ! docker image inspect "${{ env.BASE_IMAGE }}" >/dev/null 2>&1 \
|| ! docker run --rm "${{ env.BASE_IMAGE }}" sh -lc 'command -v node >/dev/null'; then
echo "Cannot classify runtime impact: Node and the existing runtime base are unavailable." >&2
exit 1
fi
RUNTIME_IMPACT="$(printf '%s\n' "$CHANGED_FILES" | docker run --rm -i \
-v "$PWD:/work" \
-w /work \
"${{ env.BASE_IMAGE }}" \
node scripts/runtime-impact.mjs --stdin)"
fi
AFFECTED_COMPONENTS="$(printf '%s\n' "$RUNTIME_IMPACT" | sed -n 's/^affected-components=//p')"
RESTART_SCOPE="$(printf '%s\n' "$RUNTIME_IMPACT" | sed -n 's/^restart-scope=//p')"
case "${AFFECTED_COMPONENTS}:${RESTART_SCOPE}" in
none:none|control:control|dataplane:both|control+dataplane:both) ;;
*) echo "Invalid runtime impact: ${RUNTIME_IMPACT}" >&2; exit 1 ;;
esac
DOCKER_BUILD_OPTIONS=()
if [ "$HARD_DEPLOY" = "true" ]; then
echo "Hard deploy requested: forcing no-cache rebuild and deploy of both Gateway images."
AFFECTED_COMPONENTS="control+dataplane"
RESTART_SCOPE="both"
DOCKER_BUILD_OPTIONS=(--no-cache)
fi
echo "Affected components: ${AFFECTED_COMPONENTS}"
echo "Restart scope: ${RESTART_SCOPE}"
echo "affected_components=${AFFECTED_COMPONENTS}" >> "$GITHUB_OUTPUT"
echo "restart_scope=${RESTART_SCOPE}" >> "$GITHUB_OUTPUT"
if command -v npm >/dev/null 2>&1; then
npm ci --no-audit --no-fund
npm run typecheck
npm run check:boundaries
npm test
npm run build:production
else
if ! docker run --rm "${{ env.NODE_BUILD_IMAGE }}" sh -lc 'command -v npm >/dev/null && command -v git >/dev/null && test -x /bin/bash'; then
echo "Cannot validate change: host npm and the Node 20.19 build toolchain are unavailable." >&2
exit 1
fi
echo "Host npm not found; validating inside ${{ env.NODE_BUILD_IMAGE }}"
docker run --rm \
--network host \
-v "$PWD:/work" \
-w /work \
"${{ env.NODE_BUILD_IMAGE }}" \
sh -lc '
npm ci --no-audit --no-fund
npm_status=$?
if [ "$npm_status" -ne 0 ] || [ ! -x node_modules/.bin/tsc ]; then
echo "npm ci failed to install the validation toolchain." >&2
tail -n 200 /root/.npm/_logs/*-debug-0.log >&2 || true
exit 1
fi
npm run typecheck && npm run check:boundaries && npm test && npm run build:production
'
fi
if [ "$RESTART_SCOPE" = "none" ]; then
echo "Image build and push skipped: no Gateway runtime impact."
exit 0
fi
echo "Build runner: $(hostname)"
echo "Base image: ${{ env.BASE_IMAGE }}"
echo "Docker context: $(docker context show 2>/dev/null || true)"
docker info 2>/dev/null | sed -n '/HTTP Proxy:/p;/HTTPS Proxy:/p;/Name:/p'
if ! docker image inspect "${{ env.BASE_IMAGE }}" >/dev/null 2>&1 \
|| ! docker run --rm "${{ env.BASE_IMAGE }}" sh -lc \
'command -v npm >/dev/null && sing-box version 2>&1 | grep -Fx "sing-box version ${{ env.SINGBOX_VERSION }}"'; then
echo "Runtime base image ${{ env.BASE_IMAGE }} is missing npm or sing-box ${{ env.SINGBOX_VERSION }}; building it now."
BASE_IMAGE="${{ env.RUNTIME_BASE_SOURCE_IMAGE }}" \
RUNTIME_BASE_IMAGE="${{ env.BASE_IMAGE }}" \
APT_MIRROR="${{ env.APT_MIRROR }}" \
APT_SECURITY_MIRROR="${{ env.APT_SECURITY_MIRROR }}" \
SINGBOX_VERSION="${{ env.SINGBOX_VERSION }}" \
./scripts/build-runtime-base.sh
fi
echo "${{ secrets.REGISTRY_TOKEN }}" | docker login "$REGISTRY_HOST" -u "${{ gitea.actor }}" --password-stdin
DOCKER_BUILDKIT=1 docker build \
"${DOCKER_BUILD_OPTIONS[@]}" \
--network host \
--pull=false \
--build-arg NODE_BUILD_IMAGE="${{ env.NODE_BUILD_IMAGE }}" \
--build-arg BASE_IMAGE="${{ env.BASE_IMAGE }}" \
--build-arg SINGBOX_VERSION="${{ env.SINGBOX_VERSION }}" \
--build-arg INSTALL_RUNTIME_DEPS=false \
--build-arg INSTALL_SINGBOX=false \
-t "${CONTROL_IMAGE}:latest" \
-t "${CONTROL_IMAGE}:${{ gitea.sha }}" \
-t "${DATAPLANE_IMAGE}:latest" \
-t "${DATAPLANE_IMAGE}:${{ gitea.sha }}" \
.
docker run --rm --entrypoint sing-box "${CONTROL_IMAGE}:${{ gitea.sha }}" version 2>&1 \
| grep -Fx "sing-box version ${{ env.SINGBOX_VERSION }}"
docker run --rm --entrypoint sing-box "${DATAPLANE_IMAGE}:${{ gitea.sha }}" version 2>&1 \
| grep -Fx "sing-box version ${{ env.SINGBOX_VERSION }}"
docker push "${CONTROL_IMAGE}:latest"
docker push "${CONTROL_IMAGE}:${{ gitea.sha }}"
docker push "${DATAPLANE_IMAGE}:latest"
docker push "${DATAPLANE_IMAGE}:${{ gitea.sha }}"
deploy:
runs-on: lxc-111
needs: build-and-push
steps:
- name: Clone repository
env:
GIT_TOKEN: ${{ secrets.REGISTRY_TOKEN }}
run: |
set -euo pipefail
SERVER_HOST=$(echo "${{ gitea.server_url }}" | sed 's|https\?://||')
rm -rf repo
git clone --depth 2 "http://${{ gitea.actor }}:${GIT_TOKEN}@${SERVER_HOST}/${{ gitea.repository }}.git" repo
cd repo
git checkout ${{ gitea.sha }}
- name: Pull and deploy gateway image
run: |
set -euo pipefail
cd repo
REGISTRY_HOST=$(echo "${{ gitea.server_url }}" | sed 's|https\?://||')
IMAGE="${REGISTRY_HOST}/${{ gitea.repository }}/gateway"
CONTROL_IMAGE="${IMAGE}-control:${{ gitea.sha }}"
DATAPLANE_IMAGE="${IMAGE}-dataplane:${{ gitea.sha }}"
AFFECTED_COMPONENTS="${{ needs['build-and-push'].outputs.affected_components }}"
RESTART_SCOPE="${{ needs['build-and-push'].outputs.restart_scope }}"
case "${AFFECTED_COMPONENTS}:${RESTART_SCOPE}" in
none:none|control:control|dataplane:both|control+dataplane:both) ;;
*) echo "Invalid runtime impact output: ${AFFECTED_COMPONENTS}:${RESTART_SCOPE}" >&2; exit 1 ;;
esac
if [ "$RESTART_SCOPE" = "none" ]; then
echo "Deploy skipped: no Gateway runtime impact."
exit 0
fi
UPDATE_DATAPLANE=false
if [ "$RESTART_SCOPE" = "both" ]; then
UPDATE_DATAPLANE=true
fi
echo "Deploy runner: $(hostname)"
echo "Affected components: ${AFFECTED_COMPONENTS}"
echo "Restart scope: ${RESTART_SCOPE}"
echo "Update dataplane: ${UPDATE_DATAPLANE}"
echo "${{ secrets.REGISTRY_TOKEN }}" | docker login "$REGISTRY_HOST" -u "${{ gitea.actor }}" --password-stdin
DEPLOY_PATH="${{ env.DEPLOY_PATH }}" \
CONTROL_IMAGE="${CONTROL_IMAGE}" \
DATAPLANE_IMAGE="${DATAPLANE_IMAGE}" \
UPDATE_DATAPLANE="${UPDATE_DATAPLANE}" \
bash scripts/deploy-gateway.sh
VERSION_JSON="$(curl --noproxy '*' -fsS http://127.0.0.1:3456/api/version)"
printf '%s\n' "$VERSION_JSON"
printf '%s\n' "$VERSION_JSON" \
| grep -F "\"singBox\":\"${{ env.SINGBOX_VERSION }}\""
+28 -2
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@@ -1,2 +1,28 @@
data
_legacy
# Runtime state
.env
*.env.local
data/
.vpn-proxy/
.runtime/
.worktrees/
# Local roadmap and task workspace
/workpack/
# Node/Vite
node_modules/
dist/
.test-dist/
.tmp-tests/
coverage/
npm-debug.log*
yarn-debug.log*
yarn-error.log*
pnpm-debug.log*
# OS/editors
.DS_Store
.idea/
.vscode/
*.swp
*.swo
+9
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# Harbor task workflow
Use the checked-in `workpack/` directory as the only roadmap source. Do not require or read the original archive.
Follow `workpack/AGENTS.md` for every roadmap task, including status updates. Completed tasks must not be selected or implemented again unless the user explicitly asks to reopen one.
Before implementing any feature, record or refresh its plan in the selected `workpack/tasks/TASK-*.md` file using the mandatory feature-plan contract from `workpack/AGENTS.md`. Write the whole plan in simple language understandable without knowledge of the codebase: explain technical terms on first use, and use file paths or code names only as supporting detail. The plan must explain the implementation sequence and affected system components. For user-visible work it must also specify layout and states, exact icons, animation/motion behavior, accessibility and reduced-motion behavior; otherwise it must explicitly state that UI, icons and motion are unaffected. A proposed visible design is not owner approval.
For every runtime, UI, API, dependency or deployment-config change, use `.codex/skills/manage-harbor-versions/SKILL.md`. Before completion, classify the affected components, bump the required version level and run `npm run version:harbor -- check <base>`. Documentation- and test-only changes do not require a bump.
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ARG NODE_BUILD_IMAGE=node:20.19-alpine
ARG BASE_IMAGE=debian:bookworm-slim
FROM ${NODE_BUILD_IMAGE} AS build
WORKDIR /src
COPY package.json package-lock.json ./
RUN npm ci
COPY index.html vite.config.ts tsconfig*.json ./
COPY src/web ./src/web
COPY src/server ./src/server
COPY src/shared ./src/shared
COPY monitoring/grafana/harbor-gateway.json ./monitoring/grafana/harbor-gateway.json
RUN npm run build:production
FROM ${BASE_IMAGE}
ARG SINGBOX_VERSION=1.13.18
ARG INSTALL_RUNTIME_DEPS=true
ARG INSTALL_SINGBOX=true
RUN if [ "${INSTALL_RUNTIME_DEPS}" = "true" ]; then \
apt-get update \
&& apt-get install -y --no-install-recommends ca-certificates curl iptables iproute2 ieee-data nodejs dumb-init \
&& rm -rf /var/lib/apt/lists/*; \
else \
command -v dumb-init >/dev/null \
&& command -v node >/dev/null \
&& command -v iptables >/dev/null; \
fi
RUN if [ "${INSTALL_SINGBOX}" = "true" ]; then \
set -eux; \
arch="$(dpkg --print-architecture)"; \
case "$arch" in \
amd64) sb_arch="amd64" ;; \
arm64) sb_arch="arm64" ;; \
*) echo "Unsupported architecture: $arch" >&2; exit 1 ;; \
esac; \
curl --retry 5 --retry-all-errors --retry-delay 2 -fsSL "https://github.com/SagerNet/sing-box/releases/download/v${SINGBOX_VERSION}/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}.tar.gz" -o /tmp/sing-box.tgz; \
tar -xzf /tmp/sing-box.tgz -C /tmp; \
mv "/tmp/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}/sing-box" /usr/local/bin/sing-box; \
chmod +x /usr/local/bin/sing-box; \
rm -rf /tmp/sing-box*; \
else \
command -v sing-box >/dev/null; \
fi
WORKDIR /app
COPY --from=build /src/dist /app/dist
COPY package.json /app/package.json
COPY entrypoint.sh /entrypoint.sh
RUN chmod +x /entrypoint.sh \
&& mkdir -p /etc/sing-box /var/lib/vpn-proxy /var/lib/sing-box
ENV PORT=3456 \
PROXY_PORT=8080 \
PROXY_BIND_IP=0.0.0.0 \
SING_BOX_API_PORT=19090 \
TPROXY_PORT=7895 \
DATA_DIR=/var/lib/vpn-proxy \
SING_BOX_CONFIG=/etc/sing-box/config.json \
SING_BOX_CACHE=/var/lib/sing-box/cache.db
ENTRYPOINT ["dumb-init", "/entrypoint.sh"]
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ARG NODE_BUILD_IMAGE=node:20.19-alpine
ARG RUNTIME_IMAGE=debian:bookworm-slim
FROM ${NODE_BUILD_IMAGE} AS build
WORKDIR /src
COPY package.json package-lock.json ./
RUN npm ci
COPY index.html vite.config.ts tsconfig*.json ./
COPY src/web ./src/web
COPY src/server ./src/server
COPY src/shared ./src/shared
COPY monitoring/grafana/harbor-gateway.json ./monitoring/grafana/harbor-gateway.json
RUN npm run build:production
FROM ${RUNTIME_IMAGE}
ARG SINGBOX_VERSION=1.13.18
RUN apt-get update \
&& apt-get install -y --no-install-recommends ca-certificates curl dumb-init nodejs tar \
&& rm -rf /var/lib/apt/lists/*
RUN set -eux; \
arch="$(dpkg --print-architecture)"; \
case "$arch" in \
amd64) sb_arch="amd64" ;; \
arm64) sb_arch="arm64" ;; \
*) echo "Unsupported architecture: $arch" >&2; exit 1 ;; \
esac; \
curl --retry 5 --retry-all-errors --retry-delay 2 -fsSL "https://github.com/SagerNet/sing-box/releases/download/v${SINGBOX_VERSION}/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}.tar.gz" -o /tmp/sing-box.tgz; \
tar -xzf /tmp/sing-box.tgz -C /tmp; \
mv "/tmp/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}/sing-box" /usr/local/bin/sing-box; \
chmod +x /usr/local/bin/sing-box; \
rm -rf /tmp/sing-box*
WORKDIR /app
COPY --from=build /src/dist /app/dist
COPY package.json /app/package.json
COPY entrypoint.client.sh /entrypoint.client.sh
RUN chmod +x /entrypoint.client.sh \
&& mkdir -p /etc/sing-box /var/lib/vpn-proxy /var/lib/sing-box
ENV APP_MODE=client \
PORT=3456 \
PROXY_PORT=8082 \
PROXY_BIND_IP=0.0.0.0 \
DATA_DIR=/var/lib/vpn-proxy \
SING_BOX_CONFIG=/etc/sing-box/config.json \
SING_BOX_CACHE=/var/lib/sing-box/cache.db \
RULE_SET_DOWNLOAD_DETOUR=vpn \
ROUTING_RU_DIRECT=true \
LOG_LEVEL=info
EXPOSE 3456 8082
ENTRYPOINT ["dumb-init", "/entrypoint.client.sh"]
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ARG BASE_IMAGE=mirror.gcr.io/library/debian:bookworm-slim
FROM ${BASE_IMAGE}
ARG SINGBOX_VERSION=1.13.18
ARG APT_MIRROR=http://mirror.yandex.ru/debian
ARG APT_SECURITY_MIRROR=http://mirror.yandex.ru/debian-security
ARG HTTP_PROXY
ARG HTTPS_PROXY
ARG NO_PROXY
ARG http_proxy
ARG https_proxy
ARG no_proxy
RUN export http_proxy="${http_proxy:-${HTTP_PROXY:-}}" \
&& export https_proxy="${https_proxy:-${HTTPS_PROXY:-}}" \
&& export no_proxy="${no_proxy:-${NO_PROXY:-}}" \
&& for file in /etc/apt/sources.list /etc/apt/sources.list.d/*.sources; do \
[ -f "$file" ] || continue; \
sed -i \
-e "s|http://deb.debian.org/debian-security|${APT_SECURITY_MIRROR}|g" \
-e "s|http://security.debian.org/debian-security|${APT_SECURITY_MIRROR}|g" \
-e "s|http://deb.debian.org/debian|${APT_MIRROR}|g" \
"$file"; \
done \
&& apt-get \
-o Acquire::Retries=3 \
-o Acquire::http::Timeout=20 \
-o Acquire::https::Timeout=20 \
-o Acquire::ForceIPv4=true \
update \
&& apt-get \
-o Acquire::Retries=3 \
-o Acquire::http::Timeout=20 \
-o Acquire::https::Timeout=20 \
-o Acquire::ForceIPv4=true \
install -y --no-install-recommends ca-certificates curl iptables ipset iproute2 ieee-data nodejs npm dumb-init \
&& rm -rf /var/lib/apt/lists/*
RUN set -eux; \
export http_proxy="${http_proxy:-${HTTP_PROXY:-}}"; \
export https_proxy="${https_proxy:-${HTTPS_PROXY:-}}"; \
export no_proxy="${no_proxy:-${NO_PROXY:-}}"; \
arch="$(dpkg --print-architecture)"; \
case "$arch" in \
amd64) sb_arch="amd64" ;; \
arm64) sb_arch="arm64" ;; \
*) echo "Unsupported architecture: $arch" >&2; exit 1 ;; \
esac; \
curl --retry 5 --retry-all-errors --retry-delay 2 -fsSL "https://github.com/SagerNet/sing-box/releases/download/v${SINGBOX_VERSION}/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}.tar.gz" -o /tmp/sing-box.tgz; \
tar -xzf /tmp/sing-box.tgz -C /tmp; \
mv "/tmp/sing-box-${SINGBOX_VERSION}-linux-${sb_arch}/sing-box" /usr/local/bin/sing-box; \
chmod +x /usr/local/bin/sing-box; \
rm -rf /tmp/sing-box*
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# Product
## Register
product
## Users
People running either a local macOS proxy client or a small Linux VPN gateway. They open the client only to add a subscription, choose a server, turn the VPN on or off, and copy the connection address.
## Product Purpose
Provide one small, dependable control surface for the macOS client and the system gateway. Success means the connection state is obvious, while the gateway address and proxy URLs are ready to copy from the same screen.
## Brand Personality
Soft, calm, precise. Familiar to macOS users, with sharper geometry and a quiet monospace character.
## Anti-references
Not an admin dashboard, network console, settings maze, or enclosing card. Avoid sidebars, technical route diagrams, framed content areas, decorative effects, and routing-rule administration.
## Design Principles
- One screen, one primary action.
- Use plain language and hide implementation details.
- Make connection state unmistakable without relying on color alone.
- Prefer native controls and predictable macOS behavior.
- Show saved subscriptions as a domain, not as a credential-like URL.
- Make servers directly selectable instead of hiding them in a dropdown.
- Keep advanced and server-only features out of the client path.
## Accessibility & Inclusion
Support keyboard navigation, visible focus, sufficient contrast, system light and dark themes, and reduced motion preferences.
+292 -261
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@@ -1,353 +1,384 @@
# 🌐 VPN Proxy — Домашний VPN в одной программе
# Harbor
> **Простыми словами:** ваш компьютер подключается к удалённому VPN-серверу, и весь интернет-трафик идёт через него. Это нужно для доступа к заблокированным сайтам или для защиты данных в публичных Wi-Fi сетях.
Harbor помогает пользоваться несколькими VPN-подписками дома и на Mac без ручной настройки `sing-box`.
---
Проект работает в двух режимах:
## 📖 Что это такое?
| Режим | Где работает | Для чего нужен |
| --- | --- | --- |
| **Harbor Gateway** | На отдельной Linux-машине | Проводит через VPN весь интернет-трафик домашних устройств или работает как общий HTTP/SOCKS5-прокси |
| **Harbor Connect** | На macOS | Даёт приложениям на Mac локальный HTTP/SOCKS5-прокси |
Это набор инструментов, который позволяет:
Основной экран Connect и Gateway всегда показывает фактически применённые подписку и сервер. Управление подписками открывается отдельной верхней кнопкой в правой панели; Home, «Устройства» и «Диагностика» Gateway доступны и без подписки.
1. **Запустить VPN-прокси** на вашем компьютере
2. **Управлять через удобное меню** — всё настраивается автоматически
3. **Подключить браузер или приложения** (например, VS Code, Discord) через этот прокси
4. **Работает с UDP** — голосовые звонки и игры тоже работают!
## Что понадобится
### 🎯 Для кого это?
- ссылка на подписку от VPN-провайдера, если Harbor должен направлять трафик через VPN;
- Docker с командой `docker compose`;
- для ручной установки Gateway — Git;
- для Gateway — Linux-машина в одной локальной сети с устройствами;
- для Connect — Mac с запущенным Docker Desktop.
- Пользователи, которым нужен VPN для работы или доступа к заблокированным ресурсам
- Разработчики, которые хотят направить трафик VS Code или других программ через VPN
- Геймеры, которым нужно запустить игры или Discord через VPN
- Люди, которые получили VLESS ссылку от VPN-провайдера
Harbor не является VPN-провайдером и не создаёт подписки самостоятельно.
---
## Что выбрать
## 🧩 Как это работает?
Используйте **Harbor Connect**, если VPN нужен только приложениям на одном Mac.
```
┌─────────────────┐ ┌──────────────────┐ ┌──────────────────┐
│ Ваш браузер │────▶│ VPN Proxy │────▶│ VPN Сервер │────▶ Интернет
│ или Discord │ │ (порт 1080) │ │ (в другой стране)│
└─────────────────┘ └──────────────────┘ └──────────────────┘
Используйте **Harbor Gateway**, если нужно подключить телевизор, телефон, игровую приставку или сразу несколько устройств. Устройства можно направить через Gateway целиком либо настроить в отдельных приложениях общий прокси.
Оба режима можно использовать вместе. Дома Connect автоматически распознаёт настроенный Harbor Gateway и не запускает второй VPN-маршрут. В другой сети Connect возвращается к локальному VPN.
## Установка Harbor Gateway
### 1. Скачайте проект
```bash
git clone https://git.dokops.ru/dokril/vpn-proxy.git
cd vpn-proxy
```
---
### 2. Создайте настройки
## 🔧 Перед началом: Требования
### ✅ PowerShell 7 (Обязательно!)
> ⚠️ **Важно:** Скрипты требуют PowerShell 7. Стандартный Windows PowerShell 5.1 **не подойдёт!**
#### Проверьте вашу версию
Откройте любой PowerShell и выполните:
```powershell
$PSVersionTable.PSVersion.Major
```bash
cp .env.example .env
```
- Если результат **7 или выше** — всё хорошо, переходите к установке ✅
- Если **5 или ниже** — нужно установить PowerShell 7 👇
Стандартные значения подходят для обычной домашней сети. При необходимости откройте `.env` в текстовом редакторе и измените порты.
#### Установка PowerShell 7
### 3. Запустите Gateway
**Способ 1: Через winget (самый простой)**
Откройте обычный PowerShell или Командную строку и выполните:
```powershell
winget install Microsoft.PowerShell
```bash
docker compose -f docker-compose.gateway.yml up -d --build
```
После установки закройте окно и откройте **PowerShell 7** (он появится в меню Пуск).
Откройте в браузере:
**Способ 2: Скачать вручную**
1. Перейдите: https://github.com/PowerShell/PowerShell/releases/latest
2. Скачайте файл `PowerShell-7.x.x-win-x64.msi` (где x.x.x — версия)
3. Запустите установщик и следуйте инструкциям
4. После установки используйте **PowerShell 7** из меню Пуск
> 💡 **Как отличить?** PowerShell 7 имеет чёрный фон и надпись "pwsh" или "PowerShell 7". Старый PowerShell — синий фон.
---
### ✅ URL Подписки или VLESS-ссылка
Получите от вашего VPN-провайдера:
- **Подписку**: URL, который начинается с `http://` или `https://`
- **VLESS-ссылку**: начинается с `vless://...`
---
## 🚀 Установка на Windows
### ⚡ Быстрая установка (Одной командой)
Самый быстрый способ — использовать наш автоматический установщик. Он сам скачает проект и распакует его в `C:\Tools\vpn-proxy`.
1. Откройте **PowerShell 7** от имени **Администратора**
2. Скопируйте и вставьте команду:
```powershell
Set-ExecutionPolicy RemoteSigned -Scope Process -Force; [System.Net.ServicePointManager]::SecurityProtocol = [System.Net.ServicePointManager]::SecurityProtocol -bor 3072; iwr https://git.dokops.ru/dokril/vpn-proxy/raw/branch/master/install.ps1 | iex
```text
http://АДРЕС-GATEWAY:3456
```
> 💡 Если команда выдаст ошибку 404, попробуйте заменить `master` на `main` в ссылке, или используйте ручную установку ниже.
Например, если Linux-машина имеет адрес `192.168.1.20`, интерфейс будет доступен по адресу `http://192.168.1.20:3456`.
---
### 4. При необходимости добавьте подписку
### 📦 Ручная установка (если авто-установка не работает)
1. Нажмите «Подписки» — верхнюю кнопку в правой панели Gateway.
2. Нажмите «Добавить подписку», задайте понятное имя и вставьте ссылку VPN-провайдера.
3. Выберите сервер внутри добавленной группы.
4. При нескольких группах выберите нужную действием «Сделать активной».
5. Включите VPN.
Если вы предпочитаете всё делать сами:
После подключения Harbor покажет два варианта использования:
#### Шаг 1: Скачайте проект
- **Gateway** — укажите IP-адрес Linux-машины как основной шлюз устройства. Через VPN пойдёт весь его интернет-трафик;
- **Gateway Proxy** — укажите адрес Linux-машины и порт `8080` в приложении. Поддерживаются HTTP и SOCKS5 на одном порту.
Мы рекомендуем использовать папку `C:\Tools`.
Приватные и локальные адреса не отправляются в VPN, поэтому устройства сохраняют доступ к домашней сети. Общий прокси по умолчанию принимает подключения только из приватных сетей.
```powershell
# 1. Создаем папку и переходим
New-Item -ItemType Directory -Force -Path "C:\Tools" | Out-Null
cd C:\Tools
### Резервный канал Gateway
# 2. Клонируем или скачиваем архив
git clone https://git.dokops.ru/dokril/vpn-proxy
После добавления подписок откройте «Резерв» — вторую кнопку в правой панели. Выберите основной и резервный серверы (они могут быть из одной или разных подписок), сервисы для проверки и отдельный таймаут каждого сервиса. Там же настраиваются длительность сбоя и восстановления, порог активного трафика, период тишины и защита от частых переключений.
# (Или скачайте ZIP вручную и распакуйте в C:\Tools\vpn-proxy)
При включении Harbor заранее проверяет dual-конфигурацию. Если VPN остановлен, она начнёт работать только после следующего обычного нажатия питания; сохранение само VPN не включает. Переключение меняет маршрут только для новых соединений — уже открытые соединения не закрываются. Если через VPN идёт активный трафик или его активность нельзя надёжно определить, Harbor ждёт и показывает скорость, число передающих соединений и безопасные подписи основных блокирующих потоков.
Выключенный резерв полностью пассивен: Harbor не запускает проверки, таймер выбора и отдельный подсчёт активности. Если dual-конфигурация уже загружена, отключение не перезапускает VPN и не меняет текущий маршрут; обычный stop и следующий запуск вернут single-channel config. Последние важные события — включение VPN, обновления подписок, переключения и ошибки — доступны в последней кнопке «Журнал» и хранятся 30 дней без ссылок подписок и сырых диагностических ответов.
### Устройства Gateway
Откройте «Устройства» в правой панели Gateway — подписка для просмотра списка не требуется. Harbor раз в 15 секунд читает локальную таблицу соседей и показывает каждое устройство одной компактной строкой: заданное название, hostname или IP, последний контакт, выбранный график трафика и иконку применённого маршрута. По умолчанию график показывает приблизительный выход `VPN`/`Direct`; переключатель `Вход` возвращает накопленную разбивку `Gateway`/`Прокси`. Наведите курсор на имя или переведите на него фокус, чтобы открыть IP, MAC и доступный hostname; нажатие на значение копирует его. Hostname определяется через локальное обратное разрешение имён и может отсутствовать, если сеть его не публикует. Технические interface и manufacturer продолжают храниться для идентификации, но не занимают место в строке. Список разделён на «Закреплённые», «Остальные» и «Фоновые»: последняя группа сохраняется между перезапусками, показывает только identity/presence и кнопку возврата без графика, traffic и route controls. Название, закрепление, фоновое положение и накопленные totals сохраняются в volume Gateway, пока устройство остаётся в inventory.
Левая панель списка ищет по имени, hostname, IP, MAC и тегам, фильтрует новые, закреплённые, фоновые или устройства без тегов и позволяет выбрать несколько тегов по правилу «хотя бы один». Каталог тегов общий для Gateway: в нём можно создать до 32 тегов и назначить устройству до 8. Назначения сохраняются вместе с `devices.json`, но маршруты не меняют. После удаления устройства по 30-дневному retention его назначения удаляются, сам каталог остаётся; вернувшееся позже устройство появляется без тегов. Если Mac-клиент подключён к старой версии Gateway, список продолжает работать, а управление тегами скрывается до обновления Gateway.
Красная кнопка `Сбросить данные` после отдельного подтверждения обнуляет вход и выход всех устройств и начинает считать их заново. Общий график скорости на Home и уже сохранённая история Prometheus/Grafana не очищаются: входной counter выглядит для Prometheus как стандартный reset, а для выхода Harbor сохраняет только baseline отображения и не изменяет raw dataplane counters.
Устройство, впервые замеченное после обновления Gateway, по умолчанию идёт `Напрямую` и первые семь дней отмечается `NEW`; исчезновение метки маршрут не меняет. Уже известные при обновлении устройства сохраняют текущий VPN, даже если метка ещё видна по их `firstSeenAt`. VPN разрешается существующей последней иконкой маршрута. Если новый device пока распознан неоднозначно, Harbor сохраняет Direct-намерение, временно оставляет фактический VPN и применяет Direct после однозначного наблюдения.
У однозначно распознанного устройства маршрут можно переключить последней иконкой между `VPN` и `Напрямую` независимо от закрепления; точное значение и следующее действие показаны в tooltip. `VPN` означает обработку через sing-box и правила Gateway: например, включённое локальное доменное правило всё равно может выбрать прямой выход внутри sing-box. `Напрямую` полностью обходит sing-box на уровне iptables. Traffic totals учитываются в обоих режимах. Если правило не удалось применить, Harbor сохраняет выбранный режим и отдельно показывает последний фактически применённый маршрут.
Список приблизительный: имя и пользовательские настройки привязаны к MAC и сохраняются при обычной смене IP, но новый private/randomized MAC считается новым устройством — переносить имя по одному только DHCP-адресу небезопасно. Запись автоматически удаляется после 30 дней без подтверждённого контакта независимо от имени, закрепления или фонового положения; временная ошибка чтения сети этот срок не продвигает. Один MAC с несколькими IP помечается как неоднозначный, а устройство появляется только после сетевого контакта с Gateway. Интерфейс самого Gateway не выдаётся за Wi-Fi/Ethernet устройства. Внешние сервисы распознавания производителя не используются. `Прокси` учитывает подключения устройства к общему proxy-порту Harbor, а `Gateway` — остальной публичный трафик через Gateway; трафик, который вообще не дошёл до Harbor, увидеть нельзя. Локальные, приватные и multicast-пакеты в totals не входят. При аварийном restart dataplane возможна потеря последних примерно 30 секунд; история по часам пока не хранится.
Home показывает фактически применённый VPN-сервер, накопленное `Учтено Harbor` и большой нижний график средней скорости Download/Upload за фактический интервал между снимками. `Учтено Harbor` — сумма `Gateway` и явного `Прокси` для всех наблюдавшихся устройств; это не лимит VPN-провайдера и не весь физический трафик Linux-машины. Накопленный total сохраняется при очистке старых устройств, а короткая история скорости после перезапуска начинает заполняться заново.
## Установка Harbor Connect на macOS
### 1. Запустите Docker Desktop
Установщик проверит наличие Docker, Docker Compose, `curl` и `tar`. Если Docker Desktop не запущен, установка остановится с понятным сообщением.
### 2. Запустите установщик
```bash
curl -fsSL https://git.dokops.ru/dokril/vpn-proxy/raw/branch/master/install.sh | sh
```
#### Шаг 2: Запустите
Установщик:
```powershell
cd C:\Tools\vpn-proxy
.\manage.ps1
- сохранит рабочую копию в `~/.vpn-proxy-client`;
- предложит порт для локального прокси;
- соберёт и запустит контейнер Harbor Connect;
- добавит пользовательский LaunchAgent для определения текущего Gateway.
По умолчанию используются адреса:
| Назначение | Адрес |
| --- | --- |
| Интерфейс Harbor Connect | `http://127.0.0.1:3456` |
| HTTP-прокси | `127.0.0.1:8082` |
| SOCKS5-прокси | `127.0.0.1:8082` |
### 3. Добавьте подписку
Откройте `http://127.0.0.1:3456`, добавьте подписку с понятным именем, выберите сервер внутри её группы и включите VPN. Остальные подписки можно добавить через правую панель «Подписки»; у каждой сохраняются собственные серверы, лимит и выбор.
Сам по себе локальный прокси не перенаправляет приложения автоматически. Адрес `127.0.0.1:8082` нужно указать в настройках нужного приложения или в системных настройках macOS.
### Другие порты
Передайте нужные значения при повторном запуске установщика:
```bash
curl -fsSL https://git.dokops.ru/dokril/vpn-proxy/raw/branch/master/install.sh | \
VPN_PROXY_CLIENT_PORT=9080 \
VPN_PROXY_CLIENT_UI_PORT=3457 \
sh
```
### Шаг 3: Выберите пункт [1] — VPN Клиент
Допустимы порты от `1024` до `65535`. Установщик не позволит выбрать занятый порт или один порт одновременно для интерфейса и прокси.
```
[1] 📦 VPN Клиент (Sing-box) [НЕ УСТАНОВЛЕН]
Основной способ. Поддерживает UDP и игры.
## Правила маршрутизации
[2] 🎮 Настройка Discord/Vesktop [НЕ АКТИВЕН]
Маршрутизация приложений через прокси.
После добавления подписки откройте «Правила маршрутизации» справа от основного экрана. При первом обновлении Harbor добавит включённое правило `*.ru → Напрямую`. Для каждого точного домена, suffix или фрагмента имени можно выбрать результат `VPN` либо `Напрямую`, выключить правило или удалить его. Правила проверяются сверху вниз, первое совпадение выбирает маршрут. Чтобы изменить порядок, возьмите строку за три точки слева и перетащите; с клавиатуры нажмите на этом хвате `Space` или `Enter`, переместите правило стрелками и повторно нажмите для размещения.
---------------------------------------
[3] 🔄 Обновить статус
[U] ❌ Удалить всё (Uninstall)
[q] Выход
Правила применяются только к трафику, который вошёл в VPN-маршрутизацию Harbor. Устройство Gateway в режиме «Напрямую» и Connect при активном Harbor Gateway обходят локальный список; «Напрямую» внутри правила — результат уже найденного совпадения. Для устройства Gateway с маршрутом `VPN` и при обычном локальном VPN список применяется.
👉 Ваш выбор: 1
Полный URL можно вставить в поле точного домена, но Harbor сохранит только hostname. Путь и параметры HTTPS зашифрованы и недоступны sing-box на уровне маршрутизации. GeoSite, GeoIP и подключаемые списки пока не поддерживаются.
При сохранении Harbor проверяет фактическое состояние sing-box. Работающий процесс применяет новую конфигурацию, только если она изменилась. Если sing-box остановлен, правила сохраняются с признаком «ждут запуска» и начнут работать при следующем запуске или restart; в Connect с активным Harbor Gateway они сохраняются как желаемые, но локально не применяются.
## Системный прокси macOS
Сначала посмотрите точное имя сетевого подключения:
```bash
networksetup -listallnetworkservices
```
### Шаг 4: Введите VLESS-ссылку или URL подписки
Для подключения с именем `Wi-Fi` включите HTTP, HTTPS и SOCKS5-прокси:
Скрипт попросит ввести ссылку. Вставьте и нажмите Enter.
**Готово!** 🎉 Прокси запущен на `127.0.0.1:1080`
### 📂 Где всё хранится?
Всё организовано в папке `C:\Tools`:
1. **Сам проект:** `C:\Tools\vpn-proxy`
- Скрипты управления и настройки
2. **Sing-box (VPN клиент):** `C:\Tools\sing-box`
- Здесь лежит `config.json` с вашими настройками и сам исполняемый файл
3. **ProxiFyre (для Discord):** `C:\Program Files\ProxiFyre` (системная служба)
---
## ✅ Проверка работы
После установки меню покажет статус и адреса подключения:
```
[1] 📦 VPN Клиент (Sing-box) [РАБОТАЕТ]
Основной способ. Поддерживает UDP и игры.
📡 ПОДКЛЮЧЕНИЕ К ПРОКСИ
─────────────────────────────
Локально: 127.0.0.1:1080
Из сети:
192.168.1.100:1080
```bash
networksetup -setwebproxy Wi-Fi 127.0.0.1 8082
networksetup -setsecurewebproxy Wi-Fi 127.0.0.1 8082
networksetup -setsocksfirewallproxy Wi-Fi 127.0.0.1 8082
```
### Проверка через терминал
Чтобы отключить их:
```powershell
# Без прокси — покажет ваш домашний IP
Invoke-WebRequest -Uri "https://ipinfo.io/ip" | Select-Object -ExpandProperty Content
# Через прокси — должен показать IP VPN-сервера
Invoke-WebRequest -Proxy "http://127.0.0.1:1080" -Uri "https://ipinfo.io/ip" | Select-Object -ExpandProperty Content
```bash
networksetup -setwebproxystate Wi-Fi off
networksetup -setsecurewebproxystate Wi-Fi off
networksetup -setsocksfirewallproxystate Wi-Fi off
```
Если IP-адреса разные — VPN работает! 🎉
Если сетевое подключение называется иначе, замените `Wi-Fi` его точным именем.
---
## Автоматическое использование домашнего Gateway
## 🎮 Настройка Discord / Vesktop
Harbor Connect раз в пять секунд узнаёт у macOS адрес текущего основного шлюза. Если по этому адресу работает Harbor Gateway с той же выбранной VPN-подпиской, Connect оставляет локальный прокси доступным для приложений, но не создаёт второй VPN-маршрут: трафик уже обрабатывает Gateway.
Discord не поддерживает системные настройки прокси, поэтому нужна дополнительная настройка.
Для этого:
### Требования
1. добавьте одну и ту же ссылку подписки в Gateway и Connect и выберите соответствующий профиль на обоих устройствах;
2. убедитесь, что Mac может открыть интерфейс Gateway на порту `3456`;
3. оставьте автоматический режим включённым в Harbor Connect.
- ✅ Установленный VPN клиент (пункт [1] в меню)
- ✅ VPN клиент должен быть запущен (статус "РАБОТАЕТ")
Ссылка должна содержать персональный секрет или token длиной не менее 16 символов — обычные ссылки подписок уже соответствуют этому условию. Ссылка между устройствами не передаётся: она используется локально для проверки, что Connect нашёл именно ваш Gateway. До отдельного pairing-flow Connect не получает от Gateway имя фактически применённых подписки и сервера, поэтому в режиме Gateway честно показывает `Gateway · сервер не определён`. При смене сети или после трёх неудачных проверок Connect возвращается к локальному VPN.
### Установка
## Повседневные команды
1. Запустите `.\manage.ps1`
2. Выберите пункт **[2] — Настройка Discord/Vesktop**
3. Выберите какое приложение настроить:
- Discord
- Vesktop
- Оба
Все команды Gateway выполняются из каталога проекта. Команды Connect — из `~/.vpn-proxy-client`.
**Что устанавливается:**
- Windows Packet Filter — драйвер для перехвата трафика
- ProxiFyre — служба, которая направляет трафик Discord через прокси
### Harbor Gateway
После установки Discord/Vesktop будут автоматически работать через VPN!
| Действие | Команда |
| --- | --- |
| Запустить или обновить после изменения файлов | `docker compose -f docker-compose.gateway.yml up -d --build` |
| Обновить только интерфейс и управление | `docker compose -f docker-compose.gateway.yml build vpn-proxy-control && docker compose -f docker-compose.gateway.yml up -d --no-deps vpn-proxy-control` |
| Показать состояние | `docker compose -f docker-compose.gateway.yml ps` |
| Смотреть журнал | `docker compose -f docker-compose.gateway.yml logs -f` |
| Перезапустить только интерфейс и управление | `docker compose -f docker-compose.gateway.yml restart vpn-proxy-control` |
| Перезапустить VPN dataplane | `docker compose -f docker-compose.gateway.yml restart vpn-proxy-dataplane` |
| Остановить | `docker compose -f docker-compose.gateway.yml down` |
| Удалить вместе с сохранёнными данными | `docker compose -f docker-compose.gateway.yml down -v` |
---
### Harbor Connect
## ⚙️ Настройка приложений
### Для VS Code
Откройте настройки (Ctrl + ,), найдите "proxy" и добавьте:
```
http.proxy: http://127.0.0.1:1080
```bash
cd ~/.vpn-proxy-client
```
Или добавьте в `settings.json`:
| Действие | Команда |
| --- | --- |
| Обновить и снова запустить | `./scripts/install-macos-client.sh` |
| Показать состояние | `docker compose -f docker-compose.client.yml ps` |
| Смотреть журнал | `docker compose -f docker-compose.client.yml logs -f` |
| Перезапустить | `docker compose -f docker-compose.client.yml restart` |
| Остановить | `docker compose -f docker-compose.client.yml down` |
| Удалить вместе с сохранёнными данными | `docker compose -f docker-compose.client.yml down -v` |
```json
{
"http.proxy": "http://127.0.0.1:1080",
"http.proxyStrictSSL": true
}
Команда с `-v` удаляет подписку, выбранный сервер и другие сохранённые данные. Для обычной остановки используйте `down` без `-v`.
## Обновление
### Gateway
```bash
git pull --ff-only
docker compose -f docker-compose.gateway.yml up -d --build
```
### Для браузера
### Connect
В настройках прокси вашего браузера укажите:
Повторно запустите однострочный установщик. Он обновит рабочую копию, снова спросит порт прокси и пересоберёт Connect:
- **Тип**: HTTP или SOCKS5
- **Адрес**: `127.0.0.1`
- **Порт**: `1080`
> 💡 **Совет:** Используйте расширение [Proxy SwitchyOmega](https://chrome.google.com/webstore/detail/proxy-switchyomega/padekgcemlokbadohgkifijomclgjgif) для удобного переключения прокси в Chrome.
### Для других программ
Укажите SOCKS5 прокси: `127.0.0.1:1080`
---
## 📋 Управление
При повторном запуске `.\manage.ps1` скрипт покажет меню управления:
| Действие | Как сделать |
|----------|-------------|
| Посмотреть статус | Запустить `.\manage.ps1` |
| Сменить сервер | Пункт [1] → "Сменить VLESS/Подписку" |
| Перезапустить | Пункт [1] → "Перезапустить" |
| Остановить | Пункт [1] → "Остановить" |
| Полностью удалить | Пункт [U] |
---
## 🌍 Подключение из локальной сети
Если вы хотите использовать прокси с других устройств (телефон, планшет):
1. Посмотрите IP-адрес в меню (раздел "Из сети:")
2. На другом устройстве настройте прокси: `IP_ВАШЕГО_ПК:1080`
Например: `192.168.1.100:1080`
---
## ❓ Часто задаваемые вопросы
### Ошибка "Файл не может быть загружен, так как выполнение сценариев отключено"
**Решение:** Включите выполнение скриптов:
```powershell
Set-ExecutionPolicy -ExecutionPolicy RemoteSigned -Scope CurrentUser
```bash
curl -fsSL https://git.dokops.ru/dokril/vpn-proxy/raw/branch/master/install.sh | sh
```
### Ошибка при запуске — непонятные символы или синтаксис
Если раньше использовался нестандартный порт, укажите его снова через `VPN_PROXY_CLIENT_PORT`.
**Причина:** Вы используете старый PowerShell 5.1
### Версии
**Решение:** Установите PowerShell 7 (см. раздел "Перед началом")
Текущая версия всегда показана в правом нижнем углу интерфейса. Connect показывает строку `M` (Mac client). Gateway показывает `C` (Gateway client UI), `B` (текущий control-backend) и `D` (фактически развёрнутый dataplane). Поэтому после control-only deploy `B` обновится сразу, а `D` может намеренно остаться на прежней версии до следующего runtime-deploy. Наведите курсор или переведите клавиатурный фокус на цифру, чтобы увидеть смысл `major`, `minor` или `hotfix`; у `D` также указана фактическая версия `sing-box`.
### Discord не подключается к голосовым каналам
Компонентные версии меняются в `src/shared/versions.ts`. У всех компонентов должен совпадать `major`, у Gateway client и backend — `major.minor`; `hotfix` может отличаться. Runtime-значения доступны через `GET /api/version`.
**Причина:** ProxiFyre не запущен или VPN клиент остановлен
Для изменения версии используйте `npm run version:harbor -- affected HEAD`, затем `npm run version:harbor -- bump <major|minor|hotfix> [компонент]` и `npm run version:harbor -- check HEAD`. Правила выбора уровня закреплены в обязательном repo skill `manage-harbor-versions`.
**Решение:**
1. Запустите `.\manage.ps1`
2. Убедитесь что пункт [1] показывает "РАБОТАЕТ"
3. Убедитесь что пункт [2] показывает "АКТИВЕН"
## Настройки `.env`
### Как узнать, работает ли VPN?
Для большинства установок достаточно стандартных значений.
1. Откройте https://ipinfo.io в браузере — это ваш реальный IP
2. Настройте прокси в браузере
3. Откройте https://ipinfo.io снова — должен показать другой IP
| Переменная | По умолчанию | Назначение |
| --- | --- | --- |
| `PORT` | `3456` | Внутренний порт веб-интерфейса Gateway |
| `CLIENT_UI_PORT` | `3456` | Порт интерфейса Connect на Mac |
| `PROXY_PORT` | `8080` | Порт общего прокси Gateway |
| `CLIENT_PROXY_PORT` | `8082` | Порт локального прокси Connect |
| `HARBOR_GATEWAY_CONTROL_PORT` | `3456` | Порт, на котором Connect проверяет домашний Gateway |
| `PROXY_BIND_IP` | `0.0.0.0` | Адрес, на котором Gateway принимает прокси-подключения |
| `PROXY_ALLOWED_CIDRS` | приватные IPv4-сети | Сети, которым разрешён доступ к Gateway Proxy |
| `GATEWAY_CLIENT_CIDRS` | приватные IPv4-сети | Сети, трафик которых Gateway может маршрутизировать |
| `DIRECT_TRAFFIC_MARK` | `0x40000000` | Зарезервированный одиночный connmark-бит учёта Direct; измените при конфликте с host QoS/firewall, не пересекаясь с `TPROXY_MARK` |
| `LOG_LEVEL` | `info` | Уровень подробности журнала |
---
Остальные значения в `.env.example` относятся к сборке контейнера и внутренней маршрутизации. Меняйте их только при нестандартном развёртывании.
## 🔧 Продвинутые варианты
После изменения `.env` пересоздайте контейнер командой `up -d` — обычного `restart` недостаточно.
### Docker с веб-интерфейсом
## Prometheus и Grafana
Если вы предпочитаете управлять через браузер с красивым интерфейсом:
Gateway публикует уже накопленные Harbor traffic counters по адресу `http://<gateway>:3456/metrics`. Scrape не запускает дополнительный netfilter read и не меняет сохранённое состояние. Harbor обновляет snapshot раз в 15 секунд, поэтому рекомендуемый начальный scrape interval и refresh dashboard — 30 секунд:
> ⚠️ **Внимание:** В этом режиме **Discord работать не будет**!
> Docker на Windows не поддерживает UDP-проксирование, которое необходимо для голосовых чатов. Если вам нужен рабочий Discord — используйте **основной способ** (пункт [1] в меню).
```yaml
scrape_configs:
- job_name: harbor_gateway
scrape_interval: 30s
scrape_timeout: 3s
metrics_path: /metrics
static_configs:
- targets: ["<gateway>:3456"]
```
📖 **[Инструкция по Docker](docs/DOCKER.md)**
`harbor_traffic_bytes_total` содержит общий накопленный объём по источникам Gateway/Proxy. `harbor_device_traffic_bytes_total` содержит upload/download по стабильному `device_id`; пользовательское название и текущий IP находятся в `harbor_device_info`. `harbor_device_domain_traffic_bytes_total` добавляет наблюдённые домен, сервис, источник и направление для каждого устройства. `harbor_domain_traffic_attribution_events_total{outcome}` помогает отличить нераспознанный hostname, неизвестное устройство и неподдерживаемый inbound без динамических high-cardinality labels.
### Установка на удалённый сервер (VPS)
Фактический выход экспортируется отдельно. `harbor_singbox_tracked_bytes_total{source,outbound,direction}` показывает наблюдённые sing-box байты с `outbound="vpn|direct|unknown"`; вариант с префиксом `harbor_device_...` добавляет `device_id`. `harbor_direct_ipv4_packet_bytes_total{direction}` считает IPv4-пакеты, которые Gateway направил напрямую вместо sing-box, включая policy Direct и работу при остановленном VPN runtime; вариант `harbor_device_...` содержит атрибутированную детализацию. `source="gateway|proxy"` по-прежнему означает место входа, а `outbound` — выбранный sing-box выход.
Если вы хотите развернуть прокси на своём сервере в другой стране:
Dashboard начинает со скорости скачивания и отправки в конце выбранного периода, общего трафика и VPN / Direct внутри sing-box за этот период. Для стандартного диапазона, который заканчивается сейчас, карточки скорости показывают текущее значение. Единый фильтр `Устройства` по умолчанию охватывает все устройства, но позволяет выбрать одно; он управляет скоростью, общим трафиком, маршрутами, сервисами, доменами и технической детализацией. Таблица «Все устройства за период» намеренно остаётся общей: она показывает все устройства с ненулевым трафиком, сортируется в обе стороны и выбирает устройство в том же фильтре. Блок «Куда уходит трафик» показывает основные назначения и Top-15 доменов без пагинации. Свёрнутая техническая детализация отдельно показывает точки входа Gateway / Proxy и Direct IPv4 мимо sing-box. Автообновление настроено на 30 секунд; индикатор показывает возраст самого старого из контуров общего, domain / sing-box и Direct IPv4 трафика, предупреждает после 60 секунд и считает данные устаревшими после 120 секунд.
📖 **[Инструкция по установке на сервер](docs/SERVER.md)**
Domain и sing-box outbound counters снимаются с активных соединений раз в 2 секунды и хранятся в памяти dataplane до его перезапуска; историю и retention хранит Prometheus. Перед routing sing-box до 1 секунды распознаёт HTTP Host, TLS SNI и QUIC Server Name. YouTube и OpenAI / ChatGPT объединяются по известным связанным доменам в label `service`, остальные значения сохраняют домен как имя сервиса. Если устройство и Harbor source известны, но hostname недоступен (например, ECH или IP-only), трафик попадает в `domain="_unknown",service="Не распознано"` и не теряется. Новые domain series сверх process limit складываются в `_other`.
---
Direct IPv4 считает L3 packet bytes с IP-заголовками и retransmit, а sing-box tracker — логические TCP/UDP bytes без tunnel overhead. Эти семейства нельзя складывать в один «точный общий трафик». Snapshot polling может пропустить короткие соединения и финальный хвост; IPv6, трафик вне Gateway, назначения из `BYPASS_CIDRS` и quota провайдера не входят в новый route split.
## 📚 Словарь терминов
Готовый dashboard: [`monitoring/grafana/harbor-gateway.json`](monitoring/grafana/harbor-gateway.json). При импорте Grafana попросит выбрать Prometheus data source. Та же конфигурация и dashboard доступны для копирования в Gateway drawer «Как использовать» → «Prometheus и Grafana».
| Термин | Объяснение |
|--------|------------|
| **Прокси** | Программа-посредник, которая передаёт ваши запросы в интернет от своего имени |
| **VPN** | Зашифрованный туннель между вашим компьютером и удалённым сервером |
| **VLESS** | Современный протокол VPN-соединения |
| **sing-box** | Программа-клиент для подключения к VPN |
| **SOCKS5** | Тип прокси, поддерживающий любой трафик (включая UDP для игр) |
| **Порт** | "Номер двери" для сетевых соединений |
## Если что-то не работает
---
### Интерфейс не открывается
## 🆘 Нужна помощь?
Проверьте контейнер и журнал:
Если что-то не работает:
```bash
docker compose -f docker-compose.gateway.yml ps
docker compose -f docker-compose.gateway.yml logs --tail=100
```
1. Убедитесь что используете **PowerShell 7**
2. Запустите от имени **Администратора**
3. Проверьте статус в главном меню
4. Попробуйте переустановить: пункт [U], затем пункт [1]
Для Connect замените имя файла на `docker-compose.client.yml` и выполняйте команду из `~/.vpn-proxy-client`.
---
### Прокси не отвечает
_Создано для простого и безопасного доступа в интернет_ 🛡️
Убедитесь, что Harbor включён в интерфейсе, а приложение использует правильные адрес и порт. Для Connect это обычно `127.0.0.1:8082`; для Gateway — IP Linux-машины и порт `8080`.
### Connect не распознаёт Gateway
Проверьте три условия:
- Gateway является текущим основным шлюзом Mac;
- на обоих устройствах сохранена одна и та же подписка;
- с Mac открывается `http://АДРЕС-GATEWAY:3456`.
### Проверка конфигурации без запуска
```bash
docker compose -f docker-compose.gateway.yml config
docker compose -f docker-compose.client.yml config
docker compose -f docker-compose.client.local.yml config
```
Эти команды только проверяют и показывают итоговую конфигурацию Docker Compose.
### Локальное тестирование Harbor Connect
Тестовый Connect запускается рядом с установленным клиентом и использует отдельные контейнер, volumes и порты:
```bash
docker compose -f docker-compose.client.local.yml up -d --build
```
Интерфейс доступен на `http://127.0.0.1:3457`, HTTP/SOCKS5-прокси — на `127.0.0.1:8083`. Остановить и удалить только тестовый стек можно командой:
```bash
docker compose -f docker-compose.client.local.yml down -v
```
Порты можно заменить через `LOCAL_CLIENT_UI_PORT` и `LOCAL_CLIENT_PROXY_PORT`.
## Служебные команды
Этот раздел нужен тем, кто собирает, проверяет или развёртывает сам проект. Для обычного использования он не требуется.
### Команды npm
| Команда | Назначение |
| --- | --- |
| `npm ci` | Установить точные версии зависимостей из `package-lock.json` |
| `npm test` | Запустить автоматические проверки |
| `npm run build` | Собрать веб-интерфейс в `dist/` |
| `npm run dev` | Запустить Vite для разработки интерфейса |
| `npm start` | Запустить управляющий Node.js-сервис в подготовленном окружении |
### Сборка и развёртывание
| Команда | Назначение |
| --- | --- |
| `./scripts/build-runtime-base.sh` | Собрать базовый runtime-образ с Node.js, сетевыми утилитами и `sing-box` |
| `./scripts/build-on-107-deploy-111.sh` | Собрать Gateway на хосте `107` и развернуть на хосте `111`; хосты меняются через `BUILD_HOST` и `DEPLOY_HOST` |
| `GATEWAY_IMAGE=<образ> ./scripts/deploy-gateway.sh` | Развернуть уже собранный образ в `/opt/vpn-proxy` |
| `./scripts/harbor-network-monitor.sh` | Один раз записать текущий Gateway macOS; обычно этот скрипт запускает установленный LaunchAgent |
Отправка изменений в ветку `master` также запускает автоматическую сборку и развёртывание Gateway через Gitea Actions. Каждый деплой пересоздаёт `vpn-proxy-control`, поэтому строка `B` соответствует текущему коду API. Процесс `sing-box` и сетевые правила остаются в `vpn-proxy-dataplane`; он пересоздаётся только при изменении его runtime-зависимостей, а его фактическая версия показывается отдельно как `D`.
## Хранение данных
Подписка, выбранный сервер и состояние подключения хранятся в именованных Docker volumes. Поэтому обычные команды `restart`, `down`, обновление проекта и повторная сборка не удаляют настройки.
Не публикуйте файл `.env`, ссылку подписки и содержимое Docker volumes. `.env` уже исключён из Git.
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# Read-only аудит failover/failback
## Короткий вывод
Штатное переключение между `primary` и `reserve` меняет маршрут **только для новых соединений**. Уже установленные TCP/UDP-соединения не переносятся и не закрываются самим Harbor.
Поэтому:
- здоровая загрузка, игра или поток продолжаются через старый канал;
- если старый канал действительно умер, существующая сессия может оборваться независимо от переключения;
- после переключения новые соединения идут через новый канал;
- бесшовной миграции уже открытого TCP/UDP-сеанса на другой внешний адрес нет.
## 1. Точный механизм
### Конфигурация
Gateway собирает один dual-channel `sing-box` config:
- `channel-primary`;
- `channel-reserve`;
- selector `channel-selector`;
- стабильные `tproxy-in` и `mixed-in`;
- отдельные diagnostic inbounds для проверки каждого канала.
Пользовательский трафик направляется в selector, а selector настроен с:
```text
interrupt_exist_connections: false
```
См. `src/server/singbox.ts:204-247`.
Роль меняется через localhost Clash API:
- `PUT /proxies/channel-selector`;
- затем Harbor читает selector обратно и подтверждает выбранную роль.
См. `src/server/services/singboxSelectorService.ts:29-81`.
Failover API доступен только в Gateway:
- `PUT /api/failover`;
- `POST /api/failover/pause`;
- `POST /api/failover/switch`;
- `POST /api/failover/check`.
См. `src/server/http/routes/failoverRoute.ts:18-39`.
Переключение selector не вызывает `sing-box` restart/apply/stop.
### Автоматический failover
`FailoverService`:
1. Проверяет оба канала через отдельные diagnostic inbound и выбранные HTTPS-сервисы.
2. Считает канал healthy только если все проверки успешны; неизвестный результат даёт `unknown`.
3. При сбое primary ждёт `failureWindowMs`.
4. Переключается на reserve только если reserve healthy.
5. При включённом traffic guard ждёт свежий quiet-window.
6. Перед самой сменой повторно проверяет здоровье и активность.
7. Выполняет selector PUT, read-back и только после этого обновляет canonical applied state.
См. `src/server/features/failover/failoverService.ts:225-245`, `:320-514`; state machine — `src/shared/failover.ts:278-354`.
Дефолты:
- проверка каждые 60 секунд;
- сбой primary — 120 секунд;
- восстановление primary — 15 минут;
- quiet-window — 30 секунд;
- активный трафик — выше 32 КБ/с;
- минимум на reserve — 10 минут;
- после 3 failover за 24 часа — карантин primary на 6 часов.
См. `src/shared/failover.ts:137-148`.
### Автоматический failback
Отдельной реализации нет: это обратная ветка той же state machine.
Из reserve Harbor возвращается на primary только после:
- полного `recoveryWindowMs`;
- `minimumReserveMs`;
- окончания quarantine, если он действует;
- quiet-window при включённом traffic guard;
- подтверждения, что primary healthy.
Причина переключения публикуется как `primary-recovered`. См. `src/shared/failover.ts:311-354`.
## 2. Судьба существующих соединений
| Событие | Уже открытый TCP/UDP flow | Новые соединения |
|---|---|---|
| Автоматический failover primary → reserve | Остаётся на прежнем outbound; Harbor его не закрывает и не мигрирует | Идут через reserve |
| Автоматический failback reserve → primary | Остаётся на reserve | Идут через primary |
| Ручной selector switch | Не закрывается, если старый outbound ещё работает | Сразу идёт через выбранную роль |
| Pause | Ничего не меняет | Идут через текущую роль |
| Disable failover | Selector и текущий маршрут не меняются; dual config временно остаётся загруженным | Идут через текущую роль |
| Обычный stop/restart/config replacement | Процесс `sing-box` останавливается, поэтому TCP/UDP-сессии прерываются | После запуска — по новой конфигурации |
| Реальная авария primary | Уже существующий flow может оборваться сам; Harbor не может перенести его на другой внешний IP | После selector switch новые flow идут через reserve |
Проверка `interrupt_exist_connections: false` непосредственно подтверждена TCP- и UDP-fixture-тестом: существующие TCP socket и UDP association продолжают обмен после switch, а новые идут через reserve. См. `test/server/singbox-selector-capability.test.js:141-142`, `:237-356`.
## 3. Отличия режимов
### Ручное переключение
`POST /api/failover/switch` вызывает selector напрямую:
- traffic guard не проверяется;
- состояние здоровья целевого канала backend не проверяет;
- после успешного ручного переключения `failoverPolicy.paused` становится `true`;
- автоматический failback не произойдёт, пока пользователь не возобновит автоматическое переключение.
См. `src/server/features/failover/failoverService.ts:248-317`, `:614-631`.
Это означает, что ручной switch может быть выполнен даже на канал, который сейчас не подтверждён healthy. Это важная оговорка.
### Автоматический failover
Автоматическое переключение:
- ждёт failure window;
- требует healthy reserve;
- при включённом guard блокируется активным или неизвестным трафиком;
- повторно валидирует условия непосредственно перед selector mutation;
- не перезапускает `sing-box`.
### Восстановление primary
Восстановившийся primary не получает новые соединения сразу. Сначала выдерживаются recovery/hold/quarantine условия и quiet-window. Пока они не выполнены, новые подключения остаются на reserve.
### Pause и Disable
`pause` приостанавливает решения, но dual config и наблюдение остаются активными.
`disable` останавливает scheduler, probes и failover activity collector, но не переключает selector и не перезапускает процесс. После обычного stop/следующего запуска собирается single-channel config.
См. `README.md:78-84`, `docs/product/application-state.md:102-110`.
## 4. Практические сценарии
- **Загрузка файла:** при обычном автоматическом failover активная передача по умолчанию задерживает switch. Если primary всё же упал, текущая TCP-загрузка не переносится на reserve; она может завершиться ошибкой. Возобновление или новый HTTP-запрос после switch пойдёт через reserve.
- **Игровая сессия:** существующий TCP-сеанс остаётся на старом канале. TCP-сессия оборвётся, если primary реально недоступен. UDP-flow также не мигрирует и может начать терять пакеты или истечь по timeout; новая сессия после switch пойдёт через reserve.
- **Стрим:** активный поток обычно блокирует автоматический switch при включённом guard. Ручной switch может быть выполнен сразу, но существующий TCP/QUIC-поток остаётся на старом outbound. При аварии старого канала плеер должен переподключиться.
- **WebSocket/долгий polling:** действующий flow не переносится; новые подключения после switch используют новую роль.
- **Молчащее соединение:** наличие открытого socket само по себе не считается активностью. Guard смотрит на дельты переданных байтов.
## 5. Условия и оговорки
- Failover реализован только для **Gateway**, не для локального Connect или `gateway-direct`.
- Активность собирается существующим `/connections` observer каждые 2 секунды, с bounded окном до 10 секунд. См. `src/server/index.ts:311-333`, `src/server/services/domainTrafficService.ts:323-416`, `:437-495`.
- Короткое соединение, полностью завершившееся между двумя снимками, может не попасть в activity guard.
- Неизвестная или устаревшая activity-информация блокирует автоматический switch; ручной switch остаётся доступен.
- Отключение traffic guard разрешает автоматический switch без ожидания тишины, но `interrupt_exist_connections: false` всё равно защищает уже открытые connections от закрытия самим selector.
- При изменении policy во время работающего single-channel VPN dual config становится `pending`; скрытого restart нет. См. `src/server/features/connection/connectionService.ts:140-201`, `:288-361`.
- Явный stop/restart или обычная смена сервера вне активного failover уже является disruptive operation: `sing-box` получает SIGTERM и текущие сессии прекращаются. См. `src/server/singboxRuntime.ts:39-62`, `:65-122`.
- Оба канала находятся в одном процессе `sing-box`; process-wide crash не защищён selector-механизмом.
## 6. Основные файлы
- `src/server/singbox.ts:204-247` — dual config, selector, inbound routing.
- `src/server/services/singboxSelectorService.ts:29-81` — selector PUT/read-back.
- `src/server/features/failover/failoverService.ts:225-245` — проверки каналов.
- `src/server/features/failover/failoverService.ts:248-317` — selector switch, commit и rollback.
- `src/server/features/failover/failoverService.ts:320-514` — автоматический раунд и traffic guard.
- `src/server/features/failover/failoverService.ts:614-631` — ручное переключение.
- `src/shared/failover.ts:137-148`, `:278-354` — дефолты и state machine.
- `src/server/services/domainTrafficService.ts:129-160`, `:323-416`, `:437-495` — классификация и activity.
- `src/server/features/connection/connectionService.ts:140-201`, `:243-361` — обычный apply/stop/restart.
- `src/server/singboxRuntime.ts:39-122` — фактическая остановка и перезапуск процесса.
- `README.md:78-84` — пользовательская документация.
- `docs/product/application-state.md:102-110` — контракт состояния.
- `workpack/tasks/TASK-021-auto-server-selection-failover.md:93-106`, `:187-204` — относящийся план и ограничения; задача не выбиралась и не изменялась.
## 7. Тесты, подтверждающие выводы
- `test/server/singbox-selector-capability.test.js:141-356`
Интеграционная TCP/UDP-проверка: активный трафик задерживает failover, существующие TCP/UDP продолжают работать после switch, новые соединения идут через reserve, PID процесса не меняется. Тест opt-in и пропускается без `HARBOR_SINGBOX_IMAGE`.
- `test/server/singbox-gateway-mode.test.js:69-110`
Проверяет selector, `interrupt_exist_connections: false`, отдельные diagnostic routes и primary/reserve outbounds.
- `test/server/failover-service.test.js:83-200`
Failure window, traffic guard, both-unhealthy и failback recovery/hold/quarantine.
- `test/server/failover-service.test.js:255-420`
Disabled zero-work, отмена устаревших наблюдений и непосредственная revalidation активности.
- `test/server/failover-service.test.js:423-520`
Selector rollback, commit ordering и ручной switch с pause.
- `test/server/domain-traffic.test.js:209-239`
Activity считается по пользовательскому VPN traffic, diagnostic connection не блокирует switch.
- `test/server/connection-service.test.js:265-310`, `:340-390`
Restart dual config и rollback; pending edits для работающего single-channel.
- `test/server/singbox-runtime.test.js:16-50`
При изменении config runtime запускает новый процесс.
- `test/server/failover-route.test.js:10-53`
Gateway-only API и маршруты ручного switch/pause/check.
- `test/web/failover-feature-contract.test.js:19-76`
UI явно сообщает: новые подключения переключаются, открытые остаются на прежнем канале.
## Review findings и residual risks
- **medium — `src/server/features/failover/failoverService.ts:614-620`:** ручной switch не проверяет health целевого канала и не применяет traffic guard; он сразу меняет selector и ставит automation на pause.
- **medium — `test/server/singbox-selector-capability.test.js:141-356`:** capability test opt-in и использует deterministic `direct` outbounds, а не реальный VLESS/Trojan outage.
- **medium — `src/server/services/domainTrafficService.ts:414-416`, `:451-479`:** activity основана на polling и byte deltas; короткие или очень малые потоки могут не блокировать автоматическое решение.
- **info — `src/server/singboxRuntime.ts:39-122`:** явный stop/restart отличается от selector switch и прерывает существующие соединения.
- **info — архитектура одного процесса:** падение всего `sing-box` не компенсируется selector failover.
Файлы не изменялись. Тесты и live Gateway в рамках read-only аудита не запускались.
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name: harbor-connect-local
services:
harbor-connect:
extends:
file: docker-compose.client.yml
service: harbor-connect
container_name: harbor-connect-local
environment:
PORT: ${LOCAL_CLIENT_UI_PORT:-3457}
PROXY_PORT: ${LOCAL_CLIENT_PROXY_PORT:-8083}
ports: !override
- "127.0.0.1:${LOCAL_CLIENT_UI_PORT:-3457}:${LOCAL_CLIENT_UI_PORT:-3457}"
- "127.0.0.1:${LOCAL_CLIENT_PROXY_PORT:-8083}:${LOCAL_CLIENT_PROXY_PORT:-8083}"
volumes: !override
- vpn-proxy-client-local-data:/var/lib/vpn-proxy
- sing-box-client-local-cache:/var/lib/sing-box
- ./.runtime:/run/harbor-host:ro
healthcheck:
test: ["CMD", "curl", "--noproxy", "*", "-fsS", "http://127.0.0.1:${LOCAL_CLIENT_UI_PORT:-3457}/api/state"]
volumes:
vpn-proxy-client-local-data:
sing-box-client-local-cache:
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services:
harbor-connect:
build:
context: .
dockerfile: Dockerfile.client
args:
SINGBOX_VERSION: ${SINGBOX_VERSION:-1.13.18}
container_name: harbor-connect
environment:
APP_MODE: client
PORT: ${PORT:-3456}
PROXY_PORT: ${CLIENT_PROXY_PORT:-8082}
PROXY_BIND_IP: 0.0.0.0
DATA_DIR: /var/lib/vpn-proxy
SING_BOX_CONFIG: /etc/sing-box/config.json
SING_BOX_CACHE: /var/lib/sing-box/cache.db
HARBOR_HOST_NETWORK_STATE: /run/harbor-host/network.json
HARBOR_GATEWAY_CONTROL_PORT: ${HARBOR_GATEWAY_CONTROL_PORT:-3456}
LOG_LEVEL: ${LOG_LEVEL:-info}
HTTP_PROXY: ""
HTTPS_PROXY: ""
ALL_PROXY: ""
http_proxy: ""
https_proxy: ""
all_proxy: ""
NO_PROXY: "localhost,127.0.0.1,host.docker.internal"
no_proxy: "localhost,127.0.0.1,host.docker.internal"
ports:
- "127.0.0.1:${CLIENT_UI_PORT:-3456}:${PORT:-3456}"
- "127.0.0.1:${CLIENT_PROXY_PORT:-8082}:${CLIENT_PROXY_PORT:-8082}"
volumes:
- vpn-proxy-client-data:/var/lib/vpn-proxy
- sing-box-client-cache:/var/lib/sing-box
- ./.runtime:/run/harbor-host:ro
restart: unless-stopped
healthcheck:
test: ["CMD", "curl", "--noproxy", "*", "-fsS", "http://127.0.0.1:${PORT:-3456}/api/state"]
interval: 30s
timeout: 5s
retries: 3
start_period: 20s
volumes:
vpn-proxy-client-data:
sing-box-client-cache:
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x-gateway-image: &gateway-image
image: ${GATEWAY_IMAGE:-vpn-proxy-gateway:local}
build:
context: .
dockerfile: Dockerfile
args:
BASE_IMAGE: ${BASE_IMAGE:-debian:bookworm-slim}
SINGBOX_VERSION: ${SINGBOX_VERSION:-1.13.18}
INSTALL_RUNTIME_DEPS: ${INSTALL_RUNTIME_DEPS:-true}
INSTALL_SINGBOX: ${INSTALL_SINGBOX:-true}
services:
vpn-proxy-dataplane:
<<: *gateway-image
container_name: vpn-proxy-dataplane
network_mode: host
cap_add:
- NET_ADMIN
- NET_RAW
env_file:
- path: .env
required: false
environment:
APP_COMPONENT: dataplane
DATA_DIR: /var/lib/vpn-proxy
SING_BOX_CONFIG: /var/lib/vpn-proxy/sing-box-config.json
SING_BOX_CACHE: /var/lib/sing-box/cache.db
DATAPLANE_SOCKET: /run/vpn-proxy/dataplane.sock
volumes:
- vpn-proxy-data:/var/lib/vpn-proxy
- sing-box-cache:/var/lib/sing-box
- vpn-proxy-runtime:/run/vpn-proxy
restart: unless-stopped
healthcheck:
test: ["CMD", "curl", "--unix-socket", "/run/vpn-proxy/dataplane.sock", "-fsS", "http://localhost/status"]
interval: 5s
timeout: 3s
retries: 12
start_period: 5s
vpn-proxy-control:
<<: *gateway-image
container_name: vpn-proxy-gateway
env_file:
- path: .env
required: false
environment:
APP_COMPONENT: control
DATA_DIR: /var/lib/vpn-proxy
SING_BOX_CONFIG: /var/lib/vpn-proxy/sing-box-config.json
SING_BOX_CACHE: /var/lib/sing-box/cache.db
DATAPLANE_SOCKET: /run/vpn-proxy/dataplane.sock
ports:
- "${PORT:-3456}:${PORT:-3456}"
volumes:
- vpn-proxy-data:/var/lib/vpn-proxy
- vpn-proxy-runtime:/run/vpn-proxy
depends_on:
vpn-proxy-dataplane:
condition: service_healthy
restart: unless-stopped
healthcheck:
test: ["CMD", "curl", "-fsS", "http://127.0.0.1:${PORT:-3456}/api/state"]
interval: 30s
timeout: 5s
retries: 3
start_period: 20s
volumes:
vpn-proxy-data:
sing-box-cache:
vpn-proxy-runtime:
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@@ -1,41 +0,0 @@
# ==========================================
# СЕРВЕРНАЯ КОНФИГУРАЦИЯ (Linux VPS)
# ==========================================
# Используйте этот файл на удалённом сервере:
# docker compose -f docker-compose.server.yml up -d
#
# network_mode: host решает проблему UDP ASSOCIATE
# для SOCKS5 прокси (важно для Discord голоса!)
# ==========================================
version: "3.9"
services:
sing-proxy:
container_name: sing-proxy
build:
context: .
dockerfile: docker/Dockerfile.singbox
# HOST MODE — контейнер использует сеть хоста напрямую
# Это решает проблему UDP ASSOCIATE для SOCKS5
# ВАЖНО: работает только на Linux, не на Windows/macOS!
network_mode: host
environment:
# Порт веб-интерфейса (по умолчанию 3456)
- PORT=${PORT:-3456}
# Порт прокси HTTP/SOCKS5 (по умолчанию 8080)
- PROXY_PORT=${PROXY_PORT:-8080}
volumes:
- ./data:/app/data
restart: unless-stopped
deploy:
resources:
limits:
memory: 256m
# Порты при network_mode: host не нужно пробрасывать,
# они автоматически доступны на хосте:
# - 3456: Веб-интерфейс (PORT)
# - 8080: SOCKS5/HTTP прокси (PROXY_PORT)
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@@ -1,22 +0,0 @@
version: "3.9"
services:
sing-proxy:
container_name: sing-proxy
build:
context: .
dockerfile: docker/Dockerfile.singbox
ports:
# Веб-интерфейс (можно переопределить: PORT=9090 docker compose up)
- "${PORT:-3456}:${PORT:-3456}"
# Прокси HTTP/SOCKS5 (можно переопределить: PROXY_PORT=8082 docker compose up)
- "${PROXY_PORT:-8080}:${PROXY_PORT:-8080}"
environment:
- PORT=${PORT:-3456}
- PROXY_PORT=${PROXY_PORT:-8080}
volumes:
- ./data:/app/data
restart: unless-stopped
deploy:
resources:
limits:
memory: 256m
-28
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@@ -1,28 +0,0 @@
FROM alpine:3.20
ARG SINGBOX_VER=1.12.13
# Устанавливаем зависимости, включая dos2unix для исправления скриптов
RUN apk add --no-cache curl ca-certificates tar jq bash coreutils netcat-openbsd python3 dos2unix && update-ca-certificates
# Автоматическое определение архитектуры и установка sing-box
RUN ARCH=$(uname -m) && \
if [ "$ARCH" = "x86_64" ]; then SB_ARCH="amd64"; \
elif [ "$ARCH" = "aarch64" ]; then SB_ARCH="arm64"; \
else SB_ARCH="amd64"; fi && \
curl -L -o /tmp/sb.tar.gz https://github.com/SagerNet/sing-box/releases/download/v${SINGBOX_VER}/sing-box-${SINGBOX_VER}-linux-${SB_ARCH}.tar.gz \
&& tar -xf /tmp/sb.tar.gz -C /tmp \
&& mv /tmp/sing-box-${SINGBOX_VER}-linux-${SB_ARCH}/sing-box /usr/local/bin/sing-box \
&& chmod +x /usr/local/bin/sing-box \
&& adduser -D -u 1000 suser
COPY --chown=suser:suser docker/entrypoint.sh /app/
COPY --chown=suser:suser web/ /app/web/
# Исправляем окончания строк (важно для Windows пользователей) и даем права на запуск
RUN dos2unix /app/*.sh && chmod +x /app/entrypoint.sh
# Порты по умолчанию (можно переопределить через ENV)
# PORT - веб-интерфейс, PROXY_PORT - прокси
EXPOSE 3456 8080 9090
ENTRYPOINT ["/app/entrypoint.sh"]
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@@ -1,70 +0,0 @@
#!/usr/bin/env bash
set -e
CONFIG_FILE="/app/data/client.json"
SINGBOX_PID=""
# Порты из ENV (по умолчанию: 3456 для веба, 8080 для прокси)
PORT="${PORT:-3456}"
PROXY_PORT="${PROXY_PORT:-8080}"
# Ensure data directory exists
mkdir -p /app/data
start_singbox() {
if [[ -f "$CONFIG_FILE" ]]; then
echo "$(date): Starting sing-box..."
sing-box run -c "$CONFIG_FILE" &
SINGBOX_PID=$!
echo "$(date): sing-box started with PID $SINGBOX_PID"
else
echo "$(date): Config file not found. Use web UI at :$PORT to apply config."
SINGBOX_PID=""
fi
}
stop_singbox() {
if [[ -n "$SINGBOX_PID" ]]; then
echo "$(date): Stopping sing-box (PID $SINGBOX_PID)..."
kill "$SINGBOX_PID" 2>/dev/null || true
wait "$SINGBOX_PID" 2>/dev/null || true
SINGBOX_PID=""
fi
}
restart_singbox() {
stop_singbox
start_singbox
}
start_singbox
# Start Web UI Server with configurable port
echo "$(date): Starting Web UI on port $PORT..."
PORT=$PORT PROXY_PORT=$PROXY_PORT python3 /app/web/server.py &
WEBUI_PID=$!
# HTTP Control Server (Simple Netcat loop)
# Listens on 9090.
# Endpoint: /reload -> Restart sing-box (used by web_server.py after config change)
(
while true; do
# Read the request using nc.
REQ=$(echo -e "HTTP/1.1 200 OK\r\nContent-Length: 0\r\n\r\n" | nc -l -p 9090 -q 1)
echo "$(date): Received request on 9090"
if echo "$REQ" | grep -q "GET /reload"; then
echo "$(date): Action: RELOAD (Restart sing-box)"
restart_singbox
else
echo "$(date): Unknown request or ping."
fi
done
) &
CONTROL_PID=$!
# Keep container alive - wait for any background process
echo "$(date): Entrypoint ready. Waiting for processes..."
# Wait indefinitely - if WebUI dies, restart container
wait $WEBUI_PID
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@@ -1,178 +0,0 @@
# 🐳 Docker — Веб-интерфейс для управления VPN
> **Это продвинутый способ** установки с красивым веб-интерфейсом. Для большинства пользователей рекомендуется использовать [основной способ через PowerShell](../README.md).
---
## 📖 Что это даёт?
- 🌐 **Веб-интерфейс** — управление через браузер на http://localhost:3456
- 📡 **Подписки** — автоматическое получение списка серверов
- 🔄 **Переключение серверов** — в один клик
- 💾 **Сохранение настроек** — URL и выбранный сервер сохраняются
---
## 🔧 Требования
### Docker Desktop
1. Скачайте: https://www.docker.com/products/docker-desktop/
2. Установите и запустите
3. Убедитесь, что иконка 🐳 есть в трее (панель задач)
> 💡 На Windows может потребоваться WSL2. Docker Desktop предложит его установить автоматически.
---
## 🚀 Установка
### Шаг 1: Откройте терминал
Откройте PowerShell или Командную строку и перейдите в папку проекта:
```powershell
cd путь\к\папке\vpn-proxy
```
### Шаг 2: Соберите контейнер
```powershell
docker compose build
```
Это создаст образ со всеми необходимыми компонентами. Выполняется один раз.
### Шаг 3: Запустите
```powershell
docker compose up -d
```
Флаг `-d` запускает контейнер в фоновом режиме.
### Шаг 4: Откройте веб-интерфейс
Перейдите в браузере: **http://localhost:3456**
---
## 🌐 Использование веб-интерфейса
### Режим подписки
1. Вставьте URL подписки в поле "Подписка"
2. Нажмите **"Загрузить серверы"**
3. Выберите сервер из списка
4. Нажмите **"Применить"**
### Режим VLESS
1. Перейдите на вкладку "VLESS Ключ"
2. Вставьте VLESS-ссылку (`vless://...`)
3. Нажмите **"Применить"**
> 💡 Настройки сохраняются в папке `data/` и восстанавливаются при перезапуске.
---
## 🌐 Порты
| Порт | Назначение | URL |
|------|------------|-----|
| `3456` | Веб-интерфейс | http://localhost:3456 |
| `8080` | HTTP/SOCKS5 прокси | `127.0.0.1:8080` |
| `9090` | API управления (внутренний) | — |
---
## 📋 Управление контейнером
| Действие | Команда |
|----------|---------|
| Посмотреть статус | `docker ps` |
| Посмотреть логи | `docker logs --tail 50 sing-proxy` |
| Остановить | `docker compose stop` |
| Запустить снова | `docker compose start` |
| Перезапустить | `docker compose restart` |
| Полностью удалить | `docker compose down` |
| Пересобрать | `docker compose up -d --build` |
---
## 🔄 Обновление
Если вы обновили код из репозитория:
```powershell
# Остановить текущий контейнер
docker compose down
# Пересобрать с новыми изменениями
docker compose build --no-cache
# Запустить заново
docker compose up -d
```
> 💡 Подписка и настройки сохраняются в папке `data/` и не потеряются.
---
## ⚙️ Настройка приложений
### Для VS Code
```json
{
"http.proxy": "http://127.0.0.1:8080",
"http.proxyStrictSSL": true
}
```
### Для браузера
- **Адрес**: `127.0.0.1`
- **Порт**: `8080`
- **Тип**: HTTP или SOCKS5
---
## ❓ Проблемы и решения
### Страница localhost:3456 не открывается
**Причина:** Контейнер не запущен.
```powershell
# Проверьте статус
docker ps
# Если контейнера нет — запустите
docker compose up -d
```
### "Connection refused"
**Причина:** VPN-ссылка не применена.
1. Откройте http://localhost:3456
2. Примените VLESS-ссылку или загрузите подписку
### Медленное подключение
Попробуйте другой сервер в веб-интерфейсе — некоторые серверы могут быть перегружены.
---
## ⚠️ Ограничения Docker на Windows
- **UDP для Discord:** Docker на Windows/macOS имеет проблемы с UDP ASSOCIATE для SOCKS5. Для Discord рекомендуется использовать [нативную установку](../README.md).
- **Для полной поддержки UDP** используйте [установку на Linux сервер](SERVER.md) с `network_mode: host`.
---
[← Вернуться к основной инструкции](../README.md)
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# 🌍 Установка на Сервер (Linux VPS)
> Эта инструкция для установки прокси на удалённый сервер. После установки вы сможете подключаться к нему с любого устройства.
---
## 📖 Зачем это нужно?
- 🌐 **Один прокси для всех устройств** — компьютер, телефон, планшет
- 🔒 **Работает 24/7** — не нужно держать компьютер включённым
- 📡 **Полная поддержка UDP** — голосовые звонки и игры работают отлично
- 🏠 **Доступ из любого места** — дома, на работе, в поездке
---
## 🔧 Требования к серверу
- **ОС:** Ubuntu 20.04+, Debian 11+, или любой современный Linux
- **Ресурсы:** Минимум 512 MB RAM, 1 CPU
- **Порты:** 3456 (веб-интерфейс), 8080 (прокси)
- **Доступ:** SSH подключение
> 💡 Подойдёт любой VPS за $3-5/месяц от DigitalOcean, Vultr, Hetzner и др.
---
## 🚀 Установка
### Шаг 1: Подключитесь к серверу
Откройте терминал (PowerShell на Windows, Terminal на Mac/Linux):
```bash
ssh root@ваш_сервер_ip
```
Введите пароль когда попросят.
> 💡 **Совет:** Если вы на Windows и нет ssh команды, используйте PuTTY или Windows Terminal.
---
### Шаг 2: Установите Docker
Если Docker ещё не установлен:
```bash
# Автоматическая установка Docker
curl -fsSL https://get.docker.com | sh
# Проверка что Docker работает
docker --version
```
---
### Шаг 3: Загрузите проект
**Вариант A: Через Git**
```bash
git clone https://github.com/your-repo/vpn-proxy.git
cd vpn-proxy
```
**Вариант B: Загрузка файлов вручную**
Если git недоступен, скачайте ZIP архив и распакуйте на сервере.
---
### Шаг 4: Запустите контейнер
> ⚠️ **Важно:** Используйте `docker-compose.server.yml` — он настроен для серверов!
```bash
docker compose -f docker-compose.server.yml up -d
```
Это запустит контейнер с `network_mode: host`, что решает проблемы с UDP.
---
### Шаг 5: Откройте порты в файрволе
**Для UFW (Ubuntu/Debian):**
```bash
ufw allow 3456/tcp # Веб-интерфейс
ufw allow 8080/tcp # Прокси TCP
ufw allow 8080/udp # Прокси UDP (для голоса/игр)
ufw reload
```
**Для firewalld (CentOS/RHEL):**
```bash
firewall-cmd --permanent --add-port=3456/tcp
firewall-cmd --permanent --add-port=8080/tcp
firewall-cmd --permanent --add-port=8080/udp
firewall-cmd --reload
```
**Для iptables:**
```bash
iptables -A INPUT -p tcp --dport 3456 -j ACCEPT
iptables -A INPUT -p tcp --dport 8080 -j ACCEPT
iptables -A INPUT -p udp --dport 8080 -j ACCEPT
```
---
### Шаг 6: Настройте VPN через веб-интерфейс
1. Откройте в браузере: `http://ваш_сервер_ip:3456`
2. Вставьте VLESS-ссылку или URL подписки
3. Нажмите "Применить"
---
## ✅ Проверка работы
На сервере:
```bash
# Проверить что контейнер запущен
docker ps
# Посмотреть логи
docker logs --tail 20 sing-proxy
```
С вашего компьютера:
```bash
# Проверить прокси
curl -x http://ваш_сервер_ip:8080 https://ipinfo.io/ip
```
Должен показать IP VPN-сервера (не IP вашего VPS).
---
## 🖥️ Подключение с Windows
### Настройка в manage.ps1
При настройке Discord (пункт [2]) вы можете указать адрес удалённого прокси:
```
Введите адрес прокси (IP:порт): ваш_сервер_ip:8080
```
### Настройка в браузере/приложениях
- **Адрес:** `ваш_сервер_ip`
- **Порт:** `8080`
- **Тип:** HTTP или SOCKS5
---
## 📋 Управление
| Действие | Команда |
|----------|---------|
| Посмотреть статус | `docker ps` |
| Логи | `docker logs --tail 50 sing-proxy` |
| Остановить | `docker compose -f docker-compose.server.yml stop` |
| Запустить | `docker compose -f docker-compose.server.yml start` |
| Перезапустить | `docker compose -f docker-compose.server.yml restart` |
| Удалить | `docker compose -f docker-compose.server.yml down` |
---
## 🔐 Рекомендации по безопасности
### 1. Смените стандартные порты
Отредактируйте `docker-compose.server.yml`:
```yaml
environment:
- PORT=54321 # Вместо 3456
- PROXY_PORT=12345 # Вместо 8080
```
### 2. Ограничьте доступ к веб-интерфейсу
Если веб-интерфейс нужен только для первоначальной настройки:
```bash
# Закрыть веб-порт после настройки
ufw delete allow 3456/tcp
```
### 3. Используйте SSH туннель
Для безопасного доступа к веб-интерфейсу:
```bash
ssh -L 3456:localhost:3456 root@ваш_сервер_ip
```
Затем откройте http://localhost:3456 в браузере.
---
## 🔄 Обновление
```bash
cd vpn-proxy
# Получить обновления
git pull
# Пересобрать контейнер
docker compose -f docker-compose.server.yml down
docker compose -f docker-compose.server.yml build --no-cache
docker compose -f docker-compose.server.yml up -d
```
---
## ❓ Проблемы и решения
### Порт 3456 не открывается
**Причина:** Файрвол блокирует подключения.
**Решение:** Проверьте настройки файрвола, см. Шаг 5.
### "Permission denied" при запуске Docker
**Решение:**
```bash
# Добавить пользователя в группу docker
sudo usermod -aG docker $USER
# Перезайти
exit
ssh root@ваш_сервер_ip
```
### Контейнер постоянно перезапускается
```bash
# Посмотреть логи ошибок
docker logs sing-proxy
```
Обычно проблема в неверной VLESS-ссылке.
---
## 📐 Изменение портов
По умолчанию:
- **3456** — веб-интерфейс
- **8080** — прокси
Для изменения создайте файл `.env` в папке проекта:
```env
PORT=54321
PROXY_PORT=12345
```
И перезапустите:
```bash
docker compose -f docker-compose.server.yml up -d
```
---
[← Вернуться к основной инструкции](../README.md)
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# Harbor responsive layout
The client page has three stable regions: the Harbor brand, the primary power control and the subscription/details form.
## Desktop
At widths above 920 px the main panel uses a symmetric three-column grid. Equal outer columns keep the power control on the exact horizontal center axis; the details form occupies the right column. The form has a viewport-relative maximum height and its own vertical scroll for unusually long content, so a large server list cannot move the power control away from the visual center.
The no-subscription setup state collapses the panel to one column and centers the form. No `left` offset or translated absolute element participates in either layout.
## Tablet and mobile
At 920 px and below all main regions use one normal-flow grid column. The brand becomes an absolute header inside the page shell, while reserved top padding prevents it from overlapping the primary content. Errors become normal-flow rows instead of floating over nearby controls. Form width is capped by both the available space and a readable maximum.
At 560 px and below spacing and drawer padding become more compact. Controls with a preferred fixed size, such as the duration switch, use `min(..., 100%)` so the primary flow remains available at 320 px.
## Motion and overflow contract
Layout properties are not animated. State feedback may animate opacity and blur, and the existing `prefers-reduced-motion` rules disable those transitions and animations. Drawers are capped at `100vw`; dialogs and inline content retain viewport-relative width limits.
Automated source-contract tests protect the symmetric desktop grid, normal-flow narrow layout, viewport-safe control widths and reduced-motion fallback. Release acceptance still includes a rendered check at 390, 768 and 1440 px; TASK-017 will later make that browser matrix automatic in CI.
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# Harbor application state v1
`GET /api/state` is the canonical Harbor domain snapshot. Successful mutations return the same snapshot as `state`. The persisted owner is `state.json` schema v8; React keeps only drafts, disclosure, focus, animation and transport freshness.
An abbreviated snapshot:
```json
{
"apiVersion": 1,
"revision": 42,
"mode": "client",
"profiles": [
{
"id": "profile_primary",
"label": "Личный",
"subscription": {
"status": "ready",
"host": "provider.example/…",
"fetchedAt": "2026-08-11T12:00:00.000Z",
"userInfo": {},
"lastRefreshAttemptAt": null,
"errorCode": null
},
"desiredServerId": "srv_amsterdam",
"servers": [
{
"id": "srv_amsterdam",
"label": "Amsterdam",
"host": "nl.example.net",
"port": 443,
"protocol": "vless"
}
]
}
],
"selection": {
"desiredProfileId": "profile_primary",
"desiredServerId": "srv_amsterdam",
"appliedProfileId": "profile_primary",
"appliedServerId": "srv_amsterdam",
"appliedServerSnapshot": {
"id": "srv_amsterdam",
"label": "Amsterdam",
"host": "nl.example.net",
"port": 443,
"protocol": "vless"
}
},
"operation": {
"kind": null,
"status": "idle",
"startedAt": null,
"error": null,
"profileId": null,
"serverId": null
}
}
```
Every profile owns one private provider URL/config, public metadata, server list and desired server. The URL/config never enters the public snapshot. `subscription` and top-level `servers` remain a one-release projection of the desired profile for older clients; they are not a second owner.
## Revision rules
`revision` increases for every visible domain transition, including operation start, completion and failure. Commands carry `expectedRevision`; stale commands fail with `STATE_CONFLICT`. Duplicate profile labels are rejected by preflight without a provider request or revision change.
The frontend accepts only newer snapshots. Equal revisions preserve object identity, and older polling responses cannot overwrite mutation results. After a failed mutation the browser immediately synchronizes the authoritative snapshot before allowing another command or retry.
Browser boot/offline/stale state remains a transport envelope beside the domain snapshot. A transport failure retains the last accepted domain state.
Failover health and traffic observations are transient: they do not write `state.json` or increase the domain `revision` every few seconds. Each control-process lifetime publishes a new `observationEpoch` and increasing `observationSequence`. At the same domain revision the browser accepts only a newer sequence from the active epoch; after accepting a new epoch it retires the old one so a late response cannot restore stale health.
## Desired and applied identity
`desiredProfileId` and each profile's `desiredServerId` record the next local choice. `appliedProfileId`, `appliedServerId` and `appliedServerSnapshot` describe the runtime that actually owns traffic. There is no third `activeProfileId`.
While stopped, selecting or activating a profile only updates desired state. While running, changing the applied profile/server builds a candidate config, starts it, then publishes desired and applied identity in one final state commit. Until that commit the old applied pair remains authoritative. A failure restores the previous config, runtime and state.
If refresh removes the applied server, the running process is not silently switched. The provider list and desired selection are cleared as needed, while `appliedServerSnapshot` retains the last applied label until explicit stop or a successful switch. Stop clears applied identity and keeps the desired pair.
## Profile operations
The canonical API is scoped by profile:
- `POST /api/profiles` adds a profile after one explicit provider fetch;
- `PATCH /api/profiles/:id` renames it locally;
- `PUT /api/profiles/:id/server` selects one of its servers;
- `POST /api/profiles/:id/activate` activates/switches it;
- `POST /api/profiles/:id/refresh` refreshes only that provider;
- `DELETE /api/profiles/:id` deletes it, with explicit `stop-and-delete` for a running applied profile;
- `POST /api/profiles/:id/servers/ping` performs bounded transient health checks.
Provider failure retains the last successful list and metadata, marks only the target profile stale and records the last successful timestamp. Refreshing, pinging or deleting an inactive profile does not mutate the applied config/runtime. Background refresh iterates profiles independently every 15 minutes.
## Ordered routing rules
`route.localRules` is the desired ordered list. Every rule has an explicit `outbound: "vpn" | "direct"`; the first enabled matcher wins and disabled rules retain their position without entering the generated config. `route.activeLocalRules` is the exact canonical list used to generate the running rules-enabled config, not a second desired owner.
The route-rules mutation uses the whole-array `PUT /api/route-rules/v2` with `rulesContractVersion: 2` and `expectedRulesRevision`. Contract v2 requires an explicit outbound on every rule. The versioned path prevents a stale v2 tab from writing to a rolled-back v1 backend; the legacy path on a v2 backend rejects its payload without changing state, config or runtime. A client that receives a snapshot without capability version 2 can read legacy rules as direct but keeps the editor read-only.
In Connect `gateway-direct`, local user rules are intentionally omitted and the snapshot reports no active or pending local rules. Gateway device policy `Напрямую` bypasses sing-box before these rules; policy `VPN` and an ordinary local/Gateway VPN pipeline evaluate them.
## Gateway failover and activity journal
`failoverPolicy` is the desired Gateway-only policy: master enable, primary/reserve profile and server, service checks with individual timeouts, health windows, active-traffic guard and flap protection. `failoverRuntimeState` stores switch history, hold and quarantine deadlines separately, so a runtime decision is not mistaken for a desired configuration change. `appliedFailoverPolicy` stores only the two loaded targets and safe configuration fingerprints.
Enabling failover while VPN is stopped validates a temporary dual-channel candidate but does not start VPN. The dual config is loaded only by the next explicit power-on. Enabling it over a running single-channel config remains pending until a later stop and power-on. Disabling automation stops its timer, probes and activity collector immediately, but does not restart sing-box or change the selected route; the already loaded dual config is reported as `passive-loaded` until the ordinary stop lifecycle clears it.
The dual config keeps one stable inbound and a sing-box selector with `interrupt_exist_connections: false`. A switch changes the outbound for new connections only. Before an automatic switch, the existing `/connections` observer measures VPN byte deltas over a bounded 10-second window. Active or unknown traffic blocks the switch; the public snapshot contains only aggregate speed, connection count and at most three safe device/service labels.
Failover mutations use `PUT /api/failover`, `POST /api/failover/pause` and `POST /api/failover/switch`. Important user events are stored separately in `activity-journal.json` and read through `GET /api/activity-journal`. The journal is not a second state owner, contains no provider URLs or raw diagnostics, uses stable ID cursors and prunes entries after 30 days.
## Compatibility and migration
Schema v5 migrates the legacy singleton and `subscription-cache.json` into one profile named `Основной`. Stable endpoint identity preserves unambiguous desired/applied selection, including transport variants whose normalized IDs differ from old labels. An explicitly stopped legacy state does not resurrect an old applied target.
Schema v6 adds the routing-rule outbound. Rules read from schemas v0-v5 migrate to `outbound: "direct"` in their existing order and both desired/applied arrays are normalized together. A schema-v6 rule without a valid outbound is rejected rather than silently rewritten. Schema v7 adds canonical connectivity-diagnostics settings. Schema v8 adds a disabled failover policy, empty runtime history and no applied dual config, so upgrading does not start monitoring or change traffic.
Migration atomically backs up the previous `state.json`. After the embedded profile is committed, Harbor also backs up and removes the legacy subscription cache so there is one persisted owner. Invalid legacy cache/config returns to a truthful stopped first-run state instead of starting stale generated config.
The old HTTP projection remains bounded for one release. Schema v8 persistence is not downgrade-compatible: stop Harbor and restore the `state.json.backup-v<fromVersion>-*` matching the rollback binary instead of deploying old code over v8 data. Rolling back before profiles still also requires the matching legacy subscription-cache backup.
@@ -0,0 +1,17 @@
# Data consistency regression suite
`npm test` is the required fast regression gate. It uses generated fixtures, temporary directories, loopback HTTP servers and a fake sing-box executable; it does not require internet, root or an installed sing-box.
The protected invariants are:
| Invariant | Regression coverage |
|---|---|
| One backend canonical snapshot owns servers and desired/applied selection | `test/data-consistency-regression.test.js`, `test/server/state-contract.test.js` |
| Revisions increase and an older response cannot replace newer state | `test/server/state-contract.test.js`, `test/web/harbor-state.test.js` |
| Provider failure, parser failure and runtime failure do not partially commit subscription state | `test/server/state-contract.test.js` |
| Atomic write failure preserves the last file and corrupt JSON preserves its original bytes | `test/server/state-store.test.js` |
| Legacy state migrates with an explicit result for ambiguous selection | `test/server/state-store.test.js` |
| Stable IDs survive reorder and duplicate labels for 1, 30 and 300 servers | `test/data-consistency-regression.test.js`, `test/server/subscription.test.js` |
| Initial control outage does not invent domain state; repeated failures retain and mark the last snapshot stale | `test/web/harbor-state.test.js` |
Fixtures are generated in test code to keep the suite small and deterministic. Packet-level networking, browser screenshots and accessibility automation are intentionally deferred to their dedicated roadmap tasks.
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# Harbor error contract v1
Public API failures use one envelope:
```json
{
"success": false,
"error": {
"code": "PROVIDER_UNAVAILABLE",
"message": "Провайдер подписки временно недоступен.",
"retryable": true,
"correlationId": "6f1a63de-30f9-4dc5-b8ce-38d38c164fe3",
"details": "HTTP 503"
}
}
```
`code`, Russian user copy, HTTP status and retry policy come from `src/shared/errors.ts`. The browser maps copy and retry behavior by `code`; it does not display server-provided `details`. Unknown failures use `UNKNOWN`, never expose the raw exception, and always receive a correlation reference. Server logs use the same reference and redact complete HTTP(S) URLs.
Errors are local operation results, not canonical state replacements. A failed apply keeps the previous snapshot; in particular, server existence is validated before `desiredServerId` is persisted. Frontend errors are shown beside subscription or connection controls. Only retryable codes expose `Повторить`.
This is a coordinated API change: old frontends do not understand the object-valued `error` field, so frontend and control plane must be deployed together. Persisted files and volumes are unchanged. Rollback is code-only and requires no data migration.
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# Frontend operation registry
Harbor tracks active browser mutations by operation key instead of one global `busy` flag:
- `connection`: start, stop and restart;
- `serverApply`: apply a `(profileId, serverId)` pair;
- `profileAdd`, `profileRename`, `profileSelect`, `profileActivate`, `profileRefresh`, `profileDelete`;
- `gatewayAuto`: change the active route preference.
Each entry is `{ status: "running", startedAt }`. A repeated operation key receives the same in-flight Promise, so a double click sends one request. A conflicting key resolves to `false` without starting its action. The symmetric conflict matrix lives in `src/web/state/operations.ts`.
The registry only disables controls that can mutate the same domain state. Copy actions, instruction navigation and local tabs remain available during subscription refresh. Progress is announced with `role="status"`; the structured error from TASK-004 remains `role="alert"` after failure.
Subscription URL validation is local and accepts only well-formed `http` and `https` URLs. It does not contact the provider; explicit profile add performs the single provider request and reports provider failures at that profile.
The registry is local transport/UI state for immediate feedback. It does not replace backend `snapshot.operation`, which preserves the target across polling, reloads and other windows. A `diagnostics` key is intentionally deferred until diagnostics become a conflicting mutation.
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# Harbor state recovery
Harbor keeps the existing data directory and `state.json` path. The current persisted format is `schemaVersion: 8`: schema v2 introduced local route rules, v3 added rule enabled state, v4 added stable server IDs, v5 embeds the canonical `profiles[]` collection with desired/applied profile identity, v6 adds an explicit `vpn` or `direct` outbound to every route rule, v7 stores connectivity-diagnostics settings, and v8 adds Gateway failover state.
## Atomic writes
Persistent files are written to a unique temporary file in the same directory, flushed with `fsync`, closed and atomically renamed over the target. A failure before rename leaves the previous target untouched and removes the temporary file.
Profile/server switching prepares candidate config and runtime before the final state publication. If any later step fails, Harbor restores the previous config, runtime and canonical state.
## Migration to profiles
On startup, a legacy state is normalized before the process starts. Harbor creates one profile named `Основной`, moves the provider URL/config and metadata into it, and preserves unambiguous desired/applied server identity. A legacy state explicitly marked stopped clears stale applied residue.
Before replacing state Harbor saves the original beside it:
```text
state.json.backup-v4-2026-08-11T12-00-00-000Z
```
After a valid profile has been committed, the raw legacy cache is saved and removed as a second owner:
```text
subscription-cache.json.backup-v1-2026-08-11T12-00-00-000Z
```
An invalid legacy provider config is backed up but not started. Harbor removes stale generated config and returns to a stopped first-run state.
## Migration to ordered VPN/Direct rules
When schemas v0-v5 are read, Harbor preserves the order of `routeRules` and `appliedRouteRules` and adds `outbound: "direct"` to legacy entries before atomically committing schema v6. The original file is preserved using its actual source version, for example:
```text
state.json.backup-v5-2026-08-17T12-00-00-000Z
```
After migration, malformed schema-v6 rules are rejected; Harbor does not reinterpret a missing or unknown outbound as direct.
## Migration to failover
Schemas v0-v7 migrate to v8 with failover disabled, empty switch history and no applied dual config. Migration does not start probes, enable traffic accounting or change the single-channel runtime. The original state is preserved as `state.json.backup-v<fromVersion>-*` before the atomic replacement.
The separate `activity-journal.json` is created on the first important event. It uses the same atomic write and corrupt-file isolation mechanism as state, retains at most 30 days, and can be removed while Harbor is stopped without affecting subscriptions, routing or VPN startup.
## Corrupt JSON
If `state.json` cannot be parsed, Harbor renames the exact damaged bytes to:
```text
state.json.corrupt-2026-08-11T12-00-00-000Z
```
It then creates a valid empty current-schema state and reports storage recovery. A corrupt legacy subscription cache is preserved with the same suffix and is never used to start stale config.
## Manual recovery and downgrade
Perform recovery while Harbor is stopped:
1. Copy the whole data directory.
2. Inspect the intended backup with `jq . <backup-file>`.
3. Restore only matching state/cache backups to their original filenames.
4. Start Harbor and verify `GET /api/state` before applying a profile.
A pre-v8 binary cannot interpret failover state. Restore `state.json.backup-v<fromVersion>-*` matching the rollback binary; deploying old code over schema v8 is not safe. A rollback to pre-v5 additionally requires the matching state and subscription-cache backups because that binary cannot interpret canonical profiles.
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#!/usr/bin/env bash
set -euo pipefail
PORT="${PORT:-3456}"
PROXY_PORT="${PROXY_PORT:-8082}"
DATA_DIR="${DATA_DIR:-/var/lib/vpn-proxy}"
SING_BOX_CONFIG="${SING_BOX_CONFIG:-/etc/sing-box/config.json}"
SING_BOX_CACHE="${SING_BOX_CACHE:-/var/lib/sing-box/cache.db}"
log() {
printf '[client-entrypoint] %s\n' "$*"
}
mkdir -p "$DATA_DIR" "$(dirname "$SING_BOX_CONFIG")" "$(dirname "$SING_BOX_CACHE")"
export APP_MODE=client
export PORT PROXY_PORT DATA_DIR SING_BOX_CONFIG SING_BOX_CACHE
export PROXY_BIND_IP="${PROXY_BIND_IP:-0.0.0.0}"
log "starting VPN proxy client UI on :${PORT}, local proxy on :${PROXY_PORT}"
exec node /app/dist/server/main.js
Executable
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#!/usr/bin/env bash
set -euo pipefail
APP_COMPONENT="${APP_COMPONENT:-combined}"
TPROXY_PORT="${TPROXY_PORT:-7895}"
TPROXY_MARK="${TPROXY_MARK:-1}"
TPROXY_TABLE="${TPROXY_TABLE:-100}"
TPROXY_CHAIN="${TPROXY_CHAIN:-VPN_PROXY_TPROXY}"
DEVICE_POLICY_CHAIN="${DEVICE_POLICY_CHAIN:-VPN_PROXY_DEVICE_POLICY}"
GATEWAY_FORWARD_CHAIN="${GATEWAY_FORWARD_CHAIN:-VPN_PROXY_FORWARD}"
GATEWAY_NAT_CHAIN="${GATEWAY_NAT_CHAIN:-VPN_PROXY_NAT}"
TRAFFIC_UPLOAD_CHAIN="${TRAFFIC_UPLOAD_CHAIN:-VPN_PROXY_TRAFFIC_UP}"
TRAFFIC_DOWNLOAD_CHAIN="${TRAFFIC_DOWNLOAD_CHAIN:-VPN_PROXY_TRAFFIC_DOWN}"
DIRECT_TRAFFIC_CHAIN="${DIRECT_TRAFFIC_CHAIN:-VPN_PROXY_DIRECT}"
DIRECT_TRAFFIC_MARK="${DIRECT_TRAFFIC_MARK:-0x40000000}"
GATEWAY_CLIENT_CIDRS="${GATEWAY_CLIENT_CIDRS:-10.0.0.0/8 172.16.0.0/12 192.168.0.0/16}"
PROXY_PORT="${PROXY_PORT:-8080}"
PROXY_BIND_IP="${PROXY_BIND_IP:-0.0.0.0}"
PROXY_INPUT_CHAIN="${PROXY_INPUT_CHAIN:-VPN_PROXY_INPUT}"
PROXY_FIREWALL="${PROXY_FIREWALL:-true}"
PROXY_ALLOWED_CIDRS="${PROXY_ALLOWED_CIDRS:-10.0.0.0/8 172.16.0.0/12 192.168.0.0/16}"
BYPASS_CIDRS="${BYPASS_CIDRS:-0.0.0.0/8 10.0.0.0/8 100.64.0.0/10 127.0.0.0/8 169.254.0.0/16 172.16.0.0/12 192.168.0.0/16 224.0.0.0/4 240.0.0.0/4}"
export TPROXY_PORT TPROXY_MARK DEVICE_POLICY_CHAIN TRAFFIC_UPLOAD_CHAIN TRAFFIC_DOWNLOAD_CHAIN DIRECT_TRAFFIC_CHAIN DIRECT_TRAFFIC_MARK GATEWAY_CLIENT_CIDRS BYPASS_CIDRS
DEVICE_TRAFFIC_CONFIG_VALID=false
export DEVICE_TRAFFIC_ACCOUNTING_ENABLED=false
log() {
printf '[gateway-entrypoint] %s\n' "$*"
}
if [[ "$APP_COMPONENT" == "control" ]]; then
exec node /app/dist/server/main.js
fi
validate_device_traffic_config() {
if [[ -z "$DIRECT_TRAFFIC_CHAIN" || ${#DIRECT_TRAFFIC_CHAIN} -gt 24
|| "$DIRECT_TRAFFIC_CHAIN" =~ [^a-zA-Z0-9_] ]]; then
log "device traffic counters unavailable: invalid DIRECT_TRAFFIC_CHAIN"
return 1
fi
local direct_names=("$DIRECT_TRAFFIC_CHAIN" "${DIRECT_TRAFFIC_CHAIN}_A" "${DIRECT_TRAFFIC_CHAIN}_B")
local reserved_names=(
PREROUTING INPUT FORWARD OUTPUT POSTROUTING
"$TPROXY_CHAIN"
"$DEVICE_POLICY_CHAIN" "${DEVICE_POLICY_CHAIN}_A" "${DEVICE_POLICY_CHAIN}_B"
"$TRAFFIC_DOWNLOAD_CHAIN" "${TRAFFIC_DOWNLOAD_CHAIN}_A" "${TRAFFIC_DOWNLOAD_CHAIN}_B"
"${TRAFFIC_DOWNLOAD_CHAIN}_A_P" "${TRAFFIC_DOWNLOAD_CHAIN}_B_P"
)
for direct_name in "${direct_names[@]}"; do
for reserved_name in "${reserved_names[@]}"; do
if [[ "$direct_name" == "$reserved_name" ]]; then
log "device traffic counters unavailable: DIRECT_TRAFFIC_CHAIN conflicts with ${reserved_name}"
return 1
fi
done
done
if ! [[ "$DIRECT_TRAFFIC_MARK" =~ ^(0[xX][0-9a-fA-F]{1,8}|[0-9]{1,10})$
&& "$TPROXY_MARK" =~ ^(0[xX][0-9a-fA-F]{1,8}|[0-9]{1,10})$ ]]; then
log "device traffic counters unavailable: invalid traffic mark"
return 1
fi
local direct_mark_value tproxy_mark_value
if [[ "$DIRECT_TRAFFIC_MARK" =~ ^0[xX] ]]; then
direct_mark_value=$((16#${DIRECT_TRAFFIC_MARK:2}))
else
direct_mark_value=$((10#$DIRECT_TRAFFIC_MARK))
fi
if [[ "$TPROXY_MARK" =~ ^0[xX] ]]; then
tproxy_mark_value=$((16#${TPROXY_MARK:2}))
else
tproxy_mark_value=$((10#$TPROXY_MARK))
fi
if (( direct_mark_value == 0 || direct_mark_value > 0xffffffff
|| (direct_mark_value & (direct_mark_value - 1)) != 0
|| (direct_mark_value & tproxy_mark_value) != 0 )); then
log "device traffic counters unavailable: DIRECT_TRAFFIC_MARK must be one bit outside TPROXY_MARK"
return 1
fi
DEVICE_TRAFFIC_CONFIG_VALID=true
}
ipt() {
iptables -w "$@"
}
ipt_traffic() {
iptables -w 1 "$@"
}
cleanup_proxy_firewall() {
ipt -D INPUT -p tcp --dport "$PROXY_PORT" -j "$PROXY_INPUT_CHAIN" 2>/dev/null || true
ipt -D INPUT -p udp --dport "$PROXY_PORT" -j "$PROXY_INPUT_CHAIN" 2>/dev/null || true
ipt -F "$PROXY_INPUT_CHAIN" 2>/dev/null || true
ipt -X "$PROXY_INPUT_CHAIN" 2>/dev/null || true
}
cleanup_tproxy() {
ipt -t mangle -D PREROUTING -j "$TPROXY_CHAIN" 2>/dev/null || true
ipt -t mangle -F "$TPROXY_CHAIN" 2>/dev/null || true
ipt -t mangle -X "$TPROXY_CHAIN" 2>/dev/null || true
ip rule del fwmark "$TPROXY_MARK" table "$TPROXY_TABLE" 2>/dev/null || true
ip route flush table "$TPROXY_TABLE" 2>/dev/null || true
}
cleanup_device_policy() {
ipt -t mangle -F "$DEVICE_POLICY_CHAIN" 2>/dev/null || true
for slot in A B; do
ipt -t mangle -F "${DEVICE_POLICY_CHAIN}_${slot}" 2>/dev/null || true
ipt -t mangle -X "${DEVICE_POLICY_CHAIN}_${slot}" 2>/dev/null || true
done
ipt -t mangle -X "$DEVICE_POLICY_CHAIN" 2>/dev/null || true
}
setup_device_policy() {
cleanup_device_policy
ipt -t mangle -N "$DEVICE_POLICY_CHAIN" || return 1
ipt -t mangle -N "${DEVICE_POLICY_CHAIN}_A" || return 1
ipt -t mangle -N "${DEVICE_POLICY_CHAIN}_B" || return 1
ipt -t mangle -A "${DEVICE_POLICY_CHAIN}_A" -p tcp -j TPROXY --on-port "$TPROXY_PORT" --tproxy-mark "$TPROXY_MARK/$TPROXY_MARK" || return 1
ipt -t mangle -A "${DEVICE_POLICY_CHAIN}_A" -p udp -j TPROXY --on-port "$TPROXY_PORT" --tproxy-mark "$TPROXY_MARK/$TPROXY_MARK" || return 1
ipt -t mangle -A "$DEVICE_POLICY_CHAIN" -j "${DEVICE_POLICY_CHAIN}_A" || return 1
}
cleanup_gateway_forwarding() {
ipt -D FORWARD -j "$GATEWAY_FORWARD_CHAIN" 2>/dev/null || true
ipt -t nat -D POSTROUTING -j "$GATEWAY_NAT_CHAIN" 2>/dev/null || true
ipt -F "$GATEWAY_FORWARD_CHAIN" 2>/dev/null || true
ipt -X "$GATEWAY_FORWARD_CHAIN" 2>/dev/null || true
ipt -t nat -F "$GATEWAY_NAT_CHAIN" 2>/dev/null || true
ipt -t nat -X "$GATEWAY_NAT_CHAIN" 2>/dev/null || true
}
cleanup_device_traffic() {
[[ "$DEVICE_TRAFFIC_CONFIG_VALID" == "true" ]] || return 0
ipt_traffic -t mangle -D "$TPROXY_CHAIN" -j CONNMARK --set-xmark "0x0/$DIRECT_TRAFFIC_MARK" 2>/dev/null || true
ipt_traffic -t raw -D PREROUTING -j "$TRAFFIC_UPLOAD_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -D PREROUTING -j "$DIRECT_TRAFFIC_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -D POSTROUTING -j "$TRAFFIC_DOWNLOAD_CHAIN" 2>/dev/null || true
ipt_traffic -t raw -F "$TRAFFIC_UPLOAD_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -F "$DIRECT_TRAFFIC_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -F "$TRAFFIC_DOWNLOAD_CHAIN" 2>/dev/null || true
for slot in A B; do
ipt_traffic -t raw -F "${TRAFFIC_UPLOAD_CHAIN}_${slot}" 2>/dev/null || true
ipt_traffic -t raw -F "${TRAFFIC_UPLOAD_CHAIN}_${slot}_P" 2>/dev/null || true
ipt_traffic -t raw -X "${TRAFFIC_UPLOAD_CHAIN}_${slot}_P" 2>/dev/null || true
ipt_traffic -t raw -X "${TRAFFIC_UPLOAD_CHAIN}_${slot}" 2>/dev/null || true
ipt_traffic -t mangle -F "${DIRECT_TRAFFIC_CHAIN}_${slot}" 2>/dev/null || true
ipt_traffic -t mangle -X "${DIRECT_TRAFFIC_CHAIN}_${slot}" 2>/dev/null || true
ipt_traffic -t mangle -F "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}" 2>/dev/null || true
ipt_traffic -t mangle -F "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}_P" 2>/dev/null || true
ipt_traffic -t mangle -X "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}_P" 2>/dev/null || true
ipt_traffic -t mangle -X "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}" 2>/dev/null || true
done
ipt_traffic -t raw -X "$TRAFFIC_UPLOAD_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -X "$DIRECT_TRAFFIC_CHAIN" 2>/dev/null || true
ipt_traffic -t mangle -X "$TRAFFIC_DOWNLOAD_CHAIN" 2>/dev/null || true
}
setup_device_traffic() {
log "setup device traffic counters"
cleanup_device_traffic
ipt_traffic -t raw -N "$TRAFFIC_UPLOAD_CHAIN" || return 1
ipt_traffic -t mangle -N "$DIRECT_TRAFFIC_CHAIN" || return 1
ipt_traffic -t mangle -N "$TRAFFIC_DOWNLOAD_CHAIN" || return 1
for slot in A B; do
ipt_traffic -t raw -N "${TRAFFIC_UPLOAD_CHAIN}_${slot}" || return 1
ipt_traffic -t raw -N "${TRAFFIC_UPLOAD_CHAIN}_${slot}_P" || return 1
ipt_traffic -t mangle -N "${DIRECT_TRAFFIC_CHAIN}_${slot}" || return 1
ipt_traffic -t mangle -N "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}" || return 1
ipt_traffic -t mangle -N "${TRAFFIC_DOWNLOAD_CHAIN}_${slot}_P" || return 1
done
ipt_traffic -t raw -I PREROUTING 1 -j "$TRAFFIC_UPLOAD_CHAIN" || return 1
# sing-box inserts TPROXY at position 1 later; this jump then sees only packets not intercepted by it.
ipt_traffic -t mangle -I PREROUTING 1 -j "$DIRECT_TRAFFIC_CHAIN" || return 1
ipt_traffic -t mangle -I POSTROUTING 1 -j "$TRAFFIC_DOWNLOAD_CHAIN" || return 1
local policy_rule=4
for _cidr in $BYPASS_CIDRS; do
policy_rule=$((policy_rule + 1))
done
ipt_traffic -t mangle -I "$TPROXY_CHAIN" "$policy_rule" -j CONNMARK --set-xmark "0x0/$DIRECT_TRAFFIC_MARK" || return 1
}
enable_ip_forwarding() {
if [[ -w /proc/sys/net/ipv4/ip_forward ]]; then
printf '1' > /proc/sys/net/ipv4/ip_forward || true
elif command -v sysctl >/dev/null 2>&1; then
sysctl -w net.ipv4.ip_forward=1 >/dev/null 2>&1 || true
fi
}
setup_proxy_firewall() {
if [[ "$PROXY_FIREWALL" != "true" || "$PROXY_BIND_IP" == "127.0.0.1" || "$PROXY_BIND_IP" == "::1" ]]; then
return
fi
cleanup_proxy_firewall
ipt -N "$PROXY_INPUT_CHAIN"
for cidr in $PROXY_ALLOWED_CIDRS; do
ipt -A "$PROXY_INPUT_CHAIN" -s "$cidr" -j RETURN
done
ipt -A "$PROXY_INPUT_CHAIN" -j DROP
ipt -I INPUT -p tcp --dport "$PROXY_PORT" -j "$PROXY_INPUT_CHAIN"
ipt -I INPUT -p udp --dport "$PROXY_PORT" -j "$PROXY_INPUT_CHAIN"
}
setup_gateway_forwarding() {
log "setup direct gateway forwarding"
cleanup_gateway_forwarding
enable_ip_forwarding
ipt -N "$GATEWAY_FORWARD_CHAIN"
ipt -t nat -N "$GATEWAY_NAT_CHAIN"
for cidr in $GATEWAY_CLIENT_CIDRS; do
ipt -A "$GATEWAY_FORWARD_CHAIN" -s "$cidr" -j ACCEPT
ipt -A "$GATEWAY_FORWARD_CHAIN" -d "$cidr" -m conntrack --ctstate RELATED,ESTABLISHED -j ACCEPT
ipt -t nat -A "$GATEWAY_NAT_CHAIN" -s "$cidr" -m addrtype ! --dst-type LOCAL -j MASQUERADE
done
ipt -I FORWARD 1 -j "$GATEWAY_FORWARD_CHAIN"
ipt -t nat -I POSTROUTING 1 -j "$GATEWAY_NAT_CHAIN"
}
setup_tproxy() {
log "setup tproxy on port ${TPROXY_PORT}"
cleanup_tproxy
if ! setup_device_policy; then
log "device policy unavailable; using global VPN fallback"
cleanup_device_policy
fi
enable_ip_forwarding
ip rule add fwmark "$TPROXY_MARK" table "$TPROXY_TABLE" 2>/dev/null || true
ip route replace local 0.0.0.0/0 dev lo table "$TPROXY_TABLE"
ipt -t mangle -N "$TPROXY_CHAIN"
ipt -t mangle -A "$TPROXY_CHAIN" -m addrtype --dst-type LOCAL -j RETURN
ipt -t mangle -A "$TPROXY_CHAIN" -m mark --mark "$TPROXY_MARK" -j RETURN
ipt -t mangle -A "$TPROXY_CHAIN" -i 'br-+' -j RETURN
# Private/local destinations stay reachable; every intercepted public packet goes to VPN.
for cidr in $BYPASS_CIDRS; do
ipt -t mangle -A "$TPROXY_CHAIN" -d "$cidr" -j RETURN
done
if ipt -t mangle -L "$DEVICE_POLICY_CHAIN" -n >/dev/null 2>&1; then
ipt -t mangle -A "$TPROXY_CHAIN" -j "$DEVICE_POLICY_CHAIN"
else
ipt -t mangle -A "$TPROXY_CHAIN" -p tcp -j TPROXY --on-port "$TPROXY_PORT" --tproxy-mark "$TPROXY_MARK/$TPROXY_MARK"
ipt -t mangle -A "$TPROXY_CHAIN" -p udp -j TPROXY --on-port "$TPROXY_PORT" --tproxy-mark "$TPROXY_MARK/$TPROXY_MARK"
fi
}
setup_gateway_forwarding
setup_tproxy
if validate_device_traffic_config; then
if ! setup_device_traffic; then
log "device traffic counters unavailable; VPN routing remains active"
cleanup_device_traffic
else
export DEVICE_TRAFFIC_ACCOUNTING_ENABLED=true
fi
fi
setup_proxy_firewall
node /app/dist/server/main.js &
APP_PID=$!
shutdown() {
kill "$APP_PID" 2>/dev/null || true
wait "$APP_PID" 2>/dev/null || true
cleanup_proxy_firewall
cleanup_device_traffic
cleanup_tproxy
cleanup_device_policy
cleanup_gateway_forwarding
}
trap 'shutdown; exit 0' SIGTERM SIGINT
wait "$APP_PID"
STATUS=$?
cleanup_proxy_firewall
cleanup_device_traffic
cleanup_tproxy
cleanup_device_policy
cleanup_gateway_forwarding
exit "$STATUS"
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<!doctype html>
<html lang="ru">
<head>
<meta charset="UTF-8" />
<meta name="viewport" content="width=device-width, initial-scale=1.0" />
<link id="harbor-favicon" rel="icon" href="/harbor-connect.svg?v=2" type="image/svg+xml" sizes="any" />
<title>Harbor</title>
</head>
<body>
<div id="root"></div>
<script type="module" src="/src/web/main.tsx"></script>
</body>
</html>
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# ==========================================
# 🚀 VPN PROXY INSTALLER
# ==========================================
# This script automatically downloads and installs VPN Proxy
# Usage:
# iwr https://git.dokops.ru/dokril/vpn-proxy/raw/branch/master/install.ps1 | iex
# Enable UTF-8 for emoji support
[Console]::OutputEncoding = [System.Text.Encoding]::UTF8
$ErrorActionPreference = "Stop"
# --- 1. Check Admin Rights ---
if (-not ([Security.Principal.WindowsPrincipal][Security.Principal.WindowsIdentity]::GetCurrent()).IsInRole([Security.Principal.WindowsBuiltInRole]"Administrator")) {
Write-Warning "⚠️ Administrator rights required!"
Write-Host "🔄 Restarting script as Administrator..." -ForegroundColor Cyan
# Save script to temp file if running from memory (iex)
if ($MyInvocation.MyCommand.CommandType -eq 'Script') {
Start-Process powershell -ArgumentList "-NoProfile -ExecutionPolicy Bypass -File `"$($MyInvocation.MyCommand.Path)`"" -Verb RunAs
}
else {
# If running via IEX, we cannot simple restart the file.
# We ask user to run terminal as admin.
Write-Error "Please run PowerShell as Administrator and try again."
}
exit
}
# --- 2. Settings ---
$InstallRoot = "C:\Tools"
$InstallDir = "$InstallRoot\vpn-proxy"
# Exact link provided by user
$ZipUrl = "https://git.dokops.ru/dokril/vpn-proxy/archive/master.zip"
$TempZip = "$env:TEMP\vpn-proxy-install.zip"
Write-Host "🚀 Starting VPN Proxy installation..." -ForegroundColor Green
Write-Host "📂 Install path: $InstallDir" -ForegroundColor Gray
# Move to temp folder to avoid blocking deletion if we are already in C:\Tools\vpn-proxy
Set-Location $env:TEMP
# --- 3. Prepare Directory ---
if (-not (Test-Path $InstallRoot)) {
New-Item -ItemType Directory -Path $InstallRoot -Force | Out-Null
}
# --- 4. Downloading ---
Write-Host "⬇️ Downloading update archive..." -ForegroundColor Cyan
try {
Invoke-WebRequest -Uri $ZipUrl -OutFile $TempZip
}
catch {
Write-Error "❌ Failed to download from $ZipUrl`nCheck your internet connection."
exit 1
}
# --- 5. Extracting ---
Write-Host "📦 Extracting..." -ForegroundColor Cyan
# If folder exists, delete old one
if (Test-Path $InstallDir) {
try {
Remove-Item $InstallDir -Recurse -Force -ErrorAction Stop
}
catch {
Write-Warning "⚠️ Failed to delete old folder $InstallDir"
Write-Warning " Error: $($_.Exception.Message)"
Write-Warning " Make sure files are not open in other programs and you are not inside this folder."
$retry = Read-Host " Press Enter to try again (or Ctrl+C to cancel)"
try {
Remove-Item $InstallDir -Recurse -Force -ErrorAction Stop
}
catch {
Write-Error "❌ Still failed to delete folder. Installation aborted."
exit 1
}
}
}
Expand-Archive -Path $TempZip -DestinationPath $InstallRoot -Force
# Archives usually extract to vpn-proxy-master or vpn-proxy-main
# We need to rename it to vpn-proxy
$ExtractedFolder = Get-ChildItem -Path $InstallRoot -Directory | Where-Object { $_.Name -match "vpn-proxy-(master|main)" } | Select-Object -First 1
if ($ExtractedFolder) {
Rename-Item -Path $ExtractedFolder.FullName -NewName "vpn-proxy" -Force
}
# Remove temp archive
Remove-Item $TempZip -Force
if (-not (Test-Path "$InstallDir\manage.ps1")) {
Write-Error "❌ Installation error: manage.ps1 not found in $InstallDir"
exit 1
}
# --- 6. Finish ---
Write-Host "✅ Installation complete!" -ForegroundColor Green
Write-Host ""
Write-Host "To start the control menu, run:" -ForegroundColor Cyan
Write-Host "& `"$InstallDir\manage.ps1`"" -ForegroundColor Yellow
Write-Host ""
Executable
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#!/bin/sh
set -eu
need() {
command -v "$1" >/dev/null 2>&1 || {
printf '[harbor-connect] error: %s is required\n' "$1" >&2
exit 1
}
}
need curl
need tar
[ -x /bin/bash ] || { printf '[harbor-connect] error: /bin/bash is required\n' >&2; exit 1; }
branch="${VPN_PROXY_BRANCH:-master}"
archive_url="${VPN_PROXY_ARCHIVE_URL:-https://git.dokops.ru/dokril/vpn-proxy/archive/${branch}.tar.gz}"
tmp="$(mktemp -d "${TMPDIR:-/tmp}/harbor-connect.XXXXXX")"
trap 'rm -rf "$tmp"' 0 1 2 3 15
mkdir -p "$tmp/source"
curl -fsSL "$archive_url" | tar -xzf - -C "$tmp/source" --strip-components=1
[ -f "$tmp/source/scripts/install-macos-client.sh" ] || {
printf '[harbor-connect] error: installer is missing from archive\n' >&2
exit 1
}
VPN_PROXY_SOURCE_DIR="$tmp/source" /bin/bash "$tmp/source/scripts/install-macos-client.sh"
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# ==========================================
# 🚀 VPN PROXY CONTROL CENTER (WINDOWS)
# ==========================================
# Главный скрипт управления. Запускать от имени Администратора.
# Использование: .\manage.ps1 [-Debug]
param([switch]$Debug)
$ScriptDir = if ($PSScriptRoot) { $PSScriptRoot } else { Split-Path -Parent $MyInvocation.MyCommand.Path }
$LibDir = "$ScriptDir\scripts\lib"
# Проверка библиотек
if (!(Test-Path "$LibDir\Common.ps1")) {
Write-Host "❌ Ошибка: Не найдены библиотеки в $LibDir" -ForegroundColor Red
exit 1
}
. "$LibDir\Common.ps1"
. "$LibDir\System.ps1"
# Установка режима отладки
if ($Debug) {
Set-DebugMode -Enabled $true
}
Ensure-Admin
while ($true) {
Write-Header "VPN PROXY CONTROL CENTER" -ClearScreen
# --- СБОР СТАТУСОВ ---
# 1. Native Sing-box
$sbStatus = Get-TaskStatus -Name "SingBoxProxy"
$sbStr = if ($sbStatus -eq "Running") { "РАБОТАЕТ" } else { "ОСТАНОВЛЕН" }
$sbColor = if ($sbStatus -eq "Running") { "Green" } else { "Yellow" }
if (!$sbStatus) { $sbStr = "НЕ УСТАНОВЛЕН"; $sbColor = "Gray" }
# 2. Discord Proxy
$discSvc = Get-Service -Name "ProxiFyreService" -ErrorAction SilentlyContinue
$discStr = if ($discSvc.Status -eq 'Running') { "АКТИВЕН" } else { "НЕ АКТИВЕН" }
$discColor = if ($discSvc.Status -eq 'Running') { "Green" } else { "Gray" }
# --- ОТРИСОВКА МЕНЮ ---
Write-Host " [1] 📦 VPN Клиент (Sing-box)" -NoNewline -ForegroundColor White
Write-Host " [$sbStr]" -ForegroundColor $sbColor
Write-Host " Основной способ. Поддерживает UDP и игры." -ForegroundColor Gray
# Показываем информацию о подключении если sing-box работает
if ($sbStatus -eq "Running") {
$LocalProxyPort = 1080
. "$LibDir\Net.ps1"
$ips = Get-LocalIPs
Write-Host ""
Write-Host " 📡 ПОДКЛЮЧЕНИЕ К ПРОКСИ" -ForegroundColor Cyan
Write-Host " ─────────────────────────────" -ForegroundColor DarkGray
Write-Host " Локально: " -NoNewline -ForegroundColor Gray
Write-Host "127.0.0.1:$LocalProxyPort" -ForegroundColor Green
if ($ips) {
Write-Host " Из сети:" -ForegroundColor Gray
foreach ($ip in $ips) {
Write-Host " ${ip}:$LocalProxyPort" -ForegroundColor Yellow
}
}
Write-Host ""
}
Write-Host ""
Write-Host " [2] 🎮 Настройка Discord/Vesktop" -NoNewline -ForegroundColor White
Write-Host " [$discStr]" -ForegroundColor $discColor
Write-Host " Маршрутизация приложений через прокси." -ForegroundColor Gray
Write-Host ""
Write-Host " ---------------------------------------" -ForegroundColor DarkGray
Write-Host " [3] 🔄 Обновить статус" -ForegroundColor White
Write-Host " [U] ❌ Удалить всё (Uninstall)" -ForegroundColor Red
Write-Host " [q] Выход" -ForegroundColor White
Write-Host ""
$choice = Read-Host "👉 Ваш выбор"
switch ($choice) {
"1" { & "$ScriptDir\scripts\setup-singbox.ps1" }
"2" { & "$ScriptDir\scripts\setup-discord.ps1" }
"3" { continue }
"u" { & "$ScriptDir\scripts\uninstall-all.ps1" }
"q" { exit }
}
}
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{
"name": "vpn-proxy-gateway",
"version": "0.1.0",
"private": true,
"type": "module",
"description": "Gateway-first VPN proxy control panel for sing-box TProxy deployments.",
"scripts": {
"dev": "vite --host 0.0.0.0",
"build": "vite build",
"build:production": "npm run build && npm run build:server",
"build:server": "tsc -p tsconfig.server.json",
"build:test": "npm run build:production && node scripts/clean-test-dist.mjs && tsc -p tsconfig.test.json",
"check:boundaries": "node scripts/check-import-boundaries.mjs",
"prestart": "npm run build:production",
"test": "npm run build:test && node --test",
"typecheck": "tsc -p tsconfig.web.json && tsc -p tsconfig.server.json --noEmit",
"version:harbor": "node scripts/harbor-version.mjs",
"start": "node dist/server/main.js"
},
"dependencies": {
"@vitejs/plugin-react": "^5.0.0",
"react": "^19.0.0",
"react-dom": "^19.0.0",
"vite": "^7.0.0"
},
"devDependencies": {
"@babel/parser": "7.29.3",
"@csstools/selector-specificity": "6.0.0",
"@types/node": "22.19.17",
"@types/node18": "npm:@types/node@18.19.130",
"@types/react": "^19.2.18",
"@types/react-dom": "^19.2.4",
"postcss": "8.5.14",
"postcss-selector-parser": "7.1.4",
"typescript": "7.0.2"
}
}
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<svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 32 32">
<rect width="32" height="32" rx="9" fill="#101812"/>
<circle cx="16" cy="16" r="11" fill="#56c9bd" opacity=".09"/>
<g fill="none" stroke="#62d6c9" stroke-width="2.6" stroke-linecap="round">
<path d="M16 6.5v9"/>
<path d="M10.1 10.3a8 8 0 1 0 11.8 0"/>
</g>
</svg>

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<svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 32 32">
<rect width="32" height="32" rx="9" fill="#18150f"/>
<circle cx="16" cy="7" r="2.5" fill="none" stroke="#efad58" stroke-width="2.3"/>
<g fill="none" stroke="#efad58" stroke-width="2.3" stroke-linecap="round" stroke-linejoin="round">
<path d="M16 9.5V25M10.5 14h11"/>
<path d="M16 27c-5 0-8-2.8-9.5-6.5M16 27c5 0 8-2.8 9.5-6.5"/>
</g>
</svg>

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#!/usr/bin/env bash
set -euo pipefail
BUILD_HOST="${BUILD_HOST:-107}"
DEPLOY_HOST="${DEPLOY_HOST:-111}"
BUILD_PATH="${BUILD_PATH:-/opt/vpn-proxy-build}"
DEPLOY_PATH="${DEPLOY_PATH:-/opt/vpn-proxy}"
IMAGE_NAME="${IMAGE_NAME:-vpn-proxy-gateway}"
GIT_REF="$(git rev-parse --short HEAD 2>/dev/null || echo manual)"
IMAGE_TAG="${IMAGE_TAG:-${GIT_REF}-$(date +%Y%m%d%H%M%S)}"
GATEWAY_IMAGE="${GATEWAY_IMAGE:-${IMAGE_NAME}:${IMAGE_TAG}}"
BASE_IMAGE="${BASE_IMAGE:-vpn-proxy-runtime-base:bookworm-slim}"
NODE_BUILD_IMAGE="${NODE_BUILD_IMAGE:-node:20.19-alpine}"
RUNTIME_BASE_SOURCE_IMAGE="${RUNTIME_BASE_SOURCE_IMAGE:-mirror.gcr.io/library/debian:bookworm-slim}"
SINGBOX_VERSION="${SINGBOX_VERSION:-1.13.18}"
DOCKER_BUILD_PULL="${DOCKER_BUILD_PULL:-false}"
INSTALL_RUNTIME_DEPS="${INSTALL_RUNTIME_DEPS:-false}"
INSTALL_SINGBOX="${INSTALL_SINGBOX:-false}"
AUTO_BUILD_RUNTIME_BASE="${AUTO_BUILD_RUNTIME_BASE:-true}"
SSH_CONNECT_TIMEOUT="${SSH_CONNECT_TIMEOUT:-10}"
echo "Build host: ${BUILD_HOST}"
echo "Deploy host: ${DEPLOY_HOST}"
echo "Image: ${GATEWAY_IMAGE}"
echo "Base image: ${BASE_IMAGE}"
echo "Runtime base source: ${RUNTIME_BASE_SOURCE_IMAGE}"
ensure_known_host() {
local host="$1"
if [ "${host}" = "local" ]; then return 0; fi
local scan_host="${host#*@}"
scan_host="${scan_host%%:*}"
mkdir -p "${HOME}/.ssh"
chmod 700 "${HOME}/.ssh"
if ! ssh-keygen -F "${scan_host}" >/dev/null 2>&1; then
ssh-keyscan -H "${scan_host}" >> "${HOME}/.ssh/known_hosts"
fi
}
ssh_cmd() {
ssh \
-o BatchMode=yes \
-o ConnectTimeout="${SSH_CONNECT_TIMEOUT}" \
-o ServerAliveInterval=15 \
-o ServerAliveCountMax=4 \
"$@"
}
echo "Syncing source to ${BUILD_HOST}:${BUILD_PATH}"
if [ "${BUILD_HOST}" = "local" ]; then
BUILD_PATH="$(pwd)"
echo "Using local source at ${BUILD_PATH}"
else
ensure_known_host "${BUILD_HOST}"
ssh_cmd "${BUILD_HOST}" "mkdir -p '${BUILD_PATH}'"
rsync -az --delete \
-e "ssh -o BatchMode=yes -o ConnectTimeout=${SSH_CONNECT_TIMEOUT} -o ServerAliveInterval=15 -o ServerAliveCountMax=4" \
--exclude '.git' \
--exclude '.vpn-proxy' \
--exclude 'node_modules' \
--exclude 'dist' \
./ "${BUILD_HOST}:${BUILD_PATH}/"
fi
echo "Building image on ${BUILD_HOST}"
BUILD_COMMAND="set -e; echo 'Docker context:' \$(docker context show 2>/dev/null || true); docker info 2>/dev/null | sed -n '/HTTP Proxy:/p;/HTTPS Proxy:/p;/Name:/p'; cd '${BUILD_PATH}'; if ! docker image inspect '${BASE_IMAGE}' >/dev/null 2>&1; then if [ '${AUTO_BUILD_RUNTIME_BASE}' = 'true' ]; then echo 'Runtime base image ${BASE_IMAGE} is missing on ${BUILD_HOST}; building it now.'; BASE_IMAGE='${RUNTIME_BASE_SOURCE_IMAGE}' RUNTIME_BASE_IMAGE='${BASE_IMAGE}' SINGBOX_VERSION='${SINGBOX_VERSION}' ./scripts/build-runtime-base.sh; else echo 'Runtime base image ${BASE_IMAGE} is missing on ${BUILD_HOST}.'; echo 'Seed it once with: ./scripts/build-runtime-base.sh'; exit 1; fi; fi; npm ci && npm run build:production && docker build --pull='${DOCKER_BUILD_PULL}' --build-arg NODE_BUILD_IMAGE='${NODE_BUILD_IMAGE}' --build-arg BASE_IMAGE='${BASE_IMAGE}' --build-arg SINGBOX_VERSION='${SINGBOX_VERSION}' --build-arg INSTALL_RUNTIME_DEPS='${INSTALL_RUNTIME_DEPS}' --build-arg INSTALL_SINGBOX='${INSTALL_SINGBOX}' -t '${GATEWAY_IMAGE}' ."
if [ "${BUILD_HOST}" = "local" ]; then
bash -lc "${BUILD_COMMAND}"
else
ensure_known_host "${BUILD_HOST}"
ssh_cmd "${BUILD_HOST}" "${BUILD_COMMAND}"
fi
echo "Loading image into ${DEPLOY_HOST}"
if [ "${BUILD_HOST}" = "local" ] && [ "${DEPLOY_HOST}" = "local" ]; then
docker image inspect "${GATEWAY_IMAGE}" >/dev/null
elif [ "${BUILD_HOST}" = "local" ]; then
ensure_known_host "${DEPLOY_HOST}"
echo "Checking SSH access to ${DEPLOY_HOST}"
ssh_cmd "${DEPLOY_HOST}" "true"
echo "Transferring image to ${DEPLOY_HOST}"
docker save "${GATEWAY_IMAGE}" | ssh_cmd "${DEPLOY_HOST}" "docker load"
elif [ "${DEPLOY_HOST}" = "local" ]; then
ensure_known_host "${BUILD_HOST}"
ssh_cmd "${BUILD_HOST}" "docker save '${GATEWAY_IMAGE}'" | docker load
else
ensure_known_host "${BUILD_HOST}"
ensure_known_host "${DEPLOY_HOST}"
ssh_cmd "${BUILD_HOST}" "docker save '${GATEWAY_IMAGE}'" | ssh_cmd "${DEPLOY_HOST}" "docker load"
fi
echo "Copying deploy script to ${DEPLOY_HOST}:${DEPLOY_PATH}"
if [ "${DEPLOY_HOST}" = "local" ]; then
mkdir -p "${DEPLOY_PATH}"
cp scripts/deploy-gateway.sh "${DEPLOY_PATH}/deploy-gateway.sh"
else
ensure_known_host "${DEPLOY_HOST}"
ssh_cmd "${DEPLOY_HOST}" "mkdir -p '${DEPLOY_PATH}'"
rsync -az \
-e "ssh -o BatchMode=yes -o ConnectTimeout=${SSH_CONNECT_TIMEOUT} -o ServerAliveInterval=15 -o ServerAliveCountMax=4" \
scripts/deploy-gateway.sh "${DEPLOY_HOST}:${DEPLOY_PATH}/deploy-gateway.sh"
fi
echo "Starting gateway on ${DEPLOY_HOST}"
if [ "${DEPLOY_HOST}" = "local" ]; then
cd "${DEPLOY_PATH}"
chmod +x ./deploy-gateway.sh
DEPLOY_PATH="${DEPLOY_PATH}" GATEWAY_IMAGE="${GATEWAY_IMAGE}" UPDATE_DATAPLANE=true PULL_IMAGE=false ./deploy-gateway.sh
else
ensure_known_host "${DEPLOY_HOST}"
ssh_cmd "${DEPLOY_HOST}" \
"cd '${DEPLOY_PATH}' && chmod +x ./deploy-gateway.sh && DEPLOY_PATH='${DEPLOY_PATH}' GATEWAY_IMAGE='${GATEWAY_IMAGE}' UPDATE_DATAPLANE=true PULL_IMAGE=false ./deploy-gateway.sh"
fi
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#!/usr/bin/env bash
set -euo pipefail
BASE_IMAGE="${BASE_IMAGE:-mirror.gcr.io/library/debian:bookworm-slim}"
RUNTIME_BASE_IMAGE="${RUNTIME_BASE_IMAGE:-vpn-proxy-runtime-base:bookworm-slim}"
SINGBOX_VERSION="${SINGBOX_VERSION:-1.13.18}"
APT_MIRROR="${APT_MIRROR:-http://mirror.yandex.ru/debian}"
APT_SECURITY_MIRROR="${APT_SECURITY_MIRROR:-http://mirror.yandex.ru/debian-security}"
HTTP_PROXY="${HTTP_PROXY:-$(docker info 2>/dev/null | awk -F': ' '/HTTP Proxy:/ {print $2; exit}')}"
HTTPS_PROXY="${HTTPS_PROXY:-$(docker info 2>/dev/null | awk -F': ' '/HTTPS Proxy:/ {print $2; exit}')}"
NO_PROXY="${NO_PROXY:-$(docker info 2>/dev/null | awk -F': ' '/No Proxy:/ {print $2; exit}')}"
echo "Building runtime base: ${RUNTIME_BASE_IMAGE}"
echo "Source base image: ${BASE_IMAGE}"
echo "APT mirror: ${APT_MIRROR}"
echo "APT security mirror: ${APT_SECURITY_MIRROR}"
if [ -n "${HTTP_PROXY}" ]; then echo "HTTP proxy: ${HTTP_PROXY}"; fi
if [ -n "${HTTPS_PROXY}" ]; then echo "HTTPS proxy: ${HTTPS_PROXY}"; fi
docker build \
--build-arg BASE_IMAGE="${BASE_IMAGE}" \
--build-arg SINGBOX_VERSION="${SINGBOX_VERSION}" \
--build-arg APT_MIRROR="${APT_MIRROR}" \
--build-arg APT_SECURITY_MIRROR="${APT_SECURITY_MIRROR}" \
--build-arg HTTP_PROXY="${HTTP_PROXY}" \
--build-arg HTTPS_PROXY="${HTTPS_PROXY}" \
--build-arg NO_PROXY="${NO_PROXY}" \
--build-arg http_proxy="${HTTP_PROXY}" \
--build-arg https_proxy="${HTTPS_PROXY}" \
--build-arg no_proxy="${NO_PROXY}" \
-f Dockerfile.runtime-base \
-t "${RUNTIME_BASE_IMAGE}" \
.
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#!/usr/bin/env node
import fs from 'node:fs';
import path from 'node:path';
import { fileURLToPath } from 'node:url';
import { SyntaxKind } from 'typescript/unstable/ast';
import { createScanner } from 'typescript/unstable/ast/scanner';
const SOURCE_FILE = /\.[cm]?[jt]sx?$/;
const root = path.resolve(path.dirname(fileURLToPath(import.meta.url)), '..');
function normalized(value) {
return value.replaceAll(path.sep, '/').replace(/^\.\//, '');
}
function relativeTarget(importer, specifier) {
if (!specifier.startsWith('.')) return null;
return normalized(path.posix.normalize(path.posix.join(path.posix.dirname(importer), specifier)));
}
function featurePath(file) {
const match = /^src\/(server|web)\/features\/([^/]+)(?:\/(.*))?$/.exec(file);
return match ? { layer: match[1], name: match[2], privatePath: match[3] || '' } : null;
}
export function importBoundaryViolation(importerValue, specifier) {
const importer = normalized(importerValue);
const target = relativeTarget(importer, specifier);
if (!target) return null;
if (importer.startsWith('src/shared/') && /^src\/(server|web)\//.test(target)) {
return 'shared cannot import server or web';
}
if (importer.startsWith('src/server/') && target.startsWith('src/web/')) {
return 'server cannot import web';
}
if (importer.startsWith('src/web/') && target.startsWith('src/server/')) {
return 'web cannot import server';
}
if (importer.startsWith('src/server/http/') && target.startsWith('src/server/infrastructure/')) {
return 'server/http cannot import infrastructure directly';
}
if (importer.startsWith('src/server/features/') && target.startsWith('src/server/http/')) {
return 'server/features cannot import http';
}
if (importer.startsWith('src/web/ui/')
&& /^src\/web\/(?:features(?:\/|$)|api(?:\/|\.[cm]?[jt]sx?$|$))/.test(target)) {
return 'web/ui cannot import api or features';
}
const fromFeature = featurePath(importer);
const toFeature = featurePath(target);
if (fromFeature && toFeature
&& fromFeature.layer === toFeature.layer
&& fromFeature.name !== toFeature.name
&& toFeature.privatePath
&& !/^index(?:\.[cm]?[jt]sx?)?$/.test(toFeature.privatePath)) {
return 'cross-feature imports must use the feature index';
}
return null;
}
function filesUnder(directory) {
return fs.readdirSync(directory, { withFileTypes: true }).flatMap((entry) => {
const absolute = path.join(directory, entry.name);
return entry.isDirectory() ? filesUnder(absolute) : [absolute];
});
}
function importedSpecifiers(source) {
const specifiers = [];
const scanner = createScanner(true, undefined, source);
const tokens = [];
for (let token = scanner.scan(); token !== SyntaxKind.EndOfFile; token = scanner.scan()) {
if (token === SyntaxKind.SlashToken) token = scanner.reScanSlashToken();
tokens.push({ kind: token, text: scanner.getTokenText(), value: scanner.getTokenValue() });
}
for (let index = 0; index < tokens.length; index += 1) {
const token = tokens[index];
const previous = tokens[index - 1];
const next = tokens[index + 1];
const isProperty = previous?.kind === SyntaxKind.DotToken
|| previous?.kind === SyntaxKind.QuestionDotToken;
if (token.text === 'import' && !isProperty) {
if (next?.kind === SyntaxKind.StringLiteral) {
specifiers.push(next.value);
} else if (next?.kind === SyntaxKind.OpenParenToken) {
const argument = tokens[index + 2];
if (argument?.kind === SyntaxKind.StringLiteral) specifiers.push(argument.value);
} else if (next?.kind === SyntaxKind.OpenBraceToken
|| next?.kind === SyntaxKind.AsteriskToken
|| next?.kind === SyntaxKind.Identifier
|| next?.text === 'type') {
for (let cursor = index + 1; cursor < tokens.length; cursor += 1) {
if (tokens[cursor].kind === SyntaxKind.SemicolonToken) break;
if (tokens[cursor].text === 'from'
&& tokens[cursor + 1]?.kind === SyntaxKind.StringLiteral) {
specifiers.push(tokens[cursor + 1].value);
break;
}
}
}
} else if (token.text === 'export' && !isProperty) {
if (next?.kind !== SyntaxKind.OpenBraceToken
&& next?.kind !== SyntaxKind.AsteriskToken
&& next?.text !== 'type') continue;
for (let cursor = index + 1; cursor < tokens.length; cursor += 1) {
if (tokens[cursor].kind === SyntaxKind.SemicolonToken) break;
if (tokens[cursor].text === 'from'
&& tokens[cursor + 1]?.kind === SyntaxKind.StringLiteral) {
specifiers.push(tokens[cursor + 1].value);
break;
}
}
} else if (token.text === 'require' && !isProperty) {
if (next?.kind === SyntaxKind.OpenParenToken
&& tokens[index + 2]?.kind === SyntaxKind.StringLiteral) {
specifiers.push(tokens[index + 2].value);
}
}
}
return specifiers;
}
export function checkImportBoundaries(repositoryRoot = root) {
const sourceRoot = path.join(repositoryRoot, 'src');
const files = filesUnder(sourceRoot).filter((file) => SOURCE_FILE.test(file));
const violations = [];
for (const file of files) {
const importer = normalized(path.relative(repositoryRoot, file));
const source = fs.readFileSync(file, 'utf8');
for (const specifier of importedSpecifiers(source)) {
const rule = importBoundaryViolation(importer, specifier);
if (rule) violations.push({ importer, specifier, rule });
}
}
return { filesChecked: files.length, violations };
}
if (process.argv[1] && path.resolve(process.argv[1]) === fileURLToPath(import.meta.url)) {
const result = checkImportBoundaries();
if (result.violations.length) {
for (const violation of result.violations) {
console.error(`${violation.importer}: ${violation.rule} (${violation.specifier})`);
}
process.exitCode = 1;
} else {
console.log(`Import boundaries: ${result.filesChecked} files checked.`);
}
}
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#!/usr/bin/env node
import fs from 'node:fs';
import path from 'node:path';
fs.rmSync(path.resolve('.test-dist'), { recursive: true, force: true });
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#!/usr/bin/env bash
set -euo pipefail
DEPLOY_PATH="${DEPLOY_PATH:-/opt/vpn-proxy}"
CONTROL_IMAGE="${CONTROL_IMAGE:-${GATEWAY_IMAGE:-}}"
DATAPLANE_IMAGE="${DATAPLANE_IMAGE:-${GATEWAY_IMAGE:-}}"
CONTROL_IMAGE="${CONTROL_IMAGE:?CONTROL_IMAGE or GATEWAY_IMAGE is required}"
DATAPLANE_IMAGE="${DATAPLANE_IMAGE:?DATAPLANE_IMAGE or GATEWAY_IMAGE is required}"
UPDATE_DATAPLANE="${UPDATE_DATAPLANE:-false}"
PULL_IMAGE="${PULL_IMAGE:-true}"
echo "Preparing deploy directory: ${DEPLOY_PATH}"
mkdir -p "${DEPLOY_PATH}"
EXISTING_DATAPLANE_IMAGE="$(docker inspect --format '{{.Config.Image}}' vpn-proxy-dataplane 2>/dev/null || true)"
FIRST_SPLIT_DEPLOY=false
if [ -z "${EXISTING_DATAPLANE_IMAGE}" ]; then
FIRST_SPLIT_DEPLOY=true
elif [ "${UPDATE_DATAPLANE}" != "true" ]; then
DATAPLANE_IMAGE="${EXISTING_DATAPLANE_IMAGE}"
fi
cat > "${DEPLOY_PATH}/docker-compose.server.yml" <<EOF
services:
vpn-proxy-dataplane:
image: ${DATAPLANE_IMAGE}
container_name: vpn-proxy-dataplane
network_mode: host
cap_add:
- NET_ADMIN
- NET_RAW
env_file:
- .env
environment:
APP_COMPONENT: dataplane
DATA_DIR: /var/lib/vpn-proxy
SING_BOX_CONFIG: /var/lib/vpn-proxy/sing-box-config.json
SING_BOX_CACHE: /var/lib/sing-box/cache.db
DATAPLANE_SOCKET: /run/vpn-proxy/dataplane.sock
volumes:
- vpn-proxy-data:/var/lib/vpn-proxy
- sing-box-cache:/var/lib/sing-box
- vpn-proxy-runtime:/run/vpn-proxy
restart: unless-stopped
healthcheck:
test: ["CMD", "curl", "--unix-socket", "/run/vpn-proxy/dataplane.sock", "-fsS", "http://localhost/status"]
interval: 5s
timeout: 3s
retries: 12
start_period: 5s
vpn-proxy-control:
image: ${CONTROL_IMAGE}
container_name: vpn-proxy-gateway
env_file:
- .env
environment:
APP_COMPONENT: control
DATA_DIR: /var/lib/vpn-proxy
SING_BOX_CONFIG: /var/lib/vpn-proxy/sing-box-config.json
SING_BOX_CACHE: /var/lib/sing-box/cache.db
DATAPLANE_SOCKET: /run/vpn-proxy/dataplane.sock
ports:
- "\${PORT:-3456}:\${PORT:-3456}"
volumes:
- vpn-proxy-data:/var/lib/vpn-proxy
- vpn-proxy-runtime:/run/vpn-proxy
depends_on:
vpn-proxy-dataplane:
condition: service_healthy
restart: unless-stopped
healthcheck:
test: ["CMD", "curl", "-fsS", "http://127.0.0.1:\${PORT:-3456}/api/state"]
interval: 30s
timeout: 5s
retries: 3
start_period: 20s
volumes:
vpn-proxy-data:
sing-box-cache:
vpn-proxy-runtime:
EOF
if [ ! -f "${DEPLOY_PATH}/.env" ]; then
cat > "${DEPLOY_PATH}/.env" <<'EOF'
PORT=3456
PROXY_PORT=8080
PROXY_BIND_IP=0.0.0.0
TPROXY_PORT=7895
TPROXY_MARK=1
TPROXY_TABLE=100
TPROXY_CHAIN=VPN_PROXY_TPROXY
GATEWAY_FORWARD_CHAIN=VPN_PROXY_FORWARD
GATEWAY_NAT_CHAIN=VPN_PROXY_NAT
GATEWAY_CLIENT_CIDRS=10.0.0.0/8 172.16.0.0/12 192.168.0.0/16
LOG_LEVEL=info
EOF
echo "Created default .env. Edit ${DEPLOY_PATH}/.env if this server needs different ports."
else
echo "Preserving existing .env"
fi
cd "${DEPLOY_PATH}"
echo "Control image: ${CONTROL_IMAGE}"
echo "Dataplane image: ${DATAPLANE_IMAGE}"
if [ "${PULL_IMAGE}" = "true" ]; then
docker compose -f docker-compose.server.yml pull vpn-proxy-control
if [ "${FIRST_SPLIT_DEPLOY}" = "true" ] || [ "${UPDATE_DATAPLANE}" = "true" ]; then
docker compose -f docker-compose.server.yml pull vpn-proxy-dataplane
fi
else
echo "Skipping image pull"
fi
if [ "${FIRST_SPLIT_DEPLOY}" = "true" ]; then
echo "Migrating the legacy combined gateway to split services..."
docker stop vpn-proxy-gateway 2>/dev/null || true
docker rm vpn-proxy-gateway 2>/dev/null || true
docker compose -f docker-compose.server.yml up -d --wait --wait-timeout 90
elif [ "${UPDATE_DATAPLANE}" = "true" ]; then
echo "Updating control and dataplane..."
docker compose -f docker-compose.server.yml up -d --wait --wait-timeout 90
else
echo "Updating control; keeping dataplane running..."
docker compose -f docker-compose.server.yml up -d --no-deps --wait --wait-timeout 90 vpn-proxy-control
fi
echo "Current containers:"
docker ps --filter "name=vpn-proxy-gateway" --filter "name=vpn-proxy-dataplane"
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#!/usr/bin/env bash
set -euo pipefail
export LC_ALL=C
RUNTIME_DIR="${HARBOR_RUNTIME_DIR:-$HOME/.vpn-proxy-client/.runtime}"
STATE_FILE="$RUNTIME_DIR/network.json"
ROUTE_BIN="${HARBOR_ROUTE_BIN:-/sbin/route}"
ARP_BIN="${HARBOR_ARP_BIN:-/usr/sbin/arp}"
NETSTAT_BIN="${HARBOR_NETSTAT_BIN:-/usr/sbin/netstat}"
route_info="$($ROUTE_BIN -n get default 2>/dev/null || true)"
gateway="$(awk '/^[[:space:]]*gateway:/{print $2; exit}' <<<"$route_info")"
network_interface="$(awk '/^[[:space:]]*interface:/{print $2; exit}' <<<"$route_info")"
if [[ -z "$gateway" || -z "$network_interface" ]]; then
read -r gateway network_interface < <(
"$NETSTAT_BIN" -rn -f inet 2>/dev/null \
| awk '$1 == "default" && $2 ~ /^[0-9]+\./ { print $2, $4; exit }'
) || true
fi
if [[ ! "$gateway" =~ ^([0-9]{1,3}\.){3}[0-9]{1,3}$ ]]; then
gateway=""
network_interface=""
fi
if [[ ! "$network_interface" =~ ^[a-zA-Z0-9._-]{1,32}$ ]]; then
network_interface=""
fi
mac=""
if [[ -n "$gateway" ]]; then
mac="$($ARP_BIN -n "$gateway" 2>/dev/null | awk '/ at /{print $4; exit}' || true)"
if [[ ! "$mac" =~ ^[a-fA-F0-9]{2}(:[a-fA-F0-9]{2}){5}$ ]]; then
mac=""
else
mac="$(printf '%s' "$mac" | tr '[:upper:]' '[:lower:]')"
fi
fi
mkdir -p "$RUNTIME_DIR"
tmp="$(mktemp "${STATE_FILE}.XXXXXX")"
trap 'rm -f "$tmp"' EXIT
printf '{"gateway":"%s","interface":"%s","mac":"%s","observedAt":"%s"}\n' \
"$gateway" "$network_interface" "$mac" "$(date -u '+%Y-%m-%dT%H:%M:%SZ')" > "$tmp"
mv "$tmp" "$STATE_FILE"
+205
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@@ -0,0 +1,205 @@
#!/usr/bin/env node
import { execFileSync } from 'node:child_process';
import fs from 'node:fs';
import path from 'node:path';
import { fileURLToPath, pathToFileURL } from 'node:url';
const COMPONENTS = ['macClient', 'gatewayClient', 'gatewayBackend'];
const VERSION_FILE = 'src/shared/versions.ts';
const LEGACY_VERSION_FILE = 'src/shared/versions.js';
const root = path.resolve(path.dirname(fileURLToPath(import.meta.url)), '..');
const aliases = {
mac: 'macClient',
'mac-client': 'macClient',
client: 'gatewayClient',
'gateway-client': 'gatewayClient',
backend: 'gatewayBackend',
'gateway-backend': 'gatewayBackend',
};
export function parseVersion(value) {
const match = /^(\d+)\.(\d+)\.(\d+)$/.exec(String(value || ''));
return match ? {
major: Number(match[1]),
minor: Number(match[2]),
hotfix: Number(match[3]),
} : null;
}
export function versionCompatibility(versions) {
const mac = parseVersion(versions?.macClient);
const client = parseVersion(versions?.gatewayClient);
const backend = parseVersion(versions?.gatewayBackend);
const major = Boolean(mac && client && backend
&& mac.major === client.major
&& client.major === backend.major);
const gateway = Boolean(client && backend
&& client.major === backend.major
&& client.minor === backend.minor);
return { compatible: major && gateway, major, gateway };
}
export function versionsFromSource(source) {
return Object.fromEntries(COMPONENTS.map((component) => {
const match = new RegExp(`${component}:\\s*'(\\d+\\.\\d+\\.\\d+)'`).exec(source);
if (!match) throw new Error(`Не найдена версия ${component}`);
return [component, match[1]];
}));
}
export function affectedComponents(files) {
const affected = new Set();
const add = (...components) => components.forEach((component) => affected.add(component));
for (const file of files) {
if (file === VERSION_FILE) continue;
if (/^(?:\.dockerignore$|package(?:-lock)?\.json$|tsconfig\.base\.json$|src\/shared\/)/.test(file)) add(...COMPONENTS);
else if (/^(src\/web\/|public\/|monitoring\/grafana\/|index\.html$|tsconfig\.web\.json$|vite\.config\.[cm]?[jt]s$)/.test(file)) {
add('macClient', 'gatewayClient');
} else if (/^(src\/server\/|tsconfig\.server\.json$)/.test(file)) add('macClient', 'gatewayBackend');
else if (/^(install\.sh|Dockerfile\.client|docker-compose\.client(\.local)?\.yml|entrypoint\.client\.sh|scripts\/(install-macos-client|harbor-network-monitor)\.sh)$/.test(file)) {
add('macClient');
} else if (/^(Dockerfile|Dockerfile\.runtime-base|docker-compose\.gateway\.yml|entrypoint\.sh|scripts\/(deploy-gateway|build-runtime-base|build-on-107-deploy-111)\.sh)$/.test(file)) {
add('gatewayBackend');
} else if (/^(\.gitea\/workflows\/gateway-build\.yml|scripts\/runtime-impact\.mjs)$/.test(file)) {
add('gatewayBackend');
}
}
return COMPONENTS.filter((component) => affected.has(component));
}
function formatVersion({ major, minor, hotfix }) {
return `${major}.${minor}.${hotfix}`;
}
export function bumpVersions(versions, level, requested = []) {
const current = Object.fromEntries(COMPONENTS.map((component) => {
const parsed = parseVersion(versions[component]);
if (!parsed) throw new Error(`Некорректная версия ${component}: ${versions[component]}`);
return [component, parsed];
}));
if (level === 'major') {
const major = Math.max(...COMPONENTS.map((component) => current[component].major)) + 1;
return Object.fromEntries(COMPONENTS.map((component) => [component, `${major}.0.0`]));
}
const targets = new Set(requested.map((target) => aliases[target] || target));
if (!targets.size) throw new Error(`${level} требует хотя бы один компонент`);
for (const target of targets) {
if (!COMPONENTS.includes(target)) throw new Error(`Неизвестный компонент: ${target}`);
}
if (level === 'minor' && (targets.has('gatewayClient') || targets.has('gatewayBackend'))) {
targets.add('gatewayClient');
targets.add('gatewayBackend');
}
if (!['minor', 'hotfix'].includes(level)) throw new Error(`Неизвестный уровень: ${level}`);
const next = { ...versions };
if (level === 'minor' && targets.has('gatewayClient')) {
const minor = Math.max(current.gatewayClient.minor, current.gatewayBackend.minor) + 1;
next.gatewayClient = `${current.gatewayClient.major}.${minor}.0`;
next.gatewayBackend = `${current.gatewayBackend.major}.${minor}.0`;
targets.delete('gatewayClient');
targets.delete('gatewayBackend');
}
for (const target of targets) {
const value = current[target];
next[target] = level === 'minor'
? `${value.major}.${value.minor + 1}.0`
: formatVersion({ ...value, hotfix: value.hotfix + 1 });
}
return next;
}
function git(args) {
return execFileSync('git', args, { cwd: root, encoding: 'utf8', stdio: ['ignore', 'pipe', 'pipe'] }).trim();
}
function changedFiles(base) {
const tracked = git(['diff', '--no-renames', '--name-only', base, '--']).split('\n');
const untracked = git(['ls-files', '--others', '--exclude-standard']).split('\n');
return [...new Set([...tracked, ...untracked].filter(Boolean))];
}
function baselineVersions(base) {
try {
return versionsFromSource(git(['show', `${base}:${VERSION_FILE}`]));
} catch {
try {
return versionsFromSource(git(['show', `${base}:${LEGACY_VERSION_FILE}`]));
} catch {
return null;
}
}
}
function compareVersions(before, after) {
const left = parseVersion(before);
const right = parseVersion(after);
if (!left || !right) return -1;
for (const key of ['major', 'minor', 'hotfix']) {
if (right[key] !== left[key]) return right[key] > left[key] ? 1 : -1;
}
return 0;
}
function validateCompatibility(versions) {
const compatibility = versionCompatibility(versions);
if (!compatibility.major) throw new Error('У всех компонентов должен совпадать major');
if (!compatibility.gateway) throw new Error('Gateway client и backend должны совпадать по major.minor');
}
function writeVersions(versions) {
const file = path.join(root, VERSION_FILE);
let source = fs.readFileSync(file, 'utf8');
for (const component of COMPONENTS) {
source = source.replace(
new RegExp(`(${component}:\\s*')\\d+\\.\\d+\\.\\d+(')`),
`$1${versions[component]}$2`,
);
}
fs.writeFileSync(file, source);
}
function printVersions(versions) {
for (const component of COMPONENTS) console.log(`${component}: ${versions[component]}`);
}
function main([command = 'check', ...args]) {
const source = fs.readFileSync(path.join(root, VERSION_FILE), 'utf8');
const current = versionsFromSource(source);
validateCompatibility(current);
if (command === 'bump') {
const next = bumpVersions(current, args[0], args.slice(1));
validateCompatibility(next);
writeVersions(next);
printVersions(next);
return;
}
const base = args[0] || 'HEAD';
const affected = affectedComponents(changedFiles(base));
if (command === 'affected') {
console.log(affected.length ? affected.join('\n') : 'Нет изменений, требующих bump.');
return;
}
if (command !== 'check') throw new Error(`Неизвестная команда: ${command}`);
const baseline = baselineVersions(base);
if (!baseline) {
console.log('Version contract создаётся впервые; baseline для bump отсутствует.');
return;
}
const missing = affected.filter((component) => compareVersions(baseline[component], current[component]) <= 0);
if (missing.length) throw new Error(`Не повышена версия: ${missing.join(', ')}`);
console.log(affected.length ? `Version check: ${affected.join(', ')}` : 'Version check: bump не требуется.');
}
if (process.argv[1] && import.meta.url === pathToFileURL(path.resolve(process.argv[1])).href) {
try {
main(process.argv.slice(2));
} catch (error) {
console.error(`[harbor-version] ${error.message}`);
process.exitCode = 1;
}
}
+364
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#!/usr/bin/env bash
set -euo pipefail
INSTALL_DIR="${VPN_PROXY_INSTALL_DIR:-$HOME/.vpn-proxy-client}"
BRANCH="${VPN_PROXY_BRANCH:-master}"
ARCHIVE_URL="${VPN_PROXY_ARCHIVE_URL:-https://git.dokops.ru/dokril/vpn-proxy/archive/${BRANCH}.tar.gz}"
SOURCE_DIR="${VPN_PROXY_SOURCE_DIR:-}"
COMPOSE_FILE="docker-compose.client.yml"
DEFAULT_PROXY_PORT="8082"
REQUESTED_PROXY_PORT="${VPN_PROXY_CLIENT_PORT:-}"
REQUESTED_UI_PORT="${VPN_PROXY_CLIENT_UI_PORT:-${CLIENT_UI_PORT:-}}"
TARGET_SINGBOX_VERSION="${SINGBOX_VERSION:-1.13.18}"
CLIENT_CONTAINER_NAME="harbor-connect"
LEGACY_CLIENT_CONTAINER_NAME="vpn-proxy-client"
NETWORK_MONITOR_LABEL="com.dokril.harbor-connect.network"
log() {
printf '[harbor-connect] %s\n' "$*"
}
die() {
printf '[harbor-connect] error: %s\n' "$*" >&2
exit 1
}
need() {
command -v "$1" >/dev/null 2>&1 || die "$1 is required"
}
is_valid_port() {
case "$1" in
''|*[!0-9]*) return 1 ;;
esac
[ "$1" -ge 1024 ] && [ "$1" -le 65535 ]
}
ask_proxy_port() {
local value=""
if [ -n "$REQUESTED_PROXY_PORT" ]; then
if ! is_valid_port "$REQUESTED_PROXY_PORT"; then
die "VPN_PROXY_CLIENT_PORT must be a port from 1024 to 65535"
fi
printf '%s\n' "$REQUESTED_PROXY_PORT"
return 0
fi
if [ -r /dev/tty ]; then
while true; do
printf 'Proxy port for local apps [%s]: ' "$DEFAULT_PROXY_PORT" >/dev/tty
IFS= read -r value </dev/tty || value=""
value="${value:-$DEFAULT_PROXY_PORT}"
if is_valid_port "$value"; then
printf '%s\n' "$value"
return 0
fi
printf 'Enter a port from 1024 to 65535.\n' >/dev/tty
done
fi
if ! is_valid_port "$DEFAULT_PROXY_PORT"; then
die "VPN_PROXY_CLIENT_PORT must be a port from 1024 to 65535"
fi
printf '%s\n' "$DEFAULT_PROXY_PORT"
}
published_port_conflicts() {
local port="$1"
local line
while IFS= read -r line; do
[ -n "$line" ] || continue
case "$line" in
"${CLIENT_CONTAINER_NAME}"$'\t'*|"${LEGACY_CLIENT_CONTAINER_NAME}"$'\t'*) ;;
*) printf '%s\n' "$line" ;;
esac
done < <(docker ps --filter "publish=${port}" --format '{{.Names}} {{.Ports}}')
}
proxy_port_conflicts() {
published_port_conflicts "$1"
}
assert_proxy_port_available() {
local port="$1"
local conflicts
conflicts="$(proxy_port_conflicts "$port")"
if [ -z "$conflicts" ]; then
return 0
fi
printf '[harbor-connect] proxy port %s is already used:\n%s\n' \
"$port" "$conflicts" >&2
die "choose another proxy port with VPN_PROXY_CLIENT_PORT=<port> or stop the conflicting container"
}
assert_single_port_available() {
local label="$1"
local port="$2"
local conflicts
conflicts="$(published_port_conflicts "$port")"
if [ -z "$conflicts" ]; then
return 0
fi
printf '[harbor-connect] %s port %s is already used:\n%s\n' \
"$label" "$port" "$conflicts" >&2
die "choose another ${label} port or stop the conflicting container"
}
first_free_port() {
local start="$1"
local port
for port in $(seq "$start" 65535); do
if [ -z "$(published_port_conflicts "$port")" ]; then
printf '%s\n' "$port"
return 0
fi
done
return 1
}
choose_ui_port() {
local value="$1"
local suggested
if ! is_valid_port "$value"; then
die "CLIENT_UI_PORT must be a port from 1024 to 65535"
fi
if [ -z "$(published_port_conflicts "$value")" ]; then
printf '%s\n' "$value"
return 0
fi
if [ -n "$REQUESTED_UI_PORT" ] || [ ! -r /dev/tty ]; then
assert_single_port_available "UI" "$value"
fi
suggested="$(first_free_port "$((value + 1))" || true)"
suggested="${suggested:-3457}"
while true; do
printf 'UI port %s is busy. Choose UI port [%s]: ' "$value" "$suggested" >/dev/tty
IFS= read -r value </dev/tty || value=""
value="${value:-$suggested}"
if is_valid_port "$value" && [ -z "$(published_port_conflicts "$value")" ]; then
printf '%s\n' "$value"
return 0
fi
printf 'Enter a free port from 1024 to 65535.\n' >/dev/tty
done
}
assert_ui_outside_proxy_range() {
if [ "$UI_PORT" = "$PROXY_PORT" ]; then
die "UI port ${UI_PORT} overlaps proxy port"
fi
}
wait_for_client_ui() {
local ui_port="${UI_PORT:-3456}"
local ui_url="http://127.0.0.1:${ui_port}/api/state"
local attempt
for attempt in $(seq 1 30); do
if curl --noproxy "*" -fsS "$ui_url" >/dev/null 2>&1; then
return 0
fi
sleep 1
done
printf '\n[harbor-connect] client did not become ready at %s\n' "$ui_url" >&2
printf '[harbor-connect] docker compose status:\n' >&2
docker compose -f "$COMPOSE_FILE" ps >&2 || true
printf '\n[harbor-connect] recent service logs:\n' >&2
docker compose -f "$COMPOSE_FILE" logs --tail=120 harbor-connect >&2 || true
die "client UI is not ready; see Docker status and logs above"
}
xml_escape() {
sed -e 's/&/\&amp;/g' -e 's/</\&lt;/g' -e 's/>/\&gt;/g' -e 's/"/\&quot;/g'
}
install_network_monitor() {
local launch_agents_dir="$HOME/Library/LaunchAgents"
local plist_path="$launch_agents_dir/${NETWORK_MONITOR_LABEL}.plist"
local escaped_script_path
local escaped_runtime_dir
local user_domain="gui/$(id -u)"
escaped_script_path="$(printf '%s' "$INSTALL_DIR/scripts/harbor-network-monitor.sh" | xml_escape)"
escaped_runtime_dir="$(printf '%s' "$INSTALL_DIR/.runtime" | xml_escape)"
mkdir -p "$INSTALL_DIR/.runtime" "$launch_agents_dir"
cat > "$plist_path" <<EOF
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>Label</key>
<string>${NETWORK_MONITOR_LABEL}</string>
<key>ProgramArguments</key>
<array>
<string>/bin/bash</string>
<string>${escaped_script_path}</string>
</array>
<key>EnvironmentVariables</key>
<dict>
<key>HARBOR_RUNTIME_DIR</key>
<string>${escaped_runtime_dir}</string>
</dict>
<key>RunAtLoad</key>
<true/>
<key>StartInterval</key>
<integer>5</integer>
<key>ProcessType</key>
<string>Background</string>
</dict>
</plist>
EOF
/bin/bash "$INSTALL_DIR/scripts/harbor-network-monitor.sh"
launchctl bootout "$user_domain" "$plist_path" >/dev/null 2>&1 || true
launchctl bootstrap "$user_domain" "$plist_path"
log "automatic Gateway detection enabled"
}
set_env_value() {
local key="$1"
local value="$2"
local tmp
tmp="$(mktemp)"
if [ -f .env ] && grep -q "^${key}=" .env; then
awk -v key="$key" -v value="$value" '
BEGIN { prefix = key "=" }
index($0, prefix) == 1 { print key "=" value; next }
{ print }
' .env > "$tmp"
else
[ -f .env ] && cat .env > "$tmp"
printf '%s=%s\n' "$key" "$value" >> "$tmp"
fi
mv "$tmp" .env
}
get_env_value() {
local key="$1"
[ -f .env ] || return 0
awk -v key="$key" '
BEGIN { prefix = key "=" }
index($0, prefix) == 1 { print substr($0, length(prefix) + 1); exit }
' .env
}
copy_source() {
local source_dir="$1"
[ -f "$source_dir/docker-compose.client.yml" ] || die "invalid Harbor source archive"
log "installing files to $INSTALL_DIR"
mkdir -p "$INSTALL_DIR"
rsync -a --delete \
--exclude='.env' \
--exclude='.runtime' \
--exclude='.git' \
"$source_dir/" "$INSTALL_DIR/"
}
download_source() {
local tmp_dir
tmp_dir="$(mktemp -d)"
mkdir -p "$tmp_dir/source"
log "downloading $ARCHIVE_URL"
if ! curl -fsSL "$ARCHIVE_URL" | tar -xzf - -C "$tmp_dir/source" --strip-components=1; then
rm -rf "$tmp_dir"
die "failed to download Harbor source"
fi
copy_source "$tmp_dir/source"
rm -rf "$tmp_dir"
}
if [[ "$(uname -s)" != "Darwin" ]]; then
die "this installer is intended for macOS"
fi
need docker
need curl
need rsync
need tar
docker compose version >/dev/null 2>&1 || die "Docker Compose plugin is required"
docker info >/dev/null 2>&1 || die "Docker Desktop is not running"
if [[ -n "$SOURCE_DIR" ]]; then
copy_source "$SOURCE_DIR"
elif [[ -d "$INSTALL_DIR/.git" ]]; then
need git
log "updating $INSTALL_DIR"
git -C "$INSTALL_DIR" fetch origin "$BRANCH"
git -C "$INSTALL_DIR" checkout "$BRANCH"
git -C "$INSTALL_DIR" pull --ff-only origin "$BRANCH"
else
mkdir -p "$(dirname "$INSTALL_DIR")"
download_source
fi
cd "$INSTALL_DIR"
if [[ ! -f .env && -f .env.example ]]; then
cp .env.example .env
fi
PROXY_PORT="$(ask_proxy_port)"
assert_proxy_port_available "$PROXY_PORT"
UI_PORT="${REQUESTED_UI_PORT:-$(get_env_value CLIENT_UI_PORT)}"
UI_PORT="${UI_PORT:-3456}"
UI_PORT="$(choose_ui_port "$UI_PORT")"
assert_ui_outside_proxy_range
set_env_value APP_MODE client
set_env_value SINGBOX_VERSION "$TARGET_SINGBOX_VERSION"
set_env_value CLIENT_UI_PORT "$UI_PORT"
set_env_value CLIENT_PROXY_PORT "$PROXY_PORT"
set_env_value PROXY_PORT "$PROXY_PORT"
log "UI port: http://127.0.0.1:${UI_PORT}"
log "proxy port: 127.0.0.1:${PROXY_PORT}"
install_network_monitor
log "building and starting Docker client"
docker compose -f "$COMPOSE_FILE" up -d --build --remove-orphans
wait_for_client_ui
cat <<EOF
Harbor Connect is running.
UI:
http://127.0.0.1:${UI_PORT}
Proxy:
HTTP/SOCKS5 127.0.0.1:${PROXY_PORT}
This is the only Docker-published proxy port. Re-run the installer with VPN_PROXY_CLIENT_PORT=<port> to change it.
Useful commands:
cd ~/.vpn-proxy-client
docker compose -f docker-compose.client.yml logs -f
docker compose -f docker-compose.client.yml restart
docker compose -f docker-compose.client.yml down
Optional macOS system proxy example:
networksetup -setwebproxy Wi-Fi 127.0.0.1 ${PROXY_PORT}
networksetup -setsecurewebproxy Wi-Fi 127.0.0.1 ${PROXY_PORT}
networksetup -setsocksfirewallproxy Wi-Fi 127.0.0.1 ${PROXY_PORT}
Disable later:
networksetup -setwebproxystate Wi-Fi off
networksetup -setsecurewebproxystate Wi-Fi off
networksetup -setsocksfirewallproxystate Wi-Fi off
EOF
-118
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@@ -1,118 +0,0 @@
# ==========================================
# 🛠️ COMMON UTILS
# ==========================================
# --- ГЛОБАЛЬНЫЕ НАСТРОЙКИ ---
# Режим отладки (передаётся через -Debug)
if (-not (Test-Path variable:script:DebugMode)) {
$script:DebugMode = $false
}
function Set-DebugMode {
param([bool]$Enabled)
$script:DebugMode = $Enabled
if ($Enabled) {
Write-Host " 🔧 Debug режим включён" -ForegroundColor Magenta
}
}
function Get-DebugMode {
return $script:DebugMode
}
# --- ЦВЕТА И ВЫВОД ---
function Write-Step { param($msg) Write-Host "`n📦 $msg" -ForegroundColor Cyan }
function Write-Success { param($msg) Write-Host "$msg" -ForegroundColor Green }
function Write-Warning { param($msg) Write-Host " ⚠️ $msg" -ForegroundColor Yellow }
function Write-Error { param($msg) Write-Host "$msg" -ForegroundColor Red }
function Write-Info { param($msg) Write-Host " $msg" -ForegroundColor Gray }
function Write-DebugLog {
param($msg)
if ($script:DebugMode) {
Write-Host " [DEBUG] $msg" -ForegroundColor DarkGray
}
}
function Write-Header {
param($Title, [switch]$ClearScreen)
if ($ClearScreen -and -not $script:DebugMode) {
Clear-Host
}
Write-Host ""
Write-Host "==========================================" -ForegroundColor Cyan
Write-Host " $Title" -ForegroundColor Cyan
Write-Host "==========================================" -ForegroundColor Cyan
Write-Host ""
}
# --- ЗАПУСК КОМАНД ---
function Invoke-Silent {
param(
[string]$FilePath,
[string]$Arguments,
[switch]$Wait
)
$psi = New-Object System.Diagnostics.ProcessStartInfo
$psi.FileName = $FilePath
$psi.Arguments = $Arguments
$psi.UseShellExecute = $false
$psi.CreateNoWindow = $true
if (-not $script:DebugMode) {
$psi.RedirectStandardOutput = $true
$psi.RedirectStandardError = $true
}
$process = [System.Diagnostics.Process]::Start($psi)
if ($Wait) {
$process.WaitForExit()
return $process.ExitCode
}
return $process
}
# --- ПОЛЕЗНЫЕ ФУНКЦИИ ---
function Get-ScriptDirectory {
if ($PSScriptRoot) { return $PSScriptRoot }
return Split-Path -Parent $MyInvocation.MyCommand.Path
}
function Ensure-Admin {
$isAdmin = ([Security.Principal.WindowsPrincipal][Security.Principal.WindowsIdentity]::GetCurrent()).IsInRole([Security.Principal.WindowsBuiltInRole] "Administrator")
if (-not $isAdmin) {
Write-Host "⛔ Требуются права АДМИНИСТРАТОРА!" -ForegroundColor Red
Write-Host " Пожалуйста, запустите скрипт от имени администратора." -ForegroundColor Gray
Start-Sleep -Seconds 3
exit 1
}
}
function Show-Menu {
param(
[string]$Title,
[System.Collections.Specialized.OrderedDictionary]$Options,
[string]$Prompt = "👉 Ваш выбор"
)
if ($Title) {
Write-Host "`n$Title" -ForegroundColor Yellow
}
$keys = $Options.Keys
foreach ($key in $keys) {
Write-Host " [$key] $($Options[$key])" -ForegroundColor White
}
Write-Host ""
return Read-Host "$Prompt"
}
-140
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@@ -1,140 +0,0 @@
# ==========================================
# 🌐 NET UTILS
# ==========================================
# --- CONFIG ---
[Net.ServicePointManager]::SecurityProtocol = [Net.SecurityProtocolType]::Tls12
# --- ФУНКЦИИ ---
$script:HwidFile = "C:\Tools\sing-box\hwid"
$script:AppName = "VPN-Proxy-Control by Dokril"
function Get-HWID {
# Генерация или чтение HWID из файла
if (Test-Path $script:HwidFile) {
return (Get-Content $script:HwidFile -Raw).Trim()
}
# Генерируем новый HWID
$hwid = [Guid]::NewGuid().ToString("N").Substring(0, 16)
# Сохраняем
$dir = Split-Path $script:HwidFile -Parent
if (!(Test-Path $dir)) { New-Item -ItemType Directory -Path $dir -Force | Out-Null }
Set-Content -Path $script:HwidFile -Value $hwid
return $hwid
}
function Get-SubscriptionHeaders {
# Формируем заголовки как в server.py
$osName = "windows"
$osVersion = [Environment]::OSVersion.Version.ToString()
return @{
"User-Agent" = "singbox"
"x-hwid" = (Get-HWID)
"x-device-os" = $osName
"x-ver-os" = $osVersion
"x-device-model" = $script:AppName
}
}
function Download-File {
param(
[string]$Url,
[string]$Destination,
[string]$UserAgent = "VPN-Proxy-Installer"
)
try {
$req = [System.Net.HttpWebRequest]::Create($Url)
$req.UserAgent = $UserAgent
$resp = $req.GetResponse()
$stream = $resp.GetResponseStream()
$fs = [System.IO.File]::Create($Destination)
$msgLen = $resp.ContentLength
$buffer = New-Object byte[] 10240
$count = 0
$total = 0
do {
$count = $stream.Read($buffer, 0, $buffer.Length)
$fs.Write($buffer, 0, $count)
$total += $count
# Можно добавить прогресс бар, но пока просто качаем
} while ($count -gt 0)
$fs.Close()
$stream.Close()
$resp.Close()
return $true
}
catch {
Write-Error "Ошибка скачивания: $_"
return $false
}
}
function Get-SubscriptionData {
param(
[string]$Url,
[string]$UserAgent = "singbox",
$Headers = @{}
)
Write-Info "Загружаю подписку..."
$rawContent = $null
$userInfo = @{}
# 1. Получаем ответ
try {
$response = Invoke-WebRequest -Uri $Url -Headers $Headers -TimeoutSec 15 -UseBasicParsing
$rawContent = $response.Content
# Парсим subscription-userinfo header
$userInfoHeader = $response.Headers["subscription-userinfo"]
if ($userInfoHeader) {
$parts = $userInfoHeader -split ";"
foreach ($part in $parts) {
if ($part -match "(\w+)=(\d+)") {
$userInfo[$matches[1]] = [int64]$matches[2]
}
}
}
}
catch {
return @{
success = $false
error = "Ошибка загрузки: $($_.Exception.Message)"
rawContent = $null
}
}
# 2. Пробуем парсить как JSON
try {
$config = $rawContent | ConvertFrom-Json
return @{
success = $true
config = $config
rawContent = $rawContent
userInfo = $userInfo
}
}
catch {
# JSON не распарсился — возвращаем rawContent для дальнейшей обработки
return @{
success = $false
error = "Ответ не в формате JSON (возможно Base64 или список ссылок)"
rawContent = $rawContent
userInfo = $userInfo
}
}
}
-138
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@@ -1,138 +0,0 @@
# ==========================================
# 🖥️ SYSTEM UTILS
# ==========================================
# --- СИСТЕМНАЯ ИНФОРМАЦИЯ ---
function Get-SystemInfo {
return @{
os = "windows"
version = [System.Environment]::OSVersion.Version.Major.ToString()
}
}
# --- DOCKER ---
function Test-Docker {
$status = @{
Installed = $false
Running = $false
Compose = $false
}
try {
$ver = docker --version 2>&1
if ($LASTEXITCODE -eq 0) { $status.Installed = $true }
}
catch {}
if ($status.Installed) {
try {
$info = docker info 2>&1
if ($LASTEXITCODE -eq 0) { $status.Running = $true }
}
catch {}
}
if ($status.Running) {
try {
$comp = docker compose version 2>&1
if ($LASTEXITCODE -eq 0) { $status.Compose = $true }
}
catch {
# Check legacy
try {
$comp = docker-compose --version 2>&1
if ($LASTEXITCODE -eq 0) { $status.Compose = $true }
}
catch {}
}
}
return $status
}
# --- СЛУЖБЫ И ЗАДАЧИ ---
function Manage-ScheduledTask {
param(
[string]$Name,
[string]$ExePath,
[string]$Arguments,
[string]$WorkDir,
[string]$Action = "Install" # Install, Uninstall, Start, Stop
)
switch ($Action) {
"Install" {
# Удаляем старую
Unregister-ScheduledTask -TaskName $Name -Confirm:$false -ErrorAction SilentlyContinue
$act = New-ScheduledTaskAction -Execute "$ExePath" -Argument "$Arguments" -WorkingDirectory $WorkDir
$trig = New-ScheduledTaskTrigger -AtStartup
$princ = New-ScheduledTaskPrincipal -UserId "SYSTEM" -LogonType ServiceAccount -RunLevel Highest
$sett = New-ScheduledTaskSettingsSet -AllowStartIfOnBatteries -DontStopIfGoingOnBatteries -StartWhenAvailable -RestartCount 3 -RestartInterval (New-TimeSpan -Minutes 1)
Register-ScheduledTask -TaskName $Name -Action $act -Trigger $trig -Principal $princ -Settings $sett -Force | Out-Null
return $true
}
"Uninstall" {
Unregister-ScheduledTask -TaskName $Name -Confirm:$false -ErrorAction SilentlyContinue
}
"Start" {
Start-ScheduledTask -TaskName $Name -ErrorAction SilentlyContinue
}
"Stop" {
Stop-ScheduledTask -TaskName $Name -ErrorAction SilentlyContinue
# Пытаемся убить процесс по имени exe
if ($ExePath) {
$procName = [System.IO.Path]::GetFileNameWithoutExtension($ExePath)
if ($procName) {
Stop-Process -Name $procName -Force -ErrorAction SilentlyContinue
}
}
}
}
}
function Get-TaskStatus {
param([string]$Name)
$task = Get-ScheduledTask -TaskName $Name -ErrorAction SilentlyContinue
if ($task) {
# Если задача в статусе Running — возвращаем Running
if ($task.State -eq "Running") {
return "Running"
}
# Если задача Ready — проверяем, работает ли процесс sing-box
# (scheduled task может быть Ready даже когда процесс работает)
$process = Get-Process -Name "sing-box" -ErrorAction SilentlyContinue
if ($process) {
return "Running"
}
return $task.State
}
return $null
}
function Ensure-FirewallPort {
param(
[int]$Port,
[string]$Name,
[string]$Protocol = "TCP"
)
$rule = Get-NetFirewallRule -DisplayName $Name -ErrorAction SilentlyContinue
if (-not $rule) {
New-NetFirewallRule -DisplayName $Name -Direction Inbound -LocalPort $Port -Protocol $Protocol -Action Allow -Profile Any | Out-Null
return $true
}
return $false
}
function Get-LocalIPs {
return (Get-NetIPAddress -AddressFamily IPv4 -InterfaceAlias * | Where-Object { $_.IPAddress -notmatch "^127\." -and $_.IPAddress -notmatch "^169\.254\." }).IPAddress
}
+104
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@@ -0,0 +1,104 @@
#!/usr/bin/env node
import fs from 'node:fs';
import path from 'node:path';
import { fileURLToPath } from 'node:url';
const CODE_EXTENSION = String.raw`\.[cm]?[jt]sx?$`;
const noRuntimeImpact = [
/^\.codex\//,
/^\.tmp-tests\//,
/^docs\//,
/^test\//,
/^workpack\//,
/^(?:AGENTS|PRODUCT|README)\.md$/,
/^context\.md$/,
/^\.env\.example$/,
/^\.gitignore$/,
/^Dockerfile\.client$/,
/^docker-compose\.client(?:\.local)?\.yml$/,
/^entrypoint\.client\.sh$/,
/^install\.sh$/,
/^scripts\/(?:check-import-boundaries\.mjs|clean-test-dist\.mjs|harbor-network-monitor\.sh|harbor-version\.mjs|install-macos-client\.sh)$/,
];
const foundation = [
/^\.dockerignore$/,
/^\.gitea\/workflows\//,
/^Dockerfile(?:\.runtime-base)?$/,
/^docker-compose\.gateway\.yml$/,
/^entrypoint\.sh$/,
/^package(?:-lock)?\.json$/,
/^scripts\/(?:build-on-107-deploy-111|build-runtime-base|deploy-gateway)\.sh$/,
/^scripts\/runtime-impact\.mjs$/,
/^tsconfig(?:\.[^.]+)?\.json$/,
];
const controlAndDataplane = [
new RegExp(`^src/server/main${CODE_EXTENSION}`),
new RegExp(`^src/server/(?:config|gatewayRouting|singbox|singboxRuntime|version)${CODE_EXTENSION}`),
new RegExp(`^src/server/adapters/neighbors${CODE_EXTENSION}`),
new RegExp(`^src/server/services/(?:connectivityDiagnosticsService|deviceInventoryService|devicePolicyService|singboxSelectorService)${CODE_EXTENSION}`),
new RegExp(`^src/shared/(?:connectivityDiagnostics|errors)${CODE_EXTENSION}`),
/^src\/server\/infrastructure\/dataplane\//,
];
const dataplane = [
new RegExp(`^src/server/dataplane${CODE_EXTENSION}`),
new RegExp(`^src/server/services/(?:deviceTrafficService|domainTrafficService)${CODE_EXTENSION}`),
];
const control = [
/^index\.html$/,
/^monitoring\//,
/^public\//,
/^src\/server\//,
/^src\/shared\//,
/^src\/web\//,
/^vite\.config\.[cm]?[jt]s$/,
];
function matchesAny(file, patterns) {
return patterns.some((pattern) => pattern.test(file));
}
function normalizeFile(file) {
return file.trim().replaceAll('\\', '/').replace(/^\.\//, '');
}
export function classifyRuntimeImpact(files) {
const affected = new Set();
for (const value of files) {
const file = normalizeFile(value);
if (!file || matchesAny(file, noRuntimeImpact)) continue;
if (matchesAny(file, foundation) || matchesAny(file, controlAndDataplane)) {
affected.add('control');
affected.add('dataplane');
} else if (matchesAny(file, dataplane)) {
affected.add('dataplane');
} else if (matchesAny(file, control)) {
affected.add('control');
} else {
throw new Error(`Unclassified path: ${file}`);
}
}
const affectedComponents = ['control', 'dataplane'].filter((component) => affected.has(component));
const restartScope = affected.has('dataplane') ? 'both' : affected.has('control') ? 'control' : 'none';
return { affectedComponents, restartScope };
}
function formatImpact(impact) {
return [
`affected-components=${impact.affectedComponents.join('+') || 'none'}`,
`restart-scope=${impact.restartScope}`,
].join('\n');
}
if (process.argv[1] && path.resolve(process.argv[1]) === fileURLToPath(import.meta.url)) {
try {
const args = process.argv.slice(2);
const files = args.includes('--stdin')
? fs.readFileSync(0, 'utf8').split(/\r?\n/)
: args;
console.log(formatImpact(classifyRuntimeImpact(files)));
} catch (error) {
console.error(`[runtime-impact] ${error.message}`);
process.exitCode = 1;
}
}
-274
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@@ -1,274 +0,0 @@
# ==========================================
# 🎮 DISCORD PROXY SETUP
# ==========================================
param(
[switch]$Force,
[switch]$Debug
)
$ScriptDir = Split-Path -Parent $MyInvocation.MyCommand.Path
. "$ScriptDir\lib\Common.ps1"
. "$ScriptDir\lib\Net.ps1"
. "$ScriptDir\lib\System.ps1"
if ($Debug) { Set-DebugMode -Enabled $true }
Write-Header "НАСТРОЙКА DISCORD / VESKTOP" -ClearScreen
Ensure-Admin
$InstallPath = "C:\Tools\ProxiFyre"
$ConfigPath = "$InstallPath\app-config.json"
$DriverUrl = "https://github.com/wiresock/ndisapi/releases/download/v3.6.2/Windows.Packet.Filter.3.6.2.1.x64.msi"
$AppUrl = "https://github.com/wiresock/proxifyre/releases/download/v2.1.4/ProxiFyre-v2.1.4-x64-signed.zip"
# --- ФУНКЦИИ ---
function Test-ProxyConnection {
param([string]$ProxyAddr)
Write-Info "Проверка подключения к прокси $ProxyAddr..."
try {
$parts = $ProxyAddr -split ":"
$host_ = $parts[0]
$port = [int]$parts[1]
# 1. Проверяем TCP соединение
$tcp = New-Object System.Net.Sockets.TcpClient
$tcp.Connect($host_, $port)
$tcp.Close()
Write-Success "TCP соединение установлено"
# 2. Пробуем получить внешний IP через прокси (используем curl для SOCKS5)
try {
$result = & curl.exe -s -x "socks5://$ProxyAddr" "http://v4.ident.me" --connect-timeout 5 2>$null
if ($result -match "^\d+\.\d+\.\d+\.\d+$") {
Write-Success "Внешний IP через прокси: $result"
return $true
}
}
catch {}
Write-Warning "TCP работает, но не удалось получить IP. Возможно прокси не полностью настроен."
return $true
}
catch {
Write-Error "Не удалось подключиться к $ProxyAddr"
Write-Host " Убедитесь, что прокси запущен и доступен." -ForegroundColor Gray
return $false
}
}
function Get-CurrentConfig {
if (Test-Path $ConfigPath) {
try {
$cfg = Get-Content $ConfigPath -Raw | ConvertFrom-Json
return @{
Apps = $cfg.proxies[0].appNames -join ", "
Proxy = $cfg.proxies[0].socks5ProxyEndpoint
}
}
catch {}
}
return $null
}
function Install-ProxiFyre {
# Установка драйвера
Write-Step "Установка драйвера..."
$msi = "$env:TEMP\WinpkFilter.msi"
if (Download-File -Url $DriverUrl -Destination $msi) {
Start-Process msiexec.exe -ArgumentList "/i `"$msi`" /qn /norestart" -Wait
Write-Success "Драйвер готов"
}
# Установка ProxiFyre
Write-Step "Установка ProxiFyre..."
New-Item -ItemType Directory -Path $InstallPath -Force | Out-Null
$zip = "$env:TEMP\ProxiFyre.zip"
if (Download-File -Url $AppUrl -Destination $zip) {
Expand-Archive -Path $zip -DestinationPath $InstallPath -Force
$exe = Get-ChildItem $InstallPath -Recurse -Filter "ProxiFyre.exe" | Select -First 1
if ($exe.DirectoryName -ne $InstallPath) {
Copy-Item "$($exe.DirectoryName)\*" $InstallPath -Recurse -Force
}
Write-Success "Распаковано"
}
}
function Configure-And-Start {
param($TargetApps, $ProxyAddr)
# Конфиг
$cfg = @{
logLevel = "Info"
proxies = @(@{
appNames = $TargetApps
socks5ProxyEndpoint = $ProxyAddr
supportedProtocols = @("TCP", "UDP")
})
excludes = @()
}
$cfg | ConvertTo-Json -Depth 5 | Set-Content $ConfigPath -Encoding UTF8
# Служба
Write-Step "Перезапуск службы..."
if (Get-DebugMode) {
& "$InstallPath\ProxiFyre.exe" stop
& "$InstallPath\ProxiFyre.exe" install
& "$InstallPath\ProxiFyre.exe" start
}
else {
& "$InstallPath\ProxiFyre.exe" stop 2>&1 | Out-Null
& "$InstallPath\ProxiFyre.exe" install 2>&1 | Out-Null
& "$InstallPath\ProxiFyre.exe" start 2>&1 | Out-Null
}
Write-Success "Готово! Discord должен работать через прокси."
}
function Select-Apps {
Write-Host "`n🎮 Какие приложения проксировать?" -ForegroundColor Yellow
$appOpts = [Ordered]@{
"1" = "Discord"
"2" = "Vesktop"
"3" = "Discord + Vesktop"
}
$appChoice = Show-Menu -Options $appOpts
$result = switch ($appChoice) {
"1" { @("Discord") }
"2" { @("Vesktop") }
"3" { @("Vesktop", "Discord") }
default { @("Discord") }
}
return $result
}
function Get-ProxyAddress {
# Проверяем локальный sing-box
$singboxStatus = Get-TaskStatus -Name "SingBoxProxy"
$localProxy = "127.0.0.1:1080"
if ($singboxStatus -eq "Running") {
Write-Info "Обнаружен работающий VPN клиент (Sing-box)."
Write-Host " Рекомендуется использовать локальный прокси: " -NoNewline -ForegroundColor Gray
Write-Host $localProxy -ForegroundColor Green
$useLocal = Read-Host " Использовать локальный? (y/n) [y]"
if ($useLocal -ne 'n') {
return $localProxy
}
}
else {
Write-Warning "VPN клиент не запущен!"
Write-Host " Вы можете указать адрес удалённого прокси." -ForegroundColor Gray
}
# Запрашиваем адрес
while ($true) {
$proxyAddr = Read-Host "`n Введите адрес прокси (IP:порт)"
if ([string]::IsNullOrWhiteSpace($proxyAddr)) {
Write-Warning "Адрес не указан"
continue
}
if ($proxyAddr -notmatch "^[\d\.]+:\d+$") {
Write-Error "Неверный формат. Ожидается: IP:порт (например 192.168.1.100:1080)"
continue
}
# Проверяем подключение
if (Test-ProxyConnection -ProxyAddr $proxyAddr) {
return $proxyAddr
}
$retry = Read-Host " Попробовать другой адрес? (y/n)"
if ($retry -ne 'y') { return $null }
}
}
# --- MAIN ---
$isInstalled = Test-Path "$InstallPath\ProxiFyre.exe"
$discSvc = Get-Service -Name "ProxiFyreService" -ErrorAction SilentlyContinue
$currentConfig = Get-CurrentConfig
if ($isInstalled -and $currentConfig -and -not $Force) {
# Уже установлено — показываем меню управления
Write-Info "ProxiFyre уже установлен."
Write-Host ""
Write-Host " Статус: " -NoNewline -ForegroundColor Gray
if ($discSvc.Status -eq 'Running') {
Write-Host "АКТИВЕН" -ForegroundColor Green
}
else {
Write-Host "ОСТАНОВЛЕН" -ForegroundColor Yellow
}
Write-Host " Приложения: $($currentConfig.Apps)" -ForegroundColor Gray
Write-Host " Прокси: $($currentConfig.Proxy)" -ForegroundColor Gray
Write-Host ""
$opts = [Ordered]@{
"1" = "Изменить настройки (приложения/прокси)"
"2" = "Проверить подключение к прокси"
"3" = "Перезапустить службу"
"4" = "Остановить службу"
"5" = "Переустановить"
"b" = "Назад"
}
$action = Show-Menu -Options $opts
switch ($action) {
"1" {
$targetApps = Select-Apps
$proxyAddr = Get-ProxyAddress
if ($proxyAddr) {
Configure-And-Start -TargetApps $targetApps -ProxyAddr $proxyAddr
}
}
"2" {
Test-ProxyConnection -ProxyAddr $currentConfig.Proxy | Out-Null
}
"3" {
Write-Step "Перезапуск службы..."
Start-Process "$InstallPath\ProxiFyre.exe" -ArgumentList "stop" -Wait -NoNewWindow
Start-Process "$InstallPath\ProxiFyre.exe" -ArgumentList "start" -Wait -NoNewWindow
Write-Success "Перезапущено!"
}
"4" {
Start-Process "$InstallPath\ProxiFyre.exe" -ArgumentList "stop" -Wait -NoNewWindow
Write-Success "Остановлено!"
}
"5" {
$Force = $true
}
"b" { exit }
}
if (-not $Force) {
Start-Sleep -Seconds 2
exit
}
}
# --- НОВАЯ УСТАНОВКА ---
if (-not $isInstalled -or $Force) {
Install-ProxiFyre
}
$targetApps = Select-Apps
$proxyAddr = Get-ProxyAddress
if (-not $proxyAddr) {
Write-Error "Прокси не настроен. Выход."
Start-Sleep -Seconds 2
exit
}
Configure-And-Start -TargetApps $targetApps -ProxyAddr $proxyAddr
Start-Sleep -Seconds 3
-417
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@@ -1,417 +0,0 @@
# ==========================================
# 📦 SING-BOX NATIVE INSTALLER
# ==========================================
param(
[switch]$Force,
[switch]$Debug,
[string]$SubscriptionUrl = ""
)
$ScriptDir = Split-Path -Parent $MyInvocation.MyCommand.Path
. "$ScriptDir\lib\Common.ps1"
. "$ScriptDir\lib\Net.ps1"
. "$ScriptDir\lib\System.ps1"
# --- CONFIG ---
$SingboxVersion = "1.11.4"
$InstallDir = "C:\Tools\sing-box"
$LocalProxyPort = 1080
$SingboxUrl = "https://github.com/SagerNet/sing-box/releases/download/v$SingboxVersion/sing-box-$SingboxVersion-windows-amd64.zip"
$TaskName = "SingBoxProxy"
Ensure-Admin
# --- LOGIC ---
function Select-Server {
param($Config)
$outbounds = $Config.outbounds
$servers = @()
foreach ($outbound in $outbounds) {
if ($outbound.type -in @("vless", "vmess", "trojan", "shadowsocks", "hysteria2")) {
$servers += @{
tag = $outbound.tag
type = $outbound.type
server = $outbound.server
server_port = $outbound.server_port
outbound = $outbound
}
}
}
if ($servers.Count -eq 0) {
Write-Error "Серверы не найдены в подписке!"
return $null
}
$options = [Ordered]@{}
for ($i = 0; $i -lt $servers.Count; $i++) {
$s = $servers[$i]
$options["$($i+1)"] = "$($s.tag) ($($s.server):$($s.server_port))"
}
$choice = Show-Menu -Title "🌐 Доступные серверы" -Options $options -Prompt "👉 Выберите сервер (номер)"
$index = [int]$choice - 1
if ($index -lt 0 -or $index -ge $servers.Count) {
Write-Error "Неверный выбор!"
return $null
}
return $servers[$index]
}
function New-SingboxConfig {
param($Outbound, $Port)
return @{
log = @{ level = "info"; timestamp = $true }
dns = @{ independent_cache = $true }
inbounds = @(
@{
type = "socks"
tag = "socks-in"
listen = "0.0.0.0"
listen_port = $Port
}
)
outbounds = @(
$Outbound,
@{ type = "direct"; tag = "direct" }
)
route = @{
final = $Outbound.tag
auto_detect_interface = $true
}
}
}
function Parse-VlessUrl {
param([string]$Url)
if (-not $Url.StartsWith("vless://")) { throw "URL должен начинаться с vless://" }
# Remove scheme
$raw = $Url.Substring(8)
# Split fragment
$tag = "reality"
if ($raw -match "#(.*)$") {
$tag = [System.Web.HttpUtility]::UrlDecode($matches[1])
$raw = $raw -replace "#.*$", ""
}
# Split query
$queryStr = ""
if ($raw -match "\?(.*)$") {
$queryStr = $matches[1]
$raw = $raw -replace "\?.*$", ""
}
# Parse UUID@HOST:PORT
if ($raw -notmatch "([^@]+)@([^:]+):(\d+)") { throw "Неверный формат vless (ожидается uuid@host:port)" }
$uuid = $matches[1][0]
$serverHost = $matches[2][0]
$port = [int]$matches[3][0] # Fix for regex object access in PS
if (-not $uuid) {
# Fallback if regex returns match info differently in different PS versions
$uuid = $matches[1]
$serverHost = $matches[2]
$port = [int]$matches[3]
}
# Parse Query
$params = @{}
if ($queryStr) {
$parts = $queryStr -split "&"
foreach ($p in $parts) {
$kv = $p -split "="
if ($kv.Count -eq 2) {
$params[[System.Web.HttpUtility]::UrlDecode($kv[0])] = [System.Web.HttpUtility]::UrlDecode($kv[1])
}
}
}
# Extract
$pbk = if ($params["pbk"]) { $params["pbk"] } else { throw "Отсутствует параметр pbk (Public Key)" }
$sid = if ($params["sid"]) { $params["sid"] } else { throw "Отсутствует параметр sid (Short ID)" }
$sni = if ($params["sni"]) { $params["sni"] } else { $serverHost }
$fp = if ($params["fp"]) { $params["fp"] } else { "chrome" }
$flow = if ($params["flow"]) { $params["flow"] } else { "" }
return @{
uuid = $uuid
server = $serverHost
server_port = $port
tag = $tag
public_key = $pbk
short_id = $sid
server_name = $sni
fingerprint = $fp
flow = $flow
}
}
# --- MAIN ---
if ($Debug) { Set-DebugMode -Enabled $true }
Write-Header "NATIVE SING-BOX (UDP ПОДДЕРЖКА)" -ClearScreen
$taskStatus = Get-TaskStatus -Name $TaskName
if ($taskStatus -and -not $Force) {
Write-Info "Sing-box уже установлен."
Write-Host " Статус: $taskStatus" -ForegroundColor ($taskStatus -eq "Running" ? "Green" : "Red")
Write-Host ""
$opts = [Ordered]@{
"1" = "Сменить сервер (из подписки)"
"2" = "Ввести новую ссылку на подписку"
"3" = "Перезапустить службу"
"4" = "Остановить службу"
"5" = "Показать конфиг"
"6" = "Переустановить"
"b" = "Назад"
}
$act = Show-Menu -Options $opts
switch ($act) {
"1" {
# Reload existing sub logic could be added here, currently just re-runs install flow partially
# Simplification: treat as new setup but try to load saved sub url
$Force = $true
}
"2" { $SubscriptionUrl = ""; $Force = $true }
"3" { Manage-ScheduledTask -Name $TaskName -Action "Start"; Write-Success "Запущено!"; exit }
"4" { Manage-ScheduledTask -Name $TaskName -Action "Stop"; Write-Success "Остановлено!"; exit }
"5" { Get-Content "$InstallDir\config.json"; exit }
"6" { $Force = $true }
"b" { exit }
}
}
if ($Force -or -not $taskStatus) {
# 1. Загрузка
Write-Step "Установка Sing-box..."
if (!(Test-Path "$InstallDir\sing-box.exe")) {
New-Item -ItemType Directory -Path $InstallDir -Force | Out-Null
$zipCtx = "$env:TEMP\sing-box.zip"
if (Download-File -Url $SingboxUrl -Destination $zipCtx) {
Expand-Archive -Path $zipCtx -DestinationPath $env:TEMP -Force
$extracted = Get-ChildItem "$env:TEMP\sing-box-*" -Directory | Select -First 1
Copy-Item "$($extracted.FullName)\sing-box.exe" "$InstallDir\sing-box.exe" -Force
Remove-Item $zipCtx; Remove-Item $extracted.FullName -Recurse -Force
Write-Success "Sing-box скачан"
}
else {
Read-Host "Нажмите Enter для выхода..."
exit 1
}
}
# 2. Подписка
if ([string]::IsNullOrWhiteSpace($SubscriptionUrl)) {
# Try load saved
$savedSub = "$InstallDir\sub_info.json"
if (Test-Path $savedSub) {
try {
$json = Get-Content $savedSub -Raw | ConvertFrom-Json
if ($json.url) {
Write-Info "Найдена сохраненная подписка: $($json.url)"
if ((Read-Host "Использовать? (y/n)") -eq 'y') { $SubscriptionUrl = $json.url }
}
}
catch {}
}
}
if ([string]::IsNullOrWhiteSpace($SubscriptionUrl)) {
$SubscriptionUrl = Read-Host "`n🔗 Введите URL подписки (VLESS)"
}
if ([string]::IsNullOrWhiteSpace($SubscriptionUrl)) {
Write-Error "Url не указан"
Read-Host "Нажмите Enter для выхода..."
exit
}
# --- PARSING ---
$data = @{ success = $false; config = $null; error = "" }
if ($SubscriptionUrl.StartsWith("vless://")) {
try {
$p = Parse-VlessUrl -Url $SubscriptionUrl
$outbound = [Ordered]@{
type = "vless"
tag = $p.tag
server = $p.server
server_port = $p.server_port
uuid = $p.uuid
flow = $p.flow
tls = @{
enabled = $true
server_name = $p.server_name
utls = @{ enabled = $true; fingerprint = $p.fingerprint }
reality = @{
enabled = $true
public_key = $p.public_key
short_id = $p.short_id
}
}
packet_encoding = "xudp"
}
$data.success = $true
$data.config = @{ outbounds = @($outbound) }
}
catch {
$data.error = $_.Exception.Message
}
}
else {
$data = Get-SubscriptionData -Url $SubscriptionUrl -Headers (Get-SubscriptionHeaders)
}
# --- PARSING LOGIC ENHANCEMENT ---
if (-not $data.success) {
# Fallback: Try to handle non-JSON body (Base64 or Plain Text)
try {
Write-Info "JSON парсинг не удался, пробую как список ссылок..."
$content = $data.rawContent
# Base64 decode if needed
if ($content -match "^[A-Za-z0-9+/=]+$") {
try {
$bytes = [System.Convert]::FromBase64String($content)
$content = [System.Text.Encoding]::UTF8.GetString($bytes)
}
catch {}
}
# Try to find vless:// links
$links = $content -split "[\r\n]+" | Where-Object { $_ -match "^vless://" }
if ($links.Count -gt 0) {
Write-Success "Найдено ссылок: $($links.Count)"
# Mock a config object with these links as "outbounds"
# Note: We can't fully parsing VLESS query params in pure PS easily without a lot of regex
# So we will try a simpler approach: Let sing-box do it? No, sing-box needs config.
# WORKAROUND: Create a minimal outbound for each link
# Parsing `vless://UUID@HOST:PORT?security=reality&...#NAME`
$parsedOutbounds = @()
foreach ($link in $links) {
if ($link -match "vless://([^@]+)@([^:]+):(\d+)(\?.*)?(#.*)?") {
$uuid = $matches[1]
$server = $matches[2]
$port = [int]$matches[3]
$query = $matches[4]
$hash = $matches[5]
$tag = if ($hash) { $hash.Substring(1) } else { "${server}:${port}" }
$tag = [System.Web.HttpUtility]::UrlDecode($tag)
# Parse Query Params
$flow = ""; $fp = ""; $pbk = ""; $sid = ""; $sni = ""; $serviceName = ""
if ($query) {
if ($query -match "flow=([^&]+)") { $flow = $matches[1] }
if ($query -match "fp=([^&]+)") { $fp = $matches[1] }
if ($query -match "pbk=([^&]+)") { $pbk = $matches[1] }
if ($query -match "sid=([^&]+)") { $sid = $matches[1] }
if ($query -match "sni=([^&]+)") { $sni = $matches[1] }
if ($query -match "serviceName=([^&]+)") { $serviceName = $matches[1] }
}
# Construct Sing-box outbound (REALITY based assumption for modern vless)
$out = [Ordered]@{
type = "vless"
tag = $tag
server = $server
server_port = $port
uuid = $uuid
flow = $flow
tls = @{
enabled = $true
server_name = $sni
utls = @{ enabled = $true; fingerprint = $fp }
reality = @{
enabled = $true
public_key = $pbk
short_id = $sid
}
}
packet_encoding = "xudp"
}
$parsedOutbounds += $out
}
}
if ($parsedOutbounds.Count -gt 0) {
$data.success = $true
$data.config = @{ outbounds = $parsedOutbounds }
$data.error = $null
}
else {
throw "Не удалось распарсить VLESS ссылки"
}
}
else {
throw $data.error
}
}
catch {
Write-Error "Ошибка обработки подписки: $_"
Write-Host " Скрипт поддерживает: SIP008 (JSON) или список VLESS+Reality ссылок." -ForegroundColor Yellow
Read-Host "Нажмите Enter для выхода..."
exit
}
}
# Save sub info
@{ url = $SubscriptionUrl } | ConvertTo-Json | Set-Content "$InstallDir\sub_info.json"
# 3. Выбор сервера
$server = Select-Server -Config $data.config
if (!$server) {
Read-Host "Нажмите Enter для выхода..."
exit
}
# 4. Конфиг
$cfg = New-SingboxConfig -Outbound $server.outbound -Port $LocalProxyPort
$cfg | ConvertTo-Json -Depth 10 | Set-Content "$InstallDir\config.json" -Encoding UTF8
# 5. Задача
Manage-ScheduledTask -Name $TaskName -ExePath "$InstallDir\sing-box.exe" -Arguments "run -c `"$InstallDir\config.json`"" -WorkDir $InstallDir -Action "Install"
Manage-ScheduledTask -Name $TaskName -Action "Start"
# 6. Firewall
if (Ensure-FirewallPort -Port $LocalProxyPort -Name "SingBox-Proxy-Port") {
Write-Success "Правило Firewall создано (порт $LocalProxyPort)"
}
Write-Success "Успешно установлено и запущено!"
Write-Info "Локальный прокси: 127.0.0.1:$LocalProxyPort"
$ips = Get-LocalIPs
if ($ips) {
Write-Info "Доступно из сети по адресам:"
foreach ($ip in $ips) {
Write-Host " ${ip}:$LocalProxyPort" -ForegroundColor Gray
}
}
Start-Sleep -Seconds 3
}
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@@ -1,58 +0,0 @@
# ==========================================
# 🗑️ UNINSTALL ALL (CLEANUP)
# ==========================================
param([switch]$Debug)
$ScriptDir = Split-Path -Parent $MyInvocation.MyCommand.Path
. "$ScriptDir\lib\Common.ps1"
. "$ScriptDir\lib\System.ps1"
if ($Debug) { Set-DebugMode -Enabled $true }
Write-Header "ПОЛНОЕ УДАЛЕНИЕ" -ClearScreen
Ensure-Admin
Write-Warning "Это действие удалит весь установленный софт:"
Write-Host " - Sing-box (Служба и файлы)" -ForegroundColor Gray
Write-Host " - ProxiFyre (Служба и файлы)" -ForegroundColor Gray
Write-Host " - Драйвер WinPacketFilter" -ForegroundColor Gray
Write-Host ""
if ((Read-Host "Вы уверены? (y/n)") -ne 'y') { exit }
Write-Step "Удаление Sing-box..."
Manage-ScheduledTask -Name "SingBoxProxy" -Action "Stop"
Manage-ScheduledTask -Name "SingBoxProxy" -Action "Uninstall"
if (Test-Path "C:\Tools\sing-box") {
Remove-Item "C:\Tools\sing-box" -Recurse -Force -ErrorAction SilentlyContinue
Write-Success "Файлы удалены"
}
Write-Step "Удаление Discord Proxy (ProxiFyre)..."
$pfDir = "C:\Tools\ProxiFyre"
if (Test-Path "$pfDir\ProxiFyre.exe") {
if (Get-DebugMode) {
& "$pfDir\ProxiFyre.exe" uninstall
}
else {
& "$pfDir\ProxiFyre.exe" uninstall 2>&1 | Out-Null
}
Start-Sleep -Seconds 2
Write-Success "Служба удалена"
}
if (Test-Path $pfDir) {
Remove-Item $pfDir -Recurse -Force -ErrorAction SilentlyContinue
Write-Success "Файлы удалены"
}
Write-Step "Удаление драйвера..."
# Тут сложно удалить MSI тихо без GUID, но попробуем через known path или пропустим, т.к. драйвер может быть нужен другим
Write-Info "Драйвер WinPacketFilter оставлен (он может использоваться другим ПО)."
Write-Info "Если нужно, удалите его через 'Установка и удаление программ'."
Write-Success "Очистка завершена!"
Start-Sleep -Seconds 3
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import { spawnSync } from 'node:child_process';
const ACTIVE_STATES = new Set(['REACHABLE', 'DELAY', 'PROBE', 'PERMANENT', 'NOARP']);
const IGNORED_STATES = new Set(['FAILED', 'INCOMPLETE']);
const MAC_PATTERN = /^[0-9a-f]{2}(?::[0-9a-f]{2}){5}$/i;
const INTERFACE_PATTERN = /^[a-z0-9_.:-]{1,15}$/i;
interface NeighborEntry extends Record<string, unknown> {
state?: unknown;
lladdr?: unknown;
dev?: unknown;
dst?: unknown;
}
export interface NeighborObservation {
ip: string;
mac: string;
interface: string;
active: boolean;
observedAt: string;
source: 'neighbor';
}
function neighborEntry(value: unknown): NeighborEntry {
return value && typeof value === 'object' && !Array.isArray(value)
? value as NeighborEntry
: {};
}
export function isDeviceInterface(value: unknown) {
const name = String(value || '');
return INTERFACE_PATTERN.test(name)
&& name !== 'docker0' && !name.startsWith('br-') && !name.startsWith('veth');
}
export function parseNeighborSnapshot(value: unknown, observedAt = new Date().toISOString()): NeighborObservation[] {
if (!Array.isArray(value)) return [];
return value.flatMap((value) => {
const entry = neighborEntry(value);
const states = (Array.isArray(entry.state) ? entry.state : [entry.state])
.filter(Boolean)
.map((state: unknown) => String(state).toUpperCase());
const mac = String(entry.lladdr || '').toLowerCase();
const deviceInterface = String(entry.dev || '');
if (!entry.dst || !isDeviceInterface(deviceInterface) || !MAC_PATTERN.test(mac)
|| states.some((state) => IGNORED_STATES.has(state))) {
return [];
}
return [{
ip: String(entry.dst),
mac,
interface: deviceInterface,
active: states.some((state) => ACTIVE_STATES.has(state)),
observedAt,
source: 'neighbor',
}];
});
}
export function readNeighborSnapshot(run: typeof spawnSync = spawnSync, now = () => new Date()) {
const observedAt = now().toISOString();
const result = run('ip', ['-j', 'neigh', 'show'], {
encoding: 'utf8',
timeout: 1500,
});
if (result.error || result.status !== 0) {
return {
observedAt,
observations: [],
error: result.error?.message || String(result.stderr || 'ip neigh завершился с ошибкой').trim(),
};
}
try {
return {
observedAt,
observations: parseNeighborSnapshot(JSON.parse(result.stdout || '[]'), observedAt),
error: null,
};
} catch (error) {
const message = error instanceof Error ? error.message : String(error);
return { observedAt, observations: [], error: `ip neigh вернул невалидный JSON: ${message}` };
}
}
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import path from "node:path";
const dataDir = process.env.DATA_DIR || path.resolve(".vpn-proxy");
const parsePort = (value: string | undefined, fallback: number) => {
const parsed = Number.parseInt(value || '', 10);
return Number.isInteger(parsed) ? parsed : fallback;
};
const proxyPort = parsePort(
process.env.PROXY_PORT,
process.env.APP_MODE === "client" ? 8082 : 8080,
);
export const settings = {
appMode: process.env.APP_MODE === "client" ? "client" : "gateway",
port: parsePort(process.env.PORT, 3456),
proxyPort,
diagnosticsProxyPort: parsePort(process.env.DIAGNOSTICS_PROXY_PORT, 18080),
failoverPrimaryProxyPort: parsePort(process.env.FAILOVER_PRIMARY_PROXY_PORT, 18081),
failoverReserveProxyPort: parsePort(process.env.FAILOVER_RESERVE_PROXY_PORT, 18082),
singboxApiPort: parsePort(process.env.SING_BOX_API_PORT, 19090),
tproxyPort: parsePort(process.env.TPROXY_PORT, 7895),
tproxyMark: process.env.TPROXY_MARK || "1",
tproxyChain: process.env.TPROXY_CHAIN || "VPN_PROXY_TPROXY",
devicePolicyChain: process.env.DEVICE_POLICY_CHAIN || "VPN_PROXY_DEVICE_POLICY",
trafficUploadChain: process.env.TRAFFIC_UPLOAD_CHAIN || "VPN_PROXY_TRAFFIC_UP",
trafficDownloadChain: process.env.TRAFFIC_DOWNLOAD_CHAIN || "VPN_PROXY_TRAFFIC_DOWN",
deviceTrafficAccountingEnabled: process.env.DEVICE_TRAFFIC_ACCOUNTING_ENABLED !== "false",
directTrafficChain: process.env.DIRECT_TRAFFIC_CHAIN || "VPN_PROXY_DIRECT",
directTrafficMark: process.env.DIRECT_TRAFFIC_MARK || "0x40000000",
gatewayClientCidrs: (process.env.GATEWAY_CLIENT_CIDRS
|| "10.0.0.0/8 172.16.0.0/12 192.168.0.0/16")
.trim().split(/\s+/).filter(Boolean),
bypassCidrs: (process.env.BYPASS_CIDRS
|| "0.0.0.0/8 10.0.0.0/8 100.64.0.0/10 127.0.0.0/8 169.254.0.0/16 172.16.0.0/12 192.168.0.0/16 224.0.0.0/4 240.0.0.0/4")
.trim().split(/\s+/).filter(Boolean),
dataplaneSocket: process.env.DATAPLANE_SOCKET || "/run/vpn-proxy/dataplane.sock",
bindIp: process.env.PROXY_BIND_IP || "0.0.0.0",
dataDir,
distDir: process.env.DIST_DIR || "/app/dist",
configPath:
process.env.SING_BOX_CONFIG || path.join(dataDir, "sing-box-config.json"),
cachePath: process.env.SING_BOX_CACHE || "/var/lib/sing-box/cache.db",
statePath: path.join(dataDir, "state.json"),
deviceStatePath: path.join(dataDir, "devices.json"),
activityJournalPath: path.join(dataDir, "activity-journal.json"),
subscriptionCachePath: path.join(dataDir, "subscription-cache.json"),
sharedProxyHost: process.env.SHARED_PROXY_HOST || "",
hostNetworkStatePath:
process.env.HARBOR_HOST_NETWORK_STATE || "/run/harbor-host/network.json",
gatewayPresencePort: parsePort(process.env.HARBOR_GATEWAY_CONTROL_PORT, 3456),
subscriptionTimeoutMs: parsePort(process.env.SUBSCRIPTION_TIMEOUT_MS, 15_000),
hwidPath: path.join(dataDir, "hwid"),
logLevel: process.env.LOG_LEVEL || "info",
appName: "VPN Proxy Gateway",
};
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import fs from 'node:fs';
import http from 'node:http';
import path from 'node:path';
import type { IncomingMessage, ServerResponse } from 'node:http';
import { settings } from './config.js';
import { createSingboxRuntime } from './singboxRuntime.js';
import { buildVersionInfo } from './version.js';
import { readNeighborSnapshot } from './adapters/neighbors.js';
import { createDeviceTrafficService } from './services/deviceTrafficService.js';
import { createDevicePolicyService } from './services/devicePolicyService.js';
import { createConnectivityDiagnosticsService } from './services/connectivityDiagnosticsService.js';
import {
createDomainTrafficService,
readSingboxConnections,
} from './services/domainTrafficService.js';
import { createSingboxSelectorService } from './services/singboxSelectorService.js';
const socketPath = settings.dataplaneSocket;
const runtime = createSingboxRuntime({
configPath: settings.configPath,
gateway: true,
tproxyChain: settings.tproxyChain,
});
const versionInfo = buildVersionInfo('gateway');
const traffic = createDeviceTrafficService({
observe: () => readNeighborSnapshot(),
uploadChain: settings.trafficUploadChain,
downloadChain: settings.trafficDownloadChain,
directChain: settings.directTrafficChain,
directMark: settings.directTrafficMark,
tproxyMark: settings.tproxyMark,
gatewayClientCidrs: settings.gatewayClientCidrs,
bypassCidrs: settings.bypassCidrs,
proxyPort: settings.proxyPort,
});
const devicePolicy = createDevicePolicyService({
chain: settings.devicePolicyChain,
tproxyPort: settings.tproxyPort,
tproxyMark: settings.tproxyMark,
});
const connectivityDiagnostics = createConnectivityDiagnosticsService({
proxyPort: settings.diagnosticsProxyPort,
});
const failoverDiagnostics = {
primary: createConnectivityDiagnosticsService({ proxyPort: settings.failoverPrimaryProxyPort }),
reserve: createConnectivityDiagnosticsService({ proxyPort: settings.failoverReserveProxyPort }),
};
const selector = createSingboxSelectorService({ port: settings.singboxApiPort });
const domainTraffic = createDomainTrafficService({
observe: () => readSingboxConnections(settings.singboxApiPort),
devices: () => traffic.snapshot().devices,
});
let ready = false;
let trafficTimer: NodeJS.Timeout | null = null;
let domainTrafficTimer: NodeJS.Timeout | null = null;
const MAX_POLICY_BODY_BYTES = 256 * 1024;
function record(value: unknown): Record<string, unknown> {
return value && typeof value === 'object' && !Array.isArray(value)
? value as Record<string, unknown>
: {};
}
function errorMessage(error: unknown) {
return error instanceof Error ? error.message : String(error);
}
function readJson(req: IncomingMessage): Promise<unknown> {
return new Promise((resolve, reject) => {
const chunks: Buffer[] = [];
let size = 0;
let tooLarge = false;
req.on('data', (chunk: Buffer | string) => {
const buffer = Buffer.isBuffer(chunk) ? chunk : Buffer.from(chunk);
size += buffer.length;
if (!tooLarge && size > MAX_POLICY_BODY_BYTES) {
tooLarge = true;
reject(new Error('Device policy request слишком большой'));
return;
}
if (!tooLarge) chunks.push(buffer);
});
req.on('end', () => {
if (tooLarge) return;
try {
resolve(JSON.parse(Buffer.concat(chunks).toString('utf8') || '{}'));
} catch {
reject(new Error('Device policy request содержит невалидный JSON'));
}
});
req.on('error', reject);
});
}
function sendJson(res: ServerResponse, statusCode: number, payload: unknown) {
res.writeHead(statusCode, { 'content-type': 'application/json; charset=utf-8' });
res.end(JSON.stringify(payload));
}
const server = http.createServer(async (req: IncomingMessage, res: ServerResponse) => {
try {
if (req.method === 'GET' && req.url === '/status') {
return sendJson(res, ready ? 200 : 503, {
...await runtime.refresh(),
gatewayBackendVersion: versionInfo.components.gatewayBackend,
singBoxVersion: versionInfo.runtime.singBox,
devicePolicy: devicePolicy.snapshot(),
ready,
});
}
if (req.method === 'GET' && req.url === '/devices') {
return sendJson(res, 200, readNeighborSnapshot());
}
if (req.method === 'GET' && req.url === '/device-traffic') {
return sendJson(res, 200, traffic.snapshot());
}
if (req.method === 'GET' && req.url === '/domain-traffic') {
return sendJson(res, 200, domainTraffic.snapshot());
}
if (req.method === 'GET' && req.url === '/device-policy') {
return sendJson(res, 200, devicePolicy.snapshot());
}
if (req.method === 'PUT' && req.url === '/device-policy') {
const body = record(await readJson(req));
return sendJson(res, 200, await devicePolicy.apply(body.devices));
}
if (req.method === 'POST' && req.url === '/diagnostics/connectivity') {
const { services = [], target = null } = record(await readJson(req));
return sendJson(res, 200, await connectivityDiagnostics.run({
vpnAvailable: runtime.running,
services,
target,
}));
}
if (req.method === 'POST' && req.url === '/failover/probe') {
const { role, services = [], target = null, timeoutMs = 6_000 } = record(await readJson(req));
if (role !== 'primary' && role !== 'reserve') throw new Error('Неизвестная failover role');
return sendJson(res, 200, await failoverDiagnostics[role].runVpn({ services, target, timeoutMs: Number(timeoutMs) }));
}
if (req.method === 'GET' && req.url === '/failover/selector') {
return sendJson(res, 200, await selector.read());
}
if (req.method === 'PUT' && req.url === '/failover/selector') {
const { role } = record(await readJson(req));
if (role !== 'primary' && role !== 'reserve') throw new Error('Неизвестная failover role');
return sendJson(res, 200, await selector.select(role));
}
if (req.method === 'PUT' && req.url === '/failover/activity') {
const { enabled } = record(await readJson(req));
if (enabled === true) domainTraffic.enableActivity();
else domainTraffic.disableActivity();
return sendJson(res, 200, { enabled: enabled === true });
}
if (req.method === 'POST' && req.url === '/failover/activity/read') {
const { thresholdBytesPerSecond = 0 } = record(await readJson(req));
return sendJson(res, 200, { activity: domainTraffic.activitySnapshot(thresholdBytesPerSecond) });
}
if (req.method === 'POST' && req.url === '/config/check') {
const { config } = record(await readJson(req));
return sendJson(res, 200, runtime.checkConfig(config));
}
if (req.method === 'POST' && req.url === '/apply') {
return sendJson(res, 200, await runtime.apply());
}
if (req.method === 'POST' && req.url === '/restart') {
return sendJson(res, 200, await runtime.restart());
}
if (req.method === 'POST' && req.url === '/stop') {
return sendJson(res, 200, await runtime.stop());
}
return sendJson(res, 404, { error: 'Не найдено' });
} catch (error) {
return sendJson(res, 500, { error: errorMessage(error) });
}
});
fs.mkdirSync(path.dirname(socketPath), { recursive: true });
fs.rmSync(socketPath, { force: true });
server.listen(socketPath, async () => {
fs.chmodSync(socketPath, 0o660);
try {
await runtime.apply();
} catch (error) {
console.warn(`[dataplane] sing-box не запущен: ${errorMessage(error)}`);
} finally {
ready = true;
if (settings.deviceTrafficAccountingEnabled) {
setImmediate(() => {
traffic.refresh()
.catch((error: unknown) => console.warn(`[dataplane] traffic counters не запущены: ${errorMessage(error)}`));
});
trafficTimer = setInterval(() => {
traffic.refresh().catch((error: unknown) => console.warn(`[dataplane] traffic counters не обновлены: ${errorMessage(error)}`));
}, 15_000);
trafficTimer.unref();
}
setImmediate(() => {
domainTraffic.refresh()
.catch((error: unknown) => console.warn(`[dataplane] domain traffic не запущен: ${errorMessage(error)}`));
});
// ponytail: snapshots can miss connections shorter than 2s; switch to an upstream close-event API if sing-box adds one.
domainTrafficTimer = setInterval(() => {
domainTraffic.refresh()
.catch((error: unknown) => console.warn(`[dataplane] domain traffic не обновлён: ${errorMessage(error)}`));
}, 2_000);
domainTrafficTimer.unref();
console.log(`[dataplane] control socket: ${socketPath}`);
}
});
let shuttingDown = false;
async function shutdown() {
if (shuttingDown) return;
shuttingDown = true;
ready = false;
if (trafficTimer) clearInterval(trafficTimer);
if (domainTrafficTimer) clearInterval(domainTrafficTimer);
await runtime.shutdown();
server.close(() => {
fs.rmSync(socketPath, { force: true });
process.exit(0);
});
}
process.on('SIGTERM', shutdown);
process.on('SIGINT', shutdown);
+100
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@@ -0,0 +1,100 @@
import http from 'node:http';
import { HarborError } from '../shared/errors.js';
type SendDataplaneRequest = (
socketPath: string,
pathname: string,
method?: string,
body?: unknown,
timeoutMs?: number,
) => Promise<unknown>;
function record(value: unknown): Record<string, unknown> {
return value && typeof value === 'object' ? value as Record<string, unknown> : {};
}
function request(
socketPath: string,
pathname: string,
method = 'GET',
body: unknown = null,
timeoutMs = 6000,
): Promise<unknown> {
return new Promise((resolve, reject) => {
const encoded = body == null ? null : JSON.stringify(body);
const req = http.request({
socketPath,
path: pathname,
method,
headers: encoded ? {
'content-type': 'application/json',
'content-length': Buffer.byteLength(encoded),
} : {},
}, (res) => {
const chunks: Buffer[] = [];
res.on('data', (chunk: Buffer) => chunks.push(chunk));
res.on('end', () => {
let body: unknown = {};
try {
body = JSON.parse(Buffer.concat(chunks).toString('utf8') || '{}');
} catch {
return reject(new Error('Dataplane вернул невалидный JSON'));
}
if ((res.statusCode || 500) >= 400) {
return reject(new Error(String(record(body).error || `Dataplane HTTP ${res.statusCode}`)));
}
resolve(body);
});
});
req.on('error', reject);
req.setTimeout(timeoutMs, () => req.destroy(new Error(`Dataplane не ответил за ${Math.ceil(timeoutMs / 1000)} секунд`)));
req.end(encoded);
});
}
export function createDataplaneClient(socketPath: string, send: SendDataplaneRequest = request) {
let current: Record<string, unknown> = { running: false, startedAt: null };
const update = async (pathname: string, method: string) => {
try {
current = record(await send(socketPath, pathname, method));
return current;
} catch (cause) {
if (pathname === '/apply' || pathname === '/restart') {
throw new HarborError('PROCESS_START_FAILED', { cause });
}
throw cause;
}
};
return {
get running() { return Boolean(current.running); },
get startedAt() { return current.startedAt || null; },
refresh: () => update('/status', 'GET'),
observeDevices: () => send(socketPath, '/devices', 'GET'),
observeTraffic: () => send(socketPath, '/device-traffic', 'GET'),
observeDomainTraffic: () => send(socketPath, '/domain-traffic', 'GET'),
observeDevicePolicy: () => send(socketPath, '/device-policy', 'GET'),
applyDevicePolicies: (devices: unknown) => send(socketPath, '/device-policy', 'PUT', { devices }),
runConnectivityDiagnostics: async (services: unknown = [], target: unknown = null) => {
try {
return await send(socketPath, '/diagnostics/connectivity', 'POST', { services, target }, 25_000);
} catch (cause) {
throw new HarborError('DIAGNOSTICS_FAILED', { cause });
}
},
checkConfig: (config: unknown) => send(socketPath, '/config/check', 'POST', { config }, 15_000),
runFailoverProbe: (role: 'primary' | 'reserve', services: unknown, target: unknown, timeoutMs: number) => (
send(socketPath, '/failover/probe', 'POST', { role, services, target, timeoutMs }, timeoutMs + 10_000)
),
readFailoverSelector: () => send(socketPath, '/failover/selector', 'GET'),
selectFailoverRole: (role: 'primary' | 'reserve') => send(socketPath, '/failover/selector', 'PUT', { role }),
setFailoverActivityEnabled: (enabled: boolean) => send(socketPath, '/failover/activity', 'PUT', { enabled }),
readFailoverActivity: (thresholdBytesPerSecond: number) => (
send(socketPath, '/failover/activity/read', 'POST', { thresholdBytesPerSecond })
),
apply: () => update('/apply', 'POST'),
restart: () => update('/restart', 'POST'),
stop: () => update('/stop', 'POST'),
shutdown: async () => current,
};
}
@@ -0,0 +1,376 @@
import {
profileById,
type StoredProfile,
type StoredState,
} from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
import { finishRollback, type RollbackStep } from '../../services/rollback.js';
import type { AppliedFailoverPolicy } from '../../../shared/failover.js';
import type { ActivityJournalEventInput } from '../../../shared/activityJournal.js';
interface ConnectionServiceDependencies {
state: {
read(): StoredState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
config: {
build(subscriptionConfig: unknown, selectedServerId: string, routeRules: StoredState['routeRules']): unknown;
read(): string | null;
write(value: unknown): void;
restore(value: string): void;
remove(): void;
};
runtime: {
isRunning(): Promise<boolean>;
start(): Promise<unknown>;
stop(): Promise<unknown>;
stopCommand(): Promise<RuntimeCommandResult>;
restartCommand(): Promise<RuntimeCommandResult>;
};
route?: { isGatewayDirect(): boolean };
failover?: {
build(state: StoredState, source?: 'desired' | 'applied'): {
config: unknown;
applied: AppliedFailoverPolicy;
primaryProfile: StoredProfile;
primaryServer: StoredProfile['servers'][number];
};
prepareActivation(role: 'primary' | 'reserve'): Promise<unknown>;
restoreAppliedActivation(state: StoredState): Promise<unknown>;
reconcile(): Promise<unknown>;
};
onEvent?: (event: ActivityJournalEventInput) => void;
serialize<T>(operation: () => Promise<T>): Promise<T>;
now(): Date;
}
export type RuntimeCommandResult =
| { ok: true; mutationStarted: true }
| { ok: false; mutationStarted: boolean; error: unknown };
export async function captureRuntimeCommand(
command: () => Promise<unknown>,
{ preMutationErrorCodes = [] }: { preMutationErrorCodes?: readonly string[] } = {},
): Promise<RuntimeCommandResult> {
try {
await command();
return { ok: true, mutationStarted: true };
} catch (error) {
const code = error && typeof error === 'object' && 'code' in error ? String(error.code) : '';
return { ok: false, mutationStarted: !preMutationErrorCodes.includes(code), error };
}
}
function requireExpectedRevision(state: StoredState, expectedRevision: unknown) {
if (expectedRevision === undefined) return;
if (!Number.isSafeInteger(expectedRevision) || Number(expectedRevision) !== state.revision) {
throw new HarborError('STATE_CONFLICT');
}
}
function resolveProfile(state: StoredState, profileId: unknown): StoredProfile {
const requested = String(profileId || '').trim();
const profile = profileById(state, requested)
|| (!requested && state.profiles.length === 1 ? state.profiles[0] : null);
if (!profile) throw new HarborError('PROFILE_NOT_FOUND');
return profile;
}
function withDesiredServer(state: StoredState, profile: StoredProfile, serverId: string) {
const nextProfile = { ...profile, desiredServerId: serverId };
return {
...state,
profiles: state.profiles.map((candidate) => candidate.id === profile.id ? nextProfile : candidate),
desiredProfileId: profile.id,
};
}
export function createConnectionService(dependencies: ConnectionServiceDependencies) {
const prepareFailoverActivation = async (role: 'primary' | 'reserve') => {
try {
await dependencies.failover?.prepareActivation(role);
} catch (cause) {
throw new HarborError('PROCESS_START_FAILED', { cause });
}
};
const activationTarget = (
state: StoredState,
applied: AppliedFailoverPolicy,
role: 'primary' | 'reserve',
) => {
const target = applied[role];
const profile = profileById(state, target.profileId);
const server = profile?.servers.find(({ id }) => id === target.serverId);
if (!profile || !server) throw new HarborError('SERVER_NOT_FOUND');
return { profile, server };
};
const finishConnectionRollback = async (error: unknown, steps: RollbackStep[], message: string) => {
try {
await finishRollback(error, steps, message);
} catch (cause) {
const code = cause && typeof cause === 'object' && 'code' in cause
&& /^[A-Z0-9_]{1,50}$/.test(String(cause.code)) ? String(cause.code) : 'UNKNOWN';
dependencies.onEvent?.({
type: 'connection.failed',
severity: 'error',
source: 'connection',
dedupeKey: `connection.failed:${dependencies.state.read().revision}:${code}`,
data: { errorCode: code },
});
throw cause;
}
};
const applyWithinQueue = async (
previousState: StoredState,
profile: StoredProfile,
serverIdValue: unknown,
selectedTagValue: unknown,
) => {
const requestedId = String(serverIdValue || '').trim();
const requestedTag = String(selectedTagValue || '').trim();
const resolvedId = requestedId || (() => {
const matches = profile.servers.filter((server) => server.label === requestedTag);
return matches.length === 1 ? matches[0].id : '';
})();
const selectedServer = profile.servers.find((server) => server.id === resolvedId);
if (!selectedServer) throw new HarborError('SERVER_NOT_FOUND');
if (!profile.subscriptionConfig) throw new HarborError('CONFIG_INVALID');
const wasRunning = await dependencies.runtime.isRunning();
if (wasRunning && previousState.failoverPolicy?.enabled) {
dependencies.state.update((state) => withDesiredServer(state, profile, selectedServer.id));
return { profileId: profile.id, serverId: selectedServer.id, selectedTag: selectedServer.label };
}
if (dependencies.route?.isGatewayDirect()) {
dependencies.state.update((state) => withDesiredServer(state, profile, selectedServer.id));
return { profileId: profile.id, serverId: selectedServer.id, selectedTag: selectedServer.label };
}
const failoverCandidate = previousState.failoverPolicy?.enabled
? dependencies.failover?.build(previousState, wasRunning ? 'applied' : 'desired')
: null;
const nextConfig = failoverCandidate?.config || dependencies.config.build(
profile.subscriptionConfig,
selectedServer.id,
previousState.routeRules,
);
const previousConfig = dependencies.config.read();
let configMutationStarted = false;
let runtimeMutationStarted = false;
let stateCommitStarted = false;
try {
configMutationStarted = true;
dependencies.config.write(nextConfig);
runtimeMutationStarted = true;
await dependencies.runtime.start();
if (failoverCandidate) await prepareFailoverActivation('primary');
stateCommitStarted = true;
dependencies.state.update((state) => ({
...withDesiredServer(state, profile, selectedServer.id),
connectionDesired: 'running',
appliedProfileId: failoverCandidate?.primaryProfile.id || profile.id,
appliedServerId: failoverCandidate?.primaryServer.id || selectedServer.id,
appliedServerSnapshot: failoverCandidate?.primaryServer || selectedServer,
appliedFailoverPolicy: failoverCandidate?.applied || null,
appliedAt: dependencies.now().toISOString(),
appliedRouteRules: state.routeRules,
}));
} catch (error) {
await finishConnectionRollback(error, [
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
...(configMutationStarted ? [{
run: () => previousConfig === null
? dependencies.config.remove()
: dependencies.config.restore(previousConfig),
}] : []),
...(runtimeMutationStarted ? [{
run: async () => {
if (!wasRunning) return dependencies.runtime.stop();
await dependencies.runtime.start();
await dependencies.failover?.restoreAppliedActivation(previousState);
},
runtime: true,
}] : []),
], 'Connection rollback failed');
}
await dependencies.failover?.reconcile();
dependencies.onEvent?.({
type: 'connection.started',
severity: 'info',
source: 'connection',
dedupeKey: `connection.started:${dependencies.state.read().revision}`,
data: {
profileLabel: failoverCandidate?.primaryProfile.label || profile.label,
serverLabel: failoverCandidate?.primaryServer.label || selectedServer.label,
},
});
return { profileId: profile.id, serverId: selectedServer.id, selectedTag: selectedServer.label };
};
const apply = (
profileId: unknown,
serverId: unknown,
selectedTag: unknown = '',
expectedRevision?: unknown,
) => dependencies.serialize(async () => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
return applyWithinQueue(state, resolveProfile(state, profileId), serverId, selectedTag);
});
const activate = (profileId: unknown, expectedRevision?: unknown) => (
dependencies.serialize(async () => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
const profile = resolveProfile(state, profileId);
const selectedServer = profile.servers.find((server) => server.id === profile.desiredServerId);
if (!selectedServer) throw new HarborError('SERVER_NOT_FOUND');
const running = await dependencies.runtime.isRunning();
if (!running || dependencies.route?.isGatewayDirect()) {
if (state.desiredProfileId !== profile.id) {
dependencies.state.update((current) => ({ ...current, desiredProfileId: profile.id }));
}
return { profileId: profile.id, serverId: selectedServer.id, selectedTag: selectedServer.label };
}
return applyWithinQueue(state, profile, selectedServer.id, '');
})
);
const stop = () => dependencies.serialize(async () => {
const previousState = dependencies.state.read();
let wasRunning: boolean | null = null;
try {
wasRunning = await dependencies.runtime.isRunning();
} catch {}
let runtimeMutationStarted = false;
let stateCommitStarted = false;
try {
const command = await dependencies.runtime.stopCommand();
runtimeMutationStarted = command.mutationStarted;
if (!command.ok) throw command.error;
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
connectionDesired: 'stopped',
appliedProfileId: '',
appliedServerId: '',
appliedServerSnapshot: null,
appliedFailoverPolicy: null,
}));
} catch (error) {
await finishConnectionRollback(error, [
...(runtimeMutationStarted && wasRunning !== null ? [{
run: async () => {
if (!wasRunning) return dependencies.runtime.stop();
await dependencies.runtime.start();
await dependencies.failover?.restoreAppliedActivation(previousState);
},
runtime: true,
}] : []),
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Connection rollback failed');
}
await dependencies.failover?.reconcile();
dependencies.onEvent?.({
type: 'connection.stopped',
severity: 'info',
source: 'connection',
dedupeKey: `connection.stopped:${dependencies.state.read().revision}`,
data: {},
});
});
const restart = () => dependencies.serialize(async () => {
const previousState = dependencies.state.read();
const wasRunning = await dependencies.runtime.isRunning();
const targetProfileId = wasRunning
? previousState.appliedProfileId
: previousState.desiredProfileId;
const targetServerId = wasRunning
? previousState.appliedServerId
: resolveProfile(previousState, targetProfileId).desiredServerId;
const profile = resolveProfile(previousState, targetProfileId);
const server = profile.servers.find((candidate) => candidate.id === targetServerId)
|| (previousState.appliedServerSnapshot?.id === targetServerId
? previousState.appliedServerSnapshot
: null);
if (!server || !profile.subscriptionConfig) throw new HarborError('CONFIG_INVALID');
const failoverCandidate = previousState.failoverPolicy?.enabled
? dependencies.failover?.build(previousState, wasRunning ? 'applied' : 'desired')
: null;
const activationRole = failoverCandidate && wasRunning
&& previousState.appliedProfileId === failoverCandidate.applied.reserve.profileId
&& previousState.appliedServerId === failoverCandidate.applied.reserve.serverId
? 'reserve' as const
: 'primary' as const;
const failoverTarget = failoverCandidate
? activationTarget(previousState, failoverCandidate.applied, activationRole)
: null;
const candidateConfig = failoverCandidate?.config || dependencies.config.build(
profile.subscriptionConfig,
server.id,
previousState.routeRules,
);
const previousConfig = dependencies.config.read();
let configMutationStarted = false;
let runtimeMutationStarted = false;
let stateCommitStarted = false;
try {
configMutationStarted = true;
dependencies.config.write(candidateConfig);
const command = await dependencies.runtime.restartCommand();
runtimeMutationStarted = command.mutationStarted;
if (!command.ok) throw command.error;
if (failoverCandidate) await prepareFailoverActivation(activationRole);
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
desiredProfileId: wasRunning ? state.desiredProfileId : profile.id,
appliedProfileId: failoverTarget?.profile.id || profile.id,
appliedServerId: failoverTarget?.server.id || server.id,
appliedServerSnapshot: failoverTarget?.server || server,
appliedFailoverPolicy: failoverCandidate?.applied || null,
connectionDesired: 'running',
appliedRouteRules: dependencies.route?.isGatewayDirect() ? [] : state.routeRules,
}));
} catch (error) {
await finishConnectionRollback(error, [
...(configMutationStarted ? [{
run: () => previousConfig === null
? dependencies.config.remove()
: dependencies.config.restore(previousConfig),
}] : []),
...(runtimeMutationStarted ? [{
run: async () => {
if (!wasRunning) return dependencies.runtime.stop();
await dependencies.runtime.start();
await dependencies.failover?.restoreAppliedActivation(previousState);
},
runtime: true,
}] : []),
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Connection rollback failed');
}
await dependencies.failover?.reconcile();
dependencies.onEvent?.({
type: 'connection.started',
severity: 'info',
source: 'connection',
dedupeKey: `connection.started:${dependencies.state.read().revision}`,
data: {
profileLabel: failoverTarget?.profile.label || profile.label,
serverLabel: failoverTarget?.server.label || server.label,
},
});
});
return { apply, activate, stop, restart };
}
export type ConnectionService = ReturnType<typeof createConnectionService>;
+6
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@@ -0,0 +1,6 @@
export {
captureRuntimeCommand,
createConnectionService,
type RuntimeCommandResult,
type ConnectionService,
} from './connectionService.js';
@@ -0,0 +1,92 @@
import { isDeepStrictEqual } from 'node:util';
import {
normalizeDiagnosticSettings,
type DiagnosticSettings,
} from '../../../shared/connectivityDiagnostics.js';
import type { HarborServer, StoredProfile, StoredState } from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
interface DiagnosticState {
desiredProfileId?: unknown;
appliedProfileId?: unknown;
appliedServerId?: unknown;
appliedServerSnapshot?: HarborServer | null;
profiles?: StoredProfile[];
revision?: number;
diagnostics?: DiagnosticSettings;
}
interface DiagnosticsResult extends Record<string, unknown> {
vpn?: Record<string, unknown>;
}
interface ConnectivityDiagnosticsDependencies {
state: {
read(): DiagnosticState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
runDiagnostics(services: unknown, target: unknown): Promise<unknown>;
}
function diagnosticsResult(value: unknown): DiagnosticsResult {
if (!value || typeof value !== 'object' || Array.isArray(value)) {
throw new TypeError('Diagnostics adapter returned an invalid result');
}
return value as DiagnosticsResult;
}
function selectedServer(state: DiagnosticState) {
const profiles = Array.isArray(state.profiles) ? state.profiles : [];
const appliedProfile = profiles.find((profile) => profile.id === state.appliedProfileId);
const applied = appliedProfile?.servers.find((server) => server.id === state.appliedServerId)
|| (state.appliedServerSnapshot?.id === state.appliedServerId
? state.appliedServerSnapshot
: null);
if (state.appliedServerId) return applied;
const desiredProfile = profiles.find((profile) => profile.id === state.desiredProfileId);
return desiredProfile?.servers.find((server) => server.id === desiredProfile.desiredServerId) || null;
}
export function createConnectivityDiagnosticsUseCase(
dependencies: ConnectivityDiagnosticsDependencies,
) {
return {
async run(target: unknown) {
const state = dependencies.state.read();
const selected = selectedServer(state);
const server = selected ? { id: selected.id, label: selected.label } : null;
const services = normalizeDiagnosticSettings(state.diagnostics).customServices;
const result = diagnosticsResult(await dependencies.runDiagnostics(services, target));
return {
...result,
vpn: {
...result.vpn,
server,
},
};
},
updateSettings(settings: unknown, expectedRevision: unknown) {
if (!Number.isSafeInteger(expectedRevision) || Number(expectedRevision) < 0) {
throw new HarborError('REQUEST_INVALID');
}
let diagnostics: DiagnosticSettings;
try {
const requested = settings && typeof settings === 'object' && !Array.isArray(settings)
? settings as Record<string, unknown>
: {};
diagnostics = normalizeDiagnosticSettings({ ...requested, configured: true }, { strict: true });
} catch (cause) {
throw new HarborError('REQUEST_INVALID', { cause });
}
const current = dependencies.state.read();
if (current.revision !== expectedRevision) throw new HarborError('STATE_CONFLICT');
if (isDeepStrictEqual(current.diagnostics, diagnostics)) return;
dependencies.state.update((state) => ({ ...state, diagnostics }));
},
};
}
export type ConnectivityDiagnosticsUseCase = ReturnType<
typeof createConnectivityDiagnosticsUseCase
>;
+4
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@@ -0,0 +1,4 @@
export {
createConnectivityDiagnosticsUseCase,
type ConnectivityDiagnosticsUseCase,
} from './connectivityDiagnosticsUseCase.js';
@@ -0,0 +1,728 @@
import crypto from 'node:crypto';
import {
createIdleFailoverSnapshot,
isFailoverConfigured,
nextFailoverDecision,
normalizeFailoverPolicy,
type AppliedFailoverPolicy,
type FailoverDecisionMemory,
type FailoverHealth,
type FailoverPolicy,
type FailoverRole,
type FailoverSnapshot,
} from '../../../shared/failover.js';
import type { HarborServer, StoredState } from '../../../shared/contracts/state.js';
import type { ActivityJournalEventInput } from '../../../shared/activityJournal.js';
import { HarborError } from '../../../shared/errors.js';
interface Candidate {
config: unknown;
applied: AppliedFailoverPolicy;
}
interface FailoverServiceDependencies {
state: {
read(): StoredState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
runtime: { isRunning(): Promise<boolean> };
dataplane: {
checkConfig(config: unknown): Promise<unknown>;
runFailoverProbe(role: FailoverRole, services: unknown, target: string, timeoutMs: number): Promise<unknown>;
readFailoverSelector(): Promise<unknown>;
selectFailoverRole(role: FailoverRole): Promise<unknown>;
setFailoverActivityEnabled(enabled: boolean): Promise<unknown>;
readFailoverActivity(thresholdBytesPerSecond: number): Promise<unknown>;
};
buildCandidate(state: StoredState): Candidate;
serialize<T>(operation: () => Promise<T>): Promise<T>;
scheduler?: {
setTimeout(callback: () => void, intervalMs: number): NodeJS.Timeout;
clearTimeout(timer: NodeJS.Timeout): void;
};
now?: () => Date;
onWarning?: (error: unknown) => void;
onSwitch?: (from: FailoverRole, to: FailoverRole, reason: string) => void;
onEvent?: (event: ActivityJournalEventInput) => void;
}
const record = (value: unknown): Record<string, unknown> => (
value && typeof value === 'object' && !Array.isArray(value) ? value as Record<string, unknown> : {}
);
function targetServer(state: StoredState, role: FailoverRole): HarborServer | null {
const target = state.appliedFailoverPolicy?.[role] || state.failoverPolicy[role];
return state.profiles.find(({ id }) => id === target.profileId)
?.servers.find(({ id }) => id === target.serverId) || null;
}
function currentRole(state: StoredState): FailoverRole | null {
const applied = state.appliedFailoverPolicy;
if (!applied) return null;
for (const role of ['primary', 'reserve'] as const) {
if (
state.appliedProfileId === applied[role].profileId
&& state.appliedServerId === applied[role].serverId
) return role;
}
return null;
}
function probeHealth(value: unknown): boolean {
const vpn = record(record(value).vpn);
const sites = Array.isArray(vpn.sites) ? vpn.sites.map(record) : [];
return sites.length === 1 && sites[0].status === 'available';
}
function safeErrorCode(error: unknown) {
const code = error && typeof error === 'object' && 'code' in error ? String(error.code) : '';
return /^[A-Z0-9_]{1,50}$/.test(code) ? code : 'UNKNOWN';
}
export function createFailoverService(dependencies: FailoverServiceDependencies) {
const scheduler = dependencies.scheduler || {
setTimeout: (callback: () => void, intervalMs: number) => setTimeout(callback, intervalMs),
clearTimeout: (timer: NodeJS.Timeout) => clearTimeout(timer),
};
const now = dependencies.now || (() => new Date());
const epoch = crypto.randomUUID();
let sequence = 0;
let generation = 0;
let timer: NodeJS.Timeout | null = null;
let collectorEnabled: boolean | null = null;
let roundPromise: Promise<void> | null = null;
let roundGeneration: number | null = null;
let decisionMemory: FailoverDecisionMemory | undefined;
const healthMemory: Record<FailoverRole, 'healthy' | 'unhealthy' | undefined> = {
primary: undefined,
reserve: undefined,
};
function clearHealthMemory() {
healthMemory.primary = undefined;
healthMemory.reserve = undefined;
}
function recordHealthTransition(
role: FailoverRole,
health: FailoverHealth,
capturedGeneration?: number,
) {
if (capturedGeneration !== undefined && capturedGeneration !== generation) return;
if (health !== 'healthy' && health !== 'unhealthy') return;
const previous = healthMemory[role];
healthMemory[role] = health;
if (previous === health) return;
if (previous === undefined && health === 'healthy') return;
const type = health === 'unhealthy'
? role === 'primary' ? 'failover.primary_unavailable' : 'failover.reserve_unavailable'
: role === 'primary' ? 'failover.primary_recovered' : 'failover.reserve_recovered';
dependencies.onEvent?.({
type,
severity: health === 'unhealthy' ? 'warning' : 'info',
source: 'failover',
dedupeKey: null,
data: {
role,
reason: health === 'unhealthy' ? 'probe-failed' : 'probe-recovered',
},
});
}
let snapshot = createIdleFailoverSnapshot(dependencies.state.read().failoverPolicy, epoch, sequence);
function appliedMatchesDesired(state: StoredState) {
if (!state.appliedFailoverPolicy) return false;
try {
return JSON.stringify(dependencies.buildCandidate(state).applied)
=== JSON.stringify(state.appliedFailoverPolicy);
} catch {
return false;
}
}
function publish(next: FailoverSnapshot) {
sequence += 1;
snapshot = { ...next, observationEpoch: epoch, observationSequence: sequence };
}
function clearTimer() {
if (timer) scheduler.clearTimeout(timer);
timer = null;
}
function schedule(delay: number) {
clearTimer();
timer = scheduler.setTimeout(() => {
timer = null;
void runRound().catch(dependencies.onWarning);
}, delay);
timer.unref?.();
}
async function disableCollector() {
if (collectorEnabled === false) return;
await dependencies.dataplane.setFailoverActivityEnabled(false);
collectorEnabled = false;
}
async function deactivate(policy: FailoverPolicy, passiveRole: FailoverRole | null = null) {
generation += 1;
clearTimer();
decisionMemory = undefined;
clearHealthMemory();
await disableCollector();
const idle = createIdleFailoverSnapshot(policy, epoch, sequence);
if (passiveRole) {
idle.activation = 'passive-loaded';
idle.currentRole = passiveRole;
idle.reason = 'disabled';
}
publish(idle);
}
function activeSnapshot(state: StoredState, status: FailoverSnapshot['status'] = 'observing'): FailoverSnapshot {
const role = state.failoverRuntimeState.reasonCode === 'selector-unknown' ? null : currentRole(state);
const channel = (target: typeof state.failoverPolicy.primary) => ({
target,
health: 'unknown' as FailoverHealth,
failingServiceIds: [],
checkedAt: null,
stateSince: null,
});
return {
observationEpoch: epoch,
observationSequence: sequence,
configured: isFailoverConfigured(state.failoverPolicy),
enabled: state.failoverPolicy.enabled,
paused: state.failoverPolicy.paused,
activation: appliedMatchesDesired(state) ? 'active' : 'pending',
currentRole: role || 'other',
status,
primary: channel(state.appliedFailoverPolicy?.primary || state.failoverPolicy.primary),
reserve: channel(state.appliedFailoverPolicy?.reserve || state.failoverPolicy.reserve),
nextDecisionAt: null,
reason: null,
trafficActivity: null,
policy: state.failoverPolicy,
};
}
async function reconcile() {
let state = dependencies.state.read();
const policy = state.failoverPolicy;
if (!policy.enabled) {
const role = currentRole(state);
const passiveRole = role && await dependencies.runtime.isRunning() ? role : null;
return deactivate(policy, passiveRole);
}
const running = await dependencies.runtime.isRunning();
if (!running || !state.appliedFailoverPolicy || !currentRole(state)) {
generation += 1;
clearHealthMemory();
clearTimer();
await disableCollector();
const pending = activeSnapshot(state, 'idle');
pending.activation = running ? 'pending' : 'inactive';
pending.reason = running ? 'pending-activation' : 'vpn-stopped';
publish(pending);
return;
}
const role = currentRole(state)!;
const selected = record(await dependencies.dataplane.readFailoverSelector());
if (selected.role !== role) await dependencies.dataplane.selectFailoverRole(role);
if (state.failoverRuntimeState.reasonCode === 'selector-unknown') {
state = dependencies.state.update((current) => ({
...current,
failoverRuntimeState: { ...current.failoverRuntimeState, reasonCode: null },
}));
}
if (collectorEnabled !== true) {
await dependencies.dataplane.setFailoverActivityEnabled(true);
collectorEnabled = true;
}
generation += 1;
const active = activeSnapshot(state);
if (active.activation === 'pending') active.reason = 'pending-activation';
publish(active);
schedule(0);
}
async function reconcileAfterCommit() {
try {
await reconcile();
} catch (error) {
dependencies.onWarning?.(error);
const failed = activeSnapshot(dependencies.state.read(), 'error');
failed.reason = 'reconcile-failed';
publish(failed);
}
}
async function assessRole(role: FailoverRole, policy: FailoverPolicy) {
const custom = dependencies.state.read().diagnostics.customServices;
const results = await Promise.all(policy.checks.map(async (check) => {
try {
return {
id: check.serviceId,
ok: probeHealth(await dependencies.dataplane.runFailoverProbe(
role,
custom,
`site:${check.serviceId}`,
check.timeoutMs,
)),
};
} catch {
return { id: check.serviceId, ok: null };
}
}));
return {
health: results.some(({ ok }) => ok === null)
? 'unknown' as const
: results.every(({ ok }) => ok) ? 'healthy' as const : 'unhealthy' as const,
failingServiceIds: results.filter(({ ok }) => ok === false).map(({ id }) => id),
};
}
async function switchWithinQueue(role: FailoverRole, reason: string) {
const before = dependencies.state.read();
const from = currentRole(before);
if (!from || from === role) return;
try {
await dependencies.dataplane.selectFailoverRole(role);
const server = targetServer(before, role);
if (!server) throw new HarborError('SERVER_NOT_FOUND');
const target = before.appliedFailoverPolicy![role];
const switchedAt = now().toISOString();
const cutoff = now().getTime() - before.failoverPolicy.flapProtection.windowMs;
const history = role === 'reserve'
? [...before.failoverRuntimeState.failoverHistory.filter((value) => Date.parse(value) >= cutoff), switchedAt]
: before.failoverRuntimeState.failoverHistory.filter((value) => Date.parse(value) >= cutoff);
const quarantine = history.length >= before.failoverPolicy.flapProtection.count
? new Date(now().getTime() + before.failoverPolicy.flapProtection.quarantineMs).toISOString()
: before.failoverRuntimeState.primaryQuarantineUntil;
dependencies.state.update((state) => ({
...state,
appliedProfileId: target.profileId,
appliedServerId: target.serverId,
appliedServerSnapshot: server,
failoverPolicy: reason === 'manual'
? state.failoverPolicy
: role === 'primary' ? { ...state.failoverPolicy, paused: false } : state.failoverPolicy,
failoverRuntimeState: {
...state.failoverRuntimeState,
lastSwitchAt: switchedAt,
holdUntil: role === 'reserve'
? new Date(now().getTime() + state.failoverPolicy.minimumReserveMs).toISOString()
: null,
primaryQuarantineUntil: quarantine,
failoverHistory: history,
reasonCode: reason,
},
}));
} catch (error) {
try {
await dependencies.dataplane.selectFailoverRole(from);
} catch (rollback) {
generation += 1;
clearTimer();
decisionMemory = undefined;
dependencies.state.update((state) => ({
...state,
failoverPolicy: { ...state.failoverPolicy, paused: true },
failoverRuntimeState: { ...state.failoverRuntimeState, reasonCode: 'selector-unknown' },
}));
const failed = activeSnapshot(dependencies.state.read(), 'error');
failed.reason = 'selector-unknown';
publish(failed);
throw new AggregateError([error, rollback], 'Failover selector rollback failed');
}
throw error;
}
dependencies.onSwitch?.(from, role, reason);
dependencies.onEvent?.({
type: 'failover.switched',
severity: 'info',
source: 'failover',
dedupeKey: `failover.switched:${dependencies.state.read().revision}`,
data: {
fromRole: from,
toRole: role,
primaryLabel: targetServer(dependencies.state.read(), 'primary')?.label || 'Primary',
reserveLabel: targetServer(dependencies.state.read(), 'reserve')?.label || 'Reserve',
reason,
manual: reason === 'manual',
},
});
}
async function performRound(capturedGeneration: number) {
const prepared = await dependencies.serialize(async () => {
const state = dependencies.state.read();
const role = currentRole(state);
if (
capturedGeneration !== generation
|| !state.failoverPolicy.enabled
|| !state.appliedFailoverPolicy
|| !role
) return null;
const selected = record(await dependencies.dataplane.readFailoverSelector());
if (selected.role !== role) await dependencies.dataplane.selectFailoverRole(role);
await dependencies.dataplane.setFailoverActivityEnabled(true);
collectorEnabled = true;
const latest = dependencies.state.read();
return capturedGeneration === generation
&& latest.failoverPolicy.enabled
&& currentRole(latest) === role
? { state: latest, policy: latest.failoverPolicy, role }
: null;
});
if (!prepared) return;
const { state, policy, role } = prepared;
const checkedAt = now().toISOString();
const previousSnapshot = snapshot;
publish({ ...snapshot, reason: 'checking-channels' });
let primary;
let reserve;
try {
[primary, reserve] = await Promise.all([
assessRole('primary', policy),
assessRole('reserve', policy),
]);
} catch {
primary = { health: 'unknown' as const, failingServiceIds: [] };
reserve = { health: 'unknown' as const, failingServiceIds: [] };
}
if (capturedGeneration !== generation || !dependencies.state.read().failoverPolicy.enabled) return;
recordHealthTransition('primary', primary.health, capturedGeneration);
recordHealthTransition('reserve', reserve.health, capturedGeneration);
const activityResponse = record(await dependencies.dataplane.readFailoverActivity(
policy.trafficGuard.thresholdBytesPerSecond,
));
if (capturedGeneration !== generation || !dependencies.state.read().failoverPolicy.enabled) return;
const activity = record(activityResponse.activity);
const observedAt = typeof activity.observedAt === 'string' ? Date.parse(activity.observedAt) : NaN;
const activityState = Number.isFinite(observedAt) && now().getTime() - observedAt <= 4_000
&& (activity.state === 'active' || activity.state === 'quiet')
? activity.state
: 'unknown';
const decision = nextFailoverDecision({
now: now().getTime(),
policy,
currentRole: role,
primaryHealth: primary.health,
reserveHealth: reserve.health,
activity: activityState,
holdUntil: Date.parse(state.failoverRuntimeState.holdUntil || '') || null,
primaryQuarantineUntil: Date.parse(state.failoverRuntimeState.primaryQuarantineUntil || '') || null,
memory: decisionMemory,
});
decisionMemory = decision.memory;
const next = activeSnapshot(state, decision.status);
next.currentRole = role;
next.primary = {
...next.primary,
...primary,
checkedAt,
stateSince: previousSnapshot.primary.health === primary.health
? previousSnapshot.primary.stateSince || checkedAt
: checkedAt,
};
next.reserve = {
...next.reserve,
...reserve,
checkedAt,
stateSince: previousSnapshot.reserve.health === reserve.health
? previousSnapshot.reserve.stateSince || checkedAt
: checkedAt,
};
next.reason = decision.reason;
next.nextDecisionAt = decision.nextDecisionAt ? new Date(decision.nextDecisionAt).toISOString() : null;
next.trafficActivity = activityState === 'unknown' ? {
state: 'unknown',
observedAt: Number.isFinite(observedAt) ? new Date(observedAt).toISOString() : checkedAt,
windowMs: 10_000,
thresholdBytesPerSecond: policy.trafficGuard.thresholdBytesPerSecond,
totalBytesPerSecond: 0,
transmittingConnections: 0,
quietSince: null,
switchTarget: decision.switchTo,
blockers: [],
} : {
state: activityState,
observedAt: String(activity.observedAt),
windowMs: Number(activity.windowMs) || 10_000,
thresholdBytesPerSecond: policy.trafficGuard.thresholdBytesPerSecond,
totalBytesPerSecond: Number(activity.totalBytesPerSecond) || 0,
transmittingConnections: Number(activity.transmittingConnections) || 0,
quietSince: typeof activity.quietSince === 'string' ? activity.quietSince : null,
switchTarget: decision.switchTo,
blockers: (Array.isArray(activity.blockers) ? activity.blockers : []).slice(0, 3) as FailoverSnapshot['trafficActivity'] extends infer T ? T extends { blockers: infer B } ? B : never : never,
};
publish(next);
if (decision.status === 'waiting-for-idle' && previousSnapshot.status !== 'waiting-for-idle') {
dependencies.onEvent?.({
type: 'failover.waiting_for_idle',
severity: 'info',
source: 'failover',
dedupeKey: `failover.waiting_for_idle:${state.revision}:${role}:${decision.reason}`,
data: { fromRole: role, toRole: decision.switchTo || (role === 'primary' ? 'reserve' : 'primary'), reason: decision.reason },
});
}
if (decision.reason === 'both-unhealthy' && previousSnapshot.reason !== 'both-unhealthy') {
dependencies.onEvent?.({
type: 'failover.both_unhealthy',
severity: 'warning',
source: 'failover',
dedupeKey: `failover.both_unhealthy:${state.revision}`,
data: { reason: decision.reason },
});
}
if (decision.switchTo) {
try {
const switched = await dependencies.serialize(async () => {
const current = dependencies.state.read();
if (
capturedGeneration !== generation
|| !current.failoverPolicy.enabled
|| current.failoverPolicy.paused
|| currentRole(current) !== role
|| !current.appliedFailoverPolicy
) return false;
let freshPrimary;
let freshReserve;
try {
[freshPrimary, freshReserve] = await Promise.all([
assessRole('primary', current.failoverPolicy),
assessRole('reserve', current.failoverPolicy),
]);
} catch {
return false;
}
const healthStillAllowsSwitch = decision.switchTo === 'reserve'
? freshPrimary.health === 'unhealthy' && freshReserve.health === 'healthy'
: freshPrimary.health === 'healthy';
if (!healthStillAllowsSwitch || capturedGeneration !== generation) return false;
if (current.failoverPolicy.trafficGuard.enabled) {
const freshResponse = record(await dependencies.dataplane.readFailoverActivity(
current.failoverPolicy.trafficGuard.thresholdBytesPerSecond,
));
const freshActivity = record(freshResponse.activity);
const freshObservedAt = typeof freshActivity.observedAt === 'string'
? Date.parse(freshActivity.observedAt)
: NaN;
const freshQuietSince = typeof freshActivity.quietSince === 'string'
? Date.parse(freshActivity.quietSince)
: NaN;
if (
capturedGeneration !== generation
|| freshActivity.state !== 'quiet'
|| !Number.isFinite(freshObservedAt)
|| now().getTime() - freshObservedAt > 4_000
|| !Number.isFinite(freshQuietSince)
|| now().getTime() - freshQuietSince < current.failoverPolicy.trafficGuard.quietWindowMs
) return false;
}
await switchWithinQueue(decision.switchTo!, decision.reason);
return true;
});
if (!switched) {
const cancelled = activeSnapshot(dependencies.state.read(), 'observing');
cancelled.reason = 'revalidation-required';
publish(cancelled);
decisionMemory = undefined;
return;
}
} catch (error) {
const failed = activeSnapshot(dependencies.state.read(), 'error');
failed.reason = dependencies.state.read().failoverRuntimeState.reasonCode === 'selector-unknown'
? 'selector-unknown'
: 'switch-failed';
publish(failed);
dependencies.onEvent?.({
type: 'failover.switch_failed',
severity: 'error',
source: 'failover',
dedupeKey: `failover.switch_failed:${state.revision}:${role}:${decision.switchTo}`,
data: { fromRole: role, toRole: decision.switchTo, reason: decision.reason, errorCode: safeErrorCode(error) },
});
throw error;
}
if (capturedGeneration !== generation) return;
publish(activeSnapshot(dependencies.state.read(), decision.switchTo === 'reserve' ? 'reserve' : 'primary'));
decisionMemory = undefined;
}
}
async function runRound(): Promise<void> {
if (roundPromise) {
const pending = roundPromise;
if (roundGeneration === generation) return pending;
try {
await pending;
} catch {
// The original caller owns the stale round error; continue with current-generation work.
}
if (roundPromise && roundPromise !== pending) return roundPromise;
return runRound();
}
const capturedGeneration = generation;
let trackedPromise: Promise<void>;
trackedPromise = performRound(capturedGeneration).finally(() => {
if (roundPromise === trackedPromise) {
roundPromise = null;
roundGeneration = null;
}
if (capturedGeneration === generation && snapshot.reason === 'checking-channels') {
const failed = activeSnapshot(dependencies.state.read(), 'error');
failed.reason = 'health-unknown';
publish(failed);
}
const policy = dependencies.state.read().failoverPolicy;
if (capturedGeneration === generation && policy.enabled && dependencies.state.read().appliedFailoverPolicy) {
const decisionAt = snapshot.nextDecisionAt ? Date.parse(snapshot.nextDecisionAt) : NaN;
const decisionDelay = Number.isFinite(decisionAt)
? Math.max(250, decisionAt - now().getTime())
: policy.intervalMs;
schedule(Math.min(policy.intervalMs, decisionDelay));
}
});
roundPromise = trackedPromise;
roundGeneration = capturedGeneration;
return trackedPromise;
}
function save(value: unknown) {
return dependencies.serialize(async () => {
let policy: FailoverPolicy;
try {
policy = normalizeFailoverPolicy(value, { strict: true });
} catch (cause) {
throw new HarborError('REQUEST_INVALID', { cause });
}
if (policy.enabled && !isFailoverConfigured(policy)) throw new HarborError('REQUEST_INVALID');
const before = dependencies.state.read();
const candidateState = { ...before, failoverPolicy: policy };
if (policy.enabled) {
const candidate = dependencies.buildCandidate(candidateState);
await dependencies.dataplane.checkConfig(candidate.config);
}
dependencies.state.update((state) => {
const role = before.failoverPolicy.enabled && !policy.enabled ? currentRole(state) : null;
const target = role ? state.appliedFailoverPolicy?.[role] : null;
return {
...state,
failoverPolicy: policy,
...(target ? {
desiredProfileId: target.profileId,
profiles: state.profiles.map((profile) => profile.id === target.profileId
? { ...profile, desiredServerId: target.serverId }
: profile),
} : {}),
};
});
decisionMemory = undefined;
if (before.failoverPolicy.enabled !== policy.enabled) clearHealthMemory();
if (before.failoverPolicy.enabled !== policy.enabled) {
dependencies.onEvent?.({
type: policy.enabled ? 'failover.enabled' : 'failover.disabled',
severity: 'info',
source: 'failover',
dedupeKey: `failover.${policy.enabled ? 'enabled' : 'disabled'}:${dependencies.state.read().revision}`,
data: {},
});
}
await reconcileAfterCommit();
});
}
function pause(paused: boolean) {
return dependencies.serialize(async () => {
const before = dependencies.state.read();
if (!paused && (
!before.appliedFailoverPolicy
|| !targetServer(before, 'primary')
|| !targetServer(before, 'reserve')
)) throw new HarborError('REQUEST_INVALID');
dependencies.state.update((state) => ({
...state,
failoverPolicy: { ...state.failoverPolicy, paused },
}));
decisionMemory = undefined;
dependencies.onEvent?.({
type: paused ? 'failover.paused' : 'failover.resumed',
severity: 'info',
source: 'failover',
dedupeKey: `failover.${paused ? 'paused' : 'resumed'}:${dependencies.state.read().revision}`,
data: {},
});
await reconcileAfterCommit();
});
}
async function manualSwitch(role: FailoverRole) {
await dependencies.serialize(async () => {
const state = dependencies.state.read();
if (!state.failoverPolicy.enabled || !state.appliedFailoverPolicy || !currentRole(state)) {
throw new HarborError('REQUEST_INVALID');
}
await switchWithinQueue(role, 'manual');
});
await reconcileAfterCommit();
}
const prepareActivation = (role: FailoverRole) => dependencies.dataplane.selectFailoverRole(role);
async function restoreAppliedActivation(state: StoredState) {
if (!state.appliedFailoverPolicy) return;
const role = currentRole(state);
if (!role) throw new HarborError('CONFIG_INVALID');
await prepareActivation(role);
}
function checkNow() {
return dependencies.serialize(async () => {
const state = dependencies.state.read();
if (!state.failoverPolicy.enabled || !state.appliedFailoverPolicy || !currentRole(state)) {
throw new HarborError('REQUEST_INVALID');
}
const capturedGeneration = ++generation;
clearTimer();
const checkedAt = now().toISOString();
publish({ ...snapshot, reason: 'checking-channels' });
let primary;
let reserve;
try {
[primary, reserve] = await Promise.all([
assessRole('primary', state.failoverPolicy),
assessRole('reserve', state.failoverPolicy),
]);
} catch {
primary = { health: 'unknown' as const, failingServiceIds: [] };
reserve = { health: 'unknown' as const, failingServiceIds: [] };
}
if (capturedGeneration !== generation || !dependencies.state.read().failoverPolicy.enabled) return;
recordHealthTransition('primary', primary.health, capturedGeneration);
recordHealthTransition('reserve', reserve.health, capturedGeneration);
const next = activeSnapshot(dependencies.state.read(), 'observing');
next.primary = { ...next.primary, ...primary, checkedAt, stateSince: checkedAt };
next.reserve = { ...next.reserve, ...reserve, checkedAt, stateSince: checkedAt };
next.reason = 'manual-check';
publish(next);
schedule(state.failoverPolicy.intervalMs);
});
}
return {
snapshot: () => snapshot,
save,
pause,
manualSwitch,
checkNow,
prepareActivation,
restoreAppliedActivation,
reconcile,
runRound,
shutdown: () => deactivate(dependencies.state.read().failoverPolicy),
};
}
export type FailoverService = ReturnType<typeof createFailoverService>;
@@ -0,0 +1,362 @@
import { isDeepStrictEqual } from 'node:util';
import {
appliedProfile,
desiredProfile,
type GatewayAutoState,
type StoredState,
} from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
import type { RuntimeCommandResult } from '../connection/index.js';
import { finishRollback } from '../../services/rollback.js';
interface HostNetworkState {
gateway: string;
interface: string;
mac: string;
observedAt?: number;
}
interface VerifiedGateway {
gatewayId: string;
uiOrigin?: string;
verifiedAt?: string;
}
type TimerHandle = NodeJS.Timeout;
interface GatewayAutoServiceDependencies {
appMode: string;
state: {
read(): StoredState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
subscription: { readConfig(profileId: string): unknown | null };
config: {
build(
subscriptionConfig: unknown,
selectedServerId: string,
routeRules: StoredState['routeRules'],
gatewayAuto: GatewayAutoState,
): unknown;
read(): string | null;
write(value: unknown): void;
restore(value: string): void;
remove(): void;
};
runtime: {
isRunning(): boolean;
applyCommand(): Promise<RuntimeCommandResult>;
restoreRunning(): Promise<unknown>;
stopCommand(): Promise<RuntimeCommandResult>;
};
discovery: {
readHostNetwork(): HostNetworkState | null;
probeGateway(input: {
gateway: string;
subscriptionUrl: string;
}): Promise<VerifiedGateway>;
};
transition: {
createInitial(): GatewayAutoState;
applyPreference(state: GatewayAutoState, enabled: boolean): GatewayAutoState;
next(
current: GatewayAutoState,
input: {
network: HostNetworkState | null;
verifiedGateway?: VerifiedGateway | null;
error?: string;
},
): GatewayAutoState;
sameRoute(
previous: GatewayAutoState['gateway'] | HostNetworkState | null | undefined,
current: HostNetworkState | null | undefined,
): boolean;
};
serialize<T>(operation: () => Promise<T>): Promise<T>;
scheduler: {
setInterval(callback: () => void, intervalMs: number): TimerHandle;
clearInterval(timer: TimerHandle): void;
};
onRouteChange(state: GatewayAutoState): void;
onDiscoveryWarning(reason: string): void;
onTimerError(error: unknown): void;
}
interface CommitOptions {
reconfigure?: boolean;
persistEnabled?: boolean;
}
interface RefreshOptions {
reconfigure?: boolean;
}
function errorMessage(error: unknown) {
return error && typeof error === 'object' && 'message' in error && error.message
? String(error.message)
: 'Gateway presence check failed';
}
export function createGatewayAutoService(dependencies: GatewayAutoServiceDependencies) {
let current = dependencies.transition.createInitial();
let refreshPromise: Promise<GatewayAutoState> | null = null;
let discoveryTimer: TimerHandle | null = null;
const restoreConfig = (previous: string | null) => {
if (previous === null) dependencies.config.remove();
else dependencies.config.restore(previous);
};
const commitCandidate = async (
candidate: GatewayAutoState,
{ reconfigure = true, persistEnabled }: CommitOptions = {},
) => {
const previousGatewayAuto = current;
const stateChanged = !isDeepStrictEqual(previousGatewayAuto, candidate);
const modeChanged = previousGatewayAuto.mode !== candidate.mode;
const leavesGatewayDirect = previousGatewayAuto.mode === 'gateway-direct'
&& candidate.mode !== 'gateway-direct';
if (!stateChanged && persistEnabled === undefined) return current;
const previousState = dependencies.state.read();
const wasRunning = modeChanged ? dependencies.runtime.isRunning() : false;
const targetProfile = wasRunning
? appliedProfile(previousState)
: desiredProfile(previousState);
const targetServerId = wasRunning
? previousState.appliedServerId
: targetProfile?.desiredServerId || '';
const subscriptionConfig = modeChanged && targetProfile
? dependencies.subscription.readConfig(targetProfile.id)
: null;
const stopUnavailableTarget = async (cause: unknown) => {
let runtimeMutationStarted = false;
let gatewayAutoPublished = false;
let stateCommitStarted = false;
try {
const command = await dependencies.runtime.stopCommand();
runtimeMutationStarted = command.mutationStarted;
if (!command.ok) throw command.error;
current = candidate;
gatewayAutoPublished = true;
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
connectionDesired: 'stopped',
appliedProfileId: '',
appliedServerId: '',
appliedServerSnapshot: null,
...(persistEnabled === undefined ? {} : { gatewayAutoEnabled: persistEnabled }),
}));
} catch (error) {
await finishRollback(error, [
...(gatewayAutoPublished ? [{ run: () => { current = previousGatewayAuto; } }] : []),
...(runtimeMutationStarted ? [{
run: () => dependencies.runtime.restoreRunning(),
runtime: true,
}] : []),
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Gateway auto safe-stop rollback failed');
}
dependencies.onDiscoveryWarning(errorMessage(cause));
if (modeChanged) dependencies.onRouteChange(candidate);
throw cause;
};
if (modeChanged && wasRunning && (!targetProfile || !targetServerId || !subscriptionConfig)) {
if (leavesGatewayDirect) return stopUnavailableTarget(new HarborError('CONFIG_INVALID'));
throw new HarborError('CONFIG_INVALID');
}
let candidateConfig: unknown | null = null;
if (modeChanged && targetServerId && subscriptionConfig) {
try {
candidateConfig = dependencies.config.build(
subscriptionConfig,
targetServerId,
previousState.routeRules,
candidate,
);
} catch (error) {
const code = error && typeof error === 'object' && 'code' in error ? String(error.code) : '';
if (wasRunning && leavesGatewayDirect && ['CONFIG_INVALID', 'SERVER_NOT_FOUND'].includes(code)) {
return stopUnavailableTarget(error);
}
throw error;
}
}
const previousConfig = candidateConfig === null ? null : dependencies.config.read();
let configMutationStarted = false;
let runtimeMutationStarted = false;
let gatewayAutoPublished = false;
let stateCommitStarted = false;
try {
if (candidateConfig !== null) {
configMutationStarted = true;
dependencies.config.write(candidateConfig);
if (reconfigure && wasRunning) {
const command = await dependencies.runtime.applyCommand();
runtimeMutationStarted = command.mutationStarted;
if (!command.ok) throw command.error;
}
}
if (stateChanged) {
current = candidate;
gatewayAutoPublished = true;
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
...(modeChanged && wasRunning && reconfigure ? {
appliedRouteRules: candidate.mode === 'gateway-direct' ? [] : state.routeRules,
} : {}),
}));
}
if (persistEnabled !== undefined) {
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
gatewayAutoEnabled: persistEnabled,
}));
}
} catch (error) {
await finishRollback(error, [
...(gatewayAutoPublished ? [{ run: () => { current = previousGatewayAuto; } }] : []),
...(configMutationStarted ? [{ run: () => restoreConfig(previousConfig) }] : []),
...(wasRunning && runtimeMutationStarted ? [{
run: () => dependencies.runtime.restoreRunning(),
runtime: true,
}] : []),
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Gateway auto rollback failed');
}
if (modeChanged) dependencies.onRouteChange(candidate);
return current;
};
const runRefresh = async ({ reconfigure = true }: RefreshOptions) => {
const state = dependencies.state.read();
const profile = desiredProfile(state);
const subscriptionUrl = profile?.subscriptionUrl || '';
const network = subscriptionUrl
? dependencies.discovery.readHostNetwork()
: null;
if (!network) {
const discoveryError = 'macOS default gateway недоступен или устарел';
const discoveredState = dependencies.transition.next(current, {
network: null,
error: discoveryError,
});
const candidate = dependencies.transition.applyPreference(
subscriptionUrl
? { ...discoveredState, lastError: discoveryError }
: discoveredState,
state.gatewayAutoEnabled !== false,
);
return commitCandidate(candidate, { reconfigure });
}
if (
current.mode === 'gateway-direct' &&
!dependencies.transition.sameRoute(current.gateway, network)
) {
await commitCandidate(
dependencies.transition.next(current, { network }),
{ reconfigure },
);
}
let verifiedGateway: VerifiedGateway;
try {
verifiedGateway = await dependencies.discovery.probeGateway({
gateway: network.gateway,
subscriptionUrl,
});
} catch (error) {
const reason = errorMessage(error);
const latestState = dependencies.state.read();
const latestSubscriptionUrl = desiredProfile(latestState)?.subscriptionUrl || '';
const latestNetwork = latestSubscriptionUrl
? dependencies.discovery.readHostNetwork()
: null;
if (
latestSubscriptionUrl !== subscriptionUrl ||
!dependencies.transition.sameRoute(network, latestNetwork)
) {
return commitCandidate(dependencies.transition.createInitial(), { reconfigure });
}
if (current.lastError !== reason) dependencies.onDiscoveryWarning(reason);
return commitCandidate(
dependencies.transition.applyPreference(
dependencies.transition.next(current, {
network: latestNetwork,
error: reason,
}),
latestState.gatewayAutoEnabled !== false,
),
{ reconfigure },
);
}
const latestState = dependencies.state.read();
const latestSubscriptionUrl = desiredProfile(latestState)?.subscriptionUrl || '';
const latestNetwork = latestSubscriptionUrl
? dependencies.discovery.readHostNetwork()
: null;
if (
latestSubscriptionUrl !== subscriptionUrl ||
!dependencies.transition.sameRoute(network, latestNetwork)
) {
return commitCandidate(dependencies.transition.createInitial(), { reconfigure });
}
return commitCandidate(
dependencies.transition.applyPreference(
dependencies.transition.next(current, { network: latestNetwork, verifiedGateway }),
latestState.gatewayAutoEnabled !== false,
),
{ reconfigure },
);
};
const refresh = (options: RefreshOptions = {}) => {
if (dependencies.appMode !== 'client') return Promise.resolve(current);
if (refreshPromise) return refreshPromise;
refreshPromise = dependencies.serialize(() => runRefresh(options)).finally(() => {
refreshPromise = null;
});
return refreshPromise;
};
const setEnabled = (enabled: boolean) => dependencies.serialize(() => commitCandidate(
dependencies.transition.applyPreference(current, enabled),
{ persistEnabled: enabled },
));
const startDiscovery = (intervalMs: number) => {
if (discoveryTimer) return;
discoveryTimer = dependencies.scheduler.setInterval(() => {
void refresh().catch(dependencies.onTimerError);
}, intervalMs);
discoveryTimer.unref();
};
const stopDiscovery = () => {
if (!discoveryTimer) return;
dependencies.scheduler.clearInterval(discoveryTimer);
discoveryTimer = null;
};
return {
read: () => current,
set: (value: GatewayAutoState) => { current = value; },
createInitial: dependencies.transition.createInitial,
setEnabled,
refresh,
startDiscovery,
stopDiscovery,
};
}
export type GatewayAutoService = ReturnType<typeof createGatewayAutoService>;
+8
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@@ -0,0 +1,8 @@
export {
createRouteRulesService,
type RouteRulesService,
} from './routeRulesService.js';
export {
createGatewayAutoService,
type GatewayAutoService,
} from './gatewayAutoService.js';
@@ -0,0 +1,150 @@
import { isDeepStrictEqual } from 'node:util';
import {
appliedProfile,
desiredProfile,
type RouteRule,
type StoredState,
} from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
import {
normalizeRouteRules,
ROUTE_RULES_CONTRACT_VERSION,
} from '../../../shared/routingRules.js';
import type { RuntimeCommandResult } from '../connection/index.js';
import { finishRollback } from '../../services/rollback.js';
interface RouteRulesDependencies {
state: {
read(): StoredState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
subscription: { readConfig(profileId: string): unknown | null };
config: {
build(subscriptionConfig: unknown, selectedServerId: string, routeRules: RouteRule[]): unknown;
read(): string | null;
write(value: unknown): void;
restore(value: string): void;
remove(): void;
};
runtime: {
isRunning(): Promise<boolean>;
applyCommand(): Promise<RuntimeCommandResult>;
restoreRunning(): Promise<unknown>;
};
route?: { isGatewayDirect(): boolean };
serialize<T>(operation: () => Promise<T>): Promise<T>;
runOperation<T>(operation: () => Promise<T>): Promise<T>;
afterApply?: () => Promise<unknown>;
restoreAppliedActivation?: (state: StoredState) => Promise<unknown>;
}
export function createRouteRulesService(dependencies: RouteRulesDependencies) {
const applyRules = async (previousState: StoredState, routeRules: RouteRule[]) => {
const wasRunning = await dependencies.runtime.isRunning();
const bypassed = dependencies.route?.isGatewayDirect() === true;
const targetProfile = wasRunning
? appliedProfile(previousState)
: desiredProfile(previousState);
const targetServerId = wasRunning
? previousState.appliedServerId
: targetProfile?.desiredServerId || '';
const subscriptionConfig = targetProfile
? dependencies.subscription.readConfig(targetProfile.id)
: null;
if (bypassed || !targetServerId || !subscriptionConfig) {
let stateCommitStarted = false;
try {
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
routeRules,
...(bypassed ? { appliedRouteRules: [] } : {}),
routeRulesRevision: state.routeRulesRevision + 1,
}));
} catch (error) {
await finishRollback(error, [
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Route rules rollback failed');
}
return;
}
const candidateConfig = dependencies.config.build(
subscriptionConfig,
targetServerId,
routeRules,
);
const previousConfig = dependencies.config.read();
const configChanged = previousConfig !== JSON.stringify(candidateConfig, null, 2);
let configMutationStarted = false;
let runtimeMutationStarted = false;
let stateCommitStarted = false;
try {
if (configChanged) {
configMutationStarted = true;
dependencies.config.write(candidateConfig);
}
if (wasRunning && configChanged) {
const command = await dependencies.runtime.applyCommand();
runtimeMutationStarted = command.mutationStarted;
if (!command.ok) throw command.error;
}
stateCommitStarted = true;
dependencies.state.update((state) => ({
...state,
routeRules,
...(wasRunning ? { appliedRouteRules: routeRules } : {}),
routeRulesRevision: state.routeRulesRevision + 1,
}));
await dependencies.afterApply?.();
} catch (error) {
await finishRollback(error, [
...(configMutationStarted ? [{
run: () => previousConfig === null
? dependencies.config.remove()
: dependencies.config.restore(previousConfig),
}] : []),
...(wasRunning && runtimeMutationStarted ? [{
run: async () => {
await dependencies.runtime.restoreRunning();
await dependencies.restoreAppliedActivation?.(previousState);
},
runtime: true,
}] : []),
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
], 'Route rules rollback failed');
}
};
const update = (
rules: unknown,
expectedRulesRevision: unknown,
rulesContractVersion: unknown,
) => {
if (rulesContractVersion !== ROUTE_RULES_CONTRACT_VERSION) {
throw new HarborError('REQUEST_INVALID');
}
let routeRules: RouteRule[];
try {
routeRules = normalizeRouteRules(rules, { strict: true }) as RouteRule[];
} catch (cause) {
throw new HarborError('REQUEST_INVALID', { cause });
}
if (!Number.isSafeInteger(expectedRulesRevision) || Number(expectedRulesRevision) < 0) {
throw new HarborError('REQUEST_INVALID');
}
return dependencies.serialize(async () => {
const current = dependencies.state.read();
if (current.routeRulesRevision !== expectedRulesRevision) throw new HarborError('STATE_CONFLICT');
if (isDeepStrictEqual(current.routeRules, routeRules)) return;
await dependencies.runOperation(() => applyRules(current, routeRules));
});
};
return { update };
}
export type RouteRulesService = ReturnType<typeof createRouteRulesService>;
+7
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@@ -0,0 +1,7 @@
export {
checkServerHealth,
createServerHealthService,
SERVER_HEALTH_CONCURRENCY,
SERVER_HEALTH_MAX_COUNT,
type ServerHealthService,
} from './serverHealth.js';
@@ -0,0 +1,63 @@
import type { HarborServer, StoredProfile } from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
export const SERVER_HEALTH_MAX_COUNT = 30;
export const SERVER_HEALTH_CONCURRENCY = 4;
type HealthServer = Pick<HarborServer, 'id' | 'label' | 'host' | 'port'>;
type Ping = (host: string, port: number) => Promise<Record<string, unknown>>;
export async function checkServerHealth(
servers: HealthServer[],
ping: Ping,
{
maxCount = SERVER_HEALTH_MAX_COUNT,
concurrency = SERVER_HEALTH_CONCURRENCY,
} = {},
) {
const queue = servers.slice(0, maxCount);
const results: Array<Record<string, unknown>> = new Array(queue.length);
let nextIndex = 0;
async function worker() {
while (nextIndex < queue.length) {
const index = nextIndex++;
const server = queue[index];
results[index] = {
id: server.id,
tag: server.label,
...await ping(server.host, server.port),
checkedAt: new Date().toISOString(),
};
}
}
await Promise.all(Array.from({ length: Math.min(concurrency, queue.length) }, worker));
return results;
}
interface ServerHealthDependencies {
readProfiles(): StoredProfile[];
readDesiredProfileId(): string;
ping: Ping;
}
export function createServerHealthService(dependencies: ServerHealthDependencies) {
return {
check(profileIdValue: unknown, serverIds: unknown) {
const requestedProfileId = String(profileIdValue || '').trim();
const profileId = requestedProfileId || dependencies.readDesiredProfileId();
const profile = dependencies.readProfiles().find((candidate) => candidate.id === profileId);
if (!profile) throw new HarborError('PROFILE_NOT_FOUND');
const requestedIds = new Set(Array.isArray(serverIds) ? serverIds.map(String) : []);
return checkServerHealth(
requestedIds.size
? profile.servers.filter((server) => requestedIds.has(server.id))
: profile.servers,
dependencies.ping,
);
},
};
}
export type ServerHealthService = ReturnType<typeof createServerHealthService>;
+63
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@@ -0,0 +1,63 @@
import {
createStateSnapshot,
normalizeStoredState,
type GatewayAutoState,
type OperationState,
type StateSnapshot,
type StoredState,
} from '../../../shared/contracts/state.js';
import type { FailoverSnapshot } from '../../../shared/failover.js';
interface RuntimeState {
running?: boolean;
startedAt?: string | null;
}
export interface StateReadResult {
snapshot: StateSnapshot;
storedState: StoredState;
gatewayAuto: GatewayAutoState;
configExists: boolean;
}
interface StateServiceDependencies {
appMode: string;
readStoredState: () => unknown;
refreshRuntime: () => Promise<RuntimeState>;
getGatewayAutoState: () => GatewayAutoState;
getOperationState: () => OperationState;
configExists: () => boolean;
getFailoverSnapshot?: () => FailoverSnapshot;
}
function subscriptionHost(value: unknown) {
try {
return `${new URL(String(value)).host}/…`;
} catch {
return '';
}
}
export function createStateService(dependencies: StateServiceDependencies) {
return {
async read(): Promise<StateReadResult> {
const runtime = await dependencies.refreshRuntime();
const storedState = normalizeStoredState(dependencies.readStoredState());
const gatewayAuto = dependencies.getGatewayAutoState();
const configExists = dependencies.configExists();
const snapshot = createStateSnapshot({
storedState,
runtime,
gatewayAuto,
appMode: dependencies.appMode,
configExists,
subscriptionHost: subscriptionHost(storedState.subscriptionUrl),
operation: dependencies.getOperationState(),
failoverSnapshot: dependencies.getFailoverSnapshot?.(),
});
return { snapshot, storedState, gatewayAuto, configExists };
},
};
}
export type StateService = ReturnType<typeof createStateService>;
@@ -0,0 +1,8 @@
export {
createValidateSubscription,
type ValidateSubscription,
} from './validateSubscription.js';
export {
createSubscriptionService,
type SubscriptionService,
} from './subscriptionService.js';
@@ -0,0 +1,605 @@
import crypto from 'node:crypto';
import {
profileById,
type GatewayAutoState,
type HarborServer,
type StoredProfile,
type StoredState,
} from '../../../shared/contracts/state.js';
import { HarborError } from '../../../shared/errors.js';
import type { ActivityJournalEventInput } from '../../../shared/activityJournal.js';
import { finishRollback } from '../../services/rollback.js';
interface ParsedSubscription {
config: unknown;
servers: HarborServer[];
userInfo: Record<string, unknown>;
fetchedAt: string;
}
type TimerHandle = NodeJS.Timeout;
interface SubscriptionServiceDependencies {
provider: {
fetchSubscription(url: string): Promise<ParsedSubscription>;
selectRefreshedServer(
currentServerId: string,
currentServers: HarborServer[],
nextServers: HarborServer[],
): string;
};
state: {
read(): StoredState;
update(mutator: (state: StoredState) => Record<string, unknown>): StoredState;
};
config: {
build(subscriptionConfig: unknown, selectedServerId: string, routeRules: StoredState['routeRules']): unknown;
read(): string | null;
write(value: unknown): void;
restore(value: string): void;
remove(): void;
};
runtime: {
isRunning(): Promise<boolean>;
stop(): Promise<unknown>;
start(): Promise<unknown>;
};
gatewayAuto: {
read(): GatewayAutoState;
set(value: GatewayAutoState): void;
createInitial(): GatewayAutoState;
};
serialize<T>(operation: () => Promise<T>): Promise<T>;
scheduler: {
setInterval(callback: () => void, intervalMs: number): TimerHandle;
clearInterval(handle: TimerHandle): void;
};
onRefreshError(error: unknown): void;
onEvent?: (event: ActivityJournalEventInput) => void;
failover?: {
reconcile(): Promise<unknown>;
restoreAppliedActivation(state: StoredState): Promise<unknown>;
};
now?: () => Date;
}
export interface ProfileMutationResult extends Record<string, unknown> {
success: true;
profileId: string;
label: string;
}
const safeErrorCode = (error: unknown) => (
error && typeof error === 'object' && 'code' in error
? String(error.code)
: 'UNKNOWN'
);
const cleanLabel = (value: unknown) => String(value || '').trim();
const foldedLabel = (value: unknown) => cleanLabel(value).toLocaleLowerCase('ru');
function requireLabel(value: unknown) {
const label = cleanLabel(value);
if (!label || label.length > 64) throw new HarborError('REQUEST_INVALID');
return label;
}
function requireExpectedRevision(state: StoredState, expectedRevision: unknown) {
if (expectedRevision === undefined) return;
if (!Number.isSafeInteger(expectedRevision) || Number(expectedRevision) !== state.revision) {
throw new HarborError('STATE_CONFLICT');
}
}
function requireProfile(state: StoredState, profileId: unknown) {
const profile = profileById(state, profileId);
if (!profile) throw new HarborError('PROFILE_NOT_FOUND');
return profile;
}
function assertUniqueLabel(state: StoredState, label: string, exceptProfileId = '') {
if (state.profiles.some((profile) => (
profile.id !== exceptProfileId && foldedLabel(profile.label) === foldedLabel(label)
))) throw new HarborError('PROFILE_NAME_CONFLICT');
}
function replaceProfile(state: StoredState, nextProfile: StoredProfile) {
return state.profiles.map((profile) => profile.id === nextProfile.id ? nextProfile : profile);
}
function mutationResult(profile: Pick<StoredProfile, 'id' | 'label'>): ProfileMutationResult {
return { success: true, profileId: profile.id, label: profile.label };
}
function publicHost(url: string) {
try { return new URL(url).hostname; } catch { return ''; }
}
export function createSubscriptionService(dependencies: SubscriptionServiceDependencies) {
const refreshPromises = new Map<string, Promise<ProfileMutationResult>>();
let refreshTimer: TimerHandle | null = null;
const now = dependencies.now || (() => new Date());
const restoreConfig = (previous: string | null) => {
if (previous === null) dependencies.config.remove();
else dependencies.config.restore(previous);
};
const preflightAddProfile = (labelValue: unknown, expectedRevision?: unknown) => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
assertUniqueLabel(state, requireLabel(labelValue));
};
const preflightRenameProfile = (
profileId: unknown,
labelValue: unknown,
expectedRevision?: unknown,
) => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
const profile = requireProfile(state, profileId);
assertUniqueLabel(state, requireLabel(labelValue), profile.id);
};
const addProfile = async (
labelValue: unknown,
subscriptionUrlValue: unknown,
expectedRevision?: unknown,
) => {
const label = requireLabel(labelValue);
const subscriptionUrl = String(subscriptionUrlValue || '').trim();
const preflight = dependencies.state.read();
requireExpectedRevision(preflight, expectedRevision);
assertUniqueLabel(preflight, label);
const parsed = await dependencies.provider.fetchSubscription(subscriptionUrl);
// Admission CAS already passed; background freshness may advance the global revision during provider I/O.
return dependencies.serialize(async () => {
const state = dependencies.state.read();
assertUniqueLabel(state, label);
const profile: StoredProfile = {
id: `profile_${crypto.randomUUID()}`,
label,
subscriptionUrl,
subscriptionConfig: parsed.config,
servers: parsed.servers,
userInfo: parsed.userInfo,
fetchedAt: parsed.fetchedAt,
desiredServerId: '',
lastRefreshAttemptAt: parsed.fetchedAt,
lastRefreshErrorCode: null,
};
dependencies.state.update((current) => ({
...current,
profiles: [...current.profiles, profile],
desiredProfileId: current.profiles.length ? current.desiredProfileId : profile.id,
}));
dependencies.onEvent?.({
type: 'subscription.added',
severity: 'info',
source: 'subscription',
dedupeKey: `subscription.added:${dependencies.state.read().revision}`,
data: { profileId: profile.id, profileLabel: profile.label, host: publicHost(profile.subscriptionUrl), serverCount: profile.servers.length },
});
return mutationResult(profile);
});
};
const renameProfile = (profileId: unknown, labelValue: unknown, expectedRevision?: unknown) => (
dependencies.serialize(async () => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
const profile = requireProfile(state, profileId);
const label = requireLabel(labelValue);
if (profile.label === label) return mutationResult(profile);
assertUniqueLabel(state, label, profile.id);
const renamed = { ...profile, label };
dependencies.state.update((current) => ({
...current,
profiles: replaceProfile(current, renamed),
}));
return mutationResult(renamed);
})
);
const selectProfileServer = (
profileId: unknown,
serverIdValue: unknown,
expectedRevision?: unknown,
) => dependencies.serialize(async () => {
const state = dependencies.state.read();
requireExpectedRevision(state, expectedRevision);
const profile = requireProfile(state, profileId);
const serverId = String(serverIdValue || '').trim();
if (!profile.servers.some((server) => server.id === serverId)) {
throw new HarborError('SERVER_NOT_FOUND');
}
if (profile.desiredServerId === serverId && state.desiredProfileId === profile.id) {
return mutationResult(profile);
}
const selected = profile.desiredServerId === serverId
? profile
: { ...profile, desiredServerId: serverId };
dependencies.state.update((current) => ({
...current,
profiles: replaceProfile(current, selected),
desiredProfileId: profile.id,
}));
return mutationResult(selected);
});
const recordRefreshError = async (
profileId: string,
subscriptionUrl: string,
error: unknown,
origin: 'manual' | 'scheduled',
) => dependencies.serialize(async () => {
const state = dependencies.state.read();
const profile = requireProfile(state, profileId);
if (profile.subscriptionUrl !== subscriptionUrl) throw new HarborError('STATE_CONFLICT');
const failed = {
...profile,
lastRefreshAttemptAt: now().toISOString(),
lastRefreshErrorCode: safeErrorCode(error),
};
dependencies.state.update((current) => ({
...current,
profiles: replaceProfile(current, failed),
}));
dependencies.onEvent?.({
type: 'subscription.refresh_failed',
severity: 'warning',
source: 'subscription',
dedupeKey: origin === 'scheduled'
? `subscription.refresh_failed:${failed.id}:${failed.fetchedAt || 'never'}:${failed.lastRefreshErrorCode}`
: `subscription.refresh_failed:${dependencies.state.read().revision}`,
data: {
profileId: failed.id,
profileLabel: failed.label,
host: publicHost(failed.subscriptionUrl),
errorCode: failed.lastRefreshErrorCode || 'UNKNOWN',
},
});
});
const commitRefresh = (
profileId: string,
subscriptionUrl: string,
parsed: ParsedSubscription,
origin: 'manual' | 'scheduled',
) => dependencies.serialize(async () => {
// Re-read the profile after provider I/O and guard its owner instead of rejecting background-only revisions.
const previousState = dependencies.state.read();
const previousProfile = requireProfile(previousState, profileId);
if (previousProfile.subscriptionUrl !== subscriptionUrl) throw new HarborError('STATE_CONFLICT');
const desiredServerId = dependencies.provider.selectRefreshedServer(
previousProfile.desiredServerId,
previousProfile.servers,
parsed.servers,
);
const refreshedProfile: StoredProfile = {
...previousProfile,
subscriptionConfig: parsed.config,
servers: parsed.servers,
userInfo: parsed.userInfo,
fetchedAt: parsed.fetchedAt,
desiredServerId,
lastRefreshAttemptAt: parsed.fetchedAt,
lastRefreshErrorCode: null,
};
const contentChanged = JSON.stringify({
subscriptionConfig: previousProfile.subscriptionConfig,
servers: previousProfile.servers,
userInfo: previousProfile.userInfo,
}) !== JSON.stringify({
subscriptionConfig: refreshedProfile.subscriptionConfig,
servers: refreshedProfile.servers,
userInfo: refreshedProfile.userInfo,
});
const appendRefreshEvent = () => {
if (origin === 'scheduled' && !contentChanged && !previousProfile.lastRefreshErrorCode) return;
dependencies.onEvent?.({
type: 'subscription.refreshed',
severity: 'info',
source: 'subscription',
dedupeKey: `subscription.refreshed:${dependencies.state.read().revision}`,
data: {
profileId: refreshedProfile.id,
profileLabel: refreshedProfile.label,
host: publicHost(refreshedProfile.subscriptionUrl),
serverCount: refreshedProfile.servers.length,
added: refreshedProfile.servers.filter(({ id }) => !previousProfile.servers.some((server) => server.id === id)).length,
removed: previousProfile.servers.filter(({ id }) => !refreshedProfile.servers.some((server) => server.id === id)).length,
},
});
};
const loadedTargets = previousState.appliedFailoverPolicy
? [previousState.appliedFailoverPolicy.primary, previousState.appliedFailoverPolicy.reserve]
: [];
const missingLoadedTarget = loadedTargets.some((target) => (
target.profileId === profileId
&& !refreshedProfile.servers.some(({ id }) => id === target.serverId)
));
const pauseFailover = previousState.failoverPolicy?.enabled
&& !previousState.failoverPolicy.paused
&& missingLoadedTarget;
const running = await dependencies.runtime.isRunning();
const refreshesApplied = running
&& previousState.appliedProfileId === profileId
&& !previousState.appliedFailoverPolicy;
const nextAppliedServerId = refreshesApplied
? dependencies.provider.selectRefreshedServer(
previousState.appliedServerId,
previousProfile.servers,
parsed.servers,
)
: '';
if (!refreshesApplied || !nextAppliedServerId) {
dependencies.state.update((current) => ({
...current,
profiles: replaceProfile(current, refreshedProfile),
...(pauseFailover ? { failoverPolicy: { ...current.failoverPolicy, paused: true } } : {}),
}));
if (pauseFailover) dependencies.onEvent?.({
type: 'failover.paused',
severity: 'warning',
source: 'failover',
dedupeKey: `failover.paused:missing-target:${profileId}:${dependencies.state.read().revision}`,
data: {},
});
await dependencies.failover?.reconcile();
appendRefreshEvent();
return mutationResult(refreshedProfile);
}
const nextAppliedServer = parsed.servers.find((server) => server.id === nextAppliedServerId)!;
const candidateConfig = dependencies.config.build(
parsed.config,
nextAppliedServerId,
previousState.routeRules,
);
const previousConfig = dependencies.config.read();
let configMutationStarted = false;
let runtimeMutationStarted = false;
let stateCommitStarted = false;
try {
configMutationStarted = true;
dependencies.config.write(candidateConfig);
runtimeMutationStarted = true;
await dependencies.runtime.start();
stateCommitStarted = true;
dependencies.state.update((current) => ({
...current,
profiles: replaceProfile(current, refreshedProfile),
appliedServerId: nextAppliedServerId,
appliedServerSnapshot: nextAppliedServer,
appliedRouteRules: dependencies.gatewayAuto.read().mode === 'gateway-direct'
? []
: current.routeRules,
}));
} catch (error) {
await finishRollback(error, [
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
...(configMutationStarted ? [{ run: () => restoreConfig(previousConfig) }] : []),
...(runtimeMutationStarted ? [{
run: async () => {
await dependencies.runtime.start();
await dependencies.failover?.restoreAppliedActivation(previousState);
},
runtime: true,
}] : []),
], 'Subscription refresh rollback failed');
}
await dependencies.failover?.reconcile();
appendRefreshEvent();
return mutationResult(refreshedProfile);
});
const refreshProfile = (
profileIdValue: unknown,
expectedRevision?: unknown,
origin: 'manual' | 'scheduled' = 'manual',
) => {
const profileId = String(profileIdValue || '').trim();
const existing = refreshPromises.get(profileId);
if (existing) return existing;
const initialState = dependencies.state.read();
requireExpectedRevision(initialState, expectedRevision);
const initialProfile = requireProfile(initialState, profileId);
const operation = (async () => {
let parsed: ParsedSubscription;
try {
parsed = await dependencies.provider.fetchSubscription(initialProfile.subscriptionUrl);
} catch (error) {
if (safeErrorCode(error) !== 'STATE_CONFLICT') {
await recordRefreshError(
profileId,
initialProfile.subscriptionUrl,
error,
origin,
);
}
throw error;
}
return commitRefresh(
profileId,
initialProfile.subscriptionUrl,
parsed,
origin,
);
})().finally(() => refreshPromises.delete(profileId));
refreshPromises.set(profileId, operation);
return operation;
};
const deleteProfile = (
profileIdValue: unknown,
modeValue: unknown = 'delete',
expectedRevision?: unknown,
) => dependencies.serialize(async () => {
const previousState = dependencies.state.read();
requireExpectedRevision(previousState, expectedRevision);
const profile = requireProfile(previousState, profileIdValue);
const mode = String(modeValue || 'delete');
if (!['delete', 'stop-and-delete'].includes(mode)) throw new HarborError('REQUEST_INVALID');
const running = await dependencies.runtime.isRunning();
const failoverReferencesProfile = Boolean(previousState.appliedFailoverPolicy && (
previousState.appliedFailoverPolicy.primary.profileId === profile.id
|| previousState.appliedFailoverPolicy.reserve.profileId === profile.id
));
const desiredFailoverReferencesProfile = previousState.failoverPolicy?.primary.profileId === profile.id
|| previousState.failoverPolicy?.reserve.profileId === profile.id;
const applied = running && (previousState.appliedProfileId === profile.id || failoverReferencesProfile);
if (applied && mode !== 'stop-and-delete') throw new HarborError('PROFILE_IN_USE');
const previousConfig = dependencies.config.read();
const previousGatewayAuto = dependencies.gatewayAuto.read();
const removesAppliedTarget = previousState.appliedProfileId === profile.id || failoverReferencesProfile;
let runtimeMutationStarted = false;
let configMutationStarted = false;
let gatewayMutationStarted = false;
let stateCommitStarted = false;
try {
if (applied) {
runtimeMutationStarted = true;
await dependencies.runtime.stop();
}
if (removesAppliedTarget) {
configMutationStarted = true;
dependencies.config.remove();
}
if (
previousState.desiredProfileId === profile.id
&& !(running && previousState.appliedProfileId !== profile.id)
) {
gatewayMutationStarted = true;
dependencies.gatewayAuto.set(dependencies.gatewayAuto.createInitial());
}
stateCommitStarted = true;
dependencies.state.update((current) => ({
...current,
profiles: current.profiles.filter((candidate) => candidate.id !== profile.id),
desiredProfileId: current.desiredProfileId === profile.id ? '' : current.desiredProfileId,
appliedProfileId: current.appliedProfileId === profile.id ? '' : current.appliedProfileId,
appliedServerId: current.appliedProfileId === profile.id ? '' : current.appliedServerId,
appliedServerSnapshot: current.appliedProfileId === profile.id
? null
: current.appliedServerSnapshot,
...(removesAppliedTarget ? {
connectionDesired: 'stopped',
appliedProfileId: '',
appliedServerId: '',
appliedServerSnapshot: null,
appliedFailoverPolicy: null,
} : {}),
...(failoverReferencesProfile || desiredFailoverReferencesProfile ? {
failoverPolicy: {
...current.failoverPolicy,
enabled: false,
paused: false,
primary: current.failoverPolicy.primary.profileId === profile.id
? { profileId: '', serverId: '' }
: current.failoverPolicy.primary,
reserve: current.failoverPolicy.reserve.profileId === profile.id
? { profileId: '', serverId: '' }
: current.failoverPolicy.reserve,
},
} : {}),
}));
} catch (error) {
await finishRollback(error, [
...(stateCommitStarted ? [{ run: () => dependencies.state.update(() => previousState) }] : []),
...(gatewayMutationStarted ? [{ run: () => dependencies.gatewayAuto.set(previousGatewayAuto) }] : []),
...(configMutationStarted ? [{ run: () => restoreConfig(previousConfig) }] : []),
...(runtimeMutationStarted ? [{
run: async () => {
await dependencies.runtime.start();
await dependencies.failover?.restoreAppliedActivation(previousState);
},
runtime: true,
}] : []),
], 'Subscription delete rollback failed');
}
await dependencies.failover?.reconcile();
dependencies.onEvent?.({
type: 'subscription.deleted',
severity: 'info',
source: 'subscription',
dedupeKey: `subscription.deleted:${dependencies.state.read().revision}`,
data: { profileId: profile.id, profileLabel: profile.label },
});
return mutationResult(profile);
});
// One-release compatibility for the old single-subscription client.
const importSubscription = (subscriptionUrl: string, expectedRevision?: unknown) => {
const state = dependencies.state.read();
if (state.profiles.length) throw new HarborError('STATE_CONFLICT');
return addProfile('Основной', subscriptionUrl, expectedRevision);
};
const refreshSavedSubscription = (expectedRevision?: unknown) => {
const state = dependencies.state.read();
if (state.profiles.length !== 1) throw new HarborError('STATE_CONFLICT');
return refreshProfile(state.profiles[0].id, expectedRevision);
};
const resetSavedSubscription = ({
stopRuntime = true,
expectedRevision,
}: { stopRuntime?: boolean; expectedRevision?: unknown } = {}) => {
const state = dependencies.state.read();
if (!state.profiles.length) return Promise.resolve(false);
if (state.profiles.length !== 1) throw new HarborError('STATE_CONFLICT');
return deleteProfile(
state.profiles[0].id,
stopRuntime ? 'stop-and-delete' : 'delete',
expectedRevision,
).then(() => true);
};
const startAutoRefresh = (intervalMs: number) => {
if (refreshTimer) return;
refreshTimer = dependencies.scheduler.setInterval(() => {
void (async () => {
for (const { id } of dependencies.state.read().profiles) {
try {
await refreshProfile(id, undefined, 'scheduled');
} catch (error) {
dependencies.onRefreshError(error);
}
}
})();
}, intervalMs);
refreshTimer.unref();
};
const stopAutoRefresh = () => {
if (!refreshTimer) return;
dependencies.scheduler.clearInterval(refreshTimer);
refreshTimer = null;
};
return {
preflightAddProfile,
preflightRenameProfile,
addProfile,
renameProfile,
selectProfileServer,
refreshProfile,
deleteProfile,
importSubscription,
refreshSavedSubscription,
resetSavedSubscription,
startAutoRefresh,
stopAutoRefresh,
};
}
export type SubscriptionService = ReturnType<typeof createSubscriptionService>;
@@ -0,0 +1,14 @@
interface SubscriptionResult {
servers: unknown[];
}
type FetchSubscription = (url: string) => Promise<SubscriptionResult>;
export function createValidateSubscription(fetchSubscription: FetchSubscription) {
return async (url: unknown) => {
const parsed = await fetchSubscription(String(url).trim());
return { servers: parsed.servers.length };
};
}
export type ValidateSubscription = ReturnType<typeof createValidateSubscription>;
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import crypto from 'node:crypto';
import fs from 'node:fs';
import { HarborError } from '../shared/errors.js';
const NONCE_RE = /^[a-f0-9]{32}$/;
const PROOF_RE = /^[a-f0-9]{64}$/;
const INTERFACE_RE = /^[a-zA-Z0-9._-]{1,32}$/;
const MAC_RE = /^[a-f0-9]{2}(?::[a-f0-9]{2}){5}$/i;
const SECRET_QUERY_KEYS = new Set(['access_token', 'auth', 'key', 'secret', 'token', 'uuid']);
interface GatewayRoute {
gateway: string;
interface: string;
mac: string;
observedAt?: number;
}
interface VerifiedGateway {
gatewayId: string;
uiOrigin?: string;
verifiedAt?: string;
}
export interface GatewayAutoRuntimeState {
mode: 'local-vpn' | 'gateway-direct';
failures: number;
gateway: GatewayRoute | null;
gatewayId: string;
uiOrigin: string;
lastVerifiedAt: string | null;
lastError: string;
}
function record(value: unknown): Record<string, unknown> {
return value && typeof value === 'object' && !Array.isArray(value)
? value as Record<string, unknown>
: {};
}
function isIpv4(value: unknown) {
const parts = String(value || '').split('.');
return parts.length === 4 && parts.every((part) => (
/^\d{1,3}$/.test(part) && Number(part) >= 0 && Number(part) <= 255
));
}
function subscriptionSecret(subscriptionUrl: unknown) {
try {
const url = new URL(String(subscriptionUrl || '').trim());
const pathSegments = url.pathname.split('/').filter(Boolean);
const candidates = [
url.username,
url.password,
...[...url.searchParams.entries()]
.filter(([key]) => SECRET_QUERY_KEYS.has(key.toLowerCase()))
.map(([, value]) => value),
pathSegments.at(-1),
]
.map((value) => String(value || '').trim())
.filter((value) => value.length >= 16);
if (!candidates.length) return '';
url.hash = '';
url.searchParams.sort();
return url.toString();
} catch {
return '';
}
}
function presenceProof(subscriptionUrl: unknown, nonce: unknown, gatewayId: unknown) {
const credentialUrl = subscriptionSecret(subscriptionUrl);
if (!credentialUrl) return '';
const key = crypto.createHash('sha256')
.update(`harbor-gateway-presence-key\n${credentialUrl}`)
.digest();
return crypto.createHmac('sha256', key)
.update(`v1\n${nonce}\n${gatewayId}`)
.digest('hex');
}
export function buildGatewayPresence({ appMode, subscriptionUrl, gatewayId, nonce }: {
appMode: unknown;
subscriptionUrl: unknown;
gatewayId: unknown;
nonce: unknown;
}) {
if (!NONCE_RE.test(String(nonce || ''))) {
throw new HarborError('REQUEST_INVALID');
}
const subscription = String(subscriptionUrl || '').trim();
const id = String(gatewayId || '').trim();
if (appMode !== 'gateway' || !subscriptionSecret(subscription) || !id) {
return {
success: true,
available: false,
product: 'harbor',
role: appMode,
protocolVersion: 1,
};
}
return {
success: true,
available: true,
product: 'harbor',
role: 'gateway',
protocolVersion: 1,
gatewayId: id,
transparentRouting: true,
proof: presenceProof(subscription, nonce, id),
};
}
export function verifyGatewayPresence(
value: unknown,
{ subscriptionUrl, nonce }: { subscriptionUrl: unknown; nonce: unknown },
) {
const payload = record(value);
if (
payload?.available !== true ||
payload?.product !== 'harbor' ||
payload?.role !== 'gateway' ||
payload?.protocolVersion !== 1 ||
payload?.transparentRouting !== true ||
!payload.gatewayId ||
!NONCE_RE.test(String(nonce || '')) ||
!PROOF_RE.test(String(payload.proof || ''))
) return false;
const actual = Buffer.from(String(payload.proof), 'hex');
const expectedProof = presenceProof(subscriptionUrl, nonce, String(payload.gatewayId));
if (!expectedProof) return false;
const expected = Buffer.from(expectedProof, 'hex');
return crypto.timingSafeEqual(actual, expected);
}
export async function probeGatewayPresence({
gateway,
subscriptionUrl,
port = 3456,
fetchImpl = fetch,
timeoutMs = 1000,
nonce = crypto.randomBytes(16).toString('hex'),
}: {
gateway: string;
subscriptionUrl: unknown;
port?: number;
fetchImpl?: typeof fetch;
timeoutMs?: number;
nonce?: string;
}): Promise<VerifiedGateway> {
if (!isIpv4(gateway)) throw new Error('Некорректный адрес default gateway');
const presenceUrl = `http://${gateway}:${port}/api/gateway-presence?nonce=${nonce}`;
const response = await fetchImpl(
presenceUrl,
{ headers: { accept: 'application/json' }, signal: AbortSignal.timeout(timeoutMs) },
);
const payload = record(await response.json().catch(() => ({})));
if (!response.ok || !verifyGatewayPresence(payload, { subscriptionUrl, nonce })) {
throw new Error('Текущий default gateway не является доверенным Harbor Gateway');
}
return {
gatewayId: String(payload.gatewayId),
uiOrigin: new URL(presenceUrl).origin,
verifiedAt: new Date().toISOString(),
};
}
export function normalizeHostNetworkState(value: unknown, {
now = Date.now(),
maxAgeMs = 15_000,
}: { now?: number; maxAgeMs?: number } = {}): GatewayRoute | null {
const candidate = record(value);
const gateway = String(candidate.gateway || '').trim();
const networkInterface = String(candidate.interface || '').trim();
const mac = String(candidate.mac || '').trim().toLowerCase();
const observedAt = Date.parse(String(candidate.observedAt || ''));
// ponytail: IPv4-only matches the current Gateway; add IPv6 when its TProxy path supports it.
if (
!isIpv4(gateway) ||
!INTERFACE_RE.test(networkInterface) ||
!MAC_RE.test(mac) ||
!Number.isFinite(observedAt) ||
observedAt > now + 5_000 ||
now - observedAt > maxAgeMs
) return null;
return { gateway, interface: networkInterface, mac, observedAt };
}
export function readHostNetworkState(filePath: string, options?: { now?: number; maxAgeMs?: number }) {
try {
return normalizeHostNetworkState(
JSON.parse(fs.readFileSync(filePath, 'utf8')),
options,
);
} catch {
return null;
}
}
export function sameGatewayRoute(previous: GatewayRoute | null, current: GatewayRoute | null) {
return Boolean(
previous &&
current &&
previous.gateway === current.gateway &&
previous.interface === current.interface &&
previous.mac === current.mac,
);
}
export function createGatewayAutoState(): GatewayAutoRuntimeState {
return {
mode: 'local-vpn',
failures: 0,
gateway: null,
gatewayId: '',
uiOrigin: '',
lastVerifiedAt: null,
lastError: '',
};
}
export function applyGatewayPreference(state: GatewayAutoRuntimeState, enabled: boolean): GatewayAutoRuntimeState {
return {
...state,
mode: enabled && state.gatewayId ? 'gateway-direct' : 'local-vpn',
};
}
export function nextGatewayAutoState(current: GatewayAutoRuntimeState, {
network,
verifiedGateway = null,
error = 'Gateway presence check failed',
}: {
network: GatewayRoute | null;
verifiedGateway?: VerifiedGateway | null;
error?: unknown;
}): GatewayAutoRuntimeState {
if (!network) {
if (!current.gatewayId) return createGatewayAutoState();
return {
...current,
failures: current.failures + 1,
lastError: String(error || 'Gateway presence check failed'),
};
}
const routeChanged = !sameGatewayRoute(current.gateway, network);
const base = routeChanged
? { ...createGatewayAutoState(), gateway: network }
: { ...current, gateway: network };
if (verifiedGateway?.gatewayId) {
return {
...base,
mode: 'gateway-direct',
failures: 0,
gatewayId: verifiedGateway.gatewayId,
uiOrigin: verifiedGateway.uiOrigin || '',
lastVerifiedAt: verifiedGateway.verifiedAt || new Date().toISOString(),
lastError: '',
};
}
const failures = base.failures + 1;
return {
...base,
mode: base.gatewayId ? 'gateway-direct' : 'local-vpn',
failures,
lastError: String(error || 'Gateway presence check failed'),
};
}
+33
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@@ -0,0 +1,33 @@
import { spawnSync } from 'node:child_process';
const options = { encoding: 'utf8' as const };
const CHAIN_PATTERN = /^[a-z0-9_-]{1,28}$/i;
export function setGatewayInterception(enabled: boolean, chain: string, run: typeof spawnSync = spawnSync) {
if (!CHAIN_PATTERN.test(chain)) throw new Error('Некорректная TProxy chain');
const rule = ['-w', '-t', 'mangle', 'PREROUTING', '-j', chain];
const exists = run('iptables', [...rule.slice(0, 3), '-C', ...rule.slice(3)], options).status === 0;
if (!enabled) {
if (exists) run('iptables', [...rule.slice(0, 3), '-D', ...rule.slice(3)], options);
return;
}
if (exists) {
const input = `*mangle\n-D PREROUTING -j ${chain}\n-I PREROUTING 1 -j ${chain}\nCOMMIT\n`;
const result = run('iptables-restore', ['-w', '--noflush'], { ...options, input });
if (result.status !== 0) {
// The transaction keeps the already-working jump intact; leave routing up.
return;
}
return;
}
const result = run(
'iptables',
[...rule.slice(0, 3), '-I', 'PREROUTING', '1', '-j', chain],
options,
);
if (result.status !== 0) {
throw new Error((result.stderr || 'Не удалось включить Gateway VPN').trim());
}
}
+37
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@@ -0,0 +1,37 @@
import crypto from 'node:crypto';
import type { ServerResponse } from 'node:http';
import { normalizeHarborError } from '../../shared/errors.js';
export function sendJson(res: ServerResponse, statusCode: number, payload: unknown) {
res.writeHead(statusCode, { 'content-type': 'application/json; charset=utf-8' });
res.end(JSON.stringify(payload));
}
function redactLogDetails(value: unknown) {
return String(value || '').replace(/https?:\/\/\S+/gi, '[redacted-url]');
}
export function sendError(res: ServerResponse, error: unknown) {
const harborError = normalizeHarborError(error);
const correlationId = crypto.randomUUID();
const technical = harborError.cause instanceof Error
? harborError.cause.message
: harborError.details || error;
const technicalMessage = technical instanceof Error
? technical.message
: technical;
console.error(
`[control] request failed [${correlationId}] ${harborError.code}: ${redactLogDetails(technicalMessage)}`,
);
return sendJson(res, harborError.status, {
success: false,
error: {
code: harborError.code,
message: harborError.message,
retryable: harborError.retryable,
correlationId,
...(harborError.details ? { details: harborError.details } : {}),
},
});
}
@@ -0,0 +1,17 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ActivityJournalService } from '../../services/activityJournalService.js';
import { sendJson } from '../response.js';
export function createActivityJournalRoute({ journal }: { journal: ActivityJournalService }) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const url = new URL(req.url || '/', 'http://localhost');
if (url.pathname !== '/api/activity-journal' || req.method !== 'GET') return false;
sendJson(res, 200, journal.page(
Number(url.searchParams.get('limit')) || 50,
url.searchParams.get('cursor'),
));
return true;
},
};
}
@@ -0,0 +1,27 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ConnectionService } from '../../features/connection/index.js';
interface ConnectionRuntimeRouteDependencies {
connection: Pick<ConnectionService, 'stop' | 'restart'>;
withOperation<T>(kind: string, operation: () => Promise<T>): Promise<T>;
sendState(res: ServerResponse, extra: { singboxRunning: boolean }): Promise<void>;
}
export function createConnectionRuntimeRoute(dependencies: ConnectionRuntimeRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method === 'POST' && req.url === '/api/singbox/stop') {
await dependencies.withOperation('stop', () => dependencies.connection.stop());
await dependencies.sendState(res, { singboxRunning: false });
return true;
}
if (req.method === 'POST' && req.url === '/api/singbox/restart') {
await dependencies.withOperation('start', () => dependencies.connection.restart());
await dependencies.sendState(res, { singboxRunning: true });
return true;
}
return false;
},
};
}
@@ -0,0 +1,32 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ConnectivityDiagnosticsUseCase } from '../../features/diagnostics/index.js';
import { sendJson } from '../response.js';
interface ConnectivityDiagnosticsRouteDependencies {
diagnostics: Pick<ConnectivityDiagnosticsUseCase, 'run' | 'updateSettings'>;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
sendState(res: ServerResponse): Promise<void>;
}
export function createConnectivityDiagnosticsRoute(
dependencies: ConnectivityDiagnosticsRouteDependencies,
) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.url === '/api/diagnostics/connectivity' && req.method === 'POST') {
const { target = null } = await dependencies.readBody(req);
const result = await dependencies.diagnostics.run(target);
sendJson(res, 200, result);
return true;
}
if (req.url === '/api/diagnostics/settings' && req.method === 'PUT') {
const { settings, expectedRevision } = await dependencies.readBody(req);
dependencies.diagnostics.updateSettings(settings, expectedRevision);
await dependencies.sendState(res);
return true;
}
return false;
},
};
}
@@ -0,0 +1,120 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { HarborError } from '../../../shared/errors.js';
import { sendJson } from '../response.js';
interface DeviceInventoryPort {
snapshot(): unknown;
refresh(): Promise<unknown>;
update(deviceId: string, patch: Record<string, unknown>, expectedRevision: unknown): unknown;
createTag(name: unknown, expectedRevision: unknown): unknown;
renameTag(tagId: string, name: unknown, expectedRevision: unknown): unknown;
deleteTag(tagId: string, expectedRevision: unknown): unknown;
resetTraffic(expectedRevision: unknown): Promise<unknown>;
setPolicy(deviceId: string, mode: unknown, expectedRevision: unknown): Promise<unknown>;
}
interface DeviceInventoryRouteDependencies {
deviceInventory: DeviceInventoryPort | null;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
}
const DEVICE_PATH = /^\/api\/devices\/(dev_[a-f0-9]{16})$/;
const DEVICE_POLICY_PATH = /^\/api\/devices\/(dev_[a-f0-9]{16})\/policy$/;
const DEVICE_TAG_PATH = /^\/api\/device-tags\/(tag_[a-f0-9]{16})$/;
export function createDeviceInventoryRoute(dependencies: DeviceInventoryRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const pathname = new URL(req.url || '/', 'http://localhost').pathname;
if (pathname === '/api/devices') {
if (!dependencies.deviceInventory || req.method !== 'GET') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
sendJson(res, 200, dependencies.deviceInventory.snapshot());
return true;
}
if (pathname === '/api/devices/refresh') {
if (!dependencies.deviceInventory || req.method !== 'POST') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
sendJson(res, 200, await dependencies.deviceInventory.refresh());
return true;
}
if (pathname === '/api/devices/traffic') {
if (!dependencies.deviceInventory || req.method !== 'DELETE') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
const body = await dependencies.readBody(req);
sendJson(res, 200, await dependencies.deviceInventory.resetTraffic(body.expectedRevision));
return true;
}
if (pathname === '/api/device-tags') {
if (!dependencies.deviceInventory || req.method !== 'POST') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
const body = await dependencies.readBody(req);
sendJson(
res,
200,
dependencies.deviceInventory.createTag(body.name, body.expectedRevision),
);
return true;
}
const tagMatch = pathname.match(DEVICE_TAG_PATH);
if (tagMatch) {
if (!dependencies.deviceInventory || !['PUT', 'DELETE'].includes(req.method || '')) {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
const body = await dependencies.readBody(req);
sendJson(
res,
200,
req.method === 'PUT'
? dependencies.deviceInventory.renameTag(tagMatch[1], body.name, body.expectedRevision)
: dependencies.deviceInventory.deleteTag(tagMatch[1], body.expectedRevision),
);
return true;
}
const deviceMatch = pathname.match(DEVICE_PATH);
if (deviceMatch) {
if (!dependencies.deviceInventory || req.method !== 'PUT') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
const { expectedRevision, ...patch } = await dependencies.readBody(req);
sendJson(
res,
200,
dependencies.deviceInventory.update(deviceMatch[1], patch, expectedRevision),
);
return true;
}
const policyMatch = pathname.match(DEVICE_POLICY_PATH);
if (policyMatch) {
if (!dependencies.deviceInventory || req.method !== 'PUT') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
const body = await dependencies.readBody(req);
sendJson(
res,
200,
await dependencies.deviceInventory.setPolicy(
policyMatch[1],
body.mode,
body.expectedRevision,
),
);
return true;
}
return false;
},
};
}
+49
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@@ -0,0 +1,49 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { FailoverService } from '../../features/failover/failoverService.js';
import { HarborError } from '../../../shared/errors.js';
interface FailoverRouteDependencies {
appMode: string;
failover: Pick<FailoverService, 'save' | 'pause' | 'manualSwitch' | 'checkNow'>;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
withOperation<T>(kind: string, operation: () => Promise<T>, options?: { expectedRevision?: unknown }): Promise<T>;
sendState(res: ServerResponse): Promise<void>;
}
export function createFailoverRoute(dependencies: FailoverRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const pathname = new URL(req.url || '/', 'http://localhost').pathname;
if (!pathname.startsWith('/api/failover')) return false;
if (dependencies.appMode !== 'gateway') throw new HarborError('ENDPOINT_NOT_FOUND');
const body = await dependencies.readBody(req);
if (pathname === '/api/failover' && req.method === 'PUT') {
await dependencies.withOperation(
'failover-save',
() => dependencies.failover.save(body.policy),
{ expectedRevision: body.expectedRevision },
);
} else if (pathname === '/api/failover/pause' && req.method === 'POST') {
if (typeof body.paused !== 'boolean') throw new HarborError('REQUEST_INVALID');
await dependencies.withOperation(
body.paused ? 'failover-pause' : 'failover-resume',
() => dependencies.failover.pause(body.paused as boolean),
{ expectedRevision: body.expectedRevision },
);
} else if (pathname === '/api/failover/switch' && req.method === 'POST') {
if (body.role !== 'primary' && body.role !== 'reserve') throw new HarborError('REQUEST_INVALID');
await dependencies.withOperation(
'failover-switch',
() => dependencies.failover.manualSwitch(body.role as 'primary' | 'reserve'),
{ expectedRevision: body.expectedRevision },
);
} else if (pathname === '/api/failover/check' && req.method === 'POST') {
await dependencies.failover.checkNow();
} else {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
await dependencies.sendState(res);
return true;
},
};
}
@@ -0,0 +1,32 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { GatewayAutoService } from '../../features/routing/index.js';
import { HarborError } from '../../../shared/errors.js';
import { sendJson } from '../response.js';
interface GatewayAutoRouteDependencies {
appMode: string;
gatewayAuto: Pick<GatewayAutoService, 'setEnabled'>;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
withOperation<T>(kind: string, operation: () => Promise<T>): Promise<T>;
readStatePayload(): Promise<Record<string, unknown> & { gatewayAuto?: unknown }>;
}
export function createGatewayAutoRoute(dependencies: GatewayAutoRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'POST' || req.url !== '/api/gateway-auto') return false;
if (dependencies.appMode !== 'client') throw new HarborError('REQUEST_INVALID');
const { enabled } = await dependencies.readBody(req);
if (typeof enabled !== 'boolean') throw new HarborError('REQUEST_INVALID');
await dependencies.withOperation(
'gateway-auto',
() => dependencies.gatewayAuto.setEnabled(enabled),
);
const state = await dependencies.readStatePayload();
sendJson(res, 200, { success: true, gatewayAuto: state.gatewayAuto, state });
return true;
},
};
}
@@ -0,0 +1,33 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { buildGatewayPresence } from '../../gatewayPresence.js';
import { sendJson } from '../response.js';
interface GatewayPresenceState {
subscriptionUrl?: unknown;
}
interface GatewayPresenceRouteDependencies {
appMode: string;
readState(): GatewayPresenceState;
getHwid(): unknown;
}
export function createGatewayPresenceRoute(dependencies: GatewayPresenceRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const requestUrl = new URL(req.url || '/', 'http://localhost');
if (req.method !== 'GET' || requestUrl.pathname !== '/api/gateway-presence') return false;
const state = dependencies.readState();
const gatewayId = dependencies.getHwid();
sendJson(res, 200, buildGatewayPresence({
appMode: dependencies.appMode,
subscriptionUrl: state.subscriptionUrl,
gatewayId,
nonce: requestUrl.searchParams.get('nonce'),
}));
return true;
},
};
}
@@ -0,0 +1,26 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { HarborError } from '../../../shared/errors.js';
import { sendPrometheusMetrics } from '../../prometheusMetrics.js';
interface MetricsSnapshotPort {
metricsSnapshot(): unknown;
}
interface PrometheusMetricsRouteDependencies {
deviceInventory: MetricsSnapshotPort | null;
}
export function createPrometheusMetricsRoute(dependencies: PrometheusMetricsRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const pathname = new URL(req.url || '/', 'http://localhost').pathname;
if (pathname !== '/metrics') return false;
if (!dependencies.deviceInventory || req.method !== 'GET') {
throw new HarborError('ENDPOINT_NOT_FOUND');
}
sendPrometheusMetrics(res, dependencies.deviceInventory.metricsSnapshot());
return true;
},
};
}
+21
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@@ -0,0 +1,21 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { RouteRulesService } from '../../features/routing/index.js';
interface RouteRulesRouteDependencies {
routeRules: RouteRulesService;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
sendState(res: ServerResponse): Promise<void>;
}
export function createRouteRulesRoute(dependencies: RouteRulesRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'PUT' || !['/api/route-rules', '/api/route-rules/v2'].includes(req.url || '')) return false;
const { rules, expectedRulesRevision, rulesContractVersion } = await dependencies.readBody(req);
await dependencies.routeRules.update(rules, expectedRulesRevision, rulesContractVersion);
await dependencies.sendState(res);
return true;
},
};
}
@@ -0,0 +1,40 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ConnectionService } from '../../features/connection/index.js';
interface ServerApplyRouteDependencies {
connection: Pick<ConnectionService, 'apply'>;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
withOperation<T>(
kind: string,
operation: (operationRevision: number) => Promise<T>,
options?: { expectedRevision?: unknown; profileId?: unknown; serverId?: unknown },
): Promise<T>;
sendState(res: ServerResponse, extra: { profileId: string; serverId: string; selectedTag: string }): Promise<void>;
}
export function createServerApplyRoute(dependencies: ServerApplyRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'POST' || req.url !== '/api/apply') return false;
const {
profileId = '',
serverId = '',
selectedTag = '',
expectedRevision,
} = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'apply-server',
(operationRevision) => dependencies.connection.apply(
profileId,
serverId,
selectedTag,
operationRevision,
),
{ expectedRevision, profileId, serverId },
);
await dependencies.sendState(res, result);
return true;
},
};
}
@@ -0,0 +1,27 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ServerHealthService } from '../../features/servers/index.js';
interface ServerHealthRouteDependencies {
serverHealth: ServerHealthService;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
sendState(res: ServerResponse, extra: {
profileId: string;
results: Array<Record<string, unknown>>;
}): Promise<void>;
}
export function createServerHealthRoute(dependencies: ServerHealthRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const pathname = new URL(req.url || '/', 'http://localhost').pathname;
const profileMatch = pathname.match(/^\/api\/profiles\/([^/]+)\/servers\/ping$/);
if (req.method !== 'POST' || (!profileMatch && pathname !== '/api/servers/ping-all')) return false;
const { serverIds = [] } = await dependencies.readBody(req);
const profileId = profileMatch ? decodeURIComponent(profileMatch[1]) : '';
const results = await dependencies.serverHealth.check(profileId, serverIds);
await dependencies.sendState(res, { profileId, results });
return true;
},
};
}
@@ -0,0 +1,29 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { buildSharedProxyInfo } from '../../sharedProxy.js';
import { sendJson } from '../response.js';
interface SharedProxyRouteDependencies {
appMode: string;
proxyPort: unknown;
sharedProxyHost: unknown;
refreshRuntime(): Promise<{ running?: unknown }>;
}
export function createSharedProxyRoute(dependencies: SharedProxyRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'GET' || req.url !== '/api/shared-proxy') return false;
const runtime = await dependencies.refreshRuntime();
sendJson(res, 200, buildSharedProxyInfo({
appMode: dependencies.appMode,
proxyPort: dependencies.proxyPort,
running: runtime.running,
hostHeader: req.headers.host,
sharedProxyHost: dependencies.sharedProxyHost,
}));
return true;
},
};
}
+91
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@@ -0,0 +1,91 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { normalizeStoredState, type GatewayAutoState, type StateSnapshot } from '../../../shared/contracts/state.js';
import type { StateReadResult, StateService } from '../../features/state/stateService.js';
import { sendJson } from '../response.js';
export interface LegacyStatePayload extends StateSnapshot, Record<string, unknown> {
port: number;
proxyPort: number;
configExists: boolean;
singboxRunning: boolean;
singboxStartedAt: string | null;
subscriptionHost: string;
hasSubscription: boolean;
selectedTag: string;
userInfo: Record<string, unknown>;
fetchedAt: string | null;
gatewayAuto: {
mode: string;
enabled: boolean;
available: boolean;
address: string;
uiOrigin: string;
interface: string;
failures: number;
lastError: string;
} | null;
}
interface StateRouteDependencies {
stateService: StateService;
port: number;
proxyPort: number;
}
function withStateV0Compatibility(
{ snapshot, storedState, gatewayAuto, configExists }: StateReadResult,
{ port, proxyPort }: Pick<StateRouteDependencies, 'port' | 'proxyPort'>,
): LegacyStatePayload {
const stored = normalizeStoredState(storedState);
return {
...snapshot,
port,
proxyPort,
configExists,
singboxRunning: snapshot.connection.process === 'running',
singboxStartedAt: snapshot.connection.startedAt,
subscriptionHost: snapshot.subscription.host,
hasSubscription: snapshot.subscription.status !== 'missing',
selectedTag: stored.selectedTag,
userInfo: snapshot.subscription.userInfo,
fetchedAt: snapshot.subscription.fetchedAt,
gatewayAuto: snapshot.mode === 'client'
? legacyGatewayAuto(gatewayAuto, stored.gatewayAutoEnabled !== false)
: null,
};
}
function legacyGatewayAuto(gatewayAuto: GatewayAutoState, enabled: boolean) {
return {
mode: gatewayAuto?.mode || 'local-vpn',
enabled,
available: Boolean(gatewayAuto?.gatewayId),
address: gatewayAuto?.gateway?.gateway || '',
uiOrigin: gatewayAuto?.uiOrigin || '',
interface: gatewayAuto?.gateway?.interface || '',
failures: Number(gatewayAuto?.failures) || 0,
lastError: gatewayAuto?.lastError || '',
};
}
export function createStateRoute(dependencies: StateRouteDependencies) {
const readPayload = async () => withStateV0Compatibility(
await dependencies.stateService.read(),
dependencies,
);
return {
readPayload,
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'GET' || req.url !== '/api/state') return false;
sendJson(res, 200, await readPayload());
return true;
},
async send(res: ServerResponse, extra: Record<string, unknown> = {}) {
sendJson(res, 200, { success: true, ...extra, state: await readPayload() });
},
};
}
export type StateRoute = ReturnType<typeof createStateRoute>;
@@ -0,0 +1,176 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ConnectionService } from '../../features/connection/index.js';
import type { SubscriptionService } from '../../features/subscription/index.js';
interface OperationOptions {
expectedRevision?: unknown;
profileId?: unknown;
serverId?: unknown;
}
interface SubscriptionMutationRouteDependencies {
subscriptionService: Pick<
SubscriptionService,
| 'preflightAddProfile'
| 'preflightRenameProfile'
| 'addProfile'
| 'renameProfile'
| 'selectProfileServer'
| 'refreshProfile'
| 'deleteProfile'
| 'importSubscription'
| 'refreshSavedSubscription'
| 'resetSavedSubscription'
>;
connection: Pick<ConnectionService, 'activate'>;
readBody(req: IncomingMessage): Promise<Record<string, unknown>>;
withOperation<T>(
kind: string,
operation: (operationRevision: number) => Promise<T>,
options?: OperationOptions,
): Promise<T>;
sendState(res: ServerResponse, extra?: Record<string, unknown>): Promise<void>;
}
export function createSubscriptionMutationRoute(dependencies: SubscriptionMutationRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
const pathname = new URL(req.url || '/', 'http://localhost').pathname;
const profileMatch = pathname.match(/^\/api\/profiles\/([^/]+)$/);
const serverMatch = pathname.match(/^\/api\/profiles\/([^/]+)\/server$/);
const activateMatch = pathname.match(/^\/api\/profiles\/([^/]+)\/activate$/);
const refreshMatch = pathname.match(/^\/api\/profiles\/([^/]+)\/refresh$/);
if (req.method === 'POST' && pathname === '/api/profiles') {
const { label = '', url = '', expectedRevision } = await dependencies.readBody(req);
dependencies.subscriptionService.preflightAddProfile(label, expectedRevision);
const result = await dependencies.withOperation(
'profile-add',
(operationRevision) => dependencies.subscriptionService.addProfile(
label,
url,
operationRevision,
),
{ expectedRevision },
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'PATCH' && profileMatch) {
const profileId = decodeURIComponent(profileMatch[1]);
const { label = '', expectedRevision } = await dependencies.readBody(req);
dependencies.subscriptionService.preflightRenameProfile(profileId, label, expectedRevision);
const result = await dependencies.withOperation(
'profile-rename',
(operationRevision) => dependencies.subscriptionService.renameProfile(
profileId,
label,
operationRevision,
),
{ expectedRevision, profileId },
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'PUT' && serverMatch) {
const profileId = decodeURIComponent(serverMatch[1]);
const { serverId = '', expectedRevision } = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'profile-select-server',
(operationRevision) => dependencies.subscriptionService.selectProfileServer(
profileId,
serverId,
operationRevision,
),
{ expectedRevision, profileId, serverId },
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'POST' && activateMatch) {
const profileId = decodeURIComponent(activateMatch[1]);
const { expectedRevision } = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'profile-activate',
(operationRevision) => dependencies.connection.activate(profileId, operationRevision),
{ expectedRevision, profileId },
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'POST' && refreshMatch) {
const profileId = decodeURIComponent(refreshMatch[1]);
const { expectedRevision } = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'profile-refresh',
(operationRevision) => dependencies.subscriptionService.refreshProfile(
profileId,
operationRevision,
),
{ expectedRevision, profileId },
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'DELETE' && profileMatch) {
const profileId = decodeURIComponent(profileMatch[1]);
const { mode = 'delete', expectedRevision } = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'profile-delete',
(operationRevision) => dependencies.subscriptionService.deleteProfile(
profileId,
mode,
operationRevision,
),
{ expectedRevision, profileId },
);
await dependencies.sendState(res, result);
return true;
}
// One-release compatibility for the old single-subscription client.
if (req.method === 'POST' && pathname === '/api/subscription/fetch') {
const { url = '' } = await dependencies.readBody(req);
const result = await dependencies.withOperation(
'subscription-import',
(operationRevision) => dependencies.subscriptionService.importSubscription(
String(url).trim(),
operationRevision,
),
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'POST' && pathname === '/api/subscription/refresh') {
const result = await dependencies.withOperation(
'subscription-refresh',
(operationRevision) => dependencies.subscriptionService.refreshSavedSubscription(
operationRevision,
),
);
await dependencies.sendState(res, result);
return true;
}
if (req.method === 'DELETE' && pathname === '/api/subscription') {
await dependencies.withOperation(
'subscription-forget',
(operationRevision) => dependencies.subscriptionService.resetSavedSubscription({
expectedRevision: operationRevision,
}),
);
await dependencies.sendState(res);
return true;
}
return false;
},
};
}
@@ -0,0 +1,20 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import type { ValidateSubscription } from '../../features/subscription/index.js';
interface SubscriptionValidationRouteDependencies {
validateSubscription: ValidateSubscription;
readBody: (req: IncomingMessage) => Promise<Record<string, unknown>>;
sendState: (res: ServerResponse, extra: Record<string, unknown>) => Promise<void>;
}
export function createSubscriptionValidationRoute(dependencies: SubscriptionValidationRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'POST' || req.url !== '/api/subscription/validate') return false;
const { url = '' } = await dependencies.readBody(req);
await dependencies.sendState(res, await dependencies.validateSubscription(url));
return true;
},
};
}
+31
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@@ -0,0 +1,31 @@
import type { IncomingMessage, ServerResponse } from 'node:http';
import { buildGatewayVersionInfo } from '../../version.js';
import { sendJson } from '../response.js';
interface DataplaneVersionState {
gatewayBackendVersion?: unknown;
singBoxVersion?: unknown;
}
interface VersionRouteDependencies {
versionInfo: Record<string, unknown>;
refreshDataplaneRuntime: (() => Promise<DataplaneVersionState>) | null;
}
export function createVersionRoute(dependencies: VersionRouteDependencies) {
return {
async handle(req: IncomingMessage, res: ServerResponse) {
if (req.method !== 'GET' || req.url !== '/api/version') return false;
const payload = dependencies.refreshDataplaneRuntime
? buildGatewayVersionInfo(
dependencies.versionInfo,
await dependencies.refreshDataplaneRuntime(),
)
: dependencies.versionInfo;
sendJson(res, 200, payload);
return true;
},
};
}
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@@ -0,0 +1,9 @@
import path from 'node:path';
process.env.DIST_DIR ||= path.resolve('dist');
if (process.env.APP_COMPONENT === 'dataplane') {
await import('./dataplane.js');
} else {
await import('./index.js');
}

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